builtin_regexp.go 33 KB

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  1. package goja
  2. import (
  3. "fmt"
  4. "github.com/dop251/goja/parser"
  5. "regexp"
  6. "strings"
  7. "unicode/utf16"
  8. "unicode/utf8"
  9. )
  10. func (r *Runtime) newRegexpObject(proto *Object) *regexpObject {
  11. v := &Object{runtime: r}
  12. o := &regexpObject{}
  13. o.class = classRegExp
  14. o.val = v
  15. o.extensible = true
  16. v.self = o
  17. o.prototype = proto
  18. o.init()
  19. return o
  20. }
  21. func (r *Runtime) newRegExpp(pattern *regexpPattern, patternStr valueString, proto *Object) *regexpObject {
  22. o := r.newRegexpObject(proto)
  23. o.pattern = pattern
  24. o.source = patternStr
  25. return o
  26. }
  27. func decodeHex(s string) (int, bool) {
  28. var hex int
  29. for i := 0; i < len(s); i++ {
  30. var n byte
  31. chr := s[i]
  32. switch {
  33. case '0' <= chr && chr <= '9':
  34. n = chr - '0'
  35. case 'a' <= chr && chr <= 'f':
  36. n = chr - 'a' + 10
  37. case 'A' <= chr && chr <= 'F':
  38. n = chr - 'A' + 10
  39. default:
  40. return 0, false
  41. }
  42. hex = hex*16 + int(n)
  43. }
  44. return hex, true
  45. }
  46. func writeHex4(b *strings.Builder, i int) {
  47. b.WriteByte(hex[i>>12])
  48. b.WriteByte(hex[(i>>8)&0xF])
  49. b.WriteByte(hex[(i>>4)&0xF])
  50. b.WriteByte(hex[i&0xF])
  51. }
  52. // Convert any valid surrogate pairs in the form of \uXXXX\uXXXX to unicode characters
  53. func convertRegexpToUnicode(patternStr string) string {
  54. var sb strings.Builder
  55. pos := 0
  56. for i := 0; i < len(patternStr)-11; {
  57. r, size := utf8.DecodeRuneInString(patternStr[i:])
  58. if r == '\\' {
  59. i++
  60. if patternStr[i] == 'u' && patternStr[i+5] == '\\' && patternStr[i+6] == 'u' {
  61. if first, ok := decodeHex(patternStr[i+1 : i+5]); ok {
  62. if isUTF16FirstSurrogate(rune(first)) {
  63. if second, ok := decodeHex(patternStr[i+7 : i+11]); ok {
  64. if isUTF16SecondSurrogate(rune(second)) {
  65. r = utf16.DecodeRune(rune(first), rune(second))
  66. sb.WriteString(patternStr[pos : i-1])
  67. sb.WriteRune(r)
  68. i += 11
  69. pos = i
  70. continue
  71. }
  72. }
  73. }
  74. }
  75. }
  76. i++
  77. } else {
  78. i += size
  79. }
  80. }
  81. if pos > 0 {
  82. sb.WriteString(patternStr[pos:])
  83. return sb.String()
  84. }
  85. return patternStr
  86. }
  87. // Convert any extended unicode characters to UTF-16 in the form of \uXXXX\uXXXX
  88. func convertRegexpToUtf16(patternStr string) string {
  89. var sb strings.Builder
  90. pos := 0
  91. var prevRune rune
  92. for i := 0; i < len(patternStr); {
  93. r, size := utf8.DecodeRuneInString(patternStr[i:])
  94. if r > 0xFFFF {
  95. sb.WriteString(patternStr[pos:i])
  96. if prevRune == '\\' {
  97. sb.WriteRune('\\')
  98. }
  99. first, second := utf16.EncodeRune(r)
  100. sb.WriteString(`\u`)
  101. writeHex4(&sb, int(first))
  102. sb.WriteString(`\u`)
  103. writeHex4(&sb, int(second))
  104. pos = i + size
  105. }
  106. i += size
  107. prevRune = r
  108. }
  109. if pos > 0 {
  110. sb.WriteString(patternStr[pos:])
  111. return sb.String()
  112. }
  113. return patternStr
  114. }
  115. // convert any broken UTF-16 surrogate pairs to \uXXXX
  116. func escapeInvalidUtf16(s valueString) string {
  117. if ascii, ok := s.(asciiString); ok {
  118. return ascii.String()
  119. }
  120. var sb strings.Builder
  121. rd := &lenientUtf16Decoder{utf16Reader: s.utf16Reader(0)}
  122. pos := 0
  123. utf8Size := 0
  124. var utf8Buf [utf8.UTFMax]byte
  125. for {
  126. c, size, err := rd.ReadRune()
  127. if err != nil {
  128. break
  129. }
  130. if utf16.IsSurrogate(c) {
  131. if sb.Len() == 0 {
  132. sb.Grow(utf8Size + 7)
  133. hrd := s.reader(0)
  134. var c rune
  135. for p := 0; p < pos; {
  136. var size int
  137. var err error
  138. c, size, err = hrd.ReadRune()
  139. if err != nil {
  140. // will not happen
  141. panic(fmt.Errorf("error while reading string head %q, pos: %d: %w", s.String(), pos, err))
  142. }
  143. sb.WriteRune(c)
  144. p += size
  145. }
  146. if c == '\\' {
  147. sb.WriteRune(c)
  148. }
  149. }
  150. sb.WriteString(`\u`)
  151. writeHex4(&sb, int(c))
  152. } else {
  153. if sb.Len() > 0 {
  154. sb.WriteRune(c)
  155. } else {
  156. utf8Size += utf8.EncodeRune(utf8Buf[:], c)
  157. pos += size
  158. }
  159. }
  160. }
  161. if sb.Len() > 0 {
  162. return sb.String()
  163. }
  164. return s.String()
  165. }
  166. func compileRegexpFromValueString(patternStr valueString, flags string) (*regexpPattern, error) {
  167. return compileRegexp(escapeInvalidUtf16(patternStr), flags)
  168. }
  169. func compileRegexp(patternStr, flags string) (p *regexpPattern, err error) {
  170. var global, ignoreCase, multiline, sticky, unicode bool
  171. var wrapper *regexpWrapper
  172. var wrapper2 *regexp2Wrapper
  173. if flags != "" {
  174. invalidFlags := func() {
