lpfc_nvmet.c 68.2 KB
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/*******************************************************************
 * This file is part of the Emulex Linux Device Driver for         *
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 * Fibre Channsel Host Bus Adapters.                               *
 * Copyright (C) 2017 Broadcom. All Rights Reserved. The term      *
 * “Broadcom” refers to Broadcom Limited and/or its subsidiaries.  *
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 * Copyright (C) 2004-2016 Emulex.  All rights reserved.           *
 * EMULEX and SLI are trademarks of Emulex.                        *
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 * www.broadcom.com                                                *
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 * Portions Copyright (C) 2004-2005 Christoph Hellwig              *
 *                                                                 *
 * This program is free software; you can redistribute it and/or   *
 * modify it under the terms of version 2 of the GNU General       *
 * Public License as published by the Free Software Foundation.    *
 * This program is distributed in the hope that it will be useful. *
 * ALL EXPRESS OR IMPLIED CONDITIONS, REPRESENTATIONS AND          *
 * WARRANTIES, INCLUDING ANY IMPLIED WARRANTY OF MERCHANTABILITY,  *
 * FITNESS FOR A PARTICULAR PURPOSE, OR NON-INFRINGEMENT, ARE      *
 * DISCLAIMED, EXCEPT TO THE EXTENT THAT SUCH DISCLAIMERS ARE HELD *
 * TO BE LEGALLY INVALID.  See the GNU General Public License for  *
 * more details, a copy of which can be found in the file COPYING  *
 * included with this package.                                     *
 ********************************************************************/
#include <linux/pci.h>
#include <linux/slab.h>
#include <linux/interrupt.h>
#include <linux/delay.h>
#include <asm/unaligned.h>
#include <linux/crc-t10dif.h>
#include <net/checksum.h>

#include <scsi/scsi.h>
#include <scsi/scsi_device.h>
#include <scsi/scsi_eh.h>
#include <scsi/scsi_host.h>
#include <scsi/scsi_tcq.h>
#include <scsi/scsi_transport_fc.h>
#include <scsi/fc/fc_fs.h>

#include <../drivers/nvme/host/nvme.h>
#include <linux/nvme-fc-driver.h>

#include "lpfc_version.h"
#include "lpfc_hw4.h"
#include "lpfc_hw.h"
#include "lpfc_sli.h"
#include "lpfc_sli4.h"
#include "lpfc_nl.h"
#include "lpfc_disc.h"
#include "lpfc.h"
#include "lpfc_scsi.h"
#include "lpfc_nvme.h"
#include "lpfc_nvmet.h"
#include "lpfc_logmsg.h"
#include "lpfc_crtn.h"
#include "lpfc_vport.h"
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#include "lpfc_debugfs.h"
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static struct lpfc_iocbq *lpfc_nvmet_prep_ls_wqe(struct lpfc_hba *,
						 struct lpfc_nvmet_rcv_ctx *,
						 dma_addr_t rspbuf,
						 uint16_t rspsize);
static struct lpfc_iocbq *lpfc_nvmet_prep_fcp_wqe(struct lpfc_hba *,
						  struct lpfc_nvmet_rcv_ctx *);
static int lpfc_nvmet_sol_fcp_issue_abort(struct lpfc_hba *,
					  struct lpfc_nvmet_rcv_ctx *,
					  uint32_t, uint16_t);
static int lpfc_nvmet_unsol_fcp_issue_abort(struct lpfc_hba *,
					    struct lpfc_nvmet_rcv_ctx *,
					    uint32_t, uint16_t);
static int lpfc_nvmet_unsol_ls_issue_abort(struct lpfc_hba *,
					   struct lpfc_nvmet_rcv_ctx *,
					   uint32_t, uint16_t);

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void
lpfc_nvmet_defer_release(struct lpfc_hba *phba, struct lpfc_nvmet_rcv_ctx *ctxp)
{
	unsigned long iflag;

	lpfc_printf_log(phba, KERN_ERR, LOG_NVME_ABTS,
			"6313 NVMET Defer ctx release xri x%x flg x%x\n",
			ctxp->oxid, ctxp->flag);

	spin_lock_irqsave(&phba->sli4_hba.abts_nvme_buf_list_lock, iflag);
	if (ctxp->flag & LPFC_NVMET_CTX_RLS) {
		spin_unlock_irqrestore(&phba->sli4_hba.abts_nvme_buf_list_lock,
				       iflag);
		return;
	}
	ctxp->flag |= LPFC_NVMET_CTX_RLS;
	list_add_tail(&ctxp->list, &phba->sli4_hba.lpfc_abts_nvmet_ctx_list);
	spin_unlock_irqrestore(&phba->sli4_hba.abts_nvme_buf_list_lock, iflag);
}

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/**
 * lpfc_nvmet_xmt_ls_rsp_cmp - Completion handler for LS Response
 * @phba: Pointer to HBA context object.
 * @cmdwqe: Pointer to driver command WQE object.
 * @wcqe: Pointer to driver response CQE object.
 *
 * The function is called from SLI ring event handler with no
 * lock held. This function is the completion handler for NVME LS commands
 * The function frees memory resources used for the NVME commands.
 **/
static void
lpfc_nvmet_xmt_ls_rsp_cmp(struct lpfc_hba *phba, struct lpfc_iocbq *cmdwqe,
			  struct lpfc_wcqe_complete *wcqe)
{
	struct lpfc_nvmet_tgtport *tgtp;
	struct nvmefc_tgt_ls_req *rsp;
	struct lpfc_nvmet_rcv_ctx *ctxp;
	uint32_t status, result;

	status = bf_get(lpfc_wcqe_c_status, wcqe);
	result = wcqe->parameter;
	if (!phba->targetport)
		goto out;

	tgtp = (struct lpfc_nvmet_tgtport *)phba->targetport->private;

	if (status)
		atomic_inc(&tgtp->xmt_ls_rsp_error);
	else
		atomic_inc(&tgtp->xmt_ls_rsp_cmpl);

out:
	ctxp = cmdwqe->context2;
	rsp = &ctxp->ctx.ls_req;

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	lpfc_nvmeio_data(phba, "NVMET LS  CMPL: xri x%x stat x%x result x%x\n",
			 ctxp->oxid, status, result);

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	lpfc_printf_log(phba, KERN_INFO, LOG_NVME_DISC,
			"6038 %s: Entrypoint: ctx %p status %x/%x\n", __func__,
			ctxp, status, result);

	lpfc_nlp_put(cmdwqe->context1);
	cmdwqe->context2 = NULL;
	cmdwqe->context3 = NULL;
	lpfc_sli_release_iocbq(phba, cmdwqe);
	rsp->done(rsp);
	kfree(ctxp);
}

/**
 * lpfc_nvmet_rq_post - Repost a NVMET RQ DMA buffer and clean up context
 * @phba: HBA buffer is associated with
 * @ctxp: context to clean up
 * @mp: Buffer to free
 *
 * Description: Frees the given DMA buffer in the appropriate way given by
 * reposting it to its associated RQ so it can be reused.
 *
 * Notes: Takes phba->hbalock.  Can be called with or without other locks held.
 *
 * Returns: None
 **/
void
lpfc_nvmet_rq_post(struct lpfc_hba *phba, struct lpfc_nvmet_rcv_ctx *ctxp,
		   struct lpfc_dmabuf *mp)
{
	if (ctxp) {
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		if (ctxp->flag)
			lpfc_printf_log(phba, KERN_INFO, LOG_NVME_ABTS,
				"6314 rq_post ctx xri x%x flag x%x\n",
				ctxp->oxid, ctxp->flag);

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		if (ctxp->txrdy) {
			pci_pool_free(phba->txrdy_payload_pool, ctxp->txrdy,
				      ctxp->txrdy_phys);
			ctxp->txrdy = NULL;
			ctxp->txrdy_phys = 0;
		}
		ctxp->state = LPFC_NVMET_STE_FREE;
	}
	lpfc_rq_buf_free(phba, mp);
}

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#ifdef CONFIG_SCSI_LPFC_DEBUG_FS
static void
lpfc_nvmet_ktime(struct lpfc_hba *phba,
		 struct lpfc_nvmet_rcv_ctx *ctxp)
{
	uint64_t seg1, seg2, seg3, seg4, seg5;
	uint64_t seg6, seg7, seg8, seg9, seg10;

	if (!phba->ktime_on)
		return;

	if (!ctxp->ts_isr_cmd || !ctxp->ts_cmd_nvme ||
	    !ctxp->ts_nvme_data || !ctxp->ts_data_wqput ||
	    !ctxp->ts_isr_data || !ctxp->ts_data_nvme ||
	    !ctxp->ts_nvme_status || !ctxp->ts_status_wqput ||
	    !ctxp->ts_isr_status || !ctxp->ts_status_nvme)
		return;

	if (ctxp->ts_isr_cmd  > ctxp->ts_cmd_nvme)
		return;
	if (ctxp->ts_cmd_nvme > ctxp->ts_nvme_data)
		return;
	if (ctxp->ts_nvme_data > ctxp->ts_data_wqput)
		return;
	if (ctxp->ts_data_wqput > ctxp->ts_isr_data)
		return;
	if (ctxp->ts_isr_data > ctxp->ts_data_nvme)
		return;
	if (ctxp->ts_data_nvme > ctxp->ts_nvme_status)
		return;
	if (ctxp->ts_nvme_status > ctxp->ts_status_wqput)
		return;
	if (ctxp->ts_status_wqput > ctxp->ts_isr_status)
		return;
	if (ctxp->ts_isr_status > ctxp->ts_status_nvme)
		return;
	/*
	 * Segment 1 - Time from FCP command received by MSI-X ISR
	 * to FCP command is passed to NVME Layer.
	 * Segment 2 - Time from FCP command payload handed
	 * off to NVME Layer to Driver receives a Command op
	 * from NVME Layer.
	 * Segment 3 - Time from Driver receives a Command op
	 * from NVME Layer to Command is put on WQ.
	 * Segment 4 - Time from Driver WQ put is done
	 * to MSI-X ISR for Command cmpl.
	 * Segment 5 - Time from MSI-X ISR for Command cmpl to
	 * Command cmpl is passed to NVME Layer.
	 * Segment 6 - Time from Command cmpl is passed to NVME
	 * Layer to Driver receives a RSP op from NVME Layer.
	 * Segment 7 - Time from Driver receives a RSP op from
	 * NVME Layer to WQ put is done on TRSP FCP Status.
	 * Segment 8 - Time from Driver WQ put is done on TRSP
	 * FCP Status to MSI-X ISR for TRSP cmpl.
	 * Segment 9 - Time from MSI-X ISR for TRSP cmpl to
	 * TRSP cmpl is passed to NVME Layer.
	 * Segment 10 - Time from FCP command received by
	 * MSI-X ISR to command is completed on wire.
	 * (Segments 1 thru 8) for READDATA / WRITEDATA
	 * (Segments 1 thru 4) for READDATA_RSP
	 */
	seg1 = ctxp->ts_cmd_nvme - ctxp->ts_isr_cmd;
	seg2 = (ctxp->ts_nvme_data - ctxp->ts_isr_cmd) - seg1;
	seg3 = (ctxp->ts_data_wqput - ctxp->ts_isr_cmd) -
		seg1 - seg2;
	seg4 = (ctxp->ts_isr_data - ctxp->ts_isr_cmd) -
		seg1 - seg2 - seg3;
	seg5 = (ctxp->ts_data_nvme - ctxp->ts_isr_cmd) -
		seg1 - seg2 - seg3 - seg4;

	/* For auto rsp commands seg6 thru seg10 will be 0 */
	if (ctxp->ts_nvme_status > ctxp->ts_data_nvme) {
		seg6 = (ctxp->ts_nvme_status -
			ctxp->ts_isr_cmd) -
			seg1 - seg2 - seg3 - seg4 - seg5;
		seg7 = (ctxp->ts_status_wqput -
			ctxp->ts_isr_cmd) -
			seg1 - seg2 - seg3 -
			seg4 - seg5 - seg6;
		seg8 = (ctxp->ts_isr_status -
			ctxp->ts_isr_cmd) -
			seg1 - seg2 - seg3 - seg4 -
			seg5 - seg6 - seg7;
		seg9 = (ctxp->ts_status_nvme -
			ctxp->ts_isr_cmd) -
			seg1 - seg2 - seg3 - seg4 -
			seg5 - seg6 - seg7 - seg8;
		seg10 = (ctxp->ts_isr_status -
			ctxp->ts_isr_cmd);
	} else {
		seg6 =  0;
		seg7 =  0;
		seg8 =  0;
		seg9 =  0;
		seg10 = (ctxp->ts_isr_data - ctxp->ts_isr_cmd);
	}

	phba->ktime_seg1_total += seg1;
	if (seg1 < phba->ktime_seg1_min)
		phba->ktime_seg1_min = seg1;
	else if (seg1 > phba->ktime_seg1_max)
		phba->ktime_seg1_max = seg1;

	phba->ktime_seg2_total += seg2;
	if (seg2 < phba->ktime_seg2_min)
		phba->ktime_seg2_min = seg2;
	else if (seg2 > phba->ktime_seg2_max)
		phba->ktime_seg2_max = seg2;

	phba->ktime_seg3_total += seg3;
	if (seg3 < phba->ktime_seg3_min)
		phba->ktime_seg3_min = seg3;
	else if (seg3 > phba->ktime_seg3_max)
		phba->ktime_seg3_max = seg3;

	phba->ktime_seg4_total += seg4;
	if (seg4 < phba->ktime_seg4_min)
		phba->ktime_seg4_min = seg4;
	else if (seg4 > phba->ktime_seg4_max)
		phba->ktime_seg4_max = seg4;

	phba->ktime_seg5_total += seg5;
	if (seg5 < phba->ktime_seg5_min)
		phba->ktime_seg5_min = seg5;
	else if (seg5 > phba->ktime_seg5_max)
		phba->ktime_seg5_max = seg5;

	phba->ktime_data_samples++;
	if (!seg6)
		goto out;

	phba->ktime_seg6_total += seg6;
	if (seg6 < phba->ktime_seg6_min)
		phba->ktime_seg6_min = seg6;
	else if (seg6 > phba->ktime_seg6_max)
		phba->ktime_seg6_max = seg6;

	phba->ktime_seg7_total += seg7;
	if (seg7 < phba->ktime_seg7_min)
		phba->ktime_seg7_min = seg7;
	else if (seg7 > phba->ktime_seg7_max)
		phba->ktime_seg7_max = seg7;

	phba->ktime_seg8_total += seg8;
	if (seg8 < phba->ktime_seg8_min)
		phba->ktime_seg8_min = seg8;
	else if (seg8 > phba->ktime_seg8_max)
		phba->ktime_seg8_max = seg8;

	phba->ktime_seg9_total += seg9;
	if (seg9 < phba->ktime_seg9_min)
		phba->ktime_seg9_min = seg9;
	else if (seg9 > phba->ktime_seg9_max)
		phba->ktime_seg9_max = seg9;
out:
	phba->ktime_seg10_total += seg10;
	if (seg10 < phba->ktime_seg10_min)
		phba->ktime_seg10_min = seg10;
	else if (seg10 > phba->ktime_seg10_max)
		phba->ktime_seg10_max = seg10;
	phba->ktime_status_samples++;
}
#endif

