 3cada22bdc
			
		
	
	3cada22bdc
	
	
	
		
			
			Co-authored-by: yinyj17 <yinyijun92@gmail.com> Co-authored-by: xianyu-w <707512433@qq.com> Co-authored-by: jingtaoye35 <1255153887@qq.com>
		
			
				
	
	
		
			768 lines
		
	
	
		
			32 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			768 lines
		
	
	
		
			32 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| /**
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|  * (C) Copyright 2017-2020 OceanBase Inc. All Rights Reserved.
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|  *
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|  * test_partition_range_spliter.cpp
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|  *
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|  * Authors: chaser.ch
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|  *
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|  */
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| 
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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/container/ob_iarray.h"
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| #include "lib/container/ob_array_array.h"
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| #include "storage/compaction/ob_partition_merger.h"
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| #include "storage/memtable/ob_memtable_interface.h"
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| #include "storage/ob_partition_component_factory.h"
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| #include "blocksstable/ob_data_file_prepare.h"
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| #include "blocksstable/ob_row_generate.h"
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| #include "observer/ob_service.h"
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| #include "storage/memtable/ob_memtable.h"
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| #include "storage/memtable/ob_memtable_iterator.h"
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| #include "storage/memtable/ob_memtable_mutator.h"
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| 
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| #include "common/cell/ob_cell_reader.h"
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| #include "lib/allocator/page_arena.h"
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| #include "lib/container/ob_se_array.h"
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| #include "storage/ob_i_store.h"
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| #include "share/ob_srv_rpc_proxy.h"
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| 
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| #include "storage/ob_i_table.h"
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| #include "storage/blocksstable/ob_multi_version_sstable_test.h"
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| 
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| #include "memtable/utils_rowkey_builder.h"
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| #include "memtable/utils_mock_row.h"
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| #include "storage/test_tablet_helper.h"
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| 
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| #include "storage/ob_partition_range_spliter.h"
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| 
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| namespace oceanbase
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| {
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| using namespace common;
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| using namespace share::schema;
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| using namespace blocksstable;
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| using namespace compaction;
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| using namespace memtable;
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| using namespace observer;
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| using namespace unittest;
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| using namespace rpc::frame;
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| using namespace memtable;
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| namespace storage
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| {
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| 
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| class TestRangeSpliter: public ObMultiVersionSSTableTest
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| {
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| public:
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|   static const int64_t MAX_PARALLEL_DEGREE = 10;
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|   static const int64_t MAX_MACRO_CNT = 20;
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|   static const int64_t RANGE_MAX = 0;
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|   static const int64_t RANGE_MIN = 1;
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|   static const int64_t RANGE_NORMAL = 2;
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|   TestRangeSpliter() : ObMultiVersionSSTableTest("test_rangespliter") {}
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|   virtual ~TestRangeSpliter() {}
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| 
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| 	void SetUp()
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| 	{
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| 		ObMultiVersionSSTableTest::SetUp();
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| 	}
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| 	void TearDown()
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| 	{
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| 
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| 	ObMultiVersionSSTableTest::TearDown();
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| 		TRANS_LOG(INFO, "teardown success");
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| 	}
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| 
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|   static void SetUpTestCase();
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|   static void TearDownTestCase();
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|   void build_store_range(ObIArray<ObStoreRange> &ranges, const char *rowkey_data, const bool compaction = true);
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|   void build_query_range(ObIArray<ObStoreRange> &ranges, const char *rowkey_data);
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|   bool equal_ranges(ObStoreRange &range1, ObStoreRange &range2);
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|   bool loop_equal_ranges(ObIArray<ObStoreRange> &ranges1, ObIArray<ObStoreRange> &ranges2);
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|   void prepare_sstable_handle(ObTableHandleV2 &handle,
