libcm is a C development framework with an emphasis on audio signal processing applications.
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cmDspKr.c 148KB

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  1. #include "cmPrefix.h"
  2. #include "cmGlobal.h"
  3. #include "cmFloatTypes.h"
  4. #include "cmComplexTypes.h"
  5. #include "cmRpt.h"
  6. #include "cmErr.h"
  7. #include "cmCtx.h"
  8. #include "cmMem.h"
  9. #include "cmMallocDebug.h"
  10. #include "cmLinkedHeap.h"
  11. #include "cmFile.h"
  12. #include "cmSymTbl.h"
  13. #include "cmJson.h"
  14. #include "cmText.h"
  15. #include "cmPrefs.h"
  16. #include "cmDspValue.h"
  17. #include "cmMsgProtocol.h"
  18. #include "cmThread.h"
  19. #include "cmUdpPort.h"
  20. #include "cmUdpNet.h"
  21. #include "cmSerialPort.h"
  22. //( { file_desc:"'snap' audio effects performance analysis units." kw:[snap]}
  23. #include "cmTime.h"
  24. #include "cmAudioSys.h"
  25. #include "cmDspCtx.h"
  26. #include "cmDspClass.h"
  27. #include "cmDspStore.h"
  28. #include "cmDspUi.h"
  29. #include "cmDspSys.h"
  30. #include "cmMath.h"
  31. #include "cmAudioFile.h"
  32. #include "cmFileSys.h"
  33. #include "cmProcObj.h"
  34. #include "cmProcTemplateMain.h"
  35. #include "cmProc.h"
  36. #include "cmMidi.h"
  37. #include "cmProc2.h"
  38. #include "cmVectOpsTemplateMain.h"
  39. #include "cmAudioFile.h"
  40. #include "cmMidiFile.h"
  41. #include "cmTimeLine.h"
  42. #include "cmScore.h"
  43. #include "cmProc4.h"
  44. #include "cmProc5.h"
  45. #include "cmSyncRecd.h"
  46. #include "cmTakeSeqBldr.h"
  47. //------------------------------------------------------------------------------------------------------------
  48. //)
  49. //( { label:cmDspKr file_desc:"Spectral non-linear distortion effect." kw:[sunit] }
  50. enum
  51. {
  52. kWndSmpCntKrId,
  53. kHopFactKrId,
  54. kModeKrId,
  55. kThreshKrId,
  56. kLwrSlopeKrId,
  57. kUprSlopeKrId,
  58. kOffsetKrId,
  59. kInvertKrId,
  60. kBypassKrId,
  61. kWetKrId,
  62. kAudioInKrId,
  63. kAudioOutKrId
  64. };
  65. typedef struct
  66. {
  67. cmDspInst_t inst;
  68. cmCtx* ctx;
  69. cmSpecDist_t* sdp;
  70. } cmDspKr_t;
  71. cmDspClass_t _cmKrDC;
  72. cmDspInst_t* _cmDspKrAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  73. {
  74. cmDspVarArg_t args[] =
  75. {
  76. { "wndn", kWndSmpCntKrId, 0, 0, kInDsvFl | kUIntDsvFl | kReqArgDsvFl, "Window sample count" },
  77. { "hopf", kHopFactKrId, 0, 0, kInDsvFl | kUIntDsvFl | kOptArgDsvFl, "Hop factor" },
  78. { "mode", kModeKrId, 0, 0, kInDsvFl | kUIntDsvFl | kOptArgDsvFl, "Mode 0=bypass 1=basic 2=spec cnt 3=amp env" },
  79. { "thrh", kThreshKrId, 0, 0, kInDsvFl | kDoubleDsvFl | kOptArgDsvFl, "Threshold" },
  80. { "lwrs", kLwrSlopeKrId, 0, 0, kInDsvFl | kDoubleDsvFl | kOptArgDsvFl, "Lower Slope"},
  81. { "uprs", kUprSlopeKrId, 0, 0, kInDsvFl | kDoubleDsvFl | kOptArgDsvFl, "Upper Slope"},
  82. { "offs", kOffsetKrId, 0, 0, kInDsvFl | kDoubleDsvFl | kOptArgDsvFl, "Offset"},
  83. { "invt", kInvertKrId, 0, 0, kInDsvFl | kUIntDsvFl | kOptArgDsvFl, "Invert"},
  84. { "bypass", kBypassKrId, 0, 0, kInDsvFl | kBoolDsvFl | kOptArgDsvFl, "Bypass enable flag." },
  85. { "wet", kWetKrId, 0, 0, kInDsvFl | kSampleDsvFl, "Wet mix level."},
  86. { "in", kAudioInKrId, 0, 0, kInDsvFl | kAudioBufDsvFl, "Audio Input" },
  87. { "out", kAudioOutKrId, 0, 1, kOutDsvFl | kAudioBufDsvFl, "Audio Output" },
  88. { NULL, 0, 0, 0, 0 }
  89. };
  90. cmDspKr_t* p = cmDspInstAlloc(cmDspKr_t,ctx,classPtr,args,instSymId,id,storeSymId,va_cnt,vl);
  91. unsigned defWndSmpCnt = cmDspDefaultUInt(&p->inst,kWndSmpCntKrId);
  92. unsigned wndSmpCnt = cmNextPowerOfTwo( defWndSmpCnt );
  93. cmDspSetDefaultUInt( ctx,&p->inst, kWndSmpCntKrId, defWndSmpCnt, wndSmpCnt );
  94. cmDspSetDefaultUInt( ctx,&p->inst, kHopFactKrId, 0, 4 );
  95. cmDspSetDefaultUInt( ctx,&p->inst, kModeKrId, 0, kBasicModeSdId );
  96. cmDspSetDefaultDouble( ctx,&p->inst, kThreshKrId, 0, 60.0 );
  97. cmDspSetDefaultDouble( ctx,&p->inst, kLwrSlopeKrId, 0, 2.0 );
  98. cmDspSetDefaultDouble( ctx,&p->inst, kUprSlopeKrId, 0, 0.0 );
  99. cmDspSetDefaultDouble( ctx,&p->inst, kOffsetKrId, 0, 30.0);
  100. cmDspSetDefaultUInt( ctx,&p->inst, kInvertKrId, 0, 0 );
  101. cmDspSetDefaultUInt( ctx,&p->inst, kBypassKrId, 0, 0 );
  102. cmDspSetDefaultSample( ctx,&p->inst, kWetKrId, 0, 1.0);
  103. //_cmDspKrCmInit(ctx,p); // initialize the cm library
  104. p->ctx = cmCtxAlloc(NULL,ctx->rpt,ctx->lhH,ctx->stH);
  105. return &p->inst;
  106. }
  107. cmDspRC_t _cmDspKrFree(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  108. {
  109. cmDspRC_t rc = kOkDspRC;
  110. cmDspKr_t* p = (cmDspKr_t*)inst;
  111. cmSpecDistFree(&p->sdp);
  112. cmCtxFree(&p->ctx);
  113. //_cmDspKrCmFinal(ctx,p); // finalize the cm library
  114. return rc;
  115. }
  116. cmDspRC_t _cmDspKrSetup(cmDspCtx_t* ctx, cmDspKr_t* p )
  117. {
  118. cmDspRC_t rc = kOkDspRC;
  119. unsigned wndSmpCnt = cmDspUInt(&p->inst,kWndSmpCntKrId);
  120. unsigned hopFact = cmDspUInt(&p->inst,kHopFactKrId);
  121. unsigned olaWndTypeId =kHannWndId;
  122. cmSpecDistFree(&p->sdp);
  123. p->sdp = cmSpecDistAlloc(p->ctx, NULL, cmDspSamplesPerCycle(ctx), cmDspSampleRate(ctx), wndSmpCnt, hopFact, olaWndTypeId);
  124. assert(p->sdp != NULL );
  125. if((rc = cmDspZeroAudioBuf(ctx,&p->inst,kAudioOutKrId)) != kOkDspRC )
  126. return rc;
  127. return rc;
  128. }
  129. cmDspRC_t _cmDspKrReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  130. {
  131. cmDspKr_t* p = (cmDspKr_t*)inst;
  132. cmDspRC_t rc;
  133. if((rc = cmDspApplyAllDefaults(ctx,inst)) != kOkDspRC )
  134. return rc;
  135. return _cmDspKrSetup(ctx,p);
  136. }
  137. cmDspRC_t _cmDspKrExec(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  138. {
  139. cmDspKr_t* p = (cmDspKr_t*)inst;
  140. cmDspRC_t rc = kOkDspRC;
  141. unsigned iChIdx = 0;
  142. const cmSample_t* ip = cmDspAudioBuf(ctx,inst,kAudioInKrId,iChIdx);
  143. unsigned iSmpCnt = cmDspVarRows(inst,kAudioInKrId);
  144. // if no connected
  145. if( iSmpCnt == 0 )
  146. return rc;
  147. unsigned oChIdx = 0;
  148. cmSample_t* op = cmDspAudioBuf(ctx,inst,kAudioOutKrId,oChIdx);
  149. unsigned oSmpCnt = cmDspVarRows(inst,kAudioOutKrId);
  150. const cmSample_t* sp;
  151. cmSample_t wet = cmDspSample(inst,kWetKrId);
  152. cmSpecDistExec(p->sdp,ip,iSmpCnt);
  153. if((sp = cmSpecDistOut(p->sdp)) != NULL )
  154. {
  155. cmVOS_MultVVS(op,oSmpCnt,sp,wet);
  156. }
  157. if( wet<1.0 )
  158. cmVOS_MultSumVVS(op,oSmpCnt,ip,1.0-wet);
  159. return rc;
  160. }
  161. cmDspRC_t _cmDspKrRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  162. {
  163. cmDspKr_t* p = (cmDspKr_t*)inst;
  164. cmDspRC_t rc = kOkDspRC;
  165. cmDspSetEvent(ctx,inst,evt);
  166. switch( evt->dstVarId )
  167. {
  168. case kWndSmpCntKrId:
  169. case kHopFactKrId:
  170. _cmDspKrSetup(ctx,p);
  171. // THIS IS A HACK
  172. // WHEN WND OR HOP CHANGE THE RESULTING CHANGES
  173. // SHOULD BE ISOLATED IN cmSpecDist() AND THE
  174. // CURRENT STATE OF THE PARAMETERS SHOULD NOT BE
  175. // LOST - IF THE CHANGES WERE ISOLATED WITHIN PVANL
  176. // AND PVSYN IT MIGHT BE POSSIBLE TO DO WITH
  177. // MINIMAL AUDIO INTERUPTION.
  178. p->sdp->mode = cmDspUInt(inst,kModeKrId);
  179. p->sdp->thresh = cmDspDouble(inst,kThreshKrId);
  180. p->sdp->uprSlope = cmDspDouble(inst,kUprSlopeKrId);
  181. p->sdp->lwrSlope = cmDspDouble(inst,kLwrSlopeKrId);
  182. p->sdp->offset = cmDspDouble(inst,kOffsetKrId);
  183. p->sdp->invertFl = cmDspUInt(inst,kInvertKrId)!=0;
  184. printf("wsn:%i hsn:%i\n",p->sdp->wndSmpCnt,p->sdp->hopSmpCnt);
  185. break;
  186. case kModeKrId:
  187. p->sdp->mode = cmDspUInt(inst,kModeKrId);
  188. printf("mode:%i\n",p->sdp->mode);
  189. break;
  190. case kThreshKrId:
  191. p->sdp->thresh = cmDspDouble(inst,kThreshKrId);
  192. //printf("thr:p:%p sdp:%p %f\n",p,p->sdp,p->sdp->thresh);
  193. break;
  194. case kUprSlopeKrId:
  195. p->sdp->uprSlope = cmDspDouble(inst,kUprSlopeKrId);
  196. //printf("upr slope:%f\n",p->sdp->uprSlope);
  197. break;
  198. case kLwrSlopeKrId:
  199. p->sdp->lwrSlope = cmDspDouble(inst,kLwrSlopeKrId);
  200. //printf("upr slope:%f\n",p->sdp->lwrSlope);
  201. break;
  202. case kOffsetKrId:
  203. p->sdp->offset = cmDspDouble(inst,kOffsetKrId);
  204. break;
  205. case kInvertKrId:
  206. p->sdp->invertFl = cmDspUInt(inst,kInvertKrId)!=0;
  207. break;
  208. case kWetKrId:
  209. break;
  210. default:
  211. { assert(0); }
  212. }
  213. return rc;
  214. }
  215. cmDspClass_t* cmKrClassCons( cmDspCtx_t* ctx )
  216. {
  217. cmDspClassSetup(&_cmKrDC,ctx,"Kr",
  218. NULL,
  219. _cmDspKrAlloc,
  220. _cmDspKrFree,
  221. _cmDspKrReset,
  222. _cmDspKrExec,
  223. _cmDspKrRecv,
  224. NULL,NULL,
  225. "Fourier based non-linear transformer.");
  226. return &_cmKrDC;
  227. }
  228. //------------------------------------------------------------------------------------------------------------
  229. //)
  230. //( { label:cmDspKr2 file_desc:"Spectral non-linear distortion effect." kw:[sunit] }
  231. enum
  232. {
  233. kWndSmpCntKr2Id,
  234. kHopFactKr2Id,
  235. kCeilKr2Id,
  236. kExpoKr2Id,
  237. kThreshKr2Id,
  238. kLwrSlopeKr2Id,
  239. kUprSlopeKr2Id,
  240. kMixKr2Id,
  241. kWetKr2Id,
  242. kIgainKr2Id,
  243. kAudioInKr2Id,
  244. kAudioOutKr2Id
  245. };
  246. typedef struct
  247. {
  248. cmDspInst_t inst;
  249. cmCtx* ctx;
  250. cmSpecDist2_t* sdp;
  251. } cmDspKr2_t;
  252. cmDspClass_t _cmKr2DC;
  253. cmDspInst_t* _cmDspKr2Alloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  254. {
  255. cmDspVarArg_t args[] =
  256. {
  257. { "wndn", kWndSmpCntKr2Id, 0, 0, kInDsvFl | kUIntDsvFl | kReqArgDsvFl, "Window sample count" },
  258. { "hopf", kHopFactKr2Id, 0, 0, kInDsvFl | kUIntDsvFl | kOptArgDsvFl, "Hop factor" },
  259. { "ceil", kCeilKr2Id, 0, 0, kInDsvFl | kDoubleDsvFl | kOptArgDsvFl, "Ceiling" },
  260. { "expo", kExpoKr2Id, 0, 0, kInDsvFl | kDoubleDsvFl | kOptArgDsvFl, "Exponent" },
  261. { "thrh", kThreshKr2Id, 0, 0, kInDsvFl | kDoubleDsvFl | kOptArgDsvFl, "Threshold" },
  262. { "lwrs", kLwrSlopeKr2Id, 0, 0, kInDsvFl | kDoubleDsvFl | kOptArgDsvFl, "Lower Slope"},
  263. { "uprs", kUprSlopeKr2Id, 0, 0, kInDsvFl | kDoubleDsvFl | kOptArgDsvFl, "Upper Slope"},
  264. { "mix", kMixKr2Id, 0, 0, kInDsvFl | kDoubleDsvFl | kOptArgDsvFl, "Mix"},
  265. { "wet", kWetKr2Id, 0, 0, kInDsvFl | kSampleDsvFl, "Wet mix level."},
  266. { "igain", kIgainKr2Id, 0, 0, kInDsvFl | kDoubleDsvFl | kOptArgDsvFl, "Input gain."},
  267. { "in", kAudioInKr2Id, 0, 0, kInDsvFl | kAudioBufDsvFl, "Audio Input" },
  268. { "out", kAudioOutKr2Id, 0, 1, kOutDsvFl | kAudioBufDsvFl, "Audio Output" },
  269. { NULL, 0, 0, 0, 0 }
  270. };
  271. cmDspKr2_t* p = cmDspInstAlloc(cmDspKr2_t,ctx,classPtr,args,instSymId,id,storeSymId,va_cnt,vl);
  272. unsigned defWndSmpCnt = cmDspDefaultUInt(&p->inst,kWndSmpCntKr2Id);
  273. unsigned wndSmpCnt = cmNextPowerOfTwo( defWndSmpCnt );
  274. cmDspSetDefaultUInt( ctx,&p->inst, kWndSmpCntKr2Id, defWndSmpCnt, wndSmpCnt );
  275. cmDspSetDefaultUInt( ctx,&p->inst, kHopFactKr2Id, 0, 4 );
  276. cmDspSetDefaultDouble( ctx,&p->inst, kCeilKr2Id, 0, 20.0 );
  277. cmDspSetDefaultDouble( ctx,&p->inst, kExpoKr2Id, 0, 2.0 );
  278. cmDspSetDefaultDouble( ctx,&p->inst, kThreshKr2Id, 0, 60.0 );
  279. cmDspSetDefaultDouble( ctx,&p->inst, kLwrSlopeKr2Id, 0, 2.0 );
  280. cmDspSetDefaultDouble( ctx,&p->inst, kUprSlopeKr2Id, 0, 0.0 );
  281. cmDspSetDefaultDouble( ctx,&p->inst, kMixKr2Id, 0, 0.0 );
  282. cmDspSetDefaultSample( ctx,&p->inst, kWetKr2Id, 0, 1.0);
  283. cmDspSetDefaultDouble( ctx,&p->inst, kIgainKr2Id, 0, 0.0 );
  284. //_cmDspKr2CmInit(ctx,p); // initialize the cm library
  285. p->ctx = cmCtxAlloc(NULL,ctx->rpt,ctx->lhH,ctx->stH);
  286. return &p->inst;
  287. }
  288. cmDspRC_t _cmDspKr2Free(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  289. {
  290. cmDspRC_t rc = kOkDspRC;
  291. cmDspKr2_t* p = (cmDspKr2_t*)inst;
  292. cmSpecDist2Free(&p->sdp);
  293. cmCtxFree(&p->ctx);
  294. //_cmDspKr2CmFinal(ctx,p); // finalize the cm library
  295. return rc;
  296. }
  297. cmDspRC_t _cmDspKr2Setup(cmDspCtx_t* ctx, cmDspKr2_t* p )
  298. {
  299. cmDspRC_t rc = kOkDspRC;
  300. unsigned wndSmpCnt = cmDspUInt(&p->inst,kWndSmpCntKr2Id);
  301. unsigned hopFact = cmDspUInt(&p->inst,kHopFactKr2Id);
  302. unsigned olaWndTypeId =kHannWndId;
  303. cmSpecDist2Free(&p->sdp);
  304. p->sdp = cmSpecDist2Alloc(p->ctx, NULL, cmDspSamplesPerCycle(ctx), cmDspSampleRate(ctx), wndSmpCnt, hopFact, olaWndTypeId);
  305. assert(p->sdp != NULL );
  306. if((rc = cmDspZeroAudioBuf(ctx,&p->inst,kAudioOutKr2Id)) != kOkDspRC )
  307. return rc;
  308. return rc;
  309. }
  310. cmDspRC_t _cmDspKr2Reset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  311. {
  312. cmDspKr2_t* p = (cmDspKr2_t*)inst;
  313. cmDspRC_t rc;
  314. if((rc = cmDspApplyAllDefaults(ctx,inst)) != kOkDspRC )
  315. return rc;
  316. return _cmDspKr2Setup(ctx,p);
  317. }
  318. cmDspRC_t _cmDspKr2Exec(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  319. {
  320. cmDspKr2_t* p = (cmDspKr2_t*)inst;
  321. cmDspRC_t rc = kOkDspRC;
  322. unsigned iChIdx = 0;
  323. const cmSample_t* ip = cmDspAudioBuf(ctx,inst,kAudioInKr2Id,iChIdx);
  324. unsigned iSmpCnt = cmDspVarRows(inst,kAudioInKr2Id);
  325. // if no connected
  326. if( iSmpCnt == 0 )
  327. return rc;
  328. unsigned oChIdx = 0;
  329. cmSample_t* op = cmDspAudioBuf(ctx,inst,kAudioOutKr2Id,oChIdx);
  330. unsigned oSmpCnt = cmDspVarRows(inst,kAudioOutKr2Id);
  331. const cmSample_t* sp;
  332. cmSample_t wet = cmDspSample(inst,kWetKr2Id);
  333. cmSpecDist2Exec(p->sdp,ip,iSmpCnt);
  334. if((sp = cmSpecDist2Out(p->sdp)) != NULL )
  335. {
  336. cmVOS_MultVVS(op,oSmpCnt,sp,wet);
  337. }
  338. if( wet<1.0 )
  339. cmVOS_MultSumVVS(op,oSmpCnt,ip,1.0-wet);
  340. return rc;
  341. }
  342. cmDspRC_t _cmDspKr2Recv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  343. {
  344. cmDspKr2_t* p = (cmDspKr2_t*)inst;
  345. cmDspRC_t rc = kOkDspRC;
  346. cmDspSetEvent(ctx,inst,evt);
  347. switch( evt->dstVarId )
  348. {
  349. case kWndSmpCntKr2Id:
  350. case kHopFactKr2Id:
  351. _cmDspKr2Setup(ctx,p);
  352. // THIS IS A HACK
  353. // WHEN WND OR HOP CHANGE THE RESULTING CHANGES
  354. // SHOULD BE ISOLATED IN cmSpecDist() AND THE
  355. // CURRENT STATE OF THE PARAMETERS SHOULD NOT BE
  356. // LOST - IF THE CHANGES WERE ISOLATED WITHIN PVANL
  357. // AND PVSYN IT MIGHT BE POSSIBLE TO DO WITH
  358. // MINIMAL AUDIO INTERUPTION.
