caltrain.c 47 KB

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  1. /*
  2. * Copyright (c) 1983-2023 Trevor Wishart and Composers Desktop Project Ltd
  3. * http://www.trevorwishart.co.uk
  4. * http://www.composersdesktop.com
  5. *
  6. This file is part of the CDP System.
  7. The CDP System is free software; you can redistribute it
  8. and/or modify it under the terms of the GNU Lesser General Public
  9. License as published by the Free Software Foundation; either
  10. version 2.1 of the License, or (at your option) any later version.
  11. The CDP System is distributed in the hope that it will be useful,
  12. but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. GNU Lesser General Public License for more details.
  15. You should have received a copy of the GNU Lesser General Public
  16. License along with the CDP System; if not, write to the Free Software
  17. Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
  18. 02111-1307 USA
  19. *
  20. */
  21. #include <stdio.h>
  22. #include <stdlib.h>
  23. #include <structures.h>
  24. #include <tkglobals.h>
  25. #include <pnames.h>
  26. #include <filetype.h>
  27. #include <processno.h>
  28. #include <modeno.h>
  29. #include <logic.h>
  30. #include <globcon.h>
  31. #include <cdpmain.h>
  32. #include <math.h>
  33. #include <mixxcon.h>
  34. #include <osbind.h>
  35. #include <standalone.h>
  36. #include <speccon.h>
  37. #include <ctype.h>
  38. #include <sfsys.h>
  39. #include <string.h>
  40. #include <srates.h>
  41. #ifdef unix
  42. #define round lround
  43. #endif
  44. char errstr[2400];
  45. int anal_infiles = 1;
  46. int sloom = 0;
  47. int sloombatch = 0;
  48. #define CALIBUF (0)
  49. #define BLURBUF (1)
  50. #define BLURNRM (2)
  51. #define CALOBUF (3)
  52. #define OBUFEND (4)
  53. const char* cdp_version = "7.0.0";
  54. /* CDP LIBRARY FUNCTIONS TRANSFERRED HERE */
  55. static int set_param_data(aplptr ap, int special_data,int maxparamcnt,int paramcnt,char *paramlist);
  56. static int set_vflgs(aplptr ap,char *optflags,int optcnt,char *optlist,
  57. char *varflags,int vflagcnt, int vparamcnt,char *varlist);
  58. static int setup_parameter_storage_and_constants(int storage_cnt,dataptr dz);
  59. static int initialise_is_int_and_no_brk_constants(int storage_cnt,dataptr dz);
  60. static int mark_parameter_types(dataptr dz,aplptr ap);
  61. static int establish_application(dataptr dz);
  62. static int application_init(dataptr dz);
  63. static int initialise_vflags(dataptr dz);
  64. static int setup_input_param_defaultval_stores(int tipc,aplptr ap);
  65. static int setup_and_init_input_param_activity(dataptr dz,int tipc);
  66. static int get_tk_cmdline_word(int *cmdlinecnt,char ***cmdline,char *q);
  67. static int assign_file_data_storage(int infilecnt,dataptr dz);
  68. /* CDP LIB FUNCTION MODIFIED TO AVOID CALLING setup_particular_application() */
  69. static int parse_sloom_data(int argc,char *argv[],char ***cmdline,int *cmdlinecnt,dataptr dz);
  70. /* SIMPLIFICATION OF LIB FUNC TO APPLY TO JUST THIS FUNCTION */
  71. static int parse_infile_and_check_type(char **cmdline,dataptr dz);
  72. static int handle_the_outfile(int *cmdlinecnt,char ***cmdline,dataptr dz);
  73. static int setup_the_application(dataptr dz);
  74. static int setup_the_param_ranges_and_defaults(dataptr dz);
  75. static int check_the_param_validity_and_consistency(dataptr dz);
  76. static int get_the_process_no(char *prog_identifier_from_cmdline,dataptr dz);
  77. static int setup_and_init_input_brktable_constants(dataptr dz,int brkcnt);
  78. //static void force_wav_extension(char *filename);
  79. /* BYPASS LIBRARY GLOBAL FUNCTION TO GO DIRECTLY TO SPECIFIC APPLIC FUNCTIONS */
  80. static int allocate_caltrain_buffer(dataptr dz);
  81. //static int swap_chans(int startchan,int endchan,int windows_in_buf,dataptr dz);
  82. static int caltrain(dataptr dz);
  83. #ifndef HUGE
  84. #define HUGE 3.40282347e+38F
  85. #endif
  86. /**************************************** MAIN *********************************************/
  87. int main(int argc,char *argv[])
  88. {
  89. int exit_status;
  90. dataptr dz = NULL;
  91. char **cmdline;
  92. int cmdlinecnt;
  93. // aplptr ap;
  94. int is_launched = FALSE;
  95. if(argc==2 && (strcmp(argv[1],"--version") == 0)) {
  96. fprintf(stdout,"%s\n",cdp_version);
  97. fflush(stdout);
  98. return 0;
  99. }
  100. /* CHECK FOR SOUNDLOOM */
  101. if((sloom = sound_loom_in_use(&argc,&argv)) > 1) {
  102. sloom = 0;
  103. sloombatch = 1;
  104. }
  105. if(sflinit("cdp")){
  106. sfperror("cdp: initialisation\n");
  107. return(FAILED);
  108. }
  109. /* SET UP THE PRINCIPLE DATASTRUCTURE */
  110. if((exit_status = establish_datastructure(&dz))<0) { // CDP LIB
  111. print_messages_and_close_sndfiles(exit_status,is_launched,dz);
  112. return(FAILED);
  113. }
  114. if(!sloom) {
  115. if(argc == 1) {
  116. usage1();
  117. return(FAILED);
  118. } else if(argc == 2) {
  119. usage2(argv[1]);
  120. return(FAILED);
  121. }
  122. if((exit_status = make_initial_cmdline_check(&argc,&argv))<0) { // CDP LIB
  123. print_messages_and_close_sndfiles(exit_status,is_launched,dz);
  124. return(FAILED);
  125. }
  126. cmdline = argv;
  127. cmdlinecnt = argc;
  128. if((get_the_process_no(argv[0],dz))<0)
  129. return(FAILED);
  130. cmdline++;
  131. cmdlinecnt--;
  132. dz->maxmode = 0;
  133. if((exit_status = setup_the_application(dz))<0) {
  134. print_messages_and_close_sndfiles(exit_status,is_launched,dz);
  135. return(FAILED);
  136. }
  137. if((exit_status = count_and_allocate_for_infiles(cmdlinecnt,cmdline,dz))<0) { // CDP LIB
  138. print_messages_and_close_sndfiles(exit_status,is_launched,dz);
  139. return(FAILED);
  140. }
  141. } else {
  142. //parse_TK_data() =
  143. if((exit_status = parse_sloom_data(argc,argv,&cmdline,&cmdlinecnt,dz))<0) {
  144. exit_status = print_messages_and_close_sndfiles(exit_status,is_launched,dz);
  145. return(exit_status);
  146. }
  147. }
  148. // ap = dz->application;
  149. // parse_infile_and_hone_type() =
  150. if((exit_status = parse_infile_and_check_type(cmdline,dz))<0) {
  151. exit_status = print_messages_and_close_sndfiles(exit_status,is_launched,dz);
  152. return(FAILED);
  153. }
  154. // setup_param_ranges_and_defaults() =
  155. if((exit_status = setup_the_param_ranges_and_defaults(dz))<0) {
  156. exit_status = print_messages_and_close_sndfiles(exit_status,is_launched,dz);
  157. return(FAILED);
  158. }
  159. // open_first_infile CDP LIB
  160. if((exit_status = open_first_infile(cmdline[0],dz))<0) {
  161. print_messages_and_close_sndfiles(exit_status,is_launched,dz);
  162. return(FAILED);
  163. }
  164. cmdlinecnt--;
  165. cmdline++;
  166. if((exit_status = handle_the_outfile(&cmdlinecnt,&cmdline,dz))<0) {
  167. print_messages_and_close_sndfiles(exit_status,is_launched,dz);
  168. return(FAILED);
  169. }
  170. // handle_formants() redundant
  171. // handle_formant_quiksearch() redundant
  172. // handle_special_data() redundant except
  173. if((exit_status = read_parameters_and_flags(&cmdline,&cmdlinecnt,dz))<0) { // CDP LIB
  174. print_messages_and_close_sndfiles(exit_status,is_launched,dz);
  175. return(FAILED);
  176. }
  177. //check_param_validity_and_consistency .....
