libata-scsi.c 88 KB

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  1. /*
  2. * libata-scsi.c - helper library for ATA
  3. *
  4. * Maintained by: Jeff Garzik <jgarzik@pobox.com>
  5. * Please ALWAYS copy linux-ide@vger.kernel.org
  6. * on emails.
  7. *
  8. * Copyright 2003-2004 Red Hat, Inc. All rights reserved.
  9. * Copyright 2003-2004 Jeff Garzik
  10. *
  11. *
  12. * This program is free software; you can redistribute it and/or modify
  13. * it under the terms of the GNU General Public License as published by
  14. * the Free Software Foundation; either version 2, or (at your option)
  15. * any later version.
  16. *
  17. * This program is distributed in the hope that it will be useful,
  18. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  19. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  20. * GNU General Public License for more details.
  21. *
  22. * You should have received a copy of the GNU General Public License
  23. * along with this program; see the file COPYING. If not, write to
  24. * the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
  25. *
  26. *
  27. * libata documentation is available via 'make {ps|pdf}docs',
  28. * as Documentation/DocBook/libata.*
  29. *
  30. * Hardware documentation available from
  31. * - http://www.t10.org/
  32. * - http://www.t13.org/
  33. *
  34. */
  35. #include <linux/kernel.h>
  36. #include <linux/blkdev.h>
  37. #include <linux/spinlock.h>
  38. #include <scsi/scsi.h>
  39. #include <scsi/scsi_host.h>
  40. #include <scsi/scsi_cmnd.h>
  41. #include <scsi/scsi_eh.h>
  42. #include <scsi/scsi_device.h>
  43. #include <scsi/scsi_tcq.h>
  44. #include <scsi/scsi_transport.h>
  45. #include <linux/libata.h>
  46. #include <linux/hdreg.h>
  47. #include <asm/uaccess.h>
  48. #include "libata.h"
  49. #define SECTOR_SIZE 512
  50. typedef unsigned int (*ata_xlat_func_t)(struct ata_queued_cmd *qc);
  51. static struct ata_device * __ata_scsi_find_dev(struct ata_port *ap,
  52. const struct scsi_device *scsidev);
  53. static struct ata_device * ata_scsi_find_dev(struct ata_port *ap,
  54. const struct scsi_device *scsidev);
  55. static int ata_scsi_user_scan(struct Scsi_Host *shost, unsigned int channel,
  56. unsigned int id, unsigned int lun);
  57. #define RW_RECOVERY_MPAGE 0x1
  58. #define RW_RECOVERY_MPAGE_LEN 12
  59. #define CACHE_MPAGE 0x8
  60. #define CACHE_MPAGE_LEN 20
  61. #define CONTROL_MPAGE 0xa
  62. #define CONTROL_MPAGE_LEN 12
  63. #define ALL_MPAGES 0x3f
  64. #define ALL_SUB_MPAGES 0xff
  65. static const u8 def_rw_recovery_mpage[RW_RECOVERY_MPAGE_LEN] = {
  66. RW_RECOVERY_MPAGE,
  67. RW_RECOVERY_MPAGE_LEN - 2,
  68. (1 << 7), /* AWRE */
  69. 0, /* read retry count */
  70. 0, 0, 0, 0,
  71. 0, /* write retry count */
  72. 0, 0, 0
  73. };
  74. static const u8 def_cache_mpage[CACHE_MPAGE_LEN] = {
  75. CACHE_MPAGE,
  76. CACHE_MPAGE_LEN - 2,
  77. 0, /* contains WCE, needs to be 0 for logic */
  78. 0, 0, 0, 0, 0, 0, 0, 0, 0,
  79. 0, /* contains DRA, needs to be 0 for logic */
  80. 0, 0, 0, 0, 0, 0, 0
  81. };
  82. static const u8 def_control_mpage[CONTROL_MPAGE_LEN] = {
  83. CONTROL_MPAGE,
  84. CONTROL_MPAGE_LEN - 2,
  85. 2, /* DSENSE=0, GLTSD=1 */
  86. 0, /* [QAM+QERR may be 1, see 05-359r1] */
  87. 0, 0, 0, 0, 0xff, 0xff,
  88. 0, 30 /* extended self test time, see 05-359r1 */
  89. };
  90. /*
  91. * libata transport template. libata doesn't do real transport stuff.
  92. * It just needs the eh_timed_out hook.
  93. */
  94. static struct scsi_transport_template ata_scsi_transport_template = {
  95. .eh_strategy_handler = ata_scsi_error,
  96. .eh_timed_out = ata_scsi_timed_out,
  97. .user_scan = ata_scsi_user_scan,
  98. };
  99. static void ata_scsi_invalid_field(struct scsi_cmnd *cmd,
  100. void (*done)(struct scsi_cmnd *))
  101. {
  102. ata_scsi_set_sense(cmd, ILLEGAL_REQUEST, 0x24, 0x0);
  103. /* "Invalid field in cbd" */
  104. done(cmd);
  105. }
  106. /**
  107. * ata_std_bios_param - generic bios head/sector/cylinder calculator used by sd.
  108. * @sdev: SCSI device for which BIOS geometry is to be determined
  109. * @bdev: block device associated with @sdev
  110. * @capacity: capacity of SCSI device
  111. * @geom: location to which geometry will be output
  112. *
  113. * Generic bios head/sector/cylinder calculator
  114. * used by sd. Most BIOSes nowadays expect a XXX/255/16 (CHS)
  115. * mapping. Some situations may arise where the disk is not
  116. * bootable if this is not used.
  117. *
  118. * LOCKING:
  119. * Defined by the SCSI layer. We don't really care.
  120. *
  121. * RETURNS:
  122. * Zero.
  123. */
  124. int ata_std_bios_param(struct scsi_device *sdev, struct block_device *bdev,
  125. sector_t capacity, int geom[])
  126. {
  127. geom[0] = 255;
  128. geom[1] = 63;
  129. sector_div(capacity, 255*63);
  130. geom[2] = capacity;
  131. return 0;
  132. }
  133. /**
  134. * ata_get_identity - Handler for HDIO_GET_IDENTITY ioctl
  135. * @sdev: SCSI device to get identify data for
  136. * @arg: User buffer area for identify data
  137. *
  138. * LOCKING:
  139. * Defined by the SCSI layer. We don't really care.
  140. *
  141. * RETURNS:
  142. * Zero on success, negative errno on error.
  143. */
  144. static int ata_get_identity(struct scsi_device *sdev, void __user *arg)
  145. {
  146. struct ata_port *ap = ata_shost_to_port(sdev->host);
  147. struct ata_device *dev = ata_scsi_find_dev(ap, sdev);
  148. u16 __user *dst = arg;
  149. char buf[40];
  150. if (!dev)
  151. return -ENOMSG;
  152. if (copy_to_user(dst, dev->id, ATA_ID_WORDS * sizeof(u16)))
  153. return -EFAULT;
  154. ata_id_string(dev->id, buf, ATA_ID_PROD, ATA_ID_PROD_LEN);
  155. if (copy_to_user(dst + ATA_ID_PROD, buf, ATA_ID_PROD_LEN))
  156. return -EFAULT;
  157. ata_id_string(dev->id, buf, ATA_ID_FW_REV, ATA_ID_FW_REV_LEN);
  158. if (copy_to_user(dst + ATA_ID_FW_REV, buf, ATA_ID_FW_REV_LEN))
  159. return -EFAULT;
  160. ata_id_string(dev->id, buf, ATA_ID_SERNO, ATA_ID_SERNO_LEN);
  161. if (copy_to_user(dst + ATA_ID_SERNO, buf, ATA_ID_SERNO_LEN))
  162. return -EFAULT;
  163. return 0;
  164. }
  165. /**
  166. * ata_cmd_ioctl - Handler for HDIO_DRIVE_CMD ioctl
  167. * @scsidev: Device to which we are issuing command
  168. * @arg: User provided data for issuing command
  169. *
  170. * LOCKING:
  171. * Defined by the SCSI layer. We don't really care.
  172. *
  173. * RETURNS:
  174. * Zero on success, negative errno on error.
  175. */
  176. int ata_cmd_ioctl(struct scsi_device *scsidev, void __user *arg)
  177. {
  178. int rc = 0;
  179. u8 scsi_cmd[MAX_COMMAND_SIZE];
  180. u8 args[4], *argbuf = NULL, *sensebuf = NULL;
  181. int argsize = 0;
  182. enum dma_data_direction data_dir;
  183. int cmd_result;
  184. if (arg == NULL)
  185. return -EINVAL;
  186. if (copy_from_user(args, arg, sizeof(args)))
  187. return -EFAULT;
  188. sensebuf = kzalloc(SCSI_SENSE_BUFFERSIZE, GFP_NOIO);
  189. if (!sensebuf)
  190. return -ENOMEM;
  191. memset(scsi_cmd, 0, sizeof(scsi_cmd));
  192. if (args[3]) {
  193. argsize = SECTOR_SIZE * args[3];
  194. argbuf = kmalloc(argsize, GFP_KERNEL);
  195. if (argbuf == NULL) {
  196. rc = -ENOMEM;
  197. goto error;
  198. }
  199. scsi_cmd[1] = (4 << 1); /* PIO Data-in */
  200. scsi_cmd[2] = 0x0e; /* no off.line or cc, read from dev,
  201. block count in sector count field */
  202. data_dir = DMA_FROM_DEVICE;
  203. } else {
  204. scsi_cmd[1] = (3 << 1); /* Non-data */
  205. scsi_cmd[2] = 0x20; /* cc but no off.line or data xfer */
  206. data_dir = DMA_NONE;
  207. }
  208. scsi_cmd[0] = ATA_16;
  209. scsi_cmd[4] = args[2];
  210. if (args[0] == WIN_SMART) { /* hack -- ide driver does this too... */
  211. scsi_cmd[6] = args[3];
  212. scsi_cmd[8] = args[1];
  213. scsi_cmd[10] = 0x4f;
  214. scsi_cmd[12] = 0xc2;
  215. } else {
  216. scsi_cmd[6] = args[1];
  217. }
  218. scsi_cmd[14] = args[0];
  219. /* Good values for timeout and retries? Values below
  220. from scsi_ioctl_send_command() for default case... */
  221. cmd_result = scsi_execute(scsidev, scsi_cmd, data_dir, argbuf, argsize,
  222. sensebuf, (10*HZ), 5, 0);
  223. if (driver_byte(cmd_result) == DRIVER_SENSE) {/* sense data available */
  224. u8 *desc = sensebuf + 8;
  225. cmd_result &= ~(0xFF<<24); /* DRIVER_SENSE is not an error */
  226. /* If we set cc then ATA pass-through will cause a
  227. * check condition even if no error. Filter that. */
  228. if (cmd_result & SAM_STAT_CHECK_CONDITION) {
  229. struct scsi_sense_hdr sshdr;
  230. scsi_normalize_sense(sensebuf, SCSI_SENSE_BUFFERSIZE,
  231. &sshdr);
  232. if (sshdr.sense_key==0 &&
  233. sshdr.asc==0 && sshdr.ascq==0)
  234. cmd_result &= ~SAM_STAT_CHECK_CONDITION;
  235. }
  236. /* Send userspace a few ATA registers (same as drivers/ide) */
  237. if (sensebuf[0] == 0x72 && /* format is "descriptor" */
  238. desc[0] == 0x09 ) { /* code is "ATA Descriptor" */
  239. args[0] = desc[13]; /* status */
  240. args[1] = desc[3]; /* error */
  241. args[2] = desc[5]; /* sector count (0:7) */
  242. if (copy_to_user(arg, args, sizeof(args)))
  243. rc = -EFAULT;
  244. }
  245. }
  246. if (cmd_result) {
  247. rc = -EIO;
  248. goto error;
  249. }
  250. if ((argbuf)
  251. && copy_to_user(arg + sizeof(args), argbuf, argsize))
  252. rc = -EFAULT;
  253. error:
  254. kfree(sensebuf);
  255. kfree(argbuf);
  256. return rc;
  257. }
  258. /**
  259. * ata_task_ioctl - Handler for HDIO_DRIVE_TASK ioctl
  260. * @scsidev: Device to which we are issuing command
  261. * @arg: User provided data for issuing command
  262. *
  263. * LOCKING:
  264. * Defined by the SCSI layer. We don't really care.
  265. *
  266. * RETURNS:
  267. * Zero on success, negative errno on error.
  268. */
  269. int ata_task_ioctl(struct scsi_device *scsidev, void __user *arg)
  270. {
  271. int rc = 0;
  272. u8 scsi_cmd[MAX_COMMAND_SIZE];
  273. u8 args[7], *sensebuf = NULL;
  274. int cmd_result;
  275. if (arg == NULL)
  276. return -EINVAL;
  277. if (copy_from_user(args, arg, sizeof(args)))
  278. return -EFAULT;
  279. sensebuf = kzalloc(SCSI_SENSE_BUFFERSIZE, GFP_NOIO);
  280. if (!sensebuf)
  281. return -ENOMEM;
  282. memset(scsi_cmd, 0, sizeof(scsi_cmd));
  283. scsi_cmd[0] = ATA_16;
  284. scsi_cmd[1] = (3 << 1); /* Non-data */
  285. scsi_cmd[2] = 0x20; /* cc but no off.line or data xfer */
  286. scsi_cmd[4] = args[1];
  287. scsi_cmd[6] = args[2];
  288. scsi_cmd[8] = args[3];
  289. scsi_cmd[10] = args[4];
  290. scsi_cmd[12] = args[5];
  291. scsi_cmd[13] = args[6] & 0x4f;
  292. scsi_cmd[14] = args[0];
  293. /* Good values for timeout and retries? Values below
  294. from scsi_ioctl_send_command() for default case... */
  295. cmd_result = scsi_execute(scsidev, scsi_cmd, DMA_NONE, NULL, 0,
  296. sensebuf, (10*HZ), 5, 0);
  297. if (driver_byte(cmd_result) == DRIVER_SENSE) {/* sense data available */
  298. u8 *desc = sensebuf + 8;
  299. cmd_result &= ~(0xFF<<24); /* DRIVER_SENSE is not an error */
  300. /* If we set cc then ATA pass-through will cause a
  301. * check condition even if no error. Filter that. */
  302. if (cmd_result & SAM_STAT_CHECK_CONDITION) {
  303. struct scsi_sense_hdr sshdr;
  304. scsi_normalize_sense(sensebuf, SCSI_SENSE_BUFFERSIZE,
  305. &sshdr);
  306. if (sshdr.sense_key==0 &&
  307. sshdr.asc==0 && sshdr.ascq==0)
  308. cmd_result &= ~SAM_STAT_CHECK_CONDITION;
  309. }
  310. /* Send userspace ATA registers */
  311. if (sensebuf[0] == 0x72 && /* format is "descriptor" */
  312. desc[0] == 0x09) {/* code is "ATA Descriptor" */
  313. args[0] = desc[13]; /* status */
  314. args[1] = desc[3]; /* error */
  315. args[2] = desc[5]; /* sector count (0:7) */
  316. args[3] = desc[7]; /* lbal */
  317. args[4] = desc[9]; /* lbam */
  318. args[5] = desc[11]; /* lbah */
  319. args[6] = desc[12]; /* select */
  320. if (copy_to_user(arg, args, sizeof(args)))
  321. rc = -EFAULT;
  322. }
  323. }
  324. if (cmd_result) {
  325. rc = -EIO;
  326. goto error;
  327. }
  328. error:
  329. kfree(sensebuf);
  330. return rc;
  331. }
  332. int ata_scsi_ioctl(struct scsi_device *scsidev, int cmd, void __user *arg)
  333. {
  334. int val = -EINVAL, rc = -EINVAL;
  335. switch (cmd) {
  336. case ATA_IOC_GET_IO32:
  337. val = 0;
  338. if (copy_to_user(arg, &val, 1))
  339. return -EFAULT;
  340. return 0;
  341. case ATA_IOC_SET_IO32:
  342. val = (unsigned long) arg;
  343. if (val != 0)
  344. return -EINVAL;
  345. return 0;
  346. case HDIO_GET_IDENTITY:
  347. return ata_get_identity(scsidev, arg);
  348. case HDIO_DRIVE_CMD:
  349. if (!capable(CAP_SYS_ADMIN) || !capable(CAP_SYS_RAWIO))
  350. return -EACCES;
  351. return ata_cmd_ioctl(scsidev, arg);
  352. case HDIO_DRIVE_TASK:
  353. if (!capable(CAP_SYS_ADMIN) || !capable(CAP_SYS_RAWIO))
  354. return -EACCES;
  355. return ata_task_ioctl(scsidev, arg);
  356. default:
  357. rc = -ENOTTY;
  358. break;
  359. }
  360. return rc;
  361. }
  362. /**
  363. * ata_scsi_qc_new - acquire new ata_queued_cmd reference
  364. * @dev: ATA device to which the new command is attached
  365. * @cmd: SCSI command that originated this ATA command
  366. * @done: SCSI command completion function
  367. *
  368. * Obtain a reference to an unused ata_queued_cmd structure,
  369. * which is the basic libata structure representing a single
  370. * ATA command sent to the hardware.
  371. *
  372. * If a command was available, fill in the SCSI-specific
  373. * portions of the structure with information on the
  374. * current command.
  375. *
  376. * LOCKING:
  377. * spin_lock_irqsave(host lock)
  378. *
  379. * RETURNS:
  380. * Command allocated, or %NULL if none available.
