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Nicolas Geoffray818f2102014-02-18 16:43:35 +00001/*
Nicolas Geoffray818f2102014-02-18 16:43:35 +00002 * Copyright (C) 2014 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
Nicolas Geoffraye5038322014-07-04 09:41:32 +010017#include "builder.h"
18
Mathieu Chartierc7853442015-03-27 14:35:38 -070019#include "art_field-inl.h"
Andreas Gamped881df52014-11-24 23:28:39 -080020#include "base/logging.h"
Nicolas Geoffraye5038322014-07-04 09:41:32 +010021#include "class_linker.h"
Jeff Hao848f70a2014-01-15 13:49:50 -080022#include "dex/verified_method.h"
Nicolas Geoffray8ccc3f52014-03-19 10:34:11 +000023#include "dex_file-inl.h"
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +000024#include "dex_instruction-inl.h"
Roland Levillain4c0eb422015-04-24 16:43:49 +010025#include "dex/verified_method.h"
Nicolas Geoffraye5038322014-07-04 09:41:32 +010026#include "driver/compiler_driver-inl.h"
Vladimir Marko20f85592015-03-19 10:07:02 +000027#include "driver/compiler_options.h"
Nicolas Geoffraye5038322014-07-04 09:41:32 +010028#include "mirror/class_loader.h"
29#include "mirror/dex_cache.h"
Nicolas Geoffray818f2102014-02-18 16:43:35 +000030#include "nodes.h"
Nicolas Geoffray8ccc3f52014-03-19 10:34:11 +000031#include "primitive.h"
Nicolas Geoffraye5038322014-07-04 09:41:32 +010032#include "scoped_thread_state_change.h"
33#include "thread.h"
Vladimir Marko58155012015-08-19 12:49:41 +000034#include "utils/dex_cache_arrays_layout-inl.h"
Nicolas Geoffray818f2102014-02-18 16:43:35 +000035
36namespace art {
37
Nicolas Geoffrayf12feb82014-07-17 18:32:41 +010038/**
39 * Helper class to add HTemporary instructions. This class is used when
40 * converting a DEX instruction to multiple HInstruction, and where those
41 * instructions do not die at the following instruction, but instead spans
42 * multiple instructions.
43 */
44class Temporaries : public ValueObject {
45 public:
Calin Juravlef97f9fb2014-11-11 15:38:19 +000046 explicit Temporaries(HGraph* graph) : graph_(graph), index_(0) {}
Nicolas Geoffrayf12feb82014-07-17 18:32:41 +010047
48 void Add(HInstruction* instruction) {
Calin Juravlef97f9fb2014-11-11 15:38:19 +000049 HInstruction* temp = new (graph_->GetArena()) HTemporary(index_);
Nicolas Geoffrayf12feb82014-07-17 18:32:41 +010050 instruction->GetBlock()->AddInstruction(temp);
Calin Juravlef97f9fb2014-11-11 15:38:19 +000051
Nicolas Geoffrayf12feb82014-07-17 18:32:41 +010052 DCHECK(temp->GetPrevious() == instruction);
Calin Juravlef97f9fb2014-11-11 15:38:19 +000053
54 size_t offset;
55 if (instruction->GetType() == Primitive::kPrimLong
56 || instruction->GetType() == Primitive::kPrimDouble) {
57 offset = 2;
58 } else {
59 offset = 1;
60 }
61 index_ += offset;
62
63 graph_->UpdateTemporariesVRegSlots(index_);
Nicolas Geoffrayf12feb82014-07-17 18:32:41 +010064 }
65
66 private:
67 HGraph* const graph_;
68
Nicolas Geoffrayf12feb82014-07-17 18:32:41 +010069 // Current index in the temporary stack, updated by `Add`.
70 size_t index_;
71};
72
Andreas Gamped881df52014-11-24 23:28:39 -080073class SwitchTable : public ValueObject {
74 public:
75 SwitchTable(const Instruction& instruction, uint32_t dex_pc, bool sparse)
76 : instruction_(instruction), dex_pc_(dex_pc), sparse_(sparse) {
77 int32_t table_offset = instruction.VRegB_31t();
78 const uint16_t* table = reinterpret_cast<const uint16_t*>(&instruction) + table_offset;
79 if (sparse) {
80 CHECK_EQ(table[0], static_cast<uint16_t>(Instruction::kSparseSwitchSignature));
81 } else {
82 CHECK_EQ(table[0], static_cast<uint16_t>(Instruction::kPackedSwitchSignature));
83 }
84 num_entries_ = table[1];
85 values_ = reinterpret_cast<const int32_t*>(&table[2]);
86 }
87
88 uint16_t GetNumEntries() const {
89 return num_entries_;
90 }
91
Andreas Gampee4d4d322014-12-04 09:09:57 -080092 void CheckIndex(size_t index) const {
93 if (sparse_) {
94 // In a sparse table, we have num_entries_ keys and num_entries_ values, in that order.
95 DCHECK_LT(index, 2 * static_cast<size_t>(num_entries_));
96 } else {
97 // In a packed table, we have the starting key and num_entries_ values.
98 DCHECK_LT(index, 1 + static_cast<size_t>(num_entries_));
99 }
100 }
101
Andreas Gamped881df52014-11-24 23:28:39 -0800102 int32_t GetEntryAt(size_t index) const {
Andreas Gampee4d4d322014-12-04 09:09:57 -0800103 CheckIndex(index);
Andreas Gamped881df52014-11-24 23:28:39 -0800104 return values_[index];
105 }
106
107 uint32_t GetDexPcForIndex(size_t index) const {
Andreas Gampee4d4d322014-12-04 09:09:57 -0800108 CheckIndex(index);
Andreas Gamped881df52014-11-24 23:28:39 -0800109 return dex_pc_ +
110 (reinterpret_cast<const int16_t*>(values_ + index) -
111 reinterpret_cast<const int16_t*>(&instruction_));
112 }
113
Andreas Gampee4d4d322014-12-04 09:09:57 -0800114 // Index of the first value in the table.
115 size_t GetFirstValueIndex() const {
116 if (sparse_) {
117 // In a sparse table, we have num_entries_ keys and num_entries_ values, in that order.
118 return num_entries_;
119 } else {
120 // In a packed table, we have the starting key and num_entries_ values.
121 return 1;
122 }
123 }
124
Andreas Gamped881df52014-11-24 23:28:39 -0800125 private:
126 const Instruction& instruction_;
127 const uint32_t dex_pc_;
128
129 // Whether this is a sparse-switch table (or a packed-switch one).
130 const bool sparse_;
131
132 // This can't be const as it needs to be computed off of the given instruction, and complicated
133 // expressions in the initializer list seemed very ugly.
134 uint16_t num_entries_;
135
136 const int32_t* values_;
137
138 DISALLOW_COPY_AND_ASSIGN(SwitchTable);
139};
140
Nicolas Geoffrayf583e592014-04-07 13:20:42 +0100141void HGraphBuilder::InitializeLocals(uint16_t count) {
142 graph_->SetNumberOfVRegs(count);
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000143 locals_.SetSize(count);
144 for (int i = 0; i < count; i++) {
145 HLocal* local = new (arena_) HLocal(i);
146 entry_block_->AddInstruction(local);
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +0000147 locals_.Put(i, local);
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000148 }
149}
150
Nicolas Geoffray52e832b2014-11-06 15:15:31 +0000151void HGraphBuilder::InitializeParameters(uint16_t number_of_parameters) {
Nicolas Geoffrayf583e592014-04-07 13:20:42 +0100152 // dex_compilation_unit_ is null only when unit testing.
153 if (dex_compilation_unit_ == nullptr) {
Nicolas Geoffray52e832b2014-11-06 15:15:31 +0000154 return;
Nicolas Geoffrayf583e592014-04-07 13:20:42 +0100155 }
156
157 graph_->SetNumberOfInVRegs(number_of_parameters);
158 const char* shorty = dex_compilation_unit_->GetShorty();
159 int locals_index = locals_.Size() - number_of_parameters;
Nicolas Geoffrayf583e592014-04-07 13:20:42 +0100160 int parameter_index = 0;
161
162 if (!dex_compilation_unit_->IsStatic()) {
163 // Add the implicit 'this' argument, not expressed in the signature.
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +0100164 HParameterValue* parameter =
Calin Juravle10e244f2015-01-26 18:54:32 +0000165 new (arena_) HParameterValue(parameter_index++, Primitive::kPrimNot, true);
Nicolas Geoffrayb55f8352014-04-07 15:26:35 +0100166 entry_block_->AddInstruction(parameter);
Nicolas Geoffrayf583e592014-04-07 13:20:42 +0100167 HLocal* local = GetLocalAt(locals_index++);
Nicolas Geoffrayb55f8352014-04-07 15:26:35 +0100168 entry_block_->AddInstruction(new (arena_) HStoreLocal(local, parameter));
Nicolas Geoffrayf583e592014-04-07 13:20:42 +0100169 number_of_parameters--;
170 }
171
172 uint32_t pos = 1;
173 for (int i = 0; i < number_of_parameters; i++) {
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +0100174 HParameterValue* parameter =
175 new (arena_) HParameterValue(parameter_index++, Primitive::GetType(shorty[pos++]));
176 entry_block_->AddInstruction(parameter);
177 HLocal* local = GetLocalAt(locals_index++);
178 // Store the parameter value in the local that the dex code will use
179 // to reference that parameter.
180 entry_block_->AddInstruction(new (arena_) HStoreLocal(local, parameter));
181 bool is_wide = (parameter->GetType() == Primitive::kPrimLong)
182 || (parameter->GetType() == Primitive::kPrimDouble);
183 if (is_wide) {
184 i++;
185 locals_index++;
186 parameter_index++;
Nicolas Geoffrayf583e592014-04-07 13:20:42 +0100187 }
188 }
Nicolas Geoffrayf583e592014-04-07 13:20:42 +0100189}
190
Nicolas Geoffrayb55f8352014-04-07 15:26:35 +0100191template<typename T>
Calin Juravle225ff812014-11-13 16:46:39 +0000192void HGraphBuilder::If_22t(const Instruction& instruction, uint32_t dex_pc) {
Nicolas Geoffrayfbc695f2014-09-15 15:33:30 +0000193 int32_t target_offset = instruction.GetTargetOffset();
David Brazdil852eaff2015-02-02 15:23:05 +0000194 HBasicBlock* branch_target = FindBlockStartingAt(dex_pc + target_offset);
195 HBasicBlock* fallthrough_target = FindBlockStartingAt(dex_pc + instruction.SizeInCodeUnits());
196 DCHECK(branch_target != nullptr);
197 DCHECK(fallthrough_target != nullptr);
198 PotentiallyAddSuspendCheck(branch_target, dex_pc);
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +0100199 HInstruction* first = LoadLocal(instruction.VRegA(), Primitive::kPrimInt);
200 HInstruction* second = LoadLocal(instruction.VRegB(), Primitive::kPrimInt);
Dave Allison20dfc792014-06-16 20:44:29 -0700201 T* comparison = new (arena_) T(first, second);
202 current_block_->AddInstruction(comparison);
203 HInstruction* ifinst = new (arena_) HIf(comparison);
204 current_block_->AddInstruction(ifinst);
David Brazdil852eaff2015-02-02 15:23:05 +0000205 current_block_->AddSuccessor(branch_target);
206 current_block_->AddSuccessor(fallthrough_target);
Dave Allison20dfc792014-06-16 20:44:29 -0700207 current_block_ = nullptr;
208}
209
210template<typename T>
Calin Juravle225ff812014-11-13 16:46:39 +0000211void HGraphBuilder::If_21t(const Instruction& instruction, uint32_t dex_pc) {
Nicolas Geoffrayfbc695f2014-09-15 15:33:30 +0000212 int32_t target_offset = instruction.GetTargetOffset();
David Brazdil852eaff2015-02-02 15:23:05 +0000213 HBasicBlock* branch_target = FindBlockStartingAt(dex_pc + target_offset);
214 HBasicBlock* fallthrough_target = FindBlockStartingAt(dex_pc + instruction.SizeInCodeUnits());
215 DCHECK(branch_target != nullptr);
216 DCHECK(fallthrough_target != nullptr);
217 PotentiallyAddSuspendCheck(branch_target, dex_pc);
Dave Allison20dfc792014-06-16 20:44:29 -0700218 HInstruction* value = LoadLocal(instruction.VRegA(), Primitive::kPrimInt);
David Brazdil8d5b8b22015-03-24 10:51:52 +0000219 T* comparison = new (arena_) T(value, graph_->GetIntConstant(0));
Dave Allison20dfc792014-06-16 20:44:29 -0700220 current_block_->AddInstruction(comparison);
221 HInstruction* ifinst = new (arena_) HIf(comparison);
222 current_block_->AddInstruction(ifinst);
David Brazdil852eaff2015-02-02 15:23:05 +0000223 current_block_->AddSuccessor(branch_target);
224 current_block_->AddSuccessor(fallthrough_target);
Nicolas Geoffrayb55f8352014-04-07 15:26:35 +0100225 current_block_ = nullptr;
226}
227
Calin Juravle48c2b032014-12-09 18:11:36 +0000228void HGraphBuilder::MaybeRecordStat(MethodCompilationStat compilation_stat) {
229 if (compilation_stats_ != nullptr) {
230 compilation_stats_->RecordStat(compilation_stat);
231 }
232}
233
David Brazdil1b498722015-03-31 11:37:18 +0100234bool HGraphBuilder::SkipCompilation(const DexFile::CodeItem& code_item,
Calin Juravle48c2b032014-12-09 18:11:36 +0000235 size_t number_of_branches) {
236 const CompilerOptions& compiler_options = compiler_driver_->GetCompilerOptions();
Nicolas Geoffray43a539f2014-12-02 10:19:51 +0000237 CompilerOptions::CompilerFilter compiler_filter = compiler_options.GetCompilerFilter();
238 if (compiler_filter == CompilerOptions::kEverything) {
239 return false;
240 }
241
David Brazdil1b498722015-03-31 11:37:18 +0100242 if (compiler_options.IsHugeMethod(code_item.insns_size_in_code_units_)) {
Calin Juravle48c2b032014-12-09 18:11:36 +0000243 VLOG(compiler) << "Skip compilation of huge method "
244 << PrettyMethod(dex_compilation_unit_->GetDexMethodIndex(), *dex_file_)
David Brazdil1b498722015-03-31 11:37:18 +0100245 << ": " << code_item.insns_size_in_code_units_ << " code units";
Calin Juravle48c2b032014-12-09 18:11:36 +0000246 MaybeRecordStat(MethodCompilationStat::kNotCompiledHugeMethod);
Nicolas Geoffray43a539f2014-12-02 10:19:51 +0000247 return true;
248 }
249
250 // If it's large and contains no branches, it's likely to be machine generated initialization.
David Brazdil1b498722015-03-31 11:37:18 +0100251 if (compiler_options.IsLargeMethod(code_item.insns_size_in_code_units_)
252 && (number_of_branches == 0)) {
Calin Juravle48c2b032014-12-09 18:11:36 +0000253 VLOG(compiler) << "Skip compilation of large method with no branch "
254 << PrettyMethod(dex_compilation_unit_->GetDexMethodIndex(), *dex_file_)
David Brazdil1b498722015-03-31 11:37:18 +0100255 << ": " << code_item.insns_size_in_code_units_ << " code units";
Calin Juravle48c2b032014-12-09 18:11:36 +0000256 MaybeRecordStat(MethodCompilationStat::kNotCompiledLargeMethodNoBranches);
Nicolas Geoffray43a539f2014-12-02 10:19:51 +0000257 return true;
258 }
259
260 return false;
261}
262
David Brazdilbff75032015-07-08 17:26:51 +0000263static const DexFile::TryItem* GetTryItem(HBasicBlock* block,
264 const DexFile::CodeItem& code_item,
265 const ArenaBitVector& can_block_throw) {
266 DCHECK(!block->IsSingleTryBoundary());
267
268 // Block does not contain throwing instructions. Even if it is covered by
269 // a TryItem, we will consider it not in a try block.
270 if (!can_block_throw.IsBitSet(block->GetBlockId())) {
271 return nullptr;
272 }
273
274 // Instructions in the block may throw. Find a TryItem covering this block.
275 int32_t try_item_idx = DexFile::FindTryItem(code_item, block->GetDexPc());
David Brazdil6cd788f2015-07-08 16:44:00 +0100276 return (try_item_idx == -1) ? nullptr : DexFile::GetTryItems(code_item, try_item_idx);
David Brazdilfc6a86a2015-06-26 10:33:45 +0000277}
278
279void HGraphBuilder::CreateBlocksForTryCatch(const DexFile::CodeItem& code_item) {
280 if (code_item.tries_size_ == 0) {
281 return;
282 }
283
284 // Create branch targets at the start/end of the TryItem range. These are
285 // places where the program might fall through into/out of the a block and
286 // where TryBoundary instructions will be inserted later. Other edges which
287 // enter/exit the try blocks are a result of branches/switches.
288 for (size_t idx = 0; idx < code_item.tries_size_; ++idx) {
289 const DexFile::TryItem* try_item = DexFile::GetTryItems(code_item, idx);
290 uint32_t dex_pc_start = try_item->start_addr_;
291 uint32_t dex_pc_end = dex_pc_start + try_item->insn_count_;
292 FindOrCreateBlockStartingAt(dex_pc_start);
293 if (dex_pc_end < code_item.insns_size_in_code_units_) {
294 // TODO: Do not create block if the last instruction cannot fall through.
295 FindOrCreateBlockStartingAt(dex_pc_end);
296 } else {
297 // The TryItem spans until the very end of the CodeItem (or beyond if
298 // invalid) and therefore cannot have any code afterwards.
299 }
300 }
301
302 // Create branch targets for exception handlers.
303 const uint8_t* handlers_ptr = DexFile::GetCatchHandlerData(code_item, 0);
304 uint32_t handlers_size = DecodeUnsignedLeb128(&handlers_ptr);
305 for (uint32_t idx = 0; idx < handlers_size; ++idx) {
306 CatchHandlerIterator iterator(handlers_ptr);
307 for (; iterator.HasNext(); iterator.Next()) {
308 uint32_t address = iterator.GetHandlerAddress();
309 HBasicBlock* block = FindOrCreateBlockStartingAt(address);
David Brazdilec16f792015-08-19 15:04:01 +0100310 block->SetTryCatchInformation(
311 new (arena_) TryCatchInformation(iterator.GetHandlerTypeIndex(), *dex_file_));
David Brazdilfc6a86a2015-06-26 10:33:45 +0000312 }
313 handlers_ptr = iterator.EndDataPointer();
314 }
315}
316
David Brazdil56e1acc2015-06-30 15:41:36 +0100317void HGraphBuilder::SplitTryBoundaryEdge(HBasicBlock* predecessor,
318 HBasicBlock* successor,
319 HTryBoundary::BoundaryKind kind,
320 const DexFile::CodeItem& code_item,
321 const DexFile::TryItem& try_item) {
322 // Split the edge with a single TryBoundary instruction.
323 HTryBoundary* try_boundary = new (arena_) HTryBoundary(kind);
324 HBasicBlock* try_entry_block = graph_->SplitEdge(predecessor, successor);
325 try_entry_block->AddInstruction(try_boundary);
326
327 // Link the TryBoundary to the handlers of `try_item`.
328 for (CatchHandlerIterator it(code_item, try_item); it.HasNext(); it.Next()) {
329 try_boundary->AddExceptionHandler(FindBlockStartingAt(it.GetHandlerAddress()));
330 }
331}
332
David Brazdilfc6a86a2015-06-26 10:33:45 +0000333void HGraphBuilder::InsertTryBoundaryBlocks(const DexFile::CodeItem& code_item) {
334 if (code_item.tries_size_ == 0) {
335 return;
336 }
337
David Brazdil72783ff2015-07-09 14:36:05 +0100338 // Bit vector stores information on which blocks contain throwing instructions.
339 // Must be expandable because catch blocks may be split into two.
340 ArenaBitVector can_block_throw(arena_, graph_->GetBlocks().Size(), /* expandable */ true);
David Brazdilbff75032015-07-08 17:26:51 +0000341
342 // Scan blocks and mark those which contain throwing instructions.
David Brazdil72783ff2015-07-09 14:36:05 +0100343 for (size_t block_id = 0, e = graph_->GetBlocks().Size(); block_id < e; ++block_id) {
David Brazdilbff75032015-07-08 17:26:51 +0000344 HBasicBlock* block = graph_->GetBlocks().Get(block_id);
David Brazdil72783ff2015-07-09 14:36:05 +0100345 bool can_throw = false;
David Brazdilbff75032015-07-08 17:26:51 +0000346 for (HInstructionIterator insn(block->GetInstructions()); !insn.Done(); insn.Advance()) {
347 if (insn.Current()->CanThrow()) {
David Brazdil72783ff2015-07-09 14:36:05 +0100348 can_throw = true;
David Brazdilbff75032015-07-08 17:26:51 +0000349 break;
350 }
351 }
David Brazdil72783ff2015-07-09 14:36:05 +0100352
353 if (can_throw) {
354 if (block->IsCatchBlock()) {
355 // Catch blocks are always considered an entry point into the TryItem in
356 // order to avoid splitting exceptional edges. We split the block after
357 // the move-exception (if present) and mark the first part non-throwing.