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|                        const int64_t macro_idx_start,
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|                        const int64_t macro_cnt,
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|                        const int64_t snapshot_version,
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|                        const int64_t micro_cnt = 1);
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|   ObArray<ObColDesc> columns_;
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|   ObTableIterParam param_;
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|   ObTableAccessContext context_;
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|   ObArenaAllocator allocator_;
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|   ObMockIterator range_iter_;
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| };
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| 
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| void TestRangeSpliter::SetUpTestCase()
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| {
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|   ObMultiVersionSSTableTest::SetUpTestCase();
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|   // mock sequence no
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|   ObClockGenerator::init();
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| 
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|   ObLSID ls_id(ls_id_);
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|   ObTabletID tablet_id(tablet_id_);
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|   ObLSHandle ls_handle;
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|   ObLSService *ls_svr = MTL(ObLSService*);
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|   ASSERT_EQ(OB_SUCCESS, ls_svr->get_ls(ls_id, ls_handle, ObLSGetMod::STORAGE_MOD));
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| 
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|   // create tablet
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|   obrpc::ObBatchCreateTabletArg create_tablet_arg;
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|   share::schema::ObTableSchema table_schema;
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|   ASSERT_EQ(OB_SUCCESS, gen_create_tablet_arg(tenant_id_, ls_id, tablet_id, create_tablet_arg, 1, &table_schema));
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| 
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|   ObLSTabletService *ls_tablet_svr = ls_handle.get_ls()->get_tablet_svr();
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|   ASSERT_EQ(OB_SUCCESS, TestTabletHelper::create_tablet(*ls_tablet_svr, create_tablet_arg));
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| }
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| 
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| void TestRangeSpliter::TearDownTestCase()
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| {
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|   ObMultiVersionSSTableTest::TearDownTestCase();
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|   // reset sequence no
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|   ObClockGenerator::destroy();
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| }
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| bool TestRangeSpliter::equal_ranges(ObStoreRange &range1, ObStoreRange &range2)
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| {
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|   bool bret = false;
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|   if (!range1.get_start_key().simple_equal(range2.get_start_key())) {
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|   } else if (!range1.get_end_key().simple_equal(range2.get_end_key())) {
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|   } else {
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|     bret = range1.get_border_flag().get_data() == range2.get_border_flag().get_data();
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|   }
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|   if (!bret) {
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|     int ret = OB_ERR_UNEXPECTED;
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|     STORAGE_LOG(WARN, "ranges are not equal", K(range1), K(range2));
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|   }
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| 
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|   return bret;
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| }
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| 
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| bool TestRangeSpliter::loop_equal_ranges(ObIArray<ObStoreRange> &ranges1, ObIArray<ObStoreRange> &ranges2)
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| {
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|   bool bret = false;
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|   if (ranges1.count() != ranges2.count()) {
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|     int ret = OB_ERR_UNEXPECTED;
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|     STORAGE_LOG(WARN, "ranges are not equal", K(ranges1), K(ranges2));
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|   } else {
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|     bret = true;
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|     for (int64_t i = 0; bret && i < ranges1.count(); i++) {
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|       bret = equal_ranges(ranges1.at(i), ranges2.at(i));
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|     }
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|   }
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| 
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|   return bret;
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| }
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| 
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| void TestRangeSpliter::build_store_range(ObIArray<ObStoreRange> &ranges, const char *rowkey_data, const bool compaction)
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| {
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|   const ObStoreRow *row = nullptr;
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|   const int64_t rowkey_col_cnt = TEST_ROWKEY_COLUMN_CNT;
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|   const int64_t mv_col_cnt = compaction ? ObMultiVersionRowkeyHelpper::get_extra_rowkey_col_cnt() : 0;
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|   ObStoreRange range, dst_range;
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|   ASSERT_TRUE(nullptr != rowkey_data);
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|   ranges.reset();
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|   range_iter_.reset();
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|   OK(range_iter_.from(rowkey_data));
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|   ASSERT_TRUE(range_iter_.count() > 0);
