1 /*******************************************************************
2 * This file is part of the Emulex Linux Device Driver for *
3 * Fibre Channel Host Bus Adapters. *
4 * Copyright (C) 2017-2025 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/export.h>
27 #include <linux/delay.h>
28 #include <linux/unaligned.h>
29 #include <linux/t10-pi.h>
30 #include <linux/crc-t10dif.h>
31 #include <linux/blk-cgroup.h>
32 #include <net/checksum.h>
33
34 #include <scsi/scsi.h>
35 #include <scsi/scsi_device.h>
36 #include <scsi/scsi_eh.h>
37 #include <scsi/scsi_host.h>
38 #include <scsi/scsi_tcq.h>
39 #include <scsi/scsi_transport_fc.h>
40
41 #include "lpfc_version.h"
42 #include "lpfc_hw4.h"
43 #include "lpfc_hw.h"
44 #include "lpfc_sli.h"
45 #include "lpfc_sli4.h"
46 #include "lpfc_nl.h"
47 #include "lpfc_disc.h"
48 #include "lpfc.h"
49 #include "lpfc_scsi.h"
50 #include "lpfc_logmsg.h"
51 #include "lpfc_crtn.h"
52 #include "lpfc_vport.h"
53
54 #define LPFC_RESET_WAIT 2
55 #define LPFC_ABORT_WAIT 2
56
57 static char *dif_op_str[] = {
58 "PROT_NORMAL",
59 "PROT_READ_INSERT",
60 "PROT_WRITE_STRIP",
61 "PROT_READ_STRIP",
62 "PROT_WRITE_INSERT",
63 "PROT_READ_PASS",
64 "PROT_WRITE_PASS",
65 };
66
67 struct scsi_dif_tuple {
68 __be16 guard_tag; /* Checksum */
69 __be16 app_tag; /* Opaque storage */
70 __be32 ref_tag; /* Target LBA or indirect LBA */
71 };
72
73 static struct lpfc_rport_data *
lpfc_rport_data_from_scsi_device(struct scsi_device * sdev)74 lpfc_rport_data_from_scsi_device(struct scsi_device *sdev)
75 {
76 struct lpfc_vport *vport = (struct lpfc_vport *)sdev->host->hostdata;
77
78 if (vport->phba->cfg_fof)
79 return ((struct lpfc_device_data *)sdev->hostdata)->rport_data;
80 else
81 return (struct lpfc_rport_data *)sdev->hostdata;
82 }
83
84 static void
85 lpfc_release_scsi_buf_s4(struct lpfc_hba *phba, struct lpfc_io_buf *psb);
86 static void
87 lpfc_release_scsi_buf_s3(struct lpfc_hba *phba, struct lpfc_io_buf *psb);
88 static int
89 lpfc_prot_group_type(struct lpfc_hba *phba, struct scsi_cmnd *sc);
90
91 /**
92 * lpfc_sli4_set_rsp_sgl_last - Set the last bit in the response sge.
93 * @phba: Pointer to HBA object.
94 * @lpfc_cmd: lpfc scsi command object pointer.
95 *
96 * This function is called from the lpfc_prep_task_mgmt_cmd function to
97 * set the last bit in the response sge entry.
98 **/
99 static void
lpfc_sli4_set_rsp_sgl_last(struct lpfc_hba * phba,struct lpfc_io_buf * lpfc_cmd)100 lpfc_sli4_set_rsp_sgl_last(struct lpfc_hba *phba,
101 struct lpfc_io_buf *lpfc_cmd)
102 {
103 struct sli4_sge *sgl = (struct sli4_sge *)lpfc_cmd->dma_sgl;
104 if (sgl) {
105 sgl += 1;
106 sgl->word2 = le32_to_cpu(sgl->word2);
107 bf_set(lpfc_sli4_sge_last, sgl, 1);
108 sgl->word2 = cpu_to_le32(sgl->word2);
109 }
110 }
111
112 /**
113 * lpfc_rampdown_queue_depth - Post RAMP_DOWN_QUEUE event to worker thread
114 * @phba: The Hba for which this call is being executed.
115 *
116 * This routine is called when there is resource error in driver or firmware.
117 * This routine posts WORKER_RAMP_DOWN_QUEUE event for @phba. This routine
118 * posts at most 1 event each second. This routine wakes up worker thread of
119 * @phba to process WORKER_RAM_DOWN_EVENT event.
120 *
121 * This routine should be called with no lock held.
122 **/
123 void
lpfc_rampdown_queue_depth(struct lpfc_hba * phba)124 lpfc_rampdown_queue_depth(struct lpfc_hba *phba)
125 {
126 unsigned long flags;
127 uint32_t evt_posted;
128 unsigned long expires;
129
130 spin_lock_irqsave(&phba->hbalock, flags);
131 atomic_inc(&phba->num_rsrc_err);
132 phba->last_rsrc_error_time = jiffies;
133
134 expires = phba->last_ramp_down_time + QUEUE_RAMP_DOWN_INTERVAL;
135 if (time_after(expires, jiffies)) {
136 spin_unlock_irqrestore(&phba->hbalock, flags);
137 return;
138 }
139
140 phba->last_ramp_down_time = jiffies;
141
142 spin_unlock_irqrestore(&phba->hbalock, flags);
143
144 spin_lock_irqsave(&phba->pport->work_port_lock, flags);
145 evt_posted = phba->pport->work_port_events & WORKER_RAMP_DOWN_QUEUE;
146 if (!evt_posted)
147 phba->pport->work_port_events |= WORKER_RAMP_DOWN_QUEUE;
148 spin_unlock_irqrestore(&phba->pport->work_port_lock, flags);
149
150 if (!evt_posted)
151 lpfc_worker_wake_up(phba);
152 return;
153 }
154
155 /**
156 * lpfc_ramp_down_queue_handler - WORKER_RAMP_DOWN_QUEUE event handler
157 * @phba: The Hba for which this call is being executed.
158 *
159 * This routine is called to process WORKER_RAMP_DOWN_QUEUE event for worker
160 * thread.This routine reduces queue depth for all scsi device on each vport
161 * associated with @phba.
162 **/
163 void
lpfc_ramp_down_queue_handler(struct lpfc_hba * phba)164 lpfc_ramp_down_queue_handler(struct lpfc_hba *phba)
165 {
166 struct lpfc_vport **vports;
167 struct Scsi_Host *shost;
168 struct scsi_device *sdev;
169 unsigned long new_queue_depth;
170 unsigned long num_rsrc_err;
171 int i;
172
173 num_rsrc_err = atomic_read(&phba->num_rsrc_err);
174
175 /*
176 * The error and success command counters are global per
177 * driver instance. If another handler has already
178 * operated on this error event, just exit.
179 */
180 if (num_rsrc_err == 0)
181 return;
182
183 vports = lpfc_create_vport_work_array(phba);
184 if (vports != NULL)
185 for (i = 0; i <= phba->max_vports && vports[i] != NULL; i++) {
186 shost = lpfc_shost_from_vport(vports[i]);
187 shost_for_each_device(sdev, shost) {
188 if (num_rsrc_err >= sdev->queue_depth)
189 new_queue_depth = 1;
190 else
191 new_queue_depth = sdev->queue_depth -
192 num_rsrc_err;
193 scsi_change_queue_depth(sdev, new_queue_depth);
194 }
195 }
196 lpfc_destroy_vport_work_array(phba, vports);
197 atomic_set(&phba->num_rsrc_err, 0);
198 }
199
200 /**
201 * lpfc_scsi_dev_block - set all scsi hosts to block state
202 * @phba: Pointer to HBA context object.
203 *
204 * This function walks vport list and set each SCSI host to block state
205 * by invoking fc_remote_port_delete() routine. This function is invoked
206 * with EEH when device's PCI slot has been permanently disabled.
207 **/
208 void
lpfc_scsi_dev_block(struct lpfc_hba * phba)209 lpfc_scsi_dev_block(struct lpfc_hba *phba)
210 {
211 struct lpfc_vport **vports;
212 struct Scsi_Host *shost;
213 struct scsi_device *sdev;
214 struct fc_rport *rport;
215 int i;
216
217 vports = lpfc_create_vport_work_array(phba);
218 if (vports != NULL)
219 for (i = 0; i <= phba->max_vports && vports[i] != NULL; i++) {
220 shost = lpfc_shost_from_vport(vports[i]);
221 shost_for_each_device(sdev, shost) {
222 rport = starget_to_rport(scsi_target(sdev));
223 fc_remote_port_delete(rport);
224 }
225 }
226 lpfc_destroy_vport_work_array(phba, vports);
227 }
228
229 /**
230 * lpfc_new_scsi_buf_s3 - Scsi buffer allocator for HBA with SLI3 IF spec
231 * @vport: The virtual port for which this call being executed.
232 * @num_to_alloc: The requested number of buffers to allocate.
233 *
234 * This routine allocates a scsi buffer for device with SLI-3 interface spec,
235 * the scsi buffer contains all the necessary information needed to initiate
236 * a SCSI I/O. The non-DMAable buffer region contains information to build
237 * the IOCB. The DMAable region contains memory for the FCP CMND, FCP RSP,
238 * and the initial BPL. In addition to allocating memory, the FCP CMND and
239 * FCP RSP BDEs are setup in the BPL and the BPL BDE is setup in the IOCB.
240 *
241 * Return codes:
242 * int - number of scsi buffers that were allocated.
243 * 0 = failure, less than num_to_alloc is a partial failure.
244 **/
245 static int
lpfc_new_scsi_buf_s3(struct lpfc_vport * vport,int num_to_alloc)246 lpfc_new_scsi_buf_s3(struct lpfc_vport *vport, int num_to_alloc)
247 {
248 struct lpfc_hba *phba = vport->phba;
249 struct lpfc_io_buf *psb;
250 struct ulp_bde64 *bpl;
251 IOCB_t *iocb;
252 dma_addr_t pdma_phys_fcp_cmd;
253 dma_addr_t pdma_phys_fcp_rsp;
254 dma_addr_t pdma_phys_sgl;
255 uint16_t iotag;
256 int bcnt, bpl_size;
257
258 bpl_size = phba->cfg_sg_dma_buf_size -
259 (sizeof(struct fcp_cmnd) + sizeof(struct fcp_rsp));
260
261 lpfc_printf_vlog(vport, KERN_INFO, LOG_FCP,
262 "9067 ALLOC %d scsi_bufs: %d (%d + %d + %d)\n",
263 num_to_alloc, phba->cfg_sg_dma_buf_size,
264 (int)sizeof(struct fcp_cmnd),
265 (int)sizeof(struct fcp_rsp), bpl_size);
266
267 for (bcnt = 0; bcnt < num_to_alloc; bcnt++) {
268 psb = kzalloc(sizeof(struct lpfc_io_buf), GFP_KERNEL);
269 if (!psb)
270 break;
271
272 /*
273 * Get memory from the pci pool to map the virt space to pci
274 * bus space for an I/O. The DMA buffer includes space for the
275 * struct fcp_cmnd, struct fcp_rsp and the number of bde's
276 * necessary to support the sg_tablesize.
277 */
278 psb->data = dma_pool_zalloc(phba->lpfc_sg_dma_buf_pool,
279 GFP_KERNEL, &psb->dma_handle);
280 if (!psb->data) {
281 kfree(psb);
282 break;
283 }
284
285
286 /* Allocate iotag for psb->cur_iocbq. */
287 iotag = lpfc_sli_next_iotag(phba, &psb->cur_iocbq);
288 if (iotag == 0) {
289 dma_pool_free(phba->lpfc_sg_dma_buf_pool,
290 psb->data, psb->dma_handle);
291 kfree(psb);
292 break;
293 }
294 psb->cur_iocbq.cmd_flag |= LPFC_IO_FCP;
295
296 psb->fcp_cmnd = psb->data;
297 psb->fcp_rsp = psb->data + sizeof(struct fcp_cmnd);
298 psb->dma_sgl = psb->data + sizeof(struct fcp_cmnd) +
299 sizeof(struct fcp_rsp);
300
301 /* Initialize local short-hand pointers. */
302 bpl = (struct ulp_bde64 *)psb->dma_sgl;
303 pdma_phys_fcp_cmd = psb->dma_handle;
304 pdma_phys_fcp_rsp = psb->dma_handle + sizeof(struct fcp_cmnd);
305 pdma_phys_sgl = psb->dma_handle + sizeof(struct fcp_cmnd) +
306 sizeof(struct fcp_rsp);
307
308 /*
309 * The first two bdes are the FCP_CMD and FCP_RSP. The balance
310 * are sg list bdes. Initialize the first two and leave the
311 * rest for queuecommand.
312 */
313 bpl[0].addrHigh = le32_to_cpu(putPaddrHigh(pdma_phys_fcp_cmd));
314 bpl[0].addrLow = le32_to_cpu(putPaddrLow(pdma_phys_fcp_cmd));
315 bpl[0].tus.f.bdeSize = sizeof(struct fcp_cmnd);
316 bpl[0].tus.f.bdeFlags = BUFF_TYPE_BDE_64;
317 bpl[0].tus.w = le32_to_cpu(bpl[0].tus.w);
318
319 /* Setup the physical region for the FCP RSP */
320 bpl[1].addrHigh = le32_to_cpu(putPaddrHigh(pdma_phys_fcp_rsp));
321 bpl[1].addrLow = le32_to_cpu(putPaddrLow(pdma_phys_fcp_rsp));
322 bpl[1].tus.f.bdeSize = sizeof(struct fcp_rsp);
323 bpl[1].tus.f.bdeFlags = BUFF_TYPE_BDE_64;
324 bpl[1].tus.w = le32_to_cpu(bpl[1].tus.w);
325
326 /*
327 * Since the IOCB for the FCP I/O is built into this
328 * lpfc_scsi_buf, initialize it with all known data now.
329 */
330 iocb = &psb->cur_iocbq.iocb;
331 iocb->un.fcpi64.bdl.ulpIoTag32 = 0;
332 if ((phba->sli_rev == 3) &&
333 !(phba->sli3_options & LPFC_SLI3_BG_ENABLED)) {
334 /* fill in immediate fcp command BDE */
335 iocb->un.fcpi64.bdl.bdeFlags = BUFF_TYPE_BDE_IMMED;
336 iocb->un.fcpi64.bdl.bdeSize = sizeof(struct fcp_cmnd);
337 iocb->un.fcpi64.bdl.addrLow = offsetof(IOCB_t,
338 unsli3.fcp_ext.icd);
339 iocb->un.fcpi64.bdl.addrHigh = 0;
340 iocb->ulpBdeCount = 0;
341 iocb->ulpLe = 0;
342 /* fill in response BDE */
343 iocb->unsli3.fcp_ext.rbde.tus.f.bdeFlags =
344 BUFF_TYPE_BDE_64;
345 iocb->unsli3.fcp_ext.rbde.tus.f.bdeSize =
346 sizeof(struct fcp_rsp);
347 iocb->unsli3.fcp_ext.rbde.addrLow =
348 putPaddrLow(pdma_phys_fcp_rsp);
349 iocb->unsli3.fcp_ext.rbde.addrHigh =
350 putPaddrHigh(pdma_phys_fcp_rsp);
351 } else {
352 iocb->un.fcpi64.bdl.bdeFlags = BUFF_TYPE_BLP_64;
353 iocb->un.fcpi64.bdl.bdeSize =
354 (2 * sizeof(struct ulp_bde64));
355 iocb->un.fcpi64.bdl.addrLow =
356 putPaddrLow(pdma_phys_sgl);
357 iocb->un.fcpi64.bdl.addrHigh =
358 putPaddrHigh(pdma_phys_sgl);
359 iocb->ulpBdeCount = 1;
360 iocb->ulpLe = 1;
361 }
362 iocb->ulpClass = CLASS3;
363 psb->status = IOSTAT_SUCCESS;
364 /* Put it back into the SCSI buffer list */
365 psb->cur_iocbq.io_buf = psb;
366 spin_lock_init(&psb->buf_lock);
367 lpfc_release_scsi_buf_s3(phba, psb);
368
369 }
370
371 return bcnt;
372 }
373
374 /**
375 * lpfc_sli4_vport_delete_fcp_xri_aborted -Remove all ndlp references for vport
376 * @vport: pointer to lpfc vport data structure.
377 *
378 * This routine is invoked by the vport cleanup for deletions and the cleanup
379 * for an ndlp on removal.
380 **/
381 void
lpfc_sli4_vport_delete_fcp_xri_aborted(struct lpfc_vport * vport)382 lpfc_sli4_vport_delete_fcp_xri_aborted(struct lpfc_vport *vport)
383 {
384 struct lpfc_hba *phba = vport->phba;
385 struct lpfc_io_buf *psb, *next_psb;
386 struct lpfc_sli4_hdw_queue *qp;
387 unsigned long iflag = 0;
388 int idx;
389
390 if (!(vport->cfg_enable_fc4_type & LPFC_ENABLE_FCP))
391 return;
392
393 /* may be called before queues established if hba_setup fails */
394 if (!phba->sli4_hba.hdwq)
395 return;
396
397 spin_lock_irqsave(&phba->hbalock, iflag);
398 for (idx = 0; idx < phba->cfg_hdw_queue; idx++) {
399 qp = &phba->sli4_hba.hdwq[idx];
400
401 spin_lock(&qp->abts_io_buf_list_lock);
402 list_for_each_entry_safe(psb, next_psb,
403 &qp->lpfc_abts_io_buf_list, list) {
404 if (psb->cur_iocbq.cmd_flag & LPFC_IO_NVME)
405 continue;
406
407 if (psb->rdata && psb->rdata->pnode &&
408 psb->rdata->pnode->vport == vport)
409 psb->rdata = NULL;
410 }
411 spin_unlock(&qp->abts_io_buf_list_lock);
412 }
413 spin_unlock_irqrestore(&phba->hbalock, iflag);
414 }
415
416 /**
417 * lpfc_sli4_io_xri_aborted - Fast-path process of fcp xri abort
418 * @phba: pointer to lpfc hba data structure.
419 * @axri: pointer to the fcp xri abort wcqe structure.
420 * @idx: index into hdwq
421 *
422 * This routine is invoked by the worker thread to process a SLI4 fast-path
423 * FCP or NVME aborted xri.
424 **/
425 void
lpfc_sli4_io_xri_aborted(struct lpfc_hba * phba,struct sli4_wcqe_xri_aborted * axri,int idx)426 lpfc_sli4_io_xri_aborted(struct lpfc_hba *phba,
427 struct sli4_wcqe_xri_aborted *axri, int idx)
428 {
429 u16 xri = 0;
430 u16 rxid = 0;
431 struct lpfc_io_buf *psb, *next_psb;
432 struct lpfc_sli4_hdw_queue *qp;
433 unsigned long iflag = 0;
434 struct lpfc_iocbq *iocbq;
435 int i;
436 struct lpfc_nodelist *ndlp;
437 int rrq_empty = 0;
438 struct lpfc_sli_ring *pring = phba->sli4_hba.els_wq->pring;
439 struct scsi_cmnd *cmd;
440 int offline = 0;
441
442 if (!(phba->cfg_enable_fc4_type & LPFC_ENABLE_FCP))
443 return;
444 offline = pci_channel_offline(phba->pcidev);
445 if (!offline) {
446 xri = bf_get(lpfc_wcqe_xa_xri, axri);
447 rxid = bf_get(lpfc_wcqe_xa_remote_xid, axri);
448 }
449 qp = &phba->sli4_hba.hdwq[idx];
450 spin_lock_irqsave(&phba->hbalock, iflag);
451 spin_lock(&qp->abts_io_buf_list_lock);
452 list_for_each_entry_safe(psb, next_psb,
453 &qp->lpfc_abts_io_buf_list, list) {
454 if (offline)
455 xri = psb->cur_iocbq.sli4_xritag;
456 if (psb->cur_iocbq.sli4_xritag == xri) {
457 list_del_init(&psb->list);
458 psb->flags &= ~LPFC_SBUF_XBUSY;
459 psb->status = IOSTAT_SUCCESS;
460 if (psb->cur_iocbq.cmd_flag & LPFC_IO_NVME) {
461 qp->abts_nvme_io_bufs--;
462 spin_unlock(&qp->abts_io_buf_list_lock);
463 spin_unlock_irqrestore(&phba->hbalock, iflag);
464 if (!offline) {
465 lpfc_sli4_nvme_xri_aborted(phba, axri,
466 psb);
467 return;
468 }
469 lpfc_sli4_nvme_pci_offline_aborted(phba, psb);
470 spin_lock_irqsave(&phba->hbalock, iflag);
471 spin_lock(&qp->abts_io_buf_list_lock);
472 continue;
473 }
474 qp->abts_scsi_io_bufs--;
475 spin_unlock(&qp->abts_io_buf_list_lock);
476
477 if (psb->rdata && psb->rdata->pnode)
478 ndlp = psb->rdata->pnode;
479 else
480 ndlp = NULL;
481 spin_unlock_irqrestore(&phba->hbalock, iflag);
482
483 spin_lock_irqsave(&phba->rrq_list_lock, iflag);
484 rrq_empty = list_empty(&phba->active_rrq_list);
485 spin_unlock_irqrestore(&phba->rrq_list_lock, iflag);
486 if (ndlp && !offline) {
487 lpfc_set_rrq_active(phba, ndlp,
488 psb->cur_iocbq.sli4_lxritag, rxid, 1);
489 lpfc_sli4_abts_err_handler(phba, ndlp, axri);
490 }
491
492 if (phba->cfg_fcp_wait_abts_rsp || offline) {
493 spin_lock_irqsave(&psb->buf_lock, iflag);
494 cmd = psb->pCmd;
495 psb->pCmd = NULL;
496 spin_unlock_irqrestore(&psb->buf_lock, iflag);
497
498 /* The sdev is not guaranteed to be valid post
499 * scsi_done upcall.
500 */
501 if (cmd)
502 scsi_done(cmd);
503
504 /*
505 * We expect there is an abort thread waiting
506 * for command completion wake up the thread.
507 */
508 spin_lock_irqsave(&psb->buf_lock, iflag);
509 psb->cur_iocbq.cmd_flag &=
510 ~LPFC_DRIVER_ABORTED;
511 if (psb->waitq)
512 wake_up(psb->waitq);
513 spin_unlock_irqrestore(&psb->buf_lock, iflag);
514 }
515
516 lpfc_release_scsi_buf_s4(phba, psb);
517 if (rrq_empty)
518 lpfc_worker_wake_up(phba);
519 if (!offline)
520 return;
521 spin_lock_irqsave(&phba->hbalock, iflag);
522 spin_lock(&qp->abts_io_buf_list_lock);
523 continue;
524 }
525 }
526 spin_unlock(&qp->abts_io_buf_list_lock);
527 if (!offline) {
528 for (i = 1; i <= phba->sli.last_iotag; i++) {
529 iocbq = phba->sli.iocbq_lookup[i];
530
531 if (!(iocbq->cmd_flag & LPFC_IO_FCP) ||
532 (iocbq->cmd_flag & LPFC_IO_LIBDFC))
533 continue;
534 if (iocbq->sli4_xritag != xri)
535 continue;
536 psb = container_of(iocbq, struct lpfc_io_buf, cur_iocbq);
537 psb->flags &= ~LPFC_SBUF_XBUSY;
538 spin_unlock_irqrestore(&phba->hbalock, iflag);
539 if (test_bit(HBA_SETUP, &phba->hba_flag) &&
540 !list_empty(&pring->txq))
541 lpfc_worker_wake_up(phba);
542 return;
543 }
544 }
545 spin_unlock_irqrestore(&phba->hbalock, iflag);
546 }
547
548 /**
549 * lpfc_get_scsi_buf_s3 - Get a scsi buffer from lpfc_scsi_buf_list of the HBA
550 * @phba: The HBA for which this call is being executed.
551 * @ndlp: pointer to a node-list data structure.
552 * @cmnd: Pointer to scsi_cmnd data structure.
553 *
554 * This routine removes a scsi buffer from head of @phba lpfc_scsi_buf_list list
555 * and returns to caller.
