Merge pull request #552 from libretro/fp_fix_libretro
[pcsx_rearmed.git] / libpcsxcore / cdriso.c
... / ...
CommitLineData
1/***************************************************************************
2 * Copyright (C) 2007 PCSX-df Team *
3 * Copyright (C) 2009 Wei Mingzhi *
4 * Copyright (C) 2012 notaz *
5 * *
6 * This program is free software; you can redistribute it and/or modify *
7 * it under the terms of the GNU General Public License as published by *
8 * the Free Software Foundation; either version 2 of the License, or *
9 * (at your option) any later version. *
10 * *
11 * This program is distributed in the hope that it will be useful, *
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of *
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
14 * GNU General Public License for more details. *
15 * *
16 * You should have received a copy of the GNU General Public License *
17 * along with this program; if not, write to the *
18 * Free Software Foundation, Inc., *
19 * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. *
20 ***************************************************************************/
21
22#include "psxcommon.h"
23#include "plugins.h"
24#include "cdrom.h"
25#include "cdriso.h"
26#include "ppf.h"
27
28#include <errno.h>
29#include <zlib.h>
30#ifdef HAVE_CHD
31#include <chd.h>
32#endif
33
34#ifdef _WIN32
35#define WIN32_LEAN_AND_MEAN
36#include <process.h>
37#include <windows.h>
38#define strcasecmp _stricmp
39#else
40#include <pthread.h>
41#include <sys/time.h>
42#include <unistd.h>
43#endif
44
45#ifdef USE_LIBRETRO_VFS
46#include <streams/file_stream_transforms.h>
47#undef fseeko
48#undef ftello
49#define ftello rftell
50#define fseeko rfseek
51#endif
52
53#define OFF_T_MSB ((off_t)1 << (sizeof(off_t) * 8 - 1))
54
55unsigned int cdrIsoMultidiskCount;
56unsigned int cdrIsoMultidiskSelect;
57
58static FILE *cdHandle = NULL;
59static FILE *cddaHandle = NULL;
60static FILE *subHandle = NULL;
61
62static boolean subChanMixed = FALSE;
63static boolean subChanRaw = FALSE;
64static boolean subChanMissing = FALSE;
65
66static boolean multifile = FALSE;
67
68static unsigned char cdbuffer[CD_FRAMESIZE_RAW];
69static unsigned char subbuffer[SUB_FRAMESIZE];
70
71static boolean playing = FALSE;
72static boolean cddaBigEndian = FALSE;
73// cdda sectors in toc, byte offset in file
74static unsigned int cdda_cur_sector;
75static unsigned int cdda_file_offset;
76/* Frame offset into CD image where pregap data would be found if it was there.
77 * If a game seeks there we must *not* return subchannel data since it's
78 * not in the CD image, so that cdrom code can fake subchannel data instead.
79 * XXX: there could be multiple pregaps but PSX dumps only have one? */
80static unsigned int pregapOffset;
81
82#define cddaCurPos cdda_cur_sector
83
84// compressed image stuff
85static struct {
86 unsigned char buff_raw[16][CD_FRAMESIZE_RAW];
87 unsigned char buff_compressed[CD_FRAMESIZE_RAW * 16 + 100];
88 off_t *index_table;
89 unsigned int index_len;
90 unsigned int block_shift;
91 unsigned int current_block;
92 unsigned int sector_in_blk;
93} *compr_img;
94
95#ifdef HAVE_CHD
96static struct {
97 unsigned char (*buffer)[CD_FRAMESIZE_RAW + SUB_FRAMESIZE];
98 chd_file* chd;
99 const chd_header* header;
100 unsigned int sectors_per_hunk;
101 unsigned int current_hunk;
102 unsigned int sector_in_hunk;
103} *chd_img;
104#endif
105
106int (*cdimg_read_func)(FILE *f, unsigned int base, void *dest, int sector);
107
108char* CALLBACK CDR__getDriveLetter(void);
109long CALLBACK CDR__configure(void);
110long CALLBACK CDR__test(void);
111void CALLBACK CDR__about(void);
112long CALLBACK CDR__setfilename(char *filename);
113long CALLBACK CDR__getStatus(struct CdrStat *stat);
114
115static void DecodeRawSubData(void);
116
117struct trackinfo {
118 enum {DATA=1, CDDA} type;
119 char start[3]; // MSF-format
120 char length[3]; // MSF-format
121 FILE *handle; // for multi-track images CDDA
122 unsigned int start_offset; // byte offset from start of above file
123};
124
125#define MAXTRACKS 100 /* How many tracks can a CD hold? */
126
127static int numtracks = 0;
128static struct trackinfo ti[MAXTRACKS];
129
130// get a sector from a msf-array
131static unsigned int msf2sec(char *msf) {
132 return ((msf[0] * 60 + msf[1]) * 75) + msf[2];
133}
134
135static void sec2msf(unsigned int s, char *msf) {
136 msf[0] = s / 75 / 60;
137 s = s - msf[0] * 75 * 60;
138 msf[1] = s / 75;
139 s = s - msf[1] * 75;
140 msf[2] = s;
141}
142
143// divide a string of xx:yy:zz into m, s, f
144static void tok2msf(char *time, char *msf) {
145 char *token;
146
147 token = strtok(time, ":");
148 if (token) {
149 msf[0] = atoi(token);
150 }
151 else {
152 msf[0] = 0;
153 }
154
155 token = strtok(NULL, ":");
156 if (token) {
157 msf[1] = atoi(token);
158 }
159 else {
160 msf[1] = 0;
161 }
162
163 token = strtok(NULL, ":");
164 if (token) {
165 msf[2] = atoi(token);
166 }
167 else {
168 msf[2] = 0;
169 }
170}
171
172// this function tries to get the .toc file of the given .bin
173// the necessary data is put into the ti (trackinformation)-array
174static int parsetoc(const char *isofile) {
175 char tocname[MAXPATHLEN];
176 FILE *fi;
177 char linebuf[256], tmp[256], name[256];
178 char *token;
179 char time[20], time2[20];
180 unsigned int t, sector_offs, sector_size;
181 unsigned int current_zero_gap = 0;
182
183 numtracks = 0;
184
185 // copy name of the iso and change extension from .bin to .toc
186 strncpy(tocname, isofile, sizeof(tocname));
187 tocname[MAXPATHLEN - 1] = '\0';
188 if (strlen(tocname) >= 4) {
189 strcpy(tocname + strlen(tocname) - 4, ".toc");
190 }
191 else {
192 return -1;
193 }
194
195 if ((fi = fopen(tocname, "r")) == NULL) {
196 // try changing extension to .cue (to satisfy some stupid tutorials)
197 strcpy(tocname + strlen(tocname) - 4, ".cue");
198 if ((fi = fopen(tocname, "r")) == NULL) {
199 // if filename is image.toc.bin, try removing .bin (for Brasero)
200 strcpy(tocname, isofile);
201 t = strlen(tocname);
202 if (t >= 8 && strcmp(tocname + t - 8, ".toc.bin") == 0) {
203 tocname[t - 4] = '\0';
204 if ((fi = fopen(tocname, "r")) == NULL) {
205 return -1;
206 }
207 }
208 else {
209 return -1;
210 }
211 }
212 // check if it's really a TOC named as a .cue
213 if (fgets(linebuf, sizeof(linebuf), fi) != NULL) {
214 token = strtok(linebuf, " ");
215 if (token && strncmp(token, "CD", 2) != 0 && strcmp(token, "CATALOG") != 0) {
216 fclose(fi);
217 return -1;
218 }
219 }
220 fseek(fi, 0, SEEK_SET);
221 }
222
223 memset(&ti, 0, sizeof(ti));
224 cddaBigEndian = TRUE; // cdrdao uses big-endian for CD Audio
225
226 sector_size = CD_FRAMESIZE_RAW;
227 sector_offs = 2 * 75;
228
229 // parse the .toc file
230 while (fgets(linebuf, sizeof(linebuf), fi) != NULL) {
231 // search for tracks
