1 /*- 2 * Copyright (c) 2017 Broadcom. All rights reserved. 3 * The term "Broadcom" refers to Broadcom Limited and/or its subsidiaries. 4 * 5 * Redistribution and use in source and binary forms, with or without 6 * modification, are permitted provided that the following conditions are met: 7 * 8 * 1. Redistributions of source code must retain the above copyright notice, 9 * this list of conditions and the following disclaimer. 10 * 11 * 2. Redistributions in binary form must reproduce the above copyright notice, 12 * this list of conditions and the following disclaimer in the documentation 13 * and/or other materials provided with the distribution. 14 * 15 * 3. Neither the name of the copyright holder nor the names of its contributors 16 * may be used to endorse or promote products derived from this software 17 * without specific prior written permission. 18 * 19 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" 20 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 21 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 22 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE 23 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 24 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 25 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 26 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 27 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 28 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 29 * POSSIBILITY OF SUCH DAMAGE. 30 * 31 * $FreeBSD$ 32 */ 33 34 /** 35 * @defgroup scsi_api_target SCSI Target API 36 * @defgroup scsi_api_initiator SCSI Initiator API 37 * @defgroup cam_api Common Access Method (CAM) API 38 * @defgroup cam_io CAM IO 39 */ 40 41 /** 42 * @file 43 * Provides CAM functionality. 44 */ 45 46 #include "ocs.h" 47 #include "ocs_scsi.h" 48 #include "ocs_device.h" 49 50 /* Default IO timeout value for initiators is 30 seconds */ 51 #define OCS_CAM_IO_TIMEOUT 30 52 53 typedef struct { 54 ocs_scsi_sgl_t *sgl; 55 uint32_t sgl_max; 56 uint32_t sgl_count; 57 int32_t rc; 58 } ocs_dmamap_load_arg_t; 59 60 static void ocs_action(struct cam_sim *, union ccb *); 61 static void ocs_poll(struct cam_sim *); 62 63 static ocs_tgt_resource_t *ocs_tgt_resource_get(ocs_fcport *, 64 struct ccb_hdr *, uint32_t *); 65 static int32_t ocs_tgt_resource_abort(struct ocs_softc *, ocs_tgt_resource_t *); 66 static uint32_t ocs_abort_initiator_io(struct ocs_softc *ocs, union ccb *accb); 67 static void ocs_abort_inot(struct ocs_softc *ocs, union ccb *ccb); 68 static void ocs_abort_atio(struct ocs_softc *ocs, union ccb *ccb); 69 static int32_t ocs_target_tmf_cb(ocs_io_t *, ocs_scsi_io_status_e, uint32_t, void *); 70 static int32_t ocs_io_abort_cb(ocs_io_t *, ocs_scsi_io_status_e, uint32_t, void *); 71 static int32_t ocs_task_set_full_or_busy(ocs_io_t *io); 72 static int32_t ocs_initiator_tmf_cb(ocs_io_t *, ocs_scsi_io_status_e, 73 ocs_scsi_cmd_resp_t *, uint32_t, void *); 74 static uint32_t 75 ocs_fcp_change_role(struct ocs_softc *ocs, ocs_fcport *fcp, uint32_t new_role); 76 77 static void ocs_ldt(void *arg); 78 static void ocs_ldt_task(void *arg, int pending); 79 static void ocs_delete_target(ocs_t *ocs, ocs_fcport *fcp, int tgt); 80 uint32_t ocs_add_new_tgt(ocs_node_t *node, ocs_fcport *fcp); 81 uint32_t ocs_update_tgt(ocs_node_t *node, ocs_fcport *fcp, uint32_t tgt_id); 82 83 int32_t ocs_tgt_find(ocs_fcport *fcp, ocs_node_t *node); 84 85 static inline ocs_io_t *ocs_scsi_find_io(struct ocs_softc *ocs, uint32_t tag) 86 { 87 88 return ocs_io_get_instance(ocs, tag); 89 } 90 91 static inline void ocs_target_io_free(ocs_io_t *io) 92 { 93 io->tgt_io.state = OCS_CAM_IO_FREE; 94 io->tgt_io.flags = 0; 95 io->tgt_io.app = NULL; 96 ocs_scsi_io_complete(io); 97 if(io->ocs->io_in_use != 0) 98 atomic_subtract_acq_32(&io->ocs->io_in_use, 1); 99 } 100 101 static int32_t 102 ocs_attach_port(ocs_t *ocs, int chan) 103 { 104 105 struct cam_sim *sim = NULL; 106 struct cam_path *path = NULL; 107 uint32_t max_io = ocs_scsi_get_property(ocs, OCS_SCSI_MAX_IOS); 108 ocs_fcport *fcp = FCPORT(ocs, chan); 109 110 if (NULL == (sim = cam_sim_alloc(ocs_action, ocs_poll, 111 device_get_name(ocs->dev), ocs, 112 device_get_unit(ocs->dev), &ocs->sim_lock, 113 max_io, max_io, ocs->devq))) { 114 device_printf(ocs->dev, "Can't allocate SIM\n"); 115 return 1; 116 } 117 118 mtx_lock(&ocs->sim_lock); 119 if (CAM_SUCCESS != xpt_bus_register(sim, ocs->dev, chan)) { 120 device_printf(ocs->dev, "Can't register bus %d\n", 0); 121 mtx_unlock(&ocs->sim_lock); 122 cam_sim_free(sim, FALSE); 123 return 1; 124 } 125 mtx_unlock(&ocs->sim_lock); 126 127 if (CAM_REQ_CMP != xpt_create_path(&path, NULL, cam_sim_path(sim), 128 CAM_TARGET_WILDCARD, CAM_LUN_WILDCARD)) { 129 device_printf(ocs->dev, "Can't create path\n"); 130 xpt_bus_deregister(cam_sim_path(sim)); 131 mtx_unlock(&ocs->sim_lock); 132 cam_sim_free(sim, FALSE); 133 return 1; 134 } 135 136 fcp->ocs = ocs; 137 fcp->sim = sim; 138 fcp->path = path; 139 140 callout_init_mtx(&fcp->ldt, &ocs->sim_lock, 0); 141 TASK_INIT(&fcp->ltask, 1, ocs_ldt_task, fcp); 142 143 return 0; 144 } 145 146 static int32_t 147 ocs_detach_port(ocs_t *ocs, int32_t chan) 148 { 149 ocs_fcport *fcp = NULL; 150 struct cam_sim *sim = NULL; 151 struct cam_path *path = NULL; 152 fcp = FCPORT(ocs, chan); 153 154 sim = fcp->sim; 155 path = fcp->path; 156 157 callout_drain(&fcp->ldt); 158 ocs_ldt_task(fcp, 0); 159 160 if (fcp->sim) { 161 mtx_lock(&ocs->sim_lock); 162 ocs_tgt_resource_abort(ocs, &fcp->targ_rsrc_wildcard); 163 if (path) { 164 xpt_async(AC_LOST_DEVICE, path, NULL); 165 xpt_free_path(path); 166 fcp->path = NULL; 167 } 168 xpt_bus_deregister(cam_sim_path(sim)); 169 170 cam_sim_free(sim, FALSE); 171 fcp->sim = NULL; 172 mtx_unlock(&ocs->sim_lock); 173 } 174 175 return 0; 176 } 177 178 int32_t 179 ocs_cam_attach(ocs_t *ocs) 180 { 181 struct cam_devq *devq = NULL; 182 int i = 0; 183 uint32_t max_io = ocs_scsi_get_property(ocs, OCS_SCSI_MAX_IOS); 184 185 if (NULL == (devq = cam_simq_alloc(max_io))) { 186 device_printf(ocs->dev, "Can't allocate SIMQ\n"); 187 return -1; 188 } 189 190 ocs->devq = devq; 191 192 if (mtx_initialized(&ocs->sim_lock) == 0) { 193 mtx_init(&ocs->sim_lock, "ocs_sim_lock", NULL, MTX_DEF); 194 } 195 196 for (i = 0; i < (ocs->num_vports + 1); i++) { 197 if (ocs_attach_port(ocs, i)) { 198 ocs_log_err(ocs, "Attach port failed for chan: %d\n", i); 199 goto detach_port; 200 } 201 } 202 203 ocs->io_high_watermark = max_io; 204 ocs->io_in_use = 0; 205 return 0; 206 207 detach_port: 208 while (--i >= 0) { 209 ocs_detach_port(ocs, i); 210 } 211 212 cam_simq_free(ocs->devq); 213 214 if (mtx_initialized(&ocs->sim_lock)) 215 mtx_destroy(&ocs->sim_lock); 216 217 return 1; 218 } 219 220 int32_t 221 ocs_cam_detach(ocs_t *ocs) 222 { 223 int i = 0; 224 225 for (i = (ocs->num_vports); i >= 0; i--) { 226 ocs_detach_port(ocs, i); 227 } 228 229 cam_simq_free(ocs->devq); 230 231 if (mtx_initialized(&ocs->sim_lock)) 232 mtx_destroy(&ocs->sim_lock); 233 234 return 0; 235 } 236 237 /*************************************************************************** 238 * Functions required by SCSI base driver API 239 */ 240 241 /** 242 * @ingroup scsi_api_target 243 * @brief Attach driver to the BSD SCSI layer (a.k.a CAM) 244 * 245 * Allocates + initializes CAM related resources and attaches to the CAM 246 * 247 * @param ocs the driver instance's software context 248 * 249 * @return 0 on success, non-zero otherwise 250 */ 251 int32_t 252 ocs_scsi_tgt_new_device(ocs_t *ocs) 253 { 254 ocs->enable_task_set_full = ocs_scsi_get_property(ocs, 255 OCS_SCSI_ENABLE_TASK_SET_FULL); 256 ocs_log_debug(ocs, "task set full processing is %s\n", 257 ocs->enable_task_set_full ? "enabled" : "disabled"); 258 259 return 0; 260 } 261 262 /** 263 * @ingroup scsi_api_target 264 * @brief Tears down target members of ocs structure. 265 * 266 * Called by OS code when device is removed. 267 * 268 * @param ocs pointer to ocs 269 * 270 * @return returns 0 for success, a negative error code value for failure. 271 */ 272 int32_t 273 ocs_scsi_tgt_del_device(ocs_t *ocs) 274 { 275 276 return 0; 277 } 278 279 /** 280 * @ingroup scsi_api_target 281 * @brief accept new domain notification 282 * 283 * Called by base drive when new domain is discovered. A target-server 284 * will use this call to prepare for new remote node notifications 285 * arising from ocs_scsi_new_initiator(). 286 * 287 * The domain context has an element <b>ocs_scsi_tgt_domain_t tgt_domain</b> 288 * which is declared by the target-server code and is used for target-server 289 * private data. 290 * 291 * This function will only be called if the base-driver has been enabled for 292 * target capability. 293 * 294 * Note that this call is made to target-server backends, 295 * the ocs_scsi_ini_new_domain() function is called to initiator-client backends. 296 * 297 * @param domain pointer to domain 298 * 299 * @return returns 0 for success, a negative error code value for failure. 300 */ 301 int32_t 302 ocs_scsi_tgt_new_domain(ocs_domain_t *domain) 303 { 304 return 0; 305 } 306 307 /** 308 * @ingroup scsi_api_target 309 * @brief accept domain lost notification 310 * 311 * Called by base-driver when a domain goes away. A target-server will 312 * use this call to clean up all domain scoped resources. 313 * 314 * Note that this call is made to target-server backends, 315 * the ocs_scsi_ini_del_domain() function is called to initiator-client backends. 316 * 317 * @param domain pointer to domain 318 * 319 * @return returns 0 for success, a negative error code value for failure. 320 */ 321 void 322 ocs_scsi_tgt_del_domain(ocs_domain_t *domain) 323 { 324 } 325 326 327 /** 328 * @ingroup scsi_api_target 329 * @brief accept new sli port (sport) notification 330 * 331 * Called by base drive when new sport is discovered. A target-server 332 * will use this call to prepare for new remote node notifications 333 * arising from ocs_scsi_new_initiator(). 