  359. p->sdp->ceiling = cmDspDouble(inst,kCeilKr2Id);
  360. p->sdp->expo = cmDspDouble(inst,kExpoKr2Id);
  361. p->sdp->thresh = cmDspDouble(inst,kThreshKr2Id);
  362. p->sdp->uprSlope = cmDspDouble(inst,kUprSlopeKr2Id);
  363. p->sdp->lwrSlope = cmDspDouble(inst,kLwrSlopeKr2Id);
  364. p->sdp->mix = cmDspDouble(inst,kMixKr2Id);
  365. printf("wsn:%i hsn:%i\n",p->sdp->wndSmpCnt,p->sdp->hopSmpCnt);
  366. break;
  367. case kCeilKr2Id:
  368. p->sdp->ceiling = cmDspDouble(inst,kCeilKr2Id);
  369. break;
  370. case kExpoKr2Id:
  371. p->sdp->expo = cmDspDouble(inst,kExpoKr2Id);
  372. break;
  373. case kThreshKr2Id:
  374. p->sdp->thresh = cmDspDouble(inst,kThreshKr2Id);
  375. break;
  376. case kUprSlopeKr2Id:
  377. p->sdp->uprSlope = cmDspDouble(inst,kUprSlopeKr2Id);
  378. break;
  379. case kLwrSlopeKr2Id:
  380. p->sdp->lwrSlope = cmDspDouble(inst,kLwrSlopeKr2Id);
  381. break;
  382. case kMixKr2Id:
  383. p->sdp->mix = cmDspDouble(inst,kMixKr2Id);
  384. break;
  385. case kWetKr2Id:
  386. break;
  387. case kIgainKr2Id:
  388. p->sdp->igain = cmDspDouble(inst,kIgainKr2Id);
  389. break;
  390. default:
  391. { assert(0); }
  392. }
  393. //cmSpecDist2Report(p->sdp);
  394. return rc;
  395. }
  396. cmDspClass_t* cmKr2ClassCons( cmDspCtx_t* ctx )
  397. {
  398. cmDspClassSetup(&_cmKr2DC,ctx,"Kr2",
  399. NULL,
  400. _cmDspKr2Alloc,
  401. _cmDspKr2Free,
  402. _cmDspKr2Reset,
  403. _cmDspKr2Exec,
  404. _cmDspKr2Recv,
  405. NULL,NULL,
  406. "Fourier based non-linear transformer two.");
  407. return &_cmKr2DC;
  408. }
  409. //------------------------------------------------------------------------------------------------------------
  410. //)
  411. //( { label:cmDspTimeLine file_desc:"Time line user interface unit." kw:[sunit] }
  412. enum
  413. {
  414. kTlFileTlId,
  415. kPrefixPathTlId,
  416. kSelTlId,
  417. kMeasTlId,
  418. kCursTlId,
  419. kResetTlId,
  420. kAudFnTlId,
  421. kAudLblTlId,
  422. kMidiFnTlId,
  423. kMidiLblTlId,
  424. kBegAudSmpIdxTlId,
  425. kEndAudSmpIdxTlId,
  426. kBegMidiSmpIdxTlId,
  427. kEndMidiSmpIdxTlId,
  428. };
  429. cmDspClass_t _cmTimeLineDC;
  430. typedef struct
  431. {
  432. cmDspInst_t inst;
  433. cmTlH_t tlH;
  434. unsigned afIdx;
  435. } cmDspTimeLine_t;
  436. cmDspInst_t* _cmDspTimeLineAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  437. {
  438. cmDspVarArg_t args[] =
  439. {
  440. { "tlfile", kTlFileTlId, 0, 0, kInDsvFl | kStrzDsvFl | kReqArgDsvFl, "Time line file." },
  441. { "path", kPrefixPathTlId, 0, 0, kInDsvFl | kStrzDsvFl | kReqArgDsvFl, "Time line data file prefix path" },
  442. { "sel", kSelTlId, 0, 0, kInDsvFl | kOutDsvFl | kUIntDsvFl, "Selected marker id."},
  443. { "meas", kMeasTlId, 0, 0, kInDsvFl | kUIntDsvFl, "Select a bar marker and generate a 'sel' output."},
  444. { "curs", kCursTlId, 0, 0, kInDsvFl | kUIntDsvFl, "Current audio file index."},
  445. { "reset", kResetTlId, 0, 0, kInDsvFl | kSymDsvFl, "Resend all outputs." },
  446. { "afn", kAudFnTlId, 0, 0, kOutDsvFl | kStrzDsvFl, "Selected Audio file." },
  447. { "albl", kAudLblTlId, 0, 0, kOutDsvFl | kStrzDsvFl, "Select Audio file time line label."},
  448. { "mfn", kMidiFnTlId, 0, 0, kOutDsvFl | kStrzDsvFl, "Selected MIDI file." },
  449. { "mlbl", kMidiLblTlId, 0, 0, kOutDsvFl | kStrzDsvFl, "Select MIDI file time line label."},
  450. { "absi", kBegAudSmpIdxTlId, 0, 0, kOutDsvFl | kIntDsvFl, "Begin audio sample index."},
  451. { "aesi", kEndAudSmpIdxTlId, 0, 0, kOutDsvFl | kIntDsvFl, "End audio sample index."},
  452. { "mbsi", kBegMidiSmpIdxTlId, 0, 0, kOutDsvFl | kIntDsvFl, "Begin MIDI sample index."},
  453. { "mesi", kEndMidiSmpIdxTlId, 0, 0, kOutDsvFl | kIntDsvFl, "End MIDI sample index."},
  454. { NULL, 0, 0, 0, 0 }
  455. };
  456. cmDspTimeLine_t* p = cmDspInstAlloc(cmDspTimeLine_t,ctx,classPtr,args,instSymId,id,storeSymId,va_cnt,vl);
  457. cmDspSetDefaultUInt( ctx, &p->inst, kSelTlId, 0, cmInvalidId);
  458. cmDspSetDefaultUInt( ctx, &p->inst, kCursTlId, 0, 0);
  459. cmDspSetDefaultStrcz(ctx, &p->inst, kAudFnTlId, NULL, "");
  460. cmDspSetDefaultStrcz(ctx, &p->inst, kAudLblTlId, NULL, "");
  461. cmDspSetDefaultStrcz(ctx, &p->inst, kMidiFnTlId, NULL, "");
  462. cmDspSetDefaultStrcz(ctx, &p->inst, kMidiLblTlId, NULL, "");
  463. cmDspSetDefaultInt( ctx, &p->inst, kBegAudSmpIdxTlId, 0, cmInvalidIdx);
  464. cmDspSetDefaultInt( ctx, &p->inst, kEndAudSmpIdxTlId, 0, cmInvalidIdx);
  465. cmDspSetDefaultInt( ctx, &p->inst, kBegMidiSmpIdxTlId, 0, cmInvalidIdx);
  466. cmDspSetDefaultInt( ctx, &p->inst, kEndMidiSmpIdxTlId, 0, cmInvalidIdx);
  467. // create the UI control
  468. cmDspUiTimeLineCreate(ctx,&p->inst,kTlFileTlId,kPrefixPathTlId,kSelTlId,kMeasTlId,kCursTlId);
  469. p->tlH = cmTimeLineNullHandle;
  470. return &p->inst;
  471. }
  472. cmDspRC_t _cmDspTimeLineFree(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  473. {
  474. cmDspRC_t rc = kOkDspRC;
  475. cmDspTimeLine_t* p = (cmDspTimeLine_t*)inst;
  476. if( cmTimeLineFinalize(&p->tlH) != kOkTlRC )
  477. return cmErrMsg(&inst->classPtr->err, kInstFinalFailDspRC, "Time-line finalize failed.");
  478. return rc;
  479. }
  480. cmDspRC_t _cmDspTimeLineReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  481. {
  482. cmDspRC_t rc = kOkDspRC;
  483. cmDspTimeLine_t* p = (cmDspTimeLine_t*)inst;
  484. cmDspApplyAllDefaults(ctx,inst);
  485. const cmChar_t* tlFn;
  486. const cmChar_t* tlPrePath = cmDspStrcz(inst,kPrefixPathTlId);
  487. if((tlFn = cmDspStrcz(inst, kTlFileTlId )) != NULL )
  488. if( cmTimeLineInitializeFromFile(ctx->cmCtx, &p->tlH, NULL, NULL, tlFn, tlPrePath ) != kOkTlRC )
  489. rc = cmErrMsg(&inst->classPtr->err, kInstResetFailDspRC, "Time-line file open failed.");
  490. return rc;
  491. }
  492. cmDspRC_t _cmDspTimeLineRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  493. {
  494. cmDspTimeLine_t* p = (cmDspTimeLine_t*)inst;
  495. switch( evt->dstVarId )
  496. {
  497. case kPrefixPathTlId:
  498. cmDspSetEvent(ctx,inst,evt);
  499. break;
  500. case kCursTlId:
  501. cmDspSetEvent(ctx,inst,evt);
  502. break;
  503. case kResetTlId:
  504. case kSelTlId:
  505. {
  506. unsigned markerId;
  507. cmDspSetEvent(ctx,inst,evt);
  508. // get the id of the selected marker
  509. if((markerId = cmDspUInt(inst,kSelTlId)) != cmInvalidId )
  510. {
  511. // get the marker object
  512. cmTlObj_t* op;
  513. if((op = cmTimeLineIdToObj(p->tlH, cmInvalidId, markerId )) != NULL )
  514. {
  515. assert(op->typeId == kMarkerTlId || op->typeId == kMidiEvtTlId );
  516. p->afIdx = op->begSmpIdx;
  517. cmDspSetInt(ctx, inst, kBegAudSmpIdxTlId, op->begSmpIdx );
  518. cmDspSetInt(ctx, inst, kEndAudSmpIdxTlId, op->begSmpIdx + op->durSmpCnt );
  519. // locate the audio file assoc'd with the marker
  520. cmTlAudioFile_t* afp;
  521. if((afp = cmTimeLineAudioFileAtTime(p->tlH,op->seqId,op->seqSmpIdx)) != NULL)
  522. {
  523. cmDspSetStrcz(ctx, inst, kAudFnTlId, afp->fn );
  524. cmDspSetStrcz(ctx, inst, kAudLblTlId, afp->obj.name );
  525. }
  526. // locate the midi file assoc'd with the marker
  527. cmTlMidiFile_t* mfp;
  528. if((mfp = cmTimeLineMidiFileAtTime(p->tlH,op->seqId,op->seqSmpIdx)) != NULL )
  529. {
  530. cmDspSetInt(ctx, inst, kBegMidiSmpIdxTlId, op->seqSmpIdx - mfp->obj.seqSmpIdx );
  531. cmDspSetInt(ctx, inst, kEndMidiSmpIdxTlId, op->seqSmpIdx + op->durSmpCnt - mfp->obj.seqSmpIdx );
  532. cmDspSetStrcz(ctx, inst, kMidiFnTlId, mfp->fn );
  533. cmDspSetStrcz(ctx, inst, kMidiLblTlId,mfp->obj.name );
  534. }
  535. }
  536. }
  537. }
  538. break;
  539. case kMeasTlId:
  540. cmDspSetEvent(ctx,inst,evt);
  541. break;
  542. default:
  543. {assert(0);}
  544. }
  545. return kOkDspRC;
  546. }
  547. cmDspClass_t* cmTimeLineClassCons( cmDspCtx_t* ctx )
  548. {
  549. cmDspClassSetup(&_cmTimeLineDC,ctx,"TimeLine",
  550. NULL,
  551. _cmDspTimeLineAlloc,
  552. _cmDspTimeLineFree,
  553. _cmDspTimeLineReset,
  554. NULL,
  555. _cmDspTimeLineRecv,
  556. NULL,NULL,
  557. "Time Line control.");
  558. return &_cmTimeLineDC;
  559. }
  560. //------------------------------------------------------------------------------------------------------------
  561. //)
  562. //( { label:cmDspScore file_desc:"Musical score user interface unit." kw:[sunit] }
  563. enum
  564. {
  565. kFnScId,
  566. kSelScId,
  567. kSendScId,
  568. kStatusScId,
  569. kD0ScId,
  570. kD1ScId,
  571. kSmpIdxScId,
  572. kLocIdxScId,
  573. kCmdScId,
  574. kEvtIdxScId,
  575. kDynScId,
  576. kValTypeScId,
  577. kValueScId,
  578. kMeasScId,
  579. };
  580. cmDspClass_t _cmScoreDC;
  581. typedef struct
  582. {
  583. cmDspInst_t inst;
  584. cmScH_t scH;
  585. cmDspCtx_t* ctx; // temporary ctx ptr used during cmScore callback in _cmDspScoreRecv()
  586. unsigned printSymId;
  587. } cmDspScore_t;
  588. cmDspInst_t* _cmDspScoreAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  589. {
  590. cmDspVarArg_t args[] =
  591. {
  592. { "fn", kFnScId, 0, 0, kInDsvFl | kStrzDsvFl | kReqArgDsvFl, "Score file." },
  593. { "sel", kSelScId, 0, 0, kInDsvFl | kOutDsvFl | kUIntDsvFl, "Selected score element index input."},
  594. { "send", kSendScId, 0, 0, kInDsvFl | kTypeDsvMask, "Resend last selected score element."},
  595. { "status", kStatusScId, 0, 0, kInDsvFl | kIntDsvFl, "Performed MIDI status value output" },
  596. { "d0", kD0ScId, 0, 0, kInDsvFl | kUIntDsvFl, "Performed MIDI msg data byte 0" },
  597. { "d1", kD1ScId, 0, 0, kInDsvFl | kUIntDsvFl, "Performed MIDI msg data byte 1" },
  598. { "smpidx", kSmpIdxScId, 0, 0, kInDsvFl | kUIntDsvFl, "Performed MIDi msg time tag as a sample index." },
  599. { "loc", kLocIdxScId, 0, 0, kInDsvFl | kUIntDsvFl, "Performance score location."},
  600. { "cmd", kCmdScId, 0, 0, kInDsvFl | kSymDsvFl, "cmd: dump "},
  601. { "evtidx", kEvtIdxScId, 0, 0, kOutDsvFl | kUIntDsvFl, "Performed event index of following dynamcis level."},
  602. { "dyn", kDynScId, 0, 0, kOutDsvFl | kUIntDsvFl, "Dynamic level of previous event index."},
  603. { "type", kValTypeScId,0, 0, kOutDsvFl | kUIntDsvFl, "Output variable type."},
  604. { "value", kValueScId, 0, 0, kOutDsvFl | kDoubleDsvFl, "Output variable value."},
  605. { "meas", kMeasScId, 0, 0, kInDsvFl | kUIntDsvFl, "Trigger this measures location to emit from 'sel'."},
  606. { NULL, 0, 0, 0, 0 }
  607. };
  608. cmDspScore_t* p = cmDspInstAlloc(cmDspScore_t,ctx,classPtr,args,instSymId,id,storeSymId,va_cnt,vl);
  609. cmDspSetDefaultUInt( ctx, &p->inst, kSelScId, 0, cmInvalidId);
  610. p->printSymId = cmSymTblRegisterStaticSymbol(ctx->stH,"dump");
  611. // create the UI control
  612. cmDspUiScoreCreate(ctx,&p->inst,kFnScId,kSelScId,kSmpIdxScId,kD0ScId,kD1ScId,kLocIdxScId,kEvtIdxScId,kDynScId,kValTypeScId,kValueScId,kMeasScId);
  613. p->scH = cmScNullHandle;
  614. return &p->inst;
  615. }
  616. cmDspRC_t _cmDspScoreFree(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  617. {
  618. cmDspRC_t rc = kOkDspRC;
  619. cmDspScore_t* p = (cmDspScore_t*)inst;
  620. if( cmScoreFinalize(&p->scH) != kOkTlRC )
  621. return cmErrMsg(&inst->classPtr->err, kInstFinalFailDspRC, "Score finalize failed.");
  622. return rc;
  623. }
  624. // Callback from cmScore triggered from _cmDspScoreRecv() during call to cmScoreSetPerfEvent().
  625. void _cmDspScoreCb( void* arg, const void* data, unsigned byteCnt )
  626. {
  627. cmDspInst_t* inst = (cmDspInst_t*)arg;
  628. cmDspScore_t* p = (cmDspScore_t*)inst;
  629. cmScMsg_t m;
  630. if( cmScoreDecode(data,byteCnt,&m) == kOkScRC )
  631. {
  632. switch( m.typeId )
  633. {
  634. case kDynMsgScId:
  635. cmDspSetUInt( p->ctx,inst, kEvtIdxScId, m.u.dyn.evtIdx );
  636. cmDspSetUInt( p->ctx,inst, kDynScId, m.u.dyn.dynLvl );
  637. break;
  638. case kVarMsgScId:
  639. cmDspSetUInt( p->ctx,inst, kValTypeScId, m.u.meas.varId);
  640. cmDspSetDouble(p->ctx,inst, kValueScId, m.u.meas.value);
  641. break;
  642. default:
  643. { assert(0); }
  644. }
  645. }
  646. }
  647. cmDspRC_t _cmDspScoreReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  648. {
  649. cmDspRC_t rc = kOkDspRC;
  650. cmDspScore_t* p = (cmDspScore_t*)inst;
  651. const cmChar_t* tlFn = NULL;
  652. unsigned* dynRefArray = NULL;
  653. unsigned dynRefCnt = 0;
  654. cmDspApplyAllDefaults(ctx,inst);
  655. if( cmDspRsrcUIntArray(ctx->dspH, &dynRefCnt, &dynRefArray, "dynRef", NULL ) != kOkDspRC )
  656. {
  657. rc = cmErrMsg(&inst->classPtr->err, kRsrcNotFoundDspRC, "The dynamics reference array resource was not found.");
  658. goto errLabel;
  659. }
  660. if((tlFn = cmDspStrcz(inst, kFnScId )) != NULL )
  661. {
  662. if( cmScoreInitialize(ctx->cmCtx, &p->scH, tlFn, cmDspSampleRate(ctx), dynRefArray, dynRefCnt, _cmDspScoreCb, p, ctx->stH ) != kOkTlRC )
  663. rc = cmErrMsg(&inst->classPtr->err, kInstResetFailDspRC, "Score file open failed.");
  664. //else
  665. // cmScorePrintLoc(p->scH);
  666. }
  667. errLabel:
  668. return rc;
  669. }
  670. cmDspRC_t _cmDspScoreRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  671. {
  672. cmDspScore_t* p = (cmDspScore_t*)inst;
  673. if( evt->dstVarId == kSendScId )
  674. {
  675. unsigned selIdx;
  676. if((selIdx = cmDspUInt(inst,kSelScId)) != cmInvalidIdx )
  677. {
  678. cmDspSetUInt(ctx,inst,kSelScId, selIdx );
  679. cmScoreClearPerfInfo(p->scH);
  680. }
  681. return kOkDspRC;
  682. }
  683. cmDspSetEvent(ctx,inst,evt);
  684. switch( evt->dstVarId )
  685. {
  686. case kSelScId:
  687. cmScoreClearPerfInfo(p->scH);
  688. break;
  689. case kStatusScId:
  690. //printf("st:%x\n",cmDspUInt(inst,kStatusScId));
  691. break;
  692. case kLocIdxScId:
  693. {
  694. assert( cmDspUInt(inst,kStatusScId ) == kNoteOnMdId );
  695. p->ctx = ctx; // setup p->ctx for use in _cmDspScoreCb()
  696. // this call may result in callbacks to _cmDspScoreCb()
  697. cmScoreExecPerfEvent(p->scH, cmDspUInt(inst,kLocIdxScId), cmDspUInt(inst,kSmpIdxScId), cmDspUInt(inst,kD0ScId), cmDspUInt(inst,kD1ScId) );
  698. }
  699. break;
  700. case kCmdScId:
  701. if( cmDspSymbol(inst,kCmdScId) == p->printSymId )
  702. cmScorePrintLoc(p->scH);
  703. break;
  704. case kMeasScId:
  705. break;
  706. }
  707. return kOkDspRC;
  708. }
  709. cmDspClass_t* cmScoreClassCons( cmDspCtx_t* ctx )
  710. {
  711. cmDspClassSetup(&_cmScoreDC,ctx,"Score",
  712. NULL,
  713. _cmDspScoreAlloc,
  714. _cmDspScoreFree,
  715. _cmDspScoreReset,
  716. NULL,
  717. _cmDspScoreRecv,
  718. NULL,NULL,
  719. "Score control.");
  720. return &_cmScoreDC;
  721. }
  722. //------------------------------------------------------------------------------------------------------------
  723. //)
  724. //( { label:cmDspMidiFilePlay file_desc:"MIDI file player." kw:[sunit] }
  725. enum
  726. {
  727. kFnMfId,
  728. kSelMfId,
  729. kBsiMfId,
  730. kEsiMfId,
  731. kStatusMfId,
  732. kD0MfId,
  733. kD1MfId,
  734. kSmpIdxMfId,
  735. kIdMfId
  736. };
  737. cmDspClass_t _cmMidiFilePlayDC;
  738. typedef struct
  739. {
  740. cmDspInst_t inst;
  741. cmMidiFileH_t mfH;
  742. unsigned curMsgIdx; // current midi file msg index
  743. int csi; // current sample index
  744. int bsi; // starting sample index
  745. int esi; // ending sample index
  746. unsigned startSymId;
  747. unsigned stopSymId;
  748. unsigned contSymId;
  749. bool errFl;
  750. } cmDspMidiFilePlay_t;
  751. // 'bsi' and 'esi' give the starting and ending sample for MIDI file playback.
  752. // These indexes are relative to the start of the file.
  753. // When the player recieves a 'start' msg it sets the current sample index
  754. // 'si' to 'bsi' and begins scanning for the next note to play.
  755. // On each call to the _cmDspMidiFilePlayExec() msgs that fall in the interval
  756. // si:si+sPc-1 will be transmitted. (where sPc are the number of samples per DSP cycle).
  757. cmDspInst_t* _cmDspMidiFilePlayAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  758. {
  759. cmDspVarArg_t args[] =
  760. {
  761. { "fn", kFnMfId, 0, 0, kInDsvFl | kStrzDsvFl, "File name"},
  762. { "sel", kSelMfId, 0, 0, kInDsvFl | kSymDsvFl, "start | stop | continue" },
  763. { "bsi", kBsiMfId, 0, 0, kInDsvFl | kIntDsvFl, "Starting sample." },
  764. { "esi", kEsiMfId, 0, 0, kInDsvFl | kIntDsvFl, "Ending sample."},
  765. { "status", kStatusMfId, 0, 0, kOutDsvFl | kIntDsvFl, "Status value output" },
  766. { "d0", kD0MfId, 0, 0, kOutDsvFl | kUIntDsvFl, "Data byte 0" },
  767. { "d1", kD1MfId, 0, 0, kOutDsvFl | kUIntDsvFl, "Data byte 1" },
  768. { "smpidx", kSmpIdxMfId, 0, 0, kOutDsvFl | kUIntDsvFl, "Msg time tag as a sample index." },
  769. { "id", kIdMfId, 0, 0, kOutDsvFl | kUIntDsvFl, "MIDI file msg unique id."},
  770. { NULL, 0, 0, 0, 0 }
  771. };
  772. cmDspMidiFilePlay_t* p = cmDspInstAlloc(cmDspMidiFilePlay_t,ctx,classPtr,args,instSymId,id,storeSymId,va_cnt,vl);
  773. p->startSymId = cmSymTblRegisterStaticSymbol(ctx->stH,"start");
  774. p->stopSymId = cmSymTblRegisterStaticSymbol(ctx->stH,"stop");
  775. p->contSymId = cmSymTblRegisterStaticSymbol(ctx->stH,"continue");
  776. p->mfH = cmMidiFileNullHandle;
  777. cmDspSetDefaultStrcz( ctx, &p->inst, kFnMfId, NULL, "");
  778. cmDspSetDefaultSymbol(ctx, &p->inst, kSelMfId, p->stopSymId);
  779. cmDspSetDefaultInt( ctx, &p->inst, kBsiMfId, 0, 0);
  780. cmDspSetDefaultInt( ctx, &p->inst, kEsiMfId, 0, 0);
  781. cmDspSetDefaultUInt( ctx, &p->inst, kStatusMfId, 0, 0);
  782. cmDspSetDefaultUInt( ctx, &p->inst, kD0MfId, 0, 0);
  783. cmDspSetDefaultUInt( ctx, &p->inst, kD1MfId, 0, 0);
  784. return &p->inst;
  785. }
  786. cmDspRC_t _cmDspMidiFilePlayFree(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  787. {
  788. cmDspMidiFilePlay_t* p = (cmDspMidiFilePlay_t*)inst;
  789. if( cmMidiFileClose(&p->mfH) )
  790. return cmErrMsg(&inst->classPtr->err, kInstFinalFailDspRC, "MIDI file close failed.");
  791. return kOkDspRC;
  792. }
  793. // return the index of the msg following smpIdx
  794. unsigned _cmDspMidiFilePlaySeekMsgIdx( cmDspCtx_t* ctx, cmDspInst_t* inst, unsigned smpIdx )
  795. {
  796. cmDspMidiFilePlay_t* p = (cmDspMidiFilePlay_t*)inst;
  797. if( cmMidiFileIsValid(p->mfH) == false )
  798. {
  799. cmErrMsg(&inst->classPtr->err, kInvalidStateDspRC,"The MIDI file player has not been given a valid MIDI file.");
  800. return cmInvalidIdx;
  801. }
  802. unsigned i;
  803. unsigned n = cmMidiFileMsgCount(p->mfH);
  804. const cmMidiTrackMsg_t** a = cmMidiFileMsgArray(p->mfH);
  805. for(i=0; i<n; ++i)
  806. if( (a[i]->amicro * cmDspSampleRate(ctx) / 1000000.0) >= smpIdx )
  807. break;
  808. return i==n ? cmInvalidIdx : i;
  809. }
  810. cmDspRC_t _cmDspMidiFilePlayOpen(cmDspCtx_t* ctx, cmDspInst_t* inst )
  811. {
  812. cmDspRC_t rc = kOkDspRC;
  813. const cmChar_t* fn = cmDspStrcz(inst,kFnMfId);
  814. cmDspMidiFilePlay_t* p = (cmDspMidiFilePlay_t*)inst;
  815. p->errFl = false;
  816. if( fn==NULL || strlen(fn)==0 )
  817. return rc;
  818. if( cmMidiFileOpen( ctx->cmCtx, &p->mfH, fn ) != kOkFileRC )
  819. rc = cmErrMsg(&inst->classPtr->err, kInstResetFailDspRC, "MIDI file open failed.");
  820. else
  821. {
  822. p->curMsgIdx = 0;
  823. p->bsi = cmDspInt(inst,kBsiMfId);
  824. p->esi = cmDspInt(inst,kEsiMfId);
  825. p->csi = 0;
  826. // force the first msg to occurr one quarter note into the file
  827. cmMidiFileSetDelay(p->mfH, cmMidiFileTicksPerQN(p->mfH) );
  828. // convert midi msg times to absolute time in samples
  829. //cmMidiFileTickToSamples(p->mfH,cmDspSampleRate(ctx),true);
  830. }
  831. return rc;
  832. }
  833. cmDspRC_t _cmDspMidiFilePlayReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  834. {
  835. cmDspApplyAllDefaults(ctx,inst);
  836. return _cmDspMidiFilePlayOpen(ctx,inst);
  837. }
  838. cmDspRC_t _cmDspMidiFilePlayExec(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  839. {
  840. cmDspRC_t rc = kOkDspRC;
  841. cmDspMidiFilePlay_t* p = (cmDspMidiFilePlay_t*)inst;
  842. unsigned sPc = cmDspSamplesPerCycle(ctx);
  843. if( cmDspSymbol(inst,kSelMfId) != p->stopSymId )
  844. {
  845. if( cmMidiFileIsValid(p->mfH) == false )
  846. {
  847. if( p->errFl==false )
  848. {
  849. rc = cmErrMsg(&inst->classPtr->err, kInvalidStateDspRC,"The MIDI file player has not been given a valid MIDI file.");
  850. p->errFl = true;
  851. }
  852. return rc;
  853. }
  854. const cmMidiTrackMsg_t** mpp = cmMidiFileMsgArray(p->mfH);
  855. unsigned msgN = cmMidiFileMsgCount(p->mfH);
  856. do
  857. {
  858. if( p->curMsgIdx >= msgN )
  859. break;
  860. const cmMidiTrackMsg_t* mp = mpp[p->curMsgIdx];
  861. // convert the absolute time in microseconds to samples
  862. unsigned curMsgTimeSmp = round(mp->amicro * cmDspSampleRate(ctx) / 1000000.0);
  863. // if this midi event falls inside this execution window
  864. if( p->csi > curMsgTimeSmp || curMsgTimeSmp >= (p->csi + sPc))
  865. break;
  866. switch( mp->status )
  867. {
  868. case kNoteOffMdId:
  869. case kNoteOnMdId:
  870. case kCtlMdId:
  871. cmDspSetUInt(ctx,inst, kSmpIdxMfId, curMsgTimeSmp);
  872. cmDspSetUInt(ctx,inst, kD1MfId, mp->u.chMsgPtr->d1);
  873. cmDspSetUInt(ctx,inst, kD0MfId, mp->u.chMsgPtr->d0);
  874. cmDspSetUInt(ctx,inst, kStatusMfId, mp->status);
  875. cmDspSetUInt(ctx,inst, kIdMfId, mp->uid);
  876. break;
  877. }
  878. p->curMsgIdx += 1;
  879. }while(1);
  880. }
  881. p->csi += sPc;
  882. return rc;
  883. }
  884. cmDspRC_t _cmDspMidiFilePlayRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  885. {
  886. cmDspMidiFilePlay_t* p = (cmDspMidiFilePlay_t*)inst;
  887. cmDspSetEvent(ctx,inst,evt);
  888. switch(evt->dstVarId)
  889. {
  890. case kFnMfId:
  891. _cmDspMidiFilePlayOpen(ctx, inst );
  892. break;
  893. case kSelMfId:
  894. {
  895. if( cmDspSymbol(inst,kSelMfId)==p->startSymId )
  896. {
  897. p->csi = cmDspInt(inst,kBsiMfId);
  898. p->curMsgIdx = _cmDspMidiFilePlaySeekMsgIdx(ctx, inst, p->csi );
  899. }
  900. break;
  901. }
  902. }
  903. return kOkDspRC;
  904. }
  905. cmDspClass_t* cmMidiFilePlayClassCons( cmDspCtx_t* ctx )
  906. {
  907. cmDspClassSetup(&_cmMidiFilePlayDC,ctx,"MidiFilePlay",
  908. NULL,
  909. _cmDspMidiFilePlayAlloc,
  910. _cmDspMidiFilePlayFree,
  911. _cmDspMidiFilePlayReset,
  912. _cmDspMidiFilePlayExec,
  913. _cmDspMidiFilePlayRecv,
  914. NULL,NULL,
  915. "MIDI file player.");
  916. return &_cmMidiFilePlayDC;
  917. }
  918. //------------------------------------------------------------------------------------------------------------
  919. //)
  920. //( { label:cmDspScFol file_desc:"MIDI performance score follower." kw:[sunit] }
  921. enum
  922. {
  923. kFnSfId,
  924. kBufCntSfId,
  925. kMaxWndCntSfId,
  926. kMinVelSfId,
  927. kMeasflSfId,
  928. kIndexSfId,
  929. kMuidSfId,
  930. kStatusSfId,
  931. kD0SfId,
  932. kD1SfId,
  933. kSmpIdxSfId,
  934. kCmdSfId,
  935. kOutSfId,
  936. kRecentSfId,
  937. kVlocSfId,
  938. kVtypSfId,
  939. kVvalSfId,
  940. kVcostSfId,
  941. kSymSfId
  942. };
  943. cmDspClass_t _cmScFolDC;
  944. struct cmDspScFol_str;
  945. typedef struct
  946. {
  947. cmDspCtx_t* ctx;
  948. struct cmDspScFol_str* sfp;
  949. } cmDspScFolCbArg_t;
  950. typedef struct cmDspScFol_str
  951. {
  952. cmDspInst_t inst;
  953. cmScMatcher* sfp;
  954. cmScMeas* smp;
  955. cmScH_t scH;
  956. cmDspScFolCbArg_t arg;
  957. unsigned printSymId;
  958. unsigned quietSymId;
  959. unsigned maxScLocIdx;
  960. bool liveFl;
  961. } cmDspScFol_t;
  962. cmDspInst_t* _cmDspScFolAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  963. {
  964. cmDspVarArg_t args[] =
  965. {
  966. { "fn", kFnSfId, 0, 0, kInDsvFl | kStrzDsvFl | kReqArgDsvFl, "Score file." },
  967. { "bufcnt",kBufCntSfId, 0, 0, kInDsvFl | kUIntDsvFl | kOptArgDsvFl, "Event buffer element count." },
  968. { "wndcnt",kMaxWndCntSfId,0, 0, kInDsvFl | kUIntDsvFl | kOptArgDsvFl, "Maximum window length."},
  969. { "minvel",kMinVelSfId, 0, 0, kInDsvFl | kUIntDsvFl | kOptArgDsvFl, "Minimum velocity."},
  970. { "measfl",kMeasflSfId, 0, 0, kInDsvFl | kBoolDsvFl | kOptArgDsvFl, "Enable measurements"},
  971. { "index", kIndexSfId, 0, 0, kInDsvFl | kUIntDsvFl, "Tracking start location."},
  972. { "muid", kMuidSfId, 0, 0, kInDsvFl | kUIntDsvFl, "MIDI msg file unique id"},
  973. { "status",kStatusSfId, 0, 0, kInDsvFl | kUIntDsvFl, "MIDI status byte"},
  974. { "d0", kD0SfId, 0, 0, kInDsvFl | kUIntDsvFl, "MIDI data byte 0"},
  975. { "d1", kD1SfId, 0, 0, kInDsvFl | kUIntDsvFl, "MIDI data byte 1"},
  976. { "smpidx",kSmpIdxSfId, 0, 0, kInDsvFl | kUIntDsvFl, "MIDI time tag as a sample index"},
  977. { "cmd", kCmdSfId, 0, 0, kInDsvFl | kSymDsvFl, "Command input: print | quiet"},
  978. { "out", kOutSfId, 0, 0, kOutDsvFl| kUIntDsvFl, "Maximum score location index."},
  979. { "recent",kRecentSfId, 0, 0, kOutDsvFl| kUIntDsvFl, "Most recent score location index."},
  980. { "vloc", kVlocSfId, 0, 0, kOutDsvFl| kUIntDsvFl, "Score location at which the variable value becomes active."},
  981. { "vtyp", kVtypSfId, 0, 0, kOutDsvFl| kUIntDsvFl, "Variable type: 0=even=kEvenVarScId 1=dyn=kDynVarScId 2=tempo=kTempoVarScId."},
  982. { "vval", kVvalSfId, 0, 0, kOutDsvFl| kDoubleDsvFl, "Variable value."},
  983. { "vcost", kVcostSfId, 0, 0, kOutDsvFl| kDoubleDsvFl, "Variable match cost value."},
  984. { "sym", kSymSfId, 0, 0, kOutDsvFl| kSymDsvFl, "Symbol associated with a global variable which has changed value."},
  985. { NULL, 0, 0, 0, 0, NULL }
  986. };
  987. cmDspScFol_t* p;
  988. if((p = cmDspInstAlloc(cmDspScFol_t,ctx,classPtr,args,instSymId,id,storeSymId,va_cnt,vl)) == NULL )
  989. return NULL;
  990. p->sfp = cmScMatcherAlloc(ctx->cmProcCtx, NULL, 0, cmScNullHandle, 0, 0, NULL, NULL );
  991. p->smp = cmScMeasAlloc( ctx->cmProcCtx, NULL, cmScNullHandle, 0, NULL, 0 );
  992. p->printSymId = cmSymTblRegisterStaticSymbol(ctx->stH,"print");
  993. p->quietSymId = cmSymTblRegisterStaticSymbol(ctx->stH,"quiet");
  994. p->maxScLocIdx= cmInvalidIdx;
  995. cmDspSetDefaultUInt( ctx, &p->inst, kBufCntSfId, 0, 7);
  996. cmDspSetDefaultUInt( ctx, &p->inst, kMaxWndCntSfId, 0, 10);
  997. cmDspSetDefaultUInt( ctx, &p->inst, kMinVelSfId, 0, 5);
  998. cmDspSetDefaultBool( ctx, &p->inst, kMeasflSfId, 0, 0);
  999. cmDspSetDefaultUInt( ctx, &p->inst, kIndexSfId, 0, 0);
  1000. cmDspSetDefaultUInt( ctx, &p->inst, kOutSfId, 0, 0);
  1001. cmDspSetDefaultUInt( ctx, &p->inst, kRecentSfId, 0, 0);
  1002. cmDspSetDefaultSymbol(ctx,&p->inst, kCmdSfId, p->quietSymId );
  1003. return &p->inst;
  1004. }
  1005. cmDspRC_t _cmDspScFolFree(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  1006. {
  1007. cmDspScFol_t* p = (cmDspScFol_t*)inst;
  1008. cmScMatcherFree(&p->sfp);
  1009. cmScMeasFree(&p->smp);
  1010. cmScoreFinalize(&p->scH);
  1011. return kOkDspRC;
  1012. }
  1013. // This is a callback function from cmScMatcherExec() which is called when
  1014. // this cmDspFol object receives a new score location index.