  178. if((exit_status = check_the_param_validity_and_consistency(dz))<0) {
  179. print_messages_and_close_sndfiles(exit_status,is_launched,dz);
  180. return(FAILED);
  181. }
  182. is_launched = TRUE;
  183. dz->extra_bufcnt = 0;
  184. dz->bptrcnt = 6;
  185. if((exit_status = establish_spec_bufptrs_and_extra_buffers(dz))<0) {
  186. print_messages_and_close_sndfiles(exit_status,is_launched,dz);
  187. return(FAILED);
  188. }
  189. if((exit_status = allocate_caltrain_buffer(dz))<0) {
  190. print_messages_and_close_sndfiles(exit_status,is_launched,dz);
  191. return(FAILED);
  192. }
  193. //param_preprocess() redundant
  194. //spec_process_file =
  195. if((exit_status = caltrain(dz))< 0) {
  196. print_messages_and_close_sndfiles(exit_status,is_launched,dz);
  197. return(FAILED);
  198. }
  199. if((exit_status = complete_output(dz))<0) { // CDP LIB
  200. print_messages_and_close_sndfiles(exit_status,is_launched,dz);
  201. return(FAILED);
  202. }
  203. exit_status = print_messages_and_close_sndfiles(FINISHED,is_launched,dz); // CDP LIB
  204. free(dz);
  205. return(SUCCEEDED);
  206. }
  207. /**********************************************
  208. REPLACED CDP LIB FUNCTIONS
  209. **********************************************/
  210. /****************************** SET_PARAM_DATA *********************************/
  211. int set_param_data(aplptr ap, int special_data,int maxparamcnt,int paramcnt,char *paramlist)
  212. {
  213. ap->special_data = (char)special_data;
  214. ap->param_cnt = (char)paramcnt;
  215. ap->max_param_cnt = (char)maxparamcnt;
  216. if(ap->max_param_cnt>0) {
  217. if((ap->param_list = (char *)malloc((size_t)(ap->max_param_cnt+1)))==NULL) {
  218. sprintf(errstr,"INSUFFICIENT MEMORY: for param_list\n");
  219. return(MEMORY_ERROR);
  220. }
  221. strcpy(ap->param_list,paramlist);
  222. }
  223. return(FINISHED);
  224. }
  225. /****************************** SET_VFLGS *********************************/
  226. int set_vflgs
  227. (aplptr ap,char *optflags,int optcnt,char *optlist,char *varflags,int vflagcnt, int vparamcnt,char *varlist)
  228. {
  229. ap->option_cnt = (char) optcnt; /*RWD added cast */
  230. if(optcnt) {
  231. if((ap->option_list = (char *)malloc((size_t)(optcnt+1)))==NULL) {
  232. sprintf(errstr,"INSUFFICIENT MEMORY: for option_list\n");
  233. return(MEMORY_ERROR);
  234. }
  235. strcpy(ap->option_list,optlist);
  236. if((ap->option_flags = (char *)malloc((size_t)(optcnt+1)))==NULL) {
  237. sprintf(errstr,"INSUFFICIENT MEMORY: for option_flags\n");
  238. return(MEMORY_ERROR);
  239. }
  240. strcpy(ap->option_flags,optflags);
  241. }
  242. ap->vflag_cnt = (char) vflagcnt;
  243. ap->variant_param_cnt = (char) vparamcnt;
  244. if(vflagcnt) {
  245. if((ap->variant_list = (char *)malloc((size_t)(vflagcnt+1)))==NULL) {
  246. sprintf(errstr,"INSUFFICIENT MEMORY: for variant_list\n");
  247. return(MEMORY_ERROR);
  248. }
  249. strcpy(ap->variant_list,varlist);
  250. if((ap->variant_flags = (char *)malloc((size_t)(vflagcnt+1)))==NULL) {
  251. sprintf(errstr,"INSUFFICIENT MEMORY: for variant_flags\n");
  252. return(MEMORY_ERROR);
  253. }
  254. strcpy(ap->variant_flags,varflags);
  255. }
  256. return(FINISHED);
  257. }
  258. /***************************** APPLICATION_INIT **************************/
  259. int application_init(dataptr dz)
  260. {
  261. int exit_status;
  262. int storage_cnt;
  263. int tipc, brkcnt;
  264. aplptr ap = dz->application;
  265. if(ap->vflag_cnt>0)
  266. initialise_vflags(dz);
  267. tipc = ap->max_param_cnt + ap->option_cnt + ap->variant_param_cnt;
  268. ap->total_input_param_cnt = (char)tipc;
  269. if(tipc>0) {
  270. if((exit_status = setup_input_param_range_stores(tipc,ap))<0)
  271. return(exit_status);
  272. if((exit_status = setup_input_param_defaultval_stores(tipc,ap))<0)
  273. return(exit_status);
  274. if((exit_status = setup_and_init_input_param_activity(dz,tipc))<0)
  275. return(exit_status);
  276. }
  277. brkcnt = tipc;
  278. if(brkcnt>0) {
  279. if((exit_status = setup_and_init_input_brktable_constants(dz,brkcnt))<0)
  280. return(exit_status);
  281. }
  282. if((storage_cnt = tipc + ap->internal_param_cnt)>0) {
  283. if((exit_status = setup_parameter_storage_and_constants(storage_cnt,dz))<0)
  284. return(exit_status);
  285. if((exit_status = initialise_is_int_and_no_brk_constants(storage_cnt,dz))<0)
  286. return(exit_status);
  287. }
  288. if((exit_status = mark_parameter_types(dz,ap))<0)
  289. return(exit_status);
  290. // establish_infile_constants() replaced by
  291. dz->infilecnt = 1;
  292. return(FINISHED);
  293. }
  294. /******************************** SETUP_AND_INIT_INPUT_BRKTABLE_CONSTANTS ********************************/
  295. int setup_and_init_input_brktable_constants(dataptr dz,int brkcnt)
  296. {
  297. int n;
  298. if((dz->brk = (double **)malloc(brkcnt * sizeof(double *)))==NULL) {
  299. sprintf(errstr,"setup_and_init_input_brktable_constants(): 1\n");
  300. return(MEMORY_ERROR);
  301. }
  302. if((dz->brkptr = (double **)malloc(brkcnt * sizeof(double *)))==NULL) {
  303. sprintf(errstr,"setup_and_init_input_brktable_constants(): 6\n");
  304. return(MEMORY_ERROR);
  305. }
  306. if((dz->brksize = (int *)malloc(brkcnt * sizeof(int)))==NULL) {
  307. sprintf(errstr,"setup_and_init_input_brktable_constants(): 2\n");
