Add WITH RECURSIVE statement support
This commit is contained in:
parent
001d64f1dc
commit
038a32b032
17 changed files with 695 additions and 91 deletions
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@ -2,38 +2,41 @@ package jet
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// SelectTable is interface for SELECT sub-queries
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type SelectTable interface {
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Serializer
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SerializerHasProjections
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Alias() string
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AllColumns() ProjectionList
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}
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type selectTableImpl struct {
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selectStmt SerializerStatement
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Statement SerializerHasProjections
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alias string
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}
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// NewSelectTable func
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func NewSelectTable(selectStmt SerializerStatement, alias string) selectTableImpl {
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selectTable := selectTableImpl{selectStmt: selectStmt, alias: alias}
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func NewSelectTable(selectStmt SerializerHasProjections, alias string) selectTableImpl {
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selectTable := selectTableImpl{
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Statement: selectStmt,
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alias: alias,
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}
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return selectTable
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}
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func (s selectTableImpl) projections() ProjectionList {
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return s.Statement.projections()
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}
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func (s selectTableImpl) Alias() string {
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return s.alias
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}
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func (s selectTableImpl) AllColumns() ProjectionList {
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statementWithProjections, ok := s.selectStmt.(HasProjections)
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if !ok {
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return ProjectionList{}
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}
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projectionList := statementWithProjections.projections().fromImpl(s)
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projectionList := s.projections().fromImpl(s)
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return projectionList.(ProjectionList)
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}
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func (s selectTableImpl) serialize(statement StatementType, out *SQLBuilder, options ...SerializeOption) {
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s.selectStmt.serialize(statement, out)
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s.Statement.serialize(statement, out)
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out.WriteString("AS")
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out.WriteIdentifier(s.alias)
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@ -52,7 +55,7 @@ func NewLateral(selectStmt SerializerStatement, alias string) SelectTable {
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func (s lateralImpl) serialize(statement StatementType, out *SQLBuilder, options ...SerializeOption) {
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out.WriteString("LATERAL")
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s.selectStmt.serialize(statement, out)
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s.Statement.serialize(statement, out)
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out.WriteString("AS")
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out.WriteIdentifier(s.alias)
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@ -51,6 +51,12 @@ type HasProjections interface {
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projections() ProjectionList
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}
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// SerializerHasProjections interface is combination of Serializer and HasProjections interface
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type SerializerHasProjections interface {
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Serializer
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HasProjections
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}
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// serializerStatementInterfaceImpl struct
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type serializerStatementInterfaceImpl struct {
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dialect Dialect
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@ -200,7 +206,7 @@ func (s *statementImpl) serialize(statement StatementType, out *SQLBuilder, opti
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}
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for _, clause := range s.Clauses {
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clause.Serialize(statement, out, FallTrough(options)...)
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clause.Serialize(s.statementType, out, FallTrough(options)...)
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}
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if contains(options, Ident) {
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@ -68,8 +68,8 @@ func SerializeColumnNames(columns []Column, out *SQLBuilder) {
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}
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}
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// SerializeColumnExpressionNames func
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func SerializeColumnExpressionNames(columns []ColumnExpression, statementType StatementType,
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// SerializeColumnExpressions func
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func SerializeColumnExpressions(columns []ColumnExpression, statementType StatementType,
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out *SQLBuilder, options ...SerializeOption) {
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for i, col := range columns {
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if i > 0 {
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@ -84,6 +84,21 @@ func SerializeColumnExpressionNames(columns []ColumnExpression, statementType St
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}
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}
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// SerializeColumnExpressionNames func
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func SerializeColumnExpressionNames(columns []ColumnExpression, out *SQLBuilder) {
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for i, col := range columns {
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if i > 0 {
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out.WriteString(", ")
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}
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if col == nil {
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panic("jet: nil column in columns list")
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}
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out.WriteIdentifier(col.Name())
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}
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}
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// ExpressionListToSerializerList converts list of expressions to list of serializers
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func ExpressionListToSerializerList(expressions []Expression) []Serializer {
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var ret []Serializer
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@ -1,7 +1,9 @@
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package jet
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import "fmt"
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// WITH function creates new with statement from list of common table expressions for specified dialect
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func WITH(dialect Dialect, recursive bool, cte ...CommonTableExpressionDefinition) func(statement Statement) Statement {
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func WITH(dialect Dialect, recursive bool, cte ...*CommonTableExpression) func(statement Statement) Statement {
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newWithImpl := &withImpl{
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recursive: recursive,
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ctes: cte,
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@ -25,7 +27,7 @@ func WITH(dialect Dialect, recursive bool, cte ...CommonTableExpressionDefinitio
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type withImpl struct {
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serializerStatementInterfaceImpl
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recursive bool
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ctes []CommonTableExpressionDefinition
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ctes []*CommonTableExpression
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primaryStatement SerializerStatement
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}
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@ -54,35 +56,55 @@ func (w withImpl) projections() ProjectionList {
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// CommonTableExpression contains information about a CTE.
