5635 lines
184 KiB
Go
5635 lines
184 KiB
Go
// Copyright 2015 PingCAP, Inc.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// 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, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package executor
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import (
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"bytes"
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"cmp"
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"context"
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"fmt"
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"math"
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"slices"
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"strconv"
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"strings"
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"sync"
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"sync/atomic"
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"time"
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"unsafe"
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"github.com/pingcap/errors"
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"github.com/pingcap/failpoint"
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"github.com/pingcap/kvproto/pkg/diagnosticspb"
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"github.com/pingcap/kvproto/pkg/metapb"
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"github.com/pingcap/tidb/config"
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"github.com/pingcap/tidb/ddl"
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"github.com/pingcap/tidb/ddl/placement"
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"github.com/pingcap/tidb/distsql"
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"github.com/pingcap/tidb/domain"
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"github.com/pingcap/tidb/executor/aggfuncs"
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"github.com/pingcap/tidb/executor/aggregate"
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"github.com/pingcap/tidb/executor/internal/builder"
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"github.com/pingcap/tidb/executor/internal/calibrateresource"
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"github.com/pingcap/tidb/executor/internal/exec"
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"github.com/pingcap/tidb/executor/internal/pdhelper"
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"github.com/pingcap/tidb/executor/internal/querywatch"
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"github.com/pingcap/tidb/executor/internal/vecgroupchecker"
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"github.com/pingcap/tidb/executor/lockstats"
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executor_metrics "github.com/pingcap/tidb/executor/metrics"
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"github.com/pingcap/tidb/expression"
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"github.com/pingcap/tidb/expression/aggregation"
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"github.com/pingcap/tidb/infoschema"
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"github.com/pingcap/tidb/kv"
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"github.com/pingcap/tidb/parser/ast"
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"github.com/pingcap/tidb/parser/model"
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"github.com/pingcap/tidb/parser/mysql"
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plannercore "github.com/pingcap/tidb/planner/core"
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plannerutil "github.com/pingcap/tidb/planner/util"
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"github.com/pingcap/tidb/sessionctx"
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"github.com/pingcap/tidb/sessionctx/stmtctx"
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"github.com/pingcap/tidb/sessionctx/variable"
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"github.com/pingcap/tidb/sessiontxn"
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"github.com/pingcap/tidb/sessiontxn/staleread"
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"github.com/pingcap/tidb/statistics"
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"github.com/pingcap/tidb/table"
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"github.com/pingcap/tidb/table/tables"
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"github.com/pingcap/tidb/table/temptable"
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"github.com/pingcap/tidb/types"
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"github.com/pingcap/tidb/util"
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"github.com/pingcap/tidb/util/chunk"
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"github.com/pingcap/tidb/util/collate"
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"github.com/pingcap/tidb/util/cteutil"
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"github.com/pingcap/tidb/util/dbterror/exeerrors"
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"github.com/pingcap/tidb/util/execdetails"
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"github.com/pingcap/tidb/util/mathutil"
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"github.com/pingcap/tidb/util/memory"
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"github.com/pingcap/tidb/util/ranger"
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"github.com/pingcap/tidb/util/rowcodec"
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"github.com/pingcap/tidb/util/tiflash"
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"github.com/pingcap/tidb/util/timeutil"
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"github.com/pingcap/tipb/go-tipb"
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clientkv "github.com/tikv/client-go/v2/kv"
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"github.com/tikv/client-go/v2/tikv"
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"github.com/tikv/client-go/v2/txnkv"
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"github.com/tikv/client-go/v2/txnkv/txnsnapshot"
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clientutil "github.com/tikv/client-go/v2/util"
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)
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// executorBuilder builds an Executor from a Plan.
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// The InfoSchema must not change during execution.
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type executorBuilder struct {
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ctx sessionctx.Context
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is infoschema.InfoSchema
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err error // err is set when there is error happened during Executor building process.
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hasLock bool
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Ti *TelemetryInfo
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// isStaleness means whether this statement use stale read.
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isStaleness bool
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txnScope string
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readReplicaScope string
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inUpdateStmt bool
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inDeleteStmt bool
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inInsertStmt bool
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inSelectLockStmt bool
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// forDataReaderBuilder indicates whether the builder is used by a dataReaderBuilder.
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// When forDataReader is true, the builder should use the dataReaderTS as the executor read ts. This is because
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// dataReaderBuilder can be used in concurrent goroutines, so we must ensure that getting the ts should be thread safe and
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// can return a correct value even if the session context has already been destroyed
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forDataReaderBuilder bool
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dataReaderTS uint64
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// Used when building MPPGather.
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encounterUnionScan bool
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}
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// CTEStorages stores resTbl and iterInTbl for CTEExec.
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// There will be a map[CTEStorageID]*CTEStorages in StmtCtx,
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// which will store all CTEStorages to make all shared CTEs use same the CTEStorages.
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type CTEStorages struct {
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ResTbl cteutil.Storage
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IterInTbl cteutil.Storage
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Producer *cteProducer
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}
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func newExecutorBuilder(ctx sessionctx.Context, is infoschema.InfoSchema, ti *TelemetryInfo) *executorBuilder {
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txnManager := sessiontxn.GetTxnManager(ctx)
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return &executorBuilder{
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ctx: ctx,
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is: is,
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Ti: ti,
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isStaleness: staleread.IsStmtStaleness(ctx),
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txnScope: txnManager.GetTxnScope(),
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readReplicaScope: txnManager.GetReadReplicaScope(),
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}
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}
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// MockPhysicalPlan is used to return a specified executor in when build.
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// It is mainly used for testing.
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type MockPhysicalPlan interface {
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plannercore.PhysicalPlan
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GetExecutor() exec.Executor
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}
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// MockExecutorBuilder is a wrapper for executorBuilder.
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// ONLY used in test.
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type MockExecutorBuilder struct {
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*executorBuilder
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}
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// NewMockExecutorBuilderForTest is ONLY used in test.
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func NewMockExecutorBuilderForTest(ctx sessionctx.Context, is infoschema.InfoSchema, ti *TelemetryInfo) *MockExecutorBuilder {
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return &MockExecutorBuilder{
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executorBuilder: newExecutorBuilder(ctx, is, ti)}
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}
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// Build builds an executor tree according to `p`.
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func (b *MockExecutorBuilder) Build(p plannercore.Plan) exec.Executor {
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return b.build(p)
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}
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func (b *executorBuilder) build(p plannercore.Plan) exec.Executor {
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switch v := p.(type) {
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case nil:
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return nil
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case *plannercore.Change:
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return b.buildChange(v)
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case *plannercore.CheckTable:
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return b.buildCheckTable(v)
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case *plannercore.RecoverIndex:
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return b.buildRecoverIndex(v)
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case *plannercore.CleanupIndex:
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return b.buildCleanupIndex(v)
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case *plannercore.CheckIndexRange:
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return b.buildCheckIndexRange(v)
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case *plannercore.ChecksumTable:
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return b.buildChecksumTable(v)
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case *plannercore.ReloadExprPushdownBlacklist:
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return b.buildReloadExprPushdownBlacklist(v)
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case *plannercore.ReloadOptRuleBlacklist:
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return b.buildReloadOptRuleBlacklist(v)
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case *plannercore.AdminPlugins:
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return b.buildAdminPlugins(v)
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case *plannercore.DDL:
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return b.buildDDL(v)
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case *plannercore.Deallocate:
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return b.buildDeallocate(v)
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case *plannercore.Delete:
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return b.buildDelete(v)
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case *plannercore.Execute:
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return b.buildExecute(v)
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case *plannercore.Trace:
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return b.buildTrace(v)
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case *plannercore.Explain:
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return b.buildExplain(v)
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case *plannercore.PointGetPlan:
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return b.buildPointGet(v)
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case *plannercore.BatchPointGetPlan:
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return b.buildBatchPointGet(v)
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case *plannercore.Insert:
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return b.buildInsert(v)
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case *plannercore.ImportInto:
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return b.buildImportInto(v)
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case *plannercore.LoadData:
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return b.buildLoadData(v)
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case *plannercore.LoadStats:
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return b.buildLoadStats(v)
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case *plannercore.LockStats:
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return b.buildLockStats(v)
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case *plannercore.UnlockStats:
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return b.buildUnlockStats(v)
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case *plannercore.IndexAdvise:
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return b.buildIndexAdvise(v)
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case *plannercore.PlanReplayer:
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return b.buildPlanReplayer(v)
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case *plannercore.PhysicalLimit:
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return b.buildLimit(v)
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case *plannercore.Prepare:
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return b.buildPrepare(v)
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case *plannercore.PhysicalLock:
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return b.buildSelectLock(v)
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case *plannercore.CancelDDLJobs:
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return b.buildCancelDDLJobs(v)
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case *plannercore.PauseDDLJobs:
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return b.buildPauseDDLJobs(v)
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case *plannercore.ResumeDDLJobs:
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return b.buildResumeDDLJobs(v)
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case *plannercore.ShowNextRowID:
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return b.buildShowNextRowID(v)
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case *plannercore.ShowDDL:
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return b.buildShowDDL(v)
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case *plannercore.PhysicalShowDDLJobs:
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return b.buildShowDDLJobs(v)
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case *plannercore.ShowDDLJobQueries:
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return b.buildShowDDLJobQueries(v)
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case *plannercore.ShowDDLJobQueriesWithRange:
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return b.buildShowDDLJobQueriesWithRange(v)
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case *plannercore.ShowSlow:
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return b.buildShowSlow(v)
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case *plannercore.PhysicalShow:
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return b.buildShow(v)
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case *plannercore.Simple:
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return b.buildSimple(v)
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case *plannercore.PhysicalSimpleWrapper:
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return b.buildSimple(&v.Inner)
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case *plannercore.Set:
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return b.buildSet(v)
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case *plannercore.SetConfig:
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return b.buildSetConfig(v)
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case *plannercore.PhysicalSort:
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return b.buildSort(v)
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case *plannercore.PhysicalTopN:
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return b.buildTopN(v)
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case *plannercore.PhysicalUnionAll:
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return b.buildUnionAll(v)
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case *plannercore.Update:
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return b.buildUpdate(v)
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case *plannercore.PhysicalUnionScan:
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return b.buildUnionScanExec(v)
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case *plannercore.PhysicalHashJoin:
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return b.buildHashJoin(v)
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case *plannercore.PhysicalMergeJoin:
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return b.buildMergeJoin(v)
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case *plannercore.PhysicalIndexJoin:
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return b.buildIndexLookUpJoin(v)
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case *plannercore.PhysicalIndexMergeJoin:
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return b.buildIndexLookUpMergeJoin(v)
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case *plannercore.PhysicalIndexHashJoin:
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return b.buildIndexNestedLoopHashJoin(v)
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case *plannercore.PhysicalSelection:
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return b.buildSelection(v)
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case *plannercore.PhysicalHashAgg:
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return b.buildHashAgg(v)
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case *plannercore.PhysicalStreamAgg:
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return b.buildStreamAgg(v)
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case *plannercore.PhysicalProjection:
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return b.buildProjection(v)
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case *plannercore.PhysicalMemTable:
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return b.buildMemTable(v)
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case *plannercore.PhysicalTableDual:
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return b.buildTableDual(v)
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case *plannercore.PhysicalApply:
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return b.buildApply(v)
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case *plannercore.PhysicalMaxOneRow:
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return b.buildMaxOneRow(v)
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case *plannercore.Analyze:
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return b.buildAnalyze(v)
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case *plannercore.PhysicalTableReader:
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return b.buildTableReader(v)
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case *plannercore.PhysicalTableSample:
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return b.buildTableSample(v)
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case *plannercore.PhysicalIndexReader:
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return b.buildIndexReader(v)
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case *plannercore.PhysicalIndexLookUpReader:
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return b.buildIndexLookUpReader(v)
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case *plannercore.PhysicalWindow:
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return b.buildWindow(v)
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case *plannercore.PhysicalShuffle:
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return b.buildShuffle(v)
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case *plannercore.PhysicalShuffleReceiverStub:
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return b.buildShuffleReceiverStub(v)
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case *plannercore.SQLBindPlan:
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return b.buildSQLBindExec(v)
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case *plannercore.SplitRegion:
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return b.buildSplitRegion(v)
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case *plannercore.PhysicalIndexMergeReader:
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return b.buildIndexMergeReader(v)
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case *plannercore.SelectInto:
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return b.buildSelectInto(v)
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case *plannercore.AdminShowTelemetry:
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return b.buildAdminShowTelemetry(v)
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case *plannercore.AdminResetTelemetryID:
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return b.buildAdminResetTelemetryID(v)
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case *plannercore.PhysicalCTE:
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return b.buildCTE(v)
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case *plannercore.PhysicalCTETable:
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return b.buildCTETableReader(v)
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case *plannercore.CompactTable:
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return b.buildCompactTable(v)
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default:
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if mp, ok := p.(MockPhysicalPlan); ok {
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return mp.GetExecutor()
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}
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b.err = exeerrors.ErrUnknownPlan.GenWithStack("Unknown Plan %T", p)
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return nil
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}
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}
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func (b *executorBuilder) buildCancelDDLJobs(v *plannercore.CancelDDLJobs) exec.Executor {
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e := &CancelDDLJobsExec{
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CommandDDLJobsExec: &CommandDDLJobsExec{
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BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
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jobIDs: v.JobIDs,
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execute: ddl.CancelJobs,
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},
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}
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return e
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}
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func (b *executorBuilder) buildPauseDDLJobs(v *plannercore.PauseDDLJobs) exec.Executor {
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e := &PauseDDLJobsExec{
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CommandDDLJobsExec: &CommandDDLJobsExec{
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BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
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jobIDs: v.JobIDs,
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execute: ddl.PauseJobs,
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},
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}
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return e
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}
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func (b *executorBuilder) buildResumeDDLJobs(v *plannercore.ResumeDDLJobs) exec.Executor {
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e := &ResumeDDLJobsExec{
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CommandDDLJobsExec: &CommandDDLJobsExec{
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BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
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jobIDs: v.JobIDs,
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execute: ddl.ResumeJobs,
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},
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}
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return e
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}
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func (b *executorBuilder) buildChange(v *plannercore.Change) exec.Executor {
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return &ChangeExec{
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BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
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ChangeStmt: v.ChangeStmt,
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}
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}
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func (b *executorBuilder) buildShowNextRowID(v *plannercore.ShowNextRowID) exec.Executor {
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e := &ShowNextRowIDExec{
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BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
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tblName: v.TableName,
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}
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return e
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}
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func (b *executorBuilder) buildShowDDL(v *plannercore.ShowDDL) exec.Executor {
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// We get Info here because for Executors that returns result set,
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// next will be called after transaction has been committed.
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// We need the transaction to get Info.
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e := &ShowDDLExec{
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BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
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}
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var err error
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ownerManager := domain.GetDomain(e.Ctx()).DDL().OwnerManager()
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ctx, cancel := context.WithTimeout(context.Background(), 3*time.Second)
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e.ddlOwnerID, err = ownerManager.GetOwnerID(ctx)
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cancel()
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if err != nil {
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b.err = err
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return nil
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}
|
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|
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session, err := e.GetSysSession()
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if err != nil {
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b.err = err
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return nil
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}
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ddlInfo, err := ddl.GetDDLInfoWithNewTxn(session)
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e.ReleaseSysSession(kv.WithInternalSourceType(context.Background(), kv.InternalTxnDDL), session)
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if err != nil {
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b.err = err
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return nil
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}
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e.ddlInfo = ddlInfo
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e.selfID = ownerManager.ID()
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return e
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}
|
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|
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func (b *executorBuilder) buildShowDDLJobs(v *plannercore.PhysicalShowDDLJobs) exec.Executor {
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loc := b.ctx.GetSessionVars().Location()
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ddlJobRetriever := DDLJobRetriever{TZLoc: loc}
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e := &ShowDDLJobsExec{
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jobNumber: int(v.JobNumber),
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is: b.is,
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BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
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DDLJobRetriever: ddlJobRetriever,
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}
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return e
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}
|
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|
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func (b *executorBuilder) buildShowDDLJobQueries(v *plannercore.ShowDDLJobQueries) exec.Executor {
|
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e := &ShowDDLJobQueriesExec{
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BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
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jobIDs: v.JobIDs,
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}
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return e
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}
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|
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func (b *executorBuilder) buildShowDDLJobQueriesWithRange(v *plannercore.ShowDDLJobQueriesWithRange) exec.Executor {
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e := &ShowDDLJobQueriesWithRangeExec{
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BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
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offset: v.Offset,
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limit: v.Limit,
|
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}
|
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return e
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}
|
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|
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func (b *executorBuilder) buildShowSlow(v *plannercore.ShowSlow) exec.Executor {
|
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e := &ShowSlowExec{
|
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BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
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ShowSlow: v.ShowSlow,
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}
|
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return e
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}
|
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|
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// buildIndexLookUpChecker builds check information to IndexLookUpReader.
|
|
func buildIndexLookUpChecker(b *executorBuilder, p *plannercore.PhysicalIndexLookUpReader,
|
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e *IndexLookUpExecutor) {
|
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is := p.IndexPlans[0].(*plannercore.PhysicalIndexScan)
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fullColLen := len(is.Index.Columns) + len(p.CommonHandleCols)
|
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if !e.isCommonHandle() {
|
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fullColLen++
|
|
}
|
|
e.dagPB.OutputOffsets = make([]uint32, fullColLen)
|
|
for i := 0; i < fullColLen; i++ {
|
|
e.dagPB.OutputOffsets[i] = uint32(i)
|
|
}
|
|
|
|
ts := p.TablePlans[0].(*plannercore.PhysicalTableScan)
|
|
e.handleIdx = ts.HandleIdx
|
|
|
|
e.ranges = ranger.FullRange()
|
|
|
|
tps := make([]*types.FieldType, 0, fullColLen)
|
|
for _, col := range is.Columns {
|
|
// tps is used to decode the index, we should use the element type of the array if any.
|
|
tps = append(tps, col.FieldType.ArrayType())
|
|
}
|
|
|
|
if !e.isCommonHandle() {
|
|
tps = append(tps, types.NewFieldType(mysql.TypeLonglong))
|
|
}
|
|
|
|
e.checkIndexValue = &checkIndexValue{idxColTps: tps}
|
|
|
|
colNames := make([]string, 0, len(is.IdxCols))
|
|
for i := range is.IdxCols {
|
|
colNames = append(colNames, is.Columns[i].Name.L)
|
|
}
|
|
if cols, missingColOffset := table.FindColumns(e.table.Cols(), colNames, true); missingColOffset >= 0 {
|
|
b.err = plannercore.ErrUnknownColumn.GenWithStack("Unknown column %s", is.Columns[missingColOffset].Name.O)
|
|
} else {
|
|
e.idxTblCols = cols
|
|
}
|
|
}
|
|
|
|
func (b *executorBuilder) buildCheckTable(v *plannercore.CheckTable) exec.Executor {
|
|
noMVIndexOrPrefixIndex := true
|
|
for _, idx := range v.IndexInfos {
|
|
if idx.MVIndex {
|
|
noMVIndexOrPrefixIndex = false
|
|
break
|
|
}
|
|
for _, col := range idx.Columns {
|
|
if col.Length != types.UnspecifiedLength {
|
|
noMVIndexOrPrefixIndex = false
|
|
break
|
|
}
|
|
}
|
|
if !noMVIndexOrPrefixIndex {
|
|
break
|
|
}
|
|
}
|
|
if b.ctx.GetSessionVars().FastCheckTable && noMVIndexOrPrefixIndex {
|
|
e := &FastCheckTableExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
dbName: v.DBName,
|
|
table: v.Table,
|
|
indexInfos: v.IndexInfos,
|
|
is: b.is,
|
|
err: &atomic.Pointer[error]{},
|
|
}
|
|
return e
|
|
}
|
|
|
|
readerExecs := make([]*IndexLookUpExecutor, 0, len(v.IndexLookUpReaders))
|
|
for _, readerPlan := range v.IndexLookUpReaders {
|
|
readerExec, err := buildNoRangeIndexLookUpReader(b, readerPlan)
|
|
if err != nil {
|
|
b.err = errors.Trace(err)
|
|
return nil
|
|
}
|
|
buildIndexLookUpChecker(b, readerPlan, readerExec)
|
|
|
|
readerExecs = append(readerExecs, readerExec)
|
|
}
|
|
|
|
e := &CheckTableExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
dbName: v.DBName,
|
|
table: v.Table,
|
|
indexInfos: v.IndexInfos,
|
|
is: b.is,
|
|
srcs: readerExecs,
|
|
exitCh: make(chan struct{}),
|
|
retCh: make(chan error, len(readerExecs)),
|
|
checkIndex: v.CheckIndex,
|
|
}
|
|
return e
|
|
}
|
|
|
|
func buildIdxColsConcatHandleCols(tblInfo *model.TableInfo, indexInfo *model.IndexInfo, hasGenedCol bool) []*model.ColumnInfo {
|
|
var pkCols []*model.IndexColumn
|
|
if tblInfo.IsCommonHandle {
|
|
pkIdx := tables.FindPrimaryIndex(tblInfo)
|
|
pkCols = pkIdx.Columns
|
|
}
|
|
|
|
columns := make([]*model.ColumnInfo, 0, len(indexInfo.Columns)+len(pkCols))
|
|
if hasGenedCol {
|
|
columns = tblInfo.Columns
|
|
} else {
|
|
for _, idxCol := range indexInfo.Columns {
|
|
if tblInfo.PKIsHandle && tblInfo.GetPkColInfo().Offset == idxCol.Offset {
|
|
continue
|
|
}
|
|
columns = append(columns, tblInfo.Columns[idxCol.Offset])
|
|
}
|
|
}
|
|
|
|
if tblInfo.IsCommonHandle {
|
|
for _, c := range pkCols {
|
|
columns = append(columns, tblInfo.Columns[c.Offset])
|
|
}
|
|
return columns
|
|
}
|
|
if tblInfo.PKIsHandle {
|
|
columns = append(columns, tblInfo.Columns[tblInfo.GetPkColInfo().Offset])
|
|
return columns
|
|
}
|
|
handleOffset := len(columns)
|
|
handleColsInfo := &model.ColumnInfo{
|
|
ID: model.ExtraHandleID,
|
|
Name: model.ExtraHandleName,
|
|
Offset: handleOffset,
|
|
}
|
|
handleColsInfo.FieldType = *types.NewFieldType(mysql.TypeLonglong)
|
|
columns = append(columns, handleColsInfo)
|
|
return columns
|
|
}
|
|
|
|
func (b *executorBuilder) buildRecoverIndex(v *plannercore.RecoverIndex) exec.Executor {
|
|
tblInfo := v.Table.TableInfo
|
|
t, err := b.is.TableByName(v.Table.Schema, tblInfo.Name)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
idxName := strings.ToLower(v.IndexName)
|
|
index := tables.GetWritableIndexByName(idxName, t)
|
|
if index == nil {
|
|
b.err = errors.Errorf("secondary index `%v` is not found in table `%v`", v.IndexName, v.Table.Name.O)
|
|
return nil
|
|
}
|
|
var hasGenedCol bool
|
|
for _, iCol := range index.Meta().Columns {
|
|
if tblInfo.Columns[iCol.Offset].IsGenerated() {
|
|
hasGenedCol = true
|
|
}
|
|
}
|
|
cols := buildIdxColsConcatHandleCols(tblInfo, index.Meta(), hasGenedCol)
|
|
e := &RecoverIndexExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
columns: cols,
|
|
containsGenedCol: hasGenedCol,
|
|
index: index,
|
|
table: t,
|
|
physicalID: t.Meta().ID,
|
|
}
|
|
sessCtx := e.Ctx().GetSessionVars().StmtCtx
|
|
e.handleCols = buildHandleColsForExec(sessCtx, tblInfo, index.Meta(), e.columns)
|
|
return e
|
|
}
|
|
|
|
func buildHandleColsForExec(sctx *stmtctx.StatementContext, tblInfo *model.TableInfo,
|
|
idxInfo *model.IndexInfo, allColInfo []*model.ColumnInfo) plannercore.HandleCols {
|
|
if !tblInfo.IsCommonHandle {
|
|
extraColPos := len(allColInfo) - 1
|
|
intCol := &expression.Column{
|
|
Index: extraColPos,
|
|
RetType: types.NewFieldType(mysql.TypeLonglong),
|
|
}
|
|
return plannercore.NewIntHandleCols(intCol)
|
|
}
|
|
tblCols := make([]*expression.Column, len(tblInfo.Columns))
|
|
for i := 0; i < len(tblInfo.Columns); i++ {
|
|
c := tblInfo.Columns[i]
|
|
tblCols[i] = &expression.Column{
|
|
RetType: &c.FieldType,
|
|
ID: c.ID,
|
|
}
|
|
}
|
|
pkIdx := tables.FindPrimaryIndex(tblInfo)
|
|
for i, c := range pkIdx.Columns {
|
|
tblCols[c.Offset].Index = len(idxInfo.Columns) + i
|
|
}
|
|
return plannercore.NewCommonHandleCols(sctx, tblInfo, pkIdx, tblCols)
|
|
}
|
|
|
|
func (b *executorBuilder) buildCleanupIndex(v *plannercore.CleanupIndex) exec.Executor {
|
|
tblInfo := v.Table.TableInfo
|
|
t, err := b.is.TableByName(v.Table.Schema, tblInfo.Name)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
idxName := strings.ToLower(v.IndexName)
|
|
var index table.Index
|
|
for _, idx := range t.Indices() {
|
|
if idx.Meta().State != model.StatePublic {
|
|
continue
|
|
}
|
|
if idxName == idx.Meta().Name.L {
|
|
index = idx
|
|
break
|
|
}
|
|
}
|
|
|
|
if index == nil {
|
|
b.err = errors.Errorf("secondary index `%v` is not found in table `%v`", v.IndexName, v.Table.Name.O)
|
|
return nil
|
|
}
|
|
e := &CleanupIndexExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
columns: buildIdxColsConcatHandleCols(tblInfo, index.Meta(), false),
|
|
index: index,
|
|
table: t,
|
|
physicalID: t.Meta().ID,
|
|
batchSize: 20000,
|
|
}
|
|
sessCtx := e.Ctx().GetSessionVars().StmtCtx
|
|
e.handleCols = buildHandleColsForExec(sessCtx, tblInfo, index.Meta(), e.columns)
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildCheckIndexRange(v *plannercore.CheckIndexRange) exec.Executor {
|
|
tb, err := b.is.TableByName(v.Table.Schema, v.Table.Name)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
e := &CheckIndexRangeExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
handleRanges: v.HandleRanges,
|
|
table: tb.Meta(),
|
|
is: b.is,
|
|
}
|
|
idxName := strings.ToLower(v.IndexName)
|
|
for _, idx := range tb.Indices() {
|
|
if idx.Meta().Name.L == idxName {
|
|
e.index = idx.Meta()
|
|
e.startKey = make([]types.Datum, len(e.index.Columns))
|
|
break
|
|
}
|
|
}
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildChecksumTable(v *plannercore.ChecksumTable) exec.Executor {
|
|
e := &ChecksumTableExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
tables: make(map[int64]*checksumContext),
|
|
done: false,
|
|
}
|
|
startTs, err := b.getSnapshotTS()
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
for _, t := range v.Tables {
|
|
e.tables[t.TableInfo.ID] = newChecksumContext(t.DBInfo, t.TableInfo, startTs)
|
|
}
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildReloadExprPushdownBlacklist(_ *plannercore.ReloadExprPushdownBlacklist) exec.Executor {
|
|
base := exec.NewBaseExecutor(b.ctx, nil, 0)
|
|
return &ReloadExprPushdownBlacklistExec{base}
|
|
}
|
|
|
|
func (b *executorBuilder) buildReloadOptRuleBlacklist(_ *plannercore.ReloadOptRuleBlacklist) exec.Executor {
|
|
base := exec.NewBaseExecutor(b.ctx, nil, 0)
|
|
return &ReloadOptRuleBlacklistExec{BaseExecutor: base}
|
|
}
|
|
|
|
func (b *executorBuilder) buildAdminPlugins(v *plannercore.AdminPlugins) exec.Executor {
|
|
base := exec.NewBaseExecutor(b.ctx, nil, 0)
|
|
return &AdminPluginsExec{BaseExecutor: base, Action: v.Action, Plugins: v.Plugins}
|
|
}
|
|
|
|
func (b *executorBuilder) buildDeallocate(v *plannercore.Deallocate) exec.Executor {
|
|
base := exec.NewBaseExecutor(b.ctx, nil, v.ID())
|
|
base.SetInitCap(chunk.ZeroCapacity)
|
|
e := &DeallocateExec{
|
|
BaseExecutor: base,
|
|
Name: v.Name,
|
|
}
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildSelectLock(v *plannercore.PhysicalLock) exec.Executor {
|
|
if !b.inSelectLockStmt {
|
|
b.inSelectLockStmt = true
|
|
defer func() { b.inSelectLockStmt = false }()
|
|
}
|
|
b.hasLock = true
|
|
if b.err = b.updateForUpdateTS(); b.err != nil {
|
|
return nil
|
|
}
|
|
|
|
src := b.build(v.Children()[0])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
if !b.ctx.GetSessionVars().InTxn() {
|
|
// Locking of rows for update using SELECT FOR UPDATE only applies when autocommit
|
|
// is disabled (either by beginning transaction with START TRANSACTION or by setting
|
|
// autocommit to 0. If autocommit is enabled, the rows matching the specification are not locked.
|
|
// See https://dev.mysql.com/doc/refman/5.7/en/innodb-locking-reads.html
|
|
return src
|
|
}
|
|
e := &SelectLockExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), src),
|
|
Lock: v.Lock,
|
|
tblID2Handle: v.TblID2Handle,
|
|
tblID2PhysTblIDCol: v.TblID2PhysTblIDCol,
|
|
}
|
|
|
|
// filter out temporary tables because they do not store any record in tikv and should not write any lock
|
|
is := e.Ctx().GetInfoSchema().(infoschema.InfoSchema)
|
|
for tblID := range e.tblID2Handle {
|
|
tblInfo, ok := is.TableByID(tblID)
|
|
if !ok {
|
|
b.err = errors.Errorf("Can not get table %d", tblID)
|
|
}
|
|
|
|
if tblInfo.Meta().TempTableType != model.TempTableNone {
|
|
delete(e.tblID2Handle, tblID)
|
|
}
|
|
}
|
|
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildLimit(v *plannercore.PhysicalLimit) exec.Executor {
|
|
childExec := b.build(v.Children()[0])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
n := int(mathutil.Min(v.Count, uint64(b.ctx.GetSessionVars().MaxChunkSize)))
|
|
base := exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), childExec)
|
|
base.SetInitCap(n)
|
|
e := &LimitExec{
|
|
BaseExecutor: base,
|
|
begin: v.Offset,
|
|
end: v.Offset + v.Count,
|
|
}
|
|
|
|
childUsedSchema := markChildrenUsedCols(v.Schema().Columns, v.Children()[0].Schema())[0]
|
|
e.columnIdxsUsedByChild = make([]int, 0, len(childUsedSchema))
|
|
for i, used := range childUsedSchema {
|
|
if used {
|
|
e.columnIdxsUsedByChild = append(e.columnIdxsUsedByChild, i)
|
|
}
|
|
}
|
|
if len(e.columnIdxsUsedByChild) == len(childUsedSchema) {
|
|
e.columnIdxsUsedByChild = nil // indicates that all columns are used. LimitExec will improve performance for this condition.
