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862 lines
30 KiB
C++
862 lines
30 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 "DBImpl.h"
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#include "cache/CpuCacheMgr.h"
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#include "cache/GpuCacheMgr.h"
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#include "engine/EngineFactory.h"
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#include "insert/MemMenagerFactory.h"
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#include "meta/SqliteMetaImpl.h"
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#include "meta/MetaFactory.h"
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#include "meta/MetaConsts.h"
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#include "metrics/Metrics.h"
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#include "scheduler/job/SearchJob.h"
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#include "scheduler/job/DeleteJob.h"
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#include "scheduler/SchedInst.h"
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#include "utils/TimeRecorder.h"
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#include "utils/Log.h"
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#include "Utils.h"
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#include <assert.h>
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#include <chrono>
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#include <thread>
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#include <iostream>
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#include <cstring>
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#include <boost/filesystem.hpp>
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namespace zilliz {
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namespace milvus {
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namespace engine {
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namespace {
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constexpr uint64_t METRIC_ACTION_INTERVAL = 1;
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constexpr uint64_t COMPACT_ACTION_INTERVAL = 1;
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constexpr uint64_t INDEX_ACTION_INTERVAL = 1;
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}
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DBImpl::DBImpl(const Options& options)
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: options_(options),
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shutting_down_(true),
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compact_thread_pool_(1, 1),
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index_thread_pool_(1, 1) {
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meta_ptr_ = MetaFactory::Build(options.meta, options.mode);
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mem_mgr_ = MemManagerFactory::Build(meta_ptr_, options_);
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Start();
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}
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DBImpl::~DBImpl() {
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Stop();
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}
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///////////////////////////////////////////////////////////////////////////////////////////////////////////////////
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//external api
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///////////////////////////////////////////////////////////////////////////////////////////////////////////////////
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Status DBImpl::Start() {
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if (!shutting_down_.load(std::memory_order_acquire)){
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return Status::OK();
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}
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ENGINE_LOG_TRACE << "DB service start";
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shutting_down_.store(false, std::memory_order_release);
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//for distribute version, some nodes are read only
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if (options_.mode != Options::MODE::READ_ONLY) {
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ENGINE_LOG_TRACE << "StartTimerTasks";
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bg_timer_thread_ = std::thread(&DBImpl::BackgroundTimerTask, this);
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}
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return Status::OK();
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}
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Status DBImpl::Stop() {
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if (shutting_down_.load(std::memory_order_acquire)){
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return Status::OK();
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}
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shutting_down_.store(true, std::memory_order_release);
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//makesure all memory data serialized
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MemSerialize();
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//wait compaction/buildindex finish
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bg_timer_thread_.join();
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if (options_.mode != Options::MODE::READ_ONLY) {
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meta_ptr_->CleanUp();
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}
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ENGINE_LOG_TRACE << "DB service stop";
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return Status::OK();
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}
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Status DBImpl::DropAll() {
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return meta_ptr_->DropAll();
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}
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Status DBImpl::CreateTable(meta::TableSchema& table_schema) {
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if (shutting_down_.load(std::memory_order_acquire)){
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return Status(DB_ERROR, "Milsvus server is shutdown!");
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}
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meta::TableSchema temp_schema = table_schema;
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temp_schema.index_file_size_ *= ONE_MB; //store as MB
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return meta_ptr_->CreateTable(temp_schema);
