mmc.c 33 KB

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  1. /*
  2. * multi-media commands
  3. *
  4. * as of mmc-6, mode page 0x2a (capabilities & mechanical status) is legacy
  5. * and read-only, last defined in mmc-3. mode page 5 (write parameters)
  6. * applies only to cd-r(w) and dvd-r(w); *-rom, dvd+* and bd-* are right out.
  7. */
  8. #include <u.h>
  9. #include <libc.h>
  10. #include <disk.h>
  11. #include "../scuzz/scsireq.h"
  12. #include "dat.h"
  13. #include "fns.h"
  14. enum
  15. {
  16. Pagesz = 255,
  17. Pagwrparams = 5, /* (cd|dvd)-r(w) device write parameters */
  18. Pagcache = 8,
  19. Pagcapmechsts = 0x2a,
  20. Invistrack = 0xff, /* the invisible & incomplete track */
  21. };
  22. static Dev mmcdev;
  23. typedef struct Mmcaux Mmcaux;
  24. struct Mmcaux {
  25. /* drive characteristics */
  26. uchar page05[Pagesz]; /* write parameters */
  27. int page05ok;
  28. int pagecmdsz;
  29. /* disc characteristics */
  30. ulong mmcnwa;
  31. int nropen;
  32. int nwopen;
  33. vlong ntotby;
  34. long ntotbk;
  35. };
  36. /* these will be printed as user ids, so no spaces please */
  37. static char *dvdtype[] = {
  38. "dvd-rom",
  39. "dvd-ram",
  40. "dvd-r",
  41. "dvd-rw",
  42. "hd-dvd-rom",
  43. "hd-dvd-ram",
  44. "hd-dvd-r",
  45. "type-7-unknown",
  46. "type-8-unknown",
  47. "dvd+rw",
  48. "dvd+r",
  49. "type-11-unknown",
  50. "type-12-unknown",
  51. "dvd+rw-dl",
  52. "dvd+r-dl",
  53. "type-15-unknown",
  54. };
  55. static ulong
  56. bige(void *p)
  57. {
  58. uchar *a;
  59. a = p;
  60. return (a[0]<<24)|(a[1]<<16)|(a[2]<<8)|(a[3]<<0);
  61. }
  62. static ushort
  63. biges(void *p)
  64. {
  65. uchar *a;
  66. a = p;
  67. return (a[0]<<8) | a[1];
  68. }
  69. ulong
  70. getnwa(Drive *drive)
  71. {
  72. Mmcaux *aux;
  73. aux = drive->aux;
  74. return aux->mmcnwa;
  75. }
  76. static void
  77. hexdump(void *v, int n)
  78. {
  79. int i;
  80. uchar *p;
  81. p = v;
  82. for(i=0; i<n; i++){
  83. print("%.2ux ", p[i]);
  84. if((i%8) == 7)
  85. print("\n");
  86. }
  87. if(i%8)
  88. print("\n");
  89. }
  90. static void
  91. initcdb(uchar *cdb, int len, int cmd)
  92. {
  93. memset(cdb, 0, len);
  94. cdb[0] = cmd;
  95. }
  96. //static uchar *
  97. //newcdb(int len, int cmd)
  98. //{
  99. // uchar *cdb;
  100. //
  101. // cdb = emalloc(len);
  102. // cdb[0] = cmd;
  103. // return cdb;
  104. //}
  105. /*
  106. * SCSI CDBs (cmd arrays) are 6, 10, 12, 16 or 32 bytes long.
  107. * The mode sense/select commands implicitly refer to
  108. * a mode parameter list, which consists of an 8-byte
  109. * mode parameter header, followed by zero or more block
  110. * descriptors and zero or more mode pages (MMC-2 §5.5.2).
  111. * We'll ignore mode sub-pages.
  112. * Integers are stored big-endian.
  113. *
  114. * The format of the mode parameter (10) header is:
  115. * ushort mode_data_length; // of following bytes
  116. * uchar medium_type;
  117. * uchar device_specific;
  118. * uchar reserved[2];
  119. * ushort block_descriptor_length; // zero
  120. *
  121. * The format of the mode parameter (6) header is:
  122. * uchar mode_data_length; // of following bytes
  123. * uchar medium_type;
  124. * uchar device_specific;
  125. * uchar block_descriptor_length; // zero
  126. *
  127. * The format of the mode pages is:
  128. * uchar page_code_and_PS;
  129. * uchar page_len; // of following bytes
  130. * uchar parameter[page_len];
  131. *
  132. * see SPC-3 §4.3.4.6 for allocation length and §7.4 for mode parameter lists.
  133. */
  134. enum {
  135. Mode10parmhdrlen= 8,
  136. Mode6parmhdrlen = 4,
  137. Modepaghdrlen = 2,
  138. };
  139. static int
  140. mmcgetpage10(Drive *drive, int page, void *v)
  141. {
  142. uchar cmd[10], resp[512];
  143. int n, r;
  144. memset(cmd, 0, sizeof(cmd));
  145. cmd[0] = ScmdMsense10;
  146. cmd[2] = page;
  147. cmd[8] = 255; /* allocation length: buffer size */
  148. // print("get: sending cmd\n");
  149. // hexdump(cmd, 10);
  150. n = scsi(drive, cmd, sizeof(cmd), resp, sizeof(resp), Sread);
  151. if(n < Mode10parmhdrlen)
  152. return -1;
  153. r = (resp[6]<<8) | resp[7]; /* block descriptor length */
  154. n -= Mode10parmhdrlen + r;
  155. if(n < 0)
  156. return -1;
  157. if(n > Pagesz)
  158. n = Pagesz;
  159. memmove(v, &resp[Mode10parmhdrlen + r], n);
  160. // print("get: got cmd\n");
  161. // hexdump(cmd, 10);
  162. // print("page\n");
  163. // hexdump(v, n);
  164. return n;
  165. }
  166. static int
  167. mmcgetpage6(Drive *drive, int page, void *v)
  168. {
  169. uchar cmd[6], resp[512];
  170. int n;
  171. memset(cmd, 0, sizeof(cmd));
  172. cmd[0] = ScmdMsense6;
  173. cmd[2] = page;
  174. cmd[4] = 255; /* allocation length */
  175. n = scsi(drive, cmd, sizeof(cmd), resp, sizeof(resp), Sread);
  176. if(n < Mode6parmhdrlen)
