1 // SPDX-License-Identifier: GPL-2.0-or-later 2 /* ------------------------------------------------------------ 3 * ibmvscsi.c 4 * (C) Copyright IBM Corporation 1994, 2004 5 * Authors: Colin DeVilbiss (devilbis@us.ibm.com) 6 * Santiago Leon (santil@us.ibm.com) 7 * Dave Boutcher (sleddog@us.ibm.com) 8 * 9 * ------------------------------------------------------------ 10 * Emulation of a SCSI host adapter for Virtual I/O devices 11 * 12 * This driver supports the SCSI adapter implemented by the IBM 13 * Power5 firmware. That SCSI adapter is not a physical adapter, 14 * but allows Linux SCSI peripheral drivers to directly 15 * access devices in another logical partition on the physical system. 16 * 17 * The virtual adapter(s) are present in the open firmware device 18 * tree just like real adapters. 19 * 20 * One of the capabilities provided on these systems is the ability 21 * to DMA between partitions. The architecture states that for VSCSI, 22 * the server side is allowed to DMA to and from the client. The client 23 * is never trusted to DMA to or from the server directly. 24 * 25 * Messages are sent between partitions on a "Command/Response Queue" 26 * (CRQ), which is just a buffer of 16 byte entries in the receiver's 27 * Senders cannot access the buffer directly, but send messages by 28 * making a hypervisor call and passing in the 16 bytes. The hypervisor 29 * puts the message in the next 16 byte space in round-robin fashion, 30 * turns on the high order bit of the message (the valid bit), and 31 * generates an interrupt to the receiver (if interrupts are turned on.) 32 * The receiver just turns off the valid bit when they have copied out 33 * the message. 34 * 35 * The VSCSI client builds a SCSI Remote Protocol (SRP) Information Unit 36 * (IU) (as defined in the T10 standard available at www.t10.org), gets 37 * a DMA address for the message, and sends it to the server as the 38 * payload of a CRQ message. The server DMAs the SRP IU and processes it, 39 * including doing any additional data transfers. When it is done, it 40 * DMAs the SRP response back to the same address as the request came from, 41 * and sends a CRQ message back to inform the client that the request has 42 * completed. 43 * 44 * TODO: This is currently pretty tied to the IBM pSeries hypervisor 45 * interfaces. It would be really nice to abstract this above an RDMA 46 * layer. 47 */ 48 49 #include <linux/module.h> 50 #include <linux/moduleparam.h> 51 #include <linux/dma-mapping.h> 52 #include <linux/delay.h> 53 #include <linux/slab.h> 54 #include <linux/of.h> 55 #include <linux/pm.h> 56 #include <linux/kthread.h> 57 #include <asm/firmware.h> 58 #include <asm/vio.h> 59 #include <scsi/scsi.h> 60 #include <scsi/scsi_cmnd.h> 61 #include <scsi/scsi_host.h> 62 #include <scsi/scsi_device.h> 63 #include <scsi/scsi_transport_srp.h> 64 #include "ibmvscsi.h" 65 66 /* The values below are somewhat arbitrary default values, but 67 * OS/400 will use 3 busses (disks, CDs, tapes, I think.) 68 * Note that there are 3 bits of channel value, 6 bits of id, and 69 * 5 bits of LUN. 70 */ 71 static int max_id = 64; 72 static int max_channel = 3; 73 static int init_timeout = 300; 74 static int login_timeout = 60; 75 static int info_timeout = 30; 76 static int abort_timeout = 60; 77 static int reset_timeout = 60; 78 static int max_requests = IBMVSCSI_MAX_REQUESTS_DEFAULT; 79 static int max_events = IBMVSCSI_MAX_REQUESTS_DEFAULT + 2; 80 static int fast_fail = 1; 81 static int client_reserve = 1; 82 static char partition_name[96] = "UNKNOWN"; 83 static unsigned int partition_number = -1; 84 static LIST_HEAD(ibmvscsi_head); 85 static DEFINE_SPINLOCK(ibmvscsi_driver_lock); 86 87 static struct scsi_transport_template *ibmvscsi_transport_template; 88 89 #define IBMVSCSI_VERSION "1.5.9" 90 91 MODULE_DESCRIPTION("IBM Virtual SCSI"); 92 MODULE_AUTHOR("Dave Boutcher"); 93 MODULE_LICENSE("GPL"); 94 MODULE_VERSION(IBMVSCSI_VERSION); 95 96 module_param_named(max_id, max_id, int, S_IRUGO | S_IWUSR); 97 MODULE_PARM_DESC(max_id, "Largest ID value for each channel [Default=64]"); 98 module_param_named(max_channel, max_channel, int, S_IRUGO | S_IWUSR); 99 MODULE_PARM_DESC(max_channel, "Largest channel value [Default=3]"); 100 module_param_named(init_timeout, init_timeout, int, S_IRUGO | S_IWUSR); 101 MODULE_PARM_DESC(init_timeout, "Initialization timeout in seconds"); 102 module_param_named(max_requests, max_requests, int, S_IRUGO); 103 MODULE_PARM_DESC(max_requests, "Maximum requests for this adapter"); 104 module_param_named(fast_fail, fast_fail, int, S_IRUGO | S_IWUSR); 105 MODULE_PARM_DESC(fast_fail, "Enable fast fail. [Default=1]"); 106 module_param_named(client_reserve, client_reserve, int, S_IRUGO ); 107 MODULE_PARM_DESC(client_reserve, "Attempt client managed reserve/release"); 108 109 static void ibmvscsi_handle_crq(struct viosrp_crq *crq, 110 struct ibmvscsi_host_data *hostdata); 111 112 /* ------------------------------------------------------------ 113 * Routines for managing the command/response queue 114 */ 115 /** 116 * ibmvscsi_handle_event: - Interrupt handler for crq events 117 * @irq: number of irq to handle, not used 118 * @dev_instance: ibmvscsi_host_data of host that received interrupt 119 * 120 * Disables interrupts and schedules srp_task 121 * Always returns IRQ_HANDLED 122 */ 123 static irqreturn_t ibmvscsi_handle_event(int irq, void *dev_instance) 124 { 125 struct ibmvscsi_host_data *hostdata = 126 (struct ibmvscsi_host_data *)dev_instance; 127 vio_disable_interrupts(to_vio_dev(hostdata->dev)); 128 tasklet_schedule(&hostdata->srp_task); 129 return IRQ_HANDLED; 130 } 131 132 /** 133 * ibmvscsi_release_crq_queue() - Deallocates data and unregisters CRQ 134 * @queue: crq_queue to initialize and register 135 * @hostdata: ibmvscsi_host_data of host 136 * @max_requests: maximum requests (unused) 137 * 138 * Frees irq, deallocates a page for messages, unmaps dma, and unregisters 139 * the crq with the hypervisor. 140 */ 141 static void ibmvscsi_release_crq_queue(struct crq_queue *queue, 142 struct ibmvscsi_host_data *hostdata, 143 int max_requests) 144 { 145 long rc = 0; 146 struct vio_dev *vdev = to_vio_dev(hostdata->dev); 147 free_irq(vdev->irq, (void *)hostdata); 148 tasklet_kill(&hostdata->srp_task); 149 do { 150 if (rc) 151 msleep(100); 152 rc = plpar_hcall_norets(H_FREE_CRQ, vdev->unit_address); 153 } while ((rc == H_BUSY) || (H_IS_LONG_BUSY(rc))); 154 dma_unmap_single(hostdata->dev, 155 queue->msg_token, 156 queue->size * sizeof(*queue->msgs), DMA_BIDIRECTIONAL); 157 free_page((unsigned long)queue->msgs); 158 } 159 160 /** 161 * crq_queue_next_crq: - Returns the next entry in message queue 162 * @queue: crq_queue to use 163 * 164 * Returns pointer to next entry in queue, or NULL if there are no new 165 * entried in the CRQ. 166 */ 167 static struct viosrp_crq *crq_queue_next_crq(struct crq_queue *queue) 168 { 169 struct viosrp_crq *crq; 170 unsigned long flags; 171 172 spin_lock_irqsave(&queue->lock, flags); 173 crq = &queue->msgs[queue->cur]; 174 if (crq->valid != VIOSRP_CRQ_FREE) { 175 if (++queue->cur == queue->size) 176 queue->cur = 0; 177 178 /* Ensure the read of the valid bit occurs before reading any 179 * other bits of the CRQ entry 180 */ 181 rmb(); 182 } else 183 crq = NULL; 184 spin_unlock_irqrestore(&queue->lock, flags); 185 186 return crq; 187 } 188 189 /** 190 * ibmvscsi_send_crq: - Send a CRQ 191 * @hostdata: the adapter 192 * @word1: the first 64 bits of the data 193 * @word2: the second 64 bits of the data 194 */ 195 static int ibmvscsi_send_crq(struct ibmvscsi_host_data *hostdata, 196 u64 word1, u64 word2) 197 { 198 struct vio_dev *vdev = to_vio_dev(hostdata->dev); 199 200 /* 201 * Ensure the command buffer is flushed to memory before handing it 202 * over to the VIOS to prevent it from fetching any stale data. 203 */ 204 mb(); 205 return plpar_hcall_norets(H_SEND_CRQ, vdev->unit_address, word1, word2); 206 } 207 208 /** 209 * ibmvscsi_task: - Process srps asynchronously 210 * @data: ibmvscsi_host_data of host 211 */ 212 static void ibmvscsi_task(void *data) 213 { 214 struct ibmvscsi_host_data *hostdata = (struct ibmvscsi_host_data *)data; 215 struct vio_dev *vdev = to_vio_dev(hostdata->dev); 216 struct viosrp_crq *crq; 217 int done = 0; 218 219 while (!done) { 220 /* Pull all the valid messages off the CRQ */ 221 while ((crq = crq_queue_next_crq(&hostdata->queue)) != NULL) { 222 ibmvscsi_handle_crq(crq, hostdata); 223 crq->valid = VIOSRP_CRQ_FREE; 224 wmb(); 225 } 226 227 vio_enable_interrupts(vdev); 228 crq = crq_queue_next_crq(&hostdata->queue); 229 if (crq != NULL) { 230 vio_disable_interrupts(vdev); 231 ibmvscsi_handle_crq(crq, hostdata); 232 crq->valid = VIOSRP_CRQ_FREE; 233 wmb(); 234 } else { 235 done = 1; 236 } 237 } 238 } 239 240 static void gather_partition_info(void) 241 { 242 const char *ppartition_name; 243 const __be32 *p_number_ptr; 244 245 /* Retrieve information about this partition */ 246 if (!of_root) 247 return; 248 249 of_node_get(of_root); 250 251 ppartition_name = of_get_property(of_root, "ibm,partition-name", NULL); 252 if (ppartition_name) 253 strscpy(partition_name, ppartition_name, 254 sizeof(partition_name)); 255 p_number_ptr = of_get_property(of_root, "ibm,partition-no", NULL); 256 if (p_number_ptr) 257 partition_number = of_read_number(p_number_ptr, 1); 258 of_node_put(of_root); 259 } 260 261 static void set_adapter_info(struct ibmvscsi_host_data *hostdata) 262 { 263 memset(&hostdata->madapter_info, 0x00, 264 sizeof(hostdata->madapter_info)); 265 266 dev_info(hostdata->dev, "SRP_VERSION: %s\n", SRP_VERSION); 267 strcpy(hostdata->madapter_info.srp_version, SRP_VERSION); 268 269 strscpy(hostdata->madapter_info.partition_name, partition_name, 270 sizeof(hostdata->madapter_info.partition_name)); 271 272 hostdata->madapter_info.partition_number = 273 