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}
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Status DBImpl::DeleteTable(const std::string& table_id, const meta::DatesT& dates) {
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if (shutting_down_.load(std::memory_order_acquire)){
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return Status(DB_ERROR, "Milsvus server is shutdown!");
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}
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//dates partly delete files of the table but currently we don't support
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ENGINE_LOG_DEBUG << "Prepare to delete table " << table_id;
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if (dates.empty()) {
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mem_mgr_->EraseMemVector(table_id); //not allow insert
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meta_ptr_->DeleteTable(table_id); //soft delete table
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//scheduler will determine when to delete table files
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auto nres = ResMgrInst::GetInstance()->GetNumOfComputeResource();
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scheduler::DeleteJobPtr job = std::make_shared<scheduler::DeleteJob>(0, table_id, meta_ptr_, nres);
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JobMgrInst::GetInstance()->Put(job);
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job->WaitAndDelete();
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} else {
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meta_ptr_->DropPartitionsByDates(table_id, dates);
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}
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return Status::OK();
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}
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Status DBImpl::DescribeTable(meta::TableSchema& table_schema) {
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if (shutting_down_.load(std::memory_order_acquire)){
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return Status(DB_ERROR, "Milsvus server is shutdown!");
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}
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auto stat = meta_ptr_->DescribeTable(table_schema);
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table_schema.index_file_size_ /= ONE_MB; //return as MB
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return stat;
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}
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Status DBImpl::HasTable(const std::string& table_id, bool& has_or_not) {
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if (shutting_down_.load(std::memory_order_acquire)){
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return Status(DB_ERROR, "Milsvus server is shutdown!");
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}
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return meta_ptr_->HasTable(table_id, has_or_not);
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}
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Status DBImpl::AllTables(std::vector<meta::TableSchema>& table_schema_array) {
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if (shutting_down_.load(std::memory_order_acquire)){
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return Status(DB_ERROR, "Milsvus server is shutdown!");
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}
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return meta_ptr_->AllTables(table_schema_array);
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}
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Status DBImpl::PreloadTable(const std::string &table_id) {
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if (shutting_down_.load(std::memory_order_acquire)){
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return Status(DB_ERROR, "Milsvus server is shutdown!");
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}
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meta::DatePartionedTableFilesSchema files;
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meta::DatesT dates;
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std::vector<size_t> ids;
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auto status = meta_ptr_->FilesToSearch(table_id, ids, dates, files);
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if (!status.ok()) {
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return status;
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}
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int64_t size = 0;
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int64_t cache_total = cache::CpuCacheMgr::GetInstance()->CacheCapacity();
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int64_t cache_usage = cache::CpuCacheMgr::GetInstance()->CacheUsage();
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int64_t available_size = cache_total - cache_usage;
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for(auto &day_files : files) {
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for (auto &file : day_files.second) {
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ExecutionEnginePtr engine = EngineFactory::Build(file.dimension_, file.location_, (EngineType)file.engine_type_, (MetricType)file.metric_type_, file.nlist_);
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if(engine == nullptr) {
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ENGINE_LOG_ERROR << "Invalid engine type";
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return Status(DB_ERROR, "Invalid engine type");
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}
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size += engine->PhysicalSize();
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if (size > available_size) {
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break;
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} else {
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try {
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//step 1: load index
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engine->Load(true);
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} catch (std::exception &ex) {
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std::string msg = "Pre-load table encounter exception: " + std::string(ex.what());
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ENGINE_LOG_ERROR << msg;
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return Status(DB_ERROR, msg);
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}
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}
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}
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}
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return Status::OK();
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}
