1 // SPDX-License-Identifier: GPL-2.0+ 2 /******************************************************************************* 3 * Vhost kernel TCM fabric driver for virtio SCSI initiators 4 * 5 * (C) Copyright 2010-2013 Datera, Inc. 6 * (C) Copyright 2010-2012 IBM Corp. 7 * 8 * Authors: Nicholas A. Bellinger <nab@daterainc.com> 9 * Stefan Hajnoczi <stefanha@linux.vnet.ibm.com> 10 ****************************************************************************/ 11 12 #include <linux/module.h> 13 #include <linux/moduleparam.h> 14 #include <generated/utsrelease.h> 15 #include <linux/utsname.h> 16 #include <linux/init.h> 17 #include <linux/slab.h> 18 #include <linux/kthread.h> 19 #include <linux/types.h> 20 #include <linux/string.h> 21 #include <linux/configfs.h> 22 #include <linux/ctype.h> 23 #include <linux/compat.h> 24 #include <linux/eventfd.h> 25 #include <linux/fs.h> 26 #include <linux/vmalloc.h> 27 #include <linux/miscdevice.h> 28 #include <linux/blk_types.h> 29 #include <linux/bio.h> 30 #include <linux/unaligned.h> 31 #include <scsi/scsi_common.h> 32 #include <scsi/scsi_proto.h> 33 #include <target/target_core_base.h> 34 #include <target/target_core_fabric.h> 35 #include <linux/vhost.h> 36 #include <linux/virtio_scsi.h> 37 #include <linux/llist.h> 38 #include <linux/bitmap.h> 39 40 #include "vhost.h" 41 42 #define VHOST_SCSI_VERSION "v0.1" 43 #define VHOST_SCSI_NAMELEN 256 44 #define VHOST_SCSI_MAX_CDB_SIZE 32 45 #define VHOST_SCSI_PREALLOC_SGLS 2048 46 #define VHOST_SCSI_PREALLOC_UPAGES 2048 47 #define VHOST_SCSI_PREALLOC_PROT_SGLS 2048 48 /* 49 * For the legacy descriptor case we allocate an iov per byte in the 50 * virtio_scsi_cmd_resp struct. 51 */ 52 #define VHOST_SCSI_MAX_RESP_IOVS sizeof(struct virtio_scsi_cmd_resp) 53 54 static unsigned int vhost_scsi_inline_sg_cnt = VHOST_SCSI_PREALLOC_SGLS; 55 56 #ifdef CONFIG_ARCH_NO_SG_CHAIN 57 static int vhost_scsi_set_inline_sg_cnt(const char *buf, 58 const struct kernel_param *kp) 59 { 60 pr_err("Setting inline_sg_cnt is not supported.\n"); 61 return -EOPNOTSUPP; 62 } 63 #else 64 static int vhost_scsi_set_inline_sg_cnt(const char *buf, 65 const struct kernel_param *kp) 66 { 67 unsigned int cnt; 68 int ret; 69 70 ret = kstrtouint(buf, 10, &cnt); 71 if (ret) 72 return ret; 73 74 if (cnt > VHOST_SCSI_PREALLOC_SGLS) { 75 pr_err("Max inline_sg_cnt is %u\n", VHOST_SCSI_PREALLOC_SGLS); 76 return -EINVAL; 77 } 78 79 vhost_scsi_inline_sg_cnt = cnt; 80 return 0; 81 } 82 #endif 83 84 static int vhost_scsi_get_inline_sg_cnt(char *buf, 85 const struct kernel_param *kp) 86 { 87 return sprintf(buf, "%u\n", vhost_scsi_inline_sg_cnt); 88 } 89 90 static const struct kernel_param_ops vhost_scsi_inline_sg_cnt_op = { 91 .get = vhost_scsi_get_inline_sg_cnt, 92 .set = vhost_scsi_set_inline_sg_cnt, 93 }; 94 95 module_param_cb(inline_sg_cnt, &vhost_scsi_inline_sg_cnt_op, NULL, 0644); 96 MODULE_PARM_DESC(inline_sg_cnt, "Set the number of scatterlist entries to pre-allocate. The default is 2048."); 97 98 /* Max number of requests before requeueing the job. 99 * Using this limit prevents one virtqueue from starving others with 100 * request. 101 */ 102 #define VHOST_SCSI_WEIGHT 256 103 104 struct vhost_scsi_inflight { 105 /* Wait for the flush operation to finish */ 106 struct completion comp; 107 /* Refcount for the inflight reqs */ 108 struct kref kref; 109 }; 110 111 struct vhost_scsi_cmd { 112 /* Descriptor from vhost_get_vq_desc() for virt_queue segment */ 113 int tvc_vq_desc; 114 /* The number of scatterlists associated with this cmd */ 115 u32 tvc_sgl_count; 116 u32 tvc_prot_sgl_count; 117 u32 copied_iov:1; 118 const void *read_iov; 119 struct iov_iter *read_iter; 120 struct scatterlist *sgl; 121 struct sg_table table; 122 struct scatterlist *prot_sgl; 123 struct sg_table prot_table; 124 /* Fast path response header iovec used when only one vec is needed */ 125 struct iovec tvc_resp_iov; 126 /* Number of iovs for response */ 127 unsigned int tvc_resp_iovs_cnt; 128 /* Pointer to response header iovecs if more than one is needed */ 129 struct iovec *tvc_resp_iovs; 130 /* Pointer to vhost_virtqueue for the cmd */ 131 struct vhost_virtqueue *tvc_vq; 132 /* The TCM I/O descriptor that is accessed via container_of() */ 133 struct se_cmd tvc_se_cmd; 134 /* Sense buffer that will be mapped into outgoing status */ 135 unsigned char tvc_sense_buf[TRANSPORT_SENSE_BUFFER]; 136 /* 137 * Dirty write descriptors of this command. 138 */ 139 struct vhost_log *tvc_log; 140 unsigned int tvc_log_num; 141 /* Completed commands list, serviced from vhost worker thread */ 142 struct llist_node tvc_completion_list; 143 /* Used to track inflight cmd */ 144 struct vhost_scsi_inflight *inflight; 145 }; 146 147 struct vhost_scsi_nexus { 148 /* Pointer to TCM session for I_T Nexus */ 149 struct se_session *tvn_se_sess; 150 }; 151 152 struct vhost_scsi_tpg { 153 /* Vhost port target portal group tag for TCM */ 154 u16 tport_tpgt; 155 /* Used to track number of TPG Port/Lun Links wrt to explicit I_T Nexus shutdown */ 156 int tv_tpg_port_count; 157 /* Used for vhost_scsi device reference to tpg_nexus, protected by tv_tpg_mutex */ 158 int tv_tpg_vhost_count; 159 /* Used for enabling T10-PI with legacy devices */ 160 int tv_fabric_prot_type; 161 /* list for vhost_scsi_list */ 162 struct list_head tv_tpg_list; 163 /* Used to protect access for tpg_nexus */ 164 struct mutex tv_tpg_mutex; 165 /* Pointer to the TCM VHost I_T Nexus for this TPG endpoint */ 166 struct vhost_scsi_nexus *tpg_nexus; 167 /* Pointer back to vhost_scsi_tport */ 168 struct vhost_scsi_tport *tport; 169 /* Returned by vhost_scsi_make_tpg() */ 170 struct se_portal_group se_tpg; 171 /* Pointer back to vhost_scsi, protected by tv_tpg_mutex */ 172 struct vhost_scsi *vhost_scsi; 173 }; 174 175 struct vhost_scsi_tport { 176 /* SCSI protocol the tport is providing */ 177 u8 tport_proto_id; 178 /* Binary World Wide unique Port Name for Vhost Target port */ 179 u64 tport_wwpn; 180 /* ASCII formatted WWPN for Vhost Target port */ 181 char tport_name[VHOST_SCSI_NAMELEN]; 182 /* Returned by vhost_scsi_make_tport() */ 183 struct se_wwn tport_wwn; 184 }; 185 186 struct vhost_scsi_evt { 187 /* event to be sent to guest */ 188 struct virtio_scsi_event event; 189 /* event list, serviced from vhost worker thread */ 190 struct llist_node list; 191 }; 192 193 enum { 194 VHOST_SCSI_VQ_CTL = 0, 195 VHOST_SCSI_VQ_EVT = 1, 196 VHOST_SCSI_VQ_IO = 2, 197 }; 198 199 /* Note: can't set VIRTIO_F_VERSION_1 yet, since that implies ANY_LAYOUT. */ 200 static const int vhost_scsi_bits[] = { 201 VHOST_FEATURES, 202 VIRTIO_SCSI_F_HOTPLUG, 203 VIRTIO_SCSI_F_T10_PI 204 }; 205 206 #define VHOST_SCSI_FEATURES VHOST_FEATURES_U64(vhost_scsi_bits, 0) 207 208 #define VHOST_SCSI_MAX_TARGET 256 209 #define VHOST_SCSI_MAX_IO_VQ 1024 210 #define VHOST_SCSI_MAX_EVENT 128 211 212 static unsigned vhost_scsi_max_io_vqs = 128; 213 module_param_named(max_io_vqs, vhost_scsi_max_io_vqs, uint, 0644); 214 MODULE_PARM_DESC(max_io_vqs, "Set the max number of IO virtqueues a vhost scsi device can support. The default is 128. The max is 1024."); 215 216 struct vhost_scsi_virtqueue { 217 struct vhost_virtqueue vq; 218 struct vhost_scsi *vs; 219 /* 220 * Reference counting for inflight reqs, used for flush operation. At 221 * each time, one reference tracks new commands submitted, while we 222 * wait for another one to reach 0. 223 */ 224 struct vhost_scsi_inflight inflights[2]; 225 /* 226 * Indicate current inflight in use, protected by vq->mutex. 227 * Writers must also take dev mutex and flush under it. 228 */ 229 int inflight_idx; 230 struct vhost_scsi_cmd *scsi_cmds; 231 struct sbitmap scsi_tags; 232 int max_cmds; 233 struct page **upages; 234 235 struct vhost_work completion_work; 236 struct llist_head completion_list; 237 }; 238 239 struct vhost_scsi { 240 /* Protected by vhost_scsi->dev.mutex */ 241 struct vhost_scsi_tpg **vs_tpg; 242 char vs_vhost_wwpn[TRANSPORT_IQN_LEN]; 243 244 struct vhost_dev dev; 245 struct vhost_scsi_virtqueue *vqs; 246 struct vhost_scsi_inflight **old_inflight; 247 248 struct vhost_work vs_event_work; /* evt injection work item */ 249 struct llist_head vs_event_list; /* evt injection queue */ 250 251 bool vs_events_missed; /* any missed events, protected by vq->mutex */ 252 int vs_events_nr; /* num of pending events, protected by vq->mutex */ 253 254 unsigned int inline_sg_cnt; 255 }; 256 257 struct vhost_scsi_tmf { 258 struct vhost_work vwork; 259 struct work_struct flush_work; 260 struct vhost_scsi *vhost; 261 struct vhost_scsi_virtqueue *svq; 262 263 struct se_cmd se_cmd; 264 u8 scsi_resp; 265 struct vhost_scsi_inflight *inflight; 266 struct iovec resp_iov; 267 int in_iovs; 268 int vq_desc; 269 270 /* 271 * Dirty write descriptors of this command. 272 */ 273 struct vhost_log *tmf_log; 274 unsigned int tmf_log_num; 275 }; 276 277 /* 278 * Context for processing request and control queue operations. 279 */ 280 struct vhost_scsi_ctx { 281 int head; 282 unsigned int out, in; 283 size_t req_size, rsp_size; 284 size_t out_size, in_size; 285 u8 *target, *lunp; 286 void *req; 287 struct iov_iter out_iter; 288 }; 289 290 /* 291 * Global mutex to protect vhost_scsi TPG list for vhost IOCTLs and LIO 292 * configfs management operations. 