eSpeak NG is an open source speech synthesizer that supports more than hundred languages and accents.
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ttsengobj.cpp 17KB

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  1. /***************************************************************************
  2. * Copyright (C) 2005 to 2007 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, write see: *
  17. * <http://www.gnu.org/licenses/>. *
  18. ***************************************************************************/
  19. #include "stdafx.h"
  20. #include "TtsEngObj.h"
  21. #include "src/speak_lib.h"
  22. #include "stdio.h"
  23. #define CTRL_EMBEDDED 1
  24. CTTSEngObj *m_EngObj;
  25. ISpTTSEngineSite* m_OutputSite;
  26. FILE *f_log2=NULL;
  27. extern int AddNameData(const char *name, int wide);
  28. extern void InitNamedata(void);
  29. int master_volume = 100;
  30. int master_rate = 0;
  31. int gVolume = 100;
  32. int gSpeed = -1;
  33. int gPitch = -1;
  34. int gRange = -1;
  35. int gEmphasis = 0;
  36. int gSayas = 0;
  37. char *path_install = NULL;
  38. unsigned long audio_offset = 0;
  39. unsigned long audio_latest = 0;
  40. unsigned int gBufSize = 0;
  41. wchar_t *TextBuf=NULL;
  42. typedef struct {
  43. unsigned int bufix;
  44. unsigned int textix;
  45. unsigned int cmdlen;
  46. } FRAG_OFFSET;
  47. int srate; // samplerate, Hz/50
  48. int n_frag_offsets = 0;
  49. int frag_ix = 0;
  50. int frag_count=0;
  51. FRAG_OFFSET *frag_offsets = NULL;
  52. int SynthCallback(short *wav, int numsamples, espeak_EVENT *events);
  53. int SynthCallback(short *wav, int numsamples, espeak_EVENT *events)
  54. {//================================================================
  55. int hr;
  56. wchar_t *tailptr;
  57. unsigned int text_offset;
  58. int length;
  59. espeak_EVENT *event;
  60. #define N_EVENTS 100
  61. int n_Events = 0;
  62. SPEVENT *Event;
  63. SPEVENT Events[N_EVENTS];
  64. if(m_OutputSite->GetActions() & SPVES_ABORT)
  65. return(1);
  66. m_EngObj->CheckActions(m_OutputSite);
  67. // return the events
  68. for(event=events; event->type != 0; event++)
  69. {
  70. audio_latest = event->audio_position + audio_offset;
  71. if((event->type == espeakEVENT_WORD) && (event->length > 0))
  72. {
  73. while(((frag_ix+1) < frag_count) &&
  74. ((event->text_position -1 + frag_offsets[frag_ix+1].cmdlen) >= frag_offsets[frag_ix+1].bufix))
  75. {
  76. frag_ix++;
  77. }
  78. text_offset = frag_offsets[frag_ix].textix +
  79. event->text_position -1 - frag_offsets[frag_ix].bufix + frag_offsets[frag_ix].cmdlen;
  80. length = event->length - frag_offsets[frag_ix].cmdlen;
  81. frag_offsets[frag_ix].cmdlen = 0;
  82. if(text_offset < 0)
  83. text_offset = 0;
  84. Event = &Events[n_Events++];
  85. Event->eEventId = SPEI_WORD_BOUNDARY;
  86. Event->elParamType = SPET_LPARAM_IS_UNDEFINED;
  87. Event->ullAudioStreamOffset = ((event->audio_position + audio_offset) * srate)/10; // ms -> bytes
  88. Event->lParam = text_offset;
  89. Event->wParam = length;
  90. }
  91. if(event->type == espeakEVENT_MARK)
  92. {
  93. Event = &Events[n_Events++];
  94. Event->eEventId = SPEI_TTS_BOOKMARK;
  95. Event->elParamType = SPET_LPARAM_IS_STRING;
  96. Event->ullAudioStreamOffset = ((event->audio_position + audio_offset) * 441)/10; // ms -> bytes
  97. Event->lParam = (long)event->id.name;
  98. Event->wParam = wcstol((wchar_t *)event->id.name,&tailptr,10);
  99. }
  100. #ifdef deleted
  101. if(event->type == espeakEVENT_SENTENCE)
  102. {
