Coverage Report

Created: 2026-09-10 07:21

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/common/config.h
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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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#pragma once
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#include <cstdint>
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#include <functional>
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#include <map>
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#include <mutex>
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#include <string>
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#include <utility>
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#include <vector>
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#define DECLARE_FIELD(FIELD_TYPE, FIELD_NAME) extern FIELD_TYPE FIELD_NAME
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#define DECLARE_Bool(name) DECLARE_FIELD(bool, name)
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#define DECLARE_Int16(name) DECLARE_FIELD(int16_t, name)
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#define DECLARE_Int32(name) DECLARE_FIELD(int32_t, name)
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#define DECLARE_Int64(name) DECLARE_FIELD(int64_t, name)
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#define DECLARE_Double(name) DECLARE_FIELD(double, name)
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#define DECLARE_String(name) DECLARE_FIELD(std::string, name)
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#define DECLARE_Bools(name) DECLARE_FIELD(std::vector<bool>, name)
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#define DECLARE_Int16s(name) DECLARE_FIELD(std::vector<int16_t>, name)
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#define DECLARE_Int32s(name) DECLARE_FIELD(std::vector<int32_t>, name)
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#define DECLARE_Int64s(name) DECLARE_FIELD(std::vector<int64_t>, name)
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#define DECLARE_Doubles(name) DECLARE_FIELD(std::vector<double>, name)
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#define DECLARE_Strings(name) DECLARE_FIELD(std::vector<std::string>, name)
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#define DECLARE_mBool(name) DECLARE_FIELD(bool, name)
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#define DECLARE_mInt16(name) DECLARE_FIELD(int16_t, name)
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#define DECLARE_mInt32(name) DECLARE_FIELD(int32_t, name)
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#define DECLARE_mInt64(name) DECLARE_FIELD(int64_t, name)
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#define DECLARE_mDouble(name) DECLARE_FIELD(double, name)
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#define DECLARE_mString(name) DECLARE_FIELD(std::string, name)
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#define DEFINE_FIELD(FIELD_TYPE, FIELD_NAME, FIELD_DEFAULT, VALMUTABLE)                      \
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    FIELD_TYPE FIELD_NAME;                                                                   \
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    static Register reg_##FIELD_NAME(#FIELD_TYPE, #FIELD_NAME, &(FIELD_NAME), FIELD_DEFAULT, \
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                                     VALMUTABLE);
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#define DEFINE_VALIDATOR(FIELD_NAME, VALIDATOR)              \
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    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_28clEi
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55
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    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_29clEi
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55
8
    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_30clEi
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55
8
    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_31clEi
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55
8
    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_32clEi
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    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_33clEi
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55
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    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_34clEi
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55
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    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_35clEi
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55
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    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_36clEi
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55
24
    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_37clEi
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    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_38clEi
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    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_39clEl
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    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_40clEi
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8
    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_41clEl
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8
    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_42clEl
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55
8
    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_43clEl
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55
8
    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_44clEl
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55
8
    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_45clEl
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8
    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_46clEl
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55
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    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_47clERKNSt7__cxx1112basic_stringIcSt11char_traitsIcESaIcEEE
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55
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    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_48clEl
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55
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    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_49clEl
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55
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    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_50clERKNSt7__cxx1112basic_stringIcSt11char_traitsIcESaIcEEE
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55
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    static auto validator_##FIELD_NAME = VALIDATOR;          \
config.cpp:_ZNK5doris6config4$_51clEi
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    static auto validator_##FIELD_NAME = VALIDATOR;          \
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    static RegisterConfValidator reg_validator_##FIELD_NAME( \
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config3$_0clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config3$_1clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config3$_2clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config3$_3clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config3$_4clEv
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57
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config3$_5clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config3$_6clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config3$_7clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config3$_8clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config3$_9clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config4$_10clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config4$_11clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config4$_12clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config4$_13clEv
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57
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config4$_14clEv
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57
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config4$_15clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config4$_16clEv
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57
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config4$_17clEv
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57
16
            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config4$_18clEv
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57
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config4$_19clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config4$_20clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config4$_21clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config4$_22clEv
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57
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config4$_23clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config4$_24clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
config.cpp:_ZNK5doris6config4$_25clEv
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            #FIELD_NAME, []() -> bool { return validator_##FIELD_NAME(FIELD_NAME); });
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// DEFINE_ON_UPDATE macro is used to register a callback function that will be called
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// when the config field is updated at runtime.
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// The callback function signature is: void callback(T old_value, T new_value)
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// where T is the type of the config field.
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// Example:
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//   DEFINE_ON_UPDATE(my_config, [](int64_t old_val, int64_t new_val) {
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//       LOG(INFO) << "my_config changed from " << old_val << " to " << new_val;
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//   });
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#define DEFINE_ON_UPDATE_IMPL(FIELD_NAME, CALLBACK)                               \
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    static auto on_update_callback_##FIELD_NAME = CALLBACK;                       \
unity_0_cxx.cxx:_ZNK5doris6config4$_57clEbb
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    static auto on_update_callback_##FIELD_NAME = CALLBACK;                       \
unity_0_cxx.cxx:_ZNK5doris6config4$_58clEii
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    static auto on_update_callback_##FIELD_NAME = CALLBACK;                       \
unity_0_cxx.cxx:_ZNK5doris6config4$_59clEll
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    static auto on_update_callback_##FIELD_NAME = CALLBACK;                       \
Unexecuted instantiation: unity_0_cxx.cxx:_ZNK5doris6config4$_60clEii
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Unexecuted instantiation: unity_0_cxx.cxx:_ZNK5doris6config4$_87clEdd
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    static RegisterConfUpdateCallback reg_update_callback_##FIELD_NAME(           \
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            #FIELD_NAME, [](const void* old_ptr, const void* new_ptr) {           \
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                on_update_callback_##FIELD_NAME(                                  \
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                        *reinterpret_cast<const decltype(FIELD_NAME)*>(old_ptr),  \
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                        *reinterpret_cast<const decltype(FIELD_NAME)*>(new_ptr)); \
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            });
unity_0_cxx.cxx:_ZNK5doris6config4$_23clEPKvS3_
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            #FIELD_NAME, [](const void* old_ptr, const void* new_ptr) {           \
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                on_update_callback_##FIELD_NAME(                                  \
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                        *reinterpret_cast<const decltype(FIELD_NAME)*>(old_ptr),  \
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                        *reinterpret_cast<const decltype(FIELD_NAME)*>(new_ptr)); \
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3
            });
unity_0_cxx.cxx:_ZNK5doris6config4$_24clEPKvS3_
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2
            #FIELD_NAME, [](const void* old_ptr, const void* new_ptr) {           \
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                on_update_callback_##FIELD_NAME(                                  \
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                        *reinterpret_cast<const decltype(FIELD_NAME)*>(old_ptr),  \
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                        *reinterpret_cast<const decltype(FIELD_NAME)*>(new_ptr)); \
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2
            });
unity_0_cxx.cxx:_ZNK5doris6config4$_25clEPKvS3_
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            #FIELD_NAME, [](const void* old_ptr, const void* new_ptr) {           \
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                on_update_callback_##FIELD_NAME(                                  \
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                        *reinterpret_cast<const decltype(FIELD_NAME)*>(old_ptr),  \
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                        *reinterpret_cast<const decltype(FIELD_NAME)*>(new_ptr)); \
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            });
Unexecuted instantiation: unity_0_cxx.cxx:_ZNK5doris6config3$_7clEPKvS3_
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#define DEFINE_ON_UPDATE(name, callback) DEFINE_ON_UPDATE_IMPL(name, callback)
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#define DEFINE_Int16(name, defaultstr) DEFINE_FIELD(int16_t, name, defaultstr, false)
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#define DEFINE_Bools(name, defaultstr) DEFINE_FIELD(std::vector<bool>, name, defaultstr, false)
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#define DEFINE_Doubles(name, defaultstr) DEFINE_FIELD(std::vector<double>, name, defaultstr, false)
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#define DEFINE_Int16s(name, defaultstr) DEFINE_FIELD(std::vector<int16_t>, name, defaultstr, false)
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#define DEFINE_Int32s(name, defaultstr) DEFINE_FIELD(std::vector<int32_t>, name, defaultstr, false)
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#define DEFINE_Int64s(name, defaultstr) DEFINE_FIELD(std::vector<int64_t>, name, defaultstr, false)
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#define DEFINE_Bool(name, defaultstr) DEFINE_FIELD(bool, name, defaultstr, false)
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#define DEFINE_Double(name, defaultstr) DEFINE_FIELD(double, name, defaultstr, false)
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#define DEFINE_Int32(name, defaultstr) DEFINE_FIELD(int32_t, name, defaultstr, false)
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#define DEFINE_Int64(name, defaultstr) DEFINE_FIELD(int64_t, name, defaultstr, false)
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#define DEFINE_String(name, defaultstr) DEFINE_FIELD(std::string, name, defaultstr, false)
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#define DEFINE_Strings(name, defaultstr) \
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    DEFINE_FIELD(std::vector<std::string>, name, defaultstr, false)
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#define DEFINE_mBool(name, defaultstr) DEFINE_FIELD(bool, name, defaultstr, true)
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#define DEFINE_mInt16(name, defaultstr) DEFINE_FIELD(int16_t, name, defaultstr, true)
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#define DEFINE_mInt32(name, defaultstr) DEFINE_FIELD(int32_t, name, defaultstr, true)
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#define DEFINE_mInt64(name, defaultstr) DEFINE_FIELD(int64_t, name, defaultstr, true)
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#define DEFINE_mDouble(name, defaultstr) DEFINE_FIELD(double, name, defaultstr, true)
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#define DEFINE_mString(name, defaultstr) DEFINE_FIELD(std::string, name, defaultstr, true)
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#define DEFINE_Validator(name, validator) DEFINE_VALIDATOR(name, validator)
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namespace doris {
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class Status;
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// If you want to modify the value of config, please go to common/config.cpp to modify.
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namespace config {
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// Dir of custom config file
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DECLARE_String(custom_config_dir);
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// Dir of jdbc drivers
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DECLARE_String(jdbc_drivers_dir);
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// cluster id
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DECLARE_Int32(cluster_id);
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// port on which BackendService is exported
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DECLARE_Int32(be_port);
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// port for brpc
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DECLARE_Int32(brpc_port);
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// port for arrow flight sql
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// Default -1, do not start arrow flight sql server.
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DECLARE_Int32(arrow_flight_sql_port);
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// Validate Arrow input buffers in opted-in Arrow readers before converting them to Doris columns.
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DECLARE_Bool(enable_arrow_input_validation);
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// port for cdc client scan oltp cdc data
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DECLARE_Int32(cdc_client_port);
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// JVM options passed to cdc_client (whitespace-separated). Inserted before -jar.
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DECLARE_String(cdc_client_java_opts);
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// If the external client cannot directly access priority_networks, set public_host to be accessible
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// to external client.
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// There are usually two usage scenarios:
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// 1. in production environment, it is often inconvenient to expose Doris BE nodes to the external network.
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// However, a reverse proxy (such as Nginx) can be added to all Doris BE nodes, and the external client will be
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// randomly routed to a Doris BE node when connecting to Nginx. set public_host to the host of Nginx.
137
// 2. if priority_networks is an internal network IP, and BE node has its own independent external IP,
138
// but Doris currently does not support modifying priority_networks, setting public_host to the real external IP.
139
DECLARE_mString(public_host);
140
141
// If the BE node is connected to the external network through a reverse proxy like Nginx
142
// and need to use Arrow Flight SQL, should add a server in Nginx to reverse proxy
143
// `Nginx:arrow_flight_sql_proxy_port` to `BE_priority_networks:arrow_flight_sql_port`. For example:
144
// upstream arrowflight {
145
//    server 10.16.10.8:8069;
146
//    server 10.16.10.8:8068;
147
//}
148
// server {
149
//    listen 8167 http2;
150
//    listen [::]:8167 http2;
151
//    server_name doris.arrowflight.com;
152
// }
153
DECLARE_Int32(arrow_flight_sql_proxy_port);
154
155
// the number of bthreads for brpc, the default value is set to -1,
156
// which means the number of bthreads is #cpu-cores
157
DECLARE_Int32(brpc_num_threads);
158
DECLARE_Int32(brpc_idle_timeout_sec);
159
160
// Declare a selection strategy for those servers have many ips.
161
// Note that there should at most one ip match this list.
162
// This is a list in semicolon-delimited format, in CIDR notation, e.g. 10.10.10.0/24
163
// If no ip match this rule, will choose one randomly.
164
DECLARE_String(priority_networks);
165
166
// performance moderate or compact, only tcmalloc compile
167
DECLARE_String(memory_mode);
168
169
// if true, process memory limit and memory usage based on cgroup memory info.
170
DECLARE_mBool(enable_use_cgroup_memory_info);
171
172
// process memory limit specified as number of bytes
173
// ('<int>[bB]?'), megabytes ('<float>[mM]'), gigabytes ('<float>[gG]'),
174
// or percentage of the physical memory ('<int>%').
175
// defaults to bytes if no unit is given"
176
// must larger than 0. and if larger than physical memory size,
177
// it will be set to physical memory size.
178
DECLARE_String(mem_limit);
179
180
// Soft memory limit as a fraction of hard memory limit.
181
DECLARE_Double(soft_mem_limit_frac);
182
183
// Cache capacity reduce mem limit as a fraction of soft mem limit.
184
DECLARE_mDouble(cache_capacity_reduce_mem_limit_frac);
185
186
// Schema change memory limit as a fraction of soft memory limit.
187
DECLARE_Double(schema_change_mem_limit_frac);
188
189
// Many modern allocators (for example) do not do a mremap for
190
// realloc, even in case of large enough chunks of memory. Although this allows
191
// you to increase performance and reduce memory consumption during realloc.
192
// To fix this, we do mremap manually if the chunk of memory is large enough.
193
//
194
// The threshold (128 MB, 128 * (1ULL << 20)) is chosen quite large, since changing the address
195
// space is very slow, especially in the case of a large number of threads. We
196
// expect that the set of operations mmap/something to do/mremap can only be
197
// performed about 1000 times per second.
198
//
199
// P.S. This is also required, because tcmalloc can not allocate a chunk of
200
// memory greater than 16 GB.
201
DECLARE_mInt64(mmap_threshold); // bytes
202
203
// When hash table capacity is greater than 2^double_grow_degree(default 2G), grow when 75% of the capacity is satisfied.
204
// Increase can reduce the number of hash table resize, but may waste more memory.
205
DECLARE_mInt32(hash_table_double_grow_degree);
206
207
// The max fill rate for hash table
208
DECLARE_mInt32(max_fill_rate);
209
210
DECLARE_mInt32(double_resize_threshold);
211
212
// The maximum low water mark of the system `/proc/meminfo/MemAvailable`, Unit byte, default -1.
213
// if it is -1, then low water mark = min(MemTotal - MemLimit, MemTotal * 5%), which is 3.2G on a 64G machine.
