18638b246SChristoph Hellwig // SPDX-License-Identifier: GPL-2.0 2e399441dSJames Smart /* 3e399441dSJames Smart * Copyright (c) 2016 Avago Technologies. All rights reserved. 4e399441dSJames Smart */ 5e399441dSJames Smart #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt 6e399441dSJames Smart #include <linux/module.h> 7e399441dSJames Smart #include <linux/parser.h> 8e399441dSJames Smart #include <uapi/scsi/fc/fc_fs.h> 9e399441dSJames Smart #include <uapi/scsi/fc/fc_els.h> 1061bff8efSJames Smart #include <linux/delay.h> 11d3d0bc78SBart Van Assche #include <linux/overflow.h> 12e399441dSJames Smart 13e399441dSJames Smart #include "nvme.h" 14e399441dSJames Smart #include "fabrics.h" 15e399441dSJames Smart #include <linux/nvme-fc-driver.h> 16e399441dSJames Smart #include <linux/nvme-fc.h> 17ca19bcd0SJames Smart #include "fc.h" 18a6a6d058SHannes Reinecke #include <scsi/scsi_transport_fc.h> 19e399441dSJames Smart 20e399441dSJames Smart /* *************************** Data Structures/Defines ****************** */ 21e399441dSJames Smart 22e399441dSJames Smart 23e399441dSJames Smart enum nvme_fc_queue_flags { 2426c0a26dSJens Axboe NVME_FC_Q_CONNECTED = 0, 2526c0a26dSJens Axboe NVME_FC_Q_LIVE, 26e399441dSJames Smart }; 27e399441dSJames Smart 28ac7fe82bSJames Smart #define NVME_FC_DEFAULT_DEV_LOSS_TMO 60 /* seconds */ 29ac7fe82bSJames Smart 30e399441dSJames Smart struct nvme_fc_queue { 31e399441dSJames Smart struct nvme_fc_ctrl *ctrl; 32e399441dSJames Smart struct device *dev; 33e399441dSJames Smart struct blk_mq_hw_ctx *hctx; 34e399441dSJames Smart void *lldd_handle; 35e399441dSJames Smart size_t cmnd_capsule_len; 36e399441dSJames Smart u32 qnum; 37e399441dSJames Smart u32 rqcnt; 38e399441dSJames Smart u32 seqno; 39e399441dSJames Smart 40e399441dSJames Smart u64 connection_id; 41e399441dSJames Smart atomic_t csn; 42e399441dSJames Smart 43e399441dSJames Smart unsigned long flags; 44e399441dSJames Smart } __aligned(sizeof(u64)); /* alignment for other things alloc'd with */ 45e399441dSJames Smart 468d64daf7SJames Smart enum nvme_fcop_flags { 478d64daf7SJames Smart FCOP_FLAGS_TERMIO = (1 << 0), 48c3aedd22SJames Smart FCOP_FLAGS_AEN = (1 << 1), 498d64daf7SJames Smart }; 508d64daf7SJames Smart 51e399441dSJames Smart struct nvmefc_ls_req_op { 52e399441dSJames Smart struct nvmefc_ls_req ls_req; 53e399441dSJames Smart 54c913a8b0SJames Smart struct nvme_fc_rport *rport; 55e399441dSJames Smart struct nvme_fc_queue *queue; 56e399441dSJames Smart struct request *rq; 578d64daf7SJames Smart u32 flags; 58e399441dSJames Smart 59e399441dSJames Smart int ls_error; 60e399441dSJames Smart struct completion ls_done; 61c913a8b0SJames Smart struct list_head lsreq_list; /* rport->ls_req_list */ 62e399441dSJames Smart bool req_queued; 63e399441dSJames Smart }; 64e399441dSJames Smart 6514fd1e98SJames Smart struct nvmefc_ls_rcv_op { 6614fd1e98SJames Smart struct nvme_fc_rport *rport; 6714fd1e98SJames Smart struct nvmefc_ls_rsp *lsrsp; 6814fd1e98SJames Smart union nvmefc_ls_requests *rqstbuf; 6914fd1e98SJames Smart union nvmefc_ls_responses *rspbuf; 7014fd1e98SJames Smart u16 rqstdatalen; 7114fd1e98SJames Smart bool handled; 7214fd1e98SJames Smart dma_addr_t rspdma; 7314fd1e98SJames Smart struct list_head lsrcv_list; /* rport->ls_rcv_list */ 7414fd1e98SJames Smart } __aligned(sizeof(u64)); /* alignment for other things alloc'd with */ 7514fd1e98SJames Smart 76e399441dSJames Smart enum nvme_fcpop_state { 77e399441dSJames Smart FCPOP_STATE_UNINIT = 0, 78e399441dSJames Smart FCPOP_STATE_IDLE = 1, 79e399441dSJames Smart FCPOP_STATE_ACTIVE = 2, 80e399441dSJames Smart FCPOP_STATE_ABORTED = 3, 8178a7ac26SJames Smart FCPOP_STATE_COMPLETE = 4, 82e399441dSJames Smart }; 83e399441dSJames Smart 84e399441dSJames Smart struct nvme_fc_fcp_op { 85e399441dSJames Smart struct nvme_request nreq; /* 86e399441dSJames Smart * nvme/host/core.c 87e399441dSJames Smart * requires this to be 88e399441dSJames Smart * the 1st element in the 89e399441dSJames Smart * private structure 90e399441dSJames Smart * associated with the 91e399441dSJames Smart * request. 92e399441dSJames Smart */ 93e399441dSJames Smart struct nvmefc_fcp_req fcp_req; 94e399441dSJames Smart 95e399441dSJames Smart struct nvme_fc_ctrl *ctrl; 96e399441dSJames Smart struct nvme_fc_queue *queue; 97e399441dSJames Smart struct request *rq; 98e399441dSJames Smart 99e399441dSJames Smart atomic_t state; 10078a7ac26SJames Smart u32 flags; 101e399441dSJames Smart u32 rqno; 102e399441dSJames Smart u32 nents; 103e399441dSJames Smart 104e399441dSJames Smart struct nvme_fc_cmd_iu cmd_iu; 105e399441dSJames Smart struct nvme_fc_ersp_iu rsp_iu; 106e399441dSJames Smart }; 107e399441dSJames Smart 108d3d0bc78SBart Van Assche struct nvme_fcp_op_w_sgl { 109d3d0bc78SBart Van Assche struct nvme_fc_fcp_op op; 110b1ae1a23SIsrael Rukshin struct scatterlist sgl[NVME_INLINE_SG_CNT]; 111d3d0bc78SBart Van Assche uint8_t priv[0]; 112d3d0bc78SBart Van Assche }; 113d3d0bc78SBart Van Assche 114e399441dSJames Smart struct nvme_fc_lport { 115e399441dSJames Smart struct nvme_fc_local_port localport; 116e399441dSJames Smart 117e399441dSJames Smart struct ida endp_cnt; 118e399441dSJames Smart struct list_head port_list; /* nvme_fc_port_list */ 119e399441dSJames Smart struct list_head endp_list; 120e399441dSJames Smart struct device *dev; /* physical device for dma */ 121e399441dSJames Smart struct nvme_fc_port_template *ops; 122e399441dSJames Smart struct kref ref; 123158bfb88SJames Smart atomic_t act_rport_cnt; 124e399441dSJames Smart } __aligned(sizeof(u64)); /* alignment for other things alloc'd with */ 125e399441dSJames Smart 126e399441dSJames Smart struct nvme_fc_rport { 127e399441dSJames Smart struct nvme_fc_remote_port remoteport; 128e399441dSJames Smart 129e399441dSJames Smart struct list_head endp_list; /* for lport->endp_list */ 130e399441dSJames Smart struct list_head ctrl_list; 131c913a8b0SJames Smart struct list_head ls_req_list; 13214fd1e98SJames Smart struct list_head ls_rcv_list; 13397faec53SJames Smart struct list_head disc_list; 134c913a8b0SJames Smart struct device *dev; /* physical device for dma */ 135c913a8b0SJames Smart struct nvme_fc_lport *lport; 136e399441dSJames Smart spinlock_t lock; 137e399441dSJames Smart struct kref ref; 138158bfb88SJames Smart atomic_t act_ctrl_cnt; 1392b632970SJames Smart unsigned long dev_loss_end; 14014fd1e98SJames Smart struct work_struct lsrcv_work; 141e399441dSJames Smart } __aligned(sizeof(u64)); /* alignment for other things alloc'd with */ 142e399441dSJames Smart 143eb4ee8f1SJames Smart /* fc_ctrl flags values - specified as bit positions */ 144eb4ee8f1SJames Smart #define ASSOC_ACTIVE 0 145eb4ee8f1SJames Smart #define FCCTRL_TERMIO 1 146e399441dSJames Smart 147e399441dSJames Smart struct nvme_fc_ctrl { 148e399441dSJames Smart spinlock_t lock; 149e399441dSJames Smart struct nvme_fc_queue *queues; 150e399441dSJames Smart struct device *dev; 151e399441dSJames Smart struct nvme_fc_lport *lport; 152e399441dSJames Smart struct nvme_fc_rport *rport; 153e399441dSJames Smart u32 cnum; 154e399441dSJames Smart 1554c984154SJames Smart bool ioq_live; 1564cff280aSJames Smart atomic_t err_work_active; 157e399441dSJames Smart u64 association_id; 15814fd1e98SJames Smart struct nvmefc_ls_rcv_op *rcv_disconn; 159e399441dSJames Smart 160e399441dSJames Smart struct list_head ctrl_list; /* rport->ctrl_list */ 161e399441dSJames Smart 162e399441dSJames Smart struct blk_mq_tag_set admin_tag_set; 163e399441dSJames Smart struct blk_mq_tag_set tag_set; 164e399441dSJames Smart 16561bff8efSJames Smart struct delayed_work connect_work; 1664cff280aSJames Smart struct work_struct err_work; 16761bff8efSJames Smart 168e399441dSJames Smart struct kref ref; 169eb4ee8f1SJames Smart unsigned long flags; 17061bff8efSJames Smart u32 iocnt; 17136715cf4SJames Smart wait_queue_head_t ioabort_wait; 172e399441dSJames Smart 17338dabe21SKeith Busch struct nvme_fc_fcp_op aen_ops[NVME_NR_AEN_COMMANDS]; 174e399441dSJames Smart 175e399441dSJames Smart struct nvme_ctrl ctrl; 176e399441dSJames Smart }; 177e399441dSJames Smart 178e399441dSJames Smart static inline struct nvme_fc_ctrl * 179e399441dSJames Smart to_fc_ctrl(struct nvme_ctrl *ctrl) 180e399441dSJames Smart { 181e399441dSJames Smart return container_of(ctrl, struct nvme_fc_ctrl, ctrl); 182e399441dSJames Smart } 183e399441dSJames Smart 184e399441dSJames Smart static inline struct nvme_fc_lport * 185e399441dSJames Smart localport_to_lport(struct nvme_fc_local_port *portptr) 186e399441dSJames Smart { 187e399441dSJames Smart return container_of(portptr, struct nvme_fc_lport, localport); 188e399441dSJames Smart } 189e399441dSJames Smart 190e399441dSJames Smart static inline struct nvme_fc_rport * 191e399441dSJames Smart remoteport_to_rport(struct nvme_fc_remote_port *portptr) 192e399441dSJames Smart { 193e399441dSJames Smart return container_of(portptr, struct nvme_fc_rport, remoteport); 194e399441dSJames Smart } 195e399441dSJames Smart 196e399441dSJames Smart static inline struct nvmefc_ls_req_op * 197e399441dSJames Smart ls_req_to_lsop(struct nvmefc_ls_req *lsreq) 198e399441dSJames Smart { 199e399441dSJames Smart return container_of(lsreq, struct nvmefc_ls_req_op, ls_req); 200e399441dSJames Smart } 201e399441dSJames Smart 202e399441dSJames Smart static inline struct nvme_fc_fcp_op * 203e399441dSJames Smart fcp_req_to_fcp_op(struct nvmefc_fcp_req *fcpreq) 204e399441dSJames Smart { 205e399441dSJames Smart return container_of(fcpreq, struct nvme_fc_fcp_op, fcp_req); 206e399441dSJames Smart } 207e399441dSJames Smart 208e399441dSJames Smart 209e399441dSJames Smart 210e399441dSJames Smart /* *************************** Globals **************************** */ 211e399441dSJames Smart 212e399441dSJames Smart 213e399441dSJames Smart static DEFINE_SPINLOCK(nvme_fc_lock); 214e399441dSJames Smart 215e399441dSJames Smart static LIST_HEAD(nvme_fc_lport_list); 216e399441dSJames Smart static DEFINE_IDA(nvme_fc_local_port_cnt); 217e399441dSJames Smart static DEFINE_IDA(nvme_fc_ctrl_cnt); 218e399441dSJames Smart 2198730c1ddSHannes Reinecke static struct workqueue_struct *nvme_fc_wq; 220e399441dSJames Smart 2214c73cbdfSJames Smart static bool nvme_fc_waiting_to_unload; 2224c73cbdfSJames Smart static DECLARE_COMPLETION(nvme_fc_unload_proceed); 2234c73cbdfSJames Smart 2245f568556SJames Smart /* 2255f568556SJames Smart * These items are short-term. They will eventually be moved into 2265f568556SJames Smart * a generic FC class. See comments in module init. 2275f568556SJames Smart */ 2285f568556SJames Smart static struct device *fc_udev_device; 2295f568556SJames Smart 230e399441dSJames Smart 231e399441dSJames Smart /* *********************** FC-NVME Port Management ************************ */ 232e399441dSJames Smart 233e399441dSJames Smart static void __nvme_fc_delete_hw_queue(struct nvme_fc_ctrl *, 234e399441dSJames Smart struct nvme_fc_queue *, unsigned int); 235e399441dSJames Smart 23614fd1e98SJames Smart static void nvme_fc_handle_ls_rqst_work(struct work_struct *work); 23714fd1e98SJames Smart 23814fd1e98SJames Smart 2395533d424SJames Smart static void 2405533d424SJames Smart nvme_fc_free_lport(struct kref *ref) 2415533d424SJames Smart { 2425533d424SJames Smart struct nvme_fc_lport *lport = 2435533d424SJames Smart container_of(ref, struct nvme_fc_lport, ref); 2445533d424SJames Smart unsigned long flags; 2455533d424SJames Smart 2465533d424SJames Smart WARN_ON(lport->localport.port_state != FC_OBJSTATE_DELETED); 2475533d424SJames Smart WARN_ON(!list_empty(&lport->endp_list)); 2485533d424SJames Smart 2495533d424SJames Smart /* remove from transport list */ 2505533d424SJames Smart spin_lock_irqsave(&nvme_fc_lock, flags); 2515533d424SJames Smart list_del(&lport->port_list); 2524c73cbdfSJames Smart if (nvme_fc_waiting_to_unload && list_empty(&nvme_fc_lport_list)) 2534c73cbdfSJames Smart complete(&nvme_fc_unload_proceed); 2545533d424SJames Smart spin_unlock_irqrestore(&nvme_fc_lock, flags); 2555533d424SJames Smart 2565533d424SJames Smart ida_simple_remove(&nvme_fc_local_port_cnt, lport->localport.port_num); 2575533d424SJames Smart ida_destroy(&lport->endp_cnt); 2585533d424SJames Smart 2595533d424SJames Smart put_device(lport->dev); 2605533d424SJames Smart 2615533d424SJames Smart kfree(lport); 2625533d424SJames Smart } 2635533d424SJames Smart 2645533d424SJames Smart static void 2655533d424SJames Smart nvme_fc_lport_put(struct nvme_fc_lport *lport) 2665533d424SJames Smart { 2675533d424SJames Smart kref_put(&lport->ref, nvme_fc_free_lport); 2685533d424SJames Smart } 2695533d424SJames Smart 2705533d424SJames Smart static int 2715533d424SJames Smart nvme_fc_lport_get(struct nvme_fc_lport *lport) 2725533d424SJames Smart { 2735533d424SJames Smart return kref_get_unless_zero(&lport->ref); 2745533d424SJames Smart } 2755533d424SJames Smart 2765533d424SJames Smart 2775533d424SJames Smart static struct nvme_fc_lport * 278c5760f30SJames Smart nvme_fc_attach_to_unreg_lport(struct nvme_fc_port_info *pinfo, 279c5760f30SJames Smart struct nvme_fc_port_template *ops, 280c5760f30SJames Smart struct device *dev) 2815533d424SJames Smart { 2825533d424SJames Smart struct nvme_fc_lport *lport; 2835533d424SJames Smart unsigned long flags; 2845533d424SJames Smart 2855533d424SJames Smart spin_lock_irqsave(&nvme_fc_lock, flags); 2865533d424SJames Smart 2875533d424SJames Smart list_for_each_entry(lport, &nvme_fc_lport_list, port_list) { 2885533d424SJames Smart if (lport->localport.node_name != pinfo->node_name || 2895533d424SJames Smart lport->localport.port_name != pinfo->port_name) 2905533d424SJames Smart continue; 2915533d424SJames Smart 292c5760f30SJames Smart if (lport->dev != dev) { 293c5760f30SJames Smart lport = ERR_PTR(-EXDEV); 294c5760f30SJames Smart goto out_done; 295c5760f30SJames Smart } 296c5760f30SJames Smart 2975533d424SJames Smart if (lport->localport.port_state != FC_OBJSTATE_DELETED) { 2985533d424SJames Smart lport = ERR_PTR(-EEXIST); 2995533d424SJames Smart goto out_done; 3005533d424SJames Smart } 3015533d424SJames Smart 3025533d424SJames Smart if (!nvme_fc_lport_get(lport)) { 3035533d424SJames Smart /* 3045533d424SJames Smart * fails if ref cnt already 0. If so, 3055533d424SJames Smart * act as if lport already deleted 3065533d424SJames Smart */ 3075533d424SJames Smart lport = NULL; 3085533d424SJames Smart goto out_done; 3095533d424SJames Smart } 3105533d424SJames Smart 3115533d424SJames Smart /* resume the lport */ 3125533d424SJames Smart 313c5760f30SJames Smart lport->ops = ops; 3145533d424SJames Smart lport->localport.port_role = pinfo->port_role; 3155533d424SJames Smart lport->localport.port_id = pinfo->port_id; 3165533d424SJames Smart lport->localport.port_state = FC_OBJSTATE_ONLINE; 3175533d424SJames Smart 3185533d424SJames Smart spin_unlock_irqrestore(&nvme_fc_lock, flags); 3195533d424SJames Smart 3205533d424SJames Smart return lport; 3215533d424SJames Smart } 3225533d424SJames Smart 3235533d424SJames Smart lport = NULL; 3245533d424SJames Smart 3255533d424SJames Smart out_done: 3265533d424SJames Smart spin_unlock_irqrestore(&nvme_fc_lock, flags); 3275533d424SJames Smart 3285533d424SJames Smart return lport; 3295533d424SJames Smart } 330e399441dSJames Smart 331e399441dSJames Smart /** 332e399441dSJames Smart * nvme_fc_register_localport - transport entry point called by an 333e399441dSJames Smart * LLDD to register the existence of a NVME 334e399441dSJames Smart * host FC port. 335e399441dSJames Smart * @pinfo: pointer to information about the port to be registered 336e399441dSJames Smart * @template: LLDD entrypoints and operational parameters for the port 337e399441dSJames Smart * @dev: physical hardware device node port corresponds to. Will be 338e399441dSJames Smart * used for DMA mappings 33976c910c7SBart Van Assche * @portptr: pointer to a local port pointer. Upon success, the routine 340e399441dSJames Smart * will allocate a nvme_fc_local_port structure and place its 341e399441dSJames Smart * address in the local port pointer. Upon failure, local port 342e399441dSJames Smart * pointer will be set to 0. 343e399441dSJames Smart * 344e399441dSJames Smart * Returns: 345e399441dSJames Smart * a completion status. Must be 0 upon success; a negative errno 346e399441dSJames Smart * (ex: -ENXIO) upon failure. 347e399441dSJames Smart */ 348e399441dSJames Smart int 349e399441dSJames Smart nvme_fc_register_localport(struct nvme_fc_port_info *pinfo, 350e399441dSJames Smart struct nvme_fc_port_template *template, 351e399441dSJames Smart struct device *dev, 352e399441dSJames Smart struct nvme_fc_local_port **portptr) 353e399441dSJames Smart { 354e399441dSJames Smart struct nvme_fc_lport *newrec; 355e399441dSJames Smart unsigned long flags; 356e399441dSJames Smart int ret, idx; 357e399441dSJames Smart 358e399441dSJames Smart if (!template->localport_delete || !template->remoteport_delete || 359e399441dSJames Smart !template->ls_req || !template->fcp_io || 360e399441dSJames Smart !template->ls_abort || !template->fcp_abort || 361e399441dSJames Smart !template->max_hw_queues || !template->max_sgl_segments || 3628c5c6605SJames Smart !template->max_dif_sgl_segments || !template->dma_boundary) { 363e399441dSJames Smart ret = -EINVAL; 364e399441dSJames Smart goto out_reghost_failed; 365e399441dSJames Smart } 366e399441dSJames Smart 3675533d424SJames Smart /* 3685533d424SJames Smart * look to see if there is already a localport that had been 3695533d424SJames Smart * deregistered and in the process of waiting for all the 3705533d424SJames Smart * references to fully be removed. If the references haven't 3715533d424SJames Smart * expired, we can simply re-enable the localport. Remoteports 3725533d424SJames Smart * and controller reconnections should resume naturally. 3735533d424SJames Smart */ 374c5760f30SJames Smart newrec = nvme_fc_attach_to_unreg_lport(pinfo, template, dev); 3755533d424SJames Smart 3765533d424SJames Smart /* found an lport, but something about its state is bad */ 3775533d424SJames Smart if (IS_ERR(newrec)) { 3785533d424SJames Smart ret = PTR_ERR(newrec); 3795533d424SJames Smart goto out_reghost_failed; 3805533d424SJames Smart 3815533d424SJames Smart /* found existing lport, which was resumed */ 3825533d424SJames Smart } else if (newrec) { 3835533d424SJames Smart *portptr = &newrec->localport; 3845533d424SJames Smart return 0; 3855533d424SJames Smart } 3865533d424SJames Smart 3875533d424SJames Smart /* nothing found - allocate a new localport struct */ 3885533d424SJames Smart 389e399441dSJames Smart newrec = kmalloc((sizeof(*newrec) + template->local_priv_sz), 390e399441dSJames Smart GFP_KERNEL); 391e399441dSJames Smart if (!newrec) { 392e399441dSJames Smart ret = -ENOMEM; 393e399441dSJames Smart goto out_reghost_failed; 394e399441dSJames Smart } 395e399441dSJames Smart 396e399441dSJames Smart idx = ida_simple_get(&nvme_fc_local_port_cnt, 0, 0, GFP_KERNEL); 397e399441dSJames Smart if (idx < 0) { 398e399441dSJames Smart ret = -ENOSPC; 399e399441dSJames Smart goto out_fail_kfree; 400e399441dSJames Smart } 401e399441dSJames Smart 402e399441dSJames Smart if (!get_device(dev) && dev) { 403e399441dSJames Smart ret = -ENODEV; 404e399441dSJames Smart goto out_ida_put; 405e399441dSJames Smart } 406e399441dSJames Smart 407e399441dSJames Smart INIT_LIST_HEAD(&newrec->port_list); 408e399441dSJames Smart INIT_LIST_HEAD(&newrec->endp_list); 409e399441dSJames Smart kref_init(&newrec->ref); 410158bfb88SJames Smart atomic_set(&newrec->act_rport_cnt, 0); 411e399441dSJames Smart newrec->ops = template; 412e399441dSJames Smart newrec->dev = dev; 413e399441dSJames Smart ida_init(&newrec->endp_cnt); 414f56bf76fSJames Smart if (template->local_priv_sz) 415e399441dSJames Smart newrec->localport.private = &newrec[1]; 416f56bf76fSJames Smart else 417f56bf76fSJames Smart newrec->localport.private = NULL; 418e399441dSJames Smart newrec->localport.node_name = pinfo->node_name; 419e399441dSJames Smart newrec->localport.port_name = pinfo->port_name; 420e399441dSJames Smart newrec->localport.port_role = pinfo->port_role; 421e399441dSJames Smart newrec->localport.port_id = pinfo->port_id; 422e399441dSJames Smart newrec->localport.port_state = FC_OBJSTATE_ONLINE; 423e399441dSJames Smart newrec->localport.port_num = idx; 424e399441dSJames Smart 425e399441dSJames Smart spin_lock_irqsave(&nvme_fc_lock, flags); 426e399441dSJames Smart list_add_tail(&newrec->port_list, &nvme_fc_lport_list); 427e399441dSJames Smart spin_unlock_irqrestore(&nvme_fc_lock, flags); 428e399441dSJames Smart 429e399441dSJames Smart if (dev) 430e399441dSJames Smart dma_set_seg_boundary(dev, template->dma_boundary); 431e399441dSJames Smart 432e399441dSJames Smart *portptr = &newrec->localport; 433e399441dSJames Smart return 0; 434e399441dSJames Smart 435e399441dSJames Smart out_ida_put: 436e399441dSJames Smart ida_simple_remove(&nvme_fc_local_port_cnt, idx); 437e399441dSJames Smart out_fail_kfree: 438e399441dSJames Smart kfree(newrec); 439e399441dSJames Smart out_reghost_failed: 440e399441dSJames Smart *portptr = NULL; 441e399441dSJames Smart 442e399441dSJames Smart return ret; 443e399441dSJames Smart } 444e399441dSJames Smart EXPORT_SYMBOL_GPL(nvme_fc_register_localport); 445e399441dSJames Smart 446e399441dSJames Smart /** 447e399441dSJames Smart * nvme_fc_unregister_localport - transport entry point called by an 448e399441dSJames Smart * LLDD to deregister/remove a previously 449e399441dSJames Smart * registered a NVME host FC port. 45076c910c7SBart Van Assche * @portptr: pointer to the (registered) local port that is to be deregistered. 451e399441dSJames Smart * 452e399441dSJames Smart * Returns: 453e399441dSJames Smart * a completion status. Must be 0 upon success; a negative errno 454e399441dSJames Smart * (ex: -ENXIO) upon failure. 455e399441dSJames Smart */ 456e399441dSJames Smart int 457e399441dSJames Smart nvme_fc_unregister_localport(struct nvme_fc_local_port *portptr) 458e399441dSJames Smart { 459e399441dSJames Smart struct nvme_fc_lport *lport = localport_to_lport(portptr); 460e399441dSJames Smart unsigned long flags; 461e399441dSJames Smart 462e399441dSJames Smart if (!portptr) 463e399441dSJames Smart return -EINVAL; 464e399441dSJames Smart 465e399441dSJames Smart spin_lock_irqsave(&nvme_fc_lock, flags); 466e399441dSJames Smart 467e399441dSJames Smart if (portptr->port_state != FC_OBJSTATE_ONLINE) { 468e399441dSJames Smart spin_unlock_irqrestore(&nvme_fc_lock, flags); 469e399441dSJames Smart return -EINVAL; 470e399441dSJames Smart } 471e399441dSJames Smart portptr->port_state = FC_OBJSTATE_DELETED; 472e399441dSJames Smart 473e399441dSJames Smart spin_unlock_irqrestore(&nvme_fc_lock, flags); 474e399441dSJames Smart 475158bfb88SJames Smart if (atomic_read(&lport->act_rport_cnt) == 0) 476158bfb88SJames Smart lport->ops->localport_delete(&lport->localport); 477158bfb88SJames Smart 478e399441dSJames Smart nvme_fc_lport_put(lport); 479e399441dSJames Smart 480e399441dSJames Smart return 0; 481e399441dSJames Smart } 482e399441dSJames Smart EXPORT_SYMBOL_GPL(nvme_fc_unregister_localport); 483e399441dSJames Smart 484eaefd5abSJames Smart /* 485eaefd5abSJames Smart * TRADDR strings, per FC-NVME are fixed format: 486eaefd5abSJames Smart * "nn-0x<16hexdigits>:pn-0x<16hexdigits>" - 43 characters 487eaefd5abSJames Smart * udev event will only differ by prefix of what field is 488eaefd5abSJames Smart * being specified: 489eaefd5abSJames Smart * "NVMEFC_HOST_TRADDR=" or "NVMEFC_TRADDR=" - 19 max characters 490eaefd5abSJames Smart * 19 + 43 + null_fudge = 64 characters 491eaefd5abSJames Smart */ 492eaefd5abSJames Smart #define FCNVME_TRADDR_LENGTH 64 493eaefd5abSJames Smart 494eaefd5abSJames Smart static void 495eaefd5abSJames Smart nvme_fc_signal_discovery_scan(struct nvme_fc_lport *lport, 496eaefd5abSJames Smart struct nvme_fc_rport *rport) 497eaefd5abSJames Smart { 498eaefd5abSJames Smart char hostaddr[FCNVME_TRADDR_LENGTH]; /* NVMEFC_HOST_TRADDR=...*/ 499eaefd5abSJames Smart char tgtaddr[FCNVME_TRADDR_LENGTH]; /* NVMEFC_TRADDR=...*/ 500eaefd5abSJames Smart char *envp[4] = { "FC_EVENT=nvmediscovery", hostaddr, tgtaddr, NULL }; 501eaefd5abSJames Smart 502eaefd5abSJames Smart if (!