358 // Later on, a TryBoundary will be inserted between the two blocks.
359 HInstruction* first_insn = block->GetFirstInstruction();
360 if (first_insn->IsLoadException()) {
361 // Catch block starts with a LoadException. Split the block after the
David Brazdilcb1c0552015-08-04 16:22:25 +0100362 // StoreLocal and ClearException which must come after the load.
David Brazdil72783ff2015-07-09 14:36:05 +0100363 DCHECK(first_insn->GetNext()->IsStoreLocal());
David Brazdilcb1c0552015-08-04 16:22:25 +0100364 DCHECK(first_insn->GetNext()->GetNext()->IsClearException());
365 block = block->SplitBefore(first_insn->GetNext()->GetNext()->GetNext());
David Brazdil72783ff2015-07-09 14:36:05 +0100366 } else {
367 // Catch block does not load the exception. Split at the beginning to
368 // create an empty catch block.
369 block = block->SplitBefore(first_insn);
370 }
371 }
372 can_block_throw.SetBit(block->GetBlockId());
373 }
David Brazdilbff75032015-07-08 17:26:51 +0000374 }
375
David Brazdil281a6322015-07-03 10:34:57 +0100376 // Iterate over all blocks, find those covered by some TryItem and:
377 // (a) split edges which enter/exit the try range,
378 // (b) create TryBoundary instructions in the new blocks,
379 // (c) link the new blocks to corresponding exception handlers.
380 // We cannot iterate only over blocks in `branch_targets_` because switch-case
381 // blocks share the same dex_pc.
David Brazdil72783ff2015-07-09 14:36:05 +0100382 for (size_t block_id = 0, e = graph_->GetBlocks().Size(); block_id < e; ++block_id) {
David Brazdil281a6322015-07-03 10:34:57 +0100383 HBasicBlock* try_block = graph_->GetBlocks().Get(block_id);
David Brazdilfc6a86a2015-06-26 10:33:45 +0000384
David Brazdil281a6322015-07-03 10:34:57 +0100385 // TryBoundary blocks are added at the end of the list and not iterated over.
386 DCHECK(!try_block->IsSingleTryBoundary());
David Brazdilfc6a86a2015-06-26 10:33:45 +0000387
David Brazdil281a6322015-07-03 10:34:57 +0100388 // Find the TryItem for this block.
David Brazdilbff75032015-07-08 17:26:51 +0000389 const DexFile::TryItem* try_item = GetTryItem(try_block, code_item, can_block_throw);
390 if (try_item == nullptr) {
David Brazdil281a6322015-07-03 10:34:57 +0100391 continue;
392 }
David Brazdil281a6322015-07-03 10:34:57 +0100393
David Brazdil72783ff2015-07-09 14:36:05 +0100394 // Catch blocks were split earlier and cannot throw.
395 DCHECK(!try_block->IsCatchBlock());
396
397 // Find predecessors which are not covered by the same TryItem range. Such
398 // edges enter the try block and will have a TryBoundary inserted.
399 for (size_t i = 0; i < try_block->GetPredecessors().Size(); ++i) {
400 HBasicBlock* predecessor = try_block->GetPredecessors().Get(i);
401 if (predecessor->IsSingleTryBoundary()) {
402 // The edge was already split because of an exit from a neighbouring
403 // TryItem. We split it again and insert an entry point.
404 if (kIsDebugBuild) {
405 HTryBoundary* last_insn = predecessor->GetLastInstruction()->AsTryBoundary();
406 const DexFile::TryItem* predecessor_try_item =
407 GetTryItem(predecessor->GetSinglePredecessor(), code_item, can_block_throw);
408 DCHECK(!last_insn->IsEntry());
409 DCHECK_EQ(last_insn->GetNormalFlowSuccessor(), try_block);
410 DCHECK(try_block->IsFirstIndexOfPredecessor(predecessor, i));
411 DCHECK_NE(try_item, predecessor_try_item);
David Brazdilfc6a86a2015-06-26 10:33:45 +0000412 }
David Brazdil72783ff2015-07-09 14:36:05 +0100413 } else if (GetTryItem(predecessor, code_item, can_block_throw) != try_item) {
414 // This is an entry point into the TryItem and the edge has not been
415 // split yet. That means that `predecessor` is not in a TryItem, or
416 // it is in a different TryItem and we happened to iterate over this
417 // block first. We split the edge and insert an entry point.
418 } else {
419 // Not an edge on the boundary of the try block.
420 continue;
David Brazdilfc6a86a2015-06-26 10:33:45 +0000421 }
David Brazdil72783ff2015-07-09 14:36:05 +0100422 SplitTryBoundaryEdge(predecessor, try_block, HTryBoundary::kEntry, code_item, *try_item);
David Brazdilfc6a86a2015-06-26 10:33:45 +0000423 }
David Brazdil281a6322015-07-03 10:34:57 +0100424
425 // Find successors which are not covered by the same TryItem range. Such
426 // edges exit the try block and will have a TryBoundary inserted.
427 for (size_t i = 0; i < try_block->GetSuccessors().Size(); ++i) {
428 HBasicBlock* successor = try_block->GetSuccessors().Get(i);
429 if (successor->IsCatchBlock()) {
430 // A catch block is always considered an entry point into its TryItem.
431 // We therefore assume this is an exit point, regardless of whether
432 // the catch block is in a different TryItem or not.
433 } else if (successor->IsSingleTryBoundary()) {
434 // The edge was already split because of an entry into a neighbouring
435 // TryItem. We split it again and insert an exit.
436 if (kIsDebugBuild) {
437 HTryBoundary* last_insn = successor->GetLastInstruction()->AsTryBoundary();
David Brazdilbff75032015-07-08 17:26:51 +0000438 const DexFile::TryItem* successor_try_item =
439 GetTryItem(last_insn->GetNormalFlowSuccessor(), code_item, can_block_throw);
David Brazdil281a6322015-07-03 10:34:57 +0100440 DCHECK_EQ(try_block, successor->GetSinglePredecessor());
441 DCHECK(last_insn->IsEntry());
David Brazdilbff75032015-07-08 17:26:51 +0000442 DCHECK_NE(try_item, successor_try_item);
David Brazdil281a6322015-07-03 10:34:57 +0100443 }
David Brazdilbff75032015-07-08 17:26:51 +0000444 } else if (GetTryItem(successor, code_item, can_block_throw) != try_item) {
David Brazdil281a6322015-07-03 10:34:57 +0100445 // This is an exit out of the TryItem and the edge has not been split
446 // yet. That means that either `successor` is not in a TryItem, or it
447 // is in a different TryItem and we happened to iterate over this
448 // block first. We split the edge and insert an exit.
449 HInstruction* last_instruction = try_block->GetLastInstruction();
450 if (last_instruction->IsReturn() || last_instruction->IsReturnVoid()) {
451 DCHECK_EQ(successor, exit_block_);
452 // Control flow exits the try block with a Return(Void). Because
453 // splitting the edge would invalidate the invariant that Return
454 // always jumps to Exit, we move the Return outside the try block.
455 successor = try_block->SplitBefore(last_instruction);
456 }
457 } else {
458 // Not an edge on the boundary of the try block.
459 continue;
460 }
David Brazdilbff75032015-07-08 17:26:51 +0000461 SplitTryBoundaryEdge(try_block, successor, HTryBoundary::kExit, code_item, *try_item);
David Brazdil281a6322015-07-03 10:34:57 +0100462 }
David Brazdilfc6a86a2015-06-26 10:33:45 +0000463 }
464}
465
David Brazdil5e8b1372015-01-23 14:39:08 +0000466bool HGraphBuilder::BuildGraph(const DexFile::CodeItem& code_item) {
467 DCHECK(graph_->GetBlocks().IsEmpty());
468
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000469 const uint16_t* code_ptr = code_item.insns_;
470 const uint16_t* code_end = code_item.insns_ + code_item.insns_size_in_code_units_;
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +0100471 code_start_ = code_ptr;
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000472
Nicolas Geoffraybe9a92a2014-02-25 14:22:56 +0000473 // Setup the graph with the entry block and exit block.
Nicolas Geoffray3c049742014-09-24 18:10:46 +0100474 entry_block_ = new (arena_) HBasicBlock(graph_, 0);
Nicolas Geoffray818f2102014-02-18 16:43:35 +0000475 graph_->AddBlock(entry_block_);
Nicolas Geoffray3c049742014-09-24 18:10:46 +0100476 exit_block_ = new (arena_) HBasicBlock(graph_, kNoDexPc);
Nicolas Geoffray787c3072014-03-17 10:20:19 +0000477 graph_->SetEntryBlock(entry_block_);
478 graph_->SetExitBlock(exit_block_);
Nicolas Geoffray818f2102014-02-18 16:43:35 +0000479
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000480 InitializeLocals(code_item.registers_size_);
Nicolas Geoffraye53798a2014-12-01 10:31:54 +0000481 graph_->SetMaximumNumberOfOutVRegs(code_item.outs_size_);
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000482
Nicolas Geoffray43a539f2014-12-02 10:19:51 +0000483 // Compute the number of dex instructions, blocks, and branches. We will
484 // check these values against limits given to the compiler.
Nicolas Geoffray43a539f2014-12-02 10:19:51 +0000485 size_t number_of_branches = 0;
486
Nicolas Geoffraybe9a92a2014-02-25 14:22:56 +0000487 // To avoid splitting blocks, we compute ahead of time the instructions that
488 // start a new block, and create these blocks.
Calin Juravle702d2602015-04-30 19:28:21 +0100489 if (!ComputeBranchTargets(code_ptr, code_end, &number_of_branches)) {
490 MaybeRecordStat(MethodCompilationStat::kNotCompiledBranchOutsideMethodCode);
491 return false;
492 }
Nicolas Geoffray43a539f2014-12-02 10:19:51 +0000493
494 // Note that the compiler driver is null when unit testing.
David Brazdil1b498722015-03-31 11:37:18 +0100495 if ((compiler_driver_ != nullptr) && SkipCompilation(code_item, number_of_branches)) {
David Brazdil5e8b1372015-01-23 14:39:08 +0000496 return false;
Nicolas Geoffray43a539f2014-12-02 10:19:51 +0000497 }
Nicolas Geoffray818f2102014-02-18 16:43:35 +0000498
David Brazdilfc6a86a2015-06-26 10:33:45 +0000499 CreateBlocksForTryCatch(code_item);
Nicolas Geoffrayde58ab22014-11-05 12:46:03 +0000500
Nicolas Geoffray52e832b2014-11-06 15:15:31 +0000501 InitializeParameters(code_item.ins_size_);
Nicolas Geoffrayf583e592014-04-07 13:20:42 +0100502
Calin Juravle225ff812014-11-13 16:46:39 +0000503 size_t dex_pc = 0;
Nicolas Geoffray818f2102014-02-18 16:43:35 +0000504 while (code_ptr < code_end) {
Calin Juravle225ff812014-11-13 16:46:39 +0000505 // Update the current block if dex_pc starts a new block.
506 MaybeUpdateCurrentBlock(dex_pc);
Nicolas Geoffray818f2102014-02-18 16:43:35 +0000507 const Instruction& instruction = *Instruction::At(code_ptr);
Calin Juravle48c2b032014-12-09 18:11:36 +0000508 if (!AnalyzeDexInstruction(instruction, dex_pc)) {
David Brazdil5e8b1372015-01-23 14:39:08 +0000509 return false;
Calin Juravle48c2b032014-12-09 18:11:36 +0000510 }
Calin Juravle225ff812014-11-13 16:46:39 +0000511 dex_pc += instruction.SizeInCodeUnits();
Nicolas Geoffray818f2102014-02-18 16:43:35 +0000512 code_ptr += instruction.SizeInCodeUnits();
513 }
514
David Brazdilfc6a86a2015-06-26 10:33:45 +0000515 // Add Exit to the exit block.
David Brazdil3e187382015-06-26 09:59:52 +0000516 exit_block_->AddInstruction(new (arena_) HExit());
Nicolas Geoffrayfbc695f2014-09-15 15:33:30 +0000517 // Add the suspend check to the entry block.
518 entry_block_->AddInstruction(new (arena_) HSuspendCheck(0));
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000519 entry_block_->AddInstruction(new (arena_) HGoto());
David Brazdilbff75032015-07-08 17:26:51 +0000520 // Add the exit block at the end.
521 graph_->AddBlock(exit_block_);
David Brazdil5e8b1372015-01-23 14:39:08 +0000522
David Brazdilfc6a86a2015-06-26 10:33:45 +0000523 // Iterate over blocks covered by TryItems and insert TryBoundaries at entry
524 // and exit points. This requires all control-flow instructions and
525 // non-exceptional edges to have been created.
526 InsertTryBoundaryBlocks(code_item);
527
David Brazdil5e8b1372015-01-23 14:39:08 +0000528 return true;
Nicolas Geoffray818f2102014-02-18 16:43:35 +0000529}
530
David Brazdilfc6a86a2015-06-26 10:33:45 +0000531void HGraphBuilder::MaybeUpdateCurrentBlock(size_t dex_pc) {
532 HBasicBlock* block = FindBlockStartingAt(dex_pc);
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +0000533 if (block == nullptr) {
534 return;
535 }
Nicolas Geoffraybe9a92a2014-02-25 14:22:56 +0000536
537 if (current_block_ != nullptr) {
538 // Branching instructions clear current_block, so we know
539 // the last instruction of the current block is not a branching
540 // instruction. We add an unconditional goto to the found block.
541 current_block_->AddInstruction(new (arena_) HGoto());
542 current_block_->AddSuccessor(block);
543 }
544 graph_->AddBlock(block);
545 current_block_ = block;
546}
547
Calin Juravle702d2602015-04-30 19:28:21 +0100548bool HGraphBuilder::ComputeBranchTargets(const uint16_t* code_ptr,
Nicolas Geoffray43a539f2014-12-02 10:19:51 +0000549 const uint16_t* code_end,
Nicolas Geoffray43a539f2014-12-02 10:19:51 +0000550 size_t* number_of_branches) {
Nicolas Geoffraybe9a92a2014-02-25 14:22:56 +0000551 branch_targets_.SetSize(code_end - code_ptr);
552
553 // Create the first block for the dex instructions, single successor of the entry block.
Nicolas Geoffray3c049742014-09-24 18:10:46 +0100554 HBasicBlock* block = new (arena_) HBasicBlock(graph_, 0);
Nicolas Geoffraybe9a92a2014-02-25 14:22:56 +0000555 branch_targets_.Put(0, block);
556 entry_block_->AddSuccessor(block);
557
558 // Iterate over all instructions and find branching instructions. Create blocks for
559 // the locations these instructions branch to.
Andreas Gamped881df52014-11-24 23:28:39 -0800560 uint32_t dex_pc = 0;
Nicolas Geoffraybe9a92a2014-02-25 14:22:56 +0000561 while (code_ptr < code_end) {
562 const Instruction& instruction = *Instruction::At(code_ptr);
563 if (instruction.IsBranch()) {
Nicolas Geoffray43a539f2014-12-02 10:19:51 +0000564 (*number_of_branches)++;
Calin Juravle225ff812014-11-13 16:46:39 +0000565 int32_t target = instruction.GetTargetOffset() + dex_pc;
Nicolas Geoffraybe9a92a2014-02-25 14:22:56 +0000566 // Create a block for the target instruction.
David Brazdilfc6a86a2015-06-26 10:33:45 +0000567 FindOrCreateBlockStartingAt(target);
568
Calin Juravle225ff812014-11-13 16:46:39 +0000569 dex_pc += instruction.SizeInCodeUnits();
Nicolas Geoffraybe9a92a2014-02-25 14:22:56 +0000570 code_ptr += instruction.SizeInCodeUnits();
Calin Juravle702d2602015-04-30 19:28:21 +0100571
David Brazdilfe659462015-06-24 14:23:56 +0100572 if (instruction.CanFlowThrough()) {
573 if (code_ptr >= code_end) {
Calin Juravle702d2602015-04-30 19:28:21 +0100574 // In the normal case we should never hit this but someone can artificially forge a dex
575 // file to fall-through out the method code. In this case we bail out compilation.
576 return false;
David Brazdilfc6a86a2015-06-26 10:33:45 +0000577 } else {
578 FindOrCreateBlockStartingAt(dex_pc);
Calin Juravle702d2602015-04-30 19:28:21 +0100579 }
Nicolas Geoffraybe9a92a2014-02-25 14:22:56 +0000580 }
Andreas Gampee4d4d322014-12-04 09:09:57 -0800581 } else if (instruction.IsSwitch()) {
582 SwitchTable table(instruction, dex_pc, instruction.Opcode() == Instruction::SPARSE_SWITCH);
Andreas Gamped881df52014-11-24 23:28:39 -0800583
584 uint16_t num_entries = table.GetNumEntries();
585
Andreas Gampee4d4d322014-12-04 09:09:57 -0800586 // In a packed-switch, the entry at index 0 is the starting key. In a sparse-switch, the
587 // entry at index 0 is the first key, and values are after *all* keys.
588 size_t offset = table.GetFirstValueIndex();
589
590 // Use a larger loop counter type to avoid overflow issues.
591 for (size_t i = 0; i < num_entries; ++i) {
Andreas Gamped881df52014-11-24 23:28:39 -0800592 // The target of the case.
Andreas Gampee4d4d322014-12-04 09:09:57 -0800593 uint32_t target = dex_pc + table.GetEntryAt(i + offset);
David Brazdilfc6a86a2015-06-26 10:33:45 +0000594 FindOrCreateBlockStartingAt(target);
Andreas Gamped881df52014-11-24 23:28:39 -0800595
David Brazdil281a6322015-07-03 10:34:57 +0100596 // Create a block for the switch-case logic. The block gets the dex_pc
597 // of the SWITCH instruction because it is part of its semantics.
598 block = new (arena_) HBasicBlock(graph_, dex_pc);
599 branch_targets_.Put(table.GetDexPcForIndex(i), block);
Andreas Gamped881df52014-11-24 23:28:39 -0800600 }
601
602 // Fall-through. Add a block if there is more code afterwards.
603 dex_pc += instruction.SizeInCodeUnits();
604 code_ptr += instruction.SizeInCodeUnits();
Calin Juravle702d2602015-04-30 19:28:21 +0100605 if (code_ptr >= code_end) {
606 // In the normal case we should never hit this but someone can artificially forge a dex
607 // file to fall-through out the method code. In this case we bail out compilation.
608 // (A switch can fall-through so we don't need to check CanFlowThrough().)
