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3 * The term "Broadcom" refers to Broadcom Limited and/or its subsidiaries.
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41 #include "ocs_device.h"
43 static void ocs_xport_link_stats_cb(int32_t status, uint32_t num_counters, ocs_hw_link_stat_counts_t *counters, void *arg);
44 static void ocs_xport_host_stats_cb(int32_t status, uint32_t num_counters, ocs_hw_host_stat_counts_t *counters, void *arg);
46 * @brief Post node event callback argument.
53 } ocs_xport_post_node_event_t;
56 * @brief Allocate a transport object.
59 * A transport object is allocated, and associated with a device instance.
61 * @param ocs Pointer to device instance.
63 * @return Returns the pointer to the allocated transport object, or NULL if failed.
66 ocs_xport_alloc(ocs_t *ocs)
70 ocs_assert(ocs, NULL);
71 xport = ocs_malloc(ocs, sizeof(*xport), OCS_M_ZERO);
79 * @brief Create the RQ threads and the circular buffers used to pass sequences.
82 * Creates the circular buffers and the servicing threads for RQ processing.
84 * @param xport Pointer to transport object
86 * @return Returns 0 on success, or a non-zero value on failure.
89 ocs_xport_rq_threads_teardown(ocs_xport_t *xport)
91 ocs_t *ocs = xport->ocs;
94 if (xport->num_rq_threads == 0 ||
95 xport->rq_thread_info == NULL) {
99 /* Abort any threads */
100 for (i = 0; i < xport->num_rq_threads; i++) {
101 if (xport->rq_thread_info[i].thread_started) {
102 ocs_thread_terminate(&xport->rq_thread_info[i].thread);
103 /* wait for the thread to exit */
104 ocs_log_debug(ocs, "wait for thread %d to exit\n", i);
105 while (xport->rq_thread_info[i].thread_started) {
108 ocs_log_debug(ocs, "thread %d to exited\n", i);
110 if (xport->rq_thread_info[i].seq_cbuf != NULL) {
111 ocs_cbuf_free(xport->rq_thread_info[i].seq_cbuf);
112 xport->rq_thread_info[i].seq_cbuf = NULL;
118 * @brief Create the RQ threads and the circular buffers used to pass sequences.
121 * Creates the circular buffers and the servicing threads for RQ processing.
123 * @param xport Pointer to transport object.
124 * @param num_rq_threads Number of RQ processing threads that the
127 * @return Returns 0 on success, or a non-zero value on failure.
130 ocs_xport_rq_threads_create(ocs_xport_t *xport, uint32_t num_rq_threads)
132 ocs_t *ocs = xport->ocs;
136 xport->num_rq_threads = num_rq_threads;
137 ocs_log_debug(ocs, "number of RQ threads %d\n", num_rq_threads);
138 if (num_rq_threads == 0) {
142 /* Allocate the space for the thread objects */
143 xport->rq_thread_info = ocs_malloc(ocs, sizeof(ocs_xport_rq_thread_info_t) * num_rq_threads, OCS_M_ZERO);
144 if (xport->rq_thread_info == NULL) {
145 ocs_log_err(ocs, "memory allocation failure\n");
149 /* Create the circular buffers and threads. */
150 for (i = 0; i < num_rq_threads; i++) {
151 xport->rq_thread_info[i].ocs = ocs;
152 xport->rq_thread_info[i].seq_cbuf = ocs_cbuf_alloc(ocs, OCS_HW_RQ_NUM_HDR);
153 if (xport->rq_thread_info[i].seq_cbuf == NULL) {
154 goto ocs_xport_rq_threads_create_error;
157 ocs_snprintf(xport->rq_thread_info[i].thread_name,
158 sizeof(xport->rq_thread_info[i].thread_name),
159 "ocs_unsol_rq:%d:%d", ocs->instance_index, i);
160 rc = ocs_thread_create(ocs, &xport->rq_thread_info[i].thread, ocs_unsol_rq_thread,
161 xport->rq_thread_info[i].thread_name,
162 &xport->rq_thread_info[i], OCS_THREAD_RUN);
164 ocs_log_err(ocs, "ocs_thread_create failed: %d\n", rc);
165 goto ocs_xport_rq_threads_create_error;
167 xport->rq_thread_info[i].thread_started = TRUE;
171 ocs_xport_rq_threads_create_error:
172 ocs_xport_rq_threads_teardown(xport);
177 * @brief Do as much allocation as possible, but do not initialization the device.
180 * Performs the functions required to get a device ready to run.
182 * @param xport Pointer to transport object.
184 * @return Returns 0 on success, or a non-zero value on failure.
