[runtime] Always free method header in method_to_ir
[mono.git] / mono / mini / method-to-ir.c
1 /*
2  * method-to-ir.c: Convert CIL to the JIT internal representation
3  *
4  * Author:
5  *   Paolo Molaro (lupus@ximian.com)
6  *   Dietmar Maurer (dietmar@ximian.com)
7  *
8  * (C) 2002 Ximian, Inc.
9  * Copyright 2003-2010 Novell, Inc (http://www.novell.com)
10  * Copyright 2011 Xamarin, Inc (http://www.xamarin.com)
11  * Licensed under the MIT license. See LICENSE file in the project root for full license information.
12  */
13
14 #include <config.h>
15
16 #ifndef DISABLE_JIT
17
18 #include <signal.h>
19
20 #ifdef HAVE_UNISTD_H
21 #include <unistd.h>
22 #endif
23
24 #include <math.h>
25 #include <string.h>
26 #include <ctype.h>
27
28 #ifdef HAVE_SYS_TIME_H
29 #include <sys/time.h>
30 #endif
31
32 #ifdef HAVE_ALLOCA_H
33 #include <alloca.h>
34 #endif
35
36 #include <mono/utils/memcheck.h>
37 #include "mini.h"
38 #include <mono/metadata/abi-details.h>
39 #include <mono/metadata/assembly.h>
40 #include <mono/metadata/attrdefs.h>
41 #include <mono/metadata/loader.h>
42 #include <mono/metadata/tabledefs.h>
43 #include <mono/metadata/class.h>
44 #include <mono/metadata/object.h>
45 #include <mono/metadata/exception.h>
46 #include <mono/metadata/opcodes.h>
47 #include <mono/metadata/mono-endian.h>
48 #include <mono/metadata/tokentype.h>
49 #include <mono/metadata/tabledefs.h>
50 #include <mono/metadata/marshal.h>
51 #include <mono/metadata/debug-helpers.h>
52 #include <mono/metadata/mono-debug.h>
53 #include <mono/metadata/mono-debug-debugger.h>
54 #include <mono/metadata/gc-internals.h>
55 #include <mono/metadata/security-manager.h>
56 #include <mono/metadata/threads-types.h>
57 #include <mono/metadata/security-core-clr.h>
58 #include <mono/metadata/profiler-private.h>
59 #include <mono/metadata/profiler.h>
60 #include <mono/metadata/monitor.h>
61 #include <mono/metadata/debug-mono-symfile.h>
62 #include <mono/utils/mono-compiler.h>
63 #include <mono/utils/mono-memory-model.h>
64 #include <mono/utils/mono-error-internals.h>
65 #include <mono/metadata/mono-basic-block.h>
66 #include <mono/metadata/reflection-internals.h>
67 #include <mono/utils/mono-threads-coop.h>
68
69 #include "trace.h"
70
71 #include "ir-emit.h"
72
73 #include "jit-icalls.h"
74 #include "jit.h"
75 #include "debugger-agent.h"
76 #include "seq-points.h"
77 #include "aot-compiler.h"
78 #include "mini-llvm.h"
79
80 #define BRANCH_COST 10
81 #define INLINE_LENGTH_LIMIT 20
82
83 /* These have 'cfg' as an implicit argument */
84 #define INLINE_FAILURE(msg) do {                                                                        \
85         if ((cfg->method != cfg->current_method) && (cfg->current_method->wrapper_type == MONO_WRAPPER_NONE)) { \
86                 inline_failure (cfg, msg);                                                                              \
87                 goto exception_exit;                                                                                    \
88         } \
89         } while (0)
90 #define CHECK_CFG_EXCEPTION do {\
91                 if (cfg->exception_type != MONO_EXCEPTION_NONE) \
92                         goto exception_exit;                                            \
93         } while (0)
94 #define FIELD_ACCESS_FAILURE(method, field) do {                                        \
95                 field_access_failure ((cfg), (method), (field));                        \
96                 goto exception_exit;    \
97         } while (0)
98 #define GENERIC_SHARING_FAILURE(opcode) do {            \
99                 if (cfg->gshared) {                                                                     \
100                         gshared_failure (cfg, opcode, __FILE__, __LINE__);      \
101                         goto exception_exit;    \
102                 }                       \
103         } while (0)
104 #define GSHAREDVT_FAILURE(opcode) do {          \
105         if (cfg->gsharedvt) {                                                                                           \
106                 gsharedvt_failure (cfg, opcode, __FILE__, __LINE__);                    \
107                 goto exception_exit;                                                                                    \
108         }                                                                                                                                       \
109         } while (0)
110 #define OUT_OF_MEMORY_FAILURE do {      \
111                 mono_cfg_set_exception (cfg, MONO_EXCEPTION_MONO_ERROR);                \
112                 mono_error_set_out_of_memory (&cfg->error, "");                                 \
113                 goto exception_exit;    \
114         } while (0)
115 #define DISABLE_AOT(cfg) do { \
116                 if ((cfg)->verbose_level >= 2)                                            \
117                         printf ("AOT disabled: %s:%d\n", __FILE__, __LINE__);   \
118                 (cfg)->disable_aot = TRUE;                                                        \
119         } while (0)
120 #define LOAD_ERROR do { \
121                 break_on_unverified ();                                                         \
122                 mono_cfg_set_exception (cfg, MONO_EXCEPTION_TYPE_LOAD); \
123                 goto exception_exit;                                                                    \
124         } while (0)
125
126 #define TYPE_LOAD_ERROR(klass) do { \
127                 cfg->exception_ptr = klass; \
128                 LOAD_ERROR;                                     \
129         } while (0)
130
131 #define CHECK_CFG_ERROR do {\
132                 if (!mono_error_ok (&cfg->error)) { \
133                         mono_cfg_set_exception (cfg, MONO_EXCEPTION_MONO_ERROR);        \
134                         goto mono_error_exit; \
135                 } \
136         } while (0)
137
138 /* Determine whenever 'ins' represents a load of the 'this' argument */
139 #define MONO_CHECK_THIS(ins) (mono_method_signature (cfg->method)->hasthis && ((ins)->opcode == OP_MOVE) && ((ins)->sreg1 == cfg->args [0]->dreg))
140
141 static int ldind_to_load_membase (int opcode);
142 static int stind_to_store_membase (int opcode);
143
144 int mono_op_to_op_imm (int opcode);
145 int mono_op_to_op_imm_noemul (int opcode);
146
147 MONO_API MonoInst* mono_emit_native_call (MonoCompile *cfg, gconstpointer func, MonoMethodSignature *sig, MonoInst **args);
148
149 static int inline_method (MonoCompile *cfg, MonoMethod *cmethod, MonoMethodSignature *fsig, MonoInst **sp,
150                                                   guchar *ip, guint real_offset, gboolean inline_always);
151 static MonoInst*
152 emit_llvmonly_virtual_call (MonoCompile *cfg, MonoMethod *cmethod, MonoMethodSignature *fsig, int context_used, MonoInst **sp);
153
154 /* helper methods signatures */
155 static MonoMethodSignature *helper_sig_domain_get;
156 static MonoMethodSignature *helper_sig_rgctx_lazy_fetch_trampoline;
157 static MonoMethodSignature *helper_sig_llvmonly_imt_thunk;
158
159
160 /* type loading helpers */
161 static GENERATE_GET_CLASS_WITH_CACHE (runtime_helpers, System.Runtime.CompilerServices, RuntimeHelpers)
162 static GENERATE_TRY_GET_CLASS_WITH_CACHE (debuggable_attribute, System.Diagnostics, DebuggableAttribute)
163
164 /*
165  * Instruction metadata
166  */
167 #ifdef MINI_OP
168 #undef MINI_OP
169 #endif
170 #ifdef MINI_OP3
171 #undef MINI_OP3
172 #endif
173 #define MINI_OP(a,b,dest,src1,src2) dest, src1, src2, ' ',
174 #define MINI_OP3(a,b,dest,src1,src2,src3) dest, src1, src2, src3,
175 #define NONE ' '
176 #define IREG 'i'
177 #define FREG 'f'
178 #define VREG 'v'
179 #define XREG 'x'
180 #if SIZEOF_REGISTER == 8 && SIZEOF_REGISTER == SIZEOF_VOID_P
181 #define LREG IREG
182 #else
183 #define LREG 'l'
184 #endif
185 /* keep in sync with the enum in mini.h */
186 const char
187 ins_info[] = {
188 #include "mini-ops.h"
189 };
190 #undef MINI_OP
191 #undef MINI_OP3
192
193 #define MINI_OP(a,b,dest,src1,src2) ((src2) != NONE ? 2 : ((src1) != NONE ? 1 : 0)),
194 #define MINI_OP3(a,b,dest,src1,src2,src3) ((src3) != NONE ? 3 : ((src2) != NONE ? 2 : ((src1) != NONE ? 1 : 0))),
195 /* 
196  * This should contain the index of the last sreg + 1. This is not the same
197  * as the number of sregs for opcodes like IA64_CMP_EQ_IMM.
198  */
199 const gint8 ins_sreg_counts[] = {
200 #include "mini-ops.h"
201 };
202 #undef MINI_OP
203 #undef MINI_OP3
204
205 #define MONO_INIT_VARINFO(vi,id) do { \
206         (vi)->range.first_use.pos.bid = 0xffff; \
207         (vi)->reg = -1; \
208         (vi)->idx = (id); \
209 } while (0)
210
211 guint32
212 mono_alloc_ireg (MonoCompile *cfg)
213 {
214         return alloc_ireg (cfg);
215 }
216
217 guint32
218 mono_alloc_lreg (MonoCompile *cfg)
219 {
220         return alloc_lreg (cfg);
221 }
222
223 guint32
224 mono_alloc_freg (MonoCompile *cfg)
225 {
226         return alloc_freg (cfg);
227 }
228
229 guint32
230 mono_alloc_preg (MonoCompile *cfg)
231 {
232         return alloc_preg (cfg);
233 }
234
235 guint32
236 mono_alloc_dreg (MonoCompile *cfg, MonoStackType stack_type)
237 {
238         return alloc_dreg (cfg, stack_type);
239 }
240
241 /*
242  * mono_alloc_ireg_ref:
243  *
244  *   Allocate an IREG, and mark it as holding a GC ref.
245  */
246 guint32
247 mono_alloc_ireg_ref (MonoCompile *cfg)
248 {
249         return alloc_ireg_ref (cfg);
250 }
251
252 /*
253  * mono_alloc_ireg_mp:
254  *
255  *   Allocate an IREG, and mark it as holding a managed pointer.
256  */
257 guint32
258 mono_alloc_ireg_mp (MonoCompile *cfg)
259 {
260         return alloc_ireg_mp (cfg);
261 }
262
263 /*
264  * mono_alloc_ireg_copy:
265  *
266  *   Allocate an IREG with the same GC type as VREG.
267  */
268 guint32
269 mono_alloc_ireg_copy (MonoCompile *cfg, guint32 vreg)
270 {
271         if (vreg_is_ref (cfg, vreg))
272                 return alloc_ireg_ref (cfg);
273         else if (vreg_is_mp (cfg, vreg))
274                 return alloc_ireg_mp (cfg);
275         else
276                 return alloc_ireg (cfg);
277 }
278
279 guint
280 mono_type_to_regmove (MonoCompile *cfg, MonoType *type)
281 {
282         if (type->byref)
283                 return OP_MOVE;
284
285         type = mini_get_underlying_type (type);
286 handle_enum:
287         switch (type->type) {
288         case MONO_TYPE_I1:
289         case MONO_TYPE_U1:
290                 return OP_MOVE;
291         case MONO_TYPE_I2:
292         case MONO_TYPE_U2:
293                 return OP_MOVE;
294         case MONO_TYPE_I4:
295         case MONO_TYPE_U4:
296                 return OP_MOVE;
297         case MONO_TYPE_I:
298         case MONO_TYPE_U:
299         case MONO_TYPE_PTR:
300         case MONO_TYPE_FNPTR:
301                 return OP_MOVE;
302         case MONO_TYPE_CLASS:
303         case MONO_TYPE_STRING:
304         case MONO_TYPE_OBJECT:
305         case MONO_TYPE_SZARRAY:
306         case MONO_TYPE_ARRAY:    
307                 return OP_MOVE;
308         case MONO_TYPE_I8:
309         case MONO_TYPE_U8:
310 #if SIZEOF_REGISTER == 8
311                 return OP_MOVE;
312 #else
313                 return OP_LMOVE;
314 #endif
315         case MONO_TYPE_R4:
316                 return cfg->r4fp ? OP_RMOVE : OP_FMOVE;
317         case MONO_TYPE_R8:
318                 return OP_FMOVE;
319         case MONO_TYPE_VALUETYPE:
320                 if (type->data.klass->enumtype) {
321                         type = mono_class_enum_basetype (type->data.klass);
322                         goto handle_enum;
323                 }
324                 if (MONO_CLASS_IS_SIMD (cfg, mono_class_from_mono_type (type)))
325                         return OP_XMOVE;
326                 return OP_VMOVE;
327         case MONO_TYPE_TYPEDBYREF:
328                 return OP_VMOVE;
329         case MONO_TYPE_GENERICINST:
330                 type = &type->data.generic_class->container_class->byval_arg;
331                 goto handle_enum;
332         case MONO_TYPE_VAR:
333         case MONO_TYPE_MVAR:
334                 g_assert (cfg->gshared);
335                 if (mini_type_var_is_vt (type))
336                         return OP_VMOVE;
337                 else
338                         return mono_type_to_regmove (cfg, mini_get_underlying_type (type));
339         default:
340                 g_error ("unknown type 0x%02x in type_to_regstore", type->type);
341         }
342         return -1;
343 }
344
345 void
346 mono_print_bb (MonoBasicBlock *bb, const char *msg)
347 {
348         int i;
349         MonoInst *tree;
350
351         printf ("\n%s %d: [IN: ", msg, bb->block_num);
352         for (i = 0; i < bb->in_count; ++i)
353                 printf (" BB%d(%d)", bb->in_bb [i]->block_num, bb->in_bb [i]->dfn);
354         printf (", OUT: ");
355         for (i = 0; i < bb->out_count; ++i)
356                 printf (" BB%d(%d)", bb->out_bb [i]->block_num, bb->out_bb [i]->dfn);
357         printf (" ]\n");
358         for (tree = bb->code; tree; tree = tree->next)
359                 mono_print_ins_index (-1, tree);
360 }
361
362 void
363 mono_create_helper_signatures (void)
364 {
365         helper_sig_domain_get = mono_create_icall_signature ("ptr");
366         helper_sig_rgctx_lazy_fetch_trampoline = mono_create_icall_signature ("ptr ptr");
367         helper_sig_llvmonly_imt_thunk = mono_create_icall_signature ("ptr ptr ptr");
368 }
369
370 static MONO_NEVER_INLINE void
371 break_on_unverified (void)
372 {
373         if (mini_get_debug_options ()->break_on_unverified)
374                 G_BREAKPOINT ();
375 }
376
377 static MONO_NEVER_INLINE void
378 field_access_failure (MonoCompile *cfg, MonoMethod *method, MonoClassField *field)
379 {
380         char *method_fname = mono_method_full_name (method, TRUE);
381         char *field_fname = mono_field_full_name (field);
382         mono_cfg_set_exception (cfg, MONO_EXCEPTION_MONO_ERROR);
383         mono_error_set_generic_error (&cfg->error, "System", "FieldAccessException", "Field `%s' is inaccessible from method `%s'\n", field_fname, method_fname);
384         g_free (method_fname);
385         g_free (field_fname);
386 }
387
388 static MONO_NEVER_INLINE void
389 inline_failure (MonoCompile *cfg, const char *msg)
390 {
391         if (cfg->verbose_level >= 2)
392                 printf ("inline failed: %s\n", msg);
393         mono_cfg_set_exception (cfg, MONO_EXCEPTION_INLINE_FAILED);
394 }
395
396 static MONO_NEVER_INLINE void
397 gshared_failure (MonoCompile *cfg, int opcode, const char *file, int line)
398 {
399         if (cfg->verbose_level > 2)                                                                                     \
400                 printf ("sharing failed for method %s.%s.%s/%d opcode %s line %d\n", cfg->current_method->klass->name_space, cfg->current_method->klass->name, cfg->current_method->name, cfg->current_method->signature->param_count, mono_opcode_name ((opcode)), line);
401         mono_cfg_set_exception (cfg, MONO_EXCEPTION_GENERIC_SHARING_FAILED);
402 }
403
404 static MONO_NEVER_INLINE void
405 gsharedvt_failure (MonoCompile *cfg, int opcode, const char *file, int line)
406 {
407         cfg->exception_message = g_strdup_printf ("gsharedvt failed for method %s.%s.%s/%d opcode %s %s:%d", cfg->current_method->klass->name_space, cfg->current_method->klass->name, cfg->current_method->name, cfg->current_method->signature->param_count, mono_opcode_name ((opcode)), file, line);
408         if (cfg->verbose_level >= 2)
409                 printf ("%s\n", cfg->exception_message);
410         mono_cfg_set_exception (cfg, MONO_EXCEPTION_GENERIC_SHARING_FAILED);
411 }
412
413 /*
414  * When using gsharedvt, some instatiations might be verifiable, and some might be not. i.e. 
415  * foo<T> (int i) { ldarg.0; box T; }
416  */
417 #define UNVERIFIED do { \
418         if (cfg->gsharedvt) { \
419                 if (cfg->verbose_level > 2)                                                                     \
420                         printf ("gsharedvt method failed to verify, falling back to instantiation.\n"); \
421                 mono_cfg_set_exception (cfg, MONO_EXCEPTION_GENERIC_SHARING_FAILED); \
422                 goto exception_exit;                                                                                    \
423         }                                                                                                                                       \
424         break_on_unverified ();                                                                                         \
425         goto unverified;                                                                                                        \
426 } while (0)
427
428 #define GET_BBLOCK(cfg,tblock,ip) do {  \
429                 (tblock) = cfg->cil_offset_to_bb [(ip) - cfg->cil_start]; \
430                 if (!(tblock)) {        \
431                         if ((ip) >= end || (ip) < header->code) UNVERIFIED; \
432             NEW_BBLOCK (cfg, (tblock)); \
433                         (tblock)->cil_code = (ip);      \
434                         ADD_BBLOCK (cfg, (tblock));     \
435                 } \
436         } while (0)
437
438 #if defined(TARGET_X86) || defined(TARGET_AMD64)
439 #define EMIT_NEW_X86_LEA(cfg,dest,sr1,sr2,shift,imm) do { \
440                 MONO_INST_NEW (cfg, dest, OP_X86_LEA); \
441                 (dest)->dreg = alloc_ireg_mp ((cfg)); \
442                 (dest)->sreg1 = (sr1); \
443                 (dest)->sreg2 = (sr2); \
444                 (dest)->inst_imm = (imm); \
445                 (dest)->backend.shift_amount = (shift); \
446                 MONO_ADD_INS ((cfg)->cbb, (dest)); \
447         } while (0)
448 #endif
449
450 /* Emit conversions so both operands of a binary opcode are of the same type */
451 static void
452 add_widen_op (MonoCompile *cfg, MonoInst *ins, MonoInst **arg1_ref, MonoInst **arg2_ref)
453 {
454         MonoInst *arg1 = *arg1_ref;
455         MonoInst *arg2 = *arg2_ref;
456
457         if (cfg->r4fp &&
458                 ((arg1->type == STACK_R4 && arg2->type == STACK_R8) ||
459                  (arg1->type == STACK_R8 && arg2->type == STACK_R4))) {
460                 MonoInst *conv;
461
462                 /* Mixing r4/r8 is allowed by the spec */
463                 if (arg1->type == STACK_R4) {
464                         int dreg = alloc_freg (cfg);
465
466                         EMIT_NEW_UNALU (cfg, conv, OP_RCONV_TO_R8, dreg, arg1->dreg);
467                         conv->type = STACK_R8;
468                         ins->sreg1 = dreg;
469                         *arg1_ref = conv;
470                 }
471                 if (arg2->type == STACK_R4) {
472                         int dreg = alloc_freg (cfg);
473
474                         EMIT_NEW_UNALU (cfg, conv, OP_RCONV_TO_R8, dreg, arg2->dreg);
475                         conv->type = STACK_R8;
476                         ins->sreg2 = dreg;
477                         *arg2_ref = conv;
478                 }
479         }
480
481 #if SIZEOF_REGISTER == 8
482         /* FIXME: Need to add many more cases */
483         if ((arg1)->type == STACK_PTR && (arg2)->type == STACK_I4) {
484                 MonoInst *widen;
485
486                 int dr = alloc_preg (cfg);
487                 EMIT_NEW_UNALU (cfg, widen, OP_SEXT_I4, dr, (arg2)->dreg);
488                 (ins)->sreg2 = widen->dreg;
489         }
490 #endif
491 }
492
493 #define ADD_BINOP(op) do {      \
494                 MONO_INST_NEW (cfg, ins, (op)); \
495                 sp -= 2;        \
496                 ins->sreg1 = sp [0]->dreg;      \
497                 ins->sreg2 = sp [1]->dreg;      \
498                 type_from_op (cfg, ins, sp [0], sp [1]);        \
499                 CHECK_TYPE (ins);       \
500                 /* Have to insert a widening op */               \
501         add_widen_op (cfg, ins, &sp [0], &sp [1]);               \
502         ins->dreg = alloc_dreg ((cfg), (MonoStackType)(ins)->type); \
503         MONO_ADD_INS ((cfg)->cbb, (ins)); \
504         *sp++ = mono_decompose_opcode ((cfg), (ins));   \
505         } while (0)
506
507 #define ADD_UNOP(op) do {       \
508                 MONO_INST_NEW (cfg, ins, (op)); \
509                 sp--;   \
510                 ins->sreg1 = sp [0]->dreg;      \
511                 type_from_op (cfg, ins, sp [0], NULL);  \
512                 CHECK_TYPE (ins);       \
513         (ins)->dreg = alloc_dreg ((cfg), (MonoStackType)(ins)->type); \
514         MONO_ADD_INS ((cfg)->cbb, (ins)); \
515                 *sp++ = mono_decompose_opcode (cfg, ins);       \
516         } while (0)
517
518 #define ADD_BINCOND(next_block) do {    \
519                 MonoInst *cmp;  \
520                 sp -= 2; \
521                 MONO_INST_NEW(cfg, cmp, OP_COMPARE);    \
522                 cmp->sreg1 = sp [0]->dreg;      \
523                 cmp->sreg2 = sp [1]->dreg;      \
524                 type_from_op (cfg, cmp, sp [0], sp [1]);        \
525                 CHECK_TYPE (cmp);       \
526                 add_widen_op (cfg, cmp, &sp [0], &sp [1]);                                              \
527                 type_from_op (cfg, ins, sp [0], sp [1]);                                                        \
528                 ins->inst_many_bb = (MonoBasicBlock **)mono_mempool_alloc (cfg->mempool, sizeof(gpointer)*2);   \
529                 GET_BBLOCK (cfg, tblock, target);               \
530                 link_bblock (cfg, cfg->cbb, tblock);    \
531                 ins->inst_true_bb = tblock;     \
532                 if ((next_block)) {     \
533                         link_bblock (cfg, cfg->cbb, (next_block));      \
534                         ins->inst_false_bb = (next_block);      \
535                         start_new_bblock = 1;   \
536                 } else {        \
537                         GET_BBLOCK (cfg, tblock, ip);           \
538                         link_bblock (cfg, cfg->cbb, tblock);    \
539                         ins->inst_false_bb = tblock;    \
540                         start_new_bblock = 2;   \
541                 }       \
542                 if (sp != stack_start) {                                                                        \
543                     handle_stack_args (cfg, stack_start, sp - stack_start); \
544                         CHECK_UNVERIFIABLE (cfg); \
545                 } \
546         MONO_ADD_INS (cfg->cbb, cmp); \
547                 MONO_ADD_INS (cfg->cbb, ins);   \
548         } while (0)
549
550 /* *
551  * link_bblock: Links two basic blocks
552  *
553  * links two basic blocks in the control flow graph, the 'from'
554  * argument is the starting block and the 'to' argument is the block
555  * the control flow ends to after 'from'.
556  */
557 static void
558 link_bblock (MonoCompile *cfg, MonoBasicBlock *from, MonoBasicBlock* to)
559 {
560         MonoBasicBlock **newa;
561         int i, found;
562
563 #if 0
564         if (from->cil_code) {
565                 if (to->cil_code)
566                         printf ("edge from IL%04x to IL_%04x\n", from->cil_code - cfg->cil_code, to->cil_code - cfg->cil_code);
567                 else
568                         printf ("edge from IL%04x to exit\n", from->cil_code - cfg->cil_code);
569         } else {
570                 if (to->cil_code)
571                         printf ("edge from entry to IL_%04x\n", to->cil_code - cfg->cil_code);
572                 else
573                         printf ("edge from entry to exit\n");
574         }
575 #endif
576
577         found = FALSE;
578         for (i = 0; i < from->out_count; ++i) {
579                 if (to == from->out_bb [i]) {
580                         found = TRUE;
581                         break;
582                 }
583         }
584         if (!found) {
585                 newa = (MonoBasicBlock **)mono_mempool_alloc (cfg->mempool, sizeof (gpointer) * (from->out_count + 1));
586                 for (i = 0; i < from->out_count; ++i) {
587                         newa [i] = from->out_bb [i];
588                 }
589                 newa [i] = to;
590                 from->out_count++;
591                 from->out_bb = newa;
592         }
593
594         found = FALSE;
595         for (i = 0; i < to->in_count; ++i) {
596                 if (from == to->in_bb [i]) {
597                         found = TRUE;
598                         break;
599                 }
600         }
601         if (!found) {
602                 newa = (MonoBasicBlock **)mono_mempool_alloc (cfg->mempool, sizeof (gpointer) * (to->in_count + 1));
603                 for (i = 0; i < to->in_count; ++i) {
604                         newa [i] = to->in_bb [i];
605                 }
606                 newa [i] = from;
607                 to->in_count++;
608                 to->in_bb = newa;
609         }
610 }
611
612 void
613 mono_link_bblock (MonoCompile *cfg, MonoBasicBlock *from, MonoBasicBlock* to)
614 {
615         link_bblock (cfg, from, to);
616 }
617
618 /**
619  * mono_find_block_region:
620  *
621  *   We mark each basic block with a region ID. We use that to avoid BB
622  *   optimizations when blocks are in different regions.
623  *
624  * Returns:
625  *   A region token that encodes where this region is, and information
626  *   about the clause owner for this block.
627  *
628  *   The region encodes the try/catch/filter clause that owns this block
629  *   as well as the type.  -1 is a special value that represents a block
630  *   that is in none of try/catch/filter.
631  */
632 static int
633 mono_find_block_region (MonoCompile *cfg, int offset)
634 {
635         MonoMethodHeader *header = cfg->header;
636         MonoExceptionClause *clause;
637         int i;
638
639         for (i = 0; i < header->num_clauses; ++i) {
640                 clause = &header->clauses [i];
641                 if ((clause->flags == MONO_EXCEPTION_CLAUSE_FILTER) && (offset >= clause->data.filter_offset) &&
642                     (offset < (clause->handler_offset)))
643                         return ((i + 1) << 8) | MONO_REGION_FILTER | clause->flags;
644                            
645                 if (MONO_OFFSET_IN_HANDLER (clause, offset)) {
646                         if (clause->flags == MONO_EXCEPTION_CLAUSE_FINALLY)
647                                 return ((i + 1) << 8) | MONO_REGION_FINALLY | clause->flags;
648                         else if (clause->flags == MONO_EXCEPTION_CLAUSE_FAULT)
649                                 return ((i + 1) << 8) | MONO_REGION_FAULT | clause->flags;
650                         else
651                                 return ((i + 1) << 8) | MONO_REGION_CATCH | clause->flags;
652                 }
653         }
654         for (i = 0; i < header->num_clauses; ++i) {
655                 clause = &header->clauses [i];
656
657                 if (MONO_OFFSET_IN_CLAUSE (clause, offset))
658                         return ((i + 1) << 8) | clause->flags;
659         }
660
661         return -1;
662 }
663
664 static gboolean
665 ip_in_finally_clause (MonoCompile *cfg, int offset)
666 {
667         MonoMethodHeader *header = cfg->header;
668         MonoExceptionClause *clause;
669         int i;
670
671         for (i = 0; i < header->num_clauses; ++i) {
672                 clause = &header->clauses [i];
673                 if (clause->flags != MONO_EXCEPTION_CLAUSE_FINALLY && clause->flags != MONO_EXCEPTION_CLAUSE_FAULT)
674                         continue;
675
676                 if (MONO_OFFSET_IN_HANDLER (clause, offset))
677                         return TRUE;
678         }
679         return FALSE;
680 }
681
682 static GList*
683 mono_find_final_block (MonoCompile *cfg, unsigned char *ip, unsigned char *target, int type)
684 {
685         MonoMethodHeader *header = cfg->header;
686         MonoExceptionClause *clause;
687         int i;
688         GList *res = NULL;
689
690         for (i = 0; i < header->num_clauses; ++i) {
691                 clause = &header->clauses [i];
692                 if (MONO_OFFSET_IN_CLAUSE (clause, (ip - header->code)) && 
693                     (!MONO_OFFSET_IN_CLAUSE (clause, (target - header->code)))) {
694                         if (clause->flags == type)
695                                 res = g_list_append (res, clause);
696                 }
697         }
698         return res;
699 }
700
701 static void
702 mono_create_spvar_for_region (MonoCompile *cfg, int region)
703 {
704         MonoInst *var;
705
706         var = (MonoInst *)g_hash_table_lookup (cfg->spvars, GINT_TO_POINTER (region));
707         if (var)
708                 return;
709
710         var = mono_compile_create_var (cfg, &mono_defaults.int_class->byval_arg, OP_LOCAL);
711         /* prevent it from being register allocated */
712         var->flags |= MONO_INST_VOLATILE;
713
714         g_hash_table_insert (cfg->spvars, GINT_TO_POINTER (region), var);
715 }
716
717 MonoInst *
718 mono_find_exvar_for_offset (MonoCompile *cfg, int offset)
719 {
720         return (MonoInst *)g_hash_table_lookup (cfg->exvars, GINT_TO_POINTER (offset));
721 }
722
723 static MonoInst*
724 mono_create_exvar_for_offset (MonoCompile *cfg, int offset)
725 {
726         MonoInst *var;
727
728         var = (MonoInst *)g_hash_table_lookup (cfg->exvars, GINT_TO_POINTER (offset));
729         if (var)
730                 return var;
731
732         var = mono_compile_create_var (cfg, &mono_defaults.object_class->byval_arg, OP_LOCAL);
733         /* prevent it from being register allocated */
734         var->flags |= MONO_INST_VOLATILE;
735
736         g_hash_table_insert (cfg->exvars, GINT_TO_POINTER (offset), var);
737
738         return var;
739 }
740
741 /*
742  * Returns the type used in the eval stack when @type is loaded.
743  * FIXME: return a MonoType/MonoClass for the byref and VALUETYPE cases.
744  */
745 void
746 type_to_eval_stack_type (MonoCompile *cfg, MonoType *type, MonoInst *inst)
747 {
748         MonoClass *klass;
749
750         type = mini_get_underlying_type (type);
751         inst->klass = klass = mono_class_from_mono_type (type);
752         if (type->byref) {
753                 inst->type = STACK_MP;
754                 return;
755         }
756
757 handle_enum:
758         switch (type->type) {
759         case MONO_TYPE_VOID:
760                 inst->type = STACK_INV;
761                 return;
762         case MONO_TYPE_I1:
763         case MONO_TYPE_U1:
764         case MONO_TYPE_I2:
765         case MONO_TYPE_U2:
766         case MONO_TYPE_I4:
767         case MONO_TYPE_U4:
768                 inst->type = STACK_I4;
769                 return;
770         case MONO_TYPE_I:
771         case MONO_TYPE_U:
772         case MONO_TYPE_PTR:
773         case MONO_TYPE_FNPTR:
774                 inst->type = STACK_PTR;
775                 return;
776         case MONO_TYPE_CLASS:
777         case MONO_TYPE_STRING:
778         case MONO_TYPE_OBJECT:
779         case MONO_TYPE_SZARRAY:
780         case MONO_TYPE_ARRAY:    
781                 inst->type = STACK_OBJ;
782                 return;
783         case MONO_TYPE_I8:
784         case MONO_TYPE_U8:
785                 inst->type = STACK_I8;
786                 return;
787         case MONO_TYPE_R4:
788                 inst->type = cfg->r4_stack_type;
789                 break;
790         case MONO_TYPE_R8:
791                 inst->type = STACK_R8;
792                 return;
793         case MONO_TYPE_VALUETYPE:
794                 if (type->data.klass->enumtype) {
795                         type = mono_class_enum_basetype (type->data.klass);
796                         goto handle_enum;
797                 } else {
798                         inst->klass = klass;
799                         inst->type = STACK_VTYPE;
800                         return;
801                 }
802         case MONO_TYPE_TYPEDBYREF:
803                 inst->klass = mono_defaults.typed_reference_class;
804                 inst->type = STACK_VTYPE;
805                 return;
806         case MONO_TYPE_GENERICINST:
807                 type = &type->data.generic_class->container_class->byval_arg;
808                 goto handle_enum;
809         case MONO_TYPE_VAR:
810         case MONO_TYPE_MVAR:
811                 g_assert (cfg->gshared);
812                 if (mini_is_gsharedvt_type (type)) {
813                         g_assert (cfg->gsharedvt);
814                         inst->type = STACK_VTYPE;
815                 } else {
816                         type_to_eval_stack_type (cfg, mini_get_underlying_type (type), inst);
817                 }
818                 return;
819         default:
820                 g_error ("unknown type 0x%02x in eval stack type", type->type);
821         }
822 }
823
824 /*
825  * The following tables are used to quickly validate the IL code in type_from_op ().
826  */
827 static const char
828 bin_num_table [STACK_MAX] [STACK_MAX] = {
829         {STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV},
830         {STACK_INV, STACK_I4,  STACK_INV, STACK_PTR, STACK_INV, STACK_MP,  STACK_INV, STACK_INV},
831         {STACK_INV, STACK_INV, STACK_I8,  STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV},
832         {STACK_INV, STACK_PTR, STACK_INV, STACK_PTR, STACK_INV, STACK_MP,  STACK_INV, STACK_INV},
833         {STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_R8,  STACK_INV, STACK_INV, STACK_INV, STACK_R8},
834         {STACK_INV, STACK_MP,  STACK_INV, STACK_MP,  STACK_INV, STACK_PTR, STACK_INV, STACK_INV},
835         {STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV},
836         {STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV},
837         {STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_R8, STACK_INV, STACK_INV, STACK_INV, STACK_R4}
838 };
839
840 static const char 
841 neg_table [] = {
842         STACK_INV, STACK_I4, STACK_I8, STACK_PTR, STACK_R8, STACK_INV, STACK_INV, STACK_INV, STACK_R4
843 };
844
845 /* reduce the size of this table */
846 static const char
847 bin_int_table [STACK_MAX] [STACK_MAX] = {
848         {STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV},
849         {STACK_INV, STACK_I4,  STACK_INV, STACK_PTR, STACK_INV, STACK_INV, STACK_INV, STACK_INV},
850         {STACK_INV, STACK_INV, STACK_I8,  STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV},
851         {STACK_INV, STACK_PTR, STACK_INV, STACK_PTR, STACK_INV, STACK_INV, STACK_INV, STACK_INV},
852         {STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV},
853         {STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV},
854         {STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV},
855         {STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV}
856 };
857
858 static const char
859 bin_comp_table [STACK_MAX] [STACK_MAX] = {
860 /*      Inv i  L  p  F  &  O  vt r4 */
861         {0},
862         {0, 1, 0, 1, 0, 0, 0, 0}, /* i, int32 */
863         {0, 0, 1, 0, 0, 0, 0, 0}, /* L, int64 */
864         {0, 1, 0, 1, 0, 2, 4, 0}, /* p, ptr */
865         {0, 0, 0, 0, 1, 0, 0, 0, 1}, /* F, R8 */
866         {0, 0, 0, 2, 0, 1, 0, 0}, /* &, managed pointer */
867         {0, 0, 0, 4, 0, 0, 3, 0}, /* O, reference */
868         {0, 0, 0, 0, 0, 0, 0, 0}, /* vt value type */
869         {0, 0, 0, 0, 1, 0, 0, 0, 1}, /* r, r4 */
870 };
871
872 /* reduce the size of this table */
873 static const char
874 shift_table [STACK_MAX] [STACK_MAX] = {
875         {STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV},
876         {STACK_INV, STACK_I4,  STACK_INV, STACK_I4,  STACK_INV, STACK_INV, STACK_INV, STACK_INV},
877         {STACK_INV, STACK_I8,  STACK_INV, STACK_I8,  STACK_INV, STACK_INV, STACK_INV, STACK_INV},
878         {STACK_INV, STACK_PTR, STACK_INV, STACK_PTR, STACK_INV, STACK_INV, STACK_INV, STACK_INV},
879         {STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV},
880         {STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV},
881         {STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV},
882         {STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV, STACK_INV}
883 };
884
885 /*
886  * Tables to map from the non-specific opcode to the matching
887  * type-specific opcode.
888  */
889 /* handles from CEE_ADD to CEE_SHR_UN (CEE_REM_UN for floats) */
890 static const guint16
891 binops_op_map [STACK_MAX] = {
892         0, OP_IADD-CEE_ADD, OP_LADD-CEE_ADD, OP_PADD-CEE_ADD, OP_FADD-CEE_ADD, OP_PADD-CEE_ADD, 0, 0, OP_RADD-CEE_ADD
893 };
894
895 /* handles from CEE_NEG to CEE_CONV_U8 */
896 static const guint16
897 unops_op_map [STACK_MAX] = {
898         0, OP_INEG-CEE_NEG, OP_LNEG-CEE_NEG, OP_PNEG-CEE_NEG, OP_FNEG-CEE_NEG, OP_PNEG-CEE_NEG, 0, 0, OP_RNEG-CEE_NEG
899 };
900
901 /* handles from CEE_CONV_U2 to CEE_SUB_OVF_UN */
902 static const guint16
903 ovfops_op_map [STACK_MAX] = {
904         0, OP_ICONV_TO_U2-CEE_CONV_U2, OP_LCONV_TO_U2-CEE_CONV_U2, OP_PCONV_TO_U2-CEE_CONV_U2, OP_FCONV_TO_U2-CEE_CONV_U2, OP_PCONV_TO_U2-CEE_CONV_U2, OP_PCONV_TO_U2-CEE_CONV_U2, 0, OP_RCONV_TO_U2-CEE_CONV_U2
905 };
906
907 /* handles from CEE_CONV_OVF_I1_UN to CEE_CONV_OVF_U_UN */
908 static const guint16
909 ovf2ops_op_map [STACK_MAX] = {
910         0, OP_ICONV_TO_OVF_I1_UN-CEE_CONV_OVF_I1_UN, OP_LCONV_TO_OVF_I1_UN-CEE_CONV_OVF_I1_UN, OP_PCONV_TO_OVF_I1_UN-CEE_CONV_OVF_I1_UN, OP_FCONV_TO_OVF_I1_UN-CEE_CONV_OVF_I1_UN, OP_PCONV_TO_OVF_I1_UN-CEE_CONV_OVF_I1_UN, 0, 0, OP_RCONV_TO_OVF_I1_UN-CEE_CONV_OVF_I1_UN
911 };
912
913 /* handles from CEE_CONV_OVF_I1 to CEE_CONV_OVF_U8 */
914 static const guint16
915 ovf3ops_op_map [STACK_MAX] = {
916         0, OP_ICONV_TO_OVF_I1-CEE_CONV_OVF_I1, OP_LCONV_TO_OVF_I1-CEE_CONV_OVF_I1, OP_PCONV_TO_OVF_I1-CEE_CONV_OVF_I1, OP_FCONV_TO_OVF_I1-CEE_CONV_OVF_I1, OP_PCONV_TO_OVF_I1-CEE_CONV_OVF_I1, 0, 0, OP_RCONV_TO_OVF_I1-CEE_CONV_OVF_I1
917 };
918
919 /* handles from CEE_BEQ to CEE_BLT_UN */
920 static const guint16
921 beqops_op_map [STACK_MAX] = {
922         0, OP_IBEQ-CEE_BEQ, OP_LBEQ-CEE_BEQ, OP_PBEQ-CEE_BEQ, OP_FBEQ-CEE_BEQ, OP_PBEQ-CEE_BEQ, OP_PBEQ-CEE_BEQ, 0, OP_FBEQ-CEE_BEQ
923 };
924
925 /* handles from CEE_CEQ to CEE_CLT_UN */
926 static const guint16
927 ceqops_op_map [STACK_MAX] = {
928         0, OP_ICEQ-OP_CEQ, OP_LCEQ-OP_CEQ, OP_PCEQ-OP_CEQ, OP_FCEQ-OP_CEQ, OP_PCEQ-OP_CEQ, OP_PCEQ-OP_CEQ, 0, OP_RCEQ-OP_CEQ
929 };
930
931 /*
932  * Sets ins->type (the type on the eval stack) according to the
933  * type of the opcode and the arguments to it.
934  * Invalid IL code is marked by setting ins->type to the invalid value STACK_INV.
935  *
936  * FIXME: this function sets ins->type unconditionally in some cases, but
937  * it should set it to invalid for some types (a conv.x on an object)
938  */
939 static void
940 type_from_op (MonoCompile *cfg, MonoInst *ins, MonoInst *src1, MonoInst *src2)
941 {
942         switch (ins->opcode) {
943         /* binops */
944         case CEE_ADD:
945         case CEE_SUB:
946         case CEE_MUL:
947         case CEE_DIV:
948         case CEE_REM:
949                 /* FIXME: check unverifiable args for STACK_MP */
950                 ins->type = bin_num_table [src1->type] [src2->type];
951                 ins->opcode += binops_op_map [ins->type];
952                 break;
953         case CEE_DIV_UN:
954         case CEE_REM_UN:
955         case CEE_AND:
956         case CEE_OR:
957         case CEE_XOR:
958                 ins->type = bin_int_table [src1->type] [src2->type];
959                 ins->opcode += binops_op_map [ins->type];
960                 break;
961         case CEE_SHL:
962         case CEE_SHR:
963         case CEE_SHR_UN:
964                 ins->type = shift_table [src1->type] [src2->type];
965                 ins->opcode += binops_op_map [ins->type];
966                 break;
967         case OP_COMPARE:
968         case OP_LCOMPARE:
969         case OP_ICOMPARE:
970                 ins->type = bin_comp_table [src1->type] [src2->type] ? STACK_I4: STACK_INV;
971                 if ((src1->type == STACK_I8) || ((SIZEOF_VOID_P == 8) && ((src1->type == STACK_PTR) || (src1->type == STACK_OBJ) || (src1->type == STACK_MP))))
972                         ins->opcode = OP_LCOMPARE;
973                 else if (src1->type == STACK_R4)
974                         ins->opcode = OP_RCOMPARE;
975                 else if (src1->type == STACK_R8)
976                         ins->opcode = OP_FCOMPARE;
977                 else
978                         ins->opcode = OP_ICOMPARE;
979                 break;
980         case OP_ICOMPARE_IMM:
981                 ins->type = bin_comp_table [src1->type] [src1->type] ? STACK_I4 : STACK_INV;
982                 if ((src1->type == STACK_I8) || ((SIZEOF_VOID_P == 8) && ((src1->type == STACK_PTR) || (src1->type == STACK_OBJ) || (src1->type == STACK_MP))))
983                         ins->opcode = OP_LCOMPARE_IMM;          
984                 break;
985         case CEE_BEQ:
986         case CEE_BGE:
987         case CEE_BGT:
988         case CEE_BLE:
989         case CEE_BLT:
990         case CEE_BNE_UN:
991         case CEE_BGE_UN:
992         case CEE_BGT_UN:
993         case CEE_BLE_UN:
994         case CEE_BLT_UN:
995                 ins->opcode += beqops_op_map [src1->type];
996                 break;
997         case OP_CEQ:
998                 ins->type = bin_comp_table [src1->type] [src2->type] ? STACK_I4: STACK_INV;
999                 ins->opcode += ceqops_op_map [src1->type];
1000                 break;
1001         case OP_CGT:
1002         case OP_CGT_UN:
1003         case OP_CLT:
1004         case OP_CLT_UN:
1005                 ins->type = (bin_comp_table [src1->type] [src2->type] & 1) ? STACK_I4: STACK_INV;
1006                 ins->opcode += ceqops_op_map [src1->type];
1007                 break;
1008         /* unops */
1009         case CEE_NEG:
1010                 ins->type = neg_table [src1->type];
1011                 ins->opcode += unops_op_map [ins->type];
1012                 break;
1013         case CEE_NOT:
1014                 if (src1->type >= STACK_I4 && src1->type <= STACK_PTR)
1015                         ins->type = src1->type;
1016                 else
1017                         ins->type = STACK_INV;
1018                 ins->opcode += unops_op_map [ins->type];
1019                 break;
1020         case CEE_CONV_I1:
1021         case CEE_CONV_I2:
1022         case CEE_CONV_I4:
1023         case CEE_CONV_U4:
1024                 ins->type = STACK_I4;
1025                 ins->opcode += unops_op_map [src1->type];
1026                 break;
1027         case CEE_CONV_R_UN:
1028                 ins->type = STACK_R8;
1029                 switch (src1->type) {
1030                 case STACK_I4:
1031                 case STACK_PTR:
1032                         ins->opcode = OP_ICONV_TO_R_UN;
1033                         break;
1034                 case STACK_I8:
1035                         ins->opcode = OP_LCONV_TO_R_UN; 
1036                         break;
1037                 }
1038                 break;
1039         case CEE_CONV_OVF_I1:
1040         case CEE_CONV_OVF_U1:
1041         case CEE_CONV_OVF_I2:
1042         case CEE_CONV_OVF_U2:
1043         case CEE_CONV_OVF_I4:
1044         case CEE_CONV_OVF_U4:
1045                 ins->type = STACK_I4;
1046                 ins->opcode += ovf3ops_op_map [src1->type];
1047                 break;
1048         case CEE_CONV_OVF_I_UN:
1049         case CEE_CONV_OVF_U_UN:
1050                 ins->type = STACK_PTR;
1051                 ins->opcode += ovf2ops_op_map [src1->type];
1052                 break;
1053         case CEE_CONV_OVF_I1_UN:
1054         case CEE_CONV_OVF_I2_UN:
1055         case CEE_CONV_OVF_I4_UN:
1056         case CEE_CONV_OVF_U1_UN:
1057         case CEE_CONV_OVF_U2_UN:
1058         case CEE_CONV_OVF_U4_UN:
1059                 ins->type = STACK_I4;
1060                 ins->opcode += ovf2ops_op_map [src1->type];
1061                 break;
1062         case CEE_CONV_U:
1063                 ins->type = STACK_PTR;
1064                 switch (src1->type) {
1065                 case STACK_I4:
1066                         ins->opcode = OP_ICONV_TO_U;
1067                         break;
1068                 case STACK_PTR:
1069                 case STACK_MP:
1070 #if SIZEOF_VOID_P == 8
1071                         ins->opcode = OP_LCONV_TO_U;
1072 #else
1073                         ins->opcode = OP_MOVE;
1074 #endif
1075                         break;
1076                 case STACK_I8:
1077                         ins->opcode = OP_LCONV_TO_U;
1078                         break;
1079                 case STACK_R8:
1080                         ins->opcode = OP_FCONV_TO_U;
1081                         break;
1082                 }
1083                 break;
1084         case CEE_CONV_I8:
1085         case CEE_CONV_U8:
1086                 ins->type = STACK_I8;
1087                 ins->opcode += unops_op_map [src1->type];
1088                 break;
1089         case CEE_CONV_OVF_I8:
1090         case CEE_CONV_OVF_U8:
1091                 ins->type = STACK_I8;
1092                 ins->opcode += ovf3ops_op_map [src1->type];
1093                 break;
1094         case CEE_CONV_OVF_U8_UN:
1095         case CEE_CONV_OVF_I8_UN:
1096                 ins->type = STACK_I8;
1097                 ins->opcode += ovf2ops_op_map [src1->type];
1098                 break;
1099         case CEE_CONV_R4:
1100                 ins->type = cfg->r4_stack_type;
1101                 ins->opcode += unops_op_map [src1->type];
1102                 break;
1103         case CEE_CONV_R8:
1104                 ins->type = STACK_R8;
1105                 ins->opcode += unops_op_map [src1->type];
1106                 break;
1107         case OP_CKFINITE:
1108                 ins->type = STACK_R8;           
1109                 break;
1110         case CEE_CONV_U2:
1111         case CEE_CONV_U1:
1112                 ins->type = STACK_I4;
1113                 ins->opcode += ovfops_op_map [src1->type];
1114                 break;
1115         case CEE_CONV_I:
1116         case CEE_CONV_OVF_I:
1117         case CEE_CONV_OVF_U:
1118                 ins->type = STACK_PTR;
1119                 ins->opcode += ovfops_op_map [src1->type];
1120                 break;
1121         case CEE_ADD_OVF:
1122         case CEE_ADD_OVF_UN:
1123         case CEE_MUL_OVF:
1124         case CEE_MUL_OVF_UN:
1125         case CEE_SUB_OVF:
1126         case CEE_SUB_OVF_UN:
1127                 ins->type = bin_num_table [src1->type] [src2->type];
1128                 ins->opcode += ovfops_op_map [src1->type];
1129                 if (ins->type == STACK_R8)
1130                         ins->type = STACK_INV;
1131                 break;
1132         case OP_LOAD_MEMBASE:
1133                 ins->type = STACK_PTR;
1134                 break;
1135         case OP_LOADI1_MEMBASE:
1136         case OP_LOADU1_MEMBASE:
1137         case OP_LOADI2_MEMBASE:
1138         case OP_LOADU2_MEMBASE:
1139         case OP_LOADI4_MEMBASE:
1140         case OP_LOADU4_MEMBASE:
1141                 ins->type = STACK_PTR;
1142                 break;
1143         case OP_LOADI8_MEMBASE:
1144                 ins->type = STACK_I8;
1145                 break;
1146         case OP_LOADR4_MEMBASE:
1147                 ins->type = cfg->r4_stack_type;
1148                 break;
1149         case OP_LOADR8_MEMBASE:
1150                 ins->type = STACK_R8;
1151                 break;
1152         default:
1153                 g_error ("opcode 0x%04x not handled in type from op", ins->opcode);
1154                 break;
1155         }
1156
1157         if (ins->type == STACK_MP)
1158                 ins->klass = mono_defaults.object_class;
1159 }
1160
1161 static const char 
1162 ldind_type [] = {
1163         STACK_I4, STACK_I4, STACK_I4, STACK_I4, STACK_I4, STACK_I4, STACK_I8, STACK_PTR, STACK_R8, STACK_R8, STACK_OBJ
1164 };
1165
1166 #if 0
1167
1168 static const char
1169 param_table [STACK_MAX] [STACK_MAX] = {
1170         {0},
1171 };
1172
1173 static int
1174 check_values_to_signature (MonoInst *args, MonoType *this_ins, MonoMethodSignature *sig)
1175 {
1176         int i;
1177
1178         if (sig->hasthis) {
1179                 switch (args->type) {
1180                 case STACK_I4:
1181                 case STACK_I8:
1182                 case STACK_R8:
1183                 case STACK_VTYPE:
1184                 case STACK_INV:
1185                         return 0;
1186                 }
1187                 args++;
1188         }
1189         for (i = 0; i < sig->param_count; ++i) {
1190                 switch (args [i].type) {
1191                 case STACK_INV:
1192                         return 0;
1193                 case STACK_MP:
1194                         if (!sig->params [i]->byref)
1195                                 return 0;
1196                         continue;
1197                 case STACK_OBJ:
1198                         if (sig->params [i]->byref)
1199                                 return 0;
1200                         switch (sig->params [i]->type) {
1201                         case MONO_TYPE_CLASS:
1202                         case MONO_TYPE_STRING:
1203                         case MONO_TYPE_OBJECT:
1204                         case MONO_TYPE_SZARRAY:
1205                         case MONO_TYPE_ARRAY:
1206                                 break;
1207                         default:
1208                                 return 0;
1209                         }
1210                         continue;
1211                 case STACK_R8:
1212                         if (sig->params [i]->byref)
1213                                 return 0;
1214                         if (sig->params [i]->type != MONO_TYPE_R4 && sig->params [i]->type != MONO_TYPE_R8)
1215                                 return 0;
1216                         continue;
1217                 case STACK_PTR:
1218                 case STACK_I4:
1219                 case STACK_I8:
1220                 case STACK_VTYPE:
1221                         break;
1222                 }
1223                 /*if (!param_table [args [i].type] [sig->params [i]->type])
1224                         return 0;*/
1225         }
1226         return 1;
1227 }
1228 #endif
1229
1230 /*
1231  * When we need a pointer to the current domain many times in a method, we
1232  * call mono_domain_get() once and we store the result in a local variable.
1233  * This function returns the variable that represents the MonoDomain*.
1234  */
1235 inline static MonoInst *
1236 mono_get_domainvar (MonoCompile *cfg)
1237 {
1238         if (!cfg->domainvar)
1239                 cfg->domainvar = mono_compile_create_var (cfg, &mono_defaults.int_class->byval_arg, OP_LOCAL);
1240         return cfg->domainvar;
1241 }
1242
1243 /*
1244  * The got_var contains the address of the Global Offset Table when AOT 
1245  * compiling.
1246  */
1247 MonoInst *
1248 mono_get_got_var (MonoCompile *cfg)
1249 {
1250         if (!cfg->compile_aot || !cfg->backend->need_got_var)
1251                 return NULL;
1252         if (!cfg->got_var) {
1253                 cfg->got_var = mono_compile_create_var (cfg, &mono_defaults.int_class->byval_arg, OP_LOCAL);
1254         }
1255         return cfg->got_var;
1256 }
1257
1258 static MonoInst *
1259 mono_get_vtable_var (MonoCompile *cfg)
1260 {
1261         g_assert (cfg->gshared);
1262
1263         if (!cfg->rgctx_var) {
1264                 cfg->rgctx_var = mono_compile_create_var (cfg, &mono_defaults.int_class->byval_arg, OP_LOCAL);
1265                 /* force the var to be stack allocated */
1266                 cfg->rgctx_var->flags |= MONO_INST_VOLATILE;
1267         }
1268
1269         return cfg->rgctx_var;
1270 }
1271
1272 static MonoType*
1273 type_from_stack_type (MonoInst *ins) {
1274         switch (ins->type) {
1275         case STACK_I4: return &mono_defaults.int32_class->byval_arg;
1276         case STACK_I8: return &mono_defaults.int64_class->byval_arg;
1277         case STACK_PTR: return &mono_defaults.int_class->byval_arg;
1278         case STACK_R4: return &mono_defaults.single_class->byval_arg;
1279         case STACK_R8: return &mono_defaults.double_class->byval_arg;
1280         case STACK_MP:
1281                 return &ins->klass->this_arg;
1282         case STACK_OBJ: return &mono_defaults.object_class->byval_arg;
1283         case STACK_VTYPE: return &ins->klass->byval_arg;
1284         default:
1285                 g_error ("stack type %d to monotype not handled\n", ins->type);
1286         }
1287         return NULL;
1288 }
1289
1290 static G_GNUC_UNUSED int
1291 type_to_stack_type (MonoCompile *cfg, MonoType *t)
1292 {
1293         t = mono_type_get_underlying_type (t);
1294         switch (t->type) {
1295         case MONO_TYPE_I1:
1296         case MONO_TYPE_U1:
1297         case MONO_TYPE_I2:
1298         case MONO_TYPE_U2:
1299         case MONO_TYPE_I4:
1300         case MONO_TYPE_U4:
1301                 return STACK_I4;
1302         case MONO_TYPE_I:
1303         case MONO_TYPE_U:
1304         case MONO_TYPE_PTR:
1305         case MONO_TYPE_FNPTR:
1306                 return STACK_PTR;
1307         case MONO_TYPE_CLASS:
1308         case MONO_TYPE_STRING:
1309         case MONO_TYPE_OBJECT:
1310         case MONO_TYPE_SZARRAY:
1311         case MONO_TYPE_ARRAY:    
1312                 return STACK_OBJ;
1313         case MONO_TYPE_I8:
1314         case MONO_TYPE_U8:
1315                 return STACK_I8;
1316         case MONO_TYPE_R4:
1317                 return cfg->r4_stack_type;
1318         case MONO_TYPE_R8:
1319                 return STACK_R8;
1320         case MONO_TYPE_VALUETYPE:
1321         case MONO_TYPE_TYPEDBYREF:
1322                 return STACK_VTYPE;
1323         case MONO_TYPE_GENERICINST:
1324                 if (mono_type_generic_inst_is_valuetype (t))
1325                         return STACK_VTYPE;
1326                 else
1327                         return STACK_OBJ;
1328                 break;
1329         default:
1330                 g_assert_not_reached ();
1331         }
1332
1333         return -1;
1334 }
1335
1336 static MonoClass*
1337 array_access_to_klass (int opcode)
1338 {
1339         switch (opcode) {
1340         case CEE_LDELEM_U1:
1341                 return mono_defaults.byte_class;
1342         case CEE_LDELEM_U2:
1343                 return mono_defaults.uint16_class;
1344         case CEE_LDELEM_I:
1345         case CEE_STELEM_I:
1346                 return mono_defaults.int_class;
1347         case CEE_LDELEM_I1:
1348         case CEE_STELEM_I1:
1349                 return mono_defaults.sbyte_class;
1350         case CEE_LDELEM_I2:
1351         case CEE_STELEM_I2:
1352                 return mono_defaults.int16_class;
1353         case CEE_LDELEM_I4:
1354         case CEE_STELEM_I4:
1355                 return mono_defaults.int32_class;
1356         case CEE_LDELEM_U4:
1357                 return mono_defaults.uint32_class;
1358         case CEE_LDELEM_I8:
1359         case CEE_STELEM_I8:
1360                 return mono_defaults.int64_class;
1361         case CEE_LDELEM_R4:
1362         case CEE_STELEM_R4:
1363                 return mono_defaults.single_class;
1364         case CEE_LDELEM_R8:
1365         case CEE_STELEM_R8:
1366                 return mono_defaults.double_class;
1367         case CEE_LDELEM_REF:
1368         case CEE_STELEM_REF:
1369                 return mono_defaults.object_class;
1370         default:
1371                 g_assert_not_reached ();
1372         }
1373         return NULL;
1374 }
1375
1376 /*
1377  * We try to share variables when possible
1378  */
1379 static MonoInst *
1380 mono_compile_get_interface_var (MonoCompile *cfg, int slot, MonoInst *ins)
1381 {
1382         MonoInst *res;
1383         int pos, vnum;
1384
1385         /* inlining can result in deeper stacks */ 
1386         if (slot >= cfg->header->max_stack)
1387                 return mono_compile_create_var (cfg, type_from_stack_type (ins), OP_LOCAL);
1388
1389         pos = ins->type - 1 + slot * STACK_MAX;
1390
1391         switch (ins->type) {
1392         case STACK_I4:
1393         case STACK_I8:
1394         case STACK_R8:
1395         case STACK_PTR:
1396         case STACK_MP:
1397         case STACK_OBJ:
1398                 if ((vnum = cfg->intvars [pos]))
1399                         return cfg->varinfo [vnum];
1400                 res = mono_compile_create_var (cfg, type_from_stack_type (ins), OP_LOCAL);
1401                 cfg->intvars [pos] = res->inst_c0;
1402                 break;
1403         default:
1404                 res = mono_compile_create_var (cfg, type_from_stack_type (ins), OP_LOCAL);
1405         }
1406         return res;
1407 }
1408
1409 static void
1410 mono_save_token_info (MonoCompile *cfg, MonoImage *image, guint32 token, gpointer key)
1411 {
1412         /* 
1413          * Don't use this if a generic_context is set, since that means AOT can't
1414          * look up the method using just the image+token.
1415          * table == 0 means this is a reference made from a wrapper.
1416          */
1417         if (cfg->compile_aot && !cfg->generic_context && (mono_metadata_token_table (token) > 0)) {
1418                 MonoJumpInfoToken *jump_info_token = (MonoJumpInfoToken *)mono_mempool_alloc0 (cfg->mempool, sizeof (MonoJumpInfoToken));
1419                 jump_info_token->image = image;
1420                 jump_info_token->token = token;
1421                 g_hash_table_insert (cfg->token_info_hash, key, jump_info_token);
1422         }
1423 }
1424
1425 /*
1426  * This function is called to handle items that are left on the evaluation stack
1427  * at basic block boundaries. What happens is that we save the values to local variables
1428  * and we reload them later when first entering the target basic block (with the
1429  * handle_loaded_temps () function).
1430  * A single joint point will use the same variables (stored in the array bb->out_stack or
1431  * bb->in_stack, if the basic block is before or after the joint point).
1432  *
1433  * This function needs to be called _before_ emitting the last instruction of
1434  * the bb (i.e. before emitting a branch).
1435  * If the stack merge fails at a join point, cfg->unverifiable is set.
1436  */
1437 static void
1438 handle_stack_args (MonoCompile *cfg, MonoInst **sp, int count)
1439 {
1440         int i, bindex;
1441         MonoBasicBlock *bb = cfg->cbb;
1442         MonoBasicBlock *outb;
1443         MonoInst *inst, **locals;
1444         gboolean found;
1445
1446         if (!count)
1447                 return;
1448         if (cfg->verbose_level > 3)
1449                 printf ("%d item(s) on exit from B%d\n", count, bb->block_num);
1450         if (!bb->out_scount) {
1451                 bb->out_scount = count;
1452                 //printf ("bblock %d has out:", bb->block_num);
1453                 found = FALSE;
1454                 for (i = 0; i < bb->out_count; ++i) {
1455                         outb = bb->out_bb [i];
1456                         /* exception handlers are linked, but they should not be considered for stack args */
1457                         if (outb->flags & BB_EXCEPTION_HANDLER)
1458                                 continue;
1459                         //printf (" %d", outb->block_num);
1460                         if (outb->in_stack) {
1461                                 found = TRUE;
1462                                 bb->out_stack = outb->in_stack;
1463                                 break;
1464                         }
1465                 }
1466                 //printf ("\n");
1467                 if (!found) {
1468                         bb->out_stack = (MonoInst **)mono_mempool_alloc (cfg->mempool, sizeof (MonoInst*) * count);
1469                         for (i = 0; i < count; ++i) {
1470                                 /* 
1471                                  * try to reuse temps already allocated for this purpouse, if they occupy the same
1472                                  * stack slot and if they are of the same type.
1473                                  * This won't cause conflicts since if 'local' is used to 
1474                                  * store one of the values in the in_stack of a bblock, then
1475                                  * the same variable will be used for the same outgoing stack 
1476                                  * slot as well. 
1477                                  * This doesn't work when inlining methods, since the bblocks
1478                                  * in the inlined methods do not inherit their in_stack from
1479                                  * the bblock they are inlined to. See bug #58863 for an
1480                                  * example.
1481                                  */
1482                                 if (cfg->inlined_method)
1483                                         bb->out_stack [i] = mono_compile_create_var (cfg, type_from_stack_type (sp [i]), OP_LOCAL);
1484                                 else
1485                                         bb->out_stack [i] = mono_compile_get_interface_var (cfg, i, sp [i]);
1486                         }
1487                 }
1488         }
1489
1490         for (i = 0; i < bb->out_count; ++i) {
1491                 outb = bb->out_bb [i];
1492                 /* exception handlers are linked, but they should not be considered for stack args */
1493                 if (outb->flags & BB_EXCEPTION_HANDLER)
1494                         continue;
1495                 if (outb->in_scount) {
1496                         if (outb->in_scount != bb->out_scount) {
1497                                 cfg->unverifiable = TRUE;
1498                                 return;
1499                         }
1500                         continue; /* check they are the same locals */
1501                 }
1502                 outb->in_scount = count;
1503                 outb->in_stack = bb->out_stack;
1504         }
1505
1506         locals = bb->out_stack;
1507         cfg->cbb = bb;
1508         for (i = 0; i < count; ++i) {
1509                 EMIT_NEW_TEMPSTORE (cfg, inst, locals [i]->inst_c0, sp [i]);
1510                 inst->cil_code = sp [i]->cil_code;
1511                 sp [i] = locals [i];
1512                 if (cfg->verbose_level > 3)
1513                         printf ("storing %d to temp %d\n", i, (int)locals [i]->inst_c0);
1514         }
1515
1516         /*
1517          * It is possible that the out bblocks already have in_stack assigned, and
1518          * the in_stacks differ. In this case, we will store to all the different 
1519          * in_stacks.
1520          */
1521
1522         found = TRUE;
1523         bindex = 0;
1524         while (found) {
1525                 /* Find a bblock which has a different in_stack */
1526                 found = FALSE;
1527                 while (bindex < bb->out_count) {
1528                         outb = bb->out_bb [bindex];
1529                         /* exception handlers are linked, but they should not be considered for stack args */
1530                         if (outb->flags & BB_EXCEPTION_HANDLER) {
1531                                 bindex++;
1532                                 continue;
1533                         }
1534                         if (outb->in_stack != locals) {
1535                                 for (i = 0; i < count; ++i) {
1536                                         EMIT_NEW_TEMPSTORE (cfg, inst, outb->in_stack [i]->inst_c0, sp [i]);
1537                                         inst->cil_code = sp [i]->cil_code;
1538                                         sp [i] = locals [i];
1539                                         if (cfg->verbose_level > 3)
1540                                                 printf ("storing %d to temp %d\n", i, (int)outb->in_stack [i]->inst_c0);
1541                                 }
1542                                 locals = outb->in_stack;
1543                                 found = TRUE;
1544                                 break;
1545                         }
1546                         bindex ++;
1547                 }
1548         }
1549 }
1550
1551 static MonoInst*
1552 emit_runtime_constant (MonoCompile *cfg, MonoJumpInfoType patch_type, gpointer data)
1553 {
1554         MonoInst *ins;
1555
1556         if (cfg->compile_aot) {
1557                 EMIT_NEW_AOTCONST (cfg, ins, patch_type, data);
1558         } else {
1559                 MonoJumpInfo ji;
1560                 gpointer target;
1561                 MonoError error;
1562
1563                 ji.type = patch_type;
1564                 ji.data.target = data;
1565                 target = mono_resolve_patch_target (NULL, cfg->domain, NULL, &ji, FALSE, &error);
1566                 mono_error_assert_ok (&error);
1567
1568                 EMIT_NEW_PCONST (cfg, ins, target);
1569         }
1570         return ins;
1571 }
1572
1573 static void
1574 mini_emit_interface_bitmap_check (MonoCompile *cfg, int intf_bit_reg, int base_reg, int offset, MonoClass *klass)
1575 {
1576         int ibitmap_reg = alloc_preg (cfg);
1577 #ifdef COMPRESSED_INTERFACE_BITMAP
1578         MonoInst *args [2];
1579         MonoInst *res, *ins;
1580         NEW_LOAD_MEMBASE (cfg, ins, OP_LOAD_MEMBASE, ibitmap_reg, base_reg, offset);
1581         MONO_ADD_INS (cfg->cbb, ins);
1582         args [0] = ins;
1583         args [1] = emit_runtime_constant (cfg, MONO_PATCH_INFO_IID, klass);
1584         res = mono_emit_jit_icall (cfg, mono_class_interface_match, args);
1585         MONO_EMIT_NEW_UNALU (cfg, OP_MOVE, intf_bit_reg, res->dreg);
1586 #else
1587         int ibitmap_byte_reg = alloc_preg (cfg);
1588
1589         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, ibitmap_reg, base_reg, offset);
1590
1591         if (cfg->compile_aot) {
1592                 int iid_reg = alloc_preg (cfg);
1593                 int shifted_iid_reg = alloc_preg (cfg);
1594                 int ibitmap_byte_address_reg = alloc_preg (cfg);
1595                 int masked_iid_reg = alloc_preg (cfg);
1596                 int iid_one_bit_reg = alloc_preg (cfg);
1597                 int iid_bit_reg = alloc_preg (cfg);
1598                 MONO_EMIT_NEW_AOTCONST (cfg, iid_reg, klass, MONO_PATCH_INFO_IID);
1599                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_SHR_IMM, shifted_iid_reg, iid_reg, 3);
1600                 MONO_EMIT_NEW_BIALU (cfg, OP_PADD, ibitmap_byte_address_reg, ibitmap_reg, shifted_iid_reg);
1601                 MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADU1_MEMBASE, ibitmap_byte_reg, ibitmap_byte_address_reg, 0);
1602                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_IAND_IMM, masked_iid_reg, iid_reg, 7);
1603                 MONO_EMIT_NEW_ICONST (cfg, iid_one_bit_reg, 1);
1604                 MONO_EMIT_NEW_BIALU (cfg, OP_ISHL, iid_bit_reg, iid_one_bit_reg, masked_iid_reg);
1605                 MONO_EMIT_NEW_BIALU (cfg, OP_IAND, intf_bit_reg, ibitmap_byte_reg, iid_bit_reg);
1606         } else {
1607                 MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADI1_MEMBASE, ibitmap_byte_reg, ibitmap_reg, klass->interface_id >> 3);
1608                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_AND_IMM, intf_bit_reg, ibitmap_byte_reg, 1 << (klass->interface_id & 7));
1609         }
1610 #endif
1611 }
1612
1613 /* 
1614  * Emit code which loads into "intf_bit_reg" a nonzero value if the MonoClass
1615  * stored in "klass_reg" implements the interface "klass".
1616  */
1617 static void
1618 mini_emit_load_intf_bit_reg_class (MonoCompile *cfg, int intf_bit_reg, int klass_reg, MonoClass *klass)
1619 {
1620         mini_emit_interface_bitmap_check (cfg, intf_bit_reg, klass_reg, MONO_STRUCT_OFFSET (MonoClass, interface_bitmap), klass);
1621 }
1622
1623 /* 
1624  * Emit code which loads into "intf_bit_reg" a nonzero value if the MonoVTable
1625  * stored in "vtable_reg" implements the interface "klass".
1626  */
1627 static void
1628 mini_emit_load_intf_bit_reg_vtable (MonoCompile *cfg, int intf_bit_reg, int vtable_reg, MonoClass *klass)
1629 {
1630         mini_emit_interface_bitmap_check (cfg, intf_bit_reg, vtable_reg, MONO_STRUCT_OFFSET (MonoVTable, interface_bitmap), klass);
1631 }
1632
1633 /* 
1634  * Emit code which checks whenever the interface id of @klass is smaller than
1635  * than the value given by max_iid_reg.
1636 */
1637 static void
1638 mini_emit_max_iid_check (MonoCompile *cfg, int max_iid_reg, MonoClass *klass,
1639                                                  MonoBasicBlock *false_target)
1640 {
1641         if (cfg->compile_aot) {
1642                 int iid_reg = alloc_preg (cfg);
1643                 MONO_EMIT_NEW_AOTCONST (cfg, iid_reg, klass, MONO_PATCH_INFO_IID);
1644                 MONO_EMIT_NEW_BIALU (cfg, OP_COMPARE, -1, max_iid_reg, iid_reg);
1645         }
1646         else
1647                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, max_iid_reg, klass->interface_id);
1648         if (false_target)
1649                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBLT_UN, false_target);
1650         else
1651                 MONO_EMIT_NEW_COND_EXC (cfg, LT_UN, "InvalidCastException");
1652 }
1653
1654 /* Same as above, but obtains max_iid from a vtable */
1655 static void
1656 mini_emit_max_iid_check_vtable (MonoCompile *cfg, int vtable_reg, MonoClass *klass,
1657                                                                  MonoBasicBlock *false_target)
1658 {
1659         int max_iid_reg = alloc_preg (cfg);
1660                 
1661         MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADU2_MEMBASE, max_iid_reg, vtable_reg, MONO_STRUCT_OFFSET (MonoVTable, max_interface_id));
1662         mini_emit_max_iid_check (cfg, max_iid_reg, klass, false_target);
1663 }
1664
1665 /* Same as above, but obtains max_iid from a klass */
1666 static void
1667 mini_emit_max_iid_check_class (MonoCompile *cfg, int klass_reg, MonoClass *klass,
1668                                                                  MonoBasicBlock *false_target)
1669 {
1670         int max_iid_reg = alloc_preg (cfg);
1671
1672         MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADU2_MEMBASE, max_iid_reg, klass_reg, MONO_STRUCT_OFFSET (MonoClass, max_interface_id));
1673         mini_emit_max_iid_check (cfg, max_iid_reg, klass, false_target);
1674 }
1675
1676 static void
1677 mini_emit_isninst_cast_inst (MonoCompile *cfg, int klass_reg, MonoClass *klass, MonoInst *klass_ins, MonoBasicBlock *false_target, MonoBasicBlock *true_target)
1678 {
1679         int idepth_reg = alloc_preg (cfg);
1680         int stypes_reg = alloc_preg (cfg);
1681         int stype = alloc_preg (cfg);
1682
1683         mono_class_setup_supertypes (klass);
1684
1685         if (klass->idepth > MONO_DEFAULT_SUPERTABLE_SIZE) {
1686                 MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADU2_MEMBASE, idepth_reg, klass_reg, MONO_STRUCT_OFFSET (MonoClass, idepth));
1687                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, idepth_reg, klass->idepth);
1688                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBLT_UN, false_target);
1689         }
1690         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, stypes_reg, klass_reg, MONO_STRUCT_OFFSET (MonoClass, supertypes));
1691         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, stype, stypes_reg, ((klass->idepth - 1) * SIZEOF_VOID_P));
1692         if (klass_ins) {
1693                 MONO_EMIT_NEW_BIALU (cfg, OP_COMPARE, -1, stype, klass_ins->dreg);
1694         } else if (cfg->compile_aot) {
1695                 int const_reg = alloc_preg (cfg);
1696                 MONO_EMIT_NEW_CLASSCONST (cfg, const_reg, klass);
1697                 MONO_EMIT_NEW_BIALU (cfg, OP_COMPARE, -1, stype, const_reg);
1698         } else {
1699                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, stype, klass);
1700         }
1701         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBEQ, true_target);
1702 }
1703
1704 static void
1705 mini_emit_isninst_cast (MonoCompile *cfg, int klass_reg, MonoClass *klass, MonoBasicBlock *false_target, MonoBasicBlock *true_target)
1706 {
1707         mini_emit_isninst_cast_inst (cfg, klass_reg, klass, NULL, false_target, true_target);
1708 }
1709
1710 static void
1711 mini_emit_iface_cast (MonoCompile *cfg, int vtable_reg, MonoClass *klass, MonoBasicBlock *false_target, MonoBasicBlock *true_target)
1712 {
1713         int intf_reg = alloc_preg (cfg);
1714
1715         mini_emit_max_iid_check_vtable (cfg, vtable_reg, klass, false_target);
1716         mini_emit_load_intf_bit_reg_vtable (cfg, intf_reg, vtable_reg, klass);
1717         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, intf_reg, 0);
1718         if (true_target)
1719                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBNE_UN, true_target);
1720         else
1721                 MONO_EMIT_NEW_COND_EXC (cfg, EQ, "InvalidCastException");               
1722 }
1723
1724 /*
1725  * Variant of the above that takes a register to the class, not the vtable.
1726  */
1727 static void
1728 mini_emit_iface_class_cast (MonoCompile *cfg, int klass_reg, MonoClass *klass, MonoBasicBlock *false_target, MonoBasicBlock *true_target)
1729 {
1730         int intf_bit_reg = alloc_preg (cfg);
1731
1732         mini_emit_max_iid_check_class (cfg, klass_reg, klass, false_target);
1733         mini_emit_load_intf_bit_reg_class (cfg, intf_bit_reg, klass_reg, klass);
1734         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, intf_bit_reg, 0);
1735         if (true_target)
1736                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBNE_UN, true_target);
1737         else
1738                 MONO_EMIT_NEW_COND_EXC (cfg, EQ, "InvalidCastException");
1739 }
1740
1741 static inline void
1742 mini_emit_class_check_inst (MonoCompile *cfg, int klass_reg, MonoClass *klass, MonoInst *klass_inst)
1743 {
1744         if (klass_inst) {
1745                 MONO_EMIT_NEW_BIALU (cfg, OP_COMPARE, -1, klass_reg, klass_inst->dreg);
1746         } else {
1747                 MonoInst *ins = emit_runtime_constant (cfg, MONO_PATCH_INFO_CLASS, klass);
1748                 MONO_EMIT_NEW_BIALU (cfg, OP_COMPARE, -1, klass_reg, ins->dreg);
1749         }
1750         MONO_EMIT_NEW_COND_EXC (cfg, NE_UN, "InvalidCastException");
1751 }
1752
1753 static inline void
1754 mini_emit_class_check (MonoCompile *cfg, int klass_reg, MonoClass *klass)
1755 {
1756         mini_emit_class_check_inst (cfg, klass_reg, klass, NULL);
1757 }
1758
1759 static inline void
1760 mini_emit_class_check_branch (MonoCompile *cfg, int klass_reg, MonoClass *klass, int branch_op, MonoBasicBlock *target)
1761 {
1762         if (cfg->compile_aot) {
1763                 int const_reg = alloc_preg (cfg);
1764                 MONO_EMIT_NEW_CLASSCONST (cfg, const_reg, klass);
1765                 MONO_EMIT_NEW_BIALU (cfg, OP_COMPARE, -1, klass_reg, const_reg);
1766         } else {
1767                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, klass_reg, klass);
1768         }
1769         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, branch_op, target);
1770 }
1771
1772 static void
1773 mini_emit_castclass (MonoCompile *cfg, int obj_reg, int klass_reg, MonoClass *klass, MonoBasicBlock *object_is_null);
1774         
1775 static void
1776 mini_emit_castclass_inst (MonoCompile *cfg, int obj_reg, int klass_reg, MonoClass *klass, MonoInst *klass_inst, MonoBasicBlock *object_is_null)
1777 {
1778         if (klass->rank) {
1779                 int rank_reg = alloc_preg (cfg);
1780                 int eclass_reg = alloc_preg (cfg);
1781
1782                 g_assert (!klass_inst);
1783                 MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADU1_MEMBASE, rank_reg, klass_reg, MONO_STRUCT_OFFSET (MonoClass, rank));
1784                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, rank_reg, klass->rank);
1785                 MONO_EMIT_NEW_COND_EXC (cfg, NE_UN, "InvalidCastException");
1786                 //              MONO_EMIT_NEW_LOAD_MEMBASE (cfg, klass_reg, vtable_reg, MONO_STRUCT_OFFSET (MonoVTable, klass));
1787                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, eclass_reg, klass_reg, MONO_STRUCT_OFFSET (MonoClass, cast_class));
1788                 if (klass->cast_class == mono_defaults.object_class) {
1789                         int parent_reg = alloc_preg (cfg);
1790                         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, parent_reg, eclass_reg, MONO_STRUCT_OFFSET (MonoClass, parent));
1791                         mini_emit_class_check_branch (cfg, parent_reg, mono_defaults.enum_class->parent, OP_PBNE_UN, object_is_null);
1792                         mini_emit_class_check (cfg, eclass_reg, mono_defaults.enum_class);
1793                 } else if (klass->cast_class == mono_defaults.enum_class->parent) {
1794                         mini_emit_class_check_branch (cfg, eclass_reg, mono_defaults.enum_class->parent, OP_PBEQ, object_is_null);
1795                         mini_emit_class_check (cfg, eclass_reg, mono_defaults.enum_class);
1796                 } else if (klass->cast_class == mono_defaults.enum_class) {
1797                         mini_emit_class_check (cfg, eclass_reg, mono_defaults.enum_class);
1798                 } else if (klass->cast_class->flags & TYPE_ATTRIBUTE_INTERFACE) {
1799                         mini_emit_iface_class_cast (cfg, eclass_reg, klass->cast_class, NULL, NULL);
1800                 } else {
1801                         // Pass -1 as obj_reg to skip the check below for arrays of arrays
1802                         mini_emit_castclass (cfg, -1, eclass_reg, klass->cast_class, object_is_null);
1803                 }
1804
1805                 if ((klass->rank == 1) && (klass->byval_arg.type == MONO_TYPE_SZARRAY) && (obj_reg != -1)) {
1806                         /* Check that the object is a vector too */
1807                         int bounds_reg = alloc_preg (cfg);
1808                         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, bounds_reg, obj_reg, MONO_STRUCT_OFFSET (MonoArray, bounds));
1809                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, bounds_reg, 0);
1810                         MONO_EMIT_NEW_COND_EXC (cfg, NE_UN, "InvalidCastException");
1811                 }
1812         } else {
1813                 int idepth_reg = alloc_preg (cfg);
1814                 int stypes_reg = alloc_preg (cfg);
1815                 int stype = alloc_preg (cfg);
1816
1817                 mono_class_setup_supertypes (klass);
1818
1819                 if (klass->idepth > MONO_DEFAULT_SUPERTABLE_SIZE) {
1820                         MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADU2_MEMBASE, idepth_reg, klass_reg, MONO_STRUCT_OFFSET (MonoClass, idepth));
1821                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, idepth_reg, klass->idepth);
1822                         MONO_EMIT_NEW_COND_EXC (cfg, LT_UN, "InvalidCastException");
1823                 }
1824                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, stypes_reg, klass_reg, MONO_STRUCT_OFFSET (MonoClass, supertypes));
1825                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, stype, stypes_reg, ((klass->idepth - 1) * SIZEOF_VOID_P));
1826                 mini_emit_class_check_inst (cfg, stype, klass, klass_inst);
1827         }
1828 }
1829
1830 static void
1831 mini_emit_castclass (MonoCompile *cfg, int obj_reg, int klass_reg, MonoClass *klass, MonoBasicBlock *object_is_null)
1832 {
1833         mini_emit_castclass_inst (cfg, obj_reg, klass_reg, klass, NULL, object_is_null);
1834 }
1835
1836 static void 
1837 mini_emit_memset (MonoCompile *cfg, int destreg, int offset, int size, int val, int align)
1838 {
1839         int val_reg;
1840
1841         g_assert (val == 0);
1842
1843         if (align == 0)
1844                 align = 4;
1845
1846         if ((size <= SIZEOF_REGISTER) && (size <= align)) {
1847                 switch (size) {
1848                 case 1:
1849                         MONO_EMIT_NEW_STORE_MEMBASE_IMM (cfg, OP_STOREI1_MEMBASE_IMM, destreg, offset, val);
1850                         return;
1851                 case 2:
1852                         MONO_EMIT_NEW_STORE_MEMBASE_IMM (cfg, OP_STOREI2_MEMBASE_IMM, destreg, offset, val);
1853                         return;
1854                 case 4:
1855                         MONO_EMIT_NEW_STORE_MEMBASE_IMM (cfg, OP_STOREI4_MEMBASE_IMM, destreg, offset, val);
1856                         return;
1857 #if SIZEOF_REGISTER == 8
1858                 case 8:
1859                         MONO_EMIT_NEW_STORE_MEMBASE_IMM (cfg, OP_STOREI8_MEMBASE_IMM, destreg, offset, val);
1860                         return;
1861 #endif
1862                 }
1863         }
1864
1865         val_reg = alloc_preg (cfg);
1866
1867         if (SIZEOF_REGISTER == 8)
1868                 MONO_EMIT_NEW_I8CONST (cfg, val_reg, val);
1869         else
1870                 MONO_EMIT_NEW_ICONST (cfg, val_reg, val);
1871
1872         if (align < 4) {
1873                 /* This could be optimized further if neccesary */
1874                 while (size >= 1) {
1875                         MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREI1_MEMBASE_REG, destreg, offset, val_reg);
1876                         offset += 1;
1877                         size -= 1;
1878                 }
1879                 return;
1880         }       
1881
1882         if (!cfg->backend->no_unaligned_access && SIZEOF_REGISTER == 8) {
1883                 if (offset % 8) {
1884                         MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREI4_MEMBASE_REG, destreg, offset, val_reg);
1885                         offset += 4;
1886                         size -= 4;
1887                 }
1888                 while (size >= 8) {
1889                         MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREI8_MEMBASE_REG, destreg, offset, val_reg);
1890                         offset += 8;
1891                         size -= 8;
1892                 }
1893         }       
1894
1895         while (size >= 4) {
1896                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREI4_MEMBASE_REG, destreg, offset, val_reg);
1897                 offset += 4;
1898                 size -= 4;
1899         }
1900         while (size >= 2) {
1901                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREI2_MEMBASE_REG, destreg, offset, val_reg);
1902                 offset += 2;
1903                 size -= 2;
1904         }
1905         while (size >= 1) {
1906                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREI1_MEMBASE_REG, destreg, offset, val_reg);
1907                 offset += 1;
1908                 size -= 1;
1909         }
1910 }
1911
1912 void 
1913 mini_emit_memcpy (MonoCompile *cfg, int destreg, int doffset, int srcreg, int soffset, int size, int align)
1914 {
1915         int cur_reg;
1916
1917         if (align == 0)
1918                 align = 4;
1919
1920         /*FIXME arbitrary hack to avoid unbound code expansion.*/
1921         g_assert (size < 10000);
1922
1923         if (align < 4) {
1924                 /* This could be optimized further if neccesary */
1925                 while (size >= 1) {
1926                         cur_reg = alloc_preg (cfg);
1927                         MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADI1_MEMBASE, cur_reg, srcreg, soffset);
1928                         MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREI1_MEMBASE_REG, destreg, doffset, cur_reg);
1929                         doffset += 1;
1930                         soffset += 1;
1931                         size -= 1;
1932                 }
1933         }
1934
1935         if (!cfg->backend->no_unaligned_access && SIZEOF_REGISTER == 8) {
1936                 while (size >= 8) {
1937                         cur_reg = alloc_preg (cfg);
1938                         MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADI8_MEMBASE, cur_reg, srcreg, soffset);
1939                         MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREI8_MEMBASE_REG, destreg, doffset, cur_reg);
1940                         doffset += 8;
1941                         soffset += 8;
1942                         size -= 8;
1943                 }
1944         }       
1945
1946         while (size >= 4) {
1947                 cur_reg = alloc_preg (cfg);
1948                 MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADI4_MEMBASE, cur_reg, srcreg, soffset);
1949                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREI4_MEMBASE_REG, destreg, doffset, cur_reg);
1950                 doffset += 4;
1951                 soffset += 4;
1952                 size -= 4;
1953         }
1954         while (size >= 2) {
1955                 cur_reg = alloc_preg (cfg);
1956                 MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADI2_MEMBASE, cur_reg, srcreg, soffset);
1957                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREI2_MEMBASE_REG, destreg, doffset, cur_reg);
1958                 doffset += 2;
1959                 soffset += 2;
1960                 size -= 2;
1961         }
1962         while (size >= 1) {
1963                 cur_reg = alloc_preg (cfg);
1964                 MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADI1_MEMBASE, cur_reg, srcreg, soffset);
1965                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREI1_MEMBASE_REG, destreg, doffset, cur_reg);
1966                 doffset += 1;
1967                 soffset += 1;
1968                 size -= 1;
1969         }
1970 }
1971
1972 static void
1973 emit_tls_set (MonoCompile *cfg, int sreg1, MonoTlsKey tls_key)
1974 {
1975         MonoInst *ins, *c;
1976
1977         if (cfg->compile_aot) {
1978                 EMIT_NEW_TLS_OFFSETCONST (cfg, c, tls_key);
1979                 MONO_INST_NEW (cfg, ins, OP_TLS_SET_REG);
1980                 ins->sreg1 = sreg1;
1981                 ins->sreg2 = c->dreg;
1982                 MONO_ADD_INS (cfg->cbb, ins);
1983         } else {
1984                 MONO_INST_NEW (cfg, ins, OP_TLS_SET);
1985                 ins->sreg1 = sreg1;
1986                 ins->inst_offset = mini_get_tls_offset (tls_key);
1987                 MONO_ADD_INS (cfg->cbb, ins);
1988         }
1989 }
1990
1991 /*
1992  * emit_push_lmf:
1993  *
1994  *   Emit IR to push the current LMF onto the LMF stack.
1995  */
1996 static void
1997 emit_push_lmf (MonoCompile *cfg)
1998 {
1999         /*
2000          * Emit IR to push the LMF:
2001          * lmf_addr = <lmf_addr from tls>
2002          * lmf->lmf_addr = lmf_addr
2003          * lmf->prev_lmf = *lmf_addr
2004          * *lmf_addr = lmf
2005          */
2006         int lmf_reg, prev_lmf_reg;
2007         MonoInst *ins, *lmf_ins;
2008
2009         if (!cfg->lmf_ir)
2010                 return;
2011
2012         if (cfg->lmf_ir_mono_lmf && mini_tls_get_supported (cfg, TLS_KEY_LMF)) {
2013                 /* Load current lmf */
2014                 lmf_ins = mono_get_lmf_intrinsic (cfg);
2015                 g_assert (lmf_ins);
2016                 MONO_ADD_INS (cfg->cbb, lmf_ins);
2017                 EMIT_NEW_VARLOADA (cfg, ins, cfg->lmf_var, NULL);
2018                 lmf_reg = ins->dreg;
2019                 /* Save previous_lmf */
2020                 EMIT_NEW_STORE_MEMBASE (cfg, ins, OP_STORE_MEMBASE_REG, lmf_reg, MONO_STRUCT_OFFSET (MonoLMF, previous_lmf), lmf_ins->dreg);
2021                 /* Set new LMF */
2022                 emit_tls_set (cfg, lmf_reg, TLS_KEY_LMF);
2023         } else {
2024                 /*
2025                  * Store lmf_addr in a variable, so it can be allocated to a global register.