  1015. void _cmScFolMatcherCb( cmScMatcher* p, void* arg, cmScMatcherResult_t* rp )
  1016. {
  1017. cmDspScFolCbArg_t* ap = (cmDspScFolCbArg_t*)arg;
  1018. if( cmScMeasExec(ap->sfp->smp, rp->mni, rp->locIdx, rp->scEvtIdx, rp->flags, rp->smpIdx, rp->pitch, rp->vel ) == cmOkRC )
  1019. {
  1020. cmDspInst_t* inst = &(ap->sfp->inst);
  1021. // send 'set' values that were calculated on the previous call to cmScMeasExec()
  1022. unsigned i;
  1023. for(i=ap->sfp->smp->vsi; i<ap->sfp->smp->nsi; ++i)
  1024. if(ap->sfp->smp->set[i].value != DBL_MAX )
  1025. {
  1026. // switch( ap->sfp->smp->set[i].sp->varId )
  1027. // {
  1028. // case kEvenVarScId:
  1029. // cmDspSetDouble(ap->ctx,inst,kEvenSfId,ap->sfp->smp->set[i].value);
  1030. // break;
  1031. //
  1032. // case kDynVarScId:
  1033. // cmDspSetDouble(ap->ctx,inst,kDynSfId,ap->sfp->smp->set[i].value);
  1034. // break;
  1035. //
  1036. // case kTempoVarScId:
  1037. // cmDspSetDouble(ap->ctx,inst,kTempoSfId,ap->sfp->smp->set[i].value);
  1038. // break;
  1039. //
  1040. // default:
  1041. // { assert(0); }
  1042. // }
  1043. //
  1044. // cmDspSetDouble(ap->ctx,inst,kCostSfId,ap->sfp->smp->set[i].match_cost);
  1045. // Set the values in the global variable storage
  1046. cmDspValue_t vv,cv;
  1047. unsigned j;
  1048. cmDsvSetDouble(&vv,ap->sfp->smp->set[i].value);
  1049. cmDsvSetDouble(&cv,ap->sfp->smp->set[i].match_cost);
  1050. for(j=0; j<ap->sfp->smp->set[i].sp->sectCnt; ++j)
  1051. {
  1052. cmDspStoreSetValueViaSym(ap->ctx->dsH, ap->sfp->smp->set[i].sp->symArray[j], &vv );
  1053. cmDspStoreSetValueViaSym(ap->ctx->dsH, ap->sfp->smp->set[i].sp->costSymArray[j], &cv );
  1054. cmDspSetSymbol(ap->ctx,inst,kSymSfId,ap->sfp->smp->set[i].sp->symArray[j]);
  1055. cmDspSetSymbol(ap->ctx,inst,kSymSfId,ap->sfp->smp->set[i].sp->costSymArray[j]);
  1056. if( cmDspBool(inst,kMeasflSfId) )
  1057. {
  1058. cmDspSetUInt( ap->ctx, inst, kVlocSfId, ap->sfp->smp->set[i].sp->sectArray[j]->locPtr->index);
  1059. cmDspSetDouble( ap->ctx, inst, kVvalSfId, ap->sfp->smp->set[i].value);
  1060. cmDspSetDouble( ap->ctx, inst, kVcostSfId, ap->sfp->smp->set[i].match_cost);
  1061. cmDspSetUInt( ap->ctx, inst, kVtypSfId, ap->sfp->smp->set[i].sp->varId);
  1062. }
  1063. }
  1064. }
  1065. // // trigger 'section' starts
  1066. // for(i=ap->sfp->smp->vsli; i<ap->sfp->smp->nsli; ++i)
  1067. // {
  1068. // const cmScoreLoc_t* locPtr = cmScoreLoc(ap->sfp->smp->mp->scH,i);
  1069. // if( locPtr->begSectPtr != NULL )
  1070. // cmDspSetUInt(ap->ctx,inst,kSectIndexSfId,locPtr->begSectPtr->index);
  1071. // }
  1072. }
  1073. }
  1074. cmDspRC_t _cmDspScFolOpenScore( cmDspCtx_t* ctx, cmDspInst_t* inst )
  1075. {
  1076. cmDspRC_t rc = kOkDspRC;
  1077. cmDspScFol_t* p = (cmDspScFol_t*)inst;
  1078. const cmChar_t* fn;
  1079. if((fn = cmDspStrcz(inst,kFnSfId)) == NULL || strlen(fn)==0 )
  1080. return cmErrMsg(&inst->classPtr->err, kInvalidArgDspRC, "No score file name supplied.");
  1081. if( cmScoreInitialize(ctx->cmCtx, &p->scH, fn, cmDspSampleRate(ctx), NULL, 0, NULL, NULL, ctx->stH ) != kOkScRC )
  1082. return cmErrMsg(&inst->classPtr->err, kSubSysFailDspRC, "Unable to open the score '%s'.",fn);
  1083. if( cmScoreIsValid(p->scH) )
  1084. {
  1085. unsigned* dynRefArray = NULL;
  1086. unsigned dynRefCnt = 0;
  1087. // initialize the cmScMatcher
  1088. if( cmScMatcherInit(p->sfp, cmDspSampleRate(ctx), p->scH, cmDspUInt(inst,kMaxWndCntSfId), cmDspUInt(inst,kBufCntSfId), _cmScFolMatcherCb, p->smp ) != cmOkRC )
  1089. rc = cmErrMsg(&inst->classPtr->err, kSubSysFailDspRC, "Internal score follower allocation failed.");
  1090. // read the dynamics reference array
  1091. if( cmDspRsrcUIntArray(ctx->dspH, &dynRefCnt, &dynRefArray, "dynRef", NULL ) != kOkDspRC )
  1092. {
  1093. rc = cmErrMsg(&inst->classPtr->err, kRsrcNotFoundDspRC, "The dynamics reference array resource was not found.");
  1094. goto errLabel;
  1095. }
  1096. // initialize the cmScMeas object.
  1097. if( cmScMeasInit(p->smp, p->scH, cmDspSampleRate(ctx), dynRefArray, dynRefCnt ) != cmOkRC )
  1098. rc = cmErrMsg(&inst->classPtr->err, kSubSysFailDspRC, "Internal scMeas object initialization failed.");
  1099. }
  1100. errLabel:
  1101. return rc;
  1102. }
  1103. cmDspRC_t _cmDspScFolReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  1104. {
  1105. cmDspRC_t rc;
  1106. if((rc = cmDspApplyAllDefaults(ctx,inst)) != kOkDspRC )
  1107. return rc;
  1108. return _cmDspScFolOpenScore(ctx,inst);
  1109. }
  1110. cmDspRC_t _cmDspScFolRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  1111. {
  1112. cmDspRC_t rc = kOkDspRC;
  1113. cmDspScFol_t* p = (cmDspScFol_t*)inst;
  1114. if((rc = cmDspSetEvent(ctx,inst,evt)) == kOkDspRC && p->sfp != NULL )
  1115. {
  1116. switch( evt->dstVarId )
  1117. {
  1118. case kIndexSfId:
  1119. if( cmScoreIsValid(p->scH) )
  1120. {
  1121. p->maxScLocIdx = cmInvalidIdx;
  1122. if( cmScMeasReset( p->smp ) != cmOkRC )
  1123. cmErrMsg(&inst->classPtr->err, kSubSysFailDspRC, "Score measure unit reset to score index '%i' failed.");
  1124. if( cmScMatcherReset( p->sfp, cmDspUInt(inst,kIndexSfId) ) != cmOkRC )
  1125. cmErrMsg(&inst->classPtr->err, kSubSysFailDspRC, "Score follower reset to score index '%i' failed.");
  1126. }
  1127. break;
  1128. case kStatusSfId:
  1129. if( cmScoreIsValid(p->scH))
  1130. {
  1131. unsigned scLocIdx = cmInvalidIdx;
  1132. // setup the cmScMeas() callback arg.
  1133. p->arg.ctx = ctx;
  1134. p->arg.sfp = p;
  1135. p->sfp->cbArg = &p->arg;
  1136. // this call may result in a callback to _cmScFolMatcherCb()
  1137. if( cmScMatcherExec(p->sfp, cmDspUInt(inst,kSmpIdxSfId), cmDspUInt(inst,kMuidSfId), cmDspUInt(inst,kStatusSfId), cmDspUInt(inst,kD0SfId), cmDspUInt(inst,kD1SfId), &scLocIdx) == cmOkRC )
  1138. if( scLocIdx != cmInvalidIdx )
  1139. {
  1140. // It is possible that the internal score follower may go backwards.
  1141. // In this case it will report a given score location multiple times or out of time order.
  1142. // The 'out' port will only be updated under the circumstances that no later
  1143. // score location has been seen - so the last output from 'out' always reports
  1144. // the furthest possible progress in the score. THe 'recent' output simply reports
  1145. // the most recent output from the internal score follower which may include
  1146. // previously reported or out of order score locations.
  1147. cmDspSetUInt(ctx,inst,kRecentSfId,scLocIdx);
  1148. if( p->maxScLocIdx==cmInvalidIdx || p->maxScLocIdx < scLocIdx )
  1149. {
  1150. p->maxScLocIdx = scLocIdx;
  1151. cmDspSetUInt(ctx,inst,kOutSfId,scLocIdx);
  1152. }
  1153. }
  1154. }
  1155. break;
  1156. case kFnSfId:
  1157. _cmDspScFolOpenScore(ctx,inst);
  1158. break;
  1159. case kCmdSfId:
  1160. if( cmDspSymbol(inst,kCmdSfId) == p->printSymId )
  1161. p->sfp->printFl = true;
  1162. else
  1163. if( cmDspSymbol(inst,kCmdSfId) == p->quietSymId )
  1164. p->sfp->printFl = false;
  1165. break;
  1166. }
  1167. }
  1168. return rc;
  1169. }
  1170. cmDspClass_t* cmScFolClassCons( cmDspCtx_t* ctx )
  1171. {
  1172. cmDspClassSetup(&_cmScFolDC,ctx,"ScFol",
  1173. NULL,
  1174. _cmDspScFolAlloc,
  1175. _cmDspScFolFree,
  1176. _cmDspScFolReset,
  1177. NULL,
  1178. _cmDspScFolRecv,
  1179. NULL,NULL,
  1180. "Score Follower");
  1181. return &_cmScFolDC;
  1182. }
  1183. //------------------------------------------------------------------------------------------------------------
  1184. //)
  1185. //( { label:cmDspScMod file_desc:"Score driven parameter automation." kw:[sunit] }
  1186. enum
  1187. {
  1188. kScLocIdxMdId,
  1189. kResetIdxMdId,
  1190. kCmdMdId,
  1191. kSelMdId,
  1192. kPostMdId
  1193. };
  1194. cmDspClass_t _cmModulatorDC;
  1195. typedef struct
  1196. {
  1197. cmDspInst_t inst;
  1198. cmScModulator* mp;
  1199. cmDspCtx_t* tmp_ctx; // used to temporarily hold the current cmDspCtx during callback
  1200. cmChar_t* fn;
  1201. cmChar_t* modLabel;
  1202. unsigned onSymId;
  1203. unsigned offSymId;
  1204. unsigned postSymId;
  1205. unsigned dumpSymId;
  1206. unsigned minInVarId;
  1207. unsigned maxInVarId;
  1208. unsigned* inVarIdMap;
  1209. unsigned inVarIdOffs;
  1210. } cmDspScMod_t;
  1211. void _cmDspScModCb( void* arg, unsigned varSymId, double value, bool postFl )
  1212. {
  1213. cmDspScMod_t* p = (cmDspScMod_t*)arg;
  1214. cmDspVar_t* varPtr;
  1215. if((varPtr = cmDspVarSymbolToPtr( p->tmp_ctx, &p->inst, varSymId, 0 )) == NULL )
  1216. return;
  1217. cmDspSetDouble(p->tmp_ctx,&p->inst,varPtr->constId,value);
  1218. if( postFl )
  1219. cmDspSetSymbol(p->tmp_ctx,&p->inst,kPostMdId,p->postSymId);
  1220. }
  1221. cmDspInst_t* _cmDspScModAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  1222. {
  1223. va_list vl1;
  1224. va_copy(vl1,vl);
  1225. cmDspVarArg_t args[] =
  1226. {
  1227. { "index", kScLocIdxMdId, 0,0, kInDsvFl | kUIntDsvFl, "Score follower index input."},
  1228. { "reset", kResetIdxMdId, 0,0, kInDsvFl | kUIntDsvFl | kOptArgDsvFl, "Reset the modulator and go to the score index."},
  1229. { "cmd", kCmdMdId, 0,0, kInDsvFl | kSymDsvFl | kOptArgDsvFl, "on | off."},
  1230. { "sel", kSelMdId, 0,0, kInDsvFl | kSymDsvFl | kOptArgDsvFl, "Set the next active entry group name."},
  1231. { "post", kPostMdId, 0,0, kOutDsvFl | kSymDsvFl, "Sends 'post' symbol after a message transmission if the 'post' flag is set in scMod."},
  1232. { NULL, 0, 0, 0, 0 }
  1233. };
  1234. // validate the argument count
  1235. if( va_cnt != 2 )
  1236. {
  1237. cmDspClassErr(ctx,classPtr,kInvalidArgDspRC,"The Modulator requires at least two arguments.");
  1238. return NULL;
  1239. }
  1240. // read the modulator file and label strings
  1241. const cmChar_t* fn = va_arg(vl1,const cmChar_t*);
  1242. const cmChar_t* modLabel = va_arg(vl1,const cmChar_t*);
  1243. va_end(vl1);
  1244. // validate the file
  1245. if( fn==NULL || cmFsIsFile(fn)==false )
  1246. {
  1247. cmDspClassErr(ctx,classPtr,kInvalidArgDspRC,"The Modulator file '%s' is not valid.",cmStringNullGuard(fn));
  1248. return NULL;
  1249. }
  1250. // allocate the internal modulator object
  1251. cmScModulator* mp = cmScModulatorAlloc(ctx->cmProcCtx, NULL, ctx->cmCtx, ctx->stH, cmDspSampleRate(ctx), cmDspSamplesPerCycle(ctx), fn, modLabel, _cmDspScModCb, NULL );
  1252. if(mp == NULL )
  1253. {
  1254. cmDspClassErr(ctx,classPtr,kInvalidArgDspRC,"The internal modulator object initialization failed.");
  1255. return NULL;
  1256. }
  1257. unsigned fixArgCnt = sizeof(args)/sizeof(args[0]) - 1;
  1258. unsigned outVarCnt = cmScModulatorOutVarCount(mp);
  1259. unsigned inVarCnt = cmScModulatorInVarCount(mp);
  1260. unsigned argCnt = fixArgCnt + inVarCnt + outVarCnt;
  1261. cmDspVarArg_t a[ argCnt+1 ];
  1262. unsigned i;
  1263. unsigned* inVarIdMap = cmMemAllocZ( unsigned, inVarCnt );
  1264. cmDspArgCopy( a, argCnt, 0, args, fixArgCnt );
  1265. for(i=fixArgCnt; i<argCnt; ++i)
  1266. {
  1267. unsigned inVarIdx = i - fixArgCnt;
  1268. unsigned outVarIdx = inVarIdx - inVarCnt;
  1269. bool inputFl = inVarIdx < inVarCnt;
  1270. const cmScModVar_t* vp = inputFl ? cmScModulatorInVar(mp,inVarIdx) : cmScModulatorOutVar(mp,outVarIdx);
  1271. const cmChar_t* label = cmSymTblLabel( ctx->stH, vp->varSymId );
  1272. const cmChar_t* docStr = cmTsPrintfS("Variable %s for %s",inputFl?"input":"output",label);
  1273. unsigned flags = inputFl ? kInDsvFl : kOutDsvFl;
  1274. if( inputFl )
  1275. inVarIdMap[ inVarIdx ] = vp->varSymId;
  1276. cmDspArgSetup(ctx, a + i, label, cmInvalidId, i, 0, 0, flags | kDoubleDsvFl, docStr );
  1277. }
  1278. cmDspArgSetupNull(a+argCnt); // set terminating arg. flags
  1279. cmDspScMod_t* p = cmDspInstAlloc(cmDspScMod_t,ctx,classPtr,a,instSymId,id,storeSymId,va_cnt,vl);
  1280. p->fn = cmMemAllocStr(fn);
  1281. p->modLabel = cmMemAllocStr(modLabel);
  1282. p->mp = mp;
  1283. p->onSymId = cmSymTblId(ctx->stH,"on");
  1284. p->offSymId = cmSymTblId(ctx->stH,"off");
  1285. p->postSymId = cmSymTblRegisterStaticSymbol(ctx->stH,"post");
  1286. p->dumpSymId = cmSymTblId(ctx->stH,"dump");
  1287. p->minInVarId = fixArgCnt;
  1288. p->maxInVarId = p->minInVarId + inVarCnt - 1;
  1289. p->inVarIdMap = inVarIdMap;
  1290. p->inVarIdOffs = fixArgCnt;
  1291. mp->cbArg = p; // set the modulator callback arg
  1292. cmDspSetDefaultUInt(ctx,&p->inst,kScLocIdxMdId,0,0);
  1293. cmDspSetDefaultSymbol(ctx,&p->inst,kCmdMdId,p->offSymId);
  1294. cmDspSetDefaultSymbol(ctx,&p->inst,kSelMdId,cmInvalidId);
  1295. return &p->inst;
  1296. }
  1297. cmDspRC_t _cmDspScModFree(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  1298. {
  1299. cmDspRC_t rc = kOkDspRC;
  1300. cmDspScMod_t* p = (cmDspScMod_t*)inst;
  1301. if( cmScModulatorFree(&p->mp) != kOkTlRC )
  1302. return cmErrMsg(&inst->classPtr->err, kInstFinalFailDspRC, "Modulator release failed.");
  1303. cmMemFree(p->fn);
  1304. cmMemFree(p->modLabel);
  1305. cmMemFree(p->inVarIdMap);
  1306. return rc;
  1307. }
  1308. cmDspRC_t _cmDspScModReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  1309. {
  1310. cmDspRC_t rc = kOkDspRC;
  1311. cmDspApplyAllDefaults(ctx,inst);
  1312. return rc;
  1313. }
  1314. cmDspRC_t _cmDspScModRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  1315. {
  1316. cmDspScMod_t* p = (cmDspScMod_t*)inst;
  1317. cmDspSetEvent(ctx,inst,evt);
  1318. if( p->minInVarId <= evt->dstVarId && evt->dstVarId <= p->maxInVarId )
  1319. {
  1320. double v = cmDspDouble(inst,evt->dstVarId);
  1321. //printf("%s : %i %f\n",__FUNCTION__,evt->dstVarId,v);
  1322. cmScModulatorSetValue( p->mp, p->inVarIdMap[ evt->dstVarId - p->inVarIdOffs ], v );
  1323. }
  1324. switch( evt->dstVarId )
  1325. {
  1326. case kResetIdxMdId:
  1327. cmDspSetUInt(ctx,inst,kScLocIdxMdId,cmDspUInt(inst,kResetIdxMdId));
  1328. break;
  1329. case kCmdMdId:
  1330. {
  1331. unsigned symId = cmDspSymbol(inst,kCmdMdId);
  1332. if( symId == p->onSymId )
  1333. cmScModulatorReset(p->mp, ctx->cmCtx, cmDspUInt(inst,kScLocIdxMdId), cmDspSymbol(inst,kSelMdId));
  1334. if( symId == p->dumpSymId )
  1335. cmScModulatorDump(p->mp);
  1336. }
  1337. break;
  1338. }
  1339. return kOkDspRC;
  1340. }
  1341. cmDspRC_t _cmDspScModExec(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  1342. {
  1343. cmDspRC_t rc = kOkDspRC;
  1344. cmDspScMod_t* p = (cmDspScMod_t*)inst;
  1345. if( cmDspSymbol(inst,kCmdMdId) != p->offSymId )
  1346. {
  1347. p->tmp_ctx = ctx;
  1348. cmScModulatorExec(p->mp,cmDspUInt(inst,kScLocIdxMdId));
  1349. }
  1350. return rc;
  1351. }
  1352. cmDspClass_t* cmScModClassCons( cmDspCtx_t* ctx )
  1353. {
  1354. cmDspClassSetup(&_cmModulatorDC,ctx,"ScMod",
  1355. NULL,
  1356. _cmDspScModAlloc,
  1357. _cmDspScModFree,
  1358. _cmDspScModReset,
  1359. _cmDspScModExec,
  1360. _cmDspScModRecv,
  1361. NULL,NULL,
  1362. "Score Driven Variable Modulator.");
  1363. return &_cmModulatorDC;
  1364. }
  1365. //------------------------------------------------------------------------------------------------------------
  1366. //)
  1367. //( { label:cmDspGSwitch file_desc:"Route all inputs to one of a group of outputs." kw:[sunit] }
  1368. enum
  1369. {
  1370. kInChCntGsId,
  1371. kOutGroupCntGsId,
  1372. kGroupSelIdxGsId,
  1373. kBaseInFloatGsId
  1374. };
  1375. cmDspClass_t _cmGSwitchDC;
  1376. typedef struct
  1377. {
  1378. cmDspInst_t inst;
  1379. unsigned iChCnt;
  1380. unsigned oGroupCnt;
  1381. unsigned baseInFloatGsId;
  1382. unsigned baseInSymGsId;
  1383. unsigned baseInBoolGsId;
  1384. unsigned baseOutFloatGsId;
  1385. unsigned baseOutSymGsId;
  1386. unsigned baseOutBoolGsId;
  1387. } cmDspGSwitch_t;
  1388. cmDspInst_t* _cmDspGSwitchAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  1389. {
  1390. va_list vl1;
  1391. va_copy(vl1,vl);
  1392. cmDspVarArg_t args[] =
  1393. {
  1394. { "ichs", kInChCntGsId, 0,0, kUIntDsvFl | kReqArgDsvFl, "Input channel count."},
  1395. { "ochs", kOutGroupCntGsId, 0,0, kUIntDsvFl | kReqArgDsvFl, "Output group count."},
  1396. { "sel", kGroupSelIdxGsId, 0,0, kInDsvFl | kUIntDsvFl, "Group select index."},
  1397. { NULL, 0, 0, 0, 0 }
  1398. };
  1399. // validate the argument count
  1400. if( va_cnt != 2 )
  1401. {
  1402. cmDspClassErr(ctx,classPtr,kInvalidArgDspRC,"The GSwitch requires at least two arguments.");
  1403. return NULL;
  1404. }
  1405. // read the input ch and output group count
  1406. unsigned iChCnt = va_arg(vl1,unsigned);
  1407. unsigned oGroupCnt = va_arg(vl1,unsigned);
  1408. va_end(vl1);
  1409. // validate the channel counts
  1410. if( iChCnt == 0 || oGroupCnt==0 )
  1411. {
  1412. cmDspClassErr(ctx,classPtr,kInvalidArgDspRC,"The GSwitch input channel count and group count must be greater than zero.");
  1413. return NULL;
  1414. }
  1415. unsigned typeCnt = 3; // i.e. float,sym,bool
  1416. unsigned baseInFloatGsId = kBaseInFloatGsId;
  1417. unsigned baseInSymGsId = baseInFloatGsId + iChCnt;
  1418. unsigned baseInBoolGsId = baseInSymGsId + iChCnt;
  1419. unsigned baseOutFloatGsId = baseInBoolGsId + iChCnt;
  1420. unsigned baseOutSymGsId = baseOutFloatGsId + (iChCnt * oGroupCnt);
  1421. unsigned baseOutBoolGsId = baseOutSymGsId + (iChCnt * oGroupCnt);
  1422. unsigned fixArgCnt = 3;
  1423. unsigned varArgCnt = (iChCnt * typeCnt) + (iChCnt * typeCnt * oGroupCnt);
  1424. unsigned argCnt = fixArgCnt + varArgCnt;
  1425. cmDspVarArg_t a[ argCnt+1 ];
  1426. unsigned i;
  1427. cmDspArgCopy( a, argCnt, 0, args, fixArgCnt );
  1428. cmDspArgSetupN( ctx, a, argCnt, baseInFloatGsId, iChCnt, "f-in", baseInFloatGsId, 0, 0, kInDsvFl | kDoubleDsvFl, "Float input");
  1429. cmDspArgSetupN( ctx, a, argCnt, baseInSymGsId, iChCnt, "s-in", baseInSymGsId, 0, 0, kInDsvFl | kSymDsvFl, "Symbol input");
  1430. cmDspArgSetupN( ctx, a, argCnt, baseInBoolGsId, iChCnt, "b-in", baseInBoolGsId, 0, 0, kInDsvFl | kBoolDsvFl, "Bool input");
  1431. unsigned labelCharCnt = 63;
  1432. cmChar_t label[labelCharCnt+1];
  1433. label[labelCharCnt] = 0;
  1434. unsigned gsid = baseOutFloatGsId;
  1435. for(i=0; i<oGroupCnt; ++i, gsid+=iChCnt)
  1436. {
  1437. snprintf(label,labelCharCnt,"f-out-%i",i);
  1438. cmDspArgSetupN( ctx, a, argCnt, gsid, iChCnt, label, gsid, 0, 0, kInDsvFl | kDoubleDsvFl, "Float output");
  1439. }
  1440. gsid = baseOutSymGsId;
  1441. for(i=0; i<oGroupCnt; ++i, gsid+=iChCnt)
  1442. {
