regexp.go 9.3 KB

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  1. package parser
  2. import (
  3. "fmt"
  4. "strconv"
  5. "strings"
  6. "unicode/utf8"
  7. )
  8. const (
  9. WhitespaceChars = " \f\n\r\t\v\u00a0\u1680\u2000\u2001\u2002\u2003\u2004\u2005\u2006\u2007\u2008\u2009\u200a\u2028\u2029\u202f\u205f\u3000\ufeff"
  10. Re2Dot = "[^\r\n\u2028\u2029]"
  11. )
  12. type regexpParseError struct {
  13. offset int
  14. err string
  15. }
  16. type RegexpErrorIncompatible struct {
  17. regexpParseError
  18. }
  19. type RegexpSyntaxError struct {
  20. regexpParseError
  21. }
  22. func (s regexpParseError) Error() string {
  23. return s.err
  24. }
  25. type _RegExp_parser struct {
  26. str string
  27. length int
  28. chr rune // The current character
  29. chrOffset int // The offset of current character
  30. offset int // The offset after current character (may be greater than 1)
  31. err error
  32. goRegexp strings.Builder
  33. passOffset int
  34. dotAll bool // Enable dotAll mode
  35. unicode bool
  36. }
  37. // TransformRegExp transforms a JavaScript pattern into a Go "regexp" pattern.
  38. //
  39. // re2 (Go) cannot do backtracking, so the presence of a lookahead (?=) (?!) or
  40. // backreference (\1, \2, ...) will cause an error.
  41. //
  42. // re2 (Go) has a different definition for \s: [\t\n\f\r ].
  43. // The JavaScript definition, on the other hand, also includes \v, Unicode "Separator, Space", etc.
  44. //
  45. // If the pattern is valid, but incompatible (contains a lookahead or backreference),
  46. // then this function returns an empty string an error of type RegexpErrorIncompatible.
  47. //
  48. // If the pattern is invalid (not valid even in JavaScript), then this function
  49. // returns an empty string and a generic error.
  50. func TransformRegExp(pattern string, dotAll, unicode bool) (transformed string, err error) {
  51. if pattern == "" {
  52. return "", nil
  53. }
  54. parser := _RegExp_parser{
  55. str: pattern,
  56. length: len(pattern),
  57. dotAll: dotAll,
  58. unicode: unicode,
  59. }
  60. err = parser.parse()
  61. if err != nil {
  62. return "", err
  63. }
  64. return parser.ResultString(), nil
  65. }
  66. func (self *_RegExp_parser) ResultString() string {
  67. if self.passOffset != -1 {
  68. return self.str[:self.passOffset]
  69. }
  70. return self.goRegexp.String()
  71. }
  72. func (self *_RegExp_parser) parse() (err error) {
  73. self.read() // Pull in the first character
  74. self.scan()
  75. return self.err
  76. }
  77. func (self *_RegExp_parser) read() {
  78. if self.offset < self.length {
  79. self.chrOffset = self.offset
  80. chr, width := rune(self.str[self.offset]), 1
  81. if chr >= utf8.RuneSelf { // !ASCII
  82. chr, width = utf8.DecodeRuneInString(self.str[self.offset:])
  83. if chr == utf8.RuneError && width == 1 {
  84. self.error(true, "Invalid UTF-8 character")
  85. return
  86. }
  87. }
  88. self.offset += width
  89. self.chr = chr
  90. } else {
  91. self.chrOffset = self.length
  92. self.chr = -1 // EOF
  93. }
  94. }
  95. func (self *_RegExp_parser) stopPassing() {
  96. self.goRegexp.Grow(3 * len(self.str) / 2)
  97. self.goRegexp.WriteString(self.str[:self.passOffset])
  98. self.passOffset = -1
  99. }
  100. func (self *_RegExp_parser) write(p []byte) {
  101. if self.passOffset != -1 {
  102. self.stopPassing()
  103. }
  104. self.goRegexp.Write(p)
  105. }
  106. func (self *_RegExp_parser) writeByte(b byte) {
  107. if self.passOffset != -1 {
  108. self.stopPassing()
  109. }
  110. self.goRegexp.WriteByte(b)
  111. }
  112. func (self *_RegExp_parser) writeString(s string) {
  113. if self.passOffset != -1 {
  114. self.stopPassing()
  115. }
  116. self.goRegexp.WriteString(s)
  117. }
  118. func (self *_RegExp_parser) scan() {
  119. for self.chr != -1 {
  120. switch self.chr {
  121. case '\\':
  122. self.read()
  123. self.scanEscape(false)
  124. case '(':
  125. self.pass()
  126. self.scanGroup()
  127. case '[':
  128. self.scanBracket()
  129. case ')':
  130. self.error(true, "Unmatched ')'")
  131. return
  132. case '.':
  133. if self.dotAll {
  134. self.pass()
  135. break
  136. }
  137. self.writeString(Re2Dot)
  138. self.read()
  139. default:
  140. self.pass()
  141. }
  142. }
  143. }
  144. // (...)
