eSpeak NG is an open source speech synthesizer that supports more than hundred languages and accents.
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tr_languages.cpp 69KB

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  1. /***************************************************************************
  2. * Copyright (C) 2005 to 2013 by Jonathan Duddington *
  3. * email: [email protected] *
  4. * *
  5. * This program is free software; you can redistribute it and/or modify *
  6. * it under the terms of the GNU General Public License as published by *
  7. * the Free Software Foundation; either version 3 of the License, or *
  8. * (at your option) any later version. *
  9. * *
  10. * This program is distributed in the hope that it will be useful, *
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of *
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
  13. * GNU General Public License for more details. *
  14. * *
  15. * You should have received a copy of the GNU General Public License *
  16. * along with this program; if not, see: *
  17. * <http://www.gnu.org/licenses/>. *
  18. ***************************************************************************/
  19. #include "StdAfx.h"
  20. #include <stdio.h>
  21. #include <ctype.h>
  22. #include <wctype.h>
  23. #include <stdlib.h>
  24. #include <string.h>
  25. #include <locale.h>
  26. #include <wctype.h>
  27. #include "speak_lib.h"
  28. #include "speech.h"
  29. #include "phoneme.h"
  30. #include "synthesize.h"
  31. #include "translate.h"
  32. #define L_qa 0x716100
  33. #define L_grc 0x677263 // grc Ancient Greek
  34. #define L_jbo 0x6a626f // jbo Lojban
  35. #define L_pap 0x706170 // pap Papiamento]
  36. #define L_qvi 0x717669 // qvi Kichwa
  37. #define L_shs 0x736873 // shs Shuswap / Secwepemctsin
  38. #define L_zhy 0x7a6879 // zhy
  39. // start of unicode pages for character sets
  40. #define OFFSET_GREEK 0x380
  41. #define OFFSET_CYRILLIC 0x420
  42. #define OFFSET_ARMENIAN 0x530
  43. #define OFFSET_HEBREW 0x590
  44. #define OFFSET_ARABIC 0x600
  45. #define OFFSET_THAANA 0x780 // Divehi/Maldives
  46. #define OFFSET_DEVANAGARI 0x900
  47. #define OFFSET_BENGALI 0x980
  48. #define OFFSET_GURMUKHI 0xa00
  49. #define OFFSET_GUJARATI 0xa80
  50. #define OFFSET_ORIYA 0xb00
  51. #define OFFSET_TAMIL 0xb80
  52. #define OFFSET_TELUGU 0xc00
  53. #define OFFSET_KANNADA 0xc80
  54. #define OFFSET_MALAYALAM 0xd00
  55. #define OFFSET_SINHALA 0x0d80
  56. #define OFFSET_THAI 0x0e00
  57. #define OFFSET_LAO 0x0e80
  58. #define OFFSET_TIBET 0x0f00
  59. #define OFFSET_MYANMAR 0x1000
  60. #define OFFSET_GEORGIAN 0x10a0
  61. #define OFFSET_KOREAN 0x1100
  62. #define OFFSET_ETHIOPIC 0x1200
  63. // character ranges must be listed in ascending order
  64. ALPHABET alphabets [] = {
  65. {"_el", OFFSET_GREEK, 0x380, 0x3ff, L('e','l'), AL_DONT_NAME | AL_NOT_LETTERS},
  66. {"_cyr", OFFSET_CYRILLIC, 0x400, 0x52f, 0, 0},
  67. {"_hy", OFFSET_ARMENIAN, 0x530, 0x58f, L('h','y'), AL_WORDS},
  68. {"_he", OFFSET_HEBREW, 0x590, 0x5ff, 0, 0},
  69. {"_ar", OFFSET_ARABIC, 0x600, 0x6ff, 0, 0},
  70. {"_dv", OFFSET_THAANA, 0x780, 0x7bf, 0, 0},
  71. {"_hi", OFFSET_DEVANAGARI, 0x900, 0x97f,L('h','i'), AL_WORDS},
  72. {"_bn", OFFSET_BENGALI, 0x0980, 0x9ff, 0, 0},
  73. {"_gur", OFFSET_GURMUKHI, 0xa00, 0xa7f, L('p','a'), AL_WORDS},
  74. {"_gu", OFFSET_GUJARATI, 0xa80, 0xaff, 0, 0},
  75. {"_or", OFFSET_ORIYA, 0xb00, 0xb7f, 0, 0},
  76. {"_ta", OFFSET_TAMIL, 0xb80, 0xbff, L('t','a'), AL_WORDS},
  77. {"_te", OFFSET_TELUGU, 0xc00, 0xc7f, L('t','e'), 0},
  78. {"_kn", OFFSET_KANNADA, 0xc80, 0xcff, L('k','n'), AL_WORDS},
  79. {"_ml", OFFSET_MALAYALAM,0xd00, 0xd7f, L('m','l'), AL_WORDS},
  80. {"_si", OFFSET_SINHALA, 0xd80, 0xdff, 0, 0},
  81. {"_th", OFFSET_THAI, 0xe00, 0xe7f, 0, 0},
  82. {"_lo", OFFSET_LAO, 0xe80, 0xeff, 0, 0},
  83. {"_ti", OFFSET_TIBET, 0xf00, 0xfff, 0, 0},
  84. {"_my", OFFSET_MYANMAR, 0x1000,0x109f, 0, 0},
  85. {"_ka", OFFSET_GEORGIAN, 0x10a0,0x10ff, L('k','a'), AL_WORDS},
  86. {"_ko", OFFSET_KOREAN, 0x1100,0x11ff, 0, 0},
  87. {"_eth", OFFSET_ETHIOPIC, 0x1200,0x139f, 0, 0},
  88. {"_braille", 0x2800, 0x2800,0x28ff, 0, AL_NO_SYMBOL},
  89. {"_ja", 0x3040, 0x3040,0x30ff, 0, AL_NOT_CODE},
  90. {"_zh", 0x3100, 0x3100,0x9fff, 0, AL_NOT_CODE},
  91. {"_ko", 0xa700, 0xa700,0xd7ff, 0, AL_NOT_CODE},
  92. {NULL, 0, 0, 0, 0, 0}
  93. };
  94. ALPHABET *AlphabetFromName(const char *name)
  95. {//==========================================
  96. ALPHABET *alphabet;
  97. for(alphabet=alphabets; alphabet->name != NULL; alphabet++)
  98. {
  99. if(strcmp(name, &alphabet->name[1]) == 0)
  100. return(alphabet);
  101. }
  102. return(NULL);
  103. }
  104. ALPHABET *AlphabetFromChar(int c)
  105. {//===============================
  106. // Find the alphabet from a character.
  107. ALPHABET *alphabet = alphabets;
  108. while(alphabet->name != NULL)
  109. {
  110. if(c <= alphabet->range_max)
  111. {
  112. if(c >= alphabet->range_min)
  113. return(alphabet);
  114. else
  115. break;
  116. }
  117. alphabet++;
  118. }
  119. return(NULL);
  120. }
  121. static void Translator_Russian(Translator *tr);
  122. static void SetLetterVowel(Translator *tr, int c)
  123. {//==============================================
  124. tr->letter_bits[c] = (tr->letter_bits[c] & 0x40) | 0x81; // keep value for group 6 (front vowels e,i,y)
  125. }
  126. static void ResetLetterBits(Translator *tr, int groups)
  127. {//====================================================
  128. // Clear all the specified groups
  129. unsigned int ix;
  130. unsigned int mask;
  131. mask = ~groups;
  132. for(ix=0; ix<sizeof(tr->letter_bits); ix++)
  133. {
  134. tr->letter_bits[ix] &= mask;
  135. }
  136. }
  137. static void SetLetterBits(Translator *tr, int group, const char *string)
  138. {//=====================================================================
  139. int bits;
  140. unsigned char c;
  141. bits = (1L << group);
  142. while((c = *string++) != 0)
  143. tr->letter_bits[c] |= bits;
  144. }
  145. static void SetLetterBitsRange(Translator *tr, int group, int first, int last)
  146. {//===========================================================================
  147. int bits;
  148. int ix;
  149. bits = (1L << group);
  150. for(ix=first; ix<=last; ix++)
  151. {
  152. tr->letter_bits[ix] |= bits;
  153. }
  154. }
  155. // ignore these characters
  156. static const unsigned short chars_ignore_default[] = {
  157. 0xad, 1, // soft hyphen
  158. 0x200c, 1, // zero width non-joiner
  159. 0x200d, 1, // zero width joiner
  160. 0, 0 };
  161. // alternatively, ignore characters but allow zero-width-non-joiner (lang-fa)
  162. static const unsigned short chars_ignore_zwnj_hyphen[] = {
  163. 0xad, 1, // soft hyphen
  164. 0x200c, '-', // zero width non-joiner, replace with hyphen
  165. 0x200d, 1, // zero width joiner
  166. 0, 0 };
  167. static Translator* NewTranslator(void)
  168. {//===================================
  169. Translator *tr;
  170. int ix;
  171. static const unsigned char stress_amps2[] = {18,18, 20,20, 20,22, 22,20 };
  172. static const short stress_lengths2[8] = {182,140, 220,220, 220,240, 260,280};
  173. static const wchar_t empty_wstring[1] = {0};
  174. static const wchar_t punct_in_word[2] = {'\'', 0}; // allow hyphen within words
  175. static const unsigned char default_tunes[6] = {0, 1, 2, 3, 0, 0};
  176. // Translates character codes in the range transpose_min to transpose_max to
  177. // a number in the range 1 to 63. 0 indicates there is no translation.
