1 /*******************************************************************
2 * This file is part of the Emulex Linux Device Driver for *
3 * Fibre Channel Host Bus Adapters. *
4 * Copyright (C) 2017-2019 Broadcom. All Rights Reserved. The term *
5 * “Broadcom” refers to Broadcom Inc. and/or its subsidiaries. *
6 * Copyright (C) 2004-2016 Emulex. All rights reserved. *
7 * EMULEX and SLI are trademarks of Emulex. *
8 * www.broadcom.com *
9 * Portions Copyright (C) 2004-2005 Christoph Hellwig *
10 * *
11 * This program is free software; you can redistribute it and/or *
12 * modify it under the terms of version 2 of the GNU General *
13 * Public License as published by the Free Software Foundation. *
14 * This program is distributed in the hope that it will be useful. *
15 * ALL EXPRESS OR IMPLIED CONDITIONS, REPRESENTATIONS AND *
16 * WARRANTIES, INCLUDING ANY IMPLIED WARRANTY OF MERCHANTABILITY, *
17 * FITNESS FOR A PARTICULAR PURPOSE, OR NON-INFRINGEMENT, ARE *
18 * DISCLAIMED, EXCEPT TO THE EXTENT THAT SUCH DISCLAIMERS ARE HELD *
19 * TO BE LEGALLY INVALID. See the GNU General Public License for *
20 * more details, a copy of which can be found in the file COPYING *
21 * included with this package. *
22 ********************************************************************/
23 #include <linux/pci.h>
24 #include <linux/slab.h>
25 #include <linux/interrupt.h>
26 #include <linux/delay.h>
27 #include <asm/unaligned.h>
28 #include <linux/crc-t10dif.h>
29 #include <net/checksum.h>
30
31 #include <scsi/scsi.h>
32 #include <scsi/scsi_device.h>
33 #include <scsi/scsi_eh.h>
34 #include <scsi/scsi_host.h>
35 #include <scsi/scsi_tcq.h>
36 #include <scsi/scsi_transport_fc.h>
37 #include <scsi/fc/fc_fs.h>
38
39 #include "lpfc_version.h"
40 #include "lpfc_hw4.h"
41 #include "lpfc_hw.h"
42 #include "lpfc_sli.h"
43 #include "lpfc_sli4.h"
44 #include "lpfc_nl.h"
45 #include "lpfc_disc.h"
46 #include "lpfc.h"
47 #include "lpfc_nvme.h"
48 #include "lpfc_scsi.h"
49 #include "lpfc_logmsg.h"
50 #include "lpfc_crtn.h"
51 #include "lpfc_vport.h"
52 #include "lpfc_debugfs.h"
53
54 /* NVME initiator-based functions */
55
56 static struct lpfc_io_buf *
57 lpfc_get_nvme_buf(struct lpfc_hba *phba, struct lpfc_nodelist *ndlp,
58 int idx, int expedite);
59
60 static void
61 lpfc_release_nvme_buf(struct lpfc_hba *, struct lpfc_io_buf *);
62
63 static struct nvme_fc_port_template lpfc_nvme_template;
64
65 static union lpfc_wqe128 lpfc_iread_cmd_template;
66 static union lpfc_wqe128 lpfc_iwrite_cmd_template;
67 static union lpfc_wqe128 lpfc_icmnd_cmd_template;
68
69 /* Setup WQE templates for NVME IOs */
70 void
lpfc_nvme_cmd_template(void)71 lpfc_nvme_cmd_template(void)
72 {
73 union lpfc_wqe128 *wqe;
74
75 /* IREAD template */
76 wqe = &lpfc_iread_cmd_template;
77 memset(wqe, 0, sizeof(union lpfc_wqe128));
78
79 /* Word 0, 1, 2 - BDE is variable */
80
81 /* Word 3 - cmd_buff_len, payload_offset_len is zero */
82
83 /* Word 4 - total_xfer_len is variable */
84
85 /* Word 5 - is zero */
86
87 /* Word 6 - ctxt_tag, xri_tag is variable */
88
89 /* Word 7 */
90 bf_set(wqe_cmnd, &wqe->fcp_iread.wqe_com, CMD_FCP_IREAD64_WQE);
91 bf_set(wqe_pu, &wqe->fcp_iread.wqe_com, PARM_READ_CHECK);
92 bf_set(wqe_class, &wqe->fcp_iread.wqe_com, CLASS3);
93 bf_set(wqe_ct, &wqe->fcp_iread.wqe_com, SLI4_CT_RPI);
94
95 /* Word 8 - abort_tag is variable */
96
97 /* Word 9 - reqtag is variable */
98
99 /* Word 10 - dbde, wqes is variable */
100 bf_set(wqe_qosd, &wqe->fcp_iread.wqe_com, 0);
101 bf_set(wqe_nvme, &wqe->fcp_iread.wqe_com, 1);
102 bf_set(wqe_iod, &wqe->fcp_iread.wqe_com, LPFC_WQE_IOD_READ);
103 bf_set(wqe_lenloc, &wqe->fcp_iread.wqe_com, LPFC_WQE_LENLOC_WORD4);
104 bf_set(wqe_dbde, &wqe->fcp_iread.wqe_com, 0);
105 bf_set(wqe_wqes, &wqe->fcp_iread.wqe_com, 1);
106
107 /* Word 11 - pbde is variable */
108 bf_set(wqe_cmd_type, &wqe->fcp_iread.wqe_com, NVME_READ_CMD);
109 bf_set(wqe_cqid, &wqe->fcp_iread.wqe_com, LPFC_WQE_CQ_ID_DEFAULT);
110 bf_set(wqe_pbde, &wqe->fcp_iread.wqe_com, 1);
111
112 /* Word 12 - is zero */
113
114 /* Word 13, 14, 15 - PBDE is variable */
115
116 /* IWRITE template */
117 wqe = &lpfc_iwrite_cmd_template;
118 memset(wqe, 0, sizeof(union lpfc_wqe128));
119
120 /* Word 0, 1, 2 - BDE is variable */
121
122 /* Word 3 - cmd_buff_len, payload_offset_len is zero */
123
124 /* Word 4 - total_xfer_len is variable */
125
126 /* Word 5 - initial_xfer_len is variable */
127
128 /* Word 6 - ctxt_tag, xri_tag is variable */
129
130 /* Word 7 */
131 bf_set(wqe_cmnd, &wqe->fcp_iwrite.wqe_com, CMD_FCP_IWRITE64_WQE);
132 bf_set(wqe_pu, &wqe->fcp_iwrite.wqe_com, PARM_READ_CHECK);
133 bf_set(wqe_class, &wqe->fcp_iwrite.wqe_com, CLASS3);
134 bf_set(wqe_ct, &wqe->fcp_iwrite.wqe_com, SLI4_CT_RPI);
135
136 /* Word 8 - abort_tag is variable */
137
138 /* Word 9 - reqtag is variable */
139
140 /* Word 10 - dbde, wqes is variable */
141 bf_set(wqe_qosd, &wqe->fcp_iwrite.wqe_com, 0);
142 bf_set(wqe_nvme, &wqe->fcp_iwrite.wqe_com, 1);
143 bf_set(wqe_iod, &wqe->fcp_iwrite.wqe_com, LPFC_WQE_IOD_WRITE);
144 bf_set(wqe_lenloc, &wqe->fcp_iwrite.wqe_com, LPFC_WQE_LENLOC_WORD4);
145 bf_set(wqe_dbde, &wqe->fcp_iwrite.wqe_com, 0);
146 bf_set(wqe_wqes, &wqe->fcp_iwrite.wqe_com, 1);
147
148 /* Word 11 - pbde is variable */
149 bf_set(wqe_cmd_type, &wqe->fcp_iwrite.wqe_com, NVME_WRITE_CMD);
150 bf_set(wqe_cqid, &wqe->fcp_iwrite.wqe_com, LPFC_WQE_CQ_ID_DEFAULT);
151 bf_set(wqe_pbde, &wqe->fcp_iwrite.wqe_com, 1);
152
153 /* Word 12 - is zero */
154
155 /* Word 13, 14, 15 - PBDE is variable */
156
157 /* ICMND template */
158 wqe = &lpfc_icmnd_cmd_template;
159 memset(wqe, 0, sizeof(union lpfc_wqe128));
160
161 /* Word 0, 1, 2 - BDE is variable */
162
163 /* Word 3 - payload_offset_len is variable */
164
165 /* Word 4, 5 - is zero */
166
167 /* Word 6 - ctxt_tag, xri_tag is variable */
168
169 /* Word 7 */
170 bf_set(wqe_cmnd, &wqe->fcp_icmd.wqe_com, CMD_FCP_ICMND64_WQE);
171 bf_set(wqe_pu, &wqe->fcp_icmd.wqe_com, 0);
172 bf_set(wqe_class, &wqe->fcp_icmd.wqe_com, CLASS3);
173 bf_set(wqe_ct, &wqe->fcp_icmd.wqe_com, SLI4_CT_RPI);
174
175 /* Word 8 - abort_tag is variable */
176
177 /* Word 9 - reqtag is variable */
178
179 /* Word 10 - dbde, wqes is variable */
180 bf_set(wqe_qosd, &wqe->fcp_icmd.wqe_com, 1);
181 bf_set(wqe_nvme, &wqe->fcp_icmd.wqe_com, 1);
182 bf_set(wqe_iod, &wqe->fcp_icmd.wqe_com, LPFC_WQE_IOD_NONE);
183 bf_set(wqe_lenloc, &wqe->fcp_icmd.wqe_com, LPFC_WQE_LENLOC_NONE);
184 bf_set(wqe_dbde, &wqe->fcp_icmd.wqe_com, 0);
185 bf_set(wqe_wqes, &wqe->fcp_icmd.wqe_com, 1);
186
187 /* Word 11 */
188 bf_set(wqe_cmd_type, &wqe->fcp_icmd.wqe_com, FCP_COMMAND);
189 bf_set(wqe_cqid, &wqe->fcp_icmd.wqe_com, LPFC_WQE_CQ_ID_DEFAULT);
190 bf_set(wqe_pbde, &wqe->fcp_icmd.wqe_com, 0);
191
192 /* Word 12, 13, 14, 15 - is zero */
193 }
194
195 /**
196 * lpfc_nvme_prep_abort_wqe - set up 'abort' work queue entry.
197 * @pwqeq: Pointer to command iocb.
198 * @xritag: Tag that uniqely identifies the local exchange resource.
199 * @opt: Option bits -
200 * bit 0 = inhibit sending abts on the link
201 *
202 * This function is called with hbalock held.
203 **/
204 void
lpfc_nvme_prep_abort_wqe(struct lpfc_iocbq * pwqeq,u16 xritag,u8 opt)205 lpfc_nvme_prep_abort_wqe(struct lpfc_iocbq *pwqeq, u16 xritag, u8 opt)
206 {
207 union lpfc_wqe128 *wqe = &pwqeq->wqe;
208
209 /* WQEs are reused. Clear stale data and set key fields to
210 * zero like ia, iaab, iaar, xri_tag, and ctxt_tag.
211 */
212 memset(wqe, 0, sizeof(*wqe));
213
214 if (opt & INHIBIT_ABORT)
215 bf_set(abort_cmd_ia, &wqe->abort_cmd, 1);
216 /* Abort specified xri tag, with the mask deliberately zeroed */
217 bf_set(abort_cmd_criteria, &wqe->abort_cmd, T_XRI_TAG);
218
219 bf_set(wqe_cmnd, &wqe->abort_cmd.wqe_com, CMD_ABORT_XRI_CX);
220
221 /* Abort the IO associated with this outstanding exchange ID. */
222 wqe->abort_cmd.wqe_com.abort_tag = xritag;
223
224 /* iotag for the wqe completion. */
225 bf_set(wqe_reqtag, &wqe->abort_cmd.wqe_com, pwqeq->iotag);
226
227 bf_set(wqe_qosd, &wqe->abort_cmd.wqe_com, 1);
228 bf_set(wqe_lenloc, &wqe->abort_cmd.wqe_com, LPFC_WQE_LENLOC_NONE);
229
230 bf_set(wqe_cmd_type, &wqe->abort_cmd.wqe_com, OTHER_COMMAND);
231 bf_set(wqe_wqec, &wqe->abort_cmd.wqe_com, 1);
232 bf_set(wqe_cqid, &wqe->abort_cmd.wqe_com, LPFC_WQE_CQ_ID_DEFAULT);
233 }
234
235 /**
236 * lpfc_nvme_create_queue -
237 * @pnvme_lport: Transport localport that LS is to be issued from
238 * @lpfc_pnvme: Pointer to the driver's nvme instance data
239 * @qidx: An cpu index used to affinitize IO queues and MSIX vectors.
240 * @qsize: Size of the queue in bytes
241 * @handle: An opaque driver handle used in follow-up calls.
242 *
243 * Driver registers this routine to preallocate and initialize any
244 * internal data structures to bind the @qidx to its internal IO queues.
245 * A hardware queue maps (qidx) to a specific driver MSI-X vector/EQ/CQ/WQ.
246 *
247 * Return value :
248 * 0 - Success
249 * -EINVAL - Unsupported input value.
250 * -ENOMEM - Could not alloc necessary memory
251 **/
252 static int
lpfc_nvme_create_queue(struct nvme_fc_local_port * pnvme_lport,unsigned int qidx,u16 qsize,void ** handle)253 lpfc_nvme_create_queue(struct nvme_fc_local_port *pnvme_lport,
254 unsigned int qidx, u16 qsize,
255 void **handle)
256 {
257 struct lpfc_nvme_lport *lport;
258 struct lpfc_vport *vport;
259 struct lpfc_nvme_qhandle *qhandle;
260 char *str;
261
262 if (!pnvme_lport->private)
263 return -ENOMEM;
264
265 lport = (struct lpfc_nvme_lport *)pnvme_lport->private;
266 vport = lport->vport;
267 qhandle = kzalloc(sizeof(struct lpfc_nvme_qhandle), GFP_KERNEL);
268 if (qhandle == NULL)
269 return -ENOMEM;
270
271 qhandle->cpu_id = raw_smp_processor_id();
272 qhandle->qidx = qidx;
273 /*
274 * NVME qidx == 0 is the admin queue, so both admin queue
275 * and first IO queue will use MSI-X vector and associated
276 * EQ/CQ/WQ at index 0. After that they are sequentially assigned.
277 */
278 if (qidx) {
279 str = "IO "; /* IO queue */
280 qhandle->index = ((qidx - 1) %
281 lpfc_nvme_template.max_hw_queues);
282 } else {
283 str = "ADM"; /* Admin queue */
284 qhandle->index = qidx;
285 }
286
287 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME,
288 "6073 Binding %s HdwQueue %d (cpu %d) to "
289 "hdw_queue %d qhandle x%px\n", str,
290 qidx, qhandle->cpu_id, qhandle->index, qhandle);
291 *handle = (void *)qhandle;
292 return 0;
293 }
294
295 /**
296 * lpfc_nvme_delete_queue -
297 * @pnvme_lport: Transport localport that LS is to be issued from
298 * @qidx: An cpu index used to affinitize IO queues and MSIX vectors.
299 * @handle: An opaque driver handle from lpfc_nvme_create_queue
300 *
301 * Driver registers this routine to free
302 * any internal data structures to bind the @qidx to its internal
303 * IO queues.
304 *
305 * Return value :
306 * 0 - Success
307 * TODO: What are the failure codes.
308 **/
309 static void
lpfc_nvme_delete_queue(struct nvme_fc_local_port * pnvme_lport,unsigned int qidx,void * handle)310 lpfc_nvme_delete_queue(struct nvme_fc_local_port *pnvme_lport,
311 unsigned int qidx,
312 void *handle)
313 {
314 struct lpfc_nvme_lport *lport;
315 struct lpfc_vport *vport;
316
317 if (!pnvme_lport->private)
318 return;
319
320 lport = (struct lpfc_nvme_lport *)pnvme_lport->private;
321 vport = lport->vport;
322
323 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME,
324 "6001 ENTER. lpfc_pnvme x%px, qidx x%x qhandle x%px\n",
325 lport, qidx, handle);
326 kfree(handle);
327 }
328
329 static void
lpfc_nvme_localport_delete(struct nvme_fc_local_port * localport)330 lpfc_nvme_localport_delete(struct nvme_fc_local_port *localport)
331 {
332 struct lpfc_nvme_lport *lport = localport->private;
333
334 lpfc_printf_vlog(lport->vport, KERN_INFO, LOG_NVME,
335 "6173 localport x%px delete complete\n",
336 lport);
337
338 /* release any threads waiting for the unreg to complete */
339 if (lport->vport->localport)
340 complete(lport->lport_unreg_cmp);
341 }
342
343 /* lpfc_nvme_remoteport_delete
344 *
345 * @remoteport: Pointer to an nvme transport remoteport instance.