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| 
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|   range.get_start_key().set_min();
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|   range.set_left_open();
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|   for (int64_t i = 0; i < range_iter_.count(); i++) {
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|     OK(range_iter_.get_row(i, row));
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|     ASSERT_TRUE(nullptr != row);
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|     for (int64_t i = 0; i < mv_col_cnt; i++) {
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|       row->row_val_.cells_[rowkey_col_cnt + i].set_max_value();
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|     }
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|     range.get_end_key().assign(row->row_val_.cells_, rowkey_col_cnt + mv_col_cnt);
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|     range.set_right_closed();
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|     ASSERT_EQ(OB_SUCCESS, range.deep_copy(allocator_, dst_range));
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|     ASSERT_EQ(OB_SUCCESS, ranges.push_back(dst_range));
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|     range.reset();
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|     dst_range.reset();
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|     range.get_start_key().assign(row->row_val_.cells_, rowkey_col_cnt + mv_col_cnt);
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|     range.set_left_open();
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|   }
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|   range.get_end_key().set_max();
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|   range.set_right_open();
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|   ASSERT_EQ(OB_SUCCESS, range.deep_copy(allocator_, dst_range));
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|   ASSERT_EQ(OB_SUCCESS, ranges.push_back(dst_range));
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| }
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| 
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| void TestRangeSpliter::build_query_range(ObIArray<ObStoreRange> &ranges, const char *rowkey_data)
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| {
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|   const ObStoreRow *row = nullptr;
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|   const int64_t rowkey_col_cnt = TEST_ROWKEY_COLUMN_CNT;
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|   ObStoreRange range, dst_range;
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|   ASSERT_TRUE(nullptr != rowkey_data);
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|   ranges.reset();
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|   range_iter_.reset();
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|   OK(range_iter_.from(rowkey_data));
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|   ASSERT_TRUE(range_iter_.count() > 0 && range_iter_.count() % 2 == 0);
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| 
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|   for (int64_t i = 0; i < range_iter_.count(); i+=2) {
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|     OK(range_iter_.get_row(i, row));
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|     ASSERT_TRUE(nullptr != row);
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|     range.get_start_key().assign(row->row_val_.cells_, rowkey_col_cnt);
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|     OK(range_iter_.get_row(i + 1, row));
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|     ASSERT_TRUE(nullptr != row);
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|     range.get_end_key().assign(row->row_val_.cells_, rowkey_col_cnt);
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|     if (range.get_start_key().compare(range.get_end_key()) == 0) {
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|       range.set_left_closed();
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|     } else {
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|       range.set_left_open();
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|     }
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|     range.set_right_closed();
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|     ASSERT_EQ(OB_SUCCESS, range.deep_copy(allocator_, dst_range));
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|     ASSERT_EQ(OB_SUCCESS, ranges.push_back(dst_range));
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|     range.reset();
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|     dst_range.reset();
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|   }
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| }
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| 
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| void TestRangeSpliter::prepare_sstable_handle(ObTableHandleV2 &handle,
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|                                        const int64_t macro_idx_start,
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|                                        const int64_t macro_cnt,
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|                                        const int64_t snapshot_version,
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|                                        const int64_t micro_cnt)
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| {
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|   const int64_t rowkey_cnt = TEST_ROWKEY_COLUMN_CNT + ObMultiVersionRowkeyHelpper::get_extra_rowkey_col_cnt();
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|   ASSERT_EQ(true, macro_idx_start + macro_cnt <= MAX_MACRO_CNT);
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| 
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|   const char *macro_data[20];
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|   macro_data[0] =
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|       "bigint   var   bigint bigint  flag    multi_version_row_flag\n"
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|       "0        var1    -9    0     EXIST   CLF\n"
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|       "1        var1   -9    MIN      EXIST   SCF\n"
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|       "1        var1    -9    0     EXIST   C\n";
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| 
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|   macro_data[1] =
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|       "bigint   var   bigint bigint  flag    multi_version_row_flag\n"
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|       "1        var1    -8     0      EXIST   L\n"
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|       "2        var1    -9     0      EXIST   CLF\n";
