ZuluSCSI_cdrom.cpp 75 KB

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  1. /* Advanced CD-ROM drive emulation.
  2. * Adds a few capabilities on top of the SCSI2SD CD-ROM emulation:
  3. *
  4. * - bin/cue support for support of multiple tracks
  5. * - on the fly image switching
  6. *
  7. * SCSI2SD V6 - Copyright (C) 2014 Michael McMaster <michael@codesrc.com>
  8. * ZuluSCSI™ - Copyright (c) 2023 Rabbit Hole Computing™
  9. *
  10. * This file is licensed under the GPL version 3 or any later version. 
  11. * It is derived from cdrom.c in SCSI2SD V6
  12. *
  13. * https://www.gnu.org/licenses/gpl-3.0.html
  14. * ----
  15. * This program is free software: you can redistribute it and/or modify
  16. * it under the terms of the GNU General Public License as published by
  17. * the Free Software Foundation, either version 3 of the License, or
  18. * (at your option) any later version. 
  19. *
  20. * This program is distributed in the hope that it will be useful,
  21. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  22. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
  23. * GNU General Public License for more details. 
  24. *
  25. * You should have received a copy of the GNU General Public License
  26. * along with this program.  If not, see <https://www.gnu.org/licenses/>.
  27. */
  28. #include <string.h>
  29. #include "ZuluSCSI_cdrom.h"
  30. #include "ZuluSCSI_log.h"
  31. #include "ZuluSCSI_config.h"
  32. #include "ZuluSCSI_platform.h"
  33. #include "ZuluSCSI_settings.h"
  34. #include <CUEParser.h>
  35. #include <assert.h>
  36. #include <minIni.h>
  37. #ifdef ENABLE_AUDIO_OUTPUT
  38. #include "ZuluSCSI_audio.h"
  39. #endif
  40. extern "C" {
  41. #include <scsi.h>
  42. }
  43. static const uint16_t AUDIO_CD_SECTOR_LEN = 2352;
  44. /******************************************/
  45. /* Basic TOC generation without cue sheet */
  46. /******************************************/
  47. static const uint8_t SimpleTOC[] =
  48. {
  49. 0x00, // toc length, MSB
  50. 0x12, // toc length, LSB
  51. 0x01, // First track number
  52. 0x01, // Last track number,
  53. // TRACK 1 Descriptor
  54. 0x00, // reserved
  55. 0x14, // Q sub-channel encodes current position, Digital track
  56. 0x01, // Track 1,
  57. 0x00, // Reserved
  58. 0x00,0x00,0x00,0x00, // Track start sector (LBA)
  59. 0x00, // reserved
  60. 0x14, // Q sub-channel encodes current position, Digital track
  61. 0xAA, // Leadout Track
  62. 0x00, // Reserved
  63. 0x00,0x00,0x00,0x00, // Track start sector (LBA)
  64. };
  65. static const uint8_t LeadoutTOC[] =
  66. {
  67. 0x00, // toc length, MSB
  68. 0x0A, // toc length, LSB
  69. 0x01, // First track number
  70. 0x01, // Last track number,
  71. 0x00, // reserved
  72. 0x14, // Q sub-channel encodes current position, Digital track
  73. 0xAA, // Leadout Track
  74. 0x00, // Reserved
  75. 0x00,0x00,0x00,0x00, // Track start sector (LBA)
  76. };
  77. static const uint8_t SessionTOC[] =
  78. {
  79. 0x00, // toc length, MSB
  80. 0x0A, // toc length, LSB
  81. 0x01, // First session number
  82. 0x01, // Last session number,
  83. // TRACK 1 Descriptor
  84. 0x00, // reserved
  85. 0x14, // Q sub-channel encodes current position, Digital track
  86. 0x01, // First track number in last complete session
  87. 0x00, // Reserved
  88. 0x00,0x00,0x00,0x00 // LBA of first track in last session
  89. };
  90. static const uint8_t FullTOC[] =
  91. {
  92. 0x00, // 0: toc length, MSB
  93. 0x2E, // 1: toc length, LSB
  94. 0x01, // 2: First session number
  95. 0x01, // 3: Last session number,
  96. // A0 Descriptor
  97. 0x01, // 4: session number
  98. 0x14, // 5: ADR/Control
  99. 0x00, // 6: TNO
  100. 0xA0, // 7: POINT
  101. 0x00, // 8: Min
  102. 0x00, // 9: Sec
  103. 0x00, // 10: Frame
  104. 0x00, // 11: Zero
  105. 0x01, // 12: First Track number.
  106. 0x00, // 13: Disc type 00 = Mode 1
  107. 0x00, // 14: PFRAME
  108. // A1
  109. 0x01, // 15: session number
  110. 0x14, // 16: ADR/Control
  111. 0x00, // 17: TNO
  112. 0xA1, // 18: POINT
  113. 0x00, // 19: Min
  114. 0x00, // 20: Sec
  115. 0x00, // 21: Frame
  116. 0x00, // 22: Zero
  117. 0x01, // 23: Last Track number
  118. 0x00, // 24: PSEC
  119. 0x00, // 25: PFRAME
  120. // A2
  121. 0x01, // 26: session number
  122. 0x14, // 27: ADR/Control
  123. 0x00, // 28: TNO
  124. 0xA2, // 29: POINT
  125. 0x00, // 30: Min
  126. 0x00, // 31: Sec
  127. 0x00, // 32: Frame
  128. 0x00, // 33: Zero
  129. 0x00, // 34: LEADOUT position
  130. 0x00, // 35: leadout PSEC
  131. 0x00, // 36: leadout PFRAME
  132. // TRACK 1 Descriptor
  133. 0x01, // 37: session number
  134. 0x14, // 38: ADR/Control
  135. 0x00, // 39: TNO
  136. 0x01, // 40: Point
  137. 0x00, // 41: Min
  138. 0x00, // 42: Sec
  139. 0x00, // 43: Frame
  140. 0x00, // 44: Zero
  141. 0x00, // 45: PMIN
  142. 0x02, // 46: PSEC
  143. 0x00, // 47: PFRAME
  144. };
  145. static const uint8_t DiscInformation[] =
  146. {
  147. 0x00, // 0: disc info length, MSB
  148. 0x20, // 1: disc info length, LSB
  149. 0x0E, // 2: disc status (finalized, single session non-rewritable)
  150. 0x01, // 3: first track number
  151. 0x01, // 4: number of sessions (LSB)
  152. 0x01, // 5: first track in last session (LSB)
  153. 0x01, // 6: last track in last session (LSB)
  154. 0x00, // 7: format status (0x00 = non-rewritable, no barcode, no disc id)
  155. 0x00, // 8: disc type (0x00 = CD-ROM)
  156. 0x00, // 9: number of sessions (MSB)
  157. 0x00, // 10: first track in last session (MSB)
  158. 0x00, // 11: last track in last session (MSB)
  159. 0x00, // 12: disc ID (MSB)
  160. 0x00, // 13: .
  161. 0x00, // 14: .
  162. 0x00, // 15: disc ID (LSB)
  163. 0x00, // 16: last session lead-in start (MSB)
  164. 0x00, // 17: .
  165. 0x00, // 18: .
  166. 0x00, // 19: last session lead-in start (LSB)
  167. 0x00, // 20: last possible lead-out start (MSB)
  168. 0x00, // 21: .
  169. 0x00, // 22: .
  170. 0x00, // 23: last possible lead-out start (LSB)
  171. 0x00, // 24: disc bar code (MSB)
  172. 0x00, // 25: .
  173. 0x00, // 26: .
  174. 0x00, // 27: .
  175. 0x00, // 28: .
  176. 0x00, // 29: .
  177. 0x00, // 30: .
  178. 0x00, // 31: disc bar code (LSB)
  179. 0x00, // 32: disc application code
  180. 0x00, // 33: number of opc tables
  181. };
  182. static const uint8_t TrackInformation[] =
  183. {
  184. 0x00, // 0: data length, MSB
  185. 0x1A, // 1: data length, LSB
  186. 0x01, // 2: track number
  187. 0x01, // 3: session number
  188. 0x00, // 4: reserved
  189. 0x04, // 5: track mode and flags
  190. 0x8F, // 6: data mode and flags
  191. 0x00, // 7: nwa_v
  192. 0x00, // 8: track start address (MSB)
  193. 0x00, // 9: .
  194. 0x00, // 10: .
  195. 0x00, // 11: track start address (LSB)
  196. 0xFF, // 12: next writable address (MSB)
  197. 0xFF, // 13: .
  198. 0xFF, // 14: .
  199. 0xFF, // 15: next writable address (LSB)
  200. 0x00, // 16: free blocks (MSB)
  201. 0x00, // 17: .
  202. 0x00, // 18: .
  203. 0x00, // 19: free blocks (LSB)
  204. 0x00, // 20: fixed packet size (MSB)
  205. 0x00, // 21: .
  206. 0x00, // 22: .
  207. 0x00, // 23: fixed packet size (LSB)
  208. 0x00, // 24: track size (MSB)
  209. 0x00, // 25: .
  210. 0x00, // 26: .
  211. 0x00, // 27: track size (LSB)
  212. };
  213. enum sector_type_t
  214. {
  215. SECTOR_TYPE_VENDOR_PLEXTOR = 100,
  216. SECTOR_TYPE_VENDOR_APPLE_300plus = 200
  217. };
  218. // Convert logical block address to CD-ROM time
  219. static void LBA2MSF(int32_t LBA, uint8_t* MSF, bool relative)
  220. {
  221. if (!relative) {
  222. LBA += 150;
  223. }
  224. uint32_t ulba = LBA;
  225. if (LBA < 0) {
  226. ulba = LBA * -1;
  227. }
  228. MSF[2] = ulba % 75; // Frames
  229. uint32_t rem = ulba / 75;
  230. MSF[1] = rem % 60; // Seconds
  231. MSF[0] = rem / 60; // Minutes
  232. }
  233. // Convert logical block address to CD-ROM time in binary coded decimal format
  234. static void LBA2MSFBCD(int32_t LBA, uint8_t* MSF, bool relative)
  235. {
  236. LBA2MSF(LBA, MSF, relative);
  237. MSF[0] = ((MSF[0] / 10) << 4) | (MSF[0] % 10);
  238. MSF[1] = ((MSF[1] / 10) << 4) | (MSF[1] % 10);
  239. MSF[2] = ((MSF[2] / 10) << 4) | (MSF[2] % 10);
  240. }
  241. // Convert CD-ROM time to logical block address
  242. static int32_t MSF2LBA(uint8_t m, uint8_t s, uint8_t f, bool relative)
  243. {
  244. int32_t lba = (m * 60 + s) * 75 + f;
  245. if (!relative) lba -= 150;
  246. return lba;
  247. }
  248. // Gets the LBA position of the lead-out for the current image
  249. static uint32_t getLeadOutLBA(const CUETrackInfo* lasttrack)
  250. {
  251. if (lasttrack != nullptr && lasttrack->track_number != 0)
  252. {
  253. image_config_t &img = *(image_config_t*)scsiDev.target->cfg;
  254. uint32_t lastTrackBlocks = (img.file.size() - lasttrack->file_offset)
  255. / lasttrack->sector_length;
  256. return lasttrack->data_start + lastTrackBlocks;
  257. }
  258. else
  259. {
  260. return 1;
  261. }
  262. }
  263. static void doReadTOCSimple(bool MSF, uint8_t track, uint16_t allocationLength)
  264. {
  265. if (track == 0xAA)
  266. {
  267. // 0xAA requests only lead-out track information (reports capacity)
  268. uint32_t len = sizeof(LeadoutTOC);
  269. memcpy(scsiDev.data, LeadoutTOC, len);
  270. uint32_t capacity = getScsiCapacity(
  271. scsiDev.target->cfg->sdSectorStart,
  272. scsiDev.target->liveCfg.bytesPerSector,
  273. scsiDev.target->cfg->scsiSectors);
  274. // Replace start of leadout track
  275. if (MSF)
  276. {
  277. scsiDev.data[8] = 0;
  278. LBA2MSF(capacity, scsiDev.data + 9, false);
  279. }
  280. else
  281. {
  282. scsiDev.data[8] = capacity >> 24;
  283. scsiDev.data[9] = capacity >> 16;
  284. scsiDev.data[10] = capacity >> 8;
  285. scsiDev.data[11] = capacity;
  286. }
  287. if (len > allocationLength)
  288. {
  289. len = allocationLength;
  290. }
  291. scsiDev.dataLen = len;
  292. scsiDev.phase = DATA_IN;
  293. }
  294. else if (track <= 1)
  295. {
  296. // We only support track 1.
