lexer.go 25 KB

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  1. package parser
  2. import (
  3. "errors"
  4. "fmt"
  5. "strconv"
  6. "strings"
  7. "unicode"
  8. "unicode/utf16"
  9. "unicode/utf8"
  10. "golang.org/x/text/unicode/rangetable"
  11. "github.com/dop251/goja/file"
  12. "github.com/dop251/goja/token"
  13. "github.com/dop251/goja/unistring"
  14. )
  15. var (
  16. unicodeRangeIdNeg = rangetable.Merge(unicode.Pattern_Syntax, unicode.Pattern_White_Space)
  17. unicodeRangeIdStartPos = rangetable.Merge(unicode.Letter, unicode.Nl, unicode.Other_ID_Start)
  18. unicodeRangeIdContPos = rangetable.Merge(unicodeRangeIdStartPos, unicode.Mn, unicode.Mc, unicode.Nd, unicode.Pc, unicode.Other_ID_Continue)
  19. )
  20. func isDecimalDigit(chr rune) bool {
  21. return '0' <= chr && chr <= '9'
  22. }
  23. func IsIdentifier(s string) bool {
  24. if s == "" {
  25. return false
  26. }
  27. r, size := utf8.DecodeRuneInString(s)
  28. if !isIdentifierStart(r) {
  29. return false
  30. }
  31. for _, r := range s[size:] {
  32. if !isIdentifierPart(r) {
  33. return false
  34. }
  35. }
  36. return true
  37. }
  38. func digitValue(chr rune) int {
  39. switch {
  40. case '0' <= chr && chr <= '9':
  41. return int(chr - '0')
  42. case 'a' <= chr && chr <= 'f':
  43. return int(chr - 'a' + 10)
  44. case 'A' <= chr && chr <= 'F':
  45. return int(chr - 'A' + 10)
  46. }
  47. return 16 // Larger than any legal digit value
  48. }
  49. func isDigit(chr rune, base int) bool {
  50. return digitValue(chr) < base
  51. }
  52. func isIdStartUnicode(r rune) bool {
  53. return unicode.Is(unicodeRangeIdStartPos, r) && !unicode.Is(unicodeRangeIdNeg, r)
  54. }
  55. func isIdPartUnicode(r rune) bool {
  56. return unicode.Is(unicodeRangeIdContPos, r) && !unicode.Is(unicodeRangeIdNeg, r) || r == '\u200C' || r == '\u200D'
  57. }
  58. func isIdentifierStart(chr rune) bool {
  59. return chr == '$' || chr == '_' || chr == '\\' ||
  60. 'a' <= chr && chr <= 'z' || 'A' <= chr && chr <= 'Z' ||
  61. chr >= utf8.RuneSelf && isIdStartUnicode(chr)
  62. }
  63. func isIdentifierPart(chr rune) bool {
  64. return chr == '$' || chr == '_' || chr == '\\' ||
  65. 'a' <= chr && chr <= 'z' || 'A' <= chr && chr <= 'Z' ||
  66. '0' <= chr && chr <= '9' ||
  67. chr >= utf8.RuneSelf && isIdPartUnicode(chr)
  68. }
  69. func (self *_parser) scanIdentifier() (string, unistring.String, bool, string) {
  70. offset := self.chrOffset
  71. hasEscape := false
  72. isUnicode := false
  73. length := 0
  74. for isIdentifierPart(self.chr) {
  75. r := self.chr
  76. length++
  77. if r == '\\' {
  78. hasEscape = true
  79. distance := self.chrOffset - offset
  80. self.read()
  81. if self.chr != 'u' {
  82. return "", "", false, fmt.Sprintf("Invalid identifier escape character: %c (%s)", self.chr, string(self.chr))
  83. }
  84. var value rune
  85. if self._peek() == '{' {
  86. self.read()
  87. value = -1
  88. for value <= utf8.MaxRune {
  89. self.read()
  90. if self.chr == '}' {
  91. break
  92. }
  93. decimal, ok := hex2decimal(byte(self.chr))
  94. if !ok {
  95. return "", "", false, "Invalid Unicode escape sequence"
  96. }
  97. if value == -1 {
  98. value = decimal
  99. } else {
  100. value = value<<4 | decimal
  101. }
  102. }
  103. if value == -1 {
  104. return "", "", false, "Invalid Unicode escape sequence"
  105. }
  106. } else {
  107. for j := 0; j < 4; j++ {
  108. self.read()
  109. decimal, ok := hex2decimal(byte(self.chr))
  110. if !ok {
  111. return "", "", false, fmt.Sprintf("Invalid identifier escape character: %c (%s)", self.chr, string(self.chr))
  112. }
  113. value = value<<4 | decimal
  114. }
  115. }
  116. if value == '\\' {
  117. return "", "", false, fmt.Sprintf("Invalid identifier escape value: %c (%s)", value, string(value))
  118. } else if distance == 0 {
  119. if !isIdentifierStart(value) {