334 * 335 * The domain context has an element <b>ocs_scsi_tgt_sport_t tgt_sport</b> 336 * which is declared by the target-server code and is used for 337 * target-server private data. 338 * 339 * This function will only be called if the base-driver has been enabled for 340 * target capability. 341 * 342 * Note that this call is made to target-server backends, 343 * the ocs_scsi_tgt_new_domain() is called to initiator-client backends. 344 * 345 * @param sport pointer to SLI port 346 * 347 * @return returns 0 for success, a negative error code value for failure. 348 */ 349 int32_t 350 ocs_scsi_tgt_new_sport(ocs_sport_t *sport) 351 { 352 ocs_t *ocs = sport->ocs; 353 354 if(!sport->is_vport) { 355 sport->tgt_data = FCPORT(ocs, 0); 356 } 357 358 return 0; 359 } 360 361 /** 362 * @ingroup scsi_api_target 363 * @brief accept SLI port gone notification 364 * 365 * Called by base-driver when a sport goes away. A target-server will 366 * use this call to clean up all sport scoped resources. 367 * 368 * Note that this call is made to target-server backends, 369 * the ocs_scsi_ini_del_sport() is called to initiator-client backends. 370 * 371 * @param sport pointer to SLI port 372 * 373 * @return returns 0 for success, a negative error code value for failure. 374 */ 375 void 376 ocs_scsi_tgt_del_sport(ocs_sport_t *sport) 377 { 378 return; 379 } 380 381 /** 382 * @ingroup scsi_api_target 383 * @brief receive notification of a new SCSI initiator node 384 * 385 * Sent by base driver to notify a target-server of the presense of a new 386 * remote initiator. The target-server may use this call to prepare for 387 * inbound IO from this node. 388 * 389 * The ocs_node_t structure has and elment of type ocs_scsi_tgt_node_t named 390 * tgt_node that is declared and used by a target-server for private 391 * information. 392 * 393 * This function is only called if the target capability is enabled in driver. 394 * 395 * @param node pointer to new remote initiator node 396 * 397 * @return returns 0 for success, a negative error code value for failure. 398 * 399 * @note 400 */ 401 int32_t 402 ocs_scsi_new_initiator(ocs_node_t *node) 403 { 404 ocs_t *ocs = node->ocs; 405 struct ac_contract ac; 406 struct ac_device_changed *adc; 407 408 ocs_fcport *fcp = NULL; 409 410 fcp = node->sport->tgt_data; 411 if (fcp == NULL) { 412 ocs_log_err(ocs, "FCP is NULL \n"); 413 return 1; 414 } 415 416 /* 417 * Update the IO watermark by decrementing it by the 418 * number of IOs reserved for each initiator. 419 */ 420 atomic_subtract_acq_32(&ocs->io_high_watermark, OCS_RSVD_INI_IO); 421 422 ac.contract_number = AC_CONTRACT_DEV_CHG; 423 adc = (struct ac_device_changed *) ac.contract_data; 424 adc->wwpn = ocs_node_get_wwpn(node); 425 adc->port = node->rnode.fc_id; 426 adc->target = node->instance_index; 427 adc->arrived = 1; 428 xpt_async(AC_CONTRACT, fcp->path, &ac); 429 430 return 0; 431 } 432 433 /** 434 * @ingroup scsi_api_target 435 * @brief validate new initiator 436 * 437 * Sent by base driver to validate a remote initiatiator. The target-server 438 * returns TRUE if this initiator should be accepted. 439 * 440 * This function is only called if the target capability is enabled in driver. 441 * 442 * @param node pointer to remote initiator node to validate 443 * 444 * @return TRUE if initiator should be accepted, FALSE if it should be rejected 445 * 446 * @note 447 */ 448 449 int32_t 450 ocs_scsi_validate_initiator(ocs_node_t *node) 451 { 452 return 1; 453 } 454 455 /** 456 * @ingroup scsi_api_target 457 * @brief Delete a SCSI initiator node 458 * 459 * Sent by base driver to notify a target-server that a remote initiator 460 * is now gone. The base driver will have terminated all outstanding IOs 461 * and the target-server will receive appropriate completions. 462 * 463 * This function is only called if the base driver is enabled for 464 * target capability. 465 * 466 * @param node pointer node being deleted 467 * @param reason Reason why initiator is gone. 468 * 469 * @return OCS_SCSI_CALL_COMPLETE to indicate that all work was completed 470 * 471 * @note 472 */ 473 int32_t 474 ocs_scsi_del_initiator(ocs_node_t *node, ocs_scsi_del_initiator_reason_e reason) 475 { 476 ocs_t *ocs = node->ocs; 477 478 struct ac_contract ac; 479 struct ac_device_changed *adc; 480 ocs_fcport *fcp = NULL; 481 482 fcp = node->sport->tgt_data; 483 if (fcp == NULL) { 484 ocs_log_err(ocs, "FCP is NULL \n"); 485 return 1; 486 } 487 488 ac.contract_number = AC_CONTRACT_DEV_CHG; 489 adc = (struct ac_device_changed *) ac.contract_data; 490 adc->wwpn = ocs_node_get_wwpn(node); 491 adc->port = node->rnode.fc_id; 492 adc->target = node->instance_index; 493 adc->arrived = 0; 494 xpt_async(AC_CONTRACT, fcp->path, &ac); 495 496 497 if (reason == OCS_SCSI_INITIATOR_MISSING) { 498 return OCS_SCSI_CALL_COMPLETE; 499 } 500 501 /* 502 * Update the IO watermark by incrementing it by the 503 * number of IOs reserved for each initiator. 504 */ 505 atomic_add_acq_32(&ocs->io_high_watermark, OCS_RSVD_INI_IO); 506 507 return OCS_SCSI_CALL_COMPLETE; 508 } 509 510 /** 511 * @ingroup scsi_api_target 512 * @brief receive FCP SCSI Command 513 * 514 * Called by the base driver when a new SCSI command has been received. The 515 * target-server will process the command, and issue data and/or response phase 516 * requests to the base driver. 517 * 518 * The IO context (ocs_io_t) structure has and element of type 519 * ocs_scsi_tgt_io_t named tgt_io that is declared and used by 520 * a target-server for private information. 521 * 522 * @param io pointer to IO context 523 * @param lun LUN for this IO 524 * @param cdb pointer to SCSI CDB 525 * @param cdb_len length of CDB in bytes 526 * @param flags command flags 527 * 528 * @return returns 0 for success, a negative error code value for failure. 529 */ 530 int32_t ocs_scsi_recv_cmd(ocs_io_t *io, uint64_t lun, uint8_t *cdb, 531 uint32_t cdb_len, uint32_t flags) 532 { 533 ocs_t *ocs = io->ocs; 534 struct ccb_accept_tio *atio = NULL; 535 ocs_node_t *node = io->node; 536 ocs_tgt_resource_t *trsrc = NULL; 537 int32_t rc = -1; 538 ocs_fcport *fcp = NULL; 539 540 fcp = node->sport->tgt_data; 541 if (fcp == NULL) { 542 ocs_log_err(ocs, "FCP is NULL \n"); 543 return 1; 544 } 545 546 atomic_add_acq_32(&ocs->io_in_use, 1); 547 548 /* set target io timeout */ 549 io->timeout = ocs->target_io_timer_sec; 550 551 if (ocs->enable_task_set_full && 552 (ocs->io_in_use >= ocs->io_high_watermark)) { 553 return ocs_task_set_full_or_busy(io); 554 } else { 555 atomic_store_rel_32(&io->node->tgt_node.busy_sent, FALSE); 556 } 557 558 if ((lun < OCS_MAX_LUN) && fcp->targ_rsrc[lun].enabled) { 559 trsrc = &fcp->targ_rsrc[lun]; 560 } else if (fcp->targ_rsrc_wildcard.enabled) { 561 trsrc = &fcp->targ_rsrc_wildcard; 562 } 563 564 if (trsrc) { 565 atio = (struct ccb_accept_tio *)STAILQ_FIRST(&trsrc->atio); 566 } 567 568 if (atio) { 569 570 STAILQ_REMOVE_HEAD(&trsrc->atio, sim_links.stqe); 571 572 atio->ccb_h.status = CAM_CDB_RECVD; 573 atio->ccb_h.target_lun = lun; 574 atio->sense_len = 0; 575 576 atio->init_id = node->instance_index; 577 atio->tag_id = io->tag; 578 atio->ccb_h.ccb_io_ptr = io; 579 580 if (flags & OCS_SCSI_CMD_SIMPLE) 581 atio->tag_action = MSG_SIMPLE_Q_TAG; 582 else if (flags & FCP_TASK_ATTR_HEAD_OF_QUEUE) 583 atio->tag_action = MSG_HEAD_OF_Q_TAG; 584 else if (flags & FCP_TASK_ATTR_ORDERED) 585 atio->tag_action = MSG_ORDERED_Q_TAG; 586 else 587 atio->tag_action = 0; 588 589 atio->cdb_len = cdb_len; 590 ocs_memcpy(atio->cdb_io.cdb_bytes, cdb, cdb_len); 591 592 io->tgt_io.flags = 0; 593 io->tgt_io.state = OCS_CAM_IO_COMMAND; 594 io->tgt_io.lun = lun; 595 596 xpt_done((union ccb *)atio); 597 598 rc = 0; 599 } else { 600 device_printf( 601 ocs->dev, "%s: no ATIO for LUN %lx (en=%s) OX_ID %#x\n", 602 __func__, (unsigned long)lun, 603 trsrc ? (trsrc->enabled ? "T" : "F") : "X", 604 be16toh(io->init_task_tag)); 605 606 io->tgt_io.state = OCS_CAM_IO_MAX; 607 ocs_target_io_free(io); 608 } 609 610 return rc; 611 } 612 613 /** 614 * @ingroup scsi_api_target 615 * @brief receive FCP SCSI Command with first burst data. 616 * 617 * Receive a new FCP SCSI command from the base driver with first burst data. 618 * 619 * @param io pointer to IO context 620 * @param lun LUN for this IO 621 * @param cdb pointer to SCSI CDB 622 * @param cdb_len length of CDB in bytes 623 * @param flags command flags 624 * @param first_burst_buffers first burst buffers 625 * @param first_burst_buffer_count The number of bytes received in the first burst 626 * 627 * @return returns 0 for success, a negative error code value for failure. 628 */ 629 int32_t ocs_scsi_recv_cmd_first_burst(ocs_io_t *io, uint64_t lun, uint8_t *cdb, 630 uint32_t cdb_len, uint32_t flags, 631 ocs_dma_t first_burst_buffers[], 632 uint32_t first_burst_buffer_count) 633 { 634 return -1; 635 } 636 637 /** 638 * @ingroup scsi_api_target 639 * @brief receive a TMF command IO 640 * 641 * Called by the base driver when a SCSI TMF command has been received. The 642 * target-server will process the command, aborting commands as needed, and post 643 * a response using ocs_scsi_send_resp() 644 * 645 * The IO context (ocs_io_t) structure has and element of type ocs_scsi_tgt_io_t named 646 * tgt_io that is declared and used by a target-server for private information. 647 * 648 * If the target-server walks the nodes active_ios linked list, and starts IO 649 * abort processing, the code <b>must</b> be sure not to abort the IO passed into the 650 * ocs_scsi_recv_tmf() command. 651 * 652 * @param tmfio pointer to IO context 653 * @param lun logical unit value 654 * @param cmd command request 655 * @param abortio pointer to IO object to abort for TASK_ABORT (NULL for all other TMF) 656 * @param flags flags 657 * 658 * @return returns 0 for success, a negative error code value for failure. 