293 */ 294 static DEFINE_MUTEX(vhost_scsi_mutex); 295 static LIST_HEAD(vhost_scsi_list); 296 297 static void vhost_scsi_done_inflight(struct kref *kref) 298 { 299 struct vhost_scsi_inflight *inflight; 300 301 inflight = container_of(kref, struct vhost_scsi_inflight, kref); 302 complete(&inflight->comp); 303 } 304 305 static void vhost_scsi_init_inflight(struct vhost_scsi *vs, 306 struct vhost_scsi_inflight *old_inflight[]) 307 { 308 struct vhost_scsi_inflight *new_inflight; 309 struct vhost_virtqueue *vq; 310 int idx, i; 311 312 for (i = 0; i < vs->dev.nvqs; i++) { 313 vq = &vs->vqs[i].vq; 314 315 mutex_lock(&vq->mutex); 316 317 /* store old inflight */ 318 idx = vs->vqs[i].inflight_idx; 319 if (old_inflight) 320 old_inflight[i] = &vs->vqs[i].inflights[idx]; 321 322 /* setup new inflight */ 323 vs->vqs[i].inflight_idx = idx ^ 1; 324 new_inflight = &vs->vqs[i].inflights[idx ^ 1]; 325 kref_init(&new_inflight->kref); 326 init_completion(&new_inflight->comp); 327 328 mutex_unlock(&vq->mutex); 329 } 330 } 331 332 static struct vhost_scsi_inflight * 333 vhost_scsi_get_inflight(struct vhost_virtqueue *vq) 334 { 335 struct vhost_scsi_inflight *inflight; 336 struct vhost_scsi_virtqueue *svq; 337 338 svq = container_of(vq, struct vhost_scsi_virtqueue, vq); 339 inflight = &svq->inflights[svq->inflight_idx]; 340 kref_get(&inflight->kref); 341 342 return inflight; 343 } 344 345 static void vhost_scsi_put_inflight(struct vhost_scsi_inflight *inflight) 346 { 347 kref_put(&inflight->kref, vhost_scsi_done_inflight); 348 } 349 350 static int vhost_scsi_check_true(struct se_portal_group *se_tpg) 351 { 352 return 1; 353 } 354 355 static char *vhost_scsi_get_fabric_wwn(struct se_portal_group *se_tpg) 356 { 357 struct vhost_scsi_tpg *tpg = container_of(se_tpg, 358 struct vhost_scsi_tpg, se_tpg); 359 struct vhost_scsi_tport *tport = tpg->tport; 360 361 return &tport->tport_name[0]; 362 } 363 364 static u16 vhost_scsi_get_tpgt(struct se_portal_group *se_tpg) 365 { 366 struct vhost_scsi_tpg *tpg = container_of(se_tpg, 367 struct vhost_scsi_tpg, se_tpg); 368 return tpg->tport_tpgt; 369 } 370 371 static int vhost_scsi_check_prot_fabric_only(struct se_portal_group *se_tpg) 372 { 373 struct vhost_scsi_tpg *tpg = container_of(se_tpg, 374 struct vhost_scsi_tpg, se_tpg); 375 376 return tpg->tv_fabric_prot_type; 377 } 378 379 static int vhost_scsi_copy_cmd_log(struct vhost_virtqueue *vq, 380 struct vhost_scsi_cmd *cmd, 381 struct vhost_log *log, 382 unsigned int log_num) 383 { 384 if (!cmd->tvc_log) 385 cmd->tvc_log = kmalloc_objs(*cmd->tvc_log, vq->dev->iov_limit); 386 387 if (unlikely(!cmd->tvc_log)) { 388 vq_err(vq, "Failed to alloc tvc_log\n"); 389 return -ENOMEM; 390 } 391 392 memcpy(cmd->tvc_log, log, sizeof(*cmd->tvc_log) * log_num); 393 cmd->tvc_log_num = log_num; 394 395 return 0; 396 } 397 398 static void vhost_scsi_log_write(struct vhost_virtqueue *vq, 399 struct vhost_log *log, 400 unsigned int log_num) 401 { 402 if (likely(!vhost_has_feature(vq, VHOST_F_LOG_ALL))) 403 return; 404 405 if (likely(!log_num || !log)) 406 return; 407 408 /* 409 * vhost-scsi doesn't support VIRTIO_F_ACCESS_PLATFORM. 410 * No requirement for vq->iotlb case. 411 */ 412 WARN_ON_ONCE(unlikely(vq->iotlb)); 413 vhost_log_write(vq, log, log_num, U64_MAX, NULL, 0); 414 } 415 416 static void vhost_scsi_release_cmd_res(struct se_cmd *se_cmd) 417 { 418 struct vhost_scsi_cmd *tv_cmd = container_of(se_cmd, 419 struct vhost_scsi_cmd, tvc_se_cmd); 420 struct vhost_scsi_virtqueue *svq = container_of(tv_cmd->tvc_vq, 421 struct vhost_scsi_virtqueue, vq); 422 struct vhost_scsi *vs = svq->vs; 423 struct vhost_scsi_inflight *inflight = tv_cmd->inflight; 424 struct scatterlist *sg; 425 struct page *page; 426 int i; 427 428 if (tv_cmd->tvc_sgl_count) { 429 for_each_sgtable_sg(&tv_cmd->table, sg, i) { 430 page = sg_page(sg); 431 if (!page) 432 continue; 433 434 if (tv_cmd->copied_iov) 435 __free_page(page); 436 else 437 put_page(page); 438 } 439 kfree(tv_cmd->read_iter); 440 kfree(tv_cmd->read_iov); 441 sg_free_table_chained(&tv_cmd->table, vs->inline_sg_cnt); 442 } 443 if (tv_cmd->tvc_prot_sgl_count) { 444 for_each_sgtable_sg(&tv_cmd->prot_table, sg, i) { 445 page = sg_page(sg); 446 if (page) 447 put_page(page); 448 } 449 sg_free_table_chained(&tv_cmd->prot_table, vs->inline_sg_cnt); 450 } 451 452 if (tv_cmd->tvc_resp_iovs != &tv_cmd->tvc_resp_iov) 453 kfree(tv_cmd->tvc_resp_iovs); 454 sbitmap_clear_bit(&svq->scsi_tags, se_cmd->map_tag); 455 vhost_scsi_put_inflight(inflight); 456 } 457 458 static void vhost_scsi_release_tmf_res(struct vhost_scsi_tmf *tmf) 459 { 460 struct vhost_scsi_inflight *inflight = tmf->inflight; 461 462 /* 463 * tmf->tmf_log is default NULL unless VHOST_F_LOG_ALL is set. 464 */ 465 kfree(tmf->tmf_log); 466 kfree(tmf); 467 vhost_scsi_put_inflight(inflight); 468 } 469 470 static void vhost_scsi_drop_cmds(struct vhost_scsi_virtqueue *svq) 471 { 472 struct vhost_scsi_cmd *cmd, *t; 473 struct llist_node *llnode; 474 475 llnode = llist_del_all(&svq->completion_list); 476 llist_for_each_entry_safe(cmd, t, llnode, tvc_completion_list) 477 vhost_scsi_release_cmd_res(&cmd->tvc_se_cmd); 478 } 479 480 static void vhost_scsi_release_cmd(struct se_cmd *se_cmd) 481 { 482 if (se_cmd->se_cmd_flags & SCF_SCSI_TMR_CDB) { 483 struct vhost_scsi_tmf *tmf = container_of(se_cmd, 484 struct vhost_scsi_tmf, se_cmd); 485 486 schedule_work(&tmf->flush_work); 487 } else { 488 struct vhost_scsi_cmd *cmd = container_of(se_cmd, 489 struct vhost_scsi_cmd, tvc_se_cmd); 490 struct vhost_scsi_virtqueue *svq = container_of(cmd->tvc_vq, 491 struct vhost_scsi_virtqueue, vq); 492 493 llist_add(&cmd->tvc_completion_list, &svq->completion_list); 494 if (!vhost_vq_work_queue(&svq->vq, &svq->completion_work)) 495 vhost_scsi_drop_cmds(svq); 496 } 497 } 498 499 static int vhost_scsi_write_pending(struct se_cmd *se_cmd) 500 { 501 /* Go ahead and process the write immediately */ 502 target_execute_cmd(se_cmd); 503 return 0; 504 } 505 506 static int vhost_scsi_queue_data_in(struct se_cmd *se_cmd) 507 { 508 transport_generic_free_cmd(se_cmd, 0); 509 return 0; 510 } 511 512 static int vhost_scsi_queue_status(struct se_cmd *se_cmd) 513 { 514 transport_generic_free_cmd(se_cmd, 0); 515 return 0; 516 } 517 518 static void vhost_scsi_queue_tm_rsp(struct se_cmd *se_cmd) 519 { 520 struct vhost_scsi_tmf *tmf = container_of(se_cmd, struct vhost_scsi_tmf, 521 se_cmd); 522 523 tmf->scsi_resp = se_cmd->se_tmr_req->response; 524 transport_generic_free_cmd(&tmf->se_cmd, 0); 525 } 526 527 static void vhost_scsi_aborted_task(struct se_cmd *se_cmd) 528 { 529 return; 530 } 531 532 static void vhost_scsi_free_evt(struct vhost_scsi *vs, struct vhost_scsi_evt *evt) 533 { 534 vs->vs_events_nr--; 535 kfree(evt); 536 } 537 538 static struct vhost_scsi_evt * 539 vhost_scsi_allocate_evt(struct vhost_scsi *vs, 540 u32 event, u32 reason) 541 { 542 struct vhost_virtqueue *vq = &vs->vqs[VHOST_SCSI_VQ_EVT].vq; 543 struct vhost_scsi_evt *evt; 544 545 if (vs->vs_events_nr > VHOST_SCSI_MAX_EVENT) { 546 vs->vs_events_missed = true; 547 return NULL; 548 } 549 550 evt = kzalloc_obj(*evt); 551 if (!evt) { 552 vq_err(vq, "Failed to allocate vhost_scsi_evt\n"); 553 vs->vs_events_missed = true; 554 return NULL; 555 } 556 557 evt->event.event = cpu_to_vhost32(vq, event); 558 evt->event.reason = cpu_to_vhost32(vq, reason); 559 vs->vs_events_nr++; 560 561 return evt; 562 } 563 564 static int vhost_scsi_check_stop_free(struct se_cmd *se_cmd) 565 { 566 return target_put_sess_cmd(se_cmd); 567 } 568 569 static void 570 vhost_scsi_do_evt_work(struct vhost_scsi *vs, struct vhost_scsi_evt *evt) 571 { 572 struct vhost_virtqueue *vq = &vs->vqs[VHOST_SCSI_VQ_EVT].vq; 573 struct virtio_scsi_event *event = &evt->event; 574 struct virtio_scsi_event __user *eventp; 575 struct vhost_log *vq_log; 576 unsigned int log_num; 577 unsigned out, in; 578 int head, ret; 579 580 if (!vhost_vq_get_backend(vq)) { 581 vs->vs_events_missed = true; 582 return; 583 } 584 585 again: 586 vhost_disable_notify(&vs->dev, vq); 587 588 vq_log = unlikely(vhost_has_feature(vq, VHOST_F_LOG_ALL)) ? 589 vq->log : NULL; 590 591 /* 592 * Reset 'log_num' since vhost_get_vq_desc() may reset it only 593 * after certain condition checks. 594 */ 595 log_num = 0; 596 597 head = vhost_get_vq_desc(vq, vq->iov, 598 ARRAY_SIZE(vq->iov), &out, &in, 599 vq_log, &log_num); 600 if (head < 0) { 601 vs->vs_events_missed = true; 602 return; 603 } 604 if (head == vq->num) { 605 if (vhost_enable_notify(&vs->dev, vq)) 606 goto again; 607 vs->vs_events_missed = true; 608 return; 609 } 610 611 if ((vq->iov[out].iov_len != sizeof(struct virtio_scsi_event))) { 612 vq_err(vq, "Expecting virtio_scsi_event, got %zu bytes\n", 613 vq->iov[out].iov_len); 614 vs->vs_events_missed = true; 615 return; 616 } 617 618 if (vs->vs_events_missed) { 619 event->event |= cpu_to_vhost32(vq, VIRTIO_SCSI_T_EVENTS_MISSED); 620 vs->vs_events_missed = false; 621 } 622 623 eventp = vq->iov[out].iov_base; 624 ret = __copy_to_user(eventp, event, sizeof(*event)); 625 if (!ret) 626 vhost_add_used_and_signal(&vs->dev, vq, head, 0); 627 else 628 vq_err(vq, "Faulted on vhost_scsi_send_event\n"); 629 630 vhost_scsi_log_write(vq, vq_log, log_num); 631 } 632 633 static void vhost_scsi_complete_events(struct vhost_scsi *vs, bool drop) 634 { 635 struct vhost_virtqueue *vq = &vs->vqs[VHOST_SCSI_VQ_EVT].vq; 636 struct vhost_scsi_evt *evt, *t; 637 struct llist_node *llnode; 638 639 mutex_lock(&vq->mutex); 640 llnode = llist_del_all(&vs->vs_event_list); 641 llist_for_each_entry_safe(evt, t, llnode, list) { 642 if (!drop) 643 vhost_scsi_do_evt_work(vs, evt); 644 vhost_scsi_free_evt(vs, evt); 645 } 646 mutex_unlock(&vq->mutex); 647 } 648 649 static void vhost_scsi_evt_work(struct vhost_work *work) 650 { 651 struct vhost_scsi *vs = container_of(work, struct vhost_scsi, 652 vs_event_work); 653 vhost_scsi_complete_events(vs, false); 654 } 655 656 static int vhost_scsi_copy_sgl_to_iov(struct vhost_scsi_cmd *cmd) 657 { 658 struct iov_iter *iter = cmd->read_iter; 659 struct scatterlist *sg; 660 struct page *page; 661 size_t len; 662 int i; 663 664 for_each_sgtable_sg(&cmd->table, sg, i) { 665 page = sg_page(sg); 666 if (!page) 667 continue; 668 669 len = sg->length; 670 671 if (copy_page_to_iter(page, 0, len, iter) != len) { 672 pr_err("Could not copy data while handling misaligned cmd. Error %zu\n", 673 len); 674 return -1; 675 } 676 } 677 678 return 0; 679 } 680 681 /* Fill in status and signal that we are done processing this command 682 * 683 * This is scheduled in the vhost work queue so we are called with the owner 684 * process mm and can access the vring. 685 */ 686 static void vhost_scsi_complete_cmd_work(struct vhost_work *work) 687 { 688 struct vhost_scsi_virtqueue *svq = container_of(work, 689 struct vhost_scsi_virtqueue, completion_work); 690 struct virtio_scsi_cmd_resp v_rsp; 691 struct vhost_scsi_cmd *cmd, *t; 692 struct llist_node *llnode; 693 struct se_cmd *se_cmd; 694 struct iov_iter iov_iter; 695 bool signal = false; 696 int ret; 697 698 llnode = llist_del_all(&svq->completion_list); 699 700 mutex_lock(&svq->vq.mutex); 701 702 llist_for_each_entry_safe(cmd, t, llnode, tvc_completion_list) { 703 se_cmd = &cmd->tvc_se_cmd; 704 705 pr_debug("%s tv_cmd %p resid %u status %#02x\n", __func__, 706 cmd, se_cmd->residual_count, se_cmd->scsi_status); 707 memset(&v_rsp, 0, sizeof(v_rsp)); 708 709 if (cmd->read_iter && vhost_scsi_copy_sgl_to_iov(cmd)) { 710 v_rsp.response = VIRTIO_SCSI_S_BAD_TARGET; 711 } else { 712 v_rsp.resid = cpu_to_vhost32(cmd->tvc_vq, 713 se_cmd->residual_count); 714 /* TODO is status_qualifier field needed? */ 715 v_rsp.status = se_cmd->scsi_status; 716 v_rsp.sense_len = cpu_to_vhost32(cmd->tvc_vq, 717 se_cmd->scsi_sense_length); 718 memcpy(v_rsp.sense, cmd->tvc_sense_buf, 719 se_cmd->scsi_sense_length); 720 } 721 722 iov_iter_init(&iov_iter, ITER_DEST, cmd->tvc_resp_iovs, 723 cmd->tvc_resp_iovs_cnt, sizeof(v_rsp)); 724 ret = copy_to_iter(&v_rsp, sizeof(v_rsp), &iov_iter); 725 if (likely(ret == sizeof(v_rsp))) { 726 signal = true; 727 728 vhost_add_used(cmd->tvc_vq, cmd->tvc_vq_desc, 0); 729 } else 730 pr_err("Faulted on virtio_scsi_cmd_resp\n"); 731 732 vhost_scsi_log_write(cmd->tvc_vq, cmd->tvc_log, 733 cmd->tvc_log_num); 734 735 vhost_scsi_release_cmd_res(se_cmd); 736 } 737 738 mutex_unlock(&svq->vq.mutex); 739 740 if (signal) 741 vhost_signal(&svq->vs->dev, &svq->vq); 742 } 743 744 static struct vhost_scsi_cmd * 745 vhost_scsi_get_cmd(struct vhost_virtqueue *vq, u64 scsi_tag) 746 { 747 struct vhost_scsi_virtqueue *svq = container_of(vq, 748 struct vhost_scsi_virtqueue, vq); 749 struct vhost_scsi_cmd *cmd; 750 struct scatterlist *sgl, *prot_sgl; 751 struct vhost_log *log; 752 int tag; 753 754 tag = sbitmap_get(&svq->scsi_tags); 755 if (tag < 0) { 756 pr_warn_once("Guest sent too many cmds. Returning TASK_SET_FULL.