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- package parser
- import (
- "strings"
- "github.com/danfragoso/pizzasql-next/pkg/lexer"
- )
- // Parser parses SQL statements into an AST.
- type Parser struct {
- lexer *lexer.Lexer
- curToken lexer.Token
- peekToken lexer.Token
- errors []*ParseError
- }
- // New creates a new Parser.
- func New(l *lexer.Lexer) *Parser {
- p := &Parser{lexer: l}
- // Read two tokens to initialize curToken and peekToken
- p.nextToken()
- p.nextToken()
- return p
- }
- // Parse parses a SQL statement.
- func (p *Parser) Parse() (Statement, error) {
- stmt, err := p.parseStatement()
- if err != nil {
- return nil, err
- }
- // Consume optional semicolon
- if p.curTokenIs(lexer.TokenSemicolon) {
- p.nextToken()
- }
- if !p.curTokenIs(lexer.TokenEOF) {
- return nil, p.curError("unexpected trailing token: " + p.curToken.Type.String())
- }
- return stmt, nil
- }
- // ParseMultiple parses multiple SQL statements.
- func (p *Parser) ParseMultiple() ([]Statement, error) {
- var stmts []Statement
- for !p.curTokenIs(lexer.TokenEOF) {
- stmt, err := p.parseStatement()
- if err != nil {
- return nil, err
- }
- stmts = append(stmts, stmt)
- // Consume optional semicolon
- if p.curTokenIs(lexer.TokenSemicolon) {
- p.nextToken()
- }
- }
- return stmts, nil
- }
- func (p *Parser) nextToken() {
- p.curToken = p.peekToken
- p.peekToken = p.lexer.NextToken()
- // Skip comments
- for p.peekToken.Type == lexer.TokenComment {
- p.peekToken = p.lexer.NextToken()
- }
- }
- func (p *Parser) curTokenIs(t lexer.TokenType) bool {
- return p.curToken.Type == t
- }
- func (p *Parser) peekTokenIs(t lexer.TokenType) bool {
- return p.peekToken.Type == t
- }
- func (p *Parser) expectPeek(t lexer.TokenType) error {
- if p.peekTokenIs(t) {
- p.nextToken()
- return nil
- }
- return p.peekError(t)
- }
- func (p *Parser) peekError(t lexer.TokenType) error {
- return newError(
- "expected "+t.String()+", got "+p.peekToken.Type.String(),
- p.peekToken.Line,
- p.peekToken.Column,
- p.peekToken.Literal,
- )
- }
- func (p *Parser) curError(msg string) error {
- return newError(
- msg,
- p.curToken.Line,
- p.curToken.Column,
- p.curToken.Literal,
- )
- }
- func (p *Parser) parseStatement() (Statement, error) {
- if p.isWithStart() {
- return p.parseWithStatement()
- }
- switch p.curToken.Type {
- case lexer.TokenSELECT:
- return p.parseSelect()
- case lexer.TokenINSERT:
- return p.parseInsert()
- case lexer.TokenUPDATE:
- return p.parseUpdate()
- case lexer.TokenDELETE:
- return p.parseDelete()
- case lexer.TokenCREATE:
- return p.parseCreate()
- case lexer.TokenDROP:
- return p.parseDrop()
- case lexer.TokenALTER:
- return p.parseAlter()
- case lexer.TokenATTACH:
- return p.parseAttach()
- case lexer.TokenDETACH:
- return p.parseDetach()
- case lexer.TokenPRAGMA:
- return p.parsePragma()
- case lexer.TokenEXPLAIN:
- return p.parseExplain()
- case lexer.TokenBEGIN:
- return p.parseBegin()
- case lexer.TokenCOMMIT:
- return p.parseCommit()
- case lexer.TokenROLLBACK:
- return p.parseRollback()
- case lexer.TokenSAVEPOINT:
- return p.parseSavepoint()
- case lexer.TokenRELEASE:
- return p.parseRelease()
- default:
- return nil, p.curError("unexpected token: " + p.curToken.Type.String())
- }
- }
- // parseSingleSelectTerm parses one SELECT body (SELECT … FROM … WHERE … GROUP BY … HAVING …)
- // but stops before any set operator, ORDER BY, LIMIT, or OFFSET.
- // Callers that want the full chain (including set ops) use parseSelect instead.
- func (p *Parser) parseSingleSelectTerm() (*SelectStmt, error) {
- stmt := &SelectStmt{}
- p.nextToken() // consume SELECT
- // Check for DISTINCT / ALL
- if p.curTokenIs(lexer.TokenDISTINCT) {
- stmt.Distinct = true
- p.nextToken()
- } else if p.curTokenIs(lexer.TokenALL) {
- p.nextToken()
- }
- cols, err := p.parseSelectColumns()
- if err != nil {
- return nil, err
- }
- stmt.Columns = cols
- if p.curTokenIs(lexer.TokenFROM) {
- p.nextToken()
- tables, err := p.parseTableRefs()
- if err != nil {
- return nil, err
- }
- stmt.From = tables
- }
- if p.curTokenIs(lexer.TokenWHERE) {
- p.nextToken()
- where, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- stmt.Where = where
- }
- if p.curTokenIs(lexer.TokenGROUP) {
- if err := p.expectPeek(lexer.TokenBY); err != nil {
- return nil, err
- }
- p.nextToken()
- groupBy, err := p.parseExprList()
- if err != nil {
- return nil, err
- }
- stmt.GroupBy = groupBy
- }
- if p.curTokenIs(lexer.TokenHAVING) {
- p.nextToken()
- having, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- stmt.Having = having
- }
- return stmt, nil
- }
- // parseSelect parses a SELECT statement, including any trailing set operations
- // (UNION / INTERSECT / EXCEPT) and an optional ORDER BY / LIMIT / OFFSET.
- func (p *Parser) parseSelect() (*SelectStmt, error) {
- stmt, err := p.parseSingleSelectTerm()
- if err != nil {
- return nil, err
- }
- // Handle set operations: UNION [ALL], INTERSECT, EXCEPT
- if p.curTokenIs(lexer.TokenUNION) || p.curTokenIs(lexer.TokenINTERSECT) || p.curTokenIs(lexer.TokenEXCEPT) {
- compound, err := p.parseCompoundChain(stmt)
- if err != nil {
- return nil, err
- }
- return &SelectStmt{Compound: compound}, nil
- }
- // Parse ORDER BY clause
- if p.curTokenIs(lexer.TokenORDER) {
- if err := p.expectPeek(lexer.TokenBY); err != nil {
- return nil, err
- }
- p.nextToken()
- orderBy, err := p.parseOrderBy()
- if err != nil {
- return nil, err
- }
- stmt.OrderBy = orderBy
- }
- // Parse LIMIT clause
- if p.curTokenIs(lexer.TokenLIMIT) {
- p.nextToken()
- limit, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- stmt.Limit = limit
- }
- // Parse OFFSET clause
- if p.curTokenIs(lexer.TokenOFFSET) {
- p.nextToken()
- offset, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- stmt.Offset = offset
- }
- return stmt, nil
- }
- // setOpPrec returns the precedence of a set operator token.
- // INTERSECT binds more tightly than UNION/EXCEPT per SQL standard.
- func setOpPrec(t lexer.TokenType) int {
- if t == lexer.TokenINTERSECT {
- return 2
- }
- return 1
- }
- // parseCompoundChain collects all set-op legs and builds a left-associative tree
- // respecting INTERSECT > UNION/EXCEPT precedence.
- //
- // The algorithm is the standard precedence-climbing / Pratt approach:
- //
- // parseMin(minPrec):
- // left = first already-parsed SELECT (passed in as `first`)
- // while curOp.prec >= minPrec:
- // op = curOp; consume op
- // right = parseSingleSelect()
- // while nextOp.prec > op.prec: // right-bind tighter ops
- // right = parseMin(op.prec+1) using right as seed
- // left = Compound(left, op, right)
- // return left
- func (p *Parser) parseCompoundChain(first *SelectStmt) (*CompoundSelect, error) {
- type leg struct {
- op SetOpType
- query *SelectStmt
- }
- // Consume a set-op token and return its SetOpType + precedence.