2026                  */
2027                 if (!cfg->lmf_addr_var)
2028                         cfg->lmf_addr_var = mono_compile_create_var (cfg, &mono_defaults.int_class->byval_arg, OP_LOCAL);
2029
2030 #ifdef HOST_WIN32
2031                 ins = mono_get_jit_tls_intrinsic (cfg);
2032                 if (ins) {
2033                         int jit_tls_dreg = ins->dreg;
2034
2035                         MONO_ADD_INS (cfg->cbb, ins);
2036                         lmf_reg = alloc_preg (cfg);
2037                         EMIT_NEW_BIALU_IMM (cfg, lmf_ins, OP_PADD_IMM, lmf_reg, jit_tls_dreg, MONO_STRUCT_OFFSET (MonoJitTlsData, lmf));
2038                 } else {
2039                         lmf_ins = mono_emit_jit_icall (cfg, mono_get_lmf_addr, NULL);
2040                 }
2041 #else
2042                 lmf_ins = mono_get_lmf_addr_intrinsic (cfg);
2043                 if (lmf_ins) {
2044                         MONO_ADD_INS (cfg->cbb, lmf_ins);
2045                 } else {
2046 #ifdef TARGET_IOS
2047                         MonoInst *args [16], *jit_tls_ins, *ins;
2048
2049                         /* Inline mono_get_lmf_addr () */
2050                         /* jit_tls = pthread_getspecific (mono_jit_tls_id); lmf_addr = &jit_tls->lmf; */
2051
2052                         /* Load mono_jit_tls_id */
2053                         if (cfg->compile_aot)
2054                                 EMIT_NEW_AOTCONST (cfg, args [0], MONO_PATCH_INFO_JIT_TLS_ID, NULL);
2055                         else
2056                                 EMIT_NEW_ICONST (cfg, args [0], mono_jit_tls_id);
2057                         /* call pthread_getspecific () */
2058                         jit_tls_ins = mono_emit_jit_icall (cfg, pthread_getspecific, args);
2059                         /* lmf_addr = &jit_tls->lmf */
2060                         EMIT_NEW_BIALU_IMM (cfg, ins, OP_PADD_IMM, cfg->lmf_addr_var->dreg, jit_tls_ins->dreg, MONO_STRUCT_OFFSET (MonoJitTlsData, lmf));
2061                         lmf_ins = ins;
2062 #else
2063                         lmf_ins = mono_emit_jit_icall (cfg, mono_get_lmf_addr, NULL);
2064 #endif
2065                 }
2066 #endif
2067                 lmf_ins->dreg = cfg->lmf_addr_var->dreg;
2068
2069                 EMIT_NEW_VARLOADA (cfg, ins, cfg->lmf_var, NULL);
2070                 lmf_reg = ins->dreg;
2071
2072                 prev_lmf_reg = alloc_preg (cfg);
2073                 /* Save previous_lmf */
2074                 EMIT_NEW_LOAD_MEMBASE (cfg, ins, OP_LOAD_MEMBASE, prev_lmf_reg, cfg->lmf_addr_var->dreg, 0);
2075                 EMIT_NEW_STORE_MEMBASE (cfg, ins, OP_STORE_MEMBASE_REG, lmf_reg, MONO_STRUCT_OFFSET (MonoLMF, previous_lmf), prev_lmf_reg);
2076                 /* Set new lmf */
2077                 EMIT_NEW_STORE_MEMBASE (cfg, ins, OP_STORE_MEMBASE_REG, cfg->lmf_addr_var->dreg, 0, lmf_reg);
2078         }
2079 }
2080
2081 /*
2082  * emit_pop_lmf:
2083  *
2084  *   Emit IR to pop the current LMF from the LMF stack.
2085  */
2086 static void
2087 emit_pop_lmf (MonoCompile *cfg)
2088 {
2089         int lmf_reg, lmf_addr_reg, prev_lmf_reg;
2090         MonoInst *ins;
2091
2092         if (!cfg->lmf_ir)
2093                 return;
2094
2095         EMIT_NEW_VARLOADA (cfg, ins, cfg->lmf_var, NULL);
2096         lmf_reg = ins->dreg;
2097
2098         if (cfg->lmf_ir_mono_lmf && mini_tls_get_supported (cfg, TLS_KEY_LMF)) {
2099                 /* Load previous_lmf */
2100                 prev_lmf_reg = alloc_preg (cfg);
2101                 EMIT_NEW_LOAD_MEMBASE (cfg, ins, OP_LOAD_MEMBASE, prev_lmf_reg, lmf_reg, MONO_STRUCT_OFFSET (MonoLMF, previous_lmf));
2102                 /* Set new LMF */
2103                 emit_tls_set (cfg, prev_lmf_reg, TLS_KEY_LMF);
2104         } else {
2105                 /*
2106                  * Emit IR to pop the LMF:
2107                  * *(lmf->lmf_addr) = lmf->prev_lmf
2108                  */
2109                 /* This could be called before emit_push_lmf () */
2110                 if (!cfg->lmf_addr_var)
2111                         cfg->lmf_addr_var = mono_compile_create_var (cfg, &mono_defaults.int_class->byval_arg, OP_LOCAL);
2112                 lmf_addr_reg = cfg->lmf_addr_var->dreg;
2113
2114                 prev_lmf_reg = alloc_preg (cfg);
2115                 EMIT_NEW_LOAD_MEMBASE (cfg, ins, OP_LOAD_MEMBASE, prev_lmf_reg, lmf_reg, MONO_STRUCT_OFFSET (MonoLMF, previous_lmf));
2116                 EMIT_NEW_STORE_MEMBASE (cfg, ins, OP_STORE_MEMBASE_REG, lmf_addr_reg, 0, prev_lmf_reg);
2117         }
2118 }
2119
2120 static void
2121 emit_instrumentation_call (MonoCompile *cfg, void *func)
2122 {
2123         MonoInst *iargs [1];
2124
2125         /*
2126          * Avoid instrumenting inlined methods since it can
2127          * distort profiling results.
2128          */
2129         if (cfg->method != cfg->current_method)
2130                 return;
2131
2132         if (cfg->prof_options & MONO_PROFILE_ENTER_LEAVE) {
2133                 EMIT_NEW_METHODCONST (cfg, iargs [0], cfg->method);
2134                 mono_emit_jit_icall (cfg, func, iargs);
2135         }
2136 }
2137
2138 static int
2139 ret_type_to_call_opcode (MonoCompile *cfg, MonoType *type, int calli, int virt)
2140 {
2141 handle_enum:
2142         type = mini_get_underlying_type (type);
2143         switch (type->type) {
2144         case MONO_TYPE_VOID:
2145                 return calli? OP_VOIDCALL_REG: virt? OP_VOIDCALL_MEMBASE: OP_VOIDCALL;
2146         case MONO_TYPE_I1:
2147         case MONO_TYPE_U1:
2148         case MONO_TYPE_I2:
2149         case MONO_TYPE_U2:
2150         case MONO_TYPE_I4:
2151         case MONO_TYPE_U4:
2152                 return calli? OP_CALL_REG: virt? OP_CALL_MEMBASE: OP_CALL;
2153         case MONO_TYPE_I:
2154         case MONO_TYPE_U:
2155         case MONO_TYPE_PTR:
2156         case MONO_TYPE_FNPTR:
2157                 return calli? OP_CALL_REG: virt? OP_CALL_MEMBASE: OP_CALL;
2158         case MONO_TYPE_CLASS:
2159         case MONO_TYPE_STRING:
2160         case MONO_TYPE_OBJECT:
2161         case MONO_TYPE_SZARRAY:
2162         case MONO_TYPE_ARRAY:    
2163                 return calli? OP_CALL_REG: virt? OP_CALL_MEMBASE: OP_CALL;
2164         case MONO_TYPE_I8:
2165         case MONO_TYPE_U8:
2166                 return calli? OP_LCALL_REG: virt? OP_LCALL_MEMBASE: OP_LCALL;
2167         case MONO_TYPE_R4:
2168                 if (cfg->r4fp)
2169                         return calli? OP_RCALL_REG: virt? OP_RCALL_MEMBASE: OP_RCALL;
2170                 else
2171                         return calli? OP_FCALL_REG: virt? OP_FCALL_MEMBASE: OP_FCALL;
2172         case MONO_TYPE_R8:
2173                 return calli? OP_FCALL_REG: virt? OP_FCALL_MEMBASE: OP_FCALL;
2174         case MONO_TYPE_VALUETYPE:
2175                 if (type->data.klass->enumtype) {
2176                         type = mono_class_enum_basetype (type->data.klass);
2177                         goto handle_enum;
2178                 } else
2179                         return calli? OP_VCALL_REG: virt? OP_VCALL_MEMBASE: OP_VCALL;
2180         case MONO_TYPE_TYPEDBYREF:
2181                 return calli? OP_VCALL_REG: virt? OP_VCALL_MEMBASE: OP_VCALL;
2182         case MONO_TYPE_GENERICINST:
2183                 type = &type->data.generic_class->container_class->byval_arg;
2184                 goto handle_enum;
2185         case MONO_TYPE_VAR:
2186         case MONO_TYPE_MVAR:
2187                 /* gsharedvt */
2188                 return calli? OP_VCALL_REG: virt? OP_VCALL_MEMBASE: OP_VCALL;
2189         default:
2190                 g_error ("unknown type 0x%02x in ret_type_to_call_opcode", type->type);
2191         }
2192         return -1;
2193 }
2194
2195 //XXX this ignores if t is byref
2196 #define MONO_TYPE_IS_PRIMITIVE_SCALAR(t) ((((((t)->type >= MONO_TYPE_BOOLEAN && (t)->type <= MONO_TYPE_U8) || ((t)->type >= MONO_TYPE_I && (t)->type <= MONO_TYPE_U)))))
2197
2198 /*
2199  * target_type_is_incompatible:
2200  * @cfg: MonoCompile context
2201  *
2202  * Check that the item @arg on the evaluation stack can be stored
2203  * in the target type (can be a local, or field, etc).
2204  * The cfg arg can be used to check if we need verification or just
2205  * validity checks.
2206  *
2207  * Returns: non-0 value if arg can't be stored on a target.
2208  */
2209 static int
2210 target_type_is_incompatible (MonoCompile *cfg, MonoType *target, MonoInst *arg)
2211 {
2212         MonoType *simple_type;
2213         MonoClass *klass;
2214
2215         if (target->byref) {
2216                 /* FIXME: check that the pointed to types match */
2217                 if (arg->type == STACK_MP) {
2218                         /* This is needed to handle gshared types + ldaddr. We lower the types so we can handle enums and other typedef-like types. */
2219                         MonoClass *target_class_lowered = mono_class_from_mono_type (mini_get_underlying_type (&mono_class_from_mono_type (target)->byval_arg));
2220                         MonoClass *source_class_lowered = mono_class_from_mono_type (mini_get_underlying_type (&arg->klass->byval_arg));
2221
2222                         /* if the target is native int& or same type */
2223                         if (target->type == MONO_TYPE_I || target_class_lowered == source_class_lowered)
2224                                 return 0;
2225
2226                         /* Both are primitive type byrefs and the source points to a larger type that the destination */
2227                         if (MONO_TYPE_IS_PRIMITIVE_SCALAR (&target_class_lowered->byval_arg) && MONO_TYPE_IS_PRIMITIVE_SCALAR (&source_class_lowered->byval_arg) &&
2228                                 mono_class_instance_size (target_class_lowered) <= mono_class_instance_size (source_class_lowered))
2229                                 return 0;
2230                         return 1;
2231                 }
2232                 if (arg->type == STACK_PTR)
2233                         return 0;
2234                 return 1;
2235         }
2236
2237         simple_type = mini_get_underlying_type (target);
2238         switch (simple_type->type) {
2239         case MONO_TYPE_VOID:
2240                 return 1;
2241         case MONO_TYPE_I1:
2242         case MONO_TYPE_U1:
2243         case MONO_TYPE_I2:
2244         case MONO_TYPE_U2:
2245         case MONO_TYPE_I4:
2246         case MONO_TYPE_U4:
2247                 if (arg->type != STACK_I4 && arg->type != STACK_PTR)
2248                         return 1;
2249                 return 0;
2250         case MONO_TYPE_PTR:
2251                 /* STACK_MP is needed when setting pinned locals */
2252                 if (arg->type != STACK_I4 && arg->type != STACK_PTR && arg->type != STACK_MP)
2253                         return 1;
2254                 return 0;
2255         case MONO_TYPE_I:
2256         case MONO_TYPE_U:
2257         case MONO_TYPE_FNPTR:
2258                 /* 
2259                  * Some opcodes like ldloca returns 'transient pointers' which can be stored in
2260                  * in native int. (#688008).
2261                  */
2262                 if (arg->type != STACK_I4 && arg->type != STACK_PTR && arg->type != STACK_MP)
2263                         return 1;
2264                 return 0;
2265         case MONO_TYPE_CLASS:
2266         case MONO_TYPE_STRING:
2267         case MONO_TYPE_OBJECT:
2268         case MONO_TYPE_SZARRAY:
2269         case MONO_TYPE_ARRAY:    
2270                 if (arg->type != STACK_OBJ)
2271                         return 1;
2272                 /* FIXME: check type compatibility */
2273                 return 0;
2274         case MONO_TYPE_I8:
2275         case MONO_TYPE_U8:
2276                 if (arg->type != STACK_I8)
2277                         return 1;
2278                 return 0;
2279         case MONO_TYPE_R4:
2280                 if (arg->type != cfg->r4_stack_type)
2281                         return 1;
2282                 return 0;
2283         case MONO_TYPE_R8:
2284                 if (arg->type != STACK_R8)
2285                         return 1;
2286                 return 0;
2287         case MONO_TYPE_VALUETYPE:
2288                 if (arg->type != STACK_VTYPE)
2289                         return 1;
2290                 klass = mono_class_from_mono_type (simple_type);
2291                 if (klass != arg->klass)
2292                         return 1;
2293                 return 0;
2294         case MONO_TYPE_TYPEDBYREF:
2295                 if (arg->type != STACK_VTYPE)
2296                         return 1;
2297                 klass = mono_class_from_mono_type (simple_type);
2298                 if (klass != arg->klass)
2299                         return 1;
2300                 return 0;
2301         case MONO_TYPE_GENERICINST:
2302                 if (mono_type_generic_inst_is_valuetype (simple_type)) {
2303                         MonoClass *target_class;
2304                         if (arg->type != STACK_VTYPE)
2305                                 return 1;
2306                         klass = mono_class_from_mono_type (simple_type);
2307                         target_class = mono_class_from_mono_type (target);
2308                         /* The second cases is needed when doing partial sharing */
2309                         if (klass != arg->klass && target_class != arg->klass && target_class != mono_class_from_mono_type (mini_get_underlying_type (&arg->klass->byval_arg)))
2310                                 return 1;
2311                         return 0;
2312                 } else {
2313                         if (arg->type != STACK_OBJ)
2314                                 return 1;
2315                         /* FIXME: check type compatibility */
2316                         return 0;
2317                 }
2318         case MONO_TYPE_VAR:
2319         case MONO_TYPE_MVAR:
2320                 g_assert (cfg->gshared);
2321                 if (mini_type_var_is_vt (simple_type)) {
2322                         if (arg->type != STACK_VTYPE)
2323                                 return 1;
2324                 } else {
2325                         if (arg->type != STACK_OBJ)
2326                                 return 1;
2327                 }
2328                 return 0;
2329         default:
2330                 g_error ("unknown type 0x%02x in target_type_is_incompatible", simple_type->type);
2331         }
2332         return 1;
2333 }
2334
2335 /*
2336  * Prepare arguments for passing to a function call.
2337  * Return a non-zero value if the arguments can't be passed to the given
2338  * signature.
2339  * The type checks are not yet complete and some conversions may need
2340  * casts on 32 or 64 bit architectures.
2341  *
2342  * FIXME: implement this using target_type_is_incompatible ()
2343  */
2344 static int
2345 check_call_signature (MonoCompile *cfg, MonoMethodSignature *sig, MonoInst **args)
2346 {
2347         MonoType *simple_type;
2348         int i;
2349
2350         if (sig->hasthis) {
2351                 if (args [0]->type != STACK_OBJ && args [0]->type != STACK_MP && args [0]->type != STACK_PTR)
2352                         return 1;
2353                 args++;
2354         }
2355         for (i = 0; i < sig->param_count; ++i) {
2356                 if (sig->params [i]->byref) {
2357                         if (args [i]->type != STACK_MP && args [i]->type != STACK_PTR)
2358                                 return 1;
2359                         continue;
2360                 }
2361                 simple_type = mini_get_underlying_type (sig->params [i]);
2362 handle_enum:
2363                 switch (simple_type->type) {
2364                 case MONO_TYPE_VOID:
2365                         return 1;
2366                         continue;
2367                 case MONO_TYPE_I1:
2368                 case MONO_TYPE_U1:
2369                 case MONO_TYPE_I2:
2370                 case MONO_TYPE_U2:
2371                 case MONO_TYPE_I4:
2372                 case MONO_TYPE_U4:
2373                         if (args [i]->type != STACK_I4 && args [i]->type != STACK_PTR)
2374                                 return 1;
2375                         continue;
2376                 case MONO_TYPE_I:
2377                 case MONO_TYPE_U:
2378                 case MONO_TYPE_PTR:
2379                 case MONO_TYPE_FNPTR:
2380                         if (args [i]->type != STACK_I4 && args [i]->type != STACK_PTR && args [i]->type != STACK_MP && args [i]->type != STACK_OBJ)
2381                                 return 1;
2382                         continue;
2383                 case MONO_TYPE_CLASS:
2384                 case MONO_TYPE_STRING:
2385                 case MONO_TYPE_OBJECT:
2386                 case MONO_TYPE_SZARRAY:
2387                 case MONO_TYPE_ARRAY:    
2388                         if (args [i]->type != STACK_OBJ)
2389                                 return 1;
2390                         continue;
2391                 case MONO_TYPE_I8:
2392                 case MONO_TYPE_U8:
2393                         if (args [i]->type != STACK_I8)
2394                                 return 1;
2395                         continue;
2396                 case MONO_TYPE_R4:
2397                         if (args [i]->type != cfg->r4_stack_type)
2398                                 return 1;
2399                         continue;
2400                 case MONO_TYPE_R8:
2401                         if (args [i]->type != STACK_R8)
2402                                 return 1;
2403                         continue;
2404                 case MONO_TYPE_VALUETYPE:
2405                         if (simple_type->data.klass->enumtype) {
2406                                 simple_type = mono_class_enum_basetype (simple_type->data.klass);
2407                                 goto handle_enum;
2408                         }
2409                         if (args [i]->type != STACK_VTYPE)
2410                                 return 1;
2411                         continue;
2412                 case MONO_TYPE_TYPEDBYREF:
2413                         if (args [i]->type != STACK_VTYPE)
2414                                 return 1;
2415                         continue;
2416                 case MONO_TYPE_GENERICINST:
2417                         simple_type = &simple_type->data.generic_class->container_class->byval_arg;
2418                         goto handle_enum;
2419                 case MONO_TYPE_VAR:
2420                 case MONO_TYPE_MVAR:
2421                         /* gsharedvt */
2422                         if (args [i]->type != STACK_VTYPE)
2423                                 return 1;
2424                         continue;
2425                 default:
2426                         g_error ("unknown type 0x%02x in check_call_signature",
2427                                  simple_type->type);
2428                 }
2429         }
2430         return 0;
2431 }
2432
2433 static int
2434 callvirt_to_call (int opcode)
2435 {
2436         switch (opcode) {
2437         case OP_CALL_MEMBASE:
2438                 return OP_CALL;
2439         case OP_VOIDCALL_MEMBASE:
2440                 return OP_VOIDCALL;
2441         case OP_FCALL_MEMBASE:
2442                 return OP_FCALL;
2443         case OP_RCALL_MEMBASE:
2444                 return OP_RCALL;
2445         case OP_VCALL_MEMBASE:
2446                 return OP_VCALL;
2447         case OP_LCALL_MEMBASE:
2448                 return OP_LCALL;
2449         default:
2450                 g_assert_not_reached ();
2451         }
2452
2453         return -1;
2454 }
2455
2456 static int
2457 callvirt_to_call_reg (int opcode)
2458 {
2459         switch (opcode) {
2460         case OP_CALL_MEMBASE:
2461                 return OP_CALL_REG;
2462         case OP_VOIDCALL_MEMBASE:
2463                 return OP_VOIDCALL_REG;
2464         case OP_FCALL_MEMBASE:
2465                 return OP_FCALL_REG;
2466         case OP_RCALL_MEMBASE:
2467                 return OP_RCALL_REG;
2468         case OP_VCALL_MEMBASE:
2469                 return OP_VCALL_REG;
2470         case OP_LCALL_MEMBASE:
2471                 return OP_LCALL_REG;
2472         default:
2473                 g_assert_not_reached ();
2474         }
2475
2476         return -1;
2477 }
2478
2479 /* Either METHOD or IMT_ARG needs to be set */
2480 static void
2481 emit_imt_argument (MonoCompile *cfg, MonoCallInst *call, MonoMethod *method, MonoInst *imt_arg)
2482 {
2483         int method_reg;
2484
2485         if (COMPILE_LLVM (cfg)) {
2486                 if (imt_arg) {
2487                         method_reg = alloc_preg (cfg);
2488                         MONO_EMIT_NEW_UNALU (cfg, OP_MOVE, method_reg, imt_arg->dreg);
2489                 } else {
2490                         MonoInst *ins = emit_runtime_constant (cfg, MONO_PATCH_INFO_METHODCONST, method);
2491                         method_reg = ins->dreg;
2492                 }
2493
2494 #ifdef ENABLE_LLVM
2495                 call->imt_arg_reg = method_reg;
2496 #endif
2497                 mono_call_inst_add_outarg_reg (cfg, call, method_reg, MONO_ARCH_IMT_REG, FALSE);
2498                 return;
2499         }
2500
2501         if (imt_arg) {
2502                 method_reg = alloc_preg (cfg);
2503                 MONO_EMIT_NEW_UNALU (cfg, OP_MOVE, method_reg, imt_arg->dreg);
2504         } else {
2505                 MonoInst *ins = emit_runtime_constant (cfg, MONO_PATCH_INFO_METHODCONST, method);
2506                 method_reg = ins->dreg;
2507         }
2508
2509         mono_call_inst_add_outarg_reg (cfg, call, method_reg, MONO_ARCH_IMT_REG, FALSE);
2510 }
2511
2512 static MonoJumpInfo *
2513 mono_patch_info_new (MonoMemPool *mp, int ip, MonoJumpInfoType type, gconstpointer target)
2514 {
2515         MonoJumpInfo *ji = (MonoJumpInfo *)mono_mempool_alloc (mp, sizeof (MonoJumpInfo));
2516
2517         ji->ip.i = ip;
2518         ji->type = type;
2519         ji->data.target = target;
2520
2521         return ji;
2522 }
2523
2524 static int
2525 mini_class_check_context_used (MonoCompile *cfg, MonoClass *klass)
2526 {
2527         if (cfg->gshared)
2528                 return mono_class_check_context_used (klass);
2529         else
2530                 return 0;
2531 }
2532
2533 static int
2534 mini_method_check_context_used (MonoCompile *cfg, MonoMethod *method)
2535 {
2536         if (cfg->gshared)
2537                 return mono_method_check_context_used (method);
2538         else
2539                 return 0;
2540 }
2541
2542 /*
2543  * check_method_sharing:
2544  *
2545  *   Check whenever the vtable or an mrgctx needs to be passed when calling CMETHOD.
2546  */
2547 static void
2548 check_method_sharing (MonoCompile *cfg, MonoMethod *cmethod, gboolean *out_pass_vtable, gboolean *out_pass_mrgctx)
2549 {
2550         gboolean pass_vtable = FALSE;
2551         gboolean pass_mrgctx = FALSE;
2552
2553         if (((cmethod->flags & METHOD_ATTRIBUTE_STATIC) || cmethod->klass->valuetype) &&
2554                 (cmethod->klass->generic_class || cmethod->klass->generic_container)) {
2555                 gboolean sharable = FALSE;
2556
2557                 if (mono_method_is_generic_sharable_full (cmethod, TRUE, TRUE, TRUE))
2558                         sharable = TRUE;
2559
2560                 /*
2561                  * Pass vtable iff target method might
2562                  * be shared, which means that sharing
2563                  * is enabled for its class and its
2564                  * context is sharable (and it's not a
2565                  * generic method).
2566                  */
2567                 if (sharable && !(mini_method_get_context (cmethod) && mini_method_get_context (cmethod)->method_inst))
2568                         pass_vtable = TRUE;
2569         }
2570
2571         if (mini_method_get_context (cmethod) &&
2572                 mini_method_get_context (cmethod)->method_inst) {
2573                 g_assert (!pass_vtable);
2574
2575                 if (mono_method_is_generic_sharable_full (cmethod, TRUE, TRUE, TRUE)) {
2576                         pass_mrgctx = TRUE;
2577                 } else {
2578                         if (cfg->gsharedvt && mini_is_gsharedvt_signature (mono_method_signature (cmethod)))
2579                                 pass_mrgctx = TRUE;
2580                 }
2581         }
2582
2583         if (out_pass_vtable)
2584                 *out_pass_vtable = pass_vtable;
2585         if (out_pass_mrgctx)
2586                 *out_pass_mrgctx = pass_mrgctx;
2587 }
2588
2589 inline static MonoCallInst *
2590 mono_emit_call_args (MonoCompile *cfg, MonoMethodSignature *sig, 
2591                                          MonoInst **args, int calli, int virtual_, int tail, int rgctx, int unbox_trampoline)
2592 {
2593         MonoType *sig_ret;
2594         MonoCallInst *call;
2595 #ifdef MONO_ARCH_SOFT_FLOAT_FALLBACK
2596         int i;
2597 #endif
2598
2599         if (cfg->llvm_only)
2600                 tail = FALSE;
2601
2602         if (tail) {
2603                 emit_instrumentation_call (cfg, mono_profiler_method_leave);
2604
2605                 MONO_INST_NEW_CALL (cfg, call, OP_TAILCALL);
2606         } else
2607                 MONO_INST_NEW_CALL (cfg, call, ret_type_to_call_opcode (cfg, sig->ret, calli, virtual_));
2608
2609         call->args = args;
2610         call->signature = sig;
2611         call->rgctx_reg = rgctx;
2612         sig_ret = mini_get_underlying_type (sig->ret);
2613
2614         type_to_eval_stack_type ((cfg), sig_ret, &call->inst);
2615
2616         if (tail) {
2617                 if (mini_type_is_vtype (sig_ret)) {
2618                         call->vret_var = cfg->vret_addr;
2619                         //g_assert_not_reached ();
2620                 }
2621         } else if (mini_type_is_vtype (sig_ret)) {
2622                 MonoInst *temp = mono_compile_create_var (cfg, sig_ret, OP_LOCAL);
2623                 MonoInst *loada;
2624
2625                 temp->backend.is_pinvoke = sig->pinvoke;
2626
2627                 /*
2628                  * We use a new opcode OP_OUTARG_VTRETADDR instead of LDADDR for emitting the
2629                  * address of return value to increase optimization opportunities.
2630                  * Before vtype decomposition, the dreg of the call ins itself represents the
2631                  * fact the call modifies the return value. After decomposition, the call will
2632                  * be transformed into one of the OP_VOIDCALL opcodes, and the VTRETADDR opcode
2633                  * will be transformed into an LDADDR.
2634                  */
2635                 MONO_INST_NEW (cfg, loada, OP_OUTARG_VTRETADDR);
2636                 loada->dreg = alloc_preg (cfg);
2637                 loada->inst_p0 = temp;
2638                 /* We reference the call too since call->dreg could change during optimization */
2639                 loada->inst_p1 = call;
2640                 MONO_ADD_INS (cfg->cbb, loada);
2641
2642                 call->inst.dreg = temp->dreg;
2643
2644                 call->vret_var = loada;
2645         } else if (!MONO_TYPE_IS_VOID (sig_ret))
2646                 call->inst.dreg = alloc_dreg (cfg, (MonoStackType)call->inst.type);
2647
2648 #ifdef MONO_ARCH_SOFT_FLOAT_FALLBACK
2649         if (COMPILE_SOFT_FLOAT (cfg)) {
2650                 /* 
2651                  * If the call has a float argument, we would need to do an r8->r4 conversion using 
2652                  * an icall, but that cannot be done during the call sequence since it would clobber
2653                  * the call registers + the stack. So we do it before emitting the call.
2654                  */
2655                 for (i = 0; i < sig->param_count + sig->hasthis; ++i) {
2656                         MonoType *t;
2657                         MonoInst *in = call->args [i];
2658
2659                         if (i >= sig->hasthis)
2660                                 t = sig->params [i - sig->hasthis];
2661                         else
2662                                 t = &mono_defaults.int_class->byval_arg;
2663                         t = mono_type_get_underlying_type (t);
2664
2665                         if (!t->byref && t->type == MONO_TYPE_R4) {
2666                                 MonoInst *iargs [1];
2667                                 MonoInst *conv;
2668
2669                                 iargs [0] = in;
2670                                 conv = mono_emit_jit_icall (cfg, mono_fload_r4_arg, iargs);
2671
2672                                 /* The result will be in an int vreg */
2673                                 call->args [i] = conv;
2674                         }
2675                 }
2676         }
2677 #endif
2678
2679         call->need_unbox_trampoline = unbox_trampoline;
2680
2681 #ifdef ENABLE_LLVM
2682         if (COMPILE_LLVM (cfg))
2683                 mono_llvm_emit_call (cfg, call);
2684         else
2685                 mono_arch_emit_call (cfg, call);
2686 #else
2687         mono_arch_emit_call (cfg, call);
2688 #endif
2689
2690         cfg->param_area = MAX (cfg->param_area, call->stack_usage);
2691         cfg->flags |= MONO_CFG_HAS_CALLS;
2692         
2693         return call;
2694 }
2695
2696 static void
2697 set_rgctx_arg (MonoCompile *cfg, MonoCallInst *call, int rgctx_reg, MonoInst *rgctx_arg)
2698 {
2699         mono_call_inst_add_outarg_reg (cfg, call, rgctx_reg, MONO_ARCH_RGCTX_REG, FALSE);
2700         cfg->uses_rgctx_reg = TRUE;
2701         call->rgctx_reg = TRUE;
2702 #ifdef ENABLE_LLVM
2703         call->rgctx_arg_reg = rgctx_reg;
2704 #endif
2705 }       
2706
2707 inline static MonoInst*
2708 mono_emit_calli (MonoCompile *cfg, MonoMethodSignature *sig, MonoInst **args, MonoInst *addr, MonoInst *imt_arg, MonoInst *rgctx_arg)
2709 {
2710         MonoCallInst *call;
2711         MonoInst *ins;
2712         int rgctx_reg = -1;
2713         gboolean check_sp = FALSE;
2714
2715         if (cfg->check_pinvoke_callconv && cfg->method->wrapper_type == MONO_WRAPPER_MANAGED_TO_NATIVE) {
2716                 WrapperInfo *info = mono_marshal_get_wrapper_info (cfg->method);
2717
2718                 if (info && info->subtype == WRAPPER_SUBTYPE_PINVOKE)
2719                         check_sp = TRUE;
2720         }
2721
2722         if (rgctx_arg) {
2723                 rgctx_reg = mono_alloc_preg (cfg);
2724                 MONO_EMIT_NEW_UNALU (cfg, OP_MOVE, rgctx_reg, rgctx_arg->dreg);
2725         }
2726
2727         if (check_sp) {
2728                 if (!cfg->stack_inbalance_var)
2729                         cfg->stack_inbalance_var = mono_compile_create_var (cfg, &mono_defaults.int_class->byval_arg, OP_LOCAL);
2730
2731                 MONO_INST_NEW (cfg, ins, OP_GET_SP);
2732                 ins->dreg = cfg->stack_inbalance_var->dreg;
2733                 MONO_ADD_INS (cfg->cbb, ins);
2734         }
2735
2736         call = mono_emit_call_args (cfg, sig, args, TRUE, FALSE, FALSE, rgctx_arg ? TRUE : FALSE, FALSE);
2737
2738         call->inst.sreg1 = addr->dreg;
2739
2740         if (imt_arg)
2741                 emit_imt_argument (cfg, call, NULL, imt_arg);
2742
2743         MONO_ADD_INS (cfg->cbb, (MonoInst*)call);
2744
2745         if (check_sp) {
2746                 int sp_reg;
2747
2748                 sp_reg = mono_alloc_preg (cfg);
2749
2750                 MONO_INST_NEW (cfg, ins, OP_GET_SP);
2751                 ins->dreg = sp_reg;
2752                 MONO_ADD_INS (cfg->cbb, ins);
2753
2754                 /* Restore the stack so we don't crash when throwing the exception */
2755                 MONO_INST_NEW (cfg, ins, OP_SET_SP);
2756                 ins->sreg1 = cfg->stack_inbalance_var->dreg;
2757                 MONO_ADD_INS (cfg->cbb, ins);
2758
2759                 MONO_EMIT_NEW_BIALU (cfg, OP_COMPARE, -1, cfg->stack_inbalance_var->dreg, sp_reg);
2760                 MONO_EMIT_NEW_COND_EXC (cfg, NE_UN, "ExecutionEngineException");
2761         }
2762
2763         if (rgctx_arg)
2764                 set_rgctx_arg (cfg, call, rgctx_reg, rgctx_arg);
2765
2766         return (MonoInst*)call;
2767 }
2768
2769 static MonoInst*
2770 emit_get_gsharedvt_info_klass (MonoCompile *cfg, MonoClass *klass, MonoRgctxInfoType rgctx_type);
2771
2772 static MonoInst*
2773 emit_get_rgctx_method (MonoCompile *cfg, int context_used, MonoMethod *cmethod, MonoRgctxInfoType rgctx_type);
2774 static MonoInst*
2775 emit_get_rgctx_klass (MonoCompile *cfg, int context_used, MonoClass *klass, MonoRgctxInfoType rgctx_type);
2776
2777 static MonoInst*
2778 mono_emit_method_call_full (MonoCompile *cfg, MonoMethod *method, MonoMethodSignature *sig, gboolean tail,
2779                                                         MonoInst **args, MonoInst *this_ins, MonoInst *imt_arg, MonoInst *rgctx_arg)
2780 {
2781 #ifndef DISABLE_REMOTING
2782         gboolean might_be_remote = FALSE;
2783 #endif
2784         gboolean virtual_ = this_ins != NULL;
2785         gboolean enable_for_aot = TRUE;
2786         int context_used;
2787         MonoCallInst *call;
2788         MonoInst *call_target = NULL;
2789         int rgctx_reg = 0;
2790         gboolean need_unbox_trampoline;
2791
2792         if (!sig)
2793                 sig = mono_method_signature (method);
2794
2795         if (cfg->llvm_only && (method->klass->flags & TYPE_ATTRIBUTE_INTERFACE))
2796                 g_assert_not_reached ();
2797
2798         if (rgctx_arg) {
2799                 rgctx_reg = mono_alloc_preg (cfg);
2800                 MONO_EMIT_NEW_UNALU (cfg, OP_MOVE, rgctx_reg, rgctx_arg->dreg);
2801         }
2802
2803         if (method->string_ctor) {
2804                 /* Create the real signature */
2805                 /* FIXME: Cache these */
2806                 MonoMethodSignature *ctor_sig = mono_metadata_signature_dup_mempool (cfg->mempool, sig);
2807                 ctor_sig->ret = &mono_defaults.string_class->byval_arg;
2808
2809                 sig = ctor_sig;
2810         }
2811
2812         context_used = mini_method_check_context_used (cfg, method);
2813
2814 #ifndef DISABLE_REMOTING
2815         might_be_remote = this_ins && sig->hasthis &&
2816                 (mono_class_is_marshalbyref (method->klass) || method->klass == mono_defaults.object_class) &&
2817                 !(method->flags & METHOD_ATTRIBUTE_VIRTUAL) && (!MONO_CHECK_THIS (this_ins) || context_used);
2818
2819         if (might_be_remote && context_used) {
2820                 MonoInst *addr;
2821
2822                 g_assert (cfg->gshared);
2823
2824                 addr = emit_get_rgctx_method (cfg, context_used, method, MONO_RGCTX_INFO_REMOTING_INVOKE_WITH_CHECK);
2825
2826                 return mono_emit_calli (cfg, sig, args, addr, NULL, NULL);
2827         }
2828 #endif
2829
2830         if (cfg->llvm_only && !call_target && virtual_ && (method->flags & METHOD_ATTRIBUTE_VIRTUAL))
2831                 return emit_llvmonly_virtual_call (cfg, method, sig, 0, args);
2832
2833         need_unbox_trampoline = method->klass == mono_defaults.object_class || (method->klass->flags & TYPE_ATTRIBUTE_INTERFACE);
2834
2835         call = mono_emit_call_args (cfg, sig, args, FALSE, virtual_, tail, rgctx_arg ? TRUE : FALSE, need_unbox_trampoline);
2836
2837 #ifndef DISABLE_REMOTING
2838         if (might_be_remote)
2839                 call->method = mono_marshal_get_remoting_invoke_with_check (method);
2840         else
2841 #endif
2842                 call->method = method;
2843         call->inst.flags |= MONO_INST_HAS_METHOD;
2844         call->inst.inst_left = this_ins;
2845         call->tail_call = tail;
2846
2847         if (virtual_) {
2848                 int vtable_reg, slot_reg, this_reg;
2849                 int offset;
2850
2851                 this_reg = this_ins->dreg;
2852
2853                 if (!cfg->llvm_only && (method->klass->parent == mono_defaults.multicastdelegate_class) && !strcmp (method->name, "Invoke")) {
2854                         MonoInst *dummy_use;
2855
2856                         MONO_EMIT_NULL_CHECK (cfg, this_reg);
2857
2858                         /* Make a call to delegate->invoke_impl */
2859                         call->inst.inst_basereg = this_reg;
2860                         call->inst.inst_offset = MONO_STRUCT_OFFSET (MonoDelegate, invoke_impl);
2861                         MONO_ADD_INS (cfg->cbb, (MonoInst*)call);
2862
2863                         /* We must emit a dummy use here because the delegate trampoline will
2864                         replace the 'this' argument with the delegate target making this activation
2865                         no longer a root for the delegate.
2866                         This is an issue for delegates that target collectible code such as dynamic
2867                         methods of GC'able assemblies.
2868
2869                         For a test case look into #667921.
2870
2871                         FIXME: a dummy use is not the best way to do it as the local register allocator
2872                         will put it on a caller save register and spil it around the call. 
2873                         Ideally, we would either put it on a callee save register or only do the store part.  
2874                          */
2875                         EMIT_NEW_DUMMY_USE (cfg, dummy_use, args [0]);
2876
2877                         return (MonoInst*)call;
2878                 }
2879
2880                 if ((!cfg->compile_aot || enable_for_aot) && 
2881                         (!(method->flags & METHOD_ATTRIBUTE_VIRTUAL) || 
2882                          (MONO_METHOD_IS_FINAL (method) &&
2883                           method->wrapper_type != MONO_WRAPPER_REMOTING_INVOKE_WITH_CHECK)) &&
2884                         !(mono_class_is_marshalbyref (method->klass) && context_used)) {
2885                         /* 
2886                          * the method is not virtual, we just need to ensure this is not null
2887                          * and then we can call the method directly.
2888                          */
2889 #ifndef DISABLE_REMOTING
2890                         if (mono_class_is_marshalbyref (method->klass) || method->klass == mono_defaults.object_class) {
2891                                 /* 
2892                                  * The check above ensures method is not gshared, this is needed since
2893                                  * gshared methods can't have wrappers.
2894                                  */
2895                                 method = call->method = mono_marshal_get_remoting_invoke_with_check (method);
2896                         }
2897 #endif
2898
2899                         if (!method->string_ctor)
2900                                 MONO_EMIT_NEW_CHECK_THIS (cfg, this_reg);
2901
2902                         call->inst.opcode = callvirt_to_call (call->inst.opcode);
2903                 } else if ((method->flags & METHOD_ATTRIBUTE_VIRTUAL) && MONO_METHOD_IS_FINAL (method)) {
2904                         /*
2905                          * the method is virtual, but we can statically dispatch since either
2906                          * it's class or the method itself are sealed.
2907                          * But first we need to ensure it's not a null reference.
2908                          */
2909                         MONO_EMIT_NEW_CHECK_THIS (cfg, this_reg);
2910
2911                         call->inst.opcode = callvirt_to_call (call->inst.opcode);
2912                 } else if (call_target) {
2913                         vtable_reg = alloc_preg (cfg);
2914                         MONO_EMIT_NEW_LOAD_MEMBASE_FAULT (cfg, vtable_reg, this_reg, MONO_STRUCT_OFFSET (MonoObject, vtable));
2915
2916                         call->inst.opcode = callvirt_to_call_reg (call->inst.opcode);
2917                         call->inst.sreg1 = call_target->dreg;
2918                         call->inst.flags &= !MONO_INST_HAS_METHOD;
2919                 } else {
2920                         vtable_reg = alloc_preg (cfg);
2921                         MONO_EMIT_NEW_LOAD_MEMBASE_FAULT (cfg, vtable_reg, this_reg, MONO_STRUCT_OFFSET (MonoObject, vtable));
2922                         if (method->klass->flags & TYPE_ATTRIBUTE_INTERFACE) {
2923                                 guint32 imt_slot = mono_method_get_imt_slot (method);
2924                                 emit_imt_argument (cfg, call, call->method, imt_arg);
2925                                 slot_reg = vtable_reg;
2926                                 offset = ((gint32)imt_slot - MONO_IMT_SIZE) * SIZEOF_VOID_P;
2927                         } else {
2928                                 slot_reg = vtable_reg;
2929                                 offset = MONO_STRUCT_OFFSET (MonoVTable, vtable) +
2930                                         ((mono_method_get_vtable_index (method)) * (SIZEOF_VOID_P));
2931                                 if (imt_arg) {
2932                                         g_assert (mono_method_signature (method)->generic_param_count);
2933                                         emit_imt_argument (cfg, call, call->method, imt_arg);
2934                                 }
2935                         }
2936
2937                         call->inst.sreg1 = slot_reg;
2938                         call->inst.inst_offset = offset;
2939                         call->is_virtual = TRUE;
2940                 }
2941         }
2942
2943         MONO_ADD_INS (cfg->cbb, (MonoInst*)call);
2944
2945         if (rgctx_arg)
2946                 set_rgctx_arg (cfg, call, rgctx_reg, rgctx_arg);
2947
2948         return (MonoInst*)call;
2949 }
2950
2951 MonoInst*
2952 mono_emit_method_call (MonoCompile *cfg, MonoMethod *method, MonoInst **args, MonoInst *this_ins)
2953 {
2954         return mono_emit_method_call_full (cfg, method, mono_method_signature (method), FALSE, args, this_ins, NULL, NULL);
2955 }
2956
2957 MonoInst*
2958 mono_emit_native_call (MonoCompile *cfg, gconstpointer func, MonoMethodSignature *sig,
2959                                            MonoInst **args)
2960 {
2961         MonoCallInst *call;
2962
2963         g_assert (sig);
2964
2965         call = mono_emit_call_args (cfg, sig, args, FALSE, FALSE, FALSE, FALSE, FALSE);
2966         call->fptr = func;
2967
2968         MONO_ADD_INS (cfg->cbb, (MonoInst*)call);
2969
2970         return (MonoInst*)call;
2971 }
2972
2973 MonoInst*
2974 mono_emit_jit_icall (MonoCompile *cfg, gconstpointer func, MonoInst **args)
2975 {
2976         MonoJitICallInfo *info = mono_find_jit_icall_by_addr (func);
2977
2978         g_assert (info);
2979
2980         return mono_emit_native_call (cfg, mono_icall_get_wrapper (info), info->sig, args);
2981 }
2982
2983 /*
2984  * mono_emit_abs_call:
2985  *
2986  *   Emit a call to the runtime function described by PATCH_TYPE and DATA.
2987  */
2988 inline static MonoInst*
2989 mono_emit_abs_call (MonoCompile *cfg, MonoJumpInfoType patch_type, gconstpointer data, 
2990                                         MonoMethodSignature *sig, MonoInst **args)
2991 {
2992         MonoJumpInfo *ji = mono_patch_info_new (cfg->mempool, 0, patch_type, data);
2993         MonoInst *ins;
2994
2995         /* 
2996          * We pass ji as the call address, the PATCH_INFO_ABS resolving code will
2997          * handle it.
2998          */
2999         if (cfg->abs_patches == NULL)
3000                 cfg->abs_patches = g_hash_table_new (NULL, NULL);
3001         g_hash_table_insert (cfg->abs_patches, ji, ji);
3002         ins = mono_emit_native_call (cfg, ji, sig, args);
3003         ((MonoCallInst*)ins)->fptr_is_patch = TRUE;
3004         return ins;
3005 }
3006
3007 static MonoMethodSignature*
3008 sig_to_rgctx_sig (MonoMethodSignature *sig)
3009 {
3010         // FIXME: memory allocation
3011         MonoMethodSignature *res;
3012         int i;
3013
3014         res = (MonoMethodSignature *)g_malloc (MONO_SIZEOF_METHOD_SIGNATURE + (sig->param_count + 1) * sizeof (MonoType*));
3015         memcpy (res, sig, MONO_SIZEOF_METHOD_SIGNATURE);
3016         res->param_count = sig->param_count + 1;
3017         for (i = 0; i < sig->param_count; ++i)
3018                 res->params [i] = sig->params [i];
3019         res->params [sig->param_count] = &mono_defaults.int_class->this_arg;
3020         return res;
3021 }
3022
3023 /* Make an indirect call to FSIG passing an additional argument */
3024 static MonoInst*
3025 emit_extra_arg_calli (MonoCompile *cfg, MonoMethodSignature *fsig, MonoInst **orig_args, int arg_reg, MonoInst *call_target)
3026 {
3027         MonoMethodSignature *csig;
3028         MonoInst *args_buf [16];
3029         MonoInst **args;
3030         int i, pindex, tmp_reg;
3031
3032         /* Make a call with an rgctx/extra arg */
3033         if (fsig->param_count + 2 < 16)
3034                 args = args_buf;
3035         else
3036                 args = (MonoInst **)mono_mempool_alloc0 (cfg->mempool, sizeof (MonoInst*) * (fsig->param_count + 2));
3037         pindex = 0;
3038         if (fsig->hasthis)
3039                 args [pindex ++] = orig_args [0];
3040         for (i = 0; i < fsig->param_count; ++i)
3041                 args [pindex ++] = orig_args [fsig->hasthis + i];
3042         tmp_reg = alloc_preg (cfg);
3043         EMIT_NEW_UNALU (cfg, args [pindex], OP_MOVE, tmp_reg, arg_reg);
3044         csig = sig_to_rgctx_sig (fsig);
3045         return mono_emit_calli (cfg, csig, args, call_target, NULL, NULL);
3046 }
3047
3048 /* Emit an indirect call to the function descriptor ADDR */
3049 static MonoInst*
3050 emit_llvmonly_calli (MonoCompile *cfg, MonoMethodSignature *fsig, MonoInst **args, MonoInst *addr)
3051 {
3052         int addr_reg, arg_reg;
3053         MonoInst *call_target;
3054
3055         g_assert (cfg->llvm_only);
3056
3057         /*
3058          * addr points to a <addr, arg> pair, load both of them, and
3059          * make a call to addr, passing arg as an extra arg.
3060          */
3061         addr_reg = alloc_preg (cfg);
3062         EMIT_NEW_LOAD_MEMBASE (cfg, call_target, OP_LOAD_MEMBASE, addr_reg, addr->dreg, 0);
3063         arg_reg = alloc_preg (cfg);
3064         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, arg_reg, addr->dreg, sizeof (gpointer));
3065
3066         return emit_extra_arg_calli (cfg, fsig, args, arg_reg, call_target);
3067 }
3068
3069 static gboolean
3070 direct_icalls_enabled (MonoCompile *cfg)
3071 {
3072         /* LLVM on amd64 can't handle calls to non-32 bit addresses */
3073 #ifdef TARGET_AMD64
3074         if (cfg->compile_llvm && !cfg->llvm_only)
3075                 return FALSE;
3076 #endif
3077         if (cfg->gen_sdb_seq_points || cfg->disable_direct_icalls)
3078                 return FALSE;
3079         return TRUE;
3080 }
3081
3082 MonoInst*
3083 mono_emit_jit_icall_by_info (MonoCompile *cfg, int il_offset, MonoJitICallInfo *info, MonoInst **args)
3084 {
3085         /*
3086          * Call the jit icall without a wrapper if possible.
3087          * The wrapper is needed for the following reasons:
3088          * - to handle exceptions thrown using mono_raise_exceptions () from the
3089          *   icall function. The EH code needs the lmf frame pushed by the
3090          *   wrapper to be able to unwind back to managed code.
3091          * - to be able to do stack walks for asynchronously suspended
3092          *   threads when debugging.
3093          */
3094         if (info->no_raise && direct_icalls_enabled (cfg)) {
3095                 char *name;
3096                 int costs;
3097
3098                 if (!info->wrapper_method) {
3099                         name = g_strdup_printf ("__icall_wrapper_%s", info->name);
3100                         info->wrapper_method = mono_marshal_get_icall_wrapper (info->sig, name, info->func, TRUE);
3101                         g_free (name);
3102                         mono_memory_barrier ();
3103                 }
3104
3105                 /*
3106                  * Inline the wrapper method, which is basically a call to the C icall, and
3107                  * an exception check.
3108                  */
3109                 costs = inline_method (cfg, info->wrapper_method, NULL,
3110                                                            args, NULL, il_offset, TRUE);
3111                 g_assert (costs > 0);
3112                 g_assert (!MONO_TYPE_IS_VOID (info->sig->ret));
3113
3114                 return args [0];
3115         } else {
3116                 return mono_emit_native_call (cfg, mono_icall_get_wrapper (info), info->sig, args);
3117         }
3118 }
3119  
3120 static MonoInst*
3121 mono_emit_widen_call_res (MonoCompile *cfg, MonoInst *ins, MonoMethodSignature *fsig)
3122 {
3123         if (!MONO_TYPE_IS_VOID (fsig->ret)) {
3124                 if ((fsig->pinvoke || LLVM_ENABLED) && !fsig->ret->byref) {
3125                         int widen_op = -1;
3126
3127                         /* 
3128                          * Native code might return non register sized integers 
3129                          * without initializing the upper bits.
3130                          */
3131                         switch (mono_type_to_load_membase (cfg, fsig->ret)) {
3132                         case OP_LOADI1_MEMBASE:
3133                                 widen_op = OP_ICONV_TO_I1;
3134                                 break;
3135                         case OP_LOADU1_MEMBASE:
3136                                 widen_op = OP_ICONV_TO_U1;
3137                                 break;
3138                         case OP_LOADI2_MEMBASE:
3139                                 widen_op = OP_ICONV_TO_I2;
3140                                 break;
3141                         case OP_LOADU2_MEMBASE:
3142                                 widen_op = OP_ICONV_TO_U2;
3143                                 break;
3144                         default:
3145                                 break;
3146                         }
3147
3148                         if (widen_op != -1) {
3149                                 int dreg = alloc_preg (cfg);
3150                                 MonoInst *widen;
3151
3152                                 EMIT_NEW_UNALU (cfg, widen, widen_op, dreg, ins->dreg);
3153                                 widen->type = ins->type;
3154                                 ins = widen;
3155                         }
3156                 }
3157         }
3158
3159         return ins;
3160 }
3161
3162
3163 static void
3164 emit_method_access_failure (MonoCompile *cfg, MonoMethod *method, MonoMethod *cil_method)
3165 {
3166         MonoInst *args [16];
3167
3168         args [0] = emit_get_rgctx_method (cfg, mono_method_check_context_used (method), method, MONO_RGCTX_INFO_METHOD);
3169         args [1] = emit_get_rgctx_method (cfg, mono_method_check_context_used (cil_method), cil_method, MONO_RGCTX_INFO_METHOD);
3170
3171         mono_emit_jit_icall (cfg, mono_throw_method_access, args);
3172 }
3173
3174 static MonoMethod*
3175 get_memcpy_method (void)
3176 {
3177         static MonoMethod *memcpy_method = NULL;
3178         if (!memcpy_method) {
3179                 memcpy_method = mono_class_get_method_from_name (mono_defaults.string_class, "memcpy", 3);
3180                 if (!memcpy_method)
3181                         g_error ("Old corlib found. Install a new one");
3182         }
3183         return memcpy_method;
3184 }
3185
3186 static void
3187 create_write_barrier_bitmap (MonoCompile *cfg, MonoClass *klass, unsigned *wb_bitmap, int offset)
3188 {
3189         MonoClassField *field;
3190         gpointer iter = NULL;
3191
3192         while ((field = mono_class_get_fields (klass, &iter))) {
3193                 int foffset;
3194
3195                 if (field->type->attrs & FIELD_ATTRIBUTE_STATIC)
3196                         continue;
3197                 foffset = klass->valuetype ? field->offset - sizeof (MonoObject): field->offset;
3198                 if (mini_type_is_reference (mono_field_get_type (field))) {
3199                         g_assert ((foffset % SIZEOF_VOID_P) == 0);
3200                         *wb_bitmap |= 1 << ((offset + foffset) / SIZEOF_VOID_P);
3201                 } else {
3202                         MonoClass *field_class = mono_class_from_mono_type (field->type);
3203                         if (field_class->has_references)
3204                                 create_write_barrier_bitmap (cfg, field_class, wb_bitmap, offset + foffset);
3205                 }
3206         }
3207 }
3208
3209 static void
3210 emit_write_barrier (MonoCompile *cfg, MonoInst *ptr, MonoInst *value)
3211 {
3212         int card_table_shift_bits;
3213         gpointer card_table_mask;
3214         guint8 *card_table;
3215         MonoInst *dummy_use;
3216         int nursery_shift_bits;
3217         size_t nursery_size;
3218
3219         if (!cfg->gen_write_barriers)
3220                 return;
3221
3222         card_table = mono_gc_get_card_table (&card_table_shift_bits, &card_table_mask);
3223
3224         mono_gc_get_nursery (&nursery_shift_bits, &nursery_size);
3225
3226         if (cfg->backend->have_card_table_wb && !cfg->compile_aot && card_table && nursery_shift_bits > 0 && !COMPILE_LLVM (cfg)) {
3227                 MonoInst *wbarrier;
3228
3229                 MONO_INST_NEW (cfg, wbarrier, OP_CARD_TABLE_WBARRIER);
3230                 wbarrier->sreg1 = ptr->dreg;
3231                 wbarrier->sreg2 = value->dreg;
3232                 MONO_ADD_INS (cfg->cbb, wbarrier);
3233         } else if (card_table && !cfg->compile_aot && !mono_gc_card_table_nursery_check ()) {
3234                 int offset_reg = alloc_preg (cfg);
3235                 int card_reg;
3236                 MonoInst *ins;
3237
3238                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_SHR_UN_IMM, offset_reg, ptr->dreg, card_table_shift_bits);
3239                 if (card_table_mask)
3240                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_PAND_IMM, offset_reg, offset_reg, card_table_mask);
3241
3242                 /*We can't use PADD_IMM since the cardtable might end up in high addresses and amd64 doesn't support
3243                  * IMM's larger than 32bits.
3244                  */
3245                 ins = emit_runtime_constant (cfg, MONO_PATCH_INFO_GC_CARD_TABLE_ADDR, NULL);
3246                 card_reg = ins->dreg;
3247
3248                 MONO_EMIT_NEW_BIALU (cfg, OP_PADD, offset_reg, offset_reg, card_reg);
3249                 MONO_EMIT_NEW_STORE_MEMBASE_IMM (cfg, OP_STOREI1_MEMBASE_IMM, offset_reg, 0, 1);
3250         } else {
3251                 MonoMethod *write_barrier = mono_gc_get_write_barrier ();
3252                 mono_emit_method_call (cfg, write_barrier, &ptr, NULL);
3253         }
3254
3255         EMIT_NEW_DUMMY_USE (cfg, dummy_use, value);
3256 }
3257
3258 static gboolean
3259 mono_emit_wb_aware_memcpy (MonoCompile *cfg, MonoClass *klass, MonoInst *iargs[4], int size, int align)
3260 {
3261         int dest_ptr_reg, tmp_reg, destreg, srcreg, offset;
3262         unsigned need_wb = 0;
3263
3264         if (align == 0)
3265                 align = 4;
3266
3267         /*types with references can't have alignment smaller than sizeof(void*) */
3268         if (align < SIZEOF_VOID_P)
3269                 return FALSE;
3270
3271         /*This value cannot be bigger than 32 due to the way we calculate the required wb bitmap.*/
3272         if (size > 32 * SIZEOF_VOID_P)
3273                 return FALSE;
3274
3275         create_write_barrier_bitmap (cfg, klass, &need_wb, 0);
3276
3277         /* We don't unroll more than 5 stores to avoid code bloat. */
3278         if (size > 5 * SIZEOF_VOID_P) {
3279                 /*This is harmless and simplify mono_gc_wbarrier_value_copy_bitmap */
3280                 size += (SIZEOF_VOID_P - 1);
3281                 size &= ~(SIZEOF_VOID_P - 1);
3282
3283                 EMIT_NEW_ICONST (cfg, iargs [2], size);
3284                 EMIT_NEW_ICONST (cfg, iargs [3], need_wb);
3285                 mono_emit_jit_icall (cfg, mono_gc_wbarrier_value_copy_bitmap, iargs);
3286                 return TRUE;
3287         }
3288
3289         destreg = iargs [0]->dreg;
3290         srcreg = iargs [1]->dreg;
3291         offset = 0;
3292
3293         dest_ptr_reg = alloc_preg (cfg);
3294         tmp_reg = alloc_preg (cfg);
3295
3296         /*tmp = dreg*/
3297         EMIT_NEW_UNALU (cfg, iargs [0], OP_MOVE, dest_ptr_reg, destreg);
3298
3299         while (size >= SIZEOF_VOID_P) {
3300                 MonoInst *load_inst;
3301                 MONO_INST_NEW (cfg, load_inst, OP_LOAD_MEMBASE);
3302                 load_inst->dreg = tmp_reg;
3303                 load_inst->inst_basereg = srcreg;
3304                 load_inst->inst_offset = offset;
3305                 MONO_ADD_INS (cfg->cbb, load_inst);
3306
3307                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREP_MEMBASE_REG, dest_ptr_reg, 0, tmp_reg);
3308
3309                 if (need_wb & 0x1)
3310                         emit_write_barrier (cfg, iargs [0], load_inst);
3311
3312                 offset += SIZEOF_VOID_P;
3313                 size -= SIZEOF_VOID_P;
3314                 need_wb >>= 1;
3315
3316                 /*tmp += sizeof (void*)*/
3317                 if (size >= SIZEOF_VOID_P) {
3318                         NEW_BIALU_IMM (cfg, iargs [0], OP_PADD_IMM, dest_ptr_reg, dest_ptr_reg, SIZEOF_VOID_P);
3319                         MONO_ADD_INS (cfg->cbb, iargs [0]);
3320                 }
3321         }
3322
3323         /* Those cannot be references since size < sizeof (void*) */
3324         while (size >= 4) {
3325                 MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADI4_MEMBASE, tmp_reg, srcreg, offset);
3326                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREI4_MEMBASE_REG, destreg, offset, tmp_reg);
3327                 offset += 4;
3328                 size -= 4;
3329         }
3330
3331         while (size >= 2) {
3332                 MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADI2_MEMBASE, tmp_reg, srcreg, offset);
3333                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREI2_MEMBASE_REG, destreg, offset, tmp_reg);
3334                 offset += 2;
3335                 size -= 2;
3336         }
3337
3338         while (size >= 1) {
3339                 MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADI1_MEMBASE, tmp_reg, srcreg, offset);
3340                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREI1_MEMBASE_REG, destreg, offset, tmp_reg);
3341                 offset += 1;
3342                 size -= 1;
3343         }
3344
3345         return TRUE;
3346 }
3347
3348 /*
3349  * Emit code to copy a valuetype of type @klass whose address is stored in
3350  * @src->dreg to memory whose address is stored at @dest->dreg.
3351  */
3352 void
3353 mini_emit_stobj (MonoCompile *cfg, MonoInst *dest, MonoInst *src, MonoClass *klass, gboolean native)
3354 {
3355         MonoInst *iargs [4];
3356         int n;
3357         guint32 align = 0;
3358         MonoMethod *memcpy_method;
3359         MonoInst *size_ins = NULL;
3360         MonoInst *memcpy_ins = NULL;
3361
3362         g_assert (klass);
3363         if (cfg->gshared)
3364                 klass = mono_class_from_mono_type (mini_get_underlying_type (&klass->byval_arg));
3365
3366         /*
3367          * This check breaks with spilled vars... need to handle it during verification anyway.
3368          * g_assert (klass && klass == src->klass && klass == dest->klass);
3369          */
3370
3371         if (mini_is_gsharedvt_klass (klass)) {
3372                 g_assert (!native);
3373                 size_ins = emit_get_gsharedvt_info_klass (cfg, klass, MONO_RGCTX_INFO_VALUE_SIZE);
3374                 memcpy_ins = emit_get_gsharedvt_info_klass (cfg, klass, MONO_RGCTX_INFO_MEMCPY);
3375         }
3376
3377         if (native)
3378                 n = mono_class_native_size (klass, &align);
3379         else
3380                 n = mono_class_value_size (klass, &align);
3381
3382         /* if native is true there should be no references in the struct */
3383         if (cfg->gen_write_barriers && (klass->has_references || size_ins) && !native) {
3384                 /* Avoid barriers when storing to the stack */
3385                 if (!((dest->opcode == OP_ADD_IMM && dest->sreg1 == cfg->frame_reg) ||
3386                           (dest->opcode == OP_LDADDR))) {
3387                         int context_used;
3388
3389                         iargs [0] = dest;
3390                         iargs [1] = src;
3391
3392                         context_used = mini_class_check_context_used (cfg, klass);
3393
3394                         /* It's ok to intrinsify under gsharing since shared code types are layout stable. */
3395                         if (!size_ins && (cfg->opt & MONO_OPT_INTRINS) && mono_emit_wb_aware_memcpy (cfg, klass, iargs, n, align)) {
3396                                 return;
3397                         } else if (context_used) {
3398                                 iargs [2] = emit_get_rgctx_klass (cfg, context_used, klass, MONO_RGCTX_INFO_KLASS);
3399                         }  else {
3400                                 iargs [2] = emit_runtime_constant (cfg, MONO_PATCH_INFO_CLASS, klass);
3401                                 if (!cfg->compile_aot)
3402                                         mono_class_compute_gc_descriptor (klass);
3403                         }
3404
3405                         if (size_ins)
3406                                 mono_emit_jit_icall (cfg, mono_gsharedvt_value_copy, iargs);
3407                         else
3408                                 mono_emit_jit_icall (cfg, mono_value_copy, iargs);
3409                         return;
3410                 }
3411         }
3412
3413         if (!size_ins && (cfg->opt & MONO_OPT_INTRINS) && n <= sizeof (gpointer) * 8) {
3414                 /* FIXME: Optimize the case when src/dest is OP_LDADDR */
3415                 mini_emit_memcpy (cfg, dest->dreg, 0, src->dreg, 0, n, align);
3416         } else {
3417                 iargs [0] = dest;
3418                 iargs [1] = src;
3419                 if (size_ins)
3420                         iargs [2] = size_ins;
3421                 else
3422                         EMIT_NEW_ICONST (cfg, iargs [2], n);
3423                 
3424                 memcpy_method = get_memcpy_method ();
3425                 if (memcpy_ins)
3426                         mono_emit_calli (cfg, mono_method_signature (memcpy_method), iargs, memcpy_ins, NULL, NULL);
3427                 else
3428                         mono_emit_method_call (cfg, memcpy_method, iargs, NULL);
3429         }
3430 }
3431
3432 static MonoMethod*
3433 get_memset_method (void)
3434 {
3435         static MonoMethod *memset_method = NULL;
3436         if (!memset_method) {
3437                 memset_method = mono_class_get_method_from_name (mono_defaults.string_class, "memset", 3);
3438                 if (!memset_method)
3439                         g_error ("Old corlib found. Install a new one");
3440         }
3441         return memset_method;
3442 }
3443
3444 void
3445 mini_emit_initobj (MonoCompile *cfg, MonoInst *dest, const guchar *ip, MonoClass *klass)
3446 {
3447         MonoInst *iargs [3];
3448         int n;
3449         guint32 align;
3450         MonoMethod *memset_method;
3451         MonoInst *size_ins = NULL;
3452         MonoInst *bzero_ins = NULL;
3453         static MonoMethod *bzero_method;
3454
3455         /* FIXME: Optimize this for the case when dest is an LDADDR */
3456         mono_class_init (klass);
3457         if (mini_is_gsharedvt_klass (klass)) {
3458                 size_ins = emit_get_gsharedvt_info_klass (cfg, klass, MONO_RGCTX_INFO_VALUE_SIZE);
3459                 bzero_ins = emit_get_gsharedvt_info_klass (cfg, klass, MONO_RGCTX_INFO_BZERO);
3460                 if (!bzero_method)
3461                         bzero_method = mono_class_get_method_from_name (mono_defaults.string_class, "bzero_aligned_1", 2);
3462                 g_assert (bzero_method);
3463                 iargs [0] = dest;
3464                 iargs [1] = size_ins;
3465                 mono_emit_calli (cfg, mono_method_signature (bzero_method), iargs, bzero_ins, NULL, NULL);
3466                 return;
3467         }
3468
3469         klass = mono_class_from_mono_type (mini_get_underlying_type (&klass->byval_arg));
3470
3471         n = mono_class_value_size (klass, &align);
3472
3473         if (n <= sizeof (gpointer) * 8) {
3474                 mini_emit_memset (cfg, dest->dreg, 0, n, 0, align);
3475         }
3476         else {
3477                 memset_method = get_memset_method ();
3478                 iargs [0] = dest;
3479                 EMIT_NEW_ICONST (cfg, iargs [1], 0);
3480                 EMIT_NEW_ICONST (cfg, iargs [2], n);
3481                 mono_emit_method_call (cfg, memset_method, iargs, NULL);
3482         }
3483 }
3484
3485 /*
3486  * emit_get_rgctx:
3487  *
3488  *   Emit IR to return either the this pointer for instance method,
3489  * or the mrgctx for static methods.
3490  */
3491 static MonoInst*
3492 emit_get_rgctx (MonoCompile *cfg, MonoMethod *method, int context_used)
3493 {
3494         MonoInst *this_ins = NULL;
3495
3496         g_assert (cfg->gshared);
3497
3498         if (!(method->flags & METHOD_ATTRIBUTE_STATIC) &&
3499                         !(context_used & MONO_GENERIC_CONTEXT_USED_METHOD) &&
3500                         !method->klass->valuetype)
3501                 EMIT_NEW_ARGLOAD (cfg, this_ins, 0);
3502
3503         if (context_used & MONO_GENERIC_CONTEXT_USED_METHOD) {
3504                 MonoInst *mrgctx_loc, *mrgctx_var;
3505
3506                 g_assert (!this_ins);
3507                 g_assert (method->is_inflated && mono_method_get_context (method)->method_inst);
3508
3509                 mrgctx_loc = mono_get_vtable_var (cfg);
3510                 EMIT_NEW_TEMPLOAD (cfg, mrgctx_var, mrgctx_loc->inst_c0);
3511
3512                 return mrgctx_var;
3513         } else if (method->flags & METHOD_ATTRIBUTE_STATIC || method->klass->valuetype) {
3514                 MonoInst *vtable_loc, *vtable_var;
3515
3516                 g_assert (!this_ins);
3517
3518                 vtable_loc = mono_get_vtable_var (cfg);
3519                 EMIT_NEW_TEMPLOAD (cfg, vtable_var, vtable_loc->inst_c0);
3520
3521                 if (method->is_inflated && mono_method_get_context (method)->method_inst) {
3522                         MonoInst *mrgctx_var = vtable_var;
3523                         int vtable_reg;
3524
3525                         vtable_reg = alloc_preg (cfg);
3526                         EMIT_NEW_LOAD_MEMBASE (cfg, vtable_var, OP_LOAD_MEMBASE, vtable_reg, mrgctx_var->dreg, MONO_STRUCT_OFFSET (MonoMethodRuntimeGenericContext, class_vtable));
3527                         vtable_var->type = STACK_PTR;
3528                 }
3529
3530                 return vtable_var;
3531         } else {
3532                 MonoInst *ins;
3533                 int vtable_reg;
3534         
3535                 vtable_reg = alloc_preg (cfg);
3536                 EMIT_NEW_LOAD_MEMBASE (cfg, ins, OP_LOAD_MEMBASE, vtable_reg, this_ins->dreg, MONO_STRUCT_OFFSET (MonoObject, vtable));
3537                 return ins;
3538         }
3539 }
3540
3541 static MonoJumpInfoRgctxEntry *
3542 mono_patch_info_rgctx_entry_new (MonoMemPool *mp, MonoMethod *method, gboolean in_mrgctx, MonoJumpInfoType patch_type, gconstpointer patch_data, MonoRgctxInfoType info_type)
3543 {
3544         MonoJumpInfoRgctxEntry *res = (MonoJumpInfoRgctxEntry *)mono_mempool_alloc0 (mp, sizeof (MonoJumpInfoRgctxEntry));
3545         res->method = method;
3546         res->in_mrgctx = in_mrgctx;
3547         res->data = (MonoJumpInfo *)mono_mempool_alloc0 (mp, sizeof (MonoJumpInfo));
3548         res->data->type = patch_type;
3549         res->data->data.target = patch_data;
3550         res->info_type = info_type;
3551
3552         return res;
3553 }
3554
3555 static inline MonoInst*
3556 emit_rgctx_fetch_inline (MonoCompile *cfg, MonoInst *rgctx, MonoJumpInfoRgctxEntry *entry)
3557 {
3558         MonoInst *args [16];
3559         MonoInst *call;
3560
3561         // FIXME: No fastpath since the slot is not a compile time constant
3562         args [0] = rgctx;
3563         EMIT_NEW_AOTCONST (cfg, args [1], MONO_PATCH_INFO_RGCTX_SLOT_INDEX, entry);
3564         if (entry->in_mrgctx)
3565                 call = mono_emit_jit_icall (cfg, mono_fill_method_rgctx, args);
3566         else
3567                 call = mono_emit_jit_icall (cfg, mono_fill_class_rgctx, args);
3568         return call;
3569 #if 0
3570         /*
3571          * FIXME: This can be called during decompose, which is a problem since it creates
3572          * new bblocks.
3573          * Also, the fastpath doesn't work since the slot number is dynamically allocated.
3574          */
3575         int i, slot, depth, index, rgctx_reg, val_reg, res_reg;
3576         gboolean mrgctx;
3577         MonoBasicBlock *is_null_bb, *end_bb;
3578         MonoInst *res, *ins, *call;
3579         MonoInst *args[16];
3580
3581         slot = mini_get_rgctx_entry_slot (entry);
3582
3583         mrgctx = MONO_RGCTX_SLOT_IS_MRGCTX (slot);
3584         index = MONO_RGCTX_SLOT_INDEX (slot);
3585         if (mrgctx)
3586                 index += MONO_SIZEOF_METHOD_RUNTIME_GENERIC_CONTEXT / sizeof (gpointer);
3587         for (depth = 0; ; ++depth) {
3588                 int size = mono_class_rgctx_get_array_size (depth, mrgctx);
3589
3590                 if (index < size - 1)
3591                         break;
3592                 index -= size - 1;
3593         }
3594
3595         NEW_BBLOCK (cfg, end_bb);
3596         NEW_BBLOCK (cfg, is_null_bb);
3597
3598         if (mrgctx) {
3599                 rgctx_reg = rgctx->dreg;
3600         } else {
3601                 rgctx_reg = alloc_preg (cfg);
3602
3603                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, rgctx_reg, rgctx->dreg, MONO_STRUCT_OFFSET (MonoVTable, runtime_generic_context));
3604                 // FIXME: Avoid this check by allocating the table when the vtable is created etc.
3605                 NEW_BBLOCK (cfg, is_null_bb);
3606
3607                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, rgctx_reg, 0);
3608                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBEQ, is_null_bb);
3609         }
3610
3611         for (i = 0; i < depth; ++i) {
3612                 int array_reg = alloc_preg (cfg);
3613
3614                 /* load ptr to next array */
3615                 if (mrgctx && i == 0)
3616                         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, array_reg, rgctx_reg, MONO_SIZEOF_METHOD_RUNTIME_GENERIC_CONTEXT);
3617                 else
3618                         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, array_reg, rgctx_reg, 0);
3619                 rgctx_reg = array_reg;
3620                 /* is the ptr null? */
3621                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, rgctx_reg, 0);
3622                 /* if yes, jump to actual trampoline */
3623                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBEQ, is_null_bb);
3624         }
3625
3626         /* fetch slot */
3627         val_reg = alloc_preg (cfg);
3628         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, val_reg, rgctx_reg, (index + 1) * sizeof (gpointer));
3629         /* is the slot null? */
3630         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, val_reg, 0);
3631         /* if yes, jump to actual trampoline */
3632         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBEQ, is_null_bb);
3633
3634         /* Fastpath */
3635         res_reg = alloc_preg (cfg);
3636         MONO_INST_NEW (cfg, ins, OP_MOVE);
3637         ins->dreg = res_reg;
3638         ins->sreg1 = val_reg;
3639         MONO_ADD_INS (cfg->cbb, ins);
3640         res = ins;
3641         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
3642
3643         /* Slowpath */
3644         MONO_START_BB (cfg, is_null_bb);
3645         args [0] = rgctx;
3646         EMIT_NEW_ICONST (cfg, args [1], index);
3647         if (mrgctx)
3648                 call = mono_emit_jit_icall (cfg, mono_fill_method_rgctx, args);
3649         else
3650                 call = mono_emit_jit_icall (cfg, mono_fill_class_rgctx, args);
3651         MONO_INST_NEW (cfg, ins, OP_MOVE);
3652         ins->dreg = res_reg;
3653         ins->sreg1 = call->dreg;
3654         MONO_ADD_INS (cfg->cbb, ins);
3655         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
3656
3657         MONO_START_BB (cfg, end_bb);
3658
3659         return res;
3660 #endif
3661 }
3662
3663 /*
3664  * emit_rgctx_fetch:
3665  *
3666  *   Emit IR to load the value of the rgctx entry ENTRY from the rgctx
3667  * given by RGCTX.
3668  */
3669 static inline MonoInst*
3670 emit_rgctx_fetch (MonoCompile *cfg, MonoInst *rgctx, MonoJumpInfoRgctxEntry *entry)
3671 {
3672         if (cfg->llvm_only)
3673                 return emit_rgctx_fetch_inline (cfg, rgctx, entry);
3674         else
3675                 return mono_emit_abs_call (cfg, MONO_PATCH_INFO_RGCTX_FETCH, entry, helper_sig_rgctx_lazy_fetch_trampoline, &rgctx);
3676 }
3677
3678 static MonoInst*
3679 emit_get_rgctx_klass (MonoCompile *cfg, int context_used,
3680                                           MonoClass *klass, MonoRgctxInfoType rgctx_type)
3681 {
3682         MonoJumpInfoRgctxEntry *entry = mono_patch_info_rgctx_entry_new (cfg->mempool, cfg->current_method, context_used & MONO_GENERIC_CONTEXT_USED_METHOD, MONO_PATCH_INFO_CLASS, klass, rgctx_type);
3683         MonoInst *rgctx = emit_get_rgctx (cfg, cfg->current_method, context_used);
3684
3685         return emit_rgctx_fetch (cfg, rgctx, entry);
3686 }
3687
3688 static MonoInst*
3689 emit_get_rgctx_sig (MonoCompile *cfg, int context_used,
3690                                         MonoMethodSignature *sig, MonoRgctxInfoType rgctx_type)
3691 {
3692         MonoJumpInfoRgctxEntry *entry = mono_patch_info_rgctx_entry_new (cfg->mempool, cfg->current_method, context_used & MONO_GENERIC_CONTEXT_USED_METHOD, MONO_PATCH_INFO_SIGNATURE, sig, rgctx_type);
3693         MonoInst *rgctx = emit_get_rgctx (cfg, cfg->current_method, context_used);
3694
3695         return emit_rgctx_fetch (cfg, rgctx, entry);
3696 }
3697
3698 static MonoInst*
3699 emit_get_rgctx_gsharedvt_call (MonoCompile *cfg, int context_used,
3700                                                            MonoMethodSignature *sig, MonoMethod *cmethod, MonoRgctxInfoType rgctx_type)
3701 {
3702         MonoJumpInfoGSharedVtCall *call_info;
3703         MonoJumpInfoRgctxEntry *entry;
3704         MonoInst *rgctx;
3705
3706         call_info = (MonoJumpInfoGSharedVtCall *)mono_mempool_alloc0 (cfg->mempool, sizeof (MonoJumpInfoGSharedVtCall));
3707         call_info->sig = sig;
3708         call_info->method = cmethod;
3709
3710         entry = mono_patch_info_rgctx_entry_new (cfg->mempool, cfg->current_method, context_used & MONO_GENERIC_CONTEXT_USED_METHOD, MONO_PATCH_INFO_GSHAREDVT_CALL, call_info, rgctx_type);
3711         rgctx = emit_get_rgctx (cfg, cfg->current_method, context_used);
3712
3713         return emit_rgctx_fetch (cfg, rgctx, entry);
3714 }
3715
3716 /*
3717  * emit_get_rgctx_virt_method:
3718  *
3719  *   Return data for method VIRT_METHOD for a receiver of type KLASS.
3720  */
3721 static MonoInst*
3722 emit_get_rgctx_virt_method (MonoCompile *cfg, int context_used,
3723                                                         MonoClass *klass, MonoMethod *virt_method, MonoRgctxInfoType rgctx_type)
3724 {
3725         MonoJumpInfoVirtMethod *info;
3726         MonoJumpInfoRgctxEntry *entry;
3727         MonoInst *rgctx;
3728
3729         info = (MonoJumpInfoVirtMethod *)mono_mempool_alloc0 (cfg->mempool, sizeof (MonoJumpInfoVirtMethod));
3730         info->klass = klass;
3731         info->method = virt_method;
3732
3733         entry = mono_patch_info_rgctx_entry_new (cfg->mempool, cfg->current_method, context_used & MONO_GENERIC_CONTEXT_USED_METHOD, MONO_PATCH_INFO_VIRT_METHOD, info, rgctx_type);
3734         rgctx = emit_get_rgctx (cfg, cfg->current_method, context_used);
3735
3736         return emit_rgctx_fetch (cfg, rgctx, entry);
3737 }
3738
3739 static MonoInst*
3740 emit_get_rgctx_gsharedvt_method (MonoCompile *cfg, int context_used,
3741                                                                  MonoMethod *cmethod, MonoGSharedVtMethodInfo *info)
3742 {
3743         MonoJumpInfoRgctxEntry *entry;
3744         MonoInst *rgctx;
3745
3746         entry = mono_patch_info_rgctx_entry_new (cfg->mempool, cfg->current_method, context_used & MONO_GENERIC_CONTEXT_USED_METHOD, MONO_PATCH_INFO_GSHAREDVT_METHOD, info, MONO_RGCTX_INFO_METHOD_GSHAREDVT_INFO);
3747         rgctx = emit_get_rgctx (cfg, cfg->current_method, context_used);
3748
3749         return emit_rgctx_fetch (cfg, rgctx, entry);
3750 }
3751
3752 /*
3753  * emit_get_rgctx_method:
3754  *
3755  *   Emit IR to load the property RGCTX_TYPE of CMETHOD. If context_used is 0, emit
3756  * normal constants, else emit a load from the rgctx.
3757  */
3758 static MonoInst*
3759 emit_get_rgctx_method (MonoCompile *cfg, int context_used,
3760                                            MonoMethod *cmethod, MonoRgctxInfoType rgctx_type)
3761 {
3762         if (!context_used) {
3763                 MonoInst *ins;
3764
3765                 switch (rgctx_type) {
3766                 case MONO_RGCTX_INFO_METHOD:
3767                         EMIT_NEW_METHODCONST (cfg, ins, cmethod);
3768                         return ins;
3769                 case MONO_RGCTX_INFO_METHOD_RGCTX:
3770                         EMIT_NEW_METHOD_RGCTX_CONST (cfg, ins, cmethod);
3771                         return ins;
3772                 default:
3773                         g_assert_not_reached ();
3774                 }
3775         } else {
3776                 MonoJumpInfoRgctxEntry *entry = mono_patch_info_rgctx_entry_new (cfg->mempool, cfg->current_method, context_used & MONO_GENERIC_CONTEXT_USED_METHOD, MONO_PATCH_INFO_METHODCONST, cmethod, rgctx_type);
3777                 MonoInst *rgctx = emit_get_rgctx (cfg, cfg->current_method, context_used);
3778
3779                 return emit_rgctx_fetch (cfg, rgctx, entry);
3780         }
3781 }
3782
3783 static MonoInst*
3784 emit_get_rgctx_field (MonoCompile *cfg, int context_used,
3785                                           MonoClassField *field, MonoRgctxInfoType rgctx_type)
3786 {
3787         MonoJumpInfoRgctxEntry *entry = mono_patch_info_rgctx_entry_new (cfg->mempool, cfg->current_method, context_used & MONO_GENERIC_CONTEXT_USED_METHOD, MONO_PATCH_INFO_FIELD, field, rgctx_type);
3788         MonoInst *rgctx = emit_get_rgctx (cfg, cfg->current_method, context_used);
3789
3790         return emit_rgctx_fetch (cfg, rgctx, entry);
3791 }
3792
3793 static int
3794 get_gsharedvt_info_slot (MonoCompile *cfg, gpointer data, MonoRgctxInfoType rgctx_type)
3795 {
3796         MonoGSharedVtMethodInfo *info = cfg->gsharedvt_info;
3797         MonoRuntimeGenericContextInfoTemplate *template_;
3798         int i, idx;
3799
3800         g_assert (info);
3801
3802         for (i = 0; i < info->num_entries; ++i) {
3803                 MonoRuntimeGenericContextInfoTemplate *otemplate = &info->entries [i];
3804
3805                 if (otemplate->info_type == rgctx_type && otemplate->data == data && rgctx_type != MONO_RGCTX_INFO_LOCAL_OFFSET)
3806                         return i;
3807         }
3808
3809         if (info->num_entries == info->count_entries) {
3810                 MonoRuntimeGenericContextInfoTemplate *new_entries;
3811                 int new_count_entries = info->count_entries ? info->count_entries * 2 : 16;
3812
3813                 new_entries = (MonoRuntimeGenericContextInfoTemplate *)mono_mempool_alloc0 (cfg->mempool, sizeof (MonoRuntimeGenericContextInfoTemplate) * new_count_entries);
3814
3815                 memcpy (new_entries, info->entries, sizeof (MonoRuntimeGenericContextInfoTemplate) * info->count_entries);
3816                 info->entries = new_entries;
3817                 info->count_entries = new_count_entries;
3818         }
3819
3820         idx = info->num_entries;
3821         template_ = &info->entries [idx];
3822         template_->info_type = rgctx_type;
3823         template_->data = data;
3824
3825         info->num_entries ++;
3826
3827         return idx;
3828 }
3829
3830 /*
3831  * emit_get_gsharedvt_info:
3832  *
3833  *   This is similar to emit_get_rgctx_.., but loads the data from the gsharedvt info var instead of calling an rgctx fetch trampoline.
3834  */
3835 static MonoInst*
3836 emit_get_gsharedvt_info (MonoCompile *cfg, gpointer data, MonoRgctxInfoType rgctx_type)
3837 {
3838         MonoInst *ins;
3839         int idx, dreg;
3840
3841         idx = get_gsharedvt_info_slot (cfg, data, rgctx_type);
3842         /* Load info->entries [idx] */
3843         dreg = alloc_preg (cfg);
3844         EMIT_NEW_LOAD_MEMBASE (cfg, ins, OP_LOAD_MEMBASE, dreg, cfg->gsharedvt_info_var->dreg, MONO_STRUCT_OFFSET (MonoGSharedVtMethodRuntimeInfo, entries) + (idx * sizeof (gpointer)));
3845
3846         return ins;
3847 }
3848
3849 static MonoInst*
3850 emit_get_gsharedvt_info_klass (MonoCompile *cfg, MonoClass *klass, MonoRgctxInfoType rgctx_type)
3851 {
3852         return emit_get_gsharedvt_info (cfg, &klass->byval_arg, rgctx_type);
3853 }
3854
3855 /*
3856  * On return the caller must check @klass for load errors.
3857  */
3858 static void
3859 emit_class_init (MonoCompile *cfg, MonoClass *klass)
3860 {
3861         MonoInst *vtable_arg;
3862         int context_used;
3863
3864         context_used = mini_class_check_context_used (cfg, klass);
3865
3866         if (context_used) {
3867                 vtable_arg = emit_get_rgctx_klass (cfg, context_used,
3868                                                                                    klass, MONO_RGCTX_INFO_VTABLE);
3869         } else {
3870                 MonoVTable *vtable = mono_class_vtable (cfg->domain, klass);
3871
3872                 if (!vtable)
3873                         return;
3874                 EMIT_NEW_VTABLECONST (cfg, vtable_arg, vtable);
3875         }
3876
3877         if (!COMPILE_LLVM (cfg) && cfg->backend->have_op_generic_class_init) {
3878                 MonoInst *ins;
3879
3880                 /*
3881                  * Using an opcode instead of emitting IR here allows the hiding of the call inside the opcode,
3882                  * so this doesn't have to clobber any regs and it doesn't break basic blocks.
3883                  */
3884                 MONO_INST_NEW (cfg, ins, OP_GENERIC_CLASS_INIT);
3885                 ins->sreg1 = vtable_arg->dreg;
3886                 MONO_ADD_INS (cfg->cbb, ins);
3887         } else {
3888                 static int byte_offset = -1;
3889                 static guint8 bitmask;
3890                 int bits_reg, inited_reg;
3891                 MonoBasicBlock *inited_bb;
3892                 MonoInst *args [16];
3893
3894                 if (byte_offset < 0)
3895                         mono_marshal_find_bitfield_offset (MonoVTable, initialized, &byte_offset, &bitmask);
3896
3897                 bits_reg = alloc_ireg (cfg);
3898                 inited_reg = alloc_ireg (cfg);
3899
3900                 MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADU1_MEMBASE, bits_reg, vtable_arg->dreg, byte_offset);
3901                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_IAND_IMM, inited_reg, bits_reg, bitmask);
3902
3903                 NEW_BBLOCK (cfg, inited_bb);
3904
3905                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, inited_reg, 0);
3906                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_IBNE_UN, inited_bb);
3907
3908                 args [0] = vtable_arg;
3909                 mono_emit_jit_icall (cfg, mono_generic_class_init, args);
3910
3911                 MONO_START_BB (cfg, inited_bb);
3912         }
3913 }
3914
3915 static void
3916 emit_seq_point (MonoCompile *cfg, MonoMethod *method, guint8* ip, gboolean intr_loc, gboolean nonempty_stack)
3917 {
3918         MonoInst *ins;
3919
3920         if (cfg->gen_seq_points && cfg->method == method) {
3921                 NEW_SEQ_POINT (cfg, ins, ip - cfg->header->code, intr_loc);
3922                 if (nonempty_stack)
3923                         ins->flags |= MONO_INST_NONEMPTY_STACK;
3924                 MONO_ADD_INS (cfg->cbb, ins);
3925         }
3926 }
3927
3928 static void
3929 save_cast_details (MonoCompile *cfg, MonoClass *klass, int obj_reg, gboolean null_check)
3930 {
3931         if (mini_get_debug_options ()->better_cast_details) {
3932                 int vtable_reg = alloc_preg (cfg);
3933                 int klass_reg = alloc_preg (cfg);
3934                 MonoBasicBlock *is_null_bb = NULL;
3935                 MonoInst *tls_get;
3936                 int to_klass_reg, context_used;
3937
3938                 if (null_check) {
3939                         NEW_BBLOCK (cfg, is_null_bb);
3940
3941                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, obj_reg, 0);
3942                         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBEQ, is_null_bb);
3943                 }
3944
3945                 tls_get = mono_get_jit_tls_intrinsic (cfg);
3946                 if (!tls_get) {
3947                         fprintf (stderr, "error: --debug=casts not supported on this platform.\n.");
3948                         exit (1);
3949                 }
3950
3951                 MONO_ADD_INS (cfg->cbb, tls_get);
3952                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, vtable_reg, obj_reg, MONO_STRUCT_OFFSET (MonoObject, vtable));
3953                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, klass_reg, vtable_reg, MONO_STRUCT_OFFSET (MonoVTable, klass));
3954
3955                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STORE_MEMBASE_REG, tls_get->dreg, MONO_STRUCT_OFFSET (MonoJitTlsData, class_cast_from), klass_reg);
3956
3957                 context_used = mini_class_check_context_used (cfg, klass);
3958                 if (context_used) {
3959                         MonoInst *class_ins;
3960
3961                         class_ins = emit_get_rgctx_klass (cfg, context_used, klass, MONO_RGCTX_INFO_KLASS);
3962                         to_klass_reg = class_ins->dreg;
3963                 } else {
3964                         to_klass_reg = alloc_preg (cfg);
3965                         MONO_EMIT_NEW_CLASSCONST (cfg, to_klass_reg, klass);
3966                 }
3967                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STORE_MEMBASE_REG, tls_get->dreg, MONO_STRUCT_OFFSET (MonoJitTlsData, class_cast_to), to_klass_reg);
3968
3969                 if (null_check)
3970                         MONO_START_BB (cfg, is_null_bb);
3971         }
3972 }
3973
3974 static void
3975 reset_cast_details (MonoCompile *cfg)
3976 {
3977         /* Reset the variables holding the cast details */
3978         if (mini_get_debug_options ()->better_cast_details) {
3979                 MonoInst *tls_get = mono_get_jit_tls_intrinsic (cfg);
3980
3981                 MONO_ADD_INS (cfg->cbb, tls_get);
3982                 /* It is enough to reset the from field */
3983                 MONO_EMIT_NEW_STORE_MEMBASE_IMM (cfg, OP_STORE_MEMBASE_IMM, tls_get->dreg, MONO_STRUCT_OFFSET (MonoJitTlsData, class_cast_from), 0);
3984         }
3985 }
3986
3987 /*
3988  * On return the caller must check @array_class for load errors
3989  */
3990 static void
3991 mini_emit_check_array_type (MonoCompile *cfg, MonoInst *obj, MonoClass *array_class)
3992 {
3993         int vtable_reg = alloc_preg (cfg);
3994         int context_used;
3995
3996         context_used = mini_class_check_context_used (cfg, array_class);
3997
3998         save_cast_details (cfg, array_class, obj->dreg, FALSE);
3999
4000         MONO_EMIT_NEW_LOAD_MEMBASE_FAULT (cfg, vtable_reg, obj->dreg, MONO_STRUCT_OFFSET (MonoObject, vtable));
4001
4002         if (cfg->opt & MONO_OPT_SHARED) {
4003                 int class_reg = alloc_preg (cfg);
4004                 MonoInst *ins;
4005
4006                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, class_reg, vtable_reg, MONO_STRUCT_OFFSET (MonoVTable, klass));
4007                 ins = emit_runtime_constant (cfg, MONO_PATCH_INFO_CLASS, array_class);
4008                 MONO_EMIT_NEW_BIALU (cfg, OP_COMPARE, -1, class_reg, ins->dreg);
4009         } else if (context_used) {
4010                 MonoInst *vtable_ins;
4011
4012                 vtable_ins = emit_get_rgctx_klass (cfg, context_used, array_class, MONO_RGCTX_INFO_VTABLE);
4013                 MONO_EMIT_NEW_BIALU (cfg, OP_COMPARE, -1, vtable_reg, vtable_ins->dreg);
4014         } else {
4015                 if (cfg->compile_aot) {
4016                         int vt_reg;
4017                         MonoVTable *vtable;
4018
4019                         if (!(vtable = mono_class_vtable (cfg->domain, array_class)))
4020                                 return;
4021                         vt_reg = alloc_preg (cfg);
4022                         MONO_EMIT_NEW_VTABLECONST (cfg, vt_reg, vtable);
4023                         MONO_EMIT_NEW_BIALU (cfg, OP_COMPARE, -1, vtable_reg, vt_reg);
4024                 } else {
4025                         MonoVTable *vtable;
4026                         if (!(vtable = mono_class_vtable (cfg->domain, array_class)))
4027                                 return;
4028                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, vtable_reg, vtable);
4029                 }
4030         }
4031         
4032         MONO_EMIT_NEW_COND_EXC (cfg, NE_UN, "ArrayTypeMismatchException");
4033
4034         reset_cast_details (cfg);
4035 }
4036
4037 /**
4038  * Handles unbox of a Nullable<T>. If context_used is non zero, then shared 
4039  * generic code is generated.