232 strncpy(tmp, linebuf, sizeof(linebuf));
233 token = strtok(tmp, " ");
234
235 if (token == NULL) continue;
236
237 if (!strcmp(token, "TRACK")) {
238 sector_offs += current_zero_gap;
239 current_zero_gap = 0;
240
241 // get type of track
242 token = strtok(NULL, " ");
243 numtracks++;
244
245 if (!strncmp(token, "MODE2_RAW", 9)) {
246 ti[numtracks].type = DATA;
247 sec2msf(2 * 75, ti[numtracks].start); // assume data track on 0:2:0
248
249 // check if this image contains mixed subchannel data
250 token = strtok(NULL, " ");
251 if (token != NULL && !strncmp(token, "RW", 2)) {
252 sector_size = CD_FRAMESIZE_RAW + SUB_FRAMESIZE;
253 subChanMixed = TRUE;
254 if (!strncmp(token, "RW_RAW", 6))
255 subChanRaw = TRUE;
256 }
257 }
258 else if (!strncmp(token, "AUDIO", 5)) {
259 ti[numtracks].type = CDDA;
260 }
261 }
262 else if (!strcmp(token, "DATAFILE")) {
263 if (ti[numtracks].type == CDDA) {
264 sscanf(linebuf, "DATAFILE \"%[^\"]\" #%d %8s", name, &t, time2);
265 ti[numtracks].start_offset = t;
266 t = t / sector_size + sector_offs;
267 sec2msf(t, (char *)&ti[numtracks].start);
268 tok2msf((char *)&time2, (char *)&ti[numtracks].length);
269 }
270 else {
271 sscanf(linebuf, "DATAFILE \"%[^\"]\" %8s", name, time);
272 tok2msf((char *)&time, (char *)&ti[numtracks].length);
273 }
274 }
275 else if (!strcmp(token, "FILE")) {
276 sscanf(linebuf, "FILE \"%[^\"]\" #%d %8s %8s", name, &t, time, time2);
277 tok2msf((char *)&time, (char *)&ti[numtracks].start);
278 t += msf2sec(ti[numtracks].start) * sector_size;
279 ti[numtracks].start_offset = t;
280 t = t / sector_size + sector_offs;
281 sec2msf(t, (char *)&ti[numtracks].start);
282 tok2msf((char *)&time2, (char *)&ti[numtracks].length);
283 }
284 else if (!strcmp(token, "ZERO") || !strcmp(token, "SILENCE")) {
285 // skip unneeded optional fields
286 while (token != NULL) {
287 token = strtok(NULL, " ");
288 if (strchr(token, ':') != NULL)
289 break;
290 }
291 if (token != NULL) {
292 tok2msf(token, tmp);
293 current_zero_gap = msf2sec(tmp);
294 }
295 if (numtracks > 1) {
296 t = ti[numtracks - 1].start_offset;
297 t /= sector_size;
298 pregapOffset = t + msf2sec(ti[numtracks - 1].length);
299 }
300 }
301 else if (!strcmp(token, "START")) {
302 token = strtok(NULL, " ");
303 if (token != NULL && strchr(token, ':')) {
304 tok2msf(token, tmp);
305 t = msf2sec(tmp);
306 ti[numtracks].start_offset += (t - current_zero_gap) * sector_size;
307 t = msf2sec(ti[numtracks].start) + t;
308 sec2msf(t, (char *)&ti[numtracks].start);
309 }
310 }
311 }
312
313 fclose(fi);
314
315 return 0;
316}
317
318// this function tries to get the .cue file of the given .bin
319// the necessary data is put into the ti (trackinformation)-array
320static int parsecue(const char *isofile) {
321 char cuename[MAXPATHLEN];
322 char filepath[MAXPATHLEN];
323 char *incue_fname;
324 FILE *fi;
325 char *token;
326 char time[20];
327 char *tmp;
328 char linebuf[256], tmpb[256], dummy[256];
329 unsigned int incue_max_len;
330 unsigned int t, file_len, mode, sector_offs;
331 unsigned int sector_size = 2352;
332
333 numtracks = 0;
334
335 // copy name of the iso and change extension from .bin to .cue
336 strncpy(cuename, isofile, sizeof(cuename));
337 cuename[MAXPATHLEN - 1] = '\0';
338 if (strlen(cuename) >= 4) {
339 // If 'isofile' is a '.cd<X>' file, use it as a .cue file
340 // and don't try to search the additional .cue file
341 if (strncasecmp(cuename + strlen(cuename) - 4, ".cd", 3) != 0 )
342 strcpy(cuename + strlen(cuename) - 4, ".cue");
343 }
344 else {
345 return -1;
346 }
347
348 if ((fi = fopen(cuename, "r")) == NULL) {
349 return -1;
350 }
351
352 // Some stupid tutorials wrongly tell users to use cdrdao to rip a
353 // "bin/cue" image, which is in fact a "bin/toc" image. So let's check
354 // that...
355 if (fgets(linebuf, sizeof(linebuf), fi) != NULL) {
356 if (!strncmp(linebuf, "CD_ROM_XA", 9)) {
357 // Don't proceed further, as this is actually a .toc file rather
358 // than a .cue file.
359 fclose(fi);
360 return parsetoc(isofile);
361 }
362 fseek(fi, 0, SEEK_SET);
363 }
364
365 // build a path for files referenced in .cue
366 strncpy(filepath, cuename, sizeof(filepath));
367 tmp = strrchr(filepath, '/');
368 if (tmp == NULL)
369 tmp = strrchr(filepath, '\\');
370 if (tmp != NULL)
371 tmp++;
372 else
373 tmp = filepath;
374 *tmp = 0;
375 filepath[sizeof(filepath) - 1] = 0;
376 incue_fname = tmp;
377 incue_max_len = sizeof(filepath) - (tmp - filepath) - 1;
378
379 memset(&ti, 0, sizeof(ti));
380
381 file_len = 0;
382 sector_offs = 2 * 75;
383
384 while (fgets(linebuf, sizeof(linebuf), fi) != NULL) {
385 strncpy(dummy, linebuf, sizeof(linebuf));
386 token = strtok(dummy, " ");
387
388 if (token == NULL) {
389 continue;
390 }
391
392 if (!strcmp(token, "TRACK")) {
393 numtracks++;
394
395 sector_size = 0;
396 if (strstr(linebuf, "AUDIO") != NULL) {
397 ti[numtracks].type = CDDA;
398 sector_size = 2352;
399 }
400 else if (sscanf(linebuf, " TRACK %u MODE%u/%u", &t, &mode, &sector_size) == 3)
401 ti[numtracks].type = DATA;
402 else {
403 SysPrintf(".cue: failed to parse TRACK\n");
404 ti[numtracks].type = numtracks == 1 ? DATA : CDDA;
405 }
406 if (sector_size == 0)
407 sector_size = 2352;
408 }
409 else if (!strcmp(token, "INDEX")) {
410 if (sscanf(linebuf, " INDEX %02d %8s", &t, time) != 2)
411 SysPrintf(".cue: failed to parse INDEX\n");
412 tok2msf(time, (char *)&ti[numtracks].start);
413
414 t = msf2sec(ti[numtracks].start);
415 ti[numtracks].start_offset = t * sector_size;
416 t += sector_offs;
417 sec2msf(t, ti[numtracks].start);
418
419 // default track length to file length
420 t = file_len - ti[numtracks].start_offset / sector_size;
421 sec2msf(t, ti[numtracks].length);
422
423 if (numtracks > 1 && ti[numtracks].handle == NULL) {
424 // this track uses the same file as the last,
425 // start of this track is last track's end
426 t = msf2sec(ti[numtracks].start) - msf2sec(ti[numtracks - 1].start);
427 sec2msf(t, ti[numtracks - 1].length);
428 }
429 if (numtracks > 1 && pregapOffset == -1)
430 pregapOffset = ti[numtracks].start_offset / sector_size;
431 }
432 else if (!strcmp(token, "PREGAP")) {
433 if (sscanf(linebuf, " PREGAP %8s", time) == 1) {
434 tok2msf(time, dummy);
435 sector_offs += msf2sec(dummy);
436 }
437 pregapOffset = -1; // mark to fill track start_offset
438 }
439 else if (!strcmp(token, "FILE")) {
440 t = sscanf(linebuf, " FILE \"%255[^\"]\"", tmpb);
441 if (t != 1)
442 sscanf(linebuf, " FILE %255s", tmpb);
443
444 tmp = strrchr(tmpb, '\\');
445 if (tmp == NULL)
446 tmp = strrchr(tmpb, '/');
447 if (tmp != NULL)
448 tmp++;
449 else
450 tmp = tmpb;
451 strncpy(incue_fname, tmp, incue_max_len);
452 ti[numtracks + 1].handle = fopen(filepath, "rb");
453
454 // update global offset if this is not first file in this .cue
455 if (numtracks + 1 > 1) {
456 multifile = 1;
