scsi_debug.c 114 KB

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  1. /*
  2. * vvvvvvvvvvvvvvvvvvvvvvv Original vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv
  3. * Copyright (C) 1992 Eric Youngdale
  4. * Simulate a host adapter with 2 disks attached. Do a lot of checking
  5. * to make sure that we are not getting blocks mixed up, and PANIC if
  6. * anything out of the ordinary is seen.
  7. * ^^^^^^^^^^^^^^^^^^^^^^^ Original ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
  8. *
  9. * This version is more generic, simulating a variable number of disk
  10. * (or disk like devices) sharing a common amount of RAM. To be more
  11. * realistic, the simulated devices have the transport attributes of
  12. * SAS disks.
  13. *
  14. *
  15. * For documentation see http://www.torque.net/sg/sdebug26.html
  16. *
  17. * D. Gilbert (dpg) work for Magneto-Optical device test [20010421]
  18. * dpg: work for devfs large number of disks [20010809]
  19. * forked for lk 2.5 series [20011216, 20020101]
  20. * use vmalloc() more inquiry+mode_sense [20020302]
  21. * add timers for delayed responses [20020721]
  22. * Patrick Mansfield <patmans@us.ibm.com> max_luns+scsi_level [20021031]
  23. * Mike Anderson <andmike@us.ibm.com> sysfs work [20021118]
  24. * dpg: change style of boot options to "scsi_debug.num_tgts=2" and
  25. * module options to "modprobe scsi_debug num_tgts=2" [20021221]
  26. */
  27. #include <linux/module.h>
  28. #include <linux/kernel.h>
  29. #include <linux/errno.h>
  30. #include <linux/timer.h>
  31. #include <linux/types.h>
  32. #include <linux/string.h>
  33. #include <linux/genhd.h>
  34. #include <linux/fs.h>
  35. #include <linux/init.h>
  36. #include <linux/proc_fs.h>
  37. #include <linux/vmalloc.h>
  38. #include <linux/moduleparam.h>
  39. #include <linux/scatterlist.h>
  40. #include <linux/blkdev.h>
  41. #include <linux/crc-t10dif.h>
  42. #include <net/checksum.h>
  43. #include <asm/unaligned.h>
  44. #include <scsi/scsi.h>
  45. #include <scsi/scsi_cmnd.h>
  46. #include <scsi/scsi_device.h>
  47. #include <scsi/scsi_host.h>
  48. #include <scsi/scsicam.h>
  49. #include <scsi/scsi_eh.h>
  50. #include <scsi/scsi_dbg.h>
  51. #include "sd.h"
  52. #include "scsi_logging.h"
  53. #define SCSI_DEBUG_VERSION "1.81"
  54. static const char * scsi_debug_version_date = "20070104";
  55. /* Additional Sense Code (ASC) */
  56. #define NO_ADDITIONAL_SENSE 0x0
  57. #define LOGICAL_UNIT_NOT_READY 0x4
  58. #define UNRECOVERED_READ_ERR 0x11
  59. #define PARAMETER_LIST_LENGTH_ERR 0x1a
  60. #define INVALID_OPCODE 0x20
  61. #define ADDR_OUT_OF_RANGE 0x21
  62. #define INVALID_COMMAND_OPCODE 0x20
  63. #define INVALID_FIELD_IN_CDB 0x24
  64. #define INVALID_FIELD_IN_PARAM_LIST 0x26
  65. #define POWERON_RESET 0x29
  66. #define SAVING_PARAMS_UNSUP 0x39
  67. #define TRANSPORT_PROBLEM 0x4b
  68. #define THRESHOLD_EXCEEDED 0x5d
  69. #define LOW_POWER_COND_ON 0x5e
  70. /* Additional Sense Code Qualifier (ASCQ) */
  71. #define ACK_NAK_TO 0x3
  72. #define SDEBUG_TAGGED_QUEUING 0 /* 0 | MSG_SIMPLE_TAG | MSG_ORDERED_TAG */
  73. /* Default values for driver parameters */
  74. #define DEF_NUM_HOST 1
  75. #define DEF_NUM_TGTS 1
  76. #define DEF_MAX_LUNS 1
  77. /* With these defaults, this driver will make 1 host with 1 target
  78. * (id 0) containing 1 logical unit (lun 0). That is 1 device.
  79. */
  80. #define DEF_DELAY 1
  81. #define DEF_DEV_SIZE_MB 8
  82. #define DEF_EVERY_NTH 0
  83. #define DEF_NUM_PARTS 0
  84. #define DEF_OPTS 0
  85. #define DEF_SCSI_LEVEL 5 /* INQUIRY, byte2 [5->SPC-3] */
  86. #define DEF_PTYPE 0
  87. #define DEF_D_SENSE 0
  88. #define DEF_NO_LUN_0 0
  89. #define DEF_VIRTUAL_GB 0
  90. #define DEF_FAKE_RW 0
  91. #define DEF_VPD_USE_HOSTNO 1
  92. #define DEF_SECTOR_SIZE 512
  93. #define DEF_DIX 0
  94. #define DEF_DIF 0
  95. #define DEF_GUARD 0
  96. #define DEF_ATO 1
  97. #define DEF_PHYSBLK_EXP 0
  98. #define DEF_LOWEST_ALIGNED 0
  99. #define DEF_UNMAP_MAX_BLOCKS 0
  100. #define DEF_UNMAP_MAX_DESC 0
  101. #define DEF_UNMAP_GRANULARITY 0
  102. #define DEF_UNMAP_ALIGNMENT 0
  103. /* bit mask values for scsi_debug_opts */
  104. #define SCSI_DEBUG_OPT_NOISE 1
  105. #define SCSI_DEBUG_OPT_MEDIUM_ERR 2
  106. #define SCSI_DEBUG_OPT_TIMEOUT 4
  107. #define SCSI_DEBUG_OPT_RECOVERED_ERR 8
  108. #define SCSI_DEBUG_OPT_TRANSPORT_ERR 16
  109. #define SCSI_DEBUG_OPT_DIF_ERR 32
  110. #define SCSI_DEBUG_OPT_DIX_ERR 64
  111. /* When "every_nth" > 0 then modulo "every_nth" commands:
  112. * - a no response is simulated if SCSI_DEBUG_OPT_TIMEOUT is set
  113. * - a RECOVERED_ERROR is simulated on successful read and write
  114. * commands if SCSI_DEBUG_OPT_RECOVERED_ERR is set.
  115. * - a TRANSPORT_ERROR is simulated on successful read and write
  116. * commands if SCSI_DEBUG_OPT_TRANSPORT_ERR is set.
  117. *
  118. * When "every_nth" < 0 then after "- every_nth" commands:
  119. * - a no response is simulated if SCSI_DEBUG_OPT_TIMEOUT is set
  120. * - a RECOVERED_ERROR is simulated on successful read and write
  121. * commands if SCSI_DEBUG_OPT_RECOVERED_ERR is set.
  122. * - a TRANSPORT_ERROR is simulated on successful read and write
  123. * commands if SCSI_DEBUG_OPT_TRANSPORT_ERR is set.
  124. * This will continue until some other action occurs (e.g. the user
  125. * writing a new value (other than -1 or 1) to every_nth via sysfs).
  126. */
  127. /* when 1==SCSI_DEBUG_OPT_MEDIUM_ERR, a medium error is simulated at this
  128. * sector on read commands: */
  129. #define OPT_MEDIUM_ERR_ADDR 0x1234 /* that's sector 4660 in decimal */
  130. /* If REPORT LUNS has luns >= 256 it can choose "flat space" (value 1)
  131. * or "peripheral device" addressing (value 0) */
  132. #define SAM2_LUN_ADDRESS_METHOD 0
  133. #define SAM2_WLUN_REPORT_LUNS 0xc101
  134. static int scsi_debug_add_host = DEF_NUM_HOST;
  135. static int scsi_debug_delay = DEF_DELAY;
  136. static int scsi_debug_dev_size_mb = DEF_DEV_SIZE_MB;
  137. static int scsi_debug_every_nth = DEF_EVERY_NTH;
  138. static int scsi_debug_max_luns = DEF_MAX_LUNS;
  139. static int scsi_debug_num_parts = DEF_NUM_PARTS;
  140. static int scsi_debug_num_tgts = DEF_NUM_TGTS; /* targets per host */
  141. static int scsi_debug_opts = DEF_OPTS;
  142. static int scsi_debug_scsi_level = DEF_SCSI_LEVEL;
  143. static int scsi_debug_ptype = DEF_PTYPE; /* SCSI peripheral type (0==disk) */
  144. static int scsi_debug_dsense = DEF_D_SENSE;
  145. static int scsi_debug_no_lun_0 = DEF_NO_LUN_0;
  146. static int scsi_debug_virtual_gb = DEF_VIRTUAL_GB;
  147. static int scsi_debug_fake_rw = DEF_FAKE_RW;
  148. static int scsi_debug_vpd_use_hostno = DEF_VPD_USE_HOSTNO;
  149. static int scsi_debug_sector_size = DEF_SECTOR_SIZE;
  150. static int scsi_debug_dix = DEF_DIX;
  151. static int scsi_debug_dif = DEF_DIF;
  152. static int scsi_debug_guard = DEF_GUARD;
  153. static int scsi_debug_ato = DEF_ATO;
  154. static int scsi_debug_physblk_exp = DEF_PHYSBLK_EXP;
  155. static int scsi_debug_lowest_aligned = DEF_LOWEST_ALIGNED;
  156. static int scsi_debug_unmap_max_desc = DEF_UNMAP_MAX_DESC;
  157. static int scsi_debug_unmap_max_blocks = DEF_UNMAP_MAX_BLOCKS;
  158. static int scsi_debug_unmap_granularity = DEF_UNMAP_GRANULARITY;
  159. static int scsi_debug_unmap_alignment = DEF_UNMAP_ALIGNMENT;
  160. static int scsi_debug_cmnd_count = 0;
  161. #define DEV_READONLY(TGT) (0)
  162. #define DEV_REMOVEABLE(TGT) (0)
  163. static unsigned int sdebug_store_sectors;
  164. static sector_t sdebug_capacity; /* in sectors */
  165. /* old BIOS stuff, kernel may get rid of them but some mode sense pages
  166. may still need them */
  167. static int sdebug_heads; /* heads per disk */
  168. static int sdebug_cylinders_per; /* cylinders per surface */
  169. static int sdebug_sectors_per; /* sectors per cylinder */
  170. #define SDEBUG_MAX_PARTS 4
  171. #define SDEBUG_SENSE_LEN 32
  172. #define SCSI_DEBUG_CANQUEUE 255
  173. #define SCSI_DEBUG_MAX_CMD_LEN 32
  174. struct sdebug_dev_info {
  175. struct list_head dev_list;
  176. unsigned char sense_buff[SDEBUG_SENSE_LEN]; /* weak nexus */
  177. unsigned int channel;
  178. unsigned int target;
  179. unsigned int lun;
  180. struct sdebug_host_info *sdbg_host;
  181. unsigned int wlun;
  182. char reset;
  183. char stopped;
  184. char used;
  185. };
  186. struct sdebug_host_info {
  187. struct list_head host_list;
  188. struct Scsi_Host *shost;
  189. struct device dev;
  190. struct list_head dev_info_list;
  191. };
  192. #define to_sdebug_host(d) \
  193. container_of(d, struct sdebug_host_info, dev)
  194. static LIST_HEAD(sdebug_host_list);
  195. static DEFINE_SPINLOCK(sdebug_host_list_lock);
  196. typedef void (* done_funct_t) (struct scsi_cmnd *);
  197. struct sdebug_queued_cmd {
  198. int in_use;
  199. struct timer_list cmnd_timer;
  200. done_funct_t done_funct;
  201. struct scsi_cmnd * a_cmnd;
  202. int scsi_result;
  203. };
  204. static struct sdebug_queued_cmd queued_arr[SCSI_DEBUG_CANQUEUE];
  205. static unsigned char * fake_storep; /* ramdisk storage */
  206. static unsigned char *dif_storep; /* protection info */
  207. static void *map_storep; /* provisioning map */
  208. static unsigned long map_size;
  209. static int num_aborts = 0;
  210. static int num_dev_resets = 0;
  211. static int num_bus_resets = 0;
  212. static int num_host_resets = 0;
  213. static int dix_writes;
  214. static int dix_reads;
  215. static int dif_errors;
  216. static DEFINE_SPINLOCK(queued_arr_lock);
  217. static DEFINE_RWLOCK(atomic_rw);
  218. static char sdebug_proc_name[] = "scsi_debug";
  219. static struct bus_type pseudo_lld_bus;
  220. static inline sector_t dif_offset(sector_t sector)
  221. {
  222. return sector << 3;
  223. }
  224. static struct device_driver sdebug_driverfs_driver = {
  225. .name = sdebug_proc_name,
  226. .bus = &pseudo_lld_bus,
  227. };
  228. static const int check_condition_result =
  229. (DRIVER_SENSE << 24) | SAM_STAT_CHECK_CONDITION;
  230. static const int illegal_condition_result =
  231. (DRIVER_SENSE << 24) | (DID_ABORT << 16) | SAM_STAT_CHECK_CONDITION;
  232. static unsigned char ctrl_m_pg[] = {0xa, 10, 2, 0, 0, 0, 0, 0,
  233. 0, 0, 0x2, 0x4b};
  234. static unsigned char iec_m_pg[] = {0x1c, 0xa, 0x08, 0, 0, 0, 0, 0,
  235. 0, 0, 0x0, 0x0};
  236. static int sdebug_add_adapter(void);
  237. static void sdebug_remove_adapter(void);
  238. static void sdebug_max_tgts_luns(void)
  239. {
  240. struct sdebug_host_info *sdbg_host;
  241. struct Scsi_Host *hpnt;
  242. spin_lock(&sdebug_host_list_lock);
  243. list_for_each_entry(sdbg_host, &sdebug_host_list, host_list) {
  244. hpnt = sdbg_host->shost;
  245. if ((hpnt->this_id >= 0) &&
  246. (scsi_debug_num_tgts > hpnt->this_id))
  247. hpnt->max_id = scsi_debug_num_tgts + 1;
  248. else
  249. hpnt->max_id = scsi_debug_num_tgts;
  250. /* scsi_debug_max_luns; */
  251. hpnt->max_lun = SAM2_WLUN_REPORT_LUNS;
  252. }
  253. spin_unlock(&sdebug_host_list_lock);
  254. }
  255. static void mk_sense_buffer(struct sdebug_dev_info *devip, int key,
  256. int asc, int asq)
  257. {
  258. unsigned char *sbuff;
  259. sbuff = devip->sense_buff;
  260. memset(sbuff, 0, SDEBUG_SENSE_LEN);
  261. scsi_build_sense_buffer(scsi_debug_dsense, sbuff, key, asc, asq);
  262. if (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts)
  263. printk(KERN_INFO "scsi_debug: [sense_key,asc,ascq]: "
  264. "[0x%x,0x%x,0x%x]\n", key, asc, asq);
  265. }
  266. static void get_data_transfer_info(unsigned char *cmd,
  267. unsigned long long *lba, unsigned int *num,
  268. u32 *ei_lba)
  269. {
  270. *ei_lba = 0;
  271. switch (*cmd) {
  272. case VARIABLE_LENGTH_CMD:
  273. *lba = (u64)cmd[19] | (u64)cmd[18] << 8 |
  274. (u64)cmd[17] << 16 | (u64)cmd[16] << 24 |
  275. (u64)cmd[15] << 32 | (u64)cmd[14] << 40 |
  276. (u64)cmd[13] << 48 | (u64)cmd[12] << 56;
  277. *ei_lba = (u32)cmd[23] | (u32)cmd[22] << 8 |
  278. (u32)cmd[21] << 16 | (u32)cmd[20] << 24;
  279. *num = (u32)cmd[31] | (u32)cmd[30] << 8 | (u32)cmd[29] << 16 |
  280. (u32)cmd[28] << 24;
  281. break;
  282. case WRITE_SAME_16:
  283. case WRITE_16:
  284. case READ_16:
  285. *lba = (u64)cmd[9] | (u64)cmd[8] << 8 |
  286. (u64)cmd[7] << 16 | (u64)cmd[6] << 24 |
  287. (u64)cmd[5] << 32 | (u64)cmd[4] << 40 |
  288. (u64)cmd[3] << 48 | (u64)cmd[2] << 56;
  289. *num = (u32)cmd[13] | (u32)cmd[12] << 8 | (u32)cmd[11] << 16 |
  290. (u32)cmd[10] << 24;
  291. break;
  292. case WRITE_12:
  293. case READ_12:
  294. *lba = (u32)cmd[5] | (u32)cmd[4] << 8 | (u32)cmd[3] << 16 |
  295. (u32)cmd[2] << 24;
  296. *num = (u32)cmd[9] | (u32)cmd[8] << 8 | (u32)cmd[7] << 16 |
  297. (u32)cmd[6] << 24;
  298. break;
  299. case WRITE_SAME:
  300. case WRITE_10:
  301. case READ_10:
  302. case XDWRITEREAD_10:
  303. *lba = (u32)cmd[5] | (u32)cmd[4] << 8 | (u32)cmd[3] << 16 |
  304. (u32)cmd[2] << 24;
  305. *num = (u32)cmd[8] | (u32)cmd[7] << 8;
  306. break;
  307. case WRITE_6:
  308. case READ_6:
  309. *lba = (u32)cmd[3] | (u32)cmd[2] << 8 |
  310. (u32)(cmd[1] & 0x1f) << 16;
  311. *num = (0 == cmd[4]) ? 256 : cmd[4];
  312. break;
  313. default:
  314. break;
  315. }
  316. }
  317. static int scsi_debug_ioctl(struct scsi_device *dev, int cmd, void __user *arg)
  318. {
  319. if (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts) {
  320. printk(KERN_INFO "scsi_debug: ioctl: cmd=0x%x\n", cmd);
  321. }
  322. return -EINVAL;
  323. /* return -ENOTTY; // correct return but upsets fdisk */
  324. }
  325. static int check_readiness(struct scsi_cmnd * SCpnt, int reset_only,
  326. struct sdebug_dev_info * devip)
  327. {
  328. if (devip->reset) {
  329. if (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts)
  330. printk(KERN_INFO "scsi_debug: Reporting Unit "
  331. "attention: power on reset\n");
  332. devip->reset = 0;
  333. mk_sense_buffer(devip, UNIT_ATTENTION, POWERON_RESET, 0);
  334. return check_condition_result;
  335. }
  336. if ((0 == reset_only) && devip->stopped) {
  337. if (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts)
  338. printk(KERN_INFO "scsi_debug: Reporting Not "
  339. "ready: initializing command required\n");
  340. mk_sense_buffer(devip, NOT_READY, LOGICAL_UNIT_NOT_READY,
  341. 0x2);
  342. return check_condition_result;
  343. }
  344. return 0;
  345. }
  346. /* Returns 0 if ok else (DID_ERROR << 16). Sets scp->resid . */
  347. static int fill_from_dev_buffer(struct scsi_cmnd *scp, unsigned char *arr,
  348. int arr_len)
  349. {
  350. int act_len;
  351. struct scsi_data_buffer *sdb = scsi_in(scp);
  352. if (!sdb->length)
  353. return 0;
  354. if (!(scsi_bidi_cmnd(scp) || scp->sc_data_direction == DMA_FROM_DEVICE))
  355. return (DID_ERROR << 16);
  356. act_len = sg_copy_from_buffer(sdb->table.sgl, sdb->table.nents,
  357. arr, arr_len);
  358. if (sdb->resid)
  359. sdb->resid -= act_len;
  360. else
  361. sdb->resid = scsi_bufflen(scp) - act_len;
  362. return 0;
  363. }
  364. /* Returns number of bytes fetched into 'arr' or -1 if error. */
  365. static int fetch_to_dev_buffer(struct scsi_cmnd *scp, unsigned char *arr,
  366. int arr_len)
  367. {
  368. if (!scsi_bufflen(scp))
  369. return 0;
  370. if (!(scsi_bidi_cmnd(scp) || scp->sc_data_direction == DMA_TO_DEVICE))
  371. return -1;
  372. return scsi_sg_copy_to_buffer(scp, arr, arr_len);
  373. }
  374. static const char * inq_vendor_id = "Linux ";
  375. static const char * inq_product_id = "scsi_debug ";
  376. static const char * inq_product_rev = "0004";
  377. static int inquiry_evpd_83(unsigned char * arr, int port_group_id,
  378. int target_dev_id, int dev_id_num,
  379. const char * dev_id_str,
  380. int dev_id_str_len)
  381. {
  382. int num, port_a;
  383. char b[32];
  384. port_a = target_dev_id + 1;
  385. /* T10 vendor identifier field format (faked) */
  386. arr[0] = 0x2; /* ASCII */
  387. arr[1] = 0x1;
  388. arr[2] = 0x0;
  389. memcpy(&arr[4], inq_vendor_id, 8);
  390. memcpy(&arr[12], inq_product_id, 16);
  391. memcpy(&arr[28], dev_id_str, dev_id_str_len);
  392. num = 8 + 16 + dev_id_str_len;
  393. arr[3] = num;
  394. num += 4;
  395. if (dev_id_num >= 0) {
  396. /* NAA-5, Logical unit identifier (binary) */
  397. arr[num++] = 0x1; /* binary (not necessarily sas) */
  398. arr[num++] = 0x3; /* PIV=0, lu, naa */
  399. arr[num++] = 0x0;
  400. arr[num++] = 0x8;
  401. arr[num++] = 0x53; /* naa-5 ieee company id=0x333333 (fake) */
  402. arr[num++] = 0x33;
  403. arr[num++] = 0x33;
  404. arr[num++] = 0x30;
  405. arr[num++] = (dev_id_num >> 24);
  406. arr[num++] = (dev_id_num >> 16) & 0xff;
  407. arr[num++] = (dev_id_num >> 8) & 0xff;
  408. arr[num++] = dev_id_num & 0xff;
  409. /* Target relative port number */
  410. arr[num++] = 0x61; /* proto=sas, binary */
  411. arr[num++] = 0x94; /* PIV=1, target port, rel port */
  412. arr[num++] = 0x0; /* reserved */
  413. arr[num++] = 0x4; /* length */
  414. arr[num++] = 0x0; /* reserved */
  415. arr[num++] = 0x0; /* reserved */
  416. arr[num++] = 0x0;
  417. arr[num++] = 0x1; /* relative port A */
  418. }
  419. /* NAA-5, Target port identifier */
  420. arr[num++] = 0x61; /* proto=sas, binary */
  421. arr[num++] = 0x93; /* piv=1, target port, naa */
  422. arr[num++] = 0x0;
  423. arr[num++] = 0x8;
  424. arr[num++] = 0x52; /* naa-5, company id=0x222222 (fake) */
  425. arr[num++] = 0x22;
  426. arr[num++] = 0x22;
  427. arr[num++] = 0x20;
  428. arr[num++] = (port_a >> 24);
  429. arr[num++] = (port_a >> 16) & 0xff;
  430. arr[num++] = (port_a >> 8) & 0xff;
  431. arr[num++] = port_a & 0xff;
  432. /* NAA-5, Target port group identifier */
  433. arr[num++] = 0x61; /* proto=sas, binary */
  434. arr[num++] = 0x95; /* piv=1, target port group id */
  435. arr[num++] = 0x0;
  436. arr[num++] = 0x4;
  437. arr[num++] = 0;
  438. arr[num++] = 0;
  439. arr[num++] = (port_group_id >> 8) & 0xff;
  440. arr[num++] = port_group_id & 0xff;
  441. /* NAA-5, Target device identifier */
  442. arr[num++] = 0x61; /* proto=sas, binary */
  443. arr[num++] = 0xa3; /* piv=1, target device, naa */
  444. arr[num++] = 0x0;
  445. arr[num++] = 0x8;
  446. arr[num++] = 0x52; /* naa-5, company id=0x222222 (fake) */
  447. arr[num++] = 0x22;
  448. arr[num++] = 0x22;
  449. arr[num++] = 0x20;
  450. arr[num++] = (target_dev_id >> 24);
  451. arr[num++] = (target_dev_id >> 16) & 0xff;
  452. arr[num++] = (target_dev_id >> 8) & 0xff;
  453. arr[num++] = target_dev_id & 0xff;
  454. /* SCSI name string: Target device identifier */
  455. arr[num++] = 0x63; /* proto=sas, UTF-8 */
  456. arr[num++] = 0xa8; /* piv=1, target device, SCSI name string */
  457. arr[num++] = 0x0;
  458. arr[num++] = 24;
  459. memcpy(arr + num, "naa.52222220", 12);
  460. num += 12;