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/**
 * lpfc_nvmet_xmt_fcp_op_cmp - Completion handler for FCP Response
 * @phba: Pointer to HBA context object.
 * @cmdwqe: Pointer to driver command WQE object.
 * @wcqe: Pointer to driver response CQE object.
 *
 * The function is called from SLI ring event handler with no
 * lock held. This function is the completion handler for NVME FCP commands
 * The function frees memory resources used for the NVME commands.
 **/
static void
lpfc_nvmet_xmt_fcp_op_cmp(struct lpfc_hba *phba, struct lpfc_iocbq *cmdwqe,
			  struct lpfc_wcqe_complete *wcqe)
{
	struct lpfc_nvmet_tgtport *tgtp;
	struct nvmefc_tgt_fcp_req *rsp;
	struct lpfc_nvmet_rcv_ctx *ctxp;
	uint32_t status, result, op, start_clean;
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#ifdef CONFIG_SCSI_LPFC_DEBUG_FS
	uint32_t id;
#endif
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	ctxp = cmdwqe->context2;
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	ctxp->flag &= ~LPFC_NVMET_IO_INP;

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	rsp = &ctxp->ctx.fcp_req;
	op = rsp->op;

	status = bf_get(lpfc_wcqe_c_status, wcqe);
	result = wcqe->parameter;

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	if (phba->targetport)
		tgtp = (struct lpfc_nvmet_tgtport *)phba->targetport->private;
	else
		tgtp = NULL;
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	lpfc_nvmeio_data(phba, "NVMET FCP CMPL: xri x%x op x%x status x%x\n",
			 ctxp->oxid, op, status);

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	if (status) {
		rsp->fcp_error = NVME_SC_DATA_XFER_ERROR;
		rsp->transferred_length = 0;
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		if (tgtp)
			atomic_inc(&tgtp->xmt_fcp_rsp_error);

		/* pick up SLI4 exhange busy condition */
		if (bf_get(lpfc_wcqe_c_xb, wcqe)) {
			ctxp->flag |= LPFC_NVMET_XBUSY;

			lpfc_printf_log(phba, KERN_INFO, LOG_NVME_ABTS,
					"6315 IO Cmpl XBUSY: xri x%x: %x/%x\n",
					ctxp->oxid, status, result);
		} else {
			ctxp->flag &= ~LPFC_NVMET_XBUSY;
		}

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	} else {
		rsp->fcp_error = NVME_SC_SUCCESS;
		if (op == NVMET_FCOP_RSP)
			rsp->transferred_length = rsp->rsplen;
		else
			rsp->transferred_length = rsp->transfer_length;
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		if (tgtp)
			atomic_inc(&tgtp->xmt_fcp_rsp_cmpl);
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	}

	if ((op == NVMET_FCOP_READDATA_RSP) ||
	    (op == NVMET_FCOP_RSP)) {
		/* Sanity check */
		ctxp->state = LPFC_NVMET_STE_DONE;
		ctxp->entry_cnt++;
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#ifdef CONFIG_SCSI_LPFC_DEBUG_FS
		if (phba->ktime_on) {
			if (rsp->op == NVMET_FCOP_READDATA_RSP) {
				ctxp->ts_isr_data =
					cmdwqe->isr_timestamp;
				ctxp->ts_data_nvme =
					ktime_get_ns();
				ctxp->ts_nvme_status =
					ctxp->ts_data_nvme;
				ctxp->ts_status_wqput =
					ctxp->ts_data_nvme;
				ctxp->ts_isr_status =
					ctxp->ts_data_nvme;
				ctxp->ts_status_nvme =
					ctxp->ts_data_nvme;
			} else {
				ctxp->ts_isr_status =
					cmdwqe->isr_timestamp;
				ctxp->ts_status_nvme =
					ktime_get_ns();
			}
		}
		if (phba->cpucheck_on & LPFC_CHECK_NVMET_IO) {
			id = smp_processor_id();
			if (ctxp->cpu != id)
				lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
						"6703 CPU Check cmpl: "
						"cpu %d expect %d\n",
						id, ctxp->cpu);
			if (ctxp->cpu < LPFC_CHECK_CPU_CNT)
				phba->cpucheck_cmpl_io[id]++;
		}
#endif
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		rsp->done(rsp);
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#ifdef CONFIG_SCSI_LPFC_DEBUG_FS
		if (phba->ktime_on)
			lpfc_nvmet_ktime(phba, ctxp);
#endif
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		/* lpfc_nvmet_xmt_fcp_release() will recycle the context */
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	} else {
		ctxp->entry_cnt++;
		start_clean = offsetof(struct lpfc_iocbq, wqe);
		memset(((char *)cmdwqe) + start_clean, 0,
		       (sizeof(struct lpfc_iocbq) - start_clean));
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#ifdef CONFIG_SCSI_LPFC_DEBUG_FS
		if (phba->ktime_on) {
			ctxp->ts_isr_data = cmdwqe->isr_timestamp;
			ctxp->ts_data_nvme = ktime_get_ns();
		}
		if (phba->cpucheck_on & LPFC_CHECK_NVMET_IO) {
			id = smp_processor_id();
			if (ctxp->cpu != id)
				lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
						"6704 CPU Check cmdcmpl: "
						"cpu %d expect %d\n",
						id, ctxp->cpu);
			if (ctxp->cpu < LPFC_CHECK_CPU_CNT)
				phba->cpucheck_ccmpl_io[id]++;
		}
#endif
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		rsp->done(rsp);
	}
}

static int
lpfc_nvmet_xmt_ls_rsp(struct nvmet_fc_target_port *tgtport,
		      struct nvmefc_tgt_ls_req *rsp)
{
	struct lpfc_nvmet_rcv_ctx *ctxp =
		container_of(rsp, struct lpfc_nvmet_rcv_ctx, ctx.ls_req);
	struct lpfc_hba *phba = ctxp->phba;
	struct hbq_dmabuf *nvmebuf =
		(struct hbq_dmabuf *)ctxp->rqb_buffer;
	struct lpfc_iocbq *nvmewqeq;
	struct lpfc_nvmet_tgtport *nvmep = tgtport->private;
	struct lpfc_dmabuf dmabuf;
	struct ulp_bde64 bpl;
	int rc;

	lpfc_printf_log(phba, KERN_INFO, LOG_NVME_DISC,
			"6023 %s: Entrypoint ctx %p %p\n", __func__,
			ctxp, tgtport);

	nvmewqeq = lpfc_nvmet_prep_ls_wqe(phba, ctxp, rsp->rspdma,
				      rsp->rsplen);
	if (nvmewqeq == NULL) {
		atomic_inc(&nvmep->xmt_ls_drop);
		lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
				"6150 LS Drop IO x%x: Prep\n",
				ctxp->oxid);
		lpfc_in_buf_free(phba, &nvmebuf->dbuf);
		lpfc_nvmet_unsol_ls_issue_abort(phba, ctxp,
						ctxp->sid, ctxp->oxid);
		return -ENOMEM;
	}

	/* Save numBdes for bpl2sgl */
	nvmewqeq->rsvd2 = 1;
	nvmewqeq->hba_wqidx = 0;
	nvmewqeq->context3 = &dmabuf;
	dmabuf.virt = &bpl;
	bpl.addrLow = nvmewqeq->wqe.xmit_sequence.bde.addrLow;
	bpl.addrHigh = nvmewqeq->wqe.xmit_sequence.bde.addrHigh;
	bpl.tus.f.bdeSize = rsp->rsplen;
	bpl.tus.f.bdeFlags = 0;
	bpl.tus.w = le32_to_cpu(bpl.tus.w);

	nvmewqeq->wqe_cmpl = lpfc_nvmet_xmt_ls_rsp_cmp;
	nvmewqeq->iocb_cmpl = NULL;
	nvmewqeq->context2 = ctxp;

525 526 527
	lpfc_nvmeio_data(phba, "NVMET LS  RESP: xri x%x wqidx x%x len x%x\n",
			 ctxp->oxid, nvmewqeq->hba_wqidx, rsp->rsplen);

528 529 530 531 532 533 534 535 536 537 538 539 540 541 542 543 544 545 546 547 548 549 550 551 552 553 554 555 556 557 558 559 560
	rc = lpfc_sli4_issue_wqe(phba, LPFC_ELS_RING, nvmewqeq);
	if (rc == WQE_SUCCESS) {
		/*
		 * Okay to repost buffer here, but wait till cmpl
		 * before freeing ctxp and iocbq.
		 */
		lpfc_in_buf_free(phba, &nvmebuf->dbuf);
		ctxp->rqb_buffer = 0;
		atomic_inc(&nvmep->xmt_ls_rsp);
		return 0;
	}
	/* Give back resources */
	atomic_inc(&nvmep->xmt_ls_drop);
	lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
			"6151 LS Drop IO x%x: Issue %d\n",
			ctxp->oxid, rc);

	lpfc_nlp_put(nvmewqeq->context1);

	lpfc_in_buf_free(phba, &nvmebuf->dbuf);
	lpfc_nvmet_unsol_ls_issue_abort(phba, ctxp, ctxp->sid, ctxp->oxid);
	return -ENXIO;
}

static int
lpfc_nvmet_xmt_fcp_op(struct nvmet_fc_target_port *tgtport,
		      struct nvmefc_tgt_fcp_req *rsp)
{
	struct lpfc_nvmet_tgtport *lpfc_nvmep = tgtport->private;
	struct lpfc_nvmet_rcv_ctx *ctxp =
		container_of(rsp, struct lpfc_nvmet_rcv_ctx, ctx.fcp_req);
	struct lpfc_hba *phba = ctxp->phba;
	struct lpfc_iocbq *nvmewqeq;
561
	int rc;
562 563 564 565 566 567 568 569 570

#ifdef CONFIG_SCSI_LPFC_DEBUG_FS
	if (phba->ktime_on) {
		if (rsp->op == NVMET_FCOP_RSP)
			ctxp->ts_nvme_status = ktime_get_ns();
		else
			ctxp->ts_nvme_data = ktime_get_ns();
	}
	if (phba->cpucheck_on & LPFC_CHECK_NVMET_IO) {
571
		int id = smp_processor_id();
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		ctxp->cpu = id;
		if (id < LPFC_CHECK_CPU_CNT)
			phba->cpucheck_xmt_io[id]++;
		if (rsp->hwqid != id) {
			lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
					"6705 CPU Check OP: "
					"cpu %d expect %d\n",
					id, rsp->hwqid);
			ctxp->cpu = rsp->hwqid;
		}
	}
#endif
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	/* Sanity check */
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	if ((ctxp->flag & LPFC_NVMET_ABTS_RCV) ||
	    (ctxp->state == LPFC_NVMET_STE_ABORT)) {
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		atomic_inc(&lpfc_nvmep->xmt_fcp_drop);
		lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
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				"6102 IO xri x%x aborted\n",
591
				ctxp->oxid);
592
		rc = -ENXIO;
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		goto aerr;
	}

	nvmewqeq = lpfc_nvmet_prep_fcp_wqe(phba, ctxp);
	if (nvmewqeq == NULL) {
		atomic_inc(&lpfc_nvmep->xmt_fcp_drop);
		lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
				"6152 FCP Drop IO x%x: Prep\n",
				ctxp->oxid);
602
		rc = -ENXIO;
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		goto aerr;
	}

	nvmewqeq->wqe_cmpl = lpfc_nvmet_xmt_fcp_op_cmp;
	nvmewqeq->iocb_cmpl = NULL;
	nvmewqeq->context2 = ctxp;
	nvmewqeq->iocb_flag |=  LPFC_IO_NVMET;
	ctxp->wqeq->hba_wqidx = rsp->hwqid;

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	lpfc_nvmeio_data(phba, "NVMET FCP CMND: xri x%x op x%x len x%x\n",
			 ctxp->oxid, rsp->op, rsp->rsplen);

