blob: 64a1eccf60d60e1ffe952fb527851e185fb2fdc2 [file] [log] [blame]
David Brazdildee58d62016-04-07 09:54:26 +00001/*
2 * Copyright (C) 2016 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 "instruction_builder.h"
18
Matthew Gharrity465ecc82016-07-19 21:32:52 +000019#include "art_method-inl.h"
Vladimir Marko69d310e2017-10-09 14:12:23 +010020#include "base/arena_bit_vector.h"
21#include "base/bit_vector-inl.h"
22#include "block_builder.h"
David Brazdildee58d62016-04-07 09:54:26 +000023#include "bytecode_utils.h"
24#include "class_linker.h"
Vladimir Marko0ebe0d82017-09-21 22:50:39 +010025#include "data_type-inl.h"
David Sehr9e734c72018-01-04 17:56:19 -080026#include "dex/dex_instruction-inl.h"
Vladimir Marko69d310e2017-10-09 14:12:23 +010027#include "driver/compiler_driver-inl.h"
28#include "driver/dex_compilation_unit.h"
David Brazdildee58d62016-04-07 09:54:26 +000029#include "driver/compiler_options.h"
Andreas Gampe75a7db62016-09-26 12:04:26 -070030#include "imtable-inl.h"
Vladimir Marko69d310e2017-10-09 14:12:23 +010031#include "mirror/dex_cache.h"
Nicolas Geoffray58cc1cb2017-11-20 13:27:29 +000032#include "oat_file.h"
Vladimir Marko69d310e2017-10-09 14:12:23 +010033#include "optimizing_compiler_stats.h"
Mathieu Chartierde4b08f2017-07-10 14:13:41 -070034#include "quicken_info.h"
Mathieu Chartier0795f232016-09-27 18:43:30 -070035#include "scoped_thread_state_change-inl.h"
Andreas Gampe8cf9cb32017-07-19 09:28:38 -070036#include "sharpening.h"
Vladimir Marko69d310e2017-10-09 14:12:23 +010037#include "ssa_builder.h"
Andreas Gampea7c83ac2017-09-11 08:14:23 -070038#include "well_known_classes.h"
David Brazdildee58d62016-04-07 09:54:26 +000039
40namespace art {
41
Mathieu Chartier808c7a52017-12-15 11:19:33 -080042HInstructionBuilder::HInstructionBuilder(HGraph* graph,
43 HBasicBlockBuilder* block_builder,
44 SsaBuilder* ssa_builder,
45 const DexFile* dex_file,
46 const CodeItemDebugInfoAccessor& accessor,
47 DataType::Type return_type,
48 const DexCompilationUnit* dex_compilation_unit,
49 const DexCompilationUnit* outer_compilation_unit,
50 CompilerDriver* compiler_driver,
51 CodeGenerator* code_generator,
Mathieu Chartier210531f2018-01-12 10:15:51 -080052 ArrayRef<const uint8_t> interpreter_metadata,
Mathieu Chartier808c7a52017-12-15 11:19:33 -080053 OptimizingCompilerStats* compiler_stats,
54 VariableSizedHandleScope* handles,
55 ScopedArenaAllocator* local_allocator)
56 : allocator_(graph->GetAllocator()),
57 graph_(graph),
58 handles_(handles),
59 dex_file_(dex_file),
60 code_item_accessor_(accessor),
61 return_type_(return_type),
62 block_builder_(block_builder),
63 ssa_builder_(ssa_builder),
64 compiler_driver_(compiler_driver),
65 code_generator_(code_generator),
66 dex_compilation_unit_(dex_compilation_unit),
67 outer_compilation_unit_(outer_compilation_unit),
68 quicken_info_(interpreter_metadata),
69 compilation_stats_(compiler_stats),
70 local_allocator_(local_allocator),
71 locals_for_(local_allocator->Adapter(kArenaAllocGraphBuilder)),
72 current_block_(nullptr),
73 current_locals_(nullptr),
74 latest_result_(nullptr),
75 current_this_parameter_(nullptr),
76 loop_headers_(local_allocator->Adapter(kArenaAllocGraphBuilder)) {
77 loop_headers_.reserve(kDefaultNumberOfLoops);
78}
79
David Brazdildee58d62016-04-07 09:54:26 +000080HBasicBlock* HInstructionBuilder::FindBlockStartingAt(uint32_t dex_pc) const {
81 return block_builder_->GetBlockAt(dex_pc);
82}
83
Vladimir Marko69d310e2017-10-09 14:12:23 +010084inline ScopedArenaVector<HInstruction*>* HInstructionBuilder::GetLocalsFor(HBasicBlock* block) {
85 ScopedArenaVector<HInstruction*>* locals = &locals_for_[block->GetBlockId()];
David Brazdildee58d62016-04-07 09:54:26 +000086 const size_t vregs = graph_->GetNumberOfVRegs();
Mingyao Yang01b47b02017-02-03 12:09:57 -080087 if (locals->size() == vregs) {
88 return locals;
89 }
90 return GetLocalsForWithAllocation(block, locals, vregs);
91}
David Brazdildee58d62016-04-07 09:54:26 +000092
Vladimir Marko69d310e2017-10-09 14:12:23 +010093ScopedArenaVector<HInstruction*>* HInstructionBuilder::GetLocalsForWithAllocation(
Mingyao Yang01b47b02017-02-03 12:09:57 -080094 HBasicBlock* block,
Vladimir Marko69d310e2017-10-09 14:12:23 +010095 ScopedArenaVector<HInstruction*>* locals,
Mingyao Yang01b47b02017-02-03 12:09:57 -080096 const size_t vregs) {
97 DCHECK_NE(locals->size(), vregs);
98 locals->resize(vregs, nullptr);
99 if (block->IsCatchBlock()) {
100 // We record incoming inputs of catch phis at throwing instructions and
101 // must therefore eagerly create the phis. Phis for undefined vregs will
102 // be deleted when the first throwing instruction with the vreg undefined
103 // is encountered. Unused phis will be removed by dead phi analysis.
104 for (size_t i = 0; i < vregs; ++i) {
105 // No point in creating the catch phi if it is already undefined at
106 // the first throwing instruction.
107 HInstruction* current_local_value = (*current_locals_)[i];
108 if (current_local_value != nullptr) {
Vladimir Markoca6fff82017-10-03 14:49:14 +0100109 HPhi* phi = new (allocator_) HPhi(
110 allocator_,
Mingyao Yang01b47b02017-02-03 12:09:57 -0800111 i,
112 0,
113 current_local_value->GetType());
114 block->AddPhi(phi);
115 (*locals)[i] = phi;
David Brazdildee58d62016-04-07 09:54:26 +0000116 }
117 }
118 }
119 return locals;
120}
121
Mingyao Yang01b47b02017-02-03 12:09:57 -0800122inline HInstruction* HInstructionBuilder::ValueOfLocalAt(HBasicBlock* block, size_t local) {
Vladimir Marko69d310e2017-10-09 14:12:23 +0100123 ScopedArenaVector<HInstruction*>* locals = GetLocalsFor(block);
David Brazdildee58d62016-04-07 09:54:26 +0000124 return (*locals)[local];
125}
126
127void HInstructionBuilder::InitializeBlockLocals() {
128 current_locals_ = GetLocalsFor(current_block_);
129
130 if (current_block_->IsCatchBlock()) {
131 // Catch phis were already created and inputs collected from throwing sites.
132 if (kIsDebugBuild) {
133 // Make sure there was at least one throwing instruction which initialized
134 // locals (guaranteed by HGraphBuilder) and that all try blocks have been
135 // visited already (from HTryBoundary scoping and reverse post order).
136 bool catch_block_visited = false;
Vladimir Marko2c45bc92016-10-25 16:54:12 +0100137 for (HBasicBlock* current : graph_->GetReversePostOrder()) {
David Brazdildee58d62016-04-07 09:54:26 +0000138 if (current == current_block_) {
139 catch_block_visited = true;
140 } else if (current->IsTryBlock()) {
141 const HTryBoundary& try_entry = current->GetTryCatchInformation()->GetTryEntry();
142 if (try_entry.HasExceptionHandler(*current_block_)) {
143 DCHECK(!catch_block_visited) << "Catch block visited before its try block.";
144 }
145 }
146 }
147 DCHECK_EQ(current_locals_->size(), graph_->GetNumberOfVRegs())
148 << "No instructions throwing into a live catch block.";
149 }
150 } else if (current_block_->IsLoopHeader()) {
151 // If the block is a loop header, we know we only have visited the pre header
152 // because we are visiting in reverse post order. We create phis for all initialized
153 // locals from the pre header. Their inputs will be populated at the end of
154 // the analysis.
155 for (size_t local = 0; local < current_locals_->size(); ++local) {
156 HInstruction* incoming =
157 ValueOfLocalAt(current_block_->GetLoopInformation()->GetPreHeader(), local);
158 if (incoming != nullptr) {
Vladimir Markoca6fff82017-10-03 14:49:14 +0100159 HPhi* phi = new (allocator_) HPhi(
160 allocator_,
David Brazdildee58d62016-04-07 09:54:26 +0000161 local,
162 0,
163 incoming->GetType());
164 current_block_->AddPhi(phi);
165 (*current_locals_)[local] = phi;
166 }
167 }
168
169 // Save the loop header so that the last phase of the analysis knows which
170 // blocks need to be updated.
171 loop_headers_.push_back(current_block_);
172 } else if (current_block_->GetPredecessors().size() > 0) {
173 // All predecessors have already been visited because we are visiting in reverse post order.
174 // We merge the values of all locals, creating phis if those values differ.
175 for (size_t local = 0; local < current_locals_->size(); ++local) {
176 bool one_predecessor_has_no_value = false;
177 bool is_different = false;
178 HInstruction* value = ValueOfLocalAt(current_block_->GetPredecessors()[0], local);
179
180 for (HBasicBlock* predecessor : current_block_->GetPredecessors()) {
181 HInstruction* current = ValueOfLocalAt(predecessor, local);
182 if (current == nullptr) {
183 one_predecessor_has_no_value = true;
184 break;
185 } else if (current != value) {
186 is_different = true;
187 }
188 }
189
190 if (one_predecessor_has_no_value) {
191 // If one predecessor has no value for this local, we trust the verifier has
192 // successfully checked that there is a store dominating any read after this block.
193 continue;
194 }
195
196 if (is_different) {
197 HInstruction* first_input = ValueOfLocalAt(current_block_->GetPredecessors()[0], local);
Vladimir Markoca6fff82017-10-03 14:49:14 +0100198 HPhi* phi = new (allocator_) HPhi(
199 allocator_,
David Brazdildee58d62016-04-07 09:54:26 +0000200 local,
201 current_block_->GetPredecessors().size(),
202 first_input->GetType());
203 for (size_t i = 0; i < current_block_->GetPredecessors().size(); i++) {
204 HInstruction* pred_value = ValueOfLocalAt(current_block_->GetPredecessors()[i], local);
205 phi->SetRawInputAt(i, pred_value);
206 }
207 current_block_->AddPhi(phi);
208 value = phi;
209 }
210 (*current_locals_)[local] = value;
211 }
212 }
213}
214
215void HInstructionBuilder::PropagateLocalsToCatchBlocks() {
216 const HTryBoundary& try_entry = current_block_->GetTryCatchInformation()->GetTryEntry();
217 for (HBasicBlock* catch_block : try_entry.GetExceptionHandlers()) {
Vladimir Marko69d310e2017-10-09 14:12:23 +0100218 ScopedArenaVector<HInstruction*>* handler_locals = GetLocalsFor(catch_block);
David Brazdildee58d62016-04-07 09:54:26 +0000219 DCHECK_EQ(handler_locals->size(), current_locals_->size());
220 for (size_t vreg = 0, e = current_locals_->size(); vreg < e; ++vreg) {
221 HInstruction* handler_value = (*handler_locals)[vreg];
222 if (handler_value == nullptr) {
223 // Vreg was undefined at a previously encountered throwing instruction
224 // and the catch phi was deleted. Do not record the local value.
225 continue;
226 }
227 DCHECK(handler_value->IsPhi());
228
229 HInstruction* local_value = (*current_locals_)[vreg];
230 if (local_value == nullptr) {
231 // This is the first instruction throwing into `catch_block` where
232 // `vreg` is undefined. Delete the catch phi.
233 catch_block->RemovePhi(handler_value->AsPhi());
234 (*handler_locals)[vreg] = nullptr;
235 } else {
236 // Vreg has been defined at all instructions throwing into `catch_block`
237 // encountered so far. Record the local value in the catch phi.
238 handler_value->AsPhi()->AddInput(local_value);
239 }
240 }
241 }
242}
243
244void HInstructionBuilder::AppendInstruction(HInstruction* instruction) {
245 current_block_->AddInstruction(instruction);
246 InitializeInstruction(instruction);
247}
248
249void HInstructionBuilder::InsertInstructionAtTop(HInstruction* instruction) {
250 if (current_block_->GetInstructions().IsEmpty()) {
251 current_block_->AddInstruction(instruction);
252 } else {
253 current_block_->InsertInstructionBefore(instruction, current_block_->GetFirstInstruction());
254 }
255 InitializeInstruction(instruction);
256}
257
258void HInstructionBuilder::InitializeInstruction(HInstruction* instruction) {
259 if (instruction->NeedsEnvironment()) {
Vladimir Markoca6fff82017-10-03 14:49:14 +0100260 HEnvironment* environment = new (allocator_) HEnvironment(
261 allocator_,
David Brazdildee58d62016-04-07 09:54:26 +0000262 current_locals_->size(),
Nicolas Geoffray5d37c152017-01-12 13:25:19 +0000263 graph_->GetArtMethod(),
David Brazdildee58d62016-04-07 09:54:26 +0000264 instruction->GetDexPc(),
David Brazdildee58d62016-04-07 09:54:26 +0000265 instruction);
Vladimir Marko69d310e2017-10-09 14:12:23 +0100266 environment->CopyFrom(ArrayRef<HInstruction* const>(*current_locals_));
David Brazdildee58d62016-04-07 09:54:26 +0000267 instruction->SetRawEnvironment(environment);
268 }
269}
270
David Brazdilc120bbe2016-04-22 16:57:00 +0100271HInstruction* HInstructionBuilder::LoadNullCheckedLocal(uint32_t register_index, uint32_t dex_pc) {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100272 HInstruction* ref = LoadLocal(register_index, DataType::Type::kReference);
David Brazdilc120bbe2016-04-22 16:57:00 +0100273 if (!ref->CanBeNull()) {
274 return ref;
275 }
276
Vladimir Markoca6fff82017-10-03 14:49:14 +0100277 HNullCheck* null_check = new (allocator_) HNullCheck(ref, dex_pc);
David Brazdilc120bbe2016-04-22 16:57:00 +0100278 AppendInstruction(null_check);
279 return null_check;
280}
281
David Brazdildee58d62016-04-07 09:54:26 +0000282void HInstructionBuilder::SetLoopHeaderPhiInputs() {
283 for (size_t i = loop_headers_.size(); i > 0; --i) {
284 HBasicBlock* block = loop_headers_[i - 1];
285 for (HInstructionIterator it(block->GetPhis()); !it.Done(); it.Advance()) {
286 HPhi* phi = it.Current()->AsPhi();
287 size_t vreg = phi->GetRegNumber();
288 for (HBasicBlock* predecessor : block->GetPredecessors()) {
289 HInstruction* value = ValueOfLocalAt(predecessor, vreg);
290 if (value == nullptr) {
291 // Vreg is undefined at this predecessor. Mark it dead and leave with
292 // fewer inputs than predecessors. SsaChecker will fail if not removed.
293 phi->SetDead();
294 break;
295 } else {
296 phi->AddInput(value);
297 }
298 }
299 }
300 }
301}
302
303static bool IsBlockPopulated(HBasicBlock* block) {
304 if (block->IsLoopHeader()) {
305 // Suspend checks were inserted into loop headers during building of dominator tree.
306 DCHECK(block->GetFirstInstruction()->IsSuspendCheck());
307 return block->GetFirstInstruction() != block->GetLastInstruction();
308 } else {
309 return !block->GetInstructions().IsEmpty();
310 }
311}
312
313bool HInstructionBuilder::Build() {
Mathieu Chartier808c7a52017-12-15 11:19:33 -0800314 DCHECK(code_item_accessor_.HasCodeItem());
Vladimir Marko69d310e2017-10-09 14:12:23 +0100315 locals_for_.resize(
316 graph_->GetBlocks().size(),
317 ScopedArenaVector<HInstruction*>(local_allocator_->Adapter(kArenaAllocGraphBuilder)));
David Brazdildee58d62016-04-07 09:54:26 +0000318
319 // Find locations where we want to generate extra stackmaps for native debugging.
320 // This allows us to generate the info only at interesting points (for example,
321 // at start of java statement) rather than before every dex instruction.
322 const bool native_debuggable = compiler_driver_ != nullptr &&
323 compiler_driver_->GetCompilerOptions().GetNativeDebuggable();
324 ArenaBitVector* native_debug_info_locations = nullptr;
325 if (native_debuggable) {
Vladimir Marko69d310e2017-10-09 14:12:23 +0100326 native_debug_info_locations = FindNativeDebugInfoLocations();
David Brazdildee58d62016-04-07 09:54:26 +0000327 }
328
Vladimir Marko2c45bc92016-10-25 16:54:12 +0100329 for (HBasicBlock* block : graph_->GetReversePostOrder()) {
330 current_block_ = block;
David Brazdildee58d62016-04-07 09:54:26 +0000331 uint32_t block_dex_pc = current_block_->GetDexPc();
332
333 InitializeBlockLocals();
334
335 if (current_block_->IsEntryBlock()) {
336 InitializeParameters();
Vladimir Markoca6fff82017-10-03 14:49:14 +0100337 AppendInstruction(new (allocator_) HSuspendCheck(0u));
338 AppendInstruction(new (allocator_) HGoto(0u));
David Brazdildee58d62016-04-07 09:54:26 +0000339 continue;
340 } else if (current_block_->IsExitBlock()) {
Vladimir Markoca6fff82017-10-03 14:49:14 +0100341 AppendInstruction(new (allocator_) HExit());
David Brazdildee58d62016-04-07 09:54:26 +0000342 continue;
343 } else if (current_block_->IsLoopHeader()) {
Vladimir Markoca6fff82017-10-03 14:49:14 +0100344 HSuspendCheck* suspend_check = new (allocator_) HSuspendCheck(current_block_->GetDexPc());
David Brazdildee58d62016-04-07 09:54:26 +0000345 current_block_->GetLoopInformation()->SetSuspendCheck(suspend_check);
346 // This is slightly odd because the loop header might not be empty (TryBoundary).
347 // But we're still creating the environment with locals from the top of the block.
348 InsertInstructionAtTop(suspend_check);
349 }
350
351 if (block_dex_pc == kNoDexPc || current_block_ != block_builder_->GetBlockAt(block_dex_pc)) {
352 // Synthetic block that does not need to be populated.
353 DCHECK(IsBlockPopulated(current_block_));
354 continue;
355 }
356
357 DCHECK(!IsBlockPopulated(current_block_));
358
Mathieu Chartierde4b08f2017-07-10 14:13:41 -0700359 uint32_t quicken_index = 0;
360 if (CanDecodeQuickenedInfo()) {
361 quicken_index = block_builder_->GetQuickenIndex(block_dex_pc);
362 }
363
Mathieu Chartier808c7a52017-12-15 11:19:33 -0800364 for (const DexInstructionPcPair& pair : code_item_accessor_.InstructionsFrom(block_dex_pc)) {
David Brazdildee58d62016-04-07 09:54:26 +0000365 if (current_block_ == nullptr) {
366 // The previous instruction ended this block.