  461. snprintf(b, sizeof(b), "%08X", target_dev_id);
  462. memcpy(arr + num, b, 8);
  463. num += 8;
  464. memset(arr + num, 0, 4);
  465. num += 4;
  466. return num;
  467. }
  468. static unsigned char vpd84_data[] = {
  469. /* from 4th byte */ 0x22,0x22,0x22,0x0,0xbb,0x0,
  470. 0x22,0x22,0x22,0x0,0xbb,0x1,
  471. 0x22,0x22,0x22,0x0,0xbb,0x2,
  472. };
  473. static int inquiry_evpd_84(unsigned char * arr)
  474. {
  475. memcpy(arr, vpd84_data, sizeof(vpd84_data));
  476. return sizeof(vpd84_data);
  477. }
  478. static int inquiry_evpd_85(unsigned char * arr)
  479. {
  480. int num = 0;
  481. const char * na1 = "https://www.kernel.org/config";
  482. const char * na2 = "http://www.kernel.org/log";
  483. int plen, olen;
  484. arr[num++] = 0x1; /* lu, storage config */
  485. arr[num++] = 0x0; /* reserved */
  486. arr[num++] = 0x0;
  487. olen = strlen(na1);
  488. plen = olen + 1;
  489. if (plen % 4)
  490. plen = ((plen / 4) + 1) * 4;
  491. arr[num++] = plen; /* length, null termianted, padded */
  492. memcpy(arr + num, na1, olen);
  493. memset(arr + num + olen, 0, plen - olen);
  494. num += plen;
  495. arr[num++] = 0x4; /* lu, logging */
  496. arr[num++] = 0x0; /* reserved */
  497. arr[num++] = 0x0;
  498. olen = strlen(na2);
  499. plen = olen + 1;
  500. if (plen % 4)
  501. plen = ((plen / 4) + 1) * 4;
  502. arr[num++] = plen; /* length, null terminated, padded */
  503. memcpy(arr + num, na2, olen);
  504. memset(arr + num + olen, 0, plen - olen);
  505. num += plen;
  506. return num;
  507. }
  508. /* SCSI ports VPD page */
  509. static int inquiry_evpd_88(unsigned char * arr, int target_dev_id)
  510. {
  511. int num = 0;
  512. int port_a, port_b;
  513. port_a = target_dev_id + 1;
  514. port_b = port_a + 1;
  515. arr[num++] = 0x0; /* reserved */
  516. arr[num++] = 0x0; /* reserved */
  517. arr[num++] = 0x0;
  518. arr[num++] = 0x1; /* relative port 1 (primary) */
  519. memset(arr + num, 0, 6);
  520. num += 6;
  521. arr[num++] = 0x0;
  522. arr[num++] = 12; /* length tp descriptor */
  523. /* naa-5 target port identifier (A) */
  524. arr[num++] = 0x61; /* proto=sas, binary */
  525. arr[num++] = 0x93; /* PIV=1, target port, NAA */
  526. arr[num++] = 0x0; /* reserved */
  527. arr[num++] = 0x8; /* length */
  528. arr[num++] = 0x52; /* NAA-5, company_id=0x222222 (fake) */
  529. arr[num++] = 0x22;
  530. arr[num++] = 0x22;
  531. arr[num++] = 0x20;
  532. arr[num++] = (port_a >> 24);
  533. arr[num++] = (port_a >> 16) & 0xff;
  534. arr[num++] = (port_a >> 8) & 0xff;
  535. arr[num++] = port_a & 0xff;
  536. arr[num++] = 0x0; /* reserved */
  537. arr[num++] = 0x0; /* reserved */
  538. arr[num++] = 0x0;
  539. arr[num++] = 0x2; /* relative port 2 (secondary) */
  540. memset(arr + num, 0, 6);
  541. num += 6;
  542. arr[num++] = 0x0;
  543. arr[num++] = 12; /* length tp descriptor */
  544. /* naa-5 target port identifier (B) */
  545. arr[num++] = 0x61; /* proto=sas, binary */
  546. arr[num++] = 0x93; /* PIV=1, target port, NAA */
  547. arr[num++] = 0x0; /* reserved */
  548. arr[num++] = 0x8; /* length */
  549. arr[num++] = 0x52; /* NAA-5, company_id=0x222222 (fake) */
  550. arr[num++] = 0x22;
  551. arr[num++] = 0x22;
  552. arr[num++] = 0x20;
  553. arr[num++] = (port_b >> 24);
  554. arr[num++] = (port_b >> 16) & 0xff;
  555. arr[num++] = (port_b >> 8) & 0xff;
  556. arr[num++] = port_b & 0xff;
  557. return num;
  558. }
  559. static unsigned char vpd89_data[] = {
  560. /* from 4th byte */ 0,0,0,0,
  561. 'l','i','n','u','x',' ',' ',' ',
  562. 'S','A','T',' ','s','c','s','i','_','d','e','b','u','g',' ',' ',
  563. '1','2','3','4',
  564. 0x34,0,0,0,1,0,0,0,0,0,0,0,1,0,0,0,0,0,0,0,
  565. 0xec,0,0,0,
  566. 0x5a,0xc,0xff,0x3f,0x37,0xc8,0x10,0,0,0,0,0,0x3f,0,0,0,
  567. 0,0,0,0,0x58,0x58,0x58,0x58,0x58,0x58,0x58,0x58,0x20,0x20,0x20,0x20,
  568. 0x20,0x20,0x20,0x20,0x20,0x20,0x20,0x20,0,0,0,0x40,0x4,0,0x2e,0x33,
  569. 0x38,0x31,0x20,0x20,0x20,0x20,0x54,0x53,0x38,0x33,0x30,0x30,0x33,0x31,
  570. 0x53,0x41,
  571. 0x20,0x20,0x20,0x20,0x20,0x20,0x20,0x20,0x20,0x20,0x20,0x20,0x20,0x20,
  572. 0x20,0x20,
  573. 0x20,0x20,0x20,0x20,0x20,0x20,0x20,0x20,0x20,0x20,0x20,0x20,0x20,0x20,
  574. 0x10,0x80,
  575. 0,0,0,0x2f,0,0,0,0x2,0,0x2,0x7,0,0xff,0xff,0x1,0,
  576. 0x3f,0,0xc1,0xff,0x3e,0,0x10,0x1,0xb0,0xf8,0x50,0x9,0,0,0x7,0,
  577. 0x3,0,0x78,0,0x78,0,0xf0,0,0x78,0,0,0,0,0,0,0,
  578. 0,0,0,0,0,0,0,0,0x2,0,0,0,0,0,0,0,
  579. 0x7e,0,0x1b,0,0x6b,0x34,0x1,0x7d,0x3,0x40,0x69,0x34,0x1,0x3c,0x3,0x40,
  580. 0x7f,0x40,0,0,0,0,0xfe,0xfe,0,0,0,0,0,0xfe,0,0,
  581. 0,0,0,0,0,0,0,0,0xb0,0xf8,0x50,0x9,0,0,0,0,
  582. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  583. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  584. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  585. 0x1,0,0xb0,0xf8,0x50,0x9,0xb0,0xf8,0x50,0x9,0x20,0x20,0x2,0,0xb6,0x42,
  586. 0,0x80,0x8a,0,0x6,0x3c,0xa,0x3c,0xff,0xff,0xc6,0x7,0,0x1,0,0x8,
  587. 0xf0,0xf,0,0x10,0x2,0,0x30,0,0,0,0,0,0,0,0x6,0xfe,
  588. 0,0,0x2,0,0x50,0,0x8a,0,0x4f,0x95,0,0,0x21,0,0xb,0,
  589. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  590. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  591. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  592. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  593. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  594. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  595. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  596. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  597. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  598. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  599. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  600. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0xa5,0x51,
  601. };
  602. static int inquiry_evpd_89(unsigned char * arr)
  603. {
  604. memcpy(arr, vpd89_data, sizeof(vpd89_data));
  605. return sizeof(vpd89_data);
  606. }
  607. static unsigned char vpdb0_data[] = {
  608. /* from 4th byte */ 0,0,0,4,
  609. 0,0,0x4,0,
  610. 0,0,0,64,
  611. };
  612. static int inquiry_evpd_b0(unsigned char * arr)
  613. {
  614. unsigned int gran;
  615. memcpy(arr, vpdb0_data, sizeof(vpdb0_data));
  616. gran = 1 << scsi_debug_physblk_exp;
  617. arr[2] = (gran >> 8) & 0xff;
  618. arr[3] = gran & 0xff;
  619. if (sdebug_store_sectors > 0x400) {
  620. arr[4] = (sdebug_store_sectors >> 24) & 0xff;
  621. arr[5] = (sdebug_store_sectors >> 16) & 0xff;
  622. arr[6] = (sdebug_store_sectors >> 8) & 0xff;
  623. arr[7] = sdebug_store_sectors & 0xff;
  624. }
  625. if (scsi_debug_unmap_max_desc) {
  626. unsigned int blocks;
  627. if (scsi_debug_unmap_max_blocks)
  628. blocks = scsi_debug_unmap_max_blocks;
  629. else
  630. blocks = 0xffffffff;
  631. put_unaligned_be32(blocks, &arr[16]);
  632. put_unaligned_be32(scsi_debug_unmap_max_desc, &arr[20]);
  633. }
  634. if (scsi_debug_unmap_alignment) {
  635. put_unaligned_be32(scsi_debug_unmap_alignment, &arr[28]);
  636. arr[28] |= 0x80; /* UGAVALID */
  637. }
  638. if (scsi_debug_unmap_granularity) {
  639. put_unaligned_be32(scsi_debug_unmap_granularity, &arr[24]);
  640. return 0x3c; /* Mandatory page length for thin provisioning */
  641. }
  642. return sizeof(vpdb0_data);
  643. }
  644. static int inquiry_evpd_b1(unsigned char *arr)
  645. {
  646. memset(arr, 0, 0x3c);
  647. arr[0] = 0;
  648. arr[1] = 1;
  649. return 0x3c;
  650. }
  651. #define SDEBUG_LONG_INQ_SZ 96
  652. #define SDEBUG_MAX_INQ_ARR_SZ 584
  653. static int resp_inquiry(struct scsi_cmnd * scp, int target,
  654. struct sdebug_dev_info * devip)
  655. {
  656. unsigned char pq_pdt;
  657. unsigned char * arr;
  658. unsigned char *cmd = (unsigned char *)scp->cmnd;
  659. int alloc_len, n, ret;
  660. alloc_len = (cmd[3] << 8) + cmd[4];
  661. arr = kzalloc(SDEBUG_MAX_INQ_ARR_SZ, GFP_ATOMIC);
  662. if (! arr)
  663. return DID_REQUEUE << 16;
  664. if (devip->wlun)
  665. pq_pdt = 0x1e; /* present, wlun */
  666. else if (scsi_debug_no_lun_0 && (0 == devip->lun))
  667. pq_pdt = 0x7f; /* not present, no device type */
  668. else
  669. pq_pdt = (scsi_debug_ptype & 0x1f);
  670. arr[0] = pq_pdt;
  671. if (0x2 & cmd[1]) { /* CMDDT bit set */
  672. mk_sense_buffer(devip, ILLEGAL_REQUEST, INVALID_FIELD_IN_CDB,
  673. 0);
  674. kfree(arr);
  675. return check_condition_result;
  676. } else if (0x1 & cmd[1]) { /* EVPD bit set */
  677. int lu_id_num, port_group_id, target_dev_id, len;
  678. char lu_id_str[6];
  679. int host_no = devip->sdbg_host->shost->host_no;
  680. port_group_id = (((host_no + 1) & 0x7f) << 8) +
  681. (devip->channel & 0x7f);
  682. if (0 == scsi_debug_vpd_use_hostno)
  683. host_no = 0;
  684. lu_id_num = devip->wlun ? -1 : (((host_no + 1) * 2000) +
  685. (devip->target * 1000) + devip->lun);
  686. target_dev_id = ((host_no + 1) * 2000) +
  687. (devip->target * 1000) - 3;
  688. len = scnprintf(lu_id_str, 6, "%d", lu_id_num);
  689. if (0 == cmd[2]) { /* supported vital product data pages */
  690. arr[1] = cmd[2]; /*sanity */
  691. n = 4;
  692. arr[n++] = 0x0; /* this page */
  693. arr[n++] = 0x80; /* unit serial number */
  694. arr[n++] = 0x83; /* device identification */
  695. arr[n++] = 0x84; /* software interface ident. */
  696. arr[n++] = 0x85; /* management network addresses */
  697. arr[n++] = 0x86; /* extended inquiry */
  698. arr[n++] = 0x87; /* mode page policy */
  699. arr[n++] = 0x88; /* SCSI ports */
  700. arr[n++] = 0x89; /* ATA information */
  701. arr[n++] = 0xb0; /* Block limits (SBC) */
  702. arr[n++] = 0xb1; /* Block characteristics (SBC) */
  703. arr[3] = n - 4; /* number of supported VPD pages */
  704. } else if (0x80 == cmd[2]) { /* unit serial number */
  705. arr[1] = cmd[2]; /*sanity */
  706. arr[3] = len;
  707. memcpy(&arr[4], lu_id_str, len);
  708. } else if (0x83 == cmd[2]) { /* device identification */
  709. arr[1] = cmd[2]; /*sanity */
  710. arr[3] = inquiry_evpd_83(&arr[4], port_group_id,
  711. target_dev_id, lu_id_num,
  712. lu_id_str, len);
  713. } else if (0x84 == cmd[2]) { /* Software interface ident. */
  714. arr[1] = cmd[2]; /*sanity */
  715. arr[3] = inquiry_evpd_84(&arr[4]);
  716. } else if (0x85 == cmd[2]) { /* Management network addresses */
  717. arr[1] = cmd[2]; /*sanity */
  718. arr[3] = inquiry_evpd_85(&arr[4]);
  719. } else if (0x86 == cmd[2]) { /* extended inquiry */
  720. arr[1] = cmd[2]; /*sanity */
  721. arr[3] = 0x3c; /* number of following entries */
  722. if (scsi_debug_dif == SD_DIF_TYPE3_PROTECTION)
  723. arr[4] = 0x4; /* SPT: GRD_CHK:1 */
  724. else if (scsi_debug_dif)
  725. arr[4] = 0x5; /* SPT: GRD_CHK:1, REF_CHK:1 */
  726. else
  727. arr[4] = 0x0; /* no protection stuff */
  728. arr[5] = 0x7; /* head of q, ordered + simple q's */
  729. } else if (0x87 == cmd[2]) { /* mode page policy */
  730. arr[1] = cmd[2]; /*sanity */
  731. arr[3] = 0x8; /* number of following entries */
  732. arr[4] = 0x2; /* disconnect-reconnect mp */
  733. arr[6] = 0x80; /* mlus, shared */
  734. arr[8] = 0x18; /* protocol specific lu */
  735. arr[10] = 0x82; /* mlus, per initiator port */
  736. } else if (0x88 == cmd[2]) { /* SCSI Ports */
  737. arr[1] = cmd[2]; /*sanity */
  738. arr[3] = inquiry_evpd_88(&arr[4], target_dev_id);
  739. } else if (0x89 == cmd[2]) { /* ATA information */
  740. arr[1] = cmd[2]; /*sanity */
  741. n = inquiry_evpd_89(&arr[4]);
  742. arr[2] = (n >> 8);
  743. arr[3] = (n & 0xff);
  744. } else if (0xb0 == cmd[2]) { /* Block limits (SBC) */
  745. arr[1] = cmd[2]; /*sanity */
  746. arr[3] = inquiry_evpd_b0(&arr[4]);
  747. } else if (0xb1 == cmd[2]) { /* Block characteristics (SBC) */
  748. arr[1] = cmd[2]; /*sanity */
  749. arr[3] = inquiry_evpd_b1(&arr[4]);
  750. } else {
  751. /* Illegal request, invalid field in cdb */
  752. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  753. INVALID_FIELD_IN_CDB, 0);
  754. kfree(arr);
  755. return check_condition_result;
  756. }
  757. len = min(((arr[2] << 8) + arr[3]) + 4, alloc_len);
  758. ret = fill_from_dev_buffer(scp, arr,
  759. min(len, SDEBUG_MAX_INQ_ARR_SZ));
  760. kfree(arr);
  761. return ret;
  762. }
  763. /* drops through here for a standard inquiry */
  764. arr[1] = DEV_REMOVEABLE(target) ? 0x80 : 0; /* Removable disk */
  765. arr[2] = scsi_debug_scsi_level;
  766. arr[3] = 2; /* response_data_format==2 */
  767. arr[4] = SDEBUG_LONG_INQ_SZ - 5;
  768. arr[5] = scsi_debug_dif ? 1 : 0; /* PROTECT bit */
  769. if (0 == scsi_debug_vpd_use_hostno)
  770. arr[5] = 0x10; /* claim: implicit TGPS */
  771. arr[6] = 0x10; /* claim: MultiP */
  772. /* arr[6] |= 0x40; ... claim: EncServ (enclosure services) */
  773. arr[7] = 0xa; /* claim: LINKED + CMDQUE */
  774. memcpy(&arr[8], inq_vendor_id, 8);
  775. memcpy(&arr[16], inq_product_id, 16);
  776. memcpy(&arr[32], inq_product_rev, 4);
  777. /* version descriptors (2 bytes each) follow */
  778. arr[58] = 0x0; arr[59] = 0x77; /* SAM-3 ANSI */
  779. arr[60] = 0x3; arr[61] = 0x14; /* SPC-3 ANSI */
  780. n = 62;
  781. if (scsi_debug_ptype == 0) {
  782. arr[n++] = 0x3; arr[n++] = 0x3d; /* SBC-2 ANSI */
  783. } else if (scsi_debug_ptype == 1) {
  784. arr[n++] = 0x3; arr[n++] = 0x60; /* SSC-2 no version */
  785. }
  786. arr[n++] = 0xc; arr[n++] = 0xf; /* SAS-1.1 rev 10 */
  787. ret = fill_from_dev_buffer(scp, arr,
  788. min(alloc_len, SDEBUG_LONG_INQ_SZ));
  789. kfree(arr);
  790. return ret;
  791. }
  792. static int resp_requests(struct scsi_cmnd * scp,
  793. struct sdebug_dev_info * devip)
  794. {
  795. unsigned char * sbuff;
  796. unsigned char *cmd = (unsigned char *)scp->cmnd;
  797. unsigned char arr[SDEBUG_SENSE_LEN];
  798. int want_dsense;
  799. int len = 18;
  800. memset(arr, 0, sizeof(arr));
  801. if (devip->reset == 1)
  802. mk_sense_buffer(devip, 0, NO_ADDITIONAL_SENSE, 0);
  803. want_dsense = !!(cmd[1] & 1) || scsi_debug_dsense;
  804. sbuff = devip->sense_buff;
  805. if ((iec_m_pg[2] & 0x4) && (6 == (iec_m_pg[3] & 0xf))) {
  806. if (want_dsense) {
  807. arr[0] = 0x72;
  808. arr[1] = 0x0; /* NO_SENSE in sense_key */
  809. arr[2] = THRESHOLD_EXCEEDED;
  810. arr[3] = 0xff; /* TEST set and MRIE==6 */
  811. } else {
  812. arr[0] = 0x70;
  813. arr[2] = 0x0; /* NO_SENSE in sense_key */
  814. arr[7] = 0xa; /* 18 byte sense buffer */
  815. arr[12] = THRESHOLD_EXCEEDED;
  816. arr[13] = 0xff; /* TEST set and MRIE==6 */
  817. }
  818. } else {
  819. memcpy(arr, sbuff, SDEBUG_SENSE_LEN);
  820. if ((cmd[1] & 1) && (! scsi_debug_dsense)) {
  821. /* DESC bit set and sense_buff in fixed format */
  822. memset(arr, 0, sizeof(arr));
  823. arr[0] = 0x72;
  824. arr[1] = sbuff[2]; /* sense key */
  825. arr[2] = sbuff[12]; /* asc */
  826. arr[3] = sbuff[13]; /* ascq */
  827. len = 8;
  828. }
  829. }
  830. mk_sense_buffer(devip, 0, NO_ADDITIONAL_SENSE, 0);
  831. return fill_from_dev_buffer(scp, arr, len);
  832. }
  833. static int resp_start_stop(struct scsi_cmnd * scp,
  834. struct sdebug_dev_info * devip)
  835. {
  836. unsigned char *cmd = (unsigned char *)scp->cmnd;
  837. int power_cond, errsts, start;
  838. if ((errsts = check_readiness(scp, 1, devip)))
  839. return errsts;
  840. power_cond = (cmd[4] & 0xf0) >> 4;
  841. if (power_cond) {
  842. mk_sense_buffer(devip, ILLEGAL_REQUEST, INVALID_FIELD_IN_CDB,
  843. 0);
  844. return check_condition_result;
  845. }
  846. start = cmd[4] & 1;
  847. if (start == devip->stopped)
  848. devip->stopped = !start;
  849. return 0;
  850. }
  851. static sector_t get_sdebug_capacity(void)
  852. {
  853. if (scsi_debug_virtual_gb > 0)
  854. return 2048 * 1024 * (sector_t)scsi_debug_virtual_gb;
  855. else
  856. return sdebug_store_sectors;
  857. }
  858. #define SDEBUG_READCAP_ARR_SZ 8
  859. static int resp_readcap(struct scsi_cmnd * scp,
  860. struct sdebug_dev_info * devip)
  861. {
  862. unsigned char arr[SDEBUG_READCAP_ARR_SZ];
  863. unsigned int capac;
  864. int errsts;
  865. if ((errsts = check_readiness(scp, 1, devip)))
  866. return errsts;
  867. /* following just in case virtual_gb changed */
  868. sdebug_capacity = get_sdebug_capacity();
  869. memset(arr, 0, SDEBUG_READCAP_ARR_SZ);
  870. if (sdebug_capacity < 0xffffffff) {
  871. capac = (unsigned int)sdebug_capacity - 1;
  872. arr[0] = (capac >> 24);
  873. arr[1] = (capac >> 16) & 0xff;
  874. arr[2] = (capac >> 8) & 0xff;
  875. arr[3] = capac & 0xff;
  876. } else {
  877. arr[0] = 0xff;
  878. arr[1] = 0xff;
  879. arr[2] = 0xff;
  880. arr[3] = 0xff;
  881. }
  882. arr[6] = (scsi_debug_sector_size >> 8) & 0xff;
  883. arr[7] = scsi_debug_sector_size & 0xff;
  884. return fill_from_dev_buffer(scp, arr, SDEBUG_READCAP_ARR_SZ);
  885. }
  886. #define SDEBUG_READCAP16_ARR_SZ 32
  887. static int resp_readcap16(struct scsi_cmnd * scp,
  888. struct sdebug_dev_info * devip)
  889. {
  890. unsigned char *cmd = (unsigned char *)scp->cmnd;
  891. unsigned char arr[SDEBUG_READCAP16_ARR_SZ];
  892. unsigned long long capac;
  893. int errsts, k, alloc_len;
  894. if ((errsts = check_readiness(scp, 1, devip)))
  895. return errsts;
  896. alloc_len = ((cmd[10] << 24) + (cmd[11] << 16) + (cmd[12] << 8)
  897. + cmd[13]);
  898. /* following just in case virtual_gb changed */
  899. sdebug_capacity = get_sdebug_capacity();
  900. memset(arr, 0, SDEBUG_READCAP16_ARR_SZ);
  901. capac = sdebug_capacity - 1;
  902. for (k = 0; k < 8; ++k, capac >>= 8)
  903. arr[7 - k] = capac & 0xff;
  904. arr[8] = (scsi_debug_sector_size >> 24) & 0xff;
  905. arr[9] = (scsi_debug_sector_size >> 16) & 0xff;
  906. arr[10] = (scsi_debug_sector_size >> 8) & 0xff;
  907. arr[11] = scsi_debug_sector_size & 0xff;
  908. arr[13] = scsi_debug_physblk_exp & 0xf;
  909. arr[14] = (scsi_debug_lowest_aligned >> 8) & 0x3f;
  910. if (scsi_debug_unmap_granularity)
  911. arr[14] |= 0x80; /* TPE */
  912. arr[15] = scsi_debug_lowest_aligned & 0xff;
  913. if (scsi_debug_dif) {
  914. arr[12] = (scsi_debug_dif - 1) << 1; /* P_TYPE */
  915. arr[12] |= 1; /* PROT_EN */
  916. }
  917. return fill_from_dev_buffer(scp, arr,
  918. min(alloc_len, SDEBUG_READCAP16_ARR_SZ));
  919. }
  920. #define SDEBUG_MAX_TGTPGS_ARR_SZ 1412
  921. static int resp_report_tgtpgs(struct scsi_cmnd * scp,
  922. struct sdebug_dev_info * devip)
  923. {
  924. unsigned char *cmd = (unsigned char *)scp->cmnd;
  925. unsigned char * arr;
  926. int host_no = devip->sdbg_host->shost->host_no;
  927. int n, ret, alen, rlen;
  928. int port_group_a, port_group_b, port_a, port_b;
  929. alen = ((cmd[6] << 24) + (cmd[7] << 16) + (cmd[8] << 8)
  930. + cmd[9]);
  931. arr = kzalloc(SDEBUG_MAX_TGTPGS_ARR_SZ, GFP_ATOMIC);
  932. if (! arr)
  933. return DID_REQUEUE << 16;
  934. /*
  935. * EVPD page 0x88 states we have two ports, one
  936. * real and a fake port with no device connected.
