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b6a95a8cb3
* Dropped unused codekit config * Integrated dynamic and static bindata for public * Ignore public bindata * Add a general generate make task * Integrated flexible public assets into web command * Updated vendoring, added all missiong govendor deps * Made the linter happy with the bindata and dynamic code * Moved public bindata definition to modules directory * Ignoring the new bindata path now * Updated to the new public modules import path * Updated public bindata command and drop the new prefix
438 lines
10 KiB
Go
438 lines
10 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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// 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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"math"
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"github.com/juju/errors"
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"github.com/pingcap/tidb/ast"
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"github.com/pingcap/tidb/column"
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"github.com/pingcap/tidb/context"
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"github.com/pingcap/tidb/infoschema"
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"github.com/pingcap/tidb/model"
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"github.com/pingcap/tidb/optimizer/plan"
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"github.com/pingcap/tidb/parser/opcode"
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"github.com/pingcap/tidb/sessionctx/autocommit"
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"github.com/pingcap/tidb/sessionctx/variable"
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"github.com/pingcap/tidb/util/types"
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)
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// executorBuilder builds an Executor from a Plan.
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// The InfoSchema must be the same one used in InfoBinder.
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type executorBuilder struct {
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ctx context.Context
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is infoschema.InfoSchema
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err error
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}
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func newExecutorBuilder(ctx context.Context, is infoschema.InfoSchema) *executorBuilder {
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return &executorBuilder{
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ctx: ctx,
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is: is,
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}
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}
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func (b *executorBuilder) build(p plan.Plan) 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 *plan.Aggregate:
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return b.buildAggregate(v)
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case *plan.CheckTable:
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return b.buildCheckTable(v)
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case *plan.DDL:
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return b.buildDDL(v)
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case *plan.Deallocate:
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return b.buildDeallocate(v)
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case *plan.Delete:
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return b.buildDelete(v)
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case *plan.Distinct:
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return b.buildDistinct(v)
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case *plan.Execute:
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return b.buildExecute(v)
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case *plan.Explain:
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return b.buildExplain(v)
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case *plan.Filter:
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src := b.build(v.Src())
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return b.buildFilter(src, v.Conditions)
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case *plan.Having:
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return b.buildHaving(v)
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case *plan.IndexScan:
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return b.buildIndexScan(v)
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case *plan.Insert:
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return b.buildInsert(v)
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case *plan.JoinInner:
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return b.buildJoinInner(v)
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case *plan.JoinOuter:
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return b.buildJoinOuter(v)
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case *plan.Limit:
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return b.buildLimit(v)
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case *plan.Prepare:
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return b.buildPrepare(v)
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case *plan.SelectFields:
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return b.buildSelectFields(v)
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case *plan.SelectLock:
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return b.buildSelectLock(v)
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case *plan.ShowDDL:
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return b.buildShowDDL(v)
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case *plan.Show:
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return b.buildShow(v)
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case *plan.Simple:
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return b.buildSimple(v)
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case *plan.Sort:
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return b.buildSort(v)
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case *plan.TableScan:
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return b.buildTableScan(v)
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case *plan.Union:
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return b.buildUnion(v)
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case *plan.Update:
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return b.buildUpdate(v)
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default:
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b.err = ErrUnknownPlan.Gen("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) buildFilter(src Executor, conditions []ast.ExprNode) Executor {
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if len(conditions) == 0 {
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return src
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}
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return &FilterExec{
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Src: src,
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Condition: b.joinConditions(conditions),
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ctx: b.ctx,
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}
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}
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func (b *executorBuilder) buildTableScan(v *plan.TableScan) Executor {
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table, _ := b.is.TableByID(v.Table.ID)
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e := &TableScanExec{
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t: table,
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fields: v.Fields(),
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ctx: b.ctx,
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ranges: v.Ranges,
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seekHandle: math.MinInt64,
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}
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return b.buildFilter(e, v.FilterConditions)
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}
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func (b *executorBuilder) buildShowDDL(v *plan.ShowDDL) Executor {
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return &ShowDDLExec{
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fields: v.Fields(),
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ctx: b.ctx,
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}
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}
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func (b *executorBuilder) buildCheckTable(v *plan.CheckTable) Executor {
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return &CheckTableExec{
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tables: v.Tables,
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ctx: b.ctx,
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}
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}
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func (b *executorBuilder) buildDeallocate(v *plan.Deallocate) Executor {
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return &DeallocateExec{
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ctx: b.ctx,
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Name: v.Name,
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}
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}
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func (b *executorBuilder) buildIndexScan(v *plan.IndexScan) Executor {