  103. Event = &Events[n_Events++];
  104. Event->eEventId = SPEI_SENTENCE_BOUNDARY;
  105. Event->elParamType = SPET_LPARAM_IS_UNDEFINED;
  106. Event->ullAudioStreamOffset = (event->audio_position * 441)/10; // ms -> bytes
  107. Event->lParam = event->text_position-1 + text_offset;
  108. Event->wParam = 0; // TEMP
  109. }
  110. #endif
  111. }
  112. if(n_Events > 0)
  113. m_OutputSite->AddEvents(Events, n_Events );
  114. // return the sound data
  115. hr = m_OutputSite->Write(wav, numsamples*2, NULL);
  116. return(hr);
  117. }
  118. static int ConvertRate(int new_rate)
  119. {//=================================
  120. int rate;
  121. static int rate_table[21] = {80,100,116,124,132,140,148,156,164,170,176,
  122. 182,188,197,208,220,240,270,300,335,370 };
  123. rate = new_rate + master_rate;
  124. if(rate < -10) rate = -10;
  125. if(rate > 10) rate = 10;
  126. return(rate_table[rate+10]);
  127. } // end of ConvertRate
  128. static int ConvertPitch(int pitch)
  129. {//===============================
  130. static int pitch_table[41] =
  131. {0, 0, 0, 0, 0, 0, 0, 0, 4, 8,12,16,20,24,28,32,36,40,44,47,50,
  132. 54,58,62,66,70,74,78,82,84,88,92,96,99,99,99,99,99,99,99,99};
  133. // {0,3,5,8,10,13,15,18,20,23,25,28,30,33,35,38,40,43,45,48,50,
  134. // 53,55,58,60,63,65,68,70,73,75,78,80,83,85,88,90,93,95,97,99};
  135. if(pitch < -20) pitch = -20;
  136. if(pitch > 20) pitch = 20;
  137. return(pitch_table[pitch+20]);
  138. }
  139. static int ConvertRange(int range)
  140. {//===============================
  141. static int range_table[21] = {16,28,39,49,58,66,74,81,88,94,100,105,110,115,120,125,130,135,140,145,150};
  142. if(range < -10) range = -10;
  143. if(range > 10) range = 10;
  144. return(range_table[range+10]/2);
  145. }
  146. HRESULT CTTSEngObj::FinalConstruct()
  147. {//=================================
  148. SPDBG_FUNC( "CTTSEngObj::FinalConstruct" );
  149. HRESULT hr = S_OK;
  150. #ifdef LOG_DEBUG
  151. f_log2=fopen("C:\\log_espeak","a");
  152. if(f_log2) fprintf(f_log2,"\n****\n");
  153. #endif
  154. //--- Init vars
  155. m_hVoiceData = NULL;
  156. m_pVoiceData = NULL;
  157. m_pWordList = NULL;
  158. m_ulNumWords = 0;
  159. m_EngObj = this;
  160. return hr;
  161. } /* CTTSEngObj::FinalConstruct */
  162. void CTTSEngObj::FinalRelease()
  163. {//============================
  164. SPDBG_FUNC( "CTTSEngObj::FinalRelease" );
  165. delete m_pWordList;
  166. #ifdef LOG_DEBUG
  167. if(f_log2!=NULL) fclose(f_log2);
  168. #endif
  169. if( m_pVoiceData )
  170. {
  171. ::UnmapViewOfFile( (void*)m_pVoiceData );
  172. }
  173. if( m_hVoiceData )
  174. {
  175. ::CloseHandle( m_hVoiceData );
  176. }
  177. } /* CTTSEngObj::FinalRelease */
  178. //
  179. //=== ISpObjectWithToken Implementation ======================================
  180. //
  181. void WcharToChar(char *out, const wchar_t *in, int len)
  182. {//====================================================
  183. int ix;
  184. for(ix=0; ix<len; ix++)
  185. {
  186. if((out[ix] = (char)in[ix]) == 0)
  187. break;
  188. }
  189. out[len-1] = 0;
  190. }
  191. /*****************************************************************************
  192. * CTTSEngObj::SetObjectToken *
  193. *----------------------------*
  194. * Description:
  195. * Read the "VoiceName" attribute from the registry, and use it to select
  196. * an eSpeak voice file
  197. *****************************************************************************/
  198. STDMETHODIMP CTTSEngObj::SetObjectToken(ISpObjectToken * pToken)
  199. {
