Coverage Report

Created: 2026-04-16 20:39

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/exec/exchange/vdata_stream_sender.cpp
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Source
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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/exchange/vdata_stream_sender.h"
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#include <fmt/format.h>
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#include <fmt/ranges.h> // IWYU pragma: keep
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#include <gen_cpp/DataSinks_types.h>
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#include <gen_cpp/Metrics_types.h>
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#include <gen_cpp/Types_types.h>
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#include <gen_cpp/data.pb.h>
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#include <gen_cpp/internal_service.pb.h>
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#include <glog/logging.h>
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#include <stddef.h>
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#include <algorithm>
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#include <cstdint>
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#include <functional>
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#include <map>
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#include <memory>
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#include <random>
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#include "common/object_pool.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/common/sip_hash.h"
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#include "exec/exchange/vdata_stream_mgr.h"
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#include "exec/exchange/vdata_stream_recvr.h"
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#include "exec/operator/exchange_sink_operator.h"
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#include "exec/operator/result_file_sink_operator.h"
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#include "exec/sink/vrow_distribution.h"
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#include "exec/sink/writer/vtablet_writer_v2.h"
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#include "exprs/vexpr.h"
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#include "runtime/descriptors.h"
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#include "runtime/runtime_state.h"
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#include "runtime/thread_context.h"
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#include "storage/tablet_info.h"
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#include "util/proto_util.h"
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namespace doris {
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56
23
Status Channel::init(RuntimeState* state) {
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    // only enable_local_exchange() is true and the destination address is localhost, then the channel is local
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23
    _is_local &= state->enable_local_exchange();
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23
    if (_is_local) {
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13
        return Status::OK();
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13
    }
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10
    RETURN_IF_ERROR(_init_brpc_stub(state));
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10
    return Status::OK();
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10
}
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0
Status Channel::_init_brpc_stub(RuntimeState* state) {
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0
    if (_brpc_dest_addr.hostname.empty()) {
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0
        LOG(WARNING) << "there is no brpc destination address's hostname"
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0
                        ", maybe version is not compatible.";
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0
        return Status::InternalError("no brpc destination");
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0
    }
75
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0
    auto network_address = _brpc_dest_addr;
77
0
    if (_brpc_dest_addr.hostname == BackendOptions::get_localhost()) {
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0
        _brpc_stub = state->exec_env()->brpc_internal_client_cache()->get_client(
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0
                "127.0.0.1", _brpc_dest_addr.port);
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0
        network_address.hostname = "127.0.0.1";
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0
    } else {
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0
        _brpc_stub = state->exec_env()->brpc_internal_client_cache()->get_client(_brpc_dest_addr);
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0
    }
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85
0
    if (!_brpc_stub) {
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0
        std::string msg = fmt::format("Get rpc stub failed, dest_addr={}:{}",
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0
                                      _brpc_dest_addr.hostname, _brpc_dest_addr.port);
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0
        LOG(WARNING) << msg;
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0
        return Status::InternalError(msg);
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0
    }
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0
    if (config::enable_brpc_connection_check) {
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0
        state->get_query_ctx()->add_using_brpc_stub(_brpc_dest_addr, _brpc_stub);
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0
    }
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0
    return Status::OK();
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0
}
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23
Status Channel::open(RuntimeState* state) {
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23
    if (_is_local) {
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13
        RETURN_IF_ERROR(_find_local_recvr(state));
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13
    }
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23
    _be_number = state->be_number();
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23
    _brpc_timeout_ms = get_execution_rpc_timeout_ms(state->execution_timeout());
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23
    _serializer.set_is_local(_is_local);
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106
    // In bucket shuffle join will set fragment_instance_id (-1, -1)
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    // to build a camouflaged empty channel. the ip and port is '0.0.0.0:0"
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    // so the empty channel not need call function close_internal()
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23
    _need_close = (_fragment_instance_id.hi != -1 && _fragment_instance_id.lo != -1);
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23
    return Status::OK();
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23
}
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3
Status Channel::_find_local_recvr(RuntimeState* state) {
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3
    auto st = _parent->state()->exec_env()->vstream_mgr()->find_recvr(_fragment_instance_id,
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3
                                                                      _dest_node_id, &_local_recvr);
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3
    if (!st.ok()) {
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        // If could not find local receiver, then it means the channel is EOF.
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        // Maybe downstream task is finished already.