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tbl, _ := b.is.TableByID(v.Table.ID)
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var idx *column.IndexedCol
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for _, val := range tbl.Indices() {
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if val.IndexInfo.Name.L == v.Index.Name.L {
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idx = val
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break
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}
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}
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e := &IndexScanExec{
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tbl: tbl,
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idx: idx,
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fields: v.Fields(),
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ctx: b.ctx,
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Desc: v.Desc,
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valueTypes: make([]*types.FieldType, len(idx.Columns)),
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}
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for i, ic := range idx.Columns {
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col := tbl.Cols()[ic.Offset]
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e.valueTypes[i] = &col.FieldType
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}
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e.Ranges = make([]*IndexRangeExec, len(v.Ranges))
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for i, val := range v.Ranges {
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e.Ranges[i] = b.buildIndexRange(e, val)
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}
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return b.buildFilter(e, v.FilterConditions)
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}
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func (b *executorBuilder) buildIndexRange(scan *IndexScanExec, v *plan.IndexRange) *IndexRangeExec {
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ran := &IndexRangeExec{
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scan: scan,
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lowVals: v.LowVal,
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lowExclude: v.LowExclude,
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highVals: v.HighVal,
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highExclude: v.HighExclude,
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}
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return ran
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}
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func (b *executorBuilder) buildJoinOuter(v *plan.JoinOuter) *JoinOuterExec {
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e := &JoinOuterExec{
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OuterExec: b.build(v.Outer),
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InnerPlan: v.Inner,
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fields: v.Fields(),
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builder: b,
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}
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return e
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}
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func (b *executorBuilder) buildJoinInner(v *plan.JoinInner) *JoinInnerExec {
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e := &JoinInnerExec{
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InnerPlans: v.Inners,
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innerExecs: make([]Executor, len(v.Inners)),
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Condition: b.joinConditions(v.Conditions),
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fields: v.Fields(),
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ctx: b.ctx,
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builder: b,
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}
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return e
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}
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func (b *executorBuilder) joinConditions(conditions []ast.ExprNode) ast.ExprNode {
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if len(conditions) == 0 {
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return nil
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}
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if len(conditions) == 1 {
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return conditions[0]
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}
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condition := &ast.BinaryOperationExpr{
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Op: opcode.AndAnd,
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L: conditions[0],
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R: b.joinConditions(conditions[1:]),
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}
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return condition
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}
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func (b *executorBuilder) buildSelectLock(v *plan.SelectLock) Executor {
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src := b.build(v.Src())
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if autocommit.ShouldAutocommit(b.ctx) {
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// Locking of rows for update using SELECT FOR UPDATE only applies when autocommit
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// is disabled (either by beginning transaction with START TRANSACTION or by setting
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// autocommit to 0. If autocommit is enabled, the rows matching the specification are not locked.
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// See: https://dev.mysql.com/doc/refman/5.7/en/innodb-locking-reads.html
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return src
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}
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e := &SelectLockExec{
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Src: src,
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Lock: v.Lock,
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ctx: b.ctx,
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}
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return e
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}
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func (b *executorBuilder) buildSelectFields(v *plan.SelectFields) Executor {
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src := b.build(v.Src())
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e := &SelectFieldsExec{
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Src: src,
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ResultFields: v.Fields(),
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ctx: b.ctx,
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}
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return e
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}
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func (b *executorBuilder) buildAggregate(v *plan.Aggregate) Executor {
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src := b.build(v.Src())
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e := &AggregateExec{
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Src: src,
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ResultFields: v.Fields(),
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ctx: b.ctx,
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AggFuncs: v.AggFuncs,
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GroupByItems: v.GroupByItems,
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}
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return e
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}
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func (b *executorBuilder) buildHaving(v *plan.Having) Executor {
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src := b.build(v.Src())
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return b.buildFilter(src, v.Conditions)
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}
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func (b *executorBuilder) buildSort(v *plan.Sort) Executor {
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src := b.build(v.Src())
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e := &SortExec{
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Src: src,
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ByItems: v.ByItems,
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ctx: b.ctx,
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}
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return e
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}
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func (b *executorBuilder) buildLimit(v *plan.Limit) Executor {
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src := b.build(v.Src())
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e := &LimitExec{
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Src: src,
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Offset: v.Offset,
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Count: v.Count,
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}
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return e
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}
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func (b *executorBuilder) buildUnion(v *plan.Union) Executor {