  177. return -1;
  178. n -= Mode6parmhdrlen + resp[3];
  179. if(n < 0)
  180. return -1;
  181. if(n > Pagesz)
  182. n = Pagesz;
  183. memmove(v, &resp[Mode6parmhdrlen + resp[3]], n);
  184. return n;
  185. }
  186. static int
  187. mmcsetpage10(Drive *drive, int page, void *v)
  188. {
  189. uchar cmd[10], *p, *pagedata;
  190. int len, n;
  191. /* allocate parameter list, copy in mode page, fill in header */
  192. pagedata = v;
  193. assert(pagedata[0] == page);
  194. len = Mode10parmhdrlen + Modepaghdrlen + pagedata[1];
  195. p = emalloc(len);
  196. memmove(p + Mode10parmhdrlen, pagedata, pagedata[1]);
  197. /* parameter list header */
  198. p[0] = 0;
  199. p[1] = len - 2;
  200. /* set up CDB */
  201. memset(cmd, 0, sizeof(cmd));
  202. cmd[0] = ScmdMselect10;
  203. cmd[1] = 0x10; /* format not vendor-specific */
  204. cmd[8] = len;
  205. // print("set: sending cmd\n");
  206. // hexdump(cmd, 10);
  207. // print("parameter list header\n");
  208. // hexdump(p, Mode10parmhdrlen);
  209. // print("page\n");
  210. // hexdump(p + Mode10parmhdrlen, len - Mode10parmhdrlen);
  211. n = scsi(drive, cmd, sizeof(cmd), p, len, Swrite);
  212. // print("set: got cmd\n");
  213. // hexdump(cmd, 10);
  214. free(p);
  215. if(n < len)
  216. return -1;
  217. return 0;
  218. }
  219. static int
  220. mmcsetpage6(Drive *drive, int page, void *v)
  221. {
  222. uchar cmd[6], *p, *pagedata;
  223. int len, n;
  224. if (vflag)
  225. print("mmcsetpage6 called!\n");
  226. pagedata = v;
  227. assert(pagedata[0] == page);
  228. len = Mode6parmhdrlen + Modepaghdrlen + pagedata[1];
  229. p = emalloc(len);
  230. memmove(p + Mode6parmhdrlen, pagedata, pagedata[1]);
  231. memset(cmd, 0, sizeof(cmd));
  232. cmd[0] = ScmdMselect6;
  233. cmd[1] = 0x10; /* format not vendor-specific */
  234. cmd[4] = len;
  235. n = scsi(drive, cmd, sizeof(cmd), p, len, Swrite);
  236. free(p);
  237. if(n < len)
  238. return -1;
  239. return 0;
  240. }
  241. static int
  242. mmcgetpage(Drive *drive, int page, void *v)
  243. {
  244. Mmcaux *aux;
  245. aux = drive->aux;
  246. switch(aux->pagecmdsz) {
  247. case 10:
  248. return mmcgetpage10(drive, page, v);
  249. case 6:
  250. return mmcgetpage6(drive, page, v);
  251. default:
  252. assert(0);
  253. }
  254. return -1;
  255. }
  256. static int
  257. mmcsetpage(Drive *drive, int page, void *v)
  258. {
  259. Mmcaux *aux;
  260. aux = drive->aux;
  261. switch(aux->pagecmdsz) {
  262. case 10:
  263. return mmcsetpage10(drive, page, v);
  264. case 6:
  265. return mmcsetpage6(drive, page, v);
  266. default:
  267. assert(0);
  268. }
  269. return -1;
  270. }
  271. int
  272. mmcstatus(Drive *drive)
  273. {
  274. uchar cmd[12];
  275. initcdb(cmd, sizeof cmd, ScmdCDstatus); /* mechanism status */
  276. return scsi(drive, cmd, sizeof(cmd), nil, 0, Sread);
  277. }
  278. void
  279. mmcgetspeed(Drive *drive)
  280. {
  281. int n, maxread, curread, maxwrite, curwrite;
  282. uchar buf[Pagesz];
  283. memset(buf, 0, 22);
  284. n = mmcgetpage(drive, Pagcapmechsts, buf); /* legacy page */
  285. if (n < 22) {
  286. if (vflag)
  287. fprint(2, "no Pagcapmechsts mode page!\n");
  288. return;
  289. }
  290. maxread = (buf[8]<<8)|buf[9];
  291. curread = (buf[14]<<8)|buf[15];
  292. maxwrite = (buf[18]<<8)|buf[19];
  293. curwrite = (buf[20]<<8)|buf[21];
  294. if(maxread && maxread < 170 || curread && curread < 170)
  295. return; /* bogus data */
  296. drive->readspeed = curread;
  297. drive->writespeed = curwrite;
  298. drive->maxreadspeed = maxread;
  299. drive->maxwritespeed = maxwrite;
  300. }
  301. static int
  302. getdevtype(Drive *drive)
  303. {
  304. int n;
  305. uchar cmd[6], resp[Pagesz];
  306. initcdb(cmd, sizeof cmd, ScmdInq);
  307. cmd[3] = sizeof resp >> 8;
  308. cmd[4] = sizeof resp;
  309. n = scsi(drive, cmd, sizeof(cmd), resp, sizeof resp, Sread);
  310. if (n < 8)
  311. return -1;
  312. return resp[0] & 037;
  313. }
  314. static int
  315. start(Drive *drive, int code)
  316. {
  317. uchar cmd[6];
  318. initcdb(cmd, sizeof cmd, ScmdStart);
  319. cmd[4] = code;
  320. return scsi(drive, cmd, sizeof(cmd), cmd, 0, Snone);
  321. }
  322. Drive*
  323. mmcprobe(Scsi *scsi)
  324. {
  325. Mmcaux *aux;
  326. Drive *drive;
  327. uchar buf[Pagesz];
  328. int cap, n;
  329. if (vflag)
  330. print("mmcprobe: inquiry: %s\n", scsi->inquire);
  331. drive = emalloc(sizeof(Drive));
  332. drive->Scsi = *scsi;
  333. drive->Dev = mmcdev;
  334. aux = emalloc(sizeof(Mmcaux));
  335. drive->aux = aux;
  336. scsiready(drive);
  337. drive->type = getdevtype(drive);
  338. if (drive->type != TypeCD) {
  339. werrstr("not an mmc device");
  340. free(aux);
  341. free(drive);
  342. return nil;
  343. }
  344. /*
  345. * drive is an mmc device; learn what we can about it
  346. * (as opposed to the disc in it).
