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Vladimir Marko95a05972014-05-30 10:01:32 +01001/*
2 * 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
17#include "compiler_internals.h"
18#include "dataflow_iterator.h"
19#include "dataflow_iterator-inl.h"
20#include "global_value_numbering.h"
21#include "local_value_numbering.h"
22#include "gtest/gtest.h"
23
24namespace art {
25
26class GlobalValueNumberingTest : public testing::Test {
27 protected:
Vladimir Markoa4426cf2014-10-22 17:15:53 +010028 static constexpr uint16_t kNoValue = GlobalValueNumbering::kNoValue;
29
Vladimir Marko95a05972014-05-30 10:01:32 +010030 struct IFieldDef {
31 uint16_t field_idx;
32 uintptr_t declaring_dex_file;
33 uint16_t declaring_field_idx;
34 bool is_volatile;
35 };
36
37 struct SFieldDef {
38 uint16_t field_idx;
39 uintptr_t declaring_dex_file;
40 uint16_t declaring_field_idx;
41 bool is_volatile;
42 };
43
44 struct BBDef {
45 static constexpr size_t kMaxSuccessors = 4;
46 static constexpr size_t kMaxPredecessors = 4;
47
48 BBType type;
49 size_t num_successors;
50 BasicBlockId successors[kMaxPredecessors];
51 size_t num_predecessors;
52 BasicBlockId predecessors[kMaxPredecessors];
53 };
54
55 struct MIRDef {
56 static constexpr size_t kMaxSsaDefs = 2;
57 static constexpr size_t kMaxSsaUses = 4;
58
59 BasicBlockId bbid;
60 Instruction::Code opcode;
61 int64_t value;
62 uint32_t field_info;
63 size_t num_uses;
64 int32_t uses[kMaxSsaUses];
65 size_t num_defs;
66 int32_t defs[kMaxSsaDefs];
67 };
68
69#define DEF_SUCC0() \
70 0u, { }
71#define DEF_SUCC1(s1) \
72 1u, { s1 }
73#define DEF_SUCC2(s1, s2) \
74 2u, { s1, s2 }
75#define DEF_SUCC3(s1, s2, s3) \
76 3u, { s1, s2, s3 }
77#define DEF_SUCC4(s1, s2, s3, s4) \
78 4u, { s1, s2, s3, s4 }
79#define DEF_PRED0() \
80 0u, { }
81#define DEF_PRED1(p1) \
82 1u, { p1 }
83#define DEF_PRED2(p1, p2) \
84 2u, { p1, p2 }
85#define DEF_PRED3(p1, p2, p3) \
86 3u, { p1, p2, p3 }
87#define DEF_PRED4(p1, p2, p3, p4) \
88 4u, { p1, p2, p3, p4 }
89#define DEF_BB(type, succ, pred) \
90 { type, succ, pred }
91
92#define DEF_CONST(bb, opcode, reg, value) \
93 { bb, opcode, value, 0u, 0, { }, 1, { reg } }
94#define DEF_CONST_WIDE(bb, opcode, reg, value) \
95 { bb, opcode, value, 0u, 0, { }, 2, { reg, reg + 1 } }
96#define DEF_CONST_STRING(bb, opcode, reg, index) \
97 { bb, opcode, index, 0u, 0, { }, 1, { reg } }
98#define DEF_IGET(bb, opcode, reg, obj, field_info) \
99 { bb, opcode, 0u, field_info, 1, { obj }, 1, { reg } }
100#define DEF_IGET_WIDE(bb, opcode, reg, obj, field_info) \
101 { bb, opcode, 0u, field_info, 1, { obj }, 2, { reg, reg + 1 } }
102#define DEF_IPUT(bb, opcode, reg, obj, field_info) \
103 { bb, opcode, 0u, field_info, 2, { reg, obj }, 0, { } }
104#define DEF_IPUT_WIDE(bb, opcode, reg, obj, field_info) \
105 { bb, opcode, 0u, field_info, 3, { reg, reg + 1, obj }, 0, { } }
106#define DEF_SGET(bb, opcode, reg, field_info) \
107 { bb, opcode, 0u, field_info, 0, { }, 1, { reg } }
108#define DEF_SGET_WIDE(bb, opcode, reg, field_info) \
109 { bb, opcode, 0u, field_info, 0, { }, 2, { reg, reg + 1 } }
110#define DEF_SPUT(bb, opcode, reg, field_info) \
111 { bb, opcode, 0u, field_info, 1, { reg }, 0, { } }
112#define DEF_SPUT_WIDE(bb, opcode, reg, field_info) \
113 { bb, opcode, 0u, field_info, 2, { reg, reg + 1 }, 0, { } }
114#define DEF_AGET(bb, opcode, reg, obj, idx) \
115 { bb, opcode, 0u, 0u, 2, { obj, idx }, 1, { reg } }
116#define DEF_AGET_WIDE(bb, opcode, reg, obj, idx) \
117 { bb, opcode, 0u, 0u, 2, { obj, idx }, 2, { reg, reg + 1 } }
118#define DEF_APUT(bb, opcode, reg, obj, idx) \
119 { bb, opcode, 0u, 0u, 3, { reg, obj, idx }, 0, { } }
120#define DEF_APUT_WIDE(bb, opcode, reg, obj, idx) \
121 { bb, opcode, 0u, 0u, 4, { reg, reg + 1, obj, idx }, 0, { } }
122#define DEF_INVOKE1(bb, opcode, reg) \
123 { bb, opcode, 0u, 0u, 1, { reg }, 0, { } }
124#define DEF_UNIQUE_REF(bb, opcode, reg) \
125 { bb, opcode, 0u, 0u, 0, { }, 1, { reg } } // CONST_CLASS, CONST_STRING, NEW_ARRAY, ...
126#define DEF_IFZ(bb, opcode, reg) \
127 { bb, opcode, 0u, 0u, 1, { reg }, 0, { } }
128#define DEF_MOVE(bb, opcode, reg, src) \
129 { bb, opcode, 0u, 0u, 1, { src }, 1, { reg } }
Vladimir Markoa4426cf2014-10-22 17:15:53 +0100130#define DEF_MOVE_WIDE(bb, opcode, reg, src) \
131 { bb, opcode, 0u, 0u, 2, { src, src + 1 }, 2, { reg, reg + 1 } }
Vladimir Marko95a05972014-05-30 10:01:32 +0100132#define DEF_PHI2(bb, reg, src1, src2) \
133 { bb, static_cast<Instruction::Code>(kMirOpPhi), 0, 0u, 2u, { src1, src2 }, 1, { reg } }
134
135 void DoPrepareIFields(const IFieldDef* defs, size_t count) {
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100136 cu_.mir_graph->ifield_lowering_infos_.clear();
137 cu_.mir_graph->ifield_lowering_infos_.reserve(count);
Vladimir Marko95a05972014-05-30 10:01:32 +0100138 for (size_t i = 0u; i != count; ++i) {
139 const IFieldDef* def = &defs[i];
140 MirIFieldLoweringInfo field_info(def->field_idx);
141 if (def->declaring_dex_file != 0u) {
142 field_info.declaring_dex_file_ = reinterpret_cast<const DexFile*>(def->declaring_dex_file);
143 field_info.declaring_field_idx_ = def->declaring_field_idx;
144 field_info.flags_ = 0u | // Without kFlagIsStatic.
145 (def->is_volatile ? MirIFieldLoweringInfo::kFlagIsVolatile : 0u);
146 }
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100147 cu_.mir_graph->ifield_lowering_infos_.push_back(field_info);
Vladimir Marko95a05972014-05-30 10:01:32 +0100148 }
149 }
150
151 template <size_t count>
152 void PrepareIFields(const IFieldDef (&defs)[count]) {
153 DoPrepareIFields(defs, count);
154 }
155
156 void DoPrepareSFields(const SFieldDef* defs, size_t count) {
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100157 cu_.mir_graph->sfield_lowering_infos_.clear();
158 cu_.mir_graph->sfield_lowering_infos_.reserve(count);
Vladimir Marko95a05972014-05-30 10:01:32 +0100159 for (size_t i = 0u; i != count; ++i) {
160 const SFieldDef* def = &defs[i];
161 MirSFieldLoweringInfo field_info(def->field_idx);
162 // Mark even unresolved fields as initialized.
163 field_info.flags_ = MirSFieldLoweringInfo::kFlagIsStatic |
164 MirSFieldLoweringInfo::kFlagIsInitialized;
165 if (def->declaring_dex_file != 0u) {
166 field_info.declaring_dex_file_ = reinterpret_cast<const DexFile*>(def->declaring_dex_file);
167 field_info.declaring_field_idx_ = def->declaring_field_idx;
168 field_info.flags_ |= (def->is_volatile ? MirSFieldLoweringInfo::kFlagIsVolatile : 0u);
169 }
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100170 cu_.mir_graph->sfield_lowering_infos_.push_back(field_info);
Vladimir Marko95a05972014-05-30 10:01:32 +0100171 }
172 }
173
174 template <size_t count>
175 void PrepareSFields(const SFieldDef (&defs)[count]) {
176 DoPrepareSFields(defs, count);
177 }
178
179 void DoPrepareBasicBlocks(const BBDef* defs, size_t count) {
180 cu_.mir_graph->block_id_map_.clear();
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100181 cu_.mir_graph->block_list_.clear();
Vladimir Marko95a05972014-05-30 10:01:32 +0100182 ASSERT_LT(3u, count); // null, entry, exit and at least one bytecode block.
183 ASSERT_EQ(kNullBlock, defs[0].type);
184 ASSERT_EQ(kEntryBlock, defs[1].type);
185 ASSERT_EQ(kExitBlock, defs[2].type);
186 for (size_t i = 0u; i != count; ++i) {
187 const BBDef* def = &defs[i];
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100188 BasicBlock* bb = cu_.mir_graph->CreateNewBB(def->type);
Vladimir Marko95a05972014-05-30 10:01:32 +0100189 if (def->num_successors <= 2) {
190 bb->successor_block_list_type = kNotUsed;
Vladimir Marko95a05972014-05-30 10:01:32 +0100191 bb->fall_through = (def->num_successors >= 1) ? def->successors[0] : 0u;
192 bb->taken = (def->num_successors >= 2) ? def->successors[1] : 0u;
193 } else {
194 bb->successor_block_list_type = kPackedSwitch;
195 bb->fall_through = 0u;
196 bb->taken = 0u;
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100197 bb->successor_blocks.reserve(def->num_successors);
Vladimir Marko95a05972014-05-30 10:01:32 +0100198 for (size_t j = 0u; j != def->num_successors; ++j) {
199 SuccessorBlockInfo* successor_block_info =
200 static_cast<SuccessorBlockInfo*>(cu_.arena.Alloc(sizeof(SuccessorBlockInfo),
201 kArenaAllocSuccessor));
202 successor_block_info->block = j;
203 successor_block_info->key = 0u; // Not used by class init check elimination.
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100204 bb->successor_blocks.push_back(successor_block_info);
Vladimir Marko95a05972014-05-30 10:01:32 +0100205 }
206 }
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100207 bb->predecessors.assign(def->predecessors, def->predecessors + def->num_predecessors);
Vladimir Marko95a05972014-05-30 10:01:32 +0100208 if (def->type == kDalvikByteCode || def->type == kEntryBlock || def->type == kExitBlock) {
209 bb->data_flow_info = static_cast<BasicBlockDataFlow*>(
210 cu_.arena.Alloc(sizeof(BasicBlockDataFlow), kArenaAllocDFInfo));
Vladimir Markob19955d2014-07-29 12:04:10 +0100211 bb->data_flow_info->live_in_v = live_in_v_;
Vladimir Marko95a05972014-05-30 10:01:32 +0100212 }
213 }
214 cu_.mir_graph->num_blocks_ = count;
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100215 ASSERT_EQ(count, cu_.mir_graph->block_list_.size());
216 cu_.mir_graph->entry_block_ = cu_.mir_graph->block_list_[1];
Vladimir Marko95a05972014-05-30 10:01:32 +0100217 ASSERT_EQ(kEntryBlock, cu_.mir_graph->entry_block_->block_type);
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100218 cu_.mir_graph->exit_block_ = cu_.mir_graph->block_list_[2];
Vladimir Marko95a05972014-05-30 10:01:32 +0100219 ASSERT_EQ(kExitBlock, cu_.mir_graph->exit_block_->block_type);
220 }
221
222 template <size_t count>
223 void PrepareBasicBlocks(const BBDef (&defs)[count]) {
224 DoPrepareBasicBlocks(defs, count);
225 }
226
227 void DoPrepareMIRs(const MIRDef* defs, size_t count) {
228 mir_count_ = count;
229 mirs_ = reinterpret_cast<MIR*>(cu_.arena.Alloc(sizeof(MIR) * count, kArenaAllocMIR));
230 ssa_reps_.resize(count);
231 for (size_t i = 0u; i != count; ++i) {
232 const MIRDef* def = &defs[i];
233 MIR* mir = &mirs_[i];
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100234 ASSERT_LT(def->bbid, cu_.mir_graph->block_list_.size());
235 BasicBlock* bb = cu_.mir_graph->block_list_[def->bbid];
Vladimir Marko95a05972014-05-30 10:01:32 +0100236 bb->AppendMIR(mir);
237 mir->dalvikInsn.opcode = def->opcode;
238 mir->dalvikInsn.vB = static_cast<int32_t>(def->value);
239 mir->dalvikInsn.vB_wide = def->value;
240 if (def->opcode >= Instruction::IGET && def->opcode <= Instruction::IPUT_SHORT) {
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100241 ASSERT_LT(def->field_info, cu_.mir_graph->ifield_lowering_infos_.size());
Vladimir Marko95a05972014-05-30 10:01:32 +0100242 mir->meta.ifield_lowering_info = def->field_info;
243 } else if (def->opcode >= Instruction::SGET && def->opcode <= Instruction::SPUT_SHORT) {
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100244 ASSERT_LT(def->field_info, cu_.mir_graph->sfield_lowering_infos_.size());
Vladimir Marko95a05972014-05-30 10:01:32 +0100245 mir->meta.sfield_lowering_info = def->field_info;
246 } else if (def->opcode == static_cast<Instruction::Code>(kMirOpPhi)) {
247 mir->meta.phi_incoming = static_cast<BasicBlockId*>(
248 allocator_->Alloc(def->num_uses * sizeof(BasicBlockId), kArenaAllocDFInfo));
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100249 ASSERT_EQ(def->num_uses, bb->predecessors.size());
250 std::copy(bb->predecessors.begin(), bb->predecessors.end(), mir->meta.phi_incoming);
Vladimir Marko95a05972014-05-30 10:01:32 +0100251 }
252 mir->ssa_rep = &ssa_reps_[i];
253 mir->ssa_rep->num_uses = def->num_uses;
254 mir->ssa_rep->uses = const_cast<int32_t*>(def->uses); // Not modified by LVN.
255 mir->ssa_rep->fp_use = nullptr; // Not used by LVN.
256 mir->ssa_rep->num_defs = def->num_defs;
257 mir->ssa_rep->defs = const_cast<int32_t*>(def->defs); // Not modified by LVN.
258 mir->ssa_rep->fp_def = nullptr; // Not used by LVN.
259 mir->dalvikInsn.opcode = def->opcode;
260 mir->offset = i; // LVN uses offset only for debug output
261 mir->optimization_flags = 0u;
262 }
263 mirs_[count - 1u].next = nullptr;
Razvan A Lupusoru8d0d03e2014-06-06 17:04:52 -0700264 DexFile::CodeItem* code_item = static_cast<DexFile::CodeItem*>(
265 cu_.arena.Alloc(sizeof(DexFile::CodeItem), kArenaAllocMisc));
266 code_item->insns_size_in_code_units_ = 2u * count;
Razvan A Lupusoru75035972014-09-11 15:24:59 -0700267 cu_.mir_graph->current_code_item_ = code_item;
Vladimir Marko95a05972014-05-30 10:01:32 +0100268 }
269
270 template <size_t count>
271 void PrepareMIRs(const MIRDef (&defs)[count]) {
272 DoPrepareMIRs(defs, count);
273 }
274
275 void PerformGVN() {
Vladimir Marko55fff042014-07-10 12:42:52 +0100276 DoPerformGVN<LoopRepeatingTopologicalSortIterator>();
Vladimir Marko95a05972014-05-30 10:01:32 +0100277 }
278
279 void PerformPreOrderDfsGVN() {
Vladimir Marko95a05972014-05-30 10:01:32 +0100280 DoPerformGVN<RepeatingPreOrderDfsIterator>();
281 }
282
283 template <typename IteratorType>
284 void DoPerformGVN() {
Vladimir Marko55fff042014-07-10 12:42:52 +0100285 cu_.mir_graph->SSATransformationStart();
286 cu_.mir_graph->ComputeDFSOrders();
287 cu_.mir_graph->ComputeDominators();
288 cu_.mir_graph->ComputeTopologicalSortOrder();
289 cu_.mir_graph->SSATransformationEnd();
Vladimir Marko95a05972014-05-30 10:01:32 +0100290 ASSERT_TRUE(gvn_ == nullptr);
Vladimir Marko415ac882014-09-30 18:09:14 +0100291 gvn_.reset(new (allocator_.get()) GlobalValueNumbering(&cu_, allocator_.get(),
292 GlobalValueNumbering::kModeGvn));
Vladimir Marko95a05972014-05-30 10:01:32 +0100293 value_names_.resize(mir_count_, 0xffffu);
294 IteratorType iterator(cu_.mir_graph.get());
295 bool change = false;
296 for (BasicBlock* bb = iterator.Next(change); bb != nullptr; bb = iterator.Next(change)) {
297 LocalValueNumbering* lvn = gvn_->PrepareBasicBlock(bb);
298 if (lvn != nullptr) {
299 for (MIR* mir = bb->first_mir_insn; mir != nullptr; mir = mir->next) {
300 value_names_[mir - mirs_] = lvn->GetValueNumber(mir);
301 }
302 }
303 change = (lvn != nullptr) && gvn_->FinishBasicBlock(bb);
304 ASSERT_TRUE(gvn_->Good());
305 }
306 }
307
308 void PerformGVNCodeModifications() {
309 ASSERT_TRUE(gvn_ != nullptr);
310 ASSERT_TRUE(gvn_->Good());
Vladimir Marko415ac882014-09-30 18:09:14 +0100311 gvn_->StartPostProcessing();
Vladimir Marko55fff042014-07-10 12:42:52 +0100312 TopologicalSortIterator iterator(cu_.mir_graph.get());
Vladimir Marko95a05972014-05-30 10:01:32 +0100313 for (BasicBlock* bb = iterator.Next(); bb != nullptr; bb = iterator.Next()) {
314 LocalValueNumbering* lvn = gvn_->PrepareBasicBlock(bb);
315 if (lvn != nullptr) {
316 for (MIR* mir = bb->first_mir_insn; mir != nullptr; mir = mir->next) {
317 uint16_t value_name = lvn->GetValueNumber(mir);
318 ASSERT_EQ(value_name, value_names_[mir - mirs_]);
319 }
320 }
321 bool change = (lvn != nullptr) && gvn_->FinishBasicBlock(bb);
322 ASSERT_FALSE(change);
323 ASSERT_TRUE(gvn_->Good());
324 }
325 }
326
327 GlobalValueNumberingTest()
328 : pool_(),
329 cu_(&pool_),
330 mir_count_(0u),
331 mirs_(nullptr),
332 ssa_reps_(),
333 allocator_(),
334 gvn_(),
Vladimir Markob19955d2014-07-29 12:04:10 +0100335 value_names_(),
336 live_in_v_(new (&cu_.arena) ArenaBitVector(&cu_.arena, kMaxSsaRegs, false, kBitMapMisc)) {
Vladimir Marko95a05972014-05-30 10:01:32 +0100337 cu_.mir_graph.reset(new MIRGraph(&cu_, &cu_.arena));
338 cu_.access_flags = kAccStatic; // Don't let "this" interfere with this test.
