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// Copyright 2016 The Xorm Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package builder
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import (
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sql2 "database/sql"
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"fmt"
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)
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type optype byte
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const (
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condType optype = iota // only conditions
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selectType // select
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insertType // insert
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updateType // update
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deleteType // delete
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setOpType // set operation
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)
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// all databasees
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const (
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POSTGRES = "postgres"
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SQLITE = "sqlite3"
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MYSQL = "mysql"
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MSSQL = "mssql"
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ORACLE = "oracle"
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UNION = "union"
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INTERSECT = "intersect"
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EXCEPT = "except"
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)
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type join struct {
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joinType string
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joinTable interface{}
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joinCond Cond
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}
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type setOp struct {
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opType string
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distinctType string
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builder *Builder
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}
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type limit struct {
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limitN int
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offset int
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}
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// Builder describes a SQL statement
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type Builder struct {
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optype
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dialect string
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isNested bool
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into string
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from string
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subQuery *Builder
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cond Cond
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selects []string
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joins joins
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setOps []setOp
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limitation *limit
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insertCols []string
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insertVals []interface{}
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updates []UpdateCond
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orderBy interface{}
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groupBy string
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having interface{}
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}
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// Dialect sets the db dialect of Builder.
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func Dialect(dialect string) *Builder {
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builder := &Builder{cond: NewCond(), dialect: dialect}
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return builder
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}
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// MySQL is shortcut of Dialect(MySQL)
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func MySQL() *Builder {
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return Dialect(MYSQL)
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}
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// MsSQL is shortcut of Dialect(MsSQL)
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func MsSQL() *Builder {
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return Dialect(MSSQL)
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}
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// Oracle is shortcut of Dialect(Oracle)
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func Oracle() *Builder {
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return Dialect(ORACLE)
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}
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// Postgres is shortcut of Dialect(Postgres)
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func Postgres() *Builder {
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return Dialect(POSTGRES)
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}
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// SQLite is shortcut of Dialect(SQLITE)
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func SQLite() *Builder {
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return Dialect(SQLITE)
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}
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// Where sets where SQL
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func (b *Builder) Where(cond Cond) *Builder {
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if b.cond.IsValid() {
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b.cond = b.cond.And(cond)
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} else {
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b.cond = cond
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}
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return b
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}
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// From sets from subject(can be a table name in string or a builder pointer) and its alias
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func (b *Builder) From(subject interface{}, aliasMaybe ...string) *Builder {
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alias := ""
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if len(aliasMaybe) > 0 {
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alias = aliasMaybe[0]
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}
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if aliased, ok := subject.(*Aliased); ok {
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subject = aliased.table
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alias = aliased.alias
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}
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switch t := subject.(type) {
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case *Builder:
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b.subQuery = t
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if len(alias) > 0 {
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b.from = alias
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} else {
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b.isNested = true
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}
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case string:
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b.from = t
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if len(alias) > 0 {
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b.from = b.from + " " + alias
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}
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}
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return b
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}
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// TableName returns the table name
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func (b *Builder) TableName() string {
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if b.optype == insertType {
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return b.into
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}
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return b.from
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}
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// Into sets insert table name
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func (b *Builder) Into(tableName string) *Builder {
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b.into = tableName
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return b
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}
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// Union sets union conditions
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func (b *Builder) Union(distinctType string, cond *Builder) *Builder {
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return b.setOperation(UNION, distinctType, cond)
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}
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// Intersect sets intersect conditions
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func (b *Builder) Intersect(distinctType string, cond *Builder) *Builder {
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return b.setOperation(INTERSECT, distinctType, cond)
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}
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// Except sets except conditions
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func (b *Builder) Except(distinctType string, cond *Builder) *Builder {
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return b.setOperation(EXCEPT, distinctType, cond)
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}
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func (b *Builder) setOperation(opType, distinctType string, cond *Builder) *Builder {
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var builder *Builder
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if b.optype != setOpType {
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builder = &Builder{cond: NewCond()}
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builder.optype = setOpType
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builder.dialect = b.dialect
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builder.selects = b.selects
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currentSetOps := b.setOps
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// erase sub setOps (actually append to new Builder.unions)
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b.setOps = nil
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for e := range currentSetOps {
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currentSetOps[e].builder.dialect = b.dialect
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}
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builder.setOps = append(append(builder.setOps, setOp{opType, "", b}), currentSetOps...)