|
|
}
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildPrepare(v *plannercore.Prepare) exec.Executor {
|
|
base := exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID())
|
|
base.SetInitCap(chunk.ZeroCapacity)
|
|
return &PrepareExec{
|
|
BaseExecutor: base,
|
|
name: v.Name,
|
|
sqlText: v.SQLText,
|
|
}
|
|
}
|
|
|
|
func (b *executorBuilder) buildExecute(v *plannercore.Execute) exec.Executor {
|
|
e := &ExecuteExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
is: b.is,
|
|
name: v.Name,
|
|
usingVars: v.Params,
|
|
stmt: v.Stmt,
|
|
plan: v.Plan,
|
|
outputNames: v.OutputNames(),
|
|
}
|
|
|
|
failpoint.Inject("assertExecutePrepareStatementStalenessOption", func(val failpoint.Value) {
|
|
vs := strings.Split(val.(string), "_")
|
|
assertTS, assertReadReplicaScope := vs[0], vs[1]
|
|
staleread.AssertStmtStaleness(b.ctx, true)
|
|
ts, err := sessiontxn.GetTxnManager(b.ctx).GetStmtReadTS()
|
|
if err != nil {
|
|
panic(e)
|
|
}
|
|
|
|
if strconv.FormatUint(ts, 10) != assertTS ||
|
|
assertReadReplicaScope != b.readReplicaScope {
|
|
panic("execute prepare statement have wrong staleness option")
|
|
}
|
|
})
|
|
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildShow(v *plannercore.PhysicalShow) exec.Executor {
|
|
e := &ShowExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
Tp: v.Tp,
|
|
CountWarningsOrErrors: v.CountWarningsOrErrors,
|
|
DBName: model.NewCIStr(v.DBName),
|
|
Table: v.Table,
|
|
Partition: v.Partition,
|
|
Column: v.Column,
|
|
IndexName: v.IndexName,
|
|
ResourceGroupName: model.NewCIStr(v.ResourceGroupName),
|
|
Flag: v.Flag,
|
|
Roles: v.Roles,
|
|
User: v.User,
|
|
is: b.is,
|
|
Full: v.Full,
|
|
IfNotExists: v.IfNotExists,
|
|
GlobalScope: v.GlobalScope,
|
|
Extended: v.Extended,
|
|
Extractor: v.Extractor,
|
|
ImportJobID: v.ImportJobID,
|
|
}
|
|
if e.Tp == ast.ShowMasterStatus {
|
|
// show master status need start ts.
|
|
if _, err := e.Ctx().Txn(true); err != nil {
|
|
b.err = err
|
|
}
|
|
}
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildSimple(v *plannercore.Simple) exec.Executor {
|
|
switch s := v.Statement.(type) {
|
|
case *ast.GrantStmt:
|
|
return b.buildGrant(s)
|
|
case *ast.RevokeStmt:
|
|
return b.buildRevoke(s)
|
|
case *ast.BRIEStmt:
|
|
return b.buildBRIE(s, v.Schema())
|
|
case *ast.CreateUserStmt, *ast.AlterUserStmt:
|
|
var lockOptions []*ast.PasswordOrLockOption
|
|
if b.Ti.AccountLockTelemetry == nil {
|
|
b.Ti.AccountLockTelemetry = &AccountLockTelemetryInfo{}
|
|
}
|
|
b.Ti.AccountLockTelemetry.CreateOrAlterUser++
|
|
if stmt, ok := v.Statement.(*ast.CreateUserStmt); ok {
|
|
lockOptions = stmt.PasswordOrLockOptions
|
|
} else if stmt, ok := v.Statement.(*ast.AlterUserStmt); ok {
|
|
lockOptions = stmt.PasswordOrLockOptions
|
|
}
|
|
if len(lockOptions) > 0 {
|
|
// Multiple lock options are supported for the parser, but only the last one option takes effect.
|
|
for i := len(lockOptions) - 1; i >= 0; i-- {
|
|
if lockOptions[i].Type == ast.Lock {
|
|
b.Ti.AccountLockTelemetry.LockUser++
|
|
break
|
|
} else if lockOptions[i].Type == ast.Unlock {
|
|
b.Ti.AccountLockTelemetry.UnlockUser++
|
|
break
|
|
}
|
|
}
|
|
}
|
|
case *ast.CalibrateResourceStmt:
|
|
return &calibrateresource.Executor{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), 0),
|
|
WorkloadType: s.Tp,
|
|
OptionList: s.DynamicCalibrateResourceOptionList,
|
|
}
|
|
case *ast.AddQueryWatchStmt:
|
|
return &querywatch.AddExecutor{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), 0),
|
|
QueryWatchOptionList: s.QueryWatchOptionList,
|
|
}
|
|
case *ast.LoadDataActionStmt:
|
|
return &LoadDataActionExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, nil, 0),
|
|
tp: s.Tp,
|
|
jobID: s.JobID,
|
|
}
|
|
case *ast.ImportIntoActionStmt:
|
|
return &ImportIntoActionExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, nil, 0),
|
|
tp: s.Tp,
|
|
jobID: s.JobID,
|
|
}
|
|
}
|
|
base := exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID())
|
|
base.SetInitCap(chunk.ZeroCapacity)
|
|
e := &SimpleExec{
|
|
BaseExecutor: base,
|
|
Statement: v.Statement,
|
|
IsFromRemote: v.IsFromRemote,
|
|
is: b.is,
|
|
staleTxnStartTS: v.StaleTxnStartTS,
|
|
}
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildSet(v *plannercore.Set) exec.Executor {
|
|
base := exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID())
|
|
base.SetInitCap(chunk.ZeroCapacity)
|
|
e := &SetExecutor{
|
|
BaseExecutor: base,
|
|
vars: v.VarAssigns,
|
|
}
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildSetConfig(v *plannercore.SetConfig) exec.Executor {
|
|
return &SetConfigExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
p: v,
|
|
}
|
|
}
|
|
|
|
func (b *executorBuilder) buildInsert(v *plannercore.Insert) exec.Executor {
|
|
b.inInsertStmt = true
|
|
if b.err = b.updateForUpdateTS(); b.err != nil {
|
|
return nil
|
|
}
|
|
|
|
selectExec := b.build(v.SelectPlan)
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
var baseExec exec.BaseExecutor
|
|
if selectExec != nil {
|
|
baseExec = exec.NewBaseExecutor(b.ctx, nil, v.ID(), selectExec)
|
|
} else {
|
|
baseExec = exec.NewBaseExecutor(b.ctx, nil, v.ID())
|
|
}
|
|
baseExec.SetInitCap(chunk.ZeroCapacity)
|
|
|
|
ivs := &InsertValues{
|
|
BaseExecutor: baseExec,
|
|
Table: v.Table,
|
|
Columns: v.Columns,
|
|
Lists: v.Lists,
|
|
GenExprs: v.GenCols.Exprs,
|
|
allAssignmentsAreConstant: v.AllAssignmentsAreConstant,
|
|
hasRefCols: v.NeedFillDefaultValue,
|
|
SelectExec: selectExec,
|
|
rowLen: v.RowLen,
|
|
}
|
|
err := ivs.initInsertColumns()
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
ivs.fkChecks, b.err = buildFKCheckExecs(b.ctx, ivs.Table, v.FKChecks)
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
ivs.fkCascades, b.err = b.buildFKCascadeExecs(ivs.Table, v.FKCascades)
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
|
|
if v.IsReplace {
|
|
return b.buildReplace(ivs)
|
|
}
|
|
insert := &InsertExec{
|
|
InsertValues: ivs,
|
|
OnDuplicate: append(v.OnDuplicate, v.GenCols.OnDuplicates...),
|
|
}
|
|
return insert
|
|
}
|
|
|
|
func (b *executorBuilder) buildImportInto(v *plannercore.ImportInto) exec.Executor {
|
|
tbl, ok := b.is.TableByID(v.Table.TableInfo.ID)
|
|
if !ok {
|
|
b.err = errors.Errorf("Can not get table %d", v.Table.TableInfo.ID)
|
|
return nil
|
|
}
|
|
if !tbl.Meta().IsBaseTable() {
|
|
b.err = plannercore.ErrNonUpdatableTable.GenWithStackByArgs(tbl.Meta().Name.O, "LOAD")
|
|
return nil
|
|
}
|
|
|
|
base := exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID())
|
|
exec, err := newImportIntoExec(base, b.ctx, v, tbl)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
|
|
return exec
|
|
}
|
|
|
|
func (b *executorBuilder) buildLoadData(v *plannercore.LoadData) exec.Executor {
|
|
tbl, ok := b.is.TableByID(v.Table.TableInfo.ID)
|
|
if !ok {
|
|
b.err = errors.Errorf("Can not get table %d", v.Table.TableInfo.ID)
|
|
return nil
|
|
}
|
|
if !tbl.Meta().IsBaseTable() {
|
|
b.err = plannercore.ErrNonUpdatableTable.GenWithStackByArgs(tbl.Meta().Name.O, "LOAD")
|
|
return nil
|
|
}
|
|
|
|
base := exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID())
|
|
worker, err := NewLoadDataWorker(b.ctx, v, tbl)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
|
|
return &LoadDataExec{
|
|
BaseExecutor: base,
|
|
loadDataWorker: worker,
|
|
FileLocRef: v.FileLocRef,
|
|
}
|
|
}
|
|
|
|
func (b *executorBuilder) buildLoadStats(v *plannercore.LoadStats) exec.Executor {
|
|
e := &LoadStatsExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, nil, v.ID()),
|
|
info: &LoadStatsInfo{v.Path, b.ctx},
|
|
}
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildLockStats(v *plannercore.LockStats) exec.Executor {
|
|
e := &lockstats.LockExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, nil, v.ID()),
|
|
Tables: v.Tables,
|
|
}
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildUnlockStats(v *plannercore.UnlockStats) exec.Executor {
|
|
e := &lockstats.UnlockExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, nil, v.ID()),
|
|
Tables: v.Tables,
|
|
}
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildIndexAdvise(v *plannercore.IndexAdvise) exec.Executor {
|
|
e := &IndexAdviseExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, nil, v.ID()),
|
|
IsLocal: v.IsLocal,
|
|
indexAdviseInfo: &IndexAdviseInfo{
|
|
Path: v.Path,
|
|
MaxMinutes: v.MaxMinutes,
|
|
MaxIndexNum: v.MaxIndexNum,
|
|
LineFieldsInfo: v.LineFieldsInfo,
|
|
Ctx: b.ctx,
|
|
},
|
|
}
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildPlanReplayer(v *plannercore.PlanReplayer) exec.Executor {
|
|
if v.Load {
|
|
e := &PlanReplayerLoadExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, nil, v.ID()),
|
|
info: &PlanReplayerLoadInfo{Path: v.File, Ctx: b.ctx},
|
|
}
|
|
return e
|
|
}
|
|
if v.Capture {
|
|
e := &PlanReplayerExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, nil, v.ID()),
|
|
CaptureInfo: &PlanReplayerCaptureInfo{
|
|
SQLDigest: v.SQLDigest,
|
|
PlanDigest: v.PlanDigest,
|
|
},
|
|
}
|
|
return e
|
|
}
|
|
if v.Remove {
|
|
e := &PlanReplayerExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, nil, v.ID()),
|
|
CaptureInfo: &PlanReplayerCaptureInfo{
|
|
SQLDigest: v.SQLDigest,
|
|
PlanDigest: v.PlanDigest,
|
|
Remove: true,
|
|
},
|
|
}
|
|
return e
|
|
}
|
|
|
|
e := &PlanReplayerExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
DumpInfo: &PlanReplayerDumpInfo{
|
|
Analyze: v.Analyze,
|
|
Path: v.File,
|
|
ctx: b.ctx,
|
|
HistoricalStatsTS: v.HistoricalStatsTS,
|
|
},
|
|
}
|
|
if v.ExecStmt != nil {
|
|
e.DumpInfo.ExecStmts = []ast.StmtNode{v.ExecStmt}
|
|
} else {
|
|
e.BaseExecutor = exec.NewBaseExecutor(b.ctx, nil, v.ID())
|
|
}
|
|
return e
|
|
}
|
|
|
|
func (*executorBuilder) buildReplace(vals *InsertValues) exec.Executor {
|
|
replaceExec := &ReplaceExec{
|
|
InsertValues: vals,
|
|
}
|
|
return replaceExec
|
|
}
|
|
|
|
func (b *executorBuilder) buildGrant(grant *ast.GrantStmt) exec.Executor {
|
|
e := &GrantExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, nil, 0),
|
|
Privs: grant.Privs,
|
|
ObjectType: grant.ObjectType,
|
|
Level: grant.Level,
|
|
Users: grant.Users,
|
|
WithGrant: grant.WithGrant,
|
|
AuthTokenOrTLSOptions: grant.AuthTokenOrTLSOptions,
|
|
is: b.is,
|
|
}
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildRevoke(revoke *ast.RevokeStmt) exec.Executor {
|
|
e := &RevokeExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, nil, 0),
|
|
ctx: b.ctx,
|
|
Privs: revoke.Privs,
|
|
ObjectType: revoke.ObjectType,
|
|
Level: revoke.Level,
|
|
Users: revoke.Users,
|
|
is: b.is,
|
|
}
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) setTelemetryInfo(v *plannercore.DDL) {
|
|
if v == nil || b.Ti == nil {
|
|
return
|
|
}
|
|
switch s := v.Statement.(type) {
|
|
case *ast.AlterTableStmt:
|
|
if len(s.Specs) > 1 {
|
|
b.Ti.UseMultiSchemaChange = true
|
|
}
|
|
for _, spec := range s.Specs {
|
|
switch spec.Tp {
|
|
case ast.AlterTableDropFirstPartition:
|
|
if b.Ti.PartitionTelemetry == nil {
|
|
b.Ti.PartitionTelemetry = &PartitionTelemetryInfo{}
|
|
}
|
|
b.Ti.PartitionTelemetry.UseDropIntervalPartition = true
|
|
case ast.AlterTableAddLastPartition:
|
|
if b.Ti.PartitionTelemetry == nil {
|
|
b.Ti.PartitionTelemetry = &PartitionTelemetryInfo{}
|
|
}
|
|
b.Ti.PartitionTelemetry.UseAddIntervalPartition = true
|
|
case ast.AlterTableExchangePartition:
|
|
b.Ti.UseExchangePartition = true
|
|
case ast.AlterTableReorganizePartition:
|
|
if b.Ti.PartitionTelemetry == nil {
|
|
b.Ti.PartitionTelemetry = &PartitionTelemetryInfo{}
|
|
}
|
|
b.Ti.PartitionTelemetry.UseReorganizePartition = true
|
|
}
|
|
}
|
|
case *ast.CreateTableStmt:
|
|
if s.Partition == nil || strings.EqualFold(b.ctx.GetSessionVars().EnableTablePartition, "OFF") {
|
|
break
|
|
}
|
|
|
|
p := s.Partition
|
|
if b.Ti.PartitionTelemetry == nil {
|
|
b.Ti.PartitionTelemetry = &PartitionTelemetryInfo{}
|
|
}
|
|
b.Ti.PartitionTelemetry.TablePartitionMaxPartitionsNum = mathutil.Max(p.Num, uint64(len(p.Definitions)))
|
|
b.Ti.PartitionTelemetry.UseTablePartition = true
|
|
|
|
switch p.Tp {
|
|
case model.PartitionTypeRange:
|
|
if p.Sub == nil {
|
|
if len(p.ColumnNames) > 0 {
|
|
b.Ti.PartitionTelemetry.UseTablePartitionRangeColumns = true
|
|
if len(p.ColumnNames) > 1 {
|
|
b.Ti.PartitionTelemetry.UseTablePartitionRangeColumnsGt1 = true
|
|
}
|
|
if len(p.ColumnNames) > 2 {
|
|
b.Ti.PartitionTelemetry.UseTablePartitionRangeColumnsGt2 = true
|
|
}
|
|
if len(p.ColumnNames) > 3 {
|
|
b.Ti.PartitionTelemetry.UseTablePartitionRangeColumnsGt3 = true
|
|
}
|
|
} else {
|
|
b.Ti.PartitionTelemetry.UseTablePartitionRange = true
|
|
}
|
|
if p.Interval != nil {
|
|
b.Ti.PartitionTelemetry.UseCreateIntervalPartition = true
|
|
}
|
|
}
|
|
case model.PartitionTypeHash:
|
|
if p.Sub == nil {
|
|
b.Ti.PartitionTelemetry.UseTablePartitionHash = true
|
|
}
|
|
case model.PartitionTypeList:
|
|
enable := b.ctx.GetSessionVars().EnableListTablePartition
|
|
if p.Sub == nil && enable {
|
|
if len(p.ColumnNames) > 0 {
|
|
b.Ti.PartitionTelemetry.UseTablePartitionListColumns = true
|
|
} else {
|
|
b.Ti.PartitionTelemetry.UseTablePartitionList = true
|
|
}
|
|
}
|
|
}
|
|
case *ast.FlashBackToTimestampStmt:
|
|
b.Ti.UseFlashbackToCluster = true
|
|
}
|
|
}
|
|
|
|
func (b *executorBuilder) buildDDL(v *plannercore.DDL) exec.Executor {
|
|
b.setTelemetryInfo(v)
|
|
|
|
e := &DDLExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
stmt: v.Statement,
|
|
is: b.is,
|
|
tempTableDDL: temptable.GetTemporaryTableDDL(b.ctx),
|
|
}
|
|
return e
|
|
}
|
|
|
|
// buildTrace builds a TraceExec for future executing. This method will be called
|
|
// at build().
|
|
func (b *executorBuilder) buildTrace(v *plannercore.Trace) exec.Executor {
|
|
t := &TraceExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
stmtNode: v.StmtNode,
|
|
builder: b,
|
|
format: v.Format,
|
|
|
|
optimizerTrace: v.OptimizerTrace,
|
|
optimizerTraceTarget: v.OptimizerTraceTarget,
|
|
}
|
|
if t.format == plannercore.TraceFormatLog && !t.optimizerTrace {
|
|
return &SortExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), t),
|
|
ByItems: []*plannerutil.ByItems{
|
|
{Expr: &expression.Column{
|
|
Index: 0,
|
|
RetType: types.NewFieldType(mysql.TypeTimestamp),
|
|
}},
|
|
},
|
|
schema: v.Schema(),
|
|
}
|
|
}
|
|
return t
|
|
}
|
|
|
|
// buildExplain builds a explain executor. `e.rows` collects final result to `ExplainExec`.
|
|
func (b *executorBuilder) buildExplain(v *plannercore.Explain) exec.Executor {
|
|
explainExec := &ExplainExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
explain: v,
|
|
}
|
|
if v.Analyze {
|
|
if b.ctx.GetSessionVars().StmtCtx.RuntimeStatsColl == nil {
|
|
b.ctx.GetSessionVars().StmtCtx.RuntimeStatsColl = execdetails.NewRuntimeStatsColl(nil)
|
|
}
|
|
// If the resource group name is not empty, we could collect and display the RU
|
|
// runtime stats for analyze executor.
|
|
resourceGroupName := b.ctx.GetSessionVars().ResourceGroupName
|
|
// Try to register the RU runtime stats for analyze executor.
|
|
if store, ok := b.ctx.GetStore().(interface {
|
|
CreateRURuntimeStats(uint64) *clientutil.RURuntimeStats
|
|
}); len(resourceGroupName) > 0 && ok {
|
|
// StartTS will be used to identify this SQL, so that the runtime stats could
|
|
// aggregate the RU stats beneath the KV storage client.
|
|
startTS, err := b.getSnapshotTS()
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
explainExec.ruRuntimeStats = store.CreateRURuntimeStats(startTS)
|
|
}
|
|
explainExec.analyzeExec = b.build(v.TargetPlan)
|
|
}
|
|
return explainExec
|
|
}
|
|
|
|
func (b *executorBuilder) buildSelectInto(v *plannercore.SelectInto) exec.Executor {
|
|
child := b.build(v.TargetPlan)
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
return &SelectIntoExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), child),
|
|
intoOpt: v.IntoOpt,
|
|
LineFieldsInfo: v.LineFieldsInfo,
|
|
}
|
|
}
|
|
|
|
func (b *executorBuilder) buildUnionScanExec(v *plannercore.PhysicalUnionScan) exec.Executor {
|
|
oriEncounterUnionScan := b.encounterUnionScan
|
|
b.encounterUnionScan = true
|
|
defer func() {
|
|
b.encounterUnionScan = oriEncounterUnionScan
|
|
}()
|
|
reader := b.build(v.Children()[0])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
|
|
return b.buildUnionScanFromReader(reader, v)
|
|
}
|
|
|
|
// buildUnionScanFromReader builds union scan executor from child executor.
|
|
// Note that this function may be called by inner workers of index lookup join concurrently.
|
|
// Be careful to avoid data race.
|
|
func (b *executorBuilder) buildUnionScanFromReader(reader exec.Executor, v *plannercore.PhysicalUnionScan) exec.Executor {
|
|
// If reader is union, it means a partition table and we should transfer as above.
|
|
if x, ok := reader.(*UnionExec); ok {
|
|
for i, child := range x.AllChildren() {
|
|
x.SetChildren(i, b.buildUnionScanFromReader(child, v))
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
}
|
|
return x
|
|
}
|
|
us := &UnionScanExec{BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), reader)}
|
|
// Get the handle column index of the below Plan.
|
|
us.handleCols = v.HandleCols
|
|
us.mutableRow = chunk.MutRowFromTypes(exec.RetTypes(us))
|
|
|
|
// If the push-downed condition contains virtual column, we may build a selection upon reader
|
|
originReader := reader
|
|
if sel, ok := reader.(*SelectionExec); ok {
|
|
reader = sel.Children(0)
|
|
}
|
|
|
|
us.collators = make([]collate.Collator, 0, len(us.columns))
|
|
for _, tp := range exec.RetTypes(us) {
|
|
us.collators = append(us.collators, collate.GetCollator(tp.GetCollate()))
|
|
}
|
|
|
|
startTS, err := b.getSnapshotTS()
|
|
sessionVars := b.ctx.GetSessionVars()
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
|
|
switch x := reader.(type) {
|
|
case *MPPGather:
|
|
us.desc = false
|
|
us.keepOrder = false
|
|
us.conditions, us.conditionsWithVirCol = plannercore.SplitSelCondsWithVirtualColumn(v.Conditions)
|
|
us.columns = x.columns
|
|
us.table = x.table
|
|
us.virtualColumnIndex = x.virtualColumnIndex
|
|
us.handleCachedTable(b, x, sessionVars, startTS)
|
|
case *TableReaderExecutor:
|
|
us.desc = x.desc
|
|
us.keepOrder = x.keepOrder
|
|
us.conditions, us.conditionsWithVirCol = plannercore.SplitSelCondsWithVirtualColumn(v.Conditions)
|
|
us.columns = x.columns
|
|
us.table = x.table
|
|
us.virtualColumnIndex = x.virtualColumnIndex
|
|
us.handleCachedTable(b, x, sessionVars, startTS)
|
|
case *IndexReaderExecutor:
|
|
us.desc = x.desc
|
|
us.keepOrder = x.keepOrder
|
|
for _, ic := range x.index.Columns {
|
|
for i, col := range x.columns {
|
|
if col.Name.L == ic.Name.L {
|
|
us.usedIndex = append(us.usedIndex, i)
|
|
break
|
|
}
|
|
}
|
|
}
|
|
us.conditions, us.conditionsWithVirCol = plannercore.SplitSelCondsWithVirtualColumn(v.Conditions)
|
|
us.columns = x.columns
|
|
us.table = x.table
|
|
us.handleCachedTable(b, x, sessionVars, startTS)
|
|
case *IndexLookUpExecutor:
|
|
us.desc = x.desc
|
|
us.keepOrder = x.keepOrder
|
|
for _, ic := range x.index.Columns {
|
|
for i, col := range x.columns {
|
|
if col.Name.L == ic.Name.L {
|
|
us.usedIndex = append(us.usedIndex, i)
|
|
break
|
|
}
|
|
}
|
|
}
|
|
us.conditions, us.conditionsWithVirCol = plannercore.SplitSelCondsWithVirtualColumn(v.Conditions)
|
|
us.columns = x.columns
|
|
us.table = x.table
|
|
us.virtualColumnIndex = buildVirtualColumnIndex(us.Schema(), us.columns)
|
|
us.handleCachedTable(b, x, sessionVars, startTS)
|
|
case *IndexMergeReaderExecutor:
|
|
if len(x.byItems) != 0 {
|
|
us.keepOrder = x.keepOrder
|
|
us.desc = x.byItems[0].Desc
|
|
for _, item := range x.byItems {
|
|
c, ok := item.Expr.(*expression.Column)
|
|
if !ok {
|
|
b.err = errors.Errorf("Not support non-column in orderBy pushed down")
|
|
return nil
|
|
}
|
|
for i, col := range x.columns {
|
|
if col.ID == c.ID {
|
|
us.usedIndex = append(us.usedIndex, i)
|
|
break
|
|
}
|
|
}
|
|
}
|
|
}
|
|
us.conditions, us.conditionsWithVirCol = plannercore.SplitSelCondsWithVirtualColumn(v.Conditions)
|
|
us.columns = x.columns
|
|
us.table = x.table
|
|
us.virtualColumnIndex = buildVirtualColumnIndex(us.Schema(), us.columns)
|
|
default:
|
|
// The mem table will not be written by sql directly, so we can omit the union scan to avoid err reporting.
|
|
return originReader
|
|
}
|
|
return us
|
|
}
|
|
|
|
type bypassDataSourceExecutor interface {
|
|
dataSourceExecutor
|
|
setDummy()
|
|
}
|
|
|
|
func (us *UnionScanExec) handleCachedTable(b *executorBuilder, x bypassDataSourceExecutor, vars *variable.SessionVars, startTS uint64) {
|
|
tbl := x.Table()
|
|
if tbl.Meta().TableCacheStatusType == model.TableCacheStatusEnable {
|
|
cachedTable := tbl.(table.CachedTable)
|
|
// Determine whether the cache can be used.
|
|
leaseDuration := time.Duration(variable.TableCacheLease.Load()) * time.Second
|
|
cacheData, loading := cachedTable.TryReadFromCache(startTS, leaseDuration)
|
|
if cacheData != nil {
|
|
vars.StmtCtx.ReadFromTableCache = true
|
|
x.setDummy()
|
|
us.cacheTable = cacheData
|
|
} else if loading {
|
|
return
|
|
} else {
|
|
if !b.inUpdateStmt && !b.inDeleteStmt && !b.inInsertStmt && !vars.StmtCtx.InExplainStmt {
|
|
store := b.ctx.GetStore()
|
|
cachedTable.UpdateLockForRead(context.Background(), store, startTS, leaseDuration)
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
// buildMergeJoin builds MergeJoinExec executor.
|
|
func (b *executorBuilder) buildMergeJoin(v *plannercore.PhysicalMergeJoin) exec.Executor {
|
|
leftExec := b.build(v.Children()[0])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
|
|
rightExec := b.build(v.Children()[1])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
|
|
defaultValues := v.DefaultValues
|
|
if defaultValues == nil {
|
|
if v.JoinType == plannercore.RightOuterJoin {
|
|
defaultValues = make([]types.Datum, leftExec.Schema().Len())
|
|
} else {
|
|
defaultValues = make([]types.Datum, rightExec.Schema().Len())
|
|
}
|
|
}
|
|
|
|
colsFromChildren := v.Schema().Columns
|
|
if v.JoinType == plannercore.LeftOuterSemiJoin || v.JoinType == plannercore.AntiLeftOuterSemiJoin {
|
|
colsFromChildren = colsFromChildren[:len(colsFromChildren)-1]
|
|
}
|
|
|
|
e := &MergeJoinExec{
|
|
stmtCtx: b.ctx.GetSessionVars().StmtCtx,
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), leftExec, rightExec),
|
|
compareFuncs: v.CompareFuncs,
|
|
joiner: newJoiner(
|
|
b.ctx,
|
|
v.JoinType,
|
|
v.JoinType == plannercore.RightOuterJoin,
|
|
defaultValues,
|
|
v.OtherConditions,
|
|
exec.RetTypes(leftExec),
|
|
exec.RetTypes(rightExec),
|
|
markChildrenUsedCols(colsFromChildren, v.Children()[0].Schema(), v.Children()[1].Schema()),
|
|
false,
|
|
),
|
|
isOuterJoin: v.JoinType.IsOuterJoin(),
|
|
desc: v.Desc,
|
|
}
|
|
|
|
leftTable := &mergeJoinTable{
|
|
childIndex: 0,
|
|
joinKeys: v.LeftJoinKeys,
|
|
filters: v.LeftConditions,
|
|
}
|
|
rightTable := &mergeJoinTable{
|
|
childIndex: 1,
|
|
joinKeys: v.RightJoinKeys,
|
|
filters: v.RightConditions,
|
|
}
|
|
|
|
if v.JoinType == plannercore.RightOuterJoin {
|
|
e.innerTable = leftTable
|
|
e.outerTable = rightTable
|
|
} else {
|
|
e.innerTable = rightTable
|
|
e.outerTable = leftTable
|
|
}
|
|
e.innerTable.isInner = true
|
|
|
|
// optimizer should guarantee that filters on inner table are pushed down
|
|
// to tikv or extracted to a Selection.
|
|
if len(e.innerTable.filters) != 0 {
|
|
b.err = errors.Annotate(exeerrors.ErrBuildExecutor, "merge join's inner filter should be empty.")
