Coverage Report

Created: 2026-07-19 23:44

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/exec/partitioner/partitioner.cpp
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// 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/partitioner/partitioner.h"
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#include "common/cast_set.h"
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#include "common/status.h"
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#include "core/column/column_const.h"
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#include "exec/exchange/local_exchange_sink_operator.h"
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#include "exec/exchange/vdata_stream_sender.h"
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#include "runtime/thread_context.h"
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namespace doris {
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template <typename ChannelIds>
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384k
Status Crc32HashPartitioner<ChannelIds>::do_partitioning(RuntimeState* state, Block* block) const {
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384k
    size_t rows = block->rows();
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384k
    if (rows > 0) {
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70.8k
        auto column_to_keep = block->columns();
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70.8k
        int result_size = cast_set<int>(_partition_expr_ctxs.size());
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70.8k
        std::vector<int> result(result_size);
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70.8k
        _initialize_hash_vals(rows);
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70.8k
        auto* __restrict hashes = _hash_vals.data();
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70.8k
        RETURN_IF_ERROR(_get_partition_column_result(block, result));
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163k
        for (int j = 0; j < result_size; ++j) {
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92.6k
            const auto& [col, is_const] = unpack_if_const(block->get_by_position(result[j]).column);
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92.6k
            if (is_const) {
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1
                continue;
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1
            }
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92.6k
            _do_hash(col, hashes, j);
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92.6k
        }
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91.6M
        for (size_t i = 0; i < rows; i++) {
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91.6M
            hashes[i] = ChannelIds()(hashes[i], _partition_count);
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91.6M
        }
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70.8k
        Block::erase_useless_column(block, column_to_keep);
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70.8k
    }
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384k
    return Status::OK();
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384k
}
_ZNK5doris20Crc32HashPartitionerINS_17ShuffleChannelIdsEE15do_partitioningEPNS_12RuntimeStateEPNS_5BlockE
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30
13.0k
Status Crc32HashPartitioner<ChannelIds>::do_partitioning(RuntimeState* state, Block* block) const {
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13.0k
    size_t rows = block->rows();
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13.0k
    if (rows > 0) {
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5.63k
        auto column_to_keep = block->columns();
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5.63k
        int result_size = cast_set<int>(_partition_expr_ctxs.size());
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5.63k
        std::vector<int> result(result_size);
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5.63k
        _initialize_hash_vals(rows);
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5.63k
        auto* __restrict hashes = _hash_vals.data();
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5.63k
        RETURN_IF_ERROR(_get_partition_column_result(block, result));
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12.1k
        for (int j = 0; j < result_size; ++j) {
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6.51k
            const auto& [col, is_const] = unpack_if_const(block->get_by_position(result[j]).column);
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6.51k
            if (is_const) {
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0
                continue;
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0
            }
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6.51k
            _do_hash(col, hashes, j);
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6.51k
        }
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4.70M
        for (size_t i = 0; i < rows; i++) {
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4.70M
            hashes[i] = ChannelIds()(hashes[i], _partition_count);
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4.70M
        }
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5.63k
        Block::erase_useless_column(block, column_to_keep);
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5.63k
    }
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13.0k
    return Status::OK();
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13.0k
}
_ZNK5doris20Crc32HashPartitionerINS_24SpillPartitionChannelIdsEE15do_partitioningEPNS_12RuntimeStateEPNS_5BlockE
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30
8
Status Crc32HashPartitioner<ChannelIds>::do_partitioning(RuntimeState* state, Block* block) const {
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8
    size_t rows = block->rows();
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8
    if (rows > 0) {
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        auto column_to_keep = block->columns();
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        int result_size = cast_set<int>(_partition_expr_ctxs.size());
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        std::vector<int> result(result_size);
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        _initialize_hash_vals(rows);
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        auto* __restrict hashes = _hash_vals.data();
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        RETURN_IF_ERROR(_get_partition_column_result(block, result));