659 */ 660 int32_t ocs_scsi_recv_tmf(ocs_io_t *tmfio, uint64_t lun, ocs_scsi_tmf_cmd_e cmd, 661 ocs_io_t *abortio, uint32_t flags) 662 { 663 ocs_t *ocs = tmfio->ocs; 664 ocs_node_t *node = tmfio->node; 665 ocs_tgt_resource_t *trsrc = NULL; 666 struct ccb_immediate_notify *inot = NULL; 667 int32_t rc = -1; 668 ocs_fcport *fcp = NULL; 669 670 fcp = node->sport->tgt_data; 671 if (fcp == NULL) { 672 ocs_log_err(ocs, "FCP is NULL \n"); 673 return 1; 674 } 675 676 if ((lun < OCS_MAX_LUN) && fcp->targ_rsrc[lun].enabled) { 677 trsrc = &fcp->targ_rsrc[lun]; 678 } else if (fcp->targ_rsrc_wildcard.enabled) { 679 trsrc = &fcp->targ_rsrc_wildcard; 680 } 681 682 device_printf(tmfio->ocs->dev, "%s: io=%p cmd=%#x LU=%lx en=%s\n", 683 __func__, tmfio, cmd, (unsigned long)lun, 684 trsrc ? (trsrc->enabled ? "T" : "F") : "X"); 685 if (trsrc) { 686 inot = (struct ccb_immediate_notify *)STAILQ_FIRST(&trsrc->inot); 687 } 688 689 if (!inot) { 690 device_printf( 691 ocs->dev, "%s: no INOT for LUN %llx (en=%s) OX_ID %#x\n", 692 __func__, (unsigned long long)lun, trsrc ? (trsrc->enabled ? "T" : "F") : "X", 693 be16toh(tmfio->init_task_tag)); 694 695 if (abortio) { 696 ocs_scsi_io_complete(abortio); 697 } 698 ocs_scsi_io_complete(tmfio); 699 goto ocs_scsi_recv_tmf_out; 700 } 701 702 703 tmfio->tgt_io.app = abortio; 704 705 STAILQ_REMOVE_HEAD(&trsrc->inot, sim_links.stqe); 706 707 inot->tag_id = tmfio->tag; 708 inot->seq_id = tmfio->tag; 709 710 if ((lun < OCS_MAX_LUN) && fcp->targ_rsrc[lun].enabled) { 711 inot->initiator_id = node->instance_index; 712 } else { 713 inot->initiator_id = CAM_TARGET_WILDCARD; 714 } 715 716 inot->ccb_h.status = CAM_MESSAGE_RECV; 717 inot->ccb_h.target_lun = lun; 718 719 switch (cmd) { 720 case OCS_SCSI_TMF_ABORT_TASK: 721 inot->arg = MSG_ABORT_TASK; 722 inot->seq_id = abortio->tag; 723 device_printf(ocs->dev, "%s: ABTS IO.%#x st=%#x\n", 724 __func__, abortio->tag, abortio->tgt_io.state); 725 abortio->tgt_io.flags |= OCS_CAM_IO_F_ABORT_RECV; 726 abortio->tgt_io.flags |= OCS_CAM_IO_F_ABORT_NOTIFY; 727 break; 728 case OCS_SCSI_TMF_QUERY_TASK_SET: 729 device_printf(ocs->dev, 730 "%s: OCS_SCSI_TMF_QUERY_TASK_SET not supported\n", 731 __func__); 732 STAILQ_INSERT_TAIL(&trsrc->inot, &inot->ccb_h, sim_links.stqe); 733 ocs_scsi_io_complete(tmfio); 734 goto ocs_scsi_recv_tmf_out; 735 break; 736 case OCS_SCSI_TMF_ABORT_TASK_SET: 737 inot->arg = MSG_ABORT_TASK_SET; 738 break; 739 case OCS_SCSI_TMF_CLEAR_TASK_SET: 740 inot->arg = MSG_CLEAR_TASK_SET; 741 break; 742 case OCS_SCSI_TMF_QUERY_ASYNCHRONOUS_EVENT: 743 inot->arg = MSG_QUERY_ASYNC_EVENT; 744 break; 745 case OCS_SCSI_TMF_LOGICAL_UNIT_RESET: 746 inot->arg = MSG_LOGICAL_UNIT_RESET; 747 break; 748 case OCS_SCSI_TMF_CLEAR_ACA: 749 inot->arg = MSG_CLEAR_ACA; 750 break; 751 case OCS_SCSI_TMF_TARGET_RESET: 752 inot->arg = MSG_TARGET_RESET; 753 break; 754 default: 755 device_printf(ocs->dev, "%s: unsupported TMF %#x\n", 756 __func__, cmd); 757 STAILQ_INSERT_TAIL(&trsrc->inot, &inot->ccb_h, sim_links.stqe); 758 goto ocs_scsi_recv_tmf_out; 759 } 760 761 rc = 0; 762 763 xpt_print(inot->ccb_h.path, "%s: func=%#x stat=%#x id=%#x lun=%#x" 764 " flags=%#x tag=%#x seq=%#x ini=%#x arg=%#x\n", 765 __func__, inot->ccb_h.func_code, inot->ccb_h.status, 766 inot->ccb_h.target_id, 767 (unsigned int)inot->ccb_h.target_lun, inot->ccb_h.flags, 768 inot->tag_id, inot->seq_id, inot->initiator_id, 769 inot->arg); 770 xpt_done((union ccb *)inot); 771 772 if (abortio) { 773 abortio->tgt_io.flags |= OCS_CAM_IO_F_ABORT_DEV; 774 rc = ocs_scsi_tgt_abort_io(abortio, ocs_io_abort_cb, tmfio); 775 } 776 777 ocs_scsi_recv_tmf_out: 778 return rc; 779 } 780 781 /** 782 * @ingroup scsi_api_initiator 783 * @brief Initializes any initiator fields on the ocs structure. 784 * 785 * Called by OS initialization code when a new device is discovered. 786 * 787 * @param ocs pointer to ocs 788 * 789 * @return returns 0 for success, a negative error code value for failure. 790 */ 791 int32_t 792 ocs_scsi_ini_new_device(ocs_t *ocs) 793 { 794 795 return 0; 796 } 797 798 /** 799 * @ingroup scsi_api_initiator 800 * @brief Tears down initiator members of ocs structure. 801 * 802 * Called by OS code when device is removed. 803 * 804 * @param ocs pointer to ocs 805 * 806 * @return returns 0 for success, a negative error code value for failure. 807 */ 808 809 int32_t 810 ocs_scsi_ini_del_device(ocs_t *ocs) 811 { 812 813 return 0; 814 } 815 816 817 /** 818 * @ingroup scsi_api_initiator 819 * @brief accept new domain notification 820 * 821 * Called by base drive when new domain is discovered. An initiator-client 822 * will accept this call to prepare for new remote node notifications 823 * arising from ocs_scsi_new_target(). 824 * 825 * The domain context has the element <b>ocs_scsi_ini_domain_t ini_domain</b> 826 * which is declared by the initiator-client code and is used for 827 * initiator-client private data. 828 * 829 * This function will only be called if the base-driver has been enabled for 830 * initiator capability. 831 * 832 * Note that this call is made to initiator-client backends, 833 * the ocs_scsi_tgt_new_domain() function is called to target-server backends. 834 * 835 * @param domain pointer to domain 836 * 837 * @return returns 0 for success, a negative error code value for failure. 838 */ 839 int32_t 840 ocs_scsi_ini_new_domain(ocs_domain_t *domain) 841 { 842 return 0; 843 } 844 845 /** 846 * @ingroup scsi_api_initiator 847 * @brief accept domain lost notification 848 * 849 * Called by base-driver when a domain goes away. An initiator-client will 850 * use this call to clean up all domain scoped resources. 851 * 852 * This function will only be called if the base-driver has been enabled for 853 * initiator capability. 854 * 855 * Note that this call is made to initiator-client backends, 856 * the ocs_scsi_tgt_del_domain() function is called to target-server backends. 857 * 858 * @param domain pointer to domain 859 * 860 * @return returns 0 for success, a negative error code value for failure. 861 */ 862 void 863 ocs_scsi_ini_del_domain(ocs_domain_t *domain) 864 { 865 } 866 867 /** 868 * @ingroup scsi_api_initiator 869 * @brief accept new sli port notification 870 * 871 * Called by base drive when new sli port (sport) is discovered. 872 * A target-server will use this call to prepare for new remote node 873 * notifications arising from ocs_scsi_new_initiator(). 874 * 875 * This function will only be called if the base-driver has been enabled for 876 * target capability. 877 * 878 * Note that this call is made to target-server backends, 879 * the ocs_scsi_ini_new_sport() function is called to initiator-client backends. 880 * 881 * @param sport pointer to sport 882 * 883 * @return returns 0 for success, a negative error code value for failure. 884 */ 885 int32_t 886 ocs_scsi_ini_new_sport(ocs_sport_t *sport) 887 { 888 ocs_t *ocs = sport->ocs; 889 890 if(!sport->is_vport) { 891 sport->tgt_data = FCPORT(ocs, 0); 892 } 893 894 return 0; 895 } 896 897 /** 898 * @ingroup scsi_api_initiator 899 * @brief accept sli port gone notification 900 * 901 * Called by base-driver when a sport goes away. A target-server will 902 * use this call to clean up all sport scoped resources. 903 * 904 * Note that this call is made to target-server backends, 905 * the ocs_scsi_ini_del_sport() function is called to initiator-client backends. 906 * 907 * @param sport pointer to SLI port 908 * 909 * @return returns 0 for success, a negative error code value for failure. 910 */ 911 void 912 ocs_scsi_ini_del_sport(ocs_sport_t *sport) 913 { 914 } 915 916 void 917 ocs_scsi_sport_deleted(ocs_sport_t *sport) 918 { 919 ocs_t *ocs = sport->ocs; 920 ocs_fcport *fcp = NULL; 921 922 ocs_xport_stats_t value; 923 924 if (!sport->is_vport) { 925 return; 926 } 927 928 fcp = sport->tgt_data; 929 930 ocs_xport_status(ocs->xport, OCS_XPORT_PORT_STATUS, &value); 931 932 if (value.value == 0) { 933 ocs_log_debug(ocs, "PORT offline,.. skipping\n"); 934 return; 935 } 936 937 if ((fcp->role != KNOB_ROLE_NONE)) { 938 if(fcp->vport->sport != NULL) { 939 ocs_log_debug(ocs,"sport is not NULL, skipping\n"); 940 return; 941 } 942 943 ocs_sport_vport_alloc(ocs->domain, fcp->vport); 944 return; 945 } 946 947 } 948 949 int32_t 950 ocs_tgt_find(ocs_fcport *fcp, ocs_node_t *node) 951 { 952 ocs_fc_target_t *tgt = NULL; 953 uint32_t i; 954 955 for (i = 0; i < OCS_MAX_TARGETS; i++) { 956 tgt = &fcp->tgt[i]; 957 958 if (tgt->state == OCS_TGT_STATE_NONE) 959 continue; 960 961 if (ocs_node_get_wwpn(node) == tgt->wwpn) { 962 return i; 963 } 964 } 965 966 return -1; 967 } 968 969 /** 970 * @ingroup scsi_api_initiator 971 * @brief receive notification of a new SCSI target node 972 * 973 * Sent by base driver to notify an initiator-client of the presense of a new 974 * remote target. The initiator-server may use this call to prepare for 975 * inbound IO from this node. 976 * 977 * This function is only called if the base driver is enabled for 978 * initiator capability. 