556 *
557 * Return codes:
558 * NULL - Error
559 * Pointer to lpfc_scsi_buf - Success
560 **/
561 static struct lpfc_io_buf *
lpfc_get_scsi_buf_s3(struct lpfc_hba * phba,struct lpfc_nodelist * ndlp,struct scsi_cmnd * cmnd)562 lpfc_get_scsi_buf_s3(struct lpfc_hba *phba, struct lpfc_nodelist *ndlp,
563 struct scsi_cmnd *cmnd)
564 {
565 struct lpfc_io_buf *lpfc_cmd = NULL;
566 struct list_head *scsi_buf_list_get = &phba->lpfc_scsi_buf_list_get;
567 unsigned long iflag = 0;
568
569 spin_lock_irqsave(&phba->scsi_buf_list_get_lock, iflag);
570 list_remove_head(scsi_buf_list_get, lpfc_cmd, struct lpfc_io_buf,
571 list);
572 if (!lpfc_cmd) {
573 spin_lock(&phba->scsi_buf_list_put_lock);
574 list_splice(&phba->lpfc_scsi_buf_list_put,
575 &phba->lpfc_scsi_buf_list_get);
576 INIT_LIST_HEAD(&phba->lpfc_scsi_buf_list_put);
577 list_remove_head(scsi_buf_list_get, lpfc_cmd,
578 struct lpfc_io_buf, list);
579 spin_unlock(&phba->scsi_buf_list_put_lock);
580 }
581 spin_unlock_irqrestore(&phba->scsi_buf_list_get_lock, iflag);
582
583 if (lpfc_ndlp_check_qdepth(phba, ndlp) && lpfc_cmd) {
584 atomic_inc(&ndlp->cmd_pending);
585 lpfc_cmd->flags |= LPFC_SBUF_BUMP_QDEPTH;
586 }
587 return lpfc_cmd;
588 }
589 /**
590 * lpfc_get_scsi_buf_s4 - Get a scsi buffer from io_buf_list of the HBA
591 * @phba: The HBA for which this call is being executed.
592 * @ndlp: pointer to a node-list data structure.
593 * @cmnd: Pointer to scsi_cmnd data structure.
594 *
595 * This routine removes a scsi buffer from head of @hdwq io_buf_list
596 * and returns to caller.
597 *
598 * Return codes:
599 * NULL - Error
600 * Pointer to lpfc_scsi_buf - Success
601 **/
602 static struct lpfc_io_buf *
lpfc_get_scsi_buf_s4(struct lpfc_hba * phba,struct lpfc_nodelist * ndlp,struct scsi_cmnd * cmnd)603 lpfc_get_scsi_buf_s4(struct lpfc_hba *phba, struct lpfc_nodelist *ndlp,
604 struct scsi_cmnd *cmnd)
605 {
606 struct lpfc_io_buf *lpfc_cmd;
607 struct lpfc_sli4_hdw_queue *qp;
608 struct sli4_sge_le *sgl;
609 dma_addr_t pdma_phys_fcp_rsp;
610 dma_addr_t pdma_phys_fcp_cmd;
611 uint32_t cpu, idx;
612 int tag;
613 struct fcp_cmd_rsp_buf *tmp = NULL;
614
615 cpu = raw_smp_processor_id();
616 if (cmnd && phba->cfg_fcp_io_sched == LPFC_FCP_SCHED_BY_HDWQ) {
617 tag = blk_mq_unique_tag(scsi_cmd_to_rq(cmnd));
618 idx = blk_mq_unique_tag_to_hwq(tag);
619 } else {
620 idx = phba->sli4_hba.cpu_map[cpu].hdwq;
621 }
622
623 lpfc_cmd = lpfc_get_io_buf(phba, ndlp, idx,
624 !phba->cfg_xri_rebalancing);
625 if (!lpfc_cmd) {
626 qp = &phba->sli4_hba.hdwq[idx];
627 qp->empty_io_bufs++;
628 return NULL;
629 }
630
631 /* Setup key fields in buffer that may have been changed
632 * if other protocols used this buffer.
633 */
634 lpfc_cmd->cur_iocbq.cmd_flag = LPFC_IO_FCP;
635 lpfc_cmd->prot_seg_cnt = 0;
636 lpfc_cmd->seg_cnt = 0;
637 lpfc_cmd->timeout = 0;
638 lpfc_cmd->flags = 0;
639 lpfc_cmd->start_time = jiffies;
640 lpfc_cmd->waitq = NULL;
641 lpfc_cmd->cpu = cpu;
642 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
643 lpfc_cmd->prot_data_type = 0;
644 #endif
645 tmp = lpfc_get_cmd_rsp_buf_per_hdwq(phba, lpfc_cmd);
646 if (!tmp) {
647 lpfc_release_io_buf(phba, lpfc_cmd, lpfc_cmd->hdwq);
648 return NULL;
649 }
650
651 lpfc_cmd->fcp_cmnd = tmp->fcp_cmnd;
652 lpfc_cmd->fcp_rsp = tmp->fcp_rsp;
653
654 /*
655 * The first two SGEs are the FCP_CMD and FCP_RSP.
656 * The balance are sg list bdes. Initialize the
657 * first two and leave the rest for queuecommand.
658 */
659 sgl = (struct sli4_sge_le *)lpfc_cmd->dma_sgl;
660 pdma_phys_fcp_cmd = tmp->fcp_cmd_rsp_dma_handle;
661 sgl->addr_hi = cpu_to_le32(putPaddrHigh(pdma_phys_fcp_cmd));
662 sgl->addr_lo = cpu_to_le32(putPaddrLow(pdma_phys_fcp_cmd));
663 bf_set_le32(lpfc_sli4_sge_last, sgl, 0);
664 if (cmnd && cmnd->cmd_len > LPFC_FCP_CDB_LEN)
665 sgl->sge_len = cpu_to_le32(sizeof(struct fcp_cmnd32));
666 else
667 sgl->sge_len = cpu_to_le32(sizeof(struct fcp_cmnd));
668
669 sgl++;
670
671 /* Setup the physical region for the FCP RSP */
672 pdma_phys_fcp_rsp = pdma_phys_fcp_cmd + sizeof(struct fcp_cmnd32);
673 sgl->addr_hi = cpu_to_le32(putPaddrHigh(pdma_phys_fcp_rsp));
674 sgl->addr_lo = cpu_to_le32(putPaddrLow(pdma_phys_fcp_rsp));
675 bf_set_le32(lpfc_sli4_sge_last, sgl, 1);
676 sgl->sge_len = cpu_to_le32(sizeof(struct fcp_rsp));
677
678 if (lpfc_ndlp_check_qdepth(phba, ndlp)) {
679 atomic_inc(&ndlp->cmd_pending);
680 lpfc_cmd->flags |= LPFC_SBUF_BUMP_QDEPTH;
681 }
682 return lpfc_cmd;
683 }
684 /**
685 * lpfc_get_scsi_buf - Get a scsi buffer from lpfc_scsi_buf_list of the HBA
686 * @phba: The HBA for which this call is being executed.
687 * @ndlp: pointer to a node-list data structure.
688 * @cmnd: Pointer to scsi_cmnd data structure.
689 *
690 * This routine removes a scsi buffer from head of @phba lpfc_scsi_buf_list list
691 * and returns to caller.
692 *
693 * Return codes:
694 * NULL - Error
695 * Pointer to lpfc_scsi_buf - Success
696 **/
697 static struct lpfc_io_buf*
lpfc_get_scsi_buf(struct lpfc_hba * phba,struct lpfc_nodelist * ndlp,struct scsi_cmnd * cmnd)698 lpfc_get_scsi_buf(struct lpfc_hba *phba, struct lpfc_nodelist *ndlp,
699 struct scsi_cmnd *cmnd)
700 {
701 return phba->lpfc_get_scsi_buf(phba, ndlp, cmnd);
702 }
703
704 /**
705 * lpfc_release_scsi_buf_s3 - Return a scsi buffer back to hba scsi buf list
706 * @phba: The Hba for which this call is being executed.
707 * @psb: The scsi buffer which is being released.
708 *
709 * This routine releases @psb scsi buffer by adding it to tail of @phba
710 * lpfc_scsi_buf_list list.
711 **/
712 static void
lpfc_release_scsi_buf_s3(struct lpfc_hba * phba,struct lpfc_io_buf * psb)713 lpfc_release_scsi_buf_s3(struct lpfc_hba *phba, struct lpfc_io_buf *psb)
714 {
715 unsigned long iflag = 0;
716
717 psb->seg_cnt = 0;
718 psb->prot_seg_cnt = 0;
719
720 spin_lock_irqsave(&phba->scsi_buf_list_put_lock, iflag);
721 psb->pCmd = NULL;
722 psb->cur_iocbq.cmd_flag = LPFC_IO_FCP;
723 list_add_tail(&psb->list, &phba->lpfc_scsi_buf_list_put);
724 spin_unlock_irqrestore(&phba->scsi_buf_list_put_lock, iflag);
725 }
726
727 /**
728 * lpfc_release_scsi_buf_s4: Return a scsi buffer back to hba scsi buf list.
729 * @phba: The Hba for which this call is being executed.
730 * @psb: The scsi buffer which is being released.
731 *
732 * This routine releases @psb scsi buffer by adding it to tail of @hdwq
733 * io_buf_list list. For SLI4 XRI's are tied to the scsi buffer
734 * and cannot be reused for at least RA_TOV amount of time if it was
735 * aborted.
736 **/
737 static void
lpfc_release_scsi_buf_s4(struct lpfc_hba * phba,struct lpfc_io_buf * psb)738 lpfc_release_scsi_buf_s4(struct lpfc_hba *phba, struct lpfc_io_buf *psb)
739 {
740 struct lpfc_sli4_hdw_queue *qp;
741 unsigned long iflag = 0;
742
743 psb->seg_cnt = 0;
744 psb->prot_seg_cnt = 0;
745
746 qp = psb->hdwq;
747 if (psb->flags & LPFC_SBUF_XBUSY) {
748 spin_lock_irqsave(&qp->abts_io_buf_list_lock, iflag);
749 if (!phba->cfg_fcp_wait_abts_rsp)
750 psb->pCmd = NULL;
751 list_add_tail(&psb->list, &qp->lpfc_abts_io_buf_list);
752 qp->abts_scsi_io_bufs++;
753 spin_unlock_irqrestore(&qp->abts_io_buf_list_lock, iflag);
754 } else {
755 lpfc_release_io_buf(phba, (struct lpfc_io_buf *)psb, qp);
756 }
757 }
758
759 /**
760 * lpfc_release_scsi_buf: Return a scsi buffer back to hba scsi buf list.
761 * @phba: The Hba for which this call is being executed.
762 * @psb: The scsi buffer which is being released.
763 *
764 * This routine releases @psb scsi buffer by adding it to tail of @phba
765 * lpfc_scsi_buf_list list.
766 **/
767 static void
lpfc_release_scsi_buf(struct lpfc_hba * phba,struct lpfc_io_buf * psb)768 lpfc_release_scsi_buf(struct lpfc_hba *phba, struct lpfc_io_buf *psb)
769 {
770 if ((psb->flags & LPFC_SBUF_BUMP_QDEPTH) && psb->ndlp)
771 atomic_dec(&psb->ndlp->cmd_pending);
772
773 psb->flags &= ~LPFC_SBUF_BUMP_QDEPTH;
774 phba->lpfc_release_scsi_buf(phba, psb);
775 }
776
777 /**
778 * lpfc_fcpcmd_to_iocb - copy the fcp_cmd data into the IOCB
779 * @data: A pointer to the immediate command data portion of the IOCB.
780 * @fcp_cmnd: The FCP Command that is provided by the SCSI layer.
781 *
782 * The routine copies the entire FCP command from @fcp_cmnd to @data while
783 * byte swapping the data to big endian format for transmission on the wire.
784 **/
785 static void
lpfc_fcpcmd_to_iocb(u8 * data,struct fcp_cmnd * fcp_cmnd)786 lpfc_fcpcmd_to_iocb(u8 *data, struct fcp_cmnd *fcp_cmnd)
787 {
788 int i, j;
789
790 for (i = 0, j = 0; i < sizeof(struct fcp_cmnd);
791 i += sizeof(uint32_t), j++) {
792 ((uint32_t *)data)[j] = cpu_to_be32(((uint32_t *)fcp_cmnd)[j]);
793 }
794 }
795
796 /**
797 * lpfc_scsi_prep_dma_buf_s3 - DMA mapping for scsi buffer to SLI3 IF spec
798 * @phba: The Hba for which this call is being executed.
799 * @lpfc_cmd: The scsi buffer which is going to be mapped.
800 *
801 * This routine does the pci dma mapping for scatter-gather list of scsi cmnd
802 * field of @lpfc_cmd for device with SLI-3 interface spec. This routine scans
803 * through sg elements and format the bde. This routine also initializes all
804 * IOCB fields which are dependent on scsi command request buffer.
805 *
806 * Return codes:
807 * 1 - Error
808 * 0 - Success
809 **/
810 static int
lpfc_scsi_prep_dma_buf_s3(struct lpfc_hba * phba,struct lpfc_io_buf * lpfc_cmd)811 lpfc_scsi_prep_dma_buf_s3(struct lpfc_hba *phba, struct lpfc_io_buf *lpfc_cmd)
812 {
813 struct scsi_cmnd *scsi_cmnd = lpfc_cmd->pCmd;
814 struct scatterlist *sgel = NULL;
815 struct fcp_cmnd *fcp_cmnd = lpfc_cmd->fcp_cmnd;
816 struct ulp_bde64 *bpl = (struct ulp_bde64 *)lpfc_cmd->dma_sgl;
817 struct lpfc_iocbq *iocbq = &lpfc_cmd->cur_iocbq;
818 IOCB_t *iocb_cmd = &lpfc_cmd->cur_iocbq.iocb;
819 struct ulp_bde64 *data_bde = iocb_cmd->unsli3.fcp_ext.dbde;
820 dma_addr_t physaddr;
821 uint32_t num_bde = 0;
822 int nseg, datadir = scsi_cmnd->sc_data_direction;
823
824 /*
825 * There are three possibilities here - use scatter-gather segment, use
826 * the single mapping, or neither. Start the lpfc command prep by
827 * bumping the bpl beyond the fcp_cmnd and fcp_rsp regions to the first
828 * data bde entry.
829 */
830 bpl += 2;
831 if (scsi_sg_count(scsi_cmnd)) {
832 /*
833 * The driver stores the segment count returned from dma_map_sg
834 * because this a count of dma-mappings used to map the use_sg
835 * pages. They are not guaranteed to be the same for those
836 * architectures that implement an IOMMU.
837 */
838
839 nseg = dma_map_sg(&phba->pcidev->dev, scsi_sglist(scsi_cmnd),
840 scsi_sg_count(scsi_cmnd), datadir);
841 if (unlikely(!nseg))
842 return 1;
843
844 lpfc_cmd->seg_cnt = nseg;
845 if (lpfc_cmd->seg_cnt > phba->cfg_sg_seg_cnt) {
846 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
847 "9064 BLKGRD: %s: Too many sg segments"
848 " from dma_map_sg. Config %d, seg_cnt"
849 " %d\n", __func__, phba->cfg_sg_seg_cnt,
850 lpfc_cmd->seg_cnt);
851 WARN_ON_ONCE(lpfc_cmd->seg_cnt > phba->cfg_sg_seg_cnt);
852 lpfc_cmd->seg_cnt = 0;
853 scsi_dma_unmap(scsi_cmnd);
854 return 2;
855 }
856
857 /*
858 * The driver established a maximum scatter-gather segment count
859 * during probe that limits the number of sg elements in any
860 * single scsi command. Just run through the seg_cnt and format
861 * the bde's.
862 * When using SLI-3 the driver will try to fit all the BDEs into
863 * the IOCB. If it can't then the BDEs get added to a BPL as it
864 * does for SLI-2 mode.
865 */
866 scsi_for_each_sg(scsi_cmnd, sgel, nseg, num_bde) {
867 physaddr = sg_dma_address(sgel);
868 if (phba->sli_rev == 3 &&
869 !(phba->sli3_options & LPFC_SLI3_BG_ENABLED) &&
870 !(iocbq->cmd_flag & DSS_SECURITY_OP) &&
871 nseg <= LPFC_EXT_DATA_BDE_COUNT) {
872 data_bde->tus.f.bdeFlags = BUFF_TYPE_BDE_64;
873 data_bde->tus.f.bdeSize = sg_dma_len(sgel);
874 data_bde->addrLow = putPaddrLow(physaddr);
875 data_bde->addrHigh = putPaddrHigh(physaddr);
876 data_bde++;
877 } else {
878 bpl->tus.f.bdeFlags = BUFF_TYPE_BDE_64;
879 bpl->tus.f.bdeSize = sg_dma_len(sgel);
880 bpl->tus.w = le32_to_cpu(bpl->tus.w);
881 bpl->addrLow =
882 le32_to_cpu(putPaddrLow(physaddr));
883 bpl->addrHigh =
884 le32_to_cpu(putPaddrHigh(physaddr));
885 bpl++;
886 }
887 }
888 }
889
890 /*
891 * Finish initializing those IOCB fields that are dependent on the
892 * scsi_cmnd request_buffer. Note that for SLI-2 the bdeSize is
893 * explicitly reinitialized and for SLI-3 the extended bde count is
894 * explicitly reinitialized since all iocb memory resources are reused.
895 */
896 if (phba->sli_rev == 3 &&
897 !(phba->sli3_options & LPFC_SLI3_BG_ENABLED) &&
898 !(iocbq->cmd_flag & DSS_SECURITY_OP)) {
899 if (num_bde > LPFC_EXT_DATA_BDE_COUNT) {
900 /*
901 * The extended IOCB format can only fit 3 BDE or a BPL.
902 * This I/O has more than 3 BDE so the 1st data bde will
903 * be a BPL that is filled in here.
904 */
905 physaddr = lpfc_cmd->dma_handle;
906 data_bde->tus.f.bdeFlags = BUFF_TYPE_BLP_64;
907 data_bde->tus.f.bdeSize = (num_bde *
908 sizeof(struct ulp_bde64));
909 physaddr += (sizeof(struct fcp_cmnd) +
910 sizeof(struct fcp_rsp) +
911 (2 * sizeof(struct ulp_bde64)));
912 data_bde->addrHigh = putPaddrHigh(physaddr);
913 data_bde->addrLow = putPaddrLow(physaddr);
914 /* ebde count includes the response bde and data bpl */
915 iocb_cmd->unsli3.fcp_ext.ebde_count = 2;
916 } else {
917 /* ebde count includes the response bde and data bdes */
918 iocb_cmd->unsli3.fcp_ext.ebde_count = (num_bde + 1);
919 }
920 } else {
921 iocb_cmd->un.fcpi64.bdl.bdeSize =
922 ((num_bde + 2) * sizeof(struct ulp_bde64));
923 iocb_cmd->unsli3.fcp_ext.ebde_count = (num_bde + 1);
924 }
925 fcp_cmnd->fcpDl = cpu_to_be32(scsi_bufflen(scsi_cmnd));
926
927 /*
928 * Due to difference in data length between DIF/non-DIF paths,
929 * we need to set word 4 of IOCB here
930 */
931 iocb_cmd->un.fcpi.fcpi_parm = scsi_bufflen(scsi_cmnd);
932 lpfc_fcpcmd_to_iocb(iocb_cmd->unsli3.fcp_ext.icd, fcp_cmnd);
933 return 0;
934 }
935
936 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
937
938 /* Return BG_ERR_INIT if error injection is detected by Initiator */
939 #define BG_ERR_INIT 0x1
940 /* Return BG_ERR_TGT if error injection is detected by Target */
941 #define BG_ERR_TGT 0x2
942 /* Return BG_ERR_SWAP if swapping CSUM<-->CRC is required for error injection */
943 #define BG_ERR_SWAP 0x10
944 /*
945 * Return BG_ERR_CHECK if disabling Guard/Ref/App checking is required for
946 * error injection
947 */
948 #define BG_ERR_CHECK 0x20
949
950 /**
951 * lpfc_bg_err_inject - Determine if we should inject an error
952 * @phba: The Hba for which this call is being executed.
953 * @sc: The SCSI command to examine
954 * @reftag: (out) BlockGuard reference tag for transmitted data
955 * @apptag: (out) BlockGuard application tag for transmitted data
956 * @new_guard: (in) Value to replace CRC with if needed
957 *
958 * Returns BG_ERR_* bit mask or 0 if request ignored
959 **/
960 static int
lpfc_bg_err_inject(struct lpfc_hba * phba,struct scsi_cmnd * sc,uint32_t * reftag,uint16_t * apptag,uint32_t new_guard)961 lpfc_bg_err_inject(struct lpfc_hba *phba, struct scsi_cmnd *sc,
962 uint32_t *reftag, uint16_t *apptag, uint32_t new_guard)
963 {
964 struct scatterlist *sgpe; /* s/g prot entry */
965 struct lpfc_io_buf *lpfc_cmd = NULL;
966 struct scsi_dif_tuple *src = NULL;
967 struct lpfc_nodelist *ndlp;
968 struct lpfc_rport_data *rdata;
969 uint32_t op = scsi_get_prot_op(sc);
970 uint32_t blksize;
971 uint32_t numblks;
972 u32 lba;
973 int rc = 0;
974 int blockoff = 0;
975
976 if (op == SCSI_PROT_NORMAL)
977 return 0;
978
979 sgpe = scsi_prot_sglist(sc);
980 lba = scsi_prot_ref_tag(sc);
981
982 /* First check if we need to match the LBA */
983 if (phba->lpfc_injerr_lba != LPFC_INJERR_LBA_OFF) {
984 blksize = scsi_prot_interval(sc);
985 numblks = (scsi_bufflen(sc) + blksize - 1) / blksize;
986
987 /* Make sure we have the right LBA if one is specified */
988 if (phba->lpfc_injerr_lba < (u64)lba ||
989 (phba->lpfc_injerr_lba >= (u64)(lba + numblks)))
990 return 0;
991 if (sgpe) {
992 blockoff = phba->lpfc_injerr_lba - (u64)lba;
993 numblks = sg_dma_len(sgpe) /
994 sizeof(struct scsi_dif_tuple);
995 if (numblks < blockoff)
996 blockoff = numblks;
997 }
998 }
999
1000 /* Next check if we need to match the remote NPortID or WWPN */
1001 rdata = lpfc_rport_data_from_scsi_device(sc->device);
1002 if (rdata && rdata->pnode) {
1003 ndlp = rdata->pnode;
1004
1005 /* Make sure we have the right NPortID if one is specified */
1006 if (phba->lpfc_injerr_nportid &&
1007 (phba->lpfc_injerr_nportid != ndlp->nlp_DID))
1008 return 0;
1009
1010 /*
1011 * Make sure we have the right WWPN if one is specified.
1012 * wwn[0] should be a non-zero NAA in a good WWPN.
1013 */
1014 if (phba->lpfc_injerr_wwpn.u.wwn[0] &&
1015 (memcmp(&ndlp->nlp_portname, &phba->lpfc_injerr_wwpn,
1016 sizeof(struct lpfc_name)) != 0))
1017 return 0;
1018 }
1019
1020 /* Setup a ptr to the protection data if the SCSI host provides it */
1021 if (sgpe) {
1022 src = (struct scsi_dif_tuple *)sg_virt(sgpe);
1023 src += blockoff;
1024 lpfc_cmd = (struct lpfc_io_buf *)sc->host_scribble;
1025 }
1026
1027 /* Should we change the Reference Tag */
1028 if (reftag) {
1029 if (phba->lpfc_injerr_wref_cnt) {
1030 switch (op) {
1031 case SCSI_PROT_WRITE_PASS:
1032 if (src) {
1033 /*
1034 * For WRITE_PASS, force the error
1035 * to be sent on the wire. It should
1036 * be detected by the Target.
1037 * If blockoff != 0 error will be
1038 * inserted in middle of the IO.