(rport->remoteport.port_role & FC_PORT_ROLE_NVME_DISCOVERY)) 503eaefd5abSJames Smart return; 504eaefd5abSJames Smart 505eaefd5abSJames Smart snprintf(hostaddr, sizeof(hostaddr), 506eaefd5abSJames Smart "NVMEFC_HOST_TRADDR=nn-0x%016llx:pn-0x%016llx", 507eaefd5abSJames Smart lport->localport.node_name, lport->localport.port_name); 508eaefd5abSJames Smart snprintf(tgtaddr, sizeof(tgtaddr), 509eaefd5abSJames Smart "NVMEFC_TRADDR=nn-0x%016llx:pn-0x%016llx", 510eaefd5abSJames Smart rport->remoteport.node_name, rport->remoteport.port_name); 511eaefd5abSJames Smart kobject_uevent_env(&fc_udev_device->kobj, KOBJ_CHANGE, envp); 512eaefd5abSJames Smart } 513eaefd5abSJames Smart 514469d0ef0SJames Smart static void 515469d0ef0SJames Smart nvme_fc_free_rport(struct kref *ref) 516469d0ef0SJames Smart { 517469d0ef0SJames Smart struct nvme_fc_rport *rport = 518469d0ef0SJames Smart container_of(ref, struct nvme_fc_rport, ref); 519469d0ef0SJames Smart struct nvme_fc_lport *lport = 520469d0ef0SJames Smart localport_to_lport(rport->remoteport.localport); 521469d0ef0SJames Smart unsigned long flags; 522469d0ef0SJames Smart 523469d0ef0SJames Smart WARN_ON(rport->remoteport.port_state != FC_OBJSTATE_DELETED); 524469d0ef0SJames Smart WARN_ON(!list_empty(&rport->ctrl_list)); 525469d0ef0SJames Smart 526469d0ef0SJames Smart /* remove from lport list */ 527469d0ef0SJames Smart spin_lock_irqsave(&nvme_fc_lock, flags); 528469d0ef0SJames Smart list_del(&rport->endp_list); 529469d0ef0SJames Smart spin_unlock_irqrestore(&nvme_fc_lock, flags); 530469d0ef0SJames Smart 53197faec53SJames Smart WARN_ON(!list_empty(&rport->disc_list)); 532469d0ef0SJames Smart ida_simple_remove(&lport->endp_cnt, rport->remoteport.port_num); 533469d0ef0SJames Smart 534469d0ef0SJames Smart kfree(rport); 535469d0ef0SJames Smart 536469d0ef0SJames Smart nvme_fc_lport_put(lport); 537469d0ef0SJames Smart } 538469d0ef0SJames Smart 539469d0ef0SJames Smart static void 540469d0ef0SJames Smart nvme_fc_rport_put(struct nvme_fc_rport *rport) 541469d0ef0SJames Smart { 542469d0ef0SJames Smart kref_put(&rport->ref, nvme_fc_free_rport); 543469d0ef0SJames Smart } 544469d0ef0SJames Smart 545469d0ef0SJames Smart static int 546469d0ef0SJames Smart nvme_fc_rport_get(struct nvme_fc_rport *rport) 547469d0ef0SJames Smart { 548469d0ef0SJames Smart return kref_get_unless_zero(&rport->ref); 549469d0ef0SJames Smart } 550469d0ef0SJames Smart 5512b632970SJames Smart static void 5522b632970SJames Smart nvme_fc_resume_controller(struct nvme_fc_ctrl *ctrl) 5532b632970SJames Smart { 5542b632970SJames Smart switch (ctrl->ctrl.state) { 5552b632970SJames Smart case NVME_CTRL_NEW: 556ad6a0a52SMax Gurtovoy case NVME_CTRL_CONNECTING: 5572b632970SJames Smart /* 5582b632970SJames Smart * As all reconnects were suppressed, schedule a 5592b632970SJames Smart * connect. 5602b632970SJames Smart */ 5612b632970SJames Smart dev_info(ctrl->ctrl.device, 5622b632970SJames Smart "NVME-FC{%d}: connectivity re-established. " 5632b632970SJames Smart "Attempting reconnect\n", ctrl->cnum); 5642b632970SJames Smart 5652b632970SJames Smart queue_delayed_work(nvme_wq, &ctrl->connect_work, 0); 5662b632970SJames Smart break; 5672b632970SJames Smart 5682b632970SJames Smart case NVME_CTRL_RESETTING: 5692b632970SJames Smart /* 5702b632970SJames Smart * Controller is already in the process of terminating the 5712b632970SJames Smart * association. No need to do anything further. The reconnect 5722b632970SJames Smart * step will naturally occur after the reset completes. 5732b632970SJames Smart */ 5742b632970SJames Smart break; 5752b632970SJames Smart 5762b632970SJames Smart default: 5772b632970SJames Smart /* no action to take - let it delete */ 5782b632970SJames Smart break; 5792b632970SJames Smart } 5802b632970SJames Smart } 5812b632970SJames Smart 5822b632970SJames Smart static struct nvme_fc_rport * 5832b632970SJames Smart nvme_fc_attach_to_suspended_rport(struct nvme_fc_lport *lport, 5842b632970SJames Smart struct nvme_fc_port_info *pinfo) 5852b632970SJames Smart { 5862b632970SJames Smart struct nvme_fc_rport *rport; 5872b632970SJames Smart struct nvme_fc_ctrl *ctrl; 5882b632970SJames Smart unsigned long flags; 5892b632970SJames Smart 5902b632970SJames Smart spin_lock_irqsave(&nvme_fc_lock, flags); 5912b632970SJames Smart 5922b632970SJames Smart list_for_each_entry(rport, &lport->endp_list, endp_list) { 5932b632970SJames Smart if (rport->remoteport.node_name != pinfo->node_name || 5942b632970SJames Smart rport->remoteport.port_name != pinfo->port_name) 5952b632970SJames Smart continue; 5962b632970SJames Smart 5972b632970SJames Smart if (!nvme_fc_rport_get(rport)) { 5982b632970SJames Smart rport = ERR_PTR(-ENOLCK); 5992b632970SJames Smart goto out_done; 6002b632970SJames Smart } 6012b632970SJames Smart 6022b632970SJames Smart spin_unlock_irqrestore(&nvme_fc_lock, flags); 6032b632970SJames Smart 6042b632970SJames Smart spin_lock_irqsave(&rport->lock, flags); 6052b632970SJames Smart 6062b632970SJames Smart /* has it been unregistered */ 6072b632970SJames Smart if (rport->remoteport.port_state != FC_OBJSTATE_DELETED) { 6082b632970SJames Smart /* means lldd called us twice */ 6092b632970SJames Smart spin_unlock_irqrestore(&rport->lock, flags); 6102b632970SJames Smart nvme_fc_rport_put(rport); 6112b632970SJames Smart return ERR_PTR(-ESTALE); 6122b632970SJames Smart } 6132b632970SJames Smart 6140cdd5fcaSJames Smart rport->remoteport.port_role = pinfo->port_role; 6150cdd5fcaSJames Smart rport->remoteport.port_id = pinfo->port_id; 6162b632970SJames Smart rport->remoteport.port_state = FC_OBJSTATE_ONLINE; 6172b632970SJames Smart rport->dev_loss_end = 0; 6182b632970SJames Smart 6192b632970SJames Smart /* 6202b632970SJames Smart * kick off a reconnect attempt on all associations to the 6212b632970SJames Smart * remote port. A successful reconnects will resume i/o. 6222b632970SJames Smart */ 6232b632970SJames Smart list_for_each_entry(ctrl, &rport->ctrl_list, ctrl_list) 6242b632970SJames Smart nvme_fc_resume_controller(ctrl); 6252b632970SJames Smart 6262b632970SJames Smart spin_unlock_irqrestore(&rport->lock, flags); 6272b632970SJames Smart 6282b632970SJames Smart return rport; 6292b632970SJames Smart } 6302b632970SJames Smart 6312b632970SJames Smart rport = NULL; 6322b632970SJames Smart 6332b632970SJames Smart out_done: 6342b632970SJames Smart spin_unlock_irqrestore(&nvme_fc_lock, flags); 6352b632970SJames Smart 6362b632970SJames Smart return rport; 6372b632970SJames Smart } 6382b632970SJames Smart 6392b632970SJames Smart static inline void 6402b632970SJames Smart __nvme_fc_set_dev_loss_tmo(struct nvme_fc_rport *rport, 6412b632970SJames Smart struct nvme_fc_port_info *pinfo) 6422b632970SJames Smart { 6432b632970SJames Smart if (pinfo->dev_loss_tmo) 6442b632970SJames Smart rport->remoteport.dev_loss_tmo = pinfo->dev_loss_tmo; 6452b632970SJames Smart else 6462b632970SJames Smart rport->remoteport.dev_loss_tmo = NVME_FC_DEFAULT_DEV_LOSS_TMO; 6472b632970SJames Smart } 6482b632970SJames Smart 649e399441dSJames Smart /** 650e399441dSJames Smart * nvme_fc_register_remoteport - transport entry point called by an 651e399441dSJames Smart * LLDD to register the existence of a NVME 652e399441dSJames Smart * subsystem FC port on its fabric. 653e399441dSJames Smart * @localport: pointer to the (registered) local port that the remote 654e399441dSJames Smart * subsystem port is connected to. 655e399441dSJames Smart * @pinfo: pointer to information about the port to be registered 65676c910c7SBart Van Assche * @portptr: pointer to a remote port pointer. Upon success, the routine 657e399441dSJames Smart * will allocate a nvme_fc_remote_port structure and place its 658e399441dSJames Smart * address in the remote port pointer. Upon failure, remote port 659e399441dSJames Smart * pointer will be set to 0. 660e399441dSJames Smart * 661e399441dSJames Smart * Returns: 662e399441dSJames Smart * a completion status. Must be 0 upon success; a negative errno 663e399441dSJames Smart * (ex: -ENXIO) upon failure. 664e399441dSJames Smart */ 665e399441dSJames Smart int 666e399441dSJames Smart nvme_fc_register_remoteport(struct nvme_fc_local_port *localport, 667e399441dSJames Smart struct nvme_fc_port_info *pinfo, 668e399441dSJames Smart struct nvme_fc_remote_port **portptr) 669e399441dSJames Smart { 670e399441dSJames Smart struct nvme_fc_lport *lport = localport_to_lport(localport); 671e399441dSJames Smart struct nvme_fc_rport *newrec; 672e399441dSJames Smart unsigned long flags; 673e399441dSJames Smart int ret, idx; 674e399441dSJames Smart 6752b632970SJames Smart if (!nvme_fc_lport_get(lport)) { 6762b632970SJames Smart ret = -ESHUTDOWN; 6772b632970SJames Smart goto out_reghost_failed; 6782b632970SJames Smart } 6792b632970SJames Smart 6802b632970SJames Smart /* 6812b632970SJames Smart * look to see if there is already a remoteport that is waiting 6822b632970SJames Smart * for a reconnect (within dev_loss_tmo) with the same WWN's. 6832b632970SJames Smart * If so, transition to it and reconnect. 6842b632970SJames Smart */ 6852b632970SJames Smart newrec = nvme_fc_attach_to_suspended_rport(lport, pinfo); 6862b632970SJames Smart 6872b632970SJames Smart /* found an rport, but something about its state is bad */ 6882b632970SJames Smart if (IS_ERR(newrec)) { 6892b632970SJames Smart ret = PTR_ERR(newrec); 6902b632970SJames Smart goto out_lport_put; 6912b632970SJames Smart 6922b632970SJames Smart /* found existing rport, which was resumed */ 6932b632970SJames Smart } else if (newrec) { 6942b632970SJames Smart nvme_fc_lport_put(lport); 6952b632970SJames Smart __nvme_fc_set_dev_loss_tmo(newrec, pinfo); 6962b632970SJames Smart nvme_fc_signal_discovery_scan(lport, newrec); 6972b632970SJames Smart *portptr = &newrec->remoteport; 6982b632970SJames Smart return 0; 6992b632970SJames Smart } 7002b632970SJames Smart 7012b632970SJames Smart /* nothing found - allocate a new remoteport struct */ 7022b632970SJames Smart 703e399441dSJames Smart newrec = kmalloc((sizeof(*newrec) + lport->ops->remote_priv_sz), 704e399441dSJames Smart GFP_KERNEL); 705e399441dSJames Smart if (!newrec) { 706e399441dSJames Smart ret = -ENOMEM; 7072b632970SJames Smart goto out_lport_put; 708e399441dSJames Smart } 709e399441dSJames Smart 710e399441dSJames Smart idx = ida_simple_get(&lport->endp_cnt, 0, 0, GFP_KERNEL); 711e399441dSJames Smart if (idx < 0) { 712e399441dSJames Smart ret = -ENOSPC; 7132b632970SJames Smart goto out_kfree_rport; 714e399441dSJames Smart } 715e399441dSJames Smart 716e399441dSJames Smart INIT_LIST_HEAD(&newrec->endp_list); 717e399441dSJames Smart INIT_LIST_HEAD(&newrec->ctrl_list); 718c913a8b0SJames Smart INIT_LIST_HEAD(&newrec->ls_req_list); 71997faec53SJames Smart INIT_LIST_HEAD(&newrec->disc_list); 720e399441dSJames Smart kref_init(&newrec->ref); 721158bfb88SJames Smart atomic_set(&newrec->act_ctrl_cnt, 0); 722e399441dSJames Smart spin_lock_init(&newrec->lock); 723e399441dSJames Smart newrec->remoteport.localport = &lport->localport; 72414fd1e98SJames Smart INIT_LIST_HEAD(&newrec->ls_rcv_list); 725c913a8b0SJames Smart newrec->dev = lport->dev; 726c913a8b0SJames Smart newrec->lport = lport; 727f56bf76fSJames Smart if (lport->ops->remote_priv_sz) 728e399441dSJames Smart newrec->remoteport.private = &newrec[1]; 729f56bf76fSJames Smart else 730f56bf76fSJames Smart newrec->remoteport.private = NULL; 731e399441dSJames Smart newrec->remoteport.port_role = pinfo->port_role; 732e399441dSJames Smart newrec->remoteport.node_name = pinfo->node_name; 733e399441dSJames Smart newrec->remoteport.port_name = pinfo->port_name; 734e399441dSJames Smart newrec->remoteport.port_id = pinfo->port_id; 735e399441dSJames Smart newrec->remoteport.port_state = FC_OBJSTATE_ONLINE; 736e399441dSJames Smart newrec->remoteport.port_num = idx; 7372b632970SJames Smart __nvme_fc_set_dev_loss_tmo(newrec, pinfo); 73814fd1e98SJames Smart INIT_WORK(&newrec->lsrcv_work, nvme_fc_handle_ls_rqst_work); 739e399441dSJames Smart 740e399441dSJames Smart spin_lock_irqsave(&nvme_fc_lock, flags); 741e399441dSJames Smart list_add_tail(&newrec->endp_list, &lport->endp_list); 742e399441dSJames Smart spin_unlock_irqrestore(&nvme_fc_lock, flags); 743e399441dSJames Smart 744eaefd5abSJames Smart nvme_fc_signal_discovery_scan(lport, newrec); 745eaefd5abSJames Smart 746e399441dSJames Smart *portptr = &newrec->remoteport; 747e399441dSJames Smart return 0; 748e399441dSJames Smart 749e399441dSJames Smart out_kfree_rport: 750e399441dSJames Smart kfree(newrec); 7512b632970SJames Smart out_lport_put: 7522b632970SJames Smart nvme_fc_lport_put(lport); 753e399441dSJames Smart out_reghost_failed: 754e399441dSJames Smart *portptr = NULL; 755e399441dSJames Smart return ret; 756e399441dSJames Smart } 757e399441dSJames Smart EXPORT_SYMBOL_GPL(nvme_fc_register_remoteport); 758e399441dSJames Smart 7598d64daf7SJames Smart static int 7608d64daf7SJames Smart nvme_fc_abort_lsops(struct nvme_fc_rport *rport) 7618d64daf7SJames Smart { 7628d64daf7SJames Smart struct nvmefc_ls_req_op *lsop; 7638d64daf7SJames Smart unsigned long flags; 7648d64daf7SJames Smart 7658d64daf7SJames Smart restart: 7668d64daf7SJames Smart spin_lock_irqsave(&rport->lock, flags); 7678d64daf7SJames Smart 7688d64daf7SJames Smart list_for_each_entry(lsop, &rport->ls_req_list, lsreq_list) { 7698d64daf7SJames Smart if (!(lsop->flags & FCOP_FLAGS_TERMIO)) { 7708d64daf7SJames Smart lsop->flags |= FCOP_FLAGS_TERMIO; 7718d64daf7SJames Smart spin_unlock_irqrestore(&rport->lock, flags); 7728d64daf7SJames Smart rport->lport->ops->ls_abort(&rport->lport->localport, 7738d64daf7SJames Smart &rport->remoteport, 7748d64daf7SJames Smart &lsop->ls_req); 7758d64daf7SJames Smart goto restart; 7768d64daf7SJames Smart } 7778d64daf7SJames Smart } 7788d64daf7SJames Smart spin_unlock_irqrestore(&rport->lock, flags); 7798d64daf7SJames Smart 7808d64daf7SJames Smart return 0; 7818d64daf7SJames Smart } 7828d64daf7SJames Smart 7832b632970SJames Smart static void 7842b632970SJames Smart nvme_fc_ctrl_connectivity_loss(struct nvme_fc_ctrl *ctrl) 7852b632970SJames Smart { 7862b632970SJames Smart dev_info(ctrl->ctrl.device, 7872b632970SJames Smart "NVME-FC{%d}: controller connectivity lost. Awaiting " 7882b632970SJames Smart "Reconnect", ctrl->cnum); 7892b632970SJames Smart 7902b632970SJames Smart switch (ctrl->ctrl.state) { 7912b632970SJames Smart case NVME_CTRL_NEW: 7922b632970SJames Smart case NVME_CTRL_LIVE: 7932b632970SJames Smart /* 7942b632970SJames Smart * Schedule a controller reset. The reset will terminate the 7952b632970SJames Smart * association and schedule the reconnect timer. Reconnects 7962b632970SJames Smart * will be attempted until either the ctlr_loss_tmo 7972b632970SJames Smart * (max_retries * connect_delay) expires or the remoteport's 7982b632970SJames Smart * dev_loss_tmo expires. 7992b632970SJames Smart */ 8002b632970SJames Smart if (nvme_reset_ctrl(&ctrl->ctrl)) { 8012b632970SJames Smart dev_warn(ctrl->ctrl.device, 80277d0612dSMax Gurtovoy "NVME-FC{%d}: Couldn't schedule reset.\n", 8032b632970SJames Smart ctrl->cnum); 8042b632970SJames Smart nvme_delete_ctrl(&ctrl->ctrl); 8052b632970SJames Smart } 8062b632970SJames Smart break; 8072b632970SJames Smart 808ad6a0a52SMax Gurtovoy case NVME_CTRL_CONNECTING: 8092b632970SJames Smart /* 8102b632970SJames Smart * The association has already been terminated and the 8112b632970SJames Smart * controller is attempting reconnects. No need to do anything 8122b632970SJames Smart * futher. Reconnects will be attempted until either the 8132b632970SJames Smart * ctlr_loss_tmo (max_retries * connect_delay) expires or the 8142b632970SJames Smart * remoteport's dev_loss_tmo expires. 8152b632970SJames Smart */ 8162b632970SJames Smart break; 8172b632970SJames Smart 8182b632970SJames Smart case NVME_CTRL_RESETTING: 8192b632970SJames Smart /* 8202b632970SJames Smart * Controller is already in the process of terminating the 8212b632970SJames Smart * association. No need to do anything further. The reconnect 8222b632970SJames Smart * step will kick in naturally after the association is 8232b632970SJames Smart * terminated. 8242b632970SJames Smart */ 8252b632970SJames Smart break; 8262b632970SJames Smart 8272b632970SJames Smart case NVME_CTRL_DELETING: 8282b632970SJames Smart default: 8292b632970SJames Smart /* no action to take - let it delete */ 8302b632970SJames Smart break; 8312b632970SJames Smart } 8322b632970SJames Smart } 8332b632970SJames Smart 834e399441dSJames Smart /** 835e399441dSJames Smart * nvme_fc_unregister_remoteport - transport entry point called by an 836e399441dSJames Smart * LLDD to deregister/remove a previously 837e399441dSJames Smart * registered a NVME subsystem FC port. 83876c910c7SBart Van Assche * @portptr: pointer to the (registered) remote port that is to be 839e399441dSJames Smart * deregistered. 840e399441dSJames Smart * 841e399441dSJames Smart * Returns: 842e399441dSJames Smart * a completion status. Must be 0 upon success; a negative errno 843e399441dSJames Smart * (ex: -ENXIO) upon failure. 844e399441dSJames Smart */ 845e399441dSJames Smart int 846e399441dSJames Smart nvme_fc_unregister_remoteport(struct nvme_fc_remote_port *portptr) 847e399441dSJames Smart { 848e399441dSJames Smart struct nvme_fc_rport *rport = remoteport_to_rport(portptr); 849e399441dSJames Smart struct nvme_fc_ctrl *ctrl; 850e399441dSJames Smart unsigned long flags; 851e399441dSJames Smart 852e399441dSJames Smart if (!portptr) 853e399441dSJames Smart return -EINVAL; 854e399441dSJames Smart 855e399441dSJames Smart spin_lock_irqsave(&rport->lock, flags); 856e399441dSJames Smart 857e399441dSJames Smart if (portptr->port_state != FC_OBJSTATE_ONLINE) { 858e399441dSJames Smart spin_unlock_irqrestore(&rport->lock, flags); 859e399441dSJames Smart return -EINVAL; 860e399441dSJames Smart } 861e399441dSJames Smart portptr->port_state = FC_OBJSTATE_DELETED; 862e399441dSJames Smart 8632b632970SJames Smart rport->dev_loss_end = jiffies + (portptr->dev_loss_tmo * HZ); 8642b632970SJames Smart 8652b632970SJames Smart list_for_each_entry(ctrl, &rport->ctrl_list, ctrl_list) { 8662b632970SJames Smart /* if dev_loss_tmo==0, dev loss is immediate */ 8672b632970SJames Smart if (!portptr->dev_loss_tmo) { 8682b632970SJames Smart dev_warn(ctrl->ctrl.device, 86977d0612dSMax Gurtovoy "NVME-FC{%d}: controller connectivity lost.\n", 8702b632970SJames Smart ctrl->cnum); 871c5017e85SChristoph Hellwig nvme_delete_ctrl(&ctrl->ctrl); 8722b632970SJames Smart } else 8732b632970SJames Smart nvme_fc_ctrl_connectivity_loss(ctrl); 8742b632970SJames Smart } 875e399441dSJames Smart 876e399441dSJames Smart spin_unlock_irqrestore(&rport->lock, flags); 877e399441dSJames Smart 8788d64daf7SJames Smart nvme_fc_abort_lsops(rport); 8798d64daf7SJames Smart 880158bfb88SJames Smart if (atomic_read(&rport->act_ctrl_cnt) == 0) 881158bfb88SJames Smart rport->lport->ops->remoteport_delete(portptr); 882158bfb88SJames Smart 8832b632970SJames Smart /* 8842b632970SJames Smart * release the reference, which will allow, if all controllers 8852b632970SJames Smart * go away, which should only occur after dev_loss_tmo occurs, 8862b632970SJames Smart * for the rport to be torn down. 8872b632970SJames Smart */ 888e399441dSJames Smart nvme_fc_rport_put(rport); 8892b632970SJames Smart 890e399441dSJames Smart return 0; 891e399441dSJames Smart } 892e399441dSJames Smart EXPORT_SYMBOL_GPL(nvme_fc_unregister_remoteport); 893e399441dSJames Smart 894eaefd5abSJames Smart /** 895eaefd5abSJames Smart * nvme_fc_rescan_remoteport - transport entry point called by an 896eaefd5abSJames Smart * LLDD to request a nvme device rescan. 897eaefd5abSJames Smart * @remoteport: pointer to the (registered) remote port that is to be 898eaefd5abSJames Smart * rescanned. 899eaefd5abSJames Smart * 900eaefd5abSJames Smart * Returns: N/A 901eaefd5abSJames Smart */ 902eaefd5abSJames Smart void 903eaefd5abSJames Smart nvme_fc_rescan_remoteport(struct nvme_fc_remote_port *remoteport) 904eaefd5abSJames Smart { 905eaefd5abSJames Smart struct nvme_fc_rport *rport = remoteport_to_rport(remoteport); 906eaefd5abSJames Smart 907eaefd5abSJames Smart nvme_fc_signal_discovery_scan(rport->lport, rport); 908eaefd5abSJames Smart } 909eaefd5abSJames Smart EXPORT_SYMBOL_GPL(nvme_fc_rescan_remoteport); 910eaefd5abSJames Smart 911ac7fe82bSJames Smart int 912ac7fe82bSJames Smart nvme_fc_set_remoteport_devloss(struct nvme_fc_remote_port *portptr, 913ac7fe82bSJames Smart u32 dev_loss_tmo) 914ac7fe82bSJames Smart { 915ac7fe82bSJames Smart struct nvme_fc_rport *rport = remoteport_to_rport(portptr); 916ac7fe82bSJames Smart unsigned long flags; 917ac7fe82bSJames Smart 918ac7fe82bSJames Smart spin_lock_irqsave(&rport->lock, flags); 919ac7fe82bSJames Smart 920ac7fe82bSJames Smart if (portptr->port_state != FC_OBJSTATE_ONLINE) { 921ac7fe82bSJames Smart spin_unlock_irqrestore(&rport->lock, flags); 922ac7fe82bSJames Smart return -EINVAL; 923ac7fe82bSJames Smart } 924ac7fe82bSJames Smart 925ac7fe82bSJames Smart /* a dev_loss_tmo of 0 (immediate) is allowed to be set */ 926ac7fe82bSJames Smart rport->remoteport.dev_loss_tmo = dev_loss_tmo; 927ac7fe82bSJames Smart 928ac7fe82bSJames Smart spin_unlock_irqrestore(&rport->lock, flags); 929ac7fe82bSJames Smart 930ac7fe82bSJames Smart return 0; 931ac7fe82bSJames Smart } 932ac7fe82bSJames Smart EXPORT_SYMBOL_GPL(nvme_fc_set_remoteport_devloss); 933ac7fe82bSJames Smart 934e399441dSJames Smart 935e399441dSJames Smart /* *********************** FC-NVME DMA Handling **************************** */ 936e399441dSJames Smart 937e399441dSJames Smart /* 938e399441dSJames Smart * The fcloop device passes in a NULL device pointer. Real LLD's will 939e399441dSJames Smart * pass in a valid device pointer. If NULL is passed to the dma mapping 940e399441dSJames Smart * routines, depending on the platform, it may or may not succeed, and 941e399441dSJames Smart * may crash. 942e399441dSJames Smart * 943e399441dSJames Smart * As such: 944e399441dSJames Smart * Wrapper all the dma routines and check the dev pointer. 945e399441dSJames Smart * 946e399441dSJames Smart * If simple mappings (return just a dma address, we'll noop them, 947e399441dSJames Smart * returning a dma address of 0. 948e399441dSJames Smart * 949e399441dSJames Smart * On more complex mappings (dma_map_sg), a pseudo routine fills 950e399441dSJames Smart * in the scatter list, setting all dma addresses to 0. 