187 ocs_xport_attach(ocs_xport_t *xport)
189 ocs_t *ocs = xport->ocs;
195 uint32_t max_remote_nodes;
197 /* booleans used for cleanup if initialization fails */
198 uint8_t io_pool_created = FALSE;
199 uint8_t node_pool_created = FALSE;
200 uint8_t rq_threads_created = FALSE;
202 ocs_list_init(&ocs->domain_list, ocs_domain_t, link);
204 for (i = 0; i < SLI4_MAX_FCFI; i++) {
205 xport->fcfi[i].hold_frames = 1;
206 ocs_lock_init(ocs, &xport->fcfi[i].pend_frames_lock, "xport pend_frames[%d]", i);
207 ocs_list_init(&xport->fcfi[i].pend_frames, ocs_hw_sequence_t, link);
210 rc = ocs_hw_set_ptr(&ocs->hw, OCS_HW_WAR_VERSION, ocs->hw_war_version);
212 ocs_log_test(ocs, "can't set OCS_HW_WAR_VERSION\n");
216 rc = ocs_hw_setup(&ocs->hw, ocs, SLI4_PORT_TYPE_FC);
218 ocs_log_err(ocs, "%s: Can't setup hardware\n", ocs->desc);
220 } else if (ocs->ctrlmask & OCS_CTRLMASK_CRASH_RESET) {
221 ocs_log_debug(ocs, "stopping after ocs_hw_setup\n");
225 ocs_hw_set(&ocs->hw, OCS_HW_BOUNCE, ocs->hw_bounce);
226 ocs_log_debug(ocs, "HW bounce: %d\n", ocs->hw_bounce);
228 ocs_hw_set(&ocs->hw, OCS_HW_RQ_SELECTION_POLICY, ocs->rq_selection_policy);
229 ocs_hw_set(&ocs->hw, OCS_HW_RR_QUANTA, ocs->rr_quanta);
230 ocs_hw_get(&ocs->hw, OCS_HW_RQ_SELECTION_POLICY, &value);
231 ocs_log_debug(ocs, "RQ Selection Policy: %d\n", value);
233 ocs_hw_set_ptr(&ocs->hw, OCS_HW_FILTER_DEF, (void*) ocs->filter_def);
235 ocs_hw_get(&ocs->hw, OCS_HW_MAX_SGL, &max_sgl);
236 max_sgl -= SLI4_SGE_MAX_RESERVED;
237 n_sgl = MIN(OCS_FC_MAX_SGL, max_sgl);
239 /* EVT: For chained SGL testing */
240 if (ocs->ctrlmask & OCS_CTRLMASK_TEST_CHAINED_SGLS) {
244 /* Note: number of SGLs must be set for ocs_node_create_pool */
245 if (ocs_hw_set(&ocs->hw, OCS_HW_N_SGL, n_sgl) != OCS_HW_RTN_SUCCESS) {
246 ocs_log_err(ocs, "%s: Can't set number of SGLs\n", ocs->desc);
249 ocs_log_debug(ocs, "%s: Configured for %d SGLs\n", ocs->desc, n_sgl);
252 ocs_hw_get(&ocs->hw, OCS_HW_MAX_NODES, &max_remote_nodes);
254 if (!ocs->max_remote_nodes)
255 ocs->max_remote_nodes = max_remote_nodes;
257 rc = ocs_node_create_pool(ocs, ocs->max_remote_nodes);
259 ocs_log_err(ocs, "Can't allocate node pool\n");
260 goto ocs_xport_attach_cleanup;
262 node_pool_created = TRUE;
265 /* EVT: if testing chained SGLs allocate OCS_FC_MAX_SGL SGE's in the IO */
266 xport->io_pool = ocs_io_pool_create(ocs, ocs->num_scsi_ios,
267 (ocs->ctrlmask & OCS_CTRLMASK_TEST_CHAINED_SGLS) ? OCS_FC_MAX_SGL : n_sgl);
268 if (xport->io_pool == NULL) {
269 ocs_log_err(ocs, "Can't allocate IO pool\n");
270 goto ocs_xport_attach_cleanup;
272 io_pool_created = TRUE;
276 * setup the RQ processing threads
278 if (ocs_xport_rq_threads_create(xport, ocs->rq_threads) != 0) {
279 ocs_log_err(ocs, "failure creating RQ threads\n");
280 goto ocs_xport_attach_cleanup;
282 rq_threads_created = TRUE;
286 ocs_xport_attach_cleanup:
287 if (io_pool_created) {
288 ocs_io_pool_free(xport->io_pool);
291 if (node_pool_created) {
292 ocs_node_free_pool(ocs);
299 * @brief Determines how to setup auto Xfer ready.
302 * @param xport Pointer to transport object.
304 * @return Returns 0 on success or a non-zero value on failure.
