According to the requirements of the APLv2, the referenced code needs to be marked with the path of the source code.
466 lines
17 KiB
C++
466 lines
17 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/runtime-state.cpp
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// and modified by Doris
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#include "runtime/runtime_state.h"
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#include <boost/algorithm/string/join.hpp>
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#include <fmt/format.h>
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#include <sstream>
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#include <string>
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#include "common/logging.h"
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#include "common/object_pool.h"
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#include "common/status.h"
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#include "exec/exec_node.h"
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#include "runtime/buffered_block_mgr2.h"
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#include "runtime/bufferpool/reservation_tracker.h"
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#include "runtime/bufferpool/reservation_util.h"
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#include "runtime/exec_env.h"
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#include "runtime/initial_reservations.h"
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#include "runtime/load_path_mgr.h"
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#include "runtime/mem_tracker.h"
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#include "runtime/mem_tracker_task_pool.h"
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#include "runtime/runtime_filter_mgr.h"
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#include "util/file_utils.h"
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#include "util/load_error_hub.h"
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#include "util/pretty_printer.h"
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#include "util/timezone_utils.h"
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#include "util/uid_util.h"
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namespace doris {
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// for ut only
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RuntimeState::RuntimeState(const TUniqueId& fragment_instance_id,
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const TQueryOptions& query_options, const TQueryGlobals& query_globals,
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ExecEnv* exec_env)
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: _profile("Fragment " + print_id(fragment_instance_id)),
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_obj_pool(new ObjectPool()),
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_runtime_filter_mgr(new RuntimeFilterMgr(TUniqueId(), this)),
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_data_stream_recvrs_pool(new ObjectPool()),
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_unreported_error_idx(0),
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_is_cancelled(false),
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_per_fragment_instance_idx(0),
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_root_node_id(-1),
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_num_rows_load_total(0),
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_num_rows_load_filtered(0),
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_num_rows_load_unselected(0),
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_num_print_error_rows(0),
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_num_bytes_load_total(0),
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_load_job_id(-1),
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_normal_row_number(0),
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_error_row_number(0),
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_error_log_file_path(""),
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_error_log_file(nullptr),
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_instance_buffer_reservation(new ReservationTracker) {
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Status status = init(fragment_instance_id, query_options, query_globals, exec_env);
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DCHECK(status.ok());
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}
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RuntimeState::RuntimeState(const TPlanFragmentExecParams& fragment_exec_params,
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const TQueryOptions& query_options, const TQueryGlobals& query_globals,
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ExecEnv* exec_env)
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: _profile("Fragment " + print_id(fragment_exec_params.fragment_instance_id)),
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_obj_pool(new ObjectPool()),
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_runtime_filter_mgr(new RuntimeFilterMgr(fragment_exec_params.query_id, this)),
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_data_stream_recvrs_pool(new ObjectPool()),
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_unreported_error_idx(0),
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_query_id(fragment_exec_params.query_id),
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_is_cancelled(false),
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_per_fragment_instance_idx(0),
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_root_node_id(-1),
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_num_rows_load_total(0),
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_num_rows_load_filtered(0),
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_num_rows_load_unselected(0),
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_num_print_error_rows(0),
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_num_bytes_load_total(0),
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_normal_row_number(0),
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_error_row_number(0),
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_error_log_file_path(""),
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_error_log_file(nullptr),
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_instance_buffer_reservation(new ReservationTracker) {
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if (fragment_exec_params.__isset.runtime_filter_params) {
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_runtime_filter_mgr->set_runtime_filter_params(fragment_exec_params.runtime_filter_params);
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}
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Status status =
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init(fragment_exec_params.fragment_instance_id, query_options, query_globals, exec_env);
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DCHECK(status.ok());
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}
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RuntimeState::RuntimeState(const TQueryGlobals& query_globals)
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: _profile("<unnamed>"),
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_obj_pool(new ObjectPool()),
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_data_stream_recvrs_pool(new ObjectPool()),
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_unreported_error_idx(0),
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_is_cancelled(false),
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_per_fragment_instance_idx(0) {
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_query_options.batch_size = DEFAULT_BATCH_SIZE;
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if (query_globals.__isset.time_zone) {
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_timezone = query_globals.time_zone;
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_timestamp_ms = query_globals.timestamp_ms;
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} else if (!query_globals.now_string.empty()) {
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_timezone = TimezoneUtils::default_time_zone;
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DateTimeValue dt;
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dt.from_date_str(query_globals.now_string.c_str(), query_globals.now_string.size());
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int64_t timestamp;
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dt.unix_timestamp(×tamp, _timezone);
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_timestamp_ms = timestamp * 1000;
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} else {
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//Unit test may set into here
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_timezone = TimezoneUtils::default_time_zone;
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_timestamp_ms = 0;
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}
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TimezoneUtils::find_cctz_time_zone(_timezone, _timezone_obj);
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}
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RuntimeState::~RuntimeState() {
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_block_mgr2.reset();
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// close error log file
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if (_error_log_file != nullptr && _error_log_file->is_open()) {
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_error_log_file->close();
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delete _error_log_file;
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_error_log_file = nullptr;
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}
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if (_error_hub != nullptr) {
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_error_hub->close();
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}
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// Release the reservation, which should be unused at the point.