1039 */
1040
1041 lpfc_printf_log(phba, KERN_ERR,
1042 LOG_TRACE_EVENT,
1043 "9076 BLKGRD: Injecting reftag error: "
1044 "write lba x%lx + x%x oldrefTag x%x\n",
1045 (unsigned long)lba, blockoff,
1046 be32_to_cpu(src->ref_tag));
1047
1048 /*
1049 * Save the old ref_tag so we can
1050 * restore it on completion.
1051 */
1052 if (lpfc_cmd) {
1053 lpfc_cmd->prot_data_type =
1054 LPFC_INJERR_REFTAG;
1055 lpfc_cmd->prot_data_segment =
1056 src;
1057 lpfc_cmd->prot_data =
1058 src->ref_tag;
1059 }
1060 src->ref_tag = cpu_to_be32(0xDEADBEEF);
1061 phba->lpfc_injerr_wref_cnt--;
1062 if (phba->lpfc_injerr_wref_cnt == 0) {
1063 phba->lpfc_injerr_nportid = 0;
1064 phba->lpfc_injerr_lba =
1065 LPFC_INJERR_LBA_OFF;
1066 memset(&phba->lpfc_injerr_wwpn,
1067 0, sizeof(struct lpfc_name));
1068 }
1069 rc = BG_ERR_TGT | BG_ERR_CHECK;
1070
1071 break;
1072 }
1073 fallthrough;
1074 case SCSI_PROT_WRITE_INSERT:
1075 /*
1076 * For WRITE_INSERT, force the error
1077 * to be sent on the wire. It should be
1078 * detected by the Target.
1079 */
1080 /* DEADBEEF will be the reftag on the wire */
1081 *reftag = 0xDEADBEEF;
1082 phba->lpfc_injerr_wref_cnt--;
1083 if (phba->lpfc_injerr_wref_cnt == 0) {
1084 phba->lpfc_injerr_nportid = 0;
1085 phba->lpfc_injerr_lba =
1086 LPFC_INJERR_LBA_OFF;
1087 memset(&phba->lpfc_injerr_wwpn,
1088 0, sizeof(struct lpfc_name));
1089 }
1090 rc = BG_ERR_TGT | BG_ERR_CHECK;
1091
1092 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
1093 "9078 BLKGRD: Injecting reftag error: "
1094 "write lba x%lx\n", (unsigned long)lba);
1095 break;
1096 case SCSI_PROT_WRITE_STRIP:
1097 /*
1098 * For WRITE_STRIP and WRITE_PASS,
1099 * force the error on data
1100 * being copied from SLI-Host to SLI-Port.
1101 */
1102 *reftag = 0xDEADBEEF;
1103 phba->lpfc_injerr_wref_cnt--;
1104 if (phba->lpfc_injerr_wref_cnt == 0) {
1105 phba->lpfc_injerr_nportid = 0;
1106 phba->lpfc_injerr_lba =
1107 LPFC_INJERR_LBA_OFF;
1108 memset(&phba->lpfc_injerr_wwpn,
1109 0, sizeof(struct lpfc_name));
1110 }
1111 rc = BG_ERR_INIT;
1112
1113 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
1114 "9077 BLKGRD: Injecting reftag error: "
1115 "write lba x%lx\n", (unsigned long)lba);
1116 break;
1117 }
1118 }
1119 if (phba->lpfc_injerr_rref_cnt) {
1120 switch (op) {
1121 case SCSI_PROT_READ_INSERT:
1122 case SCSI_PROT_READ_STRIP:
1123 case SCSI_PROT_READ_PASS:
1124 /*
1125 * For READ_STRIP and READ_PASS, force the
1126 * error on data being read off the wire. It
1127 * should force an IO error to the driver.
1128 */
1129 *reftag = 0xDEADBEEF;
1130 phba->lpfc_injerr_rref_cnt--;
1131 if (phba->lpfc_injerr_rref_cnt == 0) {
1132 phba->lpfc_injerr_nportid = 0;
1133 phba->lpfc_injerr_lba =
1134 LPFC_INJERR_LBA_OFF;
1135 memset(&phba->lpfc_injerr_wwpn,
1136 0, sizeof(struct lpfc_name));
1137 }
1138 rc = BG_ERR_INIT;
1139
1140 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
1141 "9079 BLKGRD: Injecting reftag error: "
1142 "read lba x%lx\n", (unsigned long)lba);
1143 break;
1144 }
1145 }
1146 }
1147
1148 /* Should we change the Application Tag */
1149 if (apptag) {
1150 if (phba->lpfc_injerr_wapp_cnt) {
1151 switch (op) {
1152 case SCSI_PROT_WRITE_PASS:
1153 if (src) {
1154 /*
1155 * For WRITE_PASS, force the error
1156 * to be sent on the wire. It should
1157 * be detected by the Target.
1158 * If blockoff != 0 error will be
1159 * inserted in middle of the IO.
1160 */
1161
1162 lpfc_printf_log(phba, KERN_ERR,
1163 LOG_TRACE_EVENT,
1164 "9080 BLKGRD: Injecting apptag error: "
1165 "write lba x%lx + x%x oldappTag x%x\n",
1166 (unsigned long)lba, blockoff,
1167 be16_to_cpu(src->app_tag));
1168
1169 /*
1170 * Save the old app_tag so we can
1171 * restore it on completion.
1172 */
1173 if (lpfc_cmd) {
1174 lpfc_cmd->prot_data_type =
1175 LPFC_INJERR_APPTAG;
1176 lpfc_cmd->prot_data_segment =
1177 src;
1178 lpfc_cmd->prot_data =
1179 src->app_tag;
1180 }
1181 src->app_tag = cpu_to_be16(0xDEAD);
1182 phba->lpfc_injerr_wapp_cnt--;
1183 if (phba->lpfc_injerr_wapp_cnt == 0) {
1184 phba->lpfc_injerr_nportid = 0;
1185 phba->lpfc_injerr_lba =
1186 LPFC_INJERR_LBA_OFF;
1187 memset(&phba->lpfc_injerr_wwpn,
1188 0, sizeof(struct lpfc_name));
1189 }
1190 rc = BG_ERR_TGT | BG_ERR_CHECK;
1191 break;
1192 }
1193 fallthrough;
1194 case SCSI_PROT_WRITE_INSERT:
1195 /*
1196 * For WRITE_INSERT, force the
1197 * error to be sent on the wire. It should be
1198 * detected by the Target.
1199 */
1200 /* DEAD will be the apptag on the wire */
1201 *apptag = 0xDEAD;
1202 phba->lpfc_injerr_wapp_cnt--;
1203 if (phba->lpfc_injerr_wapp_cnt == 0) {
1204 phba->lpfc_injerr_nportid = 0;
1205 phba->lpfc_injerr_lba =
1206 LPFC_INJERR_LBA_OFF;
1207 memset(&phba->lpfc_injerr_wwpn,
1208 0, sizeof(struct lpfc_name));
1209 }
1210 rc = BG_ERR_TGT | BG_ERR_CHECK;
1211
1212 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
1213 "0813 BLKGRD: Injecting apptag error: "
1214 "write lba x%lx\n", (unsigned long)lba);
1215 break;
1216 case SCSI_PROT_WRITE_STRIP:
1217 /*
1218 * For WRITE_STRIP and WRITE_PASS,
1219 * force the error on data
1220 * being copied from SLI-Host to SLI-Port.
1221 */
1222 *apptag = 0xDEAD;
1223 phba->lpfc_injerr_wapp_cnt--;
1224 if (phba->lpfc_injerr_wapp_cnt == 0) {
1225 phba->lpfc_injerr_nportid = 0;
1226 phba->lpfc_injerr_lba =
1227 LPFC_INJERR_LBA_OFF;
1228 memset(&phba->lpfc_injerr_wwpn,
1229 0, sizeof(struct lpfc_name));
1230 }
1231 rc = BG_ERR_INIT;
1232
1233 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
1234 "0812 BLKGRD: Injecting apptag error: "
1235 "write lba x%lx\n", (unsigned long)lba);
1236 break;
1237 }
1238 }
1239 if (phba->lpfc_injerr_rapp_cnt) {
1240 switch (op) {
1241 case SCSI_PROT_READ_INSERT:
1242 case SCSI_PROT_READ_STRIP:
1243 case SCSI_PROT_READ_PASS:
1244 /*
1245 * For READ_STRIP and READ_PASS, force the
1246 * error on data being read off the wire. It
1247 * should force an IO error to the driver.
1248 */
1249 *apptag = 0xDEAD;
1250 phba->lpfc_injerr_rapp_cnt--;
1251 if (phba->lpfc_injerr_rapp_cnt == 0) {
1252 phba->lpfc_injerr_nportid = 0;
1253 phba->lpfc_injerr_lba =
1254 LPFC_INJERR_LBA_OFF;
1255 memset(&phba->lpfc_injerr_wwpn,
1256 0, sizeof(struct lpfc_name));
1257 }
1258 rc = BG_ERR_INIT;
1259
1260 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
1261 "0814 BLKGRD: Injecting apptag error: "
1262 "read lba x%lx\n", (unsigned long)lba);
1263 break;
1264 }
1265 }
1266 }
1267
1268
1269 /* Should we change the Guard Tag */
1270 if (new_guard) {
1271 if (phba->lpfc_injerr_wgrd_cnt) {
1272 switch (op) {
1273 case SCSI_PROT_WRITE_PASS:
1274 rc = BG_ERR_CHECK;
1275 fallthrough;
1276
1277 case SCSI_PROT_WRITE_INSERT:
1278 /*
1279 * For WRITE_INSERT, force the
1280 * error to be sent on the wire. It should be
1281 * detected by the Target.
1282 */
1283 phba->lpfc_injerr_wgrd_cnt--;
1284 if (phba->lpfc_injerr_wgrd_cnt == 0) {
1285 phba->lpfc_injerr_nportid = 0;
1286 phba->lpfc_injerr_lba =
1287 LPFC_INJERR_LBA_OFF;
1288 memset(&phba->lpfc_injerr_wwpn,
1289 0, sizeof(struct lpfc_name));
1290 }
1291
1292 rc |= BG_ERR_TGT | BG_ERR_SWAP;
1293 /* Signals the caller to swap CRC->CSUM */
1294
1295 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
1296 "0817 BLKGRD: Injecting guard error: "
1297 "write lba x%lx\n", (unsigned long)lba);
1298 break;
1299 case SCSI_PROT_WRITE_STRIP:
1300 /*
1301 * For WRITE_STRIP and WRITE_PASS,
1302 * force the error on data
1303 * being copied from SLI-Host to SLI-Port.
1304 */
1305 phba->lpfc_injerr_wgrd_cnt--;
1306 if (phba->lpfc_injerr_wgrd_cnt == 0) {
1307 phba->lpfc_injerr_nportid = 0;
1308 phba->lpfc_injerr_lba =
1309 LPFC_INJERR_LBA_OFF;
1310 memset(&phba->lpfc_injerr_wwpn,
1311 0, sizeof(struct lpfc_name));
1312 }
1313
1314 rc = BG_ERR_INIT | BG_ERR_SWAP;
1315 /* Signals the caller to swap CRC->CSUM */
1316
1317 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
1318 "0816 BLKGRD: Injecting guard error: "
1319 "write lba x%lx\n", (unsigned long)lba);
1320 break;
1321 }
1322 }
1323 if (phba->lpfc_injerr_rgrd_cnt) {
1324 switch (op) {
1325 case SCSI_PROT_READ_INSERT:
1326 case SCSI_PROT_READ_STRIP:
1327 case SCSI_PROT_READ_PASS:
1328 /*
1329 * For READ_STRIP and READ_PASS, force the
1330 * error on data being read off the wire. It
1331 * should force an IO error to the driver.
1332 */
1333 phba->lpfc_injerr_rgrd_cnt--;
1334 if (phba->lpfc_injerr_rgrd_cnt == 0) {
1335 phba->lpfc_injerr_nportid = 0;
1336 phba->lpfc_injerr_lba =
1337 LPFC_INJERR_LBA_OFF;
1338 memset(&phba->lpfc_injerr_wwpn,
1339 0, sizeof(struct lpfc_name));
1340 }
1341
1342 rc = BG_ERR_INIT | BG_ERR_SWAP;
1343 /* Signals the caller to swap CRC->CSUM */
1344
1345 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
1346 "0818 BLKGRD: Injecting guard error: "
1347 "read lba x%lx\n", (unsigned long)lba);
1348 }
1349 }
1350 }
1351
1352 return rc;
1353 }
1354 #endif
1355
1356 /**
1357 * lpfc_sc_to_bg_opcodes - Determine the BlockGuard opcodes to be used with
1358 * the specified SCSI command.
1359 * @phba: The Hba for which this call is being executed.
1360 * @sc: The SCSI command to examine
1361 * @txop: (out) BlockGuard operation for transmitted data
1362 * @rxop: (out) BlockGuard operation for received data
1363 *
1364 * Returns: zero on success; non-zero if tx and/or rx op cannot be determined
1365 *
1366 **/
1367 static int
lpfc_sc_to_bg_opcodes(struct lpfc_hba * phba,struct scsi_cmnd * sc,uint8_t * txop,uint8_t * rxop)1368 lpfc_sc_to_bg_opcodes(struct lpfc_hba *phba, struct scsi_cmnd *sc,
1369 uint8_t *txop, uint8_t *rxop)
1370 {
1371 uint8_t ret = 0;
1372
1373 if (sc->prot_flags & SCSI_PROT_IP_CHECKSUM) {
1374 switch (scsi_get_prot_op(sc)) {
1375 case SCSI_PROT_READ_INSERT:
1376 case SCSI_PROT_WRITE_STRIP:
1377 *rxop = BG_OP_IN_NODIF_OUT_CSUM;
1378 *txop = BG_OP_IN_CSUM_OUT_NODIF;
1379 break;
1380
1381 case SCSI_PROT_READ_STRIP:
1382 case SCSI_PROT_WRITE_INSERT:
1383 *rxop = BG_OP_IN_CRC_OUT_NODIF;
1384 *txop = BG_OP_IN_NODIF_OUT_CRC;
1385 break;
1386
1387 case SCSI_PROT_READ_PASS:
1388 case SCSI_PROT_WRITE_PASS:
1389 *rxop = BG_OP_IN_CRC_OUT_CSUM;
1390 *txop = BG_OP_IN_CSUM_OUT_CRC;
1391 break;
1392
1393 case SCSI_PROT_NORMAL:
1394 default:
1395 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
1396 "9063 BLKGRD: Bad op/guard:%d/IP combination\n",
1397 scsi_get_prot_op(sc));
1398 ret = 1;
1399 break;
1400
1401 }
1402 } else {
1403 switch (scsi_get_prot_op(sc)) {
1404 case SCSI_PROT_READ_STRIP:
1405 case SCSI_PROT_WRITE_INSERT:
1406 *rxop = BG_OP_IN_CRC_OUT_NODIF;
1407 *txop = BG_OP_IN_NODIF_OUT_CRC;
1408 break;
1409
1410 case SCSI_PROT_READ_PASS:
1411 case SCSI_PROT_WRITE_PASS:
1412 *rxop = BG_OP_IN_CRC_OUT_CRC;
1413 *txop = BG_OP_IN_CRC_OUT_CRC;
1414 break;
1415
1416 case SCSI_PROT_READ_INSERT:
1417 case SCSI_PROT_WRITE_STRIP:
1418 *rxop = BG_OP_IN_NODIF_OUT_CRC;
1419 *txop = BG_OP_IN_CRC_OUT_NODIF;
1420 break;
1421
1422 case SCSI_PROT_NORMAL:
1423 default:
1424 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
1425 "9075 BLKGRD: Bad op/guard:%d/CRC combination\n",
1426 scsi_get_prot_op(sc));
1427 ret = 1;
1428 break;
1429 }
1430 }
1431
1432 return ret;
1433 }
1434
1435 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
1436 /**
1437 * lpfc_bg_err_opcodes - reDetermine the BlockGuard opcodes to be used with
1438 * the specified SCSI command in order to force a guard tag error.
1439 * @phba: The Hba for which this call is being executed.
1440 * @sc: The SCSI command to examine
1441 * @txop: (out) BlockGuard operation for transmitted data
1442 * @rxop: (out) BlockGuard operation for received data
1443 *
1444 * Returns: zero on success; non-zero if tx and/or rx op cannot be determined
1445 *
1446 **/
1447 static int
lpfc_bg_err_opcodes(struct lpfc_hba * phba,struct scsi_cmnd * sc,uint8_t * txop,uint8_t * rxop)1448 lpfc_bg_err_opcodes(struct lpfc_hba *phba, struct scsi_cmnd *sc,
1449 uint8_t *txop, uint8_t *rxop)
1450 {
1451
1452 if (sc->prot_flags & SCSI_PROT_IP_CHECKSUM) {
1453 switch (scsi_get_prot_op(sc)) {
1454 case SCSI_PROT_READ_INSERT:
1455 case SCSI_PROT_WRITE_STRIP:
1456 *rxop = BG_OP_IN_NODIF_OUT_CRC;
1457 *txop = BG_OP_IN_CRC_OUT_NODIF;
1458 break;
1459
1460 case SCSI_PROT_READ_STRIP:
1461 case SCSI_PROT_WRITE_INSERT:
1462 *rxop = BG_OP_IN_CSUM_OUT_NODIF;
1463 *txop = BG_OP_IN_NODIF_OUT_CSUM;
1464 break;
1465
1466 case SCSI_PROT_READ_PASS:
1467 case SCSI_PROT_WRITE_PASS:
1468 *rxop = BG_OP_IN_CSUM_OUT_CRC;
1469 *txop = BG_OP_IN_CRC_OUT_CSUM;
1470 break;
1471
1472 case SCSI_PROT_NORMAL:
1473 default:
1474 break;
1475
1476 }
1477 } else {
1478 switch (scsi_get_prot_op(sc)) {
1479 case SCSI_PROT_READ_STRIP:
1480 case SCSI_PROT_WRITE_INSERT:
1481 *rxop = BG_OP_IN_CSUM_OUT_NODIF;
1482 *txop = BG_OP_IN_NODIF_OUT_CSUM;
1483 break;
1484
1485 case SCSI_PROT_READ_PASS:
1486 case SCSI_PROT_WRITE_PASS:
1487 *rxop = BG_OP_IN_CSUM_OUT_CSUM;
1488 *txop = BG_OP_IN_CSUM_OUT_CSUM;
1489 break;
1490
1491 case SCSI_PROT_READ_INSERT:
1492 case SCSI_PROT_WRITE_STRIP:
1493 *rxop = BG_OP_IN_NODIF_OUT_CSUM;
1494 *txop = BG_OP_IN_CSUM_OUT_NODIF;
1495 break;
1496
1497 case SCSI_PROT_NORMAL:
1498 default:
1499 break;
1500 }
1501 }
1502
1503 return 0;
1504 }
1505 #endif
1506
1507 /**
1508 * lpfc_bg_setup_bpl - Setup BlockGuard BPL with no protection data
1509 * @phba: The Hba for which this call is being executed.
1510 * @sc: pointer to scsi command we're working on
1511 * @bpl: pointer to buffer list for protection groups
1512 * @datasegcnt: number of segments of data that have been dma mapped
1513 *
1514 * This function sets up BPL buffer list for protection groups of
1515 * type LPFC_PG_TYPE_NO_DIF
1516 *
1517 * This is usually used when the HBA is instructed to generate
1518 * DIFs and insert them into data stream (or strip DIF from
1519 * incoming data stream)
1520 *
1521 * The buffer list consists of just one protection group described
1522 * below:
1523 * +-------------------------+
1524 * start of prot group --> | PDE_5 |
1525 * +-------------------------+
1526 * | PDE_6 |
1527 * +-------------------------+
1528 * | Data BDE |
1529 * +-------------------------+
1530 * |more Data BDE's ... (opt)|
1531 * +-------------------------+
1532 *
1533 *
1534 * Note: Data s/g buffers have been dma mapped
1535 *
1536 * Returns the number of BDEs added to the BPL.
1537 **/
1538 static int
lpfc_bg_setup_bpl(struct lpfc_hba * phba,struct scsi_cmnd * sc,struct ulp_bde64 * bpl,int datasegcnt)1539 lpfc_bg_setup_bpl(struct lpfc_hba *phba, struct scsi_cmnd *sc,
1540 struct ulp_bde64 *bpl, int datasegcnt)
1541 {
1542 struct scatterlist *sgde = NULL; /* s/g data entry */
1543 struct lpfc_pde5 *pde5 = NULL;
1544 struct lpfc_pde6 *pde6 = NULL;
1545 dma_addr_t physaddr;
1546 int i = 0, num_bde = 0, status;
1547 int datadir = sc->sc_data_direction;
1548 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
1549 uint32_t rc;
1550 #endif
1551 uint32_t checking = 1;
1552 uint32_t reftag;
1553 uint8_t txop, rxop;
1554
1555 status = lpfc_sc_to_bg_opcodes(phba, sc, &txop, &rxop);
1556 if (status)
1557 goto out;
1558
1559 /* extract some info from the scsi command for pde*/
1560 reftag = scsi_prot_ref_tag(sc);
1561
1562 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
1563 rc = lpfc_bg_err_inject(phba, sc, &reftag, NULL, 1);
1564 if (rc) {
1565 if (rc & BG_ERR_SWAP)
1566 lpfc_bg_err_opcodes(phba, sc, &txop, &rxop);
1567 if (rc & BG_ERR_CHECK)
1568 checking = 0;
1569 }
1570 #endif
1571
1572 /* setup PDE5 with what we have */
1573 pde5 = (struct lpfc_pde5 *) bpl;
1574 memset(pde5, 0, sizeof(struct lpfc_pde5));
1575 bf_set(pde5_type, pde5, LPFC_PDE5_DESCRIPTOR);
1576
1577 /* Endianness conversion if necessary for PDE5 */
1578 pde5->word0 = cpu_to_le32(pde5->word0);
1579 pde5->reftag = cpu_to_le32(reftag);
1580
1581 /* advance bpl and increment bde count */
1582 num_bde++;
1583 bpl++;
1584 pde6 = (struct lpfc_pde6 *) bpl;
1585
1586 /* setup PDE6 with the rest of the info */
1587 memset(pde6, 0, sizeof(struct lpfc_pde6));
1588 bf_set(pde6_type, pde6, LPFC_PDE6_DESCRIPTOR);
1589 bf_set(pde6_optx, pde6, txop);
1590 bf_set(pde6_oprx, pde6, rxop);
1591
1592 /*
1593 * We only need to check the data on READs, for WRITEs
1594 * protection data is automatically generated, not checked.
1595 */
1596 if (datadir == DMA_FROM_DEVICE) {
1597 if (sc->prot_flags & SCSI_PROT_GUARD_CHECK)
1598 bf_set(pde6_ce, pde6, checking);
1599 else
1600 bf_set(pde6_ce, pde6, 0);
1601
1602 if (sc->prot_flags & SCSI_PROT_REF_CHECK)
1603 bf_set(pde6_re, pde6, checking);
1604 else
1605 bf_set(pde6_re, pde6, 0);
1606 }
1607 bf_set(pde6_ai, pde6, 1);
1608 bf_set(pde6_ae, pde6, 0);
1609 bf_set(pde6_apptagval, pde6, 0);
1610
1611 /* Endianness conversion if necessary for PDE6 */
1612 pde6->word0 = cpu_to_le32(pde6->word0);
1613 pde6->word1 = cpu_to_le32(pde6->word1);
1614 pde6->word2 = cpu_to_le32(pde6->word2);
1615
1616 /* advance bpl and increment bde count */
1617 num_bde++;
1618 bpl++;
1619
1620 /* assumption: caller has already run dma_map_sg on command data */
1621 scsi_for_each_sg(sc, sgde, datasegcnt, i) {
1622 physaddr = sg_dma_address(sgde);
1623 bpl->addrLow = le32_to_cpu(putPaddrLow(physaddr));
1624 bpl->addrHigh = le32_to_cpu(putPaddrHigh(physaddr));
1625 bpl->tus.f.bdeSize = sg_dma_len(sgde);
1626 if (datadir == DMA_TO_DEVICE)
1627 bpl->tus.f.bdeFlags = BUFF_TYPE_BDE_64;
1628 else
1629 bpl->tus.f.bdeFlags = BUFF_TYPE_BDE_64I;
1630 bpl->tus.w = le32_to_cpu(bpl->tus.w);
1631 bpl++;
1632 num_bde++;
1633 }
1634
1635 out:
1636 return num_bde;
1637 }
1638
1639 /**
1640 * lpfc_bg_setup_bpl_prot - Setup BlockGuard BPL with protection data
1641 * @phba: The Hba for which this call is being executed.