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type CommonTableExpression struct {
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selectTableImpl
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NotMaterialized bool
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Columns []ColumnExpression
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}
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// CTE creates new named CommonTableExpression
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func CTE(name string) CommonTableExpression {
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return CommonTableExpression{
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selectTableImpl: selectTableImpl{
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selectStmt: nil,
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alias: name,
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},
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func CTE(name string, columns ...ColumnExpression) CommonTableExpression {
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cte := CommonTableExpression{
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selectTableImpl: NewSelectTable(nil, name),
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Columns: columns,
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}
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for _, column := range cte.Columns {
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column.setSubQuery(cte)
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}
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return cte
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}
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func (c CommonTableExpression) serialize(statement StatementType, out *SQLBuilder, options ...SerializeOption) {
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if statement == WithStatementType { // serialize CTE definition
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out.WriteIdentifier(c.alias)
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}
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// AS returns sets definition for a CTE
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func (c *CommonTableExpression) AS(statement SerializerStatement) CommonTableExpressionDefinition {
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c.selectStmt = statement
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return CommonTableExpressionDefinition{cte: c}
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}
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// CommonTableExpressionDefinition contains implementation details of CTE
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type CommonTableExpressionDefinition struct {
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cte *CommonTableExpression
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}
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func (c CommonTableExpressionDefinition) serialize(statement StatementType, out *SQLBuilder, options ...SerializeOption) {
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out.WriteIdentifier(c.cte.alias)
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if len(c.Columns) > 0 {
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out.WriteByte('(')
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SerializeColumnExpressionNames(c.Columns, out)
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out.WriteByte(')')
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}
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out.WriteString("AS")
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c.cte.selectStmt.serialize(statement, out, FallTrough(options)...)
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if c.NotMaterialized {
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out.WriteString("NOT MATERIALIZED")
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}
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if c.Statement == nil {
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panic(fmt.Sprintf("jet: '%s' CTE is not defined", c.alias))
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}
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c.Statement.serialize(statement, out, FallTrough(options)...)
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} else { // serialize CTE in FROM clause
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out.WriteIdentifier(c.alias)
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}
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}
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// AllColumns returns list of all projections in the CTE
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func (c CommonTableExpression) AllColumns() ProjectionList {
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if len(c.Columns) > 0 {
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return ColumnListToProjectionList(c.Columns)
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}
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return c.selectTableImpl.AllColumns()
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}
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@ -13,7 +13,7 @@ type selectTableImpl struct {
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readableTableInterfaceImpl
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}
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func newSelectTable(selectStmt jet.SerializerStatement, alias string) SelectTable {
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func newSelectTable(selectStmt jet.SerializerHasProjections, alias string) SelectTable {
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subQuery := &selectTableImpl{
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SelectTable: jet.NewSelectTable(selectStmt, alias),
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}
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@ -2,30 +2,65 @@ package mysql
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import "github.com/go-jet/jet/v2/internal/jet"
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// CommonTableExpression contains information about a CTE.
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type CommonTableExpression struct {
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// CommonTableExpression defines set of interface methods for postgres CTEs
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type CommonTableExpression interface {
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SelectTable
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AS(statement jet.SerializerStatement) CommonTableExpression
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// ALIAS is used to create another alias of the CTE, if a CTE needs to appear multiple times in the main query.
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ALIAS(alias string) SelectTable
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internalCTE() *jet.CommonTableExpression
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}
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type commonTableExpression struct {
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readableTableInterfaceImpl
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jet.CommonTableExpression
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}
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// WITH function creates new WITH statement from list of common table expressions
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func WITH(cte ...jet.CommonTableExpressionDefinition) func(statement jet.Statement) Statement {
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return jet.WITH(Dialect, false, cte...)
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func WITH(cte ...CommonTableExpression) func(statement jet.Statement) Statement {
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return jet.WITH(Dialect, false, toInternalCTE(cte)...)
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}
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// WITH_RECURSIVE function creates new WITH RECURSIVE statement from list of common table expressions
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func WITH_RECURSIVE(cte ...jet.CommonTableExpressionDefinition) func(statement jet.Statement) Statement {
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return jet.WITH(Dialect, true, cte...)
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func WITH_RECURSIVE(cte ...CommonTableExpression) func(statement jet.Statement) Statement {
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return jet.WITH(Dialect, true, toInternalCTE(cte)...)
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}
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// CTE creates new named CommonTableExpression
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func CTE(name string) CommonTableExpression {
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cte := CommonTableExpression{
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// CTE creates new named commonTableExpression
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func CTE(name string, columns ...jet.ColumnExpression) CommonTableExpression {
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cte := &commonTableExpression{
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readableTableInterfaceImpl: readableTableInterfaceImpl{},
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CommonTableExpression: jet.CTE(name),
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CommonTableExpression: jet.CTE(name, columns...),
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}
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cte.parent = &cte
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cte.parent = cte
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return cte
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}
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// AS is used to define a CTE query
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func (c *commonTableExpression) AS(statement jet.SerializerStatement) CommonTableExpression {
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c.CommonTableExpression.Statement = statement
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return c
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}
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func (c *commonTableExpression) internalCTE() *jet.CommonTableExpression {
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return &c.CommonTableExpression
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}
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// ALIAS is used to create another alias of the CTE, if a CTE needs to appear multiple times in the main query.