214
// Turn up max. more memory buffers will be reserved for Memory GC.
215
// Turn down max. will use as much memory as possible.
216
// note that: `max_` prefix should be removed, but keep it for compatibility.
217
DECLARE_Int64(max_sys_mem_available_low_water_mark_bytes);
218
219
// reserve a small amount of memory so we do not trigger MinorGC
220
DECLARE_Int64(memtable_limiter_reserved_memory_bytes);
221
222
// The size of the memory that gc wants to release each time, as a percentage of the mem limit.
223
DECLARE_mString(process_minor_gc_size);
224
DECLARE_mString(process_full_gc_size);
225
226
// gc will release cache, cancel task, and task will wait for gc to release memory,
227
// default gc strategy is conservative, if you want to exclude the interference of gc, let it be true
228
DECLARE_mBool(disable_memory_gc);
229
230
// for the query being canceled,
231
// if (current time - cancel start time) < revoke_memory_max_tolerance_ms, the query memory is counted in `freed_memory`,
232
// and the query memory is expected to be released soon.
233
// if > revoke_memory_max_tolerance_ms, the query memory will not be counted in `freed_memory`,
234
// and the query may be blocked during the cancel process. skip this query and continue to cancel other queries.
235
DECLARE_mInt64(revoke_memory_max_tolerance_ms);
236
237
// if false, turn off all stacktrace
238
DECLARE_mBool(enable_stacktrace);
239
240
// when alloc memory larger than stacktrace_in_alloc_large_memory_bytes, default 2G - 1,
241
// if alloc successful, will print a warning with stacktrace, but not prevent memory alloc.
242
// if alloc failed using Doris Allocator, will print stacktrace in error log.
243
// if is -1, disable print stacktrace when alloc large memory.
244
DECLARE_mInt64(stacktrace_in_alloc_large_memory_bytes);
245
246
// when alloc memory larger than crash_in_alloc_large_memory_bytes will crash, default -1 means disabled.
247
// if you need a core dump to analyze large memory allocation,
248
// modify this parameter to crash when large memory allocation occur will help
249
DECLARE_mInt64(crash_in_alloc_large_memory_bytes);
250
251
// The actual meaning of this parameter is `debug_memory`.
252
// 1. crash in memory tracker inaccurate, if memory tracker value is inaccurate, BE will crash.
253
//    usually used in test environments, default value is false.
254
// 2. print more memory logs.
255
DECLARE_mBool(crash_in_memory_tracker_inaccurate);
256
257
// default is true. if any memory tracking in Orphan mem tracker will report error.
258
// !! not modify the default value of this conf!! otherwise memory errors cannot be detected in time.
259
// allocator free memory not need to check, because when the thread memory tracker label is Orphan,
260
// use the tracker saved in Allocator.
261
DECLARE_mBool(enable_memory_orphan_check);
262
263
// The maximum time a thread waits for a full GC. Currently only query will wait for full gc.
264
DECLARE_mInt32(thread_wait_gc_max_milliseconds);
265
266
// reach mem limit, don't serialize in batch
267
DECLARE_mInt64(pre_serialize_keys_limit_bytes);
268
269
// the port heartbeat service used
270
DECLARE_Int32(heartbeat_service_port);
271
// the count of heart beat service
272
DECLARE_Int32(heartbeat_service_thread_count);
273
// the count of thread to create table
274
DECLARE_Int32(create_tablet_worker_count);
275
// the count of thread to drop table
276
DECLARE_Int32(drop_tablet_worker_count);
277
// the count of thread to batch load
278
DECLARE_Int32(push_worker_count_normal_priority);
279
// the count of thread to high priority batch load
280
DECLARE_Int32(push_worker_count_high_priority);
281
// the count of thread to publish version
282
DECLARE_Int32(publish_version_worker_count);
283
// the count of tablet thread to publish version
284
DECLARE_Int32(tablet_publish_txn_max_thread);
285
// the timeout of EnginPublishVersionTask
286
DECLARE_Int32(publish_version_task_timeout_s);
287
// the count of thread to calc delete bitmap
288
DECLARE_Int32(calc_delete_bitmap_max_thread);
289
// the num of threads to calc delete bitmap when building rowset
290
DECLARE_Int32(calc_delete_bitmap_for_load_max_thread);
291
// the count of thread to calc delete bitmap worker, only used for cloud
292
DECLARE_Int32(calc_delete_bitmap_worker_count);
293
// the count of thread to calc tablet delete bitmap task, only used for cloud
294
DECLARE_Int32(calc_tablet_delete_bitmap_task_max_thread);
295
// the count of thread to clear transaction task
296
DECLARE_Int32(clear_transaction_task_worker_count);
297
// the count of thread to delete
298
DECLARE_Int32(delete_worker_count);
299
// the count of thread to alter table
300
DECLARE_Int32(alter_tablet_worker_count);
301
// the count of thread to alter index
302
DECLARE_Int32(alter_index_worker_count);
303
// the count of thread to clone
304
DECLARE_Int32(clone_worker_count);
305
// the count of thread to clone
306
DECLARE_Int32(storage_medium_migrate_count);
307
// the count of thread to check consistency
308
DECLARE_Int32(check_consistency_worker_count);
309
// the count of thread to upload
310
DECLARE_Int32(upload_worker_count);
311
// the count of thread to download
312
DECLARE_Int32(download_worker_count);
313
// the count of thread to make snapshot
314
DECLARE_Int32(make_snapshot_worker_count);
315
// the count of thread to release snapshot
316
DECLARE_Int32(release_snapshot_worker_count);
317
// the count of thread to make committed rowsets visible in cloud mode
318
DECLARE_Int32(cloud_make_committed_rs_visible_worker_count);
319
// report random wait a little time to avoid FE receiving multiple be reports at the same time.
320
// do not set it to false for production environment
321
DECLARE_mBool(report_random_wait);
322
// the interval time(seconds) for agent report tasks signature to FE
323
DECLARE_mInt32(report_task_interval_seconds);
324
// the interval time(seconds) for agent report disk state to FE
325
DECLARE_mInt32(report_disk_state_interval_seconds);
326
// the interval time(seconds) for agent report olap table to FE
327
DECLARE_mInt32(report_tablet_interval_seconds);
328
// the max download speed(KB/s)
329
DECLARE_mInt32(max_download_speed_kbps);
330
// download low speed limit(KB/s)
331
DECLARE_mInt32(download_low_speed_limit_kbps);
332
// download low speed time(seconds)
333
DECLARE_mInt32(download_low_speed_time);
334
// whether to download small files in batch.
335
DECLARE_mBool(enable_batch_download);
336
// whether to enable stream load forward endpoint for cloud group commit
337
DECLARE_mBool(enable_group_commit_streamload_be_forward);
338
// whether to check md5sum when download
339
DECLARE_mBool(enable_download_md5sum_check);
340
// download binlog meta timeout
341
DECLARE_mInt32(download_binlog_meta_timeout_ms);
342
// the interval time(seconds) for agent report index policy to FE
343
DECLARE_mInt32(report_index_policy_interval_seconds);
344
345
// DNS cache: log the "Failed to resolve hostname ... use cached ip" warning
346
// only once per N consecutive failures for the same hostname, to avoid
347
// flooding be.WARNING. Set <= 1 to log every failure (legacy behavior).
348
// Should be set <= dns_cache_max_consecutive_failures, otherwise only the
349
// first-failure log is ever emitted before a host is evicted.
350
DECLARE_mInt32(dns_cache_log_every_n_failures);
351
352
// DNS cache: evict a hostname after this many consecutive resolution failures.
353
// At the default refresh interval of 60s, the default value of 30 means a
354
// hostname that was once successfully resolved is evicted after ~30 minutes of
355
// being un-resolvable.  Hostnames that have never been successfully resolved are
356
// not tracked and are unaffected by this threshold.
357
// Eviction additionally requires the most recent failure to be an authoritative
358
// NXDOMAIN (getaddrinfo returning EAI_NONAME), i.e. the resolver positively
359
// stating that the name does not exist. Transient failures such as EAI_AGAIN
360
// (resolver unreachable or timed out) never evict, so a DNS-server outage
361
// degrades to serving the last known IP instead of emptying the cache for every
362
// hostname at once and turning a DNS incident into a cluster-wide RPC outage.
363
// Set <= 0 to disable eviction (legacy behavior, kept for backward compatibility).
364
DECLARE_mInt32(dns_cache_max_consecutive_failures);
365
366
// DNS cache: seconds to suppress re-resolve attempts for a hostname that could
367
// not be resolved -- either because it was evicted after repeated failures, or
368
// because it never resolved in the first place.  During this window get()
369
// returns an error immediately (no blocking getaddrinfo) so request threads are
370
// not stalled while the backend is being drained or while a bad hostname is
371
// being retried.
372
// This also bounds recovery latency: the refresh thread does not retry hostnames
373
// that are no longer in the cache, so a host comes back only when a caller's
374
// get() runs after this TTL expires (one such retry per host per TTL).
375
// Set <= 0 to disable the negative cache.
376
DECLARE_mInt32(dns_cache_negative_ttl_seconds);
377
378
// deprecated, use env var LOG_DIR in be.conf
379
DECLARE_String(sys_log_dir);
380
// for udf
381
DECLARE_String(user_function_dir);
382
// INFO, WARNING, ERROR, FATAL
383
DECLARE_String(sys_log_level);
384
// TIME-DAY, TIME-HOUR, SIZE-MB-nnn
385
DECLARE_String(sys_log_roll_mode);
386
// log roll num
387
DECLARE_Int32(sys_log_roll_num);
388
// verbose log
389
DECLARE_Strings(sys_log_verbose_modules);
390
// verbose log level
391
DECLARE_Int32(sys_log_verbose_level);
392
// verbose log FLAGS_v
393
DECLARE_Int32(sys_log_verbose_flags_v);
394
// log buffer level
395
DECLARE_String(log_buffer_level);
396
// log enable custom date time format
397
DECLARE_Bool(sys_log_enable_custom_date_time_format);
398
// log custom date time format (https://en.cppreference.com/w/cpp/io/manip/put_time)
399
DECLARE_String(sys_log_custom_date_time_format);
400
// log custom date time milliseconds format (fmt::format)
401
DECLARE_String(sys_log_custom_date_time_ms_format);
402
403
// number of threads available to serve backend execution requests
404
DECLARE_Int32(be_service_threads);
405
406
// interval between profile reports; in seconds
407
DECLARE_mInt32(pipeline_status_report_interval);
408
// Time slice for pipeline task execution (ms)
409
DECLARE_mInt32(pipeline_task_exec_time_slice);
410
411
// task executor min concurrency per task
412
DECLARE_mInt32(task_executor_min_concurrency_per_task);
413
// task executor max concurrency per task
414
DECLARE_mInt32(task_executor_max_concurrency_per_task);
415
// task task executor inital split max concurrency per task, later concurrency may be adjusted dynamically
416
DECLARE_mInt32(task_executor_initial_max_concurrency_per_task);
417
// Enable task executor in internal table scan.
418
DECLARE_Bool(enable_task_executor_in_internal_table);
419
// Enable task executor in external table scan.
420
DECLARE_Bool(enable_task_executor_in_external_table);
421
422
// number of scanner thread pool size for olap table
423
// and the min thread num of remote scanner thread pool
424
DECLARE_mInt32(doris_scanner_thread_pool_thread_num);
425
DECLARE_mInt32(doris_scanner_min_thread_pool_thread_num);
426
// number of batch size to fetch the remote split source
427
DECLARE_mInt32(remote_split_source_batch_size);
428
// max number of remote scanner thread pool size
429
// if equal to -1, value is std::max(512, CpuInfo::num_cores() * 10)
430
DECLARE_Int32(doris_max_remote_scanner_thread_pool_thread_num);
431
// number of olap scanner thread pool queue size
432
DECLARE_Int32(doris_scanner_thread_pool_queue_size);
433
// default thrift client connect timeout(in seconds)
434
DECLARE_mInt32(thrift_connect_timeout_seconds);
435
// default thrift client retry interval (in milliseconds)
436
DECLARE_mInt64(thrift_client_retry_interval_ms);
437
// max message size of thrift request
438
// default: 100 * 1024 * 1024
439
DECLARE_mInt32(thrift_max_message_size);
440
// max bytes number for single scan range, used in segmentv2
441
DECLARE_mInt32(doris_scan_range_max_mb);
442
// single read execute fragment row number
443
DECLARE_mInt32(doris_scanner_row_num);
444
// single read execute fragment row bytes
445
DECLARE_mInt32(doris_scanner_row_bytes);
446
// Minimum interval in milliseconds between adaptive scanner concurrency adjustments
447
DECLARE_mInt32(doris_scanner_dynamic_interval_ms);
448
// (Advanced) Maximum size of per-query receive-side buffer
449
DECLARE_mInt32(exchg_node_buffer_size_bytes);
450
DECLARE_mInt32(exchg_buffer_queue_capacity_factor);
451
452
// memory_limitation_per_thread_for_schema_change_bytes unit bytes
453
DECLARE_mInt64(memory_limitation_per_thread_for_schema_change_bytes);
454
455
// all cache prune interval, used by GC and periodic thread.
456
DECLARE_mInt32(cache_prune_interval_sec);
457
DECLARE_mInt32(cache_periodic_prune_stale_sweep_sec);
458
// the clean interval of tablet lookup cache
459
DECLARE_mInt32(tablet_lookup_cache_stale_sweep_time_sec);
460
DECLARE_mInt32(point_query_row_cache_stale_sweep_time_sec);
461
DECLARE_mInt32(disk_stat_monitor_interval);
462
DECLARE_mInt32(unused_rowset_monitor_interval);
463
// Legacy name retained for compatibility; controls GLOBAL_ROWID_COL file-map GC.
464
DECLARE_mInt32(quering_rowsets_evict_interval);
465
DECLARE_String(storage_root_path);
466
DECLARE_mString(broken_storage_path);
467
DECLARE_Int32(min_active_scan_threads);
468
DECLARE_Int32(min_active_file_scan_threads);
469
470
// Config is used to check incompatible old format hdr_ format
471
// whether doris uses strict way. When config is true, process will log fatal
472
// and exit. When config is false, process will only log warning.
473
DECLARE_Bool(storage_strict_check_incompatible_old_format);
474
475
// BE process will exit if the percentage of error disk reach this value.
476
DECLARE_mInt32(max_percentage_of_error_disk);
477
DECLARE_mInt32(default_num_rows_per_column_file_block);
478
// pending data policy
479
DECLARE_mInt32(pending_data_expire_time_sec);
480
// inc_rowset snapshot rs sweep time interval
481
DECLARE_mInt32(tablet_rowset_stale_sweep_time_sec);
482
// tablet stale rowset sweep by threshold size
483
DECLARE_Bool(tablet_rowset_stale_sweep_by_size);
484
DECLARE_mInt32(tablet_rowset_stale_sweep_threshold_size);
485
// garbage sweep policy
486
DECLARE_Int32(max_garbage_sweep_interval);
487
DECLARE_Int32(min_garbage_sweep_interval);
488
// garbage sweep every batch will sleep 1ms
489
DECLARE_mInt32(garbage_sweep_batch_size);
490
DECLARE_mInt32(snapshot_expire_time_sec);
491
// It is only a recommended value. When the disk space is insufficient,
492
// the file storage period under trash dose not have to comply with this parameter.
