parser.go 11 KB

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  1. package parser
  2. import (
  3. "fmt"
  4. "github/runnignwater/monkey/ast"
  5. "github/runnignwater/monkey/lexer"
  6. "github/runnignwater/monkey/token"
  7. "strconv"
  8. )
  9. /**
  10. * @Author: simon
  11. * @Author: ynwdlxm@163.com
  12. * @Date: 2022/10/2 下午9:55
  13. * @Desc:
  14. */
  15. const (
  16. // 优先级常量
  17. _ int = iota
  18. LOWEST
  19. EQUALS // ==
  20. LESSGREATER // > OR <
  21. SUM // +
  22. PRODUCT // *
  23. PREFIX // -X OR !X
  24. CALL // myFunction(X)
  25. INDEX // array[index]
  26. )
  27. // precedences 指派 token 类型的优先级
  28. var precedences = map[token.TypeToken]int{
  29. token.EQ: EQUALS,
  30. token.NOT_EQ: EQUALS,
  31. token.GT: LESSGREATER,
  32. token.LT: LESSGREATER,
  33. token.PLUS: SUM,
  34. token.MINUS: SUM,
  35. token.ASTERISK: PRODUCT,
  36. token.SLASH: PRODUCT,
  37. token.LPAREN: CALL,
  38. token.LBRACKET: INDEX,
  39. }
  40. type (
  41. prefixParseFn func() ast.Expression
  42. infixParseFn func(expression ast.Expression) ast.Expression
  43. )
  44. type Parser struct {
  45. l *lexer.Lexer // point to the instance of the lexer
  46. errors []string
  47. curToken token.Token // point to the current token
  48. peekToken token.Token // point to the next token
  49. prefixParseFns map[token.TypeToken]prefixParseFn
  50. infixParseFns map[token.TypeToken]infixParseFn
  51. }
  52. func New(l *lexer.Lexer) *Parser {
  53. p := &Parser{
  54. l: l,
  55. errors: []string{},
  56. }
  57. p.prefixParseFns = make(map[token.TypeToken]prefixParseFn)
  58. p.registerPrefix(token.IDENT, p.parseIdentifier)
  59. p.registerPrefix(token.INT, p.parseIntegerLiteral)
  60. p.registerPrefix(token.BANG, p.parsePrefixExpression)
  61. p.registerPrefix(token.MINUS, p.parsePrefixExpression)
  62. p.registerPrefix(token.TRUE, p.parseBoolean)
  63. p.registerPrefix(token.FALSE, p.parseBoolean)
  64. p.registerPrefix(token.LPAREN, p.parseGroupedExpression)
  65. p.registerPrefix(token.IF, p.parseIfExpression)
  66. p.registerPrefix(token.FUNCTION, p.parseFunctionLiteral)
  67. p.registerPrefix(token.STRING, p.parseStringLiteral)
  68. p.registerPrefix(token.LBRACKET, p.parseArrayLiteral)
  69. p.infixParseFns = make(map[token.TypeToken]infixParseFn)
  70. p.registerInfix(token.PLUS, p.parseInfixExpression)
  71. p.registerInfix(token.MINUS, p.parseInfixExpression)
  72. p.registerInfix(token.ASTERISK, p.parseInfixExpression)
  73. p.registerInfix(token.SLASH, p.parseInfixExpression)
  74. p.registerInfix(token.EQ, p.parseInfixExpression)
  75. p.registerInfix(token.NOT_EQ, p.parseInfixExpression)
  76. p.registerInfix(token.GT, p.parseInfixExpression)
  77. p.registerInfix(token.LT, p.parseInfixExpression)
  78. p.registerInfix(token.LPAREN, p.parseCallExpression)
  79. p.registerInfix(token.LBRACKET, p.parseIndexExpression)
  80. // Read two tokens, so curToken and peekToken are both set
  81. p.nextToken()
  82. p.nextToken()
  83. return p
  84. }
  85. func (p *Parser) ParseProgram() *ast.Program {
  86. program := &ast.Program{}
  87. program.Statements = []ast.Statement{}
  88. for !p.curTokenIs(token.EOF) {
  89. stmt := p.parseStatement()
  90. if stmt != nil {
  91. program.Statements = append(program.Statements, stmt)
  92. }
