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431 lines
11 KiB
431 lines
11 KiB
/* |
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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 "LeakFolding.h" |
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#include "HeapWalker.h" |
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#include <ScopedDisableMalloc.h> |
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#include <gtest/gtest.h> |
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#include "Allocator.h" |
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namespace android { |
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class LeakFoldingTest : public ::testing::Test { |
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public: |
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LeakFoldingTest() : disable_malloc_(), heap_() {} |
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void TearDown() { |
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ASSERT_TRUE(heap_.empty()); |
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if (!HasFailure()) { |
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ASSERT_FALSE(disable_malloc_.timed_out()); |
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} |
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} |
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protected: |
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ScopedDisableMallocTimeout disable_malloc_; |
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Heap heap_; |
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}; |
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#define buffer_begin(buffer) reinterpret_cast<uintptr_t>(&(buffer)[0]) |
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#define buffer_end(buffer) (reinterpret_cast<uintptr_t>(&(buffer)[0]) + sizeof(buffer)) |
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#define ALLOCATION(heap_walker, buffer) \ |
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ASSERT_EQ(true, (heap_walker).Allocation(buffer_begin(buffer), buffer_end(buffer))) |
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TEST_F(LeakFoldingTest, one) { |
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void* buffer1[1] = {nullptr}; |
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HeapWalker heap_walker(heap_); |
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ALLOCATION(heap_walker, buffer1); |
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LeakFolding folding(heap_, heap_walker); |
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ASSERT_TRUE(folding.FoldLeaks()); |
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allocator::vector<LeakFolding::Leak> leaked(heap_); |
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size_t num_leaks = 0; |
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size_t leaked_bytes = 0; |
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ASSERT_EQ(true, folding.Leaked(leaked, &num_leaks, &leaked_bytes)); |
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EXPECT_EQ(1U, num_leaks); |
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EXPECT_EQ(sizeof(uintptr_t), leaked_bytes); |
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ASSERT_EQ(1U, leaked.size()); |
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EXPECT_EQ(0U, leaked[0].referenced_count); |
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EXPECT_EQ(0U, leaked[0].referenced_size); |
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} |
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TEST_F(LeakFoldingTest, two) { |
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void* buffer1[1] = {nullptr}; |
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void* buffer2[1] = {nullptr}; |
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HeapWalker heap_walker(heap_); |
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ALLOCATION(heap_walker, buffer1); |
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ALLOCATION(heap_walker, buffer2); |
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LeakFolding folding(heap_, heap_walker); |
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ASSERT_TRUE(folding.FoldLeaks()); |
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allocator::vector<LeakFolding::Leak> leaked(heap_); |
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size_t num_leaks = 0; |
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size_t leaked_bytes = 0; |
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ASSERT_EQ(true, folding.Leaked(leaked, &num_leaks, &leaked_bytes)); |
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EXPECT_EQ(2U, num_leaks); |
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EXPECT_EQ(2 * sizeof(uintptr_t), leaked_bytes); |
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ASSERT_EQ(2U, leaked.size()); |
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EXPECT_EQ(0U, leaked[0].referenced_count); |
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EXPECT_EQ(0U, leaked[0].referenced_size); |
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EXPECT_EQ(0U, leaked[1].referenced_count); |
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EXPECT_EQ(0U, leaked[1].referenced_size); |
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} |
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TEST_F(LeakFoldingTest, dominator) { |
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void* buffer1[1]; |
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void* buffer2[1] = {nullptr}; |
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buffer1[0] = buffer2; |
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HeapWalker heap_walker(heap_); |
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ALLOCATION(heap_walker, buffer1); |
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ALLOCATION(heap_walker, buffer2); |
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LeakFolding folding(heap_, heap_walker); |
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ASSERT_TRUE(folding.FoldLeaks()); |
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allocator::vector<LeakFolding::Leak> leaked(heap_); |
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size_t num_leaks = 0; |
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size_t leaked_bytes = 0; |
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ASSERT_EQ(true, folding.Leaked(leaked, &num_leaks, &leaked_bytes)); |
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EXPECT_EQ(2U, num_leaks); |
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EXPECT_EQ(2 * sizeof(uintptr_t), leaked_bytes); |
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ASSERT_EQ(1U, leaked.size()); |
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EXPECT_EQ(1U, leaked[0].referenced_count); |
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EXPECT_EQ(sizeof(uintptr_t), leaked[0].referenced_size); |