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| 
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|   macro_data[2] =
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|       "bigint   var   bigint bigint  flag    multi_version_row_flag\n"
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|       "3        var1    -8     0      EXIST   CLF\n"
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|       "4        var1   -9    MIN      EXIST   SCF\n"
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|       "4        var1    -9     0      EXIST   C\n";
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| 
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|   macro_data[3] =
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|       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
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|       "4        var1    -8     0      EXIST   L\n"
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|       "5        var1    -9     0      EXIST   CLF\n";
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| 
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|   macro_data[4] =
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|       "bigint   var   bigint bigint  flag    multi_version_row_flag\n"
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|       "6        var1    -9     0      EXIST   CLF\n"
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|       "7        var1   -9    MIN      EXIST   SCF\n"
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|       "7        var1    -9     0      EXIST   C\n";
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| 
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|   macro_data[5] =
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|       "bigint   var   bigint bigint  flag    multi_version_row_flag\n"
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|       "7        var1    -8     0      EXIST   L\n"
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|       "8        var1    -9    0     EXIST   CLF\n";
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| 
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|   macro_data[6] =
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|       "bigint   var   bigint bigint  flag    multi_version_row_flag\n"
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|       "9        var1    -8     0      EXIST   CLF\n"
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|       "10       var1  -9    MIN      EXIST   SCF\n"
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|       "10       var1    -9    0     EXIST    C\n";
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| 
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|   macro_data[7] =
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|       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
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|       "10       var1    -8     0      EXIST   L\n"
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|       "11       var1    -9    0     EXIST   CLF\n";
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| 
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|   macro_data[8] =
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|       "bigint   var   bigint bigint  flag    multi_version_row_flag\n"
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|       "12       var1     -9    0     EXIST   CLF\n"
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|       "13       var1   -9    MIN      EXIST   SCF\n"
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|       "13       var1     -9    0     EXIST   C\n";
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| 
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|   macro_data[9] =
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|       "bigint   var   bigint bigint  flag    multi_version_row_flag\n"
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|       "13       var1   -8    MIN      EXIST   L\n"
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|       "14       var1   -9    MIN      EXIST   CLF\n";
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| 
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|   macro_data[10] =
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|       "bigint   var   bigint bigint  flag    multi_version_row_flag\n"
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|       "15       var1     -8     0      EXIST   CLF\n"
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|       "16       var1   -9    MIN      EXIST   SCF\n"
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|       "16       var1     -9    0     EXIST     C\n";
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| 
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|   macro_data[11] =
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|       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
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|       "16       var1     -8     0      EXIST   L\n"
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|       "17       var1     -9    0     EXIST   CLF\n";
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| 
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|   macro_data[12] =
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|       "bigint   var   bigint bigint  flag    multi_version_row_flag\n"
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|       "18       var1     -9    0     EXIST   CLF\n"
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|       "19       var1   -9    MIN      EXIST   SCF\n"
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|       "19       var1     -9    0     EXIST   CF\n";
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| 
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|   macro_data[13] =
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|       "bigint   var   bigint bigint  flag    multi_version_row_flag\n"
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|       "19       var1     -8     0      EXIST   L\n"
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|       "20       var1     -9    0     EXIST   CLF\n";
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| 
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|   macro_data[14] =
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|       "bigint   var   bigint bigint  flag    multi_version_row_flag\n"
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|       "21       var1     -8     0      EXIST   CLF\n"
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|       "22       var1   -9    MIN      EXIST   SCF\n"
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|       "22       var1     -9    0     EXIST   C\n";
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| 
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|   macro_data[15] =
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|       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
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|       "22       var1    -8     0      EXIST   L\n"