  178. // Used up to 57 (max of 63)
  179. static const char transpose_map_latin[] = {
  180. 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, // 0x60
  181. 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 0, 0, 0, 0, 0, // 0x70
  182. 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0x80
  183. 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0x90
  184. 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0xa0
  185. 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0xb0
  186. 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0xc0
  187. 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0xd0
  188. 27, 28, 29, 0, 0, 30, 31, 32, 33, 34, 35, 36, 0, 37, 38, 0, // 0xe0
  189. 0, 0, 0, 39, 0, 0, 40, 0, 41, 0, 42, 0, 43, 0, 0, 0, // 0xf0
  190. 0, 0, 0, 44, 0, 45, 0, 46, 0, 0, 0, 0, 0, 47, 0, 0, // 0x100
  191. 0, 48, 0, 0, 0, 0, 0, 0, 0, 49, 0, 0, 0, 0, 0, 0, // 0x110
  192. 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0x120
  193. 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0x130
  194. 0, 0, 50, 0, 51, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0x140
  195. 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 52, 0, 0, 0, 0, // 0x150
  196. 0, 53, 0, 54, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0x160
  197. 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 55, 0, 56, 0, 57, 0, // 0x170
  198. };
  199. tr = (Translator *)Alloc(sizeof(Translator));
  200. if(tr == NULL)
  201. return(NULL);
  202. tr->charset_a0 = charsets[1]; // ISO-8859-1, this is for when the input is not utf8
  203. dictionary_name[0] = 0;
  204. tr->dict_condition=0;
  205. tr->dict_min_size = 0;
  206. tr->data_dictrules = NULL; // language_1 translation rules file
  207. tr->data_dictlist = NULL; // language_2 dictionary lookup file
  208. tr->transpose_min = 0x60;
  209. tr->transpose_max = 0x17f;
  210. tr->transpose_map = transpose_map_latin;
  211. tr->frequent_pairs = NULL;
  212. // only need lower case
  213. tr->letter_bits_offset = 0;
  214. memset(tr->letter_bits,0,sizeof(tr->letter_bits));
  215. memset(tr->letter_groups,0,sizeof(tr->letter_groups));
  216. // 0-6 sets of characters matched by A B C H F G Y in pronunciation rules
  217. // these may be set differently for different languages
  218. SetLetterBits(tr,0,"aeiou"); // A vowels, except y
  219. SetLetterBits(tr,1,"bcdfgjklmnpqstvxz"); // B hard consonants, excluding h,r,w
  220. SetLetterBits(tr,2,"bcdfghjklmnpqrstvwxz"); // C all consonants
  221. SetLetterBits(tr,3,"hlmnr"); // H 'soft' consonants
  222. SetLetterBits(tr,4,"cfhkpqstx"); // F voiceless consonants
  223. SetLetterBits(tr,5,"bdgjlmnrvwyz"); // G voiced
  224. SetLetterBits(tr,6,"eiy"); // Letter group Y, front vowels
  225. SetLetterBits(tr,7,"aeiouy"); // vowels, including y
  226. tr->char_plus_apostrophe = empty_wstring;
  227. tr->punct_within_word = punct_in_word;
  228. tr->chars_ignore = chars_ignore_default;
  229. for(ix=0; ix<8; ix++)
  230. {
  231. tr->stress_amps[ix] = stress_amps2[ix];
  232. tr->stress_amps_r[ix] = stress_amps2[ix] - 1;
  233. tr->stress_lengths[ix] = stress_lengths2[ix];
  234. }
  235. memset(&(tr->langopts),0,sizeof(tr->langopts));
  236. tr->langopts.max_lengthmod = 500;
  237. tr->langopts.lengthen_tonic = 20;
  238. tr->langopts.stress_rule = STRESSPOSN_2R;
  239. tr->langopts.unstressed_wd1 = 1;
  240. tr->langopts.unstressed_wd2 = 3;
  241. tr->langopts.param[LOPT_SONORANT_MIN] = 95;
  242. tr->langopts.param[LOPT_LONG_VOWEL_THRESHOLD] = 190/2;
  243. tr->langopts.param[LOPT_MAXAMP_EOC] = 19;
  244. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 's'; // don't count this character at start of word
  245. tr->langopts.param[LOPT_BRACKET_PAUSE] = 4; // pause at bracket
  246. tr->langopts.param2[LOPT_BRACKET_PAUSE] = 2; // pauses when announcing bracket names
  247. tr->langopts.max_initial_consonants = 3;
  248. tr->langopts.replace_chars = NULL;
  249. tr->langopts.ascii_language[0] = 0; // Non-Latin alphabet languages, use this language to speak Latin words, default is English
  250. SetLengthMods(tr,201);
  251. // tr->langopts.length_mods = length_mods_en;
  252. // tr->langopts.length_mods0 = length_mods_en0;
  253. tr->langopts.long_stop = 100;
  254. tr->langopts.max_roman = 49;
  255. tr->langopts.min_roman = 2;
  256. tr->langopts.thousands_sep = ',';
  257. tr->langopts.decimal_sep = '.';
  258. tr->langopts.break_numbers = BREAK_THOUSANDS; // 1000, 1000,000 1,000,000 etc
  259. tr->langopts.max_digits = 14;
  260. memcpy(tr->punct_to_tone, punctuation_to_tone, sizeof(tr->punct_to_tone));
  261. memcpy(tr->langopts.tunes, default_tunes, sizeof(tr->langopts.tunes));
  262. return(tr);
  263. }
  264. // common letter pairs, encode these as a single byte
  265. // 2 bytes, using the transposed character codes
  266. static const short pairs_ru[] = {
  267. 0x010c, // ла 21052 0x23
  268. 0x010e, // на 18400
  269. 0x0113, // та 14254
  270. 0x0301, // ав 31083
  271. 0x030f, // ов 13420
  272. 0x060e, // не 21798
  273. 0x0611, // ре 19458
  274. 0x0903, // ви 16226
  275. 0x0b01, // ак 14456
  276. 0x0b0f, // ок 17836
  277. 0x0c01, // ал 13324
  278. 0x0c09, // ил 16877
  279. 0x0e01, // ан 15359
  280. 0x0e06, // ен 13543 0x30
  281. 0x0e09, // ин 17168
  282. 0x0e0e, // нн 15973
  283. 0x0e0f, // он 22373
  284. 0x0e1c, // ын 15052
  285. 0x0f03, // во 24947
  286. 0x0f11, // ро 13552
  287. 0x0f12, // со 16368
  288. 0x100f, // оп 19054
  289. 0x1011, // рп 17067
  290. 0x1101, // ар 23967
  291. 0x1106, // ер 18795
  292. 0x1109, // ир 13797
  293. 0x110f, // ор 21737
  294. 0x1213, // тс 25076
  295. 0x1220, // яс 14310
  296. 0x7fff};
  297. //0x040f ог 12976
  298. //0x1306 ет 12826
  299. //0x0f0d мо 12688
  300. static const unsigned int replace_cyrillic_latin[] =
  301. {0x430,'a',
  302. 0x431,'b',
  303. 0x446,'c',
  304. 0x45b,0x107,
  305. 0x447,0x10d,
  306. 0x45f,'d'+(0x17e<<16),
  307. 0x455,'d'+('z'<<16),
  308. 0x434,'d',
  309. 0x452,0x111,
  310. 0x435,'e',
  311. 0x444,'f',
  312. 0x433,'g',
  313. 0x445,'h',
  314. 0x438,'i',
  315. 0x458,'j',
  316. 0x43a,'k',
  317. 0x459,'l'+('j'<<16),
  318. 0x43b,'l',
  319. 0x43c,'m',
  320. 0x45a,'n'+('j'<<16),
  321. 0x43d,'n',
  322. 0x43e,'o',
  323. 0x43f,'p',
  324. 0x440,'r',
  325. 0x441,'s',
  326. 0x448,0x161,
  327. 0x442,'t',
  328. 0x443,'u',
  329. 0x432,'v',
  330. 0x437,'z',
  331. 0x436,0x17e,
  332. 0x453,0x111,
  333. 0x45c,0x107,
  334. 0}; // ѓ ѕ ќ
  335. static const unsigned char ru_vowels[] = {0x10,0x15,0x31,0x18,0x1e,0x23,0x2b,0x2d,0x2e,0x2f, 0xb9,0xc9,0x91,0x8f,0x36,0}; //also kazakh
  336. static const unsigned char ru_consonants[] = {0x11,0x12,0x13,0x14,0x16,0x17,0x19,0x1a,0x1b,0x1c,0x1d,0x1f,0x20,0x21,0x22,0x24,0x25,0x26,0x27,0x28,0x29,0x2a,0x2c, 0x73,0x7b,0x83,0x9b,0};
  337. static void SetCyrillicLetters(Translator *tr)
  338. {//===========================================
  339. // character codes offset by 0x420
  340. static const char ru_soft[] = {0x2c,0x19,0x27,0x29,0}; // letter group B [k ts; s;]
  341. static const char ru_hard[] = {0x2a,0x16,0x26,0x28,0}; // letter group H [S Z ts]
  342. static const char ru_nothard[] = {0x11,0x12,0x13,0x14,0x17,0x19,0x1a,0x1b,0x1c,0x1d,0x1f,0x20,0x21,0x22,0x24,0x25,0x27,0x29,0x2c,0};
  343. static const char ru_voiced[] = {0x11,0x12,0x13,0x14,0x16,0x17,0}; // letter group G (voiced obstruents)
  344. static const char ru_ivowels[] = {0x2c,0x2e,0x2f,0x31,0}; // letter group Y (iotated vowels & soft-sign)
  345. tr->charset_a0 = charsets[18]; // KOI8-R
  346. tr->transpose_min = 0x430; // convert cyrillic from unicode into range 0x01 to 0x22
  347. tr->transpose_max = 0x451;
  348. tr->transpose_map = NULL;
  349. tr->frequent_pairs = pairs_ru;
  350. tr->letter_bits_offset = OFFSET_CYRILLIC;
  351. memset(tr->letter_bits,0,sizeof(tr->letter_bits));
  352. SetLetterBits(tr,LETTERGP_A,(char *)ru_vowels);
  353. SetLetterBits(tr,LETTERGP_B,ru_soft);
  354. SetLetterBits(tr,LETTERGP_C,(char *)ru_consonants);
  355. SetLetterBits(tr,LETTERGP_H,ru_hard);
  356. SetLetterBits(tr,LETTERGP_F,ru_nothard);
  357. SetLetterBits(tr,LETTERGP_G,ru_voiced);
  358. SetLetterBits(tr,LETTERGP_Y,ru_ivowels);
  359. SetLetterBits(tr,LETTERGP_VOWEL2,(char *)ru_vowels);
  360. } // end of SetCyrillicLetters
  361. void SetIndicLetters(Translator *tr)
  362. {//=================================
  363. // Set letter types for Indic scripts, Devanagari, Tamill, etc
  364. static const char dev_consonants2[] = {0x02,0x03,0x58,0x59,0x5a,0x5b,0x5c,0x5d,0x5e,0x5f,0x7b,0x7c,0x7e,0x7f,0};
  365. static const char dev_vowels2[] = {0x60,0x61, 0x55,0x56,0x57,0x62,0x63,0}; // non-consecutive vowels and vowel-signs
  366. memset(tr->letter_bits,0,sizeof(tr->letter_bits));
  367. SetLetterBitsRange(tr,LETTERGP_A,0x04,0x14); // vowel letters
  368. SetLetterBitsRange(tr,LETTERGP_A,0x3e,0x4d); // + vowel signs, and virama
  369. SetLetterBits(tr,LETTERGP_A, dev_vowels2); // + extra vowels and vowel signs
  370. SetLetterBitsRange(tr,LETTERGP_B,0x3e,0x4d); // vowel signs, and virama
  371. SetLetterBits(tr,LETTERGP_B, dev_vowels2); // + extra vowels and vowel signs
  372. SetLetterBitsRange(tr,LETTERGP_C,0x15,0x39); // the main consonant range
  373. SetLetterBits(tr,LETTERGP_C,dev_consonants2); // + additional consonants
  374. SetLetterBitsRange(tr,LETTERGP_Y,0x04,0x14); // vowel letters
  375. SetLetterBitsRange(tr,LETTERGP_Y,0x3e,0x4c); // + vowel signs
  376. SetLetterBits(tr,LETTERGP_Y, dev_vowels2); // + extra vowels and vowel signs
  377. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 1; // disable check for unpronouncable words
  378. tr->langopts.suffix_add_e = tr->letter_bits_offset + 0x4d; //virama
  379. }
  380. void SetupTranslator(Translator *tr, const short *lengths, const unsigned char *amps)
  381. {//==================================================================================
  382. if(lengths != NULL)
  383. memcpy(tr->stress_lengths,lengths,sizeof(tr->stress_lengths));
  384. if(amps != NULL)
  385. memcpy(tr->stress_amps,amps,sizeof(tr->stress_amps));
  386. }
  387. Translator *SelectTranslator(const char *name)
  388. {//===========================================
  389. int name2 = 0;
  390. Translator *tr;
  391. static const short stress_lengths_equal[8] = {230, 230, 230, 230, 0, 0, 230, 230};
  392. static const unsigned char stress_amps_equal[8] = {18,18, 18,18, 18,18, 18,18 };
  393. static const short stress_lengths_fr[8] = {190, 170, 190, 200, 0, 0, 190, 240};
  394. static const unsigned char stress_amps_fr[8] = {18,16, 18,18, 18,18, 18,18 };
  395. static const unsigned char stress_amps_sk[8] = {17,16, 20,20, 20,22, 22,21 };
  396. static const short stress_lengths_sk[8] = {190,190, 210,210, 0,0, 210,210};