346 *
347 * This is a template downcall. NVME transport calls this function
348 * when it has completed the unregistration of a previously
349 * registered remoteport.
350 *
351 * Return value :
352 * None
353 */
354 static void
lpfc_nvme_remoteport_delete(struct nvme_fc_remote_port * remoteport)355 lpfc_nvme_remoteport_delete(struct nvme_fc_remote_port *remoteport)
356 {
357 struct lpfc_nvme_rport *rport = remoteport->private;
358 struct lpfc_vport *vport;
359 struct lpfc_nodelist *ndlp;
360
361 ndlp = rport->ndlp;
362 if (!ndlp)
363 goto rport_err;
364
365 vport = ndlp->vport;
366 if (!vport)
367 goto rport_err;
368
369 /* Remove this rport from the lport's list - memory is owned by the
370 * transport. Remove the ndlp reference for the NVME transport before
371 * calling state machine to remove the node.
372 */
373 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_DISC,
374 "6146 remoteport delete of remoteport x%px\n",
375 remoteport);
376 spin_lock_irq(&vport->phba->hbalock);
377
378 /* The register rebind might have occurred before the delete
379 * downcall. Guard against this race.
380 */
381 if (ndlp->upcall_flags & NLP_WAIT_FOR_UNREG) {
382 ndlp->nrport = NULL;
383 ndlp->upcall_flags &= ~NLP_WAIT_FOR_UNREG;
384 spin_unlock_irq(&vport->phba->hbalock);
385
386 /* Remove original register reference. The host transport
387 * won't reference this rport/remoteport any further.
388 */
389 lpfc_nlp_put(ndlp);
390 } else {
391 spin_unlock_irq(&vport->phba->hbalock);
392 }
393
394 rport_err:
395 return;
396 }
397
398 /**
399 * lpfc_nvme_handle_lsreq - Process an unsolicited NVME LS request
400 * @phba: pointer to lpfc hba data structure.
401 * @axchg: pointer to exchange context for the NVME LS request
402 *
403 * This routine is used for processing an asychronously received NVME LS
404 * request. Any remaining validation is done and the LS is then forwarded
405 * to the nvme-fc transport via nvme_fc_rcv_ls_req().
406 *
407 * The calling sequence should be: nvme_fc_rcv_ls_req() -> (processing)
408 * -> lpfc_nvme_xmt_ls_rsp/cmp -> req->done.
409 * __lpfc_nvme_xmt_ls_rsp_cmp should free the allocated axchg.
410 *
411 * Returns 0 if LS was handled and delivered to the transport
412 * Returns 1 if LS failed to be handled and should be dropped
413 */
414 int
lpfc_nvme_handle_lsreq(struct lpfc_hba * phba,struct lpfc_async_xchg_ctx * axchg)415 lpfc_nvme_handle_lsreq(struct lpfc_hba *phba,
416 struct lpfc_async_xchg_ctx *axchg)
417 {
418 #if (IS_ENABLED(CONFIG_NVME_FC))
419 struct lpfc_vport *vport;
420 struct lpfc_nvme_rport *lpfc_rport;
421 struct nvme_fc_remote_port *remoteport;
422 struct lpfc_nvme_lport *lport;
423 uint32_t *payload = axchg->payload;
424 int rc;
425
426 vport = axchg->ndlp->vport;
427 lpfc_rport = axchg->ndlp->nrport;
428 if (!lpfc_rport)
429 return -EINVAL;
430
431 remoteport = lpfc_rport->remoteport;
432 if (!vport->localport)
433 return -EINVAL;
434
435 lport = vport->localport->private;
436 if (!lport)
437 return -EINVAL;
438
439 rc = nvme_fc_rcv_ls_req(remoteport, &axchg->ls_rsp, axchg->payload,
440 axchg->size);
441
442 lpfc_printf_log(phba, KERN_INFO, LOG_NVME_DISC,
443 "6205 NVME Unsol rcv: sz %d rc %d: %08x %08x %08x "
444 "%08x %08x %08x\n",
445 axchg->size, rc,
446 *payload, *(payload+1), *(payload+2),
447 *(payload+3), *(payload+4), *(payload+5));
448
449 if (!rc)
450 return 0;
451 #endif
452 return 1;
453 }
454
455 /**
456 * __lpfc_nvme_ls_req_cmp - Generic completion handler for a NVME
457 * LS request.
458 * @phba: Pointer to HBA context object
459 * @vport: The local port that issued the LS
460 * @cmdwqe: Pointer to driver command WQE object.
461 * @wcqe: Pointer to driver response CQE object.
462 *
463 * This function is the generic completion handler for NVME LS requests.
464 * The function updates any states and statistics, calls the transport
465 * ls_req done() routine, then tears down the command and buffers used
466 * for the LS request.
467 **/
468 void
__lpfc_nvme_ls_req_cmp(struct lpfc_hba * phba,struct lpfc_vport * vport,struct lpfc_iocbq * cmdwqe,struct lpfc_wcqe_complete * wcqe)469 __lpfc_nvme_ls_req_cmp(struct lpfc_hba *phba, struct lpfc_vport *vport,
470 struct lpfc_iocbq *cmdwqe,
471 struct lpfc_wcqe_complete *wcqe)
472 {
473 struct nvmefc_ls_req *pnvme_lsreq;
474 struct lpfc_dmabuf *buf_ptr;
475 struct lpfc_nodelist *ndlp;
476 uint32_t status;
477
478 pnvme_lsreq = (struct nvmefc_ls_req *)cmdwqe->context2;
479 ndlp = (struct lpfc_nodelist *)cmdwqe->context1;
480 status = bf_get(lpfc_wcqe_c_status, wcqe) & LPFC_IOCB_STATUS_MASK;
481
482 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_DISC,
483 "6047 NVMEx LS REQ %px cmpl DID %x Xri: %x "
484 "status %x reason x%x cmd:x%px lsreg:x%px bmp:x%px "
485 "ndlp:x%px\n",
486 pnvme_lsreq, ndlp ? ndlp->nlp_DID : 0,
487 cmdwqe->sli4_xritag, status,
488 (wcqe->parameter & 0xffff),
489 cmdwqe, pnvme_lsreq, cmdwqe->context3, ndlp);
490
491 lpfc_nvmeio_data(phba, "NVMEx LS CMPL: xri x%x stat x%x parm x%x\n",
492 cmdwqe->sli4_xritag, status, wcqe->parameter);
493
494 if (cmdwqe->context3) {
495 buf_ptr = (struct lpfc_dmabuf *)cmdwqe->context3;
496 lpfc_mbuf_free(phba, buf_ptr->virt, buf_ptr->phys);
497 kfree(buf_ptr);
498 cmdwqe->context3 = NULL;
499 }
500 if (pnvme_lsreq->done)
501 pnvme_lsreq->done(pnvme_lsreq, status);
502 else
503 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
504 "6046 NVMEx cmpl without done call back? "
505 "Data %px DID %x Xri: %x status %x\n",
506 pnvme_lsreq, ndlp ? ndlp->nlp_DID : 0,
507 cmdwqe->sli4_xritag, status);
508 if (ndlp) {
509 lpfc_nlp_put(ndlp);
510 cmdwqe->context1 = NULL;
511 }
512 lpfc_sli_release_iocbq(phba, cmdwqe);
513 }
514
515 static void
lpfc_nvme_ls_req_cmp(struct lpfc_hba * phba,struct lpfc_iocbq * cmdwqe,struct lpfc_wcqe_complete * wcqe)516 lpfc_nvme_ls_req_cmp(struct lpfc_hba *phba, struct lpfc_iocbq *cmdwqe,
517 struct lpfc_wcqe_complete *wcqe)
518 {
519 struct lpfc_vport *vport = cmdwqe->vport;
520 struct lpfc_nvme_lport *lport;
521 uint32_t status;
522
523 status = bf_get(lpfc_wcqe_c_status, wcqe) & LPFC_IOCB_STATUS_MASK;
524
525 if (vport->localport) {
526 lport = (struct lpfc_nvme_lport *)vport->localport->private;
527 if (lport) {
528 atomic_inc(&lport->fc4NvmeLsCmpls);
529 if (status) {
530 if (bf_get(lpfc_wcqe_c_xb, wcqe))
531 atomic_inc(&lport->cmpl_ls_xb);
532 atomic_inc(&lport->cmpl_ls_err);
533 }
534 }
535 }
536
537 __lpfc_nvme_ls_req_cmp(phba, vport, cmdwqe, wcqe);
538 }
539
540 static int
lpfc_nvme_gen_req(struct lpfc_vport * vport,struct lpfc_dmabuf * bmp,struct lpfc_dmabuf * inp,struct nvmefc_ls_req * pnvme_lsreq,void (* cmpl)(struct lpfc_hba *,struct lpfc_iocbq *,struct lpfc_wcqe_complete *),struct lpfc_nodelist * ndlp,uint32_t num_entry,uint32_t tmo,uint8_t retry)541 lpfc_nvme_gen_req(struct lpfc_vport *vport, struct lpfc_dmabuf *bmp,
542 struct lpfc_dmabuf *inp,
543 struct nvmefc_ls_req *pnvme_lsreq,
544 void (*cmpl)(struct lpfc_hba *, struct lpfc_iocbq *,
545 struct lpfc_wcqe_complete *),
546 struct lpfc_nodelist *ndlp, uint32_t num_entry,
547 uint32_t tmo, uint8_t retry)
548 {
549 struct lpfc_hba *phba = vport->phba;
550 union lpfc_wqe128 *wqe;
551 struct lpfc_iocbq *genwqe;
552 struct ulp_bde64 *bpl;
553 struct ulp_bde64 bde;
554 int i, rc, xmit_len, first_len;
555
556 /* Allocate buffer for command WQE */
557 genwqe = lpfc_sli_get_iocbq(phba);
558 if (genwqe == NULL)
559 return 1;
560
561 wqe = &genwqe->wqe;
562 /* Initialize only 64 bytes */
563 memset(wqe, 0, sizeof(union lpfc_wqe));
564
565 genwqe->context3 = (uint8_t *)bmp;
566 genwqe->iocb_flag |= LPFC_IO_NVME_LS;
567
568 /* Save for completion so we can release these resources */
569 genwqe->context1 = lpfc_nlp_get(ndlp);
570 genwqe->context2 = (uint8_t *)pnvme_lsreq;
571 /* Fill in payload, bp points to frame payload */
572
573 if (!tmo)
574 /* FC spec states we need 3 * ratov for CT requests */
575 tmo = (3 * phba->fc_ratov);
576
577 /* For this command calculate the xmit length of the request bde. */
578 xmit_len = 0;
579 first_len = 0;
580 bpl = (struct ulp_bde64 *)bmp->virt;
581 for (i = 0; i < num_entry; i++) {
582 bde.tus.w = bpl[i].tus.w;
583 if (bde.tus.f.bdeFlags != BUFF_TYPE_BDE_64)
584 break;
585 xmit_len += bde.tus.f.bdeSize;
586 if (i == 0)
587 first_len = xmit_len;
588 }
589
590 genwqe->rsvd2 = num_entry;
591 genwqe->hba_wqidx = 0;
592
593 /* Words 0 - 2 */
594 wqe->generic.bde.tus.f.bdeFlags = BUFF_TYPE_BDE_64;
595 wqe->generic.bde.tus.f.bdeSize = first_len;
596 wqe->generic.bde.addrLow = bpl[0].addrLow;
597 wqe->generic.bde.addrHigh = bpl[0].addrHigh;
598
599 /* Word 3 */
600 wqe->gen_req.request_payload_len = first_len;
601
602 /* Word 4 */
603
604 /* Word 5 */
605 bf_set(wqe_dfctl, &wqe->gen_req.wge_ctl, 0);
606 bf_set(wqe_si, &wqe->gen_req.wge_ctl, 1);
607 bf_set(wqe_la, &wqe->gen_req.wge_ctl, 1);
608 bf_set(wqe_rctl, &wqe->gen_req.wge_ctl, FC_RCTL_ELS4_REQ);
609 bf_set(wqe_type, &wqe->gen_req.wge_ctl, FC_TYPE_NVME);
610
611 /* Word 6 */
612 bf_set(wqe_ctxt_tag, &wqe->gen_req.wqe_com,
613 phba->sli4_hba.rpi_ids[ndlp->nlp_rpi]);
614 bf_set(wqe_xri_tag, &wqe->gen_req.wqe_com, genwqe->sli4_xritag);
615
616 /* Word 7 */
617 bf_set(wqe_tmo, &wqe->gen_req.wqe_com, (vport->phba->fc_ratov-1));
618 bf_set(wqe_class, &wqe->gen_req.wqe_com, CLASS3);
619 bf_set(wqe_cmnd, &wqe->gen_req.wqe_com, CMD_GEN_REQUEST64_WQE);
620 bf_set(wqe_ct, &wqe->gen_req.wqe_com, SLI4_CT_RPI);
621
622 /* Word 8 */
623 wqe->gen_req.wqe_com.abort_tag = genwqe->iotag;
624
625 /* Word 9 */
626 bf_set(wqe_reqtag, &wqe->gen_req.wqe_com, genwqe->iotag);
627
628 /* Word 10 */
629 bf_set(wqe_dbde, &wqe->gen_req.wqe_com, 1);
630 bf_set(wqe_iod, &wqe->gen_req.wqe_com, LPFC_WQE_IOD_READ);
631 bf_set(wqe_qosd, &wqe->gen_req.wqe_com, 1);
632 bf_set(wqe_lenloc, &wqe->gen_req.wqe_com, LPFC_WQE_LENLOC_NONE);
633 bf_set(wqe_ebde_cnt, &wqe->gen_req.wqe_com, 0);
634
635 /* Word 11 */
636 bf_set(wqe_cqid, &wqe->gen_req.wqe_com, LPFC_WQE_CQ_ID_DEFAULT);
637 bf_set(wqe_cmd_type, &wqe->gen_req.wqe_com, OTHER_COMMAND);
638
639
640 /* Issue GEN REQ WQE for NPORT <did> */
641 genwqe->wqe_cmpl = cmpl;
642 genwqe->iocb_cmpl = NULL;
643 genwqe->drvrTimeout = tmo + LPFC_DRVR_TIMEOUT;
644 genwqe->vport = vport;
645 genwqe->retry = retry;
646
647 lpfc_nvmeio_data(phba, "NVME LS XMIT: xri x%x iotag x%x to x%06x\n",
648 genwqe->sli4_xritag, genwqe->iotag, ndlp->nlp_DID);
649
650 rc = lpfc_sli4_issue_wqe(phba, &phba->sli4_hba.hdwq[0], genwqe);
651 if (rc) {
652 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
653 "6045 Issue GEN REQ WQE to NPORT x%x "
654 "Data: x%x x%x rc x%x\n",
655 ndlp->nlp_DID, genwqe->iotag,
656 vport->port_state, rc);
657 lpfc_sli_release_iocbq(phba, genwqe);
658 return 1;
659 }
660
661 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_DISC | LOG_ELS,
662 "6050 Issue GEN REQ WQE to NPORT x%x "
663 "Data: oxid: x%x state: x%x wq:x%px lsreq:x%px "
664 "bmp:x%px xmit:%d 1st:%d\n",
665 ndlp->nlp_DID, genwqe->sli4_xritag,
666 vport->port_state,
667 genwqe, pnvme_lsreq, bmp, xmit_len, first_len);
668 return 0;
669 }
670
671
672 /**
673 * __lpfc_nvme_ls_req - Generic service routine to issue an NVME LS request
674 * @vport: The local port issuing the LS
675 * @ndlp: The remote port to send the LS to
676 * @pnvme_lsreq: Pointer to LS request structure from the transport
677 * @gen_req_cmp: Completion call-back
678 *
679 * Routine validates the ndlp, builds buffers and sends a GEN_REQUEST
680 * WQE to perform the LS operation.