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	rc = lpfc_sli4_issue_wqe(phba, LPFC_FCP_RING, nvmewqeq);
	if (rc == WQE_SUCCESS) {
		ctxp->flag |= LPFC_NVMET_IO_INP;
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#ifdef CONFIG_SCSI_LPFC_DEBUG_FS
		if (!phba->ktime_on)
			return 0;
		if (rsp->op == NVMET_FCOP_RSP)
			ctxp->ts_status_wqput = ktime_get_ns();
		else
			ctxp->ts_data_wqput = ktime_get_ns();
#endif
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		return 0;
	}

	/* Give back resources */
	atomic_inc(&lpfc_nvmep->xmt_fcp_drop);
	lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
			"6153 FCP Drop IO x%x: Issue: %d\n",
			ctxp->oxid, rc);

	ctxp->wqeq->hba_wqidx = 0;
	nvmewqeq->context2 = NULL;
	nvmewqeq->context3 = NULL;
638
	rc = -EBUSY;
639
aerr:
640
	return rc;
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}

static void
lpfc_nvmet_targetport_delete(struct nvmet_fc_target_port *targetport)
{
	struct lpfc_nvmet_tgtport *tport = targetport->private;

	/* release any threads waiting for the unreg to complete */
	complete(&tport->tport_unreg_done);
}

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static void
lpfc_nvmet_xmt_fcp_abort(struct nvmet_fc_target_port *tgtport,
			 struct nvmefc_tgt_fcp_req *req)
{
	struct lpfc_nvmet_tgtport *lpfc_nvmep = tgtport->private;
	struct lpfc_nvmet_rcv_ctx *ctxp =
		container_of(req, struct lpfc_nvmet_rcv_ctx, ctx.fcp_req);
	struct lpfc_hba *phba = ctxp->phba;
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	unsigned long flags;
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	lpfc_printf_log(phba, KERN_INFO, LOG_NVME_ABTS,
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			"6103 Abort op: oxri x%x flg x%x cnt %d\n",
			ctxp->oxid, ctxp->flag, ctxp->entry_cnt);
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	lpfc_nvmeio_data(phba, "NVMET FCP ABRT: "
			 "xri x%x flg x%x cnt x%x\n",
			 ctxp->oxid, ctxp->flag, ctxp->entry_cnt);
669 670 671

	atomic_inc(&lpfc_nvmep->xmt_fcp_abort);
	ctxp->entry_cnt++;
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	spin_lock_irqsave(&ctxp->ctxlock, flags);

	/* Since iaab/iaar are NOT set, we need to check
	 * if the firmware is in process of aborting IO
	 */
	if (ctxp->flag & LPFC_NVMET_XBUSY) {
		spin_unlock_irqrestore(&ctxp->ctxlock, flags);
		return;
	}
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	ctxp->flag |= LPFC_NVMET_ABORT_OP;
	if (ctxp->flag & LPFC_NVMET_IO_INP)
		lpfc_nvmet_sol_fcp_issue_abort(phba, ctxp, ctxp->sid,
					       ctxp->oxid);
	else
		lpfc_nvmet_unsol_fcp_issue_abort(phba, ctxp, ctxp->sid,
						 ctxp->oxid);
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	spin_unlock_irqrestore(&ctxp->ctxlock, flags);
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}

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static void
lpfc_nvmet_xmt_fcp_release(struct nvmet_fc_target_port *tgtport,
			   struct nvmefc_tgt_fcp_req *rsp)
{
	struct lpfc_nvmet_rcv_ctx *ctxp =
		container_of(rsp, struct lpfc_nvmet_rcv_ctx, ctx.fcp_req);
	struct lpfc_hba *phba = ctxp->phba;
	unsigned long flags;
	bool aborting = false;

	spin_lock_irqsave(&ctxp->ctxlock, flags);
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	if ((ctxp->flag & LPFC_NVMET_ABORT_OP) ||
	    (ctxp->flag & LPFC_NVMET_XBUSY)) {
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		aborting = true;
		/* let the abort path do the real release */
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		lpfc_nvmet_defer_release(phba, ctxp);
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	}
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	spin_unlock_irqrestore(&ctxp->ctxlock, flags);
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	lpfc_nvmeio_data(phba, "NVMET FCP FREE: xri x%x ste %d\n", ctxp->oxid,
			 ctxp->state, 0);

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	if (aborting)
		return;

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	lpfc_nvmet_rq_post(phba, ctxp, &ctxp->rqb_buffer->hbuf);
}

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static struct nvmet_fc_target_template lpfc_tgttemplate = {
	.targetport_delete = lpfc_nvmet_targetport_delete,
	.xmt_ls_rsp     = lpfc_nvmet_xmt_ls_rsp,
	.fcp_op         = lpfc_nvmet_xmt_fcp_op,
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	.fcp_abort      = lpfc_nvmet_xmt_fcp_abort,
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	.fcp_req_release = lpfc_nvmet_xmt_fcp_release,
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	.max_hw_queues  = 1,
	.max_sgl_segments = LPFC_NVMET_DEFAULT_SEGS,
	.max_dif_sgl_segments = LPFC_NVMET_DEFAULT_SEGS,
	.dma_boundary = 0xFFFFFFFF,

	/* optional features */
	.target_features = 0,
	/* sizes of additional private data for data structures */
	.target_priv_sz = sizeof(struct lpfc_nvmet_tgtport),
};

int
lpfc_nvmet_create_targetport(struct lpfc_hba *phba)
{
	struct lpfc_vport  *vport = phba->pport;
	struct lpfc_nvmet_tgtport *tgtp;
	struct nvmet_fc_port_info pinfo;
	int error = 0;

	if (phba->targetport)
		return 0;

	memset(&pinfo, 0, sizeof(struct nvmet_fc_port_info));
	pinfo.node_name = wwn_to_u64(vport->fc_nodename.u.wwn);
	pinfo.port_name = wwn_to_u64(vport->fc_portname.u.wwn);
	pinfo.port_id = vport->fc_myDID;

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	/* Limit to LPFC_MAX_NVME_SEG_CNT.
	 * For now need + 1 to get around NVME transport logic.
	 */
	if (phba->cfg_sg_seg_cnt > LPFC_MAX_NVME_SEG_CNT) {
		lpfc_printf_log(phba, KERN_INFO, LOG_NVME | LOG_INIT,
				"6400 Reducing sg segment cnt to %d\n",
				LPFC_MAX_NVME_SEG_CNT);
		phba->cfg_nvme_seg_cnt = LPFC_MAX_NVME_SEG_CNT;
	} else {
		phba->cfg_nvme_seg_cnt = phba->cfg_sg_seg_cnt;
	}
	lpfc_tgttemplate.max_sgl_segments = phba->cfg_nvme_seg_cnt + 1;
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	lpfc_tgttemplate.max_hw_queues = phba->cfg_nvme_io_channel;
	lpfc_tgttemplate.target_features = NVMET_FCTGTFEAT_READDATA_RSP |
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					   NVMET_FCTGTFEAT_CMD_IN_ISR |
					   NVMET_FCTGTFEAT_OPDONE_IN_ISR;
769

770
#if (IS_ENABLED(CONFIG_NVME_TARGET_FC))
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	error = nvmet_fc_register_targetport(&pinfo, &lpfc_tgttemplate,
					     &phba->pcidev->dev,
					     &phba->targetport);
774 775 776
#else
	error = -ENOMEM;
#endif
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	if (error) {
		lpfc_printf_log(phba, KERN_ERR, LOG_NVME_DISC,
				"6025 Cannot register NVME targetport "
				"x%x\n", error);
		phba->targetport = NULL;
	} else {
		tgtp = (struct lpfc_nvmet_tgtport *)
			phba->targetport->private;
		tgtp->phba = phba;

		lpfc_printf_log(phba, KERN_INFO, LOG_NVME_DISC,
				"6026 Registered NVME "
				"targetport: %p, private %p "
				"portnm %llx nodenm %llx\n",
				phba->targetport, tgtp,
				pinfo.port_name, pinfo.node_name);

		atomic_set(&tgtp->rcv_ls_req_in, 0);
		atomic_set(&tgtp->rcv_ls_req_out, 0);
		atomic_set(&tgtp->rcv_ls_req_drop, 0);
		atomic_set(&tgtp->xmt_ls_abort, 0);
		atomic_set(&tgtp->xmt_ls_rsp, 0);
		atomic_set(&tgtp->xmt_ls_drop, 0);
		atomic_set(&tgtp->xmt_ls_rsp_error, 0);
		atomic_set(&tgtp->xmt_ls_rsp_cmpl, 0);
		atomic_set(&tgtp->rcv_fcp_cmd_in, 0);
		atomic_set(&tgtp->rcv_fcp_cmd_out, 0);
		atomic_set(&tgtp->rcv_fcp_cmd_drop, 0);
		atomic_set(&tgtp->xmt_fcp_abort, 0);
		atomic_set(&tgtp->xmt_fcp_drop, 0);
		atomic_set(&tgtp->xmt_fcp_read_rsp, 0);
		atomic_set(&tgtp->xmt_fcp_read, 0);
		atomic_set(&tgtp->xmt_fcp_write, 0);
		atomic_set(&tgtp->xmt_fcp_rsp, 0);
		atomic_set(&tgtp->xmt_fcp_rsp_cmpl, 0);
		atomic_set(&tgtp->xmt_fcp_rsp_error, 0);
		atomic_set(&tgtp->xmt_fcp_rsp_drop, 0);
		atomic_set(&tgtp->xmt_abort_rsp, 0);
		atomic_set(&tgtp->xmt_abort_rsp_error, 0);
		atomic_set(&tgtp->xmt_abort_cmpl, 0);
	}
	return error;
}

int
lpfc_nvmet_update_targetport(struct lpfc_hba *phba)
{
	struct lpfc_vport  *vport = phba->pport;

	if (!phba->targetport)
		return 0;

	lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME,
			 "6007 Update NVMET port %p did x%x\n",
			 phba->targetport, vport->fc_myDID);

	phba->targetport->port_id = vport->fc_myDID;
	return 0;
}

837 838 839 840 841 842 843 844 845 846 847 848
/**
 * lpfc_sli4_nvmet_xri_aborted - Fast-path process of nvmet xri abort
 * @phba: pointer to lpfc hba data structure.
 * @axri: pointer to the nvmet xri abort wcqe structure.
 *
 * This routine is invoked by the worker thread to process a SLI4 fast-path
 * NVMET aborted xri.
 **/
void
lpfc_sli4_nvmet_xri_aborted(struct lpfc_hba *phba,
			    struct sli4_wcqe_xri_aborted *axri)
{
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	uint16_t xri = bf_get(lpfc_wcqe_xa_xri, axri);
	uint16_t rxid = bf_get(lpfc_wcqe_xa_remote_xid, axri);
	struct lpfc_nvmet_rcv_ctx *ctxp, *next_ctxp;
	struct lpfc_nodelist *ndlp;
	unsigned long iflag = 0;
	int rrq_empty = 0;
	bool released = false;

	lpfc_printf_log(phba, KERN_INFO, LOG_NVME_ABTS,
			"6317 XB aborted xri x%x rxid x%x\n", xri, rxid);

	if (!(phba->cfg_enable_fc4_type & LPFC_ENABLE_NVME))
		return;
	spin_lock_irqsave(&phba->hbalock, iflag);
	spin_lock(&phba->sli4_hba.abts_nvme_buf_list_lock);
	list_for_each_entry_safe(ctxp, next_ctxp,
				 &phba->sli4_hba.lpfc_abts_nvmet_ctx_list,
				 list) {
		if (ctxp->rqb_buffer->sglq->sli4_xritag != xri)
			continue;

		/* Check if we already received a free context call
		 * and we have completed processing an abort situation.
		 */
		if (ctxp->flag & LPFC_NVMET_CTX_RLS &&
		    !(ctxp->flag & LPFC_NVMET_ABORT_OP)) {
			list_del(&ctxp->list);
			released = true;
		}
		ctxp->flag &= ~LPFC_NVMET_XBUSY;
		spin_unlock(&phba->sli4_hba.abts_nvme_buf_list_lock);

		rrq_empty = list_empty(&phba->active_rrq_list);
		spin_unlock_irqrestore(&phba->hbalock, iflag);
		ndlp = lpfc_findnode_did(phba->pport, ctxp->sid);
		if (ndlp && NLP_CHK_NODE_ACT(ndlp) &&
		    (ndlp->nlp_state == NLP_STE_UNMAPPED_NODE ||
		     ndlp->nlp_state == NLP_STE_MAPPED_NODE)) {
			lpfc_set_rrq_active(phba, ndlp,
				ctxp->rqb_buffer->sglq->sli4_lxritag,
				rxid, 1);
			lpfc_sli4_abts_err_handler(phba, ndlp, axri);
		}

		lpfc_printf_log(phba, KERN_INFO, LOG_NVME_ABTS,
				"6318 XB aborted %x flg x%x (%x)\n",
				ctxp->oxid, ctxp->flag, released);
		if (released)
			lpfc_nvmet_rq_post(phba, ctxp,
					   &ctxp->rqb_buffer->hbuf);
		if (rrq_empty)
			lpfc_worker_wake_up(phba);
		return;
	}
	spin_unlock(&phba->sli4_hba.abts_nvme_buf_list_lock);
	spin_unlock_irqrestore(&phba->hbalock, iflag);
}

int
lpfc_nvmet_rcv_unsol_abort(struct lpfc_vport *vport,
			   struct fc_frame_header *fc_hdr)