1642 * @sc: pointer to scsi command we're working on
1643 * @bpl: pointer to buffer list for protection groups
1644 * @datacnt: number of segments of data that have been dma mapped
1645 * @protcnt: number of segment of protection data that have been dma mapped
1646 *
1647 * This function sets up BPL buffer list for protection groups of
1648 * type LPFC_PG_TYPE_DIF
1649 *
1650 * This is usually used when DIFs are in their own buffers,
1651 * separate from the data. The HBA can then by instructed
1652 * to place the DIFs in the outgoing stream. For read operations,
1653 * The HBA could extract the DIFs and place it in DIF buffers.
1654 *
1655 * The buffer list for this type consists of one or more of the
1656 * protection groups described below:
1657 * +-------------------------+
1658 * start of first prot group --> | PDE_5 |
1659 * +-------------------------+
1660 * | PDE_6 |
1661 * +-------------------------+
1662 * | PDE_7 (Prot BDE) |
1663 * +-------------------------+
1664 * | Data BDE |
1665 * +-------------------------+
1666 * |more Data BDE's ... (opt)|
1667 * +-------------------------+
1668 * start of new prot group --> | PDE_5 |
1669 * +-------------------------+
1670 * | ... |
1671 * +-------------------------+
1672 *
1673 * Note: It is assumed that both data and protection s/g buffers have been
1674 * mapped for DMA
1675 *
1676 * Returns the number of BDEs added to the BPL.
1677 **/
1678 static int
lpfc_bg_setup_bpl_prot(struct lpfc_hba * phba,struct scsi_cmnd * sc,struct ulp_bde64 * bpl,int datacnt,int protcnt)1679 lpfc_bg_setup_bpl_prot(struct lpfc_hba *phba, struct scsi_cmnd *sc,
1680 struct ulp_bde64 *bpl, int datacnt, int protcnt)
1681 {
1682 struct scatterlist *sgde = NULL; /* s/g data entry */
1683 struct scatterlist *sgpe = NULL; /* s/g prot entry */
1684 struct lpfc_pde5 *pde5 = NULL;
1685 struct lpfc_pde6 *pde6 = NULL;
1686 struct lpfc_pde7 *pde7 = NULL;
1687 dma_addr_t dataphysaddr, protphysaddr;
1688 unsigned short curr_prot = 0;
1689 unsigned int split_offset;
1690 unsigned int protgroup_len, protgroup_offset = 0, protgroup_remainder;
1691 unsigned int protgrp_blks, protgrp_bytes;
1692 unsigned int remainder, subtotal;
1693 int status;
1694 int datadir = sc->sc_data_direction;
1695 unsigned char pgdone = 0, alldone = 0;
1696 unsigned blksize;
1697 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
1698 uint32_t rc;
1699 #endif
1700 uint32_t checking = 1;
1701 uint32_t reftag;
1702 uint8_t txop, rxop;
1703 int num_bde = 0;
1704
1705 sgpe = scsi_prot_sglist(sc);
1706 sgde = scsi_sglist(sc);
1707
1708 if (!sgpe || !sgde) {
1709 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
1710 "9020 Invalid s/g entry: data=x%px prot=x%px\n",
1711 sgpe, sgde);
1712 return 0;
1713 }
1714
1715 status = lpfc_sc_to_bg_opcodes(phba, sc, &txop, &rxop);
1716 if (status)
1717 goto out;
1718
1719 /* extract some info from the scsi command */
1720 blksize = scsi_prot_interval(sc);
1721 reftag = scsi_prot_ref_tag(sc);
1722
1723 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
1724 rc = lpfc_bg_err_inject(phba, sc, &reftag, NULL, 1);
1725 if (rc) {
1726 if (rc & BG_ERR_SWAP)
1727 lpfc_bg_err_opcodes(phba, sc, &txop, &rxop);
1728 if (rc & BG_ERR_CHECK)
1729 checking = 0;
1730 }
1731 #endif
1732
1733 split_offset = 0;
1734 do {
1735 /* Check to see if we ran out of space */
1736 if (num_bde >= (phba->cfg_total_seg_cnt - 2))
1737 return num_bde + 3;
1738
1739 /* setup PDE5 with what we have */
1740 pde5 = (struct lpfc_pde5 *) bpl;
1741 memset(pde5, 0, sizeof(struct lpfc_pde5));
1742 bf_set(pde5_type, pde5, LPFC_PDE5_DESCRIPTOR);
1743
1744 /* Endianness conversion if necessary for PDE5 */
1745 pde5->word0 = cpu_to_le32(pde5->word0);
1746 pde5->reftag = cpu_to_le32(reftag);
1747
1748 /* advance bpl and increment bde count */
1749 num_bde++;
1750 bpl++;
1751 pde6 = (struct lpfc_pde6 *) bpl;
1752
1753 /* setup PDE6 with the rest of the info */
1754 memset(pde6, 0, sizeof(struct lpfc_pde6));
1755 bf_set(pde6_type, pde6, LPFC_PDE6_DESCRIPTOR);
1756 bf_set(pde6_optx, pde6, txop);
1757 bf_set(pde6_oprx, pde6, rxop);
1758
1759 if (sc->prot_flags & SCSI_PROT_GUARD_CHECK)
1760 bf_set(pde6_ce, pde6, checking);
1761 else
1762 bf_set(pde6_ce, pde6, 0);
1763
1764 if (sc->prot_flags & SCSI_PROT_REF_CHECK)
1765 bf_set(pde6_re, pde6, checking);
1766 else
1767 bf_set(pde6_re, pde6, 0);
1768
1769 bf_set(pde6_ai, pde6, 1);
1770 bf_set(pde6_ae, pde6, 0);
1771 bf_set(pde6_apptagval, pde6, 0);
1772
1773 /* Endianness conversion if necessary for PDE6 */
1774 pde6->word0 = cpu_to_le32(pde6->word0);
1775 pde6->word1 = cpu_to_le32(pde6->word1);
1776 pde6->word2 = cpu_to_le32(pde6->word2);
1777
1778 /* advance bpl and increment bde count */
1779 num_bde++;
1780 bpl++;
1781
1782 /* setup the first BDE that points to protection buffer */
1783 protphysaddr = sg_dma_address(sgpe) + protgroup_offset;
1784 protgroup_len = sg_dma_len(sgpe) - protgroup_offset;
1785
1786 /* must be integer multiple of the DIF block length */
1787 BUG_ON(protgroup_len % 8);
1788
1789 pde7 = (struct lpfc_pde7 *) bpl;
1790 memset(pde7, 0, sizeof(struct lpfc_pde7));
1791 bf_set(pde7_type, pde7, LPFC_PDE7_DESCRIPTOR);
1792
1793 pde7->addrHigh = le32_to_cpu(putPaddrHigh(protphysaddr));
1794 pde7->addrLow = le32_to_cpu(putPaddrLow(protphysaddr));
1795
1796 protgrp_blks = protgroup_len / 8;
1797 protgrp_bytes = protgrp_blks * blksize;
1798
1799 /* check if this pde is crossing the 4K boundary; if so split */
1800 if ((pde7->addrLow & 0xfff) + protgroup_len > 0x1000) {
1801 protgroup_remainder = 0x1000 - (pde7->addrLow & 0xfff);
1802 protgroup_offset += protgroup_remainder;
1803 protgrp_blks = protgroup_remainder / 8;
1804 protgrp_bytes = protgrp_blks * blksize;
1805 } else {
1806 protgroup_offset = 0;
1807 curr_prot++;
1808 }
1809
1810 num_bde++;
1811
1812 /* setup BDE's for data blocks associated with DIF data */
1813 pgdone = 0;
1814 subtotal = 0; /* total bytes processed for current prot grp */
1815 while (!pgdone) {
1816 /* Check to see if we ran out of space */
1817 if (num_bde >= phba->cfg_total_seg_cnt)
1818 return num_bde + 1;
1819
1820 if (!sgde) {
1821 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
1822 "9065 BLKGRD:%s Invalid data segment\n",
1823 __func__);
1824 return 0;
1825 }
1826 bpl++;
1827 dataphysaddr = sg_dma_address(sgde) + split_offset;
1828 bpl->addrLow = le32_to_cpu(putPaddrLow(dataphysaddr));
1829 bpl->addrHigh = le32_to_cpu(putPaddrHigh(dataphysaddr));
1830
1831 remainder = sg_dma_len(sgde) - split_offset;
1832
1833 if ((subtotal + remainder) <= protgrp_bytes) {
1834 /* we can use this whole buffer */
1835 bpl->tus.f.bdeSize = remainder;
1836 split_offset = 0;
1837
1838 if ((subtotal + remainder) == protgrp_bytes)
1839 pgdone = 1;
1840 } else {
1841 /* must split this buffer with next prot grp */
1842 bpl->tus.f.bdeSize = protgrp_bytes - subtotal;
1843 split_offset += bpl->tus.f.bdeSize;
1844 }
1845
1846 subtotal += bpl->tus.f.bdeSize;
1847
1848 if (datadir == DMA_TO_DEVICE)
1849 bpl->tus.f.bdeFlags = BUFF_TYPE_BDE_64;
1850 else
1851 bpl->tus.f.bdeFlags = BUFF_TYPE_BDE_64I;
1852 bpl->tus.w = le32_to_cpu(bpl->tus.w);
1853
1854 num_bde++;
1855
1856 if (split_offset)
1857 break;
1858
1859 /* Move to the next s/g segment if possible */
1860 sgde = sg_next(sgde);
1861
1862 }
1863
1864 if (protgroup_offset) {
1865 /* update the reference tag */
1866 reftag += protgrp_blks;
1867 bpl++;
1868 continue;
1869 }
1870
1871 /* are we done ? */
1872 if (curr_prot == protcnt) {
1873 alldone = 1;
1874 } else if (curr_prot < protcnt) {
1875 /* advance to next prot buffer */
1876 sgpe = sg_next(sgpe);
1877 bpl++;
1878
1879 /* update the reference tag */
1880 reftag += protgrp_blks;
1881 } else {
1882 /* if we're here, we have a bug */
1883 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
1884 "9054 BLKGRD: bug in %s\n", __func__);
1885 }
1886
1887 } while (!alldone);
1888 out:
1889
1890 return num_bde;
1891 }
1892
1893 /**
1894 * lpfc_bg_setup_sgl - Setup BlockGuard SGL with no protection data
1895 * @phba: The Hba for which this call is being executed.
1896 * @sc: pointer to scsi command we're working on
1897 * @sgl: pointer to buffer list for protection groups
1898 * @datasegcnt: number of segments of data that have been dma mapped
1899 * @lpfc_cmd: lpfc scsi command object pointer.
1900 *
1901 * This function sets up SGL buffer list for protection groups of
1902 * type LPFC_PG_TYPE_NO_DIF
1903 *
1904 * This is usually used when the HBA is instructed to generate
1905 * DIFs and insert them into data stream (or strip DIF from
1906 * incoming data stream)
1907 *
1908 * The buffer list consists of just one protection group described
1909 * below:
1910 * +-------------------------+
1911 * start of prot group --> | DI_SEED |
1912 * +-------------------------+
1913 * | Data SGE |
1914 * +-------------------------+
1915 * |more Data SGE's ... (opt)|
1916 * +-------------------------+
1917 *
1918 *
1919 * Note: Data s/g buffers have been dma mapped
1920 *
1921 * Returns the number of SGEs added to the SGL.
1922 **/
1923 static uint32_t
lpfc_bg_setup_sgl(struct lpfc_hba * phba,struct scsi_cmnd * sc,struct sli4_sge * sgl,int datasegcnt,struct lpfc_io_buf * lpfc_cmd)1924 lpfc_bg_setup_sgl(struct lpfc_hba *phba, struct scsi_cmnd *sc,
1925 struct sli4_sge *sgl, int datasegcnt,
1926 struct lpfc_io_buf *lpfc_cmd)
1927 {
1928 struct scatterlist *sgde = NULL; /* s/g data entry */
1929 struct sli4_sge_diseed *diseed = NULL;
1930 dma_addr_t physaddr;
1931 int i = 0, status;
1932 uint32_t reftag, num_sge = 0;
1933 uint8_t txop, rxop;
1934 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
1935 uint32_t rc;
1936 #endif
1937 uint32_t checking = 1;
1938 uint32_t dma_len;
1939 uint32_t dma_offset = 0;
1940 struct sli4_hybrid_sgl *sgl_xtra = NULL;
1941 int j;
1942 bool lsp_just_set = false;
1943
1944 status = lpfc_sc_to_bg_opcodes(phba, sc, &txop, &rxop);
1945 if (status)
1946 goto out;
1947
1948 /* extract some info from the scsi command for pde*/
1949 reftag = scsi_prot_ref_tag(sc);
1950
1951 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
1952 rc = lpfc_bg_err_inject(phba, sc, &reftag, NULL, 1);
1953 if (rc) {
1954 if (rc & BG_ERR_SWAP)
1955 lpfc_bg_err_opcodes(phba, sc, &txop, &rxop);
1956 if (rc & BG_ERR_CHECK)
1957 checking = 0;
1958 }
1959 #endif
1960
1961 /* setup DISEED with what we have */
1962 diseed = (struct sli4_sge_diseed *) sgl;
1963 memset(diseed, 0, sizeof(struct sli4_sge_diseed));
1964 bf_set(lpfc_sli4_sge_type, sgl, LPFC_SGE_TYPE_DISEED);
1965
1966 /* Endianness conversion if necessary */
1967 diseed->ref_tag = cpu_to_le32(reftag);
1968 diseed->ref_tag_tran = diseed->ref_tag;
1969
1970 /*
1971 * We only need to check the data on READs, for WRITEs
1972 * protection data is automatically generated, not checked.
1973 */
1974 if (sc->sc_data_direction == DMA_FROM_DEVICE) {
1975 if (sc->prot_flags & SCSI_PROT_GUARD_CHECK)
1976 bf_set(lpfc_sli4_sge_dif_ce, diseed, checking);
1977 else
1978 bf_set(lpfc_sli4_sge_dif_ce, diseed, 0);
1979
1980 if (sc->prot_flags & SCSI_PROT_REF_CHECK)
1981 bf_set(lpfc_sli4_sge_dif_re, diseed, checking);
1982 else
1983 bf_set(lpfc_sli4_sge_dif_re, diseed, 0);
1984 }
1985
1986 /* setup DISEED with the rest of the info */
1987 bf_set(lpfc_sli4_sge_dif_optx, diseed, txop);
1988 bf_set(lpfc_sli4_sge_dif_oprx, diseed, rxop);
1989
1990 bf_set(lpfc_sli4_sge_dif_ai, diseed, 1);
1991 bf_set(lpfc_sli4_sge_dif_me, diseed, 0);
1992
1993 /* Endianness conversion if necessary for DISEED */
1994 diseed->word2 = cpu_to_le32(diseed->word2);
1995 diseed->word3 = cpu_to_le32(diseed->word3);
1996
1997 /* advance bpl and increment sge count */
1998 num_sge++;
1999 sgl++;
2000
2001 /* assumption: caller has already run dma_map_sg on command data */
2002 sgde = scsi_sglist(sc);
2003 j = 3;
2004 for (i = 0; i < datasegcnt; i++) {
2005 /* clear it */
2006 sgl->word2 = 0;
2007
2008 /* do we need to expand the segment */
2009 if (!lsp_just_set && !((j + 1) % phba->border_sge_num) &&
2010 ((datasegcnt - 1) != i)) {
2011 /* set LSP type */
2012 bf_set(lpfc_sli4_sge_type, sgl, LPFC_SGE_TYPE_LSP);
2013
2014 sgl_xtra = lpfc_get_sgl_per_hdwq(phba, lpfc_cmd);
2015
2016 if (unlikely(!sgl_xtra)) {
2017 lpfc_cmd->seg_cnt = 0;
2018 return 0;
2019 }
2020 sgl->addr_lo = cpu_to_le32(putPaddrLow(
2021 sgl_xtra->dma_phys_sgl));
2022 sgl->addr_hi = cpu_to_le32(putPaddrHigh(
2023 sgl_xtra->dma_phys_sgl));
2024
2025 } else {
2026 bf_set(lpfc_sli4_sge_type, sgl, LPFC_SGE_TYPE_DATA);
2027 }
2028
2029 if (!(bf_get(lpfc_sli4_sge_type, sgl) & LPFC_SGE_TYPE_LSP)) {
2030 if ((datasegcnt - 1) == i)
2031 bf_set(lpfc_sli4_sge_last, sgl, 1);
2032 physaddr = sg_dma_address(sgde);
2033 dma_len = sg_dma_len(sgde);
2034 sgl->addr_lo = cpu_to_le32(putPaddrLow(physaddr));
2035 sgl->addr_hi = cpu_to_le32(putPaddrHigh(physaddr));
2036
2037 bf_set(lpfc_sli4_sge_offset, sgl, dma_offset);
2038 sgl->word2 = cpu_to_le32(sgl->word2);
2039 sgl->sge_len = cpu_to_le32(dma_len);
2040
2041 dma_offset += dma_len;
2042 sgde = sg_next(sgde);
2043
2044 sgl++;
2045 num_sge++;
2046 lsp_just_set = false;
2047
2048 } else {
2049 sgl->word2 = cpu_to_le32(sgl->word2);
2050 sgl->sge_len = cpu_to_le32(phba->cfg_sg_dma_buf_size);
2051
2052 sgl = (struct sli4_sge *)sgl_xtra->dma_sgl;
2053 i = i - 1;
2054
2055 lsp_just_set = true;
2056 }
2057
2058 j++;
2059
2060 }
2061
2062 out:
2063 return num_sge;
2064 }
2065
2066 /**
2067 * lpfc_bg_setup_sgl_prot - Setup BlockGuard SGL with protection data
2068 * @phba: The Hba for which this call is being executed.
2069 * @sc: pointer to scsi command we're working on
2070 * @sgl: pointer to buffer list for protection groups
2071 * @datacnt: number of segments of data that have been dma mapped
2072 * @protcnt: number of segment of protection data that have been dma mapped
2073 * @lpfc_cmd: lpfc scsi command object pointer.
2074 *
2075 * This function sets up SGL buffer list for protection groups of
2076 * type LPFC_PG_TYPE_DIF
2077 *
2078 * This is usually used when DIFs are in their own buffers,
2079 * separate from the data. The HBA can then by instructed
2080 * to place the DIFs in the outgoing stream. For read operations,
2081 * The HBA could extract the DIFs and place it in DIF buffers.
2082 *
2083 * The buffer list for this type consists of one or more of the
2084 * protection groups described below:
2085 * +-------------------------+
2086 * start of first prot group --> | DISEED |
2087 * +-------------------------+
2088 * | DIF (Prot SGE) |
2089 * +-------------------------+
2090 * | Data SGE |
2091 * +-------------------------+
2092 * |more Data SGE's ... (opt)|
2093 * +-------------------------+
2094 * start of new prot group --> | DISEED |
2095 * +-------------------------+
2096 * | ... |
2097 * +-------------------------+
2098 *
2099 * Note: It is assumed that both data and protection s/g buffers have been
2100 * mapped for DMA
2101 *
2102 * Returns the number of SGEs added to the SGL.
2103 **/
2104 static uint32_t
lpfc_bg_setup_sgl_prot(struct lpfc_hba * phba,struct scsi_cmnd * sc,struct sli4_sge * sgl,int datacnt,int protcnt,struct lpfc_io_buf * lpfc_cmd)2105 lpfc_bg_setup_sgl_prot(struct lpfc_hba *phba, struct scsi_cmnd *sc,
2106 struct sli4_sge *sgl, int datacnt, int protcnt,
2107 struct lpfc_io_buf *lpfc_cmd)
2108 {
2109 struct scatterlist *sgde = NULL; /* s/g data entry */
2110 struct scatterlist *sgpe = NULL; /* s/g prot entry */
2111 struct sli4_sge_diseed *diseed = NULL;
2112 dma_addr_t dataphysaddr, protphysaddr;
2113 unsigned short curr_prot = 0;
2114 unsigned int split_offset;
2115 unsigned int protgroup_len, protgroup_offset = 0, protgroup_remainder;
2116 unsigned int protgrp_blks, protgrp_bytes;
2117 unsigned int remainder, subtotal;
2118 int status;
2119 unsigned char pgdone = 0, alldone = 0;
2120 unsigned blksize;
2121 uint32_t reftag;
2122 uint8_t txop, rxop;
2123 uint32_t dma_len;
2124 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
2125 uint32_t rc;
2126 #endif
2127 uint32_t checking = 1;
2128 uint32_t dma_offset = 0, num_sge = 0;
2129 int j = 2;
2130 struct sli4_hybrid_sgl *sgl_xtra = NULL;
2131
2132 sgpe = scsi_prot_sglist(sc);
2133 sgde = scsi_sglist(sc);
2134
2135 if (!sgpe || !sgde) {
2136 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
2137 "9082 Invalid s/g entry: data=x%px prot=x%px\n",
2138 sgpe, sgde);
2139 return 0;
2140 }
2141
2142 status = lpfc_sc_to_bg_opcodes(phba, sc, &txop, &rxop);
2143 if (status)
2144 goto out;
2145
2146 /* extract some info from the scsi command */
2147 blksize = scsi_prot_interval(sc);
2148 reftag = scsi_prot_ref_tag(sc);
2149
2150 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
2151 rc = lpfc_bg_err_inject(phba, sc, &reftag, NULL, 1);
2152 if (rc) {
2153 if (rc & BG_ERR_SWAP)
2154 lpfc_bg_err_opcodes(phba, sc, &txop, &rxop);
2155 if (rc & BG_ERR_CHECK)
2156 checking = 0;
2157 }
2158 #endif
2159
2160 split_offset = 0;
2161 do {
2162 /* Check to see if we ran out of space */
2163 if ((num_sge >= (phba->cfg_total_seg_cnt - 2)) &&
2164 !(phba->cfg_xpsgl))
2165 return num_sge + 3;
2166
2167 /* DISEED and DIF have to be together */
2168 if (!((j + 1) % phba->border_sge_num) ||
2169 !((j + 2) % phba->border_sge_num) ||
2170 !((j + 3) % phba->border_sge_num)) {
2171 sgl->word2 = 0;
2172
2173 /* set LSP type */
2174 bf_set(lpfc_sli4_sge_type, sgl, LPFC_SGE_TYPE_LSP);
2175
2176 sgl_xtra = lpfc_get_sgl_per_hdwq(phba, lpfc_cmd);
2177
2178 if (unlikely(!sgl_xtra)) {
2179 goto out;
2180 } else {
2181 sgl->addr_lo = cpu_to_le32(putPaddrLow(
2182 sgl_xtra->dma_phys_sgl));
2183 sgl->addr_hi = cpu_to_le32(putPaddrHigh(
2184 sgl_xtra->dma_phys_sgl));
2185 }
2186
2187 sgl->word2 = cpu_to_le32(sgl->word2);
2188 sgl->sge_len = cpu_to_le32(phba->cfg_sg_dma_buf_size);
2189
2190 sgl = (struct sli4_sge *)sgl_xtra->dma_sgl;
2191 j = 0;
2192 }
2193
2194 /* setup DISEED with what we have */
2195 diseed = (struct sli4_sge_diseed *) sgl;
2196 memset(diseed, 0, sizeof(struct sli4_sge_diseed));
2197 bf_set(lpfc_sli4_sge_type, sgl, LPFC_SGE_TYPE_DISEED);
2198
2199 /* Endianness conversion if necessary */
2200 diseed->ref_tag = cpu_to_le32(reftag);
2201 diseed->ref_tag_tran = diseed->ref_tag;
2202
2203 if (sc->prot_flags & SCSI_PROT_GUARD_CHECK) {
2204 bf_set(lpfc_sli4_sge_dif_ce, diseed, checking);
2205 } else {
2206 bf_set(lpfc_sli4_sge_dif_ce, diseed, 0);
2207 /*
2208 * When in this mode, the hardware will replace
2209 * the guard tag from the host with a
2210 * newly generated good CRC for the wire.