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Status DBImpl::UpdateTableFlag(const std::string &table_id, int64_t flag) {
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if (shutting_down_.load(std::memory_order_acquire)){
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return Status(DB_ERROR, "Milsvus server is shutdown!");
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}
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return meta_ptr_->UpdateTableFlag(table_id, flag);
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}
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Status DBImpl::GetTableRowCount(const std::string& table_id, uint64_t& row_count) {
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if (shutting_down_.load(std::memory_order_acquire)){
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return Status(DB_ERROR, "Milsvus server is shutdown!");
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}
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return meta_ptr_->Count(table_id, row_count);
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}
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Status DBImpl::InsertVectors(const std::string& table_id_,
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uint64_t n, const float* vectors, IDNumbers& vector_ids_) {
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// ENGINE_LOG_DEBUG << "Insert " << n << " vectors to cache";
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if (shutting_down_.load(std::memory_order_acquire)){
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return Status(DB_ERROR, "Milsvus server is shutdown!");
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}
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Status status;
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zilliz::milvus::server::CollectInsertMetrics metrics(n, status);
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status = mem_mgr_->InsertVectors(table_id_, n, vectors, vector_ids_);
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// std::chrono::microseconds time_span = std::chrono::duration_cast<std::chrono::microseconds>(end_time - start_time);
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// double average_time = double(time_span.count()) / n;
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// ENGINE_LOG_DEBUG << "Insert vectors to cache finished";
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return status;
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}
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Status DBImpl::CreateIndex(const std::string& table_id, const TableIndex& index) {
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{
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std::unique_lock<std::mutex> lock(build_index_mutex_);
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//step 1: check index difference
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TableIndex old_index;
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auto status = DescribeIndex(table_id, old_index);
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if(!status.ok()) {
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ENGINE_LOG_ERROR << "Failed to get table index info for table: " << table_id;
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return status;
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}
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//step 2: update index info
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TableIndex new_index = index;
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new_index.metric_type_ = old_index.metric_type_;//dont change metric type, it was defined by CreateTable
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if(!utils::IsSameIndex(old_index, new_index)) {
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DropIndex(table_id);
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status = meta_ptr_->UpdateTableIndex(table_id, new_index);
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if (!status.ok()) {
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ENGINE_LOG_ERROR << "Failed to update table index info for table: " << table_id;
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return status;
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}
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}
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}
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//step 3: wait and build index
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//for IDMAP type, only wait all NEW file converted to RAW file
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//for other type, wait NEW/RAW/NEW_MERGE/NEW_INDEX/TO_INDEX files converted to INDEX files
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std::vector<int> file_types;
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if(index.engine_type_ == (int)EngineType::FAISS_IDMAP) {
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file_types = {
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(int) meta::TableFileSchema::NEW,
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(int) meta::TableFileSchema::NEW_MERGE,
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};
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} else {
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file_types = {
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(int) meta::TableFileSchema::RAW,
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(int) meta::TableFileSchema::NEW,
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(int) meta::TableFileSchema::NEW_MERGE,
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(int) meta::TableFileSchema::NEW_INDEX,
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(int) meta::TableFileSchema::TO_INDEX,
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};
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}
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std::vector<std::string> file_ids;
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auto status = meta_ptr_->FilesByType(table_id, file_types, file_ids);
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int times = 1;
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while (!file_ids.empty()) {
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ENGINE_LOG_DEBUG << "Non index files detected! Will build index " << times;
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if(index.engine_type_ != (int)EngineType::FAISS_IDMAP) {
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status = meta_ptr_->UpdateTableFilesToIndex(table_id);
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}
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std::this_thread::sleep_for(std::chrono::milliseconds(std::min(10*1000, times*100)));
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status = meta_ptr_->FilesByType(table_id, file_types, file_ids);