681 *
682 * Return value :
683 * 0 - Success
684 * non-zero: various error codes, in form of -Exxx
685 **/
686 int
__lpfc_nvme_ls_req(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp,struct nvmefc_ls_req * pnvme_lsreq,void (* gen_req_cmp)(struct lpfc_hba * phba,struct lpfc_iocbq * cmdwqe,struct lpfc_wcqe_complete * wcqe))687 __lpfc_nvme_ls_req(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp,
688 struct nvmefc_ls_req *pnvme_lsreq,
689 void (*gen_req_cmp)(struct lpfc_hba *phba,
690 struct lpfc_iocbq *cmdwqe,
691 struct lpfc_wcqe_complete *wcqe))
692 {
693 struct lpfc_dmabuf *bmp;
694 struct ulp_bde64 *bpl;
695 int ret;
696 uint16_t ntype, nstate;
697
698 if (!ndlp || !NLP_CHK_NODE_ACT(ndlp)) {
699 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
700 "6051 NVMEx LS REQ: Bad NDLP x%px, Failing "
701 "LS Req\n",
702 ndlp);
703 return -ENODEV;
704 }
705
706 ntype = ndlp->nlp_type;
707 nstate = ndlp->nlp_state;
708 if ((ntype & NLP_NVME_TARGET && nstate != NLP_STE_MAPPED_NODE) ||
709 (ntype & NLP_NVME_INITIATOR && nstate != NLP_STE_UNMAPPED_NODE)) {
710 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
711 "6088 NVMEx LS REQ: Fail DID x%06x not "
712 "ready for IO. Type x%x, State x%x\n",
713 ndlp->nlp_DID, ntype, nstate);
714 return -ENODEV;
715 }
716
717 if (!vport->phba->sli4_hba.nvmels_wq)
718 return -ENOMEM;
719
720 /*
721 * there are two dma buf in the request, actually there is one and
722 * the second one is just the start address + cmd size.
723 * Before calling lpfc_nvme_gen_req these buffers need to be wrapped
724 * in a lpfc_dmabuf struct. When freeing we just free the wrapper
725 * because the nvem layer owns the data bufs.
726 * We do not have to break these packets open, we don't care what is
727 * in them. And we do not have to look at the resonse data, we only
728 * care that we got a response. All of the caring is going to happen
729 * in the nvme-fc layer.
730 */
731
732 bmp = kmalloc(sizeof(*bmp), GFP_KERNEL);
733 if (!bmp) {
734 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
735 "6044 NVMEx LS REQ: Could not alloc LS buf "
736 "for DID %x\n",
737 ndlp->nlp_DID);
738 return -ENOMEM;
739 }
740
741 bmp->virt = lpfc_mbuf_alloc(vport->phba, MEM_PRI, &(bmp->phys));
742 if (!bmp->virt) {
743 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
744 "6042 NVMEx LS REQ: Could not alloc mbuf "
745 "for DID %x\n",
746 ndlp->nlp_DID);
747 kfree(bmp);
748 return -ENOMEM;
749 }
750
751 INIT_LIST_HEAD(&bmp->list);
752
753 bpl = (struct ulp_bde64 *)bmp->virt;
754 bpl->addrHigh = le32_to_cpu(putPaddrHigh(pnvme_lsreq->rqstdma));
755 bpl->addrLow = le32_to_cpu(putPaddrLow(pnvme_lsreq->rqstdma));
756 bpl->tus.f.bdeFlags = 0;
757 bpl->tus.f.bdeSize = pnvme_lsreq->rqstlen;
758 bpl->tus.w = le32_to_cpu(bpl->tus.w);
759 bpl++;
760
761 bpl->addrHigh = le32_to_cpu(putPaddrHigh(pnvme_lsreq->rspdma));
762 bpl->addrLow = le32_to_cpu(putPaddrLow(pnvme_lsreq->rspdma));
763 bpl->tus.f.bdeFlags = BUFF_TYPE_BDE_64I;
764 bpl->tus.f.bdeSize = pnvme_lsreq->rsplen;
765 bpl->tus.w = le32_to_cpu(bpl->tus.w);
766
767 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_DISC,
768 "6149 NVMEx LS REQ: Issue to DID 0x%06x lsreq x%px, "
769 "rqstlen:%d rsplen:%d %pad %pad\n",
770 ndlp->nlp_DID, pnvme_lsreq, pnvme_lsreq->rqstlen,
771 pnvme_lsreq->rsplen, &pnvme_lsreq->rqstdma,
772 &pnvme_lsreq->rspdma);
773
774 ret = lpfc_nvme_gen_req(vport, bmp, pnvme_lsreq->rqstaddr,
775 pnvme_lsreq, gen_req_cmp, ndlp, 2,
776 LPFC_NVME_LS_TIMEOUT, 0);
777 if (ret != WQE_SUCCESS) {
778 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
779 "6052 NVMEx REQ: EXIT. issue ls wqe failed "
780 "lsreq x%px Status %x DID %x\n",
781 pnvme_lsreq, ret, ndlp->nlp_DID);
782 lpfc_mbuf_free(vport->phba, bmp->virt, bmp->phys);
783 kfree(bmp);
784 return -EIO;
785 }
786
787 return 0;
788 }
789
790 /**
791 * lpfc_nvme_ls_req - Issue an NVME Link Service request
792 * @pnvme_lport: Transport localport that LS is to be issued from.
793 * @nvme_rport: Transport remoteport that LS is to be sent to.
794 * @pnvme_lsreq: the transport nvme_ls_req structure for the LS
795 *
796 * Driver registers this routine to handle any link service request
797 * from the nvme_fc transport to a remote nvme-aware port.
798 *
799 * Return value :
800 * 0 - Success
801 * non-zero: various error codes, in form of -Exxx
802 **/
803 static int
lpfc_nvme_ls_req(struct nvme_fc_local_port * pnvme_lport,struct nvme_fc_remote_port * pnvme_rport,struct nvmefc_ls_req * pnvme_lsreq)804 lpfc_nvme_ls_req(struct nvme_fc_local_port *pnvme_lport,
805 struct nvme_fc_remote_port *pnvme_rport,
806 struct nvmefc_ls_req *pnvme_lsreq)
807 {
808 struct lpfc_nvme_lport *lport;
809 struct lpfc_nvme_rport *rport;
810 struct lpfc_vport *vport;
811 int ret;
812
813 lport = (struct lpfc_nvme_lport *)pnvme_lport->private;
814 rport = (struct lpfc_nvme_rport *)pnvme_rport->private;
815 if (unlikely(!lport) || unlikely(!rport))
816 return -EINVAL;
817
818 vport = lport->vport;
819 if (vport->load_flag & FC_UNLOADING)
820 return -ENODEV;
821
822 atomic_inc(&lport->fc4NvmeLsRequests);
823
824 ret = __lpfc_nvme_ls_req(vport, rport->ndlp, pnvme_lsreq,
825 lpfc_nvme_ls_req_cmp);
826 if (ret)
827 atomic_inc(&lport->xmt_ls_err);
828
829 return ret;
830 }
831
832 /**
833 * __lpfc_nvme_ls_abort - Generic service routine to abort a prior
834 * NVME LS request
835 * @vport: The local port that issued the LS
836 * @ndlp: The remote port the LS was sent to
837 * @pnvme_lsreq: Pointer to LS request structure from the transport
838 *
839 * The driver validates the ndlp, looks for the LS, and aborts the
840 * LS if found.
841 *
842 * Returns:
843 * 0 : if LS found and aborted
844 * non-zero: various error conditions in form -Exxx
845 **/
846 int
__lpfc_nvme_ls_abort(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp,struct nvmefc_ls_req * pnvme_lsreq)847 __lpfc_nvme_ls_abort(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp,
848 struct nvmefc_ls_req *pnvme_lsreq)
849 {
850 struct lpfc_hba *phba = vport->phba;
851 struct lpfc_sli_ring *pring;
852 struct lpfc_iocbq *wqe, *next_wqe;
853 bool foundit = false;
854
855 if (!ndlp) {
856 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
857 "6049 NVMEx LS REQ Abort: Bad NDLP x%px DID "
858 "x%06x, Failing LS Req\n",
859 ndlp, ndlp ? ndlp->nlp_DID : 0);
860 return -EINVAL;
861 }
862
863 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_DISC | LOG_NVME_ABTS,
864 "6040 NVMEx LS REQ Abort: Issue LS_ABORT for lsreq "
865 "x%p rqstlen:%d rsplen:%d %pad %pad\n",
866 pnvme_lsreq, pnvme_lsreq->rqstlen,
867 pnvme_lsreq->rsplen, &pnvme_lsreq->rqstdma,
868 &pnvme_lsreq->rspdma);
869
870 /*
871 * Lock the ELS ring txcmplq and look for the wqe that matches
872 * this ELS. If found, issue an abort on the wqe.
873 */
874 pring = phba->sli4_hba.nvmels_wq->pring;
875 spin_lock_irq(&phba->hbalock);
876 spin_lock(&pring->ring_lock);
877 list_for_each_entry_safe(wqe, next_wqe, &pring->txcmplq, list) {
878 if (wqe->context2 == pnvme_lsreq) {
879 wqe->iocb_flag |= LPFC_DRIVER_ABORTED;
880 foundit = true;
881 break;
882 }
883 }
884 spin_unlock(&pring->ring_lock);
885
886 if (foundit)
887 lpfc_sli_issue_abort_iotag(phba, pring, wqe);
888 spin_unlock_irq(&phba->hbalock);
889
890 if (foundit)
891 return 0;
892
893 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_DISC | LOG_NVME_ABTS,
894 "6213 NVMEx LS REQ Abort: Unable to locate req x%p\n",
895 pnvme_lsreq);
896 return -EINVAL;
897 }
898
899 static int
lpfc_nvme_xmt_ls_rsp(struct nvme_fc_local_port * localport,struct nvme_fc_remote_port * remoteport,struct nvmefc_ls_rsp * ls_rsp)900 lpfc_nvme_xmt_ls_rsp(struct nvme_fc_local_port *localport,
901 struct nvme_fc_remote_port *remoteport,
902 struct nvmefc_ls_rsp *ls_rsp)
903 {
904 struct lpfc_async_xchg_ctx *axchg =
905 container_of(ls_rsp, struct lpfc_async_xchg_ctx, ls_rsp);
906 struct lpfc_nvme_lport *lport;
907 int rc;
908
909 if (axchg->phba->pport->load_flag & FC_UNLOADING)
910 return -ENODEV;
911
912 lport = (struct lpfc_nvme_lport *)localport->private;
913
914 rc = __lpfc_nvme_xmt_ls_rsp(axchg, ls_rsp, __lpfc_nvme_xmt_ls_rsp_cmp);
915
916 if (rc) {
917 /*
918 * unless the failure is due to having already sent
919 * the response, an abort will be generated for the
920 * exchange if the rsp can't be sent.
921 */
922 if (rc != -EALREADY)
923 atomic_inc(&lport->xmt_ls_abort);
924 return rc;
925 }
926
927 return 0;
928 }
929
930 /**
931 * lpfc_nvme_ls_abort - Abort a prior NVME LS request
932 * @pnvme_lport: Transport localport that LS is to be issued from.
933 * @pnvme_rport: Transport remoteport that LS is to be sent to.
934 * @pnvme_lsreq: the transport nvme_ls_req structure for the LS
935 *
936 * Driver registers this routine to abort a NVME LS request that is
937 * in progress (from the transports perspective).
938 **/
939 static void
lpfc_nvme_ls_abort(struct nvme_fc_local_port * pnvme_lport,struct nvme_fc_remote_port * pnvme_rport,struct nvmefc_ls_req * pnvme_lsreq)940 lpfc_nvme_ls_abort(struct nvme_fc_local_port *pnvme_lport,
941 struct nvme_fc_remote_port *pnvme_rport,
942 struct nvmefc_ls_req *pnvme_lsreq)
943 {
944 struct lpfc_nvme_lport *lport;
945 struct lpfc_vport *vport;
946 struct lpfc_hba *phba;
947 struct lpfc_nodelist *ndlp;
948 int ret;
949
950 lport = (struct lpfc_nvme_lport *)pnvme_lport->private;
951 if (unlikely(!lport))
952 return;
953 vport = lport->vport;
954 phba = vport->phba;
955
956 if (vport->load_flag & FC_UNLOADING)
957 return;
958
959 ndlp = lpfc_findnode_did(vport, pnvme_rport->port_id);
960
961 ret = __lpfc_nvme_ls_abort(vport, ndlp, pnvme_lsreq);
962 if (!ret)
963 atomic_inc(&lport->xmt_ls_abort);
964 }
965
966 /* Fix up the existing sgls for NVME IO. */
967 static inline void
lpfc_nvme_adj_fcp_sgls(struct lpfc_vport * vport,struct lpfc_io_buf * lpfc_ncmd,struct nvmefc_fcp_req * nCmd)968 lpfc_nvme_adj_fcp_sgls(struct lpfc_vport *vport,
969 struct lpfc_io_buf *lpfc_ncmd,
970 struct nvmefc_fcp_req *nCmd)
971 {
972 struct lpfc_hba *phba = vport->phba;
973 struct sli4_sge *sgl;
974 union lpfc_wqe128 *wqe;
975 uint32_t *wptr, *dptr;
976
977 /*
978 * Get a local pointer to the built-in wqe and correct
979 * the cmd size to match NVME's 96 bytes and fix
980 * the dma address.
981 */
982
983 wqe = &lpfc_ncmd->cur_iocbq.wqe;
984
985 /*
986 * Adjust the FCP_CMD and FCP_RSP DMA data and sge_len to
987 * match NVME. NVME sends 96 bytes. Also, use the
988 * nvme commands command and response dma addresses
989 * rather than the virtual memory to ease the restore
990 * operation.
991 */
992 sgl = lpfc_ncmd->dma_sgl;
993 sgl->sge_len = cpu_to_le32(nCmd->cmdlen);
994 if (phba->cfg_nvme_embed_cmd) {
995 sgl->addr_hi = 0;
996 sgl->addr_lo = 0;
997
998 /* Word 0-2 - NVME CMND IU (embedded payload) */
999 wqe->generic.bde.tus.f.bdeFlags = BUFF_TYPE_BDE_IMMED;
1000 wqe->generic.bde.tus.f.bdeSize = 56;
1001 wqe->generic.bde.addrHigh = 0;
1002 wqe->generic.bde.addrLow = 64; /* Word 16 */
1003
1004 /* Word 10 - dbde is 0, wqes is 1 in template */
1005
1006 /*
1007 * Embed the payload in the last half of the WQE
1008 * WQE words 16-30 get the NVME CMD IU payload
1009 *
1010 * WQE words 16-19 get payload Words 1-4
1011 * WQE words 20-21 get payload Words 6-7
1012 * WQE words 22-29 get payload Words 16-23
1013 */
1014 wptr = &wqe->words[16]; /* WQE ptr */
1015 dptr = (uint32_t *)nCmd->cmdaddr; /* payload ptr */
1016 dptr++; /* Skip Word 0 in payload */
1017
1018 *wptr++ = *dptr++; /* Word 1 */
1019 *wptr++ = *dptr++; /* Word 2 */
1020 *wptr++ = *dptr++; /* Word 3 */
1021 *wptr++ = *dptr++; /* Word 4 */
1022 dptr++; /* Skip Word 5 in payload */
1023 *wptr++ = *dptr++; /* Word 6 */
1024 *wptr++ = *dptr++; /* Word 7 */
1025 dptr += 8; /* Skip Words 8-15 in payload */
1026 *wptr++ = *dptr++; /* Word 16 */
1027 *wptr++ = *dptr++; /* Word 17 */
1028 *wptr++ = *dptr++; /* Word 18 */
1029 *wptr++ = *dptr++; /* Word 19 */
1030 *wptr++ = *dptr++; /* Word 20 */
1031 *wptr++ = *dptr++; /* Word 21 */
1032 *wptr++ = *dptr++; /* Word 22 */
1033 *wptr = *dptr; /* Word 23 */
1034 } else {
1035 sgl->addr_hi = cpu_to_le32(putPaddrHigh(nCmd->cmddma));
1036 sgl->addr_lo = cpu_to_le32(putPaddrLow(nCmd->cmddma));
1037
1038 /* Word 0-2 - NVME CMND IU Inline BDE */
1039 wqe->generic.bde.tus.f.bdeFlags = BUFF_TYPE_BDE_64;
1040 wqe->generic.bde.tus.f.bdeSize = nCmd->cmdlen;
1041 wqe->generic.bde.addrHigh = sgl->addr_hi;
1042 wqe->generic.bde.addrLow = sgl->addr_lo;
1043
1044 /* Word 10 */
1045 bf_set(wqe_dbde, &wqe->generic.wqe_com, 1);
1046 bf_set(wqe_wqes, &wqe->generic.wqe_com, 0);
1047 }
1048
1049 sgl++;
1050
1051 /* Setup the physical region for the FCP RSP */
1052 sgl->addr_hi = cpu_to_le32(putPaddrHigh(nCmd->rspdma));
1053 sgl->addr_lo = cpu_to_le32(putPaddrLow(nCmd->rspdma));
1054 sgl->word2 = le32_to_cpu(sgl->word2);
1055 if (nCmd->sg_cnt)
1056 bf_set(lpfc_sli4_sge_last, sgl, 0);
1057 else
1058 bf_set(lpfc_sli4_sge_last, sgl, 1);
1059 sgl->word2 = cpu_to_le32(sgl->word2);
1060 sgl->sge_len = cpu_to_le32(nCmd->rsplen);
1061 }
1062
1063
1064 /*
1065 * lpfc_nvme_io_cmd_wqe_cmpl - Complete an NVME-over-FCP IO
1066 *
1067 * Driver registers this routine as it io request handler. This
1068 * routine issues an fcp WQE with data from the @lpfc_nvme_fcpreq
1069 * data structure to the rport indicated in @lpfc_nvme_rport.