{
#if (IS_ENABLED(CONFIG_NVME_TARGET_FC))
	struct lpfc_hba *phba = vport->phba;
	struct lpfc_nvmet_rcv_ctx *ctxp, *next_ctxp;
	struct nvmefc_tgt_fcp_req *rsp;
	uint16_t xri;
	unsigned long iflag = 0;

	xri = be16_to_cpu(fc_hdr->fh_ox_id);

	spin_lock_irqsave(&phba->hbalock, iflag);
	spin_lock(&phba->sli4_hba.abts_nvme_buf_list_lock);
	list_for_each_entry_safe(ctxp, next_ctxp,
				 &phba->sli4_hba.lpfc_abts_nvmet_ctx_list,
				 list) {
		if (ctxp->rqb_buffer->sglq->sli4_xritag != xri)
			continue;

		spin_unlock(&phba->sli4_hba.abts_nvme_buf_list_lock);
		spin_unlock_irqrestore(&phba->hbalock, iflag);

		spin_lock_irqsave(&ctxp->ctxlock, iflag);
		ctxp->flag |= LPFC_NVMET_ABTS_RCV;
		spin_unlock_irqrestore(&ctxp->ctxlock, iflag);

		lpfc_nvmeio_data(phba,
			"NVMET ABTS RCV: xri x%x CPU %02x rjt %d\n",
			xri, smp_processor_id(), 0);

		lpfc_printf_log(phba, KERN_INFO, LOG_NVME_ABTS,
				"6319 NVMET Rcv ABTS:acc xri x%x\n", xri);

		rsp = &ctxp->ctx.fcp_req;
		nvmet_fc_rcv_fcp_abort(phba->targetport, rsp);

		/* Respond with BA_ACC accordingly */
		lpfc_sli4_seq_abort_rsp(vport, fc_hdr, 1);
		return 0;
	}
	spin_unlock(&phba->sli4_hba.abts_nvme_buf_list_lock);
	spin_unlock_irqrestore(&phba->hbalock, iflag);

	lpfc_nvmeio_data(phba, "NVMET ABTS RCV: xri x%x CPU %02x rjt %d\n",
			 xri, smp_processor_id(), 1);

	lpfc_printf_log(phba, KERN_INFO, LOG_NVME_ABTS,
			"6320 NVMET Rcv ABTS:rjt xri x%x\n", xri);

	/* Respond with BA_RJT accordingly */
	lpfc_sli4_seq_abort_rsp(vport, fc_hdr, 0);
#endif
962
	return 0;
963 964
}

965 966 967
void
lpfc_nvmet_destroy_targetport(struct lpfc_hba *phba)
{
968
#if (IS_ENABLED(CONFIG_NVME_TARGET_FC))
969 970 971 972 973 974 975 976 977 978 979
	struct lpfc_nvmet_tgtport *tgtp;

	if (phba->nvmet_support == 0)
		return;
	if (phba->targetport) {
		tgtp = (struct lpfc_nvmet_tgtport *)phba->targetport->private;
		init_completion(&tgtp->tport_unreg_done);
		nvmet_fc_unregister_targetport(phba->targetport);
		wait_for_completion_timeout(&tgtp->tport_unreg_done, 5);
	}
	phba->targetport = NULL;
980
#endif
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}

/**
 * lpfc_nvmet_unsol_ls_buffer - Process an unsolicited event data buffer
 * @phba: pointer to lpfc hba data structure.
 * @pring: pointer to a SLI ring.
 * @nvmebuf: pointer to lpfc nvme command HBQ data structure.
 *
 * This routine is used for processing the WQE associated with a unsolicited
 * event. It first determines whether there is an existing ndlp that matches
 * the DID from the unsolicited WQE. If not, it will create a new one with
 * the DID from the unsolicited WQE. The ELS command from the unsolicited
 * WQE is then used to invoke the proper routine and to set up proper state
 * of the discovery state machine.
 **/
static void
lpfc_nvmet_unsol_ls_buffer(struct lpfc_hba *phba, struct lpfc_sli_ring *pring,
			   struct hbq_dmabuf *nvmebuf)
{
1000
#if (IS_ENABLED(CONFIG_NVME_TARGET_FC))
1001 1002 1003 1004 1005 1006 1007 1008 1009
	struct lpfc_nvmet_tgtport *tgtp;
	struct fc_frame_header *fc_hdr;
	struct lpfc_nvmet_rcv_ctx *ctxp;
	uint32_t *payload;
	uint32_t size, oxid, sid, rc;

	if (!nvmebuf || !phba->targetport) {
		lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
				"6154 LS Drop IO\n");
1010 1011 1012
		oxid = 0;
		size = 0;
		sid = 0;
1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029
		goto dropit;
	}

	tgtp = (struct lpfc_nvmet_tgtport *)phba->targetport->private;
	payload = (uint32_t *)(nvmebuf->dbuf.virt);
	fc_hdr = (struct fc_frame_header *)(nvmebuf->hbuf.virt);
	size = bf_get(lpfc_rcqe_length,  &nvmebuf->cq_event.cqe.rcqe_cmpl);
	oxid = be16_to_cpu(fc_hdr->fh_ox_id);
	sid = sli4_sid_from_fc_hdr(fc_hdr);

	ctxp = kzalloc(sizeof(struct lpfc_nvmet_rcv_ctx), GFP_ATOMIC);
	if (ctxp == NULL) {
		atomic_inc(&tgtp->rcv_ls_req_drop);
		lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
				"6155 LS Drop IO x%x: Alloc\n",
				oxid);
dropit:
1030 1031 1032
		lpfc_nvmeio_data(phba, "NVMET LS  DROP: "
				 "xri x%x sz %d from %06x\n",
				 oxid, size, sid);
1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043
		if (nvmebuf)
			lpfc_in_buf_free(phba, &nvmebuf->dbuf);
		return;
	}
	ctxp->phba = phba;
	ctxp->size = size;
	ctxp->oxid = oxid;
	ctxp->sid = sid;
	ctxp->wqeq = NULL;
	ctxp->state = LPFC_NVMET_STE_RCV;
	ctxp->rqb_buffer = (void *)nvmebuf;
1044 1045 1046

	lpfc_nvmeio_data(phba, "NVMET LS   RCV: xri x%x sz %d from %06x\n",
			 oxid, size, sid);
1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060
	/*
	 * The calling sequence should be:
	 * nvmet_fc_rcv_ls_req -> lpfc_nvmet_xmt_ls_rsp/cmp ->_req->done
	 * lpfc_nvmet_xmt_ls_rsp_cmp should free the allocated ctxp.
	 */
	atomic_inc(&tgtp->rcv_ls_req_in);
	rc = nvmet_fc_rcv_ls_req(phba->targetport, &ctxp->ctx.ls_req,
				 payload, size);

	lpfc_printf_log(phba, KERN_INFO, LOG_NVME_DISC,
			"6037 %s: ctx %p sz %d rc %d: %08x %08x %08x "
			"%08x %08x %08x\n", __func__, ctxp, size, rc,
			*payload, *(payload+1), *(payload+2),
			*(payload+3), *(payload+4), *(payload+5));
1061

1062 1063 1064 1065
	if (rc == 0) {
		atomic_inc(&tgtp->rcv_ls_req_out);
		return;
	}
1066 1067 1068 1069

	lpfc_nvmeio_data(phba, "NVMET LS  DROP: xri x%x sz %d from %06x\n",
			 oxid, size, sid);

1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080
	atomic_inc(&tgtp->rcv_ls_req_drop);
	lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
			"6156 LS Drop IO x%x: nvmet_fc_rcv_ls_req %d\n",
			ctxp->oxid, rc);

	/* We assume a rcv'ed cmd ALWAYs fits into 1 buffer */
	if (nvmebuf)
		lpfc_in_buf_free(phba, &nvmebuf->dbuf);

	atomic_inc(&tgtp->xmt_ls_abort);
	lpfc_nvmet_unsol_ls_issue_abort(phba, ctxp, sid, oxid);
1081
#endif
1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102
}

/**
 * lpfc_nvmet_unsol_fcp_buffer - Process an unsolicited event data buffer
 * @phba: pointer to lpfc hba data structure.
 * @pring: pointer to a SLI ring.
 * @nvmebuf: pointer to lpfc nvme command HBQ data structure.
 *
 * This routine is used for processing the WQE associated with a unsolicited
 * event. It first determines whether there is an existing ndlp that matches
 * the DID from the unsolicited WQE. If not, it will create a new one with
 * the DID from the unsolicited WQE. The ELS command from the unsolicited
 * WQE is then used to invoke the proper routine and to set up proper state
 * of the discovery state machine.
 **/
static void
lpfc_nvmet_unsol_fcp_buffer(struct lpfc_hba *phba,
			    struct lpfc_sli_ring *pring,
			    struct rqb_dmabuf *nvmebuf,
			    uint64_t isr_timestamp)
{
1103
#if (IS_ENABLED(CONFIG_NVME_TARGET_FC))
1104 1105 1106 1107 1108
	struct lpfc_nvmet_rcv_ctx *ctxp;
	struct lpfc_nvmet_tgtport *tgtp;
	struct fc_frame_header *fc_hdr;
	uint32_t *payload;
	uint32_t size, oxid, sid, rc;
1109 1110 1111
#ifdef CONFIG_SCSI_LPFC_DEBUG_FS
	uint32_t id;
#endif
1112 1113 1114 1115

	if (!nvmebuf || !phba->targetport) {
		lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
				"6157 FCP Drop IO\n");
1116 1117 1118
		oxid = 0;
		size = 0;
		sid = 0;
1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151
		goto dropit;
	}


	tgtp = (struct lpfc_nvmet_tgtport *)phba->targetport->private;
	payload = (uint32_t *)(nvmebuf->dbuf.virt);
	fc_hdr = (struct fc_frame_header *)(nvmebuf->hbuf.virt);
	size = nvmebuf->bytes_recv;
	oxid = be16_to_cpu(fc_hdr->fh_ox_id);
	sid = sli4_sid_from_fc_hdr(fc_hdr);

	ctxp = (struct lpfc_nvmet_rcv_ctx *)nvmebuf->context;
	if (ctxp == NULL) {
		atomic_inc(&tgtp->rcv_fcp_cmd_drop);
		lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
				"6158 FCP Drop IO x%x: Alloc\n",
				oxid);
		lpfc_nvmet_rq_post(phba, NULL, &nvmebuf->hbuf);
		/* Cannot send ABTS without context */
		return;
	}
	memset(ctxp, 0, sizeof(ctxp->ctx));
	ctxp->wqeq = NULL;
	ctxp->txrdy = NULL;
	ctxp->offset = 0;
	ctxp->phba = phba;
	ctxp->size = size;
	ctxp->oxid = oxid;
	ctxp->sid = sid;
	ctxp->state = LPFC_NVMET_STE_RCV;
	ctxp->rqb_buffer = nvmebuf;
	ctxp->entry_cnt = 1;
	ctxp->flag = 0;
J
James Smart 已提交
1152
	spin_lock_init(&ctxp->ctxlock);
1153

1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174
#ifdef CONFIG_SCSI_LPFC_DEBUG_FS
	if (phba->ktime_on) {
		ctxp->ts_isr_cmd = isr_timestamp;
		ctxp->ts_cmd_nvme = ktime_get_ns();
		ctxp->ts_nvme_data = 0;
		ctxp->ts_data_wqput = 0;
		ctxp->ts_isr_data = 0;
		ctxp->ts_data_nvme = 0;
		ctxp->ts_nvme_status = 0;
		ctxp->ts_status_wqput = 0;
		ctxp->ts_isr_status = 0;
		ctxp->ts_status_nvme = 0;
	}

	if (phba->cpucheck_on & LPFC_CHECK_NVMET_RCV) {
		id = smp_processor_id();
		if (id < LPFC_CHECK_CPU_CNT)
			phba->cpucheck_rcv_io[id]++;
	}
#endif

J
James Smart 已提交
1175 1176
	lpfc_nvmeio_data(phba, "NVMET FCP  RCV: xri x%x sz %d CPU %02x\n",
			 oxid, size, smp_processor_id());
1177

1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194
	atomic_inc(&tgtp->rcv_fcp_cmd_in);
	/*
	 * The calling sequence should be:
	 * nvmet_fc_rcv_fcp_req -> lpfc_nvmet_xmt_fcp_op/cmp -> req->done
	 * lpfc_nvmet_xmt_fcp_op_cmp should free the allocated ctxp.
	 */
	rc = nvmet_fc_rcv_fcp_req(phba->targetport, &ctxp->ctx.fcp_req,
				  payload, size);

	/* Process FCP command */
	if (rc == 0) {
		atomic_inc(&tgtp->rcv_fcp_cmd_out);
		return;
	}

	atomic_inc(&tgtp->rcv_fcp_cmd_drop);
	lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
1195
			"6159 FCP Drop IO x%x: err x%x\n",
1196 1197
			ctxp->oxid, rc);
dropit:
1198 1199
	lpfc_nvmeio_data(phba, "NVMET FCP DROP: xri x%x sz %d from %06x\n",
			 oxid, size, sid);
1200 1201 1202 1203 1204 1205 1206 1207 1208 1209
	if (oxid) {
		lpfc_nvmet_unsol_fcp_issue_abort(phba, ctxp, sid, oxid);
		return;
	}

	if (nvmebuf) {
		nvmebuf->iocbq->hba_wqidx = 0;
		/* We assume a rcv'ed cmd ALWAYs fits into 1 buffer */
		lpfc_nvmet_rq_post(phba, NULL, &nvmebuf->hbuf);
	}
1210
#endif
1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354
}