339 allocator_.reset(ScopedArenaAllocator::Create(&cu_.arena_stack));
Vladimir Markob19955d2014-07-29 12:04:10 +0100340 // Bind all possible sregs to live vregs for test purposes.
341 live_in_v_->SetInitialBits(kMaxSsaRegs);
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100342 cu_.mir_graph->ssa_base_vregs_.reserve(kMaxSsaRegs);
343 cu_.mir_graph->ssa_subscripts_.reserve(kMaxSsaRegs);
Vladimir Markob19955d2014-07-29 12:04:10 +0100344 for (unsigned int i = 0; i < kMaxSsaRegs; i++) {
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100345 cu_.mir_graph->ssa_base_vregs_.push_back(i);
346 cu_.mir_graph->ssa_subscripts_.push_back(0);
Vladimir Markob19955d2014-07-29 12:04:10 +0100347 }
Vladimir Markoa4426cf2014-10-22 17:15:53 +0100348 // Set shorty for a void-returning method without arguments.
349 cu_.shorty = "V";
Vladimir Marko95a05972014-05-30 10:01:32 +0100350 }
351
Vladimir Markob19955d2014-07-29 12:04:10 +0100352 static constexpr size_t kMaxSsaRegs = 16384u;
353
Vladimir Marko95a05972014-05-30 10:01:32 +0100354 ArenaPool pool_;
355 CompilationUnit cu_;
356 size_t mir_count_;
357 MIR* mirs_;
358 std::vector<SSARepresentation> ssa_reps_;
359 std::unique_ptr<ScopedArenaAllocator> allocator_;
360 std::unique_ptr<GlobalValueNumbering> gvn_;
361 std::vector<uint16_t> value_names_;
Vladimir Markob19955d2014-07-29 12:04:10 +0100362 ArenaBitVector* live_in_v_;
Vladimir Marko95a05972014-05-30 10:01:32 +0100363};
364
Vladimir Markoa4426cf2014-10-22 17:15:53 +0100365constexpr uint16_t GlobalValueNumberingTest::kNoValue;
366
Vladimir Marko95a05972014-05-30 10:01:32 +0100367class GlobalValueNumberingTestDiamond : public GlobalValueNumberingTest {
368 public:
369 GlobalValueNumberingTestDiamond();
370
371 private:
372 static const BBDef kDiamondBbs[];
373};
374
375const GlobalValueNumberingTest::BBDef GlobalValueNumberingTestDiamond::kDiamondBbs[] = {
376 DEF_BB(kNullBlock, DEF_SUCC0(), DEF_PRED0()),
377 DEF_BB(kEntryBlock, DEF_SUCC1(3), DEF_PRED0()),
378 DEF_BB(kExitBlock, DEF_SUCC0(), DEF_PRED1(6)),
379 DEF_BB(kDalvikByteCode, DEF_SUCC2(4, 5), DEF_PRED1(1)), // Block #3, top of the diamond.
380 DEF_BB(kDalvikByteCode, DEF_SUCC1(6), DEF_PRED1(3)), // Block #4, left side.
381 DEF_BB(kDalvikByteCode, DEF_SUCC1(6), DEF_PRED1(3)), // Block #5, right side.
382 DEF_BB(kDalvikByteCode, DEF_SUCC1(2), DEF_PRED2(4, 5)), // Block #6, bottom.
383};
384
385GlobalValueNumberingTestDiamond::GlobalValueNumberingTestDiamond()
386 : GlobalValueNumberingTest() {
387 PrepareBasicBlocks(kDiamondBbs);
388}
389
390class GlobalValueNumberingTestLoop : public GlobalValueNumberingTest {
391 public:
392 GlobalValueNumberingTestLoop();
393
394 private:
395 static const BBDef kLoopBbs[];
396};
397
398const GlobalValueNumberingTest::BBDef GlobalValueNumberingTestLoop::kLoopBbs[] = {
399 DEF_BB(kNullBlock, DEF_SUCC0(), DEF_PRED0()),
400 DEF_BB(kEntryBlock, DEF_SUCC1(3), DEF_PRED0()),
401 DEF_BB(kExitBlock, DEF_SUCC0(), DEF_PRED1(5)),
402 DEF_BB(kDalvikByteCode, DEF_SUCC1(4), DEF_PRED1(1)),
403 DEF_BB(kDalvikByteCode, DEF_SUCC2(5, 4), DEF_PRED2(3, 4)), // "taken" loops to self.
404 DEF_BB(kDalvikByteCode, DEF_SUCC1(2), DEF_PRED1(4)),
405};
406
407GlobalValueNumberingTestLoop::GlobalValueNumberingTestLoop()
408 : GlobalValueNumberingTest() {
409 PrepareBasicBlocks(kLoopBbs);
410}
411
412class GlobalValueNumberingTestCatch : public GlobalValueNumberingTest {
413 public:
414 GlobalValueNumberingTestCatch();
415
416 private:
417 static const BBDef kCatchBbs[];
418};
419
420const GlobalValueNumberingTest::BBDef GlobalValueNumberingTestCatch::kCatchBbs[] = {
421 DEF_BB(kNullBlock, DEF_SUCC0(), DEF_PRED0()),
422 DEF_BB(kEntryBlock, DEF_SUCC1(3), DEF_PRED0()),
423 DEF_BB(kExitBlock, DEF_SUCC0(), DEF_PRED1(6)),
424 DEF_BB(kDalvikByteCode, DEF_SUCC1(4), DEF_PRED1(1)), // The top.
425 DEF_BB(kDalvikByteCode, DEF_SUCC1(6), DEF_PRED1(3)), // The throwing insn.
426 DEF_BB(kDalvikByteCode, DEF_SUCC1(6), DEF_PRED1(3)), // Catch handler.
427 DEF_BB(kDalvikByteCode, DEF_SUCC1(2), DEF_PRED2(4, 5)), // The merged block.
428};
429
430GlobalValueNumberingTestCatch::GlobalValueNumberingTestCatch()
431 : GlobalValueNumberingTest() {
432 PrepareBasicBlocks(kCatchBbs);
433 // Mark catch handler.
434 BasicBlock* catch_handler = cu_.mir_graph->GetBasicBlock(5u);
435 catch_handler->catch_entry = true;
436 // Add successor block info to the check block.
437 BasicBlock* check_bb = cu_.mir_graph->GetBasicBlock(3u);
438 check_bb->successor_block_list_type = kCatch;
Vladimir Marko95a05972014-05-30 10:01:32 +0100439 SuccessorBlockInfo* successor_block_info = reinterpret_cast<SuccessorBlockInfo*>
440 (cu_.arena.Alloc(sizeof(SuccessorBlockInfo), kArenaAllocSuccessor));
441 successor_block_info->block = catch_handler->id;
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100442 check_bb->successor_blocks.push_back(successor_block_info);
Vladimir Marko95a05972014-05-30 10:01:32 +0100443}
444
445class GlobalValueNumberingTestTwoConsecutiveLoops : public GlobalValueNumberingTest {
446 public:
447 GlobalValueNumberingTestTwoConsecutiveLoops();
448
449 private:
450 static const BBDef kTwoConsecutiveLoopsBbs[];
451};
452
453const GlobalValueNumberingTest::BBDef
454GlobalValueNumberingTestTwoConsecutiveLoops::kTwoConsecutiveLoopsBbs[] = {
455 DEF_BB(kNullBlock, DEF_SUCC0(), DEF_PRED0()),
456 DEF_BB(kEntryBlock, DEF_SUCC1(3), DEF_PRED0()),
457 DEF_BB(kExitBlock, DEF_SUCC0(), DEF_PRED1(9)),
458 DEF_BB(kDalvikByteCode, DEF_SUCC1(4), DEF_PRED1(1)),
459 DEF_BB(kDalvikByteCode, DEF_SUCC2(5, 6), DEF_PRED2(3, 5)), // "taken" skips over the loop.
460 DEF_BB(kDalvikByteCode, DEF_SUCC1(4), DEF_PRED1(4)),
461 DEF_BB(kDalvikByteCode, DEF_SUCC1(7), DEF_PRED1(4)),
462 DEF_BB(kDalvikByteCode, DEF_SUCC2(8, 9), DEF_PRED2(6, 8)), // "taken" skips over the loop.
463 DEF_BB(kDalvikByteCode, DEF_SUCC1(7), DEF_PRED1(7)),
464 DEF_BB(kDalvikByteCode, DEF_SUCC1(2), DEF_PRED1(7)),
465};
466
467GlobalValueNumberingTestTwoConsecutiveLoops::GlobalValueNumberingTestTwoConsecutiveLoops()
468 : GlobalValueNumberingTest() {
469 PrepareBasicBlocks(kTwoConsecutiveLoopsBbs);
470}
471
472class GlobalValueNumberingTestTwoNestedLoops : public GlobalValueNumberingTest {
473 public:
474 GlobalValueNumberingTestTwoNestedLoops();
475
476 private:
477 static const BBDef kTwoNestedLoopsBbs[];
478};
479
480const GlobalValueNumberingTest::BBDef
481GlobalValueNumberingTestTwoNestedLoops::kTwoNestedLoopsBbs[] = {
482 DEF_BB(kNullBlock, DEF_SUCC0(), DEF_PRED0()),
483 DEF_BB(kEntryBlock, DEF_SUCC1(3), DEF_PRED0()),
484 DEF_BB(kExitBlock, DEF_SUCC0(), DEF_PRED1(8)),
485 DEF_BB(kDalvikByteCode, DEF_SUCC1(4), DEF_PRED1(1)),
486 DEF_BB(kDalvikByteCode, DEF_SUCC2(5, 8), DEF_PRED2(3, 7)), // "taken" skips over the loop.
487 DEF_BB(kDalvikByteCode, DEF_SUCC2(6, 7), DEF_PRED2(4, 6)), // "taken" skips over the loop.
488 DEF_BB(kDalvikByteCode, DEF_SUCC1(5), DEF_PRED1(5)),
489 DEF_BB(kDalvikByteCode, DEF_SUCC1(4), DEF_PRED1(5)),
490 DEF_BB(kDalvikByteCode, DEF_SUCC1(2), DEF_PRED1(4)),
491};
492
493GlobalValueNumberingTestTwoNestedLoops::GlobalValueNumberingTestTwoNestedLoops()
494 : GlobalValueNumberingTest() {
495 PrepareBasicBlocks(kTwoNestedLoopsBbs);
496}
497
498TEST_F(GlobalValueNumberingTestDiamond, NonAliasingIFields) {
499 static const IFieldDef ifields[] = {
500 { 0u, 1u, 0u, false }, // Int.
501 { 1u, 1u, 1u, false }, // Int.
502 { 2u, 1u, 2u, false }, // Int.
503 { 3u, 1u, 3u, false }, // Int.
504 { 4u, 1u, 4u, false }, // Short.
505 { 5u, 1u, 5u, false }, // Char.
506 { 6u, 0u, 0u, false }, // Unresolved, Short.
507 { 7u, 1u, 7u, false }, // Int.
508 { 8u, 0u, 0u, false }, // Unresolved, Int.
509 { 9u, 1u, 9u, false }, // Int.
510 { 10u, 1u, 10u, false }, // Int.
511 { 11u, 1u, 11u, false }, // Int.
512 };
513 static const MIRDef mirs[] = {
514 // NOTE: MIRs here are ordered by unique tests. They will be put into appropriate blocks.
515 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 100u),
516 DEF_IGET(3, Instruction::IGET, 1u, 100u, 0u),
517 DEF_IGET(6, Instruction::IGET, 2u, 100u, 0u), // Same as at the top.
518
519 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 200u),
520 DEF_IGET(4, Instruction::IGET, 4u, 200u, 1u),
521 DEF_IGET(6, Instruction::IGET, 5u, 200u, 1u), // Same as at the left side.
522
523 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 300u),
524 DEF_IGET(3, Instruction::IGET, 7u, 300u, 2u),
525 DEF_CONST(5, Instruction::CONST, 8u, 1000),
526 DEF_IPUT(5, Instruction::IPUT, 8u, 300u, 2u),
527 DEF_IGET(6, Instruction::IGET, 10u, 300u, 2u), // Differs from the top and the CONST.
528
529 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 400u),
530 DEF_IGET(3, Instruction::IGET, 12u, 400u, 3u),
531 DEF_CONST(3, Instruction::CONST, 13u, 2000),
532 DEF_IPUT(4, Instruction::IPUT, 13u, 400u, 3u),
533 DEF_IPUT(5, Instruction::IPUT, 13u, 400u, 3u),
534 DEF_IGET(6, Instruction::IGET, 16u, 400u, 3u), // Differs from the top, equals the CONST.
535
536 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 500u),
537 DEF_IGET(3, Instruction::IGET_SHORT, 18u, 500u, 4u),
538 DEF_IGET(3, Instruction::IGET_CHAR, 19u, 500u, 5u),
539 DEF_IPUT(4, Instruction::IPUT_SHORT, 20u, 500u, 6u), // Clobbers field #4, not #5.
540 DEF_IGET(6, Instruction::IGET_SHORT, 21u, 500u, 4u), // Differs from the top.
541 DEF_IGET(6, Instruction::IGET_CHAR, 22u, 500u, 5u), // Same as the top.
542
543 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 600u),
544 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 601u),
545 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 602u),
546 DEF_IGET(3, Instruction::IGET, 26u, 600u, 7u),
547 DEF_IGET(3, Instruction::IGET, 27u, 601u, 7u),
548 DEF_IPUT(4, Instruction::IPUT, 28u, 602u, 8u), // Doesn't clobber field #7 for other refs.
549 DEF_IGET(6, Instruction::IGET, 29u, 600u, 7u), // Same as the top.
550 DEF_IGET(6, Instruction::IGET, 30u, 601u, 7u), // Same as the top.
551
552 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 700u),
553 DEF_CONST(4, Instruction::CONST, 32u, 3000),
554 DEF_IPUT(4, Instruction::IPUT, 32u, 700u, 9u),
555 DEF_IPUT(4, Instruction::IPUT, 32u, 700u, 10u),
556 DEF_CONST(5, Instruction::CONST, 35u, 3001),
557 DEF_IPUT(5, Instruction::IPUT, 35u, 700u, 9u),
558 DEF_IPUT(5, Instruction::IPUT, 35u, 700u, 10u),
559 DEF_IGET(6, Instruction::IGET, 38u, 700u, 9u),
560 DEF_IGET(6, Instruction::IGET, 39u, 700u, 10u), // Same value as read from field #9.
561
562 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 800u),
563 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 801u),
564 DEF_CONST(4, Instruction::CONST, 42u, 3000),
565 DEF_IPUT(4, Instruction::IPUT, 42u, 800u, 11u),
566 DEF_IPUT(4, Instruction::IPUT, 42u, 801u, 11u),
567 DEF_CONST(5, Instruction::CONST, 45u, 3001),
568 DEF_IPUT(5, Instruction::IPUT, 45u, 800u, 11u),
569 DEF_IPUT(5, Instruction::IPUT, 45u, 801u, 11u),
570 DEF_IGET(6, Instruction::IGET, 48u, 800u, 11u),
571 DEF_IGET(6, Instruction::IGET, 49u, 801u, 11u), // Same value as read from ref 46u.
572
573 // Invoke doesn't interfere with non-aliasing refs. There's one test above where a reference
574 // escapes in the left BB (we let a reference escape if we use it to store to an unresolved
575 // field) and the INVOKE in the right BB shouldn't interfere with that either.
576 DEF_INVOKE1(5, Instruction::INVOKE_STATIC, 48u),
577 };
578
579 PrepareIFields(ifields);
580 PrepareMIRs(mirs);
581 PerformGVN();
582 ASSERT_EQ(arraysize(mirs), value_names_.size());
583 EXPECT_EQ(value_names_[1], value_names_[2]);
584
585 EXPECT_EQ(value_names_[4], value_names_[5]);
586
587 EXPECT_NE(value_names_[7], value_names_[10]);
588 EXPECT_NE(value_names_[8], value_names_[10]);
589
590 EXPECT_NE(value_names_[12], value_names_[16]);
591 EXPECT_EQ(value_names_[13], value_names_[16]);
592
593 EXPECT_NE(value_names_[18], value_names_[21]);
594 EXPECT_EQ(value_names_[19], value_names_[22]);
595
596 EXPECT_EQ(value_names_[26], value_names_[29]);
597 EXPECT_EQ(value_names_[27], value_names_[30]);
598
599 EXPECT_EQ(value_names_[38], value_names_[39]);
600
601 EXPECT_EQ(value_names_[48], value_names_[49]);
602}
603
604TEST_F(GlobalValueNumberingTestDiamond, AliasingIFieldsSingleObject) {
605 static const IFieldDef ifields[] = {
606 { 0u, 1u, 0u, false }, // Int.
607 { 1u, 1u, 1u, false }, // Int.
608 { 2u, 1u, 2u, false }, // Int.
609 { 3u, 1u, 3u, false }, // Int.
610 { 4u, 1u, 4u, false }, // Short.
611 { 5u, 1u, 5u, false }, // Char.