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} |
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TEST_F(LeakFoldingTest, cycle) { |
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void* buffer1[1]; |
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void* buffer2[1]; |
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void* buffer3[1]; |
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buffer1[0] = buffer2; |
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buffer2[0] = buffer3; |
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buffer3[0] = buffer2; |
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HeapWalker heap_walker(heap_); |
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ALLOCATION(heap_walker, buffer1); |
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ALLOCATION(heap_walker, buffer2); |
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ALLOCATION(heap_walker, buffer3); |
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LeakFolding folding(heap_, heap_walker); |
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ASSERT_TRUE(folding.FoldLeaks()); |
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allocator::vector<LeakFolding::Leak> leaked(heap_); |
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size_t num_leaks = 0; |
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size_t leaked_bytes = 0; |
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ASSERT_EQ(true, folding.Leaked(leaked, &num_leaks, &leaked_bytes)); |
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EXPECT_EQ(3U, num_leaks); |
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EXPECT_EQ(3 * sizeof(uintptr_t), leaked_bytes); |
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ASSERT_EQ(1U, leaked.size()); |
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EXPECT_EQ(2U, leaked[0].referenced_count); |
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EXPECT_EQ(2 * sizeof(uintptr_t), leaked[0].referenced_size); |
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} |
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TEST_F(LeakFoldingTest, dominator_cycle) { |
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void* buffer1[2] = {nullptr, nullptr}; |
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void* buffer2[2]; |
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void* buffer3[1] = {nullptr}; |
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buffer1[0] = &buffer2; |
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buffer2[0] = &buffer1; |
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buffer2[1] = &buffer3; |
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HeapWalker heap_walker(heap_); |
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ALLOCATION(heap_walker, buffer1); |
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ALLOCATION(heap_walker, buffer2); |
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ALLOCATION(heap_walker, buffer3); |
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LeakFolding folding(heap_, heap_walker); |
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ASSERT_TRUE(folding.FoldLeaks()); |
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allocator::vector<LeakFolding::Leak> leaked(heap_); |
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size_t num_leaks = 0; |
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size_t leaked_bytes = 0; |
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ASSERT_EQ(true, folding.Leaked(leaked, &num_leaks, &leaked_bytes)); |
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EXPECT_EQ(3U, num_leaks); |
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EXPECT_EQ(5 * sizeof(uintptr_t), leaked_bytes); |
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ASSERT_EQ(2U, leaked.size()); |
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EXPECT_EQ(2U, leaked[0].referenced_count); |
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EXPECT_EQ(3 * sizeof(uintptr_t), leaked[0].referenced_size); |
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EXPECT_EQ(2U, leaked[1].referenced_count); |
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EXPECT_EQ(3 * sizeof(uintptr_t), leaked[1].referenced_size); |
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} |
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TEST_F(LeakFoldingTest, two_cycles) { |
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void* buffer1[1]; |
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void* buffer2[1]; |
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void* buffer3[1]; |
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void* buffer4[1]; |
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void* buffer5[1]; |
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void* buffer6[1]; |
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buffer1[0] = buffer3; |
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buffer2[0] = buffer5; |
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buffer3[0] = buffer4; |
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buffer4[0] = buffer3; |
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buffer5[0] = buffer6; |
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buffer6[0] = buffer5; |
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HeapWalker heap_walker(heap_); |
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ALLOCATION(heap_walker, buffer1); |
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ALLOCATION(heap_walker, buffer2); |
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ALLOCATION(heap_walker, buffer3); |
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ALLOCATION(heap_walker, buffer4); |
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ALLOCATION(heap_walker, buffer5); |
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ALLOCATION(heap_walker, buffer6); |
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LeakFolding folding(heap_, heap_walker); |
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ASSERT_TRUE(folding.FoldLeaks()); |
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allocator::vector<LeakFolding::Leak> leaked(heap_); |
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size_t num_leaks = 0; |
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size_t leaked_bytes = 0; |
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ASSERT_EQ(true, folding.Leaked(leaked, &num_leaks, &leaked_bytes)); |
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EXPECT_EQ(6U, num_leaks); |
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EXPECT_EQ(6 * sizeof(uintptr_t), leaked_bytes); |
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ASSERT_EQ(2U, leaked.size()); |
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EXPECT_EQ(2U, leaked[0].referenced_count); |
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EXPECT_EQ(2 * sizeof(uintptr_t), leaked[0].referenced_size); |
