osd_initiator.c 56 KB

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  1. /*
  2. * osd_initiator - Main body of the osd initiator library.
  3. *
  4. * Note: The file does not contain the advanced security functionality which
  5. * is only needed by the security_manager's initiators.
  6. *
  7. * Copyright (C) 2008 Panasas Inc. All rights reserved.
  8. *
  9. * Authors:
  10. * Boaz Harrosh <ooo@electrozaur.com>
  11. * Benny Halevy <bhalevy@panasas.com>
  12. *
  13. * This program is free software; you can redistribute it and/or modify
  14. * it under the terms of the GNU General Public License version 2
  15. *
  16. * Redistribution and use in source and binary forms, with or without
  17. * modification, are permitted provided that the following conditions
  18. * are met:
  19. *
  20. * 1. Redistributions of source code must retain the above copyright
  21. * notice, this list of conditions and the following disclaimer.
  22. * 2. Redistributions in binary form must reproduce the above copyright
  23. * notice, this list of conditions and the following disclaimer in the
  24. * documentation and/or other materials provided with the distribution.
  25. * 3. Neither the name of the Panasas company nor the names of its
  26. * contributors may be used to endorse or promote products derived
  27. * from this software without specific prior written permission.
  28. *
  29. * THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESS OR IMPLIED
  30. * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
  31. * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
  32. * DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
  33. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
  34. * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
  35. * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
  36. * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
  37. * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
  38. * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
  39. * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  40. */
  41. #include <linux/slab.h>
  42. #include <linux/module.h>
  43. #include <scsi/osd_initiator.h>
  44. #include <scsi/osd_sec.h>
  45. #include <scsi/osd_attributes.h>
  46. #include <scsi/osd_sense.h>
  47. #include <scsi/scsi_device.h>
  48. #include "osd_debug.h"
  49. #ifndef __unused
  50. # define __unused __attribute__((unused))
  51. #endif
  52. enum { OSD_REQ_RETRIES = 1 };
  53. MODULE_AUTHOR("Boaz Harrosh <ooo@electrozaur.com>");
  54. MODULE_DESCRIPTION("open-osd initiator library libosd.ko");
  55. MODULE_LICENSE("GPL");
  56. static inline void build_test(void)
  57. {
  58. /* structures were not packed */
  59. BUILD_BUG_ON(sizeof(struct osd_capability) != OSD_CAP_LEN);
  60. BUILD_BUG_ON(sizeof(struct osdv2_cdb) != OSD_TOTAL_CDB_LEN);
  61. BUILD_BUG_ON(sizeof(struct osdv1_cdb) != OSDv1_TOTAL_CDB_LEN);
  62. }
  63. static const char *_osd_ver_desc(struct osd_request *or)
  64. {
  65. return osd_req_is_ver1(or) ? "OSD1" : "OSD2";
  66. }
  67. #define ATTR_DEF_RI(id, len) ATTR_DEF(OSD_APAGE_ROOT_INFORMATION, id, len)
  68. static int _osd_get_print_system_info(struct osd_dev *od,
  69. void *caps, struct osd_dev_info *odi)
  70. {
  71. struct osd_request *or;
  72. struct osd_attr get_attrs[] = {
  73. ATTR_DEF_RI(OSD_ATTR_RI_VENDOR_IDENTIFICATION, 8),
  74. ATTR_DEF_RI(OSD_ATTR_RI_PRODUCT_IDENTIFICATION, 16),
  75. ATTR_DEF_RI(OSD_ATTR_RI_PRODUCT_MODEL, 32),
  76. ATTR_DEF_RI(OSD_ATTR_RI_PRODUCT_REVISION_LEVEL, 4),
  77. ATTR_DEF_RI(OSD_ATTR_RI_PRODUCT_SERIAL_NUMBER, 64 /*variable*/),
  78. ATTR_DEF_RI(OSD_ATTR_RI_OSD_NAME, 64 /*variable*/),
  79. ATTR_DEF_RI(OSD_ATTR_RI_TOTAL_CAPACITY, 8),
  80. ATTR_DEF_RI(OSD_ATTR_RI_USED_CAPACITY, 8),
  81. ATTR_DEF_RI(OSD_ATTR_RI_NUMBER_OF_PARTITIONS, 8),
  82. ATTR_DEF_RI(OSD_ATTR_RI_CLOCK, 6),
  83. /* IBM-OSD-SIM Has a bug with this one put it last */
  84. ATTR_DEF_RI(OSD_ATTR_RI_OSD_SYSTEM_ID, 20),
  85. };
  86. void *iter = NULL, *pFirst;
  87. int nelem = ARRAY_SIZE(get_attrs), a = 0;
  88. int ret;
  89. or = osd_start_request(od, GFP_KERNEL);
  90. if (!or)
  91. return -ENOMEM;
  92. /* get attrs */
  93. osd_req_get_attributes(or, &osd_root_object);
  94. osd_req_add_get_attr_list(or, get_attrs, ARRAY_SIZE(get_attrs));
  95. ret = osd_finalize_request(or, 0, caps, NULL);
  96. if (ret)
  97. goto out;
  98. ret = osd_execute_request(or);
  99. if (ret) {
  100. OSD_ERR("Failed to detect %s => %d\n", _osd_ver_desc(or), ret);
  101. goto out;
  102. }
  103. osd_req_decode_get_attr_list(or, get_attrs, &nelem, &iter);
  104. OSD_INFO("Detected %s device\n",
  105. _osd_ver_desc(or));
  106. pFirst = get_attrs[a++].val_ptr;
  107. OSD_INFO("VENDOR_IDENTIFICATION [%s]\n",
  108. (char *)pFirst);
  109. pFirst = get_attrs[a++].val_ptr;
  110. OSD_INFO("PRODUCT_IDENTIFICATION [%s]\n",
  111. (char *)pFirst);
  112. pFirst = get_attrs[a++].val_ptr;
  113. OSD_INFO("PRODUCT_MODEL [%s]\n",
  114. (char *)pFirst);
  115. pFirst = get_attrs[a++].val_ptr;
  116. OSD_INFO("PRODUCT_REVISION_LEVEL [%u]\n",
  117. pFirst ? get_unaligned_be32(pFirst) : ~0U);
  118. pFirst = get_attrs[a++].val_ptr;
  119. OSD_INFO("PRODUCT_SERIAL_NUMBER [%s]\n",
  120. (char *)pFirst);
  121. odi->osdname_len = get_attrs[a].len;
  122. /* Avoid NULL for memcmp optimization 0-length is good enough */
  123. odi->osdname = kzalloc(odi->osdname_len + 1, GFP_KERNEL);
  124. if (!odi->osdname) {
  125. ret = -ENOMEM;
  126. goto out;
  127. }
  128. if (odi->osdname_len)
  129. memcpy(odi->osdname, get_attrs[a].val_ptr, odi->osdname_len);
  130. OSD_INFO("OSD_NAME [%s]\n", odi->osdname);
  131. a++;
  132. pFirst = get_attrs[a++].val_ptr;
  133. OSD_INFO("TOTAL_CAPACITY [0x%llx]\n",
  134. pFirst ? _LLU(get_unaligned_be64(pFirst)) : ~0ULL);
  135. pFirst = get_attrs[a++].val_ptr;
  136. OSD_INFO("USED_CAPACITY [0x%llx]\n",
  137. pFirst ? _LLU(get_unaligned_be64(pFirst)) : ~0ULL);
  138. pFirst = get_attrs[a++].val_ptr;
  139. OSD_INFO("NUMBER_OF_PARTITIONS [%llu]\n",
  140. pFirst ? _LLU(get_unaligned_be64(pFirst)) : ~0ULL);
  141. if (a >= nelem)
  142. goto out;
  143. /* FIXME: Where are the time utilities */
  144. pFirst = get_attrs[a++].val_ptr;
  145. OSD_INFO("CLOCK [0x%6phN]\n", pFirst);
  146. if (a < nelem) { /* IBM-OSD-SIM bug, Might not have it */
  147. unsigned len = get_attrs[a].len;
  148. char sid_dump[32*4 + 2]; /* 2nibbles+space+ASCII */
  149. hex_dump_to_buffer(get_attrs[a].val_ptr, len, 32, 1,
  150. sid_dump, sizeof(sid_dump), true);
  151. OSD_INFO("OSD_SYSTEM_ID(%d)\n"
  152. " [%s]\n", len, sid_dump);
  153. if (unlikely(len > sizeof(odi->systemid))) {
  154. OSD_ERR("OSD Target error: OSD_SYSTEM_ID too long(%d). "
  155. "device identification might not work\n", len);
  156. len = sizeof(odi->systemid);
  157. }
  158. odi->systemid_len = len;
  159. memcpy(odi->systemid, get_attrs[a].val_ptr, len);
  160. a++;
  161. }
  162. out:
  163. osd_end_request(or);
  164. return ret;
  165. }
  166. int osd_auto_detect_ver(struct osd_dev *od,
  167. void *caps, struct osd_dev_info *odi)
  168. {
  169. int ret;
  170. /* Auto-detect the osd version */
  171. ret = _osd_get_print_system_info(od, caps, odi);
  172. if (ret) {
  173. osd_dev_set_ver(od, OSD_VER1);
  174. OSD_DEBUG("converting to OSD1\n");
  175. ret = _osd_get_print_system_info(od, caps, odi);
  176. }
  177. return ret;
  178. }
  179. EXPORT_SYMBOL(osd_auto_detect_ver);
  180. static unsigned _osd_req_cdb_len(struct osd_request *or)
  181. {
  182. return osd_req_is_ver1(or) ? OSDv1_TOTAL_CDB_LEN : OSD_TOTAL_CDB_LEN;
  183. }
  184. static unsigned _osd_req_alist_elem_size(struct osd_request *or, unsigned len)
  185. {
  186. return osd_req_is_ver1(or) ?
  187. osdv1_attr_list_elem_size(len) :
  188. osdv2_attr_list_elem_size(len);
  189. }
  190. static void _osd_req_alist_elem_encode(struct osd_request *or,
  191. void *attr_last, const struct osd_attr *oa)
  192. {
  193. if (osd_req_is_ver1(or)) {
  194. struct osdv1_attributes_list_element *attr = attr_last;
  195. attr->attr_page = cpu_to_be32(oa->attr_page);
  196. attr->attr_id = cpu_to_be32(oa->attr_id);
  197. attr->attr_bytes = cpu_to_be16(oa->len);
  198. memcpy(attr->attr_val, oa->val_ptr, oa->len);
  199. } else {
  200. struct osdv2_attributes_list_element *attr = attr_last;
  201. attr->attr_page = cpu_to_be32(oa->attr_page);
  202. attr->attr_id = cpu_to_be32(oa->attr_id);
  203. attr->attr_bytes = cpu_to_be16(oa->len);
  204. memcpy(attr->attr_val, oa->val_ptr, oa->len);
  205. }
  206. }
  207. static int _osd_req_alist_elem_decode(struct osd_request *or,
  208. void *cur_p, struct osd_attr *oa, unsigned max_bytes)
  209. {
  210. unsigned inc;
  211. if (osd_req_is_ver1(or)) {
  212. struct osdv1_attributes_list_element *attr = cur_p;
  213. if (max_bytes < sizeof(*attr))
  214. return -1;
  215. oa->len = be16_to_cpu(attr->attr_bytes);
  216. inc = _osd_req_alist_elem_size(or, oa->len);
  217. if (inc > max_bytes)
  218. return -1;
  219. oa->attr_page = be32_to_cpu(attr->attr_page);
  220. oa->attr_id = be32_to_cpu(attr->attr_id);
  221. /* OSD1: On empty attributes we return a pointer to 2 bytes
  222. * of zeros. This keeps similar behaviour with OSD2.
  223. * (See below)
  224. */
  225. oa->val_ptr = likely(oa->len) ? attr->attr_val :
  226. (u8 *)&attr->attr_bytes;
  227. } else {
  228. struct osdv2_attributes_list_element *attr = cur_p;
  229. if (max_bytes < sizeof(*attr))
  230. return -1;
  231. oa->len = be16_to_cpu(attr->attr_bytes);
  232. inc = _osd_req_alist_elem_size(or, oa->len);
  233. if (inc > max_bytes)
  234. return -1;
  235. oa->attr_page = be32_to_cpu(attr->attr_page);
  236. oa->attr_id = be32_to_cpu(attr->attr_id);
  237. /* OSD2: For convenience, on empty attributes, we return 8 bytes
  238. * of zeros here. This keeps the same behaviour with OSD2r04,
  239. * and is nice with null terminating ASCII fields.
  240. * oa->val_ptr == NULL marks the end-of-list, or error.
  241. */
  242. oa->val_ptr = likely(oa->len) ? attr->attr_val : attr->reserved;
  243. }
  244. return inc;
  245. }
  246. static unsigned _osd_req_alist_size(struct osd_request *or, void *list_head)
  247. {
  248. return osd_req_is_ver1(or) ?
  249. osdv1_list_size(list_head) :
  250. osdv2_list_size(list_head);
  251. }
  252. static unsigned _osd_req_sizeof_alist_header(struct osd_request *or)
  253. {
  254. return osd_req_is_ver1(or) ?
  255. sizeof(struct osdv1_attributes_list_header) :
  256. sizeof(struct osdv2_attributes_list_header);
  257. }
  258. static void _osd_req_set_alist_type(struct osd_request *or,
  259. void *list, int list_type)
  260. {
  261. if (osd_req_is_ver1(or)) {
  262. struct osdv1_attributes_list_header *attr_list = list;
  263. memset(attr_list, 0, sizeof(*attr_list));
  264. attr_list->type = list_type;
  265. } else {
  266. struct osdv2_attributes_list_header *attr_list = list;
  267. memset(attr_list, 0, sizeof(*attr_list));
  268. attr_list->type = list_type;
  269. }
  270. }
  271. static bool _osd_req_is_alist_type(struct osd_request *or,
  272. void *list, int list_type)
  273. {
  274. if (!list)
  275. return false;
  276. if (osd_req_is_ver1(or)) {
  277. struct osdv1_attributes_list_header *attr_list = list;
  278. return attr_list->type == list_type;
  279. } else {
  280. struct osdv2_attributes_list_header *attr_list = list;
  281. return attr_list->type == list_type;
  282. }
  283. }
  284. /* This is for List-objects not Attributes-Lists */
  285. static void _osd_req_encode_olist(struct osd_request *or,
  286. struct osd_obj_id_list *list)
  287. {
  288. struct osd_cdb_head *cdbh = osd_cdb_head(&or->cdb);
  289. if (osd_req_is_ver1(or)) {
  290. cdbh->v1.list_identifier = list->list_identifier;
  291. cdbh->v1.start_address = list->continuation_id;
  292. } else {
  293. cdbh->v2.list_identifier = list->list_identifier;
  294. cdbh->v2.start_address = list->continuation_id;
  295. }
  296. }
  297. static osd_cdb_offset osd_req_encode_offset(struct osd_request *or,
  298. u64 offset, unsigned *padding)
  299. {
  300. return __osd_encode_offset(offset, padding,
  301. osd_req_is_ver1(or) ?
  302. OSDv1_OFFSET_MIN_SHIFT : OSD_OFFSET_MIN_SHIFT,
  303. OSD_OFFSET_MAX_SHIFT);
  304. }
  305. static struct osd_security_parameters *
  306. _osd_req_sec_params(struct osd_request *or)
  307. {
  308. struct osd_cdb *ocdb = &or->cdb;
  309. if (osd_req_is_ver1(or))
  310. return (struct osd_security_parameters *)&ocdb->v1.sec_params;
  311. else
  312. return (struct osd_security_parameters *)&ocdb->v2.sec_params;
  313. }
  314. void osd_dev_init(struct osd_dev *osdd, struct scsi_device *scsi_device)
  315. {
  316. memset(osdd, 0, sizeof(*osdd));
  317. osdd->scsi_device = scsi_device;
  318. osdd->def_timeout = BLK_DEFAULT_SG_TIMEOUT;
  319. #ifdef OSD_VER1_SUPPORT
  320. osdd->version = OSD_VER2;
  321. #endif
  322. /* TODO: Allocate pools for osd_request attributes ... */
  323. }
  324. EXPORT_SYMBOL(osd_dev_init);
  325. void osd_dev_fini(struct osd_dev *osdd)
  326. {
  327. /* TODO: De-allocate pools */
  328. osdd->scsi_device = NULL;
  329. }
  330. EXPORT_SYMBOL(osd_dev_fini);
  331. static struct osd_request *_osd_request_alloc(gfp_t gfp)
  332. {
  333. struct osd_request *or;
  334. /* TODO: Use mempool with one saved request */
  335. or = kzalloc(sizeof(*or), gfp);
  336. return or;
  337. }
  338. static void _osd_request_free(struct osd_request *or)
  339. {
  340. kfree(or);
  341. }
  342. struct osd_request *osd_start_request(struct osd_dev *dev, gfp_t gfp)
  343. {
  344. struct osd_request *or;
  345. or = _osd_request_alloc(gfp);
  346. if (!or)
  347. return NULL;
  348. or->osd_dev = dev;
  349. or->alloc_flags = gfp;
  350. or->timeout = dev->def_timeout;
  351. or->retries = OSD_REQ_RETRIES;
  352. return or;
  353. }
  354. EXPORT_SYMBOL(osd_start_request);
  355. static void _osd_free_seg(struct osd_request *or __unused,
  356. struct _osd_req_data_segment *seg)
  357. {
  358. if (!seg->buff || !seg->alloc_size)
  359. return;
  360. kfree(seg->buff);
  361. seg->buff = NULL;
  362. seg->alloc_size = 0;
  363. }
  364. static void _put_request(struct request *rq)
  365. {
  366. /*
  367. * If osd_finalize_request() was called but the request was not
  368. * executed through the block layer, then we must release BIOs.
  369. * TODO: Keep error code in or->async_error. Need to audit all
  370. * code paths.
  371. */
  372. if (unlikely(rq->bio))
  373. blk_end_request(rq, -ENOMEM, blk_rq_bytes(rq));
  374. else
  375. blk_put_request(rq);
  376. }
  377. void osd_end_request(struct osd_request *or)
  378. {
  379. struct request *rq = or->request;
  380. if (rq) {
  381. if (rq->next_rq) {
  382. _put_request(rq->next_rq);
  383. rq->next_rq = NULL;
  384. }
  385. _put_request(rq);
  386. }
  387. _osd_free_seg(or, &or->get_attr);
  388. _osd_free_seg(or, &or->enc_get_attr);
  389. _osd_free_seg(or, &or->set_attr);
  390. _osd_free_seg(or, &or->cdb_cont);
  391. _osd_request_free(or);
  392. }
  393. EXPORT_SYMBOL(osd_end_request);
  394. static void _set_error_resid(struct osd_request *or, struct request *req,
  395. int error)
  396. {
  397. or->async_error = error;
  398. or->req_errors = req->errors ? : error;
  399. or->sense_len = req->sense_len;
  400. if (or->out.req)
  401. or->out.residual = or->out.req->resid_len;
  402. if (or->in.req)
  403. or->in.residual = or->in.req->resid_len;
  404. }
  405. int osd_execute_request(struct osd_request *or)
  406. {
  407. int error = blk_execute_rq(or->request->q, NULL, or->request, 0);
  408. _set_error_resid(or, or->request, error);
  409. return error;
  410. }
  411. EXPORT_SYMBOL(osd_execute_request);
  412. static void osd_request_async_done(struct request *req, int error)
  413. {
  414. struct osd_request *or = req->end_io_data;
  415. _set_error_resid(or, req, error);
  416. if (req->next_rq) {
  417. __blk_put_request(req->q, req->next_rq);
  418. req->next_rq = NULL;
  419. }
  420. __blk_put_request(req->q, req);
  421. or->request = NULL;
  422. or->in.req = NULL;
  423. or->out.req = NULL;
  424. if (or->async_done)
  425. or->async_done(or, or->async_private);
  426. else
  427. osd_end_request(or);
  428. }
  429. int osd_execute_request_async(struct osd_request *or,
  430. osd_req_done_fn *done, void *private)
  431. {
  432. or->request->end_io_data = or;
  433. or->async_private = private;
  434. or->async_done = done;
  435. blk_execute_rq_nowait(or->request->q, NULL, or->request, 0,
  436. osd_request_async_done);
  437. return 0;
  438. }
  439. EXPORT_SYMBOL(osd_execute_request_async);
  440. u8 sg_out_pad_buffer[1 << OSDv1_OFFSET_MIN_SHIFT];
  441. u8 sg_in_pad_buffer[1 << OSDv1_OFFSET_MIN_SHIFT];
  442. static int _osd_realloc_seg(struct osd_request *or,
  443. struct _osd_req_data_segment *seg, unsigned max_bytes)
  444. {
  445. void *buff;
  446. if (seg->alloc_size >= max_bytes)
  447. return 0;
  448. buff = krealloc(seg->buff, max_bytes, or->alloc_flags);
  449. if (!buff) {
  450. OSD_ERR("Failed to Realloc %d-bytes was-%d\n", max_bytes,
  451. seg->alloc_size);
  452. return -ENOMEM;
  453. }
  454. memset(buff + seg->alloc_size, 0, max_bytes - seg->alloc_size);
  455. seg->buff = buff;
  456. seg->alloc_size = max_bytes;
  457. return 0;
  458. }
  459. static int _alloc_cdb_cont(struct osd_request *or, unsigned total_bytes)
  460. {
  461. OSD_DEBUG("total_bytes=%d\n", total_bytes);
  462. return _osd_realloc_seg(or, &or->cdb_cont, total_bytes);
  463. }
  464. static int _alloc_set_attr_list(struct osd_request *or,
  465. const struct osd_attr *oa, unsigned nelem, unsigned add_bytes)
  466. {
  467. unsigned total_bytes = add_bytes;
  468. for (; nelem; --nelem, ++oa)
  469. total_bytes += _osd_req_alist_elem_size(or, oa->len);
  470. OSD_DEBUG("total_bytes=%d\n", total_bytes);
  471. return _osd_realloc_seg(or, &or->set_attr, total_bytes);
  472. }
  473. static int _alloc_get_attr_desc(struct osd_request *or, unsigned max_bytes)
  474. {
  475. OSD_DEBUG("total_bytes=%d\n", max_bytes);
  476. return _osd_realloc_seg(or, &or->enc_get_attr, max_bytes);
  477. }
  478. static int _alloc_get_attr_list(struct osd_request *or)
  479. {
  480. OSD_DEBUG("total_bytes=%d\n", or->get_attr.total_bytes);
  481. return _osd_realloc_seg(or, &or->get_attr, or->get_attr.total_bytes);
  482. }
  483. /*
  484. * Common to all OSD commands
  485. */
  486. static void _osdv1_req_encode_common(struct osd_request *or,
  487. __be16 act, const struct osd_obj_id *obj, u64 offset, u64 len)
  488. {
  489. struct osdv1_cdb *ocdb = &or->cdb.v1;
  490. /*
  491. * For speed, the commands
  492. * OSD_ACT_PERFORM_SCSI_COMMAND , V1 0x8F7E, V2 0x8F7C
  493. * OSD_ACT_SCSI_TASK_MANAGEMENT , V1 0x8F7F, V2 0x8F7D
  494. * are not supported here. Should pass zero and set after the call
  495. */
  496. act &= cpu_to_be16(~0x0080); /* V1 action code */
  497. OSD_DEBUG("OSDv1 execute opcode 0x%x\n", be16_to_cpu(act));
  498. ocdb->h.varlen_cdb.opcode = VARIABLE_LENGTH_CMD;
  499. ocdb->h.varlen_cdb.additional_cdb_length = OSD_ADDITIONAL_CDB_LENGTH;
  500. ocdb->h.varlen_cdb.service_action = act;
  501. ocdb->h.partition = cpu_to_be64(obj->partition);
  502. ocdb->h.object = cpu_to_be64(obj->id);
  503. ocdb->h.v1.length = cpu_to_be64(len);
  504. ocdb->h.v1.start_address = cpu_to_be64(offset);
  505. }
  506. static void _osdv2_req_encode_common(struct osd_request *or,
  507. __be16 act, const struct osd_obj_id *obj, u64 offset, u64 len)
  508. {
  509. struct osdv2_cdb *ocdb = &or->cdb.v2;
  510. OSD_DEBUG("OSDv2 execute opcode 0x%x\n", be16_to_cpu(act));
  511. ocdb->h.varlen_cdb.opcode = VARIABLE_LENGTH_CMD;
  512. ocdb->h.varlen_cdb.additional_cdb_length = OSD_ADDITIONAL_CDB_LENGTH;
  513. ocdb->h.varlen_cdb.service_action = act;
  514. ocdb->h.partition = cpu_to_be64(obj->partition);
  515. ocdb->h.object = cpu_to_be64(obj->id);
  516. ocdb->h.v2.length = cpu_to_be64(len);
  517. ocdb->h.v2.start_address = cpu_to_be64(offset);
  518. }
  519. static void _osd_req_encode_common(struct osd_request *or,
  520. __be16 act, const struct osd_obj_id *obj, u64 offset, u64 len)
  521. {
  522. if (osd_req_is_ver1(or))
  523. _osdv1_req_encode_common(or, act, obj, offset, len);
  524. else
  525. _osdv2_req_encode_common(or, act, obj, offset, len);
  526. }
  527. /*
  528. * Device commands
  529. */
  530. /*TODO: void osd_req_set_master_seed_xchg(struct osd_request *, ...); */
  531. /*TODO: void osd_req_set_master_key(struct osd_request *, ...); */
  532. void osd_req_format(struct osd_request *or, u64 tot_capacity)
  533. {
  534. _osd_req_encode_common(or, OSD_ACT_FORMAT_OSD, &osd_root_object, 0,
  535. tot_capacity);
  536. }
  537. EXPORT_SYMBOL(osd_req_format);
  538. int osd_req_list_dev_partitions(struct osd_request *or,
  539. osd_id initial_id, struct osd_obj_id_list *list, unsigned nelem)
  540. {
  541. return osd_req_list_partition_objects(or, 0, initial_id, list, nelem);
  542. }
  543. EXPORT_SYMBOL(osd_req_list_dev_partitions);
  544. static void _osd_req_encode_flush(struct osd_request *or,
  545. enum osd_options_flush_scope_values op)
  546. {
  547. struct osd_cdb_head *ocdb = osd_cdb_head(&or->cdb);
  548. ocdb->command_specific_options = op;
  549. }
  550. void osd_req_flush_obsd(struct osd_request *or,
  551. enum osd_options_flush_scope_values op)
  552. {
  553. _osd_req_encode_common(or, OSD_ACT_FLUSH_OSD, &osd_root_object, 0, 0);
  554. _osd_req_encode_flush(or, op);
  555. }
  556. EXPORT_SYMBOL(osd_req_flush_obsd);
  557. /*TODO: void osd_req_perform_scsi_command(struct osd_request *,
  558. const u8 *cdb, ...); */
  559. /*TODO: void osd_req_task_management(struct osd_request *, ...); */
  560. /*
  561. * Partition commands
  562. */
  563. static void _osd_req_encode_partition(struct osd_request *or,
  564. __be16 act, osd_id partition)
  565. {
  566. struct osd_obj_id par = {
  567. .partition = partition,
  568. .id = 0,
  569. };
  570. _osd_req_encode_common(or, act, &par, 0, 0);
  571. }
  572. void osd_req_create_partition(struct osd_request *or, osd_id partition)
  573. {
  574. _osd_req_encode_partition(or, OSD_ACT_CREATE_PARTITION, partition);
  575. }
  576. EXPORT_SYMBOL(osd_req_create_partition);
  577. void osd_req_remove_partition(struct osd_request *or, osd_id partition)
  578. {
  579. _osd_req_encode_partition(or, OSD_ACT_REMOVE_PARTITION, partition);
  580. }
  581. EXPORT_SYMBOL(osd_req_remove_partition);
  582. /*TODO: void osd_req_set_partition_key(struct osd_request *,
  583. osd_id partition, u8 new_key_id[OSD_CRYPTO_KEYID_SIZE],
  584. u8 seed[OSD_CRYPTO_SEED_SIZE]); */
  585. static int _osd_req_list_objects(struct osd_request *or,
  586. __be16 action, const struct osd_obj_id *obj, osd_id initial_id,
  587. struct osd_obj_id_list *list, unsigned nelem)
  588. {
  589. struct request_queue *q = osd_request_queue(or->osd_dev);
  590. u64 len = nelem * sizeof(osd_id) + sizeof(*list);
  591. struct bio *bio;
  592. _osd_req_encode_common(or, action, obj, (u64)initial_id, len);
  593. if (list->list_identifier)
  594. _osd_req_encode_olist(or, list);
  595. WARN_ON(or->in.bio);
  596. bio = bio_map_kern(q, list, len, or->alloc_flags);
  597. if (IS_ERR(bio)) {
  598. OSD_ERR("!!! Failed to allocate list_objects BIO\n");
  599. return PTR_ERR(bio);
  600. }
  601. bio_set_op_attrs(bio, REQ_OP_READ, 0);
  602. or->in.bio = bio;
  603. or->in.total_bytes = bio->bi_iter.bi_size;
  604. return 0;
  605. }
  606. int osd_req_list_partition_collections(struct osd_request *or,
  607. osd_id partition, osd_id initial_id, struct osd_obj_id_list *list,
  608. unsigned nelem)
  609. {
  610. struct osd_obj_id par = {
  611. .partition = partition,
  612. .id = 0,
  613. };
  614. return osd_req_list_collection_objects(or, &par, initial_id, list,
  615. nelem);
  616. }
  617. EXPORT_SYMBOL(osd_req_list_partition_collections);
  618. int osd_req_list_partition_objects(struct osd_request *or,
  619. osd_id partition, osd_id initial_id, struct osd_obj_id_list *list,
  620. unsigned nelem)
  621. {
  622. struct osd_obj_id par = {
  623. .partition = partition,
  624. .id = 0,
  625. };
  626. return _osd_req_list_objects(or, OSD_ACT_LIST, &par, initial_id, list,
  627. nelem);
  628. }
  629. EXPORT_SYMBOL(osd_req_list_partition_objects);
  630. void osd_req_flush_partition(struct osd_request *or,
  631. osd_id partition, enum osd_options_flush_scope_values op)
  632. {
  633. _osd_req_encode_partition(or, OSD_ACT_FLUSH_PARTITION, partition);
  634. _osd_req_encode_flush(or, op);
  635. }
  636. EXPORT_SYMBOL(osd_req_flush_partition);
  637. /*
  638. * Collection commands
  639. */
  640. /*TODO: void osd_req_create_collection(struct osd_request *,
  641. const struct osd_obj_id *); */
  642. /*TODO: void osd_req_remove_collection(struct osd_request *,
  643. const struct osd_obj_id *); */
  644. int osd_req_list_collection_objects(struct osd_request *or,
  645. const struct osd_obj_id *obj, osd_id initial_id,
  646. struct osd_obj_id_list *list, unsigned nelem)
  647. {
  648. return _osd_req_list_objects(or, OSD_ACT_LIST_COLLECTION, obj,
  649. initial_id, list, nelem);
  650. }
  651. EXPORT_SYMBOL(osd_req_list_collection_objects);
  652. /*TODO: void query(struct osd_request *, ...); V2 */
  653. void osd_req_flush_collection(struct osd_request *or,
  654. const struct osd_obj_id *obj, enum osd_options_flush_scope_values op)
  655. {
  656. _osd_req_encode_common(or, OSD_ACT_FLUSH_PARTITION, obj, 0, 0);
  657. _osd_req_encode_flush(or, op);
  658. }
  659. EXPORT_SYMBOL(osd_req_flush_collection);
  660. /*TODO: void get_member_attrs(struct osd_request *, ...); V2 */
  661. /*TODO: void set_member_attrs(struct osd_request *, ...); V2 */
  662. /*
  663. * Object commands
  664. */
  665. void osd_req_create_object(struct osd_request *or, struct osd_obj_id *obj)
  666. {
  667. _osd_req_encode_common(or, OSD_ACT_CREATE, obj, 0, 0);
  668. }
  669. EXPORT_SYMBOL(osd_req_create_object);
  670. void osd_req_remove_object(struct osd_request *or, struct osd_obj_id *obj)
  671. {
  672. _osd_req_encode_common(or, OSD_ACT_REMOVE, obj, 0, 0);
  673. }
  674. EXPORT_SYMBOL(osd_req_remove_object);
  675. /*TODO: void osd_req_create_multi(struct osd_request *or,
  676. struct osd_obj_id *first, struct osd_obj_id_list *list, unsigned nelem);
  677. */
  678. void osd_req_write(struct osd_request *or,
  679. const struct osd_obj_id *obj, u64 offset,
  680. struct bio *bio, u64 len)
  681. {
  682. _osd_req_encode_common(or, OSD_ACT_WRITE, obj, offset, len);
  683. WARN_ON(or->out.bio || or->out.total_bytes);
  684. WARN_ON(!op_is_write(bio_op(bio)));
  685. or->out.bio = bio;
  686. or->out.total_bytes = len;
  687. }
  688. EXPORT_SYMBOL(osd_req_write);
  689. int osd_req_write_kern(struct osd_request *or,
  690. const struct osd_obj_id *obj, u64 offset, void* buff, u64 len)
  691. {
  692. struct request_queue *req_q = osd_request_queue(or->osd_dev);
  693. struct bio *bio = bio_map_kern(req_q, buff, len, GFP_KERNEL);
  694. if (IS_ERR(bio))
  695. return PTR_ERR(bio);
  696. bio_set_op_attrs(bio, REQ_OP_WRITE, 0);
  697. osd_req_write(or, obj, offset, bio, len);
  698. return 0;
  699. }
  700. EXPORT_SYMBOL(osd_req_write_kern);
  701. /*TODO: void osd_req_append(struct osd_request *,
  702. const struct osd_obj_id *, struct bio *data_out); */
  703. /*TODO: void osd_req_create_write(struct osd_request *,
  704. const struct osd_obj_id *, struct bio *data_out, u64 offset); */
  705. /*TODO: void osd_req_clear(struct osd_request *,
  706. const struct osd_obj_id *, u64 offset, u64 len); */
  707. /*TODO: void osd_req_punch(struct osd_request *,
  708. const struct osd_obj_id *, u64 offset, u64 len); V2 */
  709. void osd_req_flush_object(struct osd_request *or,
  710. const struct osd_obj_id *obj, enum osd_options_flush_scope_values op,
  711. /*V2*/ u64 offset, /*V2*/ u64 len)
  712. {
  713. if (unlikely(osd_req_is_ver1(or) && (offset || len))) {
  714. OSD_DEBUG("OSD Ver1 flush on specific range ignored\n");
  715. offset = 0;
  716. len = 0;
  717. }
  718. _osd_req_encode_common(or, OSD_ACT_FLUSH, obj, offset, len);
  719. _osd_req_encode_flush(or, op);
  720. }
  721. EXPORT_SYMBOL(osd_req_flush_object);
  722. void osd_req_read(struct osd_request *or,
  723. const struct osd_obj_id *obj, u64 offset,
  724. struct bio *bio, u64 len)
  725. {
  726. _osd_req_encode_common(or, OSD_ACT_READ, obj, offset, len);
  727. WARN_ON(or->in.bio || or->in.total_bytes);
  728. WARN_ON(op_is_write(bio_op(bio)));
  729. or->in.bio = bio;
  730. or->in.total_bytes = len;
  731. }
  732. EXPORT_SYMBOL(osd_req_read);
  733. int osd_req_read_kern(struct osd_request *or,
  734. const struct osd_obj_id *obj, u64 offset, void* buff, u64 len)
  735. {
  736. struct request_queue *req_q = osd_request_queue(or->osd_dev);
  737. struct bio *bio = bio_map_kern(req_q, buff, len, GFP_KERNEL);
  738. if (IS_ERR(bio))
  739. return PTR_ERR(bio);
  740. osd_req_read(or, obj, offset, bio, len);
  741. return 0;
  742. }
  743. EXPORT_SYMBOL(osd_req_read_kern);
  744. static int _add_sg_continuation_descriptor(struct osd_request *or,
  745. const struct osd_sg_entry *sglist, unsigned numentries, u64 *len)
  746. {
  747. struct osd_sg_continuation_descriptor *oscd;
  748. u32 oscd_size;
  749. unsigned i;
  750. int ret;
  751. oscd_size = sizeof(*oscd) + numentries * sizeof(oscd->entries[0]);
  752. if (!or->cdb_cont.total_bytes) {
  753. /* First time, jump over the header, we will write to:
  754. * cdb_cont.buff + cdb_cont.total_bytes
  755. */
  756. or->cdb_cont.total_bytes =
  757. sizeof(struct osd_continuation_segment_header);
  758. }
  759. ret = _alloc_cdb_cont(or, or->cdb_cont.total_bytes + oscd_size);
  760. if (unlikely(ret))
  761. return ret;
  762. oscd = or->cdb_cont.buff + or->cdb_cont.total_bytes;
  763. oscd->hdr.type = cpu_to_be16(SCATTER_GATHER_LIST);
  764. oscd->hdr.pad_length = 0;
  765. oscd->hdr.length = cpu_to_be32(oscd_size - sizeof(*oscd));
  766. *len = 0;
  767. /* copy the sg entries and convert to network byte order */
  768. for (i = 0; i < numentries; i++) {
  769. oscd->entries[i].offset = cpu_to_be64(sglist[i].offset);
  770. oscd->entries[i].len = cpu_to_be64(sglist[i].len);
  771. *len += sglist[i].len;
  772. }
  773. or->cdb_cont.total_bytes += oscd_size;
  774. OSD_DEBUG("total_bytes=%d oscd_size=%d numentries=%d\n",
  775. or->cdb_cont.total_bytes, oscd_size, numentries);
  776. return 0;
  777. }
  778. static int _osd_req_finalize_cdb_cont(struct osd_request *or, const u8 *cap_key)
  779. {
  780. struct request_queue *req_q = osd_request_queue(or->osd_dev);
  781. struct bio *bio;
  782. struct osd_cdb_head *cdbh = osd_cdb_head(&or->cdb);
  783. struct osd_continuation_segment_header *cont_seg_hdr;
  784. if (!or->cdb_cont.total_bytes)
  785. return 0;
  786. cont_seg_hdr = or->cdb_cont.buff;
  787. cont_seg_hdr->format = CDB_CONTINUATION_FORMAT_V2;
  788. cont_seg_hdr->service_action = cdbh->varlen_cdb.service_action;
  789. /* create a bio for continuation segment */
  790. bio = bio_map_kern(req_q, or->cdb_cont.buff, or->cdb_cont.total_bytes,
  791. GFP_KERNEL);
  792. if (IS_ERR(bio))
  793. return PTR_ERR(bio);
  794. bio_set_op_attrs(bio, REQ_OP_WRITE, 0);
  795. /* integrity check the continuation before the bio is linked
  796. * with the other data segments since the continuation
  797. * integrity is separate from the other data segments.
  798. */
  799. osd_sec_sign_data(cont_seg_hdr->integrity_check, bio, cap_key);
  800. cdbh->v2.cdb_continuation_length = cpu_to_be32(or->cdb_cont.total_bytes);
  801. /* we can't use _req_append_segment, because we need to link in the
  802. * continuation bio to the head of the bio list - the
  803. * continuation segment (if it exists) is always the first segment in
  804. * the out data buffer.
  805. */
  806. bio->bi_next = or->out.bio;
  807. or->out.bio = bio;
  808. or->out.total_bytes += or->cdb_cont.total_bytes;
  809. return 0;
  810. }
  811. /* osd_req_write_sg: Takes a @bio that points to the data out buffer and an
  812. * @sglist that has the scatter gather entries. Scatter-gather enables a write
  813. * of multiple none-contiguous areas of an object, in a single call. The extents
  814. * may overlap and/or be in any order. The only constrain is that:
  815. * total_bytes(sglist) >= total_bytes(bio)
  816. */
  817. int osd_req_write_sg(struct osd_request *or,
  818. const struct osd_obj_id *obj, struct bio *bio,
  819. const struct osd_sg_entry *sglist, unsigned numentries)
  820. {
  821. u64 len;
  822. int ret = _add_sg_continuation_descriptor(or, sglist, numentries, &len);
  823. if (ret)
  824. return ret;
  825. osd_req_write(or, obj, 0, bio, len);
  826. return 0;
  827. }
  828. EXPORT_SYMBOL(osd_req_write_sg);
  829. /* osd_req_read_sg: Read multiple extents of an object into @bio
  830. * See osd_req_write_sg
  831. */
  832. int osd_req_read_sg(struct osd_request *or,
  833. const struct osd_obj_id *obj, struct bio *bio,
  834. const struct osd_sg_entry *sglist, unsigned numentries)
  835. {
  836. u64 len;
  837. u64 off;
  838. int ret;
  839. if (numentries > 1) {
  840. off = 0;
  841. ret = _add_sg_continuation_descriptor(or, sglist, numentries,
  842. &len);
  843. if (ret)
  844. return ret;
  845. } else {
  846. /* Optimize the case of single segment, read_sg is a
  847. * bidi operation.
  848. */
  849. len = sglist->len;
  850. off = sglist->offset;
  851. }
  852. osd_req_read(or, obj, off, bio, len);
  853. return 0;
  854. }
  855. EXPORT_SYMBOL(osd_req_read_sg);
  856. /* SG-list write/read Kern API
  857. *
  858. * osd_req_{write,read}_sg_kern takes an array of @buff pointers and an array
  859. * of sg_entries. @numentries indicates how many pointers and sg_entries there
  860. * are. By requiring an array of buff pointers. This allows a caller to do a
  861. * single write/read and scatter into multiple buffers.
  862. * NOTE: Each buffer + len should not cross a page boundary.
  863. */
  864. static struct bio *_create_sg_bios(struct osd_request *or,
  865. void **buff, const struct osd_sg_entry *sglist, unsigned numentries)
  866. {
  867. struct request_queue *q = osd_request_queue(or->osd_dev);
  868. struct bio *bio;
  869. unsigned i;
  870. bio = bio_kmalloc(GFP_KERNEL, numentries);
  871. if (unlikely(!bio)) {
  872. OSD_DEBUG("Failed to allocate BIO size=%u\n", numentries);
  873. return ERR_PTR(-ENOMEM);
  874. }
  875. for (i = 0; i < numentries; i++) {
  876. unsigned offset = offset_in_page(buff[i]);
  877. struct page *page = virt_to_page(buff[i]);
  878. unsigned len = sglist[i].len;
  879. unsigned added_len;
  880. BUG_ON(offset + len > PAGE_SIZE);
  881. added_len = bio_add_pc_page(q, bio, page, len, offset);
  882. if (unlikely(len != added_len)) {
  883. OSD_DEBUG("bio_add_pc_page len(%d) != added_len(%d)\n",
  884. len, added_len);
  885. bio_put(bio);
  886. return ERR_PTR(-ENOMEM);
  887. }
  888. }
  889. return bio;
  890. }
  891. int osd_req_write_sg_kern(struct osd_request *or,
  892. const struct osd_obj_id *obj, void **buff,
  893. const struct osd_sg_entry *sglist, unsigned numentries)
  894. {
  895. struct bio *bio = _create_sg_bios(or, buff, sglist, numentries);
  896. if (IS_ERR(bio))
  897. return PTR_ERR(bio);
  898. bio_set_op_attrs(bio, REQ_OP_WRITE, 0);
  899. osd_req_write_sg(or, obj, bio, sglist, numentries);
  900. return 0;
  901. }
  902. EXPORT_SYMBOL(osd_req_write_sg_kern);
  903. int osd_req_read_sg_kern(struct osd_request *or,
  904. const struct osd_obj_id *obj, void **buff,
  905. const struct osd_sg_entry *sglist, unsigned numentries)
  906. {
  907. struct bio *bio = _create_sg_bios(or, buff, sglist, numentries);
  908. if (IS_ERR(bio))
  909. return PTR_ERR(bio);
  910. osd_req_read_sg(or, obj, bio, sglist, numentries);
  911. return 0;
  912. }
  913. EXPORT_SYMBOL(osd_req_read_sg_kern);
  914. void osd_req_get_attributes(struct osd_request *or,
  915. const struct osd_obj_id *obj)
  916. {
  917. _osd_req_encode_common(or, OSD_ACT_GET_ATTRIBUTES, obj, 0, 0);
  918. }
  919. EXPORT_SYMBOL(osd_req_get_attributes);
  920. void osd_req_set_attributes(struct osd_request *or,
  921. const struct osd_obj_id *obj)
  922. {
  923. _osd_req_encode_common(or, OSD_ACT_SET_ATTRIBUTES, obj, 0, 0);
  924. }
  925. EXPORT_SYMBOL(osd_req_set_attributes);
  926. /*
  927. * Attributes List-mode
  928. */
  929. int osd_req_add_set_attr_list(struct osd_request *or,
  930. const struct osd_attr *oa, unsigned nelem)
  931. {
  932. unsigned total_bytes = or->set_attr.total_bytes;
  933. void *attr_last;
  934. int ret;
  935. if (or->attributes_mode &&
  936. or->attributes_mode != OSD_CDB_GET_SET_ATTR_LISTS) {
  937. WARN_ON(1);
  938. return -EINVAL;
  939. }
  940. or->attributes_mode = OSD_CDB_GET_SET_ATTR_LISTS;
  941. if (!total_bytes) { /* first-time: allocate and put list header */
  942. total_bytes = _osd_req_sizeof_alist_header(or);
  943. ret = _alloc_set_attr_list(or, oa, nelem, total_bytes);
  944. if (ret)
  945. return ret;
  946. _osd_req_set_alist_type(or, or->set_attr.buff,
  947. OSD_ATTR_LIST_SET_RETRIEVE);
  948. }
  949. attr_last = or->set_attr.buff + total_bytes;
  950. for (; nelem; --nelem) {
  951. unsigned elem_size = _osd_req_alist_elem_size(or, oa->len);
  952. total_bytes += elem_size;
  953. if (unlikely(or->set_attr.alloc_size < total_bytes)) {
  954. or->set_attr.total_bytes = total_bytes - elem_size;
  955. ret = _alloc_set_attr_list(or, oa, nelem, total_bytes);
  956. if (ret)
  957. return ret;
  958. attr_last =
  959. or->set_attr.buff + or->set_attr.total_bytes;
  960. }
  961. _osd_req_alist_elem_encode(or, attr_last, oa);
  962. attr_last += elem_size;
  963. ++oa;
  964. }
  965. or->set_attr.total_bytes = total_bytes;
  966. return 0;
  967. }
  968. EXPORT_SYMBOL(osd_req_add_set_attr_list);
  969. static int _req_append_segment(struct osd_request *or,
  970. unsigned padding, struct _osd_req_data_segment *seg,
  971. struct _osd_req_data_segment *last_seg, struct _osd_io_info *io)
  972. {
  973. void *pad_buff;
  974. int ret;
  975. if (padding) {
  976. /* check if we can just add it to last buffer */
  977. if (last_seg &&
  978. (padding <= last_seg->alloc_size - last_seg->total_bytes))
  979. pad_buff = last_seg->buff + last_seg->total_bytes;
  980. else
  981. pad_buff = io->pad_buff;
  982. ret = blk_rq_map_kern(io->req->q, io->req, pad_buff, padding,
  983. or->alloc_flags);
  984. if (ret)
  985. return ret;
  986. io->total_bytes += padding;
  987. }
  988. ret = blk_rq_map_kern(io->req->q, io->req, seg->buff, seg->total_bytes,
  989. or->alloc_flags);
  990. if (ret)
  991. return ret;
  992. io->total_bytes += seg->total_bytes;
  993. OSD_DEBUG("padding=%d buff=%p total_bytes=%d\n", padding, seg->buff,
  994. seg->total_bytes);
  995. return 0;
  996. }
  997. static int _osd_req_finalize_set_attr_list(struct osd_request *or)
  998. {
  999. struct osd_cdb_head *cdbh = osd_cdb_head(&or->cdb);
  1000. unsigned padding;
  1001. int ret;
  1002. if (!or->set_attr.total_bytes) {
  1003. cdbh->attrs_list.set_attr_offset = OSD_OFFSET_UNUSED;
  1004. return 0;
  1005. }
  1006. cdbh->attrs_list.set_attr_bytes = cpu_to_be32(or->set_attr.total_bytes);
  1007. cdbh->attrs_list.set_attr_offset =
  1008. osd_req_encode_offset(or, or->out.total_bytes, &padding);
  1009. ret = _req_append_segment(or, padding, &or->set_attr,
  1010. or->out.last_seg, &or->out);
  1011. if (ret)
  1012. return ret;
  1013. or->out.last_seg = &or->set_attr;
  1014. return 0;
  1015. }
  1016. int osd_req_add_get_attr_list(struct osd_request *or,
  1017. const struct osd_attr *oa, unsigned nelem)
  1018. {
  1019. unsigned total_bytes = or->enc_get_attr.total_bytes;
  1020. void *attr_last;
  1021. int ret;
  1022. if (or->attributes_mode &&
  1023. or->attributes_mode != OSD_CDB_GET_SET_ATTR_LISTS) {
  1024. WARN_ON(1);
  1025. return -EINVAL;
  1026. }
  1027. or->attributes_mode = OSD_CDB_GET_SET_ATTR_LISTS;
  1028. /* first time calc data-in list header size */
  1029. if (!or->get_attr.total_bytes)
  1030. or->get_attr.total_bytes = _osd_req_sizeof_alist_header(or);
  1031. /* calc data-out info */
  1032. if (!total_bytes) { /* first-time: allocate and put list header */
  1033. unsigned max_bytes;
  1034. total_bytes = _osd_req_sizeof_alist_header(or);
  1035. max_bytes = total_bytes +
  1036. nelem * sizeof(struct osd_attributes_list_attrid);
  1037. ret = _alloc_get_attr_desc(or, max_bytes);
  1038. if (ret)
  1039. return ret;
  1040. _osd_req_set_alist_type(or, or->enc_get_attr.buff,
  1041. OSD_ATTR_LIST_GET);
  1042. }
  1043. attr_last = or->enc_get_attr.buff + total_bytes;
  1044. for (; nelem; --nelem) {
  1045. struct osd_attributes_list_attrid *attrid;
  1046. const unsigned cur_size = sizeof(*attrid);
  1047. total_bytes += cur_size;
  1048. if (unlikely(or->enc_get_attr.alloc_size < total_bytes)) {
  1049. or->enc_get_attr.total_bytes = total_bytes - cur_size;
  1050. ret = _alloc_get_attr_desc(or,
  1051. total_bytes + nelem * sizeof(*attrid));
  1052. if (ret)
  1053. return ret;
  1054. attr_last = or->enc_get_attr.buff +
  1055. or->enc_get_attr.total_bytes;
  1056. }
  1057. attrid = attr_last;
  1058. attrid->attr_page = cpu_to_be32(oa->attr_page);
  1059. attrid->attr_id = cpu_to_be32(oa->attr_id);
  1060. attr_last += cur_size;
  1061. /* calc data-in size */
  1062. or->get_attr.total_bytes +=
  1063. _osd_req_alist_elem_size(or, oa->len);
  1064. ++oa;
  1065. }
  1066. or->enc_get_attr.total_bytes = total_bytes;
  1067. OSD_DEBUG(
  1068. "get_attr.total_bytes=%u(%u) enc_get_attr.total_bytes=%u(%Zu)\n",
  1069. or->get_attr.total_bytes,
  1070. or->get_attr.total_bytes - _osd_req_sizeof_alist_header(or),
  1071. or->enc_get_attr.total_bytes,
  1072. (or->enc_get_attr.total_bytes - _osd_req_sizeof_alist_header(or))
  1073. / sizeof(struct osd_attributes_list_attrid));
  1074. return 0;
  1075. }
  1076. EXPORT_SYMBOL(osd_req_add_get_attr_list);
  1077. static int _osd_req_finalize_get_attr_list(struct osd_request *or)
  1078. {
  1079. struct osd_cdb_head *cdbh = osd_cdb_head(&or->cdb);
  1080. unsigned out_padding;
  1081. unsigned in_padding;
  1082. int ret;
  1083. if (!or->enc_get_attr.total_bytes) {
  1084. cdbh->attrs_list.get_attr_desc_offset = OSD_OFFSET_UNUSED;
  1085. cdbh->attrs_list.get_attr_offset = OSD_OFFSET_UNUSED;
  1086. return 0;
  1087. }
  1088. ret = _alloc_get_attr_list(or);
  1089. if (ret)
  1090. return ret;
  1091. /* The out-going buffer info update */
  1092. OSD_DEBUG("out-going\n");
  1093. cdbh->attrs_list.get_attr_desc_bytes =
  1094. cpu_to_be32(or->enc_get_attr.total_bytes);
  1095. cdbh->attrs_list.get_attr_desc_offset =
  1096. osd_req_encode_offset(or, or->out.total_bytes, &out_padding);
  1097. ret = _req_append_segment(or, out_padding, &or->enc_get_attr,
  1098. or->out.last_seg, &or->out);
  1099. if (ret)
  1100. return ret;
  1101. or->out.last_seg = &or->enc_get_attr;
  1102. /* The incoming buffer info update */
  1103. OSD_DEBUG("in-coming\n");
  1104. cdbh->attrs_list.get_attr_alloc_length =
  1105. cpu_to_be32(or->get_attr.total_bytes);
  1106. cdbh->attrs_list.get_attr_offset =
  1107. osd_req_encode_offset(or, or->in.total_bytes, &in_padding);
  1108. ret = _req_append_segment(or, in_padding, &or->get_attr, NULL,
  1109. &or->in);
  1110. if (ret)
  1111. return ret;
  1112. or->in.last_seg = &or->get_attr;
  1113. return 0;
  1114. }
  1115. int osd_req_decode_get_attr_list(struct osd_request *or,
  1116. struct osd_attr *oa, int *nelem, void **iterator)
  1117. {
  1118. unsigned cur_bytes, returned_bytes;
  1119. int n;
  1120. const unsigned sizeof_attr_list = _osd_req_sizeof_alist_header(or);
  1121. void *cur_p;
  1122. if (!_osd_req_is_alist_type(or, or->get_attr.buff,
  1123. OSD_ATTR_LIST_SET_RETRIEVE)) {
  1124. oa->attr_page = 0;
  1125. oa->attr_id = 0;
  1126. oa->val_ptr = NULL;
  1127. oa->len = 0;
  1128. *iterator = NULL;
  1129. return 0;
  1130. }
  1131. if (*iterator) {
  1132. BUG_ON((*iterator < or->get_attr.buff) ||
  1133. (or->get_attr.buff + or->get_attr.alloc_size < *iterator));
  1134. cur_p = *iterator;
  1135. cur_bytes = (*iterator - or->get_attr.buff) - sizeof_attr_list;
  1136. returned_bytes = or->get_attr.total_bytes;
  1137. } else { /* first time decode the list header */
  1138. cur_bytes = sizeof_attr_list;
  1139. returned_bytes = _osd_req_alist_size(or, or->get_attr.buff) +
  1140. sizeof_attr_list;
  1141. cur_p = or->get_attr.buff + sizeof_attr_list;
  1142. if (returned_bytes > or->get_attr.alloc_size) {
  1143. OSD_DEBUG("target report: space was not big enough! "
  1144. "Allocate=%u Needed=%u\n",
  1145. or->get_attr.alloc_size,
  1146. returned_bytes + sizeof_attr_list);
  1147. returned_bytes =
  1148. or->get_attr.alloc_size - sizeof_attr_list;
  1149. }
  1150. or->get_attr.total_bytes = returned_bytes;
  1151. }
  1152. for (n = 0; (n < *nelem) && (cur_bytes < returned_bytes); ++n) {
  1153. int inc = _osd_req_alist_elem_decode(or, cur_p, oa,
  1154. returned_bytes - cur_bytes);
  1155. if (inc < 0) {
  1156. OSD_ERR("BAD FOOD from target. list not valid!"
  1157. "c=%d r=%d n=%d\n",
  1158. cur_bytes, returned_bytes, n);
  1159. oa->val_ptr = NULL;
  1160. cur_bytes = returned_bytes; /* break the caller loop */
  1161. break;
  1162. }
  1163. cur_bytes += inc;
  1164. cur_p += inc;
  1165. ++oa;
  1166. }
  1167. *iterator = (returned_bytes - cur_bytes) ? cur_p : NULL;
  1168. *nelem = n;
  1169. return returned_bytes - cur_bytes;
  1170. }
  1171. EXPORT_SYMBOL(osd_req_decode_get_attr_list);
  1172. /*
  1173. * Attributes Page-mode
  1174. */
  1175. int osd_req_add_get_attr_page(struct osd_request *or,
  1176. u32 page_id, void *attar_page, unsigned max_page_len,
  1177. const struct osd_attr *set_one_attr)
  1178. {
  1179. struct osd_cdb_head *cdbh = osd_cdb_head(&or->cdb);
  1180. if (or->attributes_mode &&
  1181. or->attributes_mode != OSD_CDB_GET_ATTR_PAGE_SET_ONE) {
  1182. WARN_ON(1);
  1183. return -EINVAL;
  1184. }
  1185. or->attributes_mode = OSD_CDB_GET_ATTR_PAGE_SET_ONE;
  1186. or->get_attr.buff = attar_page;
  1187. or->get_attr.total_bytes = max_page_len;
  1188. cdbh->attrs_page.get_attr_page = cpu_to_be32(page_id);
  1189. cdbh->attrs_page.get_attr_alloc_length = cpu_to_be32(max_page_len);
  1190. if (!set_one_attr || !set_one_attr->attr_page)
  1191. return 0; /* The set is optional */
  1192. or->set_attr.buff = set_one_attr->val_ptr;
  1193. or->set_attr.total_bytes = set_one_attr->len;
  1194. cdbh->attrs_page.set_attr_page = cpu_to_be32(set_one_attr->attr_page);
  1195. cdbh->attrs_page.set_attr_id = cpu_to_be32(set_one_attr->attr_id);
  1196. cdbh->attrs_page.set_attr_length = cpu_to_be32(set_one_attr->len);
  1197. return 0;
  1198. }
  1199. EXPORT_SYMBOL(osd_req_add_get_attr_page);
  1200. static int _osd_req_finalize_attr_page(struct osd_request *or)
  1201. {
  1202. struct osd_cdb_head *cdbh = osd_cdb_head(&or->cdb);
  1203. unsigned in_padding, out_padding;
  1204. int ret;
  1205. /* returned page */
  1206. cdbh->attrs_page.get_attr_offset =
  1207. osd_req_encode_offset(or, or->in.total_bytes, &in_padding);
  1208. ret = _req_append_segment(or, in_padding, &or->get_attr, NULL,
  1209. &or->in);
  1210. if (ret)
  1211. return ret;
  1212. if (or->set_attr.total_bytes == 0)
  1213. return 0;
  1214. /* set one value */
  1215. cdbh->attrs_page.set_attr_offset =
  1216. osd_req_encode_offset(or, or->out.total_bytes, &out_padding);
  1217. ret = _req_append_segment(or, out_padding, &or->set_attr, NULL,
  1218. &or->out);
  1219. return ret;
  1220. }
  1221. static inline void osd_sec_parms_set_out_offset(bool is_v1,
  1222. struct osd_security_parameters *sec_parms, osd_cdb_offset offset)
  1223. {
  1224. if (is_v1)
  1225. sec_parms->v1.data_out_integrity_check_offset = offset;
  1226. else
  1227. sec_parms->v2.data_out_integrity_check_offset = offset;
  1228. }
  1229. static inline void osd_sec_parms_set_in_offset(bool is_v1,
  1230. struct osd_security_parameters *sec_parms, osd_cdb_offset offset)
  1231. {
  1232. if (is_v1)
  1233. sec_parms->v1.data_in_integrity_check_offset = offset;
  1234. else
  1235. sec_parms->v2.data_in_integrity_check_offset = offset;
  1236. }
  1237. static int _osd_req_finalize_data_integrity(struct osd_request *or,
  1238. bool has_in, bool has_out, struct bio *out_data_bio, u64 out_data_bytes,
  1239. const u8 *cap_key)
  1240. {
  1241. struct osd_security_parameters *sec_parms = _osd_req_sec_params(or);
  1242. int ret;
  1243. if (!osd_is_sec_alldata(sec_parms))
  1244. return 0;
  1245. if (has_out) {
  1246. struct _osd_req_data_segment seg = {
  1247. .buff = &or->out_data_integ,
  1248. .total_bytes = sizeof(or->out_data_integ),
  1249. };
  1250. unsigned pad;
  1251. or->out_data_integ.data_bytes = cpu_to_be64(out_data_bytes);
  1252. or->out_data_integ.set_attributes_bytes = cpu_to_be64(
  1253. or->set_attr.total_bytes);
  1254. or->out_data_integ.get_attributes_bytes = cpu_to_be64(
  1255. or->enc_get_attr.total_bytes);
  1256. osd_sec_parms_set_out_offset(osd_req_is_ver1(or), sec_parms,
  1257. osd_req_encode_offset(or, or->out.total_bytes, &pad));
  1258. ret = _req_append_segment(or, pad, &seg, or->out.last_seg,
  1259. &or->out);
  1260. if (ret)
  1261. return ret;
  1262. or->out.last_seg = NULL;
  1263. /* they are now all chained to request sign them all together */
  1264. osd_sec_sign_data(&or->out_data_integ, out_data_bio,
  1265. cap_key);
  1266. }
  1267. if (has_in) {
  1268. struct _osd_req_data_segment seg = {
  1269. .buff = &or->in_data_integ,
  1270. .total_bytes = sizeof(or->in_data_integ),
  1271. };
  1272. unsigned pad;
  1273. osd_sec_parms_set_in_offset(osd_req_is_ver1(or), sec_parms,
  1274. osd_req_encode_offset(or, or->in.total_bytes, &pad));
  1275. ret = _req_append_segment(or, pad, &seg, or->in.last_seg,
  1276. &or->in);
  1277. if (ret)
  1278. return ret;
  1279. or->in.last_seg = NULL;
  1280. }
  1281. return 0;
  1282. }
  1283. /*
  1284. * osd_finalize_request and helpers
  1285. */
  1286. static struct request *_make_request(struct request_queue *q, bool has_write,
  1287. struct _osd_io_info *oii, gfp_t flags)
  1288. {
  1289. struct request *req;
  1290. struct bio *bio = oii->bio;
  1291. int ret;
  1292. req = blk_get_request(q, has_write ? WRITE : READ, flags);
  1293. if (IS_ERR(req))
  1294. return req;
  1295. blk_rq_set_block_pc(req);
  1296. for_each_bio(bio) {
  1297. struct bio *bounce_bio = bio;
  1298. blk_queue_bounce(req->q, &bounce_bio);
  1299. ret = blk_rq_append_bio(req, bounce_bio);
  1300. if (ret)
  1301. return ERR_PTR(ret);
  1302. }
  1303. return req;
  1304. }
  1305. static int _init_blk_request(struct osd_request *or,
  1306. bool has_in, bool has_out)
  1307. {
  1308. gfp_t flags = or->alloc_flags;
  1309. struct scsi_device *scsi_device = or->osd_dev->scsi_device;
  1310. struct request_queue *q = scsi_device->request_queue;
  1311. struct request *req;
  1312. int ret;
  1313. req = _make_request(q, has_out, has_out ? &or->out : &or->in, flags);
  1314. if (IS_ERR(req)) {
  1315. ret = PTR_ERR(req);
  1316. goto out;
  1317. }
  1318. or->request = req;
  1319. req->cmd_flags |= REQ_QUIET;
  1320. req->timeout = or->timeout;
  1321. req->retries = or->retries;
  1322. req->sense = or->sense;
  1323. req->sense_len = 0;
  1324. if (has_out) {
  1325. or->out.req = req;
  1326. if (has_in) {
  1327. /* allocate bidi request */
  1328. req = _make_request(q, false, &or->in, flags);
  1329. if (IS_ERR(req)) {
  1330. OSD_DEBUG("blk_get_request for bidi failed\n");
  1331. ret = PTR_ERR(req);
  1332. goto out;
  1333. }
  1334. blk_rq_set_block_pc(req);
  1335. or->in.req = or->request->next_rq = req;
  1336. }
  1337. } else if (has_in)
  1338. or->in.req = req;
  1339. ret = 0;
  1340. out:
  1341. OSD_DEBUG("or=%p has_in=%d has_out=%d => %d, %p\n",
  1342. or, has_in, has_out, ret, or->request);
  1343. return ret;
  1344. }
  1345. int osd_finalize_request(struct osd_request *or,
  1346. u8 options, const void *cap, const u8 *cap_key)
  1347. {
  1348. struct osd_cdb_head *cdbh = osd_cdb_head(&or->cdb);
  1349. bool has_in, has_out;
  1350. /* Save for data_integrity without the cdb_continuation */
  1351. struct bio *out_data_bio = or->out.bio;
  1352. u64 out_data_bytes = or->out.total_bytes;
  1353. int ret;
  1354. if (options & OSD_REQ_FUA)
  1355. cdbh->options |= OSD_CDB_FUA;
  1356. if (options & OSD_REQ_DPO)
  1357. cdbh->options |= OSD_CDB_DPO;
  1358. if (options & OSD_REQ_BYPASS_TIMESTAMPS)
  1359. cdbh->timestamp_control = OSD_CDB_BYPASS_TIMESTAMPS;
  1360. osd_set_caps(&or->cdb, cap);
  1361. has_in = or->in.bio || or->get_attr.total_bytes;
  1362. has_out = or->out.bio || or->cdb_cont.total_bytes ||
  1363. or->set_attr.total_bytes || or->enc_get_attr.total_bytes;
  1364. ret = _osd_req_finalize_cdb_cont(or, cap_key);
  1365. if (ret) {
  1366. OSD_DEBUG("_osd_req_finalize_cdb_cont failed\n");
  1367. return ret;
  1368. }
  1369. ret = _init_blk_request(or, has_in, has_out);
  1370. if (ret) {
  1371. OSD_DEBUG("_init_blk_request failed\n");
  1372. return ret;
  1373. }
  1374. or->out.pad_buff = sg_out_pad_buffer;
  1375. or->in.pad_buff = sg_in_pad_buffer;
  1376. if (!or->attributes_mode)
  1377. or->attributes_mode = OSD_CDB_GET_SET_ATTR_LISTS;
  1378. cdbh->command_specific_options |= or->attributes_mode;
  1379. if (or->attributes_mode == OSD_CDB_GET_ATTR_PAGE_SET_ONE) {
  1380. ret = _osd_req_finalize_attr_page(or);
  1381. if (ret) {
  1382. OSD_DEBUG("_osd_req_finalize_attr_page failed\n");
  1383. return ret;
  1384. }
  1385. } else {
  1386. /* TODO: I think that for the GET_ATTR command these 2 should
  1387. * be reversed to keep them in execution order (for embeded
  1388. * targets with low memory footprint)
  1389. */
  1390. ret = _osd_req_finalize_set_attr_list(or);
  1391. if (ret) {
  1392. OSD_DEBUG("_osd_req_finalize_set_attr_list failed\n");
  1393. return ret;
  1394. }
  1395. ret = _osd_req_finalize_get_attr_list(or);
  1396. if (ret) {
  1397. OSD_DEBUG("_osd_req_finalize_get_attr_list failed\n");
  1398. return ret;
  1399. }
  1400. }
  1401. ret = _osd_req_finalize_data_integrity(or, has_in, has_out,
  1402. out_data_bio, out_data_bytes,
  1403. cap_key);
  1404. if (ret)
  1405. return ret;
  1406. osd_sec_sign_cdb(&or->cdb, cap_key);
  1407. or->request->cmd = or->cdb.buff;
  1408. or->request->cmd_len = _osd_req_cdb_len(or);
  1409. return 0;
  1410. }
  1411. EXPORT_SYMBOL(osd_finalize_request);
  1412. static bool _is_osd_security_code(int code)
  1413. {
  1414. return (code == osd_security_audit_value_frozen) ||
  1415. (code == osd_security_working_key_frozen) ||
  1416. (code == osd_nonce_not_unique) ||
  1417. (code == osd_nonce_timestamp_out_of_range) ||
  1418. (code == osd_invalid_dataout_buffer_integrity_check_value);
  1419. }
  1420. #define OSD_SENSE_PRINT1(fmt, a...) \
  1421. do { \
  1422. if (__cur_sense_need_output) \
  1423. OSD_ERR(fmt, ##a); \
  1424. } while (0)
  1425. #define OSD_SENSE_PRINT2(fmt, a...) OSD_SENSE_PRINT1(" " fmt, ##a)
  1426. int osd_req_decode_sense_full(struct osd_request *or,
  1427. struct osd_sense_info *osi, bool silent,
  1428. struct osd_obj_id *bad_obj_list __unused, int max_obj __unused,
  1429. struct osd_attr *bad_attr_list, int max_attr)
  1430. {
  1431. int sense_len, original_sense_len;
  1432. struct osd_sense_info local_osi;
  1433. struct scsi_sense_descriptor_based *ssdb;
  1434. void *cur_descriptor;
  1435. #if (CONFIG_SCSI_OSD_DPRINT_SENSE == 0)
  1436. const bool __cur_sense_need_output = false;
  1437. #else
  1438. bool __cur_sense_need_output = !silent;
  1439. #endif
  1440. int ret;
  1441. if (likely(!or->req_errors))
  1442. return 0;
  1443. osi = osi ? : &local_osi;
  1444. memset(osi, 0, sizeof(*osi));
  1445. ssdb = (typeof(ssdb))or->sense;
  1446. sense_len = or->sense_len;
  1447. if ((sense_len < (int)sizeof(*ssdb) || !ssdb->sense_key)) {
  1448. OSD_ERR("Block-layer returned error(0x%x) but "
  1449. "sense_len(%u) || key(%d) is empty\n",
  1450. or->req_errors, sense_len, ssdb->sense_key);
  1451. goto analyze;
  1452. }
  1453. if ((ssdb->response_code != 0x72) && (ssdb->response_code != 0x73)) {
  1454. OSD_ERR("Unrecognized scsi sense: rcode=%x length=%d\n",
  1455. ssdb->response_code, sense_len);
  1456. goto analyze;
  1457. }
  1458. osi->key = ssdb->sense_key;
  1459. osi->additional_code = be16_to_cpu(ssdb->additional_sense_code);
  1460. original_sense_len = ssdb->additional_sense_length + 8;
  1461. #if (CONFIG_SCSI_OSD_DPRINT_SENSE == 1)
  1462. if (__cur_sense_need_output)
  1463. __cur_sense_need_output = (osi->key > scsi_sk_recovered_error);
  1464. #endif
  1465. OSD_SENSE_PRINT1("Main Sense information key=0x%x length(%d, %d) "
  1466. "additional_code=0x%x async_error=%d errors=0x%x\n",
  1467. osi->key, original_sense_len, sense_len,
  1468. osi->additional_code, or->async_error,
  1469. or->req_errors);
  1470. if (original_sense_len < sense_len)
  1471. sense_len = original_sense_len;
  1472. cur_descriptor = ssdb->ssd;
  1473. sense_len -= sizeof(*ssdb);
  1474. while (sense_len > 0) {
  1475. struct scsi_sense_descriptor *ssd = cur_descriptor;
  1476. int cur_len = ssd->additional_length + 2;
  1477. sense_len -= cur_len;
  1478. if (sense_len < 0)
  1479. break; /* sense was truncated */
  1480. switch (ssd->descriptor_type) {
  1481. case scsi_sense_information:
  1482. case scsi_sense_command_specific_information:
  1483. {
  1484. struct scsi_sense_command_specific_data_descriptor
  1485. *sscd = cur_descriptor;
  1486. osi->command_info =
  1487. get_unaligned_be64(&sscd->information) ;
  1488. OSD_SENSE_PRINT2(
  1489. "command_specific_information 0x%llx \n",
  1490. _LLU(osi->command_info));
  1491. break;
  1492. }
  1493. case scsi_sense_key_specific:
  1494. {
  1495. struct scsi_sense_key_specific_data_descriptor
  1496. *ssks = cur_descriptor;
  1497. osi->sense_info = get_unaligned_be16(&ssks->value);
  1498. OSD_SENSE_PRINT2(
  1499. "sense_key_specific_information %u"
  1500. "sksv_cd_bpv_bp (0x%x)\n",
  1501. osi->sense_info, ssks->sksv_cd_bpv_bp);
  1502. break;
  1503. }
  1504. case osd_sense_object_identification:
  1505. { /*FIXME: Keep first not last, Store in array*/
  1506. struct osd_sense_identification_data_descriptor
  1507. *osidd = cur_descriptor;
  1508. osi->not_initiated_command_functions =
  1509. le32_to_cpu(osidd->not_initiated_functions);
  1510. osi->completed_command_functions =
  1511. le32_to_cpu(osidd->completed_functions);
  1512. osi->obj.partition = be64_to_cpu(osidd->partition_id);
  1513. osi->obj.id = be64_to_cpu(osidd->object_id);
  1514. OSD_SENSE_PRINT2(
  1515. "object_identification pid=0x%llx oid=0x%llx\n",
  1516. _LLU(osi->obj.partition), _LLU(osi->obj.id));
  1517. OSD_SENSE_PRINT2(
  1518. "not_initiated_bits(%x) "
  1519. "completed_command_bits(%x)\n",
  1520. osi->not_initiated_command_functions,
  1521. osi->completed_command_functions);
  1522. break;
  1523. }
  1524. case osd_sense_response_integrity_check:
  1525. {
  1526. struct osd_sense_response_integrity_check_descriptor
  1527. *osricd = cur_descriptor;
  1528. const unsigned len =
  1529. sizeof(osricd->integrity_check_value);
  1530. char key_dump[len*4 + 2]; /* 2nibbles+space+ASCII */
  1531. hex_dump_to_buffer(osricd->integrity_check_value, len,
  1532. 32, 1, key_dump, sizeof(key_dump), true);
  1533. OSD_SENSE_PRINT2("response_integrity [%s]\n", key_dump);
  1534. }
  1535. case osd_sense_attribute_identification:
  1536. {
  1537. struct osd_sense_attributes_data_descriptor
  1538. *osadd = cur_descriptor;
  1539. unsigned len = min(cur_len, sense_len);
  1540. struct osd_sense_attr *pattr = osadd->sense_attrs;
  1541. while (len >= sizeof(*pattr)) {
  1542. u32 attr_page = be32_to_cpu(pattr->attr_page);
  1543. u32 attr_id = be32_to_cpu(pattr->attr_id);
  1544. if (!osi->attr.attr_page) {
  1545. osi->attr.attr_page = attr_page;
  1546. osi->attr.attr_id = attr_id;
  1547. }
  1548. if (bad_attr_list && max_attr) {
  1549. bad_attr_list->attr_page = attr_page;
  1550. bad_attr_list->attr_id = attr_id;
  1551. bad_attr_list++;
  1552. max_attr--;
  1553. }
  1554. len -= sizeof(*pattr);
  1555. OSD_SENSE_PRINT2(
  1556. "osd_sense_attribute_identification"
  1557. "attr_page=0x%x attr_id=0x%x\n",
  1558. attr_page, attr_id);
  1559. }
  1560. }
  1561. /*These are not legal for OSD*/
  1562. case scsi_sense_field_replaceable_unit:
  1563. OSD_SENSE_PRINT2("scsi_sense_field_replaceable_unit\n");
  1564. break;
  1565. case scsi_sense_stream_commands:
  1566. OSD_SENSE_PRINT2("scsi_sense_stream_commands\n");
  1567. break;
  1568. case scsi_sense_block_commands:
  1569. OSD_SENSE_PRINT2("scsi_sense_block_commands\n");
  1570. break;
  1571. case scsi_sense_ata_return:
  1572. OSD_SENSE_PRINT2("scsi_sense_ata_return\n");
  1573. break;
  1574. default:
  1575. if (ssd->descriptor_type <= scsi_sense_Reserved_last)
  1576. OSD_SENSE_PRINT2(
  1577. "scsi_sense Reserved descriptor (0x%x)",
  1578. ssd->descriptor_type);
  1579. else
  1580. OSD_SENSE_PRINT2(
  1581. "scsi_sense Vendor descriptor (0x%x)",
  1582. ssd->descriptor_type);
  1583. }
  1584. cur_descriptor += cur_len;
  1585. }
  1586. analyze:
  1587. if (!osi->key) {
  1588. /* scsi sense is Empty, the request was never issued to target
  1589. * linux return code might tell us what happened.
  1590. */
  1591. if (or->async_error == -ENOMEM)
  1592. osi->osd_err_pri = OSD_ERR_PRI_RESOURCE;
  1593. else
  1594. osi->osd_err_pri = OSD_ERR_PRI_UNREACHABLE;
  1595. ret = or->async_error;
  1596. } else if (osi->key <= scsi_sk_recovered_error) {
  1597. osi->osd_err_pri = 0;
  1598. ret = 0;
  1599. } else if (osi->additional_code == scsi_invalid_field_in_cdb) {
  1600. if (osi->cdb_field_offset == OSD_CFO_STARTING_BYTE) {
  1601. osi->osd_err_pri = OSD_ERR_PRI_CLEAR_PAGES;
  1602. ret = -EFAULT; /* caller should recover from this */
  1603. } else if (osi->cdb_field_offset == OSD_CFO_OBJECT_ID) {
  1604. osi->osd_err_pri = OSD_ERR_PRI_NOT_FOUND;
  1605. ret = -ENOENT;
  1606. } else if (osi->cdb_field_offset == OSD_CFO_PERMISSIONS) {
  1607. osi->osd_err_pri = OSD_ERR_PRI_NO_ACCESS;
  1608. ret = -EACCES;
  1609. } else {
  1610. osi->osd_err_pri = OSD_ERR_PRI_BAD_CRED;
  1611. ret = -EINVAL;
  1612. }
  1613. } else if (osi->additional_code == osd_quota_error) {
  1614. osi->osd_err_pri = OSD_ERR_PRI_NO_SPACE;
  1615. ret = -ENOSPC;
  1616. } else if (_is_osd_security_code(osi->additional_code)) {
  1617. osi->osd_err_pri = OSD_ERR_PRI_BAD_CRED;
  1618. ret = -EINVAL;
  1619. } else {
  1620. osi->osd_err_pri = OSD_ERR_PRI_EIO;
  1621. ret = -EIO;
  1622. }
  1623. if (!or->out.residual)
  1624. or->out.residual = or->out.total_bytes;
  1625. if (!or->in.residual)
  1626. or->in.residual = or->in.total_bytes;
  1627. return ret;
  1628. }
  1629. EXPORT_SYMBOL(osd_req_decode_sense_full);
  1630. /*
  1631. * Implementation of osd_sec.h API
  1632. * TODO: Move to a separate osd_sec.c file at a later stage.
  1633. */
  1634. enum { OSD_SEC_CAP_V1_ALL_CAPS =
  1635. OSD_SEC_CAP_APPEND | OSD_SEC_CAP_OBJ_MGMT | OSD_SEC_CAP_REMOVE |
  1636. OSD_SEC_CAP_CREATE | OSD_SEC_CAP_SET_ATTR | OSD_SEC_CAP_GET_ATTR |
  1637. OSD_SEC_CAP_WRITE | OSD_SEC_CAP_READ | OSD_SEC_CAP_POL_SEC |
  1638. OSD_SEC_CAP_GLOBAL | OSD_SEC_CAP_DEV_MGMT
  1639. };
  1640. enum { OSD_SEC_CAP_V2_ALL_CAPS =
  1641. OSD_SEC_CAP_V1_ALL_CAPS | OSD_SEC_CAP_QUERY | OSD_SEC_CAP_M_OBJECT
  1642. };
  1643. void osd_sec_init_nosec_doall_caps(void *caps,
  1644. const struct osd_obj_id *obj, bool is_collection, const bool is_v1)
  1645. {
  1646. struct osd_capability *cap = caps;
  1647. u8 type;
  1648. u8 descriptor_type;
  1649. if (likely(obj->id)) {
  1650. if (unlikely(is_collection)) {
  1651. type = OSD_SEC_OBJ_COLLECTION;
  1652. descriptor_type = is_v1 ? OSD_SEC_OBJ_DESC_OBJ :
  1653. OSD_SEC_OBJ_DESC_COL;
  1654. } else {
  1655. type = OSD_SEC_OBJ_USER;
  1656. descriptor_type = OSD_SEC_OBJ_DESC_OBJ;
  1657. }
  1658. WARN_ON(!obj->partition);
  1659. } else {
  1660. type = obj->partition ? OSD_SEC_OBJ_PARTITION :
  1661. OSD_SEC_OBJ_ROOT;
  1662. descriptor_type = OSD_SEC_OBJ_DESC_PAR;
  1663. }
  1664. memset(cap, 0, sizeof(*cap));
  1665. cap->h.format = OSD_SEC_CAP_FORMAT_VER1;
  1666. cap->h.integrity_algorithm__key_version = 0; /* MAKE_BYTE(0, 0); */
  1667. cap->h.security_method = OSD_SEC_NOSEC;
  1668. /* cap->expiration_time;
  1669. cap->AUDIT[30-10];
  1670. cap->discriminator[42-30];
  1671. cap->object_created_time; */
  1672. cap->h.object_type = type;
  1673. osd_sec_set_caps(&cap->h, OSD_SEC_CAP_V1_ALL_CAPS);
  1674. cap->h.object_descriptor_type = descriptor_type;
  1675. cap->od.obj_desc.policy_access_tag = 0;
  1676. cap->od.obj_desc.allowed_partition_id = cpu_to_be64(obj->partition);
  1677. cap->od.obj_desc.allowed_object_id = cpu_to_be64(obj->id);
  1678. }
  1679. EXPORT_SYMBOL(osd_sec_init_nosec_doall_caps);
  1680. /* FIXME: Extract version from caps pointer.
  1681. * Also Pete's target only supports caps from OSDv1 for now
  1682. */
  1683. void osd_set_caps(struct osd_cdb *cdb, const void *caps)
  1684. {
  1685. /* NOTE: They start at same address */
  1686. memcpy(&cdb->v1.caps, caps, OSDv1_CAP_LEN);
  1687. }
  1688. bool osd_is_sec_alldata(struct osd_security_parameters *sec_parms __unused)
  1689. {
  1690. return false;
  1691. }
  1692. void osd_sec_sign_cdb(struct osd_cdb *ocdb __unused, const u8 *cap_key __unused)
  1693. {
  1694. }
  1695. void osd_sec_sign_data(void *data_integ __unused,
  1696. struct bio *bio __unused, const u8 *cap_key __unused)
  1697. {
  1698. }
  1699. /*
  1700. * Declared in osd_protocol.h
  1701. * 4.12.5 Data-In and Data-Out buffer offsets
  1702. * byte offset = mantissa * (2^(exponent+8))
  1703. * Returns the smallest allowed encoded offset that contains given @offset
  1704. * The actual encoded offset returned is @offset + *@padding.
  1705. */
  1706. osd_cdb_offset __osd_encode_offset(
  1707. u64 offset, unsigned *padding, int min_shift, int max_shift)
  1708. {
  1709. u64 try_offset = -1, mod, align;
  1710. osd_cdb_offset be32_offset;
  1711. int shift;
  1712. *padding = 0;
  1713. if (!offset)
  1714. return 0;
  1715. for (shift = min_shift; shift < max_shift; ++shift) {
  1716. try_offset = offset >> shift;
  1717. if (try_offset < (1 << OSD_OFFSET_MAX_BITS))
  1718. break;
  1719. }
  1720. BUG_ON(shift == max_shift);
  1721. align = 1 << shift;
  1722. mod = offset & (align - 1);
  1723. if (mod) {
  1724. *padding = align - mod;
  1725. try_offset += 1;
  1726. }
  1727. try_offset |= ((shift - 8) & 0xf) << 28;
  1728. be32_offset = cpu_to_be32((u32)try_offset);
  1729. OSD_DEBUG("offset=%llu mantissa=%llu exp=%d encoded=%x pad=%d\n",
  1730. _LLU(offset), _LLU(try_offset & 0x0FFFFFFF), shift,
  1731. be32_offset, *padding);
  1732. return be32_offset;
  1733. }