1070 *
1071 * Return value :
1072 * 0 - Success
1073 * TODO: What are the failure codes.
1074 **/
1075 static void
lpfc_nvme_io_cmd_wqe_cmpl(struct lpfc_hba * phba,struct lpfc_iocbq * pwqeIn,struct lpfc_wcqe_complete * wcqe)1076 lpfc_nvme_io_cmd_wqe_cmpl(struct lpfc_hba *phba, struct lpfc_iocbq *pwqeIn,
1077 struct lpfc_wcqe_complete *wcqe)
1078 {
1079 struct lpfc_io_buf *lpfc_ncmd =
1080 (struct lpfc_io_buf *)pwqeIn->context1;
1081 struct lpfc_vport *vport = pwqeIn->vport;
1082 struct nvmefc_fcp_req *nCmd;
1083 struct nvme_fc_ersp_iu *ep;
1084 struct nvme_fc_cmd_iu *cp;
1085 struct lpfc_nodelist *ndlp;
1086 struct lpfc_nvme_fcpreq_priv *freqpriv;
1087 struct lpfc_nvme_lport *lport;
1088 uint32_t code, status, idx;
1089 uint16_t cid, sqhd, data;
1090 uint32_t *ptr;
1091 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
1092 int cpu;
1093 #endif
1094
1095 /* Sanity check on return of outstanding command */
1096 if (!lpfc_ncmd) {
1097 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
1098 "6071 Null lpfc_ncmd pointer. No "
1099 "release, skip completion\n");
1100 return;
1101 }
1102
1103 /* Guard against abort handler being called at same time */
1104 spin_lock(&lpfc_ncmd->buf_lock);
1105
1106 if (!lpfc_ncmd->nvmeCmd) {
1107 spin_unlock(&lpfc_ncmd->buf_lock);
1108 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
1109 "6066 Missing cmpl ptrs: lpfc_ncmd x%px, "
1110 "nvmeCmd x%px\n",
1111 lpfc_ncmd, lpfc_ncmd->nvmeCmd);
1112
1113 /* Release the lpfc_ncmd regardless of the missing elements. */
1114 lpfc_release_nvme_buf(phba, lpfc_ncmd);
1115 return;
1116 }
1117 nCmd = lpfc_ncmd->nvmeCmd;
1118 status = bf_get(lpfc_wcqe_c_status, wcqe);
1119
1120 idx = lpfc_ncmd->cur_iocbq.hba_wqidx;
1121 phba->sli4_hba.hdwq[idx].nvme_cstat.io_cmpls++;
1122
1123 if (unlikely(status && vport->localport)) {
1124 lport = (struct lpfc_nvme_lport *)vport->localport->private;
1125 if (lport) {
1126 if (bf_get(lpfc_wcqe_c_xb, wcqe))
1127 atomic_inc(&lport->cmpl_fcp_xb);
1128 atomic_inc(&lport->cmpl_fcp_err);
1129 }
1130 }
1131
1132 lpfc_nvmeio_data(phba, "NVME FCP CMPL: xri x%x stat x%x parm x%x\n",
1133 lpfc_ncmd->cur_iocbq.sli4_xritag,
1134 status, wcqe->parameter);
1135 /*
1136 * Catch race where our node has transitioned, but the
1137 * transport is still transitioning.
1138 */
1139 ndlp = lpfc_ncmd->ndlp;
1140 if (!ndlp || !NLP_CHK_NODE_ACT(ndlp)) {
1141 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
1142 "6062 Ignoring NVME cmpl. No ndlp\n");
1143 goto out_err;
1144 }
1145
1146 code = bf_get(lpfc_wcqe_c_code, wcqe);
1147 if (code == CQE_CODE_NVME_ERSP) {
1148 /* For this type of CQE, we need to rebuild the rsp */
1149 ep = (struct nvme_fc_ersp_iu *)nCmd->rspaddr;
1150
1151 /*
1152 * Get Command Id from cmd to plug into response. This
1153 * code is not needed in the next NVME Transport drop.
1154 */
1155 cp = (struct nvme_fc_cmd_iu *)nCmd->cmdaddr;
1156 cid = cp->sqe.common.command_id;
1157
1158 /*
1159 * RSN is in CQE word 2
1160 * SQHD is in CQE Word 3 bits 15:0
1161 * Cmd Specific info is in CQE Word 1
1162 * and in CQE Word 0 bits 15:0
1163 */
1164 sqhd = bf_get(lpfc_wcqe_c_sqhead, wcqe);
1165
1166 /* Now lets build the NVME ERSP IU */
1167 ep->iu_len = cpu_to_be16(8);
1168 ep->rsn = wcqe->parameter;
1169 ep->xfrd_len = cpu_to_be32(nCmd->payload_length);
1170 ep->rsvd12 = 0;
1171 ptr = (uint32_t *)&ep->cqe.result.u64;
1172 *ptr++ = wcqe->total_data_placed;
1173 data = bf_get(lpfc_wcqe_c_ersp0, wcqe);
1174 *ptr = (uint32_t)data;
1175 ep->cqe.sq_head = sqhd;
1176 ep->cqe.sq_id = nCmd->sqid;
1177 ep->cqe.command_id = cid;
1178 ep->cqe.status = 0;
1179
1180 lpfc_ncmd->status = IOSTAT_SUCCESS;
1181 lpfc_ncmd->result = 0;
1182 nCmd->rcv_rsplen = LPFC_NVME_ERSP_LEN;
1183 nCmd->transferred_length = nCmd->payload_length;
1184 } else {
1185 lpfc_ncmd->status = (status & LPFC_IOCB_STATUS_MASK);
1186 lpfc_ncmd->result = (wcqe->parameter & IOERR_PARAM_MASK);
1187
1188 /* For NVME, the only failure path that results in an
1189 * IO error is when the adapter rejects it. All other
1190 * conditions are a success case and resolved by the
1191 * transport.
1192 * IOSTAT_FCP_RSP_ERROR means:
1193 * 1. Length of data received doesn't match total
1194 * transfer length in WQE
1195 * 2. If the RSP payload does NOT match these cases:
1196 * a. RSP length 12/24 bytes and all zeros
1197 * b. NVME ERSP
1198 */
1199 switch (lpfc_ncmd->status) {
1200 case IOSTAT_SUCCESS:
1201 nCmd->transferred_length = wcqe->total_data_placed;
1202 nCmd->rcv_rsplen = 0;
1203 nCmd->status = 0;
1204 break;
1205 case IOSTAT_FCP_RSP_ERROR:
1206 nCmd->transferred_length = wcqe->total_data_placed;
1207 nCmd->rcv_rsplen = wcqe->parameter;
1208 nCmd->status = 0;
1209 /* Sanity check */
1210 if (nCmd->rcv_rsplen == LPFC_NVME_ERSP_LEN)
1211 break;
1212 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
1213 "6081 NVME Completion Protocol Error: "
1214 "xri %x status x%x result x%x "
1215 "placed x%x\n",
1216 lpfc_ncmd->cur_iocbq.sli4_xritag,
1217 lpfc_ncmd->status, lpfc_ncmd->result,
1218 wcqe->total_data_placed);
1219 break;
1220 case IOSTAT_LOCAL_REJECT:
1221 /* Let fall through to set command final state. */
1222 if (lpfc_ncmd->result == IOERR_ABORT_REQUESTED)
1223 lpfc_printf_vlog(vport, KERN_INFO,
1224 LOG_NVME_IOERR,
1225 "6032 Delay Aborted cmd x%px "
1226 "nvme cmd x%px, xri x%x, "
1227 "xb %d\n",
1228 lpfc_ncmd, nCmd,
1229 lpfc_ncmd->cur_iocbq.sli4_xritag,
1230 bf_get(lpfc_wcqe_c_xb, wcqe));
1231 fallthrough;
1232 default:
1233 out_err:
1234 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_IOERR,
1235 "6072 NVME Completion Error: xri %x "
1236 "status x%x result x%x [x%x] "
1237 "placed x%x\n",
1238 lpfc_ncmd->cur_iocbq.sli4_xritag,
1239 lpfc_ncmd->status, lpfc_ncmd->result,
1240 wcqe->parameter,
1241 wcqe->total_data_placed);
1242 nCmd->transferred_length = 0;
1243 nCmd->rcv_rsplen = 0;
1244 nCmd->status = NVME_SC_INTERNAL;
1245 }
1246 }
1247
1248 /* pick up SLI4 exhange busy condition */
1249 if (bf_get(lpfc_wcqe_c_xb, wcqe))
1250 lpfc_ncmd->flags |= LPFC_SBUF_XBUSY;
1251 else
1252 lpfc_ncmd->flags &= ~LPFC_SBUF_XBUSY;
1253
1254 /* Update stats and complete the IO. There is
1255 * no need for dma unprep because the nvme_transport
1256 * owns the dma address.
1257 */
1258 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
1259 if (lpfc_ncmd->ts_cmd_start) {
1260 lpfc_ncmd->ts_isr_cmpl = pwqeIn->isr_timestamp;
1261 lpfc_ncmd->ts_data_io = ktime_get_ns();
1262 phba->ktime_last_cmd = lpfc_ncmd->ts_data_io;
1263 lpfc_io_ktime(phba, lpfc_ncmd);
1264 }
1265 if (unlikely(phba->hdwqstat_on & LPFC_CHECK_NVME_IO)) {
1266 cpu = raw_smp_processor_id();
1267 this_cpu_inc(phba->sli4_hba.c_stat->cmpl_io);
1268 if (lpfc_ncmd->cpu != cpu)
1269 lpfc_printf_vlog(vport,
1270 KERN_INFO, LOG_NVME_IOERR,
1271 "6701 CPU Check cmpl: "
1272 "cpu %d expect %d\n",
1273 cpu, lpfc_ncmd->cpu);
1274 }
1275 #endif
1276
1277 /* NVME targets need completion held off until the abort exchange
1278 * completes unless the NVME Rport is getting unregistered.
1279 */
1280
1281 if (!(lpfc_ncmd->flags & LPFC_SBUF_XBUSY)) {
1282 freqpriv = nCmd->private;
1283 freqpriv->nvme_buf = NULL;
1284 lpfc_ncmd->nvmeCmd = NULL;
1285 spin_unlock(&lpfc_ncmd->buf_lock);
1286 nCmd->done(nCmd);
1287 } else
1288 spin_unlock(&lpfc_ncmd->buf_lock);
1289
1290 /* Call release with XB=1 to queue the IO into the abort list. */
1291 lpfc_release_nvme_buf(phba, lpfc_ncmd);
1292 }
1293
1294
1295 /**
1296 * lpfc_nvme_prep_io_cmd - Issue an NVME-over-FCP IO
1297 * @vport: pointer to a host virtual N_Port data structure
1298 * @lpfcn_cmd: Pointer to lpfc scsi command
1299 * @pnode: pointer to a node-list data structure
1300 * @cstat: pointer to the control status structure
1301 *
1302 * Driver registers this routine as it io request handler. This
1303 * routine issues an fcp WQE with data from the @lpfc_nvme_fcpreq
1304 * data structure to the rport indicated in @lpfc_nvme_rport.
1305 *
1306 * Return value :
1307 * 0 - Success
1308 * TODO: What are the failure codes.
1309 **/
1310 static int
lpfc_nvme_prep_io_cmd(struct lpfc_vport * vport,struct lpfc_io_buf * lpfc_ncmd,struct lpfc_nodelist * pnode,struct lpfc_fc4_ctrl_stat * cstat)1311 lpfc_nvme_prep_io_cmd(struct lpfc_vport *vport,
1312 struct lpfc_io_buf *lpfc_ncmd,
1313 struct lpfc_nodelist *pnode,
1314 struct lpfc_fc4_ctrl_stat *cstat)
1315 {
1316 struct lpfc_hba *phba = vport->phba;
1317 struct nvmefc_fcp_req *nCmd = lpfc_ncmd->nvmeCmd;
1318 struct nvme_common_command *sqe;
1319 struct lpfc_iocbq *pwqeq = &lpfc_ncmd->cur_iocbq;
1320 union lpfc_wqe128 *wqe = &pwqeq->wqe;
1321 uint32_t req_len;
1322
1323 if (!NLP_CHK_NODE_ACT(pnode))
1324 return -EINVAL;
1325
1326 /*
1327 * There are three possibilities here - use scatter-gather segment, use
1328 * the single mapping, or neither.
1329 */
1330 if (nCmd->sg_cnt) {
1331 if (nCmd->io_dir == NVMEFC_FCP_WRITE) {
1332 /* From the iwrite template, initialize words 7 - 11 */
1333 memcpy(&wqe->words[7],
1334 &lpfc_iwrite_cmd_template.words[7],
1335 sizeof(uint32_t) * 5);
1336
1337 /* Word 4 */
1338 wqe->fcp_iwrite.total_xfer_len = nCmd->payload_length;
1339
1340 /* Word 5 */
1341 if ((phba->cfg_nvme_enable_fb) &&
1342 (pnode->nlp_flag & NLP_FIRSTBURST)) {
1343 req_len = lpfc_ncmd->nvmeCmd->payload_length;
1344 if (req_len < pnode->nvme_fb_size)
1345 wqe->fcp_iwrite.initial_xfer_len =
1346 req_len;
1347 else
1348 wqe->fcp_iwrite.initial_xfer_len =
1349 pnode->nvme_fb_size;
1350 } else {
1351 wqe->fcp_iwrite.initial_xfer_len = 0;
1352 }
1353 cstat->output_requests++;
1354 } else {
1355 /* From the iread template, initialize words 7 - 11 */
1356 memcpy(&wqe->words[7],
1357 &lpfc_iread_cmd_template.words[7],
1358 sizeof(uint32_t) * 5);
1359
1360 /* Word 4 */
1361 wqe->fcp_iread.total_xfer_len = nCmd->payload_length;
1362
1363 /* Word 5 */
1364 wqe->fcp_iread.rsrvd5 = 0;
1365
1366 cstat->input_requests++;
1367 }
1368 } else {
1369 /* From the icmnd template, initialize words 4 - 11 */
1370 memcpy(&wqe->words[4], &lpfc_icmnd_cmd_template.words[4],
1371 sizeof(uint32_t) * 8);
1372 cstat->control_requests++;
1373 }
1374
1375 if (pnode->nlp_nvme_info & NLP_NVME_NSLER) {
1376 bf_set(wqe_erp, &wqe->generic.wqe_com, 1);
1377 sqe = &((struct nvme_fc_cmd_iu *)
1378 nCmd->cmdaddr)->sqe.common;
1379 if (sqe->opcode == nvme_admin_async_event)
1380 bf_set(wqe_ffrq, &wqe->generic.wqe_com, 1);
1381 }
1382
1383 /*
1384 * Finish initializing those WQE fields that are independent
1385 * of the nvme_cmnd request_buffer
1386 */
1387
1388 /* Word 3 */
1389 bf_set(payload_offset_len, &wqe->fcp_icmd,
1390 (nCmd->rsplen + nCmd->cmdlen));
1391
1392 /* Word 6 */
1393 bf_set(wqe_ctxt_tag, &wqe->generic.wqe_com,
1394 phba->sli4_hba.rpi_ids[pnode->nlp_rpi]);
1395 bf_set(wqe_xri_tag, &wqe->generic.wqe_com, pwqeq->sli4_xritag);
1396
1397 /* Word 8 */
1398 wqe->generic.wqe_com.abort_tag = pwqeq->iotag;
1399
1400 /* Word 9 */
1401 bf_set(wqe_reqtag, &wqe->generic.wqe_com, pwqeq->iotag);
1402
1403 /* Words 13 14 15 are for PBDE support */
1404
1405 pwqeq->vport = vport;
1406 return 0;
1407 }
1408
1409
1410 /**
1411 * lpfc_nvme_prep_io_dma - Issue an NVME-over-FCP IO
1412 * @vport: pointer to a host virtual N_Port data structure
1413 * @lpfcn_cmd: Pointer to lpfc scsi command
1414 *
1415 * Driver registers this routine as it io request handler. This
1416 * routine issues an fcp WQE with data from the @lpfc_nvme_fcpreq
1417 * data structure to the rport indicated in @lpfc_nvme_rport.