  93. p.nextToken()
  94. }
  95. return program
  96. }
  97. func (p *Parser) parseStatement() ast.Statement {
  98. switch p.curToken.Type {
  99. case token.LET:
  100. return p.parseLetStatement()
  101. case token.RETURN:
  102. return p.parseReturnStatement()
  103. default:
  104. return p.parseExpressionStatement()
  105. }
  106. }
  107. func (p *Parser) parseIdentifier() ast.Expression {
  108. return &ast.Identifier{Token: p.curToken, Value: p.curToken.Literal}
  109. }
  110. func (p *Parser) parseBoolean() ast.Expression {
  111. return &ast.Boolean{Token: p.curToken, Value: p.curTokenIs(token.TRUE)}
  112. }
  113. func (p *Parser) parseGroupedExpression() ast.Expression {
  114. defer untrace(trace("parseGroupedExpression"))
  115. p.nextToken()
  116. exp := p.parseExpression(LOWEST)
  117. if !p.expectPeek(token.RPAREN) {
  118. return nil
  119. }
  120. return exp
  121. }
  122. func (p *Parser) parseIfExpression() ast.Expression {
  123. defer untrace(trace("parseIfExpression"))
  124. exp := &ast.IfExpression{Token: p.curToken}
  125. // (
  126. if !p.expectPeek(token.LPAREN) {
  127. return nil
  128. }
  129. p.nextToken()
  130. exp.Condition = p.parseExpression(LOWEST)
  131. // )
  132. if !p.expectPeek(token.RPAREN) {
  133. return nil
  134. }
  135. // {
  136. if !p.expectPeek(token.LBRACE) {
  137. return nil
  138. }
  139. exp.Consequence = p.parseBlockStatement()
  140. // else expression
  141. if p.peekTokenIs(token.ELSE) {
  142. p.nextToken()
  143. if !p.expectPeek(token.LBRACE) {
  144. return nil
  145. }
  146. exp.Alternative = p.parseBlockStatement()
  147. }
  148. return exp
  149. }
  150. func (p *Parser) parseFunctionLiteral() ast.Expression {
  151. lit := &ast.FunctionLiteral{Token: p.curToken}
  152. // (
  153. if !p.expectPeek(token.LPAREN) {
  154. return nil
  155. }
  156. lit.Parameters = p.ParseFunctionParameters()
  157. // {
  158. if !p.expectPeek(token.LBRACE) {
  159. return nil
  160. }
  161. lit.Body = p.parseBlockStatement()
  162. return lit
  163. }
  164. func (p *Parser) parseIntegerLiteral() ast.Expression {
  165. defer untrace(trace("parseIntegerLiteral"))
  166. lit := &ast.IntegerLiteral{Token: p.curToken}
  167. value, err := strconv.ParseInt(p.curToken.Literal, 0, 64)
  168. if err != nil {
  169. msg := fmt.Sprintf("could not parse %q as integer", p.curToken.Literal)
  170. p.errors = append(p.errors, msg)
  171. return nil
  172. }
  173. lit.Value = value
  174. return lit
  175. }
  176. func (p *Parser) parseStringLiteral() ast.Expression {
  177. return &ast.StringLiteral{Token: p.curToken, Value: p.curToken.Literal}
  178. }
  179. func (p *Parser) parseArrayLiteral() ast.Expression {
  180. array := &ast.ArrayLiteral{Token: p.curToken}
  181. array.Element = p.parseExpressionList(token.RBRACKET)
  182. return array
  183. }
  184. func (p *Parser) parseCallExpression(left ast.Expression) ast.Expression {
  185. defer untrace(trace("parseCallExpression"))
  186. // add(2,3) --> Function: add
  187. exp := &ast.CallExpression{Token: p.curToken, Function: left}
  188. exp.Arguments = p.parseExpressionList(token.RPAREN)
  189. return exp
  190. }
  191. func (p *Parser) parseIndexExpression(left ast.Expression) ast.Expression {
  192. defer untrace(trace("parseIndexExpression"))