612 { 6u, 0u, 0u, false }, // Unresolved, Short.
613 { 7u, 1u, 7u, false }, // Int.
614 { 8u, 1u, 8u, false }, // Int.
615 };
616 static const MIRDef mirs[] = {
617 // NOTE: MIRs here are ordered by unique tests. They will be put into appropriate blocks.
618 DEF_IGET(3, Instruction::IGET, 0u, 100u, 0u),
619 DEF_IGET(6, Instruction::IGET, 1u, 100u, 0u), // Same as at the top.
620
621 DEF_IGET(4, Instruction::IGET, 2u, 100u, 1u),
622 DEF_IGET(6, Instruction::IGET, 3u, 100u, 1u), // Same as at the left side.
623
624 DEF_IGET(3, Instruction::IGET, 4u, 100u, 2u),
625 DEF_CONST(5, Instruction::CONST, 5u, 1000),
626 DEF_IPUT(5, Instruction::IPUT, 5u, 100u, 2u),
627 DEF_IGET(6, Instruction::IGET, 7u, 100u, 2u), // Differs from the top and the CONST.
628
629 DEF_IGET(3, Instruction::IGET, 8u, 100u, 3u),
630 DEF_CONST(3, Instruction::CONST, 9u, 2000),
631 DEF_IPUT(4, Instruction::IPUT, 9u, 100u, 3u),
632 DEF_IPUT(5, Instruction::IPUT, 9u, 100u, 3u),
633 DEF_IGET(6, Instruction::IGET, 12u, 100u, 3u), // Differs from the top, equals the CONST.
634
635 DEF_IGET(3, Instruction::IGET_SHORT, 13u, 100u, 4u),
636 DEF_IGET(3, Instruction::IGET_CHAR, 14u, 100u, 5u),
637 DEF_IPUT(4, Instruction::IPUT_SHORT, 15u, 100u, 6u), // Clobbers field #4, not #5.
638 DEF_IGET(6, Instruction::IGET_SHORT, 16u, 100u, 4u), // Differs from the top.
639 DEF_IGET(6, Instruction::IGET_CHAR, 17u, 100u, 5u), // Same as the top.
640
641 DEF_CONST(4, Instruction::CONST, 18u, 3000),
642 DEF_IPUT(4, Instruction::IPUT, 18u, 100u, 7u),
643 DEF_IPUT(4, Instruction::IPUT, 18u, 100u, 8u),
644 DEF_CONST(5, Instruction::CONST, 21u, 3001),
645 DEF_IPUT(5, Instruction::IPUT, 21u, 100u, 7u),
646 DEF_IPUT(5, Instruction::IPUT, 21u, 100u, 8u),
647 DEF_IGET(6, Instruction::IGET, 24u, 100u, 7u),
648 DEF_IGET(6, Instruction::IGET, 25u, 100u, 8u), // Same value as read from field #7.
649 };
650
651 PrepareIFields(ifields);
652 PrepareMIRs(mirs);
653 PerformGVN();
654 ASSERT_EQ(arraysize(mirs), value_names_.size());
655 EXPECT_EQ(value_names_[0], value_names_[1]);
656
657 EXPECT_EQ(value_names_[2], value_names_[3]);
658
659 EXPECT_NE(value_names_[4], value_names_[7]);
660 EXPECT_NE(value_names_[5], value_names_[7]);
661
662 EXPECT_NE(value_names_[8], value_names_[12]);
663 EXPECT_EQ(value_names_[9], value_names_[12]);
664
665 EXPECT_NE(value_names_[13], value_names_[16]);
666 EXPECT_EQ(value_names_[14], value_names_[17]);
667
668 EXPECT_EQ(value_names_[24], value_names_[25]);
669}
670
671TEST_F(GlobalValueNumberingTestDiamond, AliasingIFieldsTwoObjects) {
672 static const IFieldDef ifields[] = {
673 { 0u, 1u, 0u, false }, // Int.
674 { 1u, 1u, 1u, false }, // Int.
675 { 2u, 1u, 2u, false }, // Int.
676 { 3u, 1u, 3u, false }, // Int.
677 { 4u, 1u, 4u, false }, // Short.
678 { 5u, 1u, 5u, false }, // Char.
679 { 6u, 0u, 0u, false }, // Unresolved, Short.
680 { 7u, 1u, 7u, false }, // Int.
681 { 8u, 1u, 8u, false }, // Int.
682 };
683 static const MIRDef mirs[] = {
684 // NOTE: MIRs here are ordered by unique tests. They will be put into appropriate blocks.
685 DEF_IGET(3, Instruction::IGET, 0u, 100u, 0u),
686 DEF_IPUT(4, Instruction::IPUT, 1u, 101u, 0u), // May alias with the IGET at the top.
687 DEF_IGET(6, Instruction::IGET, 2u, 100u, 0u), // Differs from the top.
688
689 DEF_IGET(3, Instruction::IGET, 3u, 100u, 1u),
690 DEF_IPUT(5, Instruction::IPUT, 3u, 101u, 1u), // If aliasing, stores the same value.
691 DEF_IGET(6, Instruction::IGET, 5u, 100u, 1u), // Same as the top.
692
693 DEF_IGET(3, Instruction::IGET, 6u, 100u, 2u),
694 DEF_CONST(5, Instruction::CONST, 7u, 1000),
695 DEF_IPUT(5, Instruction::IPUT, 7u, 101u, 2u),
696 DEF_IGET(6, Instruction::IGET, 9u, 100u, 2u), // Differs from the top and the CONST.
697
698 DEF_IGET(3, Instruction::IGET, 10u, 100u, 3u),
699 DEF_CONST(3, Instruction::CONST, 11u, 2000),
700 DEF_IPUT(4, Instruction::IPUT, 11u, 101u, 3u),
701 DEF_IPUT(5, Instruction::IPUT, 11u, 101u, 3u),
702 DEF_IGET(6, Instruction::IGET, 14u, 100u, 3u), // Differs from the top and the CONST.
703
704 DEF_IGET(3, Instruction::IGET_SHORT, 15u, 100u, 4u),
705 DEF_IGET(3, Instruction::IGET_CHAR, 16u, 100u, 5u),
706 DEF_IPUT(4, Instruction::IPUT_SHORT, 17u, 101u, 6u), // Clobbers field #4, not #5.
707 DEF_IGET(6, Instruction::IGET_SHORT, 18u, 100u, 4u), // Differs from the top.
708 DEF_IGET(6, Instruction::IGET_CHAR, 19u, 100u, 5u), // Same as the top.
709
710 DEF_CONST(4, Instruction::CONST, 20u, 3000),
711 DEF_IPUT(4, Instruction::IPUT, 20u, 100u, 7u),
712 DEF_IPUT(4, Instruction::IPUT, 20u, 101u, 8u),
713 DEF_CONST(5, Instruction::CONST, 23u, 3001),
714 DEF_IPUT(5, Instruction::IPUT, 23u, 100u, 7u),
715 DEF_IPUT(5, Instruction::IPUT, 23u, 101u, 8u),
716 DEF_IGET(6, Instruction::IGET, 26u, 100u, 7u),
717 DEF_IGET(6, Instruction::IGET, 27u, 101u, 8u), // Same value as read from field #7.
718 };
719
720 PrepareIFields(ifields);
721 PrepareMIRs(mirs);
722 PerformGVN();
723 ASSERT_EQ(arraysize(mirs), value_names_.size());
724 EXPECT_NE(value_names_[0], value_names_[2]);
725
726 EXPECT_EQ(value_names_[3], value_names_[5]);
727
728 EXPECT_NE(value_names_[6], value_names_[9]);
729 EXPECT_NE(value_names_[7], value_names_[9]);
730
731 EXPECT_NE(value_names_[10], value_names_[14]);
732 EXPECT_NE(value_names_[10], value_names_[14]);
733
734 EXPECT_NE(value_names_[15], value_names_[18]);
735 EXPECT_EQ(value_names_[16], value_names_[19]);
736
737 EXPECT_EQ(value_names_[26], value_names_[27]);
738}
739
740TEST_F(GlobalValueNumberingTestDiamond, SFields) {
741 static const SFieldDef sfields[] = {
742 { 0u, 1u, 0u, false }, // Int.
743 { 1u, 1u, 1u, false }, // Int.
744 { 2u, 1u, 2u, false }, // Int.
745 { 3u, 1u, 3u, false }, // Int.
746 { 4u, 1u, 4u, false }, // Short.
747 { 5u, 1u, 5u, false }, // Char.
748 { 6u, 0u, 0u, false }, // Unresolved, Short.
749 { 7u, 1u, 7u, false }, // Int.
750 { 8u, 1u, 8u, false }, // Int.
751 };
752 static const MIRDef mirs[] = {
753 // NOTE: MIRs here are ordered by unique tests. They will be put into appropriate blocks.
754 DEF_SGET(3, Instruction::SGET, 0u, 0u),
755 DEF_SGET(6, Instruction::SGET, 1u, 0u), // Same as at the top.
756
757 DEF_SGET(4, Instruction::SGET, 2u, 1u),
758 DEF_SGET(6, Instruction::SGET, 3u, 1u), // Same as at the left side.
759
760 DEF_SGET(3, Instruction::SGET, 4u, 2u),
761 DEF_CONST(5, Instruction::CONST, 5u, 100),
762 DEF_SPUT(5, Instruction::SPUT, 5u, 2u),
763 DEF_SGET(6, Instruction::SGET, 7u, 2u), // Differs from the top and the CONST.
764
765 DEF_SGET(3, Instruction::SGET, 8u, 3u),
766 DEF_CONST(3, Instruction::CONST, 9u, 200),
767 DEF_SPUT(4, Instruction::SPUT, 9u, 3u),
768 DEF_SPUT(5, Instruction::SPUT, 9u, 3u),
769 DEF_SGET(6, Instruction::SGET, 12u, 3u), // Differs from the top, equals the CONST.
770
771 DEF_SGET(3, Instruction::SGET_SHORT, 13u, 4u),
772 DEF_SGET(3, Instruction::SGET_CHAR, 14u, 5u),
773 DEF_SPUT(4, Instruction::SPUT_SHORT, 15u, 6u), // Clobbers field #4, not #5.
774 DEF_SGET(6, Instruction::SGET_SHORT, 16u, 4u), // Differs from the top.
775 DEF_SGET(6, Instruction::SGET_CHAR, 17u, 5u), // Same as the top.
776
777 DEF_CONST(4, Instruction::CONST, 18u, 300),
778 DEF_SPUT(4, Instruction::SPUT, 18u, 7u),
779 DEF_SPUT(4, Instruction::SPUT, 18u, 8u),
780 DEF_CONST(5, Instruction::CONST, 21u, 301),
781 DEF_SPUT(5, Instruction::SPUT, 21u, 7u),
782 DEF_SPUT(5, Instruction::SPUT, 21u, 8u),
783 DEF_SGET(6, Instruction::SGET, 24u, 7u),
784 DEF_SGET(6, Instruction::SGET, 25u, 8u), // Same value as read from field #7.
785 };
786
787 PrepareSFields(sfields);
788 PrepareMIRs(mirs);
789 PerformGVN();
790 ASSERT_EQ(arraysize(mirs), value_names_.size());
791 EXPECT_EQ(value_names_[0], value_names_[1]);
792
793 EXPECT_EQ(value_names_[2], value_names_[3]);
794
795 EXPECT_NE(value_names_[4], value_names_[7]);
796 EXPECT_NE(value_names_[5], value_names_[7]);
797
798 EXPECT_NE(value_names_[8], value_names_[12]);
799 EXPECT_EQ(value_names_[9], value_names_[12]);
800
801 EXPECT_NE(value_names_[13], value_names_[16]);
802 EXPECT_EQ(value_names_[14], value_names_[17]);
803
804 EXPECT_EQ(value_names_[24], value_names_[25]);
805}
806
807TEST_F(GlobalValueNumberingTestDiamond, NonAliasingArrays) {
808 static const MIRDef mirs[] = {
809 // NOTE: MIRs here are ordered by unique tests. They will be put into appropriate blocks.
810 DEF_UNIQUE_REF(3, Instruction::NEW_ARRAY, 100u),
811 DEF_AGET(3, Instruction::AGET, 1u, 100u, 101u),
812 DEF_AGET(6, Instruction::AGET, 2u, 100u, 101u), // Same as at the top.
813
814 DEF_UNIQUE_REF(3, Instruction::NEW_ARRAY, 200u),
815 DEF_IGET(4, Instruction::AGET, 4u, 200u, 201u),
816 DEF_IGET(6, Instruction::AGET, 5u, 200u, 201u), // Same as at the left side.
817
818 DEF_UNIQUE_REF(3, Instruction::NEW_ARRAY, 300u),
819 DEF_AGET(3, Instruction::AGET, 7u, 300u, 301u),
820 DEF_CONST(5, Instruction::CONST, 8u, 1000),
821 DEF_APUT(5, Instruction::APUT, 8u, 300u, 301u),
822 DEF_AGET(6, Instruction::AGET, 10u, 300u, 301u), // Differs from the top and the CONST.
823
824 DEF_UNIQUE_REF(3, Instruction::NEW_ARRAY, 400u),
825 DEF_AGET(3, Instruction::AGET, 12u, 400u, 401u),
826 DEF_CONST(3, Instruction::CONST, 13u, 2000),
827 DEF_APUT(4, Instruction::APUT, 13u, 400u, 401u),
828 DEF_APUT(5, Instruction::APUT, 13u, 400u, 401u),
829 DEF_AGET(6, Instruction::AGET, 16u, 400u, 401u), // Differs from the top, equals the CONST.
830
831 DEF_UNIQUE_REF(3, Instruction::NEW_ARRAY, 500u),
832 DEF_AGET(3, Instruction::AGET, 18u, 500u, 501u),
833 DEF_APUT(4, Instruction::APUT, 19u, 500u, 502u), // Clobbers value at index 501u.
834 DEF_AGET(6, Instruction::AGET, 20u, 500u, 501u), // Differs from the top.
835
836 DEF_UNIQUE_REF(3, Instruction::NEW_ARRAY, 600u),
837 DEF_CONST(4, Instruction::CONST, 22u, 3000),
838 DEF_APUT(4, Instruction::APUT, 22u, 600u, 601u),
839 DEF_APUT(4, Instruction::APUT, 22u, 600u, 602u),
840 DEF_CONST(5, Instruction::CONST, 25u, 3001),
841 DEF_APUT(5, Instruction::APUT, 25u, 600u, 601u),
842 DEF_APUT(5, Instruction::APUT, 25u, 600u, 602u),
843 DEF_AGET(6, Instruction::AGET, 28u, 600u, 601u),
844 DEF_AGET(6, Instruction::AGET, 29u, 600u, 602u), // Same value as read from index 601u.
845
846 DEF_UNIQUE_REF(3, Instruction::NEW_ARRAY, 700u),
847 DEF_UNIQUE_REF(3, Instruction::NEW_ARRAY, 701u),
848 DEF_AGET(3, Instruction::AGET, 32u, 700u, 702u),
849 DEF_APUT(4, Instruction::APUT, 33u, 701u, 702u), // Doesn't interfere with unrelated array.
850 DEF_AGET(6, Instruction::AGET, 34u, 700u, 702u), // Same value as at the top.
851 };
852
853 PrepareMIRs(mirs);
854 PerformGVN();
855 ASSERT_EQ(arraysize(mirs), value_names_.size());
856 EXPECT_EQ(value_names_[1], value_names_[2]);
857
858 EXPECT_EQ(value_names_[4], value_names_[5]);
859
860 EXPECT_NE(value_names_[7], value_names_[10]);
861 EXPECT_NE(value_names_[8], value_names_[10]);
862
863 EXPECT_NE(value_names_[12], value_names_[16]);
864 EXPECT_EQ(value_names_[13], value_names_[16]);
865
866 EXPECT_NE(value_names_[18], value_names_[20]);
867
868 EXPECT_NE(value_names_[28], value_names_[22]);
869 EXPECT_NE(value_names_[28], value_names_[25]);
870 EXPECT_EQ(value_names_[28], value_names_[29]);
871
872 EXPECT_EQ(value_names_[32], value_names_[34]);
873}
874
875TEST_F(GlobalValueNumberingTestDiamond, AliasingArrays) {
876 static const MIRDef mirs[] = {
877 // NOTE: MIRs here are ordered by unique tests. They will be put into appropriate blocks.
878 // NOTE: We're also testing that these tests really do not interfere with each other.