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e := &UnionExec{
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fields: v.Fields(),
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Sels: make([]Executor, len(v.Selects)),
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}
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for i, sel := range v.Selects {
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selExec := b.build(sel)
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e.Sels[i] = selExec
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}
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return e
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}
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func (b *executorBuilder) buildDistinct(v *plan.Distinct) Executor {
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return &DistinctExec{Src: b.build(v.Src())}
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}
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func (b *executorBuilder) buildPrepare(v *plan.Prepare) Executor {
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return &PrepareExec{
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Ctx: b.ctx,
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IS: b.is,
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Name: v.Name,
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SQLText: v.SQLText,
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}
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}
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func (b *executorBuilder) buildExecute(v *plan.Execute) Executor {
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return &ExecuteExec{
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Ctx: b.ctx,
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IS: b.is,
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Name: v.Name,
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UsingVars: v.UsingVars,
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ID: v.ID,
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}
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}
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func (b *executorBuilder) buildUpdate(v *plan.Update) Executor {
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selExec := b.build(v.SelectPlan)
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return &UpdateExec{ctx: b.ctx, SelectExec: selExec, OrderedList: v.OrderedList}
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}
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func (b *executorBuilder) buildDelete(v *plan.Delete) Executor {
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selExec := b.build(v.SelectPlan)
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return &DeleteExec{
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ctx: b.ctx,
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SelectExec: selExec,
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Tables: v.Tables,
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IsMultiTable: v.IsMultiTable,
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}
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}
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func (b *executorBuilder) buildShow(v *plan.Show) Executor {
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e := &ShowExec{
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Tp: v.Tp,
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DBName: model.NewCIStr(v.DBName),
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Table: v.Table,
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Column: v.Column,
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User: v.User,
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Flag: v.Flag,
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Full: v.Full,
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GlobalScope: v.GlobalScope,
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ctx: b.ctx,
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is: b.is,
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fields: v.Fields(),
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}
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if e.Tp == ast.ShowGrants && len(e.User) == 0 {
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e.User = variable.GetSessionVars(e.ctx).User
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}
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return e
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}
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func (b *executorBuilder) buildSimple(v *plan.Simple) Executor {
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switch s := v.Statement.(type) {
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case *ast.GrantStmt:
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return b.buildGrant(s)
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}
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return &SimpleExec{Statement: v.Statement, ctx: b.ctx}
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}
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func (b *executorBuilder) buildInsert(v *plan.Insert) Executor {
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ivs := &InsertValues{
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ctx: b.ctx,
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Columns: v.Columns,
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Lists: v.Lists,
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Setlist: v.Setlist,
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}
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if v.SelectPlan != nil {
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ivs.SelectExec = b.build(v.SelectPlan)
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}
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// Get Table
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ts, ok := v.Table.TableRefs.Left.(*ast.TableSource)
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if !ok {
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b.err = errors.New("Can not get table")
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return nil
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}
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tn, ok := ts.Source.(*ast.TableName)
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if !ok {
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b.err = errors.New("Can not get table")
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return nil
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}
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tableInfo := tn.TableInfo
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tbl, ok := b.is.TableByID(tableInfo.ID)
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if !ok {
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b.err = errors.Errorf("Can not get table %d", tableInfo.ID)
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return nil
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}
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ivs.Table = tbl
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if v.IsReplace {
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return b.buildReplace(ivs)
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}
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insert := &InsertExec{
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InsertValues: ivs,
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OnDuplicate: v.OnDuplicate,
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Priority: v.Priority,
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}
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// fields is used to evaluate values expr.
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insert.fields = ts.GetResultFields()
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return insert
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}
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func (b *executorBuilder) buildReplace(vals *InsertValues) Executor {
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return &ReplaceExec{
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InsertValues: vals,
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}
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}
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func (b *executorBuilder) buildGrant(grant *ast.GrantStmt) Executor {
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return &GrantExec{
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ctx: b.ctx,
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Privs: grant.Privs,
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ObjectType: grant.ObjectType,
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Level: grant.Level,
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Users: grant.Users,
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}
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}
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func (b *executorBuilder) buildDDL(v *plan.DDL) Executor {
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return &DDLExec{Statement: v.Statement, ctx: b.ctx, is: b.is}
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}
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func (b *executorBuilder) buildExplain(v *plan.Explain) Executor {
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return &ExplainExec{
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StmtPlan: v.StmtPlan,
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fields: v.Fields(),
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}
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}
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