  347. */
  348. start(drive, 1);
  349. /* attempt to read CD capabilities page, but it's now legacy */
  350. if(mmcgetpage10(drive, Pagcapmechsts, buf) >= 0)
  351. aux->pagecmdsz = 10;
  352. else if(mmcgetpage6(drive, Pagcapmechsts, buf) >= 0)
  353. aux->pagecmdsz = 6;
  354. else {
  355. if (vflag)
  356. fprint(2, "no Pagcapmechsts mode page!\n");
  357. werrstr("can't read mode page %d!", Pagcapmechsts);
  358. free(aux);
  359. free(drive);
  360. return nil;
  361. }
  362. cap = 0;
  363. if(buf[Capwrite] & (Capcdr|Capcdrw|Capdvdr|Capdvdram) ||
  364. buf[Capmisc] & Caprw)
  365. cap |= Cwrite;
  366. if(buf[Capmisc] & Capcdda) /* CD-DA commands supported? */
  367. cap |= Ccdda; /* not used anywhere else */
  368. // print("read %d max %d\n", biges(buf+14), biges(buf+8));
  369. // print("write %d max %d\n", biges(buf+20), biges(buf+18));
  370. /* cache optional page 05 (write parameter page) */
  371. if(/* (cap & Cwrite) && */
  372. mmcgetpage(drive, Pagwrparams, aux->page05) >= 0) {
  373. aux->page05ok = 1;
  374. cap |= Cwrite;
  375. if (vflag)
  376. fprint(2, "mmcprobe: got page 5, assuming drive can write\n");
  377. } else {
  378. if (vflag)
  379. fprint(2, "no Pagwrparams mode page!\n");
  380. cap &= ~Cwrite;
  381. }
  382. drive->cap = cap;
  383. mmcgetspeed(drive);
  384. /*
  385. * we can't actually control caching much.
  386. * see SBC-2 §6.3.3 but also MMC-6 §7.6.
  387. */
  388. n = mmcgetpage(drive, Pagcache, buf);
  389. if (n >= 3) {
  390. /* n == 255; buf[1] == 10 (10 bytes after buf[1]) */
  391. buf[0] &= 077; /* clear reserved bits, MMC-6 §7.2.3 */
  392. assert(buf[0] == Pagcache);
  393. assert(buf[1] >= 10);
  394. buf[2] = Ccwce;
  395. if (mmcsetpage(drive, Pagcache, buf) < 0)
  396. if (vflag)
  397. print("mmcprobe: cache control NOT set\n");
  398. }
  399. return drive;
  400. }
  401. static char *tracktype[] = { /* indices are track modes (Tm*) */
  402. "audio cdda",
  403. "2 audio channels",
  404. "2",
  405. "3",
  406. "data, recorded uninterrupted",
  407. "data, recorded interrupted",
  408. };
  409. /* t is a track number on disc, i is an index into drive->track[] for result */
  410. static int
  411. mmctrackinfo(Drive *drive, int t, int i)
  412. {
  413. int n, type, bs;
  414. ulong beg, size;
  415. uchar tmode;
  416. uchar cmd[10], resp[255];
  417. Mmcaux *aux;
  418. aux = drive->aux;
  419. memset(cmd, 0, sizeof(cmd));
  420. cmd[0] = ScmdRtrackinfo;
  421. cmd[1] = 1; /* address below is logical track # */
  422. cmd[2] = t>>24;
  423. cmd[3] = t>>16;
  424. cmd[4] = t>>8;
  425. cmd[5] = t;
  426. cmd[7] = sizeof(resp)>>8;
  427. cmd[8] = sizeof(resp);
  428. n = scsi(drive, cmd, sizeof(cmd), resp, sizeof(resp), Sread);
  429. if(n < 28) {
  430. if(vflag)
  431. print("trackinfo %d fails n=%d: %r\n", t, n);
  432. return -1;
  433. }
  434. beg = bige(&resp[8]);
  435. size = bige(&resp[24]);
  436. tmode = resp[5] & 0x0D;
  437. // dmode = resp[6] & 0x0F;
  438. if(vflag)
  439. print("track %d type %d (%s)", t, tmode,
  440. (tmode < nelem(tracktype)? tracktype[tmode]: "**GOK**"));
  441. type = TypeNone;
  442. bs = BScdda;
  443. switch(tmode){
  444. case Tmcdda:
  445. type = TypeAudio;
  446. bs = BScdda;
  447. break;
  448. case Tm2audio: /* 2 audio channels, with pre-emphasis 50/15 μs */
  449. if(vflag)
  450. print("audio channels with preemphasis on track %d "
  451. "(u%.3d)\n", t, i);
  452. type = TypeNone;
  453. break;
  454. case Tmunintr: /* data track, recorded uninterrupted */
  455. case Tmintr: /* data track, recorded interrupted */
  456. /* treat Tmintr (5) as cdrom; it's probably dvd or bd */
  457. type = TypeData;
  458. bs = BScdrom;
  459. break;
  460. default:
  461. if(vflag)
  462. print("unknown track type %d\n", tmode);
  463. break;
  464. }
  465. drive->track[i].mtime = drive->changetime;
  466. drive->track[i].beg = beg;
  467. drive->track[i].end = beg+size;
  468. drive->track[i].type = type;
  469. drive->track[i].bs = bs;
  470. drive->track[i].size = (vlong)(size-2) * bs; /* -2: skip lead out */
  471. if(resp[6] & (1<<6)) { /* blank? */
  472. drive->track[i].type = TypeBlank;
  473. drive->writeok = 1;
  474. }
  475. if(vflag)
  476. print(" start %lud end %lud", beg, beg + size - 1);
  477. /* resp[6] & (1<<7) of zero: invisible track */
  478. /* t == getinvistrack(): invisible track */
  479. if(t == Invistrack || resp[7] & 1) { /* invis or nwa valid? */
  480. aux->mmcnwa = bige(&resp[12]);
  481. if ((long)aux->mmcnwa < 0) /* implausible? */
  482. aux->mmcnwa = 0;
  483. if (vflag)
  484. print(" nwa %lud", aux->mmcnwa);
  485. }
  486. if (vflag)
  487. print("\n");
  488. return 0;
  489. }
  490. /* this may fail for blank media */
  491. static int
  492. mmcreadtoc(Drive *drive, int type, int track, void *data, int nbytes)
  493. {
  494. uchar cmd[10];
  495. memset(cmd, 0, sizeof(cmd));
  496. cmd[0] = ScmdRTOC;
  497. cmd[1] = type; /* msf bit & reserved */
  498. cmd[2] = Tocfmttoc;
  499. cmd[6] = track; /* track/session */
  500. cmd[7] = nbytes>>8;
  501. cmd[8] = nbytes;
  502. /*
  503. * printing iounit(drive->Scsi.rawfd) here yields
  504. * iounit(3) = 0; # for local access
  505. * iounit(3) = 65512; # for remote access via /mnt/term
  506. */
  507. return scsi(drive, cmd, sizeof(cmd), data, nbytes, Sread);
  508. }
  509. static int
  510. mmcreaddiscinfo(Drive *drive, void *data, int nbytes)
  511. {
  512. uchar cmd[10];
  513. int n;
  514. memset(cmd, 0, sizeof(cmd));
