選択できるのは25トピックまでです。 トピックは、先頭が英数字で、英数字とダッシュ('-')を使用した35文字以内のものにしてください。

scsi.c 27KB

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  1. /*
  2. * Copyright (C) 2006 Michael Brown <mbrown@fensystems.co.uk>.
  3. *
  4. * This program is free software; you can redistribute it and/or
  5. * modify it under the terms of the GNU General Public License as
  6. * published by the Free Software Foundation; either version 2 of the
  7. * License, or any later version.
  8. *
  9. * This program is distributed in the hope that it will be useful, but
  10. * WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  12. * General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU General Public License
  15. * along with this program; if not, write to the Free Software
  16. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
  17. * 02110-1301, USA.
  18. *
  19. * You can also choose to distribute this program under the terms of
  20. * the Unmodified Binary Distribution Licence (as given in the file
  21. * COPYING.UBDL), provided that you have satisfied its requirements.
  22. */
  23. FILE_LICENCE ( GPL2_OR_LATER_OR_UBDL );
  24. #include <stddef.h>
  25. #include <stdlib.h>
  26. #include <string.h>
  27. #include <byteswap.h>
  28. #include <errno.h>
  29. #include <ipxe/list.h>
  30. #include <ipxe/process.h>
  31. #include <ipxe/xfer.h>
  32. #include <ipxe/blockdev.h>
  33. #include <ipxe/scsi.h>
  34. /** @file
  35. *
  36. * SCSI block device
  37. *
  38. */
  39. /* Error numbers generated by SCSI sense data */
  40. #define EIO_NO_SENSE __einfo_error ( EINFO_EIO_NO_SENSE )
  41. #define EINFO_EIO_NO_SENSE \
  42. __einfo_uniqify ( EINFO_EIO, 0x00, "No sense" )
  43. #define EIO_RECOVERED_ERROR __einfo_error ( EINFO_EIO_RECOVERED_ERROR )
  44. #define EINFO_EIO_RECOVERED_ERROR \
  45. __einfo_uniqify ( EINFO_EIO, 0x01, "Recovered error" )
  46. #define EIO_NOT_READY __einfo_error ( EINFO_EIO_NOT_READY )
  47. #define EINFO_EIO_NOT_READY \
  48. __einfo_uniqify ( EINFO_EIO, 0x02, "Not ready" )
  49. #define EIO_MEDIUM_ERROR __einfo_error ( EINFO_EIO_MEDIUM_ERROR )
  50. #define EINFO_EIO_MEDIUM_ERROR \
  51. __einfo_uniqify ( EINFO_EIO, 0x03, "Medium error" )
  52. #define EIO_HARDWARE_ERROR __einfo_error ( EINFO_EIO_HARDWARE_ERROR )
  53. #define EINFO_EIO_HARDWARE_ERROR \
  54. __einfo_uniqify ( EINFO_EIO, 0x04, "Hardware error" )
  55. #define EIO_ILLEGAL_REQUEST __einfo_error ( EINFO_EIO_ILLEGAL_REQUEST )
  56. #define EINFO_EIO_ILLEGAL_REQUEST \
  57. __einfo_uniqify ( EINFO_EIO, 0x05, "Illegal request" )
  58. #define EIO_UNIT_ATTENTION __einfo_error ( EINFO_EIO_UNIT_ATTENTION )
  59. #define EINFO_EIO_UNIT_ATTENTION \
  60. __einfo_uniqify ( EINFO_EIO, 0x06, "Unit attention" )
  61. #define EIO_DATA_PROTECT __einfo_error ( EINFO_EIO_DATA_PROTECT )
  62. #define EINFO_EIO_DATA_PROTECT \
  63. __einfo_uniqify ( EINFO_EIO, 0x07, "Data protect" )
  64. #define EIO_BLANK_CHECK __einfo_error ( EINFO_EIO_BLANK_CHECK )
  65. #define EINFO_EIO_BLANK_CHECK \
  66. __einfo_uniqify ( EINFO_EIO, 0x08, "Blank check" )
  67. #define EIO_VENDOR_SPECIFIC __einfo_error ( EINFO_EIO_VENDOR_SPECIFIC )
  68. #define EINFO_EIO_VENDOR_SPECIFIC \
  69. __einfo_uniqify ( EINFO_EIO, 0x09, "Vendor specific" )
  70. #define EIO_COPY_ABORTED __einfo_error ( EINFO_EIO_COPY_ABORTED )
  71. #define EINFO_EIO_COPY_ABORTED \
  72. __einfo_uniqify ( EINFO_EIO, 0x0a, "Copy aborted" )
  73. #define EIO_ABORTED_COMMAND __einfo_error ( EINFO_EIO_ABORTED_COMMAND )
  74. #define EINFO_EIO_ABORTED_COMMAND \
  75. __einfo_uniqify ( EINFO_EIO, 0x0b, "Aborted command" )
  76. #define EIO_RESERVED __einfo_error ( EINFO_EIO_RESERVED )
  77. #define EINFO_EIO_RESERVED \
  78. __einfo_uniqify ( EINFO_EIO, 0x0c, "Reserved" )
  79. #define EIO_VOLUME_OVERFLOW __einfo_error ( EINFO_EIO_VOLUME_OVERFLOW )
  80. #define EINFO_EIO_VOLUME_OVERFLOW \
  81. __einfo_uniqify ( EINFO_EIO, 0x0d, "Volume overflow" )
  82. #define EIO_MISCOMPARE __einfo_error ( EINFO_EIO_MISCOMPARE )
  83. #define EINFO_EIO_MISCOMPARE \
  84. __einfo_uniqify ( EINFO_EIO, 0x0e, "Miscompare" )