609 return false;
David Brazdilfc6a86a2015-06-26 10:33:45 +0000610 } else {
611 FindOrCreateBlockStartingAt(dex_pc);
Andreas Gamped881df52014-11-24 23:28:39 -0800612 }
Nicolas Geoffraybe9a92a2014-02-25 14:22:56 +0000613 } else {
614 code_ptr += instruction.SizeInCodeUnits();
Calin Juravle225ff812014-11-13 16:46:39 +0000615 dex_pc += instruction.SizeInCodeUnits();
Nicolas Geoffraybe9a92a2014-02-25 14:22:56 +0000616 }
617 }
Calin Juravle702d2602015-04-30 19:28:21 +0100618 return true;
Nicolas Geoffraybe9a92a2014-02-25 14:22:56 +0000619}
620
David Brazdilfc6a86a2015-06-26 10:33:45 +0000621HBasicBlock* HGraphBuilder::FindBlockStartingAt(int32_t dex_pc) const {
622 DCHECK_GE(dex_pc, 0);
623 DCHECK_LT(static_cast<size_t>(dex_pc), branch_targets_.Size());
624 return branch_targets_.Get(dex_pc);
625}
626
627HBasicBlock* HGraphBuilder::FindOrCreateBlockStartingAt(int32_t dex_pc) {
628 HBasicBlock* block = FindBlockStartingAt(dex_pc);
629 if (block == nullptr) {
630 block = new (arena_) HBasicBlock(graph_, dex_pc);
631 branch_targets_.Put(dex_pc, block);
632 }
633 return block;
Nicolas Geoffraybe9a92a2014-02-25 14:22:56 +0000634}
635
Nicolas Geoffrayf583e592014-04-07 13:20:42 +0100636template<typename T>
Roland Levillain88cb1752014-10-20 16:36:47 +0100637void HGraphBuilder::Unop_12x(const Instruction& instruction, Primitive::Type type) {
638 HInstruction* first = LoadLocal(instruction.VRegB(), type);
639 current_block_->AddInstruction(new (arena_) T(type, first));
640 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
641}
642
Roland Levillaindff1f282014-11-05 14:15:05 +0000643void HGraphBuilder::Conversion_12x(const Instruction& instruction,
644 Primitive::Type input_type,
Roland Levillain624279f2014-12-04 11:54:28 +0000645 Primitive::Type result_type,
646 uint32_t dex_pc) {
Roland Levillaindff1f282014-11-05 14:15:05 +0000647 HInstruction* first = LoadLocal(instruction.VRegB(), input_type);
Roland Levillain624279f2014-12-04 11:54:28 +0000648 current_block_->AddInstruction(new (arena_) HTypeConversion(result_type, first, dex_pc));
Roland Levillaindff1f282014-11-05 14:15:05 +0000649 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
650}
651
Roland Levillain88cb1752014-10-20 16:36:47 +0100652template<typename T>
Nicolas Geoffray412f10c2014-06-19 10:00:34 +0100653void HGraphBuilder::Binop_23x(const Instruction& instruction, Primitive::Type type) {
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +0100654 HInstruction* first = LoadLocal(instruction.VRegB(), type);
655 HInstruction* second = LoadLocal(instruction.VRegC(), type);
656 current_block_->AddInstruction(new (arena_) T(type, first, second));
Nicolas Geoffrayf583e592014-04-07 13:20:42 +0100657 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
658}
659
660template<typename T>
Calin Juravled6fb6cf2014-11-11 19:07:44 +0000661void HGraphBuilder::Binop_23x(const Instruction& instruction,
662 Primitive::Type type,
663 uint32_t dex_pc) {
664 HInstruction* first = LoadLocal(instruction.VRegB(), type);
665 HInstruction* second = LoadLocal(instruction.VRegC(), type);
666 current_block_->AddInstruction(new (arena_) T(type, first, second, dex_pc));
667 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
668}
669
670template<typename T>
Calin Juravle9aec02f2014-11-18 23:06:35 +0000671void HGraphBuilder::Binop_23x_shift(const Instruction& instruction,
672 Primitive::Type type) {
673 HInstruction* first = LoadLocal(instruction.VRegB(), type);
674 HInstruction* second = LoadLocal(instruction.VRegC(), Primitive::kPrimInt);
675 current_block_->AddInstruction(new (arena_) T(type, first, second));
676 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
677}
678
Calin Juravleddb7df22014-11-25 20:56:51 +0000679void HGraphBuilder::Binop_23x_cmp(const Instruction& instruction,
680 Primitive::Type type,
Mark Mendellc4701932015-04-10 13:18:51 -0400681 ComparisonBias bias,
Alexey Frunze4dda3372015-06-01 18:31:49 -0700682 uint32_t dex_pc) {
Calin Juravleddb7df22014-11-25 20:56:51 +0000683 HInstruction* first = LoadLocal(instruction.VRegB(), type);
684 HInstruction* second = LoadLocal(instruction.VRegC(), type);
Alexey Frunze4dda3372015-06-01 18:31:49 -0700685 current_block_->AddInstruction(new (arena_) HCompare(type, first, second, bias, dex_pc));
Calin Juravleddb7df22014-11-25 20:56:51 +0000686 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
687}
688
Calin Juravle9aec02f2014-11-18 23:06:35 +0000689template<typename T>
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +0100690void HGraphBuilder::Binop_12x(const Instruction& instruction, Primitive::Type type) {
691 HInstruction* first = LoadLocal(instruction.VRegA(), type);
692 HInstruction* second = LoadLocal(instruction.VRegB(), type);
693 current_block_->AddInstruction(new (arena_) T(type, first, second));
Nicolas Geoffrayf583e592014-04-07 13:20:42 +0100694 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
695}
696
697template<typename T>
Calin Juravle9aec02f2014-11-18 23:06:35 +0000698void HGraphBuilder::Binop_12x_shift(const Instruction& instruction, Primitive::Type type) {
699 HInstruction* first = LoadLocal(instruction.VRegA(), type);
700 HInstruction* second = LoadLocal(instruction.VRegB(), Primitive::kPrimInt);
701 current_block_->AddInstruction(new (arena_) T(type, first, second));
702 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
703}
704
705template<typename T>
Calin Juravled6fb6cf2014-11-11 19:07:44 +0000706void HGraphBuilder::Binop_12x(const Instruction& instruction,
707 Primitive::Type type,
708 uint32_t dex_pc) {
709 HInstruction* first = LoadLocal(instruction.VRegA(), type);
710 HInstruction* second = LoadLocal(instruction.VRegB(), type);
711 current_block_->AddInstruction(new (arena_) T(type, first, second, dex_pc));
712 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
713}
714
715template<typename T>
Nicolas Geoffrayf583e592014-04-07 13:20:42 +0100716void HGraphBuilder::Binop_22s(const Instruction& instruction, bool reverse) {
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +0100717 HInstruction* first = LoadLocal(instruction.VRegB(), Primitive::kPrimInt);
David Brazdil8d5b8b22015-03-24 10:51:52 +0000718 HInstruction* second = graph_->GetIntConstant(instruction.VRegC_22s());
Nicolas Geoffrayf583e592014-04-07 13:20:42 +0100719 if (reverse) {
720 std::swap(first, second);
721 }
722 current_block_->AddInstruction(new (arena_) T(Primitive::kPrimInt, first, second));
723 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
724}
725
726template<typename T>
727void HGraphBuilder::Binop_22b(const Instruction& instruction, bool reverse) {
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +0100728 HInstruction* first = LoadLocal(instruction.VRegB(), Primitive::kPrimInt);
David Brazdil8d5b8b22015-03-24 10:51:52 +0000729 HInstruction* second = graph_->GetIntConstant(instruction.VRegC_22b());
Nicolas Geoffrayf583e592014-04-07 13:20:42 +0100730 if (reverse) {
731 std::swap(first, second);
732 }
733 current_block_->AddInstruction(new (arena_) T(Primitive::kPrimInt, first, second));
734 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
735}
736
Calin Juravle0c25d102015-04-20 14:49:09 +0100737static bool RequiresConstructorBarrier(const DexCompilationUnit* cu, const CompilerDriver& driver) {
Calin Juravle27df7582015-04-17 19:12:31 +0100738 Thread* self = Thread::Current();
Calin Juravle0c25d102015-04-20 14:49:09 +0100739 return cu->IsConstructor()
740 && driver.RequiresConstructorBarrier(self, cu->GetDexFile(), cu->GetClassDefIndex());
Calin Juravle27df7582015-04-17 19:12:31 +0100741}
742
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +0100743void HGraphBuilder::BuildReturn(const Instruction& instruction, Primitive::Type type) {
744 if (type == Primitive::kPrimVoid) {
Calin Juravle3cd4fc82015-05-14 15:15:42 +0100745 if (graph_->ShouldGenerateConstructorBarrier()) {
746 // The compilation unit is null during testing.
747 if (dex_compilation_unit_ != nullptr) {
748 DCHECK(RequiresConstructorBarrier(dex_compilation_unit_, *compiler_driver_))
749 << "Inconsistent use of ShouldGenerateConstructorBarrier. Should not generate a barrier.";
750 }
Calin Juravle27df7582015-04-17 19:12:31 +0100751 current_block_->AddInstruction(new (arena_) HMemoryBarrier(kStoreStore));
752 }
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +0100753 current_block_->AddInstruction(new (arena_) HReturnVoid());
754 } else {
755 HInstruction* value = LoadLocal(instruction.VRegA(), type);
756 current_block_->AddInstruction(new (arena_) HReturn(value));
757 }
758 current_block_->AddSuccessor(exit_block_);
759 current_block_ = nullptr;
760}
761
Calin Juravle68ad6492015-08-18 17:08:12 +0100762static InvokeType GetInvokeTypeFromOpCode(Instruction::Code opcode) {
763 switch (opcode) {
764 case Instruction::INVOKE_STATIC:
765 case Instruction::INVOKE_STATIC_RANGE:
766 return kStatic;
767 case Instruction::INVOKE_DIRECT:
768 case Instruction::INVOKE_DIRECT_RANGE:
769 return kDirect;
770 case Instruction::INVOKE_VIRTUAL:
771 case Instruction::INVOKE_VIRTUAL_QUICK:
772 case Instruction::INVOKE_VIRTUAL_RANGE:
773 case Instruction::INVOKE_VIRTUAL_RANGE_QUICK:
774 return kVirtual;
775 case Instruction::INVOKE_INTERFACE:
776 case Instruction::INVOKE_INTERFACE_RANGE:
777 return kInterface;
778 case Instruction::INVOKE_SUPER_RANGE:
779 case Instruction::INVOKE_SUPER:
780 return kSuper;
781 default:
782 LOG(FATAL) << "Unexpected invoke opcode: " << opcode;
783 UNREACHABLE();
Nicolas Geoffray2e7cd752015-07-10 11:38:52 +0100784 }
Calin Juravle68ad6492015-08-18 17:08:12 +0100785}
786
787bool HGraphBuilder::BuildInvoke(const Instruction& instruction,
788 uint32_t dex_pc,
789 uint32_t method_idx,
790 uint32_t number_of_vreg_arguments,
791 bool is_range,
792 uint32_t* args,
793 uint32_t register_index) {
794 InvokeType original_invoke_type = GetInvokeTypeFromOpCode(instruction.Opcode());
795 InvokeType optimized_invoke_type = original_invoke_type;
796 const char* descriptor = dex_file_->GetMethodShorty(method_idx);
797 Primitive::Type return_type = Primitive::GetType(descriptor[0]);
798
799 // Remove the return type from the 'proto'.
800 size_t number_of_arguments = strlen(descriptor) - 1;
801 if (original_invoke_type != kStatic) { // instance call
802 // One extra argument for 'this'.
803 number_of_arguments++;
804 }
805
806 MethodReference target_method(dex_file_, method_idx);
807 int32_t table_index;
808 uintptr_t direct_code;
809 uintptr_t direct_method;
810
811 if (!compiler_driver_->ComputeInvokeInfo(dex_compilation_unit_,
812 dex_pc,
813 true /* update_stats */,
814 true /* enable_devirtualization */,
815 &optimized_invoke_type,
816 &target_method,
817 &table_index,
818 &direct_code,
819 &direct_method)) {
820 VLOG(compiler) << "Did not compile "
821 << PrettyMethod(dex_compilation_unit_->GetDexMethodIndex(), *dex_file_)
822 << " because a method call could not be resolved";
823 MaybeRecordStat(MethodCompilationStat::kNotCompiledUnresolvedMethod);
824 return false;
825 }
826
827 DCHECK(optimized_invoke_type != kSuper);
828
829 // Special handling for string init.
830 int32_t string_init_offset = 0;
831 bool is_string_init = compiler_driver_->IsStringInit(method_idx, dex_file_,
832 &string_init_offset);
833
834 // Potential class initialization check, in the case of a static method call.
835 HClinitCheck* clinit_check = nullptr;
836 HInvoke* invoke = nullptr;
837
838 if (is_string_init
839 || optimized_invoke_type == kDirect
840 || optimized_invoke_type == kStatic) {
841 // By default, consider that the called method implicitly requires
842 // an initialization check of its declaring method.
843 HInvokeStaticOrDirect::ClinitCheckRequirement clinit_check_requirement
844 = HInvokeStaticOrDirect::ClinitCheckRequirement::kImplicit;
845 if (optimized_invoke_type == kStatic && !is_string_init) {
846 clinit_check = ProcessClinitCheckForInvoke(dex_pc, method_idx, &clinit_check_requirement);
Nicolas Geoffray2e7cd752015-07-10 11:38:52 +0100847 }
Calin Juravle68ad6492015-08-18 17:08:12 +0100848
849 // Replace calls to String.<init> with StringFactory.
850 if (is_string_init) {
851 return_type = Primitive::kPrimNot;
852 number_of_arguments--;
853 optimized_invoke_type = kStatic;
854 }
855
856 HInvokeStaticOrDirect::DispatchInfo dispatch_info = ComputeDispatchInfo(is_string_init,
857 string_init_offset,
858 target_method,
859 direct_method,
860 direct_code);
861 invoke = new (arena_) HInvokeStaticOrDirect(arena_,
862 number_of_arguments,
863 return_type,
864 dex_pc,
865 method_idx,
866 target_method,
867 dispatch_info,
868 original_invoke_type,
869 optimized_invoke_type,
870 clinit_check_requirement);
871 } else if (optimized_invoke_type == kVirtual) {
872 invoke = new (arena_) HInvokeVirtual(arena_,
873 number_of_arguments,
874 return_type,
875 dex_pc,
876 method_idx,
877 table_index);
Nicolas Geoffray2e7cd752015-07-10 11:38:52 +0100878 } else {
Calin Juravle68ad6492015-08-18 17:08:12 +0100879 DCHECK_EQ(optimized_invoke_type, kInterface);
880 invoke = new (arena_) HInvokeInterface(arena_,
881 number_of_arguments,
882 return_type,
883 dex_pc,
884 method_idx,
885 table_index);
Nicolas Geoffray2e7cd752015-07-10 11:38:52 +0100886 }
Calin Juravle68ad6492015-08-18 17:08:12 +0100887
Calin Juravle0eedd7e2015-08-20 14:48:00 +0100888 return SetupArgumentsAndAddInvoke(invoke,
889 number_of_vreg_arguments,
890 args,
891 register_index,
892 is_range,
893 descriptor,
894 clinit_check));
Calin Juravle68ad6492015-08-18 17:08:12 +0100895}
896
897HClinitCheck* HGraphBuilder::ProcessClinitCheckForInvoke(
898 uint32_t dex_pc,
899 uint32_t method_idx,
900 HInvokeStaticOrDirect::ClinitCheckRequirement* clinit_check_requirement) {
901 ScopedObjectAccess soa(Thread::Current());
902 StackHandleScope<4> hs(soa.Self());
903 Handle<mirror::DexCache> dex_cache(hs.NewHandle(
904 dex_compilation_unit_->GetClassLinker()->FindDexCache(
905 *dex_compilation_unit_->GetDexFile())));
906 Handle<mirror::ClassLoader> class_loader(hs.NewHandle(
907 soa.Decode<mirror::ClassLoader*>(dex_compilation_unit_->GetClassLoader())));
908 ArtMethod* resolved_method = compiler_driver_->ResolveMethod(
909 soa, dex_cache, class_loader, dex_compilation_unit_, method_idx, InvokeType::kStatic);
910
911 DCHECK(resolved_method != nullptr);
912
913 const DexFile& outer_dex_file = *outer_compilation_unit_->GetDexFile();
914 Handle<mirror::DexCache> outer_dex_cache(hs.NewHandle(
915 outer_compilation_unit_->GetClassLinker()->FindDexCache(outer_dex_file)));
916 Handle<mirror::Class> outer_class(hs.NewHandle(GetOutermostCompilingClass()));
917
918 // The index at which the method's class is stored in the DexCache's type array.
919 uint32_t storage_index = DexFile::kDexNoIndex;
920 bool is_outer_class = (resolved_method->GetDeclaringClass() == outer_class.Get());
921 if (is_outer_class) {
922 storage_index = outer_class->GetDexTypeIndex();
923 } else if (outer_dex_cache.Get() == dex_cache.Get()) {
924 // Get `storage_index` from IsClassOfStaticMethodAvailableToReferrer.
925 compiler_driver_->IsClassOfStaticMethodAvailableToReferrer(outer_dex_cache.Get(),
926 GetCompilingClass(),
927 resolved_method,
928 method_idx,
929 &storage_index);
930 }
931
932 HClinitCheck* clinit_check = nullptr;
933
934 if (!outer_class->IsInterface()
935 && outer_class->IsSubClass(resolved_method->GetDeclaringClass())) {
936 // If the outer class is the declaring class or a subclass
937 // of the declaring class, no class initialization is needed
938 // before the static method call.
939 // Note that in case of inlining, we do not need to add clinit checks
940 // to calls that satisfy this subclass check with any inlined methods. This
941 // will be detected by the optimization passes.
942 *clinit_check_requirement = HInvokeStaticOrDirect::ClinitCheckRequirement::kNone;
943 } else if (storage_index != DexFile::kDexNoIndex) {
944 // If the method's class type index is available, check
945 // whether we should add an explicit class initialization
946 // check for its declaring class before the static method call.
947
948 // TODO: find out why this check is needed.
949 bool is_in_dex_cache = compiler_driver_->CanAssumeTypeIsPresentInDexCache(
950 *outer_compilation_unit_->GetDexFile(), storage_index);
951 bool is_initialized =
952 resolved_method->GetDeclaringClass()->IsInitialized() && is_in_dex_cache;
953
954 if (is_initialized) {
955 *clinit_check_requirement = HInvokeStaticOrDirect::ClinitCheckRequirement::kNone;
956 } else {
957 *clinit_check_requirement = HInvokeStaticOrDirect::ClinitCheckRequirement::kExplicit;
958 HLoadClass* load_class = new (arena_) HLoadClass(
959 graph_->GetCurrentMethod(),
960 storage_index,
961 *dex_compilation_unit_->GetDexFile(),
962 is_outer_class,
963 dex_pc);
964 current_block_->AddInstruction(load_class);
965 clinit_check = new (arena_) HClinitCheck(load_class, dex_pc);
966 current_block_->AddInstruction(clinit_check);
967 }
968 }
969 return clinit_check;
Nicolas Geoffray2e7cd752015-07-10 11:38:52 +0100970}
971
Vladimir Marko58155012015-08-19 12:49:41 +0000972HInvokeStaticOrDirect::DispatchInfo HGraphBuilder::ComputeDispatchInfo(
973 bool is_string_init,
974 int32_t string_init_offset,
975 MethodReference target_method,
976 uintptr_t direct_method,
977 uintptr_t direct_code) {
978 HInvokeStaticOrDirect::MethodLoadKind method_load_kind;
979 HInvokeStaticOrDirect::CodePtrLocation code_ptr_location;
980 uint64_t method_load_data = 0u;
981 uint64_t direct_code_ptr = 0u;
982
983 if (is_string_init) {
984 // TODO: Use direct_method and direct_code for the appropriate StringFactory method.
985 method_load_kind = HInvokeStaticOrDirect::MethodLoadKind::kStringInit;
986 code_ptr_location = HInvokeStaticOrDirect::CodePtrLocation::kCallArtMethod;
987 method_load_data = string_init_offset;
988 } else if (target_method.dex_file == outer_compilation_unit_->GetDexFile() &&
989 target_method.dex_method_index == outer_compilation_unit_->GetDexMethodIndex()) {
990 method_load_kind = HInvokeStaticOrDirect::MethodLoadKind::kRecursive;
991 code_ptr_location = HInvokeStaticOrDirect::CodePtrLocation::kCallSelf;
992 } else {
993 if (direct_method != 0u) { // Should we use a direct pointer to the method?
994 if (direct_method != static_cast<uintptr_t>(-1)) { // Is the method pointer known now?
995 method_load_kind = HInvokeStaticOrDirect::MethodLoadKind::kDirectAddress;
996 method_load_data = direct_method;
997 } else { // The direct pointer will be known at link time.
998 method_load_kind = HInvokeStaticOrDirect::MethodLoadKind::kDirectAddressWithFixup;
999 }
1000 } else { // Use dex cache.
1001 DCHECK(target_method.dex_file == dex_compilation_unit_->GetDexFile());
1002 DexCacheArraysLayout layout =
1003 compiler_driver_->GetDexCacheArraysLayout(target_method.dex_file);
1004 if (layout.Valid()) { // Can we use PC-relative access to the dex cache arrays?
1005 method_load_kind = HInvokeStaticOrDirect::MethodLoadKind::kDexCachePcRelative;
1006 method_load_data = layout.MethodOffset(target_method.dex_method_index);
1007 } else { // We must go through the ArtMethod's pointer to resolved methods.
1008 method_load_kind = HInvokeStaticOrDirect::MethodLoadKind::kDexCacheViaMethod;
1009 }
1010 }
1011 if (direct_code != 0u) { // Should we use a direct pointer to the code?
1012 if (direct_code != static_cast<uintptr_t>(-1)) { // Is the code pointer known now?
1013 code_ptr_location = HInvokeStaticOrDirect::CodePtrLocation::kCallDirect;
1014 direct_code_ptr = direct_code;
1015 } else if (compiler_driver_->IsImage() ||
1016 target_method.dex_file == dex_compilation_unit_->GetDexFile()) {
1017 // Use PC-relative calls for invokes within a multi-dex oat file.
1018 // TODO: Recognize when the target dex file is within the current oat file for
1019 // app compilation. At the moment we recognize only the boot image as multi-dex.
1020 // NOTE: This will require changing the ARM backend which currently falls
1021 // through from kCallPCRelative to kDirectCodeFixup for different dex files.
1022 code_ptr_location = HInvokeStaticOrDirect::CodePtrLocation::kCallPCRelative;
1023 } else { // The direct pointer will be known at link time.
1024 // NOTE: This is used for app->boot calls when compiling an app against
1025 // a relocatable but not yet relocated image.