  515. cmd[0] = ScmdRdiscinfo;
  516. cmd[7] = nbytes>>8;
  517. cmd[8] = nbytes;
  518. n = scsi(drive, cmd, sizeof(cmd), data, nbytes, Sread);
  519. if(n < 24) {
  520. if(n >= 0)
  521. werrstr("rdiscinfo returns %d", n);
  522. return -1;
  523. }
  524. return n;
  525. }
  526. static Msf
  527. rdmsf(uchar *p)
  528. {
  529. Msf msf;
  530. msf.m = p[0];
  531. msf.s = p[1];
  532. msf.f = p[2];
  533. return msf;
  534. }
  535. static int
  536. getdiscinfo(Drive *drive, uchar resp[], int resplen)
  537. {
  538. int n;
  539. n = mmcreaddiscinfo(drive, resp, resplen);
  540. if(n < 3) {
  541. if (vflag)
  542. fprint(2, "read disc info failed\n");
  543. return n;
  544. }
  545. if (vflag)
  546. fprint(2, "read disc info succeeded\n");
  547. assert((resp[2] & 0340) == 0); /* data type 0 */
  548. drive->erasable = ((resp[2] & 0x10) != 0); /* -RW? */
  549. drive->erasableset = 1;
  550. return n;
  551. }
  552. static int
  553. getdvdstruct(Drive *drive)
  554. {
  555. int n, cat;
  556. uchar cmd[12], resp[Pagesz];
  557. initcdb(cmd, sizeof cmd, ScmdReadDVD); /* actually, read disc structure */
  558. cmd[1] = 0; /* media type: dvd */
  559. cmd[7] = 0; /* format code: physical format */
  560. cmd[8] = sizeof resp >> 8; /* allocation length */
  561. cmd[9] = sizeof resp;
  562. n = scsi(drive, cmd, sizeof(cmd), resp, sizeof resp, Sread);
  563. if (n < 7)
  564. return -1;
  565. // print("dvd structure:\n");
  566. // hexdump(resp, n);
  567. /* resp[0..1] is resp length */
  568. cat = (resp[4] & 0xf0) >> 4; /* disk category, MMC-6 §6.22.3.2.1 */
  569. if (vflag)
  570. fprint(2, "dvd type is %s\n", dvdtype[cat]);
  571. drive->dvdtype = dvdtype[cat];
  572. /* write parameters mode page may suffice to compute writeok for dvd */
  573. drive->erasable = drive->recordable = 0;
  574. /*
  575. * the layer-type field is a *bit array*,
  576. * though an enumeration of types would make more sense,
  577. * since the types are exclusive, not orthogonal.
  578. */
  579. if (resp[6] & (1<<2)) /* rewritable? */
  580. drive->erasable = 1;
  581. else if (resp[6] & (1<<1)) /* recordable once? */
  582. drive->recordable = 1;
  583. else { /* factory-pressed disk */
  584. drive->blank = 0;
  585. drive->blankset = 1;
  586. }
  587. drive->erasableset = drive->recordableset = 1;
  588. drive->mmctype = (cat >= 8? Mmcdvdplus: Mmcdvdminus);
  589. return 0;
  590. }
  591. static int
  592. getbdstruct(Drive *drive)
  593. {
  594. int n;
  595. uchar cmd[12], resp[4100];
  596. initcdb(cmd, sizeof cmd, ScmdReadDVD); /* actually, read disc structure */
  597. cmd[1] = 1; /* media type: bd */
  598. cmd[7] = 0; /* format code: disc info */
  599. cmd[8] = sizeof resp >> 8; /* allocation length */
  600. cmd[9] = sizeof resp;
  601. n = scsi(drive, cmd, sizeof(cmd), resp, sizeof resp, Sread);
  602. /*
  603. * resp[0..1] is resp length.
  604. * resp[4+8..4+8+2] is bd type (disc type identifier):
  605. * BDO|BDW|BDR, MMC-6 §6.22.3.3.1. The above command should
  606. * fail on DVD drives, but some seem to ignore media type
  607. * and return successfully, so verify that it's a BD drive.
  608. */
  609. if (n < 4+8+3 || resp[4+8] != 'B' || resp[4+8+1] != 'D')
  610. return -1;
  611. if (vflag)
  612. fprint(2, "read disc structure (bd) succeeded\n");
  613. drive->erasable = drive->recordable = 0;
  614. switch (resp[4+8+2]) {
  615. case 'O':
  616. drive->blank = 0;
  617. drive->blankset = 1;
  618. break;
  619. case 'R': /* Recordable */
  620. drive->recordable = 1;
  621. break;
  622. case 'W': /* reWritable */
  623. drive->erasable = 1;
  624. break;
  625. default:
  626. fprint(2, "%s: unknown bd type BD%c\n", argv0, resp[4+8+2]);
  627. return -1;
  628. }
  629. drive->erasableset = drive->recordableset = 1;
  630. drive->mmctype = Mmcbd;
  631. return 0;
  632. }
  633. /*
  634. * infer endings from the beginnings of other tracks.
  635. */
  636. static void
  637. mmcinfertracks(Drive *drive, int first, int last)
  638. {
  639. int i;
  640. uchar resp[1024];
  641. ulong tot;
  642. Track *t;
  643. if (vflag)
  644. fprint(2, "inferring tracks\n");
  645. for(i = first; i <= last; i++) {
  646. memset(resp, 0, sizeof(resp));
  647. if(mmcreadtoc(drive, 0, i, resp, sizeof(resp)) < 0)
  648. break;
  649. t = &drive->track[i-first];
  650. t->mtime = drive->changetime;
  651. t->type = TypeData;
  652. t->bs = BScdrom;
  653. t->beg = bige(resp+8);
  654. if(!(resp[5] & 4)) {
  655. t->type = TypeAudio;
  656. t->bs = BScdda;
  657. }
  658. }
  659. if((long)drive->track[0].beg < 0) /* i've seen negative track 0's */
  660. drive->track[0].beg = 0;
  661. tot = 0;
  662. memset(resp, 0, sizeof(resp));
  663. /* 0xAA is lead-out */
  664. if(mmcreadtoc(drive, 0, 0xAA, resp, sizeof(resp)) < 0)
  665. print("bad\n");
  666. if(resp[6])
  667. tot = bige(resp+8);
  668. for(i=last; i>=first; i--) {
  669. t = &drive->track[i-first];
  670. t->end = tot;
  671. tot = t->beg;
  672. if(t->end <= t->beg)
  673. t->beg = t->end = 0;
  674. /* -2: skip lead out */
  675. t->size = (t->end - t->beg - 2) * (vlong)t->bs;
  676. }
  677. }
  678. /* this gets called a lot from main.c's 9P routines */
  679. static int
  680. mmcgettoc(Drive *drive)
  681. {
  682. int i, n, first, last;
  683. uchar resp[1024];
  684. Mmcaux *aux;
  685. /*
  686. * if someone has swapped the cd,
  687. * mmcreadtoc will get ``medium changed'' and the
  688. * scsi routines will set nchange and changetime in the
  689. * scsi device.