  297. // track 0 means "return all tracks"
  298. uint32_t len = sizeof(SimpleTOC);
  299. memcpy(scsiDev.data, SimpleTOC, len);
  300. if (MSF)
  301. {
  302. scsiDev.data[0x0A] = 0x02;
  303. }
  304. uint32_t capacity = getScsiCapacity(
  305. scsiDev.target->cfg->sdSectorStart,
  306. scsiDev.target->liveCfg.bytesPerSector,
  307. scsiDev.target->cfg->scsiSectors);
  308. // Replace start of leadout track
  309. if (MSF)
  310. {
  311. scsiDev.data[0x10] = 0;
  312. LBA2MSF(capacity, scsiDev.data + 0x11, false);
  313. }
  314. else
  315. {
  316. scsiDev.data[0x10] = capacity >> 24;
  317. scsiDev.data[0x11] = capacity >> 16;
  318. scsiDev.data[0x12] = capacity >> 8;
  319. scsiDev.data[0x13] = capacity;
  320. }
  321. if (len > allocationLength)
  322. {
  323. len = allocationLength;
  324. }
  325. scsiDev.dataLen = len;
  326. scsiDev.phase = DATA_IN;
  327. }
  328. else
  329. {
  330. scsiDev.status = CHECK_CONDITION;
  331. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  332. scsiDev.target->sense.asc = INVALID_FIELD_IN_CDB;
  333. scsiDev.phase = STATUS;
  334. }
  335. }
  336. static void doReadSessionInfoSimple(bool msf, uint16_t allocationLength)
  337. {
  338. uint32_t len = sizeof(SessionTOC);
  339. memcpy(scsiDev.data, SessionTOC, len);
  340. if (msf)
  341. {
  342. scsiDev.data[0x0A] = 0x02;
  343. }
  344. if (len > allocationLength)
  345. {
  346. len = allocationLength;
  347. }
  348. scsiDev.dataLen = len;
  349. scsiDev.phase = DATA_IN;
  350. }
  351. static void doReadFullTOCSimple(uint8_t session, uint16_t allocationLength, bool useBCD)
  352. {
  353. // We only support session 1.
  354. if (session > 1)
  355. {
  356. scsiDev.status = CHECK_CONDITION;
  357. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  358. scsiDev.target->sense.asc = INVALID_FIELD_IN_CDB;
  359. scsiDev.phase = STATUS;
  360. }
  361. else
  362. {
  363. uint32_t len = sizeof(FullTOC);
  364. memcpy(scsiDev.data, FullTOC, len);
  365. // update leadout position
  366. // consistent 2048-byte blocks makes this easier than bin/cue version
  367. uint32_t capacity = getScsiCapacity(
  368. scsiDev.target->cfg->sdSectorStart,
  369. scsiDev.target->liveCfg.bytesPerSector,
  370. scsiDev.target->cfg->scsiSectors);
  371. if (useBCD) {
  372. LBA2MSFBCD(capacity, &scsiDev.data[34], false);
  373. } else {
  374. LBA2MSF(capacity, &scsiDev.data[34], false);
  375. }
  376. if (len > allocationLength)
  377. {
  378. len = allocationLength;
  379. }
  380. scsiDev.dataLen = len;
  381. scsiDev.phase = DATA_IN;
  382. }
  383. }
  384. void doReadDiscInformationSimple(uint16_t allocationLength)
  385. {
  386. uint32_t len = sizeof(DiscInformation);
  387. memcpy(scsiDev.data, DiscInformation, len);
  388. if (len > allocationLength)
  389. {
  390. len = allocationLength;
  391. }
  392. scsiDev.dataLen = len;
  393. scsiDev.phase = DATA_IN;
  394. }
  395. void doReadTrackInformationSimple(bool track, uint32_t lba, uint16_t allocationLength)
  396. {
  397. uint32_t len = sizeof(TrackInformation);
  398. memcpy(scsiDev.data, TrackInformation, len);
  399. uint32_t capacity = getScsiCapacity(
  400. scsiDev.target->cfg->sdSectorStart,
  401. scsiDev.target->liveCfg.bytesPerSector,
  402. scsiDev.target->cfg->scsiSectors);
  403. if (!track && lba >= capacity)
  404. {
  405. scsiDev.status = CHECK_CONDITION;
  406. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  407. scsiDev.target->sense.asc = INVALID_FIELD_IN_CDB;
  408. scsiDev.phase = STATUS;
  409. }
  410. else
  411. {
  412. // update track size
  413. scsiDev.data[24] = capacity >> 24;
  414. scsiDev.data[25] = capacity >> 16;
  415. scsiDev.data[26] = capacity >> 8;
  416. scsiDev.data[27] = capacity;
  417. if (len > allocationLength)
  418. {
  419. len = allocationLength;
  420. }
  421. scsiDev.dataLen = len;
  422. scsiDev.phase = DATA_IN;
  423. }
  424. }
  425. /*********************************/
  426. /* TOC generation from cue sheet */
  427. /*********************************/
  428. static bool loadCueSheet(image_config_t &img, CUEParser &parser);
  429. // Switch BIN file if the CUE sheet uses multiple separate BIN files in a folder.
  430. // Otherwise does nothing.
  431. static bool cdromSelectBinFileForTrack(image_config_t &img, const CUETrackInfo *track)
  432. {
  433. if (track->filename[0] == '\0' || !img.file.isFolder())
  434. {
  435. // Using a single image, no need to switch anything.
  436. return true;
  437. }
  438. else if (img.cdrom_binfile_index == track->file_index)
  439. {
  440. // Haven't switched files
  441. return true;
  442. }
  443. img.cdrom_binfile_index = track->file_index;
  444. bool open_ok = img.file.selectImageFile(track->filename);
  445. if (!open_ok)
  446. {
  447. logmsg("CUE sheet specified track file '", track->filename, "' not found");
  448. }
  449. return open_ok;
  450. }
  451. // Fetch track info based on LBA
  452. // Returns with the requested track already selected for bin file
  453. static void getTrackFromLBA(image_config_t &img, uint32_t lba, CUETrackInfo *result, CUEParser *parser = nullptr)
  454. {
  455. if (!img.cuesheetfile.isOpen())
  456. {
  457. // Track info in case we have no .cue file
  458. result->file_mode = CUEFile_BINARY;
  459. result->track_mode = CUETrack_MODE1_2048;
  460. result->sector_length = 2048;
  461. result->track_number = 1;
  462. }
  463. else if (img.cdrom_binfile_index == img.cdrom_trackinfo.file_index &&
  464. lba >= img.cdrom_trackinfo.track_start &&
  465. lba < img.cdrom_trackinfo.data_start + img.file.size() / img.cdrom_trackinfo.sector_length)
  466. {
  467. // Same track as previous time
  468. *result = img.cdrom_trackinfo;
  469. }
  470. else
  471. {
  472. // We can use either temporary parser or parser provided by caller
  473. CUEParser tmp_parser;
  474. if (!parser)
  475. {
  476. loadCueSheet(img, tmp_parser);
  477. parser = &tmp_parser;
  478. }
  479. else
  480. {
  481. parser->restart();
  482. }
  483. const CUETrackInfo *tmptrack;
  484. uint64_t prev_capacity = 0;
  485. while ((tmptrack = parser->next_track(prev_capacity)) != NULL)
  486. {
  487. if (tmptrack->track_start <= lba)
  488. {
  489. *result = *tmptrack;
  490. }
  491. else
  492. {
  493. break;
  494. }
  495. cdromSelectBinFileForTrack(img, tmptrack);
  496. prev_capacity = img.file.size();
  497. }
  498. img.cdrom_trackinfo = *result;
  499. }
  500. }
  501. // Format track info read from cue sheet into the format used by ReadTOC command.
  502. // Refer to T10/1545-D MMC-4 Revision 5a, "Response Format 0000b: Formatted TOC"
  503. static void formatTrackInfo(const CUETrackInfo *track, uint8_t *dest, bool use_MSF_time)
  504. {
  505. uint8_t control_adr = 0x14; // Digital track
  506. if (track->track_mode == CUETrack_AUDIO)
  507. {
  508. control_adr = 0x10; // Audio track
  509. }
  510. dest[0] = 0; // Reserved
  511. dest[1] = control_adr;
  512. dest[2] = track->track_number;
  513. dest[3] = 0; // Reserved
  514. if (use_MSF_time)
  515. {
  516. // Time in minute-second-frame format
  517. dest[4] = 0;
  518. LBA2MSF(track->data_start, &dest[5], false);
  519. }
  520. else
  521. {
  522. // Time as logical block address
  523. dest[4] = (track->data_start >> 24) & 0xFF;
  524. dest[5] = (track->data_start >> 16) & 0xFF;
  525. dest[6] = (track->data_start >> 8) & 0xFF;
  526. dest[7] = (track->data_start >> 0) & 0xFF;
  527. }
  528. }
  529. // Load data from CUE sheet for the given device,
  530. // using the second half of scsiDev.data buffer for temporary storage.
  531. // Returns false if no cue sheet or it could not be opened.
  532. static bool loadCueSheet(image_config_t &img, CUEParser &parser)
  533. {
  534. if (!img.cuesheetfile.isOpen())
  535. {
  536. return false;
  537. }
  538. // Use second half of scsiDev.data as the buffer for cue sheet text
  539. size_t halfbufsize = sizeof(scsiDev.data) / 2;
  540. char *cuebuf = (char*)&scsiDev.data[halfbufsize];
  541. img.cuesheetfile.seek(0);
  542. int len = img.cuesheetfile.read(cuebuf, halfbufsize);
  543. if (len <= 0)
  544. {
  545. return false;
  546. }
  547. cuebuf[len] = '\0';
  548. parser = CUEParser(cuebuf);
  549. return true;
  550. }
  551. static void doReadTOC(bool MSF, uint8_t track, uint16_t allocationLength)
  552. {
  553. image_config_t &img = *(image_config_t*)scsiDev.target->cfg;
  554. CUEParser parser;
  555. if (!loadCueSheet(img, parser))
  556. {
  557. // No CUE sheet, use hardcoded data
  558. return doReadTOCSimple(MSF, track, allocationLength);
  559. }
  560. // Format track info
  561. uint8_t *trackdata = &scsiDev.data[4];
  562. int trackcount = 0;
  563. int firsttrack = -1;
  564. CUETrackInfo lasttrack = {0};
  565. const CUETrackInfo *trackinfo;
  566. uint64_t prev_capacity = 0;
  567. while ((trackinfo = parser.next_track(prev_capacity)) != NULL)
  568. {
  569. if (firsttrack < 0) firsttrack = trackinfo->track_number;
  570. lasttrack = *trackinfo;
  571. if (track <= trackinfo->track_number)
  572. {
  573. formatTrackInfo(trackinfo, &trackdata[8 * trackcount], MSF);
  574. trackcount += 1;
  575. }
  576. cdromSelectBinFileForTrack(img, trackinfo);
  577. prev_capacity = img.file.size();
  578. }
  579. // Format lead-out track info
  580. CUETrackInfo leadout = {};
  581. leadout.track_number = 0xAA;
  582. leadout.track_mode = (lasttrack.track_number != 0) ? lasttrack.track_mode : CUETrack_MODE1_2048;
  583. leadout.data_start = getLeadOutLBA(&lasttrack);
  584. formatTrackInfo(&leadout, &trackdata[8 * trackcount], MSF);
  585. trackcount += 1;
  586. // Format response header
  587. uint16_t toc_length = 2 + trackcount * 8;
  588. scsiDev.data[0] = toc_length >> 8;
  589. scsiDev.data[1] = toc_length & 0xFF;
  590. scsiDev.data[2] = firsttrack;
  591. scsiDev.data[3] = lasttrack.track_number;
  592. if (track != 0xAA && trackcount < 2)
  593. {
  594. // Unknown track requested
  595. scsiDev.status = CHECK_CONDITION;
  596. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  597. scsiDev.target->sense.asc = INVALID_FIELD_IN_CDB;
  598. scsiDev.phase = STATUS;
  599. }
  600. else
  601. {
  602. uint32_t len = 2 + toc_length;
  603. if (len > allocationLength)
  604. {
  605. len = allocationLength;
  606. }
  607. scsiDev.dataLen = len;
  608. scsiDev.phase = DATA_IN;
  609. }
  610. }
  611. static void doReadSessionInfo(bool msf, uint16_t allocationLength)
  612. {
  613. image_config_t &img = *(image_config_t*)scsiDev.target->cfg;
  614. CUEParser parser;
  615. if (!loadCueSheet(img, parser))
  616. {
  617. // No CUE sheet, use hardcoded data
  618. return doReadSessionInfoSimple(msf, allocationLength);
  619. }
  620. uint32_t len = sizeof(SessionTOC);
  621. memcpy(scsiDev.data, SessionTOC, len);
  622. // Replace first track info in the session table
  623. // based on data from CUE sheet.