367 break;
368 }
369
Mathieu Chartier0021feb2017-11-07 00:08:52 -0800370 const uint32_t dex_pc = pair.DexPc();
David Brazdildee58d62016-04-07 09:54:26 +0000371 if (dex_pc != block_dex_pc && FindBlockStartingAt(dex_pc) != nullptr) {
372 // This dex_pc starts a new basic block.
373 break;
374 }
375
Mathieu Chartier0021feb2017-11-07 00:08:52 -0800376 if (current_block_->IsTryBlock() && IsThrowingDexInstruction(pair.Inst())) {
David Brazdildee58d62016-04-07 09:54:26 +0000377 PropagateLocalsToCatchBlocks();
378 }
379
380 if (native_debuggable && native_debug_info_locations->IsBitSet(dex_pc)) {
Vladimir Markoca6fff82017-10-03 14:49:14 +0100381 AppendInstruction(new (allocator_) HNativeDebugInfo(dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +0000382 }
383
Mathieu Chartier0021feb2017-11-07 00:08:52 -0800384 if (!ProcessDexInstruction(pair.Inst(), dex_pc, quicken_index)) {
David Brazdildee58d62016-04-07 09:54:26 +0000385 return false;
386 }
Mathieu Chartierde4b08f2017-07-10 14:13:41 -0700387
Mathieu Chartier0021feb2017-11-07 00:08:52 -0800388 if (QuickenInfoTable::NeedsIndexForInstruction(&pair.Inst())) {
Mathieu Chartierde4b08f2017-07-10 14:13:41 -0700389 ++quicken_index;
390 }
David Brazdildee58d62016-04-07 09:54:26 +0000391 }
392
393 if (current_block_ != nullptr) {
394 // Branching instructions clear current_block, so we know the last
395 // instruction of the current block is not a branching instruction.
396 // We add an unconditional Goto to the next block.
397 DCHECK_EQ(current_block_->GetSuccessors().size(), 1u);
Vladimir Markoca6fff82017-10-03 14:49:14 +0100398 AppendInstruction(new (allocator_) HGoto());
David Brazdildee58d62016-04-07 09:54:26 +0000399 }
400 }
401
402 SetLoopHeaderPhiInputs();
403
404 return true;
405}
406
Vladimir Marko92f7f3c2017-10-31 11:38:30 +0000407void HInstructionBuilder::BuildIntrinsic(ArtMethod* method) {
Mathieu Chartier808c7a52017-12-15 11:19:33 -0800408 DCHECK(!code_item_accessor_.HasCodeItem());
Vladimir Marko92f7f3c2017-10-31 11:38:30 +0000409 DCHECK(method->IsIntrinsic());
410
411 locals_for_.resize(
412 graph_->GetBlocks().size(),
413 ScopedArenaVector<HInstruction*>(local_allocator_->Adapter(kArenaAllocGraphBuilder)));
414
415 // Fill the entry block. Do not add suspend check, we do not want a suspend
416 // check in intrinsics; intrinsic methods are supposed to be fast.
417 current_block_ = graph_->GetEntryBlock();
418 InitializeBlockLocals();
419 InitializeParameters();
420 AppendInstruction(new (allocator_) HGoto(0u));
421
422 // Fill the body.
423 current_block_ = current_block_->GetSingleSuccessor();
424 InitializeBlockLocals();
425 DCHECK(!IsBlockPopulated(current_block_));
426
427 // Add the invoke and return instruction. Use HInvokeStaticOrDirect even
428 // for methods that would normally use an HInvokeVirtual (sharpen the call).
429 size_t in_vregs = graph_->GetNumberOfInVRegs();
430 size_t number_of_arguments =
431 in_vregs - std::count(current_locals_->end() - in_vregs, current_locals_->end(), nullptr);
432 uint32_t method_idx = dex_compilation_unit_->GetDexMethodIndex();
433 MethodReference target_method(dex_file_, method_idx);
434 HInvokeStaticOrDirect::DispatchInfo dispatch_info = {
435 HInvokeStaticOrDirect::MethodLoadKind::kRuntimeCall,
436 HInvokeStaticOrDirect::CodePtrLocation::kCallArtMethod,
437 /* method_load_data */ 0u
438 };
439 InvokeType invoke_type = dex_compilation_unit_->IsStatic() ? kStatic : kDirect;
440 HInvokeStaticOrDirect* invoke = new (allocator_) HInvokeStaticOrDirect(
441 allocator_,
442 number_of_arguments,
443 return_type_,
444 kNoDexPc,
445 method_idx,
446 method,
447 dispatch_info,
448 invoke_type,
449 target_method,
450 HInvokeStaticOrDirect::ClinitCheckRequirement::kNone);
451 HandleInvoke(invoke,
452 in_vregs,
453 /* args */ nullptr,
454 graph_->GetNumberOfVRegs() - in_vregs,
455 /* is_range */ true,
456 dex_file_->GetMethodShorty(method_idx),
457 /* clinit_check */ nullptr,
458 /* is_unresolved */ false);
459
460 // Add the return instruction.
461 if (return_type_ == DataType::Type::kVoid) {
462 AppendInstruction(new (allocator_) HReturnVoid());
463 } else {
464 AppendInstruction(new (allocator_) HReturn(invoke));
465 }
466
467 // Fill the exit block.
468 DCHECK_EQ(current_block_->GetSingleSuccessor(), graph_->GetExitBlock());
469 current_block_ = graph_->GetExitBlock();
470 InitializeBlockLocals();
471 AppendInstruction(new (allocator_) HExit());
472}
473
Vladimir Marko69d310e2017-10-09 14:12:23 +0100474ArenaBitVector* HInstructionBuilder::FindNativeDebugInfoLocations() {
David Brazdildee58d62016-04-07 09:54:26 +0000475 // The callback gets called when the line number changes.
476 // In other words, it marks the start of new java statement.
477 struct Callback {
478 static bool Position(void* ctx, const DexFile::PositionInfo& entry) {
479 static_cast<ArenaBitVector*>(ctx)->SetBit(entry.address_);
480 return false;
481 }
482 };
Vladimir Marko69d310e2017-10-09 14:12:23 +0100483 ArenaBitVector* locations = ArenaBitVector::Create(local_allocator_,
Mathieu Chartier808c7a52017-12-15 11:19:33 -0800484 code_item_accessor_.InsnsSizeInCodeUnits(),
Vladimir Marko69d310e2017-10-09 14:12:23 +0100485 /* expandable */ false,
486 kArenaAllocGraphBuilder);
487 locations->ClearAllBits();
Mathieu Chartier808c7a52017-12-15 11:19:33 -0800488 dex_file_->DecodeDebugPositionInfo(code_item_accessor_.DebugInfoOffset(),
489 Callback::Position,
490 locations);
David Brazdildee58d62016-04-07 09:54:26 +0000491 // Instruction-specific tweaks.
Mathieu Chartier808c7a52017-12-15 11:19:33 -0800492 for (const DexInstructionPcPair& inst : code_item_accessor_) {
Mathieu Chartier0021feb2017-11-07 00:08:52 -0800493 switch (inst->Opcode()) {
David Brazdildee58d62016-04-07 09:54:26 +0000494 case Instruction::MOVE_EXCEPTION: {
495 // Stop in native debugger after the exception has been moved.
496 // The compiler also expects the move at the start of basic block so
497 // we do not want to interfere by inserting native-debug-info before it.
Mathieu Chartier0021feb2017-11-07 00:08:52 -0800498 locations->ClearBit(inst.DexPc());
499 DexInstructionIterator next = std::next(DexInstructionIterator(inst));
500 DCHECK(next.DexPc() != inst.DexPc());
Mathieu Chartier808c7a52017-12-15 11:19:33 -0800501 if (next != code_item_accessor_.end()) {
Mathieu Chartier2b2bef22017-10-26 17:10:19 -0700502 locations->SetBit(next.DexPc());
David Brazdildee58d62016-04-07 09:54:26 +0000503 }
504 break;
505 }
506 default:
507 break;
508 }
509 }
Vladimir Marko69d310e2017-10-09 14:12:23 +0100510 return locations;
David Brazdildee58d62016-04-07 09:54:26 +0000511}
512
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100513HInstruction* HInstructionBuilder::LoadLocal(uint32_t reg_number, DataType::Type type) const {
David Brazdildee58d62016-04-07 09:54:26 +0000514 HInstruction* value = (*current_locals_)[reg_number];
515 DCHECK(value != nullptr);
516
517 // If the operation requests a specific type, we make sure its input is of that type.
518 if (type != value->GetType()) {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100519 if (DataType::IsFloatingPointType(type)) {
Aart Bik31883642016-06-06 15:02:44 -0700520 value = ssa_builder_->GetFloatOrDoubleEquivalent(value, type);
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100521 } else if (type == DataType::Type::kReference) {
Aart Bik31883642016-06-06 15:02:44 -0700522 value = ssa_builder_->GetReferenceTypeEquivalent(value);
David Brazdildee58d62016-04-07 09:54:26 +0000523 }
Aart Bik31883642016-06-06 15:02:44 -0700524 DCHECK(value != nullptr);
David Brazdildee58d62016-04-07 09:54:26 +0000525 }
526
527 return value;
528}
529
530void HInstructionBuilder::UpdateLocal(uint32_t reg_number, HInstruction* stored_value) {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100531 DataType::Type stored_type = stored_value->GetType();
532 DCHECK_NE(stored_type, DataType::Type::kVoid);
David Brazdildee58d62016-04-07 09:54:26 +0000533
534 // Storing into vreg `reg_number` may implicitly invalidate the surrounding
535 // registers. Consider the following cases:
536 // (1) Storing a wide value must overwrite previous values in both `reg_number`
537 // and `reg_number+1`. We store `nullptr` in `reg_number+1`.
538 // (2) If vreg `reg_number-1` holds a wide value, writing into `reg_number`
539 // must invalidate it. We store `nullptr` in `reg_number-1`.
540 // Consequently, storing a wide value into the high vreg of another wide value
541 // will invalidate both `reg_number-1` and `reg_number+1`.
542
543 if (reg_number != 0) {
544 HInstruction* local_low = (*current_locals_)[reg_number - 1];
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100545 if (local_low != nullptr && DataType::Is64BitType(local_low->GetType())) {
David Brazdildee58d62016-04-07 09:54:26 +0000546 // The vreg we are storing into was previously the high vreg of a pair.
547 // We need to invalidate its low vreg.
548 DCHECK((*current_locals_)[reg_number] == nullptr);
549 (*current_locals_)[reg_number - 1] = nullptr;
550 }
551 }
552
553 (*current_locals_)[reg_number] = stored_value;
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100554 if (DataType::Is64BitType(stored_type)) {
David Brazdildee58d62016-04-07 09:54:26 +0000555 // We are storing a pair. Invalidate the instruction in the high vreg.
556 (*current_locals_)[reg_number + 1] = nullptr;
557 }
558}
559
560void HInstructionBuilder::InitializeParameters() {
561 DCHECK(current_block_->IsEntryBlock());
562
Vladimir Marko69d310e2017-10-09 14:12:23 +0100563 // outer_compilation_unit_ is null only when unit testing.
564 if (outer_compilation_unit_ == nullptr) {
David Brazdildee58d62016-04-07 09:54:26 +0000565 return;
566 }
567
568 const char* shorty = dex_compilation_unit_->GetShorty();
569 uint16_t number_of_parameters = graph_->GetNumberOfInVRegs();
570 uint16_t locals_index = graph_->GetNumberOfLocalVRegs();
571 uint16_t parameter_index = 0;
572
573 const DexFile::MethodId& referrer_method_id =
574 dex_file_->GetMethodId(dex_compilation_unit_->GetDexMethodIndex());
575 if (!dex_compilation_unit_->IsStatic()) {
576 // Add the implicit 'this' argument, not expressed in the signature.
Vladimir Markoca6fff82017-10-03 14:49:14 +0100577 HParameterValue* parameter = new (allocator_) HParameterValue(*dex_file_,
David Brazdildee58d62016-04-07 09:54:26 +0000578 referrer_method_id.class_idx_,
579 parameter_index++,
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100580 DataType::Type::kReference,
Igor Murashkind01745e2017-04-05 16:40:31 -0700581 /* is_this */ true);
David Brazdildee58d62016-04-07 09:54:26 +0000582 AppendInstruction(parameter);
583 UpdateLocal(locals_index++, parameter);
584 number_of_parameters--;
Igor Murashkind01745e2017-04-05 16:40:31 -0700585 current_this_parameter_ = parameter;
586 } else {
587 DCHECK(current_this_parameter_ == nullptr);
David Brazdildee58d62016-04-07 09:54:26 +0000588 }
589
590 const DexFile::ProtoId& proto = dex_file_->GetMethodPrototype(referrer_method_id);
591 const DexFile::TypeList* arg_types = dex_file_->GetProtoParameters(proto);
592 for (int i = 0, shorty_pos = 1; i < number_of_parameters; i++) {
Vladimir Markoca6fff82017-10-03 14:49:14 +0100593 HParameterValue* parameter = new (allocator_) HParameterValue(
David Brazdildee58d62016-04-07 09:54:26 +0000594 *dex_file_,
595 arg_types->GetTypeItem(shorty_pos - 1).type_idx_,
596 parameter_index++,
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100597 DataType::FromShorty(shorty[shorty_pos]),
Igor Murashkind01745e2017-04-05 16:40:31 -0700598 /* is_this */ false);
David Brazdildee58d62016-04-07 09:54:26 +0000599 ++shorty_pos;
600 AppendInstruction(parameter);
601 // Store the parameter value in the local that the dex code will use
602 // to reference that parameter.
603 UpdateLocal(locals_index++, parameter);
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100604 if (DataType::Is64BitType(parameter->GetType())) {
David Brazdildee58d62016-04-07 09:54:26 +0000605 i++;
606 locals_index++;
607 parameter_index++;
608 }
609 }
610}
611
612template<typename T>
613void HInstructionBuilder::If_22t(const Instruction& instruction, uint32_t dex_pc) {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100614 HInstruction* first = LoadLocal(instruction.VRegA(), DataType::Type::kInt32);
615 HInstruction* second = LoadLocal(instruction.VRegB(), DataType::Type::kInt32);
Vladimir Markoca6fff82017-10-03 14:49:14 +0100616 T* comparison = new (allocator_) T(first, second, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +0000617 AppendInstruction(comparison);
Vladimir Markoca6fff82017-10-03 14:49:14 +0100618 AppendInstruction(new (allocator_) HIf(comparison, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +0000619 current_block_ = nullptr;
620}
621
622template<typename T>
623void HInstructionBuilder::If_21t(const Instruction& instruction, uint32_t dex_pc) {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100624 HInstruction* value = LoadLocal(instruction.VRegA(), DataType::Type::kInt32);
Vladimir Markoca6fff82017-10-03 14:49:14 +0100625 T* comparison = new (allocator_) T(value, graph_->GetIntConstant(0, dex_pc), dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +0000626 AppendInstruction(comparison);
Vladimir Markoca6fff82017-10-03 14:49:14 +0100627 AppendInstruction(new (allocator_) HIf(comparison, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +0000628 current_block_ = nullptr;
629}
630
631template<typename T>
632void HInstructionBuilder::Unop_12x(const Instruction& instruction,
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100633 DataType::Type type,
David Brazdildee58d62016-04-07 09:54:26 +0000634 uint32_t dex_pc) {
635 HInstruction* first = LoadLocal(instruction.VRegB(), type);
Vladimir Markoca6fff82017-10-03 14:49:14 +0100636 AppendInstruction(new (allocator_) T(type, first, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +0000637 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
638}
639
640void HInstructionBuilder::Conversion_12x(const Instruction& instruction,
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100641 DataType::Type input_type,
642 DataType::Type result_type,
David Brazdildee58d62016-04-07 09:54:26 +0000643 uint32_t dex_pc) {
644 HInstruction* first = LoadLocal(instruction.VRegB(), input_type);
Vladimir Markoca6fff82017-10-03 14:49:14 +0100645 AppendInstruction(new (allocator_) HTypeConversion(result_type, first, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +0000646 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
647}
648
649template<typename T>
650void HInstructionBuilder::Binop_23x(const Instruction& instruction,
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100651 DataType::Type type,
David Brazdildee58d62016-04-07 09:54:26 +0000652 uint32_t dex_pc) {
653 HInstruction* first = LoadLocal(instruction.VRegB(), type);
654 HInstruction* second = LoadLocal(instruction.VRegC(), type);
Vladimir Markoca6fff82017-10-03 14:49:14 +0100655 AppendInstruction(new (allocator_) T(type, first, second, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +0000656 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
657}
658
659template<typename T>
660void HInstructionBuilder::Binop_23x_shift(const Instruction& instruction,
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100661 DataType::Type type,
David Brazdildee58d62016-04-07 09:54:26 +0000662 uint32_t dex_pc) {
663 HInstruction* first = LoadLocal(instruction.VRegB(), type);
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100664 HInstruction* second = LoadLocal(instruction.VRegC(), DataType::Type::kInt32);
Vladimir Markoca6fff82017-10-03 14:49:14 +0100665 AppendInstruction(new (allocator_) T(type, first, second, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +0000666 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
667}
668
669void HInstructionBuilder::Binop_23x_cmp(const Instruction& instruction,
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100670 DataType::Type type,
David Brazdildee58d62016-04-07 09:54:26 +0000671 ComparisonBias bias,
672 uint32_t dex_pc) {
673 HInstruction* first = LoadLocal(instruction.VRegB(), type);
674 HInstruction* second = LoadLocal(instruction.VRegC(), type);
Vladimir Markoca6fff82017-10-03 14:49:14 +0100675 AppendInstruction(new (allocator_) HCompare(type, first, second, bias, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +0000676 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
677}
678
679template<typename T>
680void HInstructionBuilder::Binop_12x_shift(const Instruction& instruction,
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100681 DataType::Type type,
David Brazdildee58d62016-04-07 09:54:26 +0000682 uint32_t dex_pc) {
683 HInstruction* first = LoadLocal(instruction.VRegA(), type);
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100684 HInstruction* second = LoadLocal(instruction.VRegB(), DataType::Type::kInt32);
Vladimir Markoca6fff82017-10-03 14:49:14 +0100685 AppendInstruction(new (allocator_) T(type, first, second, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +0000686 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
687}
688
689template<typename T>
690void HInstructionBuilder::Binop_12x(const Instruction& instruction,
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100691 DataType::Type type,
David Brazdildee58d62016-04-07 09:54:26 +0000692 uint32_t dex_pc) {
693 HInstruction* first = LoadLocal(instruction.VRegA(), type);
694 HInstruction* second = LoadLocal(instruction.VRegB(), type);
Vladimir Markoca6fff82017-10-03 14:49:14 +0100695 AppendInstruction(new (allocator_) T(type, first, second, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +0000696 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
697}
698
699template<typename T>
700void HInstructionBuilder::Binop_22s(const Instruction& instruction, bool reverse, uint32_t dex_pc) {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100701 HInstruction* first = LoadLocal(instruction.VRegB(), DataType::Type::kInt32);
David Brazdildee58d62016-04-07 09:54:26 +0000702 HInstruction* second = graph_->GetIntConstant(instruction.VRegC_22s(), dex_pc);
703 if (reverse) {
704 std::swap(first, second);
705 }
Vladimir Markoca6fff82017-10-03 14:49:14 +0100706 AppendInstruction(new (allocator_) T(DataType::Type::kInt32, first, second, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +0000707 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
708}
709
710template<typename T>
711void HInstructionBuilder::Binop_22b(const Instruction& instruction, bool reverse, uint32_t dex_pc) {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100712 HInstruction* first = LoadLocal(instruction.VRegB(), DataType::Type::kInt32);
David Brazdildee58d62016-04-07 09:54:26 +0000713 HInstruction* second = graph_->GetIntConstant(instruction.VRegC_22b(), dex_pc);
714 if (reverse) {
715 std::swap(first, second);
716 }
Vladimir Markoca6fff82017-10-03 14:49:14 +0100717 AppendInstruction(new (allocator_) T(DataType::Type::kInt32, first, second, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +0000718 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
719}
720
Igor Murashkind01745e2017-04-05 16:40:31 -0700721// Does the method being compiled need any constructor barriers being inserted?
