Currently, we do not support parsing encoded/compressed columns in file path, eg: extract column k1 from file path /path/to/dir/k1=1/xxx.csv This patch is able to parse columns from file path like in Spark(Partition Discovery). This patch parse partition columns at BrokerScanNode.java and save parsing result of each file path as a property of TBrokerRangeDesc, then the broker reader of BE can read the value of specified partition column.
500 lines
15 KiB
C++
500 lines
15 KiB
C++
// Licensed to the Apache Software Foundation (ASF) under one
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// or more contributor license agreements. See the NOTICE file
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// distributed with this work for additional information
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// regarding copyright ownership. The ASF licenses this file
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// to you under the Apache License, Version 2.0 (the
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// "License"); you may not use this file except in compliance
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// with the License. You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing,
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// software distributed under the License is distributed on an
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// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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// KIND, either express or implied. See the License for the
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// specific language governing permissions and limitations
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// under the License.
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#include "exec/broker_scan_node.h"
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#include <string>
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#include <map>
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#include <vector>
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#include <gtest/gtest.h>
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#include "common/object_pool.h"
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#include "runtime/tuple.h"
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#include "exec/local_file_reader.h"
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#include "exprs/cast_functions.h"
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#include "runtime/descriptors.h"
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#include "runtime/runtime_state.h"
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#include "runtime/row_batch.h"
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#include "runtime/user_function_cache.h"
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#include "gen_cpp/Descriptors_types.h"
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#include "gen_cpp/PlanNodes_types.h"
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namespace doris {
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class BrokerScanNodeTest : public testing::Test {
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public:
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BrokerScanNodeTest() : _runtime_state(TQueryGlobals()) {
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init();
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_runtime_state._instance_mem_tracker.reset(new MemTracker());
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}
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void init();
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static void SetUpTestCase() {
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UserFunctionCache::instance()->init("./be/test/runtime/test_data/user_function_cache/normal");
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CastFunctions::init();
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}
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protected:
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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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private:
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void init_desc_table();
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RuntimeState _runtime_state;
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ObjectPool _obj_pool;
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std::map<std::string, SlotDescriptor*> _slots_map;
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TBrokerScanRangeParams _params;
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DescriptorTbl* _desc_tbl;
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TPlanNode _tnode;
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};
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void BrokerScanNodeTest::init_desc_table() {
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TDescriptorTable t_desc_table;
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// table descriptors
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TTableDescriptor t_table_desc;
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t_table_desc.id = 0;
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t_table_desc.tableType = TTableType::MYSQL_TABLE;
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t_table_desc.numCols = 0;
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t_table_desc.numClusteringCols = 0;
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t_desc_table.tableDescriptors.push_back(t_table_desc);
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t_desc_table.__isset.tableDescriptors = true;
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int next_slot_id = 1;
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// TSlotDescriptor
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// int offset = 1;
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// int i = 0;
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// k1
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{
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TSlotDescriptor slot_desc;
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slot_desc.id = next_slot_id++;
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slot_desc.parent = 0;
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TTypeDesc type;
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{
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TTypeNode node;
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node.__set_type(TTypeNodeType::SCALAR);
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TScalarType scalar_type;
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scalar_type.__set_type(TPrimitiveType::INT);
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node.__set_scalar_type(scalar_type);
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type.types.push_back(node);
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}
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slot_desc.slotType = type;
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slot_desc.columnPos = 0;
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slot_desc.byteOffset = 0;
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slot_desc.nullIndicatorByte = 0;
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slot_desc.nullIndicatorBit = -1;
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slot_desc.colName = "k1";
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slot_desc.slotIdx = 1;
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slot_desc.isMaterialized = true;
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t_desc_table.slotDescriptors.push_back(slot_desc);
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}
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// k2
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{
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TSlotDescriptor slot_desc;
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slot_desc.id = next_slot_id++;
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slot_desc.parent = 0;
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TTypeDesc type;
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{
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TTypeNode node;
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node.__set_type(TTypeNodeType::SCALAR);
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TScalarType scalar_type;
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scalar_type.__set_type(TPrimitiveType::INT);
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node.__set_scalar_type(scalar_type);
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type.types.push_back(node);
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}