|
|
return nil
|
|
}
|
|
|
|
executor_metrics.ExecutorCounterMergeJoinExec.Inc()
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildHashJoin(v *plannercore.PhysicalHashJoin) exec.Executor {
|
|
leftExec := b.build(v.Children()[0])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
|
|
rightExec := b.build(v.Children()[1])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
|
|
e := &HashJoinExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), leftExec, rightExec),
|
|
probeSideTupleFetcher: &probeSideTupleFetcher{},
|
|
probeWorkers: make([]*probeWorker, v.Concurrency),
|
|
buildWorker: &buildWorker{},
|
|
hashJoinCtx: &hashJoinCtx{
|
|
sessCtx: b.ctx,
|
|
isOuterJoin: v.JoinType.IsOuterJoin(),
|
|
useOuterToBuild: v.UseOuterToBuild,
|
|
joinType: v.JoinType,
|
|
concurrency: v.Concurrency,
|
|
},
|
|
}
|
|
e.hashJoinCtx.allocPool = e.AllocPool
|
|
defaultValues := v.DefaultValues
|
|
lhsTypes, rhsTypes := exec.RetTypes(leftExec), exec.RetTypes(rightExec)
|
|
if v.InnerChildIdx == 1 {
|
|
if len(v.RightConditions) > 0 {
|
|
b.err = errors.Annotate(exeerrors.ErrBuildExecutor, "join's inner condition should be empty")
|
|
return nil
|
|
}
|
|
} else {
|
|
if len(v.LeftConditions) > 0 {
|
|
b.err = errors.Annotate(exeerrors.ErrBuildExecutor, "join's inner condition should be empty")
|
|
return nil
|
|
}
|
|
}
|
|
|
|
leftIsBuildSide := true
|
|
|
|
e.isNullEQ = v.IsNullEQ
|
|
var probeKeys, probeNAKeys, buildKeys, buildNAKeys []*expression.Column
|
|
var buildSideExec exec.Executor
|
|
if v.UseOuterToBuild {
|
|
// update the buildSideEstCount due to changing the build side
|
|
if v.InnerChildIdx == 1 {
|
|
buildSideExec, buildKeys, buildNAKeys = leftExec, v.LeftJoinKeys, v.LeftNAJoinKeys
|
|
e.probeSideTupleFetcher.probeSideExec, probeKeys, probeNAKeys = rightExec, v.RightJoinKeys, v.RightNAJoinKeys
|
|
e.outerFilter = v.LeftConditions
|
|
} else {
|
|
buildSideExec, buildKeys, buildNAKeys = rightExec, v.RightJoinKeys, v.RightNAJoinKeys
|
|
e.probeSideTupleFetcher.probeSideExec, probeKeys, probeNAKeys = leftExec, v.LeftJoinKeys, v.LeftNAJoinKeys
|
|
e.outerFilter = v.RightConditions
|
|
leftIsBuildSide = false
|
|
}
|
|
if defaultValues == nil {
|
|
defaultValues = make([]types.Datum, e.probeSideTupleFetcher.probeSideExec.Schema().Len())
|
|
}
|
|
} else {
|
|
if v.InnerChildIdx == 0 {
|
|
buildSideExec, buildKeys, buildNAKeys = leftExec, v.LeftJoinKeys, v.LeftNAJoinKeys
|
|
e.probeSideTupleFetcher.probeSideExec, probeKeys, probeNAKeys = rightExec, v.RightJoinKeys, v.RightNAJoinKeys
|
|
e.outerFilter = v.RightConditions
|
|
} else {
|
|
buildSideExec, buildKeys, buildNAKeys = rightExec, v.RightJoinKeys, v.RightNAJoinKeys
|
|
e.probeSideTupleFetcher.probeSideExec, probeKeys, probeNAKeys = leftExec, v.LeftJoinKeys, v.LeftNAJoinKeys
|
|
e.outerFilter = v.LeftConditions
|
|
leftIsBuildSide = false
|
|
}
|
|
if defaultValues == nil {
|
|
defaultValues = make([]types.Datum, buildSideExec.Schema().Len())
|
|
}
|
|
}
|
|
probeKeyColIdx := make([]int, len(probeKeys))
|
|
probeNAKeColIdx := make([]int, len(probeNAKeys))
|
|
buildKeyColIdx := make([]int, len(buildKeys))
|
|
buildNAKeyColIdx := make([]int, len(buildNAKeys))
|
|
for i := range buildKeys {
|
|
buildKeyColIdx[i] = buildKeys[i].Index
|
|
}
|
|
for i := range buildNAKeys {
|
|
buildNAKeyColIdx[i] = buildNAKeys[i].Index
|
|
}
|
|
for i := range probeKeys {
|
|
probeKeyColIdx[i] = probeKeys[i].Index
|
|
}
|
|
for i := range probeNAKeys {
|
|
probeNAKeColIdx[i] = probeNAKeys[i].Index
|
|
}
|
|
isNAJoin := len(v.LeftNAJoinKeys) > 0
|
|
colsFromChildren := v.Schema().Columns
|
|
if v.JoinType == plannercore.LeftOuterSemiJoin || v.JoinType == plannercore.AntiLeftOuterSemiJoin {
|
|
colsFromChildren = colsFromChildren[:len(colsFromChildren)-1]
|
|
}
|
|
childrenUsedSchema := markChildrenUsedCols(colsFromChildren, v.Children()[0].Schema(), v.Children()[1].Schema())
|
|
for i := uint(0); i < e.concurrency; i++ {
|
|
e.probeWorkers[i] = &probeWorker{
|
|
hashJoinCtx: e.hashJoinCtx,
|
|
workerID: i,
|
|
joiner: newJoiner(b.ctx, v.JoinType, v.InnerChildIdx == 0, defaultValues, v.OtherConditions, lhsTypes, rhsTypes, childrenUsedSchema, isNAJoin),
|
|
probeKeyColIdx: probeKeyColIdx,
|
|
probeNAKeyColIdx: probeNAKeColIdx,
|
|
}
|
|
}
|
|
e.buildWorker.buildKeyColIdx, e.buildWorker.buildNAKeyColIdx, e.buildWorker.buildSideExec, e.buildWorker.hashJoinCtx = buildKeyColIdx, buildNAKeyColIdx, buildSideExec, e.hashJoinCtx
|
|
e.hashJoinCtx.isNullAware = isNAJoin
|
|
executor_metrics.ExecutorCountHashJoinExec.Inc()
|
|
|
|
// We should use JoinKey to construct the type information using by hashing, instead of using the child's schema directly.
|
|
// When a hybrid type column is hashed multiple times, we need to distinguish what field types are used.
|
|
// For example, the condition `enum = int and enum = string`, we should use ETInt to hash the first column,
|
|
// and use ETString to hash the second column, although they may be the same column.
|
|
leftExecTypes, rightExecTypes := exec.RetTypes(leftExec), exec.RetTypes(rightExec)
|
|
leftTypes, rightTypes := make([]*types.FieldType, 0, len(v.LeftJoinKeys)+len(v.LeftNAJoinKeys)), make([]*types.FieldType, 0, len(v.RightJoinKeys)+len(v.RightNAJoinKeys))
|
|
// set left types and right types for joiner.
|
|
for i, col := range v.LeftJoinKeys {
|
|
leftTypes = append(leftTypes, leftExecTypes[col.Index].Clone())
|
|
leftTypes[i].SetFlag(col.RetType.GetFlag())
|
|
}
|
|
offset := len(v.LeftJoinKeys)
|
|
for i, col := range v.LeftNAJoinKeys {
|
|
leftTypes = append(leftTypes, leftExecTypes[col.Index].Clone())
|
|
leftTypes[i+offset].SetFlag(col.RetType.GetFlag())
|
|
}
|
|
for i, col := range v.RightJoinKeys {
|
|
rightTypes = append(rightTypes, rightExecTypes[col.Index].Clone())
|
|
rightTypes[i].SetFlag(col.RetType.GetFlag())
|
|
}
|
|
offset = len(v.RightJoinKeys)
|
|
for i, col := range v.RightNAJoinKeys {
|
|
rightTypes = append(rightTypes, rightExecTypes[col.Index].Clone())
|
|
rightTypes[i+offset].SetFlag(col.RetType.GetFlag())
|
|
}
|
|
|
|
// consider collations
|
|
for i := range v.EqualConditions {
|
|
chs, coll := v.EqualConditions[i].CharsetAndCollation()
|
|
leftTypes[i].SetCharset(chs)
|
|
leftTypes[i].SetCollate(coll)
|
|
rightTypes[i].SetCharset(chs)
|
|
rightTypes[i].SetCollate(coll)
|
|
}
|
|
offset = len(v.EqualConditions)
|
|
for i := range v.NAEqualConditions {
|
|
chs, coll := v.NAEqualConditions[i].CharsetAndCollation()
|
|
leftTypes[i+offset].SetCharset(chs)
|
|
leftTypes[i+offset].SetCollate(coll)
|
|
rightTypes[i+offset].SetCharset(chs)
|
|
rightTypes[i+offset].SetCollate(coll)
|
|
}
|
|
if leftIsBuildSide {
|
|
e.buildTypes, e.probeTypes = leftTypes, rightTypes
|
|
} else {
|
|
e.buildTypes, e.probeTypes = rightTypes, leftTypes
|
|
}
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildHashAgg(v *plannercore.PhysicalHashAgg) exec.Executor {
|
|
src := b.build(v.Children()[0])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
sessionVars := b.ctx.GetSessionVars()
|
|
e := &aggregate.HashAggExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), src),
|
|
Sc: sessionVars.StmtCtx,
|
|
PartialAggFuncs: make([]aggfuncs.AggFunc, 0, len(v.AggFuncs)),
|
|
GroupByItems: v.GroupByItems,
|
|
}
|
|
// We take `create table t(a int, b int);` as example.
|
|
//
|
|
// 1. If all the aggregation functions are FIRST_ROW, we do not need to set the defaultVal for them:
|
|
// e.g.
|
|
// mysql> select distinct a, b from t;
|
|
// 0 rows in set (0.00 sec)
|
|
//
|
|
// 2. If there exists group by items, we do not need to set the defaultVal for them either:
|
|
// e.g.
|
|
// mysql> select avg(a) from t group by b;
|
|
// Empty set (0.00 sec)
|
|
//
|
|
// mysql> select avg(a) from t group by a;
|
|
// +--------+
|
|
// | avg(a) |
|
|
// +--------+
|
|
// | NULL |
|
|
// +--------+
|
|
// 1 row in set (0.00 sec)
|
|
if len(v.GroupByItems) != 0 || aggregation.IsAllFirstRow(v.AggFuncs) {
|
|
e.DefaultVal = nil
|
|
} else {
|
|
if v.IsFinalAgg() {
|
|
e.DefaultVal = e.Ctx().GetSessionVars().GetNewChunkWithCapacity(exec.RetTypes(e), 1, 1, e.AllocPool)
|
|
}
|
|
}
|
|
for _, aggDesc := range v.AggFuncs {
|
|
if aggDesc.HasDistinct || len(aggDesc.OrderByItems) > 0 {
|
|
e.IsUnparallelExec = true
|
|
}
|
|
}
|
|
// When we set both tidb_hashagg_final_concurrency and tidb_hashagg_partial_concurrency to 1,
|
|
// we do not need to parallelly execute hash agg,
|
|
// and this action can be a workaround when meeting some unexpected situation using parallelExec.
|
|
if finalCon, partialCon := sessionVars.HashAggFinalConcurrency(), sessionVars.HashAggPartialConcurrency(); finalCon <= 0 || partialCon <= 0 || finalCon == 1 && partialCon == 1 {
|
|
e.IsUnparallelExec = true
|
|
}
|
|
partialOrdinal := 0
|
|
for i, aggDesc := range v.AggFuncs {
|
|
if e.IsUnparallelExec {
|
|
e.PartialAggFuncs = append(e.PartialAggFuncs, aggfuncs.Build(b.ctx, aggDesc, i))
|
|
} else {
|
|
ordinal := []int{partialOrdinal}
|
|
partialOrdinal++
|
|
if aggDesc.Name == ast.AggFuncAvg {
|
|
ordinal = append(ordinal, partialOrdinal+1)
|
|
partialOrdinal++
|
|
}
|
|
partialAggDesc, finalDesc := aggDesc.Split(ordinal)
|
|
partialAggFunc := aggfuncs.Build(b.ctx, partialAggDesc, i)
|
|
finalAggFunc := aggfuncs.Build(b.ctx, finalDesc, i)
|
|
e.PartialAggFuncs = append(e.PartialAggFuncs, partialAggFunc)
|
|
e.FinalAggFuncs = append(e.FinalAggFuncs, finalAggFunc)
|
|
if partialAggDesc.Name == ast.AggFuncGroupConcat {
|
|
// For group_concat, finalAggFunc and partialAggFunc need shared `truncate` flag to do duplicate.
|
|
finalAggFunc.(interface{ SetTruncated(t *int32) }).SetTruncated(
|
|
partialAggFunc.(interface{ GetTruncated() *int32 }).GetTruncated(),
|
|
)
|
|
}
|
|
}
|
|
if e.DefaultVal != nil {
|
|
value := aggDesc.GetDefaultValue()
|
|
e.DefaultVal.AppendDatum(i, &value)
|
|
}
|
|
}
|
|
|
|
executor_metrics.ExecutorCounterHashAggExec.Inc()
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildStreamAgg(v *plannercore.PhysicalStreamAgg) exec.Executor {
|
|
src := b.build(v.Children()[0])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
e := &aggregate.StreamAggExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), src),
|
|
GroupChecker: vecgroupchecker.NewVecGroupChecker(b.ctx, v.GroupByItems),
|
|
AggFuncs: make([]aggfuncs.AggFunc, 0, len(v.AggFuncs)),
|
|
}
|
|
|
|
if len(v.GroupByItems) != 0 || aggregation.IsAllFirstRow(v.AggFuncs) {
|
|
e.DefaultVal = nil
|
|
} else {
|
|
// Only do this for final agg, see issue #35295, #30923
|
|
if v.IsFinalAgg() {
|
|
e.DefaultVal = e.Ctx().GetSessionVars().GetNewChunkWithCapacity(exec.RetTypes(e), 1, 1, e.AllocPool)
|
|
}
|
|
}
|
|
for i, aggDesc := range v.AggFuncs {
|
|
aggFunc := aggfuncs.Build(b.ctx, aggDesc, i)
|
|
e.AggFuncs = append(e.AggFuncs, aggFunc)
|
|
if e.DefaultVal != nil {
|
|
value := aggDesc.GetDefaultValue()
|
|
e.DefaultVal.AppendDatum(i, &value)
|
|
}
|
|
}
|
|
|
|
executor_metrics.ExecutorStreamAggExec.Inc()
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildSelection(v *plannercore.PhysicalSelection) exec.Executor {
|
|
childExec := b.build(v.Children()[0])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
e := &SelectionExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), childExec),
|
|
filters: v.Conditions,
|
|
}
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildProjection(v *plannercore.PhysicalProjection) exec.Executor {
|
|
childExec := b.build(v.Children()[0])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
e := &ProjectionExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), childExec),
|
|
numWorkers: int64(b.ctx.GetSessionVars().ProjectionConcurrency()),
|
|
evaluatorSuit: expression.NewEvaluatorSuite(v.Exprs, v.AvoidColumnEvaluator),
|
|
calculateNoDelay: v.CalculateNoDelay,
|
|
}
|
|
|
|
// If the calculation row count for this Projection operator is smaller
|
|
// than a Chunk size, we turn back to the un-parallel Projection
|
|
// implementation to reduce the goroutine overhead.
|
|
if int64(v.StatsCount()) < int64(b.ctx.GetSessionVars().MaxChunkSize) {
|
|
e.numWorkers = 0
|
|
}
|
|
|
|
// Use un-parallel projection for query that write on memdb to avoid data race.
|
|
// See also https://github.com/pingcap/tidb/issues/26832
|
|
if b.inUpdateStmt || b.inDeleteStmt || b.inInsertStmt || b.hasLock {
|
|
e.numWorkers = 0
|
|
}
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildTableDual(v *plannercore.PhysicalTableDual) exec.Executor {
|
|
if v.RowCount != 0 && v.RowCount != 1 {
|
|
b.err = errors.Errorf("buildTableDual failed, invalid row count for dual table: %v", v.RowCount)
|
|
return nil
|
|
}
|
|
base := exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID())
|
|
base.SetInitCap(v.RowCount)
|
|
e := &TableDualExec{
|
|
BaseExecutor: base,
|
|
numDualRows: v.RowCount,
|
|
}
|
|
return e
|
|
}
|
|
|
|
// `getSnapshotTS` returns for-update-ts if in insert/update/delete/lock statement otherwise the isolation read ts
|
|
// Please notice that in RC isolation, the above two ts are the same
|
|
func (b *executorBuilder) getSnapshotTS() (ts uint64, err error) {
|
|
if b.forDataReaderBuilder {
|
|
return b.dataReaderTS, nil
|
|
}
|
|
|
|
txnManager := sessiontxn.GetTxnManager(b.ctx)
|
|
if b.inInsertStmt || b.inUpdateStmt || b.inDeleteStmt || b.inSelectLockStmt {
|
|
return txnManager.GetStmtForUpdateTS()
|
|
}
|
|
return txnManager.GetStmtReadTS()
|
|
}
|
|
|
|
// getSnapshot get the appropriate snapshot from txnManager and set
|
|
// the relevant snapshot options before return.
|
|
func (b *executorBuilder) getSnapshot() (kv.Snapshot, error) {
|
|
var snapshot kv.Snapshot
|
|
var err error
|
|
|
|
txnManager := sessiontxn.GetTxnManager(b.ctx)
|
|
if b.inInsertStmt || b.inUpdateStmt || b.inDeleteStmt || b.inSelectLockStmt {
|
|
snapshot, err = txnManager.GetSnapshotWithStmtForUpdateTS()
|
|
} else {
|
|
snapshot, err = txnManager.GetSnapshotWithStmtReadTS()
|
|
}
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
sessVars := b.ctx.GetSessionVars()
|
|
replicaReadType := sessVars.GetReplicaRead()
|
|
snapshot.SetOption(kv.ReadReplicaScope, b.readReplicaScope)
|
|
snapshot.SetOption(kv.TaskID, sessVars.StmtCtx.TaskID)
|
|
snapshot.SetOption(kv.TidbKvReadTimeout, sessVars.GetTidbKvReadTimeout())
|
|
snapshot.SetOption(kv.ResourceGroupName, sessVars.ResourceGroupName)
|
|
snapshot.SetOption(kv.ExplicitRequestSourceType, sessVars.ExplicitRequestSourceType)
|
|
|
|
if replicaReadType.IsClosestRead() && b.readReplicaScope != kv.GlobalTxnScope {
|
|
snapshot.SetOption(kv.MatchStoreLabels, []*metapb.StoreLabel{
|
|
{
|
|
Key: placement.DCLabelKey,
|
|
Value: b.readReplicaScope,
|
|
},
|
|
})
|
|
}
|
|
|
|
return snapshot, nil
|
|
}
|
|
|
|
func (b *executorBuilder) buildMemTable(v *plannercore.PhysicalMemTable) exec.Executor {
|
|
switch v.DBName.L {
|
|
case util.MetricSchemaName.L:
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &MetricRetriever{
|
|
table: v.Table,
|
|
extractor: v.Extractor.(*plannercore.MetricTableExtractor),
|
|
},
|
|
}
|
|
case util.InformationSchemaName.L:
|
|
switch v.Table.Name.L {
|
|
case strings.ToLower(infoschema.TableClusterConfig):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &clusterConfigRetriever{
|
|
extractor: v.Extractor.(*plannercore.ClusterTableExtractor),
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableClusterLoad):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &clusterServerInfoRetriever{
|
|
extractor: v.Extractor.(*plannercore.ClusterTableExtractor),
|
|
serverInfoType: diagnosticspb.ServerInfoType_LoadInfo,
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableClusterHardware):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &clusterServerInfoRetriever{
|
|
extractor: v.Extractor.(*plannercore.ClusterTableExtractor),
|
|
serverInfoType: diagnosticspb.ServerInfoType_HardwareInfo,
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableClusterSystemInfo):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &clusterServerInfoRetriever{
|
|
extractor: v.Extractor.(*plannercore.ClusterTableExtractor),
|
|
serverInfoType: diagnosticspb.ServerInfoType_SystemInfo,
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableClusterLog):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &clusterLogRetriever{
|
|
extractor: v.Extractor.(*plannercore.ClusterLogTableExtractor),
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableTiDBHotRegionsHistory):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &hotRegionsHistoryRetriver{
|
|
extractor: v.Extractor.(*plannercore.HotRegionsHistoryTableExtractor),
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableInspectionResult):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &inspectionResultRetriever{
|
|
extractor: v.Extractor.(*plannercore.InspectionResultTableExtractor),
|
|
timeRange: v.QueryTimeRange,
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableInspectionSummary):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &inspectionSummaryRetriever{
|
|
table: v.Table,
|
|
extractor: v.Extractor.(*plannercore.InspectionSummaryTableExtractor),
|
|
timeRange: v.QueryTimeRange,
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableInspectionRules):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &inspectionRuleRetriever{
|
|
extractor: v.Extractor.(*plannercore.InspectionRuleTableExtractor),
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableMetricSummary):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &MetricsSummaryRetriever{
|
|
table: v.Table,
|
|
extractor: v.Extractor.(*plannercore.MetricSummaryTableExtractor),
|
|
timeRange: v.QueryTimeRange,
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableMetricSummaryByLabel):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &MetricsSummaryByLabelRetriever{
|
|
table: v.Table,
|
|
extractor: v.Extractor.(*plannercore.MetricSummaryTableExtractor),
|
|
timeRange: v.QueryTimeRange,
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableTiKVRegionPeers):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &tikvRegionPeersRetriever{
|
|
extractor: v.Extractor.(*plannercore.TikvRegionPeersExtractor),
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableSchemata),
|
|
strings.ToLower(infoschema.TableStatistics),
|
|
strings.ToLower(infoschema.TableTiDBIndexes),
|
|
strings.ToLower(infoschema.TableViews),
|
|
strings.ToLower(infoschema.TableTables),
|
|
strings.ToLower(infoschema.TableReferConst),
|
|
strings.ToLower(infoschema.TableSequences),
|
|
strings.ToLower(infoschema.TablePartitions),
|
|
strings.ToLower(infoschema.TableEngines),
|
|
strings.ToLower(infoschema.TableCollations),
|
|
strings.ToLower(infoschema.TableAnalyzeStatus),
|
|
strings.ToLower(infoschema.TableClusterInfo),
|
|
strings.ToLower(infoschema.TableProfiling),
|
|
strings.ToLower(infoschema.TableCharacterSets),
|
|
strings.ToLower(infoschema.TableKeyColumn),
|
|
strings.ToLower(infoschema.TableUserPrivileges),
|
|
strings.ToLower(infoschema.TableMetricTables),
|
|
strings.ToLower(infoschema.TableCollationCharacterSetApplicability),
|
|
strings.ToLower(infoschema.TableProcesslist),
|
|
strings.ToLower(infoschema.ClusterTableProcesslist),
|
|
strings.ToLower(infoschema.TableTiKVRegionStatus),
|
|
strings.ToLower(infoschema.TableTiDBHotRegions),
|
|
strings.ToLower(infoschema.TableSessionVar),
|
|
strings.ToLower(infoschema.TableConstraints),
|
|
strings.ToLower(infoschema.TableTiFlashReplica),
|
|
strings.ToLower(infoschema.TableTiDBServersInfo),
|
|
strings.ToLower(infoschema.TableTiKVStoreStatus),
|
|
strings.ToLower(infoschema.TableClientErrorsSummaryGlobal),
|
|
strings.ToLower(infoschema.TableClientErrorsSummaryByUser),
|
|
strings.ToLower(infoschema.TableClientErrorsSummaryByHost),
|
|
strings.ToLower(infoschema.TableAttributes),
|
|
strings.ToLower(infoschema.TablePlacementPolicies),
|
|
strings.ToLower(infoschema.TableTrxSummary),
|
|
strings.ToLower(infoschema.TableVariablesInfo),
|
|
strings.ToLower(infoschema.TableUserAttributes),
|
|
strings.ToLower(infoschema.ClusterTableTrxSummary),
|
|
strings.ToLower(infoschema.TableMemoryUsage),
|
|
strings.ToLower(infoschema.TableMemoryUsageOpsHistory),
|
|
strings.ToLower(infoschema.ClusterTableMemoryUsage),
|
|
strings.ToLower(infoschema.ClusterTableMemoryUsageOpsHistory),
|
|
strings.ToLower(infoschema.TableResourceGroups),
|
|
strings.ToLower(infoschema.TableRunawayWatches):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &memtableRetriever{
|
|
table: v.Table,
|
|
columns: v.Columns,
|
|
extractor: v.Extractor,
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableTiDBTrx),
|
|
strings.ToLower(infoschema.ClusterTableTiDBTrx):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &tidbTrxTableRetriever{
|
|
table: v.Table,
|
|
columns: v.Columns,
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableDataLockWaits):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &dataLockWaitsTableRetriever{
|
|
table: v.Table,
|
|
columns: v.Columns,
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableDeadlocks),
|
|
strings.ToLower(infoschema.ClusterTableDeadlocks):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &deadlocksTableRetriever{
|
|
table: v.Table,
|
|
columns: v.Columns,
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableStatementsSummary),
|
|
strings.ToLower(infoschema.TableStatementsSummaryHistory),
|
|
strings.ToLower(infoschema.TableStatementsSummaryEvicted),
|
|
strings.ToLower(infoschema.ClusterTableStatementsSummary),
|
|
strings.ToLower(infoschema.ClusterTableStatementsSummaryHistory),
|
|
strings.ToLower(infoschema.ClusterTableStatementsSummaryEvicted):
|
|
var extractor *plannercore.StatementsSummaryExtractor
|
|
if v.Extractor != nil {
|
|
extractor = v.Extractor.(*plannercore.StatementsSummaryExtractor)
|
|
}
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: buildStmtSummaryRetriever(v.Table, v.Columns, extractor),
|
|
}
|
|
case strings.ToLower(infoschema.TableColumns):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &hugeMemTableRetriever{
|
|
table: v.Table,
|
|
columns: v.Columns,
|
|
extractor: v.Extractor.(*plannercore.ColumnsTableExtractor),
|
|
viewSchemaMap: make(map[int64]*expression.Schema),
|
|
viewOutputNamesMap: make(map[int64]types.NameSlice),
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableSlowQuery), strings.ToLower(infoschema.ClusterTableSlowLog):
|
|
memTracker := memory.NewTracker(v.ID(), -1)
|
|
memTracker.AttachTo(b.ctx.GetSessionVars().StmtCtx.MemTracker)
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &slowQueryRetriever{
|
|
table: v.Table,
|
|
outputCols: v.Columns,
|
|
extractor: v.Extractor.(*plannercore.SlowQueryExtractor),
|
|
memTracker: memTracker,
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableStorageStats):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &tableStorageStatsRetriever{
|
|
table: v.Table,
|
|
outputCols: v.Columns,
|
|
extractor: v.Extractor.(*plannercore.TableStorageStatsExtractor),
|
|
},
|
|
}
|
|
case strings.ToLower(infoschema.TableDDLJobs):
|
|
loc := b.ctx.GetSessionVars().Location()
|
|
ddlJobRetriever := DDLJobRetriever{TZLoc: loc}
|
|
return &DDLJobsReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
is: b.is,
|
|
DDLJobRetriever: ddlJobRetriever,
|
|
}
|
|
case strings.ToLower(infoschema.TableTiFlashTables),
|
|
strings.ToLower(infoschema.TableTiFlashSegments):
|
|
return &MemTableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.Table,
|
|
retriever: &TiFlashSystemTableRetriever{
|
|
table: v.Table,
|
|
outputCols: v.Columns,
|
|
extractor: v.Extractor.(*plannercore.TiFlashSystemTableExtractor),
|
|
},
|
|
}
|
|
}
|
|
}
|
|
tb, _ := b.is.TableByID(v.Table.ID)
|
|
return &TableScanExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
t: tb,
|
|
columns: v.Columns,
|
|
}
|
|
}
|
|
|
|
func (b *executorBuilder) buildSort(v *plannercore.PhysicalSort) exec.Executor {
|
|
childExec := b.build(v.Children()[0])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
sortExec := SortExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), childExec),
|
|
ByItems: v.ByItems,
|
|
schema: v.Schema(),
|
|
}
|
|
executor_metrics.ExecutorCounterSortExec.Inc()
|
|
return &sortExec
|
|
}
|
|
|
|
func (b *executorBuilder) buildTopN(v *plannercore.PhysicalTopN) exec.Executor {
|
|
childExec := b.build(v.Children()[0])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
sortExec := SortExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), childExec),
|
|
ByItems: v.ByItems,
|
|
schema: v.Schema(),
|
|
}
|
|
executor_metrics.ExecutorCounterTopNExec.Inc()
|
|
return &TopNExec{
|
|
SortExec: sortExec,
|
|
limit: &plannercore.PhysicalLimit{Count: v.Count, Offset: v.Offset},
|
|
}
|
|
}
|
|
|
|
func (b *executorBuilder) buildApply(v *plannercore.PhysicalApply) exec.Executor {
|
|
var (
|
|
innerPlan plannercore.PhysicalPlan
|
|
outerPlan plannercore.PhysicalPlan
|
|
)
|
|
if v.InnerChildIdx == 0 {
|
|
innerPlan = v.Children()[0]
|
|
outerPlan = v.Children()[1]
|
|
} else {
|
|
innerPlan = v.Children()[1]
|
|
outerPlan = v.Children()[0]
|
|
}
|
|
v.OuterSchema = plannercore.ExtractCorColumnsBySchema4PhysicalPlan(innerPlan, outerPlan.Schema())
|
|
leftChild := b.build(v.Children()[0])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
rightChild := b.build(v.Children()[1])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
// test is in the explain/naaj.test#part5.
|
|
// although we prepared the NAEqualConditions, but for Apply mode, we still need move it to other conditions like eq condition did here.
|
|
otherConditions := append(expression.ScalarFuncs2Exprs(v.EqualConditions), expression.ScalarFuncs2Exprs(v.NAEqualConditions)...)
|
|
otherConditions = append(otherConditions, v.OtherConditions...)