722// (Always 'false' for methods that aren't <init>.)
Mathieu Chartierc4ae9162016-04-07 13:19:19 -0700723static bool RequiresConstructorBarrier(const DexCompilationUnit* cu, CompilerDriver* driver) {
Igor Murashkin032cacd2017-04-06 14:40:08 -0700724 // Can be null in unit tests only.
725 if (UNLIKELY(cu == nullptr)) {
726 return false;
727 }
728
David Brazdildee58d62016-04-07 09:54:26 +0000729 Thread* self = Thread::Current();
730 return cu->IsConstructor()
Igor Murashkind01745e2017-04-05 16:40:31 -0700731 && !cu->IsStatic()
732 // RequiresConstructorBarrier must only be queried for <init> methods;
733 // it's effectively "false" for every other method.
734 //
735 // See CompilerDriver::RequiresConstructBarrier for more explanation.
Mathieu Chartierc4ae9162016-04-07 13:19:19 -0700736 && driver->RequiresConstructorBarrier(self, cu->GetDexFile(), cu->GetClassDefIndex());
David Brazdildee58d62016-04-07 09:54:26 +0000737}
738
739// Returns true if `block` has only one successor which starts at the next
740// dex_pc after `instruction` at `dex_pc`.
741static bool IsFallthroughInstruction(const Instruction& instruction,
742 uint32_t dex_pc,
743 HBasicBlock* block) {
744 uint32_t next_dex_pc = dex_pc + instruction.SizeInCodeUnits();
745 return block->GetSingleSuccessor()->GetDexPc() == next_dex_pc;
746}
747
748void HInstructionBuilder::BuildSwitch(const Instruction& instruction, uint32_t dex_pc) {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100749 HInstruction* value = LoadLocal(instruction.VRegA(), DataType::Type::kInt32);
David Brazdildee58d62016-04-07 09:54:26 +0000750 DexSwitchTable table(instruction, dex_pc);
751
752 if (table.GetNumEntries() == 0) {
753 // Empty Switch. Code falls through to the next block.
754 DCHECK(IsFallthroughInstruction(instruction, dex_pc, current_block_));
Vladimir Markoca6fff82017-10-03 14:49:14 +0100755 AppendInstruction(new (allocator_) HGoto(dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +0000756 } else if (table.ShouldBuildDecisionTree()) {
757 for (DexSwitchTableIterator it(table); !it.Done(); it.Advance()) {
758 HInstruction* case_value = graph_->GetIntConstant(it.CurrentKey(), dex_pc);
Vladimir Markoca6fff82017-10-03 14:49:14 +0100759 HEqual* comparison = new (allocator_) HEqual(value, case_value, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +0000760 AppendInstruction(comparison);
Vladimir Markoca6fff82017-10-03 14:49:14 +0100761 AppendInstruction(new (allocator_) HIf(comparison, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +0000762
763 if (!it.IsLast()) {
764 current_block_ = FindBlockStartingAt(it.GetDexPcForCurrentIndex());
765 }
766 }
767 } else {
768 AppendInstruction(
Vladimir Markoca6fff82017-10-03 14:49:14 +0100769 new (allocator_) HPackedSwitch(table.GetEntryAt(0), table.GetNumEntries(), value, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +0000770 }
771
772 current_block_ = nullptr;
773}
774
775void HInstructionBuilder::BuildReturn(const Instruction& instruction,
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100776 DataType::Type type,
David Brazdildee58d62016-04-07 09:54:26 +0000777 uint32_t dex_pc) {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100778 if (type == DataType::Type::kVoid) {
Igor Murashkind01745e2017-04-05 16:40:31 -0700779 // Only <init> (which is a return-void) could possibly have a constructor fence.
Igor Murashkin032cacd2017-04-06 14:40:08 -0700780 // This may insert additional redundant constructor fences from the super constructors.
781 // TODO: remove redundant constructor fences (b/36656456).
782 if (RequiresConstructorBarrier(dex_compilation_unit_, compiler_driver_)) {
Igor Murashkind01745e2017-04-05 16:40:31 -0700783 // Compiling instance constructor.
Vladimir Markoba118822017-06-12 15:41:56 +0100784 DCHECK_STREQ("<init>", graph_->GetMethodName());
Igor Murashkind01745e2017-04-05 16:40:31 -0700785
786 HInstruction* fence_target = current_this_parameter_;
787 DCHECK(fence_target != nullptr);
788
Vladimir Markoca6fff82017-10-03 14:49:14 +0100789 AppendInstruction(new (allocator_) HConstructorFence(fence_target, dex_pc, allocator_));
Igor Murashkin6ef45672017-08-08 13:59:55 -0700790 MaybeRecordStat(
791 compilation_stats_,
792 MethodCompilationStat::kConstructorFenceGeneratedFinal);
David Brazdildee58d62016-04-07 09:54:26 +0000793 }
Vladimir Markoca6fff82017-10-03 14:49:14 +0100794 AppendInstruction(new (allocator_) HReturnVoid(dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +0000795 } else {
Igor Murashkind01745e2017-04-05 16:40:31 -0700796 DCHECK(!RequiresConstructorBarrier(dex_compilation_unit_, compiler_driver_));
David Brazdildee58d62016-04-07 09:54:26 +0000797 HInstruction* value = LoadLocal(instruction.VRegA(), type);
Vladimir Markoca6fff82017-10-03 14:49:14 +0100798 AppendInstruction(new (allocator_) HReturn(value, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +0000799 }
800 current_block_ = nullptr;
801}
802
803static InvokeType GetInvokeTypeFromOpCode(Instruction::Code opcode) {
804 switch (opcode) {
805 case Instruction::INVOKE_STATIC:
806 case Instruction::INVOKE_STATIC_RANGE:
807 return kStatic;
808 case Instruction::INVOKE_DIRECT:
809 case Instruction::INVOKE_DIRECT_RANGE:
810 return kDirect;
811 case Instruction::INVOKE_VIRTUAL:
812 case Instruction::INVOKE_VIRTUAL_QUICK:
813 case Instruction::INVOKE_VIRTUAL_RANGE:
814 case Instruction::INVOKE_VIRTUAL_RANGE_QUICK:
815 return kVirtual;
816 case Instruction::INVOKE_INTERFACE:
817 case Instruction::INVOKE_INTERFACE_RANGE:
818 return kInterface;
819 case Instruction::INVOKE_SUPER_RANGE:
820 case Instruction::INVOKE_SUPER:
821 return kSuper;
822 default:
823 LOG(FATAL) << "Unexpected invoke opcode: " << opcode;
824 UNREACHABLE();
825 }
826}
827
828ArtMethod* HInstructionBuilder::ResolveMethod(uint16_t method_idx, InvokeType invoke_type) {
829 ScopedObjectAccess soa(Thread::Current());
David Brazdildee58d62016-04-07 09:54:26 +0000830
831 ClassLinker* class_linker = dex_compilation_unit_->GetClassLinker();
Vladimir Marko8d6768d2017-03-14 10:13:21 +0000832 Handle<mirror::ClassLoader> class_loader = dex_compilation_unit_->GetClassLoader();
Nicolas Geoffray393fdb82016-04-25 14:58:06 +0100833
Vladimir Markoba118822017-06-12 15:41:56 +0100834 ArtMethod* resolved_method =
835 class_linker->ResolveMethod<ClassLinker::ResolveMode::kCheckICCEAndIAE>(
Vladimir Markoba118822017-06-12 15:41:56 +0100836 method_idx,
837 dex_compilation_unit_->GetDexCache(),
838 class_loader,
839 graph_->GetArtMethod(),
840 invoke_type);
David Brazdildee58d62016-04-07 09:54:26 +0000841
842 if (UNLIKELY(resolved_method == nullptr)) {
843 // Clean up any exception left by type resolution.
844 soa.Self()->ClearException();
845 return nullptr;
846 }
847
Vladimir Markoba118822017-06-12 15:41:56 +0100848 // The referrer may be unresolved for AOT if we're compiling a class that cannot be
849 // resolved because, for example, we don't find a superclass in the classpath.
850 if (graph_->GetArtMethod() == nullptr) {
851 // The class linker cannot check access without a referrer, so we have to do it.
852 // Fall back to HInvokeUnresolved if the method isn't public.
David Brazdildee58d62016-04-07 09:54:26 +0000853 if (!resolved_method->IsPublic()) {
854 return nullptr;
855 }
David Brazdildee58d62016-04-07 09:54:26 +0000856 }
857
858 // We have to special case the invoke-super case, as ClassLinker::ResolveMethod does not.
859 // We need to look at the referrer's super class vtable. We need to do this to know if we need to
860 // make this an invoke-unresolved to handle cross-dex invokes or abstract super methods, both of
861 // which require runtime handling.
862 if (invoke_type == kSuper) {
Vladimir Markoba118822017-06-12 15:41:56 +0100863 ObjPtr<mirror::Class> compiling_class = GetCompilingClass();
Andreas Gampefa4333d2017-02-14 11:10:34 -0800864 if (compiling_class == nullptr) {
David Brazdildee58d62016-04-07 09:54:26 +0000865 // We could not determine the method's class we need to wait until runtime.
866 DCHECK(Runtime::Current()->IsAotCompiler());
867 return nullptr;
868 }
Vladimir Markoba118822017-06-12 15:41:56 +0100869 ObjPtr<mirror::Class> referenced_class = class_linker->LookupResolvedType(
Vladimir Markoba118822017-06-12 15:41:56 +0100870 dex_compilation_unit_->GetDexFile()->GetMethodId(method_idx).class_idx_,
871 dex_compilation_unit_->GetDexCache().Get(),
872 class_loader.Get());
873 DCHECK(referenced_class != nullptr); // We have already resolved a method from this class.
874 if (!referenced_class->IsAssignableFrom(compiling_class)) {
Aart Bikf663e342016-04-04 17:28:59 -0700875 // We cannot statically determine the target method. The runtime will throw a
876 // NoSuchMethodError on this one.
877 return nullptr;
878 }
Nicolas Geoffray393fdb82016-04-25 14:58:06 +0100879 ArtMethod* actual_method;
Vladimir Markoba118822017-06-12 15:41:56 +0100880 if (referenced_class->IsInterface()) {
881 actual_method = referenced_class->FindVirtualMethodForInterfaceSuper(
Nicolas Geoffray393fdb82016-04-25 14:58:06 +0100882 resolved_method, class_linker->GetImagePointerSize());
David Brazdildee58d62016-04-07 09:54:26 +0000883 } else {
Nicolas Geoffray393fdb82016-04-25 14:58:06 +0100884 uint16_t vtable_index = resolved_method->GetMethodIndex();
885 actual_method = compiling_class->GetSuperClass()->GetVTableEntry(
886 vtable_index, class_linker->GetImagePointerSize());
David Brazdildee58d62016-04-07 09:54:26 +0000887 }
Nicolas Geoffray393fdb82016-04-25 14:58:06 +0100888 if (actual_method != resolved_method &&
889 !IsSameDexFile(*actual_method->GetDexFile(), *dex_compilation_unit_->GetDexFile())) {
890 // The back-end code generator relies on this check in order to ensure that it will not
891 // attempt to read the dex_cache with a dex_method_index that is not from the correct
892 // dex_file. If we didn't do this check then the dex_method_index will not be updated in the
893 // builder, which means that the code-generator (and compiler driver during sharpening and
894 // inliner, maybe) might invoke an incorrect method.
895 // TODO: The actual method could still be referenced in the current dex file, so we
896 // could try locating it.
897 // TODO: Remove the dex_file restriction.
898 return nullptr;
899 }
900 if (!actual_method->IsInvokable()) {
901 // Fail if the actual method cannot be invoked. Otherwise, the runtime resolution stub
902 // could resolve the callee to the wrong method.
903 return nullptr;
904 }
905 resolved_method = actual_method;
David Brazdildee58d62016-04-07 09:54:26 +0000906 }
907
David Brazdildee58d62016-04-07 09:54:26 +0000908 return resolved_method;
909}
910
Nicolas Geoffrayda079bb2016-09-26 17:56:07 +0100911static bool IsStringConstructor(ArtMethod* method) {
912 ScopedObjectAccess soa(Thread::Current());
913 return method->GetDeclaringClass()->IsStringClass() && method->IsConstructor();
914}
915
David Brazdildee58d62016-04-07 09:54:26 +0000916bool HInstructionBuilder::BuildInvoke(const Instruction& instruction,
917 uint32_t dex_pc,
918 uint32_t method_idx,
919 uint32_t number_of_vreg_arguments,
920 bool is_range,
921 uint32_t* args,
922 uint32_t register_index) {
923 InvokeType invoke_type = GetInvokeTypeFromOpCode(instruction.Opcode());
924 const char* descriptor = dex_file_->GetMethodShorty(method_idx);
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100925 DataType::Type return_type = DataType::FromShorty(descriptor[0]);
David Brazdildee58d62016-04-07 09:54:26 +0000926
927 // Remove the return type from the 'proto'.
928 size_t number_of_arguments = strlen(descriptor) - 1;
929 if (invoke_type != kStatic) { // instance call
930 // One extra argument for 'this'.
931 number_of_arguments++;
932 }
933
David Brazdildee58d62016-04-07 09:54:26 +0000934 ArtMethod* resolved_method = ResolveMethod(method_idx, invoke_type);
935
936 if (UNLIKELY(resolved_method == nullptr)) {
Igor Murashkin1e065a52017-08-09 13:20:34 -0700937 MaybeRecordStat(compilation_stats_,
938 MethodCompilationStat::kUnresolvedMethod);
Vladimir Markoca6fff82017-10-03 14:49:14 +0100939 HInvoke* invoke = new (allocator_) HInvokeUnresolved(allocator_,
940 number_of_arguments,
941 return_type,
942 dex_pc,
943 method_idx,
944 invoke_type);
David Brazdildee58d62016-04-07 09:54:26 +0000945 return HandleInvoke(invoke,
946 number_of_vreg_arguments,
947 args,
948 register_index,
949 is_range,
950 descriptor,
Aart Bik296fbb42016-06-07 13:49:12 -0700951 nullptr, /* clinit_check */
952 true /* is_unresolved */);
David Brazdildee58d62016-04-07 09:54:26 +0000953 }
954
Nicolas Geoffrayda079bb2016-09-26 17:56:07 +0100955 // Replace calls to String.<init> with StringFactory.
956 if (IsStringConstructor(resolved_method)) {
957 uint32_t string_init_entry_point = WellKnownClasses::StringInitToEntryPoint(resolved_method);
958 HInvokeStaticOrDirect::DispatchInfo dispatch_info = {
959 HInvokeStaticOrDirect::MethodLoadKind::kStringInit,
960 HInvokeStaticOrDirect::CodePtrLocation::kCallArtMethod,
Nicolas Geoffrayc1a42cf2016-12-18 15:52:36 +0000961 dchecked_integral_cast<uint64_t>(string_init_entry_point)
Nicolas Geoffrayda079bb2016-09-26 17:56:07 +0100962 };
963 MethodReference target_method(dex_file_, method_idx);
Vladimir Markoca6fff82017-10-03 14:49:14 +0100964 HInvoke* invoke = new (allocator_) HInvokeStaticOrDirect(
965 allocator_,
Nicolas Geoffrayda079bb2016-09-26 17:56:07 +0100966 number_of_arguments - 1,
Vladimir Marko0ebe0d82017-09-21 22:50:39 +0100967 DataType::Type::kReference /*return_type */,
Nicolas Geoffrayda079bb2016-09-26 17:56:07 +0100968 dex_pc,
969 method_idx,
970 nullptr,
971 dispatch_info,
972 invoke_type,
973 target_method,
974 HInvokeStaticOrDirect::ClinitCheckRequirement::kImplicit);
975 return HandleStringInit(invoke,
976 number_of_vreg_arguments,
977 args,
978 register_index,
979 is_range,
980 descriptor);
981 }
982
David Brazdildee58d62016-04-07 09:54:26 +0000983 // Potential class initialization check, in the case of a static method call.
984 HClinitCheck* clinit_check = nullptr;
985 HInvoke* invoke = nullptr;
986 if (invoke_type == kDirect || invoke_type == kStatic || invoke_type == kSuper) {
987 // By default, consider that the called method implicitly requires
988 // an initialization check of its declaring method.
989 HInvokeStaticOrDirect::ClinitCheckRequirement clinit_check_requirement
990 = HInvokeStaticOrDirect::ClinitCheckRequirement::kImplicit;
991 ScopedObjectAccess soa(Thread::Current());
992 if (invoke_type == kStatic) {
993 clinit_check = ProcessClinitCheckForInvoke(
Nicolas Geoffray83c8e272017-01-31 14:36:37 +0000994 dex_pc, resolved_method, &clinit_check_requirement);
David Brazdildee58d62016-04-07 09:54:26 +0000995 } else if (invoke_type == kSuper) {
996 if (IsSameDexFile(*resolved_method->GetDexFile(), *dex_compilation_unit_->GetDexFile())) {
Nicolas Geoffray5e4e11e2016-09-22 13:17:41 +0100997 // Update the method index to the one resolved. Note that this may be a no-op if
David Brazdildee58d62016-04-07 09:54:26 +0000998 // we resolved to the method referenced by the instruction.
999 method_idx = resolved_method->GetDexMethodIndex();
David Brazdildee58d62016-04-07 09:54:26 +00001000 }
1001 }
1002
1003 HInvokeStaticOrDirect::DispatchInfo dispatch_info = {
Vladimir Markoe7197bf2017-06-02 17:00:23 +01001004 HInvokeStaticOrDirect::MethodLoadKind::kRuntimeCall,
David Brazdildee58d62016-04-07 09:54:26 +00001005 HInvokeStaticOrDirect::CodePtrLocation::kCallArtMethod,
Nicolas Geoffrayc1a42cf2016-12-18 15:52:36 +00001006 0u
David Brazdildee58d62016-04-07 09:54:26 +00001007 };
Nicolas Geoffray5e4e11e2016-09-22 13:17:41 +01001008 MethodReference target_method(resolved_method->GetDexFile(),
1009 resolved_method->GetDexMethodIndex());
Vladimir Markoca6fff82017-10-03 14:49:14 +01001010 invoke = new (allocator_) HInvokeStaticOrDirect(allocator_,
1011 number_of_arguments,
1012 return_type,
1013 dex_pc,
1014 method_idx,
1015 resolved_method,
1016 dispatch_info,
1017 invoke_type,
1018 target_method,
1019 clinit_check_requirement);
David Brazdildee58d62016-04-07 09:54:26 +00001020 } else if (invoke_type == kVirtual) {
1021 ScopedObjectAccess soa(Thread::Current()); // Needed for the method index
Vladimir Markoca6fff82017-10-03 14:49:14 +01001022 invoke = new (allocator_) HInvokeVirtual(allocator_,
1023 number_of_arguments,
1024 return_type,
1025 dex_pc,
1026 method_idx,
1027 resolved_method,
1028 resolved_method->GetMethodIndex());
David Brazdildee58d62016-04-07 09:54:26 +00001029 } else {
1030 DCHECK_EQ(invoke_type, kInterface);
Nicolas Geoffray5e4e11e2016-09-22 13:17:41 +01001031 ScopedObjectAccess soa(Thread::Current()); // Needed for the IMT index.