457 sector_offs += file_len;
458 }
459
460 file_len = 0;
461 if (ti[numtracks + 1].handle == NULL) {
462 SysPrintf(_("\ncould not open: %s\n"), filepath);
463 continue;
464 }
465 fseek(ti[numtracks + 1].handle, 0, SEEK_END);
466 file_len = ftell(ti[numtracks + 1].handle) / 2352;
467
468 if (numtracks == 0 && strlen(isofile) >= 4 &&
469 (strcmp(isofile + strlen(isofile) - 4, ".cue") == 0 ||
470 strncasecmp(isofile + strlen(isofile) - 4, ".cd", 3) == 0)) {
471 // user selected .cue/.cdX as image file, use it's data track instead
472 fclose(cdHandle);
473 cdHandle = fopen(filepath, "rb");
474 }
475 }
476 }
477
478 fclose(fi);
479
480 // if there are no tracks detected, then it's not a cue file
481 if (!numtracks)
482 return -1;
483
484 return 0;
485}
486
487// this function tries to get the .ccd file of the given .img
488// the necessary data is put into the ti (trackinformation)-array
489static int parseccd(const char *isofile) {
490 char ccdname[MAXPATHLEN];
491 FILE *fi;
492 char linebuf[256];
493 unsigned int t;
494
495 numtracks = 0;
496
497 // copy name of the iso and change extension from .img to .ccd
498 strncpy(ccdname, isofile, sizeof(ccdname));
499 ccdname[MAXPATHLEN - 1] = '\0';
500 if (strlen(ccdname) >= 4) {
501 strcpy(ccdname + strlen(ccdname) - 4, ".ccd");
502 }
503 else {
504 return -1;
505 }
506
507 if ((fi = fopen(ccdname, "r")) == NULL) {
508 return -1;
509 }
510
511 memset(&ti, 0, sizeof(ti));
512
513 while (fgets(linebuf, sizeof(linebuf), fi) != NULL) {
514 if (!strncmp(linebuf, "[TRACK", 6)){
515 numtracks++;
516 }
517 else if (!strncmp(linebuf, "MODE=", 5)) {
518 sscanf(linebuf, "MODE=%d", &t);
519 ti[numtracks].type = ((t == 0) ? CDDA : DATA);
520 }
521 else if (!strncmp(linebuf, "INDEX 1=", 8)) {
522 sscanf(linebuf, "INDEX 1=%d", &t);
523 sec2msf(t + 2 * 75, ti[numtracks].start);
524 ti[numtracks].start_offset = t * 2352;
525
526 // If we've already seen another track, this is its end
527 if (numtracks > 1) {
528 t = msf2sec(ti[numtracks].start) - msf2sec(ti[numtracks - 1].start);
529 sec2msf(t, ti[numtracks - 1].length);
530 }
531 }
532 }
533
534 fclose(fi);
535
536 // Fill out the last track's end based on size
537 if (numtracks >= 1) {
538 fseek(cdHandle, 0, SEEK_END);
539 t = ftell(cdHandle) / 2352 - msf2sec(ti[numtracks].start) + 2 * 75;
540 sec2msf(t, ti[numtracks].length);
541 }
542
543 return 0;
544}
545
546// this function tries to get the .mds file of the given .mdf
547// the necessary data is put into the ti (trackinformation)-array
548static int parsemds(const char *isofile) {
549 char mdsname[MAXPATHLEN];
550 FILE *fi;
551 unsigned int offset, extra_offset, l, i;
552 unsigned short s;
553
554 numtracks = 0;
555
556 // copy name of the iso and change extension from .mdf to .mds
557 strncpy(mdsname, isofile, sizeof(mdsname));
558 mdsname[MAXPATHLEN - 1] = '\0';
559 if (strlen(mdsname) >= 4) {
560 strcpy(mdsname + strlen(mdsname) - 4, ".mds");
561 }
562 else {
563 return -1;
564 }
565
566 if ((fi = fopen(mdsname, "rb")) == NULL) {
567 return -1;
568 }
569
570 memset(&ti, 0, sizeof(ti));
571
572 // check if it's a valid mds file
573 if (fread(&i, 1, sizeof(i), fi) != sizeof(i))
574 goto fail_io;
575 i = SWAP32(i);
576 if (i != 0x4944454D) {
577 // not an valid mds file
578 fclose(fi);
579 return -1;
580 }
581
582 // get offset to session block
583 fseek(fi, 0x50, SEEK_SET);
584 if (fread(&offset, 1, sizeof(offset), fi) != sizeof(offset))
585 goto fail_io;
586 offset = SWAP32(offset);
587
588 // get total number of tracks
589 offset += 14;
590 fseek(fi, offset, SEEK_SET);
591 if (fread(&s, 1, sizeof(s), fi) != sizeof(s))
592 goto fail_io;
593 s = SWAP16(s);
594 numtracks = s;
595
596 // get offset to track blocks
597 fseek(fi, 4, SEEK_CUR);
598 if (fread(&offset, 1, sizeof(offset), fi) != sizeof(offset))
599 goto fail_io;
600 offset = SWAP32(offset);
601
602 // skip lead-in data
603 while (1) {
604 fseek(fi, offset + 4, SEEK_SET);
605 if (fgetc(fi) < 0xA0) {
606 break;
607 }
608 offset += 0x50;
609 }
610
611 // check if the image contains mixed subchannel data
612 fseek(fi, offset + 1, SEEK_SET);
613 subChanMixed = subChanRaw = (fgetc(fi) ? TRUE : FALSE);
614
615 // read track data
616 for (i = 1; i <= numtracks; i++) {
617 fseek(fi, offset, SEEK_SET);
618
619 // get the track type
620 ti[i].type = ((fgetc(fi) == 0xA9) ? CDDA : DATA);
621 fseek(fi, 8, SEEK_CUR);
622
623 // get the track starting point
624 ti[i].start[0] = fgetc(fi);
625 ti[i].start[1] = fgetc(fi);
626 ti[i].start[2] = fgetc(fi);
627
628 if (fread(&extra_offset, 1, sizeof(extra_offset), fi) != sizeof(extra_offset))
629 goto fail_io;
630 extra_offset = SWAP32(extra_offset);
631
632 // get track start offset (in .mdf)
633 fseek(fi, offset + 0x28, SEEK_SET);
634 if (fread(&l, 1, sizeof(l), fi) != sizeof(l))
635 goto fail_io;
636 l = SWAP32(l);
637 ti[i].start_offset = l;
638
639 // get pregap
640 fseek(fi, extra_offset, SEEK_SET);
641 if (fread(&l, 1, sizeof(l), fi) != sizeof(l))
642 goto fail_io;
643 l = SWAP32(l);
644 if (l != 0 && i > 1)
645 pregapOffset = msf2sec(ti[i].start);
646
647 // get the track length
648 if (fread(&l, 1, sizeof(l), fi) != sizeof(l))
649 goto fail_io;
650 l = SWAP32(l);
651 sec2msf(l, ti[i].length);
652
653 offset += 0x50;
654 }
655 fclose(fi);
656 return 0;
657fail_io:
658#ifndef NDEBUG
659 SysPrintf(_("File IO error in <%s:%s>.\n"), __FILE__, __func__);
660#endif
661 fclose(fi);
662 return -1;
663}
664
665static int handlepbp(const char *isofile) {
666 struct {
667 unsigned int sig;
668 unsigned int dontcare[8];
669 unsigned int psar_offs;
670 } pbp_hdr;
671 struct {
672 unsigned char type;
673 unsigned char pad0;
674 unsigned char track;
675 char index0[3];
676 char pad1;
677 char index1[3];
678 } toc_entry;
679 struct {
680 unsigned int offset;
681 unsigned int size;
682 unsigned int dontcare[6];
683 } index_entry;
684 char psar_sig[11];
685 off_t psisoimg_offs, cdimg_base;
686 unsigned int t, cd_length;
687 unsigned int offsettab[8];
688 const char *ext = NULL;
689 int i, ret;
690
691 if (strlen(isofile) >= 4)
692 ext = isofile + strlen(isofile) - 4;
693 if (ext == NULL || (strcmp(ext, ".pbp") != 0 && strcmp(ext, ".PBP") != 0))
694 return -1;
695
696 fseeko(cdHandle, 0, SEEK_SET);
697
698 numtracks = 0;
699
700 ret = fread(&pbp_hdr, 1, sizeof(pbp_hdr), cdHandle);
701 if (ret != sizeof(pbp_hdr)) {
702 SysPrintf("failed to read pbp\n");
703 goto fail_io;
704 }
705
706 ret = fseeko(cdHandle, pbp_hdr.psar_offs, SEEK_SET);
707 if (ret != 0) {
708 SysPrintf("failed to seek to %x\n", pbp_hdr.psar_offs);
709 goto fail_io;
710 }
711
712 psisoimg_offs = pbp_hdr.psar_offs;
713 if (fread(psar_sig, 1, sizeof(psar_sig), cdHandle) != sizeof(psar_sig))
714 goto fail_io;
715 psar_sig[10] = 0;
716 if (strcmp(psar_sig, "PSTITLEIMG") == 0) {
717 // multidisk image?