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|       "23       var1    -9    0     EXIST   CLF\n";
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| 
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|   macro_data[16] =
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|       "bigint   var   bigint bigint  flag    multi_version_row_flag\n"
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|       "24       var1    -9    0     EXIST   CLF\n"
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|       "25       var1    -9    MIN      EXIST  SCF\n"
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|       "25       var1    -9    0     EXIST   CF\n";
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| 
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|   macro_data[17] =
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|       "bigint   var   bigint bigint  flag    multi_version_row_flag\n"
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|       "26       var1    -8     0      EXIST   L\n"
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|       "27       var1    -9    0     EXIST   CLF\n";
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| 
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|   macro_data[18] =
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|       "bigint   var   bigint bigint  flag    multi_version_row_flag\n"
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|       "28       var1    -8     0      EXIST   CLF\n"
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|       "29       var1   -9    MIN      EXIST   SCF\n"
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|       "29       var1    -9    0     EXIST   C\n";
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| 
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|   macro_data[19] =
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|       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
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|       "29       var1    -8     0      EXIST   L\n"
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|       "30       var1    -9    0     EXIST   CLF\n";
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| 
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|   int schema_rowkey_cnt = 2;
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|   ObScnRange scn_range;
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|   scn_range.start_scn_.set_min();
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|   scn_range.end_scn_.convert_for_tx(10);
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|   if (!table_schema_.is_valid()) {
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|     prepare_table_schema(macro_data, schema_rowkey_cnt, scn_range, snapshot_version);
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|   }
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|   reset_writer(snapshot_version);
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|   for (int64_t i = macro_idx_start; i < macro_idx_start + macro_cnt * micro_cnt; i += micro_cnt) {
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|     prepare_one_macro(¯o_data[i], micro_cnt);
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|   }
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|   prepare_data_end(handle);
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|   ObSSTable *sstable = nullptr;
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|   ASSERT_EQ(OB_SUCCESS, handle.get_sstable(sstable));
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|   sstable->meta_.basic_meta_.occupy_size_ = (2<<20) * macro_cnt;
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|   sstable->key_.table_type_ = ObITable::MINOR_SSTABLE;
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| }
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| 
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| 
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| TEST_F(TestRangeSpliter, test_single_basic)
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| {
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|   allocator_.reuse();
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|   ObArray<ObITable *> sstables;
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|   ObStoreRange split_range;
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|   ObPartitionRangeSpliter range_spliter;
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|   ObRangeSplitInfo range_split_info;
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|   ObArenaAllocator allocator;
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|   ObArray<ObStoreRange> split_ranges;
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|   ObTableHandleV2 handle;
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| 
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|   split_range.set_whole_range();
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|   prepare_sstable_handle(handle, 0, 20, 10);
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|   const ObTableReadInfo *index_read_info = full_read_info_.get_index_read_info();
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| 
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|   ASSERT_EQ(OB_SUCCESS, sstables.push_back(handle.table_));
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|   ASSERT_EQ(OB_SUCCESS, range_spliter.get_range_split_info(sstables, *index_read_info, split_range, range_split_info));
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|   range_split_info.set_parallel_target(2);
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|   ASSERT_EQ(OB_SUCCESS, range_spliter.split_ranges(range_split_info, allocator, true, split_ranges));
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|   ASSERT_EQ(2, split_ranges.count());
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|   STORAGE_LOG(INFO, "finish split ranges", K(split_ranges));
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| 
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|   const char *rowkey_data =
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|       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
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|       "10       var1   -9    MIN      EXIST   CLF\n";
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|   ObArray<ObStoreRange> ranges;
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|   build_store_range(ranges, rowkey_data);
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|   ASSERT_EQ(true, loop_equal_ranges(ranges, split_ranges));
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| 
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|   range_spliter.reset();
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|   ASSERT_EQ(OB_SUCCESS, range_spliter.get_range_split_info(sstables, *index_read_info, split_range, range_split_info));
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|   range_split_info.set_parallel_target(3);