  381. */
  382. static struct ata_queued_cmd *ata_scsi_qc_new(struct ata_device *dev,
  383. struct scsi_cmnd *cmd,
  384. void (*done)(struct scsi_cmnd *))
  385. {
  386. struct ata_queued_cmd *qc;
  387. qc = ata_qc_new_init(dev);
  388. if (qc) {
  389. qc->scsicmd = cmd;
  390. qc->scsidone = done;
  391. qc->__sg = scsi_sglist(cmd);
  392. qc->n_elem = scsi_sg_count(cmd);
  393. } else {
  394. cmd->result = (DID_OK << 16) | (QUEUE_FULL << 1);
  395. done(cmd);
  396. }
  397. return qc;
  398. }
  399. /**
  400. * ata_dump_status - user friendly display of error info
  401. * @id: id of the port in question
  402. * @tf: ptr to filled out taskfile
  403. *
  404. * Decode and dump the ATA error/status registers for the user so
  405. * that they have some idea what really happened at the non
  406. * make-believe layer.
  407. *
  408. * LOCKING:
  409. * inherited from caller
  410. */
  411. static void ata_dump_status(unsigned id, struct ata_taskfile *tf)
  412. {
  413. u8 stat = tf->command, err = tf->feature;
  414. printk(KERN_WARNING "ata%u: status=0x%02x { ", id, stat);
  415. if (stat & ATA_BUSY) {
  416. printk("Busy }\n"); /* Data is not valid in this case */
  417. } else {
  418. if (stat & 0x40) printk("DriveReady ");
  419. if (stat & 0x20) printk("DeviceFault ");
  420. if (stat & 0x10) printk("SeekComplete ");
  421. if (stat & 0x08) printk("DataRequest ");
  422. if (stat & 0x04) printk("CorrectedError ");
  423. if (stat & 0x02) printk("Index ");
  424. if (stat & 0x01) printk("Error ");
  425. printk("}\n");
  426. if (err) {
  427. printk(KERN_WARNING "ata%u: error=0x%02x { ", id, err);
  428. if (err & 0x04) printk("DriveStatusError ");
  429. if (err & 0x80) {
  430. if (err & 0x04) printk("BadCRC ");
  431. else printk("Sector ");
  432. }
  433. if (err & 0x40) printk("UncorrectableError ");
  434. if (err & 0x10) printk("SectorIdNotFound ");
  435. if (err & 0x02) printk("TrackZeroNotFound ");
  436. if (err & 0x01) printk("AddrMarkNotFound ");
  437. printk("}\n");
  438. }
  439. }
  440. }
  441. /**
  442. * ata_to_sense_error - convert ATA error to SCSI error
  443. * @id: ATA device number
  444. * @drv_stat: value contained in ATA status register
  445. * @drv_err: value contained in ATA error register
  446. * @sk: the sense key we'll fill out
  447. * @asc: the additional sense code we'll fill out
  448. * @ascq: the additional sense code qualifier we'll fill out
  449. * @verbose: be verbose
  450. *
  451. * Converts an ATA error into a SCSI error. Fill out pointers to
  452. * SK, ASC, and ASCQ bytes for later use in fixed or descriptor
  453. * format sense blocks.
  454. *
  455. * LOCKING:
  456. * spin_lock_irqsave(host lock)
  457. */
  458. static void ata_to_sense_error(unsigned id, u8 drv_stat, u8 drv_err, u8 *sk,
  459. u8 *asc, u8 *ascq, int verbose)
  460. {
  461. int i;
  462. /* Based on the 3ware driver translation table */
  463. static const unsigned char sense_table[][4] = {
  464. /* BBD|ECC|ID|MAR */
  465. {0xd1, ABORTED_COMMAND, 0x00, 0x00}, // Device busy Aborted command
  466. /* BBD|ECC|ID */
  467. {0xd0, ABORTED_COMMAND, 0x00, 0x00}, // Device busy Aborted command
  468. /* ECC|MC|MARK */
  469. {0x61, HARDWARE_ERROR, 0x00, 0x00}, // Device fault Hardware error
  470. /* ICRC|ABRT */ /* NB: ICRC & !ABRT is BBD */
  471. {0x84, ABORTED_COMMAND, 0x47, 0x00}, // Data CRC error SCSI parity error
  472. /* MC|ID|ABRT|TRK0|MARK */
  473. {0x37, NOT_READY, 0x04, 0x00}, // Unit offline Not ready
  474. /* MCR|MARK */
  475. {0x09, NOT_READY, 0x04, 0x00}, // Unrecovered disk error Not ready
  476. /* Bad address mark */
  477. {0x01, MEDIUM_ERROR, 0x13, 0x00}, // Address mark not found Address mark not found for data field
  478. /* TRK0 */
  479. {0x02, HARDWARE_ERROR, 0x00, 0x00}, // Track 0 not found Hardware error
  480. /* Abort & !ICRC */
  481. {0x04, ABORTED_COMMAND, 0x00, 0x00}, // Aborted command Aborted command
  482. /* Media change request */
  483. {0x08, NOT_READY, 0x04, 0x00}, // Media change request FIXME: faking offline
  484. /* SRV */
  485. {0x10, ABORTED_COMMAND, 0x14, 0x00}, // ID not found Recorded entity not found
  486. /* Media change */
  487. {0x08, NOT_READY, 0x04, 0x00}, // Media change FIXME: faking offline
  488. /* ECC */
  489. {0x40, MEDIUM_ERROR, 0x11, 0x04}, // Uncorrectable ECC error Unrecovered read error
  490. /* BBD - block marked bad */
  491. {0x80, MEDIUM_ERROR, 0x11, 0x04}, // Block marked bad Medium error, unrecovered read error
  492. {0xFF, 0xFF, 0xFF, 0xFF}, // END mark
  493. };
  494. static const unsigned char stat_table[][4] = {
  495. /* Must be first because BUSY means no other bits valid */
  496. {0x80, ABORTED_COMMAND, 0x47, 0x00}, // Busy, fake parity for now
  497. {0x20, HARDWARE_ERROR, 0x00, 0x00}, // Device fault
  498. {0x08, ABORTED_COMMAND, 0x47, 0x00}, // Timed out in xfer, fake parity for now
  499. {0x04, RECOVERED_ERROR, 0x11, 0x00}, // Recovered ECC error Medium error, recovered
  500. {0xFF, 0xFF, 0xFF, 0xFF}, // END mark
  501. };
  502. /*
  503. * Is this an error we can process/parse
  504. */
  505. if (drv_stat & ATA_BUSY) {
  506. drv_err = 0; /* Ignore the err bits, they're invalid */
  507. }
  508. if (drv_err) {
  509. /* Look for drv_err */
  510. for (i = 0; sense_table[i][0] != 0xFF; i++) {
  511. /* Look for best matches first */
  512. if ((sense_table[i][0] & drv_err) ==
  513. sense_table[i][0]) {
  514. *sk = sense_table[i][1];
  515. *asc = sense_table[i][2];
  516. *ascq = sense_table[i][3];
  517. goto translate_done;
  518. }
  519. }
  520. /* No immediate match */
  521. if (verbose)
  522. printk(KERN_WARNING "ata%u: no sense translation for "
  523. "error 0x%02x\n", id, drv_err);
  524. }
  525. /* Fall back to interpreting status bits */
  526. for (i = 0; stat_table[i][0] != 0xFF; i++) {
  527. if (stat_table[i][0] & drv_stat) {
  528. *sk = stat_table[i][1];
  529. *asc = stat_table[i][2];
  530. *ascq = stat_table[i][3];
  531. goto translate_done;
  532. }
  533. }
  534. /* No error? Undecoded? */
  535. if (verbose)
  536. printk(KERN_WARNING "ata%u: no sense translation for "
  537. "status: 0x%02x\n", id, drv_stat);
  538. /* We need a sensible error return here, which is tricky, and one
  539. that won't cause people to do things like return a disk wrongly */
  540. *sk = ABORTED_COMMAND;
  541. *asc = 0x00;
  542. *ascq = 0x00;
  543. translate_done:
  544. if (verbose)
  545. printk(KERN_ERR "ata%u: translated ATA stat/err 0x%02x/%02x "
  546. "to SCSI SK/ASC/ASCQ 0x%x/%02x/%02x\n",
  547. id, drv_stat, drv_err, *sk, *asc, *ascq);
  548. return;
  549. }
  550. /*
  551. * ata_gen_passthru_sense - Generate check condition sense block.
  552. * @qc: Command that completed.
  553. *
  554. * This function is specific to the ATA descriptor format sense
  555. * block specified for the ATA pass through commands. Regardless
  556. * of whether the command errored or not, return a sense
  557. * block. Copy all controller registers into the sense
  558. * block. Clear sense key, ASC & ASCQ if there is no error.
  559. *
  560. * LOCKING:
  561. * None.
  562. */
  563. static void ata_gen_passthru_sense(struct ata_queued_cmd *qc)
  564. {
  565. struct scsi_cmnd *cmd = qc->scsicmd;
  566. struct ata_taskfile *tf = &qc->result_tf;
  567. unsigned char *sb = cmd->sense_buffer;
  568. unsigned char *desc = sb + 8;
  569. int verbose = qc->ap->ops->error_handler == NULL;
  570. memset(sb, 0, SCSI_SENSE_BUFFERSIZE);
  571. cmd->result = (DRIVER_SENSE << 24) | SAM_STAT_CHECK_CONDITION;
  572. /*
  573. * Use ata_to_sense_error() to map status register bits
  574. * onto sense key, asc & ascq.
  575. */
  576. if (qc->err_mask ||
  577. tf->command & (ATA_BUSY | ATA_DF | ATA_ERR | ATA_DRQ)) {
  578. ata_to_sense_error(qc->ap->print_id, tf->command, tf->feature,
  579. &sb[1], &sb[2], &sb[3], verbose);
  580. sb[1] &= 0x0f;
  581. }
  582. /*
  583. * Sense data is current and format is descriptor.
  584. */
  585. sb[0] = 0x72;
  586. desc[0] = 0x09;
  587. /* set length of additional sense data */
  588. sb[7] = 14;
  589. desc[1] = 12;
  590. /*
  591. * Copy registers into sense buffer.
  592. */
  593. desc[2] = 0x00;
  594. desc[3] = tf->feature; /* == error reg */
  595. desc[5] = tf->nsect;
  596. desc[7] = tf->lbal;
  597. desc[9] = tf->lbam;
  598. desc[11] = tf->lbah;
  599. desc[12] = tf->device;
  600. desc[13] = tf->command; /* == status reg */
  601. /*
  602. * Fill in Extend bit, and the high order bytes
  603. * if applicable.
  604. */
  605. if (tf->flags & ATA_TFLAG_LBA48) {
  606. desc[2] |= 0x01;
  607. desc[4] = tf->hob_nsect;
  608. desc[6] = tf->hob_lbal;
  609. desc[8] = tf->hob_lbam;
  610. desc[10] = tf->hob_lbah;
  611. }
  612. }
  613. /**
  614. * ata_gen_ata_sense - generate a SCSI fixed sense block
  615. * @qc: Command that we are erroring out
  616. *
  617. * Generate sense block for a failed ATA command @qc. Descriptor
  618. * format is used to accomodate LBA48 block address.
  619. *
  620. * LOCKING:
  621. * None.
  622. */
  623. static void ata_gen_ata_sense(struct ata_queued_cmd *qc)
  624. {
  625. struct ata_device *dev = qc->dev;
  626. struct scsi_cmnd *cmd = qc->scsicmd;
  627. struct ata_taskfile *tf = &qc->result_tf;
  628. unsigned char *sb = cmd->sense_buffer;
  629. unsigned char *desc = sb + 8;
  630. int verbose = qc->ap->ops->error_handler == NULL;
  631. u64 block;
  632. memset(sb, 0, SCSI_SENSE_BUFFERSIZE);
  633. cmd->result = (DRIVER_SENSE << 24) | SAM_STAT_CHECK_CONDITION;
  634. /* sense data is current and format is descriptor */
  635. sb[0] = 0x72;
  636. /* Use ata_to_sense_error() to map status register bits
  637. * onto sense key, asc & ascq.
  638. */
  639. if (qc->err_mask ||
  640. tf->command & (ATA_BUSY | ATA_DF | ATA_ERR | ATA_DRQ)) {
  641. ata_to_sense_error(qc->ap->print_id, tf->command, tf->feature,
  642. &sb[1], &sb[2], &sb[3], verbose);
  643. sb[1] &= 0x0f;
  644. }
  645. block = ata_tf_read_block(&qc->result_tf, dev);
  646. /* information sense data descriptor */
  647. sb[7] = 12;
  648. desc[0] = 0x00;
  649. desc[1] = 10;
  650. desc[2] |= 0x80; /* valid */
  651. desc[6] = block >> 40;
  652. desc[7] = block >> 32;
  653. desc[8] = block >> 24;
  654. desc[9] = block >> 16;
  655. desc[10] = block >> 8;
  656. desc[11] = block;
  657. }
  658. static void ata_scsi_sdev_config(struct scsi_device *sdev)
  659. {
  660. sdev->use_10_for_rw = 1;
  661. sdev->use_10_for_ms = 1;
  662. /* Schedule policy is determined by ->qc_defer() callback and
  663. * it needs to see every deferred qc. Set dev_blocked to 1 to
  664. * prevent SCSI midlayer from automatically deferring
  665. * requests.
  666. */
  667. sdev->max_device_blocked = 1;
  668. }
  669. static void ata_scsi_dev_config(struct scsi_device *sdev,
  670. struct ata_device *dev)
  671. {
  672. /* configure max sectors */
  673. blk_queue_max_sectors(sdev->request_queue, dev->max_sectors);
  674. /* SATA DMA transfers must be multiples of 4 byte, so
  675. * we need to pad ATAPI transfers using an extra sg.
  676. * Decrement max hw segments accordingly.
  677. */
  678. if (dev->class == ATA_DEV_ATAPI) {
  679. struct request_queue *q = sdev->request_queue;
  680. blk_queue_max_hw_segments(q, q->max_hw_segments - 1);
  681. }
  682. if (dev->flags & ATA_DFLAG_NCQ) {
  683. int depth;
  684. depth = min(sdev->host->can_queue, ata_id_queue_depth(dev->id));
  685. depth = min(ATA_MAX_QUEUE - 1, depth);
  686. scsi_adjust_queue_depth(sdev, MSG_SIMPLE_TAG, depth);
  687. }
  688. }
  689. /**
  690. * ata_scsi_slave_config - Set SCSI device attributes
  691. * @sdev: SCSI device to examine
  692. *
  693. * This is called before we actually start reading
  694. * and writing to the device, to configure certain
  695. * SCSI mid-layer behaviors.
  696. *
  697. * LOCKING:
  698. * Defined by SCSI layer. We don't really care.
  699. */
  700. int ata_scsi_slave_config(struct scsi_device *sdev)
  701. {
  702. struct ata_port *ap = ata_shost_to_port(sdev->host);
  703. struct ata_device *dev = __ata_scsi_find_dev(ap, sdev);
  704. ata_scsi_sdev_config(sdev);
  705. blk_queue_max_phys_segments(sdev->request_queue, LIBATA_MAX_PRD);
  706. sdev->manage_start_stop = 1;
  707. if (dev)
  708. ata_scsi_dev_config(sdev, dev);
  709. return 0; /* scsi layer doesn't check return value, sigh */
  710. }
  711. /**
  712. * ata_scsi_slave_destroy - SCSI device is about to be destroyed
  713. * @sdev: SCSI device to be destroyed
  714. *
  715. * @sdev is about to be destroyed for hot/warm unplugging. If
  716. * this unplugging was initiated by libata as indicated by NULL
  717. * dev->sdev, this function doesn't have to do anything.
  718. * Otherwise, SCSI layer initiated warm-unplug is in progress.
  719. * Clear dev->sdev, schedule the device for ATA detach and invoke
  720. * EH.
  721. *
  722. * LOCKING:
  723. * Defined by SCSI layer. We don't really care.
  724. */
  725. void ata_scsi_slave_destroy(struct scsi_device *sdev)
  726. {
  727. struct ata_port *ap = ata_shost_to_port(sdev->host);
  728. unsigned long flags;
  729. struct ata_device *dev;
  730. if (!ap->ops->error_handler)
  731. return;
  732. spin_lock_irqsave(ap->lock, flags);
  733. dev = __ata_scsi_find_dev(ap, sdev);
  734. if (dev && dev->sdev) {
  735. /* SCSI device already in CANCEL state, no need to offline it */
  736. dev->sdev = NULL;
  737. dev->flags |= ATA_DFLAG_DETACH;
  738. ata_port_schedule_eh(ap);
  739. }
  740. spin_unlock_irqrestore(ap->lock, flags);
  741. }
  742. /**
  743. * ata_scsi_change_queue_depth - SCSI callback for queue depth config
  744. * @sdev: SCSI device to configure queue depth for
  745. * @queue_depth: new queue depth
  746. *
  747. * This is libata standard hostt->change_queue_depth callback.
  748. * SCSI will call into this callback when user tries to set queue
  749. * depth via sysfs.
  750. *
  751. * LOCKING:
  752. * SCSI layer (we don't care)
  753. *
  754. * RETURNS:
  755. * Newly configured queue depth.