718 ret = fseeko(cdHandle, pbp_hdr.psar_offs + 0x200, SEEK_SET);
719 if (ret != 0) {
720 SysPrintf("failed to seek to %x\n", pbp_hdr.psar_offs + 0x200);
721 goto fail_io;
722 }
723
724 if (fread(&offsettab, 1, sizeof(offsettab), cdHandle) != sizeof(offsettab)) {
725 SysPrintf("failed to read offsettab\n");
726 goto fail_io;
727 }
728
729 for (i = 0; i < sizeof(offsettab) / sizeof(offsettab[0]); i++) {
730 if (offsettab[i] == 0)
731 break;
732 }
733 cdrIsoMultidiskCount = i;
734 if (cdrIsoMultidiskCount == 0) {
735 SysPrintf("multidisk eboot has 0 images?\n");
736 goto fail_io;
737 }
738
739 if (cdrIsoMultidiskSelect >= cdrIsoMultidiskCount)
740 cdrIsoMultidiskSelect = 0;
741
742 psisoimg_offs += offsettab[cdrIsoMultidiskSelect];
743
744 ret = fseeko(cdHandle, psisoimg_offs, SEEK_SET);
745 if (ret != 0) {
746 SysPrintf("failed to seek to %llx\n", (long long)psisoimg_offs);
747 goto fail_io;
748 }
749
750 if (fread(psar_sig, 1, sizeof(psar_sig), cdHandle) != sizeof(psar_sig))
751 goto fail_io;
752 psar_sig[10] = 0;
753 }
754
755 if (strcmp(psar_sig, "PSISOIMG00") != 0) {
756 SysPrintf("bad psar_sig: %s\n", psar_sig);
757 goto fail_io;
758 }
759
760 // seek to TOC
761 ret = fseeko(cdHandle, psisoimg_offs + 0x800, SEEK_SET);
762 if (ret != 0) {
763 SysPrintf("failed to seek to %llx\n", (long long)psisoimg_offs + 0x800);
764 goto fail_io;
765 }
766
767 // first 3 entries are special
768 fseek(cdHandle, sizeof(toc_entry), SEEK_CUR);
769 if (fread(&toc_entry, 1, sizeof(toc_entry), cdHandle) != sizeof(toc_entry))
770 goto fail_io;
771 numtracks = btoi(toc_entry.index1[0]);
772
773 if (fread(&toc_entry, 1, sizeof(toc_entry), cdHandle) != sizeof(toc_entry))
774 goto fail_io;
775 cd_length = btoi(toc_entry.index1[0]) * 60 * 75 +
776 btoi(toc_entry.index1[1]) * 75 + btoi(toc_entry.index1[2]);
777
778 for (i = 1; i <= numtracks; i++) {
779 if (fread(&toc_entry, 1, sizeof(toc_entry), cdHandle) != sizeof(toc_entry))
780 goto fail_io;
781
782 ti[i].type = (toc_entry.type == 1) ? CDDA : DATA;
783
784 ti[i].start_offset = btoi(toc_entry.index0[0]) * 60 * 75 +
785 btoi(toc_entry.index0[1]) * 75 + btoi(toc_entry.index0[2]);
786 ti[i].start_offset *= 2352;
787 ti[i].start[0] = btoi(toc_entry.index1[0]);
788 ti[i].start[1] = btoi(toc_entry.index1[1]);
789 ti[i].start[2] = btoi(toc_entry.index1[2]);
790
791 if (i > 1) {
792 t = msf2sec(ti[i].start) - msf2sec(ti[i - 1].start);
793 sec2msf(t, ti[i - 1].length);
794 }
795 }
796 t = cd_length - ti[numtracks].start_offset / 2352;
797 sec2msf(t, ti[numtracks].length);
798
799 // seek to ISO index
800 ret = fseeko(cdHandle, psisoimg_offs + 0x4000, SEEK_SET);
801 if (ret != 0) {
802 SysPrintf("failed to seek to ISO index\n");
803 goto fail_io;
804 }
805
806 compr_img = calloc(1, sizeof(*compr_img));
807 if (compr_img == NULL)
808 goto fail_io;
809
810 compr_img->block_shift = 4;
811 compr_img->current_block = (unsigned int)-1;
812
813 compr_img->index_len = (0x100000 - 0x4000) / sizeof(index_entry);
814 compr_img->index_table = malloc((compr_img->index_len + 1) * sizeof(compr_img->index_table[0]));
815 if (compr_img->index_table == NULL)
816 goto fail_io;
817
818 cdimg_base = psisoimg_offs + 0x100000;
819 for (i = 0; i < compr_img->index_len; i++) {
820 ret = fread(&index_entry, 1, sizeof(index_entry), cdHandle);
821 if (ret != sizeof(index_entry)) {
822 SysPrintf("failed to read index_entry #%d\n", i);
823 goto fail_index;
824 }
825
826 if (index_entry.size == 0)
827 break;
828
829 compr_img->index_table[i] = cdimg_base + index_entry.offset;
830 }
831 compr_img->index_table[i] = cdimg_base + index_entry.offset + index_entry.size;
832
833 return 0;
834
835fail_index:
836 free(compr_img->index_table);
837 compr_img->index_table = NULL;
838 goto done;
839
840fail_io:
841#ifndef NDEBUG
842 SysPrintf(_("File IO error in <%s:%s>.\n"), __FILE__, __func__);
843#endif
844
845done:
846 if (compr_img != NULL) {
847 free(compr_img);
848 compr_img = NULL;
849 }
850 return -1;
851}
852
853static int handlecbin(const char *isofile) {
854 struct
855 {
856 char magic[4];
857 unsigned int header_size;
858 unsigned long long total_bytes;
859 unsigned int block_size;
860 unsigned char ver; // 1
861 unsigned char align;
862 unsigned char rsv_06[2];
863 } ciso_hdr;
864 const char *ext = NULL;
865 unsigned int *index_table = NULL;
866 unsigned int index = 0, plain;
867 int i, ret;
868
869 if (strlen(isofile) >= 5)
870 ext = isofile + strlen(isofile) - 5;
871 if (ext == NULL || (strcasecmp(ext + 1, ".cbn") != 0 && strcasecmp(ext, ".cbin") != 0))
872 return -1;
873
874 fseek(cdHandle, 0, SEEK_SET);
875
876 ret = fread(&ciso_hdr, 1, sizeof(ciso_hdr), cdHandle);
877 if (ret != sizeof(ciso_hdr)) {
878 SysPrintf("failed to read ciso header\n");
879 return -1;
880 }
881
882 if (strncmp(ciso_hdr.magic, "CISO", 4) != 0 || ciso_hdr.total_bytes <= 0 || ciso_hdr.block_size <= 0) {
883 SysPrintf("bad ciso header\n");
884 return -1;
885 }
886 if (ciso_hdr.header_size != 0 && ciso_hdr.header_size != sizeof(ciso_hdr)) {
887 ret = fseeko(cdHandle, ciso_hdr.header_size, SEEK_SET);
888 if (ret != 0) {
889 SysPrintf("failed to seek to %x\n", ciso_hdr.header_size);
890 return -1;
891 }
892 }
893
894 compr_img = calloc(1, sizeof(*compr_img));
895 if (compr_img == NULL)
896 goto fail_io;
897
898 compr_img->block_shift = 0;
899 compr_img->current_block = (unsigned int)-1;
900
901 compr_img->index_len = ciso_hdr.total_bytes / ciso_hdr.block_size;
902 index_table = malloc((compr_img->index_len + 1) * sizeof(index_table[0]));
903 if (index_table == NULL)
904 goto fail_io;
905
906 ret = fread(index_table, sizeof(index_table[0]), compr_img->index_len, cdHandle);
907 if (ret != compr_img->index_len) {
908 SysPrintf("failed to read index table\n");
909 goto fail_index;
910 }
911
912 compr_img->index_table = malloc((compr_img->index_len + 1) * sizeof(compr_img->index_table[0]));
913 if (compr_img->index_table == NULL)
914 goto fail_index;
915
916 for (i = 0; i < compr_img->index_len + 1; i++) {
917 index = index_table[i];
918 plain = index & 0x80000000;
919 index &= 0x7fffffff;
920 compr_img->index_table[i] = (off_t)index << ciso_hdr.align;
921 if (plain)
922 compr_img->index_table[i] |= OFF_T_MSB;
923 }
924
925 return 0;
926
927fail_index:
928 free(index_table);
929fail_io:
930 if (compr_img != NULL) {
931 free(compr_img);
932 compr_img = NULL;
933 }
934 return -1;
935}
936
937#ifdef HAVE_CHD
938static int handlechd(const char *isofile) {
939 chd_img = calloc(1, sizeof(*chd_img));
940 if (chd_img == NULL)
941 goto fail_io;
942
943 if(chd_open(isofile, CHD_OPEN_READ, NULL, &chd_img->chd) != CHDERR_NONE)
944 goto fail_io;
945
946 if (Config.CHD_Precache && (chd_precache(chd_img->chd) != CHDERR_NONE))
947 goto fail_io;
948
949 chd_img->header = chd_get_header(chd_img->chd);
950
951 chd_img->buffer = malloc(chd_img->header->hunkbytes);
952 if (chd_img->buffer == NULL)
953 goto fail_io;
954
955 chd_img->sectors_per_hunk = chd_img->header->hunkbytes / (CD_FRAMESIZE_RAW + SUB_FRAMESIZE);
956 chd_img->current_hunk = (unsigned int)-1;
957
958 cddaBigEndian = TRUE;
959
960 numtracks = 0;
961 int frame_offset = 0;
962 int file_offset = 0;
963 memset(ti, 0, sizeof(ti));
964
965 while (1)
966 {
967 struct {
968 char type[64];
969 char subtype[32];
970 char pgtype[32];
971 char pgsub[32];
972 uint32_t track;
973 uint32_t frames;
974 uint32_t pregap;
975 uint32_t postgap;
976 } md = {};
977 char meta[256];
978 uint32_t meta_size = 0;
979
980 if (chd_get_metadata(chd_img->chd, CDROM_TRACK_METADATA2_TAG, numtracks, meta, sizeof(meta), &meta_size, NULL, NULL) == CHDERR_NONE)
