2dcaf49ba17793688b1b44169c2be60f216409b9
[pcsx_rearmed.git] / libpcsxcore / cdriso.c
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 #ifdef _WIN32
29 #define WIN32_LEAN_AND_MEAN
30 #include <process.h>
31 #include <windows.h>
32 #define strcasecmp _stricmp
33 #define usleep(x) Sleep((x) / 1000)
34 #else
35 #include <pthread.h>
36 #include <sys/time.h>
37 #include <unistd.h>
38 #endif
39 #include <errno.h>
40 #include <zlib.h>
41
42 #ifdef HAVE_CHD
43 #include "libchdr/chd.h"
44 #endif
45
46 #define OFF_T_MSB ((off_t)1 << (sizeof(off_t) * 8 - 1))
47
48 unsigned int cdrIsoMultidiskCount;
49 unsigned int cdrIsoMultidiskSelect;
50
51 static FILE *cdHandle = NULL;
52 static FILE *cddaHandle = NULL;
53 static FILE *subHandle = NULL;
54
55 static boolean subChanMixed = FALSE;
56 static boolean subChanRaw = FALSE;
57 static boolean subChanMissing = FALSE;
58
59 static boolean multifile = FALSE;
60
61 static unsigned char cdbuffer[CD_FRAMESIZE_RAW];
62 static unsigned char subbuffer[SUB_FRAMESIZE];
63
64 static boolean playing = FALSE;
65 static boolean cddaBigEndian = FALSE;
66 /* Frame offset into CD image where pregap data would be found if it was there.
67  * If a game seeks there we must *not* return subchannel data since it's
68  * not in the CD image, so that cdrom code can fake subchannel data instead.
69  * XXX: there could be multiple pregaps but PSX dumps only have one? */
70 static unsigned int pregapOffset;
71
72 static unsigned int cddaCurPos;
73
74 // compressed image stuff
75 static struct {
76         unsigned char buff_raw[16][CD_FRAMESIZE_RAW];
77         unsigned char buff_compressed[CD_FRAMESIZE_RAW * 16 + 100];
78         off_t *index_table;
79         unsigned int index_len;
80         unsigned int block_shift;
81         unsigned int current_block;
82         unsigned int sector_in_blk;
83 } *compr_img;
84
85 #ifdef HAVE_CHD
86 static struct {
87         unsigned char (*buffer)[CD_FRAMESIZE_RAW + SUB_FRAMESIZE];
88         chd_file* chd;
89         const chd_header* header;
90         unsigned int sectors_per_hunk;
91         unsigned int current_hunk;
92         unsigned int sector_in_hunk;
93 } *chd_img;
94 #endif
95
96 int (*cdimg_read_func)(FILE *f, unsigned int base, void *dest, int sector);
97
98 char* CALLBACK CDR__getDriveLetter(void);
99 long CALLBACK CDR__configure(void);
100 long CALLBACK CDR__test(void);
101 void CALLBACK CDR__about(void);
102 long CALLBACK CDR__setfilename(char *filename);
103 long CALLBACK CDR__getStatus(struct CdrStat *stat);
104
105 static void DecodeRawSubData(void);
106
107 struct trackinfo {
108         enum {DATA=1, CDDA} type;
109         char start[3];          // MSF-format
110         char length[3];         // MSF-format
111         FILE *handle;           // for multi-track images CDDA
112         unsigned int start_offset; // byte offset from start of above file
113 };
114
115 #define MAXTRACKS 100 /* How many tracks can a CD hold? */
116
117 static int numtracks = 0;
118 static struct trackinfo ti[MAXTRACKS];
119
120 // get a sector from a msf-array
121 static unsigned int msf2sec(char *msf) {
122         return ((msf[0] * 60 + msf[1]) * 75) + msf[2];
123 }
124
125 static void sec2msf(unsigned int s, char *msf) {
126         msf[0] = s / 75 / 60;
127         s = s - msf[0] * 75 * 60;
128         msf[1] = s / 75;
129         s = s - msf[1] * 75;
130         msf[2] = s;
131 }
132
133 // divide a string of xx:yy:zz into m, s, f
134 static void tok2msf(char *time, char *msf) {
135         char *token;
136
137         token = strtok(time, ":");
138         if (token) {
139                 msf[0] = atoi(token);
140         }
141         else {
142                 msf[0] = 0;
143         }
144
145         token = strtok(NULL, ":");
146         if (token) {
147                 msf[1] = atoi(token);
148         }
149         else {
150                 msf[1] = 0;
151         }
152
153         token = strtok(NULL, ":");
154         if (token) {
155                 msf[2] = atoi(token);
156         }
157         else {
158                 msf[2] = 0;
159         }
160 }
161
162 // this function tries to get the .toc file of the given .bin
163 // the necessary data is put into the ti (trackinformation)-array
164 static int parsetoc(const char *isofile) {
165         char                    tocname[MAXPATHLEN];
166         FILE                    *fi;
167         char                    linebuf[256], tmp[256], name[256];
168         char                    *token;
169         char                    time[20], time2[20];
170         unsigned int    t, sector_offs, sector_size;
171         unsigned int    current_zero_gap = 0;
172
173         numtracks = 0;
174
175         // copy name of the iso and change extension from .bin to .toc
176         strncpy(tocname, isofile, sizeof(tocname));
177         tocname[MAXPATHLEN - 1] = '\0';
178         if (strlen(tocname) >= 4) {
179                 strcpy(tocname + strlen(tocname) - 4, ".toc");
180         }
181         else {
182                 return -1;
183         }
184
185         if ((fi = fopen(tocname, "r")) == NULL) {
186                 // try changing extension to .cue (to satisfy some stupid tutorials)
187                 strcpy(tocname + strlen(tocname) - 4, ".cue");
188                 if ((fi = fopen(tocname, "r")) == NULL) {
189                         // if filename is image.toc.bin, try removing .bin (for Brasero)
190                         strcpy(tocname, isofile);
191                         t = strlen(tocname);
192                         if (t >= 8 && strcmp(tocname + t - 8, ".toc.bin") == 0) {
193                                 tocname[t - 4] = '\0';
194                                 if ((fi = fopen(tocname, "r")) == NULL) {
195                                         return -1;
196                                 }
197                         }
198                         else {
199                                 return -1;
200                         }
201                 }
202                 // check if it's really a TOC named as a .cue
203                 if (fgets(linebuf, sizeof(linebuf), fi) != NULL) {
204                 token = strtok(linebuf, " ");
205                 if (token && strncmp(token, "CD", 2) != 0 && strcmp(token, "CATALOG") != 0) {
206                         fclose(fi);
207                         return -1;
208                 }
209                 }
210                 fseek(fi, 0, SEEK_SET);
211         }
212
213         memset(&ti, 0, sizeof(ti));
214         cddaBigEndian = TRUE; // cdrdao uses big-endian for CD Audio
215
216         sector_size = CD_FRAMESIZE_RAW;
217         sector_offs = 2 * 75;
218
219         // parse the .toc file
220         while (fgets(linebuf, sizeof(linebuf), fi) != NULL) {
221                 // search for tracks
222                 strncpy(tmp, linebuf, sizeof(linebuf));
223                 token = strtok(tmp, " ");
224
225                 if (token == NULL) continue;
226
227                 if (!strcmp(token, "TRACK")) {
228                         sector_offs += current_zero_gap;
229                         current_zero_gap = 0;
230
231                         // get type of track
232                         token = strtok(NULL, " ");
233                         numtracks++;
234
235                         if (!strncmp(token, "MODE2_RAW", 9)) {
236                                 ti[numtracks].type = DATA;
237                                 sec2msf(2 * 75, ti[numtracks].start); // assume data track on 0:2:0
238
239                                 // check if this image contains mixed subchannel data
240                                 token = strtok(NULL, " ");
241                                 if (token != NULL && !strncmp(token, "RW", 2)) {
242                                         sector_size = CD_FRAMESIZE_RAW + SUB_FRAMESIZE;
243                                         subChanMixed = TRUE;
244                                         if (!strncmp(token, "RW_RAW", 6))
245                                                 subChanRaw = TRUE;
246                                 }
247                         }
248                         else if (!strncmp(token, "AUDIO", 5)) {
249                                 ti[numtracks].type = CDDA;
250                         }
251                 }
252                 else if (!strcmp(token, "DATAFILE")) {
253                         if (ti[numtracks].type == CDDA) {
254                                 sscanf(linebuf, "DATAFILE \"%[^\"]\" #%d %8s", name, &t, time2);
255                                 ti[numtracks].start_offset = t;
256                                 t = t / sector_size + sector_offs;