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        for (int j = 0; j < result_size; ++j) {
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            const auto& [col, is_const] = unpack_if_const(block->get_by_position(result[j]).column);
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8
            if (is_const) {
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0
                continue;
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0
            }
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8
            _do_hash(col, hashes, j);
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8
        }
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3.14M
        for (size_t i = 0; i < rows; i++) {
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3.14M
            hashes[i] = ChannelIds()(hashes[i], _partition_count);
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3.14M
        }
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        Block::erase_useless_column(block, column_to_keep);
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    }
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    return Status::OK();
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}
_ZNK5doris20Crc32HashPartitionerINS_26SpillRePartitionChannelIdsEE15do_partitioningEPNS_12RuntimeStateEPNS_5BlockE
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8
Status Crc32HashPartitioner<ChannelIds>::do_partitioning(RuntimeState* state, Block* block) const {
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    size_t rows = block->rows();
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    if (rows > 0) {
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        auto column_to_keep = block->columns();
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        int result_size = cast_set<int>(_partition_expr_ctxs.size());
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        std::vector<int> result(result_size);
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        _initialize_hash_vals(rows);
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        auto* __restrict hashes = _hash_vals.data();
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        RETURN_IF_ERROR(_get_partition_column_result(block, result));
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        for (int j = 0; j < result_size; ++j) {
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            const auto& [col, is_const] = unpack_if_const(block->get_by_position(result[j]).column);
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8
            if (is_const) {
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0
                continue;
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0
            }
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            _do_hash(col, hashes, j);
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        }
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        for (size_t i = 0; i < rows; i++) {
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            hashes[i] = ChannelIds()(hashes[i], _partition_count);
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        }
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        Block::erase_useless_column(block, column_to_keep);
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    }
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    return Status::OK();
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}
_ZNK5doris20Crc32HashPartitionerINS_15ShiftChannelIdsEE15do_partitioningEPNS_12RuntimeStateEPNS_5BlockE
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371k
Status Crc32HashPartitioner<ChannelIds>::do_partitioning(RuntimeState* state, Block* block) const {
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371k
    size_t rows = block->rows();
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371k
    if (rows > 0) {
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65.1k
        auto column_to_keep = block->columns();
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65.1k
        int result_size = cast_set<int>(_partition_expr_ctxs.size());
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65.1k
        std::vector<int> result(result_size);
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65.1k
        _initialize_hash_vals(rows);
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65.1k
        auto* __restrict hashes = _hash_vals.data();
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65.1k
        RETURN_IF_ERROR(_get_partition_column_result(block, result));
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151k
        for (int j = 0; j < result_size; ++j) {
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86.0k
            const auto& [col, is_const] = unpack_if_const(block->get_by_position(result[j]).column);
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86.0k
            if (is_const) {
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1
                continue;
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1
            }
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86.0k
            _do_hash(col, hashes, j);
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86.0k
        }
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83.8M
        for (size_t i = 0; i < rows; i++) {
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83.7M
            hashes[i] = ChannelIds()(hashes[i], _partition_count);
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83.7M
        }
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65.1k
        Block::erase_useless_column(block, column_to_keep);
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65.1k
    }
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371k
    return Status::OK();
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371k
}
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template <typename ChannelIds>
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void Crc32HashPartitioner<ChannelIds>::_do_hash(const ColumnPtr& column,
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6.51k
                                                HashValType* __restrict result, int idx) const {
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6.51k
    column->update_crcs_with_value(
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6.51k
            result, _partition_expr_ctxs[idx]->root()->data_type()->get_primitive_type(),
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6.51k
            cast_set<HashValType>(column->size()));
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6.51k
}