  308. return(MEMORY_ERROR);
  309. }
  310. if((dz->firstval = (double *)malloc(brkcnt * sizeof(double)))==NULL) {
  311. sprintf(errstr,"setup_and_init_input_brktable_constants(): 3\n");
  312. return(MEMORY_ERROR);
  313. }
  314. if((dz->lastind = (double *)malloc(brkcnt * sizeof(double)))==NULL) {
  315. sprintf(errstr,"setup_and_init_input_brktable_constants(): 4\n");
  316. return(MEMORY_ERROR);
  317. }
  318. if((dz->lastval = (double *)malloc(brkcnt * sizeof(double)))==NULL) {
  319. sprintf(errstr,"setup_and_init_input_brktable_constants(): 5\n");
  320. return(MEMORY_ERROR);
  321. }
  322. if((dz->brkinit = (int *)malloc(brkcnt * sizeof(int)))==NULL) {
  323. sprintf(errstr,"setup_and_init_input_brktable_constants(): 7\n");
  324. return(MEMORY_ERROR);
  325. }
  326. for(n=0;n<brkcnt;n++) {
  327. dz->brk[n] = NULL;
  328. dz->brkptr[n] = NULL;
  329. dz->brkinit[n] = 0;
  330. dz->brksize[n] = 0;
  331. }
  332. return(FINISHED);
  333. }
  334. /********************** SETUP_PARAMETER_STORAGE_AND_CONSTANTS ********************/
  335. /* RWD mallo changed to calloc; helps debug verison run as release! */
  336. int setup_parameter_storage_and_constants(int storage_cnt,dataptr dz)
  337. {
  338. if((dz->param = (double *)calloc(storage_cnt, sizeof(double)))==NULL) {
  339. sprintf(errstr,"setup_parameter_storage_and_constants(): 1\n");
  340. return(MEMORY_ERROR);
  341. }
  342. if((dz->iparam = (int *)calloc(storage_cnt, sizeof(int) ))==NULL) {
  343. sprintf(errstr,"setup_parameter_storage_and_constants(): 2\n");
  344. return(MEMORY_ERROR);
  345. }
  346. if((dz->is_int = (char *)calloc(storage_cnt, sizeof(char)))==NULL) {
  347. sprintf(errstr,"setup_parameter_storage_and_constants(): 3\n");
  348. return(MEMORY_ERROR);
  349. }
  350. if((dz->no_brk = (char *)calloc(storage_cnt, sizeof(char)))==NULL) {
  351. sprintf(errstr,"setup_parameter_storage_and_constants(): 5\n");
  352. return(MEMORY_ERROR);
  353. }
  354. return(FINISHED);
  355. }
  356. /************** INITIALISE_IS_INT_AND_NO_BRK_CONSTANTS *****************/
  357. int initialise_is_int_and_no_brk_constants(int storage_cnt,dataptr dz)
  358. {
  359. int n;
  360. for(n=0;n<storage_cnt;n++) {
  361. dz->is_int[n] = (char)0;
  362. dz->no_brk[n] = (char)0;
  363. }
  364. return(FINISHED);
  365. }
  366. /***************************** MARK_PARAMETER_TYPES **************************/
  367. int mark_parameter_types(dataptr dz,aplptr ap)
  368. {
  369. int n, m; /* PARAMS */
  370. for(n=0;n<ap->max_param_cnt;n++) {
  371. switch(ap->param_list[n]) {
  372. case('0'): break; /* dz->is_active[n] = 0 is default */
  373. case('i'): dz->is_active[n] = (char)1; dz->is_int[n] = (char)1;dz->no_brk[n] = (char)1; break;
  374. case('I'): dz->is_active[n] = (char)1; dz->is_int[n] = (char)1; break;
  375. case('d'): dz->is_active[n] = (char)1; dz->no_brk[n] = (char)1; break;
  376. case('D'): dz->is_active[n] = (char)1; /* normal case: double val or brkpnt file */ break;
  377. default:
  378. sprintf(errstr,"Programming error: invalid parameter type in mark_parameter_types()\n");
  379. return(PROGRAM_ERROR);
  380. }
  381. } /* OPTIONS */
  382. for(n=0,m=ap->max_param_cnt;n<ap->option_cnt;n++,m++) {
  383. switch(ap->option_list[n]) {
  384. case('i'): dz->is_active[m] = (char)1; dz->is_int[m] = (char)1; dz->no_brk[m] = (char)1; break;
  385. case('I'): dz->is_active[m] = (char)1; dz->is_int[m] = (char)1; break;
  386. case('d'): dz->is_active[m] = (char)1; dz->no_brk[m] = (char)1; break;
  387. case('D'): dz->is_active[m] = (char)1; /* normal case: double val or brkpnt file */ break;
  388. default:
  389. sprintf(errstr,"Programming error: invalid option type in mark_parameter_types()\n");
  390. return(PROGRAM_ERROR);
  391. }
  392. } /* VARIANTS */
  393. for(n=0,m=ap->max_param_cnt + ap->option_cnt;n < ap->variant_param_cnt; n++, m++) {
  394. switch(ap->variant_list[n]) {
  395. case('0'): break;
  396. case('i'): dz->is_active[m] = (char)1; dz->is_int[m] = (char)1; dz->no_brk[m] = (char)1; break;
  397. case('I'): dz->is_active[m] = (char)1; dz->is_int[m] = (char)1; break;
  398. case('d'): dz->is_active[m] = (char)1; dz->no_brk[m] = (char)1; break;
  399. case('D'): dz->is_active[m] = (char)1; /* normal case: double val or brkpnt file */ break;
  400. default:
  401. sprintf(errstr,"Programming error: invalid variant type in mark_parameter_types()\n");
  402. return(PROGRAM_ERROR);
  403. }
  404. } /* INTERNAL */
  405. for(n=0,
  406. m=ap->max_param_cnt + ap->option_cnt + ap->variant_param_cnt; n<ap->internal_param_cnt; n++,m++) {
  407. switch(ap->internal_param_list[n]) {
  408. case('0'): break; /* dummy variables: variables not used: but important for internal paream numbering!! */
  409. case('i'): dz->is_int[m] = (char)1; dz->no_brk[m] = (char)1; break;
  410. case('d'): dz->no_brk[m] = (char)1; break;
  411. default:
  412. sprintf(errstr,"Programming error: invalid internal param type in mark_parameter_types()\n");
  413. return(PROGRAM_ERROR);
  414. }
  415. }
  416. return(FINISHED);
  417. }
  418. /***************************** HANDLE_THE_OUTFILE **************************/
  419. int handle_the_outfile(int *cmdlinecnt,char ***cmdline,dataptr dz)
  420. {
  421. int exit_status;
  422. char *filename = (*cmdline)[0];
  423. if(filename[0]=='-' && filename[1]=='f') {
