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phonemelist.c 16KB

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  1. /*
  2. * Copyright (C) 2005 to 2014 by Jonathan Duddington
  3. * email: [email protected]
  4. * Copyright (C) 2015-2016 Reece H. Dunn
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 3 of the License, or
  9. * (at your option) any later version.
  10. *
  11. * This program is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; if not, see: <http://www.gnu.org/licenses/>.
  18. */
  19. #include "config.h"
  20. #include <stdint.h>
  21. #include <stdio.h>
  22. #include <stdlib.h>
  23. #include <string.h>
  24. #include <espeak-ng/espeak_ng.h>
  25. #include <espeak/speak_lib.h>
  26. #include "speech.h"
  27. #include "phoneme.h"
  28. #include "synthesize.h"
  29. #include "translate.h"
  30. const unsigned char pause_phonemes[8] = {
  31. 0, phonPAUSE_VSHORT, phonPAUSE_SHORT, phonPAUSE, phonPAUSE_LONG, phonGLOTTALSTOP, phonPAUSE_LONG, phonPAUSE_LONG
  32. };
  33. extern int n_ph_list2;
  34. extern PHONEME_LIST2 ph_list2[N_PHONEME_LIST]; // first stage of text->phonemes
  35. static int SubstitutePhonemes(PHONEME_LIST *plist_out)
  36. {
  37. // Copy the phonemes list and perform any substitutions that are required for the
  38. // current voice
  39. int ix;
  40. int k;
  41. int replace_flags;
  42. int n_plist_out = 0;
  43. int word_end;
  44. PHONEME_LIST2 *plist2;
  45. PHONEME_TAB *next = NULL;
  46. for (ix = 0; (ix < n_ph_list2) && (n_plist_out < N_PHONEME_LIST); ix++) {
  47. plist2 = &ph_list2[ix];
  48. // don't do any substitution if the language has been temporarily changed
  49. if (!(plist2->synthflags & SFLAG_SWITCHED_LANG)) {
  50. if (ix < (n_ph_list2 -1))
  51. next = phoneme_tab[ph_list2[ix+1].phcode];
  52. word_end = 0;
  53. if ((plist2+1)->sourceix || ((next != 0) && (next->type == phPAUSE)))
  54. word_end = 1; // this phoneme is the end of a word
  55. // check whether a Voice has specified that we should replace this phoneme
  56. for (k = 0; k < n_replace_phonemes; k++) {
  57. if (plist2->phcode == replace_phonemes[k].old_ph) {
  58. replace_flags = replace_phonemes[k].type;
  59. if ((replace_flags & 1) && (word_end == 0))
  60. continue; // this replacement only occurs at the end of a word
  61. if ((replace_flags & 2) && ((plist2->stresslevel & 0x7) > 3))
  62. continue; // this replacement doesn't occur in stressed syllables
  63. if ((replace_flags & 4) && (plist2->sourceix == 0))
  64. continue; // this replacement only occurs at the start of a word
  65. // substitute the replacement phoneme
  66. plist2->phcode = replace_phonemes[k].new_ph;
  67. if ((plist2->stresslevel > 1) && (phoneme_tab[plist2->phcode]->phflags & phUNSTRESSED))
  68. plist2->stresslevel = 0; // the replacement must be unstressed
  69. break;
  70. }
  71. }
  72. if (plist2->phcode == 0)
  73. continue; // phoneme has been replaced by NULL, so don't copy it
  74. }
  75. // copy phoneme into the output list
  76. memcpy(&plist_out[n_plist_out], plist2, sizeof(PHONEME_LIST2));
  77. plist_out[n_plist_out].ph = phoneme_tab[plist2->phcode];
  78. plist_out[n_plist_out].type = plist_out[n_plist_out].ph->type;
  79. n_plist_out++;
  80. }
  81. return n_plist_out;
  82. }
  83. void MakePhonemeList(Translator *tr, int post_pause, int start_sentence)
  84. {
  85. int ix = 0;
  86. int j;
  87. int insert_ph = 0;
  88. PHONEME_LIST *phlist;
  89. PHONEME_TAB *ph;
  90. PHONEME_TAB *next, *next2;
  91. int unstress_count = 0;
  92. int word_stress = 0;
  93. int current_phoneme_tab;
  94. int max_stress;
  95. int voicing;
  96. int regression;
  97. int end_sourceix;
  98. int alternative;
  99. int delete_count;
  100. int word_start;
  101. int inserted;
  102. int deleted;
  103. PHONEME_DATA phdata;
  104. int n_ph_list3;
  105. PHONEME_LIST *plist3;
  106. PHONEME_LIST *plist3_inserted = NULL;
  107. PHONEME_LIST ph_list3[N_PHONEME_LIST];
  108. PHONEME_LIST2 *plist2;
  109. WORD_PH_DATA worddata;
  110. memset(&worddata, 0, sizeof(worddata));
  111. plist2 = ph_list2;
  112. phlist = phoneme_list;
  113. end_sourceix = plist2[n_ph_list2-1].sourceix;
  114. // is the last word of the clause unstressed ?
