HLE: Merge HLE BIOS improvements from upstream
[pcsx_rearmed.git] / libpcsxcore / sio.c
CommitLineData
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1/***************************************************************************
2 * Copyright (C) 2007 Ryan Schultz, PCSX-df Team, PCSX team *
3 * *
4 * This program is free software; you can redistribute it and/or modify *
5 * it under the terms of the GNU General Public License as published by *
6 * the Free Software Foundation; either version 2 of the License, or *
7 * (at your option) any later version. *
8 * *
9 * This program is distributed in the hope that it will be useful, *
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of *
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
12 * GNU General Public License for more details. *
13 * *
14 * You should have received a copy of the GNU General Public License *
15 * along with this program; if not, write to the *
16 * Free Software Foundation, Inc., *
17 * 51 Franklin Street, Fifth Floor, Boston, MA 02111-1307 USA. *
18 ***************************************************************************/
19
20/*
21* SIO functions.
22*/
23
24#include "sio.h"
25#include <sys/stat.h>
26
27// Status Flags
28#define TX_RDY 0x0001
29#define RX_RDY 0x0002
30#define TX_EMPTY 0x0004
31#define PARITY_ERR 0x0008
32#define RX_OVERRUN 0x0010
33#define FRAMING_ERR 0x0020
34#define SYNC_DETECT 0x0040
35#define DSR 0x0080
36#define CTS 0x0100
37#define IRQ 0x0200
38
39// Control Flags
40#define TX_PERM 0x0001
41#define DTR 0x0002
42#define RX_PERM 0x0004
43#define BREAK 0x0008
44#define RESET_ERR 0x0010
45#define RTS 0x0020
46#define SIO_RESET 0x0040
47
48// *** FOR WORKS ON PADS AND MEMORY CARDS *****
49
50static unsigned char buf[256];
f3a77032 51static unsigned char cardh1[4] = { 0xff, 0x08, 0x5a, 0x5d };
52static unsigned char cardh2[4] = { 0xff, 0x08, 0x5a, 0x5d };
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53
54// Transfer Ready and the Buffer is Empty
55// static unsigned short StatReg = 0x002b;
56static unsigned short StatReg = TX_RDY | TX_EMPTY;
57static unsigned short ModeReg;
58static unsigned short CtrlReg;
59static unsigned short BaudReg;
60
61static unsigned int bufcount;
62static unsigned int parp;
63static unsigned int mcdst, rdwr;
64static unsigned char adrH, adrL;
65static unsigned int padst;
66
67char Mcd1Data[MCD_SIZE], Mcd2Data[MCD_SIZE];
f3a77032 68char McdDisable[2];
ef79bbde 69
d28b54b1 70#define SIO_INT(eCycle) { \
71 if (!Config.Sio) { \
72 psxRegs.interrupt |= (1 << PSXINT_SIO); \
73 psxRegs.intCycle[PSXINT_SIO].cycle = eCycle; \
74 psxRegs.intCycle[PSXINT_SIO].sCycle = psxRegs.cycle; \
75 new_dyna_set_event(PSXINT_SIO, eCycle); \
76 } \
77}
78
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79// clk cycle byte
80// 4us * 8bits = (PSXCLK / 1000000) * 32; (linuzappz)