  175. err = fmt.Errorf("Invalid flags supplied to RegExp constructor '%s'", flags)
  176. }
  177. for _, chr := range flags {
  178. switch chr {
  179. case 'g':
  180. if global {
  181. invalidFlags()
  182. return
  183. }
  184. global = true
  185. case 'm':
  186. if multiline {
  187. invalidFlags()
  188. return
  189. }
  190. multiline = true
  191. case 'i':
  192. if ignoreCase {
  193. invalidFlags()
  194. return
  195. }
  196. ignoreCase = true
  197. case 'y':
  198. if sticky {
  199. invalidFlags()
  200. return
  201. }
  202. sticky = true
  203. case 'u':
  204. if unicode {
  205. invalidFlags()
  206. }
  207. unicode = true
  208. default:
  209. invalidFlags()
  210. return
  211. }
  212. }
  213. }
  214. if unicode {
  215. patternStr = convertRegexpToUnicode(patternStr)
  216. } else {
  217. patternStr = convertRegexpToUtf16(patternStr)
  218. }
  219. re2Str, err1 := parser.TransformRegExp(patternStr)
  220. if err1 == nil {
  221. re2flags := ""
  222. if multiline {
  223. re2flags += "m"
  224. }
  225. if ignoreCase {
  226. re2flags += "i"
  227. }
  228. if len(re2flags) > 0 {
  229. re2Str = fmt.Sprintf("(?%s:%s)", re2flags, re2Str)
  230. }
  231. pattern, err1 := regexp.Compile(re2Str)
  232. if err1 != nil {
  233. err = fmt.Errorf("Invalid regular expression (re2): %s (%v)", re2Str, err1)
  234. return
  235. }
  236. wrapper = (*regexpWrapper)(pattern)
  237. } else {
  238. if _, incompat := err1.(parser.RegexpErrorIncompatible); !incompat {
  239. err = err1
  240. return
  241. }
  242. wrapper2, err = compileRegexp2(patternStr, multiline, ignoreCase)
  243. if err != nil {
  244. err = fmt.Errorf("Invalid regular expression (regexp2): %s (%v)", patternStr, err)
  245. return
  246. }
  247. }
  248. p = &regexpPattern{
  249. src: patternStr,
  250. regexpWrapper: wrapper,
  251. regexp2Wrapper: wrapper2,
  252. global: global,
  253. ignoreCase: ignoreCase,
  254. multiline: multiline,
  255. sticky: sticky,
  256. unicode: unicode,
  257. }
  258. return
  259. }
  260. func (r *Runtime) _newRegExp(patternStr valueString, flags string, proto *Object) *regexpObject {
  261. pattern, err := compileRegexpFromValueString(patternStr, flags)
  262. if err != nil {
  263. panic(r.newSyntaxError(err.Error(), -1))
  264. }
  265. return r.newRegExpp(pattern, patternStr, proto)
  266. }
  267. func (r *Runtime) builtin_newRegExp(args []Value, proto *Object) *Object {
  268. var patternVal, flagsVal Value
  269. if len(args) > 0 {
  270. patternVal = args[0]
  271. }
  272. if len(args) > 1 {
  273. flagsVal = args[1]
  274. }
  275. return r.newRegExp(patternVal, flagsVal, proto).val
  276. }
  277. func (r *Runtime) newRegExp(patternVal, flagsVal Value, proto *Object) *regexpObject {
  278. var pattern valueString
  279. var flags string
  280. if isRegexp(patternVal) { // this may have side effects so need to call it anyway
  281. if obj, ok := patternVal.(*Object); ok {
  282. if rx, ok := obj.self.(*regexpObject); ok {
  283. if flagsVal == nil || flagsVal == _undefined {
  284. return rx.clone()
  285. } else {
  286. return r._newRegExp(rx.source, flagsVal.toString().String(), proto)
  287. }
  288. } else {
  289. pattern = nilSafe(obj.self.getStr("source", nil)).toString()
  290. if flagsVal == nil || flagsVal == _undefined {
  291. flags = nilSafe(obj.self.getStr("flags", nil)).toString().String()
  292. } else {
  293. flags = flagsVal.toString().String()
  294. }
  295. goto exit
  296. }
  297. }
  298. }
  299. if patternVal != nil && patternVal != _undefined {
  300. pattern = patternVal.toString()
  301. }
  302. if flagsVal != nil && flagsVal != _undefined {
  303. flags = flagsVal.toString().String()
  304. }
  305. if pattern == nil {
  306. pattern = stringEmpty
  307. }
  308. exit:
  309. return r._newRegExp(pattern, flags, proto)
  310. }
  311. func (r *Runtime) builtin_RegExp(call FunctionCall) Value {
  312. pattern := call.Argument(0)
  313. patternIsRegExp := isRegexp(pattern)
  314. flags := call.Argument(1)
  315. if patternIsRegExp && flags == _undefined {
  316. if obj, ok := call.Argument(0).(*Object); ok {
  317. patternConstructor := obj.self.getStr("constructor", nil)
  318. if patternConstructor == r.global.RegExp {
  319. return pattern
  320. }
  321. }
  322. }
  323. return r.newRegExp(pattern, flags, r.global.RegExpPrototype).val
  324. }
  325. func (r *Runtime) regexpproto_compile(call FunctionCall) Value {
  326. if this, ok := r.toObject(call.This).self.(*regexpObject); ok {
  327. var (
  328. pattern *regexpPattern
  329. source valueString
  330. flags string
  331. err error
  332. )
  333. patternVal := call.Argument(0)
  334. flagsVal := call.Argument(1)
  335. if o, ok := patternVal.(*Object); ok {
  336. if p, ok := o.self.(*regexpObject); ok {
  337. if flagsVal != _undefined {
  338. panic(r.NewTypeError("Cannot supply flags when constructing one RegExp from another"))
  339. }