  145. func (self *_RegExp_parser) scanGroup() {
  146. str := self.str[self.chrOffset:]
  147. if len(str) > 1 { // A possibility of (?= or (?!
  148. if str[0] == '?' {
  149. ch := str[1]
  150. switch {
  151. case ch == '=' || ch == '!':
  152. self.error(false, "re2: Invalid (%s) <lookahead>", self.str[self.chrOffset:self.chrOffset+2])
  153. return
  154. case ch == '<':
  155. self.error(false, "re2: Invalid (%s) <lookbehind>", self.str[self.chrOffset:self.chrOffset+2])
  156. return
  157. case ch != ':':
  158. self.error(true, "Invalid group")
  159. return
  160. }
  161. }
  162. }
  163. for self.chr != -1 && self.chr != ')' {
  164. switch self.chr {
  165. case '\\':
  166. self.read()
  167. self.scanEscape(false)
  168. case '(':
  169. self.pass()
  170. self.scanGroup()
  171. case '[':
  172. self.scanBracket()
  173. case '.':
  174. self.writeString(Re2Dot)
  175. self.read()
  176. default:
  177. self.pass()
  178. continue
  179. }
  180. }
  181. if self.chr != ')' {
  182. self.error(true, "Unterminated group")
  183. return
  184. }
  185. self.pass()
  186. }
  187. // [...]
  188. func (self *_RegExp_parser) scanBracket() {
  189. str := self.str[self.chrOffset:]
  190. if strings.HasPrefix(str, "[]") {
  191. // [] -- Empty character class
  192. self.writeString("[^\u0000-\U0001FFFF]")
  193. self.offset += 1
  194. self.read()
  195. return
  196. }
  197. if strings.HasPrefix(str, "[^]") {
  198. self.writeString("[\u0000-\U0001FFFF]")
  199. self.offset += 2
  200. self.read()
  201. return
  202. }
  203. self.pass()
  204. for self.chr != -1 {
  205. if self.chr == ']' {
  206. break
  207. } else if self.chr == '\\' {
  208. self.read()
  209. self.scanEscape(true)
  210. continue
  211. }
  212. self.pass()
  213. }
  214. if self.chr != ']' {
  215. self.error(true, "Unterminated character class")
  216. return
  217. }
  218. self.pass()
  219. }
  220. // \...
  221. func (self *_RegExp_parser) scanEscape(inClass bool) {
  222. offset := self.chrOffset
  223. var length, base uint32
  224. switch self.chr {
  225. case '0', '1', '2', '3', '4', '5', '6', '7':
  226. var value int64
  227. size := 0
  228. for {
  229. digit := int64(digitValue(self.chr))
  230. if digit >= 8 {
  231. // Not a valid digit
  232. break
  233. }
  234. value = value*8 + digit
  235. self.read()
  236. size += 1
  237. }
  238. if size == 1 { // The number of characters read
  239. if value != 0 {
  240. // An invalid backreference
  241. self.error(false, "re2: Invalid \\%d <backreference>", value)
  242. return
  243. }
  244. self.passString(offset-1, self.chrOffset)
  245. return
  246. }
  247. tmp := []byte{'\\', 'x', '0', 0}
  248. if value >= 16 {
  249. tmp = tmp[0:2]
  250. } else {
  251. tmp = tmp[0:3]
  252. }
  253. tmp = strconv.AppendInt(tmp, value, 16)
  254. self.write(tmp)
  255. return
  256. case '8', '9':
  257. self.read()
  258. self.error(false, "re2: Invalid \\%s <backreference>", self.str[offset:self.chrOffset])
  259. return
  260. case 'x':
  261. self.read()
  262. length, base = 2, 16
  263. case 'u':
  264. self.read()
  265. if self.chr == '{' && self.unicode {
  266. self.read()
  267. length, base = 0, 16
  268. } else {
  269. length, base = 4, 16
  270. }
  271. case 'b':
  272. if inClass {
  273. self.write([]byte{'\\', 'x', '0', '8'})
  274. self.read()
  275. return
  276. }
  277. fallthrough
  278. case 'B':
  279. fallthrough
  280. case 'd', 'D', 'w', 'W':
  281. // This is slightly broken, because ECMAScript
  282. // includes \v in \s, \S, while re2 does not
  283. fallthrough
  284. case '\\':
  285. fallthrough