  424. dz->floatsam_output = 1;
  425. dz->true_outfile_stype = SAMP_FLOAT;
  426. filename+= 2;
  427. }
  428. if(!sloom) {
  429. if(file_has_invalid_startchar(filename) || value_is_numeric(filename)) {
  430. sprintf(errstr,"Outfile name %s has invalid start character(s) or looks too much like a number.\n",filename);
  431. return(DATA_ERROR);
  432. }
  433. }
  434. strcpy(dz->outfilename,filename);
  435. if((exit_status = create_sized_outfile(filename,dz))<0)
  436. return(exit_status);
  437. (*cmdline)++;
  438. (*cmdlinecnt)--;
  439. return(FINISHED);
  440. }
  441. /***************************** INSERT_NEWNUMBER_AT_FILENAME_END **************************/
  442. void insert_newnumber_at_filename_end(char *filename,int num,int overwrite_last_char)
  443. /* FUNCTIONS ASSUMES ENOUGH SPACE IS ALLOCATED !! */
  444. {
  445. char *p;
  446. char ext[64];
  447. p = filename + strlen(filename) - 1;
  448. while(p > filename) {
  449. if(*p == '/' || *p == '\\' || *p == ':') {
  450. p = filename;
  451. break;
  452. }
  453. if(*p == '.') {
  454. strcpy(ext,p);
  455. if(overwrite_last_char)
  456. p--;
  457. sprintf(p,"%d",num);
  458. strcat(filename,ext);
  459. return;
  460. }
  461. p--;
  462. }
  463. if(p == filename) {
  464. p += strlen(filename);
  465. if(overwrite_last_char)
  466. p--;
  467. sprintf(p,"%d",num);
  468. }
  469. }
  470. /***************************** ESTABLISH_APPLICATION **************************/
  471. int establish_application(dataptr dz)
  472. {
  473. aplptr ap;
  474. if((dz->application = (aplptr)malloc(sizeof (struct applic)))==NULL) {
  475. sprintf(errstr,"establish_application()\n");
  476. return(MEMORY_ERROR);
  477. }
  478. ap = dz->application;
  479. memset((char *)ap,0,sizeof(struct applic));
  480. return(FINISHED);
  481. }
  482. /************************* INITIALISE_VFLAGS *************************/
  483. int initialise_vflags(dataptr dz)
  484. {
  485. int n;
  486. if((dz->vflag = (char *)malloc(dz->application->vflag_cnt * sizeof(char)))==NULL) {
  487. sprintf(errstr,"INSUFFICIENT MEMORY: vflag store,\n");
  488. return(MEMORY_ERROR);
  489. }
  490. for(n=0;n<dz->application->vflag_cnt;n++)
  491. dz->vflag[n] = FALSE;
  492. return FINISHED;
  493. }
  494. /************************* SETUP_INPUT_PARAM_DEFAULTVALS *************************/
  495. int setup_input_param_defaultval_stores(int tipc,aplptr ap)
  496. {
  497. int n;
  498. if((ap->default_val = (double *)malloc(tipc * sizeof(double)))==NULL) {
  499. sprintf(errstr,"INSUFFICIENT MEMORY for application default values store\n");
  500. return(MEMORY_ERROR);
  501. }
  502. for(n=0;n<tipc;n++)
  503. ap->default_val[n] = 0.0;
  504. return(FINISHED);
  505. }
  506. /***************************** SETUP_AND_INIT_INPUT_PARAM_ACTIVITY **************************/
  507. int setup_and_init_input_param_activity(dataptr dz,int tipc)
  508. {
  509. int n;
  510. if((dz->is_active = (char *)malloc((size_t)tipc))==NULL) {
  511. sprintf(errstr,"setup_and_init_input_param_activity()\n");
  512. return(MEMORY_ERROR);
  513. }
  514. for(n=0;n<tipc;n++)
  515. dz->is_active[n] = (char)0;
  516. return(FINISHED);
  517. }
  518. /************************* SETUP_THE_APPLICATION *******************/
  519. int setup_the_application(dataptr dz)
  520. {
  521. int exit_status;
  522. aplptr ap;
  523. if((exit_status = establish_application(dz))<0) // GLOBAL
  524. return(FAILED);
  525. ap = dz->application;
  526. // SEE parstruct FOR EXPLANATION of next 2 functions
  527. if((exit_status = set_param_data(ap,0 ,2,2,"dd" ))<0)
  528. return(FAILED);
  529. if((exit_status = set_vflgs(ap,"l",1,"d","",0,0,""))<0)
  530. return(FAILED);
  531. dz->has_otherfile = FALSE;
  532. dz->input_data_type = ANALFILE_ONLY;
  533. dz->process_type = EQUAL_ANALFILE;
  534. dz->outfiletype = ANALFILE_OUT;
  535. return application_init(dz); //GLOBAL
  536. }
  537. /************************* PARSE_INFILE_AND_CHECK_TYPE *******************/
  538. int parse_infile_and_check_type(char **cmdline,dataptr dz)
  539. {
  540. int exit_status;
  541. infileptr infile_info;
  542. if(!sloom) {
  543. if((infile_info = (infileptr)malloc(sizeof(struct filedata)))==NULL) {
  544. sprintf(errstr,"INSUFFICIENT MEMORY for infile structure to test file data.");
  545. return(MEMORY_ERROR);
  546. } else if((exit_status = cdparse(cmdline[0],infile_info))<0) {
  547. sprintf(errstr,"Failed tp parse input file %s\n",cmdline[0]);
  548. return(PROGRAM_ERROR);
  549. } else if(infile_info->filetype != ANALFILE) {
  550. sprintf(errstr,"File %s is not of correct type\n",cmdline[0]);
  551. return(DATA_ERROR);
  552. } else if((exit_status = copy_parse_info_to_main_structure(infile_info,dz))<0) {
  553. sprintf(errstr,"Failed to copy file parsing information\n");
  554. return(PROGRAM_ERROR);
  555. }
  556. free(infile_info);
  557. }
  558. dz->clength = dz->wanted / 2;
  559. dz->chwidth = dz->nyquist/(double)(dz->clength-1);
  560. dz->halfchwidth = dz->chwidth/2.0;
  561. return(FINISHED);
  562. }
  563. /************************* SETUP_THE_PARAM_RANGES_AND_DEFAULTS *******************/
  564. int setup_the_param_ranges_and_defaults(dataptr dz)
  565. {
  566. int exit_status;
  567. aplptr ap = dz->application;
  568. // set_param_ranges()