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func (c *commonTableExpression) ALIAS(name string) SelectTable {
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return newSelectTable(c, name)
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}
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func toInternalCTE(ctes []CommonTableExpression) []*jet.CommonTableExpression {
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var ret []*jet.CommonTableExpression
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for _, cte := range ctes {
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ret = append(ret, cte.internalCTE())
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}
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return ret
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}
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@ -52,7 +52,7 @@ func (o *onConflictClause) Serialize(statementType jet.StatementType, out *jet.S
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out.WriteString("ON CONFLICT")
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if len(o.indexExpressions) > 0 {
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out.WriteString("(")
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jet.SerializeColumnExpressionNames(o.indexExpressions, statementType, out, jet.ShortName)
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jet.SerializeColumnExpressions(o.indexExpressions, statementType, out, jet.ShortName)
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out.WriteString(")")
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}
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@ -6,6 +6,7 @@ import (
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"github.com/go-jet/jet/v2/internal/jet"
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)
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// Bool is boolean literal constructor
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func Bool(value bool) BoolExpression {
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return CAST(jet.Bool(value)).AS_BOOL()
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}
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@ -2,7 +2,7 @@ package postgres
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import "github.com/go-jet/jet/v2/internal/jet"
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// SelectTable is interface for MySQL sub-queries
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// SelectTable is interface for postgres sub-queries
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type SelectTable interface {
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readableTable
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jet.SelectTable
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@ -13,7 +13,7 @@ type selectTableImpl struct {
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readableTableInterfaceImpl
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}
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func newSelectTable(selectStmt jet.SerializerStatement, alias string) SelectTable {
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func newSelectTable(selectStmt jet.SerializerHasProjections, alias string) SelectTable {
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subQuery := &selectTableImpl{
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SelectTable: jet.NewSelectTable(selectStmt, alias),
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}
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@ -2,30 +2,73 @@ package postgres
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import "github.com/go-jet/jet/v2/internal/jet"
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// CommonTableExpression contains information about a CTE.
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type CommonTableExpression struct {
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// CommonTableExpression defines set of interface methods for postgres CTEs
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type CommonTableExpression interface {
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SelectTable
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AS(statement jet.SerializerStatement) CommonTableExpression
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AS_NOT_MATERIALIZED(statement jet.SerializerStatement) CommonTableExpression
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// ALIAS is used to create another alias of the CTE, if a CTE needs to appear multiple times in the main query.
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ALIAS(alias string) SelectTable
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internalCTE() *jet.CommonTableExpression
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}
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type commonTableExpression struct {
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readableTableInterfaceImpl
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jet.CommonTableExpression
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}
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// WITH function creates new WITH statement from list of common table expressions
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func WITH(cte ...jet.CommonTableExpressionDefinition) func(statement jet.Statement) Statement {
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return jet.WITH(Dialect, false, cte...)
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func WITH(cte ...CommonTableExpression) func(statement jet.Statement) Statement {
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return jet.WITH(Dialect, false, toInternalCTE(cte)...)
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}
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// WITH_RECURSIVE function creates new WITH RECURSIVE statement from list of common table expressions
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func WITH_RECURSIVE(cte ...jet.CommonTableExpressionDefinition) func(statement jet.Statement) Statement {
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return jet.WITH(Dialect, true, cte...)
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func WITH_RECURSIVE(cte ...CommonTableExpression) func(statement jet.Statement) Statement {
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return jet.WITH(Dialect, true, toInternalCTE(cte)...)
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}
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// CTE creates new named CommonTableExpression
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func CTE(name string) CommonTableExpression {
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cte := CommonTableExpression{
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// CTE creates new named commonTableExpression
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func CTE(name string, columns ...jet.ColumnExpression) CommonTableExpression {
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cte := &commonTableExpression{
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readableTableInterfaceImpl: readableTableInterfaceImpl{},
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CommonTableExpression: jet.CTE(name),
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CommonTableExpression: jet.CTE(name, columns...),
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}
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cte.parent = &cte
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cte.parent = cte
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return cte
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}
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// AS is used to define a CTE query
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func (c *commonTableExpression) AS(statement jet.SerializerStatement) CommonTableExpression {
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c.CommonTableExpression.Statement = statement
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return c
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}
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// AS_NOT_MATERIALIZED is used to define not materialized CTE query
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func (c *commonTableExpression) AS_NOT_MATERIALIZED(statement jet.SerializerStatement) CommonTableExpression {
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c.CommonTableExpression.NotMaterialized = true
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c.CommonTableExpression.Statement = statement
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return c
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}
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func (c *commonTableExpression) internalCTE() *jet.CommonTableExpression {
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return &c.CommonTableExpression
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}
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// ALIAS is used to create another alias of the CTE, if a CTE needs to appear multiple times in the main query.
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func (c *commonTableExpression) ALIAS(name string) SelectTable {
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return newSelectTable(c, name)
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}
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func toInternalCTE(ctes []CommonTableExpression) []*jet.CommonTableExpression {
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var ret []*jet.CommonTableExpression
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for _, cte := range ctes {
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ret = append(ret, cte.internalCTE())
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}
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return ret
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}
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@ -45,7 +45,7 @@ func (o *onConflictClause) Serialize(statementType jet.StatementType, out *jet.S
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out.WriteString("ON CONFLICT")
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if len(o.indexExpressions) > 0 {
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out.WriteString("(")
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jet.SerializeColumnExpressionNames(o.indexExpressions, statementType, out, jet.ShortName)
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jet.SerializeColumnExpressions(o.indexExpressions, statementType, out, jet.ShortName)
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out.WriteString(")")
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}
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@ -13,7 +13,7 @@ type selectTableImpl struct {
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readableTableInterfaceImpl
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}
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func newSelectTable(selectStmt jet.SerializerStatement, alias string) SelectTable {
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func newSelectTable(selectStmt jet.SerializerHasProjections, alias string) SelectTable {
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subQuery := &selectTableImpl{
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SelectTable: jet.NewSelectTable(selectStmt, alias),
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}
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@ -2,30 +2,73 @@ package sqlite
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import "github.com/go-jet/jet/v2/internal/jet"
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// CommonTableExpression contains information about a CTE.
