ide-disk.c 19 KB

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  1. /*
  2. * Copyright (C) 1994-1998 Linus Torvalds & authors (see below)
  3. * Copyright (C) 1998-2002 Linux ATA Development
  4. * Andre Hedrick <andre@linux-ide.org>
  5. * Copyright (C) 2003 Red Hat
  6. * Copyright (C) 2003-2005, 2007 Bartlomiej Zolnierkiewicz
  7. */
  8. /*
  9. * Mostly written by Mark Lord <mlord@pobox.com>
  10. * and Gadi Oxman <gadio@netvision.net.il>
  11. * and Andre Hedrick <andre@linux-ide.org>
  12. *
  13. * This is the IDE/ATA disk driver, as evolved from hd.c and ide.c.
  14. */
  15. #include <linux/types.h>
  16. #include <linux/string.h>
  17. #include <linux/kernel.h>
  18. #include <linux/timer.h>
  19. #include <linux/mm.h>
  20. #include <linux/interrupt.h>
  21. #include <linux/major.h>
  22. #include <linux/errno.h>
  23. #include <linux/genhd.h>
  24. #include <linux/slab.h>
  25. #include <linux/delay.h>
  26. #include <linux/mutex.h>
  27. #include <linux/leds.h>
  28. #include <linux/ide.h>
  29. #include <asm/byteorder.h>
  30. #include <asm/irq.h>
  31. #include <asm/uaccess.h>
  32. #include <asm/io.h>
  33. #include <asm/div64.h>
  34. #include "ide-disk.h"
  35. static const u8 ide_rw_cmds[] = {
  36. ATA_CMD_READ_MULTI,
  37. ATA_CMD_WRITE_MULTI,
  38. ATA_CMD_READ_MULTI_EXT,
  39. ATA_CMD_WRITE_MULTI_EXT,
  40. ATA_CMD_PIO_READ,
  41. ATA_CMD_PIO_WRITE,
  42. ATA_CMD_PIO_READ_EXT,
  43. ATA_CMD_PIO_WRITE_EXT,
  44. ATA_CMD_READ,
  45. ATA_CMD_WRITE,
  46. ATA_CMD_READ_EXT,
  47. ATA_CMD_WRITE_EXT,
  48. };
  49. static void ide_tf_set_cmd(ide_drive_t *drive, struct ide_cmd *cmd, u8 dma)
  50. {
  51. u8 index, lba48, write;
  52. lba48 = (cmd->tf_flags & IDE_TFLAG_LBA48) ? 2 : 0;
  53. write = (cmd->tf_flags & IDE_TFLAG_WRITE) ? 1 : 0;
  54. if (dma) {
  55. cmd->protocol = ATA_PROT_DMA;
  56. index = 8;
  57. } else {
  58. cmd->protocol = ATA_PROT_PIO;
  59. if (drive->mult_count) {
  60. cmd->tf_flags |= IDE_TFLAG_MULTI_PIO;
  61. index = 0;
  62. } else
  63. index = 4;
  64. }
  65. cmd->tf.command = ide_rw_cmds[index + lba48 + write];
  66. }
  67. /*
  68. * __ide_do_rw_disk() issues READ and WRITE commands to a disk,
  69. * using LBA if supported, or CHS otherwise, to address sectors.