4040  */
4041 static MonoInst*
4042 handle_unbox_nullable (MonoCompile* cfg, MonoInst* val, MonoClass* klass, int context_used)
4043 {
4044         MonoMethod* method = mono_class_get_method_from_name (klass, "Unbox", 1);
4045
4046         if (context_used) {
4047                 MonoInst *rgctx, *addr;
4048
4049                 /* FIXME: What if the class is shared?  We might not
4050                    have to get the address of the method from the
4051                    RGCTX. */
4052                 addr = emit_get_rgctx_method (cfg, context_used, method,
4053                                                                           MONO_RGCTX_INFO_GENERIC_METHOD_CODE);
4054                 if (cfg->llvm_only) {
4055                         cfg->signatures = g_slist_prepend_mempool (cfg->mempool, cfg->signatures, mono_method_signature (method));
4056                         return emit_llvmonly_calli (cfg, mono_method_signature (method), &val, addr);
4057                 } else {
4058                         rgctx = emit_get_rgctx (cfg, cfg->current_method, context_used);
4059
4060                         return mono_emit_calli (cfg, mono_method_signature (method), &val, addr, NULL, rgctx);
4061                 }
4062         } else {
4063                 gboolean pass_vtable, pass_mrgctx;
4064                 MonoInst *rgctx_arg = NULL;
4065
4066                 check_method_sharing (cfg, method, &pass_vtable, &pass_mrgctx);
4067                 g_assert (!pass_mrgctx);
4068
4069                 if (pass_vtable) {
4070                         MonoVTable *vtable = mono_class_vtable (cfg->domain, method->klass);
4071
4072                         g_assert (vtable);
4073                         EMIT_NEW_VTABLECONST (cfg, rgctx_arg, vtable);
4074                 }
4075
4076                 return mono_emit_method_call_full (cfg, method, NULL, FALSE, &val, NULL, NULL, rgctx_arg);
4077         }
4078 }
4079
4080 static MonoInst*
4081 handle_unbox (MonoCompile *cfg, MonoClass *klass, MonoInst **sp, int context_used)
4082 {
4083         MonoInst *add;
4084         int obj_reg;
4085         int vtable_reg = alloc_dreg (cfg ,STACK_PTR);
4086         int klass_reg = alloc_dreg (cfg ,STACK_PTR);
4087         int eclass_reg = alloc_dreg (cfg ,STACK_PTR);
4088         int rank_reg = alloc_dreg (cfg ,STACK_I4);
4089
4090         obj_reg = sp [0]->dreg;
4091         MONO_EMIT_NEW_LOAD_MEMBASE_FAULT (cfg, vtable_reg, obj_reg, MONO_STRUCT_OFFSET (MonoObject, vtable));
4092         MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADU1_MEMBASE, rank_reg, vtable_reg, MONO_STRUCT_OFFSET (MonoVTable, rank));
4093
4094         /* FIXME: generics */
4095         g_assert (klass->rank == 0);
4096                         
4097         // Check rank == 0
4098         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, rank_reg, 0);
4099         MONO_EMIT_NEW_COND_EXC (cfg, NE_UN, "InvalidCastException");
4100
4101         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, klass_reg, vtable_reg, MONO_STRUCT_OFFSET (MonoVTable, klass));
4102         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, eclass_reg, klass_reg, MONO_STRUCT_OFFSET (MonoClass, element_class));
4103
4104         if (context_used) {
4105                 MonoInst *element_class;
4106
4107                 /* This assertion is from the unboxcast insn */
4108                 g_assert (klass->rank == 0);
4109
4110                 element_class = emit_get_rgctx_klass (cfg, context_used,
4111                                 klass, MONO_RGCTX_INFO_ELEMENT_KLASS);
4112
4113                 MONO_EMIT_NEW_BIALU (cfg, OP_COMPARE, -1, eclass_reg, element_class->dreg);
4114                 MONO_EMIT_NEW_COND_EXC (cfg, NE_UN, "InvalidCastException");
4115         } else {
4116                 save_cast_details (cfg, klass->element_class, obj_reg, FALSE);
4117                 mini_emit_class_check (cfg, eclass_reg, klass->element_class);
4118                 reset_cast_details (cfg);
4119         }
4120
4121         NEW_BIALU_IMM (cfg, add, OP_ADD_IMM, alloc_dreg (cfg, STACK_MP), obj_reg, sizeof (MonoObject));
4122         MONO_ADD_INS (cfg->cbb, add);
4123         add->type = STACK_MP;
4124         add->klass = klass;
4125
4126         return add;
4127 }
4128
4129 static MonoInst*
4130 handle_unbox_gsharedvt (MonoCompile *cfg, MonoClass *klass, MonoInst *obj)
4131 {
4132         MonoInst *addr, *klass_inst, *is_ref, *args[16];
4133         MonoBasicBlock *is_ref_bb, *is_nullable_bb, *end_bb;
4134         MonoInst *ins;
4135         int dreg, addr_reg;
4136
4137         klass_inst = emit_get_gsharedvt_info_klass (cfg, klass, MONO_RGCTX_INFO_KLASS);
4138
4139         /* obj */
4140         args [0] = obj;
4141
4142         /* klass */
4143         args [1] = klass_inst;
4144
4145         /* CASTCLASS */
4146         obj = mono_emit_jit_icall (cfg, mono_object_castclass_unbox, args);
4147
4148         NEW_BBLOCK (cfg, is_ref_bb);
4149         NEW_BBLOCK (cfg, is_nullable_bb);
4150         NEW_BBLOCK (cfg, end_bb);
4151         is_ref = emit_get_gsharedvt_info_klass (cfg, klass, MONO_RGCTX_INFO_CLASS_BOX_TYPE);
4152         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, is_ref->dreg, MONO_GSHAREDVT_BOX_TYPE_REF);
4153         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_IBEQ, is_ref_bb);
4154
4155         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, is_ref->dreg, MONO_GSHAREDVT_BOX_TYPE_NULLABLE);
4156         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_IBEQ, is_nullable_bb);
4157
4158         /* This will contain either the address of the unboxed vtype, or an address of the temporary where the ref is stored */
4159         addr_reg = alloc_dreg (cfg, STACK_MP);
4160
4161         /* Non-ref case */
4162         /* UNBOX */
4163         NEW_BIALU_IMM (cfg, addr, OP_ADD_IMM, addr_reg, obj->dreg, sizeof (MonoObject));
4164         MONO_ADD_INS (cfg->cbb, addr);
4165
4166         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
4167
4168         /* Ref case */
4169         MONO_START_BB (cfg, is_ref_bb);
4170
4171         /* Save the ref to a temporary */
4172         dreg = alloc_ireg (cfg);
4173         EMIT_NEW_VARLOADA_VREG (cfg, addr, dreg, &klass->byval_arg);
4174         addr->dreg = addr_reg;
4175         MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STORE_MEMBASE_REG, addr->dreg, 0, obj->dreg);
4176         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
4177
4178         /* Nullable case */
4179         MONO_START_BB (cfg, is_nullable_bb);
4180
4181         {
4182                 MonoInst *addr = emit_get_gsharedvt_info_klass (cfg, klass, MONO_RGCTX_INFO_NULLABLE_CLASS_UNBOX);
4183                 MonoInst *unbox_call;
4184                 MonoMethodSignature *unbox_sig;
4185
4186                 unbox_sig = (MonoMethodSignature *)mono_mempool_alloc0 (cfg->mempool, MONO_SIZEOF_METHOD_SIGNATURE + (1 * sizeof (MonoType *)));
4187                 unbox_sig->ret = &klass->byval_arg;
4188                 unbox_sig->param_count = 1;
4189                 unbox_sig->params [0] = &mono_defaults.object_class->byval_arg;
4190
4191                 if (cfg->llvm_only)
4192                         unbox_call = emit_llvmonly_calli (cfg, unbox_sig, &obj, addr);
4193                 else
4194                         unbox_call = mono_emit_calli (cfg, unbox_sig, &obj, addr, NULL, NULL);
4195
4196                 EMIT_NEW_VARLOADA_VREG (cfg, addr, unbox_call->dreg, &klass->byval_arg);
4197                 addr->dreg = addr_reg;
4198         }
4199
4200         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
4201
4202         /* End */
4203         MONO_START_BB (cfg, end_bb);
4204
4205         /* LDOBJ */
4206         EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, ins, &klass->byval_arg, addr_reg, 0);
4207
4208         return ins;
4209 }
4210
4211 /*
4212  * Returns NULL and set the cfg exception on error.
4213  */
4214 static MonoInst*
4215 handle_alloc (MonoCompile *cfg, MonoClass *klass, gboolean for_box, int context_used)
4216 {
4217         MonoInst *iargs [2];
4218         void *alloc_ftn;
4219
4220         if (context_used) {
4221                 MonoInst *data;
4222                 MonoRgctxInfoType rgctx_info;
4223                 MonoInst *iargs [2];
4224                 gboolean known_instance_size = !mini_is_gsharedvt_klass (klass);
4225
4226                 MonoMethod *managed_alloc = mono_gc_get_managed_allocator (klass, for_box, known_instance_size);
4227
4228                 if (cfg->opt & MONO_OPT_SHARED)
4229                         rgctx_info = MONO_RGCTX_INFO_KLASS;
4230                 else
4231                         rgctx_info = MONO_RGCTX_INFO_VTABLE;
4232                 data = emit_get_rgctx_klass (cfg, context_used, klass, rgctx_info);
4233
4234                 if (cfg->opt & MONO_OPT_SHARED) {
4235                         EMIT_NEW_DOMAINCONST (cfg, iargs [0]);
4236                         iargs [1] = data;
4237                         alloc_ftn = ves_icall_object_new;
4238                 } else {
4239                         iargs [0] = data;
4240                         alloc_ftn = ves_icall_object_new_specific;
4241                 }
4242
4243                 if (managed_alloc && !(cfg->opt & MONO_OPT_SHARED)) {
4244                         if (known_instance_size) {
4245                                 int size = mono_class_instance_size (klass);
4246                                 if (size < sizeof (MonoObject))
4247                                         g_error ("Invalid size %d for class %s", size, mono_type_get_full_name (klass));
4248
4249                                 EMIT_NEW_ICONST (cfg, iargs [1], size);
4250                         }
4251                         return mono_emit_method_call (cfg, managed_alloc, iargs, NULL);
4252                 }
4253
4254                 return mono_emit_jit_icall (cfg, alloc_ftn, iargs);
4255         }
4256
4257         if (cfg->opt & MONO_OPT_SHARED) {
4258                 EMIT_NEW_DOMAINCONST (cfg, iargs [0]);
4259                 EMIT_NEW_CLASSCONST (cfg, iargs [1], klass);
4260
4261                 alloc_ftn = ves_icall_object_new;
4262         } else if (cfg->compile_aot && cfg->cbb->out_of_line && klass->type_token && klass->image == mono_defaults.corlib && !klass->generic_class) {
4263                 /* This happens often in argument checking code, eg. throw new FooException... */
4264                 /* Avoid relocations and save some space by calling a helper function specialized to mscorlib */
4265                 EMIT_NEW_ICONST (cfg, iargs [0], mono_metadata_token_index (klass->type_token));
4266                 return mono_emit_jit_icall (cfg, mono_helper_newobj_mscorlib, iargs);
4267         } else {
4268                 MonoVTable *vtable = mono_class_vtable (cfg->domain, klass);
4269                 MonoMethod *managed_alloc = NULL;
4270                 gboolean pass_lw;
4271
4272                 if (!vtable) {
4273                         mono_cfg_set_exception (cfg, MONO_EXCEPTION_TYPE_LOAD);
4274                         cfg->exception_ptr = klass;
4275                         return NULL;
4276                 }
4277
4278                 managed_alloc = mono_gc_get_managed_allocator (klass, for_box, TRUE);
4279
4280                 if (managed_alloc) {
4281                         int size = mono_class_instance_size (klass);
4282                         if (size < sizeof (MonoObject))
4283                                 g_error ("Invalid size %d for class %s", size, mono_type_get_full_name (klass));
4284
4285                         EMIT_NEW_VTABLECONST (cfg, iargs [0], vtable);
4286                         EMIT_NEW_ICONST (cfg, iargs [1], size);
4287                         return mono_emit_method_call (cfg, managed_alloc, iargs, NULL);
4288                 }
4289                 alloc_ftn = mono_class_get_allocation_ftn (vtable, for_box, &pass_lw);
4290                 if (pass_lw) {
4291                         guint32 lw = vtable->klass->instance_size;
4292                         lw = ((lw + (sizeof (gpointer) - 1)) & ~(sizeof (gpointer) - 1)) / sizeof (gpointer);
4293                         EMIT_NEW_ICONST (cfg, iargs [0], lw);
4294                         EMIT_NEW_VTABLECONST (cfg, iargs [1], vtable);
4295                 }
4296                 else {
4297                         EMIT_NEW_VTABLECONST (cfg, iargs [0], vtable);
4298                 }
4299         }
4300
4301         return mono_emit_jit_icall (cfg, alloc_ftn, iargs);
4302 }
4303         
4304 /*
4305  * Returns NULL and set the cfg exception on error.
4306  */     
4307 static MonoInst*
4308 handle_box (MonoCompile *cfg, MonoInst *val, MonoClass *klass, int context_used)
4309 {
4310         MonoInst *alloc, *ins;
4311
4312         if (mono_class_is_nullable (klass)) {
4313                 MonoMethod* method = mono_class_get_method_from_name (klass, "Box", 1);
4314
4315                 if (context_used) {
4316                         if (cfg->llvm_only && cfg->gsharedvt) {
4317                                 MonoInst *addr = emit_get_rgctx_method (cfg, context_used, method,
4318                                                                                                                 MONO_RGCTX_INFO_GENERIC_METHOD_CODE);
4319                                 return emit_llvmonly_calli (cfg, mono_method_signature (method), &val, addr);
4320                         } else {
4321                                 /* FIXME: What if the class is shared?  We might not
4322                                    have to get the method address from the RGCTX. */
4323                                 MonoInst *addr = emit_get_rgctx_method (cfg, context_used, method,
4324                                                                                                                 MONO_RGCTX_INFO_GENERIC_METHOD_CODE);
4325                                 MonoInst *rgctx = emit_get_rgctx (cfg, cfg->current_method, context_used);
4326
4327                                 return mono_emit_calli (cfg, mono_method_signature (method), &val, addr, NULL, rgctx);
4328                         }
4329                 } else {
4330                         gboolean pass_vtable, pass_mrgctx;
4331                         MonoInst *rgctx_arg = NULL;
4332
4333                         check_method_sharing (cfg, method, &pass_vtable, &pass_mrgctx);
4334                         g_assert (!pass_mrgctx);
4335
4336                         if (pass_vtable) {
4337                                 MonoVTable *vtable = mono_class_vtable (cfg->domain, method->klass);
4338
4339                                 g_assert (vtable);
4340                                 EMIT_NEW_VTABLECONST (cfg, rgctx_arg, vtable);
4341                         }
4342
4343                         return mono_emit_method_call_full (cfg, method, NULL, FALSE, &val, NULL, NULL, rgctx_arg);
4344                 }
4345         }
4346
4347         if (mini_is_gsharedvt_klass (klass)) {
4348                 MonoBasicBlock *is_ref_bb, *is_nullable_bb, *end_bb;
4349                 MonoInst *res, *is_ref, *src_var, *addr;
4350                 int dreg;
4351
4352                 dreg = alloc_ireg (cfg);
4353
4354                 NEW_BBLOCK (cfg, is_ref_bb);
4355                 NEW_BBLOCK (cfg, is_nullable_bb);
4356                 NEW_BBLOCK (cfg, end_bb);
4357                 is_ref = emit_get_gsharedvt_info_klass (cfg, klass, MONO_RGCTX_INFO_CLASS_BOX_TYPE);
4358                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, is_ref->dreg, MONO_GSHAREDVT_BOX_TYPE_REF);
4359                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_IBEQ, is_ref_bb);
4360
4361                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, is_ref->dreg, MONO_GSHAREDVT_BOX_TYPE_NULLABLE);
4362                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_IBEQ, is_nullable_bb);
4363
4364                 /* Non-ref case */
4365                 alloc = handle_alloc (cfg, klass, TRUE, context_used);
4366                 if (!alloc)
4367                         return NULL;
4368                 EMIT_NEW_STORE_MEMBASE_TYPE (cfg, ins, &klass->byval_arg, alloc->dreg, sizeof (MonoObject), val->dreg);
4369                 ins->opcode = OP_STOREV_MEMBASE;
4370
4371                 EMIT_NEW_UNALU (cfg, res, OP_MOVE, dreg, alloc->dreg);
4372                 res->type = STACK_OBJ;
4373                 res->klass = klass;
4374                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
4375                 
4376                 /* Ref case */
4377                 MONO_START_BB (cfg, is_ref_bb);
4378
4379                 /* val is a vtype, so has to load the value manually */
4380                 src_var = get_vreg_to_inst (cfg, val->dreg);
4381                 if (!src_var)
4382                         src_var = mono_compile_create_var_for_vreg (cfg, &klass->byval_arg, OP_LOCAL, val->dreg);
4383                 EMIT_NEW_VARLOADA (cfg, addr, src_var, src_var->inst_vtype);
4384                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, dreg, addr->dreg, 0);
4385                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
4386
4387                 /* Nullable case */
4388                 MONO_START_BB (cfg, is_nullable_bb);
4389
4390                 {
4391                         MonoInst *addr = emit_get_gsharedvt_info_klass (cfg, klass,
4392                                                                                                         MONO_RGCTX_INFO_NULLABLE_CLASS_BOX);
4393                         MonoInst *box_call;
4394                         MonoMethodSignature *box_sig;
4395
4396                         /*
4397                          * klass is Nullable<T>, need to call Nullable<T>.Box () using a gsharedvt signature, but we cannot
4398                          * construct that method at JIT time, so have to do things by hand.
4399                          */
4400                         box_sig = (MonoMethodSignature *)mono_mempool_alloc0 (cfg->mempool, MONO_SIZEOF_METHOD_SIGNATURE + (1 * sizeof (MonoType *)));
4401                         box_sig->ret = &mono_defaults.object_class->byval_arg;
4402                         box_sig->param_count = 1;
4403                         box_sig->params [0] = &klass->byval_arg;
4404
4405                         if (cfg->llvm_only)
4406                                 box_call = emit_llvmonly_calli (cfg, box_sig, &val, addr);
4407                         else
4408                                 box_call = mono_emit_calli (cfg, box_sig, &val, addr, NULL, NULL);
4409                         EMIT_NEW_UNALU (cfg, res, OP_MOVE, dreg, box_call->dreg);
4410                         res->type = STACK_OBJ;
4411                         res->klass = klass;
4412                 }
4413
4414                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
4415
4416                 MONO_START_BB (cfg, end_bb);
4417
4418                 return res;
4419         } else {
4420                 alloc = handle_alloc (cfg, klass, TRUE, context_used);
4421                 if (!alloc)
4422                         return NULL;
4423
4424                 EMIT_NEW_STORE_MEMBASE_TYPE (cfg, ins, &klass->byval_arg, alloc->dreg, sizeof (MonoObject), val->dreg);
4425                 return alloc;
4426         }
4427 }
4428
4429 static gboolean
4430 mini_class_has_reference_variant_generic_argument (MonoCompile *cfg, MonoClass *klass, int context_used)
4431 {
4432         int i;
4433         MonoGenericContainer *container;
4434         MonoGenericInst *ginst;
4435
4436         if (klass->generic_class) {
4437                 container = klass->generic_class->container_class->generic_container;
4438                 ginst = klass->generic_class->context.class_inst;
4439         } else if (klass->generic_container && context_used) {
4440                 container = klass->generic_container;
4441                 ginst = container->context.class_inst;
4442         } else {
4443                 return FALSE;
4444         }
4445
4446         for (i = 0; i < container->type_argc; ++i) {
4447                 MonoType *type;
4448                 if (!(mono_generic_container_get_param_info (container, i)->flags & (MONO_GEN_PARAM_VARIANT|MONO_GEN_PARAM_COVARIANT)))
4449                         continue;
4450                 type = ginst->type_argv [i];
4451                 if (mini_type_is_reference (type))
4452                         return TRUE;
4453         }
4454         return FALSE;
4455 }
4456
4457 static GHashTable* direct_icall_type_hash;
4458
4459 static gboolean
4460 icall_is_direct_callable (MonoCompile *cfg, MonoMethod *cmethod)
4461 {
4462         /* LLVM on amd64 can't handle calls to non-32 bit addresses */
4463         if (!direct_icalls_enabled (cfg))
4464                 return FALSE;
4465
4466         /*
4467          * An icall is directly callable if it doesn't directly or indirectly call mono_raise_exception ().
4468          * Whitelist a few icalls for now.
4469          */
4470         if (!direct_icall_type_hash) {
4471                 GHashTable *h = g_hash_table_new (g_str_hash, g_str_equal);
4472
4473                 g_hash_table_insert (h, (char*)"Decimal", GUINT_TO_POINTER (1));
4474                 g_hash_table_insert (h, (char*)"Number", GUINT_TO_POINTER (1));
4475                 g_hash_table_insert (h, (char*)"Buffer", GUINT_TO_POINTER (1));
4476                 g_hash_table_insert (h, (char*)"Monitor", GUINT_TO_POINTER (1));
4477                 mono_memory_barrier ();
4478                 direct_icall_type_hash = h;
4479         }
4480
4481         if (cmethod->klass == mono_defaults.math_class)
4482                 return TRUE;
4483         /* No locking needed */
4484         if (cmethod->klass->image == mono_defaults.corlib && g_hash_table_lookup (direct_icall_type_hash, cmethod->klass->name))
4485                 return TRUE;
4486         return FALSE;
4487 }
4488
4489 #define is_complex_isinst(klass) ((klass->flags & TYPE_ATTRIBUTE_INTERFACE) || klass->rank || mono_class_is_nullable (klass) || mono_class_is_marshalbyref (klass) || (klass->flags & TYPE_ATTRIBUTE_SEALED) || klass->byval_arg.type == MONO_TYPE_VAR || klass->byval_arg.type == MONO_TYPE_MVAR)
4490
4491 static MonoInst*
4492 emit_isinst_with_cache (MonoCompile *cfg, MonoClass *klass, MonoInst **args)
4493 {
4494         MonoMethod *mono_isinst = mono_marshal_get_isinst_with_cache ();
4495         return mono_emit_method_call (cfg, mono_isinst, args, NULL);
4496 }
4497
4498 static MonoInst*
4499 emit_castclass_with_cache (MonoCompile *cfg, MonoClass *klass, MonoInst **args)
4500 {
4501         MonoMethod *mono_castclass = mono_marshal_get_castclass_with_cache ();
4502         MonoInst *res;
4503
4504         save_cast_details (cfg, klass, args [0]->dreg, TRUE);
4505         res = mono_emit_method_call (cfg, mono_castclass, args, NULL);
4506         reset_cast_details (cfg);
4507
4508         return res;
4509 }
4510
4511 static int
4512 get_castclass_cache_idx (MonoCompile *cfg)
4513 {
4514         /* Each CASTCLASS_CACHE patch needs a unique index which identifies the call site */
4515         cfg->castclass_cache_index ++;
4516         return (cfg->method_index << 16) | cfg->castclass_cache_index;
4517 }
4518
4519
4520 static MonoInst*
4521 emit_isinst_with_cache_nonshared (MonoCompile *cfg, MonoInst *obj, MonoClass *klass)
4522 {
4523         MonoInst *args [3];
4524         int idx;
4525
4526         args [0] = obj; /* obj */
4527         EMIT_NEW_CLASSCONST (cfg, args [1], klass); /* klass */
4528
4529         idx = get_castclass_cache_idx (cfg); /* inline cache*/
4530         args [2] = emit_runtime_constant (cfg, MONO_PATCH_INFO_CASTCLASS_CACHE, GINT_TO_POINTER (idx));
4531
4532         return emit_isinst_with_cache (cfg, klass, args);
4533 }
4534
4535 static MonoInst*
4536 emit_castclass_with_cache_nonshared (MonoCompile *cfg, MonoInst *obj, MonoClass *klass)
4537 {
4538         MonoInst *args [3];
4539         int idx;
4540
4541         /* obj */
4542         args [0] = obj;
4543
4544         /* klass */
4545         EMIT_NEW_CLASSCONST (cfg, args [1], klass);
4546
4547         /* inline cache*/
4548         idx = get_castclass_cache_idx (cfg);
4549         args [2] = emit_runtime_constant (cfg, MONO_PATCH_INFO_CASTCLASS_CACHE, GINT_TO_POINTER (idx));
4550
4551         /*The wrapper doesn't inline well so the bloat of inlining doesn't pay off.*/
4552         return emit_castclass_with_cache (cfg, klass, args);
4553 }
4554
4555 /*
4556  * Returns NULL and set the cfg exception on error.
4557  */
4558 static MonoInst*
4559 handle_castclass (MonoCompile *cfg, MonoClass *klass, MonoInst *src, int context_used)
4560 {
4561         MonoBasicBlock *is_null_bb;
4562         int obj_reg = src->dreg;
4563         int vtable_reg = alloc_preg (cfg);
4564         MonoInst *klass_inst = NULL;
4565
4566         if (src->opcode == OP_PCONST && src->inst_p0 == 0)
4567                 return src;
4568
4569         if (context_used) {
4570                 MonoInst *args [3];
4571
4572                 if (mini_class_has_reference_variant_generic_argument (cfg, klass, context_used) || is_complex_isinst (klass)) {
4573                         MonoInst *cache_ins;
4574
4575                         cache_ins = emit_get_rgctx_klass (cfg, context_used, klass, MONO_RGCTX_INFO_CAST_CACHE);
4576
4577                         /* obj */
4578                         args [0] = src;
4579
4580                         /* klass - it's the second element of the cache entry*/
4581                         EMIT_NEW_LOAD_MEMBASE (cfg, args [1], OP_LOAD_MEMBASE, alloc_preg (cfg), cache_ins->dreg, sizeof (gpointer));
4582
4583                         /* cache */
4584                         args [2] = cache_ins;
4585
4586                         return emit_castclass_with_cache (cfg, klass, args);
4587                 }
4588
4589                 klass_inst = emit_get_rgctx_klass (cfg, context_used, klass, MONO_RGCTX_INFO_KLASS);
4590         }
4591
4592         NEW_BBLOCK (cfg, is_null_bb);
4593
4594         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, obj_reg, 0);
4595         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBEQ, is_null_bb);
4596
4597         save_cast_details (cfg, klass, obj_reg, FALSE);
4598
4599         if (klass->flags & TYPE_ATTRIBUTE_INTERFACE) {
4600                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, vtable_reg, obj_reg, MONO_STRUCT_OFFSET (MonoObject, vtable));
4601                 mini_emit_iface_cast (cfg, vtable_reg, klass, NULL, NULL);
4602         } else {
4603                 int klass_reg = alloc_preg (cfg);
4604
4605                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, vtable_reg, obj_reg, MONO_STRUCT_OFFSET (MonoObject, vtable));
4606
4607                 if (!klass->rank && !cfg->compile_aot && !(cfg->opt & MONO_OPT_SHARED) && (klass->flags & TYPE_ATTRIBUTE_SEALED)) {
4608                         /* the remoting code is broken, access the class for now */
4609                         if (0) { /*FIXME what exactly is broken? This change refers to r39380 from 2005 and mention some remoting fixes were due.*/
4610                                 MonoVTable *vt = mono_class_vtable (cfg->domain, klass);
4611                                 if (!vt) {
4612                                         mono_cfg_set_exception (cfg, MONO_EXCEPTION_TYPE_LOAD);
4613                                         cfg->exception_ptr = klass;
4614                                         return NULL;
4615                                 }
4616                                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, vtable_reg, vt);
4617                         } else {
4618                                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, klass_reg, vtable_reg, MONO_STRUCT_OFFSET (MonoVTable, klass));
4619                                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, klass_reg, klass);
4620                         }
4621                         MONO_EMIT_NEW_COND_EXC (cfg, NE_UN, "InvalidCastException");
4622                 } else {
4623                         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, klass_reg, vtable_reg, MONO_STRUCT_OFFSET (MonoVTable, klass));
4624                         mini_emit_castclass_inst (cfg, obj_reg, klass_reg, klass, klass_inst, is_null_bb);
4625                 }
4626         }
4627
4628         MONO_START_BB (cfg, is_null_bb);
4629
4630         reset_cast_details (cfg);
4631
4632         return src;
4633 }
4634
4635 /*
4636  * Returns NULL and set the cfg exception on error.
4637  */
4638 static MonoInst*
4639 handle_isinst (MonoCompile *cfg, MonoClass *klass, MonoInst *src, int context_used)
4640 {
4641         MonoInst *ins;
4642         MonoBasicBlock *is_null_bb, *false_bb, *end_bb;
4643         int obj_reg = src->dreg;
4644         int vtable_reg = alloc_preg (cfg);
4645         int res_reg = alloc_ireg_ref (cfg);
4646         MonoInst *klass_inst = NULL;
4647
4648         if (context_used) {
4649                 MonoInst *args [3];
4650
4651                 if(mini_class_has_reference_variant_generic_argument (cfg, klass, context_used) || is_complex_isinst (klass)) {
4652                         MonoInst *cache_ins = emit_get_rgctx_klass (cfg, context_used, klass, MONO_RGCTX_INFO_CAST_CACHE);
4653
4654                         args [0] = src; /* obj */
4655
4656                         /* klass - it's the second element of the cache entry*/
4657                         EMIT_NEW_LOAD_MEMBASE (cfg, args [1], OP_LOAD_MEMBASE, alloc_preg (cfg), cache_ins->dreg, sizeof (gpointer));
4658
4659                         args [2] = cache_ins; /* cache */
4660                         return emit_isinst_with_cache (cfg, klass, args);
4661                 }
4662
4663                 klass_inst = emit_get_rgctx_klass (cfg, context_used, klass, MONO_RGCTX_INFO_KLASS);
4664         }
4665
4666         NEW_BBLOCK (cfg, is_null_bb);
4667         NEW_BBLOCK (cfg, false_bb);
4668         NEW_BBLOCK (cfg, end_bb);
4669
4670         /* Do the assignment at the beginning, so the other assignment can be if converted */
4671         EMIT_NEW_UNALU (cfg, ins, OP_MOVE, res_reg, obj_reg);
4672         ins->type = STACK_OBJ;
4673         ins->klass = klass;
4674
4675         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, obj_reg, 0);
4676         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_IBEQ, is_null_bb);
4677
4678         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, vtable_reg, obj_reg, MONO_STRUCT_OFFSET (MonoObject, vtable));
4679
4680         if (klass->flags & TYPE_ATTRIBUTE_INTERFACE) {
4681                 g_assert (!context_used);
4682                 /* the is_null_bb target simply copies the input register to the output */
4683                 mini_emit_iface_cast (cfg, vtable_reg, klass, false_bb, is_null_bb);
4684         } else {
4685                 int klass_reg = alloc_preg (cfg);
4686
4687                 if (klass->rank) {
4688                         int rank_reg = alloc_preg (cfg);
4689                         int eclass_reg = alloc_preg (cfg);
4690
4691                         g_assert (!context_used);
4692                         MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADU1_MEMBASE, rank_reg, vtable_reg, MONO_STRUCT_OFFSET (MonoVTable, rank));
4693                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, rank_reg, klass->rank);
4694                         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBNE_UN, false_bb);
4695                         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, klass_reg, vtable_reg, MONO_STRUCT_OFFSET (MonoVTable, klass));
4696                         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, eclass_reg, klass_reg, MONO_STRUCT_OFFSET (MonoClass, cast_class));
4697                         if (klass->cast_class == mono_defaults.object_class) {
4698                                 int parent_reg = alloc_preg (cfg);
4699                                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, parent_reg, eclass_reg, MONO_STRUCT_OFFSET (MonoClass, parent));
4700                                 mini_emit_class_check_branch (cfg, parent_reg, mono_defaults.enum_class->parent, OP_PBNE_UN, is_null_bb);
4701                                 mini_emit_class_check_branch (cfg, eclass_reg, mono_defaults.enum_class, OP_PBEQ, is_null_bb);
4702                                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, false_bb);
4703                         } else if (klass->cast_class == mono_defaults.enum_class->parent) {
4704                                 mini_emit_class_check_branch (cfg, eclass_reg, mono_defaults.enum_class->parent, OP_PBEQ, is_null_bb);
4705                                 mini_emit_class_check_branch (cfg, eclass_reg, mono_defaults.enum_class, OP_PBEQ, is_null_bb);                          
4706                                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, false_bb);
4707                         } else if (klass->cast_class == mono_defaults.enum_class) {
4708                                 mini_emit_class_check_branch (cfg, eclass_reg, mono_defaults.enum_class, OP_PBEQ, is_null_bb);
4709                                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, false_bb);
4710                         } else if (klass->cast_class->flags & TYPE_ATTRIBUTE_INTERFACE) {
4711                                 mini_emit_iface_class_cast (cfg, eclass_reg, klass->cast_class, false_bb, is_null_bb);
4712                         } else {
4713                                 if ((klass->rank == 1) && (klass->byval_arg.type == MONO_TYPE_SZARRAY)) {
4714                                         /* Check that the object is a vector too */
4715                                         int bounds_reg = alloc_preg (cfg);
4716                                         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, bounds_reg, obj_reg, MONO_STRUCT_OFFSET (MonoArray, bounds));
4717                                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, bounds_reg, 0);
4718                                         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBNE_UN, false_bb);
4719                                 }
4720
4721                                 /* the is_null_bb target simply copies the input register to the output */
4722                                 mini_emit_isninst_cast (cfg, eclass_reg, klass->cast_class, false_bb, is_null_bb);
4723                         }
4724                 } else if (mono_class_is_nullable (klass)) {
4725                         g_assert (!context_used);
4726                         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, klass_reg, vtable_reg, MONO_STRUCT_OFFSET (MonoVTable, klass));
4727                         /* the is_null_bb target simply copies the input register to the output */
4728                         mini_emit_isninst_cast (cfg, klass_reg, klass->cast_class, false_bb, is_null_bb);
4729                 } else {
4730                         if (!cfg->compile_aot && !(cfg->opt & MONO_OPT_SHARED) && (klass->flags & TYPE_ATTRIBUTE_SEALED)) {
4731                                 g_assert (!context_used);
4732                                 /* the remoting code is broken, access the class for now */
4733                                 if (0) {/*FIXME what exactly is broken? This change refers to r39380 from 2005 and mention some remoting fixes were due.*/
4734                                         MonoVTable *vt = mono_class_vtable (cfg->domain, klass);
4735                                         if (!vt) {
4736                                                 mono_cfg_set_exception (cfg, MONO_EXCEPTION_TYPE_LOAD);
4737                                                 cfg->exception_ptr = klass;
4738                                                 return NULL;
4739                                         }
4740                                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, vtable_reg, vt);
4741                                 } else {
4742                                         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, klass_reg, vtable_reg, MONO_STRUCT_OFFSET (MonoVTable, klass));
4743                                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, klass_reg, klass);
4744                                 }
4745                                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBNE_UN, false_bb);
4746                                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, is_null_bb);
4747                         } else {
4748                                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, klass_reg, vtable_reg, MONO_STRUCT_OFFSET (MonoVTable, klass));
4749                                 /* the is_null_bb target simply copies the input register to the output */
4750                                 mini_emit_isninst_cast_inst (cfg, klass_reg, klass, klass_inst, false_bb, is_null_bb);
4751                         }
4752                 }
4753         }
4754
4755         MONO_START_BB (cfg, false_bb);
4756
4757         MONO_EMIT_NEW_PCONST (cfg, res_reg, 0);
4758         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
4759
4760         MONO_START_BB (cfg, is_null_bb);
4761
4762         MONO_START_BB (cfg, end_bb);
4763
4764         return ins;
4765 }
4766
4767 static MonoInst*
4768 handle_cisinst (MonoCompile *cfg, MonoClass *klass, MonoInst *src)
4769 {
4770         /* This opcode takes as input an object reference and a class, and returns:
4771         0) if the object is an instance of the class,
4772         1) if the object is not instance of the class,
4773         2) if the object is a proxy whose type cannot be determined */
4774
4775         MonoInst *ins;
4776 #ifndef DISABLE_REMOTING
4777         MonoBasicBlock *true_bb, *false_bb, *false2_bb, *end_bb, *no_proxy_bb, *interface_fail_bb;
4778 #else
4779         MonoBasicBlock *true_bb, *false_bb, *end_bb;
4780 #endif
4781         int obj_reg = src->dreg;
4782         int dreg = alloc_ireg (cfg);
4783         int tmp_reg;
4784 #ifndef DISABLE_REMOTING
4785         int klass_reg = alloc_preg (cfg);
4786 #endif
4787
4788         NEW_BBLOCK (cfg, true_bb);
4789         NEW_BBLOCK (cfg, false_bb);
4790         NEW_BBLOCK (cfg, end_bb);
4791 #ifndef DISABLE_REMOTING
4792         NEW_BBLOCK (cfg, false2_bb);
4793         NEW_BBLOCK (cfg, no_proxy_bb);
4794 #endif
4795
4796         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, obj_reg, 0);
4797         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBEQ, false_bb);
4798
4799         if (klass->flags & TYPE_ATTRIBUTE_INTERFACE) {
4800 #ifndef DISABLE_REMOTING
4801                 NEW_BBLOCK (cfg, interface_fail_bb);
4802 #endif
4803
4804                 tmp_reg = alloc_preg (cfg);
4805                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, tmp_reg, obj_reg, MONO_STRUCT_OFFSET (MonoObject, vtable));
4806 #ifndef DISABLE_REMOTING
4807                 mini_emit_iface_cast (cfg, tmp_reg, klass, interface_fail_bb, true_bb);
4808                 MONO_START_BB (cfg, interface_fail_bb);
4809                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, klass_reg, tmp_reg, MONO_STRUCT_OFFSET (MonoVTable, klass));
4810                 
4811                 mini_emit_class_check_branch (cfg, klass_reg, mono_defaults.transparent_proxy_class, OP_PBNE_UN, false_bb);
4812
4813                 tmp_reg = alloc_preg (cfg);
4814                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, tmp_reg, obj_reg, MONO_STRUCT_OFFSET (MonoTransparentProxy, custom_type_info));
4815                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, tmp_reg, 0);
4816                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBNE_UN, false2_bb);                
4817 #else
4818                 mini_emit_iface_cast (cfg, tmp_reg, klass, false_bb, true_bb);
4819 #endif
4820         } else {
4821 #ifndef DISABLE_REMOTING
4822                 tmp_reg = alloc_preg (cfg);
4823                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, tmp_reg, obj_reg, MONO_STRUCT_OFFSET (MonoObject, vtable));
4824                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, klass_reg, tmp_reg, MONO_STRUCT_OFFSET (MonoVTable, klass));
4825
4826                 mini_emit_class_check_branch (cfg, klass_reg, mono_defaults.transparent_proxy_class, OP_PBNE_UN, no_proxy_bb);          
4827                 tmp_reg = alloc_preg (cfg);
4828                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, tmp_reg, obj_reg, MONO_STRUCT_OFFSET (MonoTransparentProxy, remote_class));
4829                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, klass_reg, tmp_reg, MONO_STRUCT_OFFSET (MonoRemoteClass, proxy_class));
4830
4831                 tmp_reg = alloc_preg (cfg);             
4832                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, tmp_reg, obj_reg, MONO_STRUCT_OFFSET (MonoTransparentProxy, custom_type_info));
4833                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, tmp_reg, 0);
4834                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBEQ, no_proxy_bb);
4835                 
4836                 mini_emit_isninst_cast (cfg, klass_reg, klass, false2_bb, true_bb);
4837                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, false2_bb);
4838
4839                 MONO_START_BB (cfg, no_proxy_bb);
4840
4841                 mini_emit_isninst_cast (cfg, klass_reg, klass, false_bb, true_bb);
4842 #else
4843                 g_error ("transparent proxy support is disabled while trying to JIT code that uses it");
4844 #endif
4845         }
4846
4847         MONO_START_BB (cfg, false_bb);
4848
4849         MONO_EMIT_NEW_ICONST (cfg, dreg, 1);
4850         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
4851
4852 #ifndef DISABLE_REMOTING
4853         MONO_START_BB (cfg, false2_bb);
4854
4855         MONO_EMIT_NEW_ICONST (cfg, dreg, 2);
4856         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
4857 #endif
4858
4859         MONO_START_BB (cfg, true_bb);
4860
4861         MONO_EMIT_NEW_ICONST (cfg, dreg, 0);
4862
4863         MONO_START_BB (cfg, end_bb);
4864
4865         /* FIXME: */
4866         MONO_INST_NEW (cfg, ins, OP_ICONST);
4867         ins->dreg = dreg;
4868         ins->type = STACK_I4;
4869
4870         return ins;
4871 }
4872
4873 static MonoInst*
4874 handle_ccastclass (MonoCompile *cfg, MonoClass *klass, MonoInst *src)
4875 {
4876         /* This opcode takes as input an object reference and a class, and returns:
4877         0) if the object is an instance of the class,
4878         1) if the object is a proxy whose type cannot be determined
4879         an InvalidCastException exception is thrown otherwhise*/
4880         
4881         MonoInst *ins;
4882 #ifndef DISABLE_REMOTING
4883         MonoBasicBlock *end_bb, *ok_result_bb, *no_proxy_bb, *interface_fail_bb, *fail_1_bb;
4884 #else
4885         MonoBasicBlock *ok_result_bb;
4886 #endif
4887         int obj_reg = src->dreg;
4888         int dreg = alloc_ireg (cfg);
4889         int tmp_reg = alloc_preg (cfg);
4890
4891 #ifndef DISABLE_REMOTING
4892         int klass_reg = alloc_preg (cfg);
4893         NEW_BBLOCK (cfg, end_bb);
4894 #endif
4895
4896         NEW_BBLOCK (cfg, ok_result_bb);
4897
4898         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, obj_reg, 0);
4899         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBEQ, ok_result_bb);
4900
4901         save_cast_details (cfg, klass, obj_reg, FALSE);
4902
4903         if (klass->flags & TYPE_ATTRIBUTE_INTERFACE) {
4904 #ifndef DISABLE_REMOTING
4905                 NEW_BBLOCK (cfg, interface_fail_bb);
4906         
4907                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, tmp_reg, obj_reg, MONO_STRUCT_OFFSET (MonoObject, vtable));
4908                 mini_emit_iface_cast (cfg, tmp_reg, klass, interface_fail_bb, ok_result_bb);
4909                 MONO_START_BB (cfg, interface_fail_bb);
4910                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, klass_reg, tmp_reg, MONO_STRUCT_OFFSET (MonoVTable, klass));
4911
4912                 mini_emit_class_check (cfg, klass_reg, mono_defaults.transparent_proxy_class);
4913
4914                 tmp_reg = alloc_preg (cfg);             
4915                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, tmp_reg, obj_reg, MONO_STRUCT_OFFSET (MonoTransparentProxy, custom_type_info));
4916                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, tmp_reg, 0);
4917                 MONO_EMIT_NEW_COND_EXC (cfg, EQ, "InvalidCastException");
4918                 
4919                 MONO_EMIT_NEW_ICONST (cfg, dreg, 1);
4920                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
4921 #else
4922                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, tmp_reg, obj_reg, MONO_STRUCT_OFFSET (MonoObject, vtable));
4923                 mini_emit_iface_cast (cfg, tmp_reg, klass, NULL, NULL);
4924                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, ok_result_bb);
4925 #endif
4926         } else {
4927 #ifndef DISABLE_REMOTING
4928                 NEW_BBLOCK (cfg, no_proxy_bb);
4929
4930                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, tmp_reg, obj_reg, MONO_STRUCT_OFFSET (MonoObject, vtable));
4931                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, klass_reg, tmp_reg, MONO_STRUCT_OFFSET (MonoVTable, klass));
4932                 mini_emit_class_check_branch (cfg, klass_reg, mono_defaults.transparent_proxy_class, OP_PBNE_UN, no_proxy_bb);          
4933
4934                 tmp_reg = alloc_preg (cfg);
4935                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, tmp_reg, obj_reg, MONO_STRUCT_OFFSET (MonoTransparentProxy, remote_class));
4936                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, klass_reg, tmp_reg, MONO_STRUCT_OFFSET (MonoRemoteClass, proxy_class));
4937
4938                 tmp_reg = alloc_preg (cfg);
4939                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, tmp_reg, obj_reg, MONO_STRUCT_OFFSET (MonoTransparentProxy, custom_type_info));
4940                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, tmp_reg, 0);
4941                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBEQ, no_proxy_bb);
4942
4943                 NEW_BBLOCK (cfg, fail_1_bb);
4944                 
4945                 mini_emit_isninst_cast (cfg, klass_reg, klass, fail_1_bb, ok_result_bb);
4946
4947                 MONO_START_BB (cfg, fail_1_bb);
4948
4949                 MONO_EMIT_NEW_ICONST (cfg, dreg, 1);
4950                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
4951
4952                 MONO_START_BB (cfg, no_proxy_bb);
4953
4954                 mini_emit_castclass (cfg, obj_reg, klass_reg, klass, ok_result_bb);
4955 #else
4956                 g_error ("Transparent proxy support is disabled while trying to JIT code that uses it");
4957 #endif
4958         }
4959
4960         MONO_START_BB (cfg, ok_result_bb);
4961
4962         MONO_EMIT_NEW_ICONST (cfg, dreg, 0);
4963
4964 #ifndef DISABLE_REMOTING
4965         MONO_START_BB (cfg, end_bb);
4966 #endif
4967
4968         /* FIXME: */
4969         MONO_INST_NEW (cfg, ins, OP_ICONST);
4970         ins->dreg = dreg;
4971         ins->type = STACK_I4;
4972
4973         return ins;
4974 }
4975
4976 static G_GNUC_UNUSED MonoInst*
4977 handle_enum_has_flag (MonoCompile *cfg, MonoClass *klass, MonoInst *enum_this, MonoInst *enum_flag)
4978 {
4979         MonoType *enum_type = mono_type_get_underlying_type (&klass->byval_arg);
4980         guint32 load_opc = mono_type_to_load_membase (cfg, enum_type);
4981         gboolean is_i4;
4982
4983         switch (enum_type->type) {
4984         case MONO_TYPE_I8:
4985         case MONO_TYPE_U8:
4986 #if SIZEOF_REGISTER == 8
4987         case MONO_TYPE_I:
4988         case MONO_TYPE_U:
4989 #endif
4990                 is_i4 = FALSE;
4991                 break;
4992         default:
4993                 is_i4 = TRUE;
4994                 break;
4995         }
4996
4997         {
4998                 MonoInst *load, *and_, *cmp, *ceq;
4999                 int enum_reg = is_i4 ? alloc_ireg (cfg) : alloc_lreg (cfg);
5000                 int and_reg = is_i4 ? alloc_ireg (cfg) : alloc_lreg (cfg);
5001                 int dest_reg = alloc_ireg (cfg);
5002
5003                 EMIT_NEW_LOAD_MEMBASE (cfg, load, load_opc, enum_reg, enum_this->dreg, 0);
5004                 EMIT_NEW_BIALU (cfg, and_, is_i4 ? OP_IAND : OP_LAND, and_reg, enum_reg, enum_flag->dreg);
5005                 EMIT_NEW_BIALU (cfg, cmp, is_i4 ? OP_ICOMPARE : OP_LCOMPARE, -1, and_reg, enum_flag->dreg);
5006                 EMIT_NEW_UNALU (cfg, ceq, is_i4 ? OP_ICEQ : OP_LCEQ, dest_reg, -1);
5007
5008                 ceq->type = STACK_I4;
5009
5010                 if (!is_i4) {
5011                         load = mono_decompose_opcode (cfg, load);
5012                         and_ = mono_decompose_opcode (cfg, and_);
5013                         cmp = mono_decompose_opcode (cfg, cmp);
5014                         ceq = mono_decompose_opcode (cfg, ceq);
5015                 }
5016
5017                 return ceq;
5018         }
5019 }
5020
5021 /*
5022  * Returns NULL and set the cfg exception on error.
5023  */
5024 static G_GNUC_UNUSED MonoInst*
5025 handle_delegate_ctor (MonoCompile *cfg, MonoClass *klass, MonoInst *target, MonoMethod *method, int context_used, gboolean virtual_)
5026 {
5027         MonoInst *ptr;
5028         int dreg;
5029         gpointer trampoline;
5030         MonoInst *obj, *method_ins, *tramp_ins;
5031         MonoDomain *domain;
5032         guint8 **code_slot;
5033
5034         if (virtual_ && !cfg->llvm_only) {
5035                 MonoMethod *invoke = mono_get_delegate_invoke (klass);
5036                 g_assert (invoke);
5037
5038                 if (!mono_get_delegate_virtual_invoke_impl (mono_method_signature (invoke), context_used ? NULL : method))
5039                         return NULL;
5040         }
5041
5042         obj = handle_alloc (cfg, klass, FALSE, mono_class_check_context_used (klass));
5043         if (!obj)
5044                 return NULL;
5045
5046         /* Inline the contents of mono_delegate_ctor */
5047
5048         /* Set target field */
5049         /* Optimize away setting of NULL target */
5050         if (!(target->opcode == OP_PCONST && target->inst_p0 == 0)) {
5051                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STORE_MEMBASE_REG, obj->dreg, MONO_STRUCT_OFFSET (MonoDelegate, target), target->dreg);
5052                 if (cfg->gen_write_barriers) {
5053                         dreg = alloc_preg (cfg);
5054                         EMIT_NEW_BIALU_IMM (cfg, ptr, OP_PADD_IMM, dreg, obj->dreg, MONO_STRUCT_OFFSET (MonoDelegate, target));
5055                         emit_write_barrier (cfg, ptr, target);
5056                 }
5057         }
5058
5059         /* Set method field */
5060         method_ins = emit_get_rgctx_method (cfg, context_used, method, MONO_RGCTX_INFO_METHOD);
5061         MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STORE_MEMBASE_REG, obj->dreg, MONO_STRUCT_OFFSET (MonoDelegate, method), method_ins->dreg);
5062
5063         /* 
5064          * To avoid looking up the compiled code belonging to the target method
5065          * in mono_delegate_trampoline (), we allocate a per-domain memory slot to
5066          * store it, and we fill it after the method has been compiled.
5067          */
5068         if (!method->dynamic && !(cfg->opt & MONO_OPT_SHARED)) {
5069                 MonoInst *code_slot_ins;
5070
5071                 if (context_used) {
5072                         code_slot_ins = emit_get_rgctx_method (cfg, context_used, method, MONO_RGCTX_INFO_METHOD_DELEGATE_CODE);
5073                 } else {
5074                         domain = mono_domain_get ();
5075                         mono_domain_lock (domain);
5076                         if (!domain_jit_info (domain)->method_code_hash)
5077                                 domain_jit_info (domain)->method_code_hash = g_hash_table_new (NULL, NULL);
5078                         code_slot = (guint8 **)g_hash_table_lookup (domain_jit_info (domain)->method_code_hash, method);
5079                         if (!code_slot) {
5080                                 code_slot = (guint8 **)mono_domain_alloc0 (domain, sizeof (gpointer));
5081                                 g_hash_table_insert (domain_jit_info (domain)->method_code_hash, method, code_slot);
5082                         }
5083                         mono_domain_unlock (domain);
5084
5085                         code_slot_ins = emit_runtime_constant (cfg, MONO_PATCH_INFO_METHOD_CODE_SLOT, method);
5086                 }
5087                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STORE_MEMBASE_REG, obj->dreg, MONO_STRUCT_OFFSET (MonoDelegate, method_code), code_slot_ins->dreg);                
5088         }
5089
5090         if (cfg->llvm_only) {
5091                 MonoInst *args [16];
5092
5093                 if (virtual_) {
5094                         args [0] = obj;
5095                         args [1] = target;
5096                         args [2] = emit_get_rgctx_method (cfg, context_used, method, MONO_RGCTX_INFO_METHOD);
5097                         mono_emit_jit_icall (cfg, mono_llvmonly_init_delegate_virtual, args);
5098                 } else {
5099                         args [0] = obj;
5100                         mono_emit_jit_icall (cfg, mono_llvmonly_init_delegate, args);
5101                 }
5102
5103                 return obj;
5104         }
5105
5106         if (cfg->compile_aot) {
5107                 MonoDelegateClassMethodPair *del_tramp;
5108
5109                 del_tramp = (MonoDelegateClassMethodPair *)mono_mempool_alloc0 (cfg->mempool, sizeof (MonoDelegateClassMethodPair));
5110                 del_tramp->klass = klass;
5111                 del_tramp->method = context_used ? NULL : method;
5112                 del_tramp->is_virtual = virtual_;
5113                 EMIT_NEW_AOTCONST (cfg, tramp_ins, MONO_PATCH_INFO_DELEGATE_TRAMPOLINE, del_tramp);
5114         } else {
5115                 if (virtual_)
5116                         trampoline = mono_create_delegate_virtual_trampoline (cfg->domain, klass, context_used ? NULL : method);
5117                 else
5118                         trampoline = mono_create_delegate_trampoline_info (cfg->domain, klass, context_used ? NULL : method);
5119                 EMIT_NEW_PCONST (cfg, tramp_ins, trampoline);
5120         }
5121
5122         /* Set invoke_impl field */
5123         if (virtual_) {
5124                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STORE_MEMBASE_REG, obj->dreg, MONO_STRUCT_OFFSET (MonoDelegate, invoke_impl), tramp_ins->dreg);
5125         } else {
5126                 dreg = alloc_preg (cfg);
5127                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, dreg, tramp_ins->dreg, MONO_STRUCT_OFFSET (MonoDelegateTrampInfo, invoke_impl));
5128                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STORE_MEMBASE_REG, obj->dreg, MONO_STRUCT_OFFSET (MonoDelegate, invoke_impl), dreg);
5129
5130                 dreg = alloc_preg (cfg);
5131                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, dreg, tramp_ins->dreg, MONO_STRUCT_OFFSET (MonoDelegateTrampInfo, method_ptr));
5132                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STORE_MEMBASE_REG, obj->dreg, MONO_STRUCT_OFFSET (MonoDelegate, method_ptr), dreg);
5133         }
5134
5135         dreg = alloc_preg (cfg);
5136         MONO_EMIT_NEW_ICONST (cfg, dreg, virtual_ ? 1 : 0);
5137         MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREI1_MEMBASE_REG, obj->dreg, MONO_STRUCT_OFFSET (MonoDelegate, method_is_virtual), dreg);
5138
5139         /* All the checks which are in mono_delegate_ctor () are done by the delegate trampoline */
5140
5141         return obj;
5142 }
5143
5144 static MonoInst*
5145 handle_array_new (MonoCompile *cfg, int rank, MonoInst **sp, unsigned char *ip)
5146 {
5147         MonoJitICallInfo *info;
5148
5149         /* Need to register the icall so it gets an icall wrapper */
5150         info = mono_get_array_new_va_icall (rank);
5151
5152         cfg->flags |= MONO_CFG_HAS_VARARGS;
5153
5154         /* mono_array_new_va () needs a vararg calling convention */
5155         cfg->exception_message = g_strdup ("array-new");
5156         cfg->disable_llvm = TRUE;
5157
5158         /* FIXME: This uses info->sig, but it should use the signature of the wrapper */
5159         return mono_emit_native_call (cfg, mono_icall_get_wrapper (info), info->sig, sp);
5160 }
5161
5162 /*
5163  * handle_constrained_gsharedvt_call:
5164  *
5165  *   Handle constrained calls where the receiver is a gsharedvt type.
5166  * Return the instruction representing the call. Set the cfg exception on failure.
5167  */
5168 static MonoInst*
5169 handle_constrained_gsharedvt_call (MonoCompile *cfg, MonoMethod *cmethod, MonoMethodSignature *fsig, MonoInst **sp, MonoClass *constrained_class,
5170                                                                    gboolean *ref_emit_widen)
5171 {
5172         MonoInst *ins = NULL;
5173         gboolean emit_widen = *ref_emit_widen;
5174
5175         /*
5176          * Constrained calls need to behave differently at runtime dependending on whenever the receiver is instantiated as ref type or as a vtype.
5177          * This is hard to do with the current call code, since we would have to emit a branch and two different calls. So instead, we
5178          * pack the arguments into an array, and do the rest of the work in in an icall.
5179          */
5180         if (((cmethod->klass == mono_defaults.object_class) || (cmethod->klass->flags & TYPE_ATTRIBUTE_INTERFACE) || (!cmethod->klass->valuetype && cmethod->klass->image != mono_defaults.corlib)) &&
5181                 (MONO_TYPE_IS_VOID (fsig->ret) || MONO_TYPE_IS_PRIMITIVE (fsig->ret) || MONO_TYPE_IS_REFERENCE (fsig->ret) || MONO_TYPE_ISSTRUCT (fsig->ret) || mini_is_gsharedvt_type (fsig->ret)) &&
5182                 (fsig->param_count == 0 || (!fsig->hasthis && fsig->param_count == 1) || (fsig->param_count == 1 && (MONO_TYPE_IS_REFERENCE (fsig->params [0]) || fsig->params [0]->byref || mini_is_gsharedvt_type (fsig->params [0]))))) {
5183                 MonoInst *args [16];
5184
5185                 /*
5186                  * This case handles calls to
5187                  * - object:ToString()/Equals()/GetHashCode(),
5188                  * - System.IComparable<T>:CompareTo()
5189                  * - System.IEquatable<T>:Equals ()
5190                  * plus some simple interface calls enough to support AsyncTaskMethodBuilder.
5191                  */
5192
5193                 args [0] = sp [0];
5194                 if (mono_method_check_context_used (cmethod))
5195                         args [1] = emit_get_rgctx_method (cfg, mono_method_check_context_used (cmethod), cmethod, MONO_RGCTX_INFO_METHOD);
5196                 else
5197                         EMIT_NEW_METHODCONST (cfg, args [1], cmethod);
5198                 args [2] = emit_get_rgctx_klass (cfg, mono_class_check_context_used (constrained_class), constrained_class, MONO_RGCTX_INFO_KLASS);
5199
5200                 /* !fsig->hasthis is for the wrapper for the Object.GetType () icall */
5201                 if (fsig->hasthis && fsig->param_count) {
5202                         /* Pass the arguments using a localloc-ed array using the format expected by runtime_invoke () */
5203                         MONO_INST_NEW (cfg, ins, OP_LOCALLOC_IMM);
5204                         ins->dreg = alloc_preg (cfg);
5205                         ins->inst_imm = fsig->param_count * sizeof (mgreg_t);
5206                         MONO_ADD_INS (cfg->cbb, ins);
5207                         args [4] = ins;
5208
5209                         if (mini_is_gsharedvt_type (fsig->params [0])) {
5210                                 int addr_reg, deref_arg_reg;
5211
5212                                 ins = emit_get_gsharedvt_info_klass (cfg, mono_class_from_mono_type (fsig->params [0]), MONO_RGCTX_INFO_CLASS_BOX_TYPE);
5213                                 deref_arg_reg = alloc_preg (cfg);
5214                                 /* deref_arg = BOX_TYPE != MONO_GSHAREDVT_BOX_TYPE_VTYPE */
5215                                 EMIT_NEW_BIALU_IMM (cfg, args [3], OP_ISUB_IMM, deref_arg_reg, ins->dreg, 1);
5216
5217                                 EMIT_NEW_VARLOADA_VREG (cfg, ins, sp [1]->dreg, fsig->params [0]);
5218                                 addr_reg = ins->dreg;
5219                                 EMIT_NEW_STORE_MEMBASE (cfg, ins, OP_STORE_MEMBASE_REG, args [4]->dreg, 0, addr_reg);
5220                         } else {
5221                                 EMIT_NEW_ICONST (cfg, args [3], 0);
5222                                 EMIT_NEW_STORE_MEMBASE (cfg, ins, OP_STORE_MEMBASE_REG, args [4]->dreg, 0, sp [1]->dreg);
5223                         }
5224                 } else {
5225                         EMIT_NEW_ICONST (cfg, args [3], 0);
5226                         EMIT_NEW_ICONST (cfg, args [4], 0);
5227                 }
5228                 ins = mono_emit_jit_icall (cfg, mono_gsharedvt_constrained_call, args);
5229                 emit_widen = FALSE;
5230
5231                 if (mini_is_gsharedvt_type (fsig->ret)) {
5232                         ins = handle_unbox_gsharedvt (cfg, mono_class_from_mono_type (fsig->ret), ins);
5233                 } else if (MONO_TYPE_IS_PRIMITIVE (fsig->ret) || MONO_TYPE_ISSTRUCT (fsig->ret)) {
5234                         MonoInst *add;
5235
5236                         /* Unbox */
5237                         NEW_BIALU_IMM (cfg, add, OP_ADD_IMM, alloc_dreg (cfg, STACK_MP), ins->dreg, sizeof (MonoObject));
5238                         MONO_ADD_INS (cfg->cbb, add);
5239                         /* Load value */
5240                         NEW_LOAD_MEMBASE_TYPE (cfg, ins, fsig->ret, add->dreg, 0);
5241                         MONO_ADD_INS (cfg->cbb, ins);
5242                         /* ins represents the call result */
5243                 }
5244         } else {
5245                 GSHAREDVT_FAILURE (CEE_CALLVIRT);
5246         }
5247
5248         *ref_emit_widen = emit_widen;
5249
5250         return ins;
5251
5252  exception_exit:
5253         return NULL;
5254 }
5255
5256 static void
5257 mono_emit_load_got_addr (MonoCompile *cfg)
5258 {
5259         MonoInst *getaddr, *dummy_use;
5260
5261         if (!cfg->got_var || cfg->got_var_allocated)
5262                 return;
5263
5264         MONO_INST_NEW (cfg, getaddr, OP_LOAD_GOTADDR);
5265         getaddr->cil_code = cfg->header->code;
5266         getaddr->dreg = cfg->got_var->dreg;
5267
5268         /* Add it to the start of the first bblock */
5269         if (cfg->bb_entry->code) {
5270                 getaddr->next = cfg->bb_entry->code;
5271                 cfg->bb_entry->code = getaddr;
5272         }
5273         else
5274                 MONO_ADD_INS (cfg->bb_entry, getaddr);
5275
5276         cfg->got_var_allocated = TRUE;
5277
5278         /* 
5279          * Add a dummy use to keep the got_var alive, since real uses might
5280          * only be generated by the back ends.
5281          * Add it to end_bblock, so the variable's lifetime covers the whole
5282          * method.
5283          * It would be better to make the usage of the got var explicit in all
5284          * cases when the backend needs it (i.e. calls, throw etc.), so this
5285          * wouldn't be needed.
5286          */
5287         NEW_DUMMY_USE (cfg, dummy_use, cfg->got_var);
5288         MONO_ADD_INS (cfg->bb_exit, dummy_use);
5289 }
5290
5291 static int inline_limit;
5292 static gboolean inline_limit_inited;
5293
5294 static gboolean
5295 mono_method_check_inlining (MonoCompile *cfg, MonoMethod *method)
5296 {
5297         MonoMethodHeaderSummary header;
5298         MonoVTable *vtable;
5299 #ifdef MONO_ARCH_SOFT_FLOAT_FALLBACK
5300         MonoMethodSignature *sig = mono_method_signature (method);
5301         int i;
5302 #endif
5303
5304         if (cfg->disable_inline)
5305                 return FALSE;
5306         if (cfg->gshared)
5307                 return FALSE;
5308
5309         if (cfg->inline_depth > 10)
5310                 return FALSE;
5311
5312         if (!mono_method_get_header_summary (method, &header))
5313                 return FALSE;
5314
5315         /*runtime, icall and pinvoke are checked by summary call*/
5316         if ((method->iflags & METHOD_IMPL_ATTRIBUTE_NOINLINING) ||
5317             (method->iflags & METHOD_IMPL_ATTRIBUTE_SYNCHRONIZED) ||
5318             (mono_class_is_marshalbyref (method->klass)) ||
5319             header.has_clauses)
5320                 return FALSE;
5321
5322         /* also consider num_locals? */
5323         /* Do the size check early to avoid creating vtables */
5324         if (!inline_limit_inited) {
5325                 if (g_getenv ("MONO_INLINELIMIT"))
5326                         inline_limit = atoi (g_getenv ("MONO_INLINELIMIT"));
5327                 else
5328                         inline_limit = INLINE_LENGTH_LIMIT;
5329                 inline_limit_inited = TRUE;
5330         }
5331         if (header.code_size >= inline_limit && !(method->iflags & METHOD_IMPL_ATTRIBUTE_AGGRESSIVE_INLINING))
5332                 return FALSE;
5333
5334         /*
5335          * if we can initialize the class of the method right away, we do,
5336          * otherwise we don't allow inlining if the class needs initialization,
5337          * since it would mean inserting a call to mono_runtime_class_init()
5338          * inside the inlined code
5339          */
5340         if (!(cfg->opt & MONO_OPT_SHARED)) {
5341                 /* The AggressiveInlining hint is a good excuse to force that cctor to run. */
5342                 if (method->iflags & METHOD_IMPL_ATTRIBUTE_AGGRESSIVE_INLINING) {
5343                         vtable = mono_class_vtable (cfg->domain, method->klass);
5344                         if (!vtable)
5345                                 return FALSE;
5346                         if (!cfg->compile_aot) {
5347                                 MonoError error;
5348                                 if (!mono_runtime_class_init_full (vtable, &error)) {
5349                                         mono_error_cleanup (&error);
5350                                         return FALSE;
5351                                 }
5352                         }
5353                 } else if (method->klass->flags & TYPE_ATTRIBUTE_BEFORE_FIELD_INIT) {
5354                         if (cfg->run_cctors && method->klass->has_cctor) {
5355                                 /*FIXME it would easier and lazier to just use mono_class_try_get_vtable */
5356                                 if (!method->klass->runtime_info)
5357                                         /* No vtable created yet */
5358                                         return FALSE;
5359                                 vtable = mono_class_vtable (cfg->domain, method->klass);
5360                                 if (!vtable)
5361                                         return FALSE;
5362                                 /* This makes so that inline cannot trigger */
5363                                 /* .cctors: too many apps depend on them */
5364                                 /* running with a specific order... */
5365                                 if (! vtable->initialized)
5366                                         return FALSE;
5367                                 MonoError error;
5368                                 if (!mono_runtime_class_init_full (vtable, &error)) {
5369                                         mono_error_cleanup (&error);
5370                                         return FALSE;
5371                                 }
5372                         }
5373                 } else if (mono_class_needs_cctor_run (method->klass, NULL)) {
5374                         if (!method->klass->runtime_info)
5375                                 /* No vtable created yet */
5376                                 return FALSE;
5377                         vtable = mono_class_vtable (cfg->domain, method->klass);
5378                         if (!vtable)
5379                                 return FALSE;
5380                         if (!vtable->initialized)
5381                                 return FALSE;
5382                 }
5383         } else {
5384                 /* 
5385                  * If we're compiling for shared code
5386                  * the cctor will need to be run at aot method load time, for example,
5387                  * or at the end of the compilation of the inlining method.
5388                  */
5389                 if (mono_class_needs_cctor_run (method->klass, NULL) && !((method->klass->flags & TYPE_ATTRIBUTE_BEFORE_FIELD_INIT)))
5390                         return FALSE;
5391         }
5392
5393 #ifdef MONO_ARCH_SOFT_FLOAT_FALLBACK
5394         if (mono_arch_is_soft_float ()) {
5395                 /* FIXME: */
5396                 if (sig->ret && sig->ret->type == MONO_TYPE_R4)
5397                         return FALSE;
5398                 for (i = 0; i < sig->param_count; ++i)
5399                         if (!sig->params [i]->byref && sig->params [i]->type == MONO_TYPE_R4)
5400                                 return FALSE;
5401         }
5402 #endif
5403
5404         if (g_list_find (cfg->dont_inline, method))
5405                 return FALSE;
5406
5407         return TRUE;
5408 }
5409
5410 static gboolean
5411 mini_field_access_needs_cctor_run (MonoCompile *cfg, MonoMethod *method, MonoClass *klass, MonoVTable *vtable)
5412 {
5413         if (!cfg->compile_aot) {
5414                 g_assert (vtable);
5415                 if (vtable->initialized)
5416                         return FALSE;
5417         }
5418
5419         if (klass->flags & TYPE_ATTRIBUTE_BEFORE_FIELD_INIT) {
5420                 if (cfg->method == method)
5421                         return FALSE;
5422         }
5423
5424         if (!mono_class_needs_cctor_run (klass, method))
5425                 return FALSE;
5426
5427         if (! (method->flags & METHOD_ATTRIBUTE_STATIC) && (klass == method->klass))
5428                 /* The initialization is already done before the method is called */
5429                 return FALSE;
5430
5431         return TRUE;
5432 }
5433
5434 static MonoInst*
5435 mini_emit_ldelema_1_ins (MonoCompile *cfg, MonoClass *klass, MonoInst *arr, MonoInst *index, gboolean bcheck)
5436 {
5437         MonoInst *ins;
5438         guint32 size;
5439         int mult_reg, add_reg, array_reg, index_reg, index2_reg;
5440         int context_used;
5441
5442         if (mini_is_gsharedvt_variable_klass (klass)) {
5443                 size = -1;
5444         } else {
5445                 mono_class_init (klass);
5446                 size = mono_class_array_element_size (klass);
5447         }
5448
5449         mult_reg = alloc_preg (cfg);
5450         array_reg = arr->dreg;
5451         index_reg = index->dreg;
5452
5453 #if SIZEOF_REGISTER == 8
5454         /* The array reg is 64 bits but the index reg is only 32 */
5455         if (COMPILE_LLVM (cfg)) {
5456                 /* Not needed */
5457                 index2_reg = index_reg;
5458         } else {
5459                 index2_reg = alloc_preg (cfg);
5460                 MONO_EMIT_NEW_UNALU (cfg, OP_SEXT_I4, index2_reg, index_reg);
5461         }
5462 #else
5463         if (index->type == STACK_I8) {
5464                 index2_reg = alloc_preg (cfg);
5465                 MONO_EMIT_NEW_UNALU (cfg, OP_LCONV_TO_I4, index2_reg, index_reg);
5466         } else {
5467                 index2_reg = index_reg;
5468         }
5469 #endif
5470
5471         if (bcheck)
5472                 MONO_EMIT_BOUNDS_CHECK (cfg, array_reg, MonoArray, max_length, index2_reg);
5473
5474 #if defined(TARGET_X86) || defined(TARGET_AMD64)
5475         if (size == 1 || size == 2 || size == 4 || size == 8) {
5476                 static const int fast_log2 [] = { 1, 0, 1, -1, 2, -1, -1, -1, 3 };
5477
5478                 EMIT_NEW_X86_LEA (cfg, ins, array_reg, index2_reg, fast_log2 [size], MONO_STRUCT_OFFSET (MonoArray, vector));
5479                 ins->klass = mono_class_get_element_class (klass);
5480                 ins->type = STACK_MP;
5481
5482                 return ins;
5483         }
5484 #endif          
5485
5486         add_reg = alloc_ireg_mp (cfg);
5487
5488         if (size == -1) {
5489                 MonoInst *rgctx_ins;
5490
5491                 /* gsharedvt */
5492                 g_assert (cfg->gshared);
5493                 context_used = mini_class_check_context_used (cfg, klass);
5494                 g_assert (context_used);
5495                 rgctx_ins = emit_get_gsharedvt_info_klass (cfg, klass, MONO_RGCTX_INFO_ARRAY_ELEMENT_SIZE);
5496                 MONO_EMIT_NEW_BIALU (cfg, OP_IMUL, mult_reg, index2_reg, rgctx_ins->dreg);
5497         } else {
5498                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_MUL_IMM, mult_reg, index2_reg, size);
5499         }
5500         MONO_EMIT_NEW_BIALU (cfg, OP_PADD, add_reg, array_reg, mult_reg);
5501         NEW_BIALU_IMM (cfg, ins, OP_PADD_IMM, add_reg, add_reg, MONO_STRUCT_OFFSET (MonoArray, vector));
5502         ins->klass = mono_class_get_element_class (klass);
5503         ins->type = STACK_MP;
5504         MONO_ADD_INS (cfg->cbb, ins);
5505
5506         return ins;
5507 }
5508
5509 static MonoInst*
5510 mini_emit_ldelema_2_ins (MonoCompile *cfg, MonoClass *klass, MonoInst *arr, MonoInst *index_ins1, MonoInst *index_ins2)
5511 {
5512         int bounds_reg = alloc_preg (cfg);
5513         int add_reg = alloc_ireg_mp (cfg);
5514         int mult_reg = alloc_preg (cfg);
5515         int mult2_reg = alloc_preg (cfg);
5516         int low1_reg = alloc_preg (cfg);
5517         int low2_reg = alloc_preg (cfg);
5518         int high1_reg = alloc_preg (cfg);
5519         int high2_reg = alloc_preg (cfg);
5520         int realidx1_reg = alloc_preg (cfg);
5521         int realidx2_reg = alloc_preg (cfg);
5522         int sum_reg = alloc_preg (cfg);
5523         int index1, index2, tmpreg;
5524         MonoInst *ins;
5525         guint32 size;
5526
5527         mono_class_init (klass);
5528         size = mono_class_array_element_size (klass);
5529
5530         index1 = index_ins1->dreg;
5531         index2 = index_ins2->dreg;
5532
5533 #if SIZEOF_REGISTER == 8
5534         /* The array reg is 64 bits but the index reg is only 32 */
5535         if (COMPILE_LLVM (cfg)) {
5536                 /* Not needed */
5537         } else {
5538                 tmpreg = alloc_preg (cfg);
5539                 MONO_EMIT_NEW_UNALU (cfg, OP_SEXT_I4, tmpreg, index1);
5540                 index1 = tmpreg;
5541                 tmpreg = alloc_preg (cfg);
5542                 MONO_EMIT_NEW_UNALU (cfg, OP_SEXT_I4, tmpreg, index2);
5543                 index2 = tmpreg;
5544         }
5545 #else
5546         // FIXME: Do we need to do something here for i8 indexes, like in ldelema_1_ins ?
5547         tmpreg = -1;
5548 #endif
5549
5550         /* range checking */
5551         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, bounds_reg, 
5552                                        arr->dreg, MONO_STRUCT_OFFSET (MonoArray, bounds));
5553
5554         MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADI4_MEMBASE, low1_reg, 
5555                                        bounds_reg, MONO_STRUCT_OFFSET (MonoArrayBounds, lower_bound));
5556         MONO_EMIT_NEW_BIALU (cfg, OP_PSUB, realidx1_reg, index1, low1_reg);
5557         MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADI4_MEMBASE, high1_reg, 
5558                                        bounds_reg, MONO_STRUCT_OFFSET (MonoArrayBounds, length));
5559         MONO_EMIT_NEW_BIALU (cfg, OP_COMPARE, -1, high1_reg, realidx1_reg);
5560         MONO_EMIT_NEW_COND_EXC (cfg, LE_UN, "IndexOutOfRangeException");
5561
5562         MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADI4_MEMBASE, low2_reg, 
5563                                        bounds_reg, sizeof (MonoArrayBounds) + MONO_STRUCT_OFFSET (MonoArrayBounds, lower_bound));
5564         MONO_EMIT_NEW_BIALU (cfg, OP_PSUB, realidx2_reg, index2, low2_reg);
5565         MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADI4_MEMBASE, high2_reg, 
5566                                        bounds_reg, sizeof (MonoArrayBounds) + MONO_STRUCT_OFFSET (MonoArrayBounds, length));
5567         MONO_EMIT_NEW_BIALU (cfg, OP_COMPARE, -1, high2_reg, realidx2_reg);
5568         MONO_EMIT_NEW_COND_EXC (cfg, LE_UN, "IndexOutOfRangeException");
5569
5570         MONO_EMIT_NEW_BIALU (cfg, OP_PMUL, mult_reg, high2_reg, realidx1_reg);
5571         MONO_EMIT_NEW_BIALU (cfg, OP_PADD, sum_reg, mult_reg, realidx2_reg);
5572         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_PMUL_IMM, mult2_reg, sum_reg, size);
5573         MONO_EMIT_NEW_BIALU (cfg, OP_PADD, add_reg, mult2_reg, arr->dreg);
5574         NEW_BIALU_IMM (cfg, ins, OP_PADD_IMM, add_reg, add_reg, MONO_STRUCT_OFFSET (MonoArray, vector));
5575
5576         ins->type = STACK_MP;
5577         ins->klass = klass;
5578         MONO_ADD_INS (cfg->cbb, ins);
5579
5580         return ins;
5581 }
5582
5583 static MonoInst*
5584 mini_emit_ldelema_ins (MonoCompile *cfg, MonoMethod *cmethod, MonoInst **sp, unsigned char *ip, gboolean is_set)
5585 {
5586         int rank;
5587         MonoInst *addr;
5588         MonoMethod *addr_method;
5589         int element_size;
5590         MonoClass *eclass = cmethod->klass->element_class;
5591
5592         rank = mono_method_signature (cmethod)->param_count - (is_set? 1: 0);
5593
5594         if (rank == 1)
5595                 return mini_emit_ldelema_1_ins (cfg, eclass, sp [0], sp [1], TRUE);
5596
5597         /* emit_ldelema_2 depends on OP_LMUL */
5598         if (!cfg->backend->emulate_mul_div && rank == 2 && (cfg->opt & MONO_OPT_INTRINS) && !mini_is_gsharedvt_variable_klass (eclass)) {
5599                 return mini_emit_ldelema_2_ins (cfg, eclass, sp [0], sp [1], sp [2]);
5600         }
5601
5602         if (mini_is_gsharedvt_variable_klass (eclass))
5603                 element_size = 0;
5604         else
5605                 element_size = mono_class_array_element_size (eclass);
5606         addr_method = mono_marshal_get_array_address (rank, element_size);
5607         addr = mono_emit_method_call (cfg, addr_method, sp, NULL);
5608
5609         return addr;
5610 }
5611
5612 static MonoBreakPolicy
5613 always_insert_breakpoint (MonoMethod *method)
5614 {
5615         return MONO_BREAK_POLICY_ALWAYS;
5616 }
5617
5618 static MonoBreakPolicyFunc break_policy_func = always_insert_breakpoint;
5619
5620 /**
5621  * mono_set_break_policy:
5622  * policy_callback: the new callback function
5623  *
5624  * Allow embedders to decide wherther to actually obey breakpoint instructions
5625  * (both break IL instructions and Debugger.Break () method calls), for example
5626  * to not allow an app to be aborted by a perfectly valid IL opcode when executing
5627  * untrusted or semi-trusted code.
5628  *
5629  * @policy_callback will be called every time a break point instruction needs to
5630  * be inserted with the method argument being the method that calls Debugger.Break()
5631  * or has the IL break instruction. The callback should return #MONO_BREAK_POLICY_NEVER
5632  * if it wants the breakpoint to not be effective in the given method.
5633  * #MONO_BREAK_POLICY_ALWAYS is the default.
5634  */
5635 void
5636 mono_set_break_policy (MonoBreakPolicyFunc policy_callback)
5637 {
5638         if (policy_callback)
5639                 break_policy_func = policy_callback;
5640         else
5641                 break_policy_func = always_insert_breakpoint;
5642 }
5643
5644 static gboolean
5645 should_insert_brekpoint (MonoMethod *method) {
5646         switch (break_policy_func (method)) {
5647         case MONO_BREAK_POLICY_ALWAYS:
5648                 return TRUE;
5649         case MONO_BREAK_POLICY_NEVER:
5650                 return FALSE;
5651         case MONO_BREAK_POLICY_ON_DBG:
5652                 g_warning ("mdb no longer supported");
5653                 return FALSE;
5654         default:
5655                 g_warning ("Incorrect value returned from break policy callback");
5656                 return FALSE;
5657         }
5658 }
5659
5660 /* optimize the simple GetGenericValueImpl/SetGenericValueImpl generic icalls */
5661 static MonoInst*
5662 emit_array_generic_access (MonoCompile *cfg, MonoMethodSignature *fsig, MonoInst **args, int is_set)
5663 {
5664         MonoInst *addr, *store, *load;
5665         MonoClass *eklass = mono_class_from_mono_type (fsig->params [2]);
5666
5667         /* the bounds check is already done by the callers */
5668         addr = mini_emit_ldelema_1_ins (cfg, eklass, args [0], args [1], FALSE);
5669         if (is_set) {
5670                 EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, load, &eklass->byval_arg, args [2]->dreg, 0);
5671                 EMIT_NEW_STORE_MEMBASE_TYPE (cfg, store, &eklass->byval_arg, addr->dreg, 0, load->dreg);
5672                 if (mini_type_is_reference (fsig->params [2]))
5673                         emit_write_barrier (cfg, addr, load);
5674         } else {
5675                 EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, load, &eklass->byval_arg, addr->dreg, 0);
5676                 EMIT_NEW_STORE_MEMBASE_TYPE (cfg, store, &eklass->byval_arg, args [2]->dreg, 0, load->dreg);
5677         }
5678         return store;
5679 }
5680
5681
5682 static gboolean
5683 generic_class_is_reference_type (MonoCompile *cfg, MonoClass *klass)
5684 {
5685         return mini_type_is_reference (&klass->byval_arg);
5686 }
5687
5688 static MonoInst*
5689 emit_array_store (MonoCompile *cfg, MonoClass *klass, MonoInst **sp, gboolean safety_checks)
5690 {
5691         if (safety_checks && generic_class_is_reference_type (cfg, klass) &&
5692                 !(sp [2]->opcode == OP_PCONST && sp [2]->inst_p0 == NULL)) {
5693                 MonoClass *obj_array = mono_array_class_get_cached (mono_defaults.object_class, 1);
5694                 MonoMethod *helper = mono_marshal_get_virtual_stelemref (obj_array);
5695                 MonoInst *iargs [3];
5696
5697                 if (!helper->slot)
5698                         mono_class_setup_vtable (obj_array);
5699                 g_assert (helper->slot);
5700
5701                 if (sp [0]->type != STACK_OBJ)
5702                         return NULL;
5703                 if (sp [2]->type != STACK_OBJ)
5704                         return NULL;
5705
5706                 iargs [2] = sp [2];
5707                 iargs [1] = sp [1];
5708                 iargs [0] = sp [0];
5709
5710                 return mono_emit_method_call (cfg, helper, iargs, sp [0]);
5711         } else {
5712                 MonoInst *ins;
5713
5714                 if (mini_is_gsharedvt_variable_klass (klass)) {
5715                         MonoInst *addr;
5716
5717                         // FIXME-VT: OP_ICONST optimization
5718                         addr = mini_emit_ldelema_1_ins (cfg, klass, sp [0], sp [1], TRUE);
5719                         EMIT_NEW_STORE_MEMBASE_TYPE (cfg, ins, &klass->byval_arg, addr->dreg, 0, sp [2]->dreg);
5720                         ins->opcode = OP_STOREV_MEMBASE;
5721                 } else if (sp [1]->opcode == OP_ICONST) {
5722                         int array_reg = sp [0]->dreg;
5723                         int index_reg = sp [1]->dreg;
5724                         int offset = (mono_class_array_element_size (klass) * sp [1]->inst_c0) + MONO_STRUCT_OFFSET (MonoArray, vector);
5725
5726                         if (SIZEOF_REGISTER == 8 && COMPILE_LLVM (cfg))
5727                                 MONO_EMIT_NEW_UNALU (cfg, OP_ZEXT_I4, index_reg, index_reg);
5728
5729                         if (safety_checks)
5730                                 MONO_EMIT_BOUNDS_CHECK (cfg, array_reg, MonoArray, max_length, index_reg);
5731                         EMIT_NEW_STORE_MEMBASE_TYPE (cfg, ins, &klass->byval_arg, array_reg, offset, sp [2]->dreg);
5732                 } else {
5733                         MonoInst *addr = mini_emit_ldelema_1_ins (cfg, klass, sp [0], sp [1], safety_checks);
5734                         EMIT_NEW_STORE_MEMBASE_TYPE (cfg, ins, &klass->byval_arg, addr->dreg, 0, sp [2]->dreg);
5735                         if (generic_class_is_reference_type (cfg, klass))
5736                                 emit_write_barrier (cfg, addr, sp [2]);
5737                 }
5738                 return ins;
5739         }
5740 }
5741
5742 static MonoInst*
5743 emit_array_unsafe_access (MonoCompile *cfg, MonoMethodSignature *fsig, MonoInst **args, int is_set)
5744 {
5745         MonoClass *eklass;
5746         
5747         if (is_set)
5748                 eklass = mono_class_from_mono_type (fsig->params [2]);
5749         else
5750                 eklass = mono_class_from_mono_type (fsig->ret);
5751
5752         if (is_set) {
5753                 return emit_array_store (cfg, eklass, args, FALSE);
5754         } else {
5755                 MonoInst *ins, *addr = mini_emit_ldelema_1_ins (cfg, eklass, args [0], args [1], FALSE);
5756                 EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, ins, &eklass->byval_arg, addr->dreg, 0);
5757                 return ins;
5758         }
5759 }
5760
5761 static gboolean
5762 is_unsafe_mov_compatible (MonoCompile *cfg, MonoClass *param_klass, MonoClass *return_klass)
5763 {
5764         uint32_t align;
5765         int param_size, return_size;
5766
5767         param_klass = mono_class_from_mono_type (mini_get_underlying_type (&param_klass->byval_arg));
5768         return_klass = mono_class_from_mono_type (mini_get_underlying_type (&return_klass->byval_arg));
5769
5770         if (cfg->verbose_level > 3)
5771                 printf ("[UNSAFE-MOV-INTRISIC] %s <- %s\n", return_klass->name, param_klass->name);
5772
5773         //Don't allow mixing reference types with value types
5774         if (param_klass->valuetype != return_klass->valuetype) {
5775                 if (cfg->verbose_level > 3)
5776                         printf ("[UNSAFE-MOV-INTRISIC]\tone of the args is a valuetype and the other is not\n");
5777                 return FALSE;
5778         }
5779
5780         if (!param_klass->valuetype) {
5781                 if (cfg->verbose_level > 3)
5782                         printf ("[UNSAFE-MOV-INTRISIC]\targs are reference types\n");
5783                 return TRUE;
5784         }
5785
5786         //That are blitable
5787         if (param_klass->has_references || return_klass->has_references)
5788                 return FALSE;
5789
5790         /* Avoid mixing structs and primitive types/enums, they need to be handled differently in the JIT */
5791         if ((MONO_TYPE_ISSTRUCT (&param_klass->byval_arg) && !MONO_TYPE_ISSTRUCT (&return_klass->byval_arg)) ||
5792                 (!MONO_TYPE_ISSTRUCT (&param_klass->byval_arg) && MONO_TYPE_ISSTRUCT (&return_klass->byval_arg))) {
5793                         if (cfg->verbose_level > 3)
5794                                 printf ("[UNSAFE-MOV-INTRISIC]\tmixing structs and scalars\n");
5795                 return FALSE;
5796         }
5797
5798         if (param_klass->byval_arg.type == MONO_TYPE_R4 || param_klass->byval_arg.type == MONO_TYPE_R8 ||
5799                 return_klass->byval_arg.type == MONO_TYPE_R4 || return_klass->byval_arg.type == MONO_TYPE_R8) {
5800                 if (cfg->verbose_level > 3)
5801                         printf ("[UNSAFE-MOV-INTRISIC]\tfloat or double are not supported\n");
5802                 return FALSE;
5803         }
5804
5805         param_size = mono_class_value_size (param_klass, &align);
5806         return_size = mono_class_value_size (return_klass, &align);
5807
5808         //We can do it if sizes match
5809         if (param_size == return_size) {
5810                 if (cfg->verbose_level > 3)
5811                         printf ("[UNSAFE-MOV-INTRISIC]\tsame size\n");
5812                 return TRUE;
5813         }
5814
5815         //No simple way to handle struct if sizes don't match
5816         if (MONO_TYPE_ISSTRUCT (&param_klass->byval_arg)) {
5817                 if (cfg->verbose_level > 3)
5818                         printf ("[UNSAFE-MOV-INTRISIC]\tsize mismatch and type is a struct\n");
5819                 return FALSE;
5820         }
5821
5822         /*
5823          * Same reg size category.
5824          * A quick note on why we don't require widening here.
5825          * The intrinsic is "R Array.UnsafeMov<S,R> (S s)".
5826          *
5827          * Since the source value comes from a function argument, the JIT will already have
5828          * the value in a VREG and performed any widening needed before (say, when loading from a field).