- consumeOp := func() (SetOpType, int, error) {
- switch p.curToken.Type {
- case lexer.TokenUNION:
- p.nextToken()
- if p.curTokenIs(lexer.TokenALL) {
- p.nextToken()
- return SetOpUnionAll, 1, nil
- }
- return SetOpUnion, 1, nil
- case lexer.TokenINTERSECT:
- p.nextToken()
- return SetOpIntersect, 2, nil
- case lexer.TokenEXCEPT:
- p.nextToken()
- return SetOpExcept, 1, nil
- }
- return 0, 0, p.curError("expected UNION, INTERSECT, or EXCEPT")
- }
- isSetOp := func() bool {
- return p.curTokenIs(lexer.TokenUNION) ||
- p.curTokenIs(lexer.TokenINTERSECT) ||
- p.curTokenIs(lexer.TokenEXCEPT)
- }
- // parseSingleSelect parses the next SELECT term (no set-ops claimed).
- parseSingleSelect := func() (*SelectStmt, error) {
- if !p.curTokenIs(lexer.TokenSELECT) {
- return nil, p.curError("expected SELECT after set operator")
- }
- return p.parseSingleSelectTerm()
- }
- // Precedence-climbing: build left-to-right tree, INTERSECT binds tighter.
- var climb func(left *SelectStmt, minPrec int) (*CompoundSelect, error)
- climb = func(left *SelectStmt, minPrec int) (*CompoundSelect, error) {
- for isSetOp() && setOpPrec(p.curToken.Type) >= minPrec {
- op, prec, err := consumeOp()
- if err != nil {
- return nil, err
- }
- right, err := parseSingleSelect()
- if err != nil {
- return nil, err
- }
- // If the right node itself resolved to a compound (via recursive parseSelect),
- // unwrap and re-climb properly.
- if right.Compound != nil {
- // right was a sub-chain; treat it as already climbed.
- } else {
- // Absorb any higher-precedence ops on the right.
- for isSetOp() && setOpPrec(p.curToken.Type) > prec {
- sub, err := climb(right, prec+1)
- if err != nil {
- return nil, err
- }
- right = &SelectStmt{Compound: sub}
- break
- }
- }
- node := &CompoundSelect{Left: left, Op: op, Right: right}
- left = &SelectStmt{Compound: node}
- }
- if left.Compound != nil {
- return left.Compound, nil
- }
- return nil, p.curError("internal: no compound built")
- }
- compound, err := climb(first, 1)
- if err != nil {
- return nil, err
- }
- // Parse trailing ORDER BY / LIMIT / OFFSET that apply to the whole compound.
- if p.curTokenIs(lexer.TokenORDER) {
- if err := p.expectPeek(lexer.TokenBY); err != nil {
- return nil, err
- }
- p.nextToken()
- orderBy, err := p.parseOrderBy()
- if err != nil {
- return nil, err
- }
- compound.OrderBy = orderBy
- }
- if p.curTokenIs(lexer.TokenLIMIT) {
- p.nextToken()
- limit, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- compound.Limit = limit
- }
- if p.curTokenIs(lexer.TokenOFFSET) {
- p.nextToken()
- offset, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- compound.Offset = offset
- }
- return compound, nil
- }
- func (p *Parser) parseSelectColumns() ([]SelectColumn, error) {
- var cols []SelectColumn
- for {
- col := SelectColumn{}
- if p.curTokenIs(lexer.TokenStar) {
- col.Star = true
- p.nextToken()
- } else {
- expr, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- // Qualified wildcard (table.*): the expression grammar parses this as
- // ColumnRef{Table: table, Column: "*"}. Lift it into a scoped wildcard
- // projection instead of a column reference literally named "*".
- if ref, ok := expr.(*ColumnRef); ok && ref.Table != "" && ref.Column == "*" {
- col.TableStar = ref.Table
- } else {
- col.Expr = expr
- // Check for AS alias
- if p.curTokenIs(lexer.TokenAS) {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected identifier after AS")
- }
- col.Alias = p.curToken.Literal
- p.nextToken()
- } else if p.curTokenIs(lexer.TokenIdent) {
- // Alias without AS
- col.Alias = p.curToken.Literal
- p.nextToken()
- }
- }
- }
- cols = append(cols, col)
- if !p.curTokenIs(lexer.TokenComma) {
- break
- }
- p.nextToken() // consume comma
- }
- return cols, nil
- }
- func (p *Parser) parseTableRefs() ([]TableRef, error) {
- var tables []TableRef
- table, err := p.parseTableRef()
- if err != nil {
- return nil, err
- }
- tables = append(tables, *table)
- // Parse JOINs or comma-separated tables
- for {
- if p.curTokenIs(lexer.TokenComma) {
- p.nextToken()
- table, err := p.parseTableRef()
- if err != nil {
- return nil, err
- }
- tables = append(tables, *table)
- } else if p.isJoinKeyword() {
- join, err := p.parseJoin()
- if err != nil {
- return nil, err
- }
- // Find the last Join in the chain and attach new join there
- lastTable := &tables[len(tables)-1]
- if lastTable.Join == nil {
- lastTable.Join = join
- } else {
- // Find the end of the join chain
- current := lastTable.Join
- for current.Table != nil && current.Table.Join != nil {
- current = current.Table.Join
- }
- // Attach to the end of the chain
- if current.Table != nil {
- current.Table.Join = join
- }
- }
- } else {
- break
- }
- }
- return tables, nil
- }
- func (p *Parser) parseTableRef() (*TableRef, error) {
- ref := &TableRef{}
- // Check for subquery (SELECT ...)
- if p.curTokenIs(lexer.TokenLParen) {
- p.nextToken()
- if p.curTokenIs(lexer.TokenSELECT) {
- subquery, err := p.parseSelect()
- if err != nil {
- return nil, err
- }
- ref.Subquery = subquery
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected ) after subquery")
- }
- p.nextToken()
- // Subquery must have an alias
- if p.curTokenIs(lexer.TokenAS) {
- p.nextToken()
- }
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("subquery in FROM must have an alias")
- }
- ref.Alias = p.curToken.Literal
- p.nextToken()
- return ref, nil
- }
- // Parenthesized table expression: (table1 JOIN table2) or (table1, table2)
- innerRefs, err := p.parseTableRefs()
- if err != nil {
- return nil, err
- }
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected ) after table expression")
- }
- p.nextToken()
- // Flatten: use first ref as base, attach remaining as joins
- if len(innerRefs) == 0 {
- return nil, p.curError("empty table expression")
- }
- base := &innerRefs[0]
- for i := 1; i < len(innerRefs); i++ {
- cur := base
- for cur.Join != nil && cur.Join.Table != nil {
- cur = cur.Join.Table
- }
- extra := innerRefs[i]
- if cur.Join == nil {
- cur.Join = &JoinClause{Type: JoinCross, Table: &extra}
- } else {
- cur.Join.Table = &extra
- }
- }
- return base, nil
- }
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected table name")
- }
- ref.Name = p.curToken.Literal
- p.nextToken()
- // Check for schema.table
- if p.curTokenIs(lexer.TokenDot) {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected table name after dot")
- }
- ref.Schema = ref.Name
- ref.Name = p.curToken.Literal
- p.nextToken()
- }
- // Check for alias
- if p.curTokenIs(lexer.TokenAS) {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected identifier after AS")
- }
- ref.Alias = p.curToken.Literal
- p.nextToken()
- } else if p.curTokenIs(lexer.TokenIdent) && !p.isClauseKeyword() {
- ref.Alias = p.curToken.Literal
- p.nextToken()
- }
- return ref, nil
- }
- func (p *Parser) isJoinKeyword() bool {
- switch p.curToken.Type {
- case lexer.TokenJOIN, lexer.TokenINNER, lexer.TokenLEFT,
- lexer.TokenRIGHT, lexer.TokenFULL, lexer.TokenCROSS,
- lexer.TokenNATURAL:
- return true
- }
- return false
- }
- func (p *Parser) isClauseKeyword() bool {
- switch p.curToken.Type {
- case lexer.TokenWHERE, lexer.TokenGROUP, lexer.TokenHAVING,
- lexer.TokenORDER, lexer.TokenLIMIT, lexer.TokenOFFSET,
