214 lines
8.6 KiB
C++
214 lines
8.6 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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// This file is copied from
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// https://github.com/apache/impala/blob/branch-2.9.0/be/src/runtime/data-stream-mgr.cc
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// and modified by Doris
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#include "runtime/data_stream_mgr.h"
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#include <iostream>
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#include <thread>
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#include "gen_cpp/BackendService.h"
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#include "gen_cpp/PaloInternalService_types.h"
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#include "gen_cpp/types.pb.h" // PUniqueId
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#include "runtime/data_stream_recvr.h"
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#include "runtime/raw_value.h"
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#include "runtime/row_batch.h"
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#include "runtime/runtime_state.h"
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#include "util/doris_metrics.h"
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namespace doris {
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DEFINE_GAUGE_METRIC_PROTOTYPE_2ARG(data_stream_receiver_count, MetricUnit::NOUNIT);
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DEFINE_GAUGE_METRIC_PROTOTYPE_2ARG(fragment_endpoint_count, MetricUnit::NOUNIT);
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using std::mutex;
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using std::shared_ptr;
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using std::unique_lock;
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using std::lock_guard;
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DataStreamMgr::DataStreamMgr() {
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REGISTER_HOOK_METRIC(data_stream_receiver_count, [this]() {
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// lock_guard<mutex> l(_lock);
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return _receiver_map.size();
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});
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REGISTER_HOOK_METRIC(fragment_endpoint_count, [this]() {
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// lock_guard<mutex> l(_lock);
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return _fragment_stream_set.size();
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});
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}
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DataStreamMgr::~DataStreamMgr() {
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DEREGISTER_HOOK_METRIC(data_stream_receiver_count);
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DEREGISTER_HOOK_METRIC(fragment_endpoint_count);
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}
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inline uint32_t DataStreamMgr::get_hash_value(const TUniqueId& fragment_instance_id,
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PlanNodeId node_id) {
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uint32_t value = RawValue::get_hash_value(&fragment_instance_id.lo, TYPE_BIGINT, 0);
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value = RawValue::get_hash_value(&fragment_instance_id.hi, TYPE_BIGINT, value);
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value = RawValue::get_hash_value(&node_id, TYPE_INT, value);
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return value;
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}
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shared_ptr<DataStreamRecvr> DataStreamMgr::create_recvr(
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RuntimeState* state, const RowDescriptor& row_desc, const TUniqueId& fragment_instance_id,
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PlanNodeId dest_node_id, int num_senders, int buffer_size, RuntimeProfile* profile,
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bool is_merging, std::shared_ptr<QueryStatisticsRecvr> sub_plan_query_statistics_recvr) {
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DCHECK(profile != nullptr);
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VLOG_FILE << "creating receiver for fragment=" << fragment_instance_id
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<< ", node=" << dest_node_id;
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shared_ptr<DataStreamRecvr> recvr(
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new DataStreamRecvr(this, row_desc, fragment_instance_id, dest_node_id, num_senders,
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is_merging, buffer_size, profile, sub_plan_query_statistics_recvr));
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uint32_t hash_value = get_hash_value(fragment_instance_id, dest_node_id);
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lock_guard<mutex> l(_lock);
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_fragment_stream_set.insert(std::make_pair(fragment_instance_id, dest_node_id));
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_receiver_map.insert(std::make_pair(hash_value, recvr));
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return recvr;
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}
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shared_ptr<DataStreamRecvr> DataStreamMgr::find_recvr(const TUniqueId& fragment_instance_id,
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PlanNodeId node_id, bool acquire_lock) {
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VLOG_ROW << "looking up fragment_instance_id=" << fragment_instance_id << ", node=" << node_id;
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size_t hash_value = get_hash_value(fragment_instance_id, node_id);
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if (acquire_lock) {
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_lock.lock();
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}
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std::pair<StreamMap::iterator, StreamMap::iterator> range =
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_receiver_map.equal_range(hash_value);
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while (range.first != range.second) {
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shared_ptr<DataStreamRecvr> recvr = range.first->second;
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if (recvr->fragment_instance_id() == fragment_instance_id &&
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recvr->dest_node_id() == node_id) {
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if (acquire_lock) {
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_lock.unlock();
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}
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return recvr;
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}
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++range.first;
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}
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if (acquire_lock) {
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_lock.unlock();
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}
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return shared_ptr<DataStreamRecvr>();
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}
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Status DataStreamMgr::transmit_data(const PTransmitDataParams* request,
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::google::protobuf::Closure** done) {
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const PUniqueId& finst_id = request->finst_id();
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TUniqueId t_finst_id;
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t_finst_id.hi = finst_id.hi();
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t_finst_id.lo = finst_id.lo();
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shared_ptr<DataStreamRecvr> recvr = find_recvr(t_finst_id, request->node_id());
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if (recvr == nullptr) {
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// The receiver may remove itself from the receiver map via deregister_recvr()
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// at any time without considering the remaining number of senders.