1026 code_ptr_location = HInvokeStaticOrDirect::CodePtrLocation::kCallDirectWithFixup;
1027 }
1028 } else { // We must use the code pointer from the ArtMethod.
1029 code_ptr_location = HInvokeStaticOrDirect::CodePtrLocation::kCallArtMethod;
1030 }
1031 }
1032
1033 if (graph_->IsDebuggable()) {
1034 // For debuggable apps always use the code pointer from ArtMethod
1035 // so that we don't circumvent instrumentation stubs if installed.
1036 code_ptr_location = HInvokeStaticOrDirect::CodePtrLocation::kCallArtMethod;
1037 }
1038
1039 return HInvokeStaticOrDirect::DispatchInfo {
1040 method_load_kind, code_ptr_location, method_load_data, direct_code_ptr };
1041}
1042
Calin Juravle0eedd7e2015-08-20 14:48:00 +01001043bool HGraphBuilder::SetupArgumentsAndAddInvoke(HInvoke* invoke,
1044 uint32_t number_of_vreg_arguments,
1045 uint32_t* args,
1046 uint32_t register_index,
1047 bool is_range,
1048 const char* descriptor,
1049 HClinitCheck* clinit_check) {
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001050 size_t start_index = 0;
Calin Juravle68ad6492015-08-18 17:08:12 +01001051 size_t argument_index = 0;
1052 uint32_t descriptor_index = 1; // Skip the return type.
1053
1054 bool is_instance_call = invoke->GetOriginalInvokeType() != InvokeType::kStatic;
1055 bool is_string_init = invoke->IsInvokeStaticOrDirect()
1056 && invoke->AsInvokeStaticOrDirect()->IsStringInit();
1057
1058 if (is_string_init) {
1059 start_index = 1;
1060 argument_index = 0;
1061 } else if (is_instance_call) {
1062 Temporaries temps(graph_);
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001063 HInstruction* arg = LoadLocal(is_range ? register_index : args[0], Primitive::kPrimNot);
Calin Juravle68ad6492015-08-18 17:08:12 +01001064 HNullCheck* null_check = new (arena_) HNullCheck(arg, invoke->GetDexPc());
Nicolas Geoffrayf12feb82014-07-17 18:32:41 +01001065 current_block_->AddInstruction(null_check);
1066 temps.Add(null_check);
1067 invoke->SetArgumentAt(0, null_check);
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001068 start_index = 1;
Calin Juravle68ad6492015-08-18 17:08:12 +01001069 argument_index = 1;
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001070 }
1071
Nicolas Geoffray2e335252015-06-18 11:11:27 +01001072 for (size_t i = start_index;
1073 // Make sure we don't go over the expected arguments or over the number of
1074 // dex registers given. If the instruction was seen as dead by the verifier,
1075 // it hasn't been properly checked.
Calin Juravle68ad6492015-08-18 17:08:12 +01001076 (i < number_of_vreg_arguments) && (argument_index < invoke->GetNumberOfArguments());
Nicolas Geoffray2e335252015-06-18 11:11:27 +01001077 i++, argument_index++) {
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001078 Primitive::Type type = Primitive::GetType(descriptor[descriptor_index++]);
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001079 bool is_wide = (type == Primitive::kPrimLong) || (type == Primitive::kPrimDouble);
Nicolas Geoffray2e335252015-06-18 11:11:27 +01001080 if (!is_range
1081 && is_wide
1082 && ((i + 1 == number_of_vreg_arguments) || (args[i] + 1 != args[i + 1]))) {
1083 // Longs and doubles should be in pairs, that is, sequential registers. The verifier should
1084 // reject any class where this is violated. However, the verifier only does these checks
1085 // on non trivially dead instructions, so we just bailout the compilation.
1086 VLOG(compiler) << "Did not compile "
1087 << PrettyMethod(dex_compilation_unit_->GetDexMethodIndex(), *dex_file_)
1088 << " because of non-sequential dex register pair in wide argument";
1089 MaybeRecordStat(MethodCompilationStat::kNotCompiledMalformedOpcode);
1090 return false;
1091 }
Nicolas Geoffrayabed4d02014-07-14 15:24:11 +01001092 HInstruction* arg = LoadLocal(is_range ? register_index + i : args[i], type);
1093 invoke->SetArgumentAt(argument_index, arg);
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001094 if (is_wide) {
Nicolas Geoffrayabed4d02014-07-14 15:24:11 +01001095 i++;
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001096 }
1097 }
Nicolas Geoffray2e335252015-06-18 11:11:27 +01001098
Calin Juravle68ad6492015-08-18 17:08:12 +01001099 if (argument_index != invoke->GetNumberOfArguments()) {
Nicolas Geoffray2e335252015-06-18 11:11:27 +01001100 VLOG(compiler) << "Did not compile "
1101 << PrettyMethod(dex_compilation_unit_->GetDexMethodIndex(), *dex_file_)
1102 << " because of wrong number of arguments in invoke instruction";
1103 MaybeRecordStat(MethodCompilationStat::kNotCompiledMalformedOpcode);
1104 return false;
1105 }
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001106
Nicolas Geoffray38207af2015-06-01 15:46:22 +01001107 if (invoke->IsInvokeStaticOrDirect()) {
1108 invoke->SetArgumentAt(argument_index, graph_->GetCurrentMethod());
1109 argument_index++;
1110 }
1111
Calin Juravle68ad6492015-08-18 17:08:12 +01001112 if (clinit_check != nullptr) {
Roland Levillain4c0eb422015-04-24 16:43:49 +01001113 // Add the class initialization check as last input of `invoke`.
Nicolas Geoffray2e7cd752015-07-10 11:38:52 +01001114 DCHECK(!is_string_init);
Calin Juravle68ad6492015-08-18 17:08:12 +01001115 DCHECK(invoke->IsInvokeStaticOrDirect());
1116 DCHECK(invoke->AsInvokeStaticOrDirect()->GetClinitCheckRequirement()
1117 == HInvokeStaticOrDirect::ClinitCheckRequirement::kExplicit);
Roland Levillain3e3d7332015-04-28 11:00:54 +01001118 invoke->SetArgumentAt(argument_index, clinit_check);
Nicolas Geoffray2e7cd752015-07-10 11:38:52 +01001119 argument_index++;
Roland Levillain4c0eb422015-04-24 16:43:49 +01001120 }
1121
Jeff Hao848f70a2014-01-15 13:49:50 -08001122 // Add move-result for StringFactory method.
1123 if (is_string_init) {
1124 uint32_t orig_this_reg = is_range ? register_index : args[0];
Nicolas Geoffray2e7cd752015-07-10 11:38:52 +01001125 HInstruction* fake_string = LoadLocal(orig_this_reg, Primitive::kPrimNot);
1126 invoke->SetArgumentAt(argument_index, fake_string);
Calin Juravle0eedd7e2015-08-20 14:48:00 +01001127 current_block_->AddInstruction(invoke);
Calin Juravle68ad6492015-08-18 17:08:12 +01001128 PotentiallySimplifyFakeString(orig_this_reg, invoke->GetDexPc(), invoke);
Calin Juravle0eedd7e2015-08-20 14:48:00 +01001129 } else {
1130 current_block_->AddInstruction(invoke);
Jeff Hao848f70a2014-01-15 13:49:50 -08001131 }
Calin Juravle0eedd7e2015-08-20 14:48:00 +01001132
1133 latest_result_ = invoke;
1134
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001135 return true;
1136}
1137
Calin Juravle68ad6492015-08-18 17:08:12 +01001138void HGraphBuilder::PotentiallySimplifyFakeString(uint16_t original_dex_register,
1139 uint32_t dex_pc,
1140 HInvoke* actual_string) {
1141 if (!graph_->IsDebuggable()) {
1142 // Notify that we cannot compile with baseline. The dex registers aliasing
1143 // with `original_dex_register` will be handled when we optimize
1144 // (see HInstructionSimplifer::VisitFakeString).
1145 can_use_baseline_for_string_init_ = false;
1146 return;
1147 }
1148 const VerifiedMethod* verified_method =
1149 compiler_driver_->GetVerifiedMethod(dex_file_, dex_compilation_unit_->GetDexMethodIndex());
1150 if (verified_method != nullptr) {
1151 UpdateLocal(original_dex_register, actual_string);
1152 const SafeMap<uint32_t, std::set<uint32_t>>& string_init_map =
1153 verified_method->GetStringInitPcRegMap();
1154 auto map_it = string_init_map.find(dex_pc);
1155 if (map_it != string_init_map.end()) {
1156 std::set<uint32_t> reg_set = map_it->second;
1157 for (auto set_it = reg_set.begin(); set_it != reg_set.end(); ++set_it) {
1158 HInstruction* load_local = LoadLocal(original_dex_register, Primitive::kPrimNot);
1159 UpdateLocal(*set_it, load_local);
1160 }
1161 }
1162 } else {
1163 can_use_baseline_for_string_init_ = false;
1164 }
1165}
1166
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01001167bool HGraphBuilder::BuildInstanceFieldAccess(const Instruction& instruction,
Calin Juravle225ff812014-11-13 16:46:39 +00001168 uint32_t dex_pc,
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01001169 bool is_put) {
Nicolas Geoffraye5038322014-07-04 09:41:32 +01001170 uint32_t source_or_dest_reg = instruction.VRegA_22c();
1171 uint32_t obj_reg = instruction.VRegB_22c();
Nicolas Geoffray9523a3e2015-07-17 11:51:28 +00001172 uint16_t field_index;
1173 if (instruction.IsQuickened()) {
1174 if (!CanDecodeQuickenedInfo()) {
1175 return false;
1176 }
1177 field_index = LookupQuickenedInfo(dex_pc);
1178 } else {
1179 field_index = instruction.VRegC_22c();
1180 }
Nicolas Geoffraye5038322014-07-04 09:41:32 +01001181
1182 ScopedObjectAccess soa(Thread::Current());
Mathieu Chartierc7853442015-03-27 14:35:38 -07001183 ArtField* resolved_field =
1184 compiler_driver_->ComputeInstanceFieldInfo(field_index, dex_compilation_unit_, is_put, soa);
Nicolas Geoffraye5038322014-07-04 09:41:32 +01001185
Mathieu Chartierc7853442015-03-27 14:35:38 -07001186 if (resolved_field == nullptr) {
Calin Juravle48c2b032014-12-09 18:11:36 +00001187 MaybeRecordStat(MethodCompilationStat::kNotCompiledUnresolvedField);
Nicolas Geoffraye5038322014-07-04 09:41:32 +01001188 return false;
1189 }
Calin Juravle52c48962014-12-16 17:02:57 +00001190
Nicolas Geoffrayabed4d02014-07-14 15:24:11 +01001191 Primitive::Type field_type = resolved_field->GetTypeAsPrimitiveType();
Nicolas Geoffrayabed4d02014-07-14 15:24:11 +01001192
Nicolas Geoffraye5038322014-07-04 09:41:32 +01001193 HInstruction* object = LoadLocal(obj_reg, Primitive::kPrimNot);
Calin Juravle225ff812014-11-13 16:46:39 +00001194 current_block_->AddInstruction(new (arena_) HNullCheck(object, dex_pc));
Nicolas Geoffraye5038322014-07-04 09:41:32 +01001195 if (is_put) {
Calin Juravlef97f9fb2014-11-11 15:38:19 +00001196 Temporaries temps(graph_);
Nicolas Geoffraye5038322014-07-04 09:41:32 +01001197 HInstruction* null_check = current_block_->GetLastInstruction();
1198 // We need one temporary for the null check.
1199 temps.Add(null_check);
Nicolas Geoffrayabed4d02014-07-14 15:24:11 +01001200 HInstruction* value = LoadLocal(source_or_dest_reg, field_type);
Nicolas Geoffraye5038322014-07-04 09:41:32 +01001201 current_block_->AddInstruction(new (arena_) HInstanceFieldSet(
1202 null_check,
1203 value,
Nicolas Geoffray39468442014-09-02 15:17:15 +01001204 field_type,
Calin Juravle52c48962014-12-16 17:02:57 +00001205 resolved_field->GetOffset(),
Guillaume "Vermeille" Sanchez104fd8a2015-05-20 17:52:13 +01001206 resolved_field->IsVolatile(),
1207 field_index,
1208 *dex_file_));
Nicolas Geoffraye5038322014-07-04 09:41:32 +01001209 } else {
1210 current_block_->AddInstruction(new (arena_) HInstanceFieldGet(
1211 current_block_->GetLastInstruction(),
Nicolas Geoffrayabed4d02014-07-14 15:24:11 +01001212 field_type,
Calin Juravle52c48962014-12-16 17:02:57 +00001213 resolved_field->GetOffset(),
Guillaume "Vermeille" Sanchez104fd8a2015-05-20 17:52:13 +01001214 resolved_field->IsVolatile(),
1215 field_index,
1216 *dex_file_));
Nicolas Geoffraye5038322014-07-04 09:41:32 +01001217
1218 UpdateLocal(source_or_dest_reg, current_block_->GetLastInstruction());
1219 }
1220 return true;
1221}
1222
Nicolas Geoffray30451742015-06-19 13:32:41 +01001223static mirror::Class* GetClassFrom(CompilerDriver* driver,
1224 const DexCompilationUnit& compilation_unit) {
Nicolas Geoffray9437b782015-03-25 10:08:51 +00001225 ScopedObjectAccess soa(Thread::Current());
1226 StackHandleScope<2> hs(soa.Self());
Nicolas Geoffray30451742015-06-19 13:32:41 +01001227 const DexFile& dex_file = *compilation_unit.GetDexFile();
Nicolas Geoffray9437b782015-03-25 10:08:51 +00001228 Handle<mirror::ClassLoader> class_loader(hs.NewHandle(
Nicolas Geoffray30451742015-06-19 13:32:41 +01001229 soa.Decode<mirror::ClassLoader*>(compilation_unit.GetClassLoader())));
1230 Handle<mirror::DexCache> dex_cache(hs.NewHandle(
1231 compilation_unit.GetClassLinker()->FindDexCache(dex_file)));
Nicolas Geoffray9437b782015-03-25 10:08:51 +00001232
Nicolas Geoffray30451742015-06-19 13:32:41 +01001233 return driver->ResolveCompilingMethodsClass(soa, dex_cache, class_loader, &compilation_unit);
1234}
1235
1236mirror::Class* HGraphBuilder::GetOutermostCompilingClass() const {
1237 return GetClassFrom(compiler_driver_, *outer_compilation_unit_);
1238}
1239
1240mirror::Class* HGraphBuilder::GetCompilingClass() const {
1241 return GetClassFrom(compiler_driver_, *dex_compilation_unit_);
Nicolas Geoffray9437b782015-03-25 10:08:51 +00001242}
1243
1244bool HGraphBuilder::IsOutermostCompilingClass(uint16_t type_index) const {
1245 ScopedObjectAccess soa(Thread::Current());
1246 StackHandleScope<4> hs(soa.Self());
1247 Handle<mirror::DexCache> dex_cache(hs.NewHandle(
1248 dex_compilation_unit_->GetClassLinker()->FindDexCache(*dex_compilation_unit_->GetDexFile())));
1249 Handle<mirror::ClassLoader> class_loader(hs.NewHandle(
1250 soa.Decode<mirror::ClassLoader*>(dex_compilation_unit_->GetClassLoader())));
1251 Handle<mirror::Class> cls(hs.NewHandle(compiler_driver_->ResolveClass(
1252 soa, dex_cache, class_loader, type_index, dex_compilation_unit_)));
Nicolas Geoffrayafd06412015-06-20 22:44:47 +01001253 Handle<mirror::Class> outer_class(hs.NewHandle(GetOutermostCompilingClass()));
Nicolas Geoffray9437b782015-03-25 10:08:51 +00001254
Nicolas Geoffrayafd06412015-06-20 22:44:47 +01001255 return outer_class.Get() == cls.Get();
Nicolas Geoffray9437b782015-03-25 10:08:51 +00001256}
1257
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01001258bool HGraphBuilder::BuildStaticFieldAccess(const Instruction& instruction,
Calin Juravle225ff812014-11-13 16:46:39 +00001259 uint32_t dex_pc,
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01001260 bool is_put) {
1261 uint32_t source_or_dest_reg = instruction.VRegA_21c();
1262 uint16_t field_index = instruction.VRegB_21c();
1263
Nicolas Geoffraye53798a2014-12-01 10:31:54 +00001264 ScopedObjectAccess soa(Thread::Current());
Mathieu Chartierc7853442015-03-27 14:35:38 -07001265 StackHandleScope<4> hs(soa.Self());
Nicolas Geoffraye53798a2014-12-01 10:31:54 +00001266 Handle<mirror::DexCache> dex_cache(hs.NewHandle(
1267 dex_compilation_unit_->GetClassLinker()->FindDexCache(*dex_compilation_unit_->GetDexFile())));
1268 Handle<mirror::ClassLoader> class_loader(hs.NewHandle(
1269 soa.Decode<mirror::ClassLoader*>(dex_compilation_unit_->GetClassLoader())));
Mathieu Chartierc7853442015-03-27 14:35:38 -07001270 ArtField* resolved_field = compiler_driver_->ResolveField(
1271 soa, dex_cache, class_loader, dex_compilation_unit_, field_index, true);
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01001272
Mathieu Chartierc7853442015-03-27 14:35:38 -07001273 if (resolved_field == nullptr) {
Calin Juravle48c2b032014-12-09 18:11:36 +00001274 MaybeRecordStat(MethodCompilationStat::kNotCompiledUnresolvedField);
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01001275 return false;
1276 }
1277
Nicolas Geoffray9437b782015-03-25 10:08:51 +00001278 const DexFile& outer_dex_file = *outer_compilation_unit_->GetDexFile();
1279 Handle<mirror::DexCache> outer_dex_cache(hs.NewHandle(
1280 outer_compilation_unit_->GetClassLinker()->FindDexCache(outer_dex_file)));
Nicolas Geoffray30451742015-06-19 13:32:41 +01001281 Handle<mirror::Class> outer_class(hs.NewHandle(GetOutermostCompilingClass()));
Nicolas Geoffraye53798a2014-12-01 10:31:54 +00001282
1283 // The index at which the field's class is stored in the DexCache's type array.
1284 uint32_t storage_index;
Nicolas Geoffray30451742015-06-19 13:32:41 +01001285 bool is_outer_class = (outer_class.Get() == resolved_field->GetDeclaringClass());
1286 if (is_outer_class) {
1287 storage_index = outer_class->GetDexTypeIndex();
Nicolas Geoffray9437b782015-03-25 10:08:51 +00001288 } else if (outer_dex_cache.Get() != dex_cache.Get()) {
Roland Levillain4c0eb422015-04-24 16:43:49 +01001289 // The compiler driver cannot currently understand multiple dex caches involved. Just bailout.
Nicolas Geoffraye53798a2014-12-01 10:31:54 +00001290 return false;
Nicolas Geoffray9437b782015-03-25 10:08:51 +00001291 } else {
1292 std::pair<bool, bool> pair = compiler_driver_->IsFastStaticField(
1293 outer_dex_cache.Get(),
Nicolas Geoffray30451742015-06-19 13:32:41 +01001294 GetCompilingClass(),
Mathieu Chartierc7853442015-03-27 14:35:38 -07001295 resolved_field,
Nicolas Geoffray9437b782015-03-25 10:08:51 +00001296 field_index,
1297 &storage_index);
1298 bool can_easily_access = is_put ? pair.second : pair.first;
1299 if (!can_easily_access) {
1300 return false;
1301 }
Nicolas Geoffraye53798a2014-12-01 10:31:54 +00001302 }
1303
1304 // TODO: find out why this check is needed.
1305 bool is_in_dex_cache = compiler_driver_->CanAssumeTypeIsPresentInDexCache(
Nicolas Geoffray6a816cf2015-03-24 16:17:56 +00001306 *outer_compilation_unit_->GetDexFile(), storage_index);
Nicolas Geoffraye53798a2014-12-01 10:31:54 +00001307 bool is_initialized = resolved_field->GetDeclaringClass()->IsInitialized() && is_in_dex_cache;
Nicolas Geoffraye53798a2014-12-01 10:31:54 +00001308
Nicolas Geoffray76b1e172015-05-27 17:18:33 +01001309 HLoadClass* constant = new (arena_) HLoadClass(graph_->GetCurrentMethod(),
1310 storage_index,
1311 *dex_compilation_unit_->GetDexFile(),
Nicolas Geoffray30451742015-06-19 13:32:41 +01001312 is_outer_class,
Nicolas Geoffray76b1e172015-05-27 17:18:33 +01001313 dex_pc);
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01001314 current_block_->AddInstruction(constant);
1315
1316 HInstruction* cls = constant;
Nicolas Geoffray30451742015-06-19 13:32:41 +01001317 if (!is_initialized && !is_outer_class) {
Calin Juravle225ff812014-11-13 16:46:39 +00001318 cls = new (arena_) HClinitCheck(constant, dex_pc);
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01001319 current_block_->AddInstruction(cls);
1320 }
1321
Nicolas Geoffraye53798a2014-12-01 10:31:54 +00001322 Primitive::Type field_type = resolved_field->GetTypeAsPrimitiveType();
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01001323 if (is_put) {
1324 // We need to keep the class alive before loading the value.