  120. return "", "", false, fmt.Sprintf("Invalid identifier escape value: %c (%s)", value, string(value))
  121. }
  122. } else if distance > 0 {
  123. if !isIdentifierPart(value) {
  124. return "", "", false, fmt.Sprintf("Invalid identifier escape value: %c (%s)", value, string(value))
  125. }
  126. }
  127. r = value
  128. }
  129. if r >= utf8.RuneSelf {
  130. isUnicode = true
  131. if r > 0xFFFF {
  132. length++
  133. }
  134. }
  135. self.read()
  136. }
  137. literal := self.str[offset:self.chrOffset]
  138. var parsed unistring.String
  139. if hasEscape || isUnicode {
  140. var err string
  141. // TODO strict
  142. parsed, err = parseStringLiteral(literal, length, isUnicode, false)
  143. if err != "" {
  144. return "", "", false, err
  145. }
  146. } else {
  147. parsed = unistring.String(literal)
  148. }
  149. return literal, parsed, hasEscape, ""
  150. }
  151. // 7.2
  152. func isLineWhiteSpace(chr rune) bool {
  153. switch chr {
  154. case '\u0009', '\u000b', '\u000c', '\u0020', '\u00a0', '\ufeff':
  155. return true
  156. case '\u000a', '\u000d', '\u2028', '\u2029':
  157. return false
  158. case '\u0085':
  159. return false
  160. }
  161. return unicode.IsSpace(chr)
  162. }
  163. // 7.3
  164. func isLineTerminator(chr rune) bool {
  165. switch chr {
  166. case '\u000a', '\u000d', '\u2028', '\u2029':
  167. return true
  168. }
  169. return false
  170. }
  171. type parserState struct {
  172. tok token.Token
  173. literal string
  174. parsedLiteral unistring.String
  175. implicitSemicolon, insertSemicolon bool
  176. chr rune
  177. chrOffset, offset int
  178. errorCount int
  179. }
  180. func (self *_parser) mark(state *parserState) *parserState {
  181. if state == nil {
  182. state = &parserState{}
  183. }
  184. state.tok, state.literal, state.parsedLiteral, state.implicitSemicolon, state.insertSemicolon, state.chr, state.chrOffset, state.offset =
  185. self.token, self.literal, self.parsedLiteral, self.implicitSemicolon, self.insertSemicolon, self.chr, self.chrOffset, self.offset
  186. state.errorCount = len(self.errors)
  187. return state
  188. }
  189. func (self *_parser) restore(state *parserState) {
  190. self.token, self.literal, self.parsedLiteral, self.implicitSemicolon, self.insertSemicolon, self.chr, self.chrOffset, self.offset =
  191. state.tok, state.literal, state.parsedLiteral, state.implicitSemicolon, state.insertSemicolon, state.chr, state.chrOffset, state.offset
  192. self.errors = self.errors[:state.errorCount]
  193. }
  194. func (self *_parser) peek() token.Token {
  195. implicitSemicolon, insertSemicolon, chr, chrOffset, offset := self.implicitSemicolon, self.insertSemicolon, self.chr, self.chrOffset, self.offset
  196. tok, _, _, _ := self.scan()
  197. self.implicitSemicolon, self.insertSemicolon, self.chr, self.chrOffset, self.offset = implicitSemicolon, insertSemicolon, chr, chrOffset, offset
  198. return tok
  199. }
  200. func (self *_parser) scan() (tkn token.Token, literal string, parsedLiteral unistring.String, idx file.Idx) {
  201. self.implicitSemicolon = false
  202. for {
  203. self.skipWhiteSpace()
  204. idx = self.idxOf(self.chrOffset)
  205. insertSemicolon := false
  206. switch chr := self.chr; {
  207. case isIdentifierStart(chr):
  208. var err string
  209. var hasEscape bool
  210. literal, parsedLiteral, hasEscape, err = self.scanIdentifier()
  211. if err != "" {
  212. tkn = token.ILLEGAL
  213. break
  214. }
  215. if len(parsedLiteral) > 1 {
  216. // Keywords are longer than 1 character, avoid lookup otherwise
  217. var strict bool
  218. tkn, strict = token.IsKeyword(string(parsedLiteral))
  219. if hasEscape {
  220. self.insertSemicolon = true
  221. if tkn == 0 || token.IsUnreservedWord(tkn) {
  222. tkn = token.IDENTIFIER
  223. } else {
  224. tkn = token.ESCAPED_RESERVED_WORD
  225. }