  690. */
  691. mmcreadtoc(drive, 0, 0, resp, sizeof(resp));
  692. if(drive->Scsi.changetime == 0) { /* no media present */
  693. drive->mmctype = Mmcnone;
  694. drive->ntrack = 0;
  695. return 0;
  696. }
  697. /*
  698. * if the disc doesn't appear to be have been changed, and there
  699. * is a disc in this drive, there's nothing to do (the common case).
  700. */
  701. if(drive->nchange == drive->Scsi.nchange && drive->changetime != 0)
  702. return 0;
  703. /*
  704. * the disc in the drive may have just been changed,
  705. * so rescan it and relearn all about it.
  706. */
  707. drive->ntrack = 0;
  708. drive->nameok = 0;
  709. drive->nchange = drive->Scsi.nchange;
  710. drive->changetime = drive->Scsi.changetime;
  711. drive->writeok = drive->erasable = drive->recordable = drive->blank = 0;
  712. drive->erasableset = drive->recordableset = drive->blankset = 0;
  713. aux = drive->aux;
  714. aux->mmcnwa = 0;
  715. aux->nropen = aux->nwopen = 0;
  716. aux->ntotby = aux->ntotbk = 0;
  717. for(i=0; i<nelem(drive->track); i++){
  718. memset(&drive->track[i].mbeg, 0, sizeof(Msf));
  719. memset(&drive->track[i].mend, 0, sizeof(Msf));
  720. }
  721. /*
  722. * TODO: set read ahead, MMC-6 §6.37, seems to control caching.
  723. */
  724. /*
  725. * find number of tracks
  726. */
  727. if((n = mmcreadtoc(drive, Msfbit, 0, resp, sizeof(resp))) < 4) {
  728. /*
  729. * on a blank disc in a cd-rw, use readdiscinfo
  730. * to find the track info.
  731. */
  732. if(getdiscinfo(drive, resp, sizeof(resp)) < 7)
  733. return -1;
  734. assert((resp[2] & 0340) == 0); /* data type 0 */
  735. if(resp[4] != 1)
  736. print("multi-session disc %d\n", resp[4]);
  737. first = resp[3];
  738. last = resp[6];
  739. if(vflag)
  740. print("blank disc %d %d\n", first, last);
  741. /* the assumption of blankness may be unwarranted */
  742. drive->writeok = drive->blank = drive->blankset = 1;
  743. } else {
  744. first = resp[2];
  745. last = resp[3];
  746. if(n >= 4+8*(last-first+2)) {
  747. /* resp[4 + i*8 + 2] is track # */
  748. /* <=: track[last-first+1] = end */
  749. for(i=0; i<=last-first+1; i++)
  750. drive->track[i].mbeg = rdmsf(resp+4+i*8+5);
  751. for(i=0; i<last-first+1; i++)
  752. drive->track[i].mend = drive->track[i+1].mbeg;
  753. }
  754. }
  755. drive->mmctype = Mmcnone;
  756. drive->dvdtype = nil;
  757. getdvdstruct(drive);
  758. getbdstruct(drive);
  759. if (drive->mmctype == Mmcnone)
  760. drive->mmctype = Mmccd; /* by default */
  761. if (drive->recordable || drive->erasable)
  762. drive->writeok = 1;
  763. if (vflag) {
  764. fprint(2, "writeok %d", drive->writeok);
  765. /* drive->blank is never used and hard to figure out */
  766. // if (drive->blankset)
  767. // fprint(2, " blank %d", drive->blank);
  768. if (drive->recordableset)
  769. fprint(2, " recordable %d", drive->recordable);
  770. if (drive->erasableset)
  771. fprint(2, " erasable %d", drive->erasable);
  772. fprint(2, "\n");
  773. print("first %d last %d\n", first, last);
  774. }
  775. if(first == 0 && last == 0)
  776. first = 1;
  777. if(first <= 0 || first >= Maxtrack) {
  778. werrstr("first table %d not in range", first);
  779. return -1;
  780. }
  781. if(last <= 0 || last >= Maxtrack) {
  782. werrstr("last table %d not in range", last);
  783. return -1;
  784. }
  785. if(drive->cap & Cwrite) /* CDR drives are easy */
  786. for(i = first; i <= last; i++)
  787. mmctrackinfo(drive, i, i - first);
  788. else
  789. /*
  790. * otherwise we need to infer endings from the
  791. * beginnings of other tracks.
  792. */
  793. mmcinfertracks(drive, first, last);
  794. drive->firsttrack = first;
  795. drive->ntrack = last+1-first;
  796. return 0;
  797. }
  798. static void
  799. settrkmode(uchar *p, int mode)
  800. {
  801. p[Wptrkmode] &= ~0xf;
  802. p[Wptrkmode] |= mode;
  803. }
  804. /*
  805. * this uses page 5, which is optional.
  806. */
  807. static int
  808. mmcsetbs(Drive *drive, int bs)
  809. {
  810. uchar *p;
  811. Mmcaux *aux;
  812. aux = drive->aux;
  813. if (!aux->page05ok)
  814. return 0; /* harmless; assume 2k */
  815. p = aux->page05;
  816. /*
  817. * establish defaults.