879
880 DEF_AGET(3, Instruction::AGET_BOOLEAN, 0u, 100u, 101u),
881 DEF_AGET(6, Instruction::AGET_BOOLEAN, 1u, 100u, 101u), // Same as at the top.
882
883 DEF_IGET(4, Instruction::AGET_OBJECT, 2u, 200u, 201u),
884 DEF_IGET(6, Instruction::AGET_OBJECT, 3u, 200u, 201u), // Same as at the left side.
885
886 DEF_AGET(3, Instruction::AGET_WIDE, 4u, 300u, 301u),
887 DEF_CONST(5, Instruction::CONST_WIDE, 5u, 1000),
888 DEF_APUT(5, Instruction::APUT_WIDE, 5u, 300u, 301u),
889 DEF_AGET(6, Instruction::AGET_WIDE, 7u, 300u, 301u), // Differs from the top and the CONST.
890
891 DEF_AGET(3, Instruction::AGET_SHORT, 8u, 400u, 401u),
892 DEF_CONST(3, Instruction::CONST, 9u, 2000),
893 DEF_APUT(4, Instruction::APUT_SHORT, 9u, 400u, 401u),
894 DEF_APUT(5, Instruction::APUT_SHORT, 9u, 400u, 401u),
895 DEF_AGET(6, Instruction::AGET_SHORT, 12u, 400u, 401u), // Differs from the top, == CONST.
896
897 DEF_AGET(3, Instruction::AGET_CHAR, 13u, 500u, 501u),
898 DEF_APUT(4, Instruction::APUT_CHAR, 14u, 500u, 502u), // Clobbers value at index 501u.
899 DEF_AGET(6, Instruction::AGET_CHAR, 15u, 500u, 501u), // Differs from the top.
900
901 DEF_AGET(3, Instruction::AGET_BYTE, 16u, 600u, 602u),
902 DEF_APUT(4, Instruction::APUT_BYTE, 17u, 601u, 602u), // Clobbers values in array 600u.
903 DEF_AGET(6, Instruction::AGET_BYTE, 18u, 600u, 602u), // Differs from the top.
904
905 DEF_CONST(4, Instruction::CONST, 19u, 3000),
906 DEF_APUT(4, Instruction::APUT, 19u, 700u, 701u),
907 DEF_APUT(4, Instruction::APUT, 19u, 700u, 702u),
908 DEF_CONST(5, Instruction::CONST, 22u, 3001),
909 DEF_APUT(5, Instruction::APUT, 22u, 700u, 701u),
910 DEF_APUT(5, Instruction::APUT, 22u, 700u, 702u),
911 DEF_AGET(6, Instruction::AGET, 25u, 700u, 701u),
912 DEF_AGET(6, Instruction::AGET, 26u, 700u, 702u), // Same value as read from index 601u.
913 };
914
915 PrepareMIRs(mirs);
916 PerformGVN();
917 ASSERT_EQ(arraysize(mirs), value_names_.size());
918 EXPECT_EQ(value_names_[0], value_names_[1]);
919
920 EXPECT_EQ(value_names_[2], value_names_[3]);
921
922 EXPECT_NE(value_names_[4], value_names_[7]);
923 EXPECT_NE(value_names_[5], value_names_[7]);
924
925 EXPECT_NE(value_names_[8], value_names_[12]);
926 EXPECT_EQ(value_names_[9], value_names_[12]);
927
928 EXPECT_NE(value_names_[13], value_names_[15]);
929
930 EXPECT_NE(value_names_[16], value_names_[18]);
931
932 EXPECT_NE(value_names_[25], value_names_[19]);
933 EXPECT_NE(value_names_[25], value_names_[22]);
934 EXPECT_EQ(value_names_[25], value_names_[26]);
935}
936
937TEST_F(GlobalValueNumberingTestDiamond, Phi) {
938 static const MIRDef mirs[] = {
939 DEF_CONST(3, Instruction::CONST, 0u, 1000),
940 DEF_CONST(4, Instruction::CONST, 1u, 2000),
941 DEF_CONST(5, Instruction::CONST, 2u, 3000),
942 DEF_MOVE(4, Instruction::MOVE, 3u, 0u),
943 DEF_MOVE(4, Instruction::MOVE, 4u, 1u),
944 DEF_MOVE(5, Instruction::MOVE, 5u, 0u),
945 DEF_MOVE(5, Instruction::MOVE, 6u, 2u),
946 DEF_PHI2(6, 7u, 3u, 5u), // Same as CONST 0u (1000).
947 DEF_PHI2(6, 8u, 3u, 0u), // Same as CONST 0u (1000).
948 DEF_PHI2(6, 9u, 0u, 5u), // Same as CONST 0u (1000).
949 DEF_PHI2(6, 10u, 4u, 5u), // Merge 1u (2000) and 0u (1000).
950 DEF_PHI2(6, 11u, 1u, 5u), // Merge 1u (2000) and 0u (1000).
951 DEF_PHI2(6, 12u, 4u, 0u), // Merge 1u (2000) and 0u (1000).
952 DEF_PHI2(6, 13u, 1u, 0u), // Merge 1u (2000) and 0u (1000).
953 DEF_PHI2(6, 14u, 3u, 6u), // Merge 0u (1000) and 2u (3000).
954 DEF_PHI2(6, 15u, 0u, 6u), // Merge 0u (1000) and 2u (3000).
955 DEF_PHI2(6, 16u, 3u, 2u), // Merge 0u (1000) and 2u (3000).
956 DEF_PHI2(6, 17u, 0u, 2u), // Merge 0u (1000) and 2u (3000).
957 DEF_PHI2(6, 18u, 4u, 6u), // Merge 1u (2000) and 2u (3000).
958 DEF_PHI2(6, 19u, 1u, 6u), // Merge 1u (2000) and 2u (3000).
959 DEF_PHI2(6, 20u, 4u, 2u), // Merge 1u (2000) and 2u (3000).
960 DEF_PHI2(6, 21u, 1u, 2u), // Merge 1u (2000) and 2u (3000).
961 };
962
963 PrepareMIRs(mirs);
964 PerformGVN();
965 ASSERT_EQ(arraysize(mirs), value_names_.size());
966 EXPECT_EQ(value_names_[0], value_names_[7]);
967 EXPECT_EQ(value_names_[0], value_names_[8]);
968 EXPECT_EQ(value_names_[0], value_names_[9]);
969 EXPECT_NE(value_names_[10], value_names_[0]);
970 EXPECT_NE(value_names_[10], value_names_[1]);
971 EXPECT_NE(value_names_[10], value_names_[2]);
972 EXPECT_EQ(value_names_[10], value_names_[11]);
973 EXPECT_EQ(value_names_[10], value_names_[12]);
974 EXPECT_EQ(value_names_[10], value_names_[13]);
975 EXPECT_NE(value_names_[14], value_names_[0]);
976 EXPECT_NE(value_names_[14], value_names_[1]);
977 EXPECT_NE(value_names_[14], value_names_[2]);
978 EXPECT_NE(value_names_[14], value_names_[10]);
979 EXPECT_EQ(value_names_[14], value_names_[15]);
980 EXPECT_EQ(value_names_[14], value_names_[16]);
981 EXPECT_EQ(value_names_[14], value_names_[17]);
982 EXPECT_NE(value_names_[18], value_names_[0]);
983 EXPECT_NE(value_names_[18], value_names_[1]);
984 EXPECT_NE(value_names_[18], value_names_[2]);
985 EXPECT_NE(value_names_[18], value_names_[10]);
986 EXPECT_NE(value_names_[18], value_names_[14]);
987 EXPECT_EQ(value_names_[18], value_names_[19]);
988 EXPECT_EQ(value_names_[18], value_names_[20]);
989 EXPECT_EQ(value_names_[18], value_names_[21]);
990}
991
Vladimir Markoa4426cf2014-10-22 17:15:53 +0100992TEST_F(GlobalValueNumberingTestDiamond, PhiWide) {
993 static const MIRDef mirs[] = {
994 DEF_CONST_WIDE(3, Instruction::CONST_WIDE, 0u, 1000),
995 DEF_CONST_WIDE(4, Instruction::CONST_WIDE, 2u, 2000),
996 DEF_CONST_WIDE(5, Instruction::CONST_WIDE, 4u, 3000),
997 DEF_MOVE_WIDE(4, Instruction::MOVE_WIDE, 6u, 0u),
998 DEF_MOVE_WIDE(4, Instruction::MOVE_WIDE, 8u, 2u),
999 DEF_MOVE_WIDE(5, Instruction::MOVE_WIDE, 10u, 0u),
1000 DEF_MOVE_WIDE(5, Instruction::MOVE_WIDE, 12u, 4u),
1001 DEF_PHI2(6, 14u, 6u, 10u), // Same as CONST_WIDE 0u (1000).
1002 DEF_PHI2(6, 15u, 7u, 11u), // Same as CONST_WIDE 0u (1000), high word.
1003 DEF_PHI2(6, 16u, 6u, 0u), // Same as CONST_WIDE 0u (1000).
1004 DEF_PHI2(6, 17u, 7u, 1u), // Same as CONST_WIDE 0u (1000), high word.
1005 DEF_PHI2(6, 18u, 0u, 10u), // Same as CONST_WIDE 0u (1000).
1006 DEF_PHI2(6, 19u, 1u, 11u), // Same as CONST_WIDE 0u (1000), high word.
1007 DEF_PHI2(6, 20u, 8u, 10u), // Merge 2u (2000) and 0u (1000).
1008 DEF_PHI2(6, 21u, 9u, 11u), // Merge 2u (2000) and 0u (1000), high word.
1009 DEF_PHI2(6, 22u, 2u, 10u), // Merge 2u (2000) and 0u (1000).
1010 DEF_PHI2(6, 23u, 3u, 11u), // Merge 2u (2000) and 0u (1000), high word.
1011 DEF_PHI2(6, 24u, 8u, 0u), // Merge 2u (2000) and 0u (1000).
1012 DEF_PHI2(6, 25u, 9u, 1u), // Merge 2u (2000) and 0u (1000), high word.
1013 DEF_PHI2(6, 26u, 2u, 0u), // Merge 2u (2000) and 0u (1000).
1014 DEF_PHI2(6, 27u, 5u, 1u), // Merge 2u (2000) and 0u (1000), high word.
1015 DEF_PHI2(6, 28u, 6u, 12u), // Merge 0u (1000) and 4u (3000).
1016 DEF_PHI2(6, 29u, 7u, 13u), // Merge 0u (1000) and 4u (3000), high word.
1017 DEF_PHI2(6, 30u, 0u, 12u), // Merge 0u (1000) and 4u (3000).
1018 DEF_PHI2(6, 31u, 1u, 13u), // Merge 0u (1000) and 4u (3000), high word.
1019 DEF_PHI2(6, 32u, 6u, 4u), // Merge 0u (1000) and 4u (3000).
1020 DEF_PHI2(6, 33u, 7u, 5u), // Merge 0u (1000) and 4u (3000), high word.
1021 DEF_PHI2(6, 34u, 0u, 4u), // Merge 0u (1000) and 4u (3000).
1022 DEF_PHI2(6, 35u, 1u, 5u), // Merge 0u (1000) and 4u (3000), high word.
1023 DEF_PHI2(6, 36u, 8u, 12u), // Merge 2u (2000) and 4u (3000).
1024 DEF_PHI2(6, 37u, 9u, 13u), // Merge 2u (2000) and 4u (3000), high word.
1025 DEF_PHI2(6, 38u, 2u, 12u), // Merge 2u (2000) and 4u (3000).
1026 DEF_PHI2(6, 39u, 3u, 13u), // Merge 2u (2000) and 4u (3000), high word.
1027 DEF_PHI2(6, 40u, 8u, 4u), // Merge 2u (2000) and 4u (3000).
1028 DEF_PHI2(6, 41u, 9u, 5u), // Merge 2u (2000) and 4u (3000), high word.
1029 DEF_PHI2(6, 42u, 2u, 4u), // Merge 2u (2000) and 4u (3000).
1030 DEF_PHI2(6, 43u, 3u, 5u), // Merge 2u (2000) and 4u (3000), high word.
1031 };
1032
1033 PrepareMIRs(mirs);
1034 PerformGVN();
1035 ASSERT_EQ(arraysize(mirs), value_names_.size());
1036 EXPECT_EQ(value_names_[0], value_names_[7]);
1037 EXPECT_EQ(value_names_[0], value_names_[9]);
1038 EXPECT_EQ(value_names_[0], value_names_[11]);
1039 EXPECT_NE(value_names_[13], value_names_[0]);
1040 EXPECT_NE(value_names_[13], value_names_[1]);
1041 EXPECT_NE(value_names_[13], value_names_[2]);
1042 EXPECT_EQ(value_names_[13], value_names_[15]);
1043 EXPECT_EQ(value_names_[13], value_names_[17]);
1044 EXPECT_EQ(value_names_[13], value_names_[19]);
1045 EXPECT_NE(value_names_[21], value_names_[0]);
1046 EXPECT_NE(value_names_[21], value_names_[1]);
1047 EXPECT_NE(value_names_[21], value_names_[2]);
1048 EXPECT_NE(value_names_[21], value_names_[13]);
1049 EXPECT_EQ(value_names_[21], value_names_[23]);
1050 EXPECT_EQ(value_names_[21], value_names_[25]);
1051 EXPECT_EQ(value_names_[21], value_names_[27]);
1052 EXPECT_NE(value_names_[29], value_names_[0]);
1053 EXPECT_NE(value_names_[29], value_names_[1]);
1054 EXPECT_NE(value_names_[29], value_names_[2]);
1055 EXPECT_NE(value_names_[29], value_names_[13]);
1056 EXPECT_NE(value_names_[29], value_names_[21]);
1057 EXPECT_EQ(value_names_[29], value_names_[31]);
1058 EXPECT_EQ(value_names_[29], value_names_[33]);
1059 EXPECT_EQ(value_names_[29], value_names_[35]);
1060 // High words should get kNoValue.
1061 EXPECT_EQ(value_names_[8], kNoValue);
1062 EXPECT_EQ(value_names_[10], kNoValue);
1063 EXPECT_EQ(value_names_[12], kNoValue);
1064 EXPECT_EQ(value_names_[14], kNoValue);
1065 EXPECT_EQ(value_names_[16], kNoValue);
1066 EXPECT_EQ(value_names_[18], kNoValue);
1067 EXPECT_EQ(value_names_[20], kNoValue);
1068 EXPECT_EQ(value_names_[22], kNoValue);
1069 EXPECT_EQ(value_names_[24], kNoValue);
1070 EXPECT_EQ(value_names_[26], kNoValue);
1071 EXPECT_EQ(value_names_[28], kNoValue);
1072 EXPECT_EQ(value_names_[30], kNoValue);
1073 EXPECT_EQ(value_names_[32], kNoValue);
1074 EXPECT_EQ(value_names_[34], kNoValue);
1075 EXPECT_EQ(value_names_[36], kNoValue);
1076}
1077
Vladimir Marko95a05972014-05-30 10:01:32 +01001078TEST_F(GlobalValueNumberingTestLoop, NonAliasingIFields) {
1079 static const IFieldDef ifields[] = {
1080 { 0u, 1u, 0u, false }, // Int.
1081 { 1u, 1u, 1u, false }, // Int.
1082 { 2u, 1u, 2u, false }, // Int.
1083 { 3u, 1u, 3u, false }, // Int.
1084 { 4u, 1u, 4u, false }, // Int.
1085 { 5u, 1u, 5u, false }, // Short.
1086 { 6u, 1u, 6u, false }, // Char.
1087 { 7u, 0u, 0u, false }, // Unresolved, Short.
1088 { 8u, 1u, 8u, false }, // Int.
1089 { 9u, 0u, 0u, false }, // Unresolved, Int.
1090 { 10u, 1u, 10u, false }, // Int.
1091 { 11u, 1u, 11u, false }, // Int.
1092 };
1093 static const MIRDef mirs[] = {
1094 // NOTE: MIRs here are ordered by unique tests. They will be put into appropriate blocks.