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type CommonTableExpression struct {
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// CommonTableExpression defines set of interface methods for postgres CTEs
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type CommonTableExpression interface {
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SelectTable
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AS(statement jet.SerializerStatement) CommonTableExpression
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AS_NOT_MATERIALIZED(statement jet.SerializerStatement) CommonTableExpression
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// ALIAS is used to create another alias of the CTE, if a CTE needs to appear multiple times in the main query.
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ALIAS(alias string) SelectTable
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internalCTE() *jet.CommonTableExpression
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}
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type commonTableExpression struct {
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readableTableInterfaceImpl
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jet.CommonTableExpression
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}
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// WITH function creates new WITH statement from list of common table expressions
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func WITH(cte ...jet.CommonTableExpressionDefinition) func(statement jet.Statement) Statement {
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return jet.WITH(Dialect, false, cte...)
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func WITH(cte ...CommonTableExpression) func(statement jet.Statement) Statement {
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return jet.WITH(Dialect, false, toInternalCTE(cte)...)
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}
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// WITH_RECURSIVE function creates new WITH RECURSIVE statement from list of common table expressions
|
||||
func WITH_RECURSIVE(cte ...jet.CommonTableExpressionDefinition) func(statement jet.Statement) Statement {
|
||||
return jet.WITH(Dialect, true, cte...)
|
||||
func WITH_RECURSIVE(cte ...CommonTableExpression) func(statement jet.Statement) Statement {
|
||||
return jet.WITH(Dialect, true, toInternalCTE(cte)...)
|
||||
}
|
||||
|
||||
// CTE creates new named CommonTableExpression
|
||||
func CTE(name string) CommonTableExpression {
|
||||
cte := CommonTableExpression{
|
||||
// CTE creates new named commonTableExpression
|
||||
func CTE(name string, columns ...jet.ColumnExpression) CommonTableExpression {
|
||||
cte := &commonTableExpression{
|
||||
readableTableInterfaceImpl: readableTableInterfaceImpl{},
|
||||
CommonTableExpression: jet.CTE(name),
|
||||
CommonTableExpression: jet.CTE(name, columns...),
|
||||
}
|
||||
|
||||
cte.parent = &cte
|
||||
cte.parent = cte
|
||||
|
||||
return cte
|
||||
}
|
||||
|
||||
// AS is used to define a CTE query
|
||||
func (c *commonTableExpression) AS(statement jet.SerializerStatement) CommonTableExpression {
|
||||
c.CommonTableExpression.Statement = statement
|
||||
return c
|
||||
}
|
||||
|
||||
// AS_NOT_MATERIALIZED is used to define not materialized CTE query
|
||||
func (c *commonTableExpression) AS_NOT_MATERIALIZED(statement jet.SerializerStatement) CommonTableExpression {
|
||||
c.CommonTableExpression.NotMaterialized = true
|
||||
c.CommonTableExpression.Statement = statement
|
||||
return c
|
||||
}
|
||||
|
||||
func (c *commonTableExpression) internalCTE() *jet.CommonTableExpression {
|
||||
return &c.CommonTableExpression
|
||||
}
|
||||
|
||||
// ALIAS is used to create another alias of the CTE, if a CTE needs to appear multiple times in the main query.
|
||||
func (c *commonTableExpression) ALIAS(name string) SelectTable {