|
|
defaultValues := v.DefaultValues
|
|
if defaultValues == nil {
|
|
defaultValues = make([]types.Datum, v.Children()[v.InnerChildIdx].Schema().Len())
|
|
}
|
|
outerExec, innerExec := leftChild, rightChild
|
|
outerFilter, innerFilter := v.LeftConditions, v.RightConditions
|
|
if v.InnerChildIdx == 0 {
|
|
outerExec, innerExec = rightChild, leftChild
|
|
outerFilter, innerFilter = v.RightConditions, v.LeftConditions
|
|
}
|
|
tupleJoiner := newJoiner(b.ctx, v.JoinType, v.InnerChildIdx == 0,
|
|
defaultValues, otherConditions, exec.RetTypes(leftChild), exec.RetTypes(rightChild), nil, false)
|
|
serialExec := &NestedLoopApplyExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), outerExec, innerExec),
|
|
innerExec: innerExec,
|
|
outerExec: outerExec,
|
|
outerFilter: outerFilter,
|
|
innerFilter: innerFilter,
|
|
outer: v.JoinType != plannercore.InnerJoin,
|
|
joiner: tupleJoiner,
|
|
outerSchema: v.OuterSchema,
|
|
ctx: b.ctx,
|
|
canUseCache: v.CanUseCache,
|
|
}
|
|
executor_metrics.ExecutorCounterNestedLoopApplyExec.Inc()
|
|
|
|
// try parallel mode
|
|
if v.Concurrency > 1 {
|
|
innerExecs := make([]exec.Executor, 0, v.Concurrency)
|
|
innerFilters := make([]expression.CNFExprs, 0, v.Concurrency)
|
|
corCols := make([][]*expression.CorrelatedColumn, 0, v.Concurrency)
|
|
joiners := make([]joiner, 0, v.Concurrency)
|
|
for i := 0; i < v.Concurrency; i++ {
|
|
clonedInnerPlan, err := plannercore.SafeClone(innerPlan)
|
|
if err != nil {
|
|
b.err = nil
|
|
return serialExec
|
|
}
|
|
corCol := plannercore.ExtractCorColumnsBySchema4PhysicalPlan(clonedInnerPlan, outerPlan.Schema())
|
|
clonedInnerExec := b.build(clonedInnerPlan)
|
|
if b.err != nil {
|
|
b.err = nil
|
|
return serialExec
|
|
}
|
|
innerExecs = append(innerExecs, clonedInnerExec)
|
|
corCols = append(corCols, corCol)
|
|
innerFilters = append(innerFilters, innerFilter.Clone())
|
|
joiners = append(joiners, newJoiner(b.ctx, v.JoinType, v.InnerChildIdx == 0,
|
|
defaultValues, otherConditions, exec.RetTypes(leftChild), exec.RetTypes(rightChild), nil, false))
|
|
}
|
|
|
|
allExecs := append([]exec.Executor{outerExec}, innerExecs...)
|
|
|
|
return &ParallelNestedLoopApplyExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), allExecs...),
|
|
innerExecs: innerExecs,
|
|
outerExec: outerExec,
|
|
outerFilter: outerFilter,
|
|
innerFilter: innerFilters,
|
|
outer: v.JoinType != plannercore.InnerJoin,
|
|
joiners: joiners,
|
|
corCols: corCols,
|
|
concurrency: v.Concurrency,
|
|
useCache: v.CanUseCache,
|
|
}
|
|
}
|
|
return serialExec
|
|
}
|
|
|
|
func (b *executorBuilder) buildMaxOneRow(v *plannercore.PhysicalMaxOneRow) exec.Executor {
|
|
childExec := b.build(v.Children()[0])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
base := exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), childExec)
|
|
base.SetInitCap(2)
|
|
base.SetMaxChunkSize(2)
|
|
e := &MaxOneRowExec{BaseExecutor: base}
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildUnionAll(v *plannercore.PhysicalUnionAll) exec.Executor {
|
|
childExecs := make([]exec.Executor, len(v.Children()))
|
|
for i, child := range v.Children() {
|
|
childExecs[i] = b.build(child)
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
}
|
|
e := &UnionExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), childExecs...),
|
|
concurrency: b.ctx.GetSessionVars().UnionConcurrency(),
|
|
}
|
|
return e
|
|
}
|
|
|
|
func buildHandleColsForSplit(sc *stmtctx.StatementContext, tbInfo *model.TableInfo) plannercore.HandleCols {
|
|
if tbInfo.IsCommonHandle {
|
|
primaryIdx := tables.FindPrimaryIndex(tbInfo)
|
|
tableCols := make([]*expression.Column, len(tbInfo.Columns))
|
|
for i, col := range tbInfo.Columns {
|
|
tableCols[i] = &expression.Column{
|
|
ID: col.ID,
|
|
RetType: &col.FieldType,
|
|
}
|
|
}
|
|
for i, pkCol := range primaryIdx.Columns {
|
|
tableCols[pkCol.Offset].Index = i
|
|
}
|
|
return plannercore.NewCommonHandleCols(sc, tbInfo, primaryIdx, tableCols)
|
|
}
|
|
intCol := &expression.Column{
|
|
RetType: types.NewFieldType(mysql.TypeLonglong),
|
|
}
|
|
return plannercore.NewIntHandleCols(intCol)
|
|
}
|
|
|
|
func (b *executorBuilder) buildSplitRegion(v *plannercore.SplitRegion) exec.Executor {
|
|
base := exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID())
|
|
base.SetInitCap(1)
|
|
base.SetMaxChunkSize(1)
|
|
if v.IndexInfo != nil {
|
|
return &SplitIndexRegionExec{
|
|
BaseExecutor: base,
|
|
tableInfo: v.TableInfo,
|
|
partitionNames: v.PartitionNames,
|
|
indexInfo: v.IndexInfo,
|
|
lower: v.Lower,
|
|
upper: v.Upper,
|
|
num: v.Num,
|
|
valueLists: v.ValueLists,
|
|
}
|
|
}
|
|
handleCols := buildHandleColsForSplit(b.ctx.GetSessionVars().StmtCtx, v.TableInfo)
|
|
if len(v.ValueLists) > 0 {
|
|
return &SplitTableRegionExec{
|
|
BaseExecutor: base,
|
|
tableInfo: v.TableInfo,
|
|
partitionNames: v.PartitionNames,
|
|
handleCols: handleCols,
|
|
valueLists: v.ValueLists,
|
|
}
|
|
}
|
|
return &SplitTableRegionExec{
|
|
BaseExecutor: base,
|
|
tableInfo: v.TableInfo,
|
|
partitionNames: v.PartitionNames,
|
|
handleCols: handleCols,
|
|
lower: v.Lower,
|
|
upper: v.Upper,
|
|
num: v.Num,
|
|
}
|
|
}
|
|
|
|
func (b *executorBuilder) buildUpdate(v *plannercore.Update) exec.Executor {
|
|
b.inUpdateStmt = true
|
|
tblID2table := make(map[int64]table.Table, len(v.TblColPosInfos))
|
|
multiUpdateOnSameTable := make(map[int64]bool)
|
|
for _, info := range v.TblColPosInfos {
|
|
tbl, _ := b.is.TableByID(info.TblID)
|
|
if _, ok := tblID2table[info.TblID]; ok {
|
|
multiUpdateOnSameTable[info.TblID] = true
|
|
}
|
|
tblID2table[info.TblID] = tbl
|
|
if len(v.PartitionedTable) > 0 {
|
|
// The v.PartitionedTable collects the partitioned table.
|
|
// Replace the original table with the partitioned table to support partition selection.
|
|
// e.g. update t partition (p0, p1), the new values are not belong to the given set p0, p1
|
|
// Using the table in v.PartitionedTable returns a proper error, while using the original table can't.
|
|
for _, p := range v.PartitionedTable {
|
|
if info.TblID == p.Meta().ID {
|
|
tblID2table[info.TblID] = p
|
|
}
|
|
}
|
|
}
|
|
}
|
|
if b.err = b.updateForUpdateTS(); b.err != nil {
|
|
return nil
|
|
}
|
|
|
|
selExec := b.build(v.SelectPlan)
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
base := exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), selExec)
|
|
base.SetInitCap(chunk.ZeroCapacity)
|
|
var assignFlag []int
|
|
assignFlag, b.err = getAssignFlag(b.ctx, v, selExec.Schema().Len())
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
// should use the new tblID2table, since the update's schema may have been changed in Execstmt.
|
|
b.err = plannercore.CheckUpdateList(assignFlag, v, tblID2table)
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
updateExec := &UpdateExec{
|
|
BaseExecutor: base,
|
|
OrderedList: v.OrderedList,
|
|
allAssignmentsAreConstant: v.AllAssignmentsAreConstant,
|
|
virtualAssignmentsOffset: v.VirtualAssignmentsOffset,
|
|
multiUpdateOnSameTable: multiUpdateOnSameTable,
|
|
tblID2table: tblID2table,
|
|
tblColPosInfos: v.TblColPosInfos,
|
|
assignFlag: assignFlag,
|
|
}
|
|
updateExec.fkChecks, b.err = buildTblID2FKCheckExecs(b.ctx, tblID2table, v.FKChecks)
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
updateExec.fkCascades, b.err = b.buildTblID2FKCascadeExecs(tblID2table, v.FKCascades)
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
return updateExec
|
|
}
|
|
|
|
func getAssignFlag(ctx sessionctx.Context, v *plannercore.Update, schemaLen int) ([]int, error) {
|
|
assignFlag := make([]int, schemaLen)
|
|
for i := range assignFlag {
|
|
assignFlag[i] = -1
|
|
}
|
|
for _, assign := range v.OrderedList {
|
|
if !ctx.GetSessionVars().AllowWriteRowID && assign.Col.ID == model.ExtraHandleID {
|
|
return nil, errors.Errorf("insert, update and replace statements for _tidb_rowid are not supported")
|
|
}
|
|
tblIdx, found := v.TblColPosInfos.FindTblIdx(assign.Col.Index)
|
|
if found {
|
|
colIdx := assign.Col.Index
|
|
assignFlag[colIdx] = tblIdx
|
|
}
|
|
}
|
|
return assignFlag, nil
|
|
}
|
|
|
|
func (b *executorBuilder) buildDelete(v *plannercore.Delete) exec.Executor {
|
|
b.inDeleteStmt = true
|
|
tblID2table := make(map[int64]table.Table, len(v.TblColPosInfos))
|
|
for _, info := range v.TblColPosInfos {
|
|
tblID2table[info.TblID], _ = b.is.TableByID(info.TblID)
|
|
}
|
|
|
|
if b.err = b.updateForUpdateTS(); b.err != nil {
|
|
return nil
|
|
}
|
|
|
|
selExec := b.build(v.SelectPlan)
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
base := exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), selExec)
|
|
base.SetInitCap(chunk.ZeroCapacity)
|
|
deleteExec := &DeleteExec{
|
|
BaseExecutor: base,
|
|
tblID2Table: tblID2table,
|
|
IsMultiTable: v.IsMultiTable,
|
|
tblColPosInfos: v.TblColPosInfos,
|
|
}
|
|
deleteExec.fkChecks, b.err = buildTblID2FKCheckExecs(b.ctx, tblID2table, v.FKChecks)
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
deleteExec.fkCascades, b.err = b.buildTblID2FKCascadeExecs(tblID2table, v.FKCascades)
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
return deleteExec
|
|
}
|
|
|
|
func (b *executorBuilder) updateForUpdateTS() error {
|
|
// GetStmtForUpdateTS will auto update the for update ts if it is necessary
|
|
_, err := sessiontxn.GetTxnManager(b.ctx).GetStmtForUpdateTS()
|
|
return err
|
|
}
|
|
|
|
func (b *executorBuilder) buildAnalyzeIndexPushdown(task plannercore.AnalyzeIndexTask, opts map[ast.AnalyzeOptionType]uint64, autoAnalyze string) *analyzeTask {
|
|
job := &statistics.AnalyzeJob{DBName: task.DBName, TableName: task.TableName, PartitionName: task.PartitionName, JobInfo: autoAnalyze + "analyze index " + task.IndexInfo.Name.O}
|
|
_, offset := timeutil.Zone(b.ctx.GetSessionVars().Location())
|
|
sc := b.ctx.GetSessionVars().StmtCtx
|
|
startTS, err := b.getSnapshotTS()
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
failpoint.Inject("injectAnalyzeSnapshot", func(val failpoint.Value) {
|
|
startTS = uint64(val.(int))
|
|
})
|
|
|
|
base := baseAnalyzeExec{
|
|
ctx: b.ctx,
|
|
tableID: task.TableID,
|
|
concurrency: b.ctx.GetSessionVars().IndexSerialScanConcurrency(),
|
|
analyzePB: &tipb.AnalyzeReq{
|
|
Tp: tipb.AnalyzeType_TypeIndex,
|
|
Flags: sc.PushDownFlags(),
|
|
TimeZoneOffset: offset,
|
|
},
|
|
opts: opts,
|
|
job: job,
|
|
snapshot: startTS,
|
|
}
|
|
e := &AnalyzeIndexExec{
|
|
baseAnalyzeExec: base,
|
|
isCommonHandle: task.TblInfo.IsCommonHandle,
|
|
idxInfo: task.IndexInfo,
|
|
}
|
|
topNSize := new(int32)
|
|
*topNSize = int32(opts[ast.AnalyzeOptNumTopN])
|
|
statsVersion := new(int32)
|
|
*statsVersion = int32(task.StatsVersion)
|
|
e.analyzePB.IdxReq = &tipb.AnalyzeIndexReq{
|
|
BucketSize: int64(opts[ast.AnalyzeOptNumBuckets]),
|
|
NumColumns: int32(len(task.IndexInfo.Columns)),
|
|
TopNSize: topNSize,
|
|
Version: statsVersion,
|
|
SketchSize: maxSketchSize,
|
|
}
|
|
if e.isCommonHandle && e.idxInfo.Primary {
|
|
e.analyzePB.Tp = tipb.AnalyzeType_TypeCommonHandle
|
|
}
|
|
depth := int32(opts[ast.AnalyzeOptCMSketchDepth])
|
|
width := int32(opts[ast.AnalyzeOptCMSketchWidth])
|
|
e.analyzePB.IdxReq.CmsketchDepth = &depth
|
|
e.analyzePB.IdxReq.CmsketchWidth = &width
|
|
return &analyzeTask{taskType: idxTask, idxExec: e, job: job}
|
|
}
|
|
|
|
func (b *executorBuilder) buildAnalyzeIndexIncremental(task plannercore.AnalyzeIndexTask, opts map[ast.AnalyzeOptionType]uint64) *analyzeTask {
|
|
h := domain.GetDomain(b.ctx).StatsHandle()
|
|
statsTbl := h.GetPartitionStats(&model.TableInfo{}, task.TableID.GetStatisticsID())
|
|
analyzeTask := b.buildAnalyzeIndexPushdown(task, opts, "")
|
|
if statsTbl.Pseudo {
|
|
return analyzeTask
|
|
}
|
|
idx, ok := statsTbl.Indices[task.IndexInfo.ID]
|
|
if !ok || idx.Len() == 0 || idx.LastAnalyzePos.IsNull() {
|
|
return analyzeTask
|
|
}
|
|
// If idx got evicted previously, we directly use IndexPushDown task as incremental analyze task will cause inaccuracy
|
|
if idx.IsEvicted() {
|
|
return analyzeTask
|
|
}
|
|
failpoint.Inject("assertEvictIndex", func() {
|
|
if idx.IsEvicted() {
|
|
panic("evicted index shouldn't use analyze incremental task")
|
|
}
|
|
})
|
|
|
|
var oldHist *statistics.Histogram
|
|
if statistics.IsAnalyzed(idx.Flag) {
|
|
exec := analyzeTask.idxExec
|
|
if idx.CMSketch != nil {
|
|
width, depth := idx.CMSketch.GetWidthAndDepth()
|
|
exec.analyzePB.IdxReq.CmsketchWidth = &width
|
|
exec.analyzePB.IdxReq.CmsketchDepth = &depth
|
|
}
|
|
oldHist = idx.Histogram.Copy()
|
|
} else {
|
|
_, bktID := idx.LessRowCountWithBktIdx(nil, idx.LastAnalyzePos)
|
|
if bktID == 0 {
|
|
return analyzeTask
|
|
}
|
|
oldHist = idx.TruncateHistogram(bktID)
|
|
}
|
|
var oldTopN *statistics.TopN
|
|
if analyzeTask.idxExec.analyzePB.IdxReq.GetVersion() >= statistics.Version2 {
|
|
oldTopN = idx.TopN.Copy()
|
|
oldTopN.RemoveVal(oldHist.Bounds.GetRow(len(oldHist.Buckets)*2 - 1).GetBytes(0))
|
|
}
|
|
oldHist = oldHist.RemoveUpperBound()
|
|
job := &statistics.AnalyzeJob{DBName: task.DBName, TableName: task.TableName, PartitionName: task.PartitionName, JobInfo: "analyze incremental index " + task.IndexInfo.Name.O}
|
|
exec := analyzeTask.idxExec
|
|
exec.job = job
|
|
analyzeTask.taskType = idxIncrementalTask
|
|
analyzeTask.idxIncrementalExec = &analyzeIndexIncrementalExec{AnalyzeIndexExec: *exec, oldHist: oldHist, oldCMS: idx.CMSketch, oldTopN: oldTopN}
|
|
analyzeTask.job = job
|
|
return analyzeTask
|
|
}
|
|
|
|
func (b *executorBuilder) buildAnalyzeSamplingPushdown(task plannercore.AnalyzeColumnsTask, opts map[ast.AnalyzeOptionType]uint64, schemaForVirtualColEval *expression.Schema) *analyzeTask {
|
|
if task.V2Options != nil {
|
|
opts = task.V2Options.FilledOpts
|
|
}
|
|
availableIdx := make([]*model.IndexInfo, 0, len(task.Indexes))
|
|
colGroups := make([]*tipb.AnalyzeColumnGroup, 0, len(task.Indexes))
|
|
if len(task.Indexes) > 0 {
|
|
for _, idx := range task.Indexes {
|
|
availableIdx = append(availableIdx, idx)
|
|
colGroup := &tipb.AnalyzeColumnGroup{
|
|
ColumnOffsets: make([]int64, 0, len(idx.Columns)),
|
|
}
|
|
for _, col := range idx.Columns {
|
|
colGroup.ColumnOffsets = append(colGroup.ColumnOffsets, int64(col.Offset))
|
|
}
|
|
colGroups = append(colGroups, colGroup)
|
|
}
|
|
}
|
|
|
|
_, offset := timeutil.Zone(b.ctx.GetSessionVars().Location())
|
|
sc := b.ctx.GetSessionVars().StmtCtx
|
|
startTS, err := b.getSnapshotTS()
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
failpoint.Inject("injectAnalyzeSnapshot", func(val failpoint.Value) {
|
|
startTS = uint64(val.(int))
|
|
})
|
|
statsHandle := domain.GetDomain(b.ctx).StatsHandle()
|
|
count, modifyCount, err := statsHandle.StatsMetaCountAndModifyCount(task.TableID.GetStatisticsID())
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
failpoint.Inject("injectBaseCount", func(val failpoint.Value) {
|
|
count = int64(val.(int))
|
|
})
|
|
failpoint.Inject("injectBaseModifyCount", func(val failpoint.Value) {
|
|
modifyCount = int64(val.(int))
|
|
})
|
|
sampleRate := new(float64)
|
|
var sampleRateReason string
|
|
if opts[ast.AnalyzeOptNumSamples] == 0 {
|
|
*sampleRate = math.Float64frombits(opts[ast.AnalyzeOptSampleRate])
|
|
if *sampleRate < 0 {
|
|
*sampleRate, sampleRateReason = b.getAdjustedSampleRate(task)
|
|
if task.PartitionName != "" {
|
|
sc.AppendNote(errors.Errorf(
|
|
`Analyze use auto adjusted sample rate %f for table %s.%s's partition %s, reason to use this rate is "%s"`,
|
|
*sampleRate,
|
|
task.DBName,
|
|
task.TableName,
|
|
task.PartitionName,
|
|
sampleRateReason,
|
|
))
|
|
} else {
|
|
sc.AppendNote(errors.Errorf(
|
|
`Analyze use auto adjusted sample rate %f for table %s.%s, reason to use this rate is "%s"`,
|
|
*sampleRate,
|
|
task.DBName,
|
|
task.TableName,
|
|
sampleRateReason,
|
|
))
|
|
}
|
|
}
|
|
}
|
|
job := &statistics.AnalyzeJob{
|
|
DBName: task.DBName,
|
|
TableName: task.TableName,
|
|
PartitionName: task.PartitionName,
|
|
SampleRateReason: sampleRateReason,
|
|
}
|
|
|
|
base := baseAnalyzeExec{
|
|
ctx: b.ctx,
|
|
tableID: task.TableID,
|
|
concurrency: b.ctx.GetSessionVars().DistSQLScanConcurrency(),
|
|
analyzePB: &tipb.AnalyzeReq{
|
|
Tp: tipb.AnalyzeType_TypeFullSampling,
|
|
Flags: sc.PushDownFlags(),
|
|
TimeZoneOffset: offset,
|
|
},
|
|
opts: opts,
|
|
job: job,
|
|
snapshot: startTS,
|
|
}
|
|
e := &AnalyzeColumnsExec{
|
|
baseAnalyzeExec: base,
|
|
tableInfo: task.TblInfo,
|
|
colsInfo: task.ColsInfo,
|
|
handleCols: task.HandleCols,
|
|
indexes: availableIdx,
|
|
AnalyzeInfo: task.AnalyzeInfo,
|
|
schemaForVirtualColEval: schemaForVirtualColEval,
|
|
baseCount: count,
|
|
baseModifyCnt: modifyCount,
|
|
}
|
|
e.analyzePB.ColReq = &tipb.AnalyzeColumnsReq{
|
|
BucketSize: int64(opts[ast.AnalyzeOptNumBuckets]),
|
|
SampleSize: int64(opts[ast.AnalyzeOptNumSamples]),
|
|
SampleRate: sampleRate,
|
|
SketchSize: maxSketchSize,
|
|
ColumnsInfo: util.ColumnsToProto(task.ColsInfo, task.TblInfo.PKIsHandle, false),
|
|
ColumnGroups: colGroups,
|
|
}
|
|
if task.TblInfo != nil {
|
|
e.analyzePB.ColReq.PrimaryColumnIds = tables.TryGetCommonPkColumnIds(task.TblInfo)
|
|
if task.TblInfo.IsCommonHandle {
|
|
e.analyzePB.ColReq.PrimaryPrefixColumnIds = tables.PrimaryPrefixColumnIDs(task.TblInfo)
|
|
}
|
|
}
|
|
b.err = tables.SetPBColumnsDefaultValue(b.ctx, e.analyzePB.ColReq.ColumnsInfo, task.ColsInfo)
|
|
return &analyzeTask{taskType: colTask, colExec: e, job: job}
|
|
}
|
|
|
|
// getAdjustedSampleRate calculate the sample rate by the table size. If we cannot get the table size. We use the 0.001 as the default sample rate.
|
|
// From the paper "Random sampling for histogram construction: how much is enough?"'s Corollary 1 to Theorem 5,
|
|
// for a table size n, histogram size k, maximum relative error in bin size f, and error probability gamma,
|
|
// the minimum random sample size is
|
|
//
|
|
// r = 4 * k * ln(2*n/gamma) / f^2
|
|
//
|
|
// If we take f = 0.5, gamma = 0.01, n =1e6, we would got r = 305.82* k.
|
|
// Since the there's log function over the table size n, the r grows slowly when the n increases.
|
|
// If we take n = 1e12, a 300*k sample still gives <= 0.66 bin size error with probability 0.99.
|
|
// So if we don't consider the top-n values, we can keep the sample size at 300*256.
|
|
// But we may take some top-n before building the histogram, so we increase the sample a little.
|
|
func (b *executorBuilder) getAdjustedSampleRate(task plannercore.AnalyzeColumnsTask) (sampleRate float64, reason string) {
|
|
statsHandle := domain.GetDomain(b.ctx).StatsHandle()
|
|
defaultRate := 0.001
|
|
if statsHandle == nil {
|
|
return defaultRate, fmt.Sprintf("statsHandler is nil, use the default-rate=%v", defaultRate)
|
|
}
|
|
var statsTbl *statistics.Table
|
|
tid := task.TableID.GetStatisticsID()
|
|
if tid == task.TblInfo.ID {
|
|
statsTbl = statsHandle.GetTableStats(task.TblInfo)
|
|
} else {
|
|
statsTbl = statsHandle.GetPartitionStats(task.TblInfo, tid)
|
|
}
|
|
approxiCount, hasPD := b.getApproximateTableCountFromStorage(tid, task)
|
|
// If there's no stats meta and no pd, return the default rate.
|
|
if statsTbl == nil && !hasPD {
|
|
return defaultRate, fmt.Sprintf("TiDB cannot get the row count of the table, use the default-rate=%v", defaultRate)
|
|
}
|
|
// If the count in stats_meta is still 0 and there's no information from pd side, we scan all rows.
|
|
if statsTbl.RealtimeCount == 0 && !hasPD {
|
|
return 1, "TiDB assumes that the table is empty and cannot get row count from PD, use sample-rate=1"
|
|
}
|
|
// we have issue https://github.com/pingcap/tidb/issues/29216.
|
|
// To do a workaround for this issue, we check the approxiCount from the pd side to do a comparison.
|
|
// If the count from the stats_meta is extremely smaller than the approximate count from the pd,
|
|
// we think that we meet this issue and use the approximate count to calculate the sample rate.
|
|
if float64(statsTbl.RealtimeCount*5) < approxiCount {
|
|
// Confirmed by TiKV side, the experience error rate of the approximate count is about 20%.
|
|
// So we increase the number to 150000 to reduce this error rate.
|
|
sampleRate = math.Min(1, 150000/approxiCount)
|
|
return sampleRate, fmt.Sprintf("Row count in stats_meta is much smaller compared with the row count got by PD, use min(1, 15000/%v) as the sample-rate=%v", approxiCount, sampleRate)
|
|
}
|
|
// If we don't go into the above if branch and we still detect the count is zero. Return 1 to prevent the dividing zero.
|
|
if statsTbl.RealtimeCount == 0 {
|
|
return 1, "TiDB assumes that the table is empty, use sample-rate=1"
|
|
}
|
|
// We are expected to scan about 100000 rows or so.
|
|
// Since there's tiny error rate around the count from the stats meta, we use 110000 to get a little big result
|
|
sampleRate = math.Min(1, config.DefRowsForSampleRate/float64(statsTbl.RealtimeCount))
|
|
return sampleRate, fmt.Sprintf("use min(1, %v/%v) as the sample-rate=%v", config.DefRowsForSampleRate, statsTbl.RealtimeCount, sampleRate)
|
|
}
|
|
|
|
func (b *executorBuilder) getApproximateTableCountFromStorage(tid int64, task plannercore.AnalyzeColumnsTask) (float64, bool) {
|
|
return pdhelper.GlobalPDHelper.GetApproximateTableCountFromStorage(b.ctx, tid, task.DBName, task.TableName, task.PartitionName)
|
|
}
|
|
|
|
func (b *executorBuilder) buildAnalyzeColumnsPushdown(task plannercore.AnalyzeColumnsTask, opts map[ast.AnalyzeOptionType]uint64, autoAnalyze string, schemaForVirtualColEval *expression.Schema) *analyzeTask {
|
|
if task.StatsVersion == statistics.Version2 {
|
|
return b.buildAnalyzeSamplingPushdown(task, opts, schemaForVirtualColEval)
|
|
}
|
|
job := &statistics.AnalyzeJob{DBName: task.DBName, TableName: task.TableName, PartitionName: task.PartitionName, JobInfo: autoAnalyze + "analyze columns"}
|
|
cols := task.ColsInfo
|
|
if hasPkHist(task.HandleCols) {
|
|
colInfo := task.TblInfo.Columns[task.HandleCols.GetCol(0).Index]
|
|
cols = append([]*model.ColumnInfo{colInfo}, cols...)
|
|
} else if task.HandleCols != nil && !task.HandleCols.IsInt() {
|
|
cols = make([]*model.ColumnInfo, 0, len(task.ColsInfo)+task.HandleCols.NumCols())
|
|
for i := 0; i < task.HandleCols.NumCols(); i++ {
|
|
cols = append(cols, task.TblInfo.Columns[task.HandleCols.GetCol(i).Index])
|
|
}
|
|
cols = append(cols, task.ColsInfo...)