  569. ap->total_input_param_cnt = (char)(ap->max_param_cnt + ap->option_cnt + ap->variant_param_cnt);
  570. // NB total_input_param_cnt is > 0 !!!s
  571. if((exit_status = setup_input_param_range_stores(ap->total_input_param_cnt,ap))<0)
  572. return(FAILED);
  573. // get_param_ranges()
  574. ap->lo[0] = dz->frametime;
  575. ap->hi[0] = dz->duration;
  576. ap->default_val[0] = 1.0;
  577. ap->lo[1] = 0;
  578. ap->hi[1] = dz->nyquist;
  579. ap->default_val[1] = 440;
  580. ap->lo[2] = 0;
  581. ap->hi[2] = dz->nyquist;
  582. ap->default_val[2] = 0;
  583. dz->maxmode = 0;
  584. if(!sloom)
  585. put_default_vals_in_all_params(dz);
  586. return(FINISHED);
  587. }
  588. /********************************* PARSE_SLOOM_DATA *********************************/
  589. int parse_sloom_data(int argc,char *argv[],char ***cmdline,int *cmdlinecnt,dataptr dz)
  590. {
  591. int exit_status;
  592. int cnt = 1, infilecnt;
  593. int filesize, insams, inbrksize;
  594. double dummy;
  595. int true_cnt = 0;
  596. // aplptr ap;
  597. while(cnt<=PRE_CMDLINE_DATACNT) {
  598. if(cnt > argc) {
  599. sprintf(errstr,"Insufficient data sent from TK\n");
  600. return(DATA_ERROR);
  601. }
  602. switch(cnt) {
  603. case(1):
  604. if(sscanf(argv[cnt],"%d",&dz->process)!=1) {
  605. sprintf(errstr,"Cannot read process no. sent from TK\n");
  606. return(DATA_ERROR);
  607. }
  608. break;
  609. case(2):
  610. if(sscanf(argv[cnt],"%d",&dz->mode)!=1) {
  611. sprintf(errstr,"Cannot read mode no. sent from TK\n");
  612. return(DATA_ERROR);
  613. }
  614. if(dz->mode > 0)
  615. dz->mode--;
  616. //setup_particular_application() =
  617. if((exit_status = setup_the_application(dz))<0)
  618. return(exit_status);
  619. // ap = dz->application;
  620. break;
  621. case(3):
  622. if(sscanf(argv[cnt],"%d",&infilecnt)!=1) {
  623. sprintf(errstr,"Cannot read infilecnt sent from TK\n");
  624. return(DATA_ERROR);
  625. }
  626. if(infilecnt < 1) {
  627. true_cnt = cnt + 1;
  628. cnt = PRE_CMDLINE_DATACNT; /* force exit from loop after assign_file_data_storage */
  629. }
  630. if((exit_status = assign_file_data_storage(infilecnt,dz))<0)
  631. return(exit_status);
  632. break;
  633. case(INPUT_FILETYPE+4):
  634. if(sscanf(argv[cnt],"%d",&dz->infile->filetype)!=1) {
  635. sprintf(errstr,"Cannot read filetype sent from TK (%s)\n",argv[cnt]);
  636. return(DATA_ERROR);
  637. }
  638. break;
  639. case(INPUT_FILESIZE+4):
  640. if(sscanf(argv[cnt],"%d",&filesize)!=1) {
  641. sprintf(errstr,"Cannot read infilesize sent from TK\n");
  642. return(DATA_ERROR);
  643. }
  644. dz->insams[0] = filesize;
  645. break;
  646. case(INPUT_INSAMS+4):
  647. if(sscanf(argv[cnt],"%d",&insams)!=1) {
  648. sprintf(errstr,"Cannot read insams sent from TK\n");
  649. return(DATA_ERROR);
  650. }
  651. dz->insams[0] = insams;
  652. break;
  653. case(INPUT_SRATE+4):
  654. if(sscanf(argv[cnt],"%d",&dz->infile->srate)!=1) {
  655. sprintf(errstr,"Cannot read srate sent from TK\n");
  656. return(DATA_ERROR);
  657. }
  658. break;
  659. case(INPUT_CHANNELS+4):
  660. if(sscanf(argv[cnt],"%d",&dz->infile->channels)!=1) {
  661. sprintf(errstr,"Cannot read channels sent from TK\n");
  662. return(DATA_ERROR);
  663. }
  664. break;
  665. case(INPUT_STYPE+4):
  666. if(sscanf(argv[cnt],"%d",&dz->infile->stype)!=1) {
  667. sprintf(errstr,"Cannot read stype sent from TK\n");
  668. return(DATA_ERROR);
  669. }
  670. break;
  671. case(INPUT_ORIGSTYPE+4):
  672. if(sscanf(argv[cnt],"%d",&dz->infile->origstype)!=1) {
  673. sprintf(errstr,"Cannot read origstype sent from TK\n");
  674. return(DATA_ERROR);
  675. }
  676. break;
  677. case(INPUT_ORIGRATE+4):
  678. if(sscanf(argv[cnt],"%d",&dz->infile->origrate)!=1) {
  679. sprintf(errstr,"Cannot read origrate sent from TK\n");
  680. return(DATA_ERROR);
  681. }
  682. break;
  683. case(INPUT_MLEN+4):
  684. if(sscanf(argv[cnt],"%d",&dz->infile->Mlen)!=1) {
  685. sprintf(errstr,"Cannot read Mlen sent from TK\n");
  686. return(DATA_ERROR);
  687. }
  688. break;
  689. case(INPUT_DFAC+4):
  690. if(sscanf(argv[cnt],"%d",&dz->infile->Dfac)!=1) {
  691. sprintf(errstr,"Cannot read Dfac sent from TK\n");
  692. return(DATA_ERROR);
  693. }
  694. break;
  695. case(INPUT_ORIGCHANS+4):
  696. if(sscanf(argv[cnt],"%d",&dz->infile->origchans)!=1) {
  697. sprintf(errstr,"Cannot read origchans sent from TK\n");
  698. return(DATA_ERROR);
  699. }
  700. break;
  701. case(INPUT_SPECENVCNT+4):
  702. if(sscanf(argv[cnt],"%d",&dz->infile->specenvcnt)!=1) {
  703. sprintf(errstr,"Cannot read specenvcnt sent from TK\n");
  704. return(DATA_ERROR);
  705. }
  706. dz->specenvcnt = dz->infile->specenvcnt;
  707. break;
  708. case(INPUT_WANTED+4):
  709. if(sscanf(argv[cnt],"%d",&dz->wanted)!=1) {
  710. sprintf(errstr,"Cannot read wanted sent from TK\n");
  711. return(DATA_ERROR);
  712. }
  713. break;
  714. case(INPUT_WLENGTH+4):
  715. if(sscanf(argv[cnt],"%d",&dz->wlength)!=1) {
  716. sprintf(errstr,"Cannot read wlength sent from TK\n");
  717. return(DATA_ERROR);
  718. }
  719. break;
  720. case(INPUT_OUT_CHANS+4):
  721. if(sscanf(argv[cnt],"%d",&dz->out_chans)!=1) {
  722. sprintf(errstr,"Cannot read out_chans sent from TK\n");
  723. return(DATA_ERROR);
  724. }
  725. break;
  726. /* RWD these chanegs to samps - tk will have to deal with that! */