cpu_to_be32(partition_number); 274 275 hostdata->madapter_info.mad_version = cpu_to_be32(SRP_MAD_VERSION_1); 276 hostdata->madapter_info.os_type = cpu_to_be32(SRP_MAD_OS_LINUX); 277 } 278 279 /** 280 * ibmvscsi_reset_crq_queue() - resets a crq after a failure 281 * @queue: crq_queue to initialize and register 282 * @hostdata: ibmvscsi_host_data of host 283 */ 284 static int ibmvscsi_reset_crq_queue(struct crq_queue *queue, 285 struct ibmvscsi_host_data *hostdata) 286 { 287 int rc = 0; 288 struct vio_dev *vdev = to_vio_dev(hostdata->dev); 289 290 /* Close the CRQ */ 291 do { 292 if (rc) 293 msleep(100); 294 rc = plpar_hcall_norets(H_FREE_CRQ, vdev->unit_address); 295 } while ((rc == H_BUSY) || (H_IS_LONG_BUSY(rc))); 296 297 /* Clean out the queue */ 298 memset(queue->msgs, 0x00, PAGE_SIZE); 299 queue->cur = 0; 300 301 set_adapter_info(hostdata); 302 303 /* And re-open it again */ 304 rc = plpar_hcall_norets(H_REG_CRQ, 305 vdev->unit_address, 306 queue->msg_token, PAGE_SIZE); 307 if (rc == H_CLOSED) { 308 /* Adapter is good, but other end is not ready */ 309 dev_warn(hostdata->dev, "Partner adapter not ready\n"); 310 } else if (rc != 0) { 311 dev_warn(hostdata->dev, "couldn't register crq--rc 0x%x\n", rc); 312 } 313 return rc; 314 } 315 316 /** 317 * ibmvscsi_init_crq_queue() - Initializes and registers CRQ with hypervisor 318 * @queue: crq_queue to initialize and register 319 * @hostdata: ibmvscsi_host_data of host 320 * @max_requests: maximum requests (unused) 321 * 322 * Allocates a page for messages, maps it for dma, and registers 323 * the crq with the hypervisor. 324 * Returns zero on success. 325 */ 326 static int ibmvscsi_init_crq_queue(struct crq_queue *queue, 327 struct ibmvscsi_host_data *hostdata, 328 int max_requests) 329 { 330 int rc; 331 int retrc; 332 struct vio_dev *vdev = to_vio_dev(hostdata->dev); 333 334 queue->msgs = (struct viosrp_crq *)get_zeroed_page(GFP_KERNEL); 335 336 if (!queue->msgs) 337 goto malloc_failed; 338 queue->size = PAGE_SIZE / sizeof(*queue->msgs); 339 340 queue->msg_token = dma_map_single(hostdata->dev, queue->msgs, 341 queue->size * sizeof(*queue->msgs), 342 DMA_BIDIRECTIONAL); 343 344 if (dma_mapping_error(hostdata->dev, queue->msg_token)) 345 goto map_failed; 346 347 gather_partition_info(); 348 set_adapter_info(hostdata); 349 350 retrc = rc = plpar_hcall_norets(H_REG_CRQ, 351 vdev->unit_address, 352 queue->msg_token, PAGE_SIZE); 353 if (rc == H_RESOURCE) 354 /* maybe kexecing and resource is busy. try a reset */ 355 rc = ibmvscsi_reset_crq_queue(queue, 356 hostdata); 357 358 if (rc == H_CLOSED) { 359 /* Adapter is good, but other end is not ready */ 360 dev_warn(hostdata->dev, "Partner adapter not ready\n"); 361 retrc = 0; 362 } else if (rc != 0) { 363 dev_warn(hostdata->dev, "Error %d opening adapter\n", rc); 364 goto reg_crq_failed; 365 } 366 367 queue->cur = 0; 368 spin_lock_init(&queue->lock); 369 370 tasklet_init(&hostdata->srp_task, (void *)ibmvscsi_task, 371 (unsigned long)hostdata); 372 373 if (request_irq(vdev->irq, 374 ibmvscsi_handle_event, 375 0, "ibmvscsi", (void *)hostdata) != 0) { 376 dev_err(hostdata->dev, "couldn't register irq 0x%x\n", 377 vdev->irq); 378 goto req_irq_failed; 379 } 380 381 rc = vio_enable_interrupts(vdev); 382 if (rc != 0) { 383 dev_err(hostdata->dev, "Error %d enabling interrupts!!!\n", rc); 384 goto req_irq_failed; 385 } 386 387 return retrc; 388 389 req_irq_failed: 390 tasklet_kill(&hostdata->srp_task); 391 rc = 0; 392 do { 393 if (rc) 394 msleep(100); 395 rc = plpar_hcall_norets(H_FREE_CRQ, vdev->unit_address); 396 } while ((rc == H_BUSY) || (H_IS_LONG_BUSY(rc))); 397 reg_crq_failed: 398 dma_unmap_single(hostdata->dev, 399 queue->msg_token, 400 queue->size * sizeof(*queue->msgs), DMA_BIDIRECTIONAL); 401 map_failed: 402 free_page((unsigned long)queue->msgs); 403 malloc_failed: 404 return -1; 405 } 406 407 /** 408 * ibmvscsi_reenable_crq_queue() - reenables a crq after 409 * @queue: crq_queue to initialize and register 410 * @hostdata: ibmvscsi_host_data of host 411 */ 412 static int ibmvscsi_reenable_crq_queue(struct crq_queue *queue, 413 struct ibmvscsi_host_data *hostdata) 414 { 415 int rc = 0; 416 struct vio_dev *vdev = to_vio_dev(hostdata->dev); 417 418 set_adapter_info(hostdata); 419 420 /* Re-enable the CRQ */ 421 do { 422 if (rc) 423 msleep(100); 424 rc = plpar_hcall_norets(H_ENABLE_CRQ, vdev->unit_address); 425 } while ((rc == H_IN_PROGRESS) || (rc == H_BUSY) || (H_IS_LONG_BUSY(rc))); 426 427 if (rc) 428 dev_err(hostdata->dev, "Error %d enabling adapter\n", rc); 429 return rc; 430 } 431 432 /* ------------------------------------------------------------ 433 * Routines for the event pool and event structs 434 */ 435 /** 436 * initialize_event_pool: - Allocates and initializes the event pool for a host 437 * @pool: event_pool to be initialized 438 * @size: Number of events in pool 439 * @hostdata: ibmvscsi_host_data who owns the event pool 440 * 441 * Returns zero on success. 442 */ 443 static int initialize_event_pool(struct event_pool *pool, 444 int size, struct ibmvscsi_host_data *hostdata) 445 { 446 int i; 447 448 pool->size = size; 449 pool->next = 0; 450 pool->events = kcalloc(pool->size, sizeof(*pool->events), GFP_KERNEL); 451 if (!pool->events) 452 return -ENOMEM; 453 454 pool->iu_storage = 455 dma_alloc_coherent(hostdata->dev, 456 pool->size * sizeof(*pool->iu_storage), 457 &pool->iu_token, GFP_KERNEL); 458 if (!pool->iu_storage) { 459 kfree(pool->events); 460 return -ENOMEM; 461 } 462 463 for (i = 0; i < pool->size; ++i) { 464 struct srp_event_struct *evt = &pool->events[i]; 465 memset(&evt->crq, 0x00, sizeof(evt->crq)); 466 atomic_set(&evt->free, 1); 467 evt->crq.valid = VIOSRP_CRQ_CMD_RSP; 468 evt->crq.IU_length = cpu_to_be16(sizeof(*evt->xfer_iu)); 469 evt->crq.IU_data_ptr = cpu_to_be64(pool->iu_token + 470 sizeof(*evt->xfer_iu) * i); 471 evt->xfer_iu = pool->iu_storage + i; 472 evt->hostdata = hostdata; 473 evt->ext_list = NULL; 474 evt->ext_list_token = 0; 475 } 476 477 return 0; 478 } 479 480 /** 481 * release_event_pool() - Frees memory of an event pool of a host 482 * @pool: event_pool to be released 483 * @hostdata: ibmvscsi_host_data who owns the even pool 484 * 485 * Returns zero on success. 486 */ 487 static void release_event_pool(struct event_pool *pool, 488 struct ibmvscsi_host_data *hostdata) 489 { 490 int i, in_use = 0; 491 for (i = 0; i < pool->size; ++i) { 492 if (atomic_read(&pool->events[i].free) != 1) 493 ++in_use; 494 if (pool->events[i].ext_list) { 495 dma_free_coherent(hostdata->dev, 496 SG_ALL * sizeof(struct srp_direct_buf), 497 pool->events[i].ext_list, 498 pool->events[i].ext_list_token); 499 } 500 } 501 if (in_use) 502 dev_warn(hostdata->dev, "releasing event pool with %d " 503 "events still in use?\n", in_use); 504 kfree(pool->events); 505 dma_free_coherent(hostdata->dev, 506 pool->size * sizeof(*pool->iu_storage), 507 pool->iu_storage, pool->iu_token); 508 } 509 510 /** 511 * valid_event_struct: - Determines if event is valid. 512 * @pool: event_pool that contains the event 513 * @evt: srp_event_struct to be checked for validity 514 * 515 * Returns zero if event is invalid, one otherwise. 516 */ 517 static int valid_event_struct(struct event_pool *pool, 518 struct srp_event_struct *evt) 519 { 520 int index = evt - pool->events; 521 if (index < 0 || index >= pool->size) /* outside of bounds */ 522 return 0; 523 if (evt != pool->events + index) /* unaligned */ 524 return 0; 525 return 1; 526 } 527 528 /** 529 * free_event_struct() - Changes status of event to "free" 530 * @pool: event_pool that contains the event 531 * @evt: srp_event_struct to be modified 532 */ 533 static void free_event_struct(struct event_pool *pool, 534 struct srp_event_struct *evt) 535 { 536 if (!valid_event_struct(pool, evt)) { 537 dev_err(evt->hostdata->dev, "Freeing invalid event_struct %p " 538 "(not in pool %p)\n", evt, pool->events); 539 return; 540 } 541 if (atomic_inc_return(&evt->free) != 1) { 542 dev_err(evt->hostdata->dev, "Freeing event_struct %p " 543 "which is not in use!\n", evt); 544 return; 545 } 546 } 547 548 /** 549 * get_event_struct() - Gets the next free event in pool 550 * @pool: event_pool that contains the events to be searched 551 * 552 * Returns the next event in "free" state, and NULL if none are free. 553 * Note that no synchronization is done here, we assume the host_lock 554 * will syncrhonze things. 555 */ 556 static struct srp_event_struct *get_event_struct(struct event_pool *pool) 557 { 558 int i; 559 int poolsize = pool->size; 560 int offset = pool->next; 561 562 for (i = 0; i < poolsize; i++) { 563 offset = (offset + 1) % poolsize; 564 if (!atomic_dec_if_positive(&pool->events[offset].free)) { 565 pool->next = offset; 566 return &pool->events[offset]; 567 } 568 } 569 570 printk(KERN_ERR "ibmvscsi: found no event struct in pool!\n"); 571 return NULL; 572 } 573 574 /** 575 * init_event_struct: Initialize fields in an event struct that are always 576 * required. 