191 lines
5.7 KiB
C++
191 lines
5.7 KiB
C++
/**
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* Copyright (c) 2021 OceanBase
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* OceanBase CE is licensed under Mulan PubL v2.
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* You can use this software according to the terms and conditions of the Mulan PubL v2.
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* You may obtain a copy of Mulan PubL v2 at:
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* http://license.coscl.org.cn/MulanPubL-2.0
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* THIS SOFTWARE IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OF ANY KIND,
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* EITHER EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO NON-INFRINGEMENT,
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* MERCHANTABILITY OR FIT FOR A PARTICULAR PURPOSE.
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* See the Mulan PubL v2 for more details.
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*/
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#include <gtest/gtest.h>
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#define private public
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#define protected public
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#include "lib/resource/achunk_mgr.h"
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#undef protected
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#undef private
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using namespace oceanbase::lib;
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using namespace oceanbase::common;
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int main(int argc, char* argv[])
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{
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::testing::InitGoogleTest(&argc, argv);
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return RUN_ALL_TESTS();
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}
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class TestChunkMgr : public ::testing::Test, public AChunkMgr {
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public:
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virtual void SetUp()
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{}
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virtual void TearDown()
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{}
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};
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TEST_F(TestChunkMgr, FreeListBasic)
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{
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{
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AChunk* chunk = alloc_chunk(0);
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free_chunk(chunk);
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EXPECT_EQ(1, free_list_.get_pushes());
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}
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{
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AChunk* chunk = alloc_chunk(0);
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free_chunk(chunk);
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EXPECT_EQ(2, free_list_.get_pushes());
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EXPECT_EQ(1, free_list_.get_pops());
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}
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{
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AChunk* chunk = alloc_chunk(OB_MALLOC_BIG_BLOCK_SIZE);
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free_chunk(chunk);
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EXPECT_EQ(3, free_list_.get_pushes());
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EXPECT_EQ(2, free_list_.get_pops());
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}
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}
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TEST_F(TestChunkMgr, FreeListManyChunk)
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{
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AChunk* chunks[1024] = {};
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for (int i = 0; i < 1024; i++) {
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chunks[i] = alloc_chunk(OB_MALLOC_BIG_BLOCK_SIZE);
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}
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for (int i = 0; i < 1024; i++) {
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free_chunk(chunks[i]);
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}
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EXPECT_EQ(500, free_list_.get_pushes());
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EXPECT_EQ(0, free_list_.get_pops());
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for (int i = 0; i < 1024; i++) {
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chunks[i] = alloc_chunk(OB_MALLOC_BIG_BLOCK_SIZE);
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}
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for (int i = 0; i < 1024; i++) {
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free_chunk(chunks[i]);
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}
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EXPECT_EQ(500 * 2, free_list_.get_pushes());
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EXPECT_EQ(500, free_list_.get_pops());
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}
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TEST_F(TestChunkMgr, Hybird)
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{
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#define CLEAR_FREE_LIST \
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while (free_list_.count() > 0) { \
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free_list_.pop(); \
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}
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// When large_space <LARGE_CHUNK_FREE_SPACE(2G), the large memory block is directly unmapped
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{
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CLEAR_FREE_LIST;
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limit_ = LARGE_CHUNK_FREE_SPACE;
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auto* chunk = alloc_chunk(OB_MALLOC_BIG_BLOCK_SIZE * 2);
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ASSERT_NE(nullptr, chunk);
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hold_ = limit_ - 1;
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int hold_before = hold_;
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free_chunk(chunk);
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ASSERT_EQ(0, free_list_.count());
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ASSERT_EQ(INTACT_ACHUNK_SIZE * 2, hold_before - hold_);
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}
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// When large_space> LARGE_CHUNK_FREE_SPACE(2G), the large memory block is directly split into multiple 2M and placed