  937. * So we create two port groups with one port each
  938. * and set the group with port B to unavailable.
  939. */
  940. port_a = 0x1; /* relative port A */
  941. port_b = 0x2; /* relative port B */
  942. port_group_a = (((host_no + 1) & 0x7f) << 8) +
  943. (devip->channel & 0x7f);
  944. port_group_b = (((host_no + 1) & 0x7f) << 8) +
  945. (devip->channel & 0x7f) + 0x80;
  946. /*
  947. * The asymmetric access state is cycled according to the host_id.
  948. */
  949. n = 4;
  950. if (0 == scsi_debug_vpd_use_hostno) {
  951. arr[n++] = host_no % 3; /* Asymm access state */
  952. arr[n++] = 0x0F; /* claim: all states are supported */
  953. } else {
  954. arr[n++] = 0x0; /* Active/Optimized path */
  955. arr[n++] = 0x01; /* claim: only support active/optimized paths */
  956. }
  957. arr[n++] = (port_group_a >> 8) & 0xff;
  958. arr[n++] = port_group_a & 0xff;
  959. arr[n++] = 0; /* Reserved */
  960. arr[n++] = 0; /* Status code */
  961. arr[n++] = 0; /* Vendor unique */
  962. arr[n++] = 0x1; /* One port per group */
  963. arr[n++] = 0; /* Reserved */
  964. arr[n++] = 0; /* Reserved */
  965. arr[n++] = (port_a >> 8) & 0xff;
  966. arr[n++] = port_a & 0xff;
  967. arr[n++] = 3; /* Port unavailable */
  968. arr[n++] = 0x08; /* claim: only unavailalbe paths are supported */
  969. arr[n++] = (port_group_b >> 8) & 0xff;
  970. arr[n++] = port_group_b & 0xff;
  971. arr[n++] = 0; /* Reserved */
  972. arr[n++] = 0; /* Status code */
  973. arr[n++] = 0; /* Vendor unique */
  974. arr[n++] = 0x1; /* One port per group */
  975. arr[n++] = 0; /* Reserved */
  976. arr[n++] = 0; /* Reserved */
  977. arr[n++] = (port_b >> 8) & 0xff;
  978. arr[n++] = port_b & 0xff;
  979. rlen = n - 4;
  980. arr[0] = (rlen >> 24) & 0xff;
  981. arr[1] = (rlen >> 16) & 0xff;
  982. arr[2] = (rlen >> 8) & 0xff;
  983. arr[3] = rlen & 0xff;
  984. /*
  985. * Return the smallest value of either
  986. * - The allocated length
  987. * - The constructed command length
  988. * - The maximum array size
  989. */
  990. rlen = min(alen,n);
  991. ret = fill_from_dev_buffer(scp, arr,
  992. min(rlen, SDEBUG_MAX_TGTPGS_ARR_SZ));
  993. kfree(arr);
  994. return ret;
  995. }
  996. /* <<Following mode page info copied from ST318451LW>> */
  997. static int resp_err_recov_pg(unsigned char * p, int pcontrol, int target)
  998. { /* Read-Write Error Recovery page for mode_sense */
  999. unsigned char err_recov_pg[] = {0x1, 0xa, 0xc0, 11, 240, 0, 0, 0,
  1000. 5, 0, 0xff, 0xff};
  1001. memcpy(p, err_recov_pg, sizeof(err_recov_pg));
  1002. if (1 == pcontrol)
  1003. memset(p + 2, 0, sizeof(err_recov_pg) - 2);
  1004. return sizeof(err_recov_pg);
  1005. }
  1006. static int resp_disconnect_pg(unsigned char * p, int pcontrol, int target)
  1007. { /* Disconnect-Reconnect page for mode_sense */
  1008. unsigned char disconnect_pg[] = {0x2, 0xe, 128, 128, 0, 10, 0, 0,
  1009. 0, 0, 0, 0, 0, 0, 0, 0};
  1010. memcpy(p, disconnect_pg, sizeof(disconnect_pg));
  1011. if (1 == pcontrol)
  1012. memset(p + 2, 0, sizeof(disconnect_pg) - 2);
  1013. return sizeof(disconnect_pg);
  1014. }
  1015. static int resp_format_pg(unsigned char * p, int pcontrol, int target)
  1016. { /* Format device page for mode_sense */
  1017. unsigned char format_pg[] = {0x3, 0x16, 0, 0, 0, 0, 0, 0,
  1018. 0, 0, 0, 0, 0, 0, 0, 0,
  1019. 0, 0, 0, 0, 0x40, 0, 0, 0};
  1020. memcpy(p, format_pg, sizeof(format_pg));
  1021. p[10] = (sdebug_sectors_per >> 8) & 0xff;
  1022. p[11] = sdebug_sectors_per & 0xff;
  1023. p[12] = (scsi_debug_sector_size >> 8) & 0xff;
  1024. p[13] = scsi_debug_sector_size & 0xff;
  1025. if (DEV_REMOVEABLE(target))
  1026. p[20] |= 0x20; /* should agree with INQUIRY */
  1027. if (1 == pcontrol)
  1028. memset(p + 2, 0, sizeof(format_pg) - 2);
  1029. return sizeof(format_pg);
  1030. }
  1031. static int resp_caching_pg(unsigned char * p, int pcontrol, int target)
  1032. { /* Caching page for mode_sense */
  1033. unsigned char caching_pg[] = {0x8, 18, 0x14, 0, 0xff, 0xff, 0, 0,
  1034. 0xff, 0xff, 0xff, 0xff, 0x80, 0x14, 0, 0, 0, 0, 0, 0};
  1035. memcpy(p, caching_pg, sizeof(caching_pg));
  1036. if (1 == pcontrol)
  1037. memset(p + 2, 0, sizeof(caching_pg) - 2);
  1038. return sizeof(caching_pg);
  1039. }
  1040. static int resp_ctrl_m_pg(unsigned char * p, int pcontrol, int target)
  1041. { /* Control mode page for mode_sense */
  1042. unsigned char ch_ctrl_m_pg[] = {/* 0xa, 10, */ 0x6, 0, 0, 0, 0, 0,
  1043. 0, 0, 0, 0};
  1044. unsigned char d_ctrl_m_pg[] = {0xa, 10, 2, 0, 0, 0, 0, 0,
  1045. 0, 0, 0x2, 0x4b};
  1046. if (scsi_debug_dsense)
  1047. ctrl_m_pg[2] |= 0x4;
  1048. else
  1049. ctrl_m_pg[2] &= ~0x4;
  1050. if (scsi_debug_ato)
  1051. ctrl_m_pg[5] |= 0x80; /* ATO=1 */
  1052. memcpy(p, ctrl_m_pg, sizeof(ctrl_m_pg));
  1053. if (1 == pcontrol)
  1054. memcpy(p + 2, ch_ctrl_m_pg, sizeof(ch_ctrl_m_pg));
  1055. else if (2 == pcontrol)
  1056. memcpy(p, d_ctrl_m_pg, sizeof(d_ctrl_m_pg));
  1057. return sizeof(ctrl_m_pg);
  1058. }
  1059. static int resp_iec_m_pg(unsigned char * p, int pcontrol, int target)
  1060. { /* Informational Exceptions control mode page for mode_sense */
  1061. unsigned char ch_iec_m_pg[] = {/* 0x1c, 0xa, */ 0x4, 0xf, 0, 0, 0, 0,
  1062. 0, 0, 0x0, 0x0};
  1063. unsigned char d_iec_m_pg[] = {0x1c, 0xa, 0x08, 0, 0, 0, 0, 0,
  1064. 0, 0, 0x0, 0x0};
  1065. memcpy(p, iec_m_pg, sizeof(iec_m_pg));
  1066. if (1 == pcontrol)
  1067. memcpy(p + 2, ch_iec_m_pg, sizeof(ch_iec_m_pg));
  1068. else if (2 == pcontrol)
  1069. memcpy(p, d_iec_m_pg, sizeof(d_iec_m_pg));
  1070. return sizeof(iec_m_pg);
  1071. }
  1072. static int resp_sas_sf_m_pg(unsigned char * p, int pcontrol, int target)
  1073. { /* SAS SSP mode page - short format for mode_sense */
  1074. unsigned char sas_sf_m_pg[] = {0x19, 0x6,
  1075. 0x6, 0x0, 0x7, 0xd0, 0x0, 0x0};
  1076. memcpy(p, sas_sf_m_pg, sizeof(sas_sf_m_pg));
  1077. if (1 == pcontrol)
  1078. memset(p + 2, 0, sizeof(sas_sf_m_pg) - 2);
  1079. return sizeof(sas_sf_m_pg);
  1080. }
  1081. static int resp_sas_pcd_m_spg(unsigned char * p, int pcontrol, int target,
  1082. int target_dev_id)
  1083. { /* SAS phy control and discover mode page for mode_sense */
  1084. unsigned char sas_pcd_m_pg[] = {0x59, 0x1, 0, 0x64, 0, 0x6, 0, 2,
  1085. 0, 0, 0, 0, 0x10, 0x9, 0x8, 0x0,
  1086. 0x52, 0x22, 0x22, 0x20, 0x0, 0x0, 0x0, 0x0,
  1087. 0x51, 0x11, 0x11, 0x10, 0x0, 0x0, 0x0, 0x1,
  1088. 0x2, 0, 0, 0, 0, 0, 0, 0,
  1089. 0x88, 0x99, 0, 0, 0, 0, 0, 0,
  1090. 0, 0, 0, 0, 0, 0, 0, 0,
  1091. 0, 1, 0, 0, 0x10, 0x9, 0x8, 0x0,
  1092. 0x52, 0x22, 0x22, 0x20, 0x0, 0x0, 0x0, 0x0,
  1093. 0x51, 0x11, 0x11, 0x10, 0x0, 0x0, 0x0, 0x1,
  1094. 0x3, 0, 0, 0, 0, 0, 0, 0,
  1095. 0x88, 0x99, 0, 0, 0, 0, 0, 0,
  1096. 0, 0, 0, 0, 0, 0, 0, 0,
  1097. };
  1098. int port_a, port_b;
  1099. port_a = target_dev_id + 1;
  1100. port_b = port_a + 1;
  1101. memcpy(p, sas_pcd_m_pg, sizeof(sas_pcd_m_pg));
  1102. p[20] = (port_a >> 24);
  1103. p[21] = (port_a >> 16) & 0xff;
  1104. p[22] = (port_a >> 8) & 0xff;
  1105. p[23] = port_a & 0xff;
  1106. p[48 + 20] = (port_b >> 24);
  1107. p[48 + 21] = (port_b >> 16) & 0xff;
  1108. p[48 + 22] = (port_b >> 8) & 0xff;
  1109. p[48 + 23] = port_b & 0xff;
  1110. if (1 == pcontrol)
  1111. memset(p + 4, 0, sizeof(sas_pcd_m_pg) - 4);
  1112. return sizeof(sas_pcd_m_pg);
  1113. }
  1114. static int resp_sas_sha_m_spg(unsigned char * p, int pcontrol)
  1115. { /* SAS SSP shared protocol specific port mode subpage */
  1116. unsigned char sas_sha_m_pg[] = {0x59, 0x2, 0, 0xc, 0, 0x6, 0x10, 0,
  1117. 0, 0, 0, 0, 0, 0, 0, 0,
  1118. };
  1119. memcpy(p, sas_sha_m_pg, sizeof(sas_sha_m_pg));
  1120. if (1 == pcontrol)
  1121. memset(p + 4, 0, sizeof(sas_sha_m_pg) - 4);
  1122. return sizeof(sas_sha_m_pg);
  1123. }
  1124. #define SDEBUG_MAX_MSENSE_SZ 256
  1125. static int resp_mode_sense(struct scsi_cmnd * scp, int target,
  1126. struct sdebug_dev_info * devip)
  1127. {
  1128. unsigned char dbd, llbaa;
  1129. int pcontrol, pcode, subpcode, bd_len;
  1130. unsigned char dev_spec;
  1131. int k, alloc_len, msense_6, offset, len, errsts, target_dev_id;
  1132. unsigned char * ap;
  1133. unsigned char arr[SDEBUG_MAX_MSENSE_SZ];
  1134. unsigned char *cmd = (unsigned char *)scp->cmnd;
  1135. if ((errsts = check_readiness(scp, 1, devip)))
  1136. return errsts;
  1137. dbd = !!(cmd[1] & 0x8);
  1138. pcontrol = (cmd[2] & 0xc0) >> 6;
  1139. pcode = cmd[2] & 0x3f;
  1140. subpcode = cmd[3];
  1141. msense_6 = (MODE_SENSE == cmd[0]);
  1142. llbaa = msense_6 ? 0 : !!(cmd[1] & 0x10);
  1143. if ((0 == scsi_debug_ptype) && (0 == dbd))
  1144. bd_len = llbaa ? 16 : 8;
  1145. else
  1146. bd_len = 0;
  1147. alloc_len = msense_6 ? cmd[4] : ((cmd[7] << 8) | cmd[8]);
  1148. memset(arr, 0, SDEBUG_MAX_MSENSE_SZ);
  1149. if (0x3 == pcontrol) { /* Saving values not supported */
  1150. mk_sense_buffer(devip, ILLEGAL_REQUEST, SAVING_PARAMS_UNSUP,
  1151. 0);
  1152. return check_condition_result;
  1153. }
  1154. target_dev_id = ((devip->sdbg_host->shost->host_no + 1) * 2000) +
  1155. (devip->target * 1000) - 3;
  1156. /* set DPOFUA bit for disks */
  1157. if (0 == scsi_debug_ptype)
  1158. dev_spec = (DEV_READONLY(target) ? 0x80 : 0x0) | 0x10;
  1159. else
  1160. dev_spec = 0x0;
  1161. if (msense_6) {
  1162. arr[2] = dev_spec;
  1163. arr[3] = bd_len;
  1164. offset = 4;
  1165. } else {
  1166. arr[3] = dev_spec;
  1167. if (16 == bd_len)
  1168. arr[4] = 0x1; /* set LONGLBA bit */
  1169. arr[7] = bd_len; /* assume 255 or less */
  1170. offset = 8;
  1171. }
  1172. ap = arr + offset;
  1173. if ((bd_len > 0) && (!sdebug_capacity))
  1174. sdebug_capacity = get_sdebug_capacity();
  1175. if (8 == bd_len) {
  1176. if (sdebug_capacity > 0xfffffffe) {
  1177. ap[0] = 0xff;
  1178. ap[1] = 0xff;
  1179. ap[2] = 0xff;
  1180. ap[3] = 0xff;
  1181. } else {
  1182. ap[0] = (sdebug_capacity >> 24) & 0xff;
  1183. ap[1] = (sdebug_capacity >> 16) & 0xff;
  1184. ap[2] = (sdebug_capacity >> 8) & 0xff;
  1185. ap[3] = sdebug_capacity & 0xff;
  1186. }
  1187. ap[6] = (scsi_debug_sector_size >> 8) & 0xff;
  1188. ap[7] = scsi_debug_sector_size & 0xff;
  1189. offset += bd_len;
  1190. ap = arr + offset;
  1191. } else if (16 == bd_len) {
  1192. unsigned long long capac = sdebug_capacity;
  1193. for (k = 0; k < 8; ++k, capac >>= 8)
  1194. ap[7 - k] = capac & 0xff;
  1195. ap[12] = (scsi_debug_sector_size >> 24) & 0xff;
  1196. ap[13] = (scsi_debug_sector_size >> 16) & 0xff;
  1197. ap[14] = (scsi_debug_sector_size >> 8) & 0xff;
  1198. ap[15] = scsi_debug_sector_size & 0xff;
  1199. offset += bd_len;
  1200. ap = arr + offset;
  1201. }
  1202. if ((subpcode > 0x0) && (subpcode < 0xff) && (0x19 != pcode)) {
  1203. /* TODO: Control Extension page */
  1204. mk_sense_buffer(devip, ILLEGAL_REQUEST, INVALID_FIELD_IN_CDB,
  1205. 0);
  1206. return check_condition_result;
  1207. }
  1208. switch (pcode) {
  1209. case 0x1: /* Read-Write error recovery page, direct access */
  1210. len = resp_err_recov_pg(ap, pcontrol, target);
  1211. offset += len;
  1212. break;
  1213. case 0x2: /* Disconnect-Reconnect page, all devices */
  1214. len = resp_disconnect_pg(ap, pcontrol, target);
  1215. offset += len;
  1216. break;
  1217. case 0x3: /* Format device page, direct access */
  1218. len = resp_format_pg(ap, pcontrol, target);
  1219. offset += len;
  1220. break;
  1221. case 0x8: /* Caching page, direct access */
  1222. len = resp_caching_pg(ap, pcontrol, target);
  1223. offset += len;
  1224. break;
  1225. case 0xa: /* Control Mode page, all devices */
  1226. len = resp_ctrl_m_pg(ap, pcontrol, target);
  1227. offset += len;
  1228. break;
  1229. case 0x19: /* if spc==1 then sas phy, control+discover */
  1230. if ((subpcode > 0x2) && (subpcode < 0xff)) {
  1231. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  1232. INVALID_FIELD_IN_CDB, 0);
  1233. return check_condition_result;
  1234. }
  1235. len = 0;
  1236. if ((0x0 == subpcode) || (0xff == subpcode))
  1237. len += resp_sas_sf_m_pg(ap + len, pcontrol, target);
  1238. if ((0x1 == subpcode) || (0xff == subpcode))
  1239. len += resp_sas_pcd_m_spg(ap + len, pcontrol, target,
  1240. target_dev_id);
  1241. if ((0x2 == subpcode) || (0xff == subpcode))
  1242. len += resp_sas_sha_m_spg(ap + len, pcontrol);
  1243. offset += len;
  1244. break;
  1245. case 0x1c: /* Informational Exceptions Mode page, all devices */
  1246. len = resp_iec_m_pg(ap, pcontrol, target);
  1247. offset += len;
  1248. break;
  1249. case 0x3f: /* Read all Mode pages */
  1250. if ((0 == subpcode) || (0xff == subpcode)) {
  1251. len = resp_err_recov_pg(ap, pcontrol, target);
  1252. len += resp_disconnect_pg(ap + len, pcontrol, target);
  1253. len += resp_format_pg(ap + len, pcontrol, target);
  1254. len += resp_caching_pg(ap + len, pcontrol, target);
  1255. len += resp_ctrl_m_pg(ap + len, pcontrol, target);
  1256. len += resp_sas_sf_m_pg(ap + len, pcontrol, target);
  1257. if (0xff == subpcode) {
  1258. len += resp_sas_pcd_m_spg(ap + len, pcontrol,
  1259. target, target_dev_id);
  1260. len += resp_sas_sha_m_spg(ap + len, pcontrol);
  1261. }
  1262. len += resp_iec_m_pg(ap + len, pcontrol, target);
  1263. } else {
  1264. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  1265. INVALID_FIELD_IN_CDB, 0);
  1266. return check_condition_result;
  1267. }
  1268. offset += len;
  1269. break;
  1270. default:
  1271. mk_sense_buffer(devip, ILLEGAL_REQUEST, INVALID_FIELD_IN_CDB,
  1272. 0);
  1273. return check_condition_result;
  1274. }
  1275. if (msense_6)
  1276. arr[0] = offset - 1;
  1277. else {
  1278. arr[0] = ((offset - 2) >> 8) & 0xff;
  1279. arr[1] = (offset - 2) & 0xff;
  1280. }
  1281. return fill_from_dev_buffer(scp, arr, min(alloc_len, offset));
  1282. }
  1283. #define SDEBUG_MAX_MSELECT_SZ 512
  1284. static int resp_mode_select(struct scsi_cmnd * scp, int mselect6,
  1285. struct sdebug_dev_info * devip)
  1286. {
  1287. int pf, sp, ps, md_len, bd_len, off, spf, pg_len;
  1288. int param_len, res, errsts, mpage;
  1289. unsigned char arr[SDEBUG_MAX_MSELECT_SZ];
  1290. unsigned char *cmd = (unsigned char *)scp->cmnd;
  1291. if ((errsts = check_readiness(scp, 1, devip)))
  1292. return errsts;
  1293. memset(arr, 0, sizeof(arr));
  1294. pf = cmd[1] & 0x10;
  1295. sp = cmd[1] & 0x1;
  1296. param_len = mselect6 ? cmd[4] : ((cmd[7] << 8) + cmd[8]);
  1297. if ((0 == pf) || sp || (param_len > SDEBUG_MAX_MSELECT_SZ)) {
  1298. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  1299. INVALID_FIELD_IN_CDB, 0);
  1300. return check_condition_result;
  1301. }
  1302. res = fetch_to_dev_buffer(scp, arr, param_len);
  1303. if (-1 == res)
  1304. return (DID_ERROR << 16);
  1305. else if ((res < param_len) &&
  1306. (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts))
  1307. printk(KERN_INFO "scsi_debug: mode_select: cdb indicated=%d, "
  1308. " IO sent=%d bytes\n", param_len, res);
  1309. md_len = mselect6 ? (arr[0] + 1) : ((arr[0] << 8) + arr[1] + 2);
  1310. bd_len = mselect6 ? arr[3] : ((arr[6] << 8) + arr[7]);
  1311. if (md_len > 2) {
  1312. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  1313. INVALID_FIELD_IN_PARAM_LIST, 0);
  1314. return check_condition_result;
  1315. }
  1316. off = bd_len + (mselect6 ? 4 : 8);
  1317. mpage = arr[off] & 0x3f;
  1318. ps = !!(arr[off] & 0x80);
  1319. if (ps) {
  1320. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  1321. INVALID_FIELD_IN_PARAM_LIST, 0);
  1322. return check_condition_result;
  1323. }
  1324. spf = !!(arr[off] & 0x40);
  1325. pg_len = spf ? ((arr[off + 2] << 8) + arr[off + 3] + 4) :
  1326. (arr[off + 1] + 2);
  1327. if ((pg_len + off) > param_len) {
  1328. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  1329. PARAMETER_LIST_LENGTH_ERR, 0);
  1330. return check_condition_result;
  1331. }
  1332. switch (mpage) {
  1333. case 0xa: /* Control Mode page */
  1334. if (ctrl_m_pg[1] == arr[off + 1]) {
  1335. memcpy(ctrl_m_pg + 2, arr + off + 2,
  1336. sizeof(ctrl_m_pg) - 2);
  1337. scsi_debug_dsense = !!(ctrl_m_pg[2] & 0x4);
  1338. return 0;
  1339. }
  1340. break;
  1341. case 0x1c: /* Informational Exceptions Mode page */
  1342. if (iec_m_pg[1] == arr[off + 1]) {