5829          */
5830         if (param_size <= 4 && return_size <= 4) {
5831                 if (cfg->verbose_level > 3)
5832                         printf ("[UNSAFE-MOV-INTRISIC]\tsize mismatch but both are of the same reg class\n");
5833                 return TRUE;
5834         }
5835
5836         return FALSE;
5837 }
5838
5839 static MonoInst*
5840 emit_array_unsafe_mov (MonoCompile *cfg, MonoMethodSignature *fsig, MonoInst **args)
5841 {
5842         MonoClass *param_klass = mono_class_from_mono_type (fsig->params [0]);
5843         MonoClass *return_klass = mono_class_from_mono_type (fsig->ret);
5844
5845         if (mini_is_gsharedvt_variable_type (fsig->ret))
5846                 return NULL;
5847
5848         //Valuetypes that are semantically equivalent or numbers than can be widened to
5849         if (is_unsafe_mov_compatible (cfg, param_klass, return_klass))
5850                 return args [0];
5851
5852         //Arrays of valuetypes that are semantically equivalent
5853         if (param_klass->rank == 1 && return_klass->rank == 1 && is_unsafe_mov_compatible (cfg, param_klass->element_class, return_klass->element_class))
5854                 return args [0];
5855
5856         return NULL;
5857 }
5858
5859 static MonoInst*
5860 mini_emit_inst_for_ctor (MonoCompile *cfg, MonoMethod *cmethod, MonoMethodSignature *fsig, MonoInst **args)
5861 {
5862 #ifdef MONO_ARCH_SIMD_INTRINSICS
5863         MonoInst *ins = NULL;
5864
5865         if (cfg->opt & MONO_OPT_SIMD) {
5866                 ins = mono_emit_simd_intrinsics (cfg, cmethod, fsig, args);
5867                 if (ins)
5868                         return ins;
5869         }
5870 #endif
5871
5872         return mono_emit_native_types_intrinsics (cfg, cmethod, fsig, args);
5873 }
5874
5875 static MonoInst*
5876 emit_memory_barrier (MonoCompile *cfg, int kind)
5877 {
5878         MonoInst *ins = NULL;
5879         MONO_INST_NEW (cfg, ins, OP_MEMORY_BARRIER);
5880         MONO_ADD_INS (cfg->cbb, ins);
5881         ins->backend.memory_barrier_kind = kind;
5882
5883         return ins;
5884 }
5885
5886 static MonoInst*
5887 llvm_emit_inst_for_method (MonoCompile *cfg, MonoMethod *cmethod, MonoMethodSignature *fsig, MonoInst **args)
5888 {
5889         MonoInst *ins = NULL;
5890         int opcode = 0;
5891
5892         /* The LLVM backend supports these intrinsics */
5893         if (cmethod->klass == mono_defaults.math_class) {
5894                 if (strcmp (cmethod->name, "Sin") == 0) {
5895                         opcode = OP_SIN;
5896                 } else if (strcmp (cmethod->name, "Cos") == 0) {
5897                         opcode = OP_COS;
5898                 } else if (strcmp (cmethod->name, "Sqrt") == 0) {
5899                         opcode = OP_SQRT;
5900                 } else if (strcmp (cmethod->name, "Abs") == 0 && fsig->params [0]->type == MONO_TYPE_R8) {
5901                         opcode = OP_ABS;
5902                 }
5903
5904                 if (opcode && fsig->param_count == 1) {
5905                         MONO_INST_NEW (cfg, ins, opcode);
5906                         ins->type = STACK_R8;
5907                         ins->dreg = mono_alloc_dreg (cfg, ins->type);
5908                         ins->sreg1 = args [0]->dreg;
5909                         MONO_ADD_INS (cfg->cbb, ins);
5910                 }
5911
5912                 opcode = 0;
5913                 if (cfg->opt & MONO_OPT_CMOV) {
5914                         if (strcmp (cmethod->name, "Min") == 0) {
5915                                 if (fsig->params [0]->type == MONO_TYPE_I4)
5916                                         opcode = OP_IMIN;
5917                                 if (fsig->params [0]->type == MONO_TYPE_U4)
5918                                         opcode = OP_IMIN_UN;
5919                                 else if (fsig->params [0]->type == MONO_TYPE_I8)
5920                                         opcode = OP_LMIN;
5921                                 else if (fsig->params [0]->type == MONO_TYPE_U8)
5922                                         opcode = OP_LMIN_UN;
5923                         } else if (strcmp (cmethod->name, "Max") == 0) {
5924                                 if (fsig->params [0]->type == MONO_TYPE_I4)
5925                                         opcode = OP_IMAX;
5926                                 if (fsig->params [0]->type == MONO_TYPE_U4)
5927                                         opcode = OP_IMAX_UN;
5928                                 else if (fsig->params [0]->type == MONO_TYPE_I8)
5929                                         opcode = OP_LMAX;
5930                                 else if (fsig->params [0]->type == MONO_TYPE_U8)
5931                                         opcode = OP_LMAX_UN;
5932                         }
5933                 }
5934
5935                 if (opcode && fsig->param_count == 2) {
5936                         MONO_INST_NEW (cfg, ins, opcode);
5937                         ins->type = fsig->params [0]->type == MONO_TYPE_I4 ? STACK_I4 : STACK_I8;
5938                         ins->dreg = mono_alloc_dreg (cfg, ins->type);
5939                         ins->sreg1 = args [0]->dreg;
5940                         ins->sreg2 = args [1]->dreg;
5941                         MONO_ADD_INS (cfg->cbb, ins);
5942                 }
5943         }
5944
5945         return ins;
5946 }
5947
5948 static MonoInst*
5949 mini_emit_inst_for_sharable_method (MonoCompile *cfg, MonoMethod *cmethod, MonoMethodSignature *fsig, MonoInst **args)
5950 {
5951         if (cmethod->klass == mono_defaults.array_class) {
5952                 if (strcmp (cmethod->name, "UnsafeStore") == 0)
5953                         return emit_array_unsafe_access (cfg, fsig, args, TRUE);
5954                 else if (strcmp (cmethod->name, "UnsafeLoad") == 0)
5955                         return emit_array_unsafe_access (cfg, fsig, args, FALSE);
5956                 else if (strcmp (cmethod->name, "UnsafeMov") == 0)
5957                         return emit_array_unsafe_mov (cfg, fsig, args);
5958         }
5959
5960         return NULL;
5961 }
5962
5963 static MonoInst*
5964 mini_emit_inst_for_method (MonoCompile *cfg, MonoMethod *cmethod, MonoMethodSignature *fsig, MonoInst **args)
5965 {
5966         MonoInst *ins = NULL;
5967
5968          MonoClass *runtime_helpers_class = mono_class_get_runtime_helpers_class ();
5969
5970         if (cmethod->klass == mono_defaults.string_class) {
5971                 if (strcmp (cmethod->name, "get_Chars") == 0 && fsig->param_count + fsig->hasthis == 2) {
5972                         int dreg = alloc_ireg (cfg);
5973                         int index_reg = alloc_preg (cfg);
5974                         int add_reg = alloc_preg (cfg);
5975
5976 #if SIZEOF_REGISTER == 8
5977                         if (COMPILE_LLVM (cfg)) {
5978                                 MONO_EMIT_NEW_UNALU (cfg, OP_ZEXT_I4, index_reg, args [1]->dreg);
5979                         } else {
5980                                 /* The array reg is 64 bits but the index reg is only 32 */
5981                                 MONO_EMIT_NEW_UNALU (cfg, OP_SEXT_I4, index_reg, args [1]->dreg);
5982                         }
5983 #else
5984                         index_reg = args [1]->dreg;
5985 #endif  
5986                         MONO_EMIT_BOUNDS_CHECK (cfg, args [0]->dreg, MonoString, length, index_reg);
5987
5988 #if defined(TARGET_X86) || defined(TARGET_AMD64)
5989                         EMIT_NEW_X86_LEA (cfg, ins, args [0]->dreg, index_reg, 1, MONO_STRUCT_OFFSET (MonoString, chars));
5990                         add_reg = ins->dreg;
5991                         EMIT_NEW_LOAD_MEMBASE (cfg, ins, OP_LOADU2_MEMBASE, dreg, 
5992                                                                    add_reg, 0);
5993 #else
5994                         int mult_reg = alloc_preg (cfg);
5995                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_SHL_IMM, mult_reg, index_reg, 1);
5996                         MONO_EMIT_NEW_BIALU (cfg, OP_PADD, add_reg, mult_reg, args [0]->dreg);
5997                         EMIT_NEW_LOAD_MEMBASE (cfg, ins, OP_LOADU2_MEMBASE, dreg, 
5998                                                                    add_reg, MONO_STRUCT_OFFSET (MonoString, chars));
5999 #endif
6000                         type_from_op (cfg, ins, NULL, NULL);
6001                         return ins;
6002                 } else if (strcmp (cmethod->name, "get_Length") == 0 && fsig->param_count + fsig->hasthis == 1) {
6003                         int dreg = alloc_ireg (cfg);
6004                         /* Decompose later to allow more optimizations */
6005                         EMIT_NEW_UNALU (cfg, ins, OP_STRLEN, dreg, args [0]->dreg);
6006                         ins->type = STACK_I4;
6007                         ins->flags |= MONO_INST_FAULT;
6008                         cfg->cbb->has_array_access = TRUE;
6009                         cfg->flags |= MONO_CFG_HAS_ARRAY_ACCESS;
6010
6011                         return ins;
6012                 } else 
6013                         return NULL;
6014         } else if (cmethod->klass == mono_defaults.object_class) {
6015                 if (strcmp (cmethod->name, "GetType") == 0 && fsig->param_count + fsig->hasthis == 1) {
6016                         int dreg = alloc_ireg_ref (cfg);
6017                         int vt_reg = alloc_preg (cfg);
6018                         MONO_EMIT_NEW_LOAD_MEMBASE_FAULT (cfg, vt_reg, args [0]->dreg, MONO_STRUCT_OFFSET (MonoObject, vtable));
6019                         EMIT_NEW_LOAD_MEMBASE (cfg, ins, OP_LOAD_MEMBASE, dreg, vt_reg, MONO_STRUCT_OFFSET (MonoVTable, type));
6020                         type_from_op (cfg, ins, NULL, NULL);
6021
6022                         return ins;
6023                 } else if (!cfg->backend->emulate_mul_div && strcmp (cmethod->name, "InternalGetHashCode") == 0 && fsig->param_count == 1 && !mono_gc_is_moving ()) {
6024                         int dreg = alloc_ireg (cfg);
6025                         int t1 = alloc_ireg (cfg);
6026         
6027                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_SHL_IMM, t1, args [0]->dreg, 3);
6028                         EMIT_NEW_BIALU_IMM (cfg, ins, OP_MUL_IMM, dreg, t1, 2654435761u);
6029                         ins->type = STACK_I4;
6030
6031                         return ins;
6032                 } else if (strcmp (cmethod->name, ".ctor") == 0 && fsig->param_count == 0) {
6033                         MONO_INST_NEW (cfg, ins, OP_NOP);
6034                         MONO_ADD_INS (cfg->cbb, ins);
6035                         return ins;
6036                 } else
6037                         return NULL;
6038         } else if (cmethod->klass == mono_defaults.array_class) {
6039                 if (strcmp (cmethod->name, "GetGenericValueImpl") == 0 && fsig->param_count + fsig->hasthis == 3 && !cfg->gsharedvt)
6040                         return emit_array_generic_access (cfg, fsig, args, FALSE);
6041                 else if (strcmp (cmethod->name, "SetGenericValueImpl") == 0 && fsig->param_count + fsig->hasthis == 3 && !cfg->gsharedvt)
6042                         return emit_array_generic_access (cfg, fsig, args, TRUE);
6043
6044 #ifndef MONO_BIG_ARRAYS
6045                 /*
6046                  * This is an inline version of GetLength/GetLowerBound(0) used frequently in
6047                  * Array methods.
6048                  */
6049                 else if (((strcmp (cmethod->name, "GetLength") == 0 && fsig->param_count + fsig->hasthis == 2) ||
6050                          (strcmp (cmethod->name, "GetLowerBound") == 0 && fsig->param_count + fsig->hasthis == 2)) &&
6051                          args [1]->opcode == OP_ICONST && args [1]->inst_c0 == 0) {
6052                         int dreg = alloc_ireg (cfg);
6053                         int bounds_reg = alloc_ireg_mp (cfg);
6054                         MonoBasicBlock *end_bb, *szarray_bb;
6055                         gboolean get_length = strcmp (cmethod->name, "GetLength") == 0;
6056
6057                         NEW_BBLOCK (cfg, end_bb);
6058                         NEW_BBLOCK (cfg, szarray_bb);
6059
6060                         EMIT_NEW_LOAD_MEMBASE_FAULT (cfg, ins, OP_LOAD_MEMBASE, bounds_reg,
6061                                                                                  args [0]->dreg, MONO_STRUCT_OFFSET (MonoArray, bounds));
6062                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, bounds_reg, 0);
6063                         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_IBEQ, szarray_bb);
6064                         /* Non-szarray case */
6065                         if (get_length)
6066                                 EMIT_NEW_LOAD_MEMBASE (cfg, ins, OP_LOADI4_MEMBASE, dreg,
6067                                                                            bounds_reg, MONO_STRUCT_OFFSET (MonoArrayBounds, length));
6068                         else
6069                                 EMIT_NEW_LOAD_MEMBASE (cfg, ins, OP_LOADI4_MEMBASE, dreg,
6070                                                                            bounds_reg, MONO_STRUCT_OFFSET (MonoArrayBounds, lower_bound));
6071                         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
6072                         MONO_START_BB (cfg, szarray_bb);
6073                         /* Szarray case */
6074                         if (get_length)
6075                                 EMIT_NEW_LOAD_MEMBASE (cfg, ins, OP_LOADI4_MEMBASE, dreg,
6076                                                                            args [0]->dreg, MONO_STRUCT_OFFSET (MonoArray, max_length));
6077                         else
6078                                 MONO_EMIT_NEW_ICONST (cfg, dreg, 0);
6079                         MONO_START_BB (cfg, end_bb);
6080
6081                         EMIT_NEW_UNALU (cfg, ins, OP_MOVE, dreg, dreg);
6082                         ins->type = STACK_I4;
6083                         
6084                         return ins;
6085                 }
6086 #endif
6087
6088                 if (cmethod->name [0] != 'g')
6089                         return NULL;
6090
6091                 if (strcmp (cmethod->name, "get_Rank") == 0 && fsig->param_count + fsig->hasthis == 1) {
6092                         int dreg = alloc_ireg (cfg);
6093                         int vtable_reg = alloc_preg (cfg);
6094                         MONO_EMIT_NEW_LOAD_MEMBASE_OP_FAULT (cfg, OP_LOAD_MEMBASE, vtable_reg, 
6095                                                                                                  args [0]->dreg, MONO_STRUCT_OFFSET (MonoObject, vtable));
6096                         EMIT_NEW_LOAD_MEMBASE (cfg, ins, OP_LOADU1_MEMBASE, dreg,
6097                                                                    vtable_reg, MONO_STRUCT_OFFSET (MonoVTable, rank));
6098                         type_from_op (cfg, ins, NULL, NULL);
6099
6100                         return ins;
6101                 } else if (strcmp (cmethod->name, "get_Length") == 0 && fsig->param_count + fsig->hasthis == 1) {
6102                         int dreg = alloc_ireg (cfg);
6103
6104                         EMIT_NEW_LOAD_MEMBASE_FAULT (cfg, ins, OP_LOADI4_MEMBASE, dreg, 
6105                                                                                  args [0]->dreg, MONO_STRUCT_OFFSET (MonoArray, max_length));
6106                         type_from_op (cfg, ins, NULL, NULL);
6107
6108                         return ins;
6109                 } else
6110                         return NULL;
6111         } else if (cmethod->klass == runtime_helpers_class) {
6112                 if (strcmp (cmethod->name, "get_OffsetToStringData") == 0 && fsig->param_count == 0) {
6113                         EMIT_NEW_ICONST (cfg, ins, MONO_STRUCT_OFFSET (MonoString, chars));
6114                         return ins;
6115                 } else
6116                         return NULL;
6117         } else if (cmethod->klass == mono_defaults.monitor_class) {
6118                 gboolean is_enter = FALSE;
6119
6120                 if (!strcmp (cmethod->name, "Enter") && mono_method_signature (cmethod)->param_count == 1)
6121                         is_enter = TRUE;
6122
6123                 if (is_enter) {
6124                         /*
6125                          * To make async stack traces work, icalls which can block should have a wrapper.
6126                          * For Monitor.Enter, emit two calls: a fastpath which doesn't have a wrapper, and a slowpath, which does.
6127                          */
6128                         MonoBasicBlock *end_bb;
6129
6130                         NEW_BBLOCK (cfg, end_bb);
6131
6132                         ins = mono_emit_jit_icall (cfg, (gpointer)mono_monitor_enter_fast, args);
6133                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_ICOMPARE_IMM, -1, ins->dreg, 0);
6134                         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_IBNE_UN, end_bb);
6135                         ins = mono_emit_jit_icall (cfg, (gpointer)mono_monitor_enter, args);
6136                         MONO_START_BB (cfg, end_bb);
6137                         return ins;
6138                 }
6139         } else if (cmethod->klass == mono_defaults.thread_class) {
6140                 if (strcmp (cmethod->name, "SpinWait_nop") == 0 && fsig->param_count == 0) {
6141                         MONO_INST_NEW (cfg, ins, OP_RELAXED_NOP);
6142                         MONO_ADD_INS (cfg->cbb, ins);
6143                         return ins;
6144                 } else if (strcmp (cmethod->name, "MemoryBarrier") == 0 && fsig->param_count == 0) {
6145                         return emit_memory_barrier (cfg, MONO_MEMORY_BARRIER_SEQ);
6146                 } else if (!strcmp (cmethod->name, "VolatileRead") && fsig->param_count == 1) {
6147                         guint32 opcode = 0;
6148                         gboolean is_ref = mini_type_is_reference (fsig->params [0]);
6149
6150                         if (fsig->params [0]->type == MONO_TYPE_I1)
6151                                 opcode = OP_LOADI1_MEMBASE;
6152                         else if (fsig->params [0]->type == MONO_TYPE_U1)
6153                                 opcode = OP_LOADU1_MEMBASE;
6154                         else if (fsig->params [0]->type == MONO_TYPE_I2)
6155                                 opcode = OP_LOADI2_MEMBASE;
6156                         else if (fsig->params [0]->type == MONO_TYPE_U2)
6157                                 opcode = OP_LOADU2_MEMBASE;
6158                         else if (fsig->params [0]->type == MONO_TYPE_I4)
6159                                 opcode = OP_LOADI4_MEMBASE;
6160                         else if (fsig->params [0]->type == MONO_TYPE_U4)
6161                                 opcode = OP_LOADU4_MEMBASE;
6162                         else if (fsig->params [0]->type == MONO_TYPE_I8 || fsig->params [0]->type == MONO_TYPE_U8)
6163                                 opcode = OP_LOADI8_MEMBASE;
6164                         else if (fsig->params [0]->type == MONO_TYPE_R4)
6165                                 opcode = OP_LOADR4_MEMBASE;
6166                         else if (fsig->params [0]->type == MONO_TYPE_R8)
6167                                 opcode = OP_LOADR8_MEMBASE;
6168                         else if (is_ref || fsig->params [0]->type == MONO_TYPE_I || fsig->params [0]->type == MONO_TYPE_U)
6169                                 opcode = OP_LOAD_MEMBASE;
6170
6171                         if (opcode) {
6172                                 MONO_INST_NEW (cfg, ins, opcode);
6173                                 ins->inst_basereg = args [0]->dreg;
6174                                 ins->inst_offset = 0;
6175                                 MONO_ADD_INS (cfg->cbb, ins);
6176
6177                                 switch (fsig->params [0]->type) {
6178                                 case MONO_TYPE_I1:
6179                                 case MONO_TYPE_U1:
6180                                 case MONO_TYPE_I2:
6181                                 case MONO_TYPE_U2:
6182                                 case MONO_TYPE_I4:
6183                                 case MONO_TYPE_U4:
6184                                         ins->dreg = mono_alloc_ireg (cfg);
6185                                         ins->type = STACK_I4;
6186                                         break;
6187                                 case MONO_TYPE_I8:
6188                                 case MONO_TYPE_U8:
6189                                         ins->dreg = mono_alloc_lreg (cfg);
6190                                         ins->type = STACK_I8;
6191                                         break;
6192                                 case MONO_TYPE_I:
6193                                 case MONO_TYPE_U:
6194                                         ins->dreg = mono_alloc_ireg (cfg);
6195 #if SIZEOF_REGISTER == 8
6196                                         ins->type = STACK_I8;
6197 #else
6198                                         ins->type = STACK_I4;
6199 #endif
6200                                         break;
6201                                 case MONO_TYPE_R4:
6202                                 case MONO_TYPE_R8:
6203                                         ins->dreg = mono_alloc_freg (cfg);
6204                                         ins->type = STACK_R8;
6205                                         break;
6206                                 default:
6207                                         g_assert (mini_type_is_reference (fsig->params [0]));
6208                                         ins->dreg = mono_alloc_ireg_ref (cfg);
6209                                         ins->type = STACK_OBJ;
6210                                         break;
6211                                 }
6212
6213                                 if (opcode == OP_LOADI8_MEMBASE)
6214                                         ins = mono_decompose_opcode (cfg, ins);
6215
6216                                 emit_memory_barrier (cfg, MONO_MEMORY_BARRIER_SEQ);
6217
6218                                 return ins;
6219                         }
6220                 } else if (!strcmp (cmethod->name, "VolatileWrite") && fsig->param_count == 2) {
6221                         guint32 opcode = 0;
6222                         gboolean is_ref = mini_type_is_reference (fsig->params [0]);
6223
6224                         if (fsig->params [0]->type == MONO_TYPE_I1 || fsig->params [0]->type == MONO_TYPE_U1)
6225                                 opcode = OP_STOREI1_MEMBASE_REG;
6226                         else if (fsig->params [0]->type == MONO_TYPE_I2 || fsig->params [0]->type == MONO_TYPE_U2)
6227                                 opcode = OP_STOREI2_MEMBASE_REG;
6228                         else if (fsig->params [0]->type == MONO_TYPE_I4 || fsig->params [0]->type == MONO_TYPE_U4)
6229                                 opcode = OP_STOREI4_MEMBASE_REG;
6230                         else if (fsig->params [0]->type == MONO_TYPE_I8 || fsig->params [0]->type == MONO_TYPE_U8)
6231                                 opcode = OP_STOREI8_MEMBASE_REG;
6232                         else if (fsig->params [0]->type == MONO_TYPE_R4)
6233                                 opcode = OP_STORER4_MEMBASE_REG;
6234                         else if (fsig->params [0]->type == MONO_TYPE_R8)
6235                                 opcode = OP_STORER8_MEMBASE_REG;
6236                         else if (is_ref || fsig->params [0]->type == MONO_TYPE_I || fsig->params [0]->type == MONO_TYPE_U)
6237                                 opcode = OP_STORE_MEMBASE_REG;
6238
6239                         if (opcode) {
6240                                 emit_memory_barrier (cfg, MONO_MEMORY_BARRIER_SEQ);
6241
6242                                 MONO_INST_NEW (cfg, ins, opcode);
6243                                 ins->sreg1 = args [1]->dreg;
6244                                 ins->inst_destbasereg = args [0]->dreg;
6245                                 ins->inst_offset = 0;
6246                                 MONO_ADD_INS (cfg->cbb, ins);
6247
6248                                 if (opcode == OP_STOREI8_MEMBASE_REG)
6249                                         ins = mono_decompose_opcode (cfg, ins);
6250
6251                                 return ins;
6252                         }
6253                 }
6254         } else if (cmethod->klass->image == mono_defaults.corlib &&
6255                            (strcmp (cmethod->klass->name_space, "System.Threading") == 0) &&
6256                            (strcmp (cmethod->klass->name, "Interlocked") == 0)) {
6257                 ins = NULL;
6258
6259 #if SIZEOF_REGISTER == 8
6260                 if (!cfg->llvm_only && strcmp (cmethod->name, "Read") == 0 && fsig->param_count == 1 && (fsig->params [0]->type == MONO_TYPE_I8)) {
6261                         if (!cfg->llvm_only && mono_arch_opcode_supported (OP_ATOMIC_LOAD_I8)) {
6262                                 MONO_INST_NEW (cfg, ins, OP_ATOMIC_LOAD_I8);
6263                                 ins->dreg = mono_alloc_preg (cfg);
6264                                 ins->sreg1 = args [0]->dreg;
6265                                 ins->type = STACK_I8;
6266                                 ins->backend.memory_barrier_kind = MONO_MEMORY_BARRIER_SEQ;
6267                                 MONO_ADD_INS (cfg->cbb, ins);
6268                         } else {
6269                                 MonoInst *load_ins;
6270
6271                                 emit_memory_barrier (cfg, MONO_MEMORY_BARRIER_SEQ);
6272
6273                                 /* 64 bit reads are already atomic */
6274                                 MONO_INST_NEW (cfg, load_ins, OP_LOADI8_MEMBASE);
6275                                 load_ins->dreg = mono_alloc_preg (cfg);
6276                                 load_ins->inst_basereg = args [0]->dreg;
6277                                 load_ins->inst_offset = 0;
6278                                 load_ins->type = STACK_I8;
6279                                 MONO_ADD_INS (cfg->cbb, load_ins);
6280
6281                                 emit_memory_barrier (cfg, MONO_MEMORY_BARRIER_SEQ);
6282
6283                                 ins = load_ins;
6284                         }
6285                 }
6286 #endif
6287
6288                 if (strcmp (cmethod->name, "Increment") == 0 && fsig->param_count == 1) {
6289                         MonoInst *ins_iconst;
6290                         guint32 opcode = 0;
6291
6292                         if (fsig->params [0]->type == MONO_TYPE_I4) {
6293                                 opcode = OP_ATOMIC_ADD_I4;
6294                                 cfg->has_atomic_add_i4 = TRUE;
6295                         }
6296 #if SIZEOF_REGISTER == 8
6297                         else if (fsig->params [0]->type == MONO_TYPE_I8)
6298                                 opcode = OP_ATOMIC_ADD_I8;
6299 #endif
6300                         if (opcode) {
6301                                 if (!mono_arch_opcode_supported (opcode))
6302                                         return NULL;
6303                                 MONO_INST_NEW (cfg, ins_iconst, OP_ICONST);
6304                                 ins_iconst->inst_c0 = 1;
6305                                 ins_iconst->dreg = mono_alloc_ireg (cfg);
6306                                 MONO_ADD_INS (cfg->cbb, ins_iconst);
6307
6308                                 MONO_INST_NEW (cfg, ins, opcode);
6309                                 ins->dreg = mono_alloc_ireg (cfg);
6310                                 ins->inst_basereg = args [0]->dreg;
6311                                 ins->inst_offset = 0;
6312                                 ins->sreg2 = ins_iconst->dreg;
6313                                 ins->type = (opcode == OP_ATOMIC_ADD_I4) ? STACK_I4 : STACK_I8;
6314                                 MONO_ADD_INS (cfg->cbb, ins);
6315                         }
6316                 } else if (strcmp (cmethod->name, "Decrement") == 0 && fsig->param_count == 1) {
6317                         MonoInst *ins_iconst;
6318                         guint32 opcode = 0;
6319
6320                         if (fsig->params [0]->type == MONO_TYPE_I4) {
6321                                 opcode = OP_ATOMIC_ADD_I4;
6322                                 cfg->has_atomic_add_i4 = TRUE;
6323                         }
6324 #if SIZEOF_REGISTER == 8
6325                         else if (fsig->params [0]->type == MONO_TYPE_I8)
6326                                 opcode = OP_ATOMIC_ADD_I8;
6327 #endif
6328                         if (opcode) {
6329                                 if (!mono_arch_opcode_supported (opcode))
6330                                         return NULL;
6331                                 MONO_INST_NEW (cfg, ins_iconst, OP_ICONST);
6332                                 ins_iconst->inst_c0 = -1;
6333                                 ins_iconst->dreg = mono_alloc_ireg (cfg);
6334                                 MONO_ADD_INS (cfg->cbb, ins_iconst);
6335
6336                                 MONO_INST_NEW (cfg, ins, opcode);
6337                                 ins->dreg = mono_alloc_ireg (cfg);
6338                                 ins->inst_basereg = args [0]->dreg;
6339                                 ins->inst_offset = 0;
6340                                 ins->sreg2 = ins_iconst->dreg;
6341                                 ins->type = (opcode == OP_ATOMIC_ADD_I4) ? STACK_I4 : STACK_I8;
6342                                 MONO_ADD_INS (cfg->cbb, ins);
6343                         }
6344                 } else if (strcmp (cmethod->name, "Add") == 0 && fsig->param_count == 2) {
6345                         guint32 opcode = 0;
6346
6347                         if (fsig->params [0]->type == MONO_TYPE_I4) {
6348                                 opcode = OP_ATOMIC_ADD_I4;
6349                                 cfg->has_atomic_add_i4 = TRUE;
6350                         }
6351 #if SIZEOF_REGISTER == 8
6352                         else if (fsig->params [0]->type == MONO_TYPE_I8)
6353                                 opcode = OP_ATOMIC_ADD_I8;
6354 #endif
6355                         if (opcode) {
6356                                 if (!mono_arch_opcode_supported (opcode))
6357                                         return NULL;
6358                                 MONO_INST_NEW (cfg, ins, opcode);
6359                                 ins->dreg = mono_alloc_ireg (cfg);
6360                                 ins->inst_basereg = args [0]->dreg;
6361                                 ins->inst_offset = 0;
6362                                 ins->sreg2 = args [1]->dreg;
6363                                 ins->type = (opcode == OP_ATOMIC_ADD_I4) ? STACK_I4 : STACK_I8;
6364                                 MONO_ADD_INS (cfg->cbb, ins);
6365                         }
6366                 }
6367                 else if (strcmp (cmethod->name, "Exchange") == 0 && fsig->param_count == 2) {
6368                         MonoInst *f2i = NULL, *i2f;
6369                         guint32 opcode, f2i_opcode, i2f_opcode;
6370                         gboolean is_ref = mini_type_is_reference (fsig->params [0]);
6371                         gboolean is_float = fsig->params [0]->type == MONO_TYPE_R4 || fsig->params [0]->type == MONO_TYPE_R8;
6372
6373                         if (fsig->params [0]->type == MONO_TYPE_I4 ||
6374                             fsig->params [0]->type == MONO_TYPE_R4) {
6375                                 opcode = OP_ATOMIC_EXCHANGE_I4;
6376                                 f2i_opcode = OP_MOVE_F_TO_I4;
6377                                 i2f_opcode = OP_MOVE_I4_TO_F;
6378                                 cfg->has_atomic_exchange_i4 = TRUE;
6379                         }
6380 #if SIZEOF_REGISTER == 8
6381                         else if (is_ref ||
6382                                  fsig->params [0]->type == MONO_TYPE_I8 ||
6383                                  fsig->params [0]->type == MONO_TYPE_R8 ||
6384                                  fsig->params [0]->type == MONO_TYPE_I) {
6385                                 opcode = OP_ATOMIC_EXCHANGE_I8;
6386                                 f2i_opcode = OP_MOVE_F_TO_I8;
6387                                 i2f_opcode = OP_MOVE_I8_TO_F;
6388                         }
6389 #else
6390                         else if (is_ref || fsig->params [0]->type == MONO_TYPE_I) {
6391                                 opcode = OP_ATOMIC_EXCHANGE_I4;
6392                                 cfg->has_atomic_exchange_i4 = TRUE;
6393                         }
6394 #endif
6395                         else
6396                                 return NULL;
6397
6398                         if (!mono_arch_opcode_supported (opcode))
6399                                 return NULL;
6400
6401                         if (is_float) {
6402                                 /* TODO: Decompose these opcodes instead of bailing here. */
6403                                 if (COMPILE_SOFT_FLOAT (cfg))
6404                                         return NULL;
6405
6406                                 MONO_INST_NEW (cfg, f2i, f2i_opcode);
6407                                 f2i->dreg = mono_alloc_ireg (cfg);
6408                                 f2i->sreg1 = args [1]->dreg;
6409                                 if (f2i_opcode == OP_MOVE_F_TO_I4)
6410                                         f2i->backend.spill_var = mini_get_int_to_float_spill_area (cfg);
6411                                 MONO_ADD_INS (cfg->cbb, f2i);
6412                         }
6413
6414                         MONO_INST_NEW (cfg, ins, opcode);
6415                         ins->dreg = is_ref ? mono_alloc_ireg_ref (cfg) : mono_alloc_ireg (cfg);
6416                         ins->inst_basereg = args [0]->dreg;
6417                         ins->inst_offset = 0;
6418                         ins->sreg2 = is_float ? f2i->dreg : args [1]->dreg;
6419                         MONO_ADD_INS (cfg->cbb, ins);
6420
6421                         switch (fsig->params [0]->type) {
6422                         case MONO_TYPE_I4:
6423                                 ins->type = STACK_I4;
6424                                 break;
6425                         case MONO_TYPE_I8:
6426                                 ins->type = STACK_I8;
6427                                 break;
6428                         case MONO_TYPE_I:
6429 #if SIZEOF_REGISTER == 8
6430                                 ins->type = STACK_I8;
6431 #else
6432                                 ins->type = STACK_I4;
6433 #endif
6434                                 break;
6435                         case MONO_TYPE_R4:
6436                         case MONO_TYPE_R8:
6437                                 ins->type = STACK_R8;
6438                                 break;
6439                         default:
6440                                 g_assert (mini_type_is_reference (fsig->params [0]));
6441                                 ins->type = STACK_OBJ;
6442                                 break;
6443                         }
6444
6445                         if (is_float) {
6446                                 MONO_INST_NEW (cfg, i2f, i2f_opcode);
6447                                 i2f->dreg = mono_alloc_freg (cfg);
6448                                 i2f->sreg1 = ins->dreg;
6449                                 i2f->type = STACK_R8;
6450                                 if (i2f_opcode == OP_MOVE_I4_TO_F)
6451                                         i2f->backend.spill_var = mini_get_int_to_float_spill_area (cfg);
6452                                 MONO_ADD_INS (cfg->cbb, i2f);
6453
6454                                 ins = i2f;
6455                         }
6456
6457                         if (cfg->gen_write_barriers && is_ref)
6458                                 emit_write_barrier (cfg, args [0], args [1]);
6459                 }
6460                 else if ((strcmp (cmethod->name, "CompareExchange") == 0) && fsig->param_count == 3) {
6461                         MonoInst *f2i_new = NULL, *f2i_cmp = NULL, *i2f;
6462                         guint32 opcode, f2i_opcode, i2f_opcode;
6463                         gboolean is_ref = mini_type_is_reference (fsig->params [1]);
6464                         gboolean is_float = fsig->params [1]->type == MONO_TYPE_R4 || fsig->params [1]->type == MONO_TYPE_R8;
6465
6466                         if (fsig->params [1]->type == MONO_TYPE_I4 ||
6467                             fsig->params [1]->type == MONO_TYPE_R4) {
6468                                 opcode = OP_ATOMIC_CAS_I4;
6469                                 f2i_opcode = OP_MOVE_F_TO_I4;
6470                                 i2f_opcode = OP_MOVE_I4_TO_F;
6471                                 cfg->has_atomic_cas_i4 = TRUE;
6472                         }
6473 #if SIZEOF_REGISTER == 8
6474                         else if (is_ref ||
6475                                  fsig->params [1]->type == MONO_TYPE_I8 ||
6476                                  fsig->params [1]->type == MONO_TYPE_R8 ||
6477                                  fsig->params [1]->type == MONO_TYPE_I) {
6478                                 opcode = OP_ATOMIC_CAS_I8;
6479                                 f2i_opcode = OP_MOVE_F_TO_I8;
6480                                 i2f_opcode = OP_MOVE_I8_TO_F;
6481                         }
6482 #else
6483                         else if (is_ref || fsig->params [1]->type == MONO_TYPE_I) {
6484                                 opcode = OP_ATOMIC_CAS_I4;
6485                                 cfg->has_atomic_cas_i4 = TRUE;
6486                         }
6487 #endif
6488                         else
6489                                 return NULL;
6490
6491                         if (!mono_arch_opcode_supported (opcode))
6492                                 return NULL;
6493
6494                         if (is_float) {
6495                                 /* TODO: Decompose these opcodes instead of bailing here. */
6496                                 if (COMPILE_SOFT_FLOAT (cfg))
6497                                         return NULL;
6498
6499                                 MONO_INST_NEW (cfg, f2i_new, f2i_opcode);
6500                                 f2i_new->dreg = mono_alloc_ireg (cfg);
6501                                 f2i_new->sreg1 = args [1]->dreg;
6502                                 if (f2i_opcode == OP_MOVE_F_TO_I4)
6503                                         f2i_new->backend.spill_var = mini_get_int_to_float_spill_area (cfg);
6504                                 MONO_ADD_INS (cfg->cbb, f2i_new);
6505
6506                                 MONO_INST_NEW (cfg, f2i_cmp, f2i_opcode);
6507                                 f2i_cmp->dreg = mono_alloc_ireg (cfg);
6508                                 f2i_cmp->sreg1 = args [2]->dreg;
6509                                 if (f2i_opcode == OP_MOVE_F_TO_I4)
6510                                         f2i_cmp->backend.spill_var = mini_get_int_to_float_spill_area (cfg);
6511                                 MONO_ADD_INS (cfg->cbb, f2i_cmp);
6512                         }
6513
6514                         MONO_INST_NEW (cfg, ins, opcode);
6515                         ins->dreg = is_ref ? alloc_ireg_ref (cfg) : alloc_ireg (cfg);
6516                         ins->sreg1 = args [0]->dreg;
6517                         ins->sreg2 = is_float ? f2i_new->dreg : args [1]->dreg;
6518                         ins->sreg3 = is_float ? f2i_cmp->dreg : args [2]->dreg;
6519                         MONO_ADD_INS (cfg->cbb, ins);
6520
6521                         switch (fsig->params [1]->type) {
6522                         case MONO_TYPE_I4:
6523                                 ins->type = STACK_I4;
6524                                 break;
6525                         case MONO_TYPE_I8:
6526                                 ins->type = STACK_I8;
6527                                 break;
6528                         case MONO_TYPE_I:
6529 #if SIZEOF_REGISTER == 8
6530                                 ins->type = STACK_I8;
6531 #else
6532                                 ins->type = STACK_I4;
6533 #endif
6534                                 break;
6535                         case MONO_TYPE_R4:
6536                                 ins->type = cfg->r4_stack_type;
6537                                 break;
6538                         case MONO_TYPE_R8:
6539                                 ins->type = STACK_R8;
6540                                 break;
6541                         default:
6542                                 g_assert (mini_type_is_reference (fsig->params [1]));
6543                                 ins->type = STACK_OBJ;
6544                                 break;
6545                         }
6546
6547                         if (is_float) {
6548                                 MONO_INST_NEW (cfg, i2f, i2f_opcode);
6549                                 i2f->dreg = mono_alloc_freg (cfg);
6550                                 i2f->sreg1 = ins->dreg;
6551                                 i2f->type = STACK_R8;
6552                                 if (i2f_opcode == OP_MOVE_I4_TO_F)
6553                                         i2f->backend.spill_var = mini_get_int_to_float_spill_area (cfg);
6554                                 MONO_ADD_INS (cfg->cbb, i2f);
6555
6556                                 ins = i2f;
6557                         }
6558
6559                         if (cfg->gen_write_barriers && is_ref)
6560                                 emit_write_barrier (cfg, args [0], args [1]);
6561                 }
6562                 else if ((strcmp (cmethod->name, "CompareExchange") == 0) && fsig->param_count == 4 &&
6563                          fsig->params [1]->type == MONO_TYPE_I4) {
6564                         MonoInst *cmp, *ceq;
6565
6566                         if (!mono_arch_opcode_supported (OP_ATOMIC_CAS_I4))
6567                                 return NULL;
6568
6569                         /* int32 r = CAS (location, value, comparand); */
6570                         MONO_INST_NEW (cfg, ins, OP_ATOMIC_CAS_I4);
6571                         ins->dreg = alloc_ireg (cfg);
6572                         ins->sreg1 = args [0]->dreg;
6573                         ins->sreg2 = args [1]->dreg;
6574                         ins->sreg3 = args [2]->dreg;
6575                         ins->type = STACK_I4;
6576                         MONO_ADD_INS (cfg->cbb, ins);
6577
6578                         /* bool result = r == comparand; */
6579                         MONO_INST_NEW (cfg, cmp, OP_ICOMPARE);
6580                         cmp->sreg1 = ins->dreg;
6581                         cmp->sreg2 = args [2]->dreg;
6582                         cmp->type = STACK_I4;
6583                         MONO_ADD_INS (cfg->cbb, cmp);
6584
6585                         MONO_INST_NEW (cfg, ceq, OP_ICEQ);
6586                         ceq->dreg = alloc_ireg (cfg);
6587                         ceq->type = STACK_I4;
6588                         MONO_ADD_INS (cfg->cbb, ceq);
6589
6590                         /* *success = result; */
6591                         MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREI1_MEMBASE_REG, args [3]->dreg, 0, ceq->dreg);
6592
6593                         cfg->has_atomic_cas_i4 = TRUE;
6594                 }
6595                 else if (strcmp (cmethod->name, "MemoryBarrier") == 0 && fsig->param_count == 0)
6596                         ins = emit_memory_barrier (cfg, MONO_MEMORY_BARRIER_SEQ);
6597
6598                 if (ins)
6599                         return ins;
6600         } else if (cmethod->klass->image == mono_defaults.corlib &&
6601                            (strcmp (cmethod->klass->name_space, "System.Threading") == 0) &&
6602                            (strcmp (cmethod->klass->name, "Volatile") == 0)) {
6603                 ins = NULL;
6604
6605                 if (!cfg->llvm_only && !strcmp (cmethod->name, "Read") && fsig->param_count == 1) {
6606                         guint32 opcode = 0;
6607                         MonoType *t = fsig->params [0];
6608                         gboolean is_ref;
6609                         gboolean is_float = t->type == MONO_TYPE_R4 || t->type == MONO_TYPE_R8;
6610
6611                         g_assert (t->byref);
6612                         /* t is a byref type, so the reference check is more complicated */
6613                         is_ref = mini_type_is_reference (&mono_class_from_mono_type (t)->byval_arg);
6614                         if (t->type == MONO_TYPE_I1)
6615                                 opcode = OP_ATOMIC_LOAD_I1;
6616                         else if (t->type == MONO_TYPE_U1 || t->type == MONO_TYPE_BOOLEAN)
6617                                 opcode = OP_ATOMIC_LOAD_U1;
6618                         else if (t->type == MONO_TYPE_I2)
6619                                 opcode = OP_ATOMIC_LOAD_I2;
6620                         else if (t->type == MONO_TYPE_U2)
6621                                 opcode = OP_ATOMIC_LOAD_U2;
6622                         else if (t->type == MONO_TYPE_I4)
6623                                 opcode = OP_ATOMIC_LOAD_I4;
6624                         else if (t->type == MONO_TYPE_U4)
6625                                 opcode = OP_ATOMIC_LOAD_U4;
6626                         else if (t->type == MONO_TYPE_R4)
6627                                 opcode = OP_ATOMIC_LOAD_R4;
6628                         else if (t->type == MONO_TYPE_R8)
6629                                 opcode = OP_ATOMIC_LOAD_R8;
6630 #if SIZEOF_REGISTER == 8
6631                         else if (t->type == MONO_TYPE_I8 || t->type == MONO_TYPE_I)
6632                                 opcode = OP_ATOMIC_LOAD_I8;
6633                         else if (is_ref || t->type == MONO_TYPE_U8 || t->type == MONO_TYPE_U)
6634                                 opcode = OP_ATOMIC_LOAD_U8;
6635 #else
6636                         else if (t->type == MONO_TYPE_I)
6637                                 opcode = OP_ATOMIC_LOAD_I4;
6638                         else if (is_ref || t->type == MONO_TYPE_U)
6639                                 opcode = OP_ATOMIC_LOAD_U4;
6640 #endif
6641
6642                         if (opcode) {
6643                                 if (!mono_arch_opcode_supported (opcode))
6644                                         return NULL;
6645
6646                                 MONO_INST_NEW (cfg, ins, opcode);
6647                                 ins->dreg = is_ref ? mono_alloc_ireg_ref (cfg) : (is_float ? mono_alloc_freg (cfg) : mono_alloc_ireg (cfg));
6648                                 ins->sreg1 = args [0]->dreg;
6649                                 ins->backend.memory_barrier_kind = MONO_MEMORY_BARRIER_ACQ;
6650                                 MONO_ADD_INS (cfg->cbb, ins);
6651
6652                                 switch (t->type) {
6653                                 case MONO_TYPE_BOOLEAN:
6654                                 case MONO_TYPE_I1:
6655                                 case MONO_TYPE_U1:
6656                                 case MONO_TYPE_I2:
6657                                 case MONO_TYPE_U2:
6658                                 case MONO_TYPE_I4:
6659                                 case MONO_TYPE_U4:
6660                                         ins->type = STACK_I4;
6661                                         break;
6662                                 case MONO_TYPE_I8:
6663                                 case MONO_TYPE_U8:
6664                                         ins->type = STACK_I8;
6665                                         break;
6666                                 case MONO_TYPE_I:
6667                                 case MONO_TYPE_U:
6668 #if SIZEOF_REGISTER == 8
6669                                         ins->type = STACK_I8;
6670 #else
6671                                         ins->type = STACK_I4;
6672 #endif
6673                                         break;
6674                                 case MONO_TYPE_R4:
6675                                         ins->type = cfg->r4_stack_type;
6676                                         break;
6677                                 case MONO_TYPE_R8:
6678                                         ins->type = STACK_R8;
6679                                         break;
6680                                 default:
6681                                         g_assert (is_ref);
6682                                         ins->type = STACK_OBJ;
6683                                         break;
6684                                 }
6685                         }
6686                 }
6687
6688                 if (!cfg->llvm_only && !strcmp (cmethod->name, "Write") && fsig->param_count == 2) {
6689                         guint32 opcode = 0;
6690                         MonoType *t = fsig->params [0];
6691                         gboolean is_ref;
6692
6693                         g_assert (t->byref);
6694                         is_ref = mini_type_is_reference (&mono_class_from_mono_type (t)->byval_arg);
6695                         if (t->type == MONO_TYPE_I1)
6696                                 opcode = OP_ATOMIC_STORE_I1;
6697                         else if (t->type == MONO_TYPE_U1 || t->type == MONO_TYPE_BOOLEAN)
6698                                 opcode = OP_ATOMIC_STORE_U1;
6699                         else if (t->type == MONO_TYPE_I2)
6700                                 opcode = OP_ATOMIC_STORE_I2;
6701                         else if (t->type == MONO_TYPE_U2)
6702                                 opcode = OP_ATOMIC_STORE_U2;
6703                         else if (t->type == MONO_TYPE_I4)
6704                                 opcode = OP_ATOMIC_STORE_I4;
6705                         else if (t->type == MONO_TYPE_U4)
6706                                 opcode = OP_ATOMIC_STORE_U4;
6707                         else if (t->type == MONO_TYPE_R4)
6708                                 opcode = OP_ATOMIC_STORE_R4;
6709                         else if (t->type == MONO_TYPE_R8)
6710                                 opcode = OP_ATOMIC_STORE_R8;
6711 #if SIZEOF_REGISTER == 8
6712                         else if (t->type == MONO_TYPE_I8 || t->type == MONO_TYPE_I)
6713                                 opcode = OP_ATOMIC_STORE_I8;
6714                         else if (is_ref || t->type == MONO_TYPE_U8 || t->type == MONO_TYPE_U)
6715                                 opcode = OP_ATOMIC_STORE_U8;
6716 #else
6717                         else if (t->type == MONO_TYPE_I)
6718                                 opcode = OP_ATOMIC_STORE_I4;
6719                         else if (is_ref || t->type == MONO_TYPE_U)
6720                                 opcode = OP_ATOMIC_STORE_U4;
6721 #endif
6722
6723                         if (opcode) {
6724                                 if (!mono_arch_opcode_supported (opcode))
6725                                         return NULL;
6726
6727                                 MONO_INST_NEW (cfg, ins, opcode);
6728                                 ins->dreg = args [0]->dreg;
6729                                 ins->sreg1 = args [1]->dreg;
6730                                 ins->backend.memory_barrier_kind = MONO_MEMORY_BARRIER_REL;
6731                                 MONO_ADD_INS (cfg->cbb, ins);
6732
6733                                 if (cfg->gen_write_barriers && is_ref)
6734                                         emit_write_barrier (cfg, args [0], args [1]);
6735                         }
6736                 }
6737
6738                 if (ins)
6739                         return ins;
6740         } else if (cmethod->klass->image == mono_defaults.corlib &&
6741                            (strcmp (cmethod->klass->name_space, "System.Diagnostics") == 0) &&
6742                            (strcmp (cmethod->klass->name, "Debugger") == 0)) {
6743                 if (!strcmp (cmethod->name, "Break") && fsig->param_count == 0) {
6744                         if (should_insert_brekpoint (cfg->method)) {
6745                                 ins = mono_emit_jit_icall (cfg, mono_debugger_agent_user_break, NULL);
6746                         } else {
6747                                 MONO_INST_NEW (cfg, ins, OP_NOP);
6748                                 MONO_ADD_INS (cfg->cbb, ins);
6749                         }
6750                         return ins;
6751                 }
6752         } else if (cmethod->klass->image == mono_defaults.corlib &&
6753                    (strcmp (cmethod->klass->name_space, "System") == 0) &&
6754                    (strcmp (cmethod->klass->name, "Environment") == 0)) {
6755                 if (!strcmp (cmethod->name, "get_IsRunningOnWindows") && fsig->param_count == 0) {
6756 #ifdef TARGET_WIN32
6757                         EMIT_NEW_ICONST (cfg, ins, 1);
6758 #else
6759                         EMIT_NEW_ICONST (cfg, ins, 0);
6760 #endif
6761                 }
6762         } else if (cmethod->klass->image == mono_defaults.corlib &&
6763                            (strcmp (cmethod->klass->name_space, "System.Reflection") == 0) &&
6764                            (strcmp (cmethod->klass->name, "Assembly") == 0)) {
6765                 if (cfg->llvm_only && !strcmp (cmethod->name, "GetExecutingAssembly")) {
6766                         /* No stack walks are currently available, so implement this as an intrinsic */
6767                         MonoInst *assembly_ins;
6768
6769                         EMIT_NEW_AOTCONST (cfg, assembly_ins, MONO_PATCH_INFO_IMAGE, cfg->method->klass->image);
6770                         ins = mono_emit_jit_icall (cfg, mono_get_assembly_object, &assembly_ins);
6771                         return ins;
6772                 }
6773         } else if (cmethod->klass->image == mono_defaults.corlib &&
6774                            (strcmp (cmethod->klass->name_space, "System.Reflection") == 0) &&
6775                            (strcmp (cmethod->klass->name, "MethodBase") == 0)) {
6776                 if (cfg->llvm_only && !strcmp (cmethod->name, "GetCurrentMethod")) {
6777                         /* No stack walks are currently available, so implement this as an intrinsic */
6778                         MonoInst *method_ins;
6779                         MonoMethod *declaring = cfg->method;
6780
6781                         /* This returns the declaring generic method */
6782                         if (declaring->is_inflated)
6783                                 declaring = ((MonoMethodInflated*)cfg->method)->declaring;
6784                         EMIT_NEW_AOTCONST (cfg, method_ins, MONO_PATCH_INFO_METHODCONST, declaring);
6785                         ins = mono_emit_jit_icall (cfg, mono_get_method_object, &method_ins);
6786                         cfg->no_inline = TRUE;
6787                         if (cfg->method != cfg->current_method)
6788                                 inline_failure (cfg, "MethodBase:GetCurrentMethod ()");
6789                         return ins;
6790                 }
6791         } else if (cmethod->klass == mono_defaults.math_class) {
6792                 /* 
6793                  * There is general branchless code for Min/Max, but it does not work for 
6794                  * all inputs:
6795                  * http://everything2.com/?node_id=1051618
6796                  */
6797         } else if (((!strcmp (cmethod->klass->image->assembly->aname.name, "MonoMac") ||
6798                     !strcmp (cmethod->klass->image->assembly->aname.name, "monotouch")) &&
6799                                 !strcmp (cmethod->klass->name_space, "XamCore.ObjCRuntime") &&
6800                                 !strcmp (cmethod->klass->name, "Selector")) ||
6801                            ((!strcmp (cmethod->klass->image->assembly->aname.name, "Xamarin.iOS") ||
6802                                  !strcmp (cmethod->klass->image->assembly->aname.name, "Xamarin.Mac")) &&
6803                                 !strcmp (cmethod->klass->name_space, "ObjCRuntime") &&
6804                                 !strcmp (cmethod->klass->name, "Selector"))
6805                            ) {
6806                 if ((cfg->backend->have_objc_get_selector || cfg->compile_llvm) &&
6807                         !strcmp (cmethod->name, "GetHandle") && fsig->param_count == 1 &&
6808                     (args [0]->opcode == OP_GOT_ENTRY || args [0]->opcode == OP_AOTCONST) &&
6809                     cfg->compile_aot) {
6810                         MonoInst *pi;
6811                         MonoJumpInfoToken *ji;
6812                         char *s;
6813
6814                         if (args [0]->opcode == OP_GOT_ENTRY) {
6815                                 pi = (MonoInst *)args [0]->inst_p1;
6816                                 g_assert (pi->opcode == OP_PATCH_INFO);
6817                                 g_assert (GPOINTER_TO_INT (pi->inst_p1) == MONO_PATCH_INFO_LDSTR);
6818                                 ji = (MonoJumpInfoToken *)pi->inst_p0;
6819                         } else {
6820                                 g_assert (GPOINTER_TO_INT (args [0]->inst_p1) == MONO_PATCH_INFO_LDSTR);
6821                                 ji = (MonoJumpInfoToken *)args [0]->inst_p0;
6822                         }
6823
6824                         NULLIFY_INS (args [0]);
6825
6826                         s = mono_ldstr_utf8 (ji->image, mono_metadata_token_index (ji->token), &cfg->error);
6827                         return_val_if_nok (&cfg->error, NULL);
6828
6829                         MONO_INST_NEW (cfg, ins, OP_OBJC_GET_SELECTOR);
6830                         ins->dreg = mono_alloc_ireg (cfg);
6831                         // FIXME: Leaks
6832                         ins->inst_p0 = s;
6833                         MONO_ADD_INS (cfg->cbb, ins);
6834                         return ins;
6835                 }
6836         }
6837
6838 #ifdef MONO_ARCH_SIMD_INTRINSICS
6839         if (cfg->opt & MONO_OPT_SIMD) {
6840                 ins = mono_emit_simd_intrinsics (cfg, cmethod, fsig, args);
6841                 if (ins)
6842                         return ins;
6843         }
6844 #endif
6845
6846         ins = mono_emit_native_types_intrinsics (cfg, cmethod, fsig, args);
6847         if (ins)
6848                 return ins;
6849
6850         if (COMPILE_LLVM (cfg)) {
6851                 ins = llvm_emit_inst_for_method (cfg, cmethod, fsig, args);
6852                 if (ins)
6853                         return ins;
6854         }
6855
6856         return mono_arch_emit_inst_for_method (cfg, cmethod, fsig, args);
6857 }
6858
6859 /*
6860  * This entry point could be used later for arbitrary method
6861  * redirection.
6862  */
6863 inline static MonoInst*
6864 mini_redirect_call (MonoCompile *cfg, MonoMethod *method,  
6865                                         MonoMethodSignature *signature, MonoInst **args, MonoInst *this_ins)
6866 {
6867         if (method->klass == mono_defaults.string_class) {
6868                 /* managed string allocation support */
6869                 if (strcmp (method->name, "InternalAllocateStr") == 0 && !(mono_profiler_events & MONO_PROFILE_ALLOCATIONS) && !(cfg->opt & MONO_OPT_SHARED)) {
6870                         MonoInst *iargs [2];
6871                         MonoVTable *vtable = mono_class_vtable (cfg->domain, method->klass);
6872                         MonoMethod *managed_alloc = NULL;
6873
6874                         g_assert (vtable); /*Should not fail since it System.String*/
6875 #ifndef MONO_CROSS_COMPILE
6876                         managed_alloc = mono_gc_get_managed_allocator (method->klass, FALSE, FALSE);
6877 #endif
6878                         if (!managed_alloc)
6879                                 return NULL;
6880                         EMIT_NEW_VTABLECONST (cfg, iargs [0], vtable);
6881                         iargs [1] = args [0];
6882                         return mono_emit_method_call (cfg, managed_alloc, iargs, this_ins);
6883                 }
6884         }
6885         return NULL;
6886 }
6887
6888 static void
6889 mono_save_args (MonoCompile *cfg, MonoMethodSignature *sig, MonoInst **sp)
6890 {
6891         MonoInst *store, *temp;
6892         int i;
6893
6894         for (i = 0; i < sig->param_count + sig->hasthis; ++i) {
6895                 MonoType *argtype = (sig->hasthis && (i == 0)) ? type_from_stack_type (*sp) : sig->params [i - sig->hasthis];
6896
6897                 /*
6898                  * FIXME: We should use *args++ = sp [0], but that would mean the arg
6899                  * would be different than the MonoInst's used to represent arguments, and
6900                  * the ldelema implementation can't deal with that.
6901                  * Solution: When ldelema is used on an inline argument, create a var for 
6902                  * it, emit ldelema on that var, and emit the saving code below in
6903                  * inline_method () if needed.
6904                  */
6905                 temp = mono_compile_create_var (cfg, argtype, OP_LOCAL);
6906                 cfg->args [i] = temp;
6907                 /* This uses cfg->args [i] which is set by the preceeding line */
6908                 EMIT_NEW_ARGSTORE (cfg, store, i, *sp);
6909                 store->cil_code = sp [0]->cil_code;
6910                 sp++;
6911         }
6912 }
6913
6914 #define MONO_INLINE_CALLED_LIMITED_METHODS 1
6915 #define MONO_INLINE_CALLER_LIMITED_METHODS 1
6916
6917 #if (MONO_INLINE_CALLED_LIMITED_METHODS)
6918 static gboolean
6919 check_inline_called_method_name_limit (MonoMethod *called_method)
6920 {
6921         int strncmp_result;
6922         static const char *limit = NULL;
6923         
6924         if (limit == NULL) {
6925                 const char *limit_string = g_getenv ("MONO_INLINE_CALLED_METHOD_NAME_LIMIT");
6926
6927                 if (limit_string != NULL)
6928                         limit = limit_string;
6929                 else
6930                         limit = "";
6931         }
6932
6933         if (limit [0] != '\0') {
6934                 char *called_method_name = mono_method_full_name (called_method, TRUE);
6935
6936                 strncmp_result = strncmp (called_method_name, limit, strlen (limit));
6937                 g_free (called_method_name);
6938         
6939                 //return (strncmp_result <= 0);
6940                 return (strncmp_result == 0);
6941         } else {
6942                 return TRUE;
6943         }
6944 }
6945 #endif
6946
6947 #if (MONO_INLINE_CALLER_LIMITED_METHODS)
6948 static gboolean
6949 check_inline_caller_method_name_limit (MonoMethod *caller_method)
6950 {
6951         int strncmp_result;
6952         static const char *limit = NULL;
6953         
6954         if (limit == NULL) {
6955                 const char *limit_string = g_getenv ("MONO_INLINE_CALLER_METHOD_NAME_LIMIT");
6956                 if (limit_string != NULL) {
6957                         limit = limit_string;
6958                 } else {
6959                         limit = "";
6960                 }
6961         }
6962
6963         if (limit [0] != '\0') {
6964                 char *caller_method_name = mono_method_full_name (caller_method, TRUE);
6965
6966                 strncmp_result = strncmp (caller_method_name, limit, strlen (limit));
6967                 g_free (caller_method_name);
6968         
6969                 //return (strncmp_result <= 0);
6970                 return (strncmp_result == 0);
6971         } else {
6972                 return TRUE;
6973         }
6974 }
6975 #endif
6976
6977 static void
6978 emit_init_rvar (MonoCompile *cfg, int dreg, MonoType *rtype)
6979 {
6980         static double r8_0 = 0.0;
6981         static float r4_0 = 0.0;
6982         MonoInst *ins;
6983         int t;
6984
6985         rtype = mini_get_underlying_type (rtype);
6986         t = rtype->type;
6987
6988         if (rtype->byref) {
6989                 MONO_EMIT_NEW_PCONST (cfg, dreg, NULL);
6990         } else if (t >= MONO_TYPE_BOOLEAN && t <= MONO_TYPE_U4) {
6991                 MONO_EMIT_NEW_ICONST (cfg, dreg, 0);
6992         } else if (t == MONO_TYPE_I8 || t == MONO_TYPE_U8) {
6993                 MONO_EMIT_NEW_I8CONST (cfg, dreg, 0);
6994         } else if (cfg->r4fp && t == MONO_TYPE_R4) {
6995                 MONO_INST_NEW (cfg, ins, OP_R4CONST);
6996                 ins->type = STACK_R4;
6997                 ins->inst_p0 = (void*)&r4_0;
6998                 ins->dreg = dreg;
6999                 MONO_ADD_INS (cfg->cbb, ins);
7000         } else if (t == MONO_TYPE_R4 || t == MONO_TYPE_R8) {
7001                 MONO_INST_NEW (cfg, ins, OP_R8CONST);
7002                 ins->type = STACK_R8;
7003                 ins->inst_p0 = (void*)&r8_0;
7004                 ins->dreg = dreg;
7005                 MONO_ADD_INS (cfg->cbb, ins);
7006         } else if ((t == MONO_TYPE_VALUETYPE) || (t == MONO_TYPE_TYPEDBYREF) ||
7007                    ((t == MONO_TYPE_GENERICINST) && mono_type_generic_inst_is_valuetype (rtype))) {
7008                 MONO_EMIT_NEW_VZERO (cfg, dreg, mono_class_from_mono_type (rtype));
7009         } else if (((t == MONO_TYPE_VAR) || (t == MONO_TYPE_MVAR)) && mini_type_var_is_vt (rtype)) {
7010                 MONO_EMIT_NEW_VZERO (cfg, dreg, mono_class_from_mono_type (rtype));
7011         } else {
7012                 MONO_EMIT_NEW_PCONST (cfg, dreg, NULL);
7013         }
7014 }
7015
7016 static void
7017 emit_dummy_init_rvar (MonoCompile *cfg, int dreg, MonoType *rtype)
7018 {
7019         int t;
7020
7021         rtype = mini_get_underlying_type (rtype);
7022         t = rtype->type;
7023
7024         if (rtype->byref) {
7025                 MONO_EMIT_NEW_DUMMY_INIT (cfg, dreg, OP_DUMMY_PCONST);
7026         } else if (t >= MONO_TYPE_BOOLEAN && t <= MONO_TYPE_U4) {
7027                 MONO_EMIT_NEW_DUMMY_INIT (cfg, dreg, OP_DUMMY_ICONST);
7028         } else if (t == MONO_TYPE_I8 || t == MONO_TYPE_U8) {
7029                 MONO_EMIT_NEW_DUMMY_INIT (cfg, dreg, OP_DUMMY_I8CONST);
7030         } else if (cfg->r4fp && t == MONO_TYPE_R4) {
7031                 MONO_EMIT_NEW_DUMMY_INIT (cfg, dreg, OP_DUMMY_R4CONST);
7032         } else if (t == MONO_TYPE_R4 || t == MONO_TYPE_R8) {
7033                 MONO_EMIT_NEW_DUMMY_INIT (cfg, dreg, OP_DUMMY_R8CONST);
7034         } else if ((t == MONO_TYPE_VALUETYPE) || (t == MONO_TYPE_TYPEDBYREF) ||
7035                    ((t == MONO_TYPE_GENERICINST) && mono_type_generic_inst_is_valuetype (rtype))) {
7036                 MONO_EMIT_NEW_DUMMY_INIT (cfg, dreg, OP_DUMMY_VZERO);
7037         } else if (((t == MONO_TYPE_VAR) || (t == MONO_TYPE_MVAR)) && mini_type_var_is_vt (rtype)) {
7038                 MONO_EMIT_NEW_DUMMY_INIT (cfg, dreg, OP_DUMMY_VZERO);
7039         } else {
7040                 emit_init_rvar (cfg, dreg, rtype);
7041         }
7042 }
7043
7044 /* If INIT is FALSE, emit dummy initialization statements to keep the IR valid */
7045 static void
7046 emit_init_local (MonoCompile *cfg, int local, MonoType *type, gboolean init)
7047 {
7048         MonoInst *var = cfg->locals [local];
7049         if (COMPILE_SOFT_FLOAT (cfg)) {
7050                 MonoInst *store;
7051                 int reg = alloc_dreg (cfg, (MonoStackType)var->type);
7052                 emit_init_rvar (cfg, reg, type);
7053                 EMIT_NEW_LOCSTORE (cfg, store, local, cfg->cbb->last_ins);
7054         } else {
7055                 if (init)
7056                         emit_init_rvar (cfg, var->dreg, type);
7057                 else
7058                         emit_dummy_init_rvar (cfg, var->dreg, type);
7059         }
7060 }
7061
7062 /*
7063  * inline_method:
7064  *
7065  *   Return the cost of inlining CMETHOD.
7066  */
7067 static int
7068 inline_method (MonoCompile *cfg, MonoMethod *cmethod, MonoMethodSignature *fsig, MonoInst **sp,
7069                            guchar *ip, guint real_offset, gboolean inline_always)
7070 {
7071         MonoError error;
7072         MonoInst *ins, *rvar = NULL;
7073         MonoMethodHeader *cheader;
7074         MonoBasicBlock *ebblock, *sbblock;
7075         int i, costs;
7076         MonoMethod *prev_inlined_method;
7077         MonoInst **prev_locals, **prev_args;
7078         MonoType **prev_arg_types;
7079         guint prev_real_offset;
7080         GHashTable *prev_cbb_hash;
7081         MonoBasicBlock **prev_cil_offset_to_bb;
7082         MonoBasicBlock *prev_cbb;
7083         unsigned char* prev_cil_start;
7084         guint32 prev_cil_offset_to_bb_len;
7085         MonoMethod *prev_current_method;
7086         MonoGenericContext *prev_generic_context;
7087         gboolean ret_var_set, prev_ret_var_set, prev_disable_inline, virtual_ = FALSE;
7088
7089         g_assert (cfg->exception_type == MONO_EXCEPTION_NONE);
7090
7091 #if (MONO_INLINE_CALLED_LIMITED_METHODS)
7092         if ((! inline_always) && ! check_inline_called_method_name_limit (cmethod))
7093                 return 0;
7094 #endif
7095 #if (MONO_INLINE_CALLER_LIMITED_METHODS)
7096         if ((! inline_always) && ! check_inline_caller_method_name_limit (cfg->method))
7097                 return 0;
7098 #endif
7099
7100         if (!fsig)
7101                 fsig = mono_method_signature (cmethod);
7102
7103         if (cfg->verbose_level > 2)
7104                 printf ("INLINE START %p %s -> %s\n", cmethod,  mono_method_full_name (cfg->method, TRUE), mono_method_full_name (cmethod, TRUE));
7105
7106         if (!cmethod->inline_info) {
7107                 cfg->stat_inlineable_methods++;
7108                 cmethod->inline_info = 1;
7109         }
7110
7111         /* allocate local variables */
7112         cheader = mono_method_get_header_checked (cmethod, &error);
7113         if (!cheader) {
7114                 if (inline_always) {
7115                         mono_cfg_set_exception (cfg, MONO_EXCEPTION_MONO_ERROR);
7116                         mono_error_move (&cfg->error, &error);
7117                 } else {
7118                         mono_error_cleanup (&error);
7119                 }
7120                 return 0;
7121         }
7122
7123         /*Must verify before creating locals as it can cause the JIT to assert.*/
7124         if (mono_compile_is_broken (cfg, cmethod, FALSE)) {
7125                 mono_metadata_free_mh (cheader);
7126                 return 0;
7127         }
7128
7129         /* allocate space to store the return value */
7130         if (!MONO_TYPE_IS_VOID (fsig->ret)) {
7131                 rvar = mono_compile_create_var (cfg, fsig->ret, OP_LOCAL);
7132         }
7133
7134         prev_locals = cfg->locals;
7135         cfg->locals = (MonoInst **)mono_mempool_alloc0 (cfg->mempool, cheader->num_locals * sizeof (MonoInst*));
7136         for (i = 0; i < cheader->num_locals; ++i)
7137                 cfg->locals [i] = mono_compile_create_var (cfg, cheader->locals [i], OP_LOCAL);
7138
7139         /* allocate start and end blocks */
7140         /* This is needed so if the inline is aborted, we can clean up */
7141         NEW_BBLOCK (cfg, sbblock);
7142         sbblock->real_offset = real_offset;
7143
7144         NEW_BBLOCK (cfg, ebblock);
7145         ebblock->block_num = cfg->num_bblocks++;
7146         ebblock->real_offset = real_offset;
7147
7148         prev_args = cfg->args;
7149         prev_arg_types = cfg->arg_types;
7150         prev_inlined_method = cfg->inlined_method;
7151         cfg->inlined_method = cmethod;
7152         cfg->ret_var_set = FALSE;
7153         cfg->inline_depth ++;
7154         prev_real_offset = cfg->real_offset;
7155         prev_cbb_hash = cfg->cbb_hash;
7156         prev_cil_offset_to_bb = cfg->cil_offset_to_bb;
7157         prev_cil_offset_to_bb_len = cfg->cil_offset_to_bb_len;
7158         prev_cil_start = cfg->cil_start;
7159         prev_cbb = cfg->cbb;
7160         prev_current_method = cfg->current_method;
7161         prev_generic_context = cfg->generic_context;
7162         prev_ret_var_set = cfg->ret_var_set;
7163         prev_disable_inline = cfg->disable_inline;
7164
7165         if (ip && *ip == CEE_CALLVIRT && !(cmethod->flags & METHOD_ATTRIBUTE_STATIC))
7166                 virtual_ = TRUE;
7167
7168         costs = mono_method_to_ir (cfg, cmethod, sbblock, ebblock, rvar, sp, real_offset, virtual_);
7169
7170         ret_var_set = cfg->ret_var_set;
7171
7172         cfg->inlined_method = prev_inlined_method;
7173         cfg->real_offset = prev_real_offset;
7174         cfg->cbb_hash = prev_cbb_hash;
7175         cfg->cil_offset_to_bb = prev_cil_offset_to_bb;
7176         cfg->cil_offset_to_bb_len = prev_cil_offset_to_bb_len;
7177         cfg->cil_start = prev_cil_start;
7178         cfg->locals = prev_locals;
7179         cfg->args = prev_args;
7180         cfg->arg_types = prev_arg_types;
7181         cfg->current_method = prev_current_method;
7182         cfg->generic_context = prev_generic_context;
7183         cfg->ret_var_set = prev_ret_var_set;
7184         cfg->disable_inline = prev_disable_inline;
7185         cfg->inline_depth --;
7186
7187         if ((costs >= 0 && costs < 60) || inline_always || (costs >= 0 && (cmethod->iflags & METHOD_IMPL_ATTRIBUTE_AGGRESSIVE_INLINING))) {
7188                 if (cfg->verbose_level > 2)
7189                         printf ("INLINE END %s -> %s\n", mono_method_full_name (cfg->method, TRUE), mono_method_full_name (cmethod, TRUE));
7190                 
7191                 cfg->stat_inlined_methods++;
7192
7193                 /* always add some code to avoid block split failures */
7194                 MONO_INST_NEW (cfg, ins, OP_NOP);
7195                 MONO_ADD_INS (prev_cbb, ins);
7196
7197                 prev_cbb->next_bb = sbblock;
7198                 link_bblock (cfg, prev_cbb, sbblock);
7199
7200                 /* 
7201                  * Get rid of the begin and end bblocks if possible to aid local
7202                  * optimizations.
7203                  */
7204                 mono_merge_basic_blocks (cfg, prev_cbb, sbblock);
7205
7206                 if ((prev_cbb->out_count == 1) && (prev_cbb->out_bb [0]->in_count == 1) && (prev_cbb->out_bb [0] != ebblock))
7207                         mono_merge_basic_blocks (cfg, prev_cbb, prev_cbb->out_bb [0]);
7208
7209                 if ((ebblock->in_count == 1) && ebblock->in_bb [0]->out_count == 1) {
7210                         MonoBasicBlock *prev = ebblock->in_bb [0];
7211
7212                         if (prev->next_bb == ebblock) {
7213                                 mono_merge_basic_blocks (cfg, prev, ebblock);
7214                                 cfg->cbb = prev;
7215                                 if ((prev_cbb->out_count == 1) && (prev_cbb->out_bb [0]->in_count == 1) && (prev_cbb->out_bb [0] == prev)) {
7216                                         mono_merge_basic_blocks (cfg, prev_cbb, prev);
7217                                         cfg->cbb = prev_cbb;
7218                                 }
7219                         } else {
7220                                 /* There could be a bblock after 'prev', and making 'prev' the current bb could cause problems */
7221                                 cfg->cbb = ebblock;
7222                         }
7223                 } else {
7224                         /* 
7225                          * Its possible that the rvar is set in some prev bblock, but not in others.
7226                          * (#1835).
7227                          */
7228                         if (rvar) {
7229                                 MonoBasicBlock *bb;
7230
7231                                 for (i = 0; i < ebblock->in_count; ++i) {
7232                                         bb = ebblock->in_bb [i];
7233
7234                                         if (bb->last_ins && bb->last_ins->opcode == OP_NOT_REACHED) {
7235                                                 cfg->cbb = bb;
7236
7237                                                 emit_init_rvar (cfg, rvar->dreg, fsig->ret);
7238                                         }
7239                                 }
7240                         }
7241
7242                         cfg->cbb = ebblock;
7243                 }
7244
7245                 if (rvar) {
7246                         /*
7247                          * If the inlined method contains only a throw, then the ret var is not 
7248                          * set, so set it to a dummy value.
7249                          */
7250                         if (!ret_var_set)
7251                                 emit_init_rvar (cfg, rvar->dreg, fsig->ret);
7252
7253                         EMIT_NEW_TEMPLOAD (cfg, ins, rvar->inst_c0);
7254                         *sp++ = ins;
7255                 }
7256                 cfg->headers_to_free = g_slist_prepend_mempool (cfg->mempool, cfg->headers_to_free, cheader);
7257                 return costs + 1;
7258         } else {
7259                 if (cfg->verbose_level > 2)
7260                         printf ("INLINE ABORTED %s (cost %d)\n", mono_method_full_name (cmethod, TRUE), costs);
7261                 cfg->exception_type = MONO_EXCEPTION_NONE;
7262
7263                 /* This gets rid of the newly added bblocks */
7264                 cfg->cbb = prev_cbb;
7265         }
7266         cfg->headers_to_free = g_slist_prepend_mempool (cfg->mempool, cfg->headers_to_free, cheader);
7267         return 0;
7268 }
7269
7270 /*
7271  * Some of these comments may well be out-of-date.
7272  * Design decisions: we do a single pass over the IL code (and we do bblock 
7273  * splitting/merging in the few cases when it's required: a back jump to an IL
7274  * address that was not already seen as bblock starting point).
7275  * Code is validated as we go (full verification is still better left to metadata/verify.c).
7276  * Complex operations are decomposed in simpler ones right away. We need to let the 
7277  * arch-specific code peek and poke inside this process somehow (except when the 
7278  * optimizations can take advantage of the full semantic info of coarse opcodes).
7279  * All the opcodes of the form opcode.s are 'normalized' to opcode.
7280  * MonoInst->opcode initially is the IL opcode or some simplification of that 
7281  * (OP_LOAD, OP_STORE). The arch-specific code may rearrange it to an arch-specific 
7282  * opcode with value bigger than OP_LAST.
7283  * At this point the IR can be handed over to an interpreter, a dumb code generator
7284  * or to the optimizing code generator that will translate it to SSA form.
7285  *
7286  * Profiling directed optimizations.
7287  * We may compile by default with few or no optimizations and instrument the code
7288  * or the user may indicate what methods to optimize the most either in a config file
7289  * or through repeated runs where the compiler applies offline the optimizations to 
7290  * each method and then decides if it was worth it.
7291  */
7292
7293 #define CHECK_TYPE(ins) if (!(ins)->type) UNVERIFIED
7294 #define CHECK_STACK(num) if ((sp - stack_start) < (num)) UNVERIFIED
7295 #define CHECK_STACK_OVF(num) if (((sp - stack_start) + (num)) > header->max_stack) UNVERIFIED
7296 #define CHECK_ARG(num) if ((unsigned)(num) >= (unsigned)num_args) UNVERIFIED
7297 #define CHECK_LOCAL(num) if ((unsigned)(num) >= (unsigned)header->num_locals) UNVERIFIED
7298 #define CHECK_OPSIZE(size) if (ip + size > end) UNVERIFIED
7299 #define CHECK_UNVERIFIABLE(cfg) if (cfg->unverifiable) UNVERIFIED
7300 #define CHECK_TYPELOAD(klass) if (!(klass) || mono_class_has_failure (klass)) TYPE_LOAD_ERROR ((klass))
7301
7302 /* offset from br.s -> br like opcodes */
7303 #define BIG_BRANCH_OFFSET 13
7304
7305 static gboolean
7306 ip_in_bb (MonoCompile *cfg, MonoBasicBlock *bb, const guint8* ip)
7307 {
7308         MonoBasicBlock *b = cfg->cil_offset_to_bb [ip - cfg->cil_start];
7309
7310         return b == NULL || b == bb;
7311 }
7312
7313 static int
7314 get_basic_blocks (MonoCompile *cfg, MonoMethodHeader* header, guint real_offset, unsigned char *start, unsigned char *end, unsigned char **pos)
7315 {
7316         unsigned char *ip = start;
7317         unsigned char *target;
7318         int i;
7319         guint cli_addr;
7320         MonoBasicBlock *bblock;
7321         const MonoOpcode *opcode;
7322
7323         while (ip < end) {
7324                 cli_addr = ip - start;
7325                 i = mono_opcode_value ((const guint8 **)&ip, end);
7326                 if (i < 0)
7327                         UNVERIFIED;
7328                 opcode = &mono_opcodes [i];
7329                 switch (opcode->argument) {
7330                 case MonoInlineNone:
7331                         ip++; 
7332                         break;
7333                 case MonoInlineString:
7334                 case MonoInlineType:
7335                 case MonoInlineField:
7336                 case MonoInlineMethod:
7337                 case MonoInlineTok:
7338                 case MonoInlineSig:
7339                 case MonoShortInlineR:
7340                 case MonoInlineI:
7341                         ip += 5;
7342                         break;
7343                 case MonoInlineVar:
7344                         ip += 3;
7345                         break;
7346                 case MonoShortInlineVar:
7347                 case MonoShortInlineI:
7348                         ip += 2;
7349                         break;
7350                 case MonoShortInlineBrTarget:
7351                         target = start + cli_addr + 2 + (signed char)ip [1];
7352                         GET_BBLOCK (cfg, bblock, target);
7353                         ip += 2;
7354                         if (ip < end)
7355                                 GET_BBLOCK (cfg, bblock, ip);
7356                         break;
7357                 case MonoInlineBrTarget:
7358                         target = start + cli_addr + 5 + (gint32)read32 (ip + 1);
7359                         GET_BBLOCK (cfg, bblock, target);
7360                         ip += 5;
7361                         if (ip < end)
7362                                 GET_BBLOCK (cfg, bblock, ip);
7363                         break;
7364                 case MonoInlineSwitch: {
7365                         guint32 n = read32 (ip + 1);
7366                         guint32 j;
7367                         ip += 5;
7368                         cli_addr += 5 + 4 * n;
7369                         target = start + cli_addr;
7370                         GET_BBLOCK (cfg, bblock, target);
7371                         
7372                         for (j = 0; j < n; ++j) {
7373                                 target = start + cli_addr + (gint32)read32 (ip);
7374                                 GET_BBLOCK (cfg, bblock, target);
7375                                 ip += 4;
7376                         }
7377                         break;
7378                 }
7379                 case MonoInlineR:
7380                 case MonoInlineI8:
7381                         ip += 9;
7382                         break;
7383                 default:
7384                         g_assert_not_reached ();
7385                 }
7386
7387                 if (i == CEE_THROW) {
7388                         unsigned char *bb_start = ip - 1;
7389                         
7390                         /* Find the start of the bblock containing the throw */
7391                         bblock = NULL;
7392                         while ((bb_start >= start) && !bblock) {
7393                                 bblock = cfg->cil_offset_to_bb [(bb_start) - start];
7394                                 bb_start --;
7395                         }
7396                         if (bblock)
7397                                 bblock->out_of_line = 1;
7398                 }
7399         }
7400         return 0;
7401 unverified:
7402 exception_exit:
7403         *pos = ip;
7404         return 1;
7405 }
7406
7407 static inline MonoMethod *
7408 mini_get_method_allow_open (MonoMethod *m, guint32 token, MonoClass *klass, MonoGenericContext *context, MonoError *error)
7409 {
7410         MonoMethod *method;
7411
7412         mono_error_init (error);
7413
7414         if (m->wrapper_type != MONO_WRAPPER_NONE) {
7415                 method = (MonoMethod *)mono_method_get_wrapper_data (m, token);
7416                 if (context) {
7417                         method = mono_class_inflate_generic_method_checked (method, context, error);
7418                 }
7419         } else {
7420                 method = mono_get_method_checked (m->klass->image, token, klass, context, error);
7421         }
7422
7423         return method;
7424 }
7425
7426 static inline MonoMethod *
7427 mini_get_method (MonoCompile *cfg, MonoMethod *m, guint32 token, MonoClass *klass, MonoGenericContext *context)
7428 {
7429         MonoError error;
7430         MonoMethod *method = mini_get_method_allow_open (m, token, klass, context, cfg ? &cfg->error : &error);
7431
7432         if (method && cfg && !cfg->gshared && mono_class_is_open_constructed_type (&method->klass->byval_arg)) {
7433                 mono_error_set_bad_image (&cfg->error, cfg->method->klass->image, "Method with open type while not compiling gshared");
7434                 method = NULL;
7435         }
7436
7437         if (!method && !cfg)
7438                 mono_error_cleanup (&error); /* FIXME don't swallow the error */
7439
7440         return method;
7441 }
7442
7443 static inline MonoClass*
7444 mini_get_class (MonoMethod *method, guint32 token, MonoGenericContext *context)
7445 {
7446         MonoError error;
7447         MonoClass *klass;
7448
7449         if (method->wrapper_type != MONO_WRAPPER_NONE) {
7450                 klass = (MonoClass *)mono_method_get_wrapper_data (method, token);
7451                 if (context) {
7452                         klass = mono_class_inflate_generic_class_checked (klass, context, &error);
7453                         mono_error_cleanup (&error); /* FIXME don't swallow the error */
7454                 }
7455         } else {
7456                 klass = mono_class_get_and_inflate_typespec_checked (method->klass->image, token, context, &error);
7457                 mono_error_cleanup (&error); /* FIXME don't swallow the error */
7458         }
7459         if (klass)
7460                 mono_class_init (klass);
7461         return klass;
7462 }
7463
7464 static inline MonoMethodSignature*
7465 mini_get_signature (MonoMethod *method, guint32 token, MonoGenericContext *context, MonoError *error)
7466 {
7467         MonoMethodSignature *fsig;
7468
7469         mono_error_init (error);
7470         if (method->wrapper_type != MONO_WRAPPER_NONE) {
7471                 fsig = (MonoMethodSignature *)mono_method_get_wrapper_data (method, token);
7472         } else {
7473                 fsig = mono_metadata_parse_signature_checked (method->klass->image, token, error);
7474                 return_val_if_nok (error, NULL);
7475         }
7476         if (context) {
7477                 fsig = mono_inflate_generic_signature(fsig, context, error);
7478         }
7479         return fsig;
7480 }
7481
7482 static MonoMethod*
7483 throw_exception (void)
7484 {
7485         static MonoMethod *method = NULL;
7486
7487         if (!method) {
7488                 MonoSecurityManager *secman = mono_security_manager_get_methods ();
7489                 method = mono_class_get_method_from_name (secman->securitymanager, "ThrowException", 1);
7490         }
7491         g_assert (method);
7492         return method;
7493 }
7494
7495 static void
7496 emit_throw_exception (MonoCompile *cfg, MonoException *ex)
7497 {
7498         MonoMethod *thrower = throw_exception ();
7499         MonoInst *args [1];
7500
7501         EMIT_NEW_PCONST (cfg, args [0], ex);
7502         mono_emit_method_call (cfg, thrower, args, NULL);
7503 }
7504
7505 /*
7506  * Return the original method is a wrapper is specified. We can only access 
7507  * the custom attributes from the original method.
7508  */
7509 static MonoMethod*
7510 get_original_method (MonoMethod *method)
7511 {
7512         if (method->wrapper_type == MONO_WRAPPER_NONE)
7513                 return method;
7514
7515         /* native code (which is like Critical) can call any managed method XXX FIXME XXX to validate all usages */
7516         if (method->wrapper_type == MONO_WRAPPER_NATIVE_TO_MANAGED)
7517                 return NULL;
7518
7519         /* in other cases we need to find the original method */
7520         return mono_marshal_method_from_wrapper (method);
7521 }
7522
7523 static void
7524 ensure_method_is_allowed_to_access_field (MonoCompile *cfg, MonoMethod *caller, MonoClassField *field)
7525 {
7526         /* we can't get the coreclr security level on wrappers since they don't have the attributes */
7527         MonoException *ex = mono_security_core_clr_is_field_access_allowed (get_original_method (caller), field);
7528         if (ex)
7529                 emit_throw_exception (cfg, ex);
7530 }
7531
7532 static void
7533 ensure_method_is_allowed_to_call_method (MonoCompile *cfg, MonoMethod *caller, MonoMethod *callee)
7534 {
7535         /* we can't get the coreclr security level on wrappers since they don't have the attributes */
7536         MonoException *ex = mono_security_core_clr_is_call_allowed (get_original_method (caller), callee);
7537         if (ex)
7538                 emit_throw_exception (cfg, ex);
7539 }
7540
7541 /*
7542  * Check that the IL instructions at ip are the array initialization
7543  * sequence and return the pointer to the data and the size.
7544  */
7545 static const char*
7546 initialize_array_data (MonoMethod *method, gboolean aot, unsigned char *ip, MonoClass *klass, guint32 len, int *out_size, guint32 *out_field_token)
7547 {
7548         /*
7549          * newarr[System.Int32]
7550          * dup
7551          * ldtoken field valuetype ...
7552          * call void class [mscorlib]System.Runtime.CompilerServices.RuntimeHelpers::InitializeArray(class [mscorlib]System.Array, valuetype [mscorlib]System.RuntimeFieldHandle)
7553          */
7554         if (ip [0] == CEE_DUP && ip [1] == CEE_LDTOKEN && ip [5] == 0x4 && ip [6] == CEE_CALL) {
7555                 MonoError error;
7556                 guint32 token = read32 (ip + 7);
7557                 guint32 field_token = read32 (ip + 2);
7558                 guint32 field_index = field_token & 0xffffff;
7559                 guint32 rva;
7560                 const char *data_ptr;
7561                 int size = 0;
7562                 MonoMethod *cmethod;
7563                 MonoClass *dummy_class;
7564                 MonoClassField *field = mono_field_from_token_checked (method->klass->image, field_token, &dummy_class, NULL, &error);
7565                 int dummy_align;
7566
7567                 if (!field) {
7568                         mono_error_cleanup (&error); /* FIXME don't swallow the error */
7569                         return NULL;
7570                 }
7571
7572                 *out_field_token = field_token;
7573
7574                 cmethod = mini_get_method (NULL, method, token, NULL, NULL);
7575                 if (!cmethod)
7576                         return NULL;
7577                 if (strcmp (cmethod->name, "InitializeArray") || strcmp (cmethod->klass->name, "RuntimeHelpers") || cmethod->klass->image != mono_defaults.corlib)
7578                         return NULL;
7579                 switch (mono_type_get_underlying_type (&klass->byval_arg)->type) {
7580                 case MONO_TYPE_BOOLEAN:
7581                 case MONO_TYPE_I1:
7582                 case MONO_TYPE_U1:
7583                         size = 1; break;
7584                 /* we need to swap on big endian, so punt. Should we handle R4 and R8 as well? */
7585 #if TARGET_BYTE_ORDER == G_LITTLE_ENDIAN
7586                 case MONO_TYPE_CHAR:
7587                 case MONO_TYPE_I2:
7588                 case MONO_TYPE_U2:
7589                         size = 2; break;
7590                 case MONO_TYPE_I4:
7591                 case MONO_TYPE_U4:
7592                 case MONO_TYPE_R4:
7593                         size = 4; break;
7594                 case MONO_TYPE_R8:
7595                 case MONO_TYPE_I8:
7596                 case MONO_TYPE_U8:
7597                         size = 8; break;
7598 #endif
7599                 default:
7600                         return NULL;
7601                 }
7602                 size *= len;
7603                 if (size > mono_type_size (field->type, &dummy_align))
7604                     return NULL;
7605                 *out_size = size;
7606                 /*g_print ("optimized in %s: size: %d, numelems: %d\n", method->name, size, newarr->inst_newa_len->inst_c0);*/
7607                 if (!image_is_dynamic (method->klass->image)) {
7608                         field_index = read32 (ip + 2) & 0xffffff;
7609                         mono_metadata_field_info (method->klass->image, field_index - 1, NULL, &rva, NULL);
7610                         data_ptr = mono_image_rva_map (method->klass->image, rva);
7611                         /*g_print ("field: 0x%08x, rva: %d, rva_ptr: %p\n", read32 (ip + 2), rva, data_ptr);*/
7612                         /* for aot code we do the lookup on load */
7613                         if (aot && data_ptr)
7614                                 return (const char *)GUINT_TO_POINTER (rva);
7615                 } else {
7616                         /*FIXME is it possible to AOT a SRE assembly not meant to be saved? */ 
7617                         g_assert (!aot);
7618                         data_ptr = mono_field_get_data (field);
7619                 }
7620                 return data_ptr;
7621         }
7622         return NULL;
7623 }
7624
7625 static void
7626 set_exception_type_from_invalid_il (MonoCompile *cfg, MonoMethod *method, unsigned char *ip)
7627 {
7628         MonoError error;
7629         char *method_fname = mono_method_full_name (method, TRUE);
7630         char *method_code;
7631         MonoMethodHeader *header = mono_method_get_header_checked (method, &error);
7632
7633         if (!header) {
7634                 method_code = g_strdup_printf ("could not parse method body due to %s", mono_error_get_message (&error));
7635                 mono_error_cleanup (&error);
7636         } else if (header->code_size == 0)
7637                 method_code = g_strdup ("method body is empty.");
7638         else
7639                 method_code = mono_disasm_code_one (NULL, method, ip, NULL);
7640         mono_cfg_set_exception_invalid_program (cfg, g_strdup_printf ("Invalid IL code in %s: %s\n", method_fname, method_code));
7641         g_free (method_fname);
7642         g_free (method_code);
7643         cfg->headers_to_free = g_slist_prepend_mempool (cfg->mempool, cfg->headers_to_free, header);
7644 }
7645
7646 static void
7647 emit_stloc_ir (MonoCompile *cfg, MonoInst **sp, MonoMethodHeader *header, int n)
7648 {
7649         MonoInst *ins;
7650         guint32 opcode = mono_type_to_regmove (cfg, header->locals [n]);
7651         if ((opcode == OP_MOVE) && cfg->cbb->last_ins == sp [0]  &&
7652                         ((sp [0]->opcode == OP_ICONST) || (sp [0]->opcode == OP_I8CONST))) {
7653                 /* Optimize reg-reg moves away */
7654                 /* 
7655                  * Can't optimize other opcodes, since sp[0] might point to
7656                  * the last ins of a decomposed opcode.
7657                  */
7658                 sp [0]->dreg = (cfg)->locals [n]->dreg;
7659         } else {
7660                 EMIT_NEW_LOCSTORE (cfg, ins, n, *sp);
7661         }
7662 }
7663
7664 /*
7665  * ldloca inhibits many optimizations so try to get rid of it in common
7666  * cases.