  115. max_stress = 0;
  116. for (j = n_ph_list2-3; j >= 0; j--) {
  117. // start with the last phoneme (before the terminating pauses) and move backwards
  118. if ((plist2[j].stresslevel & 0x7f) > max_stress)
  119. max_stress = plist2[j].stresslevel & 0x7f;
  120. if (plist2[j].sourceix != 0)
  121. break;
  122. }
  123. if (max_stress < 4) {
  124. // the last word is unstressed, look for a previous word that can be stressed
  125. while (--j >= 0) {
  126. if (plist2[j].synthflags & SFLAG_PROMOTE_STRESS) { // dictionary flags indicated that this stress can be promoted
  127. plist2[j].stresslevel = 4; // promote to stressed
  128. break;
  129. }
  130. if (plist2[j].stresslevel >= 4) {
  131. // found a stressed syllable, so stop looking
  132. break;
  133. }
  134. }
  135. }
  136. // look for switch of phoneme tables
  137. delete_count = 0;
  138. current_phoneme_tab = tr->phoneme_tab_ix;
  139. for (j = 0; j < n_ph_list2; j++) {
  140. if (current_phoneme_tab != tr->phoneme_tab_ix)
  141. plist2[j].synthflags |= SFLAG_SWITCHED_LANG;
  142. if (delete_count > 0)
  143. memcpy(&plist2[j-delete_count], &plist2[j], sizeof(plist2[0]));
  144. if (plist2[j].phcode == phonSWITCH) {
  145. if ((!(plist2[j].synthflags & SFLAG_EMBEDDED)) && (
  146. (plist2[j].tone_ph == current_phoneme_tab) ||
  147. (plist2[j+1].phcode == phonSWITCH) ||
  148. ((plist2[j+1].phcode == phonPAUSE) && (plist2[j+2].phcode == phonSWITCH))
  149. )) {
  150. // delete this phonSWITCH if it's switching to the current phoneme table, or
  151. // delete this phonSWITCH if its followed by another phonSWITCH
  152. delete_count++;
  153. } else
  154. current_phoneme_tab = plist2[j].tone_ph;
  155. }
  156. }
  157. n_ph_list2 -= delete_count;
  158. if ((regression = tr->langopts.param[LOPT_REGRESSIVE_VOICING]) != 0) {
  159. // set consonant clusters to all voiced or all unvoiced
  160. // Regressive
  161. int type;
  162. int stop_propagation = 0;
  163. voicing = 0;
  164. for (j = n_ph_list2-1; j >= 0; j--) {
  165. ph = phoneme_tab[plist2[j].phcode];
  166. if (ph == NULL)
  167. continue;
  168. if (plist2[j].synthflags & SFLAG_SWITCHED_LANG) {
  169. stop_propagation = 0;
  170. voicing = 0;
  171. if (regression & 0x100)
  172. voicing = 1; // word-end devoicing
  173. continue;
  174. }
  175. type = ph->type;
  176. if (regression & 0x2) {
  177. // [v] amd [v;] don't cause regression, or [R^]
  178. if (((ph->mnemonic & 0xff) == 'v') || ((ph->mnemonic & 0xff) == 'R')) {
  179. stop_propagation = 1;
  180. if (regression & 0x10)
  181. voicing = 0;
  182. }
  183. }
  184. if ((type == phSTOP) || type == (phFRICATIVE)) {
  185. if ((voicing == 0) && (regression & 0xf))
  186. voicing = 1;
  187. else if ((voicing == 2) && (ph->end_type != 0)) // use end_type field for voicing_switch for consonants
  188. plist2[j].phcode = ph->end_type; // change to voiced equivalent
  189. } else if ((type == phVSTOP) || type == (phVFRICATIVE)) {
  190. if ((voicing == 0) && (regression & 0xf))
  191. voicing = 2;
  192. else if ((voicing == 1) && (ph->end_type != 0))
  193. plist2[j].phcode = ph->end_type; // change to unvoiced equivalent
  194. } else {
  195. if (regression & 0x8) {
  196. // LANG=Polish, propagate through liquids and nasals
  197. if ((type == phPAUSE) || (type == phVOWEL))
  198. voicing = 0;
  199. } else
  200. voicing = 0;
  201. }