|
|
task.ColsInfo = cols
|
|
}
|
|
|
|
_, offset := timeutil.Zone(b.ctx.GetSessionVars().Location())
|
|
sc := b.ctx.GetSessionVars().StmtCtx
|
|
startTS, err := b.getSnapshotTS()
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
failpoint.Inject("injectAnalyzeSnapshot", func(val failpoint.Value) {
|
|
startTS = uint64(val.(int))
|
|
})
|
|
|
|
base := baseAnalyzeExec{
|
|
ctx: b.ctx,
|
|
tableID: task.TableID,
|
|
concurrency: b.ctx.GetSessionVars().DistSQLScanConcurrency(),
|
|
analyzePB: &tipb.AnalyzeReq{
|
|
Tp: tipb.AnalyzeType_TypeColumn,
|
|
Flags: sc.PushDownFlags(),
|
|
TimeZoneOffset: offset,
|
|
},
|
|
opts: opts,
|
|
job: job,
|
|
snapshot: startTS,
|
|
}
|
|
e := &AnalyzeColumnsExec{
|
|
baseAnalyzeExec: base,
|
|
colsInfo: task.ColsInfo,
|
|
handleCols: task.HandleCols,
|
|
AnalyzeInfo: task.AnalyzeInfo,
|
|
}
|
|
depth := int32(opts[ast.AnalyzeOptCMSketchDepth])
|
|
width := int32(opts[ast.AnalyzeOptCMSketchWidth])
|
|
e.analyzePB.ColReq = &tipb.AnalyzeColumnsReq{
|
|
BucketSize: int64(opts[ast.AnalyzeOptNumBuckets]),
|
|
SampleSize: MaxRegionSampleSize,
|
|
SketchSize: maxSketchSize,
|
|
ColumnsInfo: util.ColumnsToProto(cols, task.HandleCols != nil && task.HandleCols.IsInt(), false),
|
|
CmsketchDepth: &depth,
|
|
CmsketchWidth: &width,
|
|
}
|
|
if task.TblInfo != nil {
|
|
e.analyzePB.ColReq.PrimaryColumnIds = tables.TryGetCommonPkColumnIds(task.TblInfo)
|
|
if task.TblInfo.IsCommonHandle {
|
|
e.analyzePB.ColReq.PrimaryPrefixColumnIds = tables.PrimaryPrefixColumnIDs(task.TblInfo)
|
|
}
|
|
}
|
|
if task.CommonHandleInfo != nil {
|
|
topNSize := new(int32)
|
|
*topNSize = int32(opts[ast.AnalyzeOptNumTopN])
|
|
statsVersion := new(int32)
|
|
*statsVersion = int32(task.StatsVersion)
|
|
e.analyzePB.IdxReq = &tipb.AnalyzeIndexReq{
|
|
BucketSize: int64(opts[ast.AnalyzeOptNumBuckets]),
|
|
NumColumns: int32(len(task.CommonHandleInfo.Columns)),
|
|
TopNSize: topNSize,
|
|
Version: statsVersion,
|
|
}
|
|
depth := int32(opts[ast.AnalyzeOptCMSketchDepth])
|
|
width := int32(opts[ast.AnalyzeOptCMSketchWidth])
|
|
e.analyzePB.IdxReq.CmsketchDepth = &depth
|
|
e.analyzePB.IdxReq.CmsketchWidth = &width
|
|
e.analyzePB.IdxReq.SketchSize = maxSketchSize
|
|
e.analyzePB.ColReq.PrimaryColumnIds = tables.TryGetCommonPkColumnIds(task.TblInfo)
|
|
e.analyzePB.Tp = tipb.AnalyzeType_TypeMixed
|
|
e.commonHandle = task.CommonHandleInfo
|
|
}
|
|
b.err = tables.SetPBColumnsDefaultValue(b.ctx, e.analyzePB.ColReq.ColumnsInfo, cols)
|
|
return &analyzeTask{taskType: colTask, colExec: e, job: job}
|
|
}
|
|
|
|
func (b *executorBuilder) buildAnalyzePKIncremental(task plannercore.AnalyzeColumnsTask, opts map[ast.AnalyzeOptionType]uint64) *analyzeTask {
|
|
h := domain.GetDomain(b.ctx).StatsHandle()
|
|
statsTbl := h.GetPartitionStats(&model.TableInfo{}, task.TableID.GetStatisticsID())
|
|
analyzeTask := b.buildAnalyzeColumnsPushdown(task, opts, "", nil)
|
|
if statsTbl.Pseudo {
|
|
return analyzeTask
|
|
}
|
|
if task.HandleCols == nil || !task.HandleCols.IsInt() {
|
|
return analyzeTask
|
|
}
|
|
col, ok := statsTbl.Columns[task.HandleCols.GetCol(0).ID]
|
|
if !ok || col.Len() == 0 || col.LastAnalyzePos.IsNull() {
|
|
return analyzeTask
|
|
}
|
|
var oldHist *statistics.Histogram
|
|
if statistics.IsAnalyzed(col.Flag) {
|
|
oldHist = col.Histogram.Copy()
|
|
} else {
|
|
d, err := col.LastAnalyzePos.ConvertTo(b.ctx.GetSessionVars().StmtCtx, col.Tp)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
_, bktID := col.LessRowCountWithBktIdx(nil, d)
|
|
if bktID == 0 {
|
|
return analyzeTask
|
|
}
|
|
oldHist = col.TruncateHistogram(bktID)
|
|
oldHist.NDV = int64(oldHist.TotalRowCount())
|
|
}
|
|
job := &statistics.AnalyzeJob{DBName: task.DBName, TableName: task.TableName, PartitionName: task.PartitionName, JobInfo: "analyze incremental primary key"}
|
|
exec := analyzeTask.colExec
|
|
exec.job = job
|
|
analyzeTask.taskType = pkIncrementalTask
|
|
analyzeTask.colIncrementalExec = &analyzePKIncrementalExec{AnalyzeColumnsExec: *exec, oldHist: oldHist}
|
|
analyzeTask.job = job
|
|
return analyzeTask
|
|
}
|
|
|
|
func (b *executorBuilder) buildAnalyzeFastColumn(e *AnalyzeExec, task plannercore.AnalyzeColumnsTask, opts map[ast.AnalyzeOptionType]uint64) {
|
|
findTask := false
|
|
for _, eTask := range e.tasks {
|
|
if eTask.fastExec != nil && eTask.fastExec.tableID.Equals(&task.TableID) {
|
|
eTask.fastExec.colsInfo = append(eTask.fastExec.colsInfo, task.ColsInfo...)
|
|
findTask = true
|
|
break
|
|
}
|
|
}
|
|
if !findTask {
|
|
job := &statistics.AnalyzeJob{DBName: task.DBName, TableName: task.TableName, PartitionName: task.PartitionName, JobInfo: "fast analyze columns"}
|
|
var concurrency int
|
|
concurrency, b.err = getBuildStatsConcurrency(e.Ctx())
|
|
if b.err != nil {
|
|
return
|
|
}
|
|
startTS, err := b.getSnapshotTS()
|
|
if err != nil {
|
|
b.err = err
|
|
return
|
|
}
|
|
base := baseAnalyzeExec{
|
|
ctx: b.ctx,
|
|
tableID: task.TableID,
|
|
opts: opts,
|
|
concurrency: concurrency,
|
|
job: job,
|
|
snapshot: startTS,
|
|
}
|
|
fastExec := &AnalyzeFastExec{
|
|
baseAnalyzeExec: base,
|
|
colsInfo: task.ColsInfo,
|
|
handleCols: task.HandleCols,
|
|
tblInfo: task.TblInfo,
|
|
wg: &sync.WaitGroup{},
|
|
}
|
|
b.err = fastExec.calculateEstimateSampleStep()
|
|
if b.err != nil {
|
|
return
|
|
}
|
|
e.tasks = append(e.tasks, &analyzeTask{
|
|
taskType: fastTask,
|
|
fastExec: fastExec,
|
|
job: job,
|
|
})
|
|
}
|
|
}
|
|
|
|
func (b *executorBuilder) buildAnalyzeFastIndex(e *AnalyzeExec, task plannercore.AnalyzeIndexTask, opts map[ast.AnalyzeOptionType]uint64) {
|
|
findTask := false
|
|
for _, eTask := range e.tasks {
|
|
if eTask.fastExec != nil && eTask.fastExec.tableID.Equals(&task.TableID) {
|
|
eTask.fastExec.idxsInfo = append(eTask.fastExec.idxsInfo, task.IndexInfo)
|
|
findTask = true
|
|
break
|
|
}
|
|
}
|
|
if !findTask {
|
|
job := &statistics.AnalyzeJob{DBName: task.DBName, TableName: task.TableName, PartitionName: "fast analyze index " + task.IndexInfo.Name.O}
|
|
var concurrency int
|
|
concurrency, b.err = getBuildStatsConcurrency(e.Ctx())
|
|
if b.err != nil {
|
|
return
|
|
}
|
|
startTS, err := b.getSnapshotTS()
|
|
if err != nil {
|
|
b.err = err
|
|
return
|
|
}
|
|
base := baseAnalyzeExec{
|
|
ctx: b.ctx,
|
|
tableID: task.TableID,
|
|
opts: opts,
|
|
concurrency: concurrency,
|
|
job: job,
|
|
snapshot: startTS,
|
|
}
|
|
fastExec := &AnalyzeFastExec{
|
|
baseAnalyzeExec: base,
|
|
idxsInfo: []*model.IndexInfo{task.IndexInfo},
|
|
tblInfo: task.TblInfo,
|
|
wg: &sync.WaitGroup{},
|
|
}
|
|
b.err = fastExec.calculateEstimateSampleStep()
|
|
if b.err != nil {
|
|
return
|
|
}
|
|
e.tasks = append(e.tasks, &analyzeTask{
|
|
taskType: fastTask,
|
|
fastExec: fastExec,
|
|
job: job,
|
|
})
|
|
}
|
|
}
|
|
|
|
func (b *executorBuilder) buildAnalyze(v *plannercore.Analyze) exec.Executor {
|
|
e := &AnalyzeExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
tasks: make([]*analyzeTask, 0, len(v.ColTasks)+len(v.IdxTasks)),
|
|
opts: v.Opts,
|
|
OptionsMap: v.OptionsMap,
|
|
}
|
|
enableFastAnalyze := b.ctx.GetSessionVars().EnableFastAnalyze
|
|
autoAnalyze := ""
|
|
if b.ctx.GetSessionVars().InRestrictedSQL {
|
|
autoAnalyze = "auto "
|
|
}
|
|
for _, task := range v.ColTasks {
|
|
if task.Incremental {
|
|
e.tasks = append(e.tasks, b.buildAnalyzePKIncremental(task, v.Opts))
|
|
} else {
|
|
if enableFastAnalyze {
|
|
b.buildAnalyzeFastColumn(e, task, v.Opts)
|
|
} else {
|
|
columns, _, err := expression.ColumnInfos2ColumnsAndNames(b.ctx, model.NewCIStr(task.AnalyzeInfo.DBName), task.TblInfo.Name, task.ColsInfo, task.TblInfo)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
schema := expression.NewSchema(columns...)
|
|
e.tasks = append(e.tasks, b.buildAnalyzeColumnsPushdown(task, v.Opts, autoAnalyze, schema))
|
|
}
|
|
}
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
}
|
|
for _, task := range v.IdxTasks {
|
|
if task.Incremental {
|
|
e.tasks = append(e.tasks, b.buildAnalyzeIndexIncremental(task, v.Opts))
|
|
} else {
|
|
if enableFastAnalyze {
|
|
b.buildAnalyzeFastIndex(e, task, v.Opts)
|
|
} else {
|
|
e.tasks = append(e.tasks, b.buildAnalyzeIndexPushdown(task, v.Opts, autoAnalyze))
|
|
}
|
|
}
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
}
|
|
return e
|
|
}
|
|
|
|
// markChildrenUsedCols compares each child with the output schema, and mark
|
|
// each column of the child is used by output or not.
|
|
func markChildrenUsedCols(outputCols []*expression.Column, childSchemas ...*expression.Schema) (childrenUsed [][]bool) {
|
|
childrenUsed = make([][]bool, 0, len(childSchemas))
|
|
markedOffsets := make(map[int]struct{})
|
|
for _, col := range outputCols {
|
|
markedOffsets[col.Index] = struct{}{}
|
|
}
|
|
prefixLen := 0
|
|
for _, childSchema := range childSchemas {
|
|
used := make([]bool, len(childSchema.Columns))
|
|
for i := range childSchema.Columns {
|
|
if _, ok := markedOffsets[prefixLen+i]; ok {
|
|
used[i] = true
|
|
}
|
|
}
|
|
childrenUsed = append(childrenUsed, used)
|
|
prefixLen += childSchema.Len()
|
|
}
|
|
return
|
|
}
|
|
|
|
func (*executorBuilder) corColInDistPlan(plans []plannercore.PhysicalPlan) bool {
|
|
for _, p := range plans {
|
|
x, ok := p.(*plannercore.PhysicalSelection)
|
|
if !ok {
|
|
continue
|
|
}
|
|
for _, cond := range x.Conditions {
|
|
if len(expression.ExtractCorColumns(cond)) > 0 {
|
|
return true
|
|
}
|
|
}
|
|
}
|
|
return false
|
|
}
|
|
|
|
// corColInAccess checks whether there's correlated column in access conditions.
|
|
func (*executorBuilder) corColInAccess(p plannercore.PhysicalPlan) bool {
|
|
var access []expression.Expression
|
|
switch x := p.(type) {
|
|
case *plannercore.PhysicalTableScan:
|
|
access = x.AccessCondition
|
|
case *plannercore.PhysicalIndexScan:
|
|
access = x.AccessCondition
|
|
}
|
|
for _, cond := range access {
|
|
if len(expression.ExtractCorColumns(cond)) > 0 {
|
|
return true
|
|
}
|
|
}
|
|
return false
|
|
}
|
|
|
|
func (b *executorBuilder) newDataReaderBuilder(p plannercore.PhysicalPlan) (*dataReaderBuilder, error) {
|
|
ts, err := b.getSnapshotTS()
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
builderForDataReader := *b
|
|
builderForDataReader.forDataReaderBuilder = true
|
|
builderForDataReader.dataReaderTS = ts
|
|
|
|
return &dataReaderBuilder{
|
|
Plan: p,
|
|
executorBuilder: &builderForDataReader,
|
|
}, nil
|
|
}
|
|
|
|
func (b *executorBuilder) buildIndexLookUpJoin(v *plannercore.PhysicalIndexJoin) exec.Executor {
|
|
outerExec := b.build(v.Children()[1-v.InnerChildIdx])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
outerTypes := exec.RetTypes(outerExec)
|
|
innerPlan := v.Children()[v.InnerChildIdx]
|
|
innerTypes := make([]*types.FieldType, innerPlan.Schema().Len())
|
|
for i, col := range innerPlan.Schema().Columns {
|
|
innerTypes[i] = col.RetType.Clone()
|
|
// The `innerTypes` would be called for `Datum.ConvertTo` when converting the columns from outer table
|
|
// to build hash map or construct lookup keys. So we need to modify its flen otherwise there would be
|
|
// truncate error. See issue https://github.com/pingcap/tidb/issues/21232 for example.
|
|
if innerTypes[i].EvalType() == types.ETString {
|
|
innerTypes[i].SetFlen(types.UnspecifiedLength)
|
|
}
|
|
}
|
|
|
|
// Use the probe table's collation.
|
|
for i, col := range v.OuterHashKeys {
|
|
outerTypes[col.Index] = outerTypes[col.Index].Clone()
|
|
outerTypes[col.Index].SetCollate(innerTypes[v.InnerHashKeys[i].Index].GetCollate())
|
|
outerTypes[col.Index].SetFlag(col.RetType.GetFlag())
|
|
}
|
|
|
|
// We should use JoinKey to construct the type information using by hashing, instead of using the child's schema directly.
|
|
// When a hybrid type column is hashed multiple times, we need to distinguish what field types are used.
|
|
// For example, the condition `enum = int and enum = string`, we should use ETInt to hash the first column,
|
|
// and use ETString to hash the second column, although they may be the same column.
|
|
innerHashTypes := make([]*types.FieldType, len(v.InnerHashKeys))
|
|
outerHashTypes := make([]*types.FieldType, len(v.OuterHashKeys))
|
|
for i, col := range v.InnerHashKeys {
|
|
innerHashTypes[i] = innerTypes[col.Index].Clone()
|
|
innerHashTypes[i].SetFlag(col.RetType.GetFlag())
|
|
}
|
|
for i, col := range v.OuterHashKeys {
|
|
outerHashTypes[i] = outerTypes[col.Index].Clone()
|
|
outerHashTypes[i].SetFlag(col.RetType.GetFlag())
|
|
}
|
|
|
|
var (
|
|
outerFilter []expression.Expression
|
|
leftTypes, rightTypes []*types.FieldType
|
|
)
|
|
|
|
if v.InnerChildIdx == 0 {
|
|
leftTypes, rightTypes = innerTypes, outerTypes
|
|
outerFilter = v.RightConditions
|
|
if len(v.LeftConditions) > 0 {
|
|
b.err = errors.Annotate(exeerrors.ErrBuildExecutor, "join's inner condition should be empty")
|
|
return nil
|
|
}
|
|
} else {
|
|
leftTypes, rightTypes = outerTypes, innerTypes
|
|
outerFilter = v.LeftConditions
|
|
if len(v.RightConditions) > 0 {
|
|
b.err = errors.Annotate(exeerrors.ErrBuildExecutor, "join's inner condition should be empty")
|
|
return nil
|
|
}
|
|
}
|
|
defaultValues := v.DefaultValues
|
|
if defaultValues == nil {
|
|
defaultValues = make([]types.Datum, len(innerTypes))
|
|
}
|
|
hasPrefixCol := false
|
|
for _, l := range v.IdxColLens {
|
|
if l != types.UnspecifiedLength {
|
|
hasPrefixCol = true
|
|
break
|
|
}
|
|
}
|
|
|
|
readerBuilder, err := b.newDataReaderBuilder(innerPlan)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
|
|
e := &IndexLookUpJoin{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), outerExec),
|
|
outerCtx: outerCtx{
|
|
rowTypes: outerTypes,
|
|
hashTypes: outerHashTypes,
|
|
filter: outerFilter,
|
|
},
|
|
innerCtx: innerCtx{
|
|
readerBuilder: readerBuilder,
|
|
rowTypes: innerTypes,
|
|
hashTypes: innerHashTypes,
|
|
colLens: v.IdxColLens,
|
|
hasPrefixCol: hasPrefixCol,
|
|
},
|
|
workerWg: new(sync.WaitGroup),
|
|
isOuterJoin: v.JoinType.IsOuterJoin(),
|
|
indexRanges: v.Ranges,
|
|
keyOff2IdxOff: v.KeyOff2IdxOff,
|
|
lastColHelper: v.CompareFilters,
|
|
finished: &atomic.Value{},
|
|
}
|
|
colsFromChildren := v.Schema().Columns
|
|
if v.JoinType == plannercore.LeftOuterSemiJoin || v.JoinType == plannercore.AntiLeftOuterSemiJoin {
|
|
colsFromChildren = colsFromChildren[:len(colsFromChildren)-1]
|
|
}
|
|
childrenUsedSchema := markChildrenUsedCols(colsFromChildren, v.Children()[0].Schema(), v.Children()[1].Schema())
|
|
e.joiner = newJoiner(b.ctx, v.JoinType, v.InnerChildIdx == 0, defaultValues, v.OtherConditions, leftTypes, rightTypes, childrenUsedSchema, false)
|
|
outerKeyCols := make([]int, len(v.OuterJoinKeys))
|
|
for i := 0; i < len(v.OuterJoinKeys); i++ {
|
|
outerKeyCols[i] = v.OuterJoinKeys[i].Index
|
|
}
|
|
innerKeyCols := make([]int, len(v.InnerJoinKeys))
|
|
innerKeyColIDs := make([]int64, len(v.InnerJoinKeys))
|
|
keyCollators := make([]collate.Collator, 0, len(v.InnerJoinKeys))
|
|
for i := 0; i < len(v.InnerJoinKeys); i++ {
|
|
innerKeyCols[i] = v.InnerJoinKeys[i].Index
|
|
innerKeyColIDs[i] = v.InnerJoinKeys[i].ID
|
|
keyCollators = append(keyCollators, collate.GetCollator(v.InnerJoinKeys[i].RetType.GetCollate()))
|
|
}
|
|
e.outerCtx.keyCols = outerKeyCols
|
|
e.innerCtx.keyCols = innerKeyCols
|
|
e.innerCtx.keyColIDs = innerKeyColIDs
|
|
e.innerCtx.keyCollators = keyCollators
|
|
|
|
outerHashCols, innerHashCols := make([]int, len(v.OuterHashKeys)), make([]int, len(v.InnerHashKeys))
|
|
hashCollators := make([]collate.Collator, 0, len(v.InnerHashKeys))
|
|
for i := 0; i < len(v.OuterHashKeys); i++ {
|
|
outerHashCols[i] = v.OuterHashKeys[i].Index
|
|
}
|
|
for i := 0; i < len(v.InnerHashKeys); i++ {
|
|
innerHashCols[i] = v.InnerHashKeys[i].Index
|
|
hashCollators = append(hashCollators, collate.GetCollator(v.InnerHashKeys[i].RetType.GetCollate()))
|
|
}
|
|
e.outerCtx.hashCols = outerHashCols
|
|
e.innerCtx.hashCols = innerHashCols
|
|
e.innerCtx.hashCollators = hashCollators
|
|
|
|
e.joinResult = exec.TryNewCacheChunk(e)
|
|
executor_metrics.ExecutorCounterIndexLookUpJoin.Inc()
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildIndexLookUpMergeJoin(v *plannercore.PhysicalIndexMergeJoin) exec.Executor {
|
|
outerExec := b.build(v.Children()[1-v.InnerChildIdx])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
outerTypes := exec.RetTypes(outerExec)
|
|
innerPlan := v.Children()[v.InnerChildIdx]
|
|
innerTypes := make([]*types.FieldType, innerPlan.Schema().Len())
|
|
for i, col := range innerPlan.Schema().Columns {
|
|
innerTypes[i] = col.RetType.Clone()
|
|
// The `innerTypes` would be called for `Datum.ConvertTo` when converting the columns from outer table
|
|
// to build hash map or construct lookup keys. So we need to modify its flen otherwise there would be
|
|
// truncate error. See issue https://github.com/pingcap/tidb/issues/21232 for example.
|
|
if innerTypes[i].EvalType() == types.ETString {
|
|
innerTypes[i].SetFlen(types.UnspecifiedLength)
|
|
}
|
|
}
|
|
var (
|
|
outerFilter []expression.Expression
|
|
leftTypes, rightTypes []*types.FieldType
|
|
)
|
|
if v.InnerChildIdx == 0 {
|
|
leftTypes, rightTypes = innerTypes, outerTypes
|
|
outerFilter = v.RightConditions
|
|
if len(v.LeftConditions) > 0 {
|
|
b.err = errors.Annotate(exeerrors.ErrBuildExecutor, "join's inner condition should be empty")
|
|
return nil
|
|
}
|
|
} else {
|
|
leftTypes, rightTypes = outerTypes, innerTypes
|
|
outerFilter = v.LeftConditions
|
|
if len(v.RightConditions) > 0 {
|
|
b.err = errors.Annotate(exeerrors.ErrBuildExecutor, "join's inner condition should be empty")
|
|
return nil
|
|
}
|
|
}
|
|
defaultValues := v.DefaultValues
|
|
if defaultValues == nil {
|
|
defaultValues = make([]types.Datum, len(innerTypes))
|
|
}
|
|
outerKeyCols := make([]int, len(v.OuterJoinKeys))
|
|
for i := 0; i < len(v.OuterJoinKeys); i++ {
|
|
outerKeyCols[i] = v.OuterJoinKeys[i].Index
|
|
}
|
|
innerKeyCols := make([]int, len(v.InnerJoinKeys))
|
|
keyCollators := make([]collate.Collator, 0, len(v.InnerJoinKeys))
|
|
for i := 0; i < len(v.InnerJoinKeys); i++ {
|
|
innerKeyCols[i] = v.InnerJoinKeys[i].Index
|
|
keyCollators = append(keyCollators, collate.GetCollator(v.InnerJoinKeys[i].RetType.GetCollate()))
|
|
}
|
|
executor_metrics.ExecutorCounterIndexLookUpJoin.Inc()
|
|
|
|
readerBuilder, err := b.newDataReaderBuilder(innerPlan)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
|
|
e := &IndexLookUpMergeJoin{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), outerExec),
|
|
outerMergeCtx: outerMergeCtx{
|
|
rowTypes: outerTypes,
|
|
filter: outerFilter,
|
|
joinKeys: v.OuterJoinKeys,
|
|
keyCols: outerKeyCols,
|
|
needOuterSort: v.NeedOuterSort,
|
|
compareFuncs: v.OuterCompareFuncs,
|
|
},
|
|
innerMergeCtx: innerMergeCtx{
|
|
readerBuilder: readerBuilder,
|
|
rowTypes: innerTypes,
|
|
joinKeys: v.InnerJoinKeys,
|
|
keyCols: innerKeyCols,
|
|
keyCollators: keyCollators,
|
|
compareFuncs: v.CompareFuncs,
|
|
colLens: v.IdxColLens,
|
|
desc: v.Desc,
|
|
keyOff2KeyOffOrderByIdx: v.KeyOff2KeyOffOrderByIdx,
|
|
},
|
|
workerWg: new(sync.WaitGroup),
|
|
isOuterJoin: v.JoinType.IsOuterJoin(),
|
|
indexRanges: v.Ranges,
|
|
keyOff2IdxOff: v.KeyOff2IdxOff,
|
|
lastColHelper: v.CompareFilters,
|
|
}
|
|
colsFromChildren := v.Schema().Columns
|
|
if v.JoinType == plannercore.LeftOuterSemiJoin || v.JoinType == plannercore.AntiLeftOuterSemiJoin {
|
|
colsFromChildren = colsFromChildren[:len(colsFromChildren)-1]
|
|
}
|
|
childrenUsedSchema := markChildrenUsedCols(colsFromChildren, v.Children()[0].Schema(), v.Children()[1].Schema())
|
|
joiners := make([]joiner, e.Ctx().GetSessionVars().IndexLookupJoinConcurrency())
|
|
for i := 0; i < len(joiners); i++ {
|
|
joiners[i] = newJoiner(b.ctx, v.JoinType, v.InnerChildIdx == 0, defaultValues, v.OtherConditions, leftTypes, rightTypes, childrenUsedSchema, false)
|
|
}
|
|
e.joiners = joiners
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildIndexNestedLoopHashJoin(v *plannercore.PhysicalIndexHashJoin) exec.Executor {
|
|
join := b.buildIndexLookUpJoin(&(v.PhysicalIndexJoin))
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
e := join.(*IndexLookUpJoin)
|
|
idxHash := &IndexNestedLoopHashJoin{
|
|
IndexLookUpJoin: *e,
|
|
keepOuterOrder: v.KeepOuterOrder,
|
|
}
|
|
concurrency := e.Ctx().GetSessionVars().IndexLookupJoinConcurrency()
|
|
idxHash.joiners = make([]joiner, concurrency)
|
|
for i := 0; i < concurrency; i++ {
|
|
idxHash.joiners[i] = e.joiner.Clone()
|
|
}
|
|
return idxHash
|
|
}
|
|
|
|
func buildNoRangeTableReader(b *executorBuilder, v *plannercore.PhysicalTableReader) (*TableReaderExecutor, error) {
|
|
tablePlans := v.TablePlans
|
|
if v.StoreType == kv.TiFlash {
|
|
tablePlans = []plannercore.PhysicalPlan{v.GetTablePlan()}
|
|
}
|
|
dagReq, err := builder.ConstructDAGReq(b.ctx, tablePlans, v.StoreType)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
ts, err := v.GetTableScan()
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
if err = b.validCanReadTemporaryOrCacheTable(ts.Table); err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
tbl, _ := b.is.TableByID(ts.Table.ID)
|
|
isPartition, physicalTableID := ts.IsPartition()
|
|
if isPartition {
|
|
pt := tbl.(table.PartitionedTable)
|
|
tbl = pt.GetPartition(physicalTableID)
|
|
}
|
|
startTS, err := b.getSnapshotTS()
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
paging := b.ctx.GetSessionVars().EnablePaging
|
|
e := &TableReaderExecutor{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
dagPB: dagReq,
|
|
startTS: startTS,
|
|
txnScope: b.txnScope,
|
|
readReplicaScope: b.readReplicaScope,
|
|
isStaleness: b.isStaleness,
|
|
netDataSize: v.GetNetDataSize(),
|
|
table: tbl,
|
|
keepOrder: ts.KeepOrder,
|
|
desc: ts.Desc,
|
|
byItems: ts.ByItems,
|
|
columns: ts.Columns,
|
|
paging: paging,
|
|
corColInFilter: b.corColInDistPlan(v.TablePlans),
|
|
corColInAccess: b.corColInAccess(v.TablePlans[0]),
|
|
plans: v.TablePlans,
|
|
tablePlan: v.GetTablePlan(),
|
|
storeType: v.StoreType,
|
|
batchCop: v.ReadReqType == plannercore.BatchCop,
|
|
}
|
|
e.buildVirtualColumnInfo()
|
|
|
|
if v.StoreType == kv.TiDB && b.ctx.GetSessionVars().User != nil {
|
|
// User info is used to do privilege check. It is only used in TiDB cluster memory table.
|
|
e.dagPB.User = &tipb.UserIdentity{
|
|
UserName: b.ctx.GetSessionVars().User.Username,
|
|
UserHost: b.ctx.GetSessionVars().User.Hostname,
|
|
}
|
|
}
|
|
|
|
for i := range v.Schema().Columns {
|
|
dagReq.OutputOffsets = append(dagReq.OutputOffsets, uint32(i))
|
|
}
|
|
|
|
return e, nil
|
|
}
|
|
|
|
func (b *executorBuilder) buildMPPGather(v *plannercore.PhysicalTableReader) exec.Executor {
|
|
startTs, err := b.getSnapshotTS()
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
|
|
gather := &MPPGather{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
is: b.is,
|
|
originalPlan: v.GetTablePlan(),
|
|
startTS: startTs,
|
|
mppQueryID: kv.MPPQueryID{QueryTs: getMPPQueryTS(b.ctx), LocalQueryID: getMPPQueryID(b.ctx), ServerID: domain.GetDomain(b.ctx).ServerID()},
|
|
memTracker: memory.NewTracker(v.ID(), -1),
|
|
|
|
columns: []*model.ColumnInfo{},
|
|
virtualColumnIndex: []int{},
|
|
virtualColumnRetFieldTypes: []*types.FieldType{},
|
|
}
|
|
|
|
gather.memTracker.AttachTo(b.ctx.GetSessionVars().StmtCtx.MemTracker)
|
|
|
|
var hasVirtualCol bool
|
|
for _, col := range v.Schema().Columns {
|
|
if col.VirtualExpr != nil {
|
|
hasVirtualCol = true
|
|
break
|
|
}
|
|
}
|
|
|
|
var isSingleDataSource bool
|
|
tableScans := v.GetTableScans()
|
|
if len(tableScans) == 1 {
|
|
isSingleDataSource = true
|
|
}
|
|
|
|
// 1. hasVirtualCol: when got virtual column in TableScan, will generate plan like the following,
|
|
// and there will be no other operators in the MPP fragment.
|
|
// MPPGather
|
|
// ExchangeSender
|
|
// PhysicalTableScan
|
|
// 2. UnionScan: there won't be any operators like Join between UnionScan and TableScan.
|
|
// and UnionScan cannot push down to tiflash.
|
|
if !isSingleDataSource {
|
|
if hasVirtualCol || b.encounterUnionScan {
|
|
b.err = errors.Errorf("should only have one TableScan in MPP fragment(hasVirtualCol: %v, encounterUnionScan: %v)", hasVirtualCol, b.encounterUnionScan)
|
|
return nil
|
|
}
|
|
return gather
|
|
}
|
|
|
|
// Setup MPPGather.table if isSingleDataSource.
|
|
// Virtual Column or UnionScan need to use it.
|
|
ts := tableScans[0]
|
|
gather.columns = ts.Columns
|
|
if hasVirtualCol {
|
|
gather.virtualColumnIndex, gather.virtualColumnRetFieldTypes = buildVirtualColumnInfo(gather.Schema(), gather.columns)
|
|
}
|
|
tbl, _ := b.is.TableByID(ts.Table.ID)
|
|
isPartition, physicalTableID := ts.IsPartition()
|
|
if isPartition {
|
|
// Only for static pruning partition table.
|
|
pt := tbl.(table.PartitionedTable)
|
|
tbl = pt.GetPartition(physicalTableID)
|
|
}
|
|
gather.table = tbl
|
|
return gather
|
|
}
|
|
|
|
// buildTableReader builds a table reader executor. It first build a no range table reader,
|
|
// and then update it ranges from table scan plan.