Vladimir Markoca6fff82017-10-03 14:49:14 +01001032 invoke = new (allocator_) HInvokeInterface(allocator_,
1033 number_of_arguments,
1034 return_type,
1035 dex_pc,
1036 method_idx,
1037 resolved_method,
1038 ImTable::GetImtIndex(resolved_method));
David Brazdildee58d62016-04-07 09:54:26 +00001039 }
1040
1041 return HandleInvoke(invoke,
1042 number_of_vreg_arguments,
1043 args,
1044 register_index,
1045 is_range,
1046 descriptor,
Aart Bik296fbb42016-06-07 13:49:12 -07001047 clinit_check,
1048 false /* is_unresolved */);
David Brazdildee58d62016-04-07 09:54:26 +00001049}
1050
Orion Hodsonac141392017-01-13 11:53:47 +00001051bool HInstructionBuilder::BuildInvokePolymorphic(const Instruction& instruction ATTRIBUTE_UNUSED,
1052 uint32_t dex_pc,
1053 uint32_t method_idx,
1054 uint32_t proto_idx,
1055 uint32_t number_of_vreg_arguments,
1056 bool is_range,
1057 uint32_t* args,
1058 uint32_t register_index) {
1059 const char* descriptor = dex_file_->GetShorty(proto_idx);
1060 DCHECK_EQ(1 + ArtMethod::NumArgRegisters(descriptor), number_of_vreg_arguments);
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001061 DataType::Type return_type = DataType::FromShorty(descriptor[0]);
Orion Hodsonac141392017-01-13 11:53:47 +00001062 size_t number_of_arguments = strlen(descriptor);
Vladimir Markoca6fff82017-10-03 14:49:14 +01001063 HInvoke* invoke = new (allocator_) HInvokePolymorphic(allocator_,
1064 number_of_arguments,
1065 return_type,
1066 dex_pc,
1067 method_idx);
Orion Hodsonac141392017-01-13 11:53:47 +00001068 return HandleInvoke(invoke,
1069 number_of_vreg_arguments,
1070 args,
1071 register_index,
1072 is_range,
1073 descriptor,
1074 nullptr /* clinit_check */,
1075 false /* is_unresolved */);
1076}
1077
Igor Murashkin79d8fa72017-04-18 09:37:23 -07001078HNewInstance* HInstructionBuilder::BuildNewInstance(dex::TypeIndex type_index, uint32_t dex_pc) {
Vladimir Marko3cd50df2016-04-13 19:29:26 +01001079 ScopedObjectAccess soa(Thread::Current());
David Brazdildee58d62016-04-07 09:54:26 +00001080
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001081 HLoadClass* load_class = BuildLoadClass(type_index, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001082
David Brazdildee58d62016-04-07 09:54:26 +00001083 HInstruction* cls = load_class;
Nicolas Geoffray5247c082017-01-13 14:17:29 +00001084 Handle<mirror::Class> klass = load_class->GetClass();
1085
1086 if (!IsInitialized(klass)) {
Vladimir Markoca6fff82017-10-03 14:49:14 +01001087 cls = new (allocator_) HClinitCheck(load_class, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001088 AppendInstruction(cls);
1089 }
1090
Nicolas Geoffray5247c082017-01-13 14:17:29 +00001091 // Only the access check entrypoint handles the finalizable class case. If we
1092 // need access checks, then we haven't resolved the method and the class may
1093 // again be finalizable.
1094 QuickEntrypointEnum entrypoint = kQuickAllocObjectInitialized;
1095 if (load_class->NeedsAccessCheck() || klass->IsFinalizable() || !klass->IsInstantiable()) {
1096 entrypoint = kQuickAllocObjectWithChecks;
1097 }
1098
1099 // Consider classes we haven't resolved as potentially finalizable.
Andreas Gampefa4333d2017-02-14 11:10:34 -08001100 bool finalizable = (klass == nullptr) || klass->IsFinalizable();
Nicolas Geoffray5247c082017-01-13 14:17:29 +00001101
Vladimir Markoca6fff82017-10-03 14:49:14 +01001102 HNewInstance* new_instance = new (allocator_) HNewInstance(
David Brazdildee58d62016-04-07 09:54:26 +00001103 cls,
David Brazdildee58d62016-04-07 09:54:26 +00001104 dex_pc,
1105 type_index,
1106 *dex_compilation_unit_->GetDexFile(),
David Brazdildee58d62016-04-07 09:54:26 +00001107 finalizable,
Igor Murashkin79d8fa72017-04-18 09:37:23 -07001108 entrypoint);
1109 AppendInstruction(new_instance);
1110
1111 return new_instance;
1112}
1113
1114void HInstructionBuilder::BuildConstructorFenceForAllocation(HInstruction* allocation) {
1115 DCHECK(allocation != nullptr &&
George Burgess IVf2072992017-05-23 15:36:41 -07001116 (allocation->IsNewInstance() ||
1117 allocation->IsNewArray())); // corresponding to "new" keyword in JLS.
Igor Murashkin79d8fa72017-04-18 09:37:23 -07001118
1119 if (allocation->IsNewInstance()) {
1120 // STRING SPECIAL HANDLING:
1121 // -------------------------------
1122 // Strings have a real HNewInstance node but they end up always having 0 uses.
1123 // All uses of a String HNewInstance are always transformed to replace their input
1124 // of the HNewInstance with an input of the invoke to StringFactory.
1125 //
1126 // Do not emit an HConstructorFence here since it can inhibit some String new-instance
1127 // optimizations (to pass checker tests that rely on those optimizations).
1128 HNewInstance* new_inst = allocation->AsNewInstance();
1129 HLoadClass* load_class = new_inst->GetLoadClass();
1130
1131 Thread* self = Thread::Current();
1132 ScopedObjectAccess soa(self);
1133 StackHandleScope<1> hs(self);
1134 Handle<mirror::Class> klass = load_class->GetClass();
1135 if (klass != nullptr && klass->IsStringClass()) {
1136 return;
1137 // Note: Do not use allocation->IsStringAlloc which requires
1138 // a valid ReferenceTypeInfo, but that doesn't get made until after reference type
1139 // propagation (and instruction builder is too early).
1140 }
1141 // (In terms of correctness, the StringFactory needs to provide its own
1142 // default initialization barrier, see below.)
1143 }
1144
1145 // JLS 17.4.5 "Happens-before Order" describes:
1146 //
1147 // The default initialization of any object happens-before any other actions (other than
1148 // default-writes) of a program.
1149 //
1150 // In our implementation the default initialization of an object to type T means
1151 // setting all of its initial data (object[0..size)) to 0, and setting the
1152 // object's class header (i.e. object.getClass() == T.class).
1153 //
1154 // In practice this fence ensures that the writes to the object header
1155 // are visible to other threads if this object escapes the current thread.
1156 // (and in theory the 0-initializing, but that happens automatically
1157 // when new memory pages are mapped in by the OS).
1158 HConstructorFence* ctor_fence =
Vladimir Markoca6fff82017-10-03 14:49:14 +01001159 new (allocator_) HConstructorFence(allocation, allocation->GetDexPc(), allocator_);
Igor Murashkin79d8fa72017-04-18 09:37:23 -07001160 AppendInstruction(ctor_fence);
Igor Murashkin6ef45672017-08-08 13:59:55 -07001161 MaybeRecordStat(
1162 compilation_stats_,
1163 MethodCompilationStat::kConstructorFenceGeneratedNew);
David Brazdildee58d62016-04-07 09:54:26 +00001164}
1165
Vladimir Marko28e012a2017-12-07 11:22:59 +00001166static bool IsSubClass(ObjPtr<mirror::Class> to_test, ObjPtr<mirror::Class> super_class)
Andreas Gampebdf7f1c2016-08-30 16:38:47 -07001167 REQUIRES_SHARED(Locks::mutator_lock_) {
David Brazdildee58d62016-04-07 09:54:26 +00001168 return to_test != nullptr && !to_test->IsInterface() && to_test->IsSubClass(super_class);
1169}
1170
1171bool HInstructionBuilder::IsInitialized(Handle<mirror::Class> cls) const {
Andreas Gampefa4333d2017-02-14 11:10:34 -08001172 if (cls == nullptr) {
David Brazdildee58d62016-04-07 09:54:26 +00001173 return false;
1174 }
1175
1176 // `CanAssumeClassIsLoaded` will return true if we're JITting, or will
1177 // check whether the class is in an image for the AOT compilation.
1178 if (cls->IsInitialized() &&
1179 compiler_driver_->CanAssumeClassIsLoaded(cls.Get())) {
1180 return true;
1181 }
1182
1183 if (IsSubClass(GetOutermostCompilingClass(), cls.Get())) {
1184 return true;
1185 }
1186
1187 // TODO: We should walk over the inlined methods, but we don't pass
1188 // that information to the builder.
1189 if (IsSubClass(GetCompilingClass(), cls.Get())) {
1190 return true;
1191 }
1192
1193 return false;
1194}
1195
1196HClinitCheck* HInstructionBuilder::ProcessClinitCheckForInvoke(
1197 uint32_t dex_pc,
1198 ArtMethod* resolved_method,
David Brazdildee58d62016-04-07 09:54:26 +00001199 HInvokeStaticOrDirect::ClinitCheckRequirement* clinit_check_requirement) {
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001200 Handle<mirror::Class> klass = handles_->NewHandle(resolved_method->GetDeclaringClass());
David Brazdildee58d62016-04-07 09:54:26 +00001201
1202 HClinitCheck* clinit_check = nullptr;
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001203 if (IsInitialized(klass)) {
David Brazdildee58d62016-04-07 09:54:26 +00001204 *clinit_check_requirement = HInvokeStaticOrDirect::ClinitCheckRequirement::kNone;
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001205 } else {
1206 HLoadClass* cls = BuildLoadClass(klass->GetDexTypeIndex(),
1207 klass->GetDexFile(),
1208 klass,
1209 dex_pc,
1210 /* needs_access_check */ false);
1211 if (cls != nullptr) {
1212 *clinit_check_requirement = HInvokeStaticOrDirect::ClinitCheckRequirement::kExplicit;
Vladimir Markoca6fff82017-10-03 14:49:14 +01001213 clinit_check = new (allocator_) HClinitCheck(cls, dex_pc);
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001214 AppendInstruction(clinit_check);
1215 }
David Brazdildee58d62016-04-07 09:54:26 +00001216 }
1217 return clinit_check;
1218}
1219
1220bool HInstructionBuilder::SetupInvokeArguments(HInvoke* invoke,
1221 uint32_t number_of_vreg_arguments,
1222 uint32_t* args,
1223 uint32_t register_index,
1224 bool is_range,
1225 const char* descriptor,
1226 size_t start_index,
1227 size_t* argument_index) {
1228 uint32_t descriptor_index = 1; // Skip the return type.
1229
1230 for (size_t i = start_index;
1231 // Make sure we don't go over the expected arguments or over the number of
1232 // dex registers given. If the instruction was seen as dead by the verifier,
1233 // it hasn't been properly checked.
1234 (i < number_of_vreg_arguments) && (*argument_index < invoke->GetNumberOfArguments());
1235 i++, (*argument_index)++) {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001236 DataType::Type type = DataType::FromShorty(descriptor[descriptor_index++]);
1237 bool is_wide = (type == DataType::Type::kInt64) || (type == DataType::Type::kFloat64);
David Brazdildee58d62016-04-07 09:54:26 +00001238 if (!is_range
1239 && is_wide
1240 && ((i + 1 == number_of_vreg_arguments) || (args[i] + 1 != args[i + 1]))) {
1241 // Longs and doubles should be in pairs, that is, sequential registers. The verifier should
1242 // reject any class where this is violated. However, the verifier only does these checks
1243 // on non trivially dead instructions, so we just bailout the compilation.
1244 VLOG(compiler) << "Did not compile "
David Sehr709b0702016-10-13 09:12:37 -07001245 << dex_file_->PrettyMethod(dex_compilation_unit_->GetDexMethodIndex())
David Brazdildee58d62016-04-07 09:54:26 +00001246 << " because of non-sequential dex register pair in wide argument";
Igor Murashkin1e065a52017-08-09 13:20:34 -07001247 MaybeRecordStat(compilation_stats_,
1248 MethodCompilationStat::kNotCompiledMalformedOpcode);
David Brazdildee58d62016-04-07 09:54:26 +00001249 return false;
1250 }
1251 HInstruction* arg = LoadLocal(is_range ? register_index + i : args[i], type);
1252 invoke->SetArgumentAt(*argument_index, arg);
1253 if (is_wide) {
1254 i++;
1255 }
1256 }
1257
1258 if (*argument_index != invoke->GetNumberOfArguments()) {
1259 VLOG(compiler) << "Did not compile "
David Sehr709b0702016-10-13 09:12:37 -07001260 << dex_file_->PrettyMethod(dex_compilation_unit_->GetDexMethodIndex())
David Brazdildee58d62016-04-07 09:54:26 +00001261 << " because of wrong number of arguments in invoke instruction";
Igor Murashkin1e065a52017-08-09 13:20:34 -07001262 MaybeRecordStat(compilation_stats_,
1263 MethodCompilationStat::kNotCompiledMalformedOpcode);
David Brazdildee58d62016-04-07 09:54:26 +00001264 return false;
1265 }
1266
1267 if (invoke->IsInvokeStaticOrDirect() &&
1268 HInvokeStaticOrDirect::NeedsCurrentMethodInput(
1269 invoke->AsInvokeStaticOrDirect()->GetMethodLoadKind())) {
1270 invoke->SetArgumentAt(*argument_index, graph_->GetCurrentMethod());
1271 (*argument_index)++;
1272 }
1273
1274 return true;
1275}
1276
1277bool HInstructionBuilder::HandleInvoke(HInvoke* invoke,
1278 uint32_t number_of_vreg_arguments,
1279 uint32_t* args,
1280 uint32_t register_index,
1281 bool is_range,
1282 const char* descriptor,
Aart Bik296fbb42016-06-07 13:49:12 -07001283 HClinitCheck* clinit_check,
1284 bool is_unresolved) {
David Brazdildee58d62016-04-07 09:54:26 +00001285 DCHECK(!invoke->IsInvokeStaticOrDirect() || !invoke->AsInvokeStaticOrDirect()->IsStringInit());
1286
1287 size_t start_index = 0;
1288 size_t argument_index = 0;
Nicolas Geoffray5e4e11e2016-09-22 13:17:41 +01001289 if (invoke->GetInvokeType() != InvokeType::kStatic) { // Instance call.
Aart Bik296fbb42016-06-07 13:49:12 -07001290 uint32_t obj_reg = is_range ? register_index : args[0];
1291 HInstruction* arg = is_unresolved
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001292 ? LoadLocal(obj_reg, DataType::Type::kReference)
Aart Bik296fbb42016-06-07 13:49:12 -07001293 : LoadNullCheckedLocal(obj_reg, invoke->GetDexPc());
David Brazdilc120bbe2016-04-22 16:57:00 +01001294 invoke->SetArgumentAt(0, arg);
David Brazdildee58d62016-04-07 09:54:26 +00001295 start_index = 1;
1296 argument_index = 1;
1297 }
1298
1299 if (!SetupInvokeArguments(invoke,
1300 number_of_vreg_arguments,
1301 args,
1302 register_index,
1303 is_range,
1304 descriptor,
1305 start_index,
1306 &argument_index)) {
1307 return false;
1308 }
1309
1310 if (clinit_check != nullptr) {
1311 // Add the class initialization check as last input of `invoke`.
1312 DCHECK(invoke->IsInvokeStaticOrDirect());
1313 DCHECK(invoke->AsInvokeStaticOrDirect()->GetClinitCheckRequirement()
1314 == HInvokeStaticOrDirect::ClinitCheckRequirement::kExplicit);
1315 invoke->SetArgumentAt(argument_index, clinit_check);
1316 argument_index++;
1317 }
1318
1319 AppendInstruction(invoke);
1320 latest_result_ = invoke;
1321
1322 return true;
1323}
1324
1325bool HInstructionBuilder::HandleStringInit(HInvoke* invoke,
1326 uint32_t number_of_vreg_arguments,
1327 uint32_t* args,
1328 uint32_t register_index,
1329 bool is_range,
1330 const char* descriptor) {
1331 DCHECK(invoke->IsInvokeStaticOrDirect());
1332 DCHECK(invoke->AsInvokeStaticOrDirect()->IsStringInit());
1333
1334 size_t start_index = 1;
1335 size_t argument_index = 0;
1336 if (!SetupInvokeArguments(invoke,
1337 number_of_vreg_arguments,
1338 args,
1339 register_index,
1340 is_range,
1341 descriptor,
1342 start_index,
1343 &argument_index)) {
1344 return false;
1345 }
1346
1347 AppendInstruction(invoke);
1348
1349 // This is a StringFactory call, not an actual String constructor. Its result
1350 // replaces the empty String pre-allocated by NewInstance.
1351 uint32_t orig_this_reg = is_range ? register_index : args[0];
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001352 HInstruction* arg_this = LoadLocal(orig_this_reg, DataType::Type::kReference);
David Brazdildee58d62016-04-07 09:54:26 +00001353
1354 // Replacing the NewInstance might render it redundant. Keep a list of these
1355 // to be visited once it is clear whether it is has remaining uses.
1356 if (arg_this->IsNewInstance()) {
1357 ssa_builder_->AddUninitializedString(arg_this->AsNewInstance());
1358 } else {
1359 DCHECK(arg_this->IsPhi());
1360 // NewInstance is not the direct input of the StringFactory call. It might
1361 // be redundant but optimizing this case is not worth the effort.
1362 }
1363
1364 // Walk over all vregs and replace any occurrence of `arg_this` with `invoke`.