577 * @evt_struct: The event 578 * @done: Routine to call when the event is responded to 579 * @format: SRP or MAD format 580 * @timeout: timeout value set in the CRQ 581 */ 582 static void init_event_struct(struct srp_event_struct *evt_struct, 583 void (*done) (struct srp_event_struct *), 584 u8 format, 585 int timeout) 586 { 587 evt_struct->cmnd = NULL; 588 evt_struct->cmnd_done = NULL; 589 evt_struct->sync_srp = NULL; 590 evt_struct->crq.format = format; 591 evt_struct->crq.timeout = cpu_to_be16(timeout); 592 evt_struct->done = done; 593 } 594 595 /* ------------------------------------------------------------ 596 * Routines for receiving SCSI responses from the hosting partition 597 */ 598 599 /* 600 * set_srp_direction: Set the fields in the srp related to data 601 * direction and number of buffers based on the direction in 602 * the scsi_cmnd and the number of buffers 603 */ 604 static void set_srp_direction(struct scsi_cmnd *cmd, 605 struct srp_cmd *srp_cmd, 606 int numbuf) 607 { 608 u8 fmt; 609 610 if (numbuf == 0) 611 return; 612 613 if (numbuf == 1) 614 fmt = SRP_DATA_DESC_DIRECT; 615 else { 616 fmt = SRP_DATA_DESC_INDIRECT; 617 numbuf = min(numbuf, MAX_INDIRECT_BUFS); 618 619 if (cmd->sc_data_direction == DMA_TO_DEVICE) 620 srp_cmd->data_out_desc_cnt = numbuf; 621 else 622 srp_cmd->data_in_desc_cnt = numbuf; 623 } 624 625 if (cmd->sc_data_direction == DMA_TO_DEVICE) 626 srp_cmd->buf_fmt = fmt << 4; 627 else 628 srp_cmd->buf_fmt = fmt; 629 } 630 631 /** 632 * unmap_cmd_data: - Unmap data pointed in srp_cmd based on the format 633 * @cmd: srp_cmd whose additional_data member will be unmapped 634 * @evt_struct: the event 635 * @dev: device for which the memory is mapped 636 */ 637 static void unmap_cmd_data(struct srp_cmd *cmd, 638 struct srp_event_struct *evt_struct, 639 struct device *dev) 640 { 641 u8 out_fmt, in_fmt; 642 643 out_fmt = cmd->buf_fmt >> 4; 644 in_fmt = cmd->buf_fmt & ((1U << 4) - 1); 645 646 if (out_fmt == SRP_NO_DATA_DESC && in_fmt == SRP_NO_DATA_DESC) 647 return; 648 649 if (evt_struct->cmnd) 650 scsi_dma_unmap(evt_struct->cmnd); 651 } 652 653 static int map_sg_list(struct scsi_cmnd *cmd, int nseg, 654 struct srp_direct_buf *md) 655 { 656 int i; 657 struct scatterlist *sg; 658 u64 total_length = 0; 659 660 scsi_for_each_sg(cmd, sg, nseg, i) { 661 struct srp_direct_buf *descr = md + i; 662 descr->va = cpu_to_be64(sg_dma_address(sg)); 663 descr->len = cpu_to_be32(sg_dma_len(sg)); 664 descr->key = 0; 665 total_length += sg_dma_len(sg); 666 } 667 return total_length; 668 } 669 670 /** 671 * map_sg_data: - Maps dma for a scatterlist and initializes descriptor fields 672 * @cmd: struct scsi_cmnd with the scatterlist 673 * @evt_struct: struct srp_event_struct to map 674 * @srp_cmd: srp_cmd that contains the memory descriptor 675 * @dev: device for which to map dma memory 676 * 677 * Called by map_data_for_srp_cmd() when building srp cmd from scsi cmd. 678 * Returns 1 on success. 679 */ 680 static int map_sg_data(struct scsi_cmnd *cmd, 681 struct srp_event_struct *evt_struct, 682 struct srp_cmd *srp_cmd, struct device *dev) 683 { 684 685 int sg_mapped; 686 u64 total_length = 0; 687 struct srp_direct_buf *data = 688 (struct srp_direct_buf *) srp_cmd->add_data; 689 struct srp_indirect_buf *indirect = 690 (struct srp_indirect_buf *) data; 691 692 sg_mapped = scsi_dma_map(cmd); 693 if (!sg_mapped) 694 return 1; 695 else if (sg_mapped < 0) 696 return 0; 697 698 set_srp_direction(cmd, srp_cmd, sg_mapped); 699 700 /* special case; we can use a single direct descriptor */ 701 if (sg_mapped == 1) { 702 map_sg_list(cmd, sg_mapped, data); 703 return 1; 704 } 705 706 indirect->table_desc.va = 0; 707 indirect->table_desc.len = cpu_to_be32(sg_mapped * 708 sizeof(struct srp_direct_buf)); 709 indirect->table_desc.key = 0; 710 711 if (sg_mapped <= MAX_INDIRECT_BUFS) { 712 total_length = map_sg_list(cmd, sg_mapped, 713 &indirect->desc_list[0]); 714 indirect->len = cpu_to_be32(total_length); 715 return 1; 716 } 717 718 /* get indirect table */ 719 if (!evt_struct->ext_list) { 720 evt_struct->ext_list = dma_alloc_coherent(dev, 721 SG_ALL * sizeof(struct srp_direct_buf), 722 &evt_struct->ext_list_token, 0); 723 if (!evt_struct->ext_list) { 724 if (!firmware_has_feature(FW_FEATURE_CMO)) 725 sdev_printk(KERN_ERR, cmd->device, 726 "Can't allocate memory " 727 "for indirect table\n"); 728 scsi_dma_unmap(cmd); 729 return 0; 730 } 731 } 732 733 total_length = map_sg_list(cmd, sg_mapped, evt_struct->ext_list); 734 735 indirect->len = cpu_to_be32(total_length); 736 indirect->table_desc.va = cpu_to_be64(evt_struct->ext_list_token); 737 indirect->table_desc.len = cpu_to_be32(sg_mapped * 738 sizeof(indirect->desc_list[0])); 739 memcpy(indirect->desc_list, evt_struct->ext_list, 740 MAX_INDIRECT_BUFS * sizeof(struct srp_direct_buf)); 741 return 1; 742 } 743 744 /** 745 * map_data_for_srp_cmd: - Calls functions to map data for srp cmds 746 * @cmd: struct scsi_cmnd with the memory to be mapped 747 * @evt_struct: struct srp_event_struct to map 748 * @srp_cmd: srp_cmd that contains the memory descriptor 749 * @dev: dma device for which to map dma memory 750 * 751 * Called by scsi_cmd_to_srp_cmd() when converting scsi cmds to srp cmds 752 * Returns 1 on success. 753 */ 754 static int map_data_for_srp_cmd(struct scsi_cmnd *cmd, 755 struct srp_event_struct *evt_struct, 756 struct srp_cmd *srp_cmd, struct device *dev) 757 { 758 switch (cmd->sc_data_direction) { 759 case DMA_FROM_DEVICE: 760 case DMA_TO_DEVICE: 761 break; 762 case DMA_NONE: 763 return 1; 764 case DMA_BIDIRECTIONAL: 765 sdev_printk(KERN_ERR, cmd->device, 766 "Can't map DMA_BIDIRECTIONAL to read/write\n"); 767 return 0; 768 default: 769 sdev_printk(KERN_ERR, cmd->device, 770 "Unknown data direction 0x%02x; can't map!\n", 771 cmd->sc_data_direction); 772 return 0; 773 } 774 775 return map_sg_data(cmd, evt_struct, srp_cmd, dev); 776 } 777 778 /** 779 * purge_requests: Our virtual adapter just shut down. purge any sent requests 780 * @hostdata: the adapter 781 * @error_code: error code to return as the 'result' 782 */ 783 static void purge_requests(struct ibmvscsi_host_data *hostdata, int error_code) 784 { 785 struct srp_event_struct *evt; 786 unsigned long flags; 787 788 spin_lock_irqsave(hostdata->host->host_lock, flags); 789 while (!list_empty(&hostdata->sent)) { 790 evt = list_first_entry(&hostdata->sent, struct srp_event_struct, list); 791 list_del(&evt->list); 792 timer_delete(&evt->timer); 793 794 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 795 if (evt->cmnd) { 796 evt->cmnd->result = (error_code << 16); 797 unmap_cmd_data(&evt->iu.srp.cmd, evt, 798 evt->hostdata->dev); 799 if (evt->cmnd_done) 800 evt->cmnd_done(evt->cmnd); 801 } else if (evt->done && evt->crq.format != VIOSRP_MAD_FORMAT && 802 evt->iu.srp.login_req.opcode != SRP_LOGIN_REQ) 803 evt->done(evt); 804 free_event_struct(&evt->hostdata->pool, evt); 805 spin_lock_irqsave(hostdata->host->host_lock, flags); 806 } 807 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 808 } 809 810 /** 811 * ibmvscsi_set_request_limit - Set the adapter request_limit in response to 812 * an adapter failure, reset, or SRP Login. Done under host lock to prevent 813 * race with SCSI command submission. 814 * @hostdata: adapter to adjust 815 * @limit: new request limit 816 */ 817 static void ibmvscsi_set_request_limit(struct ibmvscsi_host_data *hostdata, int limit) 818 { 819 unsigned long flags; 820 821 spin_lock_irqsave(hostdata->host->host_lock, flags); 822 atomic_set(&hostdata->request_limit, limit); 823 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 824 } 825 826 /** 827 * ibmvscsi_reset_host - Reset the connection to the server 828 * @hostdata: struct ibmvscsi_host_data to reset 829 */ 830 static void ibmvscsi_reset_host(struct ibmvscsi_host_data *hostdata) 831 { 832 scsi_block_requests(hostdata->host); 833 ibmvscsi_set_request_limit(hostdata, 0); 834 835 purge_requests(hostdata, DID_ERROR); 836 hostdata->action = IBMVSCSI_HOST_ACTION_RESET; 837 wake_up(&hostdata->work_wait_q); 838 } 839 840 /** 841 * ibmvscsi_timeout - Internal command timeout handler 842 * @t: struct srp_event_struct that timed out 843 * 844 * Called when an internally generated command times out 845 */ 846 static void ibmvscsi_timeout(struct timer_list *t) 847 { 848 struct srp_event_struct *evt_struct = timer_container_of(evt_struct, 849 t, timer); 850 struct ibmvscsi_host_data *hostdata = evt_struct->hostdata; 851 852 dev_err(hostdata->dev, "Command timed out (%x). Resetting connection\n", 853 evt_struct->iu.srp.cmd.opcode); 854 855 ibmvscsi_reset_host(hostdata); 856 } 857 858 859 /* ------------------------------------------------------------ 860 * Routines for sending and receiving SRPs 861 */ 862 /** 863 * ibmvscsi_send_srp_event: - Transforms event to u64 array and calls send_crq() 864 * @evt_struct: evt_struct to be sent 865 * @hostdata: ibmvscsi_host_data of host 866 * @timeout: timeout in seconds - 0 means do not time command 867 * 868 * Returns the value returned from ibmvscsi_send_crq(). (Zero for success) 869 * Note that this routine assumes that host_lock is held for synchronization 870 */ 871 static int ibmvscsi_send_srp_event(struct srp_event_struct *evt_struct, 872 struct ibmvscsi_host_data *hostdata, 873 unsigned long timeout) 874 { 875 __be64 *crq_as_u64 = (__be64 *)&evt_struct->crq; 876 int request_status = 0; 877 int rc; 878 int srp_req = 0; 879 880 /* If we have exhausted our request limit, just fail this request, 881 * unless it is for a reset or abort. 882 * Note that there are rare cases involving driver generated requests 883 * (such as task management requests) that the mid layer may think we 884 * can handle more requests (can_queue) when we actually can't 885 */ 886 if (evt_struct->crq.format == VIOSRP_SRP_FORMAT) { 887 srp_req = 1; 888 request_status = 889 atomic_dec_if_positive(&hostdata->request_limit); 890 /* If request limit was -1 when we started, it is now even 891 * less than that 892 */ 893 if (request_status < -1) 894 goto send_error; 895 /* Otherwise, we may have run out of requests. */ 896 /* If request limit was 0 when we started the adapter is in the 897 * process of performing a login with the server adapter, or 898 * we may have run out of requests. 899 */ 900 else if (request_status == -1 && 901 evt_struct->iu.srp.login_req.opcode != SRP_LOGIN_REQ) 902 goto send_busy; 903 /* Abort and reset calls should make it through. 904 * Nothing except abort and reset should use the last two 905 * slots unless we had two or less to begin with. 906 */ 907 else if (request_status < 2 && 908 evt_struct->iu.srp.cmd.opcode != SRP_TSK_MGMT) { 909 /* In the case that we have less than two requests 910 * available, check the server limit as a combination 911 * of the request limit and the number of requests 912 * in-flight (the size of the send list). If the 913 * server limit is greater than 2, return busy so 914 * that the last two are reserved for reset and abort. 