  70. */
  71. static ide_startstop_t __ide_do_rw_disk(ide_drive_t *drive, struct request *rq,
  72. sector_t block)
  73. {
  74. ide_hwif_t *hwif = drive->hwif;
  75. u16 nsectors = (u16)rq->nr_sectors;
  76. u8 lba48 = !!(drive->dev_flags & IDE_DFLAG_LBA48);
  77. u8 dma = !!(drive->dev_flags & IDE_DFLAG_USING_DMA);
  78. struct ide_cmd cmd;
  79. struct ide_taskfile *tf = &cmd.tf;
  80. ide_startstop_t rc;
  81. if ((hwif->host_flags & IDE_HFLAG_NO_LBA48_DMA) && lba48 && dma) {
  82. if (block + rq->nr_sectors > 1ULL << 28)
  83. dma = 0;
  84. else
  85. lba48 = 0;
  86. }
  87. memset(&cmd, 0, sizeof(cmd));
  88. cmd.valid.out.tf = IDE_VALID_OUT_TF | IDE_VALID_DEVICE;
  89. cmd.valid.in.tf = IDE_VALID_IN_TF | IDE_VALID_DEVICE;
  90. if (drive->dev_flags & IDE_DFLAG_LBA) {
  91. if (lba48) {
  92. pr_debug("%s: LBA=0x%012llx\n", drive->name,
  93. (unsigned long long)block);
  94. tf->nsect = nsectors & 0xff;
  95. tf->lbal = (u8) block;
  96. tf->lbam = (u8)(block >> 8);
  97. tf->lbah = (u8)(block >> 16);
  98. tf->device = ATA_LBA;
  99. tf = &cmd.hob;
  100. tf->nsect = (nsectors >> 8) & 0xff;
  101. tf->lbal = (u8)(block >> 24);
  102. if (sizeof(block) != 4) {
  103. tf->lbam = (u8)((u64)block >> 32);
  104. tf->lbah = (u8)((u64)block >> 40);
  105. }
  106. cmd.valid.out.hob = IDE_VALID_OUT_HOB;
  107. cmd.valid.in.hob = IDE_VALID_IN_HOB;
  108. cmd.tf_flags |= IDE_TFLAG_LBA48;
  109. } else {
  110. tf->nsect = nsectors & 0xff;
  111. tf->lbal = block;
  112. tf->lbam = block >>= 8;
  113. tf->lbah = block >>= 8;
  114. tf->device = ((block >> 8) & 0xf) | ATA_LBA;
  115. }
  116. } else {
  117. unsigned int sect, head, cyl, track;
  118. track = (int)block / drive->sect;
  119. sect = (int)block % drive->sect + 1;
  120. head = track % drive->head;
  121. cyl = track / drive->head;
  122. pr_debug("%s: CHS=%u/%u/%u\n", drive->name, cyl, head, sect);
  123. tf->nsect = nsectors & 0xff;
  124. tf->lbal = sect;
  125. tf->lbam = cyl;
  126. tf->lbah = cyl >> 8;
  127. tf->device = head;
  128. }
  129. cmd.tf_flags |= IDE_TFLAG_FS;
  130. if (rq_data_dir(rq))
  131. cmd.tf_flags |= IDE_TFLAG_WRITE;
  132. ide_tf_set_cmd(drive, &cmd, dma);
  133. cmd.rq = rq;
  134. if (dma == 0) {
  135. ide_init_sg_cmd(&cmd, nsectors << 9);
  136. ide_map_sg(drive, &cmd);
  137. }
  138. rc = do_rw_taskfile(drive, &cmd);
  139. if (rc == ide_stopped && dma) {
  140. /* fallback to PIO */
  141. cmd.tf_flags |= IDE_TFLAG_DMA_PIO_FALLBACK;
  142. ide_tf_set_cmd(drive, &cmd, 0);
  143. ide_init_sg_cmd(&cmd, nsectors << 9);
  144. rc = do_rw_taskfile(drive, &cmd);
  145. }
  146. return rc;
  147. }
  148. /*
  149. * 268435455 == 137439 MB or 28bit limit
  150. * 320173056 == 163929 MB or 48bit addressing
  151. * 1073741822 == 549756 MB or 48bit addressing fake drive
  152. */
  153. static ide_startstop_t ide_do_rw_disk(ide_drive_t *drive, struct request *rq,
  154. sector_t block)
  155. {
  156. ide_hwif_t *hwif = drive->hwif;
  157. BUG_ON(drive->dev_flags & IDE_DFLAG_BLOCKED);
  158. if (!blk_fs_request(rq)) {
  159. blk_dump_rq_flags(rq, "ide_do_rw_disk - bad command");
  160. if (rq->errors == 0)
  161. rq->errors = -EIO;
  162. ide_complete_rq(drive, -EIO, ide_rq_bytes(rq));
  163. return ide_stopped;
  164. }
  165. ledtrig_ide_activity();
  166. pr_debug("%s: %sing: block=%llu, sectors=%lu, buffer=0x%08lx\n",
  167. drive->name, rq_data_dir(rq) == READ ? "read" : "writ",
  168. (unsigned long long)block, rq->nr_sectors,
  169. (unsigned long)rq->buffer);
  170. if (hwif->rw_disk)
  171. hwif->rw_disk(drive, rq);
  172. return __ide_do_rw_disk(drive, rq, block);
  173. }
  174. /*
  175. * Queries for true maximum capacity of the drive.
