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Shih-wei Liaod1fec812012-02-13 09:51:10 -08001/*
2 * Copyright (C) 2012 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#include "method_compiler.h"
18
Logan Chienfca7e872011-12-20 20:08:22 +080019#include "backend_types.h"
Shih-wei Liaod1fec812012-02-13 09:51:10 -080020#include "compiler.h"
Logan Chiena78e3c82011-12-27 17:59:35 +080021#include "inferred_reg_category_map.h"
Shih-wei Liaod1fec812012-02-13 09:51:10 -080022#include "ir_builder.h"
23#include "logging.h"
24#include "object.h"
25#include "object_utils.h"
Logan Chien42e0e152012-01-13 15:42:36 +080026#include "runtime_support_func.h"
Shih-wei Liaod1fec812012-02-13 09:51:10 -080027#include "stl_util.h"
Logan Chien0b827102011-12-20 19:46:14 +080028#include "stringprintf.h"
29#include "utils_llvm.h"
Shih-wei Liaod1fec812012-02-13 09:51:10 -080030
31#include <iomanip>
32
33#include <llvm/Analysis/Verifier.h>
Logan Chienc670a8d2011-12-20 21:25:56 +080034#include <llvm/BasicBlock.h>
Shih-wei Liaod1fec812012-02-13 09:51:10 -080035#include <llvm/Function.h>
Logan Chiena85fb2f2012-01-16 12:52:56 +080036#include <llvm/GlobalVariable.h>
37#include <llvm/Intrinsics.h>
Shih-wei Liaod1fec812012-02-13 09:51:10 -080038
Logan Chien83426162011-12-09 09:29:50 +080039namespace art {
40namespace compiler_llvm {
Shih-wei Liaod1fec812012-02-13 09:51:10 -080041
Logan Chien42e0e152012-01-13 15:42:36 +080042using namespace runtime_support;
43
Shih-wei Liaod1fec812012-02-13 09:51:10 -080044
Logan Chien83426162011-12-09 09:29:50 +080045MethodCompiler::MethodCompiler(InstructionSet insn_set,
46 Compiler* compiler,
47 ClassLinker* class_linker,
48 ClassLoader const* class_loader,
49 DexFile const* dex_file,
50 DexCache* dex_cache,
51 DexFile::CodeItem const* code_item,
Shih-wei Liaod1fec812012-02-13 09:51:10 -080052 uint32_t method_idx,
53 uint32_t access_flags)
54: insn_set_(insn_set),
55 compiler_(compiler), compiler_llvm_(compiler->GetCompilerLLVM()),
56 class_linker_(class_linker), class_loader_(class_loader),
57 dex_file_(dex_file), dex_cache_(dex_cache), code_item_(code_item),
58 method_(dex_cache->GetResolvedMethod(method_idx)),
59 method_helper_(method_), method_idx_(method_idx),
60 access_flags_(access_flags), module_(compiler_llvm_->GetModule()),
61 context_(compiler_llvm_->GetLLVMContext()),
Logan Chienc670a8d2011-12-20 21:25:56 +080062 irb_(*compiler_llvm_->GetIRBuilder()), func_(NULL), retval_reg_(NULL),
Logan Chien8dfcbea2012-02-17 18:50:32 +080063 basic_block_reg_alloca_(NULL), basic_block_shadow_frame_alloca_(NULL),
Logan Chiend6ececa2011-12-27 16:20:15 +080064 basic_block_reg_zero_init_(NULL), basic_block_reg_arg_init_(NULL),
Logan Chien5bcc04e2012-01-30 14:15:12 +080065 basic_blocks_(code_item->insns_size_in_code_units_),
66 basic_block_landing_pads_(code_item->tries_size_, NULL),
Logan Chien8dfcbea2012-02-17 18:50:32 +080067 basic_block_unwind_(NULL), basic_block_unreachable_(NULL),
68 shadow_frame_(NULL) {
Shih-wei Liaod1fec812012-02-13 09:51:10 -080069}
70
71
72MethodCompiler::~MethodCompiler() {
Logan Chienc670a8d2011-12-20 21:25:56 +080073 STLDeleteElements(&regs_);
Shih-wei Liaod1fec812012-02-13 09:51:10 -080074}
75
76
Logan Chien0b827102011-12-20 19:46:14 +080077void MethodCompiler::CreateFunction() {
78 // LLVM function name
79 std::string func_name(LLVMLongName(method_));
80
81 // Get function type
82 llvm::FunctionType* func_type =
83 GetFunctionType(method_idx_, method_->IsStatic());
84
85 // Create function
86 func_ = llvm::Function::Create(func_type, llvm::Function::ExternalLinkage,
87 func_name, module_);
88
89 // Set argument name
90 llvm::Function::arg_iterator arg_iter(func_->arg_begin());
91 llvm::Function::arg_iterator arg_end(func_->arg_end());
92
93 DCHECK_NE(arg_iter, arg_end);
94 arg_iter->setName("method");
95 ++arg_iter;
96
97 if (!method_->IsStatic()) {
98 DCHECK_NE(arg_iter, arg_end);
99 arg_iter->setName("this");
100 ++arg_iter;
101 }
102
103 for (unsigned i = 0; arg_iter != arg_end; ++i, ++arg_iter) {
104 arg_iter->setName(StringPrintf("a%u", i));
105 }
106}
107
108
109llvm::FunctionType* MethodCompiler::GetFunctionType(uint32_t method_idx,
110 bool is_static) {
111 // Get method signature
112 DexFile::MethodId const& method_id = dex_file_->GetMethodId(method_idx);
113
114 int32_t shorty_size;
115 char const* shorty = dex_file_->GetMethodShorty(method_id, &shorty_size);
116 CHECK_GE(shorty_size, 1);
117
118 // Get return type
119 llvm::Type* ret_type = irb_.getJType(shorty[0], kAccurate);
120
121 // Get argument type
122 std::vector<llvm::Type*> args_type;
123
124 args_type.push_back(irb_.getJObjectTy()); // method object pointer
125
126 if (!is_static) {
127 args_type.push_back(irb_.getJType('L', kAccurate)); // "this" object pointer
128 }
129
130 for (int32_t i = 1; i < shorty_size; ++i) {
131 args_type.push_back(irb_.getJType(shorty[i], kAccurate));
132 }
133
134 return llvm::FunctionType::get(ret_type, args_type, false);
135}
136
137
Shih-wei Liaod1fec812012-02-13 09:51:10 -0800138void MethodCompiler::EmitPrologue() {
Logan Chienc670a8d2011-12-20 21:25:56 +0800139 // Create basic blocks for prologue
140 basic_block_reg_alloca_ =
141 llvm::BasicBlock::Create(*context_, "prologue.alloca", func_);
142
Logan Chien8dfcbea2012-02-17 18:50:32 +0800143 basic_block_shadow_frame_alloca_ =
144 llvm::BasicBlock::Create(*context_, "prologue.shadowframe", func_);
145
Logan Chienc670a8d2011-12-20 21:25:56 +0800146 basic_block_reg_zero_init_ =
147 llvm::BasicBlock::Create(*context_, "prologue.zeroinit", func_);
148
Logan Chiend6ececa2011-12-27 16:20:15 +0800149 basic_block_reg_arg_init_ =
150 llvm::BasicBlock::Create(*context_, "prologue.arginit", func_);
151
Logan Chienc670a8d2011-12-20 21:25:56 +0800152 // Create register array
153 for (uint16_t r = 0; r < code_item_->registers_size_; ++r) {
154 regs_.push_back(DalvikReg::CreateLocalVarReg(*this, r));
155 }
156
157 retval_reg_.reset(DalvikReg::CreateRetValReg(*this));
Logan Chiend6ececa2011-12-27 16:20:15 +0800158
Logan Chien8dfcbea2012-02-17 18:50:32 +0800159 // Create Shadow Frame
160 EmitPrologueAllocShadowFrame();
161
Logan Chiend6ececa2011-12-27 16:20:15 +0800162 // Store argument to dalvik register
163 irb_.SetInsertPoint(basic_block_reg_arg_init_);
164 EmitPrologueAssignArgRegister();
165
166 // Branch to start address
167 irb_.CreateBr(GetBasicBlock(0));
Logan Chienc670a8d2011-12-20 21:25:56 +0800168}
169
170
171void MethodCompiler::EmitPrologueLastBranch() {
172 irb_.SetInsertPoint(basic_block_reg_alloca_);
Logan Chien8dfcbea2012-02-17 18:50:32 +0800173 irb_.CreateBr(basic_block_shadow_frame_alloca_);
174
175 irb_.SetInsertPoint(basic_block_shadow_frame_alloca_);
Logan Chienc670a8d2011-12-20 21:25:56 +0800176 irb_.CreateBr(basic_block_reg_zero_init_);
177
178 irb_.SetInsertPoint(basic_block_reg_zero_init_);
Logan Chiend6ececa2011-12-27 16:20:15 +0800179 irb_.CreateBr(basic_block_reg_arg_init_);
180}
181
182
Logan Chien8dfcbea2012-02-17 18:50:32 +0800183void MethodCompiler::EmitPrologueAllocShadowFrame() {
184 irb_.SetInsertPoint(basic_block_shadow_frame_alloca_);
185
186 // Allocate the shadow frame now!
187 uint32_t sirt_size = code_item_->registers_size_;
188 // TODO: registers_size_ is a bad approximation. Compute a
189 // tighter approximation at Dex verifier while performing data-flow
190 // analysis.
191
192 llvm::StructType* shadow_frame_type = irb_.getShadowFrameTy(sirt_size);
193 shadow_frame_ = irb_.CreateAlloca(shadow_frame_type);
194
195 // Zero-initialization of the shadow frame
196 llvm::ConstantAggregateZero* zero_initializer =
197 llvm::ConstantAggregateZero::get(shadow_frame_type);
198
199 irb_.CreateStore(zero_initializer, shadow_frame_);
200
201 // Variables for GetElementPtr
202 llvm::Constant* zero = irb_.getInt32(0);
203
204 llvm::Value* gep_index[] = {
205 zero, // No displacement for shadow frame pointer
206 zero, // Get the %ArtFrame data structure
207 NULL,
208 };
209
210 // Store the method pointer
211 gep_index[2] = irb_.getInt32(1);
212 llvm::Value* method_field_addr = irb_.CreateGEP(shadow_frame_, gep_index);
213 llvm::Value* method_object_addr = EmitLoadMethodObjectAddr();
214 irb_.CreateStore(method_object_addr, method_field_addr);
215
216 // Store the number of the pointer slots
217 gep_index[2] = irb_.getInt32(3);
218 llvm::Value* size_field_addr = irb_.CreateGEP(shadow_frame_, gep_index);
219 llvm::ConstantInt* sirt_size_value = irb_.getInt32(sirt_size);
220 irb_.CreateStore(sirt_size_value, size_field_addr);
221
222 // Push the shadow frame
223 llvm::Value* shadow_frame_upcast =
224 irb_.CreateConstGEP2_32(shadow_frame_, 0, 0);
225
226 irb_.CreateCall(irb_.GetRuntime(PushShadowFrame), shadow_frame_upcast);
227}
228
229
Logan Chiend6ececa2011-12-27 16:20:15 +0800230void MethodCompiler::EmitPrologueAssignArgRegister() {
231 uint16_t arg_reg = code_item_->registers_size_ - code_item_->ins_size_;
232
233 llvm::Function::arg_iterator arg_iter(func_->arg_begin());
234 llvm::Function::arg_iterator arg_end(func_->arg_end());
235
236 char const* shorty = method_helper_.GetShorty();
237 int32_t shorty_size = method_helper_.GetShortyLength();
238 CHECK_LE(1, shorty_size);
239
240 ++arg_iter; // skip method object
241
242 if (!method_->IsStatic()) {
243 EmitStoreDalvikReg(arg_reg, kObject, kAccurate, arg_iter);
244 ++arg_iter;
245 ++arg_reg;
246 }
247
248 for (int32_t i = 1; i < shorty_size; ++i, ++arg_iter) {
249 EmitStoreDalvikReg(arg_reg, shorty[i], kAccurate, arg_iter);
250
251 ++arg_reg;
252 if (shorty[i] == 'J' || shorty[i] == 'D') {
253 // Wide types, such as long and double, are using a pair of registers
254 // to store the value, so we have to increase arg_reg again.
255 ++arg_reg;
256 }
257 }
258
259 DCHECK_EQ(arg_end, arg_iter);
Shih-wei Liaod1fec812012-02-13 09:51:10 -0800260}
261
262
Logan Chien83426162011-12-09 09:29:50 +0800263void MethodCompiler::EmitInstructions() {
Logan Chiend6c239a2011-12-23 15:11:45 +0800264 uint32_t dex_pc = 0;
265 while (dex_pc < code_item_->insns_size_in_code_units_) {
266 Instruction const* insn = Instruction::At(code_item_->insns_ + dex_pc);
267 EmitInstruction(dex_pc, insn);
268 dex_pc += insn->SizeInCodeUnits();
269 }
Shih-wei Liaod1fec812012-02-13 09:51:10 -0800270}
271
272
Logan Chien83426162011-12-09 09:29:50 +0800273void MethodCompiler::EmitInstruction(uint32_t dex_pc,
274 Instruction const* insn) {
Logan Chiend6c239a2011-12-23 15:11:45 +0800275
276 // Set the IRBuilder insertion point
277 irb_.SetInsertPoint(GetBasicBlock(dex_pc));
278
Logan Chien70f94b42011-12-27 17:49:11 +0800279#define ARGS dex_pc, insn
280
281 // Dispatch the instruction
282 switch (insn->Opcode()) {
283 case Instruction::NOP:
284 EmitInsn_Nop(ARGS);
285 break;
286
287 case Instruction::MOVE:
288 case Instruction::MOVE_FROM16:
289 case Instruction::MOVE_16:
290 EmitInsn_Move(ARGS, kInt);
291 break;
292
293 case Instruction::MOVE_WIDE:
294 case Instruction::MOVE_WIDE_FROM16:
295 case Instruction::MOVE_WIDE_16:
296 EmitInsn_Move(ARGS, kLong);
297 break;
298
299 case Instruction::MOVE_OBJECT:
300 case Instruction::MOVE_OBJECT_FROM16:
301 case Instruction::MOVE_OBJECT_16:
302 EmitInsn_Move(ARGS, kObject);
303 break;
304
305 case Instruction::MOVE_RESULT:
306 EmitInsn_MoveResult(ARGS, kInt);
307 break;
308
309 case Instruction::MOVE_RESULT_WIDE:
310 EmitInsn_MoveResult(ARGS, kLong);
311 break;
312
313 case Instruction::MOVE_RESULT_OBJECT:
314 EmitInsn_MoveResult(ARGS, kObject);
315 break;
316
317 case Instruction::MOVE_EXCEPTION:
318 EmitInsn_MoveException(ARGS);
319 break;
320
321 case Instruction::RETURN_VOID:
322 EmitInsn_ReturnVoid(ARGS);
323 break;
324
325 case Instruction::RETURN:
326 case Instruction::RETURN_WIDE:
327 case Instruction::RETURN_OBJECT:
328 EmitInsn_Return(ARGS);
329 break;
330
331 case Instruction::CONST_4:
332 case Instruction::CONST_16:
333 case Instruction::CONST:
334 case Instruction::CONST_HIGH16:
335 EmitInsn_LoadConstant(ARGS, kInt);
336 break;
337
338 case Instruction::CONST_WIDE_16:
339 case Instruction::CONST_WIDE_32:
340 case Instruction::CONST_WIDE:
341 case Instruction::CONST_WIDE_HIGH16:
342 EmitInsn_LoadConstant(ARGS, kLong);
343 break;
344
345 case Instruction::CONST_STRING:
346 case Instruction::CONST_STRING_JUMBO:
347 EmitInsn_LoadConstantString(ARGS);
348 break;
349
350 case Instruction::CONST_CLASS:
351 EmitInsn_LoadConstantClass(ARGS);
352 break;
353
354 case Instruction::MONITOR_ENTER:
355 EmitInsn_MonitorEnter(ARGS);
356 break;
357
358 case Instruction::MONITOR_EXIT:
359 EmitInsn_MonitorExit(ARGS);
360 break;
361
362 case Instruction::CHECK_CAST:
363 EmitInsn_CheckCast(ARGS);
364 break;
365
366 case Instruction::INSTANCE_OF:
367 EmitInsn_InstanceOf(ARGS);
368 break;
369
370 case Instruction::ARRAY_LENGTH:
371 EmitInsn_ArrayLength(ARGS);
372 break;
373
374 case Instruction::NEW_INSTANCE:
375 EmitInsn_NewInstance(ARGS);
376 break;
377
378 case Instruction::NEW_ARRAY:
379 EmitInsn_NewArray(ARGS);
380 break;
381
382 case Instruction::FILLED_NEW_ARRAY:
383 EmitInsn_FilledNewArray(ARGS, false);
384 break;
385
386 case Instruction::FILLED_NEW_ARRAY_RANGE:
387 EmitInsn_FilledNewArray(ARGS, true);
388 break;
389
390 case Instruction::FILL_ARRAY_DATA:
391 EmitInsn_FillArrayData(ARGS);
392 break;
393
394 case Instruction::THROW:
395 EmitInsn_ThrowException(ARGS);
396 break;
397
398 case Instruction::GOTO:
399 case Instruction::GOTO_16:
400 case Instruction::GOTO_32:
401 EmitInsn_UnconditionalBranch(ARGS);
402 break;
403
404 case Instruction::PACKED_SWITCH:
405 EmitInsn_PackedSwitch(ARGS);
406 break;
407
408 case Instruction::SPARSE_SWITCH:
409 EmitInsn_SparseSwitch(ARGS);
410 break;
411
412 case Instruction::CMPL_FLOAT:
413 EmitInsn_FPCompare(ARGS, kFloat, false);
414 break;
415
416 case Instruction::CMPG_FLOAT:
417 EmitInsn_FPCompare(ARGS, kFloat, true);
418 break;
419
420 case Instruction::CMPL_DOUBLE:
421 EmitInsn_FPCompare(ARGS, kDouble, false);
422 break;
423
424 case Instruction::CMPG_DOUBLE:
425 EmitInsn_FPCompare(ARGS, kDouble, true);
426 break;
427
428 case Instruction::CMP_LONG:
429 EmitInsn_LongCompare(ARGS);
430 break;
431
432 case Instruction::IF_EQ:
433 EmitInsn_BinaryConditionalBranch(ARGS, kCondBranch_EQ);
434 break;
435
436 case Instruction::IF_NE:
437 EmitInsn_BinaryConditionalBranch(ARGS, kCondBranch_NE);
438 break;
439
440 case Instruction::IF_LT:
441 EmitInsn_BinaryConditionalBranch(ARGS, kCondBranch_LT);
442 break;
443
444 case Instruction::IF_GE:
445 EmitInsn_BinaryConditionalBranch(ARGS, kCondBranch_GE);
446 break;
447
448 case Instruction::IF_GT:
449 EmitInsn_BinaryConditionalBranch(ARGS, kCondBranch_GT);
450 break;
451
452 case Instruction::IF_LE:
453 EmitInsn_BinaryConditionalBranch(ARGS, kCondBranch_LE);
454 break;
455
456 case Instruction::IF_EQZ:
457 EmitInsn_UnaryConditionalBranch(ARGS, kCondBranch_EQ);
458 break;
459
460 case Instruction::IF_NEZ:
461 EmitInsn_UnaryConditionalBranch(ARGS, kCondBranch_NE);
462 break;
463
464 case Instruction::IF_LTZ:
465 EmitInsn_UnaryConditionalBranch(ARGS, kCondBranch_LT);
466 break;
467
468 case Instruction::IF_GEZ:
469 EmitInsn_UnaryConditionalBranch(ARGS, kCondBranch_GE);
470 break;
471
472 case Instruction::IF_GTZ:
473 EmitInsn_UnaryConditionalBranch(ARGS, kCondBranch_GT);
474 break;
475
476 case Instruction::IF_LEZ:
477 EmitInsn_UnaryConditionalBranch(ARGS, kCondBranch_LE);
478 break;
479
480 case Instruction::AGET:
481 EmitInsn_AGet(ARGS, kInt);
482 break;
483
484 case Instruction::AGET_WIDE:
485 EmitInsn_AGet(ARGS, kLong);
486 break;
487
488 case Instruction::AGET_OBJECT:
489 EmitInsn_AGet(ARGS, kObject);
490 break;
491
492 case Instruction::AGET_BOOLEAN:
493 EmitInsn_AGet(ARGS, kBoolean);
494 break;
495
496 case Instruction::AGET_BYTE:
497 EmitInsn_AGet(ARGS, kByte);
498 break;
499
500 case Instruction::AGET_CHAR:
501 EmitInsn_AGet(ARGS, kChar);
502 break;
503
504 case Instruction::AGET_SHORT:
505 EmitInsn_AGet(ARGS, kShort);
506 break;
507
508 case Instruction::APUT:
509 EmitInsn_APut(ARGS, kInt);
510 break;
511
512 case Instruction::APUT_WIDE:
513 EmitInsn_APut(ARGS, kLong);
514 break;
515
516 case Instruction::APUT_OBJECT:
517 EmitInsn_APut(ARGS, kObject);
518 break;
519
520 case Instruction::APUT_BOOLEAN:
521 EmitInsn_APut(ARGS, kBoolean);
522 break;
523
524 case Instruction::APUT_BYTE:
525 EmitInsn_APut(ARGS, kByte);
526 break;
527
528 case Instruction::APUT_CHAR:
529 EmitInsn_APut(ARGS, kChar);
530 break;
531
532 case Instruction::APUT_SHORT:
533 EmitInsn_APut(ARGS, kShort);
534 break;
535
536 case Instruction::IGET:
537 EmitInsn_IGet(ARGS, kInt);
538 break;
539
540 case Instruction::IGET_WIDE:
541 EmitInsn_IGet(ARGS, kLong);
542 break;
543
544 case Instruction::IGET_OBJECT:
545 EmitInsn_IGet(ARGS, kObject);
546 break;
547
548 case Instruction::IGET_BOOLEAN:
549 EmitInsn_IGet(ARGS, kBoolean);
550 break;
551
552 case Instruction::IGET_BYTE:
553 EmitInsn_IGet(ARGS, kByte);
554 break;
555
556 case Instruction::IGET_CHAR:
557 EmitInsn_IGet(ARGS, kChar);
558 break;
559
560 case Instruction::IGET_SHORT:
561 EmitInsn_IGet(ARGS, kShort);
562 break;
563
564 case Instruction::IPUT:
565 EmitInsn_IPut(ARGS, kInt);
566 break;
567
568 case Instruction::IPUT_WIDE:
569 EmitInsn_IPut(ARGS, kLong);
570 break;
571
572 case Instruction::IPUT_OBJECT:
573 EmitInsn_IPut(ARGS, kObject);
574 break;
575
576 case Instruction::IPUT_BOOLEAN:
577 EmitInsn_IPut(ARGS, kBoolean);
578 break;
579
580 case Instruction::IPUT_BYTE:
581 EmitInsn_IPut(ARGS, kByte);
582 break;
583
584 case Instruction::IPUT_CHAR:
585 EmitInsn_IPut(ARGS, kChar);
586 break;
587
588 case Instruction::IPUT_SHORT:
589 EmitInsn_IPut(ARGS, kShort);
590 break;
591
592 case Instruction::SGET:
593 EmitInsn_SGet(ARGS, kInt);
594 break;
595
596 case Instruction::SGET_WIDE:
597 EmitInsn_SGet(ARGS, kLong);
598 break;
599
600 case Instruction::SGET_OBJECT:
601 EmitInsn_SGet(ARGS, kObject);
602 break;
603
604 case Instruction::SGET_BOOLEAN:
605 EmitInsn_SGet(ARGS, kBoolean);
606 break;
607
608 case Instruction::SGET_BYTE:
609 EmitInsn_SGet(ARGS, kByte);
610 break;
611
612 case Instruction::SGET_CHAR:
613 EmitInsn_SGet(ARGS, kChar);
614 break;
615
616 case Instruction::SGET_SHORT:
617 EmitInsn_SGet(ARGS, kShort);
618 break;
619
620 case Instruction::SPUT:
621 EmitInsn_SPut(ARGS, kInt);
622 break;
623
624 case Instruction::SPUT_WIDE:
625 EmitInsn_SPut(ARGS, kLong);
626 break;
627
628 case Instruction::SPUT_OBJECT:
629 EmitInsn_SPut(ARGS, kObject);
630 break;
631
632 case Instruction::SPUT_BOOLEAN:
633 EmitInsn_SPut(ARGS, kBoolean);
634 break;
635
636 case Instruction::SPUT_BYTE:
637 EmitInsn_SPut(ARGS, kByte);
638 break;
639
640 case Instruction::SPUT_CHAR:
641 EmitInsn_SPut(ARGS, kChar);
642 break;
643
644 case Instruction::SPUT_SHORT:
645 EmitInsn_SPut(ARGS, kShort);
646 break;
647
648
649 case Instruction::INVOKE_VIRTUAL:
650 EmitInsn_InvokeVirtual(ARGS, false);
651 break;
652
653 case Instruction::INVOKE_SUPER:
654 EmitInsn_InvokeSuper(ARGS, false);
655 break;
656
657 case Instruction::INVOKE_DIRECT:
Logan Chien1a121b92012-02-15 22:23:42 +0800658 EmitInsn_InvokeStaticDirect(ARGS, /* is_range */ false, /* is_static */ false);
Logan Chien70f94b42011-12-27 17:49:11 +0800659 break;
660
661 case Instruction::INVOKE_STATIC:
Logan Chien1a121b92012-02-15 22:23:42 +0800662 EmitInsn_InvokeStaticDirect(ARGS, /* is_range */ false, /* is_static */ true);
Logan Chien70f94b42011-12-27 17:49:11 +0800663 break;
664
665 case Instruction::INVOKE_INTERFACE:
666 EmitInsn_InvokeInterface(ARGS, false);
667 break;
668
669 case Instruction::INVOKE_VIRTUAL_RANGE:
670 EmitInsn_InvokeVirtual(ARGS, true);
671 break;
672
673 case Instruction::INVOKE_SUPER_RANGE:
674 EmitInsn_InvokeSuper(ARGS, true);
675 break;
676
677 case Instruction::INVOKE_DIRECT_RANGE:
Logan Chien1a121b92012-02-15 22:23:42 +0800678 EmitInsn_InvokeStaticDirect(ARGS, /* is_range */ true, /* is_static */ false);
Logan Chien70f94b42011-12-27 17:49:11 +0800679 break;
680
681 case Instruction::INVOKE_STATIC_RANGE:
Logan Chien1a121b92012-02-15 22:23:42 +0800682 EmitInsn_InvokeStaticDirect(ARGS, /* is_range */ true, /* is_static */ true);
Logan Chien70f94b42011-12-27 17:49:11 +0800683 break;
684
685 case Instruction::INVOKE_INTERFACE_RANGE:
686 EmitInsn_InvokeInterface(ARGS, true);
687 break;
688
689 case Instruction::NEG_INT:
690 EmitInsn_Neg(ARGS, kInt);
691 break;
692
693 case Instruction::NOT_INT:
694 EmitInsn_Not(ARGS, kInt);
695 break;
696
697 case Instruction::NEG_LONG:
698 EmitInsn_Neg(ARGS, kLong);
699 break;
700
701 case Instruction::NOT_LONG:
702 EmitInsn_Not(ARGS, kLong);
703 break;
704
705 case Instruction::NEG_FLOAT:
706 EmitInsn_FNeg(ARGS, kFloat);
707 break;
708
709 case Instruction::NEG_DOUBLE:
710 EmitInsn_FNeg(ARGS, kDouble);
711 break;
712
713 case Instruction::INT_TO_LONG:
714 EmitInsn_SExt(ARGS);
715 break;
716
717 case Instruction::INT_TO_FLOAT:
718 EmitInsn_IntToFP(ARGS, kInt, kFloat);
719 break;
720
721 case Instruction::INT_TO_DOUBLE:
722 EmitInsn_IntToFP(ARGS, kInt, kDouble);
723 break;
724
725 case Instruction::LONG_TO_INT:
726 EmitInsn_Trunc(ARGS);
727 break;
728
729 case Instruction::LONG_TO_FLOAT:
730 EmitInsn_IntToFP(ARGS, kLong, kFloat);
731 break;
732
733 case Instruction::LONG_TO_DOUBLE:
734 EmitInsn_IntToFP(ARGS, kLong, kDouble);
735 break;
736
737 case Instruction::FLOAT_TO_INT:
738 EmitInsn_FPToInt(ARGS, kFloat, kInt);
739 break;
740
741 case Instruction::FLOAT_TO_LONG:
742 EmitInsn_FPToInt(ARGS, kFloat, kLong);
743 break;
744
745 case Instruction::FLOAT_TO_DOUBLE:
746 EmitInsn_FExt(ARGS);
747 break;
748
749 case Instruction::DOUBLE_TO_INT:
750 EmitInsn_FPToInt(ARGS, kDouble, kInt);
751 break;
752
753 case Instruction::DOUBLE_TO_LONG:
754 EmitInsn_FPToInt(ARGS, kDouble, kLong);
755 break;
756
757 case Instruction::DOUBLE_TO_FLOAT:
758 EmitInsn_FTrunc(ARGS);
759 break;
760
761 case Instruction::INT_TO_BYTE:
762 EmitInsn_TruncAndSExt(ARGS, 8);
763 break;
764
765 case Instruction::INT_TO_CHAR:
766 EmitInsn_TruncAndZExt(ARGS, 16);
767 break;
768
769 case Instruction::INT_TO_SHORT:
770 EmitInsn_TruncAndSExt(ARGS, 16);
771 break;
772
773 case Instruction::ADD_INT:
774 EmitInsn_IntArithm(ARGS, kIntArithm_Add, kInt, false);
775 break;
776
777 case Instruction::SUB_INT:
778 EmitInsn_IntArithm(ARGS, kIntArithm_Sub, kInt, false);
779 break;
780
781 case Instruction::MUL_INT:
782 EmitInsn_IntArithm(ARGS, kIntArithm_Mul, kInt, false);
783 break;
784
785 case Instruction::DIV_INT:
786 EmitInsn_IntArithm(ARGS, kIntArithm_Div, kInt, false);
787 break;
788
789 case Instruction::REM_INT:
790 EmitInsn_IntArithm(ARGS, kIntArithm_Rem, kInt, false);
791 break;
792
793 case Instruction::AND_INT:
794 EmitInsn_IntArithm(ARGS, kIntArithm_And, kInt, false);
795 break;
796
797 case Instruction::OR_INT:
798 EmitInsn_IntArithm(ARGS, kIntArithm_Or, kInt, false);
799 break;
800
801 case Instruction::XOR_INT:
802 EmitInsn_IntArithm(ARGS, kIntArithm_Xor, kInt, false);
803 break;
804
805 case Instruction::SHL_INT:
806 EmitInsn_IntArithm(ARGS, kIntArithm_Shl, kInt, false);
807 break;
808
809 case Instruction::SHR_INT:
810 EmitInsn_IntArithm(ARGS, kIntArithm_Shr, kInt, false);
811 break;
812
813 case Instruction::USHR_INT:
814 EmitInsn_IntArithm(ARGS, kIntArithm_UShr, kInt, false);
815 break;
816
817 case Instruction::ADD_LONG:
818 EmitInsn_IntArithm(ARGS, kIntArithm_Add, kLong, false);
819 break;
820
821 case Instruction::SUB_LONG:
822 EmitInsn_IntArithm(ARGS, kIntArithm_Sub, kLong, false);
823 break;
824
825 case Instruction::MUL_LONG:
826 EmitInsn_IntArithm(ARGS, kIntArithm_Mul, kLong, false);
827 break;
828
829 case Instruction::DIV_LONG:
830 EmitInsn_IntArithm(ARGS, kIntArithm_Div, kLong, false);
831 break;
832
833 case Instruction::REM_LONG:
834 EmitInsn_IntArithm(ARGS, kIntArithm_Rem, kLong, false);
835 break;
836
837 case Instruction::AND_LONG:
838 EmitInsn_IntArithm(ARGS, kIntArithm_And, kLong, false);
839 break;
840
841 case Instruction::OR_LONG:
842 EmitInsn_IntArithm(ARGS, kIntArithm_Or, kLong, false);
843 break;
844
845 case Instruction::XOR_LONG:
846 EmitInsn_IntArithm(ARGS, kIntArithm_Xor, kLong, false);
847 break;
848
849 case Instruction::SHL_LONG:
850 EmitInsn_IntArithm(ARGS, kIntArithm_Shl, kLong, false);
851 break;
852
853 case Instruction::SHR_LONG:
854 EmitInsn_IntArithm(ARGS, kIntArithm_Shr, kLong, false);
855 break;
856
857 case Instruction::USHR_LONG:
858 EmitInsn_IntArithm(ARGS, kIntArithm_UShr, kLong, false);
859 break;
860
861 case Instruction::ADD_FLOAT:
862 EmitInsn_FPArithm(ARGS, kFPArithm_Add, kFloat, false);
863 break;
864
865 case Instruction::SUB_FLOAT:
866 EmitInsn_FPArithm(ARGS, kFPArithm_Sub, kFloat, false);
867 break;
868
869 case Instruction::MUL_FLOAT:
870 EmitInsn_FPArithm(ARGS, kFPArithm_Mul, kFloat, false);
871 break;
872
873 case Instruction::DIV_FLOAT:
874 EmitInsn_FPArithm(ARGS, kFPArithm_Div, kFloat, false);
875 break;
876
877 case Instruction::REM_FLOAT:
878 EmitInsn_FPArithm(ARGS, kFPArithm_Rem, kFloat, false);
879 break;
880
881 case Instruction::ADD_DOUBLE:
882 EmitInsn_FPArithm(ARGS, kFPArithm_Add, kDouble, false);
883 break;
884
885 case Instruction::SUB_DOUBLE:
886 EmitInsn_FPArithm(ARGS, kFPArithm_Sub, kDouble, false);
887 break;
888
889 case Instruction::MUL_DOUBLE:
890 EmitInsn_FPArithm(ARGS, kFPArithm_Mul, kDouble, false);
891 break;
892
893 case Instruction::DIV_DOUBLE:
894 EmitInsn_FPArithm(ARGS, kFPArithm_Div, kDouble, false);
895 break;
896
897 case Instruction::REM_DOUBLE:
898 EmitInsn_FPArithm(ARGS, kFPArithm_Rem, kDouble, false);
899 break;
900
901 case Instruction::ADD_INT_2ADDR:
902 EmitInsn_IntArithm(ARGS, kIntArithm_Add, kInt, true);
903 break;
904
905 case Instruction::SUB_INT_2ADDR:
906 EmitInsn_IntArithm(ARGS, kIntArithm_Sub, kInt, true);
907 break;
908
909 case Instruction::MUL_INT_2ADDR:
910 EmitInsn_IntArithm(ARGS, kIntArithm_Mul, kInt, true);
911 break;
912
913 case Instruction::DIV_INT_2ADDR:
914 EmitInsn_IntArithm(ARGS, kIntArithm_Div, kInt, true);
915 break;
916
917 case Instruction::REM_INT_2ADDR:
918 EmitInsn_IntArithm(ARGS, kIntArithm_Rem, kInt, true);
919 break;
920
921 case Instruction::AND_INT_2ADDR:
922 EmitInsn_IntArithm(ARGS, kIntArithm_And, kInt, true);
923 break;
924
925 case Instruction::OR_INT_2ADDR:
926 EmitInsn_IntArithm(ARGS, kIntArithm_Or, kInt, true);
927 break;
928
929 case Instruction::XOR_INT_2ADDR:
930 EmitInsn_IntArithm(ARGS, kIntArithm_Xor, kInt, true);
931 break;
932
933 case Instruction::SHL_INT_2ADDR:
934 EmitInsn_IntArithm(ARGS, kIntArithm_Shl, kInt, true);
935 break;
936
937 case Instruction::SHR_INT_2ADDR:
938 EmitInsn_IntArithm(ARGS, kIntArithm_Shr, kInt, true);
939 break;
940
941 case Instruction::USHR_INT_2ADDR:
942 EmitInsn_IntArithm(ARGS, kIntArithm_UShr, kInt, true);
943 break;
944
945 case Instruction::ADD_LONG_2ADDR:
946 EmitInsn_IntArithm(ARGS, kIntArithm_Add, kLong, true);
947 break;
948
949 case Instruction::SUB_LONG_2ADDR:
950 EmitInsn_IntArithm(ARGS, kIntArithm_Sub, kLong, true);
951 break;
952
953 case Instruction::MUL_LONG_2ADDR:
954 EmitInsn_IntArithm(ARGS, kIntArithm_Mul, kLong, true);
955 break;
956
957 case Instruction::DIV_LONG_2ADDR:
958 EmitInsn_IntArithm(ARGS, kIntArithm_Div, kLong, true);
959 break;
960
961 case Instruction::REM_LONG_2ADDR:
962 EmitInsn_IntArithm(ARGS, kIntArithm_Rem, kLong, true);
963 break;
964
965 case Instruction::AND_LONG_2ADDR:
966 EmitInsn_IntArithm(ARGS, kIntArithm_And, kLong, true);
967 break;
968
969 case Instruction::OR_LONG_2ADDR:
970 EmitInsn_IntArithm(ARGS, kIntArithm_Or, kLong, true);
971 break;
972
973 case Instruction::XOR_LONG_2ADDR:
974 EmitInsn_IntArithm(ARGS, kIntArithm_Xor, kLong, true);
975 break;
976
977 case Instruction::SHL_LONG_2ADDR:
978 EmitInsn_IntArithm(ARGS, kIntArithm_Shl, kLong, true);
979 break;
980
981 case Instruction::SHR_LONG_2ADDR:
982 EmitInsn_IntArithm(ARGS, kIntArithm_Shr, kLong, true);
983 break;
984
985 case Instruction::USHR_LONG_2ADDR:
986 EmitInsn_IntArithm(ARGS, kIntArithm_UShr, kLong, true);
987 break;
988
989 case Instruction::ADD_FLOAT_2ADDR:
990 EmitInsn_FPArithm(ARGS, kFPArithm_Add, kFloat, true);
991 break;
992
993 case Instruction::SUB_FLOAT_2ADDR:
994 EmitInsn_FPArithm(ARGS, kFPArithm_Sub, kFloat, true);
995 break;
996
997 case Instruction::MUL_FLOAT_2ADDR:
998 EmitInsn_FPArithm(ARGS, kFPArithm_Mul, kFloat, true);
999 break;
1000
1001 case Instruction::DIV_FLOAT_2ADDR:
1002 EmitInsn_FPArithm(ARGS, kFPArithm_Div, kFloat, true);
1003 break;
1004
1005 case Instruction::REM_FLOAT_2ADDR:
1006 EmitInsn_FPArithm(ARGS, kFPArithm_Rem, kFloat, true);
1007 break;
1008
1009 case Instruction::ADD_DOUBLE_2ADDR:
1010 EmitInsn_FPArithm(ARGS, kFPArithm_Add, kDouble, true);
1011 break;
1012
1013 case Instruction::SUB_DOUBLE_2ADDR:
1014 EmitInsn_FPArithm(ARGS, kFPArithm_Sub, kDouble, true);
1015 break;
1016
1017 case Instruction::MUL_DOUBLE_2ADDR:
1018 EmitInsn_FPArithm(ARGS, kFPArithm_Mul, kDouble, true);
1019 break;
1020
1021 case Instruction::DIV_DOUBLE_2ADDR:
1022 EmitInsn_FPArithm(ARGS, kFPArithm_Div, kDouble, true);
1023 break;
1024
1025 case Instruction::REM_DOUBLE_2ADDR:
1026 EmitInsn_FPArithm(ARGS, kFPArithm_Rem, kDouble, true);
1027 break;
1028
1029 case Instruction::ADD_INT_LIT16:
1030 case Instruction::ADD_INT_LIT8:
1031 EmitInsn_IntArithmImmediate(ARGS, kIntArithm_Add);
1032 break;
1033
1034 case Instruction::RSUB_INT:
1035 case Instruction::RSUB_INT_LIT8:
1036 EmitInsn_RSubImmediate(ARGS);
1037 break;
1038
1039 case Instruction::MUL_INT_LIT16:
1040 case Instruction::MUL_INT_LIT8:
1041 EmitInsn_IntArithmImmediate(ARGS, kIntArithm_Mul);
1042 break;
1043
1044 case Instruction::DIV_INT_LIT16:
1045 case Instruction::DIV_INT_LIT8:
1046 EmitInsn_IntArithmImmediate(ARGS, kIntArithm_Div);
1047 break;
1048
1049 case Instruction::REM_INT_LIT16:
1050 case Instruction::REM_INT_LIT8:
1051 EmitInsn_IntArithmImmediate(ARGS, kIntArithm_Rem);
1052 break;
1053
1054 case Instruction::AND_INT_LIT16:
1055 case Instruction::AND_INT_LIT8:
1056 EmitInsn_IntArithmImmediate(ARGS, kIntArithm_And);
1057 break;
1058
1059 case Instruction::OR_INT_LIT16:
1060 case Instruction::OR_INT_LIT8:
1061 EmitInsn_IntArithmImmediate(ARGS, kIntArithm_Or);
1062 break;
1063
1064 case Instruction::XOR_INT_LIT16:
1065 case Instruction::XOR_INT_LIT8:
1066 EmitInsn_IntArithmImmediate(ARGS, kIntArithm_Xor);
1067 break;
1068
1069 case Instruction::SHL_INT_LIT8:
1070 EmitInsn_IntArithmImmediate(ARGS, kIntArithm_Shl);
1071 break;
1072
1073 case Instruction::SHR_INT_LIT8:
1074 EmitInsn_IntArithmImmediate(ARGS, kIntArithm_Shr);
1075 break;
1076
1077 case Instruction::USHR_INT_LIT8:
1078 EmitInsn_IntArithmImmediate(ARGS, kIntArithm_UShr);
1079 break;
1080
1081 case Instruction::UNUSED_3E:
1082 case Instruction::UNUSED_3F:
1083 case Instruction::UNUSED_40:
1084 case Instruction::UNUSED_41:
1085 case Instruction::UNUSED_42:
1086 case Instruction::UNUSED_43:
1087 case Instruction::UNUSED_73:
1088 case Instruction::UNUSED_79:
1089 case Instruction::UNUSED_7A:
1090 case Instruction::UNUSED_E3:
1091 case Instruction::UNUSED_E4:
1092 case Instruction::UNUSED_E5:
1093 case Instruction::UNUSED_E6:
1094 case Instruction::UNUSED_E7:
1095 case Instruction::UNUSED_E8:
1096 case Instruction::UNUSED_E9:
1097 case Instruction::UNUSED_EA:
1098 case Instruction::UNUSED_EB:
1099 case Instruction::UNUSED_EC:
1100 case Instruction::THROW_VERIFICATION_ERROR:
1101 case Instruction::UNUSED_EE:
1102 case Instruction::UNUSED_EF:
1103 case Instruction::UNUSED_F0:
1104 case Instruction::UNUSED_F1:
1105 case Instruction::UNUSED_F2:
1106 case Instruction::UNUSED_F3:
1107 case Instruction::UNUSED_F4:
1108 case Instruction::UNUSED_F5:
1109 case Instruction::UNUSED_F6:
1110 case Instruction::UNUSED_F7:
1111 case Instruction::UNUSED_F8:
1112 case Instruction::UNUSED_F9:
1113 case Instruction::UNUSED_FA:
1114 case Instruction::UNUSED_FB:
1115 case Instruction::UNUSED_FC:
1116 case Instruction::UNUSED_FD:
1117 case Instruction::UNUSED_FE:
1118 case Instruction::UNUSED_FF:
1119 LOG(FATAL) << "Dex file contains UNUSED bytecode: " << insn->Opcode();
1120 break;
1121 }
1122
1123#undef ARGS
1124}
1125
1126
1127void MethodCompiler::EmitInsn_Nop(uint32_t dex_pc,
1128 Instruction const* insn) {
Logan Chiene09a6b72011-12-27 17:50:21 +08001129
1130 uint16_t insn_signature = code_item_->insns_[dex_pc];
1131
1132 if (insn_signature == Instruction::kPackedSwitchSignature ||
1133 insn_signature == Instruction::kSparseSwitchSignature ||
1134 insn_signature == Instruction::kArrayDataSignature) {
1135 irb_.CreateUnreachable();
1136 } else{
1137 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1138 }
Shih-wei Liaod1fec812012-02-13 09:51:10 -08001139}
1140
1141
Logan Chien70f94b42011-12-27 17:49:11 +08001142void MethodCompiler::EmitInsn_Move(uint32_t dex_pc,
1143 Instruction const* insn,
1144 JType jty) {
Logan Chien48173132011-12-27 17:51:13 +08001145
1146 Instruction::DecodedInstruction dec_insn(insn);
1147
1148 llvm::Value* src_value = EmitLoadDalvikReg(dec_insn.vB_, jty, kReg);
1149 EmitStoreDalvikReg(dec_insn.vA_, jty, kReg, src_value);
1150
Logan Chien70f94b42011-12-27 17:49:11 +08001151 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1152}
1153
1154
1155void MethodCompiler::EmitInsn_MoveResult(uint32_t dex_pc,
1156 Instruction const* insn,
1157 JType jty) {
Logan Chien48173132011-12-27 17:51:13 +08001158
1159 Instruction::DecodedInstruction dec_insn(insn);
1160
1161 llvm::Value* src_value = EmitLoadDalvikRetValReg(jty, kReg);
1162 EmitStoreDalvikReg(dec_insn.vA_, jty, kReg, src_value);
1163
Logan Chien70f94b42011-12-27 17:49:11 +08001164 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1165}
1166
1167
1168void MethodCompiler::EmitInsn_MoveException(uint32_t dex_pc,
1169 Instruction const* insn) {
Logan Chien3354cec2012-01-13 14:29:03 +08001170
1171 Instruction::DecodedInstruction dec_insn(insn);
1172
1173 // Get thread-local exception field address
1174 llvm::Constant* exception_field_offset =
1175 irb_.getPtrEquivInt(Thread::ExceptionOffset().Int32Value());
1176
1177 llvm::Value* thread_object_addr =
1178 irb_.CreateCall(irb_.GetRuntime(GetCurrentThread));
1179
1180 llvm::Value* exception_field_addr =
1181 irb_.CreatePtrDisp(thread_object_addr, exception_field_offset,
1182 irb_.getJObjectTy()->getPointerTo());
1183
1184 // Get exception object address
1185 llvm::Value* exception_object_addr = irb_.CreateLoad(exception_field_addr);
1186
1187 // Set thread-local exception field address to NULL
1188 irb_.CreateStore(irb_.getJNull(), exception_field_addr);
1189
1190 // Keep the exception object in the Dalvik register
1191 EmitStoreDalvikReg(dec_insn.vA_, kObject, kAccurate, exception_object_addr);
1192
Logan Chien70f94b42011-12-27 17:49:11 +08001193 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1194}
1195
1196
1197void MethodCompiler::EmitInsn_ThrowException(uint32_t dex_pc,
1198 Instruction const* insn) {
Logan Chien6c6f12d2012-01-13 19:26:27 +08001199
1200 Instruction::DecodedInstruction dec_insn(insn);
1201
1202 llvm::Value* exception_addr =
1203 EmitLoadDalvikReg(dec_insn.vA_, kObject, kAccurate);
1204
Logan Chien8dfcbea2012-02-17 18:50:32 +08001205 EmitUpdateLineNumFromDexPC(dex_pc);
1206
Logan Chien6c6f12d2012-01-13 19:26:27 +08001207 irb_.CreateCall(irb_.GetRuntime(ThrowException), exception_addr);
1208
1209 EmitBranchExceptionLandingPad(dex_pc);
Logan Chien70f94b42011-12-27 17:49:11 +08001210}
1211
1212
1213void MethodCompiler::EmitInsn_ReturnVoid(uint32_t dex_pc,
1214 Instruction const* insn) {
Logan Chien8898a272011-12-27 17:51:56 +08001215 // Garbage collection safe-point
1216 EmitGuard_GarbageCollectionSuspend(dex_pc);
1217
Logan Chien8dfcbea2012-02-17 18:50:32 +08001218 // Pop the shadow frame
1219 EmitPopShadowFrame();
1220
Logan Chien8898a272011-12-27 17:51:56 +08001221 // Return!
1222 irb_.CreateRetVoid();
Logan Chien70f94b42011-12-27 17:49:11 +08001223}
1224
1225
1226void MethodCompiler::EmitInsn_Return(uint32_t dex_pc,
1227 Instruction const* insn) {
Logan Chien8898a272011-12-27 17:51:56 +08001228
1229 Instruction::DecodedInstruction dec_insn(insn);
1230
1231 // Garbage collection safe-point
1232 EmitGuard_GarbageCollectionSuspend(dex_pc);
1233
Logan Chien8dfcbea2012-02-17 18:50:32 +08001234 // Pop the shadow frame
1235 EmitPopShadowFrame();
1236 // NOTE: It is important to keep this AFTER the GC safe-point. Otherwise,
1237 // the return value might be collected since the shadow stack is popped.
1238
Logan Chien8898a272011-12-27 17:51:56 +08001239 // Return!
1240 char ret_shorty = method_helper_.GetShorty()[0];
1241 llvm::Value* retval = EmitLoadDalvikReg(dec_insn.vA_, ret_shorty, kAccurate);
1242
1243 irb_.CreateRet(retval);
Logan Chien70f94b42011-12-27 17:49:11 +08001244}
1245
1246
1247void MethodCompiler::EmitInsn_LoadConstant(uint32_t dex_pc,
1248 Instruction const* insn,
1249 JType imm_jty) {
Shih-wei Liao798366e2012-02-16 09:25:33 -08001250
1251 Instruction::DecodedInstruction dec_insn(insn);
1252
1253 DCHECK(imm_jty == kInt || imm_jty == kLong) << imm_jty;
1254
1255 int64_t imm = 0;
1256
1257 switch (insn->Opcode()) {
1258 // 32-bit Immediate
1259 case Instruction::CONST_4:
1260 case Instruction::CONST_16:
1261 case Instruction::CONST:
1262 case Instruction::CONST_WIDE_16:
1263 case Instruction::CONST_WIDE_32:
1264 imm = static_cast<int64_t>(static_cast<int32_t>(dec_insn.vB_));
1265 break;
1266
1267 case Instruction::CONST_HIGH16:
1268 imm = static_cast<int64_t>(static_cast<int32_t>(
1269 static_cast<uint32_t>(static_cast<uint16_t>(dec_insn.vB_)) << 16));
1270 break;
1271
1272 // 64-bit Immediate
1273 case Instruction::CONST_WIDE:
1274 imm = static_cast<int64_t>(dec_insn.vB_wide_);
1275 break;
1276
1277 case Instruction::CONST_WIDE_HIGH16:
1278 imm = static_cast<int64_t>(
1279 static_cast<uint64_t>(static_cast<uint16_t>(dec_insn.vB_)) << 48);
1280 break;
1281
1282 // Unknown opcode for load constant (unreachable)
1283 default:
1284 LOG(FATAL) << "Unknown opcode for load constant: " << insn->Opcode();
1285 break;
1286 }
1287
1288 // Store the non-object register
1289 llvm::Type* imm_type = irb_.getJType(imm_jty, kAccurate);
1290 llvm::Constant* imm_value = llvm::ConstantInt::getSigned(imm_type, imm);
1291 EmitStoreDalvikReg(dec_insn.vA_, imm_jty, kAccurate, imm_value);
1292
1293 // Store the object register if it is possible to be null.
1294 if (imm_jty == kInt && imm == 0) {
1295 EmitStoreDalvikReg(dec_insn.vA_, kObject, kAccurate, irb_.getJNull());
1296 }
1297
Logan Chien70f94b42011-12-27 17:49:11 +08001298 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1299}
1300
1301
1302void MethodCompiler::EmitInsn_LoadConstantString(uint32_t dex_pc,
1303 Instruction const* insn) {
Logan Chienc3b4ba12012-01-16 19:52:53 +08001304
1305 Instruction::DecodedInstruction dec_insn(insn);
1306
1307 uint32_t string_idx = dec_insn.vB_;
1308
1309 llvm::Value* string_field_addr = EmitLoadDexCacheStringFieldAddr(string_idx);
1310
1311 llvm::Value* string_addr = irb_.CreateLoad(string_field_addr);
1312
1313 if (!compiler_->CanAssumeStringIsPresentInDexCache(dex_cache_, string_idx)) {
1314 llvm::BasicBlock* block_str_exist =
1315 CreateBasicBlockWithDexPC(dex_pc, "str_exist");
1316
1317 llvm::BasicBlock* block_str_resolve =
1318 CreateBasicBlockWithDexPC(dex_pc, "str_resolve");
1319
1320 // Test: Is the string resolved and in the dex cache?
1321 llvm::Value* equal_null = irb_.CreateICmpEQ(string_addr, irb_.getJNull());
1322
1323 irb_.CreateCondBr(equal_null, block_str_exist, block_str_resolve);
1324
1325 // String is resolved, go to next basic block.
1326 irb_.SetInsertPoint(block_str_exist);
1327 EmitStoreDalvikReg(dec_insn.vA_, kObject, kAccurate, string_addr);
1328 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1329
1330 // String is not resolved yet, resolve it now.
1331 irb_.SetInsertPoint(block_str_resolve);
1332
1333 llvm::Function* runtime_func = irb_.GetRuntime(ResolveString);
1334
1335 llvm::Value* method_object_addr = EmitLoadMethodObjectAddr();
1336
1337 llvm::Value* string_idx_value = irb_.getInt32(string_idx);
1338
Logan Chien8dfcbea2012-02-17 18:50:32 +08001339 EmitUpdateLineNumFromDexPC(dex_pc);
1340
1341 string_addr = irb_.CreateCall2(runtime_func, method_object_addr,
1342 string_idx_value);
Logan Chienc3b4ba12012-01-16 19:52:53 +08001343
1344 EmitGuard_ExceptionLandingPad(dex_pc);
1345 }
1346
1347 // Store the string object to the Dalvik register
1348 EmitStoreDalvikReg(dec_insn.vA_, kObject, kAccurate, string_addr);
1349
Logan Chien70f94b42011-12-27 17:49:11 +08001350 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1351}
1352
1353
Logan Chien27b30252012-01-14 03:43:35 +08001354llvm::Value* MethodCompiler::EmitLoadConstantClass(uint32_t dex_pc,
1355 uint32_t type_idx) {
1356 if (!compiler_->CanAccessTypeWithoutChecks(method_idx_, dex_cache_,
1357 *dex_file_, type_idx)) {
1358 llvm::Value* type_idx_value = irb_.getInt32(type_idx);
1359
1360 llvm::Value* method_object_addr = EmitLoadMethodObjectAddr();
1361
1362 llvm::Function* runtime_func =
1363 irb_.GetRuntime(InitializeTypeAndVerifyAccess);
1364
Logan Chien8dfcbea2012-02-17 18:50:32 +08001365 EmitUpdateLineNumFromDexPC(dex_pc);
1366
Logan Chien27b30252012-01-14 03:43:35 +08001367 llvm::Value* type_object_addr =
1368 irb_.CreateCall2(runtime_func, type_idx_value, method_object_addr);
1369
1370 EmitGuard_ExceptionLandingPad(dex_pc);
1371
1372 return type_object_addr;
1373
1374 } else {
1375 // Try to load the class (type) object from the test cache.
1376 llvm::Value* type_field_addr =
1377 EmitLoadDexCacheResolvedTypeFieldAddr(type_idx);
1378
1379 llvm::Value* type_object_addr = irb_.CreateLoad(type_field_addr);
1380
1381 if (compiler_->CanAssumeTypeIsPresentInDexCache(dex_cache_, type_idx)) {
1382 return type_object_addr;
1383 }
1384
1385 llvm::BasicBlock* block_original = irb_.GetInsertBlock();
1386
1387 // Test whether class (type) object is in the dex cache or not
1388 llvm::Value* equal_null =
1389 irb_.CreateICmpEQ(type_object_addr, irb_.getJNull());
1390
1391 llvm::BasicBlock* block_cont =
1392 CreateBasicBlockWithDexPC(dex_pc, "cont");
1393
1394 llvm::BasicBlock* block_load_class =
1395 CreateBasicBlockWithDexPC(dex_pc, "load_class");
1396
1397 irb_.CreateCondBr(equal_null, block_load_class, block_cont);
1398
1399 // Failback routine to load the class object
1400 irb_.SetInsertPoint(block_load_class);
1401
1402 llvm::Function* runtime_func = irb_.GetRuntime(InitializeType);
1403
1404 llvm::Constant* type_idx_value = irb_.getInt32(type_idx);
1405
1406 llvm::Value* method_object_addr = EmitLoadMethodObjectAddr();
1407
Logan Chien8dfcbea2012-02-17 18:50:32 +08001408 EmitUpdateLineNumFromDexPC(dex_pc);
1409
Logan Chien27b30252012-01-14 03:43:35 +08001410 llvm::Value* loaded_type_object_addr =
1411 irb_.CreateCall2(runtime_func, type_idx_value, method_object_addr);
1412
1413 EmitGuard_ExceptionLandingPad(dex_pc);
1414
1415 llvm::BasicBlock* block_after_load_class = irb_.GetInsertBlock();
1416
1417 irb_.CreateBr(block_cont);
1418
1419 // Now the class object must be loaded
1420 irb_.SetInsertPoint(block_cont);
1421
1422 llvm::PHINode* phi = irb_.CreatePHI(irb_.getJObjectTy(), 2);
1423
1424 phi->addIncoming(type_object_addr, block_original);
1425 phi->addIncoming(loaded_type_object_addr, block_after_load_class);
1426
1427 return phi;
1428 }
1429}
1430
1431
Logan Chien70f94b42011-12-27 17:49:11 +08001432void MethodCompiler::EmitInsn_LoadConstantClass(uint32_t dex_pc,
1433 Instruction const* insn) {
Logan Chien27b30252012-01-14 03:43:35 +08001434
1435 Instruction::DecodedInstruction dec_insn(insn);
1436
1437 llvm::Value* type_object_addr = EmitLoadConstantClass(dex_pc, dec_insn.vB_);
1438 EmitStoreDalvikReg(dec_insn.vA_, kObject, kAccurate, type_object_addr);
1439
Logan Chien70f94b42011-12-27 17:49:11 +08001440 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1441}
1442
1443
1444void MethodCompiler::EmitInsn_MonitorEnter(uint32_t dex_pc,
1445 Instruction const* insn) {
Logan Chien9e0dbe42012-01-13 12:11:37 +08001446
1447 Instruction::DecodedInstruction dec_insn(insn);
1448
1449 llvm::Value* object_addr =
1450 EmitLoadDalvikReg(dec_insn.vA_, kObject, kAccurate);
1451
1452 // TODO: Slow path always. May not need NullPointerException check.
1453 EmitGuard_NullPointerException(dex_pc, object_addr);
1454
Logan Chien8dfcbea2012-02-17 18:50:32 +08001455 EmitUpdateLineNumFromDexPC(dex_pc);
1456
Logan Chien9e0dbe42012-01-13 12:11:37 +08001457 irb_.CreateCall(irb_.GetRuntime(LockObject), object_addr);
1458 EmitGuard_ExceptionLandingPad(dex_pc);
1459
Logan Chien70f94b42011-12-27 17:49:11 +08001460 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1461}
1462
1463
1464void MethodCompiler::EmitInsn_MonitorExit(uint32_t dex_pc,
1465 Instruction const* insn) {
Logan Chien9e0dbe42012-01-13 12:11:37 +08001466
1467 Instruction::DecodedInstruction dec_insn(insn);
1468
1469 llvm::Value* object_addr =
1470 EmitLoadDalvikReg(dec_insn.vA_, kObject, kAccurate);
1471
1472 EmitGuard_NullPointerException(dex_pc, object_addr);
1473
Logan Chien8dfcbea2012-02-17 18:50:32 +08001474 EmitUpdateLineNumFromDexPC(dex_pc);
1475
Logan Chien9e0dbe42012-01-13 12:11:37 +08001476 irb_.CreateCall(irb_.GetRuntime(UnlockObject), object_addr);
1477 EmitGuard_ExceptionLandingPad(dex_pc);
1478
Logan Chien70f94b42011-12-27 17:49:11 +08001479 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1480}
1481
1482
1483void MethodCompiler::EmitInsn_CheckCast(uint32_t dex_pc,
1484 Instruction const* insn) {
Logan Chienfc880952012-01-15 23:53:10 +08001485
1486 Instruction::DecodedInstruction dec_insn(insn);
1487
1488 llvm::BasicBlock* block_test_class =
1489 CreateBasicBlockWithDexPC(dex_pc, "test_class");
1490
1491 llvm::BasicBlock* block_test_sub_class =
1492 CreateBasicBlockWithDexPC(dex_pc, "test_sub_class");
1493
1494 llvm::Value* object_addr =
1495 EmitLoadDalvikReg(dec_insn.vA_, kObject, kAccurate);
1496
1497 // Test: Is the reference equal to null? Act as no-op when it is null.
1498 llvm::Value* equal_null = irb_.CreateICmpEQ(object_addr, irb_.getJNull());
1499
1500 irb_.CreateCondBr(equal_null,
1501 GetNextBasicBlock(dex_pc),
1502 block_test_class);
1503
1504 // Test: Is the object instantiated from the given class?
1505 irb_.SetInsertPoint(block_test_class);
1506 llvm::Value* type_object_addr = EmitLoadConstantClass(dex_pc, dec_insn.vB_);
1507 DCHECK_EQ(Object::ClassOffset().Int32Value(), 0);
1508
1509 llvm::PointerType* jobject_ptr_ty = irb_.getJObjectTy();
1510
1511 llvm::Value* object_type_field_addr =
1512 irb_.CreateBitCast(object_addr, jobject_ptr_ty->getPointerTo());
1513
1514 llvm::Value* object_type_object_addr =
1515 irb_.CreateLoad(object_type_field_addr);
1516
1517 llvm::Value* equal_class =
1518 irb_.CreateICmpEQ(type_object_addr, object_type_object_addr);
1519
1520 irb_.CreateCondBr(equal_class,
1521 GetNextBasicBlock(dex_pc),
1522 block_test_sub_class);
1523
1524 // Test: Is the object instantiated from the subclass of the given class?