7667  */
7668 static inline unsigned char *
7669 emit_optimized_ldloca_ir (MonoCompile *cfg, unsigned char *ip, unsigned char *end, int size)
7670 {
7671         int local, token;
7672         MonoClass *klass;
7673         MonoType *type;
7674
7675         if (size == 1) {
7676                 local = ip [1];
7677                 ip += 2;
7678         } else {
7679                 local = read16 (ip + 2);
7680                 ip += 4;
7681         }
7682         
7683         if (ip + 6 < end && (ip [0] == CEE_PREFIX1) && (ip [1] == CEE_INITOBJ) && ip_in_bb (cfg, cfg->cbb, ip + 1)) {
7684                 /* From the INITOBJ case */
7685                 token = read32 (ip + 2);
7686                 klass = mini_get_class (cfg->current_method, token, cfg->generic_context);
7687                 CHECK_TYPELOAD (klass);
7688                 type = mini_get_underlying_type (&klass->byval_arg);
7689                 emit_init_local (cfg, local, type, TRUE);
7690                 return ip + 6;
7691         }
7692  exception_exit:
7693         return NULL;
7694 }
7695
7696 static MonoInst*
7697 emit_llvmonly_virtual_call (MonoCompile *cfg, MonoMethod *cmethod, MonoMethodSignature *fsig, int context_used, MonoInst **sp)
7698 {
7699         MonoInst *icall_args [16];
7700         MonoInst *call_target, *ins, *vtable_ins;
7701         int arg_reg, this_reg, vtable_reg;
7702         gboolean is_iface = cmethod->klass->flags & TYPE_ATTRIBUTE_INTERFACE;
7703         gboolean is_gsharedvt = cfg->gsharedvt && mini_is_gsharedvt_variable_signature (fsig);
7704         gboolean variant_iface = FALSE;
7705         guint32 slot;
7706         int offset;
7707
7708         /*
7709          * In llvm-only mode, vtables contain function descriptors instead of
7710          * method addresses/trampolines.
7711          */
7712         MONO_EMIT_NULL_CHECK (cfg, sp [0]->dreg);
7713
7714         if (is_iface)
7715                 slot = mono_method_get_imt_slot (cmethod);
7716         else
7717                 slot = mono_method_get_vtable_index (cmethod);
7718
7719         this_reg = sp [0]->dreg;
7720
7721         if (is_iface && mono_class_has_variant_generic_params (cmethod->klass))
7722                 variant_iface = TRUE;
7723
7724         if (!fsig->generic_param_count && !is_iface && !is_gsharedvt) {
7725                 /*
7726                  * The simplest case, a normal virtual call.
7727                  */
7728                 int slot_reg = alloc_preg (cfg);
7729                 int addr_reg = alloc_preg (cfg);
7730                 int arg_reg = alloc_preg (cfg);
7731                 MonoBasicBlock *non_null_bb;
7732
7733                 vtable_reg = alloc_preg (cfg);
7734                 EMIT_NEW_LOAD_MEMBASE (cfg, vtable_ins, OP_LOAD_MEMBASE, vtable_reg, this_reg, MONO_STRUCT_OFFSET (MonoObject, vtable));
7735                 offset = MONO_STRUCT_OFFSET (MonoVTable, vtable) + (slot * SIZEOF_VOID_P);
7736
7737                 /* Load the vtable slot, which contains a function descriptor. */
7738                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, slot_reg, vtable_reg, offset);
7739
7740                 NEW_BBLOCK (cfg, non_null_bb);
7741
7742                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, slot_reg, 0);
7743                 cfg->cbb->last_ins->flags |= MONO_INST_LIKELY;
7744                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBNE_UN, non_null_bb);
7745
7746                 /* Slow path */
7747                 // FIXME: Make the wrapper use the preserveall cconv
7748                 // FIXME: Use one icall per slot for small slot numbers ?
7749                 icall_args [0] = vtable_ins;
7750                 EMIT_NEW_ICONST (cfg, icall_args [1], slot);
7751                 /* Make the icall return the vtable slot value to save some code space */
7752                 ins = mono_emit_jit_icall (cfg, mono_init_vtable_slot, icall_args);
7753                 ins->dreg = slot_reg;
7754                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, non_null_bb);
7755
7756                 /* Fastpath */
7757                 MONO_START_BB (cfg, non_null_bb);
7758                 /* Load the address + arg from the vtable slot */
7759                 EMIT_NEW_LOAD_MEMBASE (cfg, call_target, OP_LOAD_MEMBASE, addr_reg, slot_reg, 0);
7760                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, arg_reg, slot_reg, SIZEOF_VOID_P);
7761
7762                 return emit_extra_arg_calli (cfg, fsig, sp, arg_reg, call_target);
7763         }
7764
7765         if (!fsig->generic_param_count && is_iface && !variant_iface && !is_gsharedvt) {
7766                 /*
7767                  * A simple interface call
7768                  *
7769                  * We make a call through an imt slot to obtain the function descriptor we need to call.
7770                  * The imt slot contains a function descriptor for a runtime function + arg.
7771                  */
7772                 int slot_reg = alloc_preg (cfg);
7773                 int addr_reg = alloc_preg (cfg);
7774                 int arg_reg = alloc_preg (cfg);
7775                 MonoInst *thunk_addr_ins, *thunk_arg_ins, *ftndesc_ins;
7776
7777                 vtable_reg = alloc_preg (cfg);
7778                 EMIT_NEW_LOAD_MEMBASE (cfg, vtable_ins, OP_LOAD_MEMBASE, vtable_reg, this_reg, MONO_STRUCT_OFFSET (MonoObject, vtable));
7779                 offset = ((gint32)slot - MONO_IMT_SIZE) * SIZEOF_VOID_P;
7780
7781                 /*
7782                  * The slot is already initialized when the vtable is created so there is no need
7783                  * to check it here.
7784                  */
7785
7786                 /* Load the imt slot, which contains a function descriptor. */
7787                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, slot_reg, vtable_reg, offset);
7788
7789                 /* Load the address + arg of the imt thunk from the imt slot */
7790                 EMIT_NEW_LOAD_MEMBASE (cfg, thunk_addr_ins, OP_LOAD_MEMBASE, addr_reg, slot_reg, 0);
7791                 EMIT_NEW_LOAD_MEMBASE (cfg, thunk_arg_ins, OP_LOAD_MEMBASE, arg_reg, slot_reg, SIZEOF_VOID_P);
7792                 /*
7793                  * IMT thunks in llvm-only mode are C functions which take an info argument
7794                  * plus the imt method and return the ftndesc to call.
7795                  */
7796                 icall_args [0] = thunk_arg_ins;
7797                 icall_args [1] = emit_get_rgctx_method (cfg, context_used,
7798                                                                                                 cmethod, MONO_RGCTX_INFO_METHOD);
7799                 ftndesc_ins = mono_emit_calli (cfg, helper_sig_llvmonly_imt_thunk, icall_args, thunk_addr_ins, NULL, NULL);
7800
7801                 return emit_llvmonly_calli (cfg, fsig, sp, ftndesc_ins);
7802         }
7803
7804         if ((fsig->generic_param_count || variant_iface) && !is_gsharedvt) {
7805                 /*
7806                  * This is similar to the interface case, the vtable slot points to an imt thunk which is
7807                  * dynamically extended as more instantiations are discovered.
7808                  * This handles generic virtual methods both on classes and interfaces.
7809                  */
7810                 int slot_reg = alloc_preg (cfg);
7811                 int addr_reg = alloc_preg (cfg);
7812                 int arg_reg = alloc_preg (cfg);
7813                 int ftndesc_reg = alloc_preg (cfg);
7814                 MonoInst *thunk_addr_ins, *thunk_arg_ins, *ftndesc_ins;
7815                 MonoBasicBlock *slowpath_bb, *end_bb;
7816
7817                 NEW_BBLOCK (cfg, slowpath_bb);
7818                 NEW_BBLOCK (cfg, end_bb);
7819
7820                 vtable_reg = alloc_preg (cfg);
7821                 EMIT_NEW_LOAD_MEMBASE (cfg, vtable_ins, OP_LOAD_MEMBASE, vtable_reg, this_reg, MONO_STRUCT_OFFSET (MonoObject, vtable));
7822                 if (is_iface)
7823                         offset = ((gint32)slot - MONO_IMT_SIZE) * SIZEOF_VOID_P;
7824                 else
7825                         offset = MONO_STRUCT_OFFSET (MonoVTable, vtable) + (slot * SIZEOF_VOID_P);
7826
7827                 /* Load the slot, which contains a function descriptor. */
7828                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, slot_reg, vtable_reg, offset);
7829
7830                 /* These slots are not initialized, so fall back to the slow path until they are initialized */
7831                 /* That happens when mono_method_add_generic_virtual_invocation () creates an IMT thunk */
7832                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, slot_reg, 0);
7833                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBEQ, slowpath_bb);
7834
7835                 /* Fastpath */
7836                 /* Same as with iface calls */
7837                 EMIT_NEW_LOAD_MEMBASE (cfg, thunk_addr_ins, OP_LOAD_MEMBASE, addr_reg, slot_reg, 0);
7838                 EMIT_NEW_LOAD_MEMBASE (cfg, thunk_arg_ins, OP_LOAD_MEMBASE, arg_reg, slot_reg, SIZEOF_VOID_P);
7839                 icall_args [0] = thunk_arg_ins;
7840                 icall_args [1] = emit_get_rgctx_method (cfg, context_used,
7841                                                                                                 cmethod, MONO_RGCTX_INFO_METHOD);
7842                 ftndesc_ins = mono_emit_calli (cfg, helper_sig_llvmonly_imt_thunk, icall_args, thunk_addr_ins, NULL, NULL);
7843                 ftndesc_ins->dreg = ftndesc_reg;
7844                 /*
7845                  * Unlike normal iface calls, these imt thunks can return NULL, i.e. when they are passed an instantiation
7846                  * they don't know about yet. Fall back to the slowpath in that case.
7847                  */
7848                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, ftndesc_reg, 0);
7849                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBEQ, slowpath_bb);
7850
7851                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
7852
7853                 /* Slowpath */
7854                 MONO_START_BB (cfg, slowpath_bb);
7855                 icall_args [0] = vtable_ins;
7856                 EMIT_NEW_ICONST (cfg, icall_args [1], slot);
7857                 icall_args [2] = emit_get_rgctx_method (cfg, context_used,
7858                                                                                                 cmethod, MONO_RGCTX_INFO_METHOD);
7859                 if (is_iface)
7860                         ftndesc_ins = mono_emit_jit_icall (cfg, mono_resolve_generic_virtual_iface_call, icall_args);
7861                 else
7862                         ftndesc_ins = mono_emit_jit_icall (cfg, mono_resolve_generic_virtual_call, icall_args);
7863                 ftndesc_ins->dreg = ftndesc_reg;
7864                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
7865
7866                 /* Common case */
7867                 MONO_START_BB (cfg, end_bb);
7868                 return emit_llvmonly_calli (cfg, fsig, sp, ftndesc_ins);
7869         }
7870
7871         /*
7872          * Non-optimized cases
7873          */
7874         icall_args [0] = sp [0];
7875         EMIT_NEW_ICONST (cfg, icall_args [1], slot);
7876
7877         icall_args [2] = emit_get_rgctx_method (cfg, context_used,
7878                                                                                         cmethod, MONO_RGCTX_INFO_METHOD);
7879
7880         arg_reg = alloc_preg (cfg);
7881         MONO_EMIT_NEW_PCONST (cfg, arg_reg, NULL);
7882         EMIT_NEW_VARLOADA_VREG (cfg, icall_args [3], arg_reg, &mono_defaults.int_class->byval_arg);
7883
7884         g_assert (is_gsharedvt);
7885         if (is_iface)
7886                 call_target = mono_emit_jit_icall (cfg, mono_resolve_iface_call_gsharedvt, icall_args);
7887         else
7888                 call_target = mono_emit_jit_icall (cfg, mono_resolve_vcall_gsharedvt, icall_args);
7889
7890         /*
7891          * Pass the extra argument even if the callee doesn't receive it, most
7892          * calling conventions allow this.
7893          */
7894         return emit_extra_arg_calli (cfg, fsig, sp, arg_reg, call_target);
7895 }
7896
7897 static gboolean
7898 is_exception_class (MonoClass *klass)
7899 {
7900         while (klass) {
7901                 if (klass == mono_defaults.exception_class)
7902                         return TRUE;
7903                 klass = klass->parent;
7904         }
7905         return FALSE;
7906 }
7907
7908 /*
7909  * is_jit_optimizer_disabled:
7910  *
7911  *   Determine whenever M's assembly has a DebuggableAttribute with the
7912  * IsJITOptimizerDisabled flag set.
7913  */
7914 static gboolean
7915 is_jit_optimizer_disabled (MonoMethod *m)
7916 {
7917         MonoError error;
7918         MonoAssembly *ass = m->klass->image->assembly;
7919         MonoCustomAttrInfo* attrs;
7920         MonoClass *klass;
7921         int i;
7922         gboolean val = FALSE;
7923
7924         g_assert (ass);
7925         if (ass->jit_optimizer_disabled_inited)
7926                 return ass->jit_optimizer_disabled;
7927
7928         klass = mono_class_try_get_debuggable_attribute_class ();
7929
7930         if (!klass) {
7931                 /* Linked away */
7932                 ass->jit_optimizer_disabled = FALSE;
7933                 mono_memory_barrier ();
7934                 ass->jit_optimizer_disabled_inited = TRUE;
7935                 return FALSE;
7936         }
7937
7938         attrs = mono_custom_attrs_from_assembly_checked (ass, &error);
7939         mono_error_cleanup (&error); /* FIXME don't swallow the error */
7940         if (attrs) {
7941                 for (i = 0; i < attrs->num_attrs; ++i) {
7942                         MonoCustomAttrEntry *attr = &attrs->attrs [i];
7943                         const gchar *p;
7944                         MonoMethodSignature *sig;
7945
7946                         if (!attr->ctor || attr->ctor->klass != klass)
7947                                 continue;
7948                         /* Decode the attribute. See reflection.c */
7949                         p = (const char*)attr->data;
7950                         g_assert (read16 (p) == 0x0001);
7951                         p += 2;
7952
7953                         // FIXME: Support named parameters
7954                         sig = mono_method_signature (attr->ctor);
7955                         if (sig->param_count != 2 || sig->params [0]->type != MONO_TYPE_BOOLEAN || sig->params [1]->type != MONO_TYPE_BOOLEAN)
7956                                 continue;
7957                         /* Two boolean arguments */
7958                         p ++;
7959                         val = *p;
7960                 }
7961                 mono_custom_attrs_free (attrs);
7962         }
7963
7964         ass->jit_optimizer_disabled = val;
7965         mono_memory_barrier ();
7966         ass->jit_optimizer_disabled_inited = TRUE;
7967
7968         return val;
7969 }
7970
7971 static gboolean
7972 is_supported_tail_call (MonoCompile *cfg, MonoMethod *method, MonoMethod *cmethod, MonoMethodSignature *fsig, int call_opcode)
7973 {
7974         gboolean supported_tail_call;
7975         int i;
7976
7977         supported_tail_call = mono_arch_tail_call_supported (cfg, mono_method_signature (method), mono_method_signature (cmethod));
7978
7979         for (i = 0; i < fsig->param_count; ++i) {
7980                 if (fsig->params [i]->byref || fsig->params [i]->type == MONO_TYPE_PTR || fsig->params [i]->type == MONO_TYPE_FNPTR)
7981                         /* These can point to the current method's stack */
7982                         supported_tail_call = FALSE;
7983         }
7984         if (fsig->hasthis && cmethod->klass->valuetype)
7985                 /* this might point to the current method's stack */
7986                 supported_tail_call = FALSE;
7987         if (cmethod->flags & METHOD_ATTRIBUTE_PINVOKE_IMPL)
7988                 supported_tail_call = FALSE;
7989         if (cfg->method->save_lmf)
7990                 supported_tail_call = FALSE;
7991         if (cmethod->wrapper_type && cmethod->wrapper_type != MONO_WRAPPER_DYNAMIC_METHOD)
7992                 supported_tail_call = FALSE;
7993         if (call_opcode != CEE_CALL)
7994                 supported_tail_call = FALSE;
7995
7996         /* Debugging support */
7997 #if 0
7998         if (supported_tail_call) {
7999                 if (!mono_debug_count ())
8000                         supported_tail_call = FALSE;
8001         }
8002 #endif
8003
8004         return supported_tail_call;
8005 }
8006
8007 /*
8008  * handle_ctor_call:
8009  *
8010  *   Handle calls made to ctors from NEWOBJ opcodes.
8011  */
8012 static void
8013 handle_ctor_call (MonoCompile *cfg, MonoMethod *cmethod, MonoMethodSignature *fsig, int context_used,
8014                                   MonoInst **sp, guint8 *ip, int *inline_costs)
8015 {
8016         MonoInst *vtable_arg = NULL, *callvirt_this_arg = NULL, *ins;
8017
8018         if (cmethod->klass->valuetype && mono_class_generic_sharing_enabled (cmethod->klass) &&
8019                                         mono_method_is_generic_sharable (cmethod, TRUE)) {
8020                 if (cmethod->is_inflated && mono_method_get_context (cmethod)->method_inst) {
8021                         mono_class_vtable (cfg->domain, cmethod->klass);
8022                         CHECK_TYPELOAD (cmethod->klass);
8023
8024                         vtable_arg = emit_get_rgctx_method (cfg, context_used,
8025                                                                                                 cmethod, MONO_RGCTX_INFO_METHOD_RGCTX);
8026                 } else {
8027                         if (context_used) {
8028                                 vtable_arg = emit_get_rgctx_klass (cfg, context_used,
8029                                                                                                    cmethod->klass, MONO_RGCTX_INFO_VTABLE);
8030                         } else {
8031                                 MonoVTable *vtable = mono_class_vtable (cfg->domain, cmethod->klass);
8032
8033                                 CHECK_TYPELOAD (cmethod->klass);
8034                                 EMIT_NEW_VTABLECONST (cfg, vtable_arg, vtable);
8035                         }
8036                 }
8037         }
8038
8039         /* Avoid virtual calls to ctors if possible */
8040         if (mono_class_is_marshalbyref (cmethod->klass))
8041                 callvirt_this_arg = sp [0];
8042
8043         if (cmethod && (cfg->opt & MONO_OPT_INTRINS) && (ins = mini_emit_inst_for_ctor (cfg, cmethod, fsig, sp))) {
8044                 g_assert (MONO_TYPE_IS_VOID (fsig->ret));
8045                 CHECK_CFG_EXCEPTION;
8046         } else if ((cfg->opt & MONO_OPT_INLINE) && cmethod && !context_used && !vtable_arg &&
8047                            mono_method_check_inlining (cfg, cmethod) &&
8048                            !mono_class_is_subclass_of (cmethod->klass, mono_defaults.exception_class, FALSE)) {
8049                 int costs;
8050
8051                 if ((costs = inline_method (cfg, cmethod, fsig, sp, ip, cfg->real_offset, FALSE))) {
8052                         cfg->real_offset += 5;
8053
8054                         *inline_costs += costs - 5;
8055                 } else {
8056                         INLINE_FAILURE ("inline failure");
8057                         // FIXME-VT: Clean this up
8058                         if (cfg->gsharedvt && mini_is_gsharedvt_signature (fsig))
8059                                 GSHAREDVT_FAILURE(*ip);
8060                         mono_emit_method_call_full (cfg, cmethod, fsig, FALSE, sp, callvirt_this_arg, NULL, NULL);
8061                 }
8062         } else if (cfg->gsharedvt && mini_is_gsharedvt_signature (fsig)) {
8063                 MonoInst *addr;
8064
8065                 addr = emit_get_rgctx_gsharedvt_call (cfg, context_used, fsig, cmethod, MONO_RGCTX_INFO_METHOD_GSHAREDVT_OUT_TRAMPOLINE);
8066
8067                 if (cfg->llvm_only) {
8068                         // FIXME: Avoid initializing vtable_arg
8069                         emit_llvmonly_calli (cfg, fsig, sp, addr);
8070                 } else {
8071                         mono_emit_calli (cfg, fsig, sp, addr, NULL, vtable_arg);
8072                 }
8073         } else if (context_used &&
8074                            ((!mono_method_is_generic_sharable_full (cmethod, TRUE, FALSE, FALSE) ||
8075                                  !mono_class_generic_sharing_enabled (cmethod->klass)) || cfg->gsharedvt)) {
8076                 MonoInst *cmethod_addr;
8077
8078                 /* Generic calls made out of gsharedvt methods cannot be patched, so use an indirect call */
8079
8080                 if (cfg->llvm_only) {
8081                         MonoInst *addr = emit_get_rgctx_method (cfg, context_used, cmethod,
8082                                                                                                         MONO_RGCTX_INFO_GENERIC_METHOD_CODE);
8083                         emit_llvmonly_calli (cfg, fsig, sp, addr);
8084                 } else {
8085                         cmethod_addr = emit_get_rgctx_method (cfg, context_used,
8086                                                                                                   cmethod, MONO_RGCTX_INFO_GENERIC_METHOD_CODE);
8087
8088                         mono_emit_calli (cfg, fsig, sp, cmethod_addr, NULL, vtable_arg);
8089                 }
8090         } else {
8091                 INLINE_FAILURE ("ctor call");
8092                 ins = mono_emit_method_call_full (cfg, cmethod, fsig, FALSE, sp,
8093                                                                                   callvirt_this_arg, NULL, vtable_arg);
8094         }
8095  exception_exit:
8096         return;
8097 }
8098
8099 static void
8100 emit_setret (MonoCompile *cfg, MonoInst *val)
8101 {
8102         MonoType *ret_type = mini_get_underlying_type (mono_method_signature (cfg->method)->ret);
8103         MonoInst *ins;
8104
8105         if (mini_type_to_stind (cfg, ret_type) == CEE_STOBJ) {
8106                 MonoInst *ret_addr;
8107
8108                 if (!cfg->vret_addr) {
8109                         EMIT_NEW_VARSTORE (cfg, ins, cfg->ret, ret_type, val);
8110                 } else {
8111                         EMIT_NEW_RETLOADA (cfg, ret_addr);
8112
8113                         EMIT_NEW_STORE_MEMBASE (cfg, ins, OP_STOREV_MEMBASE, ret_addr->dreg, 0, val->dreg);
8114                         ins->klass = mono_class_from_mono_type (ret_type);
8115                 }
8116         } else {
8117 #ifdef MONO_ARCH_SOFT_FLOAT_FALLBACK
8118                 if (COMPILE_SOFT_FLOAT (cfg) && !ret_type->byref && ret_type->type == MONO_TYPE_R4) {
8119                         MonoInst *iargs [1];
8120                         MonoInst *conv;
8121
8122                         iargs [0] = val;
8123                         conv = mono_emit_jit_icall (cfg, mono_fload_r4_arg, iargs);
8124                         mono_arch_emit_setret (cfg, cfg->method, conv);
8125                 } else {
8126                         mono_arch_emit_setret (cfg, cfg->method, val);
8127                 }
8128 #else
8129                 mono_arch_emit_setret (cfg, cfg->method, val);
8130 #endif
8131         }
8132 }
8133
8134 /*
8135  * mono_method_to_ir:
8136  *
8137  *   Translate the .net IL into linear IR.
8138  */
8139 int
8140 mono_method_to_ir (MonoCompile *cfg, MonoMethod *method, MonoBasicBlock *start_bblock, MonoBasicBlock *end_bblock, 
8141                    MonoInst *return_var, MonoInst **inline_args, 
8142                    guint inline_offset, gboolean is_virtual_call)
8143 {
8144         MonoError error;
8145         MonoInst *ins, **sp, **stack_start;
8146         MonoBasicBlock *tblock = NULL, *init_localsbb = NULL;
8147         MonoSimpleBasicBlock *bb = NULL, *original_bb = NULL;
8148         MonoMethod *cmethod, *method_definition;
8149         MonoInst **arg_array;
8150         MonoMethodHeader *header;
8151         MonoImage *image;
8152         guint32 token, ins_flag;
8153         MonoClass *klass;
8154         MonoClass *constrained_class = NULL;
8155         unsigned char *ip, *end, *target, *err_pos;
8156         MonoMethodSignature *sig;
8157         MonoGenericContext *generic_context = NULL;
8158         MonoGenericContainer *generic_container = NULL;
8159         MonoType **param_types;
8160         int i, n, start_new_bblock, dreg;
8161         int num_calls = 0, inline_costs = 0;
8162         int breakpoint_id = 0;
8163         guint num_args;
8164         GSList *class_inits = NULL;
8165         gboolean dont_verify, dont_verify_stloc, readonly = FALSE;
8166         int context_used;
8167         gboolean init_locals, seq_points, skip_dead_blocks;
8168         gboolean sym_seq_points = FALSE;
8169         MonoDebugMethodInfo *minfo;
8170         MonoBitSet *seq_point_locs = NULL;
8171         MonoBitSet *seq_point_set_locs = NULL;
8172
8173         cfg->disable_inline = is_jit_optimizer_disabled (method);
8174
8175         /* serialization and xdomain stuff may need access to private fields and methods */
8176         dont_verify = method->klass->image->assembly->corlib_internal? TRUE: FALSE;
8177         dont_verify |= method->wrapper_type == MONO_WRAPPER_XDOMAIN_INVOKE;
8178         dont_verify |= method->wrapper_type == MONO_WRAPPER_XDOMAIN_DISPATCH;
8179         dont_verify |= method->wrapper_type == MONO_WRAPPER_MANAGED_TO_NATIVE; /* bug #77896 */
8180         dont_verify |= method->wrapper_type == MONO_WRAPPER_COMINTEROP;
8181         dont_verify |= method->wrapper_type == MONO_WRAPPER_COMINTEROP_INVOKE;
8182
8183         /* still some type unsafety issues in marshal wrappers... (unknown is PtrToStructure) */
8184         dont_verify_stloc = method->wrapper_type == MONO_WRAPPER_MANAGED_TO_NATIVE;
8185         dont_verify_stloc |= method->wrapper_type == MONO_WRAPPER_UNKNOWN;
8186         dont_verify_stloc |= method->wrapper_type == MONO_WRAPPER_NATIVE_TO_MANAGED;
8187         dont_verify_stloc |= method->wrapper_type == MONO_WRAPPER_STELEMREF;
8188
8189         image = method->klass->image;
8190         header = mono_method_get_header_checked (method, &cfg->error);
8191         if (!header) {
8192                 mono_cfg_set_exception (cfg, MONO_EXCEPTION_MONO_ERROR);
8193                 goto exception_exit;
8194         } else {
8195                 cfg->headers_to_free = g_slist_prepend_mempool (cfg->mempool, cfg->headers_to_free, header);
8196         }
8197
8198         generic_container = mono_method_get_generic_container (method);
8199         sig = mono_method_signature (method);
8200         num_args = sig->hasthis + sig->param_count;
8201         ip = (unsigned char*)header->code;
8202         cfg->cil_start = ip;
8203         end = ip + header->code_size;
8204         cfg->stat_cil_code_size += header->code_size;
8205
8206         seq_points = cfg->gen_seq_points && cfg->method == method;
8207
8208         if (method->wrapper_type == MONO_WRAPPER_NATIVE_TO_MANAGED) {
8209                 /* We could hit a seq point before attaching to the JIT (#8338) */
8210                 seq_points = FALSE;
8211         }
8212
8213         if (cfg->gen_sdb_seq_points && cfg->method == method) {
8214                 minfo = mono_debug_lookup_method (method);
8215                 if (minfo) {
8216                         MonoSymSeqPoint *sps;
8217                         int i, n_il_offsets;
8218
8219                         mono_debug_get_seq_points (minfo, NULL, NULL, NULL, &sps, &n_il_offsets);
8220                         seq_point_locs = mono_bitset_mem_new (mono_mempool_alloc0 (cfg->mempool, mono_bitset_alloc_size (header->code_size, 0)), header->code_size, 0);
8221                         seq_point_set_locs = mono_bitset_mem_new (mono_mempool_alloc0 (cfg->mempool, mono_bitset_alloc_size (header->code_size, 0)), header->code_size, 0);
8222                         sym_seq_points = TRUE;
8223                         for (i = 0; i < n_il_offsets; ++i) {
8224                                 if (sps [i].il_offset < header->code_size)
8225                                         mono_bitset_set_fast (seq_point_locs, sps [i].il_offset);
8226                         }
8227                         g_free (sps);
8228                 } else if (!method->wrapper_type && !method->dynamic && mono_debug_image_has_debug_info (method->klass->image)) {
8229                         /* Methods without line number info like auto-generated property accessors */
8230                         seq_point_locs = mono_bitset_mem_new (mono_mempool_alloc0 (cfg->mempool, mono_bitset_alloc_size (header->code_size, 0)), header->code_size, 0);
8231                         seq_point_set_locs = mono_bitset_mem_new (mono_mempool_alloc0 (cfg->mempool, mono_bitset_alloc_size (header->code_size, 0)), header->code_size, 0);
8232                         sym_seq_points = TRUE;
8233                 }
8234         }
8235
8236         /* 
8237          * Methods without init_locals set could cause asserts in various passes
8238          * (#497220). To work around this, we emit dummy initialization opcodes
8239          * (OP_DUMMY_ICONST etc.) which generate no code. These are only supported
8240          * on some platforms.
8241          */
8242         if ((cfg->opt & MONO_OPT_UNSAFE) && cfg->backend->have_dummy_init)
8243                 init_locals = header->init_locals;
8244         else
8245                 init_locals = TRUE;
8246
8247         method_definition = method;
8248         while (method_definition->is_inflated) {
8249                 MonoMethodInflated *imethod = (MonoMethodInflated *) method_definition;
8250                 method_definition = imethod->declaring;
8251         }
8252
8253         /* SkipVerification is not allowed if core-clr is enabled */
8254         if (!dont_verify && mini_assembly_can_skip_verification (cfg->domain, method)) {
8255                 dont_verify = TRUE;
8256                 dont_verify_stloc = TRUE;
8257         }
8258
8259         if (sig->is_inflated)
8260                 generic_context = mono_method_get_context (method);
8261         else if (generic_container)
8262                 generic_context = &generic_container->context;
8263         cfg->generic_context = generic_context;
8264
8265         if (!cfg->gshared)
8266                 g_assert (!sig->has_type_parameters);
8267
8268         if (sig->generic_param_count && method->wrapper_type == MONO_WRAPPER_NONE) {
8269                 g_assert (method->is_inflated);
8270                 g_assert (mono_method_get_context (method)->method_inst);
8271         }
8272         if (method->is_inflated && mono_method_get_context (method)->method_inst)
8273                 g_assert (sig->generic_param_count);
8274
8275         if (cfg->method == method) {
8276                 cfg->real_offset = 0;
8277         } else {
8278                 cfg->real_offset = inline_offset;
8279         }
8280
8281         cfg->cil_offset_to_bb = (MonoBasicBlock **)mono_mempool_alloc0 (cfg->mempool, sizeof (MonoBasicBlock*) * header->code_size);
8282         cfg->cil_offset_to_bb_len = header->code_size;
8283
8284         cfg->current_method = method;
8285
8286         if (cfg->verbose_level > 2)
8287                 printf ("method to IR %s\n", mono_method_full_name (method, TRUE));
8288
8289         param_types = (MonoType **)mono_mempool_alloc (cfg->mempool, sizeof (MonoType*) * num_args);
8290         if (sig->hasthis)
8291                 param_types [0] = method->klass->valuetype?&method->klass->this_arg:&method->klass->byval_arg;
8292         for (n = 0; n < sig->param_count; ++n)
8293                 param_types [n + sig->hasthis] = sig->params [n];
8294         cfg->arg_types = param_types;
8295
8296         cfg->dont_inline = g_list_prepend (cfg->dont_inline, method);
8297         if (cfg->method == method) {
8298
8299                 if (cfg->prof_options & MONO_PROFILE_INS_COVERAGE)
8300                         cfg->coverage_info = mono_profiler_coverage_alloc (cfg->method, header->code_size);
8301
8302                 /* ENTRY BLOCK */
8303                 NEW_BBLOCK (cfg, start_bblock);
8304                 cfg->bb_entry = start_bblock;
8305                 start_bblock->cil_code = NULL;
8306                 start_bblock->cil_length = 0;
8307
8308                 /* EXIT BLOCK */
8309                 NEW_BBLOCK (cfg, end_bblock);
8310                 cfg->bb_exit = end_bblock;
8311                 end_bblock->cil_code = NULL;
8312                 end_bblock->cil_length = 0;
8313                 end_bblock->flags |= BB_INDIRECT_JUMP_TARGET;
8314                 g_assert (cfg->num_bblocks == 2);
8315
8316                 arg_array = cfg->args;
8317
8318                 if (header->num_clauses) {
8319                         cfg->spvars = g_hash_table_new (NULL, NULL);
8320                         cfg->exvars = g_hash_table_new (NULL, NULL);
8321                 }
8322                 /* handle exception clauses */
8323                 for (i = 0; i < header->num_clauses; ++i) {
8324                         MonoBasicBlock *try_bb;
8325                         MonoExceptionClause *clause = &header->clauses [i];
8326                         GET_BBLOCK (cfg, try_bb, ip + clause->try_offset);
8327
8328                         try_bb->real_offset = clause->try_offset;
8329                         try_bb->try_start = TRUE;
8330                         try_bb->region = ((i + 1) << 8) | clause->flags;
8331                         GET_BBLOCK (cfg, tblock, ip + clause->handler_offset);
8332                         tblock->real_offset = clause->handler_offset;
8333                         tblock->flags |= BB_EXCEPTION_HANDLER;
8334
8335                         /*
8336                          * Linking the try block with the EH block hinders inlining as we won't be able to 
8337                          * merge the bblocks from inlining and produce an artificial hole for no good reason.
8338                          */
8339                         if (COMPILE_LLVM (cfg))
8340                                 link_bblock (cfg, try_bb, tblock);
8341
8342                         if (*(ip + clause->handler_offset) == CEE_POP)
8343                                 tblock->flags |= BB_EXCEPTION_DEAD_OBJ;
8344
8345                         if (clause->flags == MONO_EXCEPTION_CLAUSE_FINALLY ||
8346                             clause->flags == MONO_EXCEPTION_CLAUSE_FILTER ||
8347                             clause->flags == MONO_EXCEPTION_CLAUSE_FAULT) {
8348                                 MONO_INST_NEW (cfg, ins, OP_START_HANDLER);
8349                                 MONO_ADD_INS (tblock, ins);
8350
8351                                 if (seq_points && clause->flags != MONO_EXCEPTION_CLAUSE_FINALLY && clause->flags != MONO_EXCEPTION_CLAUSE_FILTER) {
8352                                         /* finally clauses already have a seq point */
8353                                         /* seq points for filter clauses are emitted below */
8354                                         NEW_SEQ_POINT (cfg, ins, clause->handler_offset, TRUE);
8355                                         MONO_ADD_INS (tblock, ins);
8356                                 }
8357
8358                                 /* todo: is a fault block unsafe to optimize? */
8359                                 if (clause->flags == MONO_EXCEPTION_CLAUSE_FAULT)
8360                                         tblock->flags |= BB_EXCEPTION_UNSAFE;
8361                         }
8362
8363                         /*printf ("clause try IL_%04x to IL_%04x handler %d at IL_%04x to IL_%04x\n", clause->try_offset, clause->try_offset + clause->try_len, clause->flags, clause->handler_offset, clause->handler_offset + clause->handler_len);
8364                           while (p < end) {
8365                           printf ("%s", mono_disasm_code_one (NULL, method, p, &p));
8366                           }*/
8367                         /* catch and filter blocks get the exception object on the stack */
8368                         if (clause->flags == MONO_EXCEPTION_CLAUSE_NONE ||
8369                             clause->flags == MONO_EXCEPTION_CLAUSE_FILTER) {
8370
8371                                 /* mostly like handle_stack_args (), but just sets the input args */
8372                                 /* printf ("handling clause at IL_%04x\n", clause->handler_offset); */
8373                                 tblock->in_scount = 1;
8374                                 tblock->in_stack = (MonoInst **)mono_mempool_alloc (cfg->mempool, sizeof (MonoInst*));
8375                                 tblock->in_stack [0] = mono_create_exvar_for_offset (cfg, clause->handler_offset);
8376
8377                                 cfg->cbb = tblock;
8378
8379 #ifdef MONO_CONTEXT_SET_LLVM_EXC_REG
8380                                 /* The EH code passes in the exception in a register to both JITted and LLVM compiled code */
8381                                 if (!cfg->compile_llvm) {
8382                                         MONO_INST_NEW (cfg, ins, OP_GET_EX_OBJ);
8383                                         ins->dreg = tblock->in_stack [0]->dreg;
8384                                         MONO_ADD_INS (tblock, ins);
8385                                 }
8386 #else
8387                                 MonoInst *dummy_use;
8388
8389                                 /* 
8390                                  * Add a dummy use for the exvar so its liveness info will be
8391                                  * correct.
8392                                  */
8393                                 EMIT_NEW_DUMMY_USE (cfg, dummy_use, tblock->in_stack [0]);
8394 #endif
8395
8396                                 if (seq_points && clause->flags == MONO_EXCEPTION_CLAUSE_FILTER) {
8397                                         NEW_SEQ_POINT (cfg, ins, clause->handler_offset, TRUE);
8398                                         MONO_ADD_INS (tblock, ins);
8399                                 }
8400                                 
8401                                 if (clause->flags == MONO_EXCEPTION_CLAUSE_FILTER) {
8402                                         GET_BBLOCK (cfg, tblock, ip + clause->data.filter_offset);
8403                                         tblock->flags |= BB_EXCEPTION_HANDLER;
8404                                         tblock->real_offset = clause->data.filter_offset;
8405                                         tblock->in_scount = 1;
8406                                         tblock->in_stack = (MonoInst **)mono_mempool_alloc (cfg->mempool, sizeof (MonoInst*));
8407                                         /* The filter block shares the exvar with the handler block */
8408                                         tblock->in_stack [0] = mono_create_exvar_for_offset (cfg, clause->handler_offset);
8409                                         MONO_INST_NEW (cfg, ins, OP_START_HANDLER);
8410                                         MONO_ADD_INS (tblock, ins);
8411                                 }
8412                         }
8413
8414                         if (clause->flags != MONO_EXCEPTION_CLAUSE_FILTER &&
8415                                         clause->data.catch_class &&
8416                                         cfg->gshared &&
8417                                         mono_class_check_context_used (clause->data.catch_class)) {
8418                                 /*
8419                                  * In shared generic code with catch
8420                                  * clauses containing type variables
8421                                  * the exception handling code has to
8422                                  * be able to get to the rgctx.
8423                                  * Therefore we have to make sure that
8424                                  * the vtable/mrgctx argument (for
8425                                  * static or generic methods) or the
8426                                  * "this" argument (for non-static
8427                                  * methods) are live.
8428                                  */
8429                                 if ((method->flags & METHOD_ATTRIBUTE_STATIC) ||
8430                                                 mini_method_get_context (method)->method_inst ||
8431                                                 method->klass->valuetype) {
8432                                         mono_get_vtable_var (cfg);
8433                                 } else {
8434                                         MonoInst *dummy_use;
8435
8436                                         EMIT_NEW_DUMMY_USE (cfg, dummy_use, arg_array [0]);
8437                                 }
8438                         }
8439                 }
8440         } else {
8441                 arg_array = (MonoInst **) alloca (sizeof (MonoInst *) * num_args);
8442                 cfg->cbb = start_bblock;
8443                 cfg->args = arg_array;
8444                 mono_save_args (cfg, sig, inline_args);
8445         }
8446
8447         /* FIRST CODE BLOCK */
8448         NEW_BBLOCK (cfg, tblock);
8449         tblock->cil_code = ip;
8450         cfg->cbb = tblock;
8451         cfg->ip = ip;
8452
8453         ADD_BBLOCK (cfg, tblock);
8454
8455         if (cfg->method == method) {
8456                 breakpoint_id = mono_debugger_method_has_breakpoint (method);
8457                 if (breakpoint_id) {
8458                         MONO_INST_NEW (cfg, ins, OP_BREAK);
8459                         MONO_ADD_INS (cfg->cbb, ins);
8460                 }
8461         }
8462
8463         /* we use a separate basic block for the initialization code */
8464         NEW_BBLOCK (cfg, init_localsbb);
8465         cfg->bb_init = init_localsbb;
8466         init_localsbb->real_offset = cfg->real_offset;
8467         start_bblock->next_bb = init_localsbb;
8468         init_localsbb->next_bb = cfg->cbb;
8469         link_bblock (cfg, start_bblock, init_localsbb);
8470         link_bblock (cfg, init_localsbb, cfg->cbb);
8471                 
8472         cfg->cbb = init_localsbb;
8473
8474         if (cfg->gsharedvt && cfg->method == method) {
8475                 MonoGSharedVtMethodInfo *info;
8476                 MonoInst *var, *locals_var;
8477                 int dreg;
8478
8479                 info = (MonoGSharedVtMethodInfo *)mono_mempool_alloc0 (cfg->mempool, sizeof (MonoGSharedVtMethodInfo));
8480                 info->method = cfg->method;
8481                 info->count_entries = 16;
8482                 info->entries = (MonoRuntimeGenericContextInfoTemplate *)mono_mempool_alloc0 (cfg->mempool, sizeof (MonoRuntimeGenericContextInfoTemplate) * info->count_entries);
8483                 cfg->gsharedvt_info = info;
8484
8485                 var = mono_compile_create_var (cfg, &mono_defaults.int_class->byval_arg, OP_LOCAL);
8486                 /* prevent it from being register allocated */
8487                 //var->flags |= MONO_INST_VOLATILE;
8488                 cfg->gsharedvt_info_var = var;
8489
8490                 ins = emit_get_rgctx_gsharedvt_method (cfg, mini_method_check_context_used (cfg, method), method, info);
8491                 MONO_EMIT_NEW_UNALU (cfg, OP_MOVE, var->dreg, ins->dreg);
8492
8493                 /* Allocate locals */
8494                 locals_var = mono_compile_create_var (cfg, &mono_defaults.int_class->byval_arg, OP_LOCAL);
8495                 /* prevent it from being register allocated */
8496                 //locals_var->flags |= MONO_INST_VOLATILE;
8497                 cfg->gsharedvt_locals_var = locals_var;
8498
8499                 dreg = alloc_ireg (cfg);
8500                 MONO_EMIT_NEW_LOAD_MEMBASE_OP (cfg, OP_LOADI4_MEMBASE, dreg, var->dreg, MONO_STRUCT_OFFSET (MonoGSharedVtMethodRuntimeInfo, locals_size));
8501
8502                 MONO_INST_NEW (cfg, ins, OP_LOCALLOC);
8503                 ins->dreg = locals_var->dreg;
8504                 ins->sreg1 = dreg;
8505                 MONO_ADD_INS (cfg->cbb, ins);
8506                 cfg->gsharedvt_locals_var_ins = ins;
8507                 
8508                 cfg->flags |= MONO_CFG_HAS_ALLOCA;
8509                 /*
8510                 if (init_locals)
8511                         ins->flags |= MONO_INST_INIT;
8512                 */
8513         }
8514
8515         if (mono_security_core_clr_enabled ()) {
8516                 /* check if this is native code, e.g. an icall or a p/invoke */
8517                 if (method->wrapper_type == MONO_WRAPPER_MANAGED_TO_NATIVE) {
8518                         MonoMethod *wrapped = mono_marshal_method_from_wrapper (method);
8519                         if (wrapped) {
8520                                 gboolean pinvk = (wrapped->flags & METHOD_ATTRIBUTE_PINVOKE_IMPL);
8521                                 gboolean icall = (wrapped->iflags & METHOD_IMPL_ATTRIBUTE_INTERNAL_CALL);
8522
8523                                 /* if this ia a native call then it can only be JITted from platform code */
8524                                 if ((icall || pinvk) && method->klass && method->klass->image) {
8525                                         if (!mono_security_core_clr_is_platform_image (method->klass->image)) {
8526                                                 MonoException *ex = icall ? mono_get_exception_security () : 
8527                                                         mono_get_exception_method_access ();
8528                                                 emit_throw_exception (cfg, ex);
8529                                         }
8530                                 }
8531                         }
8532                 }
8533         }
8534
8535         CHECK_CFG_EXCEPTION;
8536
8537         if (header->code_size == 0)
8538                 UNVERIFIED;
8539
8540         if (get_basic_blocks (cfg, header, cfg->real_offset, ip, end, &err_pos)) {
8541                 ip = err_pos;
8542                 UNVERIFIED;
8543         }
8544
8545         if (cfg->method == method)
8546                 mono_debug_init_method (cfg, cfg->cbb, breakpoint_id);
8547
8548         for (n = 0; n < header->num_locals; ++n) {
8549                 if (header->locals [n]->type == MONO_TYPE_VOID && !header->locals [n]->byref)
8550                         UNVERIFIED;
8551         }
8552         class_inits = NULL;
8553
8554         /* We force the vtable variable here for all shared methods
8555            for the possibility that they might show up in a stack
8556            trace where their exact instantiation is needed. */
8557         if (cfg->gshared && method == cfg->method) {
8558                 if ((method->flags & METHOD_ATTRIBUTE_STATIC) ||
8559                                 mini_method_get_context (method)->method_inst ||
8560                                 method->klass->valuetype) {
8561                         mono_get_vtable_var (cfg);
8562                 } else {
8563                         /* FIXME: Is there a better way to do this?
8564                            We need the variable live for the duration
8565                            of the whole method. */
8566                         cfg->args [0]->flags |= MONO_INST_VOLATILE;
8567                 }
8568         }
8569
8570         /* add a check for this != NULL to inlined methods */
8571         if (is_virtual_call) {
8572                 MonoInst *arg_ins;
8573
8574                 NEW_ARGLOAD (cfg, arg_ins, 0);
8575                 MONO_ADD_INS (cfg->cbb, arg_ins);
8576                 MONO_EMIT_NEW_CHECK_THIS (cfg, arg_ins->dreg);
8577         }
8578
8579         skip_dead_blocks = !dont_verify;
8580         if (skip_dead_blocks) {
8581                 original_bb = bb = mono_basic_block_split (method, &cfg->error, header);
8582                 CHECK_CFG_ERROR;
8583                 g_assert (bb);
8584         }
8585
8586         /* we use a spare stack slot in SWITCH and NEWOBJ and others */
8587         stack_start = sp = (MonoInst **)mono_mempool_alloc0 (cfg->mempool, sizeof (MonoInst*) * (header->max_stack + 1));
8588
8589         ins_flag = 0;
8590         start_new_bblock = 0;
8591         while (ip < end) {
8592                 if (cfg->method == method)
8593                         cfg->real_offset = ip - header->code;
8594                 else
8595                         cfg->real_offset = inline_offset;
8596                 cfg->ip = ip;
8597
8598                 context_used = 0;
8599
8600                 if (start_new_bblock) {
8601                         cfg->cbb->cil_length = ip - cfg->cbb->cil_code;
8602                         if (start_new_bblock == 2) {
8603                                 g_assert (ip == tblock->cil_code);
8604                         } else {
8605                                 GET_BBLOCK (cfg, tblock, ip);
8606                         }
8607                         cfg->cbb->next_bb = tblock;
8608                         cfg->cbb = tblock;
8609                         start_new_bblock = 0;
8610                         for (i = 0; i < cfg->cbb->in_scount; ++i) {
8611                                 if (cfg->verbose_level > 3)
8612                                         printf ("loading %d from temp %d\n", i, (int)cfg->cbb->in_stack [i]->inst_c0);
8613                                 EMIT_NEW_TEMPLOAD (cfg, ins, cfg->cbb->in_stack [i]->inst_c0);
8614                                 *sp++ = ins;
8615                         }
8616                         if (class_inits)
8617                                 g_slist_free (class_inits);
8618                         class_inits = NULL;
8619                 } else {
8620                         if ((tblock = cfg->cil_offset_to_bb [ip - cfg->cil_start]) && (tblock != cfg->cbb)) {
8621                                 link_bblock (cfg, cfg->cbb, tblock);
8622                                 if (sp != stack_start) {
8623                                         handle_stack_args (cfg, stack_start, sp - stack_start);
8624                                         sp = stack_start;
8625                                         CHECK_UNVERIFIABLE (cfg);
8626                                 }
8627                                 cfg->cbb->next_bb = tblock;
8628                                 cfg->cbb = tblock;
8629                                 for (i = 0; i < cfg->cbb->in_scount; ++i) {
8630                                         if (cfg->verbose_level > 3)
8631                                                 printf ("loading %d from temp %d\n", i, (int)cfg->cbb->in_stack [i]->inst_c0);
8632                                         EMIT_NEW_TEMPLOAD (cfg, ins, cfg->cbb->in_stack [i]->inst_c0);
8633                                         *sp++ = ins;
8634                                 }
8635                                 g_slist_free (class_inits);
8636                                 class_inits = NULL;
8637                         }
8638                 }
8639
8640                 if (skip_dead_blocks) {
8641                         int ip_offset = ip - header->code;
8642
8643                         if (ip_offset == bb->end)
8644                                 bb = bb->next;
8645
8646                         if (bb->dead) {
8647                                 int op_size = mono_opcode_size (ip, end);
8648                                 g_assert (op_size > 0); /*The BB formation pass must catch all bad ops*/
8649
8650                                 if (cfg->verbose_level > 3) printf ("SKIPPING DEAD OP at %x\n", ip_offset);
8651
8652                                 if (ip_offset + op_size == bb->end) {
8653                                         MONO_INST_NEW (cfg, ins, OP_NOP);
8654                                         MONO_ADD_INS (cfg->cbb, ins);
8655                                         start_new_bblock = 1;
8656                                 }
8657
8658                                 ip += op_size;
8659                                 continue;
8660                         }
8661                 }
8662                 /*
8663                  * Sequence points are points where the debugger can place a breakpoint.
8664                  * Currently, we generate these automatically at points where the IL
8665                  * stack is empty.
8666                  */
8667                 if (seq_points && ((!sym_seq_points && (sp == stack_start)) || (sym_seq_points && mono_bitset_test_fast (seq_point_locs, ip - header->code)))) {
8668                         /*
8669                          * Make methods interruptable at the beginning, and at the targets of
8670                          * backward branches.
8671                          * Also, do this at the start of every bblock in methods with clauses too,
8672                          * to be able to handle instructions with inprecise control flow like
8673                          * throw/endfinally.
8674                          * Backward branches are handled at the end of method-to-ir ().
8675                          */
8676                         gboolean intr_loc = ip == header->code || (!cfg->cbb->last_ins && cfg->header->num_clauses);
8677                         gboolean sym_seq_point = sym_seq_points && mono_bitset_test_fast (seq_point_locs, ip - header->code);
8678
8679                         /* Avoid sequence points on empty IL like .volatile */
8680                         // FIXME: Enable this
8681                         //if (!(cfg->cbb->last_ins && cfg->cbb->last_ins->opcode == OP_SEQ_POINT)) {
8682                         NEW_SEQ_POINT (cfg, ins, ip - header->code, intr_loc);
8683                         if ((sp != stack_start) && !sym_seq_point)
8684                                 ins->flags |= MONO_INST_NONEMPTY_STACK;
8685                         MONO_ADD_INS (cfg->cbb, ins);
8686
8687                         if (sym_seq_points)
8688                                 mono_bitset_set_fast (seq_point_set_locs, ip - header->code);
8689                 }
8690
8691                 cfg->cbb->real_offset = cfg->real_offset;
8692
8693                 if ((cfg->method == method) && cfg->coverage_info) {
8694                         guint32 cil_offset = ip - header->code;
8695                         cfg->coverage_info->data [cil_offset].cil_code = ip;
8696
8697                         /* TODO: Use an increment here */
8698 #if defined(TARGET_X86)
8699                         MONO_INST_NEW (cfg, ins, OP_STORE_MEM_IMM);
8700                         ins->inst_p0 = &(cfg->coverage_info->data [cil_offset].count);
8701                         ins->inst_imm = 1;
8702                         MONO_ADD_INS (cfg->cbb, ins);
8703 #else
8704                         EMIT_NEW_PCONST (cfg, ins, &(cfg->coverage_info->data [cil_offset].count));
8705                         MONO_EMIT_NEW_STORE_MEMBASE_IMM (cfg, OP_STORE_MEMBASE_IMM, ins->dreg, 0, 1);
8706 #endif
8707                 }
8708
8709                 if (cfg->verbose_level > 3)
8710                         printf ("converting (in B%d: stack: %d) %s", cfg->cbb->block_num, (int)(sp - stack_start), mono_disasm_code_one (NULL, method, ip, NULL));
8711
8712                 switch (*ip) {
8713                 case CEE_NOP:
8714                         if (seq_points && !sym_seq_points && sp != stack_start) {
8715                                 /*
8716                                  * The C# compiler uses these nops to notify the JIT that it should
8717                                  * insert seq points.
8718                                  */
8719                                 NEW_SEQ_POINT (cfg, ins, ip - header->code, FALSE);
8720                                 MONO_ADD_INS (cfg->cbb, ins);
8721                         }
8722                         if (cfg->keep_cil_nops)
8723                                 MONO_INST_NEW (cfg, ins, OP_HARD_NOP);
8724                         else
8725                                 MONO_INST_NEW (cfg, ins, OP_NOP);
8726                         ip++;
8727                         MONO_ADD_INS (cfg->cbb, ins);
8728                         break;
8729                 case CEE_BREAK:
8730                         if (should_insert_brekpoint (cfg->method)) {
8731                                 ins = mono_emit_jit_icall (cfg, mono_debugger_agent_user_break, NULL);
8732                         } else {
8733                                 MONO_INST_NEW (cfg, ins, OP_NOP);
8734                         }
8735                         ip++;
8736                         MONO_ADD_INS (cfg->cbb, ins);
8737                         break;
8738                 case CEE_LDARG_0:
8739                 case CEE_LDARG_1:
8740                 case CEE_LDARG_2:
8741                 case CEE_LDARG_3:
8742                         CHECK_STACK_OVF (1);
8743                         n = (*ip)-CEE_LDARG_0;
8744                         CHECK_ARG (n);
8745                         EMIT_NEW_ARGLOAD (cfg, ins, n);
8746                         ip++;
8747                         *sp++ = ins;
8748                         break;
8749                 case CEE_LDLOC_0:
8750                 case CEE_LDLOC_1:
8751                 case CEE_LDLOC_2:
8752                 case CEE_LDLOC_3:
8753                         CHECK_STACK_OVF (1);
8754                         n = (*ip)-CEE_LDLOC_0;
8755                         CHECK_LOCAL (n);
8756                         EMIT_NEW_LOCLOAD (cfg, ins, n);
8757                         ip++;
8758                         *sp++ = ins;
8759                         break;
8760                 case CEE_STLOC_0:
8761                 case CEE_STLOC_1:
8762                 case CEE_STLOC_2:
8763                 case CEE_STLOC_3: {
8764                         CHECK_STACK (1);
8765                         n = (*ip)-CEE_STLOC_0;
8766                         CHECK_LOCAL (n);
8767                         --sp;
8768                         if (!dont_verify_stloc && target_type_is_incompatible (cfg, header->locals [n], *sp))
8769                                 UNVERIFIED;
8770                         emit_stloc_ir (cfg, sp, header, n);
8771                         ++ip;
8772                         inline_costs += 1;
8773                         break;
8774                         }
8775                 case CEE_LDARG_S:
8776                         CHECK_OPSIZE (2);
8777                         CHECK_STACK_OVF (1);
8778                         n = ip [1];
8779                         CHECK_ARG (n);
8780                         EMIT_NEW_ARGLOAD (cfg, ins, n);
8781                         *sp++ = ins;
8782                         ip += 2;
8783                         break;
8784                 case CEE_LDARGA_S:
8785                         CHECK_OPSIZE (2);
8786                         CHECK_STACK_OVF (1);
8787                         n = ip [1];
8788                         CHECK_ARG (n);
8789                         NEW_ARGLOADA (cfg, ins, n);
8790                         MONO_ADD_INS (cfg->cbb, ins);
8791                         *sp++ = ins;
8792                         ip += 2;
8793                         break;
8794                 case CEE_STARG_S:
8795                         CHECK_OPSIZE (2);
8796                         CHECK_STACK (1);
8797                         --sp;
8798                         n = ip [1];
8799                         CHECK_ARG (n);
8800                         if (!dont_verify_stloc && target_type_is_incompatible (cfg, param_types [ip [1]], *sp))
8801                                 UNVERIFIED;
8802                         EMIT_NEW_ARGSTORE (cfg, ins, n, *sp);
8803                         ip += 2;
8804                         break;
8805                 case CEE_LDLOC_S:
8806                         CHECK_OPSIZE (2);
8807                         CHECK_STACK_OVF (1);
8808                         n = ip [1];
8809                         CHECK_LOCAL (n);
8810                         EMIT_NEW_LOCLOAD (cfg, ins, n);
8811                         *sp++ = ins;
8812                         ip += 2;
8813                         break;
8814                 case CEE_LDLOCA_S: {
8815                         unsigned char *tmp_ip;
8816                         CHECK_OPSIZE (2);
8817                         CHECK_STACK_OVF (1);
8818                         CHECK_LOCAL (ip [1]);
8819
8820                         if ((tmp_ip = emit_optimized_ldloca_ir (cfg, ip, end, 1))) {
8821                                 ip = tmp_ip;
8822                                 inline_costs += 1;
8823                                 break;
8824                         }
8825
8826                         EMIT_NEW_LOCLOADA (cfg, ins, ip [1]);
8827                         *sp++ = ins;
8828                         ip += 2;
8829                         break;
8830                 }
8831                 case CEE_STLOC_S:
8832                         CHECK_OPSIZE (2);
8833                         CHECK_STACK (1);
8834                         --sp;
8835                         CHECK_LOCAL (ip [1]);
8836                         if (!dont_verify_stloc && target_type_is_incompatible (cfg, header->locals [ip [1]], *sp))
8837                                 UNVERIFIED;
8838                         emit_stloc_ir (cfg, sp, header, ip [1]);
8839                         ip += 2;
8840                         inline_costs += 1;
8841                         break;
8842                 case CEE_LDNULL:
8843                         CHECK_STACK_OVF (1);
8844                         EMIT_NEW_PCONST (cfg, ins, NULL);
8845                         ins->type = STACK_OBJ;
8846                         ++ip;
8847                         *sp++ = ins;
8848                         break;
8849                 case CEE_LDC_I4_M1:
8850                         CHECK_STACK_OVF (1);
8851                         EMIT_NEW_ICONST (cfg, ins, -1);
8852                         ++ip;
8853                         *sp++ = ins;
8854                         break;
8855                 case CEE_LDC_I4_0:
8856                 case CEE_LDC_I4_1:
8857                 case CEE_LDC_I4_2:
8858                 case CEE_LDC_I4_3:
8859                 case CEE_LDC_I4_4:
8860                 case CEE_LDC_I4_5:
8861                 case CEE_LDC_I4_6:
8862                 case CEE_LDC_I4_7:
8863                 case CEE_LDC_I4_8:
8864                         CHECK_STACK_OVF (1);
8865                         EMIT_NEW_ICONST (cfg, ins, (*ip) - CEE_LDC_I4_0);
8866                         ++ip;
8867                         *sp++ = ins;
8868                         break;
8869                 case CEE_LDC_I4_S:
8870                         CHECK_OPSIZE (2);
8871                         CHECK_STACK_OVF (1);
8872                         ++ip;
8873                         EMIT_NEW_ICONST (cfg, ins, *((signed char*)ip));
8874                         ++ip;
8875                         *sp++ = ins;
8876                         break;
8877                 case CEE_LDC_I4:
8878                         CHECK_OPSIZE (5);
8879                         CHECK_STACK_OVF (1);
8880                         EMIT_NEW_ICONST (cfg, ins, (gint32)read32 (ip + 1));
8881                         ip += 5;
8882                         *sp++ = ins;
8883                         break;
8884                 case CEE_LDC_I8:
8885                         CHECK_OPSIZE (9);
8886                         CHECK_STACK_OVF (1);
8887                         MONO_INST_NEW (cfg, ins, OP_I8CONST);
8888                         ins->type = STACK_I8;
8889                         ins->dreg = alloc_dreg (cfg, STACK_I8);
8890                         ++ip;
8891                         ins->inst_l = (gint64)read64 (ip);
8892                         MONO_ADD_INS (cfg->cbb, ins);
8893                         ip += 8;
8894                         *sp++ = ins;
8895                         break;
8896                 case CEE_LDC_R4: {
8897                         float *f;
8898                         gboolean use_aotconst = FALSE;
8899
8900 #ifdef TARGET_POWERPC
8901                         /* FIXME: Clean this up */
8902                         if (cfg->compile_aot)
8903                                 use_aotconst = TRUE;
8904 #endif
8905
8906                         /* FIXME: we should really allocate this only late in the compilation process */
8907                         f = (float *)mono_domain_alloc (cfg->domain, sizeof (float));
8908                         CHECK_OPSIZE (5);
8909                         CHECK_STACK_OVF (1);
8910
8911                         if (use_aotconst) {
8912                                 MonoInst *cons;
8913                                 int dreg;
8914
8915                                 EMIT_NEW_AOTCONST (cfg, cons, MONO_PATCH_INFO_R4, f);
8916
8917                                 dreg = alloc_freg (cfg);
8918                                 EMIT_NEW_LOAD_MEMBASE (cfg, ins, OP_LOADR4_MEMBASE, dreg, cons->dreg, 0);
8919                                 ins->type = cfg->r4_stack_type;
8920                         } else {
8921                                 MONO_INST_NEW (cfg, ins, OP_R4CONST);
8922                                 ins->type = cfg->r4_stack_type;
8923                                 ins->dreg = alloc_dreg (cfg, STACK_R8);
8924                                 ins->inst_p0 = f;
8925                                 MONO_ADD_INS (cfg->cbb, ins);
8926                         }
8927                         ++ip;
8928                         readr4 (ip, f);
8929                         ip += 4;
8930                         *sp++ = ins;                    
8931                         break;
8932                 }
8933                 case CEE_LDC_R8: {
8934                         double *d;
8935                         gboolean use_aotconst = FALSE;
8936
8937 #ifdef TARGET_POWERPC
8938                         /* FIXME: Clean this up */
8939                         if (cfg->compile_aot)
8940                                 use_aotconst = TRUE;
8941 #endif
8942
8943                         /* FIXME: we should really allocate this only late in the compilation process */
8944                         d = (double *)mono_domain_alloc (cfg->domain, sizeof (double));
8945                         CHECK_OPSIZE (9);
8946                         CHECK_STACK_OVF (1);
8947
8948                         if (use_aotconst) {
8949                                 MonoInst *cons;
8950                                 int dreg;
8951
8952                                 EMIT_NEW_AOTCONST (cfg, cons, MONO_PATCH_INFO_R8, d);
8953
8954                                 dreg = alloc_freg (cfg);
8955                                 EMIT_NEW_LOAD_MEMBASE (cfg, ins, OP_LOADR8_MEMBASE, dreg, cons->dreg, 0);
8956                                 ins->type = STACK_R8;
8957                         } else {
8958                                 MONO_INST_NEW (cfg, ins, OP_R8CONST);
8959                                 ins->type = STACK_R8;
8960                                 ins->dreg = alloc_dreg (cfg, STACK_R8);
8961                                 ins->inst_p0 = d;
8962                                 MONO_ADD_INS (cfg->cbb, ins);
8963                         }
8964                         ++ip;
8965                         readr8 (ip, d);
8966                         ip += 8;
8967                         *sp++ = ins;
8968                         break;
8969                 }
8970                 case CEE_DUP: {
8971                         MonoInst *temp, *store;
8972                         CHECK_STACK (1);
8973                         CHECK_STACK_OVF (1);
8974                         sp--;
8975                         ins = *sp;
8976
8977                         temp = mono_compile_create_var (cfg, type_from_stack_type (ins), OP_LOCAL);
8978                         EMIT_NEW_TEMPSTORE (cfg, store, temp->inst_c0, ins);
8979
8980                         EMIT_NEW_TEMPLOAD (cfg, ins, temp->inst_c0);
8981                         *sp++ = ins;
8982
8983                         EMIT_NEW_TEMPLOAD (cfg, ins, temp->inst_c0);
8984                         *sp++ = ins;
8985
8986                         ++ip;
8987                         inline_costs += 2;
8988                         break;
8989                 }
8990                 case CEE_POP:
8991                         CHECK_STACK (1);
8992                         ip++;
8993                         --sp;
8994
8995 #ifdef TARGET_X86
8996                         if (sp [0]->type == STACK_R8)
8997                                 /* we need to pop the value from the x86 FP stack */
8998                                 MONO_EMIT_NEW_UNALU (cfg, OP_X86_FPOP, -1, sp [0]->dreg);
8999 #endif
9000                         break;
9001                 case CEE_JMP: {
9002                         MonoCallInst *call;
9003                         MonoMethodSignature *fsig;
9004                         int i, n;
9005
9006                         INLINE_FAILURE ("jmp");
9007                         GSHAREDVT_FAILURE (*ip);
9008
9009                         CHECK_OPSIZE (5);
9010                         if (stack_start != sp)
9011                                 UNVERIFIED;
9012                         token = read32 (ip + 1);
9013                         /* FIXME: check the signature matches */
9014                         cmethod = mini_get_method (cfg, method, token, NULL, generic_context);
9015                         CHECK_CFG_ERROR;
9016  
9017                         if (cfg->gshared && mono_method_check_context_used (cmethod))
9018                                 GENERIC_SHARING_FAILURE (CEE_JMP);
9019
9020                         emit_instrumentation_call (cfg, mono_profiler_method_leave);
9021
9022                         fsig = mono_method_signature (cmethod);
9023                         n = fsig->param_count + fsig->hasthis;
9024                         if (cfg->llvm_only) {
9025                                 MonoInst **args;
9026
9027                                 args = (MonoInst **)mono_mempool_alloc (cfg->mempool, sizeof (MonoInst*) * n);
9028                                 for (i = 0; i < n; ++i)
9029                                         EMIT_NEW_ARGLOAD (cfg, args [i], i);
9030                                 ins = mono_emit_method_call_full (cfg, cmethod, fsig, TRUE, args, NULL, NULL, NULL);
9031                                 /*
9032                                  * The code in mono-basic-block.c treats the rest of the code as dead, but we
9033                                  * have to emit a normal return since llvm expects it.
9034                                  */
9035                                 if (cfg->ret)
9036                                         emit_setret (cfg, ins);
9037                                 MONO_INST_NEW (cfg, ins, OP_BR);
9038                                 ins->inst_target_bb = end_bblock;
9039                                 MONO_ADD_INS (cfg->cbb, ins);
9040                                 link_bblock (cfg, cfg->cbb, end_bblock);
9041                                 ip += 5;
9042                                 break;
9043                         } else if (cfg->backend->have_op_tail_call) {
9044                                 /* Handle tail calls similarly to calls */
9045                                 DISABLE_AOT (cfg);
9046
9047                                 MONO_INST_NEW_CALL (cfg, call, OP_TAILCALL);
9048                                 call->method = cmethod;
9049                                 call->tail_call = TRUE;
9050                                 call->signature = mono_method_signature (cmethod);
9051                                 call->args = (MonoInst **)mono_mempool_alloc (cfg->mempool, sizeof (MonoInst*) * n);
9052                                 call->inst.inst_p0 = cmethod;
9053                                 for (i = 0; i < n; ++i)
9054                                         EMIT_NEW_ARGLOAD (cfg, call->args [i], i);
9055
9056                                 if (mini_type_is_vtype (mini_get_underlying_type (call->signature->ret)))
9057                                         call->vret_var = cfg->vret_addr;
9058
9059                                 mono_arch_emit_call (cfg, call);
9060                                 cfg->param_area = MAX(cfg->param_area, call->stack_usage);
9061                                 MONO_ADD_INS (cfg->cbb, (MonoInst*)call);
9062                         } else {
9063                                 for (i = 0; i < num_args; ++i)
9064                                         /* Prevent arguments from being optimized away */
9065                                         arg_array [i]->flags |= MONO_INST_VOLATILE;
9066
9067                                 MONO_INST_NEW_CALL (cfg, call, OP_JMP);
9068                                 ins = (MonoInst*)call;
9069                                 ins->inst_p0 = cmethod;
9070                                 MONO_ADD_INS (cfg->cbb, ins);
9071                         }
9072
9073                         ip += 5;
9074                         start_new_bblock = 1;
9075                         break;
9076                 }
9077                 case CEE_CALLI: {
9078                         MonoInst *addr;
9079                         MonoMethodSignature *fsig;
9080
9081                         CHECK_OPSIZE (5);
9082                         token = read32 (ip + 1);
9083
9084                         ins = NULL;
9085
9086                         //GSHAREDVT_FAILURE (*ip);
9087                         cmethod = NULL;
9088                         CHECK_STACK (1);
9089                         --sp;
9090                         addr = *sp;
9091                         fsig = mini_get_signature (method, token, generic_context, &cfg->error);
9092                         CHECK_CFG_ERROR;
9093
9094                         if (method->dynamic && fsig->pinvoke) {
9095                                 MonoInst *args [3];
9096
9097                                 /*
9098                                  * This is a call through a function pointer using a pinvoke
9099                                  * signature. Have to create a wrapper and call that instead.
9100                                  * FIXME: This is very slow, need to create a wrapper at JIT time
9101                                  * instead based on the signature.
9102                                  */
9103                                 EMIT_NEW_IMAGECONST (cfg, args [0], method->klass->image);
9104                                 EMIT_NEW_PCONST (cfg, args [1], fsig);
9105                                 args [2] = addr;
9106                                 addr = mono_emit_jit_icall (cfg, mono_get_native_calli_wrapper, args);
9107                         }
9108
9109                         n = fsig->param_count + fsig->hasthis;
9110
9111                         CHECK_STACK (n);
9112
9113                         //g_assert (!virtual_ || fsig->hasthis);
9114
9115                         sp -= n;
9116
9117                         inline_costs += 10 * num_calls++;
9118
9119                         /*
9120                          * Making generic calls out of gsharedvt methods.
9121                          * This needs to be used for all generic calls, not just ones with a gsharedvt signature, to avoid
9122                          * patching gshared method addresses into a gsharedvt method.
9123                          */
9124                         if (cfg->gsharedvt && mini_is_gsharedvt_signature (fsig)) {
9125                                 /*
9126                                  * We pass the address to the gsharedvt trampoline in the rgctx reg
9127                                  */
9128                                 MonoInst *callee = addr;
9129
9130                                 if (method->wrapper_type != MONO_WRAPPER_DELEGATE_INVOKE)
9131                                         /* Not tested */
9132                                         GSHAREDVT_FAILURE (*ip);
9133
9134                                 if (cfg->llvm_only)
9135                                         // FIXME:
9136                                         GSHAREDVT_FAILURE (*ip);
9137
9138                                 addr = emit_get_rgctx_sig (cfg, context_used,
9139                                                                                           fsig, MONO_RGCTX_INFO_SIG_GSHAREDVT_OUT_TRAMPOLINE_CALLI);
9140                                 ins = (MonoInst*)mono_emit_calli (cfg, fsig, sp, addr, NULL, callee);
9141                                 goto calli_end;
9142                         }
9143
9144                         /* Prevent inlining of methods with indirect calls */
9145                         INLINE_FAILURE ("indirect call");
9146
9147                         if (addr->opcode == OP_PCONST || addr->opcode == OP_AOTCONST || addr->opcode == OP_GOT_ENTRY) {
9148                                 MonoJumpInfoType info_type;
9149                                 gpointer info_data;
9150
9151                                 /*
9152                                  * Instead of emitting an indirect call, emit a direct call
9153                                  * with the contents of the aotconst as the patch info.
9154                                  */
9155                                 if (addr->opcode == OP_PCONST || addr->opcode == OP_AOTCONST) {
9156                                         info_type = (MonoJumpInfoType)addr->inst_c1;
9157                                         info_data = addr->inst_p0;
9158                                 } else {
9159                                         info_type = (MonoJumpInfoType)addr->inst_right->inst_c1;
9160                                         info_data = addr->inst_right->inst_left;
9161                                 }
9162
9163                                 if (info_type == MONO_PATCH_INFO_ICALL_ADDR) {
9164                                         ins = (MonoInst*)mono_emit_abs_call (cfg, MONO_PATCH_INFO_ICALL_ADDR_CALL, info_data, fsig, sp);
9165                                         NULLIFY_INS (addr);
9166                                         goto calli_end;
9167                                 } else if (info_type == MONO_PATCH_INFO_JIT_ICALL_ADDR) {
9168                                         ins = (MonoInst*)mono_emit_abs_call (cfg, info_type, info_data, fsig, sp);
9169                                         NULLIFY_INS (addr);
9170                                         goto calli_end;
9171                                 }
9172                         }
9173                         ins = (MonoInst*)mono_emit_calli (cfg, fsig, sp, addr, NULL, NULL);
9174
9175                         calli_end:
9176
9177                         /* End of call, INS should contain the result of the call, if any */
9178
9179                         if (!MONO_TYPE_IS_VOID (fsig->ret)) {
9180                                 g_assert (ins);
9181                                 *sp++ = mono_emit_widen_call_res (cfg, ins, fsig);
9182                         }
9183
9184                         CHECK_CFG_EXCEPTION;
9185
9186                         ip += 5;
9187                         ins_flag = 0;
9188                         constrained_class = NULL;
9189                         break;
9190                 }
9191                 case CEE_CALL:
9192                 case CEE_CALLVIRT: {
9193                         MonoInst *addr = NULL;
9194                         MonoMethodSignature *fsig = NULL;
9195                         int array_rank = 0;
9196                         int virtual_ = *ip == CEE_CALLVIRT;
9197                         gboolean pass_imt_from_rgctx = FALSE;
9198                         MonoInst *imt_arg = NULL;
9199                         MonoInst *keep_this_alive = NULL;
9200                         gboolean pass_vtable = FALSE;
9201                         gboolean pass_mrgctx = FALSE;
9202                         MonoInst *vtable_arg = NULL;
9203                         gboolean check_this = FALSE;
9204                         gboolean supported_tail_call = FALSE;
9205                         gboolean tail_call = FALSE;
9206                         gboolean need_seq_point = FALSE;
9207                         guint32 call_opcode = *ip;
9208                         gboolean emit_widen = TRUE;
9209                         gboolean push_res = TRUE;
9210                         gboolean skip_ret = FALSE;
9211                         gboolean delegate_invoke = FALSE;
9212                         gboolean direct_icall = FALSE;
9213                         gboolean constrained_partial_call = FALSE;
9214                         MonoMethod *cil_method;
9215
9216                         CHECK_OPSIZE (5);
9217                         token = read32 (ip + 1);
9218
9219                         ins = NULL;
9220
9221                         cmethod = mini_get_method (cfg, method, token, NULL, generic_context);
9222                         CHECK_CFG_ERROR;
9223
9224                         cil_method = cmethod;
9225                                 
9226                         if (constrained_class) {
9227                                 if ((constrained_class->byval_arg.type == MONO_TYPE_VAR || constrained_class->byval_arg.type == MONO_TYPE_MVAR) && cfg->gshared) {
9228                                         if (!mini_is_gsharedvt_klass (constrained_class)) {
9229                                                 g_assert (!cmethod->klass->valuetype);
9230                                                 if (!mini_type_is_reference (&constrained_class->byval_arg))
9231                                                         constrained_partial_call = TRUE;
9232                                         }
9233                                 }
9234
9235                                 if (method->wrapper_type != MONO_WRAPPER_NONE) {
9236                                         if (cfg->verbose_level > 2)
9237                                                 printf ("DM Constrained call to %s\n", mono_type_get_full_name (constrained_class));
9238                                         if (!((constrained_class->byval_arg.type == MONO_TYPE_VAR ||
9239                                                    constrained_class->byval_arg.type == MONO_TYPE_MVAR) &&
9240                                                   cfg->gshared)) {
9241                                                 cmethod = mono_get_method_constrained_with_method (image, cil_method, constrained_class, generic_context, &cfg->error);
9242                                                 CHECK_CFG_ERROR;
9243                                         }
9244                                 } else {
9245                                         if (cfg->verbose_level > 2)
9246                                                 printf ("Constrained call to %s\n", mono_type_get_full_name (constrained_class));
9247
9248                                         if ((constrained_class->byval_arg.type == MONO_TYPE_VAR || constrained_class->byval_arg.type == MONO_TYPE_MVAR) && cfg->gshared) {
9249                                                 /* 
9250                                                  * This is needed since get_method_constrained can't find 
9251                                                  * the method in klass representing a type var.
9252                                                  * The type var is guaranteed to be a reference type in this
9253                                                  * case.
9254                                                  */
9255                                                 if (!mini_is_gsharedvt_klass (constrained_class))
9256                                                         g_assert (!cmethod->klass->valuetype);
9257                                         } else {
9258                                                 cmethod = mono_get_method_constrained_checked (image, token, constrained_class, generic_context, &cil_method, &cfg->error);
9259                                                 CHECK_CFG_ERROR;
9260                                         }
9261                                 }
9262                         }
9263                                         
9264                         if (!dont_verify && !cfg->skip_visibility) {
9265                                 MonoMethod *target_method = cil_method;
9266                                 if (method->is_inflated) {
9267                                         target_method = mini_get_method_allow_open (method, token, NULL, &(mono_method_get_generic_container (method_definition)->context), &cfg->error);
9268                                         CHECK_CFG_ERROR;
9269                                 }
9270                                 if (!mono_method_can_access_method (method_definition, target_method) &&
9271                                         !mono_method_can_access_method (method, cil_method))
9272                                         emit_method_access_failure (cfg, method, cil_method);
9273                         }
9274
9275                         if (mono_security_core_clr_enabled ())
9276                                 ensure_method_is_allowed_to_call_method (cfg, method, cil_method);
9277
9278                         if (!virtual_ && (cmethod->flags & METHOD_ATTRIBUTE_ABSTRACT))
9279                                 /* MS.NET seems to silently convert this to a callvirt */
9280                                 virtual_ = 1;
9281
9282                         {
9283                                 /*
9284                                  * MS.NET accepts non virtual calls to virtual final methods of transparent proxy classes and
9285                                  * converts to a callvirt.
9286                                  *
9287                                  * tests/bug-515884.il is an example of this behavior
9288                                  */
9289                                 const int test_flags = METHOD_ATTRIBUTE_VIRTUAL | METHOD_ATTRIBUTE_FINAL | METHOD_ATTRIBUTE_STATIC;
9290                                 const int expected_flags = METHOD_ATTRIBUTE_VIRTUAL | METHOD_ATTRIBUTE_FINAL;
9291                                 if (!virtual_ && mono_class_is_marshalbyref (cmethod->klass) && (cmethod->flags & test_flags) == expected_flags && cfg->method->wrapper_type == MONO_WRAPPER_NONE)
9292                                         virtual_ = 1;
9293                         }
9294
9295                         if (!cmethod->klass->inited)
9296                                 if (!mono_class_init (cmethod->klass))
9297                                         TYPE_LOAD_ERROR (cmethod->klass);
9298
9299                         fsig = mono_method_signature (cmethod);
9300                         if (!fsig)
9301                                 LOAD_ERROR;
9302                         if (cmethod->iflags & METHOD_IMPL_ATTRIBUTE_INTERNAL_CALL &&
9303                                 mini_class_is_system_array (cmethod->klass)) {
9304                                 array_rank = cmethod->klass->rank;
9305                         } else if ((cmethod->iflags & METHOD_IMPL_ATTRIBUTE_INTERNAL_CALL) && icall_is_direct_callable (cfg, cmethod)) {
9306                                 direct_icall = TRUE;
9307                         } else if (fsig->pinvoke) {
9308                                 MonoMethod *wrapper = mono_marshal_get_native_wrapper (cmethod, TRUE, cfg->compile_aot);
9309                                 fsig = mono_method_signature (wrapper);
9310                         } else if (constrained_class) {
9311                         } else {
9312                                 fsig = mono_method_get_signature_checked (cmethod, image, token, generic_context, &cfg->error);
9313                                 CHECK_CFG_ERROR;
9314                         }
9315
9316                         if (cfg->llvm_only && !cfg->method->wrapper_type && (!cmethod || cmethod->is_inflated))
9317                                 cfg->signatures = g_slist_prepend_mempool (cfg->mempool, cfg->signatures, fsig);
9318
9319                         /* See code below */
9320                         if (cmethod->klass == mono_defaults.monitor_class && !strcmp (cmethod->name, "Enter") && mono_method_signature (cmethod)->param_count == 1) {
9321                                 MonoBasicBlock *tbb;
9322
9323                                 GET_BBLOCK (cfg, tbb, ip + 5);
9324                                 if (tbb->try_start && MONO_REGION_FLAGS(tbb->region) == MONO_EXCEPTION_CLAUSE_FINALLY) {
9325                                         /*
9326                                          * We want to extend the try block to cover the call, but we can't do it if the
9327                                          * call is made directly since its followed by an exception check.
9328                                          */
9329                                         direct_icall = FALSE;
9330                                 }
9331                         }
9332
9333                         mono_save_token_info (cfg, image, token, cil_method);
9334
9335                         if (!(seq_point_locs && mono_bitset_test_fast (seq_point_locs, ip + 5 - header->code)))
9336                                 need_seq_point = TRUE;
9337
9338                         /* Don't support calls made using type arguments for now */
9339                         /*
9340                           if (cfg->gsharedvt) {
9341                           if (mini_is_gsharedvt_signature (fsig))
9342                           GSHAREDVT_FAILURE (*ip);
9343                           }
9344                         */
9345
9346                         if (cmethod->string_ctor && method->wrapper_type != MONO_WRAPPER_RUNTIME_INVOKE)
9347                                 g_assert_not_reached ();
9348
9349                         n = fsig->param_count + fsig->hasthis;
9350
9351                         if (!cfg->gshared && cmethod->klass->generic_container)
9352                                 UNVERIFIED;
9353
9354                         if (!cfg->gshared)
9355                                 g_assert (!mono_method_check_context_used (cmethod));
9356
9357                         CHECK_STACK (n);
9358
9359                         //g_assert (!virtual_ || fsig->hasthis);
9360
9361                         sp -= n;
9362
9363                         /*
9364                          * We have the `constrained.' prefix opcode.
9365                          */
9366                         if (constrained_class) {
9367                                 if (mini_is_gsharedvt_klass (constrained_class)) {
9368                                         if ((cmethod->klass != mono_defaults.object_class) && constrained_class->valuetype && cmethod->klass->valuetype) {
9369                                                 /* The 'Own method' case below */
9370                                         } else if (cmethod->klass->image != mono_defaults.corlib && !(cmethod->klass->flags & TYPE_ATTRIBUTE_INTERFACE) && !cmethod->klass->valuetype) {
9371                                                 /* 'The type parameter is instantiated as a reference type' case below. */
9372                                         } else {
9373                                                 ins = handle_constrained_gsharedvt_call (cfg, cmethod, fsig, sp, constrained_class, &emit_widen);
9374                                                 CHECK_CFG_EXCEPTION;
9375                                                 g_assert (ins);
9376                                                 goto call_end;
9377                                         }
9378                                 }
9379
9380                                 if (constrained_partial_call) {
9381                                         gboolean need_box = TRUE;
9382
9383                                         /*
9384                                          * The receiver is a valuetype, but the exact type is not known at compile time. This means the
9385                                          * called method is not known at compile time either. The called method could end up being
9386                                          * one of the methods on the parent classes (object/valuetype/enum), in which case we need
9387                                          * to box the receiver.
9388                                          * A simple solution would be to box always and make a normal virtual call, but that would
9389                                          * be bad performance wise.
9390                                          */
9391                                         if (cmethod->klass->flags & TYPE_ATTRIBUTE_INTERFACE && cmethod->klass->generic_class) {
9392                                                 /*
9393                                                  * The parent classes implement no generic interfaces, so the called method will be a vtype method, so no boxing neccessary.
9394                                                  */
9395                                                 need_box = FALSE;
9396                                         }
9397
9398                                         if (!(cmethod->flags & METHOD_ATTRIBUTE_VIRTUAL) && (cmethod->klass == mono_defaults.object_class || cmethod->klass == mono_defaults.enum_class->parent || cmethod->klass == mono_defaults.enum_class)) {
9399                                                 /* The called method is not virtual, i.e. Object:GetType (), the receiver is a vtype, has to box */
9400                                                 EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, ins, &constrained_class->byval_arg, sp [0]->dreg, 0);
9401                                                 ins->klass = constrained_class;
9402                                                 sp [0] = handle_box (cfg, ins, constrained_class, mono_class_check_context_used (constrained_class));
9403                                                 CHECK_CFG_EXCEPTION;
9404                                         } else if (need_box) {
9405                                                 MonoInst *box_type;
9406                                                 MonoBasicBlock *is_ref_bb, *end_bb;
9407                                                 MonoInst *nonbox_call;
9408
9409                                                 /*
9410                                                  * Determine at runtime whenever the called method is defined on object/valuetype/enum, and emit a boxing call
9411                                                  * if needed.
9412                                                  * FIXME: It is possible to inline the called method in a lot of cases, i.e. for T_INT,
9413                                                  * the no-box case goes to a method in Int32, while the box case goes to a method in Enum.
9414                                                  */
9415                                                 addr = emit_get_rgctx_virt_method (cfg, mono_class_check_context_used (constrained_class), constrained_class, cmethod, MONO_RGCTX_INFO_VIRT_METHOD_CODE);
9416
9417                                                 NEW_BBLOCK (cfg, is_ref_bb);
9418                                                 NEW_BBLOCK (cfg, end_bb);
9419
9420                                                 box_type = emit_get_rgctx_virt_method (cfg, mono_class_check_context_used (constrained_class), constrained_class, cmethod, MONO_RGCTX_INFO_VIRT_METHOD_BOX_TYPE);
9421                                                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, box_type->dreg, MONO_GSHAREDVT_BOX_TYPE_REF);
9422                                                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_IBEQ, is_ref_bb);
9423
9424                                                 /* Non-ref case */
9425                                                 nonbox_call = (MonoInst*)mono_emit_calli (cfg, fsig, sp, addr, NULL, NULL);
9426
9427                                                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
9428
9429                                                 /* Ref case */
9430                                                 MONO_START_BB (cfg, is_ref_bb);
9431                                                 EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, ins, &constrained_class->byval_arg, sp [0]->dreg, 0);
9432                                                 ins->klass = constrained_class;
9433                                                 sp [0] = handle_box (cfg, ins, constrained_class, mono_class_check_context_used (constrained_class));
9434                                                 ins = (MonoInst*)mono_emit_calli (cfg, fsig, sp, addr, NULL, NULL);
9435
9436                                                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
9437
9438                                                 MONO_START_BB (cfg, end_bb);
9439                                                 cfg->cbb = end_bb;
9440
9441                                                 nonbox_call->dreg = ins->dreg;
9442                                                 goto call_end;
9443                                         } else {
9444                                                 g_assert (cmethod->klass->flags & TYPE_ATTRIBUTE_INTERFACE);
9445                                                 addr = emit_get_rgctx_virt_method (cfg, mono_class_check_context_used (constrained_class), constrained_class, cmethod, MONO_RGCTX_INFO_VIRT_METHOD_CODE);
9446                                                 ins = (MonoInst*)mono_emit_calli (cfg, fsig, sp, addr, NULL, NULL);
9447                                                 goto call_end;
9448                                         }
9449                                 } else if (constrained_class->valuetype && (cmethod->klass == mono_defaults.object_class || cmethod->klass == mono_defaults.enum_class->parent || cmethod->klass == mono_defaults.enum_class)) {
9450                                         /*
9451                                          * The type parameter is instantiated as a valuetype,
9452                                          * but that type doesn't override the method we're
9453                                          * calling, so we need to box `this'.
9454                                          */
9455                                         EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, ins, &constrained_class->byval_arg, sp [0]->dreg, 0);
9456                                         ins->klass = constrained_class;
9457                                         sp [0] = handle_box (cfg, ins, constrained_class, mono_class_check_context_used (constrained_class));
9458                                         CHECK_CFG_EXCEPTION;
9459                                 } else if (!constrained_class->valuetype) {
9460                                         int dreg = alloc_ireg_ref (cfg);
9461
9462                                         /*
9463                                          * The type parameter is instantiated as a reference
9464                                          * type.  We have a managed pointer on the stack, so
9465                                          * we need to dereference it here.
9466                                          */
9467                                         EMIT_NEW_LOAD_MEMBASE (cfg, ins, OP_LOAD_MEMBASE, dreg, sp [0]->dreg, 0);
9468                                         ins->type = STACK_OBJ;
9469                                         sp [0] = ins;
9470                                 } else {
9471                                         if (cmethod->klass->valuetype) {
9472                                                 /* Own method */
9473                                         } else {
9474                                                 /* Interface method */
9475                                                 int ioffset, slot;
9476
9477                                                 mono_class_setup_vtable (constrained_class);
9478                                                 CHECK_TYPELOAD (constrained_class);
9479                                                 ioffset = mono_class_interface_offset (constrained_class, cmethod->klass);
9480                                                 if (ioffset == -1)
9481                                                         TYPE_LOAD_ERROR (constrained_class);
9482                                                 slot = mono_method_get_vtable_slot (cmethod);
9483                                                 if (slot == -1)
9484                                                         TYPE_LOAD_ERROR (cmethod->klass);
9485                                                 cmethod = constrained_class->vtable [ioffset + slot];
9486
9487                                                 if (cmethod->klass == mono_defaults.enum_class) {
9488                                                         /* Enum implements some interfaces, so treat this as the first case */
9489                                                         EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, ins, &constrained_class->byval_arg, sp [0]->dreg, 0);
9490                                                         ins->klass = constrained_class;
9491                                                         sp [0] = handle_box (cfg, ins, constrained_class, mono_class_check_context_used (constrained_class));
9492                                                         CHECK_CFG_EXCEPTION;
9493                                                 }
9494                                         }
9495                                         virtual_ = 0;
9496                                 }
9497                                 constrained_class = NULL;
9498                         }
9499
9500                         if (check_call_signature (cfg, fsig, sp))
9501                                 UNVERIFIED;
9502
9503                         if ((cmethod->klass->parent == mono_defaults.multicastdelegate_class) && !strcmp (cmethod->name, "Invoke"))
9504                                 delegate_invoke = TRUE;
9505
9506                         if ((cfg->opt & MONO_OPT_INTRINS) && (ins = mini_emit_inst_for_sharable_method (cfg, cmethod, fsig, sp))) {
9507                                 if (!MONO_TYPE_IS_VOID (fsig->ret)) {
9508                                         type_to_eval_stack_type ((cfg), fsig->ret, ins);
9509                                         emit_widen = FALSE;
9510                                 }
9511
9512                                 goto call_end;
9513                         }
9514
9515                         /* 
9516                          * If the callee is a shared method, then its static cctor
9517                          * might not get called after the call was patched.