1418 *
1419 * Return value :
1420 * 0 - Success
1421 * TODO: What are the failure codes.
1422 **/
1423 static int
lpfc_nvme_prep_io_dma(struct lpfc_vport * vport,struct lpfc_io_buf * lpfc_ncmd)1424 lpfc_nvme_prep_io_dma(struct lpfc_vport *vport,
1425 struct lpfc_io_buf *lpfc_ncmd)
1426 {
1427 struct lpfc_hba *phba = vport->phba;
1428 struct nvmefc_fcp_req *nCmd = lpfc_ncmd->nvmeCmd;
1429 union lpfc_wqe128 *wqe = &lpfc_ncmd->cur_iocbq.wqe;
1430 struct sli4_sge *sgl = lpfc_ncmd->dma_sgl;
1431 struct sli4_hybrid_sgl *sgl_xtra = NULL;
1432 struct scatterlist *data_sg;
1433 struct sli4_sge *first_data_sgl;
1434 struct ulp_bde64 *bde;
1435 dma_addr_t physaddr = 0;
1436 uint32_t num_bde = 0;
1437 uint32_t dma_len = 0;
1438 uint32_t dma_offset = 0;
1439 int nseg, i, j;
1440 bool lsp_just_set = false;
1441
1442 /* Fix up the command and response DMA stuff. */
1443 lpfc_nvme_adj_fcp_sgls(vport, lpfc_ncmd, nCmd);
1444
1445 /*
1446 * There are three possibilities here - use scatter-gather segment, use
1447 * the single mapping, or neither.
1448 */
1449 if (nCmd->sg_cnt) {
1450 /*
1451 * Jump over the cmd and rsp SGEs. The fix routine
1452 * has already adjusted for this.
1453 */
1454 sgl += 2;
1455
1456 first_data_sgl = sgl;
1457 lpfc_ncmd->seg_cnt = nCmd->sg_cnt;
1458 if (lpfc_ncmd->seg_cnt > lpfc_nvme_template.max_sgl_segments) {
1459 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
1460 "6058 Too many sg segments from "
1461 "NVME Transport. Max %d, "
1462 "nvmeIO sg_cnt %d\n",
1463 phba->cfg_nvme_seg_cnt + 1,
1464 lpfc_ncmd->seg_cnt);
1465 lpfc_ncmd->seg_cnt = 0;
1466 return 1;
1467 }
1468
1469 /*
1470 * The driver established a maximum scatter-gather segment count
1471 * during probe that limits the number of sg elements in any
1472 * single nvme command. Just run through the seg_cnt and format
1473 * the sge's.
1474 */
1475 nseg = nCmd->sg_cnt;
1476 data_sg = nCmd->first_sgl;
1477
1478 /* for tracking the segment boundaries */
1479 j = 2;
1480 for (i = 0; i < nseg; i++) {
1481 if (data_sg == NULL) {
1482 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
1483 "6059 dptr err %d, nseg %d\n",
1484 i, nseg);
1485 lpfc_ncmd->seg_cnt = 0;
1486 return 1;
1487 }
1488
1489 sgl->word2 = 0;
1490 if ((num_bde + 1) == nseg) {
1491 bf_set(lpfc_sli4_sge_last, sgl, 1);
1492 bf_set(lpfc_sli4_sge_type, sgl,
1493 LPFC_SGE_TYPE_DATA);
1494 } else {
1495 bf_set(lpfc_sli4_sge_last, sgl, 0);
1496
1497 /* expand the segment */
1498 if (!lsp_just_set &&
1499 !((j + 1) % phba->border_sge_num) &&
1500 ((nseg - 1) != i)) {
1501 /* set LSP type */
1502 bf_set(lpfc_sli4_sge_type, sgl,
1503 LPFC_SGE_TYPE_LSP);
1504
1505 sgl_xtra = lpfc_get_sgl_per_hdwq(
1506 phba, lpfc_ncmd);
1507
1508 if (unlikely(!sgl_xtra)) {
1509 lpfc_ncmd->seg_cnt = 0;
1510 return 1;
1511 }
1512 sgl->addr_lo = cpu_to_le32(putPaddrLow(
1513 sgl_xtra->dma_phys_sgl));
1514 sgl->addr_hi = cpu_to_le32(putPaddrHigh(
1515 sgl_xtra->dma_phys_sgl));
1516
1517 } else {
1518 bf_set(lpfc_sli4_sge_type, sgl,
1519 LPFC_SGE_TYPE_DATA);
1520 }
1521 }
1522
1523 if (!(bf_get(lpfc_sli4_sge_type, sgl) &
1524 LPFC_SGE_TYPE_LSP)) {
1525 if ((nseg - 1) == i)
1526 bf_set(lpfc_sli4_sge_last, sgl, 1);
1527
1528 physaddr = data_sg->dma_address;
1529 dma_len = data_sg->length;
1530 sgl->addr_lo = cpu_to_le32(
1531 putPaddrLow(physaddr));
1532 sgl->addr_hi = cpu_to_le32(
1533 putPaddrHigh(physaddr));
1534
1535 bf_set(lpfc_sli4_sge_offset, sgl, dma_offset);
1536 sgl->word2 = cpu_to_le32(sgl->word2);
1537 sgl->sge_len = cpu_to_le32(dma_len);
1538
1539 dma_offset += dma_len;
1540 data_sg = sg_next(data_sg);
1541
1542 sgl++;
1543
1544 lsp_just_set = false;
1545 } else {
1546 sgl->word2 = cpu_to_le32(sgl->word2);
1547
1548 sgl->sge_len = cpu_to_le32(
1549 phba->cfg_sg_dma_buf_size);
1550
1551 sgl = (struct sli4_sge *)sgl_xtra->dma_sgl;
1552 i = i - 1;
1553
1554 lsp_just_set = true;
1555 }
1556
1557 j++;
1558 }
1559 if (phba->cfg_enable_pbde) {
1560 /* Use PBDE support for first SGL only, offset == 0 */
1561 /* Words 13-15 */
1562 bde = (struct ulp_bde64 *)
1563 &wqe->words[13];
1564 bde->addrLow = first_data_sgl->addr_lo;
1565 bde->addrHigh = first_data_sgl->addr_hi;
1566 bde->tus.f.bdeSize =
1567 le32_to_cpu(first_data_sgl->sge_len);
1568 bde->tus.f.bdeFlags = BUFF_TYPE_BDE_64;
1569 bde->tus.w = cpu_to_le32(bde->tus.w);
1570 /* wqe_pbde is 1 in template */
1571 } else {
1572 memset(&wqe->words[13], 0, (sizeof(uint32_t) * 3));
1573 bf_set(wqe_pbde, &wqe->generic.wqe_com, 0);
1574 }
1575
1576 } else {
1577 lpfc_ncmd->seg_cnt = 0;
1578
1579 /* For this clause to be valid, the payload_length
1580 * and sg_cnt must zero.
1581 */
1582 if (nCmd->payload_length != 0) {
1583 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
1584 "6063 NVME DMA Prep Err: sg_cnt %d "
1585 "payload_length x%x\n",
1586 nCmd->sg_cnt, nCmd->payload_length);
1587 return 1;
1588 }
1589 }
1590 return 0;
1591 }
1592
1593 /**
1594 * lpfc_nvme_fcp_io_submit - Issue an NVME-over-FCP IO
1595 * @lpfc_pnvme: Pointer to the driver's nvme instance data
1596 * @lpfc_nvme_lport: Pointer to the driver's local port data
1597 * @lpfc_nvme_rport: Pointer to the rport getting the @lpfc_nvme_ereq
1598 * @lpfc_nvme_fcreq: IO request from nvme fc to driver.
1599 * @hw_queue_handle: Driver-returned handle in lpfc_nvme_create_queue
1600 *
1601 * Driver registers this routine as it io request handler. This
1602 * routine issues an fcp WQE with data from the @lpfc_nvme_fcpreq
1603 * data structure to the rport
1604 indicated in @lpfc_nvme_rport.
1605 *
1606 * Return value :
1607 * 0 - Success
1608 * TODO: What are the failure codes.
1609 **/
1610 static int
lpfc_nvme_fcp_io_submit(struct nvme_fc_local_port * pnvme_lport,struct nvme_fc_remote_port * pnvme_rport,void * hw_queue_handle,struct nvmefc_fcp_req * pnvme_fcreq)1611 lpfc_nvme_fcp_io_submit(struct nvme_fc_local_port *pnvme_lport,
1612 struct nvme_fc_remote_port *pnvme_rport,
1613 void *hw_queue_handle,
1614 struct nvmefc_fcp_req *pnvme_fcreq)
1615 {
1616 int ret = 0;
1617 int expedite = 0;
1618 int idx, cpu;
1619 struct lpfc_nvme_lport *lport;
1620 struct lpfc_fc4_ctrl_stat *cstat;
1621 struct lpfc_vport *vport;
1622 struct lpfc_hba *phba;
1623 struct lpfc_nodelist *ndlp;
1624 struct lpfc_io_buf *lpfc_ncmd;
1625 struct lpfc_nvme_rport *rport;
1626 struct lpfc_nvme_qhandle *lpfc_queue_info;
1627 struct lpfc_nvme_fcpreq_priv *freqpriv;
1628 struct nvme_common_command *sqe;
1629 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
1630 uint64_t start = 0;
1631 #endif
1632
1633 /* Validate pointers. LLDD fault handling with transport does
1634 * have timing races.
1635 */
1636 lport = (struct lpfc_nvme_lport *)pnvme_lport->private;
1637 if (unlikely(!lport)) {
1638 ret = -EINVAL;
1639 goto out_fail;
1640 }
1641
1642 vport = lport->vport;
1643
1644 if (unlikely(!hw_queue_handle)) {
1645 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_IOERR,
1646 "6117 Fail IO, NULL hw_queue_handle\n");
1647 atomic_inc(&lport->xmt_fcp_err);
1648 ret = -EBUSY;
1649 goto out_fail;
1650 }
1651
1652 phba = vport->phba;
1653
1654 if (unlikely(vport->load_flag & FC_UNLOADING)) {
1655 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_IOERR,
1656 "6124 Fail IO, Driver unload\n");
1657 atomic_inc(&lport->xmt_fcp_err);
1658 ret = -ENODEV;
1659 goto out_fail;
1660 }
1661
1662 freqpriv = pnvme_fcreq->private;
1663 if (unlikely(!freqpriv)) {
1664 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_IOERR,
1665 "6158 Fail IO, NULL request data\n");
1666 atomic_inc(&lport->xmt_fcp_err);
1667 ret = -EINVAL;
1668 goto out_fail;
1669 }
1670
1671 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
1672 if (phba->ktime_on)
1673 start = ktime_get_ns();
1674 #endif
1675 rport = (struct lpfc_nvme_rport *)pnvme_rport->private;
1676 lpfc_queue_info = (struct lpfc_nvme_qhandle *)hw_queue_handle;
1677
1678 /*
1679 * Catch race where our node has transitioned, but the
1680 * transport is still transitioning.
1681 */
1682 ndlp = rport->ndlp;
1683 if (!ndlp || !NLP_CHK_NODE_ACT(ndlp)) {
1684 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE | LOG_NVME_IOERR,
1685 "6053 Busy IO, ndlp not ready: rport x%px "
1686 "ndlp x%px, DID x%06x\n",
1687 rport, ndlp, pnvme_rport->port_id);
1688 atomic_inc(&lport->xmt_fcp_err);
1689 ret = -EBUSY;
1690 goto out_fail;
1691 }
1692
1693 /* The remote node has to be a mapped target or it's an error. */
1694 if ((ndlp->nlp_type & NLP_NVME_TARGET) &&
1695 (ndlp->nlp_state != NLP_STE_MAPPED_NODE)) {
1696 lpfc_printf_vlog(vport, KERN_INFO, LOG_NODE | LOG_NVME_IOERR,
1697 "6036 Fail IO, DID x%06x not ready for "
1698 "IO. State x%x, Type x%x Flg x%x\n",
1699 pnvme_rport->port_id,
1700 ndlp->nlp_state, ndlp->nlp_type,
1701 ndlp->upcall_flags);
1702 atomic_inc(&lport->xmt_fcp_bad_ndlp);
1703 ret = -EBUSY;
1704 goto out_fail;
1705
1706 }
1707
1708 /* Currently only NVME Keep alive commands should be expedited
1709 * if the driver runs out of a resource. These should only be
1710 * issued on the admin queue, qidx 0
1711 */
1712 if (!lpfc_queue_info->qidx && !pnvme_fcreq->sg_cnt) {
1713 sqe = &((struct nvme_fc_cmd_iu *)
1714 pnvme_fcreq->cmdaddr)->sqe.common;
1715 if (sqe->opcode == nvme_admin_keep_alive)
1716 expedite = 1;
1717 }
1718
1719 /* The node is shared with FCP IO, make sure the IO pending count does
1720 * not exceed the programmed depth.
1721 */
1722 if (lpfc_ndlp_check_qdepth(phba, ndlp)) {
1723 if ((atomic_read(&ndlp->cmd_pending) >= ndlp->cmd_qdepth) &&
1724 !expedite) {
1725 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_IOERR,
1726 "6174 Fail IO, ndlp qdepth exceeded: "
1727 "idx %d DID %x pend %d qdepth %d\n",
1728 lpfc_queue_info->index, ndlp->nlp_DID,
1729 atomic_read(&ndlp->cmd_pending),
1730 ndlp->cmd_qdepth);
1731 atomic_inc(&lport->xmt_fcp_qdepth);
1732 ret = -EBUSY;
1733 goto out_fail;
1734 }
1735 }
1736
1737 /* Lookup Hardware Queue index based on fcp_io_sched module parameter */
1738 if (phba->cfg_fcp_io_sched == LPFC_FCP_SCHED_BY_HDWQ) {
1739 idx = lpfc_queue_info->index;
1740 } else {
1741 cpu = raw_smp_processor_id();
1742 idx = phba->sli4_hba.cpu_map[cpu].hdwq;
1743 }
1744
1745 lpfc_ncmd = lpfc_get_nvme_buf(phba, ndlp, idx, expedite);
1746 if (lpfc_ncmd == NULL) {
1747 atomic_inc(&lport->xmt_fcp_noxri);
1748 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_IOERR,
1749 "6065 Fail IO, driver buffer pool is empty: "
1750 "idx %d DID %x\n",
1751 lpfc_queue_info->index, ndlp->nlp_DID);
1752 ret = -EBUSY;
1753 goto out_fail;
1754 }
1755 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
1756 if (start) {
1757 lpfc_ncmd->ts_cmd_start = start;
1758 lpfc_ncmd->ts_last_cmd = phba->ktime_last_cmd;
1759 } else {
1760 lpfc_ncmd->ts_cmd_start = 0;
1761 }
1762 #endif
1763
1764 /*
1765 * Store the data needed by the driver to issue, abort, and complete
1766 * an IO.