  818. */
  819. p[0] &= 077; /* clear reserved bits, MMC-6 §7.2.3 */
  820. p[Wpwrtype] = Bufe | Wttrackonce;
  821. // if(testonlyflag)
  822. // p[Wpwrtype] |= 0x10; /* test-write */
  823. /* assume dvd values as defaults */
  824. settrkmode(p, Tmintr);
  825. p[Wptrkmode] |= Msnext;
  826. p[Wpdatblktype] = Db2kdata;
  827. p[Wpsessfmt] = Sfdata;
  828. switch(drive->mmctype) {
  829. case Mmcdvdplus:
  830. case Mmcbd:
  831. break;
  832. case Mmcdvdminus:
  833. /* dvd-r can only do disc-at-once or incremental */
  834. p[Wpwrtype] = Bufe | Wtsessonce;
  835. break;
  836. case Mmccd:
  837. settrkmode(p, Tmunintr); /* data track, uninterrupted */
  838. switch(bs){
  839. case BScdda:
  840. /* 2 audio channels without pre-emphasis */
  841. settrkmode(p, Tmcdda); /* TODO: should be Tm2audio? */
  842. p[Wpdatblktype] = Dbraw;
  843. break;
  844. case BScdrom:
  845. break;
  846. case BScdxa:
  847. p[Wpdatblktype] = Db2336;
  848. p[Wpsessfmt] = Sfcdxa;
  849. break;
  850. default:
  851. fprint(2, "%s: unknown CD type; bs %d\n", argv0, bs);
  852. assert(0);
  853. }
  854. break;
  855. default:
  856. fprint(2, "%s: unknown disc sub-type %d\n",
  857. argv0, drive->mmctype);
  858. break;
  859. }
  860. if(mmcsetpage(drive, Pagwrparams, p) < 0) {
  861. if (vflag)
  862. fprint(2, "mmcsetbs: could NOT set write parameters page\n");
  863. return -1;
  864. }
  865. return 0;
  866. }
  867. /* off is a block number */
  868. static long
  869. mmcread(Buf *buf, void *v, long nblock, ulong off)
  870. {
  871. int bs;
  872. long n, nn;
  873. uchar cmd[12];
  874. Drive *drive;
  875. Otrack *o;
  876. o = buf->otrack;
  877. drive = o->drive;
  878. bs = o->track->bs;
  879. off += o->track->beg;
  880. if(nblock >= (1<<10)) {
  881. werrstr("mmcread too big");
  882. if(vflag)
  883. fprint(2, "mmcread too big\n");
  884. return -1;
  885. }
  886. /* truncate nblock modulo size of track */
  887. if(off > o->track->end - 2) {
  888. werrstr("read past end of track");
  889. if(vflag)
  890. fprint(2, "end of track (%ld->%ld off %ld)",
  891. o->track->beg, o->track->end - 2, off);
  892. return -1;
  893. }
  894. if(off == o->track->end - 2)
  895. return 0;
  896. if(off+nblock > o->track->end - 2)
  897. nblock = o->track->end - 2 - off;
  898. /*
  899. * `read cd' only works for CDs; for everybody else,
  900. * we'll try plain `read (12)'. only use read cd if it's
  901. * a cd drive with a cd in it and we're not reading data
  902. * (e.g., reading audio).
  903. */
  904. memset(cmd, 0, sizeof(cmd));
  905. if (drive->type == TypeCD && drive->mmctype == Mmccd && bs != BScdrom) {
  906. cmd[0] = ScmdReadcd;
  907. cmd[2] = off>>24;
  908. cmd[3] = off>>16;
  909. cmd[4] = off>>8;
  910. cmd[5] = off>>0;
  911. cmd[6] = nblock>>16;
  912. cmd[7] = nblock>>8;
  913. cmd[8] = nblock>>0;
  914. cmd[9] = 0x10;
  915. switch(bs){
  916. case BScdda:
  917. cmd[1] = 0x04;
  918. break;
  919. case BScdrom:
  920. cmd[1] = 0x08;
  921. break;
  922. case BScdxa:
  923. cmd[1] = 0x0C;
  924. break;
  925. default:
  926. werrstr("unknown bs %d", bs);
  927. return -1;
  928. }
  929. } else { /* e.g., TypeDA */
  930. cmd[0] = ScmdRead12;
  931. cmd[2] = off>>24;
  932. cmd[3] = off>>16;
  933. cmd[4] = off>>8;
  934. cmd[5] = off>>0;
  935. cmd[6] = nblock>>24;
  936. cmd[7] = nblock>>16;
  937. cmd[8] = nblock>>8;
  938. cmd[9] = nblock;
  939. // cmd[10] = 0x80; /* streaming */
  940. }
  941. n = nblock*bs;
  942. nn = scsi(drive, cmd, sizeof(cmd), v, n, Sread);
  943. if(nn != n) {
  944. if(nn != -1)
  945. werrstr("short read %ld/%ld", nn, n);
  946. if(vflag)
  947. print("read off %lud nblock %ld bs %d failed\n",
  948. off, nblock, bs);
  949. return -1;
  950. }
  951. return nblock;
  952. }
  953. static Otrack*
  954. mmcopenrd(Drive *drive, int trackno)
  955. {
  956. Otrack *o;
  957. Mmcaux *aux;
  958. if(trackno < 0 || trackno >= drive->ntrack) {
  959. werrstr("track number out of range");
  960. return nil;
  961. }
  962. aux = drive->aux;
  963. if(aux->nwopen) {
  964. werrstr("disk in use for writing");
  965. return nil;
  966. }
  967. o = emalloc(sizeof(Otrack));
  968. o->drive = drive;
  969. o->track = &drive->track[trackno];
  970. o->nchange = drive->nchange;
  971. o->omode = OREAD;
  972. o->buf = bopen(mmcread, OREAD, o->track->bs, Readblock);
  973. o->buf->otrack = o;
  974. aux->nropen++;
  975. return o;
  976. }
  977. static int
  978. format(Drive *drive)
  979. {
  980. ulong nblks, blksize;
  981. uchar *fmtdesc;
  982. uchar cmd[6], parms[4+8];
  983. if (drive->recordable && drive->mmctype != Mmcbd) {
  984. werrstr("don't format write-once cd or dvd media");
  985. return -1;
  986. }
  987. initcdb(cmd, sizeof cmd, ScmdFormat); /* format unit */
  988. cmd[1] = 0x10 | 1; /* format data, mmc format code */
  989. memset(parms, 0, sizeof parms);
  990. /* format list header */
  991. parms[1] = 2; /* immediate return; don't wait */
  992. parms[3] = 8; /* format descriptor length */
  993. fmtdesc = parms + 4;
  994. fmtdesc[4] = 0; /* full format */
  995. nblks = 0;
  996. blksize = BScdrom;
  997. switch (drive->mmctype) {
  998. case Mmccd:
  999. nblks = 0;
  1000. break;
  1001. case Mmcdvdplus:
  1002. /* format type 0 is optional but equiv to format type 0x26 */
  1003. fmtdesc[4] = 0x26 << 2;
  1004. nblks = ~0ul;
  1005. blksize = 0;
  1006. break;
  1007. }
  1008. PUTBELONG(fmtdesc, nblks);
  1009. PUTBE24(fmtdesc + 5, blksize);
  1010. // print("format parameters:\n");
  1011. // hexdump(parms, sizeof parms);
  1012. if(vflag)
  1013. print("%lld ns: format\n", nsec());
  1014. return scsi(drive, cmd, sizeof(cmd), parms, sizeof parms, Swrite);
  1015. }
  1016. static long
  1017. mmcxwrite(Otrack *o, void *v, long nblk)