915 */ 916 int server_limit = request_status; 917 struct srp_event_struct *tmp_evt; 918 919 list_for_each_entry(tmp_evt, &hostdata->sent, list) { 920 server_limit++; 921 } 922 923 if (server_limit > 2) 924 goto send_busy; 925 } 926 } 927 928 /* Copy the IU into the transfer area */ 929 *evt_struct->xfer_iu = evt_struct->iu; 930 evt_struct->xfer_iu->srp.rsp.tag = (u64)evt_struct; 931 932 /* Add this to the sent list. We need to do this 933 * before we actually send 934 * in case it comes back REALLY fast 935 */ 936 list_add_tail(&evt_struct->list, &hostdata->sent); 937 938 timer_setup(&evt_struct->timer, ibmvscsi_timeout, 0); 939 if (timeout) { 940 evt_struct->timer.expires = jiffies + (timeout * HZ); 941 add_timer(&evt_struct->timer); 942 } 943 944 rc = ibmvscsi_send_crq(hostdata, be64_to_cpu(crq_as_u64[0]), 945 be64_to_cpu(crq_as_u64[1])); 946 if (rc != 0) { 947 list_del(&evt_struct->list); 948 timer_delete(&evt_struct->timer); 949 950 /* If send_crq returns H_CLOSED, return SCSI_MLQUEUE_HOST_BUSY. 951 * Firmware will send a CRQ with a transport event (0xFF) to 952 * tell this client what has happened to the transport. This 953 * will be handled in ibmvscsi_handle_crq() 954 */ 955 if (rc == H_CLOSED) { 956 dev_warn(hostdata->dev, "send warning. " 957 "Receive queue closed, will retry.\n"); 958 goto send_busy; 959 } 960 dev_err(hostdata->dev, "send error %d\n", rc); 961 if (srp_req) 962 atomic_inc(&hostdata->request_limit); 963 goto send_error; 964 } 965 966 return 0; 967 968 send_busy: 969 unmap_cmd_data(&evt_struct->iu.srp.cmd, evt_struct, hostdata->dev); 970 971 free_event_struct(&hostdata->pool, evt_struct); 972 if (srp_req && request_status != -1) 973 atomic_inc(&hostdata->request_limit); 974 return SCSI_MLQUEUE_HOST_BUSY; 975 976 send_error: 977 unmap_cmd_data(&evt_struct->iu.srp.cmd, evt_struct, hostdata->dev); 978 979 if (evt_struct->cmnd != NULL) { 980 evt_struct->cmnd->result = DID_ERROR << 16; 981 evt_struct->cmnd_done(evt_struct->cmnd); 982 } else if (evt_struct->done) 983 evt_struct->done(evt_struct); 984 985 free_event_struct(&hostdata->pool, evt_struct); 986 return 0; 987 } 988 989 /** 990 * handle_cmd_rsp: - Handle responses from commands 991 * @evt_struct: srp_event_struct to be handled 992 * 993 * Used as a callback by when sending scsi cmds. 994 * Gets called by ibmvscsi_handle_crq() 995 */ 996 static void handle_cmd_rsp(struct srp_event_struct *evt_struct) 997 { 998 struct srp_rsp *rsp = &evt_struct->xfer_iu->srp.rsp; 999 struct scsi_cmnd *cmnd = evt_struct->cmnd; 1000 1001 if (unlikely(rsp->opcode != SRP_RSP)) { 1002 if (printk_ratelimit()) 1003 dev_warn(evt_struct->hostdata->dev, 1004 "bad SRP RSP type %#02x\n", rsp->opcode); 1005 } 1006 1007 if (cmnd) { 1008 cmnd->result |= rsp->status; 1009 if (scsi_status_is_check_condition(cmnd->result)) 1010 memcpy(cmnd->sense_buffer, 1011 rsp->data, 1012 be32_to_cpu(rsp->sense_data_len)); 1013 unmap_cmd_data(&evt_struct->iu.srp.cmd, 1014 evt_struct, 1015 evt_struct->hostdata->dev); 1016 1017 if (rsp->flags & SRP_RSP_FLAG_DOOVER) 1018 scsi_set_resid(cmnd, 1019 be32_to_cpu(rsp->data_out_res_cnt)); 1020 else if (rsp->flags & SRP_RSP_FLAG_DIOVER) 1021 scsi_set_resid(cmnd, be32_to_cpu(rsp->data_in_res_cnt)); 1022 } 1023 1024 if (evt_struct->cmnd_done) 1025 evt_struct->cmnd_done(cmnd); 1026 } 1027 1028 /** 1029 * lun_from_dev: - Returns the lun of the scsi device 1030 * @dev: struct scsi_device 1031 * 1032 */ 1033 static inline u16 lun_from_dev(struct scsi_device *dev) 1034 { 1035 return (0x2 << 14) | (dev->id << 8) | (dev->channel << 5) | dev->lun; 1036 } 1037 1038 /** 1039 * ibmvscsi_queuecommand_lck() - The queuecommand function of the scsi template 1040 * @cmnd: struct scsi_cmnd to be executed 1041 * @done: Callback function to be called when cmd is completed 1042 */ 1043 static int ibmvscsi_queuecommand_lck(struct scsi_cmnd *cmnd) 1044 { 1045 void (*done)(struct scsi_cmnd *) = scsi_done; 1046 struct srp_cmd *srp_cmd; 1047 struct srp_event_struct *evt_struct; 1048 struct srp_indirect_buf *indirect; 1049 struct ibmvscsi_host_data *hostdata = shost_priv(cmnd->device->host); 1050 u16 lun = lun_from_dev(cmnd->device); 1051 u8 out_fmt, in_fmt; 1052 1053 cmnd->result = (DID_OK << 16); 1054 evt_struct = get_event_struct(&hostdata->pool); 1055 if (!evt_struct) 1056 return SCSI_MLQUEUE_HOST_BUSY; 1057 1058 /* Set up the actual SRP IU */ 1059 BUILD_BUG_ON(sizeof(evt_struct->iu.srp) != SRP_MAX_IU_LEN); 1060 memset(&evt_struct->iu.srp, 0x00, sizeof(evt_struct->iu.srp)); 1061 srp_cmd = &evt_struct->iu.srp.cmd; 1062 srp_cmd->opcode = SRP_CMD; 1063 memcpy(srp_cmd->cdb, cmnd->cmnd, sizeof(srp_cmd->cdb)); 1064 int_to_scsilun(lun, &srp_cmd->lun); 1065 1066 if (!map_data_for_srp_cmd(cmnd, evt_struct, srp_cmd, hostdata->dev)) { 1067 if (!firmware_has_feature(FW_FEATURE_CMO)) 1068 sdev_printk(KERN_ERR, cmnd->device, 1069 "couldn't convert cmd to srp_cmd\n"); 1070 free_event_struct(&hostdata->pool, evt_struct); 1071 return SCSI_MLQUEUE_HOST_BUSY; 1072 } 1073 1074 init_event_struct(evt_struct, 1075 handle_cmd_rsp, 1076 VIOSRP_SRP_FORMAT, 1077 scsi_cmd_to_rq(cmnd)->timeout / HZ); 1078 1079 evt_struct->cmnd = cmnd; 1080 evt_struct->cmnd_done = done; 1081 1082 /* Fix up dma address of the buffer itself */ 1083 indirect = (struct srp_indirect_buf *) srp_cmd->add_data; 1084 out_fmt = srp_cmd->buf_fmt >> 4; 1085 in_fmt = srp_cmd->buf_fmt & ((1U << 4) - 1); 1086 if ((in_fmt == SRP_DATA_DESC_INDIRECT || 1087 out_fmt == SRP_DATA_DESC_INDIRECT) && 1088 indirect->table_desc.va == 0) { 1089 indirect->table_desc.va = 1090 cpu_to_be64(be64_to_cpu(evt_struct->crq.IU_data_ptr) + 1091 offsetof(struct srp_cmd, add_data) + 1092 offsetof(struct srp_indirect_buf, desc_list)); 1093 } 1094 1095 return ibmvscsi_send_srp_event(evt_struct, hostdata, 0); 1096 } 1097 1098 static DEF_SCSI_QCMD(ibmvscsi_queuecommand) 1099 1100 /* ------------------------------------------------------------ 1101 * Routines for driver initialization 1102 */ 1103 1104 /** 1105 * map_persist_bufs: - Pre-map persistent data for adapter logins 1106 * @hostdata: ibmvscsi_host_data of host 1107 * 1108 * Map the capabilities and adapter info DMA buffers to avoid runtime failures. 1109 * Return 1 on error, 0 on success. 1110 */ 1111 static int map_persist_bufs(struct ibmvscsi_host_data *hostdata) 1112 { 1113 1114 hostdata->caps_addr = dma_map_single(hostdata->dev, &hostdata->caps, 1115 sizeof(hostdata->caps), DMA_BIDIRECTIONAL); 1116 1117 if (dma_mapping_error(hostdata->dev, hostdata->caps_addr)) { 1118 dev_err(hostdata->dev, "Unable to map capabilities buffer!\n"); 1119 return 1; 1120 } 1121 1122 hostdata->adapter_info_addr = dma_map_single(hostdata->dev, 1123 &hostdata->madapter_info, 1124 sizeof(hostdata->madapter_info), 1125 DMA_BIDIRECTIONAL); 1126 if (dma_mapping_error(hostdata->dev, hostdata->adapter_info_addr)) { 1127 dev_err(hostdata->dev, "Unable to map adapter info buffer!\n"); 1128 dma_unmap_single(hostdata->dev, hostdata->caps_addr, 1129 sizeof(hostdata->caps), DMA_BIDIRECTIONAL); 1130 return 1; 1131 } 1132 1133 return 0; 1134 } 1135 1136 /** 1137 * unmap_persist_bufs: - Unmap persistent data needed for adapter logins 1138 * @hostdata: ibmvscsi_host_data of host 1139 * 1140 * Unmap the capabilities and adapter info DMA buffers 1141 */ 1142 static void unmap_persist_bufs(struct ibmvscsi_host_data *hostdata) 1143 { 1144 dma_unmap_single(hostdata->dev, hostdata->caps_addr, 1145 sizeof(hostdata->caps), DMA_BIDIRECTIONAL); 1146 1147 dma_unmap_single(hostdata->dev, hostdata->adapter_info_addr, 1148 sizeof(hostdata->madapter_info), DMA_BIDIRECTIONAL); 1149 } 1150 1151 /** 1152 * login_rsp: - Handle response to SRP login request 1153 * @evt_struct: srp_event_struct with the response 1154 * 1155 * Used as a "done" callback by when sending srp_login. Gets called 1156 * by ibmvscsi_handle_crq() 1157 */ 1158 static void login_rsp(struct srp_event_struct *evt_struct) 1159 { 1160 struct ibmvscsi_host_data *hostdata = evt_struct->hostdata; 1161 switch (evt_struct->xfer_iu->srp.login_rsp.opcode) { 1162 case SRP_LOGIN_RSP: /* it worked! */ 1163 break; 1164 case SRP_LOGIN_REJ: /* refused! */ 1165 dev_info(hostdata->dev, "SRP_LOGIN_REJ reason %u\n", 1166 evt_struct->xfer_iu->srp.login_rej.reason); 1167 /* Login failed. */ 1168 ibmvscsi_set_request_limit(hostdata, -1); 1169 return; 1170 default: 1171 dev_err(hostdata->dev, "Invalid login response typecode 0x%02x!\n", 1172 evt_struct->xfer_iu->srp.login_rsp.opcode); 1173 /* Login failed. */ 1174 ibmvscsi_set_request_limit(hostdata, -1); 1175 return; 1176 } 1177 1178 dev_info(hostdata->dev, "SRP_LOGIN succeeded\n"); 1179 hostdata->client_migrated = 0; 1180 1181 /* Now we know what the real request-limit is. 1182 * This value is set rather than added to request_limit because 1183 * request_limit could have been set to -1 by this client. 1184 */ 1185 ibmvscsi_set_request_limit(hostdata, 1186 be32_to_cpu(evt_struct->xfer_iu->srp.login_rsp.req_lim_delta)); 1187 1188 /* If we had any pending I/Os, kick them */ 1189 hostdata->action = IBMVSCSI_HOST_ACTION_UNBLOCK; 1190 wake_up(&hostdata->work_wait_q); 1191 } 1192 1193 /** 1194 * send_srp_login: - Sends the srp login 1195 * @hostdata: ibmvscsi_host_data of host 1196 * 1197 * Returns zero if successful. 