951e399441dSJames Smart */ 952e399441dSJames Smart 953e399441dSJames Smart static inline dma_addr_t 954e399441dSJames Smart fc_dma_map_single(struct device *dev, void *ptr, size_t size, 955e399441dSJames Smart enum dma_data_direction dir) 956e399441dSJames Smart { 957e399441dSJames Smart return dev ? dma_map_single(dev, ptr, size, dir) : (dma_addr_t)0L; 958e399441dSJames Smart } 959e399441dSJames Smart 960e399441dSJames Smart static inline int 961e399441dSJames Smart fc_dma_mapping_error(struct device *dev, dma_addr_t dma_addr) 962e399441dSJames Smart { 963e399441dSJames Smart return dev ? dma_mapping_error(dev, dma_addr) : 0; 964e399441dSJames Smart } 965e399441dSJames Smart 966e399441dSJames Smart static inline void 967e399441dSJames Smart fc_dma_unmap_single(struct device *dev, dma_addr_t addr, size_t size, 968e399441dSJames Smart enum dma_data_direction dir) 969e399441dSJames Smart { 970e399441dSJames Smart if (dev) 971e399441dSJames Smart dma_unmap_single(dev, addr, size, dir); 972e399441dSJames Smart } 973e399441dSJames Smart 974e399441dSJames Smart static inline void 975e399441dSJames Smart fc_dma_sync_single_for_cpu(struct device *dev, dma_addr_t addr, size_t size, 976e399441dSJames Smart enum dma_data_direction dir) 977e399441dSJames Smart { 978e399441dSJames Smart if (dev) 979e399441dSJames Smart dma_sync_single_for_cpu(dev, addr, size, dir); 980e399441dSJames Smart } 981e399441dSJames Smart 982e399441dSJames Smart static inline void 983e399441dSJames Smart fc_dma_sync_single_for_device(struct device *dev, dma_addr_t addr, size_t size, 984e399441dSJames Smart enum dma_data_direction dir) 985e399441dSJames Smart { 986e399441dSJames Smart if (dev) 987e399441dSJames Smart dma_sync_single_for_device(dev, addr, size, dir); 988e399441dSJames Smart } 989e399441dSJames Smart 990e399441dSJames Smart /* pseudo dma_map_sg call */ 991e399441dSJames Smart static int 992e399441dSJames Smart fc_map_sg(struct scatterlist *sg, int nents) 993e399441dSJames Smart { 994e399441dSJames Smart struct scatterlist *s; 995e399441dSJames Smart int i; 996e399441dSJames Smart 997e399441dSJames Smart WARN_ON(nents == 0 || sg[0].length == 0); 998e399441dSJames Smart 999e399441dSJames Smart for_each_sg(sg, s, nents, i) { 1000e399441dSJames Smart s->dma_address = 0L; 1001e399441dSJames Smart #ifdef CONFIG_NEED_SG_DMA_LENGTH 1002e399441dSJames Smart s->dma_length = s->length; 1003e399441dSJames Smart #endif 1004e399441dSJames Smart } 1005e399441dSJames Smart return nents; 1006e399441dSJames Smart } 1007e399441dSJames Smart 1008e399441dSJames Smart static inline int 1009e399441dSJames Smart fc_dma_map_sg(struct device *dev, struct scatterlist *sg, int nents, 1010e399441dSJames Smart enum dma_data_direction dir) 1011e399441dSJames Smart { 1012e399441dSJames Smart return dev ? dma_map_sg(dev, sg, nents, dir) : fc_map_sg(sg, nents); 1013e399441dSJames Smart } 1014e399441dSJames Smart 1015e399441dSJames Smart static inline void 1016e399441dSJames Smart fc_dma_unmap_sg(struct device *dev, struct scatterlist *sg, int nents, 1017e399441dSJames Smart enum dma_data_direction dir) 1018e399441dSJames Smart { 1019e399441dSJames Smart if (dev) 1020e399441dSJames Smart dma_unmap_sg(dev, sg, nents, dir); 1021e399441dSJames Smart } 1022e399441dSJames Smart 1023e399441dSJames Smart /* *********************** FC-NVME LS Handling **************************** */ 1024e399441dSJames Smart 1025e399441dSJames Smart static void nvme_fc_ctrl_put(struct nvme_fc_ctrl *); 1026e399441dSJames Smart static int nvme_fc_ctrl_get(struct nvme_fc_ctrl *); 1027e399441dSJames Smart 102814fd1e98SJames Smart static void nvme_fc_error_recovery(struct nvme_fc_ctrl *ctrl, char *errmsg); 1029e399441dSJames Smart 1030e399441dSJames Smart static void 1031c913a8b0SJames Smart __nvme_fc_finish_ls_req(struct nvmefc_ls_req_op *lsop) 1032e399441dSJames Smart { 1033c913a8b0SJames Smart struct nvme_fc_rport *rport = lsop->rport; 1034e399441dSJames Smart struct nvmefc_ls_req *lsreq = &lsop->ls_req; 1035e399441dSJames Smart unsigned long flags; 1036e399441dSJames Smart 1037c913a8b0SJames Smart spin_lock_irqsave(&rport->lock, flags); 1038e399441dSJames Smart 1039e399441dSJames Smart if (!lsop->req_queued) { 1040c913a8b0SJames Smart spin_unlock_irqrestore(&rport->lock, flags); 1041e399441dSJames Smart return; 1042e399441dSJames Smart } 1043e399441dSJames Smart 1044e399441dSJames Smart list_del(&lsop->lsreq_list); 1045e399441dSJames Smart 1046e399441dSJames Smart lsop->req_queued = false; 1047e399441dSJames Smart 1048c913a8b0SJames Smart spin_unlock_irqrestore(&rport->lock, flags); 1049e399441dSJames Smart 1050c913a8b0SJames Smart fc_dma_unmap_single(rport->dev, lsreq->rqstdma, 1051e399441dSJames Smart (lsreq->rqstlen + lsreq->rsplen), 1052e399441dSJames Smart DMA_BIDIRECTIONAL); 1053e399441dSJames Smart 1054c913a8b0SJames Smart nvme_fc_rport_put(rport); 1055e399441dSJames Smart } 1056e399441dSJames Smart 1057e399441dSJames Smart static int 1058c913a8b0SJames Smart __nvme_fc_send_ls_req(struct nvme_fc_rport *rport, 1059e399441dSJames Smart struct nvmefc_ls_req_op *lsop, 1060e399441dSJames Smart void (*done)(struct nvmefc_ls_req *req, int status)) 1061e399441dSJames Smart { 1062e399441dSJames Smart struct nvmefc_ls_req *lsreq = &lsop->ls_req; 1063e399441dSJames Smart unsigned long flags; 1064c913a8b0SJames Smart int ret = 0; 1065e399441dSJames Smart 1066c913a8b0SJames Smart if (rport->remoteport.port_state != FC_OBJSTATE_ONLINE) 1067c913a8b0SJames Smart return -ECONNREFUSED; 1068c913a8b0SJames Smart 1069c913a8b0SJames Smart if (!nvme_fc_rport_get(rport)) 1070e399441dSJames Smart return -ESHUTDOWN; 1071e399441dSJames Smart 1072e399441dSJames Smart lsreq->done = done; 1073c913a8b0SJames Smart lsop->rport = rport; 1074e399441dSJames Smart lsop->req_queued = false; 1075e399441dSJames Smart INIT_LIST_HEAD(&lsop->lsreq_list); 1076e399441dSJames Smart init_completion(&lsop->ls_done); 1077e399441dSJames Smart 1078c913a8b0SJames Smart lsreq->rqstdma = fc_dma_map_single(rport->dev, lsreq->rqstaddr, 1079e399441dSJames Smart lsreq->rqstlen + lsreq->rsplen, 1080e399441dSJames Smart DMA_BIDIRECTIONAL); 1081c913a8b0SJames Smart if (fc_dma_mapping_error(rport->dev, lsreq->rqstdma)) { 1082c913a8b0SJames Smart ret = -EFAULT; 1083c913a8b0SJames Smart goto out_putrport; 1084e399441dSJames Smart } 1085e399441dSJames Smart lsreq->rspdma = lsreq->rqstdma + lsreq->rqstlen; 1086e399441dSJames Smart 1087c913a8b0SJames Smart spin_lock_irqsave(&rport->lock, flags); 1088e399441dSJames Smart 1089c913a8b0SJames Smart list_add_tail(&lsop->lsreq_list, &rport->ls_req_list); 1090e399441dSJames Smart 1091e399441dSJames Smart lsop->req_queued = true; 1092e399441dSJames Smart 1093c913a8b0SJames Smart spin_unlock_irqrestore(&rport->lock, flags); 1094e399441dSJames Smart 1095c913a8b0SJames Smart ret = rport->lport->ops->ls_req(&rport->lport->localport, 1096c913a8b0SJames Smart &rport->remoteport, lsreq); 1097e399441dSJames Smart if (ret) 1098c913a8b0SJames Smart goto out_unlink; 1099c913a8b0SJames Smart 1100c913a8b0SJames Smart return 0; 1101c913a8b0SJames Smart 1102c913a8b0SJames Smart out_unlink: 1103e399441dSJames Smart lsop->ls_error = ret; 1104c913a8b0SJames Smart spin_lock_irqsave(&rport->lock, flags); 1105c913a8b0SJames Smart lsop->req_queued = false; 1106c913a8b0SJames Smart list_del(&lsop->lsreq_list); 1107c913a8b0SJames Smart spin_unlock_irqrestore(&rport->lock, flags); 1108c913a8b0SJames Smart fc_dma_unmap_single(rport->dev, lsreq->rqstdma, 1109c913a8b0SJames Smart (lsreq->rqstlen + lsreq->rsplen), 1110c913a8b0SJames Smart DMA_BIDIRECTIONAL); 1111c913a8b0SJames Smart out_putrport: 1112c913a8b0SJames Smart nvme_fc_rport_put(rport); 1113e399441dSJames Smart 1114e399441dSJames Smart return ret; 1115e399441dSJames Smart } 1116e399441dSJames Smart 1117e399441dSJames Smart static void 1118e399441dSJames Smart nvme_fc_send_ls_req_done(struct nvmefc_ls_req *lsreq, int status) 1119e399441dSJames Smart { 1120e399441dSJames Smart struct nvmefc_ls_req_op *lsop = ls_req_to_lsop(lsreq); 1121e399441dSJames Smart 1122e399441dSJames Smart lsop->ls_error = status; 1123e399441dSJames Smart complete(&lsop->ls_done); 1124e399441dSJames Smart } 1125e399441dSJames Smart 1126e399441dSJames Smart static int 1127c913a8b0SJames Smart nvme_fc_send_ls_req(struct nvme_fc_rport *rport, struct nvmefc_ls_req_op *lsop) 1128e399441dSJames Smart { 1129e399441dSJames Smart struct nvmefc_ls_req *lsreq = &lsop->ls_req; 1130e399441dSJames Smart struct fcnvme_ls_rjt *rjt = lsreq->rspaddr; 1131e399441dSJames Smart int ret; 1132e399441dSJames Smart 1133c913a8b0SJames Smart ret = __nvme_fc_send_ls_req(rport, lsop, nvme_fc_send_ls_req_done); 1134e399441dSJames Smart 1135c913a8b0SJames Smart if (!ret) { 1136e399441dSJames Smart /* 1137e399441dSJames Smart * No timeout/not interruptible as we need the struct 1138e399441dSJames Smart * to exist until the lldd calls us back. Thus mandate 1139e399441dSJames Smart * wait until driver calls back. lldd responsible for 1140e399441dSJames Smart * the timeout action 1141e399441dSJames Smart */ 1142e399441dSJames Smart wait_for_completion(&lsop->ls_done); 1143e399441dSJames Smart 1144c913a8b0SJames Smart __nvme_fc_finish_ls_req(lsop); 1145e399441dSJames Smart 1146c913a8b0SJames Smart ret = lsop->ls_error; 1147e399441dSJames Smart } 1148e399441dSJames Smart 1149c913a8b0SJames Smart if (ret) 1150c913a8b0SJames Smart return ret; 1151c913a8b0SJames Smart 1152e399441dSJames Smart /* ACC or RJT payload ? */ 1153e399441dSJames Smart if (rjt->w0.ls_cmd == FCNVME_LS_RJT) 1154e399441dSJames Smart return -ENXIO; 1155e399441dSJames Smart 1156e399441dSJames Smart return 0; 1157e399441dSJames Smart } 1158e399441dSJames Smart 1159c913a8b0SJames Smart static int 1160c913a8b0SJames Smart nvme_fc_send_ls_req_async(struct nvme_fc_rport *rport, 1161e399441dSJames Smart struct nvmefc_ls_req_op *lsop, 1162e399441dSJames Smart void (*done)(struct nvmefc_ls_req *req, int status)) 1163e399441dSJames Smart { 1164e399441dSJames Smart /* don't wait for completion */ 1165e399441dSJames Smart 1166c913a8b0SJames Smart return __nvme_fc_send_ls_req(rport, lsop, done); 1167e399441dSJames Smart } 1168e399441dSJames Smart 1169e399441dSJames Smart static int 1170e399441dSJames Smart nvme_fc_connect_admin_queue(struct nvme_fc_ctrl *ctrl, 1171e399441dSJames Smart struct nvme_fc_queue *queue, u16 qsize, u16 ersp_ratio) 1172e399441dSJames Smart { 1173e399441dSJames Smart struct nvmefc_ls_req_op *lsop; 1174e399441dSJames Smart struct nvmefc_ls_req *lsreq; 1175e399441dSJames Smart struct fcnvme_ls_cr_assoc_rqst *assoc_rqst; 1176e399441dSJames Smart struct fcnvme_ls_cr_assoc_acc *assoc_acc; 117714fd1e98SJames Smart unsigned long flags; 1178e399441dSJames Smart int ret, fcret = 0; 1179e399441dSJames Smart 1180e399441dSJames Smart lsop = kzalloc((sizeof(*lsop) + 1181f56bf76fSJames Smart sizeof(*assoc_rqst) + sizeof(*assoc_acc) + 1182f56bf76fSJames Smart ctrl->lport->ops->lsrqst_priv_sz), GFP_KERNEL); 1183e399441dSJames Smart if (!lsop) { 1184f56bf76fSJames Smart dev_info(ctrl->ctrl.device, 1185f56bf76fSJames Smart "NVME-FC{%d}: send Create Association failed: ENOMEM\n", 1186f56bf76fSJames Smart ctrl->cnum); 1187e399441dSJames Smart ret = -ENOMEM; 1188e399441dSJames Smart goto out_no_memory; 1189e399441dSJames Smart } 1190e399441dSJames Smart 1191f56bf76fSJames Smart assoc_rqst = (struct fcnvme_ls_cr_assoc_rqst *)&lsop[1]; 1192e399441dSJames Smart assoc_acc = (struct fcnvme_ls_cr_assoc_acc *)&assoc_rqst[1]; 1193f56bf76fSJames Smart lsreq = &lsop->ls_req; 1194f56bf76fSJames Smart if (ctrl->lport->ops->lsrqst_priv_sz) 1195f56bf76fSJames Smart lsreq->private = &assoc_acc[1]; 1196f56bf76fSJames Smart else 1197f56bf76fSJames Smart lsreq->private = NULL; 1198e399441dSJames Smart 1199e399441dSJames Smart assoc_rqst->w0.ls_cmd = FCNVME_LS_CREATE_ASSOCIATION; 1200e399441dSJames Smart assoc_rqst->desc_list_len = 1201e399441dSJames Smart cpu_to_be32(sizeof(struct fcnvme_lsdesc_cr_assoc_cmd)); 1202e399441dSJames Smart 1203e399441dSJames Smart assoc_rqst->assoc_cmd.desc_tag = 1204e399441dSJames Smart cpu_to_be32(FCNVME_LSDESC_CREATE_ASSOC_CMD); 1205e399441dSJames Smart assoc_rqst->assoc_cmd.desc_len = 1206e399441dSJames Smart fcnvme_lsdesc_len( 1207e399441dSJames Smart sizeof(struct fcnvme_lsdesc_cr_assoc_cmd)); 1208e399441dSJames Smart 1209e399441dSJames Smart assoc_rqst->assoc_cmd.ersp_ratio = cpu_to_be16(ersp_ratio); 1210d157e534SJames Smart assoc_rqst->assoc_cmd.sqsize = cpu_to_be16(qsize - 1); 1211e399441dSJames Smart /* Linux supports only Dynamic controllers */ 1212e399441dSJames Smart assoc_rqst->assoc_cmd.cntlid = cpu_to_be16(0xffff); 12138e412263SChristoph Hellwig uuid_copy(&assoc_rqst->assoc_cmd.hostid, &ctrl->ctrl.opts->host->id); 1214e399441dSJames Smart strncpy(assoc_rqst->assoc_cmd.hostnqn, ctrl->ctrl.opts->host->nqn, 1215e399441dSJames Smart min(FCNVME_ASSOC_HOSTNQN_LEN, NVMF_NQN_SIZE)); 1216e399441dSJames Smart strncpy(assoc_rqst->assoc_cmd.subnqn, ctrl->ctrl.opts->subsysnqn, 1217e399441dSJames Smart min(FCNVME_ASSOC_SUBNQN_LEN, NVMF_NQN_SIZE)); 1218e399441dSJames Smart 1219e399441dSJames Smart lsop->queue = queue; 1220e399441dSJames Smart lsreq->rqstaddr = assoc_rqst; 1221e399441dSJames Smart lsreq->rqstlen = sizeof(*assoc_rqst); 1222e399441dSJames Smart lsreq->rspaddr = assoc_acc; 1223e399441dSJames Smart lsreq->rsplen = sizeof(*assoc_acc); 122453b2b2f5SJames Smart lsreq->timeout = NVME_FC_LS_TIMEOUT_SEC; 1225e399441dSJames Smart 1226c913a8b0SJames Smart ret = nvme_fc_send_ls_req(ctrl->rport, lsop); 1227e399441dSJames Smart if (ret) 1228e399441dSJames Smart goto out_free_buffer; 1229e399441dSJames Smart 1230e399441dSJames Smart /* process connect LS completion */ 1231e399441dSJames Smart 1232e399441dSJames Smart /* validate the ACC response */ 1233e399441dSJames Smart if (assoc_acc->hdr.w0.ls_cmd != FCNVME_LS_ACC) 1234e399441dSJames Smart fcret = VERR_LSACC; 1235f77fc87cSJames Smart else if (assoc_acc->hdr.desc_list_len != 1236e399441dSJames Smart fcnvme_lsdesc_len( 1237e399441dSJames Smart sizeof(struct fcnvme_ls_cr_assoc_acc))) 1238e399441dSJames Smart fcret = VERR_CR_ASSOC_ACC_LEN; 1239f77fc87cSJames Smart else if (assoc_acc->hdr.rqst.desc_tag != 1240f77fc87cSJames Smart cpu_to_be32(FCNVME_LSDESC_RQST)) 1241e399441dSJames Smart fcret = VERR_LSDESC_RQST; 1242e399441dSJames Smart else if (assoc_acc->hdr.rqst.desc_len != 1243e399441dSJames Smart fcnvme_lsdesc_len(sizeof(struct fcnvme_lsdesc_rqst))) 1244e399441dSJames Smart fcret = VERR_LSDESC_RQST_LEN; 1245e399441dSJames Smart else if (assoc_acc->hdr.rqst.w0.ls_cmd != FCNVME_LS_CREATE_ASSOCIATION) 1246e399441dSJames Smart fcret = VERR_CR_ASSOC; 1247e399441dSJames Smart else if (assoc_acc->associd.desc_tag != 1248e399441dSJames Smart cpu_to_be32(FCNVME_LSDESC_ASSOC_ID)) 1249e399441dSJames Smart fcret = VERR_ASSOC_ID; 1250e399441dSJames Smart else if (assoc_acc->associd.desc_len != 1251e399441dSJames Smart fcnvme_lsdesc_len( 1252e399441dSJames Smart sizeof(struct fcnvme_lsdesc_assoc_id))) 1253e399441dSJames Smart fcret = VERR_ASSOC_ID_LEN; 1254e399441dSJames Smart else if (assoc_acc->connectid.desc_tag != 1255e399441dSJames Smart cpu_to_be32(FCNVME_LSDESC_CONN_ID)) 1256e399441dSJames Smart fcret = VERR_CONN_ID; 1257e399441dSJames Smart else if (assoc_acc->connectid.desc_len != 1258e399441dSJames Smart fcnvme_lsdesc_len(sizeof(struct fcnvme_lsdesc_conn_id))) 1259e399441dSJames Smart fcret = VERR_CONN_ID_LEN; 1260e399441dSJames Smart 1261e399441dSJames Smart if (fcret) { 1262e399441dSJames Smart ret = -EBADF; 1263e399441dSJames Smart dev_err(ctrl->dev, 12647db39484SJames Smart "q %d Create Association LS failed: %s\n", 1265e399441dSJames Smart queue->qnum, validation_errors[fcret]); 1266e399441dSJames Smart } else { 126714fd1e98SJames Smart spin_lock_irqsave(&ctrl->lock, flags); 1268e399441dSJames Smart ctrl->association_id = 1269e399441dSJames Smart be64_to_cpu(assoc_acc->associd.association_id); 1270e399441dSJames Smart queue->connection_id = 1271e399441dSJames Smart be64_to_cpu(assoc_acc->connectid.connection_id); 1272e399441dSJames Smart set_bit(NVME_FC_Q_CONNECTED, &queue->flags); 127314fd1e98SJames Smart spin_unlock_irqrestore(&ctrl->lock, flags); 1274e399441dSJames Smart } 1275e399441dSJames Smart 1276e399441dSJames Smart out_free_buffer: 1277e399441dSJames Smart kfree(lsop); 1278e399441dSJames Smart out_no_memory: 1279e399441dSJames Smart if (ret) 1280e399441dSJames Smart dev_err(ctrl->dev, 1281e399441dSJames Smart "queue %d connect admin queue failed (%d).\n", 1282e399441dSJames Smart queue->qnum, ret); 1283e399441dSJames Smart return ret; 1284e399441dSJames Smart } 1285e399441dSJames Smart 1286e399441dSJames Smart static int 1287e399441dSJames Smart nvme_fc_connect_queue(struct nvme_fc_ctrl *ctrl, struct nvme_fc_queue *queue, 1288e399441dSJames Smart u16 qsize, u16 ersp_ratio) 1289e399441dSJames Smart { 1290e399441dSJames Smart struct nvmefc_ls_req_op *lsop; 1291e399441dSJames Smart struct nvmefc_ls_req *lsreq; 1292e399441dSJames Smart struct fcnvme_ls_cr_conn_rqst *conn_rqst; 1293e399441dSJames Smart struct fcnvme_ls_cr_conn_acc *conn_acc; 1294e399441dSJames Smart int ret, fcret = 0; 1295e399441dSJames Smart 1296e399441dSJames Smart lsop = kzalloc((sizeof(*lsop) + 1297f56bf76fSJames Smart sizeof(*conn_rqst) + sizeof(*conn_acc) + 1298f56bf76fSJames Smart ctrl->lport->ops->lsrqst_priv_sz), GFP_KERNEL); 1299e399441dSJames Smart if (!lsop) { 1300f56bf76fSJames Smart dev_info(ctrl->ctrl.device, 1301f56bf76fSJames Smart "NVME-FC{%d}: send Create Connection failed: ENOMEM\n", 1302f56bf76fSJames Smart ctrl->cnum); 1303e399441dSJames Smart ret = -ENOMEM; 1304e399441dSJames Smart goto out_no_memory; 1305e399441dSJames Smart } 1306e399441dSJames Smart 1307f56bf76fSJames Smart conn_rqst = (struct fcnvme_ls_cr_conn_rqst *)&lsop[1]; 1308e399441dSJames Smart conn_acc = (struct fcnvme_ls_cr_conn_acc *)&conn_rqst[1]; 1309f56bf76fSJames Smart lsreq = &lsop->ls_req; 1310f56bf76fSJames Smart if (ctrl->lport->ops->lsrqst_priv_sz) 1311f56bf76fSJames Smart lsreq->private = (void *)&conn_acc[1]; 1312f56bf76fSJames Smart else 1313f56bf76fSJames Smart lsreq->private = NULL; 1314e399441dSJames Smart 1315e399441dSJames Smart conn_rqst->w0.ls_cmd = FCNVME_LS_CREATE_CONNECTION; 1316e399441dSJames Smart conn_rqst->desc_list_len = cpu_to_be32( 1317e399441dSJames Smart sizeof(struct fcnvme_lsdesc_assoc_id) + 1318e399441dSJames Smart sizeof(struct fcnvme_lsdesc_cr_conn_cmd)); 1319e399441dSJames Smart 1320e399441dSJames Smart conn_rqst->associd.desc_tag = cpu_to_be32(FCNVME_LSDESC_ASSOC_ID); 1321e399441dSJames Smart conn_rqst->associd.desc_len = 1322e399441dSJames Smart fcnvme_lsdesc_len( 1323e399441dSJames Smart sizeof(struct fcnvme_lsdesc_assoc_id)); 1324e399441dSJames Smart conn_rqst->associd.association_id = cpu_to_be64(ctrl->association_id); 1325e399441dSJames Smart conn_rqst->connect_cmd.desc_tag = 1326e399441dSJames Smart cpu_to_be32(FCNVME_LSDESC_CREATE_CONN_CMD); 1327e399441dSJames Smart conn_rqst->connect_cmd.desc_len = 1328e399441dSJames Smart fcnvme_lsdesc_len( 1329e399441dSJames Smart sizeof(struct fcnvme_lsdesc_cr_conn_cmd)); 1330e399441dSJames Smart conn_rqst->connect_cmd.ersp_ratio = cpu_to_be16(ersp_ratio); 1331e399441dSJames Smart conn_rqst->connect_cmd.qid = cpu_to_be16(queue->qnum); 1332d157e534SJames Smart conn_rqst->connect_cmd.sqsize = cpu_to_be16(qsize - 1); 1333e399441dSJames Smart 1334e399441dSJames Smart lsop->queue = queue; 1335e399441dSJames Smart lsreq->rqstaddr = conn_rqst; 1336e399441dSJames Smart lsreq->rqstlen = sizeof(*conn_rqst); 1337e399441dSJames Smart lsreq->rspaddr = conn_acc; 1338e399441dSJames Smart lsreq->rsplen = sizeof(*conn_acc); 133953b2b2f5SJames Smart lsreq->timeout = NVME_FC_LS_TIMEOUT_SEC; 1340e399441dSJames Smart 1341c913a8b0SJames Smart ret = nvme_fc_send_ls_req(ctrl->rport, lsop); 1342e399441dSJames Smart if (ret) 1343e399441dSJames Smart goto out_free_buffer; 1344e399441dSJames Smart 1345e399441dSJames Smart /* process connect LS completion */ 1346e399441dSJames Smart 1347e399441dSJames Smart /* validate the ACC response */ 1348e399441dSJames Smart if (conn_acc->hdr.w0.ls_cmd != FCNVME_LS_ACC) 1349e399441dSJames Smart fcret = VERR_LSACC; 1350f77fc87cSJames Smart else if (conn_acc->hdr.desc_list_len != 1351e399441dSJames Smart fcnvme_lsdesc_len(sizeof(struct fcnvme_ls_cr_conn_acc))) 1352e399441dSJames Smart fcret = VERR_CR_CONN_ACC_LEN; 1353f77fc87cSJames Smart else if (conn_acc->hdr.rqst.desc_tag != cpu_to_be32(FCNVME_LSDESC_RQST)) 1354e399441dSJames Smart fcret = VERR_LSDESC_RQST; 1355e399441dSJames Smart else if (conn_acc->hdr.rqst.desc_len != 1356e399441dSJames Smart fcnvme_lsdesc_len(sizeof(struct fcnvme_lsdesc_rqst))) 1357e399441dSJames Smart fcret = VERR_LSDESC_RQST_LEN; 1358e399441dSJames Smart else if (conn_acc->hdr.rqst.w0.ls_cmd != FCNVME_LS_CREATE_CONNECTION) 1359e399441dSJames Smart fcret = VERR_CR_CONN; 1360e399441dSJames Smart else if (conn_acc->connectid.desc_tag != 1361e399441dSJames Smart cpu_to_be32(FCNVME_LSDESC_CONN_ID)) 1362e399441dSJames Smart fcret = VERR_CONN_ID; 1363e399441dSJames Smart else if (conn_acc->connectid.desc_len != 1364e399441dSJames Smart fcnvme_lsdesc_len(sizeof(struct fcnvme_lsdesc_conn_id))) 1365e399441dSJames Smart fcret = VERR_CONN_ID_LEN; 1366e399441dSJames Smart 1367e399441dSJames Smart if (fcret) { 1368e399441dSJames Smart ret = -EBADF; 1369e399441dSJames Smart dev_err(ctrl->dev, 13707db39484SJames Smart "q %d Create I/O Connection LS failed: %s\n", 1371e399441dSJames Smart queue->qnum, validation_errors[fcret]); 1372e399441dSJames Smart } else { 1373e399441dSJames Smart queue->connection_id = 1374e399441dSJames Smart be64_to_cpu(conn_acc->connectid.connection_id); 1375e399441dSJames Smart set_bit(NVME_FC_Q_CONNECTED, &queue->flags); 1376e399441dSJames Smart } 1377e399441dSJames Smart 1378e399441dSJames Smart out_free_buffer: 1379e399441dSJames Smart kfree(lsop); 1380e399441dSJames Smart out_no_memory: 1381e399441dSJames Smart if (ret) 1382e399441dSJames Smart dev_err(ctrl->dev, 13837db39484SJames Smart "queue %d connect I/O queue failed (%d).\n", 1384e399441dSJames Smart queue->qnum, ret); 1385e399441dSJames Smart return ret; 1386e399441dSJames Smart } 1387e399441dSJames Smart 1388e399441dSJames Smart static void 1389e399441dSJames Smart nvme_fc_disconnect_assoc_done(struct nvmefc_ls_req *lsreq, int status) 1390e399441dSJames Smart { 1391e399441dSJames Smart struct nvmefc_ls_req_op *lsop = ls_req_to_lsop(lsreq); 1392e399441dSJames Smart 1393c913a8b0SJames Smart __nvme_fc_finish_ls_req(lsop); 1394e399441dSJames Smart 1395d4e4230cSMilan P. Gandhi /* fc-nvme initiator doesn't care about success or failure of cmd */ 1396e399441dSJames Smart 1397e399441dSJames Smart kfree(lsop); 1398e399441dSJames Smart } 1399e399441dSJames Smart 1400e399441dSJames Smart /* 1401e399441dSJames Smart * This routine sends a FC-NVME LS to disconnect (aka terminate) 1402e399441dSJames Smart * the FC-NVME Association. Terminating the association also 1403e399441dSJames Smart * terminates the FC-NVME connections (per queue, both admin and io 1404e399441dSJames Smart * queues) that are part of the association. E.g. things are torn 1405e399441dSJames Smart * down, and the related FC-NVME Association ID and Connection IDs 1406e399441dSJames Smart * become invalid. 1407e399441dSJames Smart * 1408e399441dSJames Smart * The behavior of the fc-nvme initiator is such that it's 1409e399441dSJames Smart * understanding of the association and connections will implicitly 1410e399441dSJames Smart * be torn down. The action is implicit as it may be due to a loss of 1411e399441dSJames Smart * connectivity with the fc-nvme target, so you may never get a 1412e399441dSJames Smart * response even if you tried. As such, the action of this routine 1413e399441dSJames Smart * is to asynchronously send the LS, ignore any results of the LS, and 1414e399441dSJames Smart * continue on with terminating the association. If the fc-nvme target 1415e399441dSJames Smart * is present and receives the LS, it too can tear down. 1416e399441dSJames Smart */ 1417e399441dSJames Smart static void 1418e399441dSJames Smart nvme_fc_xmt_disconnect_assoc(struct nvme_fc_ctrl *ctrl) 1419e399441dSJames Smart { 142053b2b2f5SJames Smart struct fcnvme_ls_disconnect_assoc_rqst *discon_rqst; 142153b2b2f5SJames Smart struct fcnvme_ls_disconnect_assoc_acc *discon_acc; 1422e399441dSJames Smart struct nvmefc_ls_req_op *lsop; 1423e399441dSJames Smart struct nvmefc_ls_req *lsreq; 1424c913a8b0SJames Smart int ret; 1425e399441dSJames Smart 1426e399441dSJames Smart lsop = kzalloc((sizeof(*lsop) + 1427f56bf76fSJames Smart sizeof(*discon_rqst) + sizeof(*discon_acc) + 1428f56bf76fSJames Smart ctrl->lport->ops->lsrqst_priv_sz), GFP_KERNEL); 1429f56bf76fSJames Smart if (!lsop) { 1430f56bf76fSJames Smart dev_info(ctrl->ctrl.device, 1431f56bf76fSJames Smart "NVME-FC{%d}: send Disconnect Association " 1432f56bf76fSJames Smart "failed: ENOMEM\n", 1433f56bf76fSJames Smart ctrl->cnum); 1434e399441dSJames Smart return; 1435f56bf76fSJames Smart } 1436e399441dSJames Smart 1437f56bf76fSJames Smart discon_rqst = (struct fcnvme_ls_disconnect_assoc_rqst *)&lsop[1]; 143853b2b2f5SJames Smart discon_acc = (struct fcnvme_ls_disconnect_assoc_acc *)&discon_rqst[1]; 1439f56bf76fSJames Smart lsreq = &lsop->ls_req; 1440f56bf76fSJames Smart if (ctrl->lport->ops->lsrqst_priv_sz) 1441f56bf76fSJames Smart lsreq->private = (void *)&discon_acc[1]; 1442f56bf76fSJames Smart else 1443f56bf76fSJames Smart lsreq->private = NULL; 1444e399441dSJames Smart 1445fd5a5f22SJames Smart nvmefc_fmt_lsreq_discon_assoc(lsreq, discon_rqst, discon_acc, 1446fd5a5f22SJames Smart ctrl->association_id); 1447e399441dSJames Smart 1448c913a8b0SJames Smart ret = nvme_fc_send_ls_req_async(ctrl->rport, lsop, 1449c913a8b0SJames Smart nvme_fc_disconnect_assoc_done); 1450c913a8b0SJames Smart if (ret) 1451c913a8b0SJames Smart kfree(lsop); 1452e399441dSJames Smart } 1453e399441dSJames Smart 145414fd1e98SJames Smart static void 145514fd1e98SJames Smart nvme_fc_xmt_ls_rsp_done(struct nvmefc_ls_rsp *lsrsp) 145614fd1e98SJames Smart { 145714fd1e98SJames Smart struct nvmefc_ls_rcv_op *lsop = lsrsp->nvme_fc_private; 145814fd1e98SJames Smart struct nvme_fc_rport *rport = lsop->rport; 145914fd1e98SJames Smart struct nvme_fc_lport *lport = rport->lport; 146014fd1e98SJames Smart unsigned long flags; 146114fd1e98SJames Smart 146214fd1e98SJames Smart spin_lock_irqsave(&rport->lock, flags); 146314fd1e98SJames Smart list_del(&lsop->lsrcv_list); 146414fd1e98SJames Smart spin_unlock_irqrestore(&rport->lock, flags); 146514fd1e98SJames Smart 146614fd1e98SJames Smart fc_dma_sync_single_for_cpu(lport->dev, lsop->rspdma, 146714fd1e98SJames Smart sizeof(*lsop->rspbuf), DMA_TO_DEVICE); 146814fd1e98SJames Smart fc_dma_unmap_single(lport->dev, lsop->rspdma, 146914fd1e98SJames Smart sizeof(*lsop->rspbuf), DMA_TO_DEVICE); 147014fd1e98SJames Smart 147114fd1e98SJames Smart kfree(lsop); 147214fd1e98SJames Smart 147314fd1e98SJames Smart nvme_fc_rport_put(rport); 147414fd1e98SJames Smart } 147514fd1e98SJames Smart 147614fd1e98SJames Smart static void 147714fd1e98SJames Smart nvme_fc_xmt_ls_rsp(struct nvmefc_ls_rcv_op *lsop) 147814fd1e98SJames Smart { 147914fd1e98SJames Smart struct nvme_fc_rport *rport = lsop->rport; 148014fd1e98SJames Smart struct nvme_fc_lport *lport = rport->lport; 148114fd1e98SJames Smart struct fcnvme_ls_rqst_w0 *w0 = &lsop->rqstbuf->w0; 148214fd1e98SJames Smart int ret; 148314fd1e98SJames Smart 148414fd1e98SJames Smart fc_dma_sync_single_for_device(lport->dev, lsop->rspdma, 148514fd1e98SJames Smart sizeof(*lsop->rspbuf), DMA_TO_DEVICE); 148614fd1e98SJames Smart 148714fd1e98SJames Smart ret = lport->ops->xmt_ls_rsp(&lport->localport, &rport->remoteport, 148814fd1e98SJames Smart lsop->lsrsp); 148914fd1e98SJames Smart if (ret) { 149014fd1e98SJames Smart dev_warn(lport->dev, 149114fd1e98SJames Smart "LLDD rejected LS