|
||||
return newSelectTable(c, name)
|
||||
}
|
||||
|
||||
func toInternalCTE(ctes []CommonTableExpression) []*jet.CommonTableExpression {
|
||||
var ret []*jet.CommonTableExpression
|
||||
|
||||
for _, cte := range ctes {
|
||||
ret = append(ret, cte.internalCTE())
|
||||
}
|
||||
|
||||
return ret
|
||||
}
|
||||
|
|
|
|||
|
|
@ -149,7 +149,26 @@ func TestWITH_And_DELETE(t *testing.T) {
|
|||
),
|
||||
)
|
||||
|
||||
//fmt.Println(stmt.DebugSql())
|
||||
// fmt.Println(stmt.DebugSql())
|
||||
|
||||
testutils.AssertDebugStatementSql(t, stmt, strings.ReplaceAll(`
|
||||
WITH payments_to_delete AS (
|
||||
SELECT payment.payment_id AS "payment.payment_id",
|
||||
payment.customer_id AS "payment.customer_id",
|
||||
payment.staff_id AS "payment.staff_id",
|
||||
payment.rental_id AS "payment.rental_id",
|
||||
payment.amount AS "payment.amount",
|
||||
payment.payment_date AS "payment.payment_date",
|
||||
payment.last_update AS "payment.last_update"
|
||||
FROM dvds.payment
|
||||
WHERE payment.amount < 0.5
|
||||
)
|
||||
DELETE FROM dvds.payment
|
||||
WHERE payment.payment_id IN (
|
||||
SELECT payments_to_delete.''payment.payment_id'' AS "payment.payment_id"
|
||||
FROM payments_to_delete
|
||||
);
|
||||
`, "''", "`"))
|
||||
|
||||
tx, err := db.Begin()
|
||||
require.NoError(t, err)
|
||||
|
|
@ -157,3 +176,119 @@ func TestWITH_And_DELETE(t *testing.T) {
|
|||
|
||||
testutils.AssertExec(t, stmt, tx, 24)
|
||||
}
|
||||
|
||||
func TestRecursiveWithStatement_Fibonacci(t *testing.T) {
|
||||
// CTE columns are listed as part of CTE definition
|
||||
n1 := IntegerColumn("n1")
|
||||
fibN1 := IntegerColumn("fibN1")
|
||||
nextFibN1 := IntegerColumn("nextFibN1")
|
||||
fibonacci1 := CTE("fibonacci1", n1, fibN1, nextFibN1)
|
||||
|
||||
// CTE columns are columns from non-recursive select
|
||||
fibonacci2 := CTE("fibonacci2")
|
||||
n2 := IntegerColumn("n2").From(fibonacci2)
|
||||
fibN2 := IntegerColumn("fibN2").From(fibonacci2)
|
||||
nextFibN2 := IntegerColumn("nextFibN2").From(fibonacci2)
|
||||
|
||||
stmt := WITH_RECURSIVE(
|
||||
fibonacci1.AS(
|
||||
SELECT(
|
||||
Int32(1), Int32(0), Int32(1),
|
||||
).UNION_ALL(
|
||||
SELECT(
|
||||
n1.ADD(Int(1)), nextFibN1, fibN1.ADD(nextFibN1),
|
||||
).FROM(
|
||||
fibonacci1,
|
||||
).WHERE(
|
||||
n1.LT(Int(20)),
|
||||
),
|
||||
),
|
||||
),
|
||||
fibonacci2.AS(
|
||||
SELECT(
|
||||
Int32(1).AS(n2.Name()),
|
||||
Int32(0).AS(fibN2.Name()),
|
||||
Int32(1).AS(nextFibN2.Name()),
|
||||
).UNION_ALL(
|
||||
SELECT(
|
||||
n2.ADD(Int(1)), nextFibN2, fibN2.ADD(nextFibN2),
|
||||
).FROM(
|
||||
fibonacci2,
|
||||
).WHERE(
|
||||
n2.LT(Int(20)),
|
||||
),
|
||||
),
|
||||
),
|
||||
)(
|
||||
SELECT(
|
||||
fibonacci1.AllColumns(),
|
||||
fibonacci2.AllColumns(),
|
||||
).FROM(
|
||||
fibonacci1.INNER_JOIN(fibonacci2, n1.EQ(n2)),
|
||||
).WHERE(
|
||||
n1.EQ(Int(20)),
|
||||
),
|
||||
)
|
||||
|
||||
// fmt.Println(stmt.Sql())
|
||||
|
||||
testutils.AssertStatementSql(t, stmt, strings.ReplaceAll(`
|
||||
WITH RECURSIVE fibonacci1 (n1, ''fibN1'', ''nextFibN1'') AS (
|
||||
(
|
||||
SELECT ?,
|
||||
?,
|
||||
?
|
||||
)
|
||||
UNION ALL
|
||||
(
|
||||
SELECT fibonacci1.n1 + ?,
|
||||
fibonacci1.''nextFibN1'' AS "nextFibN1",
|
||||
fibonacci1.''fibN1'' + fibonacci1.''nextFibN1''
|
||||
FROM fibonacci1
|
||||
WHERE fibonacci1.n1 < ?
|
||||
)
|
||||
),fibonacci2 AS (
|
||||
(
|
||||
SELECT ? AS "n2",
|
||||
? AS "fibN2",
|
||||
? AS "nextFibN2"
|
||||
)
|
||||
UNION ALL
|
||||
(
|
||||
SELECT fibonacci2.n2 + ?,
|
||||
fibonacci2.''nextFibN2'' AS "nextFibN2",
|
||||
fibonacci2.''fibN2'' + fibonacci2.''nextFibN2''
|
||||
FROM fibonacci2
|
||||
WHERE fibonacci2.n2 < ?
|
||||
)
|
||||
)
|
||||
SELECT fibonacci1.n1 AS "n1",
|
||||
fibonacci1.''fibN1'' AS "fibN1",
|
||||
fibonacci1.''nextFibN1'' AS "nextFibN1",
|
||||
fibonacci2.n2 AS "n2",
|
||||
fibonacci2.''fibN2'' AS "fibN2",
|
||||