1198 */ 1199 static int send_srp_login(struct ibmvscsi_host_data *hostdata) 1200 { 1201 int rc; 1202 unsigned long flags; 1203 struct srp_login_req *login; 1204 struct srp_event_struct *evt_struct = get_event_struct(&hostdata->pool); 1205 1206 BUG_ON(!evt_struct); 1207 init_event_struct(evt_struct, login_rsp, 1208 VIOSRP_SRP_FORMAT, login_timeout); 1209 1210 login = &evt_struct->iu.srp.login_req; 1211 memset(login, 0, sizeof(*login)); 1212 login->opcode = SRP_LOGIN_REQ; 1213 login->req_it_iu_len = cpu_to_be32(sizeof(union srp_iu)); 1214 login->req_buf_fmt = cpu_to_be16(SRP_BUF_FORMAT_DIRECT | 1215 SRP_BUF_FORMAT_INDIRECT); 1216 1217 /* Start out with a request limit of 0, since this is negotiated in 1218 * the login request we are just sending and login requests always 1219 * get sent by the driver regardless of request_limit. 1220 */ 1221 ibmvscsi_set_request_limit(hostdata, 0); 1222 1223 spin_lock_irqsave(hostdata->host->host_lock, flags); 1224 rc = ibmvscsi_send_srp_event(evt_struct, hostdata, login_timeout * 2); 1225 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 1226 dev_info(hostdata->dev, "sent SRP login\n"); 1227 return rc; 1228 }; 1229 1230 /** 1231 * capabilities_rsp: - Handle response to MAD adapter capabilities request 1232 * @evt_struct: srp_event_struct with the response 1233 * 1234 * Used as a "done" callback by when sending adapter_info. 1235 */ 1236 static void capabilities_rsp(struct srp_event_struct *evt_struct) 1237 { 1238 struct ibmvscsi_host_data *hostdata = evt_struct->hostdata; 1239 1240 if (evt_struct->xfer_iu->mad.capabilities.common.status) { 1241 dev_err(hostdata->dev, "error 0x%X getting capabilities info\n", 1242 evt_struct->xfer_iu->mad.capabilities.common.status); 1243 } else { 1244 if (hostdata->caps.migration.common.server_support != 1245 cpu_to_be16(SERVER_SUPPORTS_CAP)) 1246 dev_info(hostdata->dev, "Partition migration not supported\n"); 1247 1248 if (client_reserve) { 1249 if (hostdata->caps.reserve.common.server_support == 1250 cpu_to_be16(SERVER_SUPPORTS_CAP)) 1251 dev_info(hostdata->dev, "Client reserve enabled\n"); 1252 else 1253 dev_info(hostdata->dev, "Client reserve not supported\n"); 1254 } 1255 } 1256 1257 send_srp_login(hostdata); 1258 } 1259 1260 /** 1261 * send_mad_capabilities: - Sends the mad capabilities request 1262 * and stores the result so it can be retrieved with 1263 * @hostdata: ibmvscsi_host_data of host 1264 */ 1265 static void send_mad_capabilities(struct ibmvscsi_host_data *hostdata) 1266 { 1267 struct viosrp_capabilities *req; 1268 struct srp_event_struct *evt_struct; 1269 unsigned long flags; 1270 struct device_node *of_node = hostdata->dev->of_node; 1271 const char *location; 1272 1273 evt_struct = get_event_struct(&hostdata->pool); 1274 BUG_ON(!evt_struct); 1275 1276 init_event_struct(evt_struct, capabilities_rsp, 1277 VIOSRP_MAD_FORMAT, info_timeout); 1278 1279 req = &evt_struct->iu.mad.capabilities; 1280 memset(req, 0, sizeof(*req)); 1281 1282 hostdata->caps.flags = cpu_to_be32(CAP_LIST_SUPPORTED); 1283 if (hostdata->client_migrated) 1284 hostdata->caps.flags |= cpu_to_be32(CLIENT_MIGRATED); 1285 1286 strscpy(hostdata->caps.name, dev_name(&hostdata->host->shost_gendev), 1287 sizeof(hostdata->caps.name)); 1288 1289 location = of_get_property(of_node, "ibm,loc-code", NULL); 1290 location = location ? location : dev_name(hostdata->dev); 1291 strscpy(hostdata->caps.loc, location, sizeof(hostdata->caps.loc)); 1292 1293 req->common.type = cpu_to_be32(VIOSRP_CAPABILITIES_TYPE); 1294 req->buffer = cpu_to_be64(hostdata->caps_addr); 1295 1296 hostdata->caps.migration.common.cap_type = 1297 cpu_to_be32(MIGRATION_CAPABILITIES); 1298 hostdata->caps.migration.common.length = 1299 cpu_to_be16(sizeof(hostdata->caps.migration)); 1300 hostdata->caps.migration.common.server_support = 1301 cpu_to_be16(SERVER_SUPPORTS_CAP); 1302 hostdata->caps.migration.ecl = cpu_to_be32(1); 1303 1304 if (client_reserve) { 1305 hostdata->caps.reserve.common.cap_type = 1306 cpu_to_be32(RESERVATION_CAPABILITIES); 1307 hostdata->caps.reserve.common.length = 1308 cpu_to_be16(sizeof(hostdata->caps.reserve)); 1309 hostdata->caps.reserve.common.server_support = 1310 cpu_to_be16(SERVER_SUPPORTS_CAP); 1311 hostdata->caps.reserve.type = 1312 cpu_to_be32(CLIENT_RESERVE_SCSI_2); 1313 req->common.length = 1314 cpu_to_be16(sizeof(hostdata->caps)); 1315 } else 1316 req->common.length = cpu_to_be16(sizeof(hostdata->caps) - 1317 sizeof(hostdata->caps.reserve)); 1318 1319 spin_lock_irqsave(hostdata->host->host_lock, flags); 1320 if (ibmvscsi_send_srp_event(evt_struct, hostdata, info_timeout * 2)) 1321 dev_err(hostdata->dev, "couldn't send CAPABILITIES_REQ!\n"); 1322 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 1323 }; 1324 1325 /** 1326 * fast_fail_rsp: - Handle response to MAD enable fast fail 1327 * @evt_struct: srp_event_struct with the response 1328 * 1329 * Used as a "done" callback by when sending enable fast fail. Gets called 1330 * by ibmvscsi_handle_crq() 1331 */ 1332 static void fast_fail_rsp(struct srp_event_struct *evt_struct) 1333 { 1334 struct ibmvscsi_host_data *hostdata = evt_struct->hostdata; 1335 u16 status = be16_to_cpu(evt_struct->xfer_iu->mad.fast_fail.common.status); 1336 1337 if (status == VIOSRP_MAD_NOT_SUPPORTED) 1338 dev_err(hostdata->dev, "fast_fail not supported in server\n"); 1339 else if (status == VIOSRP_MAD_FAILED) 1340 dev_err(hostdata->dev, "fast_fail request failed\n"); 1341 else if (status != VIOSRP_MAD_SUCCESS) 1342 dev_err(hostdata->dev, "error 0x%X enabling fast_fail\n", status); 1343 1344 send_mad_capabilities(hostdata); 1345 } 1346 1347 /** 1348 * enable_fast_fail() - Start host initialization 1349 * @hostdata: ibmvscsi_host_data of host 1350 * 1351 * Returns zero if successful. 1352 */ 1353 static int enable_fast_fail(struct ibmvscsi_host_data *hostdata) 1354 { 1355 int rc; 1356 unsigned long flags; 1357 struct viosrp_fast_fail *fast_fail_mad; 1358 struct srp_event_struct *evt_struct; 1359 1360 if (!fast_fail) { 1361 send_mad_capabilities(hostdata); 1362 return 0; 1363 } 1364 1365 evt_struct = get_event_struct(&hostdata->pool); 1366 BUG_ON(!evt_struct); 1367 1368 init_event_struct(evt_struct, fast_fail_rsp, VIOSRP_MAD_FORMAT, info_timeout); 1369 1370 fast_fail_mad = &evt_struct->iu.mad.fast_fail; 1371 memset(fast_fail_mad, 0, sizeof(*fast_fail_mad)); 1372 fast_fail_mad->common.type = cpu_to_be32(VIOSRP_ENABLE_FAST_FAIL); 1373 fast_fail_mad->common.length = cpu_to_be16(sizeof(*fast_fail_mad)); 1374 1375 spin_lock_irqsave(hostdata->host->host_lock, flags); 1376 rc = ibmvscsi_send_srp_event(evt_struct, hostdata, info_timeout * 2); 1377 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 1378 return rc; 1379 } 1380 1381 /** 1382 * adapter_info_rsp: - Handle response to MAD adapter info request 1383 * @evt_struct: srp_event_struct with the response 1384 * 1385 * Used as a "done" callback by when sending adapter_info. Gets called 1386 * by ibmvscsi_handle_crq() 1387 */ 1388 static void adapter_info_rsp(struct srp_event_struct *evt_struct) 1389 { 1390 struct ibmvscsi_host_data *hostdata = evt_struct->hostdata; 1391 1392 if (evt_struct->xfer_iu->mad.adapter_info.common.status) { 1393 dev_err(hostdata->dev, "error %d getting adapter info\n", 1394 evt_struct->xfer_iu->mad.adapter_info.common.status); 1395 } else { 1396 dev_info(hostdata->dev, "host srp version: %s, " 1397 "host partition %s (%d), OS %d, max io %u\n", 1398 hostdata->madapter_info.srp_version, 1399 hostdata->madapter_info.partition_name, 1400 be32_to_cpu(hostdata->madapter_info.partition_number), 1401 be32_to_cpu(hostdata->madapter_info.os_type), 1402 be32_to_cpu(hostdata->madapter_info.port_max_txu[0])); 1403 1404 if (hostdata->madapter_info.port_max_txu[0]) 1405 hostdata->host->max_sectors = 1406 be32_to_cpu(hostdata->madapter_info.port_max_txu[0]) >> 9; 1407 1408 if (be32_to_cpu(hostdata->madapter_info.os_type) == SRP_MAD_OS_AIX && 1409 strcmp(hostdata->madapter_info.srp_version, "1.6a") <= 0) { 1410 dev_err(hostdata->dev, "host (Ver. %s) doesn't support large transfers\n", 1411 hostdata->madapter_info.srp_version); 1412 dev_err(hostdata->dev, "limiting scatterlists to %d\n", 1413 MAX_INDIRECT_BUFS); 1414 hostdata->host->sg_tablesize = MAX_INDIRECT_BUFS; 1415 } 1416 1417 if (be32_to_cpu(hostdata->madapter_info.os_type) == SRP_MAD_OS_AIX) { 1418 enable_fast_fail(hostdata); 1419 return; 1420 } 1421 } 1422 1423 send_srp_login(hostdata); 1424 } 1425 1426 /** 1427 * send_mad_adapter_info: - Sends the mad adapter info request 1428 * and stores the result so it can be retrieved with 1429 * sysfs. We COULD consider causing a failure if the 1430 * returned SRP version doesn't match ours. 1431 * @hostdata: ibmvscsi_host_data of host 1432 * 1433 * Returns zero if successful. 1434 */ 1435 static void send_mad_adapter_info(struct ibmvscsi_host_data *hostdata) 1436 { 1437 struct viosrp_adapter_info *req; 1438 struct srp_event_struct *evt_struct; 1439 unsigned long flags; 1440 1441 evt_struct = get_event_struct(&hostdata->pool); 1442 BUG_ON(!evt_struct); 1443 1444 init_event_struct(evt_struct, 1445 adapter_info_rsp, 1446 VIOSRP_MAD_FORMAT, 1447 info_timeout); 1448 1449 req = &evt_struct->iu.mad.adapter_info; 1450 memset(req, 0x00, sizeof(*req)); 1451 1452 req->common.type = cpu_to_be32(VIOSRP_ADAPTER_INFO_TYPE); 1453 req->common.length = cpu_to_be16(sizeof(hostdata->madapter_info)); 1454 req->buffer = cpu_to_be64(hostdata->adapter_info_addr); 1455 1456 spin_lock_irqsave(hostdata->host->host_lock, flags); 1457 if (ibmvscsi_send_srp_event(evt_struct, hostdata, info_timeout * 2)) 1458 dev_err(hostdata->dev, "couldn't send ADAPTER_INFO_REQ!\n"); 1459 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 1460 }; 1461 1462 /* 1463 * init_adapter() - Start virtual adapter initialization sequence 1464 */ 1465 static void init_adapter(struct ibmvscsi_host_data *hostdata) 1466 { 1467 send_mad_adapter_info(hostdata); 1468 } 1469 1470 /* 1471 * sync_completion: Signal that a synchronous command has completed 1472 * Note that after returning from this call, the evt_struct is freed. 1473 * the caller waiting on this completion shouldn't touch the evt_struct 1474 * again. 