RSP xmt: LS %d status %d\n", 149214fd1e98SJames Smart w0->ls_cmd, ret); 149314fd1e98SJames Smart nvme_fc_xmt_ls_rsp_done(lsop->lsrsp); 149414fd1e98SJames Smart return; 149514fd1e98SJames Smart } 149614fd1e98SJames Smart } 149714fd1e98SJames Smart 149814fd1e98SJames Smart static struct nvme_fc_ctrl * 149914fd1e98SJames Smart nvme_fc_match_disconn_ls(struct nvme_fc_rport *rport, 150014fd1e98SJames Smart struct nvmefc_ls_rcv_op *lsop) 150114fd1e98SJames Smart { 150214fd1e98SJames Smart struct fcnvme_ls_disconnect_assoc_rqst *rqst = 150314fd1e98SJames Smart &lsop->rqstbuf->rq_dis_assoc; 150414fd1e98SJames Smart struct nvme_fc_ctrl *ctrl, *ret = NULL; 150514fd1e98SJames Smart struct nvmefc_ls_rcv_op *oldls = NULL; 150614fd1e98SJames Smart u64 association_id = be64_to_cpu(rqst->associd.association_id); 150714fd1e98SJames Smart unsigned long flags; 150814fd1e98SJames Smart 150914fd1e98SJames Smart spin_lock_irqsave(&rport->lock, flags); 151014fd1e98SJames Smart 151114fd1e98SJames Smart list_for_each_entry(ctrl, &rport->ctrl_list, ctrl_list) { 151214fd1e98SJames Smart if (!nvme_fc_ctrl_get(ctrl)) 151314fd1e98SJames Smart continue; 151414fd1e98SJames Smart spin_lock(&ctrl->lock); 151514fd1e98SJames Smart if (association_id == ctrl->association_id) { 151614fd1e98SJames Smart oldls = ctrl->rcv_disconn; 151714fd1e98SJames Smart ctrl->rcv_disconn = lsop; 151814fd1e98SJames Smart ret = ctrl; 151914fd1e98SJames Smart } 152014fd1e98SJames Smart spin_unlock(&ctrl->lock); 152114fd1e98SJames Smart if (ret) 152214fd1e98SJames Smart /* leave the ctrl get reference */ 152314fd1e98SJames Smart break; 152414fd1e98SJames Smart nvme_fc_ctrl_put(ctrl); 152514fd1e98SJames Smart } 152614fd1e98SJames Smart 152714fd1e98SJames Smart spin_unlock_irqrestore(&rport->lock, flags); 152814fd1e98SJames Smart 152914fd1e98SJames Smart /* transmit a response for anything that was pending */ 153014fd1e98SJames Smart if (oldls) { 153114fd1e98SJames Smart dev_info(rport->lport->dev, 153214fd1e98SJames Smart "NVME-FC{%d}: Multiple Disconnect Association " 153314fd1e98SJames Smart "LS's received\n", ctrl->cnum); 153414fd1e98SJames Smart /* overwrite good response with bogus failure */ 153514fd1e98SJames Smart oldls->lsrsp->rsplen = nvme_fc_format_rjt(oldls->rspbuf, 153614fd1e98SJames Smart sizeof(*oldls->rspbuf), 153714fd1e98SJames Smart rqst->w0.ls_cmd, 153814fd1e98SJames Smart FCNVME_RJT_RC_UNAB, 153914fd1e98SJames Smart FCNVME_RJT_EXP_NONE, 0); 154014fd1e98SJames Smart nvme_fc_xmt_ls_rsp(oldls); 154114fd1e98SJames Smart } 154214fd1e98SJames Smart 154314fd1e98SJames Smart return ret; 154414fd1e98SJames Smart } 154514fd1e98SJames Smart 154614fd1e98SJames Smart /* 154714fd1e98SJames Smart * returns true to mean LS handled and ls_rsp can be sent 154814fd1e98SJames Smart * returns false to defer ls_rsp xmt (will be done as part of 154914fd1e98SJames Smart * association termination) 155014fd1e98SJames Smart */ 155114fd1e98SJames Smart static bool 155214fd1e98SJames Smart nvme_fc_ls_disconnect_assoc(struct nvmefc_ls_rcv_op *lsop) 155314fd1e98SJames Smart { 155414fd1e98SJames Smart struct nvme_fc_rport *rport = lsop->rport; 155514fd1e98SJames Smart struct fcnvme_ls_disconnect_assoc_rqst *rqst = 155614fd1e98SJames Smart &lsop->rqstbuf->rq_dis_assoc; 155714fd1e98SJames Smart struct fcnvme_ls_disconnect_assoc_acc *acc = 155814fd1e98SJames Smart &lsop->rspbuf->rsp_dis_assoc; 155914fd1e98SJames Smart struct nvme_fc_ctrl *ctrl = NULL; 156014fd1e98SJames Smart int ret = 0; 156114fd1e98SJames Smart 156214fd1e98SJames Smart memset(acc, 0, sizeof(*acc)); 156314fd1e98SJames Smart 156414fd1e98SJames Smart ret = nvmefc_vldt_lsreq_discon_assoc(lsop->rqstdatalen, rqst); 156514fd1e98SJames Smart if (!ret) { 156614fd1e98SJames Smart /* match an active association */ 156714fd1e98SJames Smart ctrl = nvme_fc_match_disconn_ls(rport, lsop); 156814fd1e98SJames Smart if (!ctrl) 156914fd1e98SJames Smart ret = VERR_NO_ASSOC; 157014fd1e98SJames Smart } 157114fd1e98SJames Smart 157214fd1e98SJames Smart if (ret) { 157314fd1e98SJames Smart dev_info(rport->lport->dev, 157414fd1e98SJames Smart "Disconnect LS failed: %s\n", 157514fd1e98SJames Smart validation_errors[ret]); 157614fd1e98SJames Smart lsop->lsrsp->rsplen = nvme_fc_format_rjt(acc, 157714fd1e98SJames Smart sizeof(*acc), rqst->w0.ls_cmd, 157814fd1e98SJames Smart (ret == VERR_NO_ASSOC) ? 157914fd1e98SJames Smart FCNVME_RJT_RC_INV_ASSOC : 158014fd1e98SJames Smart FCNVME_RJT_RC_LOGIC, 158114fd1e98SJames Smart FCNVME_RJT_EXP_NONE, 0); 158214fd1e98SJames Smart return true; 158314fd1e98SJames Smart } 158414fd1e98SJames Smart 158514fd1e98SJames Smart /* format an ACCept response */ 158614fd1e98SJames Smart 158714fd1e98SJames Smart lsop->lsrsp->rsplen = sizeof(*acc); 158814fd1e98SJames Smart 158914fd1e98SJames Smart nvme_fc_format_rsp_hdr(acc, FCNVME_LS_ACC, 159014fd1e98SJames Smart fcnvme_lsdesc_len( 159114fd1e98SJames Smart sizeof(struct fcnvme_ls_disconnect_assoc_acc)), 159214fd1e98SJames Smart FCNVME_LS_DISCONNECT_ASSOC); 159314fd1e98SJames Smart 159414fd1e98SJames Smart /* 159514fd1e98SJames Smart * the transmit of the response will occur after the exchanges 159614fd1e98SJames Smart * for the association have been ABTS'd by 159714fd1e98SJames Smart * nvme_fc_delete_association(). 159814fd1e98SJames Smart */ 159914fd1e98SJames Smart 160014fd1e98SJames Smart /* fail the association */ 160114fd1e98SJames Smart nvme_fc_error_recovery(ctrl, "Disconnect Association LS received"); 160214fd1e98SJames Smart 160314fd1e98SJames Smart /* release the reference taken by nvme_fc_match_disconn_ls() */ 160414fd1e98SJames Smart nvme_fc_ctrl_put(ctrl); 160514fd1e98SJames Smart 160614fd1e98SJames Smart return false; 160714fd1e98SJames Smart } 160814fd1e98SJames Smart 160914fd1e98SJames Smart /* 161014fd1e98SJames Smart * Actual Processing routine for received FC-NVME LS Requests from the LLD 161114fd1e98SJames Smart * returns true if a response should be sent afterward, false if rsp will 161214fd1e98SJames Smart * be sent asynchronously. 161314fd1e98SJames Smart */ 161414fd1e98SJames Smart static bool 161514fd1e98SJames Smart nvme_fc_handle_ls_rqst(struct nvmefc_ls_rcv_op *lsop) 161614fd1e98SJames Smart { 161714fd1e98SJames Smart struct fcnvme_ls_rqst_w0 *w0 = &lsop->rqstbuf->w0; 161814fd1e98SJames Smart bool ret = true; 161914fd1e98SJames Smart 162014fd1e98SJames Smart lsop->lsrsp->nvme_fc_private = lsop; 162114fd1e98SJames Smart lsop->lsrsp->rspbuf = lsop->rspbuf; 162214fd1e98SJames Smart lsop->lsrsp->rspdma = lsop->rspdma; 162314fd1e98SJames Smart lsop->lsrsp->done = nvme_fc_xmt_ls_rsp_done; 162414fd1e98SJames Smart /* Be preventative. handlers will later set to valid length */ 162514fd1e98SJames Smart lsop->lsrsp->rsplen = 0; 162614fd1e98SJames Smart 162714fd1e98SJames Smart /* 162814fd1e98SJames Smart * handlers: 162914fd1e98SJames Smart * parse request input, execute the request, and format the 163014fd1e98SJames Smart * LS response 163114fd1e98SJames Smart */ 163214fd1e98SJames Smart switch (w0->ls_cmd) { 163314fd1e98SJames Smart case FCNVME_LS_DISCONNECT_ASSOC: 163414fd1e98SJames Smart ret = nvme_fc_ls_disconnect_assoc(lsop); 163514fd1e98SJames Smart break; 163614fd1e98SJames Smart case FCNVME_LS_DISCONNECT_CONN: 163714fd1e98SJames Smart lsop->lsrsp->rsplen = nvme_fc_format_rjt(lsop->rspbuf, 163814fd1e98SJames Smart sizeof(*lsop->rspbuf), w0->ls_cmd, 163914fd1e98SJames Smart FCNVME_RJT_RC_UNSUP, FCNVME_RJT_EXP_NONE, 0); 164014fd1e98SJames Smart break; 164114fd1e98SJames Smart case FCNVME_LS_CREATE_ASSOCIATION: 164214fd1e98SJames Smart case FCNVME_LS_CREATE_CONNECTION: 164314fd1e98SJames Smart lsop->lsrsp->rsplen = nvme_fc_format_rjt(lsop->rspbuf, 164414fd1e98SJames Smart sizeof(*lsop->rspbuf), w0->ls_cmd, 164514fd1e98SJames Smart FCNVME_RJT_RC_LOGIC, FCNVME_RJT_EXP_NONE, 0); 164614fd1e98SJames Smart break; 164714fd1e98SJames Smart default: 164814fd1e98SJames Smart lsop->lsrsp->rsplen = nvme_fc_format_rjt(lsop->rspbuf, 164914fd1e98SJames Smart sizeof(*lsop->rspbuf), w0->ls_cmd, 165014fd1e98SJames Smart FCNVME_RJT_RC_INVAL, FCNVME_RJT_EXP_NONE, 0); 165114fd1e98SJames Smart break; 165214fd1e98SJames Smart } 165314fd1e98SJames Smart 165414fd1e98SJames Smart return(ret); 165514fd1e98SJames Smart } 165614fd1e98SJames Smart 165714fd1e98SJames Smart static void 165814fd1e98SJames Smart nvme_fc_handle_ls_rqst_work(struct work_struct *work) 165914fd1e98SJames Smart { 166014fd1e98SJames Smart struct nvme_fc_rport *rport = 166114fd1e98SJames Smart container_of(work, struct nvme_fc_rport, lsrcv_work); 166214fd1e98SJames Smart struct fcnvme_ls_rqst_w0 *w0; 166314fd1e98SJames Smart struct nvmefc_ls_rcv_op *lsop; 166414fd1e98SJames Smart unsigned long flags; 166514fd1e98SJames Smart bool sendrsp; 166614fd1e98SJames Smart 166714fd1e98SJames Smart restart: 166814fd1e98SJames Smart sendrsp = true; 166914fd1e98SJames Smart spin_lock_irqsave(&rport->lock, flags); 167014fd1e98SJames Smart list_for_each_entry(lsop, &rport->ls_rcv_list, lsrcv_list) { 167114fd1e98SJames Smart if (lsop->handled) 167214fd1e98SJames Smart continue; 167314fd1e98SJames Smart 167414fd1e98SJames Smart lsop->handled = true; 167514fd1e98SJames Smart if (rport->remoteport.port_state == FC_OBJSTATE_ONLINE) { 167614fd1e98SJames Smart spin_unlock_irqrestore(&rport->lock, flags); 167714fd1e98SJames Smart sendrsp = nvme_fc_handle_ls_rqst(lsop); 167814fd1e98SJames Smart } else { 167914fd1e98SJames Smart spin_unlock_irqrestore(&rport->lock, flags); 168014fd1e98SJames Smart w0 = &lsop->rqstbuf->w0; 168114fd1e98SJames Smart lsop->lsrsp->rsplen = nvme_fc_format_rjt( 168214fd1e98SJames Smart lsop->rspbuf, 168314fd1e98SJames Smart sizeof(*lsop->rspbuf), 168414fd1e98SJames Smart w0->ls_cmd, 168514fd1e98SJames Smart FCNVME_RJT_RC_UNAB, 168614fd1e98SJames Smart FCNVME_RJT_EXP_NONE, 0); 168714fd1e98SJames Smart } 168814fd1e98SJames Smart if (sendrsp) 168914fd1e98SJames Smart nvme_fc_xmt_ls_rsp(lsop); 169014fd1e98SJames Smart goto restart; 169114fd1e98SJames Smart } 169214fd1e98SJames Smart spin_unlock_irqrestore(&rport->lock, flags); 169314fd1e98SJames Smart } 169414fd1e98SJames Smart 169572e6329fSJames Smart /** 169672e6329fSJames Smart * nvme_fc_rcv_ls_req - transport entry point called by an LLDD 169772e6329fSJames Smart * upon the reception of a NVME LS request. 169872e6329fSJames Smart * 169972e6329fSJames Smart * The nvme-fc layer will copy payload to an internal structure for 170072e6329fSJames Smart * processing. As such, upon completion of the routine, the LLDD may 170172e6329fSJames Smart * immediately free/reuse the LS request buffer passed in the call. 170272e6329fSJames Smart * 170372e6329fSJames Smart * If this routine returns error, the LLDD should abort the exchange. 170472e6329fSJames Smart * 170572e6329fSJames Smart * @remoteport: pointer to the (registered) remote port that the LS 170672e6329fSJames Smart * was received from. The remoteport is associated with 170772e6329fSJames Smart * a specific localport. 170872e6329fSJames Smart * @lsrsp: pointer to a nvmefc_ls_rsp response structure to be 170972e6329fSJames Smart * used to reference the exchange corresponding to the LS 171072e6329fSJames Smart * when issuing an ls response. 171172e6329fSJames Smart * @lsreqbuf: pointer to the buffer containing the LS Request 171272e6329fSJames Smart * @lsreqbuf_len: length, in bytes, of the received LS request 171372e6329fSJames Smart */ 171472e6329fSJames Smart int 171572e6329fSJames Smart nvme_fc_rcv_ls_req(struct nvme_fc_remote_port *portptr, 171672e6329fSJames Smart struct nvmefc_ls_rsp *lsrsp, 171772e6329fSJames Smart void *lsreqbuf, u32 lsreqbuf_len) 171872e6329fSJames Smart { 171972e6329fSJames Smart struct nvme_fc_rport *rport = remoteport_to_rport(portptr); 172072e6329fSJames Smart struct nvme_fc_lport *lport = rport->lport; 172114fd1e98SJames Smart struct fcnvme_ls_rqst_w0 *w0 = (struct fcnvme_ls_rqst_w0 *)lsreqbuf; 172214fd1e98SJames Smart struct nvmefc_ls_rcv_op *lsop; 172314fd1e98SJames Smart unsigned long flags; 172414fd1e98SJames Smart int ret; 172514fd1e98SJames Smart 172614fd1e98SJames Smart nvme_fc_rport_get(rport); 172772e6329fSJames Smart 172872e6329fSJames Smart /* validate there's a routine to transmit a response */ 172914fd1e98SJames Smart if (!lport->ops->xmt_ls_rsp) { 173014fd1e98SJames Smart dev_info(lport->dev, 173114fd1e98SJames Smart "RCV %s LS failed: no LLDD xmt_ls_rsp\n", 173214fd1e98SJames Smart (w0->ls_cmd <= NVME_FC_LAST_LS_CMD_VALUE) ? 173314fd1e98SJames Smart nvmefc_ls_names[w0->ls_cmd] : ""); 173414fd1e98SJames Smart ret = -EINVAL; 173514fd1e98SJames Smart goto out_put; 173614fd1e98SJames Smart } 173714fd1e98SJames Smart 173814fd1e98SJames Smart if (lsreqbuf_len > sizeof(union nvmefc_ls_requests)) { 173914fd1e98SJames Smart dev_info(lport->dev, 174014fd1e98SJames Smart "RCV %s LS failed: payload too large\n", 174114fd1e98SJames Smart (w0->ls_cmd <= NVME_FC_LAST_LS_CMD_VALUE) ? 174214fd1e98SJames Smart nvmefc_ls_names[w0->ls_cmd] : ""); 174314fd1e98SJames Smart ret = -E2BIG; 174414fd1e98SJames Smart goto out_put; 174514fd1e98SJames Smart } 174614fd1e98SJames Smart 174714fd1e98SJames Smart lsop = kzalloc(sizeof(*lsop) + 174814fd1e98SJames Smart sizeof(union nvmefc_ls_requests) + 174914fd1e98SJames Smart sizeof(union nvmefc_ls_responses), 175014fd1e98SJames Smart GFP_KERNEL); 175114fd1e98SJames Smart if (!lsop) { 175214fd1e98SJames Smart dev_info(lport->dev, 175314fd1e98SJames Smart "RCV %s LS failed: No memory\n", 175414fd1e98SJames Smart (w0->ls_cmd <= NVME_FC_LAST_LS_CMD_VALUE) ? 175514fd1e98SJames Smart nvmefc_ls_names[w0->ls_cmd] : ""); 175614fd1e98SJames Smart ret = -ENOMEM; 175714fd1e98SJames Smart goto out_put; 175814fd1e98SJames Smart } 175914fd1e98SJames Smart lsop->rqstbuf = (union nvmefc_ls_requests *)&lsop[1]; 176014fd1e98SJames Smart lsop->rspbuf = (union nvmefc_ls_responses *)&lsop->rqstbuf[1]; 176114fd1e98SJames Smart 176214fd1e98SJames Smart lsop->rspdma = fc_dma_map_single(lport->dev, lsop->rspbuf, 176314fd1e98SJames Smart sizeof(*lsop->rspbuf), 176414fd1e98SJames Smart DMA_TO_DEVICE); 176514fd1e98SJames Smart if (fc_dma_mapping_error(lport->dev, lsop->rspdma)) { 176614fd1e98SJames Smart dev_info(lport->dev, 176714fd1e98SJames Smart "RCV %s LS failed: DMA mapping failure\n", 176814fd1e98SJames Smart (w0->ls_cmd <= NVME_FC_LAST_LS_CMD_VALUE) ? 176914fd1e98SJames Smart nvmefc_ls_names[w0->ls_cmd] : ""); 177014fd1e98SJames Smart ret = -EFAULT; 177114fd1e98SJames Smart goto out_free; 177214fd1e98SJames Smart } 177314fd1e98SJames Smart 177414fd1e98SJames Smart lsop->rport = rport; 177514fd1e98SJames Smart lsop->lsrsp = lsrsp; 177614fd1e98SJames Smart 177714fd1e98SJames Smart memcpy(lsop->rqstbuf, lsreqbuf, lsreqbuf_len); 177814fd1e98SJames Smart lsop->rqstdatalen = lsreqbuf_len; 177914fd1e98SJames Smart 178014fd1e98SJames Smart spin_lock_irqsave(&rport->lock, flags); 178114fd1e98SJames Smart if (rport->remoteport.port_state != FC_OBJSTATE_ONLINE) { 178214fd1e98SJames Smart spin_unlock_irqrestore(&rport->lock, flags); 178314fd1e98SJames Smart ret = -ENOTCONN; 178414fd1e98SJames Smart goto out_unmap; 178514fd1e98SJames Smart } 178614fd1e98SJames Smart list_add_tail(&lsop->lsrcv_list, &rport->ls_rcv_list); 178714fd1e98SJames Smart spin_unlock_irqrestore(&rport->lock, flags); 178814fd1e98SJames Smart 178914fd1e98SJames Smart schedule_work(&rport->lsrcv_work); 179072e6329fSJames Smart 179172e6329fSJames Smart return 0; 179214fd1e98SJames Smart 179314fd1e98SJames Smart out_unmap: 179414fd1e98SJames Smart fc_dma_unmap_single(lport->dev, lsop->rspdma, 179514fd1e98SJames Smart sizeof(*lsop->rspbuf), DMA_TO_DEVICE); 179614fd1e98SJames Smart out_free: 179714fd1e98SJames Smart kfree(lsop); 179814fd1e98SJames Smart out_put: 179914fd1e98SJames Smart nvme_fc_rport_put(rport); 180014fd1e98SJames Smart return ret; 180172e6329fSJames Smart } 180272e6329fSJames Smart EXPORT_SYMBOL_GPL(nvme_fc_rcv_ls_req); 180372e6329fSJames Smart 1804e399441dSJames Smart 1805e399441dSJames Smart /* *********************** NVME Ctrl Routines **************************** */ 1806e399441dSJames Smart 1807e399441dSJames Smart static void 1808e399441dSJames Smart __nvme_fc_exit_request(struct nvme_fc_ctrl *ctrl, 1809e399441dSJames Smart struct nvme_fc_fcp_op *op) 1810e399441dSJames Smart { 1811e399441dSJames Smart fc_dma_unmap_single(ctrl->lport->dev, op->fcp_req.rspdma, 1812e399441dSJames Smart sizeof(op->rsp_iu), DMA_FROM_DEVICE); 1813e399441dSJames Smart fc_dma_unmap_single(ctrl->lport->dev, op->fcp_req.cmddma, 1814e399441dSJames Smart sizeof(op->cmd_iu), DMA_TO_DEVICE); 1815e399441dSJames Smart 1816e399441dSJames Smart atomic_set(&op->state, FCPOP_STATE_UNINIT); 1817e399441dSJames Smart } 1818e399441dSJames Smart 1819e399441dSJames Smart static void 1820d6296d39SChristoph Hellwig nvme_fc_exit_request(struct blk_mq_tag_set *set, struct request *rq, 1821d6296d39SChristoph Hellwig unsigned int hctx_idx) 1822e399441dSJames Smart { 1823e399441dSJames Smart struct nvme_fc_fcp_op *op = blk_mq_rq_to_pdu(rq); 1824e399441dSJames Smart 1825d6296d39SChristoph Hellwig return __nvme_fc_exit_request(set->driver_data, op); 1826e399441dSJames Smart } 1827e399441dSJames Smart 182878a7ac26SJames Smart static int 182978a7ac26SJames Smart __nvme_fc_abort_op(struct nvme_fc_ctrl *ctrl, struct nvme_fc_fcp_op *op) 183078a7ac26SJames Smart { 18313efd6e8eSJames Smart unsigned long flags; 18323efd6e8eSJames Smart int opstate; 183378a7ac26SJames Smart 18343efd6e8eSJames Smart spin_lock_irqsave(&ctrl->lock, flags); 18353efd6e8eSJames Smart opstate = atomic_xchg(&op->state, FCPOP_STATE_ABORTED); 18363efd6e8eSJames Smart if (opstate != FCPOP_STATE_ACTIVE) 18373efd6e8eSJames Smart atomic_set(&op->state, opstate); 1838eb4ee8f1SJames Smart else if (test_bit(FCCTRL_TERMIO, &ctrl->flags)) 18393efd6e8eSJames Smart ctrl->iocnt++; 18403efd6e8eSJames Smart spin_unlock_irqrestore(&ctrl->lock, flags); 18413efd6e8eSJames Smart 18423efd6e8eSJames Smart if (opstate != FCPOP_STATE_ACTIVE) 184378a7ac26SJames Smart return -ECANCELED; 184478a7ac26SJames Smart 184578a7ac26SJames Smart ctrl->lport->ops->fcp_abort(&ctrl->lport->localport, 184678a7ac26SJames Smart &ctrl->rport->remoteport, 184778a7ac26SJames Smart op->queue->lldd_handle, 184878a7ac26SJames Smart &op->fcp_req); 184978a7ac26SJames Smart 185078a7ac26SJames Smart return 0; 185178a7ac26SJames Smart } 185278a7ac26SJames Smart 1853e399441dSJames Smart static void 185478a7ac26SJames Smart nvme_fc_abort_aen_ops(struct nvme_fc_ctrl *ctrl) 1855e399441dSJames Smart { 1856e399441dSJames Smart struct nvme_fc_fcp_op *aen_op = ctrl->aen_ops; 18573efd6e8eSJames Smart int i; 1858e399441dSJames Smart 18594cff280aSJames Smart /* ensure we've initialized the ops once */ 18604cff280aSJames Smart if (!(aen_op->flags & FCOP_FLAGS_AEN)) 18614cff280aSJames Smart return; 18624cff280aSJames Smart 18633efd6e8eSJames Smart for (i = 0; i < NVME_NR_AEN_COMMANDS; i++, aen_op++) 18643efd6e8eSJames Smart __nvme_fc_abort_op(ctrl, aen_op); 186578a7ac26SJames Smart } 186678a7ac26SJames Smart 1867c3aedd22SJames Smart static inline void 186878a7ac26SJames Smart __nvme_fc_fcpop_chk_teardowns(struct nvme_fc_ctrl *ctrl, 18693efd6e8eSJames Smart struct nvme_fc_fcp_op *op, int opstate) 187078a7ac26SJames Smart { 187178a7ac26SJames Smart unsigned long flags; 187278a7ac26SJames Smart 1873c3aedd22SJames Smart if (opstate == FCPOP_STATE_ABORTED) { 187478a7ac26SJames Smart spin_lock_irqsave(&ctrl->lock, flags); 1875eb4ee8f1SJames Smart if (test_bit(FCCTRL_TERMIO, &ctrl->flags)) { 187636715cf4SJames Smart if (!--ctrl->iocnt) 187736715cf4SJames Smart wake_up(&ctrl->ioabort_wait); 187836715cf4SJames Smart } 187978a7ac26SJames Smart spin_unlock_irqrestore(&ctrl->lock, flags); 1880c3aedd22SJames Smart } 188178a7ac26SJames Smart } 1882e399441dSJames Smart 1883baee29acSChristoph Hellwig static void 1884e399441dSJames Smart nvme_fc_fcpio_done(struct nvmefc_fcp_req *req) 1885e399441dSJames Smart { 1886e399441dSJames Smart struct nvme_fc_fcp_op *op = fcp_req_to_fcp_op(req); 1887e399441dSJames Smart struct request *rq = op->rq; 1888e399441dSJames Smart struct nvmefc_fcp_req *freq = &op->fcp_req; 1889e399441dSJames Smart struct nvme_fc_ctrl *ctrl = op->ctrl; 1890e399441dSJames Smart struct nvme_fc_queue *queue = op->queue; 1891e399441dSJames Smart struct nvme_completion *cqe = &op->rsp_iu.cqe; 1892458f280dSJames Smart struct nvme_command *sqe = &op->cmd_iu.sqe; 1893d663b69fSChristoph Hellwig __le16 status = cpu_to_le16(NVME_SC_SUCCESS << 1); 189427fa9bc5SChristoph Hellwig union nvme_result result; 18950a02e39fSJames Smart bool terminate_assoc = true; 18963efd6e8eSJames Smart int opstate; 1897e399441dSJames Smart 1898e399441dSJames Smart /* 1899e399441dSJames Smart * WARNING: 1900e399441dSJames Smart * The current linux implementation of a nvme controller 1901e399441dSJames Smart * allocates a single tag set for all io queues and sizes 1902e399441dSJames Smart * the io queues to fully hold all possible tags. Thus, the 1903e399441dSJames Smart * implementation does not reference or care about the sqhd 1904e399441dSJames Smart * value as it never needs to use the sqhd/sqtail pointers 1905e399441dSJames Smart * for submission pacing. 1906e399441dSJames Smart * 1907e399441dSJames Smart * This affects the FC-NVME implementation in two ways: 1908e399441dSJames Smart * 1) As the value doesn't matter, we don't need to waste 1909e399441dSJames Smart * cycles extracting it from ERSPs and stamping it in the 1910e399441dSJames Smart * cases where the transport fabricates CQEs on successful 1911e399441dSJames Smart * completions. 1912e399441dSJames Smart * 2) The FC-NVME implementation requires that delivery of 1913e399441dSJames Smart * ERSP completions are to go back to the nvme layer in order 1914e399441dSJames Smart * relative to the rsn, such that the sqhd value will always 1915e399441dSJames Smart * be "in order" for the nvme layer. As the nvme layer in 1916e399441dSJames Smart * linux doesn't care about sqhd, there's no need to return 1917e399441dSJames Smart * them in order. 1918e399441dSJames Smart * 1919e399441dSJames Smart * Additionally: 1920e399441dSJames Smart * As the core nvme layer in linux currently does not look at 1921e399441dSJames Smart * every field in the cqe - in cases where the FC transport must 1922e399441dSJames Smart * fabricate a CQE, the following fields will not be set as they 1923e399441dSJames Smart * are not referenced: 1924e399441dSJames Smart * cqe.sqid, cqe.sqhd, cqe.command_id 1925f874d5d0SJames Smart * 1926f874d5d0SJames Smart * Failure or error of an individual i/o, in a transport 1927f874d5d0SJames Smart * detected fashion unrelated to the nvme completion status, 1928f874d5d0SJames Smart * potentially cause the initiator and target sides to get out 1929f874d5d0SJames Smart * of sync on SQ head/tail (aka outstanding io count allowed). 1930f874d5d0SJames Smart * Per FC-NVME spec, failure of an individual command requires 1931f874d5d0SJames Smart * the connection to be terminated, which in turn requires the 1932f874d5d0SJames Smart * association to be terminated. 1933e399441dSJames Smart */ 1934e399441dSJames Smart 19353efd6e8eSJames Smart opstate = atomic_xchg(&op->state, FCPOP_STATE_COMPLETE); 19363efd6e8eSJames Smart 1937e399441dSJames Smart fc_dma_sync_single_for_cpu(ctrl->lport->dev, op->fcp_req.rspdma, 1938e399441dSJames Smart sizeof(op->rsp_iu), DMA_FROM_DEVICE); 1939e399441dSJames Smart 19403efd6e8eSJames Smart if (opstate == FCPOP_STATE_ABORTED) 194174bd8cbeSJames Smart status = cpu_to_le16(NVME_SC_HOST_PATH_ERROR << 1); 194274bd8cbeSJames Smart else if (freq->status) { 194374bd8cbeSJames Smart status = cpu_to_le16(NVME_SC_HOST_PATH_ERROR << 1); 194474bd8cbeSJames Smart dev_info(ctrl->ctrl.device, 194574bd8cbeSJames Smart "NVME-FC{%d}: io failed due to lldd error %d\n", 194674bd8cbeSJames Smart ctrl->cnum, freq->status); 194774bd8cbeSJames Smart } 1948e399441dSJames Smart 1949e399441dSJames Smart /* 1950e399441dSJames Smart * For the linux implementation, if we have an unsuccesful 1951e399441dSJames Smart * status, they blk-mq layer can typically be called with the 1952e399441dSJames Smart * non-zero status and the content of the cqe isn't important. 1953e399441dSJames Smart */ 1954e399441dSJames Smart if (status) 1955e399441dSJames Smart goto done; 1956e399441dSJames Smart 1957e399441dSJames Smart /* 1958e399441dSJames Smart * command completed successfully relative to the wire 1959e399441dSJames Smart * protocol. However, validate anything received and 1960e399441dSJames Smart * extract the status and result from the cqe (create it 1961e399441dSJames Smart * where necessary). 