1365 for (size_t vreg = 0, e = current_locals_->size(); vreg < e; ++vreg) {
1366 if ((*current_locals_)[vreg] == arg_this) {
1367 (*current_locals_)[vreg] = invoke;
1368 }
1369 }
1370
1371 return true;
1372}
1373
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001374static DataType::Type GetFieldAccessType(const DexFile& dex_file, uint16_t field_index) {
David Brazdildee58d62016-04-07 09:54:26 +00001375 const DexFile::FieldId& field_id = dex_file.GetFieldId(field_index);
1376 const char* type = dex_file.GetFieldTypeDescriptor(field_id);
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001377 return DataType::FromShorty(type[0]);
David Brazdildee58d62016-04-07 09:54:26 +00001378}
1379
1380bool HInstructionBuilder::BuildInstanceFieldAccess(const Instruction& instruction,
1381 uint32_t dex_pc,
Mathieu Chartierde4b08f2017-07-10 14:13:41 -07001382 bool is_put,
1383 size_t quicken_index) {
David Brazdildee58d62016-04-07 09:54:26 +00001384 uint32_t source_or_dest_reg = instruction.VRegA_22c();
1385 uint32_t obj_reg = instruction.VRegB_22c();
1386 uint16_t field_index;
1387 if (instruction.IsQuickened()) {
1388 if (!CanDecodeQuickenedInfo()) {
Nicolas Geoffraydbb9aef2017-11-23 10:44:11 +00001389 VLOG(compiler) << "Not compiled: Could not decode quickened instruction "
1390 << instruction.Opcode();
David Brazdildee58d62016-04-07 09:54:26 +00001391 return false;
1392 }
Mathieu Chartierde4b08f2017-07-10 14:13:41 -07001393 field_index = LookupQuickenedInfo(quicken_index);
David Brazdildee58d62016-04-07 09:54:26 +00001394 } else {
1395 field_index = instruction.VRegC_22c();
1396 }
1397
1398 ScopedObjectAccess soa(Thread::Current());
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001399 ArtField* resolved_field = ResolveField(field_index, /* is_static */ false, is_put);
David Brazdildee58d62016-04-07 09:54:26 +00001400
Aart Bik14154132016-06-02 17:53:58 -07001401 // Generate an explicit null check on the reference, unless the field access
1402 // is unresolved. In that case, we rely on the runtime to perform various
1403 // checks first, followed by a null check.
1404 HInstruction* object = (resolved_field == nullptr)
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001405 ? LoadLocal(obj_reg, DataType::Type::kReference)
Aart Bik14154132016-06-02 17:53:58 -07001406 : LoadNullCheckedLocal(obj_reg, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001407
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001408 DataType::Type field_type = GetFieldAccessType(*dex_file_, field_index);
David Brazdildee58d62016-04-07 09:54:26 +00001409 if (is_put) {
1410 HInstruction* value = LoadLocal(source_or_dest_reg, field_type);
1411 HInstruction* field_set = nullptr;
1412 if (resolved_field == nullptr) {
Igor Murashkin1e065a52017-08-09 13:20:34 -07001413 MaybeRecordStat(compilation_stats_,
1414 MethodCompilationStat::kUnresolvedField);
Vladimir Markoca6fff82017-10-03 14:49:14 +01001415 field_set = new (allocator_) HUnresolvedInstanceFieldSet(object,
1416 value,
1417 field_type,
1418 field_index,
1419 dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001420 } else {
1421 uint16_t class_def_index = resolved_field->GetDeclaringClass()->GetDexClassDefIndex();
Vladimir Markoca6fff82017-10-03 14:49:14 +01001422 field_set = new (allocator_) HInstanceFieldSet(object,
1423 value,
1424 resolved_field,
1425 field_type,
1426 resolved_field->GetOffset(),
1427 resolved_field->IsVolatile(),
1428 field_index,
1429 class_def_index,
1430 *dex_file_,
1431 dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001432 }
1433 AppendInstruction(field_set);
1434 } else {
1435 HInstruction* field_get = nullptr;
1436 if (resolved_field == nullptr) {
Igor Murashkin1e065a52017-08-09 13:20:34 -07001437 MaybeRecordStat(compilation_stats_,
1438 MethodCompilationStat::kUnresolvedField);
Vladimir Markoca6fff82017-10-03 14:49:14 +01001439 field_get = new (allocator_) HUnresolvedInstanceFieldGet(object,
1440 field_type,
1441 field_index,
1442 dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001443 } else {
1444 uint16_t class_def_index = resolved_field->GetDeclaringClass()->GetDexClassDefIndex();
Vladimir Markoca6fff82017-10-03 14:49:14 +01001445 field_get = new (allocator_) HInstanceFieldGet(object,
1446 resolved_field,
1447 field_type,
1448 resolved_field->GetOffset(),
1449 resolved_field->IsVolatile(),
1450 field_index,
1451 class_def_index,
1452 *dex_file_,
1453 dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001454 }
1455 AppendInstruction(field_get);
1456 UpdateLocal(source_or_dest_reg, field_get);
1457 }
1458
1459 return true;
1460}
1461
Vladimir Marko28e012a2017-12-07 11:22:59 +00001462static ObjPtr<mirror::Class> GetClassFrom(CompilerDriver* driver,
Vladimir Marko666ee3d2017-12-11 18:37:36 +00001463 const DexCompilationUnit& compilation_unit) {
David Brazdildee58d62016-04-07 09:54:26 +00001464 ScopedObjectAccess soa(Thread::Current());
Vladimir Marko8d6768d2017-03-14 10:13:21 +00001465 Handle<mirror::ClassLoader> class_loader = compilation_unit.GetClassLoader();
Vladimir Marko3cd50df2016-04-13 19:29:26 +01001466 Handle<mirror::DexCache> dex_cache = compilation_unit.GetDexCache();
David Brazdildee58d62016-04-07 09:54:26 +00001467
1468 return driver->ResolveCompilingMethodsClass(soa, dex_cache, class_loader, &compilation_unit);
1469}
1470
Vladimir Marko28e012a2017-12-07 11:22:59 +00001471ObjPtr<mirror::Class> HInstructionBuilder::GetOutermostCompilingClass() const {
David Brazdildee58d62016-04-07 09:54:26 +00001472 return GetClassFrom(compiler_driver_, *outer_compilation_unit_);
1473}
1474
Vladimir Marko28e012a2017-12-07 11:22:59 +00001475ObjPtr<mirror::Class> HInstructionBuilder::GetCompilingClass() const {
David Brazdildee58d62016-04-07 09:54:26 +00001476 return GetClassFrom(compiler_driver_, *dex_compilation_unit_);
1477}
1478
Andreas Gampea5b09a62016-11-17 15:21:22 -08001479bool HInstructionBuilder::IsOutermostCompilingClass(dex::TypeIndex type_index) const {
David Brazdildee58d62016-04-07 09:54:26 +00001480 ScopedObjectAccess soa(Thread::Current());
Vladimir Marko8d6768d2017-03-14 10:13:21 +00001481 StackHandleScope<2> hs(soa.Self());
Vladimir Marko3cd50df2016-04-13 19:29:26 +01001482 Handle<mirror::DexCache> dex_cache = dex_compilation_unit_->GetDexCache();
Vladimir Marko8d6768d2017-03-14 10:13:21 +00001483 Handle<mirror::ClassLoader> class_loader = dex_compilation_unit_->GetClassLoader();
David Brazdildee58d62016-04-07 09:54:26 +00001484 Handle<mirror::Class> cls(hs.NewHandle(compiler_driver_->ResolveClass(
1485 soa, dex_cache, class_loader, type_index, dex_compilation_unit_)));
1486 Handle<mirror::Class> outer_class(hs.NewHandle(GetOutermostCompilingClass()));
1487
1488 // GetOutermostCompilingClass returns null when the class is unresolved
1489 // (e.g. if it derives from an unresolved class). This is bogus knowing that
1490 // we are compiling it.
1491 // When this happens we cannot establish a direct relation between the current
1492 // class and the outer class, so we return false.
1493 // (Note that this is only used for optimizing invokes and field accesses)
Andreas Gampefa4333d2017-02-14 11:10:34 -08001494 return (cls != nullptr) && (outer_class.Get() == cls.Get());
David Brazdildee58d62016-04-07 09:54:26 +00001495}
1496
1497void HInstructionBuilder::BuildUnresolvedStaticFieldAccess(const Instruction& instruction,
Nicolas Geoffrayc52b26d2016-12-19 09:18:07 +00001498 uint32_t dex_pc,
1499 bool is_put,
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001500 DataType::Type field_type) {
David Brazdildee58d62016-04-07 09:54:26 +00001501 uint32_t source_or_dest_reg = instruction.VRegA_21c();
1502 uint16_t field_index = instruction.VRegB_21c();
1503
1504 if (is_put) {
1505 HInstruction* value = LoadLocal(source_or_dest_reg, field_type);
1506 AppendInstruction(
Vladimir Markoca6fff82017-10-03 14:49:14 +01001507 new (allocator_) HUnresolvedStaticFieldSet(value, field_type, field_index, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +00001508 } else {
Vladimir Markoca6fff82017-10-03 14:49:14 +01001509 AppendInstruction(new (allocator_) HUnresolvedStaticFieldGet(field_type, field_index, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +00001510 UpdateLocal(source_or_dest_reg, current_block_->GetLastInstruction());
1511 }
1512}
1513
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001514ArtField* HInstructionBuilder::ResolveField(uint16_t field_idx, bool is_static, bool is_put) {
1515 ScopedObjectAccess soa(Thread::Current());
1516 StackHandleScope<2> hs(soa.Self());
1517
1518 ClassLinker* class_linker = dex_compilation_unit_->GetClassLinker();
Vladimir Marko8d6768d2017-03-14 10:13:21 +00001519 Handle<mirror::ClassLoader> class_loader = dex_compilation_unit_->GetClassLoader();
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001520 Handle<mirror::Class> compiling_class(hs.NewHandle(GetCompilingClass()));
1521
Vladimir Markoe11dd502017-12-08 14:09:45 +00001522 ArtField* resolved_field = class_linker->ResolveField(field_idx,
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001523 dex_compilation_unit_->GetDexCache(),
1524 class_loader,
1525 is_static);
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001526 if (UNLIKELY(resolved_field == nullptr)) {
1527 // Clean up any exception left by type resolution.
1528 soa.Self()->ClearException();
1529 return nullptr;
1530 }
1531
1532 // Check static/instance. The class linker has a fast path for looking into the dex cache
1533 // and does not check static/instance if it hits it.
1534 if (UNLIKELY(resolved_field->IsStatic() != is_static)) {
1535 return nullptr;
1536 }
1537
1538 // Check access.
Andreas Gampefa4333d2017-02-14 11:10:34 -08001539 if (compiling_class == nullptr) {
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001540 if (!resolved_field->IsPublic()) {
1541 return nullptr;
1542 }
1543 } else if (!compiling_class->CanAccessResolvedField(resolved_field->GetDeclaringClass(),
1544 resolved_field,
1545 dex_compilation_unit_->GetDexCache().Get(),
1546 field_idx)) {
1547 return nullptr;
1548 }
1549
1550 if (is_put &&
1551 resolved_field->IsFinal() &&
1552 (compiling_class.Get() != resolved_field->GetDeclaringClass())) {
1553 // Final fields can only be updated within their own class.
1554 // TODO: Only allow it in constructors. b/34966607.
1555 return nullptr;
1556 }
1557
1558 return resolved_field;
1559}
1560
Nicolas Geoffraydbb9aef2017-11-23 10:44:11 +00001561void HInstructionBuilder::BuildStaticFieldAccess(const Instruction& instruction,
David Brazdildee58d62016-04-07 09:54:26 +00001562 uint32_t dex_pc,
1563 bool is_put) {
1564 uint32_t source_or_dest_reg = instruction.VRegA_21c();
1565 uint16_t field_index = instruction.VRegB_21c();
1566
1567 ScopedObjectAccess soa(Thread::Current());
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001568 ArtField* resolved_field = ResolveField(field_index, /* is_static */ true, is_put);
David Brazdildee58d62016-04-07 09:54:26 +00001569
1570 if (resolved_field == nullptr) {
Igor Murashkin1e065a52017-08-09 13:20:34 -07001571 MaybeRecordStat(compilation_stats_,
1572 MethodCompilationStat::kUnresolvedField);
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001573 DataType::Type field_type = GetFieldAccessType(*dex_file_, field_index);
David Brazdildee58d62016-04-07 09:54:26 +00001574 BuildUnresolvedStaticFieldAccess(instruction, dex_pc, is_put, field_type);
Nicolas Geoffraydbb9aef2017-11-23 10:44:11 +00001575 return;
David Brazdildee58d62016-04-07 09:54:26 +00001576 }
1577
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001578 DataType::Type field_type = GetFieldAccessType(*dex_file_, field_index);
David Brazdildee58d62016-04-07 09:54:26 +00001579
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001580 Handle<mirror::Class> klass = handles_->NewHandle(resolved_field->GetDeclaringClass());
1581 HLoadClass* constant = BuildLoadClass(klass->GetDexTypeIndex(),
1582 klass->GetDexFile(),
1583 klass,
1584 dex_pc,
1585 /* needs_access_check */ false);
1586
1587 if (constant == nullptr) {
1588 // The class cannot be referenced from this compiled code. Generate
1589 // an unresolved access.
Igor Murashkin1e065a52017-08-09 13:20:34 -07001590 MaybeRecordStat(compilation_stats_,
1591 MethodCompilationStat::kUnresolvedFieldNotAFastAccess);
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001592 BuildUnresolvedStaticFieldAccess(instruction, dex_pc, is_put, field_type);
Nicolas Geoffraydbb9aef2017-11-23 10:44:11 +00001593 return;
David Brazdildee58d62016-04-07 09:54:26 +00001594 }
1595
David Brazdildee58d62016-04-07 09:54:26 +00001596 HInstruction* cls = constant;
David Brazdildee58d62016-04-07 09:54:26 +00001597 if (!IsInitialized(klass)) {
Vladimir Markoca6fff82017-10-03 14:49:14 +01001598 cls = new (allocator_) HClinitCheck(constant, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001599 AppendInstruction(cls);
1600 }
1601
1602 uint16_t class_def_index = klass->GetDexClassDefIndex();
1603 if (is_put) {
1604 // We need to keep the class alive before loading the value.
1605 HInstruction* value = LoadLocal(source_or_dest_reg, field_type);
1606 DCHECK_EQ(HPhi::ToPhiType(value->GetType()), HPhi::ToPhiType(field_type));
Vladimir Markoca6fff82017-10-03 14:49:14 +01001607 AppendInstruction(new (allocator_) HStaticFieldSet(cls,
1608 value,
1609 resolved_field,
1610 field_type,
1611 resolved_field->GetOffset(),
1612 resolved_field->IsVolatile(),
1613 field_index,
1614 class_def_index,
1615 *dex_file_,
1616 dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +00001617 } else {
Vladimir Markoca6fff82017-10-03 14:49:14 +01001618 AppendInstruction(new (allocator_) HStaticFieldGet(cls,
1619 resolved_field,
1620 field_type,
1621 resolved_field->GetOffset(),
1622 resolved_field->IsVolatile(),
1623 field_index,
1624 class_def_index,
1625 *dex_file_,
1626 dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +00001627 UpdateLocal(source_or_dest_reg, current_block_->GetLastInstruction());
1628 }
David Brazdildee58d62016-04-07 09:54:26 +00001629}
1630
1631void HInstructionBuilder::BuildCheckedDivRem(uint16_t out_vreg,
Vladimir Markoca6fff82017-10-03 14:49:14 +01001632 uint16_t first_vreg,
1633 int64_t second_vreg_or_constant,
1634 uint32_t dex_pc,
1635 DataType::Type type,
1636 bool second_is_constant,
1637 bool isDiv) {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001638 DCHECK(type == DataType::Type::kInt32 || type == DataType::Type::kInt64);
David Brazdildee58d62016-04-07 09:54:26 +00001639
1640 HInstruction* first = LoadLocal(first_vreg, type);
1641 HInstruction* second = nullptr;
1642 if (second_is_constant) {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001643 if (type == DataType::Type::kInt32) {
David Brazdildee58d62016-04-07 09:54:26 +00001644 second = graph_->GetIntConstant(second_vreg_or_constant, dex_pc);
1645 } else {
1646 second = graph_->GetLongConstant(second_vreg_or_constant, dex_pc);
1647 }
1648 } else {
1649 second = LoadLocal(second_vreg_or_constant, type);
1650 }
1651
1652 if (!second_is_constant
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001653 || (type == DataType::Type::kInt32 && second->AsIntConstant()->GetValue() == 0)
1654 || (type == DataType::Type::kInt64 && second->AsLongConstant()->GetValue() == 0)) {
Vladimir Markoca6fff82017-10-03 14:49:14 +01001655 second = new (allocator_) HDivZeroCheck(second, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001656 AppendInstruction(second);
1657 }
1658
1659 if (isDiv) {
Vladimir Markoca6fff82017-10-03 14:49:14 +01001660 AppendInstruction(new (allocator_) HDiv(type, first, second, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +00001661 } else {
Vladimir Markoca6fff82017-10-03 14:49:14 +01001662 AppendInstruction(new (allocator_) HRem(type, first, second, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +00001663 }
1664 UpdateLocal(out_vreg, current_block_->GetLastInstruction());
1665}
1666
1667void HInstructionBuilder::BuildArrayAccess(const Instruction& instruction,
1668 uint32_t dex_pc,
1669 bool is_put,
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001670 DataType::Type anticipated_type) {
David Brazdildee58d62016-04-07 09:54:26 +00001671 uint8_t source_or_dest_reg = instruction.VRegA_23x();
1672 uint8_t array_reg = instruction.VRegB_23x();
1673 uint8_t index_reg = instruction.VRegC_23x();
1674
David Brazdilc120bbe2016-04-22 16:57:00 +01001675 HInstruction* object = LoadNullCheckedLocal(array_reg, dex_pc);
Vladimir Markoca6fff82017-10-03 14:49:14 +01001676 HInstruction* length = new (allocator_) HArrayLength(object, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001677 AppendInstruction(length);
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001678 HInstruction* index = LoadLocal(index_reg, DataType::Type::kInt32);
Vladimir Markoca6fff82017-10-03 14:49:14 +01001679 index = new (allocator_) HBoundsCheck(index, length, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001680 AppendInstruction(index);
1681 if (is_put) {
1682 HInstruction* value = LoadLocal(source_or_dest_reg, anticipated_type);
1683 // TODO: Insert a type check node if the type is Object.