|
|
func (b *executorBuilder) buildTableReader(v *plannercore.PhysicalTableReader) exec.Executor {
|
|
failpoint.Inject("checkUseMPP", func(val failpoint.Value) {
|
|
if !b.ctx.GetSessionVars().InRestrictedSQL && val.(bool) != useMPPExecution(b.ctx, v) {
|
|
if val.(bool) {
|
|
b.err = errors.New("expect mpp but not used")
|
|
} else {
|
|
b.err = errors.New("don't expect mpp but we used it")
|
|
}
|
|
failpoint.Return(nil)
|
|
}
|
|
})
|
|
useMPP := useMPPExecution(b.ctx, v)
|
|
useTiFlashBatchCop := v.ReadReqType == plannercore.BatchCop
|
|
useTiFlash := useMPP || useTiFlashBatchCop
|
|
if useTiFlash {
|
|
if _, isTiDBZoneLabelSet := config.GetGlobalConfig().Labels[placement.DCLabelKey]; b.ctx.GetSessionVars().TiFlashReplicaRead != tiflash.AllReplicas && !isTiDBZoneLabelSet {
|
|
b.ctx.GetSessionVars().StmtCtx.AppendWarning(errors.Errorf("the variable tiflash_replica_read is ignored, because the entry TiDB[%s] does not set the zone attribute and tiflash_replica_read is '%s'", config.GetGlobalConfig().AdvertiseAddress, tiflash.GetTiFlashReplicaRead(b.ctx.GetSessionVars().TiFlashReplicaRead)))
|
|
}
|
|
}
|
|
if useMPP {
|
|
return b.buildMPPGather(v)
|
|
}
|
|
ts, err := v.GetTableScan()
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
ret, err := buildNoRangeTableReader(b, v)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
if err = b.validCanReadTemporaryOrCacheTable(ts.Table); err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
|
|
if ret.table.Meta().TempTableType != model.TempTableNone {
|
|
ret.dummy = true
|
|
}
|
|
|
|
ret.ranges = ts.Ranges
|
|
sctx := b.ctx.GetSessionVars().StmtCtx
|
|
sctx.TableIDs = append(sctx.TableIDs, ts.Table.ID)
|
|
|
|
if !b.ctx.GetSessionVars().StmtCtx.UseDynamicPartitionPrune() {
|
|
return ret
|
|
}
|
|
// When isPartition is set, it means the union rewriting is done, so a partition reader is preferred.
|
|
if ok, _ := ts.IsPartition(); ok {
|
|
return ret
|
|
}
|
|
|
|
pi := ts.Table.GetPartitionInfo()
|
|
if pi == nil {
|
|
return ret
|
|
}
|
|
|
|
tmp, _ := b.is.TableByID(ts.Table.ID)
|
|
tbl := tmp.(table.PartitionedTable)
|
|
partitions, err := partitionPruning(b.ctx, tbl, v.PartitionInfo.PruningConds, v.PartitionInfo.PartitionNames, v.PartitionInfo.Columns, v.PartitionInfo.ColumnNames)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
if v.StoreType == kv.TiFlash {
|
|
sctx.IsTiFlash.Store(true)
|
|
}
|
|
|
|
if len(partitions) == 0 {
|
|
return &TableDualExec{BaseExecutor: *ret.Base()}
|
|
}
|
|
|
|
// Sort the partition is necessary to make the final multiple partition key ranges ordered.
|
|
slices.SortFunc(partitions, func(i, j table.PhysicalTable) int {
|
|
return cmp.Compare(i.GetPhysicalID(), j.GetPhysicalID())
|
|
})
|
|
ret.kvRangeBuilder = kvRangeBuilderFromRangeAndPartition{
|
|
sctx: b.ctx,
|
|
partitions: partitions,
|
|
}
|
|
|
|
return ret
|
|
}
|
|
|
|
func buildIndexRangeForEachPartition(ctx sessionctx.Context, usedPartitions []table.PhysicalTable, contentPos []int64,
|
|
lookUpContent []*indexJoinLookUpContent, indexRanges []*ranger.Range, keyOff2IdxOff []int, cwc *plannercore.ColWithCmpFuncManager) (map[int64][]*ranger.Range, error) {
|
|
contentBucket := make(map[int64][]*indexJoinLookUpContent)
|
|
for _, p := range usedPartitions {
|
|
contentBucket[p.GetPhysicalID()] = make([]*indexJoinLookUpContent, 0, 8)
|
|
}
|
|
for i, pos := range contentPos {
|
|
if _, ok := contentBucket[pos]; ok {
|
|
contentBucket[pos] = append(contentBucket[pos], lookUpContent[i])
|
|
}
|
|
}
|
|
nextRange := make(map[int64][]*ranger.Range)
|
|
for _, p := range usedPartitions {
|
|
ranges, err := buildRangesForIndexJoin(ctx, contentBucket[p.GetPhysicalID()], indexRanges, keyOff2IdxOff, cwc)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
nextRange[p.GetPhysicalID()] = ranges
|
|
}
|
|
return nextRange, nil
|
|
}
|
|
|
|
func getPartitionKeyColOffsets(keyColIDs []int64, pt table.PartitionedTable) []int {
|
|
keyColOffsets := make([]int, len(keyColIDs))
|
|
for i, colID := range keyColIDs {
|
|
offset := -1
|
|
for j, col := range pt.Cols() {
|
|
if colID == col.ID {
|
|
offset = j
|
|
break
|
|
}
|
|
}
|
|
if offset == -1 {
|
|
return nil
|
|
}
|
|
keyColOffsets[i] = offset
|
|
}
|
|
|
|
t, ok := pt.(interface {
|
|
PartitionExpr() *tables.PartitionExpr
|
|
})
|
|
if !ok {
|
|
return nil
|
|
}
|
|
pe := t.PartitionExpr()
|
|
if pe == nil {
|
|
return nil
|
|
}
|
|
|
|
offsetMap := make(map[int]struct{})
|
|
for _, offset := range keyColOffsets {
|
|
offsetMap[offset] = struct{}{}
|
|
}
|
|
for _, offset := range pe.ColumnOffset {
|
|
if _, ok := offsetMap[offset]; !ok {
|
|
return nil
|
|
}
|
|
}
|
|
return keyColOffsets
|
|
}
|
|
|
|
func (builder *dataReaderBuilder) prunePartitionForInnerExecutor(tbl table.Table, partitionInfo *plannercore.PartitionInfo,
|
|
lookUpContent []*indexJoinLookUpContent) (usedPartition []table.PhysicalTable, canPrune bool, contentPos []int64, err error) {
|
|
partitionTbl := tbl.(table.PartitionedTable)
|
|
|
|
// In index join, this is called by multiple goroutines simultaneously, but partitionPruning is not thread-safe.
|
|
// Use once.Do to avoid DATA RACE here.
|
|
// TODO: condition based pruning can be do in advance.
|
|
condPruneResult, err := builder.partitionPruning(partitionTbl, partitionInfo.PruningConds, partitionInfo.PartitionNames, partitionInfo.Columns, partitionInfo.ColumnNames)
|
|
if err != nil {
|
|
return nil, false, nil, err
|
|
}
|
|
|
|
// recalculate key column offsets
|
|
if len(lookUpContent) == 0 {
|
|
return nil, false, nil, nil
|
|
}
|
|
if lookUpContent[0].keyColIDs == nil {
|
|
return nil, false, nil, plannercore.ErrInternal.GenWithStack("cannot get column IDs when dynamic pruning")
|
|
}
|
|
keyColOffsets := getPartitionKeyColOffsets(lookUpContent[0].keyColIDs, partitionTbl)
|
|
if len(keyColOffsets) == 0 {
|
|
return condPruneResult, false, nil, nil
|
|
}
|
|
|
|
locateKey := make([]types.Datum, len(partitionTbl.Cols()))
|
|
partitions := make(map[int64]table.PhysicalTable)
|
|
contentPos = make([]int64, len(lookUpContent))
|
|
for idx, content := range lookUpContent {
|
|
for i, data := range content.keys {
|
|
locateKey[keyColOffsets[i]] = data
|
|
}
|
|
p, err := partitionTbl.GetPartitionByRow(builder.ctx, locateKey)
|
|
if table.ErrNoPartitionForGivenValue.Equal(err) {
|
|
continue
|
|
}
|
|
if err != nil {
|
|
return nil, false, nil, err
|
|
}
|
|
if _, ok := partitions[p.GetPhysicalID()]; !ok {
|
|
partitions[p.GetPhysicalID()] = p
|
|
}
|
|
contentPos[idx] = p.GetPhysicalID()
|
|
}
|
|
|
|
usedPartition = make([]table.PhysicalTable, 0, len(partitions))
|
|
for _, p := range condPruneResult {
|
|
if _, ok := partitions[p.GetPhysicalID()]; ok {
|
|
usedPartition = append(usedPartition, p)
|
|
}
|
|
}
|
|
|
|
// To make the final key ranges involving multiple partitions ordered.
|
|
slices.SortFunc(usedPartition, func(i, j table.PhysicalTable) int {
|
|
return cmp.Compare(i.GetPhysicalID(), j.GetPhysicalID())
|
|
})
|
|
return usedPartition, true, contentPos, nil
|
|
}
|
|
|
|
func buildNoRangeIndexReader(b *executorBuilder, v *plannercore.PhysicalIndexReader) (*IndexReaderExecutor, error) {
|
|
dagReq, err := builder.ConstructDAGReq(b.ctx, v.IndexPlans, kv.TiKV)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
is := v.IndexPlans[0].(*plannercore.PhysicalIndexScan)
|
|
tbl, _ := b.is.TableByID(is.Table.ID)
|
|
isPartition, physicalTableID := is.IsPartition()
|
|
if isPartition {
|
|
pt := tbl.(table.PartitionedTable)
|
|
tbl = pt.GetPartition(physicalTableID)
|
|
} else {
|
|
physicalTableID = is.Table.ID
|
|
}
|
|
startTS, err := b.getSnapshotTS()
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
paging := b.ctx.GetSessionVars().EnablePaging
|
|
e := &IndexReaderExecutor{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
dagPB: dagReq,
|
|
startTS: startTS,
|
|
txnScope: b.txnScope,
|
|
readReplicaScope: b.readReplicaScope,
|
|
isStaleness: b.isStaleness,
|
|
netDataSize: v.GetNetDataSize(),
|
|
physicalTableID: physicalTableID,
|
|
table: tbl,
|
|
index: is.Index,
|
|
keepOrder: is.KeepOrder,
|
|
desc: is.Desc,
|
|
columns: is.Columns,
|
|
byItems: is.ByItems,
|
|
paging: paging,
|
|
corColInFilter: b.corColInDistPlan(v.IndexPlans),
|
|
corColInAccess: b.corColInAccess(v.IndexPlans[0]),
|
|
idxCols: is.IdxCols,
|
|
colLens: is.IdxColLens,
|
|
plans: v.IndexPlans,
|
|
outputColumns: v.OutputColumns,
|
|
}
|
|
|
|
for _, col := range v.OutputColumns {
|
|
dagReq.OutputOffsets = append(dagReq.OutputOffsets, uint32(col.Index))
|
|
}
|
|
|
|
return e, nil
|
|
}
|
|
|
|
func (b *executorBuilder) buildIndexReader(v *plannercore.PhysicalIndexReader) exec.Executor {
|
|
is := v.IndexPlans[0].(*plannercore.PhysicalIndexScan)
|
|
if err := b.validCanReadTemporaryOrCacheTable(is.Table); err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
|
|
ret, err := buildNoRangeIndexReader(b, v)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
|
|
if ret.table.Meta().TempTableType != model.TempTableNone {
|
|
ret.dummy = true
|
|
}
|
|
|
|
ret.ranges = is.Ranges
|
|
sctx := b.ctx.GetSessionVars().StmtCtx
|
|
sctx.IndexNames = append(sctx.IndexNames, is.Table.Name.O+":"+is.Index.Name.O)
|
|
|
|
if !b.ctx.GetSessionVars().StmtCtx.UseDynamicPartitionPrune() {
|
|
return ret
|
|
}
|
|
// When isPartition is set, it means the union rewriting is done, so a partition reader is preferred.
|
|
if ok, _ := is.IsPartition(); ok {
|
|
return ret
|
|
}
|
|
|
|
pi := is.Table.GetPartitionInfo()
|
|
if pi == nil {
|
|
return ret
|
|
}
|
|
|
|
if is.Index.Global {
|
|
tmp, ok := b.is.TableByID(ret.table.Meta().ID)
|
|
if !ok {
|
|
b.err = infoschema.ErrTableNotExists
|
|
return nil
|
|
}
|
|
tbl, ok := tmp.(table.PartitionedTable)
|
|
if !ok {
|
|
b.err = exeerrors.ErrBuildExecutor
|
|
return nil
|
|
}
|
|
ret.partitionIDMap, err = getPartitionIdsAfterPruning(b.ctx, tbl, &v.PartitionInfo)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
return ret
|
|
}
|
|
|
|
tmp, _ := b.is.TableByID(is.Table.ID)
|
|
tbl := tmp.(table.PartitionedTable)
|
|
partitions, err := partitionPruning(b.ctx, tbl, v.PartitionInfo.PruningConds, v.PartitionInfo.PartitionNames, v.PartitionInfo.Columns, v.PartitionInfo.ColumnNames)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
ret.partitions = partitions
|
|
return ret
|
|
}
|
|
|
|
func buildTableReq(b *executorBuilder, schemaLen int, plans []plannercore.PhysicalPlan) (dagReq *tipb.DAGRequest, val table.Table, err error) {
|
|
tableReq, err := builder.ConstructDAGReq(b.ctx, plans, kv.TiKV)
|
|
if err != nil {
|
|
return nil, nil, err
|
|
}
|
|
for i := 0; i < schemaLen; i++ {
|
|
tableReq.OutputOffsets = append(tableReq.OutputOffsets, uint32(i))
|
|
}
|
|
ts := plans[0].(*plannercore.PhysicalTableScan)
|
|
tbl, _ := b.is.TableByID(ts.Table.ID)
|
|
isPartition, physicalTableID := ts.IsPartition()
|
|
if isPartition {
|
|
pt := tbl.(table.PartitionedTable)
|
|
tbl = pt.GetPartition(physicalTableID)
|
|
}
|
|
return tableReq, tbl, err
|
|
}
|
|
|
|
// buildIndexReq is designed to create a DAG for index request.
|
|
// If len(ByItems) != 0 means index request should return related columns
|
|
// to sort result rows in TiDB side for parition tables.
|
|
func buildIndexReq(ctx sessionctx.Context, columns []*model.IndexColumn, handleLen int, plans []plannercore.PhysicalPlan) (dagReq *tipb.DAGRequest, err error) {
|
|
indexReq, err := builder.ConstructDAGReq(ctx, plans, kv.TiKV)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
indexReq.OutputOffsets = []uint32{}
|
|
idxScan := plans[0].(*plannercore.PhysicalIndexScan)
|
|
if len(idxScan.ByItems) != 0 {
|
|
schema := idxScan.Schema()
|
|
for _, item := range idxScan.ByItems {
|
|
c, ok := item.Expr.(*expression.Column)
|
|
if !ok {
|
|
return nil, errors.Errorf("Not support non-column in orderBy pushed down")
|
|
}
|
|
find := false
|
|
for i, schemaColumn := range schema.Columns {
|
|
if schemaColumn.ID == c.ID {
|
|
indexReq.OutputOffsets = append(indexReq.OutputOffsets, uint32(i))
|
|
find = true
|
|
break
|
|
}
|
|
}
|
|
if !find {
|
|
return nil, errors.Errorf("Not found order by related columns in indexScan.schema")
|
|
}
|
|
}
|
|
}
|
|
|
|
for i := 0; i < handleLen; i++ {
|
|
indexReq.OutputOffsets = append(indexReq.OutputOffsets, uint32(len(columns)+i))
|
|
}
|
|
|
|
if idxScan.NeedExtraOutputCol() {
|
|
// need add one more column for pid or physical table id
|
|
indexReq.OutputOffsets = append(indexReq.OutputOffsets, uint32(len(columns)+handleLen))
|
|
}
|
|
return indexReq, err
|
|
}
|
|
|
|
func buildNoRangeIndexLookUpReader(b *executorBuilder, v *plannercore.PhysicalIndexLookUpReader) (*IndexLookUpExecutor, error) {
|
|
is := v.IndexPlans[0].(*plannercore.PhysicalIndexScan)
|
|
var handleLen int
|
|
if len(v.CommonHandleCols) != 0 {
|
|
handleLen = len(v.CommonHandleCols)
|
|
} else {
|
|
handleLen = 1
|
|
}
|
|
indexReq, err := buildIndexReq(b.ctx, is.Index.Columns, handleLen, v.IndexPlans)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
indexPaging := false
|
|
if v.Paging {
|
|
indexPaging = true
|
|
}
|
|
tableReq, tbl, err := buildTableReq(b, v.Schema().Len(), v.TablePlans)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
ts := v.TablePlans[0].(*plannercore.PhysicalTableScan)
|
|
startTS, err := b.getSnapshotTS()
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
readerBuilder, err := b.newDataReaderBuilder(nil)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
e := &IndexLookUpExecutor{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
dagPB: indexReq,
|
|
startTS: startTS,
|
|
table: tbl,
|
|
index: is.Index,
|
|
keepOrder: is.KeepOrder,
|
|
byItems: is.ByItems,
|
|
desc: is.Desc,
|
|
tableRequest: tableReq,
|
|
columns: ts.Columns,
|
|
indexPaging: indexPaging,
|
|
dataReaderBuilder: readerBuilder,
|
|
corColInIdxSide: b.corColInDistPlan(v.IndexPlans),
|
|
corColInTblSide: b.corColInDistPlan(v.TablePlans),
|
|
corColInAccess: b.corColInAccess(v.IndexPlans[0]),
|
|
idxCols: is.IdxCols,
|
|
colLens: is.IdxColLens,
|
|
idxPlans: v.IndexPlans,
|
|
tblPlans: v.TablePlans,
|
|
PushedLimit: v.PushedLimit,
|
|
idxNetDataSize: v.GetAvgTableRowSize(),
|
|
avgRowSize: v.GetAvgTableRowSize(),
|
|
}
|
|
|
|
if v.ExtraHandleCol != nil {
|
|
e.handleIdx = append(e.handleIdx, v.ExtraHandleCol.Index)
|
|
e.handleCols = []*expression.Column{v.ExtraHandleCol}
|
|
} else {
|
|
for _, handleCol := range v.CommonHandleCols {
|
|
e.handleIdx = append(e.handleIdx, handleCol.Index)
|
|
}
|
|
e.handleCols = v.CommonHandleCols
|
|
e.primaryKeyIndex = tables.FindPrimaryIndex(tbl.Meta())
|
|
}
|
|
return e, nil
|
|
}
|
|
|
|
func (b *executorBuilder) buildIndexLookUpReader(v *plannercore.PhysicalIndexLookUpReader) exec.Executor {
|
|
if b.Ti != nil {
|
|
b.Ti.UseTableLookUp.Store(true)
|
|
}
|
|
is := v.IndexPlans[0].(*plannercore.PhysicalIndexScan)
|
|
if err := b.validCanReadTemporaryOrCacheTable(is.Table); err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
|
|
ret, err := buildNoRangeIndexLookUpReader(b, v)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
|
|
if ret.table.Meta().TempTableType != model.TempTableNone {
|
|
ret.dummy = true
|
|
}
|
|
|
|
ts := v.TablePlans[0].(*plannercore.PhysicalTableScan)
|
|
|
|
ret.ranges = is.Ranges
|
|
executor_metrics.ExecutorCounterIndexLookUpExecutor.Inc()
|
|
|
|
sctx := b.ctx.GetSessionVars().StmtCtx
|
|
sctx.IndexNames = append(sctx.IndexNames, is.Table.Name.O+":"+is.Index.Name.O)
|
|
sctx.TableIDs = append(sctx.TableIDs, ts.Table.ID)
|
|
|
|
if !b.ctx.GetSessionVars().StmtCtx.UseDynamicPartitionPrune() {
|
|
return ret
|
|
}
|
|
|
|
if pi := is.Table.GetPartitionInfo(); pi == nil {
|
|
return ret
|
|
}
|
|
|
|
if is.Index.Global || len(is.ByItems) != 0 {
|
|
tmp, ok := b.is.TableByID(ts.Table.ID)
|
|
if !ok {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
tbl, ok := tmp.(table.PartitionedTable)
|
|
if !ok {
|
|
b.err = exeerrors.ErrBuildExecutor
|
|
return nil
|
|
}
|
|
ret.partitionIDMap, err = getPartitionIdsAfterPruning(b.ctx, tbl, &v.PartitionInfo)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
|
|
if is.Index.Global {
|
|
return ret
|
|
}
|
|
}
|
|
if ok, _ := is.IsPartition(); ok {
|
|
// Already pruned when translated to logical union.
|
|
return ret
|
|
}
|
|
|
|
tmp, _ := b.is.TableByID(is.Table.ID)
|
|
tbl := tmp.(table.PartitionedTable)
|
|
partitions, err := partitionPruning(b.ctx, tbl, v.PartitionInfo.PruningConds, v.PartitionInfo.PartitionNames, v.PartitionInfo.Columns, v.PartitionInfo.ColumnNames)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
ret.partitionTableMode = true
|
|
ret.prunedPartitions = partitions
|
|
return ret
|
|
}
|
|
|
|
func buildNoRangeIndexMergeReader(b *executorBuilder, v *plannercore.PhysicalIndexMergeReader) (*IndexMergeReaderExecutor, error) {
|
|
partialPlanCount := len(v.PartialPlans)
|
|
partialReqs := make([]*tipb.DAGRequest, 0, partialPlanCount)
|
|
partialDataSizes := make([]float64, 0, partialPlanCount)
|
|
indexes := make([]*model.IndexInfo, 0, partialPlanCount)
|
|
descs := make([]bool, 0, partialPlanCount)
|
|
ts := v.TablePlans[0].(*plannercore.PhysicalTableScan)
|
|
isCorColInPartialFilters := make([]bool, 0, partialPlanCount)
|
|
isCorColInPartialAccess := make([]bool, 0, partialPlanCount)
|
|
for i := 0; i < partialPlanCount; i++ {
|
|
var tempReq *tipb.DAGRequest
|
|
var err error
|
|
|
|
if is, ok := v.PartialPlans[i][0].(*plannercore.PhysicalIndexScan); ok {
|
|
tempReq, err = buildIndexReq(b.ctx, is.Index.Columns, ts.HandleCols.NumCols(), v.PartialPlans[i])
|
|
descs = append(descs, is.Desc)
|
|
indexes = append(indexes, is.Index)
|
|
} else {
|
|
ts := v.PartialPlans[i][0].(*plannercore.PhysicalTableScan)
|
|
tempReq, _, err = buildTableReq(b, len(ts.Columns), v.PartialPlans[i])
|
|
descs = append(descs, ts.Desc)
|
|
indexes = append(indexes, nil)
|
|
}
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
collect := false
|
|
tempReq.CollectRangeCounts = &collect
|
|
partialReqs = append(partialReqs, tempReq)
|
|
isCorColInPartialFilters = append(isCorColInPartialFilters, b.corColInDistPlan(v.PartialPlans[i]))
|
|
isCorColInPartialAccess = append(isCorColInPartialAccess, b.corColInAccess(v.PartialPlans[i][0]))
|
|
partialDataSizes = append(partialDataSizes, v.GetPartialReaderNetDataSize(v.PartialPlans[i][0]))
|
|
}
|
|
tableReq, tblInfo, err := buildTableReq(b, v.Schema().Len(), v.TablePlans)
|
|
isCorColInTableFilter := b.corColInDistPlan(v.TablePlans)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
startTS, err := b.getSnapshotTS()
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
readerBuilder, err := b.newDataReaderBuilder(nil)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
paging := b.ctx.GetSessionVars().EnablePaging
|
|
e := &IndexMergeReaderExecutor{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
dagPBs: partialReqs,
|
|
startTS: startTS,
|
|
table: tblInfo,
|
|
indexes: indexes,
|
|
descs: descs,
|
|
tableRequest: tableReq,
|
|
columns: ts.Columns,
|
|
partialPlans: v.PartialPlans,
|
|
tblPlans: v.TablePlans,
|
|
partialNetDataSizes: partialDataSizes,
|
|
dataAvgRowSize: v.GetAvgTableRowSize(),
|
|
dataReaderBuilder: readerBuilder,
|
|
paging: paging,
|
|
handleCols: v.HandleCols,
|
|
isCorColInPartialFilters: isCorColInPartialFilters,
|
|
isCorColInTableFilter: isCorColInTableFilter,
|
|
isCorColInPartialAccess: isCorColInPartialAccess,
|
|
isIntersection: v.IsIntersectionType,
|
|
byItems: v.ByItems,
|
|
pushedLimit: v.PushedLimit,
|
|
keepOrder: v.KeepOrder,
|
|
}
|
|
collectTable := false
|
|
e.tableRequest.CollectRangeCounts = &collectTable
|
|
return e, nil
|
|
}
|
|
|
|
func (b *executorBuilder) buildIndexMergeReader(v *plannercore.PhysicalIndexMergeReader) exec.Executor {
|
|
if b.Ti != nil {
|
|
b.Ti.UseIndexMerge = true
|
|
b.Ti.UseTableLookUp.Store(true)
|
|
}
|
|
ts := v.TablePlans[0].(*plannercore.PhysicalTableScan)
|
|
if err := b.validCanReadTemporaryOrCacheTable(ts.Table); err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
|
|
ret, err := buildNoRangeIndexMergeReader(b, v)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
ret.ranges = make([][]*ranger.Range, 0, len(v.PartialPlans))
|
|
sctx := b.ctx.GetSessionVars().StmtCtx
|
|
for i := 0; i < len(v.PartialPlans); i++ {
|
|
if is, ok := v.PartialPlans[i][0].(*plannercore.PhysicalIndexScan); ok {
|
|
ret.ranges = append(ret.ranges, is.Ranges)
|
|
sctx.IndexNames = append(sctx.IndexNames, is.Table.Name.O+":"+is.Index.Name.O)
|
|
} else {
|
|
ret.ranges = append(ret.ranges, v.PartialPlans[i][0].(*plannercore.PhysicalTableScan).Ranges)
|
|
if ret.table.Meta().IsCommonHandle {
|
|
tblInfo := ret.table.Meta()
|
|
sctx.IndexNames = append(sctx.IndexNames, tblInfo.Name.O+":"+tables.FindPrimaryIndex(tblInfo).Name.O)
|
|
}
|
|
}
|
|
}
|
|
sctx.TableIDs = append(sctx.TableIDs, ts.Table.ID)
|
|
executor_metrics.ExecutorCounterIndexMergeReaderExecutor.Inc()
|
|
|
|
if !b.ctx.GetSessionVars().StmtCtx.UseDynamicPartitionPrune() {
|
|
return ret
|
|
}
|
|
|
|
if pi := ts.Table.GetPartitionInfo(); pi == nil {
|
|
return ret
|
|
}
|
|
|
|
tmp, _ := b.is.TableByID(ts.Table.ID)
|
|
partitions, err := partitionPruning(b.ctx, tmp.(table.PartitionedTable), v.PartitionInfo.PruningConds, v.PartitionInfo.PartitionNames, v.PartitionInfo.Columns, v.PartitionInfo.ColumnNames)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
ret.partitionTableMode, ret.prunedPartitions = true, partitions
|
|
return ret
|
|
}
|
|
|
|
// dataReaderBuilder build an executor.
|
|
// The executor can be used to read data in the ranges which are constructed by datums.
|
|
// Differences from executorBuilder:
|
|
// 1. dataReaderBuilder calculate data range from argument, rather than plan.
|
|
// 2. the result executor is already opened.
|
|
type dataReaderBuilder struct {
|
|
plannercore.Plan
|
|
*executorBuilder
|
|
|
|
selectResultHook // for testing
|
|
once struct {
|
|
sync.Once
|
|
condPruneResult []table.PhysicalTable
|
|
err error
|
|
}
|
|
}
|
|
|
|
type mockPhysicalIndexReader struct {
|
|
plannercore.PhysicalPlan
|
|
|
|
e exec.Executor
|
|
}
|
|
|
|
// MemoryUsage of mockPhysicalIndexReader is only for testing
|
|
func (*mockPhysicalIndexReader) MemoryUsage() (sum int64) {
|
|
return
|
|
}
|
|
|
|
func (builder *dataReaderBuilder) buildExecutorForIndexJoin(ctx context.Context, lookUpContents []*indexJoinLookUpContent,
|
|
indexRanges []*ranger.Range, keyOff2IdxOff []int, cwc *plannercore.ColWithCmpFuncManager, canReorderHandles bool, memTracker *memory.Tracker, interruptSignal *atomic.Value) (exec.Executor, error) {
|
|
return builder.buildExecutorForIndexJoinInternal(ctx, builder.Plan, lookUpContents, indexRanges, keyOff2IdxOff, cwc, canReorderHandles, memTracker, interruptSignal)
|
|
}
|
|
|
|
func (builder *dataReaderBuilder) buildExecutorForIndexJoinInternal(ctx context.Context, plan plannercore.Plan, lookUpContents []*indexJoinLookUpContent,
|
|
indexRanges []*ranger.Range, keyOff2IdxOff []int, cwc *plannercore.ColWithCmpFuncManager, canReorderHandles bool, memTracker *memory.Tracker, interruptSignal *atomic.Value) (exec.Executor, error) {
|
|
switch v := plan.(type) {
|
|
case *plannercore.PhysicalTableReader:
|
|
return builder.buildTableReaderForIndexJoin(ctx, v, lookUpContents, indexRanges, keyOff2IdxOff, cwc, canReorderHandles, memTracker, interruptSignal)
|
|
case *plannercore.PhysicalIndexReader:
|
|
return builder.buildIndexReaderForIndexJoin(ctx, v, lookUpContents, indexRanges, keyOff2IdxOff, cwc, memTracker, interruptSignal)
|
|
case *plannercore.PhysicalIndexLookUpReader:
|
|
return builder.buildIndexLookUpReaderForIndexJoin(ctx, v, lookUpContents, indexRanges, keyOff2IdxOff, cwc, memTracker, interruptSignal)
|
|
case *plannercore.PhysicalUnionScan:
|
|
return builder.buildUnionScanForIndexJoin(ctx, v, lookUpContents, indexRanges, keyOff2IdxOff, cwc, canReorderHandles, memTracker, interruptSignal)
|
|
// The inner child of IndexJoin might be Projection when a combination of the following conditions is true:
|
|
// 1. The inner child fetch data using indexLookupReader
|
|
// 2. PK is not handle
|
|
// 3. The inner child needs to keep order
|
|
// In this case, an extra column tidb_rowid will be appended in the output result of IndexLookupReader(see copTask.doubleReadNeedProj).