fibonacci2.''nextFibN2'' AS "nextFibN2"
|
||||
FROM fibonacci1
|
||||
INNER JOIN fibonacci2 ON (fibonacci1.n1 = fibonacci2.n2)
|
||||
WHERE fibonacci1.n1 = ?;
|
||||
`, "''", "`"))
|
||||
|
||||
var dest struct {
|
||||
N1 int
|
||||
FibN1 int
|
||||
NextFibN1 int
|
||||
|
||||
N2 int
|
||||
FibN2 int
|
||||
NextFibN2 int
|
||||
}
|
||||
|
||||
err := stmt.Query(db, &dest)
|
||||
require.NoError(t, err)
|
||||
require.Equal(t, dest.N1, 20)
|
||||
require.Equal(t, dest.FibN1, 4181)
|
||||
require.Equal(t, dest.NextFibN1, 6765)
|
||||
require.Equal(t, dest.N2, 20)
|
||||
require.Equal(t, dest.FibN2, 4181)
|
||||
require.Equal(t, dest.NextFibN2, 6765)
|
||||
}
|
||||
|
|
|
|||
|
|
@ -814,10 +814,10 @@ ORDER BY f1.film_id ASC;
|
|||
type F1 model.Film
|
||||
type F2 model.Film
|
||||
|
||||
theSameLengthFilms := []struct {
|
||||
var theSameLengthFilms []struct {
|
||||
F1 F1
|
||||
F2 F2
|
||||
}{}
|
||||
}
|
||||
|
||||
err := query.Query(db, &theSameLengthFilms)
|
||||
|
||||
|
|
@ -858,7 +858,7 @@ LIMIT 1000;
|
|||
Title2 string
|
||||
Length int16
|
||||
}
|
||||
films := []thesameLengthFilms{}
|
||||
var films []thesameLengthFilms
|
||||
|
||||
err := query.Query(db, &films)
|
||||
|
||||
|
|
|
|||
|
|
@ -144,7 +144,7 @@ func TestWithStatementDeleteAndInsert(t *testing.T) {
|
|||
require.Equal(t, len(updateDiscontinuedPrice.AllColumns()[0].(ProjectionList)), 10)
|
||||
require.Equal(t, len(logDiscontinuedProducts.AllColumns()), 10)
|
||||
|
||||
//fmt.Println(stmt.Sql())
|
||||
// fmt.Println(stmt.Sql())
|
||||
|
||||
testutils.AssertStatementSql(t, stmt, `
|
||||
WITH remove_discontinued_orders AS (
|
||||
|
|
@ -218,7 +218,122 @@ FROM log_discontinued;
|
|||
|
||||
err = stmt.Query(tx, &resp)
|
||||
require.NoError(t, err)
|
||||
}
|
||||
|
||||
func TestRecursiveWithStatement_Fibonacci(t *testing.T) {
|
||||
// CTE columns are listed as part of CTE definition
|
||||
n1 := IntegerColumn("n1")
|
||||
fibN1 := IntegerColumn("fibN1")
|
||||
nextFibN1 := IntegerColumn("nextFibN1")
|
||||
fibonacci1 := CTE("fibonacci1", n1, fibN1, nextFibN1)
|
||||
|
||||
// CTE columns are columns from non-recursive select
|
||||
fibonacci2 := CTE("fibonacci2")
|
||||
n2 := IntegerColumn("n2").From(fibonacci2)
|
||||
fibN2 := IntegerColumn("fibN2").From(fibonacci2)
|
||||
nextFibN2 := IntegerColumn("nextFibN2").From(fibonacci2)
|
||||
|
||||
stmt := WITH_RECURSIVE(
|
||||
fibonacci1.AS(
|
||||
SELECT(
|
||||
Int32(1), Int32(0), Int32(1),
|
||||
).UNION_ALL(
|
||||
SELECT(
|
||||
n1.ADD(Int(1)), nextFibN1, fibN1.ADD(nextFibN1),
|
||||
).FROM(
|
||||
fibonacci1,
|
||||
).WHERE(
|
||||
n1.LT(Int(20)),
|
||||
),
|
||||
),
|
||||
),
|
||||
fibonacci2.AS(
|
||||
SELECT(
|
||||
Int32(1).AS(n2.Name()),
|
||||
Int32(0).AS(fibN2.Name()),
|
||||
Int32(1).AS(nextFibN2.Name()),
|
||||
).UNION_ALL(
|
||||
SELECT(
|
||||
n2.ADD(Int(1)), nextFibN2, fibN2.ADD(nextFibN2),
|
||||
).FROM(
|
||||
fibonacci2,
|
||||
).WHERE(
|
||||
n2.LT(Int(20)),
|
||||
),
|
||||
),
|
||||
),
|
||||
)(
|
||||
SELECT(
|
||||
fibonacci1.AllColumns(),
|
||||
fibonacci2.AllColumns(),
|
||||
).FROM(
|
||||
fibonacci1.INNER_JOIN(fibonacci2, n1.EQ(n2)),
|
||||
).WHERE(
|
||||
n1.EQ(Int(20)),
|
||||
),
|
||||
)
|
||||
|
||||
//fmt.Println(stmt.Sql())
|
||||
|
||||
testutils.AssertStatementSql(t, stmt, `
|
||||
WITH RECURSIVE fibonacci1 (n1, "fibN1", "nextFibN1") AS (
|
||||
(
|
||||
SELECT $1::integer,
|
||||
$2::integer,
|
||||
$3::integer
|
||||
)
|
||||
UNION ALL
|
||||
(
|
||||
SELECT fibonacci1.n1 + $4,
|
||||
fibonacci1."nextFibN1" AS "nextFibN1",
|
||||
fibonacci1."fibN1" + fibonacci1."nextFibN1"
|
||||
FROM fibonacci1
|
||||
WHERE fibonacci1.n1 < $5
|
||||
)
|
||||
),fibonacci2 AS (
|
||||
(
|
||||
SELECT $6::integer AS "n2",
|
||||
$7::integer AS "fibN2",
|
||||
$8::integer AS "nextFibN2"
|
||||
)
|
||||
UNION ALL
|
||||
(
|
||||
SELECT fibonacci2.n2 + $9,
|
||||
fibonacci2."nextFibN2" AS "nextFibN2",
|
||||
fibonacci2."fibN2" + fibonacci2."nextFibN2"