  397. static const short stress_lengths_ta[8] = {200, 200, 210, 210, 0, 0, 230, 230};
  398. static const short stress_lengths_ta2[8] = {230, 230, 240, 240, 0, 0, 260, 260};
  399. static const unsigned char stress_amps_ta[8] = {18,18, 18,18, 20,20, 22,22 };
  400. // convert name string into a word of up to 4 characters, for the switch()
  401. while(*name != 0)
  402. name2 = (name2 << 8) + *name++;
  403. tr = NewTranslator();
  404. switch(name2)
  405. {
  406. case L('a','f'):
  407. {
  408. static const short stress_lengths_af[8] = {170,140, 220,220, 0, 0, 250,270};
  409. SetupTranslator(tr,stress_lengths_af,NULL);
  410. tr->langopts.stress_rule = STRESSPOSN_1L;
  411. tr->langopts.vowel_pause = 0x30;
  412. tr->langopts.param[LOPT_DIERESES] = 1;
  413. tr->langopts.param[LOPT_PREFIXES] = 1;
  414. SetLetterVowel(tr,'y'); // add 'y' to vowels
  415. tr->langopts.numbers = NUM_SWAP_TENS | NUM_HUNDRED_AND | NUM_SINGLE_AND | NUM_ROMAN | NUM_1900;
  416. tr->langopts.accents = 1;
  417. }
  418. break;
  419. case L('a','m'): // Amharic, Ethiopia
  420. {
  421. SetupTranslator(tr,stress_lengths_fr,stress_amps_fr);
  422. tr->letter_bits_offset = OFFSET_ETHIOPIC;
  423. tr->langopts.stress_rule = STRESSPOSN_1L;
  424. tr->langopts.stress_flags = S_NO_AUTO_2 | S_FINAL_DIM; // don't use secondary stress
  425. tr->langopts.length_mods0 = tr->langopts.length_mods; // don't lengthen vowels in the last syllable
  426. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 1; // disable check for unpronouncable words
  427. tr->langopts.numbers = NUM_OMIT_1_HUNDRED;
  428. }
  429. break;
  430. case L('a','r'): // Arabic
  431. tr->letter_bits_offset = OFFSET_ARABIC;
  432. tr->langopts.numbers = NUM_SWAP_TENS | NUM_AND_UNITS | NUM_HUNDRED_AND | NUM_OMIT_1_HUNDRED | NUM_AND_HUNDRED | NUM_THOUSAND_AND | NUM_OMIT_1_THOUSAND;
  433. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 1; // disable check for unpronouncable words
  434. break;
  435. case L('b','g'): //Bulgarian
  436. {
  437. SetCyrillicLetters(tr);
  438. SetLetterVowel(tr,0x2a);
  439. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 0x432; // [v] don't count this character at start of word
  440. tr->langopts.param[LOPT_REGRESSIVE_VOICING] = 0x107; // devoice at end of word, and change voicing to match a following consonant (except v)
  441. tr->langopts.param[LOPT_REDUCE] = 2;
  442. tr->langopts.stress_rule = STRESSPOSN_2R;
  443. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_ALLOW_SPACE | NUM_OMIT_1_HUNDRED | NUM_HUNDRED_AND | NUM_AND_UNITS | NUM_SINGLE_AND | NUM_ROMAN | NUM_ROMAN_ORDINAL | NUM_ROMAN_CAPITALS ;
  444. tr->langopts.thousands_sep = ' '; // don't allow dot as thousands separator
  445. }
  446. break;
  447. case L('b','n'): // Bengali
  448. {
  449. static const short stress_lengths_bn[8] = {180, 180, 210, 210, 0, 0, 230, 240};
  450. static const unsigned char stress_amps_bn[8] = {18,18, 18,18, 20,20, 22,22 };
  451. SetupTranslator(tr,stress_lengths_bn,stress_amps_bn);
  452. tr->langopts.length_mods0 = tr->langopts.length_mods; // don't lengthen vowels in the last syllable
  453. tr->langopts.stress_rule = STRESSPOSN_1L;
  454. tr->langopts.stress_flags = S_MID_DIM | S_FINAL_DIM; // use 'diminished' for unstressed final syllable
  455. tr->letter_bits_offset = OFFSET_BENGALI;
  456. SetIndicLetters(tr); // call this after setting OFFSET_BENGALI
  457. SetLetterBitsRange(tr,LETTERGP_F,0x3e,0x4c); // vowel signs, but not virama
  458. tr->langopts.numbers = 0x1;
  459. tr->langopts.break_numbers = 0x24924aa8; // for languages which have numbers for 100,000 and 100,00,000, eg Hindi
  460. }
  461. break;
  462. case L('b','o'): // Tibet
  463. {
  464. tr->langopts.stress_rule = STRESSPOSN_1L;
  465. tr->letter_bits_offset = OFFSET_TIBET;
  466. SetLetterBitsRange(tr,LETTERGP_A,0x71,0x7d); // vowel signs
  467. SetLetterBitsRange(tr,LETTERGP_B,0x71,0x81); // vowel signs and subjoined letters
  468. SetLetterBitsRange(tr,LETTERGP_B,0x90,0xbc);
  469. SetLetterBitsRange(tr,LETTERGP_C,0x40,0x6c); // consonant letters (not subjoined)
  470. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 1; // disable check for unpronouncable words
  471. tr->langopts.numbers = 1;
  472. }
  473. break;
  474. case L('c','y'): // Welsh
  475. {
  476. static const short stress_lengths_cy[8] = {170,220, 180,180, 0, 0, 250,270};
  477. static const unsigned char stress_amps_cy[8] = {17,15, 18,18, 0,0, 22,20 }; // 'diminished' is used to mark a quieter, final unstressed syllable
  478. SetupTranslator(tr,stress_lengths_cy,stress_amps_cy);
  479. tr->charset_a0 = charsets[14]; // ISO-8859-14
  480. // tr->langopts.length_mods0 = tr->langopts.length_mods; // don't lengthen vowels in the last syllable
  481. tr->langopts.stress_rule = STRESSPOSN_2R;
  482. // tr->langopts.intonation_group = 4;
  483. // 'diminished' is an unstressed final syllable
  484. tr->langopts.stress_flags = S_FINAL_DIM_ONLY | S_FINAL_NO_2;
  485. tr->langopts.unstressed_wd1 = 0;
  486. tr->langopts.unstressed_wd2 = 2;
  487. tr->langopts.param[LOPT_SONORANT_MIN] = 120; // limit the shortening of sonorants before short vowels
  488. tr->langopts.numbers = NUM_OMIT_1_HUNDRED;
  489. SetLetterVowel(tr,'w'); // add letter to vowels and remove from consonants
  490. SetLetterVowel(tr,'y');
  491. }
  492. break;
  493. case L('d','a'): // Danish
  494. {
  495. static const short stress_lengths_da[8] = {160,140, 200,200, 0,0, 220,230};
  496. SetupTranslator(tr,stress_lengths_da,NULL);
  497. tr->langopts.stress_rule = STRESSPOSN_1L;
  498. tr->langopts.param[LOPT_PREFIXES] = 1;
  499. SetLetterVowel(tr,'y');
  500. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_SWAP_TENS | NUM_HUNDRED_AND | NUM_OMIT_1_HUNDRED | NUM_ORDINAL_DOT | NUM_1900 | NUM_ROMAN | NUM_ROMAN_CAPITALS | NUM_ROMAN_ORDINAL;
  501. }
  502. break;
  503. case L('d','e'):
  504. {
  505. static const short stress_lengths_de[8] = {150,130, 200,200, 0, 0, 270,270};
  506. static const unsigned char stress_amps_de[] = {20,20, 20,20, 20,22, 22,20 };
  507. SetupTranslator(tr, stress_lengths_de, stress_amps_de);
  508. tr->langopts.stress_rule = STRESSPOSN_1L;
  509. tr->langopts.word_gap = 0x8; // don't use linking phonemes
  510. tr->langopts.vowel_pause = 0x30;
  511. tr->langopts.param[LOPT_PREFIXES] = 1;
  512. tr->langopts.param[LOPT_REGRESSIVE_VOICING] = 0x100; // devoice at end of word
  513. tr->langopts.param[LOPT_LONG_VOWEL_THRESHOLD] = 175/2;
  514. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_SWAP_TENS | NUM_ALLOW_SPACE | NUM_ORDINAL_DOT | NUM_ROMAN;
  515. // tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_SWAP_TENS | NUM_OMIT_1_HUNDRED | NUM_OMIT_1_THOUSAND | NUM_ALLOW_SPACE | NUM_ORDINAL_DOT | NUM_ROMAN;
  516. SetLetterVowel(tr,'y');
  517. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 2; // use de_rules for unpronouncable rules
  518. }
  519. break;
  520. case L('d','v'): // Divehi (Maldives)
  521. {
  522. SetupTranslator(tr,stress_lengths_ta,stress_amps_ta);
  523. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 1; // disable check for unpronouncable words
  524. tr->langopts.length_mods0 = tr->langopts.length_mods; // don't lengthen vowels in the last syllable
  525. tr->letter_bits_offset = OFFSET_THAANA;
  526. tr->langopts.stress_rule = STRESSPOSN_1L;
  527. tr->langopts.stress_flags = S_MID_DIM | S_FINAL_DIM; // use 'diminished' for unstressed final syllable
  528. SetLetterBitsRange(tr,LETTERGP_B,0x26,0x30); // vowel signs, and virama
  529. tr->langopts.break_numbers = 0x14a8; // 1000, 100,000 10,000,000
  530. tr->langopts.numbers = 1;
  531. }
  532. break;
  533. case L('e','n'):
  534. {
  535. static const short stress_lengths_en[8] = {182,140, 220,220, 0,0, 248,275};
  536. SetupTranslator(tr,stress_lengths_en,NULL);
  537. tr->langopts.stress_rule = STRESSPOSN_1L;
  538. tr->langopts.stress_flags = 0x08;
  539. tr->langopts.numbers = NUM_HUNDRED_AND | NUM_ROMAN | NUM_1900;
  540. tr->langopts.param[LOPT_COMBINE_WORDS] = 2; // allow "mc" to cmbine with the following word
  541. tr->langopts.suffix_add_e = 'e';
  542. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 2; // use en_rules for unpronouncable rules
  543. SetLetterBits(tr,6,"aeiouy"); // Group Y: vowels, including y
  544. }
  545. break;
  546. case L('e','l'): // Greek
  547. case L_grc: // Ancient Greek
  548. {
  549. static const short stress_lengths_el[8] = {155, 180, 210, 210, 0, 0, 270, 300};
  550. static const unsigned char stress_amps_el[8] = {15,12, 20,20, 20,22, 22,21 }; // 'diminished' is used to mark a quieter, final unstressed syllable
  551. // character codes offset by 0x380
  552. static const char el_vowels[] = {0x10,0x2c,0x2d,0x2e,0x2f,0x30,0x31,0x35,0x37,0x39,0x3f,0x45,0x49,0x4a,0x4b,0x4c,0x4d,0x4e,0x4f,0};
  553. static const char el_fvowels[] = {0x2d,0x2e,0x2f,0x35,0x37,0x39,0x45,0x4d,0}; // ε η ι υ έ ή ί ύ
  554. static const char el_voiceless[]= {0x38,0x3a,0x3e,0x40,0x42,0x43,0x44,0x46,0x47,0}; // θ κ ξ π ς σ τ φ χ
  555. static const char el_consonants[]={0x32,0x33,0x34,0x36,0x38,0x3a,0x3b,0x3c,0x3d,0x3e,0x40,0x41,0x42,0x43,0x44,0x46,0x47,0x48,0};
  556. static const wchar_t el_char_apostrophe[] = {0x3c3,0}; // σ
  557. SetupTranslator(tr,stress_lengths_el,stress_amps_el);
  558. tr->charset_a0 = charsets[7]; // ISO-8859-7
  559. tr->char_plus_apostrophe = el_char_apostrophe;
  560. tr->letter_bits_offset = OFFSET_GREEK;
  561. memset(tr->letter_bits,0,sizeof(tr->letter_bits));
  562. SetLetterBits(tr,LETTERGP_A,el_vowels);
  563. SetLetterBits(tr,LETTERGP_VOWEL2,el_vowels);
  564. SetLetterBits(tr,LETTERGP_B,el_voiceless);
  565. SetLetterBits(tr,LETTERGP_C,el_consonants);
  566. SetLetterBits(tr,LETTERGP_Y,el_fvowels); // front vowels: ε η ι υ
  567. tr->langopts.length_mods0 = tr->langopts.length_mods; // don't lengthen vowels in the last syllable
  568. tr->langopts.stress_rule = STRESSPOSN_2R;
  569. tr->langopts.stress_flags = S_FINAL_DIM_ONLY; // mark unstressed final syllables as diminished
  570. tr->langopts.unstressed_wd1 = 0;
  571. tr->langopts.unstressed_wd2 = 2;
  572. tr->langopts.param[LOPT_SONORANT_MIN] = 130; // limit the shortening of sonorants before short vowels
  573. tr->langopts.numbers = NUM_SINGLE_STRESS | NUM_DECIMAL_COMMA;
  574. tr->langopts.numbers2 = 0x2 | NUM2_MULTIPLE_ORDINAL; // variant form of numbers before thousands
  575. if(name2 == L_grc)
  576. {
  577. // ancient greek
  578. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 1;
  579. }
  580. }
  581. break;
  582. case L('e','o'):
  583. {
  584. static const short stress_lengths_eo[8] = {150, 150, 230, 180, 0, 0, 300, 320};
  585. static const unsigned char stress_amps_eo[] = {16,14, 20,20, 20,22, 22,21 };
  586. static const wchar_t eo_char_apostrophe[2] = {'l',0};