\n"); 757 return ERR_PTR(-ENOMEM); 758 } 759 760 cmd = &svq->scsi_cmds[tag]; 761 sgl = cmd->sgl; 762 prot_sgl = cmd->prot_sgl; 763 log = cmd->tvc_log; 764 memset(cmd, 0, sizeof(*cmd)); 765 cmd->sgl = sgl; 766 cmd->prot_sgl = prot_sgl; 767 cmd->tvc_log = log; 768 cmd->tvc_se_cmd.map_tag = tag; 769 cmd->inflight = vhost_scsi_get_inflight(vq); 770 771 return cmd; 772 } 773 774 static void vhost_scsi_revert_map_iov_to_sgl(struct iov_iter *iter, 775 struct scatterlist *curr, 776 struct scatterlist *end) 777 { 778 size_t revert_bytes = 0; 779 struct page *page; 780 781 while (curr != end) { 782 page = sg_page(curr); 783 784 if (page) { 785 put_page(page); 786 revert_bytes += curr->length; 787 } 788 /* Clear so we can re-use it for the copy path */ 789 sg_set_page(curr, NULL, 0, 0); 790 curr = sg_next(curr); 791 } 792 iov_iter_revert(iter, revert_bytes); 793 } 794 795 /* 796 * Map a user memory range into a scatterlist 797 * 798 * Returns the number of scatterlist entries used or -errno on error. 799 */ 800 static int 801 vhost_scsi_map_to_sgl(struct vhost_scsi_cmd *cmd, 802 struct iov_iter *iter, 803 struct sg_table *sg_table, 804 struct scatterlist **sgl, 805 bool is_prot) 806 { 807 struct vhost_scsi_virtqueue *svq = container_of(cmd->tvc_vq, 808 struct vhost_scsi_virtqueue, vq); 809 struct page **pages = svq->upages; 810 struct scatterlist *sg = *sgl; 811 ssize_t bytes; 812 size_t offset; 813 unsigned int n, npages = 0; 814 815 bytes = iov_iter_get_pages2(iter, pages, LONG_MAX, 816 VHOST_SCSI_PREALLOC_UPAGES, &offset); 817 /* No pages were pinned */ 818 if (bytes <= 0) 819 return bytes < 0 ? bytes : -EFAULT; 820 821 while (bytes) { 822 n = min_t(unsigned int, PAGE_SIZE - offset, bytes); 823 /* 824 * The block layer requires bios/requests to be a multiple of 825 * 512 bytes, but Windows can send us vecs that are misaligned. 826 * This can result in bios and later requests with misaligned 827 * sizes if we have to break up a cmd/scatterlist into multiple 828 * bios. 829 * 830 * We currently only break up a command into multiple bios if 831 * we hit the vec/seg limit, so check if our sgl_count is 832 * greater than the max and if a vec in the cmd has a 833 * misaligned offset/size. 834 */ 835 if (!is_prot && 836 (offset & (SECTOR_SIZE - 1) || n & (SECTOR_SIZE - 1)) && 837 cmd->tvc_sgl_count > BIO_MAX_VECS) { 838 WARN_ONCE(true, 839 "vhost-scsi detected misaligned IO. Performance may be degraded."); 840 goto revert_iter_get_pages; 841 } 842 843 sg_set_page(sg, pages[npages++], n, offset); 844 sg = sg_next(sg); 845 bytes -= n; 846 offset = 0; 847 } 848 849 *sgl = sg; 850 return npages; 851 852 revert_iter_get_pages: 853 vhost_scsi_revert_map_iov_to_sgl(iter, *sgl, sg); 854 855 iov_iter_revert(iter, bytes); 856 while (bytes) { 857 n = min_t(unsigned int, PAGE_SIZE, bytes); 858 859 put_page(pages[npages++]); 860 bytes -= n; 861 } 862 863 return -EINVAL; 864 } 865 866 static int 867 vhost_scsi_calc_sgls(struct iov_iter *iter, size_t bytes, int max_sgls) 868 { 869 int sgl_count = 0; 870 871 if (!iter || !iter_iov(iter)) { 872 pr_err("%s: iter->iov is NULL, but expected bytes: %zu" 873 " present\n", __func__, bytes); 874 return -EINVAL; 875 } 876 877 sgl_count = iov_iter_npages(iter, 0xffff); 878 if (sgl_count > max_sgls) { 879 pr_err("%s: requested sgl_count: %d exceeds pre-allocated" 880 " max_sgls: %d\n", __func__, sgl_count, max_sgls); 881 return -EINVAL; 882 } 883 return sgl_count; 884 } 885 886 static int 887 vhost_scsi_copy_iov_to_sgl(struct vhost_scsi_cmd *cmd, struct iov_iter *iter, 888 struct sg_table *sg_table, int sg_count, 889 int data_dir) 890 { 891 size_t len = iov_iter_count(iter); 892 unsigned int nbytes = 0; 893 struct scatterlist *sg; 894 struct page *page; 895 int i, ret; 896 897 if (data_dir == DMA_FROM_DEVICE) { 898 cmd->read_iter = kzalloc_obj(*cmd->read_iter); 899 if (!cmd->read_iter) 900 return -ENOMEM; 901 902 cmd->read_iov = dup_iter(cmd->read_iter, iter, GFP_KERNEL); 903 if (!cmd->read_iov) { 904 ret = -ENOMEM; 905 goto free_iter; 906 } 907 } 908 909 for_each_sgtable_sg(sg_table, sg, i) { 910 page = alloc_page(GFP_KERNEL); 911 if (!page) { 912 ret = -ENOMEM; 913 goto err; 914 } 915 916 nbytes = min_t(unsigned int, PAGE_SIZE, len); 917 sg_set_page(sg, page, nbytes, 0); 918 919 if (data_dir == DMA_TO_DEVICE && 920 copy_page_from_iter(page, 0, nbytes, iter) != nbytes) { 921 ret = -EFAULT; 922 goto err; 923 } 924 925 len -= nbytes; 926 } 927 928 cmd->copied_iov = 1; 929 return 0; 930 931 err: 932 pr_err("Could not read %u bytes while handling misaligned cmd\n", 933 nbytes); 934 935 for_each_sgtable_sg(sg_table, sg, i) { 936 page = sg_page(sg); 937 if (page) 938 __free_page(page); 939 } 940 kfree(cmd->read_iov); 941 free_iter: 942 kfree(cmd->read_iter); 943 return ret; 944 } 945 946 static int 947 vhost_scsi_map_iov_to_sgl(struct vhost_scsi_cmd *cmd, struct iov_iter *iter, 948 struct sg_table *sg_table, int sg_count, bool is_prot) 949 { 950 struct scatterlist *sg = sg_table->sgl; 951 int ret; 952 953 while (iov_iter_count(iter)) { 954 ret = vhost_scsi_map_to_sgl(cmd, iter, sg_table, &sg, is_prot); 955 if (ret < 0) { 956 vhost_scsi_revert_map_iov_to_sgl(iter, sg_table->sgl, 957 sg); 958 return ret; 959 } 960 } 961 962 return 0; 963 } 964 965 static int 966 vhost_scsi_mapal(struct vhost_scsi *vs, struct vhost_scsi_cmd *cmd, 967 size_t prot_bytes, struct iov_iter *prot_iter, 968 size_t data_bytes, struct iov_iter *data_iter, int data_dir) 969 { 970 int sgl_count, ret; 971 972 if (prot_bytes) { 973 sgl_count = vhost_scsi_calc_sgls(prot_iter, prot_bytes, 974 VHOST_SCSI_PREALLOC_PROT_SGLS); 975 cmd->prot_table.sgl = cmd->prot_sgl; 976 ret = sg_alloc_table_chained(&cmd->prot_table, sgl_count, 977 cmd->prot_table.sgl, 978 vs->inline_sg_cnt); 979 if (ret) 980 return ret; 981 982 cmd->tvc_prot_sgl_count = sgl_count; 983 pr_debug("%s prot_sg %p prot_sgl_count %u\n", __func__, 984 cmd->prot_table.sgl, cmd->tvc_prot_sgl_count); 985 986 ret = vhost_scsi_map_iov_to_sgl(cmd, prot_iter, 987 &cmd->prot_table, 988 cmd->tvc_prot_sgl_count, true); 989 if (ret < 0) { 990 sg_free_table_chained(&cmd->prot_table, 991 vs->inline_sg_cnt); 992 cmd->tvc_prot_sgl_count = 0; 993 return ret; 994 } 995 } 996 sgl_count = vhost_scsi_calc_sgls(data_iter, data_bytes, 997 VHOST_SCSI_PREALLOC_SGLS); 998 if (sgl_count < 0) 999 return sgl_count; 1000 1001 cmd->table.sgl = cmd->sgl; 1002 ret = sg_alloc_table_chained(&cmd->table, sgl_count, cmd->table.sgl, 1003 vs->inline_sg_cnt); 1004 if (ret) 1005 return ret; 1006 1007 cmd->tvc_sgl_count = sgl_count; 1008 pr_debug("%s data_sg %p data_sgl_count %u\n", __func__, 1009 cmd->table.sgl, cmd->tvc_sgl_count); 1010 1011 ret = vhost_scsi_map_iov_to_sgl(cmd, data_iter, &cmd->table, 1012 cmd->tvc_sgl_count, false); 1013 if (ret == -EINVAL) 1014 ret = vhost_scsi_copy_iov_to_sgl(cmd, data_iter, &cmd->table, 1015 cmd->tvc_sgl_count, data_dir); 1016 if (ret < 0) { 1017 sg_free_table_chained(&cmd->table, vs->inline_sg_cnt); 1018 cmd->tvc_sgl_count = 0; 1019 return ret; 1020 } 1021 return 0; 1022 } 1023 1024 static int vhost_scsi_to_tcm_attr(int attr) 1025 { 1026 switch (attr) { 1027 case VIRTIO_SCSI_S_SIMPLE: 1028 return TCM_SIMPLE_TAG; 1029 case VIRTIO_SCSI_S_ORDERED: 1030 return TCM_ORDERED_TAG; 1031 case VIRTIO_SCSI_S_HEAD: 1032 return TCM_HEAD_TAG; 1033 case VIRTIO_SCSI_S_ACA: 1034 return TCM_ACA_TAG; 1035 default: 1036 break; 1037 } 1038 return TCM_SIMPLE_TAG; 1039 } 1040 1041 static void vhost_scsi_target_queue_cmd(struct vhost_scsi_nexus *nexus, 1042 struct vhost_scsi_cmd *cmd, 1043 unsigned char *cdb, u16 lun, 1044 int task_attr, int data_dir, 1045 u32 exp_data_len) 1046 { 1047 struct se_cmd *se_cmd = &cmd->tvc_se_cmd; 1048 struct scatterlist *sg_ptr, *sg_prot_ptr = NULL; 1049 1050 /* FIXME: BIDI operation */ 1051 if (cmd->tvc_sgl_count) { 1052 sg_ptr = cmd->table.sgl; 1053 1054 if (cmd->tvc_prot_sgl_count) 1055 sg_prot_ptr = cmd->prot_table.sgl; 1056 else 1057 se_cmd->prot_pto = true; 1058 } else { 1059 sg_ptr = NULL; 1060 } 1061 1062 se_cmd->tag = 0; 1063 target_init_cmd(se_cmd, nexus->tvn_se_sess, &cmd->tvc_sense_buf[0], 1064 lun, exp_data_len, vhost_scsi_to_tcm_attr(task_attr), 1065 data_dir, TARGET_SCF_ACK_KREF); 1066 1067 if (target_submit_prep(se_cmd, cdb, sg_ptr, 1068 cmd->tvc_sgl_count, NULL, 0, sg_prot_ptr, 1069 cmd->tvc_prot_sgl_count, GFP_KERNEL)) 1070 return; 1071 1072 target_submit(se_cmd); 1073 } 1074 1075 static void 1076 vhost_scsi_send_status(struct vhost_scsi *vs, struct vhost_virtqueue *vq, 1077 struct vhost_scsi_ctx *vc, u8 status) 1078 { 1079 struct virtio_scsi_cmd_resp rsp; 1080 struct iov_iter iov_iter; 1081 int ret; 1082 1083 memset(&rsp, 0, sizeof(rsp)); 1084 rsp.status = status; 1085 1086 iov_iter_init(&iov_iter, ITER_DEST, &vq->iov[vc->out], vc->in, 1087 sizeof(rsp)); 1088 1089 ret = copy_to_iter(&rsp, sizeof(rsp), &iov_iter); 1090 1091 if (likely(ret == sizeof(rsp))) 1092 vhost_add_used_and_signal(&vs->dev, vq, vc->head, 0); 1093 else 1094 pr_err("Faulted on virtio_scsi_cmd_resp\n"); 1095 } 1096 1097 #define TYPE_IO_CMD 0 1098 #define TYPE_CTRL_TMF 1 1099 #define TYPE_CTRL_AN 2 1100 1101 static void 1102 vhost_scsi_send_bad_target(struct vhost_scsi *vs, 1103 struct vhost_virtqueue *vq, 1104 struct vhost_scsi_ctx *vc, int type) 1105 { 1106 union { 1107 struct virtio_scsi_cmd_resp cmd; 1108 struct virtio_scsi_ctrl_tmf_resp tmf; 1109 struct virtio_scsi_ctrl_an_resp an; 1110 } rsp; 1111 struct iov_iter iov_iter; 1112 size_t rsp_size; 1113 int ret; 1114 1115 memset(&rsp, 0, sizeof(rsp)); 1116 1117 if (type == TYPE_IO_CMD) { 1118 rsp_size = sizeof(struct virtio_scsi_cmd_resp); 1119 rsp.cmd.response = VIRTIO_SCSI_S_BAD_TARGET; 1120 } else if (type == TYPE_CTRL_TMF) { 1121 rsp_size = sizeof(struct virtio_scsi_ctrl_tmf_resp); 1122 rsp.tmf.response = VIRTIO_SCSI_S_BAD_TARGET; 1123 } else { 1124 rsp_size = sizeof(struct virtio_scsi_ctrl_an_resp); 1125 rsp.an.response = VIRTIO_SCSI_S_BAD_TARGET; 1126 } 1127 1128 iov_iter_init(&iov_iter, ITER_DEST, &vq->iov[vc->out], vc->in, 1129 rsp_size); 1130 1131 ret = copy_to_iter(&rsp, rsp_size, &iov_iter); 1132 1133 if (likely(ret == rsp_size)) 1134 vhost_add_used_and_signal(&vs->dev, vq, vc->head, 0); 1135 else 1136 pr_err("Faulted on virtio scsi type=%d\n", type); 1137 } 1138 1139 static int 1140 vhost_scsi_get_desc(struct vhost_scsi *vs, struct vhost_virtqueue *vq, 1141 struct vhost_scsi_ctx *vc, 1142 struct vhost_log *log, unsigned int *log_num) 1143 { 1144 int ret = -ENXIO; 1145 1146 if (likely(log_num)) 1147 *log_num = 0; 1148 1149 vc->head = vhost_get_vq_desc(vq, vq->iov, 1150 ARRAY_SIZE(vq->iov), &vc->out, &vc->in, 1151 log, log_num); 1152 1153 pr_debug("vhost_get_vq_desc: head: %d, out: %u in: %u\n", 1154 vc->head, vc->out, vc->in); 1155 1156 /* On error, stop handling until the next kick. */ 1157 if (unlikely(vc->head < 0)) 1158 goto done; 1159 1160 /* Nothing new? Wait for eventfd to tell us they refilled. */ 1161 if (vc->head == vq->num) { 1162 if (unlikely(vhost_enable_notify(&vs->dev, vq))) { 1163 vhost_disable_notify(&vs->dev, vq); 1164 ret = -EAGAIN; 1165 } 1166 goto done; 1167 } 1168 1169 /* 1170 * Get the size of request and response buffers. 