  176. * Returns maximum LBA address (> 0) of the drive, 0 if failed.
  177. */
  178. static u64 idedisk_read_native_max_address(ide_drive_t *drive, int lba48)
  179. {
  180. struct ide_cmd cmd;
  181. struct ide_taskfile *tf = &cmd.tf;
  182. u64 addr = 0;
  183. memset(&cmd, 0, sizeof(cmd));
  184. if (lba48)
  185. tf->command = ATA_CMD_READ_NATIVE_MAX_EXT;
  186. else
  187. tf->command = ATA_CMD_READ_NATIVE_MAX;
  188. tf->device = ATA_LBA;
  189. cmd.valid.out.tf = IDE_VALID_OUT_TF | IDE_VALID_DEVICE;
  190. cmd.valid.in.tf = IDE_VALID_IN_TF | IDE_VALID_DEVICE;
  191. if (lba48) {
  192. cmd.valid.out.hob = IDE_VALID_OUT_HOB;
  193. cmd.valid.in.hob = IDE_VALID_IN_HOB;
  194. cmd.tf_flags = IDE_TFLAG_LBA48;
  195. }
  196. ide_no_data_taskfile(drive, &cmd);
  197. /* if OK, compute maximum address value */
  198. if (!(tf->status & ATA_ERR))
  199. addr = ide_get_lba_addr(&cmd, lba48) + 1;
  200. return addr;
  201. }
  202. /*
  203. * Sets maximum virtual LBA address of the drive.
  204. * Returns new maximum virtual LBA address (> 0) or 0 on failure.
  205. */
  206. static u64 idedisk_set_max_address(ide_drive_t *drive, u64 addr_req, int lba48)
  207. {
  208. struct ide_cmd cmd;
  209. struct ide_taskfile *tf = &cmd.tf;
  210. u64 addr_set = 0;
  211. addr_req--;
  212. memset(&cmd, 0, sizeof(cmd));
  213. tf->lbal = (addr_req >> 0) & 0xff;
  214. tf->lbam = (addr_req >>= 8) & 0xff;
  215. tf->lbah = (addr_req >>= 8) & 0xff;
  216. if (lba48) {
  217. cmd.hob.lbal = (addr_req >>= 8) & 0xff;
  218. cmd.hob.lbam = (addr_req >>= 8) & 0xff;
  219. cmd.hob.lbah = (addr_req >>= 8) & 0xff;
  220. tf->command = ATA_CMD_SET_MAX_EXT;
  221. } else {
  222. tf->device = (addr_req >>= 8) & 0x0f;
  223. tf->command = ATA_CMD_SET_MAX;
  224. }
  225. tf->device |= ATA_LBA;
  226. cmd.valid.out.tf = IDE_VALID_OUT_TF | IDE_VALID_DEVICE;
  227. cmd.valid.in.tf = IDE_VALID_IN_TF | IDE_VALID_DEVICE;
  228. if (lba48) {
  229. cmd.valid.out.hob = IDE_VALID_OUT_HOB;
  230. cmd.valid.in.hob = IDE_VALID_IN_HOB;
  231. cmd.tf_flags = IDE_TFLAG_LBA48;
  232. }
  233. ide_no_data_taskfile(drive, &cmd);
  234. /* if OK, compute maximum address value */
  235. if (!(tf->status & ATA_ERR))
  236. addr_set = ide_get_lba_addr(&cmd, lba48) + 1;
  237. return addr_set;
  238. }
  239. static unsigned long long sectors_to_MB(unsigned long long n)
  240. {
  241. n <<= 9; /* make it bytes */
  242. do_div(n, 1000000); /* make it MB */
  243. return n;
  244. }
  245. /*
  246. * Some disks report total number of sectors instead of
  247. * maximum sector address. We list them here.