1475 */ 1476 static void sync_completion(struct srp_event_struct *evt_struct) 1477 { 1478 /* copy the response back */ 1479 if (evt_struct->sync_srp) 1480 *evt_struct->sync_srp = *evt_struct->xfer_iu; 1481 1482 complete(&evt_struct->comp); 1483 } 1484 1485 /* 1486 * ibmvscsi_eh_abort_handler: Abort a command...from scsi host template 1487 * send this over to the server and wait synchronously for the response 1488 */ 1489 static int ibmvscsi_eh_abort_handler(struct scsi_cmnd *cmd) 1490 { 1491 struct ibmvscsi_host_data *hostdata = shost_priv(cmd->device->host); 1492 struct srp_tsk_mgmt *tsk_mgmt; 1493 struct srp_event_struct *evt; 1494 struct srp_event_struct *tmp_evt, *found_evt; 1495 union viosrp_iu srp_rsp; 1496 int rsp_rc; 1497 unsigned long flags; 1498 u16 lun = lun_from_dev(cmd->device); 1499 unsigned long wait_switch = 0; 1500 1501 /* First, find this command in our sent list so we can figure 1502 * out the correct tag 1503 */ 1504 spin_lock_irqsave(hostdata->host->host_lock, flags); 1505 wait_switch = jiffies + (init_timeout * HZ); 1506 do { 1507 found_evt = NULL; 1508 list_for_each_entry(tmp_evt, &hostdata->sent, list) { 1509 if (tmp_evt->cmnd == cmd) { 1510 found_evt = tmp_evt; 1511 break; 1512 } 1513 } 1514 1515 if (!found_evt) { 1516 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 1517 return SUCCESS; 1518 } 1519 1520 evt = get_event_struct(&hostdata->pool); 1521 if (evt == NULL) { 1522 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 1523 sdev_printk(KERN_ERR, cmd->device, 1524 "failed to allocate abort event\n"); 1525 return FAILED; 1526 } 1527 1528 init_event_struct(evt, 1529 sync_completion, 1530 VIOSRP_SRP_FORMAT, 1531 abort_timeout); 1532 1533 tsk_mgmt = &evt->iu.srp.tsk_mgmt; 1534 1535 /* Set up an abort SRP command */ 1536 memset(tsk_mgmt, 0x00, sizeof(*tsk_mgmt)); 1537 tsk_mgmt->opcode = SRP_TSK_MGMT; 1538 int_to_scsilun(lun, &tsk_mgmt->lun); 1539 tsk_mgmt->tsk_mgmt_func = SRP_TSK_ABORT_TASK; 1540 tsk_mgmt->task_tag = (u64) found_evt; 1541 1542 evt->sync_srp = &srp_rsp; 1543 1544 init_completion(&evt->comp); 1545 rsp_rc = ibmvscsi_send_srp_event(evt, hostdata, abort_timeout * 2); 1546 1547 if (rsp_rc != SCSI_MLQUEUE_HOST_BUSY) 1548 break; 1549 1550 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 1551 msleep(10); 1552 spin_lock_irqsave(hostdata->host->host_lock, flags); 1553 } while (time_before(jiffies, wait_switch)); 1554 1555 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 1556 1557 if (rsp_rc != 0) { 1558 sdev_printk(KERN_ERR, cmd->device, 1559 "failed to send abort() event. rc=%d\n", rsp_rc); 1560 return FAILED; 1561 } 1562 1563 sdev_printk(KERN_INFO, cmd->device, 1564 "aborting command. lun 0x%llx, tag 0x%llx\n", 1565 (((u64) lun) << 48), (u64) found_evt); 1566 1567 wait_for_completion(&evt->comp); 1568 1569 /* make sure we got a good response */ 1570 if (unlikely(srp_rsp.srp.rsp.opcode != SRP_RSP)) { 1571 if (printk_ratelimit()) 1572 sdev_printk(KERN_WARNING, cmd->device, "abort bad SRP RSP type %d\n", 1573 srp_rsp.srp.rsp.opcode); 1574 return FAILED; 1575 } 1576 1577 if (srp_rsp.srp.rsp.flags & SRP_RSP_FLAG_RSPVALID) 1578 rsp_rc = *((int *)srp_rsp.srp.rsp.data); 1579 else 1580 rsp_rc = srp_rsp.srp.rsp.status; 1581 1582 if (rsp_rc) { 1583 if (printk_ratelimit()) 1584 sdev_printk(KERN_WARNING, cmd->device, 1585 "abort code %d for task tag 0x%llx\n", 1586 rsp_rc, tsk_mgmt->task_tag); 1587 return FAILED; 1588 } 1589 1590 /* Because we dropped the spinlock above, it's possible 1591 * The event is no longer in our list. Make sure it didn't 1592 * complete while we were aborting 1593 */ 1594 spin_lock_irqsave(hostdata->host->host_lock, flags); 1595 found_evt = NULL; 1596 list_for_each_entry(tmp_evt, &hostdata->sent, list) { 1597 if (tmp_evt->cmnd == cmd) { 1598 found_evt = tmp_evt; 1599 break; 1600 } 1601 } 1602 1603 if (found_evt == NULL) { 1604 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 1605 sdev_printk(KERN_INFO, cmd->device, "aborted task tag 0x%llx completed\n", 1606 tsk_mgmt->task_tag); 1607 return SUCCESS; 1608 } 1609 1610 sdev_printk(KERN_INFO, cmd->device, "successfully aborted task tag 0x%llx\n", 1611 tsk_mgmt->task_tag); 1612 1613 cmd->result = (DID_ABORT << 16); 1614 list_del(&found_evt->list); 1615 unmap_cmd_data(&found_evt->iu.srp.cmd, found_evt, 1616 found_evt->hostdata->dev); 1617 free_event_struct(&found_evt->hostdata->pool, found_evt); 1618 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 1619 atomic_inc(&hostdata->request_limit); 1620 return SUCCESS; 1621 } 1622 1623 /* 1624 * ibmvscsi_eh_device_reset_handler: Reset a single LUN...from scsi host 1625 * template send this over to the server and wait synchronously for the 1626 * response 1627 */ 1628 static int ibmvscsi_eh_device_reset_handler(struct scsi_cmnd *cmd) 1629 { 1630 struct ibmvscsi_host_data *hostdata = shost_priv(cmd->device->host); 1631 struct srp_tsk_mgmt *tsk_mgmt; 1632 struct srp_event_struct *evt; 1633 struct srp_event_struct *tmp_evt, *pos; 1634 union viosrp_iu srp_rsp; 1635 int rsp_rc; 1636 unsigned long flags; 1637 u16 lun = lun_from_dev(cmd->device); 1638 unsigned long wait_switch = 0; 1639 1640 spin_lock_irqsave(hostdata->host->host_lock, flags); 1641 wait_switch = jiffies + (init_timeout * HZ); 1642 do { 1643 evt = get_event_struct(&hostdata->pool); 1644 if (evt == NULL) { 1645 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 1646 sdev_printk(KERN_ERR, cmd->device, 1647 "failed to allocate reset event\n"); 1648 return FAILED; 1649 } 1650 1651 init_event_struct(evt, 1652 sync_completion, 1653 VIOSRP_SRP_FORMAT, 1654 reset_timeout); 1655 1656 tsk_mgmt = &evt->iu.srp.tsk_mgmt; 1657 1658 /* Set up a lun reset SRP command */ 1659 memset(tsk_mgmt, 0x00, sizeof(*tsk_mgmt)); 1660 tsk_mgmt->opcode = SRP_TSK_MGMT; 1661 int_to_scsilun(lun, &tsk_mgmt->lun); 1662 tsk_mgmt->tsk_mgmt_func = SRP_TSK_LUN_RESET; 1663 1664 evt->sync_srp = &srp_rsp; 1665 1666 init_completion(&evt->comp); 1667 rsp_rc = ibmvscsi_send_srp_event(evt, hostdata, reset_timeout * 2); 1668 1669 if (rsp_rc != SCSI_MLQUEUE_HOST_BUSY) 1670 break; 1671 1672 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 1673 msleep(10); 1674 spin_lock_irqsave(hostdata->host->host_lock, flags); 1675 } while (time_before(jiffies, wait_switch)); 1676 1677 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 1678 1679 if (rsp_rc != 0) { 1680 sdev_printk(KERN_ERR, cmd->device, 1681 "failed to send reset event. rc=%d\n", rsp_rc); 1682 return FAILED; 1683 } 1684 1685 sdev_printk(KERN_INFO, cmd->device, "resetting device. lun 0x%llx\n", 1686 (((u64) lun) << 48)); 1687 1688 wait_for_completion(&evt->comp); 1689 1690 /* make sure we got a good response */ 1691 if (unlikely(srp_rsp.srp.rsp.opcode != SRP_RSP)) { 1692 if (printk_ratelimit()) 1693 sdev_printk(KERN_WARNING, cmd->device, "reset bad SRP RSP type %d\n", 1694 srp_rsp.srp.rsp.opcode); 1695 return FAILED; 1696 } 1697 1698 if (srp_rsp.srp.rsp.flags & SRP_RSP_FLAG_RSPVALID) 1699 rsp_rc = *((int *)srp_rsp.srp.rsp.data); 1700 else 1701 rsp_rc = srp_rsp.srp.rsp.status; 1702 1703 if (rsp_rc) { 1704 if (printk_ratelimit()) 1705 sdev_printk(KERN_WARNING, cmd->device, 1706 "reset code %d for task tag 0x%llx\n", 1707 rsp_rc, tsk_mgmt->task_tag); 1708 return FAILED; 1709 } 1710 1711 /* We need to find all commands for this LUN that have not yet been 1712 * responded to, and fail them with DID_RESET 1713 */ 1714 spin_lock_irqsave(hostdata->host->host_lock, flags); 1715 list_for_each_entry_safe(tmp_evt, pos, &hostdata->sent, list) { 1716 if ((tmp_evt->cmnd) && (tmp_evt->cmnd->device == cmd->device)) { 1717 if (tmp_evt->cmnd) 1718 tmp_evt->cmnd->result = (DID_RESET << 16); 1719 list_del(&tmp_evt->list); 1720 unmap_cmd_data(&tmp_evt->iu.srp.cmd, tmp_evt, 1721 tmp_evt->hostdata->dev); 1722 free_event_struct(&tmp_evt->hostdata->pool, 1723 tmp_evt); 1724 atomic_inc(&hostdata->request_limit); 1725 if (tmp_evt->cmnd_done) 1726 tmp_evt->cmnd_done(tmp_evt->cmnd); 1727 else if (tmp_evt->done) 1728 tmp_evt->done(tmp_evt); 1729 } 1730 } 1731 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 1732 return SUCCESS; 1733 } 1734 1735 /** 1736 * ibmvscsi_eh_host_reset_handler - Reset the connection to the server 1737 * @cmd: struct scsi_cmnd having problems 1738 */ 1739 static int ibmvscsi_eh_host_reset_handler(struct scsi_cmnd *cmd) 1740 { 1741 unsigned long wait_switch = 0; 1742 struct ibmvscsi_host_data *hostdata = shost_priv(cmd->device->host); 1743 1744 dev_err(hostdata->dev, "Resetting connection due to error recovery\n"); 1745 1746 ibmvscsi_reset_host(hostdata); 1747 1748 for (wait_switch = jiffies + (init_timeout * HZ); 1749 time_before(jiffies, wait_switch) && 1750 atomic_read(&hostdata->request_limit) < 2;) { 1751 1752 msleep(10); 1753 } 1754 1755 if (atomic_read(&hostdata->request_limit) <= 0) 1756 return FAILED; 1757 1758 return SUCCESS; 1759 } 1760 1761 /** 1762 * ibmvscsi_handle_crq: - Handles and frees received events in the CRQ 1763 * @crq: Command/Response queue 1764 * @hostdata: ibmvscsi_host_data of host 1765 * 1766 */ 1767 static void ibmvscsi_handle_crq(struct viosrp_crq *crq, 1768 struct ibmvscsi_host_data *hostdata) 1769 { 1770 long rc; 1771 unsigned long flags; 1772 /* The hypervisor copies our tag value here so no byteswapping */ 1773 struct srp_event_struct *evt_struct = 1774 (__force struct srp_event_struct *)crq->IU_data_ptr; 1775 switch (crq->valid) { 1776 case VIOSRP_CRQ_INIT_RSP: /* initialization */ 1777 switch (crq->format) { 1778 case VIOSRP_CRQ_INIT: /* Initialization message */ 1779 dev_info(hostdata->dev, "partner initialized\n"); 1780 /* Send back a response */ 1781 rc = ibmvscsi_send_crq(hostdata, 0xC002000000000000LL, 0); 1782 if (rc == 0) { 1783 /* Now login */ 1784 init_adapter(hostdata); 1785 } else { 1786 dev_err(hostdata->dev, "Unable to send init rsp. rc=%ld\n", rc); 1787 } 1788 1789 break; 1790 case VIOSRP_CRQ_INIT_COMPLETE: /* Initialization response */ 1791 dev_info(hostdata->dev, "partner initialization complete\n"); 1792 1793 /* Now login */ 1794 init_adapter(hostdata); 1795 break; 1796 default: 1797 dev_err(hostdata->dev, "unknown crq message type: %d\n", crq->format); 1798 } 1799 return; 1800 case VIOSRP_CRQ_XPORT_EVENT: /* Hypervisor telling us the connection is closed */ 1801 scsi_block_requests(hostdata->host); 1802 ibmvscsi_set_request_limit(hostdata, 0); 1803 if (crq->format == 0x06) { 1804 /* We need to re-setup the interpartition connection */ 1805 dev_info(hostdata->dev, "Re-enabling adapter!