1095 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 100u),
1096 DEF_IGET(3, Instruction::IGET, 1u, 100u, 0u),
1097 DEF_IGET(4, Instruction::IGET, 2u, 100u, 0u), // Same as at the top.
1098 DEF_IGET(5, Instruction::IGET, 3u, 100u, 0u), // Same as at the top.
1099
1100 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 200u),
1101 DEF_IGET(3, Instruction::IGET, 5u, 200u, 1u),
1102 DEF_IGET(4, Instruction::IGET, 6u, 200u, 1u), // Differs from top...
1103 DEF_IPUT(4, Instruction::IPUT, 7u, 200u, 1u), // Because of this IPUT.
1104 DEF_IGET(5, Instruction::IGET, 8u, 200u, 1u), // Differs from top and the loop IGET.
1105
1106 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 300u),
1107 DEF_IGET(3, Instruction::IGET, 10u, 300u, 2u),
1108 DEF_IPUT(4, Instruction::IPUT, 11u, 300u, 2u), // Because of this IPUT...
1109 DEF_IGET(4, Instruction::IGET, 12u, 300u, 2u), // Differs from top.
1110 DEF_IGET(5, Instruction::IGET, 13u, 300u, 2u), // Differs from top but same as the loop IGET.
1111
1112 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 400u),
1113 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 401u),
1114 DEF_CONST(3, Instruction::CONST, 16u, 3000),
1115 DEF_IPUT(3, Instruction::IPUT, 16u, 400u, 3u),
1116 DEF_IPUT(3, Instruction::IPUT, 16u, 400u, 4u),
1117 DEF_IPUT(3, Instruction::IPUT, 16u, 401u, 3u),
1118 DEF_IGET(4, Instruction::IGET, 20u, 400u, 3u), // Differs from 16u and 23u.
1119 DEF_IGET(4, Instruction::IGET, 21u, 400u, 4u), // Same as 20u.
1120 DEF_IGET(4, Instruction::IGET, 22u, 401u, 3u), // Same as 20u.
1121 DEF_CONST(4, Instruction::CONST, 23u, 4000),
1122 DEF_IPUT(4, Instruction::IPUT, 23u, 400u, 3u),
1123 DEF_IPUT(4, Instruction::IPUT, 23u, 400u, 4u),
1124 DEF_IPUT(4, Instruction::IPUT, 23u, 401u, 3u),
1125 DEF_IGET(5, Instruction::IGET, 27u, 400u, 3u), // Differs from 16u and 20u...
1126 DEF_IGET(5, Instruction::IGET, 28u, 400u, 4u), // and same as the CONST 23u
1127 DEF_IGET(5, Instruction::IGET, 29u, 400u, 4u), // and same as the CONST 23u.
1128
1129 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 500u),
1130 DEF_IGET(3, Instruction::IGET_SHORT, 31u, 500u, 5u),
1131 DEF_IGET(3, Instruction::IGET_CHAR, 32u, 500u, 6u),
1132 DEF_IPUT(4, Instruction::IPUT_SHORT, 33u, 500u, 7u), // Clobbers field #5, not #6.
1133 DEF_IGET(5, Instruction::IGET_SHORT, 34u, 500u, 5u), // Differs from the top.
1134 DEF_IGET(5, Instruction::IGET_CHAR, 35u, 500u, 6u), // Same as the top.
1135
1136 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 600u),
1137 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 601u),
1138 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 602u),
1139 DEF_IGET(3, Instruction::IGET, 39u, 600u, 8u),
1140 DEF_IGET(3, Instruction::IGET, 40u, 601u, 8u),
1141 DEF_IPUT(4, Instruction::IPUT, 41u, 602u, 9u), // Doesn't clobber field #8 for other refs.
1142 DEF_IGET(5, Instruction::IGET, 42u, 600u, 8u), // Same as the top.
1143 DEF_IGET(5, Instruction::IGET, 43u, 601u, 8u), // Same as the top.
1144
1145 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 700u),
1146 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 701u),
1147 DEF_CONST(3, Instruction::CONST, 46u, 3000),
1148 DEF_IPUT(3, Instruction::IPUT, 46u, 700u, 10u),
1149 DEF_IPUT(3, Instruction::IPUT, 46u, 700u, 11u),
1150 DEF_IPUT(3, Instruction::IPUT, 46u, 701u, 10u),
1151 DEF_IGET(4, Instruction::IGET, 50u, 700u, 10u), // Differs from the CONSTs 46u and 53u.
1152 DEF_IGET(4, Instruction::IGET, 51u, 700u, 11u), // Same as 50u.
1153 DEF_IGET(4, Instruction::IGET, 52u, 701u, 10u), // Same as 50u.
1154 DEF_CONST(4, Instruction::CONST, 53u, 3001),
1155 DEF_IPUT(4, Instruction::IPUT, 53u, 700u, 10u),
1156 DEF_IPUT(4, Instruction::IPUT, 53u, 700u, 11u),
1157 DEF_IPUT(4, Instruction::IPUT, 53u, 701u, 10u),
1158 DEF_IGET(5, Instruction::IGET, 57u, 700u, 10u), // Same as the CONST 53u.
1159 DEF_IGET(5, Instruction::IGET, 58u, 700u, 11u), // Same as the CONST 53u.
1160 DEF_IGET(5, Instruction::IGET, 59u, 701u, 10u), // Same as the CONST 53u.
1161 };
1162
1163 PrepareIFields(ifields);
1164 PrepareMIRs(mirs);
1165 PerformGVN();
1166 ASSERT_EQ(arraysize(mirs), value_names_.size());
1167 EXPECT_EQ(value_names_[1], value_names_[2]);
1168 EXPECT_EQ(value_names_[1], value_names_[3]);
1169
1170 EXPECT_NE(value_names_[5], value_names_[6]);
1171 EXPECT_NE(value_names_[5], value_names_[7]);
1172 EXPECT_NE(value_names_[6], value_names_[7]);
1173
1174 EXPECT_NE(value_names_[10], value_names_[12]);
1175 EXPECT_EQ(value_names_[12], value_names_[13]);
1176
1177 EXPECT_NE(value_names_[20], value_names_[16]);
1178 EXPECT_NE(value_names_[20], value_names_[23]);
1179 EXPECT_EQ(value_names_[20], value_names_[21]);
1180 EXPECT_EQ(value_names_[20], value_names_[22]);
1181 EXPECT_NE(value_names_[27], value_names_[16]);
1182 EXPECT_NE(value_names_[27], value_names_[20]);
1183 EXPECT_EQ(value_names_[27], value_names_[28]);
1184 EXPECT_EQ(value_names_[27], value_names_[29]);
1185
1186 EXPECT_NE(value_names_[31], value_names_[34]);
1187 EXPECT_EQ(value_names_[32], value_names_[35]);
1188
1189 EXPECT_EQ(value_names_[39], value_names_[42]);
1190 EXPECT_EQ(value_names_[40], value_names_[43]);
1191
1192 EXPECT_NE(value_names_[50], value_names_[46]);
1193 EXPECT_NE(value_names_[50], value_names_[53]);
1194 EXPECT_EQ(value_names_[50], value_names_[51]);
1195 EXPECT_EQ(value_names_[50], value_names_[52]);
1196 EXPECT_EQ(value_names_[57], value_names_[53]);
1197 EXPECT_EQ(value_names_[58], value_names_[53]);
1198 EXPECT_EQ(value_names_[59], value_names_[53]);
1199}
1200
1201TEST_F(GlobalValueNumberingTestLoop, AliasingIFieldsSingleObject) {
1202 static const IFieldDef ifields[] = {
1203 { 0u, 1u, 0u, false }, // Int.
1204 { 1u, 1u, 1u, false }, // Int.
1205 { 2u, 1u, 2u, false }, // Int.
1206 { 3u, 1u, 3u, false }, // Int.
1207 { 4u, 1u, 4u, false }, // Int.
1208 { 5u, 1u, 5u, false }, // Short.
1209 { 6u, 1u, 6u, false }, // Char.
1210 { 7u, 0u, 0u, false }, // Unresolved, Short.
1211 };
1212 static const MIRDef mirs[] = {
1213 // NOTE: MIRs here are ordered by unique tests. They will be put into appropriate blocks.
1214 DEF_IGET(3, Instruction::IGET, 0u, 100u, 0u),
1215 DEF_IGET(4, Instruction::IGET, 1u, 100u, 0u), // Same as at the top.
1216 DEF_IGET(5, Instruction::IGET, 2u, 100u, 0u), // Same as at the top.
1217
1218 DEF_IGET(3, Instruction::IGET, 3u, 100u, 1u),
1219 DEF_IGET(4, Instruction::IGET, 4u, 100u, 1u), // Differs from top...
1220 DEF_IPUT(4, Instruction::IPUT, 5u, 100u, 1u), // Because of this IPUT.
1221 DEF_IGET(5, Instruction::IGET, 6u, 100u, 1u), // Differs from top and the loop IGET.
1222
1223 DEF_IGET(3, Instruction::IGET, 7u, 100u, 2u),
1224 DEF_IPUT(4, Instruction::IPUT, 8u, 100u, 2u), // Because of this IPUT...
1225 DEF_IGET(4, Instruction::IGET, 9u, 100u, 2u), // Differs from top.
1226 DEF_IGET(5, Instruction::IGET, 10u, 100u, 2u), // Differs from top but same as the loop IGET.
1227
1228 DEF_CONST(3, Instruction::CONST, 11u, 3000),
1229 DEF_IPUT(3, Instruction::IPUT, 11u, 100u, 3u),
1230 DEF_IPUT(3, Instruction::IPUT, 11u, 100u, 4u),
1231 DEF_IGET(4, Instruction::IGET, 14u, 100u, 3u), // Differs from 11u and 16u.
1232 DEF_IGET(4, Instruction::IGET, 15u, 100u, 4u), // Same as 14u.
1233 DEF_CONST(4, Instruction::CONST, 16u, 4000),
1234 DEF_IPUT(4, Instruction::IPUT, 16u, 100u, 3u),
1235 DEF_IPUT(4, Instruction::IPUT, 16u, 100u, 4u),
1236 DEF_IGET(5, Instruction::IGET, 19u, 100u, 3u), // Differs from 11u and 14u...
1237 DEF_IGET(5, Instruction::IGET, 20u, 100u, 4u), // and same as the CONST 16u.
1238
1239 DEF_IGET(3, Instruction::IGET_SHORT, 21u, 100u, 5u),
1240 DEF_IGET(3, Instruction::IGET_CHAR, 22u, 100u, 6u),
1241 DEF_IPUT(4, Instruction::IPUT_SHORT, 23u, 100u, 7u), // Clobbers field #5, not #6.
1242 DEF_IGET(5, Instruction::IGET_SHORT, 24u, 100u, 5u), // Differs from the top.
1243 DEF_IGET(5, Instruction::IGET_CHAR, 25u, 100u, 6u), // Same as the top.
1244 };
1245
1246 PrepareIFields(ifields);
1247 PrepareMIRs(mirs);
1248 PerformGVN();
1249 ASSERT_EQ(arraysize(mirs), value_names_.size());
1250 EXPECT_EQ(value_names_[0], value_names_[1]);
1251 EXPECT_EQ(value_names_[0], value_names_[2]);
1252
1253 EXPECT_NE(value_names_[3], value_names_[4]);
1254 EXPECT_NE(value_names_[3], value_names_[6]);
1255 EXPECT_NE(value_names_[4], value_names_[6]);
1256
1257 EXPECT_NE(value_names_[7], value_names_[9]);
1258 EXPECT_EQ(value_names_[9], value_names_[10]);
1259
1260 EXPECT_NE(value_names_[14], value_names_[11]);
1261 EXPECT_NE(value_names_[14], value_names_[16]);
1262 EXPECT_EQ(value_names_[14], value_names_[15]);
1263 EXPECT_NE(value_names_[19], value_names_[11]);
1264 EXPECT_NE(value_names_[19], value_names_[14]);
1265 EXPECT_EQ(value_names_[19], value_names_[16]);
1266 EXPECT_EQ(value_names_[19], value_names_[20]);
1267
1268 EXPECT_NE(value_names_[21], value_names_[24]);
1269 EXPECT_EQ(value_names_[22], value_names_[25]);
1270}
1271
1272TEST_F(GlobalValueNumberingTestLoop, AliasingIFieldsTwoObjects) {
1273 static const IFieldDef ifields[] = {
1274 { 0u, 1u, 0u, false }, // Int.
1275 { 1u, 1u, 1u, false }, // Int.
1276 { 2u, 1u, 2u, false }, // Int.
1277 { 3u, 1u, 3u, false }, // Short.
1278 { 4u, 1u, 4u, false }, // Char.
1279 { 5u, 0u, 0u, false }, // Unresolved, Short.
1280 { 6u, 1u, 6u, false }, // Int.
1281 { 7u, 1u, 7u, false }, // Int.
1282 };
1283 static const MIRDef mirs[] = {
1284 // NOTE: MIRs here are ordered by unique tests. They will be put into appropriate blocks.
1285 DEF_IGET(3, Instruction::IGET, 0u, 100u, 0u),
1286 DEF_IPUT(4, Instruction::IPUT, 1u, 101u, 0u), // May alias with the IGET at the top.
1287 DEF_IGET(5, Instruction::IGET, 2u, 100u, 0u), // Differs from the top.
1288
1289 DEF_IGET(3, Instruction::IGET, 3u, 100u, 1u),
1290 DEF_IPUT(4, Instruction::IPUT, 3u, 101u, 1u), // If aliasing, stores the same value.
1291 DEF_IGET(5, Instruction::IGET, 5u, 100u, 1u), // Same as the top.
1292
1293 DEF_IGET(3, Instruction::IGET, 6u, 100u, 2u),
1294 DEF_CONST(4, Instruction::CONST, 7u, 1000),
1295 DEF_IPUT(4, Instruction::IPUT, 7u, 101u, 2u),
1296 DEF_IGET(5, Instruction::IGET, 9u, 100u, 2u), // Differs from the top and the CONST.
1297
1298 DEF_IGET(3, Instruction::IGET_SHORT, 10u, 100u, 3u),
1299 DEF_IGET(3, Instruction::IGET_CHAR, 11u, 100u, 4u),
1300 DEF_IPUT(4, Instruction::IPUT_SHORT, 12u, 101u, 5u), // Clobbers field #3, not #4.
1301 DEF_IGET(5, Instruction::IGET_SHORT, 13u, 100u, 3u), // Differs from the top.
1302 DEF_IGET(5, Instruction::IGET_CHAR, 14u, 100u, 4u), // Same as the top.
1303
1304 DEF_CONST(3, Instruction::CONST, 15u, 3000),
1305 DEF_IPUT(3, Instruction::IPUT, 15u, 100u, 6u),
1306 DEF_IPUT(3, Instruction::IPUT, 15u, 100u, 7u),
1307 DEF_IPUT(3, Instruction::IPUT, 15u, 101u, 6u),
1308 DEF_IGET(4, Instruction::IGET, 19u, 100u, 6u), // Differs from CONSTs 15u and 22u.
1309 DEF_IGET(4, Instruction::IGET, 20u, 100u, 7u), // Same value as 19u.
1310 DEF_IGET(4, Instruction::IGET, 21u, 101u, 6u), // Same value as read from field #7.
1311 DEF_CONST(4, Instruction::CONST, 22u, 3001),
1312 DEF_IPUT(4, Instruction::IPUT, 22u, 100u, 6u),
1313 DEF_IPUT(4, Instruction::IPUT, 22u, 100u, 7u),
1314 DEF_IPUT(4, Instruction::IPUT, 22u, 101u, 6u),
1315 DEF_IGET(5, Instruction::IGET, 26u, 100u, 6u), // Same as CONST 22u.
1316 DEF_IGET(5, Instruction::IGET, 27u, 100u, 7u), // Same as CONST 22u.
1317 DEF_IGET(5, Instruction::IGET, 28u, 101u, 6u), // Same as CONST 22u.
1318 };
1319
1320 PrepareIFields(ifields);
1321 PrepareMIRs(mirs);
1322 PerformGVN();
1323 ASSERT_EQ(arraysize(mirs), value_names_.size());
1324 EXPECT_NE(value_names_[0], value_names_[2]);
1325
1326 EXPECT_EQ(value_names_[3], value_names_[5]);
1327
1328 EXPECT_NE(value_names_[6], value_names_[9]);
1329 EXPECT_NE(value_names_[7], value_names_[9]);
1330
1331 EXPECT_NE(value_names_[10], value_names_[13]);
1332 EXPECT_EQ(value_names_[11], value_names_[14]);
1333
1334 EXPECT_NE(value_names_[19], value_names_[15]);
1335 EXPECT_NE(value_names_[19], value_names_[22]);
1336 EXPECT_EQ(value_names_[22], value_names_[26]);
1337 EXPECT_EQ(value_names_[22], value_names_[27]);
1338 EXPECT_EQ(value_names_[22], value_names_[28]);
1339}
1340
1341TEST_F(GlobalValueNumberingTestLoop, IFieldToBaseDependency) {
1342 static const IFieldDef ifields[] = {
1343 { 0u, 1u, 0u, false }, // Int.
1344 };
1345 static const MIRDef mirs[] = {
1346 // For the IGET that loads sreg 3u using base 2u, the following IPUT creates a dependency
1347 // from the field value to the base. However, this dependency does not result in an
1348 // infinite loop since the merge of the field value for base 0u gets assigned a value name
1349 // based only on the base 0u, not on the actual value, and breaks the dependency cycle.
1350 DEF_IGET(3, Instruction::IGET, 0u, 100u, 0u),
1351 DEF_IGET(3, Instruction::IGET, 1u, 0u, 0u),
1352 DEF_IGET(4, Instruction::IGET, 2u, 0u, 0u),
1353 DEF_IGET(4, Instruction::IGET, 3u, 2u, 0u),
1354 DEF_IPUT(4, Instruction::IPUT, 3u, 0u, 0u),
1355 DEF_IGET(5, Instruction::IGET, 5u, 0u, 0u),
1356 };
1357
1358 PrepareIFields(ifields);
1359 PrepareMIRs(mirs);
1360 PerformGVN();
1361 ASSERT_EQ(arraysize(mirs), value_names_.size());
1362 EXPECT_NE(value_names_[1], value_names_[2]);
1363 EXPECT_EQ(value_names_[3], value_names_[5]);
1364}
1365
1366TEST_F(GlobalValueNumberingTestLoop, SFields) {
1367 static const SFieldDef sfields[] = {
1368 { 0u, 1u, 0u, false }, // Int.
1369 { 1u, 1u, 1u, false }, // Int.
1370 { 2u, 1u, 2u, false }, // Int.
1371 };
1372 static const MIRDef mirs[] = {
1373 // NOTE: MIRs here are ordered by unique tests. They will be put into appropriate blocks.
1374 DEF_SGET(3, Instruction::SGET, 0u, 0u),
1375 DEF_SGET(4, Instruction::SGET, 1u, 0u), // Same as at the top.
1376 DEF_SGET(5, Instruction::SGET, 2u, 0u), // Same as at the top.
1377
1378 DEF_SGET(3, Instruction::SGET, 3u, 1u),
1379 DEF_SGET(4, Instruction::SGET, 4u, 1u), // Differs from top...
1380 DEF_SPUT(4, Instruction::SPUT, 5u, 1u), // Because of this SPUT.
1381 DEF_SGET(5, Instruction::SGET, 6u, 1u), // Differs from top and the loop SGET.
1382
1383 DEF_SGET(3, Instruction::SGET, 7u, 2u),
1384 DEF_SPUT(4, Instruction::SPUT, 8u, 2u), // Because of this SPUT...
1385 DEF_SGET(4, Instruction::SGET, 9u, 2u), // Differs from top.
1386 DEF_SGET(5, Instruction::SGET, 10u, 2u), // Differs from top but same as the loop SGET.
1387 };
1388
1389 PrepareSFields(sfields);
1390 PrepareMIRs(mirs);
1391 PerformGVN();
1392 ASSERT_EQ(arraysize(mirs), value_names_.size());
1393 EXPECT_EQ(value_names_[0], value_names_[1]);
1394 EXPECT_EQ(value_names_[0], value_names_[2]);
1395
1396 EXPECT_NE(value_names_[3], value_names_[4]);
1397 EXPECT_NE(value_names_[3], value_names_[6]);
1398 EXPECT_NE(value_names_[4], value_names_[5]);
1399
1400 EXPECT_NE(value_names_[7], value_names_[9]);
1401 EXPECT_EQ(value_names_[9], value_names_[10]);
1402}
1403
1404TEST_F(GlobalValueNumberingTestLoop, NonAliasingArrays) {
1405 static const MIRDef mirs[] = {
1406 // NOTE: MIRs here are ordered by unique tests. They will be put into appropriate blocks.
1407 DEF_UNIQUE_REF(3, Instruction::NEW_ARRAY, 100u),
1408 DEF_AGET(3, Instruction::AGET, 1u, 100u, 101u),
1409 DEF_AGET(4, Instruction::AGET, 2u, 100u, 101u), // Same as at the top.
1410 DEF_AGET(5, Instruction::AGET, 3u, 100u, 101u), // Same as at the top.
1411
1412 DEF_UNIQUE_REF(3, Instruction::NEW_ARRAY, 200u),
1413 DEF_AGET(3, Instruction::AGET, 5u, 200u, 201u),
1414 DEF_AGET(4, Instruction::AGET, 6u, 200u, 201u), // Differs from top...
1415 DEF_APUT(4, Instruction::APUT, 7u, 200u, 201u), // Because of this IPUT.
1416 DEF_AGET(5, Instruction::AGET, 8u, 200u, 201u), // Differs from top and the loop AGET.
1417
1418 DEF_UNIQUE_REF(3, Instruction::NEW_ARRAY, 300u),
1419 DEF_AGET(3, Instruction::AGET, 10u, 300u, 301u),
1420 DEF_APUT(4, Instruction::APUT, 11u, 300u, 301u), // Because of this IPUT...
1421 DEF_AGET(4, Instruction::AGET, 12u, 300u, 301u), // Differs from top.
1422 DEF_AGET(5, Instruction::AGET, 13u, 300u, 301u), // Differs from top but == the loop AGET.
1423
1424 DEF_UNIQUE_REF(3, Instruction::NEW_ARRAY, 400u),
1425 DEF_CONST(3, Instruction::CONST, 15u, 3000),
1426 DEF_APUT(3, Instruction::APUT, 15u, 400u, 401u),
1427 DEF_APUT(3, Instruction::APUT, 15u, 400u, 402u),
1428 DEF_AGET(4, Instruction::AGET, 18u, 400u, 401u), // Differs from 15u and 20u.
1429 DEF_AGET(4, Instruction::AGET, 19u, 400u, 402u), // Same as 18u.
1430 DEF_CONST(4, Instruction::CONST, 20u, 4000),
1431 DEF_APUT(4, Instruction::APUT, 20u, 400u, 401u),
1432 DEF_APUT(4, Instruction::APUT, 20u, 400u, 402u),
1433 DEF_AGET(5, Instruction::AGET, 23u, 400u, 401u), // Differs from 15u and 18u...
1434 DEF_AGET(5, Instruction::AGET, 24u, 400u, 402u), // and same as the CONST 20u.
1435
1436 DEF_UNIQUE_REF(3, Instruction::NEW_ARRAY, 500u),
1437 DEF_AGET(3, Instruction::AGET, 26u, 500u, 501u),
1438 DEF_APUT(4, Instruction::APUT, 27u, 500u, 502u), // Clobbers element at index 501u.
1439 DEF_AGET(5, Instruction::AGET, 28u, 500u, 501u), // Differs from the top.
1440 };
1441
1442 PrepareMIRs(mirs);
1443 PerformGVN();
1444 ASSERT_EQ(arraysize(mirs), value_names_.size());
1445 EXPECT_EQ(value_names_[1], value_names_[2]);
1446 EXPECT_EQ(value_names_[1], value_names_[3]);
1447
1448 EXPECT_NE(value_names_[5], value_names_[6]);
1449 EXPECT_NE(value_names_[5], value_names_[8]);
1450 EXPECT_NE(value_names_[6], value_names_[8]);
1451
1452 EXPECT_NE(value_names_[10], value_names_[12]);
1453 EXPECT_EQ(value_names_[12], value_names_[13]);
1454
1455 EXPECT_NE(value_names_[18], value_names_[15]);
1456 EXPECT_NE(value_names_[18], value_names_[20]);
1457 EXPECT_EQ(value_names_[18], value_names_[19]);
1458 EXPECT_NE(value_names_[23], value_names_[15]);
1459 EXPECT_NE(value_names_[23], value_names_[18]);
1460 EXPECT_EQ(value_names_[23], value_names_[20]);
1461 EXPECT_EQ(value_names_[23], value_names_[24]);
1462
1463 EXPECT_NE(value_names_[26], value_names_[28]);
1464}
1465
1466TEST_F(GlobalValueNumberingTestLoop, AliasingArrays) {
1467 static const MIRDef mirs[] = {
1468 // NOTE: MIRs here are ordered by unique tests. They will be put into appropriate blocks.