  200. char voice[80];
  201. strcpy(voice,"default");
  202. SPDBG_FUNC( "CTTSEngObj::SetObjectToken" );
  203. HRESULT hr = SpGenericSetObjectToken(pToken, m_cpToken);
  204. if( SUCCEEDED( hr ) )
  205. {
  206. CSpDynamicString voicename;
  207. CSpDynamicString path;
  208. HRESULT hr2;
  209. int len;
  210. hr2 = m_cpToken->GetStringValue( L"VoiceName", &voicename);
  211. if( SUCCEEDED(hr2) )
  212. {
  213. WcharToChar(voice,voicename,sizeof(voice));
  214. }
  215. hr2 = m_cpToken->GetStringValue( L"Path", &path);
  216. if( SUCCEEDED(hr2) )
  217. {
  218. len = wcslen(path)+1;
  219. path_install = (char *)malloc(len);
  220. WcharToChar(path_install,path,len);
  221. }
  222. }
  223. gVolume = 100;
  224. gSpeed = -1;
  225. gPitch = -1;
  226. gRange = -1;
  227. gEmphasis = 0;
  228. gSayas = 0;
  229. espeak_Initialize(AUDIO_OUTPUT_SYNCHRONOUS,100,path_install,0);
  230. espeak_SetVoiceByName(voice);
  231. espeak_SetSynthCallback(SynthCallback);
  232. return hr;
  233. } /* CTTSEngObj::SetObjectToken */
  234. //
  235. //=== ISpTTSEngine Implementation ============================================
  236. //
  237. int CTTSEngObj::ProcessFragList(const SPVTEXTFRAG* pTextFragList, wchar_t *pW_start, ISpTTSEngineSite* pOutputSite, int *n_text)
  238. {//=============================================================================================================================
  239. int action;
  240. int control;
  241. wchar_t *pW;
  242. const SPVSTATE *state;
  243. unsigned int ix;
  244. unsigned int len;
  245. unsigned int total=0;
  246. char cmdbuf[50];
  247. wchar_t markbuf[32];
  248. int speed;
  249. int volume;
  250. int pitch;
  251. int range;
  252. int emphasis;
  253. int sayas;
  254. unsigned int text_offset = 0;
  255. frag_count = 0;
  256. frag_ix = 0;
  257. pW = pW_start;
  258. while(pTextFragList != NULL)
  259. {
  260. action = pTextFragList->State.eAction;
  261. control = pOutputSite->GetActions();
  262. len = pTextFragList->ulTextLen;
  263. if(control & SPVES_ABORT)
  264. break;
  265. CheckActions(pOutputSite);
  266. sayas = 0;
  267. switch(action)
  268. {
  269. case SPVA_SpellOut:
  270. sayas = 0x12; // SAYAS_CHARS; // drop through to SPVA_Speak
  271. case SPVA_Speak:
  272. text_offset = pTextFragList->ulTextSrcOffset;
  273. audio_offset = audio_latest;
  274. #ifdef deleted
  275. // attempt to recognise when JAWS is spelling, it doesn't use SPVA_SpellOut
  276. if((pW != NULL) && (*n_text == 1) && ((len == 1) || ((len==2) && (pTextFragList->pTextStart[1]==' '))))
  277. {
  278. // A single text fragment with one character. Speak as a character, not a word
  279. sayas = 0x11;
  280. gSayas = 0;
  281. }
  282. #endif
  283. if(frag_count >= n_frag_offsets)
  284. {
  285. if((frag_offsets = (FRAG_OFFSET *)realloc(frag_offsets,sizeof(FRAG_OFFSET)*(frag_count+500))) != NULL)
  286. {
  287. n_frag_offsets = frag_count+500;
  288. }
  289. }
  290. // first set the volume, rate, pitch
  291. state = &pTextFragList->State;
  292. volume = (state->Volume * master_volume)/100;
  293. speed = ConvertRate(state->RateAdj);
  294. pitch = ConvertPitch(state->PitchAdj.MiddleAdj);
  295. range = ConvertRange(state->PitchAdj.RangeAdj);
  296. emphasis = state->EmphAdj;
  297. if(emphasis != 0)
  298. emphasis = 3;
  299. len = 0;
  300. if(volume != gVolume)
  301. {
  302. sprintf(&cmdbuf[len],"%c%dA",CTRL_EMBEDDED,volume);
  303. len += strlen(&cmdbuf[len]);
  304. }
  305. if(speed != gSpeed)
  306. {
  307. sprintf(&cmdbuf[len],"%c%dS",CTRL_EMBEDDED,speed);