\n"); 1806 hostdata->client_migrated = 1; 1807 hostdata->action = IBMVSCSI_HOST_ACTION_REENABLE; 1808 purge_requests(hostdata, DID_REQUEUE); 1809 wake_up(&hostdata->work_wait_q); 1810 } else { 1811 dev_err(hostdata->dev, "Virtual adapter failed rc %d!\n", 1812 crq->format); 1813 ibmvscsi_reset_host(hostdata); 1814 } 1815 return; 1816 case VIOSRP_CRQ_CMD_RSP: /* real payload */ 1817 break; 1818 default: 1819 dev_err(hostdata->dev, "got an invalid message type 0x%02x\n", 1820 crq->valid); 1821 return; 1822 } 1823 1824 /* The only kind of payload CRQs we should get are responses to 1825 * things we send. Make sure this response is to something we 1826 * actually sent 1827 */ 1828 if (!valid_event_struct(&hostdata->pool, evt_struct)) { 1829 dev_err(hostdata->dev, "returned correlation_token 0x%p is invalid!\n", 1830 evt_struct); 1831 return; 1832 } 1833 1834 if (atomic_read(&evt_struct->free)) { 1835 dev_err(hostdata->dev, "received duplicate correlation_token 0x%p!\n", 1836 evt_struct); 1837 return; 1838 } 1839 1840 if (crq->format == VIOSRP_SRP_FORMAT) 1841 atomic_add(be32_to_cpu(evt_struct->xfer_iu->srp.rsp.req_lim_delta), 1842 &hostdata->request_limit); 1843 1844 timer_delete(&evt_struct->timer); 1845 1846 if ((crq->status != VIOSRP_OK && crq->status != VIOSRP_OK2) && evt_struct->cmnd) 1847 evt_struct->cmnd->result = DID_ERROR << 16; 1848 if (evt_struct->done) 1849 evt_struct->done(evt_struct); 1850 else 1851 dev_err(hostdata->dev, "returned done() is NULL; not running it!\n"); 1852 1853 /* 1854 * Lock the host_lock before messing with these structures, since we 1855 * are running in a task context 1856 */ 1857 spin_lock_irqsave(evt_struct->hostdata->host->host_lock, flags); 1858 list_del(&evt_struct->list); 1859 free_event_struct(&evt_struct->hostdata->pool, evt_struct); 1860 spin_unlock_irqrestore(evt_struct->hostdata->host->host_lock, flags); 1861 } 1862 1863 /** 1864 * ibmvscsi_sdev_configure: Set the "allow_restart" flag for each disk. 1865 * @sdev: struct scsi_device device to configure 1866 * @lim: Request queue limits 1867 * 1868 * Enable allow_restart for a device if it is a disk. Adjust the 1869 * queue_depth here also as is required by the documentation for 1870 * struct scsi_host_template. 1871 */ 1872 static int ibmvscsi_sdev_configure(struct scsi_device *sdev, 1873 struct queue_limits *lim) 1874 { 1875 struct Scsi_Host *shost = sdev->host; 1876 unsigned long lock_flags = 0; 1877 1878 spin_lock_irqsave(shost->host_lock, lock_flags); 1879 if (sdev->type == TYPE_DISK) { 1880 sdev->allow_restart = 1; 1881 blk_queue_rq_timeout(sdev->request_queue, 120 * HZ); 1882 } 1883 spin_unlock_irqrestore(shost->host_lock, lock_flags); 1884 return 0; 1885 } 1886 1887 /** 1888 * ibmvscsi_change_queue_depth - Change the device's queue depth 1889 * @sdev: scsi device struct 1890 * @qdepth: depth to set 1891 * 1892 * Return value: 1893 * actual depth set 1894 **/ 1895 static int ibmvscsi_change_queue_depth(struct scsi_device *sdev, int qdepth) 1896 { 1897 if (qdepth > IBMVSCSI_MAX_CMDS_PER_LUN) 1898 qdepth = IBMVSCSI_MAX_CMDS_PER_LUN; 1899 return scsi_change_queue_depth(sdev, qdepth); 1900 } 1901 1902 /* ------------------------------------------------------------ 1903 * sysfs attributes 1904 */ 1905 static ssize_t show_host_vhost_loc(struct device *dev, 1906 struct device_attribute *attr, char *buf) 1907 { 1908 struct Scsi_Host *shost = class_to_shost(dev); 1909 struct ibmvscsi_host_data *hostdata = shost_priv(shost); 1910 int len; 1911 1912 len = snprintf(buf, sizeof(hostdata->caps.loc), "%s\n", 1913 hostdata->caps.loc); 1914 return len; 1915 } 1916 1917 static struct device_attribute ibmvscsi_host_vhost_loc = { 1918 .attr = { 1919 .name = "vhost_loc", 1920 .mode = S_IRUGO, 1921 }, 1922 .show = show_host_vhost_loc, 1923 }; 1924 1925 static ssize_t show_host_vhost_name(struct device *dev, 1926 struct device_attribute *attr, char *buf) 1927 { 1928 struct Scsi_Host *shost = class_to_shost(dev); 1929 struct ibmvscsi_host_data *hostdata = shost_priv(shost); 1930 int len; 1931 1932 len = snprintf(buf, sizeof(hostdata->caps.name), "%s\n", 1933 hostdata->caps.name); 1934 return len; 1935 } 1936 1937 static struct device_attribute ibmvscsi_host_vhost_name = { 1938 .attr = { 1939 .name = "vhost_name", 1940 .mode = S_IRUGO, 1941 }, 1942 .show = show_host_vhost_name, 1943 }; 1944 1945 static ssize_t show_host_srp_version(struct device *dev, 1946 struct device_attribute *attr, char *buf) 1947 { 1948 struct Scsi_Host *shost = class_to_shost(dev); 1949 struct ibmvscsi_host_data *hostdata = shost_priv(shost); 1950 int len; 1951 1952 len = snprintf(buf, PAGE_SIZE, "%s\n", 1953 hostdata->madapter_info.srp_version); 1954 return len; 1955 } 1956 1957 static struct device_attribute ibmvscsi_host_srp_version = { 1958 .attr = { 1959 .name = "srp_version", 1960 .mode = S_IRUGO, 1961 }, 1962 .show = show_host_srp_version, 1963 }; 1964 1965 static ssize_t show_host_partition_name(struct device *dev, 1966 struct device_attribute *attr, 1967 char *buf) 1968 { 1969 struct Scsi_Host *shost = class_to_shost(dev); 1970 struct ibmvscsi_host_data *hostdata = shost_priv(shost); 1971 int len; 1972 1973 len = snprintf(buf, PAGE_SIZE, "%s\n", 1974 hostdata->madapter_info.partition_name); 1975 return len; 1976 } 1977 1978 static struct device_attribute ibmvscsi_host_partition_name = { 1979 .attr = { 1980 .name = "partition_name", 1981 .mode = S_IRUGO, 1982 }, 1983 .show = show_host_partition_name, 1984 }; 1985 1986 static ssize_t show_host_partition_number(struct device *dev, 1987 struct device_attribute *attr, 1988 char *buf) 1989 { 1990 struct Scsi_Host *shost = class_to_shost(dev); 1991 struct ibmvscsi_host_data *hostdata = shost_priv(shost); 1992 int len; 1993 1994 len = snprintf(buf, PAGE_SIZE, "%d\n", 1995 be32_to_cpu(hostdata->madapter_info.partition_number)); 1996 return len; 1997 } 1998 1999 static struct device_attribute ibmvscsi_host_partition_number = { 2000 .attr = { 2001 .name = "partition_number", 2002 .mode = S_IRUGO, 2003 }, 2004 .show = show_host_partition_number, 2005 }; 2006 2007 static ssize_t show_host_mad_version(struct device *dev, 2008 struct device_attribute *attr, char *buf) 2009 { 2010 struct Scsi_Host *shost = class_to_shost(dev); 2011 struct ibmvscsi_host_data *hostdata = shost_priv(shost); 2012 int len; 2013 2014 len = snprintf(buf, PAGE_SIZE, "%d\n", 2015 be32_to_cpu(hostdata->madapter_info.mad_version)); 2016 return len; 2017 } 2018 2019 static struct device_attribute ibmvscsi_host_mad_version = { 2020 .attr = { 2021 .name = "mad_version", 2022 .mode = S_IRUGO, 2023 }, 2024 .show = show_host_mad_version, 2025 }; 2026 2027 static ssize_t show_host_os_type(struct device *dev, 2028 struct device_attribute *attr, char *buf) 2029 { 2030 struct Scsi_Host *shost = class_to_shost(dev); 2031 struct ibmvscsi_host_data *hostdata = shost_priv(shost); 2032 int len; 2033 2034 len = snprintf(buf, PAGE_SIZE, "%d\n", 2035 be32_to_cpu(hostdata->madapter_info.os_type)); 2036 return len; 2037 } 2038 2039 static struct device_attribute ibmvscsi_host_os_type = { 2040 .attr = { 2041 .name = "os_type", 2042 .mode = S_IRUGO, 2043 }, 2044 .show = show_host_os_type, 2045 }; 2046 2047 static ssize_t show_host_config(struct device *dev, 2048 struct device_attribute *attr, char *buf) 2049 { 2050 return 0; 2051 } 2052 2053 static struct device_attribute ibmvscsi_host_config = { 2054 .attr = { 2055 .name = "config", 2056 .mode = S_IRUGO, 2057 }, 2058 .show = show_host_config, 2059 }; 2060 2061 static int ibmvscsi_host_reset(struct Scsi_Host *shost, int reset_type) 2062 { 2063 struct ibmvscsi_host_data *hostdata = shost_priv(shost); 2064 2065 dev_info(hostdata->dev, "Initiating adapter reset!\n"); 2066 ibmvscsi_reset_host(hostdata); 2067 2068 return 0; 2069 } 2070 2071 static struct attribute *ibmvscsi_host_attrs[] = { 2072 &ibmvscsi_host_vhost_loc.attr, 2073 &ibmvscsi_host_vhost_name.attr, 2074 &ibmvscsi_host_srp_version.attr, 2075 &ibmvscsi_host_partition_name.attr, 2076 &ibmvscsi_host_partition_number.attr, 2077 &ibmvscsi_host_mad_version.attr, 2078 &ibmvscsi_host_os_type.attr, 2079 &ibmvscsi_host_config.attr, 2080 NULL 2081 }; 2082 2083 ATTRIBUTE_GROUPS(ibmvscsi_host); 2084 2085 /* ------------------------------------------------------------ 2086 * SCSI driver registration 2087 */ 2088 static struct scsi_host_template driver_template = { 2089 .module = THIS_MODULE, 2090 .name = "IBM POWER Virtual SCSI Adapter " IBMVSCSI_VERSION, 2091 .proc_name = "ibmvscsi", 2092 .queuecommand = ibmvscsi_queuecommand, 2093 .eh_timed_out = srp_timed_out, 2094 .eh_abort_handler = ibmvscsi_eh_abort_handler, 2095 .eh_device_reset_handler = ibmvscsi_eh_device_reset_handler, 2096 .eh_host_reset_handler = ibmvscsi_eh_host_reset_handler, 2097 .sdev_configure = ibmvscsi_sdev_configure, 2098 .change_queue_depth = ibmvscsi_change_queue_depth, 2099 .host_reset = ibmvscsi_host_reset, 2100 .cmd_per_lun = IBMVSCSI_CMDS_PER_LUN_DEFAULT, 2101 .can_queue = IBMVSCSI_MAX_REQUESTS_DEFAULT, 2102 .this_id = -1, 2103 .sg_tablesize = SG_ALL, 2104 .shost_groups = ibmvscsi_host_groups, 2105 }; 2106 2107 /** 2108 * ibmvscsi_get_desired_dma - Calculate IO memory desired by the driver 2109 * 2110 * @vdev: struct vio_dev for the device whose desired IO