target_core_xcopy.c 31 KB

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  1. /*******************************************************************************
  2. * Filename: target_core_xcopy.c
  3. *
  4. * This file contains support for SPC-4 Extended-Copy offload with generic
  5. * TCM backends.
  6. *
  7. * Copyright (c) 2011-2013 Datera, Inc. All rights reserved.
  8. *
  9. * Author:
  10. * Nicholas A. Bellinger <nab@daterainc.com>
  11. *
  12. * This program is free software; you can redistribute it and/or modify
  13. * it under the terms of the GNU General Public License as published by
  14. * the Free Software Foundation; either version 2 of the License, or
  15. * (at your option) any later version.
  16. *
  17. * This program is distributed in the hope that it will be useful,
  18. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  19. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  20. * GNU General Public License for more details.
  21. *
  22. ******************************************************************************/
  23. #include <linux/slab.h>
  24. #include <linux/spinlock.h>
  25. #include <linux/list.h>
  26. #include <linux/configfs.h>
  27. #include <linux/ratelimit.h>
  28. #include <scsi/scsi_proto.h>
  29. #include <asm/unaligned.h>
  30. #include <target/target_core_base.h>
  31. #include <target/target_core_backend.h>
  32. #include <target/target_core_fabric.h>
  33. #include "target_core_internal.h"
  34. #include "target_core_pr.h"
  35. #include "target_core_ua.h"
  36. #include "target_core_xcopy.h"
  37. static struct workqueue_struct *xcopy_wq = NULL;
  38. static sense_reason_t target_parse_xcopy_cmd(struct xcopy_op *xop);
  39. static int target_xcopy_gen_naa_ieee(struct se_device *dev, unsigned char *buf)
  40. {
  41. int off = 0;
  42. buf[off++] = (0x6 << 4);
  43. buf[off++] = 0x01;
  44. buf[off++] = 0x40;
  45. buf[off] = (0x5 << 4);
  46. spc_parse_naa_6h_vendor_specific(dev, &buf[off]);
  47. return 0;
  48. }
  49. struct xcopy_dev_search_info {
  50. const unsigned char *dev_wwn;
  51. struct se_device *found_dev;
  52. };
  53. static int target_xcopy_locate_se_dev_e4_iter(struct se_device *se_dev,
  54. void *data)
  55. {
  56. struct xcopy_dev_search_info *info = data;
  57. unsigned char tmp_dev_wwn[XCOPY_NAA_IEEE_REGEX_LEN];
  58. int rc;
  59. if (!se_dev->dev_attrib.emulate_3pc)
  60. return 0;
  61. memset(&tmp_dev_wwn[0], 0, XCOPY_NAA_IEEE_REGEX_LEN);
  62. target_xcopy_gen_naa_ieee(se_dev, &tmp_dev_wwn[0]);
  63. rc = memcmp(&tmp_dev_wwn[0], info->dev_wwn, XCOPY_NAA_IEEE_REGEX_LEN);
  64. if (rc != 0)
  65. return 0;
  66. info->found_dev = se_dev;
  67. pr_debug("XCOPY 0xe4: located se_dev: %p\n", se_dev);
  68. rc = target_depend_item(&se_dev->dev_group.cg_item);
  69. if (rc != 0) {
  70. pr_err("configfs_depend_item attempt failed: %d for se_dev: %p\n",
  71. rc, se_dev);
  72. return rc;
  73. }
  74. pr_debug("Called configfs_depend_item for se_dev: %p se_dev->se_dev_group: %p\n",
  75. se_dev, &se_dev->dev_group);
  76. return 1;
  77. }
  78. static int target_xcopy_locate_se_dev_e4(const unsigned char *dev_wwn,
  79. struct se_device **found_dev)
  80. {
  81. struct xcopy_dev_search_info info;
  82. int ret;
  83. memset(&info, 0, sizeof(info));
  84. info.dev_wwn = dev_wwn;
  85. ret = target_for_each_device(target_xcopy_locate_se_dev_e4_iter, &info);
  86. if (ret == 1) {
  87. *found_dev = info.found_dev;
  88. return 0;
  89. } else {
  90. pr_debug_ratelimited("Unable to locate 0xe4 descriptor for EXTENDED_COPY\n");
  91. return -EINVAL;
  92. }
  93. }
  94. static int target_xcopy_parse_tiddesc_e4(struct se_cmd *se_cmd, struct xcopy_op *xop,
  95. unsigned char *p, unsigned short cscd_index)
  96. {
  97. unsigned char *desc = p;
  98. unsigned short ript;
  99. u8 desig_len;
  100. /*
  101. * Extract RELATIVE INITIATOR PORT IDENTIFIER
  102. */
  103. ript = get_unaligned_be16(&desc[2]);
  104. pr_debug("XCOPY 0xe4: RELATIVE INITIATOR PORT IDENTIFIER: %hu\n", ript);
  105. /*
  106. * Check for supported code set, association, and designator type
  107. */
  108. if ((desc[4] & 0x0f) != 0x1) {
  109. pr_err("XCOPY 0xe4: code set of non binary type not supported\n");
  110. return -EINVAL;
  111. }
  112. if ((desc[5] & 0x30) != 0x00) {
  113. pr_err("XCOPY 0xe4: association other than LUN not supported\n");
  114. return -EINVAL;
  115. }
  116. if ((desc[5] & 0x0f) != 0x3) {
  117. pr_err("XCOPY 0xe4: designator type unsupported: 0x%02x\n",
  118. (desc[5] & 0x0f));
  119. return -EINVAL;
  120. }
  121. /*
  122. * Check for matching 16 byte length for NAA IEEE Registered Extended
  123. * Assigned designator
  124. */
  125. desig_len = desc[7];
  126. if (desig_len != 16) {
  127. pr_err("XCOPY 0xe4: invalid desig_len: %d\n", (int)desig_len);
  128. return -EINVAL;
  129. }
  130. pr_debug("XCOPY 0xe4: desig_len: %d\n", (int)desig_len);
  131. /*
  132. * Check for NAA IEEE Registered Extended Assigned header..