257                                 sec2msf(t, (char *)&ti[numtracks].start);
258                                 tok2msf((char *)&time2, (char *)&ti[numtracks].length);
259                         }
260                         else {
261                                 sscanf(linebuf, "DATAFILE \"%[^\"]\" %8s", name, time);
262                                 tok2msf((char *)&time, (char *)&ti[numtracks].length);
263                         }
264                 }
265                 else if (!strcmp(token, "FILE")) {
266                         sscanf(linebuf, "FILE \"%[^\"]\" #%d %8s %8s", name, &t, time, time2);
267                         tok2msf((char *)&time, (char *)&ti[numtracks].start);
268                         t += msf2sec(ti[numtracks].start) * sector_size;
269                         ti[numtracks].start_offset = t;
270                         t = t / sector_size + sector_offs;
271                         sec2msf(t, (char *)&ti[numtracks].start);
272                         tok2msf((char *)&time2, (char *)&ti[numtracks].length);
273                 }
274                 else if (!strcmp(token, "ZERO") || !strcmp(token, "SILENCE")) {
275                         // skip unneeded optional fields
276                         while (token != NULL) {
277                                 token = strtok(NULL, " ");
278                                 if (strchr(token, ':') != NULL)
279                                         break;
280                         }
281                         if (token != NULL) {
282                                 tok2msf(token, tmp);
283                                 current_zero_gap = msf2sec(tmp);
284                         }
285                         if (numtracks > 1) {
286                                 t = ti[numtracks - 1].start_offset;
287                                 t /= sector_size;
288                                 pregapOffset = t + msf2sec(ti[numtracks - 1].length);
289                         }
290                 }
291                 else if (!strcmp(token, "START")) {
292                         token = strtok(NULL, " ");
293                         if (token != NULL && strchr(token, ':')) {
294                                 tok2msf(token, tmp);
295                                 t = msf2sec(tmp);
296                                 ti[numtracks].start_offset += (t - current_zero_gap) * sector_size;
297                                 t = msf2sec(ti[numtracks].start) + t;
298                                 sec2msf(t, (char *)&ti[numtracks].start);
299                         }
300                 }
301         }
302
303         fclose(fi);
304
305         return 0;
306 }
307
308 // this function tries to get the .cue file of the given .bin
309 // the necessary data is put into the ti (trackinformation)-array
310 static int parsecue(const char *isofile) {
311         char                    cuename[MAXPATHLEN];
312         char                    filepath[MAXPATHLEN];
313         char                    *incue_fname;
314         FILE                    *fi;
315         char                    *token;
316         char                    time[20];
317         char                    *tmp;
318         char                    linebuf[256], tmpb[256], dummy[256];
319         unsigned int    incue_max_len;
320         unsigned int    t, file_len, mode, sector_offs;
321         unsigned int    sector_size = 2352;
322
323         numtracks = 0;
324
325         // copy name of the iso and change extension from .bin to .cue
326         strncpy(cuename, isofile, sizeof(cuename));
327         cuename[MAXPATHLEN - 1] = '\0';
328         if (strlen(cuename) >= 4) {
329                 // If 'isofile' is a '.cd<X>' file, use it as a .cue file
330                 //  and don't try to search the additional .cue file
331                 if (strncasecmp(cuename + strlen(cuename) - 4, ".cd", 3) != 0 )
332                 strcpy(cuename + strlen(cuename) - 4, ".cue");
333         }
334         else {
335                 return -1;
336         }
337
338         if ((fi = fopen(cuename, "r")) == NULL) {
339                 return -1;
340         }
341
342         // Some stupid tutorials wrongly tell users to use cdrdao to rip a
343         // "bin/cue" image, which is in fact a "bin/toc" image. So let's check
344         // that...
345         if (fgets(linebuf, sizeof(linebuf), fi) != NULL) {
346                 if (!strncmp(linebuf, "CD_ROM_XA", 9)) {
347                         // Don't proceed further, as this is actually a .toc file rather
348                         // than a .cue file.
349                         fclose(fi);
350                         return parsetoc(isofile);
351                 }
352                 fseek(fi, 0, SEEK_SET);
353         }
354
355         // build a path for files referenced in .cue
356         strncpy(filepath, cuename, sizeof(filepath));
357         tmp = strrchr(filepath, '/');
358         if (tmp == NULL)
359                 tmp = strrchr(filepath, '\\');
360         if (tmp != NULL)
361                 tmp++;
362         else
363                 tmp = filepath;
364         *tmp = 0;
365         filepath[sizeof(filepath) - 1] = 0;
366         incue_fname = tmp;
367         incue_max_len = sizeof(filepath) - (tmp - filepath) - 1;
368
369         memset(&ti, 0, sizeof(ti));
370
371         file_len = 0;
372         sector_offs = 2 * 75;
373
374         while (fgets(linebuf, sizeof(linebuf), fi) != NULL) {
375                 strncpy(dummy, linebuf, sizeof(linebuf));
376                 token = strtok(dummy, " ");
377
378                 if (token == NULL) {
379                         continue;
380                 }
381
382                 if (!strcmp(token, "TRACK")) {
383                         numtracks++;
384
385                         sector_size = 0;
386                         if (strstr(linebuf, "AUDIO") != NULL) {
387                                 ti[numtracks].type = CDDA;
388                                 sector_size = 2352;
389                         }
390                         else if (sscanf(linebuf, " TRACK %u MODE%u/%u", &t, &mode, &sector_size) == 3)
391                                 ti[numtracks].type = DATA;
392                         else {
393                                 SysPrintf(".cue: failed to parse TRACK\n");
394                                 ti[numtracks].type = numtracks == 1 ? DATA : CDDA;
395                         }
396                         if (sector_size == 0)
397                                 sector_size = 2352;
398                 }
399                 else if (!strcmp(token, "INDEX")) {
400                         if (sscanf(linebuf, " INDEX %02d %8s", &t, time) != 2)
401                                 SysPrintf(".cue: failed to parse INDEX\n");
402                         tok2msf(time, (char *)&ti[numtracks].start);
403
404                         t = msf2sec(ti[numtracks].start);
405                         ti[numtracks].start_offset = t * sector_size;
406                         t += sector_offs;
407                         sec2msf(t, ti[numtracks].start);
408
409                         // default track length to file length
410                         t = file_len - ti[numtracks].start_offset / sector_size;
411                         sec2msf(t, ti[numtracks].length);
412
413                         if (numtracks > 1 && ti[numtracks].handle == NULL) {
414                                 // this track uses the same file as the last,
415                                 // start of this track is last track's end
416                                 t = msf2sec(ti[numtracks].start) - msf2sec(ti[numtracks - 1].start);
417                                 sec2msf(t, ti[numtracks - 1].length);
418                         }
419                         if (numtracks > 1 && pregapOffset == -1)
420                                 pregapOffset = ti[numtracks].start_offset / sector_size;
421                 }
422                 else if (!strcmp(token, "PREGAP")) {
423                         if (sscanf(linebuf, " PREGAP %8s", time) == 1) {
424                                 tok2msf(time, dummy);
425                                 sector_offs += msf2sec(dummy);
426                         }
427                         pregapOffset = -1; // mark to fill track start_offset
428                 }
429                 else if (!strcmp(token, "FILE")) {
430                         t = sscanf(linebuf, " FILE \"%255[^\"]\"", tmpb);
431                         if (t != 1)
432                                 sscanf(linebuf, " FILE %255s", tmpb);
433
434                         // absolute path?