  1343. memcpy(iec_m_pg + 2, arr + off + 2,
  1344. sizeof(iec_m_pg) - 2);
  1345. return 0;
  1346. }
  1347. break;
  1348. default:
  1349. break;
  1350. }
  1351. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  1352. INVALID_FIELD_IN_PARAM_LIST, 0);
  1353. return check_condition_result;
  1354. }
  1355. static int resp_temp_l_pg(unsigned char * arr)
  1356. {
  1357. unsigned char temp_l_pg[] = {0x0, 0x0, 0x3, 0x2, 0x0, 38,
  1358. 0x0, 0x1, 0x3, 0x2, 0x0, 65,
  1359. };
  1360. memcpy(arr, temp_l_pg, sizeof(temp_l_pg));
  1361. return sizeof(temp_l_pg);
  1362. }
  1363. static int resp_ie_l_pg(unsigned char * arr)
  1364. {
  1365. unsigned char ie_l_pg[] = {0x0, 0x0, 0x3, 0x3, 0x0, 0x0, 38,
  1366. };
  1367. memcpy(arr, ie_l_pg, sizeof(ie_l_pg));
  1368. if (iec_m_pg[2] & 0x4) { /* TEST bit set */
  1369. arr[4] = THRESHOLD_EXCEEDED;
  1370. arr[5] = 0xff;
  1371. }
  1372. return sizeof(ie_l_pg);
  1373. }
  1374. #define SDEBUG_MAX_LSENSE_SZ 512
  1375. static int resp_log_sense(struct scsi_cmnd * scp,
  1376. struct sdebug_dev_info * devip)
  1377. {
  1378. int ppc, sp, pcontrol, pcode, subpcode, alloc_len, errsts, len, n;
  1379. unsigned char arr[SDEBUG_MAX_LSENSE_SZ];
  1380. unsigned char *cmd = (unsigned char *)scp->cmnd;
  1381. if ((errsts = check_readiness(scp, 1, devip)))
  1382. return errsts;
  1383. memset(arr, 0, sizeof(arr));
  1384. ppc = cmd[1] & 0x2;
  1385. sp = cmd[1] & 0x1;
  1386. if (ppc || sp) {
  1387. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  1388. INVALID_FIELD_IN_CDB, 0);
  1389. return check_condition_result;
  1390. }
  1391. pcontrol = (cmd[2] & 0xc0) >> 6;
  1392. pcode = cmd[2] & 0x3f;
  1393. subpcode = cmd[3] & 0xff;
  1394. alloc_len = (cmd[7] << 8) + cmd[8];
  1395. arr[0] = pcode;
  1396. if (0 == subpcode) {
  1397. switch (pcode) {
  1398. case 0x0: /* Supported log pages log page */
  1399. n = 4;
  1400. arr[n++] = 0x0; /* this page */
  1401. arr[n++] = 0xd; /* Temperature */
  1402. arr[n++] = 0x2f; /* Informational exceptions */
  1403. arr[3] = n - 4;
  1404. break;
  1405. case 0xd: /* Temperature log page */
  1406. arr[3] = resp_temp_l_pg(arr + 4);
  1407. break;
  1408. case 0x2f: /* Informational exceptions log page */
  1409. arr[3] = resp_ie_l_pg(arr + 4);
  1410. break;
  1411. default:
  1412. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  1413. INVALID_FIELD_IN_CDB, 0);
  1414. return check_condition_result;
  1415. }
  1416. } else if (0xff == subpcode) {
  1417. arr[0] |= 0x40;
  1418. arr[1] = subpcode;
  1419. switch (pcode) {
  1420. case 0x0: /* Supported log pages and subpages log page */
  1421. n = 4;
  1422. arr[n++] = 0x0;
  1423. arr[n++] = 0x0; /* 0,0 page */
  1424. arr[n++] = 0x0;
  1425. arr[n++] = 0xff; /* this page */
  1426. arr[n++] = 0xd;
  1427. arr[n++] = 0x0; /* Temperature */
  1428. arr[n++] = 0x2f;
  1429. arr[n++] = 0x0; /* Informational exceptions */
  1430. arr[3] = n - 4;
  1431. break;
  1432. case 0xd: /* Temperature subpages */
  1433. n = 4;
  1434. arr[n++] = 0xd;
  1435. arr[n++] = 0x0; /* Temperature */
  1436. arr[3] = n - 4;
  1437. break;
  1438. case 0x2f: /* Informational exceptions subpages */
  1439. n = 4;
  1440. arr[n++] = 0x2f;
  1441. arr[n++] = 0x0; /* Informational exceptions */
  1442. arr[3] = n - 4;
  1443. break;
  1444. default:
  1445. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  1446. INVALID_FIELD_IN_CDB, 0);
  1447. return check_condition_result;
  1448. }
  1449. } else {
  1450. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  1451. INVALID_FIELD_IN_CDB, 0);
  1452. return check_condition_result;
  1453. }
  1454. len = min(((arr[2] << 8) + arr[3]) + 4, alloc_len);
  1455. return fill_from_dev_buffer(scp, arr,
  1456. min(len, SDEBUG_MAX_INQ_ARR_SZ));
  1457. }
  1458. static int check_device_access_params(struct sdebug_dev_info *devi,
  1459. unsigned long long lba, unsigned int num)
  1460. {
  1461. if (lba + num > sdebug_capacity) {
  1462. mk_sense_buffer(devi, ILLEGAL_REQUEST, ADDR_OUT_OF_RANGE, 0);
  1463. return check_condition_result;
  1464. }
  1465. /* transfer length excessive (tie in to block limits VPD page) */
  1466. if (num > sdebug_store_sectors) {
  1467. mk_sense_buffer(devi, ILLEGAL_REQUEST, INVALID_FIELD_IN_CDB, 0);
  1468. return check_condition_result;
  1469. }
  1470. return 0;
  1471. }
  1472. static int do_device_access(struct scsi_cmnd *scmd,
  1473. struct sdebug_dev_info *devi,
  1474. unsigned long long lba, unsigned int num, int write)
  1475. {
  1476. int ret;
  1477. unsigned int block, rest = 0;
  1478. int (*func)(struct scsi_cmnd *, unsigned char *, int);
  1479. func = write ? fetch_to_dev_buffer : fill_from_dev_buffer;
  1480. block = do_div(lba, sdebug_store_sectors);
  1481. if (block + num > sdebug_store_sectors)
  1482. rest = block + num - sdebug_store_sectors;
  1483. ret = func(scmd, fake_storep + (block * scsi_debug_sector_size),
  1484. (num - rest) * scsi_debug_sector_size);
  1485. if (!ret && rest)
  1486. ret = func(scmd, fake_storep, rest * scsi_debug_sector_size);
  1487. return ret;
  1488. }
  1489. static int prot_verify_read(struct scsi_cmnd *SCpnt, sector_t start_sec,
  1490. unsigned int sectors, u32 ei_lba)
  1491. {
  1492. unsigned int i, resid;
  1493. struct scatterlist *psgl;
  1494. struct sd_dif_tuple *sdt;
  1495. sector_t sector;
  1496. sector_t tmp_sec = start_sec;
  1497. void *paddr;
  1498. start_sec = do_div(tmp_sec, sdebug_store_sectors);
  1499. sdt = (struct sd_dif_tuple *)(dif_storep + dif_offset(start_sec));
  1500. for (i = 0 ; i < sectors ; i++) {
  1501. u16 csum;
  1502. if (sdt[i].app_tag == 0xffff)
  1503. continue;
  1504. sector = start_sec + i;
  1505. switch (scsi_debug_guard) {
  1506. case 1:
  1507. csum = ip_compute_csum(fake_storep +
  1508. sector * scsi_debug_sector_size,
  1509. scsi_debug_sector_size);
  1510. break;
  1511. case 0:
  1512. csum = crc_t10dif(fake_storep +
  1513. sector * scsi_debug_sector_size,
  1514. scsi_debug_sector_size);
  1515. csum = cpu_to_be16(csum);
  1516. break;
  1517. default:
  1518. BUG();
  1519. }
  1520. if (sdt[i].guard_tag != csum) {
  1521. printk(KERN_ERR "%s: GUARD check failed on sector %lu" \
  1522. " rcvd 0x%04x, data 0x%04x\n", __func__,
  1523. (unsigned long)sector,
  1524. be16_to_cpu(sdt[i].guard_tag),
  1525. be16_to_cpu(csum));
  1526. dif_errors++;
  1527. return 0x01;
  1528. }
  1529. if (scsi_debug_dif == SD_DIF_TYPE1_PROTECTION &&
  1530. be32_to_cpu(sdt[i].ref_tag) != (sector & 0xffffffff)) {
  1531. printk(KERN_ERR "%s: REF check failed on sector %lu\n",
  1532. __func__, (unsigned long)sector);
  1533. dif_errors++;
  1534. return 0x03;
  1535. }
  1536. if (scsi_debug_dif == SD_DIF_TYPE2_PROTECTION &&
  1537. be32_to_cpu(sdt[i].ref_tag) != ei_lba) {
  1538. printk(KERN_ERR "%s: REF check failed on sector %lu\n",
  1539. __func__, (unsigned long)sector);
  1540. dif_errors++;
  1541. return 0x03;
  1542. }
  1543. ei_lba++;
  1544. }
  1545. resid = sectors * 8; /* Bytes of protection data to copy into sgl */
  1546. sector = start_sec;
  1547. scsi_for_each_prot_sg(SCpnt, psgl, scsi_prot_sg_count(SCpnt), i) {
  1548. int len = min(psgl->length, resid);
  1549. paddr = kmap_atomic(sg_page(psgl), KM_IRQ0) + psgl->offset;
  1550. memcpy(paddr, dif_storep + dif_offset(sector), len);
  1551. sector += len >> 3;
  1552. if (sector >= sdebug_store_sectors) {
  1553. /* Force wrap */
  1554. tmp_sec = sector;
  1555. sector = do_div(tmp_sec, sdebug_store_sectors);
  1556. }
  1557. resid -= len;
  1558. kunmap_atomic(paddr, KM_IRQ0);
  1559. }
  1560. dix_reads++;
  1561. return 0;
  1562. }
  1563. static int resp_read(struct scsi_cmnd *SCpnt, unsigned long long lba,
  1564. unsigned int num, struct sdebug_dev_info *devip,
  1565. u32 ei_lba)
  1566. {
  1567. unsigned long iflags;
  1568. int ret;
  1569. ret = check_device_access_params(devip, lba, num);
  1570. if (ret)
  1571. return ret;
  1572. if ((SCSI_DEBUG_OPT_MEDIUM_ERR & scsi_debug_opts) &&
  1573. (lba <= OPT_MEDIUM_ERR_ADDR) &&
  1574. ((lba + num) > OPT_MEDIUM_ERR_ADDR)) {
  1575. /* claim unrecoverable read error */
  1576. mk_sense_buffer(devip, MEDIUM_ERROR, UNRECOVERED_READ_ERR,
  1577. 0);
  1578. /* set info field and valid bit for fixed descriptor */
  1579. if (0x70 == (devip->sense_buff[0] & 0x7f)) {
  1580. devip->sense_buff[0] |= 0x80; /* Valid bit */
  1581. ret = OPT_MEDIUM_ERR_ADDR;
  1582. devip->sense_buff[3] = (ret >> 24) & 0xff;
  1583. devip->sense_buff[4] = (ret >> 16) & 0xff;
  1584. devip->sense_buff[5] = (ret >> 8) & 0xff;
  1585. devip->sense_buff[6] = ret & 0xff;
  1586. }
  1587. return check_condition_result;
  1588. }
  1589. /* DIX + T10 DIF */
  1590. if (scsi_debug_dix && scsi_prot_sg_count(SCpnt)) {
  1591. int prot_ret = prot_verify_read(SCpnt, lba, num, ei_lba);
  1592. if (prot_ret) {
  1593. mk_sense_buffer(devip, ABORTED_COMMAND, 0x10, prot_ret);
  1594. return illegal_condition_result;
  1595. }
  1596. }
  1597. read_lock_irqsave(&atomic_rw, iflags);
  1598. ret = do_device_access(SCpnt, devip, lba, num, 0);
  1599. read_unlock_irqrestore(&atomic_rw, iflags);
  1600. return ret;
  1601. }
  1602. void dump_sector(unsigned char *buf, int len)
  1603. {
  1604. int i, j;
  1605. printk(KERN_ERR ">>> Sector Dump <<<\n");
  1606. for (i = 0 ; i < len ; i += 16) {
  1607. printk(KERN_ERR "%04d: ", i);
  1608. for (j = 0 ; j < 16 ; j++) {
  1609. unsigned char c = buf[i+j];
  1610. if (c >= 0x20 && c < 0x7e)
  1611. printk(" %c ", buf[i+j]);
  1612. else
  1613. printk("%02x ", buf[i+j]);
  1614. }
  1615. printk("\n");
  1616. }
  1617. }
  1618. static int prot_verify_write(struct scsi_cmnd *SCpnt, sector_t start_sec,
  1619. unsigned int sectors, u32 ei_lba)
  1620. {
  1621. int i, j, ret;
  1622. struct sd_dif_tuple *sdt;
  1623. struct scatterlist *dsgl = scsi_sglist(SCpnt);
  1624. struct scatterlist *psgl = scsi_prot_sglist(SCpnt);
  1625. void *daddr, *paddr;
  1626. sector_t tmp_sec = start_sec;
  1627. sector_t sector;
  1628. int ppage_offset;
  1629. unsigned short csum;
  1630. sector = do_div(tmp_sec, sdebug_store_sectors);
  1631. BUG_ON(scsi_sg_count(SCpnt) == 0);
  1632. BUG_ON(scsi_prot_sg_count(SCpnt) == 0);
  1633. paddr = kmap_atomic(sg_page(psgl), KM_IRQ1) + psgl->offset;
  1634. ppage_offset = 0;
  1635. /* For each data page */
  1636. scsi_for_each_sg(SCpnt, dsgl, scsi_sg_count(SCpnt), i) {
  1637. daddr = kmap_atomic(sg_page(dsgl), KM_IRQ0) + dsgl->offset;
  1638. /* For each sector-sized chunk in data page */
  1639. for (j = 0 ; j < dsgl->length ; j += scsi_debug_sector_size) {
  1640. /* If we're at the end of the current
  1641. * protection page advance to the next one
  1642. */
  1643. if (ppage_offset >= psgl->length) {
  1644. kunmap_atomic(paddr, KM_IRQ1);
  1645. psgl = sg_next(psgl);
  1646. BUG_ON(psgl == NULL);
  1647. paddr = kmap_atomic(sg_page(psgl), KM_IRQ1)
  1648. + psgl->offset;
  1649. ppage_offset = 0;
  1650. }
  1651. sdt = paddr + ppage_offset;
  1652. switch (scsi_debug_guard) {
  1653. case 1:
  1654. csum = ip_compute_csum(daddr,
  1655. scsi_debug_sector_size);
  1656. break;
  1657. case 0:
  1658. csum = cpu_to_be16(crc_t10dif(daddr,
  1659. scsi_debug_sector_size));
  1660. break;
  1661. default:
  1662. BUG();
  1663. ret = 0;
  1664. goto out;
  1665. }
  1666. if (sdt->guard_tag != csum) {
  1667. printk(KERN_ERR
  1668. "%s: GUARD check failed on sector %lu " \
  1669. "rcvd 0x%04x, calculated 0x%04x\n",
  1670. __func__, (unsigned long)sector,
  1671. be16_to_cpu(sdt->guard_tag),
  1672. be16_to_cpu(csum));
  1673. ret = 0x01;
  1674. dump_sector(daddr, scsi_debug_sector_size);
  1675. goto out;
  1676. }
  1677. if (scsi_debug_dif == SD_DIF_TYPE1_PROTECTION &&
  1678. be32_to_cpu(sdt->ref_tag)
  1679. != (start_sec & 0xffffffff)) {
  1680. printk(KERN_ERR
  1681. "%s: REF check failed on sector %lu\n",
  1682. __func__, (unsigned long)sector);
  1683. ret = 0x03;
  1684. dump_sector(daddr, scsi_debug_sector_size);
  1685. goto out;
  1686. }
  1687. if (scsi_debug_dif == SD_DIF_TYPE2_PROTECTION &&
  1688. be32_to_cpu(sdt->ref_tag) != ei_lba) {
  1689. printk(KERN_ERR
  1690. "%s: REF check failed on sector %lu\n",
  1691. __func__, (unsigned long)sector);
  1692. ret = 0x03;
  1693. dump_sector(daddr, scsi_debug_sector_size);
  1694. goto out;
  1695. }
  1696. /* Would be great to copy this in bigger
  1697. * chunks. However, for the sake of
  1698. * correctness we need to verify each sector
  1699. * before writing it to "stable" storage
  1700. */
  1701. memcpy(dif_storep + dif_offset(sector), sdt, 8);
  1702. sector++;
  1703. if (sector == sdebug_store_sectors)
  1704. sector = 0; /* Force wrap */
  1705. start_sec++;
  1706. ei_lba++;
  1707. daddr += scsi_debug_sector_size;
  1708. ppage_offset += sizeof(struct sd_dif_tuple);
  1709. }
  1710. kunmap_atomic(daddr, KM_IRQ0);
  1711. }
  1712. kunmap_atomic(paddr, KM_IRQ1);
  1713. dix_writes++;
  1714. return 0;
  1715. out:
  1716. dif_errors++;
  1717. kunmap_atomic(daddr, KM_IRQ0);
  1718. kunmap_atomic(paddr, KM_IRQ1);
  1719. return ret;
  1720. }
  1721. static unsigned int map_state(sector_t lba, unsigned int *num)
  1722. {
  1723. unsigned int granularity, alignment, mapped;
  1724. sector_t block, next, end;
  1725. granularity = scsi_debug_unmap_granularity;
  1726. alignment = granularity - scsi_debug_unmap_alignment;
  1727. block = lba + alignment;
  1728. do_div(block, granularity);
  1729. mapped = test_bit(block, map_storep);
  1730. if (mapped)
  1731. next = find_next_zero_bit(map_storep, map_size, block);
  1732. else
  1733. next = find_next_bit(map_storep, map_size, block);
  1734. end = next * granularity - scsi_debug_unmap_alignment;
  1735. *num = end - lba;
  1736. return mapped;
  1737. }
  1738. static void map_region(sector_t lba, unsigned int len)
  1739. {
  1740. unsigned int granularity, alignment;
  1741. sector_t end = lba + len;
  1742. granularity = scsi_debug_unmap_granularity;
  1743. alignment = granularity - scsi_debug_unmap_alignment;
  1744. while (lba < end) {
  1745. sector_t block, rem;
  1746. block = lba + alignment;
  1747. rem = do_div(block, granularity);
  1748. set_bit(block, map_storep);
  1749. lba += granularity - rem;
  1750. }
  1751. }
  1752. static void unmap_region(sector_t lba, unsigned int len)
  1753. {
  1754. unsigned int granularity, alignment;
  1755. sector_t end = lba + len;
  1756. granularity = scsi_debug_unmap_granularity;
  1757. alignment = granularity - scsi_debug_unmap_alignment;
  1758. while (lba < end) {
  1759. sector_t block, rem;
  1760. block = lba + alignment;
  1761. rem = do_div(block, granularity);
  1762. if (rem == 0 && lba + granularity <= end)
  1763. clear_bit(block, map_storep);
  1764. lba += granularity - rem;
  1765. }
  1766. }
  1767. static int resp_write(struct scsi_cmnd *SCpnt, unsigned long long lba,
  1768. unsigned int num, struct sdebug_dev_info *devip,
  1769. u32 ei_lba)
  1770. {
  1771. unsigned long iflags;
  1772. int ret;
  1773. ret = check_device_access_params(devip, lba, num);
  1774. if (ret)
  1775. return ret;
  1776. /* DIX + T10 DIF */
  1777. if (scsi_debug_dix && scsi_prot_sg_count(SCpnt)) {
  1778. int prot_ret = prot_verify_write(SCpnt, lba, num, ei_lba);
  1779. if (prot_ret) {
  1780. mk_sense_buffer(devip, ILLEGAL_REQUEST, 0x10, prot_ret);
  1781. return illegal_condition_result;
  1782. }
  1783. }
  1784. write_lock_irqsave(&atomic_rw, iflags);
  1785. ret = do_device_access(SCpnt, devip, lba, num, 1);
  1786. if (scsi_debug_unmap_granularity)
  1787. map_region(lba, num);
  1788. write_unlock_irqrestore(&atomic_rw, iflags);
  1789. if (-1 == ret)
  1790. return (DID_ERROR << 16);
  1791. else if ((ret < (num * scsi_debug_sector_size)) &&
  1792. (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts))
  1793. printk(KERN_INFO "scsi_debug: write: cdb indicated=%u, "
  1794. " IO sent=%d bytes\n", num * scsi_debug_sector_size, ret);
  1795. return 0;
  1796. }
  1797. static int resp_write_same(struct scsi_cmnd *scmd, unsigned long long lba,
  1798. unsigned int num, struct sdebug_dev_info *devip,
  1799. u32 ei_lba, unsigned int unmap)
  1800. {
  1801. unsigned long iflags;
  1802. unsigned long long i;
  1803. int ret;