  756. */
  757. int ata_scsi_change_queue_depth(struct scsi_device *sdev, int queue_depth)
  758. {
  759. struct ata_port *ap = ata_shost_to_port(sdev->host);
  760. struct ata_device *dev;
  761. unsigned long flags;
  762. if (queue_depth < 1 || queue_depth == sdev->queue_depth)
  763. return sdev->queue_depth;
  764. dev = ata_scsi_find_dev(ap, sdev);
  765. if (!dev || !ata_dev_enabled(dev))
  766. return sdev->queue_depth;
  767. /* NCQ enabled? */
  768. spin_lock_irqsave(ap->lock, flags);
  769. dev->flags &= ~ATA_DFLAG_NCQ_OFF;
  770. if (queue_depth == 1 || !ata_ncq_enabled(dev)) {
  771. dev->flags |= ATA_DFLAG_NCQ_OFF;
  772. queue_depth = 1;
  773. }
  774. spin_unlock_irqrestore(ap->lock, flags);
  775. /* limit and apply queue depth */
  776. queue_depth = min(queue_depth, sdev->host->can_queue);
  777. queue_depth = min(queue_depth, ata_id_queue_depth(dev->id));
  778. queue_depth = min(queue_depth, ATA_MAX_QUEUE - 1);
  779. if (sdev->queue_depth == queue_depth)
  780. return -EINVAL;
  781. scsi_adjust_queue_depth(sdev, MSG_SIMPLE_TAG, queue_depth);
  782. return queue_depth;
  783. }
  784. /* XXX: for spindown warning */
  785. static void ata_delayed_done_timerfn(unsigned long arg)
  786. {
  787. struct scsi_cmnd *scmd = (void *)arg;
  788. scmd->scsi_done(scmd);
  789. }
  790. /* XXX: for spindown warning */
  791. static void ata_delayed_done(struct scsi_cmnd *scmd)
  792. {
  793. static struct timer_list timer;
  794. setup_timer(&timer, ata_delayed_done_timerfn, (unsigned long)scmd);
  795. mod_timer(&timer, jiffies + 5 * HZ);
  796. }
  797. /**
  798. * ata_scsi_start_stop_xlat - Translate SCSI START STOP UNIT command
  799. * @qc: Storage for translated ATA taskfile
  800. *
  801. * Sets up an ATA taskfile to issue STANDBY (to stop) or READ VERIFY
  802. * (to start). Perhaps these commands should be preceded by
  803. * CHECK POWER MODE to see what power mode the device is already in.
  804. * [See SAT revision 5 at www.t10.org]
  805. *
  806. * LOCKING:
  807. * spin_lock_irqsave(host lock)
  808. *
  809. * RETURNS:
  810. * Zero on success, non-zero on error.
  811. */
  812. static unsigned int ata_scsi_start_stop_xlat(struct ata_queued_cmd *qc)
  813. {
  814. struct scsi_cmnd *scmd = qc->scsicmd;
  815. struct ata_taskfile *tf = &qc->tf;
  816. const u8 *cdb = scmd->cmnd;
  817. if (scmd->cmd_len < 5)
  818. goto invalid_fld;
  819. tf->flags |= ATA_TFLAG_DEVICE | ATA_TFLAG_ISADDR;
  820. tf->protocol = ATA_PROT_NODATA;
  821. if (cdb[1] & 0x1) {
  822. ; /* ignore IMMED bit, violates sat-r05 */
  823. }
  824. if (cdb[4] & 0x2)
  825. goto invalid_fld; /* LOEJ bit set not supported */
  826. if (((cdb[4] >> 4) & 0xf) != 0)
  827. goto invalid_fld; /* power conditions not supported */
  828. if (qc->dev->horkage & ATA_HORKAGE_SKIP_PM) {
  829. /* the device lacks PM support, finish without doing anything */
  830. scmd->result = SAM_STAT_GOOD;
  831. return 1;
  832. }
  833. if (cdb[4] & 0x1) {
  834. tf->nsect = 1; /* 1 sector, lba=0 */
  835. if (qc->dev->flags & ATA_DFLAG_LBA) {
  836. tf->flags |= ATA_TFLAG_LBA;
  837. tf->lbah = 0x0;
  838. tf->lbam = 0x0;
  839. tf->lbal = 0x0;
  840. tf->device |= ATA_LBA;
  841. } else {
  842. /* CHS */
  843. tf->lbal = 0x1; /* sect */
  844. tf->lbam = 0x0; /* cyl low */
  845. tf->lbah = 0x0; /* cyl high */
  846. }
  847. tf->command = ATA_CMD_VERIFY; /* READ VERIFY */
  848. } else {
  849. /* XXX: This is for backward compatibility, will be
  850. * removed. Read Documentation/feature-removal-schedule.txt
  851. * for more info.
  852. */
  853. if ((qc->dev->flags & ATA_DFLAG_SPUNDOWN) &&
  854. (system_state == SYSTEM_HALT ||
  855. system_state == SYSTEM_POWER_OFF)) {
  856. static unsigned long warned = 0;
  857. if (!test_and_set_bit(0, &warned)) {
  858. ata_dev_printk(qc->dev, KERN_WARNING,
  859. "DISK MIGHT NOT BE SPUN DOWN PROPERLY. "
  860. "UPDATE SHUTDOWN UTILITY\n");
  861. ata_dev_printk(qc->dev, KERN_WARNING,
  862. "For more info, visit "
  863. "http://linux-ata.org/shutdown.html\n");
  864. /* ->scsi_done is not used, use it for
  865. * delayed completion.
  866. */
  867. scmd->scsi_done = qc->scsidone;
  868. qc->scsidone = ata_delayed_done;
  869. }
  870. scmd->result = SAM_STAT_GOOD;
  871. return 1;
  872. }
  873. /* Issue ATA STANDBY IMMEDIATE command */
  874. tf->command = ATA_CMD_STANDBYNOW1;
  875. }
  876. /*
  877. * Standby and Idle condition timers could be implemented but that
  878. * would require libata to implement the Power condition mode page
  879. * and allow the user to change it. Changing mode pages requires
  880. * MODE SELECT to be implemented.
  881. */
  882. return 0;
  883. invalid_fld:
  884. ata_scsi_set_sense(scmd, ILLEGAL_REQUEST, 0x24, 0x0);
  885. /* "Invalid field in cbd" */
  886. return 1;
  887. }
  888. /**
  889. * ata_scsi_flush_xlat - Translate SCSI SYNCHRONIZE CACHE command
  890. * @qc: Storage for translated ATA taskfile
  891. *
  892. * Sets up an ATA taskfile to issue FLUSH CACHE or
  893. * FLUSH CACHE EXT.
  894. *
  895. * LOCKING:
  896. * spin_lock_irqsave(host lock)
  897. *
  898. * RETURNS:
  899. * Zero on success, non-zero on error.
  900. */
  901. static unsigned int ata_scsi_flush_xlat(struct ata_queued_cmd *qc)
  902. {
  903. struct ata_taskfile *tf = &qc->tf;
  904. tf->flags |= ATA_TFLAG_DEVICE;
  905. tf->protocol = ATA_PROT_NODATA;
  906. if (qc->dev->flags & ATA_DFLAG_FLUSH_EXT)
  907. tf->command = ATA_CMD_FLUSH_EXT;
  908. else
  909. tf->command = ATA_CMD_FLUSH;
  910. return 0;
  911. }
  912. /**
  913. * scsi_6_lba_len - Get LBA and transfer length
  914. * @cdb: SCSI command to translate
  915. *
  916. * Calculate LBA and transfer length for 6-byte commands.
  917. *
  918. * RETURNS:
  919. * @plba: the LBA
  920. * @plen: the transfer length
  921. */
  922. static void scsi_6_lba_len(const u8 *cdb, u64 *plba, u32 *plen)
  923. {
  924. u64 lba = 0;
  925. u32 len;
  926. VPRINTK("six-byte command\n");
  927. lba |= ((u64)(cdb[1] & 0x1f)) << 16;
  928. lba |= ((u64)cdb[2]) << 8;
  929. lba |= ((u64)cdb[3]);
  930. len = cdb[4];
  931. *plba = lba;
  932. *plen = len;
  933. }
  934. /**
  935. * scsi_10_lba_len - Get LBA and transfer length
  936. * @cdb: SCSI command to translate
  937. *
  938. * Calculate LBA and transfer length for 10-byte commands.
  939. *
  940. * RETURNS:
  941. * @plba: the LBA
  942. * @plen: the transfer length
  943. */
  944. static void scsi_10_lba_len(const u8 *cdb, u64 *plba, u32 *plen)
  945. {
  946. u64 lba = 0;
  947. u32 len = 0;
  948. VPRINTK("ten-byte command\n");
  949. lba |= ((u64)cdb[2]) << 24;
  950. lba |= ((u64)cdb[3]) << 16;
  951. lba |= ((u64)cdb[4]) << 8;
  952. lba |= ((u64)cdb[5]);
  953. len |= ((u32)cdb[7]) << 8;
  954. len |= ((u32)cdb[8]);
  955. *plba = lba;
  956. *plen = len;
  957. }
  958. /**
  959. * scsi_16_lba_len - Get LBA and transfer length
  960. * @cdb: SCSI command to translate
  961. *
  962. * Calculate LBA and transfer length for 16-byte commands.
  963. *
  964. * RETURNS:
  965. * @plba: the LBA
  966. * @plen: the transfer length
  967. */
  968. static void scsi_16_lba_len(const u8 *cdb, u64 *plba, u32 *plen)
  969. {
  970. u64 lba = 0;
  971. u32 len = 0;
  972. VPRINTK("sixteen-byte command\n");
  973. lba |= ((u64)cdb[2]) << 56;
  974. lba |= ((u64)cdb[3]) << 48;
  975. lba |= ((u64)cdb[4]) << 40;
  976. lba |= ((u64)cdb[5]) << 32;
  977. lba |= ((u64)cdb[6]) << 24;
  978. lba |= ((u64)cdb[7]) << 16;
  979. lba |= ((u64)cdb[8]) << 8;
  980. lba |= ((u64)cdb[9]);
  981. len |= ((u32)cdb[10]) << 24;
  982. len |= ((u32)cdb[11]) << 16;
  983. len |= ((u32)cdb[12]) << 8;
  984. len |= ((u32)cdb[13]);
  985. *plba = lba;
  986. *plen = len;
  987. }
  988. /**
  989. * ata_scsi_verify_xlat - Translate SCSI VERIFY command into an ATA one
  990. * @qc: Storage for translated ATA taskfile
  991. *
  992. * Converts SCSI VERIFY command to an ATA READ VERIFY command.
  993. *
  994. * LOCKING:
  995. * spin_lock_irqsave(host lock)
  996. *
  997. * RETURNS:
  998. * Zero on success, non-zero on error.
  999. */
  1000. static unsigned int ata_scsi_verify_xlat(struct ata_queued_cmd *qc)
  1001. {
  1002. struct scsi_cmnd *scmd = qc->scsicmd;
  1003. struct ata_taskfile *tf = &qc->tf;
  1004. struct ata_device *dev = qc->dev;
  1005. u64 dev_sectors = qc->dev->n_sectors;
  1006. const u8 *cdb = scmd->cmnd;
  1007. u64 block;
  1008. u32 n_block;
  1009. tf->flags |= ATA_TFLAG_ISADDR | ATA_TFLAG_DEVICE;
  1010. tf->protocol = ATA_PROT_NODATA;
  1011. if (cdb[0] == VERIFY) {
  1012. if (scmd->cmd_len < 10)
  1013. goto invalid_fld;
  1014. scsi_10_lba_len(cdb, &block, &n_block);
  1015. } else if (cdb[0] == VERIFY_16) {
  1016. if (scmd->cmd_len < 16)
  1017. goto invalid_fld;
  1018. scsi_16_lba_len(cdb, &block, &n_block);
  1019. } else
  1020. goto invalid_fld;
  1021. if (!n_block)
  1022. goto nothing_to_do;
  1023. if (block >= dev_sectors)
  1024. goto out_of_range;
  1025. if ((block + n_block) > dev_sectors)
  1026. goto out_of_range;
  1027. if (dev->flags & ATA_DFLAG_LBA) {
  1028. tf->flags |= ATA_TFLAG_LBA;
  1029. if (lba_28_ok(block, n_block)) {
  1030. /* use LBA28 */
  1031. tf->command = ATA_CMD_VERIFY;
  1032. tf->device |= (block >> 24) & 0xf;
  1033. } else if (lba_48_ok(block, n_block)) {
  1034. if (!(dev->flags & ATA_DFLAG_LBA48))
  1035. goto out_of_range;
  1036. /* use LBA48 */
  1037. tf->flags |= ATA_TFLAG_LBA48;
  1038. tf->command = ATA_CMD_VERIFY_EXT;
  1039. tf->hob_nsect = (n_block >> 8) & 0xff;
  1040. tf->hob_lbah = (block >> 40) & 0xff;
  1041. tf->hob_lbam = (block >> 32) & 0xff;
  1042. tf->hob_lbal = (block >> 24) & 0xff;
  1043. } else
  1044. /* request too large even for LBA48 */
  1045. goto out_of_range;
  1046. tf->nsect = n_block & 0xff;
  1047. tf->lbah = (block >> 16) & 0xff;
  1048. tf->lbam = (block >> 8) & 0xff;
  1049. tf->lbal = block & 0xff;
  1050. tf->device |= ATA_LBA;
  1051. } else {
  1052. /* CHS */
  1053. u32 sect, head, cyl, track;
  1054. if (!lba_28_ok(block, n_block))
  1055. goto out_of_range;
  1056. /* Convert LBA to CHS */
  1057. track = (u32)block / dev->sectors;
  1058. cyl = track / dev->heads;
  1059. head = track % dev->heads;
  1060. sect = (u32)block % dev->sectors + 1;
  1061. DPRINTK("block %u track %u cyl %u head %u sect %u\n",
  1062. (u32)block, track, cyl, head, sect);
  1063. /* Check whether the converted CHS can fit.
  1064. Cylinder: 0-65535
  1065. Head: 0-15
  1066. Sector: 1-255*/
  1067. if ((cyl >> 16) || (head >> 4) || (sect >> 8) || (!sect))
  1068. goto out_of_range;
  1069. tf->command = ATA_CMD_VERIFY;
  1070. tf->nsect = n_block & 0xff; /* Sector count 0 means 256 sectors */
  1071. tf->lbal = sect;
  1072. tf->lbam = cyl;
  1073. tf->lbah = cyl >> 8;
  1074. tf->device |= head;
  1075. }
  1076. return 0;
  1077. invalid_fld:
  1078. ata_scsi_set_sense(scmd, ILLEGAL_REQUEST, 0x24, 0x0);
  1079. /* "Invalid field in cbd" */
  1080. return 1;
  1081. out_of_range:
  1082. ata_scsi_set_sense(scmd, ILLEGAL_REQUEST, 0x21, 0x0);
  1083. /* "Logical Block Address out of range" */
  1084. return 1;
  1085. nothing_to_do:
  1086. scmd->result = SAM_STAT_GOOD;
  1087. return 1;
  1088. }
  1089. /**
  1090. * ata_scsi_rw_xlat - Translate SCSI r/w command into an ATA one
  1091. * @qc: Storage for translated ATA taskfile
  1092. *
  1093. * Converts any of six SCSI read/write commands into the
  1094. * ATA counterpart, including starting sector (LBA),
  1095. * sector count, and taking into account the device's LBA48
  1096. * support.
  1097. *
  1098. * Commands %READ_6, %READ_10, %READ_16, %WRITE_6, %WRITE_10, and
  1099. * %WRITE_16 are currently supported.
  1100. *
  1101. * LOCKING:
  1102. * spin_lock_irqsave(host lock)
  1103. *
  1104. * RETURNS:
  1105. * Zero on success, non-zero on error.
  1106. */
  1107. static unsigned int ata_scsi_rw_xlat(struct ata_queued_cmd *qc)
  1108. {
  1109. struct scsi_cmnd *scmd = qc->scsicmd;
  1110. const u8 *cdb = scmd->cmnd;
  1111. unsigned int tf_flags = 0;
  1112. u64 block;
  1113. u32 n_block;
  1114. int rc;
  1115. if (cdb[0] == WRITE_10 || cdb[0] == WRITE_6 || cdb[0] == WRITE_16)
  1116. tf_flags |= ATA_TFLAG_WRITE;
  1117. /* Calculate the SCSI LBA, transfer length and FUA. */
  1118. switch (cdb[0]) {
  1119. case READ_10:
  1120. case WRITE_10:
  1121. if (unlikely(scmd->cmd_len < 10))
  1122. goto invalid_fld;
  1123. scsi_10_lba_len(cdb, &block, &n_block);
  1124. if (unlikely(cdb[1] & (1 << 3)))
  1125. tf_flags |= ATA_TFLAG_FUA;
  1126. break;
  1127. case READ_6:
  1128. case WRITE_6:
  1129. if (unlikely(scmd->cmd_len < 6))
  1130. goto invalid_fld;
  1131. scsi_6_lba_len(cdb, &block, &n_block);
  1132. /* for 6-byte r/w commands, transfer length 0
  1133. * means 256 blocks of data, not 0 block.