979 * 980 * @param node pointer to new remote initiator node 981 * 982 * @return none 983 * 984 * @note 985 */ 986 987 uint32_t 988 ocs_update_tgt(ocs_node_t *node, ocs_fcport *fcp, uint32_t tgt_id) 989 { 990 ocs_fc_target_t *tgt = NULL; 991 992 tgt = &fcp->tgt[tgt_id]; 993 994 tgt->node_id = node->instance_index; 995 tgt->state = OCS_TGT_STATE_VALID; 996 997 tgt->port_id = node->rnode.fc_id; 998 tgt->wwpn = ocs_node_get_wwpn(node); 999 tgt->wwnn = ocs_node_get_wwnn(node); 1000 return 0; 1001 } 1002 1003 uint32_t 1004 ocs_add_new_tgt(ocs_node_t *node, ocs_fcport *fcp) 1005 { 1006 uint32_t i; 1007 1008 struct ocs_softc *ocs = node->ocs; 1009 union ccb *ccb = NULL; 1010 for (i = 0; i < OCS_MAX_TARGETS; i++) { 1011 if (fcp->tgt[i].state == OCS_TGT_STATE_NONE) 1012 break; 1013 } 1014 1015 if (NULL == (ccb = xpt_alloc_ccb_nowait())) { 1016 device_printf(ocs->dev, "%s: ccb allocation failed\n", __func__); 1017 return -1; 1018 } 1019 1020 if (CAM_REQ_CMP != xpt_create_path(&ccb->ccb_h.path, xpt_periph, 1021 cam_sim_path(fcp->sim), 1022 i, CAM_LUN_WILDCARD)) { 1023 device_printf( 1024 ocs->dev, "%s: target path creation failed\n", __func__); 1025 xpt_free_ccb(ccb); 1026 return -1; 1027 } 1028 1029 ocs_update_tgt(node, fcp, i); 1030 xpt_rescan(ccb); 1031 return 0; 1032 } 1033 1034 int32_t 1035 ocs_scsi_new_target(ocs_node_t *node) 1036 { 1037 ocs_fcport *fcp = NULL; 1038 int32_t i; 1039 1040 fcp = node->sport->tgt_data; 1041 if (fcp == NULL) { 1042 printf("%s:FCP is NULL \n", __func__); 1043 return 0; 1044 } 1045 1046 i = ocs_tgt_find(fcp, node); 1047 1048 if (i < 0) { 1049 ocs_add_new_tgt(node, fcp); 1050 return 0; 1051 } 1052 1053 ocs_update_tgt(node, fcp, i); 1054 return 0; 1055 } 1056 1057 static void 1058 ocs_delete_target(ocs_t *ocs, ocs_fcport *fcp, int tgt) 1059 { 1060 struct cam_path *cpath = NULL; 1061 1062 if (!fcp->sim) { 1063 device_printf(ocs->dev, "%s: calling with NULL sim\n", __func__); 1064 return; 1065 } 1066 1067 if (CAM_REQ_CMP == xpt_create_path(&cpath, NULL, cam_sim_path(fcp->sim), 1068 tgt, CAM_LUN_WILDCARD)) { 1069 xpt_async(AC_LOST_DEVICE, cpath, NULL); 1070 1071 xpt_free_path(cpath); 1072 } 1073 } 1074 1075 /* 1076 * Device Lost Timer Function- when we have decided that a device was lost, 1077 * we wait a specific period of time prior to telling the OS about lost device. 1078 * 1079 * This timer function gets activated when the device was lost. 1080 * This function fires once a second and then scans the port database 1081 * for devices that are marked dead but still have a virtual target assigned. 1082 * We decrement a counter for that port database entry, and when it hits zero, 1083 * we tell the OS the device was lost. Timer will be stopped when the device 1084 * comes back active or removed from the OS. 1085 */ 1086 static void 1087 ocs_ldt(void *arg) 1088 { 1089 ocs_fcport *fcp = arg; 1090 taskqueue_enqueue(taskqueue_thread, &fcp->ltask); 1091 } 1092 1093 static void 1094 ocs_ldt_task(void *arg, int pending) 1095 { 1096 ocs_fcport *fcp = arg; 1097 ocs_t *ocs = fcp->ocs; 1098 int i, more_to_do = 0; 1099 ocs_fc_target_t *tgt = NULL; 1100 1101 for (i = 0; i < OCS_MAX_TARGETS; i++) { 1102 tgt = &fcp->tgt[i]; 1103 1104 if (tgt->state != OCS_TGT_STATE_LOST) { 1105 continue; 1106 } 1107 1108 if ((tgt->gone_timer != 0) && (ocs->attached)){ 1109 tgt->gone_timer -= 1; 1110 more_to_do++; 1111 continue; 1112 } 1113 1114 if (tgt->is_target) { 1115 tgt->is_target = 0; 1116 ocs_delete_target(ocs, fcp, i); 1117 } 1118 1119 tgt->state = OCS_TGT_STATE_NONE; 1120 } 1121 1122 if (more_to_do) { 1123 callout_reset(&fcp->ldt, hz, ocs_ldt, fcp); 1124 } else { 1125 callout_deactivate(&fcp->ldt); 1126 } 1127 1128 } 1129 1130 /** 1131 * @ingroup scsi_api_initiator 1132 * @brief Delete a SCSI target node 1133 * 1134 * Sent by base driver to notify a initiator-client that a remote target 1135 * is now gone. The base driver will have terminated all outstanding IOs 1136 * and the initiator-client will receive appropriate completions. 1137 * 1138 * The ocs_node_t structure has and elment of type ocs_scsi_ini_node_t named 1139 * ini_node that is declared and used by a target-server for private 1140 * information. 1141 * 1142 * This function is only called if the base driver is enabled for 1143 * initiator capability. 1144 * 1145 * @param node pointer node being deleted 1146 * @param reason reason for deleting the target 1147 * 1148 * @return Returns OCS_SCSI_CALL_ASYNC if target delete is queued for async 1149 * completion and OCS_SCSI_CALL_COMPLETE if call completed or error. 1150 * 1151 * @note 1152 */ 1153 int32_t 1154 ocs_scsi_del_target(ocs_node_t *node, ocs_scsi_del_target_reason_e reason) 1155 { 1156 struct ocs_softc *ocs = node->ocs; 1157 ocs_fcport *fcp = NULL; 1158 ocs_fc_target_t *tgt = NULL; 1159 uint32_t tgt_id; 1160 1161 fcp = node->sport->tgt_data; 1162 if (fcp == NULL) { 1163 ocs_log_err(ocs,"FCP is NULL \n"); 1164 return 0; 1165 } 1166 1167 tgt_id = ocs_tgt_find(fcp, node); 1168 1169 tgt = &fcp->tgt[tgt_id]; 1170 1171 // IF in shutdown delete target. 1172 if(!ocs->attached) { 1173 ocs_delete_target(ocs, fcp, tgt_id); 1174 } else { 1175 1176 tgt->state = OCS_TGT_STATE_LOST; 1177 tgt->gone_timer = 30; 1178 if (!callout_active(&fcp->ldt)) { 1179 callout_reset(&fcp->ldt, hz, ocs_ldt, fcp); 1180 } 1181 } 1182 1183 return 0; 1184 } 1185 1186 /** 1187 * @brief Initialize SCSI IO 1188 * 1189 * Initialize SCSI IO, this function is called once per IO during IO pool 1190 * allocation so that the target server may initialize any of its own private 1191 * data. 1192 * 1193 * @param io pointer to SCSI IO object 1194 * 1195 * @return returns 0 for success, a negative error code value for failure. 1196 */ 1197 int32_t 1198 ocs_scsi_tgt_io_init(ocs_io_t *io) 1199 { 1200 return 0; 1201 } 1202 1203 /** 1204 * @brief Uninitialize SCSI IO 1205 * 1206 * Uninitialize target server private data in a SCSI io object 1207 * 1208 * @param io pointer to SCSI IO object 1209 * 1210 * @return returns 0 for success, a negative error code value for failure. 1211 */ 1212 int32_t 1213 ocs_scsi_tgt_io_exit(ocs_io_t *io) 1214 { 1215 return 0; 1216 } 1217 1218 /** 1219 * @brief Initialize SCSI IO 1220 * 1221 * Initialize SCSI IO, this function is called once per IO during IO pool 1222 * allocation so that the initiator client may initialize any of its own private 1223 * data. 1224 * 1225 * @param io pointer to SCSI IO object 1226 * 1227 * @return returns 0 for success, a negative error code value for failure. 1228 */ 1229 int32_t 1230 ocs_scsi_ini_io_init(ocs_io_t *io) 1231 { 1232 return 0; 1233 } 1234 1235 /** 1236 * @brief Uninitialize SCSI IO 1237 * 1238 * Uninitialize initiator client private data in a SCSI io object 1239 * 1240 * @param io pointer to SCSI IO object 1241 * 1242 * @return returns 0 for success, a negative error code value for failure. 1243 */ 1244 int32_t 1245 ocs_scsi_ini_io_exit(ocs_io_t *io) 1246 { 1247 return 0; 1248 } 1249 /* 1250 * End of functions required by SCSI base driver API 1251 ***************************************************************************/ 1252 1253 static __inline void 1254 ocs_set_ccb_status(union ccb *ccb, cam_status status) 1255 { 1256 ccb->ccb_h.status &= ~CAM_STATUS_MASK; 1257 ccb->ccb_h.status |= status; 1258 } 1259 1260 static int32_t 1261 ocs_task_set_full_or_busy_cb(ocs_io_t *io, ocs_scsi_io_status_e scsi_status, 1262 uint32_t flags, void *arg) 1263 { 1264 1265 ocs_target_io_free(io); 1266 1267 return 0; 1268 } 1269 1270 /** 1271 * @brief send SCSI task set full or busy status 1272 * 1273 * A SCSI task set full or busy response is sent depending on whether 1274 * another IO is already active on the LUN. 1275 * 1276 * @param io pointer to IO context 1277 * 1278 * @return returns 0 for success, a negative error code value for failure. 1279 */ 1280 1281 static int32_t 1282 ocs_task_set_full_or_busy(ocs_io_t *io) 1283 { 1284 ocs_scsi_cmd_resp_t rsp = { 0 }; 1285 ocs_t *ocs = io->ocs; 1286 1287 /* 1288 * If there is another command for the LUN, then send task set full, 1289 * if this is the first one, then send the busy status. 1290 * 1291 * if 'busy sent' is FALSE, set it to TRUE and send BUSY 1292 * otherwise send FULL 1293 */ 1294 if (atomic_cmpset_acq_32(&io->node->tgt_node.busy_sent, FALSE, TRUE)) { 1295 rsp.scsi_status = SCSI_STATUS_BUSY; /* Busy */ 1296 printf("%s: busy [%s] tag=%x iiu=%d ihw=%d\n", __func__, 1297 io->node->display_name, io->tag, 1298 io->ocs->io_in_use, io->ocs->io_high_watermark); 1299 } else { 1300 rsp.scsi_status = SCSI_STATUS_TASK_SET_FULL; /* Task set full */ 1301 printf("%s: full tag=%x iiu=%d\n", __func__, io->tag, 1302 io->ocs->io_in_use); 1303 } 1304 1305 /* Log a message here indicating a busy or task set full state */ 1306 if (OCS_LOG_ENABLE_Q_FULL_BUSY_MSG(ocs)) { 1307 /* Log Task Set Full */ 1308 if (rsp.scsi_status == SCSI_STATUS_TASK_SET_FULL) { 1309 /* Task Set Full Message */ 1310 ocs_log_info(ocs, "OCS CAM TASK SET FULL. Tasks >= %d\n", 1311 ocs->io_high_watermark); 1312 } 1313 else if (rsp.scsi_status == SCSI_STATUS_BUSY) { 1314 /* Log Busy Message */ 1315 ocs_log_info(ocs, "OCS CAM SCSI BUSY\n"); 1316 } 1317 } 1318 1319 /* Send the response */ 1320 return 1321 ocs_scsi_send_resp(io, 0, &rsp, ocs_task_set_full_or_busy_cb, NULL); 1322 } 1323 1324 /** 1325 * @ingroup cam_io 1326 * @brief Process target IO completions 1327 * 1328 * @param io 1329 * @param scsi_status did the IO complete successfully 1330 * @param flags 1331 * @param arg application specific pointer provided in the call to ocs_target_io() 1332 * 1333 * @todo 1334 */ 1335 static int32_t ocs_scsi_target_io_cb(ocs_io_t *io, 1336 ocs_scsi_io_status_e scsi_status, 1337 uint32_t flags, void *arg) 1338 { 1339 union ccb *ccb = arg; 1340 struct ccb_scsiio *csio = &ccb->csio; 1341 struct ocs_softc *ocs = csio->ccb_h.ccb_ocs_ptr; 1342 uint32_t cam_dir = ccb->ccb_h.flags & CAM_DIR_MASK; 1343 uint32_t io_is_done = 1344 (ccb->ccb_h.flags & CAM_SEND_STATUS) == CAM_SEND_STATUS; 1345 1346 ccb->ccb_h.status &= ~CAM_SIM_QUEUED; 1347 1348 if (CAM_DIR_NONE != cam_dir) { 1349 bus_dmasync_op_t op; 1350 1351 if (CAM_DIR_IN == cam_dir) { 1352 op = BUS_DMASYNC_POSTREAD; 1353 } else { 1354 op = BUS_DMASYNC_POSTWRITE; 1355 } 1356 /* Synchronize the DMA memory with the CPU and free the mapping */ 1357 bus_dmamap_sync(ocs->buf_dmat, io->tgt_io.dmap, op); 1358 if (io->tgt_io.flags & OCS_CAM_IO_F_DMAPPED) { 1359 bus_dmamap_unload(ocs->buf_dmat, io->tgt_io.dmap); 1360 } 1361 } 1362 1363 if (io->tgt_io.sendresp) { 1364 io->tgt_io.sendresp = 0; 1365 ocs_scsi_cmd_resp_t resp = { 0 }; 1366 io->tgt_io.state = OCS_CAM_IO_RESP; 1367 resp.scsi_status = scsi_status; 1368 if (ccb->ccb_h.flags & CAM_SEND_SENSE) { 1369 resp.sense_data = (uint8_t *)&csio->sense_data; 1370 resp.sense_data_length = csio->sense_len; 1371 } 1372 resp.residual = io->exp_xfer_len - io->transferred; 1373 1374 return ocs_scsi_send_resp(io, 0, &resp, ocs_scsi_target_io_cb, ccb); 1375 } 1376 1377 switch (scsi_status) { 1378 case OCS_SCSI_STATUS_GOOD: 1379 ocs_set_ccb_status(ccb, CAM_REQ_CMP); 1380 break; 1381 case OCS_SCSI_STATUS_ABORTED: 1382 