/**
 * lpfc_nvmet_unsol_ls_event - Process an unsolicited event from an nvme nport
 * @phba: pointer to lpfc hba data structure.
 * @pring: pointer to a SLI ring.
 * @nvmebuf: pointer to received nvme data structure.
 *
 * This routine is used to process an unsolicited event received from a SLI
 * (Service Level Interface) ring. The actual processing of the data buffer
 * associated with the unsolicited event is done by invoking the routine
 * lpfc_nvmet_unsol_ls_buffer() after properly set up the buffer from the
 * SLI RQ on which the unsolicited event was received.
 **/
void
lpfc_nvmet_unsol_ls_event(struct lpfc_hba *phba, struct lpfc_sli_ring *pring,
			  struct lpfc_iocbq *piocb)
{
	struct lpfc_dmabuf *d_buf;
	struct hbq_dmabuf *nvmebuf;

	d_buf = piocb->context2;
	nvmebuf = container_of(d_buf, struct hbq_dmabuf, dbuf);

	if (phba->nvmet_support == 0) {
		lpfc_in_buf_free(phba, &nvmebuf->dbuf);
		return;
	}
	lpfc_nvmet_unsol_ls_buffer(phba, pring, nvmebuf);
}

/**
 * lpfc_nvmet_unsol_fcp_event - Process an unsolicited event from an nvme nport
 * @phba: pointer to lpfc hba data structure.
 * @pring: pointer to a SLI ring.
 * @nvmebuf: pointer to received nvme data structure.
 *
 * This routine is used to process an unsolicited event received from a SLI
 * (Service Level Interface) ring. The actual processing of the data buffer
 * associated with the unsolicited event is done by invoking the routine
 * lpfc_nvmet_unsol_fcp_buffer() after properly set up the buffer from the
 * SLI RQ on which the unsolicited event was received.
 **/
void
lpfc_nvmet_unsol_fcp_event(struct lpfc_hba *phba,
			   struct lpfc_sli_ring *pring,
			   struct rqb_dmabuf *nvmebuf,
			   uint64_t isr_timestamp)
{
	if (phba->nvmet_support == 0) {
		lpfc_nvmet_rq_post(phba, NULL, &nvmebuf->hbuf);
		return;
	}
	lpfc_nvmet_unsol_fcp_buffer(phba, pring, nvmebuf,
				    isr_timestamp);
}

/**
 * lpfc_nvmet_prep_ls_wqe - Allocate and prepare a lpfc wqe data structure
 * @phba: pointer to a host N_Port data structure.
 * @ctxp: Context info for NVME LS Request
 * @rspbuf: DMA buffer of NVME command.
 * @rspsize: size of the NVME command.
 *
 * This routine is used for allocating a lpfc-WQE data structure from
 * the driver lpfc-WQE free-list and prepare the WQE with the parameters
 * passed into the routine for discovery state machine to issue an Extended
 * Link Service (NVME) commands. It is a generic lpfc-WQE allocation
 * and preparation routine that is used by all the discovery state machine
 * routines and the NVME command-specific fields will be later set up by
 * the individual discovery machine routines after calling this routine
 * allocating and preparing a generic WQE data structure. It fills in the
 * Buffer Descriptor Entries (BDEs), allocates buffers for both command
 * payload and response payload (if expected). The reference count on the
 * ndlp is incremented by 1 and the reference to the ndlp is put into
 * context1 of the WQE data structure for this WQE to hold the ndlp
 * reference for the command's callback function to access later.
 *
 * Return code
 *   Pointer to the newly allocated/prepared nvme wqe data structure
 *   NULL - when nvme wqe data structure allocation/preparation failed
 **/
static struct lpfc_iocbq *
lpfc_nvmet_prep_ls_wqe(struct lpfc_hba *phba,
		       struct lpfc_nvmet_rcv_ctx *ctxp,
		       dma_addr_t rspbuf, uint16_t rspsize)
{
	struct lpfc_nodelist *ndlp;
	struct lpfc_iocbq *nvmewqe;
	union lpfc_wqe *wqe;

	if (!lpfc_is_link_up(phba)) {
		lpfc_printf_log(phba, KERN_ERR, LOG_NVME_DISC,
				"6104 lpfc_nvmet_prep_ls_wqe: link err: "
				"NPORT x%x oxid:x%x\n",
				ctxp->sid, ctxp->oxid);
		return NULL;
	}

	/* Allocate buffer for  command wqe */
	nvmewqe = lpfc_sli_get_iocbq(phba);
	if (nvmewqe == NULL) {
		lpfc_printf_log(phba, KERN_ERR, LOG_NVME_DISC,
				"6105 lpfc_nvmet_prep_ls_wqe: No WQE: "
				"NPORT x%x oxid:x%x\n",
				ctxp->sid, ctxp->oxid);
		return NULL;
	}

	ndlp = lpfc_findnode_did(phba->pport, ctxp->sid);
	if (!ndlp || !NLP_CHK_NODE_ACT(ndlp) ||
	    ((ndlp->nlp_state != NLP_STE_UNMAPPED_NODE) &&
	    (ndlp->nlp_state != NLP_STE_MAPPED_NODE))) {
		lpfc_printf_log(phba, KERN_ERR, LOG_NVME_DISC,
				"6106 lpfc_nvmet_prep_ls_wqe: No ndlp: "
				"NPORT x%x oxid:x%x\n",
				ctxp->sid, ctxp->oxid);
		goto nvme_wqe_free_wqeq_exit;
	}
	ctxp->wqeq = nvmewqe;

	/* prevent preparing wqe with NULL ndlp reference */
	nvmewqe->context1 = lpfc_nlp_get(ndlp);
	if (nvmewqe->context1 == NULL)
		goto nvme_wqe_free_wqeq_exit;
	nvmewqe->context2 = ctxp;

	wqe = &nvmewqe->wqe;
	memset(wqe, 0, sizeof(union lpfc_wqe));

	/* Words 0 - 2 */
	wqe->xmit_sequence.bde.tus.f.bdeFlags = BUFF_TYPE_BDE_64;
	wqe->xmit_sequence.bde.tus.f.bdeSize = rspsize;
	wqe->xmit_sequence.bde.addrLow = le32_to_cpu(putPaddrLow(rspbuf));
	wqe->xmit_sequence.bde.addrHigh = le32_to_cpu(putPaddrHigh(rspbuf));

	/* Word 3 */

	/* Word 4 */

	/* Word 5 */
	bf_set(wqe_dfctl, &wqe->xmit_sequence.wge_ctl, 0);
	bf_set(wqe_ls, &wqe->xmit_sequence.wge_ctl, 1);
	bf_set(wqe_la, &wqe->xmit_sequence.wge_ctl, 0);
1355
	bf_set(wqe_rctl, &wqe->xmit_sequence.wge_ctl, FC_RCTL_ELS4_REP);
1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449
	bf_set(wqe_type, &wqe->xmit_sequence.wge_ctl, FC_TYPE_NVME);

	/* Word 6 */
	bf_set(wqe_ctxt_tag, &wqe->xmit_sequence.wqe_com,
	       phba->sli4_hba.rpi_ids[ndlp->nlp_rpi]);
	bf_set(wqe_xri_tag, &wqe->xmit_sequence.wqe_com, nvmewqe->sli4_xritag);

	/* Word 7 */
	bf_set(wqe_cmnd, &wqe->xmit_sequence.wqe_com,
	       CMD_XMIT_SEQUENCE64_WQE);
	bf_set(wqe_ct, &wqe->xmit_sequence.wqe_com, SLI4_CT_RPI);
	bf_set(wqe_class, &wqe->xmit_sequence.wqe_com, CLASS3);
	bf_set(wqe_pu, &wqe->xmit_sequence.wqe_com, 0);

	/* Word 8 */
	wqe->xmit_sequence.wqe_com.abort_tag = nvmewqe->iotag;

	/* Word 9 */
	bf_set(wqe_reqtag, &wqe->xmit_sequence.wqe_com, nvmewqe->iotag);
	/* Needs to be set by caller */
	bf_set(wqe_rcvoxid, &wqe->xmit_sequence.wqe_com, ctxp->oxid);

	/* Word 10 */
	bf_set(wqe_dbde, &wqe->xmit_sequence.wqe_com, 1);
	bf_set(wqe_iod, &wqe->xmit_sequence.wqe_com, LPFC_WQE_IOD_WRITE);
	bf_set(wqe_lenloc, &wqe->xmit_sequence.wqe_com,
	       LPFC_WQE_LENLOC_WORD12);
	bf_set(wqe_ebde_cnt, &wqe->xmit_sequence.wqe_com, 0);

	/* Word 11 */
	bf_set(wqe_cqid, &wqe->xmit_sequence.wqe_com,
	       LPFC_WQE_CQ_ID_DEFAULT);
	bf_set(wqe_cmd_type, &wqe->xmit_sequence.wqe_com,
	       OTHER_COMMAND);

	/* Word 12 */
	wqe->xmit_sequence.xmit_len = rspsize;

	nvmewqe->retry = 1;
	nvmewqe->vport = phba->pport;
	nvmewqe->drvrTimeout = (phba->fc_ratov * 3) + LPFC_DRVR_TIMEOUT;
	nvmewqe->iocb_flag |= LPFC_IO_NVME_LS;

	/* Xmit NVME response to remote NPORT <did> */
	lpfc_printf_log(phba, KERN_INFO, LOG_NVME_DISC,
			"6039 Xmit NVME LS response to remote "
			"NPORT x%x iotag:x%x oxid:x%x size:x%x\n",
			ndlp->nlp_DID, nvmewqe->iotag, ctxp->oxid,
			rspsize);
	return nvmewqe;

nvme_wqe_free_wqeq_exit:
	nvmewqe->context2 = NULL;
	nvmewqe->context3 = NULL;
	lpfc_sli_release_iocbq(phba, nvmewqe);
	return NULL;
}


static struct lpfc_iocbq *
lpfc_nvmet_prep_fcp_wqe(struct lpfc_hba *phba,
			struct lpfc_nvmet_rcv_ctx *ctxp)
{
	struct nvmefc_tgt_fcp_req *rsp = &ctxp->ctx.fcp_req;
	struct lpfc_nvmet_tgtport *tgtp;
	struct sli4_sge *sgl;
	struct lpfc_nodelist *ndlp;
	struct lpfc_iocbq *nvmewqe;
	struct scatterlist *sgel;
	union lpfc_wqe128 *wqe;
	uint32_t *txrdy;
	dma_addr_t physaddr;
	int i, cnt;
	int xc = 1;

	if (!lpfc_is_link_up(phba)) {
		lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
				"6107 lpfc_nvmet_prep_fcp_wqe: link err:"
				"NPORT x%x oxid:x%x\n", ctxp->sid,
				ctxp->oxid);
		return NULL;
	}

	ndlp = lpfc_findnode_did(phba->pport, ctxp->sid);
	if (!ndlp || !NLP_CHK_NODE_ACT(ndlp) ||
	    ((ndlp->nlp_state != NLP_STE_UNMAPPED_NODE) &&
	     (ndlp->nlp_state != NLP_STE_MAPPED_NODE))) {
		lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
				"6108 lpfc_nvmet_prep_fcp_wqe: no ndlp: "
				"NPORT x%x oxid:x%x\n",
				ctxp->sid, ctxp->oxid);
		return NULL;
	}

1450
	if (rsp->sg_cnt > phba->cfg_nvme_seg_cnt) {
1451 1452
		lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
				"6109 lpfc_nvmet_prep_fcp_wqe: seg cnt err: "
1453 1454
				"NPORT x%x oxid:x%x cnt %d\n",
				ctxp->sid, ctxp->oxid, phba->cfg_nvme_seg_cnt);
1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805
		return NULL;
	}

	tgtp = (struct lpfc_nvmet_tgtport *)phba->targetport->private;
	nvmewqe = ctxp->wqeq;
	if (nvmewqe == NULL) {
		/* Allocate buffer for  command wqe */
		nvmewqe = ctxp->rqb_buffer->iocbq;
		if (nvmewqe == NULL) {
			lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
					"6110 lpfc_nvmet_prep_fcp_wqe: No "
					"WQE: NPORT x%x oxid:x%x\n",
					ctxp->sid, ctxp->oxid);
			return NULL;
		}
		ctxp->wqeq = nvmewqe;
		xc = 0; /* create new XRI */
		nvmewqe->sli4_lxritag = NO_XRI;
		nvmewqe->sli4_xritag = NO_XRI;
	}

	/* Sanity check */
	if (((ctxp->state == LPFC_NVMET_STE_RCV) &&
	    (ctxp->entry_cnt == 1)) ||
	    ((ctxp->state == LPFC_NVMET_STE_DATA) &&
	    (ctxp->entry_cnt > 1))) {
		wqe = (union lpfc_wqe128 *)&nvmewqe->wqe;
	} else {
		lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
				"6111 Wrong state %s: %d  cnt %d\n",
				__func__, ctxp->state, ctxp->entry_cnt);
		return NULL;
	}

	sgl  = (struct sli4_sge *)ctxp->rqb_buffer->sglq->sgl;
	switch (rsp->op) {
	case NVMET_FCOP_READDATA:
	case NVMET_FCOP_READDATA_RSP:
		/* Words 0 - 2 : The first sg segment */
		sgel = &rsp->sg[0];
		physaddr = sg_dma_address(sgel);
		wqe->fcp_tsend.bde.tus.f.bdeFlags = BUFF_TYPE_BDE_64;
		wqe->fcp_tsend.bde.tus.f.bdeSize = sg_dma_len(sgel);
		wqe->fcp_tsend.bde.addrLow = cpu_to_le32(putPaddrLow(physaddr));
		wqe->fcp_tsend.bde.addrHigh =
			cpu_to_le32(putPaddrHigh(physaddr));

		/* Word 3 */
		wqe->fcp_tsend.payload_offset_len = 0;

		/* Word 4 */
		wqe->fcp_tsend.relative_offset = ctxp->offset;