81// TODO: add SioModePrescaler and BaudReg
d28b54b1 82#define SIO_CYCLES 535
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83
84void sioWrite8(unsigned char value) {
85#ifdef PAD_LOG
86 PAD_LOG("sio write8 %x\n", value);
87#endif
88 switch (padst) {
d28b54b1 89 case 1: SIO_INT(SIO_CYCLES);
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90 if ((value & 0x40) == 0x40) {
91 padst = 2; parp = 1;
92 if (!Config.UseNet) {
93 switch (CtrlReg & 0x2002) {
94 case 0x0002:
95 buf[parp] = PAD1_poll(value);
96 break;
97 case 0x2002:
98 buf[parp] = PAD2_poll(value);
99 break;
100 }
101 }/* else {
102// SysPrintf("%x: %x, %x, %x, %x\n", CtrlReg&0x2002, buf[2], buf[3], buf[4], buf[5]);
103 }*/
104
105 if (!(buf[parp] & 0x0f)) {
106 bufcount = 2 + 32;
107 } else {
108 bufcount = 2 + (buf[parp] & 0x0f) * 2;
109 }
110 if (buf[parp] == 0x41) {
111 switch (value) {
112 case 0x43:
113 buf[1] = 0x43;
114 break;
115 case 0x45:
116 buf[1] = 0xf3;
117 break;
118 }
119 }
b62c0ebc 120 // NegCon - Wipeout 3
121 if( buf[parp] == 0x23 ) {
122 switch (value) {
123 // enter config mode
124 case 0x43:
125 buf[1] = 0x79;
126 break;
127
128 // get status
129 case 0x45:
130 buf[1] = 0xf3;
131 break;
132 }
133 }
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134 }
135 else padst = 0;
136 return;
137 case 2:
138 parp++;
139/* if (buf[1] == 0x45) {
140 buf[parp] = 0;
d28b54b1 141 SIO_INT(SIO_CYCLES);
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142 return;
143 }*/
144 if (!Config.UseNet) {
145 switch (CtrlReg & 0x2002) {
146 case 0x0002: buf[parp] = PAD1_poll(value); break;
147 case 0x2002: buf[parp] = PAD2_poll(value); break;
148 }
149 }
150
151 if (parp == bufcount) { padst = 0; return; }
d28b54b1 152 SIO_INT(SIO_CYCLES);
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153 return;
154 }
155
156 switch (mcdst) {
157 case 1:
d28b54b1 158 SIO_INT(SIO_CYCLES);
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159 if (rdwr) { parp++; return; }
160 parp = 1;
161 switch (value) {
162 case 0x52: rdwr = 1; break;
163 case 0x57: rdwr = 2; break;
164 default: mcdst = 0;
165 }
166 return;
167 case 2: // address H
d28b54b1 168 SIO_INT(SIO_CYCLES);
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169 adrH = value;
170 *buf = 0;
171 parp = 0;
172 bufcount = 1;
173 mcdst = 3;
174 return;
175 case 3: // address L
d28b54b1 176 SIO_INT(SIO_CYCLES);
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177 adrL = value;
178 *buf = adrH;
179 parp = 0;
180 bufcount = 1;
181 mcdst = 4;
182 return;
183 case 4:
d28b54b1 184 SIO_INT(SIO_CYCLES);
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185 parp = 0;
186 switch (rdwr) {
187 case 1: // read
188 buf[0] = 0x5c;
189 buf[1] = 0x5d;
190 buf[2] = adrH;
191 buf[3] = adrL;
192 switch (CtrlReg & 0x2002) {
193 case 0x0002:
194 memcpy(&buf[4], Mcd1Data + (adrL | (adrH << 8)) * 128, 128);
195 break;
196 case 0x2002:
197 memcpy(&buf[4], Mcd2Data + (adrL | (adrH << 8)) * 128, 128);
198 break;
199 }
200 {
201 char xor = 0;
202 int i;
203 for (i = 2; i < 128 + 4; i++)
204 xor ^= buf[i];
205 buf[132] = xor;
206 }
207 buf[133] = 0x47;
208 bufcount = 133;
209 break;
210 case 2: // write
211 buf[0] = adrL;
212 buf[1] = value;
213 buf[129] = 0x5c;
214 buf[130] = 0x5d;
215 buf[131] = 0x47;
216 bufcount = 131;
217 break;
218 }
219 mcdst = 5;
220 return;
221 case 5:
222 parp++;
f3a77032 223 if ((rdwr == 1 && parp == 132) ||
224 (rdwr == 2 && parp == 129)) {
225 // clear "new card" flags
226 if (CtrlReg & 0x2000)
227 cardh2[1] &= ~8;
228 else
229 cardh1[1] &= ~8;
230 }
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231 if (rdwr == 2) {
232 if (parp < 128) buf[parp + 1] = value;
233 }
d28b54b1 234 SIO_INT(SIO_CYCLES);
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235 return;
236 }
237
238 switch (value) {
239 case 0x01: // start pad
240 StatReg |= RX_RDY; // Transfer is Ready
241
242 if (!Config.UseNet) {
243 switch (CtrlReg & 0x2002) {
244 case 0x0002: buf[0] = PAD1_startPoll(1); break;
245 case 0x2002: buf[0] = PAD2_startPoll(2); break;
246 }
247 } else {
248 if ((CtrlReg & 0x2002) == 0x0002) {
249 int i, j;
250
251 PAD1_startPoll(1);
252 buf[0] = 0;
253 buf[1] = PAD1_poll(0x42);
254 if (!(buf[1] & 0x0f)) {
255 bufcount = 32;
256 } else {
257 bufcount = (buf[1] & 0x0f) * 2;
258 }
259 buf[2] = PAD1_poll(0);
260 i = 3;
261 j = bufcount;
262 while (j--) {
263 buf[i++] = PAD1_poll(0);
264 }
265 bufcount+= 3;
266
267 if (NET_sendPadData(buf, bufcount) == -1)
268 netError();
269
270 if (NET_recvPadData(buf, 1) == -1)
271 netError();
272 if (NET_recvPadData(buf + 128, 2) == -1)
273 netError();
274 } else {
275 memcpy(buf, buf + 128, 32);
276 }
277 }
278
279 bufcount = 2;
280 parp = 0;
281 padst = 1;
d28b54b1 282 SIO_INT(SIO_CYCLES);
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283 return;
284 case 0x81: // start memcard
f3a77032 285 if (CtrlReg & 0x2000)
286 {
287 if (McdDisable[1])
288 goto no_device;
289 memcpy(buf, cardh2, 4);
290 }
291 else
292 {
293 if (McdDisable[0])
294 goto no_device;
295 memcpy(buf, cardh1, 4);
296 }
ef79bbde 297 StatReg |= RX_RDY;
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298 parp = 0;
299 bufcount = 3;
300 mcdst = 1;
301 rdwr = 0;
d28b54b1 302 SIO_INT(SIO_CYCLES);
ef79bbde 303 return;
f3a77032 304 default:
305 no_device:
306 StatReg |= RX_RDY;
307 buf[0] = 0xff;
308 parp = 0;
309 bufcount = 0;
310 return;
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311 }
312}
313
314void sioWriteStat16(unsigned short value) {
315}
316
317void sioWriteMode16(unsigned short value) {
318 ModeReg = value;
319}
320
321void sioWriteCtrl16(unsigned short value) {