  1134. */
  1135. if (!n_block)
  1136. n_block = 256;
  1137. break;
  1138. case READ_16:
  1139. case WRITE_16:
  1140. if (unlikely(scmd->cmd_len < 16))
  1141. goto invalid_fld;
  1142. scsi_16_lba_len(cdb, &block, &n_block);
  1143. if (unlikely(cdb[1] & (1 << 3)))
  1144. tf_flags |= ATA_TFLAG_FUA;
  1145. break;
  1146. default:
  1147. DPRINTK("no-byte command\n");
  1148. goto invalid_fld;
  1149. }
  1150. /* Check and compose ATA command */
  1151. if (!n_block)
  1152. /* For 10-byte and 16-byte SCSI R/W commands, transfer
  1153. * length 0 means transfer 0 block of data.
  1154. * However, for ATA R/W commands, sector count 0 means
  1155. * 256 or 65536 sectors, not 0 sectors as in SCSI.
  1156. *
  1157. * WARNING: one or two older ATA drives treat 0 as 0...
  1158. */
  1159. goto nothing_to_do;
  1160. qc->flags |= ATA_QCFLAG_IO;
  1161. qc->nbytes = n_block * ATA_SECT_SIZE;
  1162. rc = ata_build_rw_tf(&qc->tf, qc->dev, block, n_block, tf_flags,
  1163. qc->tag);
  1164. if (likely(rc == 0))
  1165. return 0;
  1166. if (rc == -ERANGE)
  1167. goto out_of_range;
  1168. /* treat all other errors as -EINVAL, fall through */
  1169. invalid_fld:
  1170. ata_scsi_set_sense(scmd, ILLEGAL_REQUEST, 0x24, 0x0);
  1171. /* "Invalid field in cbd" */
  1172. return 1;
  1173. out_of_range:
  1174. ata_scsi_set_sense(scmd, ILLEGAL_REQUEST, 0x21, 0x0);
  1175. /* "Logical Block Address out of range" */
  1176. return 1;
  1177. nothing_to_do:
  1178. scmd->result = SAM_STAT_GOOD;
  1179. return 1;
  1180. }
  1181. static void ata_scsi_qc_complete(struct ata_queued_cmd *qc)
  1182. {
  1183. struct ata_port *ap = qc->ap;
  1184. struct scsi_cmnd *cmd = qc->scsicmd;
  1185. u8 *cdb = cmd->cmnd;
  1186. int need_sense = (qc->err_mask != 0);
  1187. /* We snoop the SET_FEATURES - Write Cache ON/OFF command, and
  1188. * schedule EH_REVALIDATE operation to update the IDENTIFY DEVICE
  1189. * cache
  1190. */
  1191. if (ap->ops->error_handler && !need_sense) {
  1192. switch (qc->tf.command) {
  1193. case ATA_CMD_SET_FEATURES:
  1194. if ((qc->tf.feature == SETFEATURES_WC_ON) ||
  1195. (qc->tf.feature == SETFEATURES_WC_OFF)) {
  1196. ap->link.eh_info.action |= ATA_EH_REVALIDATE;
  1197. ata_port_schedule_eh(ap);
  1198. }
  1199. break;
  1200. case ATA_CMD_INIT_DEV_PARAMS: /* CHS translation changed */
  1201. case ATA_CMD_SET_MULTI: /* multi_count changed */
  1202. ap->link.eh_info.action |= ATA_EH_REVALIDATE;
  1203. ata_port_schedule_eh(ap);
  1204. break;
  1205. }
  1206. }
  1207. /* For ATA pass thru (SAT) commands, generate a sense block if
  1208. * user mandated it or if there's an error. Note that if we
  1209. * generate because the user forced us to, a check condition
  1210. * is generated and the ATA register values are returned
  1211. * whether the command completed successfully or not. If there
  1212. * was no error, SK, ASC and ASCQ will all be zero.
  1213. */
  1214. if (((cdb[0] == ATA_16) || (cdb[0] == ATA_12)) &&
  1215. ((cdb[2] & 0x20) || need_sense)) {
  1216. ata_gen_passthru_sense(qc);
  1217. } else {
  1218. if (!need_sense) {
  1219. cmd->result = SAM_STAT_GOOD;
  1220. } else {
  1221. /* TODO: decide which descriptor format to use
  1222. * for 48b LBA devices and call that here
  1223. * instead of the fixed desc, which is only
  1224. * good for smaller LBA (and maybe CHS?)
  1225. * devices.
  1226. */
  1227. ata_gen_ata_sense(qc);
  1228. }
  1229. }
  1230. /* XXX: track spindown state for spindown skipping and warning */
  1231. if (unlikely(qc->tf.command == ATA_CMD_STANDBY ||
  1232. qc->tf.command == ATA_CMD_STANDBYNOW1))
  1233. qc->dev->flags |= ATA_DFLAG_SPUNDOWN;
  1234. else if (likely(system_state != SYSTEM_HALT &&
  1235. system_state != SYSTEM_POWER_OFF))
  1236. qc->dev->flags &= ~ATA_DFLAG_SPUNDOWN;
  1237. if (need_sense && !ap->ops->error_handler)
  1238. ata_dump_status(ap->print_id, &qc->result_tf);
  1239. qc->scsidone(cmd);
  1240. ata_qc_free(qc);
  1241. }
  1242. /**
  1243. * ata_scsi_translate - Translate then issue SCSI command to ATA device
  1244. * @dev: ATA device to which the command is addressed
  1245. * @cmd: SCSI command to execute
  1246. * @done: SCSI command completion function
  1247. * @xlat_func: Actor which translates @cmd to an ATA taskfile
  1248. *
  1249. * Our ->queuecommand() function has decided that the SCSI
  1250. * command issued can be directly translated into an ATA
  1251. * command, rather than handled internally.
  1252. *
  1253. * This function sets up an ata_queued_cmd structure for the
  1254. * SCSI command, and sends that ata_queued_cmd to the hardware.
  1255. *
  1256. * The xlat_func argument (actor) returns 0 if ready to execute
  1257. * ATA command, else 1 to finish translation. If 1 is returned
  1258. * then cmd->result (and possibly cmd->sense_buffer) are assumed
  1259. * to be set reflecting an error condition or clean (early)
  1260. * termination.
  1261. *
  1262. * LOCKING:
  1263. * spin_lock_irqsave(host lock)
  1264. *
  1265. * RETURNS:
  1266. * 0 on success, SCSI_ML_QUEUE_DEVICE_BUSY if the command
  1267. * needs to be deferred.
  1268. */
  1269. static int ata_scsi_translate(struct ata_device *dev, struct scsi_cmnd *cmd,
  1270. void (*done)(struct scsi_cmnd *),
  1271. ata_xlat_func_t xlat_func)
  1272. {
  1273. struct ata_port *ap = dev->link->ap;
  1274. struct ata_queued_cmd *qc;
  1275. int rc;
  1276. VPRINTK("ENTER\n");
  1277. qc = ata_scsi_qc_new(dev, cmd, done);
  1278. if (!qc)
  1279. goto err_mem;
  1280. /* data is present; dma-map it */
  1281. if (cmd->sc_data_direction == DMA_FROM_DEVICE ||
  1282. cmd->sc_data_direction == DMA_TO_DEVICE) {
  1283. if (unlikely(scsi_bufflen(cmd) < 1)) {
  1284. ata_dev_printk(dev, KERN_WARNING,
  1285. "WARNING: zero len r/w req\n");
  1286. goto err_did;
  1287. }
  1288. ata_sg_init(qc, scsi_sglist(cmd), scsi_sg_count(cmd));
  1289. qc->dma_dir = cmd->sc_data_direction;
  1290. }
  1291. qc->complete_fn = ata_scsi_qc_complete;
  1292. if (xlat_func(qc))
  1293. goto early_finish;
  1294. if (ap->ops->qc_defer) {
  1295. if ((rc = ap->ops->qc_defer(qc)))
  1296. goto defer;
  1297. }
  1298. /* select device, send command to hardware */
  1299. ata_qc_issue(qc);
  1300. VPRINTK("EXIT\n");
  1301. return 0;
  1302. early_finish:
  1303. ata_qc_free(qc);
  1304. qc->scsidone(cmd);
  1305. DPRINTK("EXIT - early finish (good or error)\n");
  1306. return 0;
  1307. err_did:
  1308. ata_qc_free(qc);
  1309. cmd->result = (DID_ERROR << 16);
  1310. qc->scsidone(cmd);
  1311. err_mem:
  1312. DPRINTK("EXIT - internal\n");
  1313. return 0;
  1314. defer:
  1315. ata_qc_free(qc);
  1316. DPRINTK("EXIT - defer\n");
  1317. if (rc == ATA_DEFER_LINK)
  1318. return SCSI_MLQUEUE_DEVICE_BUSY;
  1319. else
  1320. return SCSI_MLQUEUE_HOST_BUSY;
  1321. }
  1322. /**
  1323. * ata_scsi_rbuf_get - Map response buffer.
  1324. * @cmd: SCSI command containing buffer to be mapped.
  1325. * @buf_out: Pointer to mapped area.
  1326. *
  1327. * Maps buffer contained within SCSI command @cmd.
  1328. *
  1329. * LOCKING:
  1330. * spin_lock_irqsave(host lock)
  1331. *
  1332. * RETURNS:
  1333. * Length of response buffer.
  1334. */
  1335. static unsigned int ata_scsi_rbuf_get(struct scsi_cmnd *cmd, u8 **buf_out)
  1336. {
  1337. u8 *buf;
  1338. unsigned int buflen;
  1339. struct scatterlist *sg = scsi_sglist(cmd);
  1340. if (sg) {
  1341. buf = kmap_atomic(sg->page, KM_IRQ0) + sg->offset;
  1342. buflen = sg->length;
  1343. } else {
  1344. buf = NULL;
  1345. buflen = 0;
  1346. }
  1347. *buf_out = buf;
  1348. return buflen;
  1349. }
  1350. /**
  1351. * ata_scsi_rbuf_put - Unmap response buffer.
  1352. * @cmd: SCSI command containing buffer to be unmapped.
  1353. * @buf: buffer to unmap
  1354. *
  1355. * Unmaps response buffer contained within @cmd.
  1356. *
  1357. * LOCKING:
  1358. * spin_lock_irqsave(host lock)
  1359. */
  1360. static inline void ata_scsi_rbuf_put(struct scsi_cmnd *cmd, u8 *buf)
  1361. {
  1362. struct scatterlist *sg = scsi_sglist(cmd);
  1363. if (sg)
  1364. kunmap_atomic(buf - sg->offset, KM_IRQ0);
  1365. }
  1366. /**
  1367. * ata_scsi_rbuf_fill - wrapper for SCSI command simulators
  1368. * @args: device IDENTIFY data / SCSI command of interest.
  1369. * @actor: Callback hook for desired SCSI command simulator
  1370. *
  1371. * Takes care of the hard work of simulating a SCSI command...
  1372. * Mapping the response buffer, calling the command's handler,
  1373. * and handling the handler's return value. This return value
  1374. * indicates whether the handler wishes the SCSI command to be
  1375. * completed successfully (0), or not (in which case cmd->result
  1376. * and sense buffer are assumed to be set).
  1377. *
  1378. * LOCKING:
  1379. * spin_lock_irqsave(host lock)
  1380. */
  1381. void ata_scsi_rbuf_fill(struct ata_scsi_args *args,
  1382. unsigned int (*actor) (struct ata_scsi_args *args,
  1383. u8 *rbuf, unsigned int buflen))
  1384. {
  1385. u8 *rbuf;
  1386. unsigned int buflen, rc;
  1387. struct scsi_cmnd *cmd = args->cmd;
  1388. buflen = ata_scsi_rbuf_get(cmd, &rbuf);
  1389. memset(rbuf, 0, buflen);
  1390. rc = actor(args, rbuf, buflen);
  1391. ata_scsi_rbuf_put(cmd, rbuf);
  1392. if (rc == 0)
  1393. cmd->result = SAM_STAT_GOOD;
  1394. args->done(cmd);
  1395. }
  1396. /**
  1397. * ATA_SCSI_RBUF_SET - helper to set values in SCSI response buffer
  1398. * @idx: byte index into SCSI response buffer
  1399. * @val: value to set
  1400. *
  1401. * To be used by SCSI command simulator functions. This macros
  1402. * expects two local variables, u8 *rbuf and unsigned int buflen,
  1403. * are in scope.
  1404. *
  1405. * LOCKING:
  1406. * None.
  1407. */
  1408. #define ATA_SCSI_RBUF_SET(idx, val) do { \
  1409. if ((idx) < buflen) rbuf[(idx)] = (u8)(val); \
  1410. } while (0)
  1411. /**
  1412. * ata_scsiop_inq_std - Simulate INQUIRY command
  1413. * @args: device IDENTIFY data / SCSI command of interest.
  1414. * @rbuf: Response buffer, to which simulated SCSI cmd output is sent.
  1415. * @buflen: Response buffer length.
  1416. *
  1417. * Returns standard device identification data associated
  1418. * with non-VPD INQUIRY command output.
  1419. *
  1420. * LOCKING:
  1421. * spin_lock_irqsave(host lock)
  1422. */
  1423. unsigned int ata_scsiop_inq_std(struct ata_scsi_args *args, u8 *rbuf,
  1424. unsigned int buflen)
  1425. {
  1426. u8 hdr[] = {
  1427. TYPE_DISK,
  1428. 0,
  1429. 0x5, /* claim SPC-3 version compatibility */
  1430. 2,
  1431. 95 - 4
  1432. };
  1433. /* set scsi removeable (RMB) bit per ata bit */
  1434. if (ata_id_removeable(args->id))
  1435. hdr[1] |= (1 << 7);
  1436. VPRINTK("ENTER\n");
  1437. memcpy(rbuf, hdr, sizeof(hdr));
  1438. if (buflen > 35) {
  1439. memcpy(&rbuf[8], "ATA ", 8);
  1440. ata_id_string(args->id, &rbuf[16], ATA_ID_PROD, 16);
  1441. ata_id_string(args->id, &rbuf[32], ATA_ID_FW_REV, 4);
  1442. if (rbuf[32] == 0 || rbuf[32] == ' ')
  1443. memcpy(&rbuf[32], "n/a ", 4);
  1444. }
  1445. if (buflen > 63) {
  1446. const u8 versions[] = {
  1447. 0x60, /* SAM-3 (no version claimed) */
  1448. 0x03,
  1449. 0x20, /* SBC-2 (no version claimed) */
  1450. 0x02,
  1451. 0x60 /* SPC-3 (no version claimed) */
  1452. };
  1453. memcpy(rbuf + 59, versions, sizeof(versions));
  1454. }
  1455. return 0;
  1456. }
  1457. /**
  1458. * ata_scsiop_inq_00 - Simulate INQUIRY VPD page 0, list of pages
  1459. * @args: device IDENTIFY data / SCSI command of interest.
  1460. * @rbuf: Response buffer, to which simulated SCSI cmd output is sent.
  1461. * @buflen: Response buffer length.
  1462. *
  1463. * Returns list of inquiry VPD pages available.
  1464. *
  1465. * LOCKING:
  1466. * spin_lock_irqsave(host lock)
  1467. */
  1468. unsigned int ata_scsiop_inq_00(struct ata_scsi_args *args, u8 *rbuf,
  1469. unsigned int buflen)
  1470. {
  1471. const u8 pages[] = {
  1472. 0x00, /* page 0x00, this page */
  1473. 0x80, /* page 0x80, unit serial no page */
  1474. 0x83 /* page 0x83, device ident page */
  1475. };
  1476. rbuf[3] = sizeof(pages); /* number of supported VPD pages */
  1477. if (buflen > 6)
  1478. memcpy(rbuf + 4, pages, sizeof(pages));
  1479. return 0;
  1480. }
  1481. /**
  1482. * ata_scsiop_inq_80 - Simulate INQUIRY VPD page 80, device serial number
  1483. * @args: device IDENTIFY data / SCSI command of interest.
  1484. * @rbuf: Response buffer, to which simulated SCSI cmd output is sent.
  1485. * @buflen: Response buffer length.
  1486. *
  1487. * Returns ATA device serial number.
  1488. *
  1489. * LOCKING:
  1490. * spin_lock_irqsave(host lock)
  1491. */
  1492. unsigned int ata_scsiop_inq_80(struct ata_scsi_args *args, u8 *rbuf,
  1493. unsigned int buflen)
  1494. {
  1495. const u8 hdr[] = {
  1496. 0,
  1497. 0x80, /* this page code */
  1498. 0,
  1499. ATA_ID_SERNO_LEN, /* page len */
  1500. };
  1501. memcpy(rbuf, hdr, sizeof(hdr));
  1502. if (buflen > (ATA_ID_SERNO_LEN + 4 - 1))
  1503. ata_id_string(args->id, (unsigned char *) &rbuf[4],
  1504. ATA_ID_SERNO, ATA_ID_SERNO_LEN);
  1505. return 0;
  1506. }
  1507. /**
  1508. * ata_scsiop_inq_83 - Simulate INQUIRY VPD page 83, device identity
  1509. * @args: device IDENTIFY data / SCSI command of interest.
  1510. * @rbuf: Response buffer, to which simulated SCSI cmd output is sent.
  1511. * @buflen: Response buffer length.
  1512. *
  1513. * Yields two logical unit device identification designators:
  1514. * - vendor specific ASCII containing the ATA serial number
  1515. * - SAT defined "t10 vendor id based" containing ASCII vendor
  1516. * name ("ATA "), model and serial numbers.