1171 * FIXME: Not correct for BIDI operation 1172 */ 1173 vc->out_size = iov_length(vq->iov, vc->out); 1174 vc->in_size = iov_length(&vq->iov[vc->out], vc->in); 1175 1176 /* 1177 * Copy over the virtio-scsi request header, which for a 1178 * ANY_LAYOUT enabled guest may span multiple iovecs, or a 1179 * single iovec may contain both the header + outgoing 1180 * WRITE payloads. 1181 * 1182 * copy_from_iter() will advance out_iter, so that it will 1183 * point at the start of the outgoing WRITE payload, if 1184 * DMA_TO_DEVICE is set. 1185 */ 1186 iov_iter_init(&vc->out_iter, ITER_SOURCE, vq->iov, vc->out, vc->out_size); 1187 ret = 0; 1188 1189 done: 1190 return ret; 1191 } 1192 1193 static int 1194 vhost_scsi_chk_size(struct vhost_virtqueue *vq, struct vhost_scsi_ctx *vc) 1195 { 1196 if (unlikely(vc->in_size < vc->rsp_size)) { 1197 vq_err(vq, 1198 "Response buf too small, need min %zu bytes got %zu", 1199 vc->rsp_size, vc->in_size); 1200 return -EINVAL; 1201 } else if (unlikely(vc->out_size < vc->req_size)) { 1202 vq_err(vq, 1203 "Request buf too small, need min %zu bytes got %zu", 1204 vc->req_size, vc->out_size); 1205 return -EIO; 1206 } 1207 1208 return 0; 1209 } 1210 1211 static int 1212 vhost_scsi_get_req(struct vhost_virtqueue *vq, struct vhost_scsi_ctx *vc, 1213 struct vhost_scsi_tpg **tpgp) 1214 { 1215 int ret = -EIO; 1216 1217 if (unlikely(!copy_from_iter_full(vc->req, vc->req_size, 1218 &vc->out_iter))) { 1219 vq_err(vq, "Faulted on copy_from_iter_full\n"); 1220 } else if (unlikely(*vc->lunp != 1)) { 1221 /* virtio-scsi spec requires byte 0 of the lun to be 1 */ 1222 vq_err(vq, "Illegal virtio-scsi lun: %u\n", *vc->lunp); 1223 } else { 1224 struct vhost_scsi_tpg **vs_tpg, *tpg = NULL; 1225 1226 if (vc->target) { 1227 /* validated at handler entry */ 1228 vs_tpg = vhost_vq_get_backend(vq); 1229 tpg = READ_ONCE(vs_tpg[*vc->target]); 1230 if (unlikely(!tpg)) 1231 goto out; 1232 } 1233 1234 if (tpgp) 1235 *tpgp = tpg; 1236 ret = 0; 1237 } 1238 out: 1239 return ret; 1240 } 1241 1242 static int 1243 vhost_scsi_setup_resp_iovs(struct vhost_scsi_cmd *cmd, struct iovec *in_iovs, 1244 unsigned int in_iovs_cnt) 1245 { 1246 int i, cnt; 1247 1248 if (!in_iovs_cnt) 1249 return 0; 1250 /* 1251 * Initiators normally just put the virtio_scsi_cmd_resp in the first 1252 * iov, but just in case they wedged in some data with it we check for 1253 * greater than or equal to the response struct. 1254 */ 1255 if (in_iovs[0].iov_len >= sizeof(struct virtio_scsi_cmd_resp)) { 1256 cmd->tvc_resp_iovs = &cmd->tvc_resp_iov; 1257 cmd->tvc_resp_iovs_cnt = 1; 1258 } else { 1259 /* 1260 * Legacy descriptor layouts didn't specify that we must put 1261 * the entire response in one iov. Worst case we have a 1262 * iov per byte. 1263 */ 1264 cnt = min(VHOST_SCSI_MAX_RESP_IOVS, in_iovs_cnt); 1265 cmd->tvc_resp_iovs = kzalloc_objs(struct iovec, cnt); 1266 if (!cmd->tvc_resp_iovs) 1267 return -ENOMEM; 1268 1269 cmd->tvc_resp_iovs_cnt = cnt; 1270 } 1271 1272 for (i = 0; i < cmd->tvc_resp_iovs_cnt; i++) 1273 cmd->tvc_resp_iovs[i] = in_iovs[i]; 1274 1275 return 0; 1276 } 1277 1278 static u16 vhost_buf_to_lun(u8 *lun_buf) 1279 { 1280 return ((lun_buf[2] << 8) | lun_buf[3]) & 0x3FFF; 1281 } 1282 1283 static void 1284 vhost_scsi_handle_vq(struct vhost_scsi *vs, struct vhost_virtqueue *vq) 1285 { 1286 struct vhost_scsi_tpg **vs_tpg, *tpg; 1287 struct virtio_scsi_cmd_req v_req; 1288 struct virtio_scsi_cmd_req_pi v_req_pi; 1289 struct vhost_scsi_nexus *nexus; 1290 struct vhost_scsi_ctx vc; 1291 struct vhost_scsi_cmd *cmd; 1292 struct iov_iter in_iter, prot_iter, data_iter; 1293 u64 tag; 1294 u32 exp_data_len, data_direction; 1295 int ret, prot_bytes, c = 0; 1296 u16 lun; 1297 u8 task_attr; 1298 bool t10_pi = vhost_has_feature(vq, VIRTIO_SCSI_F_T10_PI); 1299 u8 *cdb; 1300 struct vhost_log *vq_log; 1301 unsigned int log_num; 1302 1303 mutex_lock(&vq->mutex); 1304 /* 1305 * We can handle the vq only after the endpoint is setup by calling the 1306 * VHOST_SCSI_SET_ENDPOINT ioctl. 1307 */ 1308 vs_tpg = vhost_vq_get_backend(vq); 1309 if (!vs_tpg) 1310 goto out; 1311 1312 memset(&vc, 0, sizeof(vc)); 1313 vc.rsp_size = sizeof(struct virtio_scsi_cmd_resp); 1314 1315 vhost_disable_notify(&vs->dev, vq); 1316 1317 vq_log = unlikely(vhost_has_feature(vq, VHOST_F_LOG_ALL)) ? 1318 vq->log : NULL; 1319 1320 do { 1321 ret = vhost_scsi_get_desc(vs, vq, &vc, vq_log, &log_num); 1322 if (ret) 1323 goto err; 1324 1325 /* 1326 * Setup pointers and values based upon different virtio-scsi 1327 * request header if T10_PI is enabled in KVM guest. 1328 */ 1329 if (t10_pi) { 1330 vc.req = &v_req_pi; 1331 vc.req_size = sizeof(v_req_pi); 1332 vc.lunp = &v_req_pi.lun[0]; 1333 vc.target = &v_req_pi.lun[1]; 1334 } else { 1335 vc.req = &v_req; 1336 vc.req_size = sizeof(v_req); 1337 vc.lunp = &v_req.lun[0]; 1338 vc.target = &v_req.lun[1]; 1339 } 1340 1341 /* 1342 * Validate the size of request and response buffers. 1343 * Check for a sane response buffer so we can report 1344 * early errors back to the guest. 1345 */ 1346 ret = vhost_scsi_chk_size(vq, &vc); 1347 if (ret) 1348 goto err; 1349 1350 ret = vhost_scsi_get_req(vq, &vc, &tpg); 1351 if (ret) 1352 goto err; 1353 1354 ret = -EIO; /* bad target on any error from here on */ 1355 1356 /* 1357 * Determine data_direction by calculating the total outgoing 1358 * iovec sizes + incoming iovec sizes vs. virtio-scsi request + 1359 * response headers respectively. 1360 * 1361 * For DMA_TO_DEVICE this is out_iter, which is already pointing 1362 * to the right place. 1363 * 1364 * For DMA_FROM_DEVICE, the iovec will be just past the end 1365 * of the virtio-scsi response header in either the same 1366 * or immediately following iovec. 1367 * 1368 * Any associated T10_PI bytes for the outgoing / incoming 1369 * payloads are included in calculation of exp_data_len here. 1370 */ 1371 prot_bytes = 0; 1372 1373 if (vc.out_size > vc.req_size) { 1374 data_direction = DMA_TO_DEVICE; 1375 exp_data_len = vc.out_size - vc.req_size; 1376 data_iter = vc.out_iter; 1377 } else if (vc.in_size > vc.rsp_size) { 1378 data_direction = DMA_FROM_DEVICE; 1379 exp_data_len = vc.in_size - vc.rsp_size; 1380 1381 iov_iter_init(&in_iter, ITER_DEST, &vq->iov[vc.out], vc.in, 1382 vc.rsp_size + exp_data_len); 1383 iov_iter_advance(&in_iter, vc.rsp_size); 1384 data_iter = in_iter; 1385 } else { 1386 data_direction = DMA_NONE; 1387 exp_data_len = 0; 1388 } 1389 /* 1390 * If T10_PI header + payload is present, setup prot_iter values 1391 * and recalculate data_iter for vhost_scsi_mapal() mapping to 1392 * host scatterlists via get_user_pages_fast(). 1393 */ 1394 if (t10_pi) { 1395 if (v_req_pi.pi_bytesout) { 1396 if (data_direction != DMA_TO_DEVICE) { 1397 vq_err(vq, "Received non zero pi_bytesout," 1398 " but wrong data_direction\n"); 1399 goto err; 1400 } 1401 prot_bytes = vhost32_to_cpu(vq, v_req_pi.pi_bytesout); 1402 } else if (v_req_pi.pi_bytesin) { 1403 if (data_direction != DMA_FROM_DEVICE) { 1404 vq_err(vq, "Received non zero pi_bytesin," 1405 " but wrong data_direction\n"); 1406 goto err; 1407 } 1408 prot_bytes = vhost32_to_cpu(vq, v_req_pi.pi_bytesin); 1409 } 1410 /* 1411 * Set prot_iter to data_iter and truncate it to 1412 * prot_bytes, and advance data_iter past any 1413 * preceding prot_bytes that may be present. 1414 * 1415 * Also fix up the exp_data_len to reflect only the 1416 * actual data payload length. 1417 */ 1418 if (prot_bytes) { 1419 exp_data_len -= prot_bytes; 1420 prot_iter = data_iter; 1421 iov_iter_truncate(&prot_iter, prot_bytes); 1422 iov_iter_advance(&data_iter, prot_bytes); 1423 } 1424 tag = vhost64_to_cpu(vq, v_req_pi.tag); 1425 task_attr = v_req_pi.task_attr; 1426 cdb = &v_req_pi.cdb[0]; 1427 lun = vhost_buf_to_lun(v_req_pi.lun); 1428 } else { 1429 tag = vhost64_to_cpu(vq, v_req.tag); 1430 task_attr = v_req.task_attr; 1431 cdb = &v_req.cdb[0]; 1432 lun = vhost_buf_to_lun(v_req.lun); 1433 } 1434 /* 1435 * Check that the received CDB size does not exceeded our 1436 * hardcoded max for vhost-scsi, then get a pre-allocated 1437 * cmd descriptor for the new virtio-scsi tag. 1438 * 1439 * TODO what if cdb was too small for varlen cdb header? 1440 */ 1441 if (unlikely(scsi_command_size(cdb) > VHOST_SCSI_MAX_CDB_SIZE)) { 1442 vq_err(vq, "Received SCSI CDB with command_size: %d that" 1443 " exceeds SCSI_MAX_VARLEN_CDB_SIZE: %d\n", 1444 scsi_command_size(cdb), VHOST_SCSI_MAX_CDB_SIZE); 1445 goto err; 1446 } 1447 1448 nexus = tpg->tpg_nexus; 1449 if (!nexus) { 1450 vq_err(vq, "Unable to locate active struct vhost_scsi_nexus\n"); 1451 ret = -EIO; 1452 goto err; 1453 } 1454 1455 cmd = vhost_scsi_get_cmd(vq, tag); 1456 if (IS_ERR(cmd)) { 1457 ret = PTR_ERR(cmd); 1458 vq_err(vq, "vhost_scsi_get_tag failed %d\n", ret); 1459 goto err; 1460 } 1461 cmd->tvc_vq = vq; 1462 1463 ret = vhost_scsi_setup_resp_iovs(cmd, &vq->iov[vc.out], vc.in); 1464 if (ret) { 1465 vq_err(vq, "Failed to alloc recv iovs\n"); 1466 vhost_scsi_release_cmd_res(&cmd->tvc_se_cmd); 1467 goto err; 1468 } 1469 1470 if (unlikely(vq_log && log_num)) { 1471 ret = vhost_scsi_copy_cmd_log(vq, cmd, vq_log, log_num); 1472 if (unlikely(ret)) { 1473 vhost_scsi_release_cmd_res(&cmd->tvc_se_cmd); 1474 goto err; 1475 } 1476 } 1477 1478 pr_debug("vhost_scsi got command opcode: %#02x, lun: %d\n", 1479 cdb[0], lun); 1480 pr_debug("cmd: %p exp_data_len: %d, prot_bytes: %d data_direction:" 1481 " %d\n", cmd, exp_data_len, prot_bytes, data_direction); 1482 1483 if (data_direction != DMA_NONE) { 1484 ret = vhost_scsi_mapal(vs, cmd, prot_bytes, &prot_iter, 1485 exp_data_len, &data_iter, 1486 data_direction); 1487 if (unlikely(ret)) { 1488 vq_err(vq, "Failed to map iov to sgl\n"); 1489 vhost_scsi_release_cmd_res(&cmd->tvc_se_cmd); 1490 goto err; 1491 } 1492 } 1493 /* 1494 * Save the descriptor from vhost_get_vq_desc() to be used to 1495 * complete the virtio-scsi request in TCM callback context via 1496 * vhost_scsi_queue_data_in() and