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        //if (_receiver_status.ok()) {
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        //    _receiver_status = Status::EndOfFile("local data stream receiver is deconstructed");
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        //}
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0
        LOG(INFO) << "Query: " << print_id(state->query_id())
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0
                  << " recvr is not found, maybe downstream task is finished. error st is: "
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0
                  << st.to_string();
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0
    }
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3
    return Status::OK();
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3
}
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Status Channel::add_rows(Block* block, const uint32_t* data, const uint32_t offset,
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0
                         const uint32_t size, bool eos) {
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0
    if (_fragment_instance_id.lo == -1) {
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0
        return Status::OK();
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0
    }
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0
    bool serialized = false;
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0
    if (_pblock == nullptr) {
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0
        _pblock = std::make_unique<PBlock>();
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0
    }
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0
    RETURN_IF_ERROR(_serializer.next_serialized_block(block, _pblock.get(), 1, &serialized, eos,
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0
                                                      data, offset, size));
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0
    if (serialized) {
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0
        RETURN_IF_ERROR(_send_current_block(eos));
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0
    }
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0
    return Status::OK();
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0
}
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8
std::shared_ptr<Dependency> Channel::get_local_channel_dependency() {
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8
    if (!_local_recvr) {
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5
        return nullptr;
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5
    }
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3
    return _local_recvr->get_local_channel_dependency(_parent->sender_id());
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8
}
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int64_t Channel::mem_usage() const {
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44
    return _serializer.mem_usage();
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44
}
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0
Status Channel::send_remote_block(std::unique_ptr<PBlock>&& block, bool eos) {
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0
    COUNTER_UPDATE(_parent->blocks_sent_counter(), 1);
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162
0
    if (eos) {
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0
        if (_eos_send) {
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0
            return Status::OK();
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0
        } else {
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0
            _eos_send = true;
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0
        }
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0
    }
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0
    if (eos || block->column_metas_size()) {
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0
        RETURN_IF_ERROR(_buffer->add_block(this, {std::move(block), eos}));
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0
    }
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0
    return Status::OK();
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0
}
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0
Status Channel::send_broadcast_block(std::shared_ptr<BroadcastPBlockHolder>& block, bool eos) {
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0
    COUNTER_UPDATE(_parent->blocks_sent_counter(), 1);
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0
    if (eos) {
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0
        if (_eos_send) {
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0
            return Status::OK();
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0
        }
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0
        _eos_send = true;
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0
    }
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0
    if (eos || block->get_block()->column_metas_size()) {
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0
        RETURN_IF_ERROR(_buffer->add_block(this, {block, eos}));
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0
    }
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0
    return Status::OK();
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0
}
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18
Status Channel::_send_current_block(bool eos) {
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18
    if (is_local()) {
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11
        return _send_local_block(eos);
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11
    }
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    // here _pblock maybe nullptr , but we must send the eos to the receiver
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7
    return send_remote_block(std::move(_pblock), eos);
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18
}
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11
Status Channel::_send_local_block(bool eos) {
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11
    Block block;
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11
    if (_serializer.get_block() != nullptr) {
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0
        block = _serializer.get_block()->to_block();
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0
        _serializer.get_block()->set_mutable_columns(block.clone_empty_columns());
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0
    }
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11
    if (!block.empty() || eos) { // if eos is true, we MUST to send an empty block
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11
        RETURN_IF_ERROR(send_local_block(&block, eos, true));
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11
    }
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11
    return Status::OK();
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11
}
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10
Status Channel::send_local_block(Block* block, bool eos, bool can_be_moved) {
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10
    SCOPED_TIMER(_parent->local_send_timer());
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10
    if (eos) {
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6
        if (_eos_send) {
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3
            return Status::OK();
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3
        } else {
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3
            _eos_send = true;
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3
        }
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6
    }
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7
    if (is_receiver_eof()) {
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0
        return _receiver_status;
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0
    }
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7
    auto receiver_status = _recvr_status();
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    // _local_recvr depdend on ExchangeLocalState* _parent to do some memory counter settings
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    // but it only owns a raw pointer, so that the ExchangeLocalState object may be deconstructed.
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    // Lock the fragment context to ensure the runtime state and other objects are not deconstructed
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7
    TaskExecutionContextSPtr ctx_lock = nullptr;
229
7
    if (receiver_status.ok() && _local_recvr != nullptr) {
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7
        ctx_lock = _local_recvr->task_exec_ctx();
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        // Do not return internal error, because when query finished, the downstream node
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        // may finish before upstream node. And the object maybe deconstructed. If return error
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        // then the upstream node may report error status to FE, the query is failed.
