text-segmentation.es5.js 40 KB

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  1. /*
  2. * text-segmentation 1.0.3 <https://github.com/niklasvh/text-segmentation>
  3. * Copyright (c) 2022 Niklas von Hertzen <https://hertzen.com>
  4. * Released under MIT License
  5. */
  6. var base64 = 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  7. /*
  8. * utrie 1.0.2 <https://github.com/niklasvh/utrie>
  9. * Copyright (c) 2022 Niklas von Hertzen <https://hertzen.com>
  10. * Released under MIT License
  11. */
  12. var chars$1 = 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/';
  13. // Use a lookup table to find the index.
  14. var lookup$1 = typeof Uint8Array === 'undefined' ? [] : new Uint8Array(256);
  15. for (var i$1 = 0; i$1 < chars$1.length; i$1++) {
  16. lookup$1[chars$1.charCodeAt(i$1)] = i$1;
  17. }
  18. var decode = function (base64) {
  19. var bufferLength = base64.length * 0.75, len = base64.length, i, p = 0, encoded1, encoded2, encoded3, encoded4;
  20. if (base64[base64.length - 1] === '=') {
  21. bufferLength--;
  22. if (base64[base64.length - 2] === '=') {
  23. bufferLength--;
  24. }
  25. }
  26. var buffer = typeof ArrayBuffer !== 'undefined' &&
  27. typeof Uint8Array !== 'undefined' &&
  28. typeof Uint8Array.prototype.slice !== 'undefined'
  29. ? new ArrayBuffer(bufferLength)
  30. : new Array(bufferLength);
  31. var bytes = Array.isArray(buffer) ? buffer : new Uint8Array(buffer);
  32. for (i = 0; i < len; i += 4) {
  33. encoded1 = lookup$1[base64.charCodeAt(i)];
  34. encoded2 = lookup$1[base64.charCodeAt(i + 1)];
  35. encoded3 = lookup$1[base64.charCodeAt(i + 2)];
  36. encoded4 = lookup$1[base64.charCodeAt(i + 3)];
  37. bytes[p++] = (encoded1 << 2) | (encoded2 >> 4);
  38. bytes[p++] = ((encoded2 & 15) << 4) | (encoded3 >> 2);
  39. bytes[p++] = ((encoded3 & 3) << 6) | (encoded4 & 63);
  40. }
  41. return buffer;
  42. };
  43. var polyUint16Array = function (buffer) {
  44. var length = buffer.length;
  45. var bytes = [];
  46. for (var i = 0; i < length; i += 2) {
  47. bytes.push((buffer[i + 1] << 8) | buffer[i]);
  48. }
  49. return bytes;
  50. };
  51. var polyUint32Array = function (buffer) {
  52. var length = buffer.length;
  53. var bytes = [];
  54. for (var i = 0; i < length; i += 4) {
  55. bytes.push((buffer[i + 3] << 24) | (buffer[i + 2] << 16) | (buffer[i + 1] << 8) | buffer[i]);
  56. }
  57. return bytes;
  58. };
  59. /** Shift size for getting the index-2 table offset. */
  60. var UTRIE2_SHIFT_2 = 5;
  61. /** Shift size for getting the index-1 table offset. */
  62. var UTRIE2_SHIFT_1 = 6 + 5;
  63. /**
  64. * Shift size for shifting left the index array values.
  65. * Increases possible data size with 16-bit index values at the cost
  66. * of compactability.
  67. * This requires data blocks to be aligned by UTRIE2_DATA_GRANULARITY.
  68. */
  69. var UTRIE2_INDEX_SHIFT = 2;
  70. /**
  71. * Difference between the two shift sizes,
  72. * for getting an index-1 offset from an index-2 offset. 6=11-5
  73. */
  74. var UTRIE2_SHIFT_1_2 = UTRIE2_SHIFT_1 - UTRIE2_SHIFT_2;
  75. /**
  76. * The part of the index-2 table for U+D800..U+DBFF stores values for
  77. * lead surrogate code _units_ not code _points_.
  78. * Values for lead surrogate code _points_ are indexed with this portion of the table.
  79. * Length=32=0x20=0x400>>UTRIE2_SHIFT_2. (There are 1024=0x400 lead surrogates.)