322 CtrlReg = value & ~RESET_ERR;
323 if (value & RESET_ERR) StatReg &= ~IRQ;
7d95d6fa 324 if ((CtrlReg & SIO_RESET) || !(CtrlReg & DTR)) {
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325 padst = 0; mcdst = 0; parp = 0;
326 StatReg = TX_RDY | TX_EMPTY;
d28b54b1 327 psxRegs.interrupt &= ~(1 << PSXINT_SIO);
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328 }
329}
330
331void sioWriteBaud16(unsigned short value) {
332 BaudReg = value;
333}
334
335unsigned char sioRead8() {
336 unsigned char ret = 0;
337
338 if ((StatReg & RX_RDY)/* && (CtrlReg & RX_PERM)*/) {
339// StatReg &= ~RX_OVERRUN;
340 ret = buf[parp];
341 if (parp == bufcount) {
342 StatReg &= ~RX_RDY; // Receive is not Ready now
343 if (mcdst == 5) {
344 mcdst = 0;
345 if (rdwr == 2) {
346 switch (CtrlReg & 0x2002) {
347 case 0x0002:
348 memcpy(Mcd1Data + (adrL | (adrH << 8)) * 128, &buf[1], 128);
349 SaveMcd(Config.Mcd1, Mcd1Data, (adrL | (adrH << 8)) * 128, 128);
350 break;
351 case 0x2002:
352 memcpy(Mcd2Data + (adrL | (adrH << 8)) * 128, &buf[1], 128);
353 SaveMcd(Config.Mcd2, Mcd2Data, (adrL | (adrH << 8)) * 128, 128);
354 break;
355 }
356 }
357 }
358 if (padst == 2) padst = 0;
359 if (mcdst == 1) {
360 mcdst = 2;
361 StatReg|= RX_RDY;
362 }
363 }
364 }
365
366#ifdef PAD_LOG
367 PAD_LOG("sio read8 ;ret = %x\n", ret);
368#endif
369 return ret;
370}
371
372unsigned short sioReadStat16() {
373 return StatReg;
374}
375
376unsigned short sioReadMode16() {
377 return ModeReg;
378}
379
380unsigned short sioReadCtrl16() {
381 return CtrlReg;
382}
383
384unsigned short sioReadBaud16() {
385 return BaudReg;
386}
387
388void netError() {
389 ClosePlugins();
390 SysMessage(_("Connection closed!\n"));
391
392 CdromId[0] = '\0';
393 CdromLabel[0] = '\0';
394
395 SysRunGui();
396}
397
398void sioInterrupt() {
399#ifdef PAD_LOG
400 PAD_LOG("Sio Interrupt (CP0.Status = %x)\n", psxRegs.CP0.n.Status);
401#endif
402// SysPrintf("Sio Interrupt\n");
aa35134a 403 if (!(StatReg & IRQ)) {
404 StatReg |= IRQ;
405 psxHu32ref(0x1070) |= SWAPu32(0x80);
406 }
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407}
408
409void LoadMcd(int mcd, char *str) {
410 FILE *f;
411 char *data = NULL;
412
f3a77032 413 if (mcd != 1 && mcd != 2)
414 return;
ef79bbde 415
f3a77032 416 if (mcd == 1) {
417 data = Mcd1Data;
418 cardh1[1] |= 8; // mark as new
419 }
420 if (mcd == 2) {
421 data = Mcd2Data;
422 cardh2[1] |= 8;
423 }
424
425 McdDisable[mcd - 1] = 0;
5bf56268 426#ifdef HAVE_LIBRETRO
427 // memcard1 is handled by libretro
428 if (mcd == 1)
429 return;
430#endif
431
6f18d16a 432 if (str == NULL || strcmp(str, "none") == 0) {
f3a77032 433 McdDisable[mcd - 1] = 1;
434 return;
ef79bbde 435 }
6f18d16a 436 if (*str == 0)
437 return;
438
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439 f = fopen(str, "rb");
440 if (f == NULL) {