  1443. snprintf(label,labelCharCnt,"s-out-%i",i);
  1444. cmDspArgSetupN( ctx, a, argCnt, gsid, iChCnt, label, gsid, 0, 0, kInDsvFl | kSymDsvFl, "Symbol output");
  1445. }
  1446. gsid = baseOutBoolGsId;
  1447. for(i=0; i<oGroupCnt; ++i, gsid+=iChCnt)
  1448. {
  1449. snprintf(label,labelCharCnt,"b-out-%i",i);
  1450. cmDspArgSetupN( ctx,a, argCnt, gsid, iChCnt, label, gsid, 0, 0, kInDsvFl | kBoolDsvFl, "Bool output");
  1451. }
  1452. cmDspArgSetupNull(a+argCnt); // set terminating arg. flags
  1453. cmDspGSwitch_t* p = cmDspInstAlloc(cmDspGSwitch_t,ctx,classPtr,a,instSymId,id,storeSymId,va_cnt,vl);
  1454. p->iChCnt = iChCnt;
  1455. p->oGroupCnt = oGroupCnt;
  1456. p->baseInFloatGsId = baseInFloatGsId;
  1457. p->baseInSymGsId = baseInSymGsId;
  1458. p->baseInBoolGsId = baseInBoolGsId;
  1459. p->baseOutFloatGsId = baseOutFloatGsId;
  1460. p->baseOutSymGsId = baseOutSymGsId;
  1461. p->baseOutBoolGsId = baseOutBoolGsId;
  1462. cmDspSetDefaultUInt(ctx,&p->inst,kGroupSelIdxGsId,0,0);
  1463. return &p->inst;
  1464. }
  1465. cmDspRC_t _cmDspGSwitchReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  1466. {
  1467. cmDspRC_t rc = kOkDspRC;
  1468. cmDspApplyAllDefaults(ctx,inst);
  1469. return rc;
  1470. }
  1471. cmDspRC_t _cmDspGSwitchRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  1472. {
  1473. cmDspRC_t rc = kOkDspRC;
  1474. cmDspGSwitch_t* p = (cmDspGSwitch_t*)inst;
  1475. // if this is the group selector
  1476. if( evt->dstVarId == kGroupSelIdxGsId )
  1477. {
  1478. unsigned idx;
  1479. if( (idx = cmDsvGetUInt(evt->valuePtr)) > p->oGroupCnt )
  1480. cmDspInstErr(ctx,inst,kInvalidArgDspRC,"The GSwitch group select index %i is out of range %i.",idx,p->oGroupCnt);
  1481. else
  1482. cmDspSetEvent(ctx,inst,evt);
  1483. return rc;
  1484. }
  1485. // get the group selector
  1486. unsigned groupIdx = cmDspUInt(inst,kGroupSelIdxGsId);
  1487. assert( groupIdx < p->oGroupCnt);
  1488. // if this is a float input
  1489. if( p->baseInFloatGsId <= evt->dstVarId && evt->dstVarId < p->baseInFloatGsId + p->iChCnt )
  1490. {
  1491. unsigned outVarId = p->baseOutFloatGsId + (groupIdx * p->iChCnt) + (evt->dstVarId - p->baseInFloatGsId);
  1492. cmDspValueSet(ctx, inst, outVarId, evt->valuePtr, 0 );
  1493. return rc;
  1494. }
  1495. // if this is a symbol input
  1496. if( p->baseInSymGsId <= evt->dstVarId && evt->dstVarId < p->baseInSymGsId + p->iChCnt )
  1497. {
  1498. unsigned outVarId = p->baseOutSymGsId + (groupIdx * p->iChCnt) + (evt->dstVarId - p->baseInSymGsId);
  1499. cmDspValueSet(ctx, inst, outVarId, evt->valuePtr, 0 );
  1500. return rc;
  1501. }
  1502. // if this is a bool input
  1503. if( p->baseInBoolGsId <= evt->dstVarId && evt->dstVarId < p->baseInBoolGsId + p->iChCnt )
  1504. {
  1505. unsigned outVarId = p->baseOutBoolGsId + (groupIdx * p->iChCnt) + (evt->dstVarId - p->baseInBoolGsId);
  1506. cmDspValueSet(ctx, inst, outVarId, evt->valuePtr, 0 );
  1507. return rc;
  1508. }
  1509. return rc;
  1510. }
  1511. cmDspClass_t* cmGSwitchClassCons( cmDspCtx_t* ctx )
  1512. {
  1513. cmDspClassSetup(&_cmGSwitchDC,ctx,"GSwitch",
  1514. NULL,
  1515. _cmDspGSwitchAlloc,
  1516. NULL,
  1517. _cmDspGSwitchReset,
  1518. NULL,
  1519. _cmDspGSwitchRecv,
  1520. NULL,NULL,
  1521. "Ganged switch.");
  1522. return &_cmGSwitchDC;
  1523. }
  1524. //------------------------------------------------------------------------------------------------------------
  1525. //)
  1526. //( { label:cmDspScaleRange file_desc:"Offset and scale a scalar value." kw:[sunit] }
  1527. enum
  1528. {
  1529. kMinInSrId,
  1530. kMaxInSrId,
  1531. kMinOutSrId,
  1532. kMaxOutSrId,
  1533. kValInSrId,
  1534. kValOutSrId,
  1535. };
  1536. cmDspClass_t _cmScaleRangeDC;
  1537. typedef struct
  1538. {
  1539. cmDspInst_t inst;
  1540. } cmDspScaleRange_t;
  1541. cmDspInst_t* _cmDspScaleRangeAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  1542. {
  1543. va_list vl1;
  1544. va_copy(vl1,vl);
  1545. cmDspVarArg_t args[] =
  1546. {
  1547. { "min_in", kMinInSrId, 0,0, kInDsvFl | kDoubleDsvFl , "Min Input value."},
  1548. { "max_in", kMaxInSrId, 0,0, kInDsvFl | kDoubleDsvFl , "Max Input value."},
  1549. { "min_out", kMinOutSrId, 0,0, kInDsvFl | kDoubleDsvFl , "Min Output value."},
  1550. { "max_out", kMaxOutSrId, 0,0, kInDsvFl | kDoubleDsvFl , "Max Output value."},
  1551. { "val_in", kValInSrId, 0,0, kInDsvFl | kDoubleDsvFl, "Input value."},
  1552. { "val_out", kValOutSrId, 0,0, kOutDsvFl | kDoubleDsvFl, "Output value"},
  1553. { NULL, 0, 0, 0, 0 }
  1554. };
  1555. cmDspScaleRange_t* p = cmDspInstAlloc(cmDspScaleRange_t,ctx,classPtr,args,instSymId,id,storeSymId,va_cnt,vl);
  1556. cmDspSetDefaultDouble(ctx,&p->inst,kMinInSrId,0,0);
  1557. cmDspSetDefaultDouble(ctx,&p->inst,kMaxInSrId,0,1.0);
  1558. cmDspSetDefaultDouble(ctx,&p->inst,kMinOutSrId,0,0);
  1559. cmDspSetDefaultDouble(ctx,&p->inst,kMaxOutSrId,0,1.0);
  1560. return &p->inst;
  1561. }
  1562. cmDspRC_t _cmDspScaleRangeReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  1563. {
  1564. cmDspRC_t rc = kOkDspRC;
  1565. cmDspApplyAllDefaults(ctx,inst);
  1566. return rc;
  1567. }
  1568. cmDspRC_t _cmDspScaleRangeRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  1569. {
  1570. cmDspRC_t rc = kOkDspRC;
  1571. //cmDspScaleRange_t* p = (cmDspScaleRange_t*)inst;
  1572. cmDspSetEvent(ctx,inst,evt);
  1573. if( evt->dstVarId == kValInSrId )
  1574. {
  1575. double val = cmDspDouble(inst,kValInSrId);
  1576. double min_in = cmDspDouble(inst,kMinInSrId);
  1577. double max_in = cmDspDouble(inst,kMaxInSrId);
  1578. double min_out = cmDspDouble(inst,kMinOutSrId);
  1579. double max_out = cmDspDouble(inst,kMaxOutSrId);
  1580. double x = cmMax(min_in,cmMin(max_in,val));
  1581. x = (x - min_in)/(max_in - min_in);
  1582. x = min_out + x * (max_out - min_out);
  1583. cmDspSetDouble(ctx,inst,kValOutSrId, x );
  1584. //printf("%f (%f %f) : (%f %f) %f\n",val,min_in,max_in,min_out,max_out,x);
  1585. }
  1586. return rc;
  1587. }
  1588. cmDspClass_t* cmScaleRangeClassCons( cmDspCtx_t* ctx )
  1589. {
  1590. cmDspClassSetup(&_cmScaleRangeDC,ctx,"ScaleRange",
  1591. NULL,
  1592. _cmDspScaleRangeAlloc,
  1593. NULL,
  1594. _cmDspScaleRangeReset,
  1595. NULL,
  1596. _cmDspScaleRangeRecv,
  1597. NULL,NULL,
  1598. "Scale a value inside an input range to a value in the output range.");
  1599. return &_cmScaleRangeDC;
  1600. }
  1601. //------------------------------------------------------------------------------------------------------------
  1602. //)
  1603. //( { label:cmDspActiveMeas file_desc:"Issue stored parameter values at specified score locations." kw:[sunit] }
  1604. enum
  1605. {
  1606. kCntAmId,
  1607. kSflocAmId,
  1608. kLocAmId,
  1609. kTypeAmId,
  1610. kValueAmId,
  1611. kCstAmId,
  1612. kCmdAmId,
  1613. kScLocAmId,
  1614. kEvenAmId,
  1615. kDynAmId,
  1616. kTempoAmId,
  1617. kCostAmId
  1618. };
  1619. cmDspClass_t _cmActiveMeasDC;
  1620. typedef struct cmDspAmRecd_str
  1621. {
  1622. unsigned loc;
  1623. unsigned type;
  1624. double value;
  1625. double cost;
  1626. struct cmDspAmRecd_str* link;
  1627. } cmDspAmRecd_t;
  1628. //int cmDspActiveMeasRecdCompare(const void * p0, const void * p1)
  1629. //{
  1630. // return ((int)((cmDspActiveMeasRecd_t*)p0)->loc) - (int)(((cmDspActiveMeasRecd_t*)p1)->loc);
  1631. //}
  1632. typedef struct
  1633. {
  1634. cmDspInst_t inst;
  1635. unsigned addSymId;
  1636. unsigned clearSymId;
  1637. unsigned printSymId;
  1638. unsigned rewindSymId;
  1639. cmDspAmRecd_t* array; // array[cnt]
  1640. unsigned cnt;
  1641. cmDspAmRecd_t* list; // first recd in list sorted on 'loc'.
  1642. cmDspAmRecd_t* avail; // next empty recd
  1643. cmDspAmRecd_t* sent; // last recd sent
  1644. } cmDspActiveMeas_t;
  1645. void _cmDspAmAllocList( cmDspActiveMeas_t* p, unsigned cnt )
  1646. {
  1647. assert(p->array == NULL );
  1648. cmDspAmRecd_t* r = cmMemAllocZ(cmDspAmRecd_t,cnt);
  1649. p->cnt = cnt;
  1650. p->array = r;
  1651. p->list = NULL;
  1652. p->avail = r;
  1653. p->sent = NULL;
  1654. }
  1655. cmDspRC_t _cmDspActiveMeasAdd( cmDspCtx_t* ctx, cmDspActiveMeas_t* p, unsigned loc, unsigned type, double value, double cost)
  1656. {
  1657. assert( type != kInvalidVarScId );
  1658. cmDspAmRecd_t* rp = p->list;
  1659. cmDspAmRecd_t* pp = NULL;
  1660. // search for the location to add the new record
  1661. for(; rp!=NULL; rp=rp->link)
  1662. {
  1663. // if this loc and type already exists then replace the value and cost fields
  1664. if( rp->loc==loc && rp->type==type )
  1665. goto foundLabel;
  1666. // if this loc should be inserted before rp
  1667. if( loc < rp->loc )
  1668. break;
  1669. pp = rp;
  1670. }
  1671. // if the pre-allocated list is full
  1672. if( p->avail >= p->array+p->cnt )
  1673. return cmDspInstErr(ctx,&p->inst,kInvalidArgDspRC,"Unable to store new measurement record. All preallocated active measurement slots are in use.");
  1674. // if prepending to the list
  1675. if( pp == NULL )
  1676. {
  1677. rp = p->avail;
  1678. rp->link = p->list;
  1679. p->list = rp;
  1680. }
  1681. else
  1682. {
  1683. // if appending to the list after pp
  1684. if( rp == NULL )
  1685. {
  1686. // nothing to do
  1687. }
  1688. else // if inserting between pp and rp
  1689. {
  1690. p->avail->link = rp;
  1691. }
  1692. rp = p->avail;
  1693. pp->link = rp;
  1694. }
  1695. p->avail += 1;
  1696. foundLabel:
  1697. rp->loc = loc;
  1698. rp->type = type;
  1699. rp->value = value;
  1700. rp->cost = cost;
  1701. return kOkDspRC;
  1702. }
  1703. cmDspInst_t* _cmDspActiveMeasAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  1704. {
  1705. cmDspVarArg_t args[] =
  1706. {
  1707. { "cnt", kCntAmId, 0,0, kInDsvFl | kUIntDsvFl, "Maximum count of active measurements."},
  1708. { "sfloc", kSflocAmId, 0,0, kInDsvFl | kUIntDsvFl, "Score follower location input." },
  1709. { "loc", kLocAmId, 0,0, kInDsvFl | kUIntDsvFl, "Meas. location." },
  1710. { "type", kTypeAmId, 0,0, kInDsvFl | kUIntDsvFl, "Meas. Type. (even,dyn,...)" },
  1711. { "val", kValueAmId, 0,0, kInDsvFl | kDoubleDsvFl, "Meas. Value."},
  1712. { "cst", kCstAmId, 0,0, kInDsvFl | kDoubleDsvFl, "Meas. Cost."},
  1713. { "cmd", kCmdAmId, 0,0, kInDsvFl | kSymDsvFl, "Commands:add | clear | dump | rewind"},
  1714. { "scloc", kScLocAmId, 0,0, kOutDsvFl | kUIntDsvFl, "Score location"},
  1715. { "even", kEvenAmId, 0,0, kOutDsvFl | kDoubleDsvFl, "Even out"},
  1716. { "dyn", kDynAmId, 0,0, kOutDsvFl | kDoubleDsvFl, "Dyn out"},
  1717. { "tempo", kTempoAmId, 0,0, kOutDsvFl | kDoubleDsvFl, "Tempo out"},
  1718. { "cost", kCostAmId, 0,0, kOutDsvFl | kDoubleDsvFl, "Cost out"},
  1719. { NULL, 0, 0, 0, 0 }
  1720. };
  1721. cmDspActiveMeas_t* p = cmDspInstAlloc(cmDspActiveMeas_t,ctx,classPtr,args,instSymId,id,storeSymId,va_cnt,vl);
  1722. p->addSymId = cmSymTblRegisterStaticSymbol(ctx->stH,"add");
  1723. p->clearSymId = cmSymTblRegisterStaticSymbol(ctx->stH,"clear");
  1724. p->printSymId = cmSymTblRegisterStaticSymbol(ctx->stH,"dump");
  1725. p->rewindSymId= cmSymTblRegisterStaticSymbol(ctx->stH,"rewind");
  1726. cmDspSetDefaultUInt( ctx,&p->inst,kCntAmId, 0,256);
  1727. cmDspSetDefaultUInt( ctx,&p->inst,kScLocAmId,0,0);
  1728. cmDspSetDefaultDouble(ctx,&p->inst,kEvenAmId, 0,0);
  1729. cmDspSetDefaultDouble(ctx,&p->inst,kDynAmId, 0,0);
  1730. cmDspSetDefaultDouble(ctx,&p->inst,kTempoAmId,0,0);
  1731. cmDspSetDefaultDouble(ctx,&p->inst,kTempoAmId,0,0);
  1732. return &p->inst;
  1733. }
  1734. cmDspRC_t _cmDspActiveMeasPrint(cmDspCtx_t* ctx, cmDspActiveMeas_t* p )
  1735. {
  1736. cmDspAmRecd_t* rp = p->list;
  1737. for(; rp!=NULL; rp=rp->link)
  1738. {
  1739. const cmChar_t* label = "<null>";
  1740. switch( rp->type )
  1741. {
  1742. case kEvenVarScId: label="even "; break;
  1743. case kDynVarScId: label="dyn "; break;
  1744. case kTempoVarScId: label="tempo"; break;
  1745. default:
  1746. { assert(0); }
  1747. }
  1748. cmRptPrintf(ctx->rpt,"loc:%i %s %f %f\n",rp->loc,label,rp->value,rp->cost);
  1749. }
  1750. return kOkDspRC;
  1751. }
  1752. cmDspRC_t _cmDspActiveMeasClear(cmDspCtx_t* ctx, cmDspActiveMeas_t* p )
  1753. {
  1754. memset(p->array,0,sizeof(p->array[0])*p->cnt);
  1755. p->avail = p->array;
  1756. p->list = NULL;
  1757. p->avail = p->array;
  1758. return kOkDspRC;
  1759. }
  1760. cmDspRC_t _cmDspActiveMeasFree(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  1761. {
  1762. cmDspActiveMeas_t* p = (cmDspActiveMeas_t*)inst;
  1763. cmMemPtrFree(&p->array);
  1764. return kOkDspRC;
  1765. }
  1766. cmDspRC_t _cmDspActiveMeasReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  1767. {
  1768. cmDspRC_t rc = kOkDspRC;
  1769. cmDspActiveMeas_t* p = (cmDspActiveMeas_t*)inst;
  1770. cmDspApplyAllDefaults(ctx,inst);
  1771. unsigned cnt = cmMax(100,cmDspUInt(inst,kCntAmId));
  1772. _cmDspActiveMeasFree(ctx,inst,evt);
  1773. _cmDspAmAllocList(p,cnt);
  1774. return rc;
  1775. }
  1776. cmDspRC_t _cmDspActiveMeasRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  1777. {
  1778. cmDspRC_t rc = kOkDspRC;
  1779. cmDspActiveMeas_t* p = (cmDspActiveMeas_t*)inst;
  1780. cmDspSetEvent(ctx,inst,evt);
  1781. switch( evt->dstVarId )
  1782. {
  1783. case kSflocAmId:
  1784. {
  1785. unsigned sfloc = cmDspUInt(inst,kSflocAmId); // get the recv'd score location
  1786. cmDspAmRecd_t* rp = p->sent==NULL ? p->list : p->sent->link; // get the next recd to send
  1787. bool fl = false;
  1788. for(; rp!=NULL; rp=rp->link)
  1789. if( rp->loc <= sfloc )
  1790. {
  1791. // deterimine the records type
  1792. unsigned varId = cmInvalidId;
  1793. switch( rp->type )
  1794. {
  1795. case kEvenVarScId: varId = kEvenAmId; break;
  1796. case kDynVarScId: varId = kDynAmId; break;
  1797. case kTempoVarScId: varId = kTempoAmId; break;
  1798. default:
  1799. { assert(0); }
  1800. }
  1801. // Sending the location triggers the avail-ch to switch - so the location should only
  1802. // be sent once.
  1803. if( !fl )
  1804. {
  1805. cmDspSetUInt(ctx,inst,kScLocAmId,rp->loc);
  1806. fl = true;
  1807. }
  1808. // transmit the records value and cost
  1809. cmDspSetDouble(ctx,inst,varId,rp->value);
  1810. cmDspSetDouble(ctx,inst,kCostAmId,rp->cost);
  1811. p->sent = rp;
  1812. }
  1813. }
  1814. break;
  1815. case kCmdAmId:
  1816. {
  1817. unsigned cmdSymId = cmDspSymbol(inst,kCmdAmId);
  1818. if( cmdSymId == p->addSymId )
  1819. rc = _cmDspActiveMeasAdd(ctx,p,cmDspUInt(inst,kLocAmId),cmDspUInt(inst,kTypeAmId),cmDspDouble(inst,kValueAmId),cmDspDouble(inst,kCstAmId));
  1820. else
  1821. if( cmdSymId == p->clearSymId )
  1822. rc = _cmDspActiveMeasClear(ctx,p);
  1823. else
  1824. if( cmdSymId == p->printSymId )
  1825. rc = _cmDspActiveMeasPrint(ctx,p);
  1826. else
  1827. if(cmdSymId == p->rewindSymId )
  1828. p->sent = NULL;
  1829. }
  1830. break;
  1831. }
  1832. // switch( evt->dstVarId )
  1833. // {
  1834. // case kSflocAmId:
  1835. // if( p->nextFullIdx != cmInvalidIdx )
  1836. // {
  1837. // // get the recv'd score location
  1838. // unsigned sflocIdx = cmDspUInt(inst,kSflocAmId);
  1839. //
  1840. // unsigned prvLoc = cmInvalidIdx;
  1841. //
  1842. // // for each remaining avail record
  1843. // for(; p->nextFullIdx < p->nextEmptyIdx; p->nextFullIdx++)
  1844. // {
  1845. // cmDspActiveMeasRecd_t* r = p->array + p->nextFullIdx;
  1846. //
  1847. // // if this records score location is after the recv'd score loc then we're done
  1848. // if( r->loc > sflocIdx )
  1849. // break;
  1850. //
  1851. // // deterimine the records type
  1852. // unsigned varId = cmInvalidId;
  1853. // switch( r->type )
  1854. // {
  1855. // case kEvenVarScId: varId = kEvenAmId; break;
  1856. // case kDynVarScId: varId = kDynAmId; break;
  1857. // case kTempoVarScId: varId = kTempoAmId; break;
  1858. // default:
  1859. // { assert(0); }
  1860. // }
  1861. //
  1862. // // if this score location has not yet been sent then send it now
  1863. // if( prvLoc != r->loc )
  1864. // cmDspSetUInt(ctx,inst,kScLocAmId,r->loc);
  1865. //
  1866. // // transmit the records value and cost
  1867. // cmDspSetDouble(ctx,inst,varId,r->value);
  1868. // cmDspSetDouble(ctx,inst,kCostAmId,r->cost);
  1869. //
  1870. // prvLoc = r->loc;
  1871. // }
  1872. //
  1873. //
  1874. // }
  1875. // break;
  1876. //
  1877. // case kCmdAmId:
  1878. // {
  1879. // unsigned cmdSymId = cmDspSymbol(inst,kCmdAmId);
  1880. //
  1881. // if( cmdSymId == p->addSymId )
  1882. // {
  1883. // if( p->nextEmptyIdx >= p->cnt )
  1884. // cmDspInstErr(ctx,inst,kProcFailDspRC,"The active measurement list is full cnt=%i.",p->cnt);
  1885. // else
  1886. // {
  1887. // cmDspActiveMeasRecd_t* r = p->array + p->nextEmptyIdx;
  1888. // r->loc = cmDspUInt( inst,kLocAmId);
  1889. // r->type = cmDspUInt( inst,kTypeAmId);
  1890. // r->value = cmDspDouble(inst,kValueAmId);
  1891. // r->cost = cmDspDouble(inst,kCstAmId);
  1892. // p->nextEmptyIdx += 1;
  1893. //
  1894. // qsort(p->array,p->nextEmptyIdx,sizeof(p->array[0]),cmDspActiveMeasRecdCompare);
  1895. //
  1896. // if( p->nextEmptyIdx == 1 && p->nextFullIdx == cmInvalidIdx )
  1897. // p->nextFullIdx = 0;
  1898. //
  1899. // }
  1900. // }
  1901. //
  1902. // if( cmdSymId == p->clearSymId )
  1903. // rc = _cmDspActiveMeasClear(ctx,p);
  1904. // else
  1905. // if( cmdSymId == p->printSymId )
  1906. // rc = _cmDspActiveMeasPrint(ctx,p);
  1907. // else
  1908. // if(cmdSymId == p->rewindSymId )
  1909. // p->nextFullIdx = 0;
  1910. // }
  1911. // break;
  1912. //
  1913. // }
  1914. return rc;
  1915. }
  1916. cmDspClass_t* cmActiveMeasClassCons( cmDspCtx_t* ctx )
  1917. {
  1918. cmDspClassSetup(&_cmActiveMeasDC,ctx,"ActiveMeas",
  1919. NULL,
  1920. _cmDspActiveMeasAlloc,
  1921. _cmDspActiveMeasFree,
  1922. _cmDspActiveMeasReset,
  1923. NULL,
  1924. _cmDspActiveMeasRecv,
  1925. NULL,NULL,
  1926. "Scale a value inside an input range to a value in the output range.");
  1927. return &_cmActiveMeasDC;
  1928. }
  1929. //------------------------------------------------------------------------------------------------------------
  1930. //)
  1931. //( { label:cmDspAmSync file_desc:"Calculate MIDI to Audio latency offsets." kw:[sunit] }
  1932. //
  1933. //
  1934. // Usage:
  1935. // 1) In the program resource file setup a list of sync points.
