222 lines
7.0 KiB
Go
222 lines
7.0 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 plan
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import (
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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/context"
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"github.com/pingcap/tidb/expression"
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"github.com/pingcap/tidb/infoschema"
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"github.com/pingcap/tidb/mysql"
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"github.com/pingcap/tidb/privilege"
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"github.com/pingcap/tidb/terror"
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)
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// AllowCartesianProduct means whether tidb allows cartesian join without equal conditions.
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var AllowCartesianProduct = true
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const (
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flagPrunColumns uint64 = 1 << iota
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flagBuildKeyInfo
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flagDecorrelate
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flagPredicatePushDown
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flagAggregationOptimize
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flagPushDownTopN
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)
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var optRuleList = []logicalOptRule{
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&columnPruner{},
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&buildKeySolver{},
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&decorrelateSolver{},
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&ppdSolver{},
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&aggregationOptimizer{},
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&pushDownTopNOptimizer{},
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}
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// logicalOptRule means a logical optimizing rule, which contains decorrelate, ppd, column pruning, etc.
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type logicalOptRule interface {
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optimize(LogicalPlan, context.Context, *idAllocator) (LogicalPlan, error)
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}
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// Optimize does optimization and creates a Plan.
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// The node must be prepared first.
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func Optimize(ctx context.Context, node ast.Node, is infoschema.InfoSchema) (Plan, error) {
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// We have to infer type again because after parameter is set, the expression type may change.
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if err := expression.InferType(ctx.GetSessionVars().StmtCtx, node); err != nil {
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return nil, errors.Trace(err)
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}
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allocator := new(idAllocator)
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builder := &planBuilder{
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ctx: ctx,
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is: is,
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colMapper: make(map[*ast.ColumnNameExpr]int),
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allocator: allocator,
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}
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p := builder.build(node)
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if builder.err != nil {
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return nil, errors.Trace(builder.err)
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}
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// Maybe it's better to move this to Preprocess, but check privilege need table
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// information, which is collected into visitInfo during logical plan builder.
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if pm := privilege.GetPrivilegeManager(ctx); pm != nil {
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if !checkPrivilege(pm, builder.visitInfo) {
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return nil, errors.New("privilege check fail")
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}
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}
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if logic, ok := p.(LogicalPlan); ok {
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return doOptimize(builder.optFlag, logic, ctx, allocator)
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}
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return p, nil
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}
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// BuildLogicalPlan is exported and only used for test.
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func BuildLogicalPlan(ctx context.Context, node ast.Node, is infoschema.InfoSchema) (Plan, error) {
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// We have to infer type again because after parameter is set, the expression type may change.
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if err := expression.InferType(ctx.GetSessionVars().StmtCtx, node); err != nil {
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return nil, errors.Trace(err)
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}
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builder := &planBuilder{
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ctx: ctx,
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is: is,
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colMapper: make(map[*ast.ColumnNameExpr]int),
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allocator: new(idAllocator),
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}
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p := builder.build(node)
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if builder.err != nil {
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return nil, errors.Trace(builder.err)
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}
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return p, nil
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}
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func checkPrivilege(pm privilege.Manager, vs []visitInfo) bool {
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for _, v := range vs {
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if !pm.RequestVerification(v.db, v.table, v.column, v.privilege) {
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return false
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}
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}
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return true
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}
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func doOptimize(flag uint64, logic LogicalPlan, ctx context.Context, allocator *idAllocator) (PhysicalPlan, error) {
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logic, err := logicalOptimize(flag, logic, ctx, allocator)
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if err != nil {
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return nil, errors.Trace(err)
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}
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if !AllowCartesianProduct && existsCartesianProduct(logic) {
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return nil, errors.Trace(ErrCartesianProductUnsupported)
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}
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if useDAGPlanBuilder(ctx) {
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return dagPhysicalOptimize(logic)
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}
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logic.ResolveIndices()
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return physicalOptimize(flag, logic, allocator)
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}
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func logicalOptimize(flag uint64, logic LogicalPlan, ctx context.Context, alloc *idAllocator) (LogicalPlan, error) {
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var err error
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for i, rule := range optRuleList {
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// The order of flags is same as the order of optRule in the list.