  226. return
  227. }
  228. switch tkn {
  229. case 0: // Not a keyword
  230. // no-op
  231. case token.KEYWORD:
  232. if strict {
  233. // TODO If strict and in strict mode, then this is not a break
  234. break
  235. }
  236. return
  237. case
  238. token.BOOLEAN,
  239. token.NULL,
  240. token.THIS,
  241. token.BREAK,
  242. token.THROW, // A newline after a throw is not allowed, but we need to detect it
  243. token.RETURN,
  244. token.CONTINUE,
  245. token.DEBUGGER:
  246. self.insertSemicolon = true
  247. return
  248. default:
  249. return
  250. }
  251. }
  252. self.insertSemicolon = true
  253. tkn = token.IDENTIFIER
  254. return
  255. case '0' <= chr && chr <= '9':
  256. self.insertSemicolon = true
  257. tkn, literal = self.scanNumericLiteral(false)
  258. return
  259. default:
  260. self.read()
  261. switch chr {
  262. case -1:
  263. if self.insertSemicolon {
  264. self.insertSemicolon = false
  265. self.implicitSemicolon = true
  266. }
  267. tkn = token.EOF
  268. case '\r', '\n', '\u2028', '\u2029':
  269. self.insertSemicolon = false
  270. self.implicitSemicolon = true
  271. continue
  272. case ':':
  273. tkn = token.COLON
  274. case '.':
  275. if digitValue(self.chr) < 10 {
  276. insertSemicolon = true
  277. tkn, literal = self.scanNumericLiteral(true)
  278. } else {
  279. if self.chr == '.' {
  280. self.read()
  281. if self.chr == '.' {
  282. self.read()
  283. tkn = token.ELLIPSIS
  284. } else {
  285. tkn = token.ILLEGAL
  286. }
  287. } else {
  288. tkn = token.PERIOD
  289. }
  290. }
  291. case ',':
  292. tkn = token.COMMA
  293. case ';':
  294. tkn = token.SEMICOLON
  295. case '(':
  296. tkn = token.LEFT_PARENTHESIS
  297. case ')':
  298. tkn = token.RIGHT_PARENTHESIS
  299. insertSemicolon = true
  300. case '[':
  301. tkn = token.LEFT_BRACKET
  302. case ']':
  303. tkn = token.RIGHT_BRACKET
  304. insertSemicolon = true
  305. case '{':
  306. tkn = token.LEFT_BRACE
  307. case '}':
  308. tkn = token.RIGHT_BRACE
  309. insertSemicolon = true
  310. case '+':
  311. tkn = self.switch3(token.PLUS, token.ADD_ASSIGN, '+', token.INCREMENT)
  312. if tkn == token.INCREMENT {
  313. insertSemicolon = true
  314. }
  315. case '-':
  316. tkn = self.switch3(token.MINUS, token.SUBTRACT_ASSIGN, '-', token.DECREMENT)
  317. if tkn == token.DECREMENT {
  318. insertSemicolon = true
  319. }
  320. case '*':
  321. if self.chr == '*' {
  322. self.read()
  323. tkn = self.switch2(token.EXPONENT, token.EXPONENT_ASSIGN)
  324. } else {
  325. tkn = self.switch2(token.MULTIPLY, token.MULTIPLY_ASSIGN)
  326. }
  327. case '/':
  328. if self.chr == '/' {
  329. self.skipSingleLineComment()
  330. continue
  331. } else if self.chr == '*' {
  332. if self.skipMultiLineComment() {
  333. self.insertSemicolon = false
  334. self.implicitSemicolon = true
  335. }
  336. continue
  337. } else {
  338. // Could be division, could be RegExp literal
  339. tkn = self.switch2(token.SLASH, token.QUOTIENT_ASSIGN)
  340. insertSemicolon = true
  341. }
  342. case '%':
  343. tkn = self.switch2(token.REMAINDER, token.REMAINDER_ASSIGN)
  344. case '^':
  345. tkn = self.switch2(token.EXCLUSIVE_OR, token.EXCLUSIVE_OR_ASSIGN)
  346. case '<':
  347. tkn = self.switch4(token.LESS, token.LESS_OR_EQUAL, '<', token.SHIFT_LEFT, token.SHIFT_LEFT_ASSIGN)
  348. case '>':
  349. tkn = self.switch6(token.GREATER, token.GREATER_OR_EQUAL, '>', token.SHIFT_RIGHT, token.SHIFT_RIGHT_ASSIGN, '>', token.UNSIGNED_SHIFT_RIGHT, token.UNSIGNED_SHIFT_RIGHT_ASSIGN)
  350. case '=':
  351. if self.chr == '>' {
  352. self.read()
  353. if self.implicitSemicolon {
  354. tkn = token.ILLEGAL
  355. } else {
  356. tkn = token.ARROW
  357. }
  358. } else {
  359. tkn = self.switch2(token.ASSIGN, token.EQUAL)
  360. if tkn == token.EQUAL && self.chr == '=' {
  361. self.read()
  362. tkn = token.STRICT_EQUAL