307 ocs_xport_initialize_auto_xfer_ready(ocs_xport_t *xport)
309 ocs_t *ocs = xport->ocs;
310 uint32_t auto_xfer_rdy;
312 uint32_t ramdisc_blocksize = 512;
315 ocs_hw_get(&ocs->hw, OCS_HW_AUTO_XFER_RDY_CAPABLE, &auto_xfer_rdy);
316 if (!auto_xfer_rdy) {
317 ocs->auto_xfer_rdy_size = 0;
318 ocs_log_test(ocs, "Cannot enable auto xfer rdy for this port\n");
322 if (ocs_hw_set(&ocs->hw, OCS_HW_AUTO_XFER_RDY_SIZE, ocs->auto_xfer_rdy_size)) {
323 ocs_log_test(ocs, "%s: Can't set auto xfer rdy mode\n", ocs->desc);
328 * Determine if we are doing protection in the backend. We are looking
329 * at the modules parameters here. The backend cannot allow a format
330 * command to change the protection mode when using this feature,
331 * otherwise the firmware will not do the proper thing.
333 if (ocs_get_property("p_type", prop_buf, sizeof(prop_buf)) == 0) {
334 p_type = ocs_strtoul(prop_buf, 0, 0);
336 if (ocs_get_property("ramdisc_blocksize", prop_buf, sizeof(prop_buf)) == 0) {
337 ramdisc_blocksize = ocs_strtoul(prop_buf, 0, 0);
339 if (ocs_get_property("external_dif", prop_buf, sizeof(prop_buf)) == 0) {
340 if(ocs_strlen(prop_buf)) {
348 if (ocs_hw_set(&ocs->hw, OCS_HW_AUTO_XFER_RDY_T10_ENABLE, TRUE)) {
349 ocs_log_test(ocs, "%s: Can't set auto xfer rdy mode\n", ocs->desc);
352 if (ocs_hw_set(&ocs->hw, OCS_HW_AUTO_XFER_RDY_BLK_SIZE, ramdisc_blocksize)) {
353 ocs_log_test(ocs, "%s: Can't set auto xfer rdy blk size\n", ocs->desc);
356 if (ocs_hw_set(&ocs->hw, OCS_HW_AUTO_XFER_RDY_P_TYPE, p_type)) {
357 ocs_log_test(ocs, "%s: Can't set auto xfer rdy mode\n", ocs->desc);
360 if (ocs_hw_set(&ocs->hw, OCS_HW_AUTO_XFER_RDY_REF_TAG_IS_LBA, TRUE)) {
361 ocs_log_test(ocs, "%s: Can't set auto xfer rdy ref tag\n", ocs->desc);
364 if (ocs_hw_set(&ocs->hw, OCS_HW_AUTO_XFER_RDY_APP_TAG_VALID, FALSE)) {
365 ocs_log_test(ocs, "%s: Can't set auto xfer rdy app tag valid\n", ocs->desc);
369 ocs_log_debug(ocs, "Auto xfer rdy is enabled, p_type=%d, blksize=%d\n",
370 p_type, ramdisc_blocksize);
375 * @brief Initializes the device.
378 * Performs the functions required to make a device functional.
380 * @param xport Pointer to transport object.
382 * @return Returns 0 on success, or a non-zero value on failure.
385 ocs_xport_initialize(ocs_xport_t *xport)
387 ocs_t *ocs = xport->ocs;
394 uint32_t dif_capable;
395 uint8_t dif_separate = 0;
398 /* booleans used for cleanup if initialization fails */
399 uint8_t ini_device_set = FALSE;
400 uint8_t tgt_device_set = FALSE;
401 uint8_t hw_initialized = FALSE;
403 ocs_hw_get(&ocs->hw, OCS_HW_MAX_IO, &max_hw_io);
404 if (ocs_hw_set(&ocs->hw, OCS_HW_N_IO, max_hw_io) != OCS_HW_RTN_SUCCESS) {
405 ocs_log_err(ocs, "%s: Can't set number of IOs\n", ocs->desc);
409 ocs_hw_get(&ocs->hw, OCS_HW_MAX_SGL, &max_sgl);
410 max_sgl -= SLI4_SGE_MAX_RESERVED;
412 if (ocs->enable_hlm) {
413 ocs_hw_get(&ocs->hw, OCS_HW_HIGH_LOGIN_MODE, &hlm);
415 ocs->enable_hlm = FALSE;
416 ocs_log_err(ocs, "Cannot enable high login mode for this port\n");
418 ocs_log_debug(ocs, "High login mode is enabled\n");
419 if (ocs_hw_set(&ocs->hw, OCS_HW_HIGH_LOGIN_MODE, TRUE)) {
420 ocs_log_err(ocs, "%s: Can't set high login mode\n", ocs->desc);
426 /* validate the auto xfer_rdy size */
427 if (ocs->auto_xfer_rdy_size > 0 &&