  85. #define EIO_COMPLETED __einfo_error ( EINFO_EIO_COMPLETED )
  86. #define EINFO_EIO_COMPLETED \
  87. __einfo_uniqify ( EINFO_EIO, 0x0f, "Completed" )
  88. #define EIO_SENSE( key ) \
  89. EUNIQ ( EINFO_EIO, (key), EIO_NO_SENSE, EIO_RECOVERED_ERROR, \
  90. EIO_NOT_READY, EIO_MEDIUM_ERROR, EIO_HARDWARE_ERROR, \
  91. EIO_ILLEGAL_REQUEST, EIO_UNIT_ATTENTION, \
  92. EIO_DATA_PROTECT, EIO_BLANK_CHECK, EIO_VENDOR_SPECIFIC, \
  93. EIO_COPY_ABORTED, EIO_ABORTED_COMMAND, EIO_RESERVED, \
  94. EIO_VOLUME_OVERFLOW, EIO_MISCOMPARE, EIO_COMPLETED )
  95. /******************************************************************************
  96. *
  97. * Utility functions
  98. *
  99. ******************************************************************************
  100. */
  101. /**
  102. * Parse SCSI LUN
  103. *
  104. * @v lun_string LUN string representation
  105. * @v lun LUN to fill in
  106. * @ret rc Return status code
  107. */
  108. int scsi_parse_lun ( const char *lun_string, struct scsi_lun *lun ) {
  109. char *p;
  110. int i;
  111. memset ( lun, 0, sizeof ( *lun ) );
  112. if ( lun_string ) {
  113. p = ( char * ) lun_string;
  114. for ( i = 0 ; i < 4 ; i++ ) {
  115. lun->u16[i] = htons ( strtoul ( p, &p, 16 ) );
  116. if ( *p == '\0' )
  117. break;
  118. if ( *p != '-' )
  119. return -EINVAL;
  120. p++;
  121. }
  122. if ( *p )
  123. return -EINVAL;
  124. }
  125. return 0;
  126. }
  127. /**
  128. * Parse SCSI sense data
  129. *
  130. * @v data Raw sense data
  131. * @v len Length of raw sense data
  132. * @v sense Descriptor-format sense data to fill in
  133. */
  134. void scsi_parse_sense ( const void *data, size_t len,
  135. struct scsi_sns_descriptor *sense ) {
  136. const union scsi_sns *sns = data;
  137. /* Avoid returning uninitialised data */
  138. memset ( sense, 0, sizeof ( *sense ) );
  139. /* Copy, assuming descriptor-format data */
  140. if ( len < sizeof ( sns->desc ) )
  141. return;
  142. memcpy ( sense, &sns->desc, sizeof ( *sense ) );
  143. /* Convert fixed-format to descriptor-format, if applicable */
  144. if ( len < sizeof ( sns->fixed ) )
  145. return;
  146. if ( ! SCSI_SENSE_FIXED ( sns->code ) )
  147. return;
  148. sense->additional = sns->fixed.additional;
  149. }
  150. /******************************************************************************
  151. *
  152. * Interface methods
  153. *
  154. ******************************************************************************
  155. */
  156. /**
  157. * Issue SCSI command
  158. *
  159. * @v control SCSI control interface
  160. * @v data SCSI data interface
  161. * @v command SCSI command
  162. * @ret tag Command tag, or negative error
  163. */
  164. int scsi_command ( struct interface *control, struct interface *data,
  165. struct scsi_cmd *command ) {
  166. struct interface *dest;
  167. scsi_command_TYPE ( void * ) *op =
  168. intf_get_dest_op ( control, scsi_command, &dest );
  169. void *object = intf_object ( dest );
  170. int tap;
  171. if ( op ) {
  172. tap = op ( object, data, command );
  173. } else {
  174. /* Default is to fail to issue the command */
  175. tap = -EOPNOTSUPP;
  176. }
  177. intf_put ( dest );
  178. return tap;
  179. }
  180. /**
  181. * Report SCSI response
  182. *
  183. * @v interface SCSI command interface
  184. * @v response SCSI response
  185. */
  186. void scsi_response ( struct interface *intf, struct scsi_rsp *response ) {
  187. struct interface *dest;
  188. scsi_response_TYPE ( void * ) *op =
  189. intf_get_dest_op ( intf, scsi_response, &dest );
  190. void *object = intf_object ( dest );
  191. if ( op ) {
  192. op ( object, response );
  193. } else {
  194. /* Default is to ignore the response */
  195. }
  196. intf_put ( dest );
  197. }
  198. /******************************************************************************
  199. *
  200. * SCSI devices and commands
  201. *
  202. ******************************************************************************
  203. */
  204. /** A SCSI device */
  205. struct scsi_device {
  206. /** Reference count */
  207. struct refcnt refcnt;