  248. */
  249. static const struct drive_list_entry hpa_list[] = {
  250. { "ST340823A", NULL },
  251. { "ST320413A", NULL },
  252. { "ST310211A", NULL },
  253. { NULL, NULL }
  254. };
  255. static u64 ide_disk_hpa_get_native_capacity(ide_drive_t *drive, int lba48)
  256. {
  257. u64 capacity, set_max;
  258. capacity = drive->capacity64;
  259. set_max = idedisk_read_native_max_address(drive, lba48);
  260. if (ide_in_drive_list(drive->id, hpa_list)) {
  261. /*
  262. * Since we are inclusive wrt to firmware revisions do this
  263. * extra check and apply the workaround only when needed.
  264. */
  265. if (set_max == capacity + 1)
  266. set_max--;
  267. }
  268. return set_max;
  269. }
  270. static u64 ide_disk_hpa_set_capacity(ide_drive_t *drive, u64 set_max, int lba48)
  271. {
  272. set_max = idedisk_set_max_address(drive, set_max, lba48);
  273. if (set_max)
  274. drive->capacity64 = set_max;
  275. return set_max;
  276. }
  277. static void idedisk_check_hpa(ide_drive_t *drive)
  278. {
  279. u64 capacity, set_max;
  280. int lba48 = ata_id_lba48_enabled(drive->id);
  281. capacity = drive->capacity64;
  282. set_max = ide_disk_hpa_get_native_capacity(drive, lba48);
  283. if (set_max <= capacity)
  284. return;
  285. drive->probed_capacity = set_max;
  286. printk(KERN_INFO "%s: Host Protected Area detected.\n"
  287. "\tcurrent capacity is %llu sectors (%llu MB)\n"
  288. "\tnative capacity is %llu sectors (%llu MB)\n",
  289. drive->name,
  290. capacity, sectors_to_MB(capacity),
  291. set_max, sectors_to_MB(set_max));
  292. set_max = ide_disk_hpa_set_capacity(drive, set_max, lba48);
  293. if (set_max)
  294. printk(KERN_INFO "%s: Host Protected Area disabled.\n",
  295. drive->name);
  296. }
  297. static int ide_disk_get_capacity(ide_drive_t *drive)
  298. {
  299. u16 *id = drive->id;
  300. int lba;
  301. if (ata_id_lba48_enabled(id)) {
  302. /* drive speaks 48-bit LBA */
  303. lba = 1;
  304. drive->capacity64 = ata_id_u64(id, ATA_ID_LBA_CAPACITY_2);
  305. } else if (ata_id_has_lba(id) && ata_id_is_lba_capacity_ok(id)) {
  306. /* drive speaks 28-bit LBA */
  307. lba = 1;
  308. drive->capacity64 = ata_id_u32(id, ATA_ID_LBA_CAPACITY);
  309. } else {
  310. /* drive speaks boring old 28-bit CHS */
  311. lba = 0;
  312. drive->capacity64 = drive->cyl * drive->head * drive->sect;
  313. }
  314. drive->probed_capacity = drive->capacity64;
  315. if (lba) {
  316. drive->dev_flags |= IDE_DFLAG_LBA;
  317. /*
  318. * If this device supports the Host Protected Area feature set,
  319. * then we may need to change our opinion about its capacity.