493
DECLARE_mInt32(trash_file_expire_time_sec);
494
// minimum file descriptor number
495
// modify them upon necessity
496
DECLARE_Int32(min_file_descriptor_number);
497
DECLARE_mBool(disable_segment_cache);
498
// Enable checking segment rows consistency between rowset meta and segment footer
499
DECLARE_mBool(enable_segment_rows_consistency_check);
500
DECLARE_mBool(enable_segment_rows_check_core);
501
// ATTENTION: For test only. In test environment, there are no historical data,
502
// so all rowset meta should have segment rows info.
503
DECLARE_mBool(fail_when_segment_rows_not_in_rowset_meta);
504
DECLARE_String(row_cache_mem_limit);
505
506
// Cache for storage page size
507
DECLARE_String(storage_page_cache_limit);
508
// Shard size for page cache, the value must be power of two.
509
// It's recommended to set it to a value close to the number of BE cores in order to reduce lock contentions.
510
DECLARE_Int32(storage_page_cache_shard_size);
511
DECLARE_mInt32(file_cache_mem_storage_shard_num);
512
// Percentage for index page cache
513
// all storage page cache will be divided into data_page_cache and index_page_cache
514
DECLARE_Int32(index_page_cache_percentage);
515
// whether to disable page cache feature in storage
516
// TODO delete it. Divided into Data page, Index page, pk index page
517
DECLARE_Bool(disable_storage_page_cache);
518
// whether to disable row cache feature in storage
519
DECLARE_mBool(disable_storage_row_cache);
520
// Parquet page cache: threshold ratio for caching decompressed vs compressed pages
521
// If uncompressed_size / compressed_size <= threshold, cache decompressed;
522
// otherwise cache compressed if enable_parquet_cache_compressed_pages = true
523
DECLARE_Double(parquet_page_cache_decompress_threshold);
524
// Parquet page cache: whether to enable caching compressed pages (when ratio exceeds threshold)
525
DECLARE_Bool(enable_parquet_cache_compressed_pages);
526
// whether to disable pk page cache feature in storage
527
DECLARE_Bool(disable_pk_storage_page_cache);
528
529
// Cache for mow primary key storage page size, it's seperated from
530
// storage_page_cache_limit
531
DECLARE_String(pk_storage_page_cache_limit);
532
// data page size for primary key index
533
DECLARE_Int32(primary_key_data_page_size);
534
535
// inc_rowset snapshot rs sweep time interval
536
DECLARE_mInt32(data_page_cache_stale_sweep_time_sec);
537
DECLARE_mInt32(index_page_cache_stale_sweep_time_sec);
538
// great impact on the performance of MOW, so it can be longer.
539
DECLARE_mInt32(pk_index_page_cache_stale_sweep_time_sec);
540
541
DECLARE_mBool(enable_low_cardinality_optimize);
542
DECLARE_Bool(enable_low_cardinality_cache_code);
543
544
// Adaptive batch size: dynamically adjust SegmentIterator chunk row count using EWMA
545
// so that each output block stays close to preferred_block_size_bytes.
546
// When false, the fixed batch_size row behaviour is preserved.
547
DECLARE_mBool(enable_adaptive_batch_size);
548
549
// be policy
550
// whether check compaction checksum
551
DECLARE_mBool(enable_compaction_checksum);
552
// whether disable automatic compaction task
553
DECLARE_mBool(disable_auto_compaction);
554
// whether enable vertical compaction
555
DECLARE_mBool(enable_vertical_compaction);
556
// whether enable ordered data compaction
557
DECLARE_mBool(enable_ordered_data_compaction);
558
// In vertical compaction, column number for every group
559
DECLARE_mInt32(vertical_compaction_num_columns_per_group);
560
// In vertical compaction, max memory usage for row_source_buffer
561
DECLARE_Int32(vertical_compaction_max_row_source_memory_mb);
562
// In vertical compaction, max dest segment file size
563
DECLARE_mInt64(vertical_compaction_max_segment_size);
564
// Threshold for sparse column compaction optimization (average bytes per row)
565
// Density threshold for sparse column compaction optimization
566
// density = (total_cells - null_cells) / total_cells, smaller means more sparse
567
// When density <= threshold, enable sparse optimization
568
// 0 = disable optimization, 1 = always enable
569
// Default 1 means always enable sparse optimization
570
DECLARE_mDouble(sparse_column_compaction_threshold_percent);
571
// Enable RLE batch Put optimization for compaction
572
DECLARE_mBool(enable_rle_batch_put_optimization);
573
DECLARE_Bool(enable_bmi2_optimizations);
574
575
// In ordered data compaction, min segment size for input rowset
576
DECLARE_mInt32(ordered_data_compaction_min_segment_size);
577
578
// This config can be set to limit thread number in compaction thread pool.
579
DECLARE_mInt32(max_base_compaction_threads);
580
DECLARE_mInt32(max_cumu_compaction_threads);
581
582
// Binlog Compaction
583
DECLARE_mInt64(binlog_compaction_wait_timesec_after_visible);
584
DECLARE_mInt64(binlog_compaction_goal_size_mbytes);
585
DECLARE_mInt32(binlog_compaction_task_num_per_disk);
586
DECLARE_mInt32(binlog_compaction_file_count_threshold);
587
DECLARE_mInt32(binlog_level_compaction_max_deltas);
588
DECLARE_mInt64(binlog_compaction_time_threshold_seconds);
589
DECLARE_mInt32(max_binlog_compaction_threads);
590
591
DECLARE_Bool(enable_base_compaction_idle_sched);
592
DECLARE_mInt64(base_compaction_min_rowset_num);
593
DECLARE_mInt64(base_compaction_max_compaction_score);
594
DECLARE_mInt64(mow_base_compaction_max_compaction_score);
595
DECLARE_mDouble(base_compaction_min_data_ratio);
596
DECLARE_mInt64(base_compaction_dup_key_max_file_size_mbytes);
597
598
DECLARE_Bool(enable_skip_tablet_compaction);
599
DECLARE_mInt32(skip_tablet_compaction_second);
600
// output rowset of cumulative compaction total disk size exceed this config size,
601
// this rowset will be given to base compaction, unit is m byte.
602
DECLARE_mInt64(compaction_promotion_size_mbytes);
603
604
// output rowset of cumulative compaction total disk size exceed this config ratio of
605
// base rowset's total disk size, this rowset will be given to base compaction. The value must be between
606
// 0 and 1.
607
DECLARE_mDouble(compaction_promotion_ratio);
608
609
// the smallest size of rowset promotion. When the rowset is less than this config, this
610
// rowset will be not given to base compaction. The unit is m byte.
611
DECLARE_mInt64(compaction_promotion_min_size_mbytes);
612
613
// When output rowset of cumulative compaction total version count (end_version - start_version)
614
// exceed this config count, the rowset will be moved to base compaction
615
// NOTE: this config will work for unique key merge-on-write table only, to reduce version count
616
// related cost on delete bitmap more effectively.
617
DECLARE_mInt64(compaction_promotion_version_count);
618
619
// The lower bound size to do cumulative compaction. When total disk size of candidate rowsets is less than
620
// this size, size_based policy may not do to cumulative compaction. The unit is m byte.
621
DECLARE_mInt64(compaction_min_size_mbytes);
622
623
// cumulative compaction policy: min and max delta file's number
624
DECLARE_mInt64(cumulative_compaction_min_deltas);
625
DECLARE_mInt64(cumulative_compaction_max_deltas);
626
DECLARE_mInt32(cumulative_compaction_max_deltas_factor);
627
628
// The upper limit of "permits" held by all compaction tasks. This config can be set to limit memory consumption for compaction.
629
DECLARE_mInt64(total_permits_for_compaction_score);
630
631
// sleep interval in ms after generated compaction tasks
632
DECLARE_mInt32(generate_compaction_tasks_interval_ms);
633
634
// Compaction task number per disk.
635
// Must be greater than 2, because Base compaction and Cumulative compaction have at least one thread each.
636
DECLARE_mInt32(compaction_task_num_per_disk);
637
// compaction thread num for fast disk(typically .SSD), must be greater than 2.
638
DECLARE_mInt32(compaction_task_num_per_fast_disk);
639
640
// How many rounds of cumulative compaction for each round of base compaction when compaction tasks generation.
641
DECLARE_mInt32(cumulative_compaction_rounds_for_each_base_compaction_round);
642
643
// Minimum number of threads required in the thread pool to activate the large cumu compaction delay strategy.
644
// The delay strategy is only applied when the thread pool has at least this many threads.
645
DECLARE_mInt32(large_cumu_compaction_task_min_thread_num);
646
// Maximum size threshold (in bytes) for input rowsets. Compaction tasks with input size
647
// exceeding this threshold will be delayed when thread pool is near capacity. Default 100MB.
648
DECLARE_mInt32(large_cumu_compaction_task_bytes_threshold);
649
// Maximum row count threshold for compaction input. Compaction tasks with row count
650
// exceeding this threshold will be delayed when thread pool is near capacity. Default 1 million.
651
DECLARE_mInt32(large_cumu_compaction_task_row_num_threshold);
652
653
// Not compact the invisible versions, but with some limitations:
654
// if not timeout, keep no more than compaction_keep_invisible_version_max_count versions;
655
// if timeout, keep no more than compaction_keep_invisible_version_min_count versions.
656
DECLARE_mInt32(compaction_keep_invisible_version_timeout_sec);
657
DECLARE_mInt32(compaction_keep_invisible_version_min_count);
658
DECLARE_mInt32(compaction_keep_invisible_version_max_count);
659
660
// Threshold to logging compaction trace, in seconds.
661
DECLARE_mInt32(base_compaction_trace_threshold);
662
DECLARE_mInt32(cumulative_compaction_trace_threshold);
663
DECLARE_mBool(disable_compaction_trace_log);
664
665
DECLARE_mBool(enable_compaction_task_tracker);
666
DECLARE_mInt32(compaction_task_tracker_max_records);
667
668
// Interval to picking rowset to compact, in seconds
669
DECLARE_mInt64(pick_rowset_to_compact_interval_sec);
670
671
// Compaction priority schedule
672
DECLARE_mBool(enable_compaction_priority_scheduling);
673
DECLARE_mInt32(low_priority_compaction_task_num_per_disk);
674
DECLARE_mInt32(low_priority_compaction_score_threshold);
675
676
// Thread count to do tablet meta checkpoint, -1 means use the data directories count.
677
DECLARE_Int32(max_meta_checkpoint_threads);
678
679
// Threshold to logging agent task trace, in seconds.
680
DECLARE_mInt32(agent_task_trace_threshold_sec);
681
682
// This config can be set to limit thread number in tablet migration thread pool.
683
DECLARE_Int32(min_tablet_migration_threads);
684
DECLARE_Int32(max_tablet_migration_threads);
685
686
DECLARE_mInt32(finished_migration_tasks_size);
687
// If size less than this, the remaining rowsets will be force to complete
688
DECLARE_mInt32(migration_remaining_size_threshold_mb);
689
// If the task runs longer than this time, the task will be terminated, in seconds.
690
// timeout = std::max(migration_task_timeout_secs,  tablet size / 1MB/s)
691
DECLARE_mInt32(migration_task_timeout_secs);
692
// timeout for try_lock migration lock
693
DECLARE_Int64(migration_lock_timeout_ms);
694
695
// Port to start debug webserver on
696
DECLARE_Int32(webserver_port);
697
// TLS module enable flag
698
DECLARE_Bool(enable_tls);
699
// Path of TLS certificate
700
DECLARE_String(tls_certificate_path);
701
// Path of TLS private key
702
DECLARE_String(tls_private_key_path);
703
// Password for encrypted TLS private key
704
DECLARE_String(tls_private_key_password);
705
// TLS peer verification mode
706
DECLARE_String(tls_verify_mode);
707
// Path of TLS CA certificate
708
DECLARE_String(tls_ca_certificate_path);
709
// TLS certificate reload interval, in seconds
710
DECLARE_Int32(tls_cert_refresh_interval_seconds);
711
// Comma-separated excluded server protocols: brpc,thrift,http,arrowflight
712
DECLARE_String(tls_excluded_protocols);
713
// Required peer certificate DNS SAN allowlist for private protocols, syntax: brpc=a.com;thrift=b.com.
714
// Empty means allow all peers. Once configured, the list acts as an allowlist and only peers whose
715
// DNS SAN matches at least one configured entry for that protocol are allowed.
716
DECLARE_String(tls_peer_cert_required_san_dns);
717
// Https enable flag
718
DECLARE_Bool(enable_https);
719
// Path of certificate
720
DECLARE_String(ssl_certificate_path);
721
// Path of private key
722
DECLARE_String(ssl_private_key_path);
723
// Whether to check authorization
724
DECLARE_Bool(enable_all_http_auth);
725
// Number of webserver workers
726
DECLARE_Int32(webserver_num_workers);
727
728
// Async replies: stream load only now
729
// reply wait timeout only happens if:
730
// 1. Stream load fragment execution times out
731
//    HTTP request freed → stream load canceled
732
// 2. Client disconnects
733
DECLARE_mInt32(async_reply_timeout_s);
734
735
// Used for mini Load. mini load data file will be removed after this time.
736
DECLARE_Int64(load_data_reserve_hours);
737
// log error log will be removed after this time
738
DECLARE_mInt64(load_error_log_reserve_hours);
739
// error log size limit, default 200MB
740
DECLARE_mInt64(load_error_log_limit_bytes);
741
742
// be brpc interface is classified into two categories: light and heavy
743
// each category has diffrent thread number
744
// threads to handle heavy api interface, such as transmit_block etc
745
DECLARE_Int32(brpc_heavy_work_pool_threads);
746
DECLARE_Int32(brpc_peer_fetch_pool_threads);
747
// threads to handle light api interface, such as exec_plan_fragment_prepare/exec_plan_fragment_start
748
DECLARE_Int32(brpc_light_work_pool_threads);
749
DECLARE_Int32(brpc_heavy_work_pool_max_queue_size);
750
DECLARE_Int32(brpc_peer_fetch_pool_max_queue_size);
751
DECLARE_Int32(brpc_light_work_pool_max_queue_size);
752
DECLARE_mBool(enable_bthread_transmit_block);
753
DECLARE_Int32(brpc_arrow_flight_work_pool_threads);
754
DECLARE_Int32(brpc_arrow_flight_work_pool_max_queue_size);
755
756
// The maximum amount of data that can be processed by a stream load
757
DECLARE_mInt64(streaming_load_max_mb);
758
// Some data formats, such as JSON, cannot be streamed.