428 (ocs->auto_xfer_rdy_size < 2048 ||
429 ocs->auto_xfer_rdy_size > 65536)) {
430 ocs_log_err(ocs, "Auto XFER_RDY size is out of range (2K-64K)\n");
434 ocs_hw_get(&ocs->hw, OCS_HW_MAX_IO, &max_hw_io);
436 if (ocs->auto_xfer_rdy_size > 0) {
437 if (ocs_xport_initialize_auto_xfer_ready(xport)) {
438 ocs_log_err(ocs, "%s: Failed auto xfer ready setup\n", ocs->desc);
442 ocs_hw_set(&ocs->hw, OCS_ESOC, TRUE);
446 if (ocs->explicit_buffer_list) {
447 /* Are pre-registered SGL's required? */
448 ocs_hw_get(&ocs->hw, OCS_HW_PREREGISTER_SGL, &i);
450 ocs_log_err(ocs, "Explicit Buffer List not supported on this device, not enabled\n");
452 ocs_hw_set(&ocs->hw, OCS_HW_PREREGISTER_SGL, FALSE);
456 if (ocs_hw_set(&ocs->hw, OCS_HW_TOPOLOGY, ocs->topology) != OCS_HW_RTN_SUCCESS) {
457 ocs_log_err(ocs, "%s: Can't set the toplogy\n", ocs->desc);
460 ocs_hw_set(&ocs->hw, OCS_HW_RQ_DEFAULT_BUFFER_SIZE, OCS_FC_RQ_SIZE_DEFAULT);
462 if (ocs_hw_set(&ocs->hw, OCS_HW_LINK_SPEED, ocs->speed) != OCS_HW_RTN_SUCCESS) {
463 ocs_log_err(ocs, "%s: Can't set the link speed\n", ocs->desc);
467 if (ocs_hw_set(&ocs->hw, OCS_HW_ETH_LICENSE, ocs->ethernet_license) != OCS_HW_RTN_SUCCESS) {
468 ocs_log_err(ocs, "%s: Can't set the ethernet license\n", ocs->desc);
472 /* currently only lancer support setting the CRC seed value */
473 if (ocs->hw.sli.asic_type == SLI4_ASIC_TYPE_LANCER) {
474 if (ocs_hw_set(&ocs->hw, OCS_HW_DIF_SEED, OCS_FC_DIF_SEED) != OCS_HW_RTN_SUCCESS) {
475 ocs_log_err(ocs, "%s: Can't set the DIF seed\n", ocs->desc);
480 /* Set the Dif mode */
481 if (0 == ocs_hw_get(&ocs->hw, OCS_HW_DIF_CAPABLE, &dif_capable)) {
483 if (ocs_get_property("dif_separate", prop_buf, sizeof(prop_buf)) == 0) {
484 dif_separate = ocs_strtoul(prop_buf, 0, 0);
487 if ((rc = ocs_hw_set(&ocs->hw, OCS_HW_DIF_MODE,
488 (dif_separate == 0 ? OCS_HW_DIF_MODE_INLINE : OCS_HW_DIF_MODE_SEPARATE)))) {
489 ocs_log_err(ocs, "Requested DIF MODE not supported\n");
494 if (ocs->target_io_timer_sec) {
495 ocs_log_debug(ocs, "setting target io timer=%d\n", ocs->target_io_timer_sec);
496 ocs_hw_set(&ocs->hw, OCS_HW_EMULATE_TARGET_WQE_TIMEOUT, TRUE);
499 ocs_hw_callback(&ocs->hw, OCS_HW_CB_DOMAIN, ocs_domain_cb, ocs);
500 ocs_hw_callback(&ocs->hw, OCS_HW_CB_REMOTE_NODE, ocs_remote_node_cb, ocs);
501 ocs_hw_callback(&ocs->hw, OCS_HW_CB_UNSOLICITED, ocs_unsolicited_cb, ocs);
502 ocs_hw_callback(&ocs->hw, OCS_HW_CB_PORT, ocs_port_cb, ocs);
504 ocs->fw_version = (const char*) ocs_hw_get_ptr(&ocs->hw, OCS_HW_FW_REV);
506 /* Initialize vport list */
507 ocs_list_init(&xport->vport_list, ocs_vport_spec_t, link);
508 ocs_lock_init(ocs, &xport->io_pending_lock, "io_pending_lock[%d]", ocs->instance_index);
509 ocs_list_init(&xport->io_pending_list, ocs_io_t, io_pending_link);
510 ocs_atomic_init(&xport->io_active_count, 0);
511 ocs_atomic_init(&xport->io_pending_count, 0);
512 ocs_atomic_init(&xport->io_total_free, 0);
513 ocs_atomic_init(&xport->io_total_pending, 0);
514 ocs_atomic_init(&xport->io_alloc_failed_count, 0);
515 ocs_atomic_init(&xport->io_pending_recursing, 0);
516 ocs_lock_init(ocs, &ocs->hw.watchdog_lock, " Watchdog Lock[%d]", ocs_instance(ocs));
517 rc = ocs_hw_init(&ocs->hw);
519 ocs_log_err(ocs, "ocs_hw_init failure\n");
520 goto ocs_xport_init_cleanup;
522 hw_initialized = TRUE;