9518                          */
9519                         if (cfg->gshared && cmethod->klass != method->klass && cmethod->klass->generic_class && mono_method_is_generic_sharable (cmethod, TRUE) && mono_class_needs_cctor_run (cmethod->klass, method)) {
9520                                 emit_class_init (cfg, cmethod->klass);
9521                                 CHECK_TYPELOAD (cmethod->klass);
9522                         }
9523
9524                         check_method_sharing (cfg, cmethod, &pass_vtable, &pass_mrgctx);
9525
9526                         if (cfg->gshared) {
9527                                 MonoGenericContext *cmethod_context = mono_method_get_context (cmethod);
9528
9529                                 context_used = mini_method_check_context_used (cfg, cmethod);
9530
9531                                 if (context_used && (cmethod->klass->flags & TYPE_ATTRIBUTE_INTERFACE)) {
9532                                         /* Generic method interface
9533                                            calls are resolved via a
9534                                            helper function and don't
9535                                            need an imt. */
9536                                         if (!cmethod_context || !cmethod_context->method_inst)
9537                                                 pass_imt_from_rgctx = TRUE;
9538                                 }
9539
9540                                 /*
9541                                  * If a shared method calls another
9542                                  * shared method then the caller must
9543                                  * have a generic sharing context
9544                                  * because the magic trampoline
9545                                  * requires it.  FIXME: We shouldn't
9546                                  * have to force the vtable/mrgctx
9547                                  * variable here.  Instead there
9548                                  * should be a flag in the cfg to
9549                                  * request a generic sharing context.
9550                                  */
9551                                 if (context_used &&
9552                                                 ((method->flags & METHOD_ATTRIBUTE_STATIC) || method->klass->valuetype))
9553                                         mono_get_vtable_var (cfg);
9554                         }
9555
9556                         if (pass_vtable) {
9557                                 if (context_used) {
9558                                         vtable_arg = emit_get_rgctx_klass (cfg, context_used, cmethod->klass, MONO_RGCTX_INFO_VTABLE);
9559                                 } else {
9560                                         MonoVTable *vtable = mono_class_vtable (cfg->domain, cmethod->klass);
9561
9562                                         CHECK_TYPELOAD (cmethod->klass);
9563                                         EMIT_NEW_VTABLECONST (cfg, vtable_arg, vtable);
9564                                 }
9565                         }
9566
9567                         if (pass_mrgctx) {
9568                                 g_assert (!vtable_arg);
9569
9570                                 if (!cfg->compile_aot) {
9571                                         /* 
9572                                          * emit_get_rgctx_method () calls mono_class_vtable () so check 
9573                                          * for type load errors before.
9574                                          */
9575                                         mono_class_setup_vtable (cmethod->klass);
9576                                         CHECK_TYPELOAD (cmethod->klass);
9577                                 }
9578
9579                                 vtable_arg = emit_get_rgctx_method (cfg, context_used, cmethod, MONO_RGCTX_INFO_METHOD_RGCTX);
9580
9581                                 /* !marshalbyref is needed to properly handle generic methods + remoting */
9582                                 if ((!(cmethod->flags & METHOD_ATTRIBUTE_VIRTUAL) ||
9583                                          MONO_METHOD_IS_FINAL (cmethod)) &&
9584                                         !mono_class_is_marshalbyref (cmethod->klass)) {
9585                                         if (virtual_)
9586                                                 check_this = TRUE;
9587                                         virtual_ = 0;
9588                                 }
9589                         }
9590
9591                         if (pass_imt_from_rgctx) {
9592                                 g_assert (!pass_vtable);
9593
9594                                 imt_arg = emit_get_rgctx_method (cfg, context_used,
9595                                         cmethod, MONO_RGCTX_INFO_METHOD);
9596                         }
9597
9598                         if (check_this)
9599                                 MONO_EMIT_NEW_CHECK_THIS (cfg, sp [0]->dreg);
9600
9601                         /* Calling virtual generic methods */
9602                         if (virtual_ && (cmethod->flags & METHOD_ATTRIBUTE_VIRTUAL) &&
9603                             !(MONO_METHOD_IS_FINAL (cmethod) && 
9604                               cmethod->wrapper_type != MONO_WRAPPER_REMOTING_INVOKE_WITH_CHECK) &&
9605                             fsig->generic_param_count && 
9606                                 !(cfg->gsharedvt && mini_is_gsharedvt_signature (fsig)) &&
9607                                 !cfg->llvm_only) {
9608                                 MonoInst *this_temp, *this_arg_temp, *store;
9609                                 MonoInst *iargs [4];
9610
9611                                 g_assert (fsig->is_inflated);
9612
9613                                 /* Prevent inlining of methods that contain indirect calls */
9614                                 INLINE_FAILURE ("virtual generic call");
9615
9616                                 if (cfg->gsharedvt && mini_is_gsharedvt_signature (fsig))
9617                                         GSHAREDVT_FAILURE (*ip);
9618
9619                                 if (cfg->backend->have_generalized_imt_thunk && cfg->backend->gshared_supported && cmethod->wrapper_type == MONO_WRAPPER_NONE) {
9620                                         g_assert (!imt_arg);
9621                                         if (!context_used)
9622                                                 g_assert (cmethod->is_inflated);
9623                                         imt_arg = emit_get_rgctx_method (cfg, context_used,
9624                                                                                                          cmethod, MONO_RGCTX_INFO_METHOD);
9625                                         ins = mono_emit_method_call_full (cfg, cmethod, fsig, FALSE, sp, sp [0], imt_arg, NULL);
9626                                 } else {
9627                                         this_temp = mono_compile_create_var (cfg, type_from_stack_type (sp [0]), OP_LOCAL);
9628                                         NEW_TEMPSTORE (cfg, store, this_temp->inst_c0, sp [0]);
9629                                         MONO_ADD_INS (cfg->cbb, store);
9630
9631                                         /* FIXME: This should be a managed pointer */
9632                                         this_arg_temp = mono_compile_create_var (cfg, &mono_defaults.int_class->byval_arg, OP_LOCAL);
9633
9634                                         EMIT_NEW_TEMPLOAD (cfg, iargs [0], this_temp->inst_c0);
9635                                         iargs [1] = emit_get_rgctx_method (cfg, context_used,
9636                                                                                                            cmethod, MONO_RGCTX_INFO_METHOD);
9637                                         EMIT_NEW_TEMPLOADA (cfg, iargs [2], this_arg_temp->inst_c0);
9638                                         addr = mono_emit_jit_icall (cfg,
9639                                                                                                 mono_helper_compile_generic_method, iargs);
9640
9641                                         EMIT_NEW_TEMPLOAD (cfg, sp [0], this_arg_temp->inst_c0);
9642
9643                                         ins = (MonoInst*)mono_emit_calli (cfg, fsig, sp, addr, NULL, NULL);
9644                                 }
9645
9646                                 goto call_end;
9647                         }
9648
9649                         /*
9650                          * Implement a workaround for the inherent races involved in locking:
9651                          * Monitor.Enter ()
9652                          * try {
9653                          * } finally {
9654                          *    Monitor.Exit ()
9655                          * }
9656                          * If a thread abort happens between the call to Monitor.Enter () and the start of the
9657                          * try block, the Exit () won't be executed, see:
9658                          * http://www.bluebytesoftware.com/blog/2007/01/30/MonitorEnterThreadAbortsAndOrphanedLocks.aspx
9659                          * To work around this, we extend such try blocks to include the last x bytes
9660                          * of the Monitor.Enter () call.
9661                          */
9662                         if (cmethod->klass == mono_defaults.monitor_class && !strcmp (cmethod->name, "Enter") && mono_method_signature (cmethod)->param_count == 1) {
9663                                 MonoBasicBlock *tbb;
9664
9665                                 GET_BBLOCK (cfg, tbb, ip + 5);
9666                                 /* 
9667                                  * Only extend try blocks with a finally, to avoid catching exceptions thrown
9668                                  * from Monitor.Enter like ArgumentNullException.
9669                                  */
9670                                 if (tbb->try_start && MONO_REGION_FLAGS(tbb->region) == MONO_EXCEPTION_CLAUSE_FINALLY) {
9671                                         /* Mark this bblock as needing to be extended */
9672                                         tbb->extend_try_block = TRUE;
9673                                 }
9674                         }
9675
9676                         /* Conversion to a JIT intrinsic */
9677                         if ((cfg->opt & MONO_OPT_INTRINS) && (ins = mini_emit_inst_for_method (cfg, cmethod, fsig, sp))) {
9678                                 if (!MONO_TYPE_IS_VOID (fsig->ret)) {
9679                                         type_to_eval_stack_type ((cfg), fsig->ret, ins);
9680                                         emit_widen = FALSE;
9681                                 }
9682                                 goto call_end;
9683                         }
9684                         CHECK_CFG_ERROR;
9685                         
9686                         /* Inlining */
9687                         if ((cfg->opt & MONO_OPT_INLINE) &&
9688                                 (!virtual_ || !(cmethod->flags & METHOD_ATTRIBUTE_VIRTUAL) || MONO_METHOD_IS_FINAL (cmethod)) &&
9689                             mono_method_check_inlining (cfg, cmethod)) {
9690                                 int costs;
9691                                 gboolean always = FALSE;
9692
9693                                 if ((cmethod->iflags & METHOD_IMPL_ATTRIBUTE_INTERNAL_CALL) ||
9694                                         (cmethod->flags & METHOD_ATTRIBUTE_PINVOKE_IMPL)) {
9695                                         /* Prevent inlining of methods that call wrappers */
9696                                         INLINE_FAILURE ("wrapper call");
9697                                         cmethod = mono_marshal_get_native_wrapper (cmethod, TRUE, FALSE);
9698                                         always = TRUE;
9699                                 }
9700
9701                                 costs = inline_method (cfg, cmethod, fsig, sp, ip, cfg->real_offset, always);
9702                                 if (costs) {
9703                                         cfg->real_offset += 5;
9704
9705                                         if (!MONO_TYPE_IS_VOID (fsig->ret)) {
9706                                                 /* *sp is already set by inline_method */
9707                                                 sp++;
9708                                                 push_res = FALSE;
9709                                         }
9710
9711                                         inline_costs += costs;
9712
9713                                         goto call_end;
9714                                 }
9715                         }
9716
9717                         /* Tail recursion elimination */
9718                         if ((cfg->opt & MONO_OPT_TAILC) && call_opcode == CEE_CALL && cmethod == method && ip [5] == CEE_RET && !vtable_arg) {
9719                                 gboolean has_vtargs = FALSE;
9720                                 int i;
9721
9722                                 /* Prevent inlining of methods with tail calls (the call stack would be altered) */
9723                                 INLINE_FAILURE ("tail call");
9724
9725                                 /* keep it simple */
9726                                 for (i =  fsig->param_count - 1; i >= 0; i--) {
9727                                         if (MONO_TYPE_ISSTRUCT (mono_method_signature (cmethod)->params [i])) 
9728                                                 has_vtargs = TRUE;
9729                                 }
9730
9731                                 if (!has_vtargs) {
9732                                         for (i = 0; i < n; ++i)
9733                                                 EMIT_NEW_ARGSTORE (cfg, ins, i, sp [i]);
9734                                         MONO_INST_NEW (cfg, ins, OP_BR);
9735                                         MONO_ADD_INS (cfg->cbb, ins);
9736                                         tblock = start_bblock->out_bb [0];
9737                                         link_bblock (cfg, cfg->cbb, tblock);
9738                                         ins->inst_target_bb = tblock;
9739                                         start_new_bblock = 1;
9740
9741                                         /* skip the CEE_RET, too */
9742                                         if (ip_in_bb (cfg, cfg->cbb, ip + 5))
9743                                                 skip_ret = TRUE;
9744                                         push_res = FALSE;
9745                                         goto call_end;
9746                                 }
9747                         }
9748
9749                         inline_costs += 10 * num_calls++;
9750
9751                         /*
9752                          * Making generic calls out of gsharedvt methods.
9753                          * This needs to be used for all generic calls, not just ones with a gsharedvt signature, to avoid
9754                          * patching gshared method addresses into a gsharedvt method.
9755                          */
9756                         if (cfg->gsharedvt && (mini_is_gsharedvt_signature (fsig) || cmethod->is_inflated || cmethod->klass->generic_class) &&
9757                                 !(cmethod->klass->rank && cmethod->klass->byval_arg.type != MONO_TYPE_SZARRAY) &&
9758                                 (!(cfg->llvm_only && virtual_ && (cmethod->flags & METHOD_ATTRIBUTE_VIRTUAL)))) {
9759                                 MonoRgctxInfoType info_type;
9760
9761                                 if (virtual_) {
9762                                         //if (cmethod->klass->flags & TYPE_ATTRIBUTE_INTERFACE)
9763                                                 //GSHAREDVT_FAILURE (*ip);
9764                                         // disable for possible remoting calls
9765                                         if (fsig->hasthis && (mono_class_is_marshalbyref (method->klass) || method->klass == mono_defaults.object_class))
9766                                                 GSHAREDVT_FAILURE (*ip);
9767                                         if (fsig->generic_param_count) {
9768                                                 /* virtual generic call */
9769                                                 g_assert (!imt_arg);
9770                                                 /* Same as the virtual generic case above */
9771                                                 imt_arg = emit_get_rgctx_method (cfg, context_used,
9772                                                                                                                  cmethod, MONO_RGCTX_INFO_METHOD);
9773                                                 /* This is not needed, as the trampoline code will pass one, and it might be passed in the same reg as the imt arg */
9774                                                 vtable_arg = NULL;
9775                                         } else if ((cmethod->klass->flags & TYPE_ATTRIBUTE_INTERFACE) && !imt_arg) {
9776                                                 /* This can happen when we call a fully instantiated iface method */
9777                                                 imt_arg = emit_get_rgctx_method (cfg, context_used,
9778                                                                                                                  cmethod, MONO_RGCTX_INFO_METHOD);
9779                                                 vtable_arg = NULL;
9780                                         }
9781                                 }
9782
9783                                 if ((cmethod->klass->parent == mono_defaults.multicastdelegate_class) && (!strcmp (cmethod->name, "Invoke")))
9784                                         keep_this_alive = sp [0];
9785
9786                                 if (virtual_ && (cmethod->flags & METHOD_ATTRIBUTE_VIRTUAL))
9787                                         info_type = MONO_RGCTX_INFO_METHOD_GSHAREDVT_OUT_TRAMPOLINE_VIRT;
9788                                 else
9789                                         info_type = MONO_RGCTX_INFO_METHOD_GSHAREDVT_OUT_TRAMPOLINE;
9790                                 addr = emit_get_rgctx_gsharedvt_call (cfg, context_used, fsig, cmethod, info_type);
9791
9792                                 if (cfg->llvm_only) {
9793                                         // FIXME: Avoid initializing vtable_arg
9794                                         ins = emit_llvmonly_calli (cfg, fsig, sp, addr);
9795                                 } else {
9796                                         ins = (MonoInst*)mono_emit_calli (cfg, fsig, sp, addr, imt_arg, vtable_arg);
9797                                 }
9798                                 goto call_end;
9799                         }
9800
9801                         /* Generic sharing */
9802
9803                         /*
9804                          * Use this if the callee is gsharedvt sharable too, since
9805                          * at runtime we might find an instantiation so the call cannot
9806                          * be patched (the 'no_patch' code path in mini-trampolines.c).
9807                          */
9808                         if (context_used && !imt_arg && !array_rank && !delegate_invoke &&
9809                                 (!mono_method_is_generic_sharable_full (cmethod, TRUE, FALSE, FALSE) ||
9810                                  !mono_class_generic_sharing_enabled (cmethod->klass)) &&
9811                                 (!virtual_ || MONO_METHOD_IS_FINAL (cmethod) ||
9812                                  !(cmethod->flags & METHOD_ATTRIBUTE_VIRTUAL))) {
9813                                 INLINE_FAILURE ("gshared");
9814
9815                                 g_assert (cfg->gshared && cmethod);
9816                                 g_assert (!addr);
9817
9818                                 /*
9819                                  * We are compiling a call to a
9820                                  * generic method from shared code,
9821                                  * which means that we have to look up
9822                                  * the method in the rgctx and do an
9823                                  * indirect call.
9824                                  */
9825                                 if (fsig->hasthis)
9826                                         MONO_EMIT_NEW_CHECK_THIS (cfg, sp [0]->dreg);
9827
9828                                 if (cfg->llvm_only) {
9829                                         if (cfg->gsharedvt && mini_is_gsharedvt_variable_signature (fsig))
9830                                                 addr = emit_get_rgctx_method (cfg, context_used, cmethod, MONO_RGCTX_INFO_GSHAREDVT_OUT_WRAPPER);
9831                                         else
9832                                                 addr = emit_get_rgctx_method (cfg, context_used, cmethod, MONO_RGCTX_INFO_GENERIC_METHOD_CODE);
9833                                         // FIXME: Avoid initializing imt_arg/vtable_arg
9834                                         ins = emit_llvmonly_calli (cfg, fsig, sp, addr);
9835                                 } else {
9836                                         addr = emit_get_rgctx_method (cfg, context_used, cmethod, MONO_RGCTX_INFO_GENERIC_METHOD_CODE);
9837                                         ins = (MonoInst*)mono_emit_calli (cfg, fsig, sp, addr, imt_arg, vtable_arg);
9838                                 }
9839                                 goto call_end;
9840                         }
9841
9842                         /* Direct calls to icalls */
9843                         if (direct_icall) {
9844                                 MonoMethod *wrapper;
9845                                 int costs;
9846
9847                                 /* Inline the wrapper */
9848                                 wrapper = mono_marshal_get_native_wrapper (cmethod, TRUE, cfg->compile_aot);
9849
9850                                 costs = inline_method (cfg, wrapper, fsig, sp, ip, cfg->real_offset, TRUE);
9851                                 g_assert (costs > 0);
9852                                 cfg->real_offset += 5;
9853
9854                                 if (!MONO_TYPE_IS_VOID (fsig->ret)) {
9855                                         /* *sp is already set by inline_method */
9856                                         sp++;
9857                                         push_res = FALSE;
9858                                 }
9859
9860                                 inline_costs += costs;
9861
9862                                 goto call_end;
9863                         }
9864                                         
9865                         /* Array methods */
9866                         if (array_rank) {
9867                                 MonoInst *addr;
9868
9869                                 if (strcmp (cmethod->name, "Set") == 0) { /* array Set */ 
9870                                         MonoInst *val = sp [fsig->param_count];
9871
9872                                         if (val->type == STACK_OBJ) {
9873                                                 MonoInst *iargs [2];
9874
9875                                                 iargs [0] = sp [0];
9876                                                 iargs [1] = val;
9877                                                 
9878                                                 mono_emit_jit_icall (cfg, mono_helper_stelem_ref_check, iargs);
9879                                         }
9880                                         
9881                                         addr = mini_emit_ldelema_ins (cfg, cmethod, sp, ip, TRUE);
9882                                         EMIT_NEW_STORE_MEMBASE_TYPE (cfg, ins, fsig->params [fsig->param_count - 1], addr->dreg, 0, val->dreg);
9883                                         if (cfg->gen_write_barriers && val->type == STACK_OBJ && !(val->opcode == OP_PCONST && val->inst_c0 == 0))
9884                                                 emit_write_barrier (cfg, addr, val);
9885                                         if (cfg->gen_write_barriers && mini_is_gsharedvt_klass (cmethod->klass))
9886                                                 GSHAREDVT_FAILURE (*ip);
9887                                 } else if (strcmp (cmethod->name, "Get") == 0) { /* array Get */
9888                                         addr = mini_emit_ldelema_ins (cfg, cmethod, sp, ip, FALSE);
9889
9890                                         EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, ins, fsig->ret, addr->dreg, 0);
9891                                 } else if (strcmp (cmethod->name, "Address") == 0) { /* array Address */
9892                                         if (!cmethod->klass->element_class->valuetype && !readonly)
9893                                                 mini_emit_check_array_type (cfg, sp [0], cmethod->klass);
9894                                         CHECK_TYPELOAD (cmethod->klass);
9895                                         
9896                                         readonly = FALSE;
9897                                         addr = mini_emit_ldelema_ins (cfg, cmethod, sp, ip, FALSE);
9898                                         ins = addr;
9899                                 } else {
9900                                         g_assert_not_reached ();
9901                                 }
9902
9903                                 emit_widen = FALSE;
9904                                 goto call_end;
9905                         }
9906
9907                         ins = mini_redirect_call (cfg, cmethod, fsig, sp, virtual_ ? sp [0] : NULL);
9908                         if (ins)
9909                                 goto call_end;
9910
9911                         /* Tail prefix / tail call optimization */
9912
9913                         /* FIXME: Enabling TAILC breaks some inlining/stack trace/etc tests */
9914                         /* FIXME: runtime generic context pointer for jumps? */
9915                         /* FIXME: handle this for generic sharing eventually */
9916                         if ((ins_flag & MONO_INST_TAILCALL) &&
9917                                 !vtable_arg && !cfg->gshared && is_supported_tail_call (cfg, method, cmethod, fsig, call_opcode))
9918                                 supported_tail_call = TRUE;
9919
9920                         if (supported_tail_call) {
9921                                 MonoCallInst *call;
9922
9923                                 /* Prevent inlining of methods with tail calls (the call stack would be altered) */
9924                                 INLINE_FAILURE ("tail call");
9925
9926                                 //printf ("HIT: %s -> %s\n", mono_method_full_name (cfg->method, TRUE), mono_method_full_name (cmethod, TRUE));
9927
9928                                 if (cfg->backend->have_op_tail_call) {
9929                                         /* Handle tail calls similarly to normal calls */
9930                                         tail_call = TRUE;
9931                                 } else {
9932                                         emit_instrumentation_call (cfg, mono_profiler_method_leave);
9933
9934                                         MONO_INST_NEW_CALL (cfg, call, OP_JMP);
9935                                         call->tail_call = TRUE;
9936                                         call->method = cmethod;
9937                                         call->signature = mono_method_signature (cmethod);
9938
9939                                         /*
9940                                          * We implement tail calls by storing the actual arguments into the 
9941                                          * argument variables, then emitting a CEE_JMP.
9942                                          */
9943                                         for (i = 0; i < n; ++i) {
9944                                                 /* Prevent argument from being register allocated */
9945                                                 arg_array [i]->flags |= MONO_INST_VOLATILE;
9946                                                 EMIT_NEW_ARGSTORE (cfg, ins, i, sp [i]);
9947                                         }
9948                                         ins = (MonoInst*)call;
9949                                         ins->inst_p0 = cmethod;
9950                                         ins->inst_p1 = arg_array [0];
9951                                         MONO_ADD_INS (cfg->cbb, ins);
9952                                         link_bblock (cfg, cfg->cbb, end_bblock);
9953                                         start_new_bblock = 1;
9954
9955                                         // FIXME: Eliminate unreachable epilogs
9956
9957                                         /*
9958                                          * OP_TAILCALL has no return value, so skip the CEE_RET if it is
9959                                          * only reachable from this call.
9960                                          */
9961                                         GET_BBLOCK (cfg, tblock, ip + 5);
9962                                         if (tblock == cfg->cbb || tblock->in_count == 0)
9963                                                 skip_ret = TRUE;
9964                                         push_res = FALSE;
9965
9966                                         goto call_end;
9967                                 }
9968                         }
9969
9970                         /* 
9971                          * Synchronized wrappers.
9972                          * Its hard to determine where to replace a method with its synchronized
9973                          * wrapper without causing an infinite recursion. The current solution is
9974                          * to add the synchronized wrapper in the trampolines, and to
9975                          * change the called method to a dummy wrapper, and resolve that wrapper
9976                          * to the real method in mono_jit_compile_method ().
9977                          */
9978                         if (cfg->method->wrapper_type == MONO_WRAPPER_SYNCHRONIZED) {
9979                                 MonoMethod *orig = mono_marshal_method_from_wrapper (cfg->method);
9980                                 if (cmethod == orig || (cmethod->is_inflated && mono_method_get_declaring_generic_method (cmethod) == orig))
9981                                         cmethod = mono_marshal_get_synchronized_inner_wrapper (cmethod);
9982                         }
9983
9984                         /*
9985                          * Virtual calls in llvm-only mode.
9986                          */
9987                         if (cfg->llvm_only && virtual_ && cmethod && (cmethod->flags & METHOD_ATTRIBUTE_VIRTUAL)) {
9988                                 ins = emit_llvmonly_virtual_call (cfg, cmethod, fsig, context_used, sp);
9989                                 goto call_end;
9990                         }
9991
9992                         /* Common call */
9993                         INLINE_FAILURE ("call");
9994                         ins = mono_emit_method_call_full (cfg, cmethod, fsig, tail_call, sp, virtual_ ? sp [0] : NULL,
9995                                                                                           imt_arg, vtable_arg);
9996
9997                         if (tail_call && !cfg->llvm_only) {
9998                                 link_bblock (cfg, cfg->cbb, end_bblock);
9999                                 start_new_bblock = 1;
10000
10001                                 // FIXME: Eliminate unreachable epilogs
10002
10003                                 /*
10004                                  * OP_TAILCALL has no return value, so skip the CEE_RET if it is
10005                                  * only reachable from this call.
10006                                  */
10007                                 GET_BBLOCK (cfg, tblock, ip + 5);
10008                                 if (tblock == cfg->cbb || tblock->in_count == 0)
10009                                         skip_ret = TRUE;
10010                                 push_res = FALSE;
10011                         }
10012
10013                         call_end:
10014
10015                         /* End of call, INS should contain the result of the call, if any */
10016
10017                         if (push_res && !MONO_TYPE_IS_VOID (fsig->ret)) {
10018                                 g_assert (ins);
10019                                 if (emit_widen)
10020                                         *sp++ = mono_emit_widen_call_res (cfg, ins, fsig);
10021                                 else
10022                                         *sp++ = ins;
10023                         }
10024
10025                         if (keep_this_alive) {
10026                                 MonoInst *dummy_use;
10027
10028                                 /* See mono_emit_method_call_full () */
10029                                 EMIT_NEW_DUMMY_USE (cfg, dummy_use, keep_this_alive);
10030                         }
10031
10032                         CHECK_CFG_EXCEPTION;
10033
10034                         ip += 5;
10035                         if (skip_ret) {
10036                                 g_assert (*ip == CEE_RET);
10037                                 ip += 1;
10038                         }
10039                         ins_flag = 0;
10040                         constrained_class = NULL;
10041                         if (need_seq_point)
10042                                 emit_seq_point (cfg, method, ip, FALSE, TRUE);
10043                         break;
10044                 }
10045                 case CEE_RET:
10046                         if (cfg->method != method) {
10047                                 /* return from inlined method */
10048                                 /* 
10049                                  * If in_count == 0, that means the ret is unreachable due to
10050                                  * being preceeded by a throw. In that case, inline_method () will
10051                                  * handle setting the return value 
10052                                  * (test case: test_0_inline_throw ()).
10053                                  */
10054                                 if (return_var && cfg->cbb->in_count) {
10055                                         MonoType *ret_type = mono_method_signature (method)->ret;
10056
10057                                         MonoInst *store;
10058                                         CHECK_STACK (1);
10059                                         --sp;
10060
10061                                         if ((method->wrapper_type == MONO_WRAPPER_DYNAMIC_METHOD || method->wrapper_type == MONO_WRAPPER_NONE) && target_type_is_incompatible (cfg, ret_type, *sp))
10062                                                 UNVERIFIED;
10063
10064                                         //g_assert (returnvar != -1);
10065                                         EMIT_NEW_TEMPSTORE (cfg, store, return_var->inst_c0, *sp);
10066                                         cfg->ret_var_set = TRUE;
10067                                 } 
10068                         } else {
10069                                 emit_instrumentation_call (cfg, mono_profiler_method_leave);
10070
10071                                 if (cfg->lmf_var && cfg->cbb->in_count && !cfg->llvm_only)
10072                                         emit_pop_lmf (cfg);
10073
10074                                 if (cfg->ret) {
10075                                         MonoType *ret_type = mini_get_underlying_type (mono_method_signature (method)->ret);
10076
10077                                         if (seq_points && !sym_seq_points) {
10078                                                 /* 
10079                                                  * Place a seq point here too even through the IL stack is not
10080                                                  * empty, so a step over on
10081                                                  * call <FOO>
10082                                                  * ret
10083                                                  * will work correctly.
10084                                                  */
10085                                                 NEW_SEQ_POINT (cfg, ins, ip - header->code, TRUE);
10086                                                 MONO_ADD_INS (cfg->cbb, ins);
10087                                         }
10088
10089                                         g_assert (!return_var);
10090                                         CHECK_STACK (1);
10091                                         --sp;
10092
10093                                         if ((method->wrapper_type == MONO_WRAPPER_DYNAMIC_METHOD || method->wrapper_type == MONO_WRAPPER_NONE) && target_type_is_incompatible (cfg, ret_type, *sp))
10094                                                 UNVERIFIED;
10095
10096                                         emit_setret (cfg, *sp);
10097                                 }
10098                         }
10099                         if (sp != stack_start)
10100                                 UNVERIFIED;
10101                         MONO_INST_NEW (cfg, ins, OP_BR);
10102                         ip++;
10103                         ins->inst_target_bb = end_bblock;
10104                         MONO_ADD_INS (cfg->cbb, ins);
10105                         link_bblock (cfg, cfg->cbb, end_bblock);
10106                         start_new_bblock = 1;
10107                         break;
10108                 case CEE_BR_S:
10109                         CHECK_OPSIZE (2);
10110                         MONO_INST_NEW (cfg, ins, OP_BR);
10111                         ip++;
10112                         target = ip + 1 + (signed char)(*ip);
10113                         ++ip;
10114                         GET_BBLOCK (cfg, tblock, target);
10115                         link_bblock (cfg, cfg->cbb, tblock);
10116                         ins->inst_target_bb = tblock;
10117                         if (sp != stack_start) {
10118                                 handle_stack_args (cfg, stack_start, sp - stack_start);
10119                                 sp = stack_start;
10120                                 CHECK_UNVERIFIABLE (cfg);
10121                         }
10122                         MONO_ADD_INS (cfg->cbb, ins);
10123                         start_new_bblock = 1;
10124                         inline_costs += BRANCH_COST;
10125                         break;
10126                 case CEE_BEQ_S:
10127                 case CEE_BGE_S:
10128                 case CEE_BGT_S:
10129                 case CEE_BLE_S:
10130                 case CEE_BLT_S:
10131                 case CEE_BNE_UN_S:
10132                 case CEE_BGE_UN_S:
10133                 case CEE_BGT_UN_S:
10134                 case CEE_BLE_UN_S:
10135                 case CEE_BLT_UN_S:
10136                         CHECK_OPSIZE (2);
10137                         CHECK_STACK (2);
10138                         MONO_INST_NEW (cfg, ins, *ip + BIG_BRANCH_OFFSET);
10139                         ip++;
10140                         target = ip + 1 + *(signed char*)ip;
10141                         ip++;
10142
10143                         ADD_BINCOND (NULL);
10144
10145                         sp = stack_start;
10146                         inline_costs += BRANCH_COST;
10147                         break;
10148                 case CEE_BR:
10149                         CHECK_OPSIZE (5);
10150                         MONO_INST_NEW (cfg, ins, OP_BR);
10151                         ip++;
10152
10153                         target = ip + 4 + (gint32)read32(ip);
10154                         ip += 4;
10155                         GET_BBLOCK (cfg, tblock, target);
10156                         link_bblock (cfg, cfg->cbb, tblock);
10157                         ins->inst_target_bb = tblock;
10158                         if (sp != stack_start) {
10159                                 handle_stack_args (cfg, stack_start, sp - stack_start);
10160                                 sp = stack_start;
10161                                 CHECK_UNVERIFIABLE (cfg);
10162                         }
10163
10164                         MONO_ADD_INS (cfg->cbb, ins);
10165
10166                         start_new_bblock = 1;
10167                         inline_costs += BRANCH_COST;
10168                         break;
10169                 case CEE_BRFALSE_S:
10170                 case CEE_BRTRUE_S:
10171                 case CEE_BRFALSE:
10172                 case CEE_BRTRUE: {
10173                         MonoInst *cmp;
10174                         gboolean is_short = ((*ip) == CEE_BRFALSE_S) || ((*ip) == CEE_BRTRUE_S);
10175                         gboolean is_true = ((*ip) == CEE_BRTRUE_S) || ((*ip) == CEE_BRTRUE);
10176                         guint32 opsize = is_short ? 1 : 4;
10177
10178                         CHECK_OPSIZE (opsize);
10179                         CHECK_STACK (1);
10180                         if (sp [-1]->type == STACK_VTYPE || sp [-1]->type == STACK_R8)
10181                                 UNVERIFIED;
10182                         ip ++;
10183                         target = ip + opsize + (is_short ? *(signed char*)ip : (gint32)read32(ip));
10184                         ip += opsize;
10185
10186                         sp--;
10187
10188                         GET_BBLOCK (cfg, tblock, target);
10189                         link_bblock (cfg, cfg->cbb, tblock);
10190                         GET_BBLOCK (cfg, tblock, ip);
10191                         link_bblock (cfg, cfg->cbb, tblock);
10192
10193                         if (sp != stack_start) {
10194                                 handle_stack_args (cfg, stack_start, sp - stack_start);
10195                                 CHECK_UNVERIFIABLE (cfg);
10196                         }
10197
10198                         MONO_INST_NEW(cfg, cmp, OP_ICOMPARE_IMM);
10199                         cmp->sreg1 = sp [0]->dreg;
10200                         type_from_op (cfg, cmp, sp [0], NULL);
10201                         CHECK_TYPE (cmp);
10202
10203 #if SIZEOF_REGISTER == 4
10204                         if (cmp->opcode == OP_LCOMPARE_IMM) {
10205                                 /* Convert it to OP_LCOMPARE */
10206                                 MONO_INST_NEW (cfg, ins, OP_I8CONST);
10207                                 ins->type = STACK_I8;
10208                                 ins->dreg = alloc_dreg (cfg, STACK_I8);
10209                                 ins->inst_l = 0;
10210                                 MONO_ADD_INS (cfg->cbb, ins);
10211                                 cmp->opcode = OP_LCOMPARE;
10212                                 cmp->sreg2 = ins->dreg;
10213                         }
10214 #endif
10215                         MONO_ADD_INS (cfg->cbb, cmp);
10216
10217                         MONO_INST_NEW (cfg, ins, is_true ? CEE_BNE_UN : CEE_BEQ);
10218                         type_from_op (cfg, ins, sp [0], NULL);
10219                         MONO_ADD_INS (cfg->cbb, ins);
10220                         ins->inst_many_bb = (MonoBasicBlock **)mono_mempool_alloc (cfg->mempool, sizeof(gpointer)*2);
10221                         GET_BBLOCK (cfg, tblock, target);
10222                         ins->inst_true_bb = tblock;
10223                         GET_BBLOCK (cfg, tblock, ip);
10224                         ins->inst_false_bb = tblock;
10225                         start_new_bblock = 2;
10226
10227                         sp = stack_start;
10228                         inline_costs += BRANCH_COST;
10229                         break;
10230                 }
10231                 case CEE_BEQ:
10232                 case CEE_BGE:
10233                 case CEE_BGT:
10234                 case CEE_BLE:
10235                 case CEE_BLT:
10236                 case CEE_BNE_UN:
10237                 case CEE_BGE_UN:
10238                 case CEE_BGT_UN:
10239                 case CEE_BLE_UN:
10240                 case CEE_BLT_UN:
10241                         CHECK_OPSIZE (5);
10242                         CHECK_STACK (2);
10243                         MONO_INST_NEW (cfg, ins, *ip);
10244                         ip++;
10245                         target = ip + 4 + (gint32)read32(ip);
10246                         ip += 4;
10247
10248                         ADD_BINCOND (NULL);
10249
10250                         sp = stack_start;
10251                         inline_costs += BRANCH_COST;
10252                         break;
10253                 case CEE_SWITCH: {
10254                         MonoInst *src1;
10255                         MonoBasicBlock **targets;
10256                         MonoBasicBlock *default_bblock;
10257                         MonoJumpInfoBBTable *table;
10258                         int offset_reg = alloc_preg (cfg);
10259                         int target_reg = alloc_preg (cfg);
10260                         int table_reg = alloc_preg (cfg);
10261                         int sum_reg = alloc_preg (cfg);
10262                         gboolean use_op_switch;
10263
10264                         CHECK_OPSIZE (5);
10265                         CHECK_STACK (1);
10266                         n = read32 (ip + 1);
10267                         --sp;
10268                         src1 = sp [0];
10269                         if ((src1->type != STACK_I4) && (src1->type != STACK_PTR)) 
10270                                 UNVERIFIED;
10271
10272                         ip += 5;
10273                         CHECK_OPSIZE (n * sizeof (guint32));
10274                         target = ip + n * sizeof (guint32);
10275
10276                         GET_BBLOCK (cfg, default_bblock, target);
10277                         default_bblock->flags |= BB_INDIRECT_JUMP_TARGET;
10278
10279                         targets = (MonoBasicBlock **)mono_mempool_alloc (cfg->mempool, sizeof (MonoBasicBlock*) * n);
10280                         for (i = 0; i < n; ++i) {
10281                                 GET_BBLOCK (cfg, tblock, target + (gint32)read32(ip));
10282                                 targets [i] = tblock;
10283                                 targets [i]->flags |= BB_INDIRECT_JUMP_TARGET;
10284                                 ip += 4;
10285                         }
10286
10287                         if (sp != stack_start) {
10288                                 /* 
10289                                  * Link the current bb with the targets as well, so handle_stack_args
10290                                  * will set their in_stack correctly.
10291                                  */
10292                                 link_bblock (cfg, cfg->cbb, default_bblock);
10293                                 for (i = 0; i < n; ++i)
10294                                         link_bblock (cfg, cfg->cbb, targets [i]);
10295
10296                                 handle_stack_args (cfg, stack_start, sp - stack_start);
10297                                 sp = stack_start;
10298                                 CHECK_UNVERIFIABLE (cfg);
10299
10300                                 /* Undo the links */
10301                                 mono_unlink_bblock (cfg, cfg->cbb, default_bblock);
10302                                 for (i = 0; i < n; ++i)
10303                                         mono_unlink_bblock (cfg, cfg->cbb, targets [i]);
10304                         }
10305
10306                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_ICOMPARE_IMM, -1, src1->dreg, n);
10307                         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_IBGE_UN, default_bblock);
10308
10309                         for (i = 0; i < n; ++i)
10310                                 link_bblock (cfg, cfg->cbb, targets [i]);
10311
10312                         table = (MonoJumpInfoBBTable *)mono_mempool_alloc (cfg->mempool, sizeof (MonoJumpInfoBBTable));
10313                         table->table = targets;
10314                         table->table_size = n;
10315
10316                         use_op_switch = FALSE;
10317 #ifdef TARGET_ARM
10318                         /* ARM implements SWITCH statements differently */
10319                         /* FIXME: Make it use the generic implementation */
10320                         if (!cfg->compile_aot)
10321                                 use_op_switch = TRUE;
10322 #endif
10323
10324                         if (COMPILE_LLVM (cfg))
10325                                 use_op_switch = TRUE;
10326
10327                         cfg->cbb->has_jump_table = 1;
10328
10329                         if (use_op_switch) {
10330                                 MONO_INST_NEW (cfg, ins, OP_SWITCH);
10331                                 ins->sreg1 = src1->dreg;
10332                                 ins->inst_p0 = table;
10333                                 ins->inst_many_bb = targets;
10334                                 ins->klass = (MonoClass *)GUINT_TO_POINTER (n);
10335                                 MONO_ADD_INS (cfg->cbb, ins);
10336                         } else {
10337                                 if (sizeof (gpointer) == 8)
10338                                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_SHL_IMM, offset_reg, src1->dreg, 3);
10339                                 else
10340                                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_SHL_IMM, offset_reg, src1->dreg, 2);
10341
10342 #if SIZEOF_REGISTER == 8
10343                                 /* The upper word might not be zero, and we add it to a 64 bit address later */
10344                                 MONO_EMIT_NEW_UNALU (cfg, OP_ZEXT_I4, offset_reg, offset_reg);
10345 #endif
10346
10347                                 if (cfg->compile_aot) {
10348                                         MONO_EMIT_NEW_AOTCONST (cfg, table_reg, table, MONO_PATCH_INFO_SWITCH);
10349                                 } else {
10350                                         MONO_INST_NEW (cfg, ins, OP_JUMP_TABLE);
10351                                         ins->inst_c1 = MONO_PATCH_INFO_SWITCH;
10352                                         ins->inst_p0 = table;
10353                                         ins->dreg = table_reg;
10354                                         MONO_ADD_INS (cfg->cbb, ins);
10355                                 }
10356
10357                                 /* FIXME: Use load_memindex */
10358                                 MONO_EMIT_NEW_BIALU (cfg, OP_PADD, sum_reg, table_reg, offset_reg);
10359                                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, target_reg, sum_reg, 0);
10360                                 MONO_EMIT_NEW_UNALU (cfg, OP_BR_REG, -1, target_reg);
10361                         }
10362                         start_new_bblock = 1;
10363                         inline_costs += (BRANCH_COST * 2);
10364                         break;
10365                 }
10366                 case CEE_LDIND_I1:
10367                 case CEE_LDIND_U1:
10368                 case CEE_LDIND_I2:
10369                 case CEE_LDIND_U2:
10370                 case CEE_LDIND_I4:
10371                 case CEE_LDIND_U4:
10372                 case CEE_LDIND_I8:
10373                 case CEE_LDIND_I:
10374                 case CEE_LDIND_R4:
10375                 case CEE_LDIND_R8:
10376                 case CEE_LDIND_REF:
10377                         CHECK_STACK (1);
10378                         --sp;
10379
10380                         switch (*ip) {
10381                         case CEE_LDIND_R4:
10382                         case CEE_LDIND_R8:
10383                                 dreg = alloc_freg (cfg);
10384                                 break;
10385                         case CEE_LDIND_I8:
10386                                 dreg = alloc_lreg (cfg);
10387                                 break;
10388                         case CEE_LDIND_REF:
10389                                 dreg = alloc_ireg_ref (cfg);
10390                                 break;
10391                         default:
10392                                 dreg = alloc_preg (cfg);
10393                         }
10394
10395                         NEW_LOAD_MEMBASE (cfg, ins, ldind_to_load_membase (*ip), dreg, sp [0]->dreg, 0);
10396                         ins->type = ldind_type [*ip - CEE_LDIND_I1];
10397                         if (*ip == CEE_LDIND_R4)
10398                                 ins->type = cfg->r4_stack_type;
10399                         ins->flags |= ins_flag;
10400                         MONO_ADD_INS (cfg->cbb, ins);
10401                         *sp++ = ins;
10402                         if (ins_flag & MONO_INST_VOLATILE) {
10403                                 /* Volatile loads have acquire semantics, see 12.6.7 in Ecma 335 */
10404                                 emit_memory_barrier (cfg, MONO_MEMORY_BARRIER_ACQ);
10405                         }
10406                         ins_flag = 0;
10407                         ++ip;
10408                         break;
10409                 case CEE_STIND_REF:
10410                 case CEE_STIND_I1:
10411                 case CEE_STIND_I2:
10412                 case CEE_STIND_I4:
10413                 case CEE_STIND_I8:
10414                 case CEE_STIND_R4:
10415                 case CEE_STIND_R8:
10416                 case CEE_STIND_I:
10417                         CHECK_STACK (2);
10418                         sp -= 2;
10419
10420                         if (ins_flag & MONO_INST_VOLATILE) {
10421                                 /* Volatile stores have release semantics, see 12.6.7 in Ecma 335 */
10422                                 emit_memory_barrier (cfg, MONO_MEMORY_BARRIER_REL);
10423                         }
10424
10425                         NEW_STORE_MEMBASE (cfg, ins, stind_to_store_membase (*ip), sp [0]->dreg, 0, sp [1]->dreg);
10426                         ins->flags |= ins_flag;
10427                         ins_flag = 0;
10428
10429                         MONO_ADD_INS (cfg->cbb, ins);
10430
10431                         if (cfg->gen_write_barriers && *ip == CEE_STIND_REF && method->wrapper_type != MONO_WRAPPER_WRITE_BARRIER && !((sp [1]->opcode == OP_PCONST) && (sp [1]->inst_p0 == 0)))
10432                                 emit_write_barrier (cfg, sp [0], sp [1]);
10433
10434                         inline_costs += 1;
10435                         ++ip;
10436                         break;
10437
10438                 case CEE_MUL:
10439                         CHECK_STACK (2);
10440
10441                         MONO_INST_NEW (cfg, ins, (*ip));
10442                         sp -= 2;
10443                         ins->sreg1 = sp [0]->dreg;
10444                         ins->sreg2 = sp [1]->dreg;
10445                         type_from_op (cfg, ins, sp [0], sp [1]);
10446                         CHECK_TYPE (ins);
10447                         ins->dreg = alloc_dreg ((cfg), (MonoStackType)(ins)->type);
10448
10449                         /* Use the immediate opcodes if possible */
10450                         if ((sp [1]->opcode == OP_ICONST) && mono_arch_is_inst_imm (sp [1]->inst_c0)) {
10451                                 int imm_opcode = mono_op_to_op_imm_noemul (ins->opcode);
10452                                 if (imm_opcode != -1) {
10453                                         ins->opcode = imm_opcode;
10454                                         ins->inst_p1 = (gpointer)(gssize)(sp [1]->inst_c0);
10455                                         ins->sreg2 = -1;
10456
10457                                         NULLIFY_INS (sp [1]);
10458                                 }
10459                         }
10460
10461                         MONO_ADD_INS ((cfg)->cbb, (ins));
10462
10463                         *sp++ = mono_decompose_opcode (cfg, ins);
10464                         ip++;
10465                         break;
10466                 case CEE_ADD:
10467                 case CEE_SUB:
10468                 case CEE_DIV:
10469                 case CEE_DIV_UN:
10470                 case CEE_REM:
10471                 case CEE_REM_UN:
10472                 case CEE_AND:
10473                 case CEE_OR:
10474                 case CEE_XOR:
10475                 case CEE_SHL:
10476                 case CEE_SHR:
10477                 case CEE_SHR_UN:
10478                         CHECK_STACK (2);
10479
10480                         MONO_INST_NEW (cfg, ins, (*ip));
10481                         sp -= 2;
10482                         ins->sreg1 = sp [0]->dreg;
10483                         ins->sreg2 = sp [1]->dreg;
10484                         type_from_op (cfg, ins, sp [0], sp [1]);
10485                         CHECK_TYPE (ins);
10486                         add_widen_op (cfg, ins, &sp [0], &sp [1]);
10487                         ins->dreg = alloc_dreg ((cfg), (MonoStackType)(ins)->type);
10488
10489                         /* FIXME: Pass opcode to is_inst_imm */
10490
10491                         /* Use the immediate opcodes if possible */
10492                         if (((sp [1]->opcode == OP_ICONST) || (sp [1]->opcode == OP_I8CONST)) && mono_arch_is_inst_imm (sp [1]->opcode == OP_ICONST ? sp [1]->inst_c0 : sp [1]->inst_l)) {
10493                                 int imm_opcode = mono_op_to_op_imm_noemul (ins->opcode);
10494                                 if (imm_opcode != -1) {
10495                                         ins->opcode = imm_opcode;
10496                                         if (sp [1]->opcode == OP_I8CONST) {
10497 #if SIZEOF_REGISTER == 8
10498                                                 ins->inst_imm = sp [1]->inst_l;
10499 #else
10500                                                 ins->inst_ls_word = sp [1]->inst_ls_word;
10501                                                 ins->inst_ms_word = sp [1]->inst_ms_word;
10502 #endif
10503                                         }
10504                                         else
10505                                                 ins->inst_imm = (gssize)(sp [1]->inst_c0);
10506                                         ins->sreg2 = -1;
10507
10508                                         /* Might be followed by an instruction added by add_widen_op */
10509                                         if (sp [1]->next == NULL)
10510                                                 NULLIFY_INS (sp [1]);
10511                                 }
10512                         }
10513                         MONO_ADD_INS ((cfg)->cbb, (ins));
10514
10515                         *sp++ = mono_decompose_opcode (cfg, ins);
10516                         ip++;
10517                         break;
10518                 case CEE_NEG:
10519                 case CEE_NOT:
10520                 case CEE_CONV_I1:
10521                 case CEE_CONV_I2:
10522                 case CEE_CONV_I4:
10523                 case CEE_CONV_R4:
10524                 case CEE_CONV_R8:
10525                 case CEE_CONV_U4:
10526                 case CEE_CONV_I8:
10527                 case CEE_CONV_U8:
10528                 case CEE_CONV_OVF_I8:
10529                 case CEE_CONV_OVF_U8:
10530                 case CEE_CONV_R_UN:
10531                         CHECK_STACK (1);
10532
10533                         /* Special case this earlier so we have long constants in the IR */
10534                         if ((((*ip) == CEE_CONV_I8) || ((*ip) == CEE_CONV_U8)) && (sp [-1]->opcode == OP_ICONST)) {
10535                                 int data = sp [-1]->inst_c0;
10536                                 sp [-1]->opcode = OP_I8CONST;
10537                                 sp [-1]->type = STACK_I8;
10538 #if SIZEOF_REGISTER == 8
10539                                 if ((*ip) == CEE_CONV_U8)
10540                                         sp [-1]->inst_c0 = (guint32)data;
10541                                 else
10542                                         sp [-1]->inst_c0 = data;
10543 #else
10544                                 sp [-1]->inst_ls_word = data;
10545                                 if ((*ip) == CEE_CONV_U8)
10546                                         sp [-1]->inst_ms_word = 0;
10547                                 else
10548                                         sp [-1]->inst_ms_word = (data < 0) ? -1 : 0;
10549 #endif
10550                                 sp [-1]->dreg = alloc_dreg (cfg, STACK_I8);
10551                         }
10552                         else {
10553                                 ADD_UNOP (*ip);
10554                         }
10555                         ip++;
10556                         break;
10557                 case CEE_CONV_OVF_I4:
10558                 case CEE_CONV_OVF_I1:
10559                 case CEE_CONV_OVF_I2:
10560                 case CEE_CONV_OVF_I:
10561                 case CEE_CONV_OVF_U:
10562                         CHECK_STACK (1);
10563
10564                         if (sp [-1]->type == STACK_R8 || sp [-1]->type == STACK_R4) {
10565                                 ADD_UNOP (CEE_CONV_OVF_I8);
10566                                 ADD_UNOP (*ip);
10567                         } else {
10568                                 ADD_UNOP (*ip);
10569                         }
10570                         ip++;
10571                         break;
10572                 case CEE_CONV_OVF_U1:
10573                 case CEE_CONV_OVF_U2:
10574                 case CEE_CONV_OVF_U4:
10575                         CHECK_STACK (1);
10576
10577                         if (sp [-1]->type == STACK_R8 || sp [-1]->type == STACK_R4) {
10578                                 ADD_UNOP (CEE_CONV_OVF_U8);
10579                                 ADD_UNOP (*ip);
10580                         } else {
10581                                 ADD_UNOP (*ip);
10582                         }
10583                         ip++;
10584                         break;
10585                 case CEE_CONV_OVF_I1_UN:
10586                 case CEE_CONV_OVF_I2_UN:
10587                 case CEE_CONV_OVF_I4_UN:
10588                 case CEE_CONV_OVF_I8_UN:
10589                 case CEE_CONV_OVF_U1_UN:
10590                 case CEE_CONV_OVF_U2_UN:
10591                 case CEE_CONV_OVF_U4_UN:
10592                 case CEE_CONV_OVF_U8_UN:
10593                 case CEE_CONV_OVF_I_UN:
10594                 case CEE_CONV_OVF_U_UN:
10595                 case CEE_CONV_U2:
10596                 case CEE_CONV_U1:
10597                 case CEE_CONV_I:
10598                 case CEE_CONV_U:
10599                         CHECK_STACK (1);
10600                         ADD_UNOP (*ip);
10601                         CHECK_CFG_EXCEPTION;
10602                         ip++;
10603                         break;
10604                 case CEE_ADD_OVF:
10605                 case CEE_ADD_OVF_UN:
10606                 case CEE_MUL_OVF:
10607                 case CEE_MUL_OVF_UN:
10608                 case CEE_SUB_OVF:
10609                 case CEE_SUB_OVF_UN:
10610                         CHECK_STACK (2);
10611                         ADD_BINOP (*ip);
10612                         ip++;
10613                         break;
10614                 case CEE_CPOBJ:
10615                         GSHAREDVT_FAILURE (*ip);
10616                         CHECK_OPSIZE (5);
10617                         CHECK_STACK (2);
10618                         token = read32 (ip + 1);
10619                         klass = mini_get_class (method, token, generic_context);
10620                         CHECK_TYPELOAD (klass);
10621                         sp -= 2;
10622                         if (generic_class_is_reference_type (cfg, klass)) {
10623                                 MonoInst *store, *load;
10624                                 int dreg = alloc_ireg_ref (cfg);
10625
10626                                 NEW_LOAD_MEMBASE (cfg, load, OP_LOAD_MEMBASE, dreg, sp [1]->dreg, 0);
10627                                 load->flags |= ins_flag;
10628                                 MONO_ADD_INS (cfg->cbb, load);
10629
10630                                 NEW_STORE_MEMBASE (cfg, store, OP_STORE_MEMBASE_REG, sp [0]->dreg, 0, dreg);
10631                                 store->flags |= ins_flag;
10632                                 MONO_ADD_INS (cfg->cbb, store);
10633
10634                                 if (cfg->gen_write_barriers && cfg->method->wrapper_type != MONO_WRAPPER_WRITE_BARRIER)
10635                                         emit_write_barrier (cfg, sp [0], sp [1]);
10636                         } else {
10637                                 mini_emit_stobj (cfg, sp [0], sp [1], klass, FALSE);
10638                         }
10639                         ins_flag = 0;
10640                         ip += 5;
10641                         break;
10642                 case CEE_LDOBJ: {
10643                         int loc_index = -1;
10644                         int stloc_len = 0;
10645
10646                         CHECK_OPSIZE (5);
10647                         CHECK_STACK (1);
10648                         --sp;
10649                         token = read32 (ip + 1);
10650                         klass = mini_get_class (method, token, generic_context);
10651                         CHECK_TYPELOAD (klass);
10652
10653                         /* Optimize the common ldobj+stloc combination */
10654                         switch (ip [5]) {
10655                         case CEE_STLOC_S:
10656                                 loc_index = ip [6];
10657                                 stloc_len = 2;
10658                                 break;
10659                         case CEE_STLOC_0:
10660                         case CEE_STLOC_1:
10661                         case CEE_STLOC_2:
10662                         case CEE_STLOC_3:
10663                                 loc_index = ip [5] - CEE_STLOC_0;
10664                                 stloc_len = 1;
10665                                 break;
10666                         default:
10667                                 break;
10668                         }
10669
10670                         if ((loc_index != -1) && ip_in_bb (cfg, cfg->cbb, ip + 5)) {
10671                                 CHECK_LOCAL (loc_index);
10672
10673                                 EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, ins, &klass->byval_arg, sp [0]->dreg, 0);
10674                                 ins->dreg = cfg->locals [loc_index]->dreg;
10675                                 ins->flags |= ins_flag;
10676                                 ip += 5;
10677                                 ip += stloc_len;
10678                                 if (ins_flag & MONO_INST_VOLATILE) {
10679                                         /* Volatile loads have acquire semantics, see 12.6.7 in Ecma 335 */
10680                                         emit_memory_barrier (cfg, MONO_MEMORY_BARRIER_ACQ);
10681                                 }
10682                                 ins_flag = 0;
10683                                 break;
10684                         }
10685
10686                         /* Optimize the ldobj+stobj combination */
10687                         /* The reference case ends up being a load+store anyway */
10688                         /* Skip this if the operation is volatile. */
10689                         if (((ip [5] == CEE_STOBJ) && ip_in_bb (cfg, cfg->cbb, ip + 5) && read32 (ip + 6) == token) && !generic_class_is_reference_type (cfg, klass) && !(ins_flag & MONO_INST_VOLATILE)) {
10690                                 CHECK_STACK (1);
10691
10692                                 sp --;
10693
10694                                 mini_emit_stobj (cfg, sp [0], sp [1], klass, FALSE);
10695
10696                                 ip += 5 + 5;
10697                                 ins_flag = 0;
10698                                 break;
10699                         }
10700
10701                         EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, ins, &klass->byval_arg, sp [0]->dreg, 0);
10702                         ins->flags |= ins_flag;
10703                         *sp++ = ins;
10704
10705                         if (ins_flag & MONO_INST_VOLATILE) {
10706                                 /* Volatile loads have acquire semantics, see 12.6.7 in Ecma 335 */
10707                                 emit_memory_barrier (cfg, MONO_MEMORY_BARRIER_ACQ);
10708                         }
10709
10710                         ip += 5;
10711                         ins_flag = 0;
10712                         inline_costs += 1;
10713                         break;
10714                 }
10715                 case CEE_LDSTR:
10716                         CHECK_STACK_OVF (1);
10717                         CHECK_OPSIZE (5);
10718                         n = read32 (ip + 1);
10719
10720                         if (method->wrapper_type == MONO_WRAPPER_DYNAMIC_METHOD) {
10721                                 EMIT_NEW_PCONST (cfg, ins, mono_method_get_wrapper_data (method, n));
10722                                 ins->type = STACK_OBJ;
10723                                 *sp = ins;
10724                         }
10725                         else if (method->wrapper_type != MONO_WRAPPER_NONE) {
10726                                 MonoInst *iargs [1];
10727                                 char *str = (char *)mono_method_get_wrapper_data (method, n);
10728
10729                                 if (cfg->compile_aot)
10730                                         EMIT_NEW_LDSTRLITCONST (cfg, iargs [0], str);
10731                                 else
10732                                         EMIT_NEW_PCONST (cfg, iargs [0], str);
10733                                 *sp = mono_emit_jit_icall (cfg, mono_string_new_wrapper, iargs);
10734                         } else {
10735                                 if (cfg->opt & MONO_OPT_SHARED) {
10736                                         MonoInst *iargs [3];
10737
10738                                         if (cfg->compile_aot) {
10739                                                 cfg->ldstr_list = g_list_prepend (cfg->ldstr_list, GINT_TO_POINTER (n));
10740                                         }
10741                                         EMIT_NEW_DOMAINCONST (cfg, iargs [0]);
10742                                         EMIT_NEW_IMAGECONST (cfg, iargs [1], image);
10743                                         EMIT_NEW_ICONST (cfg, iargs [2], mono_metadata_token_index (n));
10744                                         *sp = mono_emit_jit_icall (cfg, ves_icall_mono_ldstr, iargs);
10745                                         mono_ldstr_checked (cfg->domain, image, mono_metadata_token_index (n), &cfg->error);
10746                                         CHECK_CFG_ERROR;
10747                                 } else {
10748                                         if (cfg->cbb->out_of_line) {
10749                                                 MonoInst *iargs [2];
10750
10751                                                 if (image == mono_defaults.corlib) {
10752                                                         /* 
10753                                                          * Avoid relocations in AOT and save some space by using a 
10754                                                          * version of helper_ldstr specialized to mscorlib.
10755                                                          */
10756                                                         EMIT_NEW_ICONST (cfg, iargs [0], mono_metadata_token_index (n));
10757                                                         *sp = mono_emit_jit_icall (cfg, mono_helper_ldstr_mscorlib, iargs);
10758                                                 } else {
10759                                                         /* Avoid creating the string object */
10760                                                         EMIT_NEW_IMAGECONST (cfg, iargs [0], image);
10761                                                         EMIT_NEW_ICONST (cfg, iargs [1], mono_metadata_token_index (n));
10762                                                         *sp = mono_emit_jit_icall (cfg, mono_helper_ldstr, iargs);
10763                                                 }
10764                                         } 
10765                                         else
10766                                         if (cfg->compile_aot) {
10767                                                 NEW_LDSTRCONST (cfg, ins, image, n);
10768                                                 *sp = ins;
10769                                                 MONO_ADD_INS (cfg->cbb, ins);
10770                                         } 
10771                                         else {
10772                                                 NEW_PCONST (cfg, ins, NULL);
10773                                                 ins->type = STACK_OBJ;
10774                                                 ins->inst_p0 = mono_ldstr_checked (cfg->domain, image, mono_metadata_token_index (n), &cfg->error);
10775                                                 CHECK_CFG_ERROR;
10776                                                 
10777                                                 if (!ins->inst_p0)
10778                                                         OUT_OF_MEMORY_FAILURE;
10779
10780                                                 *sp = ins;
10781                                                 MONO_ADD_INS (cfg->cbb, ins);
10782                                         }
10783                                 }
10784                         }
10785
10786                         sp++;
10787                         ip += 5;
10788                         break;
10789                 case CEE_NEWOBJ: {
10790                         MonoInst *iargs [2];
10791                         MonoMethodSignature *fsig;
10792                         MonoInst this_ins;
10793                         MonoInst *alloc;
10794                         MonoInst *vtable_arg = NULL;
10795
10796                         CHECK_OPSIZE (5);
10797                         token = read32 (ip + 1);
10798                         cmethod = mini_get_method (cfg, method, token, NULL, generic_context);
10799                         CHECK_CFG_ERROR;
10800
10801                         fsig = mono_method_get_signature_checked (cmethod, image, token, generic_context, &cfg->error);
10802                         CHECK_CFG_ERROR;
10803
10804                         mono_save_token_info (cfg, image, token, cmethod);
10805
10806                         if (!mono_class_init (cmethod->klass))
10807                                 TYPE_LOAD_ERROR (cmethod->klass);
10808
10809                         context_used = mini_method_check_context_used (cfg, cmethod);
10810
10811                         if (mono_security_core_clr_enabled ())
10812                                 ensure_method_is_allowed_to_call_method (cfg, method, cmethod);
10813
10814                         if (cfg->gshared && cmethod && cmethod->klass != method->klass && cmethod->klass->generic_class && mono_method_is_generic_sharable (cmethod, TRUE) && mono_class_needs_cctor_run (cmethod->klass, method)) {
10815                                 emit_class_init (cfg, cmethod->klass);
10816                                 CHECK_TYPELOAD (cmethod->klass);
10817                         }
10818
10819                         /*
10820                         if (cfg->gsharedvt) {
10821                                 if (mini_is_gsharedvt_variable_signature (sig))
10822                                         GSHAREDVT_FAILURE (*ip);
10823                         }
10824                         */
10825
10826                         n = fsig->param_count;
10827                         CHECK_STACK (n);
10828
10829                         /* 
10830                          * Generate smaller code for the common newobj <exception> instruction in
10831                          * argument checking code.
10832                          */
10833                         if (cfg->cbb->out_of_line && cmethod->klass->image == mono_defaults.corlib &&
10834                                 is_exception_class (cmethod->klass) && n <= 2 &&
10835                                 ((n < 1) || (!fsig->params [0]->byref && fsig->params [0]->type == MONO_TYPE_STRING)) && 
10836                                 ((n < 2) || (!fsig->params [1]->byref && fsig->params [1]->type == MONO_TYPE_STRING))) {
10837                                 MonoInst *iargs [3];
10838
10839                                 sp -= n;
10840
10841                                 EMIT_NEW_ICONST (cfg, iargs [0], cmethod->klass->type_token);
10842                                 switch (n) {
10843                                 case 0:
10844                                         *sp ++ = mono_emit_jit_icall (cfg, mono_create_corlib_exception_0, iargs);
10845                                         break;
10846                                 case 1:
10847                                         iargs [1] = sp [0];
10848                                         *sp ++ = mono_emit_jit_icall (cfg, mono_create_corlib_exception_1, iargs);
10849                                         break;
10850                                 case 2:
10851                                         iargs [1] = sp [0];
10852                                         iargs [2] = sp [1];
10853                                         *sp ++ = mono_emit_jit_icall (cfg, mono_create_corlib_exception_2, iargs);
10854                                         break;
10855                                 default:
10856                                         g_assert_not_reached ();
10857                                 }
10858
10859                                 ip += 5;
10860                                 inline_costs += 5;
10861                                 break;
10862                         }
10863
10864                         /* move the args to allow room for 'this' in the first position */
10865                         while (n--) {
10866                                 --sp;
10867                                 sp [1] = sp [0];
10868                         }
10869
10870                         /* check_call_signature () requires sp[0] to be set */
10871                         this_ins.type = STACK_OBJ;
10872                         sp [0] = &this_ins;
10873                         if (check_call_signature (cfg, fsig, sp))
10874                                 UNVERIFIED;
10875
10876                         iargs [0] = NULL;
10877
10878                         if (mini_class_is_system_array (cmethod->klass)) {
10879                                 *sp = emit_get_rgctx_method (cfg, context_used,
10880                                                                                          cmethod, MONO_RGCTX_INFO_METHOD);
10881
10882                                 /* Avoid varargs in the common case */
10883                                 if (fsig->param_count == 1)
10884                                         alloc = mono_emit_jit_icall (cfg, mono_array_new_1, sp);
10885                                 else if (fsig->param_count == 2)
10886                                         alloc = mono_emit_jit_icall (cfg, mono_array_new_2, sp);
10887                                 else if (fsig->param_count == 3)
10888                                         alloc = mono_emit_jit_icall (cfg, mono_array_new_3, sp);
10889                                 else if (fsig->param_count == 4)
10890                                         alloc = mono_emit_jit_icall (cfg, mono_array_new_4, sp);
10891                                 else
10892                                         alloc = handle_array_new (cfg, fsig->param_count, sp, ip);
10893                         } else if (cmethod->string_ctor) {
10894                                 g_assert (!context_used);
10895                                 g_assert (!vtable_arg);
10896                                 /* we simply pass a null pointer */
10897                                 EMIT_NEW_PCONST (cfg, *sp, NULL); 
10898                                 /* now call the string ctor */
10899                                 alloc = mono_emit_method_call_full (cfg, cmethod, fsig, FALSE, sp, NULL, NULL, NULL);
10900                         } else {
10901                                 if (cmethod->klass->valuetype) {
10902                                         iargs [0] = mono_compile_create_var (cfg, &cmethod->klass->byval_arg, OP_LOCAL);
10903                                         emit_init_rvar (cfg, iargs [0]->dreg, &cmethod->klass->byval_arg);
10904                                         EMIT_NEW_TEMPLOADA (cfg, *sp, iargs [0]->inst_c0);
10905
10906                                         alloc = NULL;
10907
10908                                         /* 
10909                                          * The code generated by mini_emit_virtual_call () expects
10910                                          * iargs [0] to be a boxed instance, but luckily the vcall
10911                                          * will be transformed into a normal call there.
10912                                          */
10913                                 } else if (context_used) {
10914                                         alloc = handle_alloc (cfg, cmethod->klass, FALSE, context_used);
10915                                         *sp = alloc;
10916                                 } else {
10917                                         MonoVTable *vtable = NULL;
10918
10919                                         if (!cfg->compile_aot)
10920                                                 vtable = mono_class_vtable (cfg->domain, cmethod->klass);
10921                                         CHECK_TYPELOAD (cmethod->klass);
10922
10923                                         /*
10924                                          * TypeInitializationExceptions thrown from the mono_runtime_class_init
10925                                          * call in mono_jit_runtime_invoke () can abort the finalizer thread.
10926                                          * As a workaround, we call class cctors before allocating objects.
10927                                          */
10928                                         if (mini_field_access_needs_cctor_run (cfg, method, cmethod->klass, vtable) && !(g_slist_find (class_inits, cmethod->klass))) {
10929                                                 emit_class_init (cfg, cmethod->klass);
10930                                                 if (cfg->verbose_level > 2)
10931                                                         printf ("class %s.%s needs init call for ctor\n", cmethod->klass->name_space, cmethod->klass->name);
10932                                                 class_inits = g_slist_prepend (class_inits, cmethod->klass);
10933                                         }
10934
10935                                         alloc = handle_alloc (cfg, cmethod->klass, FALSE, 0);
10936                                         *sp = alloc;
10937                                 }
10938                                 CHECK_CFG_EXCEPTION; /*for handle_alloc*/
10939
10940                                 if (alloc)
10941                                         MONO_EMIT_NEW_UNALU (cfg, OP_NOT_NULL, -1, alloc->dreg);
10942
10943                                 /* Now call the actual ctor */
10944                                 handle_ctor_call (cfg, cmethod, fsig, context_used, sp, ip, &inline_costs);
10945                                 CHECK_CFG_EXCEPTION;
10946                         }
10947
10948                         if (alloc == NULL) {
10949                                 /* Valuetype */
10950                                 EMIT_NEW_TEMPLOAD (cfg, ins, iargs [0]->inst_c0);
10951                                 type_to_eval_stack_type (cfg, &ins->klass->byval_arg, ins);
10952                                 *sp++= ins;
10953                         } else {
10954                                 *sp++ = alloc;
10955                         }
10956                         
10957                         ip += 5;
10958                         inline_costs += 5;
10959                         if (!(seq_point_locs && mono_bitset_test_fast (seq_point_locs, ip - header->code)))
10960                                 emit_seq_point (cfg, method, ip, FALSE, TRUE);
10961                         break;
10962                 }
10963                 case CEE_CASTCLASS:
10964                 case CEE_ISINST: {
10965                         CHECK_STACK (1);
10966                         --sp;
10967                         CHECK_OPSIZE (5);
10968                         token = read32 (ip + 1);
10969                         klass = mini_get_class (method, token, generic_context);
10970                         CHECK_TYPELOAD (klass);
10971                         if (sp [0]->type != STACK_OBJ)
10972                                 UNVERIFIED;
10973
10974                         MONO_INST_NEW (cfg, ins, *ip == CEE_ISINST ? OP_ISINST : OP_CASTCLASS);
10975                         ins->dreg = alloc_preg (cfg);
10976                         ins->sreg1 = (*sp)->dreg;
10977                         ins->klass = klass;
10978                         ins->type = STACK_OBJ;
10979                         MONO_ADD_INS (cfg->cbb, ins);
10980
10981                         CHECK_CFG_EXCEPTION;
10982                         *sp++ = ins;
10983                         ip += 5;
10984
10985                         cfg->flags |= MONO_CFG_HAS_TYPE_CHECK;
10986                         break;
10987                 }
10988                 case CEE_UNBOX_ANY: {
10989                         MonoInst *res, *addr;
10990
10991                         CHECK_STACK (1);
10992                         --sp;
10993                         CHECK_OPSIZE (5);
10994                         token = read32 (ip + 1);
10995                         klass = mini_get_class (method, token, generic_context);
10996                         CHECK_TYPELOAD (klass);
10997
10998                         mono_save_token_info (cfg, image, token, klass);
10999
11000                         context_used = mini_class_check_context_used (cfg, klass);
11001
11002                         if (mini_is_gsharedvt_klass (klass)) {
11003                                 res = handle_unbox_gsharedvt (cfg, klass, *sp);
11004                                 inline_costs += 2;
11005                         } else if (generic_class_is_reference_type (cfg, klass)) {
11006                                 MONO_INST_NEW (cfg, res, OP_CASTCLASS);
11007                                 res->dreg = alloc_preg (cfg);
11008                                 res->sreg1 = (*sp)->dreg;
11009                                 res->klass = klass;
11010                                 res->type = STACK_OBJ;
11011                                 MONO_ADD_INS (cfg->cbb, res);
11012                                 cfg->flags |= MONO_CFG_HAS_TYPE_CHECK;
11013                         } else if (mono_class_is_nullable (klass)) {
11014                                 res = handle_unbox_nullable (cfg, *sp, klass, context_used);
11015                         } else {
11016                                 addr = handle_unbox (cfg, klass, sp, context_used);
11017                                 /* LDOBJ */
11018                                 EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, ins, &klass->byval_arg, addr->dreg, 0);
11019                                 res = ins;
11020                                 inline_costs += 2;
11021                         }
11022
11023                         *sp ++ = res;
11024                         ip += 5;
11025                         break;
11026                 }
11027                 case CEE_BOX: {
11028                         MonoInst *val;
11029                         MonoClass *enum_class;
11030                         MonoMethod *has_flag;
11031
11032                         CHECK_STACK (1);
11033                         --sp;
11034                         val = *sp;
11035                         CHECK_OPSIZE (5);
11036                         token = read32 (ip + 1);
11037                         klass = mini_get_class (method, token, generic_context);
11038                         CHECK_TYPELOAD (klass);
11039
11040                         mono_save_token_info (cfg, image, token, klass);
11041
11042                         context_used = mini_class_check_context_used (cfg, klass);
11043
11044                         if (generic_class_is_reference_type (cfg, klass)) {
11045                                 *sp++ = val;
11046                                 ip += 5;
11047                                 break;
11048                         }
11049
11050                         if (klass == mono_defaults.void_class)
11051                                 UNVERIFIED;
11052                         if (target_type_is_incompatible (cfg, &klass->byval_arg, *sp))
11053                                 UNVERIFIED;
11054                         /* frequent check in generic code: box (struct), brtrue */
11055
11056                         /*
11057                          * Look for:
11058                          *
11059                          *   <push int/long ptr>
11060                          *   <push int/long>
11061                          *   box MyFlags
11062                          *   constrained. MyFlags
11063                          *   callvirt instace bool class [mscorlib] System.Enum::HasFlag (class [mscorlib] System.Enum)
11064                          *
11065                          * If we find this sequence and the operand types on box and constrained
11066                          * are equal, we can emit a specialized instruction sequence instead of
11067                          * the very slow HasFlag () call.
11068                          */
11069                         if ((cfg->opt & MONO_OPT_INTRINS) &&
11070                             /* Cheap checks first. */
11071                             ip + 5 + 6 + 5 < end &&
11072                             ip [5] == CEE_PREFIX1 &&
11073                             ip [6] == CEE_CONSTRAINED_ &&
11074                             ip [11] == CEE_CALLVIRT &&
11075                             ip_in_bb (cfg, cfg->cbb, ip + 5 + 6 + 5) &&
11076                             mono_class_is_enum (klass) &&
11077                             (enum_class = mini_get_class (method, read32 (ip + 7), generic_context)) &&
11078                             (has_flag = mini_get_method (cfg, method, read32 (ip + 12), NULL, generic_context)) &&
11079                             has_flag->klass == mono_defaults.enum_class &&
11080                             !strcmp (has_flag->name, "HasFlag") &&
11081                             has_flag->signature->hasthis &&
11082                             has_flag->signature->param_count == 1) {
11083                                 CHECK_TYPELOAD (enum_class);
11084
11085                                 if (enum_class == klass) {
11086                                         MonoInst *enum_this, *enum_flag;
11087
11088                                         ip += 5 + 6 + 5;
11089                                         --sp;
11090
11091                                         enum_this = sp [0];
11092                                         enum_flag = sp [1];
11093
11094                                         *sp++ = handle_enum_has_flag (cfg, klass, enum_this, enum_flag);
11095                                         break;
11096                                 }
11097                         }
11098
11099                         // FIXME: LLVM can't handle the inconsistent bb linking
11100                         if (!mono_class_is_nullable (klass) &&
11101                                 !mini_is_gsharedvt_klass (klass) &&
11102                                 ip + 5 < end && ip_in_bb (cfg, cfg->cbb, ip + 5) &&
11103                                 (ip [5] == CEE_BRTRUE || 
11104                                  ip [5] == CEE_BRTRUE_S ||
11105                                  ip [5] == CEE_BRFALSE ||
11106                                  ip [5] == CEE_BRFALSE_S)) {
11107                                 gboolean is_true = ip [5] == CEE_BRTRUE || ip [5] == CEE_BRTRUE_S;
11108                                 int dreg;
11109                                 MonoBasicBlock *true_bb, *false_bb;
11110
11111                                 ip += 5;
11112
11113                                 if (cfg->verbose_level > 3) {
11114                                         printf ("converting (in B%d: stack: %d) %s", cfg->cbb->block_num, (int)(sp - stack_start), mono_disasm_code_one (NULL, method, ip, NULL));
11115                                         printf ("<box+brtrue opt>\n");
11116                                 }
11117
11118                                 switch (*ip) {
11119                                 case CEE_BRTRUE_S:
11120                                 case CEE_BRFALSE_S:
11121                                         CHECK_OPSIZE (2);
11122                                         ip++;
11123                                         target = ip + 1 + (signed char)(*ip);
11124                                         ip++;
11125                                         break;
11126                                 case CEE_BRTRUE:
11127                                 case CEE_BRFALSE:
11128                                         CHECK_OPSIZE (5);
11129                                         ip++;
11130                                         target = ip + 4 + (gint)(read32 (ip));
11131                                         ip += 4;
11132                                         break;
11133                                 default:
11134                                         g_assert_not_reached ();
11135                                 }
11136
11137                                 /* 
11138                                  * We need to link both bblocks, since it is needed for handling stack
11139                                  * arguments correctly (See test_0_box_brtrue_opt_regress_81102).
11140                                  * Branching to only one of them would lead to inconsistencies, so
11141                                  * generate an ICONST+BRTRUE, the branch opts will get rid of them.
11142                                  */
11143                                 GET_BBLOCK (cfg, true_bb, target);
11144                                 GET_BBLOCK (cfg, false_bb, ip);
11145
11146                                 mono_link_bblock (cfg, cfg->cbb, true_bb);
11147                                 mono_link_bblock (cfg, cfg->cbb, false_bb);
11148
11149                                 if (sp != stack_start) {
11150                                         handle_stack_args (cfg, stack_start, sp - stack_start);
11151                                         sp = stack_start;
11152                                         CHECK_UNVERIFIABLE (cfg);
11153                                 }
11154
11155                                 if (COMPILE_LLVM (cfg)) {
11156                                         dreg = alloc_ireg (cfg);
11157                                         MONO_EMIT_NEW_ICONST (cfg, dreg, 0);
11158                                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, dreg, is_true ? 0 : 1);
11159
11160                                         MONO_EMIT_NEW_BRANCH_BLOCK2 (cfg, OP_IBEQ, true_bb, false_bb);
11161                                 } else {
11162                                         /* The JIT can't eliminate the iconst+compare */
11163                                         MONO_INST_NEW (cfg, ins, OP_BR);
11164                                         ins->inst_target_bb = is_true ? true_bb : false_bb;
11165                                         MONO_ADD_INS (cfg->cbb, ins);
11166                                 }
11167
11168                                 start_new_bblock = 1;
11169                                 break;
11170                         }
11171
11172                         *sp++ = handle_box (cfg, val, klass, context_used);
11173
11174                         CHECK_CFG_EXCEPTION;
11175                         ip += 5;
11176                         inline_costs += 1;
11177                         break;
11178                 }
11179                 case CEE_UNBOX: {
11180                         CHECK_STACK (1);
11181                         --sp;
11182                         CHECK_OPSIZE (5);
11183                         token = read32 (ip + 1);
11184                         klass = mini_get_class (method, token, generic_context);
11185                         CHECK_TYPELOAD (klass);
11186
11187                         mono_save_token_info (cfg, image, token, klass);
11188
11189                         context_used = mini_class_check_context_used (cfg, klass);
11190
11191                         if (mono_class_is_nullable (klass)) {
11192                                 MonoInst *val;
11193
11194                                 val = handle_unbox_nullable (cfg, *sp, klass, context_used);
11195                                 EMIT_NEW_VARLOADA (cfg, ins, get_vreg_to_inst (cfg, val->dreg), &val->klass->byval_arg);
11196
11197                                 *sp++= ins;
11198                         } else {
11199                                 ins = handle_unbox (cfg, klass, sp, context_used);
11200                                 *sp++ = ins;
11201                         }
11202                         ip += 5;
11203                         inline_costs += 2;
11204                         break;
11205                 }
11206                 case CEE_LDFLD:
11207                 case CEE_LDFLDA:
11208                 case CEE_STFLD:
11209                 case CEE_LDSFLD:
11210                 case CEE_LDSFLDA:
11211                 case CEE_STSFLD: {
11212                         MonoClassField *field;
11213 #ifndef DISABLE_REMOTING
11214                         int costs;
11215 #endif
11216                         guint foffset;
11217                         gboolean is_instance;
11218                         int op;
11219                         gpointer addr = NULL;
11220                         gboolean is_special_static;
11221                         MonoType *ftype;
11222                         MonoInst *store_val = NULL;
11223                         MonoInst *thread_ins;
11224
11225                         op = *ip;
11226                         is_instance = (op == CEE_LDFLD || op == CEE_LDFLDA || op == CEE_STFLD);
11227                         if (is_instance) {
11228                                 if (op == CEE_STFLD) {
11229                                         CHECK_STACK (2);
11230                                         sp -= 2;
11231                                         store_val = sp [1];
11232                                 } else {
11233                                         CHECK_STACK (1);
11234                                         --sp;
11235                                 }
11236                                 if (sp [0]->type == STACK_I4 || sp [0]->type == STACK_I8 || sp [0]->type == STACK_R8)
11237                                         UNVERIFIED;
11238                                 if (*ip != CEE_LDFLD && sp [0]->type == STACK_VTYPE)
11239                                         UNVERIFIED;
11240                         } else {
11241                                 if (op == CEE_STSFLD) {
11242                                         CHECK_STACK (1);
11243                                         sp--;
11244                                         store_val = sp [0];
11245                                 }
11246                         }
11247
11248                         CHECK_OPSIZE (5);
11249                         token = read32 (ip + 1);
11250                         if (method->wrapper_type != MONO_WRAPPER_NONE) {
11251                                 field = (MonoClassField *)mono_method_get_wrapper_data (method, token);
11252                                 klass = field->parent;
11253                         }
11254                         else {
11255                                 field = mono_field_from_token_checked (image, token, &klass, generic_context, &cfg->error);
11256                                 CHECK_CFG_ERROR;
11257                         }
11258                         if (!dont_verify && !cfg->skip_visibility && !mono_method_can_access_field (method, field))
11259                                 FIELD_ACCESS_FAILURE (method, field);
11260                         mono_class_init (klass);
11261
11262                         /* if the class is Critical then transparent code cannot access it's fields */
11263                         if (!is_instance && mono_security_core_clr_enabled ())
11264                                 ensure_method_is_allowed_to_access_field (cfg, method, field);
11265
11266                         /* XXX this is technically required but, so far (SL2), no [SecurityCritical] types (not many exists) have
11267                            any visible *instance* field  (in fact there's a single case for a static field in Marshal) XXX
11268                         if (mono_security_core_clr_enabled ())
11269                                 ensure_method_is_allowed_to_access_field (cfg, method, field);
11270                         */
11271
11272                         ftype = mono_field_get_type (field);
11273
11274                         /*
11275                          * LDFLD etc. is usable on static fields as well, so convert those cases to
11276                          * the static case.
11277                          */
11278                         if (is_instance && ftype->attrs & FIELD_ATTRIBUTE_STATIC) {
11279                                 switch (op) {
11280                                 case CEE_LDFLD:
11281                                         op = CEE_LDSFLD;
11282                                         break;
11283                                 case CEE_STFLD:
11284                                         op = CEE_STSFLD;
11285                                         break;
11286                                 case CEE_LDFLDA:
11287                                         op = CEE_LDSFLDA;
11288                                         break;
11289                                 default:
11290                                         g_assert_not_reached ();
11291                                 }
11292                                 is_instance = FALSE;
11293                         }
11294
11295                         context_used = mini_class_check_context_used (cfg, klass);
11296
11297                         /* INSTANCE CASE */
11298
11299                         foffset = klass->valuetype? field->offset - sizeof (MonoObject): field->offset;
11300                         if (op == CEE_STFLD) {
11301                                 if (target_type_is_incompatible (cfg, field->type, sp [1]))
11302                                         UNVERIFIED;
11303 #ifndef DISABLE_REMOTING
11304                                 if ((mono_class_is_marshalbyref (klass) && !MONO_CHECK_THIS (sp [0])) || mono_class_is_contextbound (klass) || klass == mono_defaults.marshalbyrefobject_class) {
11305                                         MonoMethod *stfld_wrapper = mono_marshal_get_stfld_wrapper (field->type); 
11306                                         MonoInst *iargs [5];
11307
11308                                         GSHAREDVT_FAILURE (op);
11309
11310                                         iargs [0] = sp [0];
11311                                         EMIT_NEW_CLASSCONST (cfg, iargs [1], klass);
11312                                         EMIT_NEW_FIELDCONST (cfg, iargs [2], field);
11313                                         EMIT_NEW_ICONST (cfg, iargs [3], klass->valuetype ? field->offset - sizeof (MonoObject) : 
11314                                                     field->offset);
11315                                         iargs [4] = sp [1];
11316
11317                                         if (cfg->opt & MONO_OPT_INLINE || cfg->compile_aot) {
11318                                                 costs = inline_method (cfg, stfld_wrapper, mono_method_signature (stfld_wrapper), 
11319                                                                                            iargs, ip, cfg->real_offset, TRUE);
11320                                                 CHECK_CFG_EXCEPTION;
11321                                                 g_assert (costs > 0);
11322                                                       
11323                                                 cfg->real_offset += 5;
11324
11325                                                 inline_costs += costs;
11326                                         } else {
11327                                                 mono_emit_method_call (cfg, stfld_wrapper, iargs, NULL);
11328                                         }
11329                                 } else
11330 #endif
11331                                 {
11332                                         MonoInst *store, *wbarrier_ptr_ins = NULL;
11333
11334                                         MONO_EMIT_NULL_CHECK (cfg, sp [0]->dreg);
11335
11336                                         if (mini_is_gsharedvt_klass (klass)) {
11337                                                 MonoInst *offset_ins;
11338
11339                                                 context_used = mini_class_check_context_used (cfg, klass);
11340
11341                                                 offset_ins = emit_get_gsharedvt_info (cfg, field, MONO_RGCTX_INFO_FIELD_OFFSET);
11342                                                 /* The value is offset by 1 */
11343                                                 EMIT_NEW_BIALU_IMM (cfg, ins, OP_PSUB_IMM, offset_ins->dreg, offset_ins->dreg, 1);
11344                                                 dreg = alloc_ireg_mp (cfg);
11345                                                 EMIT_NEW_BIALU (cfg, ins, OP_PADD, dreg, sp [0]->dreg, offset_ins->dreg);
11346                                                 wbarrier_ptr_ins = ins;
11347                                                 /* The decomposition will call mini_emit_stobj () which will emit a wbarrier if needed */
11348                                                 EMIT_NEW_STORE_MEMBASE_TYPE (cfg, store, field->type, dreg, 0, sp [1]->dreg);
11349                                         } else {
11350                                                 EMIT_NEW_STORE_MEMBASE_TYPE (cfg, store, field->type, sp [0]->dreg, foffset, sp [1]->dreg);
11351                                         }
11352                                         if (sp [0]->opcode != OP_LDADDR)
11353                                                 store->flags |= MONO_INST_FAULT;
11354
11355                                         if (cfg->gen_write_barriers && mini_type_to_stind (cfg, field->type) == CEE_STIND_REF && !(sp [1]->opcode == OP_PCONST && sp [1]->inst_c0 == 0)) {
11356                                                 if (mini_is_gsharedvt_klass (klass)) {
11357                                                         g_assert (wbarrier_ptr_ins);
11358                                                         emit_write_barrier (cfg, wbarrier_ptr_ins, sp [1]);
11359                                                 } else {
11360                                                         /* insert call to write barrier */
11361                                                         MonoInst *ptr;
11362                                                         int dreg;
11363
11364                                                         dreg = alloc_ireg_mp (cfg);
11365                                                         EMIT_NEW_BIALU_IMM (cfg, ptr, OP_PADD_IMM, dreg, sp [0]->dreg, foffset);
11366                                                         emit_write_barrier (cfg, ptr, sp [1]);
11367                                                 }
11368                                         }
11369
11370                                         store->flags |= ins_flag;
11371                                 }
11372                                 ins_flag = 0;
11373                                 ip += 5;
11374                                 break;
11375                         }
11376
11377 #ifndef DISABLE_REMOTING
11378                         if (is_instance && ((mono_class_is_marshalbyref (klass) && !MONO_CHECK_THIS (sp [0])) || mono_class_is_contextbound (klass) || klass == mono_defaults.marshalbyrefobject_class)) {
11379                                 MonoMethod *wrapper = (op == CEE_LDFLDA) ? mono_marshal_get_ldflda_wrapper (field->type) : mono_marshal_get_ldfld_wrapper (field->type); 
11380                                 MonoInst *iargs [4];
11381
11382                                 GSHAREDVT_FAILURE (op);
11383
11384                                 iargs [0] = sp [0];
11385                                 EMIT_NEW_CLASSCONST (cfg, iargs [1], klass);
11386                                 EMIT_NEW_FIELDCONST (cfg, iargs [2], field);
11387                                 EMIT_NEW_ICONST (cfg, iargs [3], klass->valuetype ? field->offset - sizeof (MonoObject) : field->offset);
11388                                 if (cfg->opt & MONO_OPT_INLINE || cfg->compile_aot) {
11389                                         costs = inline_method (cfg, wrapper, mono_method_signature (wrapper), 
11390                                                                                    iargs, ip, cfg->real_offset, TRUE);
11391                                         CHECK_CFG_EXCEPTION;
11392                                         g_assert (costs > 0);
11393                                                       
11394                                         cfg->real_offset += 5;
11395
11396                                         *sp++ = iargs [0];
11397
11398                                         inline_costs += costs;
11399                                 } else {
11400                                         ins = mono_emit_method_call (cfg, wrapper, iargs, NULL);
11401                                         *sp++ = ins;
11402                                 }
11403                         } else 
11404 #endif
11405                         if (is_instance) {
11406                                 if (sp [0]->type == STACK_VTYPE) {
11407                                         MonoInst *var;
11408
11409                                         /* Have to compute the address of the variable */
11410
11411                                         var = get_vreg_to_inst (cfg, sp [0]->dreg);
11412                                         if (!var)
11413                                                 var = mono_compile_create_var_for_vreg (cfg, &klass->byval_arg, OP_LOCAL, sp [0]->dreg);
11414                                         else
11415                                                 g_assert (var->klass == klass);
11416                                         
11417                                         EMIT_NEW_VARLOADA (cfg, ins, var, &var->klass->byval_arg);
11418                                         sp [0] = ins;
11419                                 }
11420
11421                                 if (op == CEE_LDFLDA) {
11422                                         if (sp [0]->type == STACK_OBJ) {
11423                                                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, sp [0]->dreg, 0);
11424                                                 MONO_EMIT_NEW_COND_EXC (cfg, EQ, "NullReferenceException");
11425                                         }
11426
11427                                         dreg = alloc_ireg_mp (cfg);
11428
11429                                         if (mini_is_gsharedvt_klass (klass)) {
11430                                                 MonoInst *offset_ins;
11431
11432                                                 offset_ins = emit_get_gsharedvt_info (cfg, field, MONO_RGCTX_INFO_FIELD_OFFSET);
11433                                                 /* The value is offset by 1 */
11434                                                 EMIT_NEW_BIALU_IMM (cfg, ins, OP_PSUB_IMM, offset_ins->dreg, offset_ins->dreg, 1);
11435                                                 EMIT_NEW_BIALU (cfg, ins, OP_PADD, dreg, sp [0]->dreg, offset_ins->dreg);
11436                                         } else {
11437                                                 EMIT_NEW_BIALU_IMM (cfg, ins, OP_PADD_IMM, dreg, sp [0]->dreg, foffset);
11438                                         }
11439                                         ins->klass = mono_class_from_mono_type (field->type);
11440                                         ins->type = STACK_MP;
11441                                         *sp++ = ins;
11442                                 } else {
11443                                         MonoInst *load;
11444
11445                                         MONO_EMIT_NULL_CHECK (cfg, sp [0]->dreg);
11446
11447                                         if (mini_is_gsharedvt_klass (klass)) {
11448                                                 MonoInst *offset_ins;
11449
11450                                                 offset_ins = emit_get_gsharedvt_info (cfg, field, MONO_RGCTX_INFO_FIELD_OFFSET);
11451                                                 /* The value is offset by 1 */
11452                                                 EMIT_NEW_BIALU_IMM (cfg, ins, OP_PSUB_IMM, offset_ins->dreg, offset_ins->dreg, 1);
11453                                                 dreg = alloc_ireg_mp (cfg);
11454                                                 EMIT_NEW_BIALU (cfg, ins, OP_PADD, dreg, sp [0]->dreg, offset_ins->dreg);
11455                                                 EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, load, field->type, dreg, 0);
11456                                         } else {
11457                                                 EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, load, field->type, sp [0]->dreg, foffset);
11458                                         }
11459                                         load->flags |= ins_flag;
11460                                         if (sp [0]->opcode != OP_LDADDR)
11461                                                 load->flags |= MONO_INST_FAULT;
11462                                         *sp++ = load;
11463                                 }
11464                         }
11465
11466                         if (is_instance) {
11467                                 ins_flag = 0;
11468                                 ip += 5;
11469                                 break;
11470                         }
11471
11472                         /* STATIC CASE */
11473                         context_used = mini_class_check_context_used (cfg, klass);
11474
11475                         if (ftype->attrs & FIELD_ATTRIBUTE_LITERAL) {
11476                                 mono_error_set_field_load (&cfg->error, field->parent, field->name, "Using static instructions with literal field");
11477                                 CHECK_CFG_ERROR;
11478                         }
11479
11480                         /* The special_static_fields field is init'd in mono_class_vtable, so it needs
11481                          * to be called here.