759
// Therefore, it is necessary to limit the maximum number of
760
// such data when using stream load to prevent excessive memory consumption.
761
DECLARE_mInt64(streaming_load_json_max_mb);
762
// the alive time of a TabletsChannel.
763
// If the channel does not receive any data till this time,
764
// the channel will be removed.
765
DECLARE_mInt32(streaming_load_rpc_max_alive_time_sec);
766
// the timeout of a rpc to open the tablet writer in remote BE.
767
// short operation time, can set a short timeout
768
DECLARE_Int32(tablet_writer_open_rpc_timeout_sec);
769
// You can ignore brpc error '[E1011]The server is overcrowded' when writing data.
770
DECLARE_mBool(tablet_writer_ignore_eovercrowded);
771
// Whether to enable stream load record function, the default is false.
772
// False: disable stream load record
773
DECLARE_mBool(enable_stream_load_record);
774
// Whether to enable stream load record to audit log table, the default is true.
775
DECLARE_mBool(enable_stream_load_record_to_audit_log_table);
776
// the maximum bytes of a batch of stream load records to audit log table
777
DECLARE_mInt64(stream_load_record_batch_bytes);
778
// the interval to send a batch of stream load records to audit log table
779
DECLARE_mInt64(stream_load_record_batch_interval_secs);
780
// batch size of stream load record reported to FE
781
DECLARE_mInt32(stream_load_record_batch_size);
782
// expire time of stream load record in rocksdb.
783
DECLARE_Int32(stream_load_record_expire_time_secs);
784
// time interval to clean expired stream load records
785
DECLARE_mInt64(clean_stream_load_record_interval_secs);
786
// enable stream load commit txn on BE directly, bypassing FE. Only for cloud.
787
DECLARE_mBool(enable_stream_load_commit_txn_on_be);
788
// The buffer size to store stream table function schema info
789
DECLARE_Int64(stream_tvf_buffer_size);
790
791
// request cdc client timeout
792
DECLARE_mInt32(request_cdc_client_timeout_ms);
793
794
// OlapTableSink sender's send interval, should be less than the real response time of a tablet writer rpc.
795
// You may need to lower the speed when the sink receiver bes are too busy.
796
DECLARE_mInt32(olap_table_sink_send_interval_microseconds);
797
// For auto partition, the send interval will multiply the factor
798
DECLARE_mDouble(olap_table_sink_send_interval_auto_partition_factor);
799
800
// Fragment thread pool
801
DECLARE_Int32(fragment_mgr_async_work_pool_thread_num_min);
802
DECLARE_Int32(fragment_mgr_async_work_pool_thread_num_max);
803
DECLARE_Int32(fragment_mgr_async_work_pool_queue_size);
804
805
// The read size is the size of the reads sent to os.
806
// There is a trade off of latency and throughout, trying to keep disks busy but
807
// not introduce seeks.  The literature seems to agree that with 8 MB reads, random
808
// io and sequential io perform similarly.
809
DECLARE_Int32(min_buffer_size); // 1024, The minimum read buffer size (in bytes)
810
811
// for pprof
812
DECLARE_String(pprof_profile_dir);
813
// for jeprofile in jemalloc
814
DECLARE_mString(jeprofile_dir);
815
// Purge all unused dirty pages for all arenas.
816
DECLARE_mBool(enable_je_purge_dirty_pages);
817
// Jemalloc `arenas.dirty_decay_ms`, equal to `dirty_decay_ms` in JEMALLOC_CONF in be.conf.
818
DECLARE_mInt32(je_dirty_decay_ms);
819
820
// to forward compatibility, will be removed later
821
DECLARE_mBool(enable_token_check);
822
823
// to open/close system metrics
824
DECLARE_Bool(enable_system_metrics);
825
826
// Number of cores Doris will used, this will effect only when it's greater than 0.
827
// Otherwise, Doris will use all cores returned from "/proc/cpuinfo".
828
DECLARE_Int32(num_cores);
829
830
// When BE start, If there is a broken disk, BE process will exit by default.
831
// Otherwise, we will ignore the broken disk,
832
DECLARE_Bool(ignore_broken_disk);
833
DECLARE_Bool(ignore_file_cache_dir_upgrade_failure);
834
835
// Sleep time in milliseconds between memory maintenance iterations
836
DECLARE_mInt32(memory_maintenance_sleep_time_ms);
837
838
// Memory gc are expensive, wait a while to avoid too frequent.
839
DECLARE_mInt32(memory_gc_sleep_time_ms);
840
841
// max write buffer size before flush, default 200MB
842
DECLARE_mInt64(write_buffer_size);
843
DECLARE_mBool(enable_adaptive_write_buffer_size);
844
// max buffer size used in memtable for the aggregated table, default 400MB
845
DECLARE_mInt64(write_buffer_size_for_agg);
846
847
DECLARE_mInt64(min_write_buffer_size_for_partial_update);
848
// max parallel flush task per memtable writer
849
DECLARE_mInt32(memtable_flush_running_count_limit);
850
851
// maximum sleep time to wait for memory when writing or flushing memtable.
852
DECLARE_mInt32(memtable_wait_for_memory_sleep_time_s);
853
854
DECLARE_Int32(load_process_max_memory_limit_percent); // 50%
855
856
// If the memory consumption of load jobs exceed load_process_max_memory_limit,
857
// all load jobs will hang there to wait for memtable flush. We should have a
858
// soft limit which can trigger the memtable flush for the load channel who
859
// consumes lagest memory size before we reach the hard limit. The soft limit
860
// might avoid all load jobs hang at the same time.
861
DECLARE_Int32(load_process_soft_mem_limit_percent);
862
863
// If load memory consumption is within load_process_safe_mem_permit_percent,
864
// memtable memory limiter will do nothing.
865
DECLARE_Int32(load_process_safe_mem_permit_percent);
866
867
// result buffer cancelled time (unit: second)
868
DECLARE_mInt32(result_buffer_cancelled_interval_time);
869
870
// arrow flight result sink buffer rows size, default 4096 * 8
871
DECLARE_mInt32(arrow_flight_result_sink_buffer_size_rows);
872
// The timeout for ADBC Client to wait for data using arrow flight reader.
873
// If the query is very complex and no result is generated after this time, consider increasing this timeout.
874
DECLARE_mInt32(arrow_flight_reader_brpc_controller_timeout_ms);
875
876
// the increased frequency of priority for remaining tasks in BlockingPriorityQueue
877
DECLARE_mInt32(priority_queue_remaining_tasks_increased_frequency);
878
879
// sync tablet_meta when modifying meta
880
DECLARE_mBool(sync_tablet_meta);
881
882
// sync a file writer when it is closed
883
DECLARE_mBool(sync_file_on_close);
884
885
// default thrift rpc timeout ms
886
DECLARE_mInt32(thrift_rpc_timeout_ms);
887
888
// txn commit rpc timeout
889
DECLARE_mInt32(txn_commit_rpc_timeout_ms);
890
891
// If set to true, metric calculator will run
892
DECLARE_Bool(enable_metric_calculator);
893
894
// max consumer num in one data consumer group, for routine load
895
DECLARE_mInt32(max_consumer_num_per_group);
896
897
// the max size of thread pool for routine load task.
898
// this should be larger than FE config 'max_routine_load_task_num_per_be' (default 5)
899
DECLARE_Int32(max_routine_load_thread_pool_size);
900
901
// max external scan cache batch count, means cache max_memory_cache_batch_count * batch_size row
902
// default is 20, batch_size's default value is 1024 means 20 * 1024 rows will be cached
903
DECLARE_mInt32(max_memory_sink_batch_count);
904
905
// This configuration is used for the context gc thread schedule period
906
// note: unit is minute, default is 5min
907
DECLARE_mInt32(scan_context_gc_interval_min);
908
909
// es scroll keep-alive
910
DECLARE_String(es_scroll_keepalive);
911
912
// HTTP connection timeout for es
913
DECLARE_mInt32(es_http_timeout_ms);
914
915
// the max client cache number per each host
916
// There are variety of client cache in BE, but currently we use the
917
// same cache size configuration.
918
// TODO(cmy): use different config to set different client cache if necessary.
919
DECLARE_Int32(max_client_cache_size_per_host);
920
921
DECLARE_Int32(max_master_fe_client_cache_size);
922
923
// Dir to save files downloaded by SmallFileMgr
924
DECLARE_String(small_file_dir);
925
// path gc
926
DECLARE_Bool(path_gc_check);
927
DECLARE_mInt32(path_gc_check_interval_second);
928
DECLARE_mInt32(path_gc_check_step);
929
DECLARE_mInt32(path_gc_check_step_interval_ms);
930
931
// The following 2 configs limit the max usage of disk capacity of a data dir.
932
// If both of these 2 threshold reached, no more data can be writen into that data dir.
933
// The percent of max used capacity of a data dir
934
DECLARE_mInt32(storage_flood_stage_usage_percent); // 90%
935
// The min bytes that should be left of a data dir
936
DECLARE_mInt64(storage_flood_stage_left_capacity_bytes); // 1GB
937
// number of thread for flushing memtable per store
938
DECLARE_mInt32(flush_thread_num_per_store);
939
// number of thread for flushing memtable per store, for high priority load task
940
DECLARE_mInt32(high_priority_flush_thread_num_per_store);
941
// number of threads = min(flush_thread_num_per_store * num_store,
942
//                         max_flush_thread_num_per_cpu * num_cpu)
943
DECLARE_mInt32(max_flush_thread_num_per_cpu);
944
// minimum flush threads per cpu when adaptive flush is enabled (default 0.5)
945
DECLARE_mDouble(min_flush_thread_num_per_cpu);
946
947
// Whether to enable adaptive flush thread adjustment
948
DECLARE_mBool(enable_adaptive_flush_threads);
949
950
// Whether to block writes when one table has too many pending flush memtables on this BE.
951
DECLARE_mBool(enable_table_memtable_flush_backpressure);
952
// Max pending flush memtables for one table on this BE before blocking new writes.
953
DECLARE_mInt32(table_memtable_flush_pending_count_limit);
954
955
// config for tablet meta checkpoint
956
DECLARE_mInt32(tablet_meta_checkpoint_min_new_rowsets_num);
957
DECLARE_mInt32(tablet_meta_checkpoint_min_interval_secs);
958
DECLARE_Int32(generate_tablet_meta_checkpoint_tasks_interval_secs);
959
960
// config for default rowset type
961
// Valid configs: ALPHA, BETA
962
DECLARE_String(default_rowset_type);
963
964
// Maximum size of a single message body in all protocols
965
DECLARE_Int64(brpc_max_body_size);
966
// Max unwritten bytes in each socket, if the limit is reached, Socket.Write fails with EOVERCROWDED
967
// Default, if the physical memory is less than or equal to 64G, the value is 1G
968
//          if the physical memory is greater than 64G, the value is physical memory * mem_limit(0.8) / 1024 * 20
969
DECLARE_Int64(brpc_socket_max_unwritten_bytes);
970
// Whether to set FLAGS_usercode_in_pthread to true in brpc
971
DECLARE_mBool(brpc_usercode_in_pthread);
972
// TODO(zxy): expect to be true in v1.3
973
// Whether to embed the ProtoBuf Request serialized string together with Tuple/Block data into
974
// Controller Attachment and send it through http brpc when the length of the Tuple/Block data
975
// is greater than 1.8G. This is to avoid the error of Request length overflow (2G).
976
DECLARE_mBool(transfer_large_data_by_brpc);
977
978
// max number of txns for every txn_partition_map in txn manager
979
// this is a self protection to avoid too many txns saving in manager
980
DECLARE_mInt64(max_runnings_transactions_per_txn_map);
981
982
// tablet_map_lock shard size, the value is 2^n, n=0,1,2,3,4
983
// this is a an enhancement for better performance to manage tablet
984
DECLARE_Int32(tablet_map_shard_size);
985
986
// txn_map_lock shard size, the value is 2^n, n=0,1,2,3,4
987
// this is a an enhancement for better performance to manage txn
988
DECLARE_Int32(txn_map_shard_size);
989
990
// txn_lock shard size, the value is 2^n, n=0,1,2,3,4
991
// this is a an enhancement for better performance to commit and publish txn
992
DECLARE_Int32(txn_shard_size);
993
994
// Whether to continue to start be when load tablet from header failed.
995
DECLARE_Bool(ignore_load_tablet_failure);
996
997
// Whether to continue to start be when load tablet from header failed.
998
DECLARE_mBool(ignore_rowset_stale_unconsistent_delete);
999
1000
// Set max cache's size of query results, the unit is M byte
1001
DECLARE_Int32(query_cache_max_size_mb);
1002
1003
// Cache memory is pruned when reach query_cache_max_size_mb + query_cache_elasticity_size_mb
1004
DECLARE_Int32(query_cache_elasticity_size_mb);
1005
1006
// Maximum number of cache partitions corresponding to a SQL
1007
DECLARE_Int32(query_cache_max_partition_count);
1008
1009
// Maximum number of version of a tablet. If the version num of a tablet exceed limit,
1010
// the load process will reject new incoming load job of this tablet.
1011
// This is to avoid too many version num.
1012
DECLARE_mInt32(max_tablet_version_num);
1013
1014
DECLARE_mInt32(time_series_max_tablet_version_num);
1015
1016
// the max sleep time when meeting high pressure load task
1017
DECLARE_mInt64(max_load_back_pressure_version_wait_time_ms);
1018
// the threshold of rowset number gap that triggers back pressure
1019
DECLARE_mInt64(load_back_pressure_version_threshold);
1020
1021
// Frontend mainly use two thrift sever type: THREAD_POOL, THREADED_SELECTOR. if fe use THREADED_SELECTOR model for thrift server,
1022
// the thrift_server_type_of_fe should be set THREADED_SELECTOR to make be thrift client to fe constructed with TFramedTransport
1023
DECLARE_String(thrift_server_type_of_fe);
1024
1025
// disable zone map index when page row is too few
1026
DECLARE_mInt32(zone_map_row_num_threshold);
1027
1028
// Maximum number of IN values checked exactly against a zone map. For larger sets, only the
1029
// IN-set min/max range is checked.
1030
DECLARE_mInt32(in_zonemap_point_check_threshold);
1031
1032
// aws sdk log level
1033
//    Off = 0,
1034
//    Fatal = 1,
1035
//    Error = 2,
1036
//    Warn = 3,
1037
//    Info = 4,
1038
//    Debug = 5,
1039
//    Trace = 6
1040
DECLARE_Int32(aws_log_level);
1041
1042
// azure sdk log level
1043
//    Verbose = 1,
1044
//    Informational = 2,
1045
//    Warning = 3,
1046
//    Error = 4
1047
DECLARE_Int32(azure_log_level);
1048
1049
// the buffer size when read data from remote storage like s3
1050
DECLARE_mInt32(remote_storage_read_buffer_mb);
1051
1052
// The minimum length when TCMalloc Hook consumes/releases MemTracker, consume size
1053
// smaller than this value will continue to accumulate. specified as number of bytes.