- lexer.TokenUNION, lexer.TokenINTERSECT, lexer.TokenEXCEPT,
- lexer.TokenON, lexer.TokenUSING:
- return true
- }
- return false
- }
- func (p *Parser) parseJoin() (*JoinClause, error) {
- join := &JoinClause{Type: JoinInner}
- // Determine join type
- switch p.curToken.Type {
- case lexer.TokenINNER:
- join.Type = JoinInner
- p.nextToken()
- case lexer.TokenLEFT:
- join.Type = JoinLeft
- p.nextToken()
- if p.curTokenIs(lexer.TokenOUTER) {
- p.nextToken()
- }
- case lexer.TokenRIGHT:
- join.Type = JoinRight
- p.nextToken()
- if p.curTokenIs(lexer.TokenOUTER) {
- p.nextToken()
- }
- case lexer.TokenFULL:
- join.Type = JoinFull
- p.nextToken()
- if p.curTokenIs(lexer.TokenOUTER) {
- p.nextToken()
- }
- case lexer.TokenCROSS:
- join.Type = JoinCross
- p.nextToken()
- case lexer.TokenNATURAL:
- p.nextToken()
- // Could be NATURAL LEFT/RIGHT/INNER JOIN
- if p.curTokenIs(lexer.TokenLEFT) {
- join.Type = JoinLeft
- p.nextToken()
- } else if p.curTokenIs(lexer.TokenRIGHT) {
- join.Type = JoinRight
- p.nextToken()
- }
- }
- // Expect JOIN keyword
- if p.curTokenIs(lexer.TokenJOIN) {
- p.nextToken()
- } else if p.curToken.Type != lexer.TokenIdent {
- return nil, p.curError("expected JOIN")
- }
- // Parse table reference
- table, err := p.parseTableRef()
- if err != nil {
- return nil, err
- }
- join.Table = table
- // Parse ON or USING clause
- if p.curTokenIs(lexer.TokenON) {
- p.nextToken()
- cond, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- join.Condition = cond
- } else if p.curTokenIs(lexer.TokenUSING) {
- p.nextToken()
- if err := p.expectPeek(lexer.TokenLParen); err != nil {
- return nil, err
- }
- p.nextToken()
- cols, err := p.parseIdentList()
- if err != nil {
- return nil, err
- }
- join.Using = cols
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected )")
- }
- p.nextToken()
- }
- return join, nil
- }
- func (p *Parser) parseOrderBy() ([]OrderByItem, error) {
- var items []OrderByItem
- for {
- item := OrderByItem{}
- expr, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- item.Expr = expr
- if p.curTokenIs(lexer.TokenDESC) {
- item.Desc = true
- p.nextToken()
- } else if p.curTokenIs(lexer.TokenASC) {
- p.nextToken()
- }
- // Optional NULLS FIRST / NULLS LAST.
- if p.curTokenIs(lexer.TokenIdent) && strings.EqualFold(p.curToken.Literal, "NULLS") {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected FIRST or LAST after NULLS")
- }
- switch {
- case strings.EqualFold(p.curToken.Literal, "FIRST"):
- item.NullsOrder = NullsFirst
- case strings.EqualFold(p.curToken.Literal, "LAST"):
- item.NullsOrder = NullsLast
- default:
- return nil, p.curError("expected FIRST or LAST after NULLS")
- }
- p.nextToken()
- }
- items = append(items, item)
- if !p.curTokenIs(lexer.TokenComma) {
- break
- }
- p.nextToken()
- }
- return items, nil
- }
- // parseInsert parses an INSERT statement.
- func (p *Parser) parseInsert() (*InsertStmt, error) {
- stmt := &InsertStmt{}
- p.nextToken() // consume INSERT
- // Check for OR conflict clause
- if p.curTokenIs(lexer.TokenOR) {
- p.nextToken()
- switch p.curToken.Type {
- case lexer.TokenREPLACE:
- stmt.OnConflict = ConflictReplace
- case lexer.TokenIGNORE:
- stmt.OnConflict = ConflictIgnore
- case lexer.TokenFAIL:
- stmt.OnConflict = ConflictFail
- case lexer.TokenABORT:
- stmt.OnConflict = ConflictAbort
- case lexer.TokenROLLBACK:
- stmt.OnConflict = ConflictRollback
- default:
- return nil, p.curError("expected REPLACE, IGNORE, FAIL, ABORT, or ROLLBACK after OR")
- }
- p.nextToken()
- }
- if !p.curTokenIs(lexer.TokenINTO) {
- return nil, p.curError("expected INTO")
- }
- p.nextToken()
- // Parse table name
- table, err := p.parseTableRef()
- if err != nil {
- return nil, err
- }
- stmt.Table = table
- // Parse optional column list
- if p.curTokenIs(lexer.TokenLParen) {
- p.nextToken()
- cols, err := p.parseIdentList()
- if err != nil {
- return nil, err
- }
- stmt.Columns = cols
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected )")
- }
- p.nextToken()
- }
- // Parse VALUES or SELECT
- if p.curTokenIs(lexer.TokenVALUES) {
- p.nextToken()
- values, err := p.parseValuesList()
- if err != nil {
- return nil, err
- }
- stmt.Values = values
- } else if p.curTokenIs(lexer.TokenSELECT) {
- sel, err := p.parseSelect()
- if err != nil {
- return nil, err
- }
- stmt.Select = sel
- } else {
- return nil, p.curError("expected VALUES or SELECT")
- }
- if p.curTokenIs(lexer.TokenON) {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenCONFLICT) {
- return nil, p.curError("expected CONFLICT after ON")
- }
- p.nextToken()
- if p.curTokenIs(lexer.TokenLParen) {
- p.nextToken()
- target, err := p.parseIdentList()
- if err != nil {
- return nil, err
- }
- stmt.ConflictTarget = target
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected )")
- }
- p.nextToken()
- }
- if !p.curTokenIs(lexer.TokenDO) {
- return nil, p.curError("expected DO after ON CONFLICT")
- }
- p.nextToken()
- if p.curTokenIs(lexer.TokenNOTHING) {
- stmt.ConflictDoNothing = true
- p.nextToken()
- } else if p.curTokenIs(lexer.TokenUPDATE) {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenSET) {
- return nil, p.curError("expected SET after DO UPDATE")
- }
- p.nextToken()
- for {
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected column name")
- }
- column := p.curToken.Literal
- p.nextToken()
- if !p.curTokenIs(lexer.TokenEq) {
- return nil, p.curError("expected =")
- }
- p.nextToken()
- value, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- stmt.ConflictUpdate = append(stmt.ConflictUpdate, Assignment{Column: column, Value: value})
- if !p.curTokenIs(lexer.TokenComma) {
- break
- }
- p.nextToken()
- }
- } else {
- return nil, p.curError("expected NOTHING or UPDATE after DO")
- }
- }
- return stmt, nil
- }
- func (p *Parser) parseValuesList() ([][]Expr, error) {
- var rows [][]Expr
- for {
- if !p.curTokenIs(lexer.TokenLParen) {
- return nil, p.curError("expected (")
- }
- p.nextToken()
- row, err := p.parseExprList()
- if err != nil {
- return nil, err
- }
- rows = append(rows, row)
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected )")
- }
- p.nextToken()
- if !p.curTokenIs(lexer.TokenComma) {
- break
- }
- p.nextToken()
- }
- return rows, nil
- }
- // parseUpdate parses an UPDATE statement.
- func (p *Parser) parseUpdate() (*UpdateStmt, error) {
- stmt := &UpdateStmt{}
- p.nextToken() // consume UPDATE
- // Parse table name
- table, err := p.parseTableRef()
- if err != nil {
- return nil, err
- }
- stmt.Table = table
- // Expect SET
- if !p.curTokenIs(lexer.TokenSET) {
- return nil, p.curError("expected SET")
- }
- p.nextToken()
- // Parse assignments
- for {
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected column name")
- }
- col := p.curToken.Literal
- p.nextToken()
- if !p.curTokenIs(lexer.TokenEq) {
- return nil, p.curError("expected =")
- }
- p.nextToken()
- val, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- stmt.Set = append(stmt.Set, Assignment{Column: col, Value: val})
- if !p.curTokenIs(lexer.TokenComma) {
- break
- }
- p.nextToken()
- }
- // Parse optional WHERE
- if p.curTokenIs(lexer.TokenWHERE) {
- p.nextToken()
- where, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- stmt.Where = where
- }
- return stmt, nil
- }
- // parseDelete parses a DELETE statement.