  202. if (stop_propagation) {
  203. voicing = 0;
  204. stop_propagation = 0;
  205. }
  206. if (plist2[j].sourceix) {
  207. if (regression & 0x04) {
  208. // stop propagation at a word boundary
  209. voicing = 0;
  210. }
  211. if (regression & 0x100) {
  212. // devoice word-final consonants, unless propagating voiced
  213. if (voicing == 0)
  214. voicing = 1;
  215. }
  216. }
  217. }
  218. }
  219. n_ph_list3 = SubstitutePhonemes(ph_list3) - 2;
  220. for (j = 0; (j < n_ph_list3) && (ix < N_PHONEME_LIST-3);) {
  221. if (ph_list3[j].sourceix) {
  222. // start of a word
  223. int k;
  224. int nextw;
  225. word_stress = 0;
  226. // find the highest stress level in this word
  227. for (nextw = j; nextw < n_ph_list3;) {
  228. if (ph_list3[nextw].stresslevel > word_stress)
  229. word_stress = ph_list3[nextw].stresslevel;
  230. nextw++;
  231. if (ph_list3[nextw].sourceix)
  232. break; // start of the next word
  233. }
  234. for (k = j; k < nextw; k++)
  235. ph_list3[k].wordstress = word_stress;
  236. j = nextw;
  237. } else
  238. j++;
  239. }
  240. // transfer all the phonemes of the clause into phoneme_list
  241. ph = phoneme_tab[phonPAUSE];
  242. ph_list3[0].ph = ph;
  243. word_start = 1;
  244. for (j = 0; insert_ph || ((j < n_ph_list3) && (ix < N_PHONEME_LIST-3)); j++) {
  245. plist3 = &ph_list3[j];
  246. inserted = 0;
  247. deleted = 0;
  248. if (insert_ph != 0) {
  249. // we have a (linking) phoneme which we need to insert here
  250. next = phoneme_tab[plist3->phcode]; // this phoneme, i.e. after the insert
  251. // re-use the previous entry for the inserted phoneme.
  252. // That's OK because we don't look backwards from plist3 *** but CountVowelPosition() and isAfterStress does !!!
  253. j--;
  254. plist3 = plist3_inserted = &ph_list3[j];
  255. if (j > 0) {
  256. // move all previous phonemes in the word back one place
  257. int k;
  258. if (word_start > 0) {
  259. k = word_start;
  260. word_start--;
  261. } else
  262. k = 2; // No more space, don't loose the start of word mark at ph_list2[word_start]
  263. for (; k <= j; k++)
  264. memcpy(&ph_list3[k-1], &ph_list3[k], sizeof(*plist3));
  265. }
  266. memset(&plist3[0], 0, sizeof(*plist3));
  267. plist3->phcode = insert_ph;
  268. ph = phoneme_tab[insert_ph];
  269. plist3->ph = ph;
  270. insert_ph = 0;
  271. inserted = 1; // don't insert the same phoneme repeatedly
  272. } else {
  273. // otherwise get the next phoneme from the list
  274. if (plist3->sourceix != 0)
  275. word_start = j;
  276. ph = phoneme_tab[plist3->phcode];
  277. plist3[0].ph = ph;
  278. if (plist3->phcode == phonSWITCH) {
  279. // change phoneme table
  280. SelectPhonemeTable(plist3->tone_ph);
  281. }
  282. next = phoneme_tab[plist3[1].phcode]; // the phoneme after this one
  283. plist3[1].ph = next;
  284. }
  285. if (ph == NULL) continue;
  286. InterpretPhoneme(tr, 0x100, plist3, &phdata, &worddata);
  287. if ((alternative = phdata.pd_param[pd_CHANGE_NEXTPHONEME]) > 0) {
  288. ph_list3[j+1].ph = phoneme_tab[alternative];
  289. ph_list3[j+1].phcode = alternative;
  290. ph_list3[j+1].type = phoneme_tab[alternative]->type;
  291. next = phoneme_tab[alternative];
  292. }
  293. if (((alternative = phdata.pd_param[pd_INSERTPHONEME]) > 0) && (inserted == 0)) {
  294. // PROBLEM: if we insert a phoneme before a vowel then we loose the stress.