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slot_desc.slotType = type;
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slot_desc.columnPos = 1;
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slot_desc.byteOffset = 4;
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slot_desc.nullIndicatorByte = 0;
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slot_desc.nullIndicatorBit = -1;
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slot_desc.colName = "k2";
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slot_desc.slotIdx = 2;
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slot_desc.isMaterialized = true;
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t_desc_table.slotDescriptors.push_back(slot_desc);
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}
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// k3
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{
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TSlotDescriptor slot_desc;
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slot_desc.id = next_slot_id++;
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slot_desc.parent = 0;
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TTypeDesc type;
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{
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TTypeNode node;
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node.__set_type(TTypeNodeType::SCALAR);
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TScalarType scalar_type;
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scalar_type.__set_type(TPrimitiveType::INT);
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node.__set_scalar_type(scalar_type);
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type.types.push_back(node);
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}
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slot_desc.slotType = type;
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slot_desc.columnPos = 1;
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slot_desc.byteOffset = 8;
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slot_desc.nullIndicatorByte = 0;
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slot_desc.nullIndicatorBit = -1;
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slot_desc.colName = "k3";
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slot_desc.slotIdx = 3;
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slot_desc.isMaterialized = true;
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t_desc_table.slotDescriptors.push_back(slot_desc);
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}
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// k4(partitioned column)
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{
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TSlotDescriptor slot_desc;
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slot_desc.id = next_slot_id++;
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slot_desc.parent = 0;
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TTypeDesc type;
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{
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TTypeNode node;
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node.__set_type(TTypeNodeType::SCALAR);
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TScalarType scalar_type;
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scalar_type.__set_type(TPrimitiveType::INT);
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node.__set_scalar_type(scalar_type);
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type.types.push_back(node);
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}
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slot_desc.slotType = type;
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slot_desc.columnPos = 1;
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slot_desc.byteOffset = 12;
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slot_desc.nullIndicatorByte = 0;
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slot_desc.nullIndicatorBit = -1;
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slot_desc.colName = "k4";
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slot_desc.slotIdx = 4;
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slot_desc.isMaterialized = true;
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t_desc_table.slotDescriptors.push_back(slot_desc);
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}
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t_desc_table.__isset.slotDescriptors = true;
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{
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// TTupleDescriptor dest
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TTupleDescriptor t_tuple_desc;
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t_tuple_desc.id = 0;
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t_tuple_desc.byteSize = 16;
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t_tuple_desc.numNullBytes = 0;
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t_tuple_desc.tableId = 0;
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t_tuple_desc.__isset.tableId = true;
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t_desc_table.tupleDescriptors.push_back(t_tuple_desc);
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}
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// source tuple descriptor
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// TSlotDescriptor
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// int offset = 1;
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// int i = 0;
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// k1
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{
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TSlotDescriptor slot_desc;
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slot_desc.id = next_slot_id++;
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slot_desc.parent = 1;
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TTypeDesc type;
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{
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TTypeNode node;
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node.__set_type(TTypeNodeType::SCALAR);
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TScalarType scalar_type;
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scalar_type.__set_type(TPrimitiveType::VARCHAR);
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scalar_type.__set_len(65535);
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node.__set_scalar_type(scalar_type);
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type.types.push_back(node);
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}
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slot_desc.slotType = type;
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slot_desc.columnPos = 0;
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slot_desc.byteOffset = 0;
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slot_desc.nullIndicatorByte = 0;
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slot_desc.nullIndicatorBit = -1;
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slot_desc.colName = "k1";
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slot_desc.slotIdx = 1;
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slot_desc.isMaterialized = true;
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t_desc_table.slotDescriptors.push_back(slot_desc);
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}
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// k2
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{
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TSlotDescriptor slot_desc;
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slot_desc.id = next_slot_id++;
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slot_desc.parent = 1;
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TTypeDesc type;
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{
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TTypeNode node;
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node.__set_type(TTypeNodeType::SCALAR);
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TScalarType scalar_type;
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scalar_type.__set_type(TPrimitiveType::VARCHAR);
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scalar_type.__set_len(65535);
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node.__set_scalar_type(scalar_type);
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type.types.push_back(node);
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}
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slot_desc.slotType = type;
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slot_desc.columnPos = 1;