- func (p *Parser) parseDelete() (*DeleteStmt, error) {
- stmt := &DeleteStmt{}
- p.nextToken() // consume DELETE
- if !p.curTokenIs(lexer.TokenFROM) {
- return nil, p.curError("expected FROM")
- }
- p.nextToken()
- // Parse table name
- table, err := p.parseTableRef()
- if err != nil {
- return nil, err
- }
- stmt.Table = table
- // Parse optional WHERE
- if p.curTokenIs(lexer.TokenWHERE) {
- p.nextToken()
- where, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- stmt.Where = where
- }
- return stmt, nil
- }
- // parseCreate parses CREATE statements.
- func (p *Parser) parseCreate() (Statement, error) {
- p.nextToken() // consume CREATE
- switch p.curToken.Type {
- case lexer.TokenTABLE:
- return p.parseCreateTable()
- case lexer.TokenINDEX:
- return p.parseCreateIndex(false)
- case lexer.TokenUNIQUE:
- p.nextToken() // consume UNIQUE
- if !p.curTokenIs(lexer.TokenINDEX) {
- return nil, p.curError("expected INDEX after UNIQUE")
- }
- return p.parseCreateIndex(true)
- case lexer.TokenVIEW:
- return p.parseCreateView()
- default:
- return nil, p.curError("expected TABLE or INDEX after CREATE")
- }
- }
- func (p *Parser) parseCreateTable() (*CreateTableStmt, error) {
- stmt := &CreateTableStmt{}
- p.nextToken() // consume TABLE
- // Check for IF NOT EXISTS
- if p.curTokenIs(lexer.TokenIF) {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenNOT) {
- return nil, p.curError("expected NOT")
- }
- p.nextToken()
- if !p.curTokenIs(lexer.TokenEXISTS) {
- return nil, p.curError("expected EXISTS")
- }
- stmt.IfNotExists = true
- p.nextToken()
- }
- // Parse table name
- table, err := p.parseTableRef()
- if err != nil {
- return nil, err
- }
- stmt.Table = table
- // Expect (
- if !p.curTokenIs(lexer.TokenLParen) {
- return nil, p.curError("expected (")
- }
- p.nextToken()
- // Parse column definitions and constraints
- for {
- if p.curTokenIs(lexer.TokenRParen) {
- break
- }
- // Check for table constraint
- if p.isTableConstraintStart() {
- constraint, err := p.parseTableConstraint()
- if err != nil {
- return nil, err
- }
- stmt.Constraints = append(stmt.Constraints, *constraint)
- } else {
- // Column definition
- col, err := p.parseColumnDef()
- if err != nil {
- return nil, err
- }
- stmt.Columns = append(stmt.Columns, *col)
- }
- if !p.curTokenIs(lexer.TokenComma) {
- break
- }
- p.nextToken()
- }
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected )")
- }
- p.nextToken()
- return stmt, nil
- }
- func (p *Parser) isTableConstraintStart() bool {
- switch p.curToken.Type {
- case lexer.TokenPRIMARY, lexer.TokenFOREIGN, lexer.TokenUNIQUE,
- lexer.TokenCHECK, lexer.TokenCONSTRAINT:
- return true
- }
- return false
- }
- func (p *Parser) parseColumnDef() (*ColumnDef, error) {
- col := &ColumnDef{}
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected column name")
- }
- col.Name = p.curToken.Literal
- p.nextToken()
- // Parse data type
- dataType, err := p.parseDataType()
- if err != nil {
- return nil, err
- }
- col.Type = *dataType
- // Parse column constraints
- for {
- constraint, ok, err := p.parseColumnConstraint()
- if err != nil {
- return nil, err
- }
- if !ok {
- break
- }
- if constraint != nil {
- col.Constraints = append(col.Constraints, *constraint)
- }
- }
- return col, nil
- }
- // identTypeAliases maps non-reserved type names (lexed as plain identifiers)
- // to their canonical data type name. These are stored with SQLite text
- // affinity and never gain native PostgreSQL semantics.
- var identTypeAliases = map[string]string{
- "UUID": "UUID",
- }
- func (p *Parser) parseDataType() (*DataType, error) {
- dt := &DataType{}
- if p.curTokenIs(lexer.TokenIdent) {
- // A few well-known type names (e.g. UUID) are not reserved keywords and
- // lex as identifiers. Recognize them as type aliases so they can be used
- // in column definitions.
- name, ok := identTypeAliases[strings.ToUpper(p.curToken.Literal)]
- if !ok {
- return nil, p.curError("expected data type")
- }
- dt.Name = name
- p.nextToken()
- } else {
- if !p.isDataTypeKeyword() {
- return nil, p.curError("expected data type")
- }
- dt.Name = strings.ToUpper(p.curToken.Literal)
- p.nextToken()
- }
- // Check for precision/scale
- if p.curTokenIs(lexer.TokenLParen) {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenNumber) {
- return nil, p.curError("expected number for precision")
- }
- // Parse precision (simplified - just store in Precision)
- dt.Precision = parseInt(p.curToken.Literal)
- p.nextToken()
- if p.curTokenIs(lexer.TokenComma) {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenNumber) {
- return nil, p.curError("expected number for scale")
- }
- dt.Scale = parseInt(p.curToken.Literal)
- p.nextToken()
- }
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected )")
- }
- p.nextToken()
- }
- return dt, nil
- }
- func (p *Parser) isDataTypeKeyword() bool {
- switch p.curToken.Type {
- case lexer.TokenINTEGER, lexer.TokenINT, lexer.TokenTINYINT, lexer.TokenSMALLINT, lexer.TokenMEDIUMINT, lexer.TokenBIGINT,
- lexer.TokenREAL, lexer.TokenFLOAT, lexer.TokenDOUBLE,
- lexer.TokenNUMERIC, lexer.TokenDECIMAL,
- lexer.TokenTEXT, lexer.TokenVARCHAR, lexer.TokenCHAR, lexer.TokenCHARACTER, lexer.TokenCLOB, lexer.TokenNCHAR, lexer.TokenNVARCHAR,
- lexer.TokenBLOB, lexer.TokenBOOLEAN,
- lexer.TokenDATE, lexer.TokenTIME, lexer.TokenTIMESTAMP, lexer.TokenDATETIME, lexer.TokenJSON, lexer.TokenJSONB:
- return true
- }
- return false
- }
- func (p *Parser) parseColumnConstraint() (*ColumnConstraint, bool, error) {
- constraint := &ColumnConstraint{}
- switch p.curToken.Type {
- case lexer.TokenPRIMARY:
- p.nextToken()
- if !p.curTokenIs(lexer.TokenKEY) {
- return nil, false, p.curError("expected KEY after PRIMARY")
- }
- constraint.Type = ConstraintPrimaryKey
- p.nextToken()
- case lexer.TokenNOT:
- p.nextToken()
- if !p.curTokenIs(lexer.TokenNULL) {
- return nil, false, p.curError("expected NULL after NOT")
- }
- constraint.Type = ConstraintNotNull
- p.nextToken()
- case lexer.TokenUNIQUE:
- constraint.Type = ConstraintUnique
- p.nextToken()
- case lexer.TokenDEFAULT:
- p.nextToken()
- // parseUnaryExpr accepts a signed numeric literal (-1, +5) and falls
- // through to primary expressions, including parenthesized expressions.
- // It stops before NOT/NULL, so a following NOT NULL constraint is left
- // for the enclosing constraint loop.
- expr, err := p.parseUnaryExpr()
- if err != nil {
- return nil, false, err
- }
- constraint.Type = ConstraintDefault
- constraint.Default = expr
- case lexer.TokenREFERENCES:
- p.nextToken()
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, false, p.curError("expected table name after REFERENCES")
- }
- constraint.Type = ConstraintForeignKey
- constraint.RefTable = p.curToken.Literal
- p.nextToken()
- if p.curTokenIs(lexer.TokenLParen) {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, false, p.curError("expected column name")
- }
- constraint.RefColumn = p.curToken.Literal
- p.nextToken()
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, false, p.curError("expected )")
- }
- p.nextToken()
- }
- case lexer.TokenAUTOINCREMENT:
- constraint.Type = ConstraintAutoIncrement
- p.nextToken()
- case lexer.TokenNULL:
- // Explicit NULL is a no-op: columns are nullable by default, so an
- // explicit NULL declaration carries no constraint. Consume it so
- // "col TYPE NULL" parses without inventing a fake nullable constraint.