  80. */
  81. var UTRIE2_LSCP_INDEX_2_OFFSET = 0x10000 >> UTRIE2_SHIFT_2;
  82. /** Number of entries in a data block. 32=0x20 */
  83. var UTRIE2_DATA_BLOCK_LENGTH = 1 << UTRIE2_SHIFT_2;
  84. /** Mask for getting the lower bits for the in-data-block offset. */
  85. var UTRIE2_DATA_MASK = UTRIE2_DATA_BLOCK_LENGTH - 1;
  86. var UTRIE2_LSCP_INDEX_2_LENGTH = 0x400 >> UTRIE2_SHIFT_2;
  87. /** Count the lengths of both BMP pieces. 2080=0x820 */
  88. var UTRIE2_INDEX_2_BMP_LENGTH = UTRIE2_LSCP_INDEX_2_OFFSET + UTRIE2_LSCP_INDEX_2_LENGTH;
  89. /**
  90. * The 2-byte UTF-8 version of the index-2 table follows at offset 2080=0x820.
  91. * Length 32=0x20 for lead bytes C0..DF, regardless of UTRIE2_SHIFT_2.
  92. */
  93. var UTRIE2_UTF8_2B_INDEX_2_OFFSET = UTRIE2_INDEX_2_BMP_LENGTH;
  94. var UTRIE2_UTF8_2B_INDEX_2_LENGTH = 0x800 >> 6; /* U+0800 is the first code point after 2-byte UTF-8 */
  95. /**
  96. * The index-1 table, only used for supplementary code points, at offset 2112=0x840.
  97. * Variable length, for code points up to highStart, where the last single-value range starts.
  98. * Maximum length 512=0x200=0x100000>>UTRIE2_SHIFT_1.
  99. * (For 0x100000 supplementary code points U+10000..U+10ffff.)
  100. *
  101. * The part of the index-2 table for supplementary code points starts
  102. * after this index-1 table.
  103. *
  104. * Both the index-1 table and the following part of the index-2 table
  105. * are omitted completely if there is only BMP data.
  106. */
  107. var UTRIE2_INDEX_1_OFFSET = UTRIE2_UTF8_2B_INDEX_2_OFFSET + UTRIE2_UTF8_2B_INDEX_2_LENGTH;
  108. /**
  109. * Number of index-1 entries for the BMP. 32=0x20
  110. * This part of the index-1 table is omitted from the serialized form.
  111. */
  112. var UTRIE2_OMITTED_BMP_INDEX_1_LENGTH = 0x10000 >> UTRIE2_SHIFT_1;
  113. /** Number of entries in an index-2 block. 64=0x40 */
  114. var UTRIE2_INDEX_2_BLOCK_LENGTH = 1 << UTRIE2_SHIFT_1_2;
  115. /** Mask for getting the lower bits for the in-index-2-block offset. */
  116. var UTRIE2_INDEX_2_MASK = UTRIE2_INDEX_2_BLOCK_LENGTH - 1;
  117. var slice16 = function (view, start, end) {
  118. if (view.slice) {
  119. return view.slice(start, end);
  120. }
  121. return new Uint16Array(Array.prototype.slice.call(view, start, end));
  122. };
  123. var slice32 = function (view, start, end) {
  124. if (view.slice) {
  125. return view.slice(start, end);
  126. }
  127. return new Uint32Array(Array.prototype.slice.call(view, start, end));
  128. };
  129. var createTrieFromBase64 = function (base64, _byteLength) {
  130. var buffer = decode(base64);
  131. var view32 = Array.isArray(buffer) ? polyUint32Array(buffer) : new Uint32Array(buffer);
  132. var view16 = Array.isArray(buffer) ? polyUint16Array(buffer) : new Uint16Array(buffer);
  133. var headerLength = 24;
  134. var index = slice16(view16, headerLength / 2, view32[4] / 2);
  135. var data = view32[5] === 2
  136. ? slice16(view16, (headerLength + view32[4]) / 2)
  137. : slice32(view32, Math.ceil((headerLength + view32[4]) / 4));
  138. return new Trie(view32[0], view32[1], view32[2], view32[3], index, data);
  139. };
  140. var Trie = /** @class */ (function () {
  141. function Trie(initialValue, errorValue, highStart, highValueIndex, index, data) {
  142. this.initialValue = initialValue;
  143. this.errorValue = errorValue;
  144. this.highStart = highStart;
  145. this.highValueIndex = highValueIndex;
  146. this.index = index;
  147. this.data = data;
  148. }
  149. /**
  150. * Get the value for a code point as stored in the Trie.
  151. *
  152. * @param codePoint the code point
  153. * @return the value
  154. */
  155. Trie.prototype.get = function (codePoint) {
  156. var ix;
  157. if (codePoint >= 0) {
  158. if (codePoint < 0x0d800 || (codePoint > 0x0dbff && codePoint <= 0x0ffff)) {
  159. // Ordinary BMP code point, excluding leading surrogates.