  587. SetupTranslator(tr,stress_lengths_eo,stress_amps_eo);
  588. tr->charset_a0 = charsets[3]; // ISO-8859-3
  589. tr->char_plus_apostrophe = eo_char_apostrophe;
  590. // tr->langopts.word_gap = 1;
  591. tr->langopts.vowel_pause = 2;
  592. tr->langopts.stress_rule = STRESSPOSN_2R;
  593. tr->langopts.stress_flags = S_FINAL_DIM_ONLY | S_FINAL_NO_2;
  594. // tr->langopts.unstressed_wd1 = 3;
  595. tr->langopts.unstressed_wd2 = 2;
  596. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_OMIT_1_HUNDRED | NUM_ALLOW_SPACE | NUM_ROMAN;
  597. }
  598. break;
  599. case L('e','s'): // Spanish
  600. case L('a','n'): // Aragonese
  601. case L('c','a'): // Catalan
  602. case L_pap: // Papiamento
  603. {
  604. static const short stress_lengths_es[8] = {180, 190, 230, 180, 0, 0, 240, 270};
  605. static const unsigned char stress_amps_es[8] = {16,12, 18,18, 20,20, 20,20 }; // 'diminished' is used to mark a quieter, final unstressed syllable
  606. static const wchar_t ca_punct_within_word[] = {'\'',0xb7,0}; // ca: allow middle-dot within word
  607. SetupTranslator(tr,stress_lengths_es,stress_amps_es);
  608. tr->langopts.length_mods0 = tr->langopts.length_mods; // don't lengthen vowels in the last syllable
  609. tr->langopts.stress_rule = STRESSPOSN_2R;
  610. // stress last syllable if it doesn't end in vowel or "s" or "n"
  611. // 'diminished' is an unstressed final syllable
  612. tr->langopts.stress_flags = S_FINAL_SPANISH | S_FINAL_DIM_ONLY | S_FINAL_NO_2;
  613. tr->langopts.unstressed_wd1 = 0;
  614. tr->langopts.unstressed_wd2 = 2;
  615. tr->langopts.param[LOPT_SONORANT_MIN] = 120; // limit the shortening of sonorants before short vowels
  616. tr->langopts.numbers = NUM_SINGLE_STRESS | NUM_DECIMAL_COMMA | NUM_AND_UNITS | NUM_OMIT_1_HUNDRED | NUM_OMIT_1_THOUSAND | NUM_ROMAN | NUM_ROMAN_AFTER;
  617. tr->langopts.numbers2 = NUM2_MULTIPLE_ORDINAL;
  618. if(name2 == L('c','a'))
  619. {
  620. // stress last syllable unless word ends with a vowel
  621. tr->punct_within_word = ca_punct_within_word;
  622. tr->langopts.stress_flags = S_FINAL_SPANISH | S_FINAL_DIM_ONLY | S_FINAL_NO_2 | S_NO_AUTO_2;
  623. }
  624. else
  625. if(name2 == L('a','n'))
  626. {
  627. tr->langopts.stress_flags = S_FINAL_SPANISH | S_FINAL_DIM_ONLY | S_FINAL_NO_2;
  628. tr->langopts.numbers2 = 0;
  629. }
  630. else
  631. if(name2 == L_pap)
  632. {
  633. // stress last syllable unless word ends with a vowel
  634. tr->langopts.stress_flags = S_FINAL_STRESS_C | S_FINAL_DIM_ONLY | S_FINAL_NO_2 | S_NO_AUTO_2;
  635. }
  636. else
  637. {
  638. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 2; // use es_rules for unpronouncable rules
  639. }
  640. }
  641. break;
  642. case L('e','u'): // basque
  643. {
  644. static const short stress_lengths_eu[8] = {200, 200, 200, 200, 0, 0, 210, 230}; // very weak stress
  645. static const unsigned char stress_amps_eu[8] = {16,16, 18,18, 18,18, 18,18 };
  646. SetupTranslator(tr,stress_lengths_eu,stress_amps_eu);
  647. tr->langopts.stress_rule = STRESSPOSN_2L; // ?? second syllable ??
  648. tr->langopts.numbers = NUM_SINGLE_STRESS | NUM_DECIMAL_COMMA | NUM_AND_UNITS | NUM_HUNDRED_AND | NUM_OMIT_1_HUNDRED | NUM_VIGESIMAL;
  649. }
  650. break;
  651. case L('f','a'): // Farsi
  652. {
  653. // Convert characters in the range 0x620 to 0x6cc to the range 1 to 63.
  654. // 0 indicates no translation for this character
  655. static const char transpose_map_fa[] = {
  656. 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, // 0x620
  657. 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 0, 0, 0, 0, 0, // 0x630
  658. 0, 27, 28, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, // 0x640
  659. 42, 43, 0, 0, 44, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0x650
  660. 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0x660
  661. 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 45, 0, // 0x670
  662. 0, 0, 0, 0, 0, 0, 46, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0x680
  663. 0, 0, 0, 0, 0, 0, 0, 0, 47, 0, 0, 0, 0, 0, 0, 0, // 0x690
  664. 0, 0, 0, 0, 0, 0, 0, 0, 0, 48, 0, 0, 0, 0, 0, 49, // 0x6a0
  665. 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0x6b0
  666. 50, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 51 }; // 0x6c0
  667. tr->transpose_min = 0x620;
  668. tr->transpose_max = 0x6cc;
  669. tr->transpose_map = transpose_map_fa;
  670. tr->letter_bits_offset = OFFSET_ARABIC;
  671. tr->langopts.numbers = NUM_AND_UNITS | NUM_HUNDRED_AND;
  672. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 1; // disable check for unpronouncable words
  673. tr->chars_ignore = chars_ignore_zwnj_hyphen; // replace ZWNJ by hyphen
  674. }
  675. break;
  676. case L('e','t'): // Estonian
  677. tr->charset_a0 = charsets[4]; // ISO-8859-4
  678. // drop through to Finnish
  679. case L('f','i'): // Finnish
  680. {
  681. static const unsigned char stress_amps_fi[8] = {18,16, 22,22, 20,22, 22,22 };
  682. static const short stress_lengths_fi[8] = {150,180, 200,200, 0,0, 210,250};
  683. SetupTranslator(tr,stress_lengths_fi,stress_amps_fi);
  684. tr->langopts.stress_rule = STRESSPOSN_1L;
  685. tr->langopts.stress_flags = S_FINAL_DIM_ONLY | S_FINAL_NO_2 | S_2_TO_HEAVY; // move secondary stress from light to a following heavy syllable
  686. tr->langopts.param[LOPT_IT_DOUBLING] = 1;
  687. tr->langopts.long_stop = 130;
  688. tr->langopts.numbers = NUM_DECIMAL_COMMA + NUM_ALLOW_SPACE;
  689. SetLetterVowel(tr,'y');
  690. // tr->langopts.max_initial_consonants = 2; // BUT foreign words may have 3
  691. tr->langopts.spelling_stress = 1;
  692. tr->langopts.intonation_group = 3; // less intonation, don't raise pitch at comma
  693. }
  694. break;
  695. case L('f','r'): // french
  696. {
  697. SetupTranslator(tr,stress_lengths_fr,stress_amps_fr);
  698. tr->langopts.stress_rule = STRESSPOSN_1R; // stress on final syllable
  699. tr->langopts.stress_flags = S_NO_AUTO_2 | S_FINAL_DIM; // don't use secondary stress
  700. tr->langopts.param[LOPT_IT_LENGTHEN] = 1; // remove lengthen indicator from unstressed syllables
  701. tr->langopts.length_mods0 = tr->langopts.length_mods; // don't lengthen vowels in the last syllable
  702. tr->langopts.accents = 2; // Say "Capital" after the letter.
  703. tr->langopts.numbers = NUM_SINGLE_STRESS | NUM_DECIMAL_COMMA | NUM_ALLOW_SPACE | NUM_OMIT_1_HUNDRED | NUM_NOPAUSE | NUM_ROMAN | NUM_ROMAN_CAPITALS | NUM_ROMAN_AFTER | NUM_VIGESIMAL | NUM_DFRACTION_4;
  704. SetLetterVowel(tr,'y');
  705. }
  706. break;
  707. case L('g','a'): // irish
  708. {
  709. tr->langopts.stress_rule = STRESSPOSN_1L;
  710. tr->langopts.numbers = 1;
  711. tr->langopts.accents = 2; // 'capital' after letter name
  712. }
  713. break;
  714. case L('h','i'): // Hindi
  715. case L('n','e'): // Nepali
  716. case L('p','a'): // Punjabi
  717. case L('g','u'): // Gujarati
  718. {
  719. static const short stress_lengths_hi[8] = {190, 190, 210, 210, 0, 0, 230, 250};
  720. static const unsigned char stress_amps_hi[8] = {17,14, 20,19, 20,22, 22,21 };
  721. SetupTranslator(tr,stress_lengths_hi,stress_amps_hi);
  722. tr->charset_a0 = charsets[19]; // ISCII
  723. tr->langopts.length_mods0 = tr->langopts.length_mods; // don't lengthen vowels in the last syllable
  724. tr->langopts.stress_rule = 6; // stress on last heaviest syllable, excluding final syllable
  725. tr->langopts.stress_flags = S_MID_DIM | S_FINAL_DIM; // use 'diminished' for unstressed final syllable
  726. tr->langopts.numbers = NUM_SWAP_TENS;
  727. tr->langopts.break_numbers = 0x14aa8; // for languages which have numbers for 100,000 and 100,00,000, eg Hindi
  728. tr->letter_bits_offset = OFFSET_DEVANAGARI;
  729. if(name2 == L('p','a'))
  730. {
  731. tr->letter_bits_offset = OFFSET_GURMUKHI;
  732. }
  733. else
  734. if(name2 == L('g','u'))
  735. {
  736. SetupTranslator(tr,stress_lengths_equal,stress_amps_equal);
  737. tr->letter_bits_offset = OFFSET_GUJARATI;
  738. tr->langopts.stress_rule = STRESSPOSN_2R;
  739. }
  740. else
  741. if(name2 == L('n','e'))
  742. {
  743. SetupTranslator(tr,stress_lengths_equal,stress_amps_equal);
  744. tr->langopts.break_numbers = 0x2aaaa8;
  745. tr->langopts.max_digits = 22;
  746. tr->langopts.numbers2 |= NUM2_ENGLISH_NUMERALS;
  747. }
  748. SetIndicLetters(tr);
  749. }
  750. break;
  751. case L('h','r'): // Croatian
  752. case L('b','s'): // Bosnian
  753. case L('s','r'): // Serbian
  754. {
  755. static const unsigned char stress_amps_hr[8] = {17,17, 20,20, 20,22, 22,21 };
  756. static const short stress_lengths_hr[8] = {180,160, 200,200, 0,0, 220,230};
  757. static const short stress_lengths_sr[8] = {160,150, 200,200, 0,0, 250,260};
  758. if(name2 == L('s','r'))
  759. SetupTranslator(tr,stress_lengths_sr,stress_amps_hr);
  760. else
  761. SetupTranslator(tr,stress_lengths_hr,stress_amps_hr);
  762. tr->charset_a0 = charsets[2]; // ISO-8859-2
  763. tr->langopts.stress_rule = STRESSPOSN_1L;
  764. tr->langopts.stress_flags = S_FINAL_NO_2;
  765. tr->langopts.param[LOPT_REGRESSIVE_VOICING] = 0x3;
  766. tr->langopts.max_initial_consonants = 5;
  767. tr->langopts.spelling_stress = 1;
  768. tr->langopts.accents = 1;
  769. tr->langopts.numbers = NUM_SINGLE_STRESS | NUM_HUNDRED_AND | NUM_OMIT_1_HUNDRED | NUM_DECIMAL_COMMA | NUM_THOUS_SPACE | NUM_DFRACTION_2 | NUM_ROMAN_CAPITALS;
  770. tr->langopts.numbers2 = 0xa + NUM2_THOUSANDS_VAR5; // variant numbers before thousands,milliards
  771. tr->langopts.replace_chars = replace_cyrillic_latin;
  772. SetLetterVowel(tr,'y');
  773. SetLetterVowel(tr,'r');
  774. }
  775. break;
  776. case L('h','t'): // Haitian Creole
  777. // memcpy(tr->stress_lengths,stress_lengths_fr,sizeof(tr->stress_lengths));
  778. tr->langopts.stress_rule = STRESSPOSN_1R; // stress on final syllable
  779. tr->langopts.stress_flags = S_NO_AUTO_2 | S_FINAL_DIM; // don't use secondary stress
  780. tr->langopts.numbers = NUM_SINGLE_STRESS | NUM_OMIT_1_HUNDRED | NUM_NOPAUSE | NUM_ROMAN | NUM_VIGESIMAL | NUM_DFRACTION_4;
  781. break;
  782. case L('h','u'): // Hungarian
  783. {
  784. static const unsigned char stress_amps_hu[8] = {17,17, 19,19, 20,22, 22,21 };
  785. static const short stress_lengths_hu[8] = {185,195, 195,190, 0,0, 210,220};
  786. SetupTranslator(tr,stress_lengths_hu,stress_amps_hu);
  787. tr->charset_a0 = charsets[2]; // ISO-8859-2
  788. tr->langopts.vowel_pause = 0x20;
  789. tr->langopts.stress_rule = STRESSPOSN_1L;
  790. tr->langopts.stress_flags = S_FINAL_DIM_ONLY | S_FINAL_NO_2 | S_NO_AUTO_2 | 0x8000 | S_HYPEN_UNSTRESS;
  791. tr->langopts.unstressed_wd1 = 2;
  792. tr->langopts.param[LOPT_IT_DOUBLING] = 1;
  793. tr->langopts.param[LOPT_ANNOUNCE_PUNCT] = 2; // don't break clause before announcing . ? !