  208. /** Block control interface */
  209. struct interface block;
  210. /** SCSI control interface */
  211. struct interface scsi;
  212. /** SCSI LUN */
  213. struct scsi_lun lun;
  214. /** Flags */
  215. unsigned int flags;
  216. /** TEST UNIT READY interface */
  217. struct interface ready;
  218. /** TEST UNIT READY process */
  219. struct process process;
  220. /** List of commands */
  221. struct list_head cmds;
  222. };
  223. /** SCSI device flags */
  224. enum scsi_device_flags {
  225. /** TEST UNIT READY has been issued */
  226. SCSIDEV_UNIT_TESTED = 0x0001,
  227. /** TEST UNIT READY has completed successfully */
  228. SCSIDEV_UNIT_READY = 0x0002,
  229. };
  230. /** A SCSI command */
  231. struct scsi_command {
  232. /** Reference count */
  233. struct refcnt refcnt;
  234. /** SCSI device */
  235. struct scsi_device *scsidev;
  236. /** List of SCSI commands */
  237. struct list_head list;
  238. /** Block data interface */
  239. struct interface block;
  240. /** SCSI data interface */
  241. struct interface scsi;
  242. /** Command type */
  243. struct scsi_command_type *type;
  244. /** Starting logical block address */
  245. uint64_t lba;
  246. /** Number of blocks */
  247. unsigned int count;
  248. /** Data buffer */
  249. userptr_t buffer;
  250. /** Length of data buffer */
  251. size_t len;
  252. /** Command tag */
  253. uint32_t tag;
  254. /** Private data */
  255. uint8_t priv[0];
  256. };
  257. /** A SCSI command type */
  258. struct scsi_command_type {
  259. /** Name */
  260. const char *name;
  261. /** Additional working space */
  262. size_t priv_len;
  263. /**
  264. * Construct SCSI command IU
  265. *
  266. * @v scsicmd SCSI command
  267. * @v command SCSI command IU
  268. */
  269. void ( * cmd ) ( struct scsi_command *scsicmd,
  270. struct scsi_cmd *command );
  271. /**
  272. * Handle SCSI command completion
  273. *
  274. * @v scsicmd SCSI command
  275. * @v rc Reason for completion
  276. */
  277. void ( * done ) ( struct scsi_command *scsicmd, int rc );
  278. };
  279. /**
  280. * Get reference to SCSI device
  281. *
  282. * @v scsidev SCSI device
  283. * @ret scsidev SCSI device
  284. */
  285. static inline __attribute__ (( always_inline )) struct scsi_device *
  286. scsidev_get ( struct scsi_device *scsidev ) {
  287. ref_get ( &scsidev->refcnt );
  288. return scsidev;
  289. }
  290. /**
  291. * Drop reference to SCSI device
  292. *
  293. * @v scsidev SCSI device
  294. */
  295. static inline __attribute__ (( always_inline )) void
  296. scsidev_put ( struct scsi_device *scsidev ) {
  297. ref_put ( &scsidev->refcnt );
  298. }
  299. /**
  300. * Get reference to SCSI command
  301. *
  302. * @v scsicmd SCSI command
  303. * @ret scsicmd SCSI command
  304. */
  305. static inline __attribute__ (( always_inline )) struct scsi_command *
  306. scsicmd_get ( struct scsi_command *scsicmd ) {
  307. ref_get ( &scsicmd->refcnt );
  308. return scsicmd;
  309. }
  310. /**
  311. * Drop reference to SCSI command
  312. *
  313. * @v scsicmd SCSI command
  314. */
  315. static inline __attribute__ (( always_inline )) void
  316. scsicmd_put ( struct scsi_command *scsicmd ) {
  317. ref_put ( &scsicmd->refcnt );
  318. }
  319. /**
  320. * Get SCSI command private data
  321. *
  322. * @v scsicmd SCSI command
  323. * @ret priv Private data
  324. */
  325. static inline __attribute__ (( always_inline )) void *
  326. scsicmd_priv ( struct scsi_command *scsicmd ) {
  327. return scsicmd->priv;
  328. }
  329. /**
  330. * Free SCSI command
  331. *
  332. * @v refcnt Reference count
  333. */
  334. static void scsicmd_free ( struct refcnt *refcnt ) {
  335. struct scsi_command *scsicmd =
  336. container_of ( refcnt, struct scsi_command, refcnt );
  337. /* Drop reference to SCSI device */
  338. scsidev_put ( scsicmd->scsidev );
  339. /* Free command */
  340. free ( scsicmd );
  341. }
  342. /**
  343. * Close SCSI command
  344. *
  345. * @v scsicmd SCSI command
  346. * @v rc Reason for close
  347. */