  340. this.pattern = p.pattern
  341. this.source = p.source
  342. goto exit
  343. }
  344. }
  345. if patternVal != _undefined {
  346. source = patternVal.toString()
  347. } else {
  348. source = stringEmpty
  349. }
  350. if flagsVal != _undefined {
  351. flags = flagsVal.toString().String()
  352. }
  353. pattern, err = compileRegexpFromValueString(source, flags)
  354. if err != nil {
  355. panic(r.newSyntaxError(err.Error(), -1))
  356. }
  357. this.pattern = pattern
  358. this.source = source
  359. exit:
  360. this.setOwnStr("lastIndex", intToValue(0), true)
  361. return call.This
  362. }
  363. panic(r.NewTypeError("Method RegExp.prototype.compile called on incompatible receiver %s", r.objectproto_toString(FunctionCall{This: call.This})))
  364. }
  365. func (r *Runtime) regexpproto_exec(call FunctionCall) Value {
  366. if this, ok := r.toObject(call.This).self.(*regexpObject); ok {
  367. return this.exec(call.Argument(0).toString())
  368. } else {
  369. r.typeErrorResult(true, "Method RegExp.prototype.exec called on incompatible receiver %s", r.objectproto_toString(FunctionCall{This: call.This}))
  370. return nil
  371. }
  372. }
  373. func (r *Runtime) regexpproto_test(call FunctionCall) Value {
  374. if this, ok := r.toObject(call.This).self.(*regexpObject); ok {
  375. if this.test(call.Argument(0).toString()) {
  376. return valueTrue
  377. } else {
  378. return valueFalse
  379. }
  380. } else {
  381. panic(r.NewTypeError("Method RegExp.prototype.test called on incompatible receiver %s", r.objectproto_toString(FunctionCall{This: call.This})))
  382. }
  383. }
  384. func (r *Runtime) regexpproto_toString(call FunctionCall) Value {
  385. obj := r.toObject(call.This)
  386. if this := r.checkStdRegexp(obj); this != nil {
  387. var sb valueStringBuilder
  388. sb.WriteRune('/')
  389. if !this.writeEscapedSource(&sb) {
  390. sb.WriteString(this.source)
  391. }
  392. sb.WriteRune('/')
  393. if this.pattern.global {
  394. sb.WriteRune('g')
  395. }
  396. if this.pattern.ignoreCase {
  397. sb.WriteRune('i')
  398. }
  399. if this.pattern.multiline {
  400. sb.WriteRune('m')
  401. }
  402. if this.pattern.unicode {
  403. sb.WriteRune('u')
  404. }
  405. if this.pattern.sticky {
  406. sb.WriteRune('y')
  407. }
  408. return sb.String()
  409. }
  410. pattern := nilSafe(obj.self.getStr("source", nil)).toString()
  411. flags := nilSafe(obj.self.getStr("flags", nil)).toString()
  412. var sb valueStringBuilder
  413. sb.WriteRune('/')
  414. sb.WriteString(pattern)
  415. sb.WriteRune('/')
  416. sb.WriteString(flags)
  417. return sb.String()
  418. }
  419. func (r *regexpObject) writeEscapedSource(sb *valueStringBuilder) bool {
  420. if r.source.length() == 0 {
  421. sb.WriteString(asciiString("(?:)"))
  422. return true
  423. }
  424. pos := 0
  425. lastPos := 0
  426. rd := &lenientUtf16Decoder{utf16Reader: r.source.utf16Reader(0)}
  427. L:
  428. for {
  429. c, size, err := rd.ReadRune()
  430. if err != nil {
  431. break
  432. }
  433. switch c {
  434. case '\\':
  435. pos++
  436. _, size, err = rd.ReadRune()
  437. if err != nil {
  438. break L
  439. }
  440. case '/', '\u000a', '\u000d', '\u2028', '\u2029':
  441. sb.WriteSubstring(r.source, lastPos, pos)
  442. sb.WriteRune('\\')
  443. switch c {
  444. case '\u000a':
  445. sb.WriteRune('n')
  446. case '\u000d':
  447. sb.WriteRune('r')
  448. default:
  449. sb.WriteRune('u')
  450. sb.WriteRune(rune(hex[c>>12]))
  451. sb.WriteRune(rune(hex[(c>>8)&0xF]))
  452. sb.WriteRune(rune(hex[(c>>4)&0xF]))
  453. sb.WriteRune(rune(hex[c&0xF]))
  454. }
  455. lastPos = pos + size
  456. }
  457. pos += size
  458. }
  459. if lastPos > 0 {
  460. sb.WriteSubstring(r.source, lastPos, r.source.length())
  461. return true
  462. }
  463. return false
  464. }
  465. func (r *Runtime) regexpproto_getSource(call FunctionCall) Value {
  466. if this, ok := r.toObject(call.This).self.(*regexpObject); ok {
  467. var sb valueStringBuilder
  468. if this.writeEscapedSource(&sb) {
  469. return sb.String()
  470. }
  471. return this.source
  472. } else if call.This == r.global.RegExpPrototype {
  473. return asciiString("(?:)")
  474. } else {
  475. panic(r.NewTypeError("Method RegExp.prototype.source getter called on incompatible receiver"))
  476. }
  477. }
  478. func (r *Runtime) regexpproto_getGlobal(call FunctionCall) Value {
  479. if this, ok := r.toObject(call.This).self.(*regexpObject); ok {
  480. if this.pattern.global {
  481. return valueTrue
  482. } else {
  483. return valueFalse
  484. }
  485. } else if call.This == r.global.RegExpPrototype {
  486. return _undefined
  487. } else {
  488. panic(r.NewTypeError("Method RegExp.prototype.global getter called on incompatible receiver %s", r.objectproto_toString(FunctionCall{This: call.This})))
  489. }
  490. }
  491. func (r *Runtime) regexpproto_getMultiline(call FunctionCall) Value {