  794. tr->langopts.numbers = NUM_DFRACTION_5 | NUM_ALLOW_SPACE | NUM_ROMAN | NUM_ROMAN_ORDINAL | NUM_ROMAN_CAPITALS | NUM_ORDINAL_DOT | NUM_OMIT_1_HUNDRED | NUM_OMIT_1_THOUSAND;
  795. tr->langopts.thousands_sep = ' '; // don't allow dot as thousands separator
  796. tr->langopts.decimal_sep = ',';
  797. tr->langopts.max_roman = 899;
  798. tr->langopts.min_roman = 1;
  799. SetLetterVowel(tr,'y');
  800. tr->langopts.spelling_stress = 1;
  801. SetLengthMods(tr,3); // all equal
  802. }
  803. break;
  804. case L('h','y'): // Armenian
  805. {
  806. static const short stress_lengths_hy[8] = {250, 200, 250, 250, 0, 0, 250, 250};
  807. static const char hy_vowels[] = {0x31, 0x35, 0x37, 0x38, 0x3b, 0x48, 0x55, 0};
  808. static const char hy_consonants[] = {0x32,0x33,0x34,0x36,0x39,0x3a,0x3c,0x3d,0x3e,0x3f,
  809. 0x40,0x41,0x42,0x43,0x44,0x45,0x46,0x47,0x49,0x4a,0x4b,0x4c,0x4d,0x4e,0x4f,0x50,0x51,0x52,0x53,0x54,0x56,0};
  810. SetupTranslator(tr,stress_lengths_hy,NULL);
  811. tr->langopts.stress_rule = STRESSPOSN_1R; // default stress on final syllable
  812. tr->letter_bits_offset = OFFSET_ARMENIAN;
  813. memset(tr->letter_bits,0,sizeof(tr->letter_bits));
  814. SetLetterBits(tr,LETTERGP_A,hy_vowels);
  815. SetLetterBits(tr,LETTERGP_VOWEL2,hy_vowels);
  816. SetLetterBits(tr,LETTERGP_C,hy_consonants);
  817. tr->langopts.max_initial_consonants = 6;
  818. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_OMIT_1_HUNDRED;
  819. // tr->langopts.param[LOPT_UNPRONOUNCABLE] = 1; // disable check for unpronouncable words
  820. }
  821. break;
  822. case L('i','d'): // Indonesian
  823. {
  824. static const short stress_lengths_id[8] = {160, 200, 180, 180, 0, 0, 220, 240};
  825. static const unsigned char stress_amps_id[8] = {16,18, 18,18, 20,22, 22,21 };
  826. SetupTranslator(tr,stress_lengths_id,stress_amps_id);
  827. tr->langopts.stress_rule = STRESSPOSN_2R;
  828. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_ALLOW_SPACE | NUM_ROMAN;
  829. tr->langopts.stress_flags = S_FINAL_DIM_ONLY | S_FINAL_NO_2;
  830. tr->langopts.accents = 2; // "capital" after letter name
  831. }
  832. break;
  833. case L('i','s'): // Icelandic
  834. {
  835. static const short stress_lengths_is[8] = {180,160, 200,200, 0,0, 240,250};
  836. static const wchar_t is_lettergroup_B[] = {'c','f','h','k','p','t','x',0xfe,0}; // voiceless conants, including 'þ' ?? 's'
  837. SetupTranslator(tr,stress_lengths_is,NULL);
  838. tr->langopts.stress_rule = STRESSPOSN_1L;
  839. tr->langopts.stress_flags = S_FINAL_NO_2;
  840. tr->langopts.param[LOPT_IT_LENGTHEN] = 0x11; // remove lengthen indicator from unstressed vowels
  841. tr->langopts.param[LOPT_REDUCE] = 2;
  842. ResetLetterBits(tr,0x18);
  843. SetLetterBits(tr,4,"kpst"); // Letter group F
  844. SetLetterBits(tr,3,"jvr"); // Letter group H
  845. tr->letter_groups[1] = is_lettergroup_B;
  846. SetLetterVowel(tr,'y');
  847. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_SINGLE_AND | NUM_HUNDRED_AND | NUM_AND_UNITS | NUM_1900;
  848. tr->langopts.numbers2 = 0x2;
  849. }
  850. break;
  851. case L('i','t'): // Italian
  852. {
  853. static const short stress_lengths_it[8] = {150, 140, 170, 170, 0, 0, 300, 330};
  854. static const unsigned char stress_amps_it[8] = {15,14, 19,19, 20,22, 22,20 };
  855. SetupTranslator(tr,stress_lengths_it,stress_amps_it);
  856. tr->langopts.length_mods0 = tr->langopts.length_mods; // don't lengthen vowels in the last syllable
  857. tr->langopts.stress_rule = STRESSPOSN_2R;
  858. tr->langopts.stress_flags = S_FINAL_NO_2 | S_PRIORITY_STRESS;
  859. tr->langopts.vowel_pause = 1;
  860. tr->langopts.unstressed_wd1 = 2;
  861. tr->langopts.unstressed_wd2 = 2;
  862. tr->langopts.param[LOPT_IT_LENGTHEN] = 2; // remove lengthen indicator from unstressed or non-penultimate syllables
  863. tr->langopts.param[LOPT_IT_DOUBLING] = 2; // double the first consonant if the previous word ends in a stressed vowel
  864. tr->langopts.param[LOPT_SONORANT_MIN] = 130; // limit the shortening of sonorants before short vowels
  865. tr->langopts.param[LOPT_REDUCE] = 1; // reduce vowels even if phonemes are specified in it_list
  866. tr->langopts.param[LOPT_ALT] = 2; // call ApplySpecialAttributes2() if a word has $alt or $alt2
  867. tr->langopts.numbers = NUM_SINGLE_VOWEL | NUM_OMIT_1_HUNDRED |NUM_DECIMAL_COMMA | NUM_ROMAN | NUM_DFRACTION_1;
  868. tr->langopts.accents = 2; // Say "Capital" after the letter.
  869. SetLetterVowel(tr,'y');
  870. }
  871. break;
  872. case L_jbo: // Lojban
  873. {
  874. static const short stress_lengths_jbo[8] = {145,145, 170,160, 0,0, 330,350};
  875. static const wchar_t jbo_punct_within_word[] = {'.',',','\'',0x2c8,0}; // allow period and comma within a word, also stress marker (from LOPT_CAPS_IN_WORD)
  876. SetupTranslator(tr,stress_lengths_jbo,NULL);
  877. tr->langopts.stress_rule = STRESSPOSN_2R;
  878. tr->langopts.vowel_pause = 0x20c; // pause before a word which starts with a vowel, or after a word which ends in a consonant
  879. // tr->langopts.word_gap = 1;
  880. tr->punct_within_word = jbo_punct_within_word;
  881. tr->langopts.param[LOPT_CAPS_IN_WORD] = 2; // capitals indicate stressed syllables
  882. SetLetterVowel(tr,'y');
  883. tr->langopts.max_lengthmod = 368;
  884. }
  885. break;
  886. case L('k','a'): // Georgian
  887. {
  888. // character codes offset by 0x1080
  889. static const char ka_vowels[] = {0x30,0x34,0x38,0x3d,0x43,0x55,0x57,0};
  890. static const char ka_consonants[] =
  891. {0x31,0x32,0x33,0x35,0x36,0x37,0x39,0x3a,0x3b,0x3c,0x3e,0x3f,0x40,0x41,0x42,0x44,
  892. 0x45,0x46,0x47,0x48,0x49,0x4a,0x4b,0x4c,0x4d,0x4e,0x4f,0x50,0x51,0x52,0x53,0x54,0x56,0};
  893. SetupTranslator(tr,stress_lengths_ta,stress_amps_ta);
  894. memset(tr->letter_bits,0,sizeof(tr->letter_bits));
  895. SetLetterBits(tr,LETTERGP_A,ka_vowels);
  896. SetLetterBits(tr,LETTERGP_C,ka_consonants);
  897. SetLetterBits(tr,LETTERGP_VOWEL2,ka_vowels);
  898. tr->langopts.stress_rule = STRESSPOSN_1L;
  899. tr->langopts.stress_flags = S_FINAL_NO_2;
  900. tr->letter_bits_offset = OFFSET_GEORGIAN;
  901. // tr->langopts.param[LOPT_UNPRONOUNCABLE] = 1; // disable check for unpronouncable words
  902. tr->langopts.max_initial_consonants = 7;
  903. tr->langopts.numbers = NUM_VIGESIMAL | NUM_AND_UNITS | NUM_OMIT_1_HUNDRED |NUM_OMIT_1_THOUSAND | NUM_DFRACTION_5 | NUM_ROMAN;
  904. tr->langopts.alt_alphabet = OFFSET_CYRILLIC;
  905. tr->langopts.alt_alphabet_lang = L('r','u');
  906. }
  907. break;
  908. case L('k','k'): // Kazakh
  909. {
  910. static const unsigned char stress_amps_tr[8] = {18,16, 20,21, 20,21, 21,20 };
  911. static const short stress_lengths_tr[8] = {190,180, 230,230, 0,0, 250,250};
  912. tr->letter_bits_offset = OFFSET_CYRILLIC;
  913. memset(tr->letter_bits,0,sizeof(tr->letter_bits));
  914. SetLetterBits(tr,LETTERGP_A,(char *)ru_vowels);
  915. SetLetterBits(tr,LETTERGP_C,(char *)ru_consonants);
  916. SetLetterBits(tr,LETTERGP_VOWEL2,(char *)ru_vowels);
  917. SetupTranslator(tr,stress_lengths_tr,stress_amps_tr);
  918. tr->langopts.stress_rule = 7; // stress on the last syllable, before any explicitly unstressed syllable
  919. tr->langopts.stress_flags = S_NO_AUTO_2 + S_NO_EOC_LENGTHEN; //no automatic secondary stress, don't lengthen at end-of-clause
  920. tr->langopts.lengthen_tonic = 0;
  921. tr->langopts.param[LOPT_SUFFIX] = 1;
  922. tr->langopts.numbers = NUM_OMIT_1_HUNDRED | NUM_DFRACTION_6 ;
  923. tr->langopts.max_initial_consonants = 2;
  924. SetLengthMods(tr,3); // all equal
  925. }
  926. break;
  927. case L('k','l'): // Greenlandic
  928. {
  929. SetupTranslator(tr,stress_lengths_equal,stress_amps_equal);
  930. tr->langopts.stress_rule = 12;
  931. tr->langopts.stress_flags = S_NO_AUTO_2;
  932. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_SWAP_TENS | NUM_HUNDRED_AND | NUM_OMIT_1_HUNDRED | NUM_ORDINAL_DOT | NUM_1900 | NUM_ROMAN | NUM_ROMAN_CAPITALS | NUM_ROMAN_ORDINAL;
  933. }
  934. break;
  935. case L('k','o'): // Korean, TEST
  936. {
  937. static const char ko_ivowels[] = {0x63,0x64,0x67,0x68,0x6d,0x72,0x74,0x75,0}; // y and i vowels
  938. static const unsigned char ko_voiced[] = {0x02,0x05,0x06,0xab,0xaf,0xb7,0xbc,0}; // voiced consonants, l,m,n,N
  939. tr->letter_bits_offset = OFFSET_KOREAN;
  940. memset(tr->letter_bits,0,sizeof(tr->letter_bits));
  941. SetLetterBitsRange(tr,LETTERGP_A,0x61,0x75);
  942. SetLetterBits(tr,LETTERGP_Y,ko_ivowels);
  943. SetLetterBits(tr,LETTERGP_G,(const char *)ko_voiced);
  944. tr->langopts.stress_rule = 8; // ?? 1st syllable if it is heavy, else 2nd syllable
  945. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 1; // disable check for unpronouncable words
  946. tr->langopts.numbers = NUM_OMIT_1_HUNDRED;
  947. tr->langopts.numbers2 = NUM2_MYRIADS;
  948. tr->langopts.break_numbers = 0x1111110;
  949. tr->langopts.max_digits = 20;
  950. }
  951. break;
  952. case L('k','u'): // Kurdish
  953. {
  954. static const unsigned char stress_amps_ku[8] = {18,18, 20,20, 20,22, 22,21 };