981 sscanf(meta, CDROM_TRACK_METADATA2_FORMAT, &md.track, md.type, md.subtype, &md.frames, &md.pregap, md.pgtype, md.pgsub, &md.postgap);
982 else if (chd_get_metadata(chd_img->chd, CDROM_TRACK_METADATA_TAG, numtracks, meta, sizeof(meta), &meta_size, NULL, NULL) == CHDERR_NONE)
983 sscanf(meta, CDROM_TRACK_METADATA_FORMAT, &md.track, md.type, md.subtype, &md.frames);
984 else
985 break;
986
987 if(md.track == 1)
988 md.pregap = 150;
989 else
990 sec2msf(msf2sec(ti[md.track-1].length) + md.pregap, ti[md.track-1].length);
991
992 ti[md.track].type = !strncmp(md.type, "AUDIO", 5) ? CDDA : DATA;
993
994 sec2msf(frame_offset + md.pregap, ti[md.track].start);
995 sec2msf(md.frames, ti[md.track].length);
996
997 ti[md.track].start_offset = file_offset;
998
999 frame_offset += md.pregap + md.frames + md.postgap;
1000 file_offset += md.frames + md.postgap;
1001 numtracks++;
1002 }
1003
1004 if (numtracks)
1005 return 0;
1006
1007fail_io:
1008 if (chd_img != NULL) {
1009 free(chd_img->buffer);
1010 free(chd_img);
1011 chd_img = NULL;
1012 }
1013 return -1;
1014}
1015#endif
1016
1017// this function tries to get the .sub file of the given .img
1018static int opensubfile(const char *isoname) {
1019 char subname[MAXPATHLEN];
1020
1021 // copy name of the iso and change extension from .img to .sub
1022 strncpy(subname, isoname, sizeof(subname));
1023 subname[MAXPATHLEN - 1] = '\0';
1024 if (strlen(subname) >= 4) {
1025 strcpy(subname + strlen(subname) - 4, ".sub");
1026 }
1027 else {
1028 return -1;
1029 }
1030
1031 subHandle = fopen(subname, "rb");
1032 if (subHandle == NULL) {
1033 return -1;
1034 }
1035
1036 return 0;
1037}
1038
1039static int opensbifile(const char *isoname) {
1040 char sbiname[MAXPATHLEN], disknum[MAXPATHLEN] = "0";
1041 int s;
1042
1043 strncpy(sbiname, isoname, sizeof(sbiname));
1044 sbiname[MAXPATHLEN - 1] = '\0';
1045 if (strlen(sbiname) >= 4) {
1046 if (cdrIsoMultidiskCount > 1) {
1047 sprintf(disknum, "_%i.sbi", cdrIsoMultidiskSelect + 1);
1048 strcpy(sbiname + strlen(sbiname) - 4, disknum);
1049 }
1050 else
1051 strcpy(sbiname + strlen(sbiname) - 4, ".sbi");
1052 }
1053 else {
1054 return -1;
1055 }
1056
1057 fseek(cdHandle, 0, SEEK_END);
1058 s = ftell(cdHandle) / 2352;
1059
1060 return LoadSBI(sbiname, s);
1061}
1062
1063#ifdef _WIN32
1064static void readThreadStop() {}
1065static void readThreadStart() {}
1066#else
1067static pthread_t read_thread_id;
1068
1069static pthread_cond_t read_thread_msg_avail;
1070static pthread_cond_t read_thread_msg_done;
1071static pthread_mutex_t read_thread_msg_lock;
1072
1073static pthread_cond_t sectorbuffer_cond;
1074static pthread_mutex_t sectorbuffer_lock;
1075
1076static boolean read_thread_running = FALSE;
1077static int read_thread_sector_start = -1;
1078static int read_thread_sector_end = -1;
1079
1080typedef struct {
1081 int sector;
1082 long ret;
1083 unsigned char data[CD_FRAMESIZE_RAW];
1084} SectorBufferEntry;
1085
1086#define SECTOR_BUFFER_SIZE 4096
1087
1088static SectorBufferEntry *sectorbuffer;
1089static size_t sectorbuffer_index;
1090
1091int (*sync_cdimg_read_func)(FILE *f, unsigned int base, void *dest, int sector);
1092unsigned char *(*sync_CDR_getBuffer)(void);
1093
1094static unsigned char * CALLBACK ISOgetBuffer_async(void);
1095static int cdread_async(FILE *f, unsigned int base, void *dest, int sector);
1096
1097static void *readThreadMain(void *param) {
1098 int max_sector = -1;
1099 int requested_sector_start = -1;
1100 int requested_sector_end = -1;
1101 int last_read_sector = -1;
1102 int index = 0;
1103
1104 int ra_sector = -1;
1105 int max_ra = 128;
1106 int initial_ra = 1;
1107 int speedmult_ra = 4;
1108
1109 int ra_count = 0;
1110 int how_far_ahead = 0;
1111
1112 unsigned char tmpdata[CD_FRAMESIZE_RAW];
1113 long ret;
1114
1115 max_sector = msf2sec(ti[numtracks].start) + msf2sec(ti[numtracks].length);
1116
1117 while(1) {
1118 pthread_mutex_lock(&read_thread_msg_lock);
1119
1120 // If we don't have readahead and we don't have a sector request, wait for one.
1121 // If we still have readahead to go, don't block, just keep going.
1122 // And if we ever have a sector request pending, acknowledge and reset it.
1123
1124 if (!ra_count) {
1125 if (read_thread_sector_start == -1 && read_thread_running) {
1126 pthread_cond_wait(&read_thread_msg_avail, &read_thread_msg_lock);
1127 }
1128 }
1129
1130 if (read_thread_sector_start != -1) {
1131 requested_sector_start = read_thread_sector_start;
1132 requested_sector_end = read_thread_sector_end;
1133 read_thread_sector_start = -1;
1134 read_thread_sector_end = -1;
1135 pthread_cond_signal(&read_thread_msg_done);
1136 }
1137
1138 pthread_mutex_unlock(&read_thread_msg_lock);
1139
1140 if (!read_thread_running)
1141 break;
1142
1143 // Readahead code, based on the implementation in mednafen psx's cdromif.cpp
1144 if (requested_sector_start != -1) {
1145 if (last_read_sector != -1 && last_read_sector == (requested_sector_start - 1)) {
1146 how_far_ahead = ra_sector - requested_sector_end;
1147
1148 if(how_far_ahead <= max_ra)
1149 ra_count = (max_ra - how_far_ahead + 1 ? max_ra - how_far_ahead + 1 : speedmult_ra);
1150 else
1151 ra_count++;
1152 } else if (requested_sector_end != last_read_sector) {
1153 ra_sector = requested_sector_end;
1154 ra_count = initial_ra;
1155 }
1156
1157 last_read_sector = requested_sector_end;
1158 }
1159
1160 index = ra_sector % SECTOR_BUFFER_SIZE;
1161
1162 // check for end of CD
1163 if (ra_count && ra_sector >= max_sector) {
1164 ra_count = 0;
1165 pthread_mutex_lock(&sectorbuffer_lock);
1166 sectorbuffer[index].ret = -1;
1167 sectorbuffer[index].sector = ra_sector;
1168 pthread_cond_signal(&sectorbuffer_cond);
1169 pthread_mutex_unlock(&sectorbuffer_lock);
1170 }
1171
1172 if (ra_count) {
1173 pthread_mutex_lock(&sectorbuffer_lock);
1174 if (sectorbuffer[index].sector != ra_sector) {
1175 pthread_mutex_unlock(&sectorbuffer_lock);
1176
1177 ret = sync_cdimg_read_func(cdHandle, 0, tmpdata, ra_sector);
1178
1179 pthread_mutex_lock(&sectorbuffer_lock);
1180 sectorbuffer[index].ret = ret;
1181 sectorbuffer[index].sector = ra_sector;
1182 memcpy(sectorbuffer[index].data, tmpdata, CD_FRAMESIZE_RAW);
1183 }
1184 pthread_cond_signal(&sectorbuffer_cond);
1185 pthread_mutex_unlock(&sectorbuffer_lock);
1186
1187 ra_sector++;
1188 ra_count--;
1189 }
1190 }
1191
1192 return NULL;
1193}
1194
1195static void readThreadStop() {
1196 if (read_thread_running == TRUE) {
1197 read_thread_running = FALSE;
1198 pthread_cond_signal(&read_thread_msg_avail);
1199 pthread_join(read_thread_id, NULL);
1200 }
1201
1202 pthread_cond_destroy(&read_thread_msg_done);
1203 pthread_cond_destroy(&read_thread_msg_avail);
1204 pthread_mutex_destroy(&read_thread_msg_lock);
1205
1206 pthread_cond_destroy(&sectorbuffer_cond);
1207 pthread_mutex_destroy(&sectorbuffer_lock);
1208
1209 CDR_getBuffer = sync_CDR_getBuffer;
1210 cdimg_read_func = sync_cdimg_read_func;
1211
1212 free(sectorbuffer);
1213 sectorbuffer = NULL;
1214}
1215
1216static void readThreadStart() {
1217 SysPrintf("Starting async CD thread\n");
1218
1219 if (read_thread_running == TRUE)
1220 return;
1221
1222 read_thread_running = TRUE;
1223 read_thread_sector_start = -1;
1224 read_thread_sector_end = -1;
1225 sectorbuffer_index = 0;
1226
1227 sectorbuffer = calloc(SECTOR_BUFFER_SIZE, sizeof(SectorBufferEntry));
1228 if(!sectorbuffer)
1229 goto error;
1230
1231 sectorbuffer[0].sector = -1; // Otherwise we might think we've already fetched sector 0!