  363. }
  364. }
  365. case '!':
  366. tkn = self.switch2(token.NOT, token.NOT_EQUAL)
  367. if tkn == token.NOT_EQUAL && self.chr == '=' {
  368. self.read()
  369. tkn = token.STRICT_NOT_EQUAL
  370. }
  371. case '&':
  372. tkn = self.switch3(token.AND, token.AND_ASSIGN, '&', token.LOGICAL_AND)
  373. case '|':
  374. tkn = self.switch3(token.OR, token.OR_ASSIGN, '|', token.LOGICAL_OR)
  375. case '~':
  376. tkn = token.BITWISE_NOT
  377. case '?':
  378. if self.chr == '.' && !isDecimalDigit(self._peek()) {
  379. self.read()
  380. tkn = token.QUESTION_DOT
  381. } else if self.chr == '?' {
  382. self.read()
  383. tkn = token.COALESCE
  384. } else {
  385. tkn = token.QUESTION_MARK
  386. }
  387. case '"', '\'':
  388. insertSemicolon = true
  389. tkn = token.STRING
  390. var err string
  391. literal, parsedLiteral, err = self.scanString(self.chrOffset-1, true)
  392. if err != "" {
  393. tkn = token.ILLEGAL
  394. }
  395. case '`':
  396. tkn = token.BACKTICK
  397. case '#':
  398. if self.chrOffset == 1 && self.chr == '!' {
  399. self.skipSingleLineComment()
  400. continue
  401. }
  402. var err string
  403. literal, parsedLiteral, _, err = self.scanIdentifier()
  404. if err != "" || literal == "" {
  405. tkn = token.ILLEGAL
  406. break
  407. }
  408. self.insertSemicolon = true
  409. tkn = token.PRIVATE_IDENTIFIER
  410. return
  411. default:
  412. self.errorUnexpected(idx, chr)
  413. tkn = token.ILLEGAL
  414. }
  415. }
  416. self.insertSemicolon = insertSemicolon
  417. return
  418. }
  419. }
  420. func (self *_parser) switch2(tkn0, tkn1 token.Token) token.Token {
  421. if self.chr == '=' {
  422. self.read()
  423. return tkn1
  424. }
  425. return tkn0
  426. }
  427. func (self *_parser) switch3(tkn0, tkn1 token.Token, chr2 rune, tkn2 token.Token) token.Token {
  428. if self.chr == '=' {
  429. self.read()
  430. return tkn1
  431. }
  432. if self.chr == chr2 {
  433. self.read()
  434. return tkn2
  435. }
  436. return tkn0
  437. }
  438. func (self *_parser) switch4(tkn0, tkn1 token.Token, chr2 rune, tkn2, tkn3 token.Token) token.Token {
  439. if self.chr == '=' {
  440. self.read()
  441. return tkn1
  442. }
  443. if self.chr == chr2 {
  444. self.read()
  445. if self.chr == '=' {
  446. self.read()
  447. return tkn3
  448. }
  449. return tkn2
  450. }
  451. return tkn0
  452. }
  453. func (self *_parser) switch6(tkn0, tkn1 token.Token, chr2 rune, tkn2, tkn3 token.Token, chr3 rune, tkn4, tkn5 token.Token) token.Token {
  454. if self.chr == '=' {
  455. self.read()
  456. return tkn1
  457. }
  458. if self.chr == chr2 {
  459. self.read()
  460. if self.chr == '=' {
  461. self.read()
  462. return tkn3
  463. }
  464. if self.chr == chr3 {
  465. self.read()
  466. if self.chr == '=' {
  467. self.read()
  468. return tkn5
  469. }
  470. return tkn4
  471. }
  472. return tkn2
  473. }
  474. return tkn0
  475. }
  476. func (self *_parser) _peek() rune {
  477. if self.offset < self.length {
  478. return rune(self.str[self.offset])
  479. }
  480. return -1
  481. }
  482. func (self *_parser) read() {
  483. if self.offset < self.length {
  484. self.chrOffset = self.offset
  485. chr, width := rune(self.str[self.offset]), 1
  486. if chr >= utf8.RuneSelf { // !ASCII
  487. chr, width = utf8.DecodeRuneInString(self.str[self.offset:])
  488. if chr == utf8.RuneError && width == 1 {
  489. self.error(self.chrOffset, "Invalid UTF-8 character")
  490. }
  491. }
  492. self.offset += width
  493. self.chr = chr
  494. } else {
  495. self.chrOffset = self.length
  496. self.chr = -1 // EOF
  497. }
  498. }
  499. func (self *_parser) skipSingleLineComment() {
  500. for self.chr != -1 {
  501. self.read()
  502. if isLineTerminator(self.chr) {
  503. return
  504. }
  505. }
  506. }
  507. func (self *_parser) skipMultiLineComment() (hasLineTerminator bool) {