441 SysPrintf(_("The memory card %s doesn't exist - creating it\n"), str);
442 CreateMcd(str);
443 f = fopen(str, "rb");
444 if (f != NULL) {
445 struct stat buf;
446
447 if (stat(str, &buf) != -1) {
448 if (buf.st_size == MCD_SIZE + 64)
449 fseek(f, 64, SEEK_SET);
450 else if(buf.st_size == MCD_SIZE + 3904)
451 fseek(f, 3904, SEEK_SET);
452 }
453 fread(data, 1, MCD_SIZE, f);
454 fclose(f);
455 }
456 else
457 SysMessage(_("Memory card %s failed to load!\n"), str);
458 }
459 else {
460 struct stat buf;
461 SysPrintf(_("Loading memory card %s\n"), str);
462 if (stat(str, &buf) != -1) {
463 if (buf.st_size == MCD_SIZE + 64)
464 fseek(f, 64, SEEK_SET);
465 else if(buf.st_size == MCD_SIZE + 3904)
466 fseek(f, 3904, SEEK_SET);
467 }
468 fread(data, 1, MCD_SIZE, f);
469 fclose(f);
470 }
471}
472
473void LoadMcds(char *mcd1, char *mcd2) {
474 LoadMcd(1, mcd1);
475 LoadMcd(2, mcd2);
476}
477
478void SaveMcd(char *mcd, char *data, uint32_t adr, int size) {
479 FILE *f;
480
6f18d16a 481 if (mcd == NULL || *mcd == 0 || strcmp(mcd, "none") == 0)
482 return;
483
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484 f = fopen(mcd, "r+b");
485 if (f != NULL) {
486 struct stat buf;
487
488 if (stat(mcd, &buf) != -1) {
489 if (buf.st_size == MCD_SIZE + 64)
490 fseek(f, adr + 64, SEEK_SET);
491 else if (buf.st_size == MCD_SIZE + 3904)
492 fseek(f, adr + 3904, SEEK_SET);
493 else
494 fseek(f, adr, SEEK_SET);
495 } else
496 fseek(f, adr, SEEK_SET);
497
498 fwrite(data + adr, 1, size, f);
499 fclose(f);
500 return;
501 }
502
503#if 0
504 // try to create it again if we can't open it
505 f = fopen(mcd, "wb");
506 if (f != NULL) {
507 fwrite(data, 1, MCD_SIZE, f);
508 fclose(f);
509 }
510#endif
511
512 ConvertMcd(mcd, data);
513}
514
515void CreateMcd(char *mcd) {
516 FILE *f;
517 struct stat buf;
518 int s = MCD_SIZE;
519 int i = 0, j;
520
521 f = fopen(mcd, "wb");
522 if (f == NULL)
523 return;
524
525 if (stat(mcd, &buf) != -1) {
526 if ((buf.st_size == MCD_SIZE + 3904) || strstr(mcd, ".gme")) {
527 s = s + 3904;
528 fputc('1', f);
529 s--;
530 fputc('2', f);
531 s--;
532 fputc('3', f);
533 s--;
534 fputc('-', f);
535 s--;
536 fputc('4', f);
537 s--;
538 fputc('5', f);
539 s--;
540 fputc('6', f);
541 s--;
542 fputc('-', f);
543 s--;
544 fputc('S', f);
545 s--;
546 fputc('T', f);
547 s--;
548 fputc('D', f);
549 s--;
550 for (i = 0; i < 7; i++) {
551 fputc(0, f);
552 s--;
553 }
554 fputc(1, f);
555 s--;
556 fputc(0, f);
557 s--;
558 fputc(1, f);
559 s--;
560 fputc('M', f);
561 s--;
562 fputc('Q', f);
563 s--;
564 for (i = 0; i < 14; i++) {
565 fputc(0xa0, f);
566 s--;
567 }
568 fputc(0, f);
569 s--;
570 fputc(0xff, f);
571 while (s-- > (MCD_SIZE + 1))
572 fputc(0, f);
573 } else if ((buf.st_size == MCD_SIZE + 64) || strstr(mcd, ".mem") || strstr(mcd, ".vgs")) {
574 s = s + 64;
575 fputc('V', f);
576 s--;
577 fputc('g', f);