11482                          */
11483                         if (!context_used && !(cfg->opt & MONO_OPT_SHARED)) {
11484                                 mono_class_vtable (cfg->domain, klass);
11485                                 CHECK_TYPELOAD (klass);
11486                         }
11487                         mono_domain_lock (cfg->domain);
11488                         if (cfg->domain->special_static_fields)
11489                                 addr = g_hash_table_lookup (cfg->domain->special_static_fields, field);
11490                         mono_domain_unlock (cfg->domain);
11491
11492                         is_special_static = mono_class_field_is_special_static (field);
11493
11494                         if (is_special_static && ((gsize)addr & 0x80000000) == 0)
11495                                 thread_ins = mono_get_thread_intrinsic (cfg);
11496                         else
11497                                 thread_ins = NULL;
11498
11499                         /* Generate IR to compute the field address */
11500                         if (is_special_static && ((gsize)addr & 0x80000000) == 0 && thread_ins && !(cfg->opt & MONO_OPT_SHARED) && !context_used) {
11501                                 /*
11502                                  * Fast access to TLS data
11503                                  * Inline version of get_thread_static_data () in
11504                                  * threads.c.
11505                                  */
11506                                 guint32 offset;
11507                                 int idx, static_data_reg, array_reg, dreg;
11508
11509                                 GSHAREDVT_FAILURE (op);
11510
11511                                 MONO_ADD_INS (cfg->cbb, thread_ins);
11512                                 static_data_reg = alloc_ireg (cfg);
11513                                 MONO_EMIT_NEW_LOAD_MEMBASE (cfg, static_data_reg, thread_ins->dreg, MONO_STRUCT_OFFSET (MonoInternalThread, static_data));
11514
11515                                 if (cfg->compile_aot) {
11516                                         int offset_reg, offset2_reg, idx_reg;
11517
11518                                         /* For TLS variables, this will return the TLS offset */
11519                                         EMIT_NEW_SFLDACONST (cfg, ins, field);
11520                                         offset_reg = ins->dreg;
11521                                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_IAND_IMM, offset_reg, offset_reg, 0x7fffffff);
11522                                         idx_reg = alloc_ireg (cfg);
11523                                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_IAND_IMM, idx_reg, offset_reg, 0x3f);
11524                                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_ISHL_IMM, idx_reg, idx_reg, sizeof (gpointer) == 8 ? 3 : 2);
11525                                         MONO_EMIT_NEW_BIALU (cfg, OP_PADD, static_data_reg, static_data_reg, idx_reg);
11526                                         array_reg = alloc_ireg (cfg);
11527                                         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, array_reg, static_data_reg, 0);
11528                                         offset2_reg = alloc_ireg (cfg);
11529                                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_ISHR_UN_IMM, offset2_reg, offset_reg, 6);
11530                                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_IAND_IMM, offset2_reg, offset2_reg, 0x1ffffff);
11531                                         dreg = alloc_ireg (cfg);
11532                                         EMIT_NEW_BIALU (cfg, ins, OP_PADD, dreg, array_reg, offset2_reg);
11533                                 } else {
11534                                         offset = (gsize)addr & 0x7fffffff;
11535                                         idx = offset & 0x3f;
11536
11537                                         array_reg = alloc_ireg (cfg);
11538                                         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, array_reg, static_data_reg, idx * sizeof (gpointer));
11539                                         dreg = alloc_ireg (cfg);
11540                                         EMIT_NEW_BIALU_IMM (cfg, ins, OP_ADD_IMM, dreg, array_reg, ((offset >> 6) & 0x1ffffff));
11541                                 }
11542                         } else if ((cfg->opt & MONO_OPT_SHARED) ||
11543                                         (cfg->compile_aot && is_special_static) ||
11544                                         (context_used && is_special_static)) {
11545                                 MonoInst *iargs [2];
11546
11547                                 g_assert (field->parent);
11548                                 EMIT_NEW_DOMAINCONST (cfg, iargs [0]);
11549                                 if (context_used) {
11550                                         iargs [1] = emit_get_rgctx_field (cfg, context_used,
11551                                                 field, MONO_RGCTX_INFO_CLASS_FIELD);
11552                                 } else {
11553                                         EMIT_NEW_FIELDCONST (cfg, iargs [1], field);
11554                                 }
11555                                 ins = mono_emit_jit_icall (cfg, mono_class_static_field_address, iargs);
11556                         } else if (context_used) {
11557                                 MonoInst *static_data;
11558
11559                                 /*
11560                                 g_print ("sharing static field access in %s.%s.%s - depth %d offset %d\n",
11561                                         method->klass->name_space, method->klass->name, method->name,
11562                                         depth, field->offset);
11563                                 */
11564
11565                                 if (mono_class_needs_cctor_run (klass, method))
11566                                         emit_class_init (cfg, klass);
11567
11568                                 /*
11569                                  * The pointer we're computing here is
11570                                  *
11571                                  *   super_info.static_data + field->offset
11572                                  */
11573                                 static_data = emit_get_rgctx_klass (cfg, context_used,
11574                                         klass, MONO_RGCTX_INFO_STATIC_DATA);
11575
11576                                 if (mini_is_gsharedvt_klass (klass)) {
11577                                         MonoInst *offset_ins;
11578
11579                                         offset_ins = emit_get_rgctx_field (cfg, context_used, field, MONO_RGCTX_INFO_FIELD_OFFSET);
11580                                         /* The value is offset by 1 */
11581                                         EMIT_NEW_BIALU_IMM (cfg, ins, OP_PSUB_IMM, offset_ins->dreg, offset_ins->dreg, 1);
11582                                         dreg = alloc_ireg_mp (cfg);
11583                                         EMIT_NEW_BIALU (cfg, ins, OP_PADD, dreg, static_data->dreg, offset_ins->dreg);
11584                                 } else if (field->offset == 0) {
11585                                         ins = static_data;
11586                                 } else {
11587                                         int addr_reg = mono_alloc_preg (cfg);
11588                                         EMIT_NEW_BIALU_IMM (cfg, ins, OP_PADD_IMM, addr_reg, static_data->dreg, field->offset);
11589                                 }
11590                                 } else if ((cfg->opt & MONO_OPT_SHARED) || (cfg->compile_aot && addr)) {
11591                                 MonoInst *iargs [2];
11592
11593                                 g_assert (field->parent);
11594                                 EMIT_NEW_DOMAINCONST (cfg, iargs [0]);
11595                                 EMIT_NEW_FIELDCONST (cfg, iargs [1], field);
11596                                 ins = mono_emit_jit_icall (cfg, mono_class_static_field_address, iargs);
11597                         } else {
11598                                 MonoVTable *vtable = NULL;
11599
11600                                 if (!cfg->compile_aot)
11601                                         vtable = mono_class_vtable (cfg->domain, klass);
11602                                 CHECK_TYPELOAD (klass);
11603
11604                                 if (!addr) {
11605                                         if (mini_field_access_needs_cctor_run (cfg, method, klass, vtable)) {
11606                                                 if (!(g_slist_find (class_inits, klass))) {
11607                                                         emit_class_init (cfg, klass);
11608                                                         if (cfg->verbose_level > 2)
11609                                                                 printf ("class %s.%s needs init call for %s\n", klass->name_space, klass->name, mono_field_get_name (field));
11610                                                         class_inits = g_slist_prepend (class_inits, klass);
11611                                                 }
11612                                         } else {
11613                                                 if (cfg->run_cctors) {
11614                                                         /* This makes so that inline cannot trigger */
11615                                                         /* .cctors: too many apps depend on them */
11616                                                         /* running with a specific order... */
11617                                                         g_assert (vtable);
11618                                                         if (! vtable->initialized)
11619                                                                 INLINE_FAILURE ("class init");
11620                                                         if (!mono_runtime_class_init_full (vtable, &cfg->error)) {
11621                                                                 mono_cfg_set_exception (cfg, MONO_EXCEPTION_MONO_ERROR);
11622                                                                 goto exception_exit;
11623                                                         }
11624                                                 }
11625                                         }
11626                                         if (cfg->compile_aot)
11627                                                 EMIT_NEW_SFLDACONST (cfg, ins, field);
11628                                         else {
11629                                                 g_assert (vtable);
11630                                                 addr = (char*)mono_vtable_get_static_field_data (vtable) + field->offset;
11631                                                 g_assert (addr);
11632                                                 EMIT_NEW_PCONST (cfg, ins, addr);
11633                                         }
11634                                 } else {
11635                                         MonoInst *iargs [1];
11636                                         EMIT_NEW_ICONST (cfg, iargs [0], GPOINTER_TO_UINT (addr));
11637                                         ins = mono_emit_jit_icall (cfg, mono_get_special_static_data, iargs);
11638                                 }
11639                         }
11640
11641                         /* Generate IR to do the actual load/store operation */
11642
11643                         if ((op == CEE_STFLD || op == CEE_STSFLD) && (ins_flag & MONO_INST_VOLATILE)) {
11644                                 /* Volatile stores have release semantics, see 12.6.7 in Ecma 335 */
11645                                 emit_memory_barrier (cfg, MONO_MEMORY_BARRIER_REL);
11646                         }
11647
11648                         if (op == CEE_LDSFLDA) {
11649                                 ins->klass = mono_class_from_mono_type (ftype);
11650                                 ins->type = STACK_PTR;
11651                                 *sp++ = ins;
11652                         } else if (op == CEE_STSFLD) {
11653                                 MonoInst *store;
11654
11655                                 EMIT_NEW_STORE_MEMBASE_TYPE (cfg, store, ftype, ins->dreg, 0, store_val->dreg);
11656                                 store->flags |= ins_flag;
11657                         } else {
11658                                 gboolean is_const = FALSE;
11659                                 MonoVTable *vtable = NULL;
11660                                 gpointer addr = NULL;
11661
11662                                 if (!context_used) {
11663                                         vtable = mono_class_vtable (cfg->domain, klass);
11664                                         CHECK_TYPELOAD (klass);
11665                                 }
11666                                 if ((ftype->attrs & FIELD_ATTRIBUTE_INIT_ONLY) && (((addr = mono_aot_readonly_field_override (field)) != NULL) ||
11667                                                 (!context_used && !((cfg->opt & MONO_OPT_SHARED) || cfg->compile_aot) && vtable->initialized))) {
11668                                         int ro_type = ftype->type;
11669                                         if (!addr)
11670                                                 addr = (char*)mono_vtable_get_static_field_data (vtable) + field->offset;
11671                                         if (ro_type == MONO_TYPE_VALUETYPE && ftype->data.klass->enumtype) {
11672                                                 ro_type = mono_class_enum_basetype (ftype->data.klass)->type;
11673                                         }
11674
11675                                         GSHAREDVT_FAILURE (op);
11676
11677                                         /* printf ("RO-FIELD %s.%s:%s\n", klass->name_space, klass->name, mono_field_get_name (field));*/
11678                                         is_const = TRUE;
11679                                         switch (ro_type) {
11680                                         case MONO_TYPE_BOOLEAN:
11681                                         case MONO_TYPE_U1:
11682                                                 EMIT_NEW_ICONST (cfg, *sp, *((guint8 *)addr));
11683                                                 sp++;
11684                                                 break;
11685                                         case MONO_TYPE_I1:
11686                                                 EMIT_NEW_ICONST (cfg, *sp, *((gint8 *)addr));
11687                                                 sp++;
11688                                                 break;                                          
11689                                         case MONO_TYPE_CHAR:
11690                                         case MONO_TYPE_U2:
11691                                                 EMIT_NEW_ICONST (cfg, *sp, *((guint16 *)addr));
11692                                                 sp++;
11693                                                 break;
11694                                         case MONO_TYPE_I2:
11695                                                 EMIT_NEW_ICONST (cfg, *sp, *((gint16 *)addr));
11696                                                 sp++;
11697                                                 break;
11698                                                 break;
11699                                         case MONO_TYPE_I4:
11700                                                 EMIT_NEW_ICONST (cfg, *sp, *((gint32 *)addr));
11701                                                 sp++;
11702                                                 break;                                          
11703                                         case MONO_TYPE_U4:
11704                                                 EMIT_NEW_ICONST (cfg, *sp, *((guint32 *)addr));
11705                                                 sp++;
11706                                                 break;
11707                                         case MONO_TYPE_I:
11708                                         case MONO_TYPE_U:
11709                                         case MONO_TYPE_PTR:
11710                                         case MONO_TYPE_FNPTR:
11711                                                 EMIT_NEW_PCONST (cfg, *sp, *((gpointer *)addr));
11712                                                 type_to_eval_stack_type ((cfg), field->type, *sp);
11713                                                 sp++;
11714                                                 break;
11715                                         case MONO_TYPE_STRING:
11716                                         case MONO_TYPE_OBJECT:
11717                                         case MONO_TYPE_CLASS:
11718                                         case MONO_TYPE_SZARRAY:
11719                                         case MONO_TYPE_ARRAY:
11720                                                 if (!mono_gc_is_moving ()) {
11721                                                         EMIT_NEW_PCONST (cfg, *sp, *((gpointer *)addr));
11722                                                         type_to_eval_stack_type ((cfg), field->type, *sp);
11723                                                         sp++;
11724                                                 } else {
11725                                                         is_const = FALSE;
11726                                                 }
11727                                                 break;
11728                                         case MONO_TYPE_I8:
11729                                         case MONO_TYPE_U8:
11730                                                 EMIT_NEW_I8CONST (cfg, *sp, *((gint64 *)addr));
11731                                                 sp++;
11732                                                 break;
11733                                         case MONO_TYPE_R4:
11734                                         case MONO_TYPE_R8:
11735                                         case MONO_TYPE_VALUETYPE:
11736                                         default:
11737                                                 is_const = FALSE;
11738                                                 break;
11739                                         }
11740                                 }
11741
11742                                 if (!is_const) {
11743                                         MonoInst *load;
11744
11745                                         CHECK_STACK_OVF (1);
11746
11747                                         EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, load, field->type, ins->dreg, 0);
11748                                         load->flags |= ins_flag;
11749                                         ins_flag = 0;
11750                                         *sp++ = load;
11751                                 }
11752                         }
11753
11754                         if ((op == CEE_LDFLD || op == CEE_LDSFLD) && (ins_flag & MONO_INST_VOLATILE)) {
11755                                 /* Volatile loads have acquire semantics, see 12.6.7 in Ecma 335 */
11756                                 emit_memory_barrier (cfg, MONO_MEMORY_BARRIER_ACQ);
11757                         }
11758
11759                         ins_flag = 0;
11760                         ip += 5;
11761                         break;
11762                 }
11763                 case CEE_STOBJ:
11764                         CHECK_STACK (2);
11765                         sp -= 2;
11766                         CHECK_OPSIZE (5);
11767                         token = read32 (ip + 1);
11768                         klass = mini_get_class (method, token, generic_context);
11769                         CHECK_TYPELOAD (klass);
11770                         if (ins_flag & MONO_INST_VOLATILE) {
11771                                 /* Volatile stores have release semantics, see 12.6.7 in Ecma 335 */
11772                                 emit_memory_barrier (cfg, MONO_MEMORY_BARRIER_REL);
11773                         }
11774                         /* FIXME: should check item at sp [1] is compatible with the type of the store. */
11775                         EMIT_NEW_STORE_MEMBASE_TYPE (cfg, ins, &klass->byval_arg, sp [0]->dreg, 0, sp [1]->dreg);
11776                         ins->flags |= ins_flag;
11777                         if (cfg->gen_write_barriers && cfg->method->wrapper_type != MONO_WRAPPER_WRITE_BARRIER &&
11778                                         generic_class_is_reference_type (cfg, klass)) {
11779                                 /* insert call to write barrier */
11780                                 emit_write_barrier (cfg, sp [0], sp [1]);
11781                         }
11782                         ins_flag = 0;
11783                         ip += 5;
11784                         inline_costs += 1;
11785                         break;
11786
11787                         /*
11788                          * Array opcodes
11789                          */
11790                 case CEE_NEWARR: {
11791                         MonoInst *len_ins;
11792                         const char *data_ptr;
11793                         int data_size = 0;
11794                         guint32 field_token;
11795
11796                         CHECK_STACK (1);
11797                         --sp;
11798
11799                         CHECK_OPSIZE (5);
11800                         token = read32 (ip + 1);
11801
11802                         klass = mini_get_class (method, token, generic_context);
11803                         CHECK_TYPELOAD (klass);
11804
11805                         context_used = mini_class_check_context_used (cfg, klass);
11806
11807                         if (sp [0]->type == STACK_I8 || (SIZEOF_VOID_P == 8 && sp [0]->type == STACK_PTR)) {
11808                                 MONO_INST_NEW (cfg, ins, OP_LCONV_TO_OVF_U4);
11809                                 ins->sreg1 = sp [0]->dreg;
11810                                 ins->type = STACK_I4;
11811                                 ins->dreg = alloc_ireg (cfg);
11812                                 MONO_ADD_INS (cfg->cbb, ins);
11813                                 *sp = mono_decompose_opcode (cfg, ins);
11814                         }
11815
11816                         if (context_used) {
11817                                 MonoInst *args [3];
11818                                 MonoClass *array_class = mono_array_class_get (klass, 1);
11819                                 MonoMethod *managed_alloc = mono_gc_get_managed_array_allocator (array_class);
11820
11821                                 /* FIXME: Use OP_NEWARR and decompose later to help abcrem */
11822
11823                                 /* vtable */
11824                                 args [0] = emit_get_rgctx_klass (cfg, context_used,
11825                                         array_class, MONO_RGCTX_INFO_VTABLE);
11826                                 /* array len */
11827                                 args [1] = sp [0];
11828
11829                                 if (managed_alloc)
11830                                         ins = mono_emit_method_call (cfg, managed_alloc, args, NULL);
11831                                 else
11832                                         ins = mono_emit_jit_icall (cfg, ves_icall_array_new_specific, args);
11833                         } else {
11834                                 if (cfg->opt & MONO_OPT_SHARED) {
11835                                         /* Decompose now to avoid problems with references to the domainvar */
11836                                         MonoInst *iargs [3];
11837
11838                                         EMIT_NEW_DOMAINCONST (cfg, iargs [0]);
11839                                         EMIT_NEW_CLASSCONST (cfg, iargs [1], klass);
11840                                         iargs [2] = sp [0];
11841
11842                                         ins = mono_emit_jit_icall (cfg, ves_icall_array_new, iargs);
11843                                 } else {
11844                                         /* Decompose later since it is needed by abcrem */
11845                                         MonoClass *array_type = mono_array_class_get (klass, 1);
11846                                         mono_class_vtable (cfg->domain, array_type);
11847                                         CHECK_TYPELOAD (array_type);
11848
11849                                         MONO_INST_NEW (cfg, ins, OP_NEWARR);
11850                                         ins->dreg = alloc_ireg_ref (cfg);
11851                                         ins->sreg1 = sp [0]->dreg;
11852                                         ins->inst_newa_class = klass;
11853                                         ins->type = STACK_OBJ;
11854                                         ins->klass = array_type;
11855                                         MONO_ADD_INS (cfg->cbb, ins);
11856                                         cfg->flags |= MONO_CFG_HAS_ARRAY_ACCESS;
11857                                         cfg->cbb->has_array_access = TRUE;
11858
11859                                         /* Needed so mono_emit_load_get_addr () gets called */
11860                                         mono_get_got_var (cfg);
11861                                 }
11862                         }
11863
11864                         len_ins = sp [0];
11865                         ip += 5;
11866                         *sp++ = ins;
11867                         inline_costs += 1;
11868
11869                         /* 
11870                          * we inline/optimize the initialization sequence if possible.
11871                          * we should also allocate the array as not cleared, since we spend as much time clearing to 0 as initializing
11872                          * for small sizes open code the memcpy
11873                          * ensure the rva field is big enough
11874                          */
11875                         if ((cfg->opt & MONO_OPT_INTRINS) && ip + 6 < end && ip_in_bb (cfg, cfg->cbb, ip + 6) && (len_ins->opcode == OP_ICONST) && (data_ptr = initialize_array_data (method, cfg->compile_aot, ip, klass, len_ins->inst_c0, &data_size, &field_token))) {
11876                                 MonoMethod *memcpy_method = get_memcpy_method ();
11877                                 MonoInst *iargs [3];
11878                                 int add_reg = alloc_ireg_mp (cfg);
11879
11880                                 EMIT_NEW_BIALU_IMM (cfg, iargs [0], OP_PADD_IMM, add_reg, ins->dreg, MONO_STRUCT_OFFSET (MonoArray, vector));
11881                                 if (cfg->compile_aot) {
11882                                         EMIT_NEW_AOTCONST_TOKEN (cfg, iargs [1], MONO_PATCH_INFO_RVA, method->klass->image, GPOINTER_TO_UINT(field_token), STACK_PTR, NULL);
11883                                 } else {
11884                                         EMIT_NEW_PCONST (cfg, iargs [1], (char*)data_ptr);
11885                                 }
11886                                 EMIT_NEW_ICONST (cfg, iargs [2], data_size);
11887                                 mono_emit_method_call (cfg, memcpy_method, iargs, NULL);
11888                                 ip += 11;
11889                         }
11890
11891                         break;
11892                 }
11893                 case CEE_LDLEN:
11894                         CHECK_STACK (1);
11895                         --sp;
11896                         if (sp [0]->type != STACK_OBJ)
11897                                 UNVERIFIED;
11898
11899                         MONO_INST_NEW (cfg, ins, OP_LDLEN);
11900                         ins->dreg = alloc_preg (cfg);
11901                         ins->sreg1 = sp [0]->dreg;
11902                         ins->type = STACK_I4;
11903                         /* This flag will be inherited by the decomposition */
11904                         ins->flags |= MONO_INST_FAULT;
11905                         MONO_ADD_INS (cfg->cbb, ins);
11906                         cfg->flags |= MONO_CFG_HAS_ARRAY_ACCESS;
11907                         cfg->cbb->has_array_access = TRUE;
11908                         ip ++;
11909                         *sp++ = ins;
11910                         break;
11911                 case CEE_LDELEMA:
11912                         CHECK_STACK (2);
11913                         sp -= 2;
11914                         CHECK_OPSIZE (5);
11915                         if (sp [0]->type != STACK_OBJ)
11916                                 UNVERIFIED;
11917
11918                         cfg->flags |= MONO_CFG_HAS_LDELEMA;
11919
11920                         klass = mini_get_class (method, read32 (ip + 1), generic_context);
11921                         CHECK_TYPELOAD (klass);
11922                         /* we need to make sure that this array is exactly the type it needs
11923                          * to be for correctness. the wrappers are lax with their usage
11924                          * so we need to ignore them here
11925                          */
11926                         if (!klass->valuetype && method->wrapper_type == MONO_WRAPPER_NONE && !readonly) {
11927                                 MonoClass *array_class = mono_array_class_get (klass, 1);
11928                                 mini_emit_check_array_type (cfg, sp [0], array_class);
11929                                 CHECK_TYPELOAD (array_class);
11930                         }
11931
11932                         readonly = FALSE;
11933                         ins = mini_emit_ldelema_1_ins (cfg, klass, sp [0], sp [1], TRUE);
11934                         *sp++ = ins;
11935                         ip += 5;
11936                         break;
11937                 case CEE_LDELEM:
11938                 case CEE_LDELEM_I1:
11939                 case CEE_LDELEM_U1:
11940                 case CEE_LDELEM_I2:
11941                 case CEE_LDELEM_U2:
11942                 case CEE_LDELEM_I4:
11943                 case CEE_LDELEM_U4:
11944                 case CEE_LDELEM_I8:
11945                 case CEE_LDELEM_I:
11946                 case CEE_LDELEM_R4:
11947                 case CEE_LDELEM_R8:
11948                 case CEE_LDELEM_REF: {
11949                         MonoInst *addr;
11950
11951                         CHECK_STACK (2);
11952                         sp -= 2;
11953
11954                         if (*ip == CEE_LDELEM) {
11955                                 CHECK_OPSIZE (5);
11956                                 token = read32 (ip + 1);
11957                                 klass = mini_get_class (method, token, generic_context);
11958                                 CHECK_TYPELOAD (klass);
11959                                 mono_class_init (klass);
11960                         }
11961                         else
11962                                 klass = array_access_to_klass (*ip);
11963
11964                         if (sp [0]->type != STACK_OBJ)
11965                                 UNVERIFIED;
11966
11967                         cfg->flags |= MONO_CFG_HAS_LDELEMA;
11968
11969                         if (mini_is_gsharedvt_variable_klass (klass)) {
11970                                 // FIXME-VT: OP_ICONST optimization
11971                                 addr = mini_emit_ldelema_1_ins (cfg, klass, sp [0], sp [1], TRUE);
11972                                 EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, ins, &klass->byval_arg, addr->dreg, 0);
11973                                 ins->opcode = OP_LOADV_MEMBASE;
11974                         } else if (sp [1]->opcode == OP_ICONST) {
11975                                 int array_reg = sp [0]->dreg;
11976                                 int index_reg = sp [1]->dreg;
11977                                 int offset = (mono_class_array_element_size (klass) * sp [1]->inst_c0) + MONO_STRUCT_OFFSET (MonoArray, vector);
11978
11979                                 if (SIZEOF_REGISTER == 8 && COMPILE_LLVM (cfg))
11980                                         MONO_EMIT_NEW_UNALU (cfg, OP_ZEXT_I4, index_reg, index_reg);
11981
11982                                 MONO_EMIT_BOUNDS_CHECK (cfg, array_reg, MonoArray, max_length, index_reg);
11983                                 EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, ins, &klass->byval_arg, array_reg, offset);
11984                         } else {
11985                                 addr = mini_emit_ldelema_1_ins (cfg, klass, sp [0], sp [1], TRUE);
11986                                 EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, ins, &klass->byval_arg, addr->dreg, 0);
11987                         }
11988                         *sp++ = ins;
11989                         if (*ip == CEE_LDELEM)
11990                                 ip += 5;
11991                         else
11992                                 ++ip;
11993                         break;
11994                 }
11995                 case CEE_STELEM_I:
11996                 case CEE_STELEM_I1:
11997                 case CEE_STELEM_I2:
11998                 case CEE_STELEM_I4:
11999                 case CEE_STELEM_I8:
12000                 case CEE_STELEM_R4:
12001                 case CEE_STELEM_R8:
12002                 case CEE_STELEM_REF:
12003                 case CEE_STELEM: {
12004                         CHECK_STACK (3);
12005                         sp -= 3;
12006
12007                         cfg->flags |= MONO_CFG_HAS_LDELEMA;
12008
12009                         if (*ip == CEE_STELEM) {
12010                                 CHECK_OPSIZE (5);
12011                                 token = read32 (ip + 1);
12012                                 klass = mini_get_class (method, token, generic_context);
12013                                 CHECK_TYPELOAD (klass);
12014                                 mono_class_init (klass);
12015                         }
12016                         else
12017                                 klass = array_access_to_klass (*ip);
12018
12019                         if (sp [0]->type != STACK_OBJ)
12020                                 UNVERIFIED;
12021
12022                         emit_array_store (cfg, klass, sp, TRUE);
12023
12024                         if (*ip == CEE_STELEM)
12025                                 ip += 5;
12026                         else
12027                                 ++ip;
12028                         inline_costs += 1;
12029                         break;
12030                 }
12031                 case CEE_CKFINITE: {
12032                         CHECK_STACK (1);
12033                         --sp;
12034
12035                         if (cfg->llvm_only) {
12036                                 MonoInst *iargs [1];
12037
12038                                 iargs [0] = sp [0];
12039                                 *sp++ = mono_emit_jit_icall (cfg, mono_ckfinite, iargs);
12040                         } else  {
12041                                 MONO_INST_NEW (cfg, ins, OP_CKFINITE);
12042                                 ins->sreg1 = sp [0]->dreg;
12043                                 ins->dreg = alloc_freg (cfg);
12044                                 ins->type = STACK_R8;
12045                                 MONO_ADD_INS (cfg->cbb, ins);
12046
12047                                 *sp++ = mono_decompose_opcode (cfg, ins);
12048                         }
12049
12050                         ++ip;
12051                         break;
12052                 }
12053                 case CEE_REFANYVAL: {
12054                         MonoInst *src_var, *src;
12055
12056                         int klass_reg = alloc_preg (cfg);
12057                         int dreg = alloc_preg (cfg);
12058
12059                         GSHAREDVT_FAILURE (*ip);
12060
12061                         CHECK_STACK (1);
12062                         MONO_INST_NEW (cfg, ins, *ip);
12063                         --sp;
12064                         CHECK_OPSIZE (5);
12065                         klass = mini_get_class (method, read32 (ip + 1), generic_context);
12066                         CHECK_TYPELOAD (klass);
12067
12068                         context_used = mini_class_check_context_used (cfg, klass);
12069
12070                         // FIXME:
12071                         src_var = get_vreg_to_inst (cfg, sp [0]->dreg);
12072                         if (!src_var)
12073                                 src_var = mono_compile_create_var_for_vreg (cfg, &mono_defaults.typed_reference_class->byval_arg, OP_LOCAL, sp [0]->dreg);
12074                         EMIT_NEW_VARLOADA (cfg, src, src_var, src_var->inst_vtype);
12075                         MONO_EMIT_NEW_LOAD_MEMBASE (cfg, klass_reg, src->dreg, MONO_STRUCT_OFFSET (MonoTypedRef, klass));
12076
12077                         if (context_used) {
12078                                 MonoInst *klass_ins;
12079
12080                                 klass_ins = emit_get_rgctx_klass (cfg, context_used,
12081                                                 klass, MONO_RGCTX_INFO_KLASS);
12082
12083                                 // FIXME:
12084                                 MONO_EMIT_NEW_BIALU (cfg, OP_COMPARE, -1, klass_reg, klass_ins->dreg);
12085                                 MONO_EMIT_NEW_COND_EXC (cfg, NE_UN, "InvalidCastException");
12086                         } else {
12087                                 mini_emit_class_check (cfg, klass_reg, klass);
12088                         }
12089                         EMIT_NEW_LOAD_MEMBASE (cfg, ins, OP_LOAD_MEMBASE, dreg, src->dreg, MONO_STRUCT_OFFSET (MonoTypedRef, value));
12090                         ins->type = STACK_MP;
12091                         ins->klass = klass;
12092                         *sp++ = ins;
12093                         ip += 5;
12094                         break;
12095                 }
12096                 case CEE_MKREFANY: {
12097                         MonoInst *loc, *addr;
12098
12099                         GSHAREDVT_FAILURE (*ip);
12100
12101                         CHECK_STACK (1);
12102                         MONO_INST_NEW (cfg, ins, *ip);
12103                         --sp;
12104                         CHECK_OPSIZE (5);
12105                         klass = mini_get_class (method, read32 (ip + 1), generic_context);
12106                         CHECK_TYPELOAD (klass);
12107
12108                         context_used = mini_class_check_context_used (cfg, klass);
12109
12110                         loc = mono_compile_create_var (cfg, &mono_defaults.typed_reference_class->byval_arg, OP_LOCAL);
12111                         EMIT_NEW_TEMPLOADA (cfg, addr, loc->inst_c0);
12112
12113                         if (context_used) {
12114                                 MonoInst *const_ins;
12115                                 int type_reg = alloc_preg (cfg);
12116
12117                                 const_ins = emit_get_rgctx_klass (cfg, context_used, klass, MONO_RGCTX_INFO_KLASS);
12118                                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREP_MEMBASE_REG, addr->dreg, MONO_STRUCT_OFFSET (MonoTypedRef, klass), const_ins->dreg);
12119                                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_ADD_IMM, type_reg, const_ins->dreg, MONO_STRUCT_OFFSET (MonoClass, byval_arg));
12120                                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREP_MEMBASE_REG, addr->dreg, MONO_STRUCT_OFFSET (MonoTypedRef, type), type_reg);
12121                         } else if (cfg->compile_aot) {
12122                                 int const_reg = alloc_preg (cfg);
12123                                 int type_reg = alloc_preg (cfg);
12124
12125                                 MONO_EMIT_NEW_CLASSCONST (cfg, const_reg, klass);
12126                                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREP_MEMBASE_REG, addr->dreg, MONO_STRUCT_OFFSET (MonoTypedRef, klass), const_reg);
12127                                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_ADD_IMM, type_reg, const_reg, MONO_STRUCT_OFFSET (MonoClass, byval_arg));
12128                                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREP_MEMBASE_REG, addr->dreg, MONO_STRUCT_OFFSET (MonoTypedRef, type), type_reg);
12129                         } else {
12130                                 MONO_EMIT_NEW_STORE_MEMBASE_IMM (cfg, OP_STOREP_MEMBASE_IMM, addr->dreg, MONO_STRUCT_OFFSET (MonoTypedRef, type), &klass->byval_arg);
12131                                 MONO_EMIT_NEW_STORE_MEMBASE_IMM (cfg, OP_STOREP_MEMBASE_IMM, addr->dreg, MONO_STRUCT_OFFSET (MonoTypedRef, klass), klass);
12132                         }
12133                         MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STOREP_MEMBASE_REG, addr->dreg, MONO_STRUCT_OFFSET (MonoTypedRef, value), sp [0]->dreg);
12134
12135                         EMIT_NEW_TEMPLOAD (cfg, ins, loc->inst_c0);
12136                         ins->type = STACK_VTYPE;
12137                         ins->klass = mono_defaults.typed_reference_class;
12138                         *sp++ = ins;
12139                         ip += 5;
12140                         break;
12141                 }
12142                 case CEE_LDTOKEN: {
12143                         gpointer handle;
12144                         MonoClass *handle_class;
12145
12146                         CHECK_STACK_OVF (1);
12147
12148                         CHECK_OPSIZE (5);
12149                         n = read32 (ip + 1);
12150
12151                         if (method->wrapper_type == MONO_WRAPPER_DYNAMIC_METHOD ||
12152                                         method->wrapper_type == MONO_WRAPPER_SYNCHRONIZED) {
12153                                 handle = mono_method_get_wrapper_data (method, n);
12154                                 handle_class = (MonoClass *)mono_method_get_wrapper_data (method, n + 1);
12155                                 if (handle_class == mono_defaults.typehandle_class)
12156                                         handle = &((MonoClass*)handle)->byval_arg;
12157                         }
12158                         else {
12159                                 handle = mono_ldtoken_checked (image, n, &handle_class, generic_context, &cfg->error);
12160                                 CHECK_CFG_ERROR;
12161                         }
12162                         if (!handle)
12163                                 LOAD_ERROR;
12164                         mono_class_init (handle_class);
12165                         if (cfg->gshared) {
12166                                 if (mono_metadata_token_table (n) == MONO_TABLE_TYPEDEF ||
12167                                                 mono_metadata_token_table (n) == MONO_TABLE_TYPEREF) {
12168                                         /* This case handles ldtoken
12169                                            of an open type, like for
12170                                            typeof(Gen<>). */
12171                                         context_used = 0;
12172                                 } else if (handle_class == mono_defaults.typehandle_class) {
12173                                         context_used = mini_class_check_context_used (cfg, mono_class_from_mono_type ((MonoType *)handle));
12174                                 } else if (handle_class == mono_defaults.fieldhandle_class)
12175                                         context_used = mini_class_check_context_used (cfg, ((MonoClassField*)handle)->parent);
12176                                 else if (handle_class == mono_defaults.methodhandle_class)
12177                                         context_used = mini_method_check_context_used (cfg, (MonoMethod *)handle);
12178                                 else
12179                                         g_assert_not_reached ();
12180                         }
12181
12182                         if ((cfg->opt & MONO_OPT_SHARED) &&
12183                                         method->wrapper_type != MONO_WRAPPER_DYNAMIC_METHOD &&
12184                                         method->wrapper_type != MONO_WRAPPER_SYNCHRONIZED) {
12185                                 MonoInst *addr, *vtvar, *iargs [3];
12186                                 int method_context_used;
12187
12188                                 method_context_used = mini_method_check_context_used (cfg, method);
12189
12190                                 vtvar = mono_compile_create_var (cfg, &handle_class->byval_arg, OP_LOCAL); 
12191
12192                                 EMIT_NEW_IMAGECONST (cfg, iargs [0], image);
12193                                 EMIT_NEW_ICONST (cfg, iargs [1], n);
12194                                 if (method_context_used) {
12195                                         iargs [2] = emit_get_rgctx_method (cfg, method_context_used,
12196                                                 method, MONO_RGCTX_INFO_METHOD);
12197                                         ins = mono_emit_jit_icall (cfg, mono_ldtoken_wrapper_generic_shared, iargs);
12198                                 } else {
12199                                         EMIT_NEW_PCONST (cfg, iargs [2], generic_context);
12200                                         ins = mono_emit_jit_icall (cfg, mono_ldtoken_wrapper, iargs);
12201                                 }
12202                                 EMIT_NEW_TEMPLOADA (cfg, addr, vtvar->inst_c0);
12203
12204                                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STORE_MEMBASE_REG, addr->dreg, 0, ins->dreg);
12205
12206                                 EMIT_NEW_TEMPLOAD (cfg, ins, vtvar->inst_c0);
12207                         } else {
12208                                 if ((ip + 5 < end) && ip_in_bb (cfg, cfg->cbb, ip + 5) && 
12209                                         ((ip [5] == CEE_CALL) || (ip [5] == CEE_CALLVIRT)) && 
12210                                         (cmethod = mini_get_method (cfg, method, read32 (ip + 6), NULL, generic_context)) &&
12211                                         (cmethod->klass == mono_defaults.systemtype_class) &&
12212                                         (strcmp (cmethod->name, "GetTypeFromHandle") == 0)) {
12213                                         MonoClass *tclass = mono_class_from_mono_type ((MonoType *)handle);
12214
12215                                         mono_class_init (tclass);
12216                                         if (context_used) {
12217                                                 ins = emit_get_rgctx_klass (cfg, context_used,
12218                                                         tclass, MONO_RGCTX_INFO_REFLECTION_TYPE);
12219                                         } else if (cfg->compile_aot) {
12220                                                 if (method->wrapper_type) {
12221                                                         mono_error_init (&error); //got to do it since there are multiple conditionals below
12222                                                         if (mono_class_get_checked (tclass->image, tclass->type_token, &error) == tclass && !generic_context) {
12223                                                                 /* Special case for static synchronized wrappers */
12224                                                                 EMIT_NEW_TYPE_FROM_HANDLE_CONST (cfg, ins, tclass->image, tclass->type_token, generic_context);
12225                                                         } else {
12226                                                                 mono_error_cleanup (&error); /* FIXME don't swallow the error */
12227                                                                 /* FIXME: n is not a normal token */
12228                                                                 DISABLE_AOT (cfg);
12229                                                                 EMIT_NEW_PCONST (cfg, ins, NULL);
12230                                                         }
12231                                                 } else {
12232                                                         EMIT_NEW_TYPE_FROM_HANDLE_CONST (cfg, ins, image, n, generic_context);
12233                                                 }
12234                                         } else {
12235                                                 MonoReflectionType *rt = mono_type_get_object_checked (cfg->domain, (MonoType *)handle, &cfg->error);
12236                                                 CHECK_CFG_ERROR;
12237                                                 EMIT_NEW_PCONST (cfg, ins, rt);
12238                                         }
12239                                         ins->type = STACK_OBJ;
12240                                         ins->klass = cmethod->klass;
12241                                         ip += 5;
12242                                 } else {
12243                                         MonoInst *addr, *vtvar;
12244
12245                                         vtvar = mono_compile_create_var (cfg, &handle_class->byval_arg, OP_LOCAL);
12246
12247                                         if (context_used) {
12248                                                 if (handle_class == mono_defaults.typehandle_class) {
12249                                                         ins = emit_get_rgctx_klass (cfg, context_used,
12250                                                                         mono_class_from_mono_type ((MonoType *)handle),
12251                                                                         MONO_RGCTX_INFO_TYPE);
12252                                                 } else if (handle_class == mono_defaults.methodhandle_class) {
12253                                                         ins = emit_get_rgctx_method (cfg, context_used,
12254                                                                         (MonoMethod *)handle, MONO_RGCTX_INFO_METHOD);
12255                                                 } else if (handle_class == mono_defaults.fieldhandle_class) {
12256                                                         ins = emit_get_rgctx_field (cfg, context_used,
12257                                                                         (MonoClassField *)handle, MONO_RGCTX_INFO_CLASS_FIELD);
12258                                                 } else {
12259                                                         g_assert_not_reached ();
12260                                                 }
12261                                         } else if (cfg->compile_aot) {
12262                                                 EMIT_NEW_LDTOKENCONST (cfg, ins, image, n, generic_context);
12263                                         } else {
12264                                                 EMIT_NEW_PCONST (cfg, ins, handle);
12265                                         }
12266                                         EMIT_NEW_TEMPLOADA (cfg, addr, vtvar->inst_c0);
12267                                         MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STORE_MEMBASE_REG, addr->dreg, 0, ins->dreg);
12268                                         EMIT_NEW_TEMPLOAD (cfg, ins, vtvar->inst_c0);
12269                                 }
12270                         }
12271
12272                         *sp++ = ins;
12273                         ip += 5;
12274                         break;
12275                 }
12276                 case CEE_THROW:
12277                         CHECK_STACK (1);
12278                         MONO_INST_NEW (cfg, ins, OP_THROW);
12279                         --sp;
12280                         ins->sreg1 = sp [0]->dreg;
12281                         ip++;
12282                         cfg->cbb->out_of_line = TRUE;
12283                         MONO_ADD_INS (cfg->cbb, ins);
12284                         MONO_INST_NEW (cfg, ins, OP_NOT_REACHED);
12285                         MONO_ADD_INS (cfg->cbb, ins);
12286                         sp = stack_start;
12287                         
12288                         link_bblock (cfg, cfg->cbb, end_bblock);
12289                         start_new_bblock = 1;
12290                         /* This can complicate code generation for llvm since the return value might not be defined */
12291                         if (COMPILE_LLVM (cfg))
12292                                 INLINE_FAILURE ("throw");
12293                         break;
12294                 case CEE_ENDFINALLY:
12295                         if (!ip_in_finally_clause (cfg, ip - header->code))
12296                                 UNVERIFIED;
12297                         /* mono_save_seq_point_info () depends on this */
12298                         if (sp != stack_start)
12299                                 emit_seq_point (cfg, method, ip, FALSE, FALSE);
12300                         MONO_INST_NEW (cfg, ins, OP_ENDFINALLY);
12301                         MONO_ADD_INS (cfg->cbb, ins);
12302                         ip++;
12303                         start_new_bblock = 1;
12304
12305                         /*
12306                          * Control will leave the method so empty the stack, otherwise
12307                          * the next basic block will start with a nonempty stack.
12308                          */
12309                         while (sp != stack_start) {
12310                                 sp--;
12311                         }
12312                         break;
12313                 case CEE_LEAVE:
12314                 case CEE_LEAVE_S: {
12315                         GList *handlers;
12316
12317                         if (*ip == CEE_LEAVE) {
12318                                 CHECK_OPSIZE (5);
12319                                 target = ip + 5 + (gint32)read32(ip + 1);
12320                         } else {
12321                                 CHECK_OPSIZE (2);
12322                                 target = ip + 2 + (signed char)(ip [1]);
12323                         }
12324
12325                         /* empty the stack */
12326                         while (sp != stack_start) {
12327                                 sp--;
12328                         }
12329
12330                         /* 
12331                          * If this leave statement is in a catch block, check for a
12332                          * pending exception, and rethrow it if necessary.
12333                          * We avoid doing this in runtime invoke wrappers, since those are called
12334                          * by native code which excepts the wrapper to catch all exceptions.
12335                          */
12336                         for (i = 0; i < header->num_clauses; ++i) {
12337                                 MonoExceptionClause *clause = &header->clauses [i];
12338
12339                                 /* 
12340                                  * Use <= in the final comparison to handle clauses with multiple
12341                                  * leave statements, like in bug #78024.
12342                                  * The ordering of the exception clauses guarantees that we find the
12343                                  * innermost clause.
12344                                  */
12345                                 if (MONO_OFFSET_IN_HANDLER (clause, ip - header->code) && (clause->flags == MONO_EXCEPTION_CLAUSE_NONE) && (ip - header->code + ((*ip == CEE_LEAVE) ? 5 : 2)) <= (clause->handler_offset + clause->handler_len) && method->wrapper_type != MONO_WRAPPER_RUNTIME_INVOKE) {
12346                                         MonoInst *exc_ins;
12347                                         MonoBasicBlock *dont_throw;
12348
12349                                         /*
12350                                           MonoInst *load;
12351
12352                                           NEW_TEMPLOAD (cfg, load, mono_find_exvar_for_offset (cfg, clause->handler_offset)->inst_c0);
12353                                         */
12354
12355                                         exc_ins = mono_emit_jit_icall (cfg, mono_thread_get_undeniable_exception, NULL);
12356
12357                                         NEW_BBLOCK (cfg, dont_throw);
12358
12359                                         /*
12360                                          * Currently, we always rethrow the abort exception, despite the 
12361                                          * fact that this is not correct. See thread6.cs for an example. 
12362                                          * But propagating the abort exception is more important than 
12363                                          * getting the sematics right.
12364                                          */
12365                                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, exc_ins->dreg, 0);
12366                                         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBEQ, dont_throw);
12367                                         MONO_EMIT_NEW_UNALU (cfg, OP_THROW, -1, exc_ins->dreg);
12368
12369                                         MONO_START_BB (cfg, dont_throw);
12370                                 }
12371                         }
12372
12373 #ifdef ENABLE_LLVM
12374                         cfg->cbb->try_end = (intptr_t)(ip - header->code);
12375 #endif
12376
12377                         if ((handlers = mono_find_final_block (cfg, ip, target, MONO_EXCEPTION_CLAUSE_FINALLY))) {
12378                                 GList *tmp;
12379                                 MonoExceptionClause *clause;
12380
12381                                 for (tmp = handlers; tmp; tmp = tmp->next) {
12382                                         clause = (MonoExceptionClause *)tmp->data;
12383                                         tblock = cfg->cil_offset_to_bb [clause->handler_offset];
12384                                         g_assert (tblock);
12385                                         link_bblock (cfg, cfg->cbb, tblock);
12386                                         MONO_INST_NEW (cfg, ins, OP_CALL_HANDLER);
12387                                         ins->inst_target_bb = tblock;
12388                                         ins->inst_eh_block = clause;
12389                                         MONO_ADD_INS (cfg->cbb, ins);
12390                                         cfg->cbb->has_call_handler = 1;
12391                                         if (COMPILE_LLVM (cfg)) {
12392                                                 MonoBasicBlock *target_bb;
12393
12394                                                 /* 
12395                                                  * Link the finally bblock with the target, since it will
12396                                                  * conceptually branch there.
12397                                                  */
12398                                                 GET_BBLOCK (cfg, tblock, cfg->cil_start + clause->handler_offset + clause->handler_len - 1);
12399                                                 GET_BBLOCK (cfg, target_bb, target);
12400                                                 link_bblock (cfg, tblock, target_bb);
12401                                         }
12402                                 }
12403                                 g_list_free (handlers);
12404                         } 
12405
12406                         MONO_INST_NEW (cfg, ins, OP_BR);
12407                         MONO_ADD_INS (cfg->cbb, ins);
12408                         GET_BBLOCK (cfg, tblock, target);
12409                         link_bblock (cfg, cfg->cbb, tblock);
12410                         ins->inst_target_bb = tblock;
12411
12412                         start_new_bblock = 1;
12413
12414                         if (*ip == CEE_LEAVE)
12415                                 ip += 5;
12416                         else
12417                                 ip += 2;
12418
12419                         break;
12420                 }
12421
12422                         /*
12423                          * Mono specific opcodes
12424                          */
12425                 case MONO_CUSTOM_PREFIX: {
12426
12427                         g_assert (method->wrapper_type != MONO_WRAPPER_NONE);
12428
12429                         CHECK_OPSIZE (2);
12430                         switch (ip [1]) {
12431                         case CEE_MONO_ICALL: {
12432                                 gpointer func;
12433                                 MonoJitICallInfo *info;
12434
12435                                 token = read32 (ip + 2);
12436                                 func = mono_method_get_wrapper_data (method, token);
12437                                 info = mono_find_jit_icall_by_addr (func);
12438                                 if (!info)
12439                                         g_error ("Could not find icall address in wrapper %s", mono_method_full_name (method, 1));
12440                                 g_assert (info);
12441
12442                                 CHECK_STACK (info->sig->param_count);
12443                                 sp -= info->sig->param_count;
12444
12445                                 ins = mono_emit_jit_icall (cfg, info->func, sp);
12446                                 if (!MONO_TYPE_IS_VOID (info->sig->ret))
12447                                         *sp++ = ins;
12448
12449                                 ip += 6;
12450                                 inline_costs += 10 * num_calls++;
12451
12452                                 break;
12453                         }
12454                         case CEE_MONO_LDPTR_CARD_TABLE:
12455                         case CEE_MONO_LDPTR_NURSERY_START:
12456                         case CEE_MONO_LDPTR_NURSERY_BITS:
12457                         case CEE_MONO_LDPTR_INT_REQ_FLAG: {
12458                                 CHECK_STACK_OVF (1);
12459
12460                                 switch (ip [1]) {
12461                                         case CEE_MONO_LDPTR_CARD_TABLE:
12462                                                 ins = emit_runtime_constant (cfg, MONO_PATCH_INFO_GC_CARD_TABLE_ADDR, NULL);
12463                                                 break;
12464                                         case CEE_MONO_LDPTR_NURSERY_START:
12465                                                 ins = emit_runtime_constant (cfg, MONO_PATCH_INFO_GC_NURSERY_START, NULL);
12466                                                 break;
12467                                         case CEE_MONO_LDPTR_NURSERY_BITS:
12468                                                 ins = emit_runtime_constant (cfg, MONO_PATCH_INFO_GC_NURSERY_BITS, NULL);
12469                                                 break;
12470                                         case CEE_MONO_LDPTR_INT_REQ_FLAG:
12471                                                 ins = emit_runtime_constant (cfg, MONO_PATCH_INFO_INTERRUPTION_REQUEST_FLAG, NULL);
12472                                                 break;
12473                                 }
12474
12475                                 *sp++ = ins;
12476                                 ip += 2;
12477                                 inline_costs += 10 * num_calls++;
12478                                 break;
12479                         }
12480                         case CEE_MONO_LDPTR: {
12481                                 gpointer ptr;
12482
12483                                 CHECK_STACK_OVF (1);
12484                                 CHECK_OPSIZE (6);
12485                                 token = read32 (ip + 2);
12486
12487                                 ptr = mono_method_get_wrapper_data (method, token);
12488                                 EMIT_NEW_PCONST (cfg, ins, ptr);
12489                                 *sp++ = ins;
12490                                 ip += 6;
12491                                 inline_costs += 10 * num_calls++;
12492                                 /* Can't embed random pointers into AOT code */
12493                                 DISABLE_AOT (cfg);
12494                                 break;
12495                         }
12496                         case CEE_MONO_JIT_ICALL_ADDR: {
12497                                 MonoJitICallInfo *callinfo;
12498                                 gpointer ptr;
12499
12500                                 CHECK_STACK_OVF (1);
12501                                 CHECK_OPSIZE (6);
12502                                 token = read32 (ip + 2);
12503
12504                                 ptr = mono_method_get_wrapper_data (method, token);
12505                                 callinfo = mono_find_jit_icall_by_addr (ptr);
12506                                 g_assert (callinfo);
12507                                 EMIT_NEW_JIT_ICALL_ADDRCONST (cfg, ins, (char*)callinfo->name);
12508                                 *sp++ = ins;
12509                                 ip += 6;
12510                                 inline_costs += 10 * num_calls++;
12511                                 break;
12512                         }
12513                         case CEE_MONO_ICALL_ADDR: {
12514                                 MonoMethod *cmethod;
12515                                 gpointer ptr;
12516
12517                                 CHECK_STACK_OVF (1);
12518                                 CHECK_OPSIZE (6);
12519                                 token = read32 (ip + 2);
12520
12521                                 cmethod = (MonoMethod *)mono_method_get_wrapper_data (method, token);
12522
12523                                 if (cfg->compile_aot) {
12524                                         EMIT_NEW_AOTCONST (cfg, ins, MONO_PATCH_INFO_ICALL_ADDR, cmethod);
12525                                 } else {
12526                                         ptr = mono_lookup_internal_call (cmethod);
12527                                         g_assert (ptr);
12528                                         EMIT_NEW_PCONST (cfg, ins, ptr);
12529                                 }
12530                                 *sp++ = ins;
12531                                 ip += 6;
12532                                 break;
12533                         }
12534                         case CEE_MONO_VTADDR: {
12535                                 MonoInst *src_var, *src;
12536
12537                                 CHECK_STACK (1);
12538                                 --sp;
12539
12540                                 // FIXME:
12541                                 src_var = get_vreg_to_inst (cfg, sp [0]->dreg);
12542                                 EMIT_NEW_VARLOADA ((cfg), (src), src_var, src_var->inst_vtype);
12543                                 *sp++ = src;
12544                                 ip += 2;
12545                                 break;
12546                         }
12547                         case CEE_MONO_NEWOBJ: {
12548                                 MonoInst *iargs [2];
12549
12550                                 CHECK_STACK_OVF (1);
12551                                 CHECK_OPSIZE (6);
12552                                 token = read32 (ip + 2);
12553                                 klass = (MonoClass *)mono_method_get_wrapper_data (method, token);
12554                                 mono_class_init (klass);
12555                                 NEW_DOMAINCONST (cfg, iargs [0]);
12556                                 MONO_ADD_INS (cfg->cbb, iargs [0]);
12557                                 NEW_CLASSCONST (cfg, iargs [1], klass);
12558                                 MONO_ADD_INS (cfg->cbb, iargs [1]);
12559                                 *sp++ = mono_emit_jit_icall (cfg, ves_icall_object_new, iargs);
12560                                 ip += 6;
12561                                 inline_costs += 10 * num_calls++;
12562                                 break;
12563                         }
12564                         case CEE_MONO_OBJADDR:
12565                                 CHECK_STACK (1);
12566                                 --sp;
12567                                 MONO_INST_NEW (cfg, ins, OP_MOVE);
12568                                 ins->dreg = alloc_ireg_mp (cfg);
12569                                 ins->sreg1 = sp [0]->dreg;
12570                                 ins->type = STACK_MP;
12571                                 MONO_ADD_INS (cfg->cbb, ins);
12572                                 *sp++ = ins;
12573                                 ip += 2;
12574                                 break;
12575                         case CEE_MONO_LDNATIVEOBJ:
12576                                 /*
12577                                  * Similar to LDOBJ, but instead load the unmanaged 
12578                                  * representation of the vtype to the stack.
12579                                  */
12580                                 CHECK_STACK (1);
12581                                 CHECK_OPSIZE (6);
12582                                 --sp;
12583                                 token = read32 (ip + 2);
12584                                 klass = (MonoClass *)mono_method_get_wrapper_data (method, token);
12585                                 g_assert (klass->valuetype);
12586                                 mono_class_init (klass);
12587
12588                                 {
12589                                         MonoInst *src, *dest, *temp;
12590
12591                                         src = sp [0];
12592                                         temp = mono_compile_create_var (cfg, &klass->byval_arg, OP_LOCAL);
12593                                         temp->backend.is_pinvoke = 1;
12594                                         EMIT_NEW_TEMPLOADA (cfg, dest, temp->inst_c0);
12595                                         mini_emit_stobj (cfg, dest, src, klass, TRUE);
12596
12597                                         EMIT_NEW_TEMPLOAD (cfg, dest, temp->inst_c0);
12598                                         dest->type = STACK_VTYPE;
12599                                         dest->klass = klass;
12600
12601                                         *sp ++ = dest;
12602                                         ip += 6;
12603                                 }
12604                                 break;
12605                         case CEE_MONO_RETOBJ: {
12606                                 /*
12607                                  * Same as RET, but return the native representation of a vtype
12608                                  * to the caller.
12609                                  */
12610                                 g_assert (cfg->ret);
12611                                 g_assert (mono_method_signature (method)->pinvoke); 
12612                                 CHECK_STACK (1);
12613                                 --sp;
12614                                 
12615                                 CHECK_OPSIZE (6);
12616                                 token = read32 (ip + 2);    
12617                                 klass = (MonoClass *)mono_method_get_wrapper_data (method, token);
12618
12619                                 if (!cfg->vret_addr) {
12620                                         g_assert (cfg->ret_var_is_local);
12621
12622                                         EMIT_NEW_VARLOADA (cfg, ins, cfg->ret, cfg->ret->inst_vtype);
12623                                 } else {
12624                                         EMIT_NEW_RETLOADA (cfg, ins);
12625                                 }
12626                                 mini_emit_stobj (cfg, ins, sp [0], klass, TRUE);
12627                                 
12628                                 if (sp != stack_start)
12629                                         UNVERIFIED;
12630                                 
12631                                 MONO_INST_NEW (cfg, ins, OP_BR);
12632                                 ins->inst_target_bb = end_bblock;
12633                                 MONO_ADD_INS (cfg->cbb, ins);
12634                                 link_bblock (cfg, cfg->cbb, end_bblock);
12635                                 start_new_bblock = 1;
12636                                 ip += 6;
12637                                 break;
12638                         }
12639                         case CEE_MONO_CISINST:
12640                         case CEE_MONO_CCASTCLASS: {
12641                                 int token;
12642                                 CHECK_STACK (1);
12643                                 --sp;
12644                                 CHECK_OPSIZE (6);
12645                                 token = read32 (ip + 2);
12646                                 klass = (MonoClass *)mono_method_get_wrapper_data (method, token);
12647                                 if (ip [1] == CEE_MONO_CISINST)
12648                                         ins = handle_cisinst (cfg, klass, sp [0]);
12649                                 else
12650                                         ins = handle_ccastclass (cfg, klass, sp [0]);
12651                                 *sp++ = ins;
12652                                 ip += 6;
12653                                 break;
12654                         }
12655                         case CEE_MONO_SAVE_LMF:
12656                         case CEE_MONO_RESTORE_LMF:
12657                                 ip += 2;
12658                                 break;
12659                         case CEE_MONO_CLASSCONST:
12660                                 CHECK_STACK_OVF (1);
12661                                 CHECK_OPSIZE (6);
12662                                 token = read32 (ip + 2);
12663                                 EMIT_NEW_CLASSCONST (cfg, ins, mono_method_get_wrapper_data (method, token));
12664                                 *sp++ = ins;
12665                                 ip += 6;
12666                                 inline_costs += 10 * num_calls++;
12667                                 break;
12668                         case CEE_MONO_NOT_TAKEN:
12669                                 cfg->cbb->out_of_line = TRUE;
12670                                 ip += 2;
12671                                 break;
12672                         case CEE_MONO_TLS: {
12673                                 MonoTlsKey key;
12674
12675                                 CHECK_STACK_OVF (1);
12676                                 CHECK_OPSIZE (6);
12677                                 key = (MonoTlsKey)read32 (ip + 2);
12678                                 g_assert (key < TLS_KEY_NUM);
12679
12680                                 ins = mono_create_tls_get (cfg, key);
12681                                 if (!ins) {
12682                                         if (cfg->compile_aot) {
12683                                                 DISABLE_AOT (cfg);
12684                                                 MONO_INST_NEW (cfg, ins, OP_TLS_GET);
12685                                                 ins->dreg = alloc_preg (cfg);
12686                                                 ins->type = STACK_PTR;
12687                                         } else {
12688                                                 g_assert_not_reached ();
12689                                         }
12690                                 }
12691                                 ins->type = STACK_PTR;
12692                                 MONO_ADD_INS (cfg->cbb, ins);
12693                                 *sp++ = ins;
12694                                 ip += 6;
12695                                 break;
12696                         }
12697                         case CEE_MONO_DYN_CALL: {
12698                                 MonoCallInst *call;
12699
12700                                 /* It would be easier to call a trampoline, but that would put an
12701                                  * extra frame on the stack, confusing exception handling. So
12702                                  * implement it inline using an opcode for now.
12703                                  */
12704
12705                                 if (!cfg->dyn_call_var) {
12706                                         cfg->dyn_call_var = mono_compile_create_var (cfg, &mono_defaults.int_class->byval_arg, OP_LOCAL);
12707                                         /* prevent it from being register allocated */
12708                                         cfg->dyn_call_var->flags |= MONO_INST_VOLATILE;
12709                                 }
12710
12711                                 /* Has to use a call inst since it local regalloc expects it */
12712                                 MONO_INST_NEW_CALL (cfg, call, OP_DYN_CALL);
12713                                 ins = (MonoInst*)call;
12714                                 sp -= 2;
12715                                 ins->sreg1 = sp [0]->dreg;
12716                                 ins->sreg2 = sp [1]->dreg;
12717                                 MONO_ADD_INS (cfg->cbb, ins);
12718
12719                                 cfg->param_area = MAX (cfg->param_area, cfg->backend->dyn_call_param_area);
12720
12721                                 ip += 2;
12722                                 inline_costs += 10 * num_calls++;
12723
12724                                 break;
12725                         }
12726                         case CEE_MONO_MEMORY_BARRIER: {
12727                                 CHECK_OPSIZE (6);
12728                                 emit_memory_barrier (cfg, (int)read32 (ip + 2));
12729                                 ip += 6;
12730                                 break;
12731                         }
12732                         case CEE_MONO_ATOMIC_STORE_I4: {
12733                                 g_assert (mono_arch_opcode_supported (OP_ATOMIC_STORE_I4));
12734
12735                                 CHECK_OPSIZE (6);
12736                                 CHECK_STACK (2);
12737                                 sp -= 2;
12738
12739                                 MONO_INST_NEW (cfg, ins, OP_ATOMIC_STORE_I4);
12740                                 ins->dreg = sp [0]->dreg;
12741                                 ins->sreg1 = sp [1]->dreg;
12742                                 ins->backend.memory_barrier_kind = (int) read32 (ip + 2);
12743                                 MONO_ADD_INS (cfg->cbb, ins);
12744
12745                                 ip += 6;
12746                                 break;
12747                         }
12748                         case CEE_MONO_JIT_ATTACH: {
12749                                 MonoInst *args [16], *domain_ins;
12750                                 MonoInst *ad_ins, *jit_tls_ins;
12751                                 MonoBasicBlock *next_bb = NULL, *call_bb = NULL;
12752
12753                                 g_assert (!mono_threads_is_coop_enabled ());
12754
12755                                 cfg->orig_domain_var = mono_compile_create_var (cfg, &mono_defaults.int_class->byval_arg, OP_LOCAL);
12756
12757                                 EMIT_NEW_PCONST (cfg, ins, NULL);
12758                                 MONO_EMIT_NEW_UNALU (cfg, OP_MOVE, cfg->orig_domain_var->dreg, ins->dreg);
12759
12760                                 ad_ins = mono_get_domain_intrinsic (cfg);
12761                                 jit_tls_ins = mono_get_jit_tls_intrinsic (cfg);
12762
12763                                 if (cfg->backend->have_tls_get && ad_ins && jit_tls_ins) {
12764                                         NEW_BBLOCK (cfg, next_bb);
12765                                         NEW_BBLOCK (cfg, call_bb);
12766
12767                                         if (cfg->compile_aot) {
12768                                                 /* AOT code is only used in the root domain */
12769                                                 EMIT_NEW_PCONST (cfg, domain_ins, NULL);
12770                                         } else {
12771                                                 EMIT_NEW_PCONST (cfg, domain_ins, cfg->domain);
12772                                         }
12773                                         MONO_ADD_INS (cfg->cbb, ad_ins);
12774                                         MONO_EMIT_NEW_BIALU (cfg, OP_COMPARE, -1, ad_ins->dreg, domain_ins->dreg);
12775                                         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBNE_UN, call_bb);
12776
12777                                         MONO_ADD_INS (cfg->cbb, jit_tls_ins);
12778                                         MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, jit_tls_ins->dreg, 0);
12779                                         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBEQ, call_bb);
12780
12781                                         MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, next_bb);
12782                                         MONO_START_BB (cfg, call_bb);
12783                                 }
12784
12785                                 /* AOT code is only used in the root domain */
12786                                 EMIT_NEW_PCONST (cfg, args [0], cfg->compile_aot ? NULL : cfg->domain);
12787                                 ins = mono_emit_jit_icall (cfg, mono_jit_thread_attach, args);
12788                                 MONO_EMIT_NEW_UNALU (cfg, OP_MOVE, cfg->orig_domain_var->dreg, ins->dreg);
12789
12790                                 if (next_bb)
12791                                         MONO_START_BB (cfg, next_bb);
12792
12793
12794                                 ip += 2;
12795                                 break;
12796                         }
12797                         case CEE_MONO_JIT_DETACH: {
12798                                 MonoInst *args [16];
12799
12800                                 /* Restore the original domain */
12801                                 dreg = alloc_ireg (cfg);
12802                                 EMIT_NEW_UNALU (cfg, args [0], OP_MOVE, dreg, cfg->orig_domain_var->dreg);
12803                                 mono_emit_jit_icall (cfg, mono_jit_set_domain, args);
12804                                 ip += 2;
12805                                 break;
12806                         }
12807                         case CEE_MONO_CALLI_EXTRA_ARG: {
12808                                 MonoInst *addr;
12809                                 MonoMethodSignature *fsig;
12810                                 MonoInst *arg;
12811
12812                                 /*
12813                                  * This is the same as CEE_CALLI, but passes an additional argument
12814                                  * to the called method in llvmonly mode.
12815                                  * This is only used by delegate invoke wrappers to call the
12816                                  * actual delegate method.
12817                                  */
12818                                 g_assert (method->wrapper_type == MONO_WRAPPER_DELEGATE_INVOKE);
12819
12820                                 CHECK_OPSIZE (6);
12821                                 token = read32 (ip + 2);
12822
12823                                 ins = NULL;
12824
12825                                 cmethod = NULL;
12826                                 CHECK_STACK (1);
12827                                 --sp;
12828                                 addr = *sp;
12829                                 fsig = mini_get_signature (method, token, generic_context, &cfg->error);
12830                                 CHECK_CFG_ERROR;
12831
12832                                 if (cfg->llvm_only)
12833                                         cfg->signatures = g_slist_prepend_mempool (cfg->mempool, cfg->signatures, fsig);
12834
12835                                 n = fsig->param_count + fsig->hasthis + 1;
12836
12837                                 CHECK_STACK (n);
12838
12839                                 sp -= n;
12840                                 arg = sp [n - 1];
12841
12842                                 if (cfg->llvm_only) {
12843                                         /*
12844                                          * The lowest bit of 'arg' determines whenever the callee uses the gsharedvt
12845                                          * cconv. This is set by mono_init_delegate ().
12846                                          */
12847                                         if (cfg->gsharedvt && mini_is_gsharedvt_variable_signature (fsig)) {
12848                                                 MonoInst *callee = addr;
12849                                                 MonoInst *call, *localloc_ins;
12850                                                 MonoBasicBlock *is_gsharedvt_bb, *end_bb;
12851                                                 int low_bit_reg = alloc_preg (cfg);
12852
12853                                                 NEW_BBLOCK (cfg, is_gsharedvt_bb);
12854                                                 NEW_BBLOCK (cfg, end_bb);
12855
12856                                                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_PAND_IMM, low_bit_reg, arg->dreg, 1);
12857                                                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, low_bit_reg, 0);
12858                                                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBNE_UN, is_gsharedvt_bb);
12859
12860                                                 /* Normal case: callee uses a normal cconv, have to add an out wrapper */
12861                                                 addr = emit_get_rgctx_sig (cfg, context_used,
12862                                                                                                    fsig, MONO_RGCTX_INFO_SIG_GSHAREDVT_OUT_TRAMPOLINE_CALLI);
12863                                                 /*
12864                                                  * ADDR points to a gsharedvt-out wrapper, have to pass <callee, arg> as an extra arg.
12865                                                  */
12866                                                 MONO_INST_NEW (cfg, ins, OP_LOCALLOC_IMM);
12867                                                 ins->dreg = alloc_preg (cfg);
12868                                                 ins->inst_imm = 2 * SIZEOF_VOID_P;
12869                                                 MONO_ADD_INS (cfg->cbb, ins);
12870                                                 localloc_ins = ins;
12871                                                 cfg->flags |= MONO_CFG_HAS_ALLOCA;
12872                                                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STORE_MEMBASE_REG, localloc_ins->dreg, 0, callee->dreg);
12873                                                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STORE_MEMBASE_REG, localloc_ins->dreg, SIZEOF_VOID_P, arg->dreg);
12874
12875                                                 call = emit_extra_arg_calli (cfg, fsig, sp, localloc_ins->dreg, addr);
12876                                                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
12877
12878                                                 /* Gsharedvt case: callee uses a gsharedvt cconv, no conversion is needed */
12879                                                 MONO_START_BB (cfg, is_gsharedvt_bb);
12880                                                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_PXOR_IMM, arg->dreg, arg->dreg, 1);
12881                                                 ins = emit_extra_arg_calli (cfg, fsig, sp, arg->dreg, callee);
12882                                                 ins->dreg = call->dreg;
12883
12884                                                 MONO_START_BB (cfg, end_bb);
12885                                         } else {
12886                                                 /* Caller uses a normal calling conv */
12887
12888                                                 MonoInst *callee = addr;
12889                                                 MonoInst *call, *localloc_ins;
12890                                                 MonoBasicBlock *is_gsharedvt_bb, *end_bb;
12891                                                 int low_bit_reg = alloc_preg (cfg);
12892
12893                                                 NEW_BBLOCK (cfg, is_gsharedvt_bb);
12894                                                 NEW_BBLOCK (cfg, end_bb);
12895
12896                                                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_PAND_IMM, low_bit_reg, arg->dreg, 1);
12897                                                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, low_bit_reg, 0);
12898                                                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBNE_UN, is_gsharedvt_bb);
12899
12900                                                 /* Normal case: callee uses a normal cconv, no conversion is needed */
12901                                                 call = emit_extra_arg_calli (cfg, fsig, sp, arg->dreg, callee);
12902                                                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
12903                                                 /* Gsharedvt case: callee uses a gsharedvt cconv, have to add an in wrapper */
12904                                                 MONO_START_BB (cfg, is_gsharedvt_bb);
12905                                                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_PXOR_IMM, arg->dreg, arg->dreg, 1);
12906                                                 NEW_AOTCONST (cfg, addr, MONO_PATCH_INFO_GSHAREDVT_IN_WRAPPER, fsig);
12907                                                 MONO_ADD_INS (cfg->cbb, addr);
12908                                                 /*
12909                                                  * ADDR points to a gsharedvt-in wrapper, have to pass <callee, arg> as an extra arg.
12910                                                  */
12911                                                 MONO_INST_NEW (cfg, ins, OP_LOCALLOC_IMM);
12912                                                 ins->dreg = alloc_preg (cfg);
12913                                                 ins->inst_imm = 2 * SIZEOF_VOID_P;
12914                                                 MONO_ADD_INS (cfg->cbb, ins);
12915                                                 localloc_ins = ins;
12916                                                 cfg->flags |= MONO_CFG_HAS_ALLOCA;
12917                                                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STORE_MEMBASE_REG, localloc_ins->dreg, 0, callee->dreg);
12918                                                 MONO_EMIT_NEW_STORE_MEMBASE (cfg, OP_STORE_MEMBASE_REG, localloc_ins->dreg, SIZEOF_VOID_P, arg->dreg);
12919
12920                                                 ins = emit_extra_arg_calli (cfg, fsig, sp, localloc_ins->dreg, addr);
12921                                                 ins->dreg = call->dreg;
12922                                                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
12923
12924                                                 MONO_START_BB (cfg, end_bb);
12925                                         }
12926                                 } else {
12927                                         /* Same as CEE_CALLI */
12928                                         if (cfg->gsharedvt && mini_is_gsharedvt_signature (fsig)) {
12929                                                 /*
12930                                                  * We pass the address to the gsharedvt trampoline in the rgctx reg
12931                                                  */
12932                                                 MonoInst *callee = addr;
12933
12934                                                 addr = emit_get_rgctx_sig (cfg, context_used,
12935                                                                                                    fsig, MONO_RGCTX_INFO_SIG_GSHAREDVT_OUT_TRAMPOLINE_CALLI);
12936                                                 ins = (MonoInst*)mono_emit_calli (cfg, fsig, sp, addr, NULL, callee);
12937                                         } else {
12938                                                 ins = (MonoInst*)mono_emit_calli (cfg, fsig, sp, addr, NULL, NULL);
12939                                         }
12940                                 }
12941
12942                                 if (!MONO_TYPE_IS_VOID (fsig->ret))
12943                                         *sp++ = mono_emit_widen_call_res (cfg, ins, fsig);
12944
12945                                 CHECK_CFG_EXCEPTION;
12946
12947                                 ip += 6;
12948                                 ins_flag = 0;
12949                                 constrained_class = NULL;
12950                                 break;
12951                         }
12952                         case CEE_MONO_LDDOMAIN:
12953                                 CHECK_STACK_OVF (1);
12954                                 EMIT_NEW_PCONST (cfg, ins, cfg->compile_aot ? NULL : cfg->domain);
12955                                 ip += 2;
12956                                 *sp++ = ins;
12957                                 break;
12958                         default:
12959                                 g_error ("opcode 0x%02x 0x%02x not handled", MONO_CUSTOM_PREFIX, ip [1]);
12960                                 break;
12961                         }
12962                         break;
12963                 }
12964
12965                 case CEE_PREFIX1: {
12966                         CHECK_OPSIZE (2);
12967                         switch (ip [1]) {
12968                         case CEE_ARGLIST: {
12969                                 /* somewhat similar to LDTOKEN */
12970                                 MonoInst *addr, *vtvar;
12971                                 CHECK_STACK_OVF (1);
12972                                 vtvar = mono_compile_create_var (cfg, &mono_defaults.argumenthandle_class->byval_arg, OP_LOCAL); 
12973
12974                                 EMIT_NEW_TEMPLOADA (cfg, addr, vtvar->inst_c0);
12975                                 EMIT_NEW_UNALU (cfg, ins, OP_ARGLIST, -1, addr->dreg);
12976
12977                                 EMIT_NEW_TEMPLOAD (cfg, ins, vtvar->inst_c0);
12978                                 ins->type = STACK_VTYPE;
12979                                 ins->klass = mono_defaults.argumenthandle_class;
12980                                 *sp++ = ins;
12981                                 ip += 2;
12982                                 break;
12983                         }
12984                         case CEE_CEQ:
12985                         case CEE_CGT:
12986                         case CEE_CGT_UN:
12987                         case CEE_CLT:
12988                         case CEE_CLT_UN: {
12989                                 MonoInst *cmp, *arg1, *arg2;
12990
12991                                 CHECK_STACK (2);
12992                                 sp -= 2;
12993                                 arg1 = sp [0];
12994                                 arg2 = sp [1];
12995
12996                                 /*
12997                                  * The following transforms:
12998                                  *    CEE_CEQ    into OP_CEQ
12999                                  *    CEE_CGT    into OP_CGT
13000                                  *    CEE_CGT_UN into OP_CGT_UN
13001                                  *    CEE_CLT    into OP_CLT
13002                                  *    CEE_CLT_UN into OP_CLT_UN
13003                                  */
13004                                 MONO_INST_NEW (cfg, cmp, (OP_CEQ - CEE_CEQ) + ip [1]);
13005
13006                                 MONO_INST_NEW (cfg, ins, cmp->opcode);
13007                                 cmp->sreg1 = arg1->dreg;
13008                                 cmp->sreg2 = arg2->dreg;
13009                                 type_from_op (cfg, cmp, arg1, arg2);
13010                                 CHECK_TYPE (cmp);
13011                                 add_widen_op (cfg, cmp, &arg1, &arg2);
13012                                 if ((arg1->type == STACK_I8) || ((SIZEOF_VOID_P == 8) && ((arg1->type == STACK_PTR) || (arg1->type == STACK_OBJ) || (arg1->type == STACK_MP))))
13013                                         cmp->opcode = OP_LCOMPARE;
13014                                 else if (arg1->type == STACK_R4)
13015                                         cmp->opcode = OP_RCOMPARE;
13016                                 else if (arg1->type == STACK_R8)
13017                                         cmp->opcode = OP_FCOMPARE;
13018                                 else
13019                                         cmp->opcode = OP_ICOMPARE;
13020                                 MONO_ADD_INS (cfg->cbb, cmp);
13021                                 ins->type = STACK_I4;
13022                                 ins->dreg = alloc_dreg (cfg, (MonoStackType)ins->type);
13023                                 type_from_op (cfg, ins, arg1, arg2);
13024
13025                                 if (cmp->opcode == OP_FCOMPARE || cmp->opcode == OP_RCOMPARE) {
13026                                         /*
13027                                          * The backends expect the fceq opcodes to do the
13028                                          * comparison too.
13029                                          */
13030                                         ins->sreg1 = cmp->sreg1;
13031                                         ins->sreg2 = cmp->sreg2;
13032                                         NULLIFY_INS (cmp);
13033                                 }
13034                                 MONO_ADD_INS (cfg->cbb, ins);
13035                                 *sp++ = ins;
13036                                 ip += 2;
13037                                 break;
13038                         }
13039                         case CEE_LDFTN: {
13040                                 MonoInst *argconst;
13041                                 MonoMethod *cil_method;
13042
13043                                 CHECK_STACK_OVF (1);
13044                                 CHECK_OPSIZE (6);
13045                                 n = read32 (ip + 2);
13046                                 cmethod = mini_get_method (cfg, method, n, NULL, generic_context);
13047                                 CHECK_CFG_ERROR;
13048
13049                                 mono_class_init (cmethod->klass);
13050
13051                                 mono_save_token_info (cfg, image, n, cmethod);
13052
13053                                 context_used = mini_method_check_context_used (cfg, cmethod);
13054
13055                                 cil_method = cmethod;
13056                                 if (!dont_verify && !cfg->skip_visibility && !mono_method_can_access_method (method, cmethod))
13057                                         emit_method_access_failure (cfg, method, cil_method);
13058
13059                                 if (mono_security_core_clr_enabled ())
13060                                         ensure_method_is_allowed_to_call_method (cfg, method, cmethod);
13061
13062                                 /* 
13063                                  * Optimize the common case of ldftn+delegate creation
13064                                  */
13065                                 if ((sp > stack_start) && (ip + 6 + 5 < end) && ip_in_bb (cfg, cfg->cbb, ip + 6) && (ip [6] == CEE_NEWOBJ)) {
13066                                         MonoMethod *ctor_method = mini_get_method (cfg, method, read32 (ip + 7), NULL, generic_context);
13067                                         if (ctor_method && (ctor_method->klass->parent == mono_defaults.multicastdelegate_class)) {
13068                                                 MonoInst *target_ins, *handle_ins;
13069                                                 MonoMethod *invoke;
13070                                                 int invoke_context_used;
13071
13072                                                 invoke = mono_get_delegate_invoke (ctor_method->klass);
13073                                                 if (!invoke || !mono_method_signature (invoke))
13074                                                         LOAD_ERROR;
13075
13076                                                 invoke_context_used = mini_method_check_context_used (cfg, invoke);
13077
13078                                                 target_ins = sp [-1];
13079
13080                                                 if (mono_security_core_clr_enabled ())
13081                                                         ensure_method_is_allowed_to_call_method (cfg, method, ctor_method);
13082
13083                                                 if (!(cmethod->flags & METHOD_ATTRIBUTE_STATIC)) {
13084                                                         /*LAME IMPL: We must not add a null check for virtual invoke delegates.*/
13085                                                         if (mono_method_signature (invoke)->param_count == mono_method_signature (cmethod)->param_count) {
13086                                                                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, target_ins->dreg, 0);
13087                                                                 MONO_EMIT_NEW_COND_EXC (cfg, EQ, "ArgumentException");
13088                                                         }
13089                                                 }
13090
13091                                                 /* FIXME: SGEN support */
13092                                                 if (invoke_context_used == 0 || cfg->llvm_only) {
13093                                                         ip += 6;
13094                                                         if (cfg->verbose_level > 3)
13095                                                                 g_print ("converting (in B%d: stack: %d) %s", cfg->cbb->block_num, (int)(sp - stack_start), mono_disasm_code_one (NULL, method, ip, NULL));
13096                                                         if ((handle_ins = handle_delegate_ctor (cfg, ctor_method->klass, target_ins, cmethod, context_used, FALSE))) {
13097                                                                 sp --;
13098                                                                 *sp = handle_ins;
13099                                                                 CHECK_CFG_EXCEPTION;
13100                                                                 ip += 5;
13101                                                                 sp ++;
13102                                                                 break;
13103                                                         }
13104                                                         ip -= 6;
13105                                                 }
13106                                         }
13107                                 }
13108
13109                                 argconst = emit_get_rgctx_method (cfg, context_used, cmethod, MONO_RGCTX_INFO_METHOD);
13110                                 ins = mono_emit_jit_icall (cfg, mono_ldftn, &argconst);
13111                                 *sp++ = ins;
13112                                 
13113                                 ip += 6;
13114                                 inline_costs += 10 * num_calls++;
13115                                 break;
13116                         }
13117                         case CEE_LDVIRTFTN: {
13118                                 MonoInst *args [2];
13119
13120                                 CHECK_STACK (1);
13121                                 CHECK_OPSIZE (6);
13122                                 n = read32 (ip + 2);
13123                                 cmethod = mini_get_method (cfg, method, n, NULL, generic_context);
13124                                 CHECK_CFG_ERROR;
13125
13126                                 mono_class_init (cmethod->klass);
13127  
13128                                 context_used = mini_method_check_context_used (cfg, cmethod);
13129
13130                                 if (mono_security_core_clr_enabled ())
13131                                         ensure_method_is_allowed_to_call_method (cfg, method, cmethod);
13132
13133                                 /*
13134                                  * Optimize the common case of ldvirtftn+delegate creation
13135                                  */
13136                                 if ((sp > stack_start) && (ip + 6 + 5 < end) && ip_in_bb (cfg, cfg->cbb, ip + 6) && (ip [6] == CEE_NEWOBJ) && (ip > header->code && ip [-1] == CEE_DUP)) {
13137                                         MonoMethod *ctor_method = mini_get_method (cfg, method, read32 (ip + 7), NULL, generic_context);
13138                                         if (ctor_method && (ctor_method->klass->parent == mono_defaults.multicastdelegate_class)) {
13139                                                 MonoInst *target_ins, *handle_ins;
13140                                                 MonoMethod *invoke;
13141                                                 int invoke_context_used;
13142                                                 gboolean is_virtual = cmethod->flags & METHOD_ATTRIBUTE_VIRTUAL;
13143
13144                                                 invoke = mono_get_delegate_invoke (ctor_method->klass);
13145                                                 if (!invoke || !mono_method_signature (invoke))
13146                                                         LOAD_ERROR;
13147
13148                                                 invoke_context_used = mini_method_check_context_used (cfg, invoke);
13149
13150                                                 target_ins = sp [-1];
13151
13152                                                 if (mono_security_core_clr_enabled ())
13153                                                         ensure_method_is_allowed_to_call_method (cfg, method, ctor_method);
13154
13155                                                 /* FIXME: SGEN support */
13156                                                 if (invoke_context_used == 0 || cfg->llvm_only) {
13157                                                         ip += 6;
13158                                                         if (cfg->verbose_level > 3)
13159                                                                 g_print ("converting (in B%d: stack: %d) %s", cfg->cbb->block_num, (int)(sp - stack_start), mono_disasm_code_one (NULL, method, ip, NULL));
13160                                                         if ((handle_ins = handle_delegate_ctor (cfg, ctor_method->klass, target_ins, cmethod, context_used, is_virtual))) {
13161                                                                 sp -= 2;
13162                                                                 *sp = handle_ins;
13163                                                                 CHECK_CFG_EXCEPTION;
13164                                                                 ip += 5;
13165                                                                 sp ++;
13166                                                                 break;
13167                                                         }
13168                                                         ip -= 6;
13169                                                 }
13170                                         }
13171                                 }
13172
13173                                 --sp;
13174                                 args [0] = *sp;
13175
13176                                 args [1] = emit_get_rgctx_method (cfg, context_used,
13177                                                                                                   cmethod, MONO_RGCTX_INFO_METHOD);
13178
13179                                 if (context_used)
13180                                         *sp++ = mono_emit_jit_icall (cfg, mono_ldvirtfn_gshared, args);
13181                                 else
13182                                         *sp++ = mono_emit_jit_icall (cfg, mono_ldvirtfn, args);
13183
13184                                 ip += 6;
13185                                 inline_costs += 10 * num_calls++;
13186                                 break;
13187                         }
13188                         case CEE_LDARG:
13189                                 CHECK_STACK_OVF (1);
13190                                 CHECK_OPSIZE (4);
13191                                 n = read16 (ip + 2);
13192                                 CHECK_ARG (n);
13193                                 EMIT_NEW_ARGLOAD (cfg, ins, n);
13194                                 *sp++ = ins;
13195                                 ip += 4;
13196                                 break;
13197                         case CEE_LDARGA:
13198                                 CHECK_STACK_OVF (1);
13199                                 CHECK_OPSIZE (4);
13200                                 n = read16 (ip + 2);
13201                                 CHECK_ARG (n);
13202                                 NEW_ARGLOADA (cfg, ins, n);
13203                                 MONO_ADD_INS (cfg->cbb, ins);
13204                                 *sp++ = ins;
13205                                 ip += 4;
13206                                 break;
13207                         case CEE_STARG:
13208                                 CHECK_STACK (1);
13209                                 --sp;
13210                                 CHECK_OPSIZE (4);
13211                                 n = read16 (ip + 2);
13212                                 CHECK_ARG (n);
13213                                 if (!dont_verify_stloc && target_type_is_incompatible (cfg, param_types [n], *sp))
13214                                         UNVERIFIED;
13215                                 EMIT_NEW_ARGSTORE (cfg, ins, n, *sp);
13216                                 ip += 4;
13217                                 break;
13218                         case CEE_LDLOC:
13219                                 CHECK_STACK_OVF (1);
13220                                 CHECK_OPSIZE (4);
13221                                 n = read16 (ip + 2);
13222                                 CHECK_LOCAL (n);
13223                                 EMIT_NEW_LOCLOAD (cfg, ins, n);
13224                                 *sp++ = ins;
13225                                 ip += 4;
13226                                 break;
13227                         case CEE_LDLOCA: {
13228                                 unsigned char *tmp_ip;
13229                                 CHECK_STACK_OVF (1);
13230                                 CHECK_OPSIZE (4);
13231                                 n = read16 (ip + 2);
13232                                 CHECK_LOCAL (n);
13233
13234                                 if ((tmp_ip = emit_optimized_ldloca_ir (cfg, ip, end, 2))) {
13235                                         ip = tmp_ip;
13236                                         inline_costs += 1;
13237                                         break;
13238                                 }                       
13239                                 
13240                                 EMIT_NEW_LOCLOADA (cfg, ins, n);
13241                                 *sp++ = ins;
13242                                 ip += 4;
13243                                 break;
13244                         }
13245                         case CEE_STLOC:
13246                                 CHECK_STACK (1);
13247                                 --sp;
13248                                 CHECK_OPSIZE (4);
13249                                 n = read16 (ip + 2);
13250                                 CHECK_LOCAL (n);
13251                                 if (!dont_verify_stloc && target_type_is_incompatible (cfg, header->locals [n], *sp))
13252                                         UNVERIFIED;
13253                                 emit_stloc_ir (cfg, sp, header, n);
13254                                 ip += 4;
13255                                 inline_costs += 1;
13256                                 break;
13257                         case CEE_LOCALLOC: {
13258                                 CHECK_STACK (1);
13259                                 MonoBasicBlock *non_zero_bb, *end_bb;
13260                                 int alloc_ptr = alloc_preg (cfg);
13261                                 --sp;
13262                                 if (sp != stack_start) 
13263                                         UNVERIFIED;
13264                                 if (cfg->method != method) 
13265                                         /* 
13266                                          * Inlining this into a loop in a parent could lead to 
13267                                          * stack overflows which is different behavior than the
13268                                          * non-inlined case, thus disable inlining in this case.