  348. static void scsicmd_close ( struct scsi_command *scsicmd, int rc ) {
  349. struct scsi_device *scsidev = scsicmd->scsidev;
  350. if ( rc != 0 ) {
  351. DBGC ( scsidev, "SCSI %p tag %08x closed: %s\n",
  352. scsidev, scsicmd->tag, strerror ( rc ) );
  353. }
  354. /* Remove from list of commands */
  355. list_del ( &scsicmd->list );
  356. /* Shut down interfaces */
  357. intfs_shutdown ( rc, &scsicmd->scsi, &scsicmd->block, NULL );
  358. /* Drop list's reference */
  359. scsicmd_put ( scsicmd );
  360. }
  361. /**
  362. * Construct and issue SCSI command
  363. *
  364. * @ret rc Return status code
  365. */
  366. static int scsicmd_command ( struct scsi_command *scsicmd ) {
  367. struct scsi_device *scsidev = scsicmd->scsidev;
  368. struct scsi_cmd command;
  369. int tag;
  370. int rc;
  371. /* Construct command */
  372. memset ( &command, 0, sizeof ( command ) );
  373. memcpy ( &command.lun, &scsidev->lun, sizeof ( command.lun ) );
  374. scsicmd->type->cmd ( scsicmd, &command );
  375. /* Issue command */
  376. if ( ( tag = scsi_command ( &scsidev->scsi, &scsicmd->scsi,
  377. &command ) ) < 0 ) {
  378. rc = tag;
  379. DBGC ( scsidev, "SCSI %p could not issue command: %s\n",
  380. scsidev, strerror ( rc ) );
  381. return rc;
  382. }
  383. /* Record tag */
  384. if ( scsicmd->tag ) {
  385. DBGC ( scsidev, "SCSI %p tag %08x is now tag %08x\n",
  386. scsidev, scsicmd->tag, tag );
  387. }
  388. scsicmd->tag = tag;
  389. DBGC2 ( scsidev, "SCSI %p tag %08x %s " SCSI_CDB_FORMAT "\n",
  390. scsidev, scsicmd->tag, scsicmd->type->name,
  391. SCSI_CDB_DATA ( command.cdb ) );
  392. return 0;
  393. }
  394. /**
  395. * Handle SCSI command completion
  396. *
  397. * @v scsicmd SCSI command
  398. * @v rc Reason for close
  399. */
  400. static void scsicmd_done ( struct scsi_command *scsicmd, int rc ) {
  401. /* Restart SCSI interface */
  402. intf_restart ( &scsicmd->scsi, rc );
  403. /* Hand over to the command completion handler */
  404. scsicmd->type->done ( scsicmd, rc );
  405. }
  406. /**
  407. * Handle SCSI response
  408. *
  409. * @v scsicmd SCSI command
  410. * @v response SCSI response
  411. */
  412. static void scsicmd_response ( struct scsi_command *scsicmd,
  413. struct scsi_rsp *response ) {
  414. struct scsi_device *scsidev = scsicmd->scsidev;
  415. size_t overrun;
  416. size_t underrun;
  417. int rc;
  418. if ( response->status == 0 ) {
  419. scsicmd_done ( scsicmd, 0 );
  420. } else {
  421. DBGC ( scsidev, "SCSI %p tag %08x status %02x",
  422. scsidev, scsicmd->tag, response->status );
  423. if ( response->overrun > 0 ) {
  424. overrun = response->overrun;
  425. DBGC ( scsidev, " overrun +%zd", overrun );
  426. } else if ( response->overrun < 0 ) {
  427. underrun = -(response->overrun);
  428. DBGC ( scsidev, " underrun -%zd", underrun );
  429. }
  430. DBGC ( scsidev, " sense %02x key %02x additional %04x\n",
  431. ( response->sense.code & SCSI_SENSE_CODE_MASK ),
  432. ( response->sense.key & SCSI_SENSE_KEY_MASK ),
  433. ntohs ( response->sense.additional ) );
  434. /* Construct error number from sense data */
  435. rc = -EIO_SENSE ( response->sense.key & SCSI_SENSE_KEY_MASK );
  436. scsicmd_done ( scsicmd, rc );
  437. }
  438. }
  439. /**
  440. * Construct SCSI READ command
  441. *
  442. * @v scsicmd SCSI command
  443. * @v command SCSI command IU
  444. */
  445. static void scsicmd_read_cmd ( struct scsi_command *scsicmd,
  446. struct scsi_cmd *command ) {
  447. if ( ( scsicmd->lba + scsicmd->count ) > SCSI_MAX_BLOCK_10 ) {
  448. /* Use READ (16) */
  449. command->cdb.read16.opcode = SCSI_OPCODE_READ_16;
  450. command->cdb.read16.lba = cpu_to_be64 ( scsicmd->lba );
  451. command->cdb.read16.len = cpu_to_be32 ( scsicmd->count );
  452. } else {
  453. /* Use READ (10) */
  454. command->cdb.read10.opcode = SCSI_OPCODE_READ_10;
  455. command->cdb.read10.lba = cpu_to_be32 ( scsicmd->lba );
  456. command->cdb.read10.len = cpu_to_be16 ( scsicmd->count );
  457. }
  458. command->data_in = scsicmd->buffer;
  459. command->data_in_len = scsicmd->len;
  460. }
  461. /** SCSI READ command type */