  1936. // 'asmp' refers to a sample offset into the audio file 'af'
  1937. // which should match to the midi event index 'mid' in the
  1938. // midi file 'mf'.
  1939. //
  1940. // amSync :
  1941. // [
  1942. // { af:"af-16" asmp:34735276 mf:"mf-10" mid:350 }
  1943. // { af:"af-16" asmp:71802194 mf:"mf-10" mid:787 }
  1944. // ]
  1945. //
  1946. // 2) Feed the 'fidx' output from a wave table loaded with 'af' into the 'asmp' input port of this amSync object.
  1947. // Feed the 'id' output from the MIDI file player loaded with 'mf' into the 'mid' input port of this amSync object.
  1948. //
  1949. // 3) Run the players.
  1950. // 4) When the run is complete send any message to the 'sel' port of this amSync object.
  1951. // The 'frm:' field of the printed output gives the difference in samples between
  1952. // MIDI and audio sync points.
  1953. //
  1954. // If the value is positive then the MIDI point is after the Audio point.
  1955. // If the value is negative then the MIDI point is before the audio point.
  1956. //
  1957. enum
  1958. {
  1959. kSelAmId,
  1960. kAFnAmId,
  1961. kASmpAmId,
  1962. kMFnAmId,
  1963. kMIdAmId,
  1964. };
  1965. enum
  1966. {
  1967. kAfnAmFl = 0x01,
  1968. kMfnAmFl = 0x02,
  1969. kAsmpAmFl = 0x04,
  1970. kMidAmFl = 0x08,
  1971. };
  1972. cmDspClass_t _cmAmSyncDC;
  1973. typedef struct cmDspAmSyncEntry_str
  1974. {
  1975. const cmChar_t* afn; // audio file name
  1976. const cmChar_t* mfn; // midi file name
  1977. unsigned asmp; // Audio sample index to sync to MIDI event
  1978. unsigned mid; // MIDI event unique id (cmMidiTrackMsg_t.uid)
  1979. int afi; // closest DSP system cycle index to the reference audio sample index (asmp).
  1980. int mfi; // DSP system cycle on which the reference MIDI event (mid) arrived.
  1981. unsigned state; // as incoming msg match this record the state is updated with kXXXAmFl flags
  1982. } cmDspAmSyncEntry_t;
  1983. typedef struct
  1984. {
  1985. cmDspInst_t inst;
  1986. cmDspAmSyncEntry_t* array;
  1987. unsigned arrayCnt;
  1988. cmDspAmSyncEntry_t* acur;
  1989. cmDspAmSyncEntry_t* mcur;
  1990. } cmDspAmSync_t;
  1991. cmDspInst_t* _cmDspAmSyncAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  1992. {
  1993. cmDspVarArg_t args[] =
  1994. {
  1995. { "sel", kSelAmId, 0, 0, kInDsvFl | kTypeDsvMask, "Print and reset" },
  1996. { "afn", kAFnAmId, 0, 0, kInDsvFl | kStrzDsvFl, "Audio File name"},
  1997. { "asmp", kASmpAmId, 0, 0, kInDsvFl | kIntDsvFl, "Audio sample index"},
  1998. { "mfn", kMFnAmId, 0, 0, kInDsvFl | kStrzDsvFl, "MIDI File name"},
  1999. { "mid", kMIdAmId, 0, 0, kInDsvFl | kIntDsvFl, "MIDI Event Unique Id"},
  2000. { NULL, 0, 0, 0, 0 }
  2001. };
  2002. cmDspAmSync_t* p = cmDspInstAlloc(cmDspAmSync_t,ctx,classPtr,args,instSymId,id,storeSymId,va_cnt,vl);
  2003. return &p->inst;
  2004. }
  2005. cmDspRC_t _cmDspAmSyncFree(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  2006. {
  2007. cmDspAmSync_t* p = (cmDspAmSync_t*)inst;
  2008. cmMemFree(p->array);
  2009. return kOkDspRC;
  2010. }
  2011. cmDspRC_t _cmDspAmSyncReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  2012. {
  2013. cmDspRC_t rc = kOkDspRC;
  2014. cmDspAmSync_t* p = (cmDspAmSync_t*)inst;
  2015. cmDspApplyAllDefaults(ctx,inst);
  2016. cmJsonH_t jsH = cmDspSysPgmRsrcHandle(ctx->dspH);
  2017. cmJsonNode_t* np;
  2018. const cmChar_t* errLabelPtr;
  2019. unsigned i;
  2020. cmJsRC_t jsRC;
  2021. if((np = cmJsonFindValue(jsH, "amSync", NULL, kArrayTId)) == NULL )
  2022. {
  2023. rc = cmDspInstErr(ctx,inst,kRsrcNotFoundDspRC,"The AUDIO MIDI Sync cfg. record was not found.");
  2024. goto errLabel;
  2025. }
  2026. p->arrayCnt = cmJsonChildCount(np);
  2027. p->array = cmMemResizeZ(cmDspAmSyncEntry_t,p->array,p->arrayCnt);
  2028. for(i=0; i<p->arrayCnt; ++i)
  2029. {
  2030. cmJsonNode_t* anp = cmJsonArrayElement(np,i);
  2031. cmDspAmSyncEntry_t* r = p->array + i;
  2032. if( (jsRC = cmJsonMemberValues(anp,&errLabelPtr,
  2033. "af", kStringTId,&r->afn,
  2034. "asmp",kIntTId, &r->asmp,
  2035. "mf", kStringTId,&r->mfn,
  2036. "mid", kIntTId, &r->mid,
  2037. NULL)) != kOkJsRC )
  2038. {
  2039. if( jsRC == kNodeNotFoundJsRC )
  2040. rc = cmDspInstErr(ctx,inst,kRsrcNotFoundDspRC,"The Audio-MIDI Sync cfg. field '%s' was missing in the cfg. record at index %i.",errLabelPtr,i);
  2041. else
  2042. rc = cmDspInstErr(ctx,inst,kInvalidArgDspRC,"The AUDIO MIDI Sync cfg. parse failed on the record at index %i.",i);
  2043. break;
  2044. }
  2045. r->afi = cmInvalidIdx;
  2046. r->mfi = cmInvalidIdx;
  2047. r->state = 0;
  2048. }
  2049. errLabel:
  2050. return rc;
  2051. }
  2052. cmDspRC_t _cmDspAmSyncRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  2053. {
  2054. cmDspAmSync_t* p = (cmDspAmSync_t*)inst;
  2055. unsigned i;
  2056. if( evt->dstVarId != kSelAmId )
  2057. cmDspSetEvent(ctx,inst,evt);
  2058. switch(evt->dstVarId)
  2059. {
  2060. case kSelAmId:
  2061. {
  2062. double srate = cmDspSysSampleRate(ctx->dspH);
  2063. int fpc = cmDspSamplesPerCycle(ctx);
  2064. for(i=0; i<p->arrayCnt; ++i)
  2065. {
  2066. cmDspAmSyncEntry_t* r = p->array + i;
  2067. int dframes = r->mfi-r->afi;
  2068. cmRptPrintf(ctx->rpt,"0x%x : %s %i %i - %s %i %i : frm:%i smp:%i sec:%f\n",
  2069. r->state,
  2070. r->afn,
  2071. r->asmp,
  2072. r->afi,
  2073. r->mfn,
  2074. r->mid,
  2075. r->mfi,
  2076. dframes,
  2077. dframes*fpc,dframes*fpc/srate);
  2078. r->afi = cmInvalidIdx;
  2079. r->mfi = cmInvalidIdx;
  2080. r->state = 0;
  2081. }
  2082. p->acur = NULL;
  2083. p->mcur = NULL;
  2084. }
  2085. break;
  2086. case kAFnAmId:
  2087. {
  2088. // an audio file name just arrived - set p->acur to point to it
  2089. const cmChar_t* fn = cmDspStrcz(inst, kAFnAmId );
  2090. for(i=0; i<p->arrayCnt; ++i)
  2091. if( strcmp(fn,p->array[i].afn) == 0 )
  2092. {
  2093. p->array[i].state = cmSetFlag(p->array[i].state,kAfnAmFl);
  2094. p->acur = p->array + i;
  2095. }
  2096. }
  2097. break;
  2098. case kMFnAmId:
  2099. {
  2100. // a midi file name just arrived - set p->mcur to point to it
  2101. const cmChar_t* fn = cmDspStrcz(inst, kMFnAmId );
  2102. for(i=0; i<p->arrayCnt; ++i)
  2103. if( strcmp(fn,p->array[i].mfn) == 0 )
  2104. {
  2105. p->array[i].state = cmSetFlag(p->array[i].state,kMfnAmFl);
  2106. p->mcur = p->array + i;
  2107. }
  2108. }
  2109. break;
  2110. case kASmpAmId:
  2111. {
  2112. // a audio file sample index has just arrived
  2113. int v = cmDspInt(inst,kASmpAmId);
  2114. // if a valid audio file has been set
  2115. if( p->acur != NULL )
  2116. for(i=0; i<p->arrayCnt; ++i)
  2117. {
  2118. // if the audio sync point is before or on the new audio file sample index then
  2119. // this is the closest audio file index to the audio sync point - record the
  2120. // associated cycleCnt
  2121. cmDspAmSyncEntry_t* r = p->array + i;
  2122. if( cmIsNotFlag(r->state,kAsmpAmFl) && r->asmp <= v && strcmp(p->acur->afn,r->afn)==0 )
  2123. {
  2124. r->afi = ctx->cycleCnt;
  2125. r->state = cmSetFlag(r->state,kAsmpAmFl);
  2126. break;
  2127. }
  2128. }
  2129. }
  2130. break;
  2131. case kMIdAmId:
  2132. {
  2133. // a new MIDI event was received
  2134. int v = cmDspInt(inst,kMIdAmId);
  2135. if( p->mcur != NULL )
  2136. for(i=0; i<p->arrayCnt; ++i)
  2137. {
  2138. // if the new MIDI event matched the MIDI sync point then record the
  2139. // current cycleCnt.
  2140. cmDspAmSyncEntry_t* r = p->array + i;
  2141. if( cmIsNotFlag(r->state,kMidAmFl) && r->mid == v && strcmp(p->mcur->mfn,r->mfn)==0 )
  2142. {
  2143. r->mfi = ctx->cycleCnt;
  2144. r->state = cmSetFlag(r->state,kMidAmFl);
  2145. break;
  2146. }
  2147. }
  2148. }
  2149. break;
  2150. }
  2151. return kOkDspRC;
  2152. }
  2153. cmDspClass_t* cmAmSyncClassCons( cmDspCtx_t* ctx )
  2154. {
  2155. cmDspClassSetup(&_cmAmSyncDC,ctx,"AmSync",
  2156. NULL,
  2157. _cmDspAmSyncAlloc,
  2158. _cmDspAmSyncFree,
  2159. _cmDspAmSyncReset,
  2160. NULL,
  2161. _cmDspAmSyncRecv,
  2162. NULL,NULL,
  2163. "Audio - MIDI Sync Object.");
  2164. return &_cmAmSyncDC;
  2165. }
  2166. //------------------------------------------------------------------------------------------------------------
  2167. //)
  2168. //( { label:cmDspNanoMap file_desc:"Control a MIDI synth." kw:[sunit] }
  2169. enum
  2170. {
  2171. kPgmNmId,
  2172. kStatusNmId,
  2173. kD0NmId,
  2174. kD1NmId,
  2175. kThruNmId
  2176. };
  2177. cmDspClass_t _cmNanoMapDC;
  2178. typedef struct
  2179. {
  2180. cmDspInst_t inst;
  2181. } cmDspNanoMap_t;
  2182. cmDspRC_t _cmDspNanoMapSend( cmDspCtx_t* ctx, cmDspInst_t* inst, unsigned st, unsigned d0, unsigned d1 )
  2183. {
  2184. cmDspSetUInt(ctx,inst,kD1NmId,d1);
  2185. cmDspSetUInt(ctx,inst,kD0NmId,d0);
  2186. cmDspSetUInt(ctx,inst,kStatusNmId,st);
  2187. return kOkDspRC;
  2188. }
  2189. void _cmDspNanoMapPgm( cmDspCtx_t* ctx, cmDspInst_t* inst, unsigned pgm )
  2190. {
  2191. //cmDspNanoMap_t* p = (cmDspNanoMap_t*)inst;
  2192. unsigned i;
  2193. for(i=0; i<kMidiChCnt; ++i)
  2194. {
  2195. _cmDspNanoMapSend(ctx,inst,kCtlMdId+i,121,0); // reset all controllers
  2196. _cmDspNanoMapSend(ctx,inst,kCtlMdId+i,123,0); // turn all notes off
  2197. _cmDspNanoMapSend(ctx,inst,kCtlMdId+i,0,0); // switch to bank 0
  2198. _cmDspNanoMapSend(ctx,inst,kPgmMdId+i,pgm,0); // send pgm change
  2199. cmSleepMs(15);
  2200. }
  2201. }
  2202. cmDspInst_t* _cmDspNanoMapAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  2203. {
  2204. cmDspVarArg_t args[] =
  2205. {
  2206. { "pgm", kPgmNmId, 0, 0, kInDsvFl | kUIntDsvFl | kOptArgDsvFl, "Reprogram all channels to this pgm." },
  2207. { "status", kStatusNmId, 0, 0, kOutDsvFl | kInDsvFl | kUIntDsvFl | kOptArgDsvFl, "MIDI status" },
  2208. { "d0", kD0NmId, 0, 0, kOutDsvFl | kInDsvFl | kUIntDsvFl | kOptArgDsvFl, "MIDI channel message d0" },
  2209. { "d1", kD1NmId, 0, 0, kOutDsvFl | kInDsvFl | kUIntDsvFl | kOptArgDsvFl, "MIDI channel message d1" },
  2210. { "thru", kThruNmId, 0, 0, kInDsvFl | kBoolDsvFl | kOptArgDsvFl, "Enable pass through."},
  2211. { NULL, 0, 0, 0, 0 }
  2212. };
  2213. cmDspNanoMap_t* p = cmDspInstAlloc(cmDspNanoMap_t,ctx,classPtr,args,instSymId,id,storeSymId,va_cnt,vl);
  2214. cmDspSetDefaultUInt(ctx,&p->inst, kPgmNmId, 0, 0 );
  2215. return &p->inst;
  2216. }
  2217. cmDspRC_t _cmDspNanoMapReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  2218. {
  2219. cmDspRC_t rc = kOkDspRC;
  2220. cmDspApplyAllDefaults(ctx,inst);
  2221. _cmDspNanoMapPgm(ctx,inst,cmDspUInt(inst,kPgmNmId));
  2222. return rc;
  2223. }
  2224. cmDspRC_t _cmDspNanoMapRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  2225. {
  2226. //cmDspNanoMap_t* p = (cmDspNanoMap_t*)inst;
  2227. switch( evt->dstVarId )
  2228. {
  2229. case kPgmNmId:
  2230. cmDspSetEvent(ctx,inst,evt);
  2231. _cmDspNanoMapPgm(ctx,inst,cmDspUInt(inst,kPgmNmId));
  2232. break;
  2233. case kStatusNmId:
  2234. {
  2235. unsigned status = cmDsvGetUInt(evt->valuePtr);
  2236. unsigned stat_no_ch = status & 0xf0;
  2237. if( stat_no_ch == kNoteOnMdId || stat_no_ch == kNoteOffMdId || stat_no_ch == kCtlMdId )
  2238. {
  2239. //unsigned d0 = cmDspUInt(inst,kD0NmId);
  2240. unsigned ch = 0; //d0 % 8;
  2241. status = (status & 0xf0) + ch;
  2242. cmDspSetUInt(ctx,inst,kStatusNmId,status);
  2243. }
  2244. }
  2245. break;
  2246. default:
  2247. cmDspSetEvent(ctx,inst,evt);
  2248. break;
  2249. }
  2250. return kOkDspRC;
  2251. }
  2252. cmDspClass_t* cmNanoMapClassCons( cmDspCtx_t* ctx )
  2253. {
  2254. cmDspClassSetup(&_cmNanoMapDC,ctx,"NanoMap",
  2255. NULL,
  2256. _cmDspNanoMapAlloc,
  2257. NULL,
  2258. _cmDspNanoMapReset,
  2259. NULL,
  2260. _cmDspNanoMapRecv,
  2261. NULL,
  2262. NULL,
  2263. "Nanosynth Mapper");
  2264. return &_cmNanoMapDC;
  2265. }
  2266. //------------------------------------------------------------------------------------------------------------
  2267. //)
  2268. //( { label:cmDspPicadae file_desc:"Control a MIDI synth." kw:[sunit] }
  2269. enum
  2270. {
  2271. kStatusPcId,
  2272. kD0PcId,
  2273. kD1PcId,
  2274. kAllOffPcId
  2275. };
  2276. cmDspClass_t _cmPicadaeDC;
  2277. typedef struct
  2278. {
  2279. unsigned pitch;
  2280. unsigned velMapA[10];
  2281. } cmDspPicadaeVelMap_t;
  2282. // This table is generated from picadae_ac_3/velTableToDataStruct.py
  2283. cmDspPicadaeVelMap_t cmDspPicadaeVelMap[] =
  2284. {
  2285. { 21,{ 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, } },
  2286. { 22,{ 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, } },
  2287. { 23, { 12800, 12950, 13175, 13500, 13750, 14750, 15375, 17500, 23000, 37000, } },
  2288. { 24, { 12425, 12800, 13175, 14225, 14750, 15500, 17500, 22500, 32000, 39000, } },
  2289. { 25, { 14150, 14375, 14975, 14625, 15500, 16500, 20000, 28500, 40000, 40000, } },
  2290. { 26, { 13000, 13175, 13500, 13700, 13925, 14250, 15000, 16250, 19000, 26500, } },
  2291. { 27, { 13625, 13925, 14075, 14250, 14500, 14875, 15375, 16500, 18750, 25000, } },
  2292. { 28, { 12625, 13750, 13775, 14225, 14500, 16500, 18000, 20000, 25500, 34000, } },
  2293. { 29, { 12125, 12725, 13000, 12950, 14150, 15500, 16250, 17750, 21500, 28000, } },
  2294. { 30, { 13175, 13325, 13550, 14450, 14875, 15500, 16250, 17750, 21500, 27000, } },
  2295. { 31, { 13925, 14075, 14450, 14625, 15500, 16250, 16750, 17750, 19500, 23500, } },
  2296. { 32, { 13250, 14150, 14975, 14750, 15250, 16000, 17500, 21000, 27000, 38000, } },
  2297. { 33, { 11825, 13025, 14075, 14825, 14375, 14875, 16250, 17500, 22000, 28000, } },
  2298. { 34, { 13025, 13375, 13325, 13775, 14375, 14500, 15250, 18000, 22000, 27000, } },
  2299. { 35, { 11375, 12250, 12350, 12725, 14225, 13750, 15375, 17000, 20500, 25000, } },
  2300. { 36, { 11750, 13875, 14125, 14225, 14675, 14750, 16500, 18500, 22500, 32000, } },
  2301. { 37, { 12425, 12575, 13000, 13025, 13375, 15000, 16000, 18750, 25500, 35000, } },
  2302. { 38, { 13750, 13875, 14075, 14600, 14750, 15500, 17750, 21500, 27500, 37000, } },
  2303. { 39, { 11000, 12500, 12950, 13700, 14875, 15500, 16250, 20000, 26500, 37000, } },
  2304. { 40, { 11525, 11750, 12125, 12500, 12875, 13500, 14625, 18250, 23500, 29000, } },
  2305. { 41, { 11675, 11750, 12500, 13000, 13925, 15250, 17000, 20000, 26500, 36000, } },
  2306. { 42, { 11875, 12000, 11975, 12050, 12275, 13375, 15000, 17250, 22000, 29000, } },
  2307. { 43, { 11500, 11625, 11750, 11750, 12625, 12250, 13625, 16750, 19500, 25500, } },
  2308. { 44, { 12425, 12500, 12750, 12650, 13000, 14000, 15250, 16500, 20000, 27000, } },
  2309. { 45, { 11250, 11600, 11875, 12000, 12250, 13100, 14750, 15500, 18250, 25500, } },
  2310. { 46, { 11450, 11525, 11600, 11625, 11875, 12250, 14000, 15750, 17750, 21500, } },
  2311. { 47, { 11900, 11975, 12125, 12375, 13125, 14375, 15750, 18750, 22500, 28500, } },
  2312. { 48, { 11750, 13100, 13325, 13625, 14300, 14975, 15750, 19000, 24000, 30000, } },
  2313. { 49, { 11975, 12050, 12500, 12750, 13125, 14000, 17000, 20000, 25500, 40000, } },
  2314. { 50, { 11625, 11525, 11750, 11825, 12125, 12375, 14750, 16250, 19000, 25500, } },
  2315. { 51, { 12050, 12125, 12125, 12275, 12350, 12500, 12875, 16250, 18500, 22500, } },
  2316. { 52, { 12950, 13025, 13125, 13175, 13250, 13500, 13875, 15750, 18000, 22000, } },
  2317. { 53, { 10600, 10250, 10350, 10450, 10900, 11375, 13025, 14750, 18250, 26500, } },
  2318. { 54, { 12650, 12625, 12725, 12800, 13000, 13625, 16250, 18500, 23000, 32000, } },
  2319. { 55, { 11875, 12125, 12250, 12425, 12875, 13175, 13750, 17250, 20000, 26000, } },
  2320. { 56, { 11625, 11750, 12000, 12200, 12500, 13125, 14375, 17000, 20500, 26500, } },
  2321. { 57, { 11625, 11750, 12125, 12275, 12750, 14625, 16750, 20000, 25500, 39000, } },
  2322. { 58, { 12000, 12500, 12750, 12875, 13100, 13375, 15000, 17750, 21000, 28000, } },
  2323. { 59, { 11625, 11525, 12050, 13375, 13625, 14150, 16500, 21000, 24500, 30000, } },
  2324. { 60, { 12250, 12250, 12375, 12350, 13000, 13500, 16000, 17750, 22000, 29000, } },
  2325. { 61, { 11375, 11500, 11625, 11750, 12000, 12200, 12725, 13625, 17500, 21000, } },
  2326. { 62, { 11600, 11675, 11825, 12125, 12650, 13375, 14375, 18500, 24500, 32000, } },
  2327. { 63, { 12125, 12200, 12350, 12500, 13025, 13625, 16250, 18750, 24500, 36000, } },
  2328. { 64, { 10550, 10650, 10850, 11250, 11875, 12250, 14000, 16250, 19500, 26500, } },
  2329. { 65, { 12750, 12800, 12875, 13175, 13250, 14625, 14975, 17500, 20500, 26000, } },
  2330. { 66, { 10750, 11000, 11250, 11500, 12000, 12875, 15375, 17000, 20500, 28500, } },
  2331. { 67, { 10950, 11125, 11250, 11500, 11875, 13875, 15750, 17750, 23000, 37000, } },
  2332. { 68, { 10150, 10300, 10550, 10800, 11125, 11875, 13000, 16000, 19000, 25000, } },
  2333. { 69, { 11750, 11875, 12375, 12500, 12750, 13500, 16250, 18250, 23500, 31000, } },
  2334. { 70, { 10700, 10850, 10950, 11125, 11625, 13875, 14500, 15750, 18750, 24500, } },
  2335. { 71, { 10200, 10700, 11000, 11250, 11625, 14000, 14875, 16250, 22000, 27000, } },
  2336. { 72, { 9800, 10100, 10400, 10550, 11000, 11625, 13000, 15500, 17750, 23000, } },
  2337. { 73, { 10750, 10900, 11125, 11375, 11625, 12750, 14750, 15500, 18500, 23000, } },
  2338. { 74, { 10300, 10450, 10600, 10850, 11250, 12000, 14250, 15000, 17500, 21000, } },
  2339. { 75, { 10600, 10750, 10900, 11125, 12500, 14500, 14750, 15000, 21000, 31000, } },
  2340. { 76, { 10200, 11625, 12375, 12875, 13500, 15750, 19000, 22500, 27500, 39000, } },
  2341. { 77, { 10500, 10700, 11125, 11375, 11750, 14000, 14875, 16500, 20500, 27000, } },
  2342. { 78, { 10450, 10800, 11000, 11625, 12000, 13125, 15500, 18250, 22000, 34000, } },
  2343. { 79, { 12250, 13500, 14125, 14750, 16250, 17500, 19000, 24500, 31000, 40000, } },
  2344. { 80, { 10400, 10450, 10750, 11125, 12125, 13375, 14750, 17750, 23000, 39000, } },
  2345. { 81, { 10800, 10950, 11125, 11375, 12625, 13875, 14875, 16000, 19000, 23500, } },
  2346. { 82, { 12000, 12375, 13750, 13750, 12625, 14000, 17000, 19000, 21000, 24500, } },
  2347. { 83, { 12250, 12500, 13625, 13875, 14375, 16500, 17750, 20500, 25000, 35000, } },
  2348. { 84, { 11500, 12000, 12250, 12500, 13125, 14250, 15375, 16750, 19500, 25500, } },
  2349. { 85, { 10400, 10500, 10600, 11250, 12250, 13375, 15000, 16750, 20000, 26000, } },
  2350. { 86, { 11500, 11750, 11875, 12000, 12250, 12500, 13500, 15000, 20500, 21000, } },
  2351. { 87, { 10650, 11500, 13125, 13375, 13750, 14500, 16500, 18000, 20000, 24000, } },
  2352. { 88, { 11375, 11375, 11500, 12375, 12000, 13375, 14500, 16500, 19000, 23000, } },
  2353. { 89, { 9200, 10900, 11500, 12125, 22000, 12875, 14125, 16000, 19000, 26500, } },
  2354. { 90, { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, } },
  2355. { 91, { 9450, 9950, 10000, 10150, 10600, 11250, 12125, 13875, 15250, 19000, } },
  2356. { 92, { 9050, 9500, 9600, 10100, 10900, 11875, 13000, 16000, 20500, 31000, } },
  2357. { 93, { 11250, 11375, 12000, 12375, 12875, 13625, 14250, 17500, 21500, 39000, } },
  2358. { 94, { 11125, 11375, 11750, 13500, 14000, 14875, 15750, 17750, 22000, 25500, } },
  2359. { 95, { 10200, 10350, 11500, 12250, 12500, 13125, 13875, 15250, 19000, 21000, } },
  2360. { 96, { 9050, 9550, 10100, 13875, 13000, 14000, 18500, 22000, 27000, 39000, } },
  2361. { 97, { 11000, 12500, 13250, 13000, 13750, 15750, 15000, 18000, 19000, 22500, } },
  2362. { 98, { 10400, 10850, 12125, 12125, 13250, 13875, 16000, 18750, 26500, 37000, } },
  2363. { 99, { 11000, 12625, 13125, 14000, 15500, 16750, 19000, 21500, 25000, 36000, } },
  2364. { 100,{ 9650, 10450, 11500, 12375, 12500, 12875, 13500, 15500, 17500, 21500, } },
  2365. { 101,{ 10950, 11250, 11500, 11875, 12250, 12875, 13500, 14375, 22500, 39000, } },
  2366. { 102,{ 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, } },
  2367. { 103,{ 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, } },
  2368. { 104,{ 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, } },
  2369. { 105,{ 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, } },
  2370. { 106,{ 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, } },
  2371. { 107,{ 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, } },