  295. PHONEME_TAB *ph2;
  296. ph2 = ph;
  297. insert_ph = plist3->phcode;
  298. ph = phoneme_tab[alternative];
  299. plist3->ph = ph;
  300. plist3->phcode = alternative;
  301. if (ph->type == phVOWEL) {
  302. plist3->synthflags |= SFLAG_SYLLABLE;
  303. if (ph2->type != phVOWEL)
  304. plist3->stresslevel = 0; // change from non-vowel to vowel, make sure it's unstressed
  305. } else
  306. plist3->synthflags &= ~SFLAG_SYLLABLE;
  307. // re-interpret the changed phoneme
  308. // But it doesn't obey a second ChangePhoneme()
  309. InterpretPhoneme(tr, 0x100, plist3, &phdata, &worddata);
  310. }
  311. if ((alternative = phdata.pd_param[pd_CHANGEPHONEME]) > 0) {
  312. PHONEME_TAB *ph2;
  313. ph2 = ph;
  314. ph = phoneme_tab[alternative];
  315. plist3->ph = ph;
  316. plist3->phcode = alternative;
  317. if (alternative == 1)
  318. deleted = 1; // NULL phoneme, discard
  319. else {
  320. if (ph->type == phVOWEL) {
  321. plist3->synthflags |= SFLAG_SYLLABLE;
  322. if (ph2->type != phVOWEL)
  323. plist3->stresslevel = 0; // change from non-vowel to vowel, make sure it's unstressed
  324. } else
  325. plist3->synthflags &= ~SFLAG_SYLLABLE;
  326. // re-interpret the changed phoneme
  327. // But it doesn't obey a second ChangePhoneme()
  328. InterpretPhoneme(tr, 0x100, plist3, &phdata, &worddata);
  329. }
  330. }
  331. if ((ph->type == phVOWEL) && (deleted == 0)) {
  332. PHONEME_LIST *p;
  333. // Check for consecutive unstressed syllables, even across word boundaries.
  334. // Do this after changing phonemes according to stress level.
  335. if (plist3->stresslevel <= 1) {
  336. // an unstressed vowel
  337. unstress_count++;
  338. if (tr->langopts.stress_flags & 0x08) {
  339. // change sequences of consecutive unstressed vowels in unstressed words to diminished stress (TEST)
  340. for (p = plist3+1; p->type != phPAUSE; p++) {
  341. if (p->type == phVOWEL) {
  342. if (p->stresslevel <= 1) {
  343. if (plist3->wordstress < 4)
  344. plist3->stresslevel = 0;
  345. if (p->wordstress < 4)
  346. p->stresslevel = 0;
  347. }
  348. break;
  349. }
  350. }
  351. } else {
  352. if ((unstress_count > 1) && ((unstress_count & 1) == 0)) {
  353. // in a sequence of unstressed syllables, reduce alternate syllables to 'diminished'
  354. // stress. But not for the last phoneme of a stressed word
  355. if ((tr->langopts.stress_flags & S_NO_DIM) || ((word_stress > 3) && ((plist3+1)->sourceix != 0))) {
  356. // An unstressed final vowel of a stressed word
  357. unstress_count = 1; // try again for next syllable
  358. } else
  359. plist3->stresslevel = 0; // change stress to 'diminished'
  360. }
  361. }
  362. } else
  363. unstress_count = 0;
  364. }
  365. if ((plist3+1)->synthflags & SFLAG_LENGTHEN) {
  366. static char types_double[] = { phFRICATIVE, phVFRICATIVE, phNASAL, phLIQUID, 0 };
  367. if ((j > 0) && (strchr(types_double, next->type))) {
  368. // lengthen this consonant by doubling it
  369. // BUT, can't insert a phoneme at position plist3[0] because it crashes PrevPh()
  370. insert_ph = next->code;
  371. (plist3+1)->synthflags ^= SFLAG_LENGTHEN;
  372. }
  373. }
  374. if ((plist3+1)->sourceix != 0) {
  375. int x;
  376. if (tr->langopts.vowel_pause && (ph->type != phPAUSE)) {
  377. if ((ph->type != phVOWEL) && (tr->langopts.vowel_pause & 0x200)) {
  378. // add a pause after a word which ends in a consonant
  379. insert_ph = phonPAUSE_NOLINK;
  380. }