  492. if this, ok := r.toObject(call.This).self.(*regexpObject); ok {
  493. if this.pattern.multiline {
  494. return valueTrue
  495. } else {
  496. return valueFalse
  497. }
  498. } else if call.This == r.global.RegExpPrototype {
  499. return _undefined
  500. } else {
  501. panic(r.NewTypeError("Method RegExp.prototype.multiline getter called on incompatible receiver %s", r.objectproto_toString(FunctionCall{This: call.This})))
  502. }
  503. }
  504. func (r *Runtime) regexpproto_getIgnoreCase(call FunctionCall) Value {
  505. if this, ok := r.toObject(call.This).self.(*regexpObject); ok {
  506. if this.pattern.ignoreCase {
  507. return valueTrue
  508. } else {
  509. return valueFalse
  510. }
  511. } else if call.This == r.global.RegExpPrototype {
  512. return _undefined
  513. } else {
  514. panic(r.NewTypeError("Method RegExp.prototype.ignoreCase getter called on incompatible receiver %s", r.objectproto_toString(FunctionCall{This: call.This})))
  515. }
  516. }
  517. func (r *Runtime) regexpproto_getUnicode(call FunctionCall) Value {
  518. if this, ok := r.toObject(call.This).self.(*regexpObject); ok {
  519. if this.pattern.unicode {
  520. return valueTrue
  521. } else {
  522. return valueFalse
  523. }
  524. } else if call.This == r.global.RegExpPrototype {
  525. return _undefined
  526. } else {
  527. panic(r.NewTypeError("Method RegExp.prototype.unicode getter called on incompatible receiver %s", r.objectproto_toString(FunctionCall{This: call.This})))
  528. }
  529. }
  530. func (r *Runtime) regexpproto_getSticky(call FunctionCall) Value {
  531. if this, ok := r.toObject(call.This).self.(*regexpObject); ok {
  532. if this.pattern.sticky {
  533. return valueTrue
  534. } else {
  535. return valueFalse
  536. }
  537. } else if call.This == r.global.RegExpPrototype {
  538. return _undefined
  539. } else {
  540. panic(r.NewTypeError("Method RegExp.prototype.sticky getter called on incompatible receiver %s", r.objectproto_toString(FunctionCall{This: call.This})))
  541. }
  542. }
  543. func (r *Runtime) regexpproto_getFlags(call FunctionCall) Value {
  544. var global, ignoreCase, multiline, sticky, unicode bool
  545. thisObj := r.toObject(call.This)
  546. size := 0
  547. if v := thisObj.self.getStr("global", nil); v != nil {
  548. global = v.ToBoolean()
  549. if global {
  550. size++
  551. }
  552. }
  553. if v := thisObj.self.getStr("ignoreCase", nil); v != nil {
  554. ignoreCase = v.ToBoolean()
  555. if ignoreCase {
  556. size++
  557. }
  558. }
  559. if v := thisObj.self.getStr("multiline", nil); v != nil {
  560. multiline = v.ToBoolean()
  561. if multiline {
  562. size++
  563. }
  564. }
  565. if v := thisObj.self.getStr("sticky", nil); v != nil {
  566. sticky = v.ToBoolean()
  567. if sticky {
  568. size++
  569. }
  570. }
  571. if v := thisObj.self.getStr("unicode", nil); v != nil {
  572. unicode = v.ToBoolean()
  573. if unicode {
  574. size++
  575. }
  576. }
  577. var sb strings.Builder
  578. sb.Grow(size)
  579. if global {
  580. sb.WriteByte('g')
  581. }
  582. if ignoreCase {
  583. sb.WriteByte('i')
  584. }
  585. if multiline {
  586. sb.WriteByte('m')
  587. }
  588. if unicode {
  589. sb.WriteByte('u')
  590. }
  591. if sticky {
  592. sb.WriteByte('y')
  593. }
  594. return asciiString(sb.String())
  595. }
  596. func (r *Runtime) regExpExec(execFn func(FunctionCall) Value, rxObj *Object, arg Value) Value {
  597. res := execFn(FunctionCall{
  598. This: rxObj,
  599. Arguments: []Value{arg},
  600. })
  601. if res != _null {
  602. if _, ok := res.(*Object); !ok {
  603. panic(r.NewTypeError("RegExp exec method returned something other than an Object or null"))
  604. }
  605. }
  606. return res
  607. }
  608. func (r *Runtime) getGlobalRegexpMatches(rxObj *Object, s valueString) []Value {
  609. fullUnicode := nilSafe(rxObj.self.getStr("unicode", nil)).ToBoolean()
  610. rxObj.self.setOwnStr("lastIndex", intToValue(0), true)
  611. execFn, ok := r.toObject(rxObj.self.getStr("exec", nil)).self.assertCallable()
  612. if !ok {
  613. panic(r.NewTypeError("exec is not a function"))
  614. }
  615. var a []Value
  616. for {
  617. res := r.regExpExec(execFn, rxObj, s)
  618. if res == _null {
  619. break
  620. }
  621. a = append(a, res)
  622. matchStr := nilSafe(r.toObject(res).self.getIdx(valueInt(0), nil)).toString()
  623. if matchStr.length() == 0 {
  624. thisIndex := toLength(rxObj.self.getStr("lastIndex", nil))
  625. rxObj.self.setOwnStr("lastIndex", valueInt(advanceStringIndex64(s, thisIndex, fullUnicode)), true)
  626. }
  627. }
  628. return a
  629. }
  630. func (r *Runtime) regexpproto_stdMatcherGeneric(rxObj *Object, s valueString) Value {
  631. rx := rxObj.self
  632. global := rx.getStr("global", nil)
  633. if global != nil && global.ToBoolean() {
  634. a := r.getGlobalRegexpMatches(rxObj, s)
  635. if len(a) == 0 {
  636. return _null
  637. }
  638. ar := make([]Value, 0, len(a))