  1018. {
  1019. uchar cmd[10];
  1020. Mmcaux *aux;
  1021. assert(o->omode == OWRITE);
  1022. aux = o->drive->aux;
  1023. if (aux->mmcnwa == 0 && scsiready(o->drive) < 0) {
  1024. werrstr("device not ready to write");
  1025. return -1;
  1026. }
  1027. aux->ntotby += nblk*o->track->bs;
  1028. aux->ntotbk += nblk;
  1029. memset(cmd, 0, sizeof(cmd));
  1030. cmd[0] = ScmdExtwrite; /* write (10) */
  1031. cmd[2] = aux->mmcnwa>>24;
  1032. cmd[3] = aux->mmcnwa>>16;
  1033. cmd[4] = aux->mmcnwa>>8;
  1034. cmd[5] = aux->mmcnwa;
  1035. cmd[7] = nblk>>8;
  1036. cmd[8] = nblk>>0;
  1037. if(vflag)
  1038. print("%lld ns: write %ld at 0x%lux\n",
  1039. nsec(), nblk, aux->mmcnwa);
  1040. aux->mmcnwa += nblk;
  1041. return scsi(o->drive, cmd, sizeof(cmd), v, nblk*o->track->bs, Swrite);
  1042. }
  1043. static long
  1044. mmcwrite(Buf *buf, void *v, long nblk, ulong)
  1045. {
  1046. return mmcxwrite(buf->otrack, v, nblk);
  1047. }
  1048. enum {
  1049. Eccblk = 128, /* sectors per ecc block */
  1050. Rsvslop = 0,
  1051. };
  1052. static int
  1053. reserve(Drive *drive, int track)
  1054. {
  1055. ulong sz;
  1056. uchar cmd[10];
  1057. initcdb(cmd, sizeof cmd, ScmdReserve);
  1058. track -= drive->firsttrack; /* switch to zero-origin */
  1059. if (track >= 0 && track < drive->ntrack)
  1060. /* .end is next sector past sz */
  1061. sz = drive->track[track].end - drive->track[track].beg - Rsvslop;
  1062. else {
  1063. sz = Eccblk;
  1064. fprint(2, "%s: reserve: track #%d out of range 0-%d\n",
  1065. argv0, track, drive->ntrack);
  1066. }
  1067. sz -= sz % Eccblk; /* round down to ecc-block multiple */
  1068. if ((long)sz < 0) {
  1069. fprint(2, "%s: reserve: bogus size %lud\n", argv0, sz);
  1070. return -1;
  1071. }
  1072. cmd[1] = 0; /* no ASRV: allocate by size not lba */
  1073. PUTBELONG(cmd + 2 + 3, sz);
  1074. if (vflag)
  1075. fprint(2, "reserving %ld sectors\n", sz);
  1076. return scsi(drive, cmd, sizeof cmd, cmd, 0, Snone);
  1077. }
  1078. static int
  1079. getinvistrack(Drive *drive)
  1080. {
  1081. int n;
  1082. uchar cmd[10], resp[Pagesz];
  1083. initcdb(cmd, sizeof(cmd), ScmdRtrackinfo);
  1084. cmd[1] = 1<<2 | 1; /* open; address below is logical track # */
  1085. PUTBELONG(cmd + 2, 1); /* find first open track */
  1086. cmd[7] = sizeof(resp)>>8;
  1087. cmd[8] = sizeof(resp);
  1088. n = scsi(drive, cmd, sizeof(cmd), resp, sizeof(resp), Sread);
  1089. if(n < 4) {
  1090. if(vflag)
  1091. print("trackinfo for invis track fails n=%d: %r\n", n);
  1092. return -1;
  1093. }
  1094. if(vflag)
  1095. print("getinvistrack: track #%d session #%d\n",
  1096. resp[2], resp[3]);
  1097. return resp[2];
  1098. }
  1099. static Otrack*
  1100. mmccreate(Drive *drive, int type)
  1101. {
  1102. int bs, invis;
  1103. Mmcaux *aux;
  1104. Track *t;
  1105. Otrack *o;
  1106. aux = drive->aux;
  1107. if(aux->nropen || aux->nwopen) {
  1108. werrstr("drive in use");
  1109. return nil;
  1110. }
  1111. switch(type){
  1112. case TypeAudio:
  1113. bs = BScdda;
  1114. break;
  1115. case TypeData:
  1116. bs = BScdrom;
  1117. break;
  1118. default:
  1119. werrstr("bad type %d", type);
  1120. return nil;
  1121. }
  1122. invis = getinvistrack(drive);
  1123. if (invis < 0)
  1124. invis = Invistrack;
  1125. /* comment out the returns for now; it should be no big deal - geoff */
  1126. if(mmctrackinfo(drive, invis, Maxtrack)) {
  1127. if (vflag)
  1128. fprint(2, "mmccreate: mmctrackinfo for invis track %d"
  1129. " failed: %r\n", invis);
  1130. werrstr("disc not writable");
  1131. // return nil;
  1132. }
  1133. if(mmcsetbs(drive, bs) < 0) {
  1134. werrstr("cannot set bs mode");
  1135. // return nil;
  1136. }
  1137. if(mmctrackinfo(drive, invis, Maxtrack)) {
  1138. if (vflag)
  1139. fprint(2, "mmccreate: mmctrackinfo for invis track %d"
  1140. " (2) failed: %r\n", invis);
  1141. werrstr("disc not writable 2");
  1142. // return nil;
  1143. }
  1144. /* special hack for dvd-r: reserve the invisible track */
  1145. if (drive->mmctype == Mmcdvdminus && drive->writeok &&
  1146. drive->recordable && reserve(drive, invis) < 0) {
  1147. if (vflag)
  1148. fprint(2, "mmcreate: reserving track %d for dvd-r "
  1149. "failed: %r\n", invis);
  1150. return nil;
  1151. }
  1152. aux->ntotby = 0;
  1153. aux->ntotbk = 0;
  1154. t = &drive->track[drive->ntrack++];
  1155. t->size = 0;
  1156. t->bs = bs;
  1157. t->beg = aux->mmcnwa;
  1158. t->end = 0;
  1159. t->type = type;
  1160. drive->nameok = 0;
  1161. o = emalloc(sizeof(Otrack));
  1162. o->drive = drive;
  1163. o->nchange = drive->nchange;
  1164. o->omode = OWRITE;
  1165. o->track = t;
  1166. o->buf = bopen(mmcwrite, OWRITE, bs, Readblock);
  1167. o->buf->otrack = o;
  1168. aux->nwopen++;
  1169. if(vflag)
  1170. print("mmcinit: nwa = 0x%luX\n", aux->mmcnwa);
  1171. return o;
  1172. }
  1173. /*
  1174. * issue some form of close track, close session or finalize disc command.
  1175. * see The Matrix, table 252 in MMC-6 §6.3.2.3.
  1176. */
  1177. static int
  1178. mmcxclose(Drive *drive, int clf, int trackno)
  1179. {
  1180. uchar cmd[10];
  1181. memset(cmd, 0, sizeof(cmd));
  1182. cmd[0] = ScmdClosetracksess;
  1183. /* cmd[1] & 1 is the immediate bit */
  1184. cmd[2] = clf; /* close function */
  1185. if(clf == Closetrack)
  1186. cmd[5] = trackno;
  1187. return scsi(drive, cmd, sizeof(cmd), cmd, 0, Snone);
  1188. }
  1189. /* flush drive cache, close current track */
  1190. void
  1191. mmcsynccache(Drive *drive)
  1192. {
  1193. int invis;
  1194. uchar cmd[10];
  1195. Mmcaux *aux;
  1196. initcdb(cmd, sizeof cmd, ScmdSynccache);
  1197. /*
  1198. * this will take a long time to burn the remainder of a dvd-r
  1199. * with a reserved track covering the whole disc.