ocs_set_ccb_status(ccb, CAM_REQ_ABORTED); 1383 break; 1384 default: 1385 ocs_set_ccb_status(ccb, CAM_REQ_CMP_ERR); 1386 } 1387 1388 if (io_is_done) { 1389 if ((io->tgt_io.flags & OCS_CAM_IO_F_ABORT_NOTIFY) == 0) { 1390 ocs_target_io_free(io); 1391 } 1392 } else { 1393 io->tgt_io.state = OCS_CAM_IO_DATA_DONE; 1394 /*device_printf(ocs->dev, "%s: CTIO state=%d tag=%#x\n", 1395 __func__, io->tgt_io.state, io->tag);*/ 1396 } 1397 1398 xpt_done(ccb); 1399 1400 return 0; 1401 } 1402 1403 /** 1404 * @note 1. Since the CCB is assigned to the ocs_io_t on an XPT_CONT_TARGET_IO 1405 * action, if an initiator aborts a command prior to the SIM receiving 1406 * a CTIO, the IO's CCB will be NULL. 1407 */ 1408 static int32_t 1409 ocs_io_abort_cb(ocs_io_t *io, ocs_scsi_io_status_e scsi_status, uint32_t flags, void *arg) 1410 { 1411 struct ocs_softc *ocs = NULL; 1412 ocs_io_t *tmfio = arg; 1413 ocs_scsi_tmf_resp_e tmf_resp = OCS_SCSI_TMF_FUNCTION_COMPLETE; 1414 int32_t rc = 0; 1415 1416 ocs = io->ocs; 1417 1418 io->tgt_io.flags &= ~OCS_CAM_IO_F_ABORT_DEV; 1419 1420 /* A good status indicates the IO was aborted and will be completed in 1421 * the IO's completion handler. Handle the other cases here. */ 1422 switch (scsi_status) { 1423 case OCS_SCSI_STATUS_GOOD: 1424 break; 1425 case OCS_SCSI_STATUS_NO_IO: 1426 break; 1427 default: 1428 device_printf(ocs->dev, "%s: unhandled status %d\n", 1429 __func__, scsi_status); 1430 tmf_resp = OCS_SCSI_TMF_FUNCTION_REJECTED; 1431 rc = -1; 1432 } 1433 1434 ocs_scsi_send_tmf_resp(tmfio, tmf_resp, NULL, ocs_target_tmf_cb, NULL); 1435 1436 return rc; 1437 } 1438 1439 /** 1440 * @ingroup cam_io 1441 * @brief Process initiator IO completions 1442 * 1443 * @param io 1444 * @param scsi_status did the IO complete successfully 1445 * @param rsp pointer to response buffer 1446 * @param flags 1447 * @param arg application specific pointer provided in the call to ocs_target_io() 1448 * 1449 * @todo 1450 */ 1451 static int32_t ocs_scsi_initiator_io_cb(ocs_io_t *io, 1452 ocs_scsi_io_status_e scsi_status, 1453 ocs_scsi_cmd_resp_t *rsp, 1454 uint32_t flags, void *arg) 1455 { 1456 union ccb *ccb = arg; 1457 struct ccb_scsiio *csio = &ccb->csio; 1458 struct ocs_softc *ocs = csio->ccb_h.ccb_ocs_ptr; 1459 uint32_t cam_dir = ccb->ccb_h.flags & CAM_DIR_MASK; 1460 cam_status ccb_status= CAM_REQ_CMP_ERR; 1461 1462 if (CAM_DIR_NONE != cam_dir) { 1463 bus_dmasync_op_t op; 1464 1465 if (CAM_DIR_IN == cam_dir) { 1466 op = BUS_DMASYNC_POSTREAD; 1467 } else { 1468 op = BUS_DMASYNC_POSTWRITE; 1469 } 1470 /* Synchronize the DMA memory with the CPU and free the mapping */ 1471 bus_dmamap_sync(ocs->buf_dmat, io->tgt_io.dmap, op); 1472 if (io->tgt_io.flags & OCS_CAM_IO_F_DMAPPED) { 1473 bus_dmamap_unload(ocs->buf_dmat, io->tgt_io.dmap); 1474 } 1475 } 1476 1477 if (scsi_status == OCS_SCSI_STATUS_CHECK_RESPONSE) { 1478 csio->scsi_status = rsp->scsi_status; 1479 if (SCSI_STATUS_OK != rsp->scsi_status) { 1480 ccb_status = CAM_SCSI_STATUS_ERROR; 1481 } 1482 1483 csio->resid = rsp->residual; 1484 if (rsp->residual > 0) { 1485 uint32_t length = rsp->response_wire_length; 1486 /* underflow */ 1487 if (csio->dxfer_len == (length + csio->resid)) { 1488 ccb_status = CAM_REQ_CMP; 1489 } 1490 } else if (rsp->residual < 0) { 1491 ccb_status = CAM_DATA_RUN_ERR; 1492 } 1493 1494 if ((rsp->sense_data_length) && 1495 !(ccb->ccb_h.flags & (CAM_SENSE_PHYS | CAM_SENSE_PTR))) { 1496 uint32_t sense_len = 0; 1497 1498 ccb->ccb_h.status |= CAM_AUTOSNS_VALID; 1499 if (rsp->sense_data_length < csio->sense_len) { 1500 csio->sense_resid = 1501 csio->sense_len - rsp->sense_data_length; 1502 sense_len = rsp->sense_data_length; 1503 } else { 1504 csio->sense_resid = 0; 1505 sense_len = csio->sense_len; 1506 } 1507 ocs_memcpy(&csio->sense_data, rsp->sense_data, sense_len); 1508 } 1509 } else if (scsi_status != OCS_SCSI_STATUS_GOOD) { 1510 ccb_status = CAM_REQ_CMP_ERR; 1511 ocs_set_ccb_status(ccb, ccb_status); 1512 csio->ccb_h.status |= CAM_DEV_QFRZN; 1513 xpt_freeze_devq(csio->ccb_h.path, 1); 1514 1515 } else { 1516 ccb_status = CAM_REQ_CMP; 1517 } 1518 1519 ocs_set_ccb_status(ccb, ccb_status); 1520 1521 ocs_scsi_io_free(io); 1522 1523 csio->ccb_h.ccb_io_ptr = NULL; 1524 csio->ccb_h.ccb_ocs_ptr = NULL; 1525 ccb->ccb_h.status &= ~CAM_SIM_QUEUED; 1526 1527 xpt_done(ccb); 1528 1529 return 0; 1530 } 1531 1532 /** 1533 * @brief Load scatter-gather list entries into an IO 1534 * 1535 * This routine relies on the driver instance's software context pointer and 1536 * the IO object pointer having been already assigned to hooks in the CCB. 1537 * Although the routine does not return success/fail, callers can look at the 1538 * n_sge member to determine if the mapping failed (0 on failure). 1539 * 1540 * @param arg pointer to the CAM ccb for this IO 1541 * @param seg DMA address/length pairs 1542 * @param nseg number of DMA address/length pairs 1543 * @param error any errors while mapping the IO 1544 */ 1545 static void 1546 ocs_scsi_dmamap_load(void *arg, bus_dma_segment_t *seg, int nseg, int error) 1547 { 1548 ocs_dmamap_load_arg_t *sglarg = (ocs_dmamap_load_arg_t*) arg; 1549 1550 if (error) { 1551 printf("%s: seg=%p nseg=%d error=%d\n", 1552 __func__, seg, nseg, error); 1553 sglarg->rc = -1; 1554 } else { 1555 uint32_t i = 0; 1556 uint32_t c = 0; 1557 1558 if ((sglarg->sgl_count + nseg) > sglarg->sgl_max) { 1559 printf("%s: sgl_count=%d nseg=%d max=%d\n", __func__, 1560 sglarg->sgl_count, nseg, sglarg->sgl_max); 1561 sglarg->rc = -2; 1562 return; 1563 } 1564 1565 for (i = 0, c = sglarg->sgl_count; i < nseg; i++, c++) { 1566 sglarg->sgl[c].addr = seg[i].ds_addr; 1567 sglarg->sgl[c].len = seg[i].ds_len; 1568 } 1569 1570 sglarg->sgl_count = c; 1571 1572 sglarg->rc = 0; 1573 } 1574 } 1575 1576 /** 1577 * @brief Build a scatter-gather list from a CAM CCB 1578 * 1579 * @param ocs the driver instance's software context 1580 * @param ccb pointer to the CCB 1581 * @param io pointer to the previously allocated IO object 1582 * @param sgl pointer to SGL 1583 * @param sgl_max number of entries in sgl 1584 * 1585 * @return 0 on success, non-zero otherwise 1586 */ 1587 static int32_t 1588 ocs_build_scsi_sgl(struct ocs_softc *ocs, union ccb *ccb, ocs_io_t *io, 1589 ocs_scsi_sgl_t *sgl, uint32_t sgl_max) 1590 { 1591 ocs_dmamap_load_arg_t dmaarg; 1592 int32_t err = 0; 1593 1594 if (!ocs || !ccb || !io || !sgl) { 1595 printf("%s: bad param o=%p c=%p i=%p s=%p\n", __func__, 1596 ocs, ccb, io, sgl); 1597 return -1; 1598 } 1599 1600 io->tgt_io.flags &= ~OCS_CAM_IO_F_DMAPPED; 1601 1602 dmaarg.sgl = sgl; 1603 dmaarg.sgl_count = 0; 1604 dmaarg.sgl_max = sgl_max; 1605 dmaarg.rc = 0; 1606 1607 err = bus_dmamap_load_ccb(ocs->buf_dmat, io->tgt_io.dmap, ccb, 1608 ocs_scsi_dmamap_load, &dmaarg, 0); 1609 1610 if (err || dmaarg.rc) { 1611 device_printf( 1612 ocs->dev, "%s: bus_dmamap_load_ccb error (%d %d)\n", 1613 __func__, err, dmaarg.rc); 1614 return -1; 1615 } 1616 1617 io->tgt_io.flags |= OCS_CAM_IO_F_DMAPPED; 1618 return dmaarg.sgl_count; 1619 } 1620 1621 /** 1622 * @ingroup cam_io 1623 * @brief Send a target IO 1624 * 1625 * @param ocs the driver instance's software context 1626 * @param ccb pointer to the CCB 1627 * 1628 * @return 0 on success, non-zero otherwise 1629 */ 1630 static int32_t 1631 ocs_target_io(struct ocs_softc *ocs, union ccb *ccb) 1632 { 1633 struct ccb_scsiio *csio = &ccb->csio; 1634 ocs_io_t *io = NULL; 1635 uint32_t cam_dir = ccb->ccb_h.flags & CAM_DIR_MASK; 1636 bool sendstatus = ccb->ccb_h.flags & CAM_SEND_STATUS; 1637 uint32_t xferlen = csio->dxfer_len; 1638 int32_t rc = 0; 1639 1640 io = ocs_scsi_find_io(ocs, csio->tag_id); 1641 if (io == NULL) { 1642 ocs_set_ccb_status(ccb, CAM_REQ_CMP_ERR); 1643 panic("bad tag value"); 1644 return 1; 1645 } 1646 1647 /* Received an ABORT TASK for this IO */ 1648 if (io->tgt_io.flags & OCS_CAM_IO_F_ABORT_RECV) { 1649 /*device_printf(ocs->dev, 1650 "%s: XPT_CONT_TARGET_IO state=%d tag=%#x xid=%#x flags=%#x\n", 1651 __func__, io->tgt_io.state, io->tag, io->init_task_tag, 1652 io->tgt_io.flags);*/ 1653 io->tgt_io.flags |= OCS_CAM_IO_F_ABORT_CAM; 1654 1655 if (ccb->ccb_h.flags & CAM_SEND_STATUS) { 1656 ocs_set_ccb_status(ccb, CAM_REQ_CMP); 1657 ocs_target_io_free(io); 1658 return 1; 1659 } 1660 1661 ocs_set_ccb_status(ccb, CAM_REQ_ABORTED); 1662 1663 return 1; 1664 } 1665 1666 io->tgt_io.app = ccb; 1667 1668 ocs_set_ccb_status(ccb, CAM_REQ_INPROG); 1669 ccb->ccb_h.status |= CAM_SIM_QUEUED; 1670 1671 csio->ccb_h.ccb_ocs_ptr = ocs; 1672 csio->ccb_h.ccb_io_ptr = io; 1673 1674 if ((sendstatus && (xferlen == 0))) { 1675 ocs_scsi_cmd_resp_t resp = { 0 }; 1676 1677 ocs_assert(ccb->ccb_h.flags & CAM_SEND_STATUS, -1); 1678 1679 io->tgt_io.state = OCS_CAM_IO_RESP; 1680 1681 resp.scsi_status = csio->scsi_status; 1682 1683 if (ccb->ccb_h.flags & CAM_SEND_SENSE) { 1684 resp.sense_data = (uint8_t *)&csio->sense_data; 1685 resp.sense_data_length = csio->sense_len; 1686 } 1687 1688 resp.residual = io->exp_xfer_len - io->transferred; 1689 rc = ocs_scsi_send_resp(io, 0, &resp, ocs_scsi_target_io_cb, ccb); 1690 1691 } else if (xferlen != 0) { 1692 ocs_scsi_sgl_t sgl[OCS_FC_MAX_SGL]; 1693 int32_t sgl_count = 0; 1694 1695 io->tgt_io.state = OCS_CAM_IO_DATA; 1696 1697 if (sendstatus) 1698 io->tgt_io.sendresp = 1; 1699 1700 sgl_count = ocs_build_scsi_sgl(ocs, ccb, io, sgl, ARRAY_SIZE(sgl)); 1701 if (sgl_count > 0) { 1702 if (cam_dir == CAM_DIR_IN) { 1703 rc = ocs_scsi_send_rd_data(io, 0, NULL, sgl, 1704 sgl_count, csio->dxfer_len, 1705 ocs_scsi_target_io_cb, ccb); 1706 } else if (cam_dir == CAM_DIR_OUT) { 1707 rc = ocs_scsi_recv_wr_data(io, 0, NULL, sgl, 1708 sgl_count, csio->dxfer_len, 1709 ocs_scsi_target_io_cb, ccb); 1710 } else { 1711 device_printf(ocs->dev, "%s:" 1712 " unknown CAM direction %#x\n", 1713 __func__, cam_dir); 1714 ocs_set_ccb_status(ccb, CAM_REQ_INVALID); 1715 rc = 1; 1716 } 1717 } else { 1718 device_printf(ocs->dev, "%s: building SGL failed\n", 1719 __func__); 1720 ocs_set_ccb_status(ccb, CAM_REQ_CMP_ERR); 1721 rc = 1; 1722 } 1723 } else { 1724 device_printf(ocs->dev, "%s: Wrong value xfer and sendstatus" 1725 " are 0 \n", __func__); 1726 ocs_set_ccb_status(ccb, CAM_REQ_INVALID); 1727 rc = 1; 1728 1729 } 1730 1731 if (rc) { 1732 ocs_set_ccb_status(ccb, CAM_REQ_CMP_ERR); 1733 ccb->ccb_h.status &= ~CAM_SIM_QUEUED; 1734 io->tgt_io.state = OCS_CAM_IO_DATA_DONE; 1735 device_printf(ocs->dev, "%s: CTIO state=%d tag=%#x\n", 1736 __func__, io->tgt_io.state, io->tag); 1737 if ((sendstatus && (xferlen == 0))) { 1738 ocs_target_io_free(io); 1739 } 1740 } 1741 1742 return rc; 1743 } 1744 1745 static int32_t 1746 ocs_target_tmf_cb(ocs_io_t *io, ocs_scsi_io_status_e scsi_status, uint32_t flags, 1747 void *arg) 1748 { 1749 1750 /*device_printf(io->ocs->dev, "%s: tag=%x io=%p s=%#x\n", 1751 __func__, io->tag, io, scsi_status);*/ 1752 ocs_scsi_io_complete(io); 1753 1754 return 0; 1755 } 1756 1757 /** 1758 * @ingroup cam_io 1759 * @brief Send an initiator IO 1760 * 1761 * @param ocs the driver instance's software context 1762 * @param ccb pointer to the CCB 1763 * 1764 * @return 0 on success, non-zero otherwise 1765 */ 1766 static int32_t 1767 ocs_initiator_io(struct ocs_softc *ocs, union ccb *ccb) 1768 { 1769 int32_t rc; 1770 struct ccb_scsiio *csio = &ccb->csio; 1771 struct ccb_hdr *ccb_h = &csio->ccb_h; 1772 ocs_node_t *node = NULL; 1773 ocs_io_t *io = NULL; 1774 ocs_scsi_sgl_t sgl[OCS_FC_MAX_SGL]; 1775 int32_t sgl_count; 1776 1777 ocs_fcport *fcp = NULL; 1778 fcp = FCPORT(ocs, cam_sim_bus(xpt_path_sim((ccb)->ccb_h.path))); 1779 if (fcp == NULL) { 1780 device_printf(ocs->dev, "%s: fcp is NULL\n", __func__); 1781 return -1; 1782 } 1783 1784 if (fcp->tgt[ccb_h->target_id].state == OCS_TGT_STATE_LOST) { 1785 device_printf(ocs->dev, "%s: device LOST %d\n", __func__, 1786 ccb_h->target_id); 1787 return CAM_REQUEUE_REQ; 1788 } 1789 1790 if (fcp->tgt[ccb_h->target_id].state == OCS_TGT_STATE_NONE) { 1791 device_printf(ocs->dev, "%s: device not ready %d\n", __func__, 1792 ccb_h->target_id); 1793 return CAM_SEL_TIMEOUT; 1794 } 1795 1796 node = ocs_node_get_instance(ocs, fcp->tgt[ccb_h->target_id].node_id); 1797 if (node == NULL) { 1798 device_printf(ocs->dev, "%s: no device %d\n", __func__, 1799 ccb_h->target_id); 1800 return CAM_SEL_TIMEOUT; 1801 } 1802 1803 if (!node->targ) { 1804 device_printf(ocs->dev, "%s: not target device %d\n", __func__, 1805 ccb_h->target_id); 1806 return CAM_SEL_TIMEOUT; 1807 } 1808 1809 io = ocs_scsi_io_alloc(node, OCS_SCSI_IO_ROLE_ORIGINATOR); 1810 if (io == NULL) { 1811 device_printf(ocs->dev, "%s: unable to alloc IO\n", __func__); 1812 return -1; 1813 } 1814 1815 /* eventhough this is INI, use target structure as ocs_build_scsi_sgl 1816 * only references the tgt_io part of an ocs_io_t */ 1817 io->tgt_io.app = ccb; 1818 1819 csio->ccb_h.ccb_ocs_ptr = ocs; 1820 csio->ccb_h.ccb_io_ptr = io; 1821 1822 sgl_count = ocs_build_scsi_sgl(ocs, ccb, io, sgl, ARRAY_SIZE(sgl)); 1823 if (sgl_count < 0) { 1824 ocs_scsi_io_free(io); 1825 device_printf(ocs->dev, "%s: building SGL failed\n", __func__); 1826 return -1; 1827 } 1828 1829 if (ccb->ccb_h.timeout == CAM_TIME_INFINITY) { 1830 io->timeout = 0; 1831 } else if (ccb->ccb_h.timeout == CAM_TIME_DEFAULT) { 1832 io->timeout = OCS_CAM_IO_TIMEOUT; 1833 } else { 1834 io->timeout = ccb->ccb_h.timeout; 1835 } 1836 1837 switch (ccb->ccb_h.flags & CAM_DIR_MASK) { 1838 case CAM_DIR_NONE: 1839 rc = ocs_scsi_send_nodata_io(node, io, ccb_h->target_lun, 1840 ccb->ccb_h.flags & CAM_CDB_POINTER ? 1841 csio->cdb_io.cdb_ptr: csio->cdb_io.cdb_bytes, 1842 csio->cdb_len, 1843 ocs_scsi_initiator_io_cb, ccb); 1844 break; 1845 case CAM_DIR_IN: 1846 rc = ocs_scsi_send_rd_io(node, io, ccb_h->target_lun, 1847 ccb->ccb_h.flags & CAM_CDB_POINTER ? 1848 csio->cdb_io.cdb_ptr: csio->cdb_io.cdb_bytes, 1849 csio->cdb_len, 1850 NULL, 1851 sgl, sgl_count, csio->dxfer_len, 1852 ocs_scsi_initiator_io_cb, ccb); 1853 break; 1854 case CAM_DIR_OUT: 1855 rc = ocs_scsi_send_wr_io(node, io, ccb_h->target_lun, 1856 ccb->ccb_h.flags & CAM_CDB_POINTER ? 1857 csio->cdb_io.cdb_ptr: csio->cdb_io.cdb_bytes, 1858 csio->cdb_len, 1859 NULL, 1860 sgl, sgl_count, csio->dxfer_len, 1861 ocs_scsi_initiator_io_cb, ccb); 1862 break; 1863 default: 1864 panic("%s invalid data direction %08x\n", __func__, 1865 ccb->ccb_h.flags); 1866 break; 1867 } 1868 1869 return rc; 1870 } 1871 1872 static uint32_t 1873 ocs_fcp_change_role(struct ocs_softc *ocs, ocs_fcport *fcp, uint32_t new_role) 1874 { 1875 1876 uint32_t rc = 0, was = 0, i = 0; 1877 ocs_vport_spec_t *vport = fcp->vport; 1878 1879 for (was = 0, i = 0; i < (ocs->num_vports + 1); i++) { 1880 if (FCPORT(ocs, i)->role != KNOB_ROLE_NONE) 1881 was++; 1882 } 1883 1884 // Physical port 1885 if ((was == 0) || (vport == NULL)) { 1886 fcp->role = new_role; 1887 if (vport == NULL) { 1888 ocs->enable_ini = (new_role & KNOB_ROLE_INITIATOR)? 1:0; 1889 ocs->enable_tgt = (new_role & KNOB_ROLE_TARGET)? 1:0; 1890 } else { 1891 vport->enable_ini = (new_role & KNOB_ROLE_INITIATOR)? 1:0; 1892 vport->enable_tgt = (new_role & KNOB_ROLE_TARGET)? 1:0; 1893 } 1894 1895 rc = ocs_xport_control(ocs->xport, OCS_XPORT_PORT_OFFLINE); 1896 if (rc) { 1897 ocs_log_debug(ocs, "port offline failed : %d\n", rc); 1898 } 1899 1900 rc = ocs_xport_control(ocs->xport, OCS_XPORT_PORT_ONLINE); 1901 if (rc) { 1902 ocs_log_debug(ocs, "port online failed : %d\n", rc); 1903 } 1904 1905 return 0; 1906 } 1907 1908 if ((fcp->role != KNOB_ROLE_NONE)){ 1909 fcp->role = new_role; 1910 vport->enable_ini = (new_role & KNOB_ROLE_INITIATOR)? 1:0; 1911 vport->enable_tgt = (new_role & KNOB_ROLE_TARGET)? 1:0; 1912 /* New Sport will be created in sport deleted cb */ 1913 return ocs_sport_vport_del(ocs, ocs->domain, vport->wwpn, vport->wwnn); 1914 } 1915 1916 fcp->role = new_role; 1917 1918 vport->enable_ini = (new_role & KNOB_ROLE_INITIATOR)? 1:0; 1919 vport->enable_tgt = (new_role & KNOB_ROLE_TARGET)? 1:0; 1920 1921 if (fcp->role != KNOB_ROLE_NONE) { 1922 return ocs_sport_vport_alloc(ocs->domain, vport); 1923 } 1924 1925 return (0); 1926 } 1927 1928 /** 1929 * @ingroup cam_api 1930 * @brief Process CAM actions 1931 * 1932 * The driver supplies this routine to the CAM during intialization and 1933 * is the main entry point for processing CAM Control Blocks (CCB) 1934 * 1935 * @param sim pointer to the SCSI Interface Module 1936 * @param ccb CAM control block 1937 * 1938 * @todo 1939 * - populate path inquiry data via info retrieved from SLI port 1940 */ 1941 static void 1942 ocs_action(struct cam_sim *sim, union ccb *ccb) 1943 { 1944 struct ocs_softc *ocs = (struct ocs_softc *)cam_sim_softc(sim); 1945 struct ccb_hdr *ccb_h = &ccb->ccb_h; 1946 1947 int32_t rc, bus; 1948 bus = cam_sim_bus(sim); 1949 1950 switch (ccb_h->func_code) { 1951 case XPT_SCSI_IO: 1952 1953 if ((ccb->ccb_h.flags & CAM_CDB_POINTER) != 0) { 1954 if ((ccb->ccb_h.flags & CAM_CDB_PHYS) != 0) { 1955 ccb->ccb_h.status = CAM_REQ_INVALID; 1956 xpt_done(ccb); 1957 break; 1958 } 1959 } 1960 1961 rc = ocs_initiator_io(ocs, ccb); 1962 if (0 == rc) { 1963 ocs_set_ccb_status(ccb, CAM_REQ_INPROG | CAM_SIM_QUEUED); 1964 break; 1965 } else { 1966 if (rc == CAM_REQUEUE_REQ) { 1967 cam_freeze_devq(ccb->ccb_h.path); 1968 cam_release_devq(ccb->ccb_h.path, RELSIM_RELEASE_AFTER_TIMEOUT, 0, 100, 0); 1969 ccb->ccb_h.status = CAM_REQUEUE_REQ; 1970 xpt_done(ccb); 1971 break; 1972 } 1973 1974 ccb->ccb_h.status &= ~CAM_SIM_QUEUED; 1975 if (rc > 0) { 1976 ocs_set_ccb_status(ccb, rc); 1977 } else { 1978 ocs_set_ccb_status(ccb, CAM_SEL_TIMEOUT); 1979 } 1980 } 1981 xpt_done(ccb); 1982 break; 1983 case XPT_PATH_INQ: 1984 { 1985 struct ccb_pathinq *cpi = &ccb->cpi; 1986 struct ccb_pathinq_settings_fc *fc = &cpi->xport_specific.fc; 1987 1988 uint64_t wwn = 0; 1989 ocs_xport_stats_t value; 1990 1991 cpi->version_num = 1; 1992 1993 cpi->protocol = PROTO_SCSI; 1994 cpi->protocol_version = SCSI_REV_SPC; 1995 1996 if (ocs->ocs_xport == OCS_XPORT_FC) { 1997 cpi->transport = XPORT_FC; 1998 } else { 1999 cpi->transport = XPORT_UNKNOWN; 2000 } 2001 2002 cpi->transport_version = 0; 2003 2004 /* Set the transport parameters of the SIM */ 2005 ocs_xport_status(ocs->xport, OCS_XPORT_LINK_SPEED, &value); 2006 fc->bitrate = value.value * 1000; /* speed in Mbps */ 2007 2008 wwn = *((uint64_t *)ocs_scsi_get_property_ptr(ocs, OCS_SCSI_WWPN)); 2009 fc->wwpn = be64toh(wwn); 2010 2011 wwn = *((uint64_t *)ocs_scsi_get_property_ptr(ocs, OCS_SCSI_WWNN)); 2012 fc->wwnn = be64toh(wwn); 2013 2014 if (ocs->domain && ocs->domain->attached) { 2015 fc->port = ocs->domain->sport->fc_id; 2016 } 2017 2018 if (ocs->config_tgt) { 2019 cpi->target_sprt = 2020 PIT_PROCESSOR | PIT_DISCONNECT | PIT_TERM_IO; 2021 } 2022 2023 cpi->hba_misc = PIM_NOBUSRESET | PIM_UNMAPPED; 2024 cpi->hba_misc |= PIM_EXTLUNS | PIM_NOSCAN; 2025 2026 cpi->hba_inquiry = PI_TAG_ABLE; 2027 cpi->max_target = OCS_MAX_TARGETS; 2028 cpi->initiator_id = ocs->max_remote_nodes + 1; 2029 2030 if (!ocs->enable_ini) { 2031 cpi->hba_misc |= PIM_NOINITIATOR; 2032 } 2033 2034 cpi->max_lun = OCS_MAX_LUN; 2035 cpi->bus_id = cam_sim_bus(sim); 2036 2037 /* Need to supply a base transfer speed prior to linking up 2038 * Worst case, this would be FC 1Gbps */ 2039 cpi->base_transfer_speed = 1 * 1000 * 1000; 2040 2041 /* Calculate the max IO supported 2042 * Worst case would be an OS page per SGL entry */ 2043 cpi->maxio = PAGE_SIZE * 2044 (ocs_scsi_get_property(ocs, OCS_SCSI_MAX_SGL) - 1); 2045 2046 strncpy(cpi->sim_vid, "FreeBSD", SIM_IDLEN); 2047 strncpy(cpi->hba_vid, "Emulex", HBA_IDLEN); 2048 strncpy(cpi->dev_name, cam_sim_name(sim), DEV_IDLEN); 2049 cpi->unit_number = cam_sim_unit(sim); 2050 2051 cpi->ccb_h.status = CAM_REQ_CMP; 2052 xpt_done(ccb); 2053 break; 2054 } 2055 case XPT_GET_TRAN_SETTINGS: 2056 { 2057 struct ccb_trans_settings *cts = &ccb->cts; 2058 struct ccb_trans_settings_scsi *scsi = &cts->proto_specific.scsi; 2059 struct ccb_trans_settings_fc *fc = &cts->xport_specific.fc; 2060 ocs_xport_stats_t value; 2061 ocs_fcport *fcp = FCPORT(ocs, bus); 2062 