- // NOT NULL is applied whenever it appears, regardless of ordering.
- p.nextToken()
- return nil, true, nil
- default:
- return nil, false, nil
- }
- return constraint, true, nil
- }
- func (p *Parser) parseTableConstraint() (*TableConstraint, error) {
- constraint := &TableConstraint{}
- // Check for CONSTRAINT name
- if p.curTokenIs(lexer.TokenCONSTRAINT) {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected constraint name")
- }
- constraint.Name = p.curToken.Literal
- p.nextToken()
- }
- switch p.curToken.Type {
- case lexer.TokenPRIMARY:
- p.nextToken()
- if !p.curTokenIs(lexer.TokenKEY) {
- return nil, p.curError("expected KEY after PRIMARY")
- }
- p.nextToken()
- constraint.Type = ConstraintPrimaryKey
- cols, err := p.parseParenIdentList()
- if err != nil {
- return nil, err
- }
- constraint.Columns = cols
- case lexer.TokenUNIQUE:
- p.nextToken()
- constraint.Type = ConstraintUnique
- cols, err := p.parseParenIdentList()
- if err != nil {
- return nil, err
- }
- constraint.Columns = cols
- case lexer.TokenFOREIGN:
- p.nextToken()
- if !p.curTokenIs(lexer.TokenKEY) {
- return nil, p.curError("expected KEY after FOREIGN")
- }
- p.nextToken()
- constraint.Type = ConstraintForeignKey
- cols, err := p.parseParenIdentList()
- if err != nil {
- return nil, err
- }
- constraint.Columns = cols
- if !p.curTokenIs(lexer.TokenREFERENCES) {
- return nil, p.curError("expected REFERENCES")
- }
- p.nextToken()
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected table name")
- }
- constraint.RefTable = p.curToken.Literal
- p.nextToken()
- refCols, err := p.parseParenIdentList()
- if err != nil {
- return nil, err
- }
- constraint.RefColumns = refCols
- case lexer.TokenCHECK:
- p.nextToken()
- constraint.Type = ConstraintCheck
- if !p.curTokenIs(lexer.TokenLParen) {
- return nil, p.curError("expected (")
- }
- p.nextToken()
- check, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- constraint.Check = check
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected )")
- }
- p.nextToken()
- default:
- return nil, p.curError("expected constraint type")
- }
- return constraint, nil
- }
- func (p *Parser) parseParenIdentList() ([]string, error) {
- if !p.curTokenIs(lexer.TokenLParen) {
- return nil, p.curError("expected (")
- }
- p.nextToken()
- cols, err := p.parseIdentList()
- if err != nil {
- return nil, err
- }
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected )")
- }
- p.nextToken()
- return cols, nil
- }
- // parseCreateIndex parses CREATE INDEX statements.
- func (p *Parser) parseCreateIndex(unique bool) (*CreateIndexStmt, error) {
- stmt := &CreateIndexStmt{Unique: unique}
- p.nextToken() // consume INDEX
- // Check for IF NOT EXISTS
- if p.curTokenIs(lexer.TokenIF) {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenNOT) {
- return nil, p.curError("expected NOT")
- }
- p.nextToken()
- if !p.curTokenIs(lexer.TokenEXISTS) {
- return nil, p.curError("expected EXISTS")
- }
- stmt.IfNotExists = true
- p.nextToken()
- }
- // Parse index name
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected index name")
- }
- stmt.Name = p.curToken.Literal
- p.nextToken()
- // Expect ON
- if !p.curTokenIs(lexer.TokenON) {
- return nil, p.curError("expected ON")
- }
- p.nextToken()
- // Parse table name
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected table name")
- }
- stmt.Table = p.curToken.Literal
- p.nextToken()
- // Expect (
- if !p.curTokenIs(lexer.TokenLParen) {
- return nil, p.curError("expected (")
- }
- p.nextToken()
- // Parse column list
- for {
- if p.curTokenIs(lexer.TokenRParen) {
- break
- }
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected column name")
- }
- col := IndexColumn{Name: p.curToken.Literal}
- p.nextToken()
- // Check for ASC/DESC
- if p.curTokenIs(lexer.TokenASC) {
- p.nextToken()
- } else if p.curTokenIs(lexer.TokenDESC) {
- col.Desc = true
- p.nextToken()
- }
- stmt.Columns = append(stmt.Columns, col)
- if p.curTokenIs(lexer.TokenComma) {
- p.nextToken()
- } else {
- break
- }
- }
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected )")
- }
- p.nextToken()
- return stmt, nil
- }
- // parseDrop parses DROP statements.
- func (p *Parser) parseDrop() (Statement, error) {
- p.nextToken() // consume DROP
- switch p.curToken.Type {
- case lexer.TokenTABLE:
- return p.parseDropTable()
- case lexer.TokenINDEX:
- return p.parseDropIndex()
- case lexer.TokenVIEW:
- return p.parseDropView()
- default:
- return nil, p.curError("expected TABLE or INDEX after DROP")
- }
- }
- func (p *Parser) parseDropTable() (*DropTableStmt, error) {
- stmt := &DropTableStmt{}
- p.nextToken() // consume TABLE
- // Check for IF EXISTS
- if p.curTokenIs(lexer.TokenIF) {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenEXISTS) {
- return nil, p.curError("expected EXISTS")
- }
- stmt.IfExists = true
- p.nextToken()
- }
- // Parse table names
- for {
- table, err := p.parseTableRef()
- if err != nil {
- return nil, err
- }
- stmt.Tables = append(stmt.Tables, table)
- if !p.curTokenIs(lexer.TokenComma) {
- break
- }
- p.nextToken()
- }
- return stmt, nil
- }
- func (p *Parser) parseDropIndex() (*DropIndexStmt, error) {
- stmt := &DropIndexStmt{}
- p.nextToken() // consume INDEX
- // Check for IF EXISTS
- if p.curTokenIs(lexer.TokenIF) {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenEXISTS) {
- return nil, p.curError("expected EXISTS")
- }
- stmt.IfExists = true
- p.nextToken()
- }
- // Parse index name
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected index name")
- }
- stmt.Name = p.curToken.Literal
- p.nextToken()
- return stmt, nil
- }
- func (p *Parser) parseCreateView() (*CreateViewStmt, error) {
- stmt := &CreateViewStmt{}
- p.nextToken() // consume VIEW
- if p.curTokenIs(lexer.TokenIF) {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenNOT) {
- return nil, p.curError("expected NOT")
- }
- p.nextToken()
- if !p.curTokenIs(lexer.TokenEXISTS) {
- return nil, p.curError("expected EXISTS")
- }
- stmt.IfNotExists = true
- p.nextToken()
- }
- // Parse view name directly — do NOT use parseTableRef here because it
- // greedily interprets the AS keyword as an alias, consuming "AS SELECT".
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected view name")
- }
- stmt.View = &TableRef{Name: p.curToken.Literal}
- p.nextToken()
- if !p.curTokenIs(lexer.TokenAS) {
- return nil, p.curError("expected AS after view name")
- }
- p.nextToken() // consume AS
- sel, err := p.parseSelect()
- if err != nil {
- return nil, err
- }
- stmt.Select = sel
- return stmt, nil
- }
- func (p *Parser) parseDropView() (*DropViewStmt, error) {
- stmt := &DropViewStmt{}
- p.nextToken() // consume VIEW
- if p.curTokenIs(lexer.TokenIF) {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenEXISTS) {
- return nil, p.curError("expected EXISTS")
- }
- stmt.IfExists = true
- p.nextToken()
- }
- for {
- view, err := p.parseTableRef()
- if err != nil {
- return nil, err
- }
- stmt.Views = append(stmt.Views, view)
- if !p.curTokenIs(lexer.TokenComma) {
- break
- }
- p.nextToken()
- }
- return stmt, nil
- }
- // parseAlter parses an ALTER statement.