1054
// Decreasing this value will increase the frequency of consume/release.
1055
// Increasing this value will cause MemTracker statistics to be inaccurate.
1056
DECLARE_mInt32(mem_tracker_consume_min_size_bytes);
1057
1058
// The version information of the tablet will be stored in the memory
1059
// in an adjacency graph data structure.
1060
// And as the new version is written and the old version is deleted,
1061
// the data structure will begin to have empty vertex with no edge associations(orphan vertex).
1062
// This config is used to control that when the proportion of orphan vertex is greater than the threshold,
1063
// the adjacency graph will be rebuilt to ensure that the data structure will not expand indefinitely.
1064
// This config usually only needs to be modified during testing.
1065
// In most cases, it does not need to be modified.
1066
DECLARE_mDouble(tablet_version_graph_orphan_vertex_ratio);
1067
1068
// share delta writers when memtable_on_sink_node = true
1069
DECLARE_Bool(share_delta_writers);
1070
// timeout for open load stream rpc in ms
1071
DECLARE_Int64(open_load_stream_timeout_ms);
1072
// enable write background when using brpc stream
1073
DECLARE_mBool(enable_brpc_stream_write_background);
1074
1075
// brpc streaming max_buf_size in bytes
1076
DECLARE_Int64(load_stream_max_buf_size);
1077
// brpc streaming messages_in_batch
1078
DECLARE_Int32(load_stream_messages_in_batch);
1079
// brpc streaming StreamWait seconds on EAGAIN
1080
DECLARE_Int32(load_stream_eagain_wait_seconds);
1081
// max tasks per flush token in load stream
1082
DECLARE_Int32(load_stream_flush_token_max_tasks);
1083
// max wait flush token time in load stream
1084
DECLARE_Int32(load_stream_max_wait_flush_token_time_ms);
1085
// number of send batch thread pool size
1086
DECLARE_Int32(send_batch_thread_pool_thread_num);
1087
// number of send batch thread pool queue size
1088
DECLARE_Int32(send_batch_thread_pool_queue_size);
1089
1090
// Limit the number of segment of a newly created rowset.
1091
// The newly created rowset may to be compacted after loading,
1092
// so if there are too many segment in a rowset, the compaction process
1093
// will run out of memory.
1094
// When doing compaction, each segment may take at least 1MB buffer.
1095
DECLARE_mInt32(max_segment_num_per_rowset);
1096
1097
// Store segment without compression if a segment is smaller than
1098
// segment_compression_threshold_kb.
1099
DECLARE_mInt32(segment_compression_threshold_kb);
1100
1101
// Global bitmap cache capacity for aggregation cache, size in bytes
1102
DECLARE_Int64(delete_bitmap_agg_cache_capacity);
1103
DECLARE_String(delete_bitmap_dynamic_agg_cache_limit);
1104
DECLARE_mInt32(delete_bitmap_agg_cache_stale_sweep_time_sec);
1105
1106
// A common object cache depends on an Sharded LRU Cache.
1107
DECLARE_mInt32(common_obj_lru_cache_stale_sweep_time_sec);
1108
1109
// reference https://github.com/edenhill/librdkafka/blob/master/INTRODUCTION.md#broker-version-compatibility
1110
// If the dependent kafka broker version older than 0.10.0.0,
1111
// the value of kafka_api_version_request should be false, and the
1112
// value set by the fallback version kafka_broker_version_fallback will be used,
1113
// and the valid values are: 0.9.0.x, 0.8.x.y.
1114
DECLARE_String(kafka_api_version_request);
1115
DECLARE_String(kafka_broker_version_fallback);
1116
DECLARE_mString(kafka_debug);
1117
1118
// The number of pool siz of routine load consumer.
1119
// If you meet the error describe in https://github.com/edenhill/librdkafka/issues/3608
1120
// Change this size to 0 to fix it temporarily.
1121
DECLARE_mInt32(routine_load_consumer_pool_size);
1122
1123
// the timeout of condition variable wait in blocking_get and blocking_put
1124
DECLARE_mInt32(blocking_queue_cv_wait_timeout_ms);
1125
1126
// Used in single-stream-multi-table load. When receive a batch of messages from kafka,
1127
// if the size of batch is more than this threshold, we will request plans for all related tables.
1128
DECLARE_Int32(multi_table_batch_plan_threshold);
1129
1130
// Used in single-stream-multi-table load. When receiving a batch of messages from Kafka,
1131
// if the size of the table wait for plan is more than this threshold, we will request plans for all related tables.
1132
// The param is aimed to avoid requesting and executing too many plans at once.
1133
// Performing small batch processing on multiple tables during the loaded process can reduce the pressure of a single RPC
1134
// and improve the real-time processing of data.
1135
DECLARE_Int32(multi_table_max_wait_tables);
1136
1137
// When the timeout of a load task is less than this threshold,
1138
// Doris treats it as a high priority task.
1139
// high priority tasks use a separate thread pool for flush and do not block rpc by memory cleanup logic.
1140
// this threshold is mainly used to identify routine load tasks and should not be modified if not necessary.
1141
DECLARE_mInt32(load_task_high_priority_threshold_second);
1142
1143
// The min timeout of load rpc (add batch, close)
1144
// Because a load rpc may be blocked for a while.
1145
// Increase this config may avoid rpc timeout.
1146
DECLARE_mInt32(min_load_rpc_timeout_ms);
1147
1148
// use which protocol to access function service, candicate is baidu_std/h2:grpc
1149
DECLARE_String(function_service_protocol);
1150
1151
// use which load balancer to select server to connect
1152
DECLARE_String(rpc_load_balancer);
1153
1154
// a soft limit of string type length, the hard limit is 2GB - 4, but if too long will cause very low performance,
1155
// so we set a soft limit, default is 1MB
1156
DECLARE_mInt32(string_type_length_soft_limit_bytes);
1157
1158
// Threshold fo reading a small file into memory
1159
DECLARE_mInt32(in_memory_file_size);
1160
1161
// Max size of parquet page header in bytes
1162
DECLARE_mInt32(parquet_header_max_size_mb);
1163
// Max buffer size for parquet row group
1164
DECLARE_mInt32(parquet_rowgroup_max_buffer_mb);
1165
// Max buffer size for parquet chunk column
1166
DECLARE_mInt32(parquet_column_max_buffer_mb);
1167
// Merge small IO, the max amplified read ratio
1168
DECLARE_mDouble(max_amplified_read_ratio);
1169
// Equivalent min size of each IO that can reach the maximum storage speed limit
1170
// 1MB for oss, 8KB for hdfs
1171
DECLARE_mInt32(merged_oss_min_io_size);
1172
DECLARE_mInt32(merged_hdfs_min_io_size);
1173
1174
// OrcReader
1175
DECLARE_mInt32(orc_natural_read_size_mb);
1176
1177
DECLARE_mInt32(runtime_filter_sampling_frequency);
1178
DECLARE_mInt32(execution_max_rpc_timeout_sec);
1179
DECLARE_mBool(execution_ignore_eovercrowded);
1180
1181
// cooldown task configs
1182
DECLARE_Int32(cooldown_thread_num);
1183
DECLARE_mInt64(generate_cooldown_task_interval_sec);
1184
DECLARE_mInt32(remove_unused_remote_files_interval_sec); // 6h
1185
DECLARE_mInt32(confirm_unused_remote_files_interval_sec);
1186
DECLARE_Int32(cold_data_compaction_thread_num);
1187
DECLARE_mInt32(cold_data_compaction_interval_sec);
1188
DECLARE_mInt32(cold_data_compaction_score_threshold);
1189
1190
DECLARE_Int32(min_s3_file_system_thread_num);
1191
DECLARE_Int32(max_s3_file_system_thread_num);
1192
1193
// Thread pool for S3 reads in cross-CG peer winner race.
1194
// Max should match max_concurrent_peer_races so the pool never fills up under normal operation.
1195
DECLARE_Int32(min_peer_race_s3_thread_num);
1196
DECLARE_Int32(max_peer_race_s3_thread_num);
1197
1198
DECLARE_Bool(enable_time_lut);
1199
1200
DECLARE_mBool(enable_query_like_bloom_filter);
1201
// number of s3 scanner thread pool size
1202
DECLARE_Int32(doris_remote_scanner_thread_pool_thread_num);
1203
// number of s3 scanner thread pool queue size
1204
DECLARE_Int32(doris_remote_scanner_thread_pool_queue_size);
1205
1206
// limit the queue of pending batches which will be sent by a single nodechannel
1207
DECLARE_mInt64(nodechannel_pending_queue_max_bytes);
1208
1209
// The batch size for sending data by brpc streaming client
1210
DECLARE_mInt64(brpc_streaming_client_batch_bytes);
1211
DECLARE_mInt64(block_cache_wait_timeout_ms);
1212
1213
DECLARE_Bool(enable_brpc_builtin_services);
1214
1215
DECLARE_Bool(enable_brpc_connection_check);
1216
1217
DECLARE_mInt64(brpc_connection_check_timeout_ms);
1218
1219
DECLARE_Int32(fragment_mgr_cancel_worker_interval_seconds);
1220
1221
// Node role tag for backend. Mix role is the default role, and computation role have no
1222
// any tablet.
1223
DECLARE_String(be_node_role);
1224
1225
// Hide webserver page for safety.
1226
// Hide the be config page for webserver.
1227
DECLARE_Bool(hide_webserver_config_page);
1228
1229
DECLARE_Bool(enable_segcompaction);
1230
1231
// Max number of segments allowed in a single segcompaction task.
1232
DECLARE_mInt32(segcompaction_batch_size);
1233
1234
// Max row count allowed in a single source segment, bigger segments will be skipped.
1235
DECLARE_Int32(segcompaction_candidate_max_rows);
1236
1237
// Max file size allowed in a single source segment, bigger segments will be skipped.
1238
DECLARE_Int64(segcompaction_candidate_max_bytes);
1239
1240
// Max total row count allowed in a single segcompaction task.
1241
DECLARE_Int32(segcompaction_task_max_rows);
1242
1243
// Max total file size allowed in a single segcompaction task.
1244
DECLARE_Int64(segcompaction_task_max_bytes);
1245
1246
// Global segcompaction thread pool size.
1247
DECLARE_mInt32(segcompaction_num_threads);
1248
1249
// enable java udf and jdbc scannode
1250
DECLARE_Bool(enable_java_support);
1251
1252
// enable python udf
1253
DECLARE_Bool(enable_python_udf_support);
1254
// python env mode, options: conda, venv
1255
DECLARE_String(python_env_mode);
1256
// root path of conda runtime, python_env_mode should be conda
1257
DECLARE_String(python_conda_root_path);
1258
// root path of venv runtime, python_env_mode should be venv
1259
DECLARE_String(python_venv_root_path);
1260
// python interpreter paths used by venv, e.g. /usr/bin/python3.7:/usr/bin/python3.6
1261
DECLARE_String(python_venv_interpreter_paths);
1262
// max python processes in global shared pool, each version can have up to this many processes
1263
DECLARE_mInt32(max_python_process_num);
1264
// Memory limit in bytes for all Python UDF processes; warning is logged when exceeded
1265
DECLARE_mInt64(python_udf_processes_memory_limit_bytes);
1266
1267
// Set config randomly to check more issues in github workflow
1268
DECLARE_Bool(enable_fuzzy_mode);
1269
1270
DECLARE_Bool(enable_graceful_exit_check);
1271
1272
DECLARE_Bool(enable_debug_points);
1273
1274
DECLARE_Int32(pipeline_executor_size);
1275
DECLARE_Int32(blocking_pipeline_executor_size);
1276
1277
// block file cache
1278
DECLARE_Bool(enable_file_cache);
1279
DECLARE_mBool(enable_file_cache_write_from_s3_file_writer);
1280
// format: [{"path":"/path/to/file_cache","total_size":21474836480,"query_limit":10737418240}]
1281
// format: [{"path":"/path/to/file_cache","total_size":21474836480,"query_limit":10737418240},{"path":"/path/to/file_cache2","total_size":21474836480,"query_limit":10737418240}]
1282
// format: [{"path":"/path/to/file_cache","total_size":21474836480,"query_limit":10737418240, "ttl_percent":50, "normal_percent":40, "disposable_percent":5, "index_percent":5}]
1283
// format: [{"path": "xxx", "total_size":53687091200, "storage": "memory"}]
1284
// Note1: storage is "disk" by default
1285
// Note2: when the storage is "memory", the path is ignored. So you can set xxx to anything you like
1286
// and doris will just reset the path to "memory" internally.
1287
// In a very wierd case when your storage is disk, and the directory, by accident, is named
1288
// "memory" for some reason, you should write the path as:
1289
//     {"path": "memory", "total_size":53687091200, "storage": "disk"}
1290
// or use the default storage value:
1291
//     {"path": "memory", "total_size":53687091200}
1292
// Both will use the directory "memory" on the disk instead of the real RAM.
1293
DECLARE_String(file_cache_path);
1294
DECLARE_Int64(file_cache_each_block_size);
1295
DECLARE_Bool(clear_file_cache);
1296
DECLARE_mBool(enable_file_cache_query_limit);
1297
DECLARE_mBool(enable_file_cache_query_limit_segment_meta);
1298
DECLARE_Int32(file_cache_enter_disk_resource_limit_mode_percent);
1299
DECLARE_Int32(file_cache_exit_disk_resource_limit_mode_percent);
1300
DECLARE_mBool(enable_evict_file_cache_in_advance);
1301
DECLARE_mInt32(file_cache_enter_need_evict_cache_in_advance_percent);
1302
DECLARE_mInt32(file_cache_exit_need_evict_cache_in_advance_percent);
1303
DECLARE_mInt32(file_cache_evict_in_advance_interval_ms);
1304
DECLARE_mInt64(file_cache_evict_in_advance_batch_bytes);
1305
DECLARE_mInt64(file_cache_evict_in_advance_recycle_keys_num_threshold);
1306
DECLARE_mBool(enable_read_cache_file_directly);
1307
DECLARE_Bool(file_cache_enable_evict_from_other_queue_by_size);
1308
DECLARE_mBool(enbale_dump_error_file);
1309
// limit the max size of error log on disk
1310
DECLARE_mInt64(file_cache_error_log_limit_bytes);
1311
DECLARE_mInt64(cache_lock_wait_long_tail_threshold_us);
1312
DECLARE_mInt64(cache_lock_held_long_tail_threshold_us);
1313
// Base compaction may retrieve and produce some less frequently accessed data,
1314
// potentially affecting the file cache hit rate.
1315
// This configuration determines whether to retain the output within the file cache.
1316
// Make your choice based on the following considerations:
1317
// If your file cache is ample enough to accommodate all the data in your database,
1318
// enable this option; otherwise, it is recommended to leave it disabled.
