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https://codeberg.org/forgejo/forgejo.git
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247 lines
6.3 KiB
Go
247 lines
6.3 KiB
Go
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// 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 optimizer
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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/mysql"
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"github.com/pingcap/tidb/parser"
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"github.com/pingcap/tidb/parser/opcode"
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)
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// Validate checkes whether the node is valid.
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func Validate(node ast.Node, inPrepare bool) error {
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v := validator{inPrepare: inPrepare}
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node.Accept(&v)
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return v.err
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}
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// validator is an ast.Visitor that validates
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// ast Nodes parsed from parser.
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type validator struct {
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err error
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wildCardCount int
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inPrepare bool
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inAggregate bool
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}
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func (v *validator) Enter(in ast.Node) (out ast.Node, skipChildren bool) {
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switch in.(type) {
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case *ast.AggregateFuncExpr:
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if v.inAggregate {
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// Aggregate function can not contain aggregate function.
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v.err = ErrInvalidGroupFuncUse
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return in, true
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}
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v.inAggregate = true
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}
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return in, false
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}
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func (v *validator) Leave(in ast.Node) (out ast.Node, ok bool) {
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switch x := in.(type) {
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case *ast.AggregateFuncExpr:
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v.inAggregate = false
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case *ast.BetweenExpr:
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v.checkAllOneColumn(x.Expr, x.Left, x.Right)
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case *ast.BinaryOperationExpr:
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v.checkBinaryOperation(x)
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case *ast.ByItem:
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v.checkAllOneColumn(x.Expr)
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case *ast.CreateTableStmt:
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v.checkAutoIncrement(x)
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case *ast.CompareSubqueryExpr:
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v.checkSameColumns(x.L, x.R)
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case *ast.FieldList:
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v.checkFieldList(x)
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case *ast.HavingClause:
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v.checkAllOneColumn(x.Expr)
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case *ast.IsNullExpr:
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v.checkAllOneColumn(x.Expr)
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case *ast.IsTruthExpr:
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v.checkAllOneColumn(x.Expr)
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case *ast.ParamMarkerExpr:
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if !v.inPrepare {
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v.err = parser.ErrSyntax.Gen("syntax error, unexpected '?'")
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}
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case *ast.PatternInExpr:
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v.checkSameColumns(append(x.List, x.Expr)...)
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}
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return in, v.err == nil
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}
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// checkAllOneColumn checks that all expressions have one column.
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// Expression may have more than one column when it is a rowExpr or
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// a Subquery with more than one result fields.
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func (v *validator) checkAllOneColumn(exprs ...ast.ExprNode) {
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for _, expr := range exprs {
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switch x := expr.(type) {
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case *ast.RowExpr:
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v.err = ErrOneColumn
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case *ast.SubqueryExpr:
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if len(x.Query.GetResultFields()) != 1 {
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v.err = ErrOneColumn
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}
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}
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}
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return
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}
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func checkAutoIncrementOp(colDef *ast.ColumnDef, num int) (bool, error) {
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var hasAutoIncrement bool
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if colDef.Options[num].Tp == ast.ColumnOptionAutoIncrement {
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hasAutoIncrement = true
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if len(colDef.Options) == num+1 {
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return hasAutoIncrement, nil
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}
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for _, op := range colDef.Options[num+1:] {
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if op.Tp == ast.ColumnOptionDefaultValue {
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return hasAutoIncrement, errors.Errorf("Invalid default value for '%s'", colDef.Name.Name.O)
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}
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}
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}
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if colDef.Options[num].Tp == ast.ColumnOptionDefaultValue && len(colDef.Options) != num+1 {
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for _, op := range colDef.Options[num+1:] {
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if op.Tp == ast.ColumnOptionAutoIncrement {
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return hasAutoIncrement, errors.Errorf("Invalid default value for '%s'", colDef.Name.Name.O)
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}
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}
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}
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return hasAutoIncrement, nil
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}
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func isConstraintKeyTp(constraints []*ast.Constraint, colDef *ast.ColumnDef) bool {
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for _, c := range constraints {
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if len(c.Keys) < 1 {
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}
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// If the constraint as follows: primary key(c1, c2)
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// we only support c1 column can be auto_increment.
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if colDef.Name.Name.L != c.Keys[0].Column.Name.L {
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continue
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}
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switch c.Tp {
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case ast.ConstraintPrimaryKey, ast.ConstraintKey, ast.ConstraintIndex,
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ast.ConstraintUniq, ast.ConstraintUniqIndex, ast.ConstraintUniqKey:
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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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func (v *validator) checkAutoIncrement(stmt *ast.CreateTableStmt) {
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var (
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isKey bool
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count int
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autoIncrementCol *ast.ColumnDef
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)
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for _, colDef := range stmt.Cols {
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var hasAutoIncrement bool
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for i, op := range colDef.Options {
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ok, err := checkAutoIncrementOp(colDef, i)
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if err != nil {
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v.err = err
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return
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}
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if ok {
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hasAutoIncrement = true
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}
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switch op.Tp {
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case ast.ColumnOptionPrimaryKey, ast.ColumnOptionUniqKey, ast.ColumnOptionUniqIndex,
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ast.ColumnOptionUniq, ast.ColumnOptionKey, ast.ColumnOptionIndex:
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isKey = true
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}
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}
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if hasAutoIncrement {
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count++
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autoIncrementCol = colDef
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}
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}
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if count < 1 {
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return
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}
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if !isKey {
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isKey = isConstraintKeyTp(stmt.Constraints, autoIncrementCol)
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}
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if !isKey || count > 1 {
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v.err = errors.New("Incorrect table definition; there can be only one auto column and it must be defined as a key")
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}
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switch autoIncrementCol.Tp.Tp {
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case mysql.TypeTiny, mysql.TypeShort, mysql.TypeLong,
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mysql.TypeFloat, mysql.TypeDouble, mysql.TypeLonglong, mysql.TypeInt24:
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default:
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v.err = errors.Errorf("Incorrect column specifier for column '%s'", autoIncrementCol.Name.Name.O)
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}
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}
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func (v *validator) checkBinaryOperation(x *ast.BinaryOperationExpr) {
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// row constructor only supports comparison operation.
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switch x.Op {
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case opcode.LT, opcode.LE, opcode.GE, opcode.GT, opcode.EQ, opcode.NE, opcode.NullEQ:
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v.checkSameColumns(x.L, x.R)
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default:
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v.checkAllOneColumn(x.L, x.R)
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}
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}
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func columnCount(ex ast.ExprNode) int {
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switch x := ex.(type) {
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case *ast.RowExpr:
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return len(x.Values)
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case *ast.SubqueryExpr:
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return len(x.Query.GetResultFields())
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default:
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return 1
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}
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}
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func (v *validator) checkSameColumns(exprs ...ast.ExprNode) {
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if len(exprs) == 0 {
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return
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}
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count := columnCount(exprs[0])
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for i := 1; i < len(exprs); i++ {
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if columnCount(exprs[i]) != count {
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v.err = ErrSameColumns
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return
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}
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}
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}
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// checkFieldList checks if there is only one '*' and each field has only one column.
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func (v *validator) checkFieldList(x *ast.FieldList) {
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var hasWildCard bool
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for _, val := range x.Fields {
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if val.WildCard != nil && val.WildCard.Table.L == "" {
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if hasWildCard {
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v.err = ErrMultiWildCard
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return
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}
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hasWildCard = true
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}
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v.checkAllOneColumn(val.Expr)
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if v.err != nil {
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return
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}
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}
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}
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