409 lines
12 KiB
C++
409 lines
12 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 <sys/vfs.h>
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#include <sys/statvfs.h>
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#include <gtest/gtest.h>
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#include <algorithm>
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#define USING_LOG_PREFIX STORAGE
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#define protected public
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#define private public
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#include "storage/blocksstable/ob_data_file_prepare.h"
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#include "storage/blocksstable/ob_tmp_file.h"
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#include "share/ob_simple_mem_limit_getter.h"
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#include "observer/omt/ob_worker_processor.h"
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#include "observer/ob_srv_network_frame.h"
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namespace oceanbase
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{
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using namespace common;
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using namespace share;
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using namespace storage;
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using namespace blocksstable;
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static ObSimpleMemLimitGetter getter;
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namespace unittest
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{
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class TestBlockManager : public blocksstable::TestDataFilePrepare
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{
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public:
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TestBlockManager();
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virtual ~TestBlockManager() = default;
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virtual void SetUp() override;
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virtual void TearDown() override;
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private:
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int init_multi_tenant();
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private:
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common::ObAddr addr_;
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omt::ObMultiTenant multi_tenant_;
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};
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TestBlockManager::TestBlockManager()
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: TestDataFilePrepare(&getter, "TestBlockManager", OB_DEFAULT_MACRO_BLOCK_SIZE, 200),
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addr_(ObAddr::IPV4, "127.0.0.1", 2222),
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multi_tenant_()
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{
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}
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int TestBlockManager::init_multi_tenant()
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{
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int ret = OB_SUCCESS;
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GCONF.cpu_count = 6;
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if (OB_SUCCESS != (ret = multi_tenant_.init(addr_))) {
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STORAGE_LOG(WARN, "init multi_tenant failed", K(ret));
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} else {
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multi_tenant_.start();
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GCTX.omt_ = &multi_tenant_;
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}
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return ret;
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}
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void TestBlockManager::SetUp()
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{
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TestDataFilePrepare::SetUp();
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ASSERT_EQ(OB_SUCCESS, init_multi_tenant());
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OB_SERVER_BLOCK_MGR.block_map_.reset();
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}
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void TestBlockManager::TearDown()
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{
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multi_tenant_.destroy();
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TestDataFilePrepare::TearDown();
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}
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TEST_F(TestBlockManager, test_inc_and_dec_ref_cnt)
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{
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int ret = OB_SUCCESS;
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ObBlockManager::BlockInfo block_info;
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ObMacroBlockHandle macro_handle;
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ret = OB_SERVER_BLOCK_MGR.alloc_block(macro_handle);
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ASSERT_EQ(OB_SUCCESS, ret);
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const MacroBlockId macro_id = macro_handle.get_macro_id();
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ASSERT_TRUE(macro_id.is_valid());
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ret = OB_SERVER_BLOCK_MGR.block_map_.get(macro_id, block_info);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(1, block_info.mem_ref_cnt_);
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ASSERT_TRUE(block_info.access_time_ > 0);
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ret = OB_SERVER_BLOCK_MGR.inc_ref(macro_id);
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ASSERT_EQ(OB_SUCCESS, ret);
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ret = OB_SERVER_BLOCK_MGR.block_map_.get(macro_id, block_info);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(2, block_info.mem_ref_cnt_);
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ASSERT_TRUE(block_info.access_time_ > 0);
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ret = OB_SERVER_BLOCK_MGR.dec_ref(macro_id);
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ASSERT_EQ(OB_SUCCESS, ret);
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ret = OB_SERVER_BLOCK_MGR.block_map_.get(macro_id, block_info);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(1, block_info.mem_ref_cnt_);