1469 DEF_AGET(3, Instruction::AGET_WIDE, 0u, 100u, 101u),
1470 DEF_AGET(4, Instruction::AGET_WIDE, 1u, 100u, 101u), // Same as at the top.
1471 DEF_AGET(5, Instruction::AGET_WIDE, 2u, 100u, 101u), // Same as at the top.
1472
1473 DEF_AGET(3, Instruction::AGET_BYTE, 3u, 200u, 201u),
1474 DEF_AGET(4, Instruction::AGET_BYTE, 4u, 200u, 201u), // Differs from top...
1475 DEF_APUT(4, Instruction::APUT_BYTE, 5u, 200u, 201u), // Because of this IPUT.
1476 DEF_AGET(5, Instruction::AGET_BYTE, 6u, 200u, 201u), // Differs from top and the loop AGET.
1477
1478 DEF_AGET(3, Instruction::AGET, 7u, 300u, 301u),
1479 DEF_APUT(4, Instruction::APUT, 8u, 300u, 301u), // Because of this IPUT...
1480 DEF_AGET(4, Instruction::AGET, 9u, 300u, 301u), // Differs from top.
1481 DEF_AGET(5, Instruction::AGET, 10u, 300u, 301u), // Differs from top but == the loop AGET.
1482
1483 DEF_CONST(3, Instruction::CONST, 11u, 3000),
1484 DEF_APUT(3, Instruction::APUT_CHAR, 11u, 400u, 401u),
1485 DEF_APUT(3, Instruction::APUT_CHAR, 11u, 400u, 402u),
1486 DEF_AGET(4, Instruction::AGET_CHAR, 14u, 400u, 401u), // Differs from 11u and 16u.
1487 DEF_AGET(4, Instruction::AGET_CHAR, 15u, 400u, 402u), // Same as 14u.
1488 DEF_CONST(4, Instruction::CONST, 16u, 4000),
1489 DEF_APUT(4, Instruction::APUT_CHAR, 16u, 400u, 401u),
1490 DEF_APUT(4, Instruction::APUT_CHAR, 16u, 400u, 402u),
1491 DEF_AGET(5, Instruction::AGET_CHAR, 19u, 400u, 401u), // Differs from 11u and 14u...
1492 DEF_AGET(5, Instruction::AGET_CHAR, 20u, 400u, 402u), // and same as the CONST 16u.
1493
1494 DEF_AGET(3, Instruction::AGET_SHORT, 21u, 500u, 501u),
1495 DEF_APUT(4, Instruction::APUT_SHORT, 22u, 500u, 502u), // Clobbers element at index 501u.
1496 DEF_AGET(5, Instruction::AGET_SHORT, 23u, 500u, 501u), // Differs from the top.
1497
1498 DEF_AGET(3, Instruction::AGET_OBJECT, 24u, 600u, 601u),
1499 DEF_APUT(4, Instruction::APUT_OBJECT, 25u, 601u, 602u), // Clobbers 600u/601u.
1500 DEF_AGET(5, Instruction::AGET_OBJECT, 26u, 600u, 601u), // Differs from the top.
1501
1502 DEF_AGET(3, Instruction::AGET_BOOLEAN, 27u, 700u, 701u),
1503 DEF_APUT(4, Instruction::APUT_BOOLEAN, 27u, 701u, 702u), // Storing the same value.
1504 DEF_AGET(5, Instruction::AGET_BOOLEAN, 29u, 700u, 701u), // Differs from the top.
1505 };
1506
1507 PrepareMIRs(mirs);
1508 PerformGVN();
1509 ASSERT_EQ(arraysize(mirs), value_names_.size());
1510 EXPECT_EQ(value_names_[0], value_names_[1]);
1511 EXPECT_EQ(value_names_[0], value_names_[2]);
1512
1513 EXPECT_NE(value_names_[3], value_names_[4]);
1514 EXPECT_NE(value_names_[3], value_names_[6]);
1515 EXPECT_NE(value_names_[4], value_names_[6]);
1516
1517 EXPECT_NE(value_names_[7], value_names_[9]);
1518 EXPECT_EQ(value_names_[9], value_names_[10]);
1519
1520 EXPECT_NE(value_names_[14], value_names_[11]);
1521 EXPECT_NE(value_names_[14], value_names_[16]);
1522 EXPECT_EQ(value_names_[14], value_names_[15]);
1523 EXPECT_NE(value_names_[19], value_names_[11]);
1524 EXPECT_NE(value_names_[19], value_names_[14]);
1525 EXPECT_EQ(value_names_[19], value_names_[16]);
1526 EXPECT_EQ(value_names_[19], value_names_[20]);
1527
1528 EXPECT_NE(value_names_[21], value_names_[23]);
1529
1530 EXPECT_NE(value_names_[24], value_names_[26]);
1531
1532 EXPECT_EQ(value_names_[27], value_names_[29]);
1533}
1534
1535TEST_F(GlobalValueNumberingTestLoop, Phi) {
1536 static const MIRDef mirs[] = {
1537 DEF_CONST(3, Instruction::CONST, 0u, 1000),
1538 DEF_PHI2(4, 1u, 0u, 6u), // Merge CONST 0u (1000) with the same.
1539 DEF_PHI2(4, 2u, 0u, 7u), // Merge CONST 0u (1000) with the Phi itself.
1540 DEF_PHI2(4, 3u, 0u, 8u), // Merge CONST 0u (1000) and CONST 4u (2000).
1541 DEF_PHI2(4, 4u, 0u, 9u), // Merge CONST 0u (1000) and Phi 3u.
1542 DEF_CONST(4, Instruction::CONST, 5u, 2000),
1543 DEF_MOVE(4, Instruction::MOVE, 6u, 0u),
1544 DEF_MOVE(4, Instruction::MOVE, 7u, 2u),
1545 DEF_MOVE(4, Instruction::MOVE, 8u, 5u),
1546 DEF_MOVE(4, Instruction::MOVE, 9u, 3u),
1547 };
1548
1549 PrepareMIRs(mirs);
1550 PerformGVN();
1551 ASSERT_EQ(arraysize(mirs), value_names_.size());
1552 EXPECT_EQ(value_names_[1], value_names_[0]);
1553 EXPECT_EQ(value_names_[2], value_names_[0]);
1554
1555 EXPECT_NE(value_names_[3], value_names_[0]);
1556 EXPECT_NE(value_names_[3], value_names_[5]);
1557 EXPECT_NE(value_names_[4], value_names_[0]);
1558 EXPECT_NE(value_names_[4], value_names_[5]);
1559 EXPECT_NE(value_names_[4], value_names_[3]);
1560}
1561
1562TEST_F(GlobalValueNumberingTestCatch, IFields) {
1563 static const IFieldDef ifields[] = {
1564 { 0u, 1u, 0u, false },
1565 { 1u, 1u, 1u, false },
1566 };
1567 static const MIRDef mirs[] = {
1568 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 200u),
1569 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 201u),
1570 DEF_IGET(3, Instruction::IGET, 2u, 100u, 0u),
1571 DEF_IGET(3, Instruction::IGET, 3u, 200u, 0u),
1572 DEF_IGET(3, Instruction::IGET, 4u, 201u, 0u),
1573 DEF_INVOKE1(4, Instruction::INVOKE_STATIC, 201u), // Clobbering catch, 201u escapes.
1574 DEF_IGET(4, Instruction::IGET, 6u, 100u, 0u), // Differs from IGET 2u.
1575 DEF_IPUT(4, Instruction::IPUT, 6u, 100u, 1u),
1576 DEF_IPUT(4, Instruction::IPUT, 6u, 101u, 0u),
1577 DEF_IPUT(4, Instruction::IPUT, 6u, 200u, 0u),
1578 DEF_IGET(5, Instruction::IGET, 10u, 100u, 0u), // Differs from IGETs 2u and 6u.
1579 DEF_IGET(5, Instruction::IGET, 11u, 200u, 0u), // Same as the top.
1580 DEF_IGET(5, Instruction::IGET, 12u, 201u, 0u), // Differs from the top, 201u escaped.
1581 DEF_IPUT(5, Instruction::IPUT, 10u, 100u, 1u),
1582 DEF_IPUT(5, Instruction::IPUT, 10u, 101u, 0u),
1583 DEF_IPUT(5, Instruction::IPUT, 10u, 200u, 0u),
1584 DEF_IGET(6, Instruction::IGET, 16u, 100u, 0u), // Differs from IGETs 2u, 6u and 10u.
1585 DEF_IGET(6, Instruction::IGET, 17u, 100u, 1u), // Same as IGET 16u.
1586 DEF_IGET(6, Instruction::IGET, 18u, 101u, 0u), // Same as IGET 16u.
1587 DEF_IGET(6, Instruction::IGET, 19u, 200u, 0u), // Same as IGET 16u.
1588 };
1589
1590 PrepareIFields(ifields);
1591 PrepareMIRs(mirs);
1592 PerformGVN();
1593 ASSERT_EQ(arraysize(mirs), value_names_.size());
1594 EXPECT_NE(value_names_[2], value_names_[6]);
1595 EXPECT_NE(value_names_[2], value_names_[10]);
1596 EXPECT_NE(value_names_[6], value_names_[10]);
1597 EXPECT_EQ(value_names_[3], value_names_[11]);
1598 EXPECT_NE(value_names_[4], value_names_[12]);
1599
1600 EXPECT_NE(value_names_[2], value_names_[16]);
1601 EXPECT_NE(value_names_[6], value_names_[16]);
1602 EXPECT_NE(value_names_[10], value_names_[16]);
1603 EXPECT_EQ(value_names_[16], value_names_[17]);
1604 EXPECT_EQ(value_names_[16], value_names_[18]);
1605 EXPECT_EQ(value_names_[16], value_names_[19]);
1606}
1607
1608TEST_F(GlobalValueNumberingTestCatch, SFields) {
1609 static const SFieldDef sfields[] = {
1610 { 0u, 1u, 0u, false },
1611 { 1u, 1u, 1u, false },
1612 };
1613 static const MIRDef mirs[] = {
1614 DEF_SGET(3, Instruction::SGET, 0u, 0u),
1615 DEF_INVOKE1(4, Instruction::INVOKE_STATIC, 100u), // Clobbering catch.
1616 DEF_SGET(4, Instruction::SGET, 2u, 0u), // Differs from SGET 0u.
1617 DEF_SPUT(4, Instruction::SPUT, 2u, 1u),
1618 DEF_SGET(5, Instruction::SGET, 4u, 0u), // Differs from SGETs 0u and 2u.
1619 DEF_SPUT(5, Instruction::SPUT, 4u, 1u),
1620 DEF_SGET(6, Instruction::SGET, 6u, 0u), // Differs from SGETs 0u, 2u and 4u.
1621 DEF_SGET(6, Instruction::SGET, 7u, 1u), // Same as field #1.
1622 };
1623
1624 PrepareSFields(sfields);
1625 PrepareMIRs(mirs);
1626 PerformGVN();
1627 ASSERT_EQ(arraysize(mirs), value_names_.size());
1628 EXPECT_NE(value_names_[0], value_names_[2]);
1629 EXPECT_NE(value_names_[0], value_names_[4]);
1630 EXPECT_NE(value_names_[2], value_names_[4]);
1631 EXPECT_NE(value_names_[0], value_names_[6]);
1632 EXPECT_NE(value_names_[2], value_names_[6]);
1633 EXPECT_NE(value_names_[4], value_names_[6]);
1634 EXPECT_EQ(value_names_[6], value_names_[7]);
1635}
1636
1637TEST_F(GlobalValueNumberingTestCatch, Arrays) {
1638 static const MIRDef mirs[] = {
1639 DEF_UNIQUE_REF(3, Instruction::NEW_ARRAY, 200u),
1640 DEF_UNIQUE_REF(3, Instruction::NEW_ARRAY, 201u),
1641 DEF_AGET(3, Instruction::AGET, 2u, 100u, 101u),
1642 DEF_AGET(3, Instruction::AGET, 3u, 200u, 202u),
1643 DEF_AGET(3, Instruction::AGET, 4u, 200u, 203u),
1644 DEF_AGET(3, Instruction::AGET, 5u, 201u, 202u),
1645 DEF_AGET(3, Instruction::AGET, 6u, 201u, 203u),
1646 DEF_INVOKE1(4, Instruction::INVOKE_STATIC, 201u), // Clobbering catch, 201u escapes.
1647 DEF_AGET(4, Instruction::AGET, 8u, 100u, 101u), // Differs from AGET 2u.
1648 DEF_APUT(4, Instruction::APUT, 8u, 100u, 102u),
1649 DEF_APUT(4, Instruction::APUT, 8u, 200u, 202u),
1650 DEF_APUT(4, Instruction::APUT, 8u, 200u, 203u),
1651 DEF_APUT(4, Instruction::APUT, 8u, 201u, 202u),
1652 DEF_APUT(4, Instruction::APUT, 8u, 201u, 203u),
1653 DEF_AGET(5, Instruction::AGET, 14u, 100u, 101u), // Differs from AGETs 2u and 8u.
1654 DEF_AGET(5, Instruction::AGET, 15u, 200u, 202u), // Same as AGET 3u.
1655 DEF_AGET(5, Instruction::AGET, 16u, 200u, 203u), // Same as AGET 4u.
1656 DEF_AGET(5, Instruction::AGET, 17u, 201u, 202u), // Differs from AGET 5u.
1657 DEF_AGET(5, Instruction::AGET, 18u, 201u, 203u), // Differs from AGET 6u.
1658 DEF_APUT(5, Instruction::APUT, 14u, 100u, 102u),
1659 DEF_APUT(5, Instruction::APUT, 14u, 200u, 202u),
1660 DEF_APUT(5, Instruction::APUT, 14u, 200u, 203u),
1661 DEF_APUT(5, Instruction::APUT, 14u, 201u, 202u),
1662 DEF_APUT(5, Instruction::APUT, 14u, 201u, 203u),
1663 DEF_AGET(6, Instruction::AGET, 24u, 100u, 101u), // Differs from AGETs 2u, 8u and 14u.
1664 DEF_AGET(6, Instruction::AGET, 25u, 100u, 101u), // Same as AGET 24u.
1665 DEF_AGET(6, Instruction::AGET, 26u, 200u, 202u), // Same as AGET 24u.
1666 DEF_AGET(6, Instruction::AGET, 27u, 200u, 203u), // Same as AGET 24u.
1667 DEF_AGET(6, Instruction::AGET, 28u, 201u, 202u), // Same as AGET 24u.
1668 DEF_AGET(6, Instruction::AGET, 29u, 201u, 203u), // Same as AGET 24u.
1669 };
1670
1671 PrepareMIRs(mirs);
1672 PerformGVN();
1673 ASSERT_EQ(arraysize(mirs), value_names_.size());
1674 EXPECT_NE(value_names_[2], value_names_[8]);
1675 EXPECT_NE(value_names_[2], value_names_[14]);
1676 EXPECT_NE(value_names_[8], value_names_[14]);
1677 EXPECT_EQ(value_names_[3], value_names_[15]);
1678 EXPECT_EQ(value_names_[4], value_names_[16]);
1679 EXPECT_NE(value_names_[5], value_names_[17]);
1680 EXPECT_NE(value_names_[6], value_names_[18]);
1681 EXPECT_NE(value_names_[2], value_names_[24]);
1682 EXPECT_NE(value_names_[8], value_names_[24]);
1683 EXPECT_NE(value_names_[14], value_names_[24]);
1684 EXPECT_EQ(value_names_[24], value_names_[25]);
1685 EXPECT_EQ(value_names_[24], value_names_[26]);
1686 EXPECT_EQ(value_names_[24], value_names_[27]);
1687 EXPECT_EQ(value_names_[24], value_names_[28]);
1688 EXPECT_EQ(value_names_[24], value_names_[29]);
1689}
1690
1691TEST_F(GlobalValueNumberingTestCatch, Phi) {
1692 static const MIRDef mirs[] = {
1693 DEF_CONST(3, Instruction::CONST, 0u, 1000),
1694 DEF_CONST(3, Instruction::CONST, 1u, 2000),
1695 DEF_MOVE(3, Instruction::MOVE, 2u, 1u),
1696 DEF_INVOKE1(4, Instruction::INVOKE_STATIC, 100u), // Clobbering catch.
1697 DEF_CONST(5, Instruction::CONST, 4u, 1000),
1698 DEF_CONST(5, Instruction::CONST, 5u, 3000),
1699 DEF_MOVE(5, Instruction::MOVE, 6u, 5u),
1700 DEF_PHI2(6, 7u, 0u, 4u),
1701 DEF_PHI2(6, 8u, 0u, 5u),
1702 DEF_PHI2(6, 9u, 0u, 6u),
1703 DEF_PHI2(6, 10u, 1u, 4u),
1704 DEF_PHI2(6, 11u, 1u, 5u),
1705 DEF_PHI2(6, 12u, 1u, 6u),
1706 DEF_PHI2(6, 13u, 2u, 4u),
1707 DEF_PHI2(6, 14u, 2u, 5u),
1708 DEF_PHI2(6, 15u, 2u, 6u),
1709 };
1710 PrepareMIRs(mirs);
1711 PerformGVN();
1712 ASSERT_EQ(arraysize(mirs), value_names_.size());
1713 ASSERT_EQ(value_names_[4], value_names_[0]); // Both CONSTs are 1000.
1714 EXPECT_EQ(value_names_[7], value_names_[0]); // Merging CONST 0u and CONST 4u, both 1000.
1715 EXPECT_NE(value_names_[8], value_names_[0]);
1716 EXPECT_NE(value_names_[8], value_names_[5]);
1717 EXPECT_EQ(value_names_[9], value_names_[8]);
1718 EXPECT_NE(value_names_[10], value_names_[1]);
1719 EXPECT_NE(value_names_[10], value_names_[4]);
1720 EXPECT_NE(value_names_[10], value_names_[8]);
1721 EXPECT_NE(value_names_[11], value_names_[1]);
1722 EXPECT_NE(value_names_[11], value_names_[5]);
1723 EXPECT_NE(value_names_[11], value_names_[8]);
1724 EXPECT_NE(value_names_[11], value_names_[10]);
1725 EXPECT_EQ(value_names_[12], value_names_[11]);
1726 EXPECT_EQ(value_names_[13], value_names_[10]);
1727 EXPECT_EQ(value_names_[14], value_names_[11]);
1728 EXPECT_EQ(value_names_[15], value_names_[11]);
1729}
1730
1731TEST_F(GlobalValueNumberingTest, NullCheckIFields) {
1732 static const IFieldDef ifields[] = {
1733 { 0u, 1u, 0u, false }, // Object.