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} else {
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builder = b
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}
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if cond != nil {
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if cond.dialect == "" && builder.dialect != "" {
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cond.dialect = builder.dialect
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}
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builder.setOps = append(builder.setOps, setOp{opType, distinctType, cond})
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}
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return builder
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}
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// Limit sets limitN condition
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func (b *Builder) Limit(limitN int, offset ...int) *Builder {
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b.limitation = &limit{limitN: limitN}
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if len(offset) > 0 {
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b.limitation.offset = offset[0]
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}
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return b
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}
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// Select sets select SQL
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func (b *Builder) Select(cols ...string) *Builder {
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b.selects = cols
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if b.optype == condType {
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b.optype = selectType
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}
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return b
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}
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// And sets AND condition
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func (b *Builder) And(cond Cond) *Builder {
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b.cond = And(b.cond, cond)
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return b
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}
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// Or sets OR condition
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func (b *Builder) Or(cond Cond) *Builder {
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b.cond = Or(b.cond, cond)
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return b
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}
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// Update sets update SQL
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func (b *Builder) Update(updates ...Cond) *Builder {
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b.updates = make([]UpdateCond, 0, len(updates))
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for _, update := range updates {
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if u, ok := update.(UpdateCond); ok && u.IsValid() {
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b.updates = append(b.updates, u)
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}
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}
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b.optype = updateType
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return b
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}
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// Delete sets delete SQL
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func (b *Builder) Delete(conds ...Cond) *Builder {
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b.cond = b.cond.And(conds...)
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b.optype = deleteType
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return b
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}
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// WriteTo implements Writer interface
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func (b *Builder) WriteTo(w Writer) error {
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switch b.optype {
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/*case condType:
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return b.cond.WriteTo(w)*/
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case selectType:
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return b.selectWriteTo(w)
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case insertType:
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return b.insertWriteTo(w)
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case updateType:
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return b.updateWriteTo(w)
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case deleteType:
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return b.deleteWriteTo(w)
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case setOpType:
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return b.setOpWriteTo(w)
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}
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return ErrNotSupportType
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}
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// ToSQL convert a builder to SQL and args
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func (b *Builder) ToSQL() (string, []interface{}, error) {
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w := NewWriter()
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if err := b.WriteTo(w); err != nil {
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return "", nil, err
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}
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// in case of sql.NamedArg in args
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for e := range w.args {
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if namedArg, ok := w.args[e].(sql2.NamedArg); ok {
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w.args[e] = namedArg.Value
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}
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}
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sql := w.String()
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var err error
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switch b.dialect {
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case ORACLE, MSSQL:
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// This is for compatibility with different sql drivers
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for e := range w.args {
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w.args[e] = sql2.Named(fmt.Sprintf("p%d", e+1), w.args[e])
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}
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var prefix string
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if b.dialect == ORACLE {
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prefix = ":p"
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} else {
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prefix = "@p"
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}
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if sql, err = ConvertPlaceholder(sql, prefix); err != nil {
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return "", nil, err
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}
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case POSTGRES:
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if sql, err = ConvertPlaceholder(sql, "$"); err != nil {
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return "", nil, err
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}
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}
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return sql, w.args, nil
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}
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// ToBoundSQL generated a bound SQL string
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func (b *Builder) ToBoundSQL() (string, error) {
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w := NewWriter()
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if err := b.WriteTo(w); err != nil {
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return "", err
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}
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return ConvertToBoundSQL(w.String(), w.args)
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}
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