2211 * Switch to raw mode here to avoid this
2212 * behavior. What the host sends gets put on the wire.
2213 */
2214 if (txop == BG_OP_IN_CRC_OUT_CRC) {
2215 txop = BG_OP_RAW_MODE;
2216 rxop = BG_OP_RAW_MODE;
2217 }
2218 }
2219
2220
2221 if (sc->prot_flags & SCSI_PROT_REF_CHECK)
2222 bf_set(lpfc_sli4_sge_dif_re, diseed, checking);
2223 else
2224 bf_set(lpfc_sli4_sge_dif_re, diseed, 0);
2225
2226 /* setup DISEED with the rest of the info */
2227 bf_set(lpfc_sli4_sge_dif_optx, diseed, txop);
2228 bf_set(lpfc_sli4_sge_dif_oprx, diseed, rxop);
2229
2230 bf_set(lpfc_sli4_sge_dif_ai, diseed, 1);
2231 bf_set(lpfc_sli4_sge_dif_me, diseed, 0);
2232
2233 /* Endianness conversion if necessary for DISEED */
2234 diseed->word2 = cpu_to_le32(diseed->word2);
2235 diseed->word3 = cpu_to_le32(diseed->word3);
2236
2237 /* advance sgl and increment bde count */
2238 num_sge++;
2239
2240 sgl++;
2241 j++;
2242
2243 /* setup the first BDE that points to protection buffer */
2244 protphysaddr = sg_dma_address(sgpe) + protgroup_offset;
2245 protgroup_len = sg_dma_len(sgpe) - protgroup_offset;
2246
2247 /* must be integer multiple of the DIF block length */
2248 BUG_ON(protgroup_len % 8);
2249
2250 /* Now setup DIF SGE */
2251 sgl->word2 = 0;
2252 bf_set(lpfc_sli4_sge_type, sgl, LPFC_SGE_TYPE_DIF);
2253 sgl->addr_hi = le32_to_cpu(putPaddrHigh(protphysaddr));
2254 sgl->addr_lo = le32_to_cpu(putPaddrLow(protphysaddr));
2255 sgl->word2 = cpu_to_le32(sgl->word2);
2256 sgl->sge_len = 0;
2257
2258 protgrp_blks = protgroup_len / 8;
2259 protgrp_bytes = protgrp_blks * blksize;
2260
2261 /* check if DIF SGE is crossing the 4K boundary; if so split */
2262 if ((sgl->addr_lo & 0xfff) + protgroup_len > 0x1000) {
2263 protgroup_remainder = 0x1000 - (sgl->addr_lo & 0xfff);
2264 protgroup_offset += protgroup_remainder;
2265 protgrp_blks = protgroup_remainder / 8;
2266 protgrp_bytes = protgrp_blks * blksize;
2267 } else {
2268 protgroup_offset = 0;
2269 curr_prot++;
2270 }
2271
2272 num_sge++;
2273
2274 /* setup SGE's for data blocks associated with DIF data */
2275 pgdone = 0;
2276 subtotal = 0; /* total bytes processed for current prot grp */
2277
2278 sgl++;
2279 j++;
2280
2281 while (!pgdone) {
2282 /* Check to see if we ran out of space */
2283 if ((num_sge >= phba->cfg_total_seg_cnt) &&
2284 !phba->cfg_xpsgl)
2285 return num_sge + 1;
2286
2287 if (!sgde) {
2288 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
2289 "9086 BLKGRD:%s Invalid data segment\n",
2290 __func__);
2291 return 0;
2292 }
2293
2294 if (!((j + 1) % phba->border_sge_num)) {
2295 sgl->word2 = 0;
2296
2297 /* set LSP type */
2298 bf_set(lpfc_sli4_sge_type, sgl,
2299 LPFC_SGE_TYPE_LSP);
2300
2301 sgl_xtra = lpfc_get_sgl_per_hdwq(phba,
2302 lpfc_cmd);
2303
2304 if (unlikely(!sgl_xtra)) {
2305 goto out;
2306 } else {
2307 sgl->addr_lo = cpu_to_le32(
2308 putPaddrLow(sgl_xtra->dma_phys_sgl));
2309 sgl->addr_hi = cpu_to_le32(
2310 putPaddrHigh(sgl_xtra->dma_phys_sgl));
2311 }
2312
2313 sgl->word2 = cpu_to_le32(sgl->word2);
2314 sgl->sge_len = cpu_to_le32(
2315 phba->cfg_sg_dma_buf_size);
2316
2317 sgl = (struct sli4_sge *)sgl_xtra->dma_sgl;
2318 } else {
2319 dataphysaddr = sg_dma_address(sgde) +
2320 split_offset;
2321
2322 remainder = sg_dma_len(sgde) - split_offset;
2323
2324 if ((subtotal + remainder) <= protgrp_bytes) {
2325 /* we can use this whole buffer */
2326 dma_len = remainder;
2327 split_offset = 0;
2328
2329 if ((subtotal + remainder) ==
2330 protgrp_bytes)
2331 pgdone = 1;
2332 } else {
2333 /* must split this buffer with next
2334 * prot grp
2335 */
2336 dma_len = protgrp_bytes - subtotal;
2337 split_offset += dma_len;
2338 }
2339
2340 subtotal += dma_len;
2341
2342 sgl->word2 = 0;
2343 sgl->addr_lo = cpu_to_le32(putPaddrLow(
2344 dataphysaddr));
2345 sgl->addr_hi = cpu_to_le32(putPaddrHigh(
2346 dataphysaddr));
2347 bf_set(lpfc_sli4_sge_last, sgl, 0);
2348 bf_set(lpfc_sli4_sge_offset, sgl, dma_offset);
2349 bf_set(lpfc_sli4_sge_type, sgl,
2350 LPFC_SGE_TYPE_DATA);
2351
2352 sgl->sge_len = cpu_to_le32(dma_len);
2353 dma_offset += dma_len;
2354
2355 num_sge++;
2356
2357 if (split_offset) {
2358 sgl++;
2359 j++;
2360 break;
2361 }
2362
2363 /* Move to the next s/g segment if possible */
2364 sgde = sg_next(sgde);
2365
2366 sgl++;
2367 }
2368
2369 j++;
2370 }
2371
2372 if (protgroup_offset) {
2373 /* update the reference tag */
2374 reftag += protgrp_blks;
2375 continue;
2376 }
2377
2378 /* are we done ? */
2379 if (curr_prot == protcnt) {
2380 /* mark the last SGL */
2381 sgl--;
2382 bf_set(lpfc_sli4_sge_last, sgl, 1);
2383 alldone = 1;
2384 } else if (curr_prot < protcnt) {
2385 /* advance to next prot buffer */
2386 sgpe = sg_next(sgpe);
2387
2388 /* update the reference tag */
2389 reftag += protgrp_blks;
2390 } else {
2391 /* if we're here, we have a bug */
2392 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
2393 "9085 BLKGRD: bug in %s\n", __func__);
2394 }
2395
2396 } while (!alldone);
2397
2398 out:
2399
2400 return num_sge;
2401 }
2402
2403 /**
2404 * lpfc_prot_group_type - Get prtotection group type of SCSI command
2405 * @phba: The Hba for which this call is being executed.
2406 * @sc: pointer to scsi command we're working on
2407 *
2408 * Given a SCSI command that supports DIF, determine composition of protection
2409 * groups involved in setting up buffer lists
2410 *
2411 * Returns: Protection group type (with or without DIF)
2412 *
2413 **/
2414 static int
lpfc_prot_group_type(struct lpfc_hba * phba,struct scsi_cmnd * sc)2415 lpfc_prot_group_type(struct lpfc_hba *phba, struct scsi_cmnd *sc)
2416 {
2417 int ret = LPFC_PG_TYPE_INVALID;
2418 unsigned char op = scsi_get_prot_op(sc);
2419
2420 switch (op) {
2421 case SCSI_PROT_READ_STRIP:
2422 case SCSI_PROT_WRITE_INSERT:
2423 ret = LPFC_PG_TYPE_NO_DIF;
2424 break;
2425 case SCSI_PROT_READ_INSERT:
2426 case SCSI_PROT_WRITE_STRIP:
2427 case SCSI_PROT_READ_PASS:
2428 case SCSI_PROT_WRITE_PASS:
2429 ret = LPFC_PG_TYPE_DIF_BUF;
2430 break;
2431 default:
2432 if (phba)
2433 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
2434 "9021 Unsupported protection op:%d\n",
2435 op);
2436 break;
2437 }
2438 return ret;
2439 }
2440
2441 /**
2442 * lpfc_bg_scsi_adjust_dl - Adjust SCSI data length for BlockGuard
2443 * @phba: The Hba for which this call is being executed.
2444 * @lpfc_cmd: The scsi buffer which is going to be adjusted.
2445 *
2446 * Adjust the data length to account for how much data
2447 * is actually on the wire.
2448 *
2449 * returns the adjusted data length
2450 **/
2451 static int
lpfc_bg_scsi_adjust_dl(struct lpfc_hba * phba,struct lpfc_io_buf * lpfc_cmd)2452 lpfc_bg_scsi_adjust_dl(struct lpfc_hba *phba,
2453 struct lpfc_io_buf *lpfc_cmd)
2454 {
2455 struct scsi_cmnd *sc = lpfc_cmd->pCmd;
2456 int fcpdl;
2457
2458 fcpdl = scsi_bufflen(sc);
2459
2460 /* Check if there is protection data on the wire */
2461 if (sc->sc_data_direction == DMA_FROM_DEVICE) {
2462 /* Read check for protection data */
2463 if (scsi_get_prot_op(sc) == SCSI_PROT_READ_INSERT)
2464 return fcpdl;
2465
2466 } else {
2467 /* Write check for protection data */
2468 if (scsi_get_prot_op(sc) == SCSI_PROT_WRITE_STRIP)
2469 return fcpdl;
2470 }
2471
2472 /*
2473 * If we are in DIF Type 1 mode every data block has a 8 byte
2474 * DIF (trailer) attached to it. Must ajust FCP data length
2475 * to account for the protection data.
2476 */
2477 fcpdl += (fcpdl / scsi_prot_interval(sc)) * 8;
2478
2479 return fcpdl;
2480 }
2481
2482 /**
2483 * lpfc_bg_scsi_prep_dma_buf_s3 - DMA mapping for scsi buffer to SLI3 IF spec
2484 * @phba: The Hba for which this call is being executed.
2485 * @lpfc_cmd: The scsi buffer which is going to be prep'ed.
2486 *
2487 * This is the protection/DIF aware version of
2488 * lpfc_scsi_prep_dma_buf(). It may be a good idea to combine the
2489 * two functions eventually, but for now, it's here.
2490 * RETURNS 0 - SUCCESS,
2491 * 1 - Failed DMA map, retry.
2492 * 2 - Invalid scsi cmd or prot-type. Do not rety.
2493 **/
2494 static int
lpfc_bg_scsi_prep_dma_buf_s3(struct lpfc_hba * phba,struct lpfc_io_buf * lpfc_cmd)2495 lpfc_bg_scsi_prep_dma_buf_s3(struct lpfc_hba *phba,
2496 struct lpfc_io_buf *lpfc_cmd)
2497 {
2498 struct scsi_cmnd *scsi_cmnd = lpfc_cmd->pCmd;
2499 struct fcp_cmnd *fcp_cmnd = lpfc_cmd->fcp_cmnd;
2500 struct ulp_bde64 *bpl = (struct ulp_bde64 *)lpfc_cmd->dma_sgl;
2501 IOCB_t *iocb_cmd = &lpfc_cmd->cur_iocbq.iocb;
2502 uint32_t num_bde = 0;
2503 int datasegcnt, protsegcnt, datadir = scsi_cmnd->sc_data_direction;
2504 int prot_group_type = 0;
2505 int fcpdl;
2506 int ret = 1;
2507 struct lpfc_vport *vport = phba->pport;
2508
2509 /*
2510 * Start the lpfc command prep by bumping the bpl beyond fcp_cmnd
2511 * fcp_rsp regions to the first data bde entry
2512 */
2513 bpl += 2;
2514 if (scsi_sg_count(scsi_cmnd)) {
2515 /*
2516 * The driver stores the segment count returned from dma_map_sg
2517 * because this a count of dma-mappings used to map the use_sg
2518 * pages. They are not guaranteed to be the same for those
2519 * architectures that implement an IOMMU.
2520 */
2521 datasegcnt = dma_map_sg(&phba->pcidev->dev,
2522 scsi_sglist(scsi_cmnd),
2523 scsi_sg_count(scsi_cmnd), datadir);
2524 if (unlikely(!datasegcnt))
2525 return 1;
2526
2527 lpfc_cmd->seg_cnt = datasegcnt;
2528
2529 /* First check if data segment count from SCSI Layer is good */
2530 if (lpfc_cmd->seg_cnt > phba->cfg_sg_seg_cnt) {
2531 WARN_ON_ONCE(lpfc_cmd->seg_cnt > phba->cfg_sg_seg_cnt);
2532 ret = 2;
2533 goto err;
2534 }
2535
2536 prot_group_type = lpfc_prot_group_type(phba, scsi_cmnd);
2537
2538 switch (prot_group_type) {
2539 case LPFC_PG_TYPE_NO_DIF:
2540
2541 /* Here we need to add a PDE5 and PDE6 to the count */
2542 if ((lpfc_cmd->seg_cnt + 2) > phba->cfg_total_seg_cnt) {
2543 ret = 2;
2544 goto err;
2545 }
2546
2547 num_bde = lpfc_bg_setup_bpl(phba, scsi_cmnd, bpl,
2548 datasegcnt);
2549 /* we should have 2 or more entries in buffer list */
2550 if (num_bde < 2) {
2551 ret = 2;
2552 goto err;
2553 }
2554 break;
2555
2556 case LPFC_PG_TYPE_DIF_BUF:
2557 /*
2558 * This type indicates that protection buffers are
2559 * passed to the driver, so that needs to be prepared
2560 * for DMA
2561 */
2562 protsegcnt = dma_map_sg(&phba->pcidev->dev,
2563 scsi_prot_sglist(scsi_cmnd),
2564 scsi_prot_sg_count(scsi_cmnd), datadir);
2565 if (unlikely(!protsegcnt)) {
2566 scsi_dma_unmap(scsi_cmnd);
2567 return 1;
2568 }
2569
2570 lpfc_cmd->prot_seg_cnt = protsegcnt;
2571
2572 /*
2573 * There is a minimun of 4 BPLs used for every
2574 * protection data segment.
2575 */
2576 if ((lpfc_cmd->prot_seg_cnt * 4) >
2577 (phba->cfg_total_seg_cnt - 2)) {
2578 ret = 2;
2579 goto err;
2580 }
2581
2582 num_bde = lpfc_bg_setup_bpl_prot(phba, scsi_cmnd, bpl,
2583 datasegcnt, protsegcnt);
2584 /* we should have 3 or more entries in buffer list */
2585 if ((num_bde < 3) ||
2586 (num_bde > phba->cfg_total_seg_cnt)) {
2587 ret = 2;
2588 goto err;
2589 }
2590 break;
2591
2592 case LPFC_PG_TYPE_INVALID:
2593 default:
2594 scsi_dma_unmap(scsi_cmnd);
2595 lpfc_cmd->seg_cnt = 0;
2596
2597 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
2598 "9022 Unexpected protection group %i\n",
2599 prot_group_type);
2600 return 2;
2601 }
2602 }
2603
2604 /*
2605 * Finish initializing those IOCB fields that are dependent on the
2606 * scsi_cmnd request_buffer. Note that the bdeSize is explicitly
2607 * reinitialized since all iocb memory resources are used many times
2608 * for transmit, receive, and continuation bpl's.
2609 */
2610 iocb_cmd->un.fcpi64.bdl.bdeSize = (2 * sizeof(struct ulp_bde64));
2611 iocb_cmd->un.fcpi64.bdl.bdeSize += (num_bde * sizeof(struct ulp_bde64));
2612 iocb_cmd->ulpBdeCount = 1;
2613 iocb_cmd->ulpLe = 1;
2614
2615 fcpdl = lpfc_bg_scsi_adjust_dl(phba, lpfc_cmd);
2616 fcp_cmnd->fcpDl = cpu_to_be32(fcpdl);
2617
2618 /*
2619 * Due to difference in data length between DIF/non-DIF paths,
2620 * we need to set word 4 of IOCB here
2621 */
2622 iocb_cmd->un.fcpi.fcpi_parm = fcpdl;
2623
2624 /*
2625 * For First burst, we may need to adjust the initial transfer
2626 * length for DIF
2627 */
2628 if (iocb_cmd->un.fcpi.fcpi_XRdy &&
2629 (fcpdl < vport->cfg_first_burst_size))
2630 iocb_cmd->un.fcpi.fcpi_XRdy = fcpdl;
2631
2632 return 0;
2633 err:
2634 if (lpfc_cmd->seg_cnt)
2635 scsi_dma_unmap(scsi_cmnd);
2636 if (lpfc_cmd->prot_seg_cnt)
2637 dma_unmap_sg(&phba->pcidev->dev, scsi_prot_sglist(scsi_cmnd),
2638 scsi_prot_sg_count(scsi_cmnd),
2639 scsi_cmnd->sc_data_direction);
2640
2641 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
2642 "9023 Cannot setup S/G List for HBA"
2643 "IO segs %d/%d BPL %d SCSI %d: %d %d\n",
2644 lpfc_cmd->seg_cnt, lpfc_cmd->prot_seg_cnt,
2645 phba->cfg_total_seg_cnt, phba->cfg_sg_seg_cnt,
2646 prot_group_type, num_bde);
2647
2648 lpfc_cmd->seg_cnt = 0;
2649 lpfc_cmd->prot_seg_cnt = 0;
2650 return ret;
2651 }
2652
2653 /*
2654 * This function calcuates the T10 DIF guard tag
2655 * on the specified data using a CRC algorithmn
2656 * using crc_t10dif.
2657 */
2658 static uint16_t
lpfc_bg_crc(uint8_t * data,int count)2659 lpfc_bg_crc(uint8_t *data, int count)
2660 {
2661 uint16_t crc = 0;
2662 uint16_t x;
2663
2664 crc = crc_t10dif(data, count);
2665 x = cpu_to_be16(crc);
2666 return x;
2667 }
2668
2669 /*
2670 * This function calcuates the T10 DIF guard tag
2671 * on the specified data using a CSUM algorithmn
2672 * using ip_compute_csum.
2673 */
2674 static uint16_t
lpfc_bg_csum(uint8_t * data,int count)2675 lpfc_bg_csum(uint8_t *data, int count)
2676 {
2677 uint16_t ret;
2678
2679 ret = ip_compute_csum(data, count);
2680 return ret;
2681 }
2682
2683 /*
2684 * This function examines the protection data to try to determine
2685 * what type of T10-DIF error occurred.
2686 */
2687 static void
lpfc_calc_bg_err(struct lpfc_hba * phba,struct lpfc_io_buf * lpfc_cmd)2688 lpfc_calc_bg_err(struct lpfc_hba *phba, struct lpfc_io_buf *lpfc_cmd)
2689 {
2690 struct scatterlist *sgpe; /* s/g prot entry */
2691 struct scatterlist *sgde; /* s/g data entry */
2692 struct scsi_cmnd *cmd = lpfc_cmd->pCmd;
2693 struct scsi_dif_tuple *src = NULL;
2694 uint8_t *data_src = NULL;
2695 uint16_t guard_tag;
2696 uint16_t start_app_tag, app_tag;
2697 uint32_t start_ref_tag, ref_tag;
2698 int prot, protsegcnt;
2699 int err_type, len, data_len;
2700 int chk_ref, chk_app, chk_guard;
2701 uint16_t sum;
2702 unsigned blksize;
2703
2704 err_type = BGS_GUARD_ERR_MASK;
2705 sum = 0;
2706 guard_tag = 0;
2707
2708 /* First check to see if there is protection data to examine */
2709 prot = scsi_get_prot_op(cmd);
2710 if ((prot == SCSI_PROT_READ_STRIP) ||
2711 (prot == SCSI_PROT_WRITE_INSERT) ||
2712 (prot == SCSI_PROT_NORMAL))
2713 goto out;
2714
2715 /* Currently the driver just supports ref_tag and guard_tag checking */
2716 chk_ref = 1;
2717 chk_app = 0;
2718 chk_guard = 0;
2719
2720 /* Setup a ptr to the protection data provided by the SCSI host */
2721 sgpe = scsi_prot_sglist(cmd);
2722 protsegcnt = lpfc_cmd->prot_seg_cnt;
2723
2724 if (sgpe && protsegcnt) {
2725
2726 /*
2727 * We will only try to verify guard tag if the segment
2728 * data length is a multiple of the blksize.
2729 */
2730 sgde = scsi_sglist(cmd);
2731 blksize = scsi_prot_interval(cmd);
2732 data_src = (uint8_t *)sg_virt(sgde);
2733 data_len = sg_dma_len(sgde);
2734 if ((data_len & (blksize - 1)) == 0)
2735 chk_guard = 1;
2736
2737 src = (struct scsi_dif_tuple *)sg_virt(sgpe);
2738 start_ref_tag = scsi_prot_ref_tag(cmd);
2739 start_app_tag = src->app_tag;
2740 len = sg_dma_len(sgpe);
2741 while (src && protsegcnt) {
2742 while (len) {
2743
2744 /*
2745 * First check to see if a protection data
2746 * check is valid
2747 */
2748 if ((src->ref_tag == T10_PI_REF_ESCAPE) ||
2749 (src->app_tag == T10_PI_APP_ESCAPE)) {
2750 start_ref_tag++;
2751 goto skipit;
2752 }
2753
2754 /* First Guard Tag checking */
2755 if (chk_guard) {
2756 guard_tag = src->guard_tag;
2757 if (cmd->prot_flags
2758 & SCSI_PROT_IP_CHECKSUM)
2759 sum = lpfc_bg_csum(data_src,
2760 blksize);
2761 else
2762 sum = lpfc_bg_crc(data_src,
2763 blksize);
2764 if ((guard_tag != sum)) {
2765 err_type = BGS_GUARD_ERR_MASK;
2766 goto out;
2767 }
2768 }
2769
2770 /* Reference Tag checking */
2771 ref_tag = be32_to_cpu(src->ref_tag);
2772 if (chk_ref && (ref_tag != start_ref_tag)) {
2773 err_type = BGS_REFTAG_ERR_MASK;
2774 goto out;
2775 }
2776 start_ref_tag++;
2777
2778 /* App Tag checking */
2779 app_tag = src->app_tag;
2780 if (chk_app && (app_tag != start_app_tag)) {
2781 err_type = BGS_APPTAG_ERR_MASK;
2782 goto out;
2783 }
2784 skipit:
2785 len -= sizeof(struct scsi_dif_tuple);
2786 if (len < 0)
2787 len = 0;
2788 src++;
2789
2790 data_src += blksize;
2791 data_len -= blksize;
2792
2793 /*
2794 * Are we at the end of the Data segment?
2795 * The data segment is only used for Guard
2796 * tag checking.