  1517. *
  1518. * LOCKING:
  1519. * spin_lock_irqsave(host lock)
  1520. */
  1521. unsigned int ata_scsiop_inq_83(struct ata_scsi_args *args, u8 *rbuf,
  1522. unsigned int buflen)
  1523. {
  1524. int num;
  1525. const int sat_model_serial_desc_len = 68;
  1526. rbuf[1] = 0x83; /* this page code */
  1527. num = 4;
  1528. if (buflen > (ATA_ID_SERNO_LEN + num + 3)) {
  1529. /* piv=0, assoc=lu, code_set=ACSII, designator=vendor */
  1530. rbuf[num + 0] = 2;
  1531. rbuf[num + 3] = ATA_ID_SERNO_LEN;
  1532. num += 4;
  1533. ata_id_string(args->id, (unsigned char *) rbuf + num,
  1534. ATA_ID_SERNO, ATA_ID_SERNO_LEN);
  1535. num += ATA_ID_SERNO_LEN;
  1536. }
  1537. if (buflen > (sat_model_serial_desc_len + num + 3)) {
  1538. /* SAT defined lu model and serial numbers descriptor */
  1539. /* piv=0, assoc=lu, code_set=ACSII, designator=t10 vendor id */
  1540. rbuf[num + 0] = 2;
  1541. rbuf[num + 1] = 1;
  1542. rbuf[num + 3] = sat_model_serial_desc_len;
  1543. num += 4;
  1544. memcpy(rbuf + num, "ATA ", 8);
  1545. num += 8;
  1546. ata_id_string(args->id, (unsigned char *) rbuf + num,
  1547. ATA_ID_PROD, ATA_ID_PROD_LEN);
  1548. num += ATA_ID_PROD_LEN;
  1549. ata_id_string(args->id, (unsigned char *) rbuf + num,
  1550. ATA_ID_SERNO, ATA_ID_SERNO_LEN);
  1551. num += ATA_ID_SERNO_LEN;
  1552. }
  1553. rbuf[3] = num - 4; /* page len (assume less than 256 bytes) */
  1554. return 0;
  1555. }
  1556. /**
  1557. * ata_scsiop_inq_89 - Simulate INQUIRY VPD page 89, ATA info
  1558. * @args: device IDENTIFY data / SCSI command of interest.
  1559. * @rbuf: Response buffer, to which simulated SCSI cmd output is sent.
  1560. * @buflen: Response buffer length.
  1561. *
  1562. * Yields SAT-specified ATA VPD page.
  1563. *
  1564. * LOCKING:
  1565. * spin_lock_irqsave(host lock)
  1566. */
  1567. unsigned int ata_scsiop_inq_89(struct ata_scsi_args *args, u8 *rbuf,
  1568. unsigned int buflen)
  1569. {
  1570. u8 pbuf[60];
  1571. struct ata_taskfile tf;
  1572. unsigned int i;
  1573. if (!buflen)
  1574. return 0;
  1575. memset(&pbuf, 0, sizeof(pbuf));
  1576. memset(&tf, 0, sizeof(tf));
  1577. pbuf[1] = 0x89; /* our page code */
  1578. pbuf[2] = (0x238 >> 8); /* page size fixed at 238h */
  1579. pbuf[3] = (0x238 & 0xff);
  1580. memcpy(&pbuf[8], "linux ", 8);
  1581. memcpy(&pbuf[16], "libata ", 16);
  1582. memcpy(&pbuf[32], DRV_VERSION, 4);
  1583. ata_id_string(args->id, &pbuf[32], ATA_ID_FW_REV, 4);
  1584. /* we don't store the ATA device signature, so we fake it */
  1585. tf.command = ATA_DRDY; /* really, this is Status reg */
  1586. tf.lbal = 0x1;
  1587. tf.nsect = 0x1;
  1588. ata_tf_to_fis(&tf, 0, 1, &pbuf[36]); /* TODO: PMP? */
  1589. pbuf[36] = 0x34; /* force D2H Reg FIS (34h) */
  1590. pbuf[56] = ATA_CMD_ID_ATA;
  1591. i = min(buflen, 60U);
  1592. memcpy(rbuf, &pbuf[0], i);
  1593. buflen -= i;
  1594. if (!buflen)
  1595. return 0;
  1596. memcpy(&rbuf[60], &args->id[0], min(buflen, 512U));
  1597. return 0;
  1598. }
  1599. /**
  1600. * ata_scsiop_noop - Command handler that simply returns success.
  1601. * @args: device IDENTIFY data / SCSI command of interest.
  1602. * @rbuf: Response buffer, to which simulated SCSI cmd output is sent.
  1603. * @buflen: Response buffer length.
  1604. *
  1605. * No operation. Simply returns success to caller, to indicate
  1606. * that the caller should successfully complete this SCSI command.
  1607. *
  1608. * LOCKING:
  1609. * spin_lock_irqsave(host lock)
  1610. */
  1611. unsigned int ata_scsiop_noop(struct ata_scsi_args *args, u8 *rbuf,
  1612. unsigned int buflen)
  1613. {
  1614. VPRINTK("ENTER\n");
  1615. return 0;
  1616. }
  1617. /**
  1618. * ata_msense_push - Push data onto MODE SENSE data output buffer
  1619. * @ptr_io: (input/output) Location to store more output data
  1620. * @last: End of output data buffer
  1621. * @buf: Pointer to BLOB being added to output buffer
  1622. * @buflen: Length of BLOB
  1623. *
  1624. * Store MODE SENSE data on an output buffer.
  1625. *
  1626. * LOCKING:
  1627. * None.
  1628. */
  1629. static void ata_msense_push(u8 **ptr_io, const u8 *last,
  1630. const u8 *buf, unsigned int buflen)
  1631. {
  1632. u8 *ptr = *ptr_io;
  1633. if ((ptr + buflen - 1) > last)
  1634. return;
  1635. memcpy(ptr, buf, buflen);
  1636. ptr += buflen;
  1637. *ptr_io = ptr;
  1638. }
  1639. /**
  1640. * ata_msense_caching - Simulate MODE SENSE caching info page
  1641. * @id: device IDENTIFY data
  1642. * @ptr_io: (input/output) Location to store more output data
  1643. * @last: End of output data buffer
  1644. *
  1645. * Generate a caching info page, which conditionally indicates
  1646. * write caching to the SCSI layer, depending on device
  1647. * capabilities.
  1648. *
  1649. * LOCKING:
  1650. * None.
  1651. */
  1652. static unsigned int ata_msense_caching(u16 *id, u8 **ptr_io,
  1653. const u8 *last)
  1654. {
  1655. u8 page[CACHE_MPAGE_LEN];
  1656. memcpy(page, def_cache_mpage, sizeof(page));
  1657. if (ata_id_wcache_enabled(id))
  1658. page[2] |= (1 << 2); /* write cache enable */
  1659. if (!ata_id_rahead_enabled(id))
  1660. page[12] |= (1 << 5); /* disable read ahead */
  1661. ata_msense_push(ptr_io, last, page, sizeof(page));
  1662. return sizeof(page);
  1663. }
  1664. /**
  1665. * ata_msense_ctl_mode - Simulate MODE SENSE control mode page
  1666. * @dev: Device associated with this MODE SENSE command
  1667. * @ptr_io: (input/output) Location to store more output data
  1668. * @last: End of output data buffer
  1669. *
  1670. * Generate a generic MODE SENSE control mode page.
  1671. *
  1672. * LOCKING:
  1673. * None.
  1674. */
  1675. static unsigned int ata_msense_ctl_mode(u8 **ptr_io, const u8 *last)
  1676. {
  1677. ata_msense_push(ptr_io, last, def_control_mpage,
  1678. sizeof(def_control_mpage));
  1679. return sizeof(def_control_mpage);
  1680. }
  1681. /**
  1682. * ata_msense_rw_recovery - Simulate MODE SENSE r/w error recovery page
  1683. * @dev: Device associated with this MODE SENSE command
  1684. * @ptr_io: (input/output) Location to store more output data
  1685. * @last: End of output data buffer
  1686. *
  1687. * Generate a generic MODE SENSE r/w error recovery page.
  1688. *
  1689. * LOCKING:
  1690. * None.
  1691. */
  1692. static unsigned int ata_msense_rw_recovery(u8 **ptr_io, const u8 *last)
  1693. {
  1694. ata_msense_push(ptr_io, last, def_rw_recovery_mpage,
  1695. sizeof(def_rw_recovery_mpage));
  1696. return sizeof(def_rw_recovery_mpage);
  1697. }
  1698. /*
  1699. * We can turn this into a real blacklist if it's needed, for now just
  1700. * blacklist any Maxtor BANC1G10 revision firmware
  1701. */
  1702. static int ata_dev_supports_fua(u16 *id)
  1703. {
  1704. unsigned char model[ATA_ID_PROD_LEN + 1], fw[ATA_ID_FW_REV_LEN + 1];
  1705. if (!libata_fua)
  1706. return 0;
  1707. if (!ata_id_has_fua(id))
  1708. return 0;
  1709. ata_id_c_string(id, model, ATA_ID_PROD, sizeof(model));
  1710. ata_id_c_string(id, fw, ATA_ID_FW_REV, sizeof(fw));
  1711. if (strcmp(model, "Maxtor"))
  1712. return 1;
  1713. if (strcmp(fw, "BANC1G10"))
  1714. return 1;
  1715. return 0; /* blacklisted */
  1716. }
  1717. /**
  1718. * ata_scsiop_mode_sense - Simulate MODE SENSE 6, 10 commands
  1719. * @args: device IDENTIFY data / SCSI command of interest.
  1720. * @rbuf: Response buffer, to which simulated SCSI cmd output is sent.
  1721. * @buflen: Response buffer length.
  1722. *
  1723. * Simulate MODE SENSE commands. Assume this is invoked for direct
  1724. * access devices (e.g. disks) only. There should be no block
  1725. * descriptor for other device types.
  1726. *
  1727. * LOCKING:
  1728. * spin_lock_irqsave(host lock)
  1729. */
  1730. unsigned int ata_scsiop_mode_sense(struct ata_scsi_args *args, u8 *rbuf,
  1731. unsigned int buflen)
  1732. {
  1733. struct ata_device *dev = args->dev;
  1734. u8 *scsicmd = args->cmd->cmnd, *p, *last;
  1735. const u8 sat_blk_desc[] = {
  1736. 0, 0, 0, 0, /* number of blocks: sat unspecified */
  1737. 0,
  1738. 0, 0x2, 0x0 /* block length: 512 bytes */
  1739. };
  1740. u8 pg, spg;
  1741. unsigned int ebd, page_control, six_byte, output_len, alloc_len, minlen;
  1742. u8 dpofua;
  1743. VPRINTK("ENTER\n");
  1744. six_byte = (scsicmd[0] == MODE_SENSE);
  1745. ebd = !(scsicmd[1] & 0x8); /* dbd bit inverted == edb */
  1746. /*
  1747. * LLBA bit in msense(10) ignored (compliant)
  1748. */
  1749. page_control = scsicmd[2] >> 6;
  1750. switch (page_control) {
  1751. case 0: /* current */
  1752. break; /* supported */
  1753. case 3: /* saved */
  1754. goto saving_not_supp;
  1755. case 1: /* changeable */
  1756. case 2: /* defaults */
  1757. default:
  1758. goto invalid_fld;
  1759. }
  1760. if (six_byte) {
  1761. output_len = 4 + (ebd ? 8 : 0);
  1762. alloc_len = scsicmd[4];
  1763. } else {
  1764. output_len = 8 + (ebd ? 8 : 0);
  1765. alloc_len = (scsicmd[7] << 8) + scsicmd[8];
  1766. }
  1767. minlen = (alloc_len < buflen) ? alloc_len : buflen;
  1768. p = rbuf + output_len;
  1769. last = rbuf + minlen - 1;
  1770. pg = scsicmd[2] & 0x3f;
  1771. spg = scsicmd[3];
  1772. /*
  1773. * No mode subpages supported (yet) but asking for _all_
  1774. * subpages may be valid
  1775. */
  1776. if (spg && (spg != ALL_SUB_MPAGES))
  1777. goto invalid_fld;
  1778. switch(pg) {
  1779. case RW_RECOVERY_MPAGE:
  1780. output_len += ata_msense_rw_recovery(&p, last);
  1781. break;
  1782. case CACHE_MPAGE:
  1783. output_len += ata_msense_caching(args->id, &p, last);
  1784. break;
  1785. case CONTROL_MPAGE: {
  1786. output_len += ata_msense_ctl_mode(&p, last);
  1787. break;
  1788. }
  1789. case ALL_MPAGES:
  1790. output_len += ata_msense_rw_recovery(&p, last);
  1791. output_len += ata_msense_caching(args->id, &p, last);
  1792. output_len += ata_msense_ctl_mode(&p, last);
  1793. break;
  1794. default: /* invalid page code */
  1795. goto invalid_fld;
  1796. }
  1797. if (minlen < 1)
  1798. return 0;
  1799. dpofua = 0;
  1800. if (ata_dev_supports_fua(args->id) && (dev->flags & ATA_DFLAG_LBA48) &&
  1801. (!(dev->flags & ATA_DFLAG_PIO) || dev->multi_count))
  1802. dpofua = 1 << 4;
  1803. if (six_byte) {
  1804. output_len--;
  1805. rbuf[0] = output_len;
  1806. if (minlen > 2)
  1807. rbuf[2] |= dpofua;
  1808. if (ebd) {
  1809. if (minlen > 3)
  1810. rbuf[3] = sizeof(sat_blk_desc);
  1811. if (minlen > 11)
  1812. memcpy(rbuf + 4, sat_blk_desc,
  1813. sizeof(sat_blk_desc));
  1814. }
  1815. } else {
  1816. output_len -= 2;
  1817. rbuf[0] = output_len >> 8;
  1818. if (minlen > 1)
  1819. rbuf[1] = output_len;
  1820. if (minlen > 3)
  1821. rbuf[3] |= dpofua;
  1822. if (ebd) {
  1823. if (minlen > 7)
  1824. rbuf[7] = sizeof(sat_blk_desc);
  1825. if (minlen > 15)
  1826. memcpy(rbuf + 8, sat_blk_desc,
  1827. sizeof(sat_blk_desc));
  1828. }
  1829. }
  1830. return 0;
  1831. invalid_fld:
  1832. ata_scsi_set_sense(args->cmd, ILLEGAL_REQUEST, 0x24, 0x0);
  1833. /* "Invalid field in cbd" */
  1834. return 1;
  1835. saving_not_supp:
  1836. ata_scsi_set_sense(args->cmd, ILLEGAL_REQUEST, 0x39, 0x0);
  1837. /* "Saving parameters not supported" */
  1838. return 1;
  1839. }
  1840. /**
  1841. * ata_scsiop_read_cap - Simulate READ CAPACITY[ 16] commands
  1842. * @args: device IDENTIFY data / SCSI command of interest.
  1843. * @rbuf: Response buffer, to which simulated SCSI cmd output is sent.
  1844. * @buflen: Response buffer length.
  1845. *
  1846. * Simulate READ CAPACITY commands.
  1847. *
  1848. * LOCKING:
  1849. * None.
  1850. */
  1851. unsigned int ata_scsiop_read_cap(struct ata_scsi_args *args, u8 *rbuf,
  1852. unsigned int buflen)
  1853. {
  1854. u64 last_lba = args->dev->n_sectors - 1; /* LBA of the last block */
  1855. VPRINTK("ENTER\n");
  1856. if (args->cmd->cmnd[0] == READ_CAPACITY) {
  1857. if (last_lba >= 0xffffffffULL)
  1858. last_lba = 0xffffffff;
  1859. /* sector count, 32-bit */
  1860. ATA_SCSI_RBUF_SET(0, last_lba >> (8 * 3));
  1861. ATA_SCSI_RBUF_SET(1, last_lba >> (8 * 2));
  1862. ATA_SCSI_RBUF_SET(2, last_lba >> (8 * 1));
  1863. ATA_SCSI_RBUF_SET(3, last_lba);
  1864. /* sector size */
  1865. ATA_SCSI_RBUF_SET(6, ATA_SECT_SIZE >> 8);
  1866. ATA_SCSI_RBUF_SET(7, ATA_SECT_SIZE);
  1867. } else {
  1868. /* sector count, 64-bit */
  1869. ATA_SCSI_RBUF_SET(0, last_lba >> (8 * 7));
  1870. ATA_SCSI_RBUF_SET(1, last_lba >> (8 * 6));
  1871. ATA_SCSI_RBUF_SET(2, last_lba >> (8 * 5));
  1872. ATA_SCSI_RBUF_SET(3, last_lba >> (8 * 4));
  1873. ATA_SCSI_RBUF_SET(4, last_lba >> (8 * 3));
  1874. ATA_SCSI_RBUF_SET(5, last_lba >> (8 * 2));
  1875. ATA_SCSI_RBUF_SET(6, last_lba >> (8 * 1));
  1876. ATA_SCSI_RBUF_SET(7, last_lba);
  1877. /* sector size */
  1878. ATA_SCSI_RBUF_SET(10, ATA_SECT_SIZE >> 8);
  1879. ATA_SCSI_RBUF_SET(11, ATA_SECT_SIZE);
  1880. }
  1881. return 0;
  1882. }
  1883. /**
  1884. * ata_scsiop_report_luns - Simulate REPORT LUNS command
  1885. * @args: device IDENTIFY data / SCSI command of interest.