1232
1233 sync_CDR_getBuffer = CDR_getBuffer;
1234 CDR_getBuffer = ISOgetBuffer_async;
1235 sync_cdimg_read_func = cdimg_read_func;
1236 cdimg_read_func = cdread_async;
1237
1238 if (pthread_cond_init(&read_thread_msg_avail, NULL) ||
1239 pthread_cond_init(&read_thread_msg_done, NULL) ||
1240 pthread_mutex_init(&read_thread_msg_lock, NULL) ||
1241 pthread_cond_init(&sectorbuffer_cond, NULL) ||
1242 pthread_mutex_init(&sectorbuffer_lock, NULL) ||
1243 pthread_create(&read_thread_id, NULL, readThreadMain, NULL))
1244 goto error;
1245
1246 return;
1247
1248 error:
1249 SysPrintf("Error starting async CD thread\n");
1250 SysPrintf("Falling back to sync\n");
1251
1252 readThreadStop();
1253}
1254#endif
1255
1256static int cdread_normal(FILE *f, unsigned int base, void *dest, int sector)
1257{
1258 fseek(f, base + sector * CD_FRAMESIZE_RAW, SEEK_SET);
1259 return fread(dest, 1, CD_FRAMESIZE_RAW, f);
1260}
1261
1262static int cdread_sub_mixed(FILE *f, unsigned int base, void *dest, int sector)
1263{
1264 int ret;
1265
1266 fseek(f, base + sector * (CD_FRAMESIZE_RAW + SUB_FRAMESIZE), SEEK_SET);
1267 ret = fread(dest, 1, CD_FRAMESIZE_RAW, f);
1268 if (fread(subbuffer, 1, SUB_FRAMESIZE, f) != SUB_FRAMESIZE)
1269 goto fail_io;
1270
1271 if (subChanRaw) DecodeRawSubData();
1272 goto done;
1273
1274fail_io:
1275#ifndef NDEBUG
1276 SysPrintf(_("File IO error in <%s:%s>.\n"), __FILE__, __func__);
1277#endif
1278
1279done:
1280 return ret;
1281}
1282
1283static int uncompress2_pcsx(void *out, unsigned long *out_size, void *in, unsigned long in_size)
1284{
1285 static z_stream z;
1286 int ret = 0;
1287
1288 if (z.zalloc == NULL) {
1289 // XXX: one-time leak here..
1290 z.next_in = Z_NULL;
1291 z.avail_in = 0;
1292 z.zalloc = Z_NULL;
1293 z.zfree = Z_NULL;
1294 z.opaque = Z_NULL;
1295 ret = inflateInit2(&z, -15);
1296 }
1297 else
1298 ret = inflateReset(&z);
1299 if (ret != Z_OK)
1300 return ret;
1301
1302 z.next_in = in;
1303 z.avail_in = in_size;
1304 z.next_out = out;
1305 z.avail_out = *out_size;
1306
1307 ret = inflate(&z, Z_NO_FLUSH);
1308 //inflateEnd(&z);
1309
1310 *out_size -= z.avail_out;
1311 return ret == 1 ? 0 : ret;
1312}
1313
1314static int cdread_compressed(FILE *f, unsigned int base, void *dest, int sector)
1315{
1316 unsigned long cdbuffer_size, cdbuffer_size_expect;
1317 unsigned int size;
1318 int is_compressed;
1319 off_t start_byte;
1320 int ret, block;
1321
1322 if (base)
1323 sector += base / 2352;
1324
1325 block = sector >> compr_img->block_shift;
1326 compr_img->sector_in_blk = sector & ((1 << compr_img->block_shift) - 1);
1327
1328 if (block == compr_img->current_block) {
1329 //printf("hit sect %d\n", sector);
1330 goto finish;
1331 }
1332
1333 if (sector >= compr_img->index_len * 16) {
1334 SysPrintf("sector %d is past img end\n", sector);
1335 return -1;
1336 }
1337
1338 start_byte = compr_img->index_table[block] & ~OFF_T_MSB;
1339 if (fseeko(cdHandle, start_byte, SEEK_SET) != 0) {
1340 SysPrintf("seek error for block %d at %llx: ",
1341 block, (long long)start_byte);
1342 perror(NULL);
1343 return -1;
1344 }
1345
1346 is_compressed = !(compr_img->index_table[block] & OFF_T_MSB);
1347 size = (compr_img->index_table[block + 1] & ~OFF_T_MSB) - start_byte;
1348 if (size > sizeof(compr_img->buff_compressed)) {
1349 SysPrintf("block %d is too large: %u\n", block, size);
1350 return -1;
1351 }
1352
1353 if (fread(is_compressed ? compr_img->buff_compressed : compr_img->buff_raw[0],
1354 1, size, cdHandle) != size) {
1355 SysPrintf("read error for block %d at %x: ", block, start_byte);
1356 perror(NULL);
1357 return -1;
1358 }
1359
1360 if (is_compressed) {
1361 cdbuffer_size_expect = sizeof(compr_img->buff_raw[0]) << compr_img->block_shift;
1362 cdbuffer_size = cdbuffer_size_expect;
1363 ret = uncompress2_pcsx(compr_img->buff_raw[0], &cdbuffer_size, compr_img->buff_compressed, size);
1364 if (ret != 0) {
1365 SysPrintf("uncompress failed with %d for block %d, sector %d\n",
1366 ret, block, sector);
1367 return -1;
1368 }
1369 if (cdbuffer_size != cdbuffer_size_expect)
1370 SysPrintf("cdbuffer_size: %lu != %lu, sector %d\n", cdbuffer_size,
1371 cdbuffer_size_expect, sector);
1372 }
1373
1374 // done at last!
1375 compr_img->current_block = block;
1376
1377finish:
1378 if (dest != cdbuffer) // copy avoid HACK
1379 memcpy(dest, compr_img->buff_raw[compr_img->sector_in_blk],
1380 CD_FRAMESIZE_RAW);
1381 return CD_FRAMESIZE_RAW;
1382}
1383
1384#ifdef HAVE_CHD
1385static int cdread_chd(FILE *f, unsigned int base, void *dest, int sector)
1386{
1387 int hunk;
1388
1389 if (base)
1390 sector += base;
1391
1392 hunk = sector / chd_img->sectors_per_hunk;
1393 chd_img->sector_in_hunk = sector % chd_img->sectors_per_hunk;
1394
1395 if (hunk != chd_img->current_hunk)
1396 {
1397 chd_read(chd_img->chd, hunk, chd_img->buffer);
1398 chd_img->current_hunk = hunk;
1399 }
1400
1401 if (dest != cdbuffer) // copy avoid HACK
1402 memcpy(dest, chd_img->buffer[chd_img->sector_in_hunk],
1403 CD_FRAMESIZE_RAW);
1404 return CD_FRAMESIZE_RAW;
1405}
1406#endif
1407static int cdread_2048(FILE *f, unsigned int base, void *dest, int sector)
1408{
1409 int ret;
1410
1411 fseek(f, base + sector * 2048, SEEK_SET);
1412 ret = fread((char *)dest + 12 * 2, 1, 2048, f);
1413
1414 // not really necessary, fake mode 2 header
1415 memset(cdbuffer, 0, 12 * 2);
1416 sec2msf(sector + 2 * 75, (char *)&cdbuffer[12]);
1417 cdbuffer[12 + 3] = 1;
1418
1419 return ret;
1420}
1421
1422#ifndef _WIN32
1423
1424static int cdread_async(FILE *f, unsigned int base, void *dest, int sector) {
1425 boolean found = FALSE;
1426 int i = sector % SECTOR_BUFFER_SIZE;
1427 long ret;
1428
1429 if (f != cdHandle || base != 0 || dest != cdbuffer) {
1430 // Async reads are only supported for cdbuffer, so call the sync
1431 // function directly.