2797 */
2798 if (chk_guard && (data_len == 0)) {
2799 chk_guard = 0;
2800 sgde = sg_next(sgde);
2801 if (!sgde)
2802 goto out;
2803
2804 data_src = (uint8_t *)sg_virt(sgde);
2805 data_len = sg_dma_len(sgde);
2806 if ((data_len & (blksize - 1)) == 0)
2807 chk_guard = 1;
2808 }
2809 }
2810
2811 /* Goto the next Protection data segment */
2812 sgpe = sg_next(sgpe);
2813 if (sgpe) {
2814 src = (struct scsi_dif_tuple *)sg_virt(sgpe);
2815 len = sg_dma_len(sgpe);
2816 } else {
2817 src = NULL;
2818 }
2819 protsegcnt--;
2820 }
2821 }
2822 out:
2823 if (err_type == BGS_GUARD_ERR_MASK) {
2824 scsi_build_sense(cmd, 1, ILLEGAL_REQUEST, 0x10, 0x1);
2825 set_host_byte(cmd, DID_ABORT);
2826 phba->bg_guard_err_cnt++;
2827 lpfc_printf_log(phba, KERN_WARNING, LOG_FCP | LOG_BG,
2828 "9069 BLKGRD: reftag %x grd_tag err %x != %x\n",
2829 scsi_prot_ref_tag(cmd),
2830 sum, guard_tag);
2831
2832 } else if (err_type == BGS_REFTAG_ERR_MASK) {
2833 scsi_build_sense(cmd, 1, ILLEGAL_REQUEST, 0x10, 0x3);
2834 set_host_byte(cmd, DID_ABORT);
2835
2836 phba->bg_reftag_err_cnt++;
2837 lpfc_printf_log(phba, KERN_WARNING, LOG_FCP | LOG_BG,
2838 "9066 BLKGRD: reftag %x ref_tag err %x != %x\n",
2839 scsi_prot_ref_tag(cmd),
2840 ref_tag, start_ref_tag);
2841
2842 } else if (err_type == BGS_APPTAG_ERR_MASK) {
2843 scsi_build_sense(cmd, 1, ILLEGAL_REQUEST, 0x10, 0x2);
2844 set_host_byte(cmd, DID_ABORT);
2845
2846 phba->bg_apptag_err_cnt++;
2847 lpfc_printf_log(phba, KERN_WARNING, LOG_FCP | LOG_BG,
2848 "9041 BLKGRD: reftag %x app_tag err %x != %x\n",
2849 scsi_prot_ref_tag(cmd),
2850 app_tag, start_app_tag);
2851 }
2852 }
2853
2854 /*
2855 * This function checks for BlockGuard errors detected by
2856 * the HBA. In case of errors, the ASC/ASCQ fields in the
2857 * sense buffer will be set accordingly, paired with
2858 * ILLEGAL_REQUEST to signal to the kernel that the HBA
2859 * detected corruption.
2860 *
2861 * Returns:
2862 * 0 - No error found
2863 * 1 - BlockGuard error found
2864 * -1 - Internal error (bad profile, ...etc)
2865 */
2866 static int
lpfc_parse_bg_err(struct lpfc_hba * phba,struct lpfc_io_buf * lpfc_cmd,struct lpfc_iocbq * pIocbOut)2867 lpfc_parse_bg_err(struct lpfc_hba *phba, struct lpfc_io_buf *lpfc_cmd,
2868 struct lpfc_iocbq *pIocbOut)
2869 {
2870 struct scsi_cmnd *cmd = lpfc_cmd->pCmd;
2871 struct sli3_bg_fields *bgf;
2872 int ret = 0;
2873 struct lpfc_wcqe_complete *wcqe;
2874 u32 status;
2875 u32 bghm = 0;
2876 u32 bgstat = 0;
2877 u64 failing_sector = 0;
2878
2879 if (phba->sli_rev == LPFC_SLI_REV4) {
2880 wcqe = &pIocbOut->wcqe_cmpl;
2881 status = bf_get(lpfc_wcqe_c_status, wcqe);
2882
2883 if (status == CQE_STATUS_DI_ERROR) {
2884 /* Guard Check failed */
2885 if (bf_get(lpfc_wcqe_c_bg_ge, wcqe))
2886 bgstat |= BGS_GUARD_ERR_MASK;
2887
2888 /* AppTag Check failed */
2889 if (bf_get(lpfc_wcqe_c_bg_ae, wcqe))
2890 bgstat |= BGS_APPTAG_ERR_MASK;
2891
2892 /* RefTag Check failed */
2893 if (bf_get(lpfc_wcqe_c_bg_re, wcqe))
2894 bgstat |= BGS_REFTAG_ERR_MASK;
2895
2896 /* Check to see if there was any good data before the
2897 * error
2898 */
2899 if (bf_get(lpfc_wcqe_c_bg_tdpv, wcqe)) {
2900 bgstat |= BGS_HI_WATER_MARK_PRESENT_MASK;
2901 bghm = wcqe->total_data_placed;
2902 }
2903
2904 /*
2905 * Set ALL the error bits to indicate we don't know what
2906 * type of error it is.
2907 */
2908 if (!bgstat)
2909 bgstat |= (BGS_REFTAG_ERR_MASK |
2910 BGS_APPTAG_ERR_MASK |
2911 BGS_GUARD_ERR_MASK);
2912 }
2913
2914 } else {
2915 bgf = &pIocbOut->iocb.unsli3.sli3_bg;
2916 bghm = bgf->bghm;
2917 bgstat = bgf->bgstat;
2918 }
2919
2920 if (lpfc_bgs_get_invalid_prof(bgstat)) {
2921 cmd->result = DID_ERROR << 16;
2922 lpfc_printf_log(phba, KERN_WARNING, LOG_FCP | LOG_BG,
2923 "9072 BLKGRD: Invalid BG Profile in cmd "
2924 "0x%x reftag 0x%x blk cnt 0x%x "
2925 "bgstat=x%x bghm=x%x\n", cmd->cmnd[0],
2926 scsi_prot_ref_tag(cmd),
2927 scsi_logical_block_count(cmd), bgstat, bghm);
2928 ret = (-1);
2929 goto out;
2930 }
2931
2932 if (lpfc_bgs_get_uninit_dif_block(bgstat)) {
2933 cmd->result = DID_ERROR << 16;
2934 lpfc_printf_log(phba, KERN_WARNING, LOG_FCP | LOG_BG,
2935 "9073 BLKGRD: Invalid BG PDIF Block in cmd "
2936 "0x%x reftag 0x%x blk cnt 0x%x "
2937 "bgstat=x%x bghm=x%x\n", cmd->cmnd[0],
2938 scsi_prot_ref_tag(cmd),
2939 scsi_logical_block_count(cmd), bgstat, bghm);
2940 ret = (-1);
2941 goto out;
2942 }
2943
2944 if (lpfc_bgs_get_guard_err(bgstat)) {
2945 ret = 1;
2946 scsi_build_sense(cmd, 1, ILLEGAL_REQUEST, 0x10, 0x1);
2947 set_host_byte(cmd, DID_ABORT);
2948 phba->bg_guard_err_cnt++;
2949 lpfc_printf_log(phba, KERN_WARNING, LOG_FCP | LOG_BG,
2950 "9055 BLKGRD: Guard Tag error in cmd "
2951 "0x%x reftag 0x%x blk cnt 0x%x "
2952 "bgstat=x%x bghm=x%x\n", cmd->cmnd[0],
2953 scsi_prot_ref_tag(cmd),
2954 scsi_logical_block_count(cmd), bgstat, bghm);
2955 }
2956
2957 if (lpfc_bgs_get_reftag_err(bgstat)) {
2958 ret = 1;
2959 scsi_build_sense(cmd, 1, ILLEGAL_REQUEST, 0x10, 0x3);
2960 set_host_byte(cmd, DID_ABORT);
2961 phba->bg_reftag_err_cnt++;
2962 lpfc_printf_log(phba, KERN_WARNING, LOG_FCP | LOG_BG,
2963 "9056 BLKGRD: Ref Tag error in cmd "
2964 "0x%x reftag 0x%x blk cnt 0x%x "
2965 "bgstat=x%x bghm=x%x\n", cmd->cmnd[0],
2966 scsi_prot_ref_tag(cmd),
2967 scsi_logical_block_count(cmd), bgstat, bghm);
2968 }
2969
2970 if (lpfc_bgs_get_apptag_err(bgstat)) {
2971 ret = 1;
2972 scsi_build_sense(cmd, 1, ILLEGAL_REQUEST, 0x10, 0x2);
2973 set_host_byte(cmd, DID_ABORT);
2974 phba->bg_apptag_err_cnt++;
2975 lpfc_printf_log(phba, KERN_WARNING, LOG_FCP | LOG_BG,
2976 "9061 BLKGRD: App Tag error in cmd "
2977 "0x%x reftag 0x%x blk cnt 0x%x "
2978 "bgstat=x%x bghm=x%x\n", cmd->cmnd[0],
2979 scsi_prot_ref_tag(cmd),
2980 scsi_logical_block_count(cmd), bgstat, bghm);
2981 }
2982
2983 if (lpfc_bgs_get_hi_water_mark_present(bgstat)) {
2984 /*
2985 * setup sense data descriptor 0 per SPC-4 as an information
2986 * field, and put the failing LBA in it.
2987 * This code assumes there was also a guard/app/ref tag error
2988 * indication.
2989 */
2990 cmd->sense_buffer[7] = 0xc; /* Additional sense length */
2991 cmd->sense_buffer[8] = 0; /* Information descriptor type */
2992 cmd->sense_buffer[9] = 0xa; /* Additional descriptor length */
2993 cmd->sense_buffer[10] = 0x80; /* Validity bit */
2994
2995 /* bghm is a "on the wire" FC frame based count */
2996 switch (scsi_get_prot_op(cmd)) {
2997 case SCSI_PROT_READ_INSERT:
2998 case SCSI_PROT_WRITE_STRIP:
2999 bghm /= cmd->device->sector_size;
3000 break;
3001 case SCSI_PROT_READ_STRIP:
3002 case SCSI_PROT_WRITE_INSERT:
3003 case SCSI_PROT_READ_PASS:
3004 case SCSI_PROT_WRITE_PASS:
3005 bghm /= (cmd->device->sector_size +
3006 sizeof(struct scsi_dif_tuple));
3007 break;
3008 }
3009
3010 failing_sector = scsi_get_lba(cmd);
3011 failing_sector += bghm;
3012
3013 /* Descriptor Information */
3014 put_unaligned_be64(failing_sector, &cmd->sense_buffer[12]);
3015 }
3016
3017 if (!ret) {
3018 /* No error was reported - problem in FW? */
3019 lpfc_printf_log(phba, KERN_WARNING, LOG_FCP | LOG_BG,
3020 "9057 BLKGRD: Unknown error in cmd "
3021 "0x%x reftag 0x%x blk cnt 0x%x "
3022 "bgstat=x%x bghm=x%x\n", cmd->cmnd[0],
3023 scsi_prot_ref_tag(cmd),
3024 scsi_logical_block_count(cmd), bgstat, bghm);
3025
3026 /* Calculate what type of error it was */
3027 lpfc_calc_bg_err(phba, lpfc_cmd);
3028 }
3029 out:
3030 return ret;
3031 }
3032
3033 /**
3034 * lpfc_scsi_prep_dma_buf_s4 - DMA mapping for scsi buffer to SLI4 IF spec
3035 * @phba: The Hba for which this call is being executed.
3036 * @lpfc_cmd: The scsi buffer which is going to be mapped.
3037 *
3038 * This routine does the pci dma mapping for scatter-gather list of scsi cmnd
3039 * field of @lpfc_cmd for device with SLI-4 interface spec.
3040 *
3041 * Return codes:
3042 * 2 - Error - Do not retry
3043 * 1 - Error - Retry
3044 * 0 - Success
3045 **/
3046 static int
lpfc_scsi_prep_dma_buf_s4(struct lpfc_hba * phba,struct lpfc_io_buf * lpfc_cmd)3047 lpfc_scsi_prep_dma_buf_s4(struct lpfc_hba *phba, struct lpfc_io_buf *lpfc_cmd)
3048 {
3049 struct scsi_cmnd *scsi_cmnd = lpfc_cmd->pCmd;
3050 struct scatterlist *sgel = NULL;
3051 struct fcp_cmnd *fcp_cmnd = lpfc_cmd->fcp_cmnd;
3052 struct sli4_sge *sgl = (struct sli4_sge *)lpfc_cmd->dma_sgl;
3053 struct sli4_sge *first_data_sgl;
3054 struct lpfc_iocbq *pwqeq = &lpfc_cmd->cur_iocbq;
3055 struct lpfc_vport *vport = phba->pport;
3056 union lpfc_wqe128 *wqe = &pwqeq->wqe;
3057 dma_addr_t physaddr;
3058 uint32_t dma_len;
3059 uint32_t dma_offset = 0;
3060 int nseg, i, j;
3061 struct ulp_bde64 *bde;
3062 bool lsp_just_set = false;
3063 struct sli4_hybrid_sgl *sgl_xtra = NULL;
3064
3065 /*
3066 * There are three possibilities here - use scatter-gather segment, use
3067 * the single mapping, or neither. Start the lpfc command prep by
3068 * bumping the bpl beyond the fcp_cmnd and fcp_rsp regions to the first
3069 * data bde entry.
3070 */
3071 if (scsi_sg_count(scsi_cmnd)) {
3072 /*
3073 * The driver stores the segment count returned from dma_map_sg
3074 * because this a count of dma-mappings used to map the use_sg
3075 * pages. They are not guaranteed to be the same for those
3076 * architectures that implement an IOMMU.
3077 */
3078
3079 nseg = scsi_dma_map(scsi_cmnd);
3080 if (unlikely(nseg <= 0))
3081 return 1;
3082 sgl += 1;
3083 /* clear the last flag in the fcp_rsp map entry */
3084 sgl->word2 = le32_to_cpu(sgl->word2);
3085 bf_set(lpfc_sli4_sge_last, sgl, 0);
3086 sgl->word2 = cpu_to_le32(sgl->word2);
3087 sgl += 1;
3088 first_data_sgl = sgl;
3089 lpfc_cmd->seg_cnt = nseg;
3090 if (!phba->cfg_xpsgl &&
3091 lpfc_cmd->seg_cnt > phba->cfg_sg_seg_cnt) {
3092 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
3093 "9074 BLKGRD:"
3094 " %s: Too many sg segments from "
3095 "dma_map_sg. Config %d, seg_cnt %d\n",
3096 __func__, phba->cfg_sg_seg_cnt,
3097 lpfc_cmd->seg_cnt);
3098 WARN_ON_ONCE(lpfc_cmd->seg_cnt > phba->cfg_sg_seg_cnt);
3099 lpfc_cmd->seg_cnt = 0;
3100 scsi_dma_unmap(scsi_cmnd);
3101 return 2;
3102 }
3103
3104 /*
3105 * The driver established a maximum scatter-gather segment count
3106 * during probe that limits the number of sg elements in any
3107 * single scsi command. Just run through the seg_cnt and format
3108 * the sge's.
3109 * When using SLI-3 the driver will try to fit all the BDEs into
3110 * the IOCB. If it can't then the BDEs get added to a BPL as it
3111 * does for SLI-2 mode.
3112 */
3113
3114 /* for tracking segment boundaries */
3115 sgel = scsi_sglist(scsi_cmnd);
3116 j = 2;
3117 for (i = 0; i < nseg; i++) {
3118 sgl->word2 = 0;
3119 if (nseg == 1) {
3120 bf_set(lpfc_sli4_sge_last, sgl, 1);
3121 bf_set(lpfc_sli4_sge_type, sgl,
3122 LPFC_SGE_TYPE_DATA);
3123 } else {
3124 bf_set(lpfc_sli4_sge_last, sgl, 0);
3125
3126 /* do we need to expand the segment */
3127 if (!lsp_just_set &&
3128 !((j + 1) % phba->border_sge_num) &&
3129 ((nseg - 1) != i)) {
3130 /* set LSP type */
3131 bf_set(lpfc_sli4_sge_type, sgl,
3132 LPFC_SGE_TYPE_LSP);
3133
3134 sgl_xtra = lpfc_get_sgl_per_hdwq(
3135 phba, lpfc_cmd);
3136
3137 if (unlikely(!sgl_xtra)) {
3138 lpfc_cmd->seg_cnt = 0;
3139 scsi_dma_unmap(scsi_cmnd);
3140 return 1;
3141 }
3142 sgl->addr_lo = cpu_to_le32(putPaddrLow(
3143 sgl_xtra->dma_phys_sgl));
3144 sgl->addr_hi = cpu_to_le32(putPaddrHigh(
3145 sgl_xtra->dma_phys_sgl));
3146
3147 } else {
3148 bf_set(lpfc_sli4_sge_type, sgl,
3149 LPFC_SGE_TYPE_DATA);
3150 }
3151 }
3152
3153 if (!(bf_get(lpfc_sli4_sge_type, sgl) &
3154 LPFC_SGE_TYPE_LSP)) {
3155 if ((nseg - 1) == i)
3156 bf_set(lpfc_sli4_sge_last, sgl, 1);
3157
3158 physaddr = sg_dma_address(sgel);
3159 dma_len = sg_dma_len(sgel);
3160 sgl->addr_lo = cpu_to_le32(putPaddrLow(
3161 physaddr));
3162 sgl->addr_hi = cpu_to_le32(putPaddrHigh(
3163 physaddr));
3164
3165 bf_set(lpfc_sli4_sge_offset, sgl, dma_offset);
3166 sgl->word2 = cpu_to_le32(sgl->word2);
3167 sgl->sge_len = cpu_to_le32(dma_len);
3168
3169 dma_offset += dma_len;
3170 sgel = sg_next(sgel);
3171
3172 sgl++;
3173 lsp_just_set = false;
3174
3175 } else {
3176 sgl->word2 = cpu_to_le32(sgl->word2);
3177 sgl->sge_len = cpu_to_le32(
3178 phba->cfg_sg_dma_buf_size);
3179
3180 sgl = (struct sli4_sge *)sgl_xtra->dma_sgl;
3181 i = i - 1;
3182
3183 lsp_just_set = true;
3184 }
3185
3186 j++;
3187 }
3188
3189 /* PBDE support for first data SGE only.
3190 * For FCoE, we key off Performance Hints.
3191 * For FC, we key off lpfc_enable_pbde.
3192 */
3193 if (nseg == 1 &&
3194 ((phba->sli3_options & LPFC_SLI4_PERFH_ENABLED) ||
3195 phba->cfg_enable_pbde)) {
3196 /* Words 13-15 */
3197 bde = (struct ulp_bde64 *)
3198 &wqe->words[13];
3199 bde->addrLow = first_data_sgl->addr_lo;
3200 bde->addrHigh = first_data_sgl->addr_hi;
3201 bde->tus.f.bdeSize =
3202 le32_to_cpu(first_data_sgl->sge_len);
3203 bde->tus.f.bdeFlags = BUFF_TYPE_BDE_64;
3204 bde->tus.w = cpu_to_le32(bde->tus.w);
3205
3206 /* Word 11 - set PBDE bit */
3207 bf_set(wqe_pbde, &wqe->generic.wqe_com, 1);
3208 } else {
3209 memset(&wqe->words[13], 0, (sizeof(uint32_t) * 3));
3210 /* Word 11 - PBDE bit disabled by default template */
3211 }
3212 } else {
3213 sgl += 1;
3214 /* set the last flag in the fcp_rsp map entry */
3215 sgl->word2 = le32_to_cpu(sgl->word2);
3216 bf_set(lpfc_sli4_sge_last, sgl, 1);
3217 sgl->word2 = cpu_to_le32(sgl->word2);
3218
3219 if ((phba->sli3_options & LPFC_SLI4_PERFH_ENABLED) ||
3220 phba->cfg_enable_pbde) {
3221 bde = (struct ulp_bde64 *)
3222 &wqe->words[13];
3223 memset(bde, 0, (sizeof(uint32_t) * 3));
3224 }
3225 }
3226
3227 /*
3228 * Finish initializing those IOCB fields that are dependent on the
3229 * scsi_cmnd request_buffer. Note that for SLI-2 the bdeSize is
3230 * explicitly reinitialized.
3231 * all iocb memory resources are reused.
3232 */
3233 if (scsi_cmnd->cmd_len > LPFC_FCP_CDB_LEN)
3234 ((struct fcp_cmnd32 *)fcp_cmnd)->fcpDl =
3235 cpu_to_be32(scsi_bufflen(scsi_cmnd));
3236 else
3237 fcp_cmnd->fcpDl = cpu_to_be32(scsi_bufflen(scsi_cmnd));
3238 /* Set first-burst provided it was successfully negotiated */
3239 if (!test_bit(HBA_FCOE_MODE, &phba->hba_flag) &&
3240 vport->cfg_first_burst_size &&
3241 scsi_cmnd->sc_data_direction == DMA_TO_DEVICE) {
3242 u32 init_len, total_len;
3243
3244 total_len = scsi_bufflen(scsi_cmnd);
3245 init_len = min(total_len, vport->cfg_first_burst_size);
3246
3247 /* Word 4 & 5 */
3248 wqe->fcp_iwrite.initial_xfer_len = init_len;
3249 wqe->fcp_iwrite.total_xfer_len = total_len;
3250 } else {
3251 /* Word 4 */
3252 wqe->fcp_iwrite.total_xfer_len =
3253 be32_to_cpu(fcp_cmnd->fcpDl);
3254 }
3255
3256 /*
3257 * If the OAS driver feature is enabled and the lun is enabled for
3258 * OAS, set the oas iocb related flags.
3259 */
3260 if ((phba->cfg_fof) && ((struct lpfc_device_data *)
3261 scsi_cmnd->device->hostdata)->oas_enabled) {
3262 lpfc_cmd->cur_iocbq.cmd_flag |= (LPFC_IO_OAS | LPFC_IO_FOF);
3263 lpfc_cmd->cur_iocbq.priority = ((struct lpfc_device_data *)
3264 scsi_cmnd->device->hostdata)->priority;
3265
3266 /* Word 10 */
3267 bf_set(wqe_oas, &wqe->generic.wqe_com, 1);
3268 bf_set(wqe_ccpe, &wqe->generic.wqe_com, 1);
3269
3270 if (lpfc_cmd->cur_iocbq.priority)
3271 bf_set(wqe_ccp, &wqe->generic.wqe_com,
3272 (lpfc_cmd->cur_iocbq.priority << 1));
3273 else
3274 bf_set(wqe_ccp, &wqe->generic.wqe_com,
3275 (phba->cfg_XLanePriority << 1));
3276 }
3277
3278 return 0;
3279 }
3280
3281 /**
3282 * lpfc_bg_scsi_prep_dma_buf_s4 - DMA mapping for scsi buffer to SLI4 IF spec
3283 * @phba: The Hba for which this call is being executed.
3284 * @lpfc_cmd: The scsi buffer which is going to be mapped.
3285 *
3286 * This is the protection/DIF aware version of
3287 * lpfc_scsi_prep_dma_buf(). It may be a good idea to combine the
3288 * two functions eventually, but for now, it's here
3289 * Return codes:
3290 * 2 - Error - Do not retry
3291 * 1 - Error - Retry
3292 * 0 - Success
3293 **/
3294 static int
lpfc_bg_scsi_prep_dma_buf_s4(struct lpfc_hba * phba,struct lpfc_io_buf * lpfc_cmd)3295 lpfc_bg_scsi_prep_dma_buf_s4(struct lpfc_hba *phba,
3296 struct lpfc_io_buf *lpfc_cmd)
3297 {
3298 struct scsi_cmnd *scsi_cmnd = lpfc_cmd->pCmd;
3299 struct fcp_cmnd *fcp_cmnd = lpfc_cmd->fcp_cmnd;
3300 struct sli4_sge *sgl = (struct sli4_sge *)(lpfc_cmd->dma_sgl);
3301 struct lpfc_iocbq *pwqeq = &lpfc_cmd->cur_iocbq;
3302 union lpfc_wqe128 *wqe = &pwqeq->wqe;
3303 uint32_t num_sge = 0;
3304 int datasegcnt, protsegcnt, datadir = scsi_cmnd->sc_data_direction;
3305 int prot_group_type = 0;
3306 int fcpdl;
3307 int ret = 1;
3308 struct lpfc_vport *vport = phba->pport;
3309
3310 /*
3311 * Start the lpfc command prep by bumping the sgl beyond fcp_cmnd
3312 * fcp_rsp regions to the first data sge entry
3313 */
3314 if (scsi_sg_count(scsi_cmnd)) {
3315 /*
3316 * The driver stores the segment count returned from dma_map_sg
3317 * because this a count of dma-mappings used to map the use_sg
3318 * pages. They are not guaranteed to be the same for those
3319 * architectures that implement an IOMMU.