1525 irb_.SetInsertPoint(block_test_sub_class);
1526
Logan Chien8dfcbea2012-02-17 18:50:32 +08001527 EmitUpdateLineNumFromDexPC(dex_pc);
1528
Logan Chienfc880952012-01-15 23:53:10 +08001529 irb_.CreateCall2(irb_.GetRuntime(CheckCast),
1530 type_object_addr, object_type_object_addr);
1531
1532 EmitGuard_ExceptionLandingPad(dex_pc);
1533
Logan Chien70f94b42011-12-27 17:49:11 +08001534 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1535}
1536
1537
1538void MethodCompiler::EmitInsn_InstanceOf(uint32_t dex_pc,
1539 Instruction const* insn) {
Logan Chien68725e22012-01-15 22:25:34 +08001540
1541 Instruction::DecodedInstruction dec_insn(insn);
1542
1543 llvm::Constant* zero = irb_.getJInt(0);
1544 llvm::Constant* one = irb_.getJInt(1);
1545
1546 llvm::BasicBlock* block_nullp = CreateBasicBlockWithDexPC(dex_pc, "nullp");
1547
1548 llvm::BasicBlock* block_test_class =
1549 CreateBasicBlockWithDexPC(dex_pc, "test_class");
1550
1551 llvm::BasicBlock* block_class_equals =
1552 CreateBasicBlockWithDexPC(dex_pc, "class_eq");
1553
1554 llvm::BasicBlock* block_test_sub_class =
1555 CreateBasicBlockWithDexPC(dex_pc, "test_sub_class");
1556
1557 llvm::Value* object_addr =
1558 EmitLoadDalvikReg(dec_insn.vB_, kObject, kAccurate);
1559
1560 // Overview of the following code :
1561 // We check for null, if so, then false, otherwise check for class == . If so
1562 // then true, otherwise do callout slowpath.
1563 //
1564 // Test: Is the reference equal to null? Set 0 when it is null.
1565 llvm::Value* equal_null = irb_.CreateICmpEQ(object_addr, irb_.getJNull());
1566
1567 irb_.CreateCondBr(equal_null, block_nullp, block_test_class);
1568
1569 irb_.SetInsertPoint(block_nullp);
1570 EmitStoreDalvikReg(dec_insn.vA_, kInt, kAccurate, zero);
1571 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1572
1573 // Test: Is the object instantiated from the given class?
1574 irb_.SetInsertPoint(block_test_class);
1575 llvm::Value* type_object_addr = EmitLoadConstantClass(dex_pc, dec_insn.vC_);
1576 DCHECK_EQ(Object::ClassOffset().Int32Value(), 0);
1577
1578 llvm::PointerType* jobject_ptr_ty = irb_.getJObjectTy();
1579
1580 llvm::Value* object_type_field_addr =
1581 irb_.CreateBitCast(object_addr, jobject_ptr_ty->getPointerTo());
1582
1583 llvm::Value* object_type_object_addr =
1584 irb_.CreateLoad(object_type_field_addr);
1585
1586 llvm::Value* equal_class =
1587 irb_.CreateICmpEQ(type_object_addr, object_type_object_addr);
1588
1589 irb_.CreateCondBr(equal_class, block_class_equals, block_test_sub_class);
1590
1591 irb_.SetInsertPoint(block_class_equals);
1592 EmitStoreDalvikReg(dec_insn.vA_, kInt, kAccurate, one);
1593 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1594
1595 // Test: Is the object instantiated from the subclass of the given class?
1596 irb_.SetInsertPoint(block_test_sub_class);
1597
1598 llvm::Value* result =
1599 irb_.CreateCall2(irb_.GetRuntime(IsAssignable),
1600 type_object_addr, object_type_object_addr);
1601
1602 EmitStoreDalvikReg(dec_insn.vA_, kInt, kAccurate, result);
1603
Logan Chien70f94b42011-12-27 17:49:11 +08001604 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1605}
1606
1607
Logan Chien61bb6142012-02-03 15:34:53 +08001608llvm::Value* MethodCompiler::EmitLoadArrayLength(llvm::Value* array) {
1609 // Load array length field address
1610 llvm::Constant* array_len_field_offset =
1611 irb_.getPtrEquivInt(Array::LengthOffset().Int32Value());
1612
1613 llvm::Value* array_len_field_addr =
1614 irb_.CreatePtrDisp(array, array_len_field_offset,
1615 irb_.getJIntTy()->getPointerTo());
1616
1617 // Load array length
1618 return irb_.CreateLoad(array_len_field_addr);
1619}
1620
1621
Logan Chien70f94b42011-12-27 17:49:11 +08001622void MethodCompiler::EmitInsn_ArrayLength(uint32_t dex_pc,
1623 Instruction const* insn) {
Logan Chien61bb6142012-02-03 15:34:53 +08001624
1625 Instruction::DecodedInstruction dec_insn(insn);
1626
1627 // Get the array object address
1628 llvm::Value* array_addr = EmitLoadDalvikReg(dec_insn.vB_, kObject, kAccurate);
1629 EmitGuard_NullPointerException(dex_pc, array_addr);
1630
1631 // Get the array length and store it to the register
1632 llvm::Value* array_len = EmitLoadArrayLength(array_addr);
1633 EmitStoreDalvikReg(dec_insn.vA_, kInt, kAccurate, array_len);
1634
Logan Chien70f94b42011-12-27 17:49:11 +08001635 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1636}
1637
1638
1639void MethodCompiler::EmitInsn_NewInstance(uint32_t dex_pc,
1640 Instruction const* insn) {
Logan Chien032bdad2012-01-16 09:59:23 +08001641
1642 Instruction::DecodedInstruction dec_insn(insn);
1643
1644 llvm::Function* runtime_func;
1645 if (compiler_->CanAccessTypeWithoutChecks(method_idx_, dex_cache_,
1646 *dex_file_, dec_insn.vB_)) {
1647 runtime_func = irb_.GetRuntime(AllocObject);
1648 } else {
1649 runtime_func = irb_.GetRuntime(AllocObjectWithAccessCheck);
1650 }
1651
1652 llvm::Constant* type_index_value = irb_.getInt32(dec_insn.vB_);
1653
1654 llvm::Value* method_object_addr = EmitLoadMethodObjectAddr();
1655
Logan Chien8dfcbea2012-02-17 18:50:32 +08001656 EmitUpdateLineNumFromDexPC(dex_pc);
1657
Logan Chien032bdad2012-01-16 09:59:23 +08001658 llvm::Value* object_addr =
1659 irb_.CreateCall2(runtime_func, type_index_value, method_object_addr);
1660
1661 EmitGuard_ExceptionLandingPad(dex_pc);
1662
1663 EmitStoreDalvikReg(dec_insn.vA_, kObject, kAccurate, object_addr);
1664
Logan Chien70f94b42011-12-27 17:49:11 +08001665 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1666}
1667
1668
Logan Chiena2cc6a32012-01-16 10:38:41 +08001669llvm::Value* MethodCompiler::EmitAllocNewArray(uint32_t dex_pc,
1670 int32_t length,
1671 uint32_t type_idx,
1672 bool is_filled_new_array) {
1673 llvm::Function* runtime_func;
1674
1675 bool skip_access_check =
1676 compiler_->CanAccessTypeWithoutChecks(method_idx_, dex_cache_,
1677 *dex_file_, type_idx);
1678
1679 if (is_filled_new_array) {
1680 runtime_func = skip_access_check ?
1681 irb_.GetRuntime(CheckAndAllocArray) :
1682 irb_.GetRuntime(CheckAndAllocArrayWithAccessCheck);
1683 } else {
1684 runtime_func = skip_access_check ?
1685 irb_.GetRuntime(AllocArray) :
1686 irb_.GetRuntime(AllocArrayWithAccessCheck);
1687 }
1688
1689 llvm::Constant* type_index_value = irb_.getInt32(type_idx);
1690
1691 llvm::Value* method_object_addr = EmitLoadMethodObjectAddr();
1692
1693 llvm::Value* array_length_value = irb_.getInt32(length);
1694
Logan Chien8dfcbea2012-02-17 18:50:32 +08001695 EmitUpdateLineNumFromDexPC(dex_pc);
1696
Logan Chiena2cc6a32012-01-16 10:38:41 +08001697 llvm::Value* object_addr =
1698 irb_.CreateCall3(runtime_func, type_index_value, method_object_addr,
1699 array_length_value);
1700
1701 EmitGuard_ExceptionLandingPad(dex_pc);
1702
1703 return object_addr;
1704}
1705
1706
Logan Chien70f94b42011-12-27 17:49:11 +08001707void MethodCompiler::EmitInsn_NewArray(uint32_t dex_pc,
1708 Instruction const* insn) {
Logan Chiena2cc6a32012-01-16 10:38:41 +08001709
1710 Instruction::DecodedInstruction dec_insn(insn);
1711
1712 llvm::Value* object_addr =
1713 EmitAllocNewArray(dex_pc, dec_insn.vB_, dec_insn.vC_, false);
1714
1715 EmitStoreDalvikReg(dec_insn.vA_, kObject, kAccurate, object_addr);
1716
Logan Chien70f94b42011-12-27 17:49:11 +08001717 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1718}
1719
1720
1721void MethodCompiler::EmitInsn_FilledNewArray(uint32_t dex_pc,
1722 Instruction const* insn,
1723 bool is_range) {
Logan Chiena85fb2f2012-01-16 12:52:56 +08001724
1725 Instruction::DecodedInstruction dec_insn(insn);
1726
1727 llvm::Value* object_addr =
1728 EmitAllocNewArray(dex_pc, dec_insn.vA_, dec_insn.vB_, true);
1729
1730 if (dec_insn.vA_ > 0) {
1731 llvm::Value* object_addr_int =
1732 irb_.CreatePtrToInt(object_addr, irb_.getPtrEquivIntTy());
1733
1734 llvm::Value* data_field_offset =
1735 irb_.getPtrEquivInt(Array::DataOffset().Int32Value());
1736
1737 llvm::Value* data_field_addr_int =
1738 irb_.CreateAdd(object_addr_int, data_field_offset);
1739
1740 Class* klass = method_->GetDexCacheResolvedTypes()->Get(dec_insn.vB_);
1741 CHECK_NE(klass, static_cast<Class*>(NULL));
1742 // Moved this below already: CHECK(!klass->IsPrimitive() || klass->IsPrimitiveInt());
1743
1744 llvm::Constant* word_size = irb_.getSizeOfPtrEquivIntValue();
1745
1746 llvm::Type* field_type;
1747 if (klass->IsPrimitiveInt()) {
1748 field_type = irb_.getJIntTy()->getPointerTo();
1749 } else {
1750 CHECK(!klass->IsPrimitive());
1751 field_type = irb_.getJObjectTy()->getPointerTo();
1752 }
1753
1754 // TODO: Tune this code. Currently we are generating one instruction for
1755 // one element which may be very space consuming. Maybe changing to use
1756 // memcpy may help; however, since we can't guarantee that the alloca of
1757 // dalvik register are continuous, we can't perform such optimization yet.
1758 for (uint32_t i = 0; i < dec_insn.vA_; ++i) {
1759 llvm::Value* data_field_addr =
1760 irb_.CreateIntToPtr(data_field_addr_int, field_type);
1761
1762 int reg_index;
1763 if (is_range) {
1764 reg_index = dec_insn.vC_ + i;
1765 } else {
1766 reg_index = dec_insn.arg_[i];
1767 }
1768
1769 llvm::Value* reg_value;
1770 if (klass->IsPrimitiveInt()) {
1771 reg_value = EmitLoadDalvikReg(reg_index, kInt, kAccurate);
1772 } else {
1773 reg_value = EmitLoadDalvikReg(reg_index, kObject, kAccurate);
1774 }
1775
1776 irb_.CreateStore(reg_value, data_field_addr);
1777
1778 data_field_addr_int = irb_.CreateAdd(data_field_addr_int, word_size);
1779 }
1780 }
1781
1782 EmitStoreDalvikRetValReg(kObject, kAccurate, object_addr);
1783
Logan Chien70f94b42011-12-27 17:49:11 +08001784 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1785}
1786
1787
1788void MethodCompiler::EmitInsn_FillArrayData(uint32_t dex_pc,
1789 Instruction const* insn) {
Logan Chiene58b6582012-01-16 17:13:13 +08001790
1791 Instruction::DecodedInstruction dec_insn(insn);
1792
1793 // Read the payload
1794 struct PACKED Payload {
1795 uint16_t ident_;
1796 uint16_t elem_width_;
1797 uint32_t num_elems_;
1798 uint8_t data_[];
1799 };
1800
1801 int32_t payload_offset = static_cast<int32_t>(dex_pc) +
1802 static_cast<int32_t>(dec_insn.vB_);
1803
1804 Payload const* payload =
1805 reinterpret_cast<Payload const*>(code_item_->insns_ + payload_offset);
1806
1807 uint32_t size_in_bytes = payload->elem_width_ * payload->num_elems_;
1808
1809 // Load and check the array
1810 llvm::Value* array_addr = EmitLoadDalvikReg(dec_insn.vA_, kObject, kAccurate);
1811
1812 EmitGuard_NullPointerException(dex_pc, array_addr);
1813
1814 if (payload->num_elems_ > 0) {
1815 // Test: Is array length big enough?
1816 llvm::Constant* last_index = irb_.getJInt(payload->num_elems_ - 1);
1817
1818 EmitGuard_ArrayIndexOutOfBoundsException(dex_pc, array_addr, last_index);
1819
1820 // Get array data field
1821 llvm::Value* data_field_offset_value =
1822 irb_.getPtrEquivInt(Array::DataOffset().Int32Value());
1823
1824 llvm::Value* data_field_addr =
1825 irb_.CreatePtrDisp(array_addr, data_field_offset_value,
1826 irb_.getInt8Ty()->getPointerTo());
1827
1828 // Emit payload to bitcode constant pool
1829 std::vector<llvm::Constant*> const_pool_data;
1830 for (uint32_t i = 0; i < size_in_bytes; ++i) {
1831 const_pool_data.push_back(irb_.getInt8(payload->data_[i]));
1832 }
1833
1834 llvm::Constant* const_pool_data_array_value = llvm::ConstantArray::get(
1835 llvm::ArrayType::get(irb_.getInt8Ty(), size_in_bytes), const_pool_data);
1836
1837 llvm::Value* const_pool_data_array_addr =
1838 new llvm::GlobalVariable(*module_,
1839 const_pool_data_array_value->getType(),
1840 false, llvm::GlobalVariable::InternalLinkage,
1841 const_pool_data_array_value,
1842 "array_data_payload");
1843
1844 // Find the memcpy intrinsic
1845 llvm::Type* memcpy_arg_types[] = {
1846 llvm::Type::getInt8Ty(*context_)->getPointerTo(),
1847 llvm::Type::getInt8Ty(*context_)->getPointerTo(),
1848 llvm::Type::getInt32Ty(*context_)
1849 };
1850
1851 llvm::Function* memcpy_intrinsic =
1852 llvm::Intrinsic::getDeclaration(module_,
1853 llvm::Intrinsic::memcpy,
1854 memcpy_arg_types);
1855
1856 // Copy now!
1857 llvm::Value *args[] = {
1858 data_field_addr,
1859 irb_.CreateConstGEP2_32(const_pool_data_array_addr, 0, 0),
1860 irb_.getInt32(size_in_bytes),
1861 irb_.getInt32(0), // alignment: no guarantee
1862 irb_.getFalse() // is_volatile: false
1863 };
1864
1865 irb_.CreateCall(memcpy_intrinsic, args);
1866 }
1867
Logan Chien70f94b42011-12-27 17:49:11 +08001868 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1869}
1870
1871
1872void MethodCompiler::EmitInsn_UnconditionalBranch(uint32_t dex_pc,
1873 Instruction const* insn) {
Logan Chiena466c162011-12-27 17:55:46 +08001874
1875 Instruction::DecodedInstruction dec_insn(insn);
1876
1877 int32_t branch_offset = dec_insn.vA_;
1878
1879 if (branch_offset <= 0) {
1880 // Garbage collection safe-point on backward branch
1881 EmitGuard_GarbageCollectionSuspend(dex_pc);
1882 }
1883
1884 irb_.CreateBr(GetBasicBlock(dex_pc + branch_offset));
Logan Chien70f94b42011-12-27 17:49:11 +08001885}
1886
1887
1888void MethodCompiler::EmitInsn_PackedSwitch(uint32_t dex_pc,
1889 Instruction const* insn) {
Logan Chien7a89b6d2011-12-27 17:56:56 +08001890
1891 Instruction::DecodedInstruction dec_insn(insn);
1892
1893 struct PACKED Payload {
1894 uint16_t ident_;
1895 uint16_t num_cases_;
1896 int32_t first_key_;
1897 int32_t targets_[];
1898 };
1899
1900 int32_t payload_offset = static_cast<int32_t>(dex_pc) +
1901 static_cast<int32_t>(dec_insn.vB_);
1902
1903 Payload const* payload =
1904 reinterpret_cast<Payload const*>(code_item_->insns_ + payload_offset);
1905
1906 llvm::Value* value = EmitLoadDalvikReg(dec_insn.vA_, kInt, kAccurate);
1907
1908 llvm::SwitchInst* sw =
1909 irb_.CreateSwitch(value, GetNextBasicBlock(dex_pc), payload->num_cases_);
1910
1911 for (uint16_t i = 0; i < payload->num_cases_; ++i) {
1912 sw->addCase(irb_.getInt32(payload->first_key_ + i),
1913 GetBasicBlock(dex_pc + payload->targets_[i]));
1914 }
Logan Chien70f94b42011-12-27 17:49:11 +08001915}
1916
1917
1918void MethodCompiler::EmitInsn_SparseSwitch(uint32_t dex_pc,
1919 Instruction const* insn) {
Logan Chien7a89b6d2011-12-27 17:56:56 +08001920
1921 Instruction::DecodedInstruction dec_insn(insn);
1922
1923 struct PACKED Payload {
1924 uint16_t ident_;
1925 uint16_t num_cases_;
1926 int32_t keys_and_targets_[];
1927 };
1928
1929 int32_t payload_offset = static_cast<int32_t>(dex_pc) +
1930 static_cast<int32_t>(dec_insn.vB_);
1931
1932 Payload const* payload =
1933 reinterpret_cast<Payload const*>(code_item_->insns_ + payload_offset);
1934
1935 int32_t const* keys = payload->keys_and_targets_;
1936 int32_t const* targets = payload->keys_and_targets_ + payload->num_cases_;
1937
1938 llvm::Value* value = EmitLoadDalvikReg(dec_insn.vA_, kInt, kAccurate);
1939
1940 llvm::SwitchInst* sw =
1941 irb_.CreateSwitch(value, GetNextBasicBlock(dex_pc), payload->num_cases_);
1942
1943 for (size_t i = 0; i < payload->num_cases_; ++i) {
1944 sw->addCase(irb_.getInt32(keys[i]), GetBasicBlock(dex_pc + targets[i]));
1945 }
Logan Chien70f94b42011-12-27 17:49:11 +08001946}
1947
1948
1949void MethodCompiler::EmitInsn_FPCompare(uint32_t dex_pc,
1950 Instruction const* insn,
1951 JType fp_jty,
1952 bool gt_bias) {
Logan Chien2c37e8e2011-12-27 17:58:46 +08001953
1954 Instruction::DecodedInstruction dec_insn(insn);
1955
1956 DCHECK(fp_jty == kFloat || fp_jty == kDouble) << "JType: " << fp_jty;
1957
1958 llvm::Value* src1_value = EmitLoadDalvikReg(dec_insn.vB_, fp_jty, kAccurate);
1959 llvm::Value* src2_value = EmitLoadDalvikReg(dec_insn.vC_, fp_jty, kAccurate);
1960
1961 llvm::Value* cmp_eq = irb_.CreateFCmpOEQ(src1_value, src2_value);
1962 llvm::Value* cmp_lt;
1963
1964 if (gt_bias) {
1965 cmp_lt = irb_.CreateFCmpOLT(src1_value, src2_value);
1966 } else {
1967 cmp_lt = irb_.CreateFCmpULT(src1_value, src2_value);
1968 }
1969
1970 llvm::Value* result = EmitCompareResultSelection(cmp_eq, cmp_lt);
1971 EmitStoreDalvikReg(dec_insn.vA_, kInt, kAccurate, result);
1972
Logan Chien70f94b42011-12-27 17:49:11 +08001973 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1974}
1975
1976
1977void MethodCompiler::EmitInsn_LongCompare(uint32_t dex_pc,
1978 Instruction const* insn) {
Logan Chien2c37e8e2011-12-27 17:58:46 +08001979
1980 Instruction::DecodedInstruction dec_insn(insn);
1981
1982 llvm::Value* src1_value = EmitLoadDalvikReg(dec_insn.vB_, kLong, kAccurate);
1983 llvm::Value* src2_value = EmitLoadDalvikReg(dec_insn.vC_, kLong, kAccurate);
1984
1985 llvm::Value* cmp_eq = irb_.CreateICmpEQ(src1_value, src2_value);
1986 llvm::Value* cmp_lt = irb_.CreateICmpSLT(src1_value, src2_value);
1987
1988 llvm::Value* result = EmitCompareResultSelection(cmp_eq, cmp_lt);
1989 EmitStoreDalvikReg(dec_insn.vA_, kInt, kAccurate, result);
1990
Logan Chien70f94b42011-12-27 17:49:11 +08001991 irb_.CreateBr(GetNextBasicBlock(dex_pc));