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// We use a bitmask to record which opt rules should be used. If the i-th bit is 1, it means we should
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// apply i-th optimizing rule.
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if flag&(1<<uint(i)) == 0 {
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continue
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}
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logic, err = rule.optimize(logic, ctx, alloc)
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if err != nil {
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return nil, errors.Trace(err)
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}
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}
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return logic, errors.Trace(err)
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}
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func dagPhysicalOptimize(logic LogicalPlan) (PhysicalPlan, error) {
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task, err := logic.convert2NewPhysicalPlan(&requiredProp{taskTp: rootTaskType})
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if err != nil {
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return nil, errors.Trace(err)
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}
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p := EliminateProjection(task.plan())
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p.ResolveIndices()
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return p, nil
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}
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func physicalOptimize(flag uint64, logic LogicalPlan, allocator *idAllocator) (PhysicalPlan, error) {
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info, err := logic.convert2PhysicalPlan(&requiredProperty{})
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if err != nil {
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return nil, errors.Trace(err)
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}
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pp := info.p
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pp = EliminateProjection(pp)
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if flag&(flagDecorrelate) > 0 {
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addCachePlan(pp, allocator)
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}
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return pp, nil
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}
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func existsCartesianProduct(p LogicalPlan) bool {
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if join, ok := p.(*LogicalJoin); ok && len(join.EqualConditions) == 0 {
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return join.JoinType == InnerJoin || join.JoinType == LeftOuterJoin || join.JoinType == RightOuterJoin
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}
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for _, child := range p.Children() {
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if existsCartesianProduct(child.(LogicalPlan)) {
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return true
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}
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}
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return false
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}
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// PrepareStmt prepares a raw statement parsed from parser.
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// The statement must be prepared before it can be passed to optimize function.
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// We pass InfoSchema instead of getting from Context in case it is changed after resolving name.
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func PrepareStmt(is infoschema.InfoSchema, ctx context.Context, node ast.Node) error {
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if err := Preprocess(node, is, ctx); err != nil {
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return errors.Trace(err)
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}
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if err := Validate(node, true); err != nil {
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return errors.Trace(err)
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}
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return nil
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}
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// Optimizer error codes.
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const (
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CodeOperandColumns terror.ErrCode = 1
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CodeInvalidWildCard terror.ErrCode = 3
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CodeUnsupported terror.ErrCode = 4
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CodeInvalidGroupFuncUse terror.ErrCode = 5
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CodeIllegalReference terror.ErrCode = 6
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)
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// Optimizer base errors.
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var (
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ErrOperandColumns = terror.ClassOptimizer.New(CodeOperandColumns, "Operand should contain %d column(s)")
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ErrInvalidWildCard = terror.ClassOptimizer.New(CodeInvalidWildCard, "Wildcard fields without any table name appears in wrong place")
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ErrCartesianProductUnsupported = terror.ClassOptimizer.New(CodeUnsupported, "Cartesian product is unsupported")
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ErrInvalidGroupFuncUse = terror.ClassOptimizer.New(CodeInvalidGroupFuncUse, "Invalid use of group function")
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ErrIllegalReference = terror.ClassOptimizer.New(CodeIllegalReference, "Illegal reference")
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)
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func init() {
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mySQLErrCodes := map[terror.ErrCode]uint16{
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CodeOperandColumns: mysql.ErrOperandColumns,
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CodeInvalidWildCard: mysql.ErrParse,
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CodeInvalidGroupFuncUse: mysql.ErrInvalidGroupFuncUse,
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CodeIllegalReference: mysql.ErrIllegalReference,
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}
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terror.ErrClassToMySQLCodes[terror.ClassOptimizer] = mySQLErrCodes
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expression.EvalAstExpr = evalAstExpr
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}
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