  508. self.read()
  509. for self.chr >= 0 {
  510. chr := self.chr
  511. if chr == '\r' || chr == '\n' || chr == '\u2028' || chr == '\u2029' {
  512. hasLineTerminator = true
  513. break
  514. }
  515. self.read()
  516. if chr == '*' && self.chr == '/' {
  517. self.read()
  518. return
  519. }
  520. }
  521. for self.chr >= 0 {
  522. chr := self.chr
  523. self.read()
  524. if chr == '*' && self.chr == '/' {
  525. self.read()
  526. return
  527. }
  528. }
  529. self.errorUnexpected(0, self.chr)
  530. return
  531. }
  532. func (self *_parser) skipWhiteSpace() {
  533. for {
  534. switch self.chr {
  535. case ' ', '\t', '\f', '\v', '\u00a0', '\ufeff':
  536. self.read()
  537. continue
  538. case '\r':
  539. if self._peek() == '\n' {
  540. self.read()
  541. }
  542. fallthrough
  543. case '\u2028', '\u2029', '\n':
  544. if self.insertSemicolon {
  545. return
  546. }
  547. self.read()
  548. continue
  549. }
  550. if self.chr >= utf8.RuneSelf {
  551. if unicode.IsSpace(self.chr) {
  552. self.read()
  553. continue
  554. }
  555. }
  556. break
  557. }
  558. }
  559. func (self *_parser) scanMantissa(base int) {
  560. for digitValue(self.chr) < base {
  561. self.read()
  562. }
  563. }
  564. func (self *_parser) scanEscape(quote rune) (int, bool) {
  565. var length, base uint32
  566. chr := self.chr
  567. switch chr {
  568. case '0', '1', '2', '3', '4', '5', '6', '7':
  569. // Octal:
  570. length, base = 3, 8
  571. case 'a', 'b', 'f', 'n', 'r', 't', 'v', '\\', '"', '\'':
  572. self.read()
  573. return 1, false
  574. case '\r':
  575. self.read()
  576. if self.chr == '\n' {
  577. self.read()
  578. return 2, false
  579. }
  580. return 1, false
  581. case '\n':
  582. self.read()
  583. return 1, false
  584. case '\u2028', '\u2029':
  585. self.read()
  586. return 1, true
  587. case 'x':
  588. self.read()
  589. length, base = 2, 16
  590. case 'u':
  591. self.read()
  592. if self.chr == '{' {
  593. self.read()
  594. length, base = 0, 16
  595. } else {
  596. length, base = 4, 16
  597. }
  598. default:
  599. self.read() // Always make progress
  600. }
  601. if base > 0 {
  602. var value uint32
  603. if length > 0 {
  604. for ; length > 0 && self.chr != quote && self.chr >= 0; length-- {
  605. digit := uint32(digitValue(self.chr))
  606. if digit >= base {
  607. break
  608. }
  609. value = value*base + digit
  610. self.read()
  611. }
  612. } else {
  613. for self.chr != quote && self.chr >= 0 && value < utf8.MaxRune {
  614. if self.chr == '}' {
  615. self.read()
  616. break
  617. }
  618. digit := uint32(digitValue(self.chr))
  619. if digit >= base {
  620. break
  621. }
  622. value = value*base + digit
  623. self.read()
  624. }
  625. }
  626. chr = rune(value)
  627. }
  628. if chr >= utf8.RuneSelf {
  629. if chr > 0xFFFF {
  630. return 2, true
  631. }
  632. return 1, true
  633. }
  634. return 1, false
  635. }
  636. func (self *_parser) scanString(offset int, parse bool) (literal string, parsed unistring.String, err string) {
  637. // " ' /
  638. quote := rune(self.str[offset])
  639. length := 0
  640. isUnicode := false
  641. for self.chr != quote {
  642. chr := self.chr
  643. if chr == '\n' || chr == '\r' || chr < 0 {
  644. goto newline
  645. }
  646. if quote == '/' && (self.chr == '\u2028' || self.chr == '\u2029') {
  647. goto newline
  648. }
  649. self.read()
  650. if chr == '\\' {
  651. if self.chr == '\n' || self.chr == '\r' || self.chr == '\u2028' || self.chr == '\u2029' || self.chr < 0 {
  652. if quote == '/' {
  653. goto newline
  654. }
  655. self.scanNewline()
  656. } else {
  657. l, u := self.scanEscape(quote)
  658. length += l
  659. if u {
  660. isUnicode = true
  661. }
  662. }
  663. continue
  664. } else if chr == '[' && quote == '/' {
  665. // Allow a slash (/) in a bracket character class ([...])