  193. exp := &ast.IndexExpression{Token: p.curToken, Left: left}
  194. p.nextToken()
  195. exp.Index = p.parseExpression(LOWEST)
  196. if !p.expectPeek(token.RBRACKET) {
  197. return nil
  198. }
  199. return exp
  200. }
  201. func (p *Parser) parseInfixExpression(left ast.Expression) ast.Expression {
  202. defer untrace(trace("parseInfixExpression"))
  203. exp := &ast.InfixExpression{
  204. Token: p.curToken,
  205. Left: left,
  206. Operator: p.curToken.Literal,
  207. }
  208. precedence := p.curPrecedence()
  209. p.nextToken()
  210. exp.Right = p.parseExpression(precedence)
  211. return exp
  212. }
  213. func (p *Parser) parsePrefixExpression() ast.Expression {
  214. defer untrace(trace("parsePrefixExpression"))
  215. exp := &ast.PrefixExpression{
  216. Token: p.curToken,
  217. Operator: p.curToken.Literal,
  218. }
  219. p.nextToken()
  220. exp.Right = p.parseExpression(PREFIX)
  221. return exp
  222. }
  223. func (p *Parser) parseBlockStatement() *ast.BlockStatement {
  224. defer untrace(trace("parseBlockStatement"))
  225. block := &ast.BlockStatement{Token: p.curToken}
  226. block.Statements = []ast.Statement{}
  227. p.nextToken()
  228. // }
  229. for !p.curTokenIs(token.RBRACE) {
  230. stmt := p.parseStatement()
  231. if stmt != nil {
  232. block.Statements = append(block.Statements, stmt)
  233. }
  234. p.nextToken()
  235. }
  236. return block
  237. }
  238. func (p *Parser) Errors() []string {
  239. return p.errors
  240. }
  241. func (p *Parser) peekError(t token.TypeToken) {
  242. msg := fmt.Sprintf("exepected next token to be %s, got %s instead.", t, p.peekToken.Type)
  243. p.errors = append(p.errors, msg)
  244. }
  245. func (p *Parser) nextToken() {
  246. p.curToken = p.peekToken
  247. p.peekToken = p.l.NextToken()
  248. }
  249. // let <identifier> = <expression>;
  250. func (p *Parser) parseLetStatement() *ast.LetStatement {
  251. stmt := &ast.LetStatement{Token: p.curToken}
  252. // let
  253. if !p.expectPeek(token.IDENT) {
  254. return nil
  255. }
  256. // identifier
  257. stmt.Name = &ast.Identifier{Token: p.curToken, Value: p.curToken.Literal}
  258. // =
  259. if !p.expectPeek(token.ASSIGN) {
  260. return nil
  261. }
  262. p.nextToken()
  263. stmt.Value = p.parseExpression(LOWEST)
  264. // ;
  265. for !p.curTokenIs(token.SEMICOLON) {
  266. p.nextToken()
  267. }
  268. return stmt
  269. }
  270. // return <expression>;
  271. func (p *Parser) parseReturnStatement() *ast.ReturnStatement {
  272. stmt := &ast.ReturnStatement{Token: p.curToken}
  273. p.nextToken()
  274. stmt.ReturnValue = p.parseExpression(LOWEST)
  275. for !p.curTokenIs(token.SEMICOLON) {
  276. p.nextToken()
  277. }
  278. return stmt
  279. }
  280. func (p *Parser) parseExpressionStatement() *ast.ExpressionStatement {
  281. defer untrace(trace("parseExpressionStatement"))
  282. stmt := &ast.ExpressionStatement{Token: p.curToken}
  283. stmt.Expression = p.parseExpression(LOWEST)
  284. if p.peekTokenIs(token.SEMICOLON) {
  285. p.nextToken()
  286. }
  287. return stmt
  288. }
  289. func (p *Parser) parseExpression(precedence int) ast.Expression {
  290. defer untrace(trace("parseExpression"))
  291. prefix := p.prefixParseFns[p.curToken.Type]
  292. if prefix == nil {
  293. p.noPrefixParseFnError(p.curToken.Type)