578 s--;
579 fputc('s', f);
580 s--;
581 fputc('M', f);
582 s--;
583 for (i = 0; i < 3; i++) {
584 fputc(1, f);
585 s--;
586 fputc(0, f);
587 s--;
588 fputc(0, f);
589 s--;
590 fputc(0, f);
591 s--;
592 }
593 fputc(0, f);
594 s--;
595 fputc(2, f);
596 while (s-- > (MCD_SIZE + 1))
597 fputc(0, f);
598 }
599 }
600 fputc('M', f);
601 s--;
602 fputc('C', f);
603 s--;
604 while (s-- > (MCD_SIZE - 127))
605 fputc(0, f);
606 fputc(0xe, f);
607 s--;
608
609 for (i = 0; i < 15; i++) { // 15 blocks
610 fputc(0xa0, f);
611 s--;
612 fputc(0x00, f);
613 s--;
614 fputc(0x00, f);
615 s--;
616 fputc(0x00, f);
617 s--;
618 fputc(0x00, f);
619 s--;
620 fputc(0x00, f);
621 s--;
622 fputc(0x00, f);
623 s--;
624 fputc(0x00, f);
625 s--;
626 fputc(0xff, f);
627 s--;
628 fputc(0xff, f);
629 s--;
630 for (j = 0; j < 117; j++) {
631 fputc(0x00, f);
632 s--;
633 }
634 fputc(0xa0, f);
635 s--;
636 }
637
638 for (i = 0; i < 20; i++) {
639 fputc(0xff, f);
640 s--;
641 fputc(0xff, f);
642 s--;
643 fputc(0xff, f);
644 s--;
645 fputc(0xff, f);
646 s--;
647 fputc(0x00, f);
648 s--;
649 fputc(0x00, f);
650 s--;
651 fputc(0x00, f);
652 s--;
653 fputc(0x00, f);
654 s--;
655 fputc(0xff, f);
656 s--;
657 fputc(0xff, f);
658 s--;
659 for (j = 0; j < 118; j++) {
660 fputc(0x00, f);
661 s--;
662 }
663 }
664
665 while ((s--) >= 0)
666 fputc(0, f);
667
668 fclose(f);
669}
670
671void ConvertMcd(char *mcd, char *data) {
672 FILE *f;
673 int i = 0;
674 int s = MCD_SIZE;
675
676 if (strstr(mcd, ".gme")) {
677 f = fopen(mcd, "wb");
678 if (f != NULL) {
679 fwrite(data - 3904, 1, MCD_SIZE + 3904, f);
680 fclose(f);
681 }
682 f = fopen(mcd, "r+");
683 s = s + 3904;
684 fputc('1', f); s--;
685 fputc('2', f); s--;
686 fputc('3', f); s--;
687 fputc('-', f); s--;
688 fputc('4', f); s--;
689 fputc('5', f); s--;
690 fputc('6', f); s--;
691 fputc('-', f); s--;
692 fputc('S', f); s--;
693 fputc('T', f); s--;
694 fputc('D', f); s--;
695 for (i = 0; i < 7; i++) {
696 fputc(0, f); s--;
697 }
698 fputc(1, f); s--;
699 fputc(0, f); s--;
700 fputc(1, f); s--;
701 fputc('M', f); s--;
702 fputc('Q', f); s--;
703 for(i=0;i<14;i++) {
704 fputc(0xa0, f); s--;
705 }
706 fputc(0, f); s--;
707 fputc(0xff, f);
708 while (s-- > (MCD_SIZE+1)) fputc(0, f);
709 fclose(f);
710 } else if(strstr(mcd, ".mem") || strstr(mcd,".vgs")) {
711 f = fopen(mcd, "wb");
712 if (f != NULL) {
713 fwrite(data-64, 1, MCD_SIZE+64, f);
714 fclose(f);
715 }
716 f = fopen(mcd, "r+");
717 s = s + 64;
718 fputc('V', f); s--;
719 fputc('g', f); s--;
720 fputc('s', f); s--;
721 fputc('M', f); s--;
722 for(i=0;i<3;i++) {
723 fputc(1, f); s--;
724 fputc(0, f); s--;
725 fputc(0, f); s--;
726 fputc(0, f); s--;
727 }
728 fputc(0, f); s--;
729 fputc(2, f);
730 while (s-- > (MCD_SIZE+1)) fputc(0, f);
731 fclose(f);
732 } else {
733 f = fopen(mcd, "wb");
734 if (f != NULL) {