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ASSERT_TRUE(block_info.access_time_ > 0);
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macro_handle.reset();
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ret = OB_SERVER_BLOCK_MGR.block_map_.get(macro_id, block_info);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(0, block_info.mem_ref_cnt_);
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ASSERT_TRUE(block_info.access_time_ > 0);
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}
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TEST_F(TestBlockManager, test_mark_and_sweep)
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{
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int ret = OB_SUCCESS;
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ObBlockManager::BlockInfo block_info;
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ObMacroBlockHandle macro_handle;
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ASSERT_EQ(0, OB_SERVER_BLOCK_MGR.block_map_.count());
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const int64_t bucket_num = 1024;
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const int64_t max_cache_size = 1024 * 1024 * 1024;
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const int64_t block_size = common::OB_MALLOC_BIG_BLOCK_SIZE;
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ret = ObKVGlobalCache::get_instance().init(&getter, bucket_num, max_cache_size, block_size);
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if (OB_INIT_TWICE == ret) {
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ret = common::OB_SUCCESS;
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} else {
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ASSERT_EQ(common::OB_SUCCESS, ret);
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}
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ret = FILE_MANAGER_INSTANCE_V2.init();
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ASSERT_EQ(common::OB_SUCCESS, ret);
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ASSERT_EQ(common::OB_SUCCESS, ret);
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ASSERT_EQ(0, OB_SERVER_BLOCK_MGR.block_map_.count());
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const int blk_cnt = 100;
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int count = blk_cnt;
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while (count--) {
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macro_handle.reset();
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ret = OB_SERVER_BLOCK_MGR.alloc_block(macro_handle);
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ASSERT_EQ(OB_SUCCESS, ret);
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const MacroBlockId ¯o_id = macro_handle.get_macro_id();
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ASSERT_TRUE(macro_id.is_valid());
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ret = OB_SERVER_BLOCK_MGR.block_map_.get(macro_id, block_info);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(1, block_info.mem_ref_cnt_);
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ASSERT_TRUE(block_info.access_time_ > 0);
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}
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ASSERT_EQ(blk_cnt, OB_SERVER_BLOCK_MGR.block_map_.count());
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ObBlockManager::MacroBlkIdMap mark_info;
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ret = mark_info.init(ObModIds::OB_STORAGE_FILE_BLOCK_REF, OB_SERVER_TENANT_ID);
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ASSERT_EQ(OB_SUCCESS, ret);
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common::hash::ObHashSet<MacroBlockId> macro_id_set;
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ret = macro_id_set.create(MAX(2, OB_SERVER_BLOCK_MGR.block_map_.count()));
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ASSERT_EQ(OB_SUCCESS, ret);
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int64_t safe_ts = ObTimeUtility::current_time();
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int64_t disk_blk_cnt = 0;
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int64_t hold_cnt = 0;
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ObBlockManager::GetPendingFreeBlockFunctor functor(mark_info, disk_blk_cnt, hold_cnt);
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ret = OB_SERVER_BLOCK_MGR.block_map_.for_each(functor);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(blk_cnt - 1, mark_info.count());
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ret = OB_SERVER_BLOCK_MGR.mark_server_meta_blocks(mark_info, macro_id_set);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(blk_cnt - 1, mark_info.count());
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ret = OB_SERVER_BLOCK_MGR.mark_tmp_file_blocks(mark_info, macro_id_set);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(blk_cnt - 1, mark_info.count());
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OB_SERVER_BLOCK_MGR.mark_and_sweep();
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macro_handle.reset();
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FILE_MANAGER_INSTANCE_V2.destroy();
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ObKVGlobalCache::get_instance().destroy();
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}
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TEST_F(TestBlockManager, test_ref_cnt_wash_and_load)
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{
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int ret = OB_SUCCESS;
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ObBlockManager::BlockInfo block_info;
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ObMacroBlockHandle macro_handle;
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ret = OB_SERVER_BLOCK_MGR.alloc_block(macro_handle);
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ASSERT_EQ(OB_SUCCESS, ret);
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MacroBlockId macro_id = macro_handle.get_macro_id();
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macro_id.set_write_seq(100);
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ASSERT_TRUE(macro_id.is_valid());
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ret = OB_SERVER_BLOCK_MGR.block_map_.get(macro_id, block_info);
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ASSERT_EQ(OB_ENTRY_NOT_EXIST, ret);
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macro_id = macro_handle.get_macro_id();
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ret = OB_SERVER_BLOCK_MGR.inc_ref(macro_id);