  2372. { 108,{ 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, } },
  2373. { 0, { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, } }
  2374. };
  2375. typedef struct
  2376. {
  2377. int us;
  2378. int dutyPct;
  2379. } cmDspPicadaeDutyMap_t;
  2380. typedef struct
  2381. {
  2382. unsigned pitch;
  2383. cmDspPicadaeDutyMap_t dutyMapA[5];
  2384. } cmDspPicadaeDuty_t;
  2385. // This table is generated from picadae_ac_3/velTableToDataStruct.py
  2386. cmDspPicadaeDuty_t cmDspPicadaeDutyMap[] =
  2387. {
  2388. {21, {{ -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2389. {22, {{ -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2390. {23, {{ 0, 70 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2391. {24, {{ 0, 75 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2392. {25, {{ 0, 70 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2393. {26, {{ 0, 65 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2394. {27, {{ 0, 70 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2395. {28, {{ 0, 70 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2396. {29, {{ 0, 65 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2397. {30, {{ 0, 65 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2398. {31, {{ 0, 65 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2399. {32, {{ 0, 60 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2400. {33, {{ 0, 65 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2401. {34, {{ 0, 65 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2402. {35, {{ 0, 65 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2403. {36, {{ 0, 65 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2404. {37, {{ 0, 65 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2405. {38, {{ 0, 60 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2406. {39, {{ 0, 60 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2407. {40, {{ 0, 55 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2408. {41, {{ 0, 60 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2409. {42, {{ 0, 60 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2410. {43, {{ 0, 65 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2411. {44, {{ 0, 60 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2412. {45, {{ 0, 60 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2413. {46, {{ 0, 60 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2414. {47, {{ 0, 60 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2415. {48, {{ 0, 70 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2416. {49, {{ 0, 60 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2417. {50, {{ 0, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2418. {51, {{ 0, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2419. {52, {{ 0, 55 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2420. {53, {{ 0, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2421. {54, {{ 0, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2422. {55, {{ 0, 50 }, { 22000, 55 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2423. {56, {{ 0, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2424. {57, {{ 0, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2425. {58, {{ 0, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2426. {59, {{ 0, 60 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2427. {60, {{ 0, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2428. {61, {{ 0, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2429. {62, {{ 0, 55 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2430. {63, {{ 0, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2431. {64, {{ 0, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2432. {65, {{ 0, 50 }, { 17000, 65 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2433. {66, {{ 0, 53 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2434. {67, {{ 0, 55 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2435. {68, {{ 0, 53 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2436. {69, {{ 0, 55 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2437. {70, {{ 0, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2438. {71, {{ 0, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2439. {72, {{ 0, 60 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2440. {73, {{ 0, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2441. {74, {{ 0, 60 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2442. {75, {{ 0, 55 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2443. {76, {{ 0, 70 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2444. {77, {{ 0, 50 }, { 15000, 60 }, { 19000, 70 }, { -1, -1 }, { -1, -1 }, }},
  2445. {78, {{ 0, 60 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2446. {79, {{ 0, 50 }, { 15000, 60 }, { 19000, 70 }, { -1, -1 }, { -1, -1 }, }},
  2447. {80, {{ 0, 45 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2448. {81, {{ 0, 50 }, { 15000, 70 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2449. {82, {{ 0, 50 }, { 12500, 60 }, { 14000, 65 }, { 17000, 70 }, { -1, -1 }, }},
  2450. {83, {{ 0, 50 }, { 15000, 65 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2451. {84, {{ 0, 50 }, { 12500, 60 }, { 14000, 65 }, { 17000, 70 }, { -1, -1 }, }},
  2452. {85, {{ 0, 50 }, { 12500, 60 }, { 14000, 65 }, { 17000, 70 }, { -1, -1 }, }},
  2453. {86, {{ 0, 50 }, { 12500, 60 }, { 14000, 65 }, { 17000, 70 }, { -1, -1 }, }},
  2454. {87, {{ 0, 50 }, { 14000, 60 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2455. {88, {{ 0, 50 }, { 12500, 60 }, { 14000, 65 }, { 17000, 70 }, { -1, -1 }, }},
  2456. {89, {{ 0, 50 }, { 12500, 60 }, { 14000, 65 }, { 17000, 70 }, { -1, -1 }, }},
  2457. {90, {{ -1, -1}, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2458. {91, {{ 0, 40 }, { 12500, 50 }, { 14000, 60 }, { 17000, 65 }, { -1, -1 }, }},
  2459. {92, {{ 0, 40 }, { 14000, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2460. {93, {{ 0, 40 }, { 12500, 50 }, { 14000, 60 }, { 17000, 65 }, { -1, -1 }, }},
  2461. {94, {{ 0, 40 }, { 14000, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2462. {95, {{ 0, 40 }, { 12500, 50 }, { 14000, 60 }, { 17000, 65 }, { -1, -1 }, }},
  2463. {96, {{ 0, 40 }, { 12500, 50 }, { 14000, 60 }, { 17000, 65 }, { -1, -1 }, }},
  2464. {97, {{ 0, 40 }, { 14000, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2465. {98, {{ 0, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2466. {99, {{ 0, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2467. {100, {{ 0, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2468. {101, {{ 0, 50 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2469. {102, {{ -1, -1}, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2470. {103, {{ -1, -1}, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2471. {104, {{ -1, -1}, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2472. {105, {{ -1, -1}, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2473. {106, {{ -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2474. {107, {{ -1, -1}, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2475. {108, {{ -1, -1}, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2476. { 0, {{ -1, -1}, { -1, -1 }, { -1, -1 }, { -1, -1 }, { -1, -1 }, }},
  2477. };
  2478. typedef struct
  2479. {
  2480. cmDspInst_t inst;
  2481. unsigned curDutyPctA[127];
  2482. } cmDspPicadae_t;
  2483. unsigned _cmDspPicadaeVelToMicroseconds( unsigned pitch, unsigned vel )
  2484. {
  2485. unsigned i;
  2486. unsigned velN = sizeof(cmDspPicadaeVelMap[i].velMapA)/sizeof(cmDspPicadaeVelMap[i].velMapA[0]);
  2487. long velIdx = lround( vel * velN / 127.0 );
  2488. assert( pitch >= cmDspPicadaeVelMap[0].pitch );
  2489. long pitchIdx = pitch - cmDspPicadaeVelMap[0].pitch;
  2490. return cmDspPicadaeVelMap[pitchIdx].velMapA[velIdx];
  2491. }
  2492. int _cmDspPicadaeVelToDutyCycle( unsigned pitch, unsigned usec )
  2493. {
  2494. unsigned i;
  2495. int dutyPct = -1;
  2496. long pitchIdx = pitch - cmDspPicadaeDutyMap[0].pitch;
  2497. cmDspPicadaeDuty_t* r = cmDspPicadaeDutyMap + pitchIdx;
  2498. for(i=0; r->dutyMapA[i].us != -1; ++i)
  2499. if( r->dutyMapA[i].us <= usec )
  2500. dutyPct = r->dutyMapA[i].dutyPct;
  2501. return dutyPct;
  2502. }
  2503. void _cmDspPicadaeSerialXmitNoteOff( cmDspCtx_t* ctx, cmDspInst_t* inst, uint8_t pitch )
  2504. {
  2505. const uint8_t note_off_op = 3;
  2506. uint8_t serialBuf[] = { 'w', pitch, note_off_op, 1, 0 };
  2507. cmSeSend( cmDspSysSerialPort(ctx->dspH), serialBuf, sizeof(serialBuf) );
  2508. }
  2509. void _cmDspPicadaeSerialXmitNoteOn( cmDspCtx_t* ctx, cmDspInst_t* inst, uint8_t pitch, uint8_t coarse_tick, uint8_t fine_tick )
  2510. {
  2511. const uint8_t note_on_usec_op = 2;
  2512. uint8_t serialBuf[] = { 'w', pitch, note_on_usec_op, 2, coarse_tick, fine_tick };
  2513. cmSeSend( cmDspSysSerialPort(ctx->dspH), serialBuf, sizeof(serialBuf) );
  2514. }
  2515. void _cmDspPicadaeSerialXmitDuty( cmDspCtx_t* ctx, cmDspPicadae_t* p, uint8_t pitch, uint8_t dutyPct )
  2516. {
  2517. if( p->curDutyPctA[ pitch ] != dutyPct )
  2518. {
  2519. uint8_t duty_pct_op = 0;
  2520. unsigned char serialBuf[] = { 'w', pitch, duty_pct_op, 1, dutyPct };
  2521. cmSeSend( cmDspSysSerialPort(ctx->dspH), serialBuf, sizeof(serialBuf) );
  2522. }
  2523. }
  2524. void _cmDspPicadaeSendNote( cmDspCtx_t* ctx, cmDspInst_t* inst )
  2525. {
  2526. cmDspPicadae_t* p = (cmDspPicadae_t*)inst;
  2527. unsigned prescaler_usec = 16;
  2528. unsigned status = cmDspUInt(inst,kStatusPcId);
  2529. uint8_t pitch = (uint8_t)cmDspUInt(inst,kD0PcId);
  2530. unsigned velocity = cmDspUInt(inst,kD1PcId);
  2531. assert( 21<=pitch && pitch<=108 );
  2532. // if this is a note-off
  2533. if( status == kNoteOffMdId || velocity == 0 )
  2534. {
  2535. _cmDspPicadaeSerialXmitNoteOff( ctx, inst, pitch );
  2536. return;
  2537. }
  2538. unsigned usec = _cmDspPicadaeVelToMicroseconds(pitch, velocity );
  2539. // if the pitch is invalid then 'usec' will be set to 0
  2540. if( usec == 0 )
  2541. return;
  2542. unsigned dutyPct = _cmDspPicadaeVelToDutyCycle( pitch, usec );
  2543. // if the pitch is invalid then dutyPct will be set to -1
  2544. if( dutyPct == -1 )
  2545. return;
  2546. unsigned coarse_usec = prescaler_usec*255; // usec's in one coarse tick
  2547. uint8_t coarse_ticks = (uint8_t)(usec / coarse_usec);
  2548. uint8_t fine_ticks = (uint8_t)((usec - coarse_ticks*coarse_usec) / prescaler_usec);
  2549. _cmDspPicadaeSerialXmitDuty( ctx, p, pitch, dutyPct );
  2550. _cmDspPicadaeSerialXmitNoteOn( ctx, inst, pitch, coarse_ticks, fine_ticks );
  2551. }
  2552. cmDspInst_t* _cmDspPicadaeAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  2553. {
  2554. cmDspVarArg_t args[] =
  2555. {
  2556. { "status", kStatusPcId, 0, 0, kOutDsvFl | kInDsvFl | kUIntDsvFl | kOptArgDsvFl, "MIDI status" },
  2557. { "d0", kD0PcId, 0, 0, kOutDsvFl | kInDsvFl | kUIntDsvFl | kOptArgDsvFl, "MIDI channel message d0" },
  2558. { "d1", kD1PcId, 0, 0, kOutDsvFl | kInDsvFl | kUIntDsvFl | kOptArgDsvFl, "MIDI channel message d1" },
  2559. { "alloff", kAllOffPcId, 0, 0, kOutDsvFl | kInDsvFl | kSymDsvFl | kOptArgDsvFl, "All notes off."},
  2560. { NULL, 0, 0, 0, 0 }
  2561. };
  2562. cmDspPicadae_t* p = cmDspInstAlloc(cmDspPicadae_t,ctx,classPtr,args,instSymId,id,storeSymId,va_cnt,vl);
  2563. return &p->inst;
  2564. }
  2565. void _cmDspPicadaReset( cmDspCtx_t* ctx, cmDspInst_t* inst )
  2566. {
  2567. cmDspPicadae_t* p = (cmDspPicadae_t*)inst;
  2568. memset(p->curDutyPctA,0,sizeof(p->curDutyPctA));
  2569. // send note-off messages to all keys
  2570. unsigned i = 0;
  2571. for(i=0; cmDspPicadaeVelMap[i].pitch !=0; ++i)
  2572. if( cmDspPicadaeVelMap[i].velMapA[0] != 0 )
  2573. {
  2574. _cmDspPicadaeSerialXmitNoteOff( ctx, inst, (uint8_t)cmDspPicadaeVelMap[i].pitch );
  2575. cmSleepMs(10);
  2576. }
  2577. // send pedal-up message
  2578. cmDspSetUInt(ctx,inst,kD0PcId, kSustainCtlMdId );
  2579. cmDspSetUInt(ctx,inst,kD0PcId, 0 );
  2580. cmDspSetUInt(ctx,inst,kStatusPcId,kCtlMdId);
  2581. }
  2582. cmDspRC_t _cmDspPicadaeReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  2583. {
  2584. cmDspRC_t rc = kOkDspRC;
  2585. cmDspApplyAllDefaults(ctx,inst);
  2586. return rc;
  2587. }
  2588. cmDspRC_t _cmDspPicadaeRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  2589. {
  2590. //cmDspPicadae_t* p = (cmDspPicadae_t*)inst;
  2591. switch( evt->dstVarId )
  2592. {
  2593. case kStatusPcId:
  2594. {
  2595. // note: the status byte arrives last (after d0 and d1)
  2596. unsigned status = cmDsvGetUInt(evt->valuePtr);
  2597. unsigned stat_no_ch = status & 0xf0;
  2598. // if this is a note-on or channel
  2599. if( stat_no_ch == kNoteOnMdId || stat_no_ch == kNoteOffMdId || stat_no_ch == kCtlMdId )
  2600. {
  2601. cmDspSetUInt(ctx,inst,kStatusPcId,stat_no_ch);
  2602. if( stat_no_ch == kNoteOnMdId || stat_no_ch == kNoteOffMdId )
  2603. _cmDspPicadaeSendNote( ctx, inst );
  2604. }
  2605. }
  2606. break;
  2607. case kAllOffPcId:
  2608. printf("Picadae All Off\n");
  2609. _cmDspPicadaReset( ctx, inst );
  2610. break;
  2611. default:
  2612. // store
  2613. cmDspSetEvent(ctx,inst,evt);
  2614. break;
  2615. }
  2616. return kOkDspRC;
  2617. }
  2618. cmDspClass_t* cmPicadaeClassCons( cmDspCtx_t* ctx )
  2619. {
  2620. cmDspClassSetup(&_cmPicadaeDC,ctx,"Picadae",
  2621. NULL,
  2622. _cmDspPicadaeAlloc,
  2623. NULL,
  2624. _cmDspPicadaeReset,
  2625. NULL,
  2626. _cmDspPicadaeRecv,
  2627. NULL,
  2628. NULL,
  2629. "Picadaesynth Mapper");
  2630. return &_cmPicadaeDC;
  2631. }
  2632. //------------------------------------------------------------------------------------------------------------
  2633. //)
  2634. //( { label:cmDspRecdPlay file_desc:"Record audio segments from a live perfromance and play them back at a later time" kw:[sunit] }
  2635. enum
  2636. {
  2637. kChCntPrId,
  2638. kFnPrId,
  2639. kSecsPrId,
  2640. kMaxLaSecsPrId,
  2641. kCurLaSecsPrId,
  2642. kFadeRatePrId,
  2643. kScInitLocIdxPrId,
  2644. kScLocIdxPrId,
  2645. kCmdPrId,
  2646. kInAudioBasePrId
  2647. };
  2648. cmDspClass_t _cmRecdPlayDC;
  2649. typedef struct
  2650. {
  2651. cmDspInst_t inst;
  2652. cmRecdPlay* rcdply;
  2653. cmScH_t scH;
  2654. unsigned onSymId;
  2655. unsigned offSymId;
  2656. unsigned audioOutBaseId;
  2657. unsigned chCnt;
  2658. //unsigned scLocIdx;
  2659. } cmDspRecdPlay_t;
  2660. cmDspRC_t _cmDspRecdPlayParseRsrc( cmDspCtx_t* ctx, cmDspInst_t* inst, cmRecdPlay* rcdply )
  2661. {
  2662. cmDspRC_t rc = kOkDspRC;
  2663. const cmChar_t* path = NULL;
  2664. // read the 'recdplay' audio file path
  2665. if( cmDspRsrcString( ctx->dspH, &path, "recdPlayPath", NULL ) != kOkDspRC )
  2666. {
  2667. cmDspInstErr(ctx,inst,kRsrcNotFoundDspRC,"The 'recdPlayPath' resource string was not found.");
  2668. }
  2669. if( path == NULL )
  2670. path = "";
  2671. cmJsonH_t jsH = cmDspSysPgmRsrcHandle(ctx->dspH);
  2672. cmJsonNode_t* jnp = cmJsonFindValue(jsH,"recdPlay",NULL, kArrayTId);
  2673. if( jnp == NULL || cmJsonIsArray(jnp)==false )
  2674. {
  2675. // this is really a warning - the object does not require preloaded segments.
  2676. cmDspInstErr(ctx,inst,kRsrcNotFoundDspRC,"Warning: The 'recdPlay' resource used to define pre-loaded segments was not found.");
  2677. return kOkDspRC;
  2678. }
  2679. unsigned n = cmJsonChildCount(jnp);
  2680. unsigned i;
  2681. // for each 'recdplay' segment record
  2682. for(i=0; i<n && rc==kOkDspRC; ++i)
  2683. {
  2684. cmJsonNode_t* cnp = cmJsonArrayElement(jnp,i);
  2685. const cmChar_t* label = NULL;
  2686. unsigned segSymId = cmInvalidId;
  2687. const cmChar_t* errLabel = NULL;
  2688. const cmChar_t* fn = NULL;
  2689. // read the ith segment record
  2690. if( cmJsonMemberValues(cnp,&errLabel,
  2691. "label", kStringTId, &label,
  2692. "file", kStringTId, &fn,
  2693. NULL) != kOkJsRC )
  2694. {
  2695. rc = cmDspInstErr(ctx,inst,kRsrcNotFoundDspRC,"The record at index %i in the 'recdPlay' pre-loaded segment list could not be parsed.",i);
  2696. goto errLabel;
  2697. }
  2698. // find or generate the symbol id for the segment label symbol
  2699. if((segSymId = cmSymTblRegisterSymbol(ctx->stH,label)) == cmInvalidId )
  2700. {
  2701. rc = cmDspInstErr(ctx,inst,kSymNotFoundDspRC,"The 'recdPlay' pre-load segment symbol '%s' could not be found or registered.",cmStringNullGuard(label));
  2702. goto errLabel;
  2703. }
  2704. // create the full path name for the segment audio file
  2705. if((fn = cmFsMakeFn( path, fn, NULL, NULL )) == NULL )
  2706. {
  2707. rc = cmDspInstErr(ctx,inst,kFileSysFailDspRC,"The 'recdPlay' file name '%s/%s' could not be generated.",cmStringNullGuard(path),cmStringNullGuard(fn));
  2708. goto errLabel;
  2709. }
  2710. // pre-load the segment
  2711. if( cmRecdPlayInsertRecord(rcdply,segSymId,fn) != cmOkRC )
  2712. rc = cmDspInstErr(ctx,inst,kSubSysFailDspRC,"The 'recdPlay' segment label:'%s' file:'%s' could not be loaded.",cmStringNullGuard(label),cmStringNullGuard(fn));
  2713. cmFsFreeFn(fn);
  2714. }
  2715. errLabel:
  2716. return rc;
  2717. }
  2718. cmDspRC_t _cmDspRecdPlayOpenScore( cmDspCtx_t* ctx, cmDspInst_t* inst )
  2719. {
  2720. cmDspRC_t rc =kOkDspRC;
  2721. const cmChar_t* fn;
  2722. cmDspRecdPlay_t* p = (cmDspRecdPlay_t*)inst;
  2723. //p->scLocIdx = 0;
  2724. if((fn = cmDspStrcz(inst,kFnPrId)) == NULL || strlen(fn)==0 )
  2725. return cmDspInstErr(ctx,inst, kInvalidArgDspRC, "No score file name supplied.");
  2726. if( cmScoreInitialize(ctx->cmCtx, &p->scH, fn, cmDspSampleRate(ctx), NULL, 0, NULL, NULL, ctx->stH ) != kOkScRC )
  2727. return cmDspInstErr(ctx,inst, kSubSysFailDspRC, "Unable to open the score '%s'.",fn);
  2728. if( cmScoreIsValid(p->scH) )
  2729. {
  2730. unsigned i;
  2731. unsigned markerCnt = cmScoreMarkerLabelCount(p->scH);
  2732. double initFragSecs = cmDspDouble(inst,kSecsPrId);
  2733. double maxLaSecs = cmDspDouble(inst,kMaxLaSecsPrId);
  2734. double curLaSecs = cmDspDouble(inst,kCurLaSecsPrId);
  2735. printf("2 max la secs:%f\n",cmDspDouble(inst,kMaxLaSecsPrId));
  2736. if((p->rcdply = cmRecdPlayAlloc(ctx->cmProcCtx, NULL, cmDspSampleRate(ctx), markerCnt, p->chCnt, initFragSecs, maxLaSecs, curLaSecs)) == NULL)
  2737. return cmErrMsg(&inst->classPtr->err,kSubSysFailDspRC,"Unable to create the internal recorder-player object.");
  2738. for(i=0; i<markerCnt; ++i)
  2739. cmRecdPlayRegisterFrag(p->rcdply,i, cmScoreMarkerLabelSymbolId(p->scH,i ));
  2740. if((rc = _cmDspRecdPlayParseRsrc(ctx,inst,p->rcdply)) != kOkDspRC )
  2741. rc = cmDspInstErr(ctx,inst,kInstResetFailDspRC,"The 'recdplay' segment pre-load failed.");
  2742. //p->scLocIdx = cmDspUInt(inst,kScInitLocIdxPrId);
  2743. }
  2744. return rc;
  2745. }
  2746. cmDspInst_t* _cmDspRecdPlayAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  2747. {
  2748. if( va_cnt < 1 )
  2749. {
  2750. cmDspClassErr(ctx,classPtr,kVarArgParseFailDspRC,"The 'RecdPlay' constructor must have a count of input ports.");
  2751. return NULL;
  2752. }
  2753. va_list vl1;
  2754. va_copy(vl1,vl);
  2755. int chCnt = va_arg(vl,int);
  2756. unsigned audioOutBase = kInAudioBasePrId + chCnt;
  2757. cmDspRecdPlay_t* p = cmDspInstAllocV(cmDspRecdPlay_t,ctx,classPtr,instSymId,id,storeSymId,va_cnt,vl1,
  2758. 1, "chs", kChCntPrId, 0,0, kUIntDsvFl | kReqArgDsvFl, "channel count.",
  2759. 1, "fn", kFnPrId, 0,0, kInDsvFl | kStrzDsvFl | kReqArgDsvFl, "Score file." ,
  2760. 1, "secs", kSecsPrId, 0,0, kInDsvFl | kDoubleDsvFl | kReqArgDsvFl, "Initial fragment allocation in seconds.",
  2761. 1, "maxla", kMaxLaSecsPrId, 0,0, kInDsvFl | kDoubleDsvFl | kReqArgDsvFl, "Maximum look-ahead buffer in seconds.",
  2762. 1, "curla", kCurLaSecsPrId, 0,0, kInDsvFl | kDoubleDsvFl | kOptArgDsvFl, "Current look-head buffer in seconds.",
  2763. 1, "frate", kFadeRatePrId, 0,0, kInDsvFl | kDoubleDsvFl | kOptArgDsvFl, "Fade rate in dB per second.",
  2764. 1, "initIdx",kScInitLocIdxPrId,0,0,kInDsvFl | kUIntDsvFl, "Score search start location.",
  2765. 1, "index", kScLocIdxPrId, 0,0, kInDsvFl | kUIntDsvFl, "Score follower location index.",
  2766. 1, "cmd", kCmdPrId, 0,0, kInDsvFl | kSymDsvFl, "on=reset off=stop.",