- func (p *Parser) parseAlter() (Statement, error) {
- p.nextToken() // consume ALTER
- if p.curTokenIs(lexer.TokenTABLE) {
- return p.parseAlterTable()
- }
- return nil, p.curError("expected TABLE after ALTER")
- }
- // parseAlterTable parses an ALTER TABLE statement.
- func (p *Parser) parseAlterTable() (*AlterTableStmt, error) {
- stmt := &AlterTableStmt{}
- p.nextToken() // consume TABLE
- // Parse table name
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected table name")
- }
- stmt.Table = p.curToken.Literal
- p.nextToken()
- // Parse action
- switch p.curToken.Type {
- case lexer.TokenADD:
- return p.parseAlterTableAdd(stmt)
- case lexer.TokenDROP:
- return p.parseAlterTableDrop(stmt)
- case lexer.TokenRENAME:
- return p.parseAlterTableRename(stmt)
- default:
- return nil, p.curError("expected ADD, DROP, or RENAME")
- }
- }
- // parseAlterTableAdd parses ALTER TABLE ADD COLUMN.
- func (p *Parser) parseAlterTableAdd(stmt *AlterTableStmt) (*AlterTableStmt, error) {
- p.nextToken() // consume ADD
- // COLUMN keyword is optional
- if p.curTokenIs(lexer.TokenCOLUMN) {
- p.nextToken()
- }
- ifNotExists := false
- if p.curTokenIs(lexer.TokenIF) {
- ifNotExists = true
- p.nextToken()
- if !p.curTokenIs(lexer.TokenNOT) {
- return nil, p.curError("expected NOT after IF")
- }
- p.nextToken()
- if !p.curTokenIs(lexer.TokenEXISTS) {
- return nil, p.curError("expected EXISTS after IF NOT")
- }
- p.nextToken()
- }
- // Parse column definition
- col, err := p.parseColumnDef()
- if err != nil {
- return nil, err
- }
- stmt.Action = &AddColumnAction{Column: col, IfNotExists: ifNotExists}
- return stmt, nil
- }
- // parseAlterTableDrop parses ALTER TABLE DROP COLUMN.
- func (p *Parser) parseAlterTableDrop(stmt *AlterTableStmt) (*AlterTableStmt, error) {
- p.nextToken() // consume DROP
- // COLUMN keyword is optional in some databases but required in SQLite
- if p.curTokenIs(lexer.TokenCOLUMN) {
- p.nextToken()
- }
- // Parse column name
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected column name")
- }
- stmt.Action = &DropColumnAction{Column: p.curToken.Literal}
- p.nextToken()
- return stmt, nil
- }
- // parseAlterTableRename parses ALTER TABLE RENAME.
- func (p *Parser) parseAlterTableRename(stmt *AlterTableStmt) (*AlterTableStmt, error) {
- p.nextToken() // consume RENAME
- // Check for RENAME TO (table rename) or RENAME COLUMN (column rename)
- if p.curTokenIs(lexer.TokenTO) {
- // RENAME TO newname
- p.nextToken()
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected new table name")
- }
- stmt.Action = &RenameTableAction{NewName: p.curToken.Literal}
- p.nextToken()
- } else if p.curTokenIs(lexer.TokenCOLUMN) {
- // RENAME COLUMN oldname TO newname
- p.nextToken()
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected old column name")
- }
- oldName := p.curToken.Literal
- p.nextToken()
- if !p.curTokenIs(lexer.TokenTO) {
- return nil, p.curError("expected TO")
- }
- p.nextToken()
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected new column name")
- }
- newName := p.curToken.Literal
- p.nextToken()
- stmt.Action = &RenameColumnAction{OldName: oldName, NewName: newName}
- } else {
- return nil, p.curError("expected TO or COLUMN after RENAME")
- }
- return stmt, nil
- }
- // parsePragma parses a PRAGMA statement.
- // Formats: PRAGMA name; PRAGMA name(arg); PRAGMA name = value;
- func (p *Parser) parsePragma() (*PragmaStmt, error) {
- stmt := &PragmaStmt{}
- p.nextToken() // consume PRAGMA
- // Parse pragma name
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected pragma name")
- }
- stmt.Name = strings.ToLower(p.curToken.Literal)
- p.nextToken()
- // Check for argument in parentheses: PRAGMA table_info(tablename)
- if p.curTokenIs(lexer.TokenLParen) {
- p.nextToken()
- if p.curTokenIs(lexer.TokenIdent) || p.curTokenIs(lexer.TokenString) {
- stmt.Arg = p.curToken.Literal
- p.nextToken()
- }
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected )")
- }
- p.nextToken()
- }
- // Check for value assignment: PRAGMA name = value
- if p.curTokenIs(lexer.TokenEq) {
- p.nextToken()
- val, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- stmt.Value = val
- }
- return stmt, nil
- }
- // parseExplain parses an EXPLAIN statement.
- func (p *Parser) parseExplain() (*ExplainStmt, error) {
- stmt := &ExplainStmt{}
- p.nextToken() // consume EXPLAIN
- // Check for QUERY PLAN
- if p.curTokenIs(lexer.TokenQUERY) {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenPLAN) {
- return nil, p.curError("expected PLAN after QUERY")
- }
- stmt.QueryPlan = true
- p.nextToken()
- }
- // Parse the statement being explained
- innerStmt, err := p.parseStatement()
- if err != nil {
- return nil, err
- }
- stmt.Statement = innerStmt
- return stmt, nil
- }
- // Transaction statement parsing
- func (p *Parser) parseBegin() (*BeginStmt, error) {
- stmt := &BeginStmt{}
- p.nextToken() // consume BEGIN
- // Optional TRANSACTION keyword
- if p.curTokenIs(lexer.TokenTRANSACTION) {
- p.nextToken()
- }
- return stmt, nil
- }
- func (p *Parser) parseCommit() (*CommitStmt, error) {
- p.nextToken() // consume COMMIT
- // Optional TRANSACTION keyword
- if p.curTokenIs(lexer.TokenTRANSACTION) {
- p.nextToken()
- }
- return &CommitStmt{}, nil
- }
- func (p *Parser) parseRollback() (*RollbackStmt, error) {
- stmt := &RollbackStmt{}
- p.nextToken() // consume ROLLBACK
- // Check for ROLLBACK TO [SAVEPOINT] name
- if p.curTokenIs(lexer.TokenTO) {
- p.nextToken()
- // Optional SAVEPOINT keyword
- if p.curTokenIs(lexer.TokenSAVEPOINT) {
- p.nextToken()
- }
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected savepoint name")
- }
- stmt.Savepoint = p.curToken.Literal
- p.nextToken()
- } else if p.curTokenIs(lexer.TokenTRANSACTION) {
- // Optional TRANSACTION keyword
- p.nextToken()
- }
- return stmt, nil
- }
- func (p *Parser) parseSavepoint() (*SavepointStmt, error) {
- p.nextToken() // consume SAVEPOINT
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected savepoint name")
- }
- stmt := &SavepointStmt{Name: p.curToken.Literal}
- p.nextToken()
- return stmt, nil
- }
- func (p *Parser) parseRelease() (*ReleaseStmt, error) {
- p.nextToken() // consume RELEASE
- // Optional SAVEPOINT keyword
- if p.curTokenIs(lexer.TokenSAVEPOINT) {
- p.nextToken()
- }
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected savepoint name")
- }
- stmt := &ReleaseStmt{Name: p.curToken.Literal}
- p.nextToken()
- return stmt, nil
- }
- // parseAttach parses an ATTACH DATABASE statement.
- // Syntax: ATTACH [DATABASE] 'filepath' AS alias
- func (p *Parser) parseAttach() (*AttachStmt, error) {
- stmt := &AttachStmt{}
- p.nextToken() // consume ATTACH
- // Optional DATABASE keyword
- if p.curTokenIs(lexer.TokenDATABASE) {
- p.nextToken()
- }
- // Parse file path (string literal)
- if !p.curTokenIs(lexer.TokenString) {
- return nil, p.curError("expected database file path (string)")
- }
- stmt.FilePath = p.curToken.Literal
- p.nextToken()
- // Expect AS keyword
- if !p.curTokenIs(lexer.TokenAS) {
- return nil, p.curError("expected AS")
- }
- p.nextToken()
- // Parse database alias
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected database alias")
- }
- stmt.Alias = p.curToken.Literal
- p.nextToken()
- return stmt, nil
- }
- // parseDetach parses a DETACH DATABASE statement.