  666. // TODO Fix this, this is hacky...
  667. quote = -1
  668. } else if chr == ']' && quote == -1 {
  669. quote = '/'
  670. }
  671. if chr >= utf8.RuneSelf {
  672. isUnicode = true
  673. if chr > 0xFFFF {
  674. length++
  675. }
  676. }
  677. length++
  678. }
  679. // " ' /
  680. self.read()
  681. literal = self.str[offset:self.chrOffset]
  682. if parse {
  683. // TODO strict
  684. parsed, err = parseStringLiteral(literal[1:len(literal)-1], length, isUnicode, false)
  685. }
  686. return
  687. newline:
  688. self.scanNewline()
  689. errStr := "String not terminated"
  690. if quote == '/' {
  691. errStr = "Invalid regular expression: missing /"
  692. self.error(self.idxOf(offset), errStr)
  693. }
  694. return "", "", errStr
  695. }
  696. func (self *_parser) scanNewline() {
  697. if self.chr == '\u2028' || self.chr == '\u2029' {
  698. self.read()
  699. return
  700. }
  701. if self.chr == '\r' {
  702. self.read()
  703. if self.chr != '\n' {
  704. return
  705. }
  706. }
  707. self.read()
  708. }
  709. func (self *_parser) parseTemplateCharacters() (literal string, parsed unistring.String, finished bool, parseErr, err string) {
  710. offset := self.chrOffset
  711. var end int
  712. length := 0
  713. isUnicode := false
  714. hasCR := false
  715. for {
  716. chr := self.chr
  717. if chr < 0 {
  718. goto unterminated
  719. }
  720. self.read()
  721. if chr == '`' {
  722. finished = true
  723. end = self.chrOffset - 1
  724. break
  725. }
  726. if chr == '\\' {
  727. if self.chr == '\n' || self.chr == '\r' || self.chr == '\u2028' || self.chr == '\u2029' || self.chr < 0 {
  728. if self.chr == '\r' {
  729. hasCR = true
  730. }
  731. self.scanNewline()
  732. } else {
  733. if self.chr == '8' || self.chr == '9' {
  734. if parseErr == "" {
  735. parseErr = "\\8 and \\9 are not allowed in template strings."
  736. }
  737. }
  738. l, u := self.scanEscape('`')
  739. length += l
  740. if u {
  741. isUnicode = true
  742. }
  743. }
  744. continue
  745. }
  746. if chr == '$' && self.chr == '{' {
  747. self.read()
  748. end = self.chrOffset - 2
  749. break
  750. }
  751. if chr >= utf8.RuneSelf {
  752. isUnicode = true
  753. if chr > 0xFFFF {
  754. length++
  755. }
  756. } else if chr == '\r' {
  757. hasCR = true
  758. if self.chr == '\n' {
  759. length--
  760. }
  761. }
  762. length++
  763. }
  764. literal = self.str[offset:end]
  765. if hasCR {
  766. literal = normaliseCRLF(literal)
  767. }
  768. if parseErr == "" {
  769. parsed, parseErr = parseStringLiteral(literal, length, isUnicode, true)
  770. }
  771. self.insertSemicolon = true
  772. return
  773. unterminated:
  774. err = err_UnexpectedEndOfInput
  775. finished = true
  776. return
  777. }
  778. func normaliseCRLF(s string) string {
  779. var buf strings.Builder
  780. buf.Grow(len(s))
  781. for i := 0; i < len(s); i++ {
  782. if s[i] == '\r' {
  783. buf.WriteByte('\n')
  784. if i < len(s)-1 && s[i+1] == '\n' {
  785. i++
  786. }
  787. } else {
  788. buf.WriteByte(s[i])
  789. }
  790. }
  791. return buf.String()
  792. }
  793. func hex2decimal(chr byte) (value rune, ok bool) {
  794. {
  795. chr := rune(chr)
  796. switch {
  797. case '0' <= chr && chr <= '9':
  798. return chr - '0', true
  799. case 'a' <= chr && chr <= 'f':
  800. return chr - 'a' + 10, true
  801. case 'A' <= chr && chr <= 'F':
  802. return chr - 'A' + 10, true
  803. }
  804. return
  805. }
  806. }
  807. func parseNumberLiteral(literal string) (value interface{}, err error) {
  808. // TODO Is Uint okay? What about -MAX_UINT
  809. value, err = strconv.ParseInt(literal, 0, 64)
  810. if err == nil {
  811. return
  812. }
  813. parseIntErr := err // Save this first error, just in case
  814. value, err = strconv.ParseFloat(literal, 64)
  815. if err == nil {
  816. return
  817. } else if err.(*strconv.NumError).Err == strconv.ErrRange {
  818. // Infinity, etc.