|
|
// Then we need a Projection upon IndexLookupReader to prune the redundant column.
|
|
case *plannercore.PhysicalProjection:
|
|
return builder.buildProjectionForIndexJoin(ctx, v, lookUpContents, indexRanges, keyOff2IdxOff, cwc, memTracker, interruptSignal)
|
|
// Need to support physical selection because after PR 16389, TiDB will push down all the expr supported by TiKV or TiFlash
|
|
// in predicate push down stage, so if there is an expr which only supported by TiFlash, a physical selection will be added after index read
|
|
case *plannercore.PhysicalSelection:
|
|
childExec, err := builder.buildExecutorForIndexJoinInternal(ctx, v.Children()[0], lookUpContents, indexRanges, keyOff2IdxOff, cwc, canReorderHandles, memTracker, interruptSignal)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
exec := &SelectionExec{
|
|
BaseExecutor: exec.NewBaseExecutor(builder.ctx, v.Schema(), v.ID(), childExec),
|
|
filters: v.Conditions,
|
|
}
|
|
err = exec.open(ctx)
|
|
return exec, err
|
|
case *mockPhysicalIndexReader:
|
|
return v.e, nil
|
|
}
|
|
return nil, errors.New("Wrong plan type for dataReaderBuilder")
|
|
}
|
|
|
|
func (builder *dataReaderBuilder) buildUnionScanForIndexJoin(ctx context.Context, v *plannercore.PhysicalUnionScan,
|
|
values []*indexJoinLookUpContent, indexRanges []*ranger.Range, keyOff2IdxOff []int,
|
|
cwc *plannercore.ColWithCmpFuncManager, canReorderHandles bool, memTracker *memory.Tracker, interruptSignal *atomic.Value) (exec.Executor, error) {
|
|
childBuilder, err := builder.newDataReaderBuilder(v.Children()[0])
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
reader, err := childBuilder.buildExecutorForIndexJoin(ctx, values, indexRanges, keyOff2IdxOff, cwc, canReorderHandles, memTracker, interruptSignal)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
ret := builder.buildUnionScanFromReader(reader, v)
|
|
if us, ok := ret.(*UnionScanExec); ok {
|
|
err = us.open(ctx)
|
|
}
|
|
return ret, err
|
|
}
|
|
|
|
func (builder *dataReaderBuilder) buildTableReaderForIndexJoin(ctx context.Context, v *plannercore.PhysicalTableReader,
|
|
lookUpContents []*indexJoinLookUpContent, indexRanges []*ranger.Range, keyOff2IdxOff []int,
|
|
cwc *plannercore.ColWithCmpFuncManager, canReorderHandles bool, memTracker *memory.Tracker, interruptSignal *atomic.Value) (exec.Executor, error) {
|
|
e, err := buildNoRangeTableReader(builder.executorBuilder, v)
|
|
if !canReorderHandles {
|
|
// `canReorderHandles` is set to false only in IndexMergeJoin. IndexMergeJoin will trigger a dead loop problem
|
|
// when enabling paging(tidb/issues/35831). But IndexMergeJoin is not visible to the user and is deprecated
|
|
// for now. Thus, we disable paging here.
|
|
e.paging = false
|
|
}
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
tbInfo := e.table.Meta()
|
|
if tbInfo.GetPartitionInfo() == nil || !builder.ctx.GetSessionVars().StmtCtx.UseDynamicPartitionPrune() {
|
|
if v.IsCommonHandle {
|
|
kvRanges, err := buildKvRangesForIndexJoin(e.Ctx(), getPhysicalTableID(e.table), -1, lookUpContents, indexRanges, keyOff2IdxOff, cwc, memTracker, interruptSignal)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
return builder.buildTableReaderFromKvRanges(ctx, e, kvRanges)
|
|
}
|
|
handles, _ := dedupHandles(lookUpContents)
|
|
return builder.buildTableReaderFromHandles(ctx, e, handles, canReorderHandles)
|
|
}
|
|
tbl, _ := builder.is.TableByID(tbInfo.ID)
|
|
pt := tbl.(table.PartitionedTable)
|
|
partitionInfo := &v.PartitionInfo
|
|
usedPartitionList, err := builder.partitionPruning(pt, partitionInfo.PruningConds, partitionInfo.PartitionNames, partitionInfo.Columns, partitionInfo.ColumnNames)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
usedPartitions := make(map[int64]table.PhysicalTable, len(usedPartitionList))
|
|
for _, p := range usedPartitionList {
|
|
usedPartitions[p.GetPhysicalID()] = p
|
|
}
|
|
var kvRanges []kv.KeyRange
|
|
var keyColOffsets []int
|
|
if len(lookUpContents) > 0 {
|
|
keyColOffsets = getPartitionKeyColOffsets(lookUpContents[0].keyColIDs, pt)
|
|
}
|
|
if v.IsCommonHandle {
|
|
if len(keyColOffsets) > 0 {
|
|
locateKey := make([]types.Datum, len(pt.Cols()))
|
|
kvRanges = make([]kv.KeyRange, 0, len(lookUpContents))
|
|
// lookUpContentsByPID groups lookUpContents by pid(partition) so that kv ranges for same partition can be merged.
|
|
lookUpContentsByPID := make(map[int64][]*indexJoinLookUpContent)
|
|
for _, content := range lookUpContents {
|
|
for i, data := range content.keys {
|
|
locateKey[keyColOffsets[i]] = data
|
|
}
|
|
p, err := pt.GetPartitionByRow(e.Ctx(), locateKey)
|
|
if table.ErrNoPartitionForGivenValue.Equal(err) {
|
|
continue
|
|
}
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
pid := p.GetPhysicalID()
|
|
if _, ok := usedPartitions[pid]; !ok {
|
|
continue
|
|
}
|
|
lookUpContentsByPID[pid] = append(lookUpContentsByPID[pid], content)
|
|
}
|
|
for pid, contents := range lookUpContentsByPID {
|
|
// buildKvRanges for each partition.
|
|
tmp, err := buildKvRangesForIndexJoin(e.Ctx(), pid, -1, contents, indexRanges, keyOff2IdxOff, cwc, nil, interruptSignal)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
kvRanges = append(kvRanges, tmp...)
|
|
}
|
|
} else {
|
|
kvRanges = make([]kv.KeyRange, 0, len(usedPartitions)*len(lookUpContents))
|
|
for _, p := range usedPartitionList {
|
|
tmp, err := buildKvRangesForIndexJoin(e.Ctx(), p.GetPhysicalID(), -1, lookUpContents, indexRanges, keyOff2IdxOff, cwc, memTracker, interruptSignal)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
kvRanges = append(tmp, kvRanges...)
|
|
}
|
|
}
|
|
// The key ranges should be ordered.
|
|
slices.SortFunc(kvRanges, func(i, j kv.KeyRange) int {
|
|
return bytes.Compare(i.StartKey, j.StartKey)
|
|
})
|
|
return builder.buildTableReaderFromKvRanges(ctx, e, kvRanges)
|
|
}
|
|
|
|
handles, lookUpContents := dedupHandles(lookUpContents)
|
|
|
|
if len(keyColOffsets) > 0 {
|
|
locateKey := make([]types.Datum, len(pt.Cols()))
|
|
kvRanges = make([]kv.KeyRange, 0, len(lookUpContents))
|
|
for _, content := range lookUpContents {
|
|
for i, data := range content.keys {
|
|
locateKey[keyColOffsets[i]] = data
|
|
}
|
|
p, err := pt.GetPartitionByRow(e.Ctx(), locateKey)
|
|
if table.ErrNoPartitionForGivenValue.Equal(err) {
|
|
continue
|
|
}
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
pid := p.GetPhysicalID()
|
|
if _, ok := usedPartitions[pid]; !ok {
|
|
continue
|
|
}
|
|
handle := kv.IntHandle(content.keys[0].GetInt64())
|
|
ranges, _ := distsql.TableHandlesToKVRanges(pid, []kv.Handle{handle})
|
|
kvRanges = append(kvRanges, ranges...)
|
|
}
|
|
} else {
|
|
for _, p := range usedPartitionList {
|
|
ranges, _ := distsql.TableHandlesToKVRanges(p.GetPhysicalID(), handles)
|
|
kvRanges = append(kvRanges, ranges...)
|
|
}
|
|
}
|
|
|
|
// The key ranges should be ordered.
|
|
slices.SortFunc(kvRanges, func(i, j kv.KeyRange) int {
|
|
return bytes.Compare(i.StartKey, j.StartKey)
|
|
})
|
|
return builder.buildTableReaderFromKvRanges(ctx, e, kvRanges)
|
|
}
|
|
|
|
func dedupHandles(lookUpContents []*indexJoinLookUpContent) ([]kv.Handle, []*indexJoinLookUpContent) {
|
|
handles := make([]kv.Handle, 0, len(lookUpContents))
|
|
validLookUpContents := make([]*indexJoinLookUpContent, 0, len(lookUpContents))
|
|
for _, content := range lookUpContents {
|
|
isValidHandle := true
|
|
handle := kv.IntHandle(content.keys[0].GetInt64())
|
|
for _, key := range content.keys {
|
|
if handle.IntValue() != key.GetInt64() {
|
|
isValidHandle = false
|
|
break
|
|
}
|
|
}
|
|
if isValidHandle {
|
|
handles = append(handles, handle)
|
|
validLookUpContents = append(validLookUpContents, content)
|
|
}
|
|
}
|
|
return handles, validLookUpContents
|
|
}
|
|
|
|
type kvRangeBuilderFromRangeAndPartition struct {
|
|
sctx sessionctx.Context
|
|
partitions []table.PhysicalTable
|
|
}
|
|
|
|
func (h kvRangeBuilderFromRangeAndPartition) buildKeyRangeSeparately(ranges []*ranger.Range) ([]int64, [][]kv.KeyRange, error) {
|
|
ret := make([][]kv.KeyRange, len(h.partitions))
|
|
pids := make([]int64, 0, len(h.partitions))
|
|
for i, p := range h.partitions {
|
|
pid := p.GetPhysicalID()
|
|
pids = append(pids, pid)
|
|
meta := p.Meta()
|
|
if len(ranges) == 0 {
|
|
continue
|
|
}
|
|
kvRange, err := distsql.TableHandleRangesToKVRanges(h.sctx.GetSessionVars().StmtCtx, []int64{pid}, meta != nil && meta.IsCommonHandle, ranges)
|
|
if err != nil {
|
|
return nil, nil, err
|
|
}
|
|
ret[i] = kvRange.AppendSelfTo(ret[i])
|
|
}
|
|
return pids, ret, nil
|
|
}
|
|
|
|
func (h kvRangeBuilderFromRangeAndPartition) buildKeyRange(ranges []*ranger.Range) ([][]kv.KeyRange, error) {
|
|
ret := make([][]kv.KeyRange, len(h.partitions))
|
|
if len(ranges) == 0 {
|
|
return ret, nil
|
|
}
|
|
for i, p := range h.partitions {
|
|
pid := p.GetPhysicalID()
|
|
meta := p.Meta()
|
|
kvRange, err := distsql.TableHandleRangesToKVRanges(h.sctx.GetSessionVars().StmtCtx, []int64{pid}, meta != nil && meta.IsCommonHandle, ranges)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
ret[i] = kvRange.AppendSelfTo(ret[i])
|
|
}
|
|
return ret, nil
|
|
}
|
|
|
|
// newClosestReadAdjuster let the request be sent to closest replica(within the same zone)
|
|
// if response size exceeds certain threshold.
|
|
func newClosestReadAdjuster(ctx sessionctx.Context, req *kv.Request, netDataSize float64) kv.CoprRequestAdjuster {
|
|
if req.ReplicaRead != kv.ReplicaReadClosestAdaptive {
|
|
return nil
|
|
}
|
|
return func(req *kv.Request, copTaskCount int) bool {
|
|
// copTaskCount is the number of coprocessor requests
|
|
if int64(netDataSize/float64(copTaskCount)) >= ctx.GetSessionVars().ReplicaClosestReadThreshold {
|
|
req.MatchStoreLabels = append(req.MatchStoreLabels, &metapb.StoreLabel{
|
|
Key: placement.DCLabelKey,
|
|
Value: config.GetTxnScopeFromConfig(),
|
|
})
|
|
return true
|
|
}
|
|
// reset to read from leader when the data size is small.
|
|
req.ReplicaRead = kv.ReplicaReadLeader
|
|
return false
|
|
}
|
|
}
|
|
|
|
func (builder *dataReaderBuilder) buildTableReaderBase(ctx context.Context, e *TableReaderExecutor, reqBuilderWithRange distsql.RequestBuilder) (*TableReaderExecutor, error) {
|
|
startTS, err := builder.getSnapshotTS()
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
kvReq, err := reqBuilderWithRange.
|
|
SetDAGRequest(e.dagPB).
|
|
SetStartTS(startTS).
|
|
SetDesc(e.desc).
|
|
SetKeepOrder(e.keepOrder).
|
|
SetTxnScope(e.txnScope).
|
|
SetReadReplicaScope(e.readReplicaScope).
|
|
SetIsStaleness(e.isStaleness).
|
|
SetFromSessionVars(e.Ctx().GetSessionVars()).
|
|
SetFromInfoSchema(e.Ctx().GetInfoSchema()).
|
|
SetClosestReplicaReadAdjuster(newClosestReadAdjuster(e.Ctx(), &reqBuilderWithRange.Request, e.netDataSize)).
|
|
SetPaging(e.paging).
|
|
SetConnID(e.Ctx().GetSessionVars().ConnectionID).
|
|
Build()
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
e.kvRanges = kvReq.KeyRanges.AppendSelfTo(e.kvRanges)
|
|
e.resultHandler = &tableResultHandler{}
|
|
result, err := builder.SelectResult(ctx, builder.ctx, kvReq, exec.RetTypes(e), getPhysicalPlanIDs(e.plans), e.ID())
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
e.resultHandler.open(nil, result)
|
|
return e, nil
|
|
}
|
|
|
|
func (builder *dataReaderBuilder) buildTableReaderFromHandles(ctx context.Context, e *TableReaderExecutor, handles []kv.Handle, canReorderHandles bool) (*TableReaderExecutor, error) {
|
|
if canReorderHandles {
|
|
slices.SortFunc(handles, func(i, j kv.Handle) int {
|
|
return i.Compare(j)
|
|
})
|
|
}
|
|
var b distsql.RequestBuilder
|
|
if len(handles) > 0 {
|
|
if _, ok := handles[0].(kv.PartitionHandle); ok {
|
|
b.SetPartitionsAndHandles(handles)
|
|
} else {
|
|
b.SetTableHandles(getPhysicalTableID(e.table), handles)
|
|
}
|
|
} else {
|
|
b.SetKeyRanges(nil)
|
|
}
|
|
return builder.buildTableReaderBase(ctx, e, b)
|
|
}
|
|
|
|
func (builder *dataReaderBuilder) buildTableReaderFromKvRanges(ctx context.Context, e *TableReaderExecutor, ranges []kv.KeyRange) (exec.Executor, error) {
|
|
var b distsql.RequestBuilder
|
|
b.SetKeyRanges(ranges)
|
|
return builder.buildTableReaderBase(ctx, e, b)
|
|
}
|
|
|
|
func (builder *dataReaderBuilder) buildIndexReaderForIndexJoin(ctx context.Context, v *plannercore.PhysicalIndexReader,
|
|
lookUpContents []*indexJoinLookUpContent, indexRanges []*ranger.Range, keyOff2IdxOff []int, cwc *plannercore.ColWithCmpFuncManager, memoryTracker *memory.Tracker, interruptSignal *atomic.Value) (exec.Executor, error) {
|
|
e, err := buildNoRangeIndexReader(builder.executorBuilder, v)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
tbInfo := e.table.Meta()
|
|
if tbInfo.GetPartitionInfo() == nil || !builder.ctx.GetSessionVars().StmtCtx.UseDynamicPartitionPrune() {
|
|
kvRanges, err := buildKvRangesForIndexJoin(e.Ctx(), e.physicalTableID, e.index.ID, lookUpContents, indexRanges, keyOff2IdxOff, cwc, memoryTracker, interruptSignal)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
err = e.open(ctx, kvRanges)
|
|
return e, err
|
|
}
|
|
|
|
is := v.IndexPlans[0].(*plannercore.PhysicalIndexScan)
|
|
if is.Index.Global {
|
|
tmp, ok := builder.is.TableByID(tbInfo.ID)
|
|
if !ok {
|
|
return nil, infoschema.ErrTableNotExists
|
|
}
|
|
tbl, ok := tmp.(table.PartitionedTable)
|
|
if !ok {
|
|
return nil, exeerrors.ErrBuildExecutor
|
|
}
|
|
e.partitionIDMap, err = getPartitionIdsAfterPruning(builder.ctx, tbl, &v.PartitionInfo)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
if e.ranges, err = buildRangesForIndexJoin(e.Ctx(), lookUpContents, indexRanges, keyOff2IdxOff, cwc); err != nil {
|
|
return nil, err
|
|
}
|
|
if err := e.Open(ctx); err != nil {
|
|
return nil, err
|
|
}
|
|
return e, nil
|
|
}
|
|
|
|
tbl, _ := builder.executorBuilder.is.TableByID(tbInfo.ID)
|
|
usedPartition, canPrune, contentPos, err := builder.prunePartitionForInnerExecutor(tbl, &v.PartitionInfo, lookUpContents)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
if len(usedPartition) != 0 {
|
|
if canPrune {
|
|
rangeMap, err := buildIndexRangeForEachPartition(e.Ctx(), usedPartition, contentPos, lookUpContents, indexRanges, keyOff2IdxOff, cwc)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
e.partitions = usedPartition
|
|
e.ranges = indexRanges
|
|
e.partRangeMap = rangeMap
|
|
} else {
|
|
e.partitions = usedPartition
|
|
if e.ranges, err = buildRangesForIndexJoin(e.Ctx(), lookUpContents, indexRanges, keyOff2IdxOff, cwc); err != nil {
|
|
return nil, err
|
|
}
|
|
}
|
|
if err := e.Open(ctx); err != nil {
|
|
return nil, err
|
|
}
|
|
return e, nil
|
|
}
|
|
ret := &TableDualExec{BaseExecutor: *e.Base()}
|
|
err = ret.Open(ctx)
|
|
return ret, err
|
|
}
|
|
|
|
func (builder *dataReaderBuilder) buildIndexLookUpReaderForIndexJoin(ctx context.Context, v *plannercore.PhysicalIndexLookUpReader,
|
|
lookUpContents []*indexJoinLookUpContent, indexRanges []*ranger.Range, keyOff2IdxOff []int, cwc *plannercore.ColWithCmpFuncManager, memTracker *memory.Tracker, interruptSignal *atomic.Value) (exec.Executor, error) {
|
|
if builder.Ti != nil {
|
|
builder.Ti.UseTableLookUp.Store(true)
|
|
}
|
|
e, err := buildNoRangeIndexLookUpReader(builder.executorBuilder, v)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
tbInfo := e.table.Meta()
|
|
if tbInfo.GetPartitionInfo() == nil || !builder.ctx.GetSessionVars().StmtCtx.UseDynamicPartitionPrune() {
|
|
e.kvRanges, err = buildKvRangesForIndexJoin(e.Ctx(), getPhysicalTableID(e.table), e.index.ID, lookUpContents, indexRanges, keyOff2IdxOff, cwc, memTracker, interruptSignal)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
err = e.open(ctx)
|
|
return e, err
|
|
}
|
|
|
|
is := v.IndexPlans[0].(*plannercore.PhysicalIndexScan)
|
|
ts := v.TablePlans[0].(*plannercore.PhysicalTableScan)
|
|
if is.Index.Global {
|
|
tmp, ok := builder.is.TableByID(ts.Table.ID)
|
|
if !ok {
|
|
return nil, infoschema.ErrTableNotExists
|
|
}
|
|
tbl, ok := tmp.(table.PartitionedTable)
|
|
if !ok {
|
|
return nil, exeerrors.ErrBuildExecutor
|
|
}
|
|
e.partitionIDMap, err = getPartitionIdsAfterPruning(builder.ctx, tbl, &v.PartitionInfo)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
e.ranges, err = buildRangesForIndexJoin(e.Ctx(), lookUpContents, indexRanges, keyOff2IdxOff, cwc)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
if err := e.Open(ctx); err != nil {
|
|
return nil, err
|
|
}
|
|
return e, err
|
|
}
|
|
|
|
tbl, _ := builder.executorBuilder.is.TableByID(tbInfo.ID)
|
|
usedPartition, canPrune, contentPos, err := builder.prunePartitionForInnerExecutor(tbl, &v.PartitionInfo, lookUpContents)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
if len(usedPartition) != 0 {
|
|
if canPrune {
|
|
rangeMap, err := buildIndexRangeForEachPartition(e.Ctx(), usedPartition, contentPos, lookUpContents, indexRanges, keyOff2IdxOff, cwc)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
e.prunedPartitions = usedPartition
|
|
e.ranges = indexRanges
|
|
e.partitionRangeMap = rangeMap
|
|
} else {
|
|
e.prunedPartitions = usedPartition
|
|
e.ranges, err = buildRangesForIndexJoin(e.Ctx(), lookUpContents, indexRanges, keyOff2IdxOff, cwc)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
}
|
|
e.partitionTableMode = true
|
|
if err := e.Open(ctx); err != nil {
|
|
return nil, err
|
|
}
|
|
return e, err
|
|
}
|
|
ret := &TableDualExec{BaseExecutor: *e.Base()}
|
|
err = ret.Open(ctx)
|
|
return ret, err
|
|
}
|
|
|
|
func (builder *dataReaderBuilder) buildProjectionForIndexJoin(ctx context.Context, v *plannercore.PhysicalProjection,
|
|
lookUpContents []*indexJoinLookUpContent, indexRanges []*ranger.Range, keyOff2IdxOff []int, cwc *plannercore.ColWithCmpFuncManager, memTracker *memory.Tracker, interruptSignal *atomic.Value) (exec.Executor, error) {
|
|
var (
|
|
childExec exec.Executor
|
|
err error
|
|
)
|
|
switch op := v.Children()[0].(type) {
|
|
case *plannercore.PhysicalIndexLookUpReader:
|
|
if childExec, err = builder.buildIndexLookUpReaderForIndexJoin(ctx, op, lookUpContents, indexRanges, keyOff2IdxOff, cwc, memTracker, interruptSignal); err != nil {
|
|
return nil, err
|
|
}
|
|
case *plannercore.PhysicalTableReader:
|
|
if childExec, err = builder.buildTableReaderForIndexJoin(ctx, op, lookUpContents, indexRanges, keyOff2IdxOff, cwc, true, memTracker, interruptSignal); err != nil {
|
|
return nil, err
|
|
}
|
|
default:
|
|
return nil, errors.Errorf("inner child of Projection should be IndexLookupReader/TableReader, but got %T", v.Children()[0])
|
|
}
|
|
|
|
e := &ProjectionExec{
|
|
BaseExecutor: exec.NewBaseExecutor(builder.ctx, v.Schema(), v.ID(), childExec),
|
|
numWorkers: int64(builder.ctx.GetSessionVars().ProjectionConcurrency()),
|
|
evaluatorSuit: expression.NewEvaluatorSuite(v.Exprs, v.AvoidColumnEvaluator),
|
|
calculateNoDelay: v.CalculateNoDelay,
|
|
}
|
|
|
|
// If the calculation row count for this Projection operator is smaller
|
|
// than a Chunk size, we turn back to the un-parallel Projection
|
|
// implementation to reduce the goroutine overhead.
|
|
if int64(v.StatsCount()) < int64(builder.ctx.GetSessionVars().MaxChunkSize) {
|
|
e.numWorkers = 0
|
|
}
|
|
err = e.open(ctx)
|
|
|
|
return e, err
|
|
}
|
|
|
|
// buildRangesForIndexJoin builds kv ranges for index join when the inner plan is index scan plan.
|
|
func buildRangesForIndexJoin(ctx sessionctx.Context, lookUpContents []*indexJoinLookUpContent,
|
|
ranges []*ranger.Range, keyOff2IdxOff []int, cwc *plannercore.ColWithCmpFuncManager) ([]*ranger.Range, error) {
|
|
retRanges := make([]*ranger.Range, 0, len(ranges)*len(lookUpContents))
|
|
lastPos := len(ranges[0].LowVal) - 1
|
|
tmpDatumRanges := make([]*ranger.Range, 0, len(lookUpContents))
|
|
for _, content := range lookUpContents {
|
|
for _, ran := range ranges {
|
|
for keyOff, idxOff := range keyOff2IdxOff {
|
|
ran.LowVal[idxOff] = content.keys[keyOff]
|
|
ran.HighVal[idxOff] = content.keys[keyOff]
|
|
}
|
|
}
|
|
if cwc == nil {
|
|
// A deep copy is need here because the old []*range.Range is overwriten
|
|
for _, ran := range ranges {
|
|
retRanges = append(retRanges, ran.Clone())
|
|
}
|
|
continue
|
|
}
|
|
nextColRanges, err := cwc.BuildRangesByRow(ctx, content.row)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
for _, nextColRan := range nextColRanges {
|
|
for _, ran := range ranges {
|
|
ran.LowVal[lastPos] = nextColRan.LowVal[0]
|
|
ran.HighVal[lastPos] = nextColRan.HighVal[0]
|
|
ran.LowExclude = nextColRan.LowExclude
|
|
ran.HighExclude = nextColRan.HighExclude
|
|
ran.Collators = nextColRan.Collators
|
|
tmpDatumRanges = append(tmpDatumRanges, ran.Clone())
|
|
}
|
|
}
|
|
}
|
|
|
|
if cwc == nil {
|
|
return retRanges, nil
|
|
}
|
|
|
|
return ranger.UnionRanges(ctx, tmpDatumRanges, true)
|
|
}
|
|
|
|
// buildKvRangesForIndexJoin builds kv ranges for index join when the inner plan is index scan plan.
|
|
func buildKvRangesForIndexJoin(ctx sessionctx.Context, tableID, indexID int64, lookUpContents []*indexJoinLookUpContent,
|
|
ranges []*ranger.Range, keyOff2IdxOff []int, cwc *plannercore.ColWithCmpFuncManager, memTracker *memory.Tracker, interruptSignal *atomic.Value) (_ []kv.KeyRange, err error) {
|
|
kvRanges := make([]kv.KeyRange, 0, len(ranges)*len(lookUpContents))
|
|
if len(ranges) == 0 {
|
|
return []kv.KeyRange{}, nil
|
|
}
|
|
lastPos := len(ranges[0].LowVal) - 1
|
|
sc := ctx.GetSessionVars().StmtCtx
|
|
tmpDatumRanges := make([]*ranger.Range, 0, len(lookUpContents))
|
|
for _, content := range lookUpContents {
|
|
for _, ran := range ranges {
|
|
for keyOff, idxOff := range keyOff2IdxOff {
|
|
ran.LowVal[idxOff] = content.keys[keyOff]
|
|
ran.HighVal[idxOff] = content.keys[keyOff]
|
|
}
|
|
}
|
|
if cwc == nil {
|
|
// Index id is -1 means it's a common handle.
|
|
var tmpKvRanges *kv.KeyRanges
|
|
var err error
|
|
if indexID == -1 {
|
|
tmpKvRanges, err = distsql.CommonHandleRangesToKVRanges(sc, []int64{tableID}, ranges)
|
|
} else {
|
|
tmpKvRanges, err = distsql.IndexRangesToKVRangesWithInterruptSignal(sc, tableID, indexID, ranges, memTracker, interruptSignal)
|
|
}
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
kvRanges = tmpKvRanges.AppendSelfTo(kvRanges)
|
|
continue
|
|
}
|
|
nextColRanges, err := cwc.BuildRangesByRow(ctx, content.row)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
for _, nextColRan := range nextColRanges {
|
|
for _, ran := range ranges {
|
|
ran.LowVal[lastPos] = nextColRan.LowVal[0]
|
|
ran.HighVal[lastPos] = nextColRan.HighVal[0]
|
|
ran.LowExclude = nextColRan.LowExclude
|
|
ran.HighExclude = nextColRan.HighExclude
|
|
ran.Collators = nextColRan.Collators
|
|
tmpDatumRanges = append(tmpDatumRanges, ran.Clone())
|
|
}
|
|
}
|
|
}
|
|
if len(kvRanges) != 0 && memTracker != nil {
|
|
memTracker.Consume(int64(2 * cap(kvRanges[0].StartKey) * len(kvRanges)))
|
|
}
|
|
if len(tmpDatumRanges) != 0 && memTracker != nil {
|
|
memTracker.Consume(2 * int64(len(tmpDatumRanges)) * types.EstimatedMemUsage(tmpDatumRanges[0].LowVal, len(tmpDatumRanges)))
|
|
}
|
|
if cwc == nil {
|
|
slices.SortFunc(kvRanges, func(i, j kv.KeyRange) int {
|
|
return bytes.Compare(i.StartKey, j.StartKey)
|
|
})
|
|
return kvRanges, nil
|
|
}
|
|
|
|
tmpDatumRanges, err = ranger.UnionRanges(ctx, tmpDatumRanges, true)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
// Index id is -1 means it's a common handle.