  1804. ret = check_device_access_params(devip, lba, num);
  1805. if (ret)
  1806. return ret;
  1807. write_lock_irqsave(&atomic_rw, iflags);
  1808. if (unmap && scsi_debug_unmap_granularity) {
  1809. unmap_region(lba, num);
  1810. goto out;
  1811. }
  1812. /* Else fetch one logical block */
  1813. ret = fetch_to_dev_buffer(scmd,
  1814. fake_storep + (lba * scsi_debug_sector_size),
  1815. scsi_debug_sector_size);
  1816. if (-1 == ret) {
  1817. write_unlock_irqrestore(&atomic_rw, iflags);
  1818. return (DID_ERROR << 16);
  1819. } else if ((ret < (num * scsi_debug_sector_size)) &&
  1820. (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts))
  1821. printk(KERN_INFO "scsi_debug: write same: cdb indicated=%u, "
  1822. " IO sent=%d bytes\n", num * scsi_debug_sector_size, ret);
  1823. /* Copy first sector to remaining blocks */
  1824. for (i = 1 ; i < num ; i++)
  1825. memcpy(fake_storep + ((lba + i) * scsi_debug_sector_size),
  1826. fake_storep + (lba * scsi_debug_sector_size),
  1827. scsi_debug_sector_size);
  1828. if (scsi_debug_unmap_granularity)
  1829. map_region(lba, num);
  1830. out:
  1831. write_unlock_irqrestore(&atomic_rw, iflags);
  1832. return 0;
  1833. }
  1834. struct unmap_block_desc {
  1835. __be64 lba;
  1836. __be32 blocks;
  1837. __be32 __reserved;
  1838. };
  1839. static int resp_unmap(struct scsi_cmnd * scmd, struct sdebug_dev_info * devip)
  1840. {
  1841. unsigned char *buf;
  1842. struct unmap_block_desc *desc;
  1843. unsigned int i, payload_len, descriptors;
  1844. int ret;
  1845. ret = check_readiness(scmd, 1, devip);
  1846. if (ret)
  1847. return ret;
  1848. payload_len = get_unaligned_be16(&scmd->cmnd[7]);
  1849. BUG_ON(scsi_bufflen(scmd) != payload_len);
  1850. descriptors = (payload_len - 8) / 16;
  1851. buf = kmalloc(scsi_bufflen(scmd), GFP_ATOMIC);
  1852. if (!buf)
  1853. return check_condition_result;
  1854. scsi_sg_copy_to_buffer(scmd, buf, scsi_bufflen(scmd));
  1855. BUG_ON(get_unaligned_be16(&buf[0]) != payload_len - 2);
  1856. BUG_ON(get_unaligned_be16(&buf[2]) != descriptors * 16);
  1857. desc = (void *)&buf[8];
  1858. for (i = 0 ; i < descriptors ; i++) {
  1859. unsigned long long lba = get_unaligned_be64(&desc[i].lba);
  1860. unsigned int num = get_unaligned_be32(&desc[i].blocks);
  1861. ret = check_device_access_params(devip, lba, num);
  1862. if (ret)
  1863. goto out;
  1864. unmap_region(lba, num);
  1865. }
  1866. ret = 0;
  1867. out:
  1868. kfree(buf);
  1869. return ret;
  1870. }
  1871. #define SDEBUG_GET_LBA_STATUS_LEN 32
  1872. static int resp_get_lba_status(struct scsi_cmnd * scmd,
  1873. struct sdebug_dev_info * devip)
  1874. {
  1875. unsigned long long lba;
  1876. unsigned int alloc_len, mapped, num;
  1877. unsigned char arr[SDEBUG_GET_LBA_STATUS_LEN];
  1878. int ret;
  1879. ret = check_readiness(scmd, 1, devip);
  1880. if (ret)
  1881. return ret;
  1882. lba = get_unaligned_be64(&scmd->cmnd[2]);
  1883. alloc_len = get_unaligned_be32(&scmd->cmnd[10]);
  1884. if (alloc_len < 24)
  1885. return 0;
  1886. ret = check_device_access_params(devip, lba, 1);
  1887. if (ret)
  1888. return ret;
  1889. mapped = map_state(lba, &num);
  1890. memset(arr, 0, SDEBUG_GET_LBA_STATUS_LEN);
  1891. put_unaligned_be32(16, &arr[0]); /* Parameter Data Length */
  1892. put_unaligned_be64(lba, &arr[8]); /* LBA */
  1893. put_unaligned_be32(num, &arr[16]); /* Number of blocks */
  1894. arr[20] = !mapped; /* mapped = 0, unmapped = 1 */
  1895. return fill_from_dev_buffer(scmd, arr, SDEBUG_GET_LBA_STATUS_LEN);
  1896. }
  1897. #define SDEBUG_RLUN_ARR_SZ 256
  1898. static int resp_report_luns(struct scsi_cmnd * scp,
  1899. struct sdebug_dev_info * devip)
  1900. {
  1901. unsigned int alloc_len;
  1902. int lun_cnt, i, upper, num, n, wlun, lun;
  1903. unsigned char *cmd = (unsigned char *)scp->cmnd;
  1904. int select_report = (int)cmd[2];
  1905. struct scsi_lun *one_lun;
  1906. unsigned char arr[SDEBUG_RLUN_ARR_SZ];
  1907. unsigned char * max_addr;
  1908. alloc_len = cmd[9] + (cmd[8] << 8) + (cmd[7] << 16) + (cmd[6] << 24);
  1909. if ((alloc_len < 4) || (select_report > 2)) {
  1910. mk_sense_buffer(devip, ILLEGAL_REQUEST, INVALID_FIELD_IN_CDB,
  1911. 0);
  1912. return check_condition_result;
  1913. }
  1914. /* can produce response with up to 16k luns (lun 0 to lun 16383) */
  1915. memset(arr, 0, SDEBUG_RLUN_ARR_SZ);
  1916. lun_cnt = scsi_debug_max_luns;
  1917. if (1 == select_report)
  1918. lun_cnt = 0;
  1919. else if (scsi_debug_no_lun_0 && (lun_cnt > 0))
  1920. --lun_cnt;
  1921. wlun = (select_report > 0) ? 1 : 0;
  1922. num = lun_cnt + wlun;
  1923. arr[2] = ((sizeof(struct scsi_lun) * num) >> 8) & 0xff;
  1924. arr[3] = (sizeof(struct scsi_lun) * num) & 0xff;
  1925. n = min((int)((SDEBUG_RLUN_ARR_SZ - 8) /
  1926. sizeof(struct scsi_lun)), num);
  1927. if (n < num) {
  1928. wlun = 0;
  1929. lun_cnt = n;
  1930. }
  1931. one_lun = (struct scsi_lun *) &arr[8];
  1932. max_addr = arr + SDEBUG_RLUN_ARR_SZ;
  1933. for (i = 0, lun = (scsi_debug_no_lun_0 ? 1 : 0);
  1934. ((i < lun_cnt) && ((unsigned char *)(one_lun + i) < max_addr));
  1935. i++, lun++) {
  1936. upper = (lun >> 8) & 0x3f;
  1937. if (upper)
  1938. one_lun[i].scsi_lun[0] =
  1939. (upper | (SAM2_LUN_ADDRESS_METHOD << 6));
  1940. one_lun[i].scsi_lun[1] = lun & 0xff;
  1941. }
  1942. if (wlun) {
  1943. one_lun[i].scsi_lun[0] = (SAM2_WLUN_REPORT_LUNS >> 8) & 0xff;
  1944. one_lun[i].scsi_lun[1] = SAM2_WLUN_REPORT_LUNS & 0xff;
  1945. i++;
  1946. }
  1947. alloc_len = (unsigned char *)(one_lun + i) - arr;
  1948. return fill_from_dev_buffer(scp, arr,
  1949. min((int)alloc_len, SDEBUG_RLUN_ARR_SZ));
  1950. }
  1951. static int resp_xdwriteread(struct scsi_cmnd *scp, unsigned long long lba,
  1952. unsigned int num, struct sdebug_dev_info *devip)
  1953. {
  1954. int i, j, ret = -1;
  1955. unsigned char *kaddr, *buf;
  1956. unsigned int offset;
  1957. struct scatterlist *sg;
  1958. struct scsi_data_buffer *sdb = scsi_in(scp);
  1959. /* better not to use temporary buffer. */
  1960. buf = kmalloc(scsi_bufflen(scp), GFP_ATOMIC);
  1961. if (!buf)
  1962. return ret;
  1963. scsi_sg_copy_to_buffer(scp, buf, scsi_bufflen(scp));
  1964. offset = 0;
  1965. for_each_sg(sdb->table.sgl, sg, sdb->table.nents, i) {
  1966. kaddr = (unsigned char *)kmap_atomic(sg_page(sg), KM_USER0);
  1967. if (!kaddr)
  1968. goto out;
  1969. for (j = 0; j < sg->length; j++)
  1970. *(kaddr + sg->offset + j) ^= *(buf + offset + j);
  1971. offset += sg->length;
  1972. kunmap_atomic(kaddr, KM_USER0);
  1973. }
  1974. ret = 0;
  1975. out:
  1976. kfree(buf);
  1977. return ret;
  1978. }
  1979. /* When timer goes off this function is called. */
  1980. static void timer_intr_handler(unsigned long indx)
  1981. {
  1982. struct sdebug_queued_cmd * sqcp;
  1983. unsigned long iflags;
  1984. if (indx >= SCSI_DEBUG_CANQUEUE) {
  1985. printk(KERN_ERR "scsi_debug:timer_intr_handler: indx too "
  1986. "large\n");
  1987. return;
  1988. }
  1989. spin_lock_irqsave(&queued_arr_lock, iflags);
  1990. sqcp = &queued_arr[(int)indx];
  1991. if (! sqcp->in_use) {
  1992. printk(KERN_ERR "scsi_debug:timer_intr_handler: Unexpected "
  1993. "interrupt\n");
  1994. spin_unlock_irqrestore(&queued_arr_lock, iflags);
  1995. return;
  1996. }
  1997. sqcp->in_use = 0;
  1998. if (sqcp->done_funct) {
  1999. sqcp->a_cmnd->result = sqcp->scsi_result;
  2000. sqcp->done_funct(sqcp->a_cmnd); /* callback to mid level */
  2001. }
  2002. sqcp->done_funct = NULL;
  2003. spin_unlock_irqrestore(&queued_arr_lock, iflags);
  2004. }
  2005. static struct sdebug_dev_info *
  2006. sdebug_device_create(struct sdebug_host_info *sdbg_host, gfp_t flags)
  2007. {
  2008. struct sdebug_dev_info *devip;
  2009. devip = kzalloc(sizeof(*devip), flags);
  2010. if (devip) {
  2011. devip->sdbg_host = sdbg_host;
  2012. list_add_tail(&devip->dev_list, &sdbg_host->dev_info_list);
  2013. }
  2014. return devip;
  2015. }
  2016. static struct sdebug_dev_info * devInfoReg(struct scsi_device * sdev)
  2017. {
  2018. struct sdebug_host_info * sdbg_host;
  2019. struct sdebug_dev_info * open_devip = NULL;
  2020. struct sdebug_dev_info * devip =
  2021. (struct sdebug_dev_info *)sdev->hostdata;
  2022. if (devip)
  2023. return devip;
  2024. sdbg_host = *(struct sdebug_host_info **)shost_priv(sdev->host);
  2025. if (!sdbg_host) {
  2026. printk(KERN_ERR "Host info NULL\n");
  2027. return NULL;
  2028. }
  2029. list_for_each_entry(devip, &sdbg_host->dev_info_list, dev_list) {
  2030. if ((devip->used) && (devip->channel == sdev->channel) &&
  2031. (devip->target == sdev->id) &&
  2032. (devip->lun == sdev->lun))
  2033. return devip;
  2034. else {
  2035. if ((!devip->used) && (!open_devip))
  2036. open_devip = devip;
  2037. }
  2038. }
  2039. if (!open_devip) { /* try and make a new one */
  2040. open_devip = sdebug_device_create(sdbg_host, GFP_ATOMIC);
  2041. if (!open_devip) {
  2042. printk(KERN_ERR "%s: out of memory at line %d\n",
  2043. __func__, __LINE__);
  2044. return NULL;
  2045. }
  2046. }
  2047. open_devip->channel = sdev->channel;
  2048. open_devip->target = sdev->id;
  2049. open_devip->lun = sdev->lun;
  2050. open_devip->sdbg_host = sdbg_host;
  2051. open_devip->reset = 1;
  2052. open_devip->used = 1;
  2053. memset(open_devip->sense_buff, 0, SDEBUG_SENSE_LEN);
  2054. if (scsi_debug_dsense)
  2055. open_devip->sense_buff[0] = 0x72;
  2056. else {
  2057. open_devip->sense_buff[0] = 0x70;
  2058. open_devip->sense_buff[7] = 0xa;
  2059. }
  2060. if (sdev->lun == SAM2_WLUN_REPORT_LUNS)
  2061. open_devip->wlun = SAM2_WLUN_REPORT_LUNS & 0xff;
  2062. return open_devip;
  2063. }
  2064. static int scsi_debug_slave_alloc(struct scsi_device *sdp)
  2065. {
  2066. if (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts)
  2067. printk(KERN_INFO "scsi_debug: slave_alloc <%u %u %u %u>\n",
  2068. sdp->host->host_no, sdp->channel, sdp->id, sdp->lun);
  2069. queue_flag_set_unlocked(QUEUE_FLAG_BIDI, sdp->request_queue);
  2070. return 0;
  2071. }
  2072. static int scsi_debug_slave_configure(struct scsi_device *sdp)
  2073. {
  2074. struct sdebug_dev_info *devip;
  2075. if (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts)
  2076. printk(KERN_INFO "scsi_debug: slave_configure <%u %u %u %u>\n",
  2077. sdp->host->host_no, sdp->channel, sdp->id, sdp->lun);
  2078. if (sdp->host->max_cmd_len != SCSI_DEBUG_MAX_CMD_LEN)
  2079. sdp->host->max_cmd_len = SCSI_DEBUG_MAX_CMD_LEN;
  2080. devip = devInfoReg(sdp);
  2081. if (NULL == devip)
  2082. return 1; /* no resources, will be marked offline */
  2083. sdp->hostdata = devip;
  2084. if (sdp->host->cmd_per_lun)
  2085. scsi_adjust_queue_depth(sdp, SDEBUG_TAGGED_QUEUING,
  2086. sdp->host->cmd_per_lun);
  2087. blk_queue_max_segment_size(sdp->request_queue, 256 * 1024);
  2088. return 0;
  2089. }
  2090. static void scsi_debug_slave_destroy(struct scsi_device *sdp)
  2091. {
  2092. struct sdebug_dev_info *devip =
  2093. (struct sdebug_dev_info *)sdp->hostdata;
  2094. if (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts)
  2095. printk(KERN_INFO "scsi_debug: slave_destroy <%u %u %u %u>\n",
  2096. sdp->host->host_no, sdp->channel, sdp->id, sdp->lun);
  2097. if (devip) {
  2098. /* make this slot avaliable for re-use */
  2099. devip->used = 0;
  2100. sdp->hostdata = NULL;
  2101. }
  2102. }
  2103. /* Returns 1 if found 'cmnd' and deleted its timer. else returns 0 */
  2104. static int stop_queued_cmnd(struct scsi_cmnd *cmnd)
  2105. {
  2106. unsigned long iflags;
  2107. int k;
  2108. struct sdebug_queued_cmd *sqcp;
  2109. spin_lock_irqsave(&queued_arr_lock, iflags);
  2110. for (k = 0; k < SCSI_DEBUG_CANQUEUE; ++k) {
  2111. sqcp = &queued_arr[k];
  2112. if (sqcp->in_use && (cmnd == sqcp->a_cmnd)) {
  2113. del_timer_sync(&sqcp->cmnd_timer);
  2114. sqcp->in_use = 0;
  2115. sqcp->a_cmnd = NULL;
  2116. break;
  2117. }
  2118. }
  2119. spin_unlock_irqrestore(&queued_arr_lock, iflags);
  2120. return (k < SCSI_DEBUG_CANQUEUE) ? 1 : 0;
  2121. }
  2122. /* Deletes (stops) timers of all queued commands */
  2123. static void stop_all_queued(void)
  2124. {
  2125. unsigned long iflags;
  2126. int k;
  2127. struct sdebug_queued_cmd *sqcp;
  2128. spin_lock_irqsave(&queued_arr_lock, iflags);
  2129. for (k = 0; k < SCSI_DEBUG_CANQUEUE; ++k) {
  2130. sqcp = &queued_arr[k];
  2131. if (sqcp->in_use && sqcp->a_cmnd) {
  2132. del_timer_sync(&sqcp->cmnd_timer);
  2133. sqcp->in_use = 0;
  2134. sqcp->a_cmnd = NULL;
  2135. }
  2136. }
  2137. spin_unlock_irqrestore(&queued_arr_lock, iflags);
  2138. }
  2139. static int scsi_debug_abort(struct scsi_cmnd * SCpnt)
  2140. {
  2141. if (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts)
  2142. printk(KERN_INFO "scsi_debug: abort\n");
  2143. ++num_aborts;
  2144. stop_queued_cmnd(SCpnt);
  2145. return SUCCESS;
  2146. }
  2147. static int scsi_debug_biosparam(struct scsi_device *sdev,
  2148. struct block_device * bdev, sector_t capacity, int *info)
  2149. {
  2150. int res;
  2151. unsigned char *buf;
  2152. if (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts)
  2153. printk(KERN_INFO "scsi_debug: biosparam\n");
  2154. buf = scsi_bios_ptable(bdev);
  2155. if (buf) {
  2156. res = scsi_partsize(buf, capacity,
  2157. &info[2], &info[0], &info[1]);
  2158. kfree(buf);
  2159. if (! res)
  2160. return res;
  2161. }
  2162. info[0] = sdebug_heads;
  2163. info[1] = sdebug_sectors_per;
  2164. info[2] = sdebug_cylinders_per;
  2165. return 0;
  2166. }
  2167. static int scsi_debug_device_reset(struct scsi_cmnd * SCpnt)
  2168. {
  2169. struct sdebug_dev_info * devip;
  2170. if (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts)
  2171. printk(KERN_INFO "scsi_debug: device_reset\n");
  2172. ++num_dev_resets;
  2173. if (SCpnt) {
  2174. devip = devInfoReg(SCpnt->device);
  2175. if (devip)
  2176. devip->reset = 1;
  2177. }
  2178. return SUCCESS;
  2179. }
  2180. static int scsi_debug_bus_reset(struct scsi_cmnd * SCpnt)
  2181. {
  2182. struct sdebug_host_info *sdbg_host;
  2183. struct sdebug_dev_info * dev_info;
  2184. struct scsi_device * sdp;
  2185. struct Scsi_Host * hp;
  2186. if (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts)
  2187. printk(KERN_INFO "scsi_debug: bus_reset\n");
  2188. ++num_bus_resets;
  2189. if (SCpnt && ((sdp = SCpnt->device)) && ((hp = sdp->host))) {
  2190. sdbg_host = *(struct sdebug_host_info **)shost_priv(hp);
  2191. if (sdbg_host) {
  2192. list_for_each_entry(dev_info,
  2193. &sdbg_host->dev_info_list,
  2194. dev_list)
  2195. dev_info->reset = 1;
  2196. }
  2197. }
  2198. return SUCCESS;
  2199. }
  2200. static int scsi_debug_host_reset(struct scsi_cmnd * SCpnt)
  2201. {
  2202. struct sdebug_host_info * sdbg_host;
  2203. struct sdebug_dev_info * dev_info;
  2204. if (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts)
  2205. printk(KERN_INFO "scsi_debug: host_reset\n");
  2206. ++num_host_resets;
  2207. spin_lock(&sdebug_host_list_lock);
  2208. list_for_each_entry(sdbg_host, &sdebug_host_list, host_list) {
  2209. list_for_each_entry(dev_info, &sdbg_host->dev_info_list,
  2210. dev_list)
  2211. dev_info->reset = 1;
  2212. }
  2213. spin_unlock(&sdebug_host_list_lock);
  2214. stop_all_queued();
  2215. return SUCCESS;
  2216. }
  2217. /* Initializes timers in queued array */
  2218. static void __init init_all_queued(void)
  2219. {
  2220. unsigned long iflags;
  2221. int k;
  2222. struct sdebug_queued_cmd * sqcp;
  2223. spin_lock_irqsave(&queued_arr_lock, iflags);
  2224. for (k = 0; k < SCSI_DEBUG_CANQUEUE; ++k) {
  2225. sqcp = &queued_arr[k];
  2226. init_timer(&sqcp->cmnd_timer);
  2227. sqcp->in_use = 0;
  2228. sqcp->a_cmnd = NULL;
  2229. }
  2230. spin_unlock_irqrestore(&queued_arr_lock, iflags);
  2231. }
  2232. static void __init sdebug_build_parts(unsigned char *ramp,
  2233. unsigned long store_size)
  2234. {
  2235. struct partition * pp;
  2236. int starts[SDEBUG_MAX_PARTS + 2];
  2237. int sectors_per_part, num_sectors, k;
  2238. int heads_by_sects, start_sec, end_sec;
  2239. /* assume partition table already zeroed */
  2240. if ((scsi_debug_num_parts < 1) || (store_size < 1048576))