  819. return value, nil
  820. }
  821. err = parseIntErr
  822. if err.(*strconv.NumError).Err == strconv.ErrRange {
  823. if len(literal) > 2 && literal[0] == '0' && (literal[1] == 'X' || literal[1] == 'x') {
  824. // Could just be a very large number (e.g. 0x8000000000000000)
  825. var value float64
  826. literal = literal[2:]
  827. for _, chr := range literal {
  828. digit := digitValue(chr)
  829. if digit >= 16 {
  830. goto error
  831. }
  832. value = value*16 + float64(digit)
  833. }
  834. return value, nil
  835. }
  836. }
  837. error:
  838. return nil, errors.New("Illegal numeric literal")
  839. }
  840. func parseStringLiteral(literal string, length int, unicode, strict bool) (unistring.String, string) {
  841. var sb strings.Builder
  842. var chars []uint16
  843. if unicode {
  844. chars = make([]uint16, 1, length+1)
  845. chars[0] = unistring.BOM
  846. } else {
  847. sb.Grow(length)
  848. }
  849. str := literal
  850. for len(str) > 0 {
  851. switch chr := str[0]; {
  852. // We do not explicitly handle the case of the quote
  853. // value, which can be: " ' /
  854. // This assumes we're already passed a partially well-formed literal
  855. case chr >= utf8.RuneSelf:
  856. chr, size := utf8.DecodeRuneInString(str)
  857. if chr <= 0xFFFF {
  858. chars = append(chars, uint16(chr))
  859. } else {
  860. first, second := utf16.EncodeRune(chr)
  861. chars = append(chars, uint16(first), uint16(second))
  862. }
  863. str = str[size:]
  864. continue
  865. case chr != '\\':
  866. if unicode {
  867. chars = append(chars, uint16(chr))
  868. } else {
  869. sb.WriteByte(chr)
  870. }
  871. str = str[1:]
  872. continue
  873. }
  874. if len(str) <= 1 {
  875. panic("len(str) <= 1")
  876. }
  877. chr := str[1]
  878. var value rune
  879. if chr >= utf8.RuneSelf {
  880. str = str[1:]
  881. var size int
  882. value, size = utf8.DecodeRuneInString(str)
  883. str = str[size:] // \ + <character>
  884. if value == '\u2028' || value == '\u2029' {
  885. continue
  886. }
  887. } else {
  888. str = str[2:] // \<character>
  889. switch chr {
  890. case 'b':
  891. value = '\b'
  892. case 'f':
  893. value = '\f'
  894. case 'n':
  895. value = '\n'
  896. case 'r':
  897. value = '\r'
  898. case 't':
  899. value = '\t'
  900. case 'v':
  901. value = '\v'
  902. case 'x', 'u':
  903. size := 0
  904. switch chr {
  905. case 'x':
  906. size = 2
  907. case 'u':
  908. if str == "" || str[0] != '{' {
  909. size = 4
  910. }
  911. }
  912. if size > 0 {
  913. if len(str) < size {
  914. return "", fmt.Sprintf("invalid escape: \\%s: len(%q) != %d", string(chr), str, size)
  915. }
  916. for j := 0; j < size; j++ {
  917. decimal, ok := hex2decimal(str[j])
  918. if !ok {
  919. return "", fmt.Sprintf("invalid escape: \\%s: %q", string(chr), str[:size])
  920. }
  921. value = value<<4 | decimal
  922. }
  923. } else {
  924. str = str[1:]
  925. var val rune
  926. value = -1
  927. for ; size < len(str); size++ {
  928. if str[size] == '}' {
  929. if size == 0 {
  930. return "", fmt.Sprintf("invalid escape: \\%s", string(chr))
  931. }
  932. size++
  933. value = val
  934. break
  935. }
  936. decimal, ok := hex2decimal(str[size])
  937. if !ok {
  938. return "", fmt.Sprintf("invalid escape: \\%s: %q", string(chr), str[:size+1])
  939. }
  940. val = val<<4 | decimal
  941. if val > utf8.MaxRune {
  942. return "", fmt.Sprintf("undefined Unicode code-point: %q", str[:size+1])