  624. const CUETrackInfo *trackinfo = parser.next_track();
  625. if (trackinfo)
  626. {
  627. formatTrackInfo(trackinfo, &scsiDev.data[4], false);
  628. }
  629. if (len > allocationLength)
  630. {
  631. len = allocationLength;
  632. }
  633. scsiDev.dataLen = len;
  634. scsiDev.phase = DATA_IN;
  635. }
  636. // Format track info read from cue sheet into the format used by ReadFullTOC command.
  637. // Refer to T10/1545-D MMC-4 Revision 5a, "Response Format 0010b: Raw TOC"
  638. static void formatRawTrackInfo(const CUETrackInfo *track, uint8_t *dest, bool useBCD)
  639. {
  640. uint8_t control_adr = 0x14; // Digital track
  641. if (track->track_mode == CUETrack_AUDIO)
  642. {
  643. control_adr = 0x10; // Audio track
  644. }
  645. dest[0] = 0x01; // Session always 1
  646. dest[1] = control_adr;
  647. dest[2] = 0x00; // "TNO", always 0?
  648. dest[3] = track->track_number; // "POINT", contains track number
  649. // Next three are ATIME. The spec doesn't directly address how these
  650. // should be reported in the TOC, just giving a description of Q-channel
  651. // data from Red Book/ECMA-130. On all disks tested so far these are
  652. // given as 00/00/00.
  653. dest[4] = 0x00;
  654. dest[5] = 0x00;
  655. dest[6] = 0x00;
  656. dest[7] = 0; // HOUR
  657. if (useBCD) {
  658. LBA2MSFBCD(track->data_start, &dest[8], false);
  659. } else {
  660. LBA2MSF(track->data_start, &dest[8], false);
  661. }
  662. }
  663. static void doReadFullTOC(uint8_t session, uint16_t allocationLength, bool useBCD)
  664. {
  665. image_config_t &img = *(image_config_t*)scsiDev.target->cfg;
  666. CUEParser parser;
  667. if (!loadCueSheet(img, parser))
  668. {
  669. // No CUE sheet, use hardcoded data
  670. return doReadFullTOCSimple(session, allocationLength, useBCD);
  671. }
  672. // We only support session 1.
  673. if (session > 1)
  674. {
  675. scsiDev.status = CHECK_CONDITION;
  676. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  677. scsiDev.target->sense.asc = INVALID_FIELD_IN_CDB;
  678. scsiDev.phase = STATUS;
  679. return;
  680. }
  681. // Take the beginning of the hardcoded TOC as base
  682. uint32_t len = 4 + 11 * 3; // Header, A0, A1, A2
  683. memcpy(scsiDev.data, FullTOC, len);
  684. // Add track descriptors
  685. int trackcount = 0;
  686. int firsttrack = -1;
  687. CUETrackInfo lasttrack = {0};
  688. const CUETrackInfo *trackinfo;
  689. uint64_t prev_capacity = 0;
  690. while ((trackinfo = parser.next_track(prev_capacity)) != NULL)
  691. {
  692. if (firsttrack < 0)
  693. {
  694. firsttrack = trackinfo->track_number;
  695. if (trackinfo->track_mode == CUETrack_AUDIO)
  696. {
  697. scsiDev.data[5] = 0x10;
  698. }
  699. }
  700. lasttrack = *trackinfo;
  701. formatRawTrackInfo(trackinfo, &scsiDev.data[len], useBCD);
  702. trackcount += 1;
  703. len += 11;
  704. cdromSelectBinFileForTrack(img, trackinfo);
  705. prev_capacity = img.file.size();
  706. }
  707. // First and last track numbers
  708. scsiDev.data[12] = firsttrack;
  709. if (lasttrack.track_number != 0)
  710. {
  711. scsiDev.data[23] = lasttrack.track_number;
  712. if (lasttrack.track_mode == CUETrack_AUDIO)
  713. {
  714. scsiDev.data[16] = 0x10;
  715. scsiDev.data[27] = 0x10;
  716. }
  717. }
  718. // Leadout track position
  719. if (useBCD) {
  720. LBA2MSFBCD(getLeadOutLBA(&lasttrack), &scsiDev.data[34], false);
  721. } else {
  722. LBA2MSF(getLeadOutLBA(&lasttrack), &scsiDev.data[34], false);
  723. }
  724. // Correct the record length in header
  725. uint16_t toclen = len - 2;
  726. scsiDev.data[0] = toclen >> 8;
  727. scsiDev.data[1] = toclen & 0xFF;
  728. if (len > allocationLength)
  729. {
  730. len = allocationLength;
  731. }
  732. scsiDev.dataLen = len;
  733. scsiDev.phase = DATA_IN;
  734. }
  735. // SCSI-3 MMC Read Header command, seems to be deprecated in later standards.
  736. // Refer to ANSI X3.304-1997
  737. // The spec is vague, but based on experimentation with a Matshita drive this
  738. // command should return the sector header absolute time (see ECMA-130 21).
  739. // Given 2048-byte block sizes this effectively is 1:1 with the provided LBA.
  740. void doReadHeader(bool MSF, uint32_t lba, uint16_t allocationLength)
  741. {
  742. image_config_t &img = *(image_config_t*)scsiDev.target->cfg;
  743. #if ENABLE_AUDIO_OUTPUT
  744. // terminate audio playback if active on this target (Annex C)
  745. audio_stop(img.scsiId & 7);
  746. #endif
  747. uint8_t mode = 1;
  748. if (img.cuesheetfile.isOpen())
  749. {
  750. // Search the track with the requested LBA
  751. CUETrackInfo trackinfo = {};
  752. getTrackFromLBA(img, lba, &trackinfo);
  753. // Track mode (audio / data)
  754. if (trackinfo.track_mode == CUETrack_AUDIO)
  755. {
  756. scsiDev.data[0] = 0;
  757. }
  758. }
  759. scsiDev.data[0] = mode;
  760. scsiDev.data[1] = 0; // reserved
  761. scsiDev.data[2] = 0; // reserved
  762. scsiDev.data[3] = 0; // reserved
  763. // Track start
  764. if (MSF)
  765. {
  766. scsiDev.data[4] = 0;
  767. LBA2MSF(lba, &scsiDev.data[5], false);
  768. }
  769. else
  770. {
  771. scsiDev.data[4] = (lba >> 24) & 0xFF;
  772. scsiDev.data[5] = (lba >> 16) & 0xFF;
  773. scsiDev.data[6] = (lba >> 8) & 0xFF;
  774. scsiDev.data[7] = (lba >> 0) & 0xFF;
  775. }
  776. uint8_t len = 8;
  777. if (len > allocationLength)
  778. {
  779. len = allocationLength;
  780. }
  781. scsiDev.dataLen = len;
  782. scsiDev.phase = DATA_IN;
  783. }
  784. void doReadDiscInformation(uint16_t allocationLength)
  785. {
  786. image_config_t &img = *(image_config_t*)scsiDev.target->cfg;
  787. CUEParser parser;
  788. if (!loadCueSheet(img, parser))
  789. {
  790. // No CUE sheet, use hardcoded data
  791. return doReadDiscInformationSimple(allocationLength);
  792. }
  793. // Take the hardcoded header as base
  794. uint32_t len = sizeof(DiscInformation);
  795. memcpy(scsiDev.data, DiscInformation, len);
  796. // Find first and last track number
  797. int firsttrack = -1;
  798. int lasttrack = -1;
  799. const CUETrackInfo *trackinfo;
  800. while ((trackinfo = parser.next_track()) != NULL)
  801. {
  802. if (firsttrack < 0) firsttrack = trackinfo->track_number;
  803. lasttrack = trackinfo->track_number;
  804. }
  805. scsiDev.data[3] = firsttrack;
  806. scsiDev.data[5] = firsttrack;
  807. scsiDev.data[6] = lasttrack;
  808. if (len > allocationLength)
  809. {
  810. len = allocationLength;
  811. }
  812. scsiDev.dataLen = len;
  813. scsiDev.phase = DATA_IN;
  814. }
  815. void doReadTrackInformation(bool track, uint32_t lba, uint16_t allocationLength)
  816. {
  817. image_config_t &img = *(image_config_t*)scsiDev.target->cfg;
  818. CUEParser parser;
  819. if (!loadCueSheet(img, parser))
  820. {
  821. // No CUE sheet, use hardcoded data
  822. return doReadTrackInformationSimple(track, lba, allocationLength);
  823. }
  824. // Take the hardcoded header as base
  825. uint32_t len = sizeof(TrackInformation);
  826. memcpy(scsiDev.data, TrackInformation, len);
  827. // Step through the tracks until the one requested is found
  828. // Result will be placed in mtrack for later use if found
  829. bool trackfound = false;
  830. uint32_t tracklen = 0;
  831. CUETrackInfo mtrack = {0};
  832. const CUETrackInfo *trackinfo;
  833. uint64_t prev_capacity = 0;
  834. while ((trackinfo = parser.next_track(prev_capacity)) != NULL)
  835. {
  836. if (mtrack.track_number != 0) // skip 1st track, just store later
  837. {
  838. if ((track && lba == mtrack.track_number)
  839. || (!track && lba < trackinfo->data_start))
  840. {
  841. trackfound = true;
  842. tracklen = trackinfo->data_start - mtrack.data_start;
  843. break;
  844. }
  845. }
  846. mtrack = *trackinfo;
  847. cdromSelectBinFileForTrack(img, trackinfo);
  848. prev_capacity = img.file.size();
  849. }
  850. // try the last track as a final attempt if no match found beforehand
  851. if (!trackfound)
  852. {
  853. uint32_t lastLba = getLeadOutLBA(&mtrack);
  854. if ((track && lba == mtrack.track_number)
  855. || (!track && lba < lastLba))
  856. {
  857. trackfound = true;
  858. tracklen = lastLba - mtrack.data_start;
  859. }
  860. }
  861. // bail out if no match found
  862. if (!trackfound)
  863. {
  864. scsiDev.status = CHECK_CONDITION;
  865. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  866. scsiDev.target->sense.asc = INVALID_FIELD_IN_CDB;
  867. scsiDev.phase = STATUS;
  868. return;
  869. }
  870. // rewrite relevant bytes, starting with track number
  871. scsiDev.data[3] = mtrack.track_number;
  872. // track mode
  873. if (mtrack.track_mode == CUETrack_AUDIO)
  874. {
  875. scsiDev.data[5] = 0x00;
  876. }
  877. // track start
  878. uint32_t start = mtrack.data_start;
  879. scsiDev.data[8] = start >> 24;
  880. scsiDev.data[9] = start >> 16;
  881. scsiDev.data[10] = start >> 8;
  882. scsiDev.data[11] = start;
  883. // track size
  884. scsiDev.data[24] = tracklen >> 24;
  885. scsiDev.data[25] = tracklen >> 16;
  886. scsiDev.data[26] = tracklen >> 8;
  887. scsiDev.data[27] = tracklen;
  888. dbgmsg("------ Reporting track ", mtrack.track_number, ", start ", start,
  889. ", length ", tracklen);
  890. if (len > allocationLength)
  891. {
  892. len = allocationLength;
  893. }
  894. scsiDev.dataLen = len;
  895. scsiDev.phase = DATA_IN;
  896. }
  897. void doGetConfiguration(uint8_t rt, uint16_t startFeature, uint16_t allocationLength)
  898. {
  899. // rt = 0 is all features, rt = 1 is current features,
  900. // rt = 2 only startFeature, others reserved
  901. if (rt > 2)
  902. {
  903. scsiDev.status = CHECK_CONDITION;
  904. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  905. scsiDev.target->sense.asc = INVALID_FIELD_IN_CDB;
  906. scsiDev.phase = STATUS;
  907. return;
  908. }
  909. image_config_t &img = *(image_config_t*)scsiDev.target->cfg;
  910. // write feature header
  911. uint32_t len = 8; // length bytes set at end of call
  912. scsiDev.data[4] = 0; // reserved
  913. scsiDev.data[5] = 0; // reserved