vhost_scsi_queue_status() 1497 */ 1498 cmd->tvc_vq_desc = vc.head; 1499 vhost_scsi_target_queue_cmd(nexus, cmd, cdb, lun, task_attr, 1500 data_direction, 1501 exp_data_len + prot_bytes); 1502 ret = 0; 1503 err: 1504 /* 1505 * ENXIO: No more requests, or read error, wait for next kick 1506 * EINVAL: Invalid response buffer, drop the request 1507 * EIO: Respond with bad target 1508 * EAGAIN: Pending request 1509 * ENOMEM: Could not allocate resources for request 1510 */ 1511 if (ret == -ENXIO) 1512 break; 1513 else if (ret == -EIO) { 1514 vhost_scsi_send_bad_target(vs, vq, &vc, TYPE_IO_CMD); 1515 vhost_scsi_log_write(vq, vq_log, log_num); 1516 } else if (ret == -ENOMEM) { 1517 vhost_scsi_send_status(vs, vq, &vc, 1518 SAM_STAT_TASK_SET_FULL); 1519 vhost_scsi_log_write(vq, vq_log, log_num); 1520 } 1521 } while (likely(!vhost_exceeds_weight(vq, ++c, 0))); 1522 out: 1523 mutex_unlock(&vq->mutex); 1524 } 1525 1526 static void 1527 vhost_scsi_send_tmf_resp(struct vhost_scsi *vs, struct vhost_virtqueue *vq, 1528 int in_iovs, int vq_desc, struct iovec *resp_iov, 1529 int tmf_resp_code) 1530 { 1531 struct virtio_scsi_ctrl_tmf_resp rsp; 1532 struct iov_iter iov_iter; 1533 int ret; 1534 1535 pr_debug("%s\n", __func__); 1536 memset(&rsp, 0, sizeof(rsp)); 1537 rsp.response = tmf_resp_code; 1538 1539 iov_iter_init(&iov_iter, ITER_DEST, resp_iov, in_iovs, sizeof(rsp)); 1540 1541 ret = copy_to_iter(&rsp, sizeof(rsp), &iov_iter); 1542 if (likely(ret == sizeof(rsp))) 1543 vhost_add_used_and_signal(&vs->dev, vq, vq_desc, 0); 1544 else 1545 pr_err("Faulted on virtio_scsi_ctrl_tmf_resp\n"); 1546 } 1547 1548 static void vhost_scsi_tmf_resp_work(struct vhost_work *work) 1549 { 1550 struct vhost_scsi_tmf *tmf = container_of(work, struct vhost_scsi_tmf, 1551 vwork); 1552 int resp_code; 1553 1554 if (tmf->scsi_resp == TMR_FUNCTION_COMPLETE) 1555 resp_code = VIRTIO_SCSI_S_FUNCTION_SUCCEEDED; 1556 else 1557 resp_code = VIRTIO_SCSI_S_FUNCTION_REJECTED; 1558 1559 mutex_lock(&tmf->svq->vq.mutex); 1560 vhost_scsi_send_tmf_resp(tmf->vhost, &tmf->svq->vq, tmf->in_iovs, 1561 tmf->vq_desc, &tmf->resp_iov, resp_code); 1562 vhost_scsi_log_write(&tmf->svq->vq, tmf->tmf_log, 1563 tmf->tmf_log_num); 1564 mutex_unlock(&tmf->svq->vq.mutex); 1565 1566 vhost_scsi_release_tmf_res(tmf); 1567 } 1568 1569 static void vhost_scsi_tmf_flush_work(struct work_struct *work) 1570 { 1571 struct vhost_scsi_tmf *tmf = container_of(work, struct vhost_scsi_tmf, 1572 flush_work); 1573 struct vhost_virtqueue *vq = &tmf->svq->vq; 1574 /* 1575 * Make sure we have sent responses for other commands before we 1576 * send our response. 1577 */ 1578 vhost_dev_flush(vq->dev); 1579 if (!vhost_vq_work_queue(vq, &tmf->vwork)) 1580 vhost_scsi_release_tmf_res(tmf); 1581 } 1582 1583 static void 1584 vhost_scsi_handle_tmf(struct vhost_scsi *vs, struct vhost_scsi_tpg *tpg, 1585 struct vhost_virtqueue *vq, 1586 struct virtio_scsi_ctrl_tmf_req *vtmf, 1587 struct vhost_scsi_ctx *vc, 1588 struct vhost_log *log, unsigned int log_num) 1589 { 1590 struct vhost_scsi_virtqueue *svq = container_of(vq, 1591 struct vhost_scsi_virtqueue, vq); 1592 struct vhost_scsi_tmf *tmf; 1593 1594 if (vhost32_to_cpu(vq, vtmf->subtype) != 1595 VIRTIO_SCSI_T_TMF_LOGICAL_UNIT_RESET) 1596 goto send_reject; 1597 1598 if (!tpg->tpg_nexus || !tpg->tpg_nexus->tvn_se_sess) { 1599 pr_err("Unable to locate active struct vhost_scsi_nexus for LUN RESET.\n"); 1600 goto send_reject; 1601 } 1602 1603 tmf = kzalloc_obj(*tmf); 1604 if (!tmf) 1605 goto send_reject; 1606 1607 INIT_WORK(&tmf->flush_work, vhost_scsi_tmf_flush_work); 1608 vhost_work_init(&tmf->vwork, vhost_scsi_tmf_resp_work); 1609 tmf->vhost = vs; 1610 tmf->svq = svq; 1611 tmf->resp_iov = vq->iov[vc->out]; 1612 tmf->vq_desc = vc->head; 1613 tmf->in_iovs = vc->in; 1614 tmf->inflight = vhost_scsi_get_inflight(vq); 1615 1616 if (unlikely(log && log_num)) { 1617 tmf->tmf_log = kmalloc_objs(*tmf->tmf_log, log_num); 1618 if (tmf->tmf_log) { 1619 memcpy(tmf->tmf_log, log, sizeof(*tmf->tmf_log) * log_num); 1620 tmf->tmf_log_num = log_num; 1621 } else { 1622 pr_err("vhost_scsi tmf log allocation error\n"); 1623 vhost_scsi_release_tmf_res(tmf); 1624 goto send_reject; 1625 } 1626 } 1627 1628 if (target_submit_tmr(&tmf->se_cmd, tpg->tpg_nexus->tvn_se_sess, NULL, 1629 vhost_buf_to_lun(vtmf->lun), NULL, 1630 TMR_LUN_RESET, GFP_KERNEL, 0, 1631 TARGET_SCF_ACK_KREF) < 0) { 1632 vhost_scsi_release_tmf_res(tmf); 1633 goto send_reject; 1634 } 1635 1636 return; 1637 1638 send_reject: 1639 vhost_scsi_send_tmf_resp(vs, vq, vc->in, vc->head, &vq->iov[vc->out], 1640 VIRTIO_SCSI_S_FUNCTION_REJECTED); 1641 vhost_scsi_log_write(vq, log, log_num); 1642 } 1643 1644 static void 1645 vhost_scsi_send_an_resp(struct vhost_scsi *vs, 1646 struct vhost_virtqueue *vq, 1647 struct vhost_scsi_ctx *vc) 1648 { 1649 struct virtio_scsi_ctrl_an_resp rsp; 1650 struct iov_iter iov_iter; 1651 int ret; 1652 1653 pr_debug("%s\n", __func__); 1654 memset(&rsp, 0, sizeof(rsp)); /* event_actual = 0 */ 1655 rsp.response = VIRTIO_SCSI_S_OK; 1656 1657 iov_iter_init(&iov_iter, ITER_DEST, &vq->iov[vc->out], vc->in, sizeof(rsp)); 1658 1659 ret = copy_to_iter(&rsp, sizeof(rsp), &iov_iter); 1660 if (likely(ret == sizeof(rsp))) 1661 vhost_add_used_and_signal(&vs->dev, vq, vc->head, 0); 1662 else 1663 pr_err("Faulted on virtio_scsi_ctrl_an_resp\n"); 1664 } 1665 1666 static void 1667 vhost_scsi_ctl_handle_vq(struct vhost_scsi *vs, struct vhost_virtqueue *vq) 1668 { 1669 struct vhost_scsi_tpg *tpg; 1670 union { 1671 __virtio32 type; 1672 struct virtio_scsi_ctrl_an_req an; 1673 struct virtio_scsi_ctrl_tmf_req tmf; 1674 } v_req; 1675 struct vhost_scsi_ctx vc; 1676 size_t typ_size; 1677 int ret, c = 0; 1678 struct vhost_log *vq_log; 1679 unsigned int log_num; 1680 1681 mutex_lock(&vq->mutex); 1682 /* 1683 * We can handle the vq only after the endpoint is setup by calling the 1684 * VHOST_SCSI_SET_ENDPOINT ioctl. 1685 */ 1686 if (!vhost_vq_get_backend(vq)) 1687 goto out; 1688 1689 memset(&vc, 0, sizeof(vc)); 1690 1691 vhost_disable_notify(&vs->dev, vq); 1692 1693 vq_log = unlikely(vhost_has_feature(vq, VHOST_F_LOG_ALL)) ? 1694 vq->log : NULL; 1695 1696 do { 1697 ret = vhost_scsi_get_desc(vs, vq, &vc, vq_log, &log_num); 1698 if (ret) 1699 goto err; 1700 1701 /* 1702 * Get the request type first in order to setup 1703 * other parameters dependent on the type. 1704 */ 1705 vc.req = &v_req.type; 1706 typ_size = sizeof(v_req.type); 1707 1708 if (unlikely(!copy_from_iter_full(vc.req, typ_size, 1709 &vc.out_iter))) { 1710 vq_err(vq, "Faulted on copy_from_iter tmf type\n"); 1711 /* 1712 * The size of the response buffer depends on the 1713 * request type and must be validated against it. 1714 * Since the request type is not known, don't send 1715 * a response. 1716 */ 1717 continue; 1718 } 1719 1720 switch (vhost32_to_cpu(vq, v_req.type)) { 1721 case VIRTIO_SCSI_T_TMF: 1722 vc.req = &v_req.tmf; 1723 vc.req_size = sizeof(struct virtio_scsi_ctrl_tmf_req); 1724 vc.rsp_size = sizeof(struct virtio_scsi_ctrl_tmf_resp); 1725 vc.lunp = &v_req.tmf.lun[0]; 1726 vc.target = &v_req.tmf.lun[1]; 1727 break; 1728 case VIRTIO_SCSI_T_AN_QUERY: 1729 case VIRTIO_SCSI_T_AN_SUBSCRIBE: 1730 vc.req = &v_req.an; 1731 vc.req_size = sizeof(struct virtio_scsi_ctrl_an_req); 1732 vc.rsp_size = sizeof(struct virtio_scsi_ctrl_an_resp); 1733 vc.lunp = &v_req.an.lun[0]; 1734 vc.target = NULL; 1735 break; 1736 default: 1737 vq_err(vq, "Unknown control request %d", v_req.type); 1738 continue; 1739 } 1740 1741 /* 1742 * Validate the size of request and response buffers. 1743 * Check for a sane response buffer so we can report 1744 * early errors back to the guest. 1745 */ 1746 ret = vhost_scsi_chk_size(vq, &vc); 1747 if (ret) 1748 goto err; 1749 1750 /* 1751 * Get the rest of the request now that its size is known. 1752 */ 1753 vc.req += typ_size; 1754 vc.req_size -= typ_size; 1755 1756 ret = vhost_scsi_get_req(vq, &vc, &tpg); 1757 if (ret) 1758 goto err; 1759 1760 if (v_req.type == VIRTIO_SCSI_T_TMF) 1761 vhost_scsi_handle_tmf(vs, tpg, vq, &v_req.tmf, &vc, 1762 vq_log, log_num); 1763 else { 1764 vhost_scsi_send_an_resp(vs, vq, &vc); 1765 vhost_scsi_log_write(vq, vq_log, log_num); 1766 } 1767 err: 1768 /* 1769 * ENXIO: No more requests, or read error, wait for next kick 1770 * EINVAL: Invalid response buffer, drop the request 1771 * EIO: Respond with bad target 1772 * EAGAIN: Pending request 1773 */ 1774 if (ret == -ENXIO) 1775 break; 1776 else if (ret == -EIO) { 1777 vhost_scsi_send_bad_target(vs, vq, &vc, 1778 v_req.type == VIRTIO_SCSI_T_TMF ? 1779 TYPE_CTRL_TMF : 1780 TYPE_CTRL_AN); 1781 vhost_scsi_log_write(vq, vq_log, log_num); 1782 } 1783 } while (likely(!vhost_exceeds_weight(vq, ++c, 0))); 1784 out: 1785 mutex_unlock(&vq->mutex); 1786 } 1787 1788 static void vhost_scsi_ctl_handle_kick(struct vhost_work *work) 1789 { 1790 struct vhost_virtqueue *vq = container_of(work, struct vhost_virtqueue, 1791 poll.work); 1792 struct vhost_scsi *vs = container_of(vq->dev, struct vhost_scsi, dev); 1793 1794 pr_debug("%s: The handling func for control queue.\n", __func__); 1795 vhost_scsi_ctl_handle_vq(vs, vq); 1796 } 1797 1798 static void 1799 vhost_scsi_send_evt(struct vhost_scsi *vs, struct vhost_virtqueue *vq, 1800 struct vhost_scsi_tpg *tpg, struct se_lun *lun, 1801 u32 event, u32 reason) 1802 { 1803 struct vhost_scsi_evt *evt; 1804 1805 evt = vhost_scsi_allocate_evt(vs, event, reason); 1806 if (!evt) 1807 return; 1808 1809 if (tpg && lun) { 1810 /* TODO: share lun setup code with virtio-scsi.ko */ 1811 /* 1812 * Note: evt->event is zeroed when we allocate it and 1813 * lun[4-7] need to be zero according to virtio-scsi spec. 1814 */ 1815 evt->event.lun[0] = 0x01; 1816 evt->event.lun[1] = tpg->tport_tpgt; 1817 if (lun->unpacked_lun >= 256) 1818 evt->event.lun[2] = lun->unpacked_lun >> 8 | 0x40 ; 1819 evt->event.lun[3] = lun->unpacked_lun & 0xFF; 1820 } 1821 1822 llist_add(&evt->list, &vs->vs_event_list); 1823 if (!vhost_vq_work_queue(vq, &vs->vs_event_work)) 1824 vhost_scsi_complete_events(vs, true); 1825 } 1826 1827 static void vhost_scsi_evt_handle_kick(struct vhost_work *work) 1828 { 1829 struct vhost_virtqueue *vq = container_of(work, struct vhost_virtqueue, 1830 poll.work); 1831 struct vhost_scsi *vs = container_of(vq->dev, struct vhost_scsi, dev); 1832 1833 mutex_lock(&vq->mutex); 1834 if (!vhost_vq_get_backend(vq)) 1835 goto out; 1836 1837 if (vs->vs_events_missed) 1838 vhost_scsi_send_evt(vs, vq, NULL, NULL, VIRTIO_SCSI_T_NO_EVENT, 1839 0); 1840 out: 1841 mutex_unlock(&vq->mutex); 1842 } 1843 1844 static void vhost_scsi_handle_kick(struct vhost_work *work) 1845 { 1846 struct vhost_virtqueue *vq = container_of(work, struct vhost_virtqueue, 1847 poll.work); 1848 struct vhost_scsi *vs = container_of(vq->dev, struct vhost_scsi, dev); 1849 1850 vhost_scsi_handle_vq(vs, vq); 1851 } 1852 1853 /* Callers must hold dev mutex */ 1854 static void vhost_scsi_flush(struct vhost_scsi *vs) 1855 { 1856 int i; 1857 1858 /* Init new inflight and remember the old inflight */ 1859 vhost_scsi_init_inflight(vs, vs->old_inflight); 1860 1861 /* 1862 * The inflight->kref was initialized to 1. We decrement it here to 1863 * indicate the start of the flush operation so that it will reach 0 1864 * when all the reqs are finished. 