  160. // BMP uses a single level lookup. BMP index starts at offset 0 in the Trie2 index.
  161. // 16 bit data is stored in the index array itself.
  162. ix = this.index[codePoint >> UTRIE2_SHIFT_2];
  163. ix = (ix << UTRIE2_INDEX_SHIFT) + (codePoint & UTRIE2_DATA_MASK);
  164. return this.data[ix];
  165. }
  166. if (codePoint <= 0xffff) {
  167. // Lead Surrogate Code Point. A Separate index section is stored for
  168. // lead surrogate code units and code points.
  169. // The main index has the code unit data.
  170. // For this function, we need the code point data.
  171. // Note: this expression could be refactored for slightly improved efficiency, but
  172. // surrogate code points will be so rare in practice that it's not worth it.
  173. ix = this.index[UTRIE2_LSCP_INDEX_2_OFFSET + ((codePoint - 0xd800) >> UTRIE2_SHIFT_2)];
  174. ix = (ix << UTRIE2_INDEX_SHIFT) + (codePoint & UTRIE2_DATA_MASK);
  175. return this.data[ix];
  176. }
  177. if (codePoint < this.highStart) {
  178. // Supplemental code point, use two-level lookup.
  179. ix = UTRIE2_INDEX_1_OFFSET - UTRIE2_OMITTED_BMP_INDEX_1_LENGTH + (codePoint >> UTRIE2_SHIFT_1);
  180. ix = this.index[ix];
  181. ix += (codePoint >> UTRIE2_SHIFT_2) & UTRIE2_INDEX_2_MASK;
  182. ix = this.index[ix];
  183. ix = (ix << UTRIE2_INDEX_SHIFT) + (codePoint & UTRIE2_DATA_MASK);
  184. return this.data[ix];
  185. }
  186. if (codePoint <= 0x10ffff) {
  187. return this.data[this.highValueIndex];
  188. }
  189. }
  190. // Fall through. The code point is outside of the legal range of 0..0x10ffff.
  191. return this.errorValue;
  192. };
  193. return Trie;
  194. }());
  195. /*
  196. * base64-arraybuffer 1.0.2 <https://github.com/niklasvh/base64-arraybuffer>
  197. * Copyright (c) 2022 Niklas von Hertzen <https://hertzen.com>
  198. * Released under MIT License
  199. */
  200. var chars = 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/';
  201. // Use a lookup table to find the index.
  202. var lookup = typeof Uint8Array === 'undefined' ? [] : new Uint8Array(256);
  203. for (var i = 0; i < chars.length; i++) {
  204. lookup[chars.charCodeAt(i)] = i;
  205. }
  206. var Prepend = 1;
  207. var CR = 2;
  208. var LF = 3;
  209. var Control = 4;
  210. var Extend = 5;
  211. var SpacingMark = 7;
  212. var L = 8;
  213. var V = 9;
  214. var T = 10;
  215. var LV = 11;
  216. var LVT = 12;
  217. var ZWJ = 13;
  218. var Extended_Pictographic = 14;
  219. var RI = 15;
  220. var toCodePoints = function (str) {
  221. var codePoints = [];
  222. var i = 0;
  223. var length = str.length;
  224. while (i < length) {
  225. var value = str.charCodeAt(i++);
  226. if (value >= 0xd800 && value <= 0xdbff && i < length) {
  227. var extra = str.charCodeAt(i++);
  228. if ((extra & 0xfc00) === 0xdc00) {
  229. codePoints.push(((value & 0x3ff) << 10) + (extra & 0x3ff) + 0x10000);
  230. }
  231. else {
  232. codePoints.push(value);
  233. i--;
  234. }
  235. }
  236. else {
  237. codePoints.push(value);
  238. }
  239. }
  240. return codePoints;
  241. };
  242. var fromCodePoint = function () {
  243. var codePoints = [];
  244. for (var _i = 0; _i < arguments.length; _i++) {
  245. codePoints[_i] = arguments[_i];
  246. }
  247. if (String.fromCodePoint) {
  248. return String.fromCodePoint.apply(String, codePoints);
  249. }
  250. var length = codePoints.length;
  251. if (!length) {
  252. return '';
  253. }
  254. var codeUnits = [];
  255. var index = -1;
  256. var result = '';
  257. while (++index < length) {
  258. var codePoint = codePoints[index];
  259. if (codePoint <= 0xffff) {
  260. codeUnits.push(codePoint);
  261. }
  262. else {
  263. codePoint -= 0x10000;
  264. codeUnits.push((codePoint >> 10) + 0xd800, (codePoint % 0x400) + 0xdc00);
  265. }
  266. if (index + 1 === length || codeUnits.length > 0x4000) {
  267. result += String.fromCharCode.apply(String, codeUnits);
  268. codeUnits.length = 0;
  269. }
  270. }
  271. return result;
  272. };
  273. var UnicodeTrie = createTrieFromBase64(base64);
  274. var BREAK_NOT_ALLOWED = '×';
  275. var BREAK_ALLOWED = '÷';
  276. var codePointToClass = function (codePoint) { return UnicodeTrie.get(codePoint); };
  277. var _graphemeBreakAtIndex = function (_codePoints, classTypes, index) {
  278. var prevIndex = index - 2;
  279. var prev = classTypes[prevIndex];
  280. var current = classTypes[index - 1];
  281. var next = classTypes[index];
  282. // GB3 Do not break between a CR and LF
  283. if (current === CR && next === LF) {
  284. return BREAK_NOT_ALLOWED;
  285. }
  286. // GB4 Otherwise, break before and after controls.