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times++;
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}
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return Status::OK();
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}
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Status DBImpl::DescribeIndex(const std::string& table_id, TableIndex& index) {
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return meta_ptr_->DescribeTableIndex(table_id, index);
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}
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Status DBImpl::DropIndex(const std::string& table_id) {
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ENGINE_LOG_DEBUG << "Drop index for table: " << table_id;
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return meta_ptr_->DropTableIndex(table_id);
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}
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Status DBImpl::Query(const std::string &table_id, uint64_t k, uint64_t nq, uint64_t nprobe,
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const float *vectors, QueryResults &results) {
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if (shutting_down_.load(std::memory_order_acquire)){
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return Status(DB_ERROR, "Milsvus server is shutdown!");
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}
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meta::DatesT dates = {utils::GetDate()};
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Status result = Query(table_id, k, nq, nprobe, vectors, dates, results);
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return result;
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}
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Status DBImpl::Query(const std::string& table_id, uint64_t k, uint64_t nq, uint64_t nprobe,
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const float* vectors, const meta::DatesT& dates, QueryResults& results) {
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if (shutting_down_.load(std::memory_order_acquire)){
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return Status(DB_ERROR, "Milsvus server is shutdown!");
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}
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ENGINE_LOG_DEBUG << "Query by dates for table: " << table_id;
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//get all table files from table
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meta::DatePartionedTableFilesSchema files;
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std::vector<size_t> ids;
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auto status = meta_ptr_->FilesToSearch(table_id, ids, dates, files);
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if (!status.ok()) { return status; }
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meta::TableFilesSchema file_id_array;
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for (auto &day_files : files) {
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for (auto &file : day_files.second) {
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file_id_array.push_back(file);
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}
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}
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cache::CpuCacheMgr::GetInstance()->PrintInfo(); //print cache info before query
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status = QueryAsync(table_id, file_id_array, k, nq, nprobe, vectors, dates, results);
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cache::CpuCacheMgr::GetInstance()->PrintInfo(); //print cache info after query
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return status;
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}
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Status DBImpl::Query(const std::string& table_id, const std::vector<std::string>& file_ids,
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uint64_t k, uint64_t nq, uint64_t nprobe, const float* vectors,
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const meta::DatesT& dates, QueryResults& results) {
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if (shutting_down_.load(std::memory_order_acquire)){
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return Status(DB_ERROR, "Milsvus server is shutdown!");
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}
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ENGINE_LOG_DEBUG << "Query by file ids for table: " << table_id;
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//get specified files
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std::vector<size_t> ids;
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for (auto &id : file_ids) {
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meta::TableFileSchema table_file;
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table_file.table_id_ = table_id;
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std::string::size_type sz;
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ids.push_back(std::stoul(id, &sz));
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}
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meta::DatePartionedTableFilesSchema files_array;
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auto status = meta_ptr_->FilesToSearch(table_id, ids, dates, files_array);
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if (!status.ok()) {
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return status;
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}
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meta::TableFilesSchema file_id_array;
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for (auto &day_files : files_array) {
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for (auto &file : day_files.second) {
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file_id_array.push_back(file);
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}
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}
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if(file_id_array.empty()) {
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return Status(DB_ERROR, "Invalid file id");
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}
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cache::CpuCacheMgr::GetInstance()->PrintInfo(); //print cache info before query
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status = QueryAsync(table_id, file_id_array, k, nq, nprobe, vectors, dates, results);
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cache::CpuCacheMgr::GetInstance()->PrintInfo(); //print cache info after query
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return status;
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}