|
|
if indexID == -1 {
|
|
tmpKeyRanges, err := distsql.CommonHandleRangesToKVRanges(ctx.GetSessionVars().StmtCtx, []int64{tableID}, tmpDatumRanges)
|
|
return tmpKeyRanges.FirstPartitionRange(), err
|
|
}
|
|
tmpKeyRanges, err := distsql.IndexRangesToKVRangesWithInterruptSignal(ctx.GetSessionVars().StmtCtx, tableID, indexID, tmpDatumRanges, memTracker, interruptSignal)
|
|
return tmpKeyRanges.FirstPartitionRange(), err
|
|
}
|
|
|
|
func (b *executorBuilder) buildWindow(v *plannercore.PhysicalWindow) exec.Executor {
|
|
childExec := b.build(v.Children()[0])
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
base := exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID(), childExec)
|
|
groupByItems := make([]expression.Expression, 0, len(v.PartitionBy))
|
|
for _, item := range v.PartitionBy {
|
|
groupByItems = append(groupByItems, item.Col)
|
|
}
|
|
orderByCols := make([]*expression.Column, 0, len(v.OrderBy))
|
|
for _, item := range v.OrderBy {
|
|
orderByCols = append(orderByCols, item.Col)
|
|
}
|
|
windowFuncs := make([]aggfuncs.AggFunc, 0, len(v.WindowFuncDescs))
|
|
partialResults := make([]aggfuncs.PartialResult, 0, len(v.WindowFuncDescs))
|
|
resultColIdx := v.Schema().Len() - len(v.WindowFuncDescs)
|
|
for _, desc := range v.WindowFuncDescs {
|
|
aggDesc, err := aggregation.NewAggFuncDescForWindowFunc(b.ctx, desc, false)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
agg := aggfuncs.BuildWindowFunctions(b.ctx, aggDesc, resultColIdx, orderByCols)
|
|
windowFuncs = append(windowFuncs, agg)
|
|
partialResult, _ := agg.AllocPartialResult()
|
|
partialResults = append(partialResults, partialResult)
|
|
resultColIdx++
|
|
}
|
|
|
|
if b.ctx.GetSessionVars().EnablePipelinedWindowExec {
|
|
exec := &PipelinedWindowExec{
|
|
BaseExecutor: base,
|
|
groupChecker: vecgroupchecker.NewVecGroupChecker(b.ctx, groupByItems),
|
|
numWindowFuncs: len(v.WindowFuncDescs),
|
|
}
|
|
|
|
exec.windowFuncs = windowFuncs
|
|
exec.partialResults = partialResults
|
|
if v.Frame == nil {
|
|
exec.start = &plannercore.FrameBound{
|
|
Type: ast.Preceding,
|
|
UnBounded: true,
|
|
}
|
|
exec.end = &plannercore.FrameBound{
|
|
Type: ast.Following,
|
|
UnBounded: true,
|
|
}
|
|
} else {
|
|
exec.start = v.Frame.Start
|
|
exec.end = v.Frame.End
|
|
if v.Frame.Type == ast.Ranges {
|
|
cmpResult := int64(-1)
|
|
if len(v.OrderBy) > 0 && v.OrderBy[0].Desc {
|
|
cmpResult = 1
|
|
}
|
|
exec.orderByCols = orderByCols
|
|
exec.expectedCmpResult = cmpResult
|
|
exec.isRangeFrame = true
|
|
}
|
|
}
|
|
return exec
|
|
}
|
|
var processor windowProcessor
|
|
if v.Frame == nil {
|
|
processor = &aggWindowProcessor{
|
|
windowFuncs: windowFuncs,
|
|
partialResults: partialResults,
|
|
}
|
|
} else if v.Frame.Type == ast.Rows {
|
|
processor = &rowFrameWindowProcessor{
|
|
windowFuncs: windowFuncs,
|
|
partialResults: partialResults,
|
|
start: v.Frame.Start,
|
|
end: v.Frame.End,
|
|
}
|
|
} else {
|
|
cmpResult := int64(-1)
|
|
if len(v.OrderBy) > 0 && v.OrderBy[0].Desc {
|
|
cmpResult = 1
|
|
}
|
|
processor = &rangeFrameWindowProcessor{
|
|
windowFuncs: windowFuncs,
|
|
partialResults: partialResults,
|
|
start: v.Frame.Start,
|
|
end: v.Frame.End,
|
|
orderByCols: orderByCols,
|
|
expectedCmpResult: cmpResult,
|
|
}
|
|
}
|
|
return &WindowExec{BaseExecutor: base,
|
|
processor: processor,
|
|
groupChecker: vecgroupchecker.NewVecGroupChecker(b.ctx, groupByItems),
|
|
numWindowFuncs: len(v.WindowFuncDescs),
|
|
}
|
|
}
|
|
|
|
func (b *executorBuilder) buildShuffle(v *plannercore.PhysicalShuffle) *ShuffleExec {
|
|
base := exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID())
|
|
shuffle := &ShuffleExec{
|
|
BaseExecutor: base,
|
|
concurrency: v.Concurrency,
|
|
}
|
|
|
|
// 1. initialize the splitters
|
|
splitters := make([]partitionSplitter, len(v.ByItemArrays))
|
|
switch v.SplitterType {
|
|
case plannercore.PartitionHashSplitterType:
|
|
for i, byItems := range v.ByItemArrays {
|
|
splitters[i] = buildPartitionHashSplitter(shuffle.concurrency, byItems)
|
|
}
|
|
case plannercore.PartitionRangeSplitterType:
|
|
for i, byItems := range v.ByItemArrays {
|
|
splitters[i] = buildPartitionRangeSplitter(b.ctx, shuffle.concurrency, byItems)
|
|
}
|
|
default:
|
|
panic("Not implemented. Should not reach here.")
|
|
}
|
|
shuffle.splitters = splitters
|
|
|
|
// 2. initialize the data sources (build the data sources from physical plan to executors)
|
|
shuffle.dataSources = make([]exec.Executor, len(v.DataSources))
|
|
for i, dataSource := range v.DataSources {
|
|
shuffle.dataSources[i] = b.build(dataSource)
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
}
|
|
|
|
// 3. initialize the workers
|
|
head := v.Children()[0]
|
|
// A `PhysicalShuffleReceiverStub` for every worker have the same `DataSource` but different `Receiver`.
|
|
// We preallocate `PhysicalShuffleReceiverStub`s here and reuse them below.
|
|
stubs := make([]*plannercore.PhysicalShuffleReceiverStub, 0, len(v.DataSources))
|
|
for _, dataSource := range v.DataSources {
|
|
stub := plannercore.PhysicalShuffleReceiverStub{
|
|
DataSource: dataSource,
|
|
}.Init(b.ctx, dataSource.StatsInfo(), dataSource.SelectBlockOffset(), nil)
|
|
stub.SetSchema(dataSource.Schema())
|
|
stubs = append(stubs, stub)
|
|
}
|
|
shuffle.workers = make([]*shuffleWorker, shuffle.concurrency)
|
|
for i := range shuffle.workers {
|
|
receivers := make([]*shuffleReceiver, len(v.DataSources))
|
|
for j, dataSource := range v.DataSources {
|
|
receivers[j] = &shuffleReceiver{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, dataSource.Schema(), stubs[j].ID()),
|
|
}
|
|
}
|
|
|
|
w := &shuffleWorker{
|
|
receivers: receivers,
|
|
}
|
|
|
|
for j := range v.DataSources {
|
|
stub := stubs[j]
|
|
stub.Receiver = (unsafe.Pointer)(receivers[j])
|
|
v.Tails[j].SetChildren(stub)
|
|
}
|
|
|
|
w.childExec = b.build(head)
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
|
|
shuffle.workers[i] = w
|
|
}
|
|
|
|
return shuffle
|
|
}
|
|
|
|
func (*executorBuilder) buildShuffleReceiverStub(v *plannercore.PhysicalShuffleReceiverStub) *shuffleReceiver {
|
|
return (*shuffleReceiver)(v.Receiver)
|
|
}
|
|
|
|
func (b *executorBuilder) buildSQLBindExec(v *plannercore.SQLBindPlan) exec.Executor {
|
|
base := exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID())
|
|
base.SetInitCap(chunk.ZeroCapacity)
|
|
|
|
e := &SQLBindExec{
|
|
BaseExecutor: base,
|
|
sqlBindOp: v.SQLBindOp,
|
|
normdOrigSQL: v.NormdOrigSQL,
|
|
bindSQL: v.BindSQL,
|
|
charset: v.Charset,
|
|
collation: v.Collation,
|
|
db: v.Db,
|
|
isGlobal: v.IsGlobal,
|
|
bindAst: v.BindStmt,
|
|
newStatus: v.NewStatus,
|
|
source: v.Source,
|
|
sqlDigest: v.SQLDigest,
|
|
planDigest: v.PlanDigest,
|
|
}
|
|
return e
|
|
}
|
|
|
|
// NewRowDecoder creates a chunk decoder for new row format row value decode.
|
|
func NewRowDecoder(ctx sessionctx.Context, schema *expression.Schema, tbl *model.TableInfo) *rowcodec.ChunkDecoder {
|
|
getColInfoByID := func(tbl *model.TableInfo, colID int64) *model.ColumnInfo {
|
|
for _, col := range tbl.Columns {
|
|
if col.ID == colID {
|
|
return col
|
|
}
|
|
}
|
|
return nil
|
|
}
|
|
var pkCols []int64
|
|
reqCols := make([]rowcodec.ColInfo, len(schema.Columns))
|
|
for i := range schema.Columns {
|
|
idx, col := i, schema.Columns[i]
|
|
isPK := (tbl.PKIsHandle && mysql.HasPriKeyFlag(col.RetType.GetFlag())) || col.ID == model.ExtraHandleID
|
|
if isPK {
|
|
pkCols = append(pkCols, col.ID)
|
|
}
|
|
isGeneratedCol := false
|
|
if col.VirtualExpr != nil {
|
|
isGeneratedCol = true
|
|
}
|
|
reqCols[idx] = rowcodec.ColInfo{
|
|
ID: col.ID,
|
|
VirtualGenCol: isGeneratedCol,
|
|
Ft: col.RetType,
|
|
}
|
|
}
|
|
if len(pkCols) == 0 {
|
|
pkCols = tables.TryGetCommonPkColumnIds(tbl)
|
|
if len(pkCols) == 0 {
|
|
pkCols = []int64{-1}
|
|
}
|
|
}
|
|
defVal := func(i int, chk *chunk.Chunk) error {
|
|
if reqCols[i].ID < 0 {
|
|
// model.ExtraHandleID, ExtraPidColID, ExtraPhysTblID... etc
|
|
// Don't set the default value for that column.
|
|
chk.AppendNull(i)
|
|
return nil
|
|
}
|
|
|
|
ci := getColInfoByID(tbl, reqCols[i].ID)
|
|
d, err := table.GetColOriginDefaultValue(ctx, ci)
|
|
if err != nil {
|
|
return err
|
|
}
|
|
chk.AppendDatum(i, &d)
|
|
return nil
|
|
}
|
|
return rowcodec.NewChunkDecoder(reqCols, pkCols, defVal, ctx.GetSessionVars().Location())
|
|
}
|
|
|
|
func (b *executorBuilder) buildBatchPointGet(plan *plannercore.BatchPointGetPlan) exec.Executor {
|
|
var err error
|
|
if err = b.validCanReadTemporaryOrCacheTable(plan.TblInfo); err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
|
|
if plan.Lock && !b.inSelectLockStmt {
|
|
b.inSelectLockStmt = true
|
|
defer func() {
|
|
b.inSelectLockStmt = false
|
|
}()
|
|
}
|
|
|
|
decoder := NewRowDecoder(b.ctx, plan.Schema(), plan.TblInfo)
|
|
e := &BatchPointGetExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, plan.Schema(), plan.ID()),
|
|
tblInfo: plan.TblInfo,
|
|
idxInfo: plan.IndexInfo,
|
|
rowDecoder: decoder,
|
|
keepOrder: plan.KeepOrder,
|
|
desc: plan.Desc,
|
|
lock: plan.Lock,
|
|
waitTime: plan.LockWaitTime,
|
|
partExpr: plan.PartitionExpr,
|
|
partPos: plan.PartitionColPos,
|
|
planPhysIDs: plan.PartitionIDs,
|
|
singlePart: plan.SinglePart,
|
|
partTblID: plan.PartTblID,
|
|
columns: plan.Columns,
|
|
}
|
|
|
|
e.snapshot, err = b.getSnapshot()
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
if e.Ctx().GetSessionVars().IsReplicaReadClosestAdaptive() {
|
|
e.snapshot.SetOption(kv.ReplicaReadAdjuster, newReplicaReadAdjuster(e.Ctx(), plan.GetAvgRowSize()))
|
|
}
|
|
if e.RuntimeStats() != nil {
|
|
snapshotStats := &txnsnapshot.SnapshotRuntimeStats{}
|
|
e.stats = &runtimeStatsWithSnapshot{
|
|
SnapshotRuntimeStats: snapshotStats,
|
|
}
|
|
e.snapshot.SetOption(kv.CollectRuntimeStats, snapshotStats)
|
|
}
|
|
|
|
if plan.IndexInfo != nil {
|
|
sctx := b.ctx.GetSessionVars().StmtCtx
|
|
sctx.IndexNames = append(sctx.IndexNames, plan.TblInfo.Name.O+":"+plan.IndexInfo.Name.O)
|
|
}
|
|
|
|
failpoint.Inject("assertBatchPointReplicaOption", func(val failpoint.Value) {
|
|
assertScope := val.(string)
|
|
if e.Ctx().GetSessionVars().GetReplicaRead().IsClosestRead() && assertScope != b.readReplicaScope {
|
|
panic("batch point get replica option fail")
|
|
}
|
|
})
|
|
|
|
snapshotTS, err := b.getSnapshotTS()
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
if plan.TblInfo.TableCacheStatusType == model.TableCacheStatusEnable {
|
|
if cacheTable := b.getCacheTable(plan.TblInfo, snapshotTS); cacheTable != nil {
|
|
e.snapshot = cacheTableSnapshot{e.snapshot, cacheTable}
|
|
}
|
|
}
|
|
|
|
if plan.TblInfo.TempTableType != model.TempTableNone {
|
|
// Temporary table should not do any lock operations
|
|
e.lock = false
|
|
e.waitTime = 0
|
|
}
|
|
|
|
if e.lock {
|
|
b.hasLock = true
|
|
}
|
|
|
|
var capacity int
|
|
if plan.IndexInfo != nil && !isCommonHandleRead(plan.TblInfo, plan.IndexInfo) {
|
|
e.idxVals = plan.IndexValues
|
|
capacity = len(e.idxVals)
|
|
} else {
|
|
// `SELECT a FROM t WHERE a IN (1, 1, 2, 1, 2)` should not return duplicated rows
|
|
handles := make([]kv.Handle, 0, len(plan.Handles))
|
|
dedup := kv.NewHandleMap()
|
|
if plan.IndexInfo == nil {
|
|
for _, handle := range plan.Handles {
|
|
if _, found := dedup.Get(handle); found {
|
|
continue
|
|
}
|
|
dedup.Set(handle, true)
|
|
handles = append(handles, handle)
|
|
}
|
|
} else {
|
|
for _, value := range plan.IndexValues {
|
|
if datumsContainNull(value) {
|
|
continue
|
|
}
|
|
handleBytes, err := EncodeUniqueIndexValuesForKey(e.Ctx(), e.tblInfo, plan.IndexInfo, value)
|
|
if err != nil {
|
|
if kv.ErrNotExist.Equal(err) {
|
|
continue
|
|
}
|
|
b.err = err
|
|
return nil
|
|
}
|
|
handle, err := kv.NewCommonHandle(handleBytes)
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
if _, found := dedup.Get(handle); found {
|
|
continue
|
|
}
|
|
dedup.Set(handle, true)
|
|
handles = append(handles, handle)
|
|
}
|
|
}
|
|
e.handles = handles
|
|
capacity = len(e.handles)
|
|
}
|
|
e.Base().SetInitCap(capacity)
|
|
e.Base().SetMaxChunkSize(capacity)
|
|
e.buildVirtualColumnInfo()
|
|
return e
|
|
}
|
|
|
|
func newReplicaReadAdjuster(ctx sessionctx.Context, avgRowSize float64) txnkv.ReplicaReadAdjuster {
|
|
return func(count int) (tikv.StoreSelectorOption, clientkv.ReplicaReadType) {
|
|
if int64(avgRowSize*float64(count)) >= ctx.GetSessionVars().ReplicaClosestReadThreshold {
|
|
return tikv.WithMatchLabels([]*metapb.StoreLabel{
|
|
{
|
|
Key: placement.DCLabelKey,
|
|
Value: config.GetTxnScopeFromConfig(),
|
|
},
|
|
}), clientkv.ReplicaReadMixed
|
|
}
|
|
// fallback to read from leader if the request is small
|
|
return nil, clientkv.ReplicaReadLeader
|
|
}
|
|
}
|
|
|
|
func isCommonHandleRead(tbl *model.TableInfo, idx *model.IndexInfo) bool {
|
|
return tbl.IsCommonHandle && idx.Primary
|
|
}
|
|
|
|
func getPhysicalTableID(t table.Table) int64 {
|
|
if p, ok := t.(table.PhysicalTable); ok {
|
|
return p.GetPhysicalID()
|
|
}
|
|
return t.Meta().ID
|
|
}
|
|
|
|
func (b *executorBuilder) buildAdminShowTelemetry(v *plannercore.AdminShowTelemetry) exec.Executor {
|
|
return &AdminShowTelemetryExec{BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID())}
|
|
}
|
|
|
|
func (b *executorBuilder) buildAdminResetTelemetryID(v *plannercore.AdminResetTelemetryID) exec.Executor {
|
|
return &AdminResetTelemetryIDExec{BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID())}
|
|
}
|
|
|
|
func (builder *dataReaderBuilder) partitionPruning(tbl table.PartitionedTable, conds []expression.Expression, partitionNames []model.CIStr,
|
|
columns []*expression.Column, columnNames types.NameSlice) ([]table.PhysicalTable, error) {
|
|
builder.once.Do(func() {
|
|
condPruneResult, err := partitionPruning(builder.executorBuilder.ctx, tbl, conds, partitionNames, columns, columnNames)
|
|
builder.once.condPruneResult = condPruneResult
|
|
builder.once.err = err
|
|
})
|
|
return builder.once.condPruneResult, builder.once.err
|
|
}
|
|
|
|
func partitionPruning(ctx sessionctx.Context, tbl table.PartitionedTable, conds []expression.Expression, partitionNames []model.CIStr,
|
|
columns []*expression.Column, columnNames types.NameSlice) ([]table.PhysicalTable, error) {
|
|
idxArr, err := plannercore.PartitionPruning(ctx, tbl, conds, partitionNames, columns, columnNames)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
pi := tbl.Meta().GetPartitionInfo()
|
|
var ret []table.PhysicalTable
|
|
if fullRangePartition(idxArr) {
|
|
ret = make([]table.PhysicalTable, 0, len(pi.Definitions))
|
|
for _, def := range pi.Definitions {
|
|
p := tbl.GetPartition(def.ID)
|
|
ret = append(ret, p)
|
|
}
|
|
} else {
|
|
ret = make([]table.PhysicalTable, 0, len(idxArr))
|
|
for _, idx := range idxArr {
|
|
pid := pi.Definitions[idx].ID
|
|
p := tbl.GetPartition(pid)
|
|
ret = append(ret, p)
|
|
}
|
|
}
|
|
return ret, nil
|
|
}
|
|
|
|
func getPartitionIdsAfterPruning(ctx sessionctx.Context, tbl table.PartitionedTable, partInfo *plannercore.PartitionInfo) (map[int64]struct{}, error) {
|
|
if partInfo == nil {
|
|
return nil, errors.New("partInfo in getPartitionIdsAfterPruning must not be nil")
|
|
}
|
|
idxArr, err := plannercore.PartitionPruning(ctx, tbl, partInfo.PruningConds, partInfo.PartitionNames, partInfo.Columns, partInfo.ColumnNames)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
var ret map[int64]struct{}
|
|
|
|
pi := tbl.Meta().GetPartitionInfo()
|
|
if fullRangePartition(idxArr) {
|
|
ret = make(map[int64]struct{}, len(pi.Definitions))
|
|
for _, def := range pi.Definitions {
|
|
ret[def.ID] = struct{}{}
|
|
}
|
|
} else {
|
|
ret = make(map[int64]struct{}, len(idxArr))
|
|
for _, idx := range idxArr {
|
|
pid := pi.Definitions[idx].ID
|
|
ret[pid] = struct{}{}
|
|
}
|
|
}
|
|
return ret, nil
|
|
}
|
|
|
|
func fullRangePartition(idxArr []int) bool {
|
|
return len(idxArr) == 1 && idxArr[0] == plannercore.FullRange
|
|
}
|
|
|
|
type emptySampler struct{}
|
|
|
|
func (*emptySampler) writeChunk(_ *chunk.Chunk) error {
|
|
return nil
|
|
}
|
|
|
|
func (*emptySampler) finished() bool {
|
|
return true
|
|
}
|
|
|
|
func (b *executorBuilder) buildTableSample(v *plannercore.PhysicalTableSample) *TableSampleExecutor {
|
|
startTS, err := b.getSnapshotTS()
|
|
if err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
e := &TableSampleExecutor{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
table: v.TableInfo,
|
|
startTS: startTS,
|
|
}
|
|
|
|
tblInfo := v.TableInfo.Meta()
|
|
if tblInfo.TempTableType != model.TempTableNone {
|
|
if tblInfo.TempTableType != model.TempTableGlobal {
|
|
b.err = errors.New("TABLESAMPLE clause can not be applied to local temporary tables")
|
|
return nil
|
|
}
|
|
e.sampler = &emptySampler{}
|
|
} else if v.TableSampleInfo.AstNode.SampleMethod == ast.SampleMethodTypeTiDBRegion {
|
|
e.sampler = newTableRegionSampler(
|
|
b.ctx, v.TableInfo, startTS, v.TableSampleInfo.Partitions, v.Schema(),
|
|
v.TableSampleInfo.FullSchema, e.RetFieldTypes(), v.Desc)
|
|
}
|
|
|
|
return e
|
|
}
|
|
|
|
func (b *executorBuilder) buildCTE(v *plannercore.PhysicalCTE) exec.Executor {
|
|
if b.Ti != nil {
|
|
b.Ti.UseNonRecursive = true
|
|
}
|
|
if v.RecurPlan != nil && b.Ti != nil {
|
|
b.Ti.UseRecursive = true
|
|
}
|
|
|
|
storageMap, ok := b.ctx.GetSessionVars().StmtCtx.CTEStorageMap.(map[int]*CTEStorages)
|
|
if !ok {
|
|
b.err = errors.New("type assertion for CTEStorageMap failed")
|
|
return nil
|
|
}
|
|
|
|
chkSize := b.ctx.GetSessionVars().MaxChunkSize
|
|
// iterOutTbl will be constructed in CTEExec.Open().
|
|
var resTbl cteutil.Storage
|
|
var iterInTbl cteutil.Storage
|
|
var producer *cteProducer
|
|
storages, ok := storageMap[v.CTE.IDForStorage]
|
|
if ok {
|
|
// Storage already setup.
|
|
resTbl = storages.ResTbl
|
|
iterInTbl = storages.IterInTbl
|
|
producer = storages.Producer
|
|
} else {
|
|
if v.SeedPlan == nil {
|
|
b.err = errors.New("cte.seedPlan cannot be nil")
|
|
return nil
|
|
}
|
|
// Build seed part.
|
|
corCols := plannercore.ExtractOuterApplyCorrelatedCols(v.SeedPlan)
|
|
seedExec := b.build(v.SeedPlan)
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
|
|
// Setup storages.
|
|
tps := seedExec.Base().RetFieldTypes()
|
|
resTbl = cteutil.NewStorageRowContainer(tps, chkSize)
|
|
if err := resTbl.OpenAndRef(); err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
iterInTbl = cteutil.NewStorageRowContainer(tps, chkSize)
|
|
if err := iterInTbl.OpenAndRef(); err != nil {
|
|
b.err = err
|
|
return nil
|
|
}
|
|
storageMap[v.CTE.IDForStorage] = &CTEStorages{ResTbl: resTbl, IterInTbl: iterInTbl}
|
|
|
|
// Build recursive part.
|
|
var recursiveExec exec.Executor
|
|
if v.RecurPlan != nil {
|
|
recursiveExec = b.build(v.RecurPlan)
|
|
if b.err != nil {
|
|
return nil
|
|
}
|
|
corCols = append(corCols, plannercore.ExtractOuterApplyCorrelatedCols(v.RecurPlan)...)
|
|
}
|
|
|
|
var sel []int
|
|
if v.CTE.IsDistinct {
|
|
sel = make([]int, chkSize)
|
|
for i := 0; i < chkSize; i++ {
|
|
sel[i] = i
|
|
}
|
|
}
|
|
|
|
var corColHashCodes [][]byte
|
|
for _, corCol := range corCols {
|
|
corColHashCodes = append(corColHashCodes, getCorColHashCode(corCol))
|
|
}
|
|
|
|
producer = &cteProducer{
|
|
ctx: b.ctx,
|
|
seedExec: seedExec,
|
|
recursiveExec: recursiveExec,
|
|
resTbl: resTbl,
|
|
iterInTbl: iterInTbl,
|
|
isDistinct: v.CTE.IsDistinct,
|
|
sel: sel,
|
|
hasLimit: v.CTE.HasLimit,
|
|
limitBeg: v.CTE.LimitBeg,
|
|
limitEnd: v.CTE.LimitEnd,
|
|
corCols: corCols,
|
|
corColHashCodes: corColHashCodes,
|
|
}
|
|
storageMap[v.CTE.IDForStorage].Producer = producer
|
|
}
|
|
|
|
return &CTEExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
producer: producer,
|
|
}
|
|
}
|
|
|
|
func (b *executorBuilder) buildCTETableReader(v *plannercore.PhysicalCTETable) exec.Executor {
|
|
storageMap, ok := b.ctx.GetSessionVars().StmtCtx.CTEStorageMap.(map[int]*CTEStorages)
|
|
if !ok {
|
|
b.err = errors.New("type assertion for CTEStorageMap failed")
|
|
return nil
|
|
}
|
|
storages, ok := storageMap[v.IDForStorage]
|
|
if !ok {
|
|
b.err = errors.Errorf("iterInTbl should already be set up by CTEExec(id: %d)", v.IDForStorage)
|
|
return nil
|
|
}
|
|
return &CTETableReaderExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
iterInTbl: storages.IterInTbl,
|
|
chkIdx: 0,
|
|
}
|
|
}
|
|
func (b *executorBuilder) validCanReadTemporaryOrCacheTable(tbl *model.TableInfo) error {
|
|
err := b.validCanReadTemporaryTable(tbl)
|
|
if err != nil {
|
|
return err
|
|
}
|
|
return b.validCanReadCacheTable(tbl)
|
|
}
|
|
|
|
func (b *executorBuilder) validCanReadCacheTable(tbl *model.TableInfo) error {
|
|
if tbl.TableCacheStatusType == model.TableCacheStatusDisable {
|
|
return nil
|
|
}
|
|
|
|
sessionVars := b.ctx.GetSessionVars()
|
|
|
|
// Temporary table can't switch into cache table. so the following code will not cause confusion
|
|
if sessionVars.TxnCtx.IsStaleness || b.isStaleness {
|
|
return errors.Trace(errors.New("can not stale read cache table"))
|
|
}
|
|
|
|
return nil
|
|
}
|
|
|
|
func (b *executorBuilder) validCanReadTemporaryTable(tbl *model.TableInfo) error {
|
|
if tbl.TempTableType == model.TempTableNone {
|
|
return nil
|
|
}
|
|
|
|
// Some tools like dumpling use history read to dump all table's records and will be fail if we return an error.
|
|
// So we do not check SnapshotTS here
|
|
|
|
sessionVars := b.ctx.GetSessionVars()
|
|
|
|
if tbl.TempTableType == model.TempTableLocal && sessionVars.SnapshotTS != 0 {
|
|
return errors.New("can not read local temporary table when 'tidb_snapshot' is set")
|
|
}
|
|
|
|
if sessionVars.TxnCtx.IsStaleness || b.isStaleness {
|
|
return errors.New("can not stale read temporary table")
|
|
}
|
|
|
|
return nil
|
|
}
|
|
|
|
func (b *executorBuilder) getCacheTable(tblInfo *model.TableInfo, startTS uint64) kv.MemBuffer {
|
|
tbl, ok := b.is.TableByID(tblInfo.ID)
|
|
if !ok {
|
|
b.err = errors.Trace(infoschema.ErrTableNotExists.GenWithStackByArgs(b.ctx.GetSessionVars().CurrentDB, tblInfo.Name))
|
|
return nil
|
|
}
|
|
sessVars := b.ctx.GetSessionVars()
|
|
leaseDuration := time.Duration(variable.TableCacheLease.Load()) * time.Second
|
|
cacheData, loading := tbl.(table.CachedTable).TryReadFromCache(startTS, leaseDuration)
|
|
if cacheData != nil {
|
|
sessVars.StmtCtx.ReadFromTableCache = true
|
|
return cacheData
|
|
} else if loading {
|
|
return nil
|
|
} else {
|
|
if !b.ctx.GetSessionVars().StmtCtx.InExplainStmt && !b.inDeleteStmt && !b.inUpdateStmt {
|
|
tbl.(table.CachedTable).UpdateLockForRead(context.Background(), b.ctx.GetStore(), startTS, leaseDuration)
|
|
}
|
|
}
|
|
return nil
|
|
}
|
|
|
|
func (b *executorBuilder) buildCompactTable(v *plannercore.CompactTable) exec.Executor {
|
|
if v.ReplicaKind != ast.CompactReplicaKindTiFlash && v.ReplicaKind != ast.CompactReplicaKindAll {
|
|
b.err = errors.Errorf("compact %v replica is not supported", strings.ToLower(string(v.ReplicaKind)))
|
|
return nil
|
|
}
|
|
|
|
store := b.ctx.GetStore()
|
|
tikvStore, ok := store.(tikv.Storage)
|
|
if !ok {
|
|
b.err = errors.New("compact tiflash replica can only run with tikv compatible storage")
|
|
return nil
|
|
}
|
|
|
|
var partitionIDs []int64
|
|
if v.PartitionNames != nil {
|
|
if v.TableInfo.Partition == nil {
|
|
b.err = errors.Errorf("table:%s is not a partition table, but user specify partition name list:%+v", v.TableInfo.Name.O, v.PartitionNames)
|
|
return nil
|
|
}
|
|
// use map to avoid FindPartitionDefinitionByName
|
|
partitionMap := map[string]int64{}
|
|
for _, partition := range v.TableInfo.Partition.Definitions {
|
|
partitionMap[partition.Name.L] = partition.ID
|
|
}
|
|
|
|
for _, partitionName := range v.PartitionNames {
|
|
partitionID, ok := partitionMap[partitionName.L]
|
|
if !ok {
|
|
b.err = table.ErrUnknownPartition.GenWithStackByArgs(partitionName.O, v.TableInfo.Name.O)
|
|
return nil
|
|
}
|
|
partitionIDs = append(partitionIDs, partitionID)
|
|
}
|
|
if b.Ti.PartitionTelemetry == nil {
|
|
b.Ti.PartitionTelemetry = &PartitionTelemetryInfo{}
|
|
}
|
|
b.Ti.PartitionTelemetry.UseCompactTablePartition = true
|
|
}
|
|
|
|
return &CompactTableTiFlashExec{
|
|
BaseExecutor: exec.NewBaseExecutor(b.ctx, v.Schema(), v.ID()),
|
|
tableInfo: v.TableInfo,
|
|
partitionIDs: partitionIDs,
|
|
tikvStore: tikvStore,
|
|
}
|
|
}
|