3320 */
3321 datasegcnt = dma_map_sg(&phba->pcidev->dev,
3322 scsi_sglist(scsi_cmnd),
3323 scsi_sg_count(scsi_cmnd), datadir);
3324 if (unlikely(!datasegcnt))
3325 return 1;
3326
3327 sgl += 1;
3328 /* clear the last flag in the fcp_rsp map entry */
3329 sgl->word2 = le32_to_cpu(sgl->word2);
3330 bf_set(lpfc_sli4_sge_last, sgl, 0);
3331 sgl->word2 = cpu_to_le32(sgl->word2);
3332
3333 sgl += 1;
3334 lpfc_cmd->seg_cnt = datasegcnt;
3335
3336 /* First check if data segment count from SCSI Layer is good */
3337 if (lpfc_cmd->seg_cnt > phba->cfg_sg_seg_cnt &&
3338 !phba->cfg_xpsgl) {
3339 WARN_ON_ONCE(lpfc_cmd->seg_cnt > phba->cfg_sg_seg_cnt);
3340 ret = 2;
3341 goto err;
3342 }
3343
3344 prot_group_type = lpfc_prot_group_type(phba, scsi_cmnd);
3345
3346 switch (prot_group_type) {
3347 case LPFC_PG_TYPE_NO_DIF:
3348 /* Here we need to add a DISEED to the count */
3349 if (((lpfc_cmd->seg_cnt + 1) >
3350 phba->cfg_total_seg_cnt) &&
3351 !phba->cfg_xpsgl) {
3352 ret = 2;
3353 goto err;
3354 }
3355
3356 num_sge = lpfc_bg_setup_sgl(phba, scsi_cmnd, sgl,
3357 datasegcnt, lpfc_cmd);
3358
3359 /* we should have 2 or more entries in buffer list */
3360 if (num_sge < 2) {
3361 ret = 2;
3362 goto err;
3363 }
3364 break;
3365
3366 case LPFC_PG_TYPE_DIF_BUF:
3367 /*
3368 * This type indicates that protection buffers are
3369 * passed to the driver, so that needs to be prepared
3370 * for DMA
3371 */
3372 protsegcnt = dma_map_sg(&phba->pcidev->dev,
3373 scsi_prot_sglist(scsi_cmnd),
3374 scsi_prot_sg_count(scsi_cmnd), datadir);
3375 if (unlikely(!protsegcnt)) {
3376 scsi_dma_unmap(scsi_cmnd);
3377 return 1;
3378 }
3379
3380 lpfc_cmd->prot_seg_cnt = protsegcnt;
3381 /*
3382 * There is a minimun of 3 SGEs used for every
3383 * protection data segment.
3384 */
3385 if (((lpfc_cmd->prot_seg_cnt * 3) >
3386 (phba->cfg_total_seg_cnt - 2)) &&
3387 !phba->cfg_xpsgl) {
3388 ret = 2;
3389 goto err;
3390 }
3391
3392 num_sge = lpfc_bg_setup_sgl_prot(phba, scsi_cmnd, sgl,
3393 datasegcnt, protsegcnt, lpfc_cmd);
3394
3395 /* we should have 3 or more entries in buffer list */
3396 if (num_sge < 3 ||
3397 (num_sge > phba->cfg_total_seg_cnt &&
3398 !phba->cfg_xpsgl)) {
3399 ret = 2;
3400 goto err;
3401 }
3402 break;
3403
3404 case LPFC_PG_TYPE_INVALID:
3405 default:
3406 scsi_dma_unmap(scsi_cmnd);
3407 lpfc_cmd->seg_cnt = 0;
3408
3409 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
3410 "9083 Unexpected protection group %i\n",
3411 prot_group_type);
3412 return 2;
3413 }
3414 }
3415
3416 switch (scsi_get_prot_op(scsi_cmnd)) {
3417 case SCSI_PROT_WRITE_STRIP:
3418 case SCSI_PROT_READ_STRIP:
3419 lpfc_cmd->cur_iocbq.cmd_flag |= LPFC_IO_DIF_STRIP;
3420 break;
3421 case SCSI_PROT_WRITE_INSERT:
3422 case SCSI_PROT_READ_INSERT:
3423 lpfc_cmd->cur_iocbq.cmd_flag |= LPFC_IO_DIF_INSERT;
3424 break;
3425 case SCSI_PROT_WRITE_PASS:
3426 case SCSI_PROT_READ_PASS:
3427 lpfc_cmd->cur_iocbq.cmd_flag |= LPFC_IO_DIF_PASS;
3428 break;
3429 }
3430
3431 fcpdl = lpfc_bg_scsi_adjust_dl(phba, lpfc_cmd);
3432 if (lpfc_cmd->pCmd->cmd_len > LPFC_FCP_CDB_LEN)
3433 ((struct fcp_cmnd32 *)fcp_cmnd)->fcpDl = cpu_to_be32(fcpdl);
3434 else
3435 fcp_cmnd->fcpDl = cpu_to_be32(fcpdl);
3436
3437 /* Set first-burst provided it was successfully negotiated */
3438 if (!test_bit(HBA_FCOE_MODE, &phba->hba_flag) &&
3439 vport->cfg_first_burst_size &&
3440 scsi_cmnd->sc_data_direction == DMA_TO_DEVICE) {
3441 u32 init_len, total_len;
3442
3443 total_len = fcpdl;
3444 init_len = min(total_len, vport->cfg_first_burst_size);
3445
3446 /* Word 4 & 5 */
3447 wqe->fcp_iwrite.initial_xfer_len = init_len;
3448 wqe->fcp_iwrite.total_xfer_len = total_len;
3449 } else {
3450 /* Word 4 */
3451 wqe->fcp_iwrite.total_xfer_len = fcpdl;
3452 }
3453
3454 /*
3455 * If the OAS driver feature is enabled and the lun is enabled for
3456 * OAS, set the oas iocb related flags.
3457 */
3458 if ((phba->cfg_fof) && ((struct lpfc_device_data *)
3459 scsi_cmnd->device->hostdata)->oas_enabled) {
3460 lpfc_cmd->cur_iocbq.cmd_flag |= (LPFC_IO_OAS | LPFC_IO_FOF);
3461
3462 /* Word 10 */
3463 bf_set(wqe_oas, &wqe->generic.wqe_com, 1);
3464 bf_set(wqe_ccpe, &wqe->generic.wqe_com, 1);
3465 bf_set(wqe_ccp, &wqe->generic.wqe_com,
3466 (phba->cfg_XLanePriority << 1));
3467 }
3468
3469 /* Word 7. DIF Flags */
3470 if (lpfc_cmd->cur_iocbq.cmd_flag & LPFC_IO_DIF_PASS)
3471 bf_set(wqe_dif, &wqe->generic.wqe_com, LPFC_WQE_DIF_PASSTHRU);
3472 else if (lpfc_cmd->cur_iocbq.cmd_flag & LPFC_IO_DIF_STRIP)
3473 bf_set(wqe_dif, &wqe->generic.wqe_com, LPFC_WQE_DIF_STRIP);
3474 else if (lpfc_cmd->cur_iocbq.cmd_flag & LPFC_IO_DIF_INSERT)
3475 bf_set(wqe_dif, &wqe->generic.wqe_com, LPFC_WQE_DIF_INSERT);
3476
3477 lpfc_cmd->cur_iocbq.cmd_flag &= ~(LPFC_IO_DIF_PASS |
3478 LPFC_IO_DIF_STRIP | LPFC_IO_DIF_INSERT);
3479
3480 return 0;
3481 err:
3482 if (lpfc_cmd->seg_cnt)
3483 scsi_dma_unmap(scsi_cmnd);
3484 if (lpfc_cmd->prot_seg_cnt)
3485 dma_unmap_sg(&phba->pcidev->dev, scsi_prot_sglist(scsi_cmnd),
3486 scsi_prot_sg_count(scsi_cmnd),
3487 scsi_cmnd->sc_data_direction);
3488
3489 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
3490 "9084 Cannot setup S/G List for HBA "
3491 "IO segs %d/%d SGL %d SCSI %d: %d %d %d\n",
3492 lpfc_cmd->seg_cnt, lpfc_cmd->prot_seg_cnt,
3493 phba->cfg_total_seg_cnt, phba->cfg_sg_seg_cnt,
3494 prot_group_type, num_sge, ret);
3495
3496 lpfc_cmd->seg_cnt = 0;
3497 lpfc_cmd->prot_seg_cnt = 0;
3498 return ret;
3499 }
3500
3501 /**
3502 * lpfc_scsi_prep_dma_buf - Wrapper function for DMA mapping of scsi buffer
3503 * @phba: The Hba for which this call is being executed.
3504 * @lpfc_cmd: The scsi buffer which is going to be mapped.
3505 *
3506 * This routine wraps the actual DMA mapping function pointer from the
3507 * lpfc_hba struct.
3508 *
3509 * Return codes:
3510 * 1 - Error
3511 * 0 - Success
3512 **/
3513 static inline int
lpfc_scsi_prep_dma_buf(struct lpfc_hba * phba,struct lpfc_io_buf * lpfc_cmd)3514 lpfc_scsi_prep_dma_buf(struct lpfc_hba *phba, struct lpfc_io_buf *lpfc_cmd)
3515 {
3516 return phba->lpfc_scsi_prep_dma_buf(phba, lpfc_cmd);
3517 }
3518
3519 /**
3520 * lpfc_bg_scsi_prep_dma_buf - Wrapper function for DMA mapping of scsi buffer
3521 * using BlockGuard.
3522 * @phba: The Hba for which this call is being executed.
3523 * @lpfc_cmd: The scsi buffer which is going to be mapped.
3524 *
3525 * This routine wraps the actual DMA mapping function pointer from the
3526 * lpfc_hba struct.
3527 *
3528 * Return codes:
3529 * 1 - Error
3530 * 0 - Success
3531 **/
3532 static inline int
lpfc_bg_scsi_prep_dma_buf(struct lpfc_hba * phba,struct lpfc_io_buf * lpfc_cmd)3533 lpfc_bg_scsi_prep_dma_buf(struct lpfc_hba *phba, struct lpfc_io_buf *lpfc_cmd)
3534 {
3535 return phba->lpfc_bg_scsi_prep_dma_buf(phba, lpfc_cmd);
3536 }
3537
3538 /**
3539 * lpfc_scsi_prep_cmnd_buf - Wrapper function for IOCB/WQE mapping of scsi
3540 * buffer
3541 * @vport: Pointer to vport object.
3542 * @lpfc_cmd: The scsi buffer which is going to be mapped.
3543 * @tmo: Timeout value for IO
3544 *
3545 * This routine initializes IOCB/WQE data structure from scsi command
3546 *
3547 * Return codes:
3548 * 1 - Error
3549 * 0 - Success
3550 **/
3551 static inline int
lpfc_scsi_prep_cmnd_buf(struct lpfc_vport * vport,struct lpfc_io_buf * lpfc_cmd,uint8_t tmo)3552 lpfc_scsi_prep_cmnd_buf(struct lpfc_vport *vport, struct lpfc_io_buf *lpfc_cmd,
3553 uint8_t tmo)
3554 {
3555 return vport->phba->lpfc_scsi_prep_cmnd_buf(vport, lpfc_cmd, tmo);
3556 }
3557
3558 /**
3559 * lpfc_send_scsi_error_event - Posts an event when there is SCSI error
3560 * @phba: Pointer to hba context object.
3561 * @vport: Pointer to vport object.
3562 * @lpfc_cmd: Pointer to lpfc scsi command which reported the error.
3563 * @fcpi_parm: FCP Initiator parameter.
3564 *
3565 * This function posts an event when there is a SCSI command reporting
3566 * error from the scsi device.
3567 **/
3568 static void
lpfc_send_scsi_error_event(struct lpfc_hba * phba,struct lpfc_vport * vport,struct lpfc_io_buf * lpfc_cmd,uint32_t fcpi_parm)3569 lpfc_send_scsi_error_event(struct lpfc_hba *phba, struct lpfc_vport *vport,
3570 struct lpfc_io_buf *lpfc_cmd, uint32_t fcpi_parm) {
3571 struct scsi_cmnd *cmnd = lpfc_cmd->pCmd;
3572 struct fcp_rsp *fcprsp = lpfc_cmd->fcp_rsp;
3573 uint32_t resp_info = fcprsp->rspStatus2;
3574 uint32_t scsi_status = fcprsp->rspStatus3;
3575 struct lpfc_fast_path_event *fast_path_evt = NULL;
3576 struct lpfc_nodelist *pnode = lpfc_cmd->rdata->pnode;
3577 unsigned long flags;
3578
3579 if (!pnode)
3580 return;
3581
3582 /* If there is queuefull or busy condition send a scsi event */
3583 if ((cmnd->result == SAM_STAT_TASK_SET_FULL) ||
3584 (cmnd->result == SAM_STAT_BUSY)) {
3585 fast_path_evt = lpfc_alloc_fast_evt(phba);
3586 if (!fast_path_evt)
3587 return;
3588 fast_path_evt->un.scsi_evt.event_type =
3589 FC_REG_SCSI_EVENT;
3590 fast_path_evt->un.scsi_evt.subcategory =
3591 (cmnd->result == SAM_STAT_TASK_SET_FULL) ?
3592 LPFC_EVENT_QFULL : LPFC_EVENT_DEVBSY;
3593 fast_path_evt->un.scsi_evt.lun = cmnd->device->lun;
3594 memcpy(&fast_path_evt->un.scsi_evt.wwpn,
3595 &pnode->nlp_portname, sizeof(struct lpfc_name));
3596 memcpy(&fast_path_evt->un.scsi_evt.wwnn,
3597 &pnode->nlp_nodename, sizeof(struct lpfc_name));
3598 } else if ((resp_info & SNS_LEN_VALID) && fcprsp->rspSnsLen &&
3599 ((cmnd->cmnd[0] == READ_10) || (cmnd->cmnd[0] == WRITE_10))) {
3600 fast_path_evt = lpfc_alloc_fast_evt(phba);
3601 if (!fast_path_evt)
3602 return;
3603 fast_path_evt->un.check_cond_evt.scsi_event.event_type =
3604 FC_REG_SCSI_EVENT;
3605 fast_path_evt->un.check_cond_evt.scsi_event.subcategory =
3606 LPFC_EVENT_CHECK_COND;
3607 fast_path_evt->un.check_cond_evt.scsi_event.lun =
3608 cmnd->device->lun;
3609 memcpy(&fast_path_evt->un.check_cond_evt.scsi_event.wwpn,
3610 &pnode->nlp_portname, sizeof(struct lpfc_name));
3611 memcpy(&fast_path_evt->un.check_cond_evt.scsi_event.wwnn,
3612 &pnode->nlp_nodename, sizeof(struct lpfc_name));
3613 fast_path_evt->un.check_cond_evt.sense_key =
3614 cmnd->sense_buffer[2] & 0xf;
3615 fast_path_evt->un.check_cond_evt.asc = cmnd->sense_buffer[12];
3616 fast_path_evt->un.check_cond_evt.ascq = cmnd->sense_buffer[13];
3617 } else if ((cmnd->sc_data_direction == DMA_FROM_DEVICE) &&
3618 fcpi_parm &&
3619 ((be32_to_cpu(fcprsp->rspResId) != fcpi_parm) ||
3620 ((scsi_status == SAM_STAT_GOOD) &&
3621 !(resp_info & (RESID_UNDER | RESID_OVER))))) {
3622 /*
3623 * If status is good or resid does not match with fcp_param and
3624 * there is valid fcpi_parm, then there is a read_check error
3625 */
3626 fast_path_evt = lpfc_alloc_fast_evt(phba);
3627 if (!fast_path_evt)
3628 return;
3629 fast_path_evt->un.read_check_error.header.event_type =
3630 FC_REG_FABRIC_EVENT;
3631 fast_path_evt->un.read_check_error.header.subcategory =
3632 LPFC_EVENT_FCPRDCHKERR;
3633 memcpy(&fast_path_evt->un.read_check_error.header.wwpn,
3634 &pnode->nlp_portname, sizeof(struct lpfc_name));
3635 memcpy(&fast_path_evt->un.read_check_error.header.wwnn,
3636 &pnode->nlp_nodename, sizeof(struct lpfc_name));
3637 fast_path_evt->un.read_check_error.lun = cmnd->device->lun;
3638 fast_path_evt->un.read_check_error.opcode = cmnd->cmnd[0];
3639 fast_path_evt->un.read_check_error.fcpiparam =
3640 fcpi_parm;
3641 } else
3642 return;
3643
3644 fast_path_evt->vport = vport;
3645 spin_lock_irqsave(&phba->hbalock, flags);
3646 list_add_tail(&fast_path_evt->work_evt.evt_listp, &phba->work_list);
3647 spin_unlock_irqrestore(&phba->hbalock, flags);
3648 lpfc_worker_wake_up(phba);
3649 return;
3650 }
3651
3652 /**
3653 * lpfc_scsi_unprep_dma_buf - Un-map DMA mapping of SG-list for dev
3654 * @phba: The HBA for which this call is being executed.
3655 * @psb: The scsi buffer which is going to be un-mapped.
3656 *
3657 * This routine does DMA un-mapping of scatter gather list of scsi command
3658 * field of @lpfc_cmd for device with SLI-3 interface spec.
3659 **/
3660 static void
lpfc_scsi_unprep_dma_buf(struct lpfc_hba * phba,struct lpfc_io_buf * psb)3661 lpfc_scsi_unprep_dma_buf(struct lpfc_hba *phba, struct lpfc_io_buf *psb)
3662 {
3663 /*
3664 * There are only two special cases to consider. (1) the scsi command
3665 * requested scatter-gather usage or (2) the scsi command allocated
3666 * a request buffer, but did not request use_sg. There is a third
3667 * case, but it does not require resource deallocation.
3668 */
3669 if (psb->seg_cnt > 0)
3670 scsi_dma_unmap(psb->pCmd);
3671 if (psb->prot_seg_cnt > 0)
3672 dma_unmap_sg(&phba->pcidev->dev, scsi_prot_sglist(psb->pCmd),
3673 scsi_prot_sg_count(psb->pCmd),
3674 psb->pCmd->sc_data_direction);
3675 }
3676
3677 /**
3678 * lpfc_unblock_requests - allow further commands to be queued.
3679 * @phba: pointer to phba object
3680 *
3681 * For single vport, just call scsi_unblock_requests on physical port.
3682 * For multiple vports, send scsi_unblock_requests for all the vports.
3683 */
3684 void
lpfc_unblock_requests(struct lpfc_hba * phba)3685 lpfc_unblock_requests(struct lpfc_hba *phba)
3686 {
3687 struct lpfc_vport **vports;
3688 struct Scsi_Host *shost;
3689 int i;
3690
3691 if (phba->sli_rev == LPFC_SLI_REV4 &&
3692 !phba->sli4_hba.max_cfg_param.vpi_used) {
3693 shost = lpfc_shost_from_vport(phba->pport);
3694 scsi_unblock_requests(shost);
3695 return;
3696 }
3697
3698 vports = lpfc_create_vport_work_array(phba);
3699 if (vports != NULL)
3700 for (i = 0; i <= phba->max_vports && vports[i] != NULL; i++) {
3701 shost = lpfc_shost_from_vport(vports[i]);
3702 scsi_unblock_requests(shost);
3703 }
3704 lpfc_destroy_vport_work_array(phba, vports);
3705 }
3706
3707 /**
3708 * lpfc_block_requests - prevent further commands from being queued.
3709 * @phba: pointer to phba object
3710 *
3711 * For single vport, just call scsi_block_requests on physical port.
3712 * For multiple vports, send scsi_block_requests for all the vports.
3713 */
3714 void
lpfc_block_requests(struct lpfc_hba * phba)3715 lpfc_block_requests(struct lpfc_hba *phba)
3716 {
3717 struct lpfc_vport **vports;
3718 struct Scsi_Host *shost;
3719 int i;
3720
3721 if (atomic_read(&phba->cmf_stop_io))
3722 return;
3723
3724 if (phba->sli_rev == LPFC_SLI_REV4 &&
3725 !phba->sli4_hba.max_cfg_param.vpi_used) {
3726 shost = lpfc_shost_from_vport(phba->pport);
3727 scsi_block_requests(shost);
3728 return;
3729 }
3730
3731 vports = lpfc_create_vport_work_array(phba);
3732 if (vports != NULL)
3733 for (i = 0; i <= phba->max_vports && vports[i] != NULL; i++) {
3734 shost = lpfc_shost_from_vport(vports[i]);
3735 scsi_block_requests(shost);
3736 }
3737 lpfc_destroy_vport_work_array(phba, vports);
3738 }
3739
3740 /**
3741 * lpfc_update_cmf_cmpl - Adjust CMF counters for IO completion
3742 * @phba: The HBA for which this call is being executed.
3743 * @time: The latency of the IO that completed (in ns)
3744 * @size: The size of the IO that completed
3745 * @shost: SCSI host the IO completed on (NULL for a NVME IO)
3746 *
3747 * The routine adjusts the various Burst and Bandwidth counters used in
3748 * Congestion management and E2E. If time is set to LPFC_CGN_NOT_SENT,
3749 * that means the IO was never issued to the HBA, so this routine is
3750 * just being called to cleanup the counter from a previous
3751 * lpfc_update_cmf_cmd call.
3752 */
3753 int
lpfc_update_cmf_cmpl(struct lpfc_hba * phba,uint64_t time,uint32_t size,struct Scsi_Host * shost)3754 lpfc_update_cmf_cmpl(struct lpfc_hba *phba,
3755 uint64_t time, uint32_t size, struct Scsi_Host *shost)
3756 {
3757 struct lpfc_cgn_stat *cgs;
3758
3759 if (time != LPFC_CGN_NOT_SENT) {
3760 /* lat is ns coming in, save latency in us */
3761 if (time < 1000)
3762 time = 1;
3763 else
3764 time = div_u64(time + 500, 1000); /* round it */
3765
3766 cgs = per_cpu_ptr(phba->cmf_stat, raw_smp_processor_id());
3767 atomic64_add(size, &cgs->rcv_bytes);
3768 atomic64_add(time, &cgs->rx_latency);
3769 atomic_inc(&cgs->rx_io_cnt);
3770 }
3771 return 0;
3772 }
3773
3774 /**
3775 * lpfc_update_cmf_cmd - Adjust CMF counters for IO submission
3776 * @phba: The HBA for which this call is being executed.
3777 * @size: The size of the IO that will be issued
3778 *
3779 * The routine adjusts the various Burst and Bandwidth counters used in
3780 * Congestion management and E2E.