  727. case(INPUT_DESCRIPTOR_BYTES+4):
  728. if(sscanf(argv[cnt],"%d",&dz->descriptor_samps)!=1) {
  729. sprintf(errstr,"Cannot read descriptor_samps sent from TK\n");
  730. return(DATA_ERROR);
  731. }
  732. break;
  733. case(INPUT_IS_TRANSPOS+4):
  734. if(sscanf(argv[cnt],"%d",&dz->is_transpos)!=1) {
  735. sprintf(errstr,"Cannot read is_transpos sent from TK\n");
  736. return(DATA_ERROR);
  737. }
  738. break;
  739. case(INPUT_COULD_BE_TRANSPOS+4):
  740. if(sscanf(argv[cnt],"%d",&dz->could_be_transpos)!=1) {
  741. sprintf(errstr,"Cannot read could_be_transpos sent from TK\n");
  742. return(DATA_ERROR);
  743. }
  744. break;
  745. case(INPUT_COULD_BE_PITCH+4):
  746. if(sscanf(argv[cnt],"%d",&dz->could_be_pitch)!=1) {
  747. sprintf(errstr,"Cannot read could_be_pitch sent from TK\n");
  748. return(DATA_ERROR);
  749. }
  750. break;
  751. case(INPUT_DIFFERENT_SRATES+4):
  752. if(sscanf(argv[cnt],"%d",&dz->different_srates)!=1) {
  753. sprintf(errstr,"Cannot read different_srates sent from TK\n");
  754. return(DATA_ERROR);
  755. }
  756. break;
  757. case(INPUT_DUPLICATE_SNDS+4):
  758. if(sscanf(argv[cnt],"%d",&dz->duplicate_snds)!=1) {
  759. sprintf(errstr,"Cannot read duplicate_snds sent from TK\n");
  760. return(DATA_ERROR);
  761. }
  762. break;
  763. case(INPUT_BRKSIZE+4):
  764. if(sscanf(argv[cnt],"%d",&inbrksize)!=1) {
  765. sprintf(errstr,"Cannot read brksize sent from TK\n");
  766. return(DATA_ERROR);
  767. }
  768. if(inbrksize > 0) {
  769. switch(dz->input_data_type) {
  770. case(WORDLIST_ONLY):
  771. break;
  772. case(PITCH_AND_PITCH):
  773. case(PITCH_AND_TRANSPOS):
  774. case(TRANSPOS_AND_TRANSPOS):
  775. dz->tempsize = inbrksize;
  776. break;
  777. case(BRKFILES_ONLY):
  778. case(UNRANGED_BRKFILE_ONLY):
  779. case(DB_BRKFILES_ONLY):
  780. case(ALL_FILES):
  781. case(ANY_NUMBER_OF_ANY_FILES):
  782. if(dz->extrabrkno < 0) {
  783. sprintf(errstr,"Storage location number for brktable not established by CDP.\n");
  784. return(DATA_ERROR);
  785. }
  786. if(dz->brksize == NULL) {
  787. sprintf(errstr,"CDP has not established storage space for input brktable.\n");
  788. return(PROGRAM_ERROR);
  789. }
  790. dz->brksize[dz->extrabrkno] = inbrksize;
  791. break;
  792. default:
  793. sprintf(errstr,"TK sent brktablesize > 0 for input_data_type [%d] not using brktables.\n",
  794. dz->input_data_type);
  795. return(PROGRAM_ERROR);
  796. }
  797. break;
  798. }
  799. break;
  800. case(INPUT_NUMSIZE+4):
  801. if(sscanf(argv[cnt],"%d",&dz->numsize)!=1) {
  802. sprintf(errstr,"Cannot read numsize sent from TK\n");
  803. return(DATA_ERROR);
  804. }
  805. break;
  806. case(INPUT_LINECNT+4):
  807. if(sscanf(argv[cnt],"%d",&dz->linecnt)!=1) {
  808. sprintf(errstr,"Cannot read linecnt sent from TK\n");
  809. return(DATA_ERROR);
  810. }
  811. break;
  812. case(INPUT_ALL_WORDS+4):
  813. if(sscanf(argv[cnt],"%d",&dz->all_words)!=1) {
  814. sprintf(errstr,"Cannot read all_words sent from TK\n");
  815. return(DATA_ERROR);
  816. }
  817. break;
  818. case(INPUT_ARATE+4):
  819. if(sscanf(argv[cnt],"%f",&dz->infile->arate)!=1) {
  820. sprintf(errstr,"Cannot read arate sent from TK\n");
  821. return(DATA_ERROR);
  822. }
  823. break;
  824. case(INPUT_FRAMETIME+4):
  825. if(sscanf(argv[cnt],"%lf",&dummy)!=1) {
  826. sprintf(errstr,"Cannot read frametime sent from TK\n");
  827. return(DATA_ERROR);
  828. }
  829. dz->frametime = (float)dummy;
  830. break;
  831. case(INPUT_WINDOW_SIZE+4):
  832. if(sscanf(argv[cnt],"%f",&dz->infile->window_size)!=1) {
  833. sprintf(errstr,"Cannot read window_size sent from TK\n");
  834. return(DATA_ERROR);
  835. }
  836. break;
  837. case(INPUT_NYQUIST+4):
  838. if(sscanf(argv[cnt],"%lf",&dz->nyquist)!=1) {
  839. sprintf(errstr,"Cannot read nyquist sent from TK\n");
  840. return(DATA_ERROR);
  841. }
  842. break;
  843. case(INPUT_DURATION+4):
  844. if(sscanf(argv[cnt],"%lf",&dz->duration)!=1) {
  845. sprintf(errstr,"Cannot read duration sent from TK\n");
  846. return(DATA_ERROR);
  847. }
  848. break;
  849. case(INPUT_MINBRK+4):
  850. if(sscanf(argv[cnt],"%lf",&dz->minbrk)!=1) {
  851. sprintf(errstr,"Cannot read minbrk sent from TK\n");
  852. return(DATA_ERROR);
  853. }
  854. break;
  855. case(INPUT_MAXBRK+4):
  856. if(sscanf(argv[cnt],"%lf",&dz->maxbrk)!=1) {
  857. sprintf(errstr,"Cannot read maxbrk sent from TK\n");
  858. return(DATA_ERROR);
  859. }
  860. break;
  861. case(INPUT_MINNUM+4):
  862. if(sscanf(argv[cnt],"%lf",&dz->minnum)!=1) {
  863. sprintf(errstr,"Cannot read minnum sent from TK\n");
  864. return(DATA_ERROR);
  865. }
  866. break;
  867. case(INPUT_MAXNUM+4):
  868. if(sscanf(argv[cnt],"%lf",&dz->maxnum)!=1) {
  869. sprintf(errstr,"Cannot read maxnum sent from TK\n");
  870. return(DATA_ERROR);
  871. }
  872. break;
  873. default:
  874. sprintf(errstr,"case switch item missing: parse_sloom_data()\n");
  875. return(PROGRAM_ERROR);
  876. }
  877. cnt++;
  878. }
  879. if(cnt!=PRE_CMDLINE_DATACNT+1) {
  880. sprintf(errstr,"Insufficient pre-cmdline params sent from TK\n");
  881. return(DATA_ERROR);
  882. }
  883. if(true_cnt)
  884. cnt = true_cnt;
  885. *cmdlinecnt = 0;
  886. while(cnt < argc) {
  887. if((exit_status = get_tk_cmdline_word(cmdlinecnt,cmdline,argv[cnt]))<0)
  888. return(exit_status);