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slot_desc.byteOffset = 16;
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slot_desc.nullIndicatorByte = 0;
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slot_desc.nullIndicatorBit = -1;
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slot_desc.colName = "k2";
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slot_desc.slotIdx = 2;
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slot_desc.isMaterialized = true;
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t_desc_table.slotDescriptors.push_back(slot_desc);
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}
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// k3
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{
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TSlotDescriptor slot_desc;
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slot_desc.id = next_slot_id++;
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slot_desc.parent = 1;
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TTypeDesc type;
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{
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TTypeNode node;
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node.__set_type(TTypeNodeType::SCALAR);
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TScalarType scalar_type;
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scalar_type.__set_type(TPrimitiveType::VARCHAR);
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scalar_type.__set_len(65535);
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node.__set_scalar_type(scalar_type);
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type.types.push_back(node);
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}
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slot_desc.slotType = type;
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slot_desc.columnPos = 1;
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slot_desc.byteOffset = 32;
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slot_desc.nullIndicatorByte = 0;
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slot_desc.nullIndicatorBit = -1;
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slot_desc.colName = "k3";
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slot_desc.slotIdx = 3;
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slot_desc.isMaterialized = true;
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t_desc_table.slotDescriptors.push_back(slot_desc);
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}
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// k4(partitioned column)
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{
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TSlotDescriptor slot_desc;
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slot_desc.id = next_slot_id++;
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slot_desc.parent = 1;
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TTypeDesc type;
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{
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TTypeNode node;
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node.__set_type(TTypeNodeType::SCALAR);
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TScalarType scalar_type;
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scalar_type.__set_type(TPrimitiveType::VARCHAR);
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scalar_type.__set_len(65535);
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node.__set_scalar_type(scalar_type);
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type.types.push_back(node);
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}
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slot_desc.slotType = type;
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slot_desc.columnPos = 1;
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slot_desc.byteOffset = 48;
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slot_desc.nullIndicatorByte = 0;
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slot_desc.nullIndicatorBit = -1;
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slot_desc.colName = "k4";
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slot_desc.slotIdx = 4;
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slot_desc.isMaterialized = true;
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t_desc_table.slotDescriptors.push_back(slot_desc);
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}
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{
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// TTupleDescriptor source
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TTupleDescriptor t_tuple_desc;
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t_tuple_desc.id = 1;
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t_tuple_desc.byteSize = 60;
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t_tuple_desc.numNullBytes = 0;
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t_tuple_desc.tableId = 0;
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t_tuple_desc.__isset.tableId = true;
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t_desc_table.tupleDescriptors.push_back(t_tuple_desc);
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}
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DescriptorTbl::create(&_obj_pool, t_desc_table, &_desc_tbl);
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_runtime_state.set_desc_tbl(_desc_tbl);
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}
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void BrokerScanNodeTest::init() {
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_params.column_separator = ',';
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_params.line_delimiter = '\n';
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TTypeDesc int_type;
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{
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TTypeNode node;
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node.__set_type(TTypeNodeType::SCALAR);
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TScalarType scalar_type;
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scalar_type.__set_type(TPrimitiveType::INT);
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node.__set_scalar_type(scalar_type);
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int_type.types.push_back(node);
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}
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TTypeDesc varchar_type;
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{
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TTypeNode node;
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node.__set_type(TTypeNodeType::SCALAR);
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TScalarType scalar_type;
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scalar_type.__set_type(TPrimitiveType::VARCHAR);
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scalar_type.__set_len(5000);
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node.__set_scalar_type(scalar_type);
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varchar_type.types.push_back(node);
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}
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for (int i = 0; i < 4; ++i) {
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TExprNode cast_expr;
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cast_expr.node_type = TExprNodeType::CAST_EXPR;
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cast_expr.type = int_type;
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cast_expr.__set_opcode(TExprOpcode::CAST);
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cast_expr.__set_num_children(1);
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cast_expr.__set_output_scale(-1);
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cast_expr.__isset.fn = true;
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cast_expr.fn.name.function_name = "casttoint";
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cast_expr.fn.binary_type = TFunctionBinaryType::BUILTIN;
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cast_expr.fn.arg_types.push_back(varchar_type);
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cast_expr.fn.ret_type = int_type;
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cast_expr.fn.has_var_args = false;
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cast_expr.fn.__set_signature("casttoint(VARCHAR(*))");
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cast_expr.fn.__isset.scalar_fn = true;
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cast_expr.fn.scalar_fn.symbol = "doris::CastFunctions::cast_to_int_val";
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TExprNode slot_ref;