1962e399441dSJames Smart */ 1963e399441dSJames Smart 1964e399441dSJames Smart switch (freq->rcv_rsplen) { 1965e399441dSJames Smart 1966e399441dSJames Smart case 0: 1967e399441dSJames Smart case NVME_FC_SIZEOF_ZEROS_RSP: 1968e399441dSJames Smart /* 1969e399441dSJames Smart * No response payload or 12 bytes of payload (which 1970e399441dSJames Smart * should all be zeros) are considered successful and 1971e399441dSJames Smart * no payload in the CQE by the transport. 1972e399441dSJames Smart */ 1973e399441dSJames Smart if (freq->transferred_length != 1974e399441dSJames Smart be32_to_cpu(op->cmd_iu.data_len)) { 197574bd8cbeSJames Smart status = cpu_to_le16(NVME_SC_HOST_PATH_ERROR << 1); 197674bd8cbeSJames Smart dev_info(ctrl->ctrl.device, 197774bd8cbeSJames Smart "NVME-FC{%d}: io failed due to bad transfer " 197874bd8cbeSJames Smart "length: %d vs expected %d\n", 197974bd8cbeSJames Smart ctrl->cnum, freq->transferred_length, 198074bd8cbeSJames Smart be32_to_cpu(op->cmd_iu.data_len)); 1981e399441dSJames Smart goto done; 1982e399441dSJames Smart } 198327fa9bc5SChristoph Hellwig result.u64 = 0; 1984e399441dSJames Smart break; 1985e399441dSJames Smart 1986e399441dSJames Smart case sizeof(struct nvme_fc_ersp_iu): 1987e399441dSJames Smart /* 1988e399441dSJames Smart * The ERSP IU contains a full completion with CQE. 1989e399441dSJames Smart * Validate ERSP IU and look at cqe. 1990e399441dSJames Smart */ 1991e399441dSJames Smart if (unlikely(be16_to_cpu(op->rsp_iu.iu_len) != 1992e399441dSJames Smart (freq->rcv_rsplen / 4) || 1993e399441dSJames Smart be32_to_cpu(op->rsp_iu.xfrd_len) != 1994e399441dSJames Smart freq->transferred_length || 199553b2b2f5SJames Smart op->rsp_iu.ersp_result || 1996458f280dSJames Smart sqe->common.command_id != cqe->command_id)) { 199774bd8cbeSJames Smart status = cpu_to_le16(NVME_SC_HOST_PATH_ERROR << 1); 199874bd8cbeSJames Smart dev_info(ctrl->ctrl.device, 199974bd8cbeSJames Smart "NVME-FC{%d}: io failed due to bad NVMe_ERSP: " 200074bd8cbeSJames Smart "iu len %d, xfr len %d vs %d, status code " 200174bd8cbeSJames Smart "%d, cmdid %d vs %d\n", 200274bd8cbeSJames Smart ctrl->cnum, be16_to_cpu(op->rsp_iu.iu_len), 200374bd8cbeSJames Smart be32_to_cpu(op->rsp_iu.xfrd_len), 200474bd8cbeSJames Smart freq->transferred_length, 200553b2b2f5SJames Smart op->rsp_iu.ersp_result, 200674bd8cbeSJames Smart sqe->common.command_id, 200774bd8cbeSJames Smart cqe->command_id); 2008e399441dSJames Smart goto done; 2009e399441dSJames Smart } 201027fa9bc5SChristoph Hellwig result = cqe->result; 2011d663b69fSChristoph Hellwig status = cqe->status; 2012e399441dSJames Smart break; 2013e399441dSJames Smart 2014e399441dSJames Smart default: 201574bd8cbeSJames Smart status = cpu_to_le16(NVME_SC_HOST_PATH_ERROR << 1); 201674bd8cbeSJames Smart dev_info(ctrl->ctrl.device, 201774bd8cbeSJames Smart "NVME-FC{%d}: io failed due to odd NVMe_xRSP iu " 201874bd8cbeSJames Smart "len %d\n", 201974bd8cbeSJames Smart ctrl->cnum, freq->rcv_rsplen); 2020e399441dSJames Smart goto done; 2021e399441dSJames Smart } 2022e399441dSJames Smart 2023f874d5d0SJames Smart terminate_assoc = false; 2024f874d5d0SJames Smart 2025e399441dSJames Smart done: 202678a7ac26SJames Smart if (op->flags & FCOP_FLAGS_AEN) { 202727fa9bc5SChristoph Hellwig nvme_complete_async_event(&queue->ctrl->ctrl, status, &result); 20283efd6e8eSJames Smart __nvme_fc_fcpop_chk_teardowns(ctrl, op, opstate); 202978a7ac26SJames Smart atomic_set(&op->state, FCPOP_STATE_IDLE); 203078a7ac26SJames Smart op->flags = FCOP_FLAGS_AEN; /* clear other flags */ 2031e399441dSJames Smart nvme_fc_ctrl_put(ctrl); 2032f874d5d0SJames Smart goto check_error; 2033e399441dSJames Smart } 2034e399441dSJames Smart 2035c3aedd22SJames Smart __nvme_fc_fcpop_chk_teardowns(ctrl, op, opstate); 20360a02e39fSJames Smart nvme_end_request(rq, status, result); 2037f874d5d0SJames Smart 2038f874d5d0SJames Smart check_error: 2039f874d5d0SJames Smart if (terminate_assoc) 2040f874d5d0SJames Smart nvme_fc_error_recovery(ctrl, "transport detected io error"); 2041e399441dSJames Smart } 2042e399441dSJames Smart 2043e399441dSJames Smart static int 2044e399441dSJames Smart __nvme_fc_init_request(struct nvme_fc_ctrl *ctrl, 2045e399441dSJames Smart struct nvme_fc_queue *queue, struct nvme_fc_fcp_op *op, 2046e399441dSJames Smart struct request *rq, u32 rqno) 2047e399441dSJames Smart { 2048d3d0bc78SBart Van Assche struct nvme_fcp_op_w_sgl *op_w_sgl = 2049d3d0bc78SBart Van Assche container_of(op, typeof(*op_w_sgl), op); 2050e399441dSJames Smart struct nvme_fc_cmd_iu *cmdiu = &op->cmd_iu; 2051e399441dSJames Smart int ret = 0; 2052e399441dSJames Smart 2053e399441dSJames Smart memset(op, 0, sizeof(*op)); 2054e399441dSJames Smart op->fcp_req.cmdaddr = &op->cmd_iu; 2055e399441dSJames Smart op->fcp_req.cmdlen = sizeof(op->cmd_iu); 2056e399441dSJames Smart op->fcp_req.rspaddr = &op->rsp_iu; 2057e399441dSJames Smart op->fcp_req.rsplen = sizeof(op->rsp_iu); 2058e399441dSJames Smart op->fcp_req.done = nvme_fc_fcpio_done; 2059e399441dSJames Smart op->ctrl = ctrl; 2060e399441dSJames Smart op->queue = queue; 2061e399441dSJames Smart op->rq = rq; 2062e399441dSJames Smart op->rqno = rqno; 2063e399441dSJames Smart 206453b2b2f5SJames Smart cmdiu->format_id = NVME_CMD_FORMAT_ID; 2065e399441dSJames Smart cmdiu->fc_id = NVME_CMD_FC_ID; 2066e399441dSJames Smart cmdiu->iu_len = cpu_to_be16(sizeof(*cmdiu) / sizeof(u32)); 206744fbf3bbSJames Smart if (queue->qnum) 206844fbf3bbSJames Smart cmdiu->rsv_cat = fccmnd_set_cat_css(0, 206944fbf3bbSJames Smart (NVME_CC_CSS_NVM >> NVME_CC_CSS_SHIFT)); 207044fbf3bbSJames Smart else 207144fbf3bbSJames Smart cmdiu->rsv_cat = fccmnd_set_cat_admin(0); 2072e399441dSJames Smart 2073e399441dSJames Smart op->fcp_req.cmddma = fc_dma_map_single(ctrl->lport->dev, 2074e399441dSJames Smart &op->cmd_iu, sizeof(op->cmd_iu), DMA_TO_DEVICE); 2075e399441dSJames Smart if (fc_dma_mapping_error(ctrl->lport->dev, op->fcp_req.cmddma)) { 2076e399441dSJames Smart dev_err(ctrl->dev, 2077e399441dSJames Smart "FCP Op failed - cmdiu dma mapping failed.\n"); 2078e399441dSJames Smart ret = EFAULT; 2079e399441dSJames Smart goto out_on_error; 2080e399441dSJames Smart } 2081e399441dSJames Smart 2082e399441dSJames Smart op->fcp_req.rspdma = fc_dma_map_single(ctrl->lport->dev, 2083e399441dSJames Smart &op->rsp_iu, sizeof(op->rsp_iu), 2084e399441dSJames Smart DMA_FROM_DEVICE); 2085e399441dSJames Smart if (fc_dma_mapping_error(ctrl->lport->dev, op->fcp_req.rspdma)) { 2086e399441dSJames Smart dev_err(ctrl->dev, 2087e399441dSJames Smart "FCP Op failed - rspiu dma mapping failed.\n"); 2088e399441dSJames Smart ret = EFAULT; 2089e399441dSJames Smart } 2090e399441dSJames Smart 2091e399441dSJames Smart atomic_set(&op->state, FCPOP_STATE_IDLE); 2092e399441dSJames Smart out_on_error: 2093e399441dSJames Smart return ret; 2094e399441dSJames Smart } 2095e399441dSJames Smart 2096e399441dSJames Smart static int 2097d6296d39SChristoph Hellwig nvme_fc_init_request(struct blk_mq_tag_set *set, struct request *rq, 2098d6296d39SChristoph Hellwig unsigned int hctx_idx, unsigned int numa_node) 2099e399441dSJames Smart { 2100d6296d39SChristoph Hellwig struct nvme_fc_ctrl *ctrl = set->driver_data; 2101d3d0bc78SBart Van Assche struct nvme_fcp_op_w_sgl *op = blk_mq_rq_to_pdu(rq); 210276f983cbSChristoph Hellwig int queue_idx = (set == &ctrl->tag_set) ? hctx_idx + 1 : 0; 210376f983cbSChristoph Hellwig struct nvme_fc_queue *queue = &ctrl->queues[queue_idx]; 21040d2bdf9fSBart Van Assche int res; 2105e399441dSJames Smart 21060d2bdf9fSBart Van Assche res = __nvme_fc_init_request(ctrl, queue, &op->op, rq, queue->rqcnt++); 21070d2bdf9fSBart Van Assche if (res) 21080d2bdf9fSBart Van Assche return res; 21090d2bdf9fSBart Van Assche op->op.fcp_req.first_sgl = &op->sgl[0]; 2110d19b8bc8SJames Smart op->op.fcp_req.private = &op->priv[0]; 2111dfa74422SEwan D. Milne nvme_req(rq)->ctrl = &ctrl->ctrl; 21120d2bdf9fSBart Van Assche return res; 2113e399441dSJames Smart } 2114e399441dSJames Smart 2115e399441dSJames Smart static int 2116e399441dSJames Smart nvme_fc_init_aen_ops(struct nvme_fc_ctrl *ctrl) 2117e399441dSJames Smart { 2118e399441dSJames Smart struct nvme_fc_fcp_op *aen_op; 2119e399441dSJames Smart struct nvme_fc_cmd_iu *cmdiu; 2120e399441dSJames Smart struct nvme_command *sqe; 2121f56bf76fSJames Smart void *private = NULL; 2122e399441dSJames Smart int i, ret; 2123e399441dSJames Smart 2124e399441dSJames Smart aen_op = ctrl->aen_ops; 212538dabe21SKeith Busch for (i = 0; i < NVME_NR_AEN_COMMANDS; i++, aen_op++) { 2126f56bf76fSJames Smart if (ctrl->lport->ops->fcprqst_priv_sz) { 212761bff8efSJames Smart private = kzalloc(ctrl->lport->ops->fcprqst_priv_sz, 212861bff8efSJames Smart GFP_KERNEL); 212961bff8efSJames Smart if (!private) 213061bff8efSJames Smart return -ENOMEM; 2131f56bf76fSJames Smart } 213261bff8efSJames Smart 2133e399441dSJames Smart cmdiu = &aen_op->cmd_iu; 2134e399441dSJames Smart sqe = &cmdiu->sqe; 2135e399441dSJames Smart ret = __nvme_fc_init_request(ctrl, &ctrl->queues[0], 2136e399441dSJames Smart aen_op, (struct request *)NULL, 213738dabe21SKeith Busch (NVME_AQ_BLK_MQ_DEPTH + i)); 213861bff8efSJames Smart if (ret) { 213961bff8efSJames Smart kfree(private); 2140e399441dSJames Smart return ret; 214161bff8efSJames Smart } 2142e399441dSJames Smart 214378a7ac26SJames Smart aen_op->flags = FCOP_FLAGS_AEN; 214461bff8efSJames Smart aen_op->fcp_req.private = private; 214578a7ac26SJames Smart 2146e399441dSJames Smart memset(sqe, 0, sizeof(*sqe)); 2147e399441dSJames Smart sqe->common.opcode = nvme_admin_async_event; 214878a7ac26SJames Smart /* Note: core layer may overwrite the sqe.command_id value */ 214938dabe21SKeith Busch sqe->common.command_id = NVME_AQ_BLK_MQ_DEPTH + i; 2150e399441dSJames Smart } 2151e399441dSJames Smart return 0; 2152e399441dSJames Smart } 2153e399441dSJames Smart 215461bff8efSJames Smart static void 215561bff8efSJames Smart nvme_fc_term_aen_ops(struct nvme_fc_ctrl *ctrl) 215661bff8efSJames Smart { 215761bff8efSJames Smart struct nvme_fc_fcp_op *aen_op; 215861bff8efSJames Smart int i; 215961bff8efSJames Smart 216061bff8efSJames Smart aen_op = ctrl->aen_ops; 216138dabe21SKeith Busch for (i = 0; i < NVME_NR_AEN_COMMANDS; i++, aen_op++) { 216261bff8efSJames Smart __nvme_fc_exit_request(ctrl, aen_op); 216361bff8efSJames Smart 216461bff8efSJames Smart kfree(aen_op->fcp_req.private); 216561bff8efSJames Smart aen_op->fcp_req.private = NULL; 216661bff8efSJames Smart } 216761bff8efSJames Smart } 2168e399441dSJames Smart 2169e399441dSJames Smart static inline void 2170e399441dSJames Smart __nvme_fc_init_hctx(struct blk_mq_hw_ctx *hctx, struct nvme_fc_ctrl *ctrl, 2171e399441dSJames Smart unsigned int qidx) 2172e399441dSJames Smart { 2173e399441dSJames Smart struct nvme_fc_queue *queue = &ctrl->queues[qidx]; 2174e399441dSJames Smart 2175e399441dSJames Smart hctx->driver_data = queue; 2176e399441dSJames Smart queue->hctx = hctx; 2177e399441dSJames Smart } 2178e399441dSJames Smart 2179e399441dSJames Smart static int 2180e399441dSJames Smart nvme_fc_init_hctx(struct blk_mq_hw_ctx *hctx, void *data, 2181e399441dSJames Smart unsigned int hctx_idx) 2182e399441dSJames Smart { 2183e399441dSJames Smart struct nvme_fc_ctrl *ctrl = data; 2184e399441dSJames Smart 2185e399441dSJames Smart __nvme_fc_init_hctx(hctx, ctrl, hctx_idx + 1); 2186e399441dSJames Smart 2187e399441dSJames Smart return 0; 2188e399441dSJames Smart } 2189e399441dSJames Smart 2190e399441dSJames Smart static int 2191e399441dSJames Smart nvme_fc_init_admin_hctx(struct blk_mq_hw_ctx *hctx, void *data, 2192e399441dSJames Smart unsigned int hctx_idx) 2193e399441dSJames Smart { 2194e399441dSJames Smart struct nvme_fc_ctrl *ctrl = data; 2195e399441dSJames Smart 2196e399441dSJames Smart __nvme_fc_init_hctx(hctx, ctrl, hctx_idx); 2197e399441dSJames Smart 2198e399441dSJames Smart return 0; 2199e399441dSJames Smart } 2200e399441dSJames Smart 2201e399441dSJames Smart static void 220208e15075SKeith Busch nvme_fc_init_queue(struct nvme_fc_ctrl *ctrl, int idx) 2203e399441dSJames Smart { 2204e399441dSJames Smart struct nvme_fc_queue *queue; 2205e399441dSJames Smart 2206e399441dSJames Smart queue = &ctrl->queues[idx]; 2207e399441dSJames Smart memset(queue, 0, sizeof(*queue)); 2208e399441dSJames Smart queue->ctrl = ctrl; 2209e399441dSJames Smart queue->qnum = idx; 221067f471b6SJames Smart atomic_set(&queue->csn, 0); 2211e399441dSJames Smart queue->dev = ctrl->dev; 2212e399441dSJames Smart 2213e399441dSJames Smart if (idx > 0) 2214e399441dSJames Smart queue->cmnd_capsule_len = ctrl->ctrl.ioccsz * 16; 2215e399441dSJames Smart else 2216e399441dSJames Smart queue->cmnd_capsule_len = sizeof(struct nvme_command); 2217e399441dSJames Smart 2218e399441dSJames Smart /* 2219e399441dSJames Smart * Considered whether we should allocate buffers for all SQEs 2220e399441dSJames Smart * and CQEs and dma map them - mapping their respective entries 2221e399441dSJames Smart * into the request structures (kernel vm addr and dma address) 2222e399441dSJames Smart * thus the driver could use the buffers/mappings directly. 2223e399441dSJames Smart * It only makes sense if the LLDD would use them for its 2224e399441dSJames Smart * messaging api. It's very unlikely most adapter api's would use 2225e399441dSJames Smart * a native NVME sqe/cqe. More reasonable if FC-NVME IU payload 2226e399441dSJames Smart * structures were used instead. 2227e399441dSJames Smart */ 2228e399441dSJames Smart } 2229e399441dSJames Smart 2230e399441dSJames Smart /* 2231e399441dSJames Smart * This routine terminates a queue at the transport level. 2232e399441dSJames Smart * The transport has already ensured that all outstanding ios on 2233e399441dSJames Smart * the queue have been terminated. 2234e399441dSJames Smart * The transport will send a Disconnect LS request to terminate 2235e399441dSJames Smart * the queue's connection. Termination of the admin queue will also 2236e399441dSJames Smart * terminate the association at the target. 2237e399441dSJames Smart */ 2238e399441dSJames Smart static void 2239e399441dSJames Smart nvme_fc_free_queue(struct nvme_fc_queue *queue) 2240e399441dSJames Smart { 2241e399441dSJames Smart if (!test_and_clear_bit(NVME_FC_Q_CONNECTED, &queue->flags)) 2242e399441dSJames Smart return; 2243e399441dSJames Smart 22449e0ed16aSSagi Grimberg clear_bit(NVME_FC_Q_LIVE, &queue->flags); 2245e399441dSJames Smart /* 2246e399441dSJames Smart * Current implementation never disconnects a single queue. 2247e399441dSJames Smart * It always terminates a whole association. So there is never 2248e399441dSJames Smart * a disconnect(queue) LS sent to the target. 2249e399441dSJames Smart */ 2250e399441dSJames Smart 2251e399441dSJames Smart queue->connection_id = 0; 225267f471b6SJames Smart atomic_set(&queue->csn, 0); 2253e399441dSJames Smart } 2254e399441dSJames Smart 2255e399441dSJames Smart static void 2256e399441dSJames Smart __nvme_fc_delete_hw_queue(struct nvme_fc_ctrl *ctrl, 2257e399441dSJames Smart struct nvme_fc_queue *queue, unsigned int qidx) 2258e399441dSJames Smart { 2259e399441dSJames Smart if (ctrl->lport->ops->delete_queue) 2260e399441dSJames Smart ctrl->lport->ops->delete_queue(&ctrl->lport->localport, qidx, 2261e399441dSJames Smart queue->lldd_handle); 2262e399441dSJames Smart queue->lldd_handle = NULL; 2263e399441dSJames Smart } 2264e399441dSJames Smart 2265e399441dSJames Smart static void 2266e399441dSJames Smart nvme_fc_free_io_queues(struct nvme_fc_ctrl *ctrl) 2267e399441dSJames Smart { 2268e399441dSJames Smart int i; 2269e399441dSJames Smart 2270d858e5f0SSagi Grimberg for (i = 1; i < ctrl->ctrl.queue_count; i++) 2271e399441dSJames Smart nvme_fc_free_queue(&ctrl->queues[i]); 2272e399441dSJames Smart } 2273e399441dSJames Smart 2274e399441dSJames Smart static int 2275e399441dSJames Smart __nvme_fc_create_hw_queue(struct nvme_fc_ctrl *ctrl, 2276e399441dSJames Smart struct nvme_fc_queue *queue, unsigned int qidx, u16 qsize) 2277e399441dSJames Smart { 2278e399441dSJames Smart int ret = 0; 2279e399441dSJames Smart 2280e399441dSJames Smart queue->lldd_handle = NULL; 2281e399441dSJames Smart if (ctrl->lport->ops->create_queue) 2282e399441dSJames Smart ret = ctrl->lport->ops->create_queue(&ctrl->lport->localport, 2283e399441dSJames Smart qidx, qsize, &queue->lldd_handle); 2284e399441dSJames Smart 2285e399441dSJames Smart return ret; 2286e399441dSJames Smart } 2287e399441dSJames Smart 2288e399441dSJames Smart static void 2289e399441dSJames Smart nvme_fc_delete_hw_io_queues(struct nvme_fc_ctrl *ctrl) 2290e399441dSJames Smart { 2291d858e5f0SSagi Grimberg struct nvme_fc_queue *queue = &ctrl->queues[ctrl->ctrl.queue_count - 1]; 2292e399441dSJames Smart int i; 2293e399441dSJames Smart 2294d858e5f0SSagi Grimberg for (i = ctrl->ctrl.queue_count - 1; i >= 1; i--, queue--) 2295e399441dSJames Smart __nvme_fc_delete_hw_queue(ctrl, queue, i); 2296e399441dSJames Smart } 2297e399441dSJames Smart 2298e399441dSJames Smart static int 2299e399441dSJames Smart nvme_fc_create_hw_io_queues(struct nvme_fc_ctrl *ctrl, u16 qsize) 2300e399441dSJames Smart { 2301e399441dSJames Smart struct nvme_fc_queue *queue = &ctrl->queues[1]; 230217a1ec08SJohannes Thumshirn int i, ret; 2303e399441dSJames Smart 2304d858e5f0SSagi Grimberg for (i = 1; i < ctrl->ctrl.queue_count; i++, queue++) { 2305e399441dSJames Smart ret = __nvme_fc_create_hw_queue(ctrl, queue, i, qsize); 230617a1ec08SJohannes Thumshirn if (ret) 230717a1ec08SJohannes Thumshirn goto delete_queues; 2308e399441dSJames Smart } 2309e399441dSJames Smart 2310e399441dSJames Smart return 0; 231117a1ec08SJohannes Thumshirn 231217a1ec08SJohannes Thumshirn delete_queues: 231317a1ec08SJohannes Thumshirn for (; i >= 0; i--) 231417a1ec08SJohannes Thumshirn __nvme_fc_delete_hw_queue(ctrl, &ctrl->queues[i], i); 231517a1ec08SJohannes Thumshirn return ret; 2316e399441dSJames Smart } 2317e399441dSJames Smart 2318e399441dSJames Smart static int 2319e399441dSJames Smart nvme_fc_connect_io_queues(struct nvme_fc_ctrl *ctrl, u16 qsize) 2320e399441dSJames Smart { 2321e399441dSJames Smart int i, ret = 0; 2322e399441dSJames Smart 2323d858e5f0SSagi Grimberg for (i = 1; i < ctrl->ctrl.queue_count; i++) { 2324e399441dSJames Smart ret = nvme_fc_connect_queue(ctrl, &ctrl->queues[i], qsize, 2325e399441dSJames Smart (qsize / 5)); 2326e399441dSJames Smart if (ret) 2327e399441dSJames Smart break; 232826c68227SSagi Grimberg ret = nvmf_connect_io_queue(&ctrl->ctrl, i, false); 2329e399441dSJames Smart if (ret) 2330e399441dSJames Smart break; 23319e0ed16aSSagi Grimberg 23329e0ed16aSSagi Grimberg set_bit(NVME_FC_Q_LIVE, &ctrl->queues[i].flags); 2333e399441dSJames Smart } 2334e399441dSJames Smart 2335e399441dSJames Smart return ret; 2336e399441dSJames Smart } 2337e399441dSJames Smart 2338e399441dSJames Smart static void 2339e399441dSJames Smart nvme_fc_init_io_queues(struct nvme_fc_ctrl *ctrl) 2340e399441dSJames Smart { 2341e399441dSJames Smart int i; 2342e399441dSJames Smart 2343d858e5f0SSagi Grimberg for (i = 1; i < ctrl->ctrl.queue_count; i++) 234408e15075SKeith Busch nvme_fc_init_queue(ctrl, i); 2345e399441dSJames Smart } 2346e399441dSJames Smart 2347e399441dSJames Smart static void 2348e399441dSJames Smart nvme_fc_ctrl_free(struct kref *ref) 2349e399441dSJames Smart { 2350e399441dSJames Smart struct nvme_fc_ctrl *ctrl = 2351e399441dSJames Smart container_of(ref, struct nvme_fc_ctrl, ref); 2352e399441dSJames Smart unsigned long flags; 2353e399441dSJames Smart 235461bff8efSJames Smart if (ctrl->ctrl.tagset) { 235561bff8efSJames Smart blk_cleanup_queue(ctrl->ctrl.connect_q); 235661bff8efSJames Smart blk_mq_free_tag_set(&ctrl->tag_set); 235761bff8efSJames Smart } 235861bff8efSJames Smart 2359e399441dSJames Smart /* remove from rport list */ 2360e399441dSJames Smart spin_lock_irqsave(&ctrl->rport->lock, flags); 2361e399441dSJames Smart list_del(&ctrl->ctrl_list); 2362e399441dSJames Smart spin_unlock_irqrestore(&ctrl->rport->lock, flags); 236361bff8efSJames Smart 2364f9c5af5fSSagi Grimberg blk_mq_unquiesce_queue(ctrl->ctrl.admin_q); 236561bff8efSJames Smart blk_cleanup_queue(ctrl->ctrl.admin_q); 2366e7832cb4SSagi Grimberg blk_cleanup_queue(ctrl->ctrl.fabrics_q); 236761bff8efSJames Smart blk_mq_free_tag_set(&ctrl->admin_tag_set); 236861bff8efSJames Smart 236961bff8efSJames Smart kfree(ctrl->queues); 2370e399441dSJames Smart 2371e399441dSJames Smart put_device(ctrl->dev); 2372e399441dSJames Smart nvme_fc_rport_put(ctrl->rport); 2373e399441dSJames Smart 2374e399441dSJames Smart ida_simple_remove(&nvme_fc_ctrl_cnt, ctrl->cnum); 2375de41447aSEwan D. Milne if (ctrl->ctrl.opts) 2376e399441dSJames Smart nvmf_free_options(ctrl->ctrl.opts); 2377e399441dSJames Smart kfree(ctrl); 2378e399441dSJames Smart } 2379e399441dSJames Smart 2380e399441dSJames Smart static void 2381e399441dSJames Smart nvme_fc_ctrl_put(struct nvme_fc_ctrl *ctrl) 2382e399441dSJames Smart { 2383e399441dSJames Smart kref_put(&ctrl->ref, nvme_fc_ctrl_free); 2384e399441dSJames Smart } 2385e399441dSJames Smart 2386e399441dSJames Smart static int 2387e399441dSJames Smart nvme_fc_ctrl_get(struct nvme_fc_ctrl *ctrl) 2388e399441dSJames Smart { 2389e399441dSJames Smart return kref_get_unless_zero(&ctrl->ref); 2390e399441dSJames Smart } 2391e399441dSJames Smart 2392e399441dSJames Smart /* 2393e399441dSJames Smart * All accesses from nvme core layer done - can now free the 2394e399441dSJames Smart * controller. Called after last nvme_put_ctrl() call 2395e399441dSJames Smart */ 2396e399441dSJames Smart static void 239761bff8efSJames Smart nvme_fc_nvme_ctrl_freed(struct nvme_ctrl *nctrl) 2398e399441dSJames Smart { 2399e399441dSJames Smart struct nvme_fc_ctrl *ctrl = to_fc_ctrl(nctrl); 2400e399441dSJames Smart 2401e399441dSJames Smart WARN_ON(nctrl != &ctrl->ctrl); 2402e399441dSJames Smart 2403e399441dSJames Smart nvme_fc_ctrl_put(ctrl); 2404e399441dSJames Smart } 2405e399441dSJames Smart 240661bff8efSJames Smart static void 240761bff8efSJames Smart nvme_fc_error_recovery(struct nvme_fc_ctrl *ctrl, char *errmsg) 240861bff8efSJames Smart { 24094cff280aSJames Smart int active; 24104cff280aSJames Smart 24114cff280aSJames Smart /* 24124cff280aSJames Smart * if an error (io timeout, etc) while (re)connecting, 24134cff280aSJames Smart * it's an error on creating the new association. 24144cff280aSJames Smart * Start the error recovery thread if it hasn't already 24154cff280aSJames Smart * been started. It is expected there could be multiple 24164cff280aSJames Smart * ios hitting this path before things are cleaned up. 24174cff280aSJames Smart */ 24184cff280aSJames Smart if (ctrl->ctrl.state == NVME_CTRL_CONNECTING) { 24194cff280aSJames Smart active = atomic_xchg(&ctrl->err_work_active, 1); 24208730c1ddSHannes Reinecke if (!active && !queue_work(nvme_fc_wq, &ctrl->err_work)) { 24214cff280aSJames Smart atomic_set(&ctrl->err_work_active, 0); 24224cff280aSJames Smart WARN_ON(1); 24234cff280aSJames Smart } 24244cff280aSJames Smart return; 24254cff280aSJames Smart } 24264cff280aSJames Smart 24274cff280aSJames Smart /* Otherwise, only proceed if in LIVE state - e.g. on first error */ 242869fa9646SJames Smart if (ctrl->ctrl.state != NVME_CTRL_LIVE) 242969fa9646SJames Smart return; 243069fa9646SJames Smart 243161bff8efSJames Smart dev_warn(ctrl->ctrl.device, 243261bff8efSJames Smart "NVME-FC{%d}: transport association error detected: %s\n", 243361bff8efSJames Smart ctrl->cnum, errmsg); 2434589ff775SJames Smart dev_warn(ctrl->ctrl.device, 243561bff8efSJames Smart "NVME-FC{%d}: resetting controller\n", ctrl->cnum); 243661bff8efSJames Smart 2437d86c4d8eSChristoph Hellwig nvme_reset_ctrl(&ctrl->ctrl); 243861bff8efSJames Smart } 243961bff8efSJames Smart 2440baee29acSChristoph Hellwig static enum blk_eh_timer_return 2441e399441dSJames Smart nvme_fc_timeout(struct request *rq, bool reserved) 2442e399441dSJames Smart { 2443e399441dSJames Smart struct nvme_fc_fcp_op *op = blk_mq_rq_to_pdu(rq); 2444e399441dSJames Smart struct nvme_fc_ctrl *ctrl = op->ctrl; 2445e399441dSJames Smart 2446e399441dSJames Smart /* 244761bff8efSJames Smart * we can't individually ABTS an io without affecting the queue, 2448041018c6SJames Smart * thus killing the queue, and thus the association. 244961bff8efSJames Smart * So resolve by performing a controller reset, which will stop 245061bff8efSJames Smart * the host/io stack, terminate the association on the link, 245161bff8efSJames Smart * and recreate an association on the link. 2452e399441dSJames Smart */ 245361bff8efSJames Smart nvme_fc_error_recovery(ctrl, "io timeout error"); 2454e399441dSJames Smart 2455134aedc9SJames Smart /* 2456134aedc9SJames Smart * the io abort has been initiated. Have the reset timer 2457134aedc9SJames Smart * restarted and the abort completion will complete the io 2458134aedc9SJames Smart * shortly. Avoids a synchronous wait while the abort finishes. 