  889. cnt++;
  890. }
  891. return(FINISHED);
  892. }
  893. /********************************* GET_TK_CMDLINE_WORD *********************************/
  894. int get_tk_cmdline_word(int *cmdlinecnt,char ***cmdline,char *q)
  895. {
  896. if(*cmdlinecnt==0) {
  897. if((*cmdline = (char **)malloc(sizeof(char *)))==NULL) {
  898. sprintf(errstr,"INSUFFICIENT MEMORY for TK cmdline array.\n");
  899. return(MEMORY_ERROR);
  900. }
  901. } else {
  902. if((*cmdline = (char **)realloc(*cmdline,((*cmdlinecnt)+1) * sizeof(char *)))==NULL) {
  903. sprintf(errstr,"INSUFFICIENT MEMORY for TK cmdline array.\n");
  904. return(MEMORY_ERROR);
  905. }
  906. }
  907. if(((*cmdline)[*cmdlinecnt] = (char *)malloc((strlen(q) + 1) * sizeof(char)))==NULL) {
  908. sprintf(errstr,"INSUFFICIENT MEMORY for TK cmdline item %d.\n",(*cmdlinecnt)+1);
  909. return(MEMORY_ERROR);
  910. }
  911. strcpy((*cmdline)[*cmdlinecnt],q);
  912. (*cmdlinecnt)++;
  913. return(FINISHED);
  914. }
  915. /****************************** ASSIGN_FILE_DATA_STORAGE *********************************/
  916. int assign_file_data_storage(int infilecnt,dataptr dz)
  917. {
  918. int exit_status;
  919. int no_sndfile_system_files = FALSE;
  920. dz->infilecnt = infilecnt;
  921. if((exit_status = allocate_filespace(dz))<0)
  922. return(exit_status);
  923. if(no_sndfile_system_files)
  924. dz->infilecnt = 0;
  925. return(FINISHED);
  926. }
  927. /*********************** CHECK_THE_PARAM_VALIDITY_AND_CONSISTENCY *********************/
  928. int check_the_param_validity_and_consistency(dataptr dz)
  929. {
  930. dz->iparam[0] = (int)floor(dz->param[0]/dz->frametime);
  931. dz->iparam[1] = (int)round(dz->param[1]/dz->chwidth);
  932. dz->iparam[2] = (int)round(dz->param[2]/dz->chwidth);
  933. if(dz->iparam[2] >= dz->iparam[1]) {
  934. sprintf(errstr,"Bass cutoff frq (%lf = chan %d) must be in lower chan than blur-bound frq (%lf = chan %d)\n",
  935. dz->param[2],dz->iparam[2],dz->param[1],dz->iparam[1]);
  936. return(DATA_ERROR);
  937. }
  938. return FINISHED;
  939. }
  940. /************************* redundant functions: to ensure libs compile OK *******************/
  941. int assign_process_logic(dataptr dz)
  942. {
  943. return(FINISHED);
  944. }
  945. void set_legal_infile_structure(dataptr dz)
  946. {}
  947. int set_legal_internalparam_structure(int process,int mode,aplptr ap)
  948. {
  949. return(FINISHED);
  950. }
  951. int setup_internal_arrays_and_array_pointers(dataptr dz)
  952. {
  953. return(FINISHED);
  954. }
  955. int establish_bufptrs_and_extra_buffers(dataptr dz)
  956. {
  957. return(FINISHED);
  958. }
  959. int get_process_no(char *prog_identifier_from_cmdline,dataptr dz)
  960. {
  961. return(FINISHED);
  962. }
  963. int read_special_data(char *str,dataptr dz)
  964. {
  965. return(FINISHED);
  966. }
  967. int inner_loop
  968. (int *peakscore,int *descnt,int *in_start_portion,int *least,int *pitchcnt,int windows_in_buf,dataptr dz)
  969. {
  970. return FINISHED;
  971. }
  972. /********************************************************************************************/
  973. int get_the_process_no(char *prog_identifier_from_cmdline,dataptr dz)
  974. {
  975. if (!strcmp(prog_identifier_from_cmdline,"caltrain")) dz->process = CALTRAIN;
  976. else {
  977. sprintf(errstr,"Unknown program identification string '%s'\n",prog_identifier_from_cmdline);
  978. return(USAGE_ONLY);
  979. }
  980. return(FINISHED);
  981. }
  982. /******************************** USAGE1 ********************************/
  983. int usage1(void)
  984. {
  985. return (usage2("caltrain"));
  986. }
  987. /******************************** USAGE2 ********************************/
  988. int usage2(char *str)
  989. {
  990. if(!strcmp(str,"caltrain")) {
  991. fprintf(stdout,
  992. "USAGE:\n"
  993. "caltrain caltrain inanalfile outanalfile blurfact blurabov [-llocut]\n"
  994. "\n"
  995. "BLURFACT Time over which upper part of spectrum is blurred.\n"
  996. "BLURABOV frequency above which spectrum is blurred.\n"
  997. "LOCUT bass cutoff frequency (defalut: no bass cutoff).\n"
  998. "\n"
  999. "Generates version of source with upper spectral channels time-blurred.\n"
  1000. "\n");
  1001. } else
  1002. fprintf(stdout,"Unknown option '%s'\n",str);
  1003. return(USAGE_ONLY);
  1004. }
  1005. int usage3(char *str1,char *str2)
  1006. {
  1007. fprintf(stderr,"Insufficient parameters on command line.\n");
  1008. return(USAGE_ONLY);
  1009. }
  1010. /*********************** SPECULATE ***************************/
  1011. int caltrain(dataptr dz)
  1012. {
  1013. int exit_status, ibufsiz = dz->buflen/dz->wanted, outofinput = 0;
  1014. float *readbuf = dz->bigfbuf, *writebuf = dz->bigfbuf, *obufptr = dz->flbufptr[CALOBUF];
  1015. double maxisamp, maxosamp = 0.0, scaler;
  1016. int n, vc, remain, truebuflen = dz->buflen;
  1017. int finished = 0, windows_written = 0;
  1018. // deal with 1st (zeroed) buffer
  1019. if((sndseekEx(dz->ifd[0],dz->wanted,0)<0)){
  1020. sprintf(errstr,"sndseek() failed at first (zeros) window.\n");
  1021. return SYSTEM_ERROR;
  1022. }
  1023. memset((char *)obufptr,0,dz->wanted * sizeof(float));
  1024. obufptr += dz->wanted;
  1025. if(++windows_written >= dz->wlength) {
  1026. sprintf(errstr,"No significant data in input file.\n");