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7
        if (ctx_lock == nullptr) {
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0
            receiver_status = Status::EndOfFile("local data stream receiver is deconstructed");
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0
        }
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7
    }
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7
    if (receiver_status.ok()) {
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7
        COUNTER_UPDATE(_parent->local_bytes_send_counter(), block->bytes());
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7
        COUNTER_UPDATE(_parent->local_sent_rows(), block->rows());
241
7
        COUNTER_UPDATE(_parent->blocks_sent_counter(), 1);
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243
7
        const auto sender_id = _parent->sender_id();
244
7
        if (!block->empty()) [[likely]] {
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4
            _local_recvr->add_block(block, sender_id, can_be_moved);
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4
        }
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7
        if (eos) [[unlikely]] {
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3
            _local_recvr->remove_sender(sender_id, _be_number, Status::OK());
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3
            _parent->on_channel_finished(_fragment_instance_id.lo);
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3
        }
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7
        return Status::OK();
253
7
    } else {
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0
        _receiver_status = std::move(receiver_status);
255
0
        _parent->on_channel_finished(_fragment_instance_id.lo);
256
0
        return _receiver_status;
257
0
    }
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7
}
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0
std::string Channel::debug_string() const {
261
0
    fmt::memory_buffer debug_string_buffer;
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0
    fmt::format_to(debug_string_buffer,
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0
                   "fragment_instance_id: {}, _dest_node_id: {}, _is_local: {}, _receiver_status: "
264
0
                   "{}, _closed: {}, _need_close: {}, _be_number: {}, _eos_send: {}",
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0
                   print_id(_fragment_instance_id), _dest_node_id, _is_local,
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0
                   _receiver_status.to_string(), _closed, _need_close, _be_number, _eos_send);
267
0
    if (_is_local) {
268
0
        fmt::format_to(debug_string_buffer, "_local_recvr: {}", _local_recvr->debug_string());
269
0
    }
270
0
    return fmt::to_string(debug_string_buffer);
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0
}
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18
Status Channel::close(RuntimeState* state) {
274
18
    if (_closed) {
275
0
        return Status::OK();
276
0
    }
277
18
    _closed = true;
278
18
    if (!_need_close) {
279
0
        return Status::OK();
280
0
    }
281
282
18
    if (is_receiver_eof()) {
283
0
        _serializer.reset_block();
284
0
        return Status::OK();
285
18
    } else {
286
18
        return _send_current_block(true);
287
18
    }
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18
}
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290
BlockSerializer::BlockSerializer(ExchangeSinkLocalState* parent, bool is_local)
291
81
        : _parent(parent), _is_local(is_local), _batch_size(parent->state()->batch_size()) {}
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293
Status BlockSerializer::next_serialized_block(Block* block, PBlock* dest, size_t num_receivers,
294
                                              bool* serialized, bool eos, const uint32_t* data,
295
2
                                              const uint32_t offset, const uint32_t size) {
296
2
    if (_mutable_block == nullptr) {
297
2
        _mutable_block = MutableBlock::create_unique(block->clone_empty());
298
2
    }
299
300
2
    {
301
2
        SCOPED_TIMER(_parent->merge_block_timer());
302
2
        if (data) {
303
0
            if (size > 0) {
304
0
                RETURN_IF_ERROR(
305
0
                        _mutable_block->add_rows(block, data + offset, data + offset + size));
306
0
            }
307
2
        } else if (!block->empty()) {
308
2
            RETURN_IF_ERROR(_mutable_block->merge(*block));
309
2
        }
310
2
    }
311
312
2
    if (_mutable_block->rows() >= _batch_size || eos ||
313
2
        (_mutable_block->rows() > 0 && _mutable_block->allocated_bytes() > _buffer_mem_limit)) {
314
2
        if (!_is_local) {
315
0
            RETURN_IF_ERROR(_serialize_block(dest, num_receivers));
316
0
        }
317
2
        *serialized = true;
318
2
    } else {
319
0
        *serialized = false;
320
0
    }
321
2
    return Status::OK();
322
2
}
323
324
0
Status BlockSerializer::_serialize_block(PBlock* dest, size_t num_receivers) {
325
0
    if (_mutable_block && _mutable_block->rows() > 0) {
326
0
        auto block = _mutable_block->to_block();
327
0
        RETURN_IF_ERROR(serialize_block(&block, dest, num_receivers));
328
0
        if (_parent->state()->low_memory_mode()) {
329
0
            reset_block();
330
0
        } else {
331
0
            block.clear_column_data();
332
0
            _mutable_block->set_mutable_columns(block.mutate_columns());
333
0
        }
334
0
    }
335
336
0
    return Status::OK();
337
0
}
338
339
2
Status BlockSerializer::serialize_block(const Block* src, PBlock* dest, size_t num_receivers) {
340
2
    SCOPED_TIMER(_parent->_serialize_batch_timer);
341
2
    dest->Clear();
342
2
    size_t uncompressed_bytes = 0, compressed_bytes = 0;
343
2
    int64_t compress_time = 0;
344
2
    RETURN_IF_ERROR(src->serialize(_parent->_state->be_exec_version(), dest, &uncompressed_bytes,
345
2
                                   &compressed_bytes, &compress_time, _parent->compression_type(),
346
2
                                   _parent->transfer_large_data_by_brpc()));
347
2
    COUNTER_UPDATE(_parent->_bytes_sent_counter, compressed_bytes * num_receivers);
348
2
    COUNTER_UPDATE(_parent->_uncompressed_bytes_counter, uncompressed_bytes * num_receivers);
349
2
    COUNTER_UPDATE(_parent->_compress_timer, compress_time);
350
#ifndef BE_TEST
351
    _parent->state()->get_query_ctx()->resource_ctx()->io_context()->update_shuffle_send_bytes(
352
            compressed_bytes * num_receivers);
353
    _parent->state()->get_query_ctx()->resource_ctx()->io_context()->update_shuffle_send_rows(
354
            src->rows() * num_receivers);
355
#endif
356
357
2
    return Status::OK();
358
2
}
359
360
} // namespace doris