  320. */
  321. if (ata_id_hpa_enabled(id))
  322. idedisk_check_hpa(drive);
  323. }
  324. /* limit drive capacity to 137GB if LBA48 cannot be used */
  325. if ((drive->dev_flags & IDE_DFLAG_LBA48) == 0 &&
  326. drive->capacity64 > 1ULL << 28) {
  327. printk(KERN_WARNING "%s: cannot use LBA48 - full capacity "
  328. "%llu sectors (%llu MB)\n",
  329. drive->name, (unsigned long long)drive->capacity64,
  330. sectors_to_MB(drive->capacity64));
  331. drive->probed_capacity = drive->capacity64 = 1ULL << 28;
  332. }
  333. if ((drive->hwif->host_flags & IDE_HFLAG_NO_LBA48_DMA) &&
  334. (drive->dev_flags & IDE_DFLAG_LBA48)) {
  335. if (drive->capacity64 > 1ULL << 28) {
  336. printk(KERN_INFO "%s: cannot use LBA48 DMA - PIO mode"
  337. " will be used for accessing sectors "
  338. "> %u\n", drive->name, 1 << 28);
  339. } else
  340. drive->dev_flags &= ~IDE_DFLAG_LBA48;
  341. }
  342. return 0;
  343. }
  344. static u64 ide_disk_set_capacity(ide_drive_t *drive, u64 capacity)
  345. {
  346. u64 set = min(capacity, drive->probed_capacity);
  347. u16 *id = drive->id;
  348. int lba48 = ata_id_lba48_enabled(id);
  349. if ((drive->dev_flags & IDE_DFLAG_LBA) == 0 ||
  350. ata_id_hpa_enabled(id) == 0)
  351. goto out;
  352. /*
  353. * according to the spec the SET MAX ADDRESS command shall be
  354. * immediately preceded by a READ NATIVE MAX ADDRESS command
  355. */
  356. capacity = ide_disk_hpa_get_native_capacity(drive, lba48);
  357. if (capacity == 0)
  358. goto out;
  359. set = ide_disk_hpa_set_capacity(drive, set, lba48);
  360. if (set)
  361. return set;
  362. out:
  363. return drive->capacity64;
  364. }
  365. static void idedisk_prepare_flush(struct request_queue *q, struct request *rq)
  366. {
  367. ide_drive_t *drive = q->queuedata;
  368. struct ide_cmd *cmd = kmalloc(sizeof(*cmd), GFP_ATOMIC);
  369. /* FIXME: map struct ide_taskfile on rq->cmd[] */
  370. BUG_ON(cmd == NULL);
  371. memset(cmd, 0, sizeof(*cmd));
  372. if (ata_id_flush_ext_enabled(drive->id) &&
  373. (drive->capacity64 >= (1UL << 28)))
  374. cmd->tf.command = ATA_CMD_FLUSH_EXT;
  375. else
  376. cmd->tf.command = ATA_CMD_FLUSH;
  377. cmd->valid.out.tf = IDE_VALID_OUT_TF | IDE_VALID_DEVICE;
  378. cmd->tf_flags = IDE_TFLAG_DYN;
  379. cmd->protocol = ATA_PROT_NODATA;
  380. rq->cmd_type = REQ_TYPE_ATA_TASKFILE;
  381. rq->cmd_flags |= REQ_SOFTBARRIER;
  382. rq->special = cmd;
  383. }
  384. ide_devset_get(multcount, mult_count);
  385. /*
  386. * This is tightly woven into the driver->do_special can not touch.
  387. * DON'T do it again until a total personality rewrite is committed.