- // Syntax: DETACH [DATABASE] alias
- func (p *Parser) parseDetach() (*DetachStmt, error) {
- stmt := &DetachStmt{}
- p.nextToken() // consume DETACH
- // Optional DATABASE keyword
- if p.curTokenIs(lexer.TokenDATABASE) {
- p.nextToken()
- }
- // Parse database alias
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected database alias")
- }
- stmt.Alias = p.curToken.Literal
- p.nextToken()
- return stmt, nil
- }
- // Expression parsing with operator precedence
- func (p *Parser) parseExpr() (Expr, error) {
- return p.parseOrExpr()
- }
- func (p *Parser) parseOrExpr() (Expr, error) {
- left, err := p.parseAndExpr()
- if err != nil {
- return nil, err
- }
- for p.curTokenIs(lexer.TokenOR) {
- op := p.curToken.Type
- p.nextToken()
- right, err := p.parseAndExpr()
- if err != nil {
- return nil, err
- }
- left = &BinaryExpr{Left: left, Op: op, Right: right}
- }
- return left, nil
- }
- func (p *Parser) parseAndExpr() (Expr, error) {
- left, err := p.parseNotExpr()
- if err != nil {
- return nil, err
- }
- for p.curTokenIs(lexer.TokenAND) {
- op := p.curToken.Type
- p.nextToken()
- right, err := p.parseNotExpr()
- if err != nil {
- return nil, err
- }
- left = &BinaryExpr{Left: left, Op: op, Right: right}
- }
- return left, nil
- }
- func (p *Parser) parseNotExpr() (Expr, error) {
- if p.curTokenIs(lexer.TokenNOT) {
- p.nextToken()
- operand, err := p.parseNotExpr()
- if err != nil {
- return nil, err
- }
- return &UnaryExpr{Op: lexer.TokenNOT, Operand: operand}, nil
- }
- return p.parseComparisonExpr()
- }
- func (p *Parser) parseComparisonExpr() (Expr, error) {
- left, err := p.parseAddExpr()
- if err != nil {
- return nil, err
- }
- // Handle IS NULL / IS NOT NULL
- if p.curTokenIs(lexer.TokenIS) {
- p.nextToken()
- not := false
- if p.curTokenIs(lexer.TokenNOT) {
- not = true
- p.nextToken()
- }
- if !p.curTokenIs(lexer.TokenNULL) {
- return nil, p.curError("expected NULL after IS")
- }
- p.nextToken()
- return &IsNullExpr{Left: left, Not: not}, nil
- }
- // Handle IN / NOT IN
- not := false
- if p.curTokenIs(lexer.TokenNOT) {
- not = true
- p.nextToken()
- }
- if p.curTokenIs(lexer.TokenIN) {
- p.nextToken()
- return p.parseInExpr(left, not)
- }
- // Handle BETWEEN
- if p.curTokenIs(lexer.TokenBETWEEN) {
- p.nextToken()
- return p.parseBetweenExpr(left, not)
- }
- // Handle LIKE
- if p.curTokenIs(lexer.TokenLIKE) {
- p.nextToken()
- return p.parseLikeExpr(left, not)
- }
- // If we consumed NOT but didn't find IN/BETWEEN/LIKE, it's an error
- if not {
- return nil, p.curError("expected IN, BETWEEN, or LIKE after NOT")
- }
- // Handle comparison operators
- if isComparisonOp(p.curToken.Type) {
- op := p.curToken.Type
- p.nextToken()
- right, err := p.parseAddExpr()
- if err != nil {
- return nil, err
- }
- return &BinaryExpr{Left: left, Op: op, Right: right}, nil
- }
- return left, nil
- }
- func isComparisonOp(t lexer.TokenType) bool {
- switch t {
- case lexer.TokenEq, lexer.TokenNeq, lexer.TokenLt,
- lexer.TokenLte, lexer.TokenGt, lexer.TokenGte:
- return true
- }
- return false
- }
- func (p *Parser) parseInExpr(left Expr, not bool) (Expr, error) {
- expr := &InExpr{Left: left, Not: not}
- if !p.curTokenIs(lexer.TokenLParen) {
- return nil, p.curError("expected (")
- }
- p.nextToken()
- // Check for subquery
- if p.curTokenIs(lexer.TokenSELECT) {
- sel, err := p.parseSelect()
- if err != nil {
- return nil, err
- }
- expr.Subquery = sel
- } else if !p.curTokenIs(lexer.TokenRParen) {
- // Value list (empty list is allowed — always false)
- values, err := p.parseExprList()
- if err != nil {
- return nil, err
- }
- expr.Values = values
- }
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected )")
- }
- p.nextToken()
- return expr, nil
- }
- func (p *Parser) parseBetweenExpr(left Expr, not bool) (Expr, error) {
- low, err := p.parseAddExpr()
- if err != nil {
- return nil, err
- }
- if !p.curTokenIs(lexer.TokenAND) {
- return nil, p.curError("expected AND in BETWEEN")
- }
- p.nextToken()
- high, err := p.parseAddExpr()
- if err != nil {
- return nil, err
- }
- return &BetweenExpr{Left: left, Not: not, Low: low, High: high}, nil
- }
- func (p *Parser) parseLikeExpr(left Expr, not bool) (Expr, error) {
- pattern, err := p.parseAddExpr()
- if err != nil {
- return nil, err
- }
- expr := &LikeExpr{Left: left, Not: not, Pattern: pattern}
- // Check for ESCAPE
- if p.curTokenIs(lexer.TokenESCAPE) {
- p.nextToken()
- esc, err := p.parseAddExpr()
- if err != nil {
- return nil, err
- }
- expr.Escape = esc
- }
- return expr, nil
- }
- func (p *Parser) parseAddExpr() (Expr, error) {
- left, err := p.parseMulExpr()
- if err != nil {
- return nil, err
- }
- for p.curTokenIs(lexer.TokenPlus) || p.curTokenIs(lexer.TokenMinus) || p.curTokenIs(lexer.TokenConcat) {
- op := p.curToken.Type
- p.nextToken()
- right, err := p.parseMulExpr()
- if err != nil {
- return nil, err
- }
- left = &BinaryExpr{Left: left, Op: op, Right: right}
- }
- return left, nil
- }
- func (p *Parser) parseMulExpr() (Expr, error) {
- left, err := p.parseUnaryExpr()
- if err != nil {
- return nil, err
- }
- for p.curTokenIs(lexer.TokenStar) || p.curTokenIs(lexer.TokenSlash) || p.curTokenIs(lexer.TokenPercent) {
- op := p.curToken.Type
- p.nextToken()
- right, err := p.parseUnaryExpr()
- if err != nil {
- return nil, err
- }
- left = &BinaryExpr{Left: left, Op: op, Right: right}
- }
- return left, nil
- }
- func (p *Parser) parseUnaryExpr() (Expr, error) {
- if p.curTokenIs(lexer.TokenMinus) || p.curTokenIs(lexer.TokenPlus) {
- op := p.curToken.Type
- p.nextToken()
- operand, err := p.parseUnaryExpr()
- if err != nil {
- return nil, err
- }
- return &UnaryExpr{Op: op, Operand: operand}, nil
- }
- return p.parsePrimaryExpr()
- }
- func (p *Parser) parsePrimaryExpr() (Expr, error) {
- switch p.curToken.Type {
- case lexer.TokenNumber:
- expr := &LiteralExpr{Type: lexer.TokenNumber, Value: p.curToken.Literal}
- p.nextToken()
- return expr, nil
- case lexer.TokenString:
- expr := &LiteralExpr{Type: lexer.TokenString, Value: p.curToken.Literal}
- p.nextToken()
- return expr, nil
- case lexer.TokenNULL:
- expr := &LiteralExpr{Type: lexer.TokenNULL, Value: "NULL"}
- p.nextToken()
- return expr, nil
- case lexer.TokenTRUE:
- expr := &LiteralExpr{Type: lexer.TokenTRUE, Value: "TRUE"}
- p.nextToken()
- return expr, nil
- case lexer.TokenFALSE:
- expr := &LiteralExpr{Type: lexer.TokenFALSE, Value: "FALSE"}
- p.nextToken()
- return expr, nil
- case lexer.TokenLParen:
- p.nextToken()
- // Check for subquery
- if p.curTokenIs(lexer.TokenSELECT) {
- sel, err := p.parseSelect()
- if err != nil {
- return nil, err
- }
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected )")
- }