435                         ti[numtracks + 1].handle = fopen(tmpb, "rb");
436                         if (ti[numtracks + 1].handle == NULL) {
437                                 // relative to .cue?
438                                 tmp = strrchr(tmpb, '\\');
439                                 if (tmp == NULL)
440                                         tmp = strrchr(tmpb, '/');
441                                 if (tmp != NULL)
442                                         tmp++;
443                                 else
444                                         tmp = tmpb;
445                                 strncpy(incue_fname, tmp, incue_max_len);
446                                 ti[numtracks + 1].handle = fopen(filepath, "rb");
447                         }
448
449                         // update global offset if this is not first file in this .cue
450                         if (numtracks + 1 > 1) {
451                                 multifile = 1;
452                                 sector_offs += file_len;
453                         }
454
455                         file_len = 0;
456                         if (ti[numtracks + 1].handle == NULL) {
457                                 SysPrintf(_("\ncould not open: %s\n"), filepath);
458                                 continue;
459                         }
460                         fseek(ti[numtracks + 1].handle, 0, SEEK_END);
461                         file_len = ftell(ti[numtracks + 1].handle) / 2352;
462
463                         if (numtracks == 0 && strlen(isofile) >= 4 &&
464                                 (strcmp(isofile + strlen(isofile) - 4, ".cue") == 0 ||
465                                 strncasecmp(isofile + strlen(isofile) - 4, ".cd", 3) == 0)) {
466                                 // user selected .cue/.cdX as image file, use it's data track instead
467                                 fclose(cdHandle);
468                                 cdHandle = fopen(filepath, "rb");
469                         }
470                 }
471         }
472
473         fclose(fi);
474
475         // if there are no tracks detected, then it's not a cue file
476         if (!numtracks)
477                 return -1;
478
479         return 0;
480 }
481
482 // this function tries to get the .ccd file of the given .img
483 // the necessary data is put into the ti (trackinformation)-array
484 static int parseccd(const char *isofile) {
485         char                    ccdname[MAXPATHLEN];
486         FILE                    *fi;
487         char                    linebuf[256];
488         unsigned int    t;
489
490         numtracks = 0;
491
492         // copy name of the iso and change extension from .img to .ccd
493         strncpy(ccdname, isofile, sizeof(ccdname));
494         ccdname[MAXPATHLEN - 1] = '\0';
495         if (strlen(ccdname) >= 4) {
496                 strcpy(ccdname + strlen(ccdname) - 4, ".ccd");
497         }
498         else {
499                 return -1;
500         }
501
502         if ((fi = fopen(ccdname, "r")) == NULL) {
503                 return -1;
504         }
505
506         memset(&ti, 0, sizeof(ti));
507
508         while (fgets(linebuf, sizeof(linebuf), fi) != NULL) {
509                 if (!strncmp(linebuf, "[TRACK", 6)){
510                         numtracks++;
511                 }
512                 else if (!strncmp(linebuf, "MODE=", 5)) {
513                         sscanf(linebuf, "MODE=%d", &t);
514                         ti[numtracks].type = ((t == 0) ? CDDA : DATA);
515                 }
516                 else if (!strncmp(linebuf, "INDEX 1=", 8)) {
517                         sscanf(linebuf, "INDEX 1=%d", &t);
518                         sec2msf(t + 2 * 75, ti[numtracks].start);
519                         ti[numtracks].start_offset = t * 2352;
520
521                         // If we've already seen another track, this is its end
522                         if (numtracks > 1) {
523                                 t = msf2sec(ti[numtracks].start) - msf2sec(ti[numtracks - 1].start);
524                                 sec2msf(t, ti[numtracks - 1].length);
525                         }
526                 }
527         }
528
529         fclose(fi);
530
531         // Fill out the last track's end based on size
532         if (numtracks >= 1) {
533                 fseek(cdHandle, 0, SEEK_END);
534                 t = ftell(cdHandle) / 2352 - msf2sec(ti[numtracks].start) + 2 * 75;
535                 sec2msf(t, ti[numtracks].length);
536         }
537
538         return 0;
539 }
540
541 // this function tries to get the .mds file of the given .mdf
542 // the necessary data is put into the ti (trackinformation)-array
543 static int parsemds(const char *isofile) {
544         char                    mdsname[MAXPATHLEN];
545         FILE                    *fi;
546         unsigned int    offset, extra_offset, l, i;
547         unsigned short  s;
548
549         numtracks = 0;
550
551         // copy name of the iso and change extension from .mdf to .mds
552         strncpy(mdsname, isofile, sizeof(mdsname));
553         mdsname[MAXPATHLEN - 1] = '\0';
554         if (strlen(mdsname) >= 4) {
555                 strcpy(mdsname + strlen(mdsname) - 4, ".mds");
556         }
557         else {
558                 return -1;
559         }
560
561         if ((fi = fopen(mdsname, "rb")) == NULL) {
562                 return -1;
563         }
564
565         memset(&ti, 0, sizeof(ti));
566
567         // check if it's a valid mds file
568         if (fread(&i, 1, sizeof(i), fi) != sizeof(i))
569                 goto fail_io;
570         i = SWAP32(i);
571         if (i != 0x4944454D) {
572                 // not an valid mds file
573                 fclose(fi);
574                 return -1;
575         }
576
577         // get offset to session block
578         fseek(fi, 0x50, SEEK_SET);
579         if (fread(&offset, 1, sizeof(offset), fi) != sizeof(offset))
580                 goto fail_io;
581         offset = SWAP32(offset);
582
583         // get total number of tracks
584         offset += 14;
585         fseek(fi, offset, SEEK_SET);
586         if (fread(&s, 1, sizeof(s), fi) != sizeof(s))
587                 goto fail_io;
588         s = SWAP16(s);
589         numtracks = s;
590
591         // get offset to track blocks
592         fseek(fi, 4, SEEK_CUR);
593         if (fread(&offset, 1, sizeof(offset), fi) != sizeof(offset))
594                 goto fail_io;
595         offset = SWAP32(offset);
596
597         // skip lead-in data
598         while (1) {
599                 fseek(fi, offset + 4, SEEK_SET);
600                 if (fgetc(fi) < 0xA0) {
601                         break;
602                 }
603                 offset += 0x50;
604         }
605
606         // check if the image contains mixed subchannel data
607         fseek(fi, offset + 1, SEEK_SET);
608         subChanMixed = subChanRaw = (fgetc(fi) ? TRUE : FALSE);
609
610         // read track data
611         for (i = 1; i <= numtracks; i++) {
612                 fseek(fi, offset, SEEK_SET);
613
614                 // get the track type