  286. case 'f', 'n', 'r', 't', 'v':
  287. self.passString(offset-1, self.offset)
  288. self.read()
  289. return
  290. case 'c':
  291. self.read()
  292. var value int64
  293. if 'a' <= self.chr && self.chr <= 'z' {
  294. value = int64(self.chr - 'a' + 1)
  295. } else if 'A' <= self.chr && self.chr <= 'Z' {
  296. value = int64(self.chr - 'A' + 1)
  297. } else {
  298. self.writeByte('c')
  299. return
  300. }
  301. tmp := []byte{'\\', 'x', '0', 0}
  302. if value >= 16 {
  303. tmp = tmp[0:2]
  304. } else {
  305. tmp = tmp[0:3]
  306. }
  307. tmp = strconv.AppendInt(tmp, value, 16)
  308. self.write(tmp)
  309. self.read()
  310. return
  311. case 's':
  312. if inClass {
  313. self.writeString(WhitespaceChars)
  314. } else {
  315. self.writeString("[" + WhitespaceChars + "]")
  316. }
  317. self.read()
  318. return
  319. case 'S':
  320. if inClass {
  321. self.error(false, "S in class")
  322. return
  323. } else {
  324. self.writeString("[^" + WhitespaceChars + "]")
  325. }
  326. self.read()
  327. return
  328. default:
  329. // $ is an identifier character, so we have to have
  330. // a special case for it here
  331. if self.chr == '$' || self.chr < utf8.RuneSelf && !isIdentifierPart(self.chr) {
  332. // A non-identifier character needs escaping
  333. self.passString(offset-1, self.offset)
  334. self.read()
  335. return
  336. }
  337. // Unescape the character for re2
  338. self.pass()
  339. return
  340. }
  341. // Otherwise, we're a \u.... or \x...
  342. valueOffset := self.chrOffset
  343. if length > 0 {
  344. for length := length; length > 0; length-- {
  345. digit := uint32(digitValue(self.chr))
  346. if digit >= base {
  347. // Not a valid digit
  348. goto skip
  349. }
  350. self.read()
  351. }
  352. } else {
  353. for self.chr != '}' && self.chr != -1 {
  354. digit := uint32(digitValue(self.chr))
  355. if digit >= base {
  356. // Not a valid digit
  357. self.error(true, "Invalid Unicode escape")
  358. return
  359. }
  360. self.read()
  361. }
  362. }
  363. if length == 4 || length == 0 {
  364. self.write([]byte{
  365. '\\',
  366. 'x',
  367. '{',
  368. })
  369. self.passString(valueOffset, self.chrOffset)
  370. if length != 0 {
  371. self.writeByte('}')
  372. }
  373. } else if length == 2 {
  374. self.passString(offset-1, valueOffset+2)
  375. } else {
  376. // Should never, ever get here...
  377. self.error(true, "re2: Illegal branch in scanEscape")
  378. return
  379. }
  380. return
  381. skip:
  382. self.passString(offset, self.chrOffset)
  383. }
  384. func (self *_RegExp_parser) pass() {
  385. if self.passOffset == self.chrOffset {
  386. self.passOffset = self.offset
  387. } else {
  388. if self.passOffset != -1 {
  389. self.stopPassing()
  390. }
  391. if self.chr != -1 {
  392. self.goRegexp.WriteRune(self.chr)
  393. }
  394. }
  395. self.read()
  396. }
  397. func (self *_RegExp_parser) passString(start, end int) {
  398. if self.passOffset == start {
  399. self.passOffset = end
  400. return
  401. }
  402. if self.passOffset != -1 {
  403. self.stopPassing()
  404. }
  405. self.goRegexp.WriteString(self.str[start:end])
  406. }
  407. func (self *_RegExp_parser) error(fatal bool, msg string, msgValues ...interface{}) {
  408. if self.err != nil {
  409. return
  410. }
  411. e := regexpParseError{
  412. offset: self.offset,
  413. err: fmt.Sprintf(msg, msgValues...),
  414. }
  415. if fatal {
  416. self.err = RegexpSyntaxError{e}
  417. } else {
  418. self.err = RegexpErrorIncompatible{e}
  419. }
  420. self.offset = self.length
  421. self.chr = -1
  422. }