Vladimir Markoca6fff82017-10-03 14:49:14 +01001684 HArraySet* aset = new (allocator_) HArraySet(object, index, value, anticipated_type, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001685 ssa_builder_->MaybeAddAmbiguousArraySet(aset);
1686 AppendInstruction(aset);
1687 } else {
Vladimir Markoca6fff82017-10-03 14:49:14 +01001688 HArrayGet* aget = new (allocator_) HArrayGet(object, index, anticipated_type, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001689 ssa_builder_->MaybeAddAmbiguousArrayGet(aget);
1690 AppendInstruction(aget);
1691 UpdateLocal(source_or_dest_reg, current_block_->GetLastInstruction());
1692 }
1693 graph_->SetHasBoundsChecks(true);
1694}
1695
Igor Murashkin79d8fa72017-04-18 09:37:23 -07001696HNewArray* HInstructionBuilder::BuildFilledNewArray(uint32_t dex_pc,
1697 dex::TypeIndex type_index,
1698 uint32_t number_of_vreg_arguments,
1699 bool is_range,
1700 uint32_t* args,
1701 uint32_t register_index) {
David Brazdildee58d62016-04-07 09:54:26 +00001702 HInstruction* length = graph_->GetIntConstant(number_of_vreg_arguments, dex_pc);
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001703 HLoadClass* cls = BuildLoadClass(type_index, dex_pc);
Vladimir Markoca6fff82017-10-03 14:49:14 +01001704 HNewArray* const object = new (allocator_) HNewArray(cls, length, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001705 AppendInstruction(object);
1706
1707 const char* descriptor = dex_file_->StringByTypeIdx(type_index);
1708 DCHECK_EQ(descriptor[0], '[') << descriptor;
1709 char primitive = descriptor[1];
1710 DCHECK(primitive == 'I'
1711 || primitive == 'L'
1712 || primitive == '[') << descriptor;
1713 bool is_reference_array = (primitive == 'L') || (primitive == '[');
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001714 DataType::Type type = is_reference_array ? DataType::Type::kReference : DataType::Type::kInt32;
David Brazdildee58d62016-04-07 09:54:26 +00001715
1716 for (size_t i = 0; i < number_of_vreg_arguments; ++i) {
1717 HInstruction* value = LoadLocal(is_range ? register_index + i : args[i], type);
1718 HInstruction* index = graph_->GetIntConstant(i, dex_pc);
Vladimir Markoca6fff82017-10-03 14:49:14 +01001719 HArraySet* aset = new (allocator_) HArraySet(object, index, value, type, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001720 ssa_builder_->MaybeAddAmbiguousArraySet(aset);
1721 AppendInstruction(aset);
1722 }
1723 latest_result_ = object;
Igor Murashkin79d8fa72017-04-18 09:37:23 -07001724
1725 return object;
David Brazdildee58d62016-04-07 09:54:26 +00001726}
1727
1728template <typename T>
1729void HInstructionBuilder::BuildFillArrayData(HInstruction* object,
1730 const T* data,
1731 uint32_t element_count,
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001732 DataType::Type anticipated_type,
David Brazdildee58d62016-04-07 09:54:26 +00001733 uint32_t dex_pc) {
1734 for (uint32_t i = 0; i < element_count; ++i) {
1735 HInstruction* index = graph_->GetIntConstant(i, dex_pc);
1736 HInstruction* value = graph_->GetIntConstant(data[i], dex_pc);
Vladimir Markoca6fff82017-10-03 14:49:14 +01001737 HArraySet* aset = new (allocator_) HArraySet(object, index, value, anticipated_type, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001738 ssa_builder_->MaybeAddAmbiguousArraySet(aset);
1739 AppendInstruction(aset);
1740 }
1741}
1742
1743void HInstructionBuilder::BuildFillArrayData(const Instruction& instruction, uint32_t dex_pc) {
David Brazdilc120bbe2016-04-22 16:57:00 +01001744 HInstruction* array = LoadNullCheckedLocal(instruction.VRegA_31t(), dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001745
1746 int32_t payload_offset = instruction.VRegB_31t() + dex_pc;
1747 const Instruction::ArrayDataPayload* payload =
Mathieu Chartier808c7a52017-12-15 11:19:33 -08001748 reinterpret_cast<const Instruction::ArrayDataPayload*>(
1749 code_item_accessor_.Insns() + payload_offset);
David Brazdildee58d62016-04-07 09:54:26 +00001750 const uint8_t* data = payload->data;
1751 uint32_t element_count = payload->element_count;
1752
Vladimir Markoc69fba22016-09-06 16:49:15 +01001753 if (element_count == 0u) {
1754 // For empty payload we emit only the null check above.
1755 return;
1756 }
1757
Vladimir Markoca6fff82017-10-03 14:49:14 +01001758 HInstruction* length = new (allocator_) HArrayLength(array, dex_pc);
Vladimir Markoc69fba22016-09-06 16:49:15 +01001759 AppendInstruction(length);
1760
David Brazdildee58d62016-04-07 09:54:26 +00001761 // Implementation of this DEX instruction seems to be that the bounds check is
1762 // done before doing any stores.
1763 HInstruction* last_index = graph_->GetIntConstant(payload->element_count - 1, dex_pc);
Vladimir Markoca6fff82017-10-03 14:49:14 +01001764 AppendInstruction(new (allocator_) HBoundsCheck(last_index, length, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +00001765
1766 switch (payload->element_width) {
1767 case 1:
David Brazdilc120bbe2016-04-22 16:57:00 +01001768 BuildFillArrayData(array,
David Brazdildee58d62016-04-07 09:54:26 +00001769 reinterpret_cast<const int8_t*>(data),
1770 element_count,
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001771 DataType::Type::kInt8,
David Brazdildee58d62016-04-07 09:54:26 +00001772 dex_pc);
1773 break;
1774 case 2:
David Brazdilc120bbe2016-04-22 16:57:00 +01001775 BuildFillArrayData(array,
David Brazdildee58d62016-04-07 09:54:26 +00001776 reinterpret_cast<const int16_t*>(data),
1777 element_count,
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001778 DataType::Type::kInt16,
David Brazdildee58d62016-04-07 09:54:26 +00001779 dex_pc);
1780 break;
1781 case 4:
David Brazdilc120bbe2016-04-22 16:57:00 +01001782 BuildFillArrayData(array,
David Brazdildee58d62016-04-07 09:54:26 +00001783 reinterpret_cast<const int32_t*>(data),
1784 element_count,
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001785 DataType::Type::kInt32,
David Brazdildee58d62016-04-07 09:54:26 +00001786 dex_pc);
1787 break;
1788 case 8:
David Brazdilc120bbe2016-04-22 16:57:00 +01001789 BuildFillWideArrayData(array,
David Brazdildee58d62016-04-07 09:54:26 +00001790 reinterpret_cast<const int64_t*>(data),
1791 element_count,
1792 dex_pc);
1793 break;
1794 default:
1795 LOG(FATAL) << "Unknown element width for " << payload->element_width;
1796 }
1797 graph_->SetHasBoundsChecks(true);
1798}
1799
1800void HInstructionBuilder::BuildFillWideArrayData(HInstruction* object,
1801 const int64_t* data,
1802 uint32_t element_count,
1803 uint32_t dex_pc) {
1804 for (uint32_t i = 0; i < element_count; ++i) {
1805 HInstruction* index = graph_->GetIntConstant(i, dex_pc);
1806 HInstruction* value = graph_->GetLongConstant(data[i], dex_pc);
Vladimir Markoca6fff82017-10-03 14:49:14 +01001807 HArraySet* aset =
1808 new (allocator_) HArraySet(object, index, value, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001809 ssa_builder_->MaybeAddAmbiguousArraySet(aset);
1810 AppendInstruction(aset);
1811 }
1812}
1813
1814static TypeCheckKind ComputeTypeCheckKind(Handle<mirror::Class> cls)
Andreas Gampebdf7f1c2016-08-30 16:38:47 -07001815 REQUIRES_SHARED(Locks::mutator_lock_) {
Andreas Gampefa4333d2017-02-14 11:10:34 -08001816 if (cls == nullptr) {
David Brazdildee58d62016-04-07 09:54:26 +00001817 return TypeCheckKind::kUnresolvedCheck;
1818 } else if (cls->IsInterface()) {
1819 return TypeCheckKind::kInterfaceCheck;
1820 } else if (cls->IsArrayClass()) {
1821 if (cls->GetComponentType()->IsObjectClass()) {
1822 return TypeCheckKind::kArrayObjectCheck;
1823 } else if (cls->CannotBeAssignedFromOtherTypes()) {
1824 return TypeCheckKind::kExactCheck;
1825 } else {
1826 return TypeCheckKind::kArrayCheck;
1827 }
1828 } else if (cls->IsFinal()) {
1829 return TypeCheckKind::kExactCheck;
1830 } else if (cls->IsAbstract()) {
1831 return TypeCheckKind::kAbstractClassCheck;
1832 } else {
1833 return TypeCheckKind::kClassHierarchyCheck;
1834 }
1835}
1836
Vladimir Marko28e012a2017-12-07 11:22:59 +00001837void HInstructionBuilder::BuildLoadString(dex::StringIndex string_index, uint32_t dex_pc) {
1838 HLoadString* load_string =
1839 new (allocator_) HLoadString(graph_->GetCurrentMethod(), string_index, *dex_file_, dex_pc);
1840 HSharpening::ProcessLoadString(load_string,
1841 code_generator_,
1842 compiler_driver_,
1843 *dex_compilation_unit_,
1844 handles_);
1845 AppendInstruction(load_string);
1846}
1847
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001848HLoadClass* HInstructionBuilder::BuildLoadClass(dex::TypeIndex type_index, uint32_t dex_pc) {
Nicolas Geoffray5247c082017-01-13 14:17:29 +00001849 ScopedObjectAccess soa(Thread::Current());
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001850 const DexFile& dex_file = *dex_compilation_unit_->GetDexFile();
Vladimir Marko8d6768d2017-03-14 10:13:21 +00001851 Handle<mirror::ClassLoader> class_loader = dex_compilation_unit_->GetClassLoader();
Nicolas Geoffraye761bcc2017-01-19 08:59:37 +00001852 Handle<mirror::Class> klass = handles_->NewHandle(compiler_driver_->ResolveClass(
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001853 soa, dex_compilation_unit_->GetDexCache(), class_loader, type_index, dex_compilation_unit_));
Nicolas Geoffraye761bcc2017-01-19 08:59:37 +00001854
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001855 bool needs_access_check = true;
Andreas Gampefa4333d2017-02-14 11:10:34 -08001856 if (klass != nullptr) {
Nicolas Geoffray5247c082017-01-13 14:17:29 +00001857 if (klass->IsPublic()) {
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001858 needs_access_check = false;
Nicolas Geoffray5247c082017-01-13 14:17:29 +00001859 } else {
Vladimir Marko28e012a2017-12-07 11:22:59 +00001860 ObjPtr<mirror::Class> compiling_class = GetCompilingClass();
Nicolas Geoffray5247c082017-01-13 14:17:29 +00001861 if (compiling_class != nullptr && compiling_class->CanAccess(klass.Get())) {
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001862 needs_access_check = false;
Nicolas Geoffray5247c082017-01-13 14:17:29 +00001863 }
1864 }
1865 }
1866
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001867 return BuildLoadClass(type_index, dex_file, klass, dex_pc, needs_access_check);
1868}
1869
1870HLoadClass* HInstructionBuilder::BuildLoadClass(dex::TypeIndex type_index,
1871 const DexFile& dex_file,
1872 Handle<mirror::Class> klass,
1873 uint32_t dex_pc,
1874 bool needs_access_check) {
1875 // Try to find a reference in the compiling dex file.
1876 const DexFile* actual_dex_file = &dex_file;
1877 if (!IsSameDexFile(dex_file, *dex_compilation_unit_->GetDexFile())) {
1878 dex::TypeIndex local_type_index =
1879 klass->FindTypeIndexInOtherDexFile(*dex_compilation_unit_->GetDexFile());
1880 if (local_type_index.IsValid()) {
1881 type_index = local_type_index;
1882 actual_dex_file = dex_compilation_unit_->GetDexFile();
1883 }
1884 }
1885
1886 // Note: `klass` must be from `handles_`.
Vladimir Markoca6fff82017-10-03 14:49:14 +01001887 HLoadClass* load_class = new (allocator_) HLoadClass(
Nicolas Geoffray5247c082017-01-13 14:17:29 +00001888 graph_->GetCurrentMethod(),
1889 type_index,
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001890 *actual_dex_file,
Nicolas Geoffray5247c082017-01-13 14:17:29 +00001891 klass,
Andreas Gampefa4333d2017-02-14 11:10:34 -08001892 klass != nullptr && (klass.Get() == GetOutermostCompilingClass()),
Nicolas Geoffray5247c082017-01-13 14:17:29 +00001893 dex_pc,
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001894 needs_access_check);
Nicolas Geoffray5247c082017-01-13 14:17:29 +00001895
Nicolas Geoffrayc4aa82c2017-03-06 14:38:52 +00001896 HLoadClass::LoadKind load_kind = HSharpening::ComputeLoadClassKind(load_class,
1897 code_generator_,
1898 compiler_driver_,
1899 *dex_compilation_unit_);
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001900
1901 if (load_kind == HLoadClass::LoadKind::kInvalid) {
1902 // We actually cannot reference this class, we're forced to bail.
1903 return nullptr;
1904 }
Vladimir Marko28e012a2017-12-07 11:22:59 +00001905 // Load kind must be set before inserting the instruction into the graph.
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001906 load_class->SetLoadKind(load_kind);
Vladimir Marko28e012a2017-12-07 11:22:59 +00001907 AppendInstruction(load_class);
Nicolas Geoffray5247c082017-01-13 14:17:29 +00001908 return load_class;
1909}
1910
David Brazdildee58d62016-04-07 09:54:26 +00001911void HInstructionBuilder::BuildTypeCheck(const Instruction& instruction,
1912 uint8_t destination,
1913 uint8_t reference,
Andreas Gampea5b09a62016-11-17 15:21:22 -08001914 dex::TypeIndex type_index,
David Brazdildee58d62016-04-07 09:54:26 +00001915 uint32_t dex_pc) {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01001916 HInstruction* object = LoadLocal(reference, DataType::Type::kReference);
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00001917 HLoadClass* cls = BuildLoadClass(type_index, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00001918
Nicolas Geoffray5247c082017-01-13 14:17:29 +00001919 ScopedObjectAccess soa(Thread::Current());
1920 TypeCheckKind check_kind = ComputeTypeCheckKind(cls->GetClass());
David Brazdildee58d62016-04-07 09:54:26 +00001921 if (instruction.Opcode() == Instruction::INSTANCE_OF) {
Vladimir Markoca6fff82017-10-03 14:49:14 +01001922 AppendInstruction(new (allocator_) HInstanceOf(object, cls, check_kind, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +00001923 UpdateLocal(destination, current_block_->GetLastInstruction());
1924 } else {
1925 DCHECK_EQ(instruction.Opcode(), Instruction::CHECK_CAST);
1926 // We emit a CheckCast followed by a BoundType. CheckCast is a statement
1927 // which may throw. If it succeeds BoundType sets the new type of `object`
1928 // for all subsequent uses.
Vladimir Markoca6fff82017-10-03 14:49:14 +01001929 AppendInstruction(new (allocator_) HCheckCast(object, cls, check_kind, dex_pc));
1930 AppendInstruction(new (allocator_) HBoundType(object, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +00001931 UpdateLocal(reference, current_block_->GetLastInstruction());
1932 }
1933}
1934
Vladimir Marko0b66d612017-03-13 14:50:04 +00001935bool HInstructionBuilder::NeedsAccessCheck(dex::TypeIndex type_index, bool* finalizable) const {
Vladimir Marko8d6768d2017-03-14 10:13:21 +00001936 return !compiler_driver_->CanAccessInstantiableTypeWithoutChecks(
1937 LookupReferrerClass(), LookupResolvedType(type_index, *dex_compilation_unit_), finalizable);
David Brazdildee58d62016-04-07 09:54:26 +00001938}
1939
1940bool HInstructionBuilder::CanDecodeQuickenedInfo() const {
Mathieu Chartierde4b08f2017-07-10 14:13:41 -07001941 return !quicken_info_.IsNull();
David Brazdildee58d62016-04-07 09:54:26 +00001942}
1943
Mathieu Chartierde4b08f2017-07-10 14:13:41 -07001944uint16_t HInstructionBuilder::LookupQuickenedInfo(uint32_t quicken_index) {
1945 DCHECK(CanDecodeQuickenedInfo());
1946 return quicken_info_.GetData(quicken_index);
David Brazdildee58d62016-04-07 09:54:26 +00001947}
1948
Mathieu Chartierde4b08f2017-07-10 14:13:41 -07001949bool HInstructionBuilder::ProcessDexInstruction(const Instruction& instruction,
1950 uint32_t dex_pc,
1951 size_t quicken_index) {
David Brazdildee58d62016-04-07 09:54:26 +00001952 switch (instruction.Opcode()) {
1953 case Instruction::CONST_4: {
1954 int32_t register_index = instruction.VRegA();
1955 HIntConstant* constant = graph_->GetIntConstant(instruction.VRegB_11n(), dex_pc);
1956 UpdateLocal(register_index, constant);
1957 break;
1958 }
1959
1960 case Instruction::CONST_16: {
1961 int32_t register_index = instruction.VRegA();
1962 HIntConstant* constant = graph_->GetIntConstant(instruction.VRegB_21s(), dex_pc);
1963 UpdateLocal(register_index, constant);
1964 break;
1965 }
1966
1967 case Instruction::CONST: {
1968 int32_t register_index = instruction.VRegA();
1969 HIntConstant* constant = graph_->GetIntConstant(instruction.VRegB_31i(), dex_pc);
1970 UpdateLocal(register_index, constant);
1971 break;
1972 }
1973
1974 case Instruction::CONST_HIGH16: {
1975 int32_t register_index = instruction.VRegA();
1976 HIntConstant* constant = graph_->GetIntConstant(instruction.VRegB_21h() << 16, dex_pc);
1977 UpdateLocal(register_index, constant);
1978 break;
1979 }
1980
1981 case Instruction::CONST_WIDE_16: {
1982 int32_t register_index = instruction.VRegA();
1983 // Get 16 bits of constant value, sign extended to 64 bits.
1984 int64_t value = instruction.VRegB_21s();
1985 value <<= 48;
1986 value >>= 48;
1987 HLongConstant* constant = graph_->GetLongConstant(value, dex_pc);
1988 UpdateLocal(register_index, constant);
1989 break;
1990 }
1991
1992 case Instruction::CONST_WIDE_32: {
1993 int32_t register_index = instruction.VRegA();
1994 // Get 32 bits of constant value, sign extended to 64 bits.
1995 int64_t value = instruction.VRegB_31i();
1996 value <<= 32;
1997 value >>= 32;
1998 HLongConstant* constant = graph_->GetLongConstant(value, dex_pc);
1999 UpdateLocal(register_index, constant);
2000 break;
2001 }
2002
2003 case Instruction::CONST_WIDE: {
2004 int32_t register_index = instruction.VRegA();
2005 HLongConstant* constant = graph_->GetLongConstant(instruction.VRegB_51l(), dex_pc);
2006 UpdateLocal(register_index, constant);
2007 break;
2008 }
2009
2010 case Instruction::CONST_WIDE_HIGH16: {
2011 int32_t register_index = instruction.VRegA();
2012 int64_t value = static_cast<int64_t>(instruction.VRegB_21h()) << 48;
2013 HLongConstant* constant = graph_->GetLongConstant(value, dex_pc);
2014 UpdateLocal(register_index, constant);
2015 break;
2016 }
2017
2018 // Note that the SSA building will refine the types.
2019 case Instruction::MOVE:
2020 case Instruction::MOVE_FROM16:
2021 case Instruction::MOVE_16: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002022 HInstruction* value = LoadLocal(instruction.VRegB(), DataType::Type::kInt32);
David Brazdildee58d62016-04-07 09:54:26 +00002023 UpdateLocal(instruction.VRegA(), value);
2024 break;
2025 }
2026
2027 // Note that the SSA building will refine the types.
2028 case Instruction::MOVE_WIDE:
2029 case Instruction::MOVE_WIDE_FROM16:
2030 case Instruction::MOVE_WIDE_16: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002031 HInstruction* value = LoadLocal(instruction.VRegB(), DataType::Type::kInt64);
David Brazdildee58d62016-04-07 09:54:26 +00002032 UpdateLocal(instruction.VRegA(), value);
2033 break;
2034 }
2035
2036 case Instruction::MOVE_OBJECT:
2037 case Instruction::MOVE_OBJECT_16:
2038 case Instruction::MOVE_OBJECT_FROM16: {
Nicolas Geoffray50a9ed02016-09-23 15:40:41 +01002039 // The verifier has no notion of a null type, so a move-object of constant 0
2040 // will lead to the same constant 0 in the destination register. To mimic
2041 // this behavior, we just pretend we haven't seen a type change (int to reference)
2042 // for the 0 constant and phis. We rely on our type propagation to eventually get the
2043 // types correct.