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EXPECT_EQ(2U, leaked[1].referenced_count); |
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EXPECT_EQ(2 * sizeof(uintptr_t), leaked[1].referenced_size); |
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} |
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TEST_F(LeakFoldingTest, two_dominator_cycles) { |
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void* buffer1[1]; |
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void* buffer2[1]; |
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void* buffer3[1]; |
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void* buffer4[1]; |
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buffer1[0] = buffer2; |
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buffer2[0] = buffer1; |
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buffer3[0] = buffer4; |
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buffer4[0] = buffer3; |
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HeapWalker heap_walker(heap_); |
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ALLOCATION(heap_walker, buffer1); |
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ALLOCATION(heap_walker, buffer2); |
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ALLOCATION(heap_walker, buffer3); |
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ALLOCATION(heap_walker, buffer4); |
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LeakFolding folding(heap_, heap_walker); |
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ASSERT_TRUE(folding.FoldLeaks()); |
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allocator::vector<LeakFolding::Leak> leaked(heap_); |
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size_t num_leaks = 0; |
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size_t leaked_bytes = 0; |
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ASSERT_EQ(true, folding.Leaked(leaked, &num_leaks, &leaked_bytes)); |
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EXPECT_EQ(4U, num_leaks); |
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EXPECT_EQ(4 * sizeof(uintptr_t), leaked_bytes); |
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ASSERT_EQ(4U, leaked.size()); |
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EXPECT_EQ(1U, leaked[0].referenced_count); |
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EXPECT_EQ(sizeof(uintptr_t), leaked[0].referenced_size); |
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EXPECT_EQ(1U, leaked[1].referenced_count); |
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EXPECT_EQ(sizeof(uintptr_t), leaked[1].referenced_size); |
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EXPECT_EQ(1U, leaked[2].referenced_count); |
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EXPECT_EQ(sizeof(uintptr_t), leaked[2].referenced_size); |
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EXPECT_EQ(1U, leaked[3].referenced_count); |
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EXPECT_EQ(sizeof(uintptr_t), leaked[3].referenced_size); |
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} |
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TEST_F(LeakFoldingTest, giant_dominator_cycle) { |
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const size_t n = 1000; |
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void* buffer[n]; |
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HeapWalker heap_walker(heap_); |
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for (size_t i = 0; i < n; i++) { |
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ASSERT_TRUE(heap_walker.Allocation(reinterpret_cast<uintptr_t>(&buffer[i]), |
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reinterpret_cast<uintptr_t>(&buffer[i + 1]))); |
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} |
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for (size_t i = 0; i < n - 1; i++) { |
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buffer[i] = &buffer[i + 1]; |
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} |
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buffer[n - 1] = &buffer[0]; |
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LeakFolding folding(heap_, heap_walker); |
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ASSERT_TRUE(folding.FoldLeaks()); |
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allocator::vector<LeakFolding::Leak> leaked(heap_); |
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size_t num_leaks = 0; |
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size_t leaked_bytes = 0; |
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ASSERT_EQ(true, folding.Leaked(leaked, &num_leaks, &leaked_bytes)); |
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EXPECT_EQ(n, num_leaks); |
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EXPECT_EQ(n * sizeof(uintptr_t), leaked_bytes); |
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ASSERT_EQ(1000U, leaked.size()); |
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EXPECT_EQ(n - 1, leaked[0].referenced_count); |
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EXPECT_EQ((n - 1) * sizeof(uintptr_t), leaked[0].referenced_size); |
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} |
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TEST_F(LeakFoldingTest, giant_cycle) { |
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const size_t n = 1000; |
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void* buffer[n]; |
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void* buffer1[1]; |
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HeapWalker heap_walker(heap_); |
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for (size_t i = 0; i < n - 1; i++) { |
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buffer[i] = &buffer[i + 1]; |
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} |
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buffer[n - 1] = &buffer[0]; |
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buffer1[0] = &buffer[0]; |
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for (size_t i = 0; i < n; i++) { |
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ASSERT_TRUE(heap_walker.Allocation(reinterpret_cast<uintptr_t>(&buffer[i]), |
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reinterpret_cast<uintptr_t>(&buffer[i + 1]))); |
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} |
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ALLOCATION(heap_walker, buffer1); |
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LeakFolding folding(heap_, heap_walker); |
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ASSERT_TRUE(folding.FoldLeaks()); |
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allocator::vector<LeakFolding::Leak> leaked(heap_); |
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size_t num_leaks = 0; |