  639. for _, result := range a {
  640. obj := r.toObject(result)
  641. matchStr := nilSafe(obj.self.getIdx(valueInt(0), nil)).ToString()
  642. ar = append(ar, matchStr)
  643. }
  644. return r.newArrayValues(ar)
  645. }
  646. execFn, ok := r.toObject(rx.getStr("exec", nil)).self.assertCallable()
  647. if !ok {
  648. panic(r.NewTypeError("exec is not a function"))
  649. }
  650. return r.regExpExec(execFn, rxObj, s)
  651. }
  652. func (r *Runtime) checkStdRegexp(rxObj *Object) *regexpObject {
  653. if deoptimiseRegexp {
  654. return nil
  655. }
  656. rx, ok := rxObj.self.(*regexpObject)
  657. if !ok {
  658. return nil
  659. }
  660. if !rx.standard || rx.prototype == nil || rx.prototype.self != r.global.stdRegexpProto {
  661. return nil
  662. }
  663. return rx
  664. }
  665. func (r *Runtime) regexpproto_stdMatcher(call FunctionCall) Value {
  666. thisObj := r.toObject(call.This)
  667. s := call.Argument(0).toString()
  668. rx := r.checkStdRegexp(thisObj)
  669. if rx == nil {
  670. return r.regexpproto_stdMatcherGeneric(thisObj, s)
  671. }
  672. if rx.pattern.global {
  673. res := rx.pattern.findAllSubmatchIndex(s, 0, -1, rx.pattern.sticky)
  674. if len(res) == 0 {
  675. rx.setOwnStr("lastIndex", intToValue(0), true)
  676. return _null
  677. }
  678. a := make([]Value, 0, len(res))
  679. for _, result := range res {
  680. a = append(a, s.substring(result[0], result[1]))
  681. }
  682. rx.setOwnStr("lastIndex", intToValue(int64(res[len(res)-1][1])), true)
  683. return r.newArrayValues(a)
  684. } else {
  685. return rx.exec(s)
  686. }
  687. }
  688. func (r *Runtime) regexpproto_stdSearchGeneric(rxObj *Object, arg valueString) Value {
  689. rx := rxObj.self
  690. previousLastIndex := nilSafe(rx.getStr("lastIndex", nil))
  691. zero := intToValue(0)
  692. if !previousLastIndex.SameAs(zero) {
  693. rx.setOwnStr("lastIndex", zero, true)
  694. }
  695. execFn, ok := r.toObject(rx.getStr("exec", nil)).self.assertCallable()
  696. if !ok {
  697. panic(r.NewTypeError("exec is not a function"))
  698. }
  699. result := r.regExpExec(execFn, rxObj, arg)
  700. currentLastIndex := nilSafe(rx.getStr("lastIndex", nil))
  701. if !currentLastIndex.SameAs(previousLastIndex) {
  702. rx.setOwnStr("lastIndex", previousLastIndex, true)
  703. }
  704. if result == _null {
  705. return intToValue(-1)
  706. }
  707. return r.toObject(result).self.getStr("index", nil)
  708. }
  709. func (r *Runtime) regexpproto_stdMatcherAll(call FunctionCall) Value {
  710. thisObj := r.toObject(call.This)
  711. s := call.Argument(0).toString()
  712. flags := nilSafe(thisObj.self.getStr("flags", nil)).toString()
  713. c := r.speciesConstructorObj(call.This.(*Object), r.global.RegExp)
  714. matcher := r.toConstructor(c)([]Value{call.This, flags}, nil)
  715. matcher.self.setOwnStr("lastIndex", valueInt(toLength(thisObj.self.getStr("lastIndex", nil))), true)
  716. flagsStr := flags.String()
  717. global := strings.Contains(flagsStr, "g")
  718. fullUnicode := strings.Contains(flagsStr, "u")
  719. return r.createRegExpStringIterator(matcher, s, global, fullUnicode)
  720. }
  721. func (r *Runtime) createRegExpStringIterator(matcher *Object, s valueString, global, fullUnicode bool) Value {
  722. o := &Object{runtime: r}
  723. ri := &regExpStringIterObject{
  724. matcher: matcher,
  725. s: s,
  726. global: global,
  727. fullUnicode: fullUnicode,
  728. }
  729. ri.class = classRegExpStringIterator
  730. ri.val = o
  731. ri.extensible = true
  732. o.self = ri
  733. ri.prototype = r.global.RegExpStringIteratorPrototype
  734. ri.init()
  735. return o
  736. }
  737. type regExpStringIterObject struct {
  738. baseObject
  739. matcher *Object
  740. s valueString
  741. global, fullUnicode, done bool
  742. }
  743. // RegExpExec as defined in 21.2.5.2.1
  744. func regExpExec(r *Object, s valueString) Value {
  745. exec := r.self.getStr("exec", nil)
  746. if execObject, ok := exec.(*Object); ok {
  747. if execFn, ok := execObject.self.assertCallable(); ok {
  748. return r.runtime.regExpExec(execFn, r, s)
  749. }
  750. }
  751. if rx, ok := r.self.(*regexpObject); ok {
  752. return rx.exec(s)
  753. }
  754. panic(r.runtime.NewTypeError("no RegExpMatcher internal slot"))
  755. }
  756. func (ri *regExpStringIterObject) next() (v Value) {
  757. if ri.done {
  758. return ri.val.runtime.createIterResultObject(_undefined, true)
  759. }
  760. match := regExpExec(ri.matcher, ri.s)
  761. if IsNull(match) {
  762. ri.done = true
  763. return ri.val.runtime.createIterResultObject(_undefined, true)
  764. }
  765. if !ri.global {
  766. ri.done = true
  767. return ri.val.runtime.createIterResultObject(match, false)
  768. }
  769. matchStr := nilSafe(ri.val.runtime.toObject(match).self.getIdx(valueInt(0), nil)).toString()
  770. if matchStr.length() == 0 {
  771. thisIndex := toLength(ri.matcher.self.getStr("lastIndex", nil))