1734 { 1u, 1u, 1u, false }, // Object.
1735 };
1736 static const BBDef bbs[] = {
1737 DEF_BB(kNullBlock, DEF_SUCC0(), DEF_PRED0()),
1738 DEF_BB(kEntryBlock, DEF_SUCC1(3), DEF_PRED0()),
1739 DEF_BB(kExitBlock, DEF_SUCC0(), DEF_PRED1(5)),
1740 DEF_BB(kDalvikByteCode, DEF_SUCC2(4, 5), DEF_PRED1(1)), // 4 is fall-through, 5 is taken.
1741 DEF_BB(kDalvikByteCode, DEF_SUCC1(5), DEF_PRED1(3)),
1742 DEF_BB(kDalvikByteCode, DEF_SUCC1(2), DEF_PRED2(3, 4)),
1743 };
1744 static const MIRDef mirs[] = {
1745 DEF_IGET(3, Instruction::IGET_OBJECT, 0u, 100u, 0u),
1746 DEF_IGET(3, Instruction::IGET_OBJECT, 1u, 100u, 1u),
1747 DEF_IGET(3, Instruction::IGET_OBJECT, 2u, 101u, 0u),
1748 DEF_IFZ(3, Instruction::IF_NEZ, 0u), // Null-check for field #0 for taken.
1749 DEF_UNIQUE_REF(4, Instruction::NEW_ARRAY, 4u),
1750 DEF_IPUT(4, Instruction::IPUT_OBJECT, 4u, 100u, 0u),
1751 DEF_IPUT(4, Instruction::IPUT_OBJECT, 4u, 100u, 1u),
1752 DEF_IPUT(4, Instruction::IPUT_OBJECT, 4u, 101u, 0u),
1753 DEF_IGET(5, Instruction::IGET_OBJECT, 8u, 100u, 0u), // 100u/#0, IF_NEZ/NEW_ARRAY.
1754 DEF_IGET(5, Instruction::IGET_OBJECT, 9u, 100u, 1u), // 100u/#1, -/NEW_ARRAY.
1755 DEF_IGET(5, Instruction::IGET_OBJECT, 10u, 101u, 0u), // 101u/#0, -/NEW_ARRAY.
1756 DEF_CONST(5, Instruction::CONST, 11u, 0),
1757 DEF_AGET(5, Instruction::AGET, 12u, 8u, 11u), // Null-check eliminated.
1758 DEF_AGET(5, Instruction::AGET, 13u, 9u, 11u), // Null-check kept.
1759 DEF_AGET(5, Instruction::AGET, 14u, 10u, 11u), // Null-check kept.
1760 };
1761 static const bool expected_ignore_null_check[] = {
1762 false, true, false, false, // BB #3; unimportant.
1763 false, true, true, true, // BB #4; unimportant.
1764 true, true, true, false, true, false, false, // BB #5; only the last three are important.
1765 };
1766
1767 PrepareIFields(ifields);
1768 PrepareBasicBlocks(bbs);
1769 PrepareMIRs(mirs);
1770 PerformGVN();
1771 ASSERT_EQ(arraysize(mirs), value_names_.size());
1772 PerformGVNCodeModifications();
1773 ASSERT_EQ(arraysize(expected_ignore_null_check), mir_count_);
1774 for (size_t i = 0u; i != arraysize(mirs); ++i) {
1775 EXPECT_EQ(expected_ignore_null_check[i],
1776 (mirs_[i].optimization_flags & MIR_IGNORE_NULL_CHECK) != 0) << i;
1777 }
1778}
1779
1780TEST_F(GlobalValueNumberingTest, NullCheckSFields) {
1781 static const SFieldDef sfields[] = {
1782 { 0u, 1u, 0u, false }, // Object.
1783 { 1u, 1u, 1u, false }, // Object.
1784 };
1785 static const BBDef bbs[] = {
1786 DEF_BB(kNullBlock, DEF_SUCC0(), DEF_PRED0()),
1787 DEF_BB(kEntryBlock, DEF_SUCC1(3), DEF_PRED0()),
1788 DEF_BB(kExitBlock, DEF_SUCC0(), DEF_PRED1(5)),
1789 DEF_BB(kDalvikByteCode, DEF_SUCC2(4, 5), DEF_PRED1(1)), // 4 is fall-through, 5 is taken.
1790 DEF_BB(kDalvikByteCode, DEF_SUCC1(5), DEF_PRED1(3)),
1791 DEF_BB(kDalvikByteCode, DEF_SUCC1(2), DEF_PRED2(3, 4)),
1792 };
1793 static const MIRDef mirs[] = {
1794 DEF_SGET(3, Instruction::SGET_OBJECT, 0u, 0u),
1795 DEF_SGET(3, Instruction::SGET_OBJECT, 1u, 1u),
1796 DEF_IFZ(3, Instruction::IF_NEZ, 0u), // Null-check for field #0 for taken.
1797 DEF_UNIQUE_REF(4, Instruction::NEW_ARRAY, 3u),
1798 DEF_SPUT(4, Instruction::SPUT_OBJECT, 3u, 0u),
1799 DEF_SPUT(4, Instruction::SPUT_OBJECT, 3u, 1u),
1800 DEF_SGET(5, Instruction::SGET_OBJECT, 6u, 0u), // Field #0 is null-checked, IF_NEZ/NEW_ARRAY.
1801 DEF_SGET(5, Instruction::SGET_OBJECT, 7u, 1u), // Field #1 is not null-checked, -/NEW_ARRAY.
1802 DEF_CONST(5, Instruction::CONST, 8u, 0),
1803 DEF_AGET(5, Instruction::AGET, 9u, 6u, 8u), // Null-check eliminated.
1804 DEF_AGET(5, Instruction::AGET, 10u, 7u, 8u), // Null-check kept.
1805 };
1806 static const bool expected_ignore_null_check[] = {
1807 false, false, false, false, false, false, false, false, false, true, false
1808 };
1809
1810 PrepareSFields(sfields);
1811 PrepareBasicBlocks(bbs);
1812 PrepareMIRs(mirs);
1813 PerformGVN();
1814 ASSERT_EQ(arraysize(mirs), value_names_.size());
1815 PerformGVNCodeModifications();
1816 ASSERT_EQ(arraysize(expected_ignore_null_check), mir_count_);
1817 for (size_t i = 0u; i != arraysize(mirs); ++i) {
1818 EXPECT_EQ(expected_ignore_null_check[i],
1819 (mirs_[i].optimization_flags & MIR_IGNORE_NULL_CHECK) != 0) << i;
1820 }
1821}
1822
1823TEST_F(GlobalValueNumberingTest, NullCheckArrays) {
1824 static const BBDef bbs[] = {
1825 DEF_BB(kNullBlock, DEF_SUCC0(), DEF_PRED0()),
1826 DEF_BB(kEntryBlock, DEF_SUCC1(3), DEF_PRED0()),
1827 DEF_BB(kExitBlock, DEF_SUCC0(), DEF_PRED1(5)),
1828 DEF_BB(kDalvikByteCode, DEF_SUCC2(4, 5), DEF_PRED1(1)), // 4 is fall-through, 5 is taken.
1829 DEF_BB(kDalvikByteCode, DEF_SUCC1(5), DEF_PRED1(3)),
1830 DEF_BB(kDalvikByteCode, DEF_SUCC1(2), DEF_PRED2(3, 4)),
1831 };
1832 static const MIRDef mirs[] = {
1833 DEF_AGET(3, Instruction::AGET_OBJECT, 0u, 100u, 102u),
1834 DEF_AGET(3, Instruction::AGET_OBJECT, 1u, 100u, 103u),
1835 DEF_AGET(3, Instruction::AGET_OBJECT, 2u, 101u, 102u),
1836 DEF_IFZ(3, Instruction::IF_NEZ, 0u), // Null-check for field #0 for taken.
1837 DEF_UNIQUE_REF(4, Instruction::NEW_ARRAY, 4u),
1838 DEF_APUT(4, Instruction::APUT_OBJECT, 4u, 100u, 102u),
1839 DEF_APUT(4, Instruction::APUT_OBJECT, 4u, 100u, 103u),
1840 DEF_APUT(4, Instruction::APUT_OBJECT, 4u, 101u, 102u),
1841 DEF_AGET(5, Instruction::AGET_OBJECT, 8u, 100u, 102u), // Null-checked, IF_NEZ/NEW_ARRAY.
1842 DEF_AGET(5, Instruction::AGET_OBJECT, 9u, 100u, 103u), // Not null-checked, -/NEW_ARRAY.
1843 DEF_AGET(5, Instruction::AGET_OBJECT, 10u, 101u, 102u), // Not null-checked, -/NEW_ARRAY.
1844 DEF_CONST(5, Instruction::CONST, 11u, 0),
1845 DEF_AGET(5, Instruction::AGET, 12u, 8u, 11u), // Null-check eliminated.
1846 DEF_AGET(5, Instruction::AGET, 13u, 9u, 11u), // Null-check kept.
1847 DEF_AGET(5, Instruction::AGET, 14u, 10u, 11u), // Null-check kept.
1848 };
1849 static const bool expected_ignore_null_check[] = {
1850 false, true, false, false, // BB #3; unimportant.
1851 false, true, true, true, // BB #4; unimportant.
1852 true, true, true, false, true, false, false, // BB #5; only the last three are important.
1853 };
1854
1855 PrepareBasicBlocks(bbs);
1856 PrepareMIRs(mirs);
1857 PerformGVN();
1858 ASSERT_EQ(arraysize(mirs), value_names_.size());
1859 PerformGVNCodeModifications();
1860 ASSERT_EQ(arraysize(expected_ignore_null_check), mir_count_);
1861 for (size_t i = 0u; i != arraysize(mirs); ++i) {
1862 EXPECT_EQ(expected_ignore_null_check[i],
1863 (mirs_[i].optimization_flags & MIR_IGNORE_NULL_CHECK) != 0) << i;
1864 }
1865}
1866
1867TEST_F(GlobalValueNumberingTestDiamond, RangeCheckArrays) {
1868 // NOTE: We don't merge range checks when we merge value names for Phis or memory locations.
1869 static const MIRDef mirs[] = {
1870 DEF_AGET(4, Instruction::AGET, 0u, 100u, 101u),
1871 DEF_AGET(5, Instruction::AGET, 1u, 100u, 101u),
1872 DEF_APUT(6, Instruction::APUT, 2u, 100u, 101u),
1873
1874 DEF_AGET(4, Instruction::AGET, 3u, 200u, 201u),
1875 DEF_AGET(5, Instruction::AGET, 4u, 200u, 202u),
1876 DEF_APUT(6, Instruction::APUT, 5u, 200u, 201u),
1877
1878 DEF_AGET(4, Instruction::AGET, 6u, 300u, 302u),
1879 DEF_AGET(5, Instruction::AGET, 7u, 301u, 302u),
1880 DEF_APUT(6, Instruction::APUT, 8u, 300u, 302u),
1881 };
1882 static const bool expected_ignore_null_check[] = {
1883 false, false, true,
1884 false, false, true,
1885 false, false, false,
1886 };
1887 static const bool expected_ignore_range_check[] = {
1888 false, false, true,
1889 false, false, false,
1890 false, false, false,
1891 };
1892
1893 PrepareMIRs(mirs);
1894 PerformGVN();
1895 ASSERT_EQ(arraysize(mirs), value_names_.size());
1896 PerformGVNCodeModifications();
1897 ASSERT_EQ(arraysize(expected_ignore_null_check), mir_count_);
1898 ASSERT_EQ(arraysize(expected_ignore_range_check), mir_count_);
1899 for (size_t i = 0u; i != arraysize(mirs); ++i) {
1900 EXPECT_EQ(expected_ignore_null_check[i],
1901 (mirs_[i].optimization_flags & MIR_IGNORE_NULL_CHECK) != 0) << i;
1902 EXPECT_EQ(expected_ignore_range_check[i],
1903 (mirs_[i].optimization_flags & MIR_IGNORE_RANGE_CHECK) != 0) << i;
1904 }
1905}
1906
1907TEST_F(GlobalValueNumberingTestDiamond, MergeSameValueInDifferentMemoryLocations) {
1908 static const IFieldDef ifields[] = {
1909 { 0u, 1u, 0u, false }, // Int.
1910 { 1u, 1u, 1u, false }, // Int.
1911 };
1912 static const SFieldDef sfields[] = {
1913 { 0u, 1u, 0u, false }, // Int.
1914 { 1u, 1u, 1u, false }, // Int.
1915 };
1916 static const MIRDef mirs[] = {
1917 DEF_UNIQUE_REF(3, Instruction::NEW_INSTANCE, 100u),
1918 DEF_UNIQUE_REF(3, Instruction::NEW_ARRAY, 200u),
1919 DEF_CONST(4, Instruction::CONST, 2u, 1000),
1920 DEF_IPUT(4, Instruction::IPUT, 2u, 100u, 0u),
1921 DEF_IPUT(4, Instruction::IPUT, 2u, 100u, 1u),
1922 DEF_IPUT(4, Instruction::IPUT, 2u, 101u, 0u),
1923 DEF_APUT(4, Instruction::APUT, 2u, 200u, 202u),
1924 DEF_APUT(4, Instruction::APUT, 2u, 200u, 203u),
1925 DEF_APUT(4, Instruction::APUT, 2u, 201u, 202u),
1926 DEF_APUT(4, Instruction::APUT, 2u, 201u, 203u),
1927 DEF_SPUT(4, Instruction::SPUT, 2u, 0u),
1928 DEF_SPUT(4, Instruction::SPUT, 2u, 1u),
1929 DEF_CONST(5, Instruction::CONST, 12u, 2000),
1930 DEF_IPUT(5, Instruction::IPUT, 12u, 100u, 0u),
1931 DEF_IPUT(5, Instruction::IPUT, 12u, 100u, 1u),
1932 DEF_IPUT(5, Instruction::IPUT, 12u, 101u, 0u),
1933 DEF_APUT(5, Instruction::APUT, 12u, 200u, 202u),
1934 DEF_APUT(5, Instruction::APUT, 12u, 200u, 203u),
1935 DEF_APUT(5, Instruction::APUT, 12u, 201u, 202u),
1936 DEF_APUT(5, Instruction::APUT, 12u, 201u, 203u),
1937 DEF_SPUT(5, Instruction::SPUT, 12u, 0u),
1938 DEF_SPUT(5, Instruction::SPUT, 12u, 1u),
1939 DEF_PHI2(6, 22u, 2u, 12u),
1940 DEF_IGET(6, Instruction::IGET, 23u, 100u, 0u),
1941 DEF_IGET(6, Instruction::IGET, 24u, 100u, 1u),
1942 DEF_IGET(6, Instruction::IGET, 25u, 101u, 0u),
1943 DEF_AGET(6, Instruction::AGET, 26u, 200u, 202u),
1944 DEF_AGET(6, Instruction::AGET, 27u, 200u, 203u),
1945 DEF_AGET(6, Instruction::AGET, 28u, 201u, 202u),
1946 DEF_AGET(6, Instruction::AGET, 29u, 201u, 203u),
1947 DEF_SGET(6, Instruction::SGET, 30u, 0u),
1948 DEF_SGET(6, Instruction::SGET, 31u, 1u),
1949 };
1950 PrepareIFields(ifields);
1951 PrepareSFields(sfields);
1952 PrepareMIRs(mirs);
1953 PerformGVN();
1954 ASSERT_EQ(arraysize(mirs), value_names_.size());
1955 EXPECT_NE(value_names_[2], value_names_[12]);
1956 EXPECT_NE(value_names_[2], value_names_[22]);
1957 EXPECT_NE(value_names_[12], value_names_[22]);
1958 for (size_t i = 23; i != arraysize(mirs); ++i) {
1959 EXPECT_EQ(value_names_[22], value_names_[i]) << i;
1960 }
1961}
1962
1963TEST_F(GlobalValueNumberingTest, InfiniteLocationLoop) {
1964 // This is a pattern that lead to an infinite loop during the GVN development. This has been
1965 // fixed by rewriting the merging of AliasingValues to merge only locations read from or
1966 // written to in each incoming LVN rather than merging all locations read from or written to
1967 // in any incoming LVN. It also showed up only when the GVN used the DFS ordering instead of
1968 // the "topological" ordering but, since the "topological" ordering is not really topological
1969 // when there are cycles and an optimizing Java compiler (or a tool like proguard) could
1970 // theoretically create any sort of flow graph, this could have shown up in real code.