  1886. * @rbuf: Response buffer, to which simulated SCSI cmd output is sent.
  1887. * @buflen: Response buffer length.
  1888. *
  1889. * Simulate REPORT LUNS command.
  1890. *
  1891. * LOCKING:
  1892. * spin_lock_irqsave(host lock)
  1893. */
  1894. unsigned int ata_scsiop_report_luns(struct ata_scsi_args *args, u8 *rbuf,
  1895. unsigned int buflen)
  1896. {
  1897. VPRINTK("ENTER\n");
  1898. rbuf[3] = 8; /* just one lun, LUN 0, size 8 bytes */
  1899. return 0;
  1900. }
  1901. /**
  1902. * ata_scsi_set_sense - Set SCSI sense data and status
  1903. * @cmd: SCSI request to be handled
  1904. * @sk: SCSI-defined sense key
  1905. * @asc: SCSI-defined additional sense code
  1906. * @ascq: SCSI-defined additional sense code qualifier
  1907. *
  1908. * Helper function that builds a valid fixed format, current
  1909. * response code and the given sense key (sk), additional sense
  1910. * code (asc) and additional sense code qualifier (ascq) with
  1911. * a SCSI command status of %SAM_STAT_CHECK_CONDITION and
  1912. * DRIVER_SENSE set in the upper bits of scsi_cmnd::result .
  1913. *
  1914. * LOCKING:
  1915. * Not required
  1916. */
  1917. void ata_scsi_set_sense(struct scsi_cmnd *cmd, u8 sk, u8 asc, u8 ascq)
  1918. {
  1919. cmd->result = (DRIVER_SENSE << 24) | SAM_STAT_CHECK_CONDITION;
  1920. cmd->sense_buffer[0] = 0x70; /* fixed format, current */
  1921. cmd->sense_buffer[2] = sk;
  1922. cmd->sense_buffer[7] = 18 - 8; /* additional sense length */
  1923. cmd->sense_buffer[12] = asc;
  1924. cmd->sense_buffer[13] = ascq;
  1925. }
  1926. /**
  1927. * ata_scsi_badcmd - End a SCSI request with an error
  1928. * @cmd: SCSI request to be handled
  1929. * @done: SCSI command completion function
  1930. * @asc: SCSI-defined additional sense code
  1931. * @ascq: SCSI-defined additional sense code qualifier
  1932. *
  1933. * Helper function that completes a SCSI command with
  1934. * %SAM_STAT_CHECK_CONDITION, with a sense key %ILLEGAL_REQUEST
  1935. * and the specified additional sense codes.
  1936. *
  1937. * LOCKING:
  1938. * spin_lock_irqsave(host lock)
  1939. */
  1940. void ata_scsi_badcmd(struct scsi_cmnd *cmd, void (*done)(struct scsi_cmnd *), u8 asc, u8 ascq)
  1941. {
  1942. DPRINTK("ENTER\n");
  1943. ata_scsi_set_sense(cmd, ILLEGAL_REQUEST, asc, ascq);
  1944. done(cmd);
  1945. }
  1946. static void atapi_sense_complete(struct ata_queued_cmd *qc)
  1947. {
  1948. if (qc->err_mask && ((qc->err_mask & AC_ERR_DEV) == 0)) {
  1949. /* FIXME: not quite right; we don't want the
  1950. * translation of taskfile registers into
  1951. * a sense descriptors, since that's only
  1952. * correct for ATA, not ATAPI
  1953. */
  1954. ata_gen_passthru_sense(qc);
  1955. }
  1956. qc->scsidone(qc->scsicmd);
  1957. ata_qc_free(qc);
  1958. }
  1959. /* is it pointless to prefer PIO for "safety reasons"? */
  1960. static inline int ata_pio_use_silly(struct ata_port *ap)
  1961. {
  1962. return (ap->flags & ATA_FLAG_PIO_DMA);
  1963. }
  1964. static void atapi_request_sense(struct ata_queued_cmd *qc)
  1965. {
  1966. struct ata_port *ap = qc->ap;
  1967. struct scsi_cmnd *cmd = qc->scsicmd;
  1968. DPRINTK("ATAPI request sense\n");
  1969. /* FIXME: is this needed? */
  1970. memset(cmd->sense_buffer, 0, sizeof(cmd->sense_buffer));
  1971. ap->ops->tf_read(ap, &qc->tf);
  1972. /* fill these in, for the case where they are -not- overwritten */
  1973. cmd->sense_buffer[0] = 0x70;
  1974. cmd->sense_buffer[2] = qc->tf.feature >> 4;
  1975. ata_qc_reinit(qc);
  1976. ata_sg_init_one(qc, cmd->sense_buffer, sizeof(cmd->sense_buffer));
  1977. qc->dma_dir = DMA_FROM_DEVICE;
  1978. memset(&qc->cdb, 0, qc->dev->cdb_len);
  1979. qc->cdb[0] = REQUEST_SENSE;
  1980. qc->cdb[4] = SCSI_SENSE_BUFFERSIZE;
  1981. qc->tf.flags |= ATA_TFLAG_ISADDR | ATA_TFLAG_DEVICE;
  1982. qc->tf.command = ATA_CMD_PACKET;
  1983. if (ata_pio_use_silly(ap)) {
  1984. qc->tf.protocol = ATA_PROT_ATAPI_DMA;
  1985. qc->tf.feature |= ATAPI_PKT_DMA;
  1986. } else {
  1987. qc->tf.protocol = ATA_PROT_ATAPI;
  1988. qc->tf.lbam = (8 * 1024) & 0xff;
  1989. qc->tf.lbah = (8 * 1024) >> 8;
  1990. }
  1991. qc->nbytes = SCSI_SENSE_BUFFERSIZE;
  1992. qc->complete_fn = atapi_sense_complete;
  1993. ata_qc_issue(qc);
  1994. DPRINTK("EXIT\n");
  1995. }
  1996. static void atapi_qc_complete(struct ata_queued_cmd *qc)
  1997. {
  1998. struct scsi_cmnd *cmd = qc->scsicmd;
  1999. unsigned int err_mask = qc->err_mask;
  2000. VPRINTK("ENTER, err_mask 0x%X\n", err_mask);
  2001. /* handle completion from new EH */
  2002. if (unlikely(qc->ap->ops->error_handler &&
  2003. (err_mask || qc->flags & ATA_QCFLAG_SENSE_VALID))) {
  2004. if (!(qc->flags & ATA_QCFLAG_SENSE_VALID)) {
  2005. /* FIXME: not quite right; we don't want the
  2006. * translation of taskfile registers into a
  2007. * sense descriptors, since that's only
  2008. * correct for ATA, not ATAPI
  2009. */
  2010. ata_gen_passthru_sense(qc);
  2011. }
  2012. /* SCSI EH automatically locks door if sdev->locked is
  2013. * set. Sometimes door lock request continues to
  2014. * fail, for example, when no media is present. This
  2015. * creates a loop - SCSI EH issues door lock which
  2016. * fails and gets invoked again to acquire sense data
  2017. * for the failed command.
  2018. *
  2019. * If door lock fails, always clear sdev->locked to
  2020. * avoid this infinite loop.
  2021. */
  2022. if (qc->cdb[0] == ALLOW_MEDIUM_REMOVAL)
  2023. qc->dev->sdev->locked = 0;
  2024. qc->scsicmd->result = SAM_STAT_CHECK_CONDITION;
  2025. qc->scsidone(cmd);
  2026. ata_qc_free(qc);
  2027. return;
  2028. }
  2029. /* successful completion or old EH failure path */
  2030. if (unlikely(err_mask & AC_ERR_DEV)) {
  2031. cmd->result = SAM_STAT_CHECK_CONDITION;
  2032. atapi_request_sense(qc);
  2033. return;
  2034. } else if (unlikely(err_mask)) {
  2035. /* FIXME: not quite right; we don't want the
  2036. * translation of taskfile registers into
  2037. * a sense descriptors, since that's only
  2038. * correct for ATA, not ATAPI
  2039. */
  2040. ata_gen_passthru_sense(qc);
  2041. } else {
  2042. u8 *scsicmd = cmd->cmnd;
  2043. if ((scsicmd[0] == INQUIRY) && ((scsicmd[1] & 0x03) == 0)) {
  2044. u8 *buf = NULL;
  2045. unsigned int buflen;
  2046. buflen = ata_scsi_rbuf_get(cmd, &buf);
  2047. /* ATAPI devices typically report zero for their SCSI version,
  2048. * and sometimes deviate from the spec WRT response data
  2049. * format. If SCSI version is reported as zero like normal,
  2050. * then we make the following fixups: 1) Fake MMC-5 version,
  2051. * to indicate to the Linux scsi midlayer this is a modern
  2052. * device. 2) Ensure response data format / ATAPI information
  2053. * are always correct.
  2054. */
  2055. if (buf[2] == 0) {
  2056. buf[2] = 0x5;
  2057. buf[3] = 0x32;
  2058. }
  2059. ata_scsi_rbuf_put(cmd, buf);
  2060. }
  2061. cmd->result = SAM_STAT_GOOD;
  2062. }
  2063. qc->scsidone(cmd);
  2064. ata_qc_free(qc);
  2065. }
  2066. /**
  2067. * atapi_xlat - Initialize PACKET taskfile
  2068. * @qc: command structure to be initialized
  2069. *
  2070. * LOCKING:
  2071. * spin_lock_irqsave(host lock)
  2072. *
  2073. * RETURNS:
  2074. * Zero on success, non-zero on failure.
  2075. */
  2076. static unsigned int atapi_xlat(struct ata_queued_cmd *qc)
  2077. {
  2078. struct scsi_cmnd *scmd = qc->scsicmd;
  2079. struct ata_device *dev = qc->dev;
  2080. int using_pio = (dev->flags & ATA_DFLAG_PIO);
  2081. int nodata = (scmd->sc_data_direction == DMA_NONE);
  2082. memset(qc->cdb, 0, dev->cdb_len);
  2083. memcpy(qc->cdb, scmd->cmnd, scmd->cmd_len);
  2084. qc->complete_fn = atapi_qc_complete;
  2085. qc->tf.flags |= ATA_TFLAG_ISADDR | ATA_TFLAG_DEVICE;
  2086. if (scmd->sc_data_direction == DMA_TO_DEVICE) {
  2087. qc->tf.flags |= ATA_TFLAG_WRITE;
  2088. DPRINTK("direction: write\n");
  2089. }
  2090. qc->tf.command = ATA_CMD_PACKET;
  2091. qc->nbytes = scsi_bufflen(scmd);
  2092. /* check whether ATAPI DMA is safe */
  2093. if (!using_pio && ata_check_atapi_dma(qc))
  2094. using_pio = 1;
  2095. if (using_pio || nodata) {
  2096. /* no data, or PIO data xfer */
  2097. if (nodata)
  2098. qc->tf.protocol = ATA_PROT_ATAPI_NODATA;
  2099. else
  2100. qc->tf.protocol = ATA_PROT_ATAPI;
  2101. qc->tf.lbam = (8 * 1024) & 0xff;
  2102. qc->tf.lbah = (8 * 1024) >> 8;
  2103. } else {
  2104. /* DMA data xfer */
  2105. qc->tf.protocol = ATA_PROT_ATAPI_DMA;
  2106. qc->tf.feature |= ATAPI_PKT_DMA;
  2107. if (atapi_dmadir && (scmd->sc_data_direction != DMA_TO_DEVICE))
  2108. /* some SATA bridges need us to indicate data xfer direction */
  2109. qc->tf.feature |= ATAPI_DMADIR;
  2110. }
  2111. return 0;
  2112. }
  2113. static struct ata_device * ata_find_dev(struct ata_port *ap, int devno)
  2114. {
  2115. if (ap->nr_pmp_links == 0) {
  2116. if (likely(devno < ata_link_max_devices(&ap->link)))
  2117. return &ap->link.device[devno];
  2118. } else {
  2119. if (likely(devno < ap->nr_pmp_links))
  2120. return &ap->pmp_link[devno].device[0];
  2121. }
  2122. return NULL;
  2123. }
  2124. static struct ata_device * __ata_scsi_find_dev(struct ata_port *ap,
  2125. const struct scsi_device *scsidev)
  2126. {
  2127. int devno;
  2128. /* skip commands not addressed to targets we simulate */
  2129. if (ap->nr_pmp_links == 0) {
  2130. if (unlikely(scsidev->channel || scsidev->lun))
  2131. return NULL;
  2132. devno = scsidev->id;
  2133. } else {
  2134. if (unlikely(scsidev->id || scsidev->lun))
  2135. return NULL;
  2136. devno = scsidev->channel;
  2137. }
  2138. return ata_find_dev(ap, devno);
  2139. }
  2140. /**
  2141. * ata_scsi_dev_enabled - determine if device is enabled
  2142. * @dev: ATA device
  2143. *
  2144. * Determine if commands should be sent to the specified device.
  2145. *
  2146. * LOCKING:
  2147. * spin_lock_irqsave(host lock)
  2148. *
  2149. * RETURNS:
  2150. * 0 if commands are not allowed / 1 if commands are allowed
  2151. */
  2152. static int ata_scsi_dev_enabled(struct ata_device *dev)
  2153. {
  2154. if (unlikely(!ata_dev_enabled(dev)))
  2155. return 0;
  2156. if (!atapi_enabled || (dev->link->ap->flags & ATA_FLAG_NO_ATAPI)) {
  2157. if (unlikely(dev->class == ATA_DEV_ATAPI)) {
  2158. ata_dev_printk(dev, KERN_WARNING,
  2159. "WARNING: ATAPI is %s, device ignored.\n",
  2160. atapi_enabled ? "not supported with this driver" : "disabled");
  2161. return 0;
  2162. }
  2163. }
  2164. return 1;
  2165. }
  2166. /**
  2167. * ata_scsi_find_dev - lookup ata_device from scsi_cmnd
  2168. * @ap: ATA port to which the device is attached
  2169. * @scsidev: SCSI device from which we derive the ATA device
  2170. *
  2171. * Given various information provided in struct scsi_cmnd,
  2172. * map that onto an ATA bus, and using that mapping
  2173. * determine which ata_device is associated with the
  2174. * SCSI command to be sent.
  2175. *
  2176. * LOCKING:
  2177. * spin_lock_irqsave(host lock)
  2178. *
  2179. * RETURNS:
  2180. * Associated ATA device, or %NULL if not found.
  2181. */
  2182. static struct ata_device *
  2183. ata_scsi_find_dev(struct ata_port *ap, const struct scsi_device *scsidev)
  2184. {
  2185. struct ata_device *dev = __ata_scsi_find_dev(ap, scsidev);
  2186. if (unlikely(!dev || !ata_scsi_dev_enabled(dev)))
  2187. return NULL;
  2188. return dev;
  2189. }
  2190. /*
  2191. * ata_scsi_map_proto - Map pass-thru protocol value to taskfile value.
  2192. * @byte1: Byte 1 from pass-thru CDB.
  2193. *
  2194. * RETURNS:
  2195. * ATA_PROT_UNKNOWN if mapping failed/unimplemented, protocol otherwise.
  2196. */
  2197. static u8
  2198. ata_scsi_map_proto(u8 byte1)
  2199. {
  2200. switch((byte1 & 0x1e) >> 1) {
  2201. case 3: /* Non-data */
  2202. return ATA_PROT_NODATA;
  2203. case 6: /* DMA */
  2204. case 10: /* UDMA Data-in */
  2205. case 11: /* UDMA Data-Out */
  2206. return ATA_PROT_DMA;
  2207. case 4: /* PIO Data-in */
  2208. case 5: /* PIO Data-out */
  2209. return ATA_PROT_PIO;
  2210. case 0: /* Hard Reset */
  2211. case 1: /* SRST */
  2212. case 8: /* Device Diagnostic */
  2213. case 9: /* Device Reset */
  2214. case 7: /* DMA Queued */
  2215. case 12: /* FPDMA */
  2216. case 15: /* Return Response Info */
  2217. default: /* Reserved */
  2218. break;
  2219. }
  2220. return ATA_PROT_UNKNOWN;
  2221. }
  2222. /**
  2223. * ata_scsi_pass_thru - convert ATA pass-thru CDB to taskfile
  2224. * @qc: command structure to be initialized
  2225. *
  2226. * Handles either 12 or 16-byte versions of the CDB.
  2227. *
  2228. * RETURNS:
  2229. * Zero on success, non-zero on failure.
  2230. */
  2231. static unsigned int ata_scsi_pass_thru(struct ata_queued_cmd *qc)
  2232. {
  2233. struct ata_taskfile *tf = &(qc->tf);
  2234. struct scsi_cmnd *scmd = qc->scsicmd;
  2235. struct ata_device *dev = qc->dev;
  2236. const u8 *cdb = scmd->cmnd;
  2237. if ((tf->protocol = ata_scsi_map_proto(cdb[1])) == ATA_PROT_UNKNOWN)
  2238. goto invalid_fld;
  2239. /* We may not issue DMA commands if no DMA mode is set */
  2240. if (tf->protocol == ATA_PROT_DMA && dev->dma_mode == 0)
  2241. goto invalid_fld;
  2242. /*
  2243. * 12 and 16 byte CDBs use different offsets to
  2244. * provide the various register values.
  2245. */
  2246. if (cdb[0] == ATA_16) {
  2247. /*
  2248. * 16-byte CDB - may contain extended commands.