  462. static struct scsi_command_type scsicmd_read = {
  463. .name = "READ",
  464. .cmd = scsicmd_read_cmd,
  465. .done = scsicmd_close,
  466. };
  467. /**
  468. * Construct SCSI WRITE command
  469. *
  470. * @v scsicmd SCSI command
  471. * @v command SCSI command IU
  472. */
  473. static void scsicmd_write_cmd ( struct scsi_command *scsicmd,
  474. struct scsi_cmd *command ) {
  475. if ( ( scsicmd->lba + scsicmd->count ) > SCSI_MAX_BLOCK_10 ) {
  476. /* Use WRITE (16) */
  477. command->cdb.write16.opcode = SCSI_OPCODE_WRITE_16;
  478. command->cdb.write16.lba = cpu_to_be64 ( scsicmd->lba );
  479. command->cdb.write16.len = cpu_to_be32 ( scsicmd->count );
  480. } else {
  481. /* Use WRITE (10) */
  482. command->cdb.write10.opcode = SCSI_OPCODE_WRITE_10;
  483. command->cdb.write10.lba = cpu_to_be32 ( scsicmd->lba );
  484. command->cdb.write10.len = cpu_to_be16 ( scsicmd->count );
  485. }
  486. command->data_out = scsicmd->buffer;
  487. command->data_out_len = scsicmd->len;
  488. }
  489. /** SCSI WRITE command type */
  490. static struct scsi_command_type scsicmd_write = {
  491. .name = "WRITE",
  492. .cmd = scsicmd_write_cmd,
  493. .done = scsicmd_close,
  494. };
  495. /** SCSI READ CAPACITY private data */
  496. struct scsi_read_capacity_private {
  497. /** Use READ CAPACITY (16) */
  498. int use16;
  499. /** Data buffer for READ CAPACITY commands */
  500. union {
  501. /** Data buffer for READ CAPACITY (10) */
  502. struct scsi_capacity_10 capacity10;
  503. /** Data buffer for READ CAPACITY (16) */
  504. struct scsi_capacity_16 capacity16;
  505. } capacity;
  506. };
  507. /**
  508. * Construct SCSI READ CAPACITY command
  509. *
  510. * @v scsicmd SCSI command
  511. * @v command SCSI command IU
  512. */
  513. static void scsicmd_read_capacity_cmd ( struct scsi_command *scsicmd,
  514. struct scsi_cmd *command ) {
  515. struct scsi_read_capacity_private *priv = scsicmd_priv ( scsicmd );
  516. struct scsi_cdb_read_capacity_16 *readcap16 = &command->cdb.readcap16;
  517. struct scsi_cdb_read_capacity_10 *readcap10 = &command->cdb.readcap10;
  518. struct scsi_capacity_16 *capacity16 = &priv->capacity.capacity16;
  519. struct scsi_capacity_10 *capacity10 = &priv->capacity.capacity10;
  520. if ( priv->use16 ) {
  521. /* Use READ CAPACITY (16) */
  522. readcap16->opcode = SCSI_OPCODE_SERVICE_ACTION_IN;
  523. readcap16->service_action =
  524. SCSI_SERVICE_ACTION_READ_CAPACITY_16;
  525. readcap16->len = cpu_to_be32 ( sizeof ( *capacity16 ) );
  526. command->data_in = virt_to_user ( capacity16 );
  527. command->data_in_len = sizeof ( *capacity16 );
  528. } else {
  529. /* Use READ CAPACITY (10) */
  530. readcap10->opcode = SCSI_OPCODE_READ_CAPACITY_10;
  531. command->data_in = virt_to_user ( capacity10 );
  532. command->data_in_len = sizeof ( *capacity10 );
  533. }
  534. }
  535. /**
  536. * Handle SCSI READ CAPACITY command completion
  537. *
  538. * @v scsicmd SCSI command
  539. * @v rc Reason for completion
  540. */
  541. static void scsicmd_read_capacity_done ( struct scsi_command *scsicmd,
  542. int rc ) {
  543. struct scsi_read_capacity_private *priv = scsicmd_priv ( scsicmd );
  544. struct scsi_capacity_16 *capacity16 = &priv->capacity.capacity16;
  545. struct scsi_capacity_10 *capacity10 = &priv->capacity.capacity10;
  546. struct block_device_capacity capacity;
  547. /* Close if command failed */
  548. if ( rc != 0 ) {
  549. scsicmd_close ( scsicmd, rc );
  550. return;
  551. }
  552. /* Extract capacity */
  553. if ( priv->use16 ) {
  554. capacity.blocks = ( be64_to_cpu ( capacity16->lba ) + 1 );
  555. capacity.blksize = be32_to_cpu ( capacity16->blksize );
  556. } else {
  557. capacity.blocks = ( be32_to_cpu ( capacity10->lba ) + 1 );
  558. capacity.blksize = be32_to_cpu ( capacity10->blksize );
  559. /* If capacity range was exceeded (i.e. capacity.lba
  560. * was 0xffffffff, meaning that blockdev->blocks is
  561. * now zero), use READ CAPACITY (16) instead. READ
  562. * CAPACITY (16) is not mandatory, so we can't just
  563. * use it straight off.