2044 uint32_t reg_number = instruction.VRegB();
2045 HInstruction* value = (*current_locals_)[reg_number];
2046 if (value->IsIntConstant()) {
2047 DCHECK_EQ(value->AsIntConstant()->GetValue(), 0);
2048 } else if (value->IsPhi()) {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002049 DCHECK(value->GetType() == DataType::Type::kInt32 ||
2050 value->GetType() == DataType::Type::kReference);
Nicolas Geoffray50a9ed02016-09-23 15:40:41 +01002051 } else {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002052 value = LoadLocal(reg_number, DataType::Type::kReference);
Nicolas Geoffray50a9ed02016-09-23 15:40:41 +01002053 }
David Brazdildee58d62016-04-07 09:54:26 +00002054 UpdateLocal(instruction.VRegA(), value);
2055 break;
2056 }
2057
2058 case Instruction::RETURN_VOID_NO_BARRIER:
2059 case Instruction::RETURN_VOID: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002060 BuildReturn(instruction, DataType::Type::kVoid, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002061 break;
2062 }
2063
2064#define IF_XX(comparison, cond) \
2065 case Instruction::IF_##cond: If_22t<comparison>(instruction, dex_pc); break; \
2066 case Instruction::IF_##cond##Z: If_21t<comparison>(instruction, dex_pc); break
2067
2068 IF_XX(HEqual, EQ);
2069 IF_XX(HNotEqual, NE);
2070 IF_XX(HLessThan, LT);
2071 IF_XX(HLessThanOrEqual, LE);
2072 IF_XX(HGreaterThan, GT);
2073 IF_XX(HGreaterThanOrEqual, GE);
2074
2075 case Instruction::GOTO:
2076 case Instruction::GOTO_16:
2077 case Instruction::GOTO_32: {
Vladimir Markoca6fff82017-10-03 14:49:14 +01002078 AppendInstruction(new (allocator_) HGoto(dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +00002079 current_block_ = nullptr;
2080 break;
2081 }
2082
2083 case Instruction::RETURN: {
2084 BuildReturn(instruction, return_type_, dex_pc);
2085 break;
2086 }
2087
2088 case Instruction::RETURN_OBJECT: {
2089 BuildReturn(instruction, return_type_, dex_pc);
2090 break;
2091 }
2092
2093 case Instruction::RETURN_WIDE: {
2094 BuildReturn(instruction, return_type_, dex_pc);
2095 break;
2096 }
2097
2098 case Instruction::INVOKE_DIRECT:
2099 case Instruction::INVOKE_INTERFACE:
2100 case Instruction::INVOKE_STATIC:
2101 case Instruction::INVOKE_SUPER:
2102 case Instruction::INVOKE_VIRTUAL:
2103 case Instruction::INVOKE_VIRTUAL_QUICK: {
2104 uint16_t method_idx;
2105 if (instruction.Opcode() == Instruction::INVOKE_VIRTUAL_QUICK) {
2106 if (!CanDecodeQuickenedInfo()) {
Nicolas Geoffraydbb9aef2017-11-23 10:44:11 +00002107 VLOG(compiler) << "Not compiled: Could not decode quickened instruction "
2108 << instruction.Opcode();
David Brazdildee58d62016-04-07 09:54:26 +00002109 return false;
2110 }
Mathieu Chartierde4b08f2017-07-10 14:13:41 -07002111 method_idx = LookupQuickenedInfo(quicken_index);
David Brazdildee58d62016-04-07 09:54:26 +00002112 } else {
2113 method_idx = instruction.VRegB_35c();
2114 }
2115 uint32_t number_of_vreg_arguments = instruction.VRegA_35c();
2116 uint32_t args[5];
2117 instruction.GetVarArgs(args);
2118 if (!BuildInvoke(instruction, dex_pc, method_idx,
2119 number_of_vreg_arguments, false, args, -1)) {
2120 return false;
2121 }
2122 break;
2123 }
2124
2125 case Instruction::INVOKE_DIRECT_RANGE:
2126 case Instruction::INVOKE_INTERFACE_RANGE:
2127 case Instruction::INVOKE_STATIC_RANGE:
2128 case Instruction::INVOKE_SUPER_RANGE:
2129 case Instruction::INVOKE_VIRTUAL_RANGE:
2130 case Instruction::INVOKE_VIRTUAL_RANGE_QUICK: {
2131 uint16_t method_idx;
2132 if (instruction.Opcode() == Instruction::INVOKE_VIRTUAL_RANGE_QUICK) {
2133 if (!CanDecodeQuickenedInfo()) {
Nicolas Geoffraydbb9aef2017-11-23 10:44:11 +00002134 VLOG(compiler) << "Not compiled: Could not decode quickened instruction "
2135 << instruction.Opcode();
David Brazdildee58d62016-04-07 09:54:26 +00002136 return false;
2137 }
Mathieu Chartierde4b08f2017-07-10 14:13:41 -07002138 method_idx = LookupQuickenedInfo(quicken_index);
David Brazdildee58d62016-04-07 09:54:26 +00002139 } else {
2140 method_idx = instruction.VRegB_3rc();
2141 }
2142 uint32_t number_of_vreg_arguments = instruction.VRegA_3rc();
2143 uint32_t register_index = instruction.VRegC();
2144 if (!BuildInvoke(instruction, dex_pc, method_idx,
2145 number_of_vreg_arguments, true, nullptr, register_index)) {
2146 return false;
2147 }
2148 break;
2149 }
2150
Orion Hodsonac141392017-01-13 11:53:47 +00002151 case Instruction::INVOKE_POLYMORPHIC: {
2152 uint16_t method_idx = instruction.VRegB_45cc();
2153 uint16_t proto_idx = instruction.VRegH_45cc();
2154 uint32_t number_of_vreg_arguments = instruction.VRegA_45cc();
2155 uint32_t args[5];
2156 instruction.GetVarArgs(args);
2157 return BuildInvokePolymorphic(instruction,
2158 dex_pc,
2159 method_idx,
2160 proto_idx,
2161 number_of_vreg_arguments,
2162 false,
2163 args,
2164 -1);
2165 }
2166
2167 case Instruction::INVOKE_POLYMORPHIC_RANGE: {
2168 uint16_t method_idx = instruction.VRegB_4rcc();
2169 uint16_t proto_idx = instruction.VRegH_4rcc();
2170 uint32_t number_of_vreg_arguments = instruction.VRegA_4rcc();
2171 uint32_t register_index = instruction.VRegC_4rcc();
2172 return BuildInvokePolymorphic(instruction,
2173 dex_pc,
2174 method_idx,
2175 proto_idx,
2176 number_of_vreg_arguments,
2177 true,
2178 nullptr,
2179 register_index);
2180 }
2181
David Brazdildee58d62016-04-07 09:54:26 +00002182 case Instruction::NEG_INT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002183 Unop_12x<HNeg>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002184 break;
2185 }
2186
2187 case Instruction::NEG_LONG: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002188 Unop_12x<HNeg>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002189 break;
2190 }
2191
2192 case Instruction::NEG_FLOAT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002193 Unop_12x<HNeg>(instruction, DataType::Type::kFloat32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002194 break;
2195 }
2196
2197 case Instruction::NEG_DOUBLE: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002198 Unop_12x<HNeg>(instruction, DataType::Type::kFloat64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002199 break;
2200 }
2201
2202 case Instruction::NOT_INT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002203 Unop_12x<HNot>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002204 break;
2205 }
2206
2207 case Instruction::NOT_LONG: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002208 Unop_12x<HNot>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002209 break;
2210 }
2211
2212 case Instruction::INT_TO_LONG: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002213 Conversion_12x(instruction, DataType::Type::kInt32, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002214 break;
2215 }
2216
2217 case Instruction::INT_TO_FLOAT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002218 Conversion_12x(instruction, DataType::Type::kInt32, DataType::Type::kFloat32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002219 break;
2220 }
2221
2222 case Instruction::INT_TO_DOUBLE: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002223 Conversion_12x(instruction, DataType::Type::kInt32, DataType::Type::kFloat64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002224 break;
2225 }
2226
2227 case Instruction::LONG_TO_INT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002228 Conversion_12x(instruction, DataType::Type::kInt64, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002229 break;
2230 }
2231
2232 case Instruction::LONG_TO_FLOAT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002233 Conversion_12x(instruction, DataType::Type::kInt64, DataType::Type::kFloat32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002234 break;
2235 }
2236
2237 case Instruction::LONG_TO_DOUBLE: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002238 Conversion_12x(instruction, DataType::Type::kInt64, DataType::Type::kFloat64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002239 break;
2240 }
2241
2242 case Instruction::FLOAT_TO_INT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002243 Conversion_12x(instruction, DataType::Type::kFloat32, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002244 break;
2245 }
2246
2247 case Instruction::FLOAT_TO_LONG: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002248 Conversion_12x(instruction, DataType::Type::kFloat32, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002249 break;
2250 }
2251
2252 case Instruction::FLOAT_TO_DOUBLE: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002253 Conversion_12x(instruction, DataType::Type::kFloat32, DataType::Type::kFloat64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002254 break;
2255 }
2256
2257 case Instruction::DOUBLE_TO_INT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002258 Conversion_12x(instruction, DataType::Type::kFloat64, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002259 break;
2260 }
2261
2262 case Instruction::DOUBLE_TO_LONG: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002263 Conversion_12x(instruction, DataType::Type::kFloat64, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002264 break;
2265 }
2266
2267 case Instruction::DOUBLE_TO_FLOAT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002268 Conversion_12x(instruction, DataType::Type::kFloat64, DataType::Type::kFloat32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002269 break;
2270 }
2271
2272 case Instruction::INT_TO_BYTE: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002273 Conversion_12x(instruction, DataType::Type::kInt32, DataType::Type::kInt8, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002274 break;
2275 }
2276
2277 case Instruction::INT_TO_SHORT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002278 Conversion_12x(instruction, DataType::Type::kInt32, DataType::Type::kInt16, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002279 break;
2280 }
2281
2282 case Instruction::INT_TO_CHAR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002283 Conversion_12x(instruction, DataType::Type::kInt32, DataType::Type::kUint16, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002284 break;
2285 }
2286
2287 case Instruction::ADD_INT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002288 Binop_23x<HAdd>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002289 break;
2290 }
2291
2292 case Instruction::ADD_LONG: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002293 Binop_23x<HAdd>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002294 break;
2295 }
2296
2297 case Instruction::ADD_DOUBLE: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002298 Binop_23x<HAdd>(instruction, DataType::Type::kFloat64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002299 break;
2300 }
2301
2302 case Instruction::ADD_FLOAT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002303 Binop_23x<HAdd>(instruction, DataType::Type::kFloat32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002304 break;
2305 }
2306
2307 case Instruction::SUB_INT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002308 Binop_23x<HSub>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002309 break;
2310 }
2311
2312 case Instruction::SUB_LONG: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002313 Binop_23x<HSub>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002314 break;
2315 }
2316
2317 case Instruction::SUB_FLOAT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002318 Binop_23x<HSub>(instruction, DataType::Type::kFloat32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002319 break;
2320 }
2321
2322 case Instruction::SUB_DOUBLE: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002323 Binop_23x<HSub>(instruction, DataType::Type::kFloat64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002324 break;
2325 }
2326
2327 case Instruction::ADD_INT_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002328 Binop_12x<HAdd>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002329 break;
2330 }
2331
2332 case Instruction::MUL_INT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002333 Binop_23x<HMul>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002334 break;
2335 }
2336
2337 case Instruction::MUL_LONG: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002338 Binop_23x<HMul>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002339 break;
2340 }
2341
2342 case Instruction::MUL_FLOAT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002343 Binop_23x<HMul>(instruction, DataType::Type::kFloat32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002344 break;
2345 }
2346
2347 case Instruction::MUL_DOUBLE: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002348 Binop_23x<HMul>(instruction, DataType::Type::kFloat64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002349 break;
2350 }
2351
2352 case Instruction::DIV_INT: {
2353 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegB(), instruction.VRegC(),
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002354 dex_pc, DataType::Type::kInt32, false, true);
David Brazdildee58d62016-04-07 09:54:26 +00002355 break;
2356 }
2357
2358 case Instruction::DIV_LONG: {
2359 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegB(), instruction.VRegC(),
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002360 dex_pc, DataType::Type::kInt64, false, true);
David Brazdildee58d62016-04-07 09:54:26 +00002361 break;
2362 }
2363
2364 case Instruction::DIV_FLOAT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002365 Binop_23x<HDiv>(instruction, DataType::Type::kFloat32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002366 break;
2367 }
2368
2369 case Instruction::DIV_DOUBLE: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002370 Binop_23x<HDiv>(instruction, DataType::Type::kFloat64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002371 break;
2372 }
2373
2374 case Instruction::REM_INT: {
2375 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegB(), instruction.VRegC(),
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002376 dex_pc, DataType::Type::kInt32, false, false);
David Brazdildee58d62016-04-07 09:54:26 +00002377 break;
2378 }
2379
2380 case Instruction::REM_LONG: {
2381 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegB(), instruction.VRegC(),
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002382 dex_pc, DataType::Type::kInt64, false, false);
David Brazdildee58d62016-04-07 09:54:26 +00002383 break;
2384 }
2385
2386 case Instruction::REM_FLOAT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002387 Binop_23x<HRem>(instruction, DataType::Type::kFloat32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002388 break;
2389 }
2390
2391 case Instruction::REM_DOUBLE: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002392 Binop_23x<HRem>(instruction, DataType::Type::kFloat64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002393 break;
2394 }
2395
2396 case Instruction::AND_INT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002397 Binop_23x<HAnd>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002398 break;
2399 }
2400
2401 case Instruction::AND_LONG: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002402 Binop_23x<HAnd>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002403 break;
2404 }
2405
2406 case Instruction::SHL_INT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002407 Binop_23x_shift<HShl>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002408 break;
2409 }
2410
2411 case Instruction::SHL_LONG: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002412 Binop_23x_shift<HShl>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002413 break;
2414 }
2415
2416 case Instruction::SHR_INT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002417 Binop_23x_shift<HShr>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002418 break;
2419 }
2420
2421 case Instruction::SHR_LONG: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002422 Binop_23x_shift<HShr>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002423 break;
2424 }
2425
2426 case Instruction::USHR_INT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002427 Binop_23x_shift<HUShr>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002428 break;
2429 }
2430
2431 case Instruction::USHR_LONG: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002432 Binop_23x_shift<HUShr>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002433 break;
2434 }
2435
2436 case Instruction::OR_INT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002437 Binop_23x<HOr>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002438 break;
2439 }
2440
2441 case Instruction::OR_LONG: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002442 Binop_23x<HOr>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002443 break;
2444 }
2445
2446 case Instruction::XOR_INT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002447 Binop_23x<HXor>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002448 break;
2449 }
2450
2451 case Instruction::XOR_LONG: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002452 Binop_23x<HXor>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002453 break;
2454 }
2455
2456 case Instruction::ADD_LONG_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002457 Binop_12x<HAdd>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002458 break;
2459 }
2460
2461 case Instruction::ADD_DOUBLE_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002462 Binop_12x<HAdd>(instruction, DataType::Type::kFloat64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002463 break;
2464 }
2465
2466 case Instruction::ADD_FLOAT_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002467 Binop_12x<HAdd>(instruction, DataType::Type::kFloat32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002468 break;
2469 }
2470
2471 case Instruction::SUB_INT_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002472 Binop_12x<HSub>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002473 break;
2474 }
2475
2476 case Instruction::SUB_LONG_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002477 Binop_12x<HSub>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002478 break;
2479 }
2480
2481 case Instruction::SUB_FLOAT_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002482 Binop_12x<HSub>(instruction, DataType::Type::kFloat32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002483 break;
2484 }
2485
2486 case Instruction::SUB_DOUBLE_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002487 Binop_12x<HSub>(instruction, DataType::Type::kFloat64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002488 break;
2489 }
2490
2491 case Instruction::MUL_INT_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002492 Binop_12x<HMul>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002493 break;
2494 }
2495
2496 case Instruction::MUL_LONG_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002497 Binop_12x<HMul>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002498 break;
2499 }
2500
2501 case Instruction::MUL_FLOAT_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002502 Binop_12x<HMul>(instruction, DataType::Type::kFloat32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002503 break;
2504 }
2505
2506 case Instruction::MUL_DOUBLE_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002507 Binop_12x<HMul>(instruction, DataType::Type::kFloat64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002508 break;
2509 }
2510
2511 case Instruction::DIV_INT_2ADDR: {
2512 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegA(), instruction.VRegB(),
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002513 dex_pc, DataType::Type::kInt32, false, true);
David Brazdildee58d62016-04-07 09:54:26 +00002514 break;
2515 }
2516
2517 case Instruction::DIV_LONG_2ADDR: {