		/* Word 5 */

		/* Word 6 */
		bf_set(wqe_ctxt_tag, &wqe->fcp_tsend.wqe_com,
		       phba->sli4_hba.rpi_ids[ndlp->nlp_rpi]);
		bf_set(wqe_xri_tag, &wqe->fcp_tsend.wqe_com,
		       nvmewqe->sli4_xritag);

		/* Word 7 */
		bf_set(wqe_cmnd, &wqe->fcp_tsend.wqe_com, CMD_FCP_TSEND64_WQE);

		/* Word 8 */
		wqe->fcp_tsend.wqe_com.abort_tag = nvmewqe->iotag;

		/* Word 9 */
		bf_set(wqe_reqtag, &wqe->fcp_tsend.wqe_com, nvmewqe->iotag);
		bf_set(wqe_rcvoxid, &wqe->fcp_tsend.wqe_com, ctxp->oxid);

		/* Word 10 */
		bf_set(wqe_nvme, &wqe->fcp_tsend.wqe_com, 1);
		bf_set(wqe_dbde, &wqe->fcp_tsend.wqe_com, 1);
		bf_set(wqe_iod, &wqe->fcp_tsend.wqe_com, LPFC_WQE_IOD_WRITE);
		bf_set(wqe_lenloc, &wqe->fcp_tsend.wqe_com,
		       LPFC_WQE_LENLOC_WORD12);
		bf_set(wqe_ebde_cnt, &wqe->fcp_tsend.wqe_com, 0);
		bf_set(wqe_xc, &wqe->fcp_tsend.wqe_com, xc);
		bf_set(wqe_nvme, &wqe->fcp_tsend.wqe_com, 1);
		if (phba->cfg_nvme_oas)
			bf_set(wqe_oas, &wqe->fcp_tsend.wqe_com, 1);

		/* Word 11 */
		bf_set(wqe_cqid, &wqe->fcp_tsend.wqe_com,
		       LPFC_WQE_CQ_ID_DEFAULT);
		bf_set(wqe_cmd_type, &wqe->fcp_tsend.wqe_com,
		       FCP_COMMAND_TSEND);

		/* Word 12 */
		wqe->fcp_tsend.fcp_data_len = rsp->transfer_length;

		/* Setup 2 SKIP SGEs */
		sgl->addr_hi = 0;
		sgl->addr_lo = 0;
		sgl->word2 = 0;
		bf_set(lpfc_sli4_sge_type, sgl, LPFC_SGE_TYPE_SKIP);
		sgl->word2 = cpu_to_le32(sgl->word2);
		sgl->sge_len = 0;
		sgl++;
		sgl->addr_hi = 0;
		sgl->addr_lo = 0;
		sgl->word2 = 0;
		bf_set(lpfc_sli4_sge_type, sgl, LPFC_SGE_TYPE_SKIP);
		sgl->word2 = cpu_to_le32(sgl->word2);
		sgl->sge_len = 0;
		sgl++;
		if (rsp->op == NVMET_FCOP_READDATA_RSP) {
			atomic_inc(&tgtp->xmt_fcp_read_rsp);
			bf_set(wqe_ar, &wqe->fcp_tsend.wqe_com, 1);
			if ((ndlp->nlp_flag & NLP_SUPPRESS_RSP) &&
			    (rsp->rsplen == 12)) {
				bf_set(wqe_sup, &wqe->fcp_tsend.wqe_com, 1);
				bf_set(wqe_wqes, &wqe->fcp_tsend.wqe_com, 0);
				bf_set(wqe_irsp, &wqe->fcp_tsend.wqe_com, 0);
				bf_set(wqe_irsplen, &wqe->fcp_tsend.wqe_com, 0);
			} else {
				bf_set(wqe_sup, &wqe->fcp_tsend.wqe_com, 0);
				bf_set(wqe_wqes, &wqe->fcp_tsend.wqe_com, 1);
				bf_set(wqe_irsp, &wqe->fcp_tsend.wqe_com, 1);
				bf_set(wqe_irsplen, &wqe->fcp_tsend.wqe_com,
				       ((rsp->rsplen >> 2) - 1));
				memcpy(&wqe->words[16], rsp->rspaddr,
				       rsp->rsplen);
			}
		} else {
			atomic_inc(&tgtp->xmt_fcp_read);

			bf_set(wqe_sup, &wqe->fcp_tsend.wqe_com, 0);
			bf_set(wqe_wqes, &wqe->fcp_tsend.wqe_com, 0);
			bf_set(wqe_irsp, &wqe->fcp_tsend.wqe_com, 0);
			bf_set(wqe_ar, &wqe->fcp_tsend.wqe_com, 0);
			bf_set(wqe_irsplen, &wqe->fcp_tsend.wqe_com, 0);
		}
		ctxp->state = LPFC_NVMET_STE_DATA;
		break;

	case NVMET_FCOP_WRITEDATA:
		/* Words 0 - 2 : The first sg segment */
		txrdy = pci_pool_alloc(phba->txrdy_payload_pool,
				       GFP_KERNEL, &physaddr);
		if (!txrdy) {
			lpfc_printf_log(phba, KERN_ERR, LOG_NVME_IOERR,
					"6041 Bad txrdy buffer: oxid x%x\n",
					ctxp->oxid);
			return NULL;
		}
		ctxp->txrdy = txrdy;
		ctxp->txrdy_phys = physaddr;
		wqe->fcp_treceive.bde.tus.f.bdeFlags = BUFF_TYPE_BDE_64;
		wqe->fcp_treceive.bde.tus.f.bdeSize = TXRDY_PAYLOAD_LEN;
		wqe->fcp_treceive.bde.addrLow =
			cpu_to_le32(putPaddrLow(physaddr));
		wqe->fcp_treceive.bde.addrHigh =
			cpu_to_le32(putPaddrHigh(physaddr));

		/* Word 3 */
		wqe->fcp_treceive.payload_offset_len = TXRDY_PAYLOAD_LEN;

		/* Word 4 */
		wqe->fcp_treceive.relative_offset = ctxp->offset;

		/* Word 5 */

		/* Word 6 */
		bf_set(wqe_ctxt_tag, &wqe->fcp_treceive.wqe_com,
		       phba->sli4_hba.rpi_ids[ndlp->nlp_rpi]);
		bf_set(wqe_xri_tag, &wqe->fcp_treceive.wqe_com,
		       nvmewqe->sli4_xritag);

		/* Word 7 */
		bf_set(wqe_ar, &wqe->fcp_treceive.wqe_com, 0);
		bf_set(wqe_cmnd, &wqe->fcp_treceive.wqe_com,
		       CMD_FCP_TRECEIVE64_WQE);

		/* Word 8 */
		wqe->fcp_treceive.wqe_com.abort_tag = nvmewqe->iotag;

		/* Word 9 */
		bf_set(wqe_reqtag, &wqe->fcp_treceive.wqe_com, nvmewqe->iotag);
		bf_set(wqe_rcvoxid, &wqe->fcp_treceive.wqe_com, ctxp->oxid);

		/* Word 10 */
		bf_set(wqe_nvme, &wqe->fcp_treceive.wqe_com, 1);
		bf_set(wqe_dbde, &wqe->fcp_treceive.wqe_com, 1);
		bf_set(wqe_iod, &wqe->fcp_treceive.wqe_com, LPFC_WQE_IOD_READ);
		bf_set(wqe_lenloc, &wqe->fcp_treceive.wqe_com,
		       LPFC_WQE_LENLOC_WORD12);
		bf_set(wqe_xc, &wqe->fcp_treceive.wqe_com, xc);
		bf_set(wqe_wqes, &wqe->fcp_treceive.wqe_com, 0);
		bf_set(wqe_irsp, &wqe->fcp_treceive.wqe_com, 0);
		bf_set(wqe_irsplen, &wqe->fcp_treceive.wqe_com, 0);
		bf_set(wqe_nvme, &wqe->fcp_treceive.wqe_com, 1);
		if (phba->cfg_nvme_oas)
			bf_set(wqe_oas, &wqe->fcp_treceive.wqe_com, 1);

		/* Word 11 */
		bf_set(wqe_cqid, &wqe->fcp_treceive.wqe_com,
		       LPFC_WQE_CQ_ID_DEFAULT);
		bf_set(wqe_cmd_type, &wqe->fcp_treceive.wqe_com,
		       FCP_COMMAND_TRECEIVE);
		bf_set(wqe_sup, &wqe->fcp_tsend.wqe_com, 0);

		/* Word 12 */
		wqe->fcp_tsend.fcp_data_len = rsp->transfer_length;

		/* Setup 1 TXRDY and 1 SKIP SGE */
		txrdy[0] = 0;
		txrdy[1] = cpu_to_be32(rsp->transfer_length);
		txrdy[2] = 0;

		sgl->addr_hi = putPaddrHigh(physaddr);
		sgl->addr_lo = putPaddrLow(physaddr);
		sgl->word2 = 0;
		bf_set(lpfc_sli4_sge_type, sgl, LPFC_SGE_TYPE_DATA);
		sgl->word2 = cpu_to_le32(sgl->word2);
		sgl->sge_len = cpu_to_le32(TXRDY_PAYLOAD_LEN);
		sgl++;
		sgl->addr_hi = 0;
		sgl->addr_lo = 0;
		sgl->word2 = 0;
		bf_set(lpfc_sli4_sge_type, sgl, LPFC_SGE_TYPE_SKIP);
		sgl->word2 = cpu_to_le32(sgl->word2);
		sgl->sge_len = 0;
		sgl++;
		ctxp->state = LPFC_NVMET_STE_DATA;
		atomic_inc(&tgtp->xmt_fcp_write);
		break;

	case NVMET_FCOP_RSP:
		/* Words 0 - 2 */
		physaddr = rsp->rspdma;
		wqe->fcp_trsp.bde.tus.f.bdeFlags = BUFF_TYPE_BDE_64;
		wqe->fcp_trsp.bde.tus.f.bdeSize = rsp->rsplen;
		wqe->fcp_trsp.bde.addrLow =
			cpu_to_le32(putPaddrLow(physaddr));
		wqe->fcp_trsp.bde.addrHigh =
			cpu_to_le32(putPaddrHigh(physaddr));

		/* Word 3 */
		wqe->fcp_trsp.response_len = rsp->rsplen;

		/* Word 4 */
		wqe->fcp_trsp.rsvd_4_5[0] = 0;


		/* Word 5 */

		/* Word 6 */
		bf_set(wqe_ctxt_tag, &wqe->fcp_trsp.wqe_com,
		       phba->sli4_hba.rpi_ids[ndlp->nlp_rpi]);
		bf_set(wqe_xri_tag, &wqe->fcp_trsp.wqe_com,
		       nvmewqe->sli4_xritag);

		/* Word 7 */
		bf_set(wqe_ag, &wqe->fcp_trsp.wqe_com, 1);
		bf_set(wqe_cmnd, &wqe->fcp_trsp.wqe_com, CMD_FCP_TRSP64_WQE);

		/* Word 8 */
		wqe->fcp_trsp.wqe_com.abort_tag = nvmewqe->iotag;

		/* Word 9 */
		bf_set(wqe_reqtag, &wqe->fcp_trsp.wqe_com, nvmewqe->iotag);
		bf_set(wqe_rcvoxid, &wqe->fcp_trsp.wqe_com, ctxp->oxid);

		/* Word 10 */
		bf_set(wqe_nvme, &wqe->fcp_trsp.wqe_com, 1);
		bf_set(wqe_dbde, &wqe->fcp_trsp.wqe_com, 0);
		bf_set(wqe_iod, &wqe->fcp_trsp.wqe_com, LPFC_WQE_IOD_WRITE);
		bf_set(wqe_lenloc, &wqe->fcp_trsp.wqe_com,
		       LPFC_WQE_LENLOC_WORD3);
		bf_set(wqe_xc, &wqe->fcp_trsp.wqe_com, xc);
		bf_set(wqe_nvme, &wqe->fcp_trsp.wqe_com, 1);
		if (phba->cfg_nvme_oas)
			bf_set(wqe_oas, &wqe->fcp_trsp.wqe_com, 1);

		/* Word 11 */
		bf_set(wqe_cqid, &wqe->fcp_trsp.wqe_com,
		       LPFC_WQE_CQ_ID_DEFAULT);
		bf_set(wqe_cmd_type, &wqe->fcp_trsp.wqe_com,
		       FCP_COMMAND_TRSP);
		bf_set(wqe_sup, &wqe->fcp_tsend.wqe_com, 0);
		ctxp->state = LPFC_NVMET_STE_RSP;

		if (rsp->rsplen == LPFC_NVMET_SUCCESS_LEN) {
			/* Good response - all zero's on wire */
			bf_set(wqe_wqes, &wqe->fcp_trsp.wqe_com, 0);
			bf_set(wqe_irsp, &wqe->fcp_trsp.wqe_com, 0);
			bf_set(wqe_irsplen, &wqe->fcp_trsp.wqe_com, 0);
		} else {
			bf_set(wqe_wqes, &wqe->fcp_trsp.wqe_com, 1);
			bf_set(wqe_irsp, &wqe->fcp_trsp.wqe_com, 1);
			bf_set(wqe_irsplen, &wqe->fcp_trsp.wqe_com,
			       ((rsp->rsplen >> 2) - 1));
			memcpy(&wqe->words[16], rsp->rspaddr, rsp->rsplen);
		}