  388. */
  389. static int set_multcount(ide_drive_t *drive, int arg)
  390. {
  391. struct request *rq;
  392. int error;
  393. if (arg < 0 || arg > (drive->id[ATA_ID_MAX_MULTSECT] & 0xff))
  394. return -EINVAL;
  395. if (drive->special.b.set_multmode)
  396. return -EBUSY;
  397. rq = blk_get_request(drive->queue, READ, __GFP_WAIT);
  398. rq->cmd_type = REQ_TYPE_ATA_TASKFILE;
  399. drive->mult_req = arg;
  400. drive->special.b.set_multmode = 1;
  401. error = blk_execute_rq(drive->queue, NULL, rq, 0);
  402. blk_put_request(rq);
  403. return (drive->mult_count == arg) ? 0 : -EIO;
  404. }
  405. ide_devset_get_flag(nowerr, IDE_DFLAG_NOWERR);
  406. static int set_nowerr(ide_drive_t *drive, int arg)
  407. {
  408. if (arg < 0 || arg > 1)
  409. return -EINVAL;
  410. if (arg)
  411. drive->dev_flags |= IDE_DFLAG_NOWERR;
  412. else
  413. drive->dev_flags &= ~IDE_DFLAG_NOWERR;
  414. drive->bad_wstat = arg ? BAD_R_STAT : BAD_W_STAT;
  415. return 0;
  416. }
  417. static int ide_do_setfeature(ide_drive_t *drive, u8 feature, u8 nsect)
  418. {
  419. struct ide_cmd cmd;
  420. memset(&cmd, 0, sizeof(cmd));
  421. cmd.tf.feature = feature;
  422. cmd.tf.nsect = nsect;
  423. cmd.tf.command = ATA_CMD_SET_FEATURES;
  424. cmd.valid.out.tf = IDE_VALID_OUT_TF | IDE_VALID_DEVICE;
  425. cmd.valid.in.tf = IDE_VALID_IN_TF | IDE_VALID_DEVICE;
  426. return ide_no_data_taskfile(drive, &cmd);
  427. }
  428. static void update_ordered(ide_drive_t *drive)
  429. {
  430. u16 *id = drive->id;
  431. unsigned ordered = QUEUE_ORDERED_NONE;
  432. prepare_flush_fn *prep_fn = NULL;
  433. if (drive->dev_flags & IDE_DFLAG_WCACHE) {
  434. unsigned long long capacity;
  435. int barrier;
  436. /*
  437. * We must avoid issuing commands a drive does not
  438. * understand or we may crash it. We check flush cache
  439. * is supported. We also check we have the LBA48 flush
  440. * cache if the drive capacity is too large. By this
  441. * time we have trimmed the drive capacity if LBA48 is
  442. * not available so we don't need to recheck that.
  443. */
  444. capacity = ide_gd_capacity(drive);
  445. barrier = ata_id_flush_enabled(id) &&
  446. (drive->dev_flags & IDE_DFLAG_NOFLUSH) == 0 &&
  447. ((drive->dev_flags & IDE_DFLAG_LBA48) == 0 ||
  448. capacity <= (1ULL << 28) ||
  449. ata_id_flush_ext_enabled(id));
  450. printk(KERN_INFO "%s: cache flushes %ssupported\n",
  451. drive->name, barrier ? "" : "not ");
  452. if (barrier) {
  453. ordered = QUEUE_ORDERED_DRAIN_FLUSH;
  454. prep_fn = idedisk_prepare_flush;
  455. }
  456. } else
  457. ordered = QUEUE_ORDERED_DRAIN;
  458. blk_queue_ordered(drive->queue, ordered, prep_fn);
  459. }
  460. ide_devset_get_flag(wcache, IDE_DFLAG_WCACHE);
  461. static int set_wcache(ide_drive_t *drive, int arg)
  462. {
  463. int err = 1;
  464. if (arg < 0 || arg > 1)
  465. return -EINVAL;
  466. if (ata_id_flush_enabled(drive->id)) {
  467. err = ide_do_setfeature(drive,
  468. arg ? SETFEATURES_WC_ON : SETFEATURES_WC_OFF, 0);
  469. if (err == 0) {
  470. if (arg)