1992}
1993
1994
Logan Chien2c37e8e2011-12-27 17:58:46 +08001995llvm::Value* MethodCompiler::EmitCompareResultSelection(llvm::Value* cmp_eq,
1996 llvm::Value* cmp_lt) {
1997
1998 llvm::Constant* zero = irb_.getJInt(0);
1999 llvm::Constant* pos1 = irb_.getJInt(1);
2000 llvm::Constant* neg1 = irb_.getJInt(-1);
2001
2002 llvm::Value* result_lt = irb_.CreateSelect(cmp_lt, neg1, pos1);
2003 llvm::Value* result_eq = irb_.CreateSelect(cmp_eq, zero, result_lt);
2004
2005 return result_eq;
2006}
2007
2008
Logan Chien70f94b42011-12-27 17:49:11 +08002009void MethodCompiler::EmitInsn_BinaryConditionalBranch(uint32_t dex_pc,
2010 Instruction const* insn,
2011 CondBranchKind cond) {
Logan Chiena78e3c82011-12-27 17:59:35 +08002012
2013 Instruction::DecodedInstruction dec_insn(insn);
2014
2015 int8_t src1_reg_cat = GetInferredRegCategory(dex_pc, dec_insn.vA_);
2016 int8_t src2_reg_cat = GetInferredRegCategory(dex_pc, dec_insn.vB_);
2017
2018 DCHECK_NE(kRegUnknown, src1_reg_cat);
2019 DCHECK_NE(kRegUnknown, src2_reg_cat);
2020 DCHECK_NE(kRegCat2, src1_reg_cat);
2021 DCHECK_NE(kRegCat2, src2_reg_cat);
2022
2023 int32_t branch_offset = dec_insn.vC_;
2024
2025 if (branch_offset <= 0) {
2026 // Garbage collection safe-point on backward branch
2027 EmitGuard_GarbageCollectionSuspend(dex_pc);
2028 }
2029
2030 if (src1_reg_cat == kRegZero && src2_reg_cat == kRegZero) {
2031 irb_.CreateBr(GetBasicBlock(dex_pc + branch_offset));
2032 return;
2033 }
2034
2035 llvm::Value* src1_value;
2036 llvm::Value* src2_value;
2037
2038 if (src1_reg_cat != kRegZero && src2_reg_cat != kRegZero) {
2039 CHECK_EQ(src1_reg_cat, src2_reg_cat);
2040
2041 if (src1_reg_cat == kRegCat1nr) {
2042 src1_value = EmitLoadDalvikReg(dec_insn.vA_, kInt, kAccurate);
2043 src2_value = EmitLoadDalvikReg(dec_insn.vB_, kInt, kAccurate);
2044 } else {
2045 src1_value = EmitLoadDalvikReg(dec_insn.vA_, kObject, kAccurate);
2046 src2_value = EmitLoadDalvikReg(dec_insn.vB_, kObject, kAccurate);
2047 }
2048 } else {
2049 DCHECK(src1_reg_cat == kRegZero ||
2050 src2_reg_cat == kRegZero);
2051
2052 if (src1_reg_cat == kRegZero) {
2053 if (src2_reg_cat == kRegCat1nr) {
2054 src1_value = irb_.getJInt(0);
2055 src2_value = EmitLoadDalvikReg(dec_insn.vA_, kInt, kAccurate);
2056 } else {
2057 src1_value = irb_.getJNull();
2058 src2_value = EmitLoadDalvikReg(dec_insn.vA_, kObject, kAccurate);
2059 }
2060 } else { // src2_reg_cat == kRegZero
2061 if (src2_reg_cat == kRegCat1nr) {
2062 src1_value = EmitLoadDalvikReg(dec_insn.vA_, kInt, kAccurate);
2063 src2_value = irb_.getJInt(0);
2064 } else {
2065 src1_value = EmitLoadDalvikReg(dec_insn.vA_, kObject, kAccurate);
2066 src2_value = irb_.getJNull();
2067 }
2068 }
2069 }
2070
2071 llvm::Value* cond_value =
2072 EmitConditionResult(src1_value, src2_value, cond);
2073
2074 irb_.CreateCondBr(cond_value,
2075 GetBasicBlock(dex_pc + branch_offset),
2076 GetNextBasicBlock(dex_pc));
Logan Chien70f94b42011-12-27 17:49:11 +08002077}
2078
2079
2080void MethodCompiler::EmitInsn_UnaryConditionalBranch(uint32_t dex_pc,
2081 Instruction const* insn,
2082 CondBranchKind cond) {
Logan Chiena78e3c82011-12-27 17:59:35 +08002083
2084 Instruction::DecodedInstruction dec_insn(insn);
2085
2086 int8_t src_reg_cat = GetInferredRegCategory(dex_pc, dec_insn.vA_);
2087
2088 DCHECK_NE(kRegUnknown, src_reg_cat);
2089 DCHECK_NE(kRegCat2, src_reg_cat);
2090
2091 int32_t branch_offset = dec_insn.vB_;
2092
2093 if (branch_offset <= 0) {
2094 // Garbage collection safe-point on backward branch
2095 EmitGuard_GarbageCollectionSuspend(dex_pc);
2096 }
2097
2098 if (src_reg_cat == kRegZero) {
2099 irb_.CreateBr(GetBasicBlock(dex_pc + branch_offset));
2100 return;
2101 }
2102
2103 llvm::Value* src1_value;
2104 llvm::Value* src2_value;
2105
2106 if (src_reg_cat == kRegCat1nr) {
2107 src1_value = EmitLoadDalvikReg(dec_insn.vA_, kInt, kAccurate);
2108 src2_value = irb_.getInt32(0);
2109 } else {
2110 src1_value = EmitLoadDalvikReg(dec_insn.vA_, kObject, kAccurate);
2111 src2_value = irb_.getJNull();
2112 }
2113
2114 llvm::Value* cond_value =
2115 EmitConditionResult(src1_value, src2_value, cond);
2116
2117 irb_.CreateCondBr(cond_value,
2118 GetBasicBlock(dex_pc + branch_offset),
2119 GetNextBasicBlock(dex_pc));
2120}
2121
2122
2123RegCategory MethodCompiler::GetInferredRegCategory(uint32_t dex_pc,
2124 uint16_t reg_idx) {
2125 InferredRegCategoryMap const* map = method_->GetInferredRegCategoryMap();
2126 CHECK_NE(map, static_cast<InferredRegCategoryMap*>(NULL));
2127
2128 return map->GetRegCategory(dex_pc, reg_idx);
2129}
2130
2131
2132llvm::Value* MethodCompiler::EmitConditionResult(llvm::Value* lhs,
2133 llvm::Value* rhs,
2134 CondBranchKind cond) {
2135 switch (cond) {
2136 case kCondBranch_EQ:
2137 return irb_.CreateICmpEQ(lhs, rhs);
2138
2139 case kCondBranch_NE:
2140 return irb_.CreateICmpNE(lhs, rhs);
2141
2142 case kCondBranch_LT:
2143 return irb_.CreateICmpSLT(lhs, rhs);
2144
2145 case kCondBranch_GE:
2146 return irb_.CreateICmpSGE(lhs, rhs);
2147
2148 case kCondBranch_GT:
2149 return irb_.CreateICmpSGT(lhs, rhs);
2150
2151 case kCondBranch_LE:
2152 return irb_.CreateICmpSLE(lhs, rhs);
2153
2154 default: // Unreachable
2155 LOG(FATAL) << "Unknown conditional branch kind: " << cond;
2156 return NULL;
2157 }
Logan Chien70f94b42011-12-27 17:49:11 +08002158}
2159
2160
Logan Chiene27fdbb2012-01-02 23:27:26 +08002161void
2162MethodCompiler::EmitGuard_ArrayIndexOutOfBoundsException(uint32_t dex_pc,
2163 llvm::Value* array,
2164 llvm::Value* index) {
2165 llvm::Value* array_len = EmitLoadArrayLength(array);
2166
2167 llvm::Value* cmp = irb_.CreateICmpUGE(index, array_len);
2168
2169 llvm::BasicBlock* block_exception =
2170 CreateBasicBlockWithDexPC(dex_pc, "overflow");
2171
2172 llvm::BasicBlock* block_continue =
2173 CreateBasicBlockWithDexPC(dex_pc, "cont");
2174
2175 irb_.CreateCondBr(cmp, block_exception, block_continue);
2176
2177 irb_.SetInsertPoint(block_exception);
Logan Chien8dfcbea2012-02-17 18:50:32 +08002178
2179 EmitUpdateLineNumFromDexPC(dex_pc);
Logan Chiene27fdbb2012-01-02 23:27:26 +08002180 irb_.CreateCall2(irb_.GetRuntime(ThrowIndexOutOfBounds), index, array_len);
2181 EmitBranchExceptionLandingPad(dex_pc);
2182
2183 irb_.SetInsertPoint(block_continue);
2184}
2185
2186
2187void MethodCompiler::EmitGuard_ArrayException(uint32_t dex_pc,
2188 llvm::Value* array,
2189 llvm::Value* index) {
2190 EmitGuard_NullPointerException(dex_pc, array);
2191 EmitGuard_ArrayIndexOutOfBoundsException(dex_pc, array, index);
2192}
2193
2194
2195// Emit Array GetElementPtr
2196llvm::Value* MethodCompiler::EmitArrayGEP(llvm::Value* array_addr,
2197 llvm::Value* index_value,
2198 llvm::Type* elem_type) {
2199
2200 llvm::Constant* data_offset_value =
2201 irb_.getPtrEquivInt(Array::DataOffset().Int32Value());
2202
2203 llvm::Value* array_data_addr =
2204 irb_.CreatePtrDisp(array_addr, data_offset_value,
2205 elem_type->getPointerTo());
2206
2207 return irb_.CreateGEP(array_data_addr, index_value);
2208}
2209
2210
Logan Chien70f94b42011-12-27 17:49:11 +08002211void MethodCompiler::EmitInsn_AGet(uint32_t dex_pc,
2212 Instruction const* insn,
2213 JType elem_jty) {
Logan Chiene27fdbb2012-01-02 23:27:26 +08002214
2215 Instruction::DecodedInstruction dec_insn(insn);
2216
2217 llvm::Value* array_addr = EmitLoadDalvikReg(dec_insn.vB_, kObject, kAccurate);
2218 llvm::Value* index_value = EmitLoadDalvikReg(dec_insn.vC_, kInt, kAccurate);
2219
2220 EmitGuard_ArrayException(dex_pc, array_addr, index_value);
2221
2222 llvm::Type* elem_type = irb_.getJType(elem_jty, kArray);
2223
2224 llvm::Value* array_elem_addr =
2225 EmitArrayGEP(array_addr, index_value, elem_type);
2226
2227 llvm::Value* array_elem_value = irb_.CreateLoad(array_elem_addr);
2228
2229 EmitStoreDalvikReg(dec_insn.vA_, elem_jty, kArray, array_elem_value);
2230
Logan Chien70f94b42011-12-27 17:49:11 +08002231 irb_.CreateBr(GetNextBasicBlock(dex_pc));
2232}
2233
2234
2235void MethodCompiler::EmitInsn_APut(uint32_t dex_pc,
2236 Instruction const* insn,
2237 JType elem_jty) {
Logan Chien8dabb432012-01-02 23:29:32 +08002238
2239 Instruction::DecodedInstruction dec_insn(insn);
2240
2241 llvm::Value* array_addr = EmitLoadDalvikReg(dec_insn.vB_, kObject, kAccurate);
2242 llvm::Value* index_value = EmitLoadDalvikReg(dec_insn.vC_, kInt, kAccurate);
2243
2244 EmitGuard_ArrayException(dex_pc, array_addr, index_value);
2245
2246 llvm::Type* elem_type = irb_.getJType(elem_jty, kArray);
2247
2248 llvm::Value* array_elem_addr =
2249 EmitArrayGEP(array_addr, index_value, elem_type);
2250
2251 llvm::Value* new_value = EmitLoadDalvikReg(dec_insn.vA_, elem_jty, kArray);
2252
2253 irb_.CreateStore(new_value, array_elem_addr);
2254
Logan Chien70f94b42011-12-27 17:49:11 +08002255 irb_.CreateBr(GetNextBasicBlock(dex_pc));
2256}
2257
2258
Logan Chien48f1d2a2012-01-02 22:49:53 +08002259void MethodCompiler::PrintUnresolvedFieldWarning(int32_t field_idx) {
2260 DexFile const& dex_file = method_helper_.GetDexFile();
2261 DexFile::FieldId const& field_id = dex_file.GetFieldId(field_idx);
2262
2263 LOG(WARNING) << "unable to resolve static field " << field_idx << " ("
2264 << dex_file.GetFieldName(field_id) << ") in "
2265 << dex_file.GetFieldDeclaringClassDescriptor(field_id);
2266}
2267
2268
Logan Chien70f94b42011-12-27 17:49:11 +08002269void MethodCompiler::EmitInsn_IGet(uint32_t dex_pc,
2270 Instruction const* insn,
2271 JType field_jty) {
Logan Chien48f1d2a2012-01-02 22:49:53 +08002272
2273 Instruction::DecodedInstruction dec_insn(insn);
2274
2275 uint32_t reg_idx = dec_insn.vB_;
2276 uint32_t field_idx = dec_insn.vC_;
2277
2278 Field* field = dex_cache_->GetResolvedField(field_idx);
2279
2280 llvm::Value* object_addr = EmitLoadDalvikReg(reg_idx, kObject, kAccurate);
2281
2282 EmitGuard_NullPointerException(dex_pc, object_addr);
2283
2284 llvm::Value* field_value;
2285
2286 if (field == NULL) {
2287 PrintUnresolvedFieldWarning(field_idx);
2288
2289 llvm::Function* runtime_func;
2290
2291 if (field_jty == kObject) {
2292 runtime_func = irb_.GetRuntime(SetObjectInstance);
2293 } else if (field_jty == kLong || field_jty == kDouble) {
2294 runtime_func = irb_.GetRuntime(Set64Instance);
2295 } else {
2296 runtime_func = irb_.GetRuntime(Set32Instance);
2297 }
2298
2299 llvm::ConstantInt* field_idx_value = irb_.getInt32(field_idx);
2300
2301 llvm::Value* method_object_addr = EmitLoadMethodObjectAddr();
2302
Logan Chien8dfcbea2012-02-17 18:50:32 +08002303 EmitUpdateLineNumFromDexPC(dex_pc);
2304
Logan Chien48f1d2a2012-01-02 22:49:53 +08002305 field_value = irb_.CreateCall2(runtime_func, field_idx_value,
2306 method_object_addr);
2307
2308 EmitGuard_ExceptionLandingPad(dex_pc);
2309
2310 } else {
2311 llvm::PointerType* field_type =
2312 irb_.getJType(field_jty, kField)->getPointerTo();
2313
2314 llvm::ConstantInt* field_offset =
2315 irb_.getPtrEquivInt(field->GetOffset().Int32Value());
2316
2317 llvm::Value* field_addr =
2318 irb_.CreatePtrDisp(object_addr, field_offset, field_type);
2319
2320 field_value = irb_.CreateLoad(field_addr);
2321 }
2322
2323 EmitStoreDalvikReg(dec_insn.vA_, field_jty, kField, field_value);
2324
Logan Chien70f94b42011-12-27 17:49:11 +08002325 irb_.CreateBr(GetNextBasicBlock(dex_pc));
2326}
2327
2328
2329void MethodCompiler::EmitInsn_IPut(uint32_t dex_pc,
2330 Instruction const* insn,
2331 JType field_jty) {
Logan Chiendd6aa872012-01-03 16:06:32 +08002332
2333 Instruction::DecodedInstruction dec_insn(insn);
2334
2335 uint32_t reg_idx = dec_insn.vB_;
2336 uint32_t field_idx = dec_insn.vC_;
2337
2338 Field* field = dex_cache_->GetResolvedField(field_idx);
2339
2340 llvm::Value* object_addr = EmitLoadDalvikReg(reg_idx, kObject, kAccurate);
2341
2342 EmitGuard_NullPointerException(dex_pc, object_addr);
2343
2344 llvm::Value* new_value = EmitLoadDalvikReg(dec_insn.vA_, field_jty, kField);
2345
2346 if (field == NULL) {
2347 PrintUnresolvedFieldWarning(field_idx);
2348
2349 llvm::Function* runtime_func;
2350
2351 if (field_jty == kObject) {
2352 runtime_func = irb_.GetRuntime(SetObjectInstance);
2353 } else if (field_jty == kLong || field_jty == kDouble) {
2354 runtime_func = irb_.GetRuntime(Set64Instance);
2355 } else {
2356 runtime_func = irb_.GetRuntime(Set32Instance);
2357 }
2358
2359 llvm::Value* field_idx_value = irb_.getInt32(field_idx);
2360
2361 llvm::Value* method_object_addr = EmitLoadMethodObjectAddr();
2362
Logan Chien8dfcbea2012-02-17 18:50:32 +08002363 EmitUpdateLineNumFromDexPC(dex_pc);
2364
Logan Chiendd6aa872012-01-03 16:06:32 +08002365 irb_.CreateCall3(runtime_func, field_idx_value,
2366 method_object_addr, new_value);
2367
2368 EmitGuard_ExceptionLandingPad(dex_pc);
2369
2370 } else {
2371 llvm::PointerType* field_type =
2372 irb_.getJType(field_jty, kField)->getPointerTo();
2373
2374 llvm::Value* field_offset =
2375 irb_.getPtrEquivInt(field->GetOffset().Int32Value());
2376
2377 llvm::Value* field_addr =
2378 irb_.CreatePtrDisp(object_addr, field_offset, field_type);
2379
2380 irb_.CreateStore(new_value, field_addr);
2381 }
2382
Logan Chien70f94b42011-12-27 17:49:11 +08002383 irb_.CreateBr(GetNextBasicBlock(dex_pc));
2384}
2385
2386
Logan Chien2aeca0b2012-02-03 22:55:46 +08002387Method* MethodCompiler::ResolveMethod(uint32_t method_idx) {
2388 Thread* thread = Thread::Current();
2389
2390 // Save the exception state
2391 Throwable* old_exception = NULL;
2392 if (thread->IsExceptionPending()) {
2393 old_exception = thread->GetException();
2394 thread->ClearException();
2395 }
2396
2397 // Resolve the method through the class linker
2398 Method* method = class_linker_->ResolveMethod(*dex_file_, method_idx,
2399 dex_cache_, class_loader_,
2400 /* is_direct= */ false);
2401
2402 if (method == NULL) {
2403 // Ignore the exception raised during the method resolution
2404 thread->ClearException();
2405 }
2406
2407 // Restore the exception state
2408 if (old_exception != NULL) {
2409 thread->SetException(old_exception);
2410 }
2411
2412 return method;
2413}
2414
2415
Logan Chien438c4b62012-01-17 16:06:00 +08002416Field* MethodCompiler::ResolveField(uint32_t field_idx) {
2417 Thread* thread = Thread::Current();
2418
2419 // Save the exception state
2420 Throwable* old_exception = NULL;
2421 if (thread->IsExceptionPending()) {
2422 old_exception = thread->GetException();
2423 thread->ClearException();
2424 }
2425
2426 // Resolve the fields through the class linker
2427 Field* field = class_linker_->ResolveField(*dex_file_, field_idx,
2428 dex_cache_, class_loader_,
2429 /* is_static= */ true);
2430
2431 if (field == NULL) {
2432 // Ignore the exception raised during the field resolution
2433 thread->ClearException();
2434 }
2435
2436 // Restore the exception state
2437 if (old_exception != NULL) {
2438 thread->SetException(old_exception);
2439 }
2440
2441 return field;
2442}
2443
2444
2445Field* MethodCompiler::
2446FindFieldAndDeclaringTypeIdx(uint32_t field_idx,
2447 uint32_t &resolved_type_idx) {
2448
2449 // Resolve the field through the class linker
2450 Field* field = ResolveField(field_idx);
2451 if (field == NULL) {
2452 return NULL;
2453 }
2454
2455 DexFile::FieldId const& field_id = dex_file_->GetFieldId(field_idx);
2456
2457 // Search for the type_idx of the declaring class
2458 uint16_t type_idx = field_id.class_idx_;
2459 Class* klass = dex_cache_->GetResolvedTypes()->Get(type_idx);
2460
2461 // Test: Is referring_class equal to declaring_class?
2462
2463 // If true, then return the type_idx; otherwise, this field must be declared
2464 // in super class or interfaces, we have to search for declaring class.
2465
2466 if (field->GetDeclaringClass() == klass) {
2467 resolved_type_idx = type_idx;
2468 return field;
2469 }
2470
2471 // Search for the type_idx of the super class or interfaces
2472 std::string desc(FieldHelper(field).GetDeclaringClassDescriptor());
2473
2474 DexFile::StringId const* string_id = dex_file_->FindStringId(desc);
2475
2476 if (string_id == NULL) {
2477 return NULL;
2478 }
2479
2480 DexFile::TypeId const* type_id =
2481 dex_file_->FindTypeId(dex_file_->GetIndexForStringId(*string_id));
2482
2483 if (type_id == NULL) {
2484 return NULL;
2485 }
2486
2487 resolved_type_idx = dex_file_->GetIndexForTypeId(*type_id);
2488 return field;
2489}
2490
2491
2492llvm::Value* MethodCompiler::EmitLoadStaticStorage(uint32_t dex_pc,
2493 uint32_t type_idx) {
2494 llvm::BasicBlock* block_load_static =
2495 CreateBasicBlockWithDexPC(dex_pc, "load_static");
2496
2497 llvm::BasicBlock* block_cont = CreateBasicBlockWithDexPC(dex_pc, "cont");
2498
2499 // Load static storage from dex cache
2500 llvm::Value* storage_field_addr =
2501 EmitLoadDexCacheStaticStorageFieldAddr(type_idx);
2502
2503 llvm::Value* storage_object_addr = irb_.CreateLoad(storage_field_addr);
2504
2505 llvm::BasicBlock* block_original = irb_.GetInsertBlock();
2506
2507 // Test: Is the static storage of this class initialized?