735 fwrite(data, 1, MCD_SIZE, f);
736 fclose(f);
737 }
738 }
739}
740
741void GetMcdBlockInfo(int mcd, int block, McdBlock *Info) {
ab948f7e 742 char *data = NULL, *ptr, *str, *sstr;
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743 unsigned short clut[16];
744 unsigned short c;
745 int i, x;
746
747 memset(Info, 0, sizeof(McdBlock));
748
f3a77032 749 if (mcd != 1 && mcd != 2)
750 return;
751
752 if (McdDisable[mcd - 1])
753 return;
754
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755 if (mcd == 1) data = Mcd1Data;
756 if (mcd == 2) data = Mcd2Data;
757
758 ptr = data + block * 8192 + 2;
759
760 Info->IconCount = *ptr & 0x3;
761
762 ptr += 2;
763
764 x = 0;
765
766 str = Info->Title;
767 sstr = Info->sTitle;
768
769 for (i = 0; i < 48; i++) {
770 c = *(ptr) << 8;
771 c |= *(ptr + 1);
772 if (!c) break;
773
774 // Convert ASCII characters to half-width
775 if (c >= 0x8281 && c <= 0x829A)
776 c = (c - 0x8281) + 'a';
777 else if (c >= 0x824F && c <= 0x827A)
778 c = (c - 0x824F) + '0';
779 else if (c == 0x8140) c = ' ';
780 else if (c == 0x8143) c = ',';
781 else if (c == 0x8144) c = '.';
782 else if (c == 0x8146) c = ':';
783 else if (c == 0x8147) c = ';';
784 else if (c == 0x8148) c = '?';
785 else if (c == 0x8149) c = '!';
786 else if (c == 0x815E) c = '/';
787 else if (c == 0x8168) c = '"';
788 else if (c == 0x8169) c = '(';
789 else if (c == 0x816A) c = ')';
790 else if (c == 0x816D) c = '[';
791 else if (c == 0x816E) c = ']';
792 else if (c == 0x817C) c = '-';
793 else {
794 str[i] = ' ';
795 sstr[x++] = *ptr++; sstr[x++] = *ptr++;
796 continue;
797 }
798
799 str[i] = sstr[x++] = c;
800 ptr += 2;
801 }
802
803 trim(str);
804 trim(sstr);
805
806 ptr = data + block * 8192 + 0x60; // icon palette data
807
808 for (i = 0; i < 16; i++) {
809 clut[i] = *((unsigned short *)ptr);
810 ptr += 2;
811 }
812
813 for (i = 0; i < Info->IconCount; i++) {
814 short *icon = &Info->Icon[i * 16 * 16];
815
816 ptr = data + block * 8192 + 128 + 128 * i; // icon data
817
818 for (x = 0; x < 16 * 16; x++) {
819 icon[x++] = clut[*ptr & 0xf];
820 icon[x] = clut[*ptr >> 4];
821 ptr++;
822 }
823 }
824
825 ptr = data + block * 128;
826
827 Info->Flags = *ptr;
828
829 ptr += 0xa;
830 strncpy(Info->ID, ptr, 12);
831 ptr += 12;
832 strncpy(Info->Name, ptr, 16);
833}
834
496d88d4 835int sioFreeze(void *f, int Mode) {
ef79bbde
P
836 gzfreeze(buf, sizeof(buf));
837 gzfreeze(&StatReg, sizeof(StatReg));
838 gzfreeze(&ModeReg, sizeof(ModeReg));
839 gzfreeze(&CtrlReg, sizeof(CtrlReg));
840 gzfreeze(&BaudReg, sizeof(BaudReg));
841 gzfreeze(&bufcount, sizeof(bufcount));
842 gzfreeze(&parp, sizeof(parp));
843 gzfreeze(&mcdst, sizeof(mcdst));
844 gzfreeze(&rdwr, sizeof(rdwr));
845 gzfreeze(&adrH, sizeof(adrH));
846 gzfreeze(&adrL, sizeof(adrL));
847 gzfreeze(&padst, sizeof(padst));
848
849 return 0;
850}