- p.nextToken()
- return &SubqueryExpr{Query: sel}, nil
- }
- // Regular parenthesized expression
- expr, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected )")
- }
- p.nextToken()
- return &ParenExpr{Expr: expr}, nil
- case lexer.TokenCASE:
- return p.parseCaseExpr()
- case lexer.TokenCAST:
- return p.parseCastExpr()
- case lexer.TokenEXISTS:
- return p.parseExistsExpr()
- case lexer.TokenCOALESCE, lexer.TokenNULLIF, lexer.TokenIF, lexer.TokenREPLACE, lexer.TokenGLOB:
- // These keywords can be used as function names
- return p.parseKeywordFunction()
- case lexer.TokenIdent:
- return p.parseIdentOrFunction()
- case lexer.TokenStar:
- // For COUNT(*)
- expr := &LiteralExpr{Type: lexer.TokenStar, Value: "*"}
- p.nextToken()
- return expr, nil
- default:
- return nil, p.curError("unexpected token in expression: " + p.curToken.Type.String())
- }
- }
- func (p *Parser) parseIdentOrFunction() (Expr, error) {
- name := p.curToken.Literal
- p.nextToken()
- // Check for function call
- if p.curTokenIs(lexer.TokenLParen) {
- return p.parseFunctionCall(name)
- }
- // Check for table.column
- if p.curTokenIs(lexer.TokenDot) {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenIdent) && !p.curTokenIs(lexer.TokenStar) {
- return nil, p.curError("expected column name after dot")
- }
- col := p.curToken.Literal
- p.nextToken()
- return &ColumnRef{Table: name, Column: col}, nil
- }
- return &ColumnRef{Column: name}, nil
- }
- func (p *Parser) parseKeywordFunction() (Expr, error) {
- // Handle keywords that can be used as function names (COALESCE, NULLIF, IF, REPLACE, GLOB)
- name := strings.ToUpper(p.curToken.Literal)
- p.nextToken()
- if !p.curTokenIs(lexer.TokenLParen) {
- return nil, p.curError("expected ( after " + name)
- }
- return p.parseFunctionCall(name)
- }
- func (p *Parser) parseFunctionCall(name string) (Expr, error) {
- fn := &FunctionCall{Name: strings.ToUpper(name)}
- p.nextToken() // consume (
- // Check for DISTINCT or ALL
- if p.curTokenIs(lexer.TokenDISTINCT) {
- fn.Distinct = true
- p.nextToken()
- } else if p.curTokenIs(lexer.TokenALL) {
- // ALL is the default behavior, just skip it
- p.nextToken()
- }
- // Check for * (COUNT(*))
- if p.curTokenIs(lexer.TokenStar) {
- fn.Star = true
- p.nextToken()
- } else if !p.curTokenIs(lexer.TokenRParen) {
- // Parse arguments
- args, err := p.parseExprList()
- if err != nil {
- return nil, err
- }
- fn.Args = args
- }
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected )")
- }
- p.nextToken()
- // Window function: func(...) OVER (PARTITION BY ... ORDER BY ...).
- if p.curTokenIs(lexer.TokenIdent) && strings.EqualFold(p.curToken.Literal, "OVER") {
- return p.parseWindowSpec(fn)
- }
- return fn, nil
- }
- // parseWindowSpec parses the OVER (...) clause of a window function. Only
- // PARTITION BY and ORDER BY are supported; frame clauses are not.
- func (p *Parser) parseWindowSpec(fn *FunctionCall) (Expr, error) {
- p.nextToken() // consume OVER
- if !p.curTokenIs(lexer.TokenLParen) {
- return nil, p.curError("expected ( after OVER")
- }
- p.nextToken()
- window := &WindowExpr{Func: fn}
- if p.curTokenIs(lexer.TokenIdent) && strings.EqualFold(p.curToken.Literal, "PARTITION") {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenBY) {
- return nil, p.curError("expected BY after PARTITION")
- }
- p.nextToken()
- exprs, err := p.parseExprList()
- if err != nil {
- return nil, err
- }
- window.PartitionBy = exprs
- }
- if p.curTokenIs(lexer.TokenORDER) {
- p.nextToken()
- if !p.curTokenIs(lexer.TokenBY) {
- return nil, p.curError("expected BY after ORDER")
- }
- p.nextToken()
- orderBy, err := p.parseOrderBy()
- if err != nil {
- return nil, err
- }
- window.OrderBy = orderBy
- }
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected ) after window specification")
- }
- p.nextToken()
- return window, nil
- }
- func (p *Parser) parseCaseExpr() (Expr, error) {
- expr := &CaseExpr{}
- p.nextToken() // consume CASE
- // Check for simple CASE (CASE operand WHEN ...)
- if !p.curTokenIs(lexer.TokenWHEN) {
- operand, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- expr.Operand = operand
- }
- // Parse WHEN clauses
- for p.curTokenIs(lexer.TokenWHEN) {
- p.nextToken()
- cond, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- if !p.curTokenIs(lexer.TokenTHEN) {
- return nil, p.curError("expected THEN")
- }
- p.nextToken()
- result, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- expr.Whens = append(expr.Whens, WhenClause{Condition: cond, Result: result})
- }
- // Parse optional ELSE
- if p.curTokenIs(lexer.TokenELSE) {
- p.nextToken()
- elseExpr, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- expr.Else = elseExpr
- }
- // Expect END
- if !p.curTokenIs(lexer.TokenEND) {
- return nil, p.curError("expected END")
- }
- p.nextToken()
- return expr, nil
- }
- func (p *Parser) parseCastExpr() (Expr, error) {
- p.nextToken() // consume CAST
- if !p.curTokenIs(lexer.TokenLParen) {
- return nil, p.curError("expected (")
- }
- p.nextToken()
- expr, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- if !p.curTokenIs(lexer.TokenAS) {
- return nil, p.curError("expected AS")
- }
- p.nextToken()
- dataType, err := p.parseDataType()
- if err != nil {
- return nil, err
- }
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected )")
- }
- p.nextToken()
- return &CastExpr{Expr: expr, Type: *dataType}, nil
- }
- func (p *Parser) parseExistsExpr() (Expr, error) {
- p.nextToken() // consume EXISTS
- if !p.curTokenIs(lexer.TokenLParen) {
- return nil, p.curError("expected (")
- }
- p.nextToken()
- if !p.curTokenIs(lexer.TokenSELECT) {
- return nil, p.curError("expected SELECT in EXISTS")
- }
- sel, err := p.parseSelect()
- if err != nil {
- return nil, err
- }
- if !p.curTokenIs(lexer.TokenRParen) {
- return nil, p.curError("expected )")
- }
- p.nextToken()
- return &ExistsExpr{Subquery: sel}, nil
- }
- func (p *Parser) parseExprList() ([]Expr, error) {
- var exprs []Expr
- for {
- expr, err := p.parseExpr()
- if err != nil {
- return nil, err
- }
- exprs = append(exprs, expr)
- if !p.curTokenIs(lexer.TokenComma) {
- break
- }
- p.nextToken()
- }
- return exprs, nil
- }
- func (p *Parser) parseIdentList() ([]string, error) {
- var idents []string
- for {
- if !p.curTokenIs(lexer.TokenIdent) {
- return nil, p.curError("expected identifier")
- }
- idents = append(idents, p.curToken.Literal)
- p.nextToken()
- if !p.curTokenIs(lexer.TokenComma) {
- break
- }
- p.nextToken()
- }
- return idents, nil
- }
- // Helper functions
- func parseInt(s string) int {
- var n int
- for _, c := range s {
- n = n*10 + int(c-'0')
- }
- return n
- }
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