  955. static const short stress_lengths_ku[8] = {180,180, 190,180, 0,0, 230,240};
  956. SetupTranslator(tr,stress_lengths_ku,stress_amps_ku);
  957. tr->charset_a0 = charsets[9]; // ISO-8859-9 - Latin5
  958. tr->langopts.stress_rule = 7; // stress on the last syllable, before any explicitly unstressed syllable
  959. tr->langopts.numbers = NUM_HUNDRED_AND | NUM_AND_UNITS | NUM_OMIT_1_HUNDRED | NUM_AND_HUNDRED;
  960. tr->langopts.max_initial_consonants = 2;
  961. }
  962. break;
  963. case L('l','a'): //Latin
  964. {
  965. tr->charset_a0 = charsets[4]; // ISO-8859-4, includes a,e,i,o,u-macron
  966. tr->langopts.stress_rule = STRESSPOSN_2R;
  967. tr->langopts.stress_flags = S_NO_AUTO_2;
  968. tr->langopts.unstressed_wd1 = 0;
  969. tr->langopts.unstressed_wd2 = 2;
  970. tr->langopts.param[LOPT_DIERESES] = 1;
  971. tr->langopts.numbers = NUM_ROMAN;
  972. tr->langopts.max_roman = 5000;
  973. }
  974. break;
  975. case L('l','t'): // Lithuanian
  976. {
  977. tr->charset_a0 = charsets[4]; // ISO-8859-4
  978. tr->langopts.stress_rule = STRESSPOSN_2R;
  979. tr->langopts.stress_flags = S_NO_AUTO_2;
  980. tr->langopts.unstressed_wd1 = 0;
  981. tr->langopts.unstressed_wd2 = 2;
  982. tr->langopts.param[LOPT_DIERESES] = 1;
  983. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_OMIT_1_HUNDRED | NUM_DFRACTION_4 | NUM_ORDINAL_DOT;
  984. tr->langopts.numbers2 = NUM2_THOUSANDS_VAR4;
  985. tr->langopts.max_roman = 5000;
  986. }
  987. break;
  988. case L('l','v'): // latvian
  989. {
  990. static const unsigned char stress_amps_lv[8] = {17,13, 20,20, 20,22, 22,21 };
  991. static const short stress_lengths_lv[8] = {180,130, 210,210, 0,0, 210,210};
  992. SetupTranslator(tr,stress_lengths_lv,stress_amps_lv);
  993. tr->langopts.stress_rule = STRESSPOSN_1L;
  994. tr->langopts.spelling_stress = 1;
  995. tr->charset_a0 = charsets[4]; // ISO-8859-4
  996. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_OMIT_1_HUNDRED | NUM_DFRACTION_4 | NUM_ORDINAL_DOT;
  997. tr->langopts.stress_flags = S_FINAL_DIM_ONLY | S_FINAL_NO_2 | S_EO_CLAUSE1;
  998. }
  999. break;
  1000. case L('m','k'): // Macedonian
  1001. {
  1002. static wchar_t vowels_cyrillic[] = {0x440, // also include 'р' [R]
  1003. 0x430,0x435,0x438,0x439,0x43e,0x443,0x44b,0x44d,0x44e,0x44f,0x450,0x451,0x456,0x457,0x45d,0x45e,0};
  1004. static const unsigned char stress_amps_mk[8] = {17,17, 20,20, 20,22, 22,21 };
  1005. static const short stress_lengths_mk[8] = {180,160, 200,200, 0,0, 220,230};
  1006. SetupTranslator(tr,stress_lengths_mk,stress_amps_mk);
  1007. tr->charset_a0 = charsets[5]; // ISO-8859-5
  1008. tr->letter_groups[0] = tr->letter_groups[7] = vowels_cyrillic;
  1009. tr->langopts.stress_rule = STRESSPOSN_3R; // antipenultimate
  1010. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_AND_UNITS | NUM_OMIT_1_HUNDRED | NUM_OMIT_1_THOUSAND | NUM_DFRACTION_2;
  1011. tr->langopts.numbers2 = 0x8a; // variant numbers before thousands,milliards
  1012. }
  1013. break;
  1014. case L('m','t'): // Maltese
  1015. {
  1016. tr->charset_a0 = charsets[3]; // ISO-8859-3
  1017. tr->langopts.param[LOPT_REGRESSIVE_VOICING] = 0x100; // devoice at end of word
  1018. tr->langopts.stress_rule = STRESSPOSN_2R; // penultimate
  1019. tr->langopts.numbers = 1;
  1020. }
  1021. break;
  1022. case L('n','l'): // Dutch
  1023. {
  1024. static const short stress_lengths_nl[8] = {160,135, 210,210, 0, 0, 260,280};
  1025. tr->langopts.stress_rule = STRESSPOSN_1L;
  1026. tr->langopts.vowel_pause = 0x30; // ??
  1027. tr->langopts.param[LOPT_DIERESES] = 1;
  1028. tr->langopts.param[LOPT_PREFIXES] = 1;
  1029. tr->langopts.param[LOPT_REGRESSIVE_VOICING] = 0x100; // devoice at end of word
  1030. SetLetterVowel(tr,'y');
  1031. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_SWAP_TENS | NUM_OMIT_1_HUNDRED | NUM_OMIT_1_THOUSAND | NUM_ALLOW_SPACE | NUM_1900 | NUM_ORDINAL_DOT;
  1032. tr->langopts.ordinal_indicator = "e";
  1033. tr->langopts.stress_flags = S_FIRST_PRIMARY;
  1034. memcpy(tr->stress_lengths,stress_lengths_nl,sizeof(tr->stress_lengths));
  1035. }
  1036. break;
  1037. case L('n','o'): // Norwegian
  1038. {
  1039. static const short stress_lengths_no[8] = {160,140, 200,200, 0,0, 220,230};
  1040. SetupTranslator(tr,stress_lengths_no,NULL);
  1041. tr->langopts.stress_rule = STRESSPOSN_1L;
  1042. SetLetterVowel(tr,'y');
  1043. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_HUNDRED_AND | NUM_ALLOW_SPACE | NUM_1900 | NUM_ORDINAL_DOT;
  1044. }
  1045. break;
  1046. case L('o','m'):
  1047. {
  1048. static const unsigned char stress_amps_om[] = {18,15, 20,20, 20,22, 22,22 };
  1049. static const short stress_lengths_om[8] = {200,200, 200,200, 0,0, 200,200};
  1050. SetupTranslator(tr,stress_lengths_om,stress_amps_om);
  1051. tr->langopts.stress_rule = STRESSPOSN_2R;
  1052. tr->langopts.stress_flags = S_FINAL_DIM_ONLY | S_FINAL_NO_2 | 0x80000;
  1053. }
  1054. break;
  1055. case L('p','l'): // Polish
  1056. {
  1057. static const short stress_lengths_pl[8] = {160, 190, 175, 175, 0, 0, 200, 210};
  1058. static const unsigned char stress_amps_pl[8] = {17,13, 19,19, 20,22, 22,21 }; // 'diminished' is used to mark a quieter, final unstressed syllable
  1059. SetupTranslator(tr,stress_lengths_pl,stress_amps_pl);
  1060. tr->charset_a0 = charsets[2]; // ISO-8859-2
  1061. tr->langopts.stress_rule = STRESSPOSN_2R;
  1062. tr->langopts.stress_flags = S_FINAL_DIM_ONLY; // mark unstressed final syllables as diminished
  1063. tr->langopts.param[LOPT_REGRESSIVE_VOICING] = 0x9;
  1064. tr->langopts.max_initial_consonants = 7; // for example: wchrzczony :)
  1065. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_ALLOW_SPACE | NUM_DFRACTION_2;
  1066. tr->langopts.numbers2 = NUM2_THOUSANDS_VAR3;
  1067. tr->langopts.param[LOPT_COMBINE_WORDS] = 4 + 0x100; // combine 'nie' (marked with $alt2) with some 1-syllable (and 2-syllable) words (marked with $alt)
  1068. SetLetterVowel(tr,'y');
  1069. }
  1070. break;
  1071. case L('p','t'): // Portuguese
  1072. {
  1073. static const short stress_lengths_pt[8] = {170, 115, 210, 240, 0, 0, 260, 280};
  1074. static const unsigned char stress_amps_pt[8] = {16,11, 19,21, 20,22, 22,21 }; // 'diminished' is used to mark a quieter, final unstressed syllable
  1075. SetupTranslator(tr,stress_lengths_pt,stress_amps_pt);
  1076. tr->langopts.length_mods0 = tr->langopts.length_mods; // don't lengthen vowels in the last syllable
  1077. tr->langopts.stress_rule = STRESSPOSN_1R; // stress on final syllable
  1078. tr->langopts.stress_flags = S_FINAL_DIM_ONLY | S_FINAL_NO_2 | S_INITIAL_2 | S_PRIORITY_STRESS;
  1079. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_DFRACTION_2 | NUM_HUNDRED_AND | NUM_AND_UNITS | NUM_ROMAN;
  1080. tr->langopts.numbers2 = NUM2_MULTIPLE_ORDINAL | NUM2_NO_TEEN_ORDINALS;
  1081. SetLetterVowel(tr,'y');
  1082. ResetLetterBits(tr,0x2);
  1083. SetLetterBits(tr,1,"bcdfgjkmnpqstvxz"); // B hard consonants, excluding h,l,r,w,y
  1084. tr->langopts.param[LOPT_ALT] = 2; // call ApplySpecialAttributes2() if a word has $alt or $alt2
  1085. }
  1086. break;
  1087. case L('r','o'): // Romanian
  1088. {
  1089. static const short stress_lengths_ro[8] = {170, 170, 180, 180, 0, 0, 240, 260};
  1090. static const unsigned char stress_amps_ro[8] = {15,13, 18,18, 20,22, 22,21 };
  1091. SetupTranslator(tr,stress_lengths_ro,stress_amps_ro);
  1092. tr->langopts.stress_rule = STRESSPOSN_2R;
  1093. tr->langopts.stress_flags = S_FINAL_STRESS_C + S_FINAL_DIM_ONLY;
  1094. tr->charset_a0 = charsets[2]; // ISO-8859-2
  1095. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_ALLOW_SPACE | NUM_DFRACTION_3 | NUM_AND_UNITS | NUM_ROMAN;
  1096. tr->langopts.numbers2 = 0x1e; // variant numbers before all thousandplex
  1097. }
  1098. break;
  1099. case L('r','u'): // Russian
  1100. Translator_Russian(tr);
  1101. break;
  1102. case L('r','w'): // Kiryarwanda
  1103. {
  1104. tr->langopts.stress_rule = STRESSPOSN_2R;
  1105. tr->langopts.stress_flags = S_FINAL_DIM_ONLY | S_FINAL_NO_2;
  1106. tr->langopts.length_mods0 = tr->langopts.length_mods; // don't lengthen vowels in the last syllable
  1107. tr->langopts.numbers = NUM_HUNDRED_AND | NUM_AND_UNITS | NUM_DFRACTION_2 | NUM_AND_HUNDRED;
  1108. tr->langopts.numbers2 = 0x200; // say "thousands" before its number
  1109. }
  1110. break;
  1111. case L('s','k'): // Slovak
  1112. case L('c','s'): // Czech
  1113. {
  1114. static const char *sk_voiced = "bdgjlmnrvwzaeiouy";
  1115. SetupTranslator(tr,stress_lengths_sk,stress_amps_sk);
  1116. tr->charset_a0 = charsets[2]; // ISO-8859-2
  1117. tr->langopts.stress_rule = STRESSPOSN_1L;
  1118. tr->langopts.stress_flags = S_FINAL_DIM_ONLY | S_FINAL_NO_2;
  1119. tr->langopts.param[LOPT_REGRESSIVE_VOICING] = 0x3;
  1120. tr->langopts.max_initial_consonants = 5;
  1121. tr->langopts.spelling_stress = 1;
  1122. tr->langopts.param[LOPT_COMBINE_WORDS] = 4; // combine some prepositions with the following word
  1123. tr->langopts.numbers = NUM_OMIT_1_HUNDRED | NUM_DFRACTION_2 | NUM_ROMAN;
  1124. tr->langopts.numbers2 = NUM2_THOUSANDS_VAR2;