ocs_node_t *fnode = NULL; 2063 2064 if (ocs->ocs_xport != OCS_XPORT_FC) { 2065 ocs_set_ccb_status(ccb, CAM_REQ_INVALID); 2066 xpt_done(ccb); 2067 break; 2068 } 2069 2070 fnode = ocs_node_get_instance(ocs, fcp->tgt[cts->ccb_h.target_id].node_id); 2071 if (fnode == NULL) { 2072 ocs_set_ccb_status(ccb, CAM_DEV_NOT_THERE); 2073 xpt_done(ccb); 2074 break; 2075 } 2076 2077 cts->protocol = PROTO_SCSI; 2078 cts->protocol_version = SCSI_REV_SPC2; 2079 cts->transport = XPORT_FC; 2080 cts->transport_version = 2; 2081 2082 scsi->valid = CTS_SCSI_VALID_TQ; 2083 scsi->flags = CTS_SCSI_FLAGS_TAG_ENB; 2084 2085 /* speed in Mbps */ 2086 ocs_xport_status(ocs->xport, OCS_XPORT_LINK_SPEED, &value); 2087 fc->bitrate = value.value * 100; 2088 2089 fc->wwpn = ocs_node_get_wwpn(fnode); 2090 2091 fc->wwnn = ocs_node_get_wwnn(fnode); 2092 2093 fc->port = fnode->rnode.fc_id; 2094 2095 fc->valid = CTS_FC_VALID_SPEED | 2096 CTS_FC_VALID_WWPN | 2097 CTS_FC_VALID_WWNN | 2098 CTS_FC_VALID_PORT; 2099 2100 ocs_set_ccb_status(ccb, CAM_REQ_CMP); 2101 xpt_done(ccb); 2102 break; 2103 } 2104 case XPT_SET_TRAN_SETTINGS: 2105 ocs_set_ccb_status(ccb, CAM_REQ_CMP); 2106 xpt_done(ccb); 2107 break; 2108 2109 case XPT_CALC_GEOMETRY: 2110 cam_calc_geometry(&ccb->ccg, TRUE); 2111 xpt_done(ccb); 2112 break; 2113 2114 case XPT_GET_SIM_KNOB: 2115 { 2116 struct ccb_sim_knob *knob = &ccb->knob; 2117 uint64_t wwn = 0; 2118 ocs_fcport *fcp = FCPORT(ocs, bus); 2119 2120 if (ocs->ocs_xport != OCS_XPORT_FC) { 2121 ocs_set_ccb_status(ccb, CAM_REQ_INVALID); 2122 xpt_done(ccb); 2123 break; 2124 } 2125 2126 if (bus == 0) { 2127 wwn = *((uint64_t *)ocs_scsi_get_property_ptr(ocs, 2128 OCS_SCSI_WWNN)); 2129 knob->xport_specific.fc.wwnn = be64toh(wwn); 2130 2131 wwn = *((uint64_t *)ocs_scsi_get_property_ptr(ocs, 2132 OCS_SCSI_WWPN)); 2133 knob->xport_specific.fc.wwpn = be64toh(wwn); 2134 } else { 2135 knob->xport_specific.fc.wwnn = fcp->vport->wwnn; 2136 knob->xport_specific.fc.wwpn = fcp->vport->wwpn; 2137 } 2138 2139 knob->xport_specific.fc.role = fcp->role; 2140 knob->xport_specific.fc.valid = KNOB_VALID_ADDRESS | 2141 KNOB_VALID_ROLE; 2142 2143 ocs_set_ccb_status(ccb, CAM_REQ_CMP); 2144 xpt_done(ccb); 2145 break; 2146 } 2147 case XPT_SET_SIM_KNOB: 2148 { 2149 struct ccb_sim_knob *knob = &ccb->knob; 2150 bool role_changed = FALSE; 2151 ocs_fcport *fcp = FCPORT(ocs, bus); 2152 2153 if (ocs->ocs_xport != OCS_XPORT_FC) { 2154 ocs_set_ccb_status(ccb, CAM_REQ_INVALID); 2155 xpt_done(ccb); 2156 break; 2157 } 2158 2159 if (knob->xport_specific.fc.valid & KNOB_VALID_ADDRESS) { 2160 device_printf(ocs->dev, 2161 "%s: XPT_SET_SIM_KNOB wwnn=%llx wwpn=%llx\n", 2162 __func__, 2163 (unsigned long long)knob->xport_specific.fc.wwnn, 2164 (unsigned long long)knob->xport_specific.fc.wwpn); 2165 } 2166 2167 if (knob->xport_specific.fc.valid & KNOB_VALID_ROLE) { 2168 switch (knob->xport_specific.fc.role) { 2169 case KNOB_ROLE_NONE: 2170 if (fcp->role != KNOB_ROLE_NONE) { 2171 role_changed = TRUE; 2172 } 2173 break; 2174 case KNOB_ROLE_TARGET: 2175 if (fcp->role != KNOB_ROLE_TARGET) { 2176 role_changed = TRUE; 2177 } 2178 break; 2179 case KNOB_ROLE_INITIATOR: 2180 if (fcp->role != KNOB_ROLE_INITIATOR) { 2181 role_changed = TRUE; 2182 } 2183 break; 2184 case KNOB_ROLE_BOTH: 2185 if (fcp->role != KNOB_ROLE_BOTH) { 2186 role_changed = TRUE; 2187 } 2188 break; 2189 default: 2190 device_printf(ocs->dev, 2191 "%s: XPT_SET_SIM_KNOB unsupported role: %d\n", 2192 __func__, knob->xport_specific.fc.role); 2193 } 2194 2195 if (role_changed) { 2196 device_printf(ocs->dev, 2197 "BUS:%d XPT_SET_SIM_KNOB old_role: %d new_role: %d\n", 2198 bus, fcp->role, knob->xport_specific.fc.role); 2199 2200 ocs_fcp_change_role(ocs, fcp, knob->xport_specific.fc.role); 2201 } 2202 } 2203 2204 2205 2206 ocs_set_ccb_status(ccb, CAM_REQ_CMP); 2207 xpt_done(ccb); 2208 break; 2209 } 2210 case XPT_ABORT: 2211 { 2212 union ccb *accb = ccb->cab.abort_ccb; 2213 2214 switch (accb->ccb_h.func_code) { 2215 case XPT_ACCEPT_TARGET_IO: 2216 ocs_abort_atio(ocs, ccb); 2217 break; 2218 case XPT_IMMEDIATE_NOTIFY: 2219 ocs_abort_inot(ocs, ccb); 2220 break; 2221 case XPT_SCSI_IO: 2222 rc = ocs_abort_initiator_io(ocs, accb); 2223 if (rc) { 2224 ccb->ccb_h.status = CAM_UA_ABORT; 2225 } else { 2226 ccb->ccb_h.status = CAM_REQ_CMP; 2227 } 2228 2229 break; 2230 default: 2231 printf("abort of unknown func %#x\n", 2232 accb->ccb_h.func_code); 2233 ccb->ccb_h.status = CAM_REQ_INVALID; 2234 break; 2235 } 2236 break; 2237 } 2238 case XPT_RESET_BUS: 2239 if (ocs_xport_control(ocs->xport, OCS_XPORT_PORT_OFFLINE) == 0) { 2240 ocs_xport_control(ocs->xport, OCS_XPORT_PORT_ONLINE); 2241 2242 ocs_set_ccb_status(ccb, CAM_REQ_CMP); 2243 } else { 2244 ocs_set_ccb_status(ccb, CAM_REQ_CMP_ERR); 2245 } 2246 xpt_done(ccb); 2247 break; 2248 case XPT_RESET_DEV: 2249 { 2250 ocs_node_t *node = NULL; 2251 ocs_io_t *io = NULL; 2252 int32_t rc = 0; 2253 ocs_fcport *fcp = FCPORT(ocs, bus); 2254 2255 node = ocs_node_get_instance(ocs, fcp->tgt[ccb_h->target_id].node_id); 2256 if (node == NULL) { 2257 device_printf(ocs->dev, "%s: no device %d\n", 2258 __func__, ccb_h->target_id); 2259 ocs_set_ccb_status(ccb, CAM_DEV_NOT_THERE); 2260 xpt_done(ccb); 2261 break; 2262 } 2263 2264 io = ocs_scsi_io_alloc(node, OCS_SCSI_IO_ROLE_ORIGINATOR); 2265 if (io == NULL) { 2266 device_printf(ocs->dev, "%s: unable to alloc IO\n", 2267 __func__); 2268 ocs_set_ccb_status(ccb, CAM_REQ_CMP_ERR); 2269 xpt_done(ccb); 2270 break; 2271 } 2272 2273 rc = ocs_scsi_send_tmf(node, io, NULL, ccb_h->target_lun, 2274 OCS_SCSI_TMF_LOGICAL_UNIT_RESET, 2275 NULL, 0, 0, /* sgl, sgl_count, length */ 2276 ocs_initiator_tmf_cb, NULL/*arg*/); 2277 2278 if (rc) { 2279 ocs_set_ccb_status(ccb, CAM_REQ_CMP_ERR); 2280 } else { 2281 ocs_set_ccb_status(ccb, CAM_REQ_CMP); 2282 } 2283 2284 if (node->fcp2device) { 2285 ocs_reset_crn(node, ccb_h->target_lun); 2286 } 2287 2288 xpt_done(ccb); 2289 break; 2290 } 2291 case XPT_EN_LUN: /* target support */ 2292 { 2293 ocs_tgt_resource_t *trsrc = NULL; 2294 uint32_t status = 0; 2295 ocs_fcport *fcp = FCPORT(ocs, bus); 2296 2297 device_printf(ocs->dev, "XPT_EN_LUN %sable %d:%d\n", 2298 ccb->cel.enable ? "en" : "dis", 2299 ccb->ccb_h.target_id, 2300 (unsigned int)ccb->ccb_h.target_lun); 2301 2302 trsrc = ocs_tgt_resource_get(fcp, &ccb->ccb_h, &status); 2303 if (trsrc) { 2304 trsrc->enabled = ccb->cel.enable; 2305 2306 /* Abort all ATIO/INOT on LUN disable */ 2307 if (trsrc->enabled == FALSE) { 2308 ocs_tgt_resource_abort(ocs, trsrc); 2309 } else { 2310 STAILQ_INIT(&trsrc->atio); 2311 STAILQ_INIT(&trsrc->inot); 2312 } 2313 status = CAM_REQ_CMP; 2314 } 2315 2316 ocs_set_ccb_status(ccb, status); 2317 xpt_done(ccb); 2318 break; 2319 } 2320 /* 2321 * The flow of target IOs in CAM is: 2322 * - CAM supplies a number of CCBs to the driver used for received 2323 * commands. 2324 * - when the driver receives a command, it copies the relevant 2325 * information to the CCB and returns it to the CAM using xpt_done() 2326 * - after the target server processes the request, it creates 2327 * a new CCB containing information on how to continue the IO and 2328 * passes that to the driver 2329 * - the driver processes the "continue IO" (a.k.a CTIO) CCB 2330 * - once the IO completes, the driver returns the CTIO to the CAM 2331 * using xpt_done() 2332 */ 2333 case XPT_ACCEPT_TARGET_IO: /* used to inform upper layer of 2334 received CDB (a.k.a. ATIO) */ 2335 case XPT_IMMEDIATE_NOTIFY: /* used to inform upper layer of other 2336 event (a.k.a. INOT) */ 2337 { 2338 ocs_tgt_resource_t *trsrc = NULL; 2339 uint32_t status = 0; 2340 ocs_fcport *fcp = FCPORT(ocs, bus); 2341 2342 /*printf("XPT_%s %p\n", ccb_h->func_code == XPT_ACCEPT_TARGET_IO ? 2343 "ACCEPT_TARGET_IO" : "IMMEDIATE_NOTIFY", ccb);*/ 2344 trsrc = ocs_tgt_resource_get(fcp, &ccb->ccb_h, &status); 2345 if (trsrc == NULL) { 2346 ocs_set_ccb_status(ccb, CAM_DEV_NOT_THERE); 2347 xpt_done(ccb); 2348 break; 2349 } 2350 2351 if (XPT_ACCEPT_TARGET_IO == ccb->ccb_h.func_code) { 2352 struct ccb_accept_tio *atio = NULL; 2353 2354 atio = (struct ccb_accept_tio *)ccb; 2355 atio->init_id = 0x0badbeef; 2356 atio->tag_id = 0xdeadc0de; 2357 2358 STAILQ_INSERT_TAIL(&trsrc->atio, &ccb->ccb_h, 2359 sim_links.stqe); 2360 } else { 2361 STAILQ_INSERT_TAIL(&trsrc->inot, &ccb->ccb_h, 2362 sim_links.stqe); 2363 } 2364 ccb->ccb_h.ccb_io_ptr = NULL; 2365 ccb->ccb_h.ccb_ocs_ptr = ocs; 2366 ocs_set_ccb_status(ccb, CAM_REQ_INPROG); 2367 /* 2368 * These actions give resources to the target driver. 2369 * If we didn't return here, this function would call 2370 * xpt_done(), signaling to the upper layers that an 2371 * IO or other event had arrived. 2372 */ 2373 break; 2374 } 2375 case XPT_NOTIFY_ACKNOWLEDGE: 2376 { 2377 ocs_io_t *io = NULL; 2378 ocs_io_t *abortio = NULL; 2379 2380 /* Get the IO reference for this tag */ 2381 io = ocs_scsi_find_io(ocs, ccb->cna2.tag_id); 2382 if (io == NULL) { 2383 device_printf(ocs->dev, 2384 "%s: XPT_NOTIFY_ACKNOWLEDGE no IO with tag %#x\n", 2385 __func__, ccb->cna2.tag_id); 2386 ocs_set_ccb_status(ccb, CAM_REQ_CMP_ERR); 2387 xpt_done(ccb); 2388 break; 2389 } 2390 2391 abortio = io->tgt_io.app; 2392 if (abortio) { 2393 abortio->tgt_io.flags &= ~OCS_CAM_IO_F_ABORT_NOTIFY; 2394 device_printf(ocs->dev, 2395 "%s: XPT_NOTIFY_ACK state=%d tag=%#x xid=%#x" 2396 " flags=%#x\n", __func__, abortio->tgt_io.state, 2397 abortio->tag, abortio->init_task_tag, 2398 abortio->tgt_io.flags); 2399 /* TMF response was sent in abort callback */ 2400 } else { 2401 ocs_scsi_send_tmf_resp(io, 2402 OCS_SCSI_TMF_FUNCTION_COMPLETE, 2403 NULL, ocs_target_tmf_cb, NULL); 2404 } 2405 2406 ocs_set_ccb_status(ccb, CAM_REQ_CMP); 2407 xpt_done(ccb); 2408 break; 2409 } 2410 case XPT_CONT_TARGET_IO: /* continue target IO, sending data/response (a.k.a. CTIO) */ 2411 if (ocs_target_io(ocs, ccb)) { 2412 device_printf(ocs->dev, 2413 "XPT_CONT_TARGET_IO failed flags=%x tag=%#x\n", 2414 ccb->ccb_h.flags, ccb->csio.tag_id); 2415 xpt_done(ccb); 2416 } 2417 break; 2418 default: 2419 device_printf(ocs->dev, "unhandled func_code = %#x\n", 2420 ccb_h->func_code); 2421 ccb_h->status = CAM_REQ_INVALID; 2422 xpt_done(ccb); 2423 break; 2424 } 2425 } 2426 2427 /** 2428 * @ingroup cam_api 2429 * @brief Process events 2430 * 2431 * @param sim pointer to the SCSI Interface Module 2432 * 2433 */ 2434 static void 2435 ocs_poll(struct cam_sim *sim) 2436 { 2437 printf("%s\n", __func__); 2438 } 2439 2440 static int32_t 2441 ocs_initiator_tmf_cb(ocs_io_t *io, ocs_scsi_io_status_e scsi_status, 2442 ocs_scsi_cmd_resp_t *rsp, uint32_t flags, void *arg) 2443 { 2444 int32_t rc = 0; 2445 2446 switch (scsi_status) { 2447 case OCS_SCSI_STATUS_GOOD: 2448 case OCS_SCSI_STATUS_NO_IO: 2449 break; 2450 case OCS_SCSI_STATUS_CHECK_RESPONSE: 2451 if (rsp->response_data_length == 0) { 2452 ocs_log_test(io->ocs, "check response without data?!?