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ASSERT_EQ(OB_SUCCESS, ret);
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ret = OB_SERVER_BLOCK_MGR.block_map_.get(macro_id, block_info);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(2, block_info.mem_ref_cnt_);
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ASSERT_EQ(0, block_info.disk_ref_cnt_);
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ASSERT_TRUE(block_info.access_time_ > 0);
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// test wash block
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ret = OB_SERVER_BLOCK_MGR.inc_disk_ref(macro_id);
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ASSERT_EQ(OB_SUCCESS, ret);
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ret = OB_SERVER_BLOCK_MGR.dec_ref(macro_id);
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ASSERT_EQ(OB_SUCCESS, ret);
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ret = OB_SERVER_BLOCK_MGR.block_map_.get(macro_id, block_info);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(1, block_info.mem_ref_cnt_);
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ASSERT_EQ(1, block_info.disk_ref_cnt_);
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ASSERT_TRUE(block_info.access_time_ > 0);
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// test load block
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ret = OB_SERVER_BLOCK_MGR.inc_ref(macro_id);
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ASSERT_EQ(OB_SUCCESS, ret);
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ret = OB_SERVER_BLOCK_MGR.dec_disk_ref(macro_id);
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ASSERT_EQ(OB_SUCCESS, ret);
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ret = OB_SERVER_BLOCK_MGR.block_map_.get(macro_id, block_info);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(2, block_info.mem_ref_cnt_);
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ASSERT_EQ(0, block_info.disk_ref_cnt_);
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ASSERT_TRUE(block_info.access_time_ > 0);
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ret = OB_SERVER_BLOCK_MGR.dec_ref(macro_id);
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ASSERT_EQ(OB_SUCCESS, ret);
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ret = OB_SERVER_BLOCK_MGR.block_map_.get(macro_id, block_info);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(1, block_info.mem_ref_cnt_);
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ASSERT_EQ(0, block_info.disk_ref_cnt_);
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ASSERT_TRUE(block_info.access_time_ > 0);
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macro_handle.reset();
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ret = OB_SERVER_BLOCK_MGR.block_map_.get(macro_id, block_info);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(0, block_info.mem_ref_cnt_);
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ASSERT_TRUE(block_info.access_time_ > 0);
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}
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TEST_F(TestBlockManager, test_resize_file_1)
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{
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struct statvfs svfs;
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statvfs(util_.storage_env_.sstable_dir_, &svfs);
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int64_t free_space = svfs.f_bavail * svfs.f_bsize;
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int used_space = OB_SERVER_BLOCK_MGR.get_total_macro_block_count() * OB_SERVER_BLOCK_MGR.get_macro_block_size();
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double percentage = used_space * 1.0 / (used_space + free_space) + 1;
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int ret = OB_SERVER_BLOCK_MGR.resize_file(0, percentage, 0);
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ASSERT_EQ(common::OB_SUCCESS, ret);
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int64_t free_blk_cnt_1 = OB_SERVER_BLOCK_MGR.io_device_->get_free_block_count();
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ret = OB_SERVER_BLOCK_MGR.resize_file(used_space + free_space / 2, 99, 0);
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ASSERT_EQ(common::OB_SUCCESS, ret);
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int64_t free_blk_cnt_2 = OB_SERVER_BLOCK_MGR.io_device_->get_free_block_count();
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ASSERT_TRUE(free_space > 0 ? free_blk_cnt_1 < free_blk_cnt_2 : free_blk_cnt_1 == free_blk_cnt_2);
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ret = OB_SERVER_BLOCK_MGR.resize_file(used_space, 99, 0);
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ASSERT_EQ(common::OB_NOT_SUPPORTED, ret);
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int64_t free_blk_cnt_3 = OB_SERVER_BLOCK_MGR.io_device_->get_free_block_count();
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ASSERT_TRUE(free_blk_cnt_2 == free_blk_cnt_3);
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}
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TEST_F(TestBlockManager, test_resize_file_2)
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{
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struct statvfs svfs;
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statvfs(util_.storage_env_.sstable_dir_, &svfs);
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int64_t free_space = svfs.f_bavail * svfs.f_bsize;
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int used_space = OB_SERVER_BLOCK_MGR.get_total_macro_block_count() * OB_SERVER_BLOCK_MGR.get_macro_block_size();
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int ret = OB_SERVER_BLOCK_MGR.resize_file(used_space + 2 * free_space, 99, 0);
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ASSERT_EQ(common::OB_SERVER_OUTOF_DISK_SPACE, ret);
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int64_t delta_space = free_space - 100 * 1024 * 1024 * 1024L;
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int64_t min_space = 0;
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ret = OB_SERVER_BLOCK_MGR.resize_file(used_space + std::max(delta_space, min_space), 99, 0);
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ASSERT_EQ(common::OB_SUCCESS, ret);
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}
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class TestMacroBlockSeqStress : public share::ObThreadPool
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{
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public:
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TestMacroBlockSeqStress() : thread_cnt_(0), is_inited_(false) {}