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Status DBImpl::Size(uint64_t& result) {
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if (shutting_down_.load(std::memory_order_acquire)){
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return Status(DB_ERROR, "Milsvus server is shutdown!");
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}
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return meta_ptr_->Size(result);
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}
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///////////////////////////////////////////////////////////////////////////////////////////////////////////////////
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//internal methods
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///////////////////////////////////////////////////////////////////////////////////////////////////////////////////
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Status DBImpl::QueryAsync(const std::string& table_id, const meta::TableFilesSchema& files,
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uint64_t k, uint64_t nq, uint64_t nprobe, const float* vectors,
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const meta::DatesT& dates, QueryResults& results) {
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using namespace scheduler;
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server::CollectQueryMetrics metrics(nq);
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TimeRecorder rc("");
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//step 1: get files to search
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ENGINE_LOG_DEBUG << "Engine query begin, index file count: " << files.size() << " date range count: " << dates.size();
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SearchJobPtr job = std::make_shared<SearchJob>(0, k, nq, nprobe, vectors);
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for (auto &file : files) {
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TableFileSchemaPtr file_ptr = std::make_shared<meta::TableFileSchema>(file);
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job->AddIndexFile(file_ptr);
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}
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//step 2: put search task to scheduler
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JobMgrInst::GetInstance()->Put(job);
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job->WaitResult();
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if (!job->GetStatus().ok()) {
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return job->GetStatus();
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}
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//step 3: print time cost information
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// double load_cost = context->LoadCost();
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// double search_cost = context->SearchCost();
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// double reduce_cost = context->ReduceCost();
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// std::string load_info = TimeRecorder::GetTimeSpanStr(load_cost);
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// std::string search_info = TimeRecorder::GetTimeSpanStr(search_cost);
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// std::string reduce_info = TimeRecorder::GetTimeSpanStr(reduce_cost);
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// if(search_cost > 0.0 || reduce_cost > 0.0) {
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// double total_cost = load_cost + search_cost + reduce_cost;
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// double load_percent = load_cost/total_cost;
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// double search_percent = search_cost/total_cost;
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// double reduce_percent = reduce_cost/total_cost;
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//
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// ENGINE_LOG_DEBUG << "Engine load index totally cost: " << load_info << " percent: " << load_percent*100 << "%";
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// ENGINE_LOG_DEBUG << "Engine search index totally cost: " << search_info << " percent: " << search_percent*100 << "%";
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// ENGINE_LOG_DEBUG << "Engine reduce topk totally cost: " << reduce_info << " percent: " << reduce_percent*100 << "%";
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// } else {
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// ENGINE_LOG_DEBUG << "Engine load cost: " << load_info
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// << " search cost: " << search_info
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// << " reduce cost: " << reduce_info;
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// }
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//step 4: construct results
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results = job->GetResult();
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rc.ElapseFromBegin("Engine query totally cost");
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return Status::OK();
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}
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void DBImpl::BackgroundTimerTask() {
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Status status;
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server::SystemInfo::GetInstance().Init();
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while (true) {
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if (shutting_down_.load(std::memory_order_acquire)){
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for(auto& iter : compact_thread_results_) {
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iter.wait();
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}
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for(auto& iter : index_thread_results_) {
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iter.wait();
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}
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ENGINE_LOG_DEBUG << "DB background thread exit";
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break;
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}
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std::this_thread::sleep_for(std::chrono::seconds(1));
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StartMetricTask();
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StartCompactionTask();
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StartBuildIndexTask();
|
|
}
|
|
}
|
|
|
|
void DBImpl::StartMetricTask() {
|
|
static uint64_t metric_clock_tick = 0;
|
|
metric_clock_tick++;
|
|
if(metric_clock_tick%METRIC_ACTION_INTERVAL != 0) {
|
|
return;
|
|
}
|
|
|
|
ENGINE_LOG_TRACE << "Start metric task";