1767 * Do not let the IO hang out forever. There is no midlayer issuing
1768 * an abort so inform the FW of the maximum IO pending time.
1769 */
1770 freqpriv->nvme_buf = lpfc_ncmd;
1771 lpfc_ncmd->nvmeCmd = pnvme_fcreq;
1772 lpfc_ncmd->ndlp = ndlp;
1773 lpfc_ncmd->qidx = lpfc_queue_info->qidx;
1774
1775 /*
1776 * Issue the IO on the WQ indicated by index in the hw_queue_handle.
1777 * This identfier was create in our hardware queue create callback
1778 * routine. The driver now is dependent on the IO queue steering from
1779 * the transport. We are trusting the upper NVME layers know which
1780 * index to use and that they have affinitized a CPU to this hardware
1781 * queue. A hardware queue maps to a driver MSI-X vector/EQ/CQ/WQ.
1782 */
1783 lpfc_ncmd->cur_iocbq.hba_wqidx = idx;
1784 cstat = &phba->sli4_hba.hdwq[idx].nvme_cstat;
1785
1786 lpfc_nvme_prep_io_cmd(vport, lpfc_ncmd, ndlp, cstat);
1787 ret = lpfc_nvme_prep_io_dma(vport, lpfc_ncmd);
1788 if (ret) {
1789 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_IOERR,
1790 "6175 Fail IO, Prep DMA: "
1791 "idx %d DID %x\n",
1792 lpfc_queue_info->index, ndlp->nlp_DID);
1793 atomic_inc(&lport->xmt_fcp_err);
1794 ret = -ENOMEM;
1795 goto out_free_nvme_buf;
1796 }
1797
1798 lpfc_nvmeio_data(phba, "NVME FCP XMIT: xri x%x idx %d to %06x\n",
1799 lpfc_ncmd->cur_iocbq.sli4_xritag,
1800 lpfc_queue_info->index, ndlp->nlp_DID);
1801
1802 ret = lpfc_sli4_issue_wqe(phba, lpfc_ncmd->hdwq, &lpfc_ncmd->cur_iocbq);
1803 if (ret) {
1804 atomic_inc(&lport->xmt_fcp_wqerr);
1805 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_IOERR,
1806 "6113 Fail IO, Could not issue WQE err %x "
1807 "sid: x%x did: x%x oxid: x%x\n",
1808 ret, vport->fc_myDID, ndlp->nlp_DID,
1809 lpfc_ncmd->cur_iocbq.sli4_xritag);
1810 goto out_free_nvme_buf;
1811 }
1812
1813 if (phba->cfg_xri_rebalancing)
1814 lpfc_keep_pvt_pool_above_lowwm(phba, lpfc_ncmd->hdwq_no);
1815
1816 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
1817 if (lpfc_ncmd->ts_cmd_start)
1818 lpfc_ncmd->ts_cmd_wqput = ktime_get_ns();
1819
1820 if (phba->hdwqstat_on & LPFC_CHECK_NVME_IO) {
1821 cpu = raw_smp_processor_id();
1822 this_cpu_inc(phba->sli4_hba.c_stat->xmt_io);
1823 lpfc_ncmd->cpu = cpu;
1824 if (idx != cpu)
1825 lpfc_printf_vlog(vport,
1826 KERN_INFO, LOG_NVME_IOERR,
1827 "6702 CPU Check cmd: "
1828 "cpu %d wq %d\n",
1829 lpfc_ncmd->cpu,
1830 lpfc_queue_info->index);
1831 }
1832 #endif
1833 return 0;
1834
1835 out_free_nvme_buf:
1836 if (lpfc_ncmd->nvmeCmd->sg_cnt) {
1837 if (lpfc_ncmd->nvmeCmd->io_dir == NVMEFC_FCP_WRITE)
1838 cstat->output_requests--;
1839 else
1840 cstat->input_requests--;
1841 } else
1842 cstat->control_requests--;
1843 lpfc_release_nvme_buf(phba, lpfc_ncmd);
1844 out_fail:
1845 return ret;
1846 }
1847
1848 /**
1849 * lpfc_nvme_abort_fcreq_cmpl - Complete an NVME FCP abort request.
1850 * @phba: Pointer to HBA context object
1851 * @cmdiocb: Pointer to command iocb object.
1852 * @rspiocb: Pointer to response iocb object.
1853 *
1854 * This is the callback function for any NVME FCP IO that was aborted.
1855 *
1856 * Return value:
1857 * None
1858 **/
1859 void
lpfc_nvme_abort_fcreq_cmpl(struct lpfc_hba * phba,struct lpfc_iocbq * cmdiocb,struct lpfc_wcqe_complete * abts_cmpl)1860 lpfc_nvme_abort_fcreq_cmpl(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb,
1861 struct lpfc_wcqe_complete *abts_cmpl)
1862 {
1863 lpfc_printf_log(phba, KERN_INFO, LOG_NVME,
1864 "6145 ABORT_XRI_CN completing on rpi x%x "
1865 "original iotag x%x, abort cmd iotag x%x "
1866 "req_tag x%x, status x%x, hwstatus x%x\n",
1867 cmdiocb->iocb.un.acxri.abortContextTag,
1868 cmdiocb->iocb.un.acxri.abortIoTag,
1869 cmdiocb->iotag,
1870 bf_get(lpfc_wcqe_c_request_tag, abts_cmpl),
1871 bf_get(lpfc_wcqe_c_status, abts_cmpl),
1872 bf_get(lpfc_wcqe_c_hw_status, abts_cmpl));
1873 lpfc_sli_release_iocbq(phba, cmdiocb);
1874 }
1875
1876 /**
1877 * lpfc_nvme_fcp_abort - Issue an NVME-over-FCP ABTS
1878 * @lpfc_pnvme: Pointer to the driver's nvme instance data
1879 * @lpfc_nvme_lport: Pointer to the driver's local port data
1880 * @lpfc_nvme_rport: Pointer to the rport getting the @lpfc_nvme_ereq
1881 * @lpfc_nvme_fcreq: IO request from nvme fc to driver.
1882 * @hw_queue_handle: Driver-returned handle in lpfc_nvme_create_queue
1883 *
1884 * Driver registers this routine as its nvme request io abort handler. This
1885 * routine issues an fcp Abort WQE with data from the @lpfc_nvme_fcpreq
1886 * data structure to the rport indicated in @lpfc_nvme_rport. This routine
1887 * is executed asynchronously - one the target is validated as "MAPPED" and
1888 * ready for IO, the driver issues the abort request and returns.
1889 *
1890 * Return value:
1891 * None
1892 **/
1893 static void
lpfc_nvme_fcp_abort(struct nvme_fc_local_port * pnvme_lport,struct nvme_fc_remote_port * pnvme_rport,void * hw_queue_handle,struct nvmefc_fcp_req * pnvme_fcreq)1894 lpfc_nvme_fcp_abort(struct nvme_fc_local_port *pnvme_lport,
1895 struct nvme_fc_remote_port *pnvme_rport,
1896 void *hw_queue_handle,
1897 struct nvmefc_fcp_req *pnvme_fcreq)
1898 {
1899 struct lpfc_nvme_lport *lport;
1900 struct lpfc_vport *vport;
1901 struct lpfc_hba *phba;
1902 struct lpfc_io_buf *lpfc_nbuf;
1903 struct lpfc_iocbq *abts_buf;
1904 struct lpfc_iocbq *nvmereq_wqe;
1905 struct lpfc_nvme_fcpreq_priv *freqpriv;
1906 unsigned long flags;
1907 int ret_val;
1908
1909 /* Validate pointers. LLDD fault handling with transport does
1910 * have timing races.
1911 */
1912 lport = (struct lpfc_nvme_lport *)pnvme_lport->private;
1913 if (unlikely(!lport))
1914 return;
1915
1916 vport = lport->vport;
1917
1918 if (unlikely(!hw_queue_handle)) {
1919 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_ABTS,
1920 "6129 Fail Abort, HW Queue Handle NULL.\n");
1921 return;
1922 }
1923
1924 phba = vport->phba;
1925 freqpriv = pnvme_fcreq->private;
1926
1927 if (unlikely(!freqpriv))
1928 return;
1929 if (vport->load_flag & FC_UNLOADING)
1930 return;
1931
1932 /* Announce entry to new IO submit field. */
1933 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_ABTS,
1934 "6002 Abort Request to rport DID x%06x "
1935 "for nvme_fc_req x%px\n",
1936 pnvme_rport->port_id,
1937 pnvme_fcreq);
1938
1939 /* If the hba is getting reset, this flag is set. It is
1940 * cleared when the reset is complete and rings reestablished.
1941 */
1942 spin_lock_irqsave(&phba->hbalock, flags);
1943 /* driver queued commands are in process of being flushed */
1944 if (phba->hba_flag & HBA_IOQ_FLUSH) {
1945 spin_unlock_irqrestore(&phba->hbalock, flags);
1946 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
1947 "6139 Driver in reset cleanup - flushing "
1948 "NVME Req now. hba_flag x%x\n",
1949 phba->hba_flag);
1950 return;
1951 }
1952
1953 lpfc_nbuf = freqpriv->nvme_buf;
1954 if (!lpfc_nbuf) {
1955 spin_unlock_irqrestore(&phba->hbalock, flags);
1956 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
1957 "6140 NVME IO req has no matching lpfc nvme "
1958 "io buffer. Skipping abort req.\n");
1959 return;
1960 } else if (!lpfc_nbuf->nvmeCmd) {
1961 spin_unlock_irqrestore(&phba->hbalock, flags);
1962 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
1963 "6141 lpfc NVME IO req has no nvme_fcreq "
1964 "io buffer. Skipping abort req.\n");
1965 return;
1966 }
1967 nvmereq_wqe = &lpfc_nbuf->cur_iocbq;
1968
1969 /* Guard against IO completion being called at same time */
1970 spin_lock(&lpfc_nbuf->buf_lock);
1971
1972 /*
1973 * The lpfc_nbuf and the mapped nvme_fcreq in the driver's
1974 * state must match the nvme_fcreq passed by the nvme
1975 * transport. If they don't match, it is likely the driver
1976 * has already completed the NVME IO and the nvme transport
1977 * has not seen it yet.
1978 */
1979 if (lpfc_nbuf->nvmeCmd != pnvme_fcreq) {
1980 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
1981 "6143 NVME req mismatch: "
1982 "lpfc_nbuf x%px nvmeCmd x%px, "
1983 "pnvme_fcreq x%px. Skipping Abort xri x%x\n",
1984 lpfc_nbuf, lpfc_nbuf->nvmeCmd,
1985 pnvme_fcreq, nvmereq_wqe->sli4_xritag);
1986 goto out_unlock;
1987 }
1988
1989 /* Don't abort IOs no longer on the pending queue. */
1990 if (!(nvmereq_wqe->iocb_flag & LPFC_IO_ON_TXCMPLQ)) {
1991 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
1992 "6142 NVME IO req x%px not queued - skipping "
1993 "abort req xri x%x\n",
1994 pnvme_fcreq, nvmereq_wqe->sli4_xritag);
1995 goto out_unlock;
1996 }
1997
1998 atomic_inc(&lport->xmt_fcp_abort);
1999 lpfc_nvmeio_data(phba, "NVME FCP ABORT: xri x%x idx %d to %06x\n",
2000 nvmereq_wqe->sli4_xritag,
2001 nvmereq_wqe->hba_wqidx, pnvme_rport->port_id);
2002
2003 /* Outstanding abort is in progress */
2004 if (nvmereq_wqe->iocb_flag & LPFC_DRIVER_ABORTED) {
2005 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
2006 "6144 Outstanding NVME I/O Abort Request "
2007 "still pending on nvme_fcreq x%px, "
2008 "lpfc_ncmd %px xri x%x\n",
2009 pnvme_fcreq, lpfc_nbuf,
2010 nvmereq_wqe->sli4_xritag);
2011 goto out_unlock;
2012 }
2013
2014 abts_buf = __lpfc_sli_get_iocbq(phba);
2015 if (!abts_buf) {
2016 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
2017 "6136 No available abort wqes. Skipping "
2018 "Abts req for nvme_fcreq x%px xri x%x\n",
2019 pnvme_fcreq, nvmereq_wqe->sli4_xritag);
2020 goto out_unlock;
2021 }
2022
2023 /* Ready - mark outstanding as aborted by driver. */
2024 nvmereq_wqe->iocb_flag |= LPFC_DRIVER_ABORTED;
2025
2026 lpfc_nvme_prep_abort_wqe(abts_buf, nvmereq_wqe->sli4_xritag, 0);
2027
2028 /* ABTS WQE must go to the same WQ as the WQE to be aborted */
2029 abts_buf->iocb_flag |= LPFC_IO_NVME;
2030 abts_buf->hba_wqidx = nvmereq_wqe->hba_wqidx;
2031 abts_buf->vport = vport;
2032 abts_buf->wqe_cmpl = lpfc_nvme_abort_fcreq_cmpl;
2033 ret_val = lpfc_sli4_issue_wqe(phba, lpfc_nbuf->hdwq, abts_buf);
2034 spin_unlock(&lpfc_nbuf->buf_lock);
2035 spin_unlock_irqrestore(&phba->hbalock, flags);
2036 if (ret_val) {
2037 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
2038 "6137 Failed abts issue_wqe with status x%x "
2039 "for nvme_fcreq x%px.\n",
2040 ret_val, pnvme_fcreq);
2041 lpfc_sli_release_iocbq(phba, abts_buf);
2042 return;
2043 }
2044
2045 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_ABTS,
2046 "6138 Transport Abort NVME Request Issued for "
2047 "ox_id x%x on reqtag x%x\n",
2048 nvmereq_wqe->sli4_xritag,
2049 abts_buf->iotag);
2050 return;
2051
2052 out_unlock:
2053 spin_unlock(&lpfc_nbuf->buf_lock);
2054 spin_unlock_irqrestore(&phba->hbalock, flags);
2055 return;
2056 }
2057
2058 /* Declare and initialization an instance of the FC NVME template. */
2059 static struct nvme_fc_port_template lpfc_nvme_template = {
2060 /* initiator-based functions */
2061 .localport_delete = lpfc_nvme_localport_delete,
2062 .remoteport_delete = lpfc_nvme_remoteport_delete,
2063 .create_queue = lpfc_nvme_create_queue,
2064 .delete_queue = lpfc_nvme_delete_queue,
2065 .ls_req = lpfc_nvme_ls_req,
2066 .fcp_io = lpfc_nvme_fcp_io_submit,
2067 .ls_abort = lpfc_nvme_ls_abort,
2068 .fcp_abort = lpfc_nvme_fcp_abort,
2069 .xmt_ls_rsp = lpfc_nvme_xmt_ls_rsp,
2070
2071 .max_hw_queues = 1,
2072 .max_sgl_segments = LPFC_NVME_DEFAULT_SEGS,
2073 .max_dif_sgl_segments = LPFC_NVME_DEFAULT_SEGS,
2074 .dma_boundary = 0xFFFFFFFF,
2075
2076 /* Sizes of additional private data for data structures.
2077 * No use for the last two sizes at this time.
2078 */
2079 .local_priv_sz = sizeof(struct lpfc_nvme_lport),
2080 .remote_priv_sz = sizeof(struct lpfc_nvme_rport),
2081 .lsrqst_priv_sz = 0,
2082 .fcprqst_priv_sz = sizeof(struct lpfc_nvme_fcpreq_priv),
2083 };
2084
2085 /**
2086 * lpfc_get_nvme_buf - Get a nvme buffer from io_buf_list of the HBA
2087 * @phba: The HBA for which this call is being executed.
2088 *
2089 * This routine removes a nvme buffer from head of @hdwq io_buf_list
2090 * and returns to caller.