2508 llvm::Value* equal_null =
2509 irb_.CreateICmpEQ(storage_object_addr, irb_.getJNull());
2510
2511 irb_.CreateCondBr(equal_null, block_load_static, block_cont);
2512
2513 // Failback routine to load the class object
2514 irb_.SetInsertPoint(block_load_static);
2515
2516 llvm::Function* runtime_func =
2517 irb_.GetRuntime(InitializeStaticStorage);
2518
2519 llvm::Constant* type_idx_value = irb_.getInt32(type_idx);
2520
2521 llvm::Value* method_object_addr = EmitLoadMethodObjectAddr();
2522
Logan Chien8dfcbea2012-02-17 18:50:32 +08002523 EmitUpdateLineNumFromDexPC(dex_pc);
2524
Logan Chien438c4b62012-01-17 16:06:00 +08002525 llvm::Value* loaded_storage_object_addr =
2526 irb_.CreateCall2(runtime_func, type_idx_value, method_object_addr);
2527
2528 EmitGuard_ExceptionLandingPad(dex_pc);
2529
2530 llvm::BasicBlock* block_after_load_static = irb_.GetInsertBlock();
2531
2532 irb_.CreateBr(block_cont);
2533
2534 // Now the class object must be loaded
2535 irb_.SetInsertPoint(block_cont);
2536
2537 llvm::PHINode* phi = irb_.CreatePHI(irb_.getJObjectTy(), 2);
2538
2539 phi->addIncoming(storage_object_addr, block_original);
2540 phi->addIncoming(loaded_storage_object_addr, block_after_load_static);
2541
2542 return phi;
2543}
2544
2545
Logan Chien70f94b42011-12-27 17:49:11 +08002546void MethodCompiler::EmitInsn_SGet(uint32_t dex_pc,
2547 Instruction const* insn,
2548 JType field_jty) {
Logan Chien438c4b62012-01-17 16:06:00 +08002549
2550 Instruction::DecodedInstruction dec_insn(insn);
2551
2552 uint32_t declaring_type_idx = DexFile::kDexNoIndex;
2553
2554 Field* field = FindFieldAndDeclaringTypeIdx(dec_insn.vB_, declaring_type_idx);
2555
2556 llvm::Value* static_field_value;
2557
2558 if (field == NULL) {
2559 llvm::Function* runtime_func;
2560
2561 if (field_jty == kObject) {
2562 runtime_func = irb_.GetRuntime(GetObjectStatic);
2563 } else if (field_jty == kLong || field_jty == kDouble) {
2564 runtime_func = irb_.GetRuntime(Get64Static);
2565 } else {
2566 runtime_func = irb_.GetRuntime(Get32Static);
2567 }
2568
2569 llvm::Constant* field_idx_value = irb_.getInt32(dec_insn.vB_);
2570
2571 llvm::Value* method_object_addr = EmitLoadMethodObjectAddr();
2572
Logan Chien8dfcbea2012-02-17 18:50:32 +08002573 EmitUpdateLineNumFromDexPC(dex_pc);
2574
Logan Chien438c4b62012-01-17 16:06:00 +08002575 static_field_value =
2576 irb_.CreateCall2(runtime_func, field_idx_value, method_object_addr);
2577
2578 EmitGuard_ExceptionLandingPad(dex_pc);
2579
2580 } else {
2581 llvm::Value* static_storage_addr =
2582 EmitLoadStaticStorage(dex_pc, declaring_type_idx);
2583
2584 llvm::Value* static_field_offset_value =
2585 irb_.getPtrEquivInt(field->GetOffset().Int32Value());
2586
2587 llvm::Value* static_field_addr =
2588 irb_.CreatePtrDisp(static_storage_addr, static_field_offset_value,
2589 irb_.getJType(field_jty, kField)->getPointerTo());
2590
2591 static_field_value = irb_.CreateLoad(static_field_addr);
2592 }
2593
2594 EmitStoreDalvikReg(dec_insn.vA_, field_jty, kField, static_field_value);
2595
Logan Chien70f94b42011-12-27 17:49:11 +08002596 irb_.CreateBr(GetNextBasicBlock(dex_pc));
2597}
2598
2599
2600void MethodCompiler::EmitInsn_SPut(uint32_t dex_pc,
2601 Instruction const* insn,
2602 JType field_jty) {
Logan Chien14179c82012-01-17 17:06:34 +08002603
2604 Instruction::DecodedInstruction dec_insn(insn);
2605
2606 uint32_t declaring_type_idx = DexFile::kDexNoIndex;
2607
2608 Field* field = FindFieldAndDeclaringTypeIdx(dec_insn.vB_, declaring_type_idx);
2609
2610 llvm::Value* new_value = EmitLoadDalvikReg(dec_insn.vA_, field_jty, kField);
2611
2612 if (field == NULL) {
2613 llvm::Function* runtime_func;
2614
2615 if (field_jty == kObject) {
2616 runtime_func = irb_.GetRuntime(SetObjectStatic);
2617 } else if (field_jty == kLong || field_jty == kDouble) {
2618 runtime_func = irb_.GetRuntime(Set64Static);
2619 } else {
2620 runtime_func = irb_.GetRuntime(Set32Static);
2621 }
2622
2623 llvm::Constant* field_idx_value = irb_.getInt32(dec_insn.vB_);
2624
2625 llvm::Value* method_object_addr = EmitLoadMethodObjectAddr();
2626
Logan Chien8dfcbea2012-02-17 18:50:32 +08002627 EmitUpdateLineNumFromDexPC(dex_pc);
2628
Logan Chien14179c82012-01-17 17:06:34 +08002629 irb_.CreateCall3(runtime_func, field_idx_value,
2630 method_object_addr, new_value);
2631
2632 EmitGuard_ExceptionLandingPad(dex_pc);
2633
2634 } else {
2635 llvm::Value* static_storage_addr =
2636 EmitLoadStaticStorage(dex_pc, declaring_type_idx);
2637
2638 llvm::Value* static_field_offset_value =
2639 irb_.getPtrEquivInt(field->GetOffset().Int32Value());
2640
2641 llvm::Value* static_field_addr =
2642 irb_.CreatePtrDisp(static_storage_addr, static_field_offset_value,
2643 irb_.getJType(field_jty, kField)->getPointerTo());
2644
2645 irb_.CreateStore(new_value, static_field_addr);
2646 }
2647
Logan Chien70f94b42011-12-27 17:49:11 +08002648 irb_.CreateBr(GetNextBasicBlock(dex_pc));
2649}
2650
2651
Logan Chien1a121b92012-02-15 22:23:42 +08002652llvm::Value* MethodCompiler::
2653EmitLoadCalleeThis(Instruction::DecodedInstruction const& dec_insn,
2654 bool is_range) {
2655 if (is_range) {
2656 return EmitLoadDalvikReg(dec_insn.vC_, kObject, kAccurate);
2657 } else {
2658 return EmitLoadDalvikReg(dec_insn.arg_[0], kObject, kAccurate);
2659 }
2660}
2661
2662
2663void MethodCompiler::
2664EmitLoadActualParameters(std::vector<llvm::Value*>& args,
2665 uint32_t callee_method_idx,
2666 Instruction::DecodedInstruction const& dec_insn,
2667 bool is_range,
2668 bool is_static) {
2669
2670 // Get method signature
2671 DexFile::MethodId const& method_id =
2672 dex_file_->GetMethodId(callee_method_idx);
2673
2674 int32_t shorty_size;
2675 char const* shorty = dex_file_->GetMethodShorty(method_id, &shorty_size);
2676 CHECK_GE(shorty_size, 1);
2677
2678 // Load argument values according to the shorty (without "this")
2679 uint16_t reg_count = 0;
2680
2681 if (!is_static) {
2682 ++reg_count; // skip the "this" pointer
2683 }
2684
2685 for (int32_t i = 1; i < shorty_size; ++i) {
2686 uint32_t reg_idx = (is_range) ? (dec_insn.vC_ + reg_count)
2687 : (dec_insn.arg_[reg_count]);
2688
2689 args.push_back(EmitLoadDalvikReg(reg_idx, shorty[i], kAccurate));
2690
2691 ++reg_count;
2692 if (shorty[i] == 'J' || shorty[i] == 'D') {
2693 // Wide types, such as long and double, are using a pair of registers
2694 // to store the value, so we have to increase arg_reg again.
2695 ++reg_count;
2696 }
2697 }
2698
2699 DCHECK_EQ(reg_count, dec_insn.vA_)
2700 << "Actual argument mismatch for callee: "
2701 << PrettyMethod(callee_method_idx, *dex_file_);
2702}
2703
2704
2705
Logan Chien70f94b42011-12-27 17:49:11 +08002706void MethodCompiler::EmitInsn_InvokeVirtual(uint32_t dex_pc,
2707 Instruction const* insn,
2708 bool is_range) {
Logan Chien46fbb412012-02-15 22:29:08 +08002709
2710 Instruction::DecodedInstruction dec_insn(insn);
2711
2712 uint32_t callee_method_idx = dec_insn.vB_;
2713
2714 // Find the method object at compile time
2715 Method* callee_method = ResolveMethod(callee_method_idx);
2716
2717 if (callee_method == NULL) {
2718 // Callee method can't be resolved at compile time. Emit the runtime
2719 // method resolution code.
2720
2721 UNIMPLEMENTED(FATAL) << "Method index " << callee_method_idx
2722 << " can't be resolved";
2723
2724 } else {
2725 // Test: Is *this* parameter equal to null?
2726 llvm::Value* this_addr = EmitLoadCalleeThis(dec_insn, is_range);
2727 EmitGuard_NullPointerException(dex_pc, this_addr);
2728
2729 // Load class object of *this* pointer
2730 llvm::Value* class_object_addr = EmitLoadClassObjectAddr(this_addr);
2731
2732 // Load callee method code address (branch destination)
2733 llvm::Value* vtable_addr = EmitLoadVTableAddr(class_object_addr);
2734
2735 llvm::Value* method_object_addr =
2736 EmitLoadMethodObjectAddrFromVTable(vtable_addr,
2737 callee_method->GetMethodIndex());
2738
2739 llvm::Value* code_addr =
2740 EmitLoadCodeAddr(method_object_addr, callee_method_idx, false);
2741
2742 // Load actual parameters
2743 std::vector<llvm::Value*> args;
2744 args.push_back(method_object_addr);
2745 args.push_back(this_addr);
2746 EmitLoadActualParameters(args, callee_method_idx, dec_insn,
2747 is_range, false);
2748
2749 // Invoke callee
Logan Chien8dfcbea2012-02-17 18:50:32 +08002750 EmitUpdateLineNumFromDexPC(dex_pc);
Logan Chien46fbb412012-02-15 22:29:08 +08002751 llvm::Value* retval = irb_.CreateCall(code_addr, args);
Logan Chien46fbb412012-02-15 22:29:08 +08002752 EmitGuard_ExceptionLandingPad(dex_pc);
2753
2754 MethodHelper method_helper(callee_method);
2755 char ret_shorty = method_helper.GetShorty()[0];
2756 if (ret_shorty != 'V') {
2757 EmitStoreDalvikRetValReg(ret_shorty, kAccurate, retval);
2758 }
2759 }
2760
Logan Chien70f94b42011-12-27 17:49:11 +08002761 irb_.CreateBr(GetNextBasicBlock(dex_pc));
2762}
2763
2764
2765void MethodCompiler::EmitInsn_InvokeSuper(uint32_t dex_pc,
2766 Instruction const* insn,
2767 bool is_range) {
Logan Chiene73b6212012-01-27 01:47:29 +08002768
2769 Instruction::DecodedInstruction dec_insn(insn);
2770
2771 uint32_t callee_method_idx = dec_insn.vB_;
2772
2773 // Find the method object at compile time
2774 Method* callee_overiding_method = ResolveMethod(callee_method_idx);
2775
2776 if (callee_overiding_method == NULL) {
2777 // Callee method can't be resolved at compile time. Emit the runtime
2778 // method resolution code.
2779
2780 UNIMPLEMENTED(FATAL) << "Method index " << callee_method_idx
2781 << " can't be resolved";
2782
2783 } else {
2784 // CHECK: Is the instruction well-encoded or is the class hierarchy correct?
2785 Class* declaring_class = method_->GetDeclaringClass();
2786 CHECK_NE(declaring_class, static_cast<Class*>(NULL));
2787
2788 Class* super_class = declaring_class->GetSuperClass();
2789 CHECK_NE(super_class, static_cast<Class*>(NULL));
2790
2791 uint16_t callee_method_index = callee_overiding_method->GetMethodIndex();
2792 CHECK_GT(super_class->GetVTable()->GetLength(), callee_method_index);
2793
2794 Method* callee_method = super_class->GetVTable()->Get(callee_method_index);
2795 CHECK_NE(callee_method, static_cast<Method*>(NULL));
2796
2797 // Test: Is *this* parameter equal to null?
2798 llvm::Value* this_addr = EmitLoadCalleeThis(dec_insn, is_range);
2799 EmitGuard_NullPointerException(dex_pc, this_addr);
2800
2801 // Load declaring class of the caller method
2802 llvm::Value* method_object_addr = EmitLoadMethodObjectAddr();
2803
2804 llvm::ConstantInt* declaring_class_offset_value =
2805 irb_.getPtrEquivInt(Method::DeclaringClassOffset().Int32Value());
2806
2807 llvm::Value* declaring_class_field_addr =
2808 irb_.CreatePtrDisp(method_object_addr, declaring_class_offset_value,
2809 irb_.getJObjectTy()->getPointerTo());
2810
2811 llvm::Value* declaring_class_addr =
2812 irb_.CreateLoad(declaring_class_field_addr);
2813
2814 // Load the super class of the declaring class
2815 llvm::Value* super_class_offset_value =
2816 irb_.getPtrEquivInt(Class::SuperClassOffset().Int32Value());
2817
2818 llvm::Value* super_class_field_addr =
2819 irb_.CreatePtrDisp(declaring_class_addr, super_class_offset_value,
2820 irb_.getJObjectTy()->getPointerTo());
2821
2822 llvm::Value* super_class_addr =
2823 irb_.CreateLoad(super_class_field_addr);
2824
2825 // Load method object from virtual table
2826 llvm::Value* vtable_addr = EmitLoadVTableAddr(super_class_addr);
2827
2828 llvm::Value* callee_method_object_addr =
2829 EmitLoadMethodObjectAddrFromVTable(vtable_addr,
2830 callee_method->GetMethodIndex());
2831
2832 llvm::Value* code_addr =
2833 EmitLoadCodeAddr(callee_method_object_addr,
2834 callee_method_idx, false);
2835
2836 // Load actual parameters
2837 std::vector<llvm::Value*> args;
2838 args.push_back(callee_method_object_addr);
2839 args.push_back(this_addr);
2840 EmitLoadActualParameters(args, callee_method_idx, dec_insn,
2841 is_range, false);
2842
2843 // Invoke callee
Logan Chien8dfcbea2012-02-17 18:50:32 +08002844 EmitUpdateLineNumFromDexPC(dex_pc);
Logan Chiene73b6212012-01-27 01:47:29 +08002845 llvm::Value* retval = irb_.CreateCall(code_addr, args);
Logan Chiene73b6212012-01-27 01:47:29 +08002846 EmitGuard_ExceptionLandingPad(dex_pc);
2847
2848 MethodHelper method_helper(callee_method);
2849 char ret_shorty = method_helper.GetShorty()[0];
2850 if (ret_shorty != 'V') {
2851 EmitStoreDalvikRetValReg(ret_shorty, kAccurate, retval);
2852 }
2853 }
2854
Logan Chien70f94b42011-12-27 17:49:11 +08002855 irb_.CreateBr(GetNextBasicBlock(dex_pc));
2856}
2857
2858
Logan Chien1a121b92012-02-15 22:23:42 +08002859void MethodCompiler::EmitInsn_InvokeStaticDirect(uint32_t dex_pc,
2860 Instruction const* insn,
2861 bool is_range,
2862 bool is_static) {
Logan Chien70f94b42011-12-27 17:49:11 +08002863
Logan Chien1a121b92012-02-15 22:23:42 +08002864 Instruction::DecodedInstruction dec_insn(insn);
Logan Chien70f94b42011-12-27 17:49:11 +08002865
Logan Chien1a121b92012-02-15 22:23:42 +08002866 uint32_t callee_method_idx = dec_insn.vB_;
2867
2868 // Find the method object at compile time
2869 Method* callee_method = dex_cache_->GetResolvedMethod(callee_method_idx);
2870 CHECK_NE(callee_method, static_cast<Method*>(NULL));
2871
2872 llvm::Value* this_addr = NULL;
2873
2874 if (!is_static) {
2875 // Test: Is *this* parameter equal to null?
2876 this_addr = EmitLoadCalleeThis(dec_insn, is_range);
2877 EmitGuard_NullPointerException(dex_pc, this_addr);
2878 }
2879
2880 // Load method function pointers
2881
2882 // TODO: Besides finding the callee function address through Code and
2883 // Direct Methods (CADMS) at runtime, try to find the callee function
2884 // through something like compiler_llvm_->GetCompiledMethod(...)
2885 // so that we can perform inlining.
2886
2887 llvm::Value* code_addr_field_addr = NULL;
2888 llvm::Value* method_field_addr = NULL;
2889
2890 EmitLoadDexCacheCodeAndDirectMethodFieldAddr(
2891 code_addr_field_addr, method_field_addr, callee_method_idx);
2892
2893 // NOTE: Since CADMS are mixing int type with pointer type, we have to
2894 // cast the integer type to pointer type. Following code must be refined
2895 // when we are going to port to 64bit architecture.
2896
2897 llvm::Value* code_addr_int = irb_.CreateLoad(code_addr_field_addr);
2898
2899 llvm::FunctionType* callee_type =
2900 GetFunctionType(callee_method_idx, is_static);
2901
2902 llvm::Value* code_addr =
2903 irb_.CreateIntToPtr(code_addr_int, callee_type->getPointerTo());
2904
2905 llvm::Value* callee_method_value_int = irb_.CreateLoad(method_field_addr);
2906
2907 llvm::Value* callee_method_object_addr =
2908 irb_.CreateIntToPtr(callee_method_value_int, irb_.getJObjectTy());
2909
2910 // Load the actual parameter
2911 std::vector<llvm::Value*> args;
2912
2913 args.push_back(callee_method_object_addr); // method object for callee
2914
2915 if (!is_static) {
2916 args.push_back(this_addr); // "this" object for callee
2917 }
2918
2919 EmitLoadActualParameters(args, callee_method_idx, dec_insn,
2920 is_range, is_static);
2921
Logan Chien8dfcbea2012-02-17 18:50:32 +08002922 // Invoke callee
2923 EmitUpdateLineNumFromDexPC(dex_pc);
Logan Chien1a121b92012-02-15 22:23:42 +08002924 llvm::Value* retval = irb_.CreateCall(code_addr, args);
2925 EmitGuard_ExceptionLandingPad(dex_pc);
2926
2927 MethodHelper method_helper(callee_method);
Shih-wei Liao90d50992012-02-19 03:32:05 -08002928 char ret_shorty = method_helper.GetShorty()[0];
2929 if (ret_shorty != 'V') {
Logan Chien1a121b92012-02-15 22:23:42 +08002930 EmitStoreDalvikRetValReg(ret_shorty, kAccurate, retval);
2931 }
2932
Logan Chien70f94b42011-12-27 17:49:11 +08002933 irb_.CreateBr(GetNextBasicBlock(dex_pc));
2934}
2935
2936
2937void MethodCompiler::EmitInsn_InvokeInterface(uint32_t dex_pc,
2938 Instruction const* insn,
2939 bool is_range) {
Logan Chien7caf37e2012-02-03 22:56:04 +08002940
2941 Instruction::DecodedInstruction dec_insn(insn);
2942
2943 uint32_t callee_method_idx = dec_insn.vB_;
2944
2945 // Resolve callee method
2946 Method* callee_method = ResolveMethod(callee_method_idx);
2947
2948 // Test: Is "this" pointer equal to null?