  1200. */
  1201. if (vflag) {
  1202. fprint(2, "syncing cache");
  1203. if (drive->mmctype == Mmcdvdminus && drive->writeok &&
  1204. drive->recordable)
  1205. fprint(2, "; dvd-r burning rest of track reservation, "
  1206. "will be slow");
  1207. fprint(2, "\n");
  1208. }
  1209. scsi(drive, cmd, sizeof(cmd), cmd, 0, Snone);
  1210. if(vflag) {
  1211. aux = drive->aux;
  1212. print("mmcsynccache: bytes = %lld blocks = %ld, mmcnwa 0x%luX\n",
  1213. aux->ntotby, aux->ntotbk, aux->mmcnwa);
  1214. }
  1215. invis = getinvistrack(drive);
  1216. if (invis < 0)
  1217. invis = Invistrack;
  1218. /*
  1219. * rsc: seems not to work on some drives.
  1220. * so ignore return code & don't issue on dvd+rw.
  1221. */
  1222. if(drive->mmctype != Mmcdvdplus || !drive->erasable) {
  1223. if (vflag)
  1224. fprint(2, "closing invisible track %d (not dvd+rw)...\n",
  1225. invis);
  1226. mmcxclose(drive, Closetrack, invis);
  1227. if (vflag)
  1228. fprint(2, "... done.\n");
  1229. }
  1230. }
  1231. /*
  1232. * close the open track `o'.
  1233. */
  1234. static void
  1235. mmcclose(Otrack *o)
  1236. {
  1237. Mmcaux *aux;
  1238. static uchar zero[2*BSmax];
  1239. aux = o->drive->aux;
  1240. if(o->omode == OREAD)
  1241. aux->nropen--;
  1242. else if(o->omode == OWRITE) {
  1243. aux->nwopen--;
  1244. mmcxwrite(o, zero, 2); /* write lead out */
  1245. mmcsynccache(o->drive);
  1246. o->drive->nchange = -1; /* force reread toc */
  1247. }
  1248. free(o);
  1249. }
  1250. static int
  1251. setonesess(Drive *drive)
  1252. {
  1253. uchar *p;
  1254. Mmcaux *aux;
  1255. /* page 5 is legacy and now read-only; see MMC-6 §7.5.4.1 */
  1256. aux = drive->aux;
  1257. p = aux->page05;
  1258. p[Wptrkmode] &= ~Msbits;
  1259. p[Wptrkmode] |= Msnonext;
  1260. return mmcsetpage(drive, Pagwrparams, p);
  1261. }
  1262. /*
  1263. * close the current session, then finalize the disc.
  1264. */
  1265. static int
  1266. mmcfixate(Drive *drive)
  1267. {
  1268. int r;
  1269. if((drive->cap & Cwrite) == 0) {
  1270. werrstr("not a writer");
  1271. return -1;
  1272. }
  1273. drive->nchange = -1; /* force reread toc */
  1274. setonesess(drive);
  1275. /* skip explicit close session on bd-r */
  1276. if (drive->mmctype != Mmcbd || drive->erasable) {
  1277. if (vflag)
  1278. fprint(2, "closing session and maybe finalizing...\n");
  1279. r = mmcxclose(drive, Closesessfinal, 0);
  1280. if (vflag)
  1281. fprint(2, "... done.\n");
  1282. if (r < 0)
  1283. return r;
  1284. }
  1285. /*
  1286. * Closesessfinal only closes & doesn't finalize on dvd+r and bd-r.
  1287. * Closedvdrbdfinal closes & finalizes dvd+r and bd-r.
  1288. */
  1289. if ((drive->mmctype == Mmcdvdplus || drive->mmctype == Mmcbd) &&
  1290. !drive->erasable) {
  1291. if (vflag)
  1292. fprint(2, "finalizing dvd+r or bd-r... "
  1293. "(won't print `done').\n");
  1294. return mmcxclose(drive, Closedvdrbdfinal, 0);
  1295. }
  1296. return 0;
  1297. }
  1298. static int
  1299. mmcblank(Drive *drive, int quick)
  1300. {
  1301. uchar cmd[12];
  1302. drive->nchange = -1; /* force reread toc */
  1303. memset(cmd, 0, sizeof(cmd));
  1304. cmd[0] = ScmdBlank; /* blank cd-rw media */
  1305. /* immediate bit is 0x10 */
  1306. /* cmd[1] = 0 means blank the whole disc; = 1 just the header */
  1307. cmd[1] = quick ? 0x01 : 0x00;
  1308. return scsi(drive, cmd, sizeof(cmd), cmd, 0, Snone);
  1309. }
  1310. static char*
  1311. e(int status)
  1312. {
  1313. if(status < 0)
  1314. return geterrstr();
  1315. return nil;
  1316. }
  1317. static char*
  1318. mmcctl(Drive *drive, int argc, char **argv)
  1319. {
  1320. char *cmd;
  1321. if(argc < 1)
  1322. return nil;
  1323. cmd = argv[0];
  1324. if(strcmp(cmd, "format") == 0)
  1325. return e(format(drive));
  1326. if(strcmp(cmd, "blank") == 0)
  1327. return e(mmcblank(drive, 0));
  1328. if(strcmp(cmd, "quickblank") == 0)
  1329. return e(mmcblank(drive, 1));
  1330. if(strcmp(cmd, "eject") == 0)
  1331. return e(start(drive, 2));
  1332. if(strcmp(cmd, "ingest") == 0)
  1333. return e(start(drive, 3));
  1334. return "bad arg";
  1335. }
  1336. static char*
  1337. mmcsetspeed(Drive *drive, int r, int w)
  1338. {
  1339. char *rv;
  1340. uchar cmd[12];
  1341. memset(cmd, 0, sizeof(cmd));
  1342. cmd[0] = ScmdSetcdspeed;
  1343. cmd[2] = r>>8;
  1344. cmd[3] = r;
  1345. cmd[4] = w>>8;
  1346. cmd[5] = w;
  1347. rv = e(scsi(drive, cmd, sizeof(cmd), nil, 0, Snone));
  1348. mmcgetspeed(drive);
  1349. return rv;
  1350. }
  1351. static Dev mmcdev = {
  1352. mmcopenrd,
  1353. mmccreate,
  1354. bufread,
  1355. bufwrite,
  1356. mmcclose,
  1357. mmcgettoc,
  1358. mmcfixate,
  1359. mmcctl,
  1360. mmcsetspeed,
  1361. };