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|   ASSERT_EQ(OB_SUCCESS, range_spliter.split_ranges(range_split_info, allocator, true, split_ranges));
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|   ASSERT_EQ(3, split_ranges.count());
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|   STORAGE_LOG(INFO, "finish split ranges", K(split_ranges));
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|   const char *rowkey_data1 =
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|       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
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|       "10       var1   -9    MIN      EXIST   CLF\n"
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|       "19       var1   -9    MIN      EXIST   CLF\n";
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|   build_store_range(ranges, rowkey_data1);
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|   ASSERT_EQ(true, loop_equal_ranges(ranges, split_ranges));
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| 
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|   range_spliter.reset();
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|   ASSERT_EQ(OB_SUCCESS, range_spliter.get_range_split_info(sstables, *index_read_info, split_range, range_split_info));
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|   range_split_info.set_parallel_target(4);
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|   ASSERT_EQ(OB_SUCCESS, range_spliter.split_ranges(range_split_info, allocator, true, split_ranges));
 | |
|   ASSERT_EQ(4, split_ranges.count());
 | |
|   STORAGE_LOG(INFO, "finish split ranges", K(split_ranges));
 | |
|   const char *rowkey_data2 =
 | |
|       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
|       "7        var1   -9    MIN      EXIST   CLF\n"
 | |
|       "16       var1   -9    MIN      EXIST   CLF\n"
 | |
|       "22       var1   -9    MIN      EXIST   CLF\n";
 | |
|   build_store_range(ranges, rowkey_data2);
 | |
|   ASSERT_EQ(true, loop_equal_ranges(ranges, split_ranges));
 | |
| 
 | |
|   range_spliter.reset();
 | |
|   ASSERT_EQ(OB_SUCCESS, range_spliter.get_range_split_info(sstables, *index_read_info, split_range, range_split_info));
 | |
|   range_split_info.set_parallel_target(9);
 | |
|   ASSERT_EQ(OB_SUCCESS, range_spliter.split_ranges(range_split_info, allocator, true, split_ranges));
 | |
|   ASSERT_EQ(9, split_ranges.count());
 | |
|   STORAGE_LOG(INFO, "finish split ranges", K(split_ranges));
 | |
|   const char *rowkey_data3 =
 | |
|       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
|       "4        var1   -9    MIN      EXIST   CLF\n"
 | |
|       "7        var1   -9    MIN      EXIST   CLF\n"
 | |
|       "10        var1   -9    MIN      EXIST   CLF\n"
 | |
|       "13       var1   -9    MIN      EXIST   CLF\n"
 | |
|       "16        var1   -9    MIN      EXIST   CLF\n"
 | |
|       "19       var1   -9    MIN      EXIST   CLF\n"
 | |
|       "22        var1   -9    MIN      EXIST   CLF\n"
 | |
|       "25       var1   -9    MIN      EXIST   CLF\n";
 | |
|   build_store_range(ranges, rowkey_data3);
 | |
|   ASSERT_EQ(true, loop_equal_ranges(ranges, split_ranges));
 | |
| }
 | |
| 
 | |
| TEST_F(TestRangeSpliter, test_single_multi_sstable)
 | |
| {
 | |
|   allocator_.reuse();
 | |
|   ObArray<ObITable *> sstables;
 | |
|   ObStoreRange split_range;
 | |
|   ObPartitionRangeSpliter range_spliter;
 | |
|   ObRangeSplitInfo range_split_info;
 | |
|   ObArenaAllocator allocator;
 | |
|   ObArray<ObStoreRange> split_ranges;
 | |
|   ObArray<ObStoreRange> ranges;
 | |
|   ObTableHandleV2 handle, handle1;
 | |
| 
 | |
|   split_range.set_whole_range();
 | |
|   prepare_sstable_handle(handle, 0, 20, 10);
 | |
|   ASSERT_EQ(OB_SUCCESS, sstables.push_back(handle.table_));
 | |
|   prepare_sstable_handle(handle1, 5, 15, 20);
 | |
|   ASSERT_EQ(OB_SUCCESS, sstables.push_back(handle1.table_));
 | |
| 
 | |
|   const ObTableReadInfo *index_read_info = full_read_info_.get_index_read_info();
 | |
| 
 | |
|   ASSERT_EQ(OB_SUCCESS, range_spliter.get_range_split_info(sstables, *index_read_info, split_range, range_split_info));
 | |
|   range_split_info.set_parallel_target(2);
 | |
|   ASSERT_EQ(OB_SUCCESS, range_spliter.split_ranges(range_split_info, allocator, true, split_ranges));
 | |
|   ASSERT_EQ(2, split_ranges.count());
 | |
|   STORAGE_LOG(INFO, "finish split ranges", K(split_ranges));
 | |
|   const char *rowkey_data =
 | |
|       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
|       "17       var1   -9    MIN      EXIST   CLF\n";
 | |
|   build_store_range(ranges, rowkey_data);
 | |
|   ASSERT_EQ(true, loop_equal_ranges(ranges, split_ranges));
 | |
| 
 | |
|   ASSERT_EQ(OB_SUCCESS, range_spliter.get_range_split_info(sstables, *index_read_info, split_range, range_split_info));
 | |
|   range_split_info.set_parallel_target(5);
 | |
|   ASSERT_EQ(OB_SUCCESS, range_spliter.split_ranges(range_split_info, allocator, true, split_ranges));
 | |
|   ASSERT_EQ(5, split_ranges.count());
 | |
|   STORAGE_LOG(INFO, "finish split ranges", K(split_ranges));
 | |
|   const char *rowkey_data1 =
 | |
|       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
|       "8       var1   -9    MIN      EXIST   CLF\n"
 | |
|       "14       var1   -9    MIN      EXIST   CLF\n"
 | |
|       "20       var1   -9    MIN      EXIST   CLF\n"
 | |
|       "25       var1   -9    MIN      EXIST   CLF\n";
 | |
|   build_store_range(ranges, rowkey_data1);
 | |
|   ASSERT_EQ(true, loop_equal_ranges(ranges, split_ranges));
 | |
| 
 | |
|   ObTableHandleV2 handle2;
 | |
|   prepare_sstable_handle(handle2, 0, 5, 30);
 | |
|   ASSERT_EQ(OB_SUCCESS, sstables.push_back(handle2.table_));
 | |
| 
 | |
|   ASSERT_EQ(OB_SUCCESS, range_spliter.get_range_split_info(sstables, *index_read_info, split_range, range_split_info));
 | |
|   range_split_info.set_parallel_target(3);
 | |
|   ASSERT_EQ(OB_SUCCESS, range_spliter.split_ranges(range_split_info, allocator, true, split_ranges));
 | |
|   ASSERT_EQ(3, split_ranges.count());
 | |
|   STORAGE_LOG(INFO, "finish split ranges", K(split_ranges));
 | |
|   const char *rowkey_data2 =
 | |
|       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
|       "8       var1   -9    MIN      EXIST   CLF\n"
 | |
|       "19       var1   -9    MIN      EXIST   CLF\n";
 | |
|   build_store_range(ranges, rowkey_data2);
 | |
|   ASSERT_EQ(true, loop_equal_ranges(ranges, split_ranges));
 | |
| 
 | |
| }
 | |
| 
 | |
| TEST_F(TestRangeSpliter, test_micro_level_split)
 | |
| {
 | |
|   allocator_.reuse();
 | |
|   ObArray<ObITable *> sstables;
 | |
|   ObStoreRange split_range;
 | |
|   ObPartitionRangeSpliter range_spliter;
 | |
|   ObRangeSplitInfo range_split_info;
 | |
|   ObArenaAllocator allocator;
 | |
|   ObArray<ObStoreRange> split_ranges;
 | |
|   ObTableHandleV2 handle;
 | |
| 
 | |
|   split_range.set_whole_range();
 | |
|   prepare_sstable_handle(handle, 0, 2, 10, 10);
 | |
|   const ObTableReadInfo *index_read_info = full_read_info_.get_index_read_info();
 | |
| 
 | |
|   ASSERT_EQ(OB_SUCCESS, sstables.push_back(handle.table_));
