198 lines
5.7 KiB
C++
198 lines
5.7 KiB
C++
/*
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* Copyright (C) 2016 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include "loop_optimization.h"
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#include "optimizing_unit_test.h"
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namespace art {
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/**
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* Fixture class for the loop optimization tests. These unit tests focus
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* constructing the loop hierarchy. Actual optimizations are tested
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* through the checker tests.
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*/
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class LoopOptimizationTest : public CommonCompilerTest {
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public:
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LoopOptimizationTest()
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: pool_(),
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allocator_(&pool_),
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graph_(CreateGraph(&allocator_)),
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iva_(new (&allocator_) HInductionVarAnalysis(graph_)),
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loop_opt_(new (&allocator_) HLoopOptimization(graph_, nullptr, iva_)) {
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BuildGraph();
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}
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~LoopOptimizationTest() { }
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/** Constructs bare minimum graph. */
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void BuildGraph() {
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graph_->SetNumberOfVRegs(1);
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entry_block_ = new (&allocator_) HBasicBlock(graph_);
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return_block_ = new (&allocator_) HBasicBlock(graph_);
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exit_block_ = new (&allocator_) HBasicBlock(graph_);
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graph_->AddBlock(entry_block_);
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graph_->AddBlock(return_block_);
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graph_->AddBlock(exit_block_);
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graph_->SetEntryBlock(entry_block_);
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graph_->SetExitBlock(exit_block_);
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parameter_ = new (&allocator_) HParameterValue(graph_->GetDexFile(),
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dex::TypeIndex(0),
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0,
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Primitive::kPrimInt);
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entry_block_->AddInstruction(parameter_);
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return_block_->AddInstruction(new (&allocator_) HReturnVoid());
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exit_block_->AddInstruction(new (&allocator_) HExit());
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entry_block_->AddSuccessor(return_block_);
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return_block_->AddSuccessor(exit_block_);
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}
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/** Adds a loop nest at given position before successor. */
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HBasicBlock* AddLoop(HBasicBlock* position, HBasicBlock* successor) {
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HBasicBlock* header = new (&allocator_) HBasicBlock(graph_);
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HBasicBlock* body = new (&allocator_) HBasicBlock(graph_);
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graph_->AddBlock(header);
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graph_->AddBlock(body);
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// Control flow.
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position->ReplaceSuccessor(successor, header);
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header->AddSuccessor(body);
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header->AddSuccessor(successor);
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header->AddInstruction(new (&allocator_) HIf(parameter_));
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body->AddSuccessor(header);
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body->AddInstruction(new (&allocator_) HGoto());
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return header;
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}
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/** Performs analysis. */
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void PerformAnalysis() {
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graph_->BuildDominatorTree();
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iva_->Run();
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// Do not release the loop hierarchy.
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loop_opt_->loop_allocator_ = &allocator_;
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loop_opt_->LocalRun();
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}
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/** Constructs string representation of computed loop hierarchy. */
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std::string LoopStructure() {
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return LoopStructureRecurse(loop_opt_->top_loop_);
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}
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// Helper method
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std::string LoopStructureRecurse(HLoopOptimization::LoopNode* node) {
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std::string s;
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for ( ; node != nullptr; node = node->next) {
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s.append("[");
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s.append(LoopStructureRecurse(node->inner));
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s.append("]");
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}
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return s;
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}
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// General building fields.
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ArenaPool pool_;
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ArenaAllocator allocator_;
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HGraph* graph_;
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HInductionVarAnalysis* iva_;
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HLoopOptimization* loop_opt_;
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HBasicBlock* entry_block_;
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HBasicBlock* return_block_;
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HBasicBlock* exit_block_;
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HInstruction* parameter_;
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};
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//
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// The actual tests.
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//
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TEST_F(LoopOptimizationTest, NoLoops) {
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PerformAnalysis();
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EXPECT_EQ("", LoopStructure());
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}
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TEST_F(LoopOptimizationTest, SingleLoop) {
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AddLoop(entry_block_, return_block_);
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PerformAnalysis();
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EXPECT_EQ("[]", LoopStructure());
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}
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TEST_F(LoopOptimizationTest, LoopNest10) {
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HBasicBlock* b = entry_block_;
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HBasicBlock* s = return_block_;
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for (int i = 0; i < 10; i++) {
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s = AddLoop(b, s);
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b = s->GetSuccessors()[0];
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}
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PerformAnalysis();
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EXPECT_EQ("[[[[[[[[[[]]]]]]]]]]", LoopStructure());
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}
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TEST_F(LoopOptimizationTest, LoopSequence10) {
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HBasicBlock* b = entry_block_;
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HBasicBlock* s = return_block_;
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for (int i = 0; i < 10; i++) {
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b = AddLoop(b, s);
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s = b->GetSuccessors()[1];
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}
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PerformAnalysis();
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EXPECT_EQ("[][][][][][][][][][]", LoopStructure());
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}
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TEST_F(LoopOptimizationTest, LoopSequenceOfNests) {
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HBasicBlock* b = entry_block_;
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HBasicBlock* s = return_block_;
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for (int i = 0; i < 10; i++) {
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b = AddLoop(b, s);
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s = b->GetSuccessors()[1];
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HBasicBlock* bi = b->GetSuccessors()[0];
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HBasicBlock* si = b;
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for (int j = 0; j < i; j++) {
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si = AddLoop(bi, si);
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bi = si->GetSuccessors()[0];
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}
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}
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PerformAnalysis();
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EXPECT_EQ("[]"
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"[[]]"
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"[[[]]]"
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"[[[[]]]]"
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"[[[[[]]]]]"
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"[[[[[[]]]]]]"
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"[[[[[[[]]]]]]]"
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"[[[[[[[[]]]]]]]]"
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"[[[[[[[[[]]]]]]]]]"
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"[[[[[[[[[[]]]]]]]]]]",
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LoopStructure());
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}
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TEST_F(LoopOptimizationTest, LoopNestWithSequence) {
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HBasicBlock* b = entry_block_;
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HBasicBlock* s = return_block_;
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for (int i = 0; i < 10; i++) {
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s = AddLoop(b, s);
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b = s->GetSuccessors()[0];
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}
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b = s;
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s = b->GetSuccessors()[1];
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for (int i = 0; i < 9; i++) {
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b = AddLoop(b, s);
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s = b->GetSuccessors()[1];
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}
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PerformAnalysis();
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EXPECT_EQ("[[[[[[[[[[][][][][][][][][][]]]]]]]]]]", LoopStructure());
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}
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} // namespace art
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