  294. return nil
  295. }
  296. leftExp := prefix()
  297. for !p.peekTokenIs(token.SEMICOLON) && precedence < p.peekPrecedence() {
  298. infix := p.infixParseFns[p.peekToken.Type]
  299. if infix == nil {
  300. return leftExp
  301. }
  302. p.nextToken()
  303. leftExp = infix(leftExp)
  304. }
  305. return leftExp
  306. }
  307. func (p *Parser) parseExpressionList(end token.TypeToken) []ast.Expression {
  308. defer untrace(trace("parseExpressionList"))
  309. list := []ast.Expression{}
  310. if p.peekTokenIs(end) {
  311. p.nextToken()
  312. return list
  313. }
  314. p.nextToken()
  315. list = append(list, p.parseExpression(LOWEST))
  316. for p.peekTokenIs(token.COMMA) {
  317. p.nextToken()
  318. p.nextToken()
  319. list = append(list, p.parseExpression(LOWEST))
  320. }
  321. if !p.expectPeek(end) {
  322. return nil
  323. }
  324. return list
  325. }
  326. func (p *Parser) curTokenIs(t token.TypeToken) bool {
  327. return p.curToken.Type == t
  328. }
  329. func (p *Parser) peekTokenIs(t token.TypeToken) bool {
  330. return p.peekToken.Type == t
  331. }
  332. func (p *Parser) expectPeek(t token.TypeToken) bool {
  333. if p.peekTokenIs(t) {
  334. p.nextToken()
  335. return true
  336. } else {
  337. p.peekError(t)
  338. return false
  339. }
  340. }
  341. func (p *Parser) registerPrefix(tokenType token.TypeToken, fn prefixParseFn) {
  342. p.prefixParseFns[tokenType] = fn
  343. }
  344. func (p *Parser) registerInfix(tokenType token.TypeToken, fn infixParseFn) {
  345. p.infixParseFns[tokenType] = fn
  346. }
  347. func (p *Parser) noPrefixParseFnError(t token.TypeToken) {
  348. msg := fmt.Sprintf("no prefix parse function for %s found", t)
  349. p.errors = append(p.errors, msg)
  350. }
  351. func (p *Parser) peekPrecedence() int {
  352. if p, ok := precedences[p.peekToken.Type]; ok {
  353. return p
  354. }
  355. return LOWEST
  356. }
  357. func (p *Parser) curPrecedence() int {
  358. if p, ok := precedences[p.curToken.Type]; ok {
  359. return p
  360. }
  361. return LOWEST
  362. }
  363. func (p *Parser) ParseFunctionParameters() []*ast.Identifier {
  364. identifiers := []*ast.Identifier{}
  365. if p.peekTokenIs(token.RPAREN) {
  366. p.nextToken()
  367. return identifiers
  368. }
  369. p.nextToken()
  370. ident := &ast.Identifier{Token: p.curToken, Value: p.curToken.Literal}
  371. identifiers = append(identifiers, ident)
  372. for p.peekTokenIs(token.COMMA) {
  373. p.nextToken() // ,
  374. p.nextToken()
  375. ident := &ast.Identifier{Token: p.curToken, Value: p.curToken.Literal}
  376. identifiers = append(identifiers, ident)
  377. }
  378. // )
  379. if !p.expectPeek(token.RPAREN) {
  380. return nil
  381. }
  382. return identifiers
  383. }
  384. func (p *Parser) parseCallArguments() []ast.Expression {
  385. args := []ast.Expression{}
  386. // the case (), then null args
  387. if p.peekTokenIs(token.RPAREN) {
  388. p.nextToken()
  389. return args
  390. }
  391. p.nextToken()
  392. args = append(args, p.parseExpression(LOWEST))
  393. for p.peekTokenIs(token.COMMA) {
  394. p.nextToken()
  395. p.nextToken()
  396. args = append(args, p.parseExpression(LOWEST))
  397. }
  398. if !p.expectPeek(token.RPAREN) {
  399. return nil
  400. }
  401. return args
  402. }