  133. */
  134. if ((desc[8] & 0xf0) != 0x60) {
  135. pr_err("XCOPY 0xe4: Unsupported DESIGNATOR TYPE: 0x%02x\n",
  136. (desc[8] & 0xf0));
  137. return -EINVAL;
  138. }
  139. if (cscd_index != xop->stdi && cscd_index != xop->dtdi) {
  140. pr_debug("XCOPY 0xe4: ignoring CSCD entry %d - neither src nor "
  141. "dest\n", cscd_index);
  142. return 0;
  143. }
  144. if (cscd_index == xop->stdi) {
  145. memcpy(&xop->src_tid_wwn[0], &desc[8], XCOPY_NAA_IEEE_REGEX_LEN);
  146. /*
  147. * Determine if the source designator matches the local device
  148. */
  149. if (!memcmp(&xop->local_dev_wwn[0], &xop->src_tid_wwn[0],
  150. XCOPY_NAA_IEEE_REGEX_LEN)) {
  151. xop->op_origin = XCOL_SOURCE_RECV_OP;
  152. xop->src_dev = se_cmd->se_dev;
  153. pr_debug("XCOPY 0xe4: Set xop->src_dev %p from source"
  154. " received xop\n", xop->src_dev);
  155. }
  156. }
  157. if (cscd_index == xop->dtdi) {
  158. memcpy(&xop->dst_tid_wwn[0], &desc[8], XCOPY_NAA_IEEE_REGEX_LEN);
  159. /*
  160. * Determine if the destination designator matches the local
  161. * device. If @cscd_index corresponds to both source (stdi) and
  162. * destination (dtdi), or dtdi comes after stdi, then
  163. * XCOL_DEST_RECV_OP wins.
  164. */
  165. if (!memcmp(&xop->local_dev_wwn[0], &xop->dst_tid_wwn[0],
  166. XCOPY_NAA_IEEE_REGEX_LEN)) {
  167. xop->op_origin = XCOL_DEST_RECV_OP;
  168. xop->dst_dev = se_cmd->se_dev;
  169. pr_debug("XCOPY 0xe4: Set xop->dst_dev: %p from destination"
  170. " received xop\n", xop->dst_dev);
  171. }
  172. }
  173. return 0;
  174. }
  175. static int target_xcopy_parse_target_descriptors(struct se_cmd *se_cmd,
  176. struct xcopy_op *xop, unsigned char *p,
  177. unsigned short tdll, sense_reason_t *sense_ret)
  178. {
  179. struct se_device *local_dev = se_cmd->se_dev;
  180. unsigned char *desc = p;
  181. int offset = tdll % XCOPY_TARGET_DESC_LEN, rc;
  182. unsigned short cscd_index = 0;
  183. unsigned short start = 0;
  184. *sense_ret = TCM_INVALID_PARAMETER_LIST;
  185. if (offset != 0) {
  186. pr_err("XCOPY target descriptor list length is not"
  187. " multiple of %d\n", XCOPY_TARGET_DESC_LEN);
  188. *sense_ret = TCM_UNSUPPORTED_TARGET_DESC_TYPE_CODE;
  189. return -EINVAL;
  190. }
  191. if (tdll > RCR_OP_MAX_TARGET_DESC_COUNT * XCOPY_TARGET_DESC_LEN) {
  192. pr_err("XCOPY target descriptor supports a maximum"
  193. " two src/dest descriptors, tdll: %hu too large..\n", tdll);
  194. /* spc4r37 6.4.3.4 CSCD DESCRIPTOR LIST LENGTH field */
  195. *sense_ret = TCM_TOO_MANY_TARGET_DESCS;
  196. return -EINVAL;
  197. }
  198. /*
  199. * Generate an IEEE Registered Extended designator based upon the
  200. * se_device the XCOPY was received upon..
  201. */
  202. memset(&xop->local_dev_wwn[0], 0, XCOPY_NAA_IEEE_REGEX_LEN);
  203. target_xcopy_gen_naa_ieee(local_dev, &xop->local_dev_wwn[0]);
  204. while (start < tdll) {
  205. /*
  206. * Check target descriptor identification with 0xE4 type, and
  207. * compare the current index with the CSCD descriptor IDs in
  208. * the segment descriptor. Use VPD 0x83 WWPN matching ..
  209. */
  210. switch (desc[0]) {
  211. case 0xe4:
  212. rc = target_xcopy_parse_tiddesc_e4(se_cmd, xop,
  213. &desc[0], cscd_index);
  214. if (rc != 0)
  215. goto out;
  216. start += XCOPY_TARGET_DESC_LEN;
  217. desc += XCOPY_TARGET_DESC_LEN;
  218. cscd_index++;
  219. break;
  220. default:
  221. pr_err("XCOPY unsupported descriptor type code:"
  222. " 0x%02x\n", desc[0]);
  223. *sense_ret = TCM_UNSUPPORTED_TARGET_DESC_TYPE_CODE;
  224. goto out;
  225. }
  226. }
  227. switch (xop->op_origin) {
  228. case XCOL_SOURCE_RECV_OP:
  229. rc = target_xcopy_locate_se_dev_e4(xop->dst_tid_wwn,
  230. &xop->dst_dev);
  231. break;
  232. case XCOL_DEST_RECV_OP:
  233. rc = target_xcopy_locate_se_dev_e4(xop->src_tid_wwn,
  234. &xop->src_dev);
  235. break;
  236. default:
  237. pr_err("XCOPY CSCD descriptor IDs not found in CSCD list - "
  238. "stdi: %hu dtdi: %hu\n", xop->stdi, xop->dtdi);
  239. rc = -EINVAL;
  240. break;
  241. }
  242. /*
  243. * If a matching IEEE NAA 0x83 descriptor for the requested device
  244. * is not located on this node, return COPY_ABORTED with ASQ/ASQC
  245. * 0x0d/0x02 - COPY_TARGET_DEVICE_NOT_REACHABLE to request the
  246. * initiator to fall back to normal copy method.
  247. */
  248. if (rc < 0) {
  249. *sense_ret = TCM_COPY_TARGET_DEVICE_NOT_REACHABLE;
  250. goto out;
  251. }
  252. pr_debug("XCOPY TGT desc: Source dev: %p NAA IEEE WWN: 0x%16phN\n",
  253. xop->src_dev, &xop->src_tid_wwn[0]);
  254. pr_debug("XCOPY TGT desc: Dest dev: %p NAA IEEE WWN: 0x%16phN\n",
  255. xop->dst_dev, &xop->dst_tid_wwn[0]);
  256. return cscd_index;
  257. out:
  258. return -EINVAL;
  259. }
  260. static int target_xcopy_parse_segdesc_02(struct se_cmd *se_cmd, struct xcopy_op *xop,
  261. unsigned char *p)
  262. {
  263. unsigned char *desc = p;
  264. int dc = (desc[1] & 0x02);
  265. unsigned short desc_len;
  266. desc_len = get_unaligned_be16(&desc[2]);
  267. if (desc_len != 0x18) {
  268. pr_err("XCOPY segment desc 0x02: Illegal desc_len:"
  269. " %hu\n", desc_len);
  270. return -EINVAL;
  271. }
  272. xop->stdi = get_unaligned_be16(&desc[4]);
  273. xop->dtdi = get_unaligned_be16(&desc[6]);
  274. if (xop->stdi > XCOPY_CSCD_DESC_ID_LIST_OFF_MAX ||
  275. xop->dtdi > XCOPY_CSCD_DESC_ID_LIST_OFF_MAX) {
  276. pr_err("XCOPY segment desc 0x02: unsupported CSCD ID > 0x%x; stdi: %hu dtdi: %hu\n",
  277. XCOPY_CSCD_DESC_ID_LIST_OFF_MAX, xop->stdi, xop->dtdi);
  278. return -EINVAL;
  279. }
  280. pr_debug("XCOPY seg desc 0x02: desc_len: %hu stdi: %hu dtdi: %hu, DC: %d\n",
  281. desc_len, xop->stdi, xop->dtdi, dc);
  282. xop->nolb = get_unaligned_be16(&desc[10]);
  283. xop->src_lba = get_unaligned_be64(&desc[12]);
  284. xop->dst_lba = get_unaligned_be64(&desc[20]);
  285. pr_debug("XCOPY seg desc 0x02: nolb: %hu src_lba: %llu dst_lba: %llu\n",
  286. xop->nolb, (unsigned long long)xop->src_lba,
  287. (unsigned long long)xop->dst_lba);
  288. if (dc != 0) {
  289. xop->dbl = get_unaligned_be24(&desc[29]);
  290. pr_debug("XCOPY seg desc 0x02: DC=1 w/ dbl: %u\n", xop->dbl);
  291. }
  292. return 0;
  293. }
  294. static int target_xcopy_parse_segment_descriptors(struct se_cmd *se_cmd,
  295. struct xcopy_op *xop, unsigned char *p,
  296. unsigned int sdll, sense_reason_t *sense_ret)
  297. {
  298. unsigned char *desc = p;
  299. unsigned int start = 0;
  300. int offset = sdll % XCOPY_SEGMENT_DESC_LEN, rc, ret = 0;
  301. *sense_ret = TCM_INVALID_PARAMETER_LIST;
  302. if (offset != 0) {
  303. pr_err("XCOPY segment descriptor list length is not"
  304. " multiple of %d\n", XCOPY_SEGMENT_DESC_LEN);
  305. *sense_ret = TCM_UNSUPPORTED_SEGMENT_DESC_TYPE_CODE;
  306. return -EINVAL;
  307. }
  308. if (sdll > RCR_OP_MAX_SG_DESC_COUNT * XCOPY_SEGMENT_DESC_LEN) {
  309. pr_err("XCOPY supports %u segment descriptor(s), sdll: %u too"
  310. " large..\n", RCR_OP_MAX_SG_DESC_COUNT, sdll);
  311. /* spc4r37 6.4.3.5 SEGMENT DESCRIPTOR LIST LENGTH field */
  312. *sense_ret = TCM_TOO_MANY_SEGMENT_DESCS;
  313. return -EINVAL;
  314. }
  315. while (start < sdll) {
  316. /*
  317. * Check segment descriptor type code for block -> block
  318. */
  319. switch (desc[0]) {
  320. case 0x02:
  321. rc = target_xcopy_parse_segdesc_02(se_cmd, xop, desc);
  322. if (rc < 0)
  323. goto out;
  324. ret++;
  325. start += XCOPY_SEGMENT_DESC_LEN;
  326. desc += XCOPY_SEGMENT_DESC_LEN;
  327. break;
  328. default:
  329. pr_err("XCOPY unsupported segment descriptor"
  330. "type: 0x%02x\n", desc[0]);
  331. *sense_ret = TCM_UNSUPPORTED_SEGMENT_DESC_TYPE_CODE;
  332. goto out;
  333. }
  334. }
  335. return ret;
  336. out:
  337. return -EINVAL;
  338. }
  339. /*
  340. * Start xcopy_pt ops
  341. */
  342. struct xcopy_pt_cmd {
  343. bool remote_port;
  344. struct se_cmd se_cmd;
  345. struct xcopy_op *xcopy_op;
  346. struct completion xpt_passthrough_sem;
  347. unsigned char sense_buffer[TRANSPORT_SENSE_BUFFER];
  348. };
  349. struct se_portal_group xcopy_pt_tpg;
  350. static struct se_session xcopy_pt_sess;
  351. static struct se_node_acl xcopy_pt_nacl;
  352. static char *xcopy_pt_get_fabric_name(void)
  353. {
  354. return "xcopy-pt";
  355. }
  356. static int xcopy_pt_get_cmd_state(struct se_cmd *se_cmd)
  357. {
  358. return 0;
  359. }
  360. static void xcopy_pt_undepend_remotedev(struct xcopy_op *xop)
  361. {
  362. struct se_device *remote_dev;
  363. if (xop->op_origin == XCOL_SOURCE_RECV_OP)
  364. remote_dev = xop->dst_dev;
  365. else
  366. remote_dev = xop->src_dev;
  367. pr_debug("Calling configfs_undepend_item for"
  368. " remote_dev: %p remote_dev->dev_group: %p\n",
  369. remote_dev, &remote_dev->dev_group.cg_item);
  370. target_undepend_item(&remote_dev->dev_group.cg_item);
  371. }
  372. static void xcopy_pt_release_cmd(struct se_cmd *se_cmd)
  373. {
  374. struct xcopy_pt_cmd *xpt_cmd = container_of(se_cmd,
  375. struct xcopy_pt_cmd, se_cmd);
  376. kfree(xpt_cmd);
  377. }
  378. static int xcopy_pt_check_stop_free(struct se_cmd *se_cmd)
  379. {
  380. struct xcopy_pt_cmd *xpt_cmd = container_of(se_cmd,
  381. struct xcopy_pt_cmd, se_cmd);
  382. complete(&xpt_cmd->xpt_passthrough_sem);
  383. return 0;
  384. }
  385. static int xcopy_pt_write_pending(struct se_cmd *se_cmd)
  386. {
  387. return 0;
  388. }
  389. static int xcopy_pt_write_pending_status(struct se_cmd *se_cmd)
  390. {
  391. return 0;
  392. }
  393. static int xcopy_pt_queue_data_in(struct se_cmd *se_cmd)
  394. {
  395. return 0;
  396. }
  397. static int xcopy_pt_queue_status(struct se_cmd *se_cmd)
  398. {
  399. return 0;
  400. }
  401. static const struct target_core_fabric_ops xcopy_pt_tfo = {
  402. .get_fabric_name = xcopy_pt_get_fabric_name,
  403. .get_cmd_state = xcopy_pt_get_cmd_state,
  404. .release_cmd = xcopy_pt_release_cmd,
  405. .check_stop_free = xcopy_pt_check_stop_free,
  406. .write_pending = xcopy_pt_write_pending,
  407. .write_pending_status = xcopy_pt_write_pending_status,
  408. .queue_data_in = xcopy_pt_queue_data_in,
  409. .queue_status = xcopy_pt_queue_status,
  410. };
  411. /*
  412. * End xcopy_pt_ops
  413. */
  414. int target_xcopy_setup_pt(void)
  415. {
  416. xcopy_wq = alloc_workqueue("xcopy_wq", WQ_MEM_RECLAIM, 0);
  417. if (!xcopy_wq) {
  418. pr_err("Unable to allocate xcopy_wq\n");
  419. return -ENOMEM;
  420. }
  421. memset(&xcopy_pt_tpg, 0, sizeof(struct se_portal_group));
  422. INIT_LIST_HEAD(&xcopy_pt_tpg.se_tpg_node);
  423. INIT_LIST_HEAD(&xcopy_pt_tpg.acl_node_list);
  424. INIT_LIST_HEAD(&xcopy_pt_tpg.tpg_sess_list);
  425. xcopy_pt_tpg.se_tpg_tfo = &xcopy_pt_tfo;
  426. memset(&xcopy_pt_nacl, 0, sizeof(struct se_node_acl));
  427. INIT_LIST_HEAD(&xcopy_pt_nacl.acl_list);
  428. INIT_LIST_HEAD(&xcopy_pt_nacl.acl_sess_list);
  429. memset(&xcopy_pt_sess, 0, sizeof(struct se_session));
  430. transport_init_session(&xcopy_pt_sess);
  431. xcopy_pt_nacl.se_tpg = &xcopy_pt_tpg;
  432. xcopy_pt_nacl.nacl_sess = &xcopy_pt_sess;
  433. xcopy_pt_sess.se_tpg = &xcopy_pt_tpg;
  434. xcopy_pt_sess.se_node_acl = &xcopy_pt_nacl;
  435. return 0;
  436. }
  437. void target_xcopy_release_pt(void)
  438. {
  439. if (xcopy_wq)
  440. destroy_workqueue(xcopy_wq);
  441. }
  442. static void target_xcopy_setup_pt_port(
  443. struct xcopy_pt_cmd *xpt_cmd,
  444. struct xcopy_op *xop,
  445. bool remote_port)
  446. {
  447. struct se_cmd *ec_cmd = xop->xop_se_cmd;
  448. struct se_cmd *pt_cmd = &xpt_cmd->se_cmd;
  449. if (xop->op_origin == XCOL_SOURCE_RECV_OP) {
  450. /*
  451. * Honor destination port reservations for X-COPY PUSH emulation
  452. * when CDB is received on local source port, and READs blocks to
  453. * WRITE on remote destination port.
  454. */
  455. if (remote_port) {
  456. xpt_cmd->remote_port = remote_port;
  457. } else {
  458. pt_cmd->se_lun = ec_cmd->se_lun;
  459. pt_cmd->se_dev = ec_cmd->se_dev;
  460. pr_debug("Honoring local SRC port from ec_cmd->se_dev:"
  461. " %p\n", pt_cmd->se_dev);
  462. pt_cmd->se_lun = ec_cmd->se_lun;
  463. pr_debug("Honoring local SRC port from ec_cmd->se_lun: %p\n",
  464. pt_cmd->se_lun);
  465. }
  466. } else {
  467. /*
  468. * Honor source port reservation for X-COPY PULL emulation
  469. * when CDB is received on local desintation port, and READs
  470. * blocks from the remote source port to WRITE on local
  471. * destination port.
  472. */
  473. if (remote_port) {
  474. xpt_cmd->remote_port = remote_port;
  475. } else {
  476. pt_cmd->se_lun = ec_cmd->se_lun;
  477. pt_cmd->se_dev = ec_cmd->se_dev;
  478. pr_debug("Honoring local DST port from ec_cmd->se_dev:"
  479. " %p\n", pt_cmd->se_dev);
  480. pt_cmd->se_lun = ec_cmd->se_lun;
  481. pr_debug("Honoring local DST port from ec_cmd->se_lun: %p\n",
  482. pt_cmd->se_lun);
  483. }
  484. }
  485. }
  486. static void target_xcopy_init_pt_lun(struct se_device *se_dev,
  487. struct se_cmd *pt_cmd, bool remote_port)
  488. {
  489. /*
  490. * Don't allocate + init an pt_cmd->se_lun if honoring local port for
  491. * reservations. The pt_cmd->se_lun pointer will be setup from within
  492. * target_xcopy_setup_pt_port()
  493. */
  494. if (remote_port) {
  495. pr_debug("Setup emulated se_dev: %p from se_dev\n",
  496. pt_cmd->se_dev);
  497. pt_cmd->se_lun = &se_dev->xcopy_lun;
  498. pt_cmd->se_dev = se_dev;
  499. }
  500. pt_cmd->se_cmd_flags |= SCF_SE_LUN_CMD;
  501. }
  502. static int target_xcopy_setup_pt_cmd(
  503. struct xcopy_pt_cmd *xpt_cmd,
  504. struct xcopy_op *xop,
  505. struct se_device *se_dev,
  506. unsigned char *cdb,
  507. bool remote_port,
  508. bool alloc_mem)
  509. {
  510. struct se_cmd *cmd = &xpt_cmd->se_cmd;
  511. sense_reason_t sense_rc;
  512. int ret = 0, rc;
  513. /*
  514. * Setup LUN+port to honor reservations based upon xop->op_origin for
  515. * X-COPY PUSH or X-COPY PULL based upon where the CDB was received.
  516. */
  517. target_xcopy_init_pt_lun(se_dev, cmd, remote_port);
  518. xpt_cmd->xcopy_op = xop;
  519. target_xcopy_setup_pt_port(xpt_cmd, xop, remote_port);
  520. cmd->tag = 0;
  521. sense_rc = target_setup_cmd_from_cdb(cmd, cdb);
  522. if (sense_rc) {
  523. ret = -EINVAL;
  524. goto out;
  525. }
  526. if (alloc_mem) {
  527. rc = target_alloc_sgl(&cmd->t_data_sg, &cmd->t_data_nents,
  528. cmd->data_length, false, false);
  529. if (rc < 0) {
  530. ret = rc;
  531. goto out;
  532. }
  533. /*
  534. * Set this bit so that transport_free_pages() allows the
  535. * caller to release SGLs + physical memory allocated by
  536. * transport_generic_get_mem()..
  537. */
  538. cmd->se_cmd_flags |= SCF_PASSTHROUGH_SG_TO_MEM_NOALLOC;
  539. } else {
  540. /*
  541. * Here the previously allocated SGLs for the internal READ
  542. * are mapped zero-copy to the internal WRITE.
  543. */
  544. sense_rc = transport_generic_map_mem_to_cmd(cmd,
  545. xop->xop_data_sg, xop->xop_data_nents,
  546. NULL, 0);
  547. if (sense_rc) {
  548. ret = -EINVAL;
  549. goto out;
  550. }
  551. pr_debug("Setup PASSTHROUGH_NOALLOC t_data_sg: %p t_data_nents:"
  552. " %u\n", cmd->t_data_sg, cmd->t_data_nents);
  553. }
  554. return 0;
  555. out:
  556. return ret;
  557. }
  558. static int target_xcopy_issue_pt_cmd(struct xcopy_pt_cmd *xpt_cmd)
  559. {
  560. struct se_cmd *se_cmd = &xpt_cmd->se_cmd;
  561. sense_reason_t sense_rc;
  562. sense_rc = transport_generic_new_cmd(se_cmd);
  563. if (sense_rc)
  564. return -EINVAL;
  565. if (se_cmd->data_direction == DMA_TO_DEVICE)
  566. target_execute_cmd(se_cmd);
  567. wait_for_completion_interruptible(&xpt_cmd->xpt_passthrough_sem);
  568. pr_debug("target_xcopy_issue_pt_cmd(): SCSI status: 0x%02x\n",
  569. se_cmd->scsi_status);
  570. return (se_cmd->scsi_status) ? -EINVAL : 0;
  571. }
  572. static int target_xcopy_read_source(
  573. struct se_cmd *ec_cmd,
  574. struct xcopy_op *xop,
  575. struct se_device *src_dev,
  576. sector_t src_lba,
  577. u32 src_sectors)
  578. {
  579. struct xcopy_pt_cmd *xpt_cmd;
  580. struct se_cmd *se_cmd;
  581. u32 length = (src_sectors * src_dev->dev_attrib.block_size);
  582. int rc;
  583. unsigned char cdb[16];
  584. bool remote_port = (xop->op_origin == XCOL_DEST_RECV_OP);
  585. xpt_cmd = kzalloc(sizeof(struct xcopy_pt_cmd), GFP_KERNEL);
  586. if (!xpt_cmd) {
  587. pr_err("Unable to allocate xcopy_pt_cmd\n");
  588. return -ENOMEM;
  589. }
  590. init_completion(&xpt_cmd->xpt_passthrough_sem);
  591. se_cmd = &xpt_cmd->se_cmd;
  592. memset(&cdb[0], 0, 16);
  593. cdb[0] = READ_16;
  594. put_unaligned_be64(src_lba, &cdb[2]);
  595. put_unaligned_be32(src_sectors, &cdb[10]);
  596. pr_debug("XCOPY: Built READ_16: LBA: %llu Sectors: %u Length: %u\n",
  597. (unsigned long long)src_lba, src_sectors, length);
  598. transport_init_se_cmd(se_cmd, &xcopy_pt_tfo, &xcopy_pt_sess, length,
  599. DMA_FROM_DEVICE, 0, &xpt_cmd->sense_buffer[0]);
  600. xop->src_pt_cmd = xpt_cmd;
  601. rc = target_xcopy_setup_pt_cmd(xpt_cmd, xop, src_dev, &cdb[0],
  602. remote_port, true);
  603. if (rc < 0) {
  604. ec_cmd->scsi_status = xpt_cmd->se_cmd.scsi_status;
  605. transport_generic_free_cmd(se_cmd, 0);
  606. return rc;
  607. }
  608. xop->xop_data_sg = se_cmd->t_data_sg;
  609. xop->xop_data_nents = se_cmd->t_data_nents;
  610. pr_debug("XCOPY-READ: Saved xop->xop_data_sg: %p, num: %u for READ"
  611. " memory\n", xop->xop_data_sg, xop->xop_data_nents);
  612. rc = target_xcopy_issue_pt_cmd(xpt_cmd);
  613. if (rc < 0) {
  614. ec_cmd->scsi_status = xpt_cmd->se_cmd.scsi_status;
  615. transport_generic_free_cmd(se_cmd, 0);
  616. return rc;
  617. }
  618. /*
  619. * Clear off the allocated t_data_sg, that has been saved for
  620. * zero-copy WRITE submission reuse in struct xcopy_op..
  621. */
  622. se_cmd->t_data_sg = NULL;
  623. se_cmd->t_data_nents = 0;
  624. return 0;
  625. }
  626. static int target_xcopy_write_destination(
  627. struct se_cmd *ec_cmd,
  628. struct xcopy_op *xop,
  629. struct se_device *dst_dev,
  630. sector_t dst_lba,
  631. u32 dst_sectors)
  632. {
  633. struct xcopy_pt_cmd *xpt_cmd;
  634. struct se_cmd *se_cmd;
  635. u32 length = (dst_sectors * dst_dev->dev_attrib.block_size);
  636. int rc;
  637. unsigned char cdb[16];
  638. bool remote_port = (xop->op_origin == XCOL_SOURCE_RECV_OP);
  639. xpt_cmd = kzalloc(sizeof(struct xcopy_pt_cmd), GFP_KERNEL);
  640. if (!xpt_cmd) {
  641. pr_err("Unable to allocate xcopy_pt_cmd\n");
  642. return -ENOMEM;
  643. }
  644. init_completion(&xpt_cmd->xpt_passthrough_sem);
  645. se_cmd = &xpt_cmd->se_cmd;
  646. memset(&cdb[0], 0, 16);
  647. cdb[0] = WRITE_16;
  648. put_unaligned_be64(dst_lba, &cdb[2]);
  649. put_unaligned_be32(dst_sectors, &cdb[10]);
  650. pr_debug("XCOPY: Built WRITE_16: LBA: %llu Sectors: %u Length: %u\n",
  651. (unsigned long long)dst_lba, dst_sectors, length);
  652. transport_init_se_cmd(se_cmd, &xcopy_pt_tfo, &xcopy_pt_sess, length,
  653. DMA_TO_DEVICE, 0, &xpt_cmd->sense_buffer[0]);
  654. xop->dst_pt_cmd = xpt_cmd;
  655. rc = target_xcopy_setup_pt_cmd(xpt_cmd, xop, dst_dev, &cdb[0],
  656. remote_port, false);
  657. if (rc < 0) {
  658. struct se_cmd *src_cmd = &xop->src_pt_cmd->se_cmd;
  659. ec_cmd->scsi_status = xpt_cmd->se_cmd.scsi_status;
  660. /*
  661. * If the failure happened before the t_mem_list hand-off in
  662. * target_xcopy_setup_pt_cmd(), Reset memory + clear flag so that
  663. * core releases this memory on error during X-COPY WRITE I/O.
  664. */
  665. src_cmd->se_cmd_flags &= ~SCF_PASSTHROUGH_SG_TO_MEM_NOALLOC;
  666. src_cmd->t_data_sg = xop->xop_data_sg;
  667. src_cmd->t_data_nents = xop->xop_data_nents;
  668. transport_generic_free_cmd(se_cmd, 0);
  669. return rc;
  670. }
  671. rc = target_xcopy_issue_pt_cmd(xpt_cmd);
  672. if (rc < 0) {
  673. ec_cmd->scsi_status = xpt_cmd->se_cmd.scsi_status;
  674. se_cmd->se_cmd_flags &= ~SCF_PASSTHROUGH_SG_TO_MEM_NOALLOC;
  675. transport_generic_free_cmd(se_cmd, 0);
  676. return rc;
  677. }
  678. return 0;
  679. }
  680. static void target_xcopy_do_work(struct work_struct *work)
  681. {
  682. struct xcopy_op *xop = container_of(work, struct xcopy_op, xop_work);
  683. struct se_cmd *ec_cmd = xop->xop_se_cmd;
  684. struct se_device *src_dev, *dst_dev;
  685. sector_t src_lba, dst_lba, end_lba;
  686. unsigned int max_sectors;
  687. int rc = 0;
  688. unsigned short nolb, cur_nolb, max_nolb, copied_nolb = 0;
  689. if (target_parse_xcopy_cmd(xop) != TCM_NO_SENSE)
  690. goto err_free;
  691. if (WARN_ON_ONCE(!xop->src_dev) || WARN_ON_ONCE(!xop->dst_dev))
  692. goto err_free;
  693. src_dev = xop->src_dev;
  694. dst_dev = xop->dst_dev;
  695. src_lba = xop->src_lba;
  696. dst_lba = xop->dst_lba;
  697. nolb = xop->nolb;
  698. end_lba = src_lba + nolb;
  699. /*
  700. * Break up XCOPY I/O into hw_max_sectors sized I/O based on the
  701. * smallest max_sectors between src_dev + dev_dev, or
  702. */
  703. max_sectors = min(src_dev->dev_attrib.hw_max_sectors,
  704. dst_dev->dev_attrib.hw_max_sectors);
  705. max_sectors = min_t(u32, max_sectors, XCOPY_MAX_SECTORS);
  706. max_nolb = min_t(u16, max_sectors, ((u16)(~0U)));
  707. pr_debug("target_xcopy_do_work: nolb: %hu, max_nolb: %hu end_lba: %llu\n",
  708. nolb, max_nolb, (unsigned long long)end_lba);
  709. pr_debug("target_xcopy_do_work: Starting src_lba: %llu, dst_lba: %llu\n",
  710. (unsigned long long)src_lba, (unsigned long long)dst_lba);
  711. while (src_lba < end_lba) {
  712. cur_nolb = min(nolb, max_nolb);
  713. pr_debug("target_xcopy_do_work: Calling read src_dev: %p src_lba: %llu,"
  714. " cur_nolb: %hu\n", src_dev, (unsigned long long)src_lba, cur_nolb);
  715. rc = target_xcopy_read_source(ec_cmd, xop, src_dev, src_lba, cur_nolb);
  716. if (rc < 0)
  717. goto out;
  718. src_lba += cur_nolb;
  719. pr_debug("target_xcopy_do_work: Incremented READ src_lba to %llu\n",
  720. (unsigned long long)src_lba);
  721. pr_debug("target_xcopy_do_work: Calling write dst_dev: %p dst_lba: %llu,"
  722. " cur_nolb: %hu\n", dst_dev, (unsigned long long)dst_lba, cur_nolb);
  723. rc = target_xcopy_write_destination(ec_cmd, xop, dst_dev,
  724. dst_lba, cur_nolb);
  725. if (rc < 0) {
  726. transport_generic_free_cmd(&xop->src_pt_cmd->se_cmd, 0);
  727. goto out;
  728. }
  729. dst_lba += cur_nolb;
  730. pr_debug("target_xcopy_do_work: Incremented WRITE dst_lba to %llu\n",
  731. (unsigned long long)dst_lba);
  732. copied_nolb += cur_nolb;
  733. nolb -= cur_nolb;
  734. transport_generic_free_cmd(&xop->src_pt_cmd->se_cmd, 0);
  735. xop->dst_pt_cmd->se_cmd.se_cmd_flags &= ~SCF_PASSTHROUGH_SG_TO_MEM_NOALLOC;
  736. transport_generic_free_cmd(&xop->dst_pt_cmd->se_cmd, 0);
  737. }
  738. xcopy_pt_undepend_remotedev(xop);
  739. kfree(xop);
  740. pr_debug("target_xcopy_do_work: Final src_lba: %llu, dst_lba: %llu\n",
  741. (unsigned long long)src_lba, (unsigned long long)dst_lba);
  742. pr_debug("target_xcopy_do_work: Blocks copied: %hu, Bytes Copied: %u\n",
  743. copied_nolb, copied_nolb * dst_dev->dev_attrib.block_size);
  744. pr_debug("target_xcopy_do_work: Setting X-COPY GOOD status -> sending response\n");
  745. target_complete_cmd(ec_cmd, SAM_STAT_GOOD);
  746. return;
  747. out:
  748. xcopy_pt_undepend_remotedev(xop);
  749. err_free:
  750. kfree(xop);
  751. /*
  752. * Don't override an error scsi status if it has already been set
  753. */
  754. if (ec_cmd->scsi_status == SAM_STAT_GOOD) {
  755. pr_warn_ratelimited("target_xcopy_do_work: rc: %d, Setting X-COPY"
  756. " CHECK_CONDITION -> sending response\n", rc);
  757. ec_cmd->scsi_status = SAM_STAT_CHECK_CONDITION;
  758. }
  759. target_complete_cmd(ec_cmd, ec_cmd->scsi_status);
  760. }
  761. /*
  762. * Returns TCM_NO_SENSE upon success or a sense code != TCM_NO_SENSE if parsing
  763. * fails.
  764. */
  765. static sense_reason_t target_parse_xcopy_cmd(struct xcopy_op *xop)
  766. {
  767. struct se_cmd *se_cmd = xop->xop_se_cmd;
  768. unsigned char *p = NULL, *seg_desc;
  769. unsigned int list_id, list_id_usage, sdll, inline_dl;
  770. sense_reason_t ret = TCM_INVALID_PARAMETER_LIST;
  771. int rc;
  772. unsigned short tdll;
  773. p = transport_kmap_data_sg(se_cmd);
  774. if (!p) {
  775. pr_err("transport_kmap_data_sg() failed in target_do_xcopy\n");
  776. return TCM_OUT_OF_RESOURCES;
  777. }
  778. list_id = p[0];
  779. list_id_usage = (p[1] & 0x18) >> 3;
  780. /*
  781. * Determine TARGET DESCRIPTOR LIST LENGTH + SEGMENT DESCRIPTOR LIST LENGTH
  782. */
  783. tdll = get_unaligned_be16(&p[2]);
  784. sdll = get_unaligned_be32(&p[8]);
  785. if (tdll + sdll > RCR_OP_MAX_DESC_LIST_LEN) {
  786. pr_err("XCOPY descriptor list length %u exceeds maximum %u\n",
  787. tdll + sdll, RCR_OP_MAX_DESC_LIST_LEN);
  788. ret = TCM_PARAMETER_LIST_LENGTH_ERROR;
  789. goto out;
  790. }
  791. inline_dl = get_unaligned_be32(&p[12]);
  792. if (inline_dl != 0) {
  793. pr_err("XCOPY with non zero inline data length\n");
  794. goto out;
  795. }
  796. if (se_cmd->data_length < (XCOPY_HDR_LEN + tdll + sdll + inline_dl)) {
  797. pr_err("XCOPY parameter truncation: data length %u too small "
  798. "for tdll: %hu sdll: %u inline_dl: %u\n",
  799. se_cmd->data_length, tdll, sdll, inline_dl);
  800. ret = TCM_PARAMETER_LIST_LENGTH_ERROR;
  801. goto out;
  802. }
  803. pr_debug("Processing XCOPY with list_id: 0x%02x list_id_usage: 0x%02x"
  804. " tdll: %hu sdll: %u inline_dl: %u\n", list_id, list_id_usage,
  805. tdll, sdll, inline_dl);
  806. /*
  807. * skip over the target descriptors until segment descriptors
  808. * have been passed - CSCD ids are needed to determine src and dest.
  809. */
  810. seg_desc = &p[16] + tdll;
  811. rc = target_xcopy_parse_segment_descriptors(se_cmd, xop, seg_desc,
  812. sdll, &ret);
  813. if (rc <= 0)
  814. goto out;
  815. pr_debug("XCOPY: Processed %d segment descriptors, length: %u\n", rc,
  816. rc * XCOPY_SEGMENT_DESC_LEN);
  817. rc = target_xcopy_parse_target_descriptors(se_cmd, xop, &p[16], tdll, &ret);
  818. if (rc <= 0)
  819. goto out;
  820. if (xop->src_dev->dev_attrib.block_size !=
  821. xop->dst_dev->dev_attrib.block_size) {
  822. pr_err("XCOPY: Non matching src_dev block_size: %u + dst_dev"
  823. " block_size: %u currently unsupported\n",
  824. xop->src_dev->dev_attrib.block_size,
  825. xop->dst_dev->dev_attrib.block_size);
  826. xcopy_pt_undepend_remotedev(xop);
  827. ret = TCM_LOGICAL_UNIT_COMMUNICATION_FAILURE;
  828. goto out;
  829. }
  830. pr_debug("XCOPY: Processed %d target descriptors, length: %u\n", rc,
  831. rc * XCOPY_TARGET_DESC_LEN);
  832. transport_kunmap_data_sg(se_cmd);
  833. return TCM_NO_SENSE;
  834. out:
  835. if (p)
  836. transport_kunmap_data_sg(se_cmd);
  837. return ret;
  838. }
  839. sense_reason_t target_do_xcopy(struct se_cmd *se_cmd)
  840. {
  841. struct se_device *dev = se_cmd->se_dev;
  842. struct xcopy_op *xop;
  843. unsigned int sa;
  844. if (!dev->dev_attrib.emulate_3pc) {
  845. pr_err("EXTENDED_COPY operation explicitly disabled\n");
  846. return TCM_UNSUPPORTED_SCSI_OPCODE;
  847. }
  848. sa = se_cmd->t_task_cdb[1] & 0x1f;
  849. if (sa != 0x00) {
  850. pr_err("EXTENDED_COPY(LID4) not supported\n");
  851. return TCM_UNSUPPORTED_SCSI_OPCODE;
  852. }
  853. if (se_cmd->data_length == 0) {
  854. target_complete_cmd(se_cmd, SAM_STAT_GOOD);
  855. return TCM_NO_SENSE;
  856. }
  857. if (se_cmd->data_length < XCOPY_HDR_LEN) {
  858. pr_err("XCOPY parameter truncation: length %u < hdr_len %u\n",
  859. se_cmd->data_length, XCOPY_HDR_LEN);
  860. return TCM_PARAMETER_LIST_LENGTH_ERROR;
  861. }
  862. xop = kzalloc(sizeof(struct xcopy_op), GFP_KERNEL);
  863. if (!xop)
  864. goto err;
  865. xop->xop_se_cmd = se_cmd;
  866. INIT_WORK(&xop->xop_work, target_xcopy_do_work);
  867. if (WARN_ON_ONCE(!queue_work(xcopy_wq, &xop->xop_work)))
  868. goto free;
  869. return TCM_NO_SENSE;
  870. free:
  871. kfree(xop);
  872. err:
  873. return TCM_OUT_OF_RESOURCES;
  874. }
  875. static sense_reason_t target_rcr_operating_parameters(struct se_cmd *se_cmd)
  876. {
  877. unsigned char *p;
  878. p = transport_kmap_data_sg(se_cmd);
  879. if (!p) {
  880. pr_err("transport_kmap_data_sg failed in"
  881. " target_rcr_operating_parameters\n");
  882. return TCM_OUT_OF_RESOURCES;
  883. }
  884. if (se_cmd->data_length < 54) {
  885. pr_err("Receive Copy Results Op Parameters length"
  886. " too small: %u\n", se_cmd->data_length);
  887. transport_kunmap_data_sg(se_cmd);
  888. return TCM_INVALID_CDB_FIELD;
  889. }
  890. /*
  891. * Set SNLID=1 (Supports no List ID)
  892. */
  893. p[4] = 0x1;
  894. /*
  895. * MAXIMUM TARGET DESCRIPTOR COUNT
  896. */
  897. put_unaligned_be16(RCR_OP_MAX_TARGET_DESC_COUNT, &p[8]);
  898. /*
  899. * MAXIMUM SEGMENT DESCRIPTOR COUNT
  900. */
  901. put_unaligned_be16(RCR_OP_MAX_SG_DESC_COUNT, &p[10]);
  902. /*
  903. * MAXIMUM DESCRIPTOR LIST LENGTH
  904. */
  905. put_unaligned_be32(RCR_OP_MAX_DESC_LIST_LEN, &p[12]);
  906. /*
  907. * MAXIMUM SEGMENT LENGTH
  908. */
  909. put_unaligned_be32(RCR_OP_MAX_SEGMENT_LEN, &p[16]);
  910. /*
  911. * MAXIMUM INLINE DATA LENGTH for SA 0x04 (NOT SUPPORTED)
  912. */
  913. put_unaligned_be32(0x0, &p[20]);
  914. /*
  915. * HELD DATA LIMIT
  916. */
  917. put_unaligned_be32(0x0, &p[24]);
  918. /*
  919. * MAXIMUM STREAM DEVICE TRANSFER SIZE
  920. */
  921. put_unaligned_be32(0x0, &p[28]);
  922. /*
  923. * TOTAL CONCURRENT COPIES
  924. */
  925. put_unaligned_be16(RCR_OP_TOTAL_CONCURR_COPIES, &p[34]);
  926. /*
  927. * MAXIMUM CONCURRENT COPIES
  928. */
  929. p[36] = RCR_OP_MAX_CONCURR_COPIES;
  930. /*
  931. * DATA SEGMENT GRANULARITY (log 2)
  932. */
  933. p[37] = RCR_OP_DATA_SEG_GRAN_LOG2;
  934. /*
  935. * INLINE DATA GRANULARITY log 2)
  936. */
  937. p[38] = RCR_OP_INLINE_DATA_GRAN_LOG2;
  938. /*
  939. * HELD DATA GRANULARITY
  940. */
  941. p[39] = RCR_OP_HELD_DATA_GRAN_LOG2;
  942. /*
  943. * IMPLEMENTED DESCRIPTOR LIST LENGTH
  944. */
  945. p[43] = 0x2;
  946. /*
  947. * List of implemented descriptor type codes (ordered)
  948. */
  949. p[44] = 0x02; /* Copy Block to Block device */
  950. p[45] = 0xe4; /* Identification descriptor target descriptor */
  951. /*
  952. * AVAILABLE DATA (n-3)
  953. */
  954. put_unaligned_be32(42, &p[0]);
  955. transport_kunmap_data_sg(se_cmd);
  956. target_complete_cmd(se_cmd, GOOD);
  957. return TCM_NO_SENSE;
  958. }
  959. sense_reason_t target_do_receive_copy_results(struct se_cmd *se_cmd)
  960. {
  961. unsigned char *cdb = &se_cmd->t_task_cdb[0];
  962. int sa = (cdb[1] & 0x1f), list_id = cdb[2];
  963. sense_reason_t rc = TCM_NO_SENSE;
  964. pr_debug("Entering target_do_receive_copy_results: SA: 0x%02x, List ID:"
  965. " 0x%02x, AL: %u\n", sa, list_id, se_cmd->data_length);
  966. if (list_id != 0) {
  967. pr_err("Receive Copy Results with non zero list identifier"
  968. " not supported\n");
  969. return TCM_INVALID_CDB_FIELD;
  970. }
  971. switch (sa) {
  972. case RCR_SA_OPERATING_PARAMETERS:
  973. rc = target_rcr_operating_parameters(se_cmd);
  974. break;
  975. case RCR_SA_COPY_STATUS:
  976. case RCR_SA_RECEIVE_DATA:
  977. case RCR_SA_FAILED_SEGMENT_DETAILS:
  978. default:
  979. pr_err("Unsupported SA for receive copy results: 0x%02x\n", sa);
  980. return TCM_INVALID_CDB_FIELD;
  981. }
  982. return rc;
  983. }