  564. */
  565. if ( capacity.blocks == 0 ) {
  566. priv->use16 = 1;
  567. if ( ( rc = scsicmd_command ( scsicmd ) ) != 0 ) {
  568. scsicmd_close ( scsicmd, rc );
  569. return;
  570. }
  571. return;
  572. }
  573. }
  574. capacity.max_count = -1U;
  575. /* Return capacity to caller */
  576. block_capacity ( &scsicmd->block, &capacity );
  577. /* Close command */
  578. scsicmd_close ( scsicmd, 0 );
  579. }
  580. /** SCSI READ CAPACITY command type */
  581. static struct scsi_command_type scsicmd_read_capacity = {
  582. .name = "READ CAPACITY",
  583. .priv_len = sizeof ( struct scsi_read_capacity_private ),
  584. .cmd = scsicmd_read_capacity_cmd,
  585. .done = scsicmd_read_capacity_done,
  586. };
  587. /**
  588. * Construct SCSI TEST UNIT READY command
  589. *
  590. * @v scsicmd SCSI command
  591. * @v command SCSI command IU
  592. */
  593. static void scsicmd_test_unit_ready_cmd ( struct scsi_command *scsicmd __unused,
  594. struct scsi_cmd *command ) {
  595. struct scsi_cdb_test_unit_ready *testready = &command->cdb.testready;
  596. testready->opcode = SCSI_OPCODE_TEST_UNIT_READY;
  597. }
  598. /** SCSI TEST UNIT READY command type */
  599. static struct scsi_command_type scsicmd_test_unit_ready = {
  600. .name = "TEST UNIT READY",
  601. .cmd = scsicmd_test_unit_ready_cmd,
  602. .done = scsicmd_close,
  603. };
  604. /** SCSI command block interface operations */
  605. static struct interface_operation scsicmd_block_op[] = {
  606. INTF_OP ( intf_close, struct scsi_command *, scsicmd_close ),
  607. };
  608. /** SCSI command block interface descriptor */
  609. static struct interface_descriptor scsicmd_block_desc =
  610. INTF_DESC_PASSTHRU ( struct scsi_command, block,
  611. scsicmd_block_op, scsi );
  612. /** SCSI command SCSI interface operations */
  613. static struct interface_operation scsicmd_scsi_op[] = {
  614. INTF_OP ( intf_close, struct scsi_command *, scsicmd_done ),
  615. INTF_OP ( scsi_response, struct scsi_command *, scsicmd_response ),
  616. };
  617. /** SCSI command SCSI interface descriptor */
  618. static struct interface_descriptor scsicmd_scsi_desc =
  619. INTF_DESC_PASSTHRU ( struct scsi_command, scsi,
  620. scsicmd_scsi_op, block );
  621. /**
  622. * Create SCSI command
  623. *
  624. * @v scsidev SCSI device
  625. * @v block Block data interface
  626. * @v type SCSI command type
  627. * @v lba Starting logical block address
  628. * @v count Number of blocks to transfer
  629. * @v buffer Data buffer
  630. * @v len Length of data buffer
  631. * @ret rc Return status code
  632. */
  633. static int scsidev_command ( struct scsi_device *scsidev,
  634. struct interface *block,
  635. struct scsi_command_type *type,
  636. uint64_t lba, unsigned int count,
  637. userptr_t buffer, size_t len ) {
  638. struct scsi_command *scsicmd;
  639. int rc;
  640. /* Allocate and initialise structure */
  641. scsicmd = zalloc ( sizeof ( *scsicmd ) + type->priv_len );
  642. if ( ! scsicmd ) {
  643. rc = -ENOMEM;
  644. goto err_zalloc;
  645. }
  646. ref_init ( &scsicmd->refcnt, scsicmd_free );
  647. intf_init ( &scsicmd->block, &scsicmd_block_desc, &scsicmd->refcnt );
  648. intf_init ( &scsicmd->scsi, &scsicmd_scsi_desc,
  649. &scsicmd->refcnt );
  650. scsicmd->scsidev = scsidev_get ( scsidev );
  651. list_add ( &scsicmd->list, &scsidev->cmds );
  652. scsicmd->type = type;
  653. scsicmd->lba = lba;
  654. scsicmd->count = count;
  655. scsicmd->buffer = buffer;
  656. scsicmd->len = len;
  657. /* Issue SCSI command */
  658. if ( ( rc = scsicmd_command ( scsicmd ) ) != 0 )
  659. goto err_command;
  660. /* Attach to parent interface, transfer reference to list, and return */
  661. intf_plug_plug ( &scsicmd->block, block );
  662. return 0;
  663. err_command:
  664. scsicmd_close ( scsicmd, rc );