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virtual ~TestMacroBlockSeqStress() {}
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int init(const int64_t thread_cnt);
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virtual void run1();
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private:
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const int GENERATE_SEQ_NUMBERS_PER_THREAD = 10000;
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int64_t thread_cnt_;
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ObMacroBlockSeqGenerator macro_seq_generator;
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hash::ObHashMap<uint32_t, bool, hash::SpinReadWriteDefendMode> blk_seqs_;
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bool is_inited_ = false;
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};
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int TestMacroBlockSeqStress::init(const int64_t thread_cnt)
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{
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int ret = OB_SUCCESS;
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if (OB_UNLIKELY(is_inited_)) {
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ret = OB_INIT_TWICE;
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LOG_WARN("init twice", K(ret));
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} else if (thread_cnt < 0) {
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ret = OB_INVALID_ARGUMENT;
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STORAGE_LOG(WARN, "invalid argument", K(ret), K(thread_cnt));
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} else if (OB_FAIL(blk_seqs_.create(thread_cnt * GENERATE_SEQ_NUMBERS_PER_THREAD,
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"test_macro_seq",
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"test_macro_seq"))) {
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LOG_WARN("fail to create block sequences map", K(ret));
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} else {
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thread_cnt_ = thread_cnt;
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is_inited_ = true;
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}
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return ret;
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}
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void TestMacroBlockSeqStress::run1()
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{
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int ret = OB_SUCCESS;
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uint64_t blk_seq = 0;
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int count = GENERATE_SEQ_NUMBERS_PER_THREAD;
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while (0 < count--) {
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ret = macro_seq_generator.generate_next_sequence(blk_seq);
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ASSERT_EQ(OB_SUCCESS, ret);
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ret = blk_seqs_.set_refactored(blk_seq, true);
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ASSERT_EQ(OB_SUCCESS, ret);
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}
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}
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TEST_F(TestBlockManager, macor_block_seq)
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{
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int ret = OB_SUCCESS;
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uint32_t restart_seq = 0;
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uint64_t blk_seq = 0;
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ObMacroBlockSeqGenerator macro_seq_generator;
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restart_seq = macro_seq_generator.rewrite_seq_;
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ASSERT_EQ(0, restart_seq);
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ret = macro_seq_generator.generate_next_sequence(blk_seq);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(1, blk_seq);
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ret = macro_seq_generator.generate_next_sequence(blk_seq);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(2, blk_seq);
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macro_seq_generator.reset();
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restart_seq = macro_seq_generator.rewrite_seq_;
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ASSERT_EQ(0, restart_seq);
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ret = macro_seq_generator.generate_next_sequence(blk_seq);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(1, blk_seq);
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ret = macro_seq_generator.generate_next_sequence(blk_seq);
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ASSERT_EQ(OB_SUCCESS, ret);
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ASSERT_EQ(2, blk_seq);
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}
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TEST_F(TestBlockManager, test_multi_thread)
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{
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int ret = OB_SUCCESS;
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TestMacroBlockSeqStress stress;
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const int thread_cnt = 16;
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ret = stress.init(thread_cnt);
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ASSERT_EQ(OB_SUCCESS, ret);
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ret = stress.start();
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ASSERT_EQ(OB_SUCCESS, ret);
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stress.wait();
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}
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} // namespace unittest
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} // namespace oceanbase
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int main(int argc, char **argv)
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{
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system("rm -f test_block_manager.log*");
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OB_LOGGER.set_file_name("test_block_manager.log", true);
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OB_LOGGER.set_log_level("INFO");
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testing::InitGoogleTest(&argc, argv);
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return RUN_ALL_TESTS();
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}
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