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size_t leaked_bytes = 0; |
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ASSERT_EQ(true, folding.Leaked(leaked, &num_leaks, &leaked_bytes)); |
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EXPECT_EQ(n + 1, num_leaks); |
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EXPECT_EQ((n + 1) * sizeof(uintptr_t), leaked_bytes); |
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ASSERT_EQ(1U, leaked.size()); |
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EXPECT_EQ(n, leaked[0].referenced_count); |
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EXPECT_EQ(n * sizeof(uintptr_t), leaked[0].referenced_size); |
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} |
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TEST_F(LeakFoldingTest, multipath) { |
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void* buffer1[2]; |
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void* buffer2[1]; |
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void* buffer3[1]; |
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void* buffer4[1] = {nullptr}; |
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// 1 |
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// / \ |
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// v v |
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// 2 3 |
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// \ / |
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// v |
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// 4 |
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buffer1[0] = &buffer2; |
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buffer1[1] = &buffer3; |
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buffer2[0] = &buffer4; |
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buffer3[0] = &buffer4; |
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HeapWalker heap_walker(heap_); |
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ALLOCATION(heap_walker, buffer1); |
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ALLOCATION(heap_walker, buffer2); |
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ALLOCATION(heap_walker, buffer3); |
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ALLOCATION(heap_walker, buffer4); |
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LeakFolding folding(heap_, heap_walker); |
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ASSERT_TRUE(folding.FoldLeaks()); |
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allocator::vector<LeakFolding::Leak> leaked(heap_); |
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size_t num_leaks = 0; |
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size_t leaked_bytes = 0; |
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ASSERT_EQ(true, folding.Leaked(leaked, &num_leaks, &leaked_bytes)); |
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EXPECT_EQ(4U, num_leaks); |
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EXPECT_EQ(5 * sizeof(uintptr_t), leaked_bytes); |
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ASSERT_EQ(1U, leaked.size()); |
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EXPECT_EQ(3U, leaked[0].referenced_count); |
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EXPECT_EQ(3 * sizeof(uintptr_t), leaked[0].referenced_size); |
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} |
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TEST_F(LeakFoldingTest, multicycle) { |
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void* buffer1[2]{}; |
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void* buffer2[2]{}; |
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void* buffer3[2]{}; |
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void* buffer4[2]{}; |
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// 1 |
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// / ^ |
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// v \ |
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// 2 -> 3 |
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// \ ^ |
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// v / |
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// 4 |
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buffer1[0] = &buffer2; |
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buffer2[0] = &buffer3; |
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buffer2[1] = &buffer4; |
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buffer3[0] = &buffer1; |
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buffer4[0] = &buffer3; |
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HeapWalker heap_walker(heap_); |
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ALLOCATION(heap_walker, buffer1); |
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ALLOCATION(heap_walker, buffer2); |
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ALLOCATION(heap_walker, buffer3); |
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ALLOCATION(heap_walker, buffer4); |
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LeakFolding folding(heap_, heap_walker); |
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ASSERT_TRUE(folding.FoldLeaks()); |
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allocator::vector<LeakFolding::Leak> leaked(heap_); |
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size_t num_leaks = 0; |
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size_t leaked_bytes = 0; |
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ASSERT_EQ(true, folding.Leaked(leaked, &num_leaks, &leaked_bytes)); |
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EXPECT_EQ(4U, num_leaks); |
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EXPECT_EQ(8 * sizeof(uintptr_t), leaked_bytes); |
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ASSERT_EQ(4U, leaked.size()); |
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EXPECT_EQ(3U, leaked[0].referenced_count); |
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EXPECT_EQ(6 * sizeof(uintptr_t), leaked[0].referenced_size); |
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EXPECT_EQ(3U, leaked[1].referenced_count); |
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EXPECT_EQ(6 * sizeof(uintptr_t), leaked[1].referenced_size); |
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EXPECT_EQ(3U, leaked[2].referenced_count); |
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EXPECT_EQ(6 * sizeof(uintptr_t), leaked[2].referenced_size); |
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EXPECT_EQ(3U, leaked[3].referenced_count); |
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EXPECT_EQ(6 * sizeof(uintptr_t), leaked[3].referenced_size); |
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} |
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} // namespace android
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