1319
DECLARE_mBool(enable_file_cache_keep_base_compaction_output);
1320
DECLARE_mBool(enable_file_cache_adaptive_write);
1321
DECLARE_mDouble(file_cache_keep_base_compaction_output_min_hit_ratio);
1322
DECLARE_mDouble(file_cache_meta_store_vs_file_system_diff_num_threshold);
1323
DECLARE_mDouble(file_cache_keep_schema_change_output_min_hit_ratio);
1324
DECLARE_mDouble(file_cache_leak_fs_to_meta_ratio_threshold);
1325
DECLARE_mInt64(file_cache_leak_scan_interval_seconds);
1326
DECLARE_mInt32(file_cache_leak_scan_batch_files);
1327
DECLARE_mInt32(file_cache_leak_scan_pause_ms);
1328
DECLARE_mInt64(file_cache_leak_grace_seconds);
1329
DECLARE_mInt64(file_cache_remove_block_qps_limit);
1330
DECLARE_mInt64(file_cache_background_gc_interval_ms);
1331
DECLARE_mInt64(file_cache_background_block_lru_update_interval_ms);
1332
DECLARE_mInt64(file_cache_background_block_lru_update_qps_limit);
1333
DECLARE_mInt64(file_cache_background_block_lru_update_queue_max_size);
1334
DECLARE_mBool(enable_file_cache_async_touch_on_get_or_set);
1335
DECLARE_mBool(enable_reader_dryrun_when_download_file_cache);
1336
DECLARE_mInt64(file_cache_background_monitor_interval_ms);
1337
DECLARE_mInt64(file_cache_background_ttl_gc_interval_ms);
1338
DECLARE_mInt64(file_cache_background_ttl_info_update_interval_ms);
1339
DECLARE_mInt64(file_cache_background_tablet_id_flush_interval_ms);
1340
DECLARE_Int32(file_cache_downloader_thread_num_min);
1341
DECLARE_Int32(file_cache_downloader_thread_num_max);
1342
// used to persist lru information before be reboot and load the info back
1343
DECLARE_mInt64(file_cache_background_lru_dump_interval_ms);
1344
// dump queue only if the queue update specific times through several dump intervals
1345
DECLARE_mInt64(file_cache_background_lru_dump_update_cnt_threshold);
1346
DECLARE_mInt64(file_cache_background_lru_dump_tail_record_num);
1347
DECLARE_mInt64(file_cache_background_lru_log_queue_max_size);
1348
DECLARE_mInt64(file_cache_background_lru_log_replay_interval_ms);
1349
DECLARE_mBool(enable_evaluate_shadow_queue_diff);
1350
1351
DECLARE_mBool(file_cache_enable_only_warm_up_idx);
1352
1353
// async file cache write
1354
DECLARE_mBool(enable_async_file_cache_write);
1355
DECLARE_mInt32(async_file_cache_write_workers_per_disk);
1356
DECLARE_mInt64(async_file_cache_write_max_pending_bytes);
1357
DECLARE_mBool(enable_async_file_cache_write_inflight_write_buffer_index);
1358
DECLARE_Int32(async_file_cache_write_inflight_write_buffer_index_shard_count);
1359
1360
// inverted index searcher cache
1361
// cache entry stay time after lookup
1362
DECLARE_mInt32(index_cache_entry_stay_time_after_lookup_s);
1363
// cache entry that have not been visited for a certain period of time can be cleaned up by GC thread
1364
DECLARE_mInt32(inverted_index_cache_stale_sweep_time_sec);
1365
// inverted index searcher cache size
1366
DECLARE_String(inverted_index_searcher_cache_limit);
1367
DECLARE_mBool(enable_write_index_searcher_cache);
1368
DECLARE_Bool(enable_inverted_index_cache_check_timestamp);
1369
DECLARE_mBool(enable_inverted_index_correct_term_write);
1370
DECLARE_Int32(inverted_index_fd_number_limit_percent); // 50%
1371
DECLARE_Int32(inverted_index_query_cache_shards);
1372
1373
// inverted index match bitmap cache size
1374
DECLARE_String(inverted_index_query_cache_limit);
1375
1376
// Process-wide emergency switch for CommonGrams query plans.
1377
DECLARE_mBool(enable_common_grams_query_plan);
1378
// Build-only CommonGrams kill switch. Logical index writers snapshot it at construction; changing
1379
// it affects only writers created after the transition and never changes query/cache semantics.
1380
DECLARE_mBool(enable_common_grams_index_build);
1381
// Release-calibrated query-planner coefficients. Both remain mutable for controlled recalibration.
1382
DECLARE_mInt32(common_grams_plan_cost_ratio_percent);
1383
DECLARE_mInt32(common_grams_position_verify_factor);
1384
1385
// condition cache limit
1386
DECLARE_Int16(condition_cache_limit);
1387
1388
// ANN index topn result cache
1389
DECLARE_String(ann_index_result_cache_limit);
1390
DECLARE_Int32(ann_index_result_cache_shards);
1391
DECLARE_Int32(ann_index_result_cache_stale_sweep_time_sec);
1392
1393
// inverted index
1394
DECLARE_mDouble(inverted_index_ram_buffer_size);
1395
DECLARE_mInt32(inverted_index_max_buffered_docs);
1396
// G16-c: whether plain positions-tier (non-scoring) SNII indexes lay out freq
1397
// regions. Freq serves ONLY BM25 scoring (no production caller yet), so the
1398
// default (false) drops the layout; scoring-config indexes always keep freq.
1399
// Write-side only; segments are self-describing either way.
1400
DECLARE_mBool(snii_positions_index_write_freq);
1401
// G16-h: zstd levels for SNII dict blocks / prx windows. Default 3 (the
1402
// all-level-3 evaluation showed level 9 buys <=6.3% index size for 17-24%
1403
// import CPU; see the DEFINEs in config.cpp).
1404
DECLARE_mInt32(snii_dict_block_zstd_level);
1405
DECLARE_mInt32(snii_prx_zstd_level);
1406
// Patch C: prx zstd level for DIRECT-LOAD segments only (default 3, cheaper
1407
// import); compaction rewrites at snii_prx_zstd_level so settled segments are
1408
// unaffected. Full contract at the DEFINE in config.cpp.
1409
DECLARE_mInt32(snii_prx_zstd_level_direct_load);
1410
// G16-d: target SNII dict block size in bytes; 0 = format default (64 KiB).
1411
// Bigger blocks -> better per-block zstd on the dict region, larger cold
1412
// fetch+decompress unit per dict-block miss. Write side only.
1413
DECLARE_mInt32(snii_target_dict_block_bytes);
1414
// PROCESS-WIDE share for SNII index-build RAM, as a PERCENT of the process
1415
// memory limit -- the index-build analogue of
1416
// load_process_max_memory_limit_percent. The per-writer
1417
// inverted_index_ram_buffer_size is a reclaimable-buffer spill threshold, not a
1418
// hard cap on persistent vocabulary bytes: a concurrent load keeps (tablets x
1419
// concurrency) writers alive at once, none of which may reach that threshold,
1420
// while their SUM can still be large. Once live SNII index-build memory
1421
// (ingestion plus index-merge compaction) crosses this share, the writers
1422
// holding the largest reclaimable posting arenas are asked to spill early
1423
// (async-safe advisory requests, honored on each writer's own thread; output
1424
// stays byte-identical). Read at every decision, so a change takes effect
1425
// immediately for writers that are already running.
1426
//
1427
// 0 disables SNII's own share trigger; the process-level backstops (system
1428
// available memory below its warning water mark, process usage above the soft
1429
// limit) still apply.
1430
//
1431
// FLOORED AGAINST inverted_index_ram_buffer_size: the share is never less than
1432
// four writers' worth of the per-writer spill threshold. A smaller share would
1433
// put a small BE permanently over it as soon as two writers exist -- unrelievable
1434
// back-pressure rather than a limit -- because the per-writer threshold is what
1435
// one writer may hold before it spills on its own.
1436
DECLARE_mInt32(snii_index_build_max_memory_limit_percent);
1437
// G09 forced-spill floor: minimum reclaimable posting-arena bytes a SNII
1438
// writer must hold before a process-wide forced-spill request is honored, and
1439
// before the global limiter selects it as a spill victim. A forced spill
1440
// reclaims ONLY the posting arena -- the persistent vocab / pair-map
1441
// structures survive it -- so honoring below a real floor degenerates into a
1442
// storm of tiny runs whenever the memory over the share is dominated by
1443
// persistent bytes (each run then costs a file, a sort and a merge-fd for
1444
// near-zero memory relief). THIS FLOOR, not any judgement about whether the
1445
// overage is reachable, is what bounds forced spilling: it caps the cost at one
1446
// >= floor-sized run per floor of arena growth per writer. Forced spilling
1447
// therefore reclaims SPILLABLE memory only, never persistent memory.
1448
// Default 64 MiB.
1449
DECLARE_mInt64(snii_forced_spill_min_arena_bytes);
1450
// G09 run-file cap: maximum spill-run files one SNII writer may accumulate;
1451
// on the next spill past the cap, the existing runs are merge-compacted into
1452
// a single run first (term stream unchanged). Bounds the final k-way merge's
1453
// fan-in and, decisively, its simultaneously-open file descriptors -- every
1454
// run of a buffer is reopened and held open for the whole merge, so unbounded
1455
// run counts across ~100 concurrent writers can exhaust the BE nofile rlimit
1456
// ("Too many open files" at run reopen). 0 disables the cap. Default 64.
1457
DECLARE_mInt32(snii_spill_max_run_files_per_buffer);
1458
// dict path for chinese analyzer
1459
DECLARE_String(inverted_index_dict_path);
1460
// The kuromoji (Japanese) analyzer
1461
DECLARE_mBool(enable_kuromoji_analyzer);
1462
DECLARE_Int32(inverted_index_read_buffer_size);
1463
// tree depth for bkd index
1464
DECLARE_Int32(max_depth_in_bkd_tree);
1465
// index compaction
1466
DECLARE_mBool(inverted_index_compaction_enable);
1467
// Only for debug, do not use in production
1468
DECLARE_mBool(debug_inverted_index_compaction);
1469
// index by RAM directory
1470
DECLARE_mBool(inverted_index_ram_dir_enable);
1471
// wheather index by RAM directory when base compaction
1472
DECLARE_mBool(inverted_index_ram_dir_enable_when_base_compaction);
1473
// use num_broadcast_buffer blocks as buffer to do broadcast
1474
DECLARE_Int32(num_broadcast_buffer);
1475
1476
// max depth of expression tree allowed.
1477
DECLARE_Int32(max_depth_of_expr_tree);
1478
1479
// Report a tablet as bad when io errors occurs more than this value.
1480
DECLARE_mInt64(max_tablet_io_errors);
1481
1482
// Report a tablet as bad when its path not found
1483
DECLARE_Int32(tablet_path_check_interval_seconds);
1484
DECLARE_mInt32(tablet_path_check_batch_size);
1485
1486
// it must be larger than or equal to 5MB
1487
DECLARE_mInt64(s3_write_buffer_size);
1488
// Log interval when doing s3 upload task
1489
DECLARE_mInt32(s3_file_writer_log_interval_second);
1490
// the max number of cached file handle for block segemnt
1491
DECLARE_mInt64(file_cache_max_file_reader_cache_size);
1492
DECLARE_mInt64(hdfs_write_batch_buffer_size_mb);
1493
//enable shrink memory
1494
DECLARE_mBool(enable_shrink_memory);
1495
1496
// max number of segment cache
1497
DECLARE_Int32(segment_cache_capacity);
1498
DECLARE_Int32(segment_cache_fd_percentage);
1499
DECLARE_Int32(segment_cache_memory_percentage);
1500
DECLARE_Bool(enable_segment_cache_prune);
1501
1502
DECLARE_mInt32(estimated_mem_per_column_reader);
1503
1504
// enable binlog
1505
DECLARE_Bool(enable_feature_binlog);
1506
1507
// enable set in BitmapValue
1508
DECLARE_Bool(enable_set_in_bitmap_value);
1509
1510
// Enable compact integer tags in row-store JSONB. Once enabled and compact data is written,
1511
// rollback to code without compact row-store JSONB reader support is not safe.
1512
DECLARE_Bool(enable_row_store_compact_jsonb);
1513
1514
// max number of hdfs file handle in cache
1515
DECLARE_Int64(max_hdfs_file_handle_cache_num);
1516
DECLARE_Int32(max_hdfs_file_handle_cache_time_sec);
1517
1518
// max number of meta info of external files, such as parquet footer
1519
DECLARE_Int64(max_external_file_meta_cache_num);
1520
// Apply delete pred in cumu compaction
1521
DECLARE_mBool(enable_delete_when_cumu_compaction);
1522
1523
// max_write_buffer_number for rocksdb
1524
DECLARE_Int32(rocksdb_max_write_buffer_number);
1525
1526
// Convert date 0000-00-00 to 0000-01-01. It's recommended to set to false.
1527
DECLARE_mBool(allow_zero_date);
1528
// Allow invalid decimalv2 literal for compatible with old version. Recommend set it false strongly.
1529
DECLARE_mBool(allow_invalid_decimalv2_literal);
1530
// Allow to specify kerberos credentials cache path.
1531
DECLARE_mString(kerberos_ccache_path);
1532
// set krb5.conf path, use "/etc/krb5.conf" by default
1533
DECLARE_mString(kerberos_krb5_conf_path);
1534
1535
// JDK-8153057: avoid StackOverflowError thrown from the UncaughtExceptionHandler in thread "process reaper"
1536
DECLARE_mBool(jdk_process_reaper_use_default_stack_size);
1537
1538
DECLARE_mBool(enable_address_sanitizers_with_stack_trace);
1539
1540
// DISABLED: Don't resolve location info.
1541
// FAST: Perform CU lookup using .debug_aranges (might be incomplete).
1542
// FULL: Scan all CU in .debug_info (slow!) on .debug_aranges lookup failure.
1543
// FULL_WITH_INLINE: Scan .debug_info (super slower, use with caution) for inline functions in addition to FULL.
1544
DECLARE_mString(dwarf_location_info_mode);
1545
1546
// the ratio of _prefetch_size/_batch_size in AutoIncIDBuffer
1547
DECLARE_mInt64(auto_inc_prefetch_size_ratio);
1548
1549
// the ratio of _low_level_water_level_mark/_batch_size in AutoIncIDBuffer
1550
DECLARE_mInt64(auto_inc_low_water_level_mark_size_ratio);
1551
1552
// number of threads that fetch auto-inc ranges from FE
1553
DECLARE_mInt64(auto_inc_fetch_thread_num);
1554
// Max connection cache num for point lookup queries
1555
DECLARE_mInt64(lookup_connection_cache_capacity);
1556
1557
// level of compression when using LZ4_HC, whose defalut value is LZ4HC_CLEVEL_DEFAULT
1558
DECLARE_mInt64(LZ4_HC_compression_level);
1559
// Max json key length in bytes when parsing json into variant subcolumns/jsonb.