|
|
|
|
server::Metrics::GetInstance().KeepingAliveCounterIncrement(METRIC_ACTION_INTERVAL);
|
|
int64_t cache_usage = cache::CpuCacheMgr::GetInstance()->CacheUsage();
|
|
int64_t cache_total = cache::CpuCacheMgr::GetInstance()->CacheCapacity();
|
|
server::Metrics::GetInstance().CpuCacheUsageGaugeSet(cache_usage*100/cache_total);
|
|
server::Metrics::GetInstance().GpuCacheUsageGaugeSet();
|
|
uint64_t size;
|
|
Size(size);
|
|
server::Metrics::GetInstance().DataFileSizeGaugeSet(size);
|
|
server::Metrics::GetInstance().CPUUsagePercentSet();
|
|
server::Metrics::GetInstance().RAMUsagePercentSet();
|
|
server::Metrics::GetInstance().GPUPercentGaugeSet();
|
|
server::Metrics::GetInstance().GPUMemoryUsageGaugeSet();
|
|
server::Metrics::GetInstance().OctetsSet();
|
|
|
|
server::Metrics::GetInstance().CPUCoreUsagePercentSet();
|
|
server::Metrics::GetInstance().GPUTemperature();
|
|
server::Metrics::GetInstance().CPUTemperature();
|
|
|
|
ENGINE_LOG_TRACE << "Metric task finished";
|
|
}
|
|
|
|
Status DBImpl::MemSerialize() {
|
|
std::lock_guard<std::mutex> lck(mem_serialize_mutex_);
|
|
std::set<std::string> temp_table_ids;
|
|
mem_mgr_->Serialize(temp_table_ids);
|
|
for(auto& id : temp_table_ids) {
|
|
compact_table_ids_.insert(id);
|
|
}
|
|
|
|
if(!temp_table_ids.empty()) {
|
|
SERVER_LOG_DEBUG << "Insert cache serialized";
|
|
}
|
|
|
|
return Status::OK();
|
|
}
|
|
|
|
void DBImpl::StartCompactionTask() {
|
|
static uint64_t compact_clock_tick = 0;
|
|
compact_clock_tick++;
|
|
if(compact_clock_tick%COMPACT_ACTION_INTERVAL != 0) {
|
|
return;
|
|
}
|
|
|
|
//serialize memory data
|
|
MemSerialize();
|
|
|
|
//compactiong has been finished?
|
|
if(!compact_thread_results_.empty()) {
|
|
std::chrono::milliseconds span(10);
|
|
if (compact_thread_results_.back().wait_for(span) == std::future_status::ready) {
|
|
compact_thread_results_.pop_back();
|
|
}
|
|
}
|
|
|
|
//add new compaction task
|
|
if(compact_thread_results_.empty()) {
|
|
compact_thread_results_.push_back(
|
|
compact_thread_pool_.enqueue(&DBImpl::BackgroundCompaction, this, compact_table_ids_));
|
|
compact_table_ids_.clear();
|
|
}
|
|
}
|
|
|
|
Status DBImpl::MergeFiles(const std::string& table_id, const meta::DateT& date,
|
|
const meta::TableFilesSchema& files) {
|
|
ENGINE_LOG_DEBUG << "Merge files for table: " << table_id;
|
|
|
|
//step 1: create table file
|
|
meta::TableFileSchema table_file;
|
|
table_file.table_id_ = table_id;
|
|
table_file.date_ = date;
|
|
table_file.file_type_ = meta::TableFileSchema::NEW_MERGE;
|
|
Status status = meta_ptr_->CreateTableFile(table_file);
|
|
|
|
if (!status.ok()) {
|
|
ENGINE_LOG_ERROR << "Failed to create table: " << status.ToString();
|
|
return status;
|
|
}
|
|
|
|
//step 2: merge files
|
|
ExecutionEnginePtr index =
|
|
EngineFactory::Build(table_file.dimension_, table_file.location_, (EngineType)table_file.engine_type_,
|
|
(MetricType)table_file.metric_type_, table_file.nlist_);
|
|
|
|
meta::TableFilesSchema updated;
|
|
long index_size = 0;
|
|
|
|
for (auto& file : files) {
|
|
server::CollectMergeFilesMetrics metrics;
|
|
|
|
index->Merge(file.location_);
|
|
auto file_schema = file;
|
|
file_schema.file_type_ = meta::TableFileSchema::TO_DELETE;
|
|
updated.push_back(file_schema);
|
|
ENGINE_LOG_DEBUG << "Merging file " << file_schema.file_id_;
|
|
index_size = index->Size();
|
|
|
|
if (index_size >= file_schema.index_file_size_) break;
|
|
}
|
|
|
|
//step 3: serialize to disk
|
|
try {
|
|
index->Serialize();
|
|
} catch (std::exception& ex) {
|
|
//typical error: out of disk space or permition denied
|
|
std::string msg = "Serialize merged index encounter exception: " + std::string(ex.what());
|
|
ENGINE_LOG_ERROR << msg;
|
|
|
|
table_file.file_type_ = meta::TableFileSchema::TO_DELETE;
|
|
status = meta_ptr_->UpdateTableFile(table_file);
|
|
ENGINE_LOG_DEBUG << "Failed to update file to index, mark file: " << table_file.file_id_ << " to to_delete";
|
|
|
|
std::cout << "ERROR: failed to persist merged index file: " << table_file.location_
|
|
<< ", possible out of disk space" << std::endl;
|
|
|
|
return Status(DB_ERROR, msg);
|
|
}
|
|
|
|
//step 4: update table files state
|
|
//if index type isn't IDMAP, set file type to TO_INDEX if file size execeed index_file_size
|
|
//else set file type to RAW, no need to build index
|
|
if (table_file.engine_type_ != (int)EngineType::FAISS_IDMAP) {
|
|
table_file.file_type_ = (index->PhysicalSize() >= table_file.index_file_size_) ?
|
|
meta::TableFileSchema::TO_INDEX : meta::TableFileSchema::RAW;
|
|
} else {
|
|
table_file.file_type_ = meta::TableFileSchema::RAW;
|
|
}
|
|
table_file.file_size_ = index->PhysicalSize();
|
|
table_file.row_count_ = index->Count();
|
|
updated.push_back(table_file);
|
|
status = meta_ptr_->UpdateTableFiles(updated);
|
|
ENGINE_LOG_DEBUG << "New merged file " << table_file.file_id_ <<
|
|
" of size " << index->PhysicalSize() << " bytes";
|
|
|
|
if(options_.insert_cache_immediately_) {
|
|
index->Cache();
|
|
}
|
|
|
|
return status;
|
|
}
|
|
|
|
Status DBImpl::BackgroundMergeFiles(const std::string& table_id) {
|
|
meta::DatePartionedTableFilesSchema raw_files;
|
|
auto status = meta_ptr_->FilesToMerge(table_id, raw_files);
|
|
if (!status.ok()) {
|
|
ENGINE_LOG_ERROR << "Failed to get merge files for table: " << table_id;
|
|
return status;
|
|
}
|
|
|
|
bool has_merge = false;
|
|
for (auto& kv : raw_files) {
|
|
auto files = kv.second;
|
|
if (files.size() < options_.merge_trigger_number) {
|
|
ENGINE_LOG_DEBUG << "Files number not greater equal than merge trigger number, skip merge action";
|
|
continue;
|
|
}
|
|
has_merge = true;
|
|
MergeFiles(table_id, kv.first, kv.second);
|
|
|
|
if (shutting_down_.load(std::memory_order_acquire)){
|
|
ENGINE_LOG_DEBUG << "Server will shutdown, skip merge action for table: " << table_id;
|
|
break;
|
|
}
|
|
}
|
|
|
|
return Status::OK();
|
|
}
|
|
|
|
void DBImpl::BackgroundCompaction(std::set<std::string> table_ids) {
|
|
ENGINE_LOG_TRACE << " Background compaction thread start";
|
|
|
|
Status status;
|
|
for (auto& table_id : table_ids) {
|
|
status = BackgroundMergeFiles(table_id);
|
|
if (!status.ok()) {
|
|
ENGINE_LOG_ERROR << "Merge files for table " << table_id << " failed: " << status.ToString();
|
|
}
|
|
|
|
if (shutting_down_.load(std::memory_order_acquire)){
|
|
ENGINE_LOG_DEBUG << "Server will shutdown, skip merge action";
|
|
break;
|
|
}
|
|
}
|
|
|
|
meta_ptr_->Archive();
|
|
|
|
int ttl = 5*meta::M_SEC;//default: file will be deleted after 5 minutes
|
|
if (options_.mode == Options::MODE::CLUSTER) {
|
|
ttl = meta::D_SEC;
|
|
}
|
|
meta_ptr_->CleanUpFilesWithTTL(ttl);
|
|
|
|
ENGINE_LOG_TRACE << " Background compaction thread exit";
|
|
}
|
|
|
|
void DBImpl::StartBuildIndexTask(bool force) {
|
|
static uint64_t index_clock_tick = 0;
|
|
index_clock_tick++;
|
|
if(!force && (index_clock_tick%INDEX_ACTION_INTERVAL != 0)) {
|
|
return;
|
|
}
|
|
|
|
//build index has been finished?