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// in the freelist
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{
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CLEAR_FREE_LIST;
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limit_ = LARGE_CHUNK_FREE_SPACE;
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auto* chunk = alloc_chunk(OB_MALLOC_BIG_BLOCK_SIZE * 2);
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ASSERT_NE(nullptr, chunk);
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hold_ = 0;
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free_chunk(chunk);
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ASSERT_EQ(2, free_list_.count());
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ASSERT_EQ(0, hold_);
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}
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// When large_space> LARGE_CHUNK_FREE_SPACE(2G), the large memory block is directly divided into multiple 2M and
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// placed in the freelist. The unmapped part of the freelist is directly unmapped
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{
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CLEAR_FREE_LIST;
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limit_ = LARGE_CHUNK_FREE_SPACE;
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auto* chunk = alloc_chunk(OB_MALLOC_BIG_BLOCK_SIZE * 3);
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ASSERT_NE(nullptr, chunk);
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hold_ = 0;
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free_list_.set_max_chunk_cache_cnt(1);
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free_chunk(chunk);
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ASSERT_EQ(1, free_list_.count());
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ASSERT_EQ(2 * INTACT_ACHUNK_SIZE, -hold_);
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}
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// When large memory cannot be applied, squeeze out more than 2M from the freelist
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{
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CLEAR_FREE_LIST;
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free_list_.set_max_chunk_cache_cnt(2);
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limit_ = 2 * LARGE_CHUNK_FREE_SPACE;
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hold_ = 0;
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auto* chunk = alloc_chunk(OB_MALLOC_BIG_BLOCK_SIZE);
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ASSERT_NE(nullptr, chunk);
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auto* chunk2 = alloc_chunk(OB_MALLOC_BIG_BLOCK_SIZE);
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ASSERT_NE(nullptr, chunk2);
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ASSERT_EQ(2 * INTACT_ACHUNK_SIZE, hold_);
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ASSERT_EQ(0, free_list_.count());
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free_chunk(chunk);
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ASSERT_EQ(2 * INTACT_ACHUNK_SIZE, hold_);
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ASSERT_EQ(1, free_list_.count());
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// free 2M, put directly into the freelist
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hold_ = LARGE_CHUNK_FREE_SPACE + 1;
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free_chunk(chunk2);
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ASSERT_EQ(LARGE_CHUNK_FREE_SPACE + 1, hold_);
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ASSERT_EQ(2, free_list_.count());
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// free 4M and above, limit-hold <LARGE_CHUNK_FREE_SPACE, unmap directly
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CLEAR_FREE_LIST;
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chunk = alloc_chunk(OB_MALLOC_BIG_BLOCK_SIZE * 2);
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ASSERT_NE(nullptr, chunk);
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hold_ = LARGE_CHUNK_FREE_SPACE + 1;
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free_chunk(chunk);
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ASSERT_EQ(LARGE_CHUNK_FREE_SPACE + 1 - INTACT_ACHUNK_SIZE * 2, hold_);
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ASSERT_EQ(0, free_list_.count());
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// free 4M and above, limit-hold> LARGE_CHUNK_FREE_SPACE, split into freelist
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CLEAR_FREE_LIST;
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chunk = alloc_chunk(OB_MALLOC_BIG_BLOCK_SIZE * 2);
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ASSERT_NE(nullptr, chunk);
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hold_ = 0;
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free_chunk(chunk);
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ASSERT_EQ(0, hold_);
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ASSERT_EQ(2, free_list_.count());
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// free 4M and above, limit-hold> LARGE_CHUNK_FREE_SPACE, split into freelist, unmap the part that cannot be put
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CLEAR_FREE_LIST;
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free_list_.set_max_chunk_cache_cnt(1);
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chunk = alloc_chunk(OB_MALLOC_BIG_BLOCK_SIZE * 3);
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ASSERT_NE(nullptr, chunk);
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hold_ = 0;
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free_chunk(chunk);
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ASSERT_EQ(INTACT_ACHUNK_SIZE * 2, -hold_);
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ASSERT_EQ(1, free_list_.count());
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// freelist 2, alloc 3
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CLEAR_FREE_LIST;
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free_list_.set_max_chunk_cache_cnt(2);
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chunk = alloc_chunk(OB_MALLOC_BIG_BLOCK_SIZE);
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chunk2 = alloc_chunk(OB_MALLOC_BIG_BLOCK_SIZE);
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free_chunk(chunk);
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free_chunk(chunk2);
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hold_ = 2 * LARGE_CHUNK_FREE_SPACE - INTACT_ACHUNK_SIZE;
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auto* big_chunk = alloc_chunk(OB_MALLOC_BIG_BLOCK_SIZE * 3);
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ASSERT_NE(nullptr, big_chunk);
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ASSERT_EQ(2 * LARGE_CHUNK_FREE_SPACE, hold_);
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ASSERT_EQ(0, free_list_.count());
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}
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}
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