615                 ti[i].type = ((fgetc(fi) == 0xA9) ? CDDA : DATA);
616                 fseek(fi, 8, SEEK_CUR);
617
618                 // get the track starting point
619                 ti[i].start[0] = fgetc(fi);
620                 ti[i].start[1] = fgetc(fi);
621                 ti[i].start[2] = fgetc(fi);
622
623                 if (fread(&extra_offset, 1, sizeof(extra_offset), fi) != sizeof(extra_offset))
624                         goto fail_io;
625                 extra_offset = SWAP32(extra_offset);
626
627                 // get track start offset (in .mdf)
628                 fseek(fi, offset + 0x28, SEEK_SET);
629                 if (fread(&l, 1, sizeof(l), fi) != sizeof(l))
630                         goto fail_io;
631                 l = SWAP32(l);
632                 ti[i].start_offset = l;
633
634                 // get pregap
635                 fseek(fi, extra_offset, SEEK_SET);
636                 if (fread(&l, 1, sizeof(l), fi) != sizeof(l))
637                         goto fail_io;
638                 l = SWAP32(l);
639                 if (l != 0 && i > 1)
640                         pregapOffset = msf2sec(ti[i].start);
641
642                 // get the track length
643                 if (fread(&l, 1, sizeof(l), fi) != sizeof(l))
644                         goto fail_io;
645                 l = SWAP32(l);
646                 sec2msf(l, ti[i].length);
647
648                 offset += 0x50;
649         }
650         fclose(fi);
651         return 0;
652 fail_io:
653 #ifndef NDEBUG
654         SysPrintf(_("File IO error in <%s:%s>.\n"), __FILE__, __func__);
655 #endif
656         fclose(fi);
657         return -1;
658 }
659
660 static int handlepbp(const char *isofile) {
661         struct {
662                 unsigned int sig;
663                 unsigned int dontcare[8];
664                 unsigned int psar_offs;
665         } pbp_hdr;
666         struct {
667                 unsigned char type;
668                 unsigned char pad0;
669                 unsigned char track;
670                 char index0[3];
671                 char pad1;
672                 char index1[3];
673         } toc_entry;
674         struct {
675                 unsigned int offset;
676                 unsigned int size;
677                 unsigned int dontcare[6];
678         } index_entry;
679         char psar_sig[11];
680         off_t psisoimg_offs, cdimg_base;
681         unsigned int t, cd_length;
682         unsigned int offsettab[8];
683         const char *ext = NULL;
684         int i, ret;
685
686         if (strlen(isofile) >= 4)
687                 ext = isofile + strlen(isofile) - 4;
688         if (ext == NULL || (strcmp(ext, ".pbp") != 0 && strcmp(ext, ".PBP") != 0))
689                 return -1;
690
691         fseeko(cdHandle, 0, SEEK_SET);
692
693         numtracks = 0;
694
695         ret = fread(&pbp_hdr, 1, sizeof(pbp_hdr), cdHandle);
696         if (ret != sizeof(pbp_hdr)) {
697                 SysPrintf("failed to read pbp\n");
698                 goto fail_io;
699         }
700
701         ret = fseeko(cdHandle, pbp_hdr.psar_offs, SEEK_SET);
702         if (ret != 0) {
703                 SysPrintf("failed to seek to %x\n", pbp_hdr.psar_offs);
704                 goto fail_io;
705         }
706
707         psisoimg_offs = pbp_hdr.psar_offs;
708         if (fread(psar_sig, 1, sizeof(psar_sig), cdHandle) != sizeof(psar_sig))
709                 goto fail_io;
710         psar_sig[10] = 0;
711         if (strcmp(psar_sig, "PSTITLEIMG") == 0) {
712                 // multidisk image?
713                 ret = fseeko(cdHandle, pbp_hdr.psar_offs + 0x200, SEEK_SET);
714                 if (ret != 0) {
715                         SysPrintf("failed to seek to %x\n", pbp_hdr.psar_offs + 0x200);
716                         goto fail_io;
717                 }
718
719                 if (fread(&offsettab, 1, sizeof(offsettab), cdHandle) != sizeof(offsettab)) {
720                         SysPrintf("failed to read offsettab\n");
721                         goto fail_io;
722                 }
723
724                 for (i = 0; i < sizeof(offsettab) / sizeof(offsettab[0]); i++) {
725                         if (offsettab[i] == 0)
726                                 break;
727                 }
728                 cdrIsoMultidiskCount = i;
729                 if (cdrIsoMultidiskCount == 0) {
730                         SysPrintf("multidisk eboot has 0 images?\n");
731                         goto fail_io;
732                 }
733
734                 if (cdrIsoMultidiskSelect >= cdrIsoMultidiskCount)
735                         cdrIsoMultidiskSelect = 0;
736
737                 psisoimg_offs += offsettab[cdrIsoMultidiskSelect];
738
739                 ret = fseeko(cdHandle, psisoimg_offs, SEEK_SET);
740                 if (ret != 0) {
741                         SysPrintf("failed to seek to %llx\n", (long long)psisoimg_offs);
742                         goto fail_io;
743                 }
744
745                 if (fread(psar_sig, 1, sizeof(psar_sig), cdHandle) != sizeof(psar_sig))
746                         goto fail_io;
747                 psar_sig[10] = 0;
748         }
749
750         if (strcmp(psar_sig, "PSISOIMG00") != 0) {
751                 SysPrintf("bad psar_sig: %s\n", psar_sig);
752                 goto fail_io;
753         }
754
755         // seek to TOC
756         ret = fseeko(cdHandle, psisoimg_offs + 0x800, SEEK_SET);
757         if (ret != 0) {
758                 SysPrintf("failed to seek to %llx\n", (long long)psisoimg_offs + 0x800);
759                 goto fail_io;
760         }
761
762         // first 3 entries are special
763         fseek(cdHandle, sizeof(toc_entry), SEEK_CUR);
764         if (fread(&toc_entry, 1, sizeof(toc_entry), cdHandle) != sizeof(toc_entry))
765                 goto fail_io;
766         numtracks = btoi(toc_entry.index1[0]);
767
768         if (fread(&toc_entry, 1, sizeof(toc_entry), cdHandle) != sizeof(toc_entry))
769                 goto fail_io;
770         cd_length = btoi(toc_entry.index1[0]) * 60 * 75 +
771                 btoi(toc_entry.index1[1]) * 75 + btoi(toc_entry.index1[2]);
772
773         for (i = 1; i <= numtracks; i++) {
774                 if (fread(&toc_entry, 1, sizeof(toc_entry), cdHandle) != sizeof(toc_entry))
775                         goto fail_io;
776
777                 ti[i].type = (toc_entry.type == 1) ? CDDA : DATA;
778
779                 ti[i].start_offset = btoi(toc_entry.index0[0]) * 60 * 75 +
780                         btoi(toc_entry.index0[1]) * 75 + btoi(toc_entry.index0[2]);
781                 ti[i].start_offset *= 2352;
782                 ti[i].start[0] = btoi(toc_entry.index1[0]);
783                 ti[i].start[1] = btoi(toc_entry.index1[1]);
784                 ti[i].start[2] = btoi(toc_entry.index1[2]);
785
786                 if (i > 1) {
787                         t = msf2sec(ti[i].start) - msf2sec(ti[i - 1].start);
788                         sec2msf(t, ti[i - 1].length);
789                 }
790         }
791         t = cd_length - ti[numtracks].start_offset / 2352;
792         sec2msf(t, ti[numtracks].length);
793
794         // seek to ISO index