mem is to be returned 2111 * 2112 * Return value: 2113 * Number of bytes of IO data the driver will need to perform well. 2114 */ 2115 static unsigned long ibmvscsi_get_desired_dma(struct vio_dev *vdev) 2116 { 2117 /* iu_storage data allocated in initialize_event_pool */ 2118 unsigned long desired_io = max_events * sizeof(union viosrp_iu); 2119 2120 /* add io space for sg data */ 2121 desired_io += (IBMVSCSI_MAX_SECTORS_DEFAULT * 512 * 2122 IBMVSCSI_CMDS_PER_LUN_DEFAULT); 2123 2124 return desired_io; 2125 } 2126 2127 static void ibmvscsi_do_work(struct ibmvscsi_host_data *hostdata) 2128 { 2129 unsigned long flags; 2130 int rc; 2131 char *action = "reset"; 2132 2133 spin_lock_irqsave(hostdata->host->host_lock, flags); 2134 switch (hostdata->action) { 2135 case IBMVSCSI_HOST_ACTION_UNBLOCK: 2136 rc = 0; 2137 break; 2138 case IBMVSCSI_HOST_ACTION_RESET: 2139 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 2140 rc = ibmvscsi_reset_crq_queue(&hostdata->queue, hostdata); 2141 spin_lock_irqsave(hostdata->host->host_lock, flags); 2142 if (!rc) 2143 rc = ibmvscsi_send_crq(hostdata, 0xC001000000000000LL, 0); 2144 vio_enable_interrupts(to_vio_dev(hostdata->dev)); 2145 break; 2146 case IBMVSCSI_HOST_ACTION_REENABLE: 2147 action = "enable"; 2148 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 2149 rc = ibmvscsi_reenable_crq_queue(&hostdata->queue, hostdata); 2150 spin_lock_irqsave(hostdata->host->host_lock, flags); 2151 if (!rc) 2152 rc = ibmvscsi_send_crq(hostdata, 0xC001000000000000LL, 0); 2153 break; 2154 case IBMVSCSI_HOST_ACTION_NONE: 2155 default: 2156 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 2157 return; 2158 } 2159 2160 hostdata->action = IBMVSCSI_HOST_ACTION_NONE; 2161 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 2162 2163 if (rc) { 2164 ibmvscsi_set_request_limit(hostdata, -1); 2165 dev_err(hostdata->dev, "error after %s\n", action); 2166 } 2167 2168 scsi_unblock_requests(hostdata->host); 2169 } 2170 2171 static int __ibmvscsi_work_to_do(struct ibmvscsi_host_data *hostdata) 2172 { 2173 if (kthread_should_stop()) 2174 return 1; 2175 switch (hostdata->action) { 2176 case IBMVSCSI_HOST_ACTION_NONE: 2177 return 0; 2178 case IBMVSCSI_HOST_ACTION_RESET: 2179 case IBMVSCSI_HOST_ACTION_REENABLE: 2180 case IBMVSCSI_HOST_ACTION_UNBLOCK: 2181 default: 2182 break; 2183 } 2184 2185 return 1; 2186 } 2187 2188 static int ibmvscsi_work_to_do(struct ibmvscsi_host_data *hostdata) 2189 { 2190 unsigned long flags; 2191 int rc; 2192 2193 spin_lock_irqsave(hostdata->host->host_lock, flags); 2194 rc = __ibmvscsi_work_to_do(hostdata); 2195 spin_unlock_irqrestore(hostdata->host->host_lock, flags); 2196 2197 return rc; 2198 } 2199 2200 static int ibmvscsi_work(void *data) 2201 { 2202 struct ibmvscsi_host_data *hostdata = data; 2203 int rc; 2204 2205 set_user_nice(current, MIN_NICE); 2206 2207 while (1) { 2208 rc = wait_event_interruptible(hostdata->work_wait_q, 2209 ibmvscsi_work_to_do(hostdata)); 2210 2211 BUG_ON(rc); 2212 2213 if (kthread_should_stop()) 2214 break; 2215 2216 ibmvscsi_do_work(hostdata); 2217 } 2218 2219 return 0; 2220 } 2221 2222 /* 2223 * Called by bus code for each adapter 2224 */ 2225 static int ibmvscsi_probe(struct vio_dev *vdev, const struct vio_device_id *id) 2226 { 2227 struct ibmvscsi_host_data *hostdata; 2228 struct Scsi_Host *host; 2229 struct device *dev = &vdev->dev; 2230 struct srp_rport_identifiers ids; 2231 struct srp_rport *rport; 2232 unsigned long wait_switch = 0; 2233 int rc; 2234 2235 dev_set_drvdata(&vdev->dev, NULL); 2236 2237 host = scsi_host_alloc(&driver_template, sizeof(*hostdata)); 2238 if (!host) { 2239 dev_err(&vdev->dev, "couldn't allocate host data\n"); 2240 goto scsi_host_alloc_failed; 2241 } 2242 2243 host->transportt = ibmvscsi_transport_template; 2244 hostdata = shost_priv(host); 2245 memset(hostdata, 0x00, sizeof(*hostdata)); 2246 INIT_LIST_HEAD(&hostdata->sent); 2247 init_waitqueue_head(&hostdata->work_wait_q); 2248 hostdata->host = host; 2249 hostdata->dev = dev; 2250 ibmvscsi_set_request_limit(hostdata, -1); 2251 hostdata->host->max_sectors = IBMVSCSI_MAX_SECTORS_DEFAULT; 2252 2253 if (map_persist_bufs(hostdata)) { 2254 dev_err(&vdev->dev, "couldn't map persistent buffers\n"); 2255 goto persist_bufs_failed; 2256 } 2257 2258 hostdata->work_thread = kthread_run(ibmvscsi_work, hostdata, "%s_%d", 2259 "ibmvscsi", host->host_no); 2260 2261 if (IS_ERR(hostdata->work_thread)) { 2262 dev_err(&vdev->dev, "couldn't initialize kthread. rc=%ld\n", 2263 PTR_ERR(hostdata->work_thread)); 2264 goto init_crq_failed; 2265 } 2266 2267 rc = ibmvscsi_init_crq_queue(&hostdata->queue, hostdata, max_events); 2268 if (rc != 0 && rc != H_RESOURCE) { 2269 dev_err(&vdev->dev, "couldn't initialize crq. rc=%d\n", rc); 2270 goto kill_kthread; 2271 } 2272 if (initialize_event_pool(&hostdata->pool, max_events, hostdata) != 0) { 2273 dev_err(&vdev->dev, "couldn't initialize event pool\n"); 2274 goto init_pool_failed; 2275 } 2276 2277 host->max_lun = IBMVSCSI_MAX_LUN; 2278 host->max_id = max_id; 2279 host->max_channel = max_channel; 2280 host->max_cmd_len = 16; 2281 2282 dev_info(dev, 2283 "Maximum ID: %d Maximum LUN: %llu Maximum Channel: %d\n", 2284 host->max_id, host->max_lun, host->max_channel); 2285 2286 if (scsi_add_host(hostdata->host, hostdata->dev)) 2287 goto add_host_failed; 2288 2289 /* we don't have a proper target_port_id so let's use the fake one */ 2290 memcpy(ids.port_id, hostdata->madapter_info.partition_name, 2291 sizeof(ids.port_id)); 2292 ids.roles = SRP_RPORT_ROLE_TARGET; 2293 rport = srp_rport_add(host, &ids); 2294 if (IS_ERR(rport)) 2295 goto add_srp_port_failed; 2296 2297 /* Try to send an initialization message. Note that this is allowed 2298 * to fail if the other end is not acive. In that case we don't 2299 * want to scan 2300 */ 2301 if (ibmvscsi_send_crq(hostdata, 0xC001000000000000LL, 0) == 0 2302 || rc == H_RESOURCE) { 2303 /* 2304 * Wait around max init_timeout secs for the adapter to finish 2305 * initializing. When we are done initializing, we will have a 2306 * valid request_limit. We don't want Linux scanning before 2307 * we are ready. 2308 */ 2309 for (wait_switch = jiffies + (init_timeout * HZ); 2310 time_before(jiffies, wait_switch) && 2311 atomic_read(&hostdata->request_limit) < 2;) { 2312 2313 msleep(10); 2314 } 2315 2316 /* if we now have a valid request_limit, initiate a scan */ 2317 if (atomic_read(&hostdata->request_limit) > 0) 2318 scsi_scan_host(host); 2319 } 2320 2321 dev_set_drvdata(&vdev->dev, hostdata); 2322 spin_lock(&ibmvscsi_driver_lock); 2323 list_add_tail(&hostdata->host_list, &ibmvscsi_head); 2324 spin_unlock(&ibmvscsi_driver_lock); 2325 return 0; 2326 2327 add_srp_port_failed: 2328 scsi_remove_host(hostdata->host); 2329 add_host_failed: 2330 release_event_pool(&hostdata->pool, hostdata); 2331 init_pool_failed: 2332 ibmvscsi_release_crq_queue(&hostdata->queue, hostdata, max_events); 2333 kill_kthread: 2334 kthread_stop(hostdata->work_thread); 2335 init_crq_failed: 2336 unmap_persist_bufs(hostdata); 2337 persist_bufs_failed: 2338 scsi_host_put(host); 2339 scsi_host_alloc_failed: 2340 return -1; 2341 } 2342 2343 static void ibmvscsi_remove(struct vio_dev *vdev) 2344 { 2345 struct ibmvscsi_host_data *hostdata = dev_get_drvdata(&vdev->dev); 2346 2347 srp_remove_host(hostdata->host); 2348 scsi_remove_host(hostdata->host); 2349 2350 purge_requests(hostdata, DID_ERROR); 2351 release_event_pool(&hostdata->pool, hostdata); 2352 2353 ibmvscsi_release_crq_queue(&hostdata->queue, hostdata, 2354 max_events); 2355 2356 kthread_stop(hostdata->work_thread); 2357 unmap_persist_bufs(hostdata); 2358 2359 spin_lock(&ibmvscsi_driver_lock); 2360 list_del(&hostdata->host_list); 2361 spin_unlock(&ibmvscsi_driver_lock); 2362 2363 scsi_host_put(hostdata->host); 2364 } 2365 2366 /** 2367 * ibmvscsi_resume: Resume from suspend 2368 * @dev: device struct 2369 * 2370 * We may have lost an interrupt across suspend/resume, so kick the 2371 * interrupt handler 2372 */ 2373 static int ibmvscsi_resume(struct device *dev) 2374 { 2375 struct ibmvscsi_host_data *hostdata = dev_get_drvdata(dev); 2376 vio_disable_interrupts(to_vio_dev(hostdata->dev)); 2377 tasklet_schedule(&hostdata->srp_task); 2378 2379 return 0; 2380 } 2381 2382 /* 2383 * ibmvscsi_device_table: Used by vio.c to match devices in the device tree we 2384 * support. 2385 */ 2386 static const struct vio_device_id ibmvscsi_device_table[] = { 2387 {"vscsi", "IBM,v-scsi"}, 2388 { "", "" } 2389 }; 2390 MODULE_DEVICE_TABLE(vio, ibmvscsi_device_table); 2391 2392 static const struct dev_pm_ops ibmvscsi_pm_ops = { 2393 .resume = ibmvscsi_resume 2394 }; 2395 2396 static struct vio_driver ibmvscsi_driver = { 2397 .id_table = ibmvscsi_device_table, 2398 .probe = ibmvscsi_probe, 2399 .remove = ibmvscsi_remove, 2400 .get_desired_dma = ibmvscsi_get_desired_dma, 2401 .name = "ibmvscsi", 2402 .pm = &ibmvscsi_pm_ops, 2403 }; 2404 2405 static struct srp_function_template ibmvscsi_transport_functions = { 2406 }; 2407 2408 static int __init ibmvscsi_module_init(void) 2409 { 2410 int ret; 2411 2412 /* Ensure we have two requests to do error recovery */ 2413 driver_template.can_queue = max_requests; 2414 max_events = max_requests + 2; 2415 2416 if (!firmware_has_feature(FW_FEATURE_VIO)) 2417 return -ENODEV; 2418 2419 ibmvscsi_transport_template = 2420 srp_attach_transport(&ibmvscsi_transport_functions); 2421 if (!ibmvscsi_transport_template) 2422 return -ENOMEM; 2423 2424 ret = vio_register_driver(&ibmvscsi_driver); 2425 if (ret) 2426 srp_release_transport(ibmvscsi_transport_template); 2427 return ret; 2428 } 2429 2430 static void __exit ibmvscsi_module_exit(void) 2431 { 2432 vio_unregister_driver(&ibmvscsi_driver); 2433 srp_release_transport(ibmvscsi_transport_template); 2434 } 2435 2436 module_init(ibmvscsi_module_init); 2437 module_exit(ibmvscsi_module_exit); 2438