  308. len += strlen(&cmdbuf[len]);
  309. }
  310. if(pitch != gPitch)
  311. {
  312. sprintf(&cmdbuf[len],"%c%dP",CTRL_EMBEDDED,pitch);
  313. len += strlen(&cmdbuf[len]);
  314. }
  315. if(range != gRange)
  316. {
  317. sprintf(&cmdbuf[len],"%c%dR",CTRL_EMBEDDED,range);
  318. len += strlen(&cmdbuf[len]);
  319. }
  320. if(emphasis != gEmphasis)
  321. {
  322. sprintf(&cmdbuf[len],"%c%dF",CTRL_EMBEDDED,emphasis);
  323. len += strlen(&cmdbuf[len]);
  324. }
  325. if(sayas != gSayas)
  326. {
  327. sprintf(&cmdbuf[len],"%c%dY",CTRL_EMBEDDED,sayas);
  328. len += strlen(&cmdbuf[len]);
  329. }
  330. gVolume = volume;
  331. gSpeed = speed;
  332. gPitch = pitch;
  333. gRange = range;
  334. gEmphasis = emphasis;
  335. gSayas = sayas;
  336. total += (len + pTextFragList->ulTextLen);
  337. if(pTextFragList->ulTextLen > 0)
  338. {
  339. total++;
  340. }
  341. if(pW != NULL)
  342. {
  343. for(ix=0; ix<len; ix++)
  344. {
  345. *pW++ = cmdbuf[ix];
  346. }
  347. frag_offsets[frag_count].textix = text_offset;
  348. frag_offsets[frag_count].bufix = pW - pW_start;
  349. frag_offsets[frag_count].cmdlen = len;
  350. for(ix=0; ix<pTextFragList->ulTextLen; ix++)
  351. {
  352. *pW++ = pTextFragList->pTextStart[ix];
  353. }
  354. if(pTextFragList->ulTextLen > 0)
  355. {
  356. *pW++ = ' ';
  357. }
  358. }
  359. frag_count++;
  360. break;
  361. case SPVA_Bookmark:
  362. total += (2 + pTextFragList->ulTextLen);
  363. if(pW != NULL)
  364. {
  365. int index;
  366. for(ix=0; ix<pTextFragList->ulTextLen; ix++)
  367. {
  368. markbuf[ix] = (char )pTextFragList->pTextStart[ix];
  369. }
  370. markbuf[ix] = 0;
  371. if((index = AddNameData((const char *)markbuf,1)) >= 0)
  372. {
  373. sprintf(cmdbuf,"%c%dM",CTRL_EMBEDDED,index);
  374. len = strlen(cmdbuf);
  375. for(ix=0; ix<len; ix++)
  376. {
  377. *pW++ = cmdbuf[ix];
  378. }
  379. }
  380. }
  381. break;
  382. }
  383. pTextFragList = pTextFragList->pNext;
  384. }
  385. if(pW != NULL)
  386. {
  387. *pW = 0;
  388. }
  389. *n_text = frag_count;
  390. return(total);
  391. } // end of ProcessFragList
  392. /*****************************************************************************
  393. * CTTSEngObj::Speak *
  394. *-------------------*
  395. * Description:
  396. * This is the primary method that SAPI calls to render text.
  397. *-----------------------------------------------------------------------------
  398. * Input Parameters
  399. *
  400. * pUser
  401. * Pointer to the current user profile object. This object contains
  402. * information like what languages are being used and this object
  403. * also gives access to resources like the SAPI master lexicon object.
  404. *
  405. * dwSpeakFlags
  406. * This is a set of flags used to control the behavior of the
  407. * SAPI voice object and the associated engine.
  408. *
  409. * VoiceFmtIndex
  410. * Zero based index specifying the output format that should
  411. * be used during rendering.
  412. *
  413. * pTextFragList
  414. * A linked list of text fragments to be rendered. There is
  415. * one fragement per XML state change. If the input text does
  416. * not contain any XML markup, there will only be a single fragment.
  417. *
  418. * pOutputSite
  419. * The interface back to SAPI where all output audio samples and events are written.
  420. *
  421. * Return Values
  422. * S_OK - This should be returned after successful rendering or if
  423. * rendering was interrupted because *pfContinue changed to FALSE.