2949 llvm::Value* this_addr = EmitLoadCalleeThis(dec_insn, is_range);
2950 EmitGuard_NullPointerException(dex_pc, this_addr);
2951
2952 // Resolve the callee method object address at runtime
2953 llvm::Value* runtime_func = irb_.GetRuntime(FindInterfaceMethod);
2954
2955 llvm::Value* method_object_addr = EmitLoadMethodObjectAddr();
2956
2957 llvm::Value* callee_method_idx_value = irb_.getInt32(callee_method_idx);
2958
Logan Chien8dfcbea2012-02-17 18:50:32 +08002959 EmitUpdateLineNumFromDexPC(dex_pc);
2960
Logan Chien7caf37e2012-02-03 22:56:04 +08002961 llvm::Value* callee_method_object_addr =
2962 irb_.CreateCall2(runtime_func, callee_method_idx_value, method_object_addr);
2963
2964 EmitGuard_ExceptionLandingPad(dex_pc);
2965
2966 llvm::Value* code_addr =
2967 EmitLoadCodeAddr(callee_method_object_addr, callee_method_idx, false);
2968
2969 // Load the actual parameter
2970 std::vector<llvm::Value*> args;
2971 args.push_back(callee_method_object_addr);
2972 args.push_back(this_addr);
2973 EmitLoadActualParameters(args, callee_method_idx, dec_insn, is_range, false);
2974
Logan Chien8dfcbea2012-02-17 18:50:32 +08002975 // Invoke callee
2976 EmitUpdateLineNumFromDexPC(dex_pc);
Logan Chien7caf37e2012-02-03 22:56:04 +08002977 llvm::Value* retval = irb_.CreateCall(code_addr, args);
2978 EmitGuard_ExceptionLandingPad(dex_pc);
2979
2980 MethodHelper method_helper(callee_method);
2981 char ret_shorty = method_helper.GetShorty()[0];
2982 if (ret_shorty != 'V') {
2983 EmitStoreDalvikRetValReg(ret_shorty, kAccurate, retval);
2984 }
2985
Logan Chien70f94b42011-12-27 17:49:11 +08002986 irb_.CreateBr(GetNextBasicBlock(dex_pc));
2987}
2988
2989
2990void MethodCompiler::EmitInsn_Neg(uint32_t dex_pc,
2991 Instruction const* insn,
2992 JType op_jty) {
Logan Chien1b5685f2011-12-27 18:01:14 +08002993
2994 Instruction::DecodedInstruction dec_insn(insn);
2995
2996 DCHECK(op_jty == kInt || op_jty == kLong) << op_jty;
2997
2998 llvm::Value* src_value = EmitLoadDalvikReg(dec_insn.vB_, op_jty, kAccurate);
2999 llvm::Value* result_value = irb_.CreateNeg(src_value);
3000 EmitStoreDalvikReg(dec_insn.vA_, op_jty, kAccurate, result_value);
3001
Logan Chien70f94b42011-12-27 17:49:11 +08003002 irb_.CreateBr(GetNextBasicBlock(dex_pc));
3003}
3004
3005
3006void MethodCompiler::EmitInsn_Not(uint32_t dex_pc,
3007 Instruction const* insn,
3008 JType op_jty) {
Logan Chiene53750d2011-12-27 18:02:27 +08003009
3010 Instruction::DecodedInstruction dec_insn(insn);
3011
3012 DCHECK(op_jty == kInt || op_jty == kLong) << op_jty;
3013
3014 llvm::Value* src_value = EmitLoadDalvikReg(dec_insn.vB_, op_jty, kAccurate);
3015 llvm::Value* result_value =
3016 irb_.CreateXor(src_value, static_cast<uint64_t>(-1));
3017
3018 EmitStoreDalvikReg(dec_insn.vA_, op_jty, kAccurate, result_value);
3019
Logan Chien70f94b42011-12-27 17:49:11 +08003020 irb_.CreateBr(GetNextBasicBlock(dex_pc));
3021}
3022
3023
3024void MethodCompiler::EmitInsn_SExt(uint32_t dex_pc,
3025 Instruction const* insn) {
Logan Chien61752ad2011-12-27 18:03:51 +08003026
3027 Instruction::DecodedInstruction dec_insn(insn);
3028
3029 llvm::Value* src_value = EmitLoadDalvikReg(dec_insn.vB_, kInt, kAccurate);
3030 llvm::Value* result_value = irb_.CreateSExt(src_value, irb_.getJLongTy());
3031 EmitStoreDalvikReg(dec_insn.vA_, kLong, kAccurate, result_value);
3032
Logan Chien70f94b42011-12-27 17:49:11 +08003033 irb_.CreateBr(GetNextBasicBlock(dex_pc));
3034}
3035
3036
3037void MethodCompiler::EmitInsn_Trunc(uint32_t dex_pc,
3038 Instruction const* insn) {
Logan Chien17a57662011-12-27 18:05:14 +08003039
3040 Instruction::DecodedInstruction dec_insn(insn);
3041
3042 llvm::Value* src_value = EmitLoadDalvikReg(dec_insn.vB_, kLong, kAccurate);
3043 llvm::Value* result_value = irb_.CreateTrunc(src_value, irb_.getJIntTy());
3044 EmitStoreDalvikReg(dec_insn.vA_, kInt, kAccurate, result_value);
3045
Logan Chien70f94b42011-12-27 17:49:11 +08003046 irb_.CreateBr(GetNextBasicBlock(dex_pc));
3047}
3048
3049
3050void MethodCompiler::EmitInsn_TruncAndSExt(uint32_t dex_pc,
3051 Instruction const* insn,
3052 unsigned N) {
Logan Chienb6744c52011-12-27 18:06:26 +08003053
3054 Instruction::DecodedInstruction dec_insn(insn);
3055
3056 llvm::Value* src_value = EmitLoadDalvikReg(dec_insn.vB_, kInt, kAccurate);
3057
3058 llvm::Value* trunc_value =
3059 irb_.CreateTrunc(src_value, llvm::Type::getIntNTy(*context_, N));
3060
3061 llvm::Value* result_value = irb_.CreateSExt(trunc_value, irb_.getJIntTy());
3062
3063 EmitStoreDalvikReg(dec_insn.vA_, kInt, kAccurate, result_value);
3064
Logan Chien70f94b42011-12-27 17:49:11 +08003065 irb_.CreateBr(GetNextBasicBlock(dex_pc));
3066}
3067
3068
3069void MethodCompiler::EmitInsn_TruncAndZExt(uint32_t dex_pc,
3070 Instruction const* insn,
3071 unsigned N) {
Logan Chienb6744c52011-12-27 18:06:26 +08003072
3073 Instruction::DecodedInstruction dec_insn(insn);
3074
3075 llvm::Value* src_value = EmitLoadDalvikReg(dec_insn.vB_, kInt, kAccurate);
3076
3077 llvm::Value* trunc_value =
3078 irb_.CreateTrunc(src_value, llvm::Type::getIntNTy(*context_, N));
3079
3080 llvm::Value* result_value = irb_.CreateZExt(trunc_value, irb_.getJIntTy());
3081
3082 EmitStoreDalvikReg(dec_insn.vA_, kInt, kAccurate, result_value);
3083
Logan Chien70f94b42011-12-27 17:49:11 +08003084 irb_.CreateBr(GetNextBasicBlock(dex_pc));
3085}
3086
3087
3088void MethodCompiler::EmitInsn_FNeg(uint32_t dex_pc,
3089 Instruction const* insn,
3090 JType op_jty) {
Logan Chien7a48b092011-12-27 18:07:45 +08003091
3092 Instruction::DecodedInstruction dec_insn(insn);
3093
3094 DCHECK(op_jty == kFloat || op_jty == kDouble) << op_jty;
3095
3096 llvm::Value* src_value = EmitLoadDalvikReg(dec_insn.vB_, op_jty, kAccurate);
3097 llvm::Value* result_value = irb_.CreateFNeg(src_value);
3098 EmitStoreDalvikReg(dec_insn.vA_, op_jty, kAccurate, result_value);
3099
Logan Chien70f94b42011-12-27 17:49:11 +08003100 irb_.CreateBr(GetNextBasicBlock(dex_pc));
3101}
3102
3103
3104void MethodCompiler::EmitInsn_IntToFP(uint32_t dex_pc,
3105 Instruction const* insn,
3106 JType src_jty,
3107 JType dest_jty) {
Logan Chien62dd4532011-12-27 18:09:00 +08003108
3109 Instruction::DecodedInstruction dec_insn(insn);
3110
3111 DCHECK(src_jty == kInt || src_jty == kLong) << src_jty;
3112 DCHECK(dest_jty == kFloat || dest_jty == kDouble) << dest_jty;
3113
3114 llvm::Value* src_value = EmitLoadDalvikReg(dec_insn.vB_, src_jty, kAccurate);
3115 llvm::Type* dest_type = irb_.getJType(dest_jty, kAccurate);
3116 llvm::Value* dest_value = irb_.CreateSIToFP(src_value, dest_type);
3117 EmitStoreDalvikReg(dec_insn.vA_, dest_jty, kAccurate, dest_value);
3118
Logan Chien70f94b42011-12-27 17:49:11 +08003119 irb_.CreateBr(GetNextBasicBlock(dex_pc));
3120}
3121
3122
3123void MethodCompiler::EmitInsn_FPToInt(uint32_t dex_pc,
3124 Instruction const* insn,
3125 JType src_jty,
3126 JType dest_jty) {
Logan Chien12dc1752011-12-27 18:10:15 +08003127
3128 Instruction::DecodedInstruction dec_insn(insn);
3129
3130 DCHECK(src_jty == kFloat || src_jty == kDouble) << src_jty;
3131 DCHECK(dest_jty == kInt || dest_jty == kLong) << dest_jty;
3132
3133 llvm::Value* src_value = EmitLoadDalvikReg(dec_insn.vB_, src_jty, kAccurate);
3134 llvm::Type* dest_type = irb_.getJType(dest_jty, kAccurate);
3135 llvm::Value* dest_value = irb_.CreateFPToSI(src_value, dest_type);
3136 EmitStoreDalvikReg(dec_insn.vA_, dest_jty, kAccurate, dest_value);
3137
Logan Chien70f94b42011-12-27 17:49:11 +08003138 irb_.CreateBr(GetNextBasicBlock(dex_pc));
3139}
3140
3141
3142void MethodCompiler::EmitInsn_FExt(uint32_t dex_pc,
3143 Instruction const* insn) {
Logan Chienc56ded92011-12-27 18:10:57 +08003144
3145 Instruction::DecodedInstruction dec_insn(insn);
3146
3147 llvm::Value* src_value = EmitLoadDalvikReg(dec_insn.vB_, kFloat, kAccurate);
3148 llvm::Value* result_value = irb_.CreateFPExt(src_value, irb_.getJDoubleTy());
3149 EmitStoreDalvikReg(dec_insn.vA_, kDouble, kAccurate, result_value);
3150
Logan Chien70f94b42011-12-27 17:49:11 +08003151 irb_.CreateBr(GetNextBasicBlock(dex_pc));
3152}
3153
3154
3155void MethodCompiler::EmitInsn_FTrunc(uint32_t dex_pc,
3156 Instruction const* insn) {
Logan Chien927744f2011-12-27 18:11:52 +08003157
3158 Instruction::DecodedInstruction dec_insn(insn);
3159
3160 llvm::Value* src_value = EmitLoadDalvikReg(dec_insn.vB_, kDouble, kAccurate);
3161 llvm::Value* result_value = irb_.CreateFPTrunc(src_value, irb_.getJFloatTy());
3162 EmitStoreDalvikReg(dec_insn.vA_, kFloat, kAccurate, result_value);
3163
Logan Chien70f94b42011-12-27 17:49:11 +08003164 irb_.CreateBr(GetNextBasicBlock(dex_pc));
3165}
3166
3167
3168void MethodCompiler::EmitInsn_IntArithm(uint32_t dex_pc,
3169 Instruction const* insn,
3170 IntArithmKind arithm,
3171 JType op_jty,
3172 bool is_2addr) {
Logan Chienc3f7d962011-12-27 18:13:18 +08003173
3174 Instruction::DecodedInstruction dec_insn(insn);
3175
3176 DCHECK(op_jty == kInt || op_jty == kLong) << op_jty;
3177
3178 llvm::Value* src1_value;
3179 llvm::Value* src2_value;
3180
3181 if (is_2addr) {
3182 src1_value = EmitLoadDalvikReg(dec_insn.vA_, op_jty, kAccurate);
3183 src2_value = EmitLoadDalvikReg(dec_insn.vB_, op_jty, kAccurate);
3184 } else {
3185 src1_value = EmitLoadDalvikReg(dec_insn.vB_, op_jty, kAccurate);
3186 src2_value = EmitLoadDalvikReg(dec_insn.vC_, op_jty, kAccurate);
3187 }
3188
3189 llvm::Value* result_value =
3190 EmitIntArithmResultComputation(dex_pc, src1_value, src2_value,
3191 arithm, op_jty);
3192
3193 EmitStoreDalvikReg(dec_insn.vA_, op_jty, kAccurate, result_value);
3194
Logan Chien70f94b42011-12-27 17:49:11 +08003195 irb_.CreateBr(GetNextBasicBlock(dex_pc));
3196}
3197
3198
3199void MethodCompiler::EmitInsn_IntArithmImmediate(uint32_t dex_pc,
3200 Instruction const* insn,
3201 IntArithmKind arithm) {
Logan Chienc3f7d962011-12-27 18:13:18 +08003202
3203 Instruction::DecodedInstruction dec_insn(insn);
3204
3205 llvm::Value* src_value = EmitLoadDalvikReg(dec_insn.vB_, kInt, kAccurate);
3206
3207 llvm::Value* imm_value = irb_.getInt32(dec_insn.vC_);
3208
3209 llvm::Value* result_value =
3210 EmitIntArithmResultComputation(dex_pc, src_value, imm_value, arithm, kInt);
3211
3212 EmitStoreDalvikReg(dec_insn.vA_, kInt, kAccurate, result_value);
3213
Logan Chien70f94b42011-12-27 17:49:11 +08003214 irb_.CreateBr(GetNextBasicBlock(dex_pc));
3215}
3216
3217
Logan Chienc3f7d962011-12-27 18:13:18 +08003218llvm::Value*
3219MethodCompiler::EmitIntArithmResultComputation(uint32_t dex_pc,
3220 llvm::Value* lhs,
3221 llvm::Value* rhs,
3222 IntArithmKind arithm,
3223 JType op_jty) {
3224 DCHECK(op_jty == kInt || op_jty == kLong) << op_jty;
3225
3226 switch (arithm) {
3227 case kIntArithm_Add:
3228 return irb_.CreateAdd(lhs, rhs);
3229
3230 case kIntArithm_Sub:
3231 return irb_.CreateSub(lhs, rhs);
3232
3233 case kIntArithm_Mul:
3234 return irb_.CreateMul(lhs, rhs);
3235
3236 case kIntArithm_Div:
3237 EmitGuard_DivZeroException(dex_pc, rhs, op_jty);
3238 return irb_.CreateSDiv(lhs, rhs);
3239
3240 case kIntArithm_Rem:
3241 EmitGuard_DivZeroException(dex_pc, rhs, op_jty);
3242 return irb_.CreateSRem(lhs, rhs);
3243
3244 case kIntArithm_And:
3245 return irb_.CreateAnd(lhs, rhs);
3246
3247 case kIntArithm_Or:
3248 return irb_.CreateOr(lhs, rhs);
3249
3250 case kIntArithm_Xor:
3251 return irb_.CreateXor(lhs, rhs);
3252
3253 case kIntArithm_Shl:
3254 if (op_jty == kLong) {
3255 return irb_.CreateShl(lhs, irb_.CreateAnd(rhs, 0x3f));
3256 } else {
3257 return irb_.CreateShl(lhs, irb_.CreateAnd(rhs, 0x1f));
3258 }
3259
3260 case kIntArithm_Shr:
3261 if (op_jty == kLong) {
3262 return irb_.CreateAShr(lhs, irb_.CreateAnd(rhs, 0x3f));
3263 } else {
3264 return irb_.CreateAShr(lhs, irb_.CreateAnd(rhs, 0x1f));
3265 }
3266
3267 case kIntArithm_UShr:
3268 if (op_jty == kLong) {
3269 return irb_.CreateLShr(lhs, irb_.CreateAnd(rhs, 0x3f));
3270 } else {
3271 return irb_.CreateLShr(lhs, irb_.CreateAnd(rhs, 0x1f));
3272 }
3273
3274 default:
3275 LOG(FATAL) << "Unknown integer arithmetic kind: " << arithm;
3276 return NULL;
3277 }
3278}
3279
3280
Logan Chien70f94b42011-12-27 17:49:11 +08003281void MethodCompiler::EmitInsn_RSubImmediate(uint32_t dex_pc,
3282 Instruction const* insn) {
Logan Chien65c62d42011-12-27 18:14:18 +08003283
3284 Instruction::DecodedInstruction dec_insn(insn);
3285
3286 llvm::Value* src_value = EmitLoadDalvikReg(dec_insn.vB_, kInt, kAccurate);
3287 llvm::Value* imm_value = irb_.getInt32(dec_insn.vC_);
3288 llvm::Value* result_value = irb_.CreateSub(imm_value, src_value);
3289 EmitStoreDalvikReg(dec_insn.vA_, kInt, kAccurate, result_value);
3290
Logan Chien70f94b42011-12-27 17:49:11 +08003291 irb_.CreateBr(GetNextBasicBlock(dex_pc));
3292}
3293
3294
3295void MethodCompiler::EmitInsn_FPArithm(uint32_t dex_pc,
3296 Instruction const* insn,
3297 FPArithmKind arithm,
3298 JType op_jty,
3299 bool is_2addr) {
Logan Chien76e1c792011-12-27 18:15:01 +08003300
3301 Instruction::DecodedInstruction dec_insn(insn);
3302
3303 DCHECK(op_jty == kFloat || op_jty == kDouble) << op_jty;
3304
3305 llvm::Value* src1_value;
3306 llvm::Value* src2_value;
3307
3308 if (is_2addr) {
3309 src1_value = EmitLoadDalvikReg(dec_insn.vA_, op_jty, kAccurate);
3310 src2_value = EmitLoadDalvikReg(dec_insn.vB_, op_jty, kAccurate);
3311 } else {
3312 src1_value = EmitLoadDalvikReg(dec_insn.vB_, op_jty, kAccurate);
3313 src2_value = EmitLoadDalvikReg(dec_insn.vC_, op_jty, kAccurate);
3314 }
3315
3316 llvm::Value* result_value =
3317 EmitFPArithmResultComputation(dex_pc, src1_value, src2_value, arithm);
3318
3319 EmitStoreDalvikReg(dec_insn.vA_, op_jty, kAccurate, result_value);
3320
Logan Chien70f94b42011-12-27 17:49:11 +08003321 irb_.CreateBr(GetNextBasicBlock(dex_pc));
3322}
3323
3324
Logan Chien76e1c792011-12-27 18:15:01 +08003325llvm::Value*
3326MethodCompiler::EmitFPArithmResultComputation(uint32_t dex_pc,
3327 llvm::Value *lhs,
3328 llvm::Value *rhs,
3329 FPArithmKind arithm) {
3330 switch (arithm) {
3331 case kFPArithm_Add:
3332 return irb_.CreateFAdd(lhs, rhs);
3333
3334 case kFPArithm_Sub:
3335 return irb_.CreateFSub(lhs, rhs);
3336
3337 case kFPArithm_Mul:
3338 return irb_.CreateFMul(lhs, rhs);
3339
3340 case kFPArithm_Div:
3341 return irb_.CreateFDiv(lhs, rhs);
3342
3343 case kFPArithm_Rem:
3344 return irb_.CreateFRem(lhs, rhs);
3345
3346 default:
3347 LOG(FATAL) << "Unknown floating-point arithmetic kind: " << arithm;
3348 return NULL;
3349 }
3350}
3351
3352
Logan Chienc3f7d962011-12-27 18:13:18 +08003353void MethodCompiler::EmitGuard_DivZeroException(uint32_t dex_pc,
3354 llvm::Value* denominator,
3355 JType op_jty) {
3356 DCHECK(op_jty == kInt || op_jty == kLong) << op_jty;
3357
3358 llvm::Constant* zero = irb_.getJZero(op_jty);
3359
3360 llvm::Value* equal_zero = irb_.CreateICmpEQ(denominator, zero);
3361
3362 llvm::BasicBlock* block_exception = CreateBasicBlockWithDexPC(dex_pc, "div0");
3363
3364 llvm::BasicBlock* block_continue = CreateBasicBlockWithDexPC(dex_pc, "cont");
3365
3366 irb_.CreateCondBr(equal_zero, block_exception, block_continue);
3367
3368 irb_.SetInsertPoint(block_exception);
Logan Chien8dfcbea2012-02-17 18:50:32 +08003369 EmitUpdateLineNumFromDexPC(dex_pc);
Logan Chienc3f7d962011-12-27 18:13:18 +08003370 irb_.CreateCall(irb_.GetRuntime(ThrowDivZeroException));
3371 EmitBranchExceptionLandingPad(dex_pc);
3372
3373 irb_.SetInsertPoint(block_continue);
3374}
3375
3376
Logan Chien46fbb412012-02-15 22:29:08 +08003377llvm::Value* MethodCompiler::EmitLoadClassObjectAddr(llvm::Value* this_addr) {
3378 llvm::Constant* class_field_offset_value =
3379 irb_.getPtrEquivInt(Object::ClassOffset().Int32Value());
3380
3381 llvm::Value* class_field_addr =
3382 irb_.CreatePtrDisp(this_addr, class_field_offset_value,
3383 irb_.getJObjectTy()->getPointerTo());
3384
3385 return irb_.CreateLoad(class_field_addr);
3386}
3387
3388
3389llvm::Value*
3390MethodCompiler::EmitLoadVTableAddr(llvm::Value* class_object_addr) {
3391 llvm::Constant* vtable_offset_value =
3392 irb_.getPtrEquivInt(Class::VTableOffset().Int32Value());