525 rq_limit = max_hw_io/2;
526 if (ocs_hw_set(&ocs->hw, OCS_HW_RQ_PROCESS_LIMIT, rq_limit) != OCS_HW_RTN_SUCCESS) {
527 ocs_log_err(ocs, "%s: Can't set the RQ process limit\n", ocs->desc);
530 if (ocs->config_tgt) {
531 rc = ocs_scsi_tgt_new_device(ocs);
533 ocs_log_err(ocs, "failed to initialize target\n");
534 goto ocs_xport_init_cleanup;
536 tgt_device_set = TRUE;
540 if (ocs->enable_ini) {
541 rc = ocs_scsi_ini_new_device(ocs);
543 ocs_log_err(ocs, "failed to initialize initiator\n");
544 goto ocs_xport_init_cleanup;
546 ini_device_set = TRUE;
552 if (ocs->num_vports != 0) {
555 ocs_hw_get(&ocs->hw, OCS_HW_MAX_VPORTS, &max_vports);
557 if (ocs->num_vports < max_vports) {
558 ocs_log_debug(ocs, "Provisioning %d vports\n", ocs->num_vports);
559 for (i = 0; i < ocs->num_vports; i++) {
560 ocs_vport_create_spec(ocs, 0, 0, UINT32_MAX, ocs->enable_ini, ocs->enable_tgt, NULL, NULL);
563 ocs_log_err(ocs, "failed to create vports. num_vports range should be (1-%d) \n", max_vports-1);
564 goto ocs_xport_init_cleanup;
570 ocs_xport_init_cleanup:
571 if (ini_device_set) {
572 ocs_scsi_ini_del_device(ocs);
575 if (tgt_device_set) {
576 ocs_scsi_tgt_del_device(ocs);
579 if (hw_initialized) {
580 /* ocs_hw_teardown can only execute after ocs_hw_init */
581 ocs_hw_teardown(&ocs->hw);
588 * @brief Detaches the transport from the device.
591 * Performs the functions required to shut down a device.
593 * @param xport Pointer to transport object.
595 * @return Returns 0 on success or a non-zero value on failure.
598 ocs_xport_detach(ocs_xport_t *xport)
600 ocs_t *ocs = xport->ocs;
602 /* free resources associated with target-server and initiator-client */
604 ocs_scsi_tgt_del_device(ocs);
606 if (ocs->enable_ini) {
607 ocs_scsi_ini_del_device(ocs);
609 /*Shutdown FC Statistics timer*/
610 if (ocs_timer_pending(&ocs->xport->stats_timer))
611 ocs_del_timer(&ocs->xport->stats_timer);
614 ocs_hw_teardown(&ocs->hw);
620 * @brief domain list empty callback
623 * Function is invoked when the device domain list goes empty. By convention
624 * @c arg points to an ocs_sem_t instance, that is incremented.
626 * @param ocs Pointer to device object.
627 * @param arg Pointer to semaphore instance.
633 ocs_xport_domain_list_empty_cb(ocs_t *ocs, void *arg)
635 ocs_sem_t *sem = arg;
644 * @brief post node event callback
647 * This function is called from the mailbox completion interrupt context to post an
648 * event to a node object. By doing this in the interrupt context, it has
649 * the benefit of only posting events in the interrupt context, deferring the need to
650 * create a per event node lock.
652 * @param hw Pointer to HW structure.
653 * @param status Completion status for mailbox command.
654 * @param mqe Mailbox queue completion entry.
655 * @param arg Callback argument.
657 * @return Returns 0 on success, a negative error code value on failure.
661 ocs_xport_post_node_event_cb(ocs_hw_t *hw, int32_t status, uint8_t *mqe, void *arg)
663 ocs_xport_post_node_event_t *payload = arg;
665 if (payload != NULL) {
666 ocs_node_post_event(payload->node, payload->evt, payload->context);
667 ocs_sem_v(&payload->sem);
674 * @brief Initiate force free.
677 * Perform force free of OCS.
679 * @param xport Pointer to transport object.