  2241. return;
  2242. if (scsi_debug_num_parts > SDEBUG_MAX_PARTS) {
  2243. scsi_debug_num_parts = SDEBUG_MAX_PARTS;
  2244. printk(KERN_WARNING "scsi_debug:build_parts: reducing "
  2245. "partitions to %d\n", SDEBUG_MAX_PARTS);
  2246. }
  2247. num_sectors = (int)sdebug_store_sectors;
  2248. sectors_per_part = (num_sectors - sdebug_sectors_per)
  2249. / scsi_debug_num_parts;
  2250. heads_by_sects = sdebug_heads * sdebug_sectors_per;
  2251. starts[0] = sdebug_sectors_per;
  2252. for (k = 1; k < scsi_debug_num_parts; ++k)
  2253. starts[k] = ((k * sectors_per_part) / heads_by_sects)
  2254. * heads_by_sects;
  2255. starts[scsi_debug_num_parts] = num_sectors;
  2256. starts[scsi_debug_num_parts + 1] = 0;
  2257. ramp[510] = 0x55; /* magic partition markings */
  2258. ramp[511] = 0xAA;
  2259. pp = (struct partition *)(ramp + 0x1be);
  2260. for (k = 0; starts[k + 1]; ++k, ++pp) {
  2261. start_sec = starts[k];
  2262. end_sec = starts[k + 1] - 1;
  2263. pp->boot_ind = 0;
  2264. pp->cyl = start_sec / heads_by_sects;
  2265. pp->head = (start_sec - (pp->cyl * heads_by_sects))
  2266. / sdebug_sectors_per;
  2267. pp->sector = (start_sec % sdebug_sectors_per) + 1;
  2268. pp->end_cyl = end_sec / heads_by_sects;
  2269. pp->end_head = (end_sec - (pp->end_cyl * heads_by_sects))
  2270. / sdebug_sectors_per;
  2271. pp->end_sector = (end_sec % sdebug_sectors_per) + 1;
  2272. pp->start_sect = start_sec;
  2273. pp->nr_sects = end_sec - start_sec + 1;
  2274. pp->sys_ind = 0x83; /* plain Linux partition */
  2275. }
  2276. }
  2277. static int schedule_resp(struct scsi_cmnd * cmnd,
  2278. struct sdebug_dev_info * devip,
  2279. done_funct_t done, int scsi_result, int delta_jiff)
  2280. {
  2281. if ((SCSI_DEBUG_OPT_NOISE & scsi_debug_opts) && cmnd) {
  2282. if (scsi_result) {
  2283. struct scsi_device * sdp = cmnd->device;
  2284. printk(KERN_INFO "scsi_debug: <%u %u %u %u> "
  2285. "non-zero result=0x%x\n", sdp->host->host_no,
  2286. sdp->channel, sdp->id, sdp->lun, scsi_result);
  2287. }
  2288. }
  2289. if (cmnd && devip) {
  2290. /* simulate autosense by this driver */
  2291. if (SAM_STAT_CHECK_CONDITION == (scsi_result & 0xff))
  2292. memcpy(cmnd->sense_buffer, devip->sense_buff,
  2293. (SCSI_SENSE_BUFFERSIZE > SDEBUG_SENSE_LEN) ?
  2294. SDEBUG_SENSE_LEN : SCSI_SENSE_BUFFERSIZE);
  2295. }
  2296. if (delta_jiff <= 0) {
  2297. if (cmnd)
  2298. cmnd->result = scsi_result;
  2299. if (done)
  2300. done(cmnd);
  2301. return 0;
  2302. } else {
  2303. unsigned long iflags;
  2304. int k;
  2305. struct sdebug_queued_cmd * sqcp = NULL;
  2306. spin_lock_irqsave(&queued_arr_lock, iflags);
  2307. for (k = 0; k < SCSI_DEBUG_CANQUEUE; ++k) {
  2308. sqcp = &queued_arr[k];
  2309. if (! sqcp->in_use)
  2310. break;
  2311. }
  2312. if (k >= SCSI_DEBUG_CANQUEUE) {
  2313. spin_unlock_irqrestore(&queued_arr_lock, iflags);
  2314. printk(KERN_WARNING "scsi_debug: can_queue exceeded\n");
  2315. return 1; /* report busy to mid level */
  2316. }
  2317. sqcp->in_use = 1;
  2318. sqcp->a_cmnd = cmnd;
  2319. sqcp->scsi_result = scsi_result;
  2320. sqcp->done_funct = done;
  2321. sqcp->cmnd_timer.function = timer_intr_handler;
  2322. sqcp->cmnd_timer.data = k;
  2323. sqcp->cmnd_timer.expires = jiffies + delta_jiff;
  2324. add_timer(&sqcp->cmnd_timer);
  2325. spin_unlock_irqrestore(&queued_arr_lock, iflags);
  2326. if (cmnd)
  2327. cmnd->result = 0;
  2328. return 0;
  2329. }
  2330. }
  2331. /* Note: The following macros create attribute files in the
  2332. /sys/module/scsi_debug/parameters directory. Unfortunately this
  2333. driver is unaware of a change and cannot trigger auxiliary actions
  2334. as it can when the corresponding attribute in the
  2335. /sys/bus/pseudo/drivers/scsi_debug directory is changed.
  2336. */
  2337. module_param_named(add_host, scsi_debug_add_host, int, S_IRUGO | S_IWUSR);
  2338. module_param_named(delay, scsi_debug_delay, int, S_IRUGO | S_IWUSR);
  2339. module_param_named(dev_size_mb, scsi_debug_dev_size_mb, int, S_IRUGO);
  2340. module_param_named(dsense, scsi_debug_dsense, int, S_IRUGO | S_IWUSR);
  2341. module_param_named(every_nth, scsi_debug_every_nth, int, S_IRUGO | S_IWUSR);
  2342. module_param_named(fake_rw, scsi_debug_fake_rw, int, S_IRUGO | S_IWUSR);
  2343. module_param_named(max_luns, scsi_debug_max_luns, int, S_IRUGO | S_IWUSR);
  2344. module_param_named(no_lun_0, scsi_debug_no_lun_0, int, S_IRUGO | S_IWUSR);
  2345. module_param_named(num_parts, scsi_debug_num_parts, int, S_IRUGO);
  2346. module_param_named(num_tgts, scsi_debug_num_tgts, int, S_IRUGO | S_IWUSR);
  2347. module_param_named(opts, scsi_debug_opts, int, S_IRUGO | S_IWUSR);
  2348. module_param_named(ptype, scsi_debug_ptype, int, S_IRUGO | S_IWUSR);
  2349. module_param_named(scsi_level, scsi_debug_scsi_level, int, S_IRUGO);
  2350. module_param_named(virtual_gb, scsi_debug_virtual_gb, int, S_IRUGO | S_IWUSR);
  2351. module_param_named(vpd_use_hostno, scsi_debug_vpd_use_hostno, int,
  2352. S_IRUGO | S_IWUSR);
  2353. module_param_named(sector_size, scsi_debug_sector_size, int, S_IRUGO);
  2354. module_param_named(dix, scsi_debug_dix, int, S_IRUGO);
  2355. module_param_named(dif, scsi_debug_dif, int, S_IRUGO);
  2356. module_param_named(guard, scsi_debug_guard, int, S_IRUGO);
  2357. module_param_named(ato, scsi_debug_ato, int, S_IRUGO);
  2358. module_param_named(physblk_exp, scsi_debug_physblk_exp, int, S_IRUGO);
  2359. module_param_named(lowest_aligned, scsi_debug_lowest_aligned, int, S_IRUGO);
  2360. module_param_named(unmap_max_blocks, scsi_debug_unmap_max_blocks, int, S_IRUGO);
  2361. module_param_named(unmap_max_desc, scsi_debug_unmap_max_desc, int, S_IRUGO);
  2362. module_param_named(unmap_granularity, scsi_debug_unmap_granularity, int, S_IRUGO);
  2363. module_param_named(unmap_alignment, scsi_debug_unmap_alignment, int, S_IRUGO);
  2364. MODULE_AUTHOR("Eric Youngdale + Douglas Gilbert");
  2365. MODULE_DESCRIPTION("SCSI debug adapter driver");
  2366. MODULE_LICENSE("GPL");
  2367. MODULE_VERSION(SCSI_DEBUG_VERSION);
  2368. MODULE_PARM_DESC(add_host, "0..127 hosts allowed(def=1)");
  2369. MODULE_PARM_DESC(delay, "# of jiffies to delay response(def=1)");
  2370. MODULE_PARM_DESC(dev_size_mb, "size in MB of ram shared by devs(def=8)");
  2371. MODULE_PARM_DESC(dsense, "use descriptor sense format(def=0 -> fixed)");
  2372. MODULE_PARM_DESC(every_nth, "timeout every nth command(def=0)");
  2373. MODULE_PARM_DESC(fake_rw, "fake reads/writes instead of copying (def=0)");
  2374. MODULE_PARM_DESC(max_luns, "number of LUNs per target to simulate(def=1)");
  2375. MODULE_PARM_DESC(no_lun_0, "no LU number 0 (def=0 -> have lun 0)");
  2376. MODULE_PARM_DESC(num_parts, "number of partitions(def=0)");
  2377. MODULE_PARM_DESC(num_tgts, "number of targets per host to simulate(def=1)");
  2378. MODULE_PARM_DESC(opts, "1->noise, 2->medium_err, 4->timeout, 8->recovered_err... (def=0)");
  2379. MODULE_PARM_DESC(ptype, "SCSI peripheral type(def=0[disk])");
  2380. MODULE_PARM_DESC(scsi_level, "SCSI level to simulate(def=5[SPC-3])");
  2381. MODULE_PARM_DESC(virtual_gb, "virtual gigabyte size (def=0 -> use dev_size_mb)");
  2382. MODULE_PARM_DESC(vpd_use_hostno, "0 -> dev ids ignore hostno (def=1 -> unique dev ids)");
  2383. MODULE_PARM_DESC(sector_size, "logical block size in bytes (def=512)");
  2384. MODULE_PARM_DESC(physblk_exp, "physical block exponent (def=0)");
  2385. MODULE_PARM_DESC(lowest_aligned, "lowest aligned lba (def=0)");
  2386. MODULE_PARM_DESC(dix, "data integrity extensions mask (def=0)");
  2387. MODULE_PARM_DESC(dif, "data integrity field type: 0-3 (def=0)");
  2388. MODULE_PARM_DESC(guard, "protection checksum: 0=crc, 1=ip (def=0)");
  2389. MODULE_PARM_DESC(ato, "application tag ownership: 0=disk 1=host (def=1)");
  2390. MODULE_PARM_DESC(unmap_max_blocks, "max # of blocks can be unmapped in one cmd (def=0)");
  2391. MODULE_PARM_DESC(unmap_max_desc, "max # of ranges that can be unmapped in one cmd (def=0)");
  2392. MODULE_PARM_DESC(unmap_granularity, "thin provisioning granularity in blocks (def=0)");
  2393. MODULE_PARM_DESC(unmap_alignment, "lowest aligned thin provisioning lba (def=0)");
  2394. static char sdebug_info[256];
  2395. static const char * scsi_debug_info(struct Scsi_Host * shp)
  2396. {
  2397. sprintf(sdebug_info, "scsi_debug, version %s [%s], "
  2398. "dev_size_mb=%d, opts=0x%x", SCSI_DEBUG_VERSION,
  2399. scsi_debug_version_date, scsi_debug_dev_size_mb,
  2400. scsi_debug_opts);
  2401. return sdebug_info;
  2402. }
  2403. /* scsi_debug_proc_info
  2404. * Used if the driver currently has no own support for /proc/scsi
  2405. */
  2406. static int scsi_debug_proc_info(struct Scsi_Host *host, char *buffer, char **start, off_t offset,
  2407. int length, int inout)
  2408. {
  2409. int len, pos, begin;
  2410. int orig_length;
  2411. orig_length = length;
  2412. if (inout == 1) {
  2413. char arr[16];
  2414. int minLen = length > 15 ? 15 : length;
  2415. if (!capable(CAP_SYS_ADMIN) || !capable(CAP_SYS_RAWIO))
  2416. return -EACCES;
  2417. memcpy(arr, buffer, minLen);
  2418. arr[minLen] = '\0';
  2419. if (1 != sscanf(arr, "%d", &pos))
  2420. return -EINVAL;
  2421. scsi_debug_opts = pos;
  2422. if (scsi_debug_every_nth != 0)
  2423. scsi_debug_cmnd_count = 0;
  2424. return length;
  2425. }
  2426. begin = 0;
  2427. pos = len = sprintf(buffer, "scsi_debug adapter driver, version "
  2428. "%s [%s]\n"
  2429. "num_tgts=%d, shared (ram) size=%d MB, opts=0x%x, "
  2430. "every_nth=%d(curr:%d)\n"
  2431. "delay=%d, max_luns=%d, scsi_level=%d\n"
  2432. "sector_size=%d bytes, cylinders=%d, heads=%d, sectors=%d\n"
  2433. "number of aborts=%d, device_reset=%d, bus_resets=%d, "
  2434. "host_resets=%d\ndix_reads=%d dix_writes=%d dif_errors=%d\n",
  2435. SCSI_DEBUG_VERSION, scsi_debug_version_date, scsi_debug_num_tgts,
  2436. scsi_debug_dev_size_mb, scsi_debug_opts, scsi_debug_every_nth,
  2437. scsi_debug_cmnd_count, scsi_debug_delay,
  2438. scsi_debug_max_luns, scsi_debug_scsi_level,
  2439. scsi_debug_sector_size, sdebug_cylinders_per, sdebug_heads,
  2440. sdebug_sectors_per, num_aborts, num_dev_resets, num_bus_resets,
  2441. num_host_resets, dix_reads, dix_writes, dif_errors);
  2442. if (pos < offset) {
  2443. len = 0;
  2444. begin = pos;
  2445. }
  2446. *start = buffer + (offset - begin); /* Start of wanted data */
  2447. len -= (offset - begin);
  2448. if (len > length)
  2449. len = length;
  2450. return len;
  2451. }
  2452. static ssize_t sdebug_delay_show(struct device_driver * ddp, char * buf)
  2453. {
  2454. return scnprintf(buf, PAGE_SIZE, "%d\n", scsi_debug_delay);
  2455. }
  2456. static ssize_t sdebug_delay_store(struct device_driver * ddp,
  2457. const char * buf, size_t count)
  2458. {
  2459. int delay;
  2460. char work[20];
  2461. if (1 == sscanf(buf, "%10s", work)) {
  2462. if ((1 == sscanf(work, "%d", &delay)) && (delay >= 0)) {
  2463. scsi_debug_delay = delay;
  2464. return count;
  2465. }
  2466. }
  2467. return -EINVAL;
  2468. }
  2469. DRIVER_ATTR(delay, S_IRUGO | S_IWUSR, sdebug_delay_show,
  2470. sdebug_delay_store);
  2471. static ssize_t sdebug_opts_show(struct device_driver * ddp, char * buf)
  2472. {
  2473. return scnprintf(buf, PAGE_SIZE, "0x%x\n", scsi_debug_opts);
  2474. }
  2475. static ssize_t sdebug_opts_store(struct device_driver * ddp,
  2476. const char * buf, size_t count)
  2477. {
  2478. int opts;
  2479. char work[20];
  2480. if (1 == sscanf(buf, "%10s", work)) {
  2481. if (0 == strnicmp(work,"0x", 2)) {
  2482. if (1 == sscanf(&work[2], "%x", &opts))
  2483. goto opts_done;
  2484. } else {
  2485. if (1 == sscanf(work, "%d", &opts))
  2486. goto opts_done;
  2487. }
  2488. }
  2489. return -EINVAL;
  2490. opts_done:
  2491. scsi_debug_opts = opts;
  2492. scsi_debug_cmnd_count = 0;
  2493. return count;
  2494. }
  2495. DRIVER_ATTR(opts, S_IRUGO | S_IWUSR, sdebug_opts_show,
  2496. sdebug_opts_store);
  2497. static ssize_t sdebug_ptype_show(struct device_driver * ddp, char * buf)
  2498. {
  2499. return scnprintf(buf, PAGE_SIZE, "%d\n", scsi_debug_ptype);
  2500. }
  2501. static ssize_t sdebug_ptype_store(struct device_driver * ddp,
  2502. const char * buf, size_t count)
  2503. {
  2504. int n;
  2505. if ((count > 0) && (1 == sscanf(buf, "%d", &n)) && (n >= 0)) {
  2506. scsi_debug_ptype = n;
  2507. return count;
  2508. }
  2509. return -EINVAL;
  2510. }
  2511. DRIVER_ATTR(ptype, S_IRUGO | S_IWUSR, sdebug_ptype_show, sdebug_ptype_store);
  2512. static ssize_t sdebug_dsense_show(struct device_driver * ddp, char * buf)
  2513. {
  2514. return scnprintf(buf, PAGE_SIZE, "%d\n", scsi_debug_dsense);
  2515. }
  2516. static ssize_t sdebug_dsense_store(struct device_driver * ddp,
  2517. const char * buf, size_t count)
  2518. {
  2519. int n;
  2520. if ((count > 0) && (1 == sscanf(buf, "%d", &n)) && (n >= 0)) {
  2521. scsi_debug_dsense = n;
  2522. return count;
  2523. }
  2524. return -EINVAL;
  2525. }
  2526. DRIVER_ATTR(dsense, S_IRUGO | S_IWUSR, sdebug_dsense_show,
  2527. sdebug_dsense_store);
  2528. static ssize_t sdebug_fake_rw_show(struct device_driver * ddp, char * buf)
  2529. {
  2530. return scnprintf(buf, PAGE_SIZE, "%d\n", scsi_debug_fake_rw);
  2531. }
  2532. static ssize_t sdebug_fake_rw_store(struct device_driver * ddp,
  2533. const char * buf, size_t count)
  2534. {
  2535. int n;
  2536. if ((count > 0) && (1 == sscanf(buf, "%d", &n)) && (n >= 0)) {
  2537. scsi_debug_fake_rw = n;
  2538. return count;
  2539. }
  2540. return -EINVAL;
  2541. }
  2542. DRIVER_ATTR(fake_rw, S_IRUGO | S_IWUSR, sdebug_fake_rw_show,
  2543. sdebug_fake_rw_store);
  2544. static ssize_t sdebug_no_lun_0_show(struct device_driver * ddp, char * buf)
  2545. {
  2546. return scnprintf(buf, PAGE_SIZE, "%d\n", scsi_debug_no_lun_0);
  2547. }
  2548. static ssize_t sdebug_no_lun_0_store(struct device_driver * ddp,
  2549. const char * buf, size_t count)
  2550. {
  2551. int n;
  2552. if ((count > 0) && (1 == sscanf(buf, "%d", &n)) && (n >= 0)) {
  2553. scsi_debug_no_lun_0 = n;
  2554. return count;
  2555. }
  2556. return -EINVAL;
  2557. }
  2558. DRIVER_ATTR(no_lun_0, S_IRUGO | S_IWUSR, sdebug_no_lun_0_show,
  2559. sdebug_no_lun_0_store);
  2560. static ssize_t sdebug_num_tgts_show(struct device_driver * ddp, char * buf)
  2561. {
  2562. return scnprintf(buf, PAGE_SIZE, "%d\n", scsi_debug_num_tgts);
  2563. }
  2564. static ssize_t sdebug_num_tgts_store(struct device_driver * ddp,
  2565. const char * buf, size_t count)
  2566. {
  2567. int n;
  2568. if ((count > 0) && (1 == sscanf(buf, "%d", &n)) && (n >= 0)) {
  2569. scsi_debug_num_tgts = n;
  2570. sdebug_max_tgts_luns();
  2571. return count;
  2572. }
  2573. return -EINVAL;
  2574. }
  2575. DRIVER_ATTR(num_tgts, S_IRUGO | S_IWUSR, sdebug_num_tgts_show,
  2576. sdebug_num_tgts_store);
  2577. static ssize_t sdebug_dev_size_mb_show(struct device_driver * ddp, char * buf)
  2578. {
  2579. return scnprintf(buf, PAGE_SIZE, "%d\n", scsi_debug_dev_size_mb);
  2580. }
  2581. DRIVER_ATTR(dev_size_mb, S_IRUGO, sdebug_dev_size_mb_show, NULL);
  2582. static ssize_t sdebug_num_parts_show(struct device_driver * ddp, char * buf)
  2583. {
  2584. return scnprintf(buf, PAGE_SIZE, "%d\n", scsi_debug_num_parts);
  2585. }
  2586. DRIVER_ATTR(num_parts, S_IRUGO, sdebug_num_parts_show, NULL);
  2587. static ssize_t sdebug_every_nth_show(struct device_driver * ddp, char * buf)
  2588. {
  2589. return scnprintf(buf, PAGE_SIZE, "%d\n", scsi_debug_every_nth);
  2590. }
  2591. static ssize_t sdebug_every_nth_store(struct device_driver * ddp,
  2592. const char * buf, size_t count)
  2593. {
  2594. int nth;
  2595. if ((count > 0) && (1 == sscanf(buf, "%d", &nth))) {
  2596. scsi_debug_every_nth = nth;
  2597. scsi_debug_cmnd_count = 0;
  2598. return count;
  2599. }
  2600. return -EINVAL;
  2601. }
  2602. DRIVER_ATTR(every_nth, S_IRUGO | S_IWUSR, sdebug_every_nth_show,
  2603. sdebug_every_nth_store);
  2604. static ssize_t sdebug_max_luns_show(struct device_driver * ddp, char * buf)
  2605. {
  2606. return scnprintf(buf, PAGE_SIZE, "%d\n", scsi_debug_max_luns);
  2607. }
  2608. static ssize_t sdebug_max_luns_store(struct device_driver * ddp,