  772. ri.matcher.self.setOwnStr("lastIndex", valueInt(advanceStringIndex64(ri.s, thisIndex, ri.fullUnicode)), true)
  773. }
  774. return ri.val.runtime.createIterResultObject(match, false)
  775. }
  776. func (r *Runtime) regexpproto_stdSearch(call FunctionCall) Value {
  777. thisObj := r.toObject(call.This)
  778. s := call.Argument(0).toString()
  779. rx := r.checkStdRegexp(thisObj)
  780. if rx == nil {
  781. return r.regexpproto_stdSearchGeneric(thisObj, s)
  782. }
  783. previousLastIndex := rx.getStr("lastIndex", nil)
  784. rx.setOwnStr("lastIndex", intToValue(0), true)
  785. match, result := rx.execRegexp(s)
  786. rx.setOwnStr("lastIndex", previousLastIndex, true)
  787. if !match {
  788. return intToValue(-1)
  789. }
  790. return intToValue(int64(result[0]))
  791. }
  792. func (r *Runtime) regexpproto_stdSplitterGeneric(splitter *Object, s valueString, limit Value, unicodeMatching bool) Value {
  793. var a []Value
  794. var lim int64
  795. if limit == nil || limit == _undefined {
  796. lim = maxInt - 1
  797. } else {
  798. lim = toLength(limit)
  799. }
  800. if lim == 0 {
  801. return r.newArrayValues(a)
  802. }
  803. size := s.length()
  804. p := 0
  805. execFn := toMethod(splitter.ToObject(r).self.getStr("exec", nil)) // must be non-nil
  806. if size == 0 {
  807. if r.regExpExec(execFn, splitter, s) == _null {
  808. a = append(a, s)
  809. }
  810. return r.newArrayValues(a)
  811. }
  812. q := p
  813. for q < size {
  814. splitter.self.setOwnStr("lastIndex", intToValue(int64(q)), true)
  815. z := r.regExpExec(execFn, splitter, s)
  816. if z == _null {
  817. q = advanceStringIndex(s, q, unicodeMatching)
  818. } else {
  819. z := r.toObject(z)
  820. e := toLength(splitter.self.getStr("lastIndex", nil))
  821. if e == int64(p) {
  822. q = advanceStringIndex(s, q, unicodeMatching)
  823. } else {
  824. a = append(a, s.substring(p, q))
  825. if int64(len(a)) == lim {
  826. return r.newArrayValues(a)
  827. }
  828. if e > int64(size) {
  829. p = size
  830. } else {
  831. p = int(e)
  832. }
  833. numberOfCaptures := max(toLength(z.self.getStr("length", nil))-1, 0)
  834. for i := int64(1); i <= numberOfCaptures; i++ {
  835. a = append(a, nilSafe(z.self.getIdx(valueInt(i), nil)))
  836. if int64(len(a)) == lim {
  837. return r.newArrayValues(a)
  838. }
  839. }
  840. q = p
  841. }
  842. }
  843. }
  844. a = append(a, s.substring(p, size))
  845. return r.newArrayValues(a)
  846. }
  847. func advanceStringIndex(s valueString, pos int, unicode bool) int {
  848. next := pos + 1
  849. if !unicode {
  850. return next
  851. }
  852. l := s.length()
  853. if next >= l {
  854. return next
  855. }
  856. if !isUTF16FirstSurrogate(s.charAt(pos)) {
  857. return next
  858. }
  859. if !isUTF16SecondSurrogate(s.charAt(next)) {
  860. return next
  861. }
  862. return next + 1
  863. }
  864. func advanceStringIndex64(s valueString, pos int64, unicode bool) int64 {
  865. next := pos + 1
  866. if !unicode {
  867. return next
  868. }
  869. l := int64(s.length())
  870. if next >= l {
  871. return next
  872. }
  873. if !isUTF16FirstSurrogate(s.charAt(int(pos))) {
  874. return next
  875. }
  876. if !isUTF16SecondSurrogate(s.charAt(int(next))) {
  877. return next
  878. }
  879. return next + 1
  880. }
  881. func (r *Runtime) regexpproto_stdSplitter(call FunctionCall) Value {
  882. rxObj := r.toObject(call.This)
  883. s := call.Argument(0).toString()
  884. limitValue := call.Argument(1)
  885. var splitter *Object
  886. search := r.checkStdRegexp(rxObj)
  887. c := r.speciesConstructorObj(rxObj, r.global.RegExp)
  888. if search == nil || c != r.global.RegExp {
  889. flags := nilSafe(rxObj.self.getStr("flags", nil)).toString()
  890. flagsStr := flags.String()
  891. // Add 'y' flag if missing
  892. if !strings.Contains(flagsStr, "y") {
  893. flags = flags.concat(asciiString("y"))
  894. }
  895. splitter = r.toConstructor(c)([]Value{rxObj, flags}, nil)
  896. search = r.checkStdRegexp(splitter)
  897. if search == nil {
  898. return r.regexpproto_stdSplitterGeneric(splitter, s, limitValue, strings.Contains(flagsStr, "u"))
  899. }
  900. }
  901. pattern := search.pattern // toUint32() may recompile the pattern, but we still need to use the original
  902. limit := -1
  903. if limitValue != _undefined {
  904. limit = int(toUint32(limitValue))
  905. }
  906. if limit == 0 {
  907. return r.newArrayValues(nil)
  908. }
  909. targetLength := s.length()
  910. var valueArray []Value
  911. lastIndex := 0
  912. found := 0
  913. result := pattern.findAllSubmatchIndex(s, 0, -1, false)
  914. if targetLength == 0 {
  915. if result == nil {
  916. valueArray = append(valueArray, s)
  917. }
  918. goto RETURN
  919. }
  920. for _, match := range result {
  921. if match[0] == match[1] {
  922. // FIXME Ugh, this is a hack
  923. if match[0] == 0 || match[0] == targetLength {
  924. continue