  665. ref_put ( &scsicmd->refcnt );
  666. err_zalloc:
  667. return rc;
  668. }
  669. /**
  670. * Issue SCSI block read
  671. *
  672. * @v scsidev SCSI device
  673. * @v block Block data interface
  674. * @v lba Starting logical block address
  675. * @v count Number of blocks to transfer
  676. * @v buffer Data buffer
  677. * @v len Length of data buffer
  678. * @ret rc Return status code
  679. */
  680. static int scsidev_read ( struct scsi_device *scsidev,
  681. struct interface *block,
  682. uint64_t lba, unsigned int count,
  683. userptr_t buffer, size_t len ) {
  684. return scsidev_command ( scsidev, block, &scsicmd_read,
  685. lba, count, buffer, len );
  686. }
  687. /**
  688. * Issue SCSI block write
  689. *
  690. * @v scsidev SCSI device
  691. * @v block Block data interface
  692. * @v lba Starting logical block address
  693. * @v count Number of blocks to transfer
  694. * @v buffer Data buffer
  695. * @v len Length of data buffer
  696. * @ret rc Return status code
  697. */
  698. static int scsidev_write ( struct scsi_device *scsidev,
  699. struct interface *block,
  700. uint64_t lba, unsigned int count,
  701. userptr_t buffer, size_t len ) {
  702. return scsidev_command ( scsidev, block, &scsicmd_write,
  703. lba, count, buffer, len );
  704. }
  705. /**
  706. * Read SCSI device capacity
  707. *
  708. * @v scsidev SCSI device
  709. * @v block Block data interface
  710. * @ret rc Return status code
  711. */
  712. static int scsidev_read_capacity ( struct scsi_device *scsidev,
  713. struct interface *block ) {
  714. return scsidev_command ( scsidev, block, &scsicmd_read_capacity,
  715. 0, 0, UNULL, 0 );
  716. }
  717. /**
  718. * Test to see if SCSI device is ready
  719. *
  720. * @v scsidev SCSI device
  721. * @v block Block data interface
  722. * @ret rc Return status code
  723. */
  724. static int scsidev_test_unit_ready ( struct scsi_device *scsidev,
  725. struct interface *block ) {
  726. return scsidev_command ( scsidev, block, &scsicmd_test_unit_ready,
  727. 0, 0, UNULL, 0 );
  728. }
  729. /**
  730. * Check SCSI device flow-control window
  731. *
  732. * @v scsidev SCSI device
  733. * @ret len Length of window
  734. */
  735. static size_t scsidev_window ( struct scsi_device *scsidev ) {
  736. /* Refuse commands until unit is confirmed ready */
  737. if ( ! ( scsidev->flags & SCSIDEV_UNIT_READY ) )
  738. return 0;
  739. return xfer_window ( &scsidev->scsi );
  740. }
  741. /**
  742. * Close SCSI device
  743. *
  744. * @v scsidev SCSI device
  745. * @v rc Reason for close
  746. */
  747. static void scsidev_close ( struct scsi_device *scsidev, int rc ) {
  748. struct scsi_command *scsicmd;
  749. struct scsi_command *tmp;
  750. /* Stop process */
  751. process_del ( &scsidev->process );
  752. /* Shut down interfaces */
  753. intfs_shutdown ( rc, &scsidev->block, &scsidev->scsi, &scsidev->ready,
  754. NULL );
  755. /* Shut down any remaining commands */
  756. list_for_each_entry_safe ( scsicmd, tmp, &scsidev->cmds, list )
  757. scsicmd_close ( scsicmd, rc );
  758. }
  759. /** SCSI device block interface operations */
  760. static struct interface_operation scsidev_block_op[] = {
  761. INTF_OP ( xfer_window, struct scsi_device *, scsidev_window ),
  762. INTF_OP ( block_read, struct scsi_device *, scsidev_read ),
  763. INTF_OP ( block_write, struct scsi_device *, scsidev_write ),
  764. INTF_OP ( block_read_capacity, struct scsi_device *,
  765. scsidev_read_capacity ),
  766. INTF_OP ( intf_close, struct scsi_device *, scsidev_close ),
  767. };
  768. /** SCSI device block interface descriptor */
  769. static struct interface_descriptor scsidev_block_desc =
  770. INTF_DESC_PASSTHRU ( struct scsi_device, block,
  771. scsidev_block_op, scsi );
  772. /**