  914. if (!img.ejected)
  915. {
  916. // disk in drive, current profile is CD-ROM
  917. scsiDev.data[6] = 0x00;
  918. scsiDev.data[7] = 0x08;
  919. }
  920. else
  921. {
  922. // no disk, report no current profile
  923. scsiDev.data[6] = 0;
  924. scsiDev.data[7] = 0;
  925. }
  926. // profile list (0)
  927. if ((rt == 2 && 0 == startFeature)
  928. || (rt == 1 && startFeature <= 0)
  929. || (rt == 0 && startFeature <= 0))
  930. {
  931. scsiDev.data[len++] = 0x00;
  932. scsiDev.data[len++] = 0x00;
  933. scsiDev.data[len++] = 0x03; // ver 0, persist=1,current=1
  934. scsiDev.data[len++] = 8; // 2 more
  935. // CD-ROM profile
  936. scsiDev.data[len++] = 0x00;
  937. scsiDev.data[len++] = 0x08;
  938. scsiDev.data[len++] = (img.ejected) ? 0x00 : 0x01;
  939. scsiDev.data[len++] = 0;
  940. // removable disk profile
  941. scsiDev.data[len++] = 0x00;
  942. scsiDev.data[len++] = 0x02;
  943. scsiDev.data[len++] = 0x00;
  944. scsiDev.data[len++] = 0;
  945. }
  946. // core feature (1)
  947. if ((rt == 2 && startFeature == 1)
  948. || (rt == 1 && startFeature <= 1)
  949. || (rt == 0 && startFeature <= 1))
  950. {
  951. scsiDev.data[len++] = 0x00;
  952. scsiDev.data[len++] = 0x01;
  953. scsiDev.data[len++] = 0x0B; // ver 2, persist=1,current=1
  954. scsiDev.data[len++] = 8;
  955. // physical interface standard (SCSI)
  956. scsiDev.data[len++] = 0x00;
  957. scsiDev.data[len++] = 0x00;
  958. scsiDev.data[len++] = 0x00;
  959. scsiDev.data[len++] = 0x01;
  960. scsiDev.data[len++] = 0x03; // support INQ2 and DBE
  961. scsiDev.data[len++] = 0;
  962. scsiDev.data[len++] = 0;
  963. scsiDev.data[len++] = 0;
  964. }
  965. // morphing feature (2)
  966. if ((rt == 2 && startFeature == 2)
  967. || (rt == 1 && startFeature <= 2)
  968. || (rt == 0 && startFeature <= 2))
  969. {
  970. scsiDev.data[len++] = 0x00;
  971. scsiDev.data[len++] = 0x02;
  972. scsiDev.data[len++] = 0x07; // ver 1, persist=1,current=1
  973. scsiDev.data[len++] = 4;
  974. scsiDev.data[len++] = 0x02; // OCEvent=1,async=0
  975. scsiDev.data[len++] = 0;
  976. scsiDev.data[len++] = 0;
  977. scsiDev.data[len++] = 0;
  978. }
  979. // removable medium feature (3)
  980. if ((rt == 2 && startFeature == 3)
  981. || (rt == 1 && startFeature <= 3)
  982. || (rt == 0 && startFeature <= 3))
  983. {
  984. scsiDev.data[len++] = 0x00;
  985. scsiDev.data[len++] = 0x03;
  986. scsiDev.data[len++] = 0x03; // ver 0, persist=1,current=1
  987. scsiDev.data[len++] = 4;
  988. scsiDev.data[len++] = 0x28; // matches 0x2A mode page version
  989. scsiDev.data[len++] = 0;
  990. scsiDev.data[len++] = 0;
  991. scsiDev.data[len++] = 0;
  992. }
  993. // random readable feature (0x10, 16)
  994. if ((rt == 2 && startFeature == 16)
  995. || (rt == 1 && startFeature <= 16 && !img.ejected)
  996. || (rt == 0 && startFeature <= 16))
  997. {
  998. scsiDev.data[len++] = 0x00;
  999. scsiDev.data[len++] = 0x10;
  1000. // ver 0, persist=0,current=drive state
  1001. scsiDev.data[len++] = (img.ejected) ? 0x00 : 0x01;
  1002. scsiDev.data[len++] = 8;
  1003. scsiDev.data[len++] = 0x00; // 2048 (MSB)
  1004. scsiDev.data[len++] = 0x00; // .
  1005. scsiDev.data[len++] = 0x08; // .
  1006. scsiDev.data[len++] = 0x00; // 2048 (LSB)
  1007. scsiDev.data[len++] = 0x00;
  1008. // one block min when disk in drive only
  1009. scsiDev.data[len++] = (img.ejected) ? 0x00 : 0x01;
  1010. scsiDev.data[len++] = 0x00; // no support for PP error correction (TODO?)
  1011. scsiDev.data[len++] = 0;
  1012. }
  1013. // multi-read feature (0x1D, 29)
  1014. if ((rt == 2 && startFeature == 29)
  1015. || (rt == 1 && startFeature <= 29 && !img.ejected)
  1016. || (rt == 0 && startFeature <= 29))
  1017. {
  1018. scsiDev.data[len++] = 0x00;
  1019. scsiDev.data[len++] = 0x1D;
  1020. // ver 0, persist=0,current=drive state
  1021. scsiDev.data[len++] = (img.ejected) ? 0x00 : 0x01;
  1022. scsiDev.data[len++] = 0;
  1023. }
  1024. // CD read feature (0x1E, 30)
  1025. if ((rt == 2 && startFeature == 30)
  1026. || (rt == 1 && startFeature <= 30 && !img.ejected)
  1027. || (rt == 0 && startFeature <= 30))
  1028. {
  1029. scsiDev.data[len++] = 0x00;
  1030. scsiDev.data[len++] = 0x1E;
  1031. // ver 2, persist=0,current=drive state
  1032. scsiDev.data[len++] = (img.ejected) ? 0x08 : 0x09;
  1033. scsiDev.data[len++] = 4;
  1034. scsiDev.data[len++] = 0x00; // dap=0,c2=0,cd-text=0
  1035. scsiDev.data[len++] = 0;
  1036. scsiDev.data[len++] = 0;
  1037. scsiDev.data[len++] = 0;
  1038. }
  1039. #ifdef ENABLE_AUDIO_OUTPUT
  1040. // CD audio feature (0x103, 259)
  1041. if ((rt == 2 && startFeature == 259)
  1042. || (rt == 1 && startFeature <= 259 && !img.ejected)
  1043. || (rt == 0 && startFeature <= 259))
  1044. {
  1045. scsiDev.data[len++] = 0x01;
  1046. scsiDev.data[len++] = 0x03;
  1047. // ver 1, persist=0,current=drive state
  1048. scsiDev.data[len++] = (img.ejected) ? 0x04 : 0x05;
  1049. scsiDev.data[len++] = 4;
  1050. scsiDev.data[len++] = 0x03; // scan=0,scm=1,sv=1
  1051. scsiDev.data[len++] = 0;
  1052. scsiDev.data[len++] = 0x01; // 256 volume levels
  1053. scsiDev.data[len++] = 0x00; // .
  1054. }
  1055. #endif
  1056. // finally, rewrite data length to match
  1057. uint32_t dlen = len - 4;
  1058. scsiDev.data[0] = dlen >> 24;
  1059. scsiDev.data[1] = dlen >> 16;
  1060. scsiDev.data[2] = dlen >> 8;
  1061. scsiDev.data[3] = dlen;
  1062. if (len > allocationLength)
  1063. {
  1064. len = allocationLength;
  1065. }
  1066. scsiDev.dataLen = len;
  1067. scsiDev.phase = DATA_IN;
  1068. }
  1069. /****************************************/
  1070. /* CUE sheet check at image load time */
  1071. /****************************************/
  1072. bool cdromValidateCueSheet(image_config_t &img)
  1073. {
  1074. CUEParser parser;
  1075. if (!loadCueSheet(img, parser))
  1076. {
  1077. return false;
  1078. }
  1079. const CUETrackInfo *trackinfo;
  1080. int trackcount = 0;
  1081. uint64_t prev_capacity = 0;
  1082. while ((trackinfo = parser.next_track(prev_capacity)) != NULL)
  1083. {
  1084. trackcount++;
  1085. if (trackinfo->track_mode != CUETrack_AUDIO &&
  1086. trackinfo->track_mode != CUETrack_MODE1_2048 &&
  1087. trackinfo->track_mode != CUETrack_MODE1_2352)
  1088. {
  1089. logmsg("---- Warning: track ", trackinfo->track_number, " has unsupported mode ", (int)trackinfo->track_mode);
  1090. }
  1091. if (trackinfo->file_mode != CUEFile_BINARY)
  1092. {
  1093. logmsg("---- Unsupported CUE data file mode ", (int)trackinfo->file_mode);
  1094. }
  1095. // Check that the bin file is available
  1096. if (!cdromSelectBinFileForTrack(img, trackinfo))
  1097. {
  1098. return false;
  1099. }
  1100. prev_capacity = img.file.size();
  1101. }
  1102. if (trackcount == 0)
  1103. {
  1104. logmsg("---- Opened cue sheet but no valid tracks found");
  1105. return false;
  1106. }
  1107. logmsg("---- Cue sheet loaded with ", (int)trackcount, " tracks");
  1108. return true;
  1109. }
  1110. /**************************************/
  1111. /* Ejection and image switching logic */
  1112. /**************************************/
  1113. // Close CDROM tray and note media change event
  1114. void cdromCloseTray(image_config_t &img)
  1115. {
  1116. if (img.ejected)
  1117. {
  1118. uint8_t target = img.scsiId & 7;
  1119. dbgmsg("------ CDROM close tray on ID ", (int)target);
  1120. img.ejected = false;
  1121. img.cdrom_events = 2; // New media
  1122. if (scsiDev.boardCfg.flags & S2S_CFG_ENABLE_UNIT_ATTENTION)
  1123. {
  1124. dbgmsg("------ Posting UNIT ATTENTION after medium change");
  1125. scsiDev.targets[target].unitAttention = NOT_READY_TO_READY_TRANSITION_MEDIUM_MAY_HAVE_CHANGED;
  1126. }
  1127. }
  1128. }
  1129. // Eject CDROM tray if closed, close if open
  1130. // Switch image on ejection.
  1131. void cdromPerformEject(image_config_t &img)
  1132. {
  1133. uint8_t target = img.scsiId & 7;
  1134. #if ENABLE_AUDIO_OUTPUT
  1135. // terminate audio playback if active on this target (MMC-1 Annex C)
  1136. audio_stop(target);
  1137. #endif
  1138. if (!img.ejected)
  1139. {
  1140. dbgmsg("------ CDROM open tray on ID ", (int)target);
  1141. img.ejected = true;
  1142. img.cdrom_events = 3; // Media removal
  1143. switchNextImage(img); // Switch media for next time
  1144. }
  1145. else
  1146. {
  1147. cdromCloseTray(img);
  1148. }
  1149. }
  1150. // Reinsert any ejected CDROMs on reboot
  1151. void cdromReinsertFirstImage(image_config_t &img)
  1152. {
  1153. if (img.image_index > 0)
  1154. {
  1155. // Multiple images for this drive, force restart from first one
  1156. uint8_t target = img.scsiId & 7;
  1157. dbgmsg("---- Restarting from first CD-ROM image for ID ", (int)target);
  1158. img.image_index = -1;
  1159. img.current_image[0] = '\0';
  1160. switchNextImage(img);
  1161. }
  1162. else if (img.ejected)
  1163. {
  1164. // Reinsert the single image
  1165. cdromCloseTray(img);
  1166. }
  1167. }
  1168. static void doGetEventStatusNotification(bool immed)
  1169. {
  1170. image_config_t &img = *(image_config_t*)scsiDev.target->cfg;
  1171. if (!immed)
  1172. {
  1173. // Asynchronous notification not supported
  1174. scsiDev.status = CHECK_CONDITION;
  1175. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  1176. scsiDev.target->sense.asc = INVALID_FIELD_IN_CDB;
  1177. scsiDev.phase = STATUS;
  1178. }
  1179. else if (img.cdrom_events)
  1180. {
  1181. scsiDev.data[0] = 0;
  1182. scsiDev.data[1] = 6; // EventDataLength
  1183. scsiDev.data[2] = 0x04; // Media status events
  1184. scsiDev.data[3] = 0x04; // Supported events
  1185. scsiDev.data[4] = img.cdrom_events;
  1186. scsiDev.data[5] = 0x01; // Power status
  1187. scsiDev.data[6] = 0; // Start slot
  1188. scsiDev.data[7] = 0; // End slot
  1189. scsiDev.dataLen = 8;
  1190. scsiDev.phase = DATA_IN;
  1191. img.cdrom_events = 0;
  1192. if (img.ejected && img.reinsert_after_eject)
  1193. {
  1194. // We are now reporting to host that the drive is open.