Calin Juravlef97f9fb2014-11-11 15:38:19 +00001325 Temporaries temps(graph_);
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01001326 temps.Add(cls);
1327 HInstruction* value = LoadLocal(source_or_dest_reg, field_type);
1328 DCHECK_EQ(value->GetType(), field_type);
Guillaume "Vermeille" Sanchez104fd8a2015-05-20 17:52:13 +01001329 current_block_->AddInstruction(new (arena_) HStaticFieldSet(cls,
1330 value,
1331 field_type,
1332 resolved_field->GetOffset(),
1333 resolved_field->IsVolatile(),
1334 field_index,
1335 *dex_file_));
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01001336 } else {
Guillaume "Vermeille" Sanchez104fd8a2015-05-20 17:52:13 +01001337 current_block_->AddInstruction(new (arena_) HStaticFieldGet(cls,
1338 field_type,
1339 resolved_field->GetOffset(),
1340 resolved_field->IsVolatile(),
1341 field_index,
1342 *dex_file_));
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01001343 UpdateLocal(source_or_dest_reg, current_block_->GetLastInstruction());
1344 }
1345 return true;
1346}
1347
Calin Juravlebacfec32014-11-14 15:54:36 +00001348void HGraphBuilder::BuildCheckedDivRem(uint16_t out_vreg,
1349 uint16_t first_vreg,
1350 int64_t second_vreg_or_constant,
1351 uint32_t dex_pc,
1352 Primitive::Type type,
1353 bool second_is_constant,
1354 bool isDiv) {
Calin Juravled6fb6cf2014-11-11 19:07:44 +00001355 DCHECK(type == Primitive::kPrimInt || type == Primitive::kPrimLong);
Calin Juravled0d48522014-11-04 16:40:20 +00001356
Calin Juravled6fb6cf2014-11-11 19:07:44 +00001357 HInstruction* first = LoadLocal(first_vreg, type);
1358 HInstruction* second = nullptr;
1359 if (second_is_constant) {
1360 if (type == Primitive::kPrimInt) {
David Brazdil8d5b8b22015-03-24 10:51:52 +00001361 second = graph_->GetIntConstant(second_vreg_or_constant);
Calin Juravled6fb6cf2014-11-11 19:07:44 +00001362 } else {
David Brazdil8d5b8b22015-03-24 10:51:52 +00001363 second = graph_->GetLongConstant(second_vreg_or_constant);
Calin Juravled6fb6cf2014-11-11 19:07:44 +00001364 }
1365 } else {
1366 second = LoadLocal(second_vreg_or_constant, type);
1367 }
1368
1369 if (!second_is_constant
1370 || (type == Primitive::kPrimInt && second->AsIntConstant()->GetValue() == 0)
1371 || (type == Primitive::kPrimLong && second->AsLongConstant()->GetValue() == 0)) {
1372 second = new (arena_) HDivZeroCheck(second, dex_pc);
Calin Juravlef97f9fb2014-11-11 15:38:19 +00001373 Temporaries temps(graph_);
Calin Juravled0d48522014-11-04 16:40:20 +00001374 current_block_->AddInstruction(second);
1375 temps.Add(current_block_->GetLastInstruction());
1376 }
1377
Calin Juravlebacfec32014-11-14 15:54:36 +00001378 if (isDiv) {
1379 current_block_->AddInstruction(new (arena_) HDiv(type, first, second, dex_pc));
1380 } else {
1381 current_block_->AddInstruction(new (arena_) HRem(type, first, second, dex_pc));
1382 }
Calin Juravled6fb6cf2014-11-11 19:07:44 +00001383 UpdateLocal(out_vreg, current_block_->GetLastInstruction());
Calin Juravled0d48522014-11-04 16:40:20 +00001384}
1385
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01001386void HGraphBuilder::BuildArrayAccess(const Instruction& instruction,
Calin Juravle225ff812014-11-13 16:46:39 +00001387 uint32_t dex_pc,
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01001388 bool is_put,
1389 Primitive::Type anticipated_type) {
1390 uint8_t source_or_dest_reg = instruction.VRegA_23x();
1391 uint8_t array_reg = instruction.VRegB_23x();
1392 uint8_t index_reg = instruction.VRegC_23x();
1393
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01001394 // We need one temporary for the null check, one for the index, and one for the length.
Calin Juravlef97f9fb2014-11-11 15:38:19 +00001395 Temporaries temps(graph_);
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01001396
1397 HInstruction* object = LoadLocal(array_reg, Primitive::kPrimNot);
Calin Juravle225ff812014-11-13 16:46:39 +00001398 object = new (arena_) HNullCheck(object, dex_pc);
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01001399 current_block_->AddInstruction(object);
1400 temps.Add(object);
1401
1402 HInstruction* length = new (arena_) HArrayLength(object);
1403 current_block_->AddInstruction(length);
1404 temps.Add(length);
1405 HInstruction* index = LoadLocal(index_reg, Primitive::kPrimInt);
Calin Juravle225ff812014-11-13 16:46:39 +00001406 index = new (arena_) HBoundsCheck(index, length, dex_pc);
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01001407 current_block_->AddInstruction(index);
1408 temps.Add(index);
1409 if (is_put) {
1410 HInstruction* value = LoadLocal(source_or_dest_reg, anticipated_type);
1411 // TODO: Insert a type check node if the type is Object.
Nicolas Geoffray39468442014-09-02 15:17:15 +01001412 current_block_->AddInstruction(new (arena_) HArraySet(
Calin Juravle225ff812014-11-13 16:46:39 +00001413 object, index, value, anticipated_type, dex_pc));
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01001414 } else {
1415 current_block_->AddInstruction(new (arena_) HArrayGet(object, index, anticipated_type));
1416 UpdateLocal(source_or_dest_reg, current_block_->GetLastInstruction());
1417 }
Mark Mendell1152c922015-04-24 17:06:35 -04001418 graph_->SetHasBoundsChecks(true);
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01001419}
1420
Calin Juravle225ff812014-11-13 16:46:39 +00001421void HGraphBuilder::BuildFilledNewArray(uint32_t dex_pc,
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01001422 uint32_t type_index,
1423 uint32_t number_of_vreg_arguments,
1424 bool is_range,
1425 uint32_t* args,
1426 uint32_t register_index) {
David Brazdil8d5b8b22015-03-24 10:51:52 +00001427 HInstruction* length = graph_->GetIntConstant(number_of_vreg_arguments);
Nicolas Geoffraycb1b00a2015-01-28 14:50:01 +00001428 QuickEntrypointEnum entrypoint = NeedsAccessCheck(type_index)
1429 ? kQuickAllocArrayWithAccessCheck
1430 : kQuickAllocArray;
Guillaume "Vermeille" Sanchez81d804a2015-05-20 12:42:25 +01001431 HInstruction* object = new (arena_) HNewArray(length,
Nicolas Geoffray69aa6012015-06-09 10:34:25 +01001432 graph_->GetCurrentMethod(),
Guillaume "Vermeille" Sanchez81d804a2015-05-20 12:42:25 +01001433 dex_pc,
1434 type_index,
1435 *dex_compilation_unit_->GetDexFile(),
1436 entrypoint);
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01001437 current_block_->AddInstruction(object);
1438
1439 const char* descriptor = dex_file_->StringByTypeIdx(type_index);
1440 DCHECK_EQ(descriptor[0], '[') << descriptor;
1441 char primitive = descriptor[1];
1442 DCHECK(primitive == 'I'
1443 || primitive == 'L'
1444 || primitive == '[') << descriptor;
1445 bool is_reference_array = (primitive == 'L') || (primitive == '[');
1446 Primitive::Type type = is_reference_array ? Primitive::kPrimNot : Primitive::kPrimInt;
1447
Calin Juravlef97f9fb2014-11-11 15:38:19 +00001448 Temporaries temps(graph_);
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01001449 temps.Add(object);
1450 for (size_t i = 0; i < number_of_vreg_arguments; ++i) {
1451 HInstruction* value = LoadLocal(is_range ? register_index + i : args[i], type);
David Brazdil8d5b8b22015-03-24 10:51:52 +00001452 HInstruction* index = graph_->GetIntConstant(i);
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01001453 current_block_->AddInstruction(
Calin Juravle225ff812014-11-13 16:46:39 +00001454 new (arena_) HArraySet(object, index, value, type, dex_pc));
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01001455 }
1456 latest_result_ = object;
1457}
1458
1459template <typename T>
1460void HGraphBuilder::BuildFillArrayData(HInstruction* object,
1461 const T* data,
1462 uint32_t element_count,
1463 Primitive::Type anticipated_type,
Calin Juravle225ff812014-11-13 16:46:39 +00001464 uint32_t dex_pc) {
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01001465 for (uint32_t i = 0; i < element_count; ++i) {
David Brazdil8d5b8b22015-03-24 10:51:52 +00001466 HInstruction* index = graph_->GetIntConstant(i);
1467 HInstruction* value = graph_->GetIntConstant(data[i]);
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01001468 current_block_->AddInstruction(new (arena_) HArraySet(
Calin Juravle225ff812014-11-13 16:46:39 +00001469 object, index, value, anticipated_type, dex_pc));
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01001470 }
1471}
1472
Calin Juravle225ff812014-11-13 16:46:39 +00001473void HGraphBuilder::BuildFillArrayData(const Instruction& instruction, uint32_t dex_pc) {
Calin Juravlef97f9fb2014-11-11 15:38:19 +00001474 Temporaries temps(graph_);
Calin Juravled0d48522014-11-04 16:40:20 +00001475 HInstruction* array = LoadLocal(instruction.VRegA_31t(), Primitive::kPrimNot);
Calin Juravle225ff812014-11-13 16:46:39 +00001476 HNullCheck* null_check = new (arena_) HNullCheck(array, dex_pc);
Calin Juravled0d48522014-11-04 16:40:20 +00001477 current_block_->AddInstruction(null_check);
1478 temps.Add(null_check);
1479
1480 HInstruction* length = new (arena_) HArrayLength(null_check);
1481 current_block_->AddInstruction(length);
1482
Calin Juravle225ff812014-11-13 16:46:39 +00001483 int32_t payload_offset = instruction.VRegB_31t() + dex_pc;
Calin Juravled0d48522014-11-04 16:40:20 +00001484 const Instruction::ArrayDataPayload* payload =
1485 reinterpret_cast<const Instruction::ArrayDataPayload*>(code_start_ + payload_offset);
1486 const uint8_t* data = payload->data;
1487 uint32_t element_count = payload->element_count;
1488
1489 // Implementation of this DEX instruction seems to be that the bounds check is
1490 // done before doing any stores.
David Brazdil8d5b8b22015-03-24 10:51:52 +00001491 HInstruction* last_index = graph_->GetIntConstant(payload->element_count - 1);
Calin Juravle225ff812014-11-13 16:46:39 +00001492 current_block_->AddInstruction(new (arena_) HBoundsCheck(last_index, length, dex_pc));
Calin Juravled0d48522014-11-04 16:40:20 +00001493
1494 switch (payload->element_width) {
1495 case 1:
1496 BuildFillArrayData(null_check,
1497 reinterpret_cast<const int8_t*>(data),
1498 element_count,
1499 Primitive::kPrimByte,
Calin Juravle225ff812014-11-13 16:46:39 +00001500 dex_pc);
Calin Juravled0d48522014-11-04 16:40:20 +00001501 break;
1502 case 2:
1503 BuildFillArrayData(null_check,
1504 reinterpret_cast<const int16_t*>(data),
1505 element_count,
1506 Primitive::kPrimShort,
Calin Juravle225ff812014-11-13 16:46:39 +00001507 dex_pc);
Calin Juravled0d48522014-11-04 16:40:20 +00001508 break;
1509 case 4:
1510 BuildFillArrayData(null_check,
1511 reinterpret_cast<const int32_t*>(data),
1512 element_count,
1513 Primitive::kPrimInt,
Calin Juravle225ff812014-11-13 16:46:39 +00001514 dex_pc);
Calin Juravled0d48522014-11-04 16:40:20 +00001515 break;
1516 case 8:
1517 BuildFillWideArrayData(null_check,
1518 reinterpret_cast<const int64_t*>(data),
1519 element_count,
Calin Juravle225ff812014-11-13 16:46:39 +00001520 dex_pc);
Calin Juravled0d48522014-11-04 16:40:20 +00001521 break;
1522 default:
1523 LOG(FATAL) << "Unknown element width for " << payload->element_width;
1524 }
Mark Mendell1152c922015-04-24 17:06:35 -04001525 graph_->SetHasBoundsChecks(true);
Calin Juravled0d48522014-11-04 16:40:20 +00001526}
1527
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01001528void HGraphBuilder::BuildFillWideArrayData(HInstruction* object,
Nicolas Geoffray8d6ae522014-10-23 18:32:13 +01001529 const int64_t* data,
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01001530 uint32_t element_count,
Calin Juravle225ff812014-11-13 16:46:39 +00001531 uint32_t dex_pc) {
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01001532 for (uint32_t i = 0; i < element_count; ++i) {
David Brazdil8d5b8b22015-03-24 10:51:52 +00001533 HInstruction* index = graph_->GetIntConstant(i);
1534 HInstruction* value = graph_->GetLongConstant(data[i]);
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01001535 current_block_->AddInstruction(new (arena_) HArraySet(
Calin Juravle225ff812014-11-13 16:46:39 +00001536 object, index, value, Primitive::kPrimLong, dex_pc));
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01001537 }
1538}
1539
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00001540bool HGraphBuilder::BuildTypeCheck(const Instruction& instruction,
1541 uint8_t destination,
1542 uint8_t reference,
1543 uint16_t type_index,
Calin Juravle225ff812014-11-13 16:46:39 +00001544 uint32_t dex_pc) {
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00001545 bool type_known_final;
1546 bool type_known_abstract;
Nicolas Geoffraye53798a2014-12-01 10:31:54 +00001547 // `CanAccessTypeWithoutChecks` will tell whether the method being
1548 // built is trying to access its own class, so that the generated
1549 // code can optimize for this case. However, the optimization does not
Nicolas Geoffray9437b782015-03-25 10:08:51 +00001550 // work for inlining, so we use `IsOutermostCompilingClass` instead.
Nicolas Geoffraye53798a2014-12-01 10:31:54 +00001551 bool dont_use_is_referrers_class;
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00001552 bool can_access = compiler_driver_->CanAccessTypeWithoutChecks(
1553 dex_compilation_unit_->GetDexMethodIndex(), *dex_file_, type_index,
Nicolas Geoffraye53798a2014-12-01 10:31:54 +00001554 &type_known_final, &type_known_abstract, &dont_use_is_referrers_class);
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00001555 if (!can_access) {
Calin Juravle48c2b032014-12-09 18:11:36 +00001556 MaybeRecordStat(MethodCompilationStat::kNotCompiledCantAccesType);
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00001557 return false;
1558 }
1559 HInstruction* object = LoadLocal(reference, Primitive::kPrimNot);
Nicolas Geoffray9437b782015-03-25 10:08:51 +00001560 HLoadClass* cls = new (arena_) HLoadClass(
Nicolas Geoffray76b1e172015-05-27 17:18:33 +01001561 graph_->GetCurrentMethod(),
Nicolas Geoffrayd5111bf2015-05-22 15:37:09 +01001562 type_index,
1563 *dex_compilation_unit_->GetDexFile(),
1564 IsOutermostCompilingClass(type_index),
1565 dex_pc);
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00001566 current_block_->AddInstruction(cls);
1567 // The class needs a temporary before being used by the type check.
Calin Juravlef97f9fb2014-11-11 15:38:19 +00001568 Temporaries temps(graph_);
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00001569 temps.Add(cls);
1570 if (instruction.Opcode() == Instruction::INSTANCE_OF) {
1571 current_block_->AddInstruction(
Calin Juravle225ff812014-11-13 16:46:39 +00001572 new (arena_) HInstanceOf(object, cls, type_known_final, dex_pc));
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00001573 UpdateLocal(destination, current_block_->GetLastInstruction());
1574 } else {
1575 DCHECK_EQ(instruction.Opcode(), Instruction::CHECK_CAST);
1576 current_block_->AddInstruction(
Calin Juravle225ff812014-11-13 16:46:39 +00001577 new (arena_) HCheckCast(object, cls, type_known_final, dex_pc));
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00001578 }
1579 return true;
1580}
1581
Nicolas Geoffraycb1b00a2015-01-28 14:50:01 +00001582bool HGraphBuilder::NeedsAccessCheck(uint32_t type_index) const {
1583 return !compiler_driver_->CanAccessInstantiableTypeWithoutChecks(
1584 dex_compilation_unit_->GetDexMethodIndex(), *dex_file_, type_index);
1585}
1586
Calin Juravle48c2b032014-12-09 18:11:36 +00001587void HGraphBuilder::BuildPackedSwitch(const Instruction& instruction, uint32_t dex_pc) {
David Brazdil2ef645b2015-06-17 18:20:52 +01001588 // Verifier guarantees that the payload for PackedSwitch contains:
1589 // (a) number of entries (may be zero)
1590 // (b) first and lowest switch case value (entry 0, always present)
1591 // (c) list of target pcs (entries 1 <= i <= N)
Andreas Gamped881df52014-11-24 23:28:39 -08001592 SwitchTable table(instruction, dex_pc, false);
1593
1594 // Value to test against.
1595 HInstruction* value = LoadLocal(instruction.VRegA(), Primitive::kPrimInt);
1596
David Brazdil2ef645b2015-06-17 18:20:52 +01001597 // Retrieve number of entries.
Andreas Gampee4d4d322014-12-04 09:09:57 -08001598 uint16_t num_entries = table.GetNumEntries();
David Brazdil2ef645b2015-06-17 18:20:52 +01001599 if (num_entries == 0) {
1600 return;
1601 }
Andreas Gampee4d4d322014-12-04 09:09:57 -08001602
Andreas Gamped881df52014-11-24 23:28:39 -08001603 // Chained cmp-and-branch, starting from starting_key.
1604 int32_t starting_key = table.GetEntryAt(0);
1605
Andreas Gamped881df52014-11-24 23:28:39 -08001606 for (size_t i = 1; i <= num_entries; i++) {
Andreas Gampee4d4d322014-12-04 09:09:57 -08001607 BuildSwitchCaseHelper(instruction, i, i == num_entries, table, value, starting_key + i - 1,
1608 table.GetEntryAt(i), dex_pc);
Andreas Gamped881df52014-11-24 23:28:39 -08001609 }
Andreas Gamped881df52014-11-24 23:28:39 -08001610}
1611
Calin Juravle48c2b032014-12-09 18:11:36 +00001612void HGraphBuilder::BuildSparseSwitch(const Instruction& instruction, uint32_t dex_pc) {
David Brazdil2ef645b2015-06-17 18:20:52 +01001613 // Verifier guarantees that the payload for SparseSwitch contains:
1614 // (a) number of entries (may be zero)
1615 // (b) sorted key values (entries 0 <= i < N)
1616 // (c) target pcs corresponding to the switch values (entries N <= i < 2*N)
Andreas Gampee4d4d322014-12-04 09:09:57 -08001617 SwitchTable table(instruction, dex_pc, true);
1618
1619 // Value to test against.
1620 HInstruction* value = LoadLocal(instruction.VRegA(), Primitive::kPrimInt);
1621
1622 uint16_t num_entries = table.GetNumEntries();
Andreas Gampee4d4d322014-12-04 09:09:57 -08001623
1624 for (size_t i = 0; i < num_entries; i++) {
1625 BuildSwitchCaseHelper(instruction, i, i == static_cast<size_t>(num_entries) - 1, table, value,
1626 table.GetEntryAt(i), table.GetEntryAt(i + num_entries), dex_pc);
1627 }
Andreas Gampee4d4d322014-12-04 09:09:57 -08001628}
1629
1630void HGraphBuilder::BuildSwitchCaseHelper(const Instruction& instruction, size_t index,
1631 bool is_last_case, const SwitchTable& table,
1632 HInstruction* value, int32_t case_value_int,
1633 int32_t target_offset, uint32_t dex_pc) {
David Brazdil852eaff2015-02-02 15:23:05 +00001634 HBasicBlock* case_target = FindBlockStartingAt(dex_pc + target_offset);
1635 DCHECK(case_target != nullptr);
1636 PotentiallyAddSuspendCheck(case_target, dex_pc);
Andreas Gampee4d4d322014-12-04 09:09:57 -08001637
1638 // The current case's value.