  381. if (next->type == phVOWEL) {
  382. if ((x = tr->langopts.vowel_pause & 0x0c) != 0) {
  383. // break before a word which starts with a vowel
  384. if (x == 0xc)
  385. insert_ph = phonPAUSE_NOLINK;
  386. else
  387. insert_ph = phonPAUSE_VSHORT;
  388. }
  389. if ((ph->type == phVOWEL) && ((x = tr->langopts.vowel_pause & 0x03) != 0)) {
  390. // adjacent vowels over a word boundary
  391. if (x == 2)
  392. insert_ph = phonPAUSE_SHORT;
  393. else
  394. insert_ph = phonPAUSE_VSHORT;
  395. }
  396. if (((plist3+1)->stresslevel >= 4) && (tr->langopts.vowel_pause & 0x100)) {
  397. // pause before a words which starts with a stressed vowel
  398. insert_ph = phonPAUSE_SHORT;
  399. }
  400. }
  401. }
  402. if ((plist3 != plist3_inserted) && (ix > 0)) {
  403. if ((x = (tr->langopts.word_gap & 0x7)) != 0) {
  404. if ((x > 1) || ((insert_ph != phonPAUSE_SHORT) && (insert_ph != phonPAUSE_NOLINK))) {
  405. // don't reduce the pause
  406. insert_ph = pause_phonemes[x];
  407. }
  408. }
  409. if (option_wordgap > 0)
  410. insert_ph = phonPAUSE_LONG;
  411. }
  412. }
  413. next2 = phoneme_tab[plist3[2].phcode];
  414. plist3[2].ph = next2;
  415. if ((insert_ph == 0) && (phdata.pd_param[pd_APPENDPHONEME] != 0))
  416. insert_ph = phdata.pd_param[pd_APPENDPHONEME];
  417. if (deleted == 0) {
  418. phlist[ix].ph = ph;
  419. phlist[ix].type = ph->type;
  420. phlist[ix].env = PITCHfall; // default, can be changed in the "intonation" module
  421. phlist[ix].synthflags = plist3->synthflags;
  422. phlist[ix].stresslevel = plist3->stresslevel & 0xf;
  423. phlist[ix].wordstress = plist3->wordstress;
  424. phlist[ix].tone_ph = plist3->tone_ph;
  425. phlist[ix].sourceix = 0;
  426. phlist[ix].phcode = ph->code;
  427. if (plist3->sourceix != 0) {
  428. phlist[ix].sourceix = plist3->sourceix;
  429. phlist[ix].newword = 1; // this phoneme is the start of a word
  430. if (start_sentence) {
  431. phlist[ix].newword = 5; // start of sentence + start of word
  432. start_sentence = 0;
  433. }
  434. } else
  435. phlist[ix].newword = 0;
  436. phlist[ix].length = phdata.pd_param[i_SET_LENGTH]*2;
  437. if ((ph->code == phonPAUSE_LONG) && (option_wordgap > 0) && (plist3[1].sourceix != 0)) {
  438. phlist[ix].ph = phoneme_tab[phonPAUSE_SHORT];
  439. phlist[ix].length = option_wordgap*14; // 10mS per unit at the default speed
  440. }
  441. if (ph->type == phVOWEL || ph->type == phLIQUID || ph->type == phNASAL || ph->type == phVSTOP || ph->type == phVFRICATIVE || (ph->phflags & phPREVOICE)) {
  442. phlist[ix].length = 128; // length_mod
  443. phlist[ix].env = PITCHfall;
  444. }
  445. phlist[ix].prepause = 0;
  446. phlist[ix].amp = 20; // default, will be changed later
  447. phlist[ix].pitch1 = 255;
  448. phlist[ix].pitch2 = 255;
  449. ix++;
  450. }
  451. }
  452. phlist[ix].newword = 2; // end of clause
  453. phlist[ix].phcode = phonPAUSE;
  454. phlist[ix].type = phPAUSE; // terminate with 2 Pause phonemes
  455. phlist[ix].length = post_pause; // length of the pause, depends on the punctuation
  456. phlist[ix].sourceix = end_sourceix;
  457. phlist[ix].synthflags = 0;
  458. phlist[ix++].ph = phoneme_tab[phonPAUSE];
  459. phlist[ix].phcode = phonPAUSE;
  460. phlist[ix].type = phPAUSE;
  461. phlist[ix].length = 0;
  462. phlist[ix].sourceix = 0;
  463. phlist[ix].synthflags = 0;
  464. phlist[ix++].ph = phoneme_tab[phonPAUSE_SHORT];
  465. n_phoneme_list = ix;
  466. }