795         ret = fseeko(cdHandle, psisoimg_offs + 0x4000, SEEK_SET);
796         if (ret != 0) {
797                 SysPrintf("failed to seek to ISO index\n");
798                 goto fail_io;
799         }
800
801         compr_img = calloc(1, sizeof(*compr_img));
802         if (compr_img == NULL)
803                 goto fail_io;
804
805         compr_img->block_shift = 4;
806         compr_img->current_block = (unsigned int)-1;
807
808         compr_img->index_len = (0x100000 - 0x4000) / sizeof(index_entry);
809         compr_img->index_table = malloc((compr_img->index_len + 1) * sizeof(compr_img->index_table[0]));
810         if (compr_img->index_table == NULL)
811                 goto fail_io;
812
813         cdimg_base = psisoimg_offs + 0x100000;
814         for (i = 0; i < compr_img->index_len; i++) {
815                 ret = fread(&index_entry, 1, sizeof(index_entry), cdHandle);
816                 if (ret != sizeof(index_entry)) {
817                         SysPrintf("failed to read index_entry #%d\n", i);
818                         goto fail_index;
819                 }
820
821                 if (index_entry.size == 0)
822                         break;
823
824                 compr_img->index_table[i] = cdimg_base + index_entry.offset;
825         }
826         compr_img->index_table[i] = cdimg_base + index_entry.offset + index_entry.size;
827
828         return 0;
829
830 fail_index:
831         free(compr_img->index_table);
832         compr_img->index_table = NULL;
833         goto done;
834
835 fail_io:
836 #ifndef NDEBUG
837         SysPrintf(_("File IO error in <%s:%s>.\n"), __FILE__, __func__);
838 #endif
839
840 done:
841         if (compr_img != NULL) {
842                 free(compr_img);
843                 compr_img = NULL;
844         }
845         return -1;
846 }
847
848 static int handlecbin(const char *isofile) {
849         struct
850         {
851                 char magic[4];
852                 unsigned int header_size;
853                 unsigned long long total_bytes;
854                 unsigned int block_size;
855                 unsigned char ver;              // 1
856                 unsigned char align;
857                 unsigned char rsv_06[2];
858         } ciso_hdr;
859         const char *ext = NULL;
860         unsigned int *index_table = NULL;
861         unsigned int index = 0, plain;
862         int i, ret;
863
864         if (strlen(isofile) >= 5)
865                 ext = isofile + strlen(isofile) - 5;
866         if (ext == NULL || (strcasecmp(ext + 1, ".cbn") != 0 && strcasecmp(ext, ".cbin") != 0))
867                 return -1;
868
869         fseek(cdHandle, 0, SEEK_SET);
870
871         ret = fread(&ciso_hdr, 1, sizeof(ciso_hdr), cdHandle);
872         if (ret != sizeof(ciso_hdr)) {
873                 SysPrintf("failed to read ciso header\n");
874                 return -1;
875         }
876
877         if (strncmp(ciso_hdr.magic, "CISO", 4) != 0 || ciso_hdr.total_bytes <= 0 || ciso_hdr.block_size <= 0) {
878                 SysPrintf("bad ciso header\n");
879                 return -1;
880         }
881         if (ciso_hdr.header_size != 0 && ciso_hdr.header_size != sizeof(ciso_hdr)) {
882                 ret = fseeko(cdHandle, ciso_hdr.header_size, SEEK_SET);
883                 if (ret != 0) {
884                         SysPrintf("failed to seek to %x\n", ciso_hdr.header_size);
885                         return -1;
886                 }
887         }
888
889         compr_img = calloc(1, sizeof(*compr_img));
890         if (compr_img == NULL)
891                 goto fail_io;
892
893         compr_img->block_shift = 0;
894         compr_img->current_block = (unsigned int)-1;
895
896         compr_img->index_len = ciso_hdr.total_bytes / ciso_hdr.block_size;
897         index_table = malloc((compr_img->index_len + 1) * sizeof(index_table[0]));
898         if (index_table == NULL)
899                 goto fail_io;
900
901         ret = fread(index_table, sizeof(index_table[0]), compr_img->index_len, cdHandle);
902         if (ret != compr_img->index_len) {
903                 SysPrintf("failed to read index table\n");
904                 goto fail_index;
905         }
906
907         compr_img->index_table = malloc((compr_img->index_len + 1) * sizeof(compr_img->index_table[0]));
908         if (compr_img->index_table == NULL)
909                 goto fail_index;
910
911         for (i = 0; i < compr_img->index_len + 1; i++) {
912                 index = index_table[i];
913                 plain = index & 0x80000000;
914                 index &= 0x7fffffff;
915                 compr_img->index_table[i] = (off_t)index << ciso_hdr.align;
916                 if (plain)
917                         compr_img->index_table[i] |= OFF_T_MSB;
918         }
919
920         return 0;
921
922 fail_index:
923         free(index_table);
924 fail_io:
925         if (compr_img != NULL) {
926                 free(compr_img);
927                 compr_img = NULL;
928         }
929         return -1;
930 }
931
932 #ifdef HAVE_CHD
933 static int handlechd(const char *isofile) {
934         int frame_offset = 0;
935         int file_offset = 0;
936
937         chd_img = calloc(1, sizeof(*chd_img));
938         if (chd_img == NULL)
939                 goto fail_io;
940
941         if(chd_open(isofile, CHD_OPEN_READ, NULL, &chd_img->chd) != CHDERR_NONE)
942                 goto fail_io;
943
944         if (Config.CHD_Precache && (chd_precache(chd_img->chd) != CHDERR_NONE))
945                 goto fail_io;
946
947         chd_img->header = chd_get_header(chd_img->chd);
948
949         chd_img->buffer = malloc(chd_img->header->hunkbytes);
950         if (chd_img->buffer == NULL)
951                 goto fail_io;
952
953         chd_img->sectors_per_hunk = chd_img->header->hunkbytes / (CD_FRAMESIZE_RAW + SUB_FRAMESIZE);
954         chd_img->current_hunk = (unsigned int)-1;
955
956         cddaBigEndian = TRUE;
957
958         numtracks = 0;
959         memset(ti, 0, sizeof(ti));
960
961         while (1)
962         {
963                 struct {
964                         char type[64];
965                         char subtype[32];
966                         char pgtype[32];
967                         char pgsub[32];
968                         uint32_t track;
969                         uint32_t frames;
970                         uint32_t pregap;
971                         uint32_t postgap;
972                 } md = {};
973                 char meta[256];
974                 uint32_t meta_size = 0;
975
976                 if (chd_get_metadata(chd_img->chd, CDROM_TRACK_METADATA2_TAG, numtracks, meta, sizeof(meta), &meta_size, NULL, NULL) == CHDERR_NONE)
977                         sscanf(meta, CDROM_TRACK_METADATA2_FORMAT, &md.track, md.type, md.subtype, &md.frames, &md.pregap, md.pgtype, md.pgsub, &md.postgap);
978                 else if (chd_get_metadata(chd_img->chd, CDROM_TRACK_METADATA_TAG, numtracks, meta, sizeof(meta), &meta_size, NULL, NULL) == CHDERR_NONE)
979                         sscanf(meta, CDROM_TRACK_METADATA_FORMAT, &md.track, md.type, md.subtype, &md.frames);