  471. drive->dev_flags |= IDE_DFLAG_WCACHE;
  472. else
  473. drive->dev_flags &= ~IDE_DFLAG_WCACHE;
  474. }
  475. }
  476. update_ordered(drive);
  477. return err;
  478. }
  479. static int do_idedisk_flushcache(ide_drive_t *drive)
  480. {
  481. struct ide_cmd cmd;
  482. memset(&cmd, 0, sizeof(cmd));
  483. if (ata_id_flush_ext_enabled(drive->id))
  484. cmd.tf.command = ATA_CMD_FLUSH_EXT;
  485. else
  486. cmd.tf.command = ATA_CMD_FLUSH;
  487. cmd.valid.out.tf = IDE_VALID_OUT_TF | IDE_VALID_DEVICE;
  488. cmd.valid.in.tf = IDE_VALID_IN_TF | IDE_VALID_DEVICE;
  489. return ide_no_data_taskfile(drive, &cmd);
  490. }
  491. ide_devset_get(acoustic, acoustic);
  492. static int set_acoustic(ide_drive_t *drive, int arg)
  493. {
  494. if (arg < 0 || arg > 254)
  495. return -EINVAL;
  496. ide_do_setfeature(drive,
  497. arg ? SETFEATURES_AAM_ON : SETFEATURES_AAM_OFF, arg);
  498. drive->acoustic = arg;
  499. return 0;
  500. }
  501. ide_devset_get_flag(addressing, IDE_DFLAG_LBA48);
  502. /*
  503. * drive->addressing:
  504. * 0: 28-bit
  505. * 1: 48-bit
  506. * 2: 48-bit capable doing 28-bit
  507. */
  508. static int set_addressing(ide_drive_t *drive, int arg)
  509. {
  510. if (arg < 0 || arg > 2)
  511. return -EINVAL;
  512. if (arg && ((drive->hwif->host_flags & IDE_HFLAG_NO_LBA48) ||
  513. ata_id_lba48_enabled(drive->id) == 0))
  514. return -EIO;
  515. if (arg == 2)
  516. arg = 0;
  517. if (arg)
  518. drive->dev_flags |= IDE_DFLAG_LBA48;
  519. else
  520. drive->dev_flags &= ~IDE_DFLAG_LBA48;
  521. return 0;
  522. }
  523. ide_ext_devset_rw(acoustic, acoustic);
  524. ide_ext_devset_rw(address, addressing);
  525. ide_ext_devset_rw(multcount, multcount);
  526. ide_ext_devset_rw(wcache, wcache);
  527. ide_ext_devset_rw_sync(nowerr, nowerr);
  528. static int ide_disk_check(ide_drive_t *drive, const char *s)
  529. {
  530. return 1;
  531. }
  532. static void ide_disk_setup(ide_drive_t *drive)
  533. {
  534. struct ide_disk_obj *idkp = drive->driver_data;
  535. struct request_queue *q = drive->queue;
  536. ide_hwif_t *hwif = drive->hwif;
  537. u16 *id = drive->id;
  538. char *m = (char *)&id[ATA_ID_PROD];
  539. unsigned long long capacity;
  540. ide_proc_register_driver(drive, idkp->driver);
  541. if ((drive->dev_flags & IDE_DFLAG_ID_READ) == 0)
  542. return;
  543. if (drive->dev_flags & IDE_DFLAG_REMOVABLE) {
  544. /*
  545. * Removable disks (eg. SYQUEST); ignore 'WD' drives
  546. */
  547. if (m[0] != 'W' || m[1] != 'D')
  548. drive->dev_flags |= IDE_DFLAG_DOORLOCKING;
  549. }
  550. (void)set_addressing(drive, 1);
  551. if (drive->dev_flags & IDE_DFLAG_LBA48) {
  552. int max_s = 2048;
  553. if (max_s > hwif->rqsize)
  554. max_s = hwif->rqsize;
  555. blk_queue_max_sectors(q, max_s);
  556. }
  557. printk(KERN_INFO "%s: max request size: %dKiB\n", drive->name,
  558. q->max_sectors / 2);
  559. if (ata_id_is_ssd(id))
  560. queue_flag_set_unlocked(QUEUE_FLAG_NONROT, q);
  561. /* calculate drive capacity, and select LBA if possible */
  562. ide_disk_get_capacity(drive);
  563. /*