  2249. *
  2250. * If that is the case, copy the upper byte register values.
  2251. */
  2252. if (cdb[1] & 0x01) {
  2253. tf->hob_feature = cdb[3];
  2254. tf->hob_nsect = cdb[5];
  2255. tf->hob_lbal = cdb[7];
  2256. tf->hob_lbam = cdb[9];
  2257. tf->hob_lbah = cdb[11];
  2258. tf->flags |= ATA_TFLAG_LBA48;
  2259. } else
  2260. tf->flags &= ~ATA_TFLAG_LBA48;
  2261. /*
  2262. * Always copy low byte, device and command registers.
  2263. */
  2264. tf->feature = cdb[4];
  2265. tf->nsect = cdb[6];
  2266. tf->lbal = cdb[8];
  2267. tf->lbam = cdb[10];
  2268. tf->lbah = cdb[12];
  2269. tf->device = cdb[13];
  2270. tf->command = cdb[14];
  2271. } else {
  2272. /*
  2273. * 12-byte CDB - incapable of extended commands.
  2274. */
  2275. tf->flags &= ~ATA_TFLAG_LBA48;
  2276. tf->feature = cdb[3];
  2277. tf->nsect = cdb[4];
  2278. tf->lbal = cdb[5];
  2279. tf->lbam = cdb[6];
  2280. tf->lbah = cdb[7];
  2281. tf->device = cdb[8];
  2282. tf->command = cdb[9];
  2283. }
  2284. /* enforce correct master/slave bit */
  2285. tf->device = dev->devno ?
  2286. tf->device | ATA_DEV1 : tf->device & ~ATA_DEV1;
  2287. /* sanity check for pio multi commands */
  2288. if ((cdb[1] & 0xe0) && !is_multi_taskfile(tf))
  2289. goto invalid_fld;
  2290. if (is_multi_taskfile(tf)) {
  2291. unsigned int multi_count = 1 << (cdb[1] >> 5);
  2292. /* compare the passed through multi_count
  2293. * with the cached multi_count of libata
  2294. */
  2295. if (multi_count != dev->multi_count)
  2296. ata_dev_printk(dev, KERN_WARNING,
  2297. "invalid multi_count %u ignored\n",
  2298. multi_count);
  2299. }
  2300. /* READ/WRITE LONG use a non-standard sect_size */
  2301. qc->sect_size = ATA_SECT_SIZE;
  2302. switch (tf->command) {
  2303. case ATA_CMD_READ_LONG:
  2304. case ATA_CMD_READ_LONG_ONCE:
  2305. case ATA_CMD_WRITE_LONG:
  2306. case ATA_CMD_WRITE_LONG_ONCE:
  2307. if (tf->protocol != ATA_PROT_PIO || tf->nsect != 1)
  2308. goto invalid_fld;
  2309. qc->sect_size = scsi_bufflen(scmd);
  2310. }
  2311. /*
  2312. * Filter SET_FEATURES - XFER MODE command -- otherwise,
  2313. * SET_FEATURES - XFER MODE must be preceded/succeeded
  2314. * by an update to hardware-specific registers for each
  2315. * controller (i.e. the reason for ->set_piomode(),
  2316. * ->set_dmamode(), and ->post_set_mode() hooks).
  2317. */
  2318. if ((tf->command == ATA_CMD_SET_FEATURES)
  2319. && (tf->feature == SETFEATURES_XFER))
  2320. goto invalid_fld;
  2321. /*
  2322. * Set flags so that all registers will be written,
  2323. * and pass on write indication (used for PIO/DMA
  2324. * setup.)
  2325. */
  2326. tf->flags |= (ATA_TFLAG_ISADDR | ATA_TFLAG_DEVICE);
  2327. if (scmd->sc_data_direction == DMA_TO_DEVICE)
  2328. tf->flags |= ATA_TFLAG_WRITE;
  2329. /*
  2330. * Set transfer length.
  2331. *
  2332. * TODO: find out if we need to do more here to
  2333. * cover scatter/gather case.
  2334. */
  2335. qc->nbytes = scsi_bufflen(scmd);
  2336. /* request result TF */
  2337. qc->flags |= ATA_QCFLAG_RESULT_TF;
  2338. return 0;
  2339. invalid_fld:
  2340. ata_scsi_set_sense(scmd, ILLEGAL_REQUEST, 0x24, 0x00);
  2341. /* "Invalid field in cdb" */
  2342. return 1;
  2343. }
  2344. /**
  2345. * ata_get_xlat_func - check if SCSI to ATA translation is possible
  2346. * @dev: ATA device
  2347. * @cmd: SCSI command opcode to consider
  2348. *
  2349. * Look up the SCSI command given, and determine whether the
  2350. * SCSI command is to be translated or simulated.
  2351. *
  2352. * RETURNS:
  2353. * Pointer to translation function if possible, %NULL if not.
  2354. */
  2355. static inline ata_xlat_func_t ata_get_xlat_func(struct ata_device *dev, u8 cmd)
  2356. {
  2357. switch (cmd) {
  2358. case READ_6:
  2359. case READ_10:
  2360. case READ_16:
  2361. case WRITE_6:
  2362. case WRITE_10:
  2363. case WRITE_16:
  2364. return ata_scsi_rw_xlat;
  2365. case SYNCHRONIZE_CACHE:
  2366. if (ata_try_flush_cache(dev))
  2367. return ata_scsi_flush_xlat;
  2368. break;
  2369. case VERIFY:
  2370. case VERIFY_16:
  2371. return ata_scsi_verify_xlat;
  2372. case ATA_12:
  2373. case ATA_16:
  2374. return ata_scsi_pass_thru;
  2375. case START_STOP:
  2376. return ata_scsi_start_stop_xlat;
  2377. }
  2378. return NULL;
  2379. }
  2380. /**
  2381. * ata_scsi_dump_cdb - dump SCSI command contents to dmesg
  2382. * @ap: ATA port to which the command was being sent
  2383. * @cmd: SCSI command to dump
  2384. *
  2385. * Prints the contents of a SCSI command via printk().
  2386. */
  2387. static inline void ata_scsi_dump_cdb(struct ata_port *ap,
  2388. struct scsi_cmnd *cmd)
  2389. {
  2390. #ifdef ATA_DEBUG
  2391. struct scsi_device *scsidev = cmd->device;
  2392. u8 *scsicmd = cmd->cmnd;
  2393. DPRINTK("CDB (%u:%d,%d,%d) %02x %02x %02x %02x %02x %02x %02x %02x %02x\n",
  2394. ap->print_id,
  2395. scsidev->channel, scsidev->id, scsidev->lun,
  2396. scsicmd[0], scsicmd[1], scsicmd[2], scsicmd[3],
  2397. scsicmd[4], scsicmd[5], scsicmd[6], scsicmd[7],
  2398. scsicmd[8]);
  2399. #endif
  2400. }
  2401. static inline int __ata_scsi_queuecmd(struct scsi_cmnd *scmd,
  2402. void (*done)(struct scsi_cmnd *),
  2403. struct ata_device *dev)
  2404. {
  2405. u8 scsi_op = scmd->cmnd[0];
  2406. ata_xlat_func_t xlat_func;
  2407. int rc = 0;
  2408. if (dev->class == ATA_DEV_ATA) {
  2409. if (unlikely(!scmd->cmd_len || scmd->cmd_len > dev->cdb_len))
  2410. goto bad_cdb_len;
  2411. xlat_func = ata_get_xlat_func(dev, scsi_op);
  2412. } else {
  2413. if (unlikely(!scmd->cmd_len))
  2414. goto bad_cdb_len;
  2415. xlat_func = NULL;
  2416. if (likely((scsi_op != ATA_16) || !atapi_passthru16)) {
  2417. /* relay SCSI command to ATAPI device */
  2418. if (unlikely(scmd->cmd_len > dev->cdb_len))
  2419. goto bad_cdb_len;
  2420. xlat_func = atapi_xlat;
  2421. } else {
  2422. /* ATA_16 passthru, treat as an ATA command */
  2423. if (unlikely(scmd->cmd_len > 16))
  2424. goto bad_cdb_len;
  2425. xlat_func = ata_get_xlat_func(dev, scsi_op);
  2426. }
  2427. }
  2428. if (xlat_func)
  2429. rc = ata_scsi_translate(dev, scmd, done, xlat_func);
  2430. else
  2431. ata_scsi_simulate(dev, scmd, done);
  2432. return rc;
  2433. bad_cdb_len:
  2434. DPRINTK("bad CDB len=%u, scsi_op=0x%02x, max=%u\n",
  2435. scmd->cmd_len, scsi_op, dev->cdb_len);
  2436. scmd->result = DID_ERROR << 16;
  2437. done(scmd);
  2438. return 0;
  2439. }
  2440. /**
  2441. * ata_scsi_queuecmd - Issue SCSI cdb to libata-managed device
  2442. * @cmd: SCSI command to be sent
  2443. * @done: Completion function, called when command is complete
  2444. *
  2445. * In some cases, this function translates SCSI commands into
  2446. * ATA taskfiles, and queues the taskfiles to be sent to
  2447. * hardware. In other cases, this function simulates a
  2448. * SCSI device by evaluating and responding to certain
  2449. * SCSI commands. This creates the overall effect of
  2450. * ATA and ATAPI devices appearing as SCSI devices.
  2451. *
  2452. * LOCKING:
  2453. * Releases scsi-layer-held lock, and obtains host lock.
  2454. *
  2455. * RETURNS:
  2456. * Return value from __ata_scsi_queuecmd() if @cmd can be queued,
  2457. * 0 otherwise.
  2458. */
  2459. int ata_scsi_queuecmd(struct scsi_cmnd *cmd, void (*done)(struct scsi_cmnd *))
  2460. {
  2461. struct ata_port *ap;
  2462. struct ata_device *dev;
  2463. struct scsi_device *scsidev = cmd->device;
  2464. struct Scsi_Host *shost = scsidev->host;
  2465. int rc = 0;
  2466. ap = ata_shost_to_port(shost);
  2467. spin_unlock(shost->host_lock);
  2468. spin_lock(ap->lock);
  2469. ata_scsi_dump_cdb(ap, cmd);
  2470. dev = ata_scsi_find_dev(ap, scsidev);
  2471. if (likely(dev))
  2472. rc = __ata_scsi_queuecmd(cmd, done, dev);
  2473. else {
  2474. cmd->result = (DID_BAD_TARGET << 16);
  2475. done(cmd);
  2476. }
  2477. spin_unlock(ap->lock);
  2478. spin_lock(shost->host_lock);
  2479. return rc;
  2480. }
  2481. /**
  2482. * ata_scsi_simulate - simulate SCSI command on ATA device
  2483. * @dev: the target device
  2484. * @cmd: SCSI command being sent to device.
  2485. * @done: SCSI command completion function.
  2486. *
  2487. * Interprets and directly executes a select list of SCSI commands
  2488. * that can be handled internally.
  2489. *
  2490. * LOCKING:
  2491. * spin_lock_irqsave(host lock)
  2492. */
  2493. void ata_scsi_simulate(struct ata_device *dev, struct scsi_cmnd *cmd,
  2494. void (*done)(struct scsi_cmnd *))
  2495. {
  2496. struct ata_scsi_args args;
  2497. const u8 *scsicmd = cmd->cmnd;
  2498. u8 tmp8;
  2499. args.dev = dev;
  2500. args.id = dev->id;
  2501. args.cmd = cmd;
  2502. args.done = done;
  2503. switch(scsicmd[0]) {
  2504. /* TODO: worth improving? */
  2505. case FORMAT_UNIT:
  2506. ata_scsi_invalid_field(cmd, done);
  2507. break;
  2508. case INQUIRY:
  2509. if (scsicmd[1] & 2) /* is CmdDt set? */
  2510. ata_scsi_invalid_field(cmd, done);
  2511. else if ((scsicmd[1] & 1) == 0) /* is EVPD clear? */
  2512. ata_scsi_rbuf_fill(&args, ata_scsiop_inq_std);
  2513. else switch (scsicmd[2]) {
  2514. case 0x00:
  2515. ata_scsi_rbuf_fill(&args, ata_scsiop_inq_00);
  2516. break;
  2517. case 0x80:
  2518. ata_scsi_rbuf_fill(&args, ata_scsiop_inq_80);
  2519. break;
  2520. case 0x83:
  2521. ata_scsi_rbuf_fill(&args, ata_scsiop_inq_83);
  2522. break;
  2523. case 0x89:
  2524. ata_scsi_rbuf_fill(&args, ata_scsiop_inq_89);
  2525. break;
  2526. default:
  2527. ata_scsi_invalid_field(cmd, done);
  2528. break;
  2529. }
  2530. break;
  2531. case MODE_SENSE:
  2532. case MODE_SENSE_10:
  2533. ata_scsi_rbuf_fill(&args, ata_scsiop_mode_sense);
  2534. break;
  2535. case MODE_SELECT: /* unconditionally return */
  2536. case MODE_SELECT_10: /* bad-field-in-cdb */
  2537. ata_scsi_invalid_field(cmd, done);
  2538. break;
  2539. case READ_CAPACITY:
  2540. ata_scsi_rbuf_fill(&args, ata_scsiop_read_cap);
  2541. break;
  2542. case SERVICE_ACTION_IN:
  2543. if ((scsicmd[1] & 0x1f) == SAI_READ_CAPACITY_16)
  2544. ata_scsi_rbuf_fill(&args, ata_scsiop_read_cap);
  2545. else
  2546. ata_scsi_invalid_field(cmd, done);
  2547. break;
  2548. case REPORT_LUNS:
  2549. ata_scsi_rbuf_fill(&args, ata_scsiop_report_luns);
  2550. break;
  2551. case REQUEST_SENSE:
  2552. ata_scsi_set_sense(cmd, 0, 0, 0);
  2553. cmd->result = (DRIVER_SENSE << 24);
  2554. done(cmd);
  2555. break;
  2556. /* if we reach this, then writeback caching is disabled,
  2557. * turning this into a no-op.
  2558. */
  2559. case SYNCHRONIZE_CACHE:
  2560. /* fall through */
  2561. /* no-op's, complete with success */
  2562. case REZERO_UNIT:
  2563. case SEEK_6:
  2564. case SEEK_10:
  2565. case TEST_UNIT_READY:
  2566. ata_scsi_rbuf_fill(&args, ata_scsiop_noop);
  2567. break;
  2568. case SEND_DIAGNOSTIC:
  2569. tmp8 = scsicmd[1] & ~(1 << 3);
  2570. if ((tmp8 == 0x4) && (!scsicmd[3]) && (!scsicmd[4]))
  2571. ata_scsi_rbuf_fill(&args, ata_scsiop_noop);
  2572. else
  2573. ata_scsi_invalid_field(cmd, done);
  2574. break;
  2575. /* all other commands */
  2576. default:
  2577. ata_scsi_set_sense(cmd, ILLEGAL_REQUEST, 0x20, 0x0);
  2578. /* "Invalid command operation code" */
  2579. done(cmd);
  2580. break;
  2581. }
  2582. }
  2583. int ata_scsi_add_hosts(struct ata_host *host, struct scsi_host_template *sht)
  2584. {
  2585. int i, rc;
  2586. for (i = 0; i < host->n_ports; i++) {
  2587. struct ata_port *ap = host->ports[i];
  2588. struct Scsi_Host *shost;
  2589. rc = -ENOMEM;
  2590. shost = scsi_host_alloc(sht, sizeof(struct ata_port *));
  2591. if (!shost)
  2592. goto err_alloc;
  2593. *(struct ata_port **)&shost->hostdata[0] = ap;
  2594. ap->scsi_host = shost;
  2595. shost->transportt = &ata_scsi_transport_template;
  2596. shost->unique_id = ap->print_id;
  2597. shost->max_id = 16;
  2598. shost->max_lun = 1;
  2599. shost->max_channel = 1;
  2600. shost->max_cmd_len = 16;
  2601. /* Schedule policy is determined by ->qc_defer()
  2602. * callback and it needs to see every deferred qc.
  2603. * Set host_blocked to 1 to prevent SCSI midlayer from
  2604. * automatically deferring requests.
  2605. */
  2606. shost->max_host_blocked = 1;
  2607. rc = scsi_add_host(ap->scsi_host, ap->host->dev);
  2608. if (rc)
  2609. goto err_add;
  2610. }
  2611. return 0;
  2612. err_add:
  2613. scsi_host_put(host->ports[i]->scsi_host);
  2614. err_alloc:
  2615. while (--i >= 0) {
  2616. struct Scsi_Host *shost = host->ports[i]->scsi_host;
  2617. scsi_remove_host(shost);
  2618. scsi_host_put(shost);
  2619. }
  2620. return rc;
  2621. }
  2622. void ata_scsi_scan_host(struct ata_port *ap, int sync)
  2623. {
  2624. int tries = 5;
  2625. struct ata_device *last_failed_dev = NULL;
  2626. struct ata_link *link;
  2627. struct ata_device *dev;
  2628. if (ap->flags & ATA_FLAG_DISABLED)
  2629. return;
  2630. repeat:
  2631. ata_port_for_each_link(link, ap) {
  2632. ata_link_for_each_dev(dev, link) {
  2633. struct scsi_device *sdev;
  2634. int channel = 0, id = 0;
  2635. if (!ata_dev_enabled(dev) || dev->sdev)
  2636. continue;
  2637. if (ata_is_host_link(link))
  2638. id = dev->devno;
  2639. else
  2640. channel = link->pmp;
  2641. sdev = __scsi_add_device(ap->scsi_host, channel, id, 0,
  2642. NULL);
  2643. if (!IS_ERR(sdev)) {
  2644. dev->sdev = sdev;
  2645. scsi_device_put(sdev);
  2646. }
  2647. }
  2648. }
  2649. /* If we scanned while EH was in progress or allocation
  2650. * failure occurred, scan would have failed silently. Check
  2651. * whether all devices are attached.