980                 else
981                         break;
982
983                 if(md.track == 1)
984                         md.pregap = 150;
985                 else
986                         sec2msf(msf2sec(ti[md.track-1].length) + md.pregap, ti[md.track-1].length);
987
988                 ti[md.track].type = !strncmp(md.type, "AUDIO", 5) ? CDDA : DATA;
989
990                 sec2msf(frame_offset + md.pregap, ti[md.track].start);
991                 sec2msf(md.frames, ti[md.track].length);
992
993                 ti[md.track].start_offset = file_offset;
994
995                 frame_offset += md.pregap + md.frames + md.postgap;
996                 file_offset += md.frames + md.postgap;
997                 numtracks++;
998         }
999
1000         if (numtracks)
1001                 return 0;
1002
1003 fail_io:
1004         if (chd_img != NULL) {
1005                 free(chd_img->buffer);
1006                 free(chd_img);
1007                 chd_img = NULL;
1008         }
1009         return -1;
1010 }
1011 #endif
1012
1013 // this function tries to get the .sub file of the given .img
1014 static int opensubfile(const char *isoname) {
1015         char            subname[MAXPATHLEN];
1016
1017         // copy name of the iso and change extension from .img to .sub
1018         strncpy(subname, isoname, sizeof(subname));
1019         subname[MAXPATHLEN - 1] = '\0';
1020         if (strlen(subname) >= 4) {
1021                 strcpy(subname + strlen(subname) - 4, ".sub");
1022         }
1023         else {
1024                 return -1;
1025         }
1026
1027         subHandle = fopen(subname, "rb");
1028         if (subHandle == NULL) {
1029                 return -1;
1030         }
1031
1032         return 0;
1033 }
1034
1035 static int opensbifile(const char *isoname) {
1036         char            sbiname[MAXPATHLEN], disknum[MAXPATHLEN] = "0";
1037         int             s;
1038
1039         strncpy(sbiname, isoname, sizeof(sbiname));
1040         sbiname[MAXPATHLEN - 1] = '\0';
1041         if (strlen(sbiname) >= 4) {
1042                 if (cdrIsoMultidiskCount > 1) {
1043                         sprintf(disknum, "_%i.sbi", cdrIsoMultidiskSelect + 1);
1044                         strcpy(sbiname + strlen(sbiname) - 4, disknum);
1045                 }
1046                 else
1047                 strcpy(sbiname + strlen(sbiname) - 4, ".sbi");
1048         }
1049         else {
1050                 return -1;
1051         }
1052
1053         fseek(cdHandle, 0, SEEK_END);
1054         s = ftell(cdHandle) / 2352;
1055
1056         return LoadSBI(sbiname, s);
1057 }
1058
1059 static int cdread_normal(FILE *f, unsigned int base, void *dest, int sector)
1060 {
1061         fseek(f, base + sector * CD_FRAMESIZE_RAW, SEEK_SET);
1062         return fread(dest, 1, CD_FRAMESIZE_RAW, f);
1063 }
1064
1065 static int cdread_sub_mixed(FILE *f, unsigned int base, void *dest, int sector)
1066 {
1067         int ret;
1068
1069         fseek(f, base + sector * (CD_FRAMESIZE_RAW + SUB_FRAMESIZE), SEEK_SET);
1070         ret = fread(dest, 1, CD_FRAMESIZE_RAW, f);
1071         if (fread(subbuffer, 1, SUB_FRAMESIZE, f) != SUB_FRAMESIZE)
1072                 goto fail_io;
1073
1074         if (subChanRaw) DecodeRawSubData();
1075         goto done;
1076
1077 fail_io:
1078 #ifndef NDEBUG
1079         SysPrintf(_("File IO error in <%s:%s>.\n"), __FILE__, __func__);
1080 #endif
1081
1082 done:
1083         return ret;
1084 }
1085
1086 static int uncompress2_pcsx(void *out, unsigned long *out_size, void *in, unsigned long in_size)
1087 {
1088         static z_stream z;
1089         int ret = 0;
1090
1091         if (z.zalloc == NULL) {
1092                 // XXX: one-time leak here..
1093                 z.next_in = Z_NULL;
1094                 z.avail_in = 0;
1095                 z.zalloc = Z_NULL;
1096                 z.zfree = Z_NULL;
1097                 z.opaque = Z_NULL;
1098                 ret = inflateInit2(&z, -15);
1099         }
1100         else
1101                 ret = inflateReset(&z);
1102         if (ret != Z_OK)
1103                 return ret;
1104
1105         z.next_in = in;
1106         z.avail_in = in_size;
1107         z.next_out = out;
1108         z.avail_out = *out_size;
1109
1110         ret = inflate(&z, Z_NO_FLUSH);
1111         //inflateEnd(&z);
1112
1113         *out_size -= z.avail_out;
1114         return ret == 1 ? 0 : ret;
1115 }
1116
1117 static int cdread_compressed(FILE *f, unsigned int base, void *dest, int sector)
1118 {
1119         unsigned long cdbuffer_size, cdbuffer_size_expect;
1120         unsigned int size;
1121         int is_compressed;
1122         off_t start_byte;
1123         int ret, block;
1124
1125         if (base)
1126                 sector += base / 2352;
1127
1128         block = sector >> compr_img->block_shift;
1129         compr_img->sector_in_blk = sector & ((1 << compr_img->block_shift) - 1);
1130
1131         if (block == compr_img->current_block) {
1132                 //printf("hit sect %d\n", sector);
1133                 goto finish;
1134         }
1135
1136         if (sector >= compr_img->index_len * 16) {
1137                 SysPrintf("sector %d is past img end\n", sector);
1138                 return -1;
1139         }
1140
1141         start_byte = compr_img->index_table[block] & ~OFF_T_MSB;
1142         if (fseeko(cdHandle, start_byte, SEEK_SET) != 0) {
1143                 SysPrintf("seek error for block %d at %llx: ",
1144                         block, (long long)start_byte);
1145                 perror(NULL);
1146                 return -1;
1147         }
1148
1149         is_compressed = !(compr_img->index_table[block] & OFF_T_MSB);
1150         size = (compr_img->index_table[block + 1] & ~OFF_T_MSB) - start_byte;
1151         if (size > sizeof(compr_img->buff_compressed)) {
1152                 SysPrintf("block %d is too large: %u\n", block, size);
1153                 return -1;
1154         }
1155
1156         if (fread(is_compressed ? compr_img->buff_compressed : compr_img->buff_raw[0],
1157                                 1, size, cdHandle) != size) {
1158                 SysPrintf("read error for block %d at %x: ", block, start_byte);
1159                 perror(NULL);
1160                 return -1;
1161         }
1162
1163         if (is_compressed) {
1164                 cdbuffer_size_expect = sizeof(compr_img->buff_raw[0]) << compr_img->block_shift;
1165                 cdbuffer_size = cdbuffer_size_expect;
1166                 ret = uncompress2_pcsx(compr_img->buff_raw[0], &cdbuffer_size, compr_img->buff_compressed, size);
1167                 if (ret != 0) {
1168                         SysPrintf("uncompress failed with %d for block %d, sector %d\n",
1169                                         ret, block, sector);
1170                         return -1;
1171                 }
1172                 if (cdbuffer_size != cdbuffer_size_expect)
1173                         SysPrintf("cdbuffer_size: %lu != %lu, sector %d\n", cdbuffer_size,
1174                                         cdbuffer_size_expect, sector);
1175         }
1176
1177         // done at last!