		/* Use rspbuf, NOT sg list */
		rsp->sg_cnt = 0;
		sgl->word2 = 0;
		atomic_inc(&tgtp->xmt_fcp_rsp);
		break;

	default:
		lpfc_printf_log(phba, KERN_INFO, LOG_NVME_IOERR,
				"6064 Unknown Rsp Op %d\n",
				rsp->op);
		return NULL;
	}

	nvmewqe->retry = 1;
	nvmewqe->vport = phba->pport;
	nvmewqe->drvrTimeout = (phba->fc_ratov * 3) + LPFC_DRVR_TIMEOUT;
	nvmewqe->context1 = ndlp;

	for (i = 0; i < rsp->sg_cnt; i++) {
		sgel = &rsp->sg[i];
		physaddr = sg_dma_address(sgel);
		cnt = sg_dma_len(sgel);
		sgl->addr_hi = putPaddrHigh(physaddr);
		sgl->addr_lo = putPaddrLow(physaddr);
		sgl->word2 = 0;
		bf_set(lpfc_sli4_sge_type, sgl, LPFC_SGE_TYPE_DATA);
		bf_set(lpfc_sli4_sge_offset, sgl, ctxp->offset);
		if ((i+1) == rsp->sg_cnt)
			bf_set(lpfc_sli4_sge_last, sgl, 1);
		sgl->word2 = cpu_to_le32(sgl->word2);
		sgl->sge_len = cpu_to_le32(cnt);
		sgl++;
		ctxp->offset += cnt;
	}
	return nvmewqe;
}

/**
 * lpfc_nvmet_sol_fcp_abort_cmp - Completion handler for ABTS
 * @phba: Pointer to HBA context object.
 * @cmdwqe: Pointer to driver command WQE object.
 * @wcqe: Pointer to driver response CQE object.
 *
 * The function is called from SLI ring event handler with no
 * lock held. This function is the completion handler for NVME ABTS for FCP cmds
 * The function frees memory resources used for the NVME commands.
 **/
static void
lpfc_nvmet_sol_fcp_abort_cmp(struct lpfc_hba *phba, struct lpfc_iocbq *cmdwqe,
			     struct lpfc_wcqe_complete *wcqe)
{
	struct lpfc_nvmet_rcv_ctx *ctxp;
	struct lpfc_nvmet_tgtport *tgtp;
	uint32_t status, result;
1806 1807
	unsigned long flags;
	bool released = false;
1808 1809 1810 1811 1812 1813 1814 1815 1816

	ctxp = cmdwqe->context2;
	status = bf_get(lpfc_wcqe_c_status, wcqe);
	result = wcqe->parameter;

	tgtp = (struct lpfc_nvmet_tgtport *)phba->targetport->private;
	atomic_inc(&tgtp->xmt_abort_cmpl);

	ctxp->state = LPFC_NVMET_STE_DONE;
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	/* Check if we already received a free context call
	 * and we have completed processing an abort situation.
	 */
1821
	spin_lock_irqsave(&ctxp->ctxlock, flags);
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	if ((ctxp->flag & LPFC_NVMET_CTX_RLS) &&
	    !(ctxp->flag & LPFC_NVMET_XBUSY)) {
		list_del(&ctxp->list);
1825
		released = true;
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	}
1827 1828 1829
	ctxp->flag &= ~LPFC_NVMET_ABORT_OP;
	spin_unlock_irqrestore(&ctxp->ctxlock, flags);

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	lpfc_printf_log(phba, KERN_ERR, LOG_NVME_ABTS,
			"6165 ABORT cmpl: xri x%x flg x%x (%d) "
			"WCQE: %08x %08x %08x %08x\n",
			ctxp->oxid, ctxp->flag, released,
			wcqe->word0, wcqe->total_data_placed,
			result, wcqe->word3);

1837 1838 1839 1840 1841 1842
	/*
	 * if transport has released ctx, then can reuse it. Otherwise,
	 * will be recycled by transport release call.
	 */
	if (released)
		lpfc_nvmet_rq_post(phba, ctxp, &ctxp->rqb_buffer->hbuf);
1843 1844 1845 1846

	cmdwqe->context2 = NULL;
	cmdwqe->context3 = NULL;
	lpfc_sli_release_iocbq(phba, cmdwqe);
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	/* Since iaab/iaar are NOT set, there is no work left.
	 * For LPFC_NVMET_XBUSY, lpfc_sli4_nvmet_xri_aborted
	 * should have been called already.
	 */
1852 1853 1854
}

/**
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 * lpfc_nvmet_unsol_fcp_abort_cmp - Completion handler for ABTS
1856 1857 1858 1859 1860 1861 1862 1863 1864
 * @phba: Pointer to HBA context object.
 * @cmdwqe: Pointer to driver command WQE object.
 * @wcqe: Pointer to driver response CQE object.
 *
 * The function is called from SLI ring event handler with no
 * lock held. This function is the completion handler for NVME ABTS for FCP cmds
 * The function frees memory resources used for the NVME commands.
 **/
static void
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lpfc_nvmet_unsol_fcp_abort_cmp(struct lpfc_hba *phba, struct lpfc_iocbq *cmdwqe,
			       struct lpfc_wcqe_complete *wcqe)
1867 1868 1869
{
	struct lpfc_nvmet_rcv_ctx *ctxp;
	struct lpfc_nvmet_tgtport *tgtp;
1870
	unsigned long flags;
1871
	uint32_t status, result;
1872
	bool released = false;
1873 1874 1875 1876 1877 1878 1879 1880

	ctxp = cmdwqe->context2;
	status = bf_get(lpfc_wcqe_c_status, wcqe);
	result = wcqe->parameter;

	tgtp = (struct lpfc_nvmet_tgtport *)phba->targetport->private;
	atomic_inc(&tgtp->xmt_abort_cmpl);

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1881 1882 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901 1902 1903 1904 1905 1906 1907 1908 1909
	if (!ctxp) {
		/* if context is clear, related io alrady complete */
		lpfc_printf_log(phba, KERN_INFO, LOG_NVME_ABTS,
				"6070 ABTS cmpl: WCQE: %08x %08x %08x %08x\n",
				wcqe->word0, wcqe->total_data_placed,
				result, wcqe->word3);
		return;
	}

	/* Sanity check */
	if (ctxp->state != LPFC_NVMET_STE_ABORT) {
		lpfc_printf_log(phba, KERN_ERR, LOG_NVME_ABTS,
				"6112 ABTS Wrong state:%d oxid x%x\n",
				ctxp->state, ctxp->oxid);
	}

	/* Check if we already received a free context call
	 * and we have completed processing an abort situation.
	 */
	ctxp->state = LPFC_NVMET_STE_DONE;
	spin_lock_irqsave(&ctxp->ctxlock, flags);
	if ((ctxp->flag & LPFC_NVMET_CTX_RLS) &&
	    !(ctxp->flag & LPFC_NVMET_XBUSY)) {
		list_del(&ctxp->list);
		released = true;
	}
	ctxp->flag &= ~LPFC_NVMET_ABORT_OP;
	spin_unlock_irqrestore(&ctxp->ctxlock, flags);

1910
	lpfc_printf_log(phba, KERN_INFO, LOG_NVME_ABTS,
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1911 1912 1913 1914
			"6316 ABTS cmpl xri x%x flg x%x (%x) "
			"WCQE: %08x %08x %08x %08x\n",
			ctxp->oxid, ctxp->flag, released,
			wcqe->word0, wcqe->total_data_placed,
1915
			result, wcqe->word3);
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	/*
	 * if transport has released ctx, then can reuse it. Otherwise,
	 * will be recycled by transport release call.
	 */
	if (released)
		lpfc_nvmet_rq_post(phba, ctxp, &ctxp->rqb_buffer->hbuf);
1922

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	cmdwqe->context2 = NULL;
	cmdwqe->context3 = NULL;
1925

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	/* Since iaab/iaar are NOT set, there is no work left.
	 * For LPFC_NVMET_XBUSY, lpfc_sli4_nvmet_xri_aborted
	 * should have been called already.
	 */
1930 1931 1932 1933 1934 1935 1936 1937 1938 1939 1940 1941 1942 1943 1944 1945 1946 1947 1948 1949 1950 1951 1952 1953 1954 1955 1956 1957 1958 1959 1960 1961 1962 1963 1964 1965 1966 1967 1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980 1981
}

/**
 * lpfc_nvmet_xmt_ls_abort_cmp - Completion handler for ABTS
 * @phba: Pointer to HBA context object.
 * @cmdwqe: Pointer to driver command WQE object.
 * @wcqe: Pointer to driver response CQE object.
 *
 * The function is called from SLI ring event handler with no
 * lock held. This function is the completion handler for NVME ABTS for LS cmds
 * The function frees memory resources used for the NVME commands.
 **/
static void
lpfc_nvmet_xmt_ls_abort_cmp(struct lpfc_hba *phba, struct lpfc_iocbq *cmdwqe,
			    struct lpfc_wcqe_complete *wcqe)
{
	struct lpfc_nvmet_rcv_ctx *ctxp;
	struct lpfc_nvmet_tgtport *tgtp;
	uint32_t status, result;

	ctxp = cmdwqe->context2;
	status = bf_get(lpfc_wcqe_c_status, wcqe);
	result = wcqe->parameter;

	tgtp = (struct lpfc_nvmet_tgtport *)phba->targetport->private;
	atomic_inc(&tgtp->xmt_abort_cmpl);

	lpfc_printf_log(phba, KERN_INFO, LOG_NVME_ABTS,
			"6083 Abort cmpl: ctx %p WCQE: %08x %08x %08x %08x\n",
			ctxp, wcqe->word0, wcqe->total_data_placed,
			result, wcqe->word3);

	if (ctxp) {
		cmdwqe->context2 = NULL;
		cmdwqe->context3 = NULL;
		lpfc_sli_release_iocbq(phba, cmdwqe);
		kfree(ctxp);
	} else
		lpfc_sli_release_iocbq(phba, cmdwqe);
}

static int
lpfc_nvmet_unsol_issue_abort(struct lpfc_hba *phba,
			     struct lpfc_nvmet_rcv_ctx *ctxp,
			     uint32_t sid, uint16_t xri)
{
	struct lpfc_nvmet_tgtport *tgtp;
	struct lpfc_iocbq *abts_wqeq;
	union lpfc_wqe *wqe_abts;
	struct lpfc_nodelist *ndlp;

	lpfc_printf_log(phba, KERN_INFO, LOG_NVME_ABTS,
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			"6067 ABTS: sid %x xri x%x/x%x\n",
1983
			sid, xri, ctxp->wqeq->sli4_xritag);
1984 1985

	tgtp = (struct lpfc_nvmet_tgtport *)phba->targetport->private;
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	if (!ctxp->wqeq) {
		ctxp->wqeq = ctxp->rqb_buffer->iocbq;
		ctxp->wqeq->hba_wqidx = 0;
	}
1990 1991 1992 1993 1994 1995 1996 1997

	ndlp = lpfc_findnode_did(phba->pport, sid);
	if (!ndlp || !NLP_CHK_NODE_ACT(ndlp) ||
	    ((ndlp->nlp_state != NLP_STE_UNMAPPED_NODE) &&
	    (ndlp->nlp_state != NLP_STE_MAPPED_NODE))) {
		atomic_inc(&tgtp->xmt_abort_rsp_error);
		lpfc_printf_log(phba, KERN_WARNING, LOG_NVME_ABTS,
				"6134 Drop ABTS - wrong NDLP state x%x.\n",
1998
				(ndlp) ? ndlp->nlp_state : NLP_STE_MAX_STATE);
1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037 2038 2039 2040 2041 2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052 2053 2054 2055 2056 2057 2058 2059 2060 2061 2062 2063 2064 2065 2066 2067 2068 2069 2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083 2084 2085 2086 2087 2088 2089 2090 2091 2092 2093 2094

		/* No failure to an ABTS request. */
		return 0;
	}

	abts_wqeq = ctxp->wqeq;
	wqe_abts = &abts_wqeq->wqe;
	ctxp->state = LPFC_NVMET_STE_ABORT;

	/*
	 * Since we zero the whole WQE, we need to ensure we set the WQE fields
	 * that were initialized in lpfc_sli4_nvmet_alloc.
	 */
	memset(wqe_abts, 0, sizeof(union lpfc_wqe));

	/* Word 5 */
	bf_set(wqe_dfctl, &wqe_abts->xmit_sequence.wge_ctl, 0);
	bf_set(wqe_ls, &wqe_abts->xmit_sequence.wge_ctl, 1);
	bf_set(wqe_la, &wqe_abts->xmit_sequence.wge_ctl, 0);
	bf_set(wqe_rctl, &wqe_abts->xmit_sequence.wge_ctl, FC_RCTL_BA_ABTS);
	bf_set(wqe_type, &wqe_abts->xmit_sequence.wge_ctl, FC_TYPE_BLS);

	/* Word 6 */
	bf_set(wqe_ctxt_tag, &wqe_abts->xmit_sequence.wqe_com,
	       phba->sli4_hba.rpi_ids[ndlp->nlp_rpi]);
	bf_set(wqe_xri_tag, &wqe_abts->xmit_sequence.wqe_com,
	       abts_wqeq->sli4_xritag);

	/* Word 7 */
	bf_set(wqe_cmnd, &wqe_abts->xmit_sequence.wqe_com,
	       CMD_XMIT_SEQUENCE64_WQE);
	bf_set(wqe_ct, &wqe_abts->xmit_sequence.wqe_com, SLI4_CT_RPI);
	bf_set(wqe_class, &wqe_abts->xmit_sequence.wqe_com, CLASS3);
	bf_set(wqe_pu, &wqe_abts->xmit_sequence.wqe_com, 0);

	/* Word 8 */
	wqe_abts->xmit_sequence.wqe_com.abort_tag = abts_wqeq->iotag;