2459134aedc9SJames Smart */ 2460134aedc9SJames Smart return BLK_EH_RESET_TIMER; 2461e399441dSJames Smart } 2462e399441dSJames Smart 2463e399441dSJames Smart static int 2464e399441dSJames Smart nvme_fc_map_data(struct nvme_fc_ctrl *ctrl, struct request *rq, 2465e399441dSJames Smart struct nvme_fc_fcp_op *op) 2466e399441dSJames Smart { 2467e399441dSJames Smart struct nvmefc_fcp_req *freq = &op->fcp_req; 2468e399441dSJames Smart int ret; 2469e399441dSJames Smart 2470e399441dSJames Smart freq->sg_cnt = 0; 2471e399441dSJames Smart 24729f7d8ae2SJames Smart if (!blk_rq_nr_phys_segments(rq)) 2473e399441dSJames Smart return 0; 2474e399441dSJames Smart 2475e399441dSJames Smart freq->sg_table.sgl = freq->first_sgl; 247619e420bbSChristoph Hellwig ret = sg_alloc_table_chained(&freq->sg_table, 24774635873cSMing Lei blk_rq_nr_phys_segments(rq), freq->sg_table.sgl, 2478b1ae1a23SIsrael Rukshin NVME_INLINE_SG_CNT); 2479e399441dSJames Smart if (ret) 2480e399441dSJames Smart return -ENOMEM; 2481e399441dSJames Smart 2482e399441dSJames Smart op->nents = blk_rq_map_sg(rq->q, rq, freq->sg_table.sgl); 248319e420bbSChristoph Hellwig WARN_ON(op->nents > blk_rq_nr_phys_segments(rq)); 2484e399441dSJames Smart freq->sg_cnt = fc_dma_map_sg(ctrl->lport->dev, freq->sg_table.sgl, 2485f15872c5SIsrael Rukshin op->nents, rq_dma_dir(rq)); 2486e399441dSJames Smart if (unlikely(freq->sg_cnt <= 0)) { 2487b1ae1a23SIsrael Rukshin sg_free_table_chained(&freq->sg_table, NVME_INLINE_SG_CNT); 2488e399441dSJames Smart freq->sg_cnt = 0; 2489e399441dSJames Smart return -EFAULT; 2490e399441dSJames Smart } 2491e399441dSJames Smart 2492e399441dSJames Smart /* 2493e399441dSJames Smart * TODO: blk_integrity_rq(rq) for DIF 2494e399441dSJames Smart */ 2495e399441dSJames Smart return 0; 2496e399441dSJames Smart } 2497e399441dSJames Smart 2498e399441dSJames Smart static void 2499e399441dSJames Smart nvme_fc_unmap_data(struct nvme_fc_ctrl *ctrl, struct request *rq, 2500e399441dSJames Smart struct nvme_fc_fcp_op *op) 2501e399441dSJames Smart { 2502e399441dSJames Smart struct nvmefc_fcp_req *freq = &op->fcp_req; 2503e399441dSJames Smart 2504e399441dSJames Smart if (!freq->sg_cnt) 2505e399441dSJames Smart return; 2506e399441dSJames Smart 2507e399441dSJames Smart fc_dma_unmap_sg(ctrl->lport->dev, freq->sg_table.sgl, op->nents, 2508f15872c5SIsrael Rukshin rq_dma_dir(rq)); 2509e399441dSJames Smart 2510b1ae1a23SIsrael Rukshin sg_free_table_chained(&freq->sg_table, NVME_INLINE_SG_CNT); 2511e399441dSJames Smart 2512e399441dSJames Smart freq->sg_cnt = 0; 2513e399441dSJames Smart } 2514e399441dSJames Smart 2515e399441dSJames Smart /* 2516e399441dSJames Smart * In FC, the queue is a logical thing. At transport connect, the target 2517e399441dSJames Smart * creates its "queue" and returns a handle that is to be given to the 2518e399441dSJames Smart * target whenever it posts something to the corresponding SQ. When an 2519e399441dSJames Smart * SQE is sent on a SQ, FC effectively considers the SQE, or rather the 2520e399441dSJames Smart * command contained within the SQE, an io, and assigns a FC exchange 2521e399441dSJames Smart * to it. The SQE and the associated SQ handle are sent in the initial 2522e399441dSJames Smart * CMD IU sents on the exchange. All transfers relative to the io occur 2523e399441dSJames Smart * as part of the exchange. The CQE is the last thing for the io, 2524e399441dSJames Smart * which is transferred (explicitly or implicitly) with the RSP IU 2525e399441dSJames Smart * sent on the exchange. After the CQE is received, the FC exchange is 2526e399441dSJames Smart * terminaed and the Exchange may be used on a different io. 2527e399441dSJames Smart * 2528e399441dSJames Smart * The transport to LLDD api has the transport making a request for a 2529e399441dSJames Smart * new fcp io request to the LLDD. The LLDD then allocates a FC exchange 2530e399441dSJames Smart * resource and transfers the command. The LLDD will then process all 2531e399441dSJames Smart * steps to complete the io. Upon completion, the transport done routine 2532e399441dSJames Smart * is called. 2533e399441dSJames Smart * 2534e399441dSJames Smart * So - while the operation is outstanding to the LLDD, there is a link 2535e399441dSJames Smart * level FC exchange resource that is also outstanding. This must be 2536e399441dSJames Smart * considered in all cleanup operations. 2537e399441dSJames Smart */ 2538fc17b653SChristoph Hellwig static blk_status_t 2539e399441dSJames Smart nvme_fc_start_fcp_op(struct nvme_fc_ctrl *ctrl, struct nvme_fc_queue *queue, 2540e399441dSJames Smart struct nvme_fc_fcp_op *op, u32 data_len, 2541e399441dSJames Smart enum nvmefc_fcp_datadir io_dir) 2542e399441dSJames Smart { 2543e399441dSJames Smart struct nvme_fc_cmd_iu *cmdiu = &op->cmd_iu; 2544e399441dSJames Smart struct nvme_command *sqe = &cmdiu->sqe; 2545b12740d3SJames Smart int ret, opstate; 2546e399441dSJames Smart 254761bff8efSJames Smart /* 254861bff8efSJames Smart * before attempting to send the io, check to see if we believe 254961bff8efSJames Smart * the target device is present 255061bff8efSJames Smart */ 255161bff8efSJames Smart if (ctrl->rport->remoteport.port_state != FC_OBJSTATE_ONLINE) 255286ff7c2aSMing Lei return BLK_STS_RESOURCE; 255361bff8efSJames Smart 2554e399441dSJames Smart if (!nvme_fc_ctrl_get(ctrl)) 2555fc17b653SChristoph Hellwig return BLK_STS_IOERR; 2556e399441dSJames Smart 2557e399441dSJames Smart /* format the FC-NVME CMD IU and fcp_req */ 2558e399441dSJames Smart cmdiu->connection_id = cpu_to_be64(queue->connection_id); 2559e399441dSJames Smart cmdiu->data_len = cpu_to_be32(data_len); 2560e399441dSJames Smart switch (io_dir) { 2561e399441dSJames Smart case NVMEFC_FCP_WRITE: 2562e399441dSJames Smart cmdiu->flags = FCNVME_CMD_FLAGS_WRITE; 2563e399441dSJames Smart break; 2564e399441dSJames Smart case NVMEFC_FCP_READ: 2565e399441dSJames Smart cmdiu->flags = FCNVME_CMD_FLAGS_READ; 2566e399441dSJames Smart break; 2567e399441dSJames Smart case NVMEFC_FCP_NODATA: 2568e399441dSJames Smart cmdiu->flags = 0; 2569e399441dSJames Smart break; 2570e399441dSJames Smart } 2571e399441dSJames Smart op->fcp_req.payload_length = data_len; 2572e399441dSJames Smart op->fcp_req.io_dir = io_dir; 2573e399441dSJames Smart op->fcp_req.transferred_length = 0; 2574e399441dSJames Smart op->fcp_req.rcv_rsplen = 0; 257562eeacb0SJames Smart op->fcp_req.status = NVME_SC_SUCCESS; 2576e399441dSJames Smart op->fcp_req.sqid = cpu_to_le16(queue->qnum); 2577e399441dSJames Smart 2578e399441dSJames Smart /* 2579e399441dSJames Smart * validate per fabric rules, set fields mandated by fabric spec 2580e399441dSJames Smart * as well as those by FC-NVME spec. 2581e399441dSJames Smart */ 2582e399441dSJames Smart WARN_ON_ONCE(sqe->common.metadata); 2583e399441dSJames Smart sqe->common.flags |= NVME_CMD_SGL_METABUF; 2584e399441dSJames Smart 2585e399441dSJames Smart /* 2586d9d34c0bSJames Smart * format SQE DPTR field per FC-NVME rules: 2587d9d34c0bSJames Smart * type=0x5 Transport SGL Data Block Descriptor 2588d9d34c0bSJames Smart * subtype=0xA Transport-specific value 2589d9d34c0bSJames Smart * address=0 2590d9d34c0bSJames Smart * length=length of the data series 2591e399441dSJames Smart */ 2592d9d34c0bSJames Smart sqe->rw.dptr.sgl.type = (NVME_TRANSPORT_SGL_DATA_DESC << 4) | 2593d9d34c0bSJames Smart NVME_SGL_FMT_TRANSPORT_A; 2594e399441dSJames Smart sqe->rw.dptr.sgl.length = cpu_to_le32(data_len); 2595e399441dSJames Smart sqe->rw.dptr.sgl.addr = 0; 2596e399441dSJames Smart 259778a7ac26SJames Smart if (!(op->flags & FCOP_FLAGS_AEN)) { 2598e399441dSJames Smart ret = nvme_fc_map_data(ctrl, op->rq, op); 2599e399441dSJames Smart if (ret < 0) { 2600e399441dSJames Smart nvme_cleanup_cmd(op->rq); 2601e399441dSJames Smart nvme_fc_ctrl_put(ctrl); 2602fc17b653SChristoph Hellwig if (ret == -ENOMEM || ret == -EAGAIN) 2603fc17b653SChristoph Hellwig return BLK_STS_RESOURCE; 2604fc17b653SChristoph Hellwig return BLK_STS_IOERR; 2605e399441dSJames Smart } 2606e399441dSJames Smart } 2607e399441dSJames Smart 2608e399441dSJames Smart fc_dma_sync_single_for_device(ctrl->lport->dev, op->fcp_req.cmddma, 2609e399441dSJames Smart sizeof(op->cmd_iu), DMA_TO_DEVICE); 2610e399441dSJames Smart 2611e399441dSJames Smart atomic_set(&op->state, FCPOP_STATE_ACTIVE); 2612e399441dSJames Smart 261378a7ac26SJames Smart if (!(op->flags & FCOP_FLAGS_AEN)) 2614e399441dSJames Smart blk_mq_start_request(op->rq); 2615e399441dSJames Smart 261667f471b6SJames Smart cmdiu->csn = cpu_to_be32(atomic_inc_return(&queue->csn)); 2617e399441dSJames Smart ret = ctrl->lport->ops->fcp_io(&ctrl->lport->localport, 2618e399441dSJames Smart &ctrl->rport->remoteport, 2619e399441dSJames Smart queue->lldd_handle, &op->fcp_req); 2620e399441dSJames Smart 2621e399441dSJames Smart if (ret) { 262267f471b6SJames Smart /* 262367f471b6SJames Smart * If the lld fails to send the command is there an issue with 262467f471b6SJames Smart * the csn value? If the command that fails is the Connect, 262567f471b6SJames Smart * no - as the connection won't be live. If it is a command 262667f471b6SJames Smart * post-connect, it's possible a gap in csn may be created. 262767f471b6SJames Smart * Does this matter? As Linux initiators don't send fused 262867f471b6SJames Smart * commands, no. The gap would exist, but as there's nothing 262967f471b6SJames Smart * that depends on csn order to be delivered on the target 263067f471b6SJames Smart * side, it shouldn't hurt. It would be difficult for a 263167f471b6SJames Smart * target to even detect the csn gap as it has no idea when the 263267f471b6SJames Smart * cmd with the csn was supposed to arrive. 263367f471b6SJames Smart */ 2634b12740d3SJames Smart opstate = atomic_xchg(&op->state, FCPOP_STATE_COMPLETE); 2635b12740d3SJames Smart __nvme_fc_fcpop_chk_teardowns(ctrl, op, opstate); 2636b12740d3SJames Smart 26378b25f351SJames Smart if (!(op->flags & FCOP_FLAGS_AEN)) 2638e399441dSJames Smart nvme_fc_unmap_data(ctrl, op->rq, op); 2639e399441dSJames Smart 264016686f3aSMax Gurtovoy nvme_cleanup_cmd(op->rq); 2641e399441dSJames Smart nvme_fc_ctrl_put(ctrl); 2642e399441dSJames Smart 26438b25f351SJames Smart if (ctrl->rport->remoteport.port_state == FC_OBJSTATE_ONLINE && 26448b25f351SJames Smart ret != -EBUSY) 2645fc17b653SChristoph Hellwig return BLK_STS_IOERR; 2646e399441dSJames Smart 264786ff7c2aSMing Lei return BLK_STS_RESOURCE; 2648e399441dSJames Smart } 2649e399441dSJames Smart 2650fc17b653SChristoph Hellwig return BLK_STS_OK; 2651e399441dSJames Smart } 2652e399441dSJames Smart 2653fc17b653SChristoph Hellwig static blk_status_t 2654e399441dSJames Smart nvme_fc_queue_rq(struct blk_mq_hw_ctx *hctx, 2655e399441dSJames Smart const struct blk_mq_queue_data *bd) 2656e399441dSJames Smart { 2657e399441dSJames Smart struct nvme_ns *ns = hctx->queue->queuedata; 2658e399441dSJames Smart struct nvme_fc_queue *queue = hctx->driver_data; 2659e399441dSJames Smart struct nvme_fc_ctrl *ctrl = queue->ctrl; 2660e399441dSJames Smart struct request *rq = bd->rq; 2661e399441dSJames Smart struct nvme_fc_fcp_op *op = blk_mq_rq_to_pdu(rq); 2662e399441dSJames Smart struct nvme_fc_cmd_iu *cmdiu = &op->cmd_iu; 2663e399441dSJames Smart struct nvme_command *sqe = &cmdiu->sqe; 2664e399441dSJames Smart enum nvmefc_fcp_datadir io_dir; 26653bc32bb1SChristoph Hellwig bool queue_ready = test_bit(NVME_FC_Q_LIVE, &queue->flags); 2666e399441dSJames Smart u32 data_len; 2667fc17b653SChristoph Hellwig blk_status_t ret; 2668e399441dSJames Smart 26693bc32bb1SChristoph Hellwig if (ctrl->rport->remoteport.port_state != FC_OBJSTATE_ONLINE || 26703bc32bb1SChristoph Hellwig !nvmf_check_ready(&queue->ctrl->ctrl, rq, queue_ready)) 26716cdefc6eSJames Smart return nvmf_fail_nonready_command(&queue->ctrl->ctrl, rq); 26729e0ed16aSSagi Grimberg 2673e399441dSJames Smart ret = nvme_setup_cmd(ns, rq, sqe); 2674e399441dSJames Smart if (ret) 2675e399441dSJames Smart return ret; 2676e399441dSJames Smart 26779f7d8ae2SJames Smart /* 26789f7d8ae2SJames Smart * nvme core doesn't quite treat the rq opaquely. Commands such 26799f7d8ae2SJames Smart * as WRITE ZEROES will return a non-zero rq payload_bytes yet 26809f7d8ae2SJames Smart * there is no actual payload to be transferred. 26819f7d8ae2SJames Smart * To get it right, key data transmission on there being 1 or 26829f7d8ae2SJames Smart * more physical segments in the sg list. If there is no 26839f7d8ae2SJames Smart * physical segments, there is no payload. 26849f7d8ae2SJames Smart */ 26859f7d8ae2SJames Smart if (blk_rq_nr_phys_segments(rq)) { 2686b131c61dSChristoph Hellwig data_len = blk_rq_payload_bytes(rq); 2687e399441dSJames Smart io_dir = ((rq_data_dir(rq) == WRITE) ? 2688e399441dSJames Smart NVMEFC_FCP_WRITE : NVMEFC_FCP_READ); 26899f7d8ae2SJames Smart } else { 26909f7d8ae2SJames Smart data_len = 0; 2691e399441dSJames Smart io_dir = NVMEFC_FCP_NODATA; 26929f7d8ae2SJames Smart } 26939f7d8ae2SJames Smart 2694e399441dSJames Smart 2695e399441dSJames Smart return nvme_fc_start_fcp_op(ctrl, queue, op, data_len, io_dir); 2696e399441dSJames Smart } 2697e399441dSJames Smart 2698e399441dSJames Smart static void 2699ad22c355SKeith Busch nvme_fc_submit_async_event(struct nvme_ctrl *arg) 2700e399441dSJames Smart { 2701e399441dSJames Smart struct nvme_fc_ctrl *ctrl = to_fc_ctrl(arg); 2702e399441dSJames Smart struct nvme_fc_fcp_op *aen_op; 2703fc17b653SChristoph Hellwig blk_status_t ret; 2704e399441dSJames Smart 2705eb4ee8f1SJames Smart if (test_bit(FCCTRL_TERMIO, &ctrl->flags)) 270661bff8efSJames Smart return; 270761bff8efSJames Smart 2708ad22c355SKeith Busch aen_op = &ctrl->aen_ops[0]; 2709e399441dSJames Smart 2710e399441dSJames Smart ret = nvme_fc_start_fcp_op(ctrl, aen_op->queue, aen_op, 0, 2711e399441dSJames Smart NVMEFC_FCP_NODATA); 2712e399441dSJames Smart if (ret) 2713e399441dSJames Smart dev_err(ctrl->ctrl.device, 2714ad22c355SKeith Busch "failed async event work\n"); 2715e399441dSJames Smart } 2716e399441dSJames Smart 2717e399441dSJames Smart static void 2718c3aedd22SJames Smart nvme_fc_complete_rq(struct request *rq) 2719e399441dSJames Smart { 2720e399441dSJames Smart struct nvme_fc_fcp_op *op = blk_mq_rq_to_pdu(rq); 2721e399441dSJames Smart struct nvme_fc_ctrl *ctrl = op->ctrl; 2722e399441dSJames Smart 272378a7ac26SJames Smart atomic_set(&op->state, FCPOP_STATE_IDLE); 2724e399441dSJames Smart 2725e399441dSJames Smart nvme_fc_unmap_data(ctrl, rq, op); 272677f02a7aSChristoph Hellwig nvme_complete_rq(rq); 2727e399441dSJames Smart nvme_fc_ctrl_put(ctrl); 272878a7ac26SJames Smart } 272978a7ac26SJames Smart 2730e399441dSJames Smart /* 2731e399441dSJames Smart * This routine is used by the transport when it needs to find active 2732e399441dSJames Smart * io on a queue that is to be terminated. The transport uses 2733e399441dSJames Smart * blk_mq_tagset_busy_itr() to find the busy requests, which then invoke 2734e399441dSJames Smart * this routine to kill them on a 1 by 1 basis. 2735e399441dSJames Smart * 2736e399441dSJames Smart * As FC allocates FC exchange for each io, the transport must contact 2737e399441dSJames Smart * the LLDD to terminate the exchange, thus releasing the FC exchange. 2738e399441dSJames Smart * After terminating the exchange the LLDD will call the transport's 2739e399441dSJames Smart * normal io done path for the request, but it will have an aborted 2740e399441dSJames Smart * status. The done path will return the io request back to the block 2741e399441dSJames Smart * layer with an error status. 2742e399441dSJames Smart */ 27437baa8572SJens Axboe static bool 2744e399441dSJames Smart nvme_fc_terminate_exchange(struct request *req, void *data, bool reserved) 2745e399441dSJames Smart { 2746e399441dSJames Smart struct nvme_ctrl *nctrl = data; 2747e399441dSJames Smart struct nvme_fc_ctrl *ctrl = to_fc_ctrl(nctrl); 2748e399441dSJames Smart struct nvme_fc_fcp_op *op = blk_mq_rq_to_pdu(req); 2749e399441dSJames Smart 27503efd6e8eSJames Smart __nvme_fc_abort_op(ctrl, op); 27517baa8572SJens Axboe return true; 275278a7ac26SJames Smart } 2753e399441dSJames Smart 2754e399441dSJames Smart 275561bff8efSJames Smart static const struct blk_mq_ops nvme_fc_mq_ops = { 275661bff8efSJames Smart .queue_rq = nvme_fc_queue_rq, 275761bff8efSJames Smart .complete = nvme_fc_complete_rq, 275861bff8efSJames Smart .init_request = nvme_fc_init_request, 275961bff8efSJames Smart .exit_request = nvme_fc_exit_request, 276061bff8efSJames Smart .init_hctx = nvme_fc_init_hctx, 276161bff8efSJames Smart .timeout = nvme_fc_timeout, 2762e399441dSJames Smart }; 2763e399441dSJames Smart 2764e399441dSJames Smart static int 2765e399441dSJames Smart nvme_fc_create_io_queues(struct nvme_fc_ctrl *ctrl) 2766e399441dSJames Smart { 2767e399441dSJames Smart struct nvmf_ctrl_options *opts = ctrl->ctrl.opts; 27687314183dSSagi Grimberg unsigned int nr_io_queues; 2769e399441dSJames Smart int ret; 2770e399441dSJames Smart 27717314183dSSagi Grimberg nr_io_queues = min(min(opts->nr_io_queues, num_online_cpus()), 27727314183dSSagi Grimberg ctrl->lport->ops->max_hw_queues); 27737314183dSSagi Grimberg ret = nvme_set_queue_count(&ctrl->ctrl, &nr_io_queues); 2774e399441dSJames Smart if (ret) { 2775e399441dSJames Smart dev_info(ctrl->ctrl.device, 2776e399441dSJames Smart "set_queue_count failed: %d\n", ret); 2777e399441dSJames Smart return ret; 2778e399441dSJames Smart } 2779e399441dSJames Smart 27807314183dSSagi Grimberg ctrl->ctrl.queue_count = nr_io_queues + 1; 27817314183dSSagi Grimberg if (!nr_io_queues) 2782e399441dSJames Smart return 0; 2783e399441dSJames Smart 2784e399441dSJames Smart nvme_fc_init_io_queues(ctrl); 2785e399441dSJames Smart 2786e399441dSJames Smart memset(&ctrl->tag_set, 0, sizeof(ctrl->tag_set)); 2787e399441dSJames Smart ctrl->tag_set.ops = &nvme_fc_mq_ops; 2788e399441dSJames Smart ctrl->tag_set.queue_depth = ctrl->ctrl.opts->queue_size; 2789e399441dSJames Smart ctrl->tag_set.reserved_tags = 1; /* fabric connect */ 2790103e515eSHannes Reinecke ctrl->tag_set.numa_node = ctrl->ctrl.numa_node; 2791e399441dSJames Smart ctrl->tag_set.flags = BLK_MQ_F_SHOULD_MERGE; 2792d3d0bc78SBart Van Assche ctrl->tag_set.cmd_size = 2793d3d0bc78SBart Van Assche struct_size((struct nvme_fcp_op_w_sgl *)NULL, priv, 2794d3d0bc78SBart Van Assche ctrl->lport->ops->fcprqst_priv_sz); 2795e399441dSJames Smart ctrl->tag_set.driver_data = ctrl; 2796d858e5f0SSagi Grimberg ctrl->tag_set.nr_hw_queues = ctrl->ctrl.queue_count - 1; 2797e399441dSJames Smart ctrl->tag_set.timeout = NVME_IO_TIMEOUT; 2798e399441dSJames Smart 2799e399441dSJames Smart ret = blk_mq_alloc_tag_set(&ctrl->tag_set); 2800e399441dSJames Smart if (ret) 2801e399441dSJames Smart return ret; 2802e399441dSJames Smart 2803e399441dSJames Smart ctrl->ctrl.tagset = &ctrl->tag_set; 2804e399441dSJames Smart 2805e399441dSJames Smart ctrl->ctrl.connect_q = blk_mq_init_queue(&ctrl->tag_set); 2806e399441dSJames Smart if (IS_ERR(ctrl->ctrl.connect_q)) { 2807e399441dSJames Smart ret = PTR_ERR(ctrl->ctrl.connect_q); 2808e399441dSJames Smart goto out_free_tag_set; 2809e399441dSJames Smart } 2810e399441dSJames Smart 2811d157e534SJames Smart ret = nvme_fc_create_hw_io_queues(ctrl, ctrl->ctrl.sqsize + 1); 2812e399441dSJames Smart if (ret) 2813e399441dSJames Smart goto out_cleanup_blk_queue; 2814e399441dSJames Smart 2815d157e534SJames Smart ret = nvme_fc_connect_io_queues(ctrl, ctrl->ctrl.sqsize + 1); 2816e399441dSJames Smart if (ret) 2817e399441dSJames Smart goto out_delete_hw_queues; 2818e399441dSJames Smart 28194c984154SJames Smart ctrl->ioq_live = true; 28204c984154SJames Smart 2821e399441dSJames Smart return 0; 2822e399441dSJames Smart 2823e399441dSJames Smart out_delete_hw_queues: 2824e399441dSJames Smart nvme_fc_delete_hw_io_queues(ctrl); 2825e399441dSJames Smart out_cleanup_blk_queue: 2826e399441dSJames Smart blk_cleanup_queue(ctrl->ctrl.connect_q); 2827e399441dSJames Smart out_free_tag_set: 2828e399441dSJames Smart blk_mq_free_tag_set(&ctrl->tag_set); 2829e399441dSJames Smart nvme_fc_free_io_queues(ctrl); 2830e399441dSJames Smart 2831e399441dSJames Smart /* force put free routine to ignore io queues */ 2832e399441dSJames Smart ctrl->ctrl.tagset = NULL; 2833e399441dSJames Smart 2834e399441dSJames Smart return ret; 2835e399441dSJames Smart } 2836e399441dSJames Smart 283761bff8efSJames Smart static int 28383e493c00SJames Smart nvme_fc_recreate_io_queues(struct nvme_fc_ctrl *ctrl) 283961bff8efSJames Smart { 284061bff8efSJames Smart struct nvmf_ctrl_options *opts = ctrl->ctrl.opts; 2841834d3710SJames Smart u32 prior_ioq_cnt = ctrl->ctrl.queue_count - 1; 28427314183dSSagi Grimberg unsigned int nr_io_queues; 284361bff8efSJames Smart int ret; 284461bff8efSJames Smart 28457314183dSSagi Grimberg nr_io_queues = min(min(opts->nr_io_queues, num_online_cpus()), 28467314183dSSagi Grimberg ctrl->lport->ops->max_hw_queues); 28477314183dSSagi Grimberg ret = nvme_set_queue_count(&ctrl->ctrl, &nr_io_queues); 284861bff8efSJames Smart if (ret) { 284961bff8efSJames Smart dev_info(ctrl->ctrl.device, 285061bff8efSJames Smart "set_queue_count failed: %d\n", ret); 285161bff8efSJames Smart return ret; 285261bff8efSJames Smart } 285361bff8efSJames Smart 2854834d3710SJames Smart if (!nr_io_queues && prior_ioq_cnt) { 2855834d3710SJames Smart dev_info(ctrl->ctrl.device, 2856834d3710SJames Smart "Fail Reconnect: At least 1 io queue " 2857834d3710SJames Smart "required (was %d)\n", prior_ioq_cnt); 2858834d3710SJames Smart return -ENOSPC; 2859834d3710SJames Smart } 2860834d3710SJames Smart 28617314183dSSagi Grimberg ctrl->ctrl.queue_count = nr_io_queues + 1; 286261bff8efSJames Smart /* check for io queues existing */ 2863d858e5f0SSagi Grimberg if (ctrl->ctrl.queue_count == 1) 286461bff8efSJames Smart return 0; 286561bff8efSJames Smart 2866d157e534SJames Smart ret = nvme_fc_create_hw_io_queues(ctrl, ctrl->ctrl.sqsize + 1); 286761bff8efSJames Smart if (ret) 286861bff8efSJames Smart goto out_free_io_queues; 286961bff8efSJames Smart 2870d157e534SJames Smart ret = nvme_fc_connect_io_queues(ctrl, ctrl->ctrl.sqsize + 1); 287161bff8efSJames Smart if (ret) 287261bff8efSJames Smart goto out_delete_hw_queues; 287361bff8efSJames Smart 2874834d3710SJames Smart if (prior_ioq_cnt != nr_io_queues) 2875834d3710SJames Smart dev_info(ctrl->ctrl.device, 2876834d3710SJames Smart "reconnect: revising io queue count from %d to %d\n", 2877834d3710SJames Smart prior_ioq_cnt, nr_io_queues); 2878cda5fd1aSSagi Grimberg blk_mq_update_nr_hw_queues(&ctrl->tag_set, nr_io_queues); 2879cda5fd1aSSagi Grimberg 288061bff8efSJames Smart return 0; 288161bff8efSJames Smart 288261bff8efSJames Smart out_delete_hw_queues: 288361bff8efSJames Smart nvme_fc_delete_hw_io_queues(ctrl); 288461bff8efSJames Smart out_free_io_queues: 288561bff8efSJames Smart nvme_fc_free_io_queues(ctrl); 288661bff8efSJames Smart return ret; 288761bff8efSJames Smart } 288861bff8efSJames Smart 2889158bfb88SJames Smart static void 2890158bfb88SJames Smart nvme_fc_rport_active_on_lport(struct nvme_fc_rport *rport) 2891158bfb88SJames Smart { 2892158bfb88SJames Smart struct nvme_fc_lport *lport = rport->lport; 2893158bfb88SJames Smart 2894158bfb88SJames Smart atomic_inc(&lport->act_rport_cnt); 2895158bfb88SJames Smart } 2896158bfb88SJames Smart 2897158bfb88SJames Smart static void 2898158bfb88SJames Smart nvme_fc_rport_inactive_on_lport(struct nvme_fc_rport *rport) 2899158bfb88SJames Smart { 2900158bfb88SJames Smart struct nvme_fc_lport *lport = rport->lport; 2901158bfb88SJames Smart u32 cnt; 2902158bfb88SJames Smart 2903158bfb88SJames Smart cnt = atomic_dec_return(&lport->act_rport_cnt); 2904158bfb88SJames Smart if (cnt == 0 && lport->localport.port_state == FC_OBJSTATE_DELETED) 2905158bfb88SJames Smart lport->ops->localport_delete(&lport->localport); 2906158bfb88SJames Smart } 2907158bfb88SJames Smart 2908158bfb88SJames Smart static int 2909158bfb88SJames Smart nvme_fc_ctlr_active_on_rport(struct nvme_fc_ctrl *ctrl) 2910158bfb88SJames Smart { 2911158bfb88SJames Smart struct nvme_fc_rport *rport = ctrl->rport; 2912158bfb88SJames Smart u32 cnt; 2913158bfb88SJames Smart 2914eb4ee8f1SJames Smart if (test_and_set_bit(ASSOC_ACTIVE, &ctrl->flags)) 2915158bfb88SJames Smart return 1; 2916158bfb88SJames Smart 2917158bfb88SJames Smart cnt = atomic_inc_return(&rport->act_ctrl_cnt); 2918158bfb88SJames Smart if (cnt == 1) 2919158bfb88SJames Smart nvme_fc_rport_active_on_lport(rport); 2920158bfb88SJames Smart 2921158bfb88SJames Smart return 0; 2922158bfb88SJames Smart } 2923158bfb88SJames Smart 2924158bfb88SJames Smart static int 2925158bfb88SJames Smart nvme_fc_ctlr_inactive_on_rport(struct nvme_fc_ctrl *ctrl) 2926158bfb88SJames Smart { 2927158bfb88SJames Smart struct nvme_fc_rport *rport = ctrl->rport; 2928158bfb88SJames Smart struct nvme_fc_lport *lport = rport->lport; 2929158bfb88SJames Smart u32 cnt; 2930158bfb88SJames Smart 2931eb4ee8f1SJames Smart /* clearing of ctrl->flags ASSOC_ACTIVE bit is in association delete */ 2932158bfb88SJames Smart 2933158bfb88SJames Smart cnt = atomic_dec_return(&rport->act_ctrl_cnt); 2934158bfb88SJames Smart if (cnt == 0) { 2935158bfb88SJames Smart if (rport->remoteport.port_state == FC_OBJSTATE_DELETED) 2936158bfb88SJames Smart lport->ops->remoteport_delete(&rport->remoteport); 2937158bfb88SJames Smart nvme_fc_rport_inactive_on_lport(rport); 2938158bfb88SJames Smart } 2939158bfb88SJames Smart 2940158bfb88SJames Smart return 0; 2941158bfb88SJames Smart } 2942158bfb88SJames Smart 294361bff8efSJames Smart /* 294461bff8efSJames Smart * This routine restarts the controller on the host side, and 294561bff8efSJames Smart * on the link side, recreates the controller association. 