  1027. return DATA_ERROR;
  1028. }
  1029. if(obufptr >= dz->flbufptr[OBUFEND]) {
  1030. if((exit_status = write_samps(dz->flbufptr[CALOBUF],dz->buflen2,dz))<0)
  1031. return(exit_status);
  1032. memset((char *)dz->flbufptr[CALOBUF],0,dz->buflen2 * sizeof(float));
  1033. obufptr = dz->flbufptr[CALOBUF];
  1034. }
  1035. // Initially, fill the input buffer
  1036. // "readbuf" and "writebuf" point to the 1st window in inbuffer
  1037. if((exit_status = read_samps(dz->bigfbuf,dz))<0)
  1038. return(exit_status);
  1039. while(!finished) {
  1040. maxisamp = -HUGE; // Find maxsamp, ABOVE blur frq-boundary, in current input window
  1041. for(vc=dz->iparam[1] * 2;vc < dz->wanted; vc+=2) {
  1042. if(readbuf[AMPP] > maxisamp)
  1043. maxisamp = readbuf[AMPP];
  1044. }
  1045. memcpy((char *)(dz->flbufptr[BLURNRM]),(char *)readbuf,((dz->iparam[1] - 1) * 2 * sizeof(float)));
  1046. // Copy, from current-window-to-read-from in input buffer, all channel data BELOW the blurboundary
  1047. readbuf += dz->wanted; // Then advance by one-window the buffer-to-read-from
  1048. if(readbuf >= dz->flbufptr[BLURBUF]) // ... but if end of input buffer reached, return to start for subsequent read
  1049. readbuf = dz->bigfbuf;
  1050. if(!outofinput) { // If out-of-input, we already know the sum of the spectra in the input buffer, and the maxosamp level
  1051. memset((char *)(dz->flbufptr[BLURBUF]),0,dz->wanted * sizeof(float)); // Zero blur buffer, as values are ADDED IN to the upper chans
  1052. for(n=0; n < ibufsiz; n++) { // Sum amps and frqs from equivalent chans in all windows
  1053. for(vc=dz->iparam[1] * 2;vc < dz->wanted; vc+=2) {
  1054. dz->flbufptr[BLURBUF][AMPP] = (float)(dz->flbufptr[BLURBUF][AMPP] + (dz->flbufptr[CALIBUF][(n * dz->wanted) + AMPP]));
  1055. dz->flbufptr[BLURBUF][FREQ] = (float)(dz->flbufptr[BLURBUF][FREQ] + (dz->flbufptr[CALIBUF][(n * dz->wanted) + FREQ]));
  1056. }
  1057. }
  1058. maxosamp = 0;
  1059. for(vc=dz->iparam[1] * 2;vc < dz->wanted; vc+=2) {
  1060. if(dz->flbufptr[BLURBUF][AMPP] > maxosamp)
  1061. maxosamp = dz->flbufptr[BLURBUF][AMPP]; // Get the maximum amplitude in the (summed-data) chans
  1062. dz->flbufptr[BLURNRM][FREQ] = (float)(dz->flbufptr[BLURBUF][FREQ]/(double)ibufsiz);
  1063. } // Get the average frequency in the (summed-data) channels
  1064. }
  1065. if(maxosamp > FLTERR)
  1066. scaler = maxisamp/maxosamp; // Set scaling for new channel levels according to max chan level of orig input
  1067. else
  1068. scaler = 1.0;
  1069. for(vc=dz->iparam[1] * 2;vc < dz->wanted; vc+=2) // Blurred channels are scaled in level before being copied
  1070. dz->flbufptr[BLURNRM][AMPP] = (float)(dz->flbufptr[BLURBUF][AMPP] * scaler);
  1071. if(dz->iparam[2] > 0) { // Do bass rolloff, if ness
  1072. for(vc = 0; vc <= dz->iparam[2] * 2; vc+=2)
  1073. dz->flbufptr[BLURNRM][AMPP] = 0.0f;
  1074. } // Copy window to outbuf
  1075. memcpy((char *)(obufptr),(char *)(dz->flbufptr[BLURNRM]),dz->wanted * sizeof(float));
  1076. obufptr += dz->wanted;
  1077. if(++windows_written >= dz->wlength)
  1078. finished = 1;
  1079. if((obufptr >= dz->flbufptr[OBUFEND]) || finished) {
  1080. if((exit_status = write_samps(dz->flbufptr[CALOBUF],obufptr - dz->flbufptr[CALOBUF],dz))<0)
  1081. return(exit_status);
  1082. memset((char *)dz->flbufptr[CALOBUF],0,dz->buflen2 * sizeof(float));
  1083. obufptr = dz->flbufptr[CALOBUF];
  1084. if(finished)
  1085. break;
  1086. }
  1087. dz->buflen = dz->wanted;
  1088. if((exit_status = read_samps(writebuf,dz))<0) // Read single window into the input buffer (overwriting previously used read-out window)
  1089. return(exit_status); // Even if at end of infile (zero samples read) continue
  1090. if(dz->ssampsread == 0)
  1091. outofinput = 1;
  1092. dz->buflen = truebuflen;
  1093. writebuf += dz->wanted;
  1094. if(writebuf >= dz->flbufptr[BLURBUF]) // ... if place-to-write-input-to falls beyond end of input buffer, skip back to ibuf start
  1095. writebuf = dz->bigfbuf;
  1096. }
  1097. if((remain = obufptr - dz->flbufptr[CALOBUF]) > 0) {
  1098. if((exit_status = write_samps(dz->flbufptr[CALOBUF],remain,dz))<0)
  1099. return(exit_status);
  1100. }
  1101. return(FINISHED);
  1102. }
  1103. /**************************** ALLOCATE_CALTRAIN_BUFFER ****************************/
  1104. int allocate_caltrain_buffer(dataptr dz)
  1105. {
  1106. unsigned int buffersize;
  1107. dz->buflen = dz->iparam[0] * dz->wanted;
  1108. dz->buflen = min((dz->wlength - 1) * dz->wanted,dz->buflen);
  1109. dz->buflen2 = 16 * dz->wanted;
  1110. dz->buflen2 = min((dz->wlength - 1) * dz->wanted,dz->buflen2);
  1111. buffersize = dz->buflen + dz->buflen2 + (dz->wanted * 2);
  1112. if((dz->bigfbuf = (float*)calloc(buffersize,sizeof(float)))==NULL) {
  1113. sprintf(errstr,"INSUFFICIENT MEMORY for sound buffers.\n");
  1114. return(MEMORY_ERROR);
  1115. }
  1116. dz->flbufptr[CALIBUF] = dz->bigfbuf; // Several windows = input buf
  1117. dz->flbufptr[BLURBUF] = dz->bigfbuf + dz->buflen; // 1 window : data blurred data
  1118. dz->flbufptr[BLURNRM] = dz->flbufptr[BLURBUF] + dz->wanted; // 1 window : data blurred data, scaled
  1119. dz->flbufptr[CALOBUF] = dz->flbufptr[BLURNRM] + dz->wanted; // N windows : output buffer
  1120. dz->flbufptr[OBUFEND] = dz->flbufptr[CALOBUF] + dz->buflen2;
  1121. return(FINISHED);
  1122. }