1865 */ 1866 for (i = 0; i < vs->dev.nvqs; i++) 1867 kref_put(&vs->old_inflight[i]->kref, vhost_scsi_done_inflight); 1868 1869 /* Flush both the vhost poll and vhost work */ 1870 vhost_dev_flush(&vs->dev); 1871 1872 /* Wait for all reqs issued before the flush to be finished */ 1873 for (i = 0; i < vs->dev.nvqs; i++) 1874 wait_for_completion(&vs->old_inflight[i]->comp); 1875 } 1876 1877 static void vhost_scsi_destroy_vq_log(struct vhost_virtqueue *vq) 1878 { 1879 struct vhost_scsi_virtqueue *svq = container_of(vq, 1880 struct vhost_scsi_virtqueue, vq); 1881 struct vhost_scsi_cmd *tv_cmd; 1882 unsigned int i; 1883 1884 if (!svq->scsi_cmds) 1885 return; 1886 1887 for (i = 0; i < svq->max_cmds; i++) { 1888 tv_cmd = &svq->scsi_cmds[i]; 1889 kfree(tv_cmd->tvc_log); 1890 tv_cmd->tvc_log = NULL; 1891 tv_cmd->tvc_log_num = 0; 1892 } 1893 } 1894 1895 static void vhost_scsi_destroy_vq_cmds(struct vhost_virtqueue *vq) 1896 { 1897 struct vhost_scsi_virtqueue *svq = container_of(vq, 1898 struct vhost_scsi_virtqueue, vq); 1899 struct vhost_scsi_cmd *tv_cmd; 1900 unsigned int i; 1901 1902 if (!svq->scsi_cmds) 1903 return; 1904 1905 for (i = 0; i < svq->max_cmds; i++) { 1906 tv_cmd = &svq->scsi_cmds[i]; 1907 1908 kfree(tv_cmd->sgl); 1909 kfree(tv_cmd->prot_sgl); 1910 } 1911 1912 sbitmap_free(&svq->scsi_tags); 1913 kfree(svq->upages); 1914 vhost_scsi_destroy_vq_log(vq); 1915 kfree(svq->scsi_cmds); 1916 svq->scsi_cmds = NULL; 1917 } 1918 1919 static int vhost_scsi_setup_vq_cmds(struct vhost_virtqueue *vq, int max_cmds) 1920 { 1921 struct vhost_scsi_virtqueue *svq = container_of(vq, 1922 struct vhost_scsi_virtqueue, vq); 1923 struct vhost_scsi *vs = svq->vs; 1924 struct vhost_scsi_cmd *tv_cmd; 1925 unsigned int i; 1926 1927 if (svq->scsi_cmds) 1928 return 0; 1929 1930 if (sbitmap_init_node(&svq->scsi_tags, max_cmds, -1, GFP_KERNEL, 1931 NUMA_NO_NODE, false, true)) 1932 return -ENOMEM; 1933 svq->max_cmds = max_cmds; 1934 1935 svq->scsi_cmds = kzalloc_objs(*tv_cmd, max_cmds); 1936 if (!svq->scsi_cmds) { 1937 sbitmap_free(&svq->scsi_tags); 1938 return -ENOMEM; 1939 } 1940 1941 svq->upages = kzalloc_objs(struct page *, VHOST_SCSI_PREALLOC_UPAGES); 1942 if (!svq->upages) 1943 goto out; 1944 1945 for (i = 0; i < max_cmds; i++) { 1946 tv_cmd = &svq->scsi_cmds[i]; 1947 1948 if (vs->inline_sg_cnt) { 1949 tv_cmd->sgl = kzalloc_objs(struct scatterlist, 1950 vs->inline_sg_cnt, 1951 GFP_KERNEL); 1952 if (!tv_cmd->sgl) { 1953 pr_err("Unable to allocate tv_cmd->sgl\n"); 1954 goto out; 1955 } 1956 } 1957 1958 if (vhost_has_feature(vq, VIRTIO_SCSI_F_T10_PI) && 1959 vs->inline_sg_cnt) { 1960 tv_cmd->prot_sgl = kzalloc_objs(struct scatterlist, 1961 vs->inline_sg_cnt, 1962 GFP_KERNEL); 1963 if (!tv_cmd->prot_sgl) { 1964 pr_err("Unable to allocate tv_cmd->prot_sgl\n"); 1965 goto out; 1966 } 1967 } 1968 } 1969 return 0; 1970 out: 1971 vhost_scsi_destroy_vq_cmds(vq); 1972 return -ENOMEM; 1973 } 1974 1975 /* 1976 * Called from vhost_scsi_ioctl() context to walk the list of available 1977 * vhost_scsi_tpg with an active struct vhost_scsi_nexus 1978 * 1979 * The lock nesting rule is: 1980 * vs->dev.mutex -> vhost_scsi_mutex -> tpg->tv_tpg_mutex -> vq->mutex 1981 */ 1982 static int 1983 vhost_scsi_set_endpoint(struct vhost_scsi *vs, 1984 struct vhost_scsi_target *t) 1985 { 1986 struct se_portal_group *se_tpg; 1987 struct vhost_scsi_tport *tv_tport; 1988 struct vhost_scsi_tpg *tpg; 1989 struct vhost_scsi_tpg **vs_tpg; 1990 struct vhost_virtqueue *vq; 1991 int index, ret, i, len; 1992 bool match = false; 1993 1994 mutex_lock(&vs->dev.mutex); 1995 1996 /* Verify that ring has been setup correctly. */ 1997 for (index = 0; index < vs->dev.nvqs; ++index) { 1998 /* Verify that ring has been setup correctly. */ 1999 if (!vhost_vq_access_ok(&vs->vqs[index].vq)) { 2000 ret = -EFAULT; 2001 goto out; 2002 } 2003 } 2004 2005 if (vs->vs_tpg) { 2006 pr_err("vhost-scsi endpoint already set for %s.\n", 2007 vs->vs_vhost_wwpn); 2008 ret = -EEXIST; 2009 goto out; 2010 } 2011 2012 len = sizeof(vs_tpg[0]) * VHOST_SCSI_MAX_TARGET; 2013 vs_tpg = kzalloc(len, GFP_KERNEL); 2014 if (!vs_tpg) { 2015 ret = -ENOMEM; 2016 goto out; 2017 } 2018 2019 mutex_lock(&vhost_scsi_mutex); 2020 list_for_each_entry(tpg, &vhost_scsi_list, tv_tpg_list) { 2021 mutex_lock(&tpg->tv_tpg_mutex); 2022 if (!tpg->tpg_nexus) { 2023 mutex_unlock(&tpg->tv_tpg_mutex); 2024 continue; 2025 } 2026 if (tpg->tv_tpg_vhost_count != 0) { 2027 mutex_unlock(&tpg->tv_tpg_mutex); 2028 continue; 2029 } 2030 tv_tport = tpg->tport; 2031 2032 if (!strcmp(tv_tport->tport_name, t->vhost_wwpn)) { 2033 /* 2034 * In order to ensure individual vhost-scsi configfs 2035 * groups cannot be removed while in use by vhost ioctl, 2036 * go ahead and take an explicit se_tpg->tpg_group.cg_item 2037 * dependency now. 2038 */ 2039 se_tpg = &tpg->se_tpg; 2040 ret = target_depend_item(&se_tpg->tpg_group.cg_item); 2041 if (ret) { 2042 pr_warn("target_depend_item() failed: %d\n", ret); 2043 mutex_unlock(&tpg->tv_tpg_mutex); 2044 mutex_unlock(&vhost_scsi_mutex); 2045 goto undepend; 2046 } 2047 tpg->tv_tpg_vhost_count++; 2048 tpg->vhost_scsi = vs; 2049 vs_tpg[tpg->tport_tpgt] = tpg; 2050 match = true; 2051 } 2052 mutex_unlock(&tpg->tv_tpg_mutex); 2053 } 2054 mutex_unlock(&vhost_scsi_mutex); 2055 2056 if (match) { 2057 memcpy(vs->vs_vhost_wwpn, t->vhost_wwpn, 2058 sizeof(vs->vs_vhost_wwpn)); 2059 2060 for (i = VHOST_SCSI_VQ_IO; i < vs->dev.nvqs; i++) { 2061 vq = &vs->vqs[i].vq; 2062 if (!vhost_vq_is_setup(vq)) 2063 continue; 2064 2065 ret = vhost_scsi_setup_vq_cmds(vq, vq->num); 2066 if (ret) 2067 goto destroy_vq_cmds; 2068 } 2069 2070 for (i = 0; i < vs->dev.nvqs; i++) { 2071 vq = &vs->vqs[i].vq; 2072 mutex_lock(&vq->mutex); 2073 vhost_vq_set_backend(vq, vs_tpg); 2074 vhost_vq_init_access(vq); 2075 mutex_unlock(&vq->mutex); 2076 } 2077 ret = 0; 2078 } else { 2079 ret = -ENODEV; 2080 goto free_tpg; 2081 } 2082 2083 /* 2084 * Act as synchronize_rcu to make sure requests after this point 2085 * see a fully setup device. 2086 */ 2087 vhost_scsi_flush(vs); 2088 vs->vs_tpg = vs_tpg; 2089 goto out; 2090 2091 destroy_vq_cmds: 2092 for (i--; i >= VHOST_SCSI_VQ_IO; i--) { 2093 if (!vhost_vq_get_backend(&vs->vqs[i].vq)) 2094 vhost_scsi_destroy_vq_cmds(&vs->vqs[i].vq); 2095 } 2096 undepend: 2097 for (i = 0; i < VHOST_SCSI_MAX_TARGET; i++) { 2098 tpg = vs_tpg[i]; 2099 if (tpg) { 2100 mutex_lock(&tpg->tv_tpg_mutex); 2101 tpg->vhost_scsi = NULL; 2102 tpg->tv_tpg_vhost_count--; 2103 mutex_unlock(&tpg->tv_tpg_mutex); 2104 target_undepend_item(&tpg->se_tpg.tpg_group.cg_item); 2105 } 2106 } 2107 free_tpg: 2108 kfree(vs_tpg); 2109 out: 2110 mutex_unlock(&vs->dev.mutex); 2111 return ret; 2112 } 2113 2114 static int 2115 vhost_scsi_clear_endpoint(struct vhost_scsi *vs, 2116 struct vhost_scsi_target *t) 2117 { 2118 struct se_portal_group *se_tpg; 2119 struct vhost_scsi_tport *tv_tport; 2120 struct vhost_scsi_tpg *tpg; 2121 struct vhost_virtqueue *vq; 2122 bool match = false; 2123 int index, ret, i; 2124 u8 target; 2125 2126 mutex_lock(&vs->dev.mutex); 2127 /* Verify that ring has been setup correctly. */ 2128 for (index = 0; index < vs->dev.nvqs; ++index) { 2129 if (!vhost_vq_access_ok(&vs->vqs[index].vq)) { 2130 ret = -EFAULT; 2131 goto err_dev; 2132 } 2133 } 2134 2135 if (!vs->vs_tpg) { 2136 ret = 0; 2137 goto err_dev; 2138 } 2139 2140 for (i = 0; i < VHOST_SCSI_MAX_TARGET; i++) { 2141 target = i; 2142 tpg = vs->vs_tpg[target]; 2143 if (!tpg) 2144 continue; 2145 2146 tv_tport = tpg->tport; 2147 if (!tv_tport) { 2148 ret = -ENODEV; 2149 goto err_dev; 2150 } 2151 2152 if (strcmp(tv_tport->tport_name, t->vhost_wwpn)) { 2153 pr_warn("tv_tport->tport_name: %s, tpg->tport_tpgt: %hu" 2154 " does not match t->vhost_wwpn: %s, t->vhost_tpgt: %hu\n", 2155 tv_tport->tport_name, tpg->tport_tpgt, 2156 t->vhost_wwpn, t->vhost_tpgt); 2157 ret = -EINVAL; 2158 goto err_dev; 2159 } 2160 match = true; 2161 } 2162 if (!match) 2163 goto free_vs_tpg; 2164 2165 /* Prevent new cmds from starting and accessing the tpgs/sessions */ 2166 for (i = 0; i < vs->dev.nvqs; i++) { 2167 vq = &vs->vqs[i].vq; 2168 mutex_lock(&vq->mutex); 2169 vhost_vq_set_backend(vq, NULL); 2170 mutex_unlock(&vq->mutex); 2171 } 2172 /* Make sure cmds are not running before tearing them down. */ 2173 vhost_scsi_flush(vs); 2174 2175 for (i = 0; i < vs->dev.nvqs; i++) { 2176 vq = &vs->vqs[i].vq; 2177 vhost_scsi_destroy_vq_cmds(vq); 2178 } 2179 2180 /* 2181 * We can now release our hold on the tpg and sessions and userspace 2182 * can free them after this point. 2183 */ 2184 for (i = 0; i < VHOST_SCSI_MAX_TARGET; i++) { 2185 target = i; 2186 tpg = vs->vs_tpg[target]; 2187 if (!tpg) 2188 continue; 2189 2190 mutex_lock(&tpg->tv_tpg_mutex); 2191 2192 tpg->tv_tpg_vhost_count--; 2193 tpg->vhost_scsi = NULL; 2194 vs->vs_tpg[target] = NULL; 2195 2196 mutex_unlock(&tpg->tv_tpg_mutex); 2197 2198 se_tpg = &tpg->se_tpg; 2199 target_undepend_item(&se_tpg->tpg_group.cg_item); 2200 } 2201 2202 free_vs_tpg: 2203 /* 2204 * Act as synchronize_rcu to make sure access to 2205 * old vs->vs_tpg is finished. 2206 */ 2207 vhost_scsi_flush(vs); 2208 kfree(vs->vs_tpg); 2209 vs->vs_tpg = NULL; 2210 memset(vs->vs_vhost_wwpn, 0, sizeof(vs->vs_vhost_wwpn)); 2211 WARN_ON(vs->vs_events_nr); 2212 mutex_unlock(&vs->dev.mutex); 2213 return 0; 2214 2215 err_dev: 2216 mutex_unlock(&vs->dev.mutex); 2217 return ret; 2218 } 2219 2220 static int vhost_scsi_set_features(struct vhost_scsi *vs, u64 features) 2221 { 2222 struct vhost_virtqueue *vq; 2223 bool is_log, was_log; 2224 int i; 2225 2226 if (features & ~VHOST_SCSI_FEATURES) 2227 return -EOPNOTSUPP; 2228 2229 mutex_lock(&vs->dev.mutex); 2230 if ((features & (1 << VHOST_F_LOG_ALL)) && 2231 !vhost_log_access_ok(&vs->dev)) { 2232 mutex_unlock(&vs->dev.mutex); 2233 return -EFAULT; 2234 } 2235 2236 if (!vs->dev.nvqs) 2237 goto out; 2238 2239 is_log = features & (1 << VHOST_F_LOG_ALL); 2240 /* 2241 * All VQs should have same feature. 2242 */ 2243 was_log = vhost_has_feature(&vs->vqs[0].vq, VHOST_F_LOG_ALL); 2244 2245 for (i = 0; i < vs->dev.nvqs; i++) { 2246 vq = &vs->vqs[i].vq; 2247 mutex_lock(&vq->mutex); 2248 vq->acked_features = features; 2249 mutex_unlock(&vq->mutex); 2250 } 2251 2252 /* 2253 * If VHOST_F_LOG_ALL is removed, free tvc_log after 2254 * vq->acked_features is committed. 