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if (_instance_buffer_reservation != nullptr) {
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_instance_buffer_reservation->Close();
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}
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if (_initial_reservations != nullptr) {
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_initial_reservations->ReleaseResources();
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}
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if (_buffer_reservation != nullptr) {
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_buffer_reservation->Close();
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}
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}
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Status RuntimeState::init(const TUniqueId& fragment_instance_id, const TQueryOptions& query_options,
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const TQueryGlobals& query_globals, ExecEnv* exec_env) {
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_fragment_instance_id = fragment_instance_id;
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_query_options = query_options;
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if (query_globals.__isset.time_zone) {
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_timezone = query_globals.time_zone;
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_timestamp_ms = query_globals.timestamp_ms;
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} else if (!query_globals.now_string.empty()) {
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_timezone = TimezoneUtils::default_time_zone;
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DateTimeValue dt;
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dt.from_date_str(query_globals.now_string.c_str(), query_globals.now_string.size());
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int64_t timestamp;
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dt.unix_timestamp(×tamp, _timezone);
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_timestamp_ms = timestamp * 1000;
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} else {
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//Unit test may set into here
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_timezone = TimezoneUtils::default_time_zone;
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_timestamp_ms = 0;
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}
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TimezoneUtils::find_cctz_time_zone(_timezone, _timezone_obj);
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if (query_globals.__isset.load_zero_tolerance) {
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_load_zero_tolerance = query_globals.load_zero_tolerance;
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}
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_exec_env = exec_env;
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if (_query_options.max_errors <= 0) {
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// TODO: fix linker error and uncomment this
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//_query_options.max_errors = config::max_errors;
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_query_options.max_errors = 100;
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}
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if (_query_options.batch_size <= 0) {
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_query_options.batch_size = DEFAULT_BATCH_SIZE;
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}
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_db_name = "insert_stmt";
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_import_label = print_id(fragment_instance_id);
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return Status::OK();
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}
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Status RuntimeState::init_mem_trackers(const TUniqueId& query_id) {
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bool has_query_mem_tracker = _query_options.__isset.mem_limit && (_query_options.mem_limit > 0);
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int64_t bytes_limit = has_query_mem_tracker ? _query_options.mem_limit : -1;
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if (bytes_limit > MemTracker::get_process_tracker()->limit()) {
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VLOG_NOTICE << "Query memory limit " << PrettyPrinter::print(bytes_limit, TUnit::BYTES)
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<< " exceeds process memory limit of "
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<< PrettyPrinter::print(MemTracker::get_process_tracker()->limit(), TUnit::BYTES)
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<< ". Using process memory limit instead";
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bytes_limit = MemTracker::get_process_tracker()->limit();
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}
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auto mem_tracker_counter = ADD_COUNTER(&_profile, "MemoryLimit", TUnit::BYTES);
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mem_tracker_counter->set(bytes_limit);
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if (query_type() == TQueryType::SELECT) {
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_query_mem_tracker = _exec_env->task_pool_mem_tracker_registry()->register_query_mem_tracker(
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print_id(query_id), bytes_limit);
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} else if (query_type() == TQueryType::LOAD) {
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_query_mem_tracker = _exec_env->task_pool_mem_tracker_registry()->register_load_mem_tracker(
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print_id(query_id), bytes_limit);
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} else {
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DCHECK(false);
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}
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_instance_mem_tracker = MemTracker::create_tracker(
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bytes_limit, "RuntimeState:instance:" + print_id(_fragment_instance_id), _query_mem_tracker,
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MemTrackerLevel::INSTANCE, &_profile);
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RETURN_IF_ERROR(init_buffer_poolstate());
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_initial_reservations = _obj_pool->add(
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new InitialReservations(_obj_pool.get(), _buffer_reservation, nullptr,
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_query_options.initial_reservation_total_claims));
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RETURN_IF_ERROR(_initial_reservations->Init(_query_id, min_reservation()));
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DCHECK_EQ(0, _initial_reservation_refcnt.load());
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if (_instance_buffer_reservation != nullptr) {
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_instance_buffer_reservation->InitChildTracker(&_profile, _buffer_reservation, nullptr,
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std::numeric_limits<int64_t>::max());
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}
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// filter manager depends _instance_mem_tracker
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_runtime_filter_mgr->init();
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return Status::OK();
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}
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Status RuntimeState::init_instance_mem_tracker() {
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_instance_mem_tracker = MemTracker::create_tracker(-1, "RuntimeState");
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return Status::OK();
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}
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Status RuntimeState::init_buffer_poolstate() {
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ExecEnv* exec_env = ExecEnv::GetInstance();
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int64_t mem_limit = _query_mem_tracker->get_lowest_limit();
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int64_t max_reservation;
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if (query_options().__isset.buffer_pool_limit && query_options().buffer_pool_limit > 0) {
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max_reservation = query_options().buffer_pool_limit;
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} else if (mem_limit == -1) {
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// No query mem limit. The process-wide reservation limit is the only limit on
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// reservations.