  2652. */
  2653. ata_port_for_each_link(link, ap) {
  2654. ata_link_for_each_dev(dev, link) {
  2655. if (ata_dev_enabled(dev) && !dev->sdev)
  2656. goto exit_loop;
  2657. }
  2658. }
  2659. exit_loop:
  2660. if (!link)
  2661. return;
  2662. /* we're missing some SCSI devices */
  2663. if (sync) {
  2664. /* If caller requested synchrnous scan && we've made
  2665. * any progress, sleep briefly and repeat.
  2666. */
  2667. if (dev != last_failed_dev) {
  2668. msleep(100);
  2669. last_failed_dev = dev;
  2670. goto repeat;
  2671. }
  2672. /* We might be failing to detect boot device, give it
  2673. * a few more chances.
  2674. */
  2675. if (--tries) {
  2676. msleep(100);
  2677. goto repeat;
  2678. }
  2679. ata_port_printk(ap, KERN_ERR, "WARNING: synchronous SCSI scan "
  2680. "failed without making any progress,\n"
  2681. " switching to async\n");
  2682. }
  2683. queue_delayed_work(ata_aux_wq, &ap->hotplug_task,
  2684. round_jiffies_relative(HZ));
  2685. }
  2686. /**
  2687. * ata_scsi_offline_dev - offline attached SCSI device
  2688. * @dev: ATA device to offline attached SCSI device for
  2689. *
  2690. * This function is called from ata_eh_hotplug() and responsible
  2691. * for taking the SCSI device attached to @dev offline. This
  2692. * function is called with host lock which protects dev->sdev
  2693. * against clearing.
  2694. *
  2695. * LOCKING:
  2696. * spin_lock_irqsave(host lock)
  2697. *
  2698. * RETURNS:
  2699. * 1 if attached SCSI device exists, 0 otherwise.
  2700. */
  2701. int ata_scsi_offline_dev(struct ata_device *dev)
  2702. {
  2703. if (dev->sdev) {
  2704. scsi_device_set_state(dev->sdev, SDEV_OFFLINE);
  2705. return 1;
  2706. }
  2707. return 0;
  2708. }
  2709. /**
  2710. * ata_scsi_remove_dev - remove attached SCSI device
  2711. * @dev: ATA device to remove attached SCSI device for
  2712. *
  2713. * This function is called from ata_eh_scsi_hotplug() and
  2714. * responsible for removing the SCSI device attached to @dev.
  2715. *
  2716. * LOCKING:
  2717. * Kernel thread context (may sleep).
  2718. */
  2719. static void ata_scsi_remove_dev(struct ata_device *dev)
  2720. {
  2721. struct ata_port *ap = dev->link->ap;
  2722. struct scsi_device *sdev;
  2723. unsigned long flags;
  2724. /* Alas, we need to grab scan_mutex to ensure SCSI device
  2725. * state doesn't change underneath us and thus
  2726. * scsi_device_get() always succeeds. The mutex locking can
  2727. * be removed if there is __scsi_device_get() interface which
  2728. * increments reference counts regardless of device state.
  2729. */
  2730. mutex_lock(&ap->scsi_host->scan_mutex);
  2731. spin_lock_irqsave(ap->lock, flags);
  2732. /* clearing dev->sdev is protected by host lock */
  2733. sdev = dev->sdev;
  2734. dev->sdev = NULL;
  2735. if (sdev) {
  2736. /* If user initiated unplug races with us, sdev can go
  2737. * away underneath us after the host lock and
  2738. * scan_mutex are released. Hold onto it.
  2739. */
  2740. if (scsi_device_get(sdev) == 0) {
  2741. /* The following ensures the attached sdev is
  2742. * offline on return from ata_scsi_offline_dev()
  2743. * regardless it wins or loses the race
  2744. * against this function.
  2745. */
  2746. scsi_device_set_state(sdev, SDEV_OFFLINE);
  2747. } else {
  2748. WARN_ON(1);
  2749. sdev = NULL;
  2750. }
  2751. }
  2752. spin_unlock_irqrestore(ap->lock, flags);
  2753. mutex_unlock(&ap->scsi_host->scan_mutex);
  2754. if (sdev) {
  2755. ata_dev_printk(dev, KERN_INFO, "detaching (SCSI %s)\n",
  2756. sdev->sdev_gendev.bus_id);
  2757. scsi_remove_device(sdev);
  2758. scsi_device_put(sdev);
  2759. }
  2760. }
  2761. static void ata_scsi_handle_link_detach(struct ata_link *link)
  2762. {
  2763. struct ata_port *ap = link->ap;
  2764. struct ata_device *dev;
  2765. ata_link_for_each_dev(dev, link) {
  2766. unsigned long flags;
  2767. if (!(dev->flags & ATA_DFLAG_DETACHED))
  2768. continue;
  2769. spin_lock_irqsave(ap->lock, flags);
  2770. dev->flags &= ~ATA_DFLAG_DETACHED;
  2771. spin_unlock_irqrestore(ap->lock, flags);
  2772. ata_scsi_remove_dev(dev);
  2773. }
  2774. }
  2775. /**
  2776. * ata_scsi_media_change_notify - send media change event
  2777. * @atadev: Pointer to the disk device with media change event
  2778. *
  2779. * Tell the block layer to send a media change notification
  2780. * event.
  2781. *
  2782. * LOCKING:
  2783. * spin_lock_irqsave(host lock)
  2784. */
  2785. void ata_scsi_media_change_notify(struct ata_device *dev)
  2786. {
  2787. #ifdef OTHER_AN_PATCHES_HAVE_BEEN_APPLIED
  2788. if (dev->sdev)
  2789. scsi_device_event_notify(dev->sdev, SDEV_MEDIA_CHANGE);
  2790. #endif
  2791. }
  2792. /**
  2793. * ata_scsi_hotplug - SCSI part of hotplug
  2794. * @work: Pointer to ATA port to perform SCSI hotplug on
  2795. *
  2796. * Perform SCSI part of hotplug. It's executed from a separate
  2797. * workqueue after EH completes. This is necessary because SCSI
  2798. * hot plugging requires working EH and hot unplugging is
  2799. * synchronized with hot plugging with a mutex.
  2800. *
  2801. * LOCKING:
  2802. * Kernel thread context (may sleep).
  2803. */
  2804. void ata_scsi_hotplug(struct work_struct *work)
  2805. {
  2806. struct ata_port *ap =
  2807. container_of(work, struct ata_port, hotplug_task.work);
  2808. int i;
  2809. if (ap->pflags & ATA_PFLAG_UNLOADING) {
  2810. DPRINTK("ENTER/EXIT - unloading\n");
  2811. return;
  2812. }
  2813. DPRINTK("ENTER\n");
  2814. /* Unplug detached devices. We cannot use link iterator here
  2815. * because PMP links have to be scanned even if PMP is
  2816. * currently not attached. Iterate manually.
  2817. */
  2818. ata_scsi_handle_link_detach(&ap->link);
  2819. if (ap->pmp_link)
  2820. for (i = 0; i < SATA_PMP_MAX_PORTS; i++)
  2821. ata_scsi_handle_link_detach(&ap->pmp_link[i]);
  2822. /* scan for new ones */
  2823. ata_scsi_scan_host(ap, 0);
  2824. DPRINTK("EXIT\n");
  2825. }
  2826. /**
  2827. * ata_scsi_user_scan - indication for user-initiated bus scan
  2828. * @shost: SCSI host to scan
  2829. * @channel: Channel to scan
  2830. * @id: ID to scan
  2831. * @lun: LUN to scan
  2832. *
  2833. * This function is called when user explicitly requests bus
  2834. * scan. Set probe pending flag and invoke EH.
  2835. *
  2836. * LOCKING:
  2837. * SCSI layer (we don't care)
  2838. *
  2839. * RETURNS:
  2840. * Zero.
  2841. */
  2842. static int ata_scsi_user_scan(struct Scsi_Host *shost, unsigned int channel,
  2843. unsigned int id, unsigned int lun)
  2844. {
  2845. struct ata_port *ap = ata_shost_to_port(shost);
  2846. unsigned long flags;
  2847. int devno, rc = 0;
  2848. if (!ap->ops->error_handler)
  2849. return -EOPNOTSUPP;
  2850. if (lun != SCAN_WILD_CARD && lun)
  2851. return -EINVAL;
  2852. if (ap->nr_pmp_links == 0) {
  2853. if (channel != SCAN_WILD_CARD && channel)
  2854. return -EINVAL;
  2855. devno = id;
  2856. } else {
  2857. if (id != SCAN_WILD_CARD && id)
  2858. return -EINVAL;
  2859. devno = channel;
  2860. }
  2861. spin_lock_irqsave(ap->lock, flags);
  2862. if (devno == SCAN_WILD_CARD) {
  2863. struct ata_link *link;
  2864. ata_port_for_each_link(link, ap) {
  2865. struct ata_eh_info *ehi = &link->eh_info;
  2866. ehi->probe_mask |= (1 << ata_link_max_devices(link)) - 1;
  2867. ehi->action |= ATA_EH_SOFTRESET;
  2868. }
  2869. } else {
  2870. struct ata_device *dev = ata_find_dev(ap, devno);
  2871. if (dev) {
  2872. struct ata_eh_info *ehi = &dev->link->eh_info;
  2873. ehi->probe_mask |= 1 << dev->devno;
  2874. ehi->action |= ATA_EH_SOFTRESET;
  2875. ehi->flags |= ATA_EHI_RESUME_LINK;
  2876. } else
  2877. rc = -EINVAL;
  2878. }
  2879. if (rc == 0) {
  2880. ata_port_schedule_eh(ap);
  2881. spin_unlock_irqrestore(ap->lock, flags);
  2882. ata_port_wait_eh(ap);
  2883. } else
  2884. spin_unlock_irqrestore(ap->lock, flags);
  2885. return rc;
  2886. }
  2887. /**
  2888. * ata_scsi_dev_rescan - initiate scsi_rescan_device()
  2889. * @work: Pointer to ATA port to perform scsi_rescan_device()
  2890. *
  2891. * After ATA pass thru (SAT) commands are executed successfully,
  2892. * libata need to propagate the changes to SCSI layer. This
  2893. * function must be executed from ata_aux_wq such that sdev
  2894. * attach/detach don't race with rescan.
  2895. *
  2896. * LOCKING:
  2897. * Kernel thread context (may sleep).
  2898. */
  2899. void ata_scsi_dev_rescan(struct work_struct *work)
  2900. {
  2901. struct ata_port *ap =
  2902. container_of(work, struct ata_port, scsi_rescan_task);
  2903. struct ata_link *link;
  2904. struct ata_device *dev;
  2905. unsigned long flags;
  2906. spin_lock_irqsave(ap->lock, flags);
  2907. ata_port_for_each_link(link, ap) {
  2908. ata_link_for_each_dev(dev, link) {
  2909. struct scsi_device *sdev = dev->sdev;
  2910. if (!ata_dev_enabled(dev) || !sdev)
  2911. continue;
  2912. if (scsi_device_get(sdev))
  2913. continue;
  2914. spin_unlock_irqrestore(ap->lock, flags);
  2915. scsi_rescan_device(&(sdev->sdev_gendev));
  2916. scsi_device_put(sdev);
  2917. spin_lock_irqsave(ap->lock, flags);
  2918. }
  2919. }
  2920. spin_unlock_irqrestore(ap->lock, flags);
  2921. }
  2922. /**
  2923. * ata_sas_port_alloc - Allocate port for a SAS attached SATA device
  2924. * @host: ATA host container for all SAS ports
  2925. * @port_info: Information from low-level host driver
  2926. * @shost: SCSI host that the scsi device is attached to
  2927. *
  2928. * LOCKING:
  2929. * PCI/etc. bus probe sem.
  2930. *
  2931. * RETURNS:
  2932. * ata_port pointer on success / NULL on failure.
  2933. */
  2934. struct ata_port *ata_sas_port_alloc(struct ata_host *host,
  2935. struct ata_port_info *port_info,
  2936. struct Scsi_Host *shost)
  2937. {
  2938. struct ata_port *ap;
  2939. ap = ata_port_alloc(host);
  2940. if (!ap)
  2941. return NULL;
  2942. ap->port_no = 0;
  2943. ap->lock = shost->host_lock;
  2944. ap->pio_mask = port_info->pio_mask;
  2945. ap->mwdma_mask = port_info->mwdma_mask;
  2946. ap->udma_mask = port_info->udma_mask;
  2947. ap->flags |= port_info->flags;
  2948. ap->ops = port_info->port_ops;
  2949. ap->cbl = ATA_CBL_SATA;
  2950. return ap;
  2951. }
  2952. EXPORT_SYMBOL_GPL(ata_sas_port_alloc);
  2953. /**
  2954. * ata_sas_port_start - Set port up for dma.
  2955. * @ap: Port to initialize
  2956. *
  2957. * Called just after data structures for each port are
  2958. * initialized. Allocates DMA pad.
  2959. *
  2960. * May be used as the port_start() entry in ata_port_operations.
  2961. *
  2962. * LOCKING:
  2963. * Inherited from caller.
  2964. */
  2965. int ata_sas_port_start(struct ata_port *ap)
  2966. {
  2967. return ata_pad_alloc(ap, ap->dev);
  2968. }
  2969. EXPORT_SYMBOL_GPL(ata_sas_port_start);
  2970. /**
  2971. * ata_port_stop - Undo ata_sas_port_start()
  2972. * @ap: Port to shut down
  2973. *
  2974. * Frees the DMA pad.
  2975. *
  2976. * May be used as the port_stop() entry in ata_port_operations.
  2977. *
  2978. * LOCKING:
  2979. * Inherited from caller.
  2980. */
  2981. void ata_sas_port_stop(struct ata_port *ap)
  2982. {
  2983. ata_pad_free(ap, ap->dev);
  2984. }
  2985. EXPORT_SYMBOL_GPL(ata_sas_port_stop);
  2986. /**
  2987. * ata_sas_port_init - Initialize a SATA device
  2988. * @ap: SATA port to initialize
  2989. *
  2990. * LOCKING:
  2991. * PCI/etc. bus probe sem.
  2992. *
  2993. * RETURNS:
  2994. * Zero on success, non-zero on error.
  2995. */
  2996. int ata_sas_port_init(struct ata_port *ap)
  2997. {
  2998. int rc = ap->ops->port_start(ap);
  2999. if (!rc) {
  3000. ap->print_id = ata_print_id++;
  3001. rc = ata_bus_probe(ap);
  3002. }
  3003. return rc;
  3004. }
  3005. EXPORT_SYMBOL_GPL(ata_sas_port_init);
  3006. /**
  3007. * ata_sas_port_destroy - Destroy a SATA port allocated by ata_sas_port_alloc
  3008. * @ap: SATA port to destroy
  3009. *
  3010. */
  3011. void ata_sas_port_destroy(struct ata_port *ap)
  3012. {
  3013. if (ap->ops->port_stop)
  3014. ap->ops->port_stop(ap);
  3015. kfree(ap);
  3016. }
  3017. EXPORT_SYMBOL_GPL(ata_sas_port_destroy);
  3018. /**
  3019. * ata_sas_slave_configure - Default slave_config routine for libata devices
  3020. * @sdev: SCSI device to configure
  3021. * @ap: ATA port to which SCSI device is attached
  3022. *
  3023. * RETURNS:
  3024. * Zero.
  3025. */
  3026. int ata_sas_slave_configure(struct scsi_device *sdev, struct ata_port *ap)
  3027. {
  3028. ata_scsi_sdev_config(sdev);
  3029. ata_scsi_dev_config(sdev, ap->link.device);
  3030. return 0;
  3031. }
  3032. EXPORT_SYMBOL_GPL(ata_sas_slave_configure);
  3033. /**
  3034. * ata_sas_queuecmd - Issue SCSI cdb to libata-managed device
  3035. * @cmd: SCSI command to be sent
  3036. * @done: Completion function, called when command is complete
  3037. * @ap: ATA port to which the command is being sent
  3038. *
  3039. * RETURNS:
  3040. * Return value from __ata_scsi_queuecmd() if @cmd can be queued,
  3041. * 0 otherwise.
  3042. */
  3043. int ata_sas_queuecmd(struct scsi_cmnd *cmd, void (*done)(struct scsi_cmnd *),
  3044. struct ata_port *ap)
  3045. {
  3046. int rc = 0;
  3047. ata_scsi_dump_cdb(ap, cmd);
  3048. if (likely(ata_scsi_dev_enabled(ap->link.device)))
  3049. rc = __ata_scsi_queuecmd(cmd, done, ap->link.device);
  3050. else {
  3051. cmd->result = (DID_BAD_TARGET << 16);
  3052. done(cmd);
  3053. }
  3054. return rc;
  3055. }
  3056. EXPORT_SYMBOL_GPL(ata_sas_queuecmd);