dasd_eckd.c 113 KB

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  1. /*
  2. * File...........: linux/drivers/s390/block/dasd_eckd.c
  3. * Author(s)......: Holger Smolinski <Holger.Smolinski@de.ibm.com>
  4. * Horst Hummel <Horst.Hummel@de.ibm.com>
  5. * Carsten Otte <Cotte@de.ibm.com>
  6. * Martin Schwidefsky <schwidefsky@de.ibm.com>
  7. * Bugreports.to..: <Linux390@de.ibm.com>
  8. * Copyright IBM Corp. 1999, 2009
  9. * EMC Symmetrix ioctl Copyright EMC Corporation, 2008
  10. * Author.........: Nigel Hislop <hislop_nigel@emc.com>
  11. */
  12. #define KMSG_COMPONENT "dasd-eckd"
  13. #include <linux/stddef.h>
  14. #include <linux/kernel.h>
  15. #include <linux/slab.h>
  16. #include <linux/hdreg.h> /* HDIO_GETGEO */
  17. #include <linux/bio.h>
  18. #include <linux/module.h>
  19. #include <linux/init.h>
  20. #include <asm/debug.h>
  21. #include <asm/idals.h>
  22. #include <asm/ebcdic.h>
  23. #include <asm/compat.h>
  24. #include <asm/io.h>
  25. #include <asm/uaccess.h>
  26. #include <asm/cio.h>
  27. #include <asm/ccwdev.h>
  28. #include <asm/itcw.h>
  29. #include "dasd_int.h"
  30. #include "dasd_eckd.h"
  31. #include "../cio/chsc.h"
  32. #ifdef PRINTK_HEADER
  33. #undef PRINTK_HEADER
  34. #endif /* PRINTK_HEADER */
  35. #define PRINTK_HEADER "dasd(eckd):"
  36. #define ECKD_C0(i) (i->home_bytes)
  37. #define ECKD_F(i) (i->formula)
  38. #define ECKD_F1(i) (ECKD_F(i)==0x01?(i->factors.f_0x01.f1):\
  39. (i->factors.f_0x02.f1))
  40. #define ECKD_F2(i) (ECKD_F(i)==0x01?(i->factors.f_0x01.f2):\
  41. (i->factors.f_0x02.f2))
  42. #define ECKD_F3(i) (ECKD_F(i)==0x01?(i->factors.f_0x01.f3):\
  43. (i->factors.f_0x02.f3))
  44. #define ECKD_F4(i) (ECKD_F(i)==0x02?(i->factors.f_0x02.f4):0)
  45. #define ECKD_F5(i) (ECKD_F(i)==0x02?(i->factors.f_0x02.f5):0)
  46. #define ECKD_F6(i) (i->factor6)
  47. #define ECKD_F7(i) (i->factor7)
  48. #define ECKD_F8(i) (i->factor8)
  49. /*
  50. * raw track access always map to 64k in memory
  51. * so it maps to 16 blocks of 4k per track
  52. */
  53. #define DASD_RAW_BLOCK_PER_TRACK 16
  54. #define DASD_RAW_BLOCKSIZE 4096
  55. /* 64k are 128 x 512 byte sectors */
  56. #define DASD_RAW_SECTORS_PER_TRACK 128
  57. MODULE_LICENSE("GPL");
  58. static struct dasd_discipline dasd_eckd_discipline;
  59. /* The ccw bus type uses this table to find devices that it sends to
  60. * dasd_eckd_probe */
  61. static struct ccw_device_id dasd_eckd_ids[] = {
  62. { CCW_DEVICE_DEVTYPE (0x3990, 0, 0x3390, 0), .driver_info = 0x1},
  63. { CCW_DEVICE_DEVTYPE (0x2105, 0, 0x3390, 0), .driver_info = 0x2},
  64. { CCW_DEVICE_DEVTYPE (0x3880, 0, 0x3380, 0), .driver_info = 0x3},
  65. { CCW_DEVICE_DEVTYPE (0x3990, 0, 0x3380, 0), .driver_info = 0x4},
  66. { CCW_DEVICE_DEVTYPE (0x2105, 0, 0x3380, 0), .driver_info = 0x5},
  67. { CCW_DEVICE_DEVTYPE (0x9343, 0, 0x9345, 0), .driver_info = 0x6},
  68. { CCW_DEVICE_DEVTYPE (0x2107, 0, 0x3390, 0), .driver_info = 0x7},
  69. { CCW_DEVICE_DEVTYPE (0x2107, 0, 0x3380, 0), .driver_info = 0x8},
  70. { CCW_DEVICE_DEVTYPE (0x1750, 0, 0x3390, 0), .driver_info = 0x9},
  71. { CCW_DEVICE_DEVTYPE (0x1750, 0, 0x3380, 0), .driver_info = 0xa},
  72. { /* end of list */ },
  73. };
  74. MODULE_DEVICE_TABLE(ccw, dasd_eckd_ids);
  75. static struct ccw_driver dasd_eckd_driver; /* see below */
  76. #define INIT_CQR_OK 0
  77. #define INIT_CQR_UNFORMATTED 1
  78. #define INIT_CQR_ERROR 2
  79. /* emergency request for reserve/release */
  80. static struct {
  81. struct dasd_ccw_req cqr;
  82. struct ccw1 ccw;
  83. char data[32];
  84. } *dasd_reserve_req;
  85. static DEFINE_MUTEX(dasd_reserve_mutex);
  86. /* definitions for the path verification worker */
  87. struct path_verification_work_data {
  88. struct work_struct worker;
  89. struct dasd_device *device;
  90. struct dasd_ccw_req cqr;
  91. struct ccw1 ccw;
  92. __u8 rcd_buffer[DASD_ECKD_RCD_DATA_SIZE];
  93. int isglobal;
  94. __u8 tbvpm;
  95. };
  96. static struct path_verification_work_data *path_verification_worker;
  97. static DEFINE_MUTEX(dasd_path_verification_mutex);
  98. /* initial attempt at a probe function. this can be simplified once
  99. * the other detection code is gone */
  100. static int
  101. dasd_eckd_probe (struct ccw_device *cdev)
  102. {
  103. int ret;
  104. /* set ECKD specific ccw-device options */
  105. ret = ccw_device_set_options(cdev, CCWDEV_ALLOW_FORCE |
  106. CCWDEV_DO_PATHGROUP | CCWDEV_DO_MULTIPATH);
  107. if (ret) {
  108. DBF_EVENT_DEVID(DBF_WARNING, cdev, "%s",
  109. "dasd_eckd_probe: could not set "
  110. "ccw-device options");
  111. return ret;
  112. }
  113. ret = dasd_generic_probe(cdev, &dasd_eckd_discipline);
  114. return ret;
  115. }
  116. static int
  117. dasd_eckd_set_online(struct ccw_device *cdev)
  118. {
  119. return dasd_generic_set_online(cdev, &dasd_eckd_discipline);
  120. }
  121. static const int sizes_trk0[] = { 28, 148, 84 };
  122. #define LABEL_SIZE 140
  123. static inline unsigned int
  124. round_up_multiple(unsigned int no, unsigned int mult)
  125. {
  126. int rem = no % mult;
  127. return (rem ? no - rem + mult : no);
  128. }
  129. static inline unsigned int
  130. ceil_quot(unsigned int d1, unsigned int d2)
  131. {
  132. return (d1 + (d2 - 1)) / d2;
  133. }
  134. static unsigned int
  135. recs_per_track(struct dasd_eckd_characteristics * rdc,
  136. unsigned int kl, unsigned int dl)
  137. {
  138. int dn, kn;
  139. switch (rdc->dev_type) {
  140. case 0x3380:
  141. if (kl)
  142. return 1499 / (15 + 7 + ceil_quot(kl + 12, 32) +
  143. ceil_quot(dl + 12, 32));
  144. else
  145. return 1499 / (15 + ceil_quot(dl + 12, 32));
  146. case 0x3390:
  147. dn = ceil_quot(dl + 6, 232) + 1;
  148. if (kl) {
  149. kn = ceil_quot(kl + 6, 232) + 1;
  150. return 1729 / (10 + 9 + ceil_quot(kl + 6 * kn, 34) +
  151. 9 + ceil_quot(dl + 6 * dn, 34));
  152. } else
  153. return 1729 / (10 + 9 + ceil_quot(dl + 6 * dn, 34));
  154. case 0x9345:
  155. dn = ceil_quot(dl + 6, 232) + 1;
  156. if (kl) {
  157. kn = ceil_quot(kl + 6, 232) + 1;
  158. return 1420 / (18 + 7 + ceil_quot(kl + 6 * kn, 34) +
  159. ceil_quot(dl + 6 * dn, 34));
  160. } else
  161. return 1420 / (18 + 7 + ceil_quot(dl + 6 * dn, 34));
  162. }
  163. return 0;
  164. }
  165. static void set_ch_t(struct ch_t *geo, __u32 cyl, __u8 head)
  166. {
  167. geo->cyl = (__u16) cyl;
  168. geo->head = cyl >> 16;
  169. geo->head <<= 4;
  170. geo->head |= head;
  171. }
  172. static int
  173. check_XRC (struct ccw1 *de_ccw,
  174. struct DE_eckd_data *data,
  175. struct dasd_device *device)
  176. {
  177. struct dasd_eckd_private *private;
  178. int rc;
  179. private = (struct dasd_eckd_private *) device->private;
  180. if (!private->rdc_data.facilities.XRC_supported)
  181. return 0;
  182. /* switch on System Time Stamp - needed for XRC Support */
  183. data->ga_extended |= 0x08; /* switch on 'Time Stamp Valid' */
  184. data->ga_extended |= 0x02; /* switch on 'Extended Parameter' */
  185. rc = get_sync_clock(&data->ep_sys_time);
  186. /* Ignore return code if sync clock is switched off. */
  187. if (rc == -ENOSYS || rc == -EACCES)
  188. rc = 0;
  189. de_ccw->count = sizeof(struct DE_eckd_data);
  190. de_ccw->flags |= CCW_FLAG_SLI;
  191. return rc;
  192. }
  193. static int
  194. define_extent(struct ccw1 *ccw, struct DE_eckd_data *data, unsigned int trk,
  195. unsigned int totrk, int cmd, struct dasd_device *device)
  196. {
  197. struct dasd_eckd_private *private;
  198. u32 begcyl, endcyl;
  199. u16 heads, beghead, endhead;
  200. int rc = 0;
  201. private = (struct dasd_eckd_private *) device->private;
  202. ccw->cmd_code = DASD_ECKD_CCW_DEFINE_EXTENT;
  203. ccw->flags = 0;
  204. ccw->count = 16;
  205. ccw->cda = (__u32) __pa(data);
  206. memset(data, 0, sizeof(struct DE_eckd_data));
  207. switch (cmd) {
  208. case DASD_ECKD_CCW_READ_HOME_ADDRESS:
  209. case DASD_ECKD_CCW_READ_RECORD_ZERO:
  210. case DASD_ECKD_CCW_READ:
  211. case DASD_ECKD_CCW_READ_MT:
  212. case DASD_ECKD_CCW_READ_CKD:
  213. case DASD_ECKD_CCW_READ_CKD_MT:
  214. case DASD_ECKD_CCW_READ_KD:
  215. case DASD_ECKD_CCW_READ_KD_MT:
  216. case DASD_ECKD_CCW_READ_COUNT:
  217. data->mask.perm = 0x1;
  218. data->attributes.operation = private->attrib.operation;
  219. break;
  220. case DASD_ECKD_CCW_WRITE:
  221. case DASD_ECKD_CCW_WRITE_MT:
  222. case DASD_ECKD_CCW_WRITE_KD:
  223. case DASD_ECKD_CCW_WRITE_KD_MT:
  224. data->mask.perm = 0x02;
  225. data->attributes.operation = private->attrib.operation;
  226. rc = check_XRC (ccw, data, device);
  227. break;
  228. case DASD_ECKD_CCW_WRITE_CKD:
  229. case DASD_ECKD_CCW_WRITE_CKD_MT:
  230. data->attributes.operation = DASD_BYPASS_CACHE;
  231. rc = check_XRC (ccw, data, device);
  232. break;
  233. case DASD_ECKD_CCW_ERASE:
  234. case DASD_ECKD_CCW_WRITE_HOME_ADDRESS:
  235. case DASD_ECKD_CCW_WRITE_RECORD_ZERO:
  236. data->mask.perm = 0x3;
  237. data->mask.auth = 0x1;
  238. data->attributes.operation = DASD_BYPASS_CACHE;
  239. rc = check_XRC (ccw, data, device);
  240. break;
  241. default:
  242. dev_err(&device->cdev->dev,
  243. "0x%x is not a known command\n", cmd);
  244. break;
  245. }
  246. data->attributes.mode = 0x3; /* ECKD */
  247. if ((private->rdc_data.cu_type == 0x2105 ||
  248. private->rdc_data.cu_type == 0x2107 ||
  249. private->rdc_data.cu_type == 0x1750)
  250. && !(private->uses_cdl && trk < 2))
  251. data->ga_extended |= 0x40; /* Regular Data Format Mode */
  252. heads = private->rdc_data.trk_per_cyl;
  253. begcyl = trk / heads;
  254. beghead = trk % heads;
  255. endcyl = totrk / heads;
  256. endhead = totrk % heads;
  257. /* check for sequential prestage - enhance cylinder range */
  258. if (data->attributes.operation == DASD_SEQ_PRESTAGE ||
  259. data->attributes.operation == DASD_SEQ_ACCESS) {
  260. if (endcyl + private->attrib.nr_cyl < private->real_cyl)
  261. endcyl += private->attrib.nr_cyl;
  262. else
  263. endcyl = (private->real_cyl - 1);
  264. }
  265. set_ch_t(&data->beg_ext, begcyl, beghead);
  266. set_ch_t(&data->end_ext, endcyl, endhead);
  267. return rc;
  268. }
  269. static int check_XRC_on_prefix(struct PFX_eckd_data *pfxdata,
  270. struct dasd_device *device)
  271. {
  272. struct dasd_eckd_private *private;
  273. int rc;
  274. private = (struct dasd_eckd_private *) device->private;
  275. if (!private->rdc_data.facilities.XRC_supported)
  276. return 0;
  277. /* switch on System Time Stamp - needed for XRC Support */
  278. pfxdata->define_extent.ga_extended |= 0x08; /* 'Time Stamp Valid' */
  279. pfxdata->define_extent.ga_extended |= 0x02; /* 'Extended Parameter' */
  280. pfxdata->validity.time_stamp = 1; /* 'Time Stamp Valid' */
  281. rc = get_sync_clock(&pfxdata->define_extent.ep_sys_time);
  282. /* Ignore return code if sync clock is switched off. */
  283. if (rc == -ENOSYS || rc == -EACCES)
  284. rc = 0;
  285. return rc;
  286. }
  287. static void fill_LRE_data(struct LRE_eckd_data *data, unsigned int trk,
  288. unsigned int rec_on_trk, int count, int cmd,
  289. struct dasd_device *device, unsigned int reclen,
  290. unsigned int tlf)
  291. {
  292. struct dasd_eckd_private *private;
  293. int sector;
  294. int dn, d;
  295. private = (struct dasd_eckd_private *) device->private;
  296. memset(data, 0, sizeof(*data));
  297. sector = 0;
  298. if (rec_on_trk) {
  299. switch (private->rdc_data.dev_type) {
  300. case 0x3390:
  301. dn = ceil_quot(reclen + 6, 232);
  302. d = 9 + ceil_quot(reclen + 6 * (dn + 1), 34);
  303. sector = (49 + (rec_on_trk - 1) * (10 + d)) / 8;
  304. break;
  305. case 0x3380:
  306. d = 7 + ceil_quot(reclen + 12, 32);
  307. sector = (39 + (rec_on_trk - 1) * (8 + d)) / 7;
  308. break;
  309. }
  310. }
  311. data->sector = sector;
  312. /* note: meaning of count depends on the operation
  313. * for record based I/O it's the number of records, but for
  314. * track based I/O it's the number of tracks
  315. */
  316. data->count = count;
  317. switch (cmd) {
  318. case DASD_ECKD_CCW_WRITE_HOME_ADDRESS:
  319. data->operation.orientation = 0x3;
  320. data->operation.operation = 0x03;
  321. break;
  322. case DASD_ECKD_CCW_READ_HOME_ADDRESS:
  323. data->operation.orientation = 0x3;
  324. data->operation.operation = 0x16;
  325. break;
  326. case DASD_ECKD_CCW_WRITE_RECORD_ZERO:
  327. data->operation.orientation = 0x1;
  328. data->operation.operation = 0x03;
  329. data->count++;
  330. break;
  331. case DASD_ECKD_CCW_READ_RECORD_ZERO:
  332. data->operation.orientation = 0x3;
  333. data->operation.operation = 0x16;
  334. data->count++;
  335. break;
  336. case DASD_ECKD_CCW_WRITE:
  337. case DASD_ECKD_CCW_WRITE_MT:
  338. case DASD_ECKD_CCW_WRITE_KD:
  339. case DASD_ECKD_CCW_WRITE_KD_MT:
  340. data->auxiliary.length_valid = 0x1;
  341. data->length = reclen;
  342. data->operation.operation = 0x01;
  343. break;
  344. case DASD_ECKD_CCW_WRITE_CKD:
  345. case DASD_ECKD_CCW_WRITE_CKD_MT:
  346. data->auxiliary.length_valid = 0x1;
  347. data->length = reclen;
  348. data->operation.operation = 0x03;
  349. break;
  350. case DASD_ECKD_CCW_WRITE_FULL_TRACK:
  351. data->operation.orientation = 0x0;
  352. data->operation.operation = 0x3F;
  353. data->extended_operation = 0x11;
  354. data->length = 0;
  355. data->extended_parameter_length = 0x02;
  356. if (data->count > 8) {
  357. data->extended_parameter[0] = 0xFF;
  358. data->extended_parameter[1] = 0xFF;
  359. data->extended_parameter[1] <<= (16 - count);
  360. } else {
  361. data->extended_parameter[0] = 0xFF;
  362. data->extended_parameter[0] <<= (8 - count);
  363. data->extended_parameter[1] = 0x00;
  364. }
  365. data->sector = 0xFF;
  366. break;
  367. case DASD_ECKD_CCW_WRITE_TRACK_DATA:
  368. data->auxiliary.length_valid = 0x1;
  369. data->length = reclen; /* not tlf, as one might think */
  370. data->operation.operation = 0x3F;
  371. data->extended_operation = 0x23;
  372. break;
  373. case DASD_ECKD_CCW_READ:
  374. case DASD_ECKD_CCW_READ_MT:
  375. case DASD_ECKD_CCW_READ_KD:
  376. case DASD_ECKD_CCW_READ_KD_MT:
  377. data->auxiliary.length_valid = 0x1;
  378. data->length = reclen;
  379. data->operation.operation = 0x06;
  380. break;
  381. case DASD_ECKD_CCW_READ_CKD:
  382. case DASD_ECKD_CCW_READ_CKD_MT:
  383. data->auxiliary.length_valid = 0x1;
  384. data->length = reclen;
  385. data->operation.operation = 0x16;
  386. break;
  387. case DASD_ECKD_CCW_READ_COUNT:
  388. data->operation.operation = 0x06;
  389. break;
  390. case DASD_ECKD_CCW_READ_TRACK:
  391. data->operation.orientation = 0x1;
  392. data->operation.operation = 0x0C;
  393. data->extended_parameter_length = 0;
  394. data->sector = 0xFF;
  395. break;
  396. case DASD_ECKD_CCW_READ_TRACK_DATA:
  397. data->auxiliary.length_valid = 0x1;
  398. data->length = tlf;
  399. data->operation.operation = 0x0C;
  400. break;
  401. case DASD_ECKD_CCW_ERASE:
  402. data->length = reclen;
  403. data->auxiliary.length_valid = 0x1;
  404. data->operation.operation = 0x0b;
  405. break;
  406. default:
  407. DBF_DEV_EVENT(DBF_ERR, device,
  408. "fill LRE unknown opcode 0x%x", cmd);
  409. BUG();
  410. }
  411. set_ch_t(&data->seek_addr,
  412. trk / private->rdc_data.trk_per_cyl,
  413. trk % private->rdc_data.trk_per_cyl);
  414. data->search_arg.cyl = data->seek_addr.cyl;
  415. data->search_arg.head = data->seek_addr.head;
  416. data->search_arg.record = rec_on_trk;
  417. }
  418. static int prefix_LRE(struct ccw1 *ccw, struct PFX_eckd_data *pfxdata,
  419. unsigned int trk, unsigned int totrk, int cmd,
  420. struct dasd_device *basedev, struct dasd_device *startdev,
  421. unsigned char format, unsigned int rec_on_trk, int count,
  422. unsigned int blksize, unsigned int tlf)
  423. {
  424. struct dasd_eckd_private *basepriv, *startpriv;
  425. struct DE_eckd_data *dedata;
  426. struct LRE_eckd_data *lredata;
  427. u32 begcyl, endcyl;
  428. u16 heads, beghead, endhead;
  429. int rc = 0;
  430. basepriv = (struct dasd_eckd_private *) basedev->private;
  431. startpriv = (struct dasd_eckd_private *) startdev->private;
  432. dedata = &pfxdata->define_extent;
  433. lredata = &pfxdata->locate_record;
  434. ccw->cmd_code = DASD_ECKD_CCW_PFX;
  435. ccw->flags = 0;
  436. if (cmd == DASD_ECKD_CCW_WRITE_FULL_TRACK) {
  437. ccw->count = sizeof(*pfxdata) + 2;
  438. ccw->cda = (__u32) __pa(pfxdata);
  439. memset(pfxdata, 0, sizeof(*pfxdata) + 2);
  440. } else {
  441. ccw->count = sizeof(*pfxdata);
  442. ccw->cda = (__u32) __pa(pfxdata);
  443. memset(pfxdata, 0, sizeof(*pfxdata));
  444. }
  445. /* prefix data */
  446. if (format > 1) {
  447. DBF_DEV_EVENT(DBF_ERR, basedev,
  448. "PFX LRE unknown format 0x%x", format);
  449. BUG();
  450. return -EINVAL;
  451. }
  452. pfxdata->format = format;
  453. pfxdata->base_address = basepriv->ned->unit_addr;
  454. pfxdata->base_lss = basepriv->ned->ID;
  455. pfxdata->validity.define_extent = 1;
  456. /* private uid is kept up to date, conf_data may be outdated */
  457. if (startpriv->uid.type != UA_BASE_DEVICE) {
  458. pfxdata->validity.verify_base = 1;
  459. if (startpriv->uid.type == UA_HYPER_PAV_ALIAS)
  460. pfxdata->validity.hyper_pav = 1;
  461. }
  462. /* define extend data (mostly)*/
  463. switch (cmd) {
  464. case DASD_ECKD_CCW_READ_HOME_ADDRESS:
  465. case DASD_ECKD_CCW_READ_RECORD_ZERO:
  466. case DASD_ECKD_CCW_READ:
  467. case DASD_ECKD_CCW_READ_MT:
  468. case DASD_ECKD_CCW_READ_CKD:
  469. case DASD_ECKD_CCW_READ_CKD_MT:
  470. case DASD_ECKD_CCW_READ_KD:
  471. case DASD_ECKD_CCW_READ_KD_MT:
  472. case DASD_ECKD_CCW_READ_COUNT:
  473. dedata->mask.perm = 0x1;
  474. dedata->attributes.operation = basepriv->attrib.operation;
  475. break;
  476. case DASD_ECKD_CCW_READ_TRACK:
  477. case DASD_ECKD_CCW_READ_TRACK_DATA:
  478. dedata->mask.perm = 0x1;
  479. dedata->attributes.operation = basepriv->attrib.operation;
  480. dedata->blk_size = 0;
  481. break;
  482. case DASD_ECKD_CCW_WRITE:
  483. case DASD_ECKD_CCW_WRITE_MT:
  484. case DASD_ECKD_CCW_WRITE_KD:
  485. case DASD_ECKD_CCW_WRITE_KD_MT:
  486. dedata->mask.perm = 0x02;
  487. dedata->attributes.operation = basepriv->attrib.operation;
  488. rc = check_XRC_on_prefix(pfxdata, basedev);
  489. break;
  490. case DASD_ECKD_CCW_WRITE_CKD:
  491. case DASD_ECKD_CCW_WRITE_CKD_MT:
  492. dedata->attributes.operation = DASD_BYPASS_CACHE;
  493. rc = check_XRC_on_prefix(pfxdata, basedev);
  494. break;
  495. case DASD_ECKD_CCW_ERASE:
  496. case DASD_ECKD_CCW_WRITE_HOME_ADDRESS:
  497. case DASD_ECKD_CCW_WRITE_RECORD_ZERO:
  498. dedata->mask.perm = 0x3;
  499. dedata->mask.auth = 0x1;
  500. dedata->attributes.operation = DASD_BYPASS_CACHE;
  501. rc = check_XRC_on_prefix(pfxdata, basedev);
  502. break;
  503. case DASD_ECKD_CCW_WRITE_FULL_TRACK:
  504. dedata->mask.perm = 0x03;
  505. dedata->attributes.operation = basepriv->attrib.operation;
  506. dedata->blk_size = 0;
  507. break;
  508. case DASD_ECKD_CCW_WRITE_TRACK_DATA:
  509. dedata->mask.perm = 0x02;
  510. dedata->attributes.operation = basepriv->attrib.operation;
  511. dedata->blk_size = blksize;
  512. rc = check_XRC_on_prefix(pfxdata, basedev);
  513. break;
  514. default:
  515. DBF_DEV_EVENT(DBF_ERR, basedev,
  516. "PFX LRE unknown opcode 0x%x", cmd);
  517. BUG();
  518. return -EINVAL;
  519. }
  520. dedata->attributes.mode = 0x3; /* ECKD */
  521. if ((basepriv->rdc_data.cu_type == 0x2105 ||
  522. basepriv->rdc_data.cu_type == 0x2107 ||
  523. basepriv->rdc_data.cu_type == 0x1750)
  524. && !(basepriv->uses_cdl && trk < 2))
  525. dedata->ga_extended |= 0x40; /* Regular Data Format Mode */
  526. heads = basepriv->rdc_data.trk_per_cyl;
  527. begcyl = trk / heads;
  528. beghead = trk % heads;
  529. endcyl = totrk / heads;
  530. endhead = totrk % heads;
  531. /* check for sequential prestage - enhance cylinder range */
  532. if (dedata->attributes.operation == DASD_SEQ_PRESTAGE ||
  533. dedata->attributes.operation == DASD_SEQ_ACCESS) {
  534. if (endcyl + basepriv->attrib.nr_cyl < basepriv->real_cyl)
  535. endcyl += basepriv->attrib.nr_cyl;
  536. else
  537. endcyl = (basepriv->real_cyl - 1);
  538. }
  539. set_ch_t(&dedata->beg_ext, begcyl, beghead);
  540. set_ch_t(&dedata->end_ext, endcyl, endhead);
  541. if (format == 1) {
  542. fill_LRE_data(lredata, trk, rec_on_trk, count, cmd,
  543. basedev, blksize, tlf);
  544. }
  545. return rc;
  546. }
  547. static int prefix(struct ccw1 *ccw, struct PFX_eckd_data *pfxdata,
  548. unsigned int trk, unsigned int totrk, int cmd,
  549. struct dasd_device *basedev, struct dasd_device *startdev)
  550. {
  551. return prefix_LRE(ccw, pfxdata, trk, totrk, cmd, basedev, startdev,
  552. 0, 0, 0, 0, 0);
  553. }
  554. static void
  555. locate_record(struct ccw1 *ccw, struct LO_eckd_data *data, unsigned int trk,
  556. unsigned int rec_on_trk, int no_rec, int cmd,
  557. struct dasd_device * device, int reclen)
  558. {
  559. struct dasd_eckd_private *private;
  560. int sector;
  561. int dn, d;
  562. private = (struct dasd_eckd_private *) device->private;
  563. DBF_DEV_EVENT(DBF_INFO, device,
  564. "Locate: trk %d, rec %d, no_rec %d, cmd %d, reclen %d",
  565. trk, rec_on_trk, no_rec, cmd, reclen);
  566. ccw->cmd_code = DASD_ECKD_CCW_LOCATE_RECORD;
  567. ccw->flags = 0;
  568. ccw->count = 16;
  569. ccw->cda = (__u32) __pa(data);
  570. memset(data, 0, sizeof(struct LO_eckd_data));
  571. sector = 0;
  572. if (rec_on_trk) {
  573. switch (private->rdc_data.dev_type) {
  574. case 0x3390:
  575. dn = ceil_quot(reclen + 6, 232);
  576. d = 9 + ceil_quot(reclen + 6 * (dn + 1), 34);
  577. sector = (49 + (rec_on_trk - 1) * (10 + d)) / 8;
  578. break;
  579. case 0x3380:
  580. d = 7 + ceil_quot(reclen + 12, 32);
  581. sector = (39 + (rec_on_trk - 1) * (8 + d)) / 7;
  582. break;
  583. }
  584. }
  585. data->sector = sector;
  586. data->count = no_rec;
  587. switch (cmd) {
  588. case DASD_ECKD_CCW_WRITE_HOME_ADDRESS:
  589. data->operation.orientation = 0x3;
  590. data->operation.operation = 0x03;
  591. break;
  592. case DASD_ECKD_CCW_READ_HOME_ADDRESS:
  593. data->operation.orientation = 0x3;
  594. data->operation.operation = 0x16;
  595. break;
  596. case DASD_ECKD_CCW_WRITE_RECORD_ZERO:
  597. data->operation.orientation = 0x1;
  598. data->operation.operation = 0x03;
  599. data->count++;
  600. break;
  601. case DASD_ECKD_CCW_READ_RECORD_ZERO:
  602. data->operation.orientation = 0x3;
  603. data->operation.operation = 0x16;
  604. data->count++;
  605. break;
  606. case DASD_ECKD_CCW_WRITE:
  607. case DASD_ECKD_CCW_WRITE_MT:
  608. case DASD_ECKD_CCW_WRITE_KD:
  609. case DASD_ECKD_CCW_WRITE_KD_MT:
  610. data->auxiliary.last_bytes_used = 0x1;
  611. data->length = reclen;
  612. data->operation.operation = 0x01;
  613. break;
  614. case DASD_ECKD_CCW_WRITE_CKD:
  615. case DASD_ECKD_CCW_WRITE_CKD_MT:
  616. data->auxiliary.last_bytes_used = 0x1;
  617. data->length = reclen;
  618. data->operation.operation = 0x03;
  619. break;
  620. case DASD_ECKD_CCW_READ:
  621. case DASD_ECKD_CCW_READ_MT:
  622. case DASD_ECKD_CCW_READ_KD:
  623. case DASD_ECKD_CCW_READ_KD_MT:
  624. data->auxiliary.last_bytes_used = 0x1;
  625. data->length = reclen;
  626. data->operation.operation = 0x06;
  627. break;
  628. case DASD_ECKD_CCW_READ_CKD:
  629. case DASD_ECKD_CCW_READ_CKD_MT:
  630. data->auxiliary.last_bytes_used = 0x1;
  631. data->length = reclen;
  632. data->operation.operation = 0x16;
  633. break;
  634. case DASD_ECKD_CCW_READ_COUNT:
  635. data->operation.operation = 0x06;
  636. break;
  637. case DASD_ECKD_CCW_ERASE:
  638. data->length = reclen;
  639. data->auxiliary.last_bytes_used = 0x1;
  640. data->operation.operation = 0x0b;
  641. break;
  642. default:
  643. DBF_DEV_EVENT(DBF_ERR, device, "unknown locate record "
  644. "opcode 0x%x", cmd);
  645. }
  646. set_ch_t(&data->seek_addr,
  647. trk / private->rdc_data.trk_per_cyl,
  648. trk % private->rdc_data.trk_per_cyl);
  649. data->search_arg.cyl = data->seek_addr.cyl;
  650. data->search_arg.head = data->seek_addr.head;
  651. data->search_arg.record = rec_on_trk;
  652. }
  653. /*
  654. * Returns 1 if the block is one of the special blocks that needs
  655. * to get read/written with the KD variant of the command.
  656. * That is DASD_ECKD_READ_KD_MT instead of DASD_ECKD_READ_MT and
  657. * DASD_ECKD_WRITE_KD_MT instead of DASD_ECKD_WRITE_MT.
  658. * Luckily the KD variants differ only by one bit (0x08) from the
  659. * normal variant. So don't wonder about code like:
  660. * if (dasd_eckd_cdl_special(blk_per_trk, recid))
  661. * ccw->cmd_code |= 0x8;
  662. */
  663. static inline int
  664. dasd_eckd_cdl_special(int blk_per_trk, int recid)
  665. {
  666. if (recid < 3)
  667. return 1;
  668. if (recid < blk_per_trk)
  669. return 0;
  670. if (recid < 2 * blk_per_trk)
  671. return 1;
  672. return 0;
  673. }
  674. /*
  675. * Returns the record size for the special blocks of the cdl format.
  676. * Only returns something useful if dasd_eckd_cdl_special is true
  677. * for the recid.
  678. */
  679. static inline int
  680. dasd_eckd_cdl_reclen(int recid)
  681. {
  682. if (recid < 3)
  683. return sizes_trk0[recid];
  684. return LABEL_SIZE;
  685. }
  686. /*
  687. * Generate device unique id that specifies the physical device.
  688. */
  689. static int dasd_eckd_generate_uid(struct dasd_device *device)
  690. {
  691. struct dasd_eckd_private *private;
  692. struct dasd_uid *uid;
  693. int count;
  694. unsigned long flags;
  695. private = (struct dasd_eckd_private *) device->private;
  696. if (!private)
  697. return -ENODEV;
  698. if (!private->ned || !private->gneq)
  699. return -ENODEV;
  700. uid = &private->uid;
  701. spin_lock_irqsave(get_ccwdev_lock(device->cdev), flags);
  702. memset(uid, 0, sizeof(struct dasd_uid));
  703. memcpy(uid->vendor, private->ned->HDA_manufacturer,
  704. sizeof(uid->vendor) - 1);
  705. EBCASC(uid->vendor, sizeof(uid->vendor) - 1);
  706. memcpy(uid->serial, private->ned->HDA_location,
  707. sizeof(uid->serial) - 1);
  708. EBCASC(uid->serial, sizeof(uid->serial) - 1);
  709. uid->ssid = private->gneq->subsystemID;
  710. uid->real_unit_addr = private->ned->unit_addr;
  711. if (private->sneq) {
  712. uid->type = private->sneq->sua_flags;
  713. if (uid->type == UA_BASE_PAV_ALIAS)
  714. uid->base_unit_addr = private->sneq->base_unit_addr;
  715. } else {
  716. uid->type = UA_BASE_DEVICE;
  717. }
  718. if (private->vdsneq) {
  719. for (count = 0; count < 16; count++) {
  720. sprintf(uid->vduit+2*count, "%02x",
  721. private->vdsneq->uit[count]);
  722. }
  723. }
  724. spin_unlock_irqrestore(get_ccwdev_lock(device->cdev), flags);
  725. return 0;
  726. }
  727. static int dasd_eckd_get_uid(struct dasd_device *device, struct dasd_uid *uid)
  728. {
  729. struct dasd_eckd_private *private;
  730. unsigned long flags;
  731. if (device->private) {
  732. private = (struct dasd_eckd_private *)device->private;
  733. spin_lock_irqsave(get_ccwdev_lock(device->cdev), flags);
  734. *uid = private->uid;
  735. spin_unlock_irqrestore(get_ccwdev_lock(device->cdev), flags);
  736. return 0;
  737. }
  738. return -EINVAL;
  739. }
  740. static void dasd_eckd_fill_rcd_cqr(struct dasd_device *device,
  741. struct dasd_ccw_req *cqr,
  742. __u8 *rcd_buffer,
  743. __u8 lpm)
  744. {
  745. struct ccw1 *ccw;
  746. /*
  747. * buffer has to start with EBCDIC "V1.0" to show
  748. * support for virtual device SNEQ
  749. */
  750. rcd_buffer[0] = 0xE5;
  751. rcd_buffer[1] = 0xF1;
  752. rcd_buffer[2] = 0x4B;
  753. rcd_buffer[3] = 0xF0;
  754. ccw = cqr->cpaddr;
  755. ccw->cmd_code = DASD_ECKD_CCW_RCD;
  756. ccw->flags = 0;
  757. ccw->cda = (__u32)(addr_t)rcd_buffer;
  758. ccw->count = DASD_ECKD_RCD_DATA_SIZE;
  759. cqr->magic = DASD_ECKD_MAGIC;
  760. cqr->startdev = device;
  761. cqr->memdev = device;
  762. cqr->block = NULL;
  763. cqr->expires = 10*HZ;
  764. cqr->lpm = lpm;
  765. cqr->retries = 256;
  766. cqr->buildclk = get_clock();
  767. cqr->status = DASD_CQR_FILLED;
  768. set_bit(DASD_CQR_VERIFY_PATH, &cqr->flags);
  769. }
  770. static int dasd_eckd_read_conf_immediately(struct dasd_device *device,
  771. struct dasd_ccw_req *cqr,
  772. __u8 *rcd_buffer,
  773. __u8 lpm)
  774. {
  775. struct ciw *ciw;
  776. int rc;
  777. /*
  778. * sanity check: scan for RCD command in extended SenseID data
  779. * some devices do not support RCD
  780. */
  781. ciw = ccw_device_get_ciw(device->cdev, CIW_TYPE_RCD);
  782. if (!ciw || ciw->cmd != DASD_ECKD_CCW_RCD)
  783. return -EOPNOTSUPP;
  784. dasd_eckd_fill_rcd_cqr(device, cqr, rcd_buffer, lpm);
  785. clear_bit(DASD_CQR_FLAGS_USE_ERP, &cqr->flags);
  786. set_bit(DASD_CQR_ALLOW_SLOCK, &cqr->flags);
  787. cqr->retries = 5;
  788. rc = dasd_sleep_on_immediatly(cqr);
  789. return rc;
  790. }
  791. static int dasd_eckd_read_conf_lpm(struct dasd_device *device,
  792. void **rcd_buffer,
  793. int *rcd_buffer_size, __u8 lpm)
  794. {
  795. struct ciw *ciw;
  796. char *rcd_buf = NULL;
  797. int ret;
  798. struct dasd_ccw_req *cqr;
  799. /*
  800. * sanity check: scan for RCD command in extended SenseID data
  801. * some devices do not support RCD
  802. */
  803. ciw = ccw_device_get_ciw(device->cdev, CIW_TYPE_RCD);
  804. if (!ciw || ciw->cmd != DASD_ECKD_CCW_RCD) {
  805. ret = -EOPNOTSUPP;
  806. goto out_error;
  807. }
  808. rcd_buf = kzalloc(DASD_ECKD_RCD_DATA_SIZE, GFP_KERNEL | GFP_DMA);
  809. if (!rcd_buf) {
  810. ret = -ENOMEM;
  811. goto out_error;
  812. }
  813. cqr = dasd_smalloc_request(DASD_ECKD_MAGIC, 1 /* RCD */,
  814. 0, /* use rcd_buf as data ara */
  815. device);
  816. if (IS_ERR(cqr)) {
  817. DBF_DEV_EVENT(DBF_WARNING, device, "%s",
  818. "Could not allocate RCD request");
  819. ret = -ENOMEM;
  820. goto out_error;
  821. }
  822. dasd_eckd_fill_rcd_cqr(device, cqr, rcd_buf, lpm);
  823. ret = dasd_sleep_on(cqr);
  824. /*
  825. * on success we update the user input parms
  826. */
  827. dasd_sfree_request(cqr, cqr->memdev);
  828. if (ret)
  829. goto out_error;
  830. *rcd_buffer_size = DASD_ECKD_RCD_DATA_SIZE;
  831. *rcd_buffer = rcd_buf;
  832. return 0;
  833. out_error:
  834. kfree(rcd_buf);
  835. *rcd_buffer = NULL;
  836. *rcd_buffer_size = 0;
  837. return ret;
  838. }
  839. static int dasd_eckd_identify_conf_parts(struct dasd_eckd_private *private)
  840. {
  841. struct dasd_sneq *sneq;
  842. int i, count;
  843. private->ned = NULL;
  844. private->sneq = NULL;
  845. private->vdsneq = NULL;
  846. private->gneq = NULL;
  847. count = private->conf_len / sizeof(struct dasd_sneq);
  848. sneq = (struct dasd_sneq *)private->conf_data;
  849. for (i = 0; i < count; ++i) {
  850. if (sneq->flags.identifier == 1 && sneq->format == 1)
  851. private->sneq = sneq;
  852. else if (sneq->flags.identifier == 1 && sneq->format == 4)
  853. private->vdsneq = (struct vd_sneq *)sneq;
  854. else if (sneq->flags.identifier == 2)
  855. private->gneq = (struct dasd_gneq *)sneq;
  856. else if (sneq->flags.identifier == 3 && sneq->res1 == 1)
  857. private->ned = (struct dasd_ned *)sneq;
  858. sneq++;
  859. }
  860. if (!private->ned || !private->gneq) {
  861. private->ned = NULL;
  862. private->sneq = NULL;
  863. private->vdsneq = NULL;
  864. private->gneq = NULL;
  865. return -EINVAL;
  866. }
  867. return 0;
  868. };
  869. static unsigned char dasd_eckd_path_access(void *conf_data, int conf_len)
  870. {
  871. struct dasd_gneq *gneq;
  872. int i, count, found;
  873. count = conf_len / sizeof(*gneq);
  874. gneq = (struct dasd_gneq *)conf_data;
  875. found = 0;
  876. for (i = 0; i < count; ++i) {
  877. if (gneq->flags.identifier == 2) {
  878. found = 1;
  879. break;
  880. }
  881. gneq++;
  882. }
  883. if (found)
  884. return ((char *)gneq)[18] & 0x07;
  885. else
  886. return 0;
  887. }
  888. static int dasd_eckd_read_conf(struct dasd_device *device)
  889. {
  890. void *conf_data;
  891. int conf_len, conf_data_saved;
  892. int rc;
  893. __u8 lpm, opm;
  894. struct dasd_eckd_private *private;
  895. struct dasd_path *path_data;
  896. private = (struct dasd_eckd_private *) device->private;
  897. path_data = &device->path_data;
  898. opm = ccw_device_get_path_mask(device->cdev);
  899. lpm = 0x80;
  900. conf_data_saved = 0;
  901. /* get configuration data per operational path */
  902. for (lpm = 0x80; lpm; lpm>>= 1) {
  903. if (lpm & opm) {
  904. rc = dasd_eckd_read_conf_lpm(device, &conf_data,
  905. &conf_len, lpm);
  906. if (rc && rc != -EOPNOTSUPP) { /* -EOPNOTSUPP is ok */
  907. DBF_EVENT_DEVID(DBF_WARNING, device->cdev,
  908. "Read configuration data returned "
  909. "error %d", rc);
  910. return rc;
  911. }
  912. if (conf_data == NULL) {
  913. DBF_EVENT_DEVID(DBF_WARNING, device->cdev, "%s",
  914. "No configuration data "
  915. "retrieved");
  916. /* no further analysis possible */
  917. path_data->opm |= lpm;
  918. continue; /* no error */
  919. }
  920. /* save first valid configuration data */
  921. if (!conf_data_saved) {
  922. kfree(private->conf_data);
  923. private->conf_data = conf_data;
  924. private->conf_len = conf_len;
  925. if (dasd_eckd_identify_conf_parts(private)) {
  926. private->conf_data = NULL;
  927. private->conf_len = 0;
  928. kfree(conf_data);
  929. continue;
  930. }
  931. conf_data_saved++;
  932. }
  933. switch (dasd_eckd_path_access(conf_data, conf_len)) {
  934. case 0x02:
  935. path_data->npm |= lpm;
  936. break;
  937. case 0x03:
  938. path_data->ppm |= lpm;
  939. break;
  940. }
  941. path_data->opm |= lpm;
  942. if (conf_data != private->conf_data)
  943. kfree(conf_data);
  944. }
  945. }
  946. return 0;
  947. }
  948. static int verify_fcx_max_data(struct dasd_device *device, __u8 lpm)
  949. {
  950. struct dasd_eckd_private *private;
  951. int mdc;
  952. u32 fcx_max_data;
  953. private = (struct dasd_eckd_private *) device->private;
  954. if (private->fcx_max_data) {
  955. mdc = ccw_device_get_mdc(device->cdev, lpm);
  956. if ((mdc < 0)) {
  957. dev_warn(&device->cdev->dev,
  958. "Detecting the maximum data size for zHPF "
  959. "requests failed (rc=%d) for a new path %x\n",
  960. mdc, lpm);
  961. return mdc;
  962. }
  963. fcx_max_data = mdc * FCX_MAX_DATA_FACTOR;
  964. if (fcx_max_data < private->fcx_max_data) {
  965. dev_warn(&device->cdev->dev,
  966. "The maximum data size for zHPF requests %u "
  967. "on a new path %x is below the active maximum "
  968. "%u\n", fcx_max_data, lpm,
  969. private->fcx_max_data);
  970. return -EACCES;
  971. }
  972. }
  973. return 0;
  974. }
  975. static void do_path_verification_work(struct work_struct *work)
  976. {
  977. struct path_verification_work_data *data;
  978. struct dasd_device *device;
  979. __u8 lpm, opm, npm, ppm, epm;
  980. unsigned long flags;
  981. int rc;
  982. data = container_of(work, struct path_verification_work_data, worker);
  983. device = data->device;
  984. opm = 0;
  985. npm = 0;
  986. ppm = 0;
  987. epm = 0;
  988. for (lpm = 0x80; lpm; lpm >>= 1) {
  989. if (lpm & data->tbvpm) {
  990. memset(data->rcd_buffer, 0, sizeof(data->rcd_buffer));
  991. memset(&data->cqr, 0, sizeof(data->cqr));
  992. data->cqr.cpaddr = &data->ccw;
  993. rc = dasd_eckd_read_conf_immediately(device, &data->cqr,
  994. data->rcd_buffer,
  995. lpm);
  996. if (!rc) {
  997. switch (dasd_eckd_path_access(data->rcd_buffer,
  998. DASD_ECKD_RCD_DATA_SIZE)) {
  999. case 0x02:
  1000. npm |= lpm;
  1001. break;
  1002. case 0x03:
  1003. ppm |= lpm;
  1004. break;
  1005. }
  1006. opm |= lpm;
  1007. } else if (rc == -EOPNOTSUPP) {
  1008. DBF_EVENT_DEVID(DBF_WARNING, device->cdev, "%s",
  1009. "path verification: No configuration "
  1010. "data retrieved");
  1011. opm |= lpm;
  1012. } else if (rc == -EAGAIN) {
  1013. DBF_EVENT_DEVID(DBF_WARNING, device->cdev, "%s",
  1014. "path verification: device is stopped,"
  1015. " try again later");
  1016. epm |= lpm;
  1017. } else {
  1018. dev_warn(&device->cdev->dev,
  1019. "Reading device feature codes failed "
  1020. "(rc=%d) for new path %x\n", rc, lpm);
  1021. continue;
  1022. }
  1023. if (verify_fcx_max_data(device, lpm)) {
  1024. opm &= ~lpm;
  1025. npm &= ~lpm;
  1026. ppm &= ~lpm;
  1027. }
  1028. }
  1029. }
  1030. /*
  1031. * There is a small chance that a path is lost again between
  1032. * above path verification and the following modification of
  1033. * the device opm mask. We could avoid that race here by using
  1034. * yet another path mask, but we rather deal with this unlikely
  1035. * situation in dasd_start_IO.
  1036. */
  1037. spin_lock_irqsave(get_ccwdev_lock(device->cdev), flags);
  1038. if (!device->path_data.opm && opm) {
  1039. device->path_data.opm = opm;
  1040. dasd_generic_path_operational(device);
  1041. } else
  1042. device->path_data.opm |= opm;
  1043. device->path_data.npm |= npm;
  1044. device->path_data.ppm |= ppm;
  1045. device->path_data.tbvpm |= epm;
  1046. spin_unlock_irqrestore(get_ccwdev_lock(device->cdev), flags);
  1047. dasd_put_device(device);
  1048. if (data->isglobal)
  1049. mutex_unlock(&dasd_path_verification_mutex);
  1050. else
  1051. kfree(data);
  1052. }
  1053. static int dasd_eckd_verify_path(struct dasd_device *device, __u8 lpm)
  1054. {
  1055. struct path_verification_work_data *data;
  1056. data = kmalloc(sizeof(*data), GFP_ATOMIC | GFP_DMA);
  1057. if (!data) {
  1058. if (mutex_trylock(&dasd_path_verification_mutex)) {
  1059. data = path_verification_worker;
  1060. data->isglobal = 1;
  1061. } else
  1062. return -ENOMEM;
  1063. } else {
  1064. memset(data, 0, sizeof(*data));
  1065. data->isglobal = 0;
  1066. }
  1067. INIT_WORK(&data->worker, do_path_verification_work);
  1068. dasd_get_device(device);
  1069. data->device = device;
  1070. data->tbvpm = lpm;
  1071. schedule_work(&data->worker);
  1072. return 0;
  1073. }
  1074. static int dasd_eckd_read_features(struct dasd_device *device)
  1075. {
  1076. struct dasd_psf_prssd_data *prssdp;
  1077. struct dasd_rssd_features *features;
  1078. struct dasd_ccw_req *cqr;
  1079. struct ccw1 *ccw;
  1080. int rc;
  1081. struct dasd_eckd_private *private;
  1082. private = (struct dasd_eckd_private *) device->private;
  1083. memset(&private->features, 0, sizeof(struct dasd_rssd_features));
  1084. cqr = dasd_smalloc_request(DASD_ECKD_MAGIC, 1 /* PSF */ + 1 /* RSSD */,
  1085. (sizeof(struct dasd_psf_prssd_data) +
  1086. sizeof(struct dasd_rssd_features)),
  1087. device);
  1088. if (IS_ERR(cqr)) {
  1089. DBF_EVENT_DEVID(DBF_WARNING, device->cdev, "%s", "Could not "
  1090. "allocate initialization request");
  1091. return PTR_ERR(cqr);
  1092. }
  1093. cqr->startdev = device;
  1094. cqr->memdev = device;
  1095. cqr->block = NULL;
  1096. cqr->retries = 256;
  1097. cqr->expires = 10 * HZ;
  1098. /* Prepare for Read Subsystem Data */
  1099. prssdp = (struct dasd_psf_prssd_data *) cqr->data;
  1100. memset(prssdp, 0, sizeof(struct dasd_psf_prssd_data));
  1101. prssdp->order = PSF_ORDER_PRSSD;
  1102. prssdp->suborder = 0x41; /* Read Feature Codes */
  1103. /* all other bytes of prssdp must be zero */
  1104. ccw = cqr->cpaddr;
  1105. ccw->cmd_code = DASD_ECKD_CCW_PSF;
  1106. ccw->count = sizeof(struct dasd_psf_prssd_data);
  1107. ccw->flags |= CCW_FLAG_CC;
  1108. ccw->cda = (__u32)(addr_t) prssdp;
  1109. /* Read Subsystem Data - feature codes */
  1110. features = (struct dasd_rssd_features *) (prssdp + 1);
  1111. memset(features, 0, sizeof(struct dasd_rssd_features));
  1112. ccw++;
  1113. ccw->cmd_code = DASD_ECKD_CCW_RSSD;
  1114. ccw->count = sizeof(struct dasd_rssd_features);
  1115. ccw->cda = (__u32)(addr_t) features;
  1116. cqr->buildclk = get_clock();
  1117. cqr->status = DASD_CQR_FILLED;
  1118. rc = dasd_sleep_on(cqr);
  1119. if (rc == 0) {
  1120. prssdp = (struct dasd_psf_prssd_data *) cqr->data;
  1121. features = (struct dasd_rssd_features *) (prssdp + 1);
  1122. memcpy(&private->features, features,
  1123. sizeof(struct dasd_rssd_features));
  1124. } else
  1125. dev_warn(&device->cdev->dev, "Reading device feature codes"
  1126. " failed with rc=%d\n", rc);
  1127. dasd_sfree_request(cqr, cqr->memdev);
  1128. return rc;
  1129. }
  1130. /*
  1131. * Build CP for Perform Subsystem Function - SSC.
  1132. */
  1133. static struct dasd_ccw_req *dasd_eckd_build_psf_ssc(struct dasd_device *device,
  1134. int enable_pav)
  1135. {
  1136. struct dasd_ccw_req *cqr;
  1137. struct dasd_psf_ssc_data *psf_ssc_data;
  1138. struct ccw1 *ccw;
  1139. cqr = dasd_smalloc_request(DASD_ECKD_MAGIC, 1 /* PSF */ ,
  1140. sizeof(struct dasd_psf_ssc_data),
  1141. device);
  1142. if (IS_ERR(cqr)) {
  1143. DBF_DEV_EVENT(DBF_WARNING, device, "%s",
  1144. "Could not allocate PSF-SSC request");
  1145. return cqr;
  1146. }
  1147. psf_ssc_data = (struct dasd_psf_ssc_data *)cqr->data;
  1148. psf_ssc_data->order = PSF_ORDER_SSC;
  1149. psf_ssc_data->suborder = 0xc0;
  1150. if (enable_pav) {
  1151. psf_ssc_data->suborder |= 0x08;
  1152. psf_ssc_data->reserved[0] = 0x88;
  1153. }
  1154. ccw = cqr->cpaddr;
  1155. ccw->cmd_code = DASD_ECKD_CCW_PSF;
  1156. ccw->cda = (__u32)(addr_t)psf_ssc_data;
  1157. ccw->count = 66;
  1158. cqr->startdev = device;
  1159. cqr->memdev = device;
  1160. cqr->block = NULL;
  1161. cqr->retries = 256;
  1162. cqr->expires = 10*HZ;
  1163. cqr->buildclk = get_clock();
  1164. cqr->status = DASD_CQR_FILLED;
  1165. return cqr;
  1166. }
  1167. /*
  1168. * Perform Subsystem Function.
  1169. * It is necessary to trigger CIO for channel revalidation since this
  1170. * call might change behaviour of DASD devices.
  1171. */
  1172. static int
  1173. dasd_eckd_psf_ssc(struct dasd_device *device, int enable_pav)
  1174. {
  1175. struct dasd_ccw_req *cqr;
  1176. int rc;
  1177. cqr = dasd_eckd_build_psf_ssc(device, enable_pav);
  1178. if (IS_ERR(cqr))
  1179. return PTR_ERR(cqr);
  1180. rc = dasd_sleep_on(cqr);
  1181. if (!rc)
  1182. /* trigger CIO to reprobe devices */
  1183. css_schedule_reprobe();
  1184. dasd_sfree_request(cqr, cqr->memdev);
  1185. return rc;
  1186. }
  1187. /*
  1188. * Valide storage server of current device.
  1189. */
  1190. static void dasd_eckd_validate_server(struct dasd_device *device)
  1191. {
  1192. int rc;
  1193. struct dasd_eckd_private *private;
  1194. int enable_pav;
  1195. if (dasd_nopav || MACHINE_IS_VM)
  1196. enable_pav = 0;
  1197. else
  1198. enable_pav = 1;
  1199. rc = dasd_eckd_psf_ssc(device, enable_pav);
  1200. /* may be requested feature is not available on server,
  1201. * therefore just report error and go ahead */
  1202. private = (struct dasd_eckd_private *) device->private;
  1203. DBF_EVENT_DEVID(DBF_WARNING, device->cdev, "PSF-SSC for SSID %04x "
  1204. "returned rc=%d", private->uid.ssid, rc);
  1205. }
  1206. static u32 get_fcx_max_data(struct dasd_device *device)
  1207. {
  1208. #if defined(CONFIG_64BIT)
  1209. int tpm, mdc;
  1210. int fcx_in_css, fcx_in_gneq, fcx_in_features;
  1211. struct dasd_eckd_private *private;
  1212. if (dasd_nofcx)
  1213. return 0;
  1214. /* is transport mode supported? */
  1215. private = (struct dasd_eckd_private *) device->private;
  1216. fcx_in_css = css_general_characteristics.fcx;
  1217. fcx_in_gneq = private->gneq->reserved2[7] & 0x04;
  1218. fcx_in_features = private->features.feature[40] & 0x80;
  1219. tpm = fcx_in_css && fcx_in_gneq && fcx_in_features;
  1220. if (!tpm)
  1221. return 0;
  1222. mdc = ccw_device_get_mdc(device->cdev, 0);
  1223. if (mdc < 0) {
  1224. dev_warn(&device->cdev->dev, "Detecting the maximum supported"
  1225. " data size for zHPF requests failed\n");
  1226. return 0;
  1227. } else
  1228. return mdc * FCX_MAX_DATA_FACTOR;
  1229. #else
  1230. return 0;
  1231. #endif
  1232. }
  1233. /*
  1234. * Check device characteristics.
  1235. * If the device is accessible using ECKD discipline, the device is enabled.
  1236. */
  1237. static int
  1238. dasd_eckd_check_characteristics(struct dasd_device *device)
  1239. {
  1240. struct dasd_eckd_private *private;
  1241. struct dasd_block *block;
  1242. struct dasd_uid temp_uid;
  1243. int is_known, rc, i;
  1244. int readonly;
  1245. unsigned long value;
  1246. if (!ccw_device_is_pathgroup(device->cdev)) {
  1247. dev_warn(&device->cdev->dev,
  1248. "A channel path group could not be established\n");
  1249. return -EIO;
  1250. }
  1251. if (!ccw_device_is_multipath(device->cdev)) {
  1252. dev_info(&device->cdev->dev,
  1253. "The DASD is not operating in multipath mode\n");
  1254. }
  1255. private = (struct dasd_eckd_private *) device->private;
  1256. if (!private) {
  1257. private = kzalloc(sizeof(*private), GFP_KERNEL | GFP_DMA);
  1258. if (!private) {
  1259. dev_warn(&device->cdev->dev,
  1260. "Allocating memory for private DASD data "
  1261. "failed\n");
  1262. return -ENOMEM;
  1263. }
  1264. device->private = (void *) private;
  1265. } else {
  1266. memset(private, 0, sizeof(*private));
  1267. }
  1268. /* Invalidate status of initial analysis. */
  1269. private->init_cqr_status = -1;
  1270. /* Set default cache operations. */
  1271. private->attrib.operation = DASD_NORMAL_CACHE;
  1272. private->attrib.nr_cyl = 0;
  1273. /* Read Configuration Data */
  1274. rc = dasd_eckd_read_conf(device);
  1275. if (rc)
  1276. goto out_err1;
  1277. /* set default timeout */
  1278. device->default_expires = DASD_EXPIRES;
  1279. if (private->gneq) {
  1280. value = 1;
  1281. for (i = 0; i < private->gneq->timeout.value; i++)
  1282. value = 10 * value;
  1283. value = value * private->gneq->timeout.number;
  1284. /* do not accept useless values */
  1285. if (value != 0 && value <= DASD_EXPIRES_MAX)
  1286. device->default_expires = value;
  1287. }
  1288. /* Generate device unique id */
  1289. rc = dasd_eckd_generate_uid(device);
  1290. if (rc)
  1291. goto out_err1;
  1292. dasd_eckd_get_uid(device, &temp_uid);
  1293. if (temp_uid.type == UA_BASE_DEVICE) {
  1294. block = dasd_alloc_block();
  1295. if (IS_ERR(block)) {
  1296. DBF_EVENT_DEVID(DBF_WARNING, device->cdev, "%s",
  1297. "could not allocate dasd "
  1298. "block structure");
  1299. rc = PTR_ERR(block);
  1300. goto out_err1;
  1301. }
  1302. device->block = block;
  1303. block->base = device;
  1304. }
  1305. /* register lcu with alias handling, enable PAV if this is a new lcu */
  1306. is_known = dasd_alias_make_device_known_to_lcu(device);
  1307. if (is_known < 0) {
  1308. rc = is_known;
  1309. goto out_err2;
  1310. }
  1311. /*
  1312. * dasd_eckd_validate_server is done on the first device that
  1313. * is found for an LCU. All later other devices have to wait
  1314. * for it, so they will read the correct feature codes.
  1315. */
  1316. if (!is_known) {
  1317. dasd_eckd_validate_server(device);
  1318. dasd_alias_lcu_setup_complete(device);
  1319. } else
  1320. dasd_alias_wait_for_lcu_setup(device);
  1321. /* device may report different configuration data after LCU setup */
  1322. rc = dasd_eckd_read_conf(device);
  1323. if (rc)
  1324. goto out_err3;
  1325. /* Read Feature Codes */
  1326. dasd_eckd_read_features(device);
  1327. /* Read Device Characteristics */
  1328. rc = dasd_generic_read_dev_chars(device, DASD_ECKD_MAGIC,
  1329. &private->rdc_data, 64);
  1330. if (rc) {
  1331. DBF_EVENT_DEVID(DBF_WARNING, device->cdev,
  1332. "Read device characteristic failed, rc=%d", rc);
  1333. goto out_err3;
  1334. }
  1335. /* find the valid cylinder size */
  1336. if (private->rdc_data.no_cyl == LV_COMPAT_CYL &&
  1337. private->rdc_data.long_no_cyl)
  1338. private->real_cyl = private->rdc_data.long_no_cyl;
  1339. else
  1340. private->real_cyl = private->rdc_data.no_cyl;
  1341. private->fcx_max_data = get_fcx_max_data(device);
  1342. readonly = dasd_device_is_ro(device);
  1343. if (readonly)
  1344. set_bit(DASD_FLAG_DEVICE_RO, &device->flags);
  1345. dev_info(&device->cdev->dev, "New DASD %04X/%02X (CU %04X/%02X) "
  1346. "with %d cylinders, %d heads, %d sectors%s\n",
  1347. private->rdc_data.dev_type,
  1348. private->rdc_data.dev_model,
  1349. private->rdc_data.cu_type,
  1350. private->rdc_data.cu_model.model,
  1351. private->real_cyl,
  1352. private->rdc_data.trk_per_cyl,
  1353. private->rdc_data.sec_per_trk,
  1354. readonly ? ", read-only device" : "");
  1355. return 0;
  1356. out_err3:
  1357. dasd_alias_disconnect_device_from_lcu(device);
  1358. out_err2:
  1359. dasd_free_block(device->block);
  1360. device->block = NULL;
  1361. out_err1:
  1362. kfree(private->conf_data);
  1363. kfree(device->private);
  1364. device->private = NULL;
  1365. return rc;
  1366. }
  1367. static void dasd_eckd_uncheck_device(struct dasd_device *device)
  1368. {
  1369. struct dasd_eckd_private *private;
  1370. private = (struct dasd_eckd_private *) device->private;
  1371. dasd_alias_disconnect_device_from_lcu(device);
  1372. private->ned = NULL;
  1373. private->sneq = NULL;
  1374. private->vdsneq = NULL;
  1375. private->gneq = NULL;
  1376. private->conf_len = 0;
  1377. kfree(private->conf_data);
  1378. private->conf_data = NULL;
  1379. }
  1380. static struct dasd_ccw_req *
  1381. dasd_eckd_analysis_ccw(struct dasd_device *device)
  1382. {
  1383. struct dasd_eckd_private *private;
  1384. struct eckd_count *count_data;
  1385. struct LO_eckd_data *LO_data;
  1386. struct dasd_ccw_req *cqr;
  1387. struct ccw1 *ccw;
  1388. int cplength, datasize;
  1389. int i;
  1390. private = (struct dasd_eckd_private *) device->private;
  1391. cplength = 8;
  1392. datasize = sizeof(struct DE_eckd_data) + 2*sizeof(struct LO_eckd_data);
  1393. cqr = dasd_smalloc_request(DASD_ECKD_MAGIC, cplength, datasize, device);
  1394. if (IS_ERR(cqr))
  1395. return cqr;
  1396. ccw = cqr->cpaddr;
  1397. /* Define extent for the first 3 tracks. */
  1398. define_extent(ccw++, cqr->data, 0, 2,
  1399. DASD_ECKD_CCW_READ_COUNT, device);
  1400. LO_data = cqr->data + sizeof(struct DE_eckd_data);
  1401. /* Locate record for the first 4 records on track 0. */
  1402. ccw[-1].flags |= CCW_FLAG_CC;
  1403. locate_record(ccw++, LO_data++, 0, 0, 4,
  1404. DASD_ECKD_CCW_READ_COUNT, device, 0);
  1405. count_data = private->count_area;
  1406. for (i = 0; i < 4; i++) {
  1407. ccw[-1].flags |= CCW_FLAG_CC;
  1408. ccw->cmd_code = DASD_ECKD_CCW_READ_COUNT;
  1409. ccw->flags = 0;
  1410. ccw->count = 8;
  1411. ccw->cda = (__u32)(addr_t) count_data;
  1412. ccw++;
  1413. count_data++;
  1414. }
  1415. /* Locate record for the first record on track 2. */
  1416. ccw[-1].flags |= CCW_FLAG_CC;
  1417. locate_record(ccw++, LO_data++, 2, 0, 1,
  1418. DASD_ECKD_CCW_READ_COUNT, device, 0);
  1419. /* Read count ccw. */
  1420. ccw[-1].flags |= CCW_FLAG_CC;
  1421. ccw->cmd_code = DASD_ECKD_CCW_READ_COUNT;
  1422. ccw->flags = 0;
  1423. ccw->count = 8;
  1424. ccw->cda = (__u32)(addr_t) count_data;
  1425. cqr->block = NULL;
  1426. cqr->startdev = device;
  1427. cqr->memdev = device;
  1428. cqr->retries = 255;
  1429. cqr->buildclk = get_clock();
  1430. cqr->status = DASD_CQR_FILLED;
  1431. return cqr;
  1432. }
  1433. /* differentiate between 'no record found' and any other error */
  1434. static int dasd_eckd_analysis_evaluation(struct dasd_ccw_req *init_cqr)
  1435. {
  1436. char *sense;
  1437. if (init_cqr->status == DASD_CQR_DONE)
  1438. return INIT_CQR_OK;
  1439. else if (init_cqr->status == DASD_CQR_NEED_ERP ||
  1440. init_cqr->status == DASD_CQR_FAILED) {
  1441. sense = dasd_get_sense(&init_cqr->irb);
  1442. if (sense && (sense[1] & SNS1_NO_REC_FOUND))
  1443. return INIT_CQR_UNFORMATTED;
  1444. else
  1445. return INIT_CQR_ERROR;
  1446. } else
  1447. return INIT_CQR_ERROR;
  1448. }
  1449. /*
  1450. * This is the callback function for the init_analysis cqr. It saves
  1451. * the status of the initial analysis ccw before it frees it and kicks
  1452. * the device to continue the startup sequence. This will call
  1453. * dasd_eckd_do_analysis again (if the devices has not been marked
  1454. * for deletion in the meantime).
  1455. */
  1456. static void dasd_eckd_analysis_callback(struct dasd_ccw_req *init_cqr,
  1457. void *data)
  1458. {
  1459. struct dasd_eckd_private *private;
  1460. struct dasd_device *device;
  1461. device = init_cqr->startdev;
  1462. private = (struct dasd_eckd_private *) device->private;
  1463. private->init_cqr_status = dasd_eckd_analysis_evaluation(init_cqr);
  1464. dasd_sfree_request(init_cqr, device);
  1465. dasd_kick_device(device);
  1466. }
  1467. static int dasd_eckd_start_analysis(struct dasd_block *block)
  1468. {
  1469. struct dasd_eckd_private *private;
  1470. struct dasd_ccw_req *init_cqr;
  1471. private = (struct dasd_eckd_private *) block->base->private;
  1472. init_cqr = dasd_eckd_analysis_ccw(block->base);
  1473. if (IS_ERR(init_cqr))
  1474. return PTR_ERR(init_cqr);
  1475. init_cqr->callback = dasd_eckd_analysis_callback;
  1476. init_cqr->callback_data = NULL;
  1477. init_cqr->expires = 5*HZ;
  1478. /* first try without ERP, so we can later handle unformatted
  1479. * devices as special case
  1480. */
  1481. clear_bit(DASD_CQR_FLAGS_USE_ERP, &init_cqr->flags);
  1482. init_cqr->retries = 0;
  1483. dasd_add_request_head(init_cqr);
  1484. return -EAGAIN;
  1485. }
  1486. static int dasd_eckd_end_analysis(struct dasd_block *block)
  1487. {
  1488. struct dasd_device *device;
  1489. struct dasd_eckd_private *private;
  1490. struct eckd_count *count_area;
  1491. unsigned int sb, blk_per_trk;
  1492. int status, i;
  1493. struct dasd_ccw_req *init_cqr;
  1494. device = block->base;
  1495. private = (struct dasd_eckd_private *) device->private;
  1496. status = private->init_cqr_status;
  1497. private->init_cqr_status = -1;
  1498. if (status == INIT_CQR_ERROR) {
  1499. /* try again, this time with full ERP */
  1500. init_cqr = dasd_eckd_analysis_ccw(device);
  1501. dasd_sleep_on(init_cqr);
  1502. status = dasd_eckd_analysis_evaluation(init_cqr);
  1503. dasd_sfree_request(init_cqr, device);
  1504. }
  1505. if (device->features & DASD_FEATURE_USERAW) {
  1506. block->bp_block = DASD_RAW_BLOCKSIZE;
  1507. blk_per_trk = DASD_RAW_BLOCK_PER_TRACK;
  1508. block->s2b_shift = 3;
  1509. goto raw;
  1510. }
  1511. if (status == INIT_CQR_UNFORMATTED) {
  1512. dev_warn(&device->cdev->dev, "The DASD is not formatted\n");
  1513. return -EMEDIUMTYPE;
  1514. } else if (status == INIT_CQR_ERROR) {
  1515. dev_err(&device->cdev->dev,
  1516. "Detecting the DASD disk layout failed because "
  1517. "of an I/O error\n");
  1518. return -EIO;
  1519. }
  1520. private->uses_cdl = 1;
  1521. /* Check Track 0 for Compatible Disk Layout */
  1522. count_area = NULL;
  1523. for (i = 0; i < 3; i++) {
  1524. if (private->count_area[i].kl != 4 ||
  1525. private->count_area[i].dl != dasd_eckd_cdl_reclen(i) - 4) {
  1526. private->uses_cdl = 0;
  1527. break;
  1528. }
  1529. }
  1530. if (i == 3)
  1531. count_area = &private->count_area[4];
  1532. if (private->uses_cdl == 0) {
  1533. for (i = 0; i < 5; i++) {
  1534. if ((private->count_area[i].kl != 0) ||
  1535. (private->count_area[i].dl !=
  1536. private->count_area[0].dl))
  1537. break;
  1538. }
  1539. if (i == 5)
  1540. count_area = &private->count_area[0];
  1541. } else {
  1542. if (private->count_area[3].record == 1)
  1543. dev_warn(&device->cdev->dev,
  1544. "Track 0 has no records following the VTOC\n");
  1545. }
  1546. if (count_area != NULL && count_area->kl == 0) {
  1547. /* we found notthing violating our disk layout */
  1548. if (dasd_check_blocksize(count_area->dl) == 0)
  1549. block->bp_block = count_area->dl;
  1550. }
  1551. if (block->bp_block == 0) {
  1552. dev_warn(&device->cdev->dev,
  1553. "The disk layout of the DASD is not supported\n");
  1554. return -EMEDIUMTYPE;
  1555. }
  1556. block->s2b_shift = 0; /* bits to shift 512 to get a block */
  1557. for (sb = 512; sb < block->bp_block; sb = sb << 1)
  1558. block->s2b_shift++;
  1559. blk_per_trk = recs_per_track(&private->rdc_data, 0, block->bp_block);
  1560. raw:
  1561. block->blocks = (private->real_cyl *
  1562. private->rdc_data.trk_per_cyl *
  1563. blk_per_trk);
  1564. dev_info(&device->cdev->dev,
  1565. "DASD with %d KB/block, %d KB total size, %d KB/track, "
  1566. "%s\n", (block->bp_block >> 10),
  1567. ((private->real_cyl *
  1568. private->rdc_data.trk_per_cyl *
  1569. blk_per_trk * (block->bp_block >> 9)) >> 1),
  1570. ((blk_per_trk * block->bp_block) >> 10),
  1571. private->uses_cdl ?
  1572. "compatible disk layout" : "linux disk layout");
  1573. return 0;
  1574. }
  1575. static int dasd_eckd_do_analysis(struct dasd_block *block)
  1576. {
  1577. struct dasd_eckd_private *private;
  1578. private = (struct dasd_eckd_private *) block->base->private;
  1579. if (private->init_cqr_status < 0)
  1580. return dasd_eckd_start_analysis(block);
  1581. else
  1582. return dasd_eckd_end_analysis(block);
  1583. }
  1584. static int dasd_eckd_ready_to_online(struct dasd_device *device)
  1585. {
  1586. return dasd_alias_add_device(device);
  1587. };
  1588. static int dasd_eckd_online_to_ready(struct dasd_device *device)
  1589. {
  1590. cancel_work_sync(&device->reload_device);
  1591. return dasd_alias_remove_device(device);
  1592. };
  1593. static int
  1594. dasd_eckd_fill_geometry(struct dasd_block *block, struct hd_geometry *geo)
  1595. {
  1596. struct dasd_eckd_private *private;
  1597. private = (struct dasd_eckd_private *) block->base->private;
  1598. if (dasd_check_blocksize(block->bp_block) == 0) {
  1599. geo->sectors = recs_per_track(&private->rdc_data,
  1600. 0, block->bp_block);
  1601. }
  1602. geo->cylinders = private->rdc_data.no_cyl;
  1603. geo->heads = private->rdc_data.trk_per_cyl;
  1604. return 0;
  1605. }
  1606. static struct dasd_ccw_req *
  1607. dasd_eckd_format_device(struct dasd_device * device,
  1608. struct format_data_t * fdata)
  1609. {
  1610. struct dasd_eckd_private *private;
  1611. struct dasd_ccw_req *fcp;
  1612. struct eckd_count *ect;
  1613. struct ccw1 *ccw;
  1614. void *data;
  1615. int rpt;
  1616. struct ch_t address;
  1617. int cplength, datasize;
  1618. int i;
  1619. int intensity = 0;
  1620. int r0_perm;
  1621. private = (struct dasd_eckd_private *) device->private;
  1622. rpt = recs_per_track(&private->rdc_data, 0, fdata->blksize);
  1623. set_ch_t(&address,
  1624. fdata->start_unit / private->rdc_data.trk_per_cyl,
  1625. fdata->start_unit % private->rdc_data.trk_per_cyl);
  1626. /* Sanity checks. */
  1627. if (fdata->start_unit >=
  1628. (private->real_cyl * private->rdc_data.trk_per_cyl)) {
  1629. dev_warn(&device->cdev->dev, "Start track number %d used in "
  1630. "formatting is too big\n", fdata->start_unit);
  1631. return ERR_PTR(-EINVAL);
  1632. }
  1633. if (fdata->start_unit > fdata->stop_unit) {
  1634. dev_warn(&device->cdev->dev, "Start track %d used in "
  1635. "formatting exceeds end track\n", fdata->start_unit);
  1636. return ERR_PTR(-EINVAL);
  1637. }
  1638. if (dasd_check_blocksize(fdata->blksize) != 0) {
  1639. dev_warn(&device->cdev->dev,
  1640. "The DASD cannot be formatted with block size %d\n",
  1641. fdata->blksize);
  1642. return ERR_PTR(-EINVAL);
  1643. }
  1644. /*
  1645. * fdata->intensity is a bit string that tells us what to do:
  1646. * Bit 0: write record zero
  1647. * Bit 1: write home address, currently not supported
  1648. * Bit 2: invalidate tracks
  1649. * Bit 3: use OS/390 compatible disk layout (cdl)
  1650. * Bit 4: do not allow storage subsystem to modify record zero
  1651. * Only some bit combinations do make sense.
  1652. */
  1653. if (fdata->intensity & 0x10) {
  1654. r0_perm = 0;
  1655. intensity = fdata->intensity & ~0x10;
  1656. } else {
  1657. r0_perm = 1;
  1658. intensity = fdata->intensity;
  1659. }
  1660. switch (intensity) {
  1661. case 0x00: /* Normal format */
  1662. case 0x08: /* Normal format, use cdl. */
  1663. cplength = 2 + rpt;
  1664. datasize = sizeof(struct DE_eckd_data) +
  1665. sizeof(struct LO_eckd_data) +
  1666. rpt * sizeof(struct eckd_count);
  1667. break;
  1668. case 0x01: /* Write record zero and format track. */
  1669. case 0x09: /* Write record zero and format track, use cdl. */
  1670. cplength = 3 + rpt;
  1671. datasize = sizeof(struct DE_eckd_data) +
  1672. sizeof(struct LO_eckd_data) +
  1673. sizeof(struct eckd_count) +
  1674. rpt * sizeof(struct eckd_count);
  1675. break;
  1676. case 0x04: /* Invalidate track. */
  1677. case 0x0c: /* Invalidate track, use cdl. */
  1678. cplength = 3;
  1679. datasize = sizeof(struct DE_eckd_data) +
  1680. sizeof(struct LO_eckd_data) +
  1681. sizeof(struct eckd_count);
  1682. break;
  1683. default:
  1684. dev_warn(&device->cdev->dev, "An I/O control call used "
  1685. "incorrect flags 0x%x\n", fdata->intensity);
  1686. return ERR_PTR(-EINVAL);
  1687. }
  1688. /* Allocate the format ccw request. */
  1689. fcp = dasd_smalloc_request(DASD_ECKD_MAGIC, cplength, datasize, device);
  1690. if (IS_ERR(fcp))
  1691. return fcp;
  1692. data = fcp->data;
  1693. ccw = fcp->cpaddr;
  1694. switch (intensity & ~0x08) {
  1695. case 0x00: /* Normal format. */
  1696. define_extent(ccw++, (struct DE_eckd_data *) data,
  1697. fdata->start_unit, fdata->start_unit,
  1698. DASD_ECKD_CCW_WRITE_CKD, device);
  1699. /* grant subsystem permission to format R0 */
  1700. if (r0_perm)
  1701. ((struct DE_eckd_data *)data)->ga_extended |= 0x04;
  1702. data += sizeof(struct DE_eckd_data);
  1703. ccw[-1].flags |= CCW_FLAG_CC;
  1704. locate_record(ccw++, (struct LO_eckd_data *) data,
  1705. fdata->start_unit, 0, rpt,
  1706. DASD_ECKD_CCW_WRITE_CKD, device,
  1707. fdata->blksize);
  1708. data += sizeof(struct LO_eckd_data);
  1709. break;
  1710. case 0x01: /* Write record zero + format track. */
  1711. define_extent(ccw++, (struct DE_eckd_data *) data,
  1712. fdata->start_unit, fdata->start_unit,
  1713. DASD_ECKD_CCW_WRITE_RECORD_ZERO,
  1714. device);
  1715. data += sizeof(struct DE_eckd_data);
  1716. ccw[-1].flags |= CCW_FLAG_CC;
  1717. locate_record(ccw++, (struct LO_eckd_data *) data,
  1718. fdata->start_unit, 0, rpt + 1,
  1719. DASD_ECKD_CCW_WRITE_RECORD_ZERO, device,
  1720. device->block->bp_block);
  1721. data += sizeof(struct LO_eckd_data);
  1722. break;
  1723. case 0x04: /* Invalidate track. */
  1724. define_extent(ccw++, (struct DE_eckd_data *) data,
  1725. fdata->start_unit, fdata->start_unit,
  1726. DASD_ECKD_CCW_WRITE_CKD, device);
  1727. data += sizeof(struct DE_eckd_data);
  1728. ccw[-1].flags |= CCW_FLAG_CC;
  1729. locate_record(ccw++, (struct LO_eckd_data *) data,
  1730. fdata->start_unit, 0, 1,
  1731. DASD_ECKD_CCW_WRITE_CKD, device, 8);
  1732. data += sizeof(struct LO_eckd_data);
  1733. break;
  1734. }
  1735. if (intensity & 0x01) { /* write record zero */
  1736. ect = (struct eckd_count *) data;
  1737. data += sizeof(struct eckd_count);
  1738. ect->cyl = address.cyl;
  1739. ect->head = address.head;
  1740. ect->record = 0;
  1741. ect->kl = 0;
  1742. ect->dl = 8;
  1743. ccw[-1].flags |= CCW_FLAG_CC;
  1744. ccw->cmd_code = DASD_ECKD_CCW_WRITE_RECORD_ZERO;
  1745. ccw->flags = CCW_FLAG_SLI;
  1746. ccw->count = 8;
  1747. ccw->cda = (__u32)(addr_t) ect;
  1748. ccw++;
  1749. }
  1750. if ((intensity & ~0x08) & 0x04) { /* erase track */
  1751. ect = (struct eckd_count *) data;
  1752. data += sizeof(struct eckd_count);
  1753. ect->cyl = address.cyl;
  1754. ect->head = address.head;
  1755. ect->record = 1;
  1756. ect->kl = 0;
  1757. ect->dl = 0;
  1758. ccw[-1].flags |= CCW_FLAG_CC;
  1759. ccw->cmd_code = DASD_ECKD_CCW_WRITE_CKD;
  1760. ccw->flags = CCW_FLAG_SLI;
  1761. ccw->count = 8;
  1762. ccw->cda = (__u32)(addr_t) ect;
  1763. } else { /* write remaining records */
  1764. for (i = 0; i < rpt; i++) {
  1765. ect = (struct eckd_count *) data;
  1766. data += sizeof(struct eckd_count);
  1767. ect->cyl = address.cyl;
  1768. ect->head = address.head;
  1769. ect->record = i + 1;
  1770. ect->kl = 0;
  1771. ect->dl = fdata->blksize;
  1772. /* Check for special tracks 0-1 when formatting CDL */
  1773. if ((intensity & 0x08) &&
  1774. fdata->start_unit == 0) {
  1775. if (i < 3) {
  1776. ect->kl = 4;
  1777. ect->dl = sizes_trk0[i] - 4;
  1778. }
  1779. }
  1780. if ((intensity & 0x08) &&
  1781. fdata->start_unit == 1) {
  1782. ect->kl = 44;
  1783. ect->dl = LABEL_SIZE - 44;
  1784. }
  1785. ccw[-1].flags |= CCW_FLAG_CC;
  1786. ccw->cmd_code = DASD_ECKD_CCW_WRITE_CKD;
  1787. ccw->flags = CCW_FLAG_SLI;
  1788. ccw->count = 8;
  1789. ccw->cda = (__u32)(addr_t) ect;
  1790. ccw++;
  1791. }
  1792. }
  1793. fcp->startdev = device;
  1794. fcp->memdev = device;
  1795. fcp->retries = 256;
  1796. fcp->buildclk = get_clock();
  1797. fcp->status = DASD_CQR_FILLED;
  1798. return fcp;
  1799. }
  1800. static void dasd_eckd_handle_terminated_request(struct dasd_ccw_req *cqr)
  1801. {
  1802. cqr->status = DASD_CQR_FILLED;
  1803. if (cqr->block && (cqr->startdev != cqr->block->base)) {
  1804. dasd_eckd_reset_ccw_to_base_io(cqr);
  1805. cqr->startdev = cqr->block->base;
  1806. cqr->lpm = cqr->block->base->path_data.opm;
  1807. }
  1808. };
  1809. static dasd_erp_fn_t
  1810. dasd_eckd_erp_action(struct dasd_ccw_req * cqr)
  1811. {
  1812. struct dasd_device *device = (struct dasd_device *) cqr->startdev;
  1813. struct ccw_device *cdev = device->cdev;
  1814. switch (cdev->id.cu_type) {
  1815. case 0x3990:
  1816. case 0x2105:
  1817. case 0x2107:
  1818. case 0x1750:
  1819. return dasd_3990_erp_action;
  1820. case 0x9343:
  1821. case 0x3880:
  1822. default:
  1823. return dasd_default_erp_action;
  1824. }
  1825. }
  1826. static dasd_erp_fn_t
  1827. dasd_eckd_erp_postaction(struct dasd_ccw_req * cqr)
  1828. {
  1829. return dasd_default_erp_postaction;
  1830. }
  1831. static void dasd_eckd_check_for_device_change(struct dasd_device *device,
  1832. struct dasd_ccw_req *cqr,
  1833. struct irb *irb)
  1834. {
  1835. char mask;
  1836. char *sense = NULL;
  1837. struct dasd_eckd_private *private;
  1838. private = (struct dasd_eckd_private *) device->private;
  1839. /* first of all check for state change pending interrupt */
  1840. mask = DEV_STAT_ATTENTION | DEV_STAT_DEV_END | DEV_STAT_UNIT_EXCEP;
  1841. if ((scsw_dstat(&irb->scsw) & mask) == mask) {
  1842. /* for alias only and not in offline processing*/
  1843. if (!device->block && private->lcu &&
  1844. !test_bit(DASD_FLAG_OFFLINE, &device->flags)) {
  1845. /*
  1846. * the state change could be caused by an alias
  1847. * reassignment remove device from alias handling
  1848. * to prevent new requests from being scheduled on
  1849. * the wrong alias device
  1850. */
  1851. dasd_alias_remove_device(device);
  1852. /* schedule worker to reload device */
  1853. dasd_reload_device(device);
  1854. }
  1855. dasd_generic_handle_state_change(device);
  1856. return;
  1857. }
  1858. sense = dasd_get_sense(irb);
  1859. if (!sense)
  1860. return;
  1861. /* summary unit check */
  1862. if ((sense[27] & DASD_SENSE_BIT_0) && (sense[7] == 0x0D) &&
  1863. (scsw_dstat(&irb->scsw) & DEV_STAT_UNIT_CHECK)) {
  1864. dasd_alias_handle_summary_unit_check(device, irb);
  1865. return;
  1866. }
  1867. /* service information message SIM */
  1868. if (!cqr && !(sense[27] & DASD_SENSE_BIT_0) &&
  1869. ((sense[6] & DASD_SIM_SENSE) == DASD_SIM_SENSE)) {
  1870. dasd_3990_erp_handle_sim(device, sense);
  1871. return;
  1872. }
  1873. /* loss of device reservation is handled via base devices only
  1874. * as alias devices may be used with several bases
  1875. */
  1876. if (device->block && (sense[27] & DASD_SENSE_BIT_0) &&
  1877. (sense[7] == 0x3F) &&
  1878. (scsw_dstat(&irb->scsw) & DEV_STAT_UNIT_CHECK) &&
  1879. test_bit(DASD_FLAG_IS_RESERVED, &device->flags)) {
  1880. if (device->features & DASD_FEATURE_FAILONSLCK)
  1881. set_bit(DASD_FLAG_LOCK_STOLEN, &device->flags);
  1882. clear_bit(DASD_FLAG_IS_RESERVED, &device->flags);
  1883. dev_err(&device->cdev->dev,
  1884. "The device reservation was lost\n");
  1885. }
  1886. }
  1887. static struct dasd_ccw_req *dasd_eckd_build_cp_cmd_single(
  1888. struct dasd_device *startdev,
  1889. struct dasd_block *block,
  1890. struct request *req,
  1891. sector_t first_rec,
  1892. sector_t last_rec,
  1893. sector_t first_trk,
  1894. sector_t last_trk,
  1895. unsigned int first_offs,
  1896. unsigned int last_offs,
  1897. unsigned int blk_per_trk,
  1898. unsigned int blksize)
  1899. {
  1900. struct dasd_eckd_private *private;
  1901. unsigned long *idaws;
  1902. struct LO_eckd_data *LO_data;
  1903. struct dasd_ccw_req *cqr;
  1904. struct ccw1 *ccw;
  1905. struct req_iterator iter;
  1906. struct bio_vec *bv;
  1907. char *dst;
  1908. unsigned int off;
  1909. int count, cidaw, cplength, datasize;
  1910. sector_t recid;
  1911. unsigned char cmd, rcmd;
  1912. int use_prefix;
  1913. struct dasd_device *basedev;
  1914. basedev = block->base;
  1915. private = (struct dasd_eckd_private *) basedev->private;
  1916. if (rq_data_dir(req) == READ)
  1917. cmd = DASD_ECKD_CCW_READ_MT;
  1918. else if (rq_data_dir(req) == WRITE)
  1919. cmd = DASD_ECKD_CCW_WRITE_MT;
  1920. else
  1921. return ERR_PTR(-EINVAL);
  1922. /* Check struct bio and count the number of blocks for the request. */
  1923. count = 0;
  1924. cidaw = 0;
  1925. rq_for_each_segment(bv, req, iter) {
  1926. if (bv->bv_len & (blksize - 1))
  1927. /* Eckd can only do full blocks. */
  1928. return ERR_PTR(-EINVAL);
  1929. count += bv->bv_len >> (block->s2b_shift + 9);
  1930. #if defined(CONFIG_64BIT)
  1931. if (idal_is_needed (page_address(bv->bv_page), bv->bv_len))
  1932. cidaw += bv->bv_len >> (block->s2b_shift + 9);
  1933. #endif
  1934. }
  1935. /* Paranoia. */
  1936. if (count != last_rec - first_rec + 1)
  1937. return ERR_PTR(-EINVAL);
  1938. /* use the prefix command if available */
  1939. use_prefix = private->features.feature[8] & 0x01;
  1940. if (use_prefix) {
  1941. /* 1x prefix + number of blocks */
  1942. cplength = 2 + count;
  1943. /* 1x prefix + cidaws*sizeof(long) */
  1944. datasize = sizeof(struct PFX_eckd_data) +
  1945. sizeof(struct LO_eckd_data) +
  1946. cidaw * sizeof(unsigned long);
  1947. } else {
  1948. /* 1x define extent + 1x locate record + number of blocks */
  1949. cplength = 2 + count;
  1950. /* 1x define extent + 1x locate record + cidaws*sizeof(long) */
  1951. datasize = sizeof(struct DE_eckd_data) +
  1952. sizeof(struct LO_eckd_data) +
  1953. cidaw * sizeof(unsigned long);
  1954. }
  1955. /* Find out the number of additional locate record ccws for cdl. */
  1956. if (private->uses_cdl && first_rec < 2*blk_per_trk) {
  1957. if (last_rec >= 2*blk_per_trk)
  1958. count = 2*blk_per_trk - first_rec;
  1959. cplength += count;
  1960. datasize += count*sizeof(struct LO_eckd_data);
  1961. }
  1962. /* Allocate the ccw request. */
  1963. cqr = dasd_smalloc_request(DASD_ECKD_MAGIC, cplength, datasize,
  1964. startdev);
  1965. if (IS_ERR(cqr))
  1966. return cqr;
  1967. ccw = cqr->cpaddr;
  1968. /* First ccw is define extent or prefix. */
  1969. if (use_prefix) {
  1970. if (prefix(ccw++, cqr->data, first_trk,
  1971. last_trk, cmd, basedev, startdev) == -EAGAIN) {
  1972. /* Clock not in sync and XRC is enabled.
  1973. * Try again later.
  1974. */
  1975. dasd_sfree_request(cqr, startdev);
  1976. return ERR_PTR(-EAGAIN);
  1977. }
  1978. idaws = (unsigned long *) (cqr->data +
  1979. sizeof(struct PFX_eckd_data));
  1980. } else {
  1981. if (define_extent(ccw++, cqr->data, first_trk,
  1982. last_trk, cmd, startdev) == -EAGAIN) {
  1983. /* Clock not in sync and XRC is enabled.
  1984. * Try again later.
  1985. */
  1986. dasd_sfree_request(cqr, startdev);
  1987. return ERR_PTR(-EAGAIN);
  1988. }
  1989. idaws = (unsigned long *) (cqr->data +
  1990. sizeof(struct DE_eckd_data));
  1991. }
  1992. /* Build locate_record+read/write/ccws. */
  1993. LO_data = (struct LO_eckd_data *) (idaws + cidaw);
  1994. recid = first_rec;
  1995. if (private->uses_cdl == 0 || recid > 2*blk_per_trk) {
  1996. /* Only standard blocks so there is just one locate record. */
  1997. ccw[-1].flags |= CCW_FLAG_CC;
  1998. locate_record(ccw++, LO_data++, first_trk, first_offs + 1,
  1999. last_rec - recid + 1, cmd, basedev, blksize);
  2000. }
  2001. rq_for_each_segment(bv, req, iter) {
  2002. dst = page_address(bv->bv_page) + bv->bv_offset;
  2003. if (dasd_page_cache) {
  2004. char *copy = kmem_cache_alloc(dasd_page_cache,
  2005. GFP_DMA | __GFP_NOWARN);
  2006. if (copy && rq_data_dir(req) == WRITE)
  2007. memcpy(copy + bv->bv_offset, dst, bv->bv_len);
  2008. if (copy)
  2009. dst = copy + bv->bv_offset;
  2010. }
  2011. for (off = 0; off < bv->bv_len; off += blksize) {
  2012. sector_t trkid = recid;
  2013. unsigned int recoffs = sector_div(trkid, blk_per_trk);
  2014. rcmd = cmd;
  2015. count = blksize;
  2016. /* Locate record for cdl special block ? */
  2017. if (private->uses_cdl && recid < 2*blk_per_trk) {
  2018. if (dasd_eckd_cdl_special(blk_per_trk, recid)){
  2019. rcmd |= 0x8;
  2020. count = dasd_eckd_cdl_reclen(recid);
  2021. if (count < blksize &&
  2022. rq_data_dir(req) == READ)
  2023. memset(dst + count, 0xe5,
  2024. blksize - count);
  2025. }
  2026. ccw[-1].flags |= CCW_FLAG_CC;
  2027. locate_record(ccw++, LO_data++,
  2028. trkid, recoffs + 1,
  2029. 1, rcmd, basedev, count);
  2030. }
  2031. /* Locate record for standard blocks ? */
  2032. if (private->uses_cdl && recid == 2*blk_per_trk) {
  2033. ccw[-1].flags |= CCW_FLAG_CC;
  2034. locate_record(ccw++, LO_data++,
  2035. trkid, recoffs + 1,
  2036. last_rec - recid + 1,
  2037. cmd, basedev, count);
  2038. }
  2039. /* Read/write ccw. */
  2040. ccw[-1].flags |= CCW_FLAG_CC;
  2041. ccw->cmd_code = rcmd;
  2042. ccw->count = count;
  2043. if (idal_is_needed(dst, blksize)) {
  2044. ccw->cda = (__u32)(addr_t) idaws;
  2045. ccw->flags = CCW_FLAG_IDA;
  2046. idaws = idal_create_words(idaws, dst, blksize);
  2047. } else {
  2048. ccw->cda = (__u32)(addr_t) dst;
  2049. ccw->flags = 0;
  2050. }
  2051. ccw++;
  2052. dst += blksize;
  2053. recid++;
  2054. }
  2055. }
  2056. if (blk_noretry_request(req) ||
  2057. block->base->features & DASD_FEATURE_FAILFAST)
  2058. set_bit(DASD_CQR_FLAGS_FAILFAST, &cqr->flags);
  2059. cqr->startdev = startdev;
  2060. cqr->memdev = startdev;
  2061. cqr->block = block;
  2062. cqr->expires = startdev->default_expires * HZ; /* default 5 minutes */
  2063. cqr->lpm = startdev->path_data.ppm;
  2064. cqr->retries = 256;
  2065. cqr->buildclk = get_clock();
  2066. cqr->status = DASD_CQR_FILLED;
  2067. return cqr;
  2068. }
  2069. static struct dasd_ccw_req *dasd_eckd_build_cp_cmd_track(
  2070. struct dasd_device *startdev,
  2071. struct dasd_block *block,
  2072. struct request *req,
  2073. sector_t first_rec,
  2074. sector_t last_rec,
  2075. sector_t first_trk,
  2076. sector_t last_trk,
  2077. unsigned int first_offs,
  2078. unsigned int last_offs,
  2079. unsigned int blk_per_trk,
  2080. unsigned int blksize)
  2081. {
  2082. struct dasd_eckd_private *private;
  2083. unsigned long *idaws;
  2084. struct dasd_ccw_req *cqr;
  2085. struct ccw1 *ccw;
  2086. struct req_iterator iter;
  2087. struct bio_vec *bv;
  2088. char *dst, *idaw_dst;
  2089. unsigned int cidaw, cplength, datasize;
  2090. unsigned int tlf;
  2091. sector_t recid;
  2092. unsigned char cmd;
  2093. struct dasd_device *basedev;
  2094. unsigned int trkcount, count, count_to_trk_end;
  2095. unsigned int idaw_len, seg_len, part_len, len_to_track_end;
  2096. unsigned char new_track, end_idaw;
  2097. sector_t trkid;
  2098. unsigned int recoffs;
  2099. basedev = block->base;
  2100. private = (struct dasd_eckd_private *) basedev->private;
  2101. if (rq_data_dir(req) == READ)
  2102. cmd = DASD_ECKD_CCW_READ_TRACK_DATA;
  2103. else if (rq_data_dir(req) == WRITE)
  2104. cmd = DASD_ECKD_CCW_WRITE_TRACK_DATA;
  2105. else
  2106. return ERR_PTR(-EINVAL);
  2107. /* Track based I/O needs IDAWs for each page, and not just for
  2108. * 64 bit addresses. We need additional idals for pages
  2109. * that get filled from two tracks, so we use the number
  2110. * of records as upper limit.
  2111. */
  2112. cidaw = last_rec - first_rec + 1;
  2113. trkcount = last_trk - first_trk + 1;
  2114. /* 1x prefix + one read/write ccw per track */
  2115. cplength = 1 + trkcount;
  2116. /* on 31-bit we need space for two 32 bit addresses per page
  2117. * on 64-bit one 64 bit address
  2118. */
  2119. datasize = sizeof(struct PFX_eckd_data) +
  2120. cidaw * sizeof(unsigned long long);
  2121. /* Allocate the ccw request. */
  2122. cqr = dasd_smalloc_request(DASD_ECKD_MAGIC, cplength, datasize,
  2123. startdev);
  2124. if (IS_ERR(cqr))
  2125. return cqr;
  2126. ccw = cqr->cpaddr;
  2127. /* transfer length factor: how many bytes to read from the last track */
  2128. if (first_trk == last_trk)
  2129. tlf = last_offs - first_offs + 1;
  2130. else
  2131. tlf = last_offs + 1;
  2132. tlf *= blksize;
  2133. if (prefix_LRE(ccw++, cqr->data, first_trk,
  2134. last_trk, cmd, basedev, startdev,
  2135. 1 /* format */, first_offs + 1,
  2136. trkcount, blksize,
  2137. tlf) == -EAGAIN) {
  2138. /* Clock not in sync and XRC is enabled.
  2139. * Try again later.
  2140. */
  2141. dasd_sfree_request(cqr, startdev);
  2142. return ERR_PTR(-EAGAIN);
  2143. }
  2144. /*
  2145. * The translation of request into ccw programs must meet the
  2146. * following conditions:
  2147. * - all idaws but the first and the last must address full pages
  2148. * (or 2K blocks on 31-bit)
  2149. * - the scope of a ccw and it's idal ends with the track boundaries
  2150. */
  2151. idaws = (unsigned long *) (cqr->data + sizeof(struct PFX_eckd_data));
  2152. recid = first_rec;
  2153. new_track = 1;
  2154. end_idaw = 0;
  2155. len_to_track_end = 0;
  2156. idaw_dst = 0;
  2157. idaw_len = 0;
  2158. rq_for_each_segment(bv, req, iter) {
  2159. dst = page_address(bv->bv_page) + bv->bv_offset;
  2160. seg_len = bv->bv_len;
  2161. while (seg_len) {
  2162. if (new_track) {
  2163. trkid = recid;
  2164. recoffs = sector_div(trkid, blk_per_trk);
  2165. count_to_trk_end = blk_per_trk - recoffs;
  2166. count = min((last_rec - recid + 1),
  2167. (sector_t)count_to_trk_end);
  2168. len_to_track_end = count * blksize;
  2169. ccw[-1].flags |= CCW_FLAG_CC;
  2170. ccw->cmd_code = cmd;
  2171. ccw->count = len_to_track_end;
  2172. ccw->cda = (__u32)(addr_t)idaws;
  2173. ccw->flags = CCW_FLAG_IDA;
  2174. ccw++;
  2175. recid += count;
  2176. new_track = 0;
  2177. /* first idaw for a ccw may start anywhere */
  2178. if (!idaw_dst)
  2179. idaw_dst = dst;
  2180. }
  2181. /* If we start a new idaw, we must make sure that it
  2182. * starts on an IDA_BLOCK_SIZE boundary.
  2183. * If we continue an idaw, we must make sure that the
  2184. * current segment begins where the so far accumulated
  2185. * idaw ends
  2186. */
  2187. if (!idaw_dst) {
  2188. if (__pa(dst) & (IDA_BLOCK_SIZE-1)) {
  2189. dasd_sfree_request(cqr, startdev);
  2190. return ERR_PTR(-ERANGE);
  2191. } else
  2192. idaw_dst = dst;
  2193. }
  2194. if ((idaw_dst + idaw_len) != dst) {
  2195. dasd_sfree_request(cqr, startdev);
  2196. return ERR_PTR(-ERANGE);
  2197. }
  2198. part_len = min(seg_len, len_to_track_end);
  2199. seg_len -= part_len;
  2200. dst += part_len;
  2201. idaw_len += part_len;
  2202. len_to_track_end -= part_len;
  2203. /* collected memory area ends on an IDA_BLOCK border,
  2204. * -> create an idaw
  2205. * idal_create_words will handle cases where idaw_len
  2206. * is larger then IDA_BLOCK_SIZE
  2207. */
  2208. if (!(__pa(idaw_dst + idaw_len) & (IDA_BLOCK_SIZE-1)))
  2209. end_idaw = 1;
  2210. /* We also need to end the idaw at track end */
  2211. if (!len_to_track_end) {
  2212. new_track = 1;
  2213. end_idaw = 1;
  2214. }
  2215. if (end_idaw) {
  2216. idaws = idal_create_words(idaws, idaw_dst,
  2217. idaw_len);
  2218. idaw_dst = 0;
  2219. idaw_len = 0;
  2220. end_idaw = 0;
  2221. }
  2222. }
  2223. }
  2224. if (blk_noretry_request(req) ||
  2225. block->base->features & DASD_FEATURE_FAILFAST)
  2226. set_bit(DASD_CQR_FLAGS_FAILFAST, &cqr->flags);
  2227. cqr->startdev = startdev;
  2228. cqr->memdev = startdev;
  2229. cqr->block = block;
  2230. cqr->expires = startdev->default_expires * HZ; /* default 5 minutes */
  2231. cqr->lpm = startdev->path_data.ppm;
  2232. cqr->retries = 256;
  2233. cqr->buildclk = get_clock();
  2234. cqr->status = DASD_CQR_FILLED;
  2235. return cqr;
  2236. }
  2237. static int prepare_itcw(struct itcw *itcw,
  2238. unsigned int trk, unsigned int totrk, int cmd,
  2239. struct dasd_device *basedev,
  2240. struct dasd_device *startdev,
  2241. unsigned int rec_on_trk, int count,
  2242. unsigned int blksize,
  2243. unsigned int total_data_size,
  2244. unsigned int tlf,
  2245. unsigned int blk_per_trk)
  2246. {
  2247. struct PFX_eckd_data pfxdata;
  2248. struct dasd_eckd_private *basepriv, *startpriv;
  2249. struct DE_eckd_data *dedata;
  2250. struct LRE_eckd_data *lredata;
  2251. struct dcw *dcw;
  2252. u32 begcyl, endcyl;
  2253. u16 heads, beghead, endhead;
  2254. u8 pfx_cmd;
  2255. int rc = 0;
  2256. int sector = 0;
  2257. int dn, d;
  2258. /* setup prefix data */
  2259. basepriv = (struct dasd_eckd_private *) basedev->private;
  2260. startpriv = (struct dasd_eckd_private *) startdev->private;
  2261. dedata = &pfxdata.define_extent;
  2262. lredata = &pfxdata.locate_record;
  2263. memset(&pfxdata, 0, sizeof(pfxdata));
  2264. pfxdata.format = 1; /* PFX with LRE */
  2265. pfxdata.base_address = basepriv->ned->unit_addr;
  2266. pfxdata.base_lss = basepriv->ned->ID;
  2267. pfxdata.validity.define_extent = 1;
  2268. /* private uid is kept up to date, conf_data may be outdated */
  2269. if (startpriv->uid.type != UA_BASE_DEVICE) {
  2270. pfxdata.validity.verify_base = 1;
  2271. if (startpriv->uid.type == UA_HYPER_PAV_ALIAS)
  2272. pfxdata.validity.hyper_pav = 1;
  2273. }
  2274. switch (cmd) {
  2275. case DASD_ECKD_CCW_READ_TRACK_DATA:
  2276. dedata->mask.perm = 0x1;
  2277. dedata->attributes.operation = basepriv->attrib.operation;
  2278. dedata->blk_size = blksize;
  2279. dedata->ga_extended |= 0x42;
  2280. lredata->operation.orientation = 0x0;
  2281. lredata->operation.operation = 0x0C;
  2282. lredata->auxiliary.check_bytes = 0x01;
  2283. pfx_cmd = DASD_ECKD_CCW_PFX_READ;
  2284. break;
  2285. case DASD_ECKD_CCW_WRITE_TRACK_DATA:
  2286. dedata->mask.perm = 0x02;
  2287. dedata->attributes.operation = basepriv->attrib.operation;
  2288. dedata->blk_size = blksize;
  2289. rc = check_XRC_on_prefix(&pfxdata, basedev);
  2290. dedata->ga_extended |= 0x42;
  2291. lredata->operation.orientation = 0x0;
  2292. lredata->operation.operation = 0x3F;
  2293. lredata->extended_operation = 0x23;
  2294. lredata->auxiliary.check_bytes = 0x2;
  2295. pfx_cmd = DASD_ECKD_CCW_PFX;
  2296. break;
  2297. default:
  2298. DBF_DEV_EVENT(DBF_ERR, basedev,
  2299. "prepare itcw, unknown opcode 0x%x", cmd);
  2300. BUG();
  2301. break;
  2302. }
  2303. if (rc)
  2304. return rc;
  2305. dedata->attributes.mode = 0x3; /* ECKD */
  2306. heads = basepriv->rdc_data.trk_per_cyl;
  2307. begcyl = trk / heads;
  2308. beghead = trk % heads;
  2309. endcyl = totrk / heads;
  2310. endhead = totrk % heads;
  2311. /* check for sequential prestage - enhance cylinder range */
  2312. if (dedata->attributes.operation == DASD_SEQ_PRESTAGE ||
  2313. dedata->attributes.operation == DASD_SEQ_ACCESS) {
  2314. if (endcyl + basepriv->attrib.nr_cyl < basepriv->real_cyl)
  2315. endcyl += basepriv->attrib.nr_cyl;
  2316. else
  2317. endcyl = (basepriv->real_cyl - 1);
  2318. }
  2319. set_ch_t(&dedata->beg_ext, begcyl, beghead);
  2320. set_ch_t(&dedata->end_ext, endcyl, endhead);
  2321. dedata->ep_format = 0x20; /* records per track is valid */
  2322. dedata->ep_rec_per_track = blk_per_trk;
  2323. if (rec_on_trk) {
  2324. switch (basepriv->rdc_data.dev_type) {
  2325. case 0x3390:
  2326. dn = ceil_quot(blksize + 6, 232);
  2327. d = 9 + ceil_quot(blksize + 6 * (dn + 1), 34);
  2328. sector = (49 + (rec_on_trk - 1) * (10 + d)) / 8;
  2329. break;
  2330. case 0x3380:
  2331. d = 7 + ceil_quot(blksize + 12, 32);
  2332. sector = (39 + (rec_on_trk - 1) * (8 + d)) / 7;
  2333. break;
  2334. }
  2335. }
  2336. lredata->auxiliary.length_valid = 1;
  2337. lredata->auxiliary.length_scope = 1;
  2338. lredata->auxiliary.imbedded_ccw_valid = 1;
  2339. lredata->length = tlf;
  2340. lredata->imbedded_ccw = cmd;
  2341. lredata->count = count;
  2342. lredata->sector = sector;
  2343. set_ch_t(&lredata->seek_addr, begcyl, beghead);
  2344. lredata->search_arg.cyl = lredata->seek_addr.cyl;
  2345. lredata->search_arg.head = lredata->seek_addr.head;
  2346. lredata->search_arg.record = rec_on_trk;
  2347. dcw = itcw_add_dcw(itcw, pfx_cmd, 0,
  2348. &pfxdata, sizeof(pfxdata), total_data_size);
  2349. return rc;
  2350. }
  2351. static struct dasd_ccw_req *dasd_eckd_build_cp_tpm_track(
  2352. struct dasd_device *startdev,
  2353. struct dasd_block *block,
  2354. struct request *req,
  2355. sector_t first_rec,
  2356. sector_t last_rec,
  2357. sector_t first_trk,
  2358. sector_t last_trk,
  2359. unsigned int first_offs,
  2360. unsigned int last_offs,
  2361. unsigned int blk_per_trk,
  2362. unsigned int blksize)
  2363. {
  2364. struct dasd_eckd_private *private;
  2365. struct dasd_ccw_req *cqr;
  2366. struct req_iterator iter;
  2367. struct bio_vec *bv;
  2368. char *dst;
  2369. unsigned int trkcount, ctidaw;
  2370. unsigned char cmd;
  2371. struct dasd_device *basedev;
  2372. unsigned int tlf;
  2373. struct itcw *itcw;
  2374. struct tidaw *last_tidaw = NULL;
  2375. int itcw_op;
  2376. size_t itcw_size;
  2377. u8 tidaw_flags;
  2378. unsigned int seg_len, part_len, len_to_track_end;
  2379. unsigned char new_track;
  2380. sector_t recid, trkid;
  2381. unsigned int offs;
  2382. unsigned int count, count_to_trk_end;
  2383. basedev = block->base;
  2384. private = (struct dasd_eckd_private *) basedev->private;
  2385. if (rq_data_dir(req) == READ) {
  2386. cmd = DASD_ECKD_CCW_READ_TRACK_DATA;
  2387. itcw_op = ITCW_OP_READ;
  2388. } else if (rq_data_dir(req) == WRITE) {
  2389. cmd = DASD_ECKD_CCW_WRITE_TRACK_DATA;
  2390. itcw_op = ITCW_OP_WRITE;
  2391. } else
  2392. return ERR_PTR(-EINVAL);
  2393. /* trackbased I/O needs address all memory via TIDAWs,
  2394. * not just for 64 bit addresses. This allows us to map
  2395. * each segment directly to one tidaw.
  2396. * In the case of write requests, additional tidaws may
  2397. * be needed when a segment crosses a track boundary.
  2398. */
  2399. trkcount = last_trk - first_trk + 1;
  2400. ctidaw = 0;
  2401. rq_for_each_segment(bv, req, iter) {
  2402. ++ctidaw;
  2403. }
  2404. if (rq_data_dir(req) == WRITE)
  2405. ctidaw += (last_trk - first_trk);
  2406. /* Allocate the ccw request. */
  2407. itcw_size = itcw_calc_size(0, ctidaw, 0);
  2408. cqr = dasd_smalloc_request(DASD_ECKD_MAGIC, 0, itcw_size, startdev);
  2409. if (IS_ERR(cqr))
  2410. return cqr;
  2411. /* transfer length factor: how many bytes to read from the last track */
  2412. if (first_trk == last_trk)
  2413. tlf = last_offs - first_offs + 1;
  2414. else
  2415. tlf = last_offs + 1;
  2416. tlf *= blksize;
  2417. itcw = itcw_init(cqr->data, itcw_size, itcw_op, 0, ctidaw, 0);
  2418. if (IS_ERR(itcw)) {
  2419. dasd_sfree_request(cqr, startdev);
  2420. return ERR_PTR(-EINVAL);
  2421. }
  2422. cqr->cpaddr = itcw_get_tcw(itcw);
  2423. if (prepare_itcw(itcw, first_trk, last_trk,
  2424. cmd, basedev, startdev,
  2425. first_offs + 1,
  2426. trkcount, blksize,
  2427. (last_rec - first_rec + 1) * blksize,
  2428. tlf, blk_per_trk) == -EAGAIN) {
  2429. /* Clock not in sync and XRC is enabled.
  2430. * Try again later.
  2431. */
  2432. dasd_sfree_request(cqr, startdev);
  2433. return ERR_PTR(-EAGAIN);
  2434. }
  2435. len_to_track_end = 0;
  2436. /*
  2437. * A tidaw can address 4k of memory, but must not cross page boundaries
  2438. * We can let the block layer handle this by setting
  2439. * blk_queue_segment_boundary to page boundaries and
  2440. * blk_max_segment_size to page size when setting up the request queue.
  2441. * For write requests, a TIDAW must not cross track boundaries, because
  2442. * we have to set the CBC flag on the last tidaw for each track.
  2443. */
  2444. if (rq_data_dir(req) == WRITE) {
  2445. new_track = 1;
  2446. recid = first_rec;
  2447. rq_for_each_segment(bv, req, iter) {
  2448. dst = page_address(bv->bv_page) + bv->bv_offset;
  2449. seg_len = bv->bv_len;
  2450. while (seg_len) {
  2451. if (new_track) {
  2452. trkid = recid;
  2453. offs = sector_div(trkid, blk_per_trk);
  2454. count_to_trk_end = blk_per_trk - offs;
  2455. count = min((last_rec - recid + 1),
  2456. (sector_t)count_to_trk_end);
  2457. len_to_track_end = count * blksize;
  2458. recid += count;
  2459. new_track = 0;
  2460. }
  2461. part_len = min(seg_len, len_to_track_end);
  2462. seg_len -= part_len;
  2463. len_to_track_end -= part_len;
  2464. /* We need to end the tidaw at track end */
  2465. if (!len_to_track_end) {
  2466. new_track = 1;
  2467. tidaw_flags = TIDAW_FLAGS_INSERT_CBC;
  2468. } else
  2469. tidaw_flags = 0;
  2470. last_tidaw = itcw_add_tidaw(itcw, tidaw_flags,
  2471. dst, part_len);
  2472. if (IS_ERR(last_tidaw))
  2473. return ERR_PTR(-EINVAL);
  2474. dst += part_len;
  2475. }
  2476. }
  2477. } else {
  2478. rq_for_each_segment(bv, req, iter) {
  2479. dst = page_address(bv->bv_page) + bv->bv_offset;
  2480. last_tidaw = itcw_add_tidaw(itcw, 0x00,
  2481. dst, bv->bv_len);
  2482. if (IS_ERR(last_tidaw))
  2483. return ERR_PTR(-EINVAL);
  2484. }
  2485. }
  2486. last_tidaw->flags |= TIDAW_FLAGS_LAST;
  2487. last_tidaw->flags &= ~TIDAW_FLAGS_INSERT_CBC;
  2488. itcw_finalize(itcw);
  2489. if (blk_noretry_request(req) ||
  2490. block->base->features & DASD_FEATURE_FAILFAST)
  2491. set_bit(DASD_CQR_FLAGS_FAILFAST, &cqr->flags);
  2492. cqr->cpmode = 1;
  2493. cqr->startdev = startdev;
  2494. cqr->memdev = startdev;
  2495. cqr->block = block;
  2496. cqr->expires = startdev->default_expires * HZ; /* default 5 minutes */
  2497. cqr->lpm = startdev->path_data.ppm;
  2498. cqr->retries = 256;
  2499. cqr->buildclk = get_clock();
  2500. cqr->status = DASD_CQR_FILLED;
  2501. return cqr;
  2502. }
  2503. static struct dasd_ccw_req *dasd_eckd_build_cp(struct dasd_device *startdev,
  2504. struct dasd_block *block,
  2505. struct request *req)
  2506. {
  2507. int cmdrtd, cmdwtd;
  2508. int use_prefix;
  2509. int fcx_multitrack;
  2510. struct dasd_eckd_private *private;
  2511. struct dasd_device *basedev;
  2512. sector_t first_rec, last_rec;
  2513. sector_t first_trk, last_trk;
  2514. unsigned int first_offs, last_offs;
  2515. unsigned int blk_per_trk, blksize;
  2516. int cdlspecial;
  2517. unsigned int data_size;
  2518. struct dasd_ccw_req *cqr;
  2519. basedev = block->base;
  2520. private = (struct dasd_eckd_private *) basedev->private;
  2521. /* Calculate number of blocks/records per track. */
  2522. blksize = block->bp_block;
  2523. blk_per_trk = recs_per_track(&private->rdc_data, 0, blksize);
  2524. if (blk_per_trk == 0)
  2525. return ERR_PTR(-EINVAL);
  2526. /* Calculate record id of first and last block. */
  2527. first_rec = first_trk = blk_rq_pos(req) >> block->s2b_shift;
  2528. first_offs = sector_div(first_trk, blk_per_trk);
  2529. last_rec = last_trk =
  2530. (blk_rq_pos(req) + blk_rq_sectors(req) - 1) >> block->s2b_shift;
  2531. last_offs = sector_div(last_trk, blk_per_trk);
  2532. cdlspecial = (private->uses_cdl && first_rec < 2*blk_per_trk);
  2533. fcx_multitrack = private->features.feature[40] & 0x20;
  2534. data_size = blk_rq_bytes(req);
  2535. /* tpm write request add CBC data on each track boundary */
  2536. if (rq_data_dir(req) == WRITE)
  2537. data_size += (last_trk - first_trk) * 4;
  2538. /* is read track data and write track data in command mode supported? */
  2539. cmdrtd = private->features.feature[9] & 0x20;
  2540. cmdwtd = private->features.feature[12] & 0x40;
  2541. use_prefix = private->features.feature[8] & 0x01;
  2542. cqr = NULL;
  2543. if (cdlspecial || dasd_page_cache) {
  2544. /* do nothing, just fall through to the cmd mode single case */
  2545. } else if ((data_size <= private->fcx_max_data)
  2546. && (fcx_multitrack || (first_trk == last_trk))) {
  2547. cqr = dasd_eckd_build_cp_tpm_track(startdev, block, req,
  2548. first_rec, last_rec,
  2549. first_trk, last_trk,
  2550. first_offs, last_offs,
  2551. blk_per_trk, blksize);
  2552. if (IS_ERR(cqr) && (PTR_ERR(cqr) != -EAGAIN) &&
  2553. (PTR_ERR(cqr) != -ENOMEM))
  2554. cqr = NULL;
  2555. } else if (use_prefix &&
  2556. (((rq_data_dir(req) == READ) && cmdrtd) ||
  2557. ((rq_data_dir(req) == WRITE) && cmdwtd))) {
  2558. cqr = dasd_eckd_build_cp_cmd_track(startdev, block, req,
  2559. first_rec, last_rec,
  2560. first_trk, last_trk,
  2561. first_offs, last_offs,
  2562. blk_per_trk, blksize);
  2563. if (IS_ERR(cqr) && (PTR_ERR(cqr) != -EAGAIN) &&
  2564. (PTR_ERR(cqr) != -ENOMEM))
  2565. cqr = NULL;
  2566. }
  2567. if (!cqr)
  2568. cqr = dasd_eckd_build_cp_cmd_single(startdev, block, req,
  2569. first_rec, last_rec,
  2570. first_trk, last_trk,
  2571. first_offs, last_offs,
  2572. blk_per_trk, blksize);
  2573. return cqr;
  2574. }
  2575. static struct dasd_ccw_req *dasd_raw_build_cp(struct dasd_device *startdev,
  2576. struct dasd_block *block,
  2577. struct request *req)
  2578. {
  2579. struct dasd_eckd_private *private;
  2580. unsigned long *idaws;
  2581. struct dasd_device *basedev;
  2582. struct dasd_ccw_req *cqr;
  2583. struct ccw1 *ccw;
  2584. struct req_iterator iter;
  2585. struct bio_vec *bv;
  2586. char *dst;
  2587. unsigned char cmd;
  2588. unsigned int trkcount;
  2589. unsigned int seg_len, len_to_track_end;
  2590. unsigned int first_offs;
  2591. unsigned int cidaw, cplength, datasize;
  2592. sector_t first_trk, last_trk;
  2593. unsigned int pfx_datasize;
  2594. /*
  2595. * raw track access needs to be mutiple of 64k and on 64k boundary
  2596. */
  2597. if ((blk_rq_pos(req) % DASD_RAW_SECTORS_PER_TRACK) != 0) {
  2598. cqr = ERR_PTR(-EINVAL);
  2599. goto out;
  2600. }
  2601. if (((blk_rq_pos(req) + blk_rq_sectors(req)) %
  2602. DASD_RAW_SECTORS_PER_TRACK) != 0) {
  2603. cqr = ERR_PTR(-EINVAL);
  2604. goto out;
  2605. }
  2606. first_trk = blk_rq_pos(req) / DASD_RAW_SECTORS_PER_TRACK;
  2607. last_trk = (blk_rq_pos(req) + blk_rq_sectors(req) - 1) /
  2608. DASD_RAW_SECTORS_PER_TRACK;
  2609. trkcount = last_trk - first_trk + 1;
  2610. first_offs = 0;
  2611. basedev = block->base;
  2612. private = (struct dasd_eckd_private *) basedev->private;
  2613. if (rq_data_dir(req) == READ)
  2614. cmd = DASD_ECKD_CCW_READ_TRACK;
  2615. else if (rq_data_dir(req) == WRITE)
  2616. cmd = DASD_ECKD_CCW_WRITE_FULL_TRACK;
  2617. else {
  2618. cqr = ERR_PTR(-EINVAL);
  2619. goto out;
  2620. }
  2621. /*
  2622. * Raw track based I/O needs IDAWs for each page,
  2623. * and not just for 64 bit addresses.
  2624. */
  2625. cidaw = trkcount * DASD_RAW_BLOCK_PER_TRACK;
  2626. /* 1x prefix + one read/write ccw per track */
  2627. cplength = 1 + trkcount;
  2628. /*
  2629. * struct PFX_eckd_data has up to 2 byte as extended parameter
  2630. * this is needed for write full track and has to be mentioned
  2631. * separately
  2632. * add 8 instead of 2 to keep 8 byte boundary
  2633. */
  2634. pfx_datasize = sizeof(struct PFX_eckd_data) + 8;
  2635. datasize = pfx_datasize + cidaw * sizeof(unsigned long long);
  2636. /* Allocate the ccw request. */
  2637. cqr = dasd_smalloc_request(DASD_ECKD_MAGIC, cplength,
  2638. datasize, startdev);
  2639. if (IS_ERR(cqr))
  2640. goto out;
  2641. ccw = cqr->cpaddr;
  2642. if (prefix_LRE(ccw++, cqr->data, first_trk, last_trk, cmd,
  2643. basedev, startdev, 1 /* format */, first_offs + 1,
  2644. trkcount, 0, 0) == -EAGAIN) {
  2645. /* Clock not in sync and XRC is enabled.
  2646. * Try again later.
  2647. */
  2648. dasd_sfree_request(cqr, startdev);
  2649. cqr = ERR_PTR(-EAGAIN);
  2650. goto out;
  2651. }
  2652. idaws = (unsigned long *)(cqr->data + pfx_datasize);
  2653. len_to_track_end = 0;
  2654. rq_for_each_segment(bv, req, iter) {
  2655. dst = page_address(bv->bv_page) + bv->bv_offset;
  2656. seg_len = bv->bv_len;
  2657. if (!len_to_track_end) {
  2658. ccw[-1].flags |= CCW_FLAG_CC;
  2659. ccw->cmd_code = cmd;
  2660. /* maximum 3390 track size */
  2661. ccw->count = 57326;
  2662. /* 64k map to one track */
  2663. len_to_track_end = 65536;
  2664. ccw->cda = (__u32)(addr_t)idaws;
  2665. ccw->flags |= CCW_FLAG_IDA;
  2666. ccw->flags |= CCW_FLAG_SLI;
  2667. ccw++;
  2668. }
  2669. len_to_track_end -= seg_len;
  2670. idaws = idal_create_words(idaws, dst, seg_len);
  2671. }
  2672. if (blk_noretry_request(req) ||
  2673. block->base->features & DASD_FEATURE_FAILFAST)
  2674. set_bit(DASD_CQR_FLAGS_FAILFAST, &cqr->flags);
  2675. cqr->startdev = startdev;
  2676. cqr->memdev = startdev;
  2677. cqr->block = block;
  2678. cqr->expires = startdev->default_expires * HZ;
  2679. cqr->lpm = startdev->path_data.ppm;
  2680. cqr->retries = 256;
  2681. cqr->buildclk = get_clock();
  2682. cqr->status = DASD_CQR_FILLED;
  2683. if (IS_ERR(cqr) && PTR_ERR(cqr) != -EAGAIN)
  2684. cqr = NULL;
  2685. out:
  2686. return cqr;
  2687. }
  2688. static int
  2689. dasd_eckd_free_cp(struct dasd_ccw_req *cqr, struct request *req)
  2690. {
  2691. struct dasd_eckd_private *private;
  2692. struct ccw1 *ccw;
  2693. struct req_iterator iter;
  2694. struct bio_vec *bv;
  2695. char *dst, *cda;
  2696. unsigned int blksize, blk_per_trk, off;
  2697. sector_t recid;
  2698. int status;
  2699. if (!dasd_page_cache)
  2700. goto out;
  2701. private = (struct dasd_eckd_private *) cqr->block->base->private;
  2702. blksize = cqr->block->bp_block;
  2703. blk_per_trk = recs_per_track(&private->rdc_data, 0, blksize);
  2704. recid = blk_rq_pos(req) >> cqr->block->s2b_shift;
  2705. ccw = cqr->cpaddr;
  2706. /* Skip over define extent & locate record. */
  2707. ccw++;
  2708. if (private->uses_cdl == 0 || recid > 2*blk_per_trk)
  2709. ccw++;
  2710. rq_for_each_segment(bv, req, iter) {
  2711. dst = page_address(bv->bv_page) + bv->bv_offset;
  2712. for (off = 0; off < bv->bv_len; off += blksize) {
  2713. /* Skip locate record. */
  2714. if (private->uses_cdl && recid <= 2*blk_per_trk)
  2715. ccw++;
  2716. if (dst) {
  2717. if (ccw->flags & CCW_FLAG_IDA)
  2718. cda = *((char **)((addr_t) ccw->cda));
  2719. else
  2720. cda = (char *)((addr_t) ccw->cda);
  2721. if (dst != cda) {
  2722. if (rq_data_dir(req) == READ)
  2723. memcpy(dst, cda, bv->bv_len);
  2724. kmem_cache_free(dasd_page_cache,
  2725. (void *)((addr_t)cda & PAGE_MASK));
  2726. }
  2727. dst = NULL;
  2728. }
  2729. ccw++;
  2730. recid++;
  2731. }
  2732. }
  2733. out:
  2734. status = cqr->status == DASD_CQR_DONE;
  2735. dasd_sfree_request(cqr, cqr->memdev);
  2736. return status;
  2737. }
  2738. /*
  2739. * Modify ccw/tcw in cqr so it can be started on a base device.
  2740. *
  2741. * Note that this is not enough to restart the cqr!
  2742. * Either reset cqr->startdev as well (summary unit check handling)
  2743. * or restart via separate cqr (as in ERP handling).
  2744. */
  2745. void dasd_eckd_reset_ccw_to_base_io(struct dasd_ccw_req *cqr)
  2746. {
  2747. struct ccw1 *ccw;
  2748. struct PFX_eckd_data *pfxdata;
  2749. struct tcw *tcw;
  2750. struct tccb *tccb;
  2751. struct dcw *dcw;
  2752. if (cqr->cpmode == 1) {
  2753. tcw = cqr->cpaddr;
  2754. tccb = tcw_get_tccb(tcw);
  2755. dcw = (struct dcw *)&tccb->tca[0];
  2756. pfxdata = (struct PFX_eckd_data *)&dcw->cd[0];
  2757. pfxdata->validity.verify_base = 0;
  2758. pfxdata->validity.hyper_pav = 0;
  2759. } else {
  2760. ccw = cqr->cpaddr;
  2761. pfxdata = cqr->data;
  2762. if (ccw->cmd_code == DASD_ECKD_CCW_PFX) {
  2763. pfxdata->validity.verify_base = 0;
  2764. pfxdata->validity.hyper_pav = 0;
  2765. }
  2766. }
  2767. }
  2768. #define DASD_ECKD_CHANQ_MAX_SIZE 4
  2769. static struct dasd_ccw_req *dasd_eckd_build_alias_cp(struct dasd_device *base,
  2770. struct dasd_block *block,
  2771. struct request *req)
  2772. {
  2773. struct dasd_eckd_private *private;
  2774. struct dasd_device *startdev;
  2775. unsigned long flags;
  2776. struct dasd_ccw_req *cqr;
  2777. startdev = dasd_alias_get_start_dev(base);
  2778. if (!startdev)
  2779. startdev = base;
  2780. private = (struct dasd_eckd_private *) startdev->private;
  2781. if (private->count >= DASD_ECKD_CHANQ_MAX_SIZE)
  2782. return ERR_PTR(-EBUSY);
  2783. spin_lock_irqsave(get_ccwdev_lock(startdev->cdev), flags);
  2784. private->count++;
  2785. if ((base->features & DASD_FEATURE_USERAW))
  2786. cqr = dasd_raw_build_cp(startdev, block, req);
  2787. else
  2788. cqr = dasd_eckd_build_cp(startdev, block, req);
  2789. if (IS_ERR(cqr))
  2790. private->count--;
  2791. spin_unlock_irqrestore(get_ccwdev_lock(startdev->cdev), flags);
  2792. return cqr;
  2793. }
  2794. static int dasd_eckd_free_alias_cp(struct dasd_ccw_req *cqr,
  2795. struct request *req)
  2796. {
  2797. struct dasd_eckd_private *private;
  2798. unsigned long flags;
  2799. spin_lock_irqsave(get_ccwdev_lock(cqr->memdev->cdev), flags);
  2800. private = (struct dasd_eckd_private *) cqr->memdev->private;
  2801. private->count--;
  2802. spin_unlock_irqrestore(get_ccwdev_lock(cqr->memdev->cdev), flags);
  2803. return dasd_eckd_free_cp(cqr, req);
  2804. }
  2805. static int
  2806. dasd_eckd_fill_info(struct dasd_device * device,
  2807. struct dasd_information2_t * info)
  2808. {
  2809. struct dasd_eckd_private *private;
  2810. private = (struct dasd_eckd_private *) device->private;
  2811. info->label_block = 2;
  2812. info->FBA_layout = private->uses_cdl ? 0 : 1;
  2813. info->format = private->uses_cdl ? DASD_FORMAT_CDL : DASD_FORMAT_LDL;
  2814. info->characteristics_size = sizeof(struct dasd_eckd_characteristics);
  2815. memcpy(info->characteristics, &private->rdc_data,
  2816. sizeof(struct dasd_eckd_characteristics));
  2817. info->confdata_size = min((unsigned long)private->conf_len,
  2818. sizeof(info->configuration_data));
  2819. memcpy(info->configuration_data, private->conf_data,
  2820. info->confdata_size);
  2821. return 0;
  2822. }
  2823. /*
  2824. * SECTION: ioctl functions for eckd devices.
  2825. */
  2826. /*
  2827. * Release device ioctl.
  2828. * Buils a channel programm to releases a prior reserved
  2829. * (see dasd_eckd_reserve) device.
  2830. */
  2831. static int
  2832. dasd_eckd_release(struct dasd_device *device)
  2833. {
  2834. struct dasd_ccw_req *cqr;
  2835. int rc;
  2836. struct ccw1 *ccw;
  2837. int useglobal;
  2838. if (!capable(CAP_SYS_ADMIN))
  2839. return -EACCES;
  2840. useglobal = 0;
  2841. cqr = dasd_smalloc_request(DASD_ECKD_MAGIC, 1, 32, device);
  2842. if (IS_ERR(cqr)) {
  2843. mutex_lock(&dasd_reserve_mutex);
  2844. useglobal = 1;
  2845. cqr = &dasd_reserve_req->cqr;
  2846. memset(cqr, 0, sizeof(*cqr));
  2847. memset(&dasd_reserve_req->ccw, 0,
  2848. sizeof(dasd_reserve_req->ccw));
  2849. cqr->cpaddr = &dasd_reserve_req->ccw;
  2850. cqr->data = &dasd_reserve_req->data;
  2851. cqr->magic = DASD_ECKD_MAGIC;
  2852. }
  2853. ccw = cqr->cpaddr;
  2854. ccw->cmd_code = DASD_ECKD_CCW_RELEASE;
  2855. ccw->flags |= CCW_FLAG_SLI;
  2856. ccw->count = 32;
  2857. ccw->cda = (__u32)(addr_t) cqr->data;
  2858. cqr->startdev = device;
  2859. cqr->memdev = device;
  2860. clear_bit(DASD_CQR_FLAGS_USE_ERP, &cqr->flags);
  2861. set_bit(DASD_CQR_FLAGS_FAILFAST, &cqr->flags);
  2862. cqr->retries = 2; /* set retry counter to enable basic ERP */
  2863. cqr->expires = 2 * HZ;
  2864. cqr->buildclk = get_clock();
  2865. cqr->status = DASD_CQR_FILLED;
  2866. rc = dasd_sleep_on_immediatly(cqr);
  2867. if (!rc)
  2868. clear_bit(DASD_FLAG_IS_RESERVED, &device->flags);
  2869. if (useglobal)
  2870. mutex_unlock(&dasd_reserve_mutex);
  2871. else
  2872. dasd_sfree_request(cqr, cqr->memdev);
  2873. return rc;
  2874. }
  2875. /*
  2876. * Reserve device ioctl.
  2877. * Options are set to 'synchronous wait for interrupt' and
  2878. * 'timeout the request'. This leads to a terminate IO if
  2879. * the interrupt is outstanding for a certain time.
  2880. */
  2881. static int
  2882. dasd_eckd_reserve(struct dasd_device *device)
  2883. {
  2884. struct dasd_ccw_req *cqr;
  2885. int rc;
  2886. struct ccw1 *ccw;
  2887. int useglobal;
  2888. if (!capable(CAP_SYS_ADMIN))
  2889. return -EACCES;
  2890. useglobal = 0;
  2891. cqr = dasd_smalloc_request(DASD_ECKD_MAGIC, 1, 32, device);
  2892. if (IS_ERR(cqr)) {
  2893. mutex_lock(&dasd_reserve_mutex);
  2894. useglobal = 1;
  2895. cqr = &dasd_reserve_req->cqr;
  2896. memset(cqr, 0, sizeof(*cqr));
  2897. memset(&dasd_reserve_req->ccw, 0,
  2898. sizeof(dasd_reserve_req->ccw));
  2899. cqr->cpaddr = &dasd_reserve_req->ccw;
  2900. cqr->data = &dasd_reserve_req->data;
  2901. cqr->magic = DASD_ECKD_MAGIC;
  2902. }
  2903. ccw = cqr->cpaddr;
  2904. ccw->cmd_code = DASD_ECKD_CCW_RESERVE;
  2905. ccw->flags |= CCW_FLAG_SLI;
  2906. ccw->count = 32;
  2907. ccw->cda = (__u32)(addr_t) cqr->data;
  2908. cqr->startdev = device;
  2909. cqr->memdev = device;
  2910. clear_bit(DASD_CQR_FLAGS_USE_ERP, &cqr->flags);
  2911. set_bit(DASD_CQR_FLAGS_FAILFAST, &cqr->flags);
  2912. cqr->retries = 2; /* set retry counter to enable basic ERP */
  2913. cqr->expires = 2 * HZ;
  2914. cqr->buildclk = get_clock();
  2915. cqr->status = DASD_CQR_FILLED;
  2916. rc = dasd_sleep_on_immediatly(cqr);
  2917. if (!rc)
  2918. set_bit(DASD_FLAG_IS_RESERVED, &device->flags);
  2919. if (useglobal)
  2920. mutex_unlock(&dasd_reserve_mutex);
  2921. else
  2922. dasd_sfree_request(cqr, cqr->memdev);
  2923. return rc;
  2924. }
  2925. /*
  2926. * Steal lock ioctl - unconditional reserve device.
  2927. * Buils a channel programm to break a device's reservation.
  2928. * (unconditional reserve)
  2929. */
  2930. static int
  2931. dasd_eckd_steal_lock(struct dasd_device *device)
  2932. {
  2933. struct dasd_ccw_req *cqr;
  2934. int rc;
  2935. struct ccw1 *ccw;
  2936. int useglobal;
  2937. if (!capable(CAP_SYS_ADMIN))
  2938. return -EACCES;
  2939. useglobal = 0;
  2940. cqr = dasd_smalloc_request(DASD_ECKD_MAGIC, 1, 32, device);
  2941. if (IS_ERR(cqr)) {
  2942. mutex_lock(&dasd_reserve_mutex);
  2943. useglobal = 1;
  2944. cqr = &dasd_reserve_req->cqr;
  2945. memset(cqr, 0, sizeof(*cqr));
  2946. memset(&dasd_reserve_req->ccw, 0,
  2947. sizeof(dasd_reserve_req->ccw));
  2948. cqr->cpaddr = &dasd_reserve_req->ccw;
  2949. cqr->data = &dasd_reserve_req->data;
  2950. cqr->magic = DASD_ECKD_MAGIC;
  2951. }
  2952. ccw = cqr->cpaddr;
  2953. ccw->cmd_code = DASD_ECKD_CCW_SLCK;
  2954. ccw->flags |= CCW_FLAG_SLI;
  2955. ccw->count = 32;
  2956. ccw->cda = (__u32)(addr_t) cqr->data;
  2957. cqr->startdev = device;
  2958. cqr->memdev = device;
  2959. clear_bit(DASD_CQR_FLAGS_USE_ERP, &cqr->flags);
  2960. set_bit(DASD_CQR_FLAGS_FAILFAST, &cqr->flags);
  2961. cqr->retries = 2; /* set retry counter to enable basic ERP */
  2962. cqr->expires = 2 * HZ;
  2963. cqr->buildclk = get_clock();
  2964. cqr->status = DASD_CQR_FILLED;
  2965. rc = dasd_sleep_on_immediatly(cqr);
  2966. if (!rc)
  2967. set_bit(DASD_FLAG_IS_RESERVED, &device->flags);
  2968. if (useglobal)
  2969. mutex_unlock(&dasd_reserve_mutex);
  2970. else
  2971. dasd_sfree_request(cqr, cqr->memdev);
  2972. return rc;
  2973. }
  2974. /*
  2975. * SNID - Sense Path Group ID
  2976. * This ioctl may be used in situations where I/O is stalled due to
  2977. * a reserve, so if the normal dasd_smalloc_request fails, we use the
  2978. * preallocated dasd_reserve_req.
  2979. */
  2980. static int dasd_eckd_snid(struct dasd_device *device,
  2981. void __user *argp)
  2982. {
  2983. struct dasd_ccw_req *cqr;
  2984. int rc;
  2985. struct ccw1 *ccw;
  2986. int useglobal;
  2987. struct dasd_snid_ioctl_data usrparm;
  2988. if (!capable(CAP_SYS_ADMIN))
  2989. return -EACCES;
  2990. if (copy_from_user(&usrparm, argp, sizeof(usrparm)))
  2991. return -EFAULT;
  2992. useglobal = 0;
  2993. cqr = dasd_smalloc_request(DASD_ECKD_MAGIC, 1,
  2994. sizeof(struct dasd_snid_data), device);
  2995. if (IS_ERR(cqr)) {
  2996. mutex_lock(&dasd_reserve_mutex);
  2997. useglobal = 1;
  2998. cqr = &dasd_reserve_req->cqr;
  2999. memset(cqr, 0, sizeof(*cqr));
  3000. memset(&dasd_reserve_req->ccw, 0,
  3001. sizeof(dasd_reserve_req->ccw));
  3002. cqr->cpaddr = &dasd_reserve_req->ccw;
  3003. cqr->data = &dasd_reserve_req->data;
  3004. cqr->magic = DASD_ECKD_MAGIC;
  3005. }
  3006. ccw = cqr->cpaddr;
  3007. ccw->cmd_code = DASD_ECKD_CCW_SNID;
  3008. ccw->flags |= CCW_FLAG_SLI;
  3009. ccw->count = 12;
  3010. ccw->cda = (__u32)(addr_t) cqr->data;
  3011. cqr->startdev = device;
  3012. cqr->memdev = device;
  3013. clear_bit(DASD_CQR_FLAGS_USE_ERP, &cqr->flags);
  3014. set_bit(DASD_CQR_FLAGS_FAILFAST, &cqr->flags);
  3015. set_bit(DASD_CQR_ALLOW_SLOCK, &cqr->flags);
  3016. cqr->retries = 5;
  3017. cqr->expires = 10 * HZ;
  3018. cqr->buildclk = get_clock();
  3019. cqr->status = DASD_CQR_FILLED;
  3020. cqr->lpm = usrparm.path_mask;
  3021. rc = dasd_sleep_on_immediatly(cqr);
  3022. /* verify that I/O processing didn't modify the path mask */
  3023. if (!rc && usrparm.path_mask && (cqr->lpm != usrparm.path_mask))
  3024. rc = -EIO;
  3025. if (!rc) {
  3026. usrparm.data = *((struct dasd_snid_data *)cqr->data);
  3027. if (copy_to_user(argp, &usrparm, sizeof(usrparm)))
  3028. rc = -EFAULT;
  3029. }
  3030. if (useglobal)
  3031. mutex_unlock(&dasd_reserve_mutex);
  3032. else
  3033. dasd_sfree_request(cqr, cqr->memdev);
  3034. return rc;
  3035. }
  3036. /*
  3037. * Read performance statistics
  3038. */
  3039. static int
  3040. dasd_eckd_performance(struct dasd_device *device, void __user *argp)
  3041. {
  3042. struct dasd_psf_prssd_data *prssdp;
  3043. struct dasd_rssd_perf_stats_t *stats;
  3044. struct dasd_ccw_req *cqr;
  3045. struct ccw1 *ccw;
  3046. int rc;
  3047. cqr = dasd_smalloc_request(DASD_ECKD_MAGIC, 1 /* PSF */ + 1 /* RSSD */,
  3048. (sizeof(struct dasd_psf_prssd_data) +
  3049. sizeof(struct dasd_rssd_perf_stats_t)),
  3050. device);
  3051. if (IS_ERR(cqr)) {
  3052. DBF_DEV_EVENT(DBF_WARNING, device, "%s",
  3053. "Could not allocate initialization request");
  3054. return PTR_ERR(cqr);
  3055. }
  3056. cqr->startdev = device;
  3057. cqr->memdev = device;
  3058. cqr->retries = 0;
  3059. clear_bit(DASD_CQR_FLAGS_USE_ERP, &cqr->flags);
  3060. cqr->expires = 10 * HZ;
  3061. /* Prepare for Read Subsystem Data */
  3062. prssdp = (struct dasd_psf_prssd_data *) cqr->data;
  3063. memset(prssdp, 0, sizeof(struct dasd_psf_prssd_data));
  3064. prssdp->order = PSF_ORDER_PRSSD;
  3065. prssdp->suborder = 0x01; /* Performance Statistics */
  3066. prssdp->varies[1] = 0x01; /* Perf Statistics for the Subsystem */
  3067. ccw = cqr->cpaddr;
  3068. ccw->cmd_code = DASD_ECKD_CCW_PSF;
  3069. ccw->count = sizeof(struct dasd_psf_prssd_data);
  3070. ccw->flags |= CCW_FLAG_CC;
  3071. ccw->cda = (__u32)(addr_t) prssdp;
  3072. /* Read Subsystem Data - Performance Statistics */
  3073. stats = (struct dasd_rssd_perf_stats_t *) (prssdp + 1);
  3074. memset(stats, 0, sizeof(struct dasd_rssd_perf_stats_t));
  3075. ccw++;
  3076. ccw->cmd_code = DASD_ECKD_CCW_RSSD;
  3077. ccw->count = sizeof(struct dasd_rssd_perf_stats_t);
  3078. ccw->cda = (__u32)(addr_t) stats;
  3079. cqr->buildclk = get_clock();
  3080. cqr->status = DASD_CQR_FILLED;
  3081. rc = dasd_sleep_on(cqr);
  3082. if (rc == 0) {
  3083. prssdp = (struct dasd_psf_prssd_data *) cqr->data;
  3084. stats = (struct dasd_rssd_perf_stats_t *) (prssdp + 1);
  3085. if (copy_to_user(argp, stats,
  3086. sizeof(struct dasd_rssd_perf_stats_t)))
  3087. rc = -EFAULT;
  3088. }
  3089. dasd_sfree_request(cqr, cqr->memdev);
  3090. return rc;
  3091. }
  3092. /*
  3093. * Get attributes (cache operations)
  3094. * Returnes the cache attributes used in Define Extend (DE).
  3095. */
  3096. static int
  3097. dasd_eckd_get_attrib(struct dasd_device *device, void __user *argp)
  3098. {
  3099. struct dasd_eckd_private *private =
  3100. (struct dasd_eckd_private *)device->private;
  3101. struct attrib_data_t attrib = private->attrib;
  3102. int rc;
  3103. if (!capable(CAP_SYS_ADMIN))
  3104. return -EACCES;
  3105. if (!argp)
  3106. return -EINVAL;
  3107. rc = 0;
  3108. if (copy_to_user(argp, (long *) &attrib,
  3109. sizeof(struct attrib_data_t)))
  3110. rc = -EFAULT;
  3111. return rc;
  3112. }
  3113. /*
  3114. * Set attributes (cache operations)
  3115. * Stores the attributes for cache operation to be used in Define Extend (DE).
  3116. */
  3117. static int
  3118. dasd_eckd_set_attrib(struct dasd_device *device, void __user *argp)
  3119. {
  3120. struct dasd_eckd_private *private =
  3121. (struct dasd_eckd_private *)device->private;
  3122. struct attrib_data_t attrib;
  3123. if (!capable(CAP_SYS_ADMIN))
  3124. return -EACCES;
  3125. if (!argp)
  3126. return -EINVAL;
  3127. if (copy_from_user(&attrib, argp, sizeof(struct attrib_data_t)))
  3128. return -EFAULT;
  3129. private->attrib = attrib;
  3130. dev_info(&device->cdev->dev,
  3131. "The DASD cache mode was set to %x (%i cylinder prestage)\n",
  3132. private->attrib.operation, private->attrib.nr_cyl);
  3133. return 0;
  3134. }
  3135. /*
  3136. * Issue syscall I/O to EMC Symmetrix array.
  3137. * CCWs are PSF and RSSD
  3138. */
  3139. static int dasd_symm_io(struct dasd_device *device, void __user *argp)
  3140. {
  3141. struct dasd_symmio_parms usrparm;
  3142. char *psf_data, *rssd_result;
  3143. struct dasd_ccw_req *cqr;
  3144. struct ccw1 *ccw;
  3145. char psf0, psf1;
  3146. int rc;
  3147. if (!capable(CAP_SYS_ADMIN) && !capable(CAP_SYS_RAWIO))
  3148. return -EACCES;
  3149. psf0 = psf1 = 0;
  3150. /* Copy parms from caller */
  3151. rc = -EFAULT;
  3152. if (copy_from_user(&usrparm, argp, sizeof(usrparm)))
  3153. goto out;
  3154. if (is_compat_task() || sizeof(long) == 4) {
  3155. /* Make sure pointers are sane even on 31 bit. */
  3156. rc = -EINVAL;
  3157. if ((usrparm.psf_data >> 32) != 0)
  3158. goto out;
  3159. if ((usrparm.rssd_result >> 32) != 0)
  3160. goto out;
  3161. usrparm.psf_data &= 0x7fffffffULL;
  3162. usrparm.rssd_result &= 0x7fffffffULL;
  3163. }
  3164. /* alloc I/O data area */
  3165. psf_data = kzalloc(usrparm.psf_data_len, GFP_KERNEL | GFP_DMA);
  3166. rssd_result = kzalloc(usrparm.rssd_result_len, GFP_KERNEL | GFP_DMA);
  3167. if (!psf_data || !rssd_result) {
  3168. rc = -ENOMEM;
  3169. goto out_free;
  3170. }
  3171. /* get syscall header from user space */
  3172. rc = -EFAULT;
  3173. if (copy_from_user(psf_data,
  3174. (void __user *)(unsigned long) usrparm.psf_data,
  3175. usrparm.psf_data_len))
  3176. goto out_free;
  3177. psf0 = psf_data[0];
  3178. psf1 = psf_data[1];
  3179. /* setup CCWs for PSF + RSSD */
  3180. cqr = dasd_smalloc_request(DASD_ECKD_MAGIC, 2 , 0, device);
  3181. if (IS_ERR(cqr)) {
  3182. DBF_DEV_EVENT(DBF_WARNING, device, "%s",
  3183. "Could not allocate initialization request");
  3184. rc = PTR_ERR(cqr);
  3185. goto out_free;
  3186. }
  3187. cqr->startdev = device;
  3188. cqr->memdev = device;
  3189. cqr->retries = 3;
  3190. cqr->expires = 10 * HZ;
  3191. cqr->buildclk = get_clock();
  3192. cqr->status = DASD_CQR_FILLED;
  3193. /* Build the ccws */
  3194. ccw = cqr->cpaddr;
  3195. /* PSF ccw */
  3196. ccw->cmd_code = DASD_ECKD_CCW_PSF;
  3197. ccw->count = usrparm.psf_data_len;
  3198. ccw->flags |= CCW_FLAG_CC;
  3199. ccw->cda = (__u32)(addr_t) psf_data;
  3200. ccw++;
  3201. /* RSSD ccw */
  3202. ccw->cmd_code = DASD_ECKD_CCW_RSSD;
  3203. ccw->count = usrparm.rssd_result_len;
  3204. ccw->flags = CCW_FLAG_SLI ;
  3205. ccw->cda = (__u32)(addr_t) rssd_result;
  3206. rc = dasd_sleep_on(cqr);
  3207. if (rc)
  3208. goto out_sfree;
  3209. rc = -EFAULT;
  3210. if (copy_to_user((void __user *)(unsigned long) usrparm.rssd_result,
  3211. rssd_result, usrparm.rssd_result_len))
  3212. goto out_sfree;
  3213. rc = 0;
  3214. out_sfree:
  3215. dasd_sfree_request(cqr, cqr->memdev);
  3216. out_free:
  3217. kfree(rssd_result);
  3218. kfree(psf_data);
  3219. out:
  3220. DBF_DEV_EVENT(DBF_WARNING, device,
  3221. "Symmetrix ioctl (0x%02x 0x%02x): rc=%d",
  3222. (int) psf0, (int) psf1, rc);
  3223. return rc;
  3224. }
  3225. static int
  3226. dasd_eckd_ioctl(struct dasd_block *block, unsigned int cmd, void __user *argp)
  3227. {
  3228. struct dasd_device *device = block->base;
  3229. switch (cmd) {
  3230. case BIODASDGATTR:
  3231. return dasd_eckd_get_attrib(device, argp);
  3232. case BIODASDSATTR:
  3233. return dasd_eckd_set_attrib(device, argp);
  3234. case BIODASDPSRD:
  3235. return dasd_eckd_performance(device, argp);
  3236. case BIODASDRLSE:
  3237. return dasd_eckd_release(device);
  3238. case BIODASDRSRV:
  3239. return dasd_eckd_reserve(device);
  3240. case BIODASDSLCK:
  3241. return dasd_eckd_steal_lock(device);
  3242. case BIODASDSNID:
  3243. return dasd_eckd_snid(device, argp);
  3244. case BIODASDSYMMIO:
  3245. return dasd_symm_io(device, argp);
  3246. default:
  3247. return -ENOIOCTLCMD;
  3248. }
  3249. }
  3250. /*
  3251. * Dump the range of CCWs into 'page' buffer
  3252. * and return number of printed chars.
  3253. */
  3254. static int
  3255. dasd_eckd_dump_ccw_range(struct ccw1 *from, struct ccw1 *to, char *page)
  3256. {
  3257. int len, count;
  3258. char *datap;
  3259. len = 0;
  3260. while (from <= to) {
  3261. len += sprintf(page + len, KERN_ERR PRINTK_HEADER
  3262. " CCW %p: %08X %08X DAT:",
  3263. from, ((int *) from)[0], ((int *) from)[1]);
  3264. /* get pointer to data (consider IDALs) */
  3265. if (from->flags & CCW_FLAG_IDA)
  3266. datap = (char *) *((addr_t *) (addr_t) from->cda);
  3267. else
  3268. datap = (char *) ((addr_t) from->cda);
  3269. /* dump data (max 32 bytes) */
  3270. for (count = 0; count < from->count && count < 32; count++) {
  3271. if (count % 8 == 0) len += sprintf(page + len, " ");
  3272. if (count % 4 == 0) len += sprintf(page + len, " ");
  3273. len += sprintf(page + len, "%02x", datap[count]);
  3274. }
  3275. len += sprintf(page + len, "\n");
  3276. from++;
  3277. }
  3278. return len;
  3279. }
  3280. static void
  3281. dasd_eckd_dump_sense_dbf(struct dasd_device *device, struct irb *irb,
  3282. char *reason)
  3283. {
  3284. u64 *sense;
  3285. u64 *stat;
  3286. sense = (u64 *) dasd_get_sense(irb);
  3287. stat = (u64 *) &irb->scsw;
  3288. if (sense) {
  3289. DBF_DEV_EVENT(DBF_EMERG, device, "%s: %016llx %08x : "
  3290. "%016llx %016llx %016llx %016llx",
  3291. reason, *stat, *((u32 *) (stat + 1)),
  3292. sense[0], sense[1], sense[2], sense[3]);
  3293. } else {
  3294. DBF_DEV_EVENT(DBF_EMERG, device, "%s: %016llx %08x : %s",
  3295. reason, *stat, *((u32 *) (stat + 1)),
  3296. "NO VALID SENSE");
  3297. }
  3298. }
  3299. /*
  3300. * Print sense data and related channel program.
  3301. * Parts are printed because printk buffer is only 1024 bytes.
  3302. */
  3303. static void dasd_eckd_dump_sense_ccw(struct dasd_device *device,
  3304. struct dasd_ccw_req *req, struct irb *irb)
  3305. {
  3306. char *page;
  3307. struct ccw1 *first, *last, *fail, *from, *to;
  3308. int len, sl, sct;
  3309. page = (char *) get_zeroed_page(GFP_ATOMIC);
  3310. if (page == NULL) {
  3311. DBF_DEV_EVENT(DBF_WARNING, device, "%s",
  3312. "No memory to dump sense data\n");
  3313. return;
  3314. }
  3315. /* dump the sense data */
  3316. len = sprintf(page, KERN_ERR PRINTK_HEADER
  3317. " I/O status report for device %s:\n",
  3318. dev_name(&device->cdev->dev));
  3319. len += sprintf(page + len, KERN_ERR PRINTK_HEADER
  3320. " in req: %p CC:%02X FC:%02X AC:%02X SC:%02X DS:%02X "
  3321. "CS:%02X RC:%d\n",
  3322. req, scsw_cc(&irb->scsw), scsw_fctl(&irb->scsw),
  3323. scsw_actl(&irb->scsw), scsw_stctl(&irb->scsw),
  3324. scsw_dstat(&irb->scsw), scsw_cstat(&irb->scsw),
  3325. req ? req->intrc : 0);
  3326. len += sprintf(page + len, KERN_ERR PRINTK_HEADER
  3327. " device %s: Failing CCW: %p\n",
  3328. dev_name(&device->cdev->dev),
  3329. (void *) (addr_t) irb->scsw.cmd.cpa);
  3330. if (irb->esw.esw0.erw.cons) {
  3331. for (sl = 0; sl < 4; sl++) {
  3332. len += sprintf(page + len, KERN_ERR PRINTK_HEADER
  3333. " Sense(hex) %2d-%2d:",
  3334. (8 * sl), ((8 * sl) + 7));
  3335. for (sct = 0; sct < 8; sct++) {
  3336. len += sprintf(page + len, " %02x",
  3337. irb->ecw[8 * sl + sct]);
  3338. }
  3339. len += sprintf(page + len, "\n");
  3340. }
  3341. if (irb->ecw[27] & DASD_SENSE_BIT_0) {
  3342. /* 24 Byte Sense Data */
  3343. sprintf(page + len, KERN_ERR PRINTK_HEADER
  3344. " 24 Byte: %x MSG %x, "
  3345. "%s MSGb to SYSOP\n",
  3346. irb->ecw[7] >> 4, irb->ecw[7] & 0x0f,
  3347. irb->ecw[1] & 0x10 ? "" : "no");
  3348. } else {
  3349. /* 32 Byte Sense Data */
  3350. sprintf(page + len, KERN_ERR PRINTK_HEADER
  3351. " 32 Byte: Format: %x "
  3352. "Exception class %x\n",
  3353. irb->ecw[6] & 0x0f, irb->ecw[22] >> 4);
  3354. }
  3355. } else {
  3356. sprintf(page + len, KERN_ERR PRINTK_HEADER
  3357. " SORRY - NO VALID SENSE AVAILABLE\n");
  3358. }
  3359. printk("%s", page);
  3360. if (req) {
  3361. /* req == NULL for unsolicited interrupts */
  3362. /* dump the Channel Program (max 140 Bytes per line) */
  3363. /* Count CCW and print first CCWs (maximum 1024 % 140 = 7) */
  3364. first = req->cpaddr;
  3365. for (last = first; last->flags & (CCW_FLAG_CC | CCW_FLAG_DC); last++);
  3366. to = min(first + 6, last);
  3367. len = sprintf(page, KERN_ERR PRINTK_HEADER
  3368. " Related CP in req: %p\n", req);
  3369. dasd_eckd_dump_ccw_range(first, to, page + len);
  3370. printk("%s", page);
  3371. /* print failing CCW area (maximum 4) */
  3372. /* scsw->cda is either valid or zero */
  3373. len = 0;
  3374. from = ++to;
  3375. fail = (struct ccw1 *)(addr_t)
  3376. irb->scsw.cmd.cpa; /* failing CCW */
  3377. if (from < fail - 2) {
  3378. from = fail - 2; /* there is a gap - print header */
  3379. len += sprintf(page, KERN_ERR PRINTK_HEADER "......\n");
  3380. }
  3381. to = min(fail + 1, last);
  3382. len += dasd_eckd_dump_ccw_range(from, to, page + len);
  3383. /* print last CCWs (maximum 2) */
  3384. from = max(from, ++to);
  3385. if (from < last - 1) {
  3386. from = last - 1; /* there is a gap - print header */
  3387. len += sprintf(page + len, KERN_ERR PRINTK_HEADER "......\n");
  3388. }
  3389. len += dasd_eckd_dump_ccw_range(from, last, page + len);
  3390. if (len > 0)
  3391. printk("%s", page);
  3392. }
  3393. free_page((unsigned long) page);
  3394. }
  3395. /*
  3396. * Print sense data from a tcw.
  3397. */
  3398. static void dasd_eckd_dump_sense_tcw(struct dasd_device *device,
  3399. struct dasd_ccw_req *req, struct irb *irb)
  3400. {
  3401. char *page;
  3402. int len, sl, sct, residual;
  3403. struct tsb *tsb;
  3404. u8 *sense, *rcq;
  3405. page = (char *) get_zeroed_page(GFP_ATOMIC);
  3406. if (page == NULL) {
  3407. DBF_DEV_EVENT(DBF_WARNING, device, " %s",
  3408. "No memory to dump sense data");
  3409. return;
  3410. }
  3411. /* dump the sense data */
  3412. len = sprintf(page, KERN_ERR PRINTK_HEADER
  3413. " I/O status report for device %s:\n",
  3414. dev_name(&device->cdev->dev));
  3415. len += sprintf(page + len, KERN_ERR PRINTK_HEADER
  3416. " in req: %p CC:%02X FC:%02X AC:%02X SC:%02X DS:%02X "
  3417. "CS:%02X fcxs:%02X schxs:%02X RC:%d\n",
  3418. req, scsw_cc(&irb->scsw), scsw_fctl(&irb->scsw),
  3419. scsw_actl(&irb->scsw), scsw_stctl(&irb->scsw),
  3420. scsw_dstat(&irb->scsw), scsw_cstat(&irb->scsw),
  3421. irb->scsw.tm.fcxs, irb->scsw.tm.schxs,
  3422. req ? req->intrc : 0);
  3423. len += sprintf(page + len, KERN_ERR PRINTK_HEADER
  3424. " device %s: Failing TCW: %p\n",
  3425. dev_name(&device->cdev->dev),
  3426. (void *) (addr_t) irb->scsw.tm.tcw);
  3427. tsb = NULL;
  3428. sense = NULL;
  3429. if (irb->scsw.tm.tcw && (irb->scsw.tm.fcxs & 0x01))
  3430. tsb = tcw_get_tsb(
  3431. (struct tcw *)(unsigned long)irb->scsw.tm.tcw);
  3432. if (tsb) {
  3433. len += sprintf(page + len, KERN_ERR PRINTK_HEADER
  3434. " tsb->length %d\n", tsb->length);
  3435. len += sprintf(page + len, KERN_ERR PRINTK_HEADER
  3436. " tsb->flags %x\n", tsb->flags);
  3437. len += sprintf(page + len, KERN_ERR PRINTK_HEADER
  3438. " tsb->dcw_offset %d\n", tsb->dcw_offset);
  3439. len += sprintf(page + len, KERN_ERR PRINTK_HEADER
  3440. " tsb->count %d\n", tsb->count);
  3441. residual = tsb->count - 28;
  3442. len += sprintf(page + len, KERN_ERR PRINTK_HEADER
  3443. " residual %d\n", residual);
  3444. switch (tsb->flags & 0x07) {
  3445. case 1: /* tsa_iostat */
  3446. len += sprintf(page + len, KERN_ERR PRINTK_HEADER
  3447. " tsb->tsa.iostat.dev_time %d\n",
  3448. tsb->tsa.iostat.dev_time);
  3449. len += sprintf(page + len, KERN_ERR PRINTK_HEADER
  3450. " tsb->tsa.iostat.def_time %d\n",
  3451. tsb->tsa.iostat.def_time);
  3452. len += sprintf(page + len, KERN_ERR PRINTK_HEADER
  3453. " tsb->tsa.iostat.queue_time %d\n",
  3454. tsb->tsa.iostat.queue_time);
  3455. len += sprintf(page + len, KERN_ERR PRINTK_HEADER
  3456. " tsb->tsa.iostat.dev_busy_time %d\n",
  3457. tsb->tsa.iostat.dev_busy_time);
  3458. len += sprintf(page + len, KERN_ERR PRINTK_HEADER
  3459. " tsb->tsa.iostat.dev_act_time %d\n",
  3460. tsb->tsa.iostat.dev_act_time);
  3461. sense = tsb->tsa.iostat.sense;
  3462. break;
  3463. case 2: /* ts_ddpc */
  3464. len += sprintf(page + len, KERN_ERR PRINTK_HEADER
  3465. " tsb->tsa.ddpc.rc %d\n", tsb->tsa.ddpc.rc);
  3466. for (sl = 0; sl < 2; sl++) {
  3467. len += sprintf(page + len,
  3468. KERN_ERR PRINTK_HEADER
  3469. " tsb->tsa.ddpc.rcq %2d-%2d: ",
  3470. (8 * sl), ((8 * sl) + 7));
  3471. rcq = tsb->tsa.ddpc.rcq;
  3472. for (sct = 0; sct < 8; sct++) {
  3473. len += sprintf(page + len, " %02x",
  3474. rcq[8 * sl + sct]);
  3475. }
  3476. len += sprintf(page + len, "\n");
  3477. }
  3478. sense = tsb->tsa.ddpc.sense;
  3479. break;
  3480. case 3: /* tsa_intrg */
  3481. len += sprintf(page + len, KERN_ERR PRINTK_HEADER
  3482. " tsb->tsa.intrg.: not supportet yet \n");
  3483. break;
  3484. }
  3485. if (sense) {
  3486. for (sl = 0; sl < 4; sl++) {
  3487. len += sprintf(page + len,
  3488. KERN_ERR PRINTK_HEADER
  3489. " Sense(hex) %2d-%2d:",
  3490. (8 * sl), ((8 * sl) + 7));
  3491. for (sct = 0; sct < 8; sct++) {
  3492. len += sprintf(page + len, " %02x",
  3493. sense[8 * sl + sct]);
  3494. }
  3495. len += sprintf(page + len, "\n");
  3496. }
  3497. if (sense[27] & DASD_SENSE_BIT_0) {
  3498. /* 24 Byte Sense Data */
  3499. sprintf(page + len, KERN_ERR PRINTK_HEADER
  3500. " 24 Byte: %x MSG %x, "
  3501. "%s MSGb to SYSOP\n",
  3502. sense[7] >> 4, sense[7] & 0x0f,
  3503. sense[1] & 0x10 ? "" : "no");
  3504. } else {
  3505. /* 32 Byte Sense Data */
  3506. sprintf(page + len, KERN_ERR PRINTK_HEADER
  3507. " 32 Byte: Format: %x "
  3508. "Exception class %x\n",
  3509. sense[6] & 0x0f, sense[22] >> 4);
  3510. }
  3511. } else {
  3512. sprintf(page + len, KERN_ERR PRINTK_HEADER
  3513. " SORRY - NO VALID SENSE AVAILABLE\n");
  3514. }
  3515. } else {
  3516. sprintf(page + len, KERN_ERR PRINTK_HEADER
  3517. " SORRY - NO TSB DATA AVAILABLE\n");
  3518. }
  3519. printk("%s", page);
  3520. free_page((unsigned long) page);
  3521. }
  3522. static void dasd_eckd_dump_sense(struct dasd_device *device,
  3523. struct dasd_ccw_req *req, struct irb *irb)
  3524. {
  3525. if (scsw_is_tm(&irb->scsw))
  3526. dasd_eckd_dump_sense_tcw(device, req, irb);
  3527. else
  3528. dasd_eckd_dump_sense_ccw(device, req, irb);
  3529. }
  3530. static int dasd_eckd_pm_freeze(struct dasd_device *device)
  3531. {
  3532. /*
  3533. * the device should be disconnected from our LCU structure
  3534. * on restore we will reconnect it and reread LCU specific
  3535. * information like PAV support that might have changed
  3536. */
  3537. dasd_alias_remove_device(device);
  3538. dasd_alias_disconnect_device_from_lcu(device);
  3539. return 0;
  3540. }
  3541. static int dasd_eckd_restore_device(struct dasd_device *device)
  3542. {
  3543. struct dasd_eckd_private *private;
  3544. struct dasd_eckd_characteristics temp_rdc_data;
  3545. int is_known, rc;
  3546. struct dasd_uid temp_uid;
  3547. unsigned long flags;
  3548. private = (struct dasd_eckd_private *) device->private;
  3549. /* Read Configuration Data */
  3550. rc = dasd_eckd_read_conf(device);
  3551. if (rc)
  3552. goto out_err;
  3553. dasd_eckd_get_uid(device, &temp_uid);
  3554. /* Generate device unique id */
  3555. rc = dasd_eckd_generate_uid(device);
  3556. spin_lock_irqsave(get_ccwdev_lock(device->cdev), flags);
  3557. if (memcmp(&private->uid, &temp_uid, sizeof(struct dasd_uid)) != 0)
  3558. dev_err(&device->cdev->dev, "The UID of the DASD has "
  3559. "changed\n");
  3560. spin_unlock_irqrestore(get_ccwdev_lock(device->cdev), flags);
  3561. if (rc)
  3562. goto out_err;
  3563. /* register lcu with alias handling, enable PAV if this is a new lcu */
  3564. is_known = dasd_alias_make_device_known_to_lcu(device);
  3565. if (is_known < 0)
  3566. return is_known;
  3567. if (!is_known) {
  3568. dasd_eckd_validate_server(device);
  3569. dasd_alias_lcu_setup_complete(device);
  3570. } else
  3571. dasd_alias_wait_for_lcu_setup(device);
  3572. /* RE-Read Configuration Data */
  3573. rc = dasd_eckd_read_conf(device);
  3574. if (rc)
  3575. goto out_err;
  3576. /* Read Feature Codes */
  3577. dasd_eckd_read_features(device);
  3578. /* Read Device Characteristics */
  3579. rc = dasd_generic_read_dev_chars(device, DASD_ECKD_MAGIC,
  3580. &temp_rdc_data, 64);
  3581. if (rc) {
  3582. DBF_EVENT_DEVID(DBF_WARNING, device->cdev,
  3583. "Read device characteristic failed, rc=%d", rc);
  3584. goto out_err;
  3585. }
  3586. spin_lock_irqsave(get_ccwdev_lock(device->cdev), flags);
  3587. memcpy(&private->rdc_data, &temp_rdc_data, sizeof(temp_rdc_data));
  3588. spin_unlock_irqrestore(get_ccwdev_lock(device->cdev), flags);
  3589. /* add device to alias management */
  3590. dasd_alias_add_device(device);
  3591. return 0;
  3592. out_err:
  3593. return -1;
  3594. }
  3595. static int dasd_eckd_reload_device(struct dasd_device *device)
  3596. {
  3597. struct dasd_eckd_private *private;
  3598. int rc, old_base;
  3599. char print_uid[60];
  3600. struct dasd_uid uid;
  3601. unsigned long flags;
  3602. private = (struct dasd_eckd_private *) device->private;
  3603. spin_lock_irqsave(get_ccwdev_lock(device->cdev), flags);
  3604. old_base = private->uid.base_unit_addr;
  3605. spin_unlock_irqrestore(get_ccwdev_lock(device->cdev), flags);
  3606. /* Read Configuration Data */
  3607. rc = dasd_eckd_read_conf(device);
  3608. if (rc)
  3609. goto out_err;
  3610. rc = dasd_eckd_generate_uid(device);
  3611. if (rc)
  3612. goto out_err;
  3613. /*
  3614. * update unit address configuration and
  3615. * add device to alias management
  3616. */
  3617. dasd_alias_update_add_device(device);
  3618. dasd_eckd_get_uid(device, &uid);
  3619. if (old_base != uid.base_unit_addr) {
  3620. if (strlen(uid.vduit) > 0)
  3621. snprintf(print_uid, sizeof(print_uid),
  3622. "%s.%s.%04x.%02x.%s", uid.vendor, uid.serial,
  3623. uid.ssid, uid.base_unit_addr, uid.vduit);
  3624. else
  3625. snprintf(print_uid, sizeof(print_uid),
  3626. "%s.%s.%04x.%02x", uid.vendor, uid.serial,
  3627. uid.ssid, uid.base_unit_addr);
  3628. dev_info(&device->cdev->dev,
  3629. "An Alias device was reassigned to a new base device "
  3630. "with UID: %s\n", print_uid);
  3631. }
  3632. return 0;
  3633. out_err:
  3634. return -1;
  3635. }
  3636. static struct ccw_driver dasd_eckd_driver = {
  3637. .driver = {
  3638. .name = "dasd-eckd",
  3639. .owner = THIS_MODULE,
  3640. },
  3641. .ids = dasd_eckd_ids,
  3642. .probe = dasd_eckd_probe,
  3643. .remove = dasd_generic_remove,
  3644. .set_offline = dasd_generic_set_offline,
  3645. .set_online = dasd_eckd_set_online,
  3646. .notify = dasd_generic_notify,
  3647. .path_event = dasd_generic_path_event,
  3648. .freeze = dasd_generic_pm_freeze,
  3649. .thaw = dasd_generic_restore_device,
  3650. .restore = dasd_generic_restore_device,
  3651. .uc_handler = dasd_generic_uc_handler,
  3652. };
  3653. /*
  3654. * max_blocks is dependent on the amount of storage that is available
  3655. * in the static io buffer for each device. Currently each device has
  3656. * 8192 bytes (=2 pages). For 64 bit one dasd_mchunkt_t structure has
  3657. * 24 bytes, the struct dasd_ccw_req has 136 bytes and each block can use
  3658. * up to 16 bytes (8 for the ccw and 8 for the idal pointer). In
  3659. * addition we have one define extent ccw + 16 bytes of data and one
  3660. * locate record ccw + 16 bytes of data. That makes:
  3661. * (8192 - 24 - 136 - 8 - 16 - 8 - 16) / 16 = 499 blocks at maximum.
  3662. * We want to fit two into the available memory so that we can immediately
  3663. * start the next request if one finishes off. That makes 249.5 blocks
  3664. * for one request. Give a little safety and the result is 240.
  3665. */
  3666. static struct dasd_discipline dasd_eckd_discipline = {
  3667. .owner = THIS_MODULE,
  3668. .name = "ECKD",
  3669. .ebcname = "ECKD",
  3670. .max_blocks = 190,
  3671. .check_device = dasd_eckd_check_characteristics,
  3672. .uncheck_device = dasd_eckd_uncheck_device,
  3673. .do_analysis = dasd_eckd_do_analysis,
  3674. .verify_path = dasd_eckd_verify_path,
  3675. .ready_to_online = dasd_eckd_ready_to_online,
  3676. .online_to_ready = dasd_eckd_online_to_ready,
  3677. .fill_geometry = dasd_eckd_fill_geometry,
  3678. .start_IO = dasd_start_IO,
  3679. .term_IO = dasd_term_IO,
  3680. .handle_terminated_request = dasd_eckd_handle_terminated_request,
  3681. .format_device = dasd_eckd_format_device,
  3682. .erp_action = dasd_eckd_erp_action,
  3683. .erp_postaction = dasd_eckd_erp_postaction,
  3684. .check_for_device_change = dasd_eckd_check_for_device_change,
  3685. .build_cp = dasd_eckd_build_alias_cp,
  3686. .free_cp = dasd_eckd_free_alias_cp,
  3687. .dump_sense = dasd_eckd_dump_sense,
  3688. .dump_sense_dbf = dasd_eckd_dump_sense_dbf,
  3689. .fill_info = dasd_eckd_fill_info,
  3690. .ioctl = dasd_eckd_ioctl,
  3691. .freeze = dasd_eckd_pm_freeze,
  3692. .restore = dasd_eckd_restore_device,
  3693. .reload = dasd_eckd_reload_device,
  3694. .get_uid = dasd_eckd_get_uid,
  3695. };
  3696. static int __init
  3697. dasd_eckd_init(void)
  3698. {
  3699. int ret;
  3700. ASCEBC(dasd_eckd_discipline.ebcname, 4);
  3701. dasd_reserve_req = kmalloc(sizeof(*dasd_reserve_req),
  3702. GFP_KERNEL | GFP_DMA);
  3703. if (!dasd_reserve_req)
  3704. return -ENOMEM;
  3705. path_verification_worker = kmalloc(sizeof(*path_verification_worker),
  3706. GFP_KERNEL | GFP_DMA);
  3707. if (!path_verification_worker) {
  3708. kfree(dasd_reserve_req);
  3709. return -ENOMEM;
  3710. }
  3711. ret = ccw_driver_register(&dasd_eckd_driver);
  3712. if (!ret)
  3713. wait_for_device_probe();
  3714. else {
  3715. kfree(path_verification_worker);
  3716. kfree(dasd_reserve_req);
  3717. }
  3718. return ret;
  3719. }
  3720. static void __exit
  3721. dasd_eckd_cleanup(void)
  3722. {
  3723. ccw_driver_unregister(&dasd_eckd_driver);
  3724. kfree(path_verification_worker);
  3725. kfree(dasd_reserve_req);
  3726. }
  3727. module_init(dasd_eckd_init);
  3728. module_exit(dasd_eckd_cleanup);