|
||||
FROM fibonacci2
|
||||
WHERE fibonacci2.n2 < $10
|
||||
)
|
||||
)
|
||||
SELECT fibonacci1.n1 AS "n1",
|
||||
fibonacci1."fibN1" AS "fibN1",
|
||||
fibonacci1."nextFibN1" AS "nextFibN1",
|
||||
fibonacci2.n2 AS "n2",
|
||||
fibonacci2."fibN2" AS "fibN2",
|
||||
fibonacci2."nextFibN2" AS "nextFibN2"
|
||||
FROM fibonacci1
|
||||
INNER JOIN fibonacci2 ON (fibonacci1.n1 = fibonacci2.n2)
|
||||
WHERE fibonacci1.n1 = $11;
|
||||
`)
|
||||
|
||||
var dest struct {
|
||||
N1 int
|
||||
FibN1 int
|
||||
NextFibN1 int
|
||||
|
||||
N2 int
|
||||
FibN2 int
|
||||
NextFibN2 int
|
||||
}
|
||||
|
||||
err := stmt.Query(db, &dest)
|
||||
require.NoError(t, err)
|
||||
require.Equal(t, dest.N1, 20)
|
||||
require.Equal(t, dest.FibN1, 4181)
|
||||
require.Equal(t, dest.NextFibN1, 6765)
|
||||
require.Equal(t, dest.N2, 20)
|
||||
require.Equal(t, dest.FibN2, 4181)
|
||||
require.Equal(t, dest.NextFibN2, 6765)
|
||||
}
|
||||
|
||||
// default column aliases from sub-queries are bubbled up to the main query,
|
||||
|
|
@ -298,13 +413,7 @@ FROM cte2;
|
|||
require.Equal(t, dest[0].CustomColumn2, "custom_column_2")
|
||||
}
|
||||
|
||||
type EmployeeWrap struct {
|
||||
model.Employees
|
||||
|
||||
Subordinates []*EmployeeWrap
|
||||
}
|
||||
|
||||
func TestWithRecursive(t *testing.T) {
|
||||
func TestRecursiveWithStatement(t *testing.T) {
|
||||
|
||||
subordinates := CTE("subordinates")
|
||||
|
||||
|
|
@ -333,6 +442,14 @@ func TestWithRecursive(t *testing.T) {
|
|||
),
|
||||
)
|
||||
|
||||
//fmt.Println(stmt.DebugSql())
|
||||
|
||||
type EmployeeWrap struct {
|
||||
model.Employees
|
||||
|
||||
Subordinates []*EmployeeWrap
|
||||
}
|
||||
|
||||
type employeeID = int16
|
||||
employeeMap := make(map[employeeID]*EmployeeWrap)
|
||||
|
||||
|
|
@ -352,7 +469,7 @@ func TestWithRecursive(t *testing.T) {
|
|||
|
||||
employeeMap[employeeModel.EmployeeID] = newEmployeeWrap
|
||||
|
||||
if employeeModel.ReportsTo == nil { // top manager(always first row in the result)
|
||||
if result == nil { // top manager(always first row in the result)
|
||||
result = newEmployeeWrap
|
||||
continue
|
||||
}
|
||||
|
|
@ -559,3 +676,73 @@ func TestWithRecursive(t *testing.T) {
|
|||
}
|
||||
`)
|
||||
}
|
||||
|
||||
var suppliersWithFax = CTE("suppliers_fax").AS(
|
||||
SELECT(
|
||||
Suppliers.SupplierID,
|
||||
Suppliers.ContactName,
|
||||
Suppliers.Country,
|
||||
).FROM(
|
||||
Suppliers,
|
||||
).WHERE(Suppliers.Fax.IS_NOT_NULL()),
|
||||
)
|
||||
|
||||
func SuppliersNotFromUSorAUS(suppliersCTE CommonTableExpression) CommonTableExpression {
|
||||
return CTE("not_from_us_or_aus").AS(
|
||||
SELECT(
|
||||
suppliersCTE.AllColumns(),
|
||||
).FROM(
|
||||
suppliersCTE,
|
||||
).WHERE(
|
||||
Suppliers.Country.From(suppliersCTE).NOT_IN(String("US"), String("Australia")),
|
||||
),
|
||||
)
|
||||
}
|
||||
|
||||
func TestCTEReuse(t *testing.T) {
|
||||
suppliersFilteredByCountry := SuppliersNotFromUSorAUS(suppliersWithFax)
|
||||
supplierContactName := Suppliers.ContactName.From(suppliersFilteredByCountry)
|
||||
|
||||
stmt := WITH(
|
||||
suppliersWithFax,
|
||||
suppliersFilteredByCountry,
|
||||
)(
|
||||
SELECT(
|
||||
suppliersFilteredByCountry.AllColumns(),
|
||||
).FROM(
|
||||
suppliersFilteredByCountry,
|
||||
).WHERE(
|
||||
supplierContactName.NOT_EQ(String("John")),
|
||||
),
|
||||
)
|
||||
|
||||
// fmt.Println(stmt.DebugSql())
|
||||
|
||||
testutils.AssertDebugStatementSql(t, stmt, `
|
||||
WITH suppliers_fax AS (
|
||||
SELECT suppliers.supplier_id AS "suppliers.supplier_id",
|
||||
suppliers.contact_name AS "suppliers.contact_name",
|
||||
suppliers.country AS "suppliers.country"
|
||||
FROM northwind.suppliers
|
||||
WHERE suppliers.fax IS NOT NULL
|
||||
),not_from_us_or_aus AS (
|
||||
SELECT suppliers_fax."suppliers.supplier_id" AS "suppliers.supplier_id",
|
||||
suppliers_fax."suppliers.contact_name" AS "suppliers.contact_name",
|
||||