David Brazdil8d5b8b22015-03-24 10:51:52 +00001639 HInstruction* this_case_value = graph_->GetIntConstant(case_value_int);
Andreas Gampee4d4d322014-12-04 09:09:57 -08001640
1641 // Compare value and this_case_value.
1642 HEqual* comparison = new (arena_) HEqual(value, this_case_value);
1643 current_block_->AddInstruction(comparison);
1644 HInstruction* ifinst = new (arena_) HIf(comparison);
1645 current_block_->AddInstruction(ifinst);
1646
1647 // Case hit: use the target offset to determine where to go.
Andreas Gampee4d4d322014-12-04 09:09:57 -08001648 current_block_->AddSuccessor(case_target);
1649
1650 // Case miss: go to the next case (or default fall-through).
1651 // When there is a next case, we use the block stored with the table offset representing this
1652 // case (that is where we registered them in ComputeBranchTargets).
1653 // When there is no next case, we use the following instruction.
1654 // TODO: Find a good way to peel the last iteration to avoid conditional, but still have re-use.
1655 if (!is_last_case) {
1656 HBasicBlock* next_case_target = FindBlockStartingAt(table.GetDexPcForIndex(index));
1657 DCHECK(next_case_target != nullptr);
1658 current_block_->AddSuccessor(next_case_target);
1659
1660 // Need to manually add the block, as there is no dex-pc transition for the cases.
1661 graph_->AddBlock(next_case_target);
1662
1663 current_block_ = next_case_target;
1664 } else {
1665 HBasicBlock* default_target = FindBlockStartingAt(dex_pc + instruction.SizeInCodeUnits());
1666 DCHECK(default_target != nullptr);
1667 current_block_->AddSuccessor(default_target);
1668 current_block_ = nullptr;
1669 }
1670}
1671
David Brazdil852eaff2015-02-02 15:23:05 +00001672void HGraphBuilder::PotentiallyAddSuspendCheck(HBasicBlock* target, uint32_t dex_pc) {
1673 int32_t target_offset = target->GetDexPc() - dex_pc;
Nicolas Geoffrayfbc695f2014-09-15 15:33:30 +00001674 if (target_offset <= 0) {
David Brazdil852eaff2015-02-02 15:23:05 +00001675 // DX generates back edges to the first encountered return. We can save
1676 // time of later passes by not adding redundant suspend checks.
David Brazdil2fd6aa52015-02-02 18:58:27 +00001677 HInstruction* last_in_target = target->GetLastInstruction();
1678 if (last_in_target != nullptr &&
1679 (last_in_target->IsReturn() || last_in_target->IsReturnVoid())) {
1680 return;
David Brazdil852eaff2015-02-02 15:23:05 +00001681 }
1682
1683 // Add a suspend check to backward branches which may potentially loop. We
1684 // can remove them after we recognize loops in the graph.
Calin Juravle225ff812014-11-13 16:46:39 +00001685 current_block_->AddInstruction(new (arena_) HSuspendCheck(dex_pc));
Nicolas Geoffrayfbc695f2014-09-15 15:33:30 +00001686 }
1687}
1688
Nicolas Geoffray9523a3e2015-07-17 11:51:28 +00001689bool HGraphBuilder::CanDecodeQuickenedInfo() const {
1690 return interpreter_metadata_ != nullptr;
1691}
1692
1693uint16_t HGraphBuilder::LookupQuickenedInfo(uint32_t dex_pc) {
1694 DCHECK(interpreter_metadata_ != nullptr);
1695 uint32_t dex_pc_in_map = DecodeUnsignedLeb128(&interpreter_metadata_);
1696 DCHECK_EQ(dex_pc, dex_pc_in_map);
1697 return DecodeUnsignedLeb128(&interpreter_metadata_);
1698}
1699
Calin Juravle225ff812014-11-13 16:46:39 +00001700bool HGraphBuilder::AnalyzeDexInstruction(const Instruction& instruction, uint32_t dex_pc) {
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001701 if (current_block_ == nullptr) {
1702 return true; // Dead code
1703 }
Nicolas Geoffraybe9a92a2014-02-25 14:22:56 +00001704
Nicolas Geoffray818f2102014-02-18 16:43:35 +00001705 switch (instruction.Opcode()) {
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +00001706 case Instruction::CONST_4: {
1707 int32_t register_index = instruction.VRegA();
David Brazdil8d5b8b22015-03-24 10:51:52 +00001708 HIntConstant* constant = graph_->GetIntConstant(instruction.VRegB_11n());
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +00001709 UpdateLocal(register_index, constant);
1710 break;
1711 }
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001712
Nicolas Geoffrayb55f8352014-04-07 15:26:35 +01001713 case Instruction::CONST_16: {
1714 int32_t register_index = instruction.VRegA();
David Brazdil8d5b8b22015-03-24 10:51:52 +00001715 HIntConstant* constant = graph_->GetIntConstant(instruction.VRegB_21s());
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001716 UpdateLocal(register_index, constant);
1717 break;
1718 }
1719
Dave Allison20dfc792014-06-16 20:44:29 -07001720 case Instruction::CONST: {
1721 int32_t register_index = instruction.VRegA();
David Brazdil8d5b8b22015-03-24 10:51:52 +00001722 HIntConstant* constant = graph_->GetIntConstant(instruction.VRegB_31i());
Dave Allison20dfc792014-06-16 20:44:29 -07001723 UpdateLocal(register_index, constant);
1724 break;
1725 }
1726
1727 case Instruction::CONST_HIGH16: {
1728 int32_t register_index = instruction.VRegA();
David Brazdil8d5b8b22015-03-24 10:51:52 +00001729 HIntConstant* constant = graph_->GetIntConstant(instruction.VRegB_21h() << 16);
Dave Allison20dfc792014-06-16 20:44:29 -07001730 UpdateLocal(register_index, constant);
1731 break;
1732 }
1733
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001734 case Instruction::CONST_WIDE_16: {
1735 int32_t register_index = instruction.VRegA();
Dave Allison20dfc792014-06-16 20:44:29 -07001736 // Get 16 bits of constant value, sign extended to 64 bits.
1737 int64_t value = instruction.VRegB_21s();
1738 value <<= 48;
1739 value >>= 48;
David Brazdil8d5b8b22015-03-24 10:51:52 +00001740 HLongConstant* constant = graph_->GetLongConstant(value);
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001741 UpdateLocal(register_index, constant);
1742 break;
1743 }
1744
1745 case Instruction::CONST_WIDE_32: {
1746 int32_t register_index = instruction.VRegA();
Dave Allison20dfc792014-06-16 20:44:29 -07001747 // Get 32 bits of constant value, sign extended to 64 bits.
1748 int64_t value = instruction.VRegB_31i();
1749 value <<= 32;
1750 value >>= 32;
David Brazdil8d5b8b22015-03-24 10:51:52 +00001751 HLongConstant* constant = graph_->GetLongConstant(value);
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001752 UpdateLocal(register_index, constant);
1753 break;
1754 }
1755
1756 case Instruction::CONST_WIDE: {
1757 int32_t register_index = instruction.VRegA();
David Brazdil8d5b8b22015-03-24 10:51:52 +00001758 HLongConstant* constant = graph_->GetLongConstant(instruction.VRegB_51l());
Nicolas Geoffrayb55f8352014-04-07 15:26:35 +01001759 UpdateLocal(register_index, constant);
1760 break;
1761 }
1762
Dave Allison20dfc792014-06-16 20:44:29 -07001763 case Instruction::CONST_WIDE_HIGH16: {
1764 int32_t register_index = instruction.VRegA();
1765 int64_t value = static_cast<int64_t>(instruction.VRegB_21h()) << 48;
David Brazdil8d5b8b22015-03-24 10:51:52 +00001766 HLongConstant* constant = graph_->GetLongConstant(value);
Dave Allison20dfc792014-06-16 20:44:29 -07001767 UpdateLocal(register_index, constant);
1768 break;
1769 }
1770
Nicolas Geoffraydadf3172014-11-07 16:36:02 +00001771 // Note that the SSA building will refine the types.
Dave Allison20dfc792014-06-16 20:44:29 -07001772 case Instruction::MOVE:
1773 case Instruction::MOVE_FROM16:
1774 case Instruction::MOVE_16: {
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001775 HInstruction* value = LoadLocal(instruction.VRegB(), Primitive::kPrimInt);
Nicolas Geoffrayb55f8352014-04-07 15:26:35 +01001776 UpdateLocal(instruction.VRegA(), value);
1777 break;
1778 }
1779
Nicolas Geoffraydadf3172014-11-07 16:36:02 +00001780 // Note that the SSA building will refine the types.
Dave Allison20dfc792014-06-16 20:44:29 -07001781 case Instruction::MOVE_WIDE:
1782 case Instruction::MOVE_WIDE_FROM16:
1783 case Instruction::MOVE_WIDE_16: {
1784 HInstruction* value = LoadLocal(instruction.VRegB(), Primitive::kPrimLong);
1785 UpdateLocal(instruction.VRegA(), value);
1786 break;
1787 }
1788
1789 case Instruction::MOVE_OBJECT:
1790 case Instruction::MOVE_OBJECT_16:
1791 case Instruction::MOVE_OBJECT_FROM16: {
1792 HInstruction* value = LoadLocal(instruction.VRegB(), Primitive::kPrimNot);
1793 UpdateLocal(instruction.VRegA(), value);
1794 break;
1795 }
1796
Nicolas Geoffray9523a3e2015-07-17 11:51:28 +00001797 case Instruction::RETURN_VOID_NO_BARRIER:
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001798 case Instruction::RETURN_VOID: {
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001799 BuildReturn(instruction, Primitive::kPrimVoid);
Nicolas Geoffray818f2102014-02-18 16:43:35 +00001800 break;
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001801 }
1802
Dave Allison20dfc792014-06-16 20:44:29 -07001803#define IF_XX(comparison, cond) \
Calin Juravle225ff812014-11-13 16:46:39 +00001804 case Instruction::IF_##cond: If_22t<comparison>(instruction, dex_pc); break; \
1805 case Instruction::IF_##cond##Z: If_21t<comparison>(instruction, dex_pc); break
Nicolas Geoffrayb55f8352014-04-07 15:26:35 +01001806
Dave Allison20dfc792014-06-16 20:44:29 -07001807 IF_XX(HEqual, EQ);
1808 IF_XX(HNotEqual, NE);
1809 IF_XX(HLessThan, LT);
1810 IF_XX(HLessThanOrEqual, LE);
1811 IF_XX(HGreaterThan, GT);
1812 IF_XX(HGreaterThanOrEqual, GE);
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001813
Nicolas Geoffraybe9a92a2014-02-25 14:22:56 +00001814 case Instruction::GOTO:
1815 case Instruction::GOTO_16:
1816 case Instruction::GOTO_32: {
Nicolas Geoffrayfbc695f2014-09-15 15:33:30 +00001817 int32_t offset = instruction.GetTargetOffset();
Calin Juravle225ff812014-11-13 16:46:39 +00001818 HBasicBlock* target = FindBlockStartingAt(offset + dex_pc);
Nicolas Geoffraybe9a92a2014-02-25 14:22:56 +00001819 DCHECK(target != nullptr);
David Brazdil852eaff2015-02-02 15:23:05 +00001820 PotentiallyAddSuspendCheck(target, dex_pc);
Nicolas Geoffraybe9a92a2014-02-25 14:22:56 +00001821 current_block_->AddInstruction(new (arena_) HGoto());
1822 current_block_->AddSuccessor(target);
1823 current_block_ = nullptr;
1824 break;
1825 }
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001826
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001827 case Instruction::RETURN: {
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001828 BuildReturn(instruction, return_type_);
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001829 break;
1830 }
1831
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01001832 case Instruction::RETURN_OBJECT: {
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001833 BuildReturn(instruction, return_type_);
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001834 break;
1835 }
1836
1837 case Instruction::RETURN_WIDE: {
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01001838 BuildReturn(instruction, return_type_);
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00001839 break;
1840 }
1841
Nicolas Geoffraye982f0b2014-08-13 02:11:24 +01001842 case Instruction::INVOKE_DIRECT:
Nicolas Geoffray0d8db992014-11-11 14:40:10 +00001843 case Instruction::INVOKE_INTERFACE:
1844 case Instruction::INVOKE_STATIC:
1845 case Instruction::INVOKE_SUPER:
Nicolas Geoffray9523a3e2015-07-17 11:51:28 +00001846 case Instruction::INVOKE_VIRTUAL:
1847 case Instruction::INVOKE_VIRTUAL_QUICK: {
1848 uint16_t method_idx;
1849 if (instruction.Opcode() == Instruction::INVOKE_VIRTUAL_QUICK) {
1850 if (!CanDecodeQuickenedInfo()) {
1851 return false;
1852 }
1853 method_idx = LookupQuickenedInfo(dex_pc);
1854 } else {
1855 method_idx = instruction.VRegB_35c();
1856 }
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001857 uint32_t number_of_vreg_arguments = instruction.VRegA_35c();
Nicolas Geoffray4a34a422014-04-03 10:38:37 +01001858 uint32_t args[5];
Ian Rogers29a26482014-05-02 15:27:29 -07001859 instruction.GetVarArgs(args);
Calin Juravle225ff812014-11-13 16:46:39 +00001860 if (!BuildInvoke(instruction, dex_pc, method_idx,
Nicolas Geoffraydadf3172014-11-07 16:36:02 +00001861 number_of_vreg_arguments, false, args, -1)) {
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001862 return false;
Nicolas Geoffray4a34a422014-04-03 10:38:37 +01001863 }
Nicolas Geoffray4a34a422014-04-03 10:38:37 +01001864 break;
1865 }
1866
Nicolas Geoffraye982f0b2014-08-13 02:11:24 +01001867 case Instruction::INVOKE_DIRECT_RANGE:
Nicolas Geoffray0d8db992014-11-11 14:40:10 +00001868 case Instruction::INVOKE_INTERFACE_RANGE:
1869 case Instruction::INVOKE_STATIC_RANGE:
1870 case Instruction::INVOKE_SUPER_RANGE:
Nicolas Geoffray9523a3e2015-07-17 11:51:28 +00001871 case Instruction::INVOKE_VIRTUAL_RANGE:
1872 case Instruction::INVOKE_VIRTUAL_RANGE_QUICK: {
1873 uint16_t method_idx;
1874 if (instruction.Opcode() == Instruction::INVOKE_VIRTUAL_RANGE_QUICK) {
1875 if (!CanDecodeQuickenedInfo()) {
1876 return false;
1877 }
1878 method_idx = LookupQuickenedInfo(dex_pc);
1879 } else {
1880 method_idx = instruction.VRegB_3rc();
1881 }
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001882 uint32_t number_of_vreg_arguments = instruction.VRegA_3rc();
1883 uint32_t register_index = instruction.VRegC();
Calin Juravle225ff812014-11-13 16:46:39 +00001884 if (!BuildInvoke(instruction, dex_pc, method_idx,
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001885 number_of_vreg_arguments, true, nullptr, register_index)) {
Nicolas Geoffray4a34a422014-04-03 10:38:37 +01001886 return false;
1887 }
Nicolas Geoffray8ccc3f52014-03-19 10:34:11 +00001888 break;
1889 }
1890
Roland Levillain88cb1752014-10-20 16:36:47 +01001891 case Instruction::NEG_INT: {
1892 Unop_12x<HNeg>(instruction, Primitive::kPrimInt);
1893 break;
1894 }
1895
Roland Levillain2e07b4f2014-10-23 18:12:09 +01001896 case Instruction::NEG_LONG: {
1897 Unop_12x<HNeg>(instruction, Primitive::kPrimLong);
1898 break;
1899 }
1900
Roland Levillain3dbcb382014-10-28 17:30:07 +00001901 case Instruction::NEG_FLOAT: {
1902 Unop_12x<HNeg>(instruction, Primitive::kPrimFloat);
1903 break;
1904 }
1905
1906 case Instruction::NEG_DOUBLE: {
1907 Unop_12x<HNeg>(instruction, Primitive::kPrimDouble);
1908 break;
1909 }
1910
Roland Levillain1cc5f2512014-10-22 18:06:21 +01001911 case Instruction::NOT_INT: {
1912 Unop_12x<HNot>(instruction, Primitive::kPrimInt);
1913 break;
1914 }
1915
Roland Levillain70566432014-10-24 16:20:17 +01001916 case Instruction::NOT_LONG: {
1917 Unop_12x<HNot>(instruction, Primitive::kPrimLong);
1918 break;
1919 }
1920
Roland Levillaindff1f282014-11-05 14:15:05 +00001921 case Instruction::INT_TO_LONG: {
Roland Levillain624279f2014-12-04 11:54:28 +00001922 Conversion_12x(instruction, Primitive::kPrimInt, Primitive::kPrimLong, dex_pc);
Roland Levillaindff1f282014-11-05 14:15:05 +00001923 break;
1924 }
1925
Roland Levillaincff13742014-11-17 14:32:17 +00001926 case Instruction::INT_TO_FLOAT: {
Roland Levillain624279f2014-12-04 11:54:28 +00001927 Conversion_12x(instruction, Primitive::kPrimInt, Primitive::kPrimFloat, dex_pc);
Roland Levillaincff13742014-11-17 14:32:17 +00001928 break;
1929 }
1930
1931 case Instruction::INT_TO_DOUBLE: {
Roland Levillain624279f2014-12-04 11:54:28 +00001932 Conversion_12x(instruction, Primitive::kPrimInt, Primitive::kPrimDouble, dex_pc);
Roland Levillaincff13742014-11-17 14:32:17 +00001933 break;
1934 }
1935
Roland Levillain946e1432014-11-11 17:35:19 +00001936 case Instruction::LONG_TO_INT: {
Roland Levillain624279f2014-12-04 11:54:28 +00001937 Conversion_12x(instruction, Primitive::kPrimLong, Primitive::kPrimInt, dex_pc);
Roland Levillain946e1432014-11-11 17:35:19 +00001938 break;
1939 }
1940
Roland Levillain6d0e4832014-11-27 18:31:21 +00001941 case Instruction::LONG_TO_FLOAT: {
Roland Levillain624279f2014-12-04 11:54:28 +00001942 Conversion_12x(instruction, Primitive::kPrimLong, Primitive::kPrimFloat, dex_pc);
Roland Levillain6d0e4832014-11-27 18:31:21 +00001943 break;
1944 }
1945
Roland Levillain647b9ed2014-11-27 12:06:00 +00001946 case Instruction::LONG_TO_DOUBLE: {
Roland Levillain624279f2014-12-04 11:54:28 +00001947 Conversion_12x(instruction, Primitive::kPrimLong, Primitive::kPrimDouble, dex_pc);
Roland Levillain647b9ed2014-11-27 12:06:00 +00001948 break;
1949 }
1950
Roland Levillain3f8f9362014-12-02 17:45:01 +00001951 case Instruction::FLOAT_TO_INT: {
Roland Levillain624279f2014-12-04 11:54:28 +00001952 Conversion_12x(instruction, Primitive::kPrimFloat, Primitive::kPrimInt, dex_pc);
1953 break;
1954 }
1955
1956 case Instruction::FLOAT_TO_LONG: {
1957 Conversion_12x(instruction, Primitive::kPrimFloat, Primitive::kPrimLong, dex_pc);
Roland Levillain3f8f9362014-12-02 17:45:01 +00001958 break;
1959 }
1960
Roland Levillain8964e2b2014-12-04 12:10:50 +00001961 case Instruction::FLOAT_TO_DOUBLE: {
1962 Conversion_12x(instruction, Primitive::kPrimFloat, Primitive::kPrimDouble, dex_pc);
1963 break;
1964 }
1965
Roland Levillain4c0b61f2014-12-05 12:06:01 +00001966 case Instruction::DOUBLE_TO_INT: {
1967 Conversion_12x(instruction, Primitive::kPrimDouble, Primitive::kPrimInt, dex_pc);
1968 break;
1969 }
1970
1971 case Instruction::DOUBLE_TO_LONG: {
1972 Conversion_12x(instruction, Primitive::kPrimDouble, Primitive::kPrimLong, dex_pc);
1973 break;
1974 }
1975
Roland Levillain8964e2b2014-12-04 12:10:50 +00001976 case Instruction::DOUBLE_TO_FLOAT: {
1977 Conversion_12x(instruction, Primitive::kPrimDouble, Primitive::kPrimFloat, dex_pc);
1978 break;
1979 }
1980
Roland Levillain51d3fc42014-11-13 14:11:42 +00001981 case Instruction::INT_TO_BYTE: {
Roland Levillain624279f2014-12-04 11:54:28 +00001982 Conversion_12x(instruction, Primitive::kPrimInt, Primitive::kPrimByte, dex_pc);
Roland Levillain51d3fc42014-11-13 14:11:42 +00001983 break;
1984 }
1985
Roland Levillain01a8d712014-11-14 16:27:39 +00001986 case Instruction::INT_TO_SHORT: {
Roland Levillain624279f2014-12-04 11:54:28 +00001987 Conversion_12x(instruction, Primitive::kPrimInt, Primitive::kPrimShort, dex_pc);
Roland Levillain01a8d712014-11-14 16:27:39 +00001988 break;
1989 }
1990
Roland Levillain981e4542014-11-14 11:47:14 +00001991 case Instruction::INT_TO_CHAR: {