  2609. const char * buf, size_t count)
  2610. {
  2611. int n;
  2612. if ((count > 0) && (1 == sscanf(buf, "%d", &n)) && (n >= 0)) {
  2613. scsi_debug_max_luns = n;
  2614. sdebug_max_tgts_luns();
  2615. return count;
  2616. }
  2617. return -EINVAL;
  2618. }
  2619. DRIVER_ATTR(max_luns, S_IRUGO | S_IWUSR, sdebug_max_luns_show,
  2620. sdebug_max_luns_store);
  2621. static ssize_t sdebug_scsi_level_show(struct device_driver * ddp, char * buf)
  2622. {
  2623. return scnprintf(buf, PAGE_SIZE, "%d\n", scsi_debug_scsi_level);
  2624. }
  2625. DRIVER_ATTR(scsi_level, S_IRUGO, sdebug_scsi_level_show, NULL);
  2626. static ssize_t sdebug_virtual_gb_show(struct device_driver * ddp, char * buf)
  2627. {
  2628. return scnprintf(buf, PAGE_SIZE, "%d\n", scsi_debug_virtual_gb);
  2629. }
  2630. static ssize_t sdebug_virtual_gb_store(struct device_driver * ddp,
  2631. const char * buf, size_t count)
  2632. {
  2633. int n;
  2634. if ((count > 0) && (1 == sscanf(buf, "%d", &n)) && (n >= 0)) {
  2635. scsi_debug_virtual_gb = n;
  2636. sdebug_capacity = get_sdebug_capacity();
  2637. return count;
  2638. }
  2639. return -EINVAL;
  2640. }
  2641. DRIVER_ATTR(virtual_gb, S_IRUGO | S_IWUSR, sdebug_virtual_gb_show,
  2642. sdebug_virtual_gb_store);
  2643. static ssize_t sdebug_add_host_show(struct device_driver * ddp, char * buf)
  2644. {
  2645. return scnprintf(buf, PAGE_SIZE, "%d\n", scsi_debug_add_host);
  2646. }
  2647. static ssize_t sdebug_add_host_store(struct device_driver * ddp,
  2648. const char * buf, size_t count)
  2649. {
  2650. int delta_hosts;
  2651. if (sscanf(buf, "%d", &delta_hosts) != 1)
  2652. return -EINVAL;
  2653. if (delta_hosts > 0) {
  2654. do {
  2655. sdebug_add_adapter();
  2656. } while (--delta_hosts);
  2657. } else if (delta_hosts < 0) {
  2658. do {
  2659. sdebug_remove_adapter();
  2660. } while (++delta_hosts);
  2661. }
  2662. return count;
  2663. }
  2664. DRIVER_ATTR(add_host, S_IRUGO | S_IWUSR, sdebug_add_host_show,
  2665. sdebug_add_host_store);
  2666. static ssize_t sdebug_vpd_use_hostno_show(struct device_driver * ddp,
  2667. char * buf)
  2668. {
  2669. return scnprintf(buf, PAGE_SIZE, "%d\n", scsi_debug_vpd_use_hostno);
  2670. }
  2671. static ssize_t sdebug_vpd_use_hostno_store(struct device_driver * ddp,
  2672. const char * buf, size_t count)
  2673. {
  2674. int n;
  2675. if ((count > 0) && (1 == sscanf(buf, "%d", &n)) && (n >= 0)) {
  2676. scsi_debug_vpd_use_hostno = n;
  2677. return count;
  2678. }
  2679. return -EINVAL;
  2680. }
  2681. DRIVER_ATTR(vpd_use_hostno, S_IRUGO | S_IWUSR, sdebug_vpd_use_hostno_show,
  2682. sdebug_vpd_use_hostno_store);
  2683. static ssize_t sdebug_sector_size_show(struct device_driver * ddp, char * buf)
  2684. {
  2685. return scnprintf(buf, PAGE_SIZE, "%u\n", scsi_debug_sector_size);
  2686. }
  2687. DRIVER_ATTR(sector_size, S_IRUGO, sdebug_sector_size_show, NULL);
  2688. static ssize_t sdebug_dix_show(struct device_driver *ddp, char *buf)
  2689. {
  2690. return scnprintf(buf, PAGE_SIZE, "%d\n", scsi_debug_dix);
  2691. }
  2692. DRIVER_ATTR(dix, S_IRUGO, sdebug_dix_show, NULL);
  2693. static ssize_t sdebug_dif_show(struct device_driver *ddp, char *buf)
  2694. {
  2695. return scnprintf(buf, PAGE_SIZE, "%d\n", scsi_debug_dif);
  2696. }
  2697. DRIVER_ATTR(dif, S_IRUGO, sdebug_dif_show, NULL);
  2698. static ssize_t sdebug_guard_show(struct device_driver *ddp, char *buf)
  2699. {
  2700. return scnprintf(buf, PAGE_SIZE, "%d\n", scsi_debug_guard);
  2701. }
  2702. DRIVER_ATTR(guard, S_IRUGO, sdebug_guard_show, NULL);
  2703. static ssize_t sdebug_ato_show(struct device_driver *ddp, char *buf)
  2704. {
  2705. return scnprintf(buf, PAGE_SIZE, "%d\n", scsi_debug_ato);
  2706. }
  2707. DRIVER_ATTR(ato, S_IRUGO, sdebug_ato_show, NULL);
  2708. static ssize_t sdebug_map_show(struct device_driver *ddp, char *buf)
  2709. {
  2710. ssize_t count;
  2711. if (scsi_debug_unmap_granularity == 0)
  2712. return scnprintf(buf, PAGE_SIZE, "0-%u\n",
  2713. sdebug_store_sectors);
  2714. count = bitmap_scnlistprintf(buf, PAGE_SIZE, map_storep, map_size);
  2715. buf[count++] = '\n';
  2716. buf[count++] = 0;
  2717. return count;
  2718. }
  2719. DRIVER_ATTR(map, S_IRUGO, sdebug_map_show, NULL);
  2720. /* Note: The following function creates attribute files in the
  2721. /sys/bus/pseudo/drivers/scsi_debug directory. The advantage of these
  2722. files (over those found in the /sys/module/scsi_debug/parameters
  2723. directory) is that auxiliary actions can be triggered when an attribute
  2724. is changed. For example see: sdebug_add_host_store() above.
  2725. */
  2726. static int do_create_driverfs_files(void)
  2727. {
  2728. int ret;
  2729. ret = driver_create_file(&sdebug_driverfs_driver, &driver_attr_add_host);
  2730. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_delay);
  2731. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_dev_size_mb);
  2732. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_dsense);
  2733. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_every_nth);
  2734. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_fake_rw);
  2735. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_max_luns);
  2736. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_no_lun_0);
  2737. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_num_parts);
  2738. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_num_tgts);
  2739. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_ptype);
  2740. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_opts);
  2741. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_scsi_level);
  2742. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_virtual_gb);
  2743. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_vpd_use_hostno);
  2744. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_sector_size);
  2745. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_dix);
  2746. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_dif);
  2747. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_guard);
  2748. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_ato);
  2749. ret |= driver_create_file(&sdebug_driverfs_driver, &driver_attr_map);
  2750. return ret;
  2751. }
  2752. static void do_remove_driverfs_files(void)
  2753. {
  2754. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_map);
  2755. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_ato);
  2756. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_guard);
  2757. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_dif);
  2758. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_dix);
  2759. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_sector_size);
  2760. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_vpd_use_hostno);
  2761. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_virtual_gb);
  2762. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_scsi_level);
  2763. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_opts);
  2764. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_ptype);
  2765. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_num_tgts);
  2766. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_num_parts);
  2767. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_no_lun_0);
  2768. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_max_luns);
  2769. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_fake_rw);
  2770. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_every_nth);
  2771. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_dsense);
  2772. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_dev_size_mb);
  2773. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_delay);
  2774. driver_remove_file(&sdebug_driverfs_driver, &driver_attr_add_host);
  2775. }
  2776. static void pseudo_0_release(struct device *dev)
  2777. {
  2778. if (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts)
  2779. printk(KERN_INFO "scsi_debug: pseudo_0_release() called\n");
  2780. }
  2781. static struct device pseudo_primary = {
  2782. .init_name = "pseudo_0",
  2783. .release = pseudo_0_release,
  2784. };
  2785. static int __init scsi_debug_init(void)
  2786. {
  2787. unsigned long sz;
  2788. int host_to_add;
  2789. int k;
  2790. int ret;
  2791. switch (scsi_debug_sector_size) {
  2792. case 512:
  2793. case 1024:
  2794. case 2048:
  2795. case 4096:
  2796. break;
  2797. default:
  2798. printk(KERN_ERR "scsi_debug_init: invalid sector_size %d\n",
  2799. scsi_debug_sector_size);
  2800. return -EINVAL;
  2801. }
  2802. switch (scsi_debug_dif) {
  2803. case SD_DIF_TYPE0_PROTECTION:
  2804. case SD_DIF_TYPE1_PROTECTION:
  2805. case SD_DIF_TYPE2_PROTECTION:
  2806. case SD_DIF_TYPE3_PROTECTION:
  2807. break;
  2808. default:
  2809. printk(KERN_ERR "scsi_debug_init: dif must be 0, 1, 2 or 3\n");
  2810. return -EINVAL;
  2811. }
  2812. if (scsi_debug_guard > 1) {
  2813. printk(KERN_ERR "scsi_debug_init: guard must be 0 or 1\n");
  2814. return -EINVAL;
  2815. }
  2816. if (scsi_debug_ato > 1) {
  2817. printk(KERN_ERR "scsi_debug_init: ato must be 0 or 1\n");
  2818. return -EINVAL;
  2819. }
  2820. if (scsi_debug_physblk_exp > 15) {
  2821. printk(KERN_ERR "scsi_debug_init: invalid physblk_exp %u\n",
  2822. scsi_debug_physblk_exp);
  2823. return -EINVAL;
  2824. }
  2825. if (scsi_debug_lowest_aligned > 0x3fff) {
  2826. printk(KERN_ERR "scsi_debug_init: lowest_aligned too big: %u\n",
  2827. scsi_debug_lowest_aligned);
  2828. return -EINVAL;
  2829. }
  2830. if (scsi_debug_dev_size_mb < 1)
  2831. scsi_debug_dev_size_mb = 1; /* force minimum 1 MB ramdisk */
  2832. sz = (unsigned long)scsi_debug_dev_size_mb * 1048576;
  2833. sdebug_store_sectors = sz / scsi_debug_sector_size;
  2834. sdebug_capacity = get_sdebug_capacity();
  2835. /* play around with geometry, don't waste too much on track 0 */
  2836. sdebug_heads = 8;
  2837. sdebug_sectors_per = 32;
  2838. if (scsi_debug_dev_size_mb >= 16)
  2839. sdebug_heads = 32;
  2840. else if (scsi_debug_dev_size_mb >= 256)
  2841. sdebug_heads = 64;
  2842. sdebug_cylinders_per = (unsigned long)sdebug_capacity /
  2843. (sdebug_sectors_per * sdebug_heads);
  2844. if (sdebug_cylinders_per >= 1024) {
  2845. /* other LLDs do this; implies >= 1GB ram disk ... */
  2846. sdebug_heads = 255;
  2847. sdebug_sectors_per = 63;
  2848. sdebug_cylinders_per = (unsigned long)sdebug_capacity /
  2849. (sdebug_sectors_per * sdebug_heads);
  2850. }
  2851. fake_storep = vmalloc(sz);
  2852. if (NULL == fake_storep) {
  2853. printk(KERN_ERR "scsi_debug_init: out of memory, 1\n");
  2854. return -ENOMEM;
  2855. }
  2856. memset(fake_storep, 0, sz);
  2857. if (scsi_debug_num_parts > 0)
  2858. sdebug_build_parts(fake_storep, sz);
  2859. if (scsi_debug_dif) {
  2860. int dif_size;
  2861. dif_size = sdebug_store_sectors * sizeof(struct sd_dif_tuple);
  2862. dif_storep = vmalloc(dif_size);
  2863. printk(KERN_ERR "scsi_debug_init: dif_storep %u bytes @ %p\n",
  2864. dif_size, dif_storep);
  2865. if (dif_storep == NULL) {
  2866. printk(KERN_ERR "scsi_debug_init: out of mem. (DIX)\n");
  2867. ret = -ENOMEM;
  2868. goto free_vm;
  2869. }
  2870. memset(dif_storep, 0xff, dif_size);
  2871. }
  2872. if (scsi_debug_unmap_granularity) {
  2873. unsigned int map_bytes;
  2874. if (scsi_debug_unmap_granularity < scsi_debug_unmap_alignment) {
  2875. printk(KERN_ERR
  2876. "%s: ERR: unmap_granularity < unmap_alignment\n",
  2877. __func__);
  2878. return -EINVAL;
  2879. }
  2880. map_size = (sdebug_store_sectors / scsi_debug_unmap_granularity);
  2881. map_bytes = map_size >> 3;
  2882. map_storep = vmalloc(map_bytes);
  2883. printk(KERN_INFO "scsi_debug_init: %lu provisioning blocks\n",
  2884. map_size);
  2885. if (map_storep == NULL) {
  2886. printk(KERN_ERR "scsi_debug_init: out of mem. (MAP)\n");
  2887. ret = -ENOMEM;
  2888. goto free_vm;
  2889. }
  2890. memset(map_storep, 0x0, map_bytes);
  2891. /* Map first 1KB for partition table */
  2892. if (scsi_debug_num_parts)
  2893. map_region(0, 2);
  2894. }
  2895. ret = device_register(&pseudo_primary);
  2896. if (ret < 0) {
  2897. printk(KERN_WARNING "scsi_debug: device_register error: %d\n",
  2898. ret);
  2899. goto free_vm;
  2900. }
  2901. ret = bus_register(&pseudo_lld_bus);
  2902. if (ret < 0) {
  2903. printk(KERN_WARNING "scsi_debug: bus_register error: %d\n",
  2904. ret);
  2905. goto dev_unreg;
  2906. }
  2907. ret = driver_register(&sdebug_driverfs_driver);
  2908. if (ret < 0) {
  2909. printk(KERN_WARNING "scsi_debug: driver_register error: %d\n",
  2910. ret);
  2911. goto bus_unreg;
  2912. }
  2913. ret = do_create_driverfs_files();
  2914. if (ret < 0) {
  2915. printk(KERN_WARNING "scsi_debug: driver_create_file error: %d\n",
  2916. ret);
  2917. goto del_files;
  2918. }
  2919. init_all_queued();
  2920. host_to_add = scsi_debug_add_host;
  2921. scsi_debug_add_host = 0;
  2922. for (k = 0; k < host_to_add; k++) {
  2923. if (sdebug_add_adapter()) {
  2924. printk(KERN_ERR "scsi_debug_init: "
  2925. "sdebug_add_adapter failed k=%d\n", k);
  2926. break;
  2927. }
  2928. }
  2929. if (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts) {
  2930. printk(KERN_INFO "scsi_debug_init: built %d host(s)\n",
  2931. scsi_debug_add_host);
  2932. }
  2933. return 0;
  2934. del_files:
  2935. do_remove_driverfs_files();
  2936. driver_unregister(&sdebug_driverfs_driver);
  2937. bus_unreg:
  2938. bus_unregister(&pseudo_lld_bus);
  2939. dev_unreg:
  2940. device_unregister(&pseudo_primary);
  2941. free_vm:
  2942. if (map_storep)
  2943. vfree(map_storep);
  2944. if (dif_storep)
  2945. vfree(dif_storep);
  2946. vfree(fake_storep);
  2947. return ret;
  2948. }
  2949. static void __exit scsi_debug_exit(void)
  2950. {
  2951. int k = scsi_debug_add_host;
  2952. stop_all_queued();
  2953. for (; k; k--)
  2954. sdebug_remove_adapter();
  2955. do_remove_driverfs_files();
  2956. driver_unregister(&sdebug_driverfs_driver);
  2957. bus_unregister(&pseudo_lld_bus);
  2958. device_unregister(&pseudo_primary);
  2959. if (dif_storep)
  2960. vfree(dif_storep);
  2961. vfree(fake_storep);
  2962. }
  2963. device_initcall(scsi_debug_init);
  2964. module_exit(scsi_debug_exit);
  2965. static void sdebug_release_adapter(struct device * dev)
  2966. {
  2967. struct sdebug_host_info *sdbg_host;
  2968. sdbg_host = to_sdebug_host(dev);
  2969. kfree(sdbg_host);
  2970. }
  2971. static int sdebug_add_adapter(void)
  2972. {
  2973. int k, devs_per_host;
  2974. int error = 0;
  2975. struct sdebug_host_info *sdbg_host;
  2976. struct sdebug_dev_info *sdbg_devinfo, *tmp;
  2977. sdbg_host = kzalloc(sizeof(*sdbg_host),GFP_KERNEL);
  2978. if (NULL == sdbg_host) {
  2979. printk(KERN_ERR "%s: out of memory at line %d\n",
  2980. __func__, __LINE__);
  2981. return -ENOMEM;
  2982. }
  2983. INIT_LIST_HEAD(&sdbg_host->dev_info_list);
  2984. devs_per_host = scsi_debug_num_tgts * scsi_debug_max_luns;
  2985. for (k = 0; k < devs_per_host; k++) {
  2986. sdbg_devinfo = sdebug_device_create(sdbg_host, GFP_KERNEL);
  2987. if (!sdbg_devinfo) {
  2988. printk(KERN_ERR "%s: out of memory at line %d\n",
  2989. __func__, __LINE__);
  2990. error = -ENOMEM;
  2991. goto clean;
  2992. }
  2993. }
  2994. spin_lock(&sdebug_host_list_lock);
  2995. list_add_tail(&sdbg_host->host_list, &sdebug_host_list);
  2996. spin_unlock(&sdebug_host_list_lock);
  2997. sdbg_host->dev.bus = &pseudo_lld_bus;
  2998. sdbg_host->dev.parent = &pseudo_primary;
  2999. sdbg_host->dev.release = &sdebug_release_adapter;
  3000. dev_set_name(&sdbg_host->dev, "adapter%d", scsi_debug_add_host);
  3001. error = device_register(&sdbg_host->dev);
  3002. if (error)
  3003. goto clean;
  3004. ++scsi_debug_add_host;
  3005. return error;
  3006. clean:
  3007. list_for_each_entry_safe(sdbg_devinfo, tmp, &sdbg_host->dev_info_list,
  3008. dev_list) {
  3009. list_del(&sdbg_devinfo->dev_list);
  3010. kfree(sdbg_devinfo);
  3011. }
  3012. kfree(sdbg_host);
  3013. return error;
  3014. }
  3015. static void sdebug_remove_adapter(void)
  3016. {
  3017. struct sdebug_host_info * sdbg_host = NULL;
  3018. spin_lock(&sdebug_host_list_lock);
  3019. if (!list_empty(&sdebug_host_list)) {