1560
DECLARE_mInt32(variant_max_json_key_length);
1561
// Treat invalid json format str as string, instead of throwing exception if false
1562
DECLARE_mBool(variant_throw_exeception_on_invalid_json);
1563
// Enable duplicate path check when parsing json into variant subcolumns/jsonb.
1564
DECLARE_mBool(variant_enable_duplicate_json_path_check);
1565
// Controls storage-layer parse target for plain non-doc VARIANT columns:
1566
// 0 = auto, 1 = force parse-time subcolumns, 2 = force doc-value KV staging.
1567
DECLARE_mInt32(variant_storage_parse_mode);
1568
// Enable vertical compact subcolumns of variant column
1569
DECLARE_mBool(enable_vertical_compact_variant_subcolumns);
1570
DECLARE_mBool(enable_variant_doc_sparse_write_subcolumns);
1571
// When true, discard scalar data that conflicts with NestedGroup array<object>
1572
// data at the same path. This simplifies compaction by always prioritizing
1573
// nested structure over scalar. When false, report an error on conflict.
1574
DECLARE_mBool(variant_nested_group_discard_scalar_on_conflict);
1575
1576
DECLARE_mBool(enable_merge_on_write_correctness_check);
1577
// USED FOR DEBUGING
1578
// core directly if the compaction found there's duplicate key on mow table
1579
DECLARE_mBool(enable_mow_compaction_correctness_check_core);
1580
// USED FOR DEBUGING
1581
// let compaction fail if the compaction found there's duplicate key on mow table
1582
DECLARE_mBool(enable_mow_compaction_correctness_check_fail);
1583
// rowid conversion correctness check when compaction for mow table
1584
DECLARE_mBool(enable_rowid_conversion_correctness_check);
1585
// missing rows correctness check when compaction for mow table
1586
DECLARE_mBool(enable_missing_rows_correctness_check);
1587
// When the number of missing versions is more than this value, do not directly
1588
// retry the publish and handle it through async publish.
1589
DECLARE_mInt32(mow_publish_max_discontinuous_version_num);
1590
// When the size of primary keys in memory exceeds this value, finish current segment
1591
// and create a new segment, used in compaction.
1592
DECLARE_mInt64(mow_primary_key_index_max_size_in_memory);
1593
// When the version is not continuous for MOW table in publish phase and the gap between
1594
// current txn's publishing version and the max version of the tablet exceeds this value,
1595
// don't print warning log
1596
DECLARE_mInt32(publish_version_gap_logging_threshold);
1597
// get agg by cache for mow table
1598
DECLARE_mBool(enable_mow_get_agg_by_cache);
1599
// get agg correctness check for mow table
1600
DECLARE_mBool(enable_mow_get_agg_correctness_check_core);
1601
DECLARE_mBool(enable_agg_and_remove_pre_rowsets_delete_bitmap);
1602
DECLARE_mBool(enable_check_agg_and_remove_pre_rowsets_delete_bitmap);
1603
1604
// The secure path with user files, used in the `local` table function.
1605
DECLARE_String(user_files_secure_path);
1606
1607
// If fe's frontend info has not been updated for more than fe_expire_duration_seconds, it will be regarded
1608
// as an abnormal fe, this will cause be to cancel this fe's related query.
1609
DECLARE_Int32(fe_expire_duration_seconds);
1610
1611
// If use stop_be.sh --grace, then BE has to wait all running queries to stop to avoiding running query failure
1612
// , but if the waiting time exceed the limit, then be will exit directly.
1613
// During this period, FE will not send any queries to BE and waiting for all running queries to stop.
1614
DECLARE_Int32(grace_shutdown_wait_seconds);
1615
// When using the graceful stop feature, after the main process waits for
1616
// all currently running tasks to finish, it will continue to wait for
1617
// an additional period to ensure that queries still running on other nodes have also completed.
1618
// Since a BE node cannot detect the task execution status on other BE nodes,
1619
// you may need to increase this threshold to allow for a longer waiting time.
1620
DECLARE_Int32(grace_shutdown_post_delay_seconds);
1621
1622
// BitmapValue serialize version.
1623
DECLARE_Int16(bitmap_serialize_version);
1624
1625
// group commit config
1626
DECLARE_String(group_commit_wal_path);
1627
DECLARE_Int32(group_commit_replay_wal_retry_num);
1628
DECLARE_Int32(group_commit_replay_wal_retry_interval_seconds);
1629
DECLARE_Int32(group_commit_replay_wal_retry_interval_max_seconds);
1630
DECLARE_mInt32(group_commit_relay_wal_threads);
1631
// This config can be set to limit thread number in group commit request fragment thread pool.
1632
DECLARE_mInt32(group_commit_insert_threads);
1633
DECLARE_mInt32(group_commit_memory_rows_for_max_filter_ratio);
1634
DECLARE_Bool(wait_internal_group_commit_finish);
1635
// Max size(bytes) of group commit queues, used for mem back pressure.
1636
DECLARE_mInt32(group_commit_queue_mem_limit);
1637
// Max size(bytes) or percentage(%) of wal disk usage, used for disk space back pressure, default 10% of the disk available space.
1638
// group_commit_wal_max_disk_limit=1024 or group_commit_wal_max_disk_limit=10% can be automatically identified.
1639
DECLARE_mString(group_commit_wal_max_disk_limit);
1640
DECLARE_Bool(group_commit_wait_replay_wal_finish);
1641
// Max WAL count for one table before rejecting async group commit loads. 0 means no limit.
1642
DECLARE_mInt32(group_commit_max_wal_num_per_table);
1643
// Max time(ms) to wait for creating group commit plan fragment. 0 means no timeout.
1644
DECLARE_mInt32(group_commit_create_plan_timeout_ms);
1645
1646
// The configuration item is used to lower the priority of the scanner thread,
1647
// typically employed to ensure CPU scheduling for write operations.
1648
// Default is 0, which is default value of thread nice value, increase this value
1649
// to lower the priority of scan threads
1650
DECLARE_Int32(scan_thread_nice_value);
1651
// Used to modify the recycle interval of tablet schema cache
1652
DECLARE_mInt32(tablet_schema_cache_recycle_interval);
1653
// Granularity is at the column level
1654
DECLARE_mInt32(tablet_schema_cache_capacity);
1655
1656
// Use `LOG(FATAL)` to replace `throw` when true
1657
DECLARE_mBool(exit_on_exception);
1658
1659
// cgroup
1660
DECLARE_String(doris_cgroup_cpu_path);
1661
DECLARE_mBool(enable_be_proc_monitor);
1662
DECLARE_mInt32(be_proc_monitor_interval_ms);
1663
DECLARE_Int32(workload_group_metrics_interval_ms);
1664
DECLARE_Int32(workload_policy_check_interval_ms);
1665
1666
// This config controls whether the s3 file writer would flush cache asynchronously
1667
DECLARE_Bool(enable_flush_file_cache_async);
1668
1669
// Ingest binlog work pool size
1670
DECLARE_Int32(ingest_binlog_work_pool_size);
1671
1672
// Ingest binlog with persistent connection
1673
DECLARE_Bool(enable_ingest_binlog_with_persistent_connection);
1674
1675
// Log ingest binlog elapsed threshold, -1 means no log
1676
DECLARE_mInt64(ingest_binlog_elapsed_threshold_ms);
1677
1678
// Download binlog rate limit, unit is KB/s
1679
DECLARE_Int32(download_binlog_rate_limit_kbs);
1680
1681
DECLARE_mInt32(buffered_reader_read_timeout_ms);
1682
1683
// whether to enable /api/snapshot api
1684
DECLARE_Bool(enable_snapshot_action);
1685
1686
// The max columns size for a tablet schema
1687
DECLARE_mInt32(variant_max_merged_tablet_schema_size);
1688
1689
DECLARE_mInt64(local_exchange_buffer_mem_limit);
1690
1691
DECLARE_mBool(enable_column_type_check);
1692
1693
// Tolerance for the number of partition id 0 in rowset, default 0
1694
DECLARE_Int32(ignore_invalid_partition_id_rowset_num);
1695
1696
DECLARE_mInt32(report_query_statistics_interval_ms);
1697
DECLARE_mInt32(query_statistics_reserve_timeout_ms);
1698
DECLARE_mInt32(report_exec_status_thread_num);
1699
1700
// consider two high usage disk at the same available level if they do not exceed this diff.
1701
DECLARE_mDouble(high_disk_avail_level_diff_usages);
1702
1703
// create tablet in partition random robin idx lru size, default 10000
1704
DECLARE_Int32(partition_disk_index_lru_size);
1705
DECLARE_String(spill_storage_root_path);
1706
// Spill storage limit specified as number of bytes
1707
// ('<int>[bB]?'), megabytes ('<float>[mM]'), gigabytes ('<float>[gG]'),
1708
// or percentage of capaity ('<int>%').
1709
// Defaults to bytes if no unit is given.
1710
// Must larger than 0.
1711
// If specified as percentage, the final limit value is:
1712
//   disk_capacity_bytes * storage_flood_stage_usage_percent * spill_storage_limit
1713
DECLARE_String(spill_storage_limit);
1714
DECLARE_mInt32(spill_gc_interval_ms);
1715
DECLARE_mInt32(spill_gc_work_time_ms);
1716
// Maximum size of each spill part file before rotation (bytes). Default 1GB.
1717
DECLARE_mInt64(spill_file_part_size_bytes);
1718
DECLARE_Int64(spill_in_paused_queue_timeout_ms);
1719
DECLARE_Int64(wait_cancel_release_memory_ms);
1720
1721
DECLARE_mBool(check_segment_when_build_rowset_meta);
1722
1723
DECLARE_Int32(num_query_ctx_map_partitions);
1724
1725
DECLARE_mBool(enable_s3_rate_limiter);
1726
DECLARE_mInt64(s3_get_bucket_tokens);
1727
DECLARE_mInt64(s3_get_token_per_second);
1728
DECLARE_mInt64(s3_get_token_limit);
1729
1730
DECLARE_mInt64(s3_put_bucket_tokens);
1731
DECLARE_mInt64(s3_put_token_per_second);
1732
DECLARE_mInt64(s3_put_token_limit);
1733
DECLARE_mInt64(s3_rate_limiter_log_interval);
1734
1735
// CPU-aware S3 rate limiter: GET/PUT QPS per CPU core. A negative value means unset and
1736
// falls back to the legacy absolute token configs above; 0 disables QPS limiting.
1737
DECLARE_mInt64(s3_get_requests_per_second_per_core);
1738
DECLARE_mInt64(s3_put_requests_per_second_per_core);
1739
// Hard caps for the CPU-derived GET/PUT QPS. A non-positive value means no cap.
1740
DECLARE_mInt64(s3_get_requests_per_second_max);
1741
DECLARE_mInt64(s3_put_requests_per_second_max);
1742
// GET/PUT bytes per second per CPU core. A non-positive value disables byte-rate limiting.
1743
DECLARE_mInt64(s3_get_bytes_per_second_per_core);
1744
DECLARE_mInt64(s3_put_bytes_per_second_per_core);
1745
// Hard caps for the CPU-derived GET/PUT bytes/s. A non-positive value means no cap.
1746
DECLARE_mInt64(s3_get_bytes_per_second_max);
1747
DECLARE_mInt64(s3_put_bytes_per_second_max);
1748
// Override for cores used to derive effective limits: a non-positive value means auto-detect.
1749
DECLARE_mInt32(s3_rate_limiter_cpu_cores_override);
1750
// max s3 client retry times
1751
DECLARE_mInt32(max_s3_client_retry);
1752
// When meet s3 429 error, the "get" request will
1753
// sleep s3_read_base_wait_time_ms (*1, *2, *3, *4) ms
1754
// get try again.
1755
// The max sleep time is s3_read_max_wait_time_ms
1756
// and the max retry time is max_s3_client_retry
1757
DECLARE_mInt32(s3_read_base_wait_time_ms);
1758
DECLARE_mInt32(s3_read_max_wait_time_ms);
1759
DECLARE_mBool(enable_s3_object_check_after_upload);
1760
DECLARE_mInt32(aws_client_request_timeout_ms);
1761
1762
// write as inverted index tmp directory
1763
DECLARE_String(tmp_file_dir);
1764
1765
// the directory for storing the trino-connector plugins.
1766
DECLARE_String(trino_connector_plugin_dir);
1767
1768
// the file paths(one or more) of CA cert, splite using ";" aws s3 lib use it to init s3client
1769
DECLARE_mString(ca_cert_file_paths);
1770
1771
/** Table sink configurations(currently contains only external table types) **/
1772
// Minimum data processed to scale writers in exchange when non partition writing
1773
DECLARE_mInt64(table_sink_non_partition_write_scaling_data_processed_threshold);
1774
// Minimum data processed to trigger skewed partition rebalancing in exchange when partition writing
1775
DECLARE_mInt64(table_sink_partition_write_min_data_processed_rebalance_threshold);
1776
// Minimum partition data processed to rebalance writers in exchange when partition writing
1777
DECLARE_mInt64(table_sink_partition_write_min_partition_data_processed_rebalance_threshold);
1778
// Maximum processed partition nums of per writer when partition writing
1779
DECLARE_mInt32(table_sink_partition_write_max_partition_nums_per_writer);
1780
1781
/** Hive sink configurations **/
1782
DECLARE_mInt64(hive_sink_max_file_size);
1783
1784
/** Iceberg sink configurations **/
1785
DECLARE_mInt64(iceberg_sink_max_file_size);
1786
1787
/** Paimon sink configurations **/
1788
// Hard upper bound for Doris-managed Paimon write-buffer memory per JNI writer.
1789
DECLARE_mInt64(paimon_jni_writer_memory_pool_limit_bytes);
1790
1791
// Number of open tries, default 1 means only try to open once.
1792
// Retry the Open num_retries time waiting 100 milliseconds between retries.
1793
DECLARE_mInt32(thrift_client_open_num_tries);
1794
1795
// Default HTTP scheme used by S3Client when the endpoint has no scheme.