  925. }
  926. }
  927. if lastIndex != match[0] {
  928. valueArray = append(valueArray, s.substring(lastIndex, match[0]))
  929. found++
  930. } else if lastIndex == match[0] {
  931. if lastIndex != -1 {
  932. valueArray = append(valueArray, stringEmpty)
  933. found++
  934. }
  935. }
  936. lastIndex = match[1]
  937. if found == limit {
  938. goto RETURN
  939. }
  940. captureCount := len(match) / 2
  941. for index := 1; index < captureCount; index++ {
  942. offset := index * 2
  943. var value Value
  944. if match[offset] != -1 {
  945. value = s.substring(match[offset], match[offset+1])
  946. } else {
  947. value = _undefined
  948. }
  949. valueArray = append(valueArray, value)
  950. found++
  951. if found == limit {
  952. goto RETURN
  953. }
  954. }
  955. }
  956. if found != limit {
  957. if lastIndex != targetLength {
  958. valueArray = append(valueArray, s.substring(lastIndex, targetLength))
  959. } else {
  960. valueArray = append(valueArray, stringEmpty)
  961. }
  962. }
  963. RETURN:
  964. return r.newArrayValues(valueArray)
  965. }
  966. func (r *Runtime) regexpproto_stdReplacerGeneric(rxObj *Object, s, replaceStr valueString, rcall func(FunctionCall) Value) Value {
  967. var results []Value
  968. if nilSafe(rxObj.self.getStr("global", nil)).ToBoolean() {
  969. results = r.getGlobalRegexpMatches(rxObj, s)
  970. } else {
  971. execFn := toMethod(rxObj.self.getStr("exec", nil)) // must be non-nil
  972. result := r.regExpExec(execFn, rxObj, s)
  973. if result != _null {
  974. results = append(results, result)
  975. }
  976. }
  977. lengthS := s.length()
  978. nextSourcePosition := 0
  979. var resultBuf valueStringBuilder
  980. for _, result := range results {
  981. obj := r.toObject(result)
  982. nCaptures := max(toLength(obj.self.getStr("length", nil))-1, 0)
  983. matched := nilSafe(obj.self.getIdx(valueInt(0), nil)).toString()
  984. matchLength := matched.length()
  985. position := toIntStrict(max(min(nilSafe(obj.self.getStr("index", nil)).ToInteger(), int64(lengthS)), 0))
  986. var captures []Value
  987. if rcall != nil {
  988. captures = make([]Value, 0, nCaptures+3)
  989. } else {
  990. captures = make([]Value, 0, nCaptures+1)
  991. }
  992. captures = append(captures, matched)
  993. for n := int64(1); n <= nCaptures; n++ {
  994. capN := nilSafe(obj.self.getIdx(valueInt(n), nil))
  995. if capN != _undefined {
  996. capN = capN.ToString()
  997. }
  998. captures = append(captures, capN)
  999. }
  1000. var replacement valueString
  1001. if rcall != nil {
  1002. captures = append(captures, intToValue(int64(position)), s)
  1003. replacement = rcall(FunctionCall{
  1004. This: _undefined,
  1005. Arguments: captures,
  1006. }).toString()
  1007. if position >= nextSourcePosition {
  1008. resultBuf.WriteString(s.substring(nextSourcePosition, position))
  1009. resultBuf.WriteString(replacement)
  1010. nextSourcePosition = position + matchLength
  1011. }
  1012. } else {
  1013. if position >= nextSourcePosition {
  1014. resultBuf.WriteString(s.substring(nextSourcePosition, position))
  1015. writeSubstitution(s, position, len(captures), func(idx int) valueString {
  1016. capture := captures[idx]
  1017. if capture != _undefined {
  1018. return capture.toString()
  1019. }
  1020. return stringEmpty
  1021. }, replaceStr, &resultBuf)
  1022. nextSourcePosition = position + matchLength
  1023. }
  1024. }
  1025. }
  1026. if nextSourcePosition < lengthS {
  1027. resultBuf.WriteString(s.substring(nextSourcePosition, lengthS))
  1028. }
  1029. return resultBuf.String()
  1030. }
  1031. func writeSubstitution(s valueString, position int, numCaptures int, getCapture func(int) valueString, replaceStr valueString, buf *valueStringBuilder) {
  1032. l := s.length()
  1033. rl := replaceStr.length()
  1034. matched := getCapture(0)
  1035. tailPos := position + matched.length()
  1036. for i := 0; i < rl; i++ {
  1037. c := replaceStr.charAt(i)
  1038. if c == '$' && i < rl-1 {
  1039. ch := replaceStr.charAt(i + 1)
  1040. switch ch {
  1041. case '$':
  1042. buf.WriteRune('$')
  1043. case '`':
  1044. buf.WriteString(s.substring(0, position))
  1045. case '\'':
  1046. if tailPos < l {
  1047. buf.WriteString(s.substring(tailPos, l))
  1048. }
  1049. case '&':
  1050. buf.WriteString(matched)
  1051. default:
  1052. matchNumber := 0
  1053. j := i + 1
  1054. for j < rl {
  1055. ch := replaceStr.charAt(j)
  1056. if ch >= '0' && ch <= '9' {
  1057. m := matchNumber*10 + int(ch-'0')
  1058. if m >= numCaptures {
  1059. break
  1060. }
  1061. matchNumber = m
  1062. j++
  1063. } else {
  1064. break
  1065. }
  1066. }
  1067. if matchNumber > 0 {
  1068. buf.WriteString(getCapture(matchNumber))
  1069. i = j - 1
  1070. continue
  1071. } else {
  1072. buf.WriteRune('$')
  1073. buf.WriteRune(ch)
  1074. }
  1075. }
  1076. i++
  1077. } else {
  1078. buf.WriteRune(c)
  1079. }
  1080. }