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max_reservation = std::numeric_limits<int64_t>::max();
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} else {
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DCHECK_GE(mem_limit, 0);
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max_reservation = ReservationUtil::GetReservationLimitFromMemLimit(mem_limit);
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}
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VLOG_QUERY << "Buffer pool limit for " << print_id(_query_id) << ": " << max_reservation;
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_buffer_reservation = _obj_pool->add(new ReservationTracker);
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_buffer_reservation->InitChildTracker(nullptr, exec_env->buffer_reservation(), nullptr,
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max_reservation);
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return Status::OK();
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}
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Status RuntimeState::create_block_mgr() {
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DCHECK(_block_mgr2.get() == nullptr);
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int64_t block_mgr_limit = _query_mem_tracker->limit();
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if (block_mgr_limit < 0) {
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block_mgr_limit = std::numeric_limits<int64_t>::max();
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}
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RETURN_IF_ERROR(BufferedBlockMgr2::create(
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this, runtime_profile(), _exec_env->tmp_file_mgr(), block_mgr_limit,
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_exec_env->disk_io_mgr()->max_read_buffer_size(), &_block_mgr2));
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return Status::OK();
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}
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bool RuntimeState::error_log_is_empty() {
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std::lock_guard<std::mutex> l(_error_log_lock);
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return (_error_log.size() > 0);
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}
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std::string RuntimeState::error_log() {
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std::lock_guard<std::mutex> l(_error_log_lock);
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return boost::algorithm::join(_error_log, "\n");
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}
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bool RuntimeState::log_error(const std::string& error) {
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std::lock_guard<std::mutex> l(_error_log_lock);
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if (_error_log.size() < _query_options.max_errors) {
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_error_log.push_back(error);
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return true;
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}
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return false;
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}
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void RuntimeState::log_error(const Status& status) {
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if (status.ok()) {
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return;
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}
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log_error(status.get_error_msg());
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}
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void RuntimeState::get_unreported_errors(std::vector<std::string>* new_errors) {
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std::lock_guard<std::mutex> l(_error_log_lock);
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if (_unreported_error_idx < _error_log.size()) {
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new_errors->assign(_error_log.begin() + _unreported_error_idx, _error_log.end());
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_unreported_error_idx = _error_log.size();
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}
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}
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Status RuntimeState::set_mem_limit_exceeded(const std::string& msg) {
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{
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std::lock_guard<std::mutex> l(_process_status_lock);
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if (_process_status.ok()) {
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_process_status = Status::MemoryLimitExceeded(msg);
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}
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}
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DCHECK(_process_status.is_mem_limit_exceeded());
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return _process_status;
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}
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Status RuntimeState::check_query_state(const std::string& msg) {
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// TODO: it would be nice if this also checked for cancellation, but doing so breaks
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// cases where we use Status::Cancelled("Cancelled") to indicate that the limit was reached.
