mem tracker can be logically divided into 4 layers: 1)process 2)type 3)query/load/compation task etc. 4)exec node etc.
type includes
enum Type {
GLOBAL = 0, // Life cycle is the same as the process, e.g. Cache and default Orphan
QUERY = 1, // Count the memory consumption of all Query tasks.
LOAD = 2, // Count the memory consumption of all Load tasks.
COMPACTION = 3, // Count the memory consumption of all Base and Cumulative tasks.
SCHEMA_CHANGE = 4, // Count the memory consumption of all SchemaChange tasks.
CLONE = 5, // Count the memory consumption of all EngineCloneTask. Note: Memory that does not contain make/release snapshots.
BATCHLOAD = 6, // Count the memory consumption of all EngineBatchLoadTask.
CONSISTENCY = 7 // Count the memory consumption of all EngineChecksumTask.
}
Object pointers are no longer saved between each layer, and the values of process and each type are periodically aggregated.
other fix:
In [fix](memtracker) Fix transmit_tracker null pointer because phamp is not thread safe #13528, I tried to separate the memory that was manually abandoned in the query from the orphan mem tracker. But in the actual test, the accuracy of this part of the memory cannot be guaranteed, so put it back to the orphan mem tracker again.
146 lines
5.3 KiB
C++
146 lines
5.3 KiB
C++
// Licensed to the Apache Software Foundation (ASF) under one
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// or more contributor license agreements. See the NOTICE file
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// distributed with this work for additional information
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// regarding copyright ownership. The ASF licenses this file
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// to you under the Apache License, Version 2.0 (the
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// "License"); you may not use this file except in compliance
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// with the License. You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing,
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// software distributed under the License is distributed on an
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// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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// KIND, either express or implied. See the License for the
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// specific language governing permissions and limitations
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// under the License.
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#include "runtime/test_env.h"
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#include <sys/stat.h>
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#include <memory>
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#include "olap/storage_engine.h"
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#include "runtime/bufferpool/buffer_pool.h"
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#include "runtime/fragment_mgr.h"
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#include "runtime/result_queue_mgr.h"
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#include "util/disk_info.h"
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#include "util/priority_thread_pool.hpp"
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namespace doris {
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TestEnv::TestEnv() {
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// Some code will use ExecEnv::GetInstance(), so init the global ExecEnv singleton
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_exec_env = ExecEnv::GetInstance();
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_exec_env->_thread_mgr = new ThreadResourceMgr(2);
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_exec_env->_disk_io_mgr = new DiskIoMgr(1, 1, 1, 10);
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_exec_env->disk_io_mgr()->init(-1);
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_exec_env->_scan_thread_pool = new PriorityThreadPool(1, 16, "ut_scan");
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_exec_env->_result_queue_mgr = new ResultQueueMgr();
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// TODO may need rpc support, etc.
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}
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void TestEnv::init_tmp_file_mgr(const std::vector<std::string>& tmp_dirs, bool one_dir_per_device) {
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_tmp_file_mgr = std::make_shared<TmpFileMgr>();
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_exec_env->_tmp_file_mgr = _tmp_file_mgr.get();
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DiskInfo::init();
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// will use DiskInfo::num_disks(), DiskInfo should be initialized before
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auto st = _tmp_file_mgr->init_custom(tmp_dirs, one_dir_per_device);
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DCHECK(st.ok()) << st.get_error_msg();
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}
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void TestEnv::init_buffer_pool(int64_t min_page_len, int64_t capacity, int64_t clean_pages_limit) {
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_exec_env->_buffer_pool = new BufferPool(min_page_len, capacity, clean_pages_limit);
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}
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TestEnv::~TestEnv() {
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SAFE_DELETE(_exec_env->_result_queue_mgr);
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SAFE_DELETE(_exec_env->_buffer_pool);
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SAFE_DELETE(_exec_env->_scan_thread_pool);
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SAFE_DELETE(_exec_env->_disk_io_mgr);
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SAFE_DELETE(_exec_env->_thread_mgr);
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if (_engine == StorageEngine::_s_instance) {
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// the engine instance is created by this test env
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StorageEngine::_s_instance = nullptr;
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}
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SAFE_DELETE(_engine);
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}
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RuntimeState* TestEnv::create_runtime_state(int64_t query_id) {
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TExecPlanFragmentParams plan_params = TExecPlanFragmentParams();
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plan_params.params.query_id.hi = 0;
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plan_params.params.query_id.lo = query_id;
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return new RuntimeState(plan_params.params, TQueryOptions(), TQueryGlobals(), _exec_env);
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}
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Status TestEnv::create_query_state(int64_t query_id, int max_buffers, int block_size,
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RuntimeState** runtime_state) {
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*runtime_state = create_runtime_state(query_id);
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if (*runtime_state == nullptr) {
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return Status::InternalError("Unexpected error creating RuntimeState");
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}
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std::shared_ptr<BufferedBlockMgr2> mgr;
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RETURN_IF_ERROR(BufferedBlockMgr2::create(*runtime_state, (*runtime_state)->runtime_profile(),
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_tmp_file_mgr.get(), block_size, &mgr));
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(*runtime_state)->set_block_mgr2(mgr);
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// (*runtime_state)->_block_mgr = mgr;
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_query_states.push_back(std::shared_ptr<RuntimeState>(*runtime_state));
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return Status::OK();
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}
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Status TestEnv::create_query_states(int64_t start_query_id, int num_mgrs, int buffers_per_mgr,
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int block_size, std::vector<RuntimeState*>* runtime_states) {
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for (int i = 0; i < num_mgrs; ++i) {
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RuntimeState* runtime_state = nullptr;
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RETURN_IF_ERROR(create_query_state(start_query_id + i, buffers_per_mgr, block_size,
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&runtime_state));
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runtime_states->push_back(runtime_state);
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}
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return Status::OK();
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}
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void TestEnv::tear_down_query_states() {
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_query_states.clear();
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}
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int64_t TestEnv::calculate_mem_tracker(int max_buffers, int block_size) {
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DCHECK_GE(max_buffers, -1);
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if (max_buffers == -1) {
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return -1;
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}
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return max_buffers * static_cast<int64_t>(block_size);
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}
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void TestEnv::init_storage_engine(bool need_open, const std::vector<std::string>& paths) {
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if (StorageEngine::_s_instance) {
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LOG(INFO) << "Engine instance already exists";
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return;
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}
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// init and open storage engine
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doris::EngineOptions options;
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for (const auto& path : paths) {
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options.store_paths.emplace_back(path, -1);
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}
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options.backend_uid = UniqueId::gen_uid();
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config::tablet_map_shard_size = 1;
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config::txn_map_shard_size = 1;
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config::txn_shard_size = 1;
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// This engine will be the singleton instance, cuz StorageEngine::_s_instance is nullptr now.
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Status st;
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if (need_open) {
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st = StorageEngine::open(options, &_engine);
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} else {
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_engine = new StorageEngine(options);
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}
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DCHECK(st.ok()) << st.get_error_msg();
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_exec_env->set_storage_engine(_engine);
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}
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} // end namespace doris
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