Roland Levillain624279f2014-12-04 11:54:28 +00001992 Conversion_12x(instruction, Primitive::kPrimInt, Primitive::kPrimChar, dex_pc);
Roland Levillain981e4542014-11-14 11:47:14 +00001993 break;
1994 }
1995
Nicolas Geoffrayd8ee7372014-03-28 15:43:40 +00001996 case Instruction::ADD_INT: {
Nicolas Geoffray412f10c2014-06-19 10:00:34 +01001997 Binop_23x<HAdd>(instruction, Primitive::kPrimInt);
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01001998 break;
1999 }
2000
2001 case Instruction::ADD_LONG: {
Nicolas Geoffray412f10c2014-06-19 10:00:34 +01002002 Binop_23x<HAdd>(instruction, Primitive::kPrimLong);
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01002003 break;
2004 }
2005
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01002006 case Instruction::ADD_DOUBLE: {
2007 Binop_23x<HAdd>(instruction, Primitive::kPrimDouble);
2008 break;
2009 }
2010
2011 case Instruction::ADD_FLOAT: {
2012 Binop_23x<HAdd>(instruction, Primitive::kPrimFloat);
2013 break;
2014 }
2015
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01002016 case Instruction::SUB_INT: {
Nicolas Geoffray412f10c2014-06-19 10:00:34 +01002017 Binop_23x<HSub>(instruction, Primitive::kPrimInt);
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002018 break;
2019 }
2020
2021 case Instruction::SUB_LONG: {
Nicolas Geoffray412f10c2014-06-19 10:00:34 +01002022 Binop_23x<HSub>(instruction, Primitive::kPrimLong);
Nicolas Geoffrayd8ee7372014-03-28 15:43:40 +00002023 break;
2024 }
2025
Calin Juravle096cc022014-10-23 17:01:13 +01002026 case Instruction::SUB_FLOAT: {
2027 Binop_23x<HSub>(instruction, Primitive::kPrimFloat);
2028 break;
2029 }
2030
2031 case Instruction::SUB_DOUBLE: {
2032 Binop_23x<HSub>(instruction, Primitive::kPrimDouble);
2033 break;
2034 }
2035
Nicolas Geoffrayd8ee7372014-03-28 15:43:40 +00002036 case Instruction::ADD_INT_2ADDR: {
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002037 Binop_12x<HAdd>(instruction, Primitive::kPrimInt);
2038 break;
2039 }
2040
Calin Juravle34bacdf2014-10-07 20:23:36 +01002041 case Instruction::MUL_INT: {
2042 Binop_23x<HMul>(instruction, Primitive::kPrimInt);
2043 break;
2044 }
2045
2046 case Instruction::MUL_LONG: {
2047 Binop_23x<HMul>(instruction, Primitive::kPrimLong);
2048 break;
2049 }
2050
Calin Juravleb5bfa962014-10-21 18:02:24 +01002051 case Instruction::MUL_FLOAT: {
2052 Binop_23x<HMul>(instruction, Primitive::kPrimFloat);
2053 break;
2054 }
2055
2056 case Instruction::MUL_DOUBLE: {
2057 Binop_23x<HMul>(instruction, Primitive::kPrimDouble);
2058 break;
2059 }
2060
Calin Juravled0d48522014-11-04 16:40:20 +00002061 case Instruction::DIV_INT: {
Calin Juravlebacfec32014-11-14 15:54:36 +00002062 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegB(), instruction.VRegC(),
2063 dex_pc, Primitive::kPrimInt, false, true);
Calin Juravled0d48522014-11-04 16:40:20 +00002064 break;
2065 }
2066
Calin Juravled6fb6cf2014-11-11 19:07:44 +00002067 case Instruction::DIV_LONG: {
Calin Juravlebacfec32014-11-14 15:54:36 +00002068 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegB(), instruction.VRegC(),
2069 dex_pc, Primitive::kPrimLong, false, true);
Calin Juravled6fb6cf2014-11-11 19:07:44 +00002070 break;
2071 }
2072
Calin Juravle7c4954d2014-10-28 16:57:40 +00002073 case Instruction::DIV_FLOAT: {
Calin Juravle225ff812014-11-13 16:46:39 +00002074 Binop_23x<HDiv>(instruction, Primitive::kPrimFloat, dex_pc);
Calin Juravle7c4954d2014-10-28 16:57:40 +00002075 break;
2076 }
2077
2078 case Instruction::DIV_DOUBLE: {
Calin Juravle225ff812014-11-13 16:46:39 +00002079 Binop_23x<HDiv>(instruction, Primitive::kPrimDouble, dex_pc);
Calin Juravle7c4954d2014-10-28 16:57:40 +00002080 break;
2081 }
2082
Calin Juravlebacfec32014-11-14 15:54:36 +00002083 case Instruction::REM_INT: {
2084 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegB(), instruction.VRegC(),
2085 dex_pc, Primitive::kPrimInt, false, false);
2086 break;
2087 }
2088
2089 case Instruction::REM_LONG: {
2090 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegB(), instruction.VRegC(),
2091 dex_pc, Primitive::kPrimLong, false, false);
2092 break;
2093 }
2094
Calin Juravled2ec87d2014-12-08 14:24:46 +00002095 case Instruction::REM_FLOAT: {
2096 Binop_23x<HRem>(instruction, Primitive::kPrimFloat, dex_pc);
2097 break;
2098 }
2099
2100 case Instruction::REM_DOUBLE: {
2101 Binop_23x<HRem>(instruction, Primitive::kPrimDouble, dex_pc);
2102 break;
2103 }
2104
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00002105 case Instruction::AND_INT: {
2106 Binop_23x<HAnd>(instruction, Primitive::kPrimInt);
2107 break;
2108 }
2109
2110 case Instruction::AND_LONG: {
2111 Binop_23x<HAnd>(instruction, Primitive::kPrimLong);
2112 break;
2113 }
2114
Calin Juravle9aec02f2014-11-18 23:06:35 +00002115 case Instruction::SHL_INT: {
2116 Binop_23x_shift<HShl>(instruction, Primitive::kPrimInt);
2117 break;
2118 }
2119
2120 case Instruction::SHL_LONG: {
2121 Binop_23x_shift<HShl>(instruction, Primitive::kPrimLong);
2122 break;
2123 }
2124
2125 case Instruction::SHR_INT: {
2126 Binop_23x_shift<HShr>(instruction, Primitive::kPrimInt);
2127 break;
2128 }
2129
2130 case Instruction::SHR_LONG: {
2131 Binop_23x_shift<HShr>(instruction, Primitive::kPrimLong);
2132 break;
2133 }
2134
2135 case Instruction::USHR_INT: {
2136 Binop_23x_shift<HUShr>(instruction, Primitive::kPrimInt);
2137 break;
2138 }
2139
2140 case Instruction::USHR_LONG: {
2141 Binop_23x_shift<HUShr>(instruction, Primitive::kPrimLong);
2142 break;
2143 }
2144
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00002145 case Instruction::OR_INT: {
2146 Binop_23x<HOr>(instruction, Primitive::kPrimInt);
2147 break;
2148 }
2149
2150 case Instruction::OR_LONG: {
2151 Binop_23x<HOr>(instruction, Primitive::kPrimLong);
2152 break;
2153 }
2154
2155 case Instruction::XOR_INT: {
2156 Binop_23x<HXor>(instruction, Primitive::kPrimInt);
2157 break;
2158 }
2159
2160 case Instruction::XOR_LONG: {
2161 Binop_23x<HXor>(instruction, Primitive::kPrimLong);
2162 break;
2163 }
2164
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002165 case Instruction::ADD_LONG_2ADDR: {
2166 Binop_12x<HAdd>(instruction, Primitive::kPrimLong);
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01002167 break;
2168 }
2169
Nicolas Geoffray7fb49da2014-10-06 09:12:41 +01002170 case Instruction::ADD_DOUBLE_2ADDR: {
2171 Binop_12x<HAdd>(instruction, Primitive::kPrimDouble);
2172 break;
2173 }
2174
2175 case Instruction::ADD_FLOAT_2ADDR: {
2176 Binop_12x<HAdd>(instruction, Primitive::kPrimFloat);
2177 break;
2178 }
2179
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01002180 case Instruction::SUB_INT_2ADDR: {
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002181 Binop_12x<HSub>(instruction, Primitive::kPrimInt);
2182 break;
2183 }
2184
2185 case Instruction::SUB_LONG_2ADDR: {
2186 Binop_12x<HSub>(instruction, Primitive::kPrimLong);
Nicolas Geoffrayd8ee7372014-03-28 15:43:40 +00002187 break;
2188 }
2189
Calin Juravle096cc022014-10-23 17:01:13 +01002190 case Instruction::SUB_FLOAT_2ADDR: {
2191 Binop_12x<HSub>(instruction, Primitive::kPrimFloat);
2192 break;
2193 }
2194
2195 case Instruction::SUB_DOUBLE_2ADDR: {
2196 Binop_12x<HSub>(instruction, Primitive::kPrimDouble);
2197 break;
2198 }
2199
Calin Juravle34bacdf2014-10-07 20:23:36 +01002200 case Instruction::MUL_INT_2ADDR: {
2201 Binop_12x<HMul>(instruction, Primitive::kPrimInt);
2202 break;
2203 }
2204
2205 case Instruction::MUL_LONG_2ADDR: {
2206 Binop_12x<HMul>(instruction, Primitive::kPrimLong);
2207 break;
2208 }
2209
Calin Juravleb5bfa962014-10-21 18:02:24 +01002210 case Instruction::MUL_FLOAT_2ADDR: {
2211 Binop_12x<HMul>(instruction, Primitive::kPrimFloat);
2212 break;
2213 }
2214
2215 case Instruction::MUL_DOUBLE_2ADDR: {
2216 Binop_12x<HMul>(instruction, Primitive::kPrimDouble);
2217 break;
2218 }
2219
Calin Juravle865fc882014-11-06 17:09:03 +00002220 case Instruction::DIV_INT_2ADDR: {
Calin Juravlebacfec32014-11-14 15:54:36 +00002221 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegA(), instruction.VRegB(),
2222 dex_pc, Primitive::kPrimInt, false, true);
Calin Juravle865fc882014-11-06 17:09:03 +00002223 break;
2224 }
2225
Calin Juravled6fb6cf2014-11-11 19:07:44 +00002226 case Instruction::DIV_LONG_2ADDR: {
Calin Juravlebacfec32014-11-14 15:54:36 +00002227 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegA(), instruction.VRegB(),
2228 dex_pc, Primitive::kPrimLong, false, true);
2229 break;
2230 }
2231
2232 case Instruction::REM_INT_2ADDR: {
2233 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegA(), instruction.VRegB(),
2234 dex_pc, Primitive::kPrimInt, false, false);
2235 break;
2236 }
2237
2238 case Instruction::REM_LONG_2ADDR: {
2239 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegA(), instruction.VRegB(),
2240 dex_pc, Primitive::kPrimLong, false, false);
Calin Juravled6fb6cf2014-11-11 19:07:44 +00002241 break;
2242 }
2243
Calin Juravled2ec87d2014-12-08 14:24:46 +00002244 case Instruction::REM_FLOAT_2ADDR: {
2245 Binop_12x<HRem>(instruction, Primitive::kPrimFloat, dex_pc);
2246 break;
2247 }
2248
2249 case Instruction::REM_DOUBLE_2ADDR: {
2250 Binop_12x<HRem>(instruction, Primitive::kPrimDouble, dex_pc);
2251 break;
2252 }
2253
Calin Juravle9aec02f2014-11-18 23:06:35 +00002254 case Instruction::SHL_INT_2ADDR: {
2255 Binop_12x_shift<HShl>(instruction, Primitive::kPrimInt);
2256 break;
2257 }
2258
2259 case Instruction::SHL_LONG_2ADDR: {
2260 Binop_12x_shift<HShl>(instruction, Primitive::kPrimLong);
2261 break;
2262 }
2263
2264 case Instruction::SHR_INT_2ADDR: {
2265 Binop_12x_shift<HShr>(instruction, Primitive::kPrimInt);
2266 break;
2267 }
2268
2269 case Instruction::SHR_LONG_2ADDR: {
2270 Binop_12x_shift<HShr>(instruction, Primitive::kPrimLong);
2271 break;
2272 }
2273
2274 case Instruction::USHR_INT_2ADDR: {
2275 Binop_12x_shift<HUShr>(instruction, Primitive::kPrimInt);
2276 break;
2277 }
2278
2279 case Instruction::USHR_LONG_2ADDR: {
2280 Binop_12x_shift<HUShr>(instruction, Primitive::kPrimLong);
2281 break;
2282 }
2283
Calin Juravle7c4954d2014-10-28 16:57:40 +00002284 case Instruction::DIV_FLOAT_2ADDR: {
Calin Juravle225ff812014-11-13 16:46:39 +00002285 Binop_12x<HDiv>(instruction, Primitive::kPrimFloat, dex_pc);
Calin Juravle7c4954d2014-10-28 16:57:40 +00002286 break;
2287 }
2288
2289 case Instruction::DIV_DOUBLE_2ADDR: {
Calin Juravle225ff812014-11-13 16:46:39 +00002290 Binop_12x<HDiv>(instruction, Primitive::kPrimDouble, dex_pc);
Calin Juravle7c4954d2014-10-28 16:57:40 +00002291 break;
2292 }
2293
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00002294 case Instruction::AND_INT_2ADDR: {
2295 Binop_12x<HAnd>(instruction, Primitive::kPrimInt);
2296 break;
2297 }
2298
2299 case Instruction::AND_LONG_2ADDR: {
2300 Binop_12x<HAnd>(instruction, Primitive::kPrimLong);
2301 break;
2302 }
2303
2304 case Instruction::OR_INT_2ADDR: {
2305 Binop_12x<HOr>(instruction, Primitive::kPrimInt);
2306 break;
2307 }
2308
2309 case Instruction::OR_LONG_2ADDR: {
2310 Binop_12x<HOr>(instruction, Primitive::kPrimLong);
2311 break;
2312 }
2313
2314 case Instruction::XOR_INT_2ADDR: {
2315 Binop_12x<HXor>(instruction, Primitive::kPrimInt);
2316 break;
2317 }
2318
2319 case Instruction::XOR_LONG_2ADDR: {
2320 Binop_12x<HXor>(instruction, Primitive::kPrimLong);
2321 break;
2322 }
2323
Nicolas Geoffrayd8ee7372014-03-28 15:43:40 +00002324 case Instruction::ADD_INT_LIT16: {
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01002325 Binop_22s<HAdd>(instruction, false);
2326 break;
2327 }
2328
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00002329 case Instruction::AND_INT_LIT16: {
2330 Binop_22s<HAnd>(instruction, false);
2331 break;
2332 }
2333
2334 case Instruction::OR_INT_LIT16: {
2335 Binop_22s<HOr>(instruction, false);
2336 break;
2337 }
2338
2339 case Instruction::XOR_INT_LIT16: {
2340 Binop_22s<HXor>(instruction, false);
2341 break;
2342 }
2343
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01002344 case Instruction::RSUB_INT: {
2345 Binop_22s<HSub>(instruction, true);
Nicolas Geoffrayd8ee7372014-03-28 15:43:40 +00002346 break;
2347 }
2348
Calin Juravle34bacdf2014-10-07 20:23:36 +01002349 case Instruction::MUL_INT_LIT16: {
2350 Binop_22s<HMul>(instruction, false);
2351 break;
2352 }
2353
Nicolas Geoffrayd8ee7372014-03-28 15:43:40 +00002354 case Instruction::ADD_INT_LIT8: {
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01002355 Binop_22b<HAdd>(instruction, false);
2356 break;
2357 }
2358
Nicolas Geoffray9574c4b2014-11-12 13:19:37 +00002359 case Instruction::AND_INT_LIT8: {
2360 Binop_22b<HAnd>(instruction, false);
2361 break;
2362 }
2363
2364 case Instruction::OR_INT_LIT8: {
2365 Binop_22b<HOr>(instruction, false);
2366 break;
2367 }
2368
2369 case Instruction::XOR_INT_LIT8: {
2370 Binop_22b<HXor>(instruction, false);
2371 break;
2372 }
2373
Nicolas Geoffrayf583e592014-04-07 13:20:42 +01002374 case Instruction::RSUB_INT_LIT8: {
2375 Binop_22b<HSub>(instruction, true);
Nicolas Geoffrayd8ee7372014-03-28 15:43:40 +00002376 break;
2377 }
2378
Calin Juravle34bacdf2014-10-07 20:23:36 +01002379 case Instruction::MUL_INT_LIT8: {
2380 Binop_22b<HMul>(instruction, false);
2381 break;
2382 }
2383
Calin Juravled0d48522014-11-04 16:40:20 +00002384 case Instruction::DIV_INT_LIT16:
2385 case Instruction::DIV_INT_LIT8: {
Calin Juravlebacfec32014-11-14 15:54:36 +00002386 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegB(), instruction.VRegC(),
2387 dex_pc, Primitive::kPrimInt, true, true);
2388 break;
2389 }
2390
2391 case Instruction::REM_INT_LIT16:
2392 case Instruction::REM_INT_LIT8: {
2393 BuildCheckedDivRem(instruction.VRegA(), instruction.VRegB(), instruction.VRegC(),
2394 dex_pc, Primitive::kPrimInt, true, false);
Calin Juravled0d48522014-11-04 16:40:20 +00002395 break;
2396 }
2397
Calin Juravle9aec02f2014-11-18 23:06:35 +00002398 case Instruction::SHL_INT_LIT8: {
2399 Binop_22b<HShl>(instruction, false);
2400 break;
2401 }
2402
2403 case Instruction::SHR_INT_LIT8: {
2404 Binop_22b<HShr>(instruction, false);
2405 break;
2406 }
2407
2408 case Instruction::USHR_INT_LIT8: {
2409 Binop_22b<HUShr>(instruction, false);
2410 break;
2411 }
2412
Nicolas Geoffray2e7038a2014-04-03 18:49:58 +01002413 case Instruction::NEW_INSTANCE: {
Nicolas Geoffraycb1b00a2015-01-28 14:50:01 +00002414 uint16_t type_index = instruction.VRegB_21c();
Jeff Hao848f70a2014-01-15 13:49:50 -08002415 if (compiler_driver_->IsStringTypeIndex(type_index, dex_file_)) {
Jeff Hao848f70a2014-01-15 13:49:50 -08002416 int32_t register_index = instruction.VRegA();
Nicolas Geoffray2e7cd752015-07-10 11:38:52 +01002417 HFakeString* fake_string = new (arena_) HFakeString();
2418 current_block_->AddInstruction(fake_string);
2419 UpdateLocal(register_index, fake_string);
Jeff Hao848f70a2014-01-15 13:49:50 -08002420 } else {
2421 QuickEntrypointEnum entrypoint = NeedsAccessCheck(type_index)
2422 ? kQuickAllocObjectWithAccessCheck
2423 : kQuickAllocObject;
Nicolas Geoffraycb1b00a2015-01-28 14:50:01 +00002424
Nicolas Geoffrayd5111bf2015-05-22 15:37:09 +01002425 current_block_->AddInstruction(new (arena_) HNewInstance(
Nicolas Geoffray69aa6012015-06-09 10:34:25 +01002426 graph_->GetCurrentMethod(),
2427 dex_pc,
2428 type_index,
2429 *dex_compilation_unit_->GetDexFile(),
2430 entrypoint));
Jeff Hao848f70a2014-01-15 13:49:50 -08002431 UpdateLocal(instruction.VRegA(), current_block_->GetLastInstruction());
2432 }
Nicolas Geoffray2e7038a2014-04-03 18:49:58 +01002433 break;
2434 }
2435
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01002436 case Instruction::NEW_ARRAY: {
Nicolas Geoffraycb1b00a2015-01-28 14:50:01 +00002437 uint16_t type_index = instruction.VRegC_22c();
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01002438 HInstruction* length = LoadLocal(instruction.VRegB_22c(), Primitive::kPrimInt);
Nicolas Geoffraycb1b00a2015-01-28 14:50:01 +00002439 QuickEntrypointEnum entrypoint = NeedsAccessCheck(type_index)
2440 ? kQuickAllocArrayWithAccessCheck
2441 : kQuickAllocArray;
Nicolas Geoffray69aa6012015-06-09 10:34:25 +01002442 current_block_->AddInstruction(new (arena_) HNewArray(length,
2443 graph_->GetCurrentMethod(),
2444 dex_pc,
2445 type_index,
2446 *dex_compilation_unit_->GetDexFile(),
2447 entrypoint));
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01002448 UpdateLocal(instruction.VRegA_22c(), current_block_->GetLastInstruction());
2449 break;
2450 }
2451
2452 case Instruction::FILLED_NEW_ARRAY: {
2453 uint32_t number_of_vreg_arguments = instruction.VRegA_35c();
2454 uint32_t type_index = instruction.VRegB_35c();
2455 uint32_t args[5];
2456 instruction.GetVarArgs(args);
Calin Juravle225ff812014-11-13 16:46:39 +00002457 BuildFilledNewArray(dex_pc, type_index, number_of_vreg_arguments, false, args, 0);
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01002458 break;
2459 }
2460
2461 case Instruction::FILLED_NEW_ARRAY_RANGE: {
2462 uint32_t number_of_vreg_arguments = instruction.VRegA_3rc();
2463 uint32_t type_index = instruction.VRegB_3rc();
2464 uint32_t register_index = instruction.VRegC_3rc();
2465 BuildFilledNewArray(
Calin Juravle225ff812014-11-13 16:46:39 +00002466 dex_pc, type_index, number_of_vreg_arguments, true, nullptr, register_index);
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01002467 break;
2468 }
2469
2470 case Instruction::FILL_ARRAY_DATA: {
Calin Juravle225ff812014-11-13 16:46:39 +00002471 BuildFillArrayData(instruction, dex_pc);
Nicolas Geoffraya3d05a42014-10-20 17:41:32 +01002472 break;
2473 }
2474
Nicolas Geoffrayddb311f2014-05-16 09:28:54 +01002475 case Instruction::MOVE_RESULT:
Dave Allison20dfc792014-06-16 20:44:29 -07002476 case Instruction::MOVE_RESULT_WIDE:
David Brazdilfc6a86a2015-06-26 10:33:45 +00002477 case Instruction::MOVE_RESULT_OBJECT: {
Nicolas Geoffray1efcc222015-06-24 12:41:20 +01002478 if (latest_result_ == nullptr) {
2479 // Only dead code can lead to this situation, where the verifier
2480 // does not reject the method.