2091 *
2092 * Return codes:
2093 * NULL - Error
2094 * Pointer to lpfc_nvme_buf - Success
2095 **/
2096 static struct lpfc_io_buf *
lpfc_get_nvme_buf(struct lpfc_hba * phba,struct lpfc_nodelist * ndlp,int idx,int expedite)2097 lpfc_get_nvme_buf(struct lpfc_hba *phba, struct lpfc_nodelist *ndlp,
2098 int idx, int expedite)
2099 {
2100 struct lpfc_io_buf *lpfc_ncmd;
2101 struct lpfc_sli4_hdw_queue *qp;
2102 struct sli4_sge *sgl;
2103 struct lpfc_iocbq *pwqeq;
2104 union lpfc_wqe128 *wqe;
2105
2106 lpfc_ncmd = lpfc_get_io_buf(phba, NULL, idx, expedite);
2107
2108 if (lpfc_ncmd) {
2109 pwqeq = &(lpfc_ncmd->cur_iocbq);
2110 wqe = &pwqeq->wqe;
2111
2112 /* Setup key fields in buffer that may have been changed
2113 * if other protocols used this buffer.
2114 */
2115 pwqeq->iocb_flag = LPFC_IO_NVME;
2116 pwqeq->wqe_cmpl = lpfc_nvme_io_cmd_wqe_cmpl;
2117 lpfc_ncmd->start_time = jiffies;
2118 lpfc_ncmd->flags = 0;
2119
2120 /* Rsp SGE will be filled in when we rcv an IO
2121 * from the NVME Layer to be sent.
2122 * The cmd is going to be embedded so we need a SKIP SGE.
2123 */
2124 sgl = lpfc_ncmd->dma_sgl;
2125 bf_set(lpfc_sli4_sge_type, sgl, LPFC_SGE_TYPE_SKIP);
2126 bf_set(lpfc_sli4_sge_last, sgl, 0);
2127 sgl->word2 = cpu_to_le32(sgl->word2);
2128 /* Fill in word 3 / sgl_len during cmd submission */
2129
2130 /* Initialize 64 bytes only */
2131 memset(wqe, 0, sizeof(union lpfc_wqe));
2132
2133 if (lpfc_ndlp_check_qdepth(phba, ndlp)) {
2134 atomic_inc(&ndlp->cmd_pending);
2135 lpfc_ncmd->flags |= LPFC_SBUF_BUMP_QDEPTH;
2136 }
2137
2138 } else {
2139 qp = &phba->sli4_hba.hdwq[idx];
2140 qp->empty_io_bufs++;
2141 }
2142
2143 return lpfc_ncmd;
2144 }
2145
2146 /**
2147 * lpfc_release_nvme_buf: Return a nvme buffer back to hba nvme buf list.
2148 * @phba: The Hba for which this call is being executed.
2149 * @lpfc_ncmd: The nvme buffer which is being released.
2150 *
2151 * This routine releases @lpfc_ncmd nvme buffer by adding it to tail of @phba
2152 * lpfc_io_buf_list list. For SLI4 XRI's are tied to the nvme buffer
2153 * and cannot be reused for at least RA_TOV amount of time if it was
2154 * aborted.
2155 **/
2156 static void
lpfc_release_nvme_buf(struct lpfc_hba * phba,struct lpfc_io_buf * lpfc_ncmd)2157 lpfc_release_nvme_buf(struct lpfc_hba *phba, struct lpfc_io_buf *lpfc_ncmd)
2158 {
2159 struct lpfc_sli4_hdw_queue *qp;
2160 unsigned long iflag = 0;
2161
2162 if ((lpfc_ncmd->flags & LPFC_SBUF_BUMP_QDEPTH) && lpfc_ncmd->ndlp)
2163 atomic_dec(&lpfc_ncmd->ndlp->cmd_pending);
2164
2165 lpfc_ncmd->ndlp = NULL;
2166 lpfc_ncmd->flags &= ~LPFC_SBUF_BUMP_QDEPTH;
2167
2168 qp = lpfc_ncmd->hdwq;
2169 if (unlikely(lpfc_ncmd->flags & LPFC_SBUF_XBUSY)) {
2170 lpfc_printf_log(phba, KERN_INFO, LOG_NVME_ABTS,
2171 "6310 XB release deferred for "
2172 "ox_id x%x on reqtag x%x\n",
2173 lpfc_ncmd->cur_iocbq.sli4_xritag,
2174 lpfc_ncmd->cur_iocbq.iotag);
2175
2176 spin_lock_irqsave(&qp->abts_io_buf_list_lock, iflag);
2177 list_add_tail(&lpfc_ncmd->list,
2178 &qp->lpfc_abts_io_buf_list);
2179 qp->abts_nvme_io_bufs++;
2180 spin_unlock_irqrestore(&qp->abts_io_buf_list_lock, iflag);
2181 } else
2182 lpfc_release_io_buf(phba, (struct lpfc_io_buf *)lpfc_ncmd, qp);
2183 }
2184
2185 /**
2186 * lpfc_nvme_create_localport - Create/Bind an nvme localport instance.
2187 * @pvport - the lpfc_vport instance requesting a localport.
2188 *
2189 * This routine is invoked to create an nvme localport instance to bind
2190 * to the nvme_fc_transport. It is called once during driver load
2191 * like lpfc_create_shost after all other services are initialized.
2192 * It requires a vport, vpi, and wwns at call time. Other localport
2193 * parameters are modified as the driver's FCID and the Fabric WWN
2194 * are established.
2195 *
2196 * Return codes
2197 * 0 - successful
2198 * -ENOMEM - no heap memory available
2199 * other values - from nvme registration upcall
2200 **/
2201 int
lpfc_nvme_create_localport(struct lpfc_vport * vport)2202 lpfc_nvme_create_localport(struct lpfc_vport *vport)
2203 {
2204 int ret = 0;
2205 struct lpfc_hba *phba = vport->phba;
2206 struct nvme_fc_port_info nfcp_info;
2207 struct nvme_fc_local_port *localport;
2208 struct lpfc_nvme_lport *lport;
2209
2210 /* Initialize this localport instance. The vport wwn usage ensures
2211 * that NPIV is accounted for.
2212 */
2213 memset(&nfcp_info, 0, sizeof(struct nvme_fc_port_info));
2214 nfcp_info.port_role = FC_PORT_ROLE_NVME_INITIATOR;
2215 nfcp_info.node_name = wwn_to_u64(vport->fc_nodename.u.wwn);
2216 nfcp_info.port_name = wwn_to_u64(vport->fc_portname.u.wwn);
2217
2218 /* We need to tell the transport layer + 1 because it takes page
2219 * alignment into account. When space for the SGL is allocated we
2220 * allocate + 3, one for cmd, one for rsp and one for this alignment
2221 */
2222 lpfc_nvme_template.max_sgl_segments = phba->cfg_nvme_seg_cnt + 1;
2223
2224 /* Advertise how many hw queues we support based on cfg_hdw_queue,
2225 * which will not exceed cpu count.
2226 */
2227 lpfc_nvme_template.max_hw_queues = phba->cfg_hdw_queue;
2228
2229 if (!IS_ENABLED(CONFIG_NVME_FC))
2230 return ret;
2231
2232 /* localport is allocated from the stack, but the registration
2233 * call allocates heap memory as well as the private area.
2234 */
2235
2236 ret = nvme_fc_register_localport(&nfcp_info, &lpfc_nvme_template,
2237 &vport->phba->pcidev->dev, &localport);
2238 if (!ret) {
2239 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME | LOG_NVME_DISC,
2240 "6005 Successfully registered local "
2241 "NVME port num %d, localP x%px, private "
2242 "x%px, sg_seg %d\n",
2243 localport->port_num, localport,
2244 localport->private,
2245 lpfc_nvme_template.max_sgl_segments);
2246
2247 /* Private is our lport size declared in the template. */
2248 lport = (struct lpfc_nvme_lport *)localport->private;
2249 vport->localport = localport;
2250 lport->vport = vport;
2251 vport->nvmei_support = 1;
2252
2253 atomic_set(&lport->xmt_fcp_noxri, 0);
2254 atomic_set(&lport->xmt_fcp_bad_ndlp, 0);
2255 atomic_set(&lport->xmt_fcp_qdepth, 0);
2256 atomic_set(&lport->xmt_fcp_err, 0);
2257 atomic_set(&lport->xmt_fcp_wqerr, 0);
2258 atomic_set(&lport->xmt_fcp_abort, 0);
2259 atomic_set(&lport->xmt_ls_abort, 0);
2260 atomic_set(&lport->xmt_ls_err, 0);
2261 atomic_set(&lport->cmpl_fcp_xb, 0);
2262 atomic_set(&lport->cmpl_fcp_err, 0);
2263 atomic_set(&lport->cmpl_ls_xb, 0);
2264 atomic_set(&lport->cmpl_ls_err, 0);
2265
2266 atomic_set(&lport->fc4NvmeLsRequests, 0);
2267 atomic_set(&lport->fc4NvmeLsCmpls, 0);
2268 }
2269
2270 return ret;
2271 }
2272
2273 #if (IS_ENABLED(CONFIG_NVME_FC))
2274 /* lpfc_nvme_lport_unreg_wait - Wait for the host to complete an lport unreg.
2275 *
2276 * The driver has to wait for the host nvme transport to callback
2277 * indicating the localport has successfully unregistered all
2278 * resources. Since this is an uninterruptible wait, loop every ten
2279 * seconds and print a message indicating no progress.
2280 *
2281 * An uninterruptible wait is used because of the risk of transport-to-
2282 * driver state mismatch.
2283 */
2284 static void
lpfc_nvme_lport_unreg_wait(struct lpfc_vport * vport,struct lpfc_nvme_lport * lport,struct completion * lport_unreg_cmp)2285 lpfc_nvme_lport_unreg_wait(struct lpfc_vport *vport,
2286 struct lpfc_nvme_lport *lport,
2287 struct completion *lport_unreg_cmp)
2288 {
2289 u32 wait_tmo;
2290 int ret, i, pending = 0;
2291 struct lpfc_sli_ring *pring;
2292 struct lpfc_hba *phba = vport->phba;
2293 struct lpfc_sli4_hdw_queue *qp;
2294 int abts_scsi, abts_nvme;
2295
2296 /* Host transport has to clean up and confirm requiring an indefinite
2297 * wait. Print a message if a 10 second wait expires and renew the
2298 * wait. This is unexpected.
2299 */
2300 wait_tmo = msecs_to_jiffies(LPFC_NVME_WAIT_TMO * 1000);
2301 while (true) {
2302 ret = wait_for_completion_timeout(lport_unreg_cmp, wait_tmo);
2303 if (unlikely(!ret)) {
2304 pending = 0;
2305 abts_scsi = 0;
2306 abts_nvme = 0;
2307 for (i = 0; i < phba->cfg_hdw_queue; i++) {
2308 qp = &phba->sli4_hba.hdwq[i];
2309 pring = qp->io_wq->pring;
2310 if (!pring)
2311 continue;
2312 pending += pring->txcmplq_cnt;
2313 abts_scsi += qp->abts_scsi_io_bufs;
2314 abts_nvme += qp->abts_nvme_io_bufs;
2315 }
2316 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
2317 "6176 Lport x%px Localport x%px wait "
2318 "timed out. Pending %d [%d:%d]. "
2319 "Renewing.\n",
2320 lport, vport->localport, pending,
2321 abts_scsi, abts_nvme);
2322 continue;
2323 }
2324 break;
2325 }
2326 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_IOERR,
2327 "6177 Lport x%px Localport x%px Complete Success\n",
2328 lport, vport->localport);
2329 }
2330 #endif
2331
2332 /**
2333 * lpfc_nvme_destroy_localport - Destroy lpfc_nvme bound to nvme transport.
2334 * @pnvme: pointer to lpfc nvme data structure.
2335 *
2336 * This routine is invoked to destroy all lports bound to the phba.
2337 * The lport memory was allocated by the nvme fc transport and is
2338 * released there. This routine ensures all rports bound to the
2339 * lport have been disconnected.
2340 *
2341 **/
2342 void
lpfc_nvme_destroy_localport(struct lpfc_vport * vport)2343 lpfc_nvme_destroy_localport(struct lpfc_vport *vport)
2344 {
2345 #if (IS_ENABLED(CONFIG_NVME_FC))
2346 struct nvme_fc_local_port *localport;
2347 struct lpfc_nvme_lport *lport;
2348 int ret;
2349 DECLARE_COMPLETION_ONSTACK(lport_unreg_cmp);
2350
2351 if (vport->nvmei_support == 0)
2352 return;
2353
2354 localport = vport->localport;
2355 lport = (struct lpfc_nvme_lport *)localport->private;
2356
2357 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME,
2358 "6011 Destroying NVME localport x%px\n",
2359 localport);
2360
2361 /* lport's rport list is clear. Unregister
2362 * lport and release resources.
2363 */
2364 lport->lport_unreg_cmp = &lport_unreg_cmp;
2365 ret = nvme_fc_unregister_localport(localport);
2366
2367 /* Wait for completion. This either blocks
2368 * indefinitely or succeeds
2369 */
2370 lpfc_nvme_lport_unreg_wait(vport, lport, &lport_unreg_cmp);
2371 vport->localport = NULL;
2372
2373 /* Regardless of the unregister upcall response, clear
2374 * nvmei_support. All rports are unregistered and the
2375 * driver will clean up.
2376 */
2377 vport->nvmei_support = 0;
2378 if (ret == 0) {
2379 lpfc_printf_vlog(vport,
2380 KERN_INFO, LOG_NVME_DISC,
2381 "6009 Unregistered lport Success\n");
2382 } else {
2383 lpfc_printf_vlog(vport,
2384 KERN_INFO, LOG_NVME_DISC,
2385 "6010 Unregistered lport "
2386 "Failed, status x%x\n",
2387 ret);
2388 }
2389 #endif
2390 }
2391
2392 void
lpfc_nvme_update_localport(struct lpfc_vport * vport)2393 lpfc_nvme_update_localport(struct lpfc_vport *vport)
2394 {
2395 #if (IS_ENABLED(CONFIG_NVME_FC))
2396 struct nvme_fc_local_port *localport;
2397 struct lpfc_nvme_lport *lport;
2398
2399 localport = vport->localport;
2400 if (!localport) {
2401 lpfc_printf_vlog(vport, KERN_WARNING, LOG_NVME,
2402 "6710 Update NVME fail. No localport\n");
2403 return;
2404 }
2405 lport = (struct lpfc_nvme_lport *)localport->private;
2406 if (!lport) {
2407 lpfc_printf_vlog(vport, KERN_WARNING, LOG_NVME,
2408 "6171 Update NVME fail. localP x%px, No lport\n",
2409 localport);
2410 return;
2411 }
2412 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME,
2413 "6012 Update NVME lport x%px did x%x\n",
2414 localport, vport->fc_myDID);
2415
2416 localport->port_id = vport->fc_myDID;
2417 if (localport->port_id == 0)
2418 localport->port_role = FC_PORT_ROLE_NVME_DISCOVERY;
2419 else
2420 localport->port_role = FC_PORT_ROLE_NVME_INITIATOR;
2421
2422 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_DISC,
2423 "6030 bound lport x%px to DID x%06x\n",
2424 lport, localport->port_id);
2425 #endif
2426 }
2427
2428 int
lpfc_nvme_register_port(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp)2429 lpfc_nvme_register_port(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp)
2430 {
2431 #if (IS_ENABLED(CONFIG_NVME_FC))
2432 int ret = 0;
2433 struct nvme_fc_local_port *localport;
2434 struct lpfc_nvme_lport *lport;
2435 struct lpfc_nvme_rport *rport;
2436 struct lpfc_nvme_rport *oldrport;
2437 struct nvme_fc_remote_port *remote_port;
2438 struct nvme_fc_port_info rpinfo;
2439 struct lpfc_nodelist *prev_ndlp = NULL;
2440 struct fc_rport *srport = ndlp->rport;
2441
2442 lpfc_printf_vlog(ndlp->vport, KERN_INFO, LOG_NVME_DISC,
2443 "6006 Register NVME PORT. DID x%06x nlptype x%x\n",
2444 ndlp->nlp_DID, ndlp->nlp_type);
2445
2446 localport = vport->localport;
2447 if (!localport)
2448 return 0;
2449
2450 lport = (struct lpfc_nvme_lport *)localport->private;
2451
2452 /* NVME rports are not preserved across devloss.