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// As a consequence, find_recvr() may return an innocuous nullptr if a thread
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// calling deregister_recvr() beat the thread calling find_recvr()
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// in acquiring _lock.
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// TODO: Rethink the lifecycle of DataStreamRecvr to distinguish
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// errors from receiver-initiated teardowns.
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return Status::OK();
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}
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// request can only be used before calling recvr's add_batch or when request
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// is the last for the sender, because request maybe released after it's batch
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// is consumed by ExchangeNode.
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if (request->has_query_statistics()) {
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recvr->add_sub_plan_statistics(request->query_statistics(), request->sender_id());
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}
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bool eos = request->eos();
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if (request->has_row_batch()) {
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recvr->add_batch(request->row_batch(), request->sender_id(), request->be_number(),
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request->packet_seq(), eos ? nullptr : done);
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}
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if (eos) {
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recvr->remove_sender(request->sender_id(), request->be_number());
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}
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return Status::OK();
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}
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Status DataStreamMgr::deregister_recvr(const TUniqueId& fragment_instance_id, PlanNodeId node_id) {
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std::shared_ptr<DataStreamRecvr> targert_recvr;
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VLOG_QUERY << "deregister_recvr(): fragment_instance_id=" << fragment_instance_id
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<< ", node=" << node_id;
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size_t hash_value = get_hash_value(fragment_instance_id, node_id);
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{
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lock_guard<mutex> l(_lock);
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std::pair<StreamMap::iterator, StreamMap::iterator> range =
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_receiver_map.equal_range(hash_value);
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while (range.first != range.second) {
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const shared_ptr<DataStreamRecvr>& recvr = range.first->second;
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if (recvr->fragment_instance_id() == fragment_instance_id &&
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recvr->dest_node_id() == node_id) {
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targert_recvr = recvr;
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_fragment_stream_set.erase(
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std::make_pair(recvr->fragment_instance_id(), recvr->dest_node_id()));
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_receiver_map.erase(range.first);
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break;
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}
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++range.first;
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}
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}
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// Notify concurrent add_data() requests that the stream has been terminated.
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// cancel_stream maybe take a long time, so we handle it out of lock.
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if (targert_recvr) {
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targert_recvr->cancel_stream();
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return Status::OK();
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} else {
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std::stringstream err;
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err << "unknown row receiver id: fragment_instance_id=" << fragment_instance_id
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<< " node_id=" << node_id;
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LOG(ERROR) << err.str();
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return Status::InternalError(err.str());
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}
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}
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void DataStreamMgr::cancel(const TUniqueId& fragment_instance_id) {
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VLOG_QUERY << "cancelling all streams for fragment=" << fragment_instance_id;
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std::vector<std::shared_ptr<DataStreamRecvr>> recvrs;
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{
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lock_guard<mutex> l(_lock);
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FragmentStreamSet::iterator i =
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_fragment_stream_set.lower_bound(std::make_pair(fragment_instance_id, 0));
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while (i != _fragment_stream_set.end() && i->first == fragment_instance_id) {
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shared_ptr<DataStreamRecvr> recvr = find_recvr(i->first, i->second, false);
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if (recvr == nullptr) {
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// keep going but at least log it
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std::stringstream err;
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err << "cancel(): missing in stream_map: fragment=" << i->first
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<< " node=" << i->second;
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LOG(ERROR) << err.str();
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} else {
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recvrs.push_back(recvr);
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}
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++i;
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}
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}
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// cancel_stream maybe take a long time, so we handle it out of lock.
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for (auto& it : recvrs) {
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it->cancel_stream();
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}
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}
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} // namespace doris
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