1178         compr_img->current_block = block;
1179
1180 finish:
1181         if (dest != cdbuffer) // copy avoid HACK
1182                 memcpy(dest, compr_img->buff_raw[compr_img->sector_in_blk],
1183                         CD_FRAMESIZE_RAW);
1184         return CD_FRAMESIZE_RAW;
1185 }
1186
1187 #ifdef HAVE_CHD
1188 static int cdread_chd(FILE *f, unsigned int base, void *dest, int sector)
1189 {
1190         int hunk;
1191
1192         if (base)
1193                 sector += base;
1194
1195         hunk = sector / chd_img->sectors_per_hunk;
1196         chd_img->sector_in_hunk = sector % chd_img->sectors_per_hunk;
1197
1198         if (hunk != chd_img->current_hunk)
1199         {
1200                 chd_read(chd_img->chd, hunk, chd_img->buffer);
1201                 chd_img->current_hunk = hunk;
1202         }
1203
1204         if (dest != cdbuffer) // copy avoid HACK
1205                 memcpy(dest, chd_img->buffer[chd_img->sector_in_hunk],
1206                         CD_FRAMESIZE_RAW);
1207         return CD_FRAMESIZE_RAW;
1208 }
1209 #endif
1210
1211 static int cdread_2048(FILE *f, unsigned int base, void *dest, int sector)
1212 {
1213         int ret;
1214
1215         fseek(f, base + sector * 2048, SEEK_SET);
1216         ret = fread((char *)dest + 12 * 2, 1, 2048, f);
1217
1218         // not really necessary, fake mode 2 header
1219         memset(cdbuffer, 0, 12 * 2);
1220         sec2msf(sector + 2 * 75, (char *)&cdbuffer[12]);
1221         cdbuffer[12 + 3] = 1;
1222
1223         return ret;
1224 }
1225
1226 static unsigned char * CALLBACK ISOgetBuffer_compr(void) {
1227         return compr_img->buff_raw[compr_img->sector_in_blk] + 12;
1228 }
1229
1230 #ifdef HAVE_CHD
1231 static unsigned char * CALLBACK ISOgetBuffer_chd(void) {
1232         return chd_img->buffer[chd_img->sector_in_hunk] + 12;
1233 }
1234 #endif
1235
1236 static unsigned char * CALLBACK ISOgetBuffer(void) {
1237         return cdbuffer + 12;
1238 }
1239
1240 static void PrintTracks(void) {
1241         int i;
1242
1243         for (i = 1; i <= numtracks; i++) {
1244                 SysPrintf(_("Track %.2d (%s) - Start %.2d:%.2d:%.2d, Length %.2d:%.2d:%.2d\n"),
1245                         i, (ti[i].type == DATA ? "DATA" : "AUDIO"),
1246                         ti[i].start[0], ti[i].start[1], ti[i].start[2],
1247                         ti[i].length[0], ti[i].length[1], ti[i].length[2]);
1248         }
1249 }
1250
1251 // This function is invoked by the front-end when opening an ISO
1252 // file for playback
1253 static long CALLBACK ISOopen(void) {
1254         boolean isMode1ISO = FALSE;
1255         char alt_bin_filename[MAXPATHLEN];
1256         const char *bin_filename;
1257         char image_str[1024] = {0};
1258
1259         if (cdHandle != NULL) {
1260                 return 0; // it's already open
1261         }
1262
1263         cdHandle = fopen(GetIsoFile(), "rb");
1264         if (cdHandle == NULL) {
1265                 SysPrintf(_("Could't open '%s' for reading: %s\n"),
1266                         GetIsoFile(), strerror(errno));
1267                 return -1;
1268         }
1269
1270         sprintf(image_str, "Loaded CD Image: %s", GetIsoFile());
1271
1272         cddaBigEndian = FALSE;
1273         subChanMixed = FALSE;
1274         subChanRaw = FALSE;
1275         pregapOffset = 0;
1276         cdrIsoMultidiskCount = 1;
1277         multifile = 0;
1278
1279         CDR_getBuffer = ISOgetBuffer;
1280         cdimg_read_func = cdread_normal;
1281
1282         if (parsetoc(GetIsoFile()) == 0) {
1283                 strcat(image_str, "[+toc]");
1284         }
1285         else if (parseccd(GetIsoFile()) == 0) {
1286                 strcat(image_str, "[+ccd]");
1287         }
1288         else if (parsemds(GetIsoFile()) == 0) {
1289                 strcat(image_str, "[+mds]");
1290         }
1291         else if (parsecue(GetIsoFile()) == 0) {
1292                 strcat(image_str, "[+cue]");
1293         }
1294         if (handlepbp(GetIsoFile()) == 0) {
1295                 strcat(image_str, "[+pbp]");
1296                 CDR_getBuffer = ISOgetBuffer_compr;
1297                 cdimg_read_func = cdread_compressed;
1298         }
1299         else if (handlecbin(GetIsoFile()) == 0) {
1300                 strcat(image_str, "[+cbin]");
1301                 CDR_getBuffer = ISOgetBuffer_compr;
1302                 cdimg_read_func = cdread_compressed;
1303         }
1304 #ifdef HAVE_CHD
1305         else if (handlechd(GetIsoFile()) == 0) {
1306                 strcat(image_str, "[+chd]");
1307                 CDR_getBuffer = ISOgetBuffer_chd;
1308                 cdimg_read_func = cdread_chd;
1309         }
1310 #endif
1311
1312         if (!subChanMixed && opensubfile(GetIsoFile()) == 0) {
1313                 strcat(image_str, "[+sub]");
1314         }
1315         if (opensbifile(GetIsoFile()) == 0) {
1316                 strcat(image_str, "[+sbi]");
1317         }
1318
1319         fseeko(cdHandle, 0, SEEK_END);
1320
1321         // maybe user selected metadata file instead of main .bin ..
1322         bin_filename = GetIsoFile();
1323         if (ftello(cdHandle) < 2352 * 0x10) {
1324                 static const char *exts[] = { ".bin", ".BIN", ".img", ".IMG" };
1325                 FILE *tmpf = NULL;
1326                 size_t i;
1327                 char *p;
1328
1329                 strncpy(alt_bin_filename, bin_filename, sizeof(alt_bin_filename));
1330                 alt_bin_filename[MAXPATHLEN - 1] = '\0';
1331                 if (strlen(alt_bin_filename) >= 4) {
1332                         p = alt_bin_filename + strlen(alt_bin_filename) - 4;
1333                         for (i = 0; i < sizeof(exts) / sizeof(exts[0]); i++) {
1334                                 strcpy(p, exts[i]);
1335                                 tmpf = fopen(alt_bin_filename, "rb");
1336                                 if (tmpf != NULL)
1337                                         break;
1338                         }
1339                 }
1340                 if (tmpf != NULL) {
1341                         bin_filename = alt_bin_filename;
1342                         fclose(cdHandle);
1343                         cdHandle = tmpf;
1344                         fseeko(cdHandle, 0, SEEK_END);
1345                 }
1346         }
1347
1348         // guess whether it is mode1/2048
1349         if (ftello(cdHandle) % 2048 == 0) {
1350                 unsigned int modeTest = 0;
1351                 fseek(cdHandle, 0, SEEK_SET);
1352                 if (!fread(&modeTest, sizeof(modeTest), 1, cdHandle)) {
1353 #ifndef NDEBUG
1354                         SysPrintf(_("File IO error in <%s:%s>.\n"), __FILE__, __func__);
1355 #endif
1356                         return -1;
1357                 }
1358                 if (SWAP32(modeTest) != 0xffffff00) {
1359                         strcat(image_str, "[2048]");
1360                         isMode1ISO = TRUE;
1361                 }
1362         }
1363         fseek(cdHandle, 0, SEEK_SET);
1364
1365         SysPrintf("%s.\n", image_str);
1366
1367         PrintTracks();
1368
1369         if (subChanMixed)
1370                 cdimg_read_func = cdread_sub_mixed;
1371         else if (isMode1ISO)
1372                 cdimg_read_func = cdread_2048;
1373
1374         // make sure we have another handle open for cdda
1375         if (numtracks > 1 && ti[1].handle == NULL) {
1376                 ti[1].handle = fopen(bin_filename, "rb");
1377         }
1378
1379         return 0;
1380 }
1381
1382 static long CALLBACK ISOclose(void) {
1383         int i;
1384
1385         if (cdHandle != NULL) {
1386                 fclose(cdHandle);
1387                 cdHandle = NULL;
1388         }
1389         if (subHandle != NULL) {
1390                 fclose(subHandle);
1391                 subHandle = NULL;
1392         }
1393         playing = FALSE;
1394         cddaHandle = NULL;
1395
1396         if (compr_img != NULL) {
1397                 free(compr_img->index_table);
1398                 free(compr_img);
1399                 compr_img = NULL;
1400         }
1401         
1402 #ifdef HAVE_CHD