2481 } else {
David Brazdilfc6a86a2015-06-26 10:33:45 +00002482 // An Invoke/FilledNewArray and its MoveResult could have landed in
2483 // different blocks if there was a try/catch block boundary between
2484 // them. For Invoke, we insert a StoreLocal after the instruction. For
2485 // FilledNewArray, the local needs to be updated after the array was
2486 // filled, otherwise we might overwrite an input vreg.
2487 HStoreLocal* update_local =
2488 new (arena_) HStoreLocal(GetLocalAt(instruction.VRegA()), latest_result_);
2489 HBasicBlock* block = latest_result_->GetBlock();
2490 if (block == current_block_) {
2491 // MoveResult and the previous instruction are in the same block.
2492 current_block_->AddInstruction(update_local);
2493 } else {
2494 // The two instructions are in different blocks. Insert the MoveResult
2495 // before the final control-flow instruction of the previous block.
2496 DCHECK(block->EndsWithControlFlowInstruction());
2497 DCHECK(current_block_->GetInstructions().IsEmpty());
2498 block->InsertInstructionBefore(update_local, block->GetLastInstruction());
2499 }
Nicolas Geoffray1efcc222015-06-24 12:41:20 +01002500 latest_result_ = nullptr;
2501 }
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002502 break;
David Brazdilfc6a86a2015-06-26 10:33:45 +00002503 }
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002504
Nicolas Geoffray412f10c2014-06-19 10:00:34 +01002505 case Instruction::CMP_LONG: {
Roland Levillain4fa13f62015-07-06 18:11:54 +01002506 Binop_23x_cmp(instruction, Primitive::kPrimLong, ComparisonBias::kNoBias, dex_pc);
Calin Juravleddb7df22014-11-25 20:56:51 +00002507 break;
2508 }
2509
2510 case Instruction::CMPG_FLOAT: {
Roland Levillain4fa13f62015-07-06 18:11:54 +01002511 Binop_23x_cmp(instruction, Primitive::kPrimFloat, ComparisonBias::kGtBias, dex_pc);
Calin Juravleddb7df22014-11-25 20:56:51 +00002512 break;
2513 }
2514
2515 case Instruction::CMPG_DOUBLE: {
Roland Levillain4fa13f62015-07-06 18:11:54 +01002516 Binop_23x_cmp(instruction, Primitive::kPrimDouble, ComparisonBias::kGtBias, dex_pc);
Calin Juravleddb7df22014-11-25 20:56:51 +00002517 break;
2518 }
2519
2520 case Instruction::CMPL_FLOAT: {
Roland Levillain4fa13f62015-07-06 18:11:54 +01002521 Binop_23x_cmp(instruction, Primitive::kPrimFloat, ComparisonBias::kLtBias, dex_pc);
Calin Juravleddb7df22014-11-25 20:56:51 +00002522 break;
2523 }
2524
2525 case Instruction::CMPL_DOUBLE: {
Roland Levillain4fa13f62015-07-06 18:11:54 +01002526 Binop_23x_cmp(instruction, Primitive::kPrimDouble, ComparisonBias::kLtBias, dex_pc);
Nicolas Geoffray412f10c2014-06-19 10:00:34 +01002527 break;
2528 }
2529
Nicolas Geoffraybe9a92a2014-02-25 14:22:56 +00002530 case Instruction::NOP:
2531 break;
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +00002532
Nicolas Geoffraye5038322014-07-04 09:41:32 +01002533 case Instruction::IGET:
Nicolas Geoffray9523a3e2015-07-17 11:51:28 +00002534 case Instruction::IGET_QUICK:
Nicolas Geoffraye5038322014-07-04 09:41:32 +01002535 case Instruction::IGET_WIDE:
Nicolas Geoffray9523a3e2015-07-17 11:51:28 +00002536 case Instruction::IGET_WIDE_QUICK:
Nicolas Geoffraye5038322014-07-04 09:41:32 +01002537 case Instruction::IGET_OBJECT:
Nicolas Geoffray9523a3e2015-07-17 11:51:28 +00002538 case Instruction::IGET_OBJECT_QUICK:
Nicolas Geoffraye5038322014-07-04 09:41:32 +01002539 case Instruction::IGET_BOOLEAN:
Nicolas Geoffray9523a3e2015-07-17 11:51:28 +00002540 case Instruction::IGET_BOOLEAN_QUICK:
Nicolas Geoffraye5038322014-07-04 09:41:32 +01002541 case Instruction::IGET_BYTE:
Nicolas Geoffray9523a3e2015-07-17 11:51:28 +00002542 case Instruction::IGET_BYTE_QUICK:
Nicolas Geoffraye5038322014-07-04 09:41:32 +01002543 case Instruction::IGET_CHAR:
Nicolas Geoffray9523a3e2015-07-17 11:51:28 +00002544 case Instruction::IGET_CHAR_QUICK:
2545 case Instruction::IGET_SHORT:
2546 case Instruction::IGET_SHORT_QUICK: {
Calin Juravle225ff812014-11-13 16:46:39 +00002547 if (!BuildInstanceFieldAccess(instruction, dex_pc, false)) {
Nicolas Geoffraye5038322014-07-04 09:41:32 +01002548 return false;
2549 }
2550 break;
2551 }
2552
2553 case Instruction::IPUT:
Nicolas Geoffray9523a3e2015-07-17 11:51:28 +00002554 case Instruction::IPUT_QUICK:
Nicolas Geoffraye5038322014-07-04 09:41:32 +01002555 case Instruction::IPUT_WIDE:
Nicolas Geoffray9523a3e2015-07-17 11:51:28 +00002556 case Instruction::IPUT_WIDE_QUICK:
Nicolas Geoffraye5038322014-07-04 09:41:32 +01002557 case Instruction::IPUT_OBJECT:
Nicolas Geoffray9523a3e2015-07-17 11:51:28 +00002558 case Instruction::IPUT_OBJECT_QUICK:
Nicolas Geoffraye5038322014-07-04 09:41:32 +01002559 case Instruction::IPUT_BOOLEAN:
Nicolas Geoffray9523a3e2015-07-17 11:51:28 +00002560 case Instruction::IPUT_BOOLEAN_QUICK:
Nicolas Geoffraye5038322014-07-04 09:41:32 +01002561 case Instruction::IPUT_BYTE:
Nicolas Geoffray9523a3e2015-07-17 11:51:28 +00002562 case Instruction::IPUT_BYTE_QUICK:
Nicolas Geoffraye5038322014-07-04 09:41:32 +01002563 case Instruction::IPUT_CHAR:
Nicolas Geoffray9523a3e2015-07-17 11:51:28 +00002564 case Instruction::IPUT_CHAR_QUICK:
2565 case Instruction::IPUT_SHORT:
2566 case Instruction::IPUT_SHORT_QUICK: {
Calin Juravle225ff812014-11-13 16:46:39 +00002567 if (!BuildInstanceFieldAccess(instruction, dex_pc, true)) {
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01002568 return false;
2569 }
2570 break;
2571 }
2572
2573 case Instruction::SGET:
2574 case Instruction::SGET_WIDE:
2575 case Instruction::SGET_OBJECT:
2576 case Instruction::SGET_BOOLEAN:
2577 case Instruction::SGET_BYTE:
2578 case Instruction::SGET_CHAR:
2579 case Instruction::SGET_SHORT: {
Calin Juravle225ff812014-11-13 16:46:39 +00002580 if (!BuildStaticFieldAccess(instruction, dex_pc, false)) {
Nicolas Geoffray19a19cf2014-10-22 16:07:05 +01002581 return false;
2582 }
2583 break;
2584 }
2585
2586 case Instruction::SPUT:
2587 case Instruction::SPUT_WIDE:
2588 case Instruction::SPUT_OBJECT:
2589 case Instruction::SPUT_BOOLEAN:
2590 case Instruction::SPUT_BYTE:
2591 case Instruction::SPUT_CHAR:
2592 case Instruction::SPUT_SHORT: {
Calin Juravle225ff812014-11-13 16:46:39 +00002593 if (!BuildStaticFieldAccess(instruction, dex_pc, true)) {
Nicolas Geoffraye5038322014-07-04 09:41:32 +01002594 return false;
2595 }
2596 break;
2597 }
2598
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01002599#define ARRAY_XX(kind, anticipated_type) \
2600 case Instruction::AGET##kind: { \
Calin Juravle225ff812014-11-13 16:46:39 +00002601 BuildArrayAccess(instruction, dex_pc, false, anticipated_type); \
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01002602 break; \
2603 } \
2604 case Instruction::APUT##kind: { \
Calin Juravle225ff812014-11-13 16:46:39 +00002605 BuildArrayAccess(instruction, dex_pc, true, anticipated_type); \
Nicolas Geoffray3c7bb982014-07-23 16:04:16 +01002606 break; \
2607 }
2608
2609 ARRAY_XX(, Primitive::kPrimInt);
2610 ARRAY_XX(_WIDE, Primitive::kPrimLong);
2611 ARRAY_XX(_OBJECT, Primitive::kPrimNot);
2612 ARRAY_XX(_BOOLEAN, Primitive::kPrimBoolean);
2613 ARRAY_XX(_BYTE, Primitive::kPrimByte);
2614 ARRAY_XX(_CHAR, Primitive::kPrimChar);
2615 ARRAY_XX(_SHORT, Primitive::kPrimShort);
2616
Nicolas Geoffray39468442014-09-02 15:17:15 +01002617 case Instruction::ARRAY_LENGTH: {
2618 HInstruction* object = LoadLocal(instruction.VRegB_12x(), Primitive::kPrimNot);
Nicolas Geoffrayde58ab22014-11-05 12:46:03 +00002619 // No need for a temporary for the null check, it is the only input of the following
2620 // instruction.
Calin Juravle225ff812014-11-13 16:46:39 +00002621 object = new (arena_) HNullCheck(object, dex_pc);
Nicolas Geoffrayde58ab22014-11-05 12:46:03 +00002622 current_block_->AddInstruction(object);
Nicolas Geoffray39468442014-09-02 15:17:15 +01002623 current_block_->AddInstruction(new (arena_) HArrayLength(object));
2624 UpdateLocal(instruction.VRegA_12x(), current_block_->GetLastInstruction());
2625 break;
2626 }
2627
Nicolas Geoffrayb5f62b32014-10-30 10:58:41 +00002628 case Instruction::CONST_STRING: {
Nicolas Geoffrayfbdaa302015-05-29 12:06:56 +01002629 current_block_->AddInstruction(
2630 new (arena_) HLoadString(graph_->GetCurrentMethod(), instruction.VRegB_21c(), dex_pc));
Nicolas Geoffrayb5f62b32014-10-30 10:58:41 +00002631 UpdateLocal(instruction.VRegA_21c(), current_block_->GetLastInstruction());
2632 break;
2633 }
2634
2635 case Instruction::CONST_STRING_JUMBO: {
Nicolas Geoffrayfbdaa302015-05-29 12:06:56 +01002636 current_block_->AddInstruction(
2637 new (arena_) HLoadString(graph_->GetCurrentMethod(), instruction.VRegB_31c(), dex_pc));
Nicolas Geoffrayb5f62b32014-10-30 10:58:41 +00002638 UpdateLocal(instruction.VRegA_31c(), current_block_->GetLastInstruction());
2639 break;
2640 }
2641
Nicolas Geoffray424f6762014-11-03 14:51:25 +00002642 case Instruction::CONST_CLASS: {
2643 uint16_t type_index = instruction.VRegB_21c();
2644 bool type_known_final;
2645 bool type_known_abstract;
Nicolas Geoffraye53798a2014-12-01 10:31:54 +00002646 bool dont_use_is_referrers_class;
2647 // `CanAccessTypeWithoutChecks` will tell whether the method being
2648 // built is trying to access its own class, so that the generated
2649 // code can optimize for this case. However, the optimization does not
Nicolas Geoffray9437b782015-03-25 10:08:51 +00002650 // work for inlining, so we use `IsOutermostCompilingClass` instead.
Nicolas Geoffray424f6762014-11-03 14:51:25 +00002651 bool can_access = compiler_driver_->CanAccessTypeWithoutChecks(
2652 dex_compilation_unit_->GetDexMethodIndex(), *dex_file_, type_index,
Nicolas Geoffraye53798a2014-12-01 10:31:54 +00002653 &type_known_final, &type_known_abstract, &dont_use_is_referrers_class);
Nicolas Geoffray424f6762014-11-03 14:51:25 +00002654 if (!can_access) {
Calin Juravle48c2b032014-12-09 18:11:36 +00002655 MaybeRecordStat(MethodCompilationStat::kNotCompiledCantAccesType);
Nicolas Geoffray424f6762014-11-03 14:51:25 +00002656 return false;
2657 }
Nicolas Geoffrayd5111bf2015-05-22 15:37:09 +01002658 current_block_->AddInstruction(new (arena_) HLoadClass(
Nicolas Geoffray76b1e172015-05-27 17:18:33 +01002659 graph_->GetCurrentMethod(),
Nicolas Geoffrayd5111bf2015-05-22 15:37:09 +01002660 type_index,
2661 *dex_compilation_unit_->GetDexFile(),
2662 IsOutermostCompilingClass(type_index),
2663 dex_pc));
Nicolas Geoffray424f6762014-11-03 14:51:25 +00002664 UpdateLocal(instruction.VRegA_21c(), current_block_->GetLastInstruction());
2665 break;
2666 }
2667
Nicolas Geoffrayde58ab22014-11-05 12:46:03 +00002668 case Instruction::MOVE_EXCEPTION: {
2669 current_block_->AddInstruction(new (arena_) HLoadException());
2670 UpdateLocal(instruction.VRegA_11x(), current_block_->GetLastInstruction());
David Brazdilcb1c0552015-08-04 16:22:25 +01002671 current_block_->AddInstruction(new (arena_) HClearException());
Nicolas Geoffrayde58ab22014-11-05 12:46:03 +00002672 break;
2673 }
2674
2675 case Instruction::THROW: {
2676 HInstruction* exception = LoadLocal(instruction.VRegA_11x(), Primitive::kPrimNot);
Calin Juravle225ff812014-11-13 16:46:39 +00002677 current_block_->AddInstruction(new (arena_) HThrow(exception, dex_pc));
Nicolas Geoffrayde58ab22014-11-05 12:46:03 +00002678 // A throw instruction must branch to the exit block.
2679 current_block_->AddSuccessor(exit_block_);
2680 // We finished building this block. Set the current block to null to avoid
2681 // adding dead instructions to it.
2682 current_block_ = nullptr;
2683 break;
2684 }
2685
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +00002686 case Instruction::INSTANCE_OF: {
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00002687 uint8_t destination = instruction.VRegA_22c();
2688 uint8_t reference = instruction.VRegB_22c();
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +00002689 uint16_t type_index = instruction.VRegC_22c();
Calin Juravle225ff812014-11-13 16:46:39 +00002690 if (!BuildTypeCheck(instruction, destination, reference, type_index, dex_pc)) {
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +00002691 return false;
2692 }
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00002693 break;
2694 }
2695
2696 case Instruction::CHECK_CAST: {
2697 uint8_t reference = instruction.VRegA_21c();
2698 uint16_t type_index = instruction.VRegB_21c();
Calin Juravle225ff812014-11-13 16:46:39 +00002699 if (!BuildTypeCheck(instruction, -1, reference, type_index, dex_pc)) {
Nicolas Geoffray57a88d42014-11-10 15:09:21 +00002700 return false;
2701 }
Nicolas Geoffray6f5c41f2014-11-06 08:59:20 +00002702 break;
2703 }
2704
Nicolas Geoffrayb7baf5c2014-11-11 16:29:44 +00002705 case Instruction::MONITOR_ENTER: {
2706 current_block_->AddInstruction(new (arena_) HMonitorOperation(
2707 LoadLocal(instruction.VRegA_11x(), Primitive::kPrimNot),
2708 HMonitorOperation::kEnter,
Calin Juravle225ff812014-11-13 16:46:39 +00002709 dex_pc));
Nicolas Geoffrayb7baf5c2014-11-11 16:29:44 +00002710 break;
2711 }
2712
2713 case Instruction::MONITOR_EXIT: {
2714 current_block_->AddInstruction(new (arena_) HMonitorOperation(
2715 LoadLocal(instruction.VRegA_11x(), Primitive::kPrimNot),
2716 HMonitorOperation::kExit,
Calin Juravle225ff812014-11-13 16:46:39 +00002717 dex_pc));
Nicolas Geoffrayb7baf5c2014-11-11 16:29:44 +00002718 break;
2719 }
2720
Andreas Gamped881df52014-11-24 23:28:39 -08002721 case Instruction::PACKED_SWITCH: {
Calin Juravle48c2b032014-12-09 18:11:36 +00002722 BuildPackedSwitch(instruction, dex_pc);
Andreas Gamped881df52014-11-24 23:28:39 -08002723 break;
2724 }
2725
Andreas Gampee4d4d322014-12-04 09:09:57 -08002726 case Instruction::SPARSE_SWITCH: {
Calin Juravle48c2b032014-12-09 18:11:36 +00002727 BuildSparseSwitch(instruction, dex_pc);
Andreas Gampee4d4d322014-12-04 09:09:57 -08002728 break;
2729 }
2730
Nicolas Geoffray818f2102014-02-18 16:43:35 +00002731 default:
Calin Juravle48c2b032014-12-09 18:11:36 +00002732 VLOG(compiler) << "Did not compile "
2733 << PrettyMethod(dex_compilation_unit_->GetDexMethodIndex(), *dex_file_)
2734 << " because of unhandled instruction "
2735 << instruction.Name();
2736 MaybeRecordStat(MethodCompilationStat::kNotCompiledUnhandledInstruction);
Nicolas Geoffray818f2102014-02-18 16:43:35 +00002737 return false;
2738 }
2739 return true;
Nicolas Geoffraydadf3172014-11-07 16:36:02 +00002740} // NOLINT(readability/fn_size)
Nicolas Geoffray818f2102014-02-18 16:43:35 +00002741
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +00002742HLocal* HGraphBuilder::GetLocalAt(int register_index) const {
2743 return locals_.Get(register_index);
2744}
2745
2746void HGraphBuilder::UpdateLocal(int register_index, HInstruction* instruction) const {
2747 HLocal* local = GetLocalAt(register_index);
2748 current_block_->AddInstruction(new (arena_) HStoreLocal(local, instruction));
2749}
2750
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002751HInstruction* HGraphBuilder::LoadLocal(int register_index, Primitive::Type type) const {
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +00002752 HLocal* local = GetLocalAt(register_index);
Nicolas Geoffray01bc96d2014-04-11 17:43:50 +01002753 current_block_->AddInstruction(new (arena_) HLoadLocal(local, type));
Nicolas Geoffray787c3072014-03-17 10:20:19 +00002754 return current_block_->GetLastInstruction();
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +00002755}
2756
Nicolas Geoffray818f2102014-02-18 16:43:35 +00002757} // namespace art