  1081. }
  1082. func (r *Runtime) regexpproto_stdReplacer(call FunctionCall) Value {
  1083. rxObj := r.toObject(call.This)
  1084. s := call.Argument(0).toString()
  1085. replaceStr, rcall := getReplaceValue(call.Argument(1))
  1086. rx := r.checkStdRegexp(rxObj)
  1087. if rx == nil {
  1088. return r.regexpproto_stdReplacerGeneric(rxObj, s, replaceStr, rcall)
  1089. }
  1090. var index int64
  1091. find := 1
  1092. if rx.pattern.global {
  1093. find = -1
  1094. rx.setOwnStr("lastIndex", intToValue(0), true)
  1095. } else {
  1096. index = rx.getLastIndex()
  1097. }
  1098. found := rx.pattern.findAllSubmatchIndex(s, toIntStrict(index), find, rx.pattern.sticky)
  1099. if len(found) > 0 {
  1100. if !rx.updateLastIndex(index, found[0], found[len(found)-1]) {
  1101. found = nil
  1102. }
  1103. } else {
  1104. rx.updateLastIndex(index, nil, nil)
  1105. }
  1106. return stringReplace(s, found, replaceStr, rcall)
  1107. }
  1108. func (r *Runtime) regExpStringIteratorProto_next(call FunctionCall) Value {
  1109. thisObj := r.toObject(call.This)
  1110. if iter, ok := thisObj.self.(*regExpStringIterObject); ok {
  1111. return iter.next()
  1112. }
  1113. panic(r.NewTypeError("Method RegExp String Iterator.prototype.next called on incompatible receiver %s", r.objectproto_toString(FunctionCall{This: thisObj})))
  1114. }
  1115. func (r *Runtime) createRegExpStringIteratorPrototype(val *Object) objectImpl {
  1116. o := newBaseObjectObj(val, r.global.IteratorPrototype, classObject)
  1117. o._putProp("next", r.newNativeFunc(r.regExpStringIteratorProto_next, nil, "next", nil, 0), true, false, true)
  1118. o._putSym(SymToStringTag, valueProp(asciiString(classRegExpStringIterator), false, false, true))
  1119. return o
  1120. }
  1121. func (r *Runtime) initRegExp() {
  1122. o := r.newGuardedObject(r.global.ObjectPrototype, classObject)
  1123. r.global.RegExpPrototype = o.val
  1124. r.global.stdRegexpProto = o
  1125. r.global.RegExpStringIteratorPrototype = r.newLazyObject(r.createRegExpStringIteratorPrototype)
  1126. o._putProp("compile", r.newNativeFunc(r.regexpproto_compile, nil, "compile", nil, 2), true, false, true)
  1127. o._putProp("exec", r.newNativeFunc(r.regexpproto_exec, nil, "exec", nil, 1), true, false, true)
  1128. o._putProp("test", r.newNativeFunc(r.regexpproto_test, nil, "test", nil, 1), true, false, true)
  1129. o._putProp("toString", r.newNativeFunc(r.regexpproto_toString, nil, "toString", nil, 0), true, false, true)
  1130. o.setOwnStr("source", &valueProperty{
  1131. configurable: true,
  1132. getterFunc: r.newNativeFunc(r.regexpproto_getSource, nil, "get source", nil, 0),
  1133. accessor: true,
  1134. }, false)
  1135. o.setOwnStr("global", &valueProperty{
  1136. configurable: true,
  1137. getterFunc: r.newNativeFunc(r.regexpproto_getGlobal, nil, "get global", nil, 0),
  1138. accessor: true,
  1139. }, false)
  1140. o.setOwnStr("multiline", &valueProperty{
  1141. configurable: true,
  1142. getterFunc: r.newNativeFunc(r.regexpproto_getMultiline, nil, "get multiline", nil, 0),
  1143. accessor: true,
  1144. }, false)
  1145. o.setOwnStr("ignoreCase", &valueProperty{
  1146. configurable: true,
  1147. getterFunc: r.newNativeFunc(r.regexpproto_getIgnoreCase, nil, "get ignoreCase", nil, 0),
  1148. accessor: true,
  1149. }, false)
  1150. o.setOwnStr("unicode", &valueProperty{
  1151. configurable: true,
  1152. getterFunc: r.newNativeFunc(r.regexpproto_getUnicode, nil, "get unicode", nil, 0),
  1153. accessor: true,
  1154. }, false)
  1155. o.setOwnStr("sticky", &valueProperty{
  1156. configurable: true,
  1157. getterFunc: r.newNativeFunc(r.regexpproto_getSticky, nil, "get sticky", nil, 0),
  1158. accessor: true,
  1159. }, false)
  1160. o.setOwnStr("flags", &valueProperty{
  1161. configurable: true,
  1162. getterFunc: r.newNativeFunc(r.regexpproto_getFlags, nil, "get flags", nil, 0),
  1163. accessor: true,
  1164. }, false)
  1165. o._putSym(SymMatch, valueProp(r.newNativeFunc(r.regexpproto_stdMatcher, nil, "[Symbol.match]", nil, 1), true, false, true))
  1166. o._putSym(SymMatchAll, valueProp(r.newNativeFunc(r.regexpproto_stdMatcherAll, nil, "[Symbol.matchAll]", nil, 1), true, false, true))
  1167. o._putSym(SymSearch, valueProp(r.newNativeFunc(r.regexpproto_stdSearch, nil, "[Symbol.search]", nil, 1), true, false, true))
  1168. o._putSym(SymSplit, valueProp(r.newNativeFunc(r.regexpproto_stdSplitter, nil, "[Symbol.split]", nil, 2), true, false, true))
  1169. o._putSym(SymReplace, valueProp(r.newNativeFunc(r.regexpproto_stdReplacer, nil, "[Symbol.replace]", nil, 2), true, false, true))
  1170. o.guard("exec", "global", "multiline", "ignoreCase", "unicode", "sticky")
  1171. r.global.RegExp = r.newNativeFunc(r.builtin_RegExp, r.builtin_newRegExp, "RegExp", r.global.RegExpPrototype, 2)
  1172. rx := r.global.RegExp.self
  1173. r.putSpeciesReturnThis(rx)
  1174. r.addToGlobal("RegExp", r.global.RegExp)
  1175. }