\n"); 2453 rc = -1; 2454 break; 2455 } 2456 2457 if (rsp->response_data[3] != 0) { 2458 ocs_log_test(io->ocs, "TMF status %08x\n", 2459 be32toh(*((uint32_t *)rsp->response_data))); 2460 rc = -1; 2461 break; 2462 } 2463 break; 2464 default: 2465 ocs_log_test(io->ocs, "status=%#x\n", scsi_status); 2466 rc = -1; 2467 } 2468 2469 ocs_scsi_io_free(io); 2470 2471 return rc; 2472 } 2473 2474 /** 2475 * @brief lookup target resource structure 2476 * 2477 * Arbitrarily support 2478 * - wildcard target ID + LU 2479 * - 0 target ID + non-wildcard LU 2480 * 2481 * @param ocs the driver instance's software context 2482 * @param ccb_h pointer to the CCB header 2483 * @param status returned status value 2484 * 2485 * @return pointer to the target resource, NULL if none available (e.g. if LU 2486 * is not enabled) 2487 */ 2488 static ocs_tgt_resource_t *ocs_tgt_resource_get(ocs_fcport *fcp, 2489 struct ccb_hdr *ccb_h, uint32_t *status) 2490 { 2491 target_id_t tid = ccb_h->target_id; 2492 lun_id_t lun = ccb_h->target_lun; 2493 2494 if (CAM_TARGET_WILDCARD == tid) { 2495 if (CAM_LUN_WILDCARD != lun) { 2496 *status = CAM_LUN_INVALID; 2497 return NULL; 2498 } 2499 return &fcp->targ_rsrc_wildcard; 2500 } else { 2501 if (lun < OCS_MAX_LUN) { 2502 return &fcp->targ_rsrc[lun]; 2503 } else { 2504 *status = CAM_LUN_INVALID; 2505 return NULL; 2506 } 2507 } 2508 2509 } 2510 2511 static int32_t 2512 ocs_tgt_resource_abort(struct ocs_softc *ocs, ocs_tgt_resource_t *trsrc) 2513 { 2514 union ccb *ccb = NULL; 2515 uint32_t count; 2516 2517 count = 0; 2518 do { 2519 ccb = (union ccb *)STAILQ_FIRST(&trsrc->atio); 2520 if (ccb) { 2521 STAILQ_REMOVE_HEAD(&trsrc->atio, sim_links.stqe); 2522 ccb->ccb_h.status = CAM_REQ_ABORTED; 2523 xpt_done(ccb); 2524 count++; 2525 } 2526 } while (ccb); 2527 2528 count = 0; 2529 do { 2530 ccb = (union ccb *)STAILQ_FIRST(&trsrc->inot); 2531 if (ccb) { 2532 STAILQ_REMOVE_HEAD(&trsrc->inot, sim_links.stqe); 2533 ccb->ccb_h.status = CAM_REQ_ABORTED; 2534 xpt_done(ccb); 2535 count++; 2536 } 2537 } while (ccb); 2538 2539 return 0; 2540 } 2541 2542 static void 2543 ocs_abort_atio(struct ocs_softc *ocs, union ccb *ccb) 2544 { 2545 2546 ocs_io_t *aio = NULL; 2547 ocs_tgt_resource_t *trsrc = NULL; 2548 uint32_t status = CAM_REQ_INVALID; 2549 struct ccb_hdr *cur = NULL; 2550 union ccb *accb = ccb->cab.abort_ccb; 2551 2552 int bus = cam_sim_bus(xpt_path_sim((ccb)->ccb_h.path)); 2553 ocs_fcport *fcp = FCPORT(ocs, bus); 2554 2555 trsrc = ocs_tgt_resource_get(fcp, &accb->ccb_h, &status); 2556 if (trsrc != NULL) { 2557 STAILQ_FOREACH(cur, &trsrc->atio, sim_links.stqe) { 2558 if (cur != &accb->ccb_h) 2559 continue; 2560 2561 STAILQ_REMOVE(&trsrc->atio, cur, ccb_hdr, 2562 sim_links.stqe); 2563 accb->ccb_h.status = CAM_REQ_ABORTED; 2564 xpt_done(accb); 2565 ocs_set_ccb_status(ccb, CAM_REQ_CMP); 2566 return; 2567 } 2568 } 2569 2570 /* if the ATIO has a valid IO pointer, CAM is telling 2571 * the driver that the ATIO (which represents the entire 2572 * exchange) has been aborted. */ 2573 2574 aio = accb->ccb_h.ccb_io_ptr; 2575 if (aio == NULL) { 2576 ccb->ccb_h.status = CAM_UA_ABORT; 2577 return; 2578 } 2579 2580 device_printf(ocs->dev, 2581 "%s: XPT_ABORT ATIO state=%d tag=%#x" 2582 " xid=%#x flags=%#x\n", __func__, 2583 aio->tgt_io.state, aio->tag, 2584 aio->init_task_tag, aio->tgt_io.flags); 2585 /* Expectations are: 2586 * - abort task was received 2587 * - already aborted IO in the DEVICE 2588 * - already received NOTIFY ACKNOWLEDGE */ 2589 2590 if ((aio->tgt_io.flags & OCS_CAM_IO_F_ABORT_RECV) == 0) { 2591 device_printf(ocs->dev, "%s: abort not received or io completed \n", __func__); 2592 ocs_set_ccb_status(ccb, CAM_REQ_CMP); 2593 return; 2594 } 2595 2596 aio->tgt_io.flags |= OCS_CAM_IO_F_ABORT_CAM; 2597 ocs_target_io_free(aio); 2598 ocs_set_ccb_status(ccb, CAM_REQ_CMP); 2599 2600 return; 2601 } 2602 2603 static void 2604 ocs_abort_inot(struct ocs_softc *ocs, union ccb *ccb) 2605 { 2606 ocs_tgt_resource_t *trsrc = NULL; 2607 uint32_t status = CAM_REQ_INVALID; 2608 struct ccb_hdr *cur = NULL; 2609 union ccb *accb = ccb->cab.abort_ccb; 2610 2611 int bus = cam_sim_bus(xpt_path_sim((ccb)->ccb_h.path)); 2612 ocs_fcport *fcp = FCPORT(ocs, bus); 2613 2614 trsrc = ocs_tgt_resource_get(fcp, &accb->ccb_h, &status); 2615 if (trsrc) { 2616 STAILQ_FOREACH(cur, &trsrc->inot, sim_links.stqe) { 2617 if (cur != &accb->ccb_h) 2618 continue; 2619 2620 STAILQ_REMOVE(&trsrc->inot, cur, ccb_hdr, 2621 sim_links.stqe); 2622 accb->ccb_h.status = CAM_REQ_ABORTED; 2623 xpt_done(accb); 2624 ocs_set_ccb_status(ccb, CAM_REQ_CMP); 2625 return; 2626 } 2627 } 2628 2629 ocs_set_ccb_status(ccb, CAM_UA_ABORT); 2630 return; 2631 } 2632 2633 static uint32_t 2634 ocs_abort_initiator_io(struct ocs_softc *ocs, union ccb *accb) 2635 { 2636 2637 ocs_node_t *node = NULL; 2638 ocs_io_t *io = NULL; 2639 int32_t rc = 0; 2640 struct ccb_scsiio *csio = &accb->csio; 2641 2642 ocs_fcport *fcp = FCPORT(ocs, cam_sim_bus(xpt_path_sim((accb)->ccb_h.path))); 2643 node = ocs_node_get_instance(ocs, fcp->tgt[accb->ccb_h.target_id].node_id); 2644 if (node == NULL) { 2645 device_printf(ocs->dev, "%s: no device %d\n", 2646 __func__, accb->ccb_h.target_id); 2647 ocs_set_ccb_status(accb, CAM_DEV_NOT_THERE); 2648 xpt_done(accb); 2649 return (-1); 2650 } 2651 2652 io = ocs_scsi_io_alloc(node, OCS_SCSI_IO_ROLE_ORIGINATOR); 2653 if (io == NULL) { 2654 device_printf(ocs->dev, 2655 "%s: unable to alloc IO\n", __func__); 2656 ocs_set_ccb_status(accb, CAM_REQ_CMP_ERR); 2657 xpt_done(accb); 2658 return (-1); 2659 } 2660 2661 rc = ocs_scsi_send_tmf(node, io, 2662 (ocs_io_t *)csio->ccb_h.ccb_io_ptr, 2663 accb->ccb_h.target_lun, 2664 OCS_SCSI_TMF_ABORT_TASK, 2665 NULL, 0, 0, 2666 ocs_initiator_tmf_cb, NULL/*arg*/); 2667 2668 return rc; 2669 } 2670 2671 void 2672 ocs_scsi_ini_ddump(ocs_textbuf_t *textbuf, ocs_scsi_ddump_type_e type, void *obj) 2673 { 2674 switch(type) { 2675 case OCS_SCSI_DDUMP_DEVICE: { 2676 //ocs_t *ocs = obj; 2677 break; 2678 } 2679 case OCS_SCSI_DDUMP_DOMAIN: { 2680 //ocs_domain_t *domain = obj; 2681 break; 2682 } 2683 case OCS_SCSI_DDUMP_SPORT: { 2684 //ocs_sport_t *sport = obj; 2685 break; 2686 } 2687 case OCS_SCSI_DDUMP_NODE: { 2688 //ocs_node_t *node = obj; 2689 break; 2690 } 2691 case OCS_SCSI_DDUMP_IO: { 2692 //ocs_io_t *io = obj; 2693 break; 2694 } 2695 default: { 2696 break; 2697 } 2698 } 2699 } 2700 2701 void 2702 ocs_scsi_tgt_ddump(ocs_textbuf_t *textbuf, ocs_scsi_ddump_type_e type, void *obj) 2703 { 2704 switch(type) { 2705 case OCS_SCSI_DDUMP_DEVICE: { 2706 //ocs_t *ocs = obj; 2707 break; 2708 } 2709 case OCS_SCSI_DDUMP_DOMAIN: { 2710 //ocs_domain_t *domain = obj; 2711 break; 2712 } 2713 case OCS_SCSI_DDUMP_SPORT: { 2714 //ocs_sport_t *sport = obj; 2715 break; 2716 } 2717 case OCS_SCSI_DDUMP_NODE: { 2718 //ocs_node_t *node = obj; 2719 break; 2720 } 2721 case OCS_SCSI_DDUMP_IO: { 2722 ocs_io_t *io = obj; 2723 char *state_str = NULL; 2724 2725 switch (io->tgt_io.state) { 2726 case OCS_CAM_IO_FREE: 2727 state_str = "FREE"; 2728 break; 2729 case OCS_CAM_IO_COMMAND: 2730 state_str = "COMMAND"; 2731 break; 2732 case OCS_CAM_IO_DATA: 2733 state_str = "DATA"; 2734 break; 2735 case OCS_CAM_IO_DATA_DONE: 2736 state_str = "DATA_DONE"; 2737 break; 2738 case OCS_CAM_IO_RESP: 2739 state_str = "RESP"; 2740 break; 2741 default: 2742 state_str = "xxx BAD xxx"; 2743 } 2744 ocs_ddump_value(textbuf, "cam_st", "%s", state_str); 2745 if (io->tgt_io.app) { 2746 ocs_ddump_value(textbuf, "cam_flags", "%#x", 2747 ((union ccb *)(io->tgt_io.app))->ccb_h.flags); 2748 ocs_ddump_value(textbuf, "cam_status", "%#x", 2749 ((union ccb *)(io->tgt_io.app))->ccb_h.status); 2750 } 2751 2752 break; 2753 } 2754 default: { 2755 break; 2756 } 2757 } 2758 } 2759 2760 int32_t ocs_scsi_get_block_vaddr(ocs_io_t *io, uint64_t blocknumber, 2761 ocs_scsi_vaddr_len_t addrlen[], 2762 uint32_t max_addrlen, void **dif_vaddr) 2763 { 2764 return -1; 2765 } 2766 2767 uint32_t 2768 ocs_get_crn(ocs_node_t *node, uint8_t *crn, uint64_t lun) 2769 { 2770 uint32_t idx; 2771 struct ocs_lun_crn *lcrn = NULL; 2772 idx = lun % OCS_MAX_LUN; 2773 2774 lcrn = node->ini_node.lun_crn[idx]; 2775 2776 if (lcrn == NULL) { 2777 lcrn = ocs_malloc(node->ocs, sizeof(struct ocs_lun_crn), 2778 M_ZERO|M_NOWAIT); 2779 if (lcrn == NULL) { 2780 return (1); 2781 } 2782 2783 lcrn->lun = lun; 2784 node->ini_node.lun_crn[idx] = lcrn; 2785 } 2786 2787 if (lcrn->lun != lun) { 2788 return (1); 2789 } 2790 2791 if (lcrn->crnseed == 0) 2792 lcrn->crnseed = 1; 2793 2794 *crn = lcrn->crnseed++; 2795 return (0); 2796 } 2797 2798 void 2799 ocs_del_crn(ocs_node_t *node) 2800 { 2801 uint32_t i; 2802 struct ocs_lun_crn *lcrn = NULL; 2803 2804 for(i = 0; i < OCS_MAX_LUN; i++) { 2805 lcrn = node->ini_node.lun_crn[i]; 2806 if (lcrn) { 2807 ocs_free(node->ocs, lcrn, sizeof(*lcrn)); 2808 } 2809 } 2810 2811 return; 2812 } 2813 2814 void 2815 ocs_reset_crn(ocs_node_t *node, uint64_t lun) 2816 { 2817 uint32_t idx; 2818 struct ocs_lun_crn *lcrn = NULL; 2819 idx = lun % OCS_MAX_LUN; 2820 2821 lcrn = node->ini_node.lun_crn[idx]; 2822 if (lcrn) 2823 lcrn->crnseed = 0; 2824 2825 return; 2826 } 2827