  1125. tr->langopts.thousands_sep = STRESSPOSN_1L; //no thousands separator
  1126. tr->langopts.decimal_sep = ',';
  1127. if(name2 == L('c','s'))
  1128. {
  1129. tr->langopts.numbers2 = 0x108; // variant numbers before milliards
  1130. }
  1131. SetLetterVowel(tr,'y');
  1132. SetLetterVowel(tr,'r');
  1133. ResetLetterBits(tr,0x20);
  1134. SetLetterBits(tr,5,sk_voiced);
  1135. }
  1136. break;
  1137. case L('s','i'): // Sinhala
  1138. {
  1139. SetupTranslator(tr,stress_lengths_ta,stress_amps_ta);
  1140. tr->langopts.length_mods0 = tr->langopts.length_mods; // don't lengthen vowels in the last syllable
  1141. tr->langopts.stress_rule = STRESSPOSN_1L;
  1142. tr->langopts.stress_flags = S_FINAL_DIM_ONLY | S_FINAL_NO_2;
  1143. tr->langopts.spelling_stress = 1;
  1144. tr->letter_bits_offset = OFFSET_SINHALA;
  1145. memset(tr->letter_bits,0,sizeof(tr->letter_bits));
  1146. SetLetterBitsRange(tr,LETTERGP_A,0x05,0x16); // vowel letters
  1147. SetLetterBitsRange(tr,LETTERGP_A,0x4a,0x73); // + vowel signs, and virama
  1148. SetLetterBitsRange(tr,LETTERGP_B,0x4a,0x73); // vowel signs, and virama
  1149. SetLetterBitsRange(tr,LETTERGP_C,0x1a,0x46); // the main consonant range
  1150. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 1; // disable check for unpronouncable words
  1151. tr->langopts.suffix_add_e = tr->letter_bits_offset + 0x4a; //virama
  1152. tr->langopts.numbers = NUM_OMIT_1_THOUSAND | NUM_SINGLE_STRESS_L | NUM_DFRACTION_7;
  1153. tr->langopts.numbers2 = NUM2_PERCENT_BEFORE;
  1154. tr->langopts.break_numbers = 0x14aa8; // for languages which have numbers for 100,000 and 100,00,000, eg Hindi
  1155. }
  1156. break;
  1157. case L('s','l'): // Slovenian
  1158. tr->charset_a0 = charsets[2]; // ISO-8859-2
  1159. tr->langopts.stress_rule = STRESSPOSN_2R; // Temporary
  1160. tr->langopts.stress_flags = S_NO_AUTO_2;
  1161. tr->langopts.param[LOPT_REGRESSIVE_VOICING] = 0x103;
  1162. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 0x76; // [v] don't count this character at start of word
  1163. tr->letter_bits['r'] |= 0x80; // add 'r' to letter group 7, vowels for Unpronouncable test
  1164. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_ALLOW_SPACE | NUM_SWAP_TENS | NUM_OMIT_1_HUNDRED | NUM_DFRACTION_2 | NUM_ORDINAL_DOT | NUM_ROMAN;
  1165. tr->langopts.numbers2 = 0x100; // plural forms of millions etc
  1166. tr->langopts.thousands_sep = ' '; // don't allow dot as thousands separator
  1167. break;
  1168. case L('s','q'): // Albanian
  1169. {
  1170. static const short stress_lengths_sq[8] = {150, 150, 180, 180, 0, 0, 300, 300};
  1171. static const unsigned char stress_amps_sq[8] = {16,12, 16,16, 20,20, 21,19 };
  1172. SetupTranslator(tr,stress_lengths_sq,stress_amps_sq);
  1173. tr->langopts.stress_rule = STRESSPOSN_2R;
  1174. tr->langopts.stress_flags = S_FINAL_DIM_ONLY | S_FINAL_NO_2 | S_FINAL_STRESS_C;
  1175. SetLetterVowel(tr,'y');
  1176. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_HUNDRED_AND | NUM_AND_UNITS | NUM_DFRACTION_4;
  1177. tr->langopts.accents = 2; // "capital" after letter name
  1178. }
  1179. break;
  1180. case L('s','v'): // Swedish
  1181. {
  1182. static const unsigned char stress_amps_sv[] = {16,16, 20,20, 20,22, 22,21 };
  1183. static const short stress_lengths_sv[8] = {160,135, 220,220, 0,0, 250,280};
  1184. SetupTranslator(tr,stress_lengths_sv,stress_amps_sv);
  1185. tr->langopts.stress_rule = STRESSPOSN_1L;
  1186. SetLetterVowel(tr,'y');
  1187. tr->langopts.numbers = NUM_SINGLE_STRESS | NUM_DECIMAL_COMMA | NUM_ALLOW_SPACE | NUM_1900;
  1188. tr->langopts.accents = 1;
  1189. }
  1190. break;
  1191. case L('s','w'): // Swahili
  1192. case L('t','n'): // Setswana
  1193. {
  1194. static const short stress_lengths_sw[8] = {160, 170, 200, 200, 0, 0, 320, 340};
  1195. static const unsigned char stress_amps_sw[] = {16,12, 19,19, 20,22, 22,21 };
  1196. SetupTranslator(tr,stress_lengths_sw,stress_amps_sw);
  1197. tr->langopts.length_mods0 = tr->langopts.length_mods; // don't lengthen vowels in the last syllable
  1198. tr->langopts.vowel_pause = 1;
  1199. tr->langopts.stress_rule = STRESSPOSN_2R;
  1200. tr->langopts.stress_flags = S_FINAL_DIM_ONLY | S_FINAL_NO_2;
  1201. tr->langopts.numbers = NUM_AND_UNITS | NUM_HUNDRED_AND | NUM_SINGLE_AND | NUM_OMIT_1_HUNDRED;
  1202. tr->langopts.break_numbers = 0x49249268; // for languages which have numbers for 100,000 and 1,000,000
  1203. }
  1204. break;
  1205. case L('t','a'): // Tamil
  1206. case L('m','l'): // Malayalam
  1207. case L('k','n'): // Kannada
  1208. case L('m','r'): // Marathi
  1209. case L('t','e'): // Telugu
  1210. {
  1211. SetupTranslator(tr,stress_lengths_ta2, stress_amps_ta);
  1212. tr->langopts.length_mods0 = tr->langopts.length_mods; // don't lengthen vowels in the last syllable
  1213. tr->langopts.stress_rule = STRESSPOSN_1L;
  1214. tr->langopts.stress_flags = S_FINAL_DIM_ONLY; // use 'diminished' for unstressed final syllable
  1215. tr->langopts.spelling_stress = 1;
  1216. tr->langopts.break_numbers = 0x14a8; // 1000, 100,000 10,000,000
  1217. if(name2 == L('t','a'))
  1218. {
  1219. SetupTranslator(tr,stress_lengths_ta, NULL);
  1220. tr->letter_bits_offset = OFFSET_TAMIL;
  1221. tr->langopts.numbers = NUM_OMIT_1_THOUSAND ;
  1222. tr->langopts.param[LOPT_WORD_MERGE] = 1; // don't break vowels betwen words
  1223. }
  1224. else
  1225. if(name2 == L('m','r'))
  1226. {
  1227. tr->letter_bits_offset = OFFSET_DEVANAGARI;
  1228. }
  1229. else
  1230. if(name2 == L('m','l'))
  1231. {
  1232. tr->letter_bits_offset = OFFSET_MALAYALAM;
  1233. tr->langopts.numbers = NUM_OMIT_1_THOUSAND;
  1234. }
  1235. else
  1236. if(name2 == L('k','n'))
  1237. {
  1238. tr->letter_bits_offset = OFFSET_KANNADA;
  1239. tr->langopts.numbers = 0x1;
  1240. }
  1241. else
  1242. if(name2 == L('t','e'))
  1243. {
  1244. tr->letter_bits_offset = OFFSET_TELUGU;
  1245. tr->langopts.numbers = 0x1;
  1246. }
  1247. SetIndicLetters(tr); // call this after setting OFFSET_
  1248. SetLetterBitsRange(tr,LETTERGP_B,0x4e,0x4e); // chillu-virama (unofficial)
  1249. }
  1250. break;
  1251. #ifdef deleted
  1252. case L('t','h'): // Thai
  1253. {
  1254. static const short stress_lengths_th[8] = {230,150, 230,230, 230,0, 230,250};
  1255. static const unsigned char stress_amps_th[] = {22,16, 22,22, 22,22, 22,22 };
  1256. SetupTranslator(tr,stress_lengths_th,stress_amps_th);
  1257. tr->langopts.stress_rule = 0; // stress on final syllable of a "word"
  1258. tr->langopts.stress_flags = S_NO_DIM; // don't automatically set diminished stress (may be set in the intonation module)
  1259. tr->langopts.tone_language = 1; // Tone language, use CalcPitches_Tone() rather than CalcPitches()
  1260. tr->langopts.length_mods0 = tr->langopts.length_mods; // don't lengthen vowels in the last syllable
  1261. // tr->langopts.tone_numbers = 1; // a number after letters indicates a tone number (eg. pinyin or jyutping)
  1262. tr->langopts.word_gap = 0x21; // length of a final vowel is less dependent on the next consonant, don't merge consonant with next word
  1263. }
  1264. break;
  1265. #endif
  1266. case L('t','r'): // Turkish
  1267. case L('a','z'): // Azerbaijan
  1268. {
  1269. static const unsigned char stress_amps_tr[8] = {18,16, 20,21, 20,21, 21,20 };
  1270. static const short stress_lengths_tr[8] = {190,180, 200,230, 0,0, 240,250};
  1271. SetupTranslator(tr,stress_lengths_tr,stress_amps_tr);
  1272. tr->charset_a0 = charsets[9]; // ISO-8859-9 - Latin5
  1273. tr->langopts.stress_rule = 7; // stress on the last syllable, before any explicitly unstressed syllable
  1274. tr->langopts.stress_flags = S_NO_AUTO_2; //no automatic secondary stress
  1275. tr->langopts.param[LOPT_SUFFIX] = 1;
  1276. if(name2 == L('a','z'))
  1277. {
  1278. tr->langopts.numbers = NUM_SINGLE_STRESS | NUM_DECIMAL_COMMA | NUM_ALLOW_SPACE | NUM_OMIT_1_HUNDRED | NUM_OMIT_1_THOUSAND | NUM_DFRACTION_2;
  1279. }
  1280. else
  1281. {
  1282. tr->langopts.numbers = NUM_SINGLE_STRESS | NUM_DECIMAL_COMMA | NUM_OMIT_1_HUNDRED | NUM_OMIT_1_THOUSAND | NUM_DFRACTION_2;
  1283. }
  1284. tr->langopts.max_initial_consonants = 2;
  1285. }
  1286. break;
  1287. case L('t','t'): // Tatar
  1288. {
  1289. SetCyrillicLetters(tr);
  1290. SetupTranslator(tr,stress_lengths_fr,stress_amps_fr);
  1291. tr->langopts.stress_rule = STRESSPOSN_1R; // stress on final syllable
  1292. tr->langopts.stress_flags = S_NO_AUTO_2; //no automatic secondary stress
  1293. tr->langopts.numbers = NUM_SINGLE_STRESS | NUM_DECIMAL_COMMA | NUM_OMIT_1_HUNDRED | NUM_OMIT_1_THOUSAND | NUM_DFRACTION_4;
  1294. }
  1295. break;
  1296. case L('u','k'): // Ukrainian
  1297. {
  1298. SetCyrillicLetters(tr);
  1299. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 0x432; // [v] don't count this character at start of word
  1300. }
  1301. break;
  1302. case L('u','r'): // Urdu
  1303. {
  1304. tr->letter_bits_offset = OFFSET_ARABIC;
  1305. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 1; // disable check for unpronouncable words