3781 */
3782 int
lpfc_update_cmf_cmd(struct lpfc_hba * phba,uint32_t size)3783 lpfc_update_cmf_cmd(struct lpfc_hba *phba, uint32_t size)
3784 {
3785 uint64_t total;
3786 struct lpfc_cgn_stat *cgs;
3787 int cpu;
3788
3789 /* At this point we are either LPFC_CFG_MANAGED or LPFC_CFG_MONITOR */
3790 if (phba->cmf_active_mode == LPFC_CFG_MANAGED &&
3791 phba->cmf_max_bytes_per_interval) {
3792 total = 0;
3793 for_each_present_cpu(cpu) {
3794 cgs = per_cpu_ptr(phba->cmf_stat, cpu);
3795 total += atomic64_read(&cgs->total_bytes);
3796 }
3797 if (total >= phba->cmf_max_bytes_per_interval) {
3798 if (!atomic_xchg(&phba->cmf_bw_wait, 1)) {
3799 lpfc_block_requests(phba);
3800 phba->cmf_last_ts =
3801 lpfc_calc_cmf_latency(phba);
3802 }
3803 atomic_inc(&phba->cmf_busy);
3804 return -EBUSY;
3805 }
3806 if (size > atomic_read(&phba->rx_max_read_cnt))
3807 atomic_set(&phba->rx_max_read_cnt, size);
3808 }
3809
3810 cgs = per_cpu_ptr(phba->cmf_stat, raw_smp_processor_id());
3811 atomic64_add(size, &cgs->total_bytes);
3812 return 0;
3813 }
3814
3815 /**
3816 * lpfc_handle_fcp_err - FCP response handler
3817 * @vport: The virtual port for which this call is being executed.
3818 * @lpfc_cmd: Pointer to lpfc_io_buf data structure.
3819 * @fcpi_parm: FCP Initiator parameter.
3820 *
3821 * This routine is called to process response IOCB with status field
3822 * IOSTAT_FCP_RSP_ERROR. This routine sets result field of scsi command
3823 * based upon SCSI and FCP error.
3824 **/
3825 static void
lpfc_handle_fcp_err(struct lpfc_vport * vport,struct lpfc_io_buf * lpfc_cmd,uint32_t fcpi_parm)3826 lpfc_handle_fcp_err(struct lpfc_vport *vport, struct lpfc_io_buf *lpfc_cmd,
3827 uint32_t fcpi_parm)
3828 {
3829 struct scsi_cmnd *cmnd = lpfc_cmd->pCmd;
3830 struct fcp_cmnd *fcpcmd = lpfc_cmd->fcp_cmnd;
3831 struct fcp_rsp *fcprsp = lpfc_cmd->fcp_rsp;
3832 uint32_t resp_info = fcprsp->rspStatus2;
3833 uint32_t scsi_status = fcprsp->rspStatus3;
3834 uint32_t *lp;
3835 uint32_t host_status = DID_OK;
3836 uint32_t rsplen = 0;
3837 uint32_t fcpDl;
3838 uint32_t logit = LOG_FCP | LOG_FCP_ERROR;
3839
3840
3841 /*
3842 * If this is a task management command, there is no
3843 * scsi packet associated with this lpfc_cmd. The driver
3844 * consumes it.
3845 */
3846 if (fcpcmd->fcpCntl2) {
3847 scsi_status = 0;
3848 goto out;
3849 }
3850
3851 if (resp_info & RSP_LEN_VALID) {
3852 rsplen = be32_to_cpu(fcprsp->rspRspLen);
3853 if (rsplen != 0 && rsplen != 4 && rsplen != 8) {
3854 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
3855 "2719 Invalid response length: "
3856 "tgt x%x lun x%llx cmnd x%x rsplen "
3857 "x%x\n", cmnd->device->id,
3858 cmnd->device->lun, cmnd->cmnd[0],
3859 rsplen);
3860 host_status = DID_ERROR;
3861 goto out;
3862 }
3863 if (fcprsp->rspInfo3 != RSP_NO_FAILURE) {
3864 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
3865 "2757 Protocol failure detected during "
3866 "processing of FCP I/O op: "
3867 "tgt x%x lun x%llx cmnd x%x rspInfo3 x%x\n",
3868 cmnd->device->id,
3869 cmnd->device->lun, cmnd->cmnd[0],
3870 fcprsp->rspInfo3);
3871 host_status = DID_ERROR;
3872 goto out;
3873 }
3874 }
3875
3876 if ((resp_info & SNS_LEN_VALID) && fcprsp->rspSnsLen) {
3877 uint32_t snslen = be32_to_cpu(fcprsp->rspSnsLen);
3878 if (snslen > SCSI_SENSE_BUFFERSIZE)
3879 snslen = SCSI_SENSE_BUFFERSIZE;
3880
3881 if (resp_info & RSP_LEN_VALID)
3882 rsplen = be32_to_cpu(fcprsp->rspRspLen);
3883 memcpy(cmnd->sense_buffer, &fcprsp->rspInfo0 + rsplen, snslen);
3884 }
3885 lp = (uint32_t *)cmnd->sense_buffer;
3886
3887 /* special handling for under run conditions */
3888 if (!scsi_status && (resp_info & RESID_UNDER)) {
3889 /* don't log under runs if fcp set... */
3890 if (vport->cfg_log_verbose & LOG_FCP)
3891 logit = LOG_FCP_ERROR;
3892 /* unless operator says so */
3893 if (vport->cfg_log_verbose & LOG_FCP_UNDER)
3894 logit = LOG_FCP_UNDER;
3895 }
3896
3897 lpfc_printf_vlog(vport, KERN_WARNING, logit,
3898 "9024 FCP command x%x failed: x%x SNS x%x x%x "
3899 "Data: x%x x%x x%x x%x x%x\n",
3900 cmnd->cmnd[0], scsi_status,
3901 be32_to_cpu(*lp), be32_to_cpu(*(lp + 3)), resp_info,
3902 be32_to_cpu(fcprsp->rspResId),
3903 be32_to_cpu(fcprsp->rspSnsLen),
3904 be32_to_cpu(fcprsp->rspRspLen),
3905 fcprsp->rspInfo3);
3906
3907 scsi_set_resid(cmnd, 0);
3908 if (cmnd->cmd_len > LPFC_FCP_CDB_LEN)
3909 fcpDl = be32_to_cpu(((struct fcp_cmnd32 *)fcpcmd)->fcpDl);
3910 else
3911 fcpDl = be32_to_cpu(fcpcmd->fcpDl);
3912 if (resp_info & RESID_UNDER) {
3913 scsi_set_resid(cmnd, be32_to_cpu(fcprsp->rspResId));
3914
3915 lpfc_printf_vlog(vport, KERN_INFO, LOG_FCP_UNDER,
3916 "9025 FCP Underrun, expected %d, "
3917 "residual %d Data: x%x x%x x%x\n",
3918 fcpDl,
3919 scsi_get_resid(cmnd), fcpi_parm, cmnd->cmnd[0],
3920 cmnd->underflow);
3921
3922 /*
3923 * If there is an under run, check if under run reported by
3924 * storage array is same as the under run reported by HBA.
3925 * If this is not same, there is a dropped frame.
3926 */
3927 if (fcpi_parm && (scsi_get_resid(cmnd) != fcpi_parm)) {
3928 lpfc_printf_vlog(vport, KERN_WARNING,
3929 LOG_FCP | LOG_FCP_ERROR,
3930 "9026 FCP Read Check Error "
3931 "and Underrun Data: x%x x%x x%x x%x\n",
3932 fcpDl,
3933 scsi_get_resid(cmnd), fcpi_parm,
3934 cmnd->cmnd[0]);
3935 scsi_set_resid(cmnd, scsi_bufflen(cmnd));
3936 host_status = DID_ERROR;
3937 }
3938 /*
3939 * The cmnd->underflow is the minimum number of bytes that must
3940 * be transferred for this command. Provided a sense condition
3941 * is not present, make sure the actual amount transferred is at
3942 * least the underflow value or fail.
3943 */
3944 if (!(resp_info & SNS_LEN_VALID) &&
3945 (scsi_status == SAM_STAT_GOOD) &&
3946 (scsi_bufflen(cmnd) - scsi_get_resid(cmnd)
3947 < cmnd->underflow)) {
3948 lpfc_printf_vlog(vport, KERN_INFO, LOG_FCP,
3949 "9027 FCP command x%x residual "
3950 "underrun converted to error "
3951 "Data: x%x x%x x%x\n",
3952 cmnd->cmnd[0], scsi_bufflen(cmnd),
3953 scsi_get_resid(cmnd), cmnd->underflow);
3954 host_status = DID_ERROR;
3955 }
3956 } else if (resp_info & RESID_OVER) {
3957 lpfc_printf_vlog(vport, KERN_WARNING, LOG_FCP,
3958 "9028 FCP command x%x residual overrun error. "
3959 "Data: x%x x%x\n", cmnd->cmnd[0],
3960 scsi_bufflen(cmnd), scsi_get_resid(cmnd));
3961 host_status = DID_ERROR;
3962
3963 /*
3964 * Check SLI validation that all the transfer was actually done
3965 * (fcpi_parm should be zero). Apply check only to reads.
3966 */
3967 } else if (fcpi_parm) {
3968 lpfc_printf_vlog(vport, KERN_WARNING, LOG_FCP | LOG_FCP_ERROR,
3969 "9029 FCP %s Check Error Data: "
3970 "x%x x%x x%x x%x x%x\n",
3971 ((cmnd->sc_data_direction == DMA_FROM_DEVICE) ?
3972 "Read" : "Write"),
3973 fcpDl, be32_to_cpu(fcprsp->rspResId),
3974 fcpi_parm, cmnd->cmnd[0], scsi_status);
3975
3976 /* There is some issue with the LPe12000 that causes it
3977 * to miscalculate the fcpi_parm and falsely trip this
3978 * recovery logic. Detect this case and don't error when true.
3979 */
3980 if (fcpi_parm > fcpDl)
3981 goto out;
3982
3983 switch (scsi_status) {
3984 case SAM_STAT_GOOD:
3985 case SAM_STAT_CHECK_CONDITION:
3986 /* Fabric dropped a data frame. Fail any successful
3987 * command in which we detected dropped frames.
3988 * A status of good or some check conditions could
3989 * be considered a successful command.
3990 */
3991 host_status = DID_ERROR;
3992 break;
3993 }
3994 scsi_set_resid(cmnd, scsi_bufflen(cmnd));
3995 }
3996
3997 out:
3998 cmnd->result = host_status << 16 | scsi_status;
3999 lpfc_send_scsi_error_event(vport->phba, vport, lpfc_cmd, fcpi_parm);
4000 }
4001
4002 /**
4003 * lpfc_fcp_io_cmd_wqe_cmpl - Complete a FCP IO
4004 * @phba: The hba for which this call is being executed.
4005 * @pwqeIn: The command WQE for the scsi cmnd.
4006 * @pwqeOut: Pointer to driver response WQE object.
4007 *
4008 * This routine assigns scsi command result by looking into response WQE
4009 * status field appropriately. This routine handles QUEUE FULL condition as
4010 * well by ramping down device queue depth.
4011 **/
4012 static void
lpfc_fcp_io_cmd_wqe_cmpl(struct lpfc_hba * phba,struct lpfc_iocbq * pwqeIn,struct lpfc_iocbq * pwqeOut)4013 lpfc_fcp_io_cmd_wqe_cmpl(struct lpfc_hba *phba, struct lpfc_iocbq *pwqeIn,
4014 struct lpfc_iocbq *pwqeOut)
4015 {
4016 struct lpfc_io_buf *lpfc_cmd = pwqeIn->io_buf;
4017 struct lpfc_wcqe_complete *wcqe = &pwqeOut->wcqe_cmpl;
4018 struct lpfc_vport *vport = pwqeIn->vport;
4019 struct lpfc_rport_data *rdata;
4020 struct lpfc_nodelist *ndlp;
4021 struct scsi_cmnd *cmd;
4022 unsigned long flags;
4023 struct lpfc_fast_path_event *fast_path_evt;
4024 struct Scsi_Host *shost;
4025 u32 logit = LOG_FCP;
4026 u32 idx;
4027 u32 lat;
4028 u8 wait_xb_clr = 0;
4029
4030 /* Sanity check on return of outstanding command */
4031 if (!lpfc_cmd) {
4032 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
4033 "9032 Null lpfc_cmd pointer. No "
4034 "release, skip completion\n");
4035 return;
4036 }
4037
4038 rdata = lpfc_cmd->rdata;
4039 ndlp = rdata->pnode;
4040
4041 /* Sanity check on return of outstanding command */
4042 cmd = lpfc_cmd->pCmd;
4043 if (!cmd) {
4044 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
4045 "9042 I/O completion: Not an active IO\n");
4046 lpfc_release_scsi_buf(phba, lpfc_cmd);
4047 return;
4048 }
4049 /* Guard against abort handler being called at same time */
4050 spin_lock(&lpfc_cmd->buf_lock);
4051 idx = lpfc_cmd->cur_iocbq.hba_wqidx;
4052 if (phba->sli4_hba.hdwq)
4053 phba->sli4_hba.hdwq[idx].scsi_cstat.io_cmpls++;
4054
4055 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
4056 if (unlikely(phba->hdwqstat_on & LPFC_CHECK_SCSI_IO))
4057 this_cpu_inc(phba->sli4_hba.c_stat->cmpl_io);
4058 #endif
4059 shost = cmd->device->host;
4060
4061 lpfc_cmd->status = bf_get(lpfc_wcqe_c_status, wcqe);
4062 lpfc_cmd->result = (wcqe->parameter & IOERR_PARAM_MASK);
4063
4064 lpfc_cmd->flags &= ~LPFC_SBUF_XBUSY;
4065 if (bf_get(lpfc_wcqe_c_xb, wcqe)) {
4066 lpfc_cmd->flags |= LPFC_SBUF_XBUSY;
4067 if (phba->cfg_fcp_wait_abts_rsp)
4068 wait_xb_clr = 1;
4069 }
4070
4071 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
4072 if (lpfc_cmd->prot_data_type) {
4073 struct scsi_dif_tuple *src = NULL;
4074
4075 src = (struct scsi_dif_tuple *)lpfc_cmd->prot_data_segment;
4076 /*
4077 * Used to restore any changes to protection
4078 * data for error injection.
4079 */
4080 switch (lpfc_cmd->prot_data_type) {
4081 case LPFC_INJERR_REFTAG:
4082 src->ref_tag =
4083 lpfc_cmd->prot_data;
4084 break;
4085 case LPFC_INJERR_APPTAG:
4086 src->app_tag =
4087 (uint16_t)lpfc_cmd->prot_data;
4088 break;
4089 case LPFC_INJERR_GUARD:
4090 src->guard_tag =
4091 (uint16_t)lpfc_cmd->prot_data;
4092 break;
4093 default:
4094 break;
4095 }
4096
4097 lpfc_cmd->prot_data = 0;
4098 lpfc_cmd->prot_data_type = 0;
4099 lpfc_cmd->prot_data_segment = NULL;
4100 }
4101 #endif
4102 if (unlikely(lpfc_cmd->status)) {
4103 if (lpfc_cmd->status == IOSTAT_FCP_RSP_ERROR &&
4104 !lpfc_cmd->fcp_rsp->rspStatus3 &&
4105 (lpfc_cmd->fcp_rsp->rspStatus2 & RESID_UNDER) &&
4106 !(vport->cfg_log_verbose & LOG_FCP_UNDER))
4107 logit = 0;
4108 else
4109 logit = LOG_FCP | LOG_FCP_UNDER;
4110 lpfc_printf_vlog(vport, KERN_WARNING, logit,
4111 "9034 FCP cmd x%x failed <%d/%lld> "
4112 "status: x%x result: x%x "
4113 "sid: x%x did: x%x oxid: x%x "
4114 "Data: x%x x%x x%x\n",
4115 cmd->cmnd[0],
4116 cmd->device ? cmd->device->id : 0xffff,
4117 cmd->device ? cmd->device->lun : 0xffff,
4118 lpfc_cmd->status, lpfc_cmd->result,
4119 vport->fc_myDID,
4120 (ndlp) ? ndlp->nlp_DID : 0,
4121 lpfc_cmd->cur_iocbq.sli4_xritag,
4122 wcqe->parameter, wcqe->total_data_placed,
4123 lpfc_cmd->cur_iocbq.iotag);
4124 }
4125
4126 switch (lpfc_cmd->status) {
4127 case CQE_STATUS_SUCCESS:
4128 cmd->result = DID_OK << 16;
4129 break;
4130 case CQE_STATUS_FCP_RSP_FAILURE:
4131 lpfc_handle_fcp_err(vport, lpfc_cmd,
4132 pwqeIn->wqe.fcp_iread.total_xfer_len -
4133 wcqe->total_data_placed);
4134 break;
4135 case CQE_STATUS_NPORT_BSY:
4136 case CQE_STATUS_FABRIC_BSY:
4137 cmd->result = DID_TRANSPORT_DISRUPTED << 16;
4138 fast_path_evt = lpfc_alloc_fast_evt(phba);
4139 if (!fast_path_evt)
4140 break;
4141 fast_path_evt->un.fabric_evt.event_type =
4142 FC_REG_FABRIC_EVENT;
4143 fast_path_evt->un.fabric_evt.subcategory =
4144 (lpfc_cmd->status == IOSTAT_NPORT_BSY) ?
4145 LPFC_EVENT_PORT_BUSY : LPFC_EVENT_FABRIC_BUSY;
4146 if (ndlp) {
4147 memcpy(&fast_path_evt->un.fabric_evt.wwpn,
4148 &ndlp->nlp_portname,
4149 sizeof(struct lpfc_name));
4150 memcpy(&fast_path_evt->un.fabric_evt.wwnn,
4151 &ndlp->nlp_nodename,
4152 sizeof(struct lpfc_name));
4153 }
4154 fast_path_evt->vport = vport;
4155 fast_path_evt->work_evt.evt =
4156 LPFC_EVT_FASTPATH_MGMT_EVT;
4157 spin_lock_irqsave(&phba->hbalock, flags);
4158 list_add_tail(&fast_path_evt->work_evt.evt_listp,
4159 &phba->work_list);
4160 spin_unlock_irqrestore(&phba->hbalock, flags);
4161 lpfc_worker_wake_up(phba);
4162 lpfc_printf_vlog(vport, KERN_WARNING, logit,
4163 "9035 Fabric/Node busy FCP cmd x%x failed"
4164 " <%d/%lld> "
4165 "status: x%x result: x%x "
4166 "sid: x%x did: x%x oxid: x%x "
4167 "Data: x%x x%x x%x\n",
4168 cmd->cmnd[0],
4169 cmd->device ? cmd->device->id : 0xffff,
4170 cmd->device ? cmd->device->lun : 0xffff,
4171 lpfc_cmd->status, lpfc_cmd->result,
4172 vport->fc_myDID,
4173 (ndlp) ? ndlp->nlp_DID : 0,
4174 lpfc_cmd->cur_iocbq.sli4_xritag,
4175 wcqe->parameter,
4176 wcqe->total_data_placed,
4177 lpfc_cmd->cur_iocbq.iocb.ulpIoTag);
4178 break;
4179 case CQE_STATUS_DI_ERROR:
4180 if (bf_get(lpfc_wcqe_c_bg_edir, wcqe))
4181 lpfc_cmd->result = IOERR_RX_DMA_FAILED;
4182 else
4183 lpfc_cmd->result = IOERR_TX_DMA_FAILED;
4184 lpfc_printf_vlog(vport, KERN_WARNING, LOG_FCP | LOG_BG,
4185 "9048 DI Error xri x%x status x%x DI ext "
4186 "status x%x data placed x%x\n",
4187 lpfc_cmd->cur_iocbq.sli4_xritag,
4188 lpfc_cmd->status, wcqe->parameter,
4189 wcqe->total_data_placed);
4190 if (scsi_get_prot_op(cmd) != SCSI_PROT_NORMAL) {
4191 /* BG enabled cmd. Parse BG error */
4192 lpfc_parse_bg_err(phba, lpfc_cmd, pwqeOut);
4193 break;
4194 }
4195 cmd->result = DID_ERROR << 16;
4196 lpfc_printf_vlog(vport, KERN_WARNING, LOG_BG,
4197 "9040 DI Error on unprotected cmd\n");
4198 break;
4199 case CQE_STATUS_REMOTE_STOP:
4200 if (ndlp) {
4201 /* This I/O was aborted by the target, we don't
4202 * know the rxid and because we did not send the
4203 * ABTS we cannot generate and RRQ.
4204 */
4205 lpfc_set_rrq_active(phba, ndlp,
4206 lpfc_cmd->cur_iocbq.sli4_lxritag,
4207 0, 0);
4208 }
4209 fallthrough;
4210 case CQE_STATUS_LOCAL_REJECT:
4211 if (lpfc_cmd->result & IOERR_DRVR_MASK)
4212 lpfc_cmd->status = IOSTAT_DRIVER_REJECT;
4213 if (lpfc_cmd->result == IOERR_ELXSEC_KEY_UNWRAP_ERROR ||
4214 lpfc_cmd->result ==
4215 IOERR_ELXSEC_KEY_UNWRAP_COMPARE_ERROR ||
4216 lpfc_cmd->result == IOERR_ELXSEC_CRYPTO_ERROR ||
4217 lpfc_cmd->result ==
4218 IOERR_ELXSEC_CRYPTO_COMPARE_ERROR) {
4219 cmd->result = DID_NO_CONNECT << 16;
4220 break;
4221 }
4222 if (lpfc_cmd->result == IOERR_INVALID_RPI ||
4223 lpfc_cmd->result == IOERR_LINK_DOWN ||
4224 lpfc_cmd->result == IOERR_NO_RESOURCES ||
4225 lpfc_cmd->result == IOERR_ABORT_REQUESTED ||
4226 lpfc_cmd->result == IOERR_RPI_SUSPENDED ||
4227 lpfc_cmd->result == IOERR_SLER_CMD_RCV_FAILURE) {
4228 cmd->result = DID_TRANSPORT_DISRUPTED << 16;
4229 break;
4230 }
4231 lpfc_printf_vlog(vport, KERN_WARNING, logit,
4232 "9036 Local Reject FCP cmd x%x failed"
4233 " <%d/%lld> "
4234 "status: x%x result: x%x "
4235 "sid: x%x did: x%x oxid: x%x "
4236 "Data: x%x x%x x%x\n",
4237 cmd->cmnd[0],
4238 cmd->device ? cmd->device->id : 0xffff,
4239 cmd->device ? cmd->device->lun : 0xffff,
4240 lpfc_cmd->status, lpfc_cmd->result,
4241 vport->fc_myDID,
4242 (ndlp) ? ndlp->nlp_DID : 0,
4243 lpfc_cmd->cur_iocbq.sli4_xritag,
4244 wcqe->parameter,
4245 wcqe->total_data_placed,
4246 lpfc_cmd->cur_iocbq.iocb.ulpIoTag);
4247 fallthrough;
4248 default:
4249 cmd->result = DID_ERROR << 16;
4250 lpfc_printf_vlog(vport, KERN_INFO, LOG_FCP,
4251 "9037 FCP Completion Error: xri %x "
4252 "status x%x result x%x [x%x] "
4253 "placed x%x\n",
4254 lpfc_cmd->cur_iocbq.sli4_xritag,
4255 lpfc_cmd->status, lpfc_cmd->result,
4256 wcqe->parameter,
4257 wcqe->total_data_placed);
4258 }
4259 if (cmd->result || lpfc_cmd->fcp_rsp->rspSnsLen) {
4260 u32 *lp = (u32 *)cmd->sense_buffer;
4261
4262 lpfc_printf_vlog(vport, KERN_INFO, LOG_FCP,
4263 "9039 Iodone <%d/%llu> cmd x%px, error "
4264 "x%x SNS x%x x%x LBA x%llx Data: x%x x%x\n",
4265 cmd->device->id, cmd->device->lun, cmd,
4266 cmd->result, *lp, *(lp + 3),
4267 (cmd->device->sector_size) ?
4268 (u64)scsi_get_lba(cmd) : 0,
4269 cmd->retries, scsi_get_resid(cmd));
4270 }
4271
4272 if (vport->cfg_max_scsicmpl_time &&
4273 time_after(jiffies, lpfc_cmd->start_time +
4274 msecs_to_jiffies(vport->cfg_max_scsicmpl_time))) {
4275 spin_lock_irqsave(shost->host_lock, flags);
4276 if (ndlp) {
4277 if (ndlp->cmd_qdepth >
4278 atