xen-scsiback.c 48 KB

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  1. /*
  2. * Xen SCSI backend driver
  3. *
  4. * Copyright (c) 2008, FUJITSU Limited
  5. *
  6. * Based on the blkback driver code.
  7. * Adaption to kernel taget core infrastructure taken from vhost/scsi.c
  8. *
  9. * This program is free software; you can redistribute it and/or
  10. * modify it under the terms of the GNU General Public License version 2
  11. * as published by the Free Software Foundation; or, when distributed
  12. * separately from the Linux kernel or incorporated into other
  13. * software packages, subject to the following license:
  14. *
  15. * Permission is hereby granted, free of charge, to any person obtaining a copy
  16. * of this source file (the "Software"), to deal in the Software without
  17. * restriction, including without limitation the rights to use, copy, modify,
  18. * merge, publish, distribute, sublicense, and/or sell copies of the Software,
  19. * and to permit persons to whom the Software is furnished to do so, subject to
  20. * the following conditions:
  21. *
  22. * The above copyright notice and this permission notice shall be included in
  23. * all copies or substantial portions of the Software.
  24. *
  25. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  26. * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  27. * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
  28. * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  29. * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
  30. * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
  31. * IN THE SOFTWARE.
  32. */
  33. #define pr_fmt(fmt) "xen-pvscsi: " fmt
  34. #include <stdarg.h>
  35. #include <linux/module.h>
  36. #include <linux/utsname.h>
  37. #include <linux/interrupt.h>
  38. #include <linux/slab.h>
  39. #include <linux/wait.h>
  40. #include <linux/sched.h>
  41. #include <linux/list.h>
  42. #include <linux/gfp.h>
  43. #include <linux/delay.h>
  44. #include <linux/spinlock.h>
  45. #include <linux/configfs.h>
  46. #include <generated/utsrelease.h>
  47. #include <scsi/scsi_host.h> /* SG_ALL */
  48. #include <target/target_core_base.h>
  49. #include <target/target_core_fabric.h>
  50. #include <asm/hypervisor.h>
  51. #include <xen/xen.h>
  52. #include <xen/balloon.h>
  53. #include <xen/events.h>
  54. #include <xen/xenbus.h>
  55. #include <xen/grant_table.h>
  56. #include <xen/page.h>
  57. #include <xen/interface/grant_table.h>
  58. #include <xen/interface/io/vscsiif.h>
  59. #define VSCSI_VERSION "v0.1"
  60. #define VSCSI_NAMELEN 32
  61. struct ids_tuple {
  62. unsigned int hst; /* host */
  63. unsigned int chn; /* channel */
  64. unsigned int tgt; /* target */
  65. unsigned int lun; /* LUN */
  66. };
  67. struct v2p_entry {
  68. struct ids_tuple v; /* translate from */
  69. struct scsiback_tpg *tpg; /* translate to */
  70. unsigned int lun;
  71. struct kref kref;
  72. struct list_head l;
  73. };
  74. struct vscsibk_info {
  75. struct xenbus_device *dev;
  76. domid_t domid;
  77. unsigned int irq;
  78. struct vscsiif_back_ring ring;
  79. int ring_error;
  80. spinlock_t ring_lock;
  81. atomic_t nr_unreplied_reqs;
  82. spinlock_t v2p_lock;
  83. struct list_head v2p_entry_lists;
  84. wait_queue_head_t waiting_to_free;
  85. };
  86. /* theoretical maximum of grants for one request */
  87. #define VSCSI_MAX_GRANTS (SG_ALL + VSCSIIF_SG_TABLESIZE)
  88. /*
  89. * VSCSI_GRANT_BATCH is the maximum number of grants to be processed in one
  90. * call to map/unmap grants. Don't choose it too large, as there are arrays
  91. * with VSCSI_GRANT_BATCH elements allocated on the stack.
  92. */
  93. #define VSCSI_GRANT_BATCH 16
  94. struct vscsibk_pend {
  95. uint16_t rqid;
  96. uint8_t cmnd[VSCSIIF_MAX_COMMAND_SIZE];
  97. uint8_t cmd_len;
  98. uint8_t sc_data_direction;
  99. uint16_t n_sg; /* real length of SG list */
  100. uint16_t n_grants; /* SG pages and potentially SG list */
  101. uint32_t data_len;
  102. uint32_t result;
  103. struct vscsibk_info *info;
  104. struct v2p_entry *v2p;
  105. struct scatterlist *sgl;
  106. uint8_t sense_buffer[VSCSIIF_SENSE_BUFFERSIZE];
  107. grant_handle_t grant_handles[VSCSI_MAX_GRANTS];
  108. struct page *pages[VSCSI_MAX_GRANTS];
  109. struct se_cmd se_cmd;
  110. };
  111. struct scsiback_tmr {
  112. atomic_t tmr_complete;
  113. wait_queue_head_t tmr_wait;
  114. };
  115. #define VSCSI_DEFAULT_SESSION_TAGS 128
  116. struct scsiback_nexus {
  117. /* Pointer to TCM session for I_T Nexus */
  118. struct se_session *tvn_se_sess;
  119. };
  120. struct scsiback_tport {
  121. /* SCSI protocol the tport is providing */
  122. u8 tport_proto_id;
  123. /* Binary World Wide unique Port Name for pvscsi Target port */
  124. u64 tport_wwpn;
  125. /* ASCII formatted WWPN for pvscsi Target port */
  126. char tport_name[VSCSI_NAMELEN];
  127. /* Returned by scsiback_make_tport() */
  128. struct se_wwn tport_wwn;
  129. };
  130. struct scsiback_tpg {
  131. /* scsiback port target portal group tag for TCM */
  132. u16 tport_tpgt;
  133. /* track number of TPG Port/Lun Links wrt explicit I_T Nexus shutdown */
  134. int tv_tpg_port_count;
  135. /* xen-pvscsi references to tpg_nexus, protected by tv_tpg_mutex */
  136. int tv_tpg_fe_count;
  137. /* list for scsiback_list */
  138. struct list_head tv_tpg_list;
  139. /* Used to protect access for tpg_nexus */
  140. struct mutex tv_tpg_mutex;
  141. /* Pointer to the TCM pvscsi I_T Nexus for this TPG endpoint */
  142. struct scsiback_nexus *tpg_nexus;
  143. /* Pointer back to scsiback_tport */
  144. struct scsiback_tport *tport;
  145. /* Returned by scsiback_make_tpg() */
  146. struct se_portal_group se_tpg;
  147. /* alias used in xenstore */
  148. char param_alias[VSCSI_NAMELEN];
  149. /* list of info structures related to this target portal group */
  150. struct list_head info_list;
  151. };
  152. #define SCSIBACK_INVALID_HANDLE (~0)
  153. static bool log_print_stat;
  154. module_param(log_print_stat, bool, 0644);
  155. static int scsiback_max_buffer_pages = 1024;
  156. module_param_named(max_buffer_pages, scsiback_max_buffer_pages, int, 0644);
  157. MODULE_PARM_DESC(max_buffer_pages,
  158. "Maximum number of free pages to keep in backend buffer");
  159. static DEFINE_SPINLOCK(free_pages_lock);
  160. static int free_pages_num;
  161. static LIST_HEAD(scsiback_free_pages);
  162. /* Global spinlock to protect scsiback TPG list */
  163. static DEFINE_MUTEX(scsiback_mutex);
  164. static LIST_HEAD(scsiback_list);
  165. static void scsiback_get(struct vscsibk_info *info)
  166. {
  167. atomic_inc(&info->nr_unreplied_reqs);
  168. }
  169. static void scsiback_put(struct vscsibk_info *info)
  170. {
  171. if (atomic_dec_and_test(&info->nr_unreplied_reqs))
  172. wake_up(&info->waiting_to_free);
  173. }
  174. static void put_free_pages(struct page **page, int num)
  175. {
  176. unsigned long flags;
  177. int i = free_pages_num + num, n = num;
  178. if (num == 0)
  179. return;
  180. if (i > scsiback_max_buffer_pages) {
  181. n = min(num, i - scsiback_max_buffer_pages);
  182. gnttab_free_pages(n, page + num - n);
  183. n = num - n;
  184. }
  185. spin_lock_irqsave(&free_pages_lock, flags);
  186. for (i = 0; i < n; i++)
  187. list_add(&page[i]->lru, &scsiback_free_pages);
  188. free_pages_num += n;
  189. spin_unlock_irqrestore(&free_pages_lock, flags);
  190. }
  191. static int get_free_page(struct page **page)
  192. {
  193. unsigned long flags;
  194. spin_lock_irqsave(&free_pages_lock, flags);
  195. if (list_empty(&scsiback_free_pages)) {
  196. spin_unlock_irqrestore(&free_pages_lock, flags);
  197. return gnttab_alloc_pages(1, page);
  198. }
  199. page[0] = list_first_entry(&scsiback_free_pages, struct page, lru);
  200. list_del(&page[0]->lru);
  201. free_pages_num--;
  202. spin_unlock_irqrestore(&free_pages_lock, flags);
  203. return 0;
  204. }
  205. static unsigned long vaddr_page(struct page *page)
  206. {
  207. unsigned long pfn = page_to_pfn(page);
  208. return (unsigned long)pfn_to_kaddr(pfn);
  209. }
  210. static unsigned long vaddr(struct vscsibk_pend *req, int seg)
  211. {
  212. return vaddr_page(req->pages[seg]);
  213. }
  214. static void scsiback_print_status(char *sense_buffer, int errors,
  215. struct vscsibk_pend *pending_req)
  216. {
  217. struct scsiback_tpg *tpg = pending_req->v2p->tpg;
  218. pr_err("[%s:%d] cmnd[0]=%02x -> st=%02x msg=%02x host=%02x drv=%02x\n",
  219. tpg->tport->tport_name, pending_req->v2p->lun,
  220. pending_req->cmnd[0], status_byte(errors), msg_byte(errors),
  221. host_byte(errors), driver_byte(errors));
  222. }
  223. static void scsiback_fast_flush_area(struct vscsibk_pend *req)
  224. {
  225. struct gnttab_unmap_grant_ref unmap[VSCSI_GRANT_BATCH];
  226. struct page *pages[VSCSI_GRANT_BATCH];
  227. unsigned int i, invcount = 0;
  228. grant_handle_t handle;
  229. int err;
  230. kfree(req->sgl);
  231. req->sgl = NULL;
  232. req->n_sg = 0;
  233. if (!req->n_grants)
  234. return;
  235. for (i = 0; i < req->n_grants; i++) {
  236. handle = req->grant_handles[i];
  237. if (handle == SCSIBACK_INVALID_HANDLE)
  238. continue;
  239. gnttab_set_unmap_op(&unmap[invcount], vaddr(req, i),
  240. GNTMAP_host_map, handle);
  241. req->grant_handles[i] = SCSIBACK_INVALID_HANDLE;
  242. pages[invcount] = req->pages[i];
  243. put_page(pages[invcount]);
  244. invcount++;
  245. if (invcount < VSCSI_GRANT_BATCH)
  246. continue;
  247. err = gnttab_unmap_refs(unmap, NULL, pages, invcount);
  248. BUG_ON(err);
  249. invcount = 0;
  250. }
  251. if (invcount) {
  252. err = gnttab_unmap_refs(unmap, NULL, pages, invcount);
  253. BUG_ON(err);
  254. }
  255. put_free_pages(req->pages, req->n_grants);
  256. req->n_grants = 0;
  257. }
  258. static void scsiback_free_translation_entry(struct kref *kref)
  259. {
  260. struct v2p_entry *entry = container_of(kref, struct v2p_entry, kref);
  261. struct scsiback_tpg *tpg = entry->tpg;
  262. mutex_lock(&tpg->tv_tpg_mutex);
  263. tpg->tv_tpg_fe_count--;
  264. mutex_unlock(&tpg->tv_tpg_mutex);
  265. kfree(entry);
  266. }
  267. static void scsiback_send_response(struct vscsibk_info *info,
  268. char *sense_buffer, int32_t result, uint32_t resid,
  269. uint16_t rqid)
  270. {
  271. struct vscsiif_response *ring_res;
  272. int notify;
  273. struct scsi_sense_hdr sshdr;
  274. unsigned long flags;
  275. unsigned len;
  276. spin_lock_irqsave(&info->ring_lock, flags);
  277. ring_res = RING_GET_RESPONSE(&info->ring, info->ring.rsp_prod_pvt);
  278. info->ring.rsp_prod_pvt++;
  279. ring_res->rslt = result;
  280. ring_res->rqid = rqid;
  281. if (sense_buffer != NULL &&
  282. scsi_normalize_sense(sense_buffer, VSCSIIF_SENSE_BUFFERSIZE,
  283. &sshdr)) {
  284. len = min_t(unsigned, 8 + sense_buffer[7],
  285. VSCSIIF_SENSE_BUFFERSIZE);
  286. memcpy(ring_res->sense_buffer, sense_buffer, len);
  287. ring_res->sense_len = len;
  288. } else {
  289. ring_res->sense_len = 0;
  290. }
  291. ring_res->residual_len = resid;
  292. RING_PUSH_RESPONSES_AND_CHECK_NOTIFY(&info->ring, notify);
  293. spin_unlock_irqrestore(&info->ring_lock, flags);
  294. if (notify)
  295. notify_remote_via_irq(info->irq);
  296. }
  297. static void scsiback_do_resp_with_sense(char *sense_buffer, int32_t result,
  298. uint32_t resid, struct vscsibk_pend *pending_req)
  299. {
  300. scsiback_send_response(pending_req->info, sense_buffer, result,
  301. resid, pending_req->rqid);
  302. if (pending_req->v2p)
  303. kref_put(&pending_req->v2p->kref,
  304. scsiback_free_translation_entry);
  305. }
  306. static void scsiback_cmd_done(struct vscsibk_pend *pending_req)
  307. {
  308. struct vscsibk_info *info = pending_req->info;
  309. unsigned char *sense_buffer;
  310. unsigned int resid;
  311. int errors;
  312. sense_buffer = pending_req->sense_buffer;
  313. resid = pending_req->se_cmd.residual_count;
  314. errors = pending_req->result;
  315. if (errors && log_print_stat)
  316. scsiback_print_status(sense_buffer, errors, pending_req);
  317. scsiback_fast_flush_area(pending_req);
  318. scsiback_do_resp_with_sense(sense_buffer, errors, resid, pending_req);
  319. scsiback_put(info);
  320. /*
  321. * Drop the extra KREF_ACK reference taken by target_submit_cmd_map_sgls()
  322. * ahead of scsiback_check_stop_free() -> transport_generic_free_cmd()
  323. * final se_cmd->cmd_kref put.
  324. */
  325. target_put_sess_cmd(&pending_req->se_cmd);
  326. }
  327. static void scsiback_cmd_exec(struct vscsibk_pend *pending_req)
  328. {
  329. struct se_cmd *se_cmd = &pending_req->se_cmd;
  330. struct se_session *sess = pending_req->v2p->tpg->tpg_nexus->tvn_se_sess;
  331. int rc;
  332. scsiback_get(pending_req->info);
  333. se_cmd->tag = pending_req->rqid;
  334. rc = target_submit_cmd_map_sgls(se_cmd, sess, pending_req->cmnd,
  335. pending_req->sense_buffer, pending_req->v2p->lun,
  336. pending_req->data_len, 0,
  337. pending_req->sc_data_direction, TARGET_SCF_ACK_KREF,
  338. pending_req->sgl, pending_req->n_sg,
  339. NULL, 0, NULL, 0);
  340. if (rc < 0) {
  341. transport_send_check_condition_and_sense(se_cmd,
  342. TCM_LOGICAL_UNIT_COMMUNICATION_FAILURE, 0);
  343. transport_generic_free_cmd(se_cmd, 0);
  344. }
  345. }
  346. static int scsiback_gnttab_data_map_batch(struct gnttab_map_grant_ref *map,
  347. struct page **pg, grant_handle_t *grant, int cnt)
  348. {
  349. int err, i;
  350. if (!cnt)
  351. return 0;
  352. err = gnttab_map_refs(map, NULL, pg, cnt);
  353. BUG_ON(err);
  354. for (i = 0; i < cnt; i++) {
  355. if (unlikely(map[i].status != GNTST_okay)) {
  356. pr_err("invalid buffer -- could not remap it\n");
  357. map[i].handle = SCSIBACK_INVALID_HANDLE;
  358. err = -ENOMEM;
  359. } else {
  360. get_page(pg[i]);
  361. }
  362. grant[i] = map[i].handle;
  363. }
  364. return err;
  365. }
  366. static int scsiback_gnttab_data_map_list(struct vscsibk_pend *pending_req,
  367. struct scsiif_request_segment *seg, struct page **pg,
  368. grant_handle_t *grant, int cnt, u32 flags)
  369. {
  370. int mapcount = 0, i, err = 0;
  371. struct gnttab_map_grant_ref map[VSCSI_GRANT_BATCH];
  372. struct vscsibk_info *info = pending_req->info;
  373. for (i = 0; i < cnt; i++) {
  374. if (get_free_page(pg + mapcount)) {
  375. put_free_pages(pg, mapcount);
  376. pr_err("no grant page\n");
  377. return -ENOMEM;
  378. }
  379. gnttab_set_map_op(&map[mapcount], vaddr_page(pg[mapcount]),
  380. flags, seg[i].gref, info->domid);
  381. mapcount++;
  382. if (mapcount < VSCSI_GRANT_BATCH)
  383. continue;
  384. err = scsiback_gnttab_data_map_batch(map, pg, grant, mapcount);
  385. pg += mapcount;
  386. grant += mapcount;
  387. pending_req->n_grants += mapcount;
  388. if (err)
  389. return err;
  390. mapcount = 0;
  391. }
  392. err = scsiback_gnttab_data_map_batch(map, pg, grant, mapcount);
  393. pending_req->n_grants += mapcount;
  394. return err;
  395. }
  396. static int scsiback_gnttab_data_map(struct vscsiif_request *ring_req,
  397. struct vscsibk_pend *pending_req)
  398. {
  399. u32 flags;
  400. int i, err, n_segs, i_seg = 0;
  401. struct page **pg;
  402. struct scsiif_request_segment *seg;
  403. unsigned long end_seg = 0;
  404. unsigned int nr_segments = (unsigned int)ring_req->nr_segments;
  405. unsigned int nr_sgl = 0;
  406. struct scatterlist *sg;
  407. grant_handle_t *grant;
  408. pending_req->n_sg = 0;
  409. pending_req->n_grants = 0;
  410. pending_req->data_len = 0;
  411. nr_segments &= ~VSCSIIF_SG_GRANT;
  412. if (!nr_segments)
  413. return 0;
  414. if (nr_segments > VSCSIIF_SG_TABLESIZE) {
  415. pr_debug("invalid parameter nr_seg = %d\n",
  416. ring_req->nr_segments);
  417. return -EINVAL;
  418. }
  419. if (ring_req->nr_segments & VSCSIIF_SG_GRANT) {
  420. err = scsiback_gnttab_data_map_list(pending_req, ring_req->seg,
  421. pending_req->pages, pending_req->grant_handles,
  422. nr_segments, GNTMAP_host_map | GNTMAP_readonly);
  423. if (err)
  424. return err;
  425. nr_sgl = nr_segments;
  426. nr_segments = 0;
  427. for (i = 0; i < nr_sgl; i++) {
  428. n_segs = ring_req->seg[i].length /
  429. sizeof(struct scsiif_request_segment);
  430. if ((unsigned)ring_req->seg[i].offset +
  431. (unsigned)ring_req->seg[i].length > PAGE_SIZE ||
  432. n_segs * sizeof(struct scsiif_request_segment) !=
  433. ring_req->seg[i].length)
  434. return -EINVAL;
  435. nr_segments += n_segs;
  436. }
  437. if (nr_segments > SG_ALL) {
  438. pr_debug("invalid nr_seg = %d\n", nr_segments);
  439. return -EINVAL;
  440. }
  441. }
  442. /* free of (sgl) in fast_flush_area() */
  443. pending_req->sgl = kmalloc_array(nr_segments,
  444. sizeof(struct scatterlist), GFP_KERNEL);
  445. if (!pending_req->sgl)
  446. return -ENOMEM;
  447. sg_init_table(pending_req->sgl, nr_segments);
  448. pending_req->n_sg = nr_segments;
  449. flags = GNTMAP_host_map;
  450. if (pending_req->sc_data_direction == DMA_TO_DEVICE)
  451. flags |= GNTMAP_readonly;
  452. pg = pending_req->pages + nr_sgl;
  453. grant = pending_req->grant_handles + nr_sgl;
  454. if (!nr_sgl) {
  455. seg = ring_req->seg;
  456. err = scsiback_gnttab_data_map_list(pending_req, seg,
  457. pg, grant, nr_segments, flags);
  458. if (err)
  459. return err;
  460. } else {
  461. for (i = 0; i < nr_sgl; i++) {
  462. seg = (struct scsiif_request_segment *)(
  463. vaddr(pending_req, i) + ring_req->seg[i].offset);
  464. n_segs = ring_req->seg[i].length /
  465. sizeof(struct scsiif_request_segment);
  466. err = scsiback_gnttab_data_map_list(pending_req, seg,
  467. pg, grant, n_segs, flags);
  468. if (err)
  469. return err;
  470. pg += n_segs;
  471. grant += n_segs;
  472. }
  473. end_seg = vaddr(pending_req, 0) + ring_req->seg[0].offset;
  474. seg = (struct scsiif_request_segment *)end_seg;
  475. end_seg += ring_req->seg[0].length;
  476. pg = pending_req->pages + nr_sgl;
  477. }
  478. for_each_sg(pending_req->sgl, sg, nr_segments, i) {
  479. sg_set_page(sg, pg[i], seg->length, seg->offset);
  480. pending_req->data_len += seg->length;
  481. seg++;
  482. if (nr_sgl && (unsigned long)seg >= end_seg) {
  483. i_seg++;
  484. end_seg = vaddr(pending_req, i_seg) +
  485. ring_req->seg[i_seg].offset;
  486. seg = (struct scsiif_request_segment *)end_seg;
  487. end_seg += ring_req->seg[i_seg].length;
  488. }
  489. if (sg->offset >= PAGE_SIZE ||
  490. sg->length > PAGE_SIZE ||
  491. sg->offset + sg->length > PAGE_SIZE)
  492. return -EINVAL;
  493. }
  494. return 0;
  495. }
  496. static void scsiback_disconnect(struct vscsibk_info *info)
  497. {
  498. wait_event(info->waiting_to_free,
  499. atomic_read(&info->nr_unreplied_reqs) == 0);
  500. unbind_from_irqhandler(info->irq, info);
  501. info->irq = 0;
  502. xenbus_unmap_ring_vfree(info->dev, info->ring.sring);
  503. }
  504. static void scsiback_device_action(struct vscsibk_pend *pending_req,
  505. enum tcm_tmreq_table act, int tag)
  506. {
  507. struct scsiback_tpg *tpg = pending_req->v2p->tpg;
  508. struct scsiback_nexus *nexus = tpg->tpg_nexus;
  509. struct se_cmd *se_cmd = &pending_req->se_cmd;
  510. struct scsiback_tmr *tmr;
  511. u64 unpacked_lun = pending_req->v2p->lun;
  512. int rc, err = FAILED;
  513. tmr = kzalloc(sizeof(struct scsiback_tmr), GFP_KERNEL);
  514. if (!tmr) {
  515. target_put_sess_cmd(se_cmd);
  516. goto err;
  517. }
  518. init_waitqueue_head(&tmr->tmr_wait);
  519. rc = target_submit_tmr(&pending_req->se_cmd, nexus->tvn_se_sess,
  520. &pending_req->sense_buffer[0],
  521. unpacked_lun, tmr, act, GFP_KERNEL,
  522. tag, TARGET_SCF_ACK_KREF);
  523. if (rc)
  524. goto err;
  525. wait_event(tmr->tmr_wait, atomic_read(&tmr->tmr_complete));
  526. err = (se_cmd->se_tmr_req->response == TMR_FUNCTION_COMPLETE) ?
  527. SUCCESS : FAILED;
  528. scsiback_do_resp_with_sense(NULL, err, 0, pending_req);
  529. transport_generic_free_cmd(&pending_req->se_cmd, 1);
  530. return;
  531. err:
  532. if (tmr)
  533. kfree(tmr);
  534. scsiback_do_resp_with_sense(NULL, err, 0, pending_req);
  535. }
  536. /*
  537. Perform virtual to physical translation
  538. */
  539. static struct v2p_entry *scsiback_do_translation(struct vscsibk_info *info,
  540. struct ids_tuple *v)
  541. {
  542. struct v2p_entry *entry;
  543. struct list_head *head = &(info->v2p_entry_lists);
  544. unsigned long flags;
  545. spin_lock_irqsave(&info->v2p_lock, flags);
  546. list_for_each_entry(entry, head, l) {
  547. if ((entry->v.chn == v->chn) &&
  548. (entry->v.tgt == v->tgt) &&
  549. (entry->v.lun == v->lun)) {
  550. kref_get(&entry->kref);
  551. goto out;
  552. }
  553. }
  554. entry = NULL;
  555. out:
  556. spin_unlock_irqrestore(&info->v2p_lock, flags);
  557. return entry;
  558. }
  559. static struct vscsibk_pend *scsiback_get_pend_req(struct vscsiif_back_ring *ring,
  560. struct v2p_entry *v2p)
  561. {
  562. struct scsiback_tpg *tpg = v2p->tpg;
  563. struct scsiback_nexus *nexus = tpg->tpg_nexus;
  564. struct se_session *se_sess = nexus->tvn_se_sess;
  565. struct vscsibk_pend *req;
  566. int tag, i;
  567. tag = percpu_ida_alloc(&se_sess->sess_tag_pool, TASK_RUNNING);
  568. if (tag < 0) {
  569. pr_err("Unable to obtain tag for vscsiif_request\n");
  570. return ERR_PTR(-ENOMEM);
  571. }
  572. req = &((struct vscsibk_pend *)se_sess->sess_cmd_map)[tag];
  573. memset(req, 0, sizeof(*req));
  574. req->se_cmd.map_tag = tag;
  575. for (i = 0; i < VSCSI_MAX_GRANTS; i++)
  576. req->grant_handles[i] = SCSIBACK_INVALID_HANDLE;
  577. return req;
  578. }
  579. static struct vscsibk_pend *prepare_pending_reqs(struct vscsibk_info *info,
  580. struct vscsiif_back_ring *ring,
  581. struct vscsiif_request *ring_req)
  582. {
  583. struct vscsibk_pend *pending_req;
  584. struct v2p_entry *v2p;
  585. struct ids_tuple vir;
  586. /* request range check from frontend */
  587. if ((ring_req->sc_data_direction != DMA_BIDIRECTIONAL) &&
  588. (ring_req->sc_data_direction != DMA_TO_DEVICE) &&
  589. (ring_req->sc_data_direction != DMA_FROM_DEVICE) &&
  590. (ring_req->sc_data_direction != DMA_NONE)) {
  591. pr_debug("invalid parameter data_dir = %d\n",
  592. ring_req->sc_data_direction);
  593. return ERR_PTR(-EINVAL);
  594. }
  595. if (ring_req->cmd_len > VSCSIIF_MAX_COMMAND_SIZE) {
  596. pr_debug("invalid parameter cmd_len = %d\n",
  597. ring_req->cmd_len);
  598. return ERR_PTR(-EINVAL);
  599. }
  600. vir.chn = ring_req->channel;
  601. vir.tgt = ring_req->id;
  602. vir.lun = ring_req->lun;
  603. v2p = scsiback_do_translation(info, &vir);
  604. if (!v2p) {
  605. pr_debug("the v2p of (chn:%d, tgt:%d, lun:%d) doesn't exist.\n",
  606. vir.chn, vir.tgt, vir.lun);
  607. return ERR_PTR(-ENODEV);
  608. }
  609. pending_req = scsiback_get_pend_req(ring, v2p);
  610. if (IS_ERR(pending_req)) {
  611. kref_put(&v2p->kref, scsiback_free_translation_entry);
  612. return ERR_PTR(-ENOMEM);
  613. }
  614. pending_req->rqid = ring_req->rqid;
  615. pending_req->info = info;
  616. pending_req->v2p = v2p;
  617. pending_req->sc_data_direction = ring_req->sc_data_direction;
  618. pending_req->cmd_len = ring_req->cmd_len;
  619. memcpy(pending_req->cmnd, ring_req->cmnd, pending_req->cmd_len);
  620. return pending_req;
  621. }
  622. static int scsiback_do_cmd_fn(struct vscsibk_info *info)
  623. {
  624. struct vscsiif_back_ring *ring = &info->ring;
  625. struct vscsiif_request ring_req;
  626. struct vscsibk_pend *pending_req;
  627. RING_IDX rc, rp;
  628. int more_to_do;
  629. uint32_t result;
  630. rc = ring->req_cons;
  631. rp = ring->sring->req_prod;
  632. rmb(); /* guest system is accessing ring, too */
  633. if (RING_REQUEST_PROD_OVERFLOW(ring, rp)) {
  634. rc = ring->rsp_prod_pvt;
  635. pr_warn("Dom%d provided bogus ring requests (%#x - %#x = %u). Halting ring processing\n",
  636. info->domid, rp, rc, rp - rc);
  637. info->ring_error = 1;
  638. return 0;
  639. }
  640. while ((rc != rp)) {
  641. if (RING_REQUEST_CONS_OVERFLOW(ring, rc))
  642. break;
  643. RING_COPY_REQUEST(ring, rc, &ring_req);
  644. ring->req_cons = ++rc;
  645. pending_req = prepare_pending_reqs(info, ring, &ring_req);
  646. if (IS_ERR(pending_req)) {
  647. switch (PTR_ERR(pending_req)) {
  648. case -ENODEV:
  649. result = DID_NO_CONNECT;
  650. break;
  651. default:
  652. result = DRIVER_ERROR;
  653. break;
  654. }
  655. scsiback_send_response(info, NULL, result << 24, 0,
  656. ring_req.rqid);
  657. return 1;
  658. }
  659. switch (ring_req.act) {
  660. case VSCSIIF_ACT_SCSI_CDB:
  661. if (scsiback_gnttab_data_map(&ring_req, pending_req)) {
  662. scsiback_fast_flush_area(pending_req);
  663. scsiback_do_resp_with_sense(NULL,
  664. DRIVER_ERROR << 24, 0, pending_req);
  665. transport_generic_free_cmd(&pending_req->se_cmd, 0);
  666. } else {
  667. scsiback_cmd_exec(pending_req);
  668. }
  669. break;
  670. case VSCSIIF_ACT_SCSI_ABORT:
  671. scsiback_device_action(pending_req, TMR_ABORT_TASK,
  672. ring_req.ref_rqid);
  673. break;
  674. case VSCSIIF_ACT_SCSI_RESET:
  675. scsiback_device_action(pending_req, TMR_LUN_RESET, 0);
  676. break;
  677. default:
  678. pr_err_ratelimited("invalid request\n");
  679. scsiback_do_resp_with_sense(NULL, DRIVER_ERROR << 24, 0,
  680. pending_req);
  681. transport_generic_free_cmd(&pending_req->se_cmd, 0);
  682. break;
  683. }
  684. /* Yield point for this unbounded loop. */
  685. cond_resched();
  686. }
  687. RING_FINAL_CHECK_FOR_REQUESTS(&info->ring, more_to_do);
  688. return more_to_do;
  689. }
  690. static irqreturn_t scsiback_irq_fn(int irq, void *dev_id)
  691. {
  692. struct vscsibk_info *info = dev_id;
  693. if (info->ring_error)
  694. return IRQ_HANDLED;
  695. while (scsiback_do_cmd_fn(info))
  696. cond_resched();
  697. return IRQ_HANDLED;
  698. }
  699. static int scsiback_init_sring(struct vscsibk_info *info, grant_ref_t ring_ref,
  700. evtchn_port_t evtchn)
  701. {
  702. void *area;
  703. struct vscsiif_sring *sring;
  704. int err;
  705. if (info->irq)
  706. return -1;
  707. err = xenbus_map_ring_valloc(info->dev, &ring_ref, 1, &area);
  708. if (err)
  709. return err;
  710. sring = (struct vscsiif_sring *)area;
  711. BACK_RING_INIT(&info->ring, sring, PAGE_SIZE);
  712. err = bind_interdomain_evtchn_to_irq(info->domid, evtchn);
  713. if (err < 0)
  714. goto unmap_page;
  715. info->irq = err;
  716. err = request_threaded_irq(info->irq, NULL, scsiback_irq_fn,
  717. IRQF_ONESHOT, "vscsiif-backend", info);
  718. if (err)
  719. goto free_irq;
  720. return 0;
  721. free_irq:
  722. unbind_from_irqhandler(info->irq, info);
  723. info->irq = 0;
  724. unmap_page:
  725. xenbus_unmap_ring_vfree(info->dev, area);
  726. return err;
  727. }
  728. static int scsiback_map(struct vscsibk_info *info)
  729. {
  730. struct xenbus_device *dev = info->dev;
  731. unsigned int ring_ref, evtchn;
  732. int err;
  733. err = xenbus_gather(XBT_NIL, dev->otherend,
  734. "ring-ref", "%u", &ring_ref,
  735. "event-channel", "%u", &evtchn, NULL);
  736. if (err) {
  737. xenbus_dev_fatal(dev, err, "reading %s ring", dev->otherend);
  738. return err;
  739. }
  740. return scsiback_init_sring(info, ring_ref, evtchn);
  741. }
  742. /*
  743. Check for a translation entry being present
  744. */
  745. static struct v2p_entry *scsiback_chk_translation_entry(
  746. struct vscsibk_info *info, struct ids_tuple *v)
  747. {
  748. struct list_head *head = &(info->v2p_entry_lists);
  749. struct v2p_entry *entry;
  750. list_for_each_entry(entry, head, l)
  751. if ((entry->v.chn == v->chn) &&
  752. (entry->v.tgt == v->tgt) &&
  753. (entry->v.lun == v->lun))
  754. return entry;
  755. return NULL;
  756. }
  757. /*
  758. Add a new translation entry
  759. */
  760. static int scsiback_add_translation_entry(struct vscsibk_info *info,
  761. char *phy, struct ids_tuple *v)
  762. {
  763. int err = 0;
  764. struct v2p_entry *new;
  765. unsigned long flags;
  766. char *lunp;
  767. unsigned long long unpacked_lun;
  768. struct se_lun *se_lun;
  769. struct scsiback_tpg *tpg_entry, *tpg = NULL;
  770. char *error = "doesn't exist";
  771. lunp = strrchr(phy, ':');
  772. if (!lunp) {
  773. pr_err("illegal format of physical device %s\n", phy);
  774. return -EINVAL;
  775. }
  776. *lunp = 0;
  777. lunp++;
  778. err = kstrtoull(lunp, 10, &unpacked_lun);
  779. if (err < 0) {
  780. pr_err("lun number not valid: %s\n", lunp);
  781. return err;
  782. }
  783. mutex_lock(&scsiback_mutex);
  784. list_for_each_entry(tpg_entry, &scsiback_list, tv_tpg_list) {
  785. if (!strcmp(phy, tpg_entry->tport->tport_name) ||
  786. !strcmp(phy, tpg_entry->param_alias)) {
  787. mutex_lock(&tpg_entry->se_tpg.tpg_lun_mutex);
  788. hlist_for_each_entry(se_lun, &tpg_entry->se_tpg.tpg_lun_hlist, link) {
  789. if (se_lun->unpacked_lun == unpacked_lun) {
  790. if (!tpg_entry->tpg_nexus)
  791. error = "nexus undefined";
  792. else
  793. tpg = tpg_entry;
  794. break;
  795. }
  796. }
  797. mutex_unlock(&tpg_entry->se_tpg.tpg_lun_mutex);
  798. break;
  799. }
  800. }
  801. if (tpg) {
  802. mutex_lock(&tpg->tv_tpg_mutex);
  803. tpg->tv_tpg_fe_count++;
  804. mutex_unlock(&tpg->tv_tpg_mutex);
  805. }
  806. mutex_unlock(&scsiback_mutex);
  807. if (!tpg) {
  808. pr_err("%s:%llu %s\n", phy, unpacked_lun, error);
  809. return -ENODEV;
  810. }
  811. new = kmalloc(sizeof(struct v2p_entry), GFP_KERNEL);
  812. if (new == NULL) {
  813. err = -ENOMEM;
  814. goto out_free;
  815. }
  816. spin_lock_irqsave(&info->v2p_lock, flags);
  817. /* Check double assignment to identical virtual ID */
  818. if (scsiback_chk_translation_entry(info, v)) {
  819. pr_warn("Virtual ID is already used. Assignment was not performed.\n");
  820. err = -EEXIST;
  821. goto out;
  822. }
  823. /* Create a new translation entry and add to the list */
  824. kref_init(&new->kref);
  825. new->v = *v;
  826. new->tpg = tpg;
  827. new->lun = unpacked_lun;
  828. list_add_tail(&new->l, &info->v2p_entry_lists);
  829. out:
  830. spin_unlock_irqrestore(&info->v2p_lock, flags);
  831. out_free:
  832. if (err) {
  833. mutex_lock(&tpg->tv_tpg_mutex);
  834. tpg->tv_tpg_fe_count--;
  835. mutex_unlock(&tpg->tv_tpg_mutex);
  836. kfree(new);
  837. }
  838. return err;
  839. }
  840. static void __scsiback_del_translation_entry(struct v2p_entry *entry)
  841. {
  842. list_del(&entry->l);
  843. kref_put(&entry->kref, scsiback_free_translation_entry);
  844. }
  845. /*
  846. Delete the translation entry specified
  847. */
  848. static int scsiback_del_translation_entry(struct vscsibk_info *info,
  849. struct ids_tuple *v)
  850. {
  851. struct v2p_entry *entry;
  852. unsigned long flags;
  853. int ret = 0;
  854. spin_lock_irqsave(&info->v2p_lock, flags);
  855. /* Find out the translation entry specified */
  856. entry = scsiback_chk_translation_entry(info, v);
  857. if (entry)
  858. __scsiback_del_translation_entry(entry);
  859. else
  860. ret = -ENOENT;
  861. spin_unlock_irqrestore(&info->v2p_lock, flags);
  862. return ret;
  863. }
  864. static void scsiback_do_add_lun(struct vscsibk_info *info, const char *state,
  865. char *phy, struct ids_tuple *vir, int try)
  866. {
  867. struct v2p_entry *entry;
  868. unsigned long flags;
  869. if (try) {
  870. spin_lock_irqsave(&info->v2p_lock, flags);
  871. entry = scsiback_chk_translation_entry(info, vir);
  872. spin_unlock_irqrestore(&info->v2p_lock, flags);
  873. if (entry)
  874. return;
  875. }
  876. if (!scsiback_add_translation_entry(info, phy, vir)) {
  877. if (xenbus_printf(XBT_NIL, info->dev->nodename, state,
  878. "%d", XenbusStateInitialised)) {
  879. pr_err("xenbus_printf error %s\n", state);
  880. scsiback_del_translation_entry(info, vir);
  881. }
  882. } else if (!try) {
  883. xenbus_printf(XBT_NIL, info->dev->nodename, state,
  884. "%d", XenbusStateClosed);
  885. }
  886. }
  887. static void scsiback_do_del_lun(struct vscsibk_info *info, const char *state,
  888. struct ids_tuple *vir)
  889. {
  890. if (!scsiback_del_translation_entry(info, vir)) {
  891. if (xenbus_printf(XBT_NIL, info->dev->nodename, state,
  892. "%d", XenbusStateClosed))
  893. pr_err("xenbus_printf error %s\n", state);
  894. }
  895. }
  896. #define VSCSIBACK_OP_ADD_OR_DEL_LUN 1
  897. #define VSCSIBACK_OP_UPDATEDEV_STATE 2
  898. static void scsiback_do_1lun_hotplug(struct vscsibk_info *info, int op,
  899. char *ent)
  900. {
  901. int err;
  902. struct ids_tuple vir;
  903. char *val;
  904. int device_state;
  905. char phy[VSCSI_NAMELEN];
  906. char str[64];
  907. char state[64];
  908. struct xenbus_device *dev = info->dev;
  909. /* read status */
  910. snprintf(state, sizeof(state), "vscsi-devs/%s/state", ent);
  911. err = xenbus_scanf(XBT_NIL, dev->nodename, state, "%u", &device_state);
  912. if (XENBUS_EXIST_ERR(err))
  913. return;
  914. /* physical SCSI device */
  915. snprintf(str, sizeof(str), "vscsi-devs/%s/p-dev", ent);
  916. val = xenbus_read(XBT_NIL, dev->nodename, str, NULL);
  917. if (IS_ERR(val)) {
  918. xenbus_printf(XBT_NIL, dev->nodename, state,
  919. "%d", XenbusStateClosed);
  920. return;
  921. }
  922. strlcpy(phy, val, VSCSI_NAMELEN);
  923. kfree(val);
  924. /* virtual SCSI device */
  925. snprintf(str, sizeof(str), "vscsi-devs/%s/v-dev", ent);
  926. err = xenbus_scanf(XBT_NIL, dev->nodename, str, "%u:%u:%u:%u",
  927. &vir.hst, &vir.chn, &vir.tgt, &vir.lun);
  928. if (XENBUS_EXIST_ERR(err)) {
  929. xenbus_printf(XBT_NIL, dev->nodename, state,
  930. "%d", XenbusStateClosed);
  931. return;
  932. }
  933. switch (op) {
  934. case VSCSIBACK_OP_ADD_OR_DEL_LUN:
  935. switch (device_state) {
  936. case XenbusStateInitialising:
  937. scsiback_do_add_lun(info, state, phy, &vir, 0);
  938. break;
  939. case XenbusStateConnected:
  940. scsiback_do_add_lun(info, state, phy, &vir, 1);
  941. break;
  942. case XenbusStateClosing:
  943. scsiback_do_del_lun(info, state, &vir);
  944. break;
  945. default:
  946. break;
  947. }
  948. break;
  949. case VSCSIBACK_OP_UPDATEDEV_STATE:
  950. if (device_state == XenbusStateInitialised) {
  951. /* modify vscsi-devs/dev-x/state */
  952. if (xenbus_printf(XBT_NIL, dev->nodename, state,
  953. "%d", XenbusStateConnected)) {
  954. pr_err("xenbus_printf error %s\n", str);
  955. scsiback_del_translation_entry(info, &vir);
  956. xenbus_printf(XBT_NIL, dev->nodename, state,
  957. "%d", XenbusStateClosed);
  958. }
  959. }
  960. break;
  961. /* When it is necessary, processing is added here. */
  962. default:
  963. break;
  964. }
  965. }
  966. static void scsiback_do_lun_hotplug(struct vscsibk_info *info, int op)
  967. {
  968. int i;
  969. char **dir;
  970. unsigned int ndir = 0;
  971. dir = xenbus_directory(XBT_NIL, info->dev->nodename, "vscsi-devs",
  972. &ndir);
  973. if (IS_ERR(dir))
  974. return;
  975. for (i = 0; i < ndir; i++)
  976. scsiback_do_1lun_hotplug(info, op, dir[i]);
  977. kfree(dir);
  978. }
  979. static void scsiback_frontend_changed(struct xenbus_device *dev,
  980. enum xenbus_state frontend_state)
  981. {
  982. struct vscsibk_info *info = dev_get_drvdata(&dev->dev);
  983. switch (frontend_state) {
  984. case XenbusStateInitialising:
  985. break;
  986. case XenbusStateInitialised:
  987. if (scsiback_map(info))
  988. break;
  989. scsiback_do_lun_hotplug(info, VSCSIBACK_OP_ADD_OR_DEL_LUN);
  990. xenbus_switch_state(dev, XenbusStateConnected);
  991. break;
  992. case XenbusStateConnected:
  993. scsiback_do_lun_hotplug(info, VSCSIBACK_OP_UPDATEDEV_STATE);
  994. if (dev->state == XenbusStateConnected)
  995. break;
  996. xenbus_switch_state(dev, XenbusStateConnected);
  997. break;
  998. case XenbusStateClosing:
  999. if (info->irq)
  1000. scsiback_disconnect(info);
  1001. xenbus_switch_state(dev, XenbusStateClosing);
  1002. break;
  1003. case XenbusStateClosed:
  1004. xenbus_switch_state(dev, XenbusStateClosed);
  1005. if (xenbus_dev_is_online(dev))
  1006. break;
  1007. /* fall through if not online */
  1008. case XenbusStateUnknown:
  1009. device_unregister(&dev->dev);
  1010. break;
  1011. case XenbusStateReconfiguring:
  1012. scsiback_do_lun_hotplug(info, VSCSIBACK_OP_ADD_OR_DEL_LUN);
  1013. xenbus_switch_state(dev, XenbusStateReconfigured);
  1014. break;
  1015. default:
  1016. xenbus_dev_fatal(dev, -EINVAL, "saw state %d at frontend",
  1017. frontend_state);
  1018. break;
  1019. }
  1020. }
  1021. /*
  1022. Release the translation entry specfied
  1023. */
  1024. static void scsiback_release_translation_entry(struct vscsibk_info *info)
  1025. {
  1026. struct v2p_entry *entry, *tmp;
  1027. struct list_head *head = &(info->v2p_entry_lists);
  1028. unsigned long flags;
  1029. spin_lock_irqsave(&info->v2p_lock, flags);
  1030. list_for_each_entry_safe(entry, tmp, head, l)
  1031. __scsiback_del_translation_entry(entry);
  1032. spin_unlock_irqrestore(&info->v2p_lock, flags);
  1033. }
  1034. static int scsiback_remove(struct xenbus_device *dev)
  1035. {
  1036. struct vscsibk_info *info = dev_get_drvdata(&dev->dev);
  1037. if (info->irq)
  1038. scsiback_disconnect(info);
  1039. scsiback_release_translation_entry(info);
  1040. dev_set_drvdata(&dev->dev, NULL);
  1041. return 0;
  1042. }
  1043. static int scsiback_probe(struct xenbus_device *dev,
  1044. const struct xenbus_device_id *id)
  1045. {
  1046. int err;
  1047. struct vscsibk_info *info = kzalloc(sizeof(struct vscsibk_info),
  1048. GFP_KERNEL);
  1049. pr_debug("%s %p %d\n", __func__, dev, dev->otherend_id);
  1050. if (!info) {
  1051. xenbus_dev_fatal(dev, -ENOMEM, "allocating backend structure");
  1052. return -ENOMEM;
  1053. }
  1054. info->dev = dev;
  1055. dev_set_drvdata(&dev->dev, info);
  1056. info->domid = dev->otherend_id;
  1057. spin_lock_init(&info->ring_lock);
  1058. info->ring_error = 0;
  1059. atomic_set(&info->nr_unreplied_reqs, 0);
  1060. init_waitqueue_head(&info->waiting_to_free);
  1061. info->dev = dev;
  1062. info->irq = 0;
  1063. INIT_LIST_HEAD(&info->v2p_entry_lists);
  1064. spin_lock_init(&info->v2p_lock);
  1065. err = xenbus_printf(XBT_NIL, dev->nodename, "feature-sg-grant", "%u",
  1066. SG_ALL);
  1067. if (err)
  1068. xenbus_dev_error(dev, err, "writing feature-sg-grant");
  1069. err = xenbus_switch_state(dev, XenbusStateInitWait);
  1070. if (err)
  1071. goto fail;
  1072. return 0;
  1073. fail:
  1074. pr_warn("%s failed\n", __func__);
  1075. scsiback_remove(dev);
  1076. return err;
  1077. }
  1078. static char *scsiback_dump_proto_id(struct scsiback_tport *tport)
  1079. {
  1080. switch (tport->tport_proto_id) {
  1081. case SCSI_PROTOCOL_SAS:
  1082. return "SAS";
  1083. case SCSI_PROTOCOL_FCP:
  1084. return "FCP";
  1085. case SCSI_PROTOCOL_ISCSI:
  1086. return "iSCSI";
  1087. default:
  1088. break;
  1089. }
  1090. return "Unknown";
  1091. }
  1092. static char *scsiback_get_fabric_wwn(struct se_portal_group *se_tpg)
  1093. {
  1094. struct scsiback_tpg *tpg = container_of(se_tpg,
  1095. struct scsiback_tpg, se_tpg);
  1096. struct scsiback_tport *tport = tpg->tport;
  1097. return &tport->tport_name[0];
  1098. }
  1099. static u16 scsiback_get_tag(struct se_portal_group *se_tpg)
  1100. {
  1101. struct scsiback_tpg *tpg = container_of(se_tpg,
  1102. struct scsiback_tpg, se_tpg);
  1103. return tpg->tport_tpgt;
  1104. }
  1105. static struct se_wwn *
  1106. scsiback_make_tport(struct target_fabric_configfs *tf,
  1107. struct config_group *group,
  1108. const char *name)
  1109. {
  1110. struct scsiback_tport *tport;
  1111. char *ptr;
  1112. u64 wwpn = 0;
  1113. int off = 0;
  1114. tport = kzalloc(sizeof(struct scsiback_tport), GFP_KERNEL);
  1115. if (!tport)
  1116. return ERR_PTR(-ENOMEM);
  1117. tport->tport_wwpn = wwpn;
  1118. /*
  1119. * Determine the emulated Protocol Identifier and Target Port Name
  1120. * based on the incoming configfs directory name.
  1121. */
  1122. ptr = strstr(name, "naa.");
  1123. if (ptr) {
  1124. tport->tport_proto_id = SCSI_PROTOCOL_SAS;
  1125. goto check_len;
  1126. }
  1127. ptr = strstr(name, "fc.");
  1128. if (ptr) {
  1129. tport->tport_proto_id = SCSI_PROTOCOL_FCP;
  1130. off = 3; /* Skip over "fc." */
  1131. goto check_len;
  1132. }
  1133. ptr = strstr(name, "iqn.");
  1134. if (ptr) {
  1135. tport->tport_proto_id = SCSI_PROTOCOL_ISCSI;
  1136. goto check_len;
  1137. }
  1138. pr_err("Unable to locate prefix for emulated Target Port: %s\n", name);
  1139. kfree(tport);
  1140. return ERR_PTR(-EINVAL);
  1141. check_len:
  1142. if (strlen(name) >= VSCSI_NAMELEN) {
  1143. pr_err("Emulated %s Address: %s, exceeds max: %d\n", name,
  1144. scsiback_dump_proto_id(tport), VSCSI_NAMELEN);
  1145. kfree(tport);
  1146. return ERR_PTR(-EINVAL);
  1147. }
  1148. snprintf(&tport->tport_name[0], VSCSI_NAMELEN, "%s", &name[off]);
  1149. pr_debug("Allocated emulated Target %s Address: %s\n",
  1150. scsiback_dump_proto_id(tport), name);
  1151. return &tport->tport_wwn;
  1152. }
  1153. static void scsiback_drop_tport(struct se_wwn *wwn)
  1154. {
  1155. struct scsiback_tport *tport = container_of(wwn,
  1156. struct scsiback_tport, tport_wwn);
  1157. pr_debug("Deallocating emulated Target %s Address: %s\n",
  1158. scsiback_dump_proto_id(tport), tport->tport_name);
  1159. kfree(tport);
  1160. }
  1161. static u32 scsiback_tpg_get_inst_index(struct se_portal_group *se_tpg)
  1162. {
  1163. return 1;
  1164. }
  1165. static int scsiback_check_stop_free(struct se_cmd *se_cmd)
  1166. {
  1167. return transport_generic_free_cmd(se_cmd, 0);
  1168. }
  1169. static void scsiback_release_cmd(struct se_cmd *se_cmd)
  1170. {
  1171. struct se_session *se_sess = se_cmd->se_sess;
  1172. struct se_tmr_req *se_tmr = se_cmd->se_tmr_req;
  1173. if (se_tmr && se_cmd->se_cmd_flags & SCF_SCSI_TMR_CDB) {
  1174. struct scsiback_tmr *tmr = se_tmr->fabric_tmr_ptr;
  1175. kfree(tmr);
  1176. }
  1177. percpu_ida_free(&se_sess->sess_tag_pool, se_cmd->map_tag);
  1178. }
  1179. static u32 scsiback_sess_get_index(struct se_session *se_sess)
  1180. {
  1181. return 0;
  1182. }
  1183. static int scsiback_write_pending(struct se_cmd *se_cmd)
  1184. {
  1185. /* Go ahead and process the write immediately */
  1186. target_execute_cmd(se_cmd);
  1187. return 0;
  1188. }
  1189. static int scsiback_write_pending_status(struct se_cmd *se_cmd)
  1190. {
  1191. return 0;
  1192. }
  1193. static void scsiback_set_default_node_attrs(struct se_node_acl *nacl)
  1194. {
  1195. }
  1196. static int scsiback_get_cmd_state(struct se_cmd *se_cmd)
  1197. {
  1198. return 0;
  1199. }
  1200. static int scsiback_queue_data_in(struct se_cmd *se_cmd)
  1201. {
  1202. struct vscsibk_pend *pending_req = container_of(se_cmd,
  1203. struct vscsibk_pend, se_cmd);
  1204. pending_req->result = SAM_STAT_GOOD;
  1205. scsiback_cmd_done(pending_req);
  1206. return 0;
  1207. }
  1208. static int scsiback_queue_status(struct se_cmd *se_cmd)
  1209. {
  1210. struct vscsibk_pend *pending_req = container_of(se_cmd,
  1211. struct vscsibk_pend, se_cmd);
  1212. if (se_cmd->sense_buffer &&
  1213. ((se_cmd->se_cmd_flags & SCF_TRANSPORT_TASK_SENSE) ||
  1214. (se_cmd->se_cmd_flags & SCF_EMULATED_TASK_SENSE)))
  1215. pending_req->result = (DRIVER_SENSE << 24) |
  1216. SAM_STAT_CHECK_CONDITION;
  1217. else
  1218. pending_req->result = se_cmd->scsi_status;
  1219. scsiback_cmd_done(pending_req);
  1220. return 0;
  1221. }
  1222. static void scsiback_queue_tm_rsp(struct se_cmd *se_cmd)
  1223. {
  1224. struct se_tmr_req *se_tmr = se_cmd->se_tmr_req;
  1225. struct scsiback_tmr *tmr = se_tmr->fabric_tmr_ptr;
  1226. atomic_set(&tmr->tmr_complete, 1);
  1227. wake_up(&tmr->tmr_wait);
  1228. }
  1229. static void scsiback_aborted_task(struct se_cmd *se_cmd)
  1230. {
  1231. }
  1232. static ssize_t scsiback_tpg_param_alias_show(struct config_item *item,
  1233. char *page)
  1234. {
  1235. struct se_portal_group *se_tpg = param_to_tpg(item);
  1236. struct scsiback_tpg *tpg = container_of(se_tpg, struct scsiback_tpg,
  1237. se_tpg);
  1238. ssize_t rb;
  1239. mutex_lock(&tpg->tv_tpg_mutex);
  1240. rb = snprintf(page, PAGE_SIZE, "%s\n", tpg->param_alias);
  1241. mutex_unlock(&tpg->tv_tpg_mutex);
  1242. return rb;
  1243. }
  1244. static ssize_t scsiback_tpg_param_alias_store(struct config_item *item,
  1245. const char *page, size_t count)
  1246. {
  1247. struct se_portal_group *se_tpg = param_to_tpg(item);
  1248. struct scsiback_tpg *tpg = container_of(se_tpg, struct scsiback_tpg,
  1249. se_tpg);
  1250. int len;
  1251. if (strlen(page) >= VSCSI_NAMELEN) {
  1252. pr_err("param alias: %s, exceeds max: %d\n", page,
  1253. VSCSI_NAMELEN);
  1254. return -EINVAL;
  1255. }
  1256. mutex_lock(&tpg->tv_tpg_mutex);
  1257. len = snprintf(tpg->param_alias, VSCSI_NAMELEN, "%s", page);
  1258. if (tpg->param_alias[len - 1] == '\n')
  1259. tpg->param_alias[len - 1] = '\0';
  1260. mutex_unlock(&tpg->tv_tpg_mutex);
  1261. return count;
  1262. }
  1263. CONFIGFS_ATTR(scsiback_tpg_param_, alias);
  1264. static struct configfs_attribute *scsiback_param_attrs[] = {
  1265. &scsiback_tpg_param_attr_alias,
  1266. NULL,
  1267. };
  1268. static int scsiback_alloc_sess_cb(struct se_portal_group *se_tpg,
  1269. struct se_session *se_sess, void *p)
  1270. {
  1271. struct scsiback_tpg *tpg = container_of(se_tpg,
  1272. struct scsiback_tpg, se_tpg);
  1273. tpg->tpg_nexus = p;
  1274. return 0;
  1275. }
  1276. static int scsiback_make_nexus(struct scsiback_tpg *tpg,
  1277. const char *name)
  1278. {
  1279. struct scsiback_nexus *tv_nexus;
  1280. int ret = 0;
  1281. mutex_lock(&tpg->tv_tpg_mutex);
  1282. if (tpg->tpg_nexus) {
  1283. pr_debug("tpg->tpg_nexus already exists\n");
  1284. ret = -EEXIST;
  1285. goto out_unlock;
  1286. }
  1287. tv_nexus = kzalloc(sizeof(struct scsiback_nexus), GFP_KERNEL);
  1288. if (!tv_nexus) {
  1289. ret = -ENOMEM;
  1290. goto out_unlock;
  1291. }
  1292. tv_nexus->tvn_se_sess = target_alloc_session(&tpg->se_tpg,
  1293. VSCSI_DEFAULT_SESSION_TAGS,
  1294. sizeof(struct vscsibk_pend),
  1295. TARGET_PROT_NORMAL, name,
  1296. tv_nexus, scsiback_alloc_sess_cb);
  1297. if (IS_ERR(tv_nexus->tvn_se_sess)) {
  1298. kfree(tv_nexus);
  1299. ret = -ENOMEM;
  1300. goto out_unlock;
  1301. }
  1302. out_unlock:
  1303. mutex_unlock(&tpg->tv_tpg_mutex);
  1304. return ret;
  1305. }
  1306. static int scsiback_drop_nexus(struct scsiback_tpg *tpg)
  1307. {
  1308. struct se_session *se_sess;
  1309. struct scsiback_nexus *tv_nexus;
  1310. mutex_lock(&tpg->tv_tpg_mutex);
  1311. tv_nexus = tpg->tpg_nexus;
  1312. if (!tv_nexus) {
  1313. mutex_unlock(&tpg->tv_tpg_mutex);
  1314. return -ENODEV;
  1315. }
  1316. se_sess = tv_nexus->tvn_se_sess;
  1317. if (!se_sess) {
  1318. mutex_unlock(&tpg->tv_tpg_mutex);
  1319. return -ENODEV;
  1320. }
  1321. if (tpg->tv_tpg_port_count != 0) {
  1322. mutex_unlock(&tpg->tv_tpg_mutex);
  1323. pr_err("Unable to remove xen-pvscsi I_T Nexus with active TPG port count: %d\n",
  1324. tpg->tv_tpg_port_count);
  1325. return -EBUSY;
  1326. }
  1327. if (tpg->tv_tpg_fe_count != 0) {
  1328. mutex_unlock(&tpg->tv_tpg_mutex);
  1329. pr_err("Unable to remove xen-pvscsi I_T Nexus with active TPG frontend count: %d\n",
  1330. tpg->tv_tpg_fe_count);
  1331. return -EBUSY;
  1332. }
  1333. pr_debug("Removing I_T Nexus to emulated %s Initiator Port: %s\n",
  1334. scsiback_dump_proto_id(tpg->tport),
  1335. tv_nexus->tvn_se_sess->se_node_acl->initiatorname);
  1336. /*
  1337. * Release the SCSI I_T Nexus to the emulated xen-pvscsi Target Port
  1338. */
  1339. transport_deregister_session(tv_nexus->tvn_se_sess);
  1340. tpg->tpg_nexus = NULL;
  1341. mutex_unlock(&tpg->tv_tpg_mutex);
  1342. kfree(tv_nexus);
  1343. return 0;
  1344. }
  1345. static ssize_t scsiback_tpg_nexus_show(struct config_item *item, char *page)
  1346. {
  1347. struct se_portal_group *se_tpg = to_tpg(item);
  1348. struct scsiback_tpg *tpg = container_of(se_tpg,
  1349. struct scsiback_tpg, se_tpg);
  1350. struct scsiback_nexus *tv_nexus;
  1351. ssize_t ret;
  1352. mutex_lock(&tpg->tv_tpg_mutex);
  1353. tv_nexus = tpg->tpg_nexus;
  1354. if (!tv_nexus) {
  1355. mutex_unlock(&tpg->tv_tpg_mutex);
  1356. return -ENODEV;
  1357. }
  1358. ret = snprintf(page, PAGE_SIZE, "%s\n",
  1359. tv_nexus->tvn_se_sess->se_node_acl->initiatorname);
  1360. mutex_unlock(&tpg->tv_tpg_mutex);
  1361. return ret;
  1362. }
  1363. static ssize_t scsiback_tpg_nexus_store(struct config_item *item,
  1364. const char *page, size_t count)
  1365. {
  1366. struct se_portal_group *se_tpg = to_tpg(item);
  1367. struct scsiback_tpg *tpg = container_of(se_tpg,
  1368. struct scsiback_tpg, se_tpg);
  1369. struct scsiback_tport *tport_wwn = tpg->tport;
  1370. unsigned char i_port[VSCSI_NAMELEN], *ptr, *port_ptr;
  1371. int ret;
  1372. /*
  1373. * Shutdown the active I_T nexus if 'NULL' is passed.
  1374. */
  1375. if (!strncmp(page, "NULL", 4)) {
  1376. ret = scsiback_drop_nexus(tpg);
  1377. return (!ret) ? count : ret;
  1378. }
  1379. /*
  1380. * Otherwise make sure the passed virtual Initiator port WWN matches
  1381. * the fabric protocol_id set in scsiback_make_tport(), and call
  1382. * scsiback_make_nexus().
  1383. */
  1384. if (strlen(page) >= VSCSI_NAMELEN) {
  1385. pr_err("Emulated NAA Sas Address: %s, exceeds max: %d\n",
  1386. page, VSCSI_NAMELEN);
  1387. return -EINVAL;
  1388. }
  1389. snprintf(&i_port[0], VSCSI_NAMELEN, "%s", page);
  1390. ptr = strstr(i_port, "naa.");
  1391. if (ptr) {
  1392. if (tport_wwn->tport_proto_id != SCSI_PROTOCOL_SAS) {
  1393. pr_err("Passed SAS Initiator Port %s does not match target port protoid: %s\n",
  1394. i_port, scsiback_dump_proto_id(tport_wwn));
  1395. return -EINVAL;
  1396. }
  1397. port_ptr = &i_port[0];
  1398. goto check_newline;
  1399. }
  1400. ptr = strstr(i_port, "fc.");
  1401. if (ptr) {
  1402. if (tport_wwn->tport_proto_id != SCSI_PROTOCOL_FCP) {
  1403. pr_err("Passed FCP Initiator Port %s does not match target port protoid: %s\n",
  1404. i_port, scsiback_dump_proto_id(tport_wwn));
  1405. return -EINVAL;
  1406. }
  1407. port_ptr = &i_port[3]; /* Skip over "fc." */
  1408. goto check_newline;
  1409. }
  1410. ptr = strstr(i_port, "iqn.");
  1411. if (ptr) {
  1412. if (tport_wwn->tport_proto_id != SCSI_PROTOCOL_ISCSI) {
  1413. pr_err("Passed iSCSI Initiator Port %s does not match target port protoid: %s\n",
  1414. i_port, scsiback_dump_proto_id(tport_wwn));
  1415. return -EINVAL;
  1416. }
  1417. port_ptr = &i_port[0];
  1418. goto check_newline;
  1419. }
  1420. pr_err("Unable to locate prefix for emulated Initiator Port: %s\n",
  1421. i_port);
  1422. return -EINVAL;
  1423. /*
  1424. * Clear any trailing newline for the NAA WWN
  1425. */
  1426. check_newline:
  1427. if (i_port[strlen(i_port) - 1] == '\n')
  1428. i_port[strlen(i_port) - 1] = '\0';
  1429. ret = scsiback_make_nexus(tpg, port_ptr);
  1430. if (ret < 0)
  1431. return ret;
  1432. return count;
  1433. }
  1434. CONFIGFS_ATTR(scsiback_tpg_, nexus);
  1435. static struct configfs_attribute *scsiback_tpg_attrs[] = {
  1436. &scsiback_tpg_attr_nexus,
  1437. NULL,
  1438. };
  1439. static ssize_t
  1440. scsiback_wwn_version_show(struct config_item *item, char *page)
  1441. {
  1442. return sprintf(page, "xen-pvscsi fabric module %s on %s/%s on "
  1443. UTS_RELEASE"\n",
  1444. VSCSI_VERSION, utsname()->sysname, utsname()->machine);
  1445. }
  1446. CONFIGFS_ATTR_RO(scsiback_wwn_, version);
  1447. static struct configfs_attribute *scsiback_wwn_attrs[] = {
  1448. &scsiback_wwn_attr_version,
  1449. NULL,
  1450. };
  1451. static char *scsiback_get_fabric_name(void)
  1452. {
  1453. return "xen-pvscsi";
  1454. }
  1455. static int scsiback_port_link(struct se_portal_group *se_tpg,
  1456. struct se_lun *lun)
  1457. {
  1458. struct scsiback_tpg *tpg = container_of(se_tpg,
  1459. struct scsiback_tpg, se_tpg);
  1460. mutex_lock(&tpg->tv_tpg_mutex);
  1461. tpg->tv_tpg_port_count++;
  1462. mutex_unlock(&tpg->tv_tpg_mutex);
  1463. return 0;
  1464. }
  1465. static void scsiback_port_unlink(struct se_portal_group *se_tpg,
  1466. struct se_lun *lun)
  1467. {
  1468. struct scsiback_tpg *tpg = container_of(se_tpg,
  1469. struct scsiback_tpg, se_tpg);
  1470. mutex_lock(&tpg->tv_tpg_mutex);
  1471. tpg->tv_tpg_port_count--;
  1472. mutex_unlock(&tpg->tv_tpg_mutex);
  1473. }
  1474. static struct se_portal_group *
  1475. scsiback_make_tpg(struct se_wwn *wwn,
  1476. struct config_group *group,
  1477. const char *name)
  1478. {
  1479. struct scsiback_tport *tport = container_of(wwn,
  1480. struct scsiback_tport, tport_wwn);
  1481. struct scsiback_tpg *tpg;
  1482. u16 tpgt;
  1483. int ret;
  1484. if (strstr(name, "tpgt_") != name)
  1485. return ERR_PTR(-EINVAL);
  1486. ret = kstrtou16(name + 5, 10, &tpgt);
  1487. if (ret)
  1488. return ERR_PTR(ret);
  1489. tpg = kzalloc(sizeof(struct scsiback_tpg), GFP_KERNEL);
  1490. if (!tpg)
  1491. return ERR_PTR(-ENOMEM);
  1492. mutex_init(&tpg->tv_tpg_mutex);
  1493. INIT_LIST_HEAD(&tpg->tv_tpg_list);
  1494. INIT_LIST_HEAD(&tpg->info_list);
  1495. tpg->tport = tport;
  1496. tpg->tport_tpgt = tpgt;
  1497. ret = core_tpg_register(wwn, &tpg->se_tpg, tport->tport_proto_id);
  1498. if (ret < 0) {
  1499. kfree(tpg);
  1500. return NULL;
  1501. }
  1502. mutex_lock(&scsiback_mutex);
  1503. list_add_tail(&tpg->tv_tpg_list, &scsiback_list);
  1504. mutex_unlock(&scsiback_mutex);
  1505. return &tpg->se_tpg;
  1506. }
  1507. static void scsiback_drop_tpg(struct se_portal_group *se_tpg)
  1508. {
  1509. struct scsiback_tpg *tpg = container_of(se_tpg,
  1510. struct scsiback_tpg, se_tpg);
  1511. mutex_lock(&scsiback_mutex);
  1512. list_del(&tpg->tv_tpg_list);
  1513. mutex_unlock(&scsiback_mutex);
  1514. /*
  1515. * Release the virtual I_T Nexus for this xen-pvscsi TPG
  1516. */
  1517. scsiback_drop_nexus(tpg);
  1518. /*
  1519. * Deregister the se_tpg from TCM.
  1520. */
  1521. core_tpg_deregister(se_tpg);
  1522. kfree(tpg);
  1523. }
  1524. static int scsiback_check_true(struct se_portal_group *se_tpg)
  1525. {
  1526. return 1;
  1527. }
  1528. static int scsiback_check_false(struct se_portal_group *se_tpg)
  1529. {
  1530. return 0;
  1531. }
  1532. static const struct target_core_fabric_ops scsiback_ops = {
  1533. .module = THIS_MODULE,
  1534. .name = "xen-pvscsi",
  1535. .get_fabric_name = scsiback_get_fabric_name,
  1536. .tpg_get_wwn = scsiback_get_fabric_wwn,
  1537. .tpg_get_tag = scsiback_get_tag,
  1538. .tpg_check_demo_mode = scsiback_check_true,
  1539. .tpg_check_demo_mode_cache = scsiback_check_true,
  1540. .tpg_check_demo_mode_write_protect = scsiback_check_false,
  1541. .tpg_check_prod_mode_write_protect = scsiback_check_false,
  1542. .tpg_get_inst_index = scsiback_tpg_get_inst_index,
  1543. .check_stop_free = scsiback_check_stop_free,
  1544. .release_cmd = scsiback_release_cmd,
  1545. .sess_get_index = scsiback_sess_get_index,
  1546. .sess_get_initiator_sid = NULL,
  1547. .write_pending = scsiback_write_pending,
  1548. .write_pending_status = scsiback_write_pending_status,
  1549. .set_default_node_attributes = scsiback_set_default_node_attrs,
  1550. .get_cmd_state = scsiback_get_cmd_state,
  1551. .queue_data_in = scsiback_queue_data_in,
  1552. .queue_status = scsiback_queue_status,
  1553. .queue_tm_rsp = scsiback_queue_tm_rsp,
  1554. .aborted_task = scsiback_aborted_task,
  1555. /*
  1556. * Setup callers for generic logic in target_core_fabric_configfs.c
  1557. */
  1558. .fabric_make_wwn = scsiback_make_tport,
  1559. .fabric_drop_wwn = scsiback_drop_tport,
  1560. .fabric_make_tpg = scsiback_make_tpg,
  1561. .fabric_drop_tpg = scsiback_drop_tpg,
  1562. .fabric_post_link = scsiback_port_link,
  1563. .fabric_pre_unlink = scsiback_port_unlink,
  1564. .tfc_wwn_attrs = scsiback_wwn_attrs,
  1565. .tfc_tpg_base_attrs = scsiback_tpg_attrs,
  1566. .tfc_tpg_param_attrs = scsiback_param_attrs,
  1567. };
  1568. static const struct xenbus_device_id scsiback_ids[] = {
  1569. { "vscsi" },
  1570. { "" }
  1571. };
  1572. static struct xenbus_driver scsiback_driver = {
  1573. .ids = scsiback_ids,
  1574. .probe = scsiback_probe,
  1575. .remove = scsiback_remove,
  1576. .otherend_changed = scsiback_frontend_changed
  1577. };
  1578. static int __init scsiback_init(void)
  1579. {
  1580. int ret;
  1581. if (!xen_domain())
  1582. return -ENODEV;
  1583. pr_debug("xen-pvscsi: fabric module %s on %s/%s on "UTS_RELEASE"\n",
  1584. VSCSI_VERSION, utsname()->sysname, utsname()->machine);
  1585. ret = xenbus_register_backend(&scsiback_driver);
  1586. if (ret)
  1587. goto out;
  1588. ret = target_register_template(&scsiback_ops);
  1589. if (ret)
  1590. goto out_unregister_xenbus;
  1591. return 0;
  1592. out_unregister_xenbus:
  1593. xenbus_unregister_driver(&scsiback_driver);
  1594. out:
  1595. pr_err("%s: error %d\n", __func__, ret);
  1596. return ret;
  1597. }
  1598. static void __exit scsiback_exit(void)
  1599. {
  1600. struct page *page;
  1601. while (free_pages_num) {
  1602. if (get_free_page(&page))
  1603. BUG();
  1604. gnttab_free_pages(1, &page);
  1605. }
  1606. target_unregister_template(&scsiback_ops);
  1607. xenbus_unregister_driver(&scsiback_driver);
  1608. }
  1609. module_init(scsiback_init);
  1610. module_exit(scsiback_exit);
  1611. MODULE_DESCRIPTION("Xen SCSI backend driver");
  1612. MODULE_LICENSE("Dual BSD/GPL");
  1613. MODULE_ALIAS("xen-backend:vscsi");
  1614. MODULE_AUTHOR("Juergen Gross <jgross@suse.com>");