2453 * Just register this instance. Note, rpinfo->dev_loss_tmo
2454 * is left 0 to indicate accept transport defaults. The
2455 * driver communicates port role capabilities consistent
2456 * with the PRLI response data.
2457 */
2458 memset(&rpinfo, 0, sizeof(struct nvme_fc_port_info));
2459 rpinfo.port_id = ndlp->nlp_DID;
2460 if (ndlp->nlp_type & NLP_NVME_TARGET)
2461 rpinfo.port_role |= FC_PORT_ROLE_NVME_TARGET;
2462 if (ndlp->nlp_type & NLP_NVME_INITIATOR)
2463 rpinfo.port_role |= FC_PORT_ROLE_NVME_INITIATOR;
2464
2465 if (ndlp->nlp_type & NLP_NVME_DISCOVERY)
2466 rpinfo.port_role |= FC_PORT_ROLE_NVME_DISCOVERY;
2467
2468 rpinfo.port_name = wwn_to_u64(ndlp->nlp_portname.u.wwn);
2469 rpinfo.node_name = wwn_to_u64(ndlp->nlp_nodename.u.wwn);
2470 if (srport)
2471 rpinfo.dev_loss_tmo = srport->dev_loss_tmo;
2472 else
2473 rpinfo.dev_loss_tmo = vport->cfg_devloss_tmo;
2474
2475 spin_lock_irq(&vport->phba->hbalock);
2476 oldrport = lpfc_ndlp_get_nrport(ndlp);
2477 if (oldrport) {
2478 prev_ndlp = oldrport->ndlp;
2479 spin_unlock_irq(&vport->phba->hbalock);
2480 } else {
2481 spin_unlock_irq(&vport->phba->hbalock);
2482 lpfc_nlp_get(ndlp);
2483 }
2484
2485 ret = nvme_fc_register_remoteport(localport, &rpinfo, &remote_port);
2486 if (!ret) {
2487 /* If the ndlp already has an nrport, this is just
2488 * a resume of the existing rport. Else this is a
2489 * new rport.
2490 */
2491 /* Guard against an unregister/reregister
2492 * race that leaves the WAIT flag set.
2493 */
2494 spin_lock_irq(&vport->phba->hbalock);
2495 ndlp->upcall_flags &= ~NLP_WAIT_FOR_UNREG;
2496 spin_unlock_irq(&vport->phba->hbalock);
2497 rport = remote_port->private;
2498 if (oldrport) {
2499
2500 /* Sever the ndlp<->rport association
2501 * before dropping the ndlp ref from
2502 * register.
2503 */
2504 spin_lock_irq(&vport->phba->hbalock);
2505 ndlp->nrport = NULL;
2506 ndlp->upcall_flags &= ~NLP_WAIT_FOR_UNREG;
2507 spin_unlock_irq(&vport->phba->hbalock);
2508 rport->ndlp = NULL;
2509 rport->remoteport = NULL;
2510
2511 /* Reference only removed if previous NDLP is no longer
2512 * active. It might be just a swap and removing the
2513 * reference would cause a premature cleanup.
2514 */
2515 if (prev_ndlp && prev_ndlp != ndlp) {
2516 if ((!NLP_CHK_NODE_ACT(prev_ndlp)) ||
2517 (!prev_ndlp->nrport))
2518 lpfc_nlp_put(prev_ndlp);
2519 }
2520 }
2521
2522 /* Clean bind the rport to the ndlp. */
2523 rport->remoteport = remote_port;
2524 rport->lport = lport;
2525 rport->ndlp = ndlp;
2526 spin_lock_irq(&vport->phba->hbalock);
2527 ndlp->nrport = rport;
2528 spin_unlock_irq(&vport->phba->hbalock);
2529 lpfc_printf_vlog(vport, KERN_INFO,
2530 LOG_NVME_DISC | LOG_NODE,
2531 "6022 Bind lport x%px to remoteport x%px "
2532 "rport x%px WWNN 0x%llx, "
2533 "Rport WWPN 0x%llx DID "
2534 "x%06x Role x%x, ndlp %p prev_ndlp x%px\n",
2535 lport, remote_port, rport,
2536 rpinfo.node_name, rpinfo.port_name,
2537 rpinfo.port_id, rpinfo.port_role,
2538 ndlp, prev_ndlp);
2539 } else {
2540 lpfc_printf_vlog(vport, KERN_ERR,
2541 LOG_TRACE_EVENT,
2542 "6031 RemotePort Registration failed "
2543 "err: %d, DID x%06x\n",
2544 ret, ndlp->nlp_DID);
2545 }
2546
2547 return ret;
2548 #else
2549 return 0;
2550 #endif
2551 }
2552
2553 /**
2554 * lpfc_nvme_rescan_port - Check to see if we should rescan this remoteport
2555 *
2556 * If the ndlp represents an NVME Target, that we are logged into,
2557 * ping the NVME FC Transport layer to initiate a device rescan
2558 * on this remote NPort.
2559 */
2560 void
lpfc_nvme_rescan_port(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp)2561 lpfc_nvme_rescan_port(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp)
2562 {
2563 #if (IS_ENABLED(CONFIG_NVME_FC))
2564 struct lpfc_nvme_rport *nrport;
2565 struct nvme_fc_remote_port *remoteport = NULL;
2566
2567 spin_lock_irq(&vport->phba->hbalock);
2568 nrport = lpfc_ndlp_get_nrport(ndlp);
2569 if (nrport)
2570 remoteport = nrport->remoteport;
2571 spin_unlock_irq(&vport->phba->hbalock);
2572
2573 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_DISC,
2574 "6170 Rescan NPort DID x%06x type x%x "
2575 "state x%x nrport x%px remoteport x%px\n",
2576 ndlp->nlp_DID, ndlp->nlp_type, ndlp->nlp_state,
2577 nrport, remoteport);
2578
2579 if (!nrport || !remoteport)
2580 goto rescan_exit;
2581
2582 /* Only rescan if we are an NVME target in the MAPPED state */
2583 if (remoteport->port_role & FC_PORT_ROLE_NVME_DISCOVERY &&
2584 ndlp->nlp_state == NLP_STE_MAPPED_NODE) {
2585 nvme_fc_rescan_remoteport(remoteport);
2586
2587 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
2588 "6172 NVME rescanned DID x%06x "
2589 "port_state x%x\n",
2590 ndlp->nlp_DID, remoteport->port_state);
2591 }
2592 return;
2593 rescan_exit:
2594 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_DISC,
2595 "6169 Skip NVME Rport Rescan, NVME remoteport "
2596 "unregistered\n");
2597 #endif
2598 }
2599
2600 /* lpfc_nvme_unregister_port - unbind the DID and port_role from this rport.
2601 *
2602 * There is no notion of Devloss or rport recovery from the current
2603 * nvme_transport perspective. Loss of an rport just means IO cannot
2604 * be sent and recovery is completely up to the initator.
2605 * For now, the driver just unbinds the DID and port_role so that
2606 * no further IO can be issued. Changes are planned for later.
2607 *
2608 * Notes - the ndlp reference count is not decremented here since
2609 * since there is no nvme_transport api for devloss. Node ref count
2610 * is only adjusted in driver unload.
2611 */
2612 void
lpfc_nvme_unregister_port(struct lpfc_vport * vport,struct lpfc_nodelist * ndlp)2613 lpfc_nvme_unregister_port(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp)
2614 {
2615 #if (IS_ENABLED(CONFIG_NVME_FC))
2616 int ret;
2617 struct nvme_fc_local_port *localport;
2618 struct lpfc_nvme_lport *lport;
2619 struct lpfc_nvme_rport *rport;
2620 struct nvme_fc_remote_port *remoteport = NULL;
2621
2622 localport = vport->localport;
2623
2624 /* This is fundamental error. The localport is always
2625 * available until driver unload. Just exit.
2626 */
2627 if (!localport)
2628 return;
2629
2630 lport = (struct lpfc_nvme_lport *)localport->private;
2631 if (!lport)
2632 goto input_err;
2633
2634 spin_lock_irq(&vport->phba->hbalock);
2635 rport = lpfc_ndlp_get_nrport(ndlp);
2636 if (rport)
2637 remoteport = rport->remoteport;
2638 spin_unlock_irq(&vport->phba->hbalock);
2639 if (!remoteport)
2640 goto input_err;
2641
2642 lpfc_printf_vlog(vport, KERN_INFO, LOG_NVME_DISC,
2643 "6033 Unreg nvme remoteport x%px, portname x%llx, "
2644 "port_id x%06x, portstate x%x port type x%x\n",
2645 remoteport, remoteport->port_name,
2646 remoteport->port_id, remoteport->port_state,
2647 ndlp->nlp_type);
2648
2649 /* Sanity check ndlp type. Only call for NVME ports. Don't
2650 * clear any rport state until the transport calls back.
2651 */
2652
2653 if (ndlp->nlp_type & NLP_NVME_TARGET) {
2654 /* No concern about the role change on the nvme remoteport.
2655 * The transport will update it.
2656 */
2657 ndlp->upcall_flags |= NLP_WAIT_FOR_UNREG;
2658
2659 /* Don't let the host nvme transport keep sending keep-alives
2660 * on this remoteport. Vport is unloading, no recovery. The
2661 * return values is ignored. The upcall is a courtesy to the
2662 * transport.
2663 */
2664 if (vport->load_flag & FC_UNLOADING)
2665 (void)nvme_fc_set_remoteport_devloss(remoteport, 0);
2666
2667 ret = nvme_fc_unregister_remoteport(remoteport);
2668 if (ret != 0) {
2669 lpfc_nlp_put(ndlp);
2670 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
2671 "6167 NVME unregister failed %d "
2672 "port_state x%x\n",
2673 ret, remoteport->port_state);
2674 }
2675 }
2676 return;
2677
2678 input_err:
2679 #endif
2680 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
2681 "6168 State error: lport x%px, rport x%px FCID x%06x\n",
2682 vport->localport, ndlp->rport, ndlp->nlp_DID);
2683 }
2684
2685 /**
2686 * lpfc_sli4_nvme_xri_aborted - Fast-path process of NVME xri abort
2687 * @phba: pointer to lpfc hba data structure.
2688 * @axri: pointer to the fcp xri abort wcqe structure.
2689 * @lpfc_ncmd: The nvme job structure for the request being aborted.
2690 *
2691 * This routine is invoked by the worker thread to process a SLI4 fast-path
2692 * NVME aborted xri. Aborted NVME IO commands are completed to the transport
2693 * here.
2694 **/
2695 void
lpfc_sli4_nvme_xri_aborted(struct lpfc_hba * phba,struct sli4_wcqe_xri_aborted * axri,struct lpfc_io_buf * lpfc_ncmd)2696 lpfc_sli4_nvme_xri_aborted(struct lpfc_hba *phba,
2697 struct sli4_wcqe_xri_aborted *axri,
2698 struct lpfc_io_buf *lpfc_ncmd)
2699 {
2700 uint16_t xri = bf_get(lpfc_wcqe_xa_xri, axri);
2701 struct nvmefc_fcp_req *nvme_cmd = NULL;
2702 struct lpfc_nodelist *ndlp = lpfc_ncmd->ndlp;
2703
2704
2705 if (ndlp)
2706 lpfc_sli4_abts_err_handler(phba, ndlp, axri);
2707
2708 lpfc_printf_log(phba, KERN_INFO, LOG_NVME_ABTS,
2709 "6311 nvme_cmd %p xri x%x tag x%x abort complete and "
2710 "xri released\n",
2711 lpfc_ncmd->nvmeCmd, xri,
2712 lpfc_ncmd->cur_iocbq.iotag);
2713
2714 /* Aborted NVME commands are required to not complete
2715 * before the abort exchange command fully completes.
2716 * Once completed, it is available via the put list.
2717 */
2718 if (lpfc_ncmd->nvmeCmd) {
2719 nvme_cmd = lpfc_ncmd->nvmeCmd;
2720 nvme_cmd->done(nvme_cmd);
2721 lpfc_ncmd->nvmeCmd = NULL;
2722 }
2723 lpfc_release_nvme_buf(phba, lpfc_ncmd);
2724 }
2725
2726 /**
2727 * lpfc_nvme_wait_for_io_drain - Wait for all NVME wqes to complete
2728 * @phba: Pointer to HBA context object.
2729 *
2730 * This function flushes all wqes in the nvme rings and frees all resources
2731 * in the txcmplq. This function does not issue abort wqes for the IO
2732 * commands in txcmplq, they will just be returned with
2733 * IOERR_SLI_DOWN. This function is invoked with EEH when device's PCI
2734 * slot has been permanently disabled.
2735 **/
2736 void
lpfc_nvme_wait_for_io_drain(struct lpfc_hba * phba)2737 lpfc_nvme_wait_for_io_drain(struct lpfc_hba *phba)
2738 {
2739 struct lpfc_sli_ring *pring;
2740 u32 i, wait_cnt = 0;
2741
2742 if (phba->sli_rev < LPFC_SLI_REV4 || !phba->sli4_hba.hdwq)
2743 return;
2744
2745 /* Cycle through all IO rings and make sure all outstanding
2746 * WQEs have been removed from the txcmplqs.
2747 */
2748 for (i = 0; i < phba->cfg_hdw_queue; i++) {
2749 if (!phba->sli4_hba.hdwq[i].io_wq)
2750 continue;
2751 pring = phba->sli4_hba.hdwq[i].io_wq->pring;
2752
2753 if (!pring)
2754 continue;
2755
2756 /* Retrieve everything on the txcmplq */
2757 while (!list_empty(&pring->txcmplq)) {
2758 msleep(LPFC_XRI_EXCH_BUSY_WAIT_T1);
2759 wait_cnt++;
2760
2761 /* The sleep is 10mS. Every ten seconds,
2762 * dump a message. Something is wrong.
2763 */
2764 if ((wait_cnt % 1000) == 0) {
2765 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
2766 "6178 NVME IO not empty, "
2767 "cnt %d\n", wait_cnt);
2768 }
2769 }
2770 }
2771 }
2772
2773 void
lpfc_nvme_cancel_iocb(struct lpfc_hba * phba,struct lpfc_iocbq * pwqeIn)2774 lpfc_nvme_cancel_iocb(struct lpfc_hba *phba, struct lpfc_iocbq *pwqeIn)
2775 {
2776 #if (IS_ENABLED(CONFIG_NVME_FC))
2777 struct lpfc_io_buf *lpfc_ncmd;
2778 struct nvmefc_fcp_req *nCmd;
2779 struct lpfc_nvme_fcpreq_priv *freqpriv;
2780
2781 if (!pwqeIn->context1) {
2782 lpfc_sli_release_iocbq(phba, pwqeIn);
2783 return;
2784 }
2785 /* For abort iocb just return, IO iocb will do a done call */
2786 if (bf_get(wqe_cmnd, &pwqeIn->wqe.gen_req.wqe_com) ==
2787 CMD_ABORT_XRI_CX) {
2788 lpfc_sli_release_iocbq(phba, pwqeIn);
2789 return;
2790 }
2791 lpfc_ncmd = (struct lpfc_io_buf *)pwqeIn->context1;
2792
2793 spin_lock(&lpfc_ncmd->buf_lock);
2794 if (!lpfc_ncmd->nvmeCmd) {
2795 spin_unlock(&lpfc_ncmd->buf_lock);
2796 lpfc_release_nvme_buf(phba, lpfc_ncmd);
2797 return;
2798 }
2799
2800 nCmd = lpfc_ncmd->nvmeCmd;
2801 lpfc_printf_log(phba, KERN_INFO, LOG_NVME_IOERR,
2802 "6194 NVME Cancel xri %x\n",
2803 lpfc_ncmd->cur_iocbq.sli4_xritag);
2804
2805 nCmd->transferred_length = 0;
2806 nCmd->rcv_rsplen = 0;
2807 nCmd->status = NVME_SC_INTERNAL;
2808 freqpriv = nCmd->private;
2809 freqpriv->nvme_buf = NULL;
2810 lpfc_ncmd->nvmeCmd = NULL;
2811
2812 spin_unlock(&lpfc_ncmd->buf_lock);
2813 nCmd->done(nCmd);
2814
2815 /* Call release with XB=1 to queue the IO into the abort list. */
2816 lpfc_release_nvme_buf(phba, lpfc_ncmd);
2817 #endif
2818 }
2819