  564. * if possible, give fdisk access to more of the drive,
  565. * by correcting bios_cyls:
  566. */
  567. capacity = ide_gd_capacity(drive);
  568. if ((drive->dev_flags & IDE_DFLAG_FORCED_GEOM) == 0) {
  569. if (ata_id_lba48_enabled(drive->id)) {
  570. /* compatibility */
  571. drive->bios_sect = 63;
  572. drive->bios_head = 255;
  573. }
  574. if (drive->bios_sect && drive->bios_head) {
  575. unsigned int cap0 = capacity; /* truncate to 32 bits */
  576. unsigned int cylsz, cyl;
  577. if (cap0 != capacity)
  578. drive->bios_cyl = 65535;
  579. else {
  580. cylsz = drive->bios_sect * drive->bios_head;
  581. cyl = cap0 / cylsz;
  582. if (cyl > 65535)
  583. cyl = 65535;
  584. if (cyl > drive->bios_cyl)
  585. drive->bios_cyl = cyl;
  586. }
  587. }
  588. }
  589. printk(KERN_INFO "%s: %llu sectors (%llu MB)",
  590. drive->name, capacity, sectors_to_MB(capacity));
  591. /* Only print cache size when it was specified */
  592. if (id[ATA_ID_BUF_SIZE])
  593. printk(KERN_CONT " w/%dKiB Cache", id[ATA_ID_BUF_SIZE] / 2);
  594. printk(KERN_CONT ", CHS=%d/%d/%d\n",
  595. drive->bios_cyl, drive->bios_head, drive->bios_sect);
  596. /* write cache enabled? */
  597. if ((id[ATA_ID_CSFO] & 1) || ata_id_wcache_enabled(id))
  598. drive->dev_flags |= IDE_DFLAG_WCACHE;
  599. set_wcache(drive, 1);
  600. if ((drive->dev_flags & IDE_DFLAG_LBA) == 0 &&
  601. (drive->head == 0 || drive->head > 16)) {
  602. printk(KERN_ERR "%s: invalid geometry: %d physical heads?\n",
  603. drive->name, drive->head);
  604. drive->dev_flags &= ~IDE_DFLAG_ATTACH;
  605. } else
  606. drive->dev_flags |= IDE_DFLAG_ATTACH;
  607. }
  608. static void ide_disk_flush(ide_drive_t *drive)
  609. {
  610. if (ata_id_flush_enabled(drive->id) == 0 ||
  611. (drive->dev_flags & IDE_DFLAG_WCACHE) == 0)
  612. return;
  613. if (do_idedisk_flushcache(drive))
  614. printk(KERN_INFO "%s: wcache flush failed!\n", drive->name);
  615. }
  616. static int ide_disk_init_media(ide_drive_t *drive, struct gendisk *disk)
  617. {
  618. return 0;
  619. }
  620. static int ide_disk_set_doorlock(ide_drive_t *drive, struct gendisk *disk,
  621. int on)
  622. {
  623. struct ide_cmd cmd;
  624. int ret;
  625. if ((drive->dev_flags & IDE_DFLAG_DOORLOCKING) == 0)
  626. return 0;
  627. memset(&cmd, 0, sizeof(cmd));
  628. cmd.tf.command = on ? ATA_CMD_MEDIA_LOCK : ATA_CMD_MEDIA_UNLOCK;
  629. cmd.valid.out.tf = IDE_VALID_OUT_TF | IDE_VALID_DEVICE;
  630. cmd.valid.in.tf = IDE_VALID_IN_TF | IDE_VALID_DEVICE;
  631. ret = ide_no_data_taskfile(drive, &cmd);
  632. if (ret)
  633. drive->dev_flags &= ~IDE_DFLAG_DOORLOCKING;
  634. return ret;
  635. }
  636. const struct ide_disk_ops ide_ata_disk_ops = {
  637. .check = ide_disk_check,
  638. .set_capacity = ide_disk_set_capacity,
  639. .get_capacity = ide_disk_get_capacity,
  640. .setup = ide_disk_setup,
  641. .flush = ide_disk_flush,
  642. .init_media = ide_disk_init_media,
  643. .set_doorlock = ide_disk_set_doorlock,
  644. .do_request = ide_do_rw_disk,
  645. .ioctl = ide_disk_ioctl,
  646. };