	/* Word 9 */
	bf_set(wqe_reqtag, &wqe_abts->xmit_sequence.wqe_com, abts_wqeq->iotag);
	/* Needs to be set by caller */
	bf_set(wqe_rcvoxid, &wqe_abts->xmit_sequence.wqe_com, xri);

	/* Word 10 */
	bf_set(wqe_dbde, &wqe_abts->xmit_sequence.wqe_com, 1);
	bf_set(wqe_iod, &wqe_abts->xmit_sequence.wqe_com, LPFC_WQE_IOD_WRITE);
	bf_set(wqe_lenloc, &wqe_abts->xmit_sequence.wqe_com,
	       LPFC_WQE_LENLOC_WORD12);
	bf_set(wqe_ebde_cnt, &wqe_abts->xmit_sequence.wqe_com, 0);
	bf_set(wqe_qosd, &wqe_abts->xmit_sequence.wqe_com, 0);

	/* Word 11 */
	bf_set(wqe_cqid, &wqe_abts->xmit_sequence.wqe_com,
	       LPFC_WQE_CQ_ID_DEFAULT);
	bf_set(wqe_cmd_type, &wqe_abts->xmit_sequence.wqe_com,
	       OTHER_COMMAND);

	abts_wqeq->vport = phba->pport;
	abts_wqeq->context1 = ndlp;
	abts_wqeq->context2 = ctxp;
	abts_wqeq->context3 = NULL;
	abts_wqeq->rsvd2 = 0;
	/* hba_wqidx should already be setup from command we are aborting */
	abts_wqeq->iocb.ulpCommand = CMD_XMIT_SEQUENCE64_CR;
	abts_wqeq->iocb.ulpLe = 1;

	lpfc_printf_log(phba, KERN_INFO, LOG_NVME_ABTS,
			"6069 Issue ABTS to xri x%x reqtag x%x\n",
			xri, abts_wqeq->iotag);
	return 1;
}

static int
lpfc_nvmet_sol_fcp_issue_abort(struct lpfc_hba *phba,
			       struct lpfc_nvmet_rcv_ctx *ctxp,
			       uint32_t sid, uint16_t xri)
{
	struct lpfc_nvmet_tgtport *tgtp;
	struct lpfc_iocbq *abts_wqeq;
	union lpfc_wqe *abts_wqe;
	struct lpfc_nodelist *ndlp;
	unsigned long flags;
	int rc;

	tgtp = (struct lpfc_nvmet_tgtport *)phba->targetport->private;
	if (!ctxp->wqeq) {
		ctxp->wqeq = ctxp->rqb_buffer->iocbq;
		ctxp->wqeq->hba_wqidx = 0;
	}

	ndlp = lpfc_findnode_did(phba->pport, sid);
	if (!ndlp || !NLP_CHK_NODE_ACT(ndlp) ||
	    ((ndlp->nlp_state != NLP_STE_UNMAPPED_NODE) &&
	    (ndlp->nlp_state != NLP_STE_MAPPED_NODE))) {
		atomic_inc(&tgtp->xmt_abort_rsp_error);
		lpfc_printf_log(phba, KERN_WARNING, LOG_NVME_ABTS,
J
James Smart 已提交
2095
				"6160 Drop ABORT - wrong NDLP state x%x.\n",
2096
				(ndlp) ? ndlp->nlp_state : NLP_STE_MAX_STATE);
2097 2098

		/* No failure to an ABTS request. */
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		ctxp->flag &= ~LPFC_NVMET_ABORT_OP;
2100 2101 2102 2103 2104 2105 2106
		return 0;
	}

	/* Issue ABTS for this WQE based on iotag */
	ctxp->abort_wqeq = lpfc_sli_get_iocbq(phba);
	if (!ctxp->abort_wqeq) {
		lpfc_printf_log(phba, KERN_WARNING, LOG_NVME_ABTS,
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				"6161 ABORT failed: No wqeqs: "
2108 2109
				"xri: x%x\n", ctxp->oxid);
		/* No failure to an ABTS request. */
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		ctxp->flag &= ~LPFC_NVMET_ABORT_OP;
2111 2112 2113 2114 2115 2116 2117
		return 0;
	}
	abts_wqeq = ctxp->abort_wqeq;
	abts_wqe = &abts_wqeq->wqe;
	ctxp->state = LPFC_NVMET_STE_ABORT;

	/* Announce entry to new IO submit field. */
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	lpfc_printf_log(phba, KERN_INFO, LOG_NVME_ABTS,
			"6162 ABORT Request to rport DID x%06x "
2120 2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134
			"for xri x%x x%x\n",
			ctxp->sid, ctxp->oxid, ctxp->wqeq->sli4_xritag);

	/* If the hba is getting reset, this flag is set.  It is
	 * cleared when the reset is complete and rings reestablished.
	 */
	spin_lock_irqsave(&phba->hbalock, flags);
	/* driver queued commands are in process of being flushed */
	if (phba->hba_flag & HBA_NVME_IOQ_FLUSH) {
		spin_unlock_irqrestore(&phba->hbalock, flags);
		lpfc_printf_log(phba, KERN_ERR, LOG_NVME,
				"6163 Driver in reset cleanup - flushing "
				"NVME Req now. hba_flag x%x oxid x%x\n",
				phba->hba_flag, ctxp->oxid);
		lpfc_sli_release_iocbq(phba, abts_wqeq);
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		ctxp->flag &= ~LPFC_NVMET_ABORT_OP;
2136 2137 2138 2139 2140 2141 2142 2143 2144 2145 2146
		return 0;
	}

	/* Outstanding abort is in progress */
	if (abts_wqeq->iocb_flag & LPFC_DRIVER_ABORTED) {
		spin_unlock_irqrestore(&phba->hbalock, flags);
		lpfc_printf_log(phba, KERN_ERR, LOG_NVME,
				"6164 Outstanding NVME I/O Abort Request "
				"still pending on oxid x%x\n",
				ctxp->oxid);
		lpfc_sli_release_iocbq(phba, abts_wqeq);
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		ctxp->flag &= ~LPFC_NVMET_ABORT_OP;
2148 2149 2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160 2161 2162 2163 2164 2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185 2186 2187 2188 2189 2190 2191 2192 2193 2194
		return 0;
	}

	/* Ready - mark outstanding as aborted by driver. */
	abts_wqeq->iocb_flag |= LPFC_DRIVER_ABORTED;

	/* WQEs are reused.  Clear stale data and set key fields to
	 * zero like ia, iaab, iaar, xri_tag, and ctxt_tag.
	 */
	memset(abts_wqe, 0, sizeof(union lpfc_wqe));

	/* word 3 */
	bf_set(abort_cmd_criteria, &abts_wqe->abort_cmd, T_XRI_TAG);

	/* word 7 */
	bf_set(wqe_ct, &abts_wqe->abort_cmd.wqe_com, 0);
	bf_set(wqe_cmnd, &abts_wqe->abort_cmd.wqe_com, CMD_ABORT_XRI_CX);

	/* word 8 - tell the FW to abort the IO associated with this
	 * outstanding exchange ID.
	 */
	abts_wqe->abort_cmd.wqe_com.abort_tag = ctxp->wqeq->sli4_xritag;

	/* word 9 - this is the iotag for the abts_wqe completion. */
	bf_set(wqe_reqtag, &abts_wqe->abort_cmd.wqe_com,
	       abts_wqeq->iotag);

	/* word 10 */
	bf_set(wqe_qosd, &abts_wqe->abort_cmd.wqe_com, 1);
	bf_set(wqe_lenloc, &abts_wqe->abort_cmd.wqe_com, LPFC_WQE_LENLOC_NONE);

	/* word 11 */
	bf_set(wqe_cmd_type, &abts_wqe->abort_cmd.wqe_com, OTHER_COMMAND);
	bf_set(wqe_wqec, &abts_wqe->abort_cmd.wqe_com, 1);
	bf_set(wqe_cqid, &abts_wqe->abort_cmd.wqe_com, LPFC_WQE_CQ_ID_DEFAULT);

	/* ABTS WQE must go to the same WQ as the WQE to be aborted */
	abts_wqeq->hba_wqidx = ctxp->wqeq->hba_wqidx;
	abts_wqeq->wqe_cmpl = lpfc_nvmet_sol_fcp_abort_cmp;
	abts_wqeq->iocb_cmpl = 0;
	abts_wqeq->iocb_flag |= LPFC_IO_NVME;
	abts_wqeq->context2 = ctxp;
	rc = lpfc_sli4_issue_wqe(phba, LPFC_FCP_RING, abts_wqeq);
	spin_unlock_irqrestore(&phba->hbalock, flags);
	if (rc == WQE_SUCCESS)
		return 0;

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	ctxp->flag &= ~LPFC_NVMET_ABORT_OP;
2196
	lpfc_sli_release_iocbq(phba, abts_wqeq);
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2197 2198
	lpfc_printf_log(phba, KERN_ERR, LOG_NVME_ABTS,
			"6166 Failed ABORT issue_wqe with status x%x "
2199 2200 2201 2202 2203 2204 2205 2206 2207 2208 2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220 2221 2222 2223 2224 2225 2226
			"for oxid x%x.\n",
			rc, ctxp->oxid);
	return 1;
}


static int
lpfc_nvmet_unsol_fcp_issue_abort(struct lpfc_hba *phba,
				 struct lpfc_nvmet_rcv_ctx *ctxp,
				 uint32_t sid, uint16_t xri)
{
	struct lpfc_nvmet_tgtport *tgtp;
	struct lpfc_iocbq *abts_wqeq;
	unsigned long flags;
	int rc;

	tgtp = (struct lpfc_nvmet_tgtport *)phba->targetport->private;
	if (!ctxp->wqeq) {
		ctxp->wqeq = ctxp->rqb_buffer->iocbq;
		ctxp->wqeq->hba_wqidx = 0;
	}

	rc = lpfc_nvmet_unsol_issue_abort(phba, ctxp, sid, xri);
	if (rc == 0)
		goto aerr;

	spin_lock_irqsave(&phba->hbalock, flags);
	abts_wqeq = ctxp->wqeq;
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James Smart 已提交
2227 2228
	abts_wqeq->wqe_cmpl = lpfc_nvmet_unsol_fcp_abort_cmp;
	abts_wqeq->iocb_cmpl = NULL;
2229 2230 2231 2232 2233 2234 2235 2236 2237
	abts_wqeq->iocb_flag |= LPFC_IO_NVMET;
	rc = lpfc_sli4_issue_wqe(phba, LPFC_FCP_RING, abts_wqeq);
	spin_unlock_irqrestore(&phba->hbalock, flags);
	if (rc == WQE_SUCCESS) {
		atomic_inc(&tgtp->xmt_abort_rsp);
		return 0;
	}

aerr:
J
James Smart 已提交
2238
	ctxp->flag &= ~LPFC_NVMET_ABORT_OP;
2239 2240 2241 2242 2243 2244 2245 2246 2247 2248 2249 2250 2251 2252 2253 2254 2255 2256 2257 2258 2259 2260 2261 2262 2263 2264 2265 2266 2267 2268 2269 2270 2271 2272 2273 2274 2275 2276 2277 2278 2279 2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293
	atomic_inc(&tgtp->xmt_abort_rsp_error);
	lpfc_printf_log(phba, KERN_WARNING, LOG_NVME_ABTS,
			"6135 Failed to Issue ABTS for oxid x%x. Status x%x\n",
			ctxp->oxid, rc);
	return 1;
}

static int
lpfc_nvmet_unsol_ls_issue_abort(struct lpfc_hba *phba,
				struct lpfc_nvmet_rcv_ctx *ctxp,
				uint32_t sid, uint16_t xri)
{
	struct lpfc_nvmet_tgtport *tgtp;
	struct lpfc_iocbq *abts_wqeq;
	union lpfc_wqe *wqe_abts;
	unsigned long flags;
	int rc;

	tgtp = (struct lpfc_nvmet_tgtport *)phba->targetport->private;
	if (!ctxp->wqeq) {
		/* Issue ABTS for this WQE based on iotag */
		ctxp->wqeq = lpfc_sli_get_iocbq(phba);
		if (!ctxp->wqeq) {
			lpfc_printf_log(phba, KERN_WARNING, LOG_NVME_ABTS,
					"6068 Abort failed: No wqeqs: "
					"xri: x%x\n", xri);
			/* No failure to an ABTS request. */
			kfree(ctxp);
			return 0;
		}
	}
	abts_wqeq = ctxp->wqeq;
	wqe_abts = &abts_wqeq->wqe;
	lpfc_nvmet_unsol_issue_abort(phba, ctxp, sid, xri);

	spin_lock_irqsave(&phba->hbalock, flags);
	abts_wqeq->wqe_cmpl = lpfc_nvmet_xmt_ls_abort_cmp;
	abts_wqeq->iocb_cmpl = 0;
	abts_wqeq->iocb_flag |=  LPFC_IO_NVME_LS;
	rc = lpfc_sli4_issue_wqe(phba, LPFC_ELS_RING, abts_wqeq);
	spin_unlock_irqrestore(&phba->hbalock, flags);
	if (rc == WQE_SUCCESS) {
		atomic_inc(&tgtp->xmt_abort_rsp);
		return 0;
	}

	atomic_inc(&tgtp->xmt_abort_rsp_error);
	abts_wqeq->context2 = NULL;
	abts_wqeq->context3 = NULL;
	lpfc_sli_release_iocbq(phba, abts_wqeq);
	kfree(ctxp);
	lpfc_printf_log(phba, KERN_WARNING, LOG_NVME_ABTS,
			"6056 Failed to Issue ABTS. Status x%x\n", rc);
	return 0;
}