  1195. // Simulate a "close" for next time the host polls.
  1196. cdromCloseTray(img);
  1197. }
  1198. }
  1199. else
  1200. {
  1201. scsiDev.data[0] = 0;
  1202. scsiDev.data[1] = 2; // EventDataLength
  1203. scsiDev.data[2] = 0x00; // Media status events
  1204. scsiDev.data[3] = 0x04; // Supported events
  1205. scsiDev.dataLen = 4;
  1206. scsiDev.phase = DATA_IN;
  1207. }
  1208. }
  1209. /**************************************/
  1210. /* CD-ROM audio playback */
  1211. /**************************************/
  1212. void cdromGetAudioPlaybackStatus(uint8_t *status, uint32_t *current_lba, bool current_only)
  1213. {
  1214. #ifdef ENABLE_AUDIO_OUTPUT
  1215. image_config_t &img = *(image_config_t*)scsiDev.target->cfg;
  1216. if (status) {
  1217. uint8_t target = img.scsiId & 7;
  1218. if (current_only) {
  1219. *status = audio_is_playing(target) ? 1 : 0;
  1220. } else {
  1221. *status = (uint8_t) audio_get_status_code(target);
  1222. }
  1223. }
  1224. *current_lba = audio_get_file_position() / 2352;
  1225. #else
  1226. if (status) *status = 0; // audio status code for 'unsupported/invalid' and not-playing indicator
  1227. #endif
  1228. }
  1229. static void doPlayAudio(uint32_t lba, uint32_t length)
  1230. {
  1231. #ifdef ENABLE_AUDIO_OUTPUT
  1232. dbgmsg("------ CD-ROM Play Audio request at ", lba, " for ", length, " sectors");
  1233. image_config_t &img = *(image_config_t*)scsiDev.target->cfg;
  1234. uint8_t target_id = img.scsiId & 7;
  1235. // Per Annex C terminate playback immediately if already in progress on
  1236. // the current target. Non-current targets may also get their audio
  1237. // interrupted later due to hardware limitations
  1238. audio_stop(img.scsiId & 7);
  1239. // if transfer length is zero no audio playback happens.
  1240. // don't treat as an error per SCSI-2; handle via short-circuit
  1241. if (length == 0)
  1242. {
  1243. audio_set_file_position(lba);
  1244. scsiDev.status = 0;
  1245. scsiDev.phase = STATUS;
  1246. return;
  1247. }
  1248. // if actual playback is requested perform steps to verify prior to playback
  1249. if (img.cuesheetfile.isOpen())
  1250. {
  1251. CUETrackInfo trackinfo = {};
  1252. getTrackFromLBA(img, lba, &trackinfo);
  1253. if (lba == 0xFFFFFFFF)
  1254. {
  1255. // request to start playback from 'current position'
  1256. lba = audio_get_file_position() / AUDIO_CD_SECTOR_LEN;
  1257. }
  1258. uint64_t offset = trackinfo.file_offset
  1259. + trackinfo.sector_length * (lba - trackinfo.track_start);
  1260. dbgmsg("------ Play audio CD: ", (int)length, " sectors starting at ", (int)lba,
  1261. ", track number ", trackinfo.track_number, ", data offset in file ", (int)offset);
  1262. if (trackinfo.track_mode != CUETrack_AUDIO)
  1263. {
  1264. dbgmsg("---- Host tried audio playback on track type ", (int)trackinfo.track_mode);
  1265. scsiDev.status = CHECK_CONDITION;
  1266. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  1267. scsiDev.target->sense.asc = 0x6400; // ILLEGAL MODE FOR THIS TRACK
  1268. scsiDev.phase = STATUS;
  1269. return;
  1270. }
  1271. // playback request appears to be sane, so perform it
  1272. // see earlier note for context on the block length below
  1273. if (!audio_play(target_id, &(img.file), offset,
  1274. offset + length * trackinfo.sector_length, false))
  1275. {
  1276. // Underlying data/media error? Fake a disk scratch, which should
  1277. // be a condition most CD-DA players are expecting
  1278. scsiDev.status = CHECK_CONDITION;
  1279. scsiDev.target->sense.code = MEDIUM_ERROR;
  1280. scsiDev.target->sense.asc = 0x1106; // CIRC UNRECOVERED ERROR
  1281. scsiDev.phase = STATUS;
  1282. return;
  1283. }
  1284. scsiDev.status = 0;
  1285. scsiDev.phase = STATUS;
  1286. }
  1287. else
  1288. {
  1289. // virtual drive supports audio, just not with this disk image
  1290. dbgmsg("---- Request to play audio on non-audio image");
  1291. scsiDev.status = CHECK_CONDITION;
  1292. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  1293. scsiDev.target->sense.asc = 0x6400; // ILLEGAL MODE FOR THIS TRACK
  1294. scsiDev.phase = STATUS;
  1295. }
  1296. #else
  1297. dbgmsg("---- Target does not support audio playback");
  1298. // per SCSI-2, targets not supporting audio respond to zero-length
  1299. // PLAY AUDIO commands with ILLEGAL REQUEST; this seems to be a check
  1300. // performed by at least some audio playback software
  1301. scsiDev.status = CHECK_CONDITION;
  1302. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  1303. scsiDev.target->sense.asc = 0x0000; // NO ADDITIONAL SENSE INFORMATION
  1304. scsiDev.phase = STATUS;
  1305. #endif
  1306. }
  1307. static void doPauseResumeAudio(bool resume)
  1308. {
  1309. #ifdef ENABLE_AUDIO_OUTPUT
  1310. dbgmsg("------ CD-ROM ", resume ? "resume" : "pause", " audio playback");
  1311. image_config_t &img = *(image_config_t*)scsiDev.target->cfg;
  1312. uint8_t target_id = img.scsiId & 7;
  1313. if (audio_is_playing(target_id))
  1314. {
  1315. audio_set_paused(target_id, !resume);
  1316. scsiDev.status = 0;
  1317. scsiDev.phase = STATUS;
  1318. }
  1319. else
  1320. {
  1321. scsiDev.status = CHECK_CONDITION;
  1322. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  1323. scsiDev.target->sense.asc = 0x2C00; // COMMAND SEQUENCE ERROR
  1324. scsiDev.phase = STATUS;
  1325. }
  1326. #else
  1327. dbgmsg("---- Target does not support audio pausing");
  1328. scsiDev.status = CHECK_CONDITION;
  1329. scsiDev.target->sense.code = ILLEGAL_REQUEST; // assumed from PLAY AUDIO(10)
  1330. scsiDev.target->sense.asc = 0x0000; // NO ADDITIONAL SENSE INFORMATION
  1331. scsiDev.phase = STATUS;
  1332. #endif
  1333. }
  1334. static void doStopAudio()
  1335. {
  1336. dbgmsg("------ CD-ROM Stop Audio request");
  1337. #ifdef ENABLE_AUDIO_OUTPUT
  1338. image_config_t &img = *(image_config_t*)scsiDev.target->cfg;
  1339. uint8_t target_id = img.scsiId & 7;
  1340. audio_stop(target_id);
  1341. #endif
  1342. }
  1343. static void doMechanismStatus(uint16_t allocation_length)
  1344. {
  1345. uint8_t *buf = scsiDev.data;
  1346. uint8_t status;
  1347. uint32_t lba = 0;
  1348. cdromGetAudioPlaybackStatus(&status, &lba, true);
  1349. *buf++ = 0x00; // No fault state
  1350. *buf++ = (status) ? 0x20 : 0x00; // Currently playing?
  1351. *buf++ = (lba >> 16) & 0xFF;
  1352. *buf++ = (lba >> 8) & 0xFF;
  1353. *buf++ = (lba >> 0) & 0xFF;
  1354. *buf++ = 0; // No CD changer
  1355. *buf++ = 0;
  1356. *buf++ = 0;
  1357. int len = 8;
  1358. if (len > allocation_length) len = allocation_length;
  1359. scsiDev.dataLen = len;
  1360. scsiDev.phase = DATA_IN;
  1361. }
  1362. /*******************************************/
  1363. /* CD-ROM data reading in low level format */
  1364. /*******************************************/
  1365. static void doReadCD(uint32_t lba, uint32_t length, uint8_t sector_type,
  1366. uint8_t main_channel, uint8_t sub_channel, bool data_only)
  1367. {
  1368. image_config_t &img = *(image_config_t*)scsiDev.target->cfg;
  1369. #if ENABLE_AUDIO_OUTPUT
  1370. // terminate audio playback if active on this target (Annex C)
  1371. audio_stop(img.scsiId & 7);
  1372. #endif
  1373. if (!img.cuesheetfile.isOpen()
  1374. && (sector_type == 0 || sector_type == 2)
  1375. && main_channel == 0x10 && sub_channel == 0)
  1376. {
  1377. // Simple case, return sector data directly
  1378. scsiDiskStartRead(lba, length);
  1379. return;
  1380. }
  1381. // Search the track with the requested LBA
  1382. // Supplies dummy data if no cue sheet is active.