1971 //
1972 // While we were merging all the locations:
1973 // The first time the Phi evaluates to the same value name as CONST 0u. After the second
1974 // evaluation, when the BB #9 has been processed, the Phi receives its own value name.
1975 // However, the index from the first evaluation keeps disappearing and reappearing in the
1976 // LVN's aliasing_array_value_map_'s load_value_map for BBs #9, #4, #5, #7 because of the
1977 // DFS ordering of LVN evaluation.
1978 static const IFieldDef ifields[] = {
1979 { 0u, 1u, 0u, false }, // Object.
1980 };
1981 static const BBDef bbs[] = {
1982 DEF_BB(kNullBlock, DEF_SUCC0(), DEF_PRED0()),
1983 DEF_BB(kEntryBlock, DEF_SUCC1(3), DEF_PRED0()),
1984 DEF_BB(kExitBlock, DEF_SUCC0(), DEF_PRED1(4)),
1985 DEF_BB(kDalvikByteCode, DEF_SUCC1(4), DEF_PRED1(1)),
1986 DEF_BB(kDalvikByteCode, DEF_SUCC2(5, 2), DEF_PRED2(3, 9)),
1987 DEF_BB(kDalvikByteCode, DEF_SUCC2(6, 7), DEF_PRED1(4)),
1988 DEF_BB(kDalvikByteCode, DEF_SUCC1(9), DEF_PRED1(5)),
1989 DEF_BB(kDalvikByteCode, DEF_SUCC2(8, 9), DEF_PRED1(5)),
1990 DEF_BB(kDalvikByteCode, DEF_SUCC1(9), DEF_PRED1(7)),
1991 DEF_BB(kDalvikByteCode, DEF_SUCC1(4), DEF_PRED3(6, 7, 8)),
1992 };
1993 static const MIRDef mirs[] = {
1994 DEF_CONST(3, Instruction::CONST, 0u, 0),
1995 DEF_PHI2(4, 1u, 0u, 10u),
1996 DEF_INVOKE1(6, Instruction::INVOKE_STATIC, 100u),
1997 DEF_IGET(6, Instruction::IGET_OBJECT, 3u, 100u, 0u),
1998 DEF_CONST(6, Instruction::CONST, 4u, 1000),
1999 DEF_APUT(6, Instruction::APUT, 4u, 3u, 1u), // Index is Phi 1u.
2000 DEF_INVOKE1(8, Instruction::INVOKE_STATIC, 100u),
2001 DEF_IGET(8, Instruction::IGET_OBJECT, 7u, 100u, 0u),
2002 DEF_CONST(8, Instruction::CONST, 8u, 2000),
2003 DEF_APUT(8, Instruction::APUT, 9u, 7u, 1u), // Index is Phi 1u.
2004 DEF_CONST(9, Instruction::CONST, 10u, 3000),
2005 };
2006 PrepareIFields(ifields);
2007 PrepareBasicBlocks(bbs);
2008 PrepareMIRs(mirs);
2009 // Using DFS order for this test. The GVN result should not depend on the used ordering
2010 // once the GVN actually converges. But creating a test for this convergence issue with
2011 // the topological ordering could be a very challenging task.
2012 PerformPreOrderDfsGVN();
2013}
2014
Vladimir Marko55fff042014-07-10 12:42:52 +01002015TEST_F(GlobalValueNumberingTestTwoConsecutiveLoops, IFieldAndPhi) {
Vladimir Marko95a05972014-05-30 10:01:32 +01002016 static const IFieldDef ifields[] = {
2017 { 0u, 1u, 0u, false }, // Int.
2018 };
2019 static const MIRDef mirs[] = {
2020 DEF_MOVE(3, Instruction::MOVE_OBJECT, 0u, 100u),
2021 DEF_IPUT(3, Instruction::IPUT_OBJECT, 0u, 200u, 0u),
2022 DEF_PHI2(4, 2u, 0u, 3u),
2023 DEF_MOVE(5, Instruction::MOVE_OBJECT, 3u, 300u),
2024 DEF_IPUT(5, Instruction::IPUT_OBJECT, 3u, 200u, 0u),
2025 DEF_MOVE(6, Instruction::MOVE_OBJECT, 5u, 2u),
2026 DEF_IGET(6, Instruction::IGET_OBJECT, 6u, 200u, 0u),
2027 DEF_MOVE(7, Instruction::MOVE_OBJECT, 7u, 5u),
2028 DEF_IGET(7, Instruction::IGET_OBJECT, 8u, 200u, 0u),
2029 DEF_MOVE(8, Instruction::MOVE_OBJECT, 9u, 5u),
2030 DEF_IGET(8, Instruction::IGET_OBJECT, 10u, 200u, 0u),
2031 DEF_MOVE(9, Instruction::MOVE_OBJECT, 11u, 5u),
2032 DEF_IGET(9, Instruction::IGET_OBJECT, 12u, 200u, 0u),
2033 };
2034
2035 PrepareIFields(ifields);
2036 PrepareMIRs(mirs);
2037 PerformGVN();
2038 ASSERT_EQ(arraysize(mirs), value_names_.size());
2039 EXPECT_NE(value_names_[0], value_names_[3]);
2040 EXPECT_NE(value_names_[0], value_names_[2]);
2041 EXPECT_NE(value_names_[3], value_names_[2]);
2042 EXPECT_EQ(value_names_[2], value_names_[5]);
2043 EXPECT_EQ(value_names_[5], value_names_[6]);
2044 EXPECT_EQ(value_names_[5], value_names_[7]);
2045 EXPECT_EQ(value_names_[5], value_names_[8]);
2046 EXPECT_EQ(value_names_[5], value_names_[9]);
2047 EXPECT_EQ(value_names_[5], value_names_[10]);
2048 EXPECT_EQ(value_names_[5], value_names_[11]);
2049 EXPECT_EQ(value_names_[5], value_names_[12]);
2050}
2051
Vladimir Marko55fff042014-07-10 12:42:52 +01002052TEST_F(GlobalValueNumberingTestTwoConsecutiveLoops, NullCheck) {
Vladimir Marko95a05972014-05-30 10:01:32 +01002053 static const IFieldDef ifields[] = {
2054 { 0u, 1u, 0u, false }, // Int.
2055 };
2056 static const SFieldDef sfields[] = {
2057 { 0u, 1u, 0u, false }, // Int.
2058 };
2059 static const MIRDef mirs[] = {
2060 DEF_MOVE(3, Instruction::MOVE_OBJECT, 0u, 100u),
2061 DEF_IGET(3, Instruction::IGET_OBJECT, 1u, 200u, 0u),
2062 DEF_SGET(3, Instruction::SGET_OBJECT, 2u, 0u),
2063 DEF_AGET(3, Instruction::AGET_OBJECT, 3u, 300u, 201u),
2064 DEF_PHI2(4, 4u, 0u, 8u),
2065 DEF_IGET(5, Instruction::IGET_OBJECT, 5u, 200u, 0u),
2066 DEF_SGET(5, Instruction::SGET_OBJECT, 6u, 0u),
2067 DEF_AGET(5, Instruction::AGET_OBJECT, 7u, 300u, 201u),
2068 DEF_MOVE(5, Instruction::MOVE_OBJECT, 8u, 400u),
2069 DEF_IPUT(5, Instruction::IPUT_OBJECT, 4u, 200u, 0u), // PUT the Phi 4u.
2070 DEF_SPUT(5, Instruction::SPUT_OBJECT, 4u, 0u), // PUT the Phi 4u.
2071 DEF_APUT(5, Instruction::APUT_OBJECT, 4u, 300u, 201u), // PUT the Phi 4u.
2072 DEF_MOVE(6, Instruction::MOVE_OBJECT, 12u, 4u),
2073 DEF_IGET(6, Instruction::IGET_OBJECT, 13u, 200u, 0u),
2074 DEF_SGET(6, Instruction::SGET_OBJECT, 14u, 0u),
2075 DEF_AGET(6, Instruction::AGET_OBJECT, 15u, 300u, 201u),
2076 DEF_AGET(6, Instruction::AGET_OBJECT, 16u, 12u, 600u),
2077 DEF_AGET(6, Instruction::AGET_OBJECT, 17u, 13u, 600u),
2078 DEF_AGET(6, Instruction::AGET_OBJECT, 18u, 14u, 600u),
2079 DEF_AGET(6, Instruction::AGET_OBJECT, 19u, 15u, 600u),
2080 DEF_MOVE(8, Instruction::MOVE_OBJECT, 20u, 12u),
2081 DEF_IGET(8, Instruction::IGET_OBJECT, 21u, 200u, 0u),
2082 DEF_SGET(8, Instruction::SGET_OBJECT, 22u, 0u),
2083 DEF_AGET(8, Instruction::AGET_OBJECT, 23u, 300u, 201u),
2084 DEF_AGET(8, Instruction::AGET_OBJECT, 24u, 12u, 600u),
2085 DEF_AGET(8, Instruction::AGET_OBJECT, 25u, 13u, 600u),
2086 DEF_AGET(8, Instruction::AGET_OBJECT, 26u, 14u, 600u),
2087 DEF_AGET(8, Instruction::AGET_OBJECT, 27u, 15u, 600u),
2088 DEF_MOVE(9, Instruction::MOVE_OBJECT, 28u, 12u),
2089 DEF_IGET(9, Instruction::IGET_OBJECT, 29u, 200u, 0u),
2090 DEF_SGET(9, Instruction::SGET_OBJECT, 30u, 0u),
2091 DEF_AGET(9, Instruction::AGET_OBJECT, 31u, 300u, 201u),
2092 DEF_AGET(9, Instruction::AGET_OBJECT, 32u, 12u, 600u),
2093 DEF_AGET(9, Instruction::AGET_OBJECT, 33u, 13u, 600u),
2094 DEF_AGET(9, Instruction::AGET_OBJECT, 34u, 14u, 600u),
2095 DEF_AGET(9, Instruction::AGET_OBJECT, 35u, 15u, 600u),
2096 };
2097 static const bool expected_ignore_null_check[] = {
2098 false, false, false, false, // BB #3.
2099 false, true, false, true, false, true, false, true, // BBs #4 and #5.
2100 false, true, false, true, false, false, false, false, // BB #6.
2101 false, true, false, true, true, true, true, true, // BB #7.
2102 false, true, false, true, true, true, true, true, // BB #8.
2103 };
2104 static const bool expected_ignore_range_check[] = {
2105 false, false, false, false, // BB #3.
2106 false, false, false, true, false, false, false, true, // BBs #4 and #5.
2107 false, false, false, true, false, false, false, false, // BB #6.
2108 false, false, false, true, true, true, true, true, // BB #7.
2109 false, false, false, true, true, true, true, true, // BB #8.
2110 };
2111
2112 PrepareIFields(ifields);
2113 PrepareSFields(sfields);
2114 PrepareMIRs(mirs);
2115 PerformGVN();
2116 ASSERT_EQ(arraysize(mirs), value_names_.size());
2117 EXPECT_NE(value_names_[0], value_names_[4]);
2118 EXPECT_NE(value_names_[1], value_names_[5]);
2119 EXPECT_NE(value_names_[2], value_names_[6]);
2120 EXPECT_NE(value_names_[3], value_names_[7]);
2121 EXPECT_NE(value_names_[4], value_names_[8]);
Vladimir Marko95a05972014-05-30 10:01:32 +01002122 EXPECT_EQ(value_names_[4], value_names_[12]);
Vladimir Marko55fff042014-07-10 12:42:52 +01002123 EXPECT_EQ(value_names_[5], value_names_[13]);
2124 EXPECT_EQ(value_names_[6], value_names_[14]);
2125 EXPECT_EQ(value_names_[7], value_names_[15]);
Vladimir Marko95a05972014-05-30 10:01:32 +01002126 EXPECT_EQ(value_names_[12], value_names_[20]);
2127 EXPECT_EQ(value_names_[13], value_names_[21]);
2128 EXPECT_EQ(value_names_[14], value_names_[22]);
2129 EXPECT_EQ(value_names_[15], value_names_[23]);
2130 EXPECT_EQ(value_names_[12], value_names_[28]);
2131 EXPECT_EQ(value_names_[13], value_names_[29]);
2132 EXPECT_EQ(value_names_[14], value_names_[30]);
2133 EXPECT_EQ(value_names_[15], value_names_[31]);
2134 PerformGVNCodeModifications();
2135 for (size_t i = 0u; i != arraysize(mirs); ++i) {
2136 EXPECT_EQ(expected_ignore_null_check[i],
2137 (mirs_[i].optimization_flags & MIR_IGNORE_NULL_CHECK) != 0) << i;
2138 EXPECT_EQ(expected_ignore_range_check[i],
2139 (mirs_[i].optimization_flags & MIR_IGNORE_RANGE_CHECK) != 0) << i;
2140 }
2141}
2142
Vladimir Marko55fff042014-07-10 12:42:52 +01002143TEST_F(GlobalValueNumberingTestTwoNestedLoops, IFieldAndPhi) {
Vladimir Marko95a05972014-05-30 10:01:32 +01002144 static const IFieldDef ifields[] = {
2145 { 0u, 1u, 0u, false }, // Int.
2146 };
2147 static const MIRDef mirs[] = {
2148 DEF_MOVE(3, Instruction::MOVE_OBJECT, 0u, 100u),
2149 DEF_IPUT(3, Instruction::IPUT_OBJECT, 0u, 200u, 0u),
2150 DEF_PHI2(4, 2u, 0u, 11u),
2151 DEF_MOVE(4, Instruction::MOVE_OBJECT, 3u, 2u),
2152 DEF_IGET(4, Instruction::IGET_OBJECT, 4u, 200u, 0u),
2153 DEF_MOVE(5, Instruction::MOVE_OBJECT, 5u, 3u),
2154 DEF_IGET(5, Instruction::IGET_OBJECT, 6u, 200u, 0u),
2155 DEF_MOVE(6, Instruction::MOVE_OBJECT, 7u, 3u),
2156 DEF_IGET(6, Instruction::IGET_OBJECT, 8u, 200u, 0u),
2157 DEF_MOVE(7, Instruction::MOVE_OBJECT, 9u, 3u),
2158 DEF_IGET(7, Instruction::IGET_OBJECT, 10u, 200u, 0u),
2159 DEF_MOVE(7, Instruction::MOVE_OBJECT, 11u, 300u),
2160 DEF_IPUT(7, Instruction::IPUT_OBJECT, 11u, 200u, 0u),
2161 DEF_MOVE(8, Instruction::MOVE_OBJECT, 13u, 3u),
2162 DEF_IGET(8, Instruction::IGET_OBJECT, 14u, 200u, 0u),
2163 };
2164
2165 PrepareIFields(ifields);
2166 PrepareMIRs(mirs);
2167 PerformGVN();
2168 ASSERT_EQ(arraysize(mirs), value_names_.size());
2169 EXPECT_NE(value_names_[0], value_names_[11]);
2170 EXPECT_NE(value_names_[0], value_names_[2]);
2171 EXPECT_NE(value_names_[11], value_names_[2]);
2172 EXPECT_EQ(value_names_[2], value_names_[3]);
2173 EXPECT_EQ(value_names_[3], value_names_[4]);
2174 EXPECT_EQ(value_names_[3], value_names_[5]);
2175 EXPECT_EQ(value_names_[3], value_names_[6]);
2176 EXPECT_EQ(value_names_[3], value_names_[7]);
2177 EXPECT_EQ(value_names_[3], value_names_[8]);
2178 EXPECT_EQ(value_names_[3], value_names_[9]);
2179 EXPECT_EQ(value_names_[3], value_names_[10]);
2180 EXPECT_EQ(value_names_[3], value_names_[13]);
2181 EXPECT_EQ(value_names_[3], value_names_[14]);
2182}
2183
Vladimir Marko11ca6122014-07-17 20:50:07 +01002184TEST_F(GlobalValueNumberingTest, NormalPathToCatchEntry) {
2185 // When there's an empty catch block, all the exception paths lead to the next block in
2186 // the normal path and we can also have normal "taken" or "fall-through" branches to that
2187 // path. Check that LocalValueNumbering::PruneNonAliasingRefsForCatch() can handle it.
2188 static const BBDef bbs[] = {
2189 DEF_BB(kNullBlock, DEF_SUCC0(), DEF_PRED0()),
2190 DEF_BB(kEntryBlock, DEF_SUCC1(3), DEF_PRED0()),
Vladimir Marko55fff042014-07-10 12:42:52 +01002191 DEF_BB(kExitBlock, DEF_SUCC0(), DEF_PRED1(5)),
Vladimir Marko11ca6122014-07-17 20:50:07 +01002192 DEF_BB(kDalvikByteCode, DEF_SUCC1(4), DEF_PRED1(1)),
2193 DEF_BB(kDalvikByteCode, DEF_SUCC1(5), DEF_PRED1(3)),
2194 DEF_BB(kDalvikByteCode, DEF_SUCC1(2), DEF_PRED2(3, 4)),
2195 };
2196 static const MIRDef mirs[] = {
2197 DEF_INVOKE1(4, Instruction::INVOKE_STATIC, 100u),
2198 };
2199 PrepareBasicBlocks(bbs);
2200 BasicBlock* catch_handler = cu_.mir_graph->GetBasicBlock(5u);
2201 catch_handler->catch_entry = true;
Vladimir Marko55fff042014-07-10 12:42:52 +01002202 // Add successor block info to the check block.
2203 BasicBlock* check_bb = cu_.mir_graph->GetBasicBlock(3u);
2204 check_bb->successor_block_list_type = kCatch;
Vladimir Marko55fff042014-07-10 12:42:52 +01002205 SuccessorBlockInfo* successor_block_info = reinterpret_cast<SuccessorBlockInfo*>
2206 (cu_.arena.Alloc(sizeof(SuccessorBlockInfo), kArenaAllocSuccessor));
2207 successor_block_info->block = catch_handler->id;
Vladimir Markoe39c54e2014-09-22 14:50:02 +01002208 check_bb->successor_blocks.push_back(successor_block_info);
Vladimir Marko11ca6122014-07-17 20:50:07 +01002209 BasicBlock* merge_block = cu_.mir_graph->GetBasicBlock(4u);
2210 std::swap(merge_block->taken, merge_block->fall_through);
2211 PrepareMIRs(mirs);
2212 PerformGVN();
2213}
2214
Vladimir Marko95a05972014-05-30 10:01:32 +01002215} // namespace art