  773. * Handle SCSI TEST UNIT READY response
  774. *
  775. * @v scsidev SCSI device
  776. * @v rc Reason for close
  777. */
  778. static void scsidev_ready ( struct scsi_device *scsidev, int rc ) {
  779. /* Shut down interface */
  780. intf_shutdown ( &scsidev->ready, rc );
  781. /* Close device on failure */
  782. if ( rc != 0 ) {
  783. DBGC ( scsidev, "SCSI %p not ready: %s\n",
  784. scsidev, strerror ( rc ) );
  785. scsidev_close ( scsidev, rc );
  786. return;
  787. }
  788. /* Mark device as ready */
  789. scsidev->flags |= SCSIDEV_UNIT_READY;
  790. xfer_window_changed ( &scsidev->block );
  791. DBGC ( scsidev, "SCSI %p unit is ready\n", scsidev );
  792. }
  793. /** SCSI device TEST UNIT READY interface operations */
  794. static struct interface_operation scsidev_ready_op[] = {
  795. INTF_OP ( intf_close, struct scsi_device *, scsidev_ready ),
  796. };
  797. /** SCSI device TEST UNIT READY interface descriptor */
  798. static struct interface_descriptor scsidev_ready_desc =
  799. INTF_DESC ( struct scsi_device, ready, scsidev_ready_op );
  800. /**
  801. * SCSI TEST UNIT READY process
  802. *
  803. * @v scsidev SCSI device
  804. */
  805. static void scsidev_step ( struct scsi_device *scsidev ) {
  806. int rc;
  807. /* Do nothing if we have already issued TEST UNIT READY */
  808. if ( scsidev->flags & SCSIDEV_UNIT_TESTED )
  809. return;
  810. /* Wait until underlying SCSI device is ready */
  811. if ( xfer_window ( &scsidev->scsi ) == 0 )
  812. return;
  813. DBGC ( scsidev, "SCSI %p waiting for unit to become ready\n",
  814. scsidev );
  815. /* Mark TEST UNIT READY as sent */
  816. scsidev->flags |= SCSIDEV_UNIT_TESTED;
  817. /* Issue TEST UNIT READY command */
  818. if ( ( rc = scsidev_test_unit_ready ( scsidev, &scsidev->ready )) !=0){
  819. scsidev_close ( scsidev, rc );
  820. return;
  821. }
  822. }
  823. /** SCSI device SCSI interface operations */
  824. static struct interface_operation scsidev_scsi_op[] = {
  825. INTF_OP ( xfer_window_changed, struct scsi_device *, scsidev_step ),
  826. INTF_OP ( intf_close, struct scsi_device *, scsidev_close ),
  827. };
  828. /** SCSI device SCSI interface descriptor */
  829. static struct interface_descriptor scsidev_scsi_desc =
  830. INTF_DESC_PASSTHRU ( struct scsi_device, scsi,
  831. scsidev_scsi_op, block );
  832. /** SCSI device process descriptor */
  833. static struct process_descriptor scsidev_process_desc =
  834. PROC_DESC_ONCE ( struct scsi_device, process, scsidev_step );
  835. /**
  836. * Open SCSI device
  837. *
  838. * @v block Block control interface
  839. * @v scsi SCSI control interface
  840. * @v lun SCSI LUN
  841. * @ret rc Return status code
  842. */
  843. int scsi_open ( struct interface *block, struct interface *scsi,
  844. struct scsi_lun *lun ) {
  845. struct scsi_device *scsidev;
  846. /* Allocate and initialise structure */
  847. scsidev = zalloc ( sizeof ( *scsidev ) );
  848. if ( ! scsidev )
  849. return -ENOMEM;
  850. ref_init ( &scsidev->refcnt, NULL );
  851. intf_init ( &scsidev->block, &scsidev_block_desc, &scsidev->refcnt );
  852. intf_init ( &scsidev->scsi, &scsidev_scsi_desc, &scsidev->refcnt );
  853. intf_init ( &scsidev->ready, &scsidev_ready_desc, &scsidev->refcnt );
  854. process_init ( &scsidev->process, &scsidev_process_desc,
  855. &scsidev->refcnt );
  856. INIT_LIST_HEAD ( &scsidev->cmds );
  857. memcpy ( &scsidev->lun, lun, sizeof ( scsidev->lun ) );
  858. DBGC ( scsidev, "SCSI %p created for LUN " SCSI_LUN_FORMAT "\n",
  859. scsidev, SCSI_LUN_DATA ( scsidev->lun ) );
  860. /* Attach to SCSI and parent interfaces, mortalise self, and return */
  861. intf_plug_plug ( &scsidev->scsi, scsi );
  862. intf_plug_plug ( &scsidev->block, block );
  863. ref_put ( &scsidev->refcnt );
  864. return 0;
  865. }