  1383. CUETrackInfo trackinfo = {};
  1384. getTrackFromLBA(img, lba, &trackinfo);
  1385. // Figure out the data offset in the file
  1386. int64_t offset;
  1387. if (sector_type == SECTOR_TYPE_VENDOR_PLEXTOR &&
  1388. g_scsi_settings.getDevice(img.scsiId & 0x7)->vendorExtensions & VENDOR_EXTENSION_OPTICAL_PLEXTOR)
  1389. {
  1390. // This overrides values so doReadCD can be used with the
  1391. // Vendor specific Plextor 0xD8 command to read raw CD data
  1392. if (lba < 2)
  1393. {
  1394. logmsg("WARNING: Plextor CD-ROM vendor extension 0xd8 lba start below 2 is not implemented. LBA is ", lba);
  1395. scsiDev.status = CHECK_CONDITION;
  1396. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  1397. scsiDev.target->sense.asc = LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
  1398. scsiDev.phase = STATUS;
  1399. return;
  1400. }
  1401. trackinfo.sector_length = AUDIO_CD_SECTOR_LEN;
  1402. trackinfo.track_mode = CUETrack_AUDIO;
  1403. offset = ((int64_t)lba - 2 - trackinfo.file_start) * trackinfo.sector_length;
  1404. dbgmsg("------ Read CD Vendor Plextor (0xd8): ", (int)length, " sectors starting at ", (int)lba -2,
  1405. ", sector size ", (int) AUDIO_CD_SECTOR_LEN,
  1406. ", data offset in file ", (int)offset);
  1407. }
  1408. else if (sector_type == SECTOR_TYPE_VENDOR_APPLE_300plus)
  1409. {
  1410. trackinfo.sector_length = AUDIO_CD_SECTOR_LEN;
  1411. trackinfo.track_mode = CUETrack_AUDIO;
  1412. offset = ((int64_t)lba - trackinfo.file_start) * trackinfo.sector_length;
  1413. dbgmsg("------ Read CD Vendor Apple CDROM 300 plus (0xd8): ", (int)length, " sectors starting at ", (int)lba,
  1414. ", sector size ", (int) AUDIO_CD_SECTOR_LEN,
  1415. ", data offset in file ", (int)offset);
  1416. }
  1417. else
  1418. {
  1419. offset = trackinfo.file_offset + trackinfo.sector_length * ((int64_t)lba - trackinfo.data_start);
  1420. dbgmsg("------ Read CD: ", (int)length, " sectors starting at ", (int)lba,
  1421. ", track number ", trackinfo.track_number, ", sector size ", (int)trackinfo.sector_length,
  1422. ", main channel ", main_channel, ", sub channel ", sub_channel,
  1423. ", data offset in file ", (int)offset);
  1424. }
  1425. // Ensure read is not out of range of the image
  1426. uint32_t total_length = length;
  1427. uint64_t readend = offset + trackinfo.sector_length * length;
  1428. if (offset < 0 && -offset > trackinfo.unstored_pregap_length * trackinfo.sector_length)
  1429. {
  1430. // It doesn't really matter what data we give for the unstored pregap
  1431. offset = 0;
  1432. }
  1433. else if (readend > img.file.size())
  1434. {
  1435. uint32_t sectors_available = (img.file.size() - offset) / trackinfo.sector_length;
  1436. if (!img.file.isFolder() || sectors_available == 0)
  1437. {
  1438. // This is really past the end of the CD
  1439. logmsg("WARNING: Host attempted CD read at sector ", lba, "+", length,
  1440. ", exceeding image size ", img.file.size());
  1441. scsiDev.status = CHECK_CONDITION;
  1442. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  1443. scsiDev.target->sense.asc = LOGICAL_BLOCK_ADDRESS_OUT_OF_RANGE;
  1444. scsiDev.phase = STATUS;
  1445. return;
  1446. }
  1447. else
  1448. {
  1449. // Read as much as we can and continue with next file
  1450. dbgmsg("------ Splitting read request at image file end");
  1451. length = sectors_available;
  1452. }
  1453. }
  1454. // Verify sector type
  1455. if (sector_type != 0)
  1456. {
  1457. bool sector_type_ok = false;
  1458. if (sector_type == 1 && trackinfo.track_mode == CUETrack_AUDIO)
  1459. {
  1460. sector_type_ok = true;
  1461. }
  1462. else if (sector_type == 2 && trackinfo.track_mode == CUETrack_MODE1_2048)
  1463. {
  1464. sector_type_ok = true;
  1465. }
  1466. else if (sector_type == SECTOR_TYPE_VENDOR_PLEXTOR &&
  1467. g_scsi_settings.getDevice(img.scsiId & 0x7)->vendorExtensions & VENDOR_EXTENSION_OPTICAL_PLEXTOR)
  1468. {
  1469. sector_type_ok = true;
  1470. }
  1471. else if (sector_type == SECTOR_TYPE_VENDOR_APPLE_300plus )
  1472. {
  1473. sector_type_ok = true;
  1474. }
  1475. if (!sector_type_ok)
  1476. {
  1477. dbgmsg("---- Failed sector type check, host requested ", (int)sector_type, " CUE file has ", (int)trackinfo.track_mode);
  1478. scsiDev.status = CHECK_CONDITION;
  1479. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  1480. scsiDev.target->sense.asc = 0x6400; // ILLEGAL MODE FOR THIS TRACK
  1481. scsiDev.phase = STATUS;
  1482. return;
  1483. }
  1484. }
  1485. // Select fields to transfer
  1486. // Refer to table 351 in T10/1545-D MMC-4 Revision 5a
  1487. // Only the mandatory cases are supported.
  1488. int sector_length = 0;
  1489. int skip_begin = 0;
  1490. bool add_fake_headers = false;
  1491. if (main_channel == 0)
  1492. {
  1493. // No actual data requested, just sector type check or subchannel
  1494. sector_length = 0;
  1495. }
  1496. else if (trackinfo.track_mode == CUETrack_AUDIO)
  1497. {
  1498. // Transfer whole 2352 byte audio sectors from file to host
  1499. sector_length = AUDIO_CD_SECTOR_LEN;
  1500. }
  1501. else if (trackinfo.track_mode == CUETrack_MODE1_2048 && main_channel == 0x10)
  1502. {
  1503. // Transfer whole 2048 byte data sectors from file to host
  1504. sector_length = 2048;
  1505. }
  1506. else if (trackinfo.track_mode == CUETrack_MODE1_2048 && (main_channel & 0xB8) == 0xB8)
  1507. {
  1508. // Transfer 2048 bytes of data from file and fake the headers
  1509. sector_length = 2048;
  1510. add_fake_headers = true;
  1511. dbgmsg("------ Host requested ECC data but image file lacks it, replacing with zeros");
  1512. }
  1513. else if (trackinfo.track_mode == CUETrack_MODE1_2352 && main_channel == 0x10)
  1514. {
  1515. // Transfer the 2048 byte payload of data sector to host.
  1516. sector_length = 2048;
  1517. skip_begin = 16;
  1518. }
  1519. else if (trackinfo.track_mode == CUETrack_MODE1_2352 && (main_channel & 0xB8) == 0xB8)
  1520. {
  1521. // Transfer whole 2352 byte data sector with ECC to host
  1522. sector_length = AUDIO_CD_SECTOR_LEN;
  1523. }
  1524. else
  1525. {
  1526. dbgmsg("---- Unsupported channel request for track type ", (int)trackinfo.track_mode);
  1527. scsiDev.status = CHECK_CONDITION;
  1528. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  1529. scsiDev.target->sense.asc = 0x6400; // ILLEGAL MODE FOR THIS TRACK
  1530. scsiDev.phase = STATUS;
  1531. return;
  1532. }
  1533. if (data_only && sector_length != 2048)
  1534. {
  1535. dbgmsg("------ Host tried to read non-data sector with standard READ command");
  1536. scsiDev.status = CHECK_CONDITION;
  1537. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  1538. scsiDev.target->sense.asc = 0x6400; // ILLEGAL MODE FOR THIS TRACK
  1539. scsiDev.phase = STATUS;
  1540. return;
  1541. }
  1542. bool field_q_subchannel = false;
  1543. if (sub_channel == 2)
  1544. {
  1545. // Include position information in Q subchannel
  1546. field_q_subchannel = true;
  1547. }
  1548. else if (sub_channel != 0)
  1549. {
  1550. dbgmsg("---- Unsupported subchannel request");
  1551. scsiDev.status = CHECK_CONDITION;
  1552. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  1553. scsiDev.target->sense.asc = INVALID_FIELD_IN_CDB;
  1554. scsiDev.phase = STATUS;
  1555. return;
  1556. }
  1557. scsiDev.phase = DATA_IN;
  1558. scsiDev.dataLen = 0;
  1559. scsiDev.dataPtr = 0;
  1560. scsiEnterPhase(DATA_IN);
  1561. // Use two buffers alternately for formatting sector data
  1562. uint32_t result_length = sector_length + (field_q_subchannel ? 16 : 0) + (add_fake_headers ? 304 : 0);
  1563. uint8_t *buf0 = scsiDev.data;
  1564. uint8_t *buf1 = scsiDev.data + result_length;
  1565. // Format the sectors for transfer
  1566. for (uint32_t idx = 0; idx < length; idx++)
  1567. {
  1568. platform_poll();
  1569. diskEjectButtonUpdate(false);
  1570. img.file.seek(offset + idx * trackinfo.sector_length + skip_begin);
  1571. // Verify that previous write using this buffer has finished
  1572. uint8_t *buf = ((idx & 1) ? buf1 : buf0);
  1573. uint8_t *bufstart = buf;
  1574. uint32_t start = millis();
  1575. while (!scsiIsWriteFinished(buf + result_length - 1) && !scsiDev.resetFlag)
  1576. {
  1577. if ((uint32_t)(millis() - start) > 5000)
  1578. {
  1579. logmsg("doReadCD() timeout waiting for previous to finish");
  1580. scsiDev.resetFlag = 1;
  1581. }
  1582. platform_poll();
  1583. diskEjectButtonUpdate(false);
  1584. }
  1585. if (scsiDev.resetFlag) break;
  1586. if ((g_scsi_settings.getDevice(img.scsiId & 0x7)->vendorExtensions & VENDOR_EXTENSION_OPTICAL_PLEXTOR))
  1587. {
  1588. if (sector_length > 0)
  1589. {
  1590. // User data
  1591. img.file.read(buf, sector_length);
  1592. buf += sector_length;
  1593. }
  1594. }
  1595. else
  1596. {
  1597. if (add_fake_headers)
  1598. {
  1599. // 12-byte data sector sync pattern
  1600. *buf++ = 0x00;
  1601. for (int i = 0; i < 10; i++)
  1602. {
  1603. *buf++ = 0xFF;
  1604. }
  1605. *buf++ = 0x00;
  1606. // 4-byte data sector header
  1607. LBA2MSFBCD(lba + idx, buf, false);
  1608. buf += 3;
  1609. *buf++ = 0x01; // Mode 1
  1610. }
  1611. if (sector_length > 0)
  1612. {
  1613. // User data
  1614. img.file.read(buf, sector_length);
  1615. buf += sector_length;
  1616. }
  1617. if (add_fake_headers)
  1618. {
  1619. // 288 bytes of ECC
  1620. memset(buf, 0, 288);
  1621. buf += 288;
  1622. }
  1623. if (field_q_subchannel)
  1624. {
  1625. // Formatted Q subchannel data
  1626. // Refer to table 354 in T10/1545-D MMC-4 Revision 5a
  1627. // and ECMA-130 22.3.3
  1628. *buf++ = (trackinfo.track_mode == CUETrack_AUDIO ? 0x10 : 0x14); // Control & ADR
  1629. *buf++ = trackinfo.track_number;
  1630. *buf++ = (lba + idx >= trackinfo.data_start) ? 1 : 0; // Index number (0 = pregap)
  1631. int32_t rel = (int32_t)(lba + idx) - (int32_t)trackinfo.data_start;
  1632. LBA2MSF(rel, buf, true); buf += 3;
  1633. *buf++ = 0;
  1634. LBA2MSF(lba + idx, buf, false); buf += 3;
  1635. *buf++ = 0; *buf++ = 0; // CRC (optional)
  1636. *buf++ = 0; *buf++ = 0; *buf++ = 0; // (pad)
  1637. *buf++ = 0; // No P subchannel
  1638. }
  1639. }
  1640. assert(buf == bufstart + result_length);
  1641. scsiStartWrite(bufstart, result_length);
  1642. // Reset the watchdog while the transfer is progressing.
  1643. // If the host stops transferring, the watchdog will eventually expire.
  1644. // This is needed to avoid hitting the watchdog if the host performs
  1645. // a large transfer compared to its transfer speed.
  1646. platform_reset_watchdog();
  1647. }
  1648. scsiFinishWrite();
  1649. if (length != total_length)
  1650. {
  1651. // This read request was split across multiple .bin files
  1652. // Tail recurse to read the next track.