2518 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegA(), instruction.VRegB(),
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002519 dex_pc, DataType::Type::kInt64, false, true);
David Brazdildee58d62016-04-07 09:54:26 +00002520 break;
2521 }
2522
2523 case Instruction::REM_INT_2ADDR: {
2524 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegA(), instruction.VRegB(),
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002525 dex_pc, DataType::Type::kInt32, false, false);
David Brazdildee58d62016-04-07 09:54:26 +00002526 break;
2527 }
2528
2529 case Instruction::REM_LONG_2ADDR: {
2530 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegA(), instruction.VRegB(),
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002531 dex_pc, DataType::Type::kInt64, false, false);
David Brazdildee58d62016-04-07 09:54:26 +00002532 break;
2533 }
2534
2535 case Instruction::REM_FLOAT_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002536 Binop_12x<HRem>(instruction, DataType::Type::kFloat32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002537 break;
2538 }
2539
2540 case Instruction::REM_DOUBLE_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002541 Binop_12x<HRem>(instruction, DataType::Type::kFloat64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002542 break;
2543 }
2544
2545 case Instruction::SHL_INT_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002546 Binop_12x_shift<HShl>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002547 break;
2548 }
2549
2550 case Instruction::SHL_LONG_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002551 Binop_12x_shift<HShl>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002552 break;
2553 }
2554
2555 case Instruction::SHR_INT_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002556 Binop_12x_shift<HShr>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002557 break;
2558 }
2559
2560 case Instruction::SHR_LONG_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002561 Binop_12x_shift<HShr>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002562 break;
2563 }
2564
2565 case Instruction::USHR_INT_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002566 Binop_12x_shift<HUShr>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002567 break;
2568 }
2569
2570 case Instruction::USHR_LONG_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002571 Binop_12x_shift<HUShr>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002572 break;
2573 }
2574
2575 case Instruction::DIV_FLOAT_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002576 Binop_12x<HDiv>(instruction, DataType::Type::kFloat32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002577 break;
2578 }
2579
2580 case Instruction::DIV_DOUBLE_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002581 Binop_12x<HDiv>(instruction, DataType::Type::kFloat64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002582 break;
2583 }
2584
2585 case Instruction::AND_INT_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002586 Binop_12x<HAnd>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002587 break;
2588 }
2589
2590 case Instruction::AND_LONG_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002591 Binop_12x<HAnd>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002592 break;
2593 }
2594
2595 case Instruction::OR_INT_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002596 Binop_12x<HOr>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002597 break;
2598 }
2599
2600 case Instruction::OR_LONG_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002601 Binop_12x<HOr>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002602 break;
2603 }
2604
2605 case Instruction::XOR_INT_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002606 Binop_12x<HXor>(instruction, DataType::Type::kInt32, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002607 break;
2608 }
2609
2610 case Instruction::XOR_LONG_2ADDR: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002611 Binop_12x<HXor>(instruction, DataType::Type::kInt64, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002612 break;
2613 }
2614
2615 case Instruction::ADD_INT_LIT16: {
2616 Binop_22s<HAdd>(instruction, false, dex_pc);
2617 break;
2618 }
2619
2620 case Instruction::AND_INT_LIT16: {
2621 Binop_22s<HAnd>(instruction, false, dex_pc);
2622 break;
2623 }
2624
2625 case Instruction::OR_INT_LIT16: {
2626 Binop_22s<HOr>(instruction, false, dex_pc);
2627 break;
2628 }
2629
2630 case Instruction::XOR_INT_LIT16: {
2631 Binop_22s<HXor>(instruction, false, dex_pc);
2632 break;
2633 }
2634
2635 case Instruction::RSUB_INT: {
2636 Binop_22s<HSub>(instruction, true, dex_pc);
2637 break;
2638 }
2639
2640 case Instruction::MUL_INT_LIT16: {
2641 Binop_22s<HMul>(instruction, false, dex_pc);
2642 break;
2643 }
2644
2645 case Instruction::ADD_INT_LIT8: {
2646 Binop_22b<HAdd>(instruction, false, dex_pc);
2647 break;
2648 }
2649
2650 case Instruction::AND_INT_LIT8: {
2651 Binop_22b<HAnd>(instruction, false, dex_pc);
2652 break;
2653 }
2654
2655 case Instruction::OR_INT_LIT8: {
2656 Binop_22b<HOr>(instruction, false, dex_pc);
2657 break;
2658 }
2659
2660 case Instruction::XOR_INT_LIT8: {
2661 Binop_22b<HXor>(instruction, false, dex_pc);
2662 break;
2663 }
2664
2665 case Instruction::RSUB_INT_LIT8: {
2666 Binop_22b<HSub>(instruction, true, dex_pc);
2667 break;
2668 }
2669
2670 case Instruction::MUL_INT_LIT8: {
2671 Binop_22b<HMul>(instruction, false, dex_pc);
2672 break;
2673 }
2674
2675 case Instruction::DIV_INT_LIT16:
2676 case Instruction::DIV_INT_LIT8: {
2677 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegB(), instruction.VRegC(),
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002678 dex_pc, DataType::Type::kInt32, true, true);
David Brazdildee58d62016-04-07 09:54:26 +00002679 break;
2680 }
2681
2682 case Instruction::REM_INT_LIT16:
2683 case Instruction::REM_INT_LIT8: {
2684 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegB(), instruction.VRegC(),
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002685 dex_pc, DataType::Type::kInt32, true, false);
David Brazdildee58d62016-04-07 09:54:26 +00002686 break;
2687 }
2688
2689 case Instruction::SHL_INT_LIT8: {
2690 Binop_22b<HShl>(instruction, false, dex_pc);
2691 break;
2692 }
2693
2694 case Instruction::SHR_INT_LIT8: {
2695 Binop_22b<HShr>(instruction, false, dex_pc);
2696 break;
2697 }
2698
2699 case Instruction::USHR_INT_LIT8: {
2700 Binop_22b<HUShr>(instruction, false, dex_pc);
2701 break;
2702 }
2703
2704 case Instruction::NEW_INSTANCE: {
Igor Murashkin79d8fa72017-04-18 09:37:23 -07002705 HNewInstance* new_instance =
2706 BuildNewInstance(dex::TypeIndex(instruction.VRegB_21c()), dex_pc);
2707 DCHECK(new_instance != nullptr);
2708
David Brazdildee58d62016-04-07 09:54:26 +00002709 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
Igor Murashkin79d8fa72017-04-18 09:37:23 -07002710 BuildConstructorFenceForAllocation(new_instance);
David Brazdildee58d62016-04-07 09:54:26 +00002711 break;
2712 }
2713
2714 case Instruction::NEW_ARRAY: {
Andreas Gampea5b09a62016-11-17 15:21:22 -08002715 dex::TypeIndex type_index(instruction.VRegC_22c());
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002716 HInstruction* length = LoadLocal(instruction.VRegB_22c(), DataType::Type::kInt32);
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00002717 HLoadClass* cls = BuildLoadClass(type_index, dex_pc);
Igor Murashkin79d8fa72017-04-18 09:37:23 -07002718
Vladimir Markoca6fff82017-10-03 14:49:14 +01002719 HNewArray* new_array = new (allocator_) HNewArray(cls, length, dex_pc);
Igor Murashkin79d8fa72017-04-18 09:37:23 -07002720 AppendInstruction(new_array);
David Brazdildee58d62016-04-07 09:54:26 +00002721 UpdateLocal(instruction.VRegA_22c(), current_block_->GetLastInstruction());
Igor Murashkin79d8fa72017-04-18 09:37:23 -07002722 BuildConstructorFenceForAllocation(new_array);
David Brazdildee58d62016-04-07 09:54:26 +00002723 break;
2724 }
2725
2726 case Instruction::FILLED_NEW_ARRAY: {
2727 uint32_t number_of_vreg_arguments = instruction.VRegA_35c();
Andreas Gampea5b09a62016-11-17 15:21:22 -08002728 dex::TypeIndex type_index(instruction.VRegB_35c());
David Brazdildee58d62016-04-07 09:54:26 +00002729 uint32_t args[5];
2730 instruction.GetVarArgs(args);
Igor Murashkin79d8fa72017-04-18 09:37:23 -07002731 HNewArray* new_array = BuildFilledNewArray(dex_pc,
2732 type_index,
2733 number_of_vreg_arguments,
2734 /* is_range */ false,
2735 args,
2736 /* register_index */ 0);
2737 BuildConstructorFenceForAllocation(new_array);
David Brazdildee58d62016-04-07 09:54:26 +00002738 break;
2739 }
2740
2741 case Instruction::FILLED_NEW_ARRAY_RANGE: {
2742 uint32_t number_of_vreg_arguments = instruction.VRegA_3rc();
Andreas Gampea5b09a62016-11-17 15:21:22 -08002743 dex::TypeIndex type_index(instruction.VRegB_3rc());
David Brazdildee58d62016-04-07 09:54:26 +00002744 uint32_t register_index = instruction.VRegC_3rc();
Igor Murashkin79d8fa72017-04-18 09:37:23 -07002745 HNewArray* new_array = BuildFilledNewArray(dex_pc,
2746 type_index,
2747 number_of_vreg_arguments,
2748 /* is_range */ true,
2749 /* args*/ nullptr,
2750 register_index);
2751 BuildConstructorFenceForAllocation(new_array);
David Brazdildee58d62016-04-07 09:54:26 +00002752 break;
2753 }
2754
2755 case Instruction::FILL_ARRAY_DATA: {
2756 BuildFillArrayData(instruction, dex_pc);
2757 break;
2758 }
2759
2760 case Instruction::MOVE_RESULT:
2761 case Instruction::MOVE_RESULT_WIDE:
2762 case Instruction::MOVE_RESULT_OBJECT: {
2763 DCHECK(latest_result_ != nullptr);
2764 UpdateLocal(instruction.VRegA(), latest_result_);
2765 latest_result_ = nullptr;
2766 break;
2767 }
2768
2769 case Instruction::CMP_LONG: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002770 Binop_23x_cmp(instruction, DataType::Type::kInt64, ComparisonBias::kNoBias, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002771 break;
2772 }
2773
2774 case Instruction::CMPG_FLOAT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002775 Binop_23x_cmp(instruction, DataType::Type::kFloat32, ComparisonBias::kGtBias, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002776 break;
2777 }
2778
2779 case Instruction::CMPG_DOUBLE: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002780 Binop_23x_cmp(instruction, DataType::Type::kFloat64, ComparisonBias::kGtBias, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002781 break;
2782 }
2783
2784 case Instruction::CMPL_FLOAT: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002785 Binop_23x_cmp(instruction, DataType::Type::kFloat32, ComparisonBias::kLtBias, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002786 break;
2787 }
2788
2789 case Instruction::CMPL_DOUBLE: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002790 Binop_23x_cmp(instruction, DataType::Type::kFloat64, ComparisonBias::kLtBias, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002791 break;
2792 }
2793
2794 case Instruction::NOP:
2795 break;
2796
2797 case Instruction::IGET:
2798 case Instruction::IGET_QUICK:
2799 case Instruction::IGET_WIDE:
2800 case Instruction::IGET_WIDE_QUICK:
2801 case Instruction::IGET_OBJECT:
2802 case Instruction::IGET_OBJECT_QUICK:
2803 case Instruction::IGET_BOOLEAN:
2804 case Instruction::IGET_BOOLEAN_QUICK:
2805 case Instruction::IGET_BYTE:
2806 case Instruction::IGET_BYTE_QUICK:
2807 case Instruction::IGET_CHAR:
2808 case Instruction::IGET_CHAR_QUICK:
2809 case Instruction::IGET_SHORT:
2810 case Instruction::IGET_SHORT_QUICK: {
Nicolas Geoffraydbb9aef2017-11-23 10:44:11 +00002811 if (!BuildInstanceFieldAccess(instruction, dex_pc, /* is_put */ false, quicken_index)) {
David Brazdildee58d62016-04-07 09:54:26 +00002812 return false;
2813 }
2814 break;
2815 }
2816
2817 case Instruction::IPUT:
2818 case Instruction::IPUT_QUICK:
2819 case Instruction::IPUT_WIDE:
2820 case Instruction::IPUT_WIDE_QUICK:
2821 case Instruction::IPUT_OBJECT:
2822 case Instruction::IPUT_OBJECT_QUICK:
2823 case Instruction::IPUT_BOOLEAN:
2824 case Instruction::IPUT_BOOLEAN_QUICK:
2825 case Instruction::IPUT_BYTE:
2826 case Instruction::IPUT_BYTE_QUICK:
2827 case Instruction::IPUT_CHAR:
2828 case Instruction::IPUT_CHAR_QUICK:
2829 case Instruction::IPUT_SHORT:
2830 case Instruction::IPUT_SHORT_QUICK: {
Nicolas Geoffraydbb9aef2017-11-23 10:44:11 +00002831 if (!BuildInstanceFieldAccess(instruction, dex_pc, /* is_put */ true, quicken_index)) {
David Brazdildee58d62016-04-07 09:54:26 +00002832 return false;
2833 }
2834 break;
2835 }
2836
2837 case Instruction::SGET:
2838 case Instruction::SGET_WIDE:
2839 case Instruction::SGET_OBJECT:
2840 case Instruction::SGET_BOOLEAN:
2841 case Instruction::SGET_BYTE:
2842 case Instruction::SGET_CHAR:
2843 case Instruction::SGET_SHORT: {
Nicolas Geoffraydbb9aef2017-11-23 10:44:11 +00002844 BuildStaticFieldAccess(instruction, dex_pc, /* is_put */ false);
David Brazdildee58d62016-04-07 09:54:26 +00002845 break;
2846 }
2847
2848 case Instruction::SPUT:
2849 case Instruction::SPUT_WIDE:
2850 case Instruction::SPUT_OBJECT:
2851 case Instruction::SPUT_BOOLEAN:
2852 case Instruction::SPUT_BYTE:
2853 case Instruction::SPUT_CHAR:
2854 case Instruction::SPUT_SHORT: {
Nicolas Geoffraydbb9aef2017-11-23 10:44:11 +00002855 BuildStaticFieldAccess(instruction, dex_pc, /* is_put */ true);
David Brazdildee58d62016-04-07 09:54:26 +00002856 break;
2857 }
2858
2859#define ARRAY_XX(kind, anticipated_type) \
2860 case Instruction::AGET##kind: { \
2861 BuildArrayAccess(instruction, dex_pc, false, anticipated_type); \
2862 break; \
2863 } \
2864 case Instruction::APUT##kind: { \
2865 BuildArrayAccess(instruction, dex_pc, true, anticipated_type); \
2866 break; \
2867 }
2868
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002869 ARRAY_XX(, DataType::Type::kInt32);
2870 ARRAY_XX(_WIDE, DataType::Type::kInt64);
2871 ARRAY_XX(_OBJECT, DataType::Type::kReference);
2872 ARRAY_XX(_BOOLEAN, DataType::Type::kBool);
2873 ARRAY_XX(_BYTE, DataType::Type::kInt8);
2874 ARRAY_XX(_CHAR, DataType::Type::kUint16);
2875 ARRAY_XX(_SHORT, DataType::Type::kInt16);
David Brazdildee58d62016-04-07 09:54:26 +00002876
2877 case Instruction::ARRAY_LENGTH: {
David Brazdilc120bbe2016-04-22 16:57:00 +01002878 HInstruction* object = LoadNullCheckedLocal(instruction.VRegB_12x(), dex_pc);
Vladimir Markoca6fff82017-10-03 14:49:14 +01002879 AppendInstruction(new (allocator_) HArrayLength(object, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +00002880 UpdateLocal(instruction.VRegA_12x(), current_block_->GetLastInstruction());
2881 break;
2882 }
2883
2884 case Instruction::CONST_STRING: {
Andreas Gampe8a0128a2016-11-28 07:38:35 -08002885 dex::StringIndex string_index(instruction.VRegB_21c());
Vladimir Marko28e012a2017-12-07 11:22:59 +00002886 BuildLoadString(string_index, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002887 UpdateLocal(instruction.VRegA_21c(), current_block_->GetLastInstruction());
2888 break;
2889 }
2890
2891 case Instruction::CONST_STRING_JUMBO: {
Andreas Gampe8a0128a2016-11-28 07:38:35 -08002892 dex::StringIndex string_index(instruction.VRegB_31c());
Vladimir Marko28e012a2017-12-07 11:22:59 +00002893 BuildLoadString(string_index, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002894 UpdateLocal(instruction.VRegA_31c(), current_block_->GetLastInstruction());
2895 break;
2896 }
2897
2898 case Instruction::CONST_CLASS: {
Andreas Gampea5b09a62016-11-17 15:21:22 -08002899 dex::TypeIndex type_index(instruction.VRegB_21c());
Nicolas Geoffray83c8e272017-01-31 14:36:37 +00002900 BuildLoadClass(type_index, dex_pc);
David Brazdildee58d62016-04-07 09:54:26 +00002901 UpdateLocal(instruction.VRegA_21c(), current_block_->GetLastInstruction());
2902 break;
2903 }
2904
2905 case Instruction::MOVE_EXCEPTION: {
Vladimir Markoca6fff82017-10-03 14:49:14 +01002906 AppendInstruction(new (allocator_) HLoadException(dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +00002907 UpdateLocal(instruction.VRegA_11x(), current_block_->GetLastInstruction());
Vladimir Markoca6fff82017-10-03 14:49:14 +01002908 AppendInstruction(new (allocator_) HClearException(dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +00002909 break;
2910 }
2911
2912 case Instruction::THROW: {
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002913 HInstruction* exception = LoadLocal(instruction.VRegA_11x(), DataType::Type::kReference);
Vladimir Markoca6fff82017-10-03 14:49:14 +01002914 AppendInstruction(new (allocator_) HThrow(exception, dex_pc));
David Brazdildee58d62016-04-07 09:54:26 +00002915 // We finished building this block. Set the current block to null to avoid
2916 // adding dead instructions to it.
2917 current_block_ = nullptr;
2918 break;
2919 }
2920
2921 case Instruction::INSTANCE_OF: {
2922 uint8_t destination = instruction.VRegA_22c();
2923 uint8_t reference = instruction.VRegB_22c();
Andreas Gampea5b09a62016-11-17 15:21:22 -08002924 dex::TypeIndex type_index(instruction.VRegC_22c());
David Brazdildee58d62016-04-07 09:54:26 +00002925 BuildTypeCheck(instruction, destination, reference, type_index, dex_pc);
2926 break;
2927 }
2928
2929 case Instruction::CHECK_CAST: {
2930 uint8_t reference = instruction.VRegA_21c();
Andreas Gampea5b09a62016-11-17 15:21:22 -08002931 dex::TypeIndex type_index(instruction.VRegB_21c());
David Brazdildee58d62016-04-07 09:54:26 +00002932 BuildTypeCheck(instruction, -1, reference, type_index, dex_pc);
2933 break;
2934 }
2935
2936 case Instruction::MONITOR_ENTER: {
Vladimir Markoca6fff82017-10-03 14:49:14 +01002937 AppendInstruction(new (allocator_) HMonitorOperation(
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002938 LoadLocal(instruction.VRegA_11x(), DataType::Type::kReference),
David Brazdildee58d62016-04-07 09:54:26 +00002939 HMonitorOperation::OperationKind::kEnter,
2940 dex_pc));
2941 break;
2942 }
2943
2944 case Instruction::MONITOR_EXIT: {
Vladimir Markoca6fff82017-10-03 14:49:14 +01002945 AppendInstruction(new (allocator_) HMonitorOperation(
Vladimir Marko0ebe0d82017-09-21 22:50:39 +01002946 LoadLocal(instruction.VRegA_11x(), DataType::Type::kReference),
David Brazdildee58d62016-04-07 09:54:26 +00002947 HMonitorOperation::OperationKind::kExit,
2948 dex_pc));
2949 break;
2950 }
2951
2952 case Instruction::SPARSE_SWITCH:
2953 case Instruction::PACKED_SWITCH: {
2954 BuildSwitch(instruction, dex_pc);
2955 break;
2956 }
2957
2958 default:
2959 VLOG(compiler) << "Did not compile "
David Sehr709b0702016-10-13 09:12:37 -07002960 << dex_file_->PrettyMethod(dex_compilation_unit_->GetDexMethodIndex())
David Brazdildee58d62016-04-07 09:54:26 +00002961 << " because of unhandled instruction "
2962 << instruction.Name();
Igor Murashkin1e065a52017-08-09 13:20:34 -07002963 MaybeRecordStat(compilation_stats_,
2964 MethodCompilationStat::kNotCompiledUnhandledInstruction);
David Brazdildee58d62016-04-07 09:54:26 +00002965 return false;
2966 }
2967 return true;
2968} // NOLINT(readability/fn_size)
2969
Vladimir Marko8d6768d2017-03-14 10:13:21 +00002970ObjPtr<mirror::Class> HInstructionBuilder::LookupResolvedType(
2971 dex::TypeIndex type_index,
2972 const DexCompilationUnit& compilation_unit) const {
Vladimir Marko666ee3d2017-12-11 18:37:36 +00002973 return compilation_unit.GetClassLinker()->LookupResolvedType(
Vladimir Marko8d6768d2017-03-14 10:13:21 +00002974 type_index, compilation_unit.GetDexCache().Get(), compilation_unit.GetClassLoader().Get());
2975}
2976
2977ObjPtr<mirror::Class> HInstructionBuilder::LookupReferrerClass() const {
2978 // TODO: Cache the result in a Handle<mirror::Class>.
2979 const DexFile::MethodId& method_id =
2980 dex_compilation_unit_->GetDexFile()->GetMethodId(dex_compilation_unit_->GetDexMethodIndex());
2981 return LookupResolvedType(method_id.class_idx_, *dex_compilation_unit_);
2982}
2983
David Brazdildee58d62016-04-07 09:54:26 +00002984} // namespace art