294661bff8efSJames Smart */ 294761bff8efSJames Smart static int 294861bff8efSJames Smart nvme_fc_create_association(struct nvme_fc_ctrl *ctrl) 294961bff8efSJames Smart { 295061bff8efSJames Smart struct nvmf_ctrl_options *opts = ctrl->ctrl.opts; 295114fd1e98SJames Smart struct nvmefc_ls_rcv_op *disls = NULL; 295214fd1e98SJames Smart unsigned long flags; 295361bff8efSJames Smart int ret; 295461bff8efSJames Smart bool changed; 295561bff8efSJames Smart 2956fdf9dfa8SSagi Grimberg ++ctrl->ctrl.nr_reconnects; 295761bff8efSJames Smart 295896e24801SJames Smart if (ctrl->rport->remoteport.port_state != FC_OBJSTATE_ONLINE) 295996e24801SJames Smart return -ENODEV; 296096e24801SJames Smart 2961158bfb88SJames Smart if (nvme_fc_ctlr_active_on_rport(ctrl)) 2962158bfb88SJames Smart return -ENOTUNIQ; 2963158bfb88SJames Smart 29644bea364fSJames Smart dev_info(ctrl->ctrl.device, 29654bea364fSJames Smart "NVME-FC{%d}: create association : host wwpn 0x%016llx " 29664bea364fSJames Smart " rport wwpn 0x%016llx: NQN \"%s\"\n", 29674bea364fSJames Smart ctrl->cnum, ctrl->lport->localport.port_name, 29684bea364fSJames Smart ctrl->rport->remoteport.port_name, ctrl->ctrl.opts->subsysnqn); 29694bea364fSJames Smart 297061bff8efSJames Smart /* 297161bff8efSJames Smart * Create the admin queue 297261bff8efSJames Smart */ 297361bff8efSJames Smart 297461bff8efSJames Smart ret = __nvme_fc_create_hw_queue(ctrl, &ctrl->queues[0], 0, 2975d157e534SJames Smart NVME_AQ_DEPTH); 297661bff8efSJames Smart if (ret) 297761bff8efSJames Smart goto out_free_queue; 297861bff8efSJames Smart 297961bff8efSJames Smart ret = nvme_fc_connect_admin_queue(ctrl, &ctrl->queues[0], 2980d157e534SJames Smart NVME_AQ_DEPTH, (NVME_AQ_DEPTH / 4)); 298161bff8efSJames Smart if (ret) 298261bff8efSJames Smart goto out_delete_hw_queue; 298361bff8efSJames Smart 298461bff8efSJames Smart ret = nvmf_connect_admin_queue(&ctrl->ctrl); 298561bff8efSJames Smart if (ret) 298661bff8efSJames Smart goto out_disconnect_admin_queue; 298761bff8efSJames Smart 29889e0ed16aSSagi Grimberg set_bit(NVME_FC_Q_LIVE, &ctrl->queues[0].flags); 29899e0ed16aSSagi Grimberg 299061bff8efSJames Smart /* 299161bff8efSJames Smart * Check controller capabilities 299261bff8efSJames Smart * 299361bff8efSJames Smart * todo:- add code to check if ctrl attributes changed from 299461bff8efSJames Smart * prior connection values 299561bff8efSJames Smart */ 299661bff8efSJames Smart 2997c0f2f45bSSagi Grimberg ret = nvme_enable_ctrl(&ctrl->ctrl); 299861bff8efSJames Smart if (ret) 299961bff8efSJames Smart goto out_disconnect_admin_queue; 300061bff8efSJames Smart 3001ecad0d2cSJames Smart ctrl->ctrl.max_hw_sectors = 3002ecad0d2cSJames Smart (ctrl->lport->ops->max_sgl_segments - 1) << (PAGE_SHIFT - 9); 300361bff8efSJames Smart 3004e7832cb4SSagi Grimberg blk_mq_unquiesce_queue(ctrl->ctrl.admin_q); 3005e7832cb4SSagi Grimberg 300661bff8efSJames Smart ret = nvme_init_identify(&ctrl->ctrl); 300761bff8efSJames Smart if (ret) 300861bff8efSJames Smart goto out_disconnect_admin_queue; 300961bff8efSJames Smart 301061bff8efSJames Smart /* sanity checks */ 301161bff8efSJames Smart 301261bff8efSJames Smart /* FC-NVME does not have other data in the capsule */ 301361bff8efSJames Smart if (ctrl->ctrl.icdoff) { 301461bff8efSJames Smart dev_err(ctrl->ctrl.device, "icdoff %d is not supported!\n", 301561bff8efSJames Smart ctrl->ctrl.icdoff); 301661bff8efSJames Smart goto out_disconnect_admin_queue; 301761bff8efSJames Smart } 301861bff8efSJames Smart 301961bff8efSJames Smart /* FC-NVME supports normal SGL Data Block Descriptors */ 302061bff8efSJames Smart 302161bff8efSJames Smart if (opts->queue_size > ctrl->ctrl.maxcmd) { 302261bff8efSJames Smart /* warn if maxcmd is lower than queue_size */ 302361bff8efSJames Smart dev_warn(ctrl->ctrl.device, 302461bff8efSJames Smart "queue_size %zu > ctrl maxcmd %u, reducing " 30257db39484SJames Smart "to maxcmd\n", 302661bff8efSJames Smart opts->queue_size, ctrl->ctrl.maxcmd); 302761bff8efSJames Smart opts->queue_size = ctrl->ctrl.maxcmd; 302861bff8efSJames Smart } 302961bff8efSJames Smart 3030d157e534SJames Smart if (opts->queue_size > ctrl->ctrl.sqsize + 1) { 3031d157e534SJames Smart /* warn if sqsize is lower than queue_size */ 3032d157e534SJames Smart dev_warn(ctrl->ctrl.device, 30337db39484SJames Smart "queue_size %zu > ctrl sqsize %u, reducing " 30347db39484SJames Smart "to sqsize\n", 3035d157e534SJames Smart opts->queue_size, ctrl->ctrl.sqsize + 1); 3036d157e534SJames Smart opts->queue_size = ctrl->ctrl.sqsize + 1; 3037d157e534SJames Smart } 3038d157e534SJames Smart 303961bff8efSJames Smart ret = nvme_fc_init_aen_ops(ctrl); 304061bff8efSJames Smart if (ret) 304161bff8efSJames Smart goto out_term_aen_ops; 304261bff8efSJames Smart 304361bff8efSJames Smart /* 304461bff8efSJames Smart * Create the io queues 304561bff8efSJames Smart */ 304661bff8efSJames Smart 3047d858e5f0SSagi Grimberg if (ctrl->ctrl.queue_count > 1) { 30484c984154SJames Smart if (!ctrl->ioq_live) 304961bff8efSJames Smart ret = nvme_fc_create_io_queues(ctrl); 305061bff8efSJames Smart else 30513e493c00SJames Smart ret = nvme_fc_recreate_io_queues(ctrl); 305261bff8efSJames Smart if (ret) 305361bff8efSJames Smart goto out_term_aen_ops; 305461bff8efSJames Smart } 305561bff8efSJames Smart 305661bff8efSJames Smart changed = nvme_change_ctrl_state(&ctrl->ctrl, NVME_CTRL_LIVE); 305761bff8efSJames Smart 3058fdf9dfa8SSagi Grimberg ctrl->ctrl.nr_reconnects = 0; 305961bff8efSJames Smart 306044c6ec77SJames Smart if (changed) 3061d09f2b45SSagi Grimberg nvme_start_ctrl(&ctrl->ctrl); 306261bff8efSJames Smart 306361bff8efSJames Smart return 0; /* Success */ 306461bff8efSJames Smart 306561bff8efSJames Smart out_term_aen_ops: 306661bff8efSJames Smart nvme_fc_term_aen_ops(ctrl); 306761bff8efSJames Smart out_disconnect_admin_queue: 306861bff8efSJames Smart /* send a Disconnect(association) LS to fc-nvme target */ 306961bff8efSJames Smart nvme_fc_xmt_disconnect_assoc(ctrl); 307014fd1e98SJames Smart spin_lock_irqsave(&ctrl->lock, flags); 3071bcde5f0fSJames Smart ctrl->association_id = 0; 307214fd1e98SJames Smart disls = ctrl->rcv_disconn; 307314fd1e98SJames Smart ctrl->rcv_disconn = NULL; 307414fd1e98SJames Smart spin_unlock_irqrestore(&ctrl->lock, flags); 307514fd1e98SJames Smart if (disls) 307614fd1e98SJames Smart nvme_fc_xmt_ls_rsp(disls); 307761bff8efSJames Smart out_delete_hw_queue: 307861bff8efSJames Smart __nvme_fc_delete_hw_queue(ctrl, &ctrl->queues[0], 0); 307961bff8efSJames Smart out_free_queue: 308061bff8efSJames Smart nvme_fc_free_queue(&ctrl->queues[0]); 3081eb4ee8f1SJames Smart clear_bit(ASSOC_ACTIVE, &ctrl->flags); 3082158bfb88SJames Smart nvme_fc_ctlr_inactive_on_rport(ctrl); 308361bff8efSJames Smart 308461bff8efSJames Smart return ret; 308561bff8efSJames Smart } 308661bff8efSJames Smart 308761bff8efSJames Smart /* 308861bff8efSJames Smart * This routine stops operation of the controller on the host side. 308961bff8efSJames Smart * On the host os stack side: Admin and IO queues are stopped, 309061bff8efSJames Smart * outstanding ios on them terminated via FC ABTS. 309161bff8efSJames Smart * On the link side: the association is terminated. 309261bff8efSJames Smart */ 309361bff8efSJames Smart static void 309461bff8efSJames Smart nvme_fc_delete_association(struct nvme_fc_ctrl *ctrl) 309561bff8efSJames Smart { 309614fd1e98SJames Smart struct nvmefc_ls_rcv_op *disls = NULL; 309761bff8efSJames Smart unsigned long flags; 309861bff8efSJames Smart 3099eb4ee8f1SJames Smart if (!test_and_clear_bit(ASSOC_ACTIVE, &ctrl->flags)) 3100158bfb88SJames Smart return; 3101158bfb88SJames Smart 310261bff8efSJames Smart spin_lock_irqsave(&ctrl->lock, flags); 3103eb4ee8f1SJames Smart set_bit(FCCTRL_TERMIO, &ctrl->flags); 310461bff8efSJames Smart ctrl->iocnt = 0; 310561bff8efSJames Smart spin_unlock_irqrestore(&ctrl->lock, flags); 310661bff8efSJames Smart 310761bff8efSJames Smart /* 310861bff8efSJames Smart * If io queues are present, stop them and terminate all outstanding 310961bff8efSJames Smart * ios on them. As FC allocates FC exchange for each io, the 311061bff8efSJames Smart * transport must contact the LLDD to terminate the exchange, 311161bff8efSJames Smart * thus releasing the FC exchange. We use blk_mq_tagset_busy_itr() 311261bff8efSJames Smart * to tell us what io's are busy and invoke a transport routine 311361bff8efSJames Smart * to kill them with the LLDD. After terminating the exchange 311461bff8efSJames Smart * the LLDD will call the transport's normal io done path, but it 311561bff8efSJames Smart * will have an aborted status. The done path will return the 311661bff8efSJames Smart * io requests back to the block layer as part of normal completions 311761bff8efSJames Smart * (but with error status). 311861bff8efSJames Smart */ 3119d858e5f0SSagi Grimberg if (ctrl->ctrl.queue_count > 1) { 312061bff8efSJames Smart nvme_stop_queues(&ctrl->ctrl); 312161bff8efSJames Smart blk_mq_tagset_busy_iter(&ctrl->tag_set, 312261bff8efSJames Smart nvme_fc_terminate_exchange, &ctrl->ctrl); 3123622b8b68SMing Lei blk_mq_tagset_wait_completed_request(&ctrl->tag_set); 312461bff8efSJames Smart } 312561bff8efSJames Smart 312661bff8efSJames Smart /* 312761bff8efSJames Smart * Other transports, which don't have link-level contexts bound 312861bff8efSJames Smart * to sqe's, would try to gracefully shutdown the controller by 312961bff8efSJames Smart * writing the registers for shutdown and polling (call 313061bff8efSJames Smart * nvme_shutdown_ctrl()). Given a bunch of i/o was potentially 313161bff8efSJames Smart * just aborted and we will wait on those contexts, and given 313261bff8efSJames Smart * there was no indication of how live the controlelr is on the 313361bff8efSJames Smart * link, don't send more io to create more contexts for the 313461bff8efSJames Smart * shutdown. Let the controller fail via keepalive failure if 313561bff8efSJames Smart * its still present. 313661bff8efSJames Smart */ 313761bff8efSJames Smart 313861bff8efSJames Smart /* 313961bff8efSJames Smart * clean up the admin queue. Same thing as above. 314061bff8efSJames Smart * use blk_mq_tagset_busy_itr() and the transport routine to 314161bff8efSJames Smart * terminate the exchanges. 314261bff8efSJames Smart */ 3143f9c5af5fSSagi Grimberg blk_mq_quiesce_queue(ctrl->ctrl.admin_q); 314461bff8efSJames Smart blk_mq_tagset_busy_iter(&ctrl->admin_tag_set, 314561bff8efSJames Smart nvme_fc_terminate_exchange, &ctrl->ctrl); 3146622b8b68SMing Lei blk_mq_tagset_wait_completed_request(&ctrl->admin_tag_set); 314761bff8efSJames Smart 314861bff8efSJames Smart /* kill the aens as they are a separate path */ 314961bff8efSJames Smart nvme_fc_abort_aen_ops(ctrl); 315061bff8efSJames Smart 315161bff8efSJames Smart /* wait for all io that had to be aborted */ 31528a82dbf1SJames Smart spin_lock_irq(&ctrl->lock); 315336715cf4SJames Smart wait_event_lock_irq(ctrl->ioabort_wait, ctrl->iocnt == 0, ctrl->lock); 3154eb4ee8f1SJames Smart clear_bit(FCCTRL_TERMIO, &ctrl->flags); 31558a82dbf1SJames Smart spin_unlock_irq(&ctrl->lock); 315661bff8efSJames Smart 315761bff8efSJames Smart nvme_fc_term_aen_ops(ctrl); 315861bff8efSJames Smart 315961bff8efSJames Smart /* 316061bff8efSJames Smart * send a Disconnect(association) LS to fc-nvme target 316161bff8efSJames Smart * Note: could have been sent at top of process, but 316261bff8efSJames Smart * cleaner on link traffic if after the aborts complete. 316361bff8efSJames Smart * Note: if association doesn't exist, association_id will be 0 316461bff8efSJames Smart */ 316561bff8efSJames Smart if (ctrl->association_id) 316661bff8efSJames Smart nvme_fc_xmt_disconnect_assoc(ctrl); 316761bff8efSJames Smart 316814fd1e98SJames Smart spin_lock_irqsave(&ctrl->lock, flags); 3169bcde5f0fSJames Smart ctrl->association_id = 0; 317014fd1e98SJames Smart disls = ctrl->rcv_disconn; 317114fd1e98SJames Smart ctrl->rcv_disconn = NULL; 317214fd1e98SJames Smart spin_unlock_irqrestore(&ctrl->lock, flags); 317314fd1e98SJames Smart if (disls) 317414fd1e98SJames Smart /* 317514fd1e98SJames Smart * if a Disconnect Request was waiting for a response, send 317614fd1e98SJames Smart * now that all ABTS's have been issued (and are complete). 317714fd1e98SJames Smart */ 317814fd1e98SJames Smart nvme_fc_xmt_ls_rsp(disls); 3179bcde5f0fSJames Smart 318061bff8efSJames Smart if (ctrl->ctrl.tagset) { 318161bff8efSJames Smart nvme_fc_delete_hw_io_queues(ctrl); 318261bff8efSJames Smart nvme_fc_free_io_queues(ctrl); 318361bff8efSJames Smart } 318461bff8efSJames Smart 318561bff8efSJames Smart __nvme_fc_delete_hw_queue(ctrl, &ctrl->queues[0], 0); 318661bff8efSJames Smart nvme_fc_free_queue(&ctrl->queues[0]); 3187158bfb88SJames Smart 3188d625d05eSJames Smart /* re-enable the admin_q so anything new can fast fail */ 3189d625d05eSJames Smart blk_mq_unquiesce_queue(ctrl->ctrl.admin_q); 3190d625d05eSJames Smart 319102d62a8bSJames Smart /* resume the io queues so that things will fast fail */ 319202d62a8bSJames Smart nvme_start_queues(&ctrl->ctrl); 319302d62a8bSJames Smart 3194158bfb88SJames Smart nvme_fc_ctlr_inactive_on_rport(ctrl); 319561bff8efSJames Smart } 319661bff8efSJames Smart 319761bff8efSJames Smart static void 3198c5017e85SChristoph Hellwig nvme_fc_delete_ctrl(struct nvme_ctrl *nctrl) 319961bff8efSJames Smart { 3200c5017e85SChristoph Hellwig struct nvme_fc_ctrl *ctrl = to_fc_ctrl(nctrl); 320161bff8efSJames Smart 32024cff280aSJames Smart cancel_work_sync(&ctrl->err_work); 320361bff8efSJames Smart cancel_delayed_work_sync(&ctrl->connect_work); 320461bff8efSJames Smart /* 320561bff8efSJames Smart * kill the association on the link side. this will block 320661bff8efSJames Smart * waiting for io to terminate 320761bff8efSJames Smart */ 320861bff8efSJames Smart nvme_fc_delete_association(ctrl); 320961bff8efSJames Smart } 321061bff8efSJames Smart 321161bff8efSJames Smart static void 32125bbecdbcSJames Smart nvme_fc_reconnect_or_delete(struct nvme_fc_ctrl *ctrl, int status) 32135bbecdbcSJames Smart { 32142b632970SJames Smart struct nvme_fc_rport *rport = ctrl->rport; 32152b632970SJames Smart struct nvme_fc_remote_port *portptr = &rport->remoteport; 32162b632970SJames Smart unsigned long recon_delay = ctrl->ctrl.opts->reconnect_delay * HZ; 32172b632970SJames Smart bool recon = true; 32185bbecdbcSJames Smart 3219ad6a0a52SMax Gurtovoy if (ctrl->ctrl.state != NVME_CTRL_CONNECTING) 32205bbecdbcSJames Smart return; 32215bbecdbcSJames Smart 32222b632970SJames Smart if (portptr->port_state == FC_OBJSTATE_ONLINE) 3223589ff775SJames Smart dev_info(ctrl->ctrl.device, 32245bbecdbcSJames Smart "NVME-FC{%d}: reset: Reconnect attempt failed (%d)\n", 32255bbecdbcSJames Smart ctrl->cnum, status); 32262b632970SJames Smart else if (time_after_eq(jiffies, rport->dev_loss_end)) 32272b632970SJames Smart recon = false; 32285bbecdbcSJames Smart 32292b632970SJames Smart if (recon && nvmf_should_reconnect(&ctrl->ctrl)) { 32302b632970SJames Smart if (portptr->port_state == FC_OBJSTATE_ONLINE) 32315bbecdbcSJames Smart dev_info(ctrl->ctrl.device, 32322b632970SJames Smart "NVME-FC{%d}: Reconnect attempt in %ld " 32332b632970SJames Smart "seconds\n", 32342b632970SJames Smart ctrl->cnum, recon_delay / HZ); 32352b632970SJames Smart else if (time_after(jiffies + recon_delay, rport->dev_loss_end)) 32362b632970SJames Smart recon_delay = rport->dev_loss_end - jiffies; 32372b632970SJames Smart 32382b632970SJames Smart queue_delayed_work(nvme_wq, &ctrl->connect_work, recon_delay); 32395bbecdbcSJames Smart } else { 32402b632970SJames Smart if (portptr->port_state == FC_OBJSTATE_ONLINE) 3241589ff775SJames Smart dev_warn(ctrl->ctrl.device, 32425bbecdbcSJames Smart "NVME-FC{%d}: Max reconnect attempts (%d) " 324377d0612dSMax Gurtovoy "reached.\n", 3244fdf9dfa8SSagi Grimberg ctrl->cnum, ctrl->ctrl.nr_reconnects); 32452b632970SJames Smart else 32462b632970SJames Smart dev_warn(ctrl->ctrl.device, 32472b632970SJames Smart "NVME-FC{%d}: dev_loss_tmo (%d) expired " 324877d0612dSMax Gurtovoy "while waiting for remoteport connectivity.\n", 324977d0612dSMax Gurtovoy ctrl->cnum, portptr->dev_loss_tmo); 3250c5017e85SChristoph Hellwig WARN_ON(nvme_delete_ctrl(&ctrl->ctrl)); 32515bbecdbcSJames Smart } 32525bbecdbcSJames Smart } 32535bbecdbcSJames Smart 32545bbecdbcSJames Smart static void 32554cff280aSJames Smart __nvme_fc_terminate_io(struct nvme_fc_ctrl *ctrl) 32564cff280aSJames Smart { 3257c869e494SJames Smart /* 3258c869e494SJames Smart * if state is connecting - the error occurred as part of a 3259c869e494SJames Smart * reconnect attempt. The create_association error paths will 3260c869e494SJames Smart * clean up any outstanding io. 3261c869e494SJames Smart * 3262c869e494SJames Smart * if it's a different state - ensure all pending io is 3263c869e494SJames Smart * terminated. Given this can delay while waiting for the 3264c869e494SJames Smart * aborted io to return, we recheck adapter state below 3265c869e494SJames Smart * before changing state. 3266c869e494SJames Smart */ 3267c869e494SJames Smart if (ctrl->ctrl.state != NVME_CTRL_CONNECTING) { 32684cff280aSJames Smart nvme_stop_keep_alive(&ctrl->ctrl); 32694cff280aSJames Smart 32704cff280aSJames Smart /* will block will waiting for io to terminate */ 32714cff280aSJames Smart nvme_fc_delete_association(ctrl); 3272c869e494SJames Smart } 32734cff280aSJames Smart 32744cff280aSJames Smart if (ctrl->ctrl.state != NVME_CTRL_CONNECTING && 32754cff280aSJames Smart !nvme_change_ctrl_state(&ctrl->ctrl, NVME_CTRL_CONNECTING)) 32764cff280aSJames Smart dev_err(ctrl->ctrl.device, 32774cff280aSJames Smart "NVME-FC{%d}: error_recovery: Couldn't change state " 32784cff280aSJames Smart "to CONNECTING\n", ctrl->cnum); 32794cff280aSJames Smart } 32804cff280aSJames Smart 32814cff280aSJames Smart static void 328261bff8efSJames Smart nvme_fc_reset_ctrl_work(struct work_struct *work) 328361bff8efSJames Smart { 328461bff8efSJames Smart struct nvme_fc_ctrl *ctrl = 3285d86c4d8eSChristoph Hellwig container_of(work, struct nvme_fc_ctrl, ctrl.reset_work); 328661bff8efSJames Smart int ret; 328761bff8efSJames Smart 32884cff280aSJames Smart __nvme_fc_terminate_io(ctrl); 32894cff280aSJames Smart 3290d09f2b45SSagi Grimberg nvme_stop_ctrl(&ctrl->ctrl); 329144c6ec77SJames Smart 32922b632970SJames Smart if (ctrl->rport->remoteport.port_state == FC_OBJSTATE_ONLINE) 329361bff8efSJames Smart ret = nvme_fc_create_association(ctrl); 32942b632970SJames Smart else 32952b632970SJames Smart ret = -ENOTCONN; 32962b632970SJames Smart 32975bbecdbcSJames Smart if (ret) 32985bbecdbcSJames Smart nvme_fc_reconnect_or_delete(ctrl, ret); 32995bbecdbcSJames Smart else 330061bff8efSJames Smart dev_info(ctrl->ctrl.device, 330196e24801SJames Smart "NVME-FC{%d}: controller reset complete\n", 330296e24801SJames Smart ctrl->cnum); 330361bff8efSJames Smart } 330461bff8efSJames Smart 33054cff280aSJames Smart static void 33064cff280aSJames Smart nvme_fc_connect_err_work(struct work_struct *work) 33074cff280aSJames Smart { 33084cff280aSJames Smart struct nvme_fc_ctrl *ctrl = 33094cff280aSJames Smart container_of(work, struct nvme_fc_ctrl, err_work); 33104cff280aSJames Smart 33114cff280aSJames Smart __nvme_fc_terminate_io(ctrl); 33124cff280aSJames Smart 33134cff280aSJames Smart atomic_set(&ctrl->err_work_active, 0); 33144cff280aSJames Smart 33154cff280aSJames Smart /* 33164cff280aSJames Smart * Rescheduling the connection after recovering 33174cff280aSJames Smart * from the io error is left to the reconnect work 33184cff280aSJames Smart * item, which is what should have stalled waiting on 33194cff280aSJames Smart * the io that had the error that scheduled this work. 33204cff280aSJames Smart */ 33214cff280aSJames Smart } 33224cff280aSJames Smart 332361bff8efSJames Smart static const struct nvme_ctrl_ops nvme_fc_ctrl_ops = { 332461bff8efSJames Smart .name = "fc", 332561bff8efSJames Smart .module = THIS_MODULE, 3326d3d5b87dSChristoph Hellwig .flags = NVME_F_FABRICS, 332761bff8efSJames Smart .reg_read32 = nvmf_reg_read32, 332861bff8efSJames Smart .reg_read64 = nvmf_reg_read64, 332961bff8efSJames Smart .reg_write32 = nvmf_reg_write32, 333061bff8efSJames Smart .free_ctrl = nvme_fc_nvme_ctrl_freed, 333161bff8efSJames Smart .submit_async_event = nvme_fc_submit_async_event, 3332c5017e85SChristoph Hellwig .delete_ctrl = nvme_fc_delete_ctrl, 333361bff8efSJames Smart .get_address = nvmf_get_address, 333461bff8efSJames Smart }; 333561bff8efSJames Smart 333661bff8efSJames Smart static void 333761bff8efSJames Smart nvme_fc_connect_ctrl_work(struct work_struct *work) 333861bff8efSJames Smart { 333961bff8efSJames Smart int ret; 334061bff8efSJames Smart 334161bff8efSJames Smart struct nvme_fc_ctrl *ctrl = 334261bff8efSJames Smart container_of(to_delayed_work(work), 334361bff8efSJames Smart struct nvme_fc_ctrl, connect_work); 334461bff8efSJames Smart 334561bff8efSJames Smart ret = nvme_fc_create_association(ctrl); 33465bbecdbcSJames Smart if (ret) 33475bbecdbcSJames Smart nvme_fc_reconnect_or_delete(ctrl, ret); 33485bbecdbcSJames Smart else 334961bff8efSJames Smart dev_info(ctrl->ctrl.device, 33504c984154SJames Smart "NVME-FC{%d}: controller connect complete\n", 335161bff8efSJames Smart ctrl->cnum); 335261bff8efSJames Smart } 335361bff8efSJames Smart 335461bff8efSJames Smart 335561bff8efSJames Smart static const struct blk_mq_ops nvme_fc_admin_mq_ops = { 335661bff8efSJames Smart .queue_rq = nvme_fc_queue_rq, 335761bff8efSJames Smart .complete = nvme_fc_complete_rq, 335876f983cbSChristoph Hellwig .init_request = nvme_fc_init_request, 335961bff8efSJames Smart .exit_request = nvme_fc_exit_request, 336061bff8efSJames Smart .init_hctx = nvme_fc_init_admin_hctx, 336161bff8efSJames Smart .timeout = nvme_fc_timeout, 336261bff8efSJames Smart }; 336361bff8efSJames Smart 3364e399441dSJames Smart 336556d5f4f1SJames Smart /* 336656d5f4f1SJames Smart * Fails a controller request if it matches an existing controller 336756d5f4f1SJames Smart * (association) with the same tuple: 336856d5f4f1SJames Smart * <Host NQN, Host ID, local FC port, remote FC port, SUBSYS NQN> 336956d5f4f1SJames Smart * 337056d5f4f1SJames Smart * The ports don't need to be compared as they are intrinsically 337156d5f4f1SJames Smart * already matched by the port pointers supplied. 337256d5f4f1SJames Smart */ 337356d5f4f1SJames Smart static bool 337456d5f4f1SJames Smart nvme_fc_existing_controller(struct nvme_fc_rport *rport, 337556d5f4f1SJames Smart struct nvmf_ctrl_options *opts) 337656d5f4f1SJames Smart { 337756d5f4f1SJames Smart struct nvme_fc_ctrl *ctrl; 337856d5f4f1SJames Smart unsigned long flags; 337956d5f4f1SJames Smart bool found = false; 338056d5f4f1SJames Smart 338156d5f4f1SJames Smart spin_lock_irqsave(&rport->lock, flags); 338256d5f4f1SJames Smart list_for_each_entry(ctrl, &rport->ctrl_list, ctrl_list) { 338356d5f4f1SJames Smart found = nvmf_ctlr_matches_baseopts(&ctrl->ctrl, opts); 338456d5f4f1SJames Smart if (found) 338556d5f4f1SJames Smart break; 338656d5f4f1SJames Smart } 338756d5f4f1SJames Smart spin_unlock_irqrestore(&rport->lock, flags); 338856d5f4f1SJames Smart 338956d5f4f1SJames Smart return found; 339056d5f4f1SJames Smart } 339156d5f4f1SJames Smart 3392e399441dSJames Smart static struct nvme_ctrl * 339361bff8efSJames Smart nvme_fc_init_ctrl(struct device *dev, struct nvmf_ctrl_options *opts, 3394e399441dSJames Smart struct nvme_fc_lport *lport, struct nvme_fc_rport *rport) 3395e399441dSJames Smart { 3396e399441dSJames Smart struct nvme_fc_ctrl *ctrl; 3397e399441dSJames Smart unsigned long flags; 33984c984154SJames Smart int ret, idx; 3399e399441dSJames Smart 340085e6a6adSJames Smart if (!