685 ocs_xport_force_free(ocs_xport_t *xport)
687 ocs_t *ocs = xport->ocs;
688 ocs_domain_t *domain;
691 ocs_log_debug(ocs, "reset required, do force shutdown\n");
692 ocs_device_lock(ocs);
693 ocs_list_foreach_safe(&ocs->domain_list, domain, next) {
694 ocs_domain_force_free(domain);
696 ocs_device_unlock(ocs);
700 * @brief Perform transport attach function.
703 * Perform the attach function, which for the FC transport makes a HW call
704 * to bring up the link.
706 * @param xport pointer to transport object.
707 * @param cmd command to execute.
709 * ocs_xport_control(ocs_xport_t *xport, OCS_XPORT_PORT_ONLINE)
710 * ocs_xport_control(ocs_xport_t *xport, OCS_XPORT_PORT_OFFLINE)
711 * ocs_xport_control(ocs_xport_t *xport, OCS_XPORT_PORT_SHUTDOWN)
712 * ocs_xport_control(ocs_xport_t *xport, OCS_XPORT_POST_NODE_EVENT, ocs_node_t *node, ocs_sm_event_t, void *context)
714 * @return Returns 0 on success, or a negative error code value on failure.
718 ocs_xport_control(ocs_xport_t *xport, ocs_xport_ctrl_e cmd, ...)
724 ocs_assert(xport, -1);
725 ocs_assert(xport->ocs, -1);
729 case OCS_XPORT_PORT_ONLINE: {
730 /* Bring the port on-line */
731 rc = ocs_hw_port_control(&ocs->hw, OCS_HW_PORT_INIT, 0, NULL, NULL);
733 ocs_log_err(ocs, "%s: Can't init port\n", ocs->desc);
735 xport->configured_link_state = cmd;
739 case OCS_XPORT_PORT_OFFLINE: {
740 if (ocs_hw_port_control(&ocs->hw, OCS_HW_PORT_SHUTDOWN, 0, NULL, NULL)) {
741 ocs_log_err(ocs, "port shutdown failed\n");
743 xport->configured_link_state = cmd;
748 case OCS_XPORT_SHUTDOWN: {
750 uint32_t reset_required;
752 /* if a PHYSDEV reset was performed (e.g. hw dump), will affect
753 * all PCI functions; orderly shutdown won't work, just force free
755 /* TODO: need to poll this regularly... */
756 if (ocs_hw_get(&ocs->hw, OCS_HW_RESET_REQUIRED, &reset_required) != OCS_HW_RTN_SUCCESS) {
760 if (reset_required) {
761 ocs_log_debug(ocs, "reset required, do force shutdown\n");
762 ocs_xport_force_free(xport);
765 ocs_sem_init(&sem, 0, "domain_list_sem");
766 ocs_register_domain_list_empty_cb(ocs, ocs_xport_domain_list_empty_cb, &sem);
768 if (ocs_hw_port_control(&ocs->hw, OCS_HW_PORT_SHUTDOWN, 0, NULL, NULL)) {
769 ocs_log_debug(ocs, "port shutdown failed, do force shutdown\n");
770 ocs_xport_force_free(xport);
772 ocs_log_debug(ocs, "Waiting %d seconds for domain shutdown.\n", (OCS_FC_DOMAIN_SHUTDOWN_TIMEOUT_USEC/1000000));
774 rc = ocs_sem_p(&sem, OCS_FC_DOMAIN_SHUTDOWN_TIMEOUT_USEC);
776 ocs_log_debug(ocs, "Note: Domain shutdown timed out\n");
777 ocs_xport_force_free(xport);
781 ocs_register_domain_list_empty_cb(ocs, NULL, NULL);
783 /* Free up any saved virtual ports */
784 ocs_vport_del_all(ocs);
789 * POST_NODE_EVENT: post an event to a node object
791 * This transport function is used to post an event to a node object. It does
792 * this by submitting a NOP mailbox command to defer execution to the
793 * interrupt context (thereby enforcing the serialized execution of event posting
794 * to the node state machine instances)
796 * A counting semaphore is used to make the call synchronous (we wait until
797 * the callback increments the semaphore before returning (or times out)
799 case OCS_XPORT_POST_NODE_EVENT: {
803 ocs_xport_post_node_event_t payload;
807 /* Retrieve arguments */
809 node = va_arg(argp, ocs_node_t*);
810 evt = va_arg(argp, ocs_sm_event_t);
811 context = va_arg(argp, void *);
814 ocs_assert(node, -1);
815 ocs_assert(node->ocs, -1);
820 /* if node's state machine is disabled, don't bother continuing */
821 if (!node->sm.current_state) {
822 ocs_log_test(ocs, "node %p state machine disabled\n", node);
827 ocs_memset(&payload, 0, sizeof(payload));
828 ocs_sem_init(&payload.sem, 0, "xport_post_node_Event");
831 payload.context = context;
833 if (ocs_hw_async_call(hw, ocs_xport_post_node_event_cb, &payload)) {
834 ocs_log_test(ocs, "ocs_hw_async_call failed\n");
839 /* Wait for completion */
840 if (ocs_sem_p(&payload.sem, OCS_SEM_FOREVER)) {
841 ocs_log_test(ocs, "POST_NODE_EVENT: sem wait failed\n");
848 * Set wwnn for the port. This will be used instead of the default provided by FW.