  943. }
  944. }
  945. if value == -1 {
  946. return "", fmt.Sprintf("unterminated \\u{: %q", str)
  947. }
  948. }
  949. str = str[size:]
  950. if chr == 'x' {
  951. break
  952. }
  953. if value > utf8.MaxRune {
  954. panic("value > utf8.MaxRune")
  955. }
  956. case '0':
  957. if len(str) == 0 || '0' > str[0] || str[0] > '7' {
  958. value = 0
  959. break
  960. }
  961. fallthrough
  962. case '1', '2', '3', '4', '5', '6', '7':
  963. if strict {
  964. return "", "Octal escape sequences are not allowed in this context"
  965. }
  966. value = rune(chr) - '0'
  967. j := 0
  968. for ; j < 2; j++ {
  969. if len(str) < j+1 {
  970. break
  971. }
  972. chr := str[j]
  973. if '0' > chr || chr > '7' {
  974. break
  975. }
  976. decimal := rune(str[j]) - '0'
  977. value = (value << 3) | decimal
  978. }
  979. str = str[j:]
  980. case '\\':
  981. value = '\\'
  982. case '\'', '"':
  983. value = rune(chr)
  984. case '\r':
  985. if len(str) > 0 {
  986. if str[0] == '\n' {
  987. str = str[1:]
  988. }
  989. }
  990. fallthrough
  991. case '\n':
  992. continue
  993. default:
  994. value = rune(chr)
  995. }
  996. }
  997. if unicode {
  998. if value <= 0xFFFF {
  999. chars = append(chars, uint16(value))
  1000. } else {
  1001. first, second := utf16.EncodeRune(value)
  1002. chars = append(chars, uint16(first), uint16(second))
  1003. }
  1004. } else {
  1005. if value >= utf8.RuneSelf {
  1006. return "", "Unexpected unicode character"
  1007. }
  1008. sb.WriteByte(byte(value))
  1009. }
  1010. }
  1011. if unicode {
  1012. if len(chars) != length+1 {
  1013. panic(fmt.Errorf("unexpected unicode length while parsing '%s'", literal))
  1014. }
  1015. return unistring.FromUtf16(chars), ""
  1016. }
  1017. if sb.Len() != length {
  1018. panic(fmt.Errorf("unexpected length while parsing '%s'", literal))
  1019. }
  1020. return unistring.String(sb.String()), ""
  1021. }
  1022. func (self *_parser) scanNumericLiteral(decimalPoint bool) (token.Token, string) {
  1023. offset := self.chrOffset
  1024. tkn := token.NUMBER
  1025. if decimalPoint {
  1026. offset--
  1027. self.scanMantissa(10)
  1028. } else {
  1029. if self.chr == '0' {
  1030. self.read()
  1031. base := 0
  1032. switch self.chr {
  1033. case 'x', 'X':
  1034. base = 16
  1035. case 'o', 'O':
  1036. base = 8
  1037. case 'b', 'B':
  1038. base = 2
  1039. case '.', 'e', 'E':
  1040. // no-op
  1041. default:
  1042. // legacy octal
  1043. self.scanMantissa(8)
  1044. goto end
  1045. }
  1046. if base > 0 {
  1047. self.read()
  1048. if !isDigit(self.chr, base) {
  1049. return token.ILLEGAL, self.str[offset:self.chrOffset]
  1050. }
  1051. self.scanMantissa(base)
  1052. goto end
  1053. }
  1054. } else {
  1055. self.scanMantissa(10)
  1056. }
  1057. if self.chr == '.' {
  1058. self.read()
  1059. self.scanMantissa(10)
  1060. }
  1061. }
  1062. if self.chr == 'e' || self.chr == 'E' {
  1063. self.read()
  1064. if self.chr == '-' || self.chr == '+' {
  1065. self.read()
  1066. }
  1067. if isDecimalDigit(self.chr) {
  1068. self.read()
  1069. self.scanMantissa(10)
  1070. } else {
  1071. return token.ILLEGAL, self.str[offset:self.chrOffset]
  1072. }
  1073. }
  1074. end:
  1075. if isIdentifierStart(self.chr) || isDecimalDigit(self.chr) {
  1076. return token.ILLEGAL, self.str[offset:self.chrOffset]
  1077. }
  1078. return tkn, self.str[offset:self.chrOffset]
  1079. }