1432 return sync_cdimg_read_func(f, base, dest, sector);
1433 }
1434
1435 pthread_mutex_lock(&read_thread_msg_lock);
1436
1437 // Only wait if we're not trying to read the next sector and
1438 // sector_start is set (meaning the last request hasn't been
1439 // processed yet)
1440 while(read_thread_sector_start != -1 && read_thread_sector_end + 1 != sector) {
1441 pthread_cond_wait(&read_thread_msg_done, &read_thread_msg_lock);
1442 }
1443
1444 if (read_thread_sector_start == -1)
1445 read_thread_sector_start = sector;
1446
1447 read_thread_sector_end = sector;
1448 pthread_cond_signal(&read_thread_msg_avail);
1449 pthread_mutex_unlock(&read_thread_msg_lock);
1450
1451 do {
1452 pthread_mutex_lock(&sectorbuffer_lock);
1453 if (sectorbuffer[i].sector == sector) {
1454 sectorbuffer_index = i;
1455 ret = sectorbuffer[i].ret;
1456 found = TRUE;
1457 }
1458
1459 if (!found) {
1460 pthread_cond_wait(&sectorbuffer_cond, &sectorbuffer_lock);
1461 }
1462 pthread_mutex_unlock(&sectorbuffer_lock);
1463 } while (!found);
1464
1465 return ret;
1466}
1467
1468#endif
1469
1470static unsigned char * CALLBACK ISOgetBuffer_compr(void) {
1471 return compr_img->buff_raw[compr_img->sector_in_blk] + 12;
1472}
1473
1474#ifdef HAVE_CHD
1475static unsigned char * CALLBACK ISOgetBuffer_chd(void) {
1476 return chd_img->buffer[chd_img->sector_in_hunk] + 12;
1477}
1478#endif
1479
1480#ifndef _WIN32
1481static unsigned char * CALLBACK ISOgetBuffer_async(void) {
1482 unsigned char *buffer;
1483 pthread_mutex_lock(&sectorbuffer_lock);
1484 buffer = sectorbuffer[sectorbuffer_index].data;
1485 pthread_mutex_unlock(&sectorbuffer_lock);
1486 return buffer + 12;
1487}
1488
1489#endif
1490
1491static unsigned char * CALLBACK ISOgetBuffer(void) {
1492 return cdbuffer + 12;
1493}
1494
1495static void PrintTracks(void) {
1496 int i;
1497
1498 for (i = 1; i <= numtracks; i++) {
1499 SysPrintf(_("Track %.2d (%s) - Start %.2d:%.2d:%.2d, Length %.2d:%.2d:%.2d\n"),
1500 i, (ti[i].type == DATA ? "DATA" : "AUDIO"),
1501 ti[i].start[0], ti[i].start[1], ti[i].start[2],
1502 ti[i].length[0], ti[i].length[1], ti[i].length[2]);
1503 }
1504}
1505
1506// This function is invoked by the front-end when opening an ISO
1507// file for playback
1508static long CALLBACK ISOopen(void) {
1509 boolean isMode1ISO = FALSE;
1510 char alt_bin_filename[MAXPATHLEN];
1511 const char *bin_filename;
1512 char image_str[1024] = {0};
1513
1514 if (cdHandle != NULL) {
1515 return 0; // it's already open
1516 }
1517
1518 cdHandle = fopen(GetIsoFile(), "rb");
1519 if (cdHandle == NULL) {
1520 SysPrintf(_("Could't open '%s' for reading: %s\n"),
1521 GetIsoFile(), strerror(errno));
1522 return -1;
1523 }
1524
1525 sprintf(image_str, "Loaded CD Image: %s", GetIsoFile());
1526
1527 cddaBigEndian = FALSE;
1528 subChanMixed = FALSE;
1529 subChanRaw = FALSE;
1530 pregapOffset = 0;
1531 cdrIsoMultidiskCount = 1;
1532 multifile = 0;
1533
1534 CDR_getBuffer = ISOgetBuffer;
1535 cdimg_read_func = cdread_normal;
1536
1537 if (parsetoc(GetIsoFile()) == 0) {
1538 strcat(image_str, "[+toc]");
1539 }
1540 else if (parseccd(GetIsoFile()) == 0) {
1541 strcat(image_str, "[+ccd]");
1542 }
1543 else if (parsemds(GetIsoFile()) == 0) {
1544 strcat(image_str, "[+mds]");
1545 }
1546 else if (parsecue(GetIsoFile()) == 0) {
1547 strcat(image_str, "[+cue]");
1548 }
1549 if (handlepbp(GetIsoFile()) == 0) {
1550 strcat(image_str, "[+pbp]");
1551 CDR_getBuffer = ISOgetBuffer_compr;
1552 cdimg_read_func = cdread_compressed;
1553 }
1554 else if (handlecbin(GetIsoFile()) == 0) {
1555 strcat(image_str, "[+cbin]");
1556 CDR_getBuffer = ISOgetBuffer_compr;
1557 cdimg_read_func = cdread_compressed;
1558 }
1559#ifdef HAVE_CHD
1560 else if (handlechd(GetIsoFile()) == 0) {
1561 strcat(image_str, "[+chd]");
1562 CDR_getBuffer = ISOgetBuffer_chd;
1563 cdimg_read_func = cdread_chd;
1564 }
1565#endif
1566
1567 if (!subChanMixed && opensubfile(GetIsoFile()) == 0) {
1568 strcat(image_str, "[+sub]");
1569 }
1570 if (opensbifile(GetIsoFile()) == 0) {
1571 strcat(image_str, "[+sbi]");
1572 }
1573
1574 fseeko(cdHandle, 0, SEEK_END);
1575
1576 // maybe user selected metadata file instead of main .bin ..