  3020. sdbg_host = list_entry(sdebug_host_list.prev,
  3021. struct sdebug_host_info, host_list);
  3022. list_del(&sdbg_host->host_list);
  3023. }
  3024. spin_unlock(&sdebug_host_list_lock);
  3025. if (!sdbg_host)
  3026. return;
  3027. device_unregister(&sdbg_host->dev);
  3028. --scsi_debug_add_host;
  3029. }
  3030. static
  3031. int scsi_debug_queuecommand(struct scsi_cmnd *SCpnt, done_funct_t done)
  3032. {
  3033. unsigned char *cmd = (unsigned char *) SCpnt->cmnd;
  3034. int len, k;
  3035. unsigned int num;
  3036. unsigned long long lba;
  3037. u32 ei_lba;
  3038. int errsts = 0;
  3039. int target = SCpnt->device->id;
  3040. struct sdebug_dev_info *devip = NULL;
  3041. int inj_recovered = 0;
  3042. int inj_transport = 0;
  3043. int inj_dif = 0;
  3044. int inj_dix = 0;
  3045. int delay_override = 0;
  3046. int unmap = 0;
  3047. scsi_set_resid(SCpnt, 0);
  3048. if ((SCSI_DEBUG_OPT_NOISE & scsi_debug_opts) && cmd) {
  3049. printk(KERN_INFO "scsi_debug: cmd ");
  3050. for (k = 0, len = SCpnt->cmd_len; k < len; ++k)
  3051. printk("%02x ", (int)cmd[k]);
  3052. printk("\n");
  3053. }
  3054. if (target == SCpnt->device->host->hostt->this_id) {
  3055. printk(KERN_INFO "scsi_debug: initiator's id used as "
  3056. "target!\n");
  3057. return schedule_resp(SCpnt, NULL, done,
  3058. DID_NO_CONNECT << 16, 0);
  3059. }
  3060. if ((SCpnt->device->lun >= scsi_debug_max_luns) &&
  3061. (SCpnt->device->lun != SAM2_WLUN_REPORT_LUNS))
  3062. return schedule_resp(SCpnt, NULL, done,
  3063. DID_NO_CONNECT << 16, 0);
  3064. devip = devInfoReg(SCpnt->device);
  3065. if (NULL == devip)
  3066. return schedule_resp(SCpnt, NULL, done,
  3067. DID_NO_CONNECT << 16, 0);
  3068. if ((scsi_debug_every_nth != 0) &&
  3069. (++scsi_debug_cmnd_count >= abs(scsi_debug_every_nth))) {
  3070. scsi_debug_cmnd_count = 0;
  3071. if (scsi_debug_every_nth < -1)
  3072. scsi_debug_every_nth = -1;
  3073. if (SCSI_DEBUG_OPT_TIMEOUT & scsi_debug_opts)
  3074. return 0; /* ignore command causing timeout */
  3075. else if (SCSI_DEBUG_OPT_RECOVERED_ERR & scsi_debug_opts)
  3076. inj_recovered = 1; /* to reads and writes below */
  3077. else if (SCSI_DEBUG_OPT_TRANSPORT_ERR & scsi_debug_opts)
  3078. inj_transport = 1; /* to reads and writes below */
  3079. else if (SCSI_DEBUG_OPT_DIF_ERR & scsi_debug_opts)
  3080. inj_dif = 1; /* to reads and writes below */
  3081. else if (SCSI_DEBUG_OPT_DIX_ERR & scsi_debug_opts)
  3082. inj_dix = 1; /* to reads and writes below */
  3083. }
  3084. if (devip->wlun) {
  3085. switch (*cmd) {
  3086. case INQUIRY:
  3087. case REQUEST_SENSE:
  3088. case TEST_UNIT_READY:
  3089. case REPORT_LUNS:
  3090. break; /* only allowable wlun commands */
  3091. default:
  3092. if (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts)
  3093. printk(KERN_INFO "scsi_debug: Opcode: 0x%x "
  3094. "not supported for wlun\n", *cmd);
  3095. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  3096. INVALID_OPCODE, 0);
  3097. errsts = check_condition_result;
  3098. return schedule_resp(SCpnt, devip, done, errsts,
  3099. 0);
  3100. }
  3101. }
  3102. switch (*cmd) {
  3103. case INQUIRY: /* mandatory, ignore unit attention */
  3104. delay_override = 1;
  3105. errsts = resp_inquiry(SCpnt, target, devip);
  3106. break;
  3107. case REQUEST_SENSE: /* mandatory, ignore unit attention */
  3108. delay_override = 1;
  3109. errsts = resp_requests(SCpnt, devip);
  3110. break;
  3111. case REZERO_UNIT: /* actually this is REWIND for SSC */
  3112. case START_STOP:
  3113. errsts = resp_start_stop(SCpnt, devip);
  3114. break;
  3115. case ALLOW_MEDIUM_REMOVAL:
  3116. errsts = check_readiness(SCpnt, 1, devip);
  3117. if (errsts)
  3118. break;
  3119. if (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts)
  3120. printk(KERN_INFO "scsi_debug: Medium removal %s\n",
  3121. cmd[4] ? "inhibited" : "enabled");
  3122. break;
  3123. case SEND_DIAGNOSTIC: /* mandatory */
  3124. errsts = check_readiness(SCpnt, 1, devip);
  3125. break;
  3126. case TEST_UNIT_READY: /* mandatory */
  3127. delay_override = 1;
  3128. errsts = check_readiness(SCpnt, 0, devip);
  3129. break;
  3130. case RESERVE:
  3131. errsts = check_readiness(SCpnt, 1, devip);
  3132. break;
  3133. case RESERVE_10:
  3134. errsts = check_readiness(SCpnt, 1, devip);
  3135. break;
  3136. case RELEASE:
  3137. errsts = check_readiness(SCpnt, 1, devip);
  3138. break;
  3139. case RELEASE_10:
  3140. errsts = check_readiness(SCpnt, 1, devip);
  3141. break;
  3142. case READ_CAPACITY:
  3143. errsts = resp_readcap(SCpnt, devip);
  3144. break;
  3145. case SERVICE_ACTION_IN:
  3146. if (cmd[1] == SAI_READ_CAPACITY_16)
  3147. errsts = resp_readcap16(SCpnt, devip);
  3148. else if (cmd[1] == SAI_GET_LBA_STATUS) {
  3149. if (scsi_debug_unmap_max_desc == 0) {
  3150. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  3151. INVALID_COMMAND_OPCODE, 0);
  3152. errsts = check_condition_result;
  3153. } else
  3154. errsts = resp_get_lba_status(SCpnt, devip);
  3155. } else {
  3156. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  3157. INVALID_OPCODE, 0);
  3158. errsts = check_condition_result;
  3159. }
  3160. break;
  3161. case MAINTENANCE_IN:
  3162. if (MI_REPORT_TARGET_PGS != cmd[1]) {
  3163. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  3164. INVALID_OPCODE, 0);
  3165. errsts = check_condition_result;
  3166. break;
  3167. }
  3168. errsts = resp_report_tgtpgs(SCpnt, devip);
  3169. break;
  3170. case READ_16:
  3171. case READ_12:
  3172. case READ_10:
  3173. /* READ{10,12,16} and DIF Type 2 are natural enemies */
  3174. if (scsi_debug_dif == SD_DIF_TYPE2_PROTECTION &&
  3175. cmd[1] & 0xe0) {
  3176. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  3177. INVALID_COMMAND_OPCODE, 0);
  3178. errsts = check_condition_result;
  3179. break;
  3180. }
  3181. if ((scsi_debug_dif == SD_DIF_TYPE1_PROTECTION ||
  3182. scsi_debug_dif == SD_DIF_TYPE3_PROTECTION) &&
  3183. (cmd[1] & 0xe0) == 0)
  3184. printk(KERN_ERR "Unprotected RD/WR to DIF device\n");
  3185. /* fall through */
  3186. case READ_6:
  3187. read:
  3188. errsts = check_readiness(SCpnt, 0, devip);
  3189. if (errsts)
  3190. break;
  3191. if (scsi_debug_fake_rw)
  3192. break;
  3193. get_data_transfer_info(cmd, &lba, &num, &ei_lba);
  3194. errsts = resp_read(SCpnt, lba, num, devip, ei_lba);
  3195. if (inj_recovered && (0 == errsts)) {
  3196. mk_sense_buffer(devip, RECOVERED_ERROR,
  3197. THRESHOLD_EXCEEDED, 0);
  3198. errsts = check_condition_result;
  3199. } else if (inj_transport && (0 == errsts)) {
  3200. mk_sense_buffer(devip, ABORTED_COMMAND,
  3201. TRANSPORT_PROBLEM, ACK_NAK_TO);
  3202. errsts = check_condition_result;
  3203. } else if (inj_dif && (0 == errsts)) {
  3204. mk_sense_buffer(devip, ABORTED_COMMAND, 0x10, 1);
  3205. errsts = illegal_condition_result;
  3206. } else if (inj_dix && (0 == errsts)) {
  3207. mk_sense_buffer(devip, ILLEGAL_REQUEST, 0x10, 1);
  3208. errsts = illegal_condition_result;
  3209. }
  3210. break;
  3211. case REPORT_LUNS: /* mandatory, ignore unit attention */
  3212. delay_override = 1;
  3213. errsts = resp_report_luns(SCpnt, devip);
  3214. break;
  3215. case VERIFY: /* 10 byte SBC-2 command */
  3216. errsts = check_readiness(SCpnt, 0, devip);
  3217. break;
  3218. case WRITE_16:
  3219. case WRITE_12:
  3220. case WRITE_10:
  3221. /* WRITE{10,12,16} and DIF Type 2 are natural enemies */
  3222. if (scsi_debug_dif == SD_DIF_TYPE2_PROTECTION &&
  3223. cmd[1] & 0xe0) {
  3224. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  3225. INVALID_COMMAND_OPCODE, 0);
  3226. errsts = check_condition_result;
  3227. break;
  3228. }
  3229. if ((scsi_debug_dif == SD_DIF_TYPE1_PROTECTION ||
  3230. scsi_debug_dif == SD_DIF_TYPE3_PROTECTION) &&
  3231. (cmd[1] & 0xe0) == 0)
  3232. printk(KERN_ERR "Unprotected RD/WR to DIF device\n");
  3233. /* fall through */
  3234. case WRITE_6:
  3235. write:
  3236. errsts = check_readiness(SCpnt, 0, devip);
  3237. if (errsts)
  3238. break;
  3239. if (scsi_debug_fake_rw)
  3240. break;
  3241. get_data_transfer_info(cmd, &lba, &num, &ei_lba);
  3242. errsts = resp_write(SCpnt, lba, num, devip, ei_lba);
  3243. if (inj_recovered && (0 == errsts)) {
  3244. mk_sense_buffer(devip, RECOVERED_ERROR,
  3245. THRESHOLD_EXCEEDED, 0);
  3246. errsts = check_condition_result;
  3247. } else if (inj_dif && (0 == errsts)) {
  3248. mk_sense_buffer(devip, ABORTED_COMMAND, 0x10, 1);
  3249. errsts = illegal_condition_result;
  3250. } else if (inj_dix && (0 == errsts)) {
  3251. mk_sense_buffer(devip, ILLEGAL_REQUEST, 0x10, 1);
  3252. errsts = illegal_condition_result;
  3253. }
  3254. break;
  3255. case WRITE_SAME_16:
  3256. if (cmd[1] & 0x8)
  3257. unmap = 1;
  3258. /* fall through */
  3259. case WRITE_SAME:
  3260. errsts = check_readiness(SCpnt, 0, devip);
  3261. if (errsts)
  3262. break;
  3263. get_data_transfer_info(cmd, &lba, &num, &ei_lba);
  3264. errsts = resp_write_same(SCpnt, lba, num, devip, ei_lba, unmap);
  3265. break;
  3266. case UNMAP:
  3267. errsts = check_readiness(SCpnt, 0, devip);
  3268. if (errsts)
  3269. break;
  3270. if (scsi_debug_unmap_max_desc == 0) {
  3271. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  3272. INVALID_COMMAND_OPCODE, 0);
  3273. errsts = check_condition_result;
  3274. } else
  3275. errsts = resp_unmap(SCpnt, devip);
  3276. break;
  3277. case MODE_SENSE:
  3278. case MODE_SENSE_10:
  3279. errsts = resp_mode_sense(SCpnt, target, devip);
  3280. break;
  3281. case MODE_SELECT:
  3282. errsts = resp_mode_select(SCpnt, 1, devip);
  3283. break;
  3284. case MODE_SELECT_10:
  3285. errsts = resp_mode_select(SCpnt, 0, devip);
  3286. break;
  3287. case LOG_SENSE:
  3288. errsts = resp_log_sense(SCpnt, devip);
  3289. break;
  3290. case SYNCHRONIZE_CACHE:
  3291. delay_override = 1;
  3292. errsts = check_readiness(SCpnt, 0, devip);
  3293. break;
  3294. case WRITE_BUFFER:
  3295. errsts = check_readiness(SCpnt, 1, devip);
  3296. break;
  3297. case XDWRITEREAD_10:
  3298. if (!scsi_bidi_cmnd(SCpnt)) {
  3299. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  3300. INVALID_FIELD_IN_CDB, 0);
  3301. errsts = check_condition_result;
  3302. break;
  3303. }
  3304. errsts = check_readiness(SCpnt, 0, devip);
  3305. if (errsts)
  3306. break;
  3307. if (scsi_debug_fake_rw)
  3308. break;
  3309. get_data_transfer_info(cmd, &lba, &num, &ei_lba);
  3310. errsts = resp_read(SCpnt, lba, num, devip, ei_lba);
  3311. if (errsts)
  3312. break;
  3313. errsts = resp_write(SCpnt, lba, num, devip, ei_lba);
  3314. if (errsts)
  3315. break;
  3316. errsts = resp_xdwriteread(SCpnt, lba, num, devip);
  3317. break;
  3318. case VARIABLE_LENGTH_CMD:
  3319. if (scsi_debug_dif == SD_DIF_TYPE2_PROTECTION) {
  3320. if ((cmd[10] & 0xe0) == 0)
  3321. printk(KERN_ERR
  3322. "Unprotected RD/WR to DIF device\n");
  3323. if (cmd[9] == READ_32) {
  3324. BUG_ON(SCpnt->cmd_len < 32);
  3325. goto read;
  3326. }
  3327. if (cmd[9] == WRITE_32) {
  3328. BUG_ON(SCpnt->cmd_len < 32);
  3329. goto write;
  3330. }
  3331. }
  3332. mk_sense_buffer(devip, ILLEGAL_REQUEST,
  3333. INVALID_FIELD_IN_CDB, 0);
  3334. errsts = check_condition_result;
  3335. break;
  3336. default:
  3337. if (SCSI_DEBUG_OPT_NOISE & scsi_debug_opts)
  3338. printk(KERN_INFO "scsi_debug: Opcode: 0x%x not "
  3339. "supported\n", *cmd);
  3340. errsts = check_readiness(SCpnt, 1, devip);
  3341. if (errsts)
  3342. break; /* Unit attention takes precedence */
  3343. mk_sense_buffer(devip, ILLEGAL_REQUEST, INVALID_OPCODE, 0);
  3344. errsts = check_condition_result;
  3345. break;
  3346. }
  3347. return schedule_resp(SCpnt, devip, done, errsts,
  3348. (delay_override ? 0 : scsi_debug_delay));
  3349. }
  3350. static struct scsi_host_template sdebug_driver_template = {
  3351. .proc_info = scsi_debug_proc_info,
  3352. .proc_name = sdebug_proc_name,
  3353. .name = "SCSI DEBUG",
  3354. .info = scsi_debug_info,
  3355. .slave_alloc = scsi_debug_slave_alloc,
  3356. .slave_configure = scsi_debug_slave_configure,
  3357. .slave_destroy = scsi_debug_slave_destroy,
  3358. .ioctl = scsi_debug_ioctl,
  3359. .queuecommand = scsi_debug_queuecommand,
  3360. .eh_abort_handler = scsi_debug_abort,
  3361. .eh_bus_reset_handler = scsi_debug_bus_reset,
  3362. .eh_device_reset_handler = scsi_debug_device_reset,
  3363. .eh_host_reset_handler = scsi_debug_host_reset,
  3364. .bios_param = scsi_debug_biosparam,
  3365. .can_queue = SCSI_DEBUG_CANQUEUE,
  3366. .this_id = 7,
  3367. .sg_tablesize = 256,
  3368. .cmd_per_lun = 16,
  3369. .max_sectors = 0xffff,
  3370. .use_clustering = DISABLE_CLUSTERING,
  3371. .module = THIS_MODULE,
  3372. };
  3373. static int sdebug_driver_probe(struct device * dev)
  3374. {
  3375. int error = 0;
  3376. struct sdebug_host_info *sdbg_host;
  3377. struct Scsi_Host *hpnt;
  3378. int host_prot;
  3379. sdbg_host = to_sdebug_host(dev);
  3380. hpnt = scsi_host_alloc(&sdebug_driver_template, sizeof(sdbg_host));
  3381. if (NULL == hpnt) {
  3382. printk(KERN_ERR "%s: scsi_register failed\n", __func__);
  3383. error = -ENODEV;
  3384. return error;
  3385. }
  3386. sdbg_host->shost = hpnt;
  3387. *((struct sdebug_host_info **)hpnt->hostdata) = sdbg_host;
  3388. if ((hpnt->this_id >= 0) && (scsi_debug_num_tgts > hpnt->this_id))
  3389. hpnt->max_id = scsi_debug_num_tgts + 1;
  3390. else
  3391. hpnt->max_id = scsi_debug_num_tgts;
  3392. hpnt->max_lun = SAM2_WLUN_REPORT_LUNS; /* = scsi_debug_max_luns; */
  3393. host_prot = 0;
  3394. switch (scsi_debug_dif) {
  3395. case SD_DIF_TYPE1_PROTECTION:
  3396. host_prot = SHOST_DIF_TYPE1_PROTECTION;
  3397. if (scsi_debug_dix)
  3398. host_prot |= SHOST_DIX_TYPE1_PROTECTION;
  3399. break;
  3400. case SD_DIF_TYPE2_PROTECTION:
  3401. host_prot = SHOST_DIF_TYPE2_PROTECTION;
  3402. if (scsi_debug_dix)
  3403. host_prot |= SHOST_DIX_TYPE2_PROTECTION;
  3404. break;
  3405. case SD_DIF_TYPE3_PROTECTION:
  3406. host_prot = SHOST_DIF_TYPE3_PROTECTION;
  3407. if (scsi_debug_dix)
  3408. host_prot |= SHOST_DIX_TYPE3_PROTECTION;
  3409. break;
  3410. default:
  3411. if (scsi_debug_dix)
  3412. host_prot |= SHOST_DIX_TYPE0_PROTECTION;
  3413. break;
  3414. }
  3415. scsi_host_set_prot(hpnt, host_prot);
  3416. printk(KERN_INFO "scsi_debug: host protection%s%s%s%s%s%s%s\n",
  3417. (host_prot & SHOST_DIF_TYPE1_PROTECTION) ? " DIF1" : "",
  3418. (host_prot & SHOST_DIF_TYPE2_PROTECTION) ? " DIF2" : "",
  3419. (host_prot & SHOST_DIF_TYPE3_PROTECTION) ? " DIF3" : "",
  3420. (host_prot & SHOST_DIX_TYPE0_PROTECTION) ? " DIX0" : "",
  3421. (host_prot & SHOST_DIX_TYPE1_PROTECTION) ? " DIX1" : "",
  3422. (host_prot & SHOST_DIX_TYPE2_PROTECTION) ? " DIX2" : "",
  3423. (host_prot & SHOST_DIX_TYPE3_PROTECTION) ? " DIX3" : "");
  3424. if (scsi_debug_guard == 1)
  3425. scsi_host_set_guard(hpnt, SHOST_DIX_GUARD_IP);
  3426. else
  3427. scsi_host_set_guard(hpnt, SHOST_DIX_GUARD_CRC);
  3428. error = scsi_add_host(hpnt, &sdbg_host->dev);
  3429. if (error) {
  3430. printk(KERN_ERR "%s: scsi_add_host failed\n", __func__);
  3431. error = -ENODEV;
  3432. scsi_host_put(hpnt);
  3433. } else
  3434. scsi_scan_host(hpnt);
  3435. return error;
  3436. }
  3437. static int sdebug_driver_remove(struct device * dev)
  3438. {
  3439. struct sdebug_host_info *sdbg_host;
  3440. struct sdebug_dev_info *sdbg_devinfo, *tmp;
  3441. sdbg_host = to_sdebug_host(dev);
  3442. if (!sdbg_host) {
  3443. printk(KERN_ERR "%s: Unable to locate host info\n",
  3444. __func__);
  3445. return -ENODEV;
  3446. }
  3447. scsi_remove_host(sdbg_host->shost);
  3448. list_for_each_entry_safe(sdbg_devinfo, tmp, &sdbg_host->dev_info_list,
  3449. dev_list) {
  3450. list_del(&sdbg_devinfo->dev_list);
  3451. kfree(sdbg_devinfo);
  3452. }
  3453. scsi_host_put(sdbg_host->shost);
  3454. return 0;
  3455. }
  3456. static int pseudo_lld_bus_match(struct device *dev,
  3457. struct device_driver *dev_driver)
  3458. {
  3459. return 1;
  3460. }
  3461. static struct bus_type pseudo_lld_bus = {
  3462. .name = "pseudo",
  3463. .match = pseudo_lld_bus_match,
  3464. .probe = sdebug_driver_probe,
  3465. .remove = sdebug_driver_remove,
  3466. };