  424. * E_INVALIDARG
  425. * E_OUTOFMEMORY
  426. *
  427. *****************************************************************************/
  428. STDMETHODIMP CTTSEngObj::Speak( DWORD dwSpeakFlags,
  429. REFGUID rguidFormatId,
  430. const WAVEFORMATEX * pWaveFormatEx,
  431. const SPVTEXTFRAG* pTextFragList,
  432. ISpTTSEngineSite* pOutputSite )
  433. {
  434. SPDBG_FUNC( "CTTSEngObj::Speak" );
  435. HRESULT hr = S_OK;
  436. unsigned int size;
  437. int xVolume;
  438. int xSpeed;
  439. int xPitch;
  440. int xRange;
  441. int xEmphasis;
  442. int xSayas;
  443. int punctuation;
  444. int n_text_frag=0;
  445. //--- Check args
  446. if( SP_IS_BAD_INTERFACE_PTR( pOutputSite ) ||
  447. SP_IS_BAD_READ_PTR( pTextFragList ) )
  448. {
  449. hr = E_INVALIDARG;
  450. }
  451. else
  452. {
  453. InitNamedata();
  454. //--- Init some vars
  455. m_pCurrFrag = pTextFragList;
  456. m_pNextChar = m_pCurrFrag->pTextStart;
  457. m_pEndChar = m_pNextChar + m_pCurrFrag->ulTextLen;
  458. m_ullAudioOff = 0;
  459. m_OutputSite = pOutputSite;
  460. xVolume = gVolume;
  461. xSpeed = gSpeed;
  462. xPitch = gPitch;
  463. xRange = gRange;
  464. xEmphasis = gEmphasis;
  465. xSayas = gSayas;
  466. // find the size of the text buffer needed for this Speak() request
  467. size = ProcessFragList(pTextFragList,NULL,pOutputSite,&n_text_frag);
  468. gVolume = xVolume;
  469. gSpeed = xSpeed;
  470. gPitch = xPitch;
  471. gRange = xRange;
  472. gEmphasis = xEmphasis;
  473. gSayas = xSayas;
  474. punctuation = 0;
  475. if(dwSpeakFlags & SPF_NLP_SPEAK_PUNC)
  476. punctuation = 1;
  477. espeak_SetParameter(espeakPUNCTUATION,punctuation,0);
  478. size = (size + 50)*sizeof(wchar_t);
  479. if(size > gBufSize)
  480. {
  481. size += 1000; // some extra so we don't need to realloc() again too often
  482. TextBuf = (wchar_t *)realloc(TextBuf,size);
  483. if(TextBuf == NULL)
  484. {
  485. gBufSize=0;
  486. return(1);
  487. }
  488. gBufSize = size;
  489. }
  490. audio_latest = 0;
  491. size = ProcessFragList(pTextFragList,TextBuf,pOutputSite,&n_text_frag);
  492. if(size > 0)
  493. {
  494. espeak_Synth(TextBuf,0,0,POS_CHARACTER,0,espeakCHARS_WCHAR | espeakKEEP_NAMEDATA,NULL,NULL);
  495. }
  496. }
  497. return hr;
  498. } /* CTTSEngObj::Speak */
  499. HRESULT CTTSEngObj::CheckActions( ISpTTSEngineSite* pOutputSite )
  500. {//==============================================================
  501. int control;
  502. USHORT volume;
  503. long rate;
  504. control = pOutputSite->GetActions();
  505. if(control & SPVES_VOLUME)
  506. {
  507. if(pOutputSite->GetVolume(&volume) == S_OK)
  508. {
  509. master_volume = volume;
  510. }
  511. }
  512. if(control & SPVES_RATE)
  513. {
  514. if(pOutputSite->GetRate(&rate) == S_OK)
  515. {
  516. master_rate = rate;
  517. }
  518. }
  519. return(S_OK);
  520. } // end of CTTSEngObj::CheckActions
  521. STDMETHODIMP CTTSEngObj::GetOutputFormat( const GUID * pTargetFormatId, const WAVEFORMATEX * pTargetWaveFormatEx,
  522. GUID * pDesiredFormatId, WAVEFORMATEX ** ppCoMemDesiredWaveFormatEx )
  523. {//========================================================================
  524. SPDBG_FUNC( "CTTSEngObj::GetVoiceFormat" );
  525. HRESULT hr = S_OK;
  526. enum SPSTREAMFORMAT sample_rate = SPSF_22kHz16BitMono;
  527. srate = 441;
  528. if(espeak_GetParameter(espeakVOICETYPE,1) == 1)
  529. {
  530. srate = 320;
  531. sample_rate = SPSF_16kHz16BitMono; // an mbrola voice
  532. }
  533. hr = SpConvertStreamFormatEnum(sample_rate, pDesiredFormatId, ppCoMemDesiredWaveFormatEx);
  534. return hr;
  535. } /* CTTSEngObj::GetVoiceFormat */
  536. int FAR PASCAL CompileDictionary(const char *voice, const char *path_log)
  537. {//===========================================================
  538. FILE *f_log;
  539. char fname[120];
  540. f_log = fopen(path_log,"w");
  541. sprintf(fname,"%s/",path_install);
  542. espeak_SetVoiceByName(voice);
  543. espeak_CompileDictionary(fname,f_log);
  544. fclose(f_log);
  545. return(0);
  546. }