|
|
if(!index_thread_results_.empty()) {
|
|
std::chrono::milliseconds span(10);
|
|
if (index_thread_results_.back().wait_for(span) == std::future_status::ready) {
|
|
index_thread_results_.pop_back();
|
|
}
|
|
}
|
|
|
|
//add new build index task
|
|
if(index_thread_results_.empty()) {
|
|
index_thread_results_.push_back(
|
|
index_thread_pool_.enqueue(&DBImpl::BackgroundBuildIndex, this));
|
|
}
|
|
}
|
|
|
|
Status DBImpl::BuildIndex(const meta::TableFileSchema& file) {
|
|
ExecutionEnginePtr to_index =
|
|
EngineFactory::Build(file.dimension_, file.location_, (EngineType)file.engine_type_,
|
|
(MetricType)file.metric_type_, file.nlist_);
|
|
if(to_index == nullptr) {
|
|
ENGINE_LOG_ERROR << "Invalid engine type";
|
|
return Status(DB_ERROR, "Invalid engine type");
|
|
}
|
|
|
|
try {
|
|
//step 1: load index
|
|
Status status = to_index->Load(options_.insert_cache_immediately_);
|
|
if (!status.ok()) {
|
|
ENGINE_LOG_ERROR << "Failed to load index file: " << status.ToString();
|
|
return status;
|
|
}
|
|
|
|
//step 2: create table file
|
|
meta::TableFileSchema table_file;
|
|
table_file.table_id_ = file.table_id_;
|
|
table_file.date_ = file.date_;
|
|
table_file.file_type_ = meta::TableFileSchema::NEW_INDEX; //for multi-db-path, distribute index file averagely to each path
|
|
status = meta_ptr_->CreateTableFile(table_file);
|
|
if (!status.ok()) {
|
|
ENGINE_LOG_ERROR << "Failed to create table file: " << status.ToString();
|
|
return status;
|
|
}
|
|
|
|
//step 3: build index
|
|
std::shared_ptr<ExecutionEngine> index;
|
|
|
|
try {
|
|
server::CollectBuildIndexMetrics metrics;
|
|
index = to_index->BuildIndex(table_file.location_, (EngineType)table_file.engine_type_);
|
|
if (index == nullptr) {
|
|
table_file.file_type_ = meta::TableFileSchema::TO_DELETE;
|
|
status = meta_ptr_->UpdateTableFile(table_file);
|
|
ENGINE_LOG_DEBUG << "Failed to update file to index, mark file: " << table_file.file_id_ << " to to_delete";
|
|
|
|
return status;
|
|
}
|
|
|
|
} catch (std::exception& ex) {
|
|
//typical error: out of gpu memory
|
|
std::string msg = "BuildIndex encounter exception: " + std::string(ex.what());
|
|
ENGINE_LOG_ERROR << msg;
|
|
|
|
table_file.file_type_ = meta::TableFileSchema::TO_DELETE;
|
|
status = meta_ptr_->UpdateTableFile(table_file);
|
|
ENGINE_LOG_DEBUG << "Failed to update file to index, mark file: " << table_file.file_id_ << " to to_delete";
|
|
|
|
std::cout << "ERROR: failed to build index, index file is too large or gpu memory is not enough" << std::endl;
|
|
|
|
return Status(DB_ERROR, msg);
|
|
}
|
|
|
|
//step 4: if table has been deleted, dont save index file
|
|
bool has_table = false;
|
|
meta_ptr_->HasTable(file.table_id_, has_table);
|
|
if(!has_table) {
|
|
meta_ptr_->DeleteTableFiles(file.table_id_);
|
|
return Status::OK();
|
|
}
|
|
|
|
//step 5: save index file
|
|
try {
|
|