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RETURN_IF_LIMIT_EXCEEDED(_instance_mem_tracker, this, msg);
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return query_status();
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}
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const std::string ERROR_FILE_NAME = "error_log";
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const int64_t MAX_ERROR_NUM = 50;
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Status RuntimeState::create_load_dir() {
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if (!_load_dir.empty()) {
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return Status::OK();
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}
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RETURN_IF_ERROR(_exec_env->load_path_mgr()->allocate_dir(_db_name, _import_label, &_load_dir));
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_load_dir += "/output";
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return FileUtils::create_dir(_load_dir);
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}
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Status RuntimeState::create_error_log_file() {
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// Make sure that load dir exists.
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// create_load_dir();
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_exec_env->load_path_mgr()->get_load_error_file_name(
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_db_name, _import_label, _fragment_instance_id, &_error_log_file_path);
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// std::stringstream ss;
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// ss << load_dir() << "/" << ERROR_FILE_NAME
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// << "_" << std::hex << fragment_instance_id().hi
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// << "_" << fragment_instance_id().lo;
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// _error_log_file_path = ss.str();
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std::string error_log_absolute_path =
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_exec_env->load_path_mgr()->get_load_error_absolute_path(_error_log_file_path);
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_error_log_file = new std::ofstream(error_log_absolute_path, std::ifstream::out);
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if (!_error_log_file->is_open()) {
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std::stringstream error_msg;
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error_msg << "Fail to open error file: [" << _error_log_file_path << "].";
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LOG(WARNING) << error_msg.str();
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return Status::InternalError(error_msg.str());
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}
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VLOG_FILE << "create error log file: " << _error_log_file_path;
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return Status::OK();
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}
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Status RuntimeState::append_error_msg_to_file(std::function<std::string()> line, std::function<std::string()> error_msg,
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bool* stop_processing, bool is_summary) {
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*stop_processing = false;
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if (query_type() != TQueryType::LOAD) {
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return Status::OK();
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}
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// If file havn't been opened, open it here
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if (_error_log_file == nullptr) {
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Status status = create_error_log_file();
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if (!status.ok()) {
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LOG(WARNING) << "Create error file log failed. because: " << status.get_error_msg();
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if (_error_log_file != nullptr) {
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_error_log_file->close();
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delete _error_log_file;
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_error_log_file = nullptr;
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}
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return status;
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}
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}
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// if num of printed error row exceeds the limit, and this is not a summary message,
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// if _load_zero_tolerance, return Error to stop the load process immediately.
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if (_num_print_error_rows.fetch_add(1, std::memory_order_relaxed) > MAX_ERROR_NUM &&
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!is_summary) {
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if (_load_zero_tolerance) {
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*stop_processing = true;
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}
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return Status::OK();
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}
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fmt::memory_buffer out;
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if (is_summary) {
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fmt::format_to(out, "Summary: {}", error_msg());
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} else {
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if (_error_row_number < MAX_ERROR_NUM) {
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// Note: export reason first in case src line too long and be truncated.
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fmt::format_to(out, "Reason: {}. src line [{}]; ", error_msg(), line());
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} else if (_error_row_number == MAX_ERROR_NUM) {
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fmt::format_to(out, "TOO MUCH ERROR! already reach {}. show no more next error.", MAX_ERROR_NUM);
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}
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}
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if (out.size() > 0) {
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(*_error_log_file) << fmt::to_string(out) << std::endl;
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export_load_error(fmt::to_string(out));
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}
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return Status::OK();
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}
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const int64_t HUB_MAX_ERROR_NUM = 10;
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void RuntimeState::export_load_error(const std::string& err_msg) {
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if (_error_hub == nullptr) {
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std::lock_guard<std::mutex> lock(_create_error_hub_lock);
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if (_error_hub == nullptr) {
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if (_load_error_hub_info == nullptr) {
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return;
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}
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Status st = LoadErrorHub::create_hub(_exec_env, _load_error_hub_info.get(),
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_error_log_file_path, &_error_hub);
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if (!st.ok()) {
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LOG(WARNING) << "failed to create load error hub: " << st.get_error_msg();
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return;
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}
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}
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}
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if (_error_row_number <= HUB_MAX_ERROR_NUM) {
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LoadErrorHub::ErrorMsg err(_load_job_id, err_msg);
|
|
// TODO(lingbin): think if should check return value?
|
|
_error_hub->export_error(err);
|
|
}
|
|
}
|
|
|
|
int64_t RuntimeState::get_load_mem_limit() {
|
|
if (_query_options.__isset.load_mem_limit && _query_options.load_mem_limit > 0) {
|
|
return _query_options.load_mem_limit;
|
|
} else {
|
|
return _query_mem_tracker->limit();
|
|
}
|
|
}
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|
|
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} // end namespace doris
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