  1653. doReadCD(lba + length, total_length - length, sector_type, main_channel, sub_channel, data_only);
  1654. return;
  1655. }
  1656. scsiDev.status = 0;
  1657. scsiDev.phase = STATUS;
  1658. }
  1659. static void doReadSubchannel(bool time, bool subq, uint8_t parameter, uint8_t track_number, uint16_t allocation_length)
  1660. {
  1661. uint8_t *buf = scsiDev.data;
  1662. if (parameter == 0x01)
  1663. {
  1664. uint8_t audiostatus;
  1665. uint32_t lba = 0;
  1666. cdromGetAudioPlaybackStatus(&audiostatus, &lba, false);
  1667. dbgmsg("------ Get audio playback position: status ", (int)audiostatus, " lba ", (int)lba);
  1668. // Fetch current track info
  1669. image_config_t &img = *(image_config_t*)scsiDev.target->cfg;
  1670. CUETrackInfo trackinfo = {};
  1671. getTrackFromLBA(img, lba, &trackinfo);
  1672. // Request sub channel data at current playback position
  1673. *buf++ = 0; // Reserved
  1674. *buf++ = audiostatus;
  1675. int len;
  1676. if (subq)
  1677. {
  1678. len = 12;
  1679. *buf++ = 0; // Subchannel data length (MSB)
  1680. *buf++ = len; // Subchannel data length (LSB)
  1681. *buf++ = 0x01; // Subchannel data format
  1682. *buf++ = (trackinfo.track_mode == CUETrack_AUDIO ? 0x10 : 0x14);
  1683. *buf++ = trackinfo.track_number;
  1684. *buf++ = (lba >= trackinfo.data_start) ? 1 : 0; // Index number (0 = pregap)
  1685. if (time)
  1686. {
  1687. *buf++ = 0;
  1688. LBA2MSF(lba, buf, false);
  1689. dbgmsg("------ ABS M ", *buf, " S ", *(buf+1), " F ", *(buf+2));
  1690. buf += 3;
  1691. }
  1692. else
  1693. {
  1694. *buf++ = (lba >> 24) & 0xFF; // Absolute block address
  1695. *buf++ = (lba >> 16) & 0xFF;
  1696. *buf++ = (lba >> 8) & 0xFF;
  1697. *buf++ = (lba >> 0) & 0xFF;
  1698. }
  1699. int32_t relpos = (int32_t)lba - (int32_t)trackinfo.data_start;
  1700. if (time)
  1701. {
  1702. *buf++ = 0;
  1703. LBA2MSF(relpos, buf, true);
  1704. dbgmsg("------ REL M ", *buf, " S ", *(buf+1), " F ", *(buf+2));
  1705. buf += 3;
  1706. }
  1707. else
  1708. {
  1709. uint32_t urelpos = relpos;
  1710. *buf++ = (urelpos >> 24) & 0xFF; // Track relative position (may be negative)
  1711. *buf++ = (urelpos >> 16) & 0xFF;
  1712. *buf++ = (urelpos >> 8) & 0xFF;
  1713. *buf++ = (urelpos >> 0) & 0xFF;
  1714. }
  1715. }
  1716. else
  1717. {
  1718. len = 0;
  1719. *buf++ = 0;
  1720. *buf++ = 0;
  1721. }
  1722. len += 4;
  1723. if (len > allocation_length) len = allocation_length;
  1724. scsiDev.dataLen = len;
  1725. scsiDev.phase = DATA_IN;
  1726. }
  1727. else
  1728. {
  1729. dbgmsg("---- Unsupported subchannel request");
  1730. scsiDev.status = CHECK_CONDITION;
  1731. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  1732. scsiDev.target->sense.asc = INVALID_FIELD_IN_CDB;
  1733. scsiDev.phase = STATUS;
  1734. return;
  1735. }
  1736. }
  1737. static bool doReadCapacity(uint32_t lba, uint8_t pmi)
  1738. {
  1739. image_config_t &img = *(image_config_t*)scsiDev.target->cfg;
  1740. CUEParser parser;
  1741. if (!loadCueSheet(img, parser))
  1742. {
  1743. // basic image, let the disk handler resolve
  1744. return false;
  1745. }
  1746. // find the last track on the disk
  1747. CUETrackInfo lasttrack = {0};
  1748. const CUETrackInfo *trackinfo;
  1749. uint64_t prev_capacity = 0;
  1750. while ((trackinfo = parser.next_track(prev_capacity)) != NULL)
  1751. {
  1752. lasttrack = *trackinfo;
  1753. cdromSelectBinFileForTrack(img, trackinfo);
  1754. prev_capacity = img.file.size();
  1755. }
  1756. uint32_t capacity = 0;
  1757. if (lasttrack.track_number != 0)
  1758. {
  1759. capacity = getLeadOutLBA(&lasttrack);
  1760. capacity--; // shift to last addressable LBA
  1761. if (pmi && lba && lba > capacity)
  1762. {
  1763. // MMC technically specifies that PMI should be zero, but SCSI-2 allows this
  1764. // potentially consider treating either out-of-bounds or PMI set as an error
  1765. // for now just ignore this
  1766. }
  1767. dbgmsg("----- Reporting capacity as ", capacity);
  1768. }
  1769. else
  1770. {
  1771. logmsg("WARNING: unable to find capacity, no cue file found for ID ", img.scsiId);
  1772. }
  1773. scsiDev.data[0] = capacity >> 24;
  1774. scsiDev.data[1] = capacity >> 16;
  1775. scsiDev.data[2] = capacity >> 8;
  1776. scsiDev.data[3] = capacity;
  1777. scsiDev.data[4] = 0;
  1778. scsiDev.data[5] = 0;
  1779. scsiDev.data[6] = 0x08; // rest of code assumes 2048 here
  1780. scsiDev.data[7] = 0x00;
  1781. scsiDev.dataLen = 8;
  1782. scsiDev.phase = DATA_IN;
  1783. return true;
  1784. }
  1785. static void doReadPlextorD8(uint32_t lba, uint32_t length)
  1786. {
  1787. doReadCD(lba, length, SECTOR_TYPE_VENDOR_PLEXTOR, true, false, false );
  1788. }
  1789. static void doAppleD8(uint32_t lba, uint32_t blocks)
  1790. {
  1791. doReadCD(lba, blocks, SECTOR_TYPE_VENDOR_APPLE_300plus, true, false, false );
  1792. }
  1793. /**************************************/
  1794. /* CD-ROM command dispatching */
  1795. /**************************************/
  1796. // Handle direct-access scsi device commands
  1797. extern "C" int scsiCDRomCommand()
  1798. {
  1799. image_config_t &img = *(image_config_t*)scsiDev.target->cfg;
  1800. int commandHandled = 1;
  1801. uint8_t command = scsiDev.cdb[0];
  1802. // Start/stop command
  1803. if (command == 0x1B)
  1804. {
  1805. #if ENABLE_AUDIO_OUTPUT
  1806. // terminate audio playback if active on this target (MMC-1 Annex C)
  1807. audio_stop(img.scsiId & 7);
  1808. #endif
  1809. if ((scsiDev.cdb[4] & 2))
  1810. {
  1811. // CD-ROM load & eject
  1812. int start = scsiDev.cdb[4] & 1;
  1813. if (start)
  1814. {
  1815. cdromCloseTray(img);
  1816. }
  1817. else
  1818. {
  1819. // Eject and switch image
  1820. cdromPerformEject(img);
  1821. }
  1822. }
  1823. }
  1824. else if (command == 0x25)
  1825. {
  1826. // READ CAPACITY
  1827. uint8_t reladdr = scsiDev.cdb[1] & 1;
  1828. uint32_t lba = (((uint32_t) scsiDev.cdb[2]) << 24) +
  1829. (((uint32_t) scsiDev.cdb[3]) << 16) +
  1830. (((uint32_t) scsiDev.cdb[4]) << 8) +
  1831. scsiDev.cdb[5];
  1832. uint8_t pmi = scsiDev.cdb[8] & 1;
  1833. // allow PMI as long as LBA is specified, this is permitted in SCSI-2
  1834. // we don't link commands, do not allow RELADDR
  1835. if ((!pmi && lba != 0) || reladdr)
  1836. {
  1837. scsiDev.status = CHECK_CONDITION;
  1838. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  1839. scsiDev.target->sense.asc = INVALID_FIELD_IN_CDB;
  1840. scsiDev.phase = STATUS;
  1841. }
  1842. else
  1843. {
  1844. if (!doReadCapacity(lba, pmi))
  1845. {
  1846. // allow disk handler to resolve this one
  1847. commandHandled = 0;
  1848. }
  1849. }
  1850. }
  1851. else if (command == 0x43)
  1852. {
  1853. // CD-ROM Read TOC
  1854. bool MSF = (scsiDev.cdb[1] & 0x02);
  1855. uint8_t track = scsiDev.cdb[6];
  1856. uint16_t allocationLength =
  1857. (((uint32_t) scsiDev.cdb[7]) << 8) +
  1858. scsiDev.cdb[8];
  1859. // The "format" field is reserved for SCSI-2
  1860. uint8_t format = scsiDev.cdb[2] & 0x0F;
  1861. // Matshita SCSI-2 drives appear to use the high 2 bits of the CDB
  1862. // control byte to switch on session info (0x40) and full toc (0x80)
  1863. // responses that are very similar to the standard formats described
  1864. // in MMC-1. These vendor flags must have been pretty common because
  1865. // even a modern SATA drive (ASUS DRW-24B1ST j) responds to them
  1866. // (though it always replies in hex rather than bcd)
  1867. //
  1868. // The session information page is identical to MMC. The full TOC page
  1869. // is identical _except_ it returns addresses in bcd rather than hex.
  1870. bool useBCD = false;
  1871. if (format == 0 && scsiDev.cdb[9] == 0x80)
  1872. {
  1873. format = 2;
  1874. useBCD = true;
  1875. }
  1876. else if (format == 0 && scsiDev.cdb[9] == 0x40)
  1877. {
  1878. format = 1;
  1879. }
  1880. switch (format)
  1881. {
  1882. case 0: doReadTOC(MSF, track, allocationLength); break; // SCSI-2
  1883. case 1: doReadSessionInfo(MSF, allocationLength); break; // MMC2
  1884. case 2: doReadFullTOC(track, allocationLength, useBCD); break; // MMC2
  1885. default:
  1886. {
  1887. scsiDev.status = CHECK_CONDITION;
  1888. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  1889. scsiDev.target->sense.asc = INVALID_FIELD_IN_CDB;
  1890. scsiDev.phase = STATUS;
  1891. }
  1892. }
  1893. }
  1894. else if (command == 0x44)
  1895. {
  1896. // CD-ROM Read Header
  1897. bool MSF = (scsiDev.cdb[1] & 0x02);
  1898. uint32_t lba = 0; // IGNORED for now
  1899. uint16_t allocationLength =
  1900. (((uint32_t) scsiDev.cdb[7]) << 8) +
  1901. scsiDev.cdb[8];
  1902. doReadHeader(MSF, lba, allocationLength);
  1903. }
  1904. else if (command == 0x46)
  1905. {
  1906. // GET CONFIGURATION
  1907. uint8_t rt = (scsiDev.cdb[1] & 0x03);
  1908. uint16_t startFeature =
  1909. (((uint16_t) scsiDev.cdb[2]) << 8) +
  1910. scsiDev.cdb[3];
  1911. uint16_t allocationLength =
  1912. (((uint32_t) scsiDev.cdb[7]) << 8) +
  1913. scsiDev.cdb[8];
  1914. doGetConfiguration(rt, startFeature, allocationLength);
  1915. }
  1916. else if (command == 0x51)
  1917. {
  1918. uint16_t allocationLength =
  1919. (((uint32_t) scsiDev.cdb[7]) << 8) +
  1920. scsiDev.cdb[8];
  1921. doReadDiscInformation(allocationLength);
  1922. }
  1923. else if (command == 0x52)
  1924. {
  1925. // READ TRACK INFORMATION
  1926. bool track = (scsiDev.cdb[1] & 0x01);
  1927. uint32_t lba = (((uint32_t) scsiDev.cdb[2]) << 24) +
  1928. (((uint32_t) scsiDev.cdb[3]) << 16) +
  1929. (((uint32_t) scsiDev.cdb[4]) << 8) +
  1930. scsiDev.cdb[5];
  1931. uint16_t allocationLength =
  1932. (((uint32_t) scsiDev.cdb[7]) << 8) +