2255 */ 2256 if (!is_log && was_log) { 2257 for (i = VHOST_SCSI_VQ_IO; i < vs->dev.nvqs; i++) { 2258 if (!vs->vqs[i].scsi_cmds) 2259 continue; 2260 2261 vq = &vs->vqs[i].vq; 2262 mutex_lock(&vq->mutex); 2263 vhost_scsi_destroy_vq_log(vq); 2264 mutex_unlock(&vq->mutex); 2265 } 2266 } 2267 2268 out: 2269 mutex_unlock(&vs->dev.mutex); 2270 return 0; 2271 } 2272 2273 static int vhost_scsi_open(struct inode *inode, struct file *f) 2274 { 2275 struct vhost_scsi_virtqueue *svq; 2276 struct vhost_scsi *vs; 2277 struct vhost_virtqueue **vqs; 2278 int r = -ENOMEM, i, nvqs = vhost_scsi_max_io_vqs; 2279 2280 vs = kvzalloc_obj(*vs); 2281 if (!vs) 2282 goto err_vs; 2283 vs->inline_sg_cnt = vhost_scsi_inline_sg_cnt; 2284 2285 if (nvqs > VHOST_SCSI_MAX_IO_VQ) { 2286 pr_err("Invalid max_io_vqs of %d. Using %d.\n", nvqs, 2287 VHOST_SCSI_MAX_IO_VQ); 2288 nvqs = VHOST_SCSI_MAX_IO_VQ; 2289 } else if (nvqs == 0) { 2290 pr_err("Invalid max_io_vqs of %d. Using 1.\n", nvqs); 2291 nvqs = 1; 2292 } 2293 nvqs += VHOST_SCSI_VQ_IO; 2294 2295 vs->old_inflight = kmalloc_objs(*vs->old_inflight, nvqs, 2296 GFP_KERNEL | __GFP_ZERO); 2297 if (!vs->old_inflight) 2298 goto err_inflight; 2299 2300 vs->vqs = kmalloc_objs(*vs->vqs, nvqs, GFP_KERNEL | __GFP_ZERO); 2301 if (!vs->vqs) 2302 goto err_vqs; 2303 2304 vqs = kmalloc_objs(*vqs, nvqs); 2305 if (!vqs) 2306 goto err_local_vqs; 2307 2308 vhost_work_init(&vs->vs_event_work, vhost_scsi_evt_work); 2309 2310 vs->vs_events_nr = 0; 2311 vs->vs_events_missed = false; 2312 2313 vqs[VHOST_SCSI_VQ_CTL] = &vs->vqs[VHOST_SCSI_VQ_CTL].vq; 2314 vqs[VHOST_SCSI_VQ_EVT] = &vs->vqs[VHOST_SCSI_VQ_EVT].vq; 2315 vs->vqs[VHOST_SCSI_VQ_CTL].vq.handle_kick = vhost_scsi_ctl_handle_kick; 2316 vs->vqs[VHOST_SCSI_VQ_EVT].vq.handle_kick = vhost_scsi_evt_handle_kick; 2317 for (i = VHOST_SCSI_VQ_IO; i < nvqs; i++) { 2318 svq = &vs->vqs[i]; 2319 2320 vqs[i] = &svq->vq; 2321 svq->vs = vs; 2322 init_llist_head(&svq->completion_list); 2323 vhost_work_init(&svq->completion_work, 2324 vhost_scsi_complete_cmd_work); 2325 svq->vq.handle_kick = vhost_scsi_handle_kick; 2326 } 2327 vhost_dev_init(&vs->dev, vqs, nvqs, UIO_MAXIOV, 2328 VHOST_SCSI_WEIGHT, 0, true, NULL); 2329 2330 vhost_scsi_init_inflight(vs, NULL); 2331 2332 f->private_data = vs; 2333 return 0; 2334 2335 err_local_vqs: 2336 kfree(vs->vqs); 2337 err_vqs: 2338 kfree(vs->old_inflight); 2339 err_inflight: 2340 kvfree(vs); 2341 err_vs: 2342 return r; 2343 } 2344 2345 static int vhost_scsi_release(struct inode *inode, struct file *f) 2346 { 2347 struct vhost_scsi *vs = f->private_data; 2348 struct vhost_scsi_target t; 2349 2350 mutex_lock(&vs->dev.mutex); 2351 memcpy(t.vhost_wwpn, vs->vs_vhost_wwpn, sizeof(t.vhost_wwpn)); 2352 mutex_unlock(&vs->dev.mutex); 2353 vhost_scsi_clear_endpoint(vs, &t); 2354 vhost_dev_stop(&vs->dev); 2355 vhost_dev_cleanup(&vs->dev); 2356 kfree(vs->dev.vqs); 2357 kfree(vs->vqs); 2358 kfree(vs->old_inflight); 2359 kvfree(vs); 2360 return 0; 2361 } 2362 2363 static long 2364 vhost_scsi_ioctl(struct file *f, 2365 unsigned int ioctl, 2366 unsigned long arg) 2367 { 2368 struct vhost_scsi *vs = f->private_data; 2369 struct vhost_scsi_target backend; 2370 void __user *argp = (void __user *)arg; 2371 u64 __user *featurep = argp; 2372 u32 __user *eventsp = argp; 2373 u32 events_missed; 2374 u64 features; 2375 int r, abi_version = VHOST_SCSI_ABI_VERSION; 2376 struct vhost_virtqueue *vq = &vs->vqs[VHOST_SCSI_VQ_EVT].vq; 2377 2378 switch (ioctl) { 2379 case VHOST_SCSI_SET_ENDPOINT: 2380 if (copy_from_user(&backend, argp, sizeof backend)) 2381 return -EFAULT; 2382 if (backend.reserved != 0) 2383 return -EOPNOTSUPP; 2384 2385 return vhost_scsi_set_endpoint(vs, &backend); 2386 case VHOST_SCSI_CLEAR_ENDPOINT: 2387 if (copy_from_user(&backend, argp, sizeof backend)) 2388 return -EFAULT; 2389 if (backend.reserved != 0) 2390 return -EOPNOTSUPP; 2391 2392 return vhost_scsi_clear_endpoint(vs, &backend); 2393 case VHOST_SCSI_GET_ABI_VERSION: 2394 if (copy_to_user(argp, &abi_version, sizeof abi_version)) 2395 return -EFAULT; 2396 return 0; 2397 case VHOST_SCSI_SET_EVENTS_MISSED: 2398 if (get_user(events_missed, eventsp)) 2399 return -EFAULT; 2400 mutex_lock(&vq->mutex); 2401 vs->vs_events_missed = events_missed; 2402 mutex_unlock(&vq->mutex); 2403 return 0; 2404 case VHOST_SCSI_GET_EVENTS_MISSED: 2405 mutex_lock(&vq->mutex); 2406 events_missed = vs->vs_events_missed; 2407 mutex_unlock(&vq->mutex); 2408 if (put_user(events_missed, eventsp)) 2409 return -EFAULT; 2410 return 0; 2411 case VHOST_GET_FEATURES: 2412 features = VHOST_SCSI_FEATURES; 2413 if (copy_to_user(featurep, &features, sizeof features)) 2414 return -EFAULT; 2415 return 0; 2416 case VHOST_SET_FEATURES: 2417 if (copy_from_user(&features, featurep, sizeof features)) 2418 return -EFAULT; 2419 return vhost_scsi_set_features(vs, features); 2420 case VHOST_NEW_WORKER: 2421 case VHOST_FREE_WORKER: 2422 case VHOST_ATTACH_VRING_WORKER: 2423 case VHOST_GET_VRING_WORKER: 2424 mutex_lock(&vs->dev.mutex); 2425 r = vhost_worker_ioctl(&vs->dev, ioctl, argp); 2426 mutex_unlock(&vs->dev.mutex); 2427 return r; 2428 default: 2429 mutex_lock(&vs->dev.mutex); 2430 r = vhost_dev_ioctl(&vs->dev, ioctl, argp); 2431 /* TODO: flush backend after dev ioctl. */ 2432 if (r == -ENOIOCTLCMD) 2433 r = vhost_vring_ioctl(&vs->dev, ioctl, argp); 2434 mutex_unlock(&vs->dev.mutex); 2435 return r; 2436 } 2437 } 2438 2439 static const struct file_operations vhost_scsi_fops = { 2440 .owner = THIS_MODULE, 2441 .release = vhost_scsi_release, 2442 .unlocked_ioctl = vhost_scsi_ioctl, 2443 .compat_ioctl = compat_ptr_ioctl, 2444 .open = vhost_scsi_open, 2445 .llseek = noop_llseek, 2446 }; 2447 2448 static struct miscdevice vhost_scsi_misc = { 2449 MISC_DYNAMIC_MINOR, 2450 "vhost-scsi", 2451 &vhost_scsi_fops, 2452 }; 2453 2454 static int __init vhost_scsi_register(void) 2455 { 2456 return misc_register(&vhost_scsi_misc); 2457 } 2458 2459 static void vhost_scsi_deregister(void) 2460 { 2461 misc_deregister(&vhost_scsi_misc); 2462 } 2463 2464 static char *vhost_scsi_dump_proto_id(struct vhost_scsi_tport *tport) 2465 { 2466 switch (tport->tport_proto_id) { 2467 case SCSI_PROTOCOL_SAS: 2468 return "SAS"; 2469 case SCSI_PROTOCOL_FCP: 2470 return "FCP"; 2471 case SCSI_PROTOCOL_ISCSI: 2472 return "iSCSI"; 2473 default: 2474 break; 2475 } 2476 2477 return "Unknown"; 2478 } 2479 2480 static void 2481 vhost_scsi_do_plug(struct vhost_scsi_tpg *tpg, 2482 struct se_lun *lun, bool plug) 2483 { 2484 2485 struct vhost_scsi *vs = tpg->vhost_scsi; 2486 struct vhost_virtqueue *vq; 2487 u32 reason; 2488 2489 if (!vs) 2490 return; 2491 2492 if (plug) 2493 reason = VIRTIO_SCSI_EVT_RESET_RESCAN; 2494 else 2495 reason = VIRTIO_SCSI_EVT_RESET_REMOVED; 2496 2497 vq = &vs->vqs[VHOST_SCSI_VQ_EVT].vq; 2498 mutex_lock(&vq->mutex); 2499 /* 2500 * We can't queue events if the backend has been cleared, because 2501 * we could end up queueing an event after the flush. 2502 */ 2503 if (!vhost_vq_get_backend(vq)) 2504 goto unlock; 2505 2506 if (vhost_has_feature(vq, VIRTIO_SCSI_F_HOTPLUG)) 2507 vhost_scsi_send_evt(vs, vq, tpg, lun, 2508 VIRTIO_SCSI_T_TRANSPORT_RESET, reason); 2509 unlock: 2510 mutex_unlock(&vq->mutex); 2511 } 2512 2513 static void vhost_scsi_hotplug(struct vhost_scsi_tpg *tpg, struct se_lun *lun) 2514 { 2515 vhost_scsi_do_plug(tpg, lun, true); 2516 } 2517 2518 static void vhost_scsi_hotunplug(struct vhost_scsi_tpg *tpg, struct se_lun *lun) 2519 { 2520 vhost_scsi_do_plug(tpg, lun, false); 2521 } 2522 2523 static int vhost_scsi_port_link(struct se_portal_group *se_tpg, 2524 struct se_lun *lun) 2525 { 2526 struct vhost_scsi_tpg *tpg = container_of(se_tpg, 2527 struct vhost_scsi_tpg, se_tpg); 2528 2529 mutex_lock(&tpg->tv_tpg_mutex); 2530 tpg->tv_tpg_port_count++; 2531 vhost_scsi_hotplug(tpg, lun); 2532 mutex_unlock(&tpg->tv_tpg_mutex); 2533 2534 return 0; 2535 } 2536 2537 static void vhost_scsi_port_unlink(struct se_portal_group *se_tpg, 2538 struct se_lun *lun) 2539 { 2540 struct vhost_scsi_tpg *tpg = container_of(se_tpg, 2541 struct vhost_scsi_tpg, se_tpg); 2542 2543 mutex_lock(&tpg->tv_tpg_mutex); 2544 tpg->tv_tpg_port_count--; 2545 vhost_scsi_hotunplug(tpg, lun); 2546 mutex_unlock(&tpg->tv_tpg_mutex); 2547 } 2548 2549 static ssize_t vhost_scsi_tpg_attrib_fabric_prot_type_store( 2550 struct config_item *item, const char *page, size_t count) 2551 { 2552 struct se_portal_group *se_tpg = attrib_to_tpg(item); 2553 struct vhost_scsi_tpg *tpg = container_of(se_tpg, 2554 struct vhost_scsi_tpg, se_tpg); 2555 unsigned long val; 2556 int ret = kstrtoul(page, 0, &val); 2557 2558 if (ret) { 2559 pr_err("kstrtoul() returned %d for fabric_prot_type\n", ret); 2560 return ret; 2561 } 2562 if (val != 0 && val != 1 && val != 3) { 2563 pr_err("Invalid vhost_scsi fabric_prot_type: %lu\n", val); 2564 return -EINVAL; 2565 } 2566 tpg->tv_fabric_prot_type = val; 2567 2568 return count; 2569 } 2570 2571 static ssize_t vhost_scsi_tpg_attrib_fabric_prot_type_show( 2572 struct config_item *item, char *page) 2573 { 2574 struct se_portal_group *se_tpg = attrib_to_tpg(item); 2575 struct vhost_scsi_tpg *tpg = container_of(se_tpg, 2576 struct vhost_scsi_tpg, se_tpg); 2577 2578 return sysfs_emit(page, "%d\n", tpg->tv_fabric_prot_type); 2579 } 2580 2581 CONFIGFS_ATTR(vhost_scsi_tpg_attrib_, fabric_prot_type); 2582 2583 static struct configfs_attribute *vhost_scsi_tpg_attrib_attrs[] = { 2584 &vhost_scsi_tpg_attrib_attr_fabric_prot_type, 2585 NULL, 2586 }; 2587 2588 static int vhost_scsi_make_nexus(struct vhost_scsi_tpg *tpg, 2589 const char *name) 2590 { 2591 struct vhost_scsi_nexus *tv_nexus; 2592 2593 mutex_lock(&tpg->tv_tpg_mutex); 2594 if (tpg->tpg_nexus) { 2595 mutex_unlock(&tpg->tv_tpg_mutex); 2596 pr_debug("tpg->tpg_nexus already exists\n"); 2597 return -EEXIST; 2598 } 2599 2600 tv_nexus = kzalloc_obj(*tv_nexus); 2601 if (!tv_nexus) { 2602 mutex_unlock(&tpg->tv_tpg_mutex); 2603 pr_err("Unable to allocate struct vhost_scsi_nexus\n"); 2604 return -ENOMEM; 2605 } 2606 /* 2607 * Since we are running in 'demo mode' this call will generate a 2608 * struct se_node_acl for the vhost_scsi struct se_portal_group with 2609 * the SCSI Initiator port name of the passed configfs group 'name'. 