1577 bin_filename = GetIsoFile();
1578 if (ftello(cdHandle) < 2352 * 0x10) {
1579 static const char *exts[] = { ".bin", ".BIN", ".img", ".IMG" };
1580 FILE *tmpf = NULL;
1581 size_t i;
1582 char *p;
1583
1584 strncpy(alt_bin_filename, bin_filename, sizeof(alt_bin_filename));
1585 alt_bin_filename[MAXPATHLEN - 1] = '\0';
1586 if (strlen(alt_bin_filename) >= 4) {
1587 p = alt_bin_filename + strlen(alt_bin_filename) - 4;
1588 for (i = 0; i < sizeof(exts) / sizeof(exts[0]); i++) {
1589 strcpy(p, exts[i]);
1590 tmpf = fopen(alt_bin_filename, "rb");
1591 if (tmpf != NULL)
1592 break;
1593 }
1594 }
1595 if (tmpf != NULL) {
1596 bin_filename = alt_bin_filename;
1597 fclose(cdHandle);
1598 cdHandle = tmpf;
1599 fseeko(cdHandle, 0, SEEK_END);
1600 }
1601 }
1602
1603 // guess whether it is mode1/2048
1604 if (ftello(cdHandle) % 2048 == 0) {
1605 unsigned int modeTest = 0;
1606 fseek(cdHandle, 0, SEEK_SET);
1607 if (!fread(&modeTest, sizeof(modeTest), 1, cdHandle)) {
1608#ifndef NDEBUG
1609 SysPrintf(_("File IO error in <%s:%s>.\n"), __FILE__, __func__);
1610#endif
1611 return -1;
1612 }
1613 if (SWAP32(modeTest) != 0xffffff00) {
1614 strcat(image_str, "[2048]");
1615 isMode1ISO = TRUE;
1616 }
1617 }
1618 fseek(cdHandle, 0, SEEK_SET);
1619
1620 SysPrintf("%s.\n", image_str);
1621
1622 PrintTracks();
1623
1624 if (subChanMixed)
1625 cdimg_read_func = cdread_sub_mixed;
1626 else if (isMode1ISO)
1627 cdimg_read_func = cdread_2048;
1628
1629 // make sure we have another handle open for cdda
1630 if (numtracks > 1 && ti[1].handle == NULL) {
1631 ti[1].handle = fopen(bin_filename, "rb");
1632 }
1633 cdda_cur_sector = 0;
1634 cdda_file_offset = 0;
1635
1636 if (Config.AsyncCD) {
1637 readThreadStart();
1638 }
1639 return 0;
1640}
1641
1642static long CALLBACK ISOclose(void) {
1643 int i;
1644
1645 if (cdHandle != NULL) {
1646 fclose(cdHandle);
1647 cdHandle = NULL;
1648 }
1649 if (subHandle != NULL) {
1650 fclose(subHandle);
1651 subHandle = NULL;
1652 }
1653 cddaHandle = NULL;
1654
1655 if (compr_img != NULL) {
1656 free(compr_img->index_table);
1657 free(compr_img);
1658 compr_img = NULL;
1659 }
1660
1661#ifdef HAVE_CHD
1662 if (chd_img != NULL) {
1663 chd_close(chd_img->chd);
1664 free(chd_img->buffer);
1665 free(chd_img);
1666 chd_img = NULL;
1667 }
1668#endif
1669
1670 for (i = 1; i <= numtracks; i++) {
1671 if (ti[i].handle != NULL) {
1672 fclose(ti[i].handle);
1673 ti[i].handle = NULL;
1674 }
1675 }
1676 numtracks = 0;
1677 ti[1].type = 0;
1678 UnloadSBI();
1679
1680 memset(cdbuffer, 0, sizeof(cdbuffer));
1681 CDR_getBuffer = ISOgetBuffer;
1682
1683 if (Config.AsyncCD) {
1684 readThreadStop();
1685 }
1686
1687 return 0;
1688}
1689
1690static long CALLBACK ISOinit(void) {
1691 assert(cdHandle == NULL);
1692 assert(subHandle == NULL);
1693
1694 return 0; // do nothing
1695}
1696
1697static long CALLBACK ISOshutdown(void) {
1698 ISOclose();
1699 return 0;
1700}
1701
1702// return Starting and Ending Track
1703// buffer:
1704// byte 0 - start track
1705// byte 1 - end track
1706static long CALLBACK ISOgetTN(unsigned char *buffer) {
1707 buffer[0] = 1;
1708
1709 if (numtracks > 0) {
1710 buffer[1] = numtracks;
1711 }
1712 else {
1713 buffer[1] = 1;
1714 }
1715
1716 return 0;
1717}
1718
1719// return Track Time
1720// buffer:
1721// byte 0 - frame
1722// byte 1 - second
1723// byte 2 - minute
1724static long CALLBACK ISOgetTD(unsigned char track, unsigned char *buffer) {
1725 if (track == 0) {
1726 unsigned int sect;
1727 unsigned char time[3];
1728 sect = msf2sec(ti[numtracks].start) + msf2sec(ti[numtracks].length);
1729 sec2msf(sect, (char *)time);
1730 buffer[2] = time[0];
1731 buffer[1] = time[1];
1732 buffer[0] = time[2];
1733 }
1734 else if (numtracks > 0 && track <= numtracks) {
1735 buffer[2] = ti[track].start[0];
1736 buffer[1] = ti[track].start[1];
1737 buffer[0] = ti[track].start[2];
1738 }
1739 else {
1740 buffer[2] = 0;
1741 buffer[1] = 2;
1742 buffer[0] = 0;
1743 }
1744
1745 return 0;
1746}
1747
1748// decode 'raw' subchannel data ripped by cdrdao
1749static void DecodeRawSubData(void) {
1750 unsigned char subQData[12];
1751 int i;
1752
1753 memset(subQData, 0, sizeof(subQData));
1754
1755 for (i = 0; i < 8 * 12; i++) {
1756 if (subbuffer[i] & (1 << 6)) { // only subchannel Q is needed
1757 subQData[i >> 3] |= (1 << (7 - (i & 7)));
1758 }
1759 }
1760
1761 memcpy(&subbuffer[12], subQData, 12);
1762}
1763
1764// read track
1765// time: byte 0 - minute; byte 1 - second; byte 2 - frame
1766// uses bcd format
1767static boolean CALLBACK ISOreadTrack(unsigned char *time) {
1768 int sector = MSF2SECT(btoi(time[0]), btoi(time[1]), btoi(time[2]));
1769 long ret;
1770
1771 if (cdHandle == NULL) {
1772 return 0;
1773 }
1774
1775 if (pregapOffset) {
1776 subChanMissing = FALSE;
1777 if (sector >= pregapOffset) {
1778 sector -= 2 * 75;
1779 if (sector < pregapOffset)
1780 subChanMissing = TRUE;
1781 }
1782 }
1783
1784 ret = cdimg_read_func(cdHandle, 0, cdbuffer, sector);
1785 if (ret < 0)
1786 return 0;
1787
1788 if (subHandle != NULL) {
1789 fseek(subHandle, sector * SUB_FRAMESIZE, SEEK_SET);
1790 if (fread(subbuffer, 1, SUB_FRAMESIZE, subHandle) != SUB_FRAMESIZE)
1791 /* Faulty subchannel data shouldn't cause a read failure */
1792 return 0;
1793
1794 if (subChanRaw) DecodeRawSubData();
1795 }
1796
1797 return 1;
1798}
1799
1800// plays cdda audio
1801// sector: byte 0 - minute; byte 1 - second; byte 2 - frame
1802// does NOT uses bcd format
1803static long CALLBACK ISOplay(void) {
1804 playing = TRUE;
1805 return 0;
1806}
1807
1808// stops cdda audio
1809static long CALLBACK ISOstop(void) {
1810 playing = FALSE;
1811 return 0;
1812}
1813
1814// gets subchannel data
1815static unsigned char* CALLBACK ISOgetBufferSub(void) {
1816 if ((subHandle != NULL || subChanMixed) && !subChanMissing) {
1817 return subbuffer;
1818 }
1819
1820 return NULL;
1821}
1822
1823static long CALLBACK ISOgetStatus(struct CdrStat *stat) {
1824 u32 sect;
1825
1826 CDR__getStatus(stat);
1827
1828 if (playing) {
1829 stat->Type = 0x02;
1830 stat->Status |= 0x80;
1831 }
1832 else {
1833 // BIOS - boot ID (CD type)
1834 stat->Type = ti[1].type;
1835 }
1836
1837 // relative -> absolute time
1838 sect = cddaCurPos;
1839 sec2msf(sect, (char *)stat->Time);
1840
1841 return 0;
1842}
1843
1844// read CDDA sector into buffer
1845long CALLBACK ISOreadCDDA(unsigned char m, unsigned char s, unsigned char f, unsigned char *buffer) {
1846 unsigned char msf[3] = {m, s, f};
1847 unsigned int file, track, track_start = 0;
1848 int ret;
1849
1850 cddaCurPos = msf2sec((char *)msf);
1851
1852 // find current track index
1853 for (track = numtracks; ; track--) {
1854 track_start = msf2sec(ti[track].start);
1855 if (track_start <= cddaCurPos)
1856 break;
1857 if (track == 1)
1858 break;
1859 }
1860
1861 // data tracks play silent
1862 if (ti[track].type != CDDA) {
1863 memset(buffer, 0, CD_FRAMESIZE_RAW);
1864 return 0;
1865 }
1866
1867 file = 1;
1868 if (multifile) {
1869 // find the file that contains this track
1870 for (file = track; file > 1; file--)
1871 if (ti[file].handle != NULL)
1872 break;
1873 }
1874
1875 ret = cdimg_read_func(ti[file].handle, ti[track].start_offset,
1876 buffer, cddaCurPos - track_start);
1877 if (ret != CD_FRAMESIZE_RAW) {
1878 memset(buffer, 0, CD_FRAMESIZE_RAW);
1879 return -1;
1880 }
1881
1882 if (cddaBigEndian) {
1883 int i;
1884 unsigned char tmp;
1885
1886 for (i = 0; i < CD_FRAMESIZE_RAW / 2; i++) {
1887 tmp = buffer[i * 2];
1888 buffer[i * 2] = buffer[i * 2 + 1];
1889 buffer[i * 2 + 1] = tmp;
1890 }
1891 }
1892
1893 return 0;
1894}
1895
1896void cdrIsoInit(void) {
1897 CDR_init = ISOinit;
1898 CDR_shutdown = ISOshutdown;
1899 CDR_open = ISOopen;
1900 CDR_close = ISOclose;
1901 CDR_getTN = ISOgetTN;
1902 CDR_getTD = ISOgetTD;
1903 CDR_readTrack = ISOreadTrack;
1904 CDR_getBuffer = ISOgetBuffer;
1905 CDR_play = ISOplay;
1906 CDR_stop = ISOstop;
1907 CDR_getBufferSub = ISOgetBufferSub;
1908 CDR_getStatus = ISOgetStatus;
1909 CDR_readCDDA = ISOreadCDDA;
1910
1911 CDR_getDriveLetter = CDR__getDriveLetter;
1912 CDR_configure = CDR__configure;
1913 CDR_test = CDR__test;
1914 CDR_about = CDR__about;
1915 CDR_setfilename = CDR__setfilename;
1916
1917 numtracks = 0;
1918}
1919
1920int cdrIsoActive(void) {
1921 return (cdHandle != NULL);
1922}