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slot_ref.node_type = TExprNodeType::SLOT_REF;
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slot_ref.type = varchar_type;
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slot_ref.num_children = 0;
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slot_ref.__isset.slot_ref = true;
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slot_ref.slot_ref.slot_id = 5 + i;
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slot_ref.slot_ref.tuple_id = 1;
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TExpr expr;
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expr.nodes.push_back(cast_expr);
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expr.nodes.push_back(slot_ref);
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_params.expr_of_dest_slot.emplace(i + 1, expr);
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_params.src_slot_ids.push_back(5 + i);
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}
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// _params.__isset.expr_of_dest_slot = true;
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_params.__set_dest_tuple_id(0);
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_params.__set_src_tuple_id(1);
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init_desc_table();
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// Node Id
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_tnode.node_id = 0;
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_tnode.node_type = TPlanNodeType::SCHEMA_SCAN_NODE;
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_tnode.num_children = 0;
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_tnode.limit = -1;
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_tnode.row_tuples.push_back(0);
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_tnode.nullable_tuples.push_back(false);
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_tnode.broker_scan_node.tuple_id = 0;
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_tnode.__isset.broker_scan_node = true;
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}
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TEST_F(BrokerScanNodeTest, normal) {
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BrokerScanNode scan_node(&_obj_pool, _tnode, *_desc_tbl);
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auto status = scan_node.prepare(&_runtime_state);
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ASSERT_TRUE(status.ok());
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// set scan range
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std::vector<TScanRangeParams> scan_ranges;
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{
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TScanRangeParams scan_range_params;
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TBrokerScanRange broker_scan_range;
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broker_scan_range.params = _params;
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TBrokerRangeDesc range;
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range.path = "./be/test/exec/test_data/broker_scanner/normal.csv";
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range.start_offset = 0;
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range.size = -1;
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range.file_type = TFileType::FILE_LOCAL;
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range.format_type = TFileFormatType::FORMAT_CSV_PLAIN;
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range.splittable = true;
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std::vector<std::string> columns_from_path{"1"};
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range.__set_columns_from_path(columns_from_path);
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range.__set_num_of_columns_from_file(3);
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broker_scan_range.ranges.push_back(range);
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scan_range_params.scan_range.__set_broker_scan_range(broker_scan_range);
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scan_ranges.push_back(scan_range_params);
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}
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{
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TScanRangeParams scan_range_params;
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TBrokerScanRange broker_scan_range;
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broker_scan_range.params = _params;
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TBrokerRangeDesc range;
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range.path = "./be/test/exec/test_data/broker_scanner/normal.csv";
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range.start_offset = 1;
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range.size = 7;
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range.file_type = TFileType::FILE_LOCAL;
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range.format_type = TFileFormatType::FORMAT_CSV_PLAIN;
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range.splittable = true;
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std::vector<std::string> columns_from_path{"2"};
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range.__set_columns_from_path(columns_from_path);
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range.__set_num_of_columns_from_file(3);
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broker_scan_range.ranges.push_back(range);
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scan_range_params.scan_range.__set_broker_scan_range(broker_scan_range);
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scan_ranges.push_back(scan_range_params);
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}
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scan_node.set_scan_ranges(scan_ranges);
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status = scan_node.open(&_runtime_state);
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ASSERT_TRUE(status.ok());
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MemTracker tracker;
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// Get batch
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RowBatch batch(scan_node.row_desc(), _runtime_state.batch_size(), &tracker);
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bool eos = false;
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status = scan_node.get_next(&_runtime_state, &batch, &eos);
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ASSERT_EQ(3, batch.num_rows());
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ASSERT_FALSE(eos);
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batch.reset();
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status = scan_node.get_next(&_runtime_state, &batch, &eos);
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ASSERT_EQ(1, batch.num_rows());
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ASSERT_FALSE(eos);
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batch.reset();
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status = scan_node.get_next(&_runtime_state, &batch, &eos);
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ASSERT_EQ(0, batch.num_rows());
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ASSERT_TRUE(eos);
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scan_node.close(&_runtime_state);
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{
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std::stringstream ss;
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scan_node.runtime_profile()->pretty_print(&ss);
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LOG(INFO) << ss.str();
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}
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}
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}
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int main(int argc, char** argv) {
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// std::string conffile = std::string(getenv("DORIS_HOME")) + "/conf/be.conf";
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// if (!doris::config::init(conffile.c_str(), false)) {
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// fprintf(stderr, "error read config file. \n");
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// return -1;
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// }
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// init_glog("be-test");
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::testing::InitGoogleTest(&argc, argv);
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return RUN_ALL_TESTS();
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|
}
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