2610 */ 2611 tv_nexus->tvn_se_sess = target_setup_session(&tpg->se_tpg, 0, 0, 2612 TARGET_PROT_DIN_PASS | TARGET_PROT_DOUT_PASS, 2613 (unsigned char *)name, tv_nexus, NULL); 2614 if (IS_ERR(tv_nexus->tvn_se_sess)) { 2615 mutex_unlock(&tpg->tv_tpg_mutex); 2616 kfree(tv_nexus); 2617 return -ENOMEM; 2618 } 2619 tpg->tpg_nexus = tv_nexus; 2620 2621 mutex_unlock(&tpg->tv_tpg_mutex); 2622 return 0; 2623 } 2624 2625 static int vhost_scsi_drop_nexus(struct vhost_scsi_tpg *tpg) 2626 { 2627 struct se_session *se_sess; 2628 struct vhost_scsi_nexus *tv_nexus; 2629 2630 mutex_lock(&tpg->tv_tpg_mutex); 2631 tv_nexus = tpg->tpg_nexus; 2632 if (!tv_nexus) { 2633 mutex_unlock(&tpg->tv_tpg_mutex); 2634 return -ENODEV; 2635 } 2636 2637 se_sess = tv_nexus->tvn_se_sess; 2638 if (!se_sess) { 2639 mutex_unlock(&tpg->tv_tpg_mutex); 2640 return -ENODEV; 2641 } 2642 2643 if (tpg->tv_tpg_port_count != 0) { 2644 mutex_unlock(&tpg->tv_tpg_mutex); 2645 pr_err("Unable to remove TCM_vhost I_T Nexus with" 2646 " active TPG port count: %d\n", 2647 tpg->tv_tpg_port_count); 2648 return -EBUSY; 2649 } 2650 2651 if (tpg->tv_tpg_vhost_count != 0) { 2652 mutex_unlock(&tpg->tv_tpg_mutex); 2653 pr_err("Unable to remove TCM_vhost I_T Nexus with" 2654 " active TPG vhost count: %d\n", 2655 tpg->tv_tpg_vhost_count); 2656 return -EBUSY; 2657 } 2658 2659 pr_debug("TCM_vhost_ConfigFS: Removing I_T Nexus to emulated" 2660 " %s Initiator Port: %s\n", vhost_scsi_dump_proto_id(tpg->tport), 2661 tv_nexus->tvn_se_sess->se_node_acl->initiatorname); 2662 2663 /* 2664 * Release the SCSI I_T Nexus to the emulated vhost Target Port 2665 */ 2666 target_remove_session(se_sess); 2667 tpg->tpg_nexus = NULL; 2668 mutex_unlock(&tpg->tv_tpg_mutex); 2669 2670 kfree(tv_nexus); 2671 return 0; 2672 } 2673 2674 static ssize_t vhost_scsi_tpg_nexus_show(struct config_item *item, char *page) 2675 { 2676 struct se_portal_group *se_tpg = to_tpg(item); 2677 struct vhost_scsi_tpg *tpg = container_of(se_tpg, 2678 struct vhost_scsi_tpg, se_tpg); 2679 struct vhost_scsi_nexus *tv_nexus; 2680 ssize_t ret; 2681 2682 mutex_lock(&tpg->tv_tpg_mutex); 2683 tv_nexus = tpg->tpg_nexus; 2684 if (!tv_nexus) { 2685 mutex_unlock(&tpg->tv_tpg_mutex); 2686 return -ENODEV; 2687 } 2688 ret = sysfs_emit(page, "%s\n", 2689 tv_nexus->tvn_se_sess->se_node_acl->initiatorname); 2690 mutex_unlock(&tpg->tv_tpg_mutex); 2691 2692 return ret; 2693 } 2694 2695 static ssize_t vhost_scsi_tpg_nexus_store(struct config_item *item, 2696 const char *page, size_t count) 2697 { 2698 struct se_portal_group *se_tpg = to_tpg(item); 2699 struct vhost_scsi_tpg *tpg = container_of(se_tpg, 2700 struct vhost_scsi_tpg, se_tpg); 2701 struct vhost_scsi_tport *tport_wwn = tpg->tport; 2702 unsigned char i_port[VHOST_SCSI_NAMELEN], *ptr, *port_ptr; 2703 int ret; 2704 /* 2705 * Shutdown the active I_T nexus if 'NULL' is passed.. 2706 */ 2707 if (!strncmp(page, "NULL", 4)) { 2708 ret = vhost_scsi_drop_nexus(tpg); 2709 return (!ret) ? count : ret; 2710 } 2711 /* 2712 * Otherwise make sure the passed virtual Initiator port WWN matches 2713 * the fabric protocol_id set in vhost_scsi_make_tport(), and call 2714 * vhost_scsi_make_nexus(). 2715 */ 2716 if (strlen(page) >= VHOST_SCSI_NAMELEN) { 2717 pr_err("Emulated NAA Sas Address: %s, exceeds" 2718 " max: %d\n", page, VHOST_SCSI_NAMELEN); 2719 return -EINVAL; 2720 } 2721 snprintf(&i_port[0], VHOST_SCSI_NAMELEN, "%s", page); 2722 2723 ptr = strstr(i_port, "naa."); 2724 if (ptr) { 2725 if (tport_wwn->tport_proto_id != SCSI_PROTOCOL_SAS) { 2726 pr_err("Passed SAS Initiator Port %s does not" 2727 " match target port protoid: %s\n", i_port, 2728 vhost_scsi_dump_proto_id(tport_wwn)); 2729 return -EINVAL; 2730 } 2731 port_ptr = &i_port[0]; 2732 goto check_newline; 2733 } 2734 ptr = strstr(i_port, "fc."); 2735 if (ptr) { 2736 if (tport_wwn->tport_proto_id != SCSI_PROTOCOL_FCP) { 2737 pr_err("Passed FCP Initiator Port %s does not" 2738 " match target port protoid: %s\n", i_port, 2739 vhost_scsi_dump_proto_id(tport_wwn)); 2740 return -EINVAL; 2741 } 2742 port_ptr = &i_port[3]; /* Skip over "fc." */ 2743 goto check_newline; 2744 } 2745 ptr = strstr(i_port, "iqn."); 2746 if (ptr) { 2747 if (tport_wwn->tport_proto_id != SCSI_PROTOCOL_ISCSI) { 2748 pr_err("Passed iSCSI Initiator Port %s does not" 2749 " match target port protoid: %s\n", i_port, 2750 vhost_scsi_dump_proto_id(tport_wwn)); 2751 return -EINVAL; 2752 } 2753 port_ptr = &i_port[0]; 2754 goto check_newline; 2755 } 2756 pr_err("Unable to locate prefix for emulated Initiator Port:" 2757 " %s\n", i_port); 2758 return -EINVAL; 2759 /* 2760 * Clear any trailing newline for the NAA WWN 2761 */ 2762 check_newline: 2763 if (i_port[strlen(i_port)-1] == '\n') 2764 i_port[strlen(i_port)-1] = '\0'; 2765 2766 ret = vhost_scsi_make_nexus(tpg, port_ptr); 2767 if (ret < 0) 2768 return ret; 2769 2770 return count; 2771 } 2772 2773 CONFIGFS_ATTR(vhost_scsi_tpg_, nexus); 2774 2775 static struct configfs_attribute *vhost_scsi_tpg_attrs[] = { 2776 &vhost_scsi_tpg_attr_nexus, 2777 NULL, 2778 }; 2779 2780 static struct se_portal_group * 2781 vhost_scsi_make_tpg(struct se_wwn *wwn, const char *name) 2782 { 2783 struct vhost_scsi_tport *tport = container_of(wwn, 2784 struct vhost_scsi_tport, tport_wwn); 2785 2786 struct vhost_scsi_tpg *tpg; 2787 u16 tpgt; 2788 int ret; 2789 2790 if (strstr(name, "tpgt_") != name) 2791 return ERR_PTR(-EINVAL); 2792 if (kstrtou16(name + 5, 10, &tpgt) || tpgt >= VHOST_SCSI_MAX_TARGET) 2793 return ERR_PTR(-EINVAL); 2794 2795 tpg = kzalloc_obj(*tpg); 2796 if (!tpg) { 2797 pr_err("Unable to allocate struct vhost_scsi_tpg"); 2798 return ERR_PTR(-ENOMEM); 2799 } 2800 mutex_init(&tpg->tv_tpg_mutex); 2801 INIT_LIST_HEAD(&tpg->tv_tpg_list); 2802 tpg->tport = tport; 2803 tpg->tport_tpgt = tpgt; 2804 2805 ret = core_tpg_register(wwn, &tpg->se_tpg, tport->tport_proto_id); 2806 if (ret < 0) { 2807 kfree(tpg); 2808 return NULL; 2809 } 2810 mutex_lock(&vhost_scsi_mutex); 2811 list_add_tail(&tpg->tv_tpg_list, &vhost_scsi_list); 2812 mutex_unlock(&vhost_scsi_mutex); 2813 2814 return &tpg->se_tpg; 2815 } 2816 2817 static void vhost_scsi_drop_tpg(struct se_portal_group *se_tpg) 2818 { 2819 struct vhost_scsi_tpg *tpg = container_of(se_tpg, 2820 struct vhost_scsi_tpg, se_tpg); 2821 2822 mutex_lock(&vhost_scsi_mutex); 2823 list_del(&tpg->tv_tpg_list); 2824 mutex_unlock(&vhost_scsi_mutex); 2825 /* 2826 * Release the virtual I_T Nexus for this vhost TPG 2827 */ 2828 vhost_scsi_drop_nexus(tpg); 2829 /* 2830 * Deregister the se_tpg from TCM.. 2831 */ 2832 core_tpg_deregister(se_tpg); 2833 kfree(tpg); 2834 } 2835 2836 static struct se_wwn * 2837 vhost_scsi_make_tport(struct target_fabric_configfs *tf, 2838 struct config_group *group, 2839 const char *name) 2840 { 2841 struct vhost_scsi_tport *tport; 2842 char *ptr; 2843 u64 wwpn = 0; 2844 int off = 0; 2845 2846 /* if (vhost_scsi_parse_wwn(name, &wwpn, 1) < 0) 2847 return ERR_PTR(-EINVAL); */ 2848 2849 tport = kzalloc_obj(*tport); 2850 if (!tport) { 2851 pr_err("Unable to allocate struct vhost_scsi_tport"); 2852 return ERR_PTR(-ENOMEM); 2853 } 2854 tport->tport_wwpn = wwpn; 2855 /* 2856 * Determine the emulated Protocol Identifier and Target Port Name 2857 * based on the incoming configfs directory name. 2858 */ 2859 ptr = strstr(name, "naa."); 2860 if (ptr) { 2861 tport->tport_proto_id = SCSI_PROTOCOL_SAS; 2862 goto check_len; 2863 } 2864 ptr = strstr(name, "fc."); 2865 if (ptr) { 2866 tport->tport_proto_id = SCSI_PROTOCOL_FCP; 2867 off = 3; /* Skip over "fc." */ 2868 goto check_len; 2869 } 2870 ptr = strstr(name, "iqn."); 2871 if (ptr) { 2872 tport->tport_proto_id = SCSI_PROTOCOL_ISCSI; 2873 goto check_len; 2874 } 2875 2876 pr_err("Unable to locate prefix for emulated Target Port:" 2877 " %s\n", name); 2878 kfree(tport); 2879 return ERR_PTR(-EINVAL); 2880 2881 check_len: 2882 if (strlen(name) >= VHOST_SCSI_NAMELEN) { 2883 pr_err("Emulated %s Address: %s, exceeds" 2884 " max: %d\n", vhost_scsi_dump_proto_id(tport), name, 2885 VHOST_SCSI_NAMELEN); 2886 kfree(tport); 2887 return ERR_PTR(-EINVAL); 2888 } 2889 snprintf(&tport->tport_name[0], VHOST_SCSI_NAMELEN, "%s", &name[off]); 2890 2891 pr_debug("TCM_VHost_ConfigFS: Allocated emulated Target" 2892 " %s Address: %s\n", vhost_scsi_dump_proto_id(tport), name); 2893 2894 return &tport->tport_wwn; 2895 } 2896 2897 static void vhost_scsi_drop_tport(struct se_wwn *wwn) 2898 { 2899 struct vhost_scsi_tport *tport = container_of(wwn, 2900 struct vhost_scsi_tport, tport_wwn); 2901 2902 pr_debug("TCM_VHost_ConfigFS: Deallocating emulated Target" 2903 " %s Address: %s\n", vhost_scsi_dump_proto_id(tport), 2904 tport->tport_name); 2905 2906 kfree(tport); 2907 } 2908 2909 static ssize_t 2910 vhost_scsi_wwn_version_show(struct config_item *item, char *page) 2911 { 2912 return sysfs_emit(page, "TCM_VHOST fabric module %s on %s/%s" 2913 " on "UTS_RELEASE"\n", VHOST_SCSI_VERSION, utsname()->sysname, 2914 utsname()->machine); 2915 } 2916 2917 CONFIGFS_ATTR_RO(vhost_scsi_wwn_, version); 2918 2919 static struct configfs_attribute *vhost_scsi_wwn_attrs[] = { 2920 &vhost_scsi_wwn_attr_version, 2921 NULL, 2922 }; 2923 2924 static const struct target_core_fabric_ops vhost_scsi_ops = { 2925 .module = THIS_MODULE, 2926 .fabric_name = "vhost", 2927 .max_data_sg_nents = VHOST_SCSI_PREALLOC_SGLS, 2928 .tpg_get_wwn = vhost_scsi_get_fabric_wwn, 2929 .tpg_get_tag = vhost_scsi_get_tpgt, 2930 .tpg_check_demo_mode = vhost_scsi_check_true, 2931 .tpg_check_demo_mode_cache = vhost_scsi_check_true, 2932 .tpg_check_prot_fabric_only = vhost_scsi_check_prot_fabric_only, 2933 .release_cmd = vhost_scsi_release_cmd, 2934 .check_stop_free = vhost_scsi_check_stop_free, 2935 .sess_get_initiator_sid = NULL, 2936 .write_pending = vhost_scsi_write_pending, 2937 .queue_data_in = vhost_scsi_queue_data_in, 2938 .queue_status = vhost_scsi_queue_status, 2939 .queue_tm_rsp = vhost_scsi_queue_tm_rsp, 2940 .aborted_task = vhost_scsi_aborted_task, 2941 /* 2942 * Setup callers for generic logic in target_core_fabric_configfs.c 2943 */ 2944 .fabric_make_wwn = vhost_scsi_make_tport, 2945 .fabric_drop_wwn = vhost_scsi_drop_tport, 2946 .fabric_make_tpg = vhost_scsi_make_tpg, 2947 .fabric_drop_tpg = vhost_scsi_drop_tpg, 2948 .fabric_post_link = vhost_scsi_port_link, 2949 .fabric_pre_unlink = vhost_scsi_port_unlink, 2950 2951 .tfc_wwn_attrs = vhost_scsi_wwn_attrs, 2952 .tfc_tpg_base_attrs = vhost_scsi_tpg_attrs, 2953 .tfc_tpg_attrib_attrs = vhost_scsi_tpg_attrib_attrs, 2954 2955 .default_submit_type = TARGET_QUEUE_SUBMIT, 2956 .direct_submit_supp = 1, 2957 }; 2958 2959 static int __init vhost_scsi_init(void) 2960 { 2961 int ret = -ENOMEM; 2962 2963 pr_debug("TCM_VHOST fabric module %s on %s/%s" 2964 " on "UTS_RELEASE"\n", VHOST_SCSI_VERSION, utsname()->sysname, 2965 utsname()->machine); 2966 2967 ret = vhost_scsi_register(); 2968 if (ret < 0) 2969 goto out; 2970 2971 ret = target_register_template(&vhost_scsi_ops); 2972 if (ret < 0) 2973 goto out_vhost_scsi_deregister; 2974 2975 return 0; 2976 2977 out_vhost_scsi_deregister: 2978 vhost_scsi_deregister(); 2979 out: 2980 return ret; 2981 } 2982 2983 static void vhost_scsi_exit(void) 2984 { 2985 target_unregister_template(&vhost_scsi_ops); 2986 vhost_scsi_deregister(); 2987 } 2988 2989 MODULE_DESCRIPTION("VHOST_SCSI series fabric driver"); 2990 MODULE_ALIAS("tcm_vhost"); 2991 MODULE_LICENSE("GPL"); 2992 module_init(vhost_scsi_init); 2993 module_exit(vhost_scsi_exit); 2994