  287. if (current === CR || current === LF || current === Control) {
  288. return BREAK_ALLOWED;
  289. }
  290. // GB5
  291. if (next === CR || next === LF || next === Control) {
  292. return BREAK_ALLOWED;
  293. }
  294. // Do not break Hangul syllable sequences.
  295. // GB6
  296. if (current === L && [L, V, LV, LVT].indexOf(next) !== -1) {
  297. return BREAK_NOT_ALLOWED;
  298. }
  299. // GB7
  300. if ((current === LV || current === V) && (next === V || next === T)) {
  301. return BREAK_NOT_ALLOWED;
  302. }
  303. // GB8
  304. if ((current === LVT || current === T) && next === T) {
  305. return BREAK_NOT_ALLOWED;
  306. }
  307. // GB9 Do not break before extending characters or ZWJ.
  308. if (next === ZWJ || next === Extend) {
  309. return BREAK_NOT_ALLOWED;
  310. }
  311. // Do not break before SpacingMarks, or after Prepend characters.
  312. // GB9a
  313. if (next === SpacingMark) {
  314. return BREAK_NOT_ALLOWED;
  315. }
  316. // GB9a
  317. if (current === Prepend) {
  318. return BREAK_NOT_ALLOWED;
  319. }
  320. // GB11 Do not break within emoji modifier sequences or emoji zwj sequences.
  321. if (current === ZWJ && next === Extended_Pictographic) {
  322. while (prev === Extend) {
  323. prev = classTypes[--prevIndex];
  324. }
  325. if (prev === Extended_Pictographic) {
  326. return BREAK_NOT_ALLOWED;
  327. }
  328. }
  329. // GB12 Do not break within emoji flag sequences.
  330. // That is, do not break between regional indicator (RI) symbols
  331. // if there is an odd number of RI characters before the break point.
  332. if (current === RI && next === RI) {
  333. var countRI = 0;
  334. while (prev === RI) {
  335. countRI++;
  336. prev = classTypes[--prevIndex];
  337. }
  338. if (countRI % 2 === 0) {
  339. return BREAK_NOT_ALLOWED;
  340. }
  341. }
  342. return BREAK_ALLOWED;
  343. };
  344. var GraphemeBreaker = function (str) {
  345. var codePoints = toCodePoints(str);
  346. var length = codePoints.length;
  347. var index = 0;
  348. var lastEnd = 0;
  349. var classTypes = codePoints.map(codePointToClass);
  350. return {
  351. next: function () {
  352. if (index >= length) {
  353. return { done: true, value: null };
  354. }
  355. var graphemeBreak = BREAK_NOT_ALLOWED;
  356. while (index < length &&
  357. (graphemeBreak = _graphemeBreakAtIndex(codePoints, classTypes, ++index)) === BREAK_NOT_ALLOWED) { }
  358. if (graphemeBreak !== BREAK_NOT_ALLOWED || index === length) {
  359. var value = fromCodePoint.apply(null, codePoints.slice(lastEnd, index));
  360. lastEnd = index;
  361. return { value: value, done: false };
  362. }
  363. return { done: true, value: null };
  364. },
  365. };
  366. };
  367. var splitGraphemes = function (str) {
  368. var breaker = GraphemeBreaker(str);
  369. var graphemes = [];
  370. var bk;
  371. while (!(bk = breaker.next()).done) {
  372. if (bk.value) {
  373. graphemes.push(bk.value.slice());
  374. }
  375. }
  376. return graphemes;
  377. };
  378. export { GraphemeBreaker, fromCodePoint, splitGraphemes, toCodePoints };
  379. //# sourceMappingURL=text-segmentation.es5.js.map