  1306. tr->langopts.numbers = NUM_SWAP_TENS;
  1307. tr->langopts.break_numbers = 0x52a8; // for languages which have numbers for 100,000 and 100,00,000, eg Hindi
  1308. }
  1309. break;
  1310. case L('v','i'): // Vietnamese
  1311. {
  1312. static const short stress_lengths_vi[8] = {150, 150, 180, 180, 210, 230, 230, 240};
  1313. static const unsigned char stress_amps_vi[] = {16,16, 16,16, 22,22, 22,22 };
  1314. static wchar_t vowels_vi[] = {
  1315. 0x61, 0xe0, 0xe1, 0x1ea3, 0xe3, 0x1ea1, // a
  1316. 0x103, 0x1eb1, 0x1eaf, 0x1eb3, 0x1eb5, 0x1eb7, // ă
  1317. 0xe2, 0x1ea7, 0x1ea5, 0x1ea9, 0x1eab, 0x1ead, // â
  1318. 0x65, 0xe8, 0xe9, 0x1ebb, 0x1ebd, 0x1eb9, // e
  1319. 0xea, 0x1ec1, 0x1ebf, 0x1ec3, 0x1ec5, 0x1ec7, // i
  1320. 0x69, 0xec, 0xed, 0x1ec9, 0x129, 0x1ecb, // i
  1321. 0x6f, 0xf2, 0xf3, 0x1ecf, 0xf5, 0x1ecd, // o
  1322. 0xf4, 0x1ed3, 0x1ed1, 0x1ed5, 0x1ed7, 0x1ed9, // ô
  1323. 0x1a1, 0x1edd, 0x1edb, 0x1edf, 0x1ee1, 0x1ee3, // ơ
  1324. 0x75, 0xf9, 0xfa, 0x1ee7, 0x169, 0x1ee5, // u
  1325. 0x1b0, 0x1eeb, 0x1ee9, 0x1eed, 0x1eef, 0x1ef1, // ư
  1326. 0x79, 0x1ef3, 0xfd, 0x1ef7, 0x1ef9, 0x1ef5, 0 }; // y
  1327. SetupTranslator(tr,stress_lengths_vi,stress_amps_vi);
  1328. tr->langopts.length_mods0 = tr->langopts.length_mods; // don't lengthen vowels in the last syllable
  1329. tr->langopts.stress_rule = STRESSPOSN_1L;
  1330. tr->langopts.word_gap = 0x21; // length of a final vowel is less dependent on the next consonant, don't merge consonant with next word
  1331. // tr->langopts.vowel_pause = 4;
  1332. tr->letter_groups[0] = tr->letter_groups[7] = vowels_vi;
  1333. tr->langopts.tone_language = 1; // Tone language, use CalcPitches_Tone() rather than CalcPitches()
  1334. tr->langopts.unstressed_wd1 = 2;
  1335. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_HUNDRED_AND_DIGIT | NUM_DFRACTION_4 | NUM_ZERO_HUNDRED;
  1336. }
  1337. break;
  1338. case L('w','o'):
  1339. tr->langopts.stress_rule = STRESSPOSN_1L;
  1340. tr->langopts.numbers = NUM_AND_UNITS | NUM_HUNDRED_AND | NUM_OMIT_1_HUNDRED | NUM_OMIT_1_THOUSAND | NUM_SINGLE_STRESS;
  1341. break;
  1342. case L('z','h'):
  1343. case L_zhy:
  1344. {
  1345. static const short stress_lengths_zh[8] = {230,150, 230,230, 230,0, 240,250}; // 1=tone5. end-of-sentence, 6=tone 1&4, 7=tone 2&3
  1346. static const unsigned char stress_amps_zh[] = {22,16, 22,22, 22,22, 22,22 };
  1347. SetupTranslator(tr,stress_lengths_zh,stress_amps_zh);
  1348. tr->langopts.stress_rule = STRESSPOSN_1R; // stress on final syllable of a "word"
  1349. tr->langopts.stress_flags = S_NO_DIM; // don't automatically set diminished stress (may be set in the intonation module)
  1350. tr->langopts.vowel_pause = 0;
  1351. tr->langopts.tone_language = 1; // Tone language, use CalcPitches_Tone() rather than CalcPitches()
  1352. tr->langopts.length_mods0 = tr->langopts.length_mods; // don't lengthen vowels in the last syllable
  1353. tr->langopts.tone_numbers = 1; // a number after letters indicates a tone number (eg. pinyin or jyutping)
  1354. tr->langopts.ideographs = 1;
  1355. tr->langopts.word_gap = 0x21; // length of a final vowel is less dependent on the next consonant, don't merge consonant with next word
  1356. if(name2 == L('z','h'))
  1357. {
  1358. tr->langopts.textmode = 1;
  1359. tr->langopts.listx = 1; // compile zh_listx after zh_list
  1360. }
  1361. }
  1362. break;
  1363. default:
  1364. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 1; // disable check for unpronouncable words
  1365. break;
  1366. }
  1367. tr->translator_name = name2;
  1368. if(tr->langopts.numbers & NUM_DECIMAL_COMMA)
  1369. {
  1370. // use . and ; for thousands and decimal separators
  1371. tr->langopts.thousands_sep = '.';
  1372. tr->langopts.decimal_sep = ',';
  1373. }
  1374. if(tr->langopts.numbers & NUM_THOUS_SPACE)
  1375. {
  1376. tr->langopts.thousands_sep = 0; // don't allow thousands separator, except space
  1377. }
  1378. return(tr);
  1379. } // end of SelectTranslator
  1380. //**********************************************************************************************************
  1381. static void Translator_Russian(Translator *tr)
  1382. {//===========================================
  1383. static const unsigned char stress_amps_ru[] = {16,16, 18,18, 20,24, 24,22 };
  1384. static const short stress_lengths_ru[8] = {150,140, 220,220, 0,0, 260,280};
  1385. static const char ru_ivowels2[] = {0x2c,0x15,0x18,0x2e,0x2f,0}; // add more vowels to letter group Y (iotated vowels & soft-sign)
  1386. SetupTranslator(tr,stress_lengths_ru,stress_amps_ru);
  1387. SetCyrillicLetters(tr);
  1388. SetLetterBits(tr,6,ru_ivowels2);
  1389. tr->langopts.param[LOPT_UNPRONOUNCABLE] = 0x432; // [v] don't count this character at start of word
  1390. tr->langopts.param[LOPT_REGRESSIVE_VOICING] = 1;
  1391. tr->langopts.param[LOPT_REDUCE] = 2;
  1392. tr->langopts.stress_rule = 5;
  1393. tr->langopts.stress_flags = S_NO_AUTO_2;
  1394. tr->langopts.numbers = NUM_DECIMAL_COMMA | NUM_OMIT_1_HUNDRED;
  1395. tr->langopts.numbers2 = 0x2 + NUM2_THOUSANDS_VAR1; // variant numbers before thousands
  1396. tr->langopts.phoneme_change = 1;
  1397. tr->langopts.testing = 2;
  1398. } // end of Translator_Russian
  1399. /*
  1400. typedef struct {
  1401. int flags;
  1402. unsigned char stress; // stress level of this vowel
  1403. unsigned char stress_highest; // the highest stress level of a vowel in this word
  1404. unsigned char n_vowels; // number of vowels in the word
  1405. unsigned char vowel_this; // syllable number of this vowel (counting from 1)
  1406. unsigned char vowel_stressed; // syllable number of the highest stressed vowel
  1407. } CHANGEPH;
  1408. */
  1409. #ifdef RUSSIAN2
  1410. // This is now done in the phoneme data, ph_russian
  1411. int ChangePhonemes_ru(Translator *tr, PHONEME_LIST2 *phlist, int n_ph, int index, PHONEME_TAB *ph, CHANGEPH *ch)
  1412. {//=============================================================================================================
  1413. // Called for each phoneme in the phoneme list, to allow a language to make changes
  1414. // ph The current phoneme
  1415. int variant;
  1416. int vowelix;
  1417. PHONEME_TAB *prev, *next;
  1418. if(ch->flags & 8)
  1419. return(0); // full phoneme translation has already been given
  1420. // Russian vowel softening and reduction rules
  1421. if(ph->type == phVOWEL)
  1422. {
  1423. int prestressed = ch->vowel_stressed==ch->vowel_this+1; // the next vowel after this has the main stress
  1424. #define N_VOWELS_RU 11
  1425. static unsigned int vowels_ru[N_VOWELS_RU] = {'a','V','O','I',PH('I','#'),PH('E','#'),PH('E','2'),
  1426. PH('V','#'),PH('I','3'),PH('I','2'),PH('E','3')};
  1427. static unsigned int vowel_replace[N_VOWELS_RU][6] = {
  1428. // stressed, soft, soft-stressed, j+stressed, j+soft, j+soft-stressed
  1429. /*0*/ {'A', 'I', PH('j','a'), 'a', 'a', 'a'}, // a Uses 3,4,5 columns.
  1430. /*1*/ {'A', 'V', PH('j','a'), 'a', 'V', 'a'}, // V Uses 3,4,5 columns.
  1431. /*2*/ {'o', '8', '8', 'o', '8', '8'}, // O
  1432. /*3*/ {'i', 'I', 'i', 'a', 'I', 'a'}, // I Uses 3,4,5 columns.
  1433. /*4*/ {'i', PH('I','#'), 'i', 'i', PH('I','#'), 'i'}, // I#
  1434. /*5*/ {'E', PH('E','#'), 'E', 'e', PH('E','#'), 'e'}, // E#
  1435. /*6*/ {'E', PH('E','2'), 'E', 'e', PH('E','2'), 'e'}, // E2 Uses 3,4,5 columns.
  1436. /*7*/ {PH('j','a'), 'V', PH('j','a'), 'A', 'V', 'A'}, // V#
  1437. /*8*/ {PH('j','a'), 'I', PH('j','a'), 'e', 'I', 'e'}, // I3 Uses 3,4,5 columns.
  1438. /*9*/ {'e', 'I', 'e', 'e', 'I', 'e'}, // I2
  1439. /*10*/ {'e', PH('E', '2'), 'e', 'e', PH('E','2'), 'e'} // E3
  1440. };
  1441. prev = phoneme_tab[phlist[index-1].phcode];
  1442. next = phoneme_tab[phlist[index+1].phcode];
  1443. // lookup the vowel name to get an index into the vowel_replace[] table
  1444. for(vowelix=0; vowelix<N_VOWELS_RU; vowelix++)
  1445. {
  1446. if(vowels_ru[vowelix] == ph->mnemonic)
  1447. break;
  1448. }
  1449. if(vowelix == N_VOWELS_RU)
  1450. return(0);
  1451. if(prestressed)
  1452. {
  1453. if((vowelix==6)&&(prev->mnemonic=='j'))
  1454. vowelix=8;
  1455. if(vowelix==1)
  1456. vowelix=0;
  1457. if(vowelix==4)
  1458. vowelix=3;
  1459. if(vowelix==6)
  1460. vowelix=5;
  1461. if(vowelix==7)
  1462. vowelix=8;
  1463. if(vowelix==10)
  1464. vowelix=9;
  1465. }
  1466. // do we need a variant of this vowel, depending on the stress and adjacent phonemes ?
  1467. variant = -1;
  1468. int stressed = ch->flags & 2;
  1469. int soft=prev->phflags & phPALATAL;
  1470. if (soft && stressed)
  1471. variant = 2; else
  1472. if (stressed)
  1473. variant = 0; else
  1474. if (soft)
  1475. variant = 1;
  1476. if(variant >= 0)
  1477. {
  1478. if(prev->mnemonic == 'j')
  1479. variant += 3;
  1480. phlist[index].phcode = PhonemeCode(vowel_replace[vowelix][variant]);
  1481. }
  1482. else
  1483. {
  1484. phlist[index].phcode = PhonemeCode(vowels_ru[vowelix]);
  1485. }
  1486. }
  1487. return(0);
  1488. }
  1489. #endif