1403         if (chd_img != NULL) {
1404                 chd_close(chd_img->chd);
1405                 free(chd_img->buffer);
1406                 free(chd_img);
1407                 chd_img = NULL;
1408         }
1409 #endif
1410
1411         for (i = 1; i <= numtracks; i++) {
1412                 if (ti[i].handle != NULL) {
1413                         fclose(ti[i].handle);
1414                         ti[i].handle = NULL;
1415                 }
1416         }
1417         numtracks = 0;
1418         ti[1].type = 0;
1419         UnloadSBI();
1420
1421         memset(cdbuffer, 0, sizeof(cdbuffer));
1422         CDR_getBuffer = ISOgetBuffer;
1423
1424         return 0;
1425 }
1426
1427 static long CALLBACK ISOinit(void) {
1428         assert(cdHandle == NULL);
1429         assert(subHandle == NULL);
1430
1431         return 0; // do nothing
1432 }
1433
1434 static long CALLBACK ISOshutdown(void) {
1435         ISOclose();
1436         return 0;
1437 }
1438
1439 // return Starting and Ending Track
1440 // buffer:
1441 //  byte 0 - start track
1442 //  byte 1 - end track
1443 static long CALLBACK ISOgetTN(unsigned char *buffer) {
1444         buffer[0] = 1;
1445
1446         if (numtracks > 0) {
1447                 buffer[1] = numtracks;
1448         }
1449         else {
1450                 buffer[1] = 1;
1451         }
1452
1453         return 0;
1454 }
1455
1456 // return Track Time
1457 // buffer:
1458 //  byte 0 - frame
1459 //  byte 1 - second
1460 //  byte 2 - minute
1461 static long CALLBACK ISOgetTD(unsigned char track, unsigned char *buffer) {
1462         if (track == 0) {
1463                 unsigned int sect;
1464                 unsigned char time[3];
1465                 sect = msf2sec(ti[numtracks].start) + msf2sec(ti[numtracks].length);
1466                 sec2msf(sect, (char *)time);
1467                 buffer[2] = time[0];
1468                 buffer[1] = time[1];
1469                 buffer[0] = time[2];
1470         }
1471         else if (numtracks > 0 && track <= numtracks) {
1472                 buffer[2] = ti[track].start[0];
1473                 buffer[1] = ti[track].start[1];
1474                 buffer[0] = ti[track].start[2];
1475         }
1476         else {
1477                 buffer[2] = 0;
1478                 buffer[1] = 2;
1479                 buffer[0] = 0;
1480         }
1481
1482         return 0;
1483 }
1484
1485 // decode 'raw' subchannel data ripped by cdrdao
1486 static void DecodeRawSubData(void) {
1487         unsigned char subQData[12];
1488         int i;
1489
1490         memset(subQData, 0, sizeof(subQData));
1491
1492         for (i = 0; i < 8 * 12; i++) {
1493                 if (subbuffer[i] & (1 << 6)) { // only subchannel Q is needed
1494                         subQData[i >> 3] |= (1 << (7 - (i & 7)));
1495                 }
1496         }
1497
1498         memcpy(&subbuffer[12], subQData, 12);
1499 }
1500
1501 // read track
1502 // time: byte 0 - minute; byte 1 - second; byte 2 - frame
1503 // uses bcd format
1504 static boolean CALLBACK ISOreadTrack(unsigned char *time) {
1505         int sector = MSF2SECT(btoi(time[0]), btoi(time[1]), btoi(time[2]));
1506         long ret;
1507
1508         if (cdHandle == NULL) {
1509                 return 0;
1510         }
1511
1512         if (pregapOffset) {
1513                 subChanMissing = FALSE;
1514                 if (sector >= pregapOffset) {
1515                         sector -= 2 * 75;
1516                         if (sector < pregapOffset)
1517                                 subChanMissing = TRUE;
1518                 }
1519         }
1520
1521         ret = cdimg_read_func(cdHandle, 0, cdbuffer, sector);
1522         if (ret < 0)
1523                 return 0;
1524
1525         if (subHandle != NULL) {
1526                 fseek(subHandle, sector * SUB_FRAMESIZE, SEEK_SET);
1527                 if (fread(subbuffer, 1, SUB_FRAMESIZE, subHandle) != SUB_FRAMESIZE)
1528                         /* Faulty subchannel data shouldn't cause a read failure */
1529                         return 0;
1530
1531                 if (subChanRaw) DecodeRawSubData();
1532         }
1533
1534         return 1;
1535 }
1536
1537 // plays cdda audio
1538 // sector: byte 0 - minute; byte 1 - second; byte 2 - frame
1539 // does NOT uses bcd format
1540 static long CALLBACK ISOplay(unsigned char *time) {
1541         playing = TRUE;
1542         return 0;
1543 }
1544
1545 // stops cdda audio
1546 static long CALLBACK ISOstop(void) {
1547         playing = FALSE;
1548         return 0;
1549 }
1550
1551 // gets subchannel data
1552 static unsigned char* CALLBACK ISOgetBufferSub(void) {
1553         if ((subHandle != NULL || subChanMixed) && !subChanMissing) {
1554                 return subbuffer;
1555         }
1556
1557         return NULL;
1558 }
1559
1560 static long CALLBACK ISOgetStatus(struct CdrStat *stat) {
1561         u32 sect;
1562         
1563         CDR__getStatus(stat);
1564         
1565         if (playing) {
1566                 stat->Type = 0x02;
1567                 stat->Status |= 0x80;
1568         }
1569         else {
1570                 // BIOS - boot ID (CD type)
1571                 stat->Type = ti[1].type;
1572         }
1573         
1574         // relative -> absolute time
1575         sect = cddaCurPos;
1576         sec2msf(sect, (char *)stat->Time);
1577         
1578         return 0;
1579 }
1580
1581 // read CDDA sector into buffer
1582 long CALLBACK ISOreadCDDA(unsigned char m, unsigned char s, unsigned char f, unsigned char *buffer) {
1583         unsigned char msf[3] = {m, s, f};
1584         unsigned int file, track, track_start = 0;
1585         int ret;
1586
1587         cddaCurPos = msf2sec((char *)msf);
1588
1589         // find current track index
1590         for (track = numtracks; ; track--) {
1591                 track_start = msf2sec(ti[track].start);
1592                 if (track_start <= cddaCurPos)
1593                         break;
1594                 if (track == 1)
1595                         break;
1596         }
1597
1598         // data tracks play silent
1599         if (ti[track].type != CDDA) {
1600                 memset(buffer, 0, CD_FRAMESIZE_RAW);
1601                 return 0;
1602         }
1603
1604         file = 1;
1605         if (multifile) {
1606                 // find the file that contains this track
1607                 for (file = track; file > 1; file--)
1608                         if (ti[file].handle != NULL)
1609                                 break;
1610         }
1611
1612         ret = cdimg_read_func(ti[file].handle, ti[track].start_offset,
1613                 buffer, cddaCurPos - track_start);
1614         if (ret != CD_FRAMESIZE_RAW) {
1615                 memset(buffer, 0, CD_FRAMESIZE_RAW);
1616                 return -1;
1617         }
1618
1619         if (cddaBigEndian) {
1620                 int i;
1621                 unsigned char tmp;
1622
1623                 for (i = 0; i < CD_FRAMESIZE_RAW / 2; i++) {
1624                         tmp = buffer[i * 2];
1625                         buffer[i * 2] = buffer[i * 2 + 1];
1626                         buffer[i * 2 + 1] = tmp;
1627                 }
1628         }
1629
1630         return 0;
1631 }
1632
1633 void cdrIsoInit(void) {
1634         CDR_init = ISOinit;
1635         CDR_shutdown = ISOshutdown;
1636         CDR_open = ISOopen;
1637         CDR_close = ISOclose;
1638         CDR_getTN = ISOgetTN;
1639         CDR_getTD = ISOgetTD;
1640         CDR_readTrack = ISOreadTrack;
1641         CDR_getBuffer = ISOgetBuffer;
1642         CDR_play = ISOplay;
1643         CDR_stop = ISOstop;
1644         CDR_getBufferSub = ISOgetBufferSub;
1645         CDR_getStatus = ISOgetStatus;
1646         CDR_readCDDA = ISOreadCDDA;
1647
1648         CDR_getDriveLetter = CDR__getDriveLetter;
1649         CDR_configure = CDR__configure;
1650         CDR_test = CDR__test;
1651         CDR_about = CDR__about;
1652         CDR_setfilename = CDR__setfilename;
1653
1654         numtracks = 0;
1655 }
1656
1657 int cdrIsoActive(void) {
1658         return (cdHandle != NULL);
1659 }