index->Serialize();
|
|
} catch (std::exception& ex) {
|
|
//typical error: out of disk space or permition denied
|
|
std::string msg = "Serialize index encounter exception: " + std::string(ex.what());
|
|
ENGINE_LOG_ERROR << msg;
|
|
|
|
table_file.file_type_ = meta::TableFileSchema::TO_DELETE;
|
|
status = meta_ptr_->UpdateTableFile(table_file);
|
|
ENGINE_LOG_DEBUG << "Failed to update file to index, mark file: " << table_file.file_id_ << " to to_delete";
|
|
|
|
std::cout << "ERROR: failed to persist index file: " << table_file.location_
|
|
<< ", possible out of disk space" << std::endl;
|
|
|
|
return Status(DB_ERROR, msg);
|
|
}
|
|
|
|
//step 6: update meta
|
|
table_file.file_type_ = meta::TableFileSchema::INDEX;
|
|
table_file.file_size_ = index->PhysicalSize();
|
|
table_file.row_count_ = index->Count();
|
|
|
|
auto origin_file = file;
|
|
origin_file.file_type_ = meta::TableFileSchema::BACKUP;
|
|
|
|
meta::TableFilesSchema update_files = {table_file, origin_file};
|
|
status = meta_ptr_->UpdateTableFiles(update_files);
|
|
if(status.ok()) {
|
|
ENGINE_LOG_DEBUG << "New index file " << table_file.file_id_ << " of size "
|
|
<< index->PhysicalSize() << " bytes"
|
|
<< " from file " << origin_file.file_id_;
|
|
|
|
if(options_.insert_cache_immediately_) {
|
|
index->Cache();
|
|
}
|
|
} else {
|
|
//failed to update meta, mark the new file as to_delete, don't delete old file
|
|
origin_file.file_type_ = meta::TableFileSchema::TO_INDEX;
|
|
status = meta_ptr_->UpdateTableFile(origin_file);
|
|
ENGINE_LOG_DEBUG << "Failed to update file to index, mark file: " << origin_file.file_id_ << " to to_index";
|
|
|
|
table_file.file_type_ = meta::TableFileSchema::TO_DELETE;
|
|
status = meta_ptr_->UpdateTableFile(table_file);
|
|
ENGINE_LOG_DEBUG << "Failed to update file to index, mark file: " << table_file.file_id_ << " to to_delete";
|
|
}
|
|
|
|
} catch (std::exception& ex) {
|
|
std::string msg = "Build index encounter exception: " + std::string(ex.what());
|
|
ENGINE_LOG_ERROR << msg;
|
|
return Status(DB_ERROR, msg);
|
|
}
|
|
|
|
return Status::OK();
|
|
}
|
|
|
|
void DBImpl::BackgroundBuildIndex() {
|
|
ENGINE_LOG_TRACE << "Background build index thread start";
|
|
|
|
std::unique_lock<std::mutex> lock(build_index_mutex_);
|
|
meta::TableFilesSchema to_index_files;
|
|
meta_ptr_->FilesToIndex(to_index_files);
|
|
Status status;
|
|
for (auto& file : to_index_files) {
|
|
status = BuildIndex(file);
|
|
if (!status.ok()) {
|
|
ENGINE_LOG_ERROR << "Building index for " << file.id_ << " failed: " << status.ToString();
|
|
}
|
|
|
|
if (shutting_down_.load(std::memory_order_acquire)){
|
|
ENGINE_LOG_DEBUG << "Server will shutdown, skip build index action";
|
|
break;
|
|
}
|
|
}
|
|
|
|
ENGINE_LOG_TRACE << "Background build index thread exit";
|
|
}
|
|
|
|
} // namespace engine
|
|
} // namespace milvus
|
|
} // namespace zilliz
|