  2767. chCnt, "in", kInAudioBasePrId,0,1, kInDsvFl | kAudioBufDsvFl, "Audio input",
  2768. chCnt, "out", audioOutBase, 0,1, kOutDsvFl | kAudioBufDsvFl, "Audio output",
  2769. 0 );
  2770. va_end(vl1);
  2771. p->onSymId = cmSymTblId(ctx->stH,"on");
  2772. p->offSymId = cmSymTblId(ctx->stH,"off");
  2773. p->audioOutBaseId = audioOutBase;
  2774. p->chCnt = chCnt;
  2775. //p->scLocIdx = 0;
  2776. printf("0 max la secs:%f\n",cmDspDouble(&p->inst,kMaxLaSecsPrId));
  2777. cmDspSetDefaultDouble(ctx,&p->inst, kSecsPrId, 0.0, 10.0 );
  2778. cmDspSetDefaultDouble(ctx,&p->inst, kMaxLaSecsPrId,0.0, 2.0);
  2779. cmDspSetDefaultDouble(ctx,&p->inst, kCurLaSecsPrId,0.0, 0.1);
  2780. cmDspSetDefaultDouble(ctx,&p->inst, kFadeRatePrId, 0.0, 1.0);
  2781. cmDspSetDefaultUInt( ctx,&p->inst, kScInitLocIdxPrId,0,0);
  2782. printf("1 max la secs:%f\n",cmDspDouble(&p->inst,kMaxLaSecsPrId));
  2783. return &p->inst;
  2784. }
  2785. cmDspRC_t _cmDspRecdPlayFree(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  2786. {
  2787. cmDspRC_t rc = kOkDspRC;
  2788. cmDspRecdPlay_t* p = (cmDspRecdPlay_t*)inst;
  2789. cmRecdPlayFree(&p->rcdply);
  2790. cmScoreFinalize(&p->scH);
  2791. return rc;
  2792. }
  2793. cmDspRC_t _cmDspRecdPlayReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  2794. {
  2795. cmDspRC_t rc;
  2796. if((rc = _cmDspRecdPlayOpenScore(ctx,inst)) == kOkDspRC )
  2797. cmDspApplyAllDefaults(ctx,inst);
  2798. return rc;
  2799. }
  2800. cmDspRC_t _cmDspRecdPlayExec(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  2801. {
  2802. cmDspRC_t rc = kOkDspRC;
  2803. cmDspRecdPlay_t* p = (cmDspRecdPlay_t*)inst;
  2804. const cmSample_t* x[ p->chCnt ];
  2805. cmSample_t* y[ p->chCnt ];
  2806. unsigned n = 0;
  2807. unsigned i;
  2808. unsigned actChCnt = 0;
  2809. for(i=0; i<p->chCnt; ++i)
  2810. {
  2811. if( cmDspIsAudioInputConnected(ctx,inst,kInAudioBasePrId+i) == false )
  2812. {
  2813. x[i] = NULL;
  2814. y[i] = NULL;
  2815. }
  2816. else
  2817. {
  2818. if( i==0 )
  2819. n = cmDspAudioBufSmpCount(ctx,inst,kInAudioBasePrId+i,0);
  2820. else
  2821. {
  2822. assert( n == cmDspAudioBufSmpCount(ctx,inst,kInAudioBasePrId+i,0));
  2823. }
  2824. x[i] = cmDspAudioBuf(ctx,inst,kInAudioBasePrId+i,0);
  2825. if( x[i] != NULL )
  2826. {
  2827. y[i] = cmDspAudioBuf(ctx,inst,p->audioOutBaseId+i,0);
  2828. if( y[i] != NULL )
  2829. {
  2830. assert( n == cmDspAudioBufSmpCount(ctx,inst,p->audioOutBaseId+i,0));
  2831. cmVOS_Zero(y[i],n);
  2832. actChCnt += 1;
  2833. }
  2834. }
  2835. }
  2836. }
  2837. cmRecdPlayExec(p->rcdply,x,y,actChCnt,n);
  2838. return rc;
  2839. }
  2840. cmDspRC_t _cmDspRecdPlayRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  2841. {
  2842. cmDspRecdPlay_t* p = (cmDspRecdPlay_t*)inst;
  2843. if( p->rcdply == NULL )
  2844. return kOkDspRC;
  2845. cmDspSetEvent(ctx,inst,evt);
  2846. switch( evt->dstVarId )
  2847. {
  2848. case kCmdPrId:
  2849. if( cmDspSymbol(inst,kCmdPrId) == p->onSymId )
  2850. {
  2851. printf("rewind\n");
  2852. cmRecdPlayRewind(p->rcdply);
  2853. //p->scLocIdx = cmDspUInt(inst,kScInitLocIdxPrId);
  2854. }
  2855. else
  2856. if( cmDspSymbol(inst,kCmdPrId) == p->offSymId )
  2857. {
  2858. }
  2859. break;
  2860. case kCurLaSecsPrId:
  2861. cmRecdPlaySetLaSecs(p->rcdply, cmDspDouble(inst,kCurLaSecsPrId));
  2862. break;
  2863. case kScInitLocIdxPrId:
  2864. printf("init-idx:%i\n",cmDspUInt(inst,kScInitLocIdxPrId));
  2865. break;
  2866. case kScLocIdxPrId:
  2867. {
  2868. unsigned endScLocIdx = cmDspUInt(inst,kScLocIdxPrId);
  2869. if( endScLocIdx < cmDspUInt(inst,kScInitLocIdxPrId) )
  2870. break;
  2871. cmScoreLoc_t* loc = cmScoreLoc(p->scH, endScLocIdx );
  2872. if( loc == NULL )
  2873. break;
  2874. cmScoreMarker_t* mp = loc->markList;
  2875. for(; mp!=NULL; mp=mp->link)
  2876. switch( mp->markTypeId )
  2877. {
  2878. case kRecdBegScMId:
  2879. printf("recd-beg %s\n",cmSymTblLabel(ctx->stH,mp->labelSymId));
  2880. cmRecdPlayBeginRecord(p->rcdply, mp->labelSymId );
  2881. break;
  2882. case kRecdEndScMId:
  2883. printf("recd-end %s\n",cmSymTblLabel(ctx->stH,mp->labelSymId));
  2884. cmRecdPlayEndRecord(p->rcdply, mp->labelSymId );
  2885. break;
  2886. case kPlayBegScMId:
  2887. printf("play-beg\n");
  2888. cmRecdPlayBeginPlay(p->rcdply, mp->labelSymId );
  2889. break;
  2890. case kPlayEndScMId:
  2891. printf("play-end\n");
  2892. cmRecdPlayEndPlay(p->rcdply, mp->labelSymId );
  2893. break;
  2894. case kFadeScMId:
  2895. printf("fade-beg\n");
  2896. cmRecdPlayBeginFade(p->rcdply, mp->labelSymId, cmDspDouble(inst,kFadeRatePrId) );
  2897. break;
  2898. default:
  2899. break;
  2900. }
  2901. //p->scLocIdx = endScLocIdx+1;
  2902. }
  2903. break;
  2904. }
  2905. return kOkDspRC;
  2906. }
  2907. cmDspClass_t* cmRecdPlayClassCons( cmDspCtx_t* ctx )
  2908. {
  2909. cmDspClassSetup(&_cmRecdPlayDC,ctx,"RecdPlay",
  2910. NULL,
  2911. _cmDspRecdPlayAlloc,
  2912. _cmDspRecdPlayFree,
  2913. _cmDspRecdPlayReset,
  2914. _cmDspRecdPlayExec,
  2915. _cmDspRecdPlayRecv,
  2916. NULL,
  2917. NULL,
  2918. "Score controlled live recorder/player");
  2919. return &_cmRecdPlayDC;
  2920. }
  2921. //------------------------------------------------------------------------------------------------------------
  2922. //)
  2923. //( { label:cmDspGoertzel file_desc:"Goertzel tone detection filter" kw:[sunit] }
  2924. enum
  2925. {
  2926. kHopFactGrId,
  2927. kInGrId,
  2928. kHzBaseGrId,
  2929. };
  2930. cmDspClass_t _cmGoertzelDC;
  2931. typedef struct
  2932. {
  2933. cmDspInst_t inst;
  2934. cmGoertzel* g;
  2935. double outPhs;
  2936. unsigned outBaseGrId;
  2937. unsigned chCnt;
  2938. } cmDspGoertzel_t;
  2939. cmDspInst_t* _cmDspGoertzelAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  2940. {
  2941. if( va_cnt !=3 )
  2942. {
  2943. cmDspClassErr(ctx,classPtr,kVarArgParseFailDspRC,"The 'Goertzel' constructor must have two arguments: a channel count and frequency array.");
  2944. return NULL;
  2945. }
  2946. va_list vl1;
  2947. va_copy(vl1,vl);
  2948. unsigned hopFact = va_arg(vl,unsigned);
  2949. int chCnt = va_arg(vl,int);
  2950. double* hzV = va_arg(vl,double*);
  2951. unsigned outBaseGrId = kHzBaseGrId + chCnt;
  2952. unsigned i;
  2953. cmDspGoertzel_t* p = cmDspInstAllocV(cmDspGoertzel_t,ctx,classPtr,instSymId,id,storeSymId,1,vl1,
  2954. 1, "hop", kHopFactGrId, 0,0, kInDsvFl | kDoubleDsvFl, "Hop factor",
  2955. 1, "in", kInGrId, 0,1, kInDsvFl | kAudioBufDsvFl, "Audio input",
  2956. chCnt, "hz", kHzBaseGrId, 0,0, kInDsvFl | kDoubleDsvFl, "Hz input.",
  2957. chCnt, "out", outBaseGrId, 0,1, kOutDsvFl | kDoubleDsvFl, "Detector output",
  2958. 0 );
  2959. va_end(vl1);
  2960. p->outBaseGrId = outBaseGrId;
  2961. p->chCnt = chCnt;
  2962. p->g = cmGoertzelAlloc(ctx->cmProcCtx, NULL, 0, NULL, 0,0,0,0 );
  2963. cmDspSetDefaultUInt(ctx,&p->inst, kHopFactGrId, 0, cmMax(hopFact,1));
  2964. for(i=0; i<chCnt; ++i)
  2965. cmDspSetDefaultDouble(ctx,&p->inst, kHzBaseGrId+i, 0.0, hzV[i] );
  2966. return &p->inst;
  2967. }
  2968. cmDspRC_t _cmDspGoertzelSetup( cmDspCtx_t* ctx, cmDspInst_t* inst )
  2969. {
  2970. cmDspRC_t rc = kOkDspRC;
  2971. cmDspGoertzel_t* p = (cmDspGoertzel_t*)inst;
  2972. unsigned hopFact = cmDspUInt(inst,kHopFactGrId);
  2973. unsigned procSmpCnt = cmDspAudioBufSmpCount(ctx,inst,kInGrId,0);
  2974. unsigned wndSmpCnt = procSmpCnt * hopFact;
  2975. double fcHzV[ p->chCnt ];
  2976. unsigned i;
  2977. for(i=0; i<p->chCnt; ++i)
  2978. {
  2979. double hz;
  2980. if( p->g->ch == NULL || p->g->ch[i].hz == 0 )
  2981. hz = cmDspDouble(inst,kHzBaseGrId);
  2982. else
  2983. hz = p->g->ch[i].hz;
  2984. fcHzV[i] = hz;
  2985. }
  2986. if( cmGoertzelInit(p->g,cmDspSysSampleRate(ctx->dspH),fcHzV,p->chCnt,procSmpCnt,procSmpCnt,wndSmpCnt) != cmOkRC )
  2987. rc = cmErrMsg(&inst->classPtr->err, kSubSysFailDspRC, "Unable to initialize the internal Goertzel detector.");
  2988. return rc;
  2989. }
  2990. cmDspRC_t _cmDspGoertzelFree(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  2991. {
  2992. cmDspRC_t rc = kOkDspRC;
  2993. cmDspGoertzel_t* p = (cmDspGoertzel_t*)inst;
  2994. cmGoertzelFree(&p->g);
  2995. return rc;
  2996. }
  2997. cmDspRC_t _cmDspGoertzelReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  2998. {
  2999. cmDspGoertzel_t* p = (cmDspGoertzel_t*)inst;
  3000. cmDspApplyAllDefaults(ctx,inst);
  3001. p->outPhs = 0;
  3002. return _cmDspGoertzelSetup(ctx, inst );
  3003. }
  3004. cmDspRC_t _cmDspGoertzelExec(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3005. {
  3006. cmDspRC_t rc = kOkDspRC;
  3007. cmDspGoertzel_t* p = (cmDspGoertzel_t*)inst;
  3008. const cmSample_t* x = cmDspAudioBuf(ctx,inst,kInGrId,0);
  3009. unsigned n = cmDspAudioBufSmpCount(ctx,inst,kInGrId,0);
  3010. double outMs = 50.0;
  3011. double outPhsMax = outMs * cmDspSysSampleRate(ctx->dspH) / 1000.0;
  3012. double outV[ p->chCnt ];
  3013. unsigned i;
  3014. if( x != NULL )
  3015. {
  3016. cmGoertzelExec(p->g,x,n,outV,p->chCnt);
  3017. p->outPhs += n;
  3018. if( p->outPhs > outPhsMax )
  3019. {
  3020. while( p->outPhs > outPhsMax )
  3021. p->outPhs -= outPhsMax;
  3022. for(i=0; i<p->chCnt; ++i)
  3023. {
  3024. cmDspSetDouble(ctx,inst,p->outBaseGrId+i,outV[i]);
  3025. //printf("%f ",outV[i]);
  3026. }
  3027. //printf("\n");
  3028. }
  3029. }
  3030. return rc;
  3031. }
  3032. cmDspRC_t _cmDspGoertzelRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3033. {
  3034. cmDspGoertzel_t* p = (cmDspGoertzel_t*)inst;
  3035. cmDspSetEvent(ctx,inst,evt);
  3036. if( kHzBaseGrId <= evt->dstVarId && evt->dstVarId < kHzBaseGrId+p->chCnt )
  3037. cmGoertzelSetFcHz(p->g, evt->dstVarId - kHzBaseGrId, cmDspDouble(inst,evt->dstVarId));
  3038. else
  3039. {
  3040. if( evt->dstVarId==kHopFactGrId )
  3041. {
  3042. _cmDspGoertzelSetup(ctx,inst);
  3043. }
  3044. }
  3045. return kOkDspRC;
  3046. }
  3047. cmDspClass_t* cmGoertzelClassCons( cmDspCtx_t* ctx )
  3048. {
  3049. cmDspClassSetup(&_cmGoertzelDC,ctx,"Goertzel",
  3050. NULL,
  3051. _cmDspGoertzelAlloc,
  3052. _cmDspGoertzelFree,
  3053. _cmDspGoertzelReset,
  3054. _cmDspGoertzelExec,
  3055. _cmDspGoertzelRecv,
  3056. NULL,
  3057. NULL,
  3058. "Goertzel Tone Detector Filter");
  3059. return &_cmGoertzelDC;
  3060. }
  3061. //------------------------------------------------------------------------------------------------------------
  3062. //)
  3063. //( { label:cmDspSyncRecd file_desc:"Time align a MIDI and associated audio recording" kw:[sunit] }
  3064. enum
  3065. {
  3066. kRecdDirSrId,
  3067. kSrFnSrId,
  3068. kAfSrId,
  3069. kBitsSrId,
  3070. kCmdSrId,
  3071. kStatusSrId,
  3072. kD0SrId,
  3073. kD1SrId,
  3074. kSecSrId,
  3075. kNSecSrId,
  3076. kAinBaseSrId
  3077. };
  3078. cmDspClass_t _cmSyncRecdDC;
  3079. typedef struct
  3080. {
  3081. cmDspInst_t inst;
  3082. unsigned chCnt;
  3083. cmTimeSpec_t ats;
  3084. cmSyncRecdH_t srH;
  3085. unsigned openSymId;
  3086. unsigned closeSymId;
  3087. const cmChar_t* aFn;
  3088. const cmChar_t* srFn;
  3089. unsigned smpIdx;
  3090. } cmDspSyncRecd_t;
  3091. cmDspRC_t _cmDspSyncRecdCreateFile( cmDspCtx_t* ctx, cmDspInst_t* inst )
  3092. {
  3093. cmDspSyncRecd_t* p = (cmDspSyncRecd_t*)inst;
  3094. const cmChar_t* aFn = cmDspStrcz(inst,kAfSrId);
  3095. const cmChar_t* srFn = cmDspStrcz(inst,kSrFnSrId);
  3096. const cmChar_t* dir = cmDspStrcz(inst,kRecdDirSrId);
  3097. if( !cmFsIsDir(dir) )
  3098. return cmDspInstErr(ctx,&p->inst,kInvalidArgDspRC,"'%s' is not a valid directory.",cmStringNullGuard(dir));
  3099. cmMemPtrFree(&p->aFn);
  3100. if( cmFsGenFn(dir,aFn,"aiff",&p->aFn) != kOkFsRC )
  3101. return cmDspInstErr(ctx,&p->inst,kFileSysFailDspRC,"Audio file name generation failed for dir='%s' and prefix='%s'.",cmStringNullGuard(dir),cmStringNullGuard(aFn));
  3102. cmMemPtrFree(&p->srFn);
  3103. if( cmFsGenFn(dir,srFn,"sr",&p->srFn) != kOkFsRC )
  3104. return cmDspInstErr(ctx,&p->inst,kFileSysFailDspRC,"Sync-recd file name generation failed for dir='%s' and prefix='%s'.",cmStringNullGuard(dir),cmStringNullGuard(srFn));
  3105. unsigned bits = cmDspUInt(inst,kBitsSrId);
  3106. if( cmSyncRecdCreate( ctx->cmCtx, &p->srH, p->srFn, p->aFn, cmDspSampleRate(ctx), p->chCnt, bits ) != kOkSyRC )
  3107. return cmDspInstErr(ctx,&p->inst,kSubSysFailDspRC,"Sync-recd file create failed for '%s'.",p->srFn);
  3108. p->smpIdx = 0;
  3109. return kOkDspRC;
  3110. }
  3111. cmDspInst_t* _cmDspSyncRecdAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  3112. {
  3113. cmDspSyncRecd_t* p = cmDspInstAllocV(cmDspSyncRecd_t,ctx,classPtr,instSymId,id,storeSymId,va_cnt,vl,
  3114. 1, "dir", kRecdDirSrId, 0,0, kInDsvFl | kStrzDsvFl | kReqArgDsvFl, "Recording directory.",
  3115. 1, "srfn", kSrFnSrId, 0,0, kInDsvFl | kStrzDsvFl | kReqArgDsvFl, "SyncRecd file prefix.",
  3116. 1, "afn", kAfSrId, 0,0, kInDsvFl | kStrzDsvFl | kReqArgDsvFl, "Audio file prefix.",
  3117. 1, "bits", kBitsSrId, 0,0, kInDsvFl | kUIntDsvFl | kOptArgDsvFl, "Audio file bits per sample.",
  3118. 1, "cmd", kCmdSrId, 0,0, kInDsvFl | kSymDsvFl, "Command: open | close",
  3119. 1, "status", kStatusSrId, 0,0, kInDsvFl | kUIntDsvFl, "MIDI status",
  3120. 1, "d0", kD0SrId, 0,0, kInDsvFl | kUIntDsvFl, "MIDI d0",
  3121. 1, "d1", kD1SrId, 0,0, kInDsvFl | kUIntDsvFl, "MIDI d1",
  3122. 1, "sec", kSecSrId, 0,0, kInDsvFl | kUIntDsvFl, "MIDI Timestamp Seconds",
  3123. 1, "nsec", kNSecSrId, 0,0, kInDsvFl | kUIntDsvFl, "MIDI Timestamp Nanoseconds",
  3124. 2, "ain", kAinBaseSrId, 0,1, kInDsvFl | kAudioBufDsvFl, "Audio Input",
  3125. 0 );
  3126. p->chCnt = 2;
  3127. p->openSymId = cmSymTblRegisterStaticSymbol(ctx->stH,"open");
  3128. p->closeSymId = cmSymTblRegisterStaticSymbol(ctx->stH,"close");
  3129. cmDspSetDefaultUInt(ctx,&p->inst,kBitsSrId,0,16);
  3130. return &p->inst;
  3131. }
  3132. cmDspRC_t _cmDspSyncRecdFree(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3133. {
  3134. cmDspRC_t rc = kOkDspRC;
  3135. cmDspSyncRecd_t* p = (cmDspSyncRecd_t*)inst;
  3136. cmMemPtrFree(&p->aFn);
  3137. cmMemPtrFree(&p->srFn);
  3138. cmSyncRecdFinal(&p->srH);
  3139. return rc;
  3140. }
  3141. cmDspRC_t _cmDspSyncRecdReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3142. {
  3143. cmDspRC_t rc = kOkDspRC;
  3144. cmDspApplyAllDefaults(ctx,inst);
  3145. return rc;
  3146. }
  3147. cmDspRC_t _cmDspSyncRecdExec(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3148. {
  3149. cmDspRC_t rc = kOkDspRC;
  3150. cmDspSyncRecd_t* p = (cmDspSyncRecd_t*)inst;
  3151. const cmSample_t* x[ p->chCnt ];
  3152. unsigned n = 0;
  3153. unsigned i;
  3154. //const cmTimeSpec_t* ts = &ctx->ctx->oTimeStamp;
  3155. //printf("SR: %ld %ld\n",ts->tv_sec,ts->tv_nsec);
  3156. p->ats = ctx->ctx->iTimeStamp;
  3157. for(i=0; i<p->chCnt; ++i)
  3158. {
  3159. if( i==0 )
  3160. n = cmDspAudioBufSmpCount(ctx,inst,kAinBaseSrId+i,0);
  3161. else
  3162. { assert( n == cmDspAudioBufSmpCount(ctx,inst,kAinBaseSrId+i,0)); }
  3163. x[i] = cmDspAudioBuf(ctx,inst,kAinBaseSrId+i,0);
  3164. }
  3165. if( n>0 && cmSyncRecdIsValid(p->srH ) )
  3166. if( cmSyncRecdAudioWrite( p->srH, &ctx->ctx->iTimeStamp, p->smpIdx, x, p->chCnt, n ) != kOkSyRC )
  3167. return cmDspInstErr(ctx,&p->inst,kSubSysFailDspRC,"Sync-recd audio update failed.");
  3168. p->smpIdx += n;
  3169. return rc;
  3170. }
  3171. cmDspRC_t _cmDspSyncRecdRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3172. {
  3173. cmDspRC_t rc = kOkDspRC;
  3174. cmDspSyncRecd_t* p = (cmDspSyncRecd_t*)inst;
  3175. cmDspSetEvent(ctx,inst,evt);
  3176. switch( evt->dstVarId )
  3177. {
  3178. case kStatusSrId:
  3179. if(cmMidiIsChStatus( cmDspUInt(inst,kStatusSrId) ) )
  3180. {
  3181. cmTimeSpec_t ts;
  3182. ts.tv_sec = cmDspUInt(inst,kSecSrId);
  3183. ts.tv_nsec = cmDspUInt(inst,kNSecSrId);
  3184. //printf("%i %i\n",cmDspUInt(inst,kD1SrId),cmTimeElapsedMicros(&ts,&p->ats));
  3185. if( cmSyncRecdIsValid(p->srH ) )
  3186. if( cmSyncRecdMidiWrite(p->srH, &ts, cmDspUInt(inst,kStatusSrId), cmDspUInt(inst,kD0SrId), cmDspUInt(inst,kD1SrId) ) != kOkSyRC )
  3187. return cmDspInstErr(ctx,&p->inst,kSubSysFailDspRC,"Sync-recd MIDI update failed.");
  3188. }
  3189. break;
  3190. case kCmdSrId:
  3191. {
  3192. unsigned cmdId = cmDspSymbol(inst,kCmdSrId);
  3193. if( cmdId == p->openSymId )
  3194. rc = _cmDspSyncRecdCreateFile(ctx,inst);
  3195. else
  3196. if( cmdId == p->closeSymId && cmSyncRecdIsValid(p->srH))
  3197. {
  3198. cmSyncRecdFinal(&p->srH);
  3199. //cmSyncRecdTest(ctx->cmCtx);
  3200. }
  3201. }
  3202. break;
  3203. }
  3204. return rc;
  3205. }
  3206. cmDspClass_t* cmSyncRecdClassCons( cmDspCtx_t* ctx )
  3207. {
  3208. cmDspClassSetup(&_cmSyncRecdDC,ctx,"SyncRecd",
  3209. NULL,
  3210. _cmDspSyncRecdAlloc,
  3211. _cmDspSyncRecdFree,
  3212. _cmDspSyncRecdReset,
  3213. _cmDspSyncRecdExec,
  3214. _cmDspSyncRecdRecv,
  3215. NULL,
  3216. NULL,
  3217. "Synchronized Audio and MIDI recorder.");
  3218. return &_cmSyncRecdDC;
  3219. }
  3220. //------------------------------------------------------------------------------------------------------------
  3221. //)
  3222. //( { label:cmDspTakeSeqBldr file_desc:"User interface unit for creating a single sequence from multiple, score aligned, MIDI fragments." kw:[sunit] }
  3223. enum
  3224. {
  3225. kFnTsbId,
  3226. kBldrTsbId,
  3227. kSelTsbId,
  3228. kRefreshTsbId,
  3229. kSendTsbId
  3230. };
  3231. cmDspClass_t _cmTakeSeqBldrDC;
  3232. typedef struct
  3233. {
  3234. cmDspInst_t inst;
  3235. cmTakeSeqBldrH_t h;
  3236. bool errFl;
  3237. } cmDspTakeSeqBldr_t;
  3238. cmDspInst_t* _cmDspTakeSeqBldrAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  3239. {
  3240. cmDspTakeSeqBldr_t* p = cmDspInstAllocV(cmDspTakeSeqBldr_t,ctx,classPtr,instSymId,id,storeSymId,va_cnt,vl,
  3241. 1, "fn", kFnTsbId, 0, 0, kInDsvFl | kStrzDsvFl | kReqArgDsvFl, "Score Tracking file.",
  3242. 1, "bldr", kBldrTsbId, 0, 0, kOutDsvFl | kPtrDsvFl, "Bldr Ref",
  3243. 1, "sel", kSelTsbId, 0, 0, kOutDsvFl | kUIntDsvFl, "Selected score element location index.",
  3244. 1, "refresh",kRefreshTsbId, 0, 0, kOutDsvFl | kUIntDsvFl, "Refresh",
  3245. 1, "send", kSendTsbId, 0, 0, kInDsvFl | kTypeDsvMask, "Resend last selected score element location.",
  3246. 0 );
  3247. p->errFl = false;
  3248. cmDspSetDefaultInt( ctx, &p->inst, kRefreshTsbId, 0, 0);
  3249. if( cmTakeSeqBldrAlloc(ctx->cmCtx, &p->h ) != kOkTsbRC )
  3250. cmErrMsg(&p->inst.classPtr->err, kSubSysFailDspRC, "Allocate TaskSeqBldr object.");
  3251. else
  3252. {
  3253. cmDspUiTakeSeqBldrCreate(ctx,&p->inst,kFnTsbId,kBldrTsbId,kSelTsbId,kRefreshTsbId);
  3254. }
  3255. return &p->inst;
  3256. }
  3257. cmDspRC_t _cmDspTakeSeqBldrSetup( cmDspCtx_t* ctx, cmDspInst_t* inst )
  3258. {
  3259. cmDspRC_t rc = kOkDspRC;
  3260. cmDspTakeSeqBldr_t* p = (cmDspTakeSeqBldr_t*)inst;
  3261. if( cmTakeSeqBldrInitialize(p->h, cmDspStrcz(inst,kFnTsbId) ) != kOkTsbRC )
  3262. {
  3263. rc = cmErrMsg(&inst->classPtr->err, kSubSysFailDspRC, "Unable to initialize the internal TakeSeqBldr object with %s.",cmStringNullGuard(cmDspStrcz(inst,kFnTsbId)));
  3264. }
  3265. else
  3266. {
  3267. cmDspSetPtr(ctx,inst,kBldrTsbId,p->h.h);
  3268. p->errFl = false;
  3269. }
  3270. return rc;
  3271. }
  3272. cmDspRC_t _cmDspTakeSeqBldrFree(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3273. {
  3274. cmDspRC_t rc = kOkDspRC;
  3275. cmDspTakeSeqBldr_t* p = (cmDspTakeSeqBldr_t*)inst;
  3276. cmTakeSeqBldrFree(&p->h);
  3277. return rc;
  3278. }
  3279. cmDspRC_t _cmDspTakeSeqBldrReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3280. {
  3281. //cmDspTakeSeqBldr_t* p = (cmDspTakeSeqBldr_t*)inst;
  3282. cmDspApplyAllDefaults(ctx,inst);
  3283. return _cmDspTakeSeqBldrSetup(ctx, inst );
  3284. }
  3285. cmDspRC_t _cmDspTakeSeqBldrExec(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3286. {
  3287. cmDspRC_t rc = kOkDspRC;
  3288. return rc;
  3289. }
  3290. cmDspRC_t _cmDspTakeSeqBldrRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3291. {
  3292. // not matter what arrives at the 'send' input ....