13269                                          */
13270                                         INLINE_FAILURE("localloc");
13271
13272                                 NEW_BBLOCK (cfg, non_zero_bb);
13273                                 NEW_BBLOCK (cfg, end_bb);
13274
13275                                 /* if size != zero */
13276                                 MONO_EMIT_NEW_BIALU_IMM (cfg, OP_COMPARE_IMM, -1, sp [0]->dreg, 0);
13277                                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_PBNE_UN, non_zero_bb);
13278
13279                                 //size is zero, so result is NULL
13280                                 MONO_EMIT_NEW_PCONST (cfg, alloc_ptr, NULL);
13281                                 MONO_EMIT_NEW_BRANCH_BLOCK (cfg, OP_BR, end_bb);
13282
13283                                 MONO_START_BB (cfg, non_zero_bb);
13284                                 MONO_INST_NEW (cfg, ins, OP_LOCALLOC);
13285                                 ins->dreg = alloc_ptr;
13286                                 ins->sreg1 = sp [0]->dreg;
13287                                 ins->type = STACK_PTR;
13288                                 MONO_ADD_INS (cfg->cbb, ins);
13289
13290                                 cfg->flags |= MONO_CFG_HAS_ALLOCA;
13291                                 if (init_locals)
13292                                         ins->flags |= MONO_INST_INIT;
13293
13294                                 MONO_START_BB (cfg, end_bb);
13295                                 EMIT_NEW_UNALU (cfg, ins, OP_MOVE, alloc_preg (cfg), alloc_ptr);
13296                                 ins->type = STACK_PTR;
13297
13298                                 *sp++ = ins;
13299                                 ip += 2;
13300                                 break;
13301                         }
13302                         case CEE_ENDFILTER: {
13303                                 MonoExceptionClause *clause, *nearest;
13304                                 int cc;
13305
13306                                 CHECK_STACK (1);
13307                                 --sp;
13308                                 if ((sp != stack_start) || (sp [0]->type != STACK_I4)) 
13309                                         UNVERIFIED;
13310                                 MONO_INST_NEW (cfg, ins, OP_ENDFILTER);
13311                                 ins->sreg1 = (*sp)->dreg;
13312                                 MONO_ADD_INS (cfg->cbb, ins);
13313                                 start_new_bblock = 1;
13314                                 ip += 2;
13315
13316                                 nearest = NULL;
13317                                 for (cc = 0; cc < header->num_clauses; ++cc) {
13318                                         clause = &header->clauses [cc];
13319                                         if ((clause->flags & MONO_EXCEPTION_CLAUSE_FILTER) &&
13320                                                 ((ip - header->code) > clause->data.filter_offset && (ip - header->code) <= clause->handler_offset) &&
13321                                             (!nearest || (clause->data.filter_offset < nearest->data.filter_offset)))
13322                                                 nearest = clause;
13323                                 }
13324                                 g_assert (nearest);
13325                                 if ((ip - header->code) != nearest->handler_offset)
13326                                         UNVERIFIED;
13327
13328                                 break;
13329                         }
13330                         case CEE_UNALIGNED_:
13331                                 ins_flag |= MONO_INST_UNALIGNED;
13332                                 /* FIXME: record alignment? we can assume 1 for now */
13333                                 CHECK_OPSIZE (3);
13334                                 ip += 3;
13335                                 break;
13336                         case CEE_VOLATILE_:
13337                                 ins_flag |= MONO_INST_VOLATILE;
13338                                 ip += 2;
13339                                 break;
13340                         case CEE_TAIL_:
13341                                 ins_flag   |= MONO_INST_TAILCALL;
13342                                 cfg->flags |= MONO_CFG_HAS_TAIL;
13343                                 /* Can't inline tail calls at this time */
13344                                 inline_costs += 100000;
13345                                 ip += 2;
13346                                 break;
13347                         case CEE_INITOBJ:
13348                                 CHECK_STACK (1);
13349                                 --sp;
13350                                 CHECK_OPSIZE (6);
13351                                 token = read32 (ip + 2);
13352                                 klass = mini_get_class (method, token, generic_context);
13353                                 CHECK_TYPELOAD (klass);
13354                                 if (generic_class_is_reference_type (cfg, klass))
13355                                         MONO_EMIT_NEW_STORE_MEMBASE_IMM (cfg, OP_STORE_MEMBASE_IMM, sp [0]->dreg, 0, 0);
13356                                 else
13357                                         mini_emit_initobj (cfg, *sp, NULL, klass);
13358                                 ip += 6;
13359                                 inline_costs += 1;
13360                                 break;
13361                         case CEE_CONSTRAINED_:
13362                                 CHECK_OPSIZE (6);
13363                                 token = read32 (ip + 2);
13364                                 constrained_class = mini_get_class (method, token, generic_context);
13365                                 CHECK_TYPELOAD (constrained_class);
13366                                 ip += 6;
13367                                 break;
13368                         case CEE_CPBLK:
13369                         case CEE_INITBLK: {
13370                                 MonoInst *iargs [3];
13371                                 CHECK_STACK (3);
13372                                 sp -= 3;
13373
13374                                 /* Skip optimized paths for volatile operations. */
13375                                 if ((ip [1] == CEE_CPBLK) && !(ins_flag & MONO_INST_VOLATILE) && (cfg->opt & MONO_OPT_INTRINS) && (sp [2]->opcode == OP_ICONST) && ((n = sp [2]->inst_c0) <= sizeof (gpointer) * 5)) {
13376                                         mini_emit_memcpy (cfg, sp [0]->dreg, 0, sp [1]->dreg, 0, sp [2]->inst_c0, 0);
13377                                 } else if ((ip [1] == CEE_INITBLK) && !(ins_flag & MONO_INST_VOLATILE) && (cfg->opt & MONO_OPT_INTRINS) && (sp [2]->opcode == OP_ICONST) && ((n = sp [2]->inst_c0) <= sizeof (gpointer) * 5) && (sp [1]->opcode == OP_ICONST) && (sp [1]->inst_c0 == 0)) {
13378                                         /* emit_memset only works when val == 0 */
13379                                         mini_emit_memset (cfg, sp [0]->dreg, 0, sp [2]->inst_c0, sp [1]->inst_c0, 0);
13380                                 } else {
13381                                         MonoInst *call;
13382                                         iargs [0] = sp [0];
13383                                         iargs [1] = sp [1];
13384                                         iargs [2] = sp [2];
13385                                         if (ip [1] == CEE_CPBLK) {
13386                                                 /*
13387                                                  * FIXME: It's unclear whether we should be emitting both the acquire
13388                                                  * and release barriers for cpblk. It is technically both a load and
13389                                                  * store operation, so it seems like that's the sensible thing to do.
13390                                                  *
13391                                                  * FIXME: We emit full barriers on both sides of the operation for
13392                                                  * simplicity. We should have a separate atomic memcpy method instead.
13393                                                  */
13394                                                 MonoMethod *memcpy_method = get_memcpy_method ();
13395
13396                                                 if (ins_flag & MONO_INST_VOLATILE)
13397                                                         emit_memory_barrier (cfg, MONO_MEMORY_BARRIER_SEQ);
13398
13399                                                 call = mono_emit_method_call (cfg, memcpy_method, iargs, NULL);
13400                                                 call->flags |= ins_flag;
13401
13402                                                 if (ins_flag & MONO_INST_VOLATILE)
13403                                                         emit_memory_barrier (cfg, MONO_MEMORY_BARRIER_SEQ);
13404                                         } else {
13405                                                 MonoMethod *memset_method = get_memset_method ();
13406                                                 if (ins_flag & MONO_INST_VOLATILE) {
13407                                                         /* Volatile stores have release semantics, see 12.6.7 in Ecma 335 */
13408                                                         emit_memory_barrier (cfg, MONO_MEMORY_BARRIER_REL);
13409                                                 }
13410                                                 call = mono_emit_method_call (cfg, memset_method, iargs, NULL);
13411                                                 call->flags |= ins_flag;
13412                                         }
13413                                 }
13414                                 ip += 2;
13415                                 ins_flag = 0;
13416                                 inline_costs += 1;
13417                                 break;
13418                         }
13419                         case CEE_NO_:
13420                                 CHECK_OPSIZE (3);
13421                                 if (ip [2] & 0x1)
13422                                         ins_flag |= MONO_INST_NOTYPECHECK;
13423                                 if (ip [2] & 0x2)
13424                                         ins_flag |= MONO_INST_NORANGECHECK;
13425                                 /* we ignore the no-nullcheck for now since we
13426                                  * really do it explicitly only when doing callvirt->call
13427                                  */
13428                                 ip += 3;
13429                                 break;
13430                         case CEE_RETHROW: {
13431                                 MonoInst *load;
13432                                 int handler_offset = -1;
13433
13434                                 for (i = 0; i < header->num_clauses; ++i) {
13435                                         MonoExceptionClause *clause = &header->clauses [i];
13436                                         if (MONO_OFFSET_IN_HANDLER (clause, ip - header->code) && !(clause->flags & MONO_EXCEPTION_CLAUSE_FINALLY)) {
13437                                                 handler_offset = clause->handler_offset;
13438                                                 break;
13439                                         }
13440                                 }
13441
13442                                 cfg->cbb->flags |= BB_EXCEPTION_UNSAFE;
13443
13444                                 if (handler_offset == -1)
13445                                         UNVERIFIED;
13446
13447                                 EMIT_NEW_TEMPLOAD (cfg, load, mono_find_exvar_for_offset (cfg, handler_offset)->inst_c0);
13448                                 MONO_INST_NEW (cfg, ins, OP_RETHROW);
13449                                 ins->sreg1 = load->dreg;
13450                                 MONO_ADD_INS (cfg->cbb, ins);
13451
13452                                 MONO_INST_NEW (cfg, ins, OP_NOT_REACHED);
13453                                 MONO_ADD_INS (cfg->cbb, ins);
13454
13455                                 sp = stack_start;
13456                                 link_bblock (cfg, cfg->cbb, end_bblock);
13457                                 start_new_bblock = 1;
13458                                 ip += 2;
13459                                 break;
13460                         }
13461                         case CEE_SIZEOF: {
13462                                 guint32 val;
13463                                 int ialign;
13464
13465                                 CHECK_STACK_OVF (1);
13466                                 CHECK_OPSIZE (6);
13467                                 token = read32 (ip + 2);
13468                                 if (mono_metadata_token_table (token) == MONO_TABLE_TYPESPEC && !image_is_dynamic (method->klass->image) && !generic_context) {
13469                                         MonoType *type = mono_type_create_from_typespec_checked (image, token, &cfg->error);
13470                                         CHECK_CFG_ERROR;
13471
13472                                         val = mono_type_size (type, &ialign);
13473                                 } else {
13474                                         MonoClass *klass = mini_get_class (method, token, generic_context);
13475                                         CHECK_TYPELOAD (klass);
13476
13477                                         val = mono_type_size (&klass->byval_arg, &ialign);
13478
13479                                         if (mini_is_gsharedvt_klass (klass))
13480                                                 GSHAREDVT_FAILURE (*ip);
13481                                 }
13482                                 EMIT_NEW_ICONST (cfg, ins, val);
13483                                 *sp++= ins;
13484                                 ip += 6;
13485                                 break;
13486                         }
13487                         case CEE_REFANYTYPE: {
13488                                 MonoInst *src_var, *src;
13489
13490                                 GSHAREDVT_FAILURE (*ip);
13491
13492                                 CHECK_STACK (1);
13493                                 --sp;
13494
13495                                 // FIXME:
13496                                 src_var = get_vreg_to_inst (cfg, sp [0]->dreg);
13497                                 if (!src_var)
13498                                         src_var = mono_compile_create_var_for_vreg (cfg, &mono_defaults.typed_reference_class->byval_arg, OP_LOCAL, sp [0]->dreg);
13499                                 EMIT_NEW_VARLOADA (cfg, src, src_var, src_var->inst_vtype);
13500                                 EMIT_NEW_LOAD_MEMBASE_TYPE (cfg, ins, &mono_defaults.typehandle_class->byval_arg, src->dreg, MONO_STRUCT_OFFSET (MonoTypedRef, type));
13501                                 *sp++ = ins;
13502                                 ip += 2;
13503                                 break;
13504                         }
13505                         case CEE_READONLY_:
13506                                 readonly = TRUE;
13507                                 ip += 2;
13508                                 break;
13509
13510                         case CEE_UNUSED56:
13511                         case CEE_UNUSED57:
13512                         case CEE_UNUSED70:
13513                         case CEE_UNUSED:
13514                         case CEE_UNUSED99:
13515                                 UNVERIFIED;
13516                                 
13517                         default:
13518                                 g_warning ("opcode 0xfe 0x%02x not handled", ip [1]);
13519                                 UNVERIFIED;
13520                         }
13521                         break;
13522                 }
13523                 case CEE_UNUSED58:
13524                 case CEE_UNUSED1:
13525                         UNVERIFIED;
13526
13527                 default:
13528                         g_warning ("opcode 0x%02x not handled", *ip);
13529                         UNVERIFIED;
13530                 }
13531         }
13532         if (start_new_bblock != 1)
13533                 UNVERIFIED;
13534
13535         cfg->cbb->cil_length = ip - cfg->cbb->cil_code;
13536         if (cfg->cbb->next_bb) {
13537                 /* This could already be set because of inlining, #693905 */
13538                 MonoBasicBlock *bb = cfg->cbb;
13539
13540                 while (bb->next_bb)
13541                         bb = bb->next_bb;
13542                 bb->next_bb = end_bblock;
13543         } else {
13544                 cfg->cbb->next_bb = end_bblock;
13545         }
13546
13547         if (cfg->method == method && cfg->domainvar) {
13548                 MonoInst *store;
13549                 MonoInst *get_domain;
13550
13551                 cfg->cbb = init_localsbb;
13552
13553                 if ((get_domain = mono_get_domain_intrinsic (cfg))) {
13554                         MONO_ADD_INS (cfg->cbb, get_domain);
13555                 } else {
13556                         get_domain = mono_emit_jit_icall (cfg, mono_domain_get, NULL);
13557                 }
13558                 NEW_TEMPSTORE (cfg, store, cfg->domainvar->inst_c0, get_domain);
13559                 MONO_ADD_INS (cfg->cbb, store);
13560         }
13561
13562 #if defined(TARGET_POWERPC) || defined(TARGET_X86)
13563         if (cfg->compile_aot)
13564                 /* FIXME: The plt slots require a GOT var even if the method doesn't use it */
13565                 mono_get_got_var (cfg);
13566 #endif
13567
13568         if (cfg->method == method && cfg->got_var)
13569                 mono_emit_load_got_addr (cfg);
13570
13571         if (init_localsbb) {
13572                 cfg->cbb = init_localsbb;
13573                 cfg->ip = NULL;
13574                 for (i = 0; i < header->num_locals; ++i) {
13575                         emit_init_local (cfg, i, header->locals [i], init_locals);
13576                 }
13577         }
13578
13579         if (cfg->init_ref_vars && cfg->method == method) {
13580                 /* Emit initialization for ref vars */
13581                 // FIXME: Avoid duplication initialization for IL locals.
13582                 for (i = 0; i < cfg->num_varinfo; ++i) {
13583                         MonoInst *ins = cfg->varinfo [i];
13584
13585                         if (ins->opcode == OP_LOCAL && ins->type == STACK_OBJ)
13586                                 MONO_EMIT_NEW_PCONST (cfg, ins->dreg, NULL);
13587                 }
13588         }
13589
13590         if (cfg->lmf_var && cfg->method == method && !cfg->llvm_only) {
13591                 cfg->cbb = init_localsbb;
13592                 emit_push_lmf (cfg);
13593         }
13594
13595         cfg->cbb = init_localsbb;
13596         emit_instrumentation_call (cfg, mono_profiler_method_enter);
13597
13598         if (seq_points) {
13599                 MonoBasicBlock *bb;
13600
13601                 /*
13602                  * Make seq points at backward branch targets interruptable.
13603                  */
13604                 for (bb = cfg->bb_entry; bb; bb = bb->next_bb)
13605                         if (bb->code && bb->in_count > 1 && bb->code->opcode == OP_SEQ_POINT)
13606                                 bb->code->flags |= MONO_INST_SINGLE_STEP_LOC;
13607         }
13608
13609         /* Add a sequence point for method entry/exit events */
13610         if (seq_points && cfg->gen_sdb_seq_points) {
13611                 NEW_SEQ_POINT (cfg, ins, METHOD_ENTRY_IL_OFFSET, FALSE);
13612                 MONO_ADD_INS (init_localsbb, ins);
13613                 NEW_SEQ_POINT (cfg, ins, METHOD_EXIT_IL_OFFSET, FALSE);
13614                 MONO_ADD_INS (cfg->bb_exit, ins);
13615         }
13616
13617         /*
13618          * Add seq points for IL offsets which have line number info, but wasn't generated a seq point during JITting because
13619          * the code they refer to was dead (#11880).
13620          */
13621         if (sym_seq_points) {
13622                 for (i = 0; i < header->code_size; ++i) {
13623                         if (mono_bitset_test_fast (seq_point_locs, i) && !mono_bitset_test_fast (seq_point_set_locs, i)) {
13624                                 MonoInst *ins;
13625
13626                                 NEW_SEQ_POINT (cfg, ins, i, FALSE);
13627                                 mono_add_seq_point (cfg, NULL, ins, SEQ_POINT_NATIVE_OFFSET_DEAD_CODE);
13628                         }
13629                 }
13630         }
13631
13632         cfg->ip = NULL;
13633
13634         if (cfg->method == method) {
13635                 MonoBasicBlock *bb;
13636                 for (bb = cfg->bb_entry; bb; bb = bb->next_bb) {
13637                         bb->region = mono_find_block_region (cfg, bb->real_offset);
13638                         if (cfg->spvars)
13639                                 mono_create_spvar_for_region (cfg, bb->region);
13640                         if (cfg->verbose_level > 2)
13641                                 printf ("REGION BB%d IL_%04x ID_%08X\n", bb->block_num, bb->real_offset, bb->region);
13642                 }
13643         } else {
13644                 MonoBasicBlock *bb;
13645                 /* get_most_deep_clause () in mini-llvm.c depends on this for inlined bblocks */
13646                 for (bb = start_bblock; bb != end_bblock; bb  = bb->next_bb) {
13647                         bb->real_offset = inline_offset;
13648                 }
13649         }
13650
13651         if (inline_costs < 0) {
13652                 char *mname;
13653
13654                 /* Method is too large */
13655                 mname = mono_method_full_name (method, TRUE);
13656                 mono_cfg_set_exception_invalid_program (cfg, g_strdup_printf ("Method %s is too complex.", mname));
13657                 g_free (mname);
13658         }
13659
13660         if ((cfg->verbose_level > 2) && (cfg->method == method)) 
13661                 mono_print_code (cfg, "AFTER METHOD-TO-IR");
13662
13663         goto cleanup;
13664
13665 mono_error_exit:
13666         g_assert (!mono_error_ok (&cfg->error));
13667         goto cleanup;
13668  
13669  exception_exit:
13670         g_assert (cfg->exception_type != MONO_EXCEPTION_NONE);
13671         goto cleanup;
13672
13673  unverified:
13674         set_exception_type_from_invalid_il (cfg, method, ip);
13675         goto cleanup;
13676
13677  cleanup:
13678         g_slist_free (class_inits);
13679         mono_basic_block_free (original_bb);
13680         cfg->dont_inline = g_list_remove (cfg->dont_inline, method);
13681         if (cfg->exception_type)
13682                 return -1;
13683         else
13684                 return inline_costs;
13685 }
13686
13687 static int
13688 store_membase_reg_to_store_membase_imm (int opcode)
13689 {
13690         switch (opcode) {
13691         case OP_STORE_MEMBASE_REG:
13692                 return OP_STORE_MEMBASE_IMM;
13693         case OP_STOREI1_MEMBASE_REG:
13694                 return OP_STOREI1_MEMBASE_IMM;
13695         case OP_STOREI2_MEMBASE_REG:
13696                 return OP_STOREI2_MEMBASE_IMM;
13697         case OP_STOREI4_MEMBASE_REG:
13698                 return OP_STOREI4_MEMBASE_IMM;
13699         case OP_STOREI8_MEMBASE_REG:
13700                 return OP_STOREI8_MEMBASE_IMM;
13701         default:
13702                 g_assert_not_reached ();
13703         }
13704
13705         return -1;
13706 }               
13707
13708 int
13709 mono_op_to_op_imm (int opcode)
13710 {
13711         switch (opcode) {
13712         case OP_IADD:
13713                 return OP_IADD_IMM;
13714         case OP_ISUB:
13715                 return OP_ISUB_IMM;
13716         case OP_IDIV:
13717                 return OP_IDIV_IMM;
13718         case OP_IDIV_UN:
13719                 return OP_IDIV_UN_IMM;
13720         case OP_IREM:
13721                 return OP_IREM_IMM;
13722         case OP_IREM_UN:
13723                 return OP_IREM_UN_IMM;
13724         case OP_IMUL:
13725                 return OP_IMUL_IMM;
13726         case OP_IAND:
13727                 return OP_IAND_IMM;
13728         case OP_IOR:
13729                 return OP_IOR_IMM;
13730         case OP_IXOR:
13731                 return OP_IXOR_IMM;
13732         case OP_ISHL:
13733                 return OP_ISHL_IMM;
13734         case OP_ISHR:
13735                 return OP_ISHR_IMM;
13736         case OP_ISHR_UN:
13737                 return OP_ISHR_UN_IMM;
13738
13739         case OP_LADD:
13740                 return OP_LADD_IMM;
13741         case OP_LSUB:
13742                 return OP_LSUB_IMM;
13743         case OP_LAND:
13744                 return OP_LAND_IMM;
13745         case OP_LOR:
13746                 return OP_LOR_IMM;
13747         case OP_LXOR:
13748                 return OP_LXOR_IMM;
13749         case OP_LSHL:
13750                 return OP_LSHL_IMM;
13751         case OP_LSHR:
13752                 return OP_LSHR_IMM;
13753         case OP_LSHR_UN:
13754                 return OP_LSHR_UN_IMM;
13755 #if SIZEOF_REGISTER == 8
13756         case OP_LREM:
13757                 return OP_LREM_IMM;
13758 #endif
13759
13760         case OP_COMPARE:
13761                 return OP_COMPARE_IMM;
13762         case OP_ICOMPARE:
13763                 return OP_ICOMPARE_IMM;
13764         case OP_LCOMPARE:
13765                 return OP_LCOMPARE_IMM;
13766
13767         case OP_STORE_MEMBASE_REG:
13768                 return OP_STORE_MEMBASE_IMM;
13769         case OP_STOREI1_MEMBASE_REG:
13770                 return OP_STOREI1_MEMBASE_IMM;
13771         case OP_STOREI2_MEMBASE_REG:
13772                 return OP_STOREI2_MEMBASE_IMM;
13773         case OP_STOREI4_MEMBASE_REG:
13774                 return OP_STOREI4_MEMBASE_IMM;
13775
13776 #if defined(TARGET_X86) || defined (TARGET_AMD64)
13777         case OP_X86_PUSH:
13778                 return OP_X86_PUSH_IMM;
13779         case OP_X86_COMPARE_MEMBASE_REG:
13780                 return OP_X86_COMPARE_MEMBASE_IMM;
13781 #endif
13782 #if defined(TARGET_AMD64)
13783         case OP_AMD64_ICOMPARE_MEMBASE_REG:
13784                 return OP_AMD64_ICOMPARE_MEMBASE_IMM;
13785 #endif
13786         case OP_VOIDCALL_REG:
13787                 return OP_VOIDCALL;
13788         case OP_CALL_REG:
13789                 return OP_CALL;
13790         case OP_LCALL_REG:
13791                 return OP_LCALL;
13792         case OP_FCALL_REG:
13793                 return OP_FCALL;
13794         case OP_LOCALLOC:
13795                 return OP_LOCALLOC_IMM;
13796         }
13797
13798         return -1;
13799 }
13800
13801 static int
13802 ldind_to_load_membase (int opcode)
13803 {
13804         switch (opcode) {
13805         case CEE_LDIND_I1:
13806                 return OP_LOADI1_MEMBASE;
13807         case CEE_LDIND_U1:
13808                 return OP_LOADU1_MEMBASE;
13809         case CEE_LDIND_I2:
13810                 return OP_LOADI2_MEMBASE;
13811         case CEE_LDIND_U2:
13812                 return OP_LOADU2_MEMBASE;
13813         case CEE_LDIND_I4:
13814                 return OP_LOADI4_MEMBASE;
13815         case CEE_LDIND_U4:
13816                 return OP_LOADU4_MEMBASE;
13817         case CEE_LDIND_I:
13818                 return OP_LOAD_MEMBASE;
13819         case CEE_LDIND_REF:
13820                 return OP_LOAD_MEMBASE;
13821         case CEE_LDIND_I8:
13822                 return OP_LOADI8_MEMBASE;
13823         case CEE_LDIND_R4:
13824                 return OP_LOADR4_MEMBASE;
13825         case CEE_LDIND_R8:
13826                 return OP_LOADR8_MEMBASE;
13827         default:
13828                 g_assert_not_reached ();
13829         }
13830
13831         return -1;
13832 }
13833
13834 static int
13835 stind_to_store_membase (int opcode)
13836 {
13837         switch (opcode) {
13838         case CEE_STIND_I1:
13839                 return OP_STOREI1_MEMBASE_REG;
13840         case CEE_STIND_I2:
13841                 return OP_STOREI2_MEMBASE_REG;
13842         case CEE_STIND_I4:
13843                 return OP_STOREI4_MEMBASE_REG;
13844         case CEE_STIND_I:
13845         case CEE_STIND_REF:
13846                 return OP_STORE_MEMBASE_REG;
13847         case CEE_STIND_I8:
13848                 return OP_STOREI8_MEMBASE_REG;
13849         case CEE_STIND_R4:
13850                 return OP_STORER4_MEMBASE_REG;
13851         case CEE_STIND_R8:
13852                 return OP_STORER8_MEMBASE_REG;
13853         default:
13854                 g_assert_not_reached ();
13855         }
13856
13857         return -1;
13858 }
13859
13860 int
13861 mono_load_membase_to_load_mem (int opcode)
13862 {
13863         // FIXME: Add a MONO_ARCH_HAVE_LOAD_MEM macro
13864 #if defined(TARGET_X86) || defined(TARGET_AMD64)
13865         switch (opcode) {
13866         case OP_LOAD_MEMBASE:
13867                 return OP_LOAD_MEM;
13868         case OP_LOADU1_MEMBASE:
13869                 return OP_LOADU1_MEM;
13870         case OP_LOADU2_MEMBASE:
13871                 return OP_LOADU2_MEM;
13872         case OP_LOADI4_MEMBASE:
13873                 return OP_LOADI4_MEM;
13874         case OP_LOADU4_MEMBASE:
13875                 return OP_LOADU4_MEM;
13876 #if SIZEOF_REGISTER == 8
13877         case OP_LOADI8_MEMBASE:
13878                 return OP_LOADI8_MEM;
13879 #endif
13880         }
13881 #endif
13882
13883         return -1;
13884 }
13885
13886 static inline int
13887 op_to_op_dest_membase (int store_opcode, int opcode)
13888 {
13889 #if defined(TARGET_X86)
13890         if (!((store_opcode == OP_STORE_MEMBASE_REG) || (store_opcode == OP_STOREI4_MEMBASE_REG)))
13891                 return -1;
13892
13893         switch (opcode) {
13894         case OP_IADD:
13895                 return OP_X86_ADD_MEMBASE_REG;
13896         case OP_ISUB:
13897                 return OP_X86_SUB_MEMBASE_REG;
13898         case OP_IAND:
13899                 return OP_X86_AND_MEMBASE_REG;
13900         case OP_IOR:
13901                 return OP_X86_OR_MEMBASE_REG;
13902         case OP_IXOR:
13903                 return OP_X86_XOR_MEMBASE_REG;
13904         case OP_ADD_IMM:
13905         case OP_IADD_IMM:
13906                 return OP_X86_ADD_MEMBASE_IMM;
13907         case OP_SUB_IMM:
13908         case OP_ISUB_IMM:
13909                 return OP_X86_SUB_MEMBASE_IMM;
13910         case OP_AND_IMM:
13911         case OP_IAND_IMM:
13912                 return OP_X86_AND_MEMBASE_IMM;
13913         case OP_OR_IMM:
13914         case OP_IOR_IMM:
13915                 return OP_X86_OR_MEMBASE_IMM;
13916         case OP_XOR_IMM:
13917         case OP_IXOR_IMM:
13918                 return OP_X86_XOR_MEMBASE_IMM;
13919         case OP_MOVE:
13920                 return OP_NOP;
13921         }
13922 #endif
13923
13924 #if defined(TARGET_AMD64)
13925         if (!((store_opcode == OP_STORE_MEMBASE_REG) || (store_opcode == OP_STOREI4_MEMBASE_REG) || (store_opcode == OP_STOREI8_MEMBASE_REG)))
13926                 return -1;
13927
13928         switch (opcode) {
13929         case OP_IADD:
13930                 return OP_X86_ADD_MEMBASE_REG;
13931         case OP_ISUB:
13932                 return OP_X86_SUB_MEMBASE_REG;
13933         case OP_IAND:
13934                 return OP_X86_AND_MEMBASE_REG;
13935         case OP_IOR:
13936                 return OP_X86_OR_MEMBASE_REG;
13937         case OP_IXOR:
13938                 return OP_X86_XOR_MEMBASE_REG;
13939         case OP_IADD_IMM:
13940                 return OP_X86_ADD_MEMBASE_IMM;
13941         case OP_ISUB_IMM:
13942                 return OP_X86_SUB_MEMBASE_IMM;
13943         case OP_IAND_IMM:
13944                 return OP_X86_AND_MEMBASE_IMM;
13945         case OP_IOR_IMM:
13946                 return OP_X86_OR_MEMBASE_IMM;
13947         case OP_IXOR_IMM:
13948                 return OP_X86_XOR_MEMBASE_IMM;
13949         case OP_LADD:
13950                 return OP_AMD64_ADD_MEMBASE_REG;
13951         case OP_LSUB:
13952                 return OP_AMD64_SUB_MEMBASE_REG;
13953         case OP_LAND:
13954                 return OP_AMD64_AND_MEMBASE_REG;
13955         case OP_LOR:
13956                 return OP_AMD64_OR_MEMBASE_REG;
13957         case OP_LXOR:
13958                 return OP_AMD64_XOR_MEMBASE_REG;
13959         case OP_ADD_IMM:
13960         case OP_LADD_IMM:
13961                 return OP_AMD64_ADD_MEMBASE_IMM;
13962         case OP_SUB_IMM:
13963         case OP_LSUB_IMM:
13964                 return OP_AMD64_SUB_MEMBASE_IMM;
13965         case OP_AND_IMM:
13966         case OP_LAND_IMM:
13967                 return OP_AMD64_AND_MEMBASE_IMM;
13968         case OP_OR_IMM:
13969         case OP_LOR_IMM:
13970                 return OP_AMD64_OR_MEMBASE_IMM;
13971         case OP_XOR_IMM:
13972         case OP_LXOR_IMM:
13973                 return OP_AMD64_XOR_MEMBASE_IMM;
13974         case OP_MOVE:
13975                 return OP_NOP;
13976         }
13977 #endif
13978
13979         return -1;
13980 }
13981
13982 static inline int
13983 op_to_op_store_membase (int store_opcode, int opcode)
13984 {
13985 #if defined(TARGET_X86) || defined(TARGET_AMD64)
13986         switch (opcode) {
13987         case OP_ICEQ:
13988                 if (store_opcode == OP_STOREI1_MEMBASE_REG)
13989                         return OP_X86_SETEQ_MEMBASE;
13990         case OP_CNE:
13991                 if (store_opcode == OP_STOREI1_MEMBASE_REG)
13992                         return OP_X86_SETNE_MEMBASE;
13993         }
13994 #endif
13995
13996         return -1;
13997 }
13998
13999 static inline int
14000 op_to_op_src1_membase (MonoCompile *cfg, int load_opcode, int opcode)
14001 {
14002 #ifdef TARGET_X86
14003         /* FIXME: This has sign extension issues */
14004         /*
14005         if ((opcode == OP_ICOMPARE_IMM) && (load_opcode == OP_LOADU1_MEMBASE))
14006                 return OP_X86_COMPARE_MEMBASE8_IMM;
14007         */
14008
14009         if (!((load_opcode == OP_LOAD_MEMBASE) || (load_opcode == OP_LOADI4_MEMBASE) || (load_opcode == OP_LOADU4_MEMBASE)))
14010                 return -1;
14011
14012         switch (opcode) {
14013         case OP_X86_PUSH:
14014                 return OP_X86_PUSH_MEMBASE;
14015         case OP_COMPARE_IMM:
14016         case OP_ICOMPARE_IMM:
14017                 return OP_X86_COMPARE_MEMBASE_IMM;
14018         case OP_COMPARE:
14019         case OP_ICOMPARE:
14020                 return OP_X86_COMPARE_MEMBASE_REG;
14021         }
14022 #endif
14023
14024 #ifdef TARGET_AMD64
14025         /* FIXME: This has sign extension issues */
14026         /*
14027         if ((opcode == OP_ICOMPARE_IMM) && (load_opcode == OP_LOADU1_MEMBASE))
14028                 return OP_X86_COMPARE_MEMBASE8_IMM;
14029         */
14030
14031         switch (opcode) {
14032         case OP_X86_PUSH:
14033                 if ((load_opcode == OP_LOAD_MEMBASE && !cfg->backend->ilp32) || (load_opcode == OP_LOADI8_MEMBASE))
14034                         return OP_X86_PUSH_MEMBASE;
14035                 break;
14036                 /* FIXME: This only works for 32 bit immediates
14037         case OP_COMPARE_IMM:
14038         case OP_LCOMPARE_IMM:
14039                 if ((load_opcode == OP_LOAD_MEMBASE) || (load_opcode == OP_LOADI8_MEMBASE))
14040                         return OP_AMD64_COMPARE_MEMBASE_IMM;
14041                 */
14042         case OP_ICOMPARE_IMM:
14043                 if ((load_opcode == OP_LOADI4_MEMBASE) || (load_opcode == OP_LOADU4_MEMBASE))
14044                         return OP_AMD64_ICOMPARE_MEMBASE_IMM;
14045                 break;
14046         case OP_COMPARE:
14047         case OP_LCOMPARE:
14048                 if (cfg->backend->ilp32 && load_opcode == OP_LOAD_MEMBASE)
14049                         return OP_AMD64_ICOMPARE_MEMBASE_REG;
14050                 if ((load_opcode == OP_LOAD_MEMBASE && !cfg->backend->ilp32) || (load_opcode == OP_LOADI8_MEMBASE))
14051                         return OP_AMD64_COMPARE_MEMBASE_REG;
14052                 break;
14053         case OP_ICOMPARE:
14054                 if ((load_opcode == OP_LOADI4_MEMBASE) || (load_opcode == OP_LOADU4_MEMBASE))
14055                         return OP_AMD64_ICOMPARE_MEMBASE_REG;
14056                 break;
14057         }
14058 #endif
14059
14060         return -1;
14061 }
14062
14063 static inline int
14064 op_to_op_src2_membase (MonoCompile *cfg, int load_opcode, int opcode)
14065 {
14066 #ifdef TARGET_X86
14067         if (!((load_opcode == OP_LOAD_MEMBASE) || (load_opcode == OP_LOADI4_MEMBASE) || (load_opcode == OP_LOADU4_MEMBASE)))
14068                 return -1;
14069         
14070         switch (opcode) {
14071         case OP_COMPARE:
14072         case OP_ICOMPARE:
14073                 return OP_X86_COMPARE_REG_MEMBASE;
14074         case OP_IADD:
14075                 return OP_X86_ADD_REG_MEMBASE;
14076         case OP_ISUB:
14077                 return OP_X86_SUB_REG_MEMBASE;
14078         case OP_IAND:
14079                 return OP_X86_AND_REG_MEMBASE;
14080         case OP_IOR:
14081                 return OP_X86_OR_REG_MEMBASE;
14082         case OP_IXOR:
14083                 return OP_X86_XOR_REG_MEMBASE;
14084         }
14085 #endif
14086
14087 #ifdef TARGET_AMD64
14088         if ((load_opcode == OP_LOADI4_MEMBASE) || (load_opcode == OP_LOADU4_MEMBASE) || (load_opcode == OP_LOAD_MEMBASE && cfg->backend->ilp32)) {
14089                 switch (opcode) {
14090                 case OP_ICOMPARE:
14091                         return OP_AMD64_ICOMPARE_REG_MEMBASE;
14092                 case OP_IADD:
14093                         return OP_X86_ADD_REG_MEMBASE;
14094                 case OP_ISUB:
14095                         return OP_X86_SUB_REG_MEMBASE;
14096                 case OP_IAND:
14097                         return OP_X86_AND_REG_MEMBASE;
14098                 case OP_IOR:
14099                         return OP_X86_OR_REG_MEMBASE;
14100                 case OP_IXOR:
14101                         return OP_X86_XOR_REG_MEMBASE;
14102                 }
14103         } else if ((load_opcode == OP_LOADI8_MEMBASE) || (load_opcode == OP_LOAD_MEMBASE && !cfg->backend->ilp32)) {
14104                 switch (opcode) {
14105                 case OP_COMPARE:
14106                 case OP_LCOMPARE:
14107                         return OP_AMD64_COMPARE_REG_MEMBASE;
14108                 case OP_LADD:
14109                         return OP_AMD64_ADD_REG_MEMBASE;
14110                 case OP_LSUB:
14111                         return OP_AMD64_SUB_REG_MEMBASE;
14112                 case OP_LAND:
14113                         return OP_AMD64_AND_REG_MEMBASE;
14114                 case OP_LOR:
14115                         return OP_AMD64_OR_REG_MEMBASE;
14116                 case OP_LXOR:
14117                         return OP_AMD64_XOR_REG_MEMBASE;
14118                 }
14119         }
14120 #endif
14121
14122         return -1;
14123 }
14124
14125 int
14126 mono_op_to_op_imm_noemul (int opcode)
14127 {
14128         switch (opcode) {
14129 #if SIZEOF_REGISTER == 4 && !defined(MONO_ARCH_NO_EMULATE_LONG_SHIFT_OPS)
14130         case OP_LSHR:
14131         case OP_LSHL:
14132         case OP_LSHR_UN:
14133                 return -1;
14134 #endif
14135 #if defined(MONO_ARCH_EMULATE_MUL_DIV) || defined(MONO_ARCH_EMULATE_DIV)
14136         case OP_IDIV:
14137         case OP_IDIV_UN:
14138         case OP_IREM:
14139         case OP_IREM_UN:
14140                 return -1;
14141 #endif
14142 #if defined(MONO_ARCH_EMULATE_MUL_DIV)
14143         case OP_IMUL:
14144                 return -1;
14145 #endif
14146         default:
14147                 return mono_op_to_op_imm (opcode);
14148         }
14149 }
14150
14151 /**
14152  * mono_handle_global_vregs:
14153  *
14154  *   Make vregs used in more than one bblock 'global', i.e. allocate a variable
14155  * for them.
14156  */
14157 void
14158 mono_handle_global_vregs (MonoCompile *cfg)
14159 {
14160         gint32 *vreg_to_bb;
14161         MonoBasicBlock *bb;
14162         int i, pos;
14163
14164         vreg_to_bb = (gint32 *)mono_mempool_alloc0 (cfg->mempool, sizeof (gint32*) * cfg->next_vreg + 1);
14165
14166 #ifdef MONO_ARCH_SIMD_INTRINSICS
14167         if (cfg->uses_simd_intrinsics)
14168                 mono_simd_simplify_indirection (cfg);
14169 #endif
14170
14171         /* Find local vregs used in more than one bb */
14172         for (bb = cfg->bb_entry; bb; bb = bb->next_bb) {
14173                 MonoInst *ins = bb->code;       
14174                 int block_num = bb->block_num;
14175
14176                 if (cfg->verbose_level > 2)
14177                         printf ("\nHANDLE-GLOBAL-VREGS BLOCK %d:\n", bb->block_num);
14178
14179                 cfg->cbb = bb;
14180                 for (; ins; ins = ins->next) {
14181                         const char *spec = INS_INFO (ins->opcode);
14182                         int regtype = 0, regindex;
14183                         gint32 prev_bb;
14184
14185                         if (G_UNLIKELY (cfg->verbose_level > 2))
14186                                 mono_print_ins (ins);
14187
14188                         g_assert (ins->opcode >= MONO_CEE_LAST);
14189
14190                         for (regindex = 0; regindex < 4; regindex ++) {
14191                                 int vreg = 0;
14192
14193                                 if (regindex == 0) {
14194                                         regtype = spec [MONO_INST_DEST];
14195                                         if (regtype == ' ')
14196                                                 continue;
14197                                         vreg = ins->dreg;
14198                                 } else if (regindex == 1) {
14199                                         regtype = spec [MONO_INST_SRC1];
14200                                         if (regtype == ' ')
14201                                                 continue;
14202                                         vreg = ins->sreg1;
14203                                 } else if (regindex == 2) {
14204                                         regtype = spec [MONO_INST_SRC2];
14205                                         if (regtype == ' ')
14206                                                 continue;
14207                                         vreg = ins->sreg2;
14208                                 } else if (regindex == 3) {
14209                                         regtype = spec [MONO_INST_SRC3];
14210                                         if (regtype == ' ')
14211                                                 continue;
14212                                         vreg = ins->sreg3;
14213                                 }
14214
14215 #if SIZEOF_REGISTER == 4
14216                                 /* In the LLVM case, the long opcodes are not decomposed */
14217                                 if (regtype == 'l' && !COMPILE_LLVM (cfg)) {
14218                                         /*
14219                                          * Since some instructions reference the original long vreg,
14220                                          * and some reference the two component vregs, it is quite hard
14221                                          * to determine when it needs to be global. So be conservative.
14222                                          */
14223                                         if (!get_vreg_to_inst (cfg, vreg)) {
14224                                                 mono_compile_create_var_for_vreg (cfg, &mono_defaults.int64_class->byval_arg, OP_LOCAL, vreg);
14225
14226                                                 if (cfg->verbose_level > 2)
14227                                                         printf ("LONG VREG R%d made global.\n", vreg);
14228                                         }
14229
14230                                         /*
14231                                          * Make the component vregs volatile since the optimizations can
14232                                          * get confused otherwise.
14233                                          */
14234                                         get_vreg_to_inst (cfg, MONO_LVREG_LS (vreg))->flags |= MONO_INST_VOLATILE;
14235                                         get_vreg_to_inst (cfg, MONO_LVREG_MS (vreg))->flags |= MONO_INST_VOLATILE;
14236                                 }
14237 #endif
14238
14239                                 g_assert (vreg != -1);
14240
14241                                 prev_bb = vreg_to_bb [vreg];
14242                                 if (prev_bb == 0) {
14243                                         /* 0 is a valid block num */
14244                                         vreg_to_bb [vreg] = block_num + 1;
14245                                 } else if ((prev_bb != block_num + 1) && (prev_bb != -1)) {
14246                                         if (((regtype == 'i' && (vreg < MONO_MAX_IREGS))) || (regtype == 'f' && (vreg < MONO_MAX_FREGS)))
14247                                                 continue;
14248
14249                                         if (!get_vreg_to_inst (cfg, vreg)) {
14250                                                 if (G_UNLIKELY (cfg->verbose_level > 2))
14251                                                         printf ("VREG R%d used in BB%d and BB%d made global.\n", vreg, vreg_to_bb [vreg], block_num);
14252
14253                                                 switch (regtype) {
14254                                                 case 'i':
14255                                                         if (vreg_is_ref (cfg, vreg))
14256                                                                 mono_compile_create_var_for_vreg (cfg, &mono_defaults.object_class->byval_arg, OP_LOCAL, vreg);
14257                                                         else
14258                                                                 mono_compile_create_var_for_vreg (cfg, &mono_defaults.int_class->byval_arg, OP_LOCAL, vreg);
14259                                                         break;
14260                                                 case 'l':
14261                                                         mono_compile_create_var_for_vreg (cfg, &mono_defaults.int64_class->byval_arg, OP_LOCAL, vreg);
14262                                                         break;
14263                                                 case 'f':
14264                                                         mono_compile_create_var_for_vreg (cfg, &mono_defaults.double_class->byval_arg, OP_LOCAL, vreg);
14265                                                         break;
14266                                                 case 'v':
14267                                                         mono_compile_create_var_for_vreg (cfg, &ins->klass->byval_arg, OP_LOCAL, vreg);
14268                                                         break;
14269                                                 default:
14270                                                         g_assert_not_reached ();
14271                                                 }
14272                                         }
14273
14274                                         /* Flag as having been used in more than one bb */
14275                                         vreg_to_bb [vreg] = -1;
14276                                 }
14277                         }
14278                 }
14279         }
14280
14281         /* If a variable is used in only one bblock, convert it into a local vreg */
14282         for (i = 0; i < cfg->num_varinfo; i++) {
14283                 MonoInst *var = cfg->varinfo [i];
14284                 MonoMethodVar *vmv = MONO_VARINFO (cfg, i);
14285
14286                 switch (var->type) {
14287                 case STACK_I4:
14288                 case STACK_OBJ:
14289                 case STACK_PTR:
14290                 case STACK_MP:
14291                 case STACK_VTYPE:
14292 #if SIZEOF_REGISTER == 8
14293                 case STACK_I8:
14294 #endif
14295 #if !defined(TARGET_X86)
14296                 /* Enabling this screws up the fp stack on x86 */
14297                 case STACK_R8:
14298 #endif
14299                         if (mono_arch_is_soft_float ())
14300                                 break;
14301
14302                         /*
14303                         if (var->type == STACK_VTYPE && cfg->gsharedvt && mini_is_gsharedvt_variable_type (var->inst_vtype))
14304                                 break;
14305                         */
14306
14307                         /* Arguments are implicitly global */
14308                         /* Putting R4 vars into registers doesn't work currently */
14309                         /* The gsharedvt vars are implicitly referenced by ldaddr opcodes, but those opcodes are only generated later */
14310                         if ((var->opcode != OP_ARG) && (var != cfg->ret) && !(var->flags & (MONO_INST_VOLATILE|MONO_INST_INDIRECT)) && (vreg_to_bb [var->dreg] != -1) && (var->klass->byval_arg.type != MONO_TYPE_R4) && !cfg->disable_vreg_to_lvreg && var != cfg->gsharedvt_info_var && var != cfg->gsharedvt_locals_var && var != cfg->lmf_addr_var) {
14311                                 /* 
14312                                  * Make that the variable's liveness interval doesn't contain a call, since
14313                                  * that would cause the lvreg to be spilled, making the whole optimization
14314                                  * useless.
14315                                  */
14316                                 /* This is too slow for JIT compilation */
14317 #if 0
14318                                 if (cfg->compile_aot && vreg_to_bb [var->dreg]) {
14319                                         MonoInst *ins;
14320                                         int def_index, call_index, ins_index;
14321                                         gboolean spilled = FALSE;
14322
14323                                         def_index = -1;
14324                                         call_index = -1;
14325                                         ins_index = 0;
14326                                         for (ins = vreg_to_bb [var->dreg]->code; ins; ins = ins->next) {
14327                                                 const char *spec = INS_INFO (ins->opcode);
14328
14329                                                 if ((spec [MONO_INST_DEST] != ' ') && (ins->dreg == var->dreg))
14330                                                         def_index = ins_index;
14331
14332                                                 if (((spec [MONO_INST_SRC1] != ' ') && (ins->sreg1 == var->dreg)) ||
14333                                                         ((spec [MONO_INST_SRC1] != ' ') && (ins->sreg1 == var->dreg))) {
14334                                                         if (call_index > def_index) {
14335                                                                 spilled = TRUE;
14336                                                                 break;
14337                                                         }
14338                                                 }
14339
14340                                                 if (MONO_IS_CALL (ins))
14341                                                         call_index = ins_index;
14342
14343                                                 ins_index ++;
14344                                         }
14345
14346                                         if (spilled)
14347                                                 break;
14348                                 }
14349 #endif
14350
14351                                 if (G_UNLIKELY (cfg->verbose_level > 2))
14352                                         printf ("CONVERTED R%d(%d) TO VREG.\n", var->dreg, vmv->idx);
14353                                 var->flags |= MONO_INST_IS_DEAD;
14354                                 cfg->vreg_to_inst [var->dreg] = NULL;
14355                         }
14356                         break;
14357                 }
14358         }
14359
14360         /* 
14361          * Compress the varinfo and vars tables so the liveness computation is faster and
14362          * takes up less space.
14363          */
14364         pos = 0;
14365         for (i = 0; i < cfg->num_varinfo; ++i) {
14366                 MonoInst *var = cfg->varinfo [i];
14367                 if (pos < i && cfg->locals_start == i)
14368                         cfg->locals_start = pos;
14369                 if (!(var->flags & MONO_INST_IS_DEAD)) {
14370                         if (pos < i) {
14371                                 cfg->varinfo [pos] = cfg->varinfo [i];
14372                                 cfg->varinfo [pos]->inst_c0 = pos;
14373                                 memcpy (&cfg->vars [pos], &cfg->vars [i], sizeof (MonoMethodVar));
14374                                 cfg->vars [pos].idx = pos;
14375 #if SIZEOF_REGISTER == 4
14376                                 if (cfg->varinfo [pos]->type == STACK_I8) {
14377                                         /* Modify the two component vars too */
14378                                         MonoInst *var1;
14379
14380                                         var1 = get_vreg_to_inst (cfg, MONO_LVREG_LS (cfg->varinfo [pos]->dreg));
14381                                         var1->inst_c0 = pos;
14382                                         var1 = get_vreg_to_inst (cfg, MONO_LVREG_MS (cfg->varinfo [pos]->dreg));
14383                                         var1->inst_c0 = pos;
14384                                 }
14385 #endif
14386                         }
14387                         pos ++;
14388                 }
14389         }
14390         cfg->num_varinfo = pos;
14391         if (cfg->locals_start > cfg->num_varinfo)
14392                 cfg->locals_start = cfg->num_varinfo;
14393 }
14394
14395 /*
14396  * mono_allocate_gsharedvt_vars:
14397  *
14398  *   Allocate variables with gsharedvt types to entries in the MonoGSharedVtMethodRuntimeInfo.entries array.
14399  * Initialize cfg->gsharedvt_vreg_to_idx with the mapping between vregs and indexes.
14400  */
14401 void
14402 mono_allocate_gsharedvt_vars (MonoCompile *cfg)
14403 {
14404         int i;
14405
14406         cfg->gsharedvt_vreg_to_idx = (int *)mono_mempool_alloc0 (cfg->mempool, sizeof (int) * cfg->next_vreg);
14407
14408         for (i = 0; i < cfg->num_varinfo; ++i) {
14409                 MonoInst *ins = cfg->varinfo [i];
14410                 int idx;
14411
14412                 if (mini_is_gsharedvt_variable_type (ins->inst_vtype)) {
14413                         if (i >= cfg->locals_start) {
14414                                 /* Local */
14415                                 idx = get_gsharedvt_info_slot (cfg, ins->inst_vtype, MONO_RGCTX_INFO_LOCAL_OFFSET);
14416                                 cfg->gsharedvt_vreg_to_idx [ins->dreg] = idx + 1;
14417                                 ins->opcode = OP_GSHAREDVT_LOCAL;
14418                                 ins->inst_imm = idx;
14419                         } else {
14420                                 /* Arg */
14421                                 cfg->gsharedvt_vreg_to_idx [ins->dreg] = -1;
14422                                 ins->opcode = OP_GSHAREDVT_ARG_REGOFFSET;
14423                         }
14424                 }
14425         }
14426 }
14427
14428 /**
14429  * mono_spill_global_vars:
14430  *
14431  *   Generate spill code for variables which are not allocated to registers, 
14432  * and replace vregs with their allocated hregs. *need_local_opts is set to TRUE if
14433  * code is generated which could be optimized by the local optimization passes.
14434  */
14435 void
14436 mono_spill_global_vars (MonoCompile *cfg, gboolean *need_local_opts)
14437 {
14438         MonoBasicBlock *bb;
14439         char spec2 [16];
14440         int orig_next_vreg;
14441         guint32 *vreg_to_lvreg;
14442         guint32 *lvregs;
14443         guint32 i, lvregs_len;
14444         gboolean dest_has_lvreg = FALSE;
14445         MonoStackType stacktypes [128];
14446         MonoInst **live_range_start, **live_range_end;
14447         MonoBasicBlock **live_range_start_bb, **live_range_end_bb;
14448
14449         *need_local_opts = FALSE;
14450
14451         memset (spec2, 0, sizeof (spec2));
14452
14453         /* FIXME: Move this function to mini.c */
14454         stacktypes ['i'] = STACK_PTR;
14455         stacktypes ['l'] = STACK_I8;
14456         stacktypes ['f'] = STACK_R8;
14457 #ifdef MONO_ARCH_SIMD_INTRINSICS
14458         stacktypes ['x'] = STACK_VTYPE;
14459 #endif
14460
14461 #if SIZEOF_REGISTER == 4
14462         /* Create MonoInsts for longs */
14463         for (i = 0; i < cfg->num_varinfo; i++) {
14464                 MonoInst *ins = cfg->varinfo [i];
14465
14466                 if ((ins->opcode != OP_REGVAR) && !(ins->flags & MONO_INST_IS_DEAD)) {
14467                         switch (ins->type) {
14468                         case STACK_R8:
14469                         case STACK_I8: {
14470                                 MonoInst *tree;
14471
14472                                 if (ins->type == STACK_R8 && !COMPILE_SOFT_FLOAT (cfg))
14473                                         break;
14474
14475                                 g_assert (ins->opcode == OP_REGOFFSET);
14476
14477                                 tree = get_vreg_to_inst (cfg, MONO_LVREG_LS (ins->dreg));
14478                                 g_assert (tree);
14479                                 tree->opcode = OP_REGOFFSET;
14480                                 tree->inst_basereg = ins->inst_basereg;
14481                                 tree->inst_offset = ins->inst_offset + MINI_LS_WORD_OFFSET;
14482
14483                                 tree = get_vreg_to_inst (cfg, MONO_LVREG_MS (ins->dreg));
14484                                 g_assert (tree);
14485                                 tree->opcode = OP_REGOFFSET;
14486                                 tree->inst_basereg = ins->inst_basereg;
14487                                 tree->inst_offset = ins->inst_offset + MINI_MS_WORD_OFFSET;
14488                                 break;
14489                         }
14490                         default:
14491                                 break;
14492                         }
14493                 }
14494         }
14495 #endif
14496
14497         if (cfg->compute_gc_maps) {
14498                 /* registers need liveness info even for !non refs */
14499                 for (i = 0; i < cfg->num_varinfo; i++) {
14500                         MonoInst *ins = cfg->varinfo [i];
14501
14502                         if (ins->opcode == OP_REGVAR)
14503                                 ins->flags |= MONO_INST_GC_TRACK;
14504                 }
14505         }
14506                 
14507         /* FIXME: widening and truncation */
14508
14509         /*
14510          * As an optimization, when a variable allocated to the stack is first loaded into 
14511          * an lvreg, we will remember the lvreg and use it the next time instead of loading
14512          * the variable again.
14513          */
14514         orig_next_vreg = cfg->next_vreg;
14515         vreg_to_lvreg = (guint32 *)mono_mempool_alloc0 (cfg->mempool, sizeof (guint32) * cfg->next_vreg);
14516         lvregs = (guint32 *)mono_mempool_alloc (cfg->mempool, sizeof (guint32) * 1024);
14517         lvregs_len = 0;
14518
14519         /* 
14520          * These arrays contain the first and last instructions accessing a given
14521          * variable.
14522          * Since we emit bblocks in the same order we process them here, and we
14523          * don't split live ranges, these will precisely describe the live range of
14524          * the variable, i.e. the instruction range where a valid value can be found
14525          * in the variables location.
14526          * The live range is computed using the liveness info computed by the liveness pass.
14527          * We can't use vmv->range, since that is an abstract live range, and we need
14528          * one which is instruction precise.
14529          * FIXME: Variables used in out-of-line bblocks have a hole in their live range.
14530          */
14531         /* FIXME: Only do this if debugging info is requested */
14532         live_range_start = g_new0 (MonoInst*, cfg->next_vreg);
14533         live_range_end = g_new0 (MonoInst*, cfg->next_vreg);
14534         live_range_start_bb = g_new (MonoBasicBlock*, cfg->next_vreg);
14535         live_range_end_bb = g_new (MonoBasicBlock*, cfg->next_vreg);
14536         
14537         /* Add spill loads/stores */
14538         for (bb = cfg->bb_entry; bb; bb = bb->next_bb) {
14539                 MonoInst *ins;
14540
14541                 if (cfg->verbose_level > 2)
14542                         printf ("\nSPILL BLOCK %d:\n", bb->block_num);
14543
14544                 /* Clear vreg_to_lvreg array */
14545                 for (i = 0; i < lvregs_len; i++)
14546                         vreg_to_lvreg [lvregs [i]] = 0;
14547                 lvregs_len = 0;
14548
14549                 cfg->cbb = bb;
14550                 MONO_BB_FOR_EACH_INS (bb, ins) {
14551                         const char *spec = INS_INFO (ins->opcode);
14552                         int regtype, srcindex, sreg, tmp_reg, prev_dreg, num_sregs;
14553                         gboolean store, no_lvreg;
14554                         int sregs [MONO_MAX_SRC_REGS];
14555
14556                         if (G_UNLIKELY (cfg->verbose_level > 2))
14557                                 mono_print_ins (ins);
14558
14559                         if (ins->opcode == OP_NOP)
14560                                 continue;
14561
14562                         /* 
14563                          * We handle LDADDR here as well, since it can only be decomposed
14564                          * when variable addresses are known.
14565                          */
14566                         if (ins->opcode == OP_LDADDR) {
14567                                 MonoInst *var = (MonoInst *)ins->inst_p0;
14568
14569                                 if (var->opcode == OP_VTARG_ADDR) {
14570                                         /* Happens on SPARC/S390 where vtypes are passed by reference */
14571                                         MonoInst *vtaddr = var->inst_left;
14572                                         if (vtaddr->opcode == OP_REGVAR) {
14573                                                 ins->opcode = OP_MOVE;
14574                                                 ins->sreg1 = vtaddr->dreg;
14575                                         }
14576                                         else if (var->inst_left->opcode == OP_REGOFFSET) {
14577                                                 ins->opcode = OP_LOAD_MEMBASE;
14578                                                 ins->inst_basereg = vtaddr->inst_basereg;
14579                                                 ins->inst_offset = vtaddr->inst_offset;
14580                                         } else
14581                                                 NOT_IMPLEMENTED;
14582                                 } else if (cfg->gsharedvt && cfg->gsharedvt_vreg_to_idx [var->dreg] < 0) {
14583                                         /* gsharedvt arg passed by ref */
14584                                         g_assert (var->opcode == OP_GSHAREDVT_ARG_REGOFFSET);
14585
14586                                         ins->opcode = OP_LOAD_MEMBASE;
14587                                         ins->inst_basereg = var->inst_basereg;
14588                                         ins->inst_offset = var->inst_offset;
14589                                 } else if (cfg->gsharedvt && cfg->gsharedvt_vreg_to_idx [var->dreg]) {
14590                                         MonoInst *load, *load2, *load3;
14591                                         int idx = cfg->gsharedvt_vreg_to_idx [var->dreg] - 1;
14592                                         int reg1, reg2, reg3;
14593                                         MonoInst *info_var = cfg->gsharedvt_info_var;
14594                                         MonoInst *locals_var = cfg->gsharedvt_locals_var;
14595
14596                                         /*
14597                                          * gsharedvt local.
14598                                          * Compute the address of the local as gsharedvt_locals_var + gsharedvt_info_var->locals_offsets [idx].
14599                                          */
14600
14601                                         g_assert (var->opcode == OP_GSHAREDVT_LOCAL);
14602
14603                                         g_assert (info_var);
14604                                         g_assert (locals_var);
14605
14606                                         /* Mark the instruction used to compute the locals var as used */
14607                                         cfg->gsharedvt_locals_var_ins = NULL;
14608
14609                                         /* Load the offset */
14610                                         if (info_var->opcode == OP_REGOFFSET) {
14611                                                 reg1 = alloc_ireg (cfg);
14612                                                 NEW_LOAD_MEMBASE (cfg, load, OP_LOAD_MEMBASE, reg1, info_var->inst_basereg, info_var->inst_offset);
14613                                         } else if (info_var->opcode == OP_REGVAR) {
14614                                                 load = NULL;
14615                                                 reg1 = info_var->dreg;
14616                                         } else {
14617                                                 g_assert_not_reached ();
14618                                         }
14619                                         reg2 = alloc_ireg (cfg);
14620                                         NEW_LOAD_MEMBASE (cfg, load2, OP_LOADI4_MEMBASE, reg2, reg1, MONO_STRUCT_OFFSET (MonoGSharedVtMethodRuntimeInfo, entries) + (idx * sizeof (gpointer)));
14621                                         /* Load the locals area address */
14622                                         reg3 = alloc_ireg (cfg);
14623                                         if (locals_var->opcode == OP_REGOFFSET) {
14624                                                 NEW_LOAD_MEMBASE (cfg, load3, OP_LOAD_MEMBASE, reg3, locals_var->inst_basereg, locals_var->inst_offset);
14625                                         } else if (locals_var->opcode == OP_REGVAR) {
14626                                                 NEW_UNALU (cfg, load3, OP_MOVE, reg3, locals_var->dreg);
14627                                         } else {
14628                                                 g_assert_not_reached ();
14629                                         }
14630                                         /* Compute the address */
14631                                         ins->opcode = OP_PADD;
14632                                         ins->sreg1 = reg3;
14633                                         ins->sreg2 = reg2;
14634
14635                                         mono_bblock_insert_before_ins (bb, ins, load3);
14636                                         mono_bblock_insert_before_ins (bb, load3, load2);
14637                                         if (load)
14638                                                 mono_bblock_insert_before_ins (bb, load2, load);
14639                                 } else {
14640                                         g_assert (var->opcode == OP_REGOFFSET);
14641
14642                                         ins->opcode = OP_ADD_IMM;
14643                                         ins->sreg1 = var->inst_basereg;
14644                                         ins->inst_imm = var->inst_offset;
14645                                 }
14646
14647                                 *need_local_opts = TRUE;
14648                                 spec = INS_INFO (ins->opcode);
14649                         }
14650
14651                         if (ins->opcode < MONO_CEE_LAST) {
14652                                 mono_print_ins (ins);
14653                                 g_assert_not_reached ();
14654                         }
14655
14656                         /*
14657                          * Store opcodes have destbasereg in the dreg, but in reality, it is an
14658                          * src register.
14659                          * FIXME:
14660                          */
14661                         if (MONO_IS_STORE_MEMBASE (ins)) {
14662                                 tmp_reg = ins->dreg;
14663                                 ins->dreg = ins->sreg2;
14664                                 ins->sreg2 = tmp_reg;
14665                                 store = TRUE;
14666
14667                                 spec2 [MONO_INST_DEST] = ' ';
14668                                 spec2 [MONO_INST_SRC1] = spec [MONO_INST_SRC1];
14669                                 spec2 [MONO_INST_SRC2] = spec [MONO_INST_DEST];
14670                                 spec2 [MONO_INST_SRC3] = ' ';
14671                                 spec = spec2;
14672                         } else if (MONO_IS_STORE_MEMINDEX (ins))
14673                                 g_assert_not_reached ();
14674                         else
14675                                 store = FALSE;
14676                         no_lvreg = FALSE;
14677
14678                         if (G_UNLIKELY (cfg->verbose_level > 2)) {
14679                                 printf ("\t %.3s %d", spec, ins->dreg);
14680                                 num_sregs = mono_inst_get_src_registers (ins, sregs);
14681                                 for (srcindex = 0; srcindex < num_sregs; ++srcindex)
14682                                         printf (" %d", sregs [srcindex]);
14683                                 printf ("\n");
14684                         }
14685
14686                         /***************/
14687                         /*    DREG     */
14688                         /***************/
14689                         regtype = spec [MONO_INST_DEST];
14690                         g_assert (((ins->dreg == -1) && (regtype == ' ')) || ((ins->dreg != -1) && (regtype != ' ')));
14691                         prev_dreg = -1;
14692
14693                         if ((ins->dreg != -1) && get_vreg_to_inst (cfg, ins->dreg)) {
14694                                 MonoInst *var = get_vreg_to_inst (cfg, ins->dreg);
14695                                 MonoInst *store_ins;
14696                                 int store_opcode;
14697                                 MonoInst *def_ins = ins;
14698                                 int dreg = ins->dreg; /* The original vreg */
14699
14700                                 store_opcode = mono_type_to_store_membase (cfg, var->inst_vtype);
14701
14702                                 if (var->opcode == OP_REGVAR) {
14703                                         ins->dreg = var->dreg;
14704                                 } else if ((ins->dreg == ins->sreg1) && (spec [MONO_INST_DEST] == 'i') && (spec [MONO_INST_SRC1] == 'i') && !vreg_to_lvreg [ins->dreg] && (op_to_op_dest_membase (store_opcode, ins->opcode) != -1)) {
14705                                         /* 
14706                                          * Instead of emitting a load+store, use a _membase opcode.
14707                                          */
14708                                         g_assert (var->opcode == OP_REGOFFSET);
14709                                         if (ins->opcode == OP_MOVE) {
14710                                                 NULLIFY_INS (ins);
14711                                                 def_ins = NULL;
14712                                         } else {
14713                                                 ins->opcode = op_to_op_dest_membase (store_opcode, ins->opcode);
14714                                                 ins->inst_basereg = var->inst_basereg;
14715                                                 ins->inst_offset = var->inst_offset;
14716                                                 ins->dreg = -1;
14717                                         }
14718                                         spec = INS_INFO (ins->opcode);
14719                                 } else {
14720                                         guint32 lvreg;
14721
14722                                         g_assert (var->opcode == OP_REGOFFSET);
14723
14724                                         prev_dreg = ins->dreg;
14725
14726                                         /* Invalidate any previous lvreg for this vreg */
14727                                         vreg_to_lvreg [ins->dreg] = 0;
14728
14729                                         lvreg = 0;
14730
14731                                         if (COMPILE_SOFT_FLOAT (cfg) && store_opcode == OP_STORER8_MEMBASE_REG) {
14732                                                 regtype = 'l';
14733                                                 store_opcode = OP_STOREI8_MEMBASE_REG;
14734                                         }
14735
14736                                         ins->dreg = alloc_dreg (cfg, stacktypes [regtype]);
14737
14738 #if SIZEOF_REGISTER != 8
14739                                         if (regtype == 'l') {
14740                                                 NEW_STORE_MEMBASE (cfg, store_ins, OP_STOREI4_MEMBASE_REG, var->inst_basereg, var->inst_offset + MINI_LS_WORD_OFFSET, MONO_LVREG_LS (ins->dreg));
14741                                                 mono_bblock_insert_after_ins (bb, ins, store_ins);
14742                                                 NEW_STORE_MEMBASE (cfg, store_ins, OP_STOREI4_MEMBASE_REG, var->inst_basereg, var->inst_offset + MINI_MS_WORD_OFFSET, MONO_LVREG_MS (ins->dreg));
14743                                                 mono_bblock_insert_after_ins (bb, ins, store_ins);
14744                                                 def_ins = store_ins;
14745                                         }
14746                                         else
14747 #endif
14748                                         {
14749                                                 g_assert (store_opcode != OP_STOREV_MEMBASE);
14750
14751                                                 /* Try to fuse the store into the instruction itself */
14752                                                 /* FIXME: Add more instructions */
14753                                                 if (!lvreg && ((ins->opcode == OP_ICONST) || ((ins->opcode == OP_I8CONST) && (ins->inst_c0 == 0)))) {
14754                                                         ins->opcode = store_membase_reg_to_store_membase_imm (store_opcode);
14755                                                         ins->inst_imm = ins->inst_c0;
14756                                                         ins->inst_destbasereg = var->inst_basereg;
14757                                                         ins->inst_offset = var->inst_offset;
14758                                                         spec = INS_INFO (ins->opcode);
14759                                                 } else if (!lvreg && ((ins->opcode == OP_MOVE) || (ins->opcode == OP_FMOVE) || (ins->opcode == OP_LMOVE) || (ins->opcode == OP_RMOVE))) {
14760                                                         ins->opcode = store_opcode;
14761                                                         ins->inst_destbasereg = var->inst_basereg;
14762                                                         ins->inst_offset = var->inst_offset;
14763
14764                                                         no_lvreg = TRUE;
14765
14766                                                         tmp_reg = ins->dreg;
14767                                                         ins->dreg = ins->sreg2;
14768                                                         ins->sreg2 = tmp_reg;
14769                                                         store = TRUE;
14770
14771                                                         spec2 [MONO_INST_DEST] = ' ';
14772                                                         spec2 [MONO_INST_SRC1] = spec [MONO_INST_SRC1];
14773                                                         spec2 [MONO_INST_SRC2] = spec [MONO_INST_DEST];
14774                                                         spec2 [MONO_INST_SRC3] = ' ';
14775                                                         spec = spec2;
14776                                                 } else if (!lvreg && (op_to_op_store_membase (store_opcode, ins->opcode) != -1)) {
14777                                                         // FIXME: The backends expect the base reg to be in inst_basereg
14778                                                         ins->opcode = op_to_op_store_membase (store_opcode, ins->opcode);
14779                                                         ins->dreg = -1;
14780                                                         ins->inst_basereg = var->inst_basereg;
14781                                                         ins->inst_offset = var->inst_offset;
14782                                                         spec = INS_INFO (ins->opcode);
14783                                                 } else {
14784                                                         /* printf ("INS: "); mono_print_ins (ins); */
14785                                                         /* Create a store instruction */
14786                                                         NEW_STORE_MEMBASE (cfg, store_ins, store_opcode, var->inst_basereg, var->inst_offset, ins->dreg);
14787
14788                                                         /* Insert it after the instruction */
14789                                                         mono_bblock_insert_after_ins (bb, ins, store_ins);
14790
14791                                                         def_ins = store_ins;
14792
14793                                                         /* 
14794                                                          * We can't assign ins->dreg to var->dreg here, since the
14795                                                          * sregs could use it. So set a flag, and do it after
14796                                                          * the sregs.
14797                                                          */
14798                                                         if ((!cfg->backend->use_fpstack || ((store_opcode != OP_STORER8_MEMBASE_REG) && (store_opcode != OP_STORER4_MEMBASE_REG))) && !((var)->flags & (MONO_INST_VOLATILE|MONO_INST_INDIRECT)))
14799                                                                 dest_has_lvreg = TRUE;
14800                                                 }
14801                                         }
14802                                 }
14803
14804                                 if (def_ins && !live_range_start [dreg]) {
14805                                         live_range_start [dreg] = def_ins;
14806                                         live_range_start_bb [dreg] = bb;
14807                                 }
14808
14809                                 if (cfg->compute_gc_maps && def_ins && (var->flags & MONO_INST_GC_TRACK)) {
14810                                         MonoInst *tmp;
14811
14812                                         MONO_INST_NEW (cfg, tmp, OP_GC_LIVENESS_DEF);
14813                                         tmp->inst_c1 = dreg;
14814                                         mono_bblock_insert_after_ins (bb, def_ins, tmp);
14815                                 }
14816                         }
14817
14818                         /************/
14819                         /*  SREGS   */
14820                         /************/
14821                         num_sregs = mono_inst_get_src_registers (ins, sregs);
14822                         for (srcindex = 0; srcindex < 3; ++srcindex) {
14823                                 regtype = spec [MONO_INST_SRC1 + srcindex];
14824                                 sreg = sregs [srcindex];
14825
14826                                 g_assert (((sreg == -1) && (regtype == ' ')) || ((sreg != -1) && (regtype != ' ')));
14827                                 if ((sreg != -1) && get_vreg_to_inst (cfg, sreg)) {
14828                                         MonoInst *var = get_vreg_to_inst (cfg, sreg);
14829                                         MonoInst *use_ins = ins;
14830                                         MonoInst *load_ins;
14831                                         guint32 load_opcode;
14832
14833                                         if (var->opcode == OP_REGVAR) {
14834                                                 sregs [srcindex] = var->dreg;
14835                                                 //mono_inst_set_src_registers (ins, sregs);
14836                                                 live_range_end [sreg] = use_ins;
14837                                                 live_range_end_bb [sreg] = bb;
14838
14839                                                 if (cfg->compute_gc_maps && var->dreg < orig_next_vreg && (var->flags & MONO_INST_GC_TRACK)) {
14840                                                         MonoInst *tmp;
14841
14842                                                         MONO_INST_NEW (cfg, tmp, OP_GC_LIVENESS_USE);
14843                                                         /* var->dreg is a hreg */
14844                                                         tmp->inst_c1 = sreg;
14845                                                         mono_bblock_insert_after_ins (bb, ins, tmp);
14846                                                 }
14847
14848                                                 continue;
14849                                         }
14850
14851                                         g_assert (var->opcode == OP_REGOFFSET);
14852                                                 
14853                                         load_opcode = mono_type_to_load_membase (cfg, var->inst_vtype);
14854
14855                                         g_assert (load_opcode != OP_LOADV_MEMBASE);
14856
14857                                         if (vreg_to_lvreg [sreg]) {
14858                                                 g_assert (vreg_to_lvreg [sreg] != -1);
14859
14860                                                 /* The variable is already loaded to an lvreg */
14861                                                 if (G_UNLIKELY (cfg->verbose_level > 2))
14862                                                         printf ("\t\tUse lvreg R%d for R%d.\n", vreg_to_lvreg [sreg], sreg);
14863                                                 sregs [srcindex] = vreg_to_lvreg [sreg];
14864                                                 //mono_inst_set_src_registers (ins, sregs);
14865                                                 continue;
14866                                         }
14867
14868                                         /* Try to fuse the load into the instruction */
14869                                         if ((srcindex == 0) && (op_to_op_src1_membase (cfg, load_opcode, ins->opcode) != -1)) {
14870                                                 ins->opcode = op_to_op_src1_membase (cfg, load_opcode, ins->opcode);
14871                                                 sregs [0] = var->inst_basereg;
14872                                                 //mono_inst_set_src_registers (ins, sregs);
14873                                                 ins->inst_offset = var->inst_offset;
14874                                         } else if ((srcindex == 1) && (op_to_op_src2_membase (cfg, load_opcode, ins->opcode) != -1)) {
14875                                                 ins->opcode = op_to_op_src2_membase (cfg, load_opcode, ins->opcode);
14876                                                 sregs [1] = var->inst_basereg;
14877                                                 //mono_inst_set_src_registers (ins, sregs);
14878                                                 ins->inst_offset = var->inst_offset;
14879                                         } else {
14880                                                 if (MONO_IS_REAL_MOVE (ins)) {
14881                                                         ins->opcode = OP_NOP;
14882                                                         sreg = ins->dreg;
14883                                                 } else {
14884                                                         //printf ("%d ", srcindex); mono_print_ins (ins);
14885
14886                                                         sreg = alloc_dreg (cfg, stacktypes [regtype]);
14887
14888                                                         if ((!cfg->backend->use_fpstack || ((load_opcode != OP_LOADR8_MEMBASE) && (load_opcode != OP_LOADR4_MEMBASE))) && !((var)->flags & (MONO_INST_VOLATILE|MONO_INST_INDIRECT)) && !no_lvreg) {
14889                                                                 if (var->dreg == prev_dreg) {
14890                                                                         /*
14891                                                                          * sreg refers to the value loaded by the load
14892                                                                          * emitted below, but we need to use ins->dreg
14893                                                                          * since it refers to the store emitted earlier.
14894                                                                          */
14895                                                                         sreg = ins->dreg;
14896                                                                 }
14897                                                                 g_assert (sreg != -1);
14898                                                                 vreg_to_lvreg [var->dreg] = sreg;
14899                                                                 g_assert (lvregs_len < 1024);
14900                                                                 lvregs [lvregs_len ++] = var->dreg;
14901                                                         }
14902                                                 }
14903
14904                                                 sregs [srcindex] = sreg;
14905                                                 //mono_inst_set_src_registers (ins, sregs);
14906
14907 #if SIZEOF_REGISTER != 8
14908                                                 if (regtype == 'l') {
14909                                                         NEW_LOAD_MEMBASE (cfg, load_ins, OP_LOADI4_MEMBASE, MONO_LVREG_MS (sreg), var->inst_basereg, var->inst_offset + MINI_MS_WORD_OFFSET);
14910                                                         mono_bblock_insert_before_ins (bb, ins, load_ins);
14911                                                         NEW_LOAD_MEMBASE (cfg, load_ins, OP_LOADI4_MEMBASE, MONO_LVREG_LS (sreg), var->inst_basereg, var->inst_offset + MINI_LS_WORD_OFFSET);
14912                                                         mono_bblock_insert_before_ins (bb, ins, load_ins);
14913                                                         use_ins = load_ins;
14914                                                 }
14915                                                 else
14916 #endif
14917                                                 {
14918 #if SIZEOF_REGISTER == 4
14919                                                         g_assert (load_opcode != OP_LOADI8_MEMBASE);
14920 #endif
14921                                                         NEW_LOAD_MEMBASE (cfg, load_ins, load_opcode, sreg, var->inst_basereg, var->inst_offset);
14922                                                         mono_bblock_insert_before_ins (bb, ins, load_ins);
14923                                                         use_ins = load_ins;
14924                                                 }
14925                                         }
14926
14927                                         if (var->dreg < orig_next_vreg) {
14928                                                 live_range_end [var->dreg] = use_ins;
14929                                                 live_range_end_bb [var->dreg] = bb;
14930                                         }
14931
14932                                         if (cfg->compute_gc_maps && var->dreg < orig_next_vreg && (var->flags & MONO_INST_GC_TRACK)) {
14933                                                 MonoInst *tmp;
14934
14935                                                 MONO_INST_NEW (cfg, tmp, OP_GC_LIVENESS_USE);
14936                                                 tmp->inst_c1 = var->dreg;
14937                                                 mono_bblock_insert_after_ins (bb, ins, tmp);
14938                                         }
14939                                 }
14940                         }
14941                         mono_inst_set_src_registers (ins, sregs);
14942
14943                         if (dest_has_lvreg) {
14944                                 g_assert (ins->dreg != -1);
14945                                 vreg_to_lvreg [prev_dreg] = ins->dreg;
14946                                 g_assert (lvregs_len < 1024);
14947                                 lvregs [lvregs_len ++] = prev_dreg;
14948                                 dest_has_lvreg = FALSE;
14949                         }
14950
14951                         if (store) {
14952                                 tmp_reg = ins->dreg;
14953                                 ins->dreg = ins->sreg2;
14954                                 ins->sreg2 = tmp_reg;
14955                         }
14956
14957                         if (MONO_IS_CALL (ins)) {
14958                                 /* Clear vreg_to_lvreg array */
14959                                 for (i = 0; i < lvregs_len; i++)
14960                                         vreg_to_lvreg [lvregs [i]] = 0;
14961                                 lvregs_len = 0;
14962                         } else if (ins->opcode == OP_NOP) {
14963                                 ins->dreg = -1;
14964                                 MONO_INST_NULLIFY_SREGS (ins);
14965                         }
14966
14967                         if (cfg->verbose_level > 2)
14968                                 mono_print_ins_index (1, ins);
14969                 }
14970
14971                 /* Extend the live range based on the liveness info */
14972                 if (cfg->compute_precise_live_ranges && bb->live_out_set && bb->code) {
14973                         for (i = 0; i < cfg->num_varinfo; i ++) {
14974                                 MonoMethodVar *vi = MONO_VARINFO (cfg, i);
14975
14976                                 if (vreg_is_volatile (cfg, vi->vreg))
14977                                         /* The liveness info is incomplete */
14978                                         continue;
14979
14980                                 if (mono_bitset_test_fast (bb->live_in_set, i) && !live_range_start [vi->vreg]) {
14981                                         /* Live from at least the first ins of this bb */
14982                                         live_range_start [vi->vreg] = bb->code;
14983                                         live_range_start_bb [vi->vreg] = bb;
14984                                 }
14985
14986                                 if (mono_bitset_test_fast (bb->live_out_set, i)) {
14987                                         /* Live at least until the last ins of this bb */
14988                                         live_range_end [vi->vreg] = bb->last_ins;
14989                                         live_range_end_bb [vi->vreg] = bb;
14990                                 }
14991                         }
14992                 }
14993         }
14994         
14995         /*
14996          * Emit LIVERANGE_START/LIVERANGE_END opcodes, the backend will implement them
14997          * by storing the current native offset into MonoMethodVar->live_range_start/end.
14998          */
14999         if (cfg->backend->have_liverange_ops && cfg->compute_precise_live_ranges && cfg->comp_done & MONO_COMP_LIVENESS) {
15000                 for (i = 0; i < cfg->num_varinfo; ++i) {
15001                         int vreg = MONO_VARINFO (cfg, i)->vreg;
15002                         MonoInst *ins;
15003
15004                         if (live_range_start [vreg]) {
15005                                 MONO_INST_NEW (cfg, ins, OP_LIVERANGE_START);
15006                                 ins->inst_c0 = i;
15007                                 ins->inst_c1 = vreg;
15008                                 mono_bblock_insert_after_ins (live_range_start_bb [vreg], live_range_start [vreg], ins);
15009                         }
15010                         if (live_range_end [vreg]) {
15011                                 MONO_INST_NEW (cfg, ins, OP_LIVERANGE_END);
15012                                 ins->inst_c0 = i;
15013                                 ins->inst_c1 = vreg;
15014                                 if (live_range_end [vreg] == live_range_end_bb [vreg]->last_ins)
15015                                         mono_add_ins_to_end (live_range_end_bb [vreg], ins);
15016                                 else
15017                                         mono_bblock_insert_after_ins (live_range_end_bb [vreg], live_range_end [vreg], ins);
15018                         }
15019                 }
15020         }
15021
15022         if (cfg->gsharedvt_locals_var_ins) {
15023                 /* Nullify if unused */
15024                 cfg->gsharedvt_locals_var_ins->opcode = OP_PCONST;
15025                 cfg->gsharedvt_locals_var_ins->inst_imm = 0;
15026         }
15027
15028         g_free (live_range_start);
15029         g_free (live_range_end);
15030         g_free (live_range_start_bb);
15031         g_free (live_range_end_bb);
15032 }
15033
15034 static void
15035 mono_decompose_typecheck (MonoCompile *cfg, MonoBasicBlock *bb, MonoInst *ins)
15036 {
15037         MonoInst *ret, *move, *source;
15038         MonoClass *klass = ins->klass;
15039         int context_used = mini_class_check_context_used (cfg, klass);
15040         int is_isinst = ins->opcode == OP_ISINST;
15041         g_assert (is_isinst || ins->opcode == OP_CASTCLASS);
15042         source = get_vreg_to_inst (cfg, ins->sreg1);
15043         if (!source || source == (MonoInst *) -1)
15044                 source = mono_compile_create_var_for_vreg (cfg, &mono_defaults.object_class->byval_arg, OP_LOCAL, ins->sreg1);
15045         g_assert (source && source != (MonoInst *) -1);
15046
15047         MonoBasicBlock *first_bb;
15048         NEW_BBLOCK (cfg, first_bb);
15049         cfg->cbb = first_bb;
15050
15051         if (!context_used && mini_class_has_reference_variant_generic_argument (cfg, klass, context_used)) {
15052                 if (is_isinst)
15053                         ret = emit_isinst_with_cache_nonshared (cfg, source, klass);
15054                 else
15055                         ret = emit_castclass_with_cache_nonshared (cfg, source, klass);
15056         } else if (!context_used && (mono_class_is_marshalbyref (klass) || klass->flags & TYPE_ATTRIBUTE_INTERFACE)) {
15057                 MonoInst *iargs [1];
15058                 int costs;
15059
15060                 iargs [0] = source;
15061                 if (is_isinst) {
15062                         MonoMethod *wrapper = mono_marshal_get_isinst (klass);
15063                         costs = inline_method (cfg, wrapper, mono_method_signature (wrapper), iargs, 0, 0, TRUE);
15064                 } else {
15065                         MonoMethod *wrapper = mono_marshal_get_castclass (klass);
15066                         save_cast_details (cfg, klass, source->dreg, TRUE);
15067                         costs = inline_method (cfg, wrapper, mono_method_signature (wrapper), iargs, 0, 0, TRUE);
15068                         reset_cast_details (cfg);
15069                 }
15070                 g_assert (costs > 0);
15071                 ret = iargs [0];
15072         } else {
15073                 if (is_isinst)
15074                         ret = handle_isinst (cfg, klass, source, context_used);
15075                 else
15076                         ret = handle_castclass (cfg, klass, source, context_used);
15077         }
15078         EMIT_NEW_UNALU (cfg, move, OP_MOVE, ins->dreg, ret->dreg);
15079
15080         g_assert (cfg->cbb->code || first_bb->code);
15081         MonoInst *prev = ins->prev;
15082         mono_replace_ins (cfg, bb, ins, &prev, first_bb, cfg->cbb);
15083 }
15084
15085 void
15086 mono_decompose_typechecks (MonoCompile *cfg)
15087 {
15088         for (MonoBasicBlock *bb = cfg->bb_entry; bb; bb = bb->next_bb) {
15089                 MonoInst *ins;
15090                 MONO_BB_FOR_EACH_INS (bb, ins) {
15091                         switch (ins->opcode) {
15092                         case OP_ISINST:
15093                         case OP_CASTCLASS:
15094                                 mono_decompose_typecheck (cfg, bb, ins);
15095                                 break;
15096                         }
15097                 }
15098         }
15099 }
15100
15101
15102 /**
15103  * FIXME:
15104  * - use 'iadd' instead of 'int_add'
15105  * - handling ovf opcodes: decompose in method_to_ir.
15106  * - unify iregs/fregs
15107  *   -> partly done, the missing parts are:
15108  *   - a more complete unification would involve unifying the hregs as well, so
15109  *     code wouldn't need if (fp) all over the place. but that would mean the hregs
15110  *     would no longer map to the machine hregs, so the code generators would need to
15111  *     be modified. Also, on ia64 for example, niregs + nfregs > 256 -> bitmasks
15112  *     wouldn't work any more. Duplicating the code in mono_local_regalloc () into
15113  *     fp/non-fp branches speeds it up by about 15%.
15114  * - use sext/zext opcodes instead of shifts
15115  * - add OP_ICALL
15116  * - get rid of TEMPLOADs if possible and use vregs instead
15117  * - clean up usage of OP_P/OP_ opcodes
15118  * - cleanup usage of DUMMY_USE
15119  * - cleanup the setting of ins->type for MonoInst's which are pushed on the 
15120  *   stack
15121  * - set the stack type and allocate a dreg in the EMIT_NEW macros
15122  * - get rid of all the <foo>2 stuff when the new JIT is ready.
15123  * - make sure handle_stack_args () is called before the branch is emitted
15124  * - when the new IR is done, get rid of all unused stuff
15125  * - COMPARE/BEQ as separate instructions or unify them ?
15126  *   - keeping them separate allows specialized compare instructions like
15127  *     compare_imm, compare_membase
15128  *   - most back ends unify fp compare+branch, fp compare+ceq
15129  * - integrate mono_save_args into inline_method
15130  * - get rid of the empty bblocks created by MONO_EMIT_NEW_BRACH_BLOCK2
15131  * - handle long shift opts on 32 bit platforms somehow: they require 
15132  *   3 sregs (2 for arg1 and 1 for arg2)
15133  * - make byref a 'normal' type.
15134  * - use vregs for bb->out_stacks if possible, handle_global_vreg will make them a
15135  *   variable if needed.
15136  * - do not start a new IL level bblock when cfg->cbb is changed by a function call
15137  *   like inline_method.
15138  * - remove inlining restrictions
15139  * - fix LNEG and enable cfold of INEG
15140  * - generalize x86 optimizations like ldelema as a peephole optimization
15141  * - add store_mem_imm for amd64
15142  * - optimize the loading of the interruption flag in the managed->native wrappers
15143  * - avoid special handling of OP_NOP in passes
15144  * - move code inserting instructions into one function/macro.
15145  * - try a coalescing phase after liveness analysis
15146  * - add float -> vreg conversion + local optimizations on !x86
15147  * - figure out how to handle decomposed branches during optimizations, ie.
15148  *   compare+branch, op_jump_table+op_br etc.
15149  * - promote RuntimeXHandles to vregs
15150  * - vtype cleanups:
15151  *   - add a NEW_VARLOADA_VREG macro
15152  * - the vtype optimizations are blocked by the LDADDR opcodes generated for 
15153  *   accessing vtype fields.
15154  * - get rid of I8CONST on 64 bit platforms
15155  * - dealing with the increase in code size due to branches created during opcode
15156  *   decomposition:
15157  *   - use extended basic blocks
15158  *     - all parts of the JIT
15159  *     - handle_global_vregs () && local regalloc
15160  *   - avoid introducing global vregs during decomposition, like 'vtable' in isinst
15161  * - sources of increase in code size:
15162  *   - vtypes
15163  *   - long compares
15164  *   - isinst and castclass
15165  *   - lvregs not allocated to global registers even if used multiple times
15166  * - call cctors outside the JIT, to make -v output more readable and JIT timings more
15167  *   meaningful.
15168  * - check for fp stack leakage in other opcodes too. (-> 'exceptions' optimization)
15169  * - add all micro optimizations from the old JIT
15170  * - put tree optimizations into the deadce pass
15171  * - decompose op_start_handler/op_endfilter/op_endfinally earlier using an arch
15172  *   specific function.
15173  * - unify the float comparison opcodes with the other comparison opcodes, i.e.
15174  *   fcompare + branchCC.
15175  * - create a helper function for allocating a stack slot, taking into account 
15176  *   MONO_CFG_HAS_SPILLUP.
15177  * - merge r68207.
15178  * - merge the ia64 switch changes.
15179  * - optimize mono_regstate2_alloc_int/float.
15180  * - fix the pessimistic handling of variables accessed in exception handler blocks.
15181  * - need to write a tree optimization pass, but the creation of trees is difficult, i.e.
15182  *   parts of the tree could be separated by other instructions, killing the tree
15183  *   arguments, or stores killing loads etc. Also, should we fold loads into other
15184  *   instructions if the result of the load is used multiple times ?
15185  * - make the REM_IMM optimization in mini-x86.c arch-independent.
15186  * - LAST MERGE: 108395.
15187  * - when returning vtypes in registers, generate IR and append it to the end of the
15188  *   last bb instead of doing it in the epilog.
15189  * - change the store opcodes so they use sreg1 instead of dreg to store the base register.
15190  */
15191
15192 /*
15193
15194 NOTES
15195 -----
15196
15197 - When to decompose opcodes:
15198   - earlier: this makes some optimizations hard to implement, since the low level IR
15199   no longer contains the neccessary information. But it is easier to do.
15200   - later: harder to implement, enables more optimizations.
15201 - Branches inside bblocks:
15202   - created when decomposing complex opcodes. 
15203     - branches to another bblock: harmless, but not tracked by the branch 
15204       optimizations, so need to branch to a label at the start of the bblock.
15205     - branches to inside the same bblock: very problematic, trips up the local
15206       reg allocator. Can be fixed by spitting the current bblock, but that is a
15207       complex operation, since some local vregs can become global vregs etc.
15208 - Local/global vregs:
15209   - local vregs: temporary vregs used inside one bblock. Assigned to hregs by the
15210     local register allocator.
15211   - global vregs: used in more than one bblock. Have an associated MonoMethodVar
15212     structure, created by mono_create_var (). Assigned to hregs or the stack by
15213     the global register allocator.
15214 - When to do optimizations like alu->alu_imm:
15215   - earlier -> saves work later on since the IR will be smaller/simpler
15216   - later -> can work on more instructions
15217 - Handling of valuetypes:
15218   - When a vtype is pushed on the stack, a new temporary is created, an 
15219     instruction computing its address (LDADDR) is emitted and pushed on
15220     the stack. Need to optimize cases when the vtype is used immediately as in
15221     argument passing, stloc etc.
15222 - Instead of the to_end stuff in the old JIT, simply call the function handling
15223   the values on the stack before emitting the last instruction of the bb.
15224 */
15225
15226 #endif /* DISABLE_JIT */