1796
DECLARE_String(s3_client_http_scheme);
1797
1798
DECLARE_mBool(ignore_schema_change_check);
1799
1800
// The min thread num for BufferedReaderPrefetchThreadPool
1801
DECLARE_Int64(num_buffered_reader_prefetch_thread_pool_min_thread);
1802
// The max thread num for BufferedReaderPrefetchThreadPool
1803
DECLARE_Int64(num_buffered_reader_prefetch_thread_pool_max_thread);
1804
1805
DECLARE_mBool(enable_segment_prefetch_verbose_log);
1806
// The thread num for SegmentPrefetchThreadPool
1807
DECLARE_Int64(segment_prefetch_thread_pool_thread_num_min);
1808
DECLARE_Int64(segment_prefetch_thread_pool_thread_num_max);
1809
1810
DECLARE_mInt32(segment_file_cache_consume_rowids_batch_size);
1811
// Enable segment file cache block prefetch for query
1812
DECLARE_mBool(enable_query_segment_file_cache_prefetch);
1813
// Number of blocks to prefetch ahead in segment iterator for query
1814
DECLARE_mInt32(query_segment_file_cache_prefetch_block_size);
1815
// Enable segment file cache block prefetch for compaction
1816
DECLARE_mBool(enable_compaction_segment_file_cache_prefetch);
1817
// Number of blocks to prefetch ahead in segment iterator for compaction
1818
DECLARE_mInt32(compaction_segment_file_cache_prefetch_block_size);
1819
// The min thread num for S3FileUploadThreadPool
1820
DECLARE_Int64(num_s3_file_upload_thread_pool_min_thread);
1821
// The max thread num for S3FileUploadThreadPool
1822
DECLARE_Int64(num_s3_file_upload_thread_pool_max_thread);
1823
// The maximum jvm heap usage ratio for hdfs write workload
1824
DECLARE_mDouble(max_hdfs_wirter_jni_heap_usage_ratio);
1825
// The sleep milliseconds duration when hdfs write exceeds the maximum usage
1826
DECLARE_mInt64(hdfs_jni_write_sleep_milliseconds);
1827
// The max retry times when hdfs write failed
1828
DECLARE_mInt64(hdfs_jni_write_max_retry_time);
1829
1830
// The min thread num for NonBlockCloseThreadPool
1831
DECLARE_Int64(min_nonblock_close_thread_num);
1832
// The max thread num for NonBlockCloseThreadPool
1833
DECLARE_Int64(max_nonblock_close_thread_num);
1834
// The possibility that mem allocator throws an exception during memory allocation
1835
// This config is for test usage, be careful when changing it.
1836
DECLARE_mDouble(mem_alloc_fault_probability);
1837
// The time out milliseconds for remote fetch schema RPC
1838
DECLARE_mInt64(fetch_remote_schema_rpc_timeout_ms);
1839
// The size of the local buffer for S3FileSytem's upload function
1840
1841
DECLARE_Int64(s3_file_system_local_upload_buffer_size);
1842
1843
//JVM monitoring enable. To prevent be from crashing due to jvm compatibility issues.
1844
DECLARE_Bool(enable_jvm_monitor);
1845
1846
// Num threads to load data dirs, default value -1 indicates the same number of threads as the number of data dirs
1847
DECLARE_Int32(load_data_dirs_threads);
1848
1849
// Skip loading stale rowset meta when initializing `TabletMeta` from protobuf
1850
DECLARE_mBool(skip_loading_stale_rowset_meta);
1851
// Whether to use file to record log. When starting BE with --console,
1852
// all logs will be written to both standard output and file.
1853
// Disable this option will no longer use file to record log.
1854
// Only works when starting BE with --console.
1855
DECLARE_Bool(enable_file_logger);
1856
1857
// Enable partition column fallback when partition columns are missing from file
1858
DECLARE_Bool(enable_iceberg_partition_column_fallback);
1859
1860
// The minimum row group size when exporting Parquet files.
1861
DECLARE_Int64(min_row_group_size);
1862
1863
DECLARE_mInt64(compaction_memory_bytes_limit);
1864
1865
DECLARE_mInt64(compaction_batch_size);
1866
1867
DECLARE_mBool(enable_parquet_page_index);
1868
1869
// Wheather to ignore not found file in external teble(eg, hive)
1870
// Default is true, if set to false, the not found file will result in query failure.
1871
DECLARE_mBool(ignore_not_found_file_in_external_table);
1872
1873
DECLARE_mBool(enable_hdfs_mem_limiter);
1874
1875
// Define how many percent data in hashtable bigger than limit
1876
// we should do agg limit opt
1877
DECLARE_mInt16(topn_agg_limit_multiplier);
1878
1879
DECLARE_mInt64(tablet_meta_serialize_size_limit);
1880
1881
DECLARE_mInt64(pipeline_task_leakage_detect_period_secs);
1882
// To be compatible with hadoop's block compression
1883
DECLARE_mInt32(snappy_compression_block_size);
1884
DECLARE_mInt32(lz4_compression_block_size);
1885
1886
DECLARE_mBool(enable_pipeline_task_leakage_detect);
1887
1888
DECLARE_mInt32(check_score_rounds_num);
1889
1890
// MB
1891
DECLARE_Int32(query_cache_size);
1892
// Max incremental merges on one query cache entry before forcing a full
1893
// recompute to compact the entry (see query_cache.h QueryCacheRuntime).
1894
DECLARE_mInt32(query_cache_max_incremental_merge_count);
1895
DECLARE_Bool(force_regenerate_rowsetid_on_start_error);
1896
1897
// Enable validation to check the correctness of table size.
1898
DECLARE_Bool(enable_table_size_correctness_check);
1899
// Enable sleep 5s between delete cumulative compaction.
1900
DECLARE_mBool(enable_sleep_between_delete_cumu_compaction);
1901
1902
DECLARE_mInt32(compaction_num_per_round);
1903
DECLARE_mInt32(max_automatic_compaction_num_per_round);
1904
1905
DECLARE_mInt32(check_tablet_delete_bitmap_interval_seconds);
1906
DECLARE_mInt32(check_tablet_delete_bitmap_score_top_n);
1907
DECLARE_mBool(enable_check_tablet_delete_bitmap_score);
1908
1909
// whether to prune rows with delete sign = 1 in base compaction
1910
// ATTN: this config is only for test
1911
DECLARE_mBool(enable_prune_delete_sign_when_base_compaction);
1912
1913
DECLARE_mBool(enable_mow_verbose_log);
1914
1915
DECLARE_mInt32(tablet_sched_delay_time_ms);
1916
DECLARE_mInt32(load_trigger_compaction_version_percent);
1917
DECLARE_mInt64(base_compaction_interval_seconds_since_last_operation);
1918
DECLARE_mBool(enable_compaction_pause_on_high_memory);
1919
1920
DECLARE_mBool(enable_quorum_success_write);
1921
DECLARE_mDouble(quorum_success_max_wait_multiplier);
1922
DECLARE_mInt64(quorum_success_min_wait_seconds);
1923
DECLARE_mInt32(quorum_success_remaining_timeout_seconds);
1924
1925
DECLARE_mBool(enable_calc_delete_bitmap_between_segments_concurrently);
1926
1927
DECLARE_mBool(enable_update_delete_bitmap_kv_check_core);
1928
1929
DECLARE_mBool(enable_fetch_rowsets_from_peer_replicas);
1930
// the max length of segments key bounds, in bytes
1931
// ATTENTION: as long as this conf has ever been enabled, cluster downgrade and backup recovery will no longer be supported.
1932
DECLARE_mInt32(segments_key_bounds_truncation_threshold);
1933
// ATTENTION: for test only, use random segments key bounds truncation threshold every time
1934
DECLARE_mBool(random_segments_key_bounds_truncation);
1935
1936
// If true, non-MOW rowsets store a single aggregated [rowset_min, rowset_max]
1937
// key-bounds entry instead of per-segment bounds, to reduce meta size on cloud FDB.
1938
DECLARE_mBool(enable_aggregate_non_mow_key_bounds);
1939
1940
DECLARE_mBool(enable_auto_clone_on_compaction_missing_version);
1941
1942
DECLARE_mBool(enable_auto_clone_on_mow_publish_missing_version);
1943
1944
// p0, daily, rqg, external
1945
DECLARE_String(fuzzy_test_type);
1946
1947
// The maximum csv line reader output buffer size
1948
DECLARE_mInt64(max_csv_line_reader_output_buffer_size);
1949
1950
// The maximum bytes of a single block returned by load file readers (CsvReader, NewJsonReader,
1951
// ParquetReader, OrcReader). Default is 200MB. Set to 0 to disable the limit.
1952
DECLARE_mInt64(load_reader_max_block_bytes);
1953
1954
// Maximum number of OpenMP threads available for concurrent index builds.
1955
// -1 means auto: use 80% of detected CPU cores.
1956
DECLARE_Int32(omp_threads_limit);
1957
// The capacity of segment partial column cache, used to cache column readers for each segment.
1958
DECLARE_mInt32(max_segment_partial_column_cache_size);
1959
// Cache for ANN index IVF on-disk list data.
1960
// Default "70%" means 70% of total physical memory.
1961
DECLARE_String(ann_index_ivf_list_cache_limit);
1962
// Stale sweep time for ANN index IVF list cache in seconds.
1963
DECLARE_mInt32(ann_index_ivf_list_cache_stale_sweep_time_sec);
1964
// Minimum segment rows required to persist an ANN index.
1965
DECLARE_mInt64(ann_index_build_min_segment_rows);
1966
1967
DECLARE_mBool(enable_prefill_output_dbm_agg_cache_after_compaction);
1968
DECLARE_mBool(enable_prefill_all_dbm_agg_cache_after_compaction);
1969
1970
DECLARE_mBool(enable_wal_tde);
1971
1972
DECLARE_mBool(print_stack_when_cache_miss);
1973
1974
DECLARE_mBool(read_cluster_cache_opt_verbose_log);
1975
1976
DECLARE_mString(aws_credentials_provider_version);
1977
1978
// Concurrency stats dump configuration
1979
DECLARE_mBool(enable_concurrency_stats_dump);
1980
DECLARE_mInt32(concurrency_stats_dump_interval_ms);
1981
1982
DECLARE_mBool(cloud_mow_sync_rowsets_when_load_txn_begin);
1983
1984
DECLARE_mBool(enable_cloud_make_rs_visible_on_be);
1985
DECLARE_mBool(enable_cloud_random_segment_id);
1986
DECLARE_mInt32(file_handles_deplenish_frequency_times);
1987
1988
#ifdef BE_TEST
1989
DECLARE_String(test_s3_ak);
1990
DECLARE_String(test_s3_sk);
1991
DECLARE_String(test_s3_endpoint);
1992
DECLARE_String(test_s3_region);
1993
DECLARE_String(test_s3_bucket);
1994
DECLARE_String(test_s3_prefix);
1995
#endif
1996
1997
class Register {
1998
public:
1999
    struct Field {
2000
        const char* type = nullptr;
2001
        const char* name = nullptr;
2002
        void* storage = nullptr;
2003
        const char* defval = nullptr;
2004
        bool valmutable = false;
2005
        Field(const char* ftype, const char* fname, void* fstorage, const char* fdefval,
2006
              bool fvalmutable)
2007
7.18k
                : type(ftype),
2008
7.18k
                  name(fname),
2009
7.18k
                  storage(fstorage),
2010
7.18k
                  defval(fdefval),
2011
7.18k
                  valmutable(fvalmutable) {}
2012
    };
2013
2014
public:
2015
    static std::map<std::string, Field>* _s_field_map;
2016
2017
public:
2018
    Register(const char* ftype, const char* fname, void* fstorage, const char* fdefval,
2019
7.18k
             bool fvalmutable) {
2020
7.18k
        if (_s_field_map == nullptr) {
2021
8
            _s_field_map = new std::map<std::string, Field>();
2022
8
        }
2023
7.18k
        Field field(ftype, fname, fstorage, fdefval, fvalmutable);
2024
7.18k
        _s_field_map->insert(std::make_pair(std::string(fname), field));
2025
7.18k
    }
2026
};
2027
2028
// RegisterConfValidator class is used to store validator function of registered config fields in
2029
// Register::_s_field_map.
2030
// If any validator return false when BE bootstart, the bootstart will be terminated.
2031
// If validator return false when use http API to update some config, the config will not
2032
// be modified and the API will return failure.
2033
class RegisterConfValidator {
2034
public:
2035
    // Validator for each config name.
2036
    static std::map<std::string, std::function<bool()>>* _s_field_validator;
2037
2038
public:
2039
208
    RegisterConfValidator(const char* fname, const std::function<bool()>& validator) {
2040
208
        if (_s_field_validator == nullptr) {
2041
8
            _s_field_validator = new std::map<std::string, std::function<bool()>>();
2042
8
        }
2043
        // register validator to _s_field_validator
2044
208
        _s_field_validator->insert(std::make_pair(std::string(fname), validator));
2045
208
    }
2046
};
2047
2048
// RegisterConfUpdateCallback class is used to store callback functions that will be called
2049
// when a config field is updated at runtime.
2050
// The callback function takes two void pointers: old_value and new_value.
2051
// The actual type casting is done in the DEFINE_ON_UPDATE macro.
2052
class RegisterConfUpdateCallback {
2053
public:
2054
    using CallbackFunc = std::function<void(const void* old_ptr, const void* new_ptr)>;
2055
    // Callback map for each config name.
2056
    static std::map<std::string, CallbackFunc>* _s_field_update_callback;
2057
2058
public:
2059
259
    RegisterConfUpdateCallback(const char* fname, const CallbackFunc& callback) {
2060
259
        if (_s_field_update_callback == nullptr) {
2061
8
            _s_field_update_callback = new std::map<std::string, CallbackFunc>();
2062
8
        }
2063
        // register callback to _s_field_update_callback
2064
259
        _s_field_update_callback->insert(std::make_pair(std::string(fname), callback));
2065
259
    }
2066
};
2067
2068
// configuration properties load from config file.
2069
class Properties {
2070
public:
2071
    // load conf from file, if must_exist is true and file does not exist, return false
2072
    bool load(const char* conf_file, bool must_exist = true);
2073
2074
    // Find the config value by key from `file_conf_map`.
2075
    // If found, set `retval` to the config value,
2076
    // or set `retval` to `defstr`
2077
    // if retval is not set(in case defstr is nullptr), set is_retval_set to false
2078
    template <typename T>
2079
    bool get_or_default(const char* key, const char* defstr, T& retval, bool* is_retval_set,
2080
                        std::string& rawval) const;
2081
2082
    void set(const std::string& key, const std::string& val);
2083
2084
    void set_force(const std::string& key, const std::string& val);
2085
2086
    // dump props to conf file
2087
    Status dump(const std::string& conffile);
2088
2089
17
    const std::map<std::string, std::string>& conf_map() const { return file_conf_map; }
2090
2091
private:
2092
    std::map<std::string, std::string> file_conf_map;
2093
};
2094
2095
// full configurations.
2096
extern std::map<std::string, std::string>* full_conf_map;
2097
2098
extern std::mutex custom_conf_lock;
2099
2100
// Init the config from `conf_file`.
2101
// If fill_conf_map is true, the updated config will also update the `full_conf_map`.
2102
// If must_exist is true and `conf_file` does not exist, this function will return false.
2103
// If set_to_default is true, the config value will be set to default value if not found in `conf_file`.
2104
bool init(const char* conf_file, bool fill_conf_map = false, bool must_exist = true,
2105
          bool set_to_default = true);
2106
2107
Status set_config(const std::string& field, const std::string& value, bool need_persist = false,
2108
                  bool force = false);
2109
2110
Status persist_config(const std::string& field, const std::string& value);
2111
2112
std::mutex* get_mutable_string_config_lock();
2113
2114
std::vector<std::vector<std::string>> get_config_info();
2115
2116
Status set_fuzzy_configs();
2117
2118
void update_config(const std::string& field, const std::string& value);
2119
2120
} // namespace config
2121
} // namespace doris