suppliers_fax."suppliers.country" AS "suppliers.country"
|
||||
FROM suppliers_fax
|
||||
WHERE suppliers_fax."suppliers.country" NOT IN ('US', 'Australia')
|
||||
)
|
||||
SELECT not_from_us_or_aus."suppliers.supplier_id" AS "suppliers.supplier_id",
|
||||
not_from_us_or_aus."suppliers.contact_name" AS "suppliers.contact_name",
|
||||
not_from_us_or_aus."suppliers.country" AS "suppliers.country"
|
||||
FROM not_from_us_or_aus
|
||||
WHERE not_from_us_or_aus."suppliers.contact_name" != 'John';
|
||||
`)
|
||||
|
||||
var dest []model.Suppliers
|
||||
|
||||
err := stmt.Query(db, &dest)
|
||||
|
||||
require.NoError(t, err)
|
||||
require.Len(t, dest, 11)
|
||||
}
|
||||
|
|
|
|||
|
|
@ -232,3 +232,117 @@ FROM payment;
|
|||
err := stmt.Query(db, &dest)
|
||||
require.NoError(t, err)
|
||||
}
|
||||
|
||||
func TestRecursiveWithStatement_Fibonacci(t *testing.T) {
|
||||
// CTE columns are listed as part of CTE definition
|
||||
n1 := IntegerColumn("n1")
|
||||
fibN1 := IntegerColumn("fibN1")
|
||||
nextFibN1 := IntegerColumn("nextFibN1")
|
||||
fibonacci1 := CTE("fibonacci1", n1, fibN1, nextFibN1)
|
||||
|
||||
// CTE columns are columns from non-recursive select
|
||||
fibonacci2 := CTE("fibonacci2")
|
||||
n2 := IntegerColumn("n2").From(fibonacci2)
|
||||
fibN2 := IntegerColumn("fibN2").From(fibonacci2)
|
||||
nextFibN2 := IntegerColumn("nextFibN2").From(fibonacci2)
|
||||
|
||||
stmt := WITH_RECURSIVE(
|
||||
fibonacci1.AS(
|
||||
SELECT(
|
||||
Int32(1), Int32(0), Int32(1),
|
||||
).UNION_ALL(
|
||||
SELECT(
|
||||
n1.ADD(Int(1)), nextFibN1, fibN1.ADD(nextFibN1),
|
||||
).FROM(
|
||||
fibonacci1,
|
||||
).WHERE(
|
||||
n1.LT(Int(20)),
|
||||
),
|
||||
),
|
||||
),
|
||||
fibonacci2.AS(
|
||||
SELECT(
|
||||
Int32(1).AS(n2.Name()),
|
||||
Int32(0).AS(fibN2.Name()),
|
||||
Int32(1).AS(nextFibN2.Name()),
|
||||
).UNION_ALL(
|
||||
SELECT(
|
||||
n2.ADD(Int(1)), nextFibN2, fibN2.ADD(nextFibN2),
|
||||
).FROM(
|
||||
fibonacci2,
|
||||
).WHERE(
|
||||
n2.LT(Int(20)),
|
||||
),
|
||||
),
|
||||
),
|
||||
)(
|
||||
SELECT(
|
||||
fibonacci1.AllColumns(),
|
||||
fibonacci2.AllColumns(),
|
||||
).FROM(
|
||||
fibonacci1.INNER_JOIN(fibonacci2, n1.EQ(n2)),
|
||||
).WHERE(
|
||||
n1.EQ(Int(20)),
|
||||
),
|
||||
)
|
||||
|
||||
//fmt.Println(stmt.Sql())
|
||||
|
||||
testutils.AssertStatementSql(t, stmt, strings.ReplaceAll(`
|
||||
WITH RECURSIVE fibonacci1 (n1, ''fibN1'', ''nextFibN1'') AS (
|
||||
|
||||
SELECT ?,
|
||||
?,
|
||||
?
|
||||
|
||||
UNION ALL
|
||||
|
||||
SELECT fibonacci1.n1 + ?,
|
||||
fibonacci1.''nextFibN1'' AS "nextFibN1",
|
||||
fibonacci1.''fibN1'' + fibonacci1.''nextFibN1''
|
||||
FROM fibonacci1
|
||||
WHERE fibonacci1.n1 < ?
|
||||
),fibonacci2 AS (
|
||||
|
||||
SELECT ? AS "n2",
|
||||
? AS "fibN2",
|
||||
? AS "nextFibN2"
|
||||
|
||||
UNION ALL
|
||||
|
||||
SELECT fibonacci2.n2 + ?,
|
||||
fibonacci2.''nextFibN2'' AS "nextFibN2",
|
||||
fibonacci2.''fibN2'' + fibonacci2.''nextFibN2''
|
||||
FROM fibonacci2
|
||||
WHERE fibonacci2.n2 < ?
|
||||
)
|
||||
SELECT fibonacci1.n1 AS "n1",
|
||||
fibonacci1.''fibN1'' AS "fibN1",
|
||||
fibonacci1.''nextFibN1'' AS "nextFibN1",
|
||||
fibonacci2.n2 AS "n2",
|
||||
fibonacci2.''fibN2'' AS "fibN2",
|
||||
fibonacci2.''nextFibN2'' AS "nextFibN2"
|
||||
FROM fibonacci1
|
||||
INNER JOIN fibonacci2 ON (fibonacci1.n1 = fibonacci2.n2)
|
||||
WHERE fibonacci1.n1 = ?;
|
||||
`, "''", "`"))
|
||||
|
||||
var dest struct {
|
||||
N1 int
|
||||
FibN1 int
|
||||
NextFibN1 int
|
||||
|
||||
N2 int
|
||||
FibN2 int
|
||||
NextFibN2 int
|
||||
}
|
||||
|
||||
err := stmt.Query(db, &dest)
|
||||
require.NoError(t, err)
|
||||
require.Equal(t, dest.N1, 20)
|
||||
require.Equal(t, dest.FibN1, 4181)
|
||||
require.Equal(t, dest.NextFibN1, 6765)
|
||||
require.Equal(t, dest.N2, 20)
|
||||
require.Equal(t, dest.FibN2, 4181)
|
||||
require.Equal(t, dest.NextFibN2, 6765)
|
||||
}
|
||||
|
|
|
|||
Loading…
Add table
Add a link
Reference in a new issue