3393
3394 llvm::Value* vtable_field_addr =
3395 irb_.CreatePtrDisp(class_object_addr, vtable_offset_value,
3396 irb_.getJObjectTy()->getPointerTo());
3397
3398 return irb_.CreateLoad(vtable_field_addr);
3399}
3400
3401
3402llvm::Value* MethodCompiler::
3403EmitLoadMethodObjectAddrFromVTable(llvm::Value* vtable_addr,
3404 uint16_t vtable_index) {
3405 llvm::Value* vtable_index_value =
3406 irb_.getPtrEquivInt(static_cast<uint64_t>(vtable_index));
3407
3408 llvm::Value* method_field_addr =
3409 EmitArrayGEP(vtable_addr, vtable_index_value, irb_.getJObjectTy());
3410
3411 return irb_.CreateLoad(method_field_addr);
3412}
3413
3414
3415llvm::Value* MethodCompiler::EmitLoadCodeAddr(llvm::Value* method_object_addr,
3416 uint32_t method_idx,
3417 bool is_static) {
3418
3419 llvm::Value* code_field_offset_value =
3420 irb_.getPtrEquivInt(Method::GetCodeOffset().Int32Value());
3421
3422 llvm::FunctionType* method_type = GetFunctionType(method_idx, is_static);
3423
3424 llvm::Value* code_field_addr =
3425 irb_.CreatePtrDisp(method_object_addr, code_field_offset_value,
3426 method_type->getPointerTo()->getPointerTo());
3427
3428 return irb_.CreateLoad(code_field_addr);
3429}
3430
3431
Logan Chien61bb6142012-02-03 15:34:53 +08003432void MethodCompiler::EmitGuard_NullPointerException(uint32_t dex_pc,
3433 llvm::Value* object) {
3434 llvm::Value* equal_null = irb_.CreateICmpEQ(object, irb_.getJNull());
3435
3436 llvm::BasicBlock* block_exception =
3437 CreateBasicBlockWithDexPC(dex_pc, "nullp");
3438
3439 llvm::BasicBlock* block_continue =
3440 CreateBasicBlockWithDexPC(dex_pc, "cont");
3441
3442 irb_.CreateCondBr(equal_null, block_exception, block_continue);
3443
3444 irb_.SetInsertPoint(block_exception);
Logan Chien8dfcbea2012-02-17 18:50:32 +08003445 EmitUpdateLineNumFromDexPC(dex_pc);
Logan Chien61bb6142012-02-03 15:34:53 +08003446 irb_.CreateCall(irb_.GetRuntime(ThrowNullPointerException));
3447 EmitBranchExceptionLandingPad(dex_pc);
3448
3449 irb_.SetInsertPoint(block_continue);
3450}
3451
3452
Logan Chienbb4d12a2012-02-17 14:10:01 +08003453llvm::Value* MethodCompiler::EmitLoadDexCacheAddr(MemberOffset offset) {
3454 llvm::Value* method_object_addr = EmitLoadMethodObjectAddr();
3455
3456 llvm::Value* dex_cache_offset_value =
3457 irb_.getPtrEquivInt(offset.Int32Value());
3458
3459 llvm::Value* dex_cache_field_addr =
3460 irb_.CreatePtrDisp(method_object_addr, dex_cache_offset_value,
3461 irb_.getJObjectTy()->getPointerTo());
3462
3463 return irb_.CreateLoad(dex_cache_field_addr);
3464}
3465
3466
3467void MethodCompiler::
3468EmitLoadDexCacheCodeAndDirectMethodFieldAddr(llvm::Value*& code_field_addr,
3469 llvm::Value*& method_field_addr,
3470 uint32_t method_idx) {
3471 llvm::Value* cadms_dex_cache_addr =
3472 EmitLoadDexCacheAddr(Method::GetDexCacheCodeAndDirectMethodsOffset());
3473
3474 llvm::Value* code_index_value =
3475 irb_.getPtrEquivInt(CodeAndDirectMethods::CodeIndex(method_idx));
3476
3477 llvm::Value* method_index_value =
3478 irb_.getPtrEquivInt(CodeAndDirectMethods::MethodIndex(method_idx));
3479
3480 // Return the field address
3481 code_field_addr = EmitArrayGEP(cadms_dex_cache_addr, code_index_value,
3482 irb_.getJIntTy());
3483
3484 method_field_addr = EmitArrayGEP(cadms_dex_cache_addr, method_index_value,
3485 irb_.getJIntTy());
3486}
3487
3488
3489llvm::Value* MethodCompiler::
3490EmitLoadDexCacheStaticStorageFieldAddr(uint32_t type_idx) {
3491 llvm::Value* static_storage_dex_cache_addr =
3492 EmitLoadDexCacheAddr(Method::DexCacheInitializedStaticStorageOffset());
3493
3494 llvm::Value* type_idx_value = irb_.getPtrEquivInt(type_idx);
3495
3496 return EmitArrayGEP(static_storage_dex_cache_addr, type_idx_value,
3497 irb_.getJObjectTy());
3498}
3499
3500
3501llvm::Value* MethodCompiler::
3502EmitLoadDexCacheResolvedTypeFieldAddr(uint32_t type_idx) {
3503 llvm::Value* resolved_type_dex_cache_addr =
3504 EmitLoadDexCacheAddr(Method::DexCacheResolvedTypesOffset());
3505
3506 llvm::Value* type_idx_value = irb_.getPtrEquivInt(type_idx);
3507
3508 return EmitArrayGEP(resolved_type_dex_cache_addr, type_idx_value,
3509 irb_.getJObjectTy());
3510}
3511
3512
3513llvm::Value* MethodCompiler::
3514EmitLoadDexCacheStringFieldAddr(uint32_t string_idx) {
3515 llvm::Value* string_dex_cache_addr =
3516 EmitLoadDexCacheAddr(Method::DexCacheStringsOffset());
3517
3518 llvm::Value* string_idx_value = irb_.getPtrEquivInt(string_idx);
3519
3520 return EmitArrayGEP(string_dex_cache_addr, string_idx_value,
3521 irb_.getJObjectTy());
3522}
3523
3524
Logan Chien83426162011-12-09 09:29:50 +08003525CompiledMethod *MethodCompiler::Compile() {
Logan Chien0b827102011-12-20 19:46:14 +08003526 // Code generation
3527 CreateFunction();
3528
3529 EmitPrologue();
3530 EmitInstructions();
Logan Chienc670a8d2011-12-20 21:25:56 +08003531 EmitPrologueLastBranch();
Logan Chien0b827102011-12-20 19:46:14 +08003532
Logan Chiend6c239a2011-12-23 15:11:45 +08003533 // Verify the generated bitcode
3534 llvm::verifyFunction(*func_, llvm::PrintMessageAction);
3535
Logan Chien0b827102011-12-20 19:46:14 +08003536 // Delete the inferred register category map (won't be used anymore)
3537 method_->ResetInferredRegCategoryMap();
3538
3539 return new CompiledMethod(insn_set_, func_);
3540}
3541
3542
3543llvm::Value* MethodCompiler::EmitLoadMethodObjectAddr() {
3544 return func_->arg_begin();
Shih-wei Liaod1fec812012-02-13 09:51:10 -08003545}
Logan Chien83426162011-12-09 09:29:50 +08003546
3547
Logan Chien5bcc04e2012-01-30 14:15:12 +08003548void MethodCompiler::EmitBranchExceptionLandingPad(uint32_t dex_pc) {
3549 if (llvm::BasicBlock* lpad = GetLandingPadBasicBlock(dex_pc)) {
3550 irb_.CreateBr(lpad);
3551 } else {
3552 irb_.CreateBr(GetUnwindBasicBlock());
3553 }
3554}
3555
3556
3557void MethodCompiler::EmitGuard_ExceptionLandingPad(uint32_t dex_pc) {
3558 llvm::Value* exception_pending =
3559 irb_.CreateCall(irb_.GetRuntime(IsExceptionPending));
3560
3561 llvm::BasicBlock* block_cont = CreateBasicBlockWithDexPC(dex_pc, "cont");
3562
3563 if (llvm::BasicBlock* lpad = GetLandingPadBasicBlock(dex_pc)) {
3564 irb_.CreateCondBr(exception_pending, lpad, block_cont);
3565 } else {
3566 irb_.CreateCondBr(exception_pending, GetUnwindBasicBlock(), block_cont);
3567 }
3568
3569 irb_.SetInsertPoint(block_cont);
3570}
3571
3572
Logan Chien924072f2012-01-30 15:07:24 +08003573void MethodCompiler::EmitGuard_GarbageCollectionSuspend(uint32_t dex_pc) {
3574 llvm::Value* runtime_func = irb_.GetRuntime(TestSuspend);
Logan Chien8dfcbea2012-02-17 18:50:32 +08003575 EmitUpdateLineNumFromDexPC(dex_pc);
Logan Chien924072f2012-01-30 15:07:24 +08003576 irb_.CreateCall(runtime_func);
3577
3578 EmitGuard_ExceptionLandingPad(dex_pc);
3579}
3580
3581
Logan Chiend6c239a2011-12-23 15:11:45 +08003582llvm::BasicBlock* MethodCompiler::
3583CreateBasicBlockWithDexPC(uint32_t dex_pc, char const* postfix) {
3584 std::string name;
3585
3586 if (postfix) {
3587 StringAppendF(&name, "B%u.%s", dex_pc, postfix);
3588 } else {
3589 StringAppendF(&name, "B%u", dex_pc);
3590 }
3591
3592 return llvm::BasicBlock::Create(*context_, name, func_);
3593}
3594
3595
3596llvm::BasicBlock* MethodCompiler::GetBasicBlock(uint32_t dex_pc) {
3597 DCHECK(dex_pc < code_item_->insns_size_in_code_units_);
3598
3599 llvm::BasicBlock* basic_block = basic_blocks_[dex_pc];
3600
3601 if (!basic_block) {
3602 basic_block = CreateBasicBlockWithDexPC(dex_pc);
3603 basic_blocks_[dex_pc] = basic_block;
3604 }
3605
3606 return basic_block;
3607}
3608
3609
3610llvm::BasicBlock*
3611MethodCompiler::GetNextBasicBlock(uint32_t dex_pc) {
3612 Instruction const* insn = Instruction::At(code_item_->insns_ + dex_pc);
3613 return GetBasicBlock(dex_pc + insn->SizeInCodeUnits());
3614}
3615
3616
Logan Chien5bcc04e2012-01-30 14:15:12 +08003617int32_t MethodCompiler::GetTryItemOffset(uint32_t dex_pc) {
3618 // TODO: Since we are emitting the dex instructions in ascending order
3619 // w.r.t. address, we can cache the lastest try item offset so that we
3620 // don't have to do binary search for every query.
3621
3622 int32_t min = 0;
3623 int32_t max = code_item_->tries_size_ - 1;
3624
3625 while (min <= max) {
3626 int32_t mid = min + (max - min) / 2;
3627
3628 DexFile::TryItem const* ti = DexFile::GetTryItems(*code_item_, mid);
3629 uint32_t start = ti->start_addr_;
3630 uint32_t end = start + ti->insn_count_;
3631
3632 if (dex_pc < start) {
3633 max = mid - 1;
3634 } else if (dex_pc >= end) {
3635 min = mid + 1;
3636 } else {
3637 return mid; // found
3638 }
3639 }
3640
3641 return -1; // not found
3642}
3643
3644
3645llvm::BasicBlock* MethodCompiler::GetLandingPadBasicBlock(uint32_t dex_pc) {
3646 // Find the try item for this address in this method
3647 int32_t ti_offset = GetTryItemOffset(dex_pc);
3648
3649 if (ti_offset == -1) {
3650 return NULL; // No landing pad is available for this address.
3651 }
3652
3653 // Check for the existing landing pad basic block
3654 DCHECK_GT(basic_block_landing_pads_.size(), static_cast<size_t>(ti_offset));
3655 llvm::BasicBlock* block_lpad = basic_block_landing_pads_[ti_offset];
3656
3657 if (block_lpad) {
3658 // We have generated landing pad for this try item already. Return the
3659 // same basic block.
3660 return block_lpad;
3661 }
3662
3663 // Get try item from code item
3664 DexFile::TryItem const* ti = DexFile::GetTryItems(*code_item_, ti_offset);
3665
3666 // Create landing pad basic block
3667 block_lpad = llvm::BasicBlock::Create(*context_,
3668 StringPrintf("lpad%d", ti_offset),
3669 func_);
3670
3671 // Change IRBuilder insert point
3672 llvm::IRBuilderBase::InsertPoint irb_ip_original = irb_.saveIP();
3673 irb_.SetInsertPoint(block_lpad);
3674
3675 // Find catch block with matching type
3676 llvm::Value* method_object_addr = EmitLoadMethodObjectAddr();
3677
3678 // TODO: Maybe passing try item offset will be a better idea? For now,
3679 // we are passing dex_pc, so that we can use existing runtime support
3680 // function directly. However, in the runtime supporting function we
3681 // have to search for try item with binary search which can be
3682 // eliminated.
3683 llvm::Value* dex_pc_value = irb_.getInt32(ti->start_addr_);
3684
3685 llvm::Value* catch_handler_index_value =
3686 irb_.CreateCall2(irb_.GetRuntime(FindCatchBlock),
3687 method_object_addr, dex_pc_value);
3688
3689 // Switch instruction (Go to unwind basic block by default)
3690 llvm::SwitchInst* sw =
3691 irb_.CreateSwitch(catch_handler_index_value, GetUnwindBasicBlock());
3692
3693 // Cases with matched catch block
3694 CatchHandlerIterator iter(*code_item_, ti->start_addr_);
3695
3696 for (uint32_t c = 0; iter.HasNext(); iter.Next(), ++c) {
3697 sw->addCase(irb_.getInt32(c), GetBasicBlock(iter.GetHandlerAddress()));
3698 }
3699
3700 // Restore the orignal insert point for IRBuilder
3701 irb_.restoreIP(irb_ip_original);
3702
3703 // Cache this landing pad
3704 DCHECK_GT(basic_block_landing_pads_.size(), static_cast<size_t>(ti_offset));
3705 basic_block_landing_pads_[ti_offset] = block_lpad;
3706
3707 return block_lpad;
3708}
3709
3710
3711llvm::BasicBlock* MethodCompiler::GetUnwindBasicBlock() {
3712 // Check the existing unwinding baisc block block
3713 if (basic_block_unwind_ != NULL) {
3714 return basic_block_unwind_;
3715 }
3716
3717 // Create new basic block for unwinding
3718 basic_block_unwind_ =
3719 llvm::BasicBlock::Create(*context_, "exception_unwind", func_);
3720
3721 // Change IRBuilder insert point
3722 llvm::IRBuilderBase::InsertPoint irb_ip_original = irb_.saveIP();
3723 irb_.SetInsertPoint(basic_block_unwind_);
3724
Logan Chien8dfcbea2012-02-17 18:50:32 +08003725 // Pop the shadow frame
3726 EmitPopShadowFrame();
3727
Logan Chien5bcc04e2012-01-30 14:15:12 +08003728 // Emit the code to return default value (zero) for the given return type.
3729 char ret_shorty = method_helper_.GetShorty()[0];
3730 if (ret_shorty == 'V') {
3731 irb_.CreateRetVoid();
3732 } else {
3733 irb_.CreateRet(irb_.getJZero(ret_shorty));
3734 }
3735
3736 // Restore the orignal insert point for IRBuilder
3737 irb_.restoreIP(irb_ip_original);
3738
3739 return basic_block_unwind_;
3740}
3741
3742
Logan Chienc670a8d2011-12-20 21:25:56 +08003743llvm::Value* MethodCompiler::AllocDalvikLocalVarReg(RegCategory cat,
3744 uint32_t reg_idx) {
3745
3746 // Save current IR builder insert point
3747 llvm::IRBuilderBase::InsertPoint irb_ip_original = irb_.saveIP();
3748
3749 // Alloca
3750 llvm::Value* reg_addr = NULL;
3751
3752 switch (cat) {
3753 case kRegCat1nr:
3754 irb_.SetInsertPoint(basic_block_reg_alloca_);
3755 reg_addr = irb_.CreateAlloca(irb_.getJIntTy(), 0,
3756 StringPrintf("r%u", reg_idx));
3757
3758 irb_.SetInsertPoint(basic_block_reg_zero_init_);
3759 irb_.CreateStore(irb_.getJInt(0), reg_addr);
3760 break;
3761
3762 case kRegCat2:
3763 irb_.SetInsertPoint(basic_block_reg_alloca_);
3764 reg_addr = irb_.CreateAlloca(irb_.getJLongTy(), 0,
3765 StringPrintf("w%u", reg_idx));
3766
3767 irb_.SetInsertPoint(basic_block_reg_zero_init_);
3768 irb_.CreateStore(irb_.getJLong(0), reg_addr);
3769 break;
3770
3771 case kRegObject:
Logan Chien8dfcbea2012-02-17 18:50:32 +08003772 {
3773 irb_.SetInsertPoint(basic_block_shadow_frame_alloca_);
Logan Chienc670a8d2011-12-20 21:25:56 +08003774
Logan Chien8dfcbea2012-02-17 18:50:32 +08003775 llvm::Value* gep_index[] = {
3776 irb_.getInt32(0), // No pointer displacement
3777 irb_.getInt32(1), // SIRT
3778 irb_.getInt32(reg_idx) // Pointer field
3779 };
3780
3781 reg_addr = irb_.CreateGEP(shadow_frame_, gep_index,
3782 StringPrintf("p%u", reg_idx));
3783
3784 irb_.SetInsertPoint(basic_block_reg_zero_init_);
3785 irb_.CreateStore(irb_.getJNull(), reg_addr);
3786 }
Logan Chienc670a8d2011-12-20 21:25:56 +08003787 break;
3788
3789 default:
3790 LOG(FATAL) << "Unknown register category for allocation: " << cat;
3791 }
3792
3793 // Restore IRBuilder insert point
3794 irb_.restoreIP(irb_ip_original);
3795
3796 DCHECK_NE(reg_addr, static_cast<llvm::Value*>(NULL));
3797 return reg_addr;
3798}
3799
3800
3801llvm::Value* MethodCompiler::AllocDalvikRetValReg(RegCategory cat) {
3802 // Save current IR builder insert point
3803 llvm::IRBuilderBase::InsertPoint irb_ip_original = irb_.saveIP();
3804
3805 // Alloca
3806 llvm::Value* reg_addr = NULL;
3807
3808 switch (cat) {
3809 case kRegCat1nr:
3810 irb_.SetInsertPoint(basic_block_reg_alloca_);
3811 reg_addr = irb_.CreateAlloca(irb_.getJIntTy(), 0, "r_res");
3812 break;
3813
3814 case kRegCat2:
3815 irb_.SetInsertPoint(basic_block_reg_alloca_);
3816 reg_addr = irb_.CreateAlloca(irb_.getJLongTy(), 0, "w_res");
3817 break;
3818
3819 case kRegObject:
3820 irb_.SetInsertPoint(basic_block_reg_alloca_);
3821 reg_addr = irb_.CreateAlloca(irb_.getJObjectTy(), 0, "p_res");
3822 break;
3823
3824 default:
3825 LOG(FATAL) << "Unknown register category for allocation: " << cat;
3826 }
3827
3828 // Restore IRBuilder insert point
3829 irb_.restoreIP(irb_ip_original);
3830
3831 DCHECK_NE(reg_addr, static_cast<llvm::Value*>(NULL));
3832 return reg_addr;
3833}
3834
3835
Logan Chien8dfcbea2012-02-17 18:50:32 +08003836void MethodCompiler::EmitPopShadowFrame() {
3837 irb_.CreateCall(irb_.GetRuntime(PopShadowFrame));
3838}
3839
3840
3841void MethodCompiler::EmitUpdateLineNum(int32_t line_num) {
3842 llvm::Constant* zero = irb_.getInt32(0);
3843
3844 llvm::Value* gep_index[] = {
3845 zero, // No displacement for shadow frame pointer
3846 zero, // Get the %ArtFrame data structure
3847 irb_.getInt32(2),
3848 };
3849
3850 llvm::Value* line_num_field_addr = irb_.CreateGEP(shadow_frame_, gep_index);
3851 llvm::ConstantInt* line_num_value = irb_.getInt32(line_num);
3852 irb_.CreateStore(line_num_value, line_num_field_addr);
3853}
3854
3855
3856void MethodCompiler::EmitUpdateLineNumFromDexPC(uint32_t dex_pc) {
3857 EmitUpdateLineNum(dex_file_->GetLineNumFromPC(method_, dex_pc));
3858}
3859
3860
Logan Chien83426162011-12-09 09:29:50 +08003861} // namespace compiler_llvm
3862} // namespace art