  3293. if( evt->dstVarId == kSendTsbId )
  3294. {
  3295. // send the last score loc
  3296. unsigned selIdx;
  3297. if((selIdx = cmDspUInt(inst,kSelTsbId)) != cmInvalidIdx )
  3298. cmDspSetUInt(ctx,inst,kSelTsbId, selIdx );
  3299. return kOkDspRC;
  3300. }
  3301. cmDspSetEvent(ctx,inst,evt);
  3302. switch(evt->dstVarId)
  3303. {
  3304. case kFnTsbId:
  3305. _cmDspMidiFilePlayOpen(ctx, inst );
  3306. break;
  3307. }
  3308. return kOkDspRC;
  3309. }
  3310. cmDspClass_t* cmTakeSeqBldrClassCons( cmDspCtx_t* ctx )
  3311. {
  3312. cmDspClassSetup(&_cmTakeSeqBldrDC,ctx,"TakeSeqBldr",
  3313. NULL,
  3314. _cmDspTakeSeqBldrAlloc,
  3315. _cmDspTakeSeqBldrFree,
  3316. _cmDspTakeSeqBldrReset,
  3317. _cmDspTakeSeqBldrExec,
  3318. _cmDspTakeSeqBldrRecv,
  3319. NULL,
  3320. NULL,
  3321. "TakeSeqBldr");
  3322. return &_cmTakeSeqBldrDC;
  3323. }
  3324. //------------------------------------------------------------------------------------------------------------
  3325. //)
  3326. //( { label:cmDspTakeSeqRend file_desc:"User interface unit for graphically rendering the MIDI sequences created by cmDspTakeSeqBldr." kw:[sunit] }
  3327. enum
  3328. {
  3329. kBldrTsrId,
  3330. kRefreshTsrId,
  3331. kCmdTsrId,
  3332. kSelTsrId,
  3333. kStatusTsrId,
  3334. kD0TsrId,
  3335. kD1TsrId,
  3336. kSmpIdxTsrId
  3337. };
  3338. cmDspClass_t _cmTakeSeqRendDC;
  3339. typedef struct
  3340. {
  3341. cmDspInst_t inst;
  3342. cmTakeSeqBldrH_t h;
  3343. unsigned startSymId;
  3344. unsigned stopSymId;
  3345. unsigned contSymId;
  3346. unsigned onSymId;
  3347. unsigned offSymId;
  3348. bool errFl;
  3349. } cmDspTakeSeqRend_t;
  3350. cmDspInst_t* _cmDspTakeSeqRendAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  3351. {
  3352. cmDspTakeSeqRend_t* p = cmDspInstAllocV(cmDspTakeSeqRend_t,ctx,classPtr,instSymId,id,storeSymId,va_cnt,vl,
  3353. 1, "bldr", kBldrTsrId, 0, 0, kInDsvFl | kPtrDsvFl | kOptArgDsvFl, "Take Sequene Builder Ref",
  3354. 1, "refresh",kRefreshTsrId, 0, 0, kInDsvFl | kUIntDsvFl | kOptArgDsvFl, "Refresh",
  3355. 1, "cmd", kCmdTsrId, 0, 0, kInDsvFl | kSymDsvFl, "start | stop | continue" ,
  3356. 1, "sel", kSelTsrId, 0, 0, kInDsvFl | kUIntDsvFl, "Selected score element location index input.",
  3357. 1, "status", kStatusTsrId, 0, 0, kOutDsvFl | kIntDsvFl, "Status value output",
  3358. 1, "d0", kD0TsrId, 0, 0, kOutDsvFl | kUIntDsvFl, "Data byte 0" ,
  3359. 1, "d1", kD1TsrId, 0, 0, kOutDsvFl | kUIntDsvFl, "Data byte 1",
  3360. 1, "smpidx", kSmpIdxTsrId, 0, 0, kOutDsvFl | kUIntDsvFl, "Msg time tag as a sample index.",
  3361. 0 );
  3362. p->startSymId = cmSymTblRegisterStaticSymbol(ctx->stH,"start");
  3363. p->stopSymId = cmSymTblRegisterStaticSymbol(ctx->stH,"stop");
  3364. p->contSymId = cmSymTblRegisterStaticSymbol(ctx->stH,"continue");
  3365. p->onSymId = cmSymTblRegisterStaticSymbol(ctx->stH,"on");
  3366. p->offSymId = cmSymTblRegisterStaticSymbol(ctx->stH,"off");
  3367. p->errFl = false;
  3368. cmDspSetDefaultInt( ctx, &p->inst, kRefreshTsrId, 0, 0);
  3369. cmDspSetDefaultSymbol(ctx, &p->inst, kCmdTsrId, p->stopSymId);
  3370. cmDspSetDefaultInt( ctx, &p->inst, kSmpIdxTsrId, 0, 0);
  3371. cmDspSetDefaultUInt( ctx, &p->inst, kStatusTsrId, 0, 0);
  3372. cmDspSetDefaultUInt( ctx, &p->inst, kD0TsrId, 0, 0);
  3373. cmDspSetDefaultUInt( ctx, &p->inst, kD1TsrId, 0, 0);
  3374. cmDspUiTakeSeqRendCreate(ctx,&p->inst,kBldrTsrId,kRefreshTsrId,kSelTsrId);
  3375. return &p->inst;
  3376. }
  3377. cmDspRC_t _cmDspTakeSeqRendFree(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3378. {
  3379. cmDspRC_t rc = kOkDspRC;
  3380. return rc;
  3381. }
  3382. cmDspRC_t _cmDspTakeSeqRendReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3383. {
  3384. //cmDspTakeSeqRend_t* p = (cmDspTakeSeqRend_t*)inst;
  3385. cmDspApplyAllDefaults(ctx,inst);
  3386. return kOkDspRC;
  3387. }
  3388. typedef struct
  3389. {
  3390. cmDspCtx_t* ctx;
  3391. cmDspInst_t* inst;
  3392. } _cmDspTakeSeqRendCbArg_t;
  3393. // Called from cmDspTakeSeqRendExec() -> cmTakeSeqRendPlayExec() to
  3394. // deliver MIDI messages which need to be transmitted.
  3395. void _cmDspTakeSeqRendMidiCb( void* arg, const cmTksbEvent_t* e )
  3396. {
  3397. _cmDspTakeSeqRendCbArg_t* a = (_cmDspTakeSeqRendCbArg_t*)arg;
  3398. switch( e->status )
  3399. {
  3400. case kNoteOffMdId:
  3401. case kNoteOnMdId:
  3402. case kCtlMdId:
  3403. //if( !cmMidiIsPedal(e->status,e->d0))
  3404. {
  3405. cmDspSetUInt(a->ctx,a->inst, kSmpIdxTsrId, e->smpIdx);
  3406. cmDspSetUInt(a->ctx,a->inst, kD1TsrId, e->d1);
  3407. cmDspSetUInt(a->ctx,a->inst, kD0TsrId, e->d0);
  3408. cmDspSetUInt(a->ctx,a->inst, kStatusTsrId, e->status);
  3409. }
  3410. break;
  3411. }
  3412. }
  3413. void _cmDspTakeSeqRendPedalsUp( cmDspCtx_t* ctx, cmDspInst_t* inst )
  3414. {
  3415. _cmDspTakeSeqRendCbArg_t a;
  3416. a.ctx = ctx;
  3417. a.inst = inst;
  3418. cmTksbEvent_t e[] =
  3419. {
  3420. { 0, kCtlMdId, kSustainCtlMdId, 0 },
  3421. { 0, kCtlMdId, kPortamentoCtlMdId,0 },
  3422. { 0, kCtlMdId, kSostenutoCtlMdId, 0 },
  3423. { 0, kCtlMdId, kSoftPedalCtlMdId, 0 },
  3424. { 0, kCtlMdId, kLegatoCtlMdId, 0 }
  3425. };
  3426. unsigned n = sizeof(e)/sizeof(e[0]);
  3427. unsigned i;
  3428. for(i=0; i<n; ++i)
  3429. _cmDspTakeSeqRendMidiCb(&a,e+i);
  3430. }
  3431. cmDspRC_t _cmDspTakeSeqRendExec(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3432. {
  3433. cmDspRC_t rc = kOkDspRC;
  3434. cmDspTakeSeqRend_t* p = (cmDspTakeSeqRend_t*)inst;
  3435. if( cmDspSymbol(inst,kCmdTsrId) != p->stopSymId )
  3436. {
  3437. if( cmTakeSeqBldrIsValid(p->h) == false )
  3438. {
  3439. if( p->errFl==false )
  3440. {
  3441. rc = cmErrMsg(&inst->classPtr->err, kInvalidStateDspRC,"The Take Sequence Builder not been given a valid file.");
  3442. p->errFl = true;
  3443. }
  3444. return rc;
  3445. }
  3446. unsigned sPc = cmDspSamplesPerCycle(ctx);
  3447. _cmDspTakeSeqRendCbArg_t arg;
  3448. arg.inst = inst;
  3449. arg.ctx = ctx;
  3450. // This call may result in multiple callbacks
  3451. // to _cmDspTakeSeqRendMidiCb() from within the function.
  3452. cmTakeSeqBldrPlayExec(p->h,sPc,_cmDspTakeSeqRendMidiCb, &arg );
  3453. }
  3454. return rc;
  3455. }
  3456. cmDspRC_t _cmDspTakeSeqRendRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3457. {
  3458. cmDspTakeSeqRend_t* p = (cmDspTakeSeqRend_t*)inst;
  3459. printf("Recv:%s\n",cmStringNullGuard(cmDspVarLabel(ctx, inst, evt->dstVarId)) );
  3460. cmDspSetEvent(ctx,inst,evt);
  3461. switch(evt->dstVarId)
  3462. {
  3463. case kBldrTsrId:
  3464. p->h.h = cmDspPtr(inst,kBldrTsrId);
  3465. break;
  3466. case kCmdTsrId:
  3467. {
  3468. unsigned symId = cmDspSymbol(inst,kCmdTsrId);
  3469. if( symId == p->onSymId )
  3470. cmDspSetSymbol( ctx, inst, kCmdTsrId, p->startSymId );
  3471. else
  3472. if( symId == p->offSymId )
  3473. cmDspSetSymbol( ctx, inst, kCmdTsrId, p->stopSymId );
  3474. if( cmTakeSeqBldrIsValid(p->h) && cmDspSymbol(inst,kCmdTsrId)==p->startSymId )
  3475. {
  3476. _cmDspTakeSeqRendPedalsUp( ctx, inst );
  3477. cmTakeSeqBldrPlaySeekLoc(p->h, cmInvalidId );
  3478. }
  3479. }
  3480. break;
  3481. case kSelTsrId:
  3482. {
  3483. // seek the playback position to the scLocIdx.
  3484. unsigned scLocIdx = cmDspUInt(inst,kSelTsrId);
  3485. if( cmTakeSeqBldrIsValid(p->h) && cmTakeSeqBldrPlaySeekLoc(p->h, scLocIdx ) != kOkTsbRC )
  3486. return cmDspInstErr(ctx,&p->inst,kSubSysFailDspRC,"Take Sequence Bldr Seek failed on score location index %i.", scLocIdx);
  3487. }
  3488. break;
  3489. }
  3490. return kOkDspRC;
  3491. }
  3492. cmDspClass_t* cmTakeSeqRendClassCons( cmDspCtx_t* ctx )
  3493. {
  3494. cmDspClassSetup(&_cmTakeSeqRendDC,ctx,"TakeSeqRend",
  3495. NULL,
  3496. _cmDspTakeSeqRendAlloc,
  3497. _cmDspTakeSeqRendFree,
  3498. _cmDspTakeSeqRendReset,
  3499. _cmDspTakeSeqRendExec,
  3500. _cmDspTakeSeqRendRecv,
  3501. NULL,
  3502. NULL,
  3503. "TakeSeqRend");
  3504. return &_cmTakeSeqRendDC;
  3505. }
  3506. //------------------------------------------------------------------------------------------------------------
  3507. //)
  3508. //( { label:cmDspReflectCalc file_desc:"Estimate the time-of-flight of from an acoustic signal from a speaker to a microphone." kw:[sunit] }
  3509. enum
  3510. {
  3511. kLfsrN_RcId,
  3512. kMlsCoeff0RcId,
  3513. kMlsCoeff1RcId,
  3514. kSmpPerChipRcId,
  3515. kRcosBetaRcId,
  3516. kRcosOS_RcId,
  3517. kCarrierHzRcId,
  3518. kAtkDcyMsRcId,
  3519. kPhatAlphaRcId,
  3520. kPhatMultRcId,
  3521. kInRcId,
  3522. kOutRcId,
  3523. };
  3524. cmDspClass_t _cmReflectCalcDC;
  3525. typedef struct
  3526. {
  3527. cmDspInst_t inst;
  3528. cmReflectCalc_t* r;
  3529. } cmDspReflectCalc_t;
  3530. cmDspInst_t* _cmDspReflectCalcAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  3531. {
  3532. // if( va_cnt !=3 )
  3533. // {
  3534. // cmDspClassErr(ctx,classPtr,kVarArgParseFailDspRC,"The 'ReflectCalc' constructor must have two arguments: a channel count and frequency array.");
  3535. // return NULL;
  3536. // }
  3537. cmDspReflectCalc_t* p = cmDspInstAllocV(cmDspReflectCalc_t,ctx,classPtr,instSymId,id,storeSymId,va_cnt,vl,
  3538. 1, "lfsrN", kLfsrN_RcId, 0,0, kInDsvFl | kUIntDsvFl, "Gold code generator LFSR length",
  3539. 1, "mlsc0", kMlsCoeff0RcId, 0,0, kInDsvFl | kUIntDsvFl, "LFSR coefficient 0",
  3540. 1, "mlsc1", kMlsCoeff1RcId, 0,0, kInDsvFl | kUIntDsvFl, "LFSR coefficient 0",
  3541. 1, "spchip",kSmpPerChipRcId,0,0, kInDsvFl | kUIntDsvFl, "Samples per spreading code bit.",
  3542. 1, "rcosb", kRcosBetaRcId, 0,0, kInDsvFl | kDoubleDsvFl, "Raised cosine beta",
  3543. 1, "rcosos",kRcosOS_RcId, 0,0, kInDsvFl | kUIntDsvFl, "Raised cosine oversample factor.",
  3544. 1, "carhz", kCarrierHzRcId, 0,0, kInDsvFl | kDoubleDsvFl, "Carrier frequency in Hertz.",
  3545. 1, "envms", kAtkDcyMsRcId, 0,0, kInDsvFl | kDoubleDsvFl, "Signal Attack/Decay milliseconds.",
  3546. 1, "alpha", kPhatAlphaRcId, 0,0, kInDsvFl | kDoubleDsvFl, "PHAT alpha coefficient.",
  3547. 1, "mult", kPhatMultRcId, 0,0, kInDsvFl | kUIntDsvFl, "PHAT multiplier coefficient.",
  3548. 1, "in", kInRcId, 0,1, kInDsvFl | kAudioBufDsvFl,"Audio input",
  3549. 1, "out", kOutRcId, 0,1, kOutDsvFl | kAudioBufDsvFl,"Audio output",
  3550. 0 );
  3551. p->r = cmReflectCalcAlloc(ctx->cmProcCtx, NULL, NULL, 0, 0 );
  3552. cmDspSetDefaultUInt( ctx, &p->inst, kLfsrN_RcId, 0, 8);
  3553. cmDspSetDefaultUInt( ctx, &p->inst, kMlsCoeff0RcId, 0, 0x8e);
  3554. cmDspSetDefaultUInt( ctx, &p->inst, kMlsCoeff1RcId, 0, 0x96);
  3555. cmDspSetDefaultUInt( ctx, &p->inst, kSmpPerChipRcId, 0, 64);
  3556. cmDspSetDefaultDouble( ctx, &p->inst, kRcosBetaRcId, 0, 0.5);
  3557. cmDspSetDefaultUInt( ctx, &p->inst, kRcosOS_RcId, 0, 4);
  3558. cmDspSetDefaultDouble( ctx, &p->inst, kCarrierHzRcId, 0, 2500.0);
  3559. cmDspSetDefaultDouble( ctx, &p->inst, kAtkDcyMsRcId, 0, 50.0);
  3560. cmDspSetDefaultDouble( ctx, &p->inst, kPhatAlphaRcId, 0, 0.5);
  3561. cmDspSetDefaultUInt( ctx, &p->inst, kPhatMultRcId, 0, 1);
  3562. return &p->inst;
  3563. }
  3564. cmDspRC_t _cmDspReflectCalcSetup( cmDspCtx_t* ctx, cmDspInst_t* inst )
  3565. {
  3566. cmDspRC_t rc = kOkDspRC;
  3567. cmDspReflectCalc_t* p = (cmDspReflectCalc_t*)inst;
  3568. cmGoldSigArg_t gsa;
  3569. gsa.chN = 1;
  3570. gsa.srate = cmDspSampleRate(ctx);
  3571. gsa.lfsrN = cmDspUInt(inst,kLfsrN_RcId);
  3572. gsa.mlsCoeff0 = cmDspUInt(inst,kMlsCoeff0RcId);
  3573. gsa.mlsCoeff1 = cmDspUInt(inst,kMlsCoeff1RcId);
  3574. gsa.samplesPerChip = cmDspUInt(inst,kSmpPerChipRcId);
  3575. gsa.rcosBeta = cmDspDouble(inst,kRcosBetaRcId);
  3576. gsa.rcosOSFact = cmDspUInt(inst,kRcosOS_RcId);
  3577. gsa.carrierHz = cmDspDouble(inst,kCarrierHzRcId);
  3578. gsa.envMs = cmDspDouble(inst,kAtkDcyMsRcId);
  3579. double phatAlpha = cmDspDouble(inst,kPhatAlphaRcId);
  3580. unsigned phatMult = cmDspUInt(inst,kPhatMultRcId);
  3581. if( cmReflectCalcInit(p->r,&gsa,phatAlpha,phatMult) != cmOkRC )
  3582. rc = cmErrMsg(&inst->classPtr->err, kSubSysFailDspRC, "Unable to initialize the internal ReflectCalc detector.");
  3583. return rc;
  3584. }
  3585. cmDspRC_t _cmDspReflectCalcFree(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3586. {
  3587. cmDspRC_t rc = kOkDspRC;
  3588. cmDspReflectCalc_t* p = (cmDspReflectCalc_t*)inst;
  3589. cmReflectCalcFree(&p->r);
  3590. return rc;
  3591. }
  3592. cmDspRC_t _cmDspReflectCalcReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3593. {
  3594. //cmDspReflectCalc_t* p = (cmDspReflectCalc_t*)inst;
  3595. cmDspApplyAllDefaults(ctx,inst);
  3596. return _cmDspReflectCalcSetup(ctx, inst );
  3597. }
  3598. cmDspRC_t _cmDspReflectCalcExec(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3599. {
  3600. cmDspRC_t rc = kOkDspRC;
  3601. cmDspReflectCalc_t* p = (cmDspReflectCalc_t*)inst;
  3602. const cmSample_t* xV = cmDspAudioBuf(ctx,inst,kInRcId,0);
  3603. unsigned xN = cmDspAudioBufSmpCount(ctx,inst,kInRcId,0);
  3604. cmSample_t* yV = cmDspAudioBuf(ctx,inst,kOutRcId,0);
  3605. unsigned yN = cmDspAudioBufSmpCount(ctx,inst,kOutRcId,0);
  3606. if( xV != NULL && yV != NULL )
  3607. {
  3608. assert( xN == yN );
  3609. cmReflectCalcExec(p->r,xV,yV,xN);
  3610. }
  3611. return rc;
  3612. }
  3613. cmDspRC_t _cmDspReflectCalcRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3614. {
  3615. //cmDspReflectCalc_t* p = (cmDspReflectCalc_t*)inst;
  3616. cmDspSetEvent(ctx,inst,evt);
  3617. return kOkDspRC;
  3618. }
  3619. cmDspClass_t* cmReflectCalcClassCons( cmDspCtx_t* ctx )
  3620. {
  3621. cmDspClassSetup(&_cmReflectCalcDC,ctx,"ReflectCalc",
  3622. NULL,
  3623. _cmDspReflectCalcAlloc,
  3624. _cmDspReflectCalcFree,
  3625. _cmDspReflectCalcReset,
  3626. _cmDspReflectCalcExec,
  3627. _cmDspReflectCalcRecv,
  3628. NULL,
  3629. NULL,
  3630. "Reflecttion time calculator");
  3631. return &_cmReflectCalcDC;
  3632. }
  3633. //------------------------------------------------------------------------------------------------------------
  3634. //)
  3635. //( { label:cmDspEchoCancel file_desc:"Normalized least mean squares echo canceller." kw:[sunit] }
  3636. enum
  3637. {
  3638. kMuEcId,
  3639. kImpRespN_EcId,
  3640. kDelayN_EcId,
  3641. kBypassEcId,
  3642. kUnfiltInEcId,
  3643. kFiltInEcId,
  3644. kOutEcId
  3645. };
  3646. cmDspClass_t _cmEchoCancelDC;
  3647. typedef struct
  3648. {
  3649. cmDspInst_t inst;
  3650. cmNlmsEc_t* r;
  3651. } cmDspEchoCancel_t;
  3652. cmDspInst_t* _cmDspEchoCancelAlloc(cmDspCtx_t* ctx, cmDspClass_t* classPtr, unsigned storeSymId, unsigned instSymId, unsigned id, unsigned va_cnt, va_list vl )
  3653. {
  3654. // if( va_cnt !=3 )
  3655. // {
  3656. // cmDspClassErr(ctx,classPtr,kVarArgParseFailDspRC,"The 'EchoCancel' constructor must have two arguments: a channel count and frequency array.");
  3657. // return NULL;
  3658. // }
  3659. cmDspEchoCancel_t* p = cmDspInstAllocV(cmDspEchoCancel_t,ctx,classPtr,instSymId,id,storeSymId,va_cnt,vl,
  3660. 1, "mu", kMuEcId, 0,0, kInDsvFl | kDoubleDsvFl, "NLSM mu coefficient.",
  3661. 1, "irN", kImpRespN_EcId, 0,0, kInDsvFl | kUIntDsvFl, "Filter impulse response length in samples.",
  3662. 1, "delayN", kDelayN_EcId, 0,0, kInDsvFl | kUIntDsvFl, "Fixed feedback delay in samples.",
  3663. 1, "bypass", kBypassEcId, 0,0, kInDsvFl | kBoolDsvFl, "Bypass enable flag.",
  3664. 1, "uf_in", kUnfiltInEcId, 0,1, kInDsvFl | kAudioBufDsvFl, "Unfiltered audio input",
  3665. 1, "f_in", kFiltInEcId, 0,1, kInDsvFl | kAudioBufDsvFl, "Filtered audio input",
  3666. 1, "out", kOutEcId, 0,1, kOutDsvFl | kAudioBufDsvFl, "Audio output",
  3667. 0 );
  3668. p->r = cmNlmsEcAlloc(ctx->cmProcCtx, NULL, 0, 0,0,0 );
  3669. cmDspSetDefaultDouble( ctx, &p->inst, kMuEcId, 0, 0.1);
  3670. cmDspSetDefaultUInt( ctx, &p->inst, kImpRespN_EcId, 0, 2048);
  3671. cmDspSetDefaultUInt( ctx, &p->inst, kDelayN_EcId, 0, 1765);
  3672. cmDspSetDefaultBool( ctx, &p->inst, kBypassEcId, 0, false);
  3673. return &p->inst;
  3674. }
  3675. cmDspRC_t _cmDspEchoCancelSetup( cmDspCtx_t* ctx, cmDspInst_t* inst )
  3676. {
  3677. cmDspRC_t rc = kOkDspRC;
  3678. cmDspEchoCancel_t* p = (cmDspEchoCancel_t*)inst;
  3679. double mu = cmDspDouble(inst,kMuEcId);
  3680. unsigned hN = cmDspUInt(inst,kImpRespN_EcId);
  3681. unsigned delayN = cmDspUInt(inst,kDelayN_EcId);
  3682. if( cmNlmsEcInit(p->r,cmDspSampleRate(ctx),mu,hN,delayN) != cmOkRC )
  3683. rc = cmErrMsg(&inst->classPtr->err, kSubSysFailDspRC, "Unable to initialize the internal echo canceller.");
  3684. return rc;
  3685. }
  3686. cmDspRC_t _cmDspEchoCancelFree(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3687. {
  3688. cmDspRC_t rc = kOkDspRC;
  3689. cmDspEchoCancel_t* p = (cmDspEchoCancel_t*)inst;
  3690. cmNlmsEcWrite(p->r, "/Users/kevin/temp/kc");
  3691. cmNlmsEcFree(&p->r);
  3692. return rc;
  3693. }
  3694. cmDspRC_t _cmDspEchoCancelReset(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3695. {
  3696. //cmDspEchoCancel_t* p = (cmDspEchoCancel_t*)inst;
  3697. cmDspApplyAllDefaults(ctx,inst);
  3698. return _cmDspEchoCancelSetup(ctx, inst );
  3699. }
  3700. cmDspRC_t _cmDspEchoCancelExec(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3701. {
  3702. cmDspRC_t rc = kOkDspRC;
  3703. cmDspEchoCancel_t* p = (cmDspEchoCancel_t*)inst;
  3704. bool bypassFl = true; //cmDspBool(inst,kBypassEcId);
  3705. const cmSample_t* fV = cmDspAudioBuf(ctx,inst,kFiltInEcId,0);
  3706. unsigned fN = cmDspAudioBufSmpCount(ctx,inst,kFiltInEcId,0);
  3707. const cmSample_t* uV = cmDspAudioBuf(ctx,inst,kUnfiltInEcId,0);
  3708. unsigned uN = cmDspAudioBufSmpCount(ctx,inst,kUnfiltInEcId,0);
  3709. cmSample_t* yV = cmDspAudioBuf(ctx,inst,kOutEcId,0);
  3710. unsigned yN = cmDspAudioBufSmpCount(ctx,inst,kOutEcId,0);
  3711. assert( fN==uN && fN==yN );
  3712. if( bypassFl )
  3713. {
  3714. cmVOS_Copy(yV,yN,uV);
  3715. }
  3716. else
  3717. {
  3718. if( fV !=NULL && uV != NULL && yV != NULL )
  3719. {
  3720. assert( uN == yN && fN == yN );
  3721. cmNlmsEcExec(p->r,uV,fV,yV,yN);
  3722. }
  3723. }
  3724. return rc;
  3725. }
  3726. cmDspRC_t _cmDspEchoCancelRecv(cmDspCtx_t* ctx, cmDspInst_t* inst, const cmDspEvt_t* evt )
  3727. {
  3728. cmDspEchoCancel_t* p = (cmDspEchoCancel_t*)inst;
  3729. cmDspSetEvent(ctx,inst,evt);
  3730. if( p->r != NULL )
  3731. {
  3732. switch(evt->dstVarId)
  3733. {
  3734. case kMuEcId:
  3735. cmNlmsEcSetMu( p->r, cmDspReal(inst,kMuEcId));
  3736. break;
  3737. case kImpRespN_EcId:
  3738. cmNlmsEcSetIrN( p->r, cmDspUInt(inst,kImpRespN_EcId));
  3739. break;
  3740. case kDelayN_EcId:
  3741. cmNlmsEcSetDelayN( p->r, cmDspUInt(inst,kDelayN_EcId));
  3742. break;
  3743. case kBypassEcId:
  3744. printf("EC bypass:%i\n",cmDspBool(inst,kBypassEcId));
  3745. break;
  3746. }
  3747. }
  3748. printf("mu:%f dN:%i hN:%i\n",p->r->mu,p->r->delayN,p->r->hN);
  3749. return kOkDspRC;
  3750. }
  3751. cmDspClass_t* cmEchoCancelClassCons( cmDspCtx_t* ctx )
  3752. {
  3753. cmDspClassSetup(&_cmEchoCancelDC,ctx,"EchoCancel",
  3754. NULL,
  3755. _cmDspEchoCancelAlloc,
  3756. _cmDspEchoCancelFree,
  3757. _cmDspEchoCancelReset,
  3758. _cmDspEchoCancelExec,
  3759. _cmDspEchoCancelRecv,
  3760. NULL,
  3761. NULL,
  3762. "Echo canceller");
  3763. return &_cmEchoCancelDC;
  3764. }
  3765. //)