 | |
|   ASSERT_EQ(OB_SUCCESS, range_spliter.get_range_split_info(sstables, *index_read_info, split_range, range_split_info));
 | |
|   range_split_info.set_parallel_target(4);
 | |
|   ASSERT_EQ(OB_SUCCESS, range_spliter.split_ranges(range_split_info, allocator, false, split_ranges));
 | |
|   ASSERT_EQ(4, split_ranges.count());
 | |
|   STORAGE_LOG(INFO, "finish split ranges", K(split_ranges));
 | |
|   const char *rowkey_data =
 | |
|       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
|       "8       var1   -9    MIN      EXIST   CLF\n"
 | |
|       "17       var1   -9    MIN      EXIST   CLF\n"
 | |
|       "23       var1   -9    MIN      EXIST   CLF\n";
 | |
|   ObArray<ObStoreRange> ranges;
 | |
|   build_store_range(ranges, rowkey_data, false);
 | |
|   ASSERT_EQ(true, loop_equal_ranges(ranges, split_ranges));
 | |
| 
 | |
|   range_spliter.reset();
 | |
|   ASSERT_EQ(OB_SUCCESS, range_spliter.get_range_split_info(sstables, *index_read_info, split_range, range_split_info));
 | |
|   range_split_info.set_parallel_target(7);
 | |
|   ASSERT_EQ(OB_SUCCESS, range_spliter.split_ranges(range_split_info, allocator, false, split_ranges));
 | |
|   ASSERT_EQ(7, split_ranges.count());
 | |
|   STORAGE_LOG(INFO, "finish split ranges", K(split_ranges));
 | |
|   const char *rowkey_data1 =
 | |
|       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
|       "5       var1   -9    MIN      EXIST   CLF\n"
 | |
|       "11       var1   -9    MIN      EXIST   CLF\n"
 | |
|       "17       var1   -9    MIN      EXIST   CLF\n"
 | |
|       "20       var1   -9    MIN      EXIST   CLF\n"
 | |
|       "23       var1   -9    MIN      EXIST   CLF\n"
 | |
|       "27       var1   -9    MIN      EXIST   CLF\n";
 | |
|   build_store_range(ranges, rowkey_data1, false);
 | |
|   ASSERT_EQ(true, loop_equal_ranges(ranges, split_ranges));
 | |
| }
 | |
| 
 | |
| //TODO:huronghui.hrh test for mulit range
 | |
| 
 | |
| // TEST_F(TestRangeSpliter, test_mulit_basic)
 | |
| // {
 | |
| //   allocator_.reuse();
 | |
| //   ObTablesHandle tables_handle;
 | |
| //   ObStoreRange split_range;
 | |
| //   ObRangeSplitInfo range_split_info;
 | |
| //   ObArenaAllocator allocator;
 | |
| //   ObArray<ObStoreRange> split_ranges, ranges;
 | |
| //   ObArray<ObStoreRange> query_ranges;
 | |
| //   ObSSTable sstable;
 | |
| //   ObPartitionMultiRangeSpliter spliter;
 | |
| //   ObArrayArray<ObStoreRange> ranges_array;
 | |
| //   int64_t total_size = 0;
 | |
| //   int64_t parallel_cnt = 0;
 | |
| 
 | |
| //   prepare_sstable_handle(sstable, 0, 20, 10);
 | |
| //   ASSERT_EQ(OB_SUCCESS, tables_handle.add_table(&sstable));
 | |
| 
 | |
| //   //normal case
 | |
| //   const char *query_rowkey =
 | |
| //       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
| //       "1        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "6        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "10       var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "20       var1   -9    MIN      EXIST   CLF\n";
 | |
| //   build_query_range(query_ranges, query_rowkey);
 | |
| //   ASSERT_EQ(OB_SUCCESS, spliter.get_multi_range_size(tables_handle, query_ranges, total_size));
 | |
| //   parallel_cnt = 3;
 | |
| //   ASSERT_EQ(OB_SUCCESS, spliter.get_split_multi_ranges(tables_handle, query_ranges, parallel_cnt, allocator, ranges_array));
 | |
| //   STORAGE_LOG(INFO, "finish split ranges array", K(ranges_array));
 | |
| //   ASSERT_EQ(3, ranges_array.count());
 | |
| //   const char *rowkey_data1 =
 | |
| //       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
| //       "1        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "6        var1   -9    MIN      EXIST   CLF\n";
 | |
| //   build_query_range(ranges, rowkey_data1);
 | |
| //   ASSERT_EQ(true, loop_equal_ranges(ranges, ranges_array.at(0)));
 | |
| //   const char *rowkey_data2 =
 | |
| //       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
| //       "10       var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "17       var1   -9    MIN      EXIST   CLF\n";
 | |
| //   build_query_range(ranges, rowkey_data2);
 | |
| //   ASSERT_EQ(true, loop_equal_ranges(ranges, ranges_array.at(1)));
 | |
| //   const char *rowkey_data3 =
 | |
| //       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
| //       "17        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "20        var1   -9    MIN      EXIST   CLF\n";
 | |
| //   build_query_range(ranges, rowkey_data3);
 | |
| //   ASSERT_EQ(true, loop_equal_ranges(ranges, ranges_array.at(2)));
 | |
| 
 | |
| //   // single task case
 | |
| //   ASSERT_EQ(OB_SUCCESS, spliter.get_multi_range_size(tables_handle, query_ranges, total_size));
 | |
| //   parallel_cnt = 1;
 | |
| //   ASSERT_EQ(OB_SUCCESS, spliter.get_split_multi_ranges(tables_handle, query_ranges, parallel_cnt, allocator, ranges_array));
 | |
| //   STORAGE_LOG(INFO, "finish split ranges array", K(ranges_array));
 | |
| //   ASSERT_EQ(1, ranges_array.count());
 | |
| //   ASSERT_EQ(true, loop_equal_ranges(query_ranges, ranges_array.at(0)));
 | |
| 
 | |
| //   // more task case
 | |
| //   ASSERT_EQ(OB_SUCCESS, spliter.get_multi_range_size(tables_handle, query_ranges, total_size));
 | |
| //   parallel_cnt = 5;
 | |
| //   ASSERT_EQ(OB_SUCCESS, spliter.get_split_multi_ranges(tables_handle, query_ranges, parallel_cnt, allocator, ranges_array));
 | |
| //   STORAGE_LOG(INFO, "finish split ranges array", K(ranges_array));
 | |
| //   ASSERT_EQ(5, ranges_array.count());
 | |
| //   const char *rowkey_data21 =
 | |
| //       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
| //       "1        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "5        var1   -9    MIN      EXIST   CLF\n";
 | |
| //   build_query_range(ranges, rowkey_data21);
 | |
| //   ASSERT_EQ(true, loop_equal_ranges(ranges, ranges_array.at(0)));
 | |
| //   const char *rowkey_data22 =
 | |
| //       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
| //       "5        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "6        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "10        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "11        var1   -9    MIN      EXIST   CLF\n";
 | |
| //   build_query_range(ranges, rowkey_data22);
 | |
| //   ASSERT_EQ(true, loop_equal_ranges(ranges, ranges_array.at(1)));
 | |
| //   const char *rowkey_data23 =
 | |
| //       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
| //       "11        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "16        var1   -9    MIN      EXIST   CLF\n";
 | |
| //   build_query_range(ranges, rowkey_data23);
 | |
| //   ASSERT_EQ(true, loop_equal_ranges(ranges, ranges_array.at(2)));
 | |
| //   const char *rowkey_data24 =
 | |
| //       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
| //       "16        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "19        var1   -9    MIN      EXIST   CLF\n";
 | |
| //   build_query_range(ranges, rowkey_data24);
 | |
| //   ASSERT_EQ(true, loop_equal_ranges(ranges, ranges_array.at(3)));