_ZNK5doris20Crc32HashPartitionerINS_17ShuffleChannelIdsEE8_do_hashERKNS_3COWINS_7IColumnEE13immutable_ptrIS4_EEPji
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6.49k
                                                HashValType* __restrict result, int idx) const {
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6.49k
    column->update_crcs_with_value(
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6.49k
            result, _partition_expr_ctxs[idx]->root()->data_type()->get_primitive_type(),
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6.49k
            cast_set<HashValType>(column->size()));
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6.49k
}
_ZNK5doris20Crc32HashPartitionerINS_24SpillPartitionChannelIdsEE8_do_hashERKNS_3COWINS_7IColumnEE13immutable_ptrIS4_EEPji
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8
                                                HashValType* __restrict result, int idx) const {
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8
    column->update_crcs_with_value(
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            result, _partition_expr_ctxs[idx]->root()->data_type()->get_primitive_type(),
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            cast_set<HashValType>(column->size()));
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}
_ZNK5doris20Crc32HashPartitionerINS_26SpillRePartitionChannelIdsEE8_do_hashERKNS_3COWINS_7IColumnEE13immutable_ptrIS4_EEPji
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61
8
                                                HashValType* __restrict result, int idx) const {
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    column->update_crcs_with_value(
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            result, _partition_expr_ctxs[idx]->root()->data_type()->get_primitive_type(),
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            cast_set<HashValType>(column->size()));
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8
}
Unexecuted instantiation: _ZNK5doris20Crc32HashPartitionerINS_15ShiftChannelIdsEE8_do_hashERKNS_3COWINS_7IColumnEE13immutable_ptrIS4_EEPji
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template <typename ChannelIds>
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Status Crc32HashPartitioner<ChannelIds>::clone(RuntimeState* state,
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527
                                               std::unique_ptr<PartitionerBase>& partitioner) {
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    auto* new_partitioner = new Crc32HashPartitioner<ChannelIds>(_partition_count);
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527
    partitioner.reset(new_partitioner);
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527
    return _clone_expr_ctxs(state, new_partitioner->_partition_expr_ctxs);
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527
}
_ZN5doris20Crc32HashPartitionerINS_17ShuffleChannelIdsEE5cloneEPNS_12RuntimeStateERSt10unique_ptrINS_15PartitionerBaseESt14default_deleteIS6_EE
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518
                                               std::unique_ptr<PartitionerBase>& partitioner) {
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    auto* new_partitioner = new Crc32HashPartitioner<ChannelIds>(_partition_count);
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518
    partitioner.reset(new_partitioner);
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    return _clone_expr_ctxs(state, new_partitioner->_partition_expr_ctxs);
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518
}
_ZN5doris20Crc32HashPartitionerINS_24SpillPartitionChannelIdsEE5cloneEPNS_12RuntimeStateERSt10unique_ptrINS_15PartitionerBaseESt14default_deleteIS6_EE
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69
5
                                               std::unique_ptr<PartitionerBase>& partitioner) {
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5
    auto* new_partitioner = new Crc32HashPartitioner<ChannelIds>(_partition_count);
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5
    partitioner.reset(new_partitioner);
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5
    return _clone_expr_ctxs(state, new_partitioner->_partition_expr_ctxs);
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5
}
_ZN5doris20Crc32HashPartitionerINS_26SpillRePartitionChannelIdsEE5cloneEPNS_12RuntimeStateERSt10unique_ptrINS_15PartitionerBaseESt14default_deleteIS6_EE
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69
4
                                               std::unique_ptr<PartitionerBase>& partitioner) {
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4
    auto* new_partitioner = new Crc32HashPartitioner<ChannelIds>(_partition_count);
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4
    partitioner.reset(new_partitioner);
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4
    return _clone_expr_ctxs(state, new_partitioner->_partition_expr_ctxs);
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4
}
Unexecuted instantiation: _ZN5doris20Crc32HashPartitionerINS_15ShiftChannelIdsEE5cloneEPNS_12RuntimeStateERSt10unique_ptrINS_15PartitionerBaseESt14default_deleteIS6_EE
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void Crc32CHashPartitioner::_do_hash(const ColumnPtr& column, HashValType* __restrict result,
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86.0k
                                     int idx) const {
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86.0k
    column->update_crc32c_batch(result, nullptr);
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86.0k
}
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Status Crc32CHashPartitioner::clone(RuntimeState* state,
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189k
                                    std::unique_ptr<PartitionerBase>& partitioner) {
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189k
    auto* new_partitioner = new Crc32CHashPartitioner(_partition_count);
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189k
    partitioner.reset(new_partitioner);
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189k
    return _clone_expr_ctxs(state, new_partitioner->_partition_expr_ctxs);
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189k
}
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template class Crc32HashPartitioner<ShuffleChannelIds>;
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template class Crc32HashPartitioner<SpillPartitionChannelIds>;
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template class Crc32HashPartitioner<SpillRePartitionChannelIds>;
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} // namespace doris