850 case OCS_XPORT_WWNN_SET: {
853 /* Retrieve arguments */
855 wwnn = va_arg(argp, uint64_t);
858 ocs_log_debug(ocs, " WWNN %016" PRIx64 "\n", wwnn);
859 xport->req_wwnn = wwnn;
864 * Set wwpn for the port. This will be used instead of the default provided by FW.
866 case OCS_XPORT_WWPN_SET: {
869 /* Retrieve arguments */
871 wwpn = va_arg(argp, uint64_t);
874 ocs_log_debug(ocs, " WWPN %016" PRIx64 "\n", wwpn);
875 xport->req_wwpn = wwpn;
888 * @brief Return status on a link.
891 * Returns status information about a link.
893 * @param xport Pointer to transport object.
894 * @param cmd Command to execute.
895 * @param result Pointer to result value.
897 * ocs_xport_status(ocs_xport_t *xport, OCS_XPORT_PORT_STATUS)
898 * ocs_xport_status(ocs_xport_t *xport, OCS_XPORT_LINK_SPEED, ocs_xport_stats_t *result)
899 * return link speed in MB/sec
900 * ocs_xport_status(ocs_xport_t *xport, OCS_XPORT_IS_SUPPORTED_LINK_SPEED, ocs_xport_stats_t *result)
901 * [in] *result is speed to check in MB/s
902 * returns 1 if supported, 0 if not
903 * ocs_xport_status(ocs_xport_t *xport, OCS_XPORT_LINK_STATISTICS, ocs_xport_stats_t *result)
904 * return link/host port stats
905 * ocs_xport_status(ocs_xport_t *xport, OCS_XPORT_LINK_STAT_RESET, ocs_xport_stats_t *result)
906 * resets link/host stats
909 * @return Returns 0 on success, or a negative error code value on failure.
913 ocs_xport_status(ocs_xport_t *xport, ocs_xport_status_e cmd, ocs_xport_stats_t *result)
917 ocs_xport_stats_t value;
920 ocs_assert(xport, -1);
921 ocs_assert(xport->ocs, -1);
926 case OCS_XPORT_CONFIG_PORT_STATUS:
927 ocs_assert(result, -1);
928 if (xport->configured_link_state == 0) {
929 /* Initial state is offline. configured_link_state is */
930 /* set to online explicitly when port is brought online. */
931 xport->configured_link_state = OCS_XPORT_PORT_OFFLINE;
933 result->value = xport->configured_link_state;
936 case OCS_XPORT_PORT_STATUS:
937 ocs_assert(result, -1);
938 /* Determine port status based on link speed. */
939 hw_rc = ocs_hw_get(&(ocs->hw), OCS_HW_LINK_SPEED, &value.value);
940 if (hw_rc == OCS_HW_RTN_SUCCESS) {
941 if (value.value == 0) {
952 case OCS_XPORT_LINK_SPEED: {
955 ocs_assert(result, -1);
958 rc = ocs_hw_get(&ocs->hw, OCS_HW_LINK_SPEED, &speed);
960 result->value = speed;
965 case OCS_XPORT_IS_SUPPORTED_LINK_SPEED: {
967 uint32_t link_module_type;
969 ocs_assert(result, -1);
970 speed = result->value;
972 rc = ocs_hw_get(&ocs->hw, OCS_HW_LINK_MODULE_TYPE, &link_module_type);
975 case 1000: rc = (link_module_type & OCS_HW_LINK_MODULE_TYPE_1GB) != 0; break;
976 case 2000: rc = (link_module_type & OCS_HW_LINK_MODULE_TYPE_2GB) != 0; break;
977 case 4000: rc = (link_module_type & OCS_HW_LINK_MODULE_TYPE_4GB) != 0; break;
978 case 8000: rc = (link_module_type & OCS_HW_LINK_MODULE_TYPE_8GB) != 0; break;
979 case 10000: rc = (link_module_type & OCS_HW_LINK_MODULE_TYPE_10GB) != 0; break;
980 case 16000: rc = (link_module_type & OCS_HW_LINK_MODULE_TYPE_16GB) != 0; break;
981 case 32000: rc = (link_module_type & OCS_HW_LINK_MODULE_TYPE_32GB) != 0; break;
982 default: rc = 0; break;
989 case OCS_XPORT_LINK_STATISTICS:
990 ocs_device_lock(ocs);
991 ocs_memcpy((void *)result, &ocs->xport->fc_xport_stats, sizeof(ocs_xport_stats_t));
992 ocs_device_unlock(ocs);
994 case OCS_XPORT_LINK_STAT_RESET: {
995 /* Create a semaphore to synchronize the stat reset process. */
996 ocs_sem_init(&(result->stats.semaphore), 0, "fc_stats_reset");
998 /* First reset the link stats */
999 if ((rc = ocs_hw_get_link_stats(&ocs->hw, 0, 1, 1, ocs_xport_link_stats_cb, result)) != 0) {
1000 ocs_log_err(ocs, "%s: Failed to reset link statistics\n", __func__);
1004 /* Wait for semaphore to be signaled when the command completes */
1005 /* TODO: Should there be a timeout on this? If so, how long? */
1006 if (ocs_sem_p(&(result->stats.semaphore), OCS_SEM_FOREVER) != 0) {
1007 /* Undefined failure */
1008 ocs_log_test(ocs, "ocs_sem_p failed\n");
1013 /* Next reset the host stats */
1014 if ((rc = ocs_hw_get_host_stats(&ocs->hw, 1, ocs_xport_host_stats_cb, result)) != 0) {
1015 ocs_log_err(ocs, "%s: Failed to reset host statistics\n", __func__);
1019 /* Wait for semaphore to be signaled when the command completes */
1020 if (ocs_sem_p(&(result->stats.semaphore), OCS_SEM_FOREVER) != 0) {
1021 /* Undefined failure */
1022 ocs_log_test(ocs, "ocs_sem_p failed\n");
1028 case OCS_XPORT_IS_QUIESCED:
1029 ocs_device_lock(ocs);
1030 result->value = ocs_list_empty(&ocs->domain_list);
1031 ocs_device_unlock(ocs);
1043 ocs_xport_link_stats_cb(int32_t status, uint32_t num_counters, ocs_hw_link_stat_counts_t *counters, void *arg)
1045 ocs_xport_stats_t *result = arg;
1047 result->stats.link_stats.link_failure_error_count = counters[OCS_HW_LINK_STAT_LINK_FAILURE_COUNT].counter;
1048 result->stats.link_stats.loss_of_sync_error_count = counters[OCS_HW_LINK_STAT_LOSS_OF_SYNC_COUNT].counter;
1049 result->stats.link_stats.primitive_sequence_error_count = counters[OCS_HW_LINK_STAT_PRIMITIVE_SEQ_COUNT].counter;
1050 result->stats.link_stats.invalid_transmission_word_error_count = counters[OCS_HW_LINK_STAT_INVALID_XMIT_WORD_COUNT].counter;
1051 result->stats.link_stats.crc_error_count = counters[OCS_HW_LINK_STAT_CRC_COUNT].counter;
1053 ocs_sem_v(&(result->stats.semaphore));
1058 ocs_xport_host_stats_cb(int32_t status, uint32_t num_counters, ocs_hw_host_stat_counts_t *counters, void *arg)
1060 ocs_xport_stats_t *result = arg;
1062 result->stats.host_stats.transmit_kbyte_count = counters[OCS_HW_HOST_STAT_TX_KBYTE_COUNT].counter;
1063 result->stats.host_stats.receive_kbyte_count = counters[OCS_HW_HOST_STAT_RX_KBYTE_COUNT].counter;
1064 result->stats.host_stats.transmit_frame_count = counters[OCS_HW_HOST_STAT_TX_FRAME_COUNT].counter;
1065 result->stats.host_stats.receive_frame_count = counters[OCS_HW_HOST_STAT_RX_FRAME_COUNT].counter;
1067 ocs_sem_v(&(result->stats.semaphore));
1072 * @brief Free a transport object.
1075 * The transport object is freed.
1077 * @param xport Pointer to transport object.
1083 ocs_xport_free(ocs_xport_t *xport)
1090 ocs_io_pool_free(xport->io_pool);
1091 ocs_node_free_pool(ocs);
1092 if(mtx_initialized(&xport->io_pending_lock.lock))
1093 ocs_lock_free(&xport->io_pending_lock);
1095 for (i = 0; i < SLI4_MAX_FCFI; i++) {
1096 ocs_lock_free(&xport->fcfi[i].pend_frames_lock);
1099 ocs_xport_rq_threads_teardown(xport);
1101 ocs_free(ocs, xport, sizeof(*xport));