 | |
| //   const char *rowkey_data25 =
 | |
| //       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
| //       "19       var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "20       var1   -9    MIN      EXIST   CLF\n";
 | |
| //   build_query_range(ranges, rowkey_data25);
 | |
| //   ASSERT_EQ(true, loop_equal_ranges(ranges, ranges_array.at(4)));
 | |
| 
 | |
| //   // seperate range case, 5 ranges
 | |
| //   const char *query_rowkey2 =
 | |
| //       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
| //       "1        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "8        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "10       var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "12       var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "13       var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "15       var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "16       var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "18       var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "22       var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "28       var1   -9    MIN      EXIST   CLF\n";
 | |
| //   build_query_range(query_ranges, query_rowkey2);
 | |
| //   ASSERT_EQ(OB_SUCCESS, spliter.get_multi_range_size(tables_handle, query_ranges, total_size));
 | |
| //   parallel_cnt = 3;
 | |
| //   ASSERT_EQ(OB_SUCCESS, spliter.get_split_multi_ranges(tables_handle, query_ranges, parallel_cnt, allocator, ranges_array));
 | |
| //   STORAGE_LOG(INFO, "finish split ranges array", K(ranges_array));
 | |
| //   ASSERT_EQ(3, ranges_array.count());
 | |
| //   const char *rowkey_data31 =
 | |
| //       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
| //       "1        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "8        var1   -9    MIN      EXIST   CLF\n";
 | |
| //   build_query_range(ranges, rowkey_data31);
 | |
| //   ASSERT_EQ(true, loop_equal_ranges(ranges, ranges_array.at(0)));
 | |
| //   const char *rowkey_data32 =
 | |
| //       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
| //       "10       var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "12       var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "13        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "15        var1   -9    MIN      EXIST   CLF\n";
 | |
| //   build_query_range(ranges, rowkey_data32);
 | |
| //   ASSERT_EQ(true, loop_equal_ranges(ranges, ranges_array.at(1)));
 | |
| //   const char *rowkey_data33 =
 | |
| //       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
| //       "16        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "18        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "22        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "28        var1   -9    MIN      EXIST   CLF\n";
 | |
| //   build_query_range(ranges, rowkey_data33);
 | |
| //   ASSERT_EQ(true, loop_equal_ranges(ranges, ranges_array.at(2)));
 | |
| 
 | |
| //   const char *query_rowkey3 =
 | |
| //       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
| //       "8        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "8        var1   -9    MIN      EXIST   CLF\n";
 | |
| //   build_query_range(query_ranges, query_rowkey3);
 | |
| //   ASSERT_EQ(OB_SUCCESS, spliter.get_multi_range_size(tables_handle, query_ranges, total_size));
 | |
| //   parallel_cnt = 3;
 | |
| //   ASSERT_EQ(OB_SUCCESS, spliter.get_split_multi_ranges(tables_handle, query_ranges, parallel_cnt, allocator, ranges_array));
 | |
| //   STORAGE_LOG(INFO, "finish split ranges array", K(ranges_array));
 | |
| //   ASSERT_EQ(1, ranges_array.count());
 | |
| // }
 | |
| 
 | |
| 
 | |
| // TEST_F(TestRangeSpliter, test_mulit_multi)
 | |
| // {
 | |
| //   allocator_.reuse();
 | |
| //   ObTablesHandle tables_handle;
 | |
| //   ObStoreRange split_range;
 | |
| //   ObRangeSplitInfo range_split_info;
 | |
| //   ObArenaAllocator allocator;
 | |
| //   ObArray<ObStoreRange> split_ranges, ranges;
 | |
| //   ObArray<ObStoreRange> query_ranges;
 | |
| //   ObSSTable sstable, sstable1, sstable2;
 | |
| //   ObPartitionMultiRangeSpliter spliter;
 | |
| //   ObArrayArray<ObStoreRange> ranges_array;
 | |
| //   int64_t total_size = 0;
 | |
| //   int64_t parallel_cnt = 0;
 | |
| 
 | |
| //   prepare_sstable_handle(sstable, 0, 20, 10);
 | |
| //   ASSERT_EQ(OB_SUCCESS, tables_handle.add_table(&sstable));
 | |
| //   prepare_sstable_handle(sstable1, 5, 5, 20);
 | |
| //   ASSERT_EQ(OB_SUCCESS, tables_handle.add_table(&sstable1));
 | |
| //   prepare_sstable_handle(sstable2, 10, 5, 30);
 | |
| //   ASSERT_EQ(OB_SUCCESS, tables_handle.add_table(&sstable2));
 | |
| 
 | |
| //   //normal case
 | |
| //   const char *query_rowkey =
 | |
| //       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
| //       "1        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "6        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "10       var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "20       var1   -9    MIN      EXIST   CLF\n";
 | |
| //   build_query_range(query_ranges, query_rowkey);
 | |
| //   ASSERT_EQ(OB_SUCCESS, spliter.get_multi_range_size(tables_handle, query_ranges, total_size));
 | |
| //   parallel_cnt = 3;
 | |
| //   ASSERT_EQ(OB_SUCCESS, spliter.get_split_multi_ranges(tables_handle, query_ranges, parallel_cnt, allocator, ranges_array));
 | |
| //   STORAGE_LOG(INFO, "finish split ranges array", K(ranges_array));
 | |
| //   ASSERT_EQ(3, ranges_array.count());
 | |
| //   const char *rowkey_data1 =
 | |
| //       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
| //       "1        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "6        var1   -9    MIN      EXIST   CLF\n";
 | |
| //   build_query_range(ranges, rowkey_data1);
 | |
| //   ASSERT_EQ(true, loop_equal_ranges(ranges, ranges_array.at(0)));
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| //   const char *rowkey_data2 =
 | |
| //       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
| //       "10       var1   -9    MIN      EXIST   CLF\n"
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| //       "14       var1   -9    MIN      EXIST   CLF\n";
 | |
| //   build_query_range(ranges, rowkey_data2);
 | |
| //   ASSERT_EQ(true, loop_equal_ranges(ranges, ranges_array.at(1)));
 | |
| //   const char *rowkey_data3 =
 | |
| //       "bigint   var   bigint  bigint flag    multi_version_row_flag\n"
 | |
| //       "14        var1   -9    MIN      EXIST   CLF\n"
 | |
| //       "20        var1   -9    MIN      EXIST   CLF\n";
 | |
| //   build_query_range(ranges, rowkey_data3);
 | |
| //   ASSERT_EQ(true, loop_equal_ranges(ranges, ranges_array.at(2)));
 | |
| 
 | |
| // }
 | |
| 
 | |
| 
 | |
| }
 | |
| }
 | |
| 
 | |
| int main(int argc, char **argv)
 | |
| {
 | |
|   system("rm -rf test_partition_range_splite.log*");
 | |
|   OB_LOGGER.set_file_name("test_partition_range_splite.log");
 | |
|   OB_LOGGER.set_log_level("DEBUG");
 | |
|   testing::InitGoogleTest(&argc, argv);
 | |
|   return RUN_ALL_TESTS();
 | |
| }
 |