  1933. scsiDev.cdb[8];
  1934. doReadTrackInformation(track, lba, allocationLength);
  1935. }
  1936. else if (command == 0x4A)
  1937. {
  1938. // Get event status notifications (media change notifications)
  1939. bool immed = scsiDev.cdb[1] & 1;
  1940. doGetEventStatusNotification(immed);
  1941. }
  1942. else if (command == 0x45)
  1943. {
  1944. // PLAY AUDIO (10)
  1945. uint32_t lba =
  1946. (((uint32_t) scsiDev.cdb[2]) << 24) +
  1947. (((uint32_t) scsiDev.cdb[3]) << 16) +
  1948. (((uint32_t) scsiDev.cdb[4]) << 8) +
  1949. scsiDev.cdb[5];
  1950. uint32_t blocks =
  1951. (((uint32_t) scsiDev.cdb[7]) << 8) +
  1952. scsiDev.cdb[8];
  1953. doPlayAudio(lba, blocks);
  1954. }
  1955. else if (command == 0xA5)
  1956. {
  1957. // PLAY AUDIO (12)
  1958. uint32_t lba =
  1959. (((uint32_t) scsiDev.cdb[2]) << 24) +
  1960. (((uint32_t) scsiDev.cdb[3]) << 16) +
  1961. (((uint32_t) scsiDev.cdb[4]) << 8) +
  1962. scsiDev.cdb[5];
  1963. uint32_t blocks =
  1964. (((uint32_t) scsiDev.cdb[6]) << 24) +
  1965. (((uint32_t) scsiDev.cdb[7]) << 16) +
  1966. (((uint32_t) scsiDev.cdb[8]) << 8) +
  1967. scsiDev.cdb[9];
  1968. doPlayAudio(lba, blocks);
  1969. }
  1970. else if (command == 0x47)
  1971. {
  1972. // PLAY AUDIO (MSF)
  1973. uint32_t start = MSF2LBA(scsiDev.cdb[3], scsiDev.cdb[4], scsiDev.cdb[5], false);
  1974. uint32_t end = MSF2LBA(scsiDev.cdb[6], scsiDev.cdb[7], scsiDev.cdb[8], false);
  1975. uint32_t lba = start;
  1976. if (scsiDev.cdb[3] == 0xFF
  1977. && scsiDev.cdb[4] == 0xFF
  1978. && scsiDev.cdb[5] == 0xFF)
  1979. {
  1980. // request to start playback from 'current position'
  1981. #ifdef ENABLE_AUDIO_OUTPUT
  1982. lba = audio_get_file_position() / AUDIO_CD_SECTOR_LEN;
  1983. #endif
  1984. }
  1985. uint32_t length = end - lba;
  1986. doPlayAudio(lba, length);
  1987. }
  1988. else if (command == 0x4B)
  1989. {
  1990. // PAUSE/RESUME AUDIO
  1991. doPauseResumeAudio(scsiDev.cdb[8] & 1);
  1992. }
  1993. else if (command == 0xBD)
  1994. {
  1995. // Mechanism status
  1996. uint16_t allocationLength = (((uint32_t) scsiDev.cdb[8]) << 8) + scsiDev.cdb[9];
  1997. doMechanismStatus(allocationLength);
  1998. }
  1999. else if (command == 0xBB)
  2000. {
  2001. // Set CD speed (just ignored)
  2002. scsiDev.status = 0;
  2003. scsiDev.phase = STATUS;
  2004. }
  2005. else if (command == 0xBE)
  2006. {
  2007. // ReadCD (in low level format)
  2008. uint8_t sector_type = (scsiDev.cdb[1] >> 2) & 7;
  2009. uint32_t lba =
  2010. (((uint32_t) scsiDev.cdb[2]) << 24) +
  2011. (((uint32_t) scsiDev.cdb[3]) << 16) +
  2012. (((uint32_t) scsiDev.cdb[4]) << 8) +
  2013. scsiDev.cdb[5];
  2014. uint32_t blocks =
  2015. (((uint32_t) scsiDev.cdb[6]) << 16) +
  2016. (((uint32_t) scsiDev.cdb[7]) << 8) +
  2017. (((uint32_t) scsiDev.cdb[8]));
  2018. uint8_t main_channel = scsiDev.cdb[9];
  2019. uint8_t sub_channel = scsiDev.cdb[10];
  2020. doReadCD(lba, blocks, sector_type, main_channel, sub_channel, false);
  2021. }
  2022. else if (command == 0xB9)
  2023. {
  2024. // ReadCD MSF
  2025. uint8_t sector_type = (scsiDev.cdb[1] >> 2) & 7;
  2026. uint32_t start = MSF2LBA(scsiDev.cdb[3], scsiDev.cdb[4], scsiDev.cdb[5], false);
  2027. uint32_t end = MSF2LBA(scsiDev.cdb[6], scsiDev.cdb[7], scsiDev.cdb[8], false);
  2028. uint8_t main_channel = scsiDev.cdb[9];
  2029. uint8_t sub_channel = scsiDev.cdb[10];
  2030. doReadCD(start, end - start, sector_type, main_channel, sub_channel, false);
  2031. }
  2032. else if (command == 0x42)
  2033. {
  2034. // Read subchannel data
  2035. bool time = (scsiDev.cdb[1] & 0x02);
  2036. bool subq = (scsiDev.cdb[2] & 0x40);
  2037. uint8_t parameter = scsiDev.cdb[3];
  2038. uint8_t track_number = scsiDev.cdb[6];
  2039. uint16_t allocationLength = (((uint32_t) scsiDev.cdb[7]) << 8) + scsiDev.cdb[8];
  2040. doReadSubchannel(time, subq, parameter, track_number, allocationLength);
  2041. }
  2042. else if (command == 0x08)
  2043. {
  2044. // READ(6) for CDs (may need sector translation for cue file handling)
  2045. uint32_t lba =
  2046. (((uint32_t) scsiDev.cdb[1] & 0x1F) << 16) +
  2047. (((uint32_t) scsiDev.cdb[2]) << 8) +
  2048. scsiDev.cdb[3];
  2049. uint32_t blocks = scsiDev.cdb[4];
  2050. if (blocks == 0) blocks = 256;
  2051. doReadCD(lba, blocks, 0, 0x10, 0, true);
  2052. }
  2053. else if (command == 0x28)
  2054. {
  2055. // READ(10) for CDs (may need sector translation for cue file handling)
  2056. uint32_t lba =
  2057. (((uint32_t) scsiDev.cdb[2]) << 24) +
  2058. (((uint32_t) scsiDev.cdb[3]) << 16) +
  2059. (((uint32_t) scsiDev.cdb[4]) << 8) +
  2060. scsiDev.cdb[5];
  2061. uint32_t blocks =
  2062. (((uint32_t) scsiDev.cdb[7]) << 8) +
  2063. scsiDev.cdb[8];
  2064. doReadCD(lba, blocks, 0, 0x10, 0, true);
  2065. }
  2066. else if (command == 0xA8)
  2067. {
  2068. // READ(12) for CDs (may need sector translation for cue file handling)
  2069. uint32_t lba =
  2070. (((uint32_t) scsiDev.cdb[2]) << 24) +
  2071. (((uint32_t) scsiDev.cdb[3]) << 16) +
  2072. (((uint32_t) scsiDev.cdb[4]) << 8) +
  2073. scsiDev.cdb[5];
  2074. uint32_t blocks =
  2075. (((uint32_t) scsiDev.cdb[6]) << 24) +
  2076. (((uint32_t) scsiDev.cdb[7]) << 16) +
  2077. (((uint32_t) scsiDev.cdb[8]) << 8) +
  2078. scsiDev.cdb[9];
  2079. doReadCD(lba, blocks, 0, 0x10, 0, true);
  2080. }
  2081. else if (unlikely(scsiDev.target->cfg->vendorExtensions & VENDOR_EXTENSION_OPTICAL_PLEXTOR) &&
  2082. command == 0xD8)
  2083. {
  2084. uint8_t lun = scsiDev.cdb[1] & 0x7;
  2085. uint8_t subcode = scsiDev.cdb[10];
  2086. if (lun != 0)
  2087. {
  2088. logmsg("ERROR: Plextor vendor 0xD8 command only supports LUN 0. Given ", (int)lun);
  2089. scsiDev.status = CHECK_CONDITION;
  2090. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  2091. scsiDev.target->sense.asc = INVALID_FIELD_IN_CDB;
  2092. scsiDev.phase = STATUS;
  2093. }
  2094. else if (subcode != 0)
  2095. {
  2096. logmsg("ERROR: Plextor vendor 0xD8 command subcodes not supported. Given ", subcode);
  2097. scsiDev.status = CHECK_CONDITION;
  2098. scsiDev.target->sense.code = ILLEGAL_REQUEST;
  2099. scsiDev.target->sense.asc = INVALID_FIELD_IN_CDB;
  2100. scsiDev.phase = STATUS;
  2101. }
  2102. else
  2103. {
  2104. uint32_t lba =
  2105. (((uint32_t) scsiDev.cdb[2]) << 24) +
  2106. (((uint32_t) scsiDev.cdb[3]) << 16) +
  2107. (((uint32_t) scsiDev.cdb[4]) << 8) +
  2108. scsiDev.cdb[5];
  2109. uint32_t blocks =
  2110. (((uint32_t) scsiDev.cdb[6]) << 24) +
  2111. (((uint32_t) scsiDev.cdb[7]) << 16) +
  2112. (((uint32_t) scsiDev.cdb[8]) << 8) +
  2113. scsiDev.cdb[9];
  2114. doReadPlextorD8(lba, blocks);
  2115. }
  2116. }
  2117. else if (command == 0x4E)
  2118. {
  2119. // STOP PLAY/SCAN
  2120. doStopAudio();
  2121. scsiDev.status = 0;
  2122. scsiDev.phase = STATUS;
  2123. }
  2124. else if (command == 0x01)
  2125. {
  2126. // REZERO UNIT
  2127. // AppleCD Audio Player uses this as a nonstandard
  2128. // "stop audio playback" command
  2129. doStopAudio();
  2130. scsiDev.status = 0;
  2131. scsiDev.phase = STATUS;
  2132. }
  2133. else if (command == 0x0B || command == 0x2B)
  2134. {
  2135. // SEEK
  2136. // implement Annex C termination requirement and pass to disk handler
  2137. doStopAudio();
  2138. // this may need more specific handling, the Win9x player appears to
  2139. // expect a pickup move to the given LBA
  2140. commandHandled = 0;
  2141. }
  2142. else if (scsiDev.target->cfg->quirks == S2S_CFG_QUIRKS_APPLE
  2143. && command == 0xCD)
  2144. {
  2145. // vendor-specific command issued by the AppleCD Audio Player in
  2146. // response to fast-forward or rewind commands. Might be seek,
  2147. // might be reposition. Exact MSF value below is unknown.
  2148. //
  2149. // Byte 0: 0xCD
  2150. // Byte 1: 0x10 for rewind, 0x00 for fast-forward
  2151. // Byte 2: 0x00
  2152. // Byte 3: 'M' in hex
  2153. // Byte 4: 'S' in hex
  2154. // Byte 5: 'F' in hex
  2155. commandHandled = 0;
  2156. }
  2157. else if (scsiDev.target->cfg->quirks == S2S_CFG_QUIRKS_APPLE
  2158. && command == 0xD8)
  2159. {
  2160. // vendor-specific command for Apple 300 plus
  2161. // plays CD audio over the SCSI bus
  2162. uint32_t lba =
  2163. (((uint32_t) scsiDev.cdb[2]) << 24) +
  2164. (((uint32_t) scsiDev.cdb[3]) << 16) +
  2165. (((uint32_t) scsiDev.cdb[4]) << 8) +
  2166. scsiDev.cdb[5];
  2167. uint32_t blocks =
  2168. (((uint32_t) scsiDev.cdb[6]) << 24) +
  2169. (((uint32_t) scsiDev.cdb[7]) << 16) +
  2170. (((uint32_t) scsiDev.cdb[8]) << 8) +
  2171. scsiDev.cdb[9];
  2172. uint8_t sub_sector_type = scsiDev.cdb[10];
  2173. if (sub_sector_type != 0)
  2174. {
  2175. dbgmsg("For Apple CD-ROM 0xD8 command, only 2352 sector length supported (type 0), got subsector type: ", sub_sector_type);
  2176. }
  2177. doAppleD8(lba, blocks);
  2178. }
  2179. else if (scsiDev.target->cfg->quirks == S2S_CFG_QUIRKS_APPLE
  2180. && command == 0xD9)
  2181. {
  2182. // vendor-specific command for Apple 300 plus
  2183. // plays CD audio over the SCSI bus using MSF
  2184. uint8_t m = scsiDev.cdb[3];
  2185. uint8_t s = scsiDev.cdb[4];
  2186. uint8_t f = scsiDev.cdb[5];
  2187. uint32_t lba = MSF2LBA(m, s, f, false);
  2188. m = scsiDev.cdb[7];
  2189. s = scsiDev.cdb[8];
  2190. f = scsiDev.cdb[9];
  2191. uint32_t blocks = MSF2LBA(m, s, f, false) - lba;
  2192. uint8_t sub_sector_type = scsiDev.cdb[10];
  2193. if (sub_sector_type != 0)
  2194. {
  2195. dbgmsg("For Apple CD-ROM 0xD9 command, only 2352 sector length supported (type 0), got subsector type: ", sub_sector_type);
  2196. }
  2197. doAppleD8(lba, blocks);
  2198. }
  2199. else
  2200. {
  2201. commandHandled = 0;
  2202. }
  2203. return commandHandled;
  2204. }