(rport->remoteport.port_role & 340185e6a6adSJames Smart (FC_PORT_ROLE_NVME_DISCOVERY | FC_PORT_ROLE_NVME_TARGET))) { 340285e6a6adSJames Smart ret = -EBADR; 340385e6a6adSJames Smart goto out_fail; 340485e6a6adSJames Smart } 340585e6a6adSJames Smart 340656d5f4f1SJames Smart if (!opts->duplicate_connect && 340756d5f4f1SJames Smart nvme_fc_existing_controller(rport, opts)) { 340856d5f4f1SJames Smart ret = -EALREADY; 340956d5f4f1SJames Smart goto out_fail; 341056d5f4f1SJames Smart } 341156d5f4f1SJames Smart 3412e399441dSJames Smart ctrl = kzalloc(sizeof(*ctrl), GFP_KERNEL); 3413e399441dSJames Smart if (!ctrl) { 3414e399441dSJames Smart ret = -ENOMEM; 3415e399441dSJames Smart goto out_fail; 3416e399441dSJames Smart } 3417e399441dSJames Smart 3418e399441dSJames Smart idx = ida_simple_get(&nvme_fc_ctrl_cnt, 0, 0, GFP_KERNEL); 3419e399441dSJames Smart if (idx < 0) { 3420e399441dSJames Smart ret = -ENOSPC; 34218c5c6605SJames Smart goto out_free_ctrl; 3422e399441dSJames Smart } 3423e399441dSJames Smart 3424e399441dSJames Smart ctrl->ctrl.opts = opts; 34254c984154SJames Smart ctrl->ctrl.nr_reconnects = 0; 342606f3d71eSJames Smart if (lport->dev) 3427103e515eSHannes Reinecke ctrl->ctrl.numa_node = dev_to_node(lport->dev); 342806f3d71eSJames Smart else 342906f3d71eSJames Smart ctrl->ctrl.numa_node = NUMA_NO_NODE; 3430e399441dSJames Smart INIT_LIST_HEAD(&ctrl->ctrl_list); 3431e399441dSJames Smart ctrl->lport = lport; 3432e399441dSJames Smart ctrl->rport = rport; 3433e399441dSJames Smart ctrl->dev = lport->dev; 3434e399441dSJames Smart ctrl->cnum = idx; 34354c984154SJames Smart ctrl->ioq_live = false; 34364cff280aSJames Smart atomic_set(&ctrl->err_work_active, 0); 34378a82dbf1SJames Smart init_waitqueue_head(&ctrl->ioabort_wait); 3438e399441dSJames Smart 3439e399441dSJames Smart get_device(ctrl->dev); 3440e399441dSJames Smart kref_init(&ctrl->ref); 3441e399441dSJames Smart 3442d86c4d8eSChristoph Hellwig INIT_WORK(&ctrl->ctrl.reset_work, nvme_fc_reset_ctrl_work); 344361bff8efSJames Smart INIT_DELAYED_WORK(&ctrl->connect_work, nvme_fc_connect_ctrl_work); 34444cff280aSJames Smart INIT_WORK(&ctrl->err_work, nvme_fc_connect_err_work); 3445e399441dSJames Smart spin_lock_init(&ctrl->lock); 3446e399441dSJames Smart 3447e399441dSJames Smart /* io queue count */ 3448d858e5f0SSagi Grimberg ctrl->ctrl.queue_count = min_t(unsigned int, 3449e399441dSJames Smart opts->nr_io_queues, 3450e399441dSJames Smart lport->ops->max_hw_queues); 3451d858e5f0SSagi Grimberg ctrl->ctrl.queue_count++; /* +1 for admin queue */ 3452e399441dSJames Smart 3453e399441dSJames Smart ctrl->ctrl.sqsize = opts->queue_size - 1; 3454e399441dSJames Smart ctrl->ctrl.kato = opts->kato; 34554c984154SJames Smart ctrl->ctrl.cntlid = 0xffff; 3456e399441dSJames Smart 3457e399441dSJames Smart ret = -ENOMEM; 3458d858e5f0SSagi Grimberg ctrl->queues = kcalloc(ctrl->ctrl.queue_count, 3459d858e5f0SSagi Grimberg sizeof(struct nvme_fc_queue), GFP_KERNEL); 3460e399441dSJames Smart if (!ctrl->queues) 346161bff8efSJames Smart goto out_free_ida; 3462e399441dSJames Smart 34633e493c00SJames Smart nvme_fc_init_queue(ctrl, 0); 34643e493c00SJames Smart 346561bff8efSJames Smart memset(&ctrl->admin_tag_set, 0, sizeof(ctrl->admin_tag_set)); 346661bff8efSJames Smart ctrl->admin_tag_set.ops = &nvme_fc_admin_mq_ops; 346738dabe21SKeith Busch ctrl->admin_tag_set.queue_depth = NVME_AQ_MQ_TAG_DEPTH; 346861bff8efSJames Smart ctrl->admin_tag_set.reserved_tags = 2; /* fabric connect + Keep-Alive */ 3469103e515eSHannes Reinecke ctrl->admin_tag_set.numa_node = ctrl->ctrl.numa_node; 3470d3d0bc78SBart Van Assche ctrl->admin_tag_set.cmd_size = 3471d3d0bc78SBart Van Assche struct_size((struct nvme_fcp_op_w_sgl *)NULL, priv, 3472d3d0bc78SBart Van Assche ctrl->lport->ops->fcprqst_priv_sz); 347361bff8efSJames Smart ctrl->admin_tag_set.driver_data = ctrl; 347461bff8efSJames Smart ctrl->admin_tag_set.nr_hw_queues = 1; 347561bff8efSJames Smart ctrl->admin_tag_set.timeout = ADMIN_TIMEOUT; 34765a22e2bfSIsrael Rukshin ctrl->admin_tag_set.flags = BLK_MQ_F_NO_SCHED; 347761bff8efSJames Smart 347861bff8efSJames Smart ret = blk_mq_alloc_tag_set(&ctrl->admin_tag_set); 3479e399441dSJames Smart if (ret) 348061bff8efSJames Smart goto out_free_queues; 348134b6c231SSagi Grimberg ctrl->ctrl.admin_tagset = &ctrl->admin_tag_set; 3482e399441dSJames Smart 3483e7832cb4SSagi Grimberg ctrl->ctrl.fabrics_q = blk_mq_init_queue(&ctrl->admin_tag_set); 3484e7832cb4SSagi Grimberg if (IS_ERR(ctrl->ctrl.fabrics_q)) { 3485e7832cb4SSagi Grimberg ret = PTR_ERR(ctrl->ctrl.fabrics_q); 3486e7832cb4SSagi Grimberg goto out_free_admin_tag_set; 3487e7832cb4SSagi Grimberg } 3488e7832cb4SSagi Grimberg 348961bff8efSJames Smart ctrl->ctrl.admin_q = blk_mq_init_queue(&ctrl->admin_tag_set); 349061bff8efSJames Smart if (IS_ERR(ctrl->ctrl.admin_q)) { 349161bff8efSJames Smart ret = PTR_ERR(ctrl->ctrl.admin_q); 3492e7832cb4SSagi Grimberg goto out_cleanup_fabrics_q; 3493e399441dSJames Smart } 3494e399441dSJames Smart 349561bff8efSJames Smart /* 349661bff8efSJames Smart * Would have been nice to init io queues tag set as well. 349761bff8efSJames Smart * However, we require interaction from the controller 349861bff8efSJames Smart * for max io queue count before we can do so. 349961bff8efSJames Smart * Defer this to the connect path. 350061bff8efSJames Smart */ 3501e399441dSJames Smart 350261bff8efSJames Smart ret = nvme_init_ctrl(&ctrl->ctrl, dev, &nvme_fc_ctrl_ops, 0); 3503e399441dSJames Smart if (ret) 350461bff8efSJames Smart goto out_cleanup_admin_q; 3505e399441dSJames Smart 350661bff8efSJames Smart /* at this point, teardown path changes to ref counting on nvme ctrl */ 3507e399441dSJames Smart 3508e399441dSJames Smart spin_lock_irqsave(&rport->lock, flags); 3509e399441dSJames Smart list_add_tail(&ctrl->ctrl_list, &rport->ctrl_list); 3510e399441dSJames Smart spin_unlock_irqrestore(&rport->lock, flags); 3511e399441dSJames Smart 35124c984154SJames Smart if (!nvme_change_ctrl_state(&ctrl->ctrl, NVME_CTRL_RESETTING) || 35134c984154SJames Smart !nvme_change_ctrl_state(&ctrl->ctrl, NVME_CTRL_CONNECTING)) { 35144c984154SJames Smart dev_err(ctrl->ctrl.device, 35154c984154SJames Smart "NVME-FC{%d}: failed to init ctrl state\n", ctrl->cnum); 35164c984154SJames Smart goto fail_ctrl; 351717c4dc6eSJames Smart } 351817c4dc6eSJames Smart 35194c984154SJames Smart if (!queue_delayed_work(nvme_wq, &ctrl->connect_work, 0)) { 35204c984154SJames Smart dev_err(ctrl->ctrl.device, 35214c984154SJames Smart "NVME-FC{%d}: failed to schedule initial connect\n", 35224c984154SJames Smart ctrl->cnum); 35234c984154SJames Smart goto fail_ctrl; 35244c984154SJames Smart } 35254c984154SJames Smart 35264c984154SJames Smart flush_delayed_work(&ctrl->connect_work); 35274c984154SJames Smart 35284c984154SJames Smart dev_info(ctrl->ctrl.device, 35294c984154SJames Smart "NVME-FC{%d}: new ctrl: NQN \"%s\"\n", 35304c984154SJames Smart ctrl->cnum, ctrl->ctrl.opts->subsysnqn); 35314c984154SJames Smart 35324c984154SJames Smart return &ctrl->ctrl; 35334c984154SJames Smart 35344c984154SJames Smart fail_ctrl: 3535cf25809bSJames Smart nvme_change_ctrl_state(&ctrl->ctrl, NVME_CTRL_DELETING); 3536cf25809bSJames Smart cancel_work_sync(&ctrl->ctrl.reset_work); 35374cff280aSJames Smart cancel_work_sync(&ctrl->err_work); 3538cf25809bSJames Smart cancel_delayed_work_sync(&ctrl->connect_work); 3539cf25809bSJames Smart 3540de41447aSEwan D. Milne ctrl->ctrl.opts = NULL; 354117c4dc6eSJames Smart 354261bff8efSJames Smart /* initiate nvme ctrl ref counting teardown */ 354361bff8efSJames Smart nvme_uninit_ctrl(&ctrl->ctrl); 354461bff8efSJames Smart 35450b5a7669SJames Smart /* Remove core ctrl ref. */ 35460b5a7669SJames Smart nvme_put_ctrl(&ctrl->ctrl); 35470b5a7669SJames Smart 354861bff8efSJames Smart /* as we're past the point where we transition to the ref 354961bff8efSJames Smart * counting teardown path, if we return a bad pointer here, 355061bff8efSJames Smart * the calling routine, thinking it's prior to the 355161bff8efSJames Smart * transition, will do an rport put. Since the teardown 355261bff8efSJames Smart * path also does a rport put, we do an extra get here to 355361bff8efSJames Smart * so proper order/teardown happens. 355461bff8efSJames Smart */ 355561bff8efSJames Smart nvme_fc_rport_get(rport); 355661bff8efSJames Smart 35574c984154SJames Smart return ERR_PTR(-EIO); 3558e399441dSJames Smart 355961bff8efSJames Smart out_cleanup_admin_q: 356061bff8efSJames Smart blk_cleanup_queue(ctrl->ctrl.admin_q); 3561e7832cb4SSagi Grimberg out_cleanup_fabrics_q: 3562e7832cb4SSagi Grimberg blk_cleanup_queue(ctrl->ctrl.fabrics_q); 356361bff8efSJames Smart out_free_admin_tag_set: 356461bff8efSJames Smart blk_mq_free_tag_set(&ctrl->admin_tag_set); 356561bff8efSJames Smart out_free_queues: 356661bff8efSJames Smart kfree(ctrl->queues); 3567e399441dSJames Smart out_free_ida: 356861bff8efSJames Smart put_device(ctrl->dev); 3569e399441dSJames Smart ida_simple_remove(&nvme_fc_ctrl_cnt, ctrl->cnum); 3570e399441dSJames Smart out_free_ctrl: 3571e399441dSJames Smart kfree(ctrl); 3572e399441dSJames Smart out_fail: 3573e399441dSJames Smart /* exit via here doesn't follow ctlr ref points */ 3574e399441dSJames Smart return ERR_PTR(ret); 3575e399441dSJames Smart } 3576e399441dSJames Smart 3577e399441dSJames Smart 3578e399441dSJames Smart struct nvmet_fc_traddr { 3579e399441dSJames Smart u64 nn; 3580e399441dSJames Smart u64 pn; 3581e399441dSJames Smart }; 3582e399441dSJames Smart 3583e399441dSJames Smart static int 35849c5358e1SJames Smart __nvme_fc_parse_u64(substring_t *sstr, u64 *val) 3585e399441dSJames Smart { 3586e399441dSJames Smart u64 token64; 3587e399441dSJames Smart 35889c5358e1SJames Smart if (match_u64(sstr, &token64)) 35899c5358e1SJames Smart return -EINVAL; 35909c5358e1SJames Smart *val = token64; 3591e399441dSJames Smart 35929c5358e1SJames Smart return 0; 3593e399441dSJames Smart } 3594e399441dSJames Smart 35959c5358e1SJames Smart /* 35969c5358e1SJames Smart * This routine validates and extracts the WWN's from the TRADDR string. 35979c5358e1SJames Smart * As kernel parsers need the 0x to determine number base, universally 35989c5358e1SJames Smart * build string to parse with 0x prefix before parsing name strings. 35999c5358e1SJames Smart */ 36009c5358e1SJames Smart static int 36019c5358e1SJames Smart nvme_fc_parse_traddr(struct nvmet_fc_traddr *traddr, char *buf, size_t blen) 36029c5358e1SJames Smart { 36039c5358e1SJames Smart char name[2 + NVME_FC_TRADDR_HEXNAMELEN + 1]; 36049c5358e1SJames Smart substring_t wwn = { name, &name[sizeof(name)-1] }; 36059c5358e1SJames Smart int nnoffset, pnoffset; 36069c5358e1SJames Smart 3607d4e4230cSMilan P. Gandhi /* validate if string is one of the 2 allowed formats */ 36089c5358e1SJames Smart if (strnlen(buf, blen) == NVME_FC_TRADDR_MAXLENGTH && 36099c5358e1SJames Smart !strncmp(buf, "nn-0x", NVME_FC_TRADDR_OXNNLEN) && 36109c5358e1SJames Smart !strncmp(&buf[NVME_FC_TRADDR_MAX_PN_OFFSET], 36119c5358e1SJames Smart "pn-0x", NVME_FC_TRADDR_OXNNLEN)) { 36129c5358e1SJames Smart nnoffset = NVME_FC_TRADDR_OXNNLEN; 36139c5358e1SJames Smart pnoffset = NVME_FC_TRADDR_MAX_PN_OFFSET + 36149c5358e1SJames Smart NVME_FC_TRADDR_OXNNLEN; 36159c5358e1SJames Smart } else if ((strnlen(buf, blen) == NVME_FC_TRADDR_MINLENGTH && 36169c5358e1SJames Smart !strncmp(buf, "nn-", NVME_FC_TRADDR_NNLEN) && 36179c5358e1SJames Smart !strncmp(&buf[NVME_FC_TRADDR_MIN_PN_OFFSET], 36189c5358e1SJames Smart "pn-", NVME_FC_TRADDR_NNLEN))) { 36199c5358e1SJames Smart nnoffset = NVME_FC_TRADDR_NNLEN; 36209c5358e1SJames Smart pnoffset = NVME_FC_TRADDR_MIN_PN_OFFSET + NVME_FC_TRADDR_NNLEN; 36219c5358e1SJames Smart } else 36229c5358e1SJames Smart goto out_einval; 36239c5358e1SJames Smart 36249c5358e1SJames Smart name[0] = '0'; 36259c5358e1SJames Smart name[1] = 'x'; 36269c5358e1SJames Smart name[2 + NVME_FC_TRADDR_HEXNAMELEN] = 0; 36279c5358e1SJames Smart 36289c5358e1SJames Smart memcpy(&name[2], &buf[nnoffset], NVME_FC_TRADDR_HEXNAMELEN); 36299c5358e1SJames Smart if (__nvme_fc_parse_u64(&wwn, &traddr->nn)) 36309c5358e1SJames Smart goto out_einval; 36319c5358e1SJames Smart 36329c5358e1SJames Smart memcpy(&name[2], &buf[pnoffset], NVME_FC_TRADDR_HEXNAMELEN); 36339c5358e1SJames Smart if (__nvme_fc_parse_u64(&wwn, &traddr->pn)) 36349c5358e1SJames Smart goto out_einval; 36359c5358e1SJames Smart 36369c5358e1SJames Smart return 0; 36379c5358e1SJames Smart 36389c5358e1SJames Smart out_einval: 36399c5358e1SJames Smart pr_warn("%s: bad traddr string\n", __func__); 36409c5358e1SJames Smart return -EINVAL; 3641e399441dSJames Smart } 3642e399441dSJames Smart 3643e399441dSJames Smart static struct nvme_ctrl * 3644e399441dSJames Smart nvme_fc_create_ctrl(struct device *dev, struct nvmf_ctrl_options *opts) 3645e399441dSJames Smart { 3646e399441dSJames Smart struct nvme_fc_lport *lport; 3647e399441dSJames Smart struct nvme_fc_rport *rport; 364861bff8efSJames Smart struct nvme_ctrl *ctrl; 3649e399441dSJames Smart struct nvmet_fc_traddr laddr = { 0L, 0L }; 3650e399441dSJames Smart struct nvmet_fc_traddr raddr = { 0L, 0L }; 3651e399441dSJames Smart unsigned long flags; 3652e399441dSJames Smart int ret; 3653e399441dSJames Smart 36549c5358e1SJames Smart ret = nvme_fc_parse_traddr(&raddr, opts->traddr, NVMF_TRADDR_SIZE); 3655e399441dSJames Smart if (ret || !raddr.nn || !raddr.pn) 3656e399441dSJames Smart return ERR_PTR(-EINVAL); 3657e399441dSJames Smart 36589c5358e1SJames Smart ret = nvme_fc_parse_traddr(&laddr, opts->host_traddr, NVMF_TRADDR_SIZE); 3659e399441dSJames Smart if (ret || !laddr.nn || !laddr.pn) 3660e399441dSJames Smart return ERR_PTR(-EINVAL); 3661e399441dSJames Smart 3662e399441dSJames Smart /* find the host and remote ports to connect together */ 3663e399441dSJames Smart spin_lock_irqsave(&nvme_fc_lock, flags); 3664e399441dSJames Smart list_for_each_entry(lport, &nvme_fc_lport_list, port_list) { 3665e399441dSJames Smart if (lport->localport.node_name != laddr.nn || 3666e399441dSJames Smart lport->localport.port_name != laddr.pn) 3667e399441dSJames Smart continue; 3668e399441dSJames Smart 3669e399441dSJames Smart list_for_each_entry(rport, &lport->endp_list, endp_list) { 3670e399441dSJames Smart if (rport->remoteport.node_name != raddr.nn || 3671e399441dSJames Smart rport->remoteport.port_name != raddr.pn) 3672e399441dSJames Smart continue; 3673e399441dSJames Smart 3674e399441dSJames Smart /* if fail to get reference fall through. Will error */ 3675e399441dSJames Smart if (!nvme_fc_rport_get(rport)) 3676e399441dSJames Smart break; 3677e399441dSJames Smart 3678e399441dSJames Smart spin_unlock_irqrestore(&nvme_fc_lock, flags); 3679e399441dSJames Smart 368061bff8efSJames Smart ctrl = nvme_fc_init_ctrl(dev, opts, lport, rport); 368161bff8efSJames Smart if (IS_ERR(ctrl)) 368261bff8efSJames Smart nvme_fc_rport_put(rport); 368361bff8efSJames Smart return ctrl; 3684e399441dSJames Smart } 3685e399441dSJames Smart } 3686e399441dSJames Smart spin_unlock_irqrestore(&nvme_fc_lock, flags); 3687e399441dSJames Smart 36884fb135adSJohannes Thumshirn pr_warn("%s: %s - %s combination not found\n", 36894fb135adSJohannes Thumshirn __func__, opts->traddr, opts->host_traddr); 3690e399441dSJames Smart return ERR_PTR(-ENOENT); 3691e399441dSJames Smart } 3692e399441dSJames Smart 3693e399441dSJames Smart 3694e399441dSJames Smart static struct nvmf_transport_ops nvme_fc_transport = { 3695e399441dSJames Smart .name = "fc", 36960de5cd36SRoy Shterman .module = THIS_MODULE, 3697e399441dSJames Smart .required_opts = NVMF_OPT_TRADDR | NVMF_OPT_HOST_TRADDR, 36985bbecdbcSJames Smart .allowed_opts = NVMF_OPT_RECONNECT_DELAY | NVMF_OPT_CTRL_LOSS_TMO, 3699e399441dSJames Smart .create_ctrl = nvme_fc_create_ctrl, 3700e399441dSJames Smart }; 3701e399441dSJames Smart 370297faec53SJames Smart /* Arbitrary successive failures max. With lots of subsystems could be high */ 370397faec53SJames Smart #define DISCOVERY_MAX_FAIL 20 370497faec53SJames Smart 370597faec53SJames Smart static ssize_t nvme_fc_nvme_discovery_store(struct device *dev, 370697faec53SJames Smart struct device_attribute *attr, const char *buf, size_t count) 370797faec53SJames Smart { 370897faec53SJames Smart unsigned long flags; 370997faec53SJames Smart LIST_HEAD(local_disc_list); 371097faec53SJames Smart struct nvme_fc_lport *lport; 371197faec53SJames Smart struct nvme_fc_rport *rport; 371297faec53SJames Smart int failcnt = 0; 371397faec53SJames Smart 371497faec53SJames Smart spin_lock_irqsave(&nvme_fc_lock, flags); 371597faec53SJames Smart restart: 371697faec53SJames Smart list_for_each_entry(lport, &nvme_fc_lport_list, port_list) { 371797faec53SJames Smart list_for_each_entry(rport, &lport->endp_list, endp_list) { 371897faec53SJames Smart if (!nvme_fc_lport_get(lport)) 371997faec53SJames Smart continue; 372097faec53SJames Smart if (!nvme_fc_rport_get(rport)) { 372197faec53SJames Smart /* 372297faec53SJames Smart * This is a temporary condition. Upon restart 372397faec53SJames Smart * this rport will be gone from the list. 372497faec53SJames Smart * 372597faec53SJames Smart * Revert the lport put and retry. Anything 372697faec53SJames Smart * added to the list already will be skipped (as 372797faec53SJames Smart * they are no longer list_empty). Loops should 372897faec53SJames Smart * resume at rports that were not yet seen. 372997faec53SJames Smart */ 373097faec53SJames Smart nvme_fc_lport_put(lport); 373197faec53SJames Smart 373297faec53SJames Smart if (failcnt++ < DISCOVERY_MAX_FAIL) 373397faec53SJames Smart goto restart; 373497faec53SJames Smart 373597faec53SJames Smart pr_err("nvme_discovery: too many reference " 373697faec53SJames Smart "failures\n"); 373797faec53SJames Smart goto process_local_list; 373897faec53SJames Smart } 373997faec53SJames Smart if (list_empty(&rport->disc_list)) 374097faec53SJames Smart list_add_tail(&rport->disc_list, 374197faec53SJames Smart &local_disc_list); 374297faec53SJames Smart } 374397faec53SJames Smart } 374497faec53SJames Smart 374597faec53SJames Smart process_local_list: 374697faec53SJames Smart while (!list_empty(&local_disc_list)) { 374797faec53SJames Smart rport = list_first_entry(&local_disc_list, 374897faec53SJames Smart struct nvme_fc_rport, disc_list); 374997faec53SJames Smart list_del_init(&rport->disc_list); 375097faec53SJames Smart spin_unlock_irqrestore(&nvme_fc_lock, flags); 375197faec53SJames Smart 375297faec53SJames Smart lport = rport->lport; 375397faec53SJames Smart /* signal discovery. Won't hurt if it repeats */ 375497faec53SJames Smart nvme_fc_signal_discovery_scan(lport, rport); 375597faec53SJames Smart nvme_fc_rport_put(rport); 375697faec53SJames Smart nvme_fc_lport_put(lport); 375797faec53SJames Smart 375897faec53SJames Smart spin_lock_irqsave(&nvme_fc_lock, flags); 375997faec53SJames Smart } 376097faec53SJames Smart spin_unlock_irqrestore(&nvme_fc_lock, flags); 376197faec53SJames Smart 376297faec53SJames Smart return count; 376397faec53SJames Smart } 376497faec53SJames Smart static DEVICE_ATTR(nvme_discovery, 0200, NULL, nvme_fc_nvme_discovery_store); 376597faec53SJames Smart 376697faec53SJames Smart static struct attribute *nvme_fc_attrs[] = { 376797faec53SJames Smart &dev_attr_nvme_discovery.attr, 376897faec53SJames Smart NULL 376997faec53SJames Smart }; 377097faec53SJames Smart 377197faec53SJames Smart static struct attribute_group nvme_fc_attr_group = { 377297faec53SJames Smart .attrs = nvme_fc_attrs, 377397faec53SJames Smart }; 377497faec53SJames Smart 377597faec53SJames Smart static const struct attribute_group *nvme_fc_attr_groups[] = { 377697faec53SJames Smart &nvme_fc_attr_group, 377797faec53SJames Smart NULL 377897faec53SJames Smart }; 377997faec53SJames Smart 378097faec53SJames Smart static struct class fc_class = { 378197faec53SJames Smart .name = "fc", 378297faec53SJames Smart .dev_groups = nvme_fc_attr_groups, 378397faec53SJames Smart .owner = THIS_MODULE, 378497faec53SJames Smart }; 378597faec53SJames Smart 3786e399441dSJames Smart static int __init nvme_fc_init_module(void) 3787e399441dSJames Smart { 37885f568556SJames Smart int ret; 37895f568556SJames Smart 37908730c1ddSHannes Reinecke nvme_fc_wq = alloc_workqueue("nvme_fc_wq", WQ_MEM_RECLAIM, 0); 37918730c1ddSHannes Reinecke if (!nvme_fc_wq) 37928730c1ddSHannes Reinecke return -ENOMEM; 37938730c1ddSHannes Reinecke 37945f568556SJames Smart /* 37955f568556SJames Smart * NOTE: 37965f568556SJames Smart * It is expected that in the future the kernel will combine 37975f568556SJames Smart * the FC-isms that are currently under scsi and now being 37985f568556SJames Smart * added to by NVME into a new standalone FC class. The SCSI 37995f568556SJames Smart * and NVME protocols and their devices would be under this 38005f568556SJames Smart * new FC class. 38015f568556SJames Smart * 38025f568556SJames Smart * As we need something to post FC-specific udev events to, 38035f568556SJames Smart * specifically for nvme probe events, start by creating the 38045f568556SJames Smart * new device class. When the new standalone FC class is 38055f568556SJames Smart * put in place, this code will move to a more generic 38065f568556SJames Smart * location for the class. 38075f568556SJames Smart */ 380897faec53SJames Smart ret = class_register(&fc_class); 380997faec53SJames Smart if (ret) { 38105f568556SJames Smart pr_err("couldn't register class fc\n"); 38118730c1ddSHannes Reinecke goto out_destroy_wq; 38125f568556SJames Smart } 38135f568556SJames Smart 38145f568556SJames Smart /* 38155f568556SJames Smart * Create a device for the FC-centric udev events 38165f568556SJames Smart */ 381797faec53SJames Smart fc_udev_device = device_create(&fc_class, NULL, MKDEV(0, 0), NULL, 38185f568556SJames Smart "fc_udev_device"); 38195f568556SJames Smart if (IS_ERR(fc_udev_device)) { 38205f568556SJames Smart pr_err("couldn't create fc_udev device!\n"); 38215f568556SJames Smart ret = PTR_ERR(fc_udev_device); 38225f568556SJames Smart goto out_destroy_class; 38235f568556SJames Smart } 38245f568556SJames Smart 38255f568556SJames Smart ret = nvmf_register_transport(&nvme_fc_transport); 38265f568556SJames Smart if (ret) 38275f568556SJames Smart goto out_destroy_device; 38285f568556SJames Smart 38295f568556SJames Smart return 0; 38305f568556SJames Smart 38315f568556SJames Smart out_destroy_device: 383297faec53SJames Smart device_destroy(&fc_class, MKDEV(0, 0)); 38335f568556SJames Smart out_destroy_class: 383497faec53SJames Smart class_unregister(&fc_class); 38358730c1ddSHannes Reinecke out_destroy_wq: 38368730c1ddSHannes Reinecke destroy_workqueue(nvme_fc_wq); 38378730c1ddSHannes Reinecke 38385f568556SJames Smart return ret; 3839e399441dSJames Smart } 3840e399441dSJames Smart 38414c73cbdfSJames Smart static void 38424c73cbdfSJames Smart nvme_fc_delete_controllers(struct nvme_fc_rport *rport) 38434c73cbdfSJames Smart { 38444c73cbdfSJames Smart struct nvme_fc_ctrl *ctrl; 38454c73cbdfSJames Smart 38464c73cbdfSJames Smart spin_lock(&rport->lock); 38474c73cbdfSJames Smart list_for_each_entry(ctrl, &rport->ctrl_list, ctrl_list) { 38484c73cbdfSJames Smart dev_warn(ctrl->ctrl.device, 38494c73cbdfSJames Smart "NVME-FC{%d}: transport unloading: deleting ctrl\n", 38504c73cbdfSJames Smart ctrl->cnum); 38514c73cbdfSJames Smart nvme_delete_ctrl(&ctrl->ctrl); 38524c73cbdfSJames Smart } 38534c73cbdfSJames Smart spin_unlock(&rport->lock); 38544c73cbdfSJames Smart } 38554c73cbdfSJames Smart 38564c73cbdfSJames Smart static void 38574c73cbdfSJames Smart nvme_fc_cleanup_for_unload(void) 38584c73cbdfSJames Smart { 38594c73cbdfSJames Smart struct nvme_fc_lport *lport; 38604c73cbdfSJames Smart struct nvme_fc_rport *rport; 38614c73cbdfSJames Smart 38624c73cbdfSJames Smart list_for_each_entry(lport, &nvme_fc_lport_list, port_list) { 38634c73cbdfSJames Smart list_for_each_entry(rport, &lport->endp_list, endp_list) { 38644c73cbdfSJames Smart nvme_fc_delete_controllers(rport); 38654c73cbdfSJames Smart } 38664c73cbdfSJames Smart } 38674c73cbdfSJames Smart } 38684c73cbdfSJames Smart 3869e399441dSJames Smart static void __exit nvme_fc_exit_module(void) 3870e399441dSJames Smart { 38714c73cbdfSJames Smart unsigned long flags; 38724c73cbdfSJames Smart bool need_cleanup = false; 38734c73cbdfSJames Smart 38744c73cbdfSJames Smart spin_lock_irqsave(&nvme_fc_lock, flags); 38754c73cbdfSJames Smart nvme_fc_waiting_to_unload = true; 38764c73cbdfSJames Smart if (!list_empty(&nvme_fc_lport_list)) { 38774c73cbdfSJames Smart need_cleanup = true; 38784c73cbdfSJames Smart nvme_fc_cleanup_for_unload(); 38794c73cbdfSJames Smart } 38804c73cbdfSJames Smart spin_unlock_irqrestore(&nvme_fc_lock, flags); 38814c73cbdfSJames Smart if (need_cleanup) { 38824c73cbdfSJames Smart pr_info("%s: waiting for ctlr deletes\n", __func__); 38834c73cbdfSJames Smart wait_for_completion(&nvme_fc_unload_proceed); 38844c73cbdfSJames Smart pr_info("%s: ctrl deletes complete\n", __func__); 38854c73cbdfSJames Smart } 3886e399441dSJames Smart 3887e399441dSJames Smart nvmf_unregister_transport(&nvme_fc_transport); 3888e399441dSJames Smart 3889e399441dSJames Smart ida_destroy(&nvme_fc_local_port_cnt); 3890e399441dSJames Smart ida_destroy(&nvme_fc_ctrl_cnt); 38915f568556SJames Smart 389297faec53SJames Smart device_destroy(&fc_class, MKDEV(0, 0)); 389397faec53SJames Smart class_unregister(&fc_class); 38948730c1ddSHannes Reinecke destroy_workqueue(nvme_fc_wq); 3895e399441dSJames Smart } 3896e399441dSJames Smart 3897e399441dSJames Smart module_init(nvme_fc_init_module); 3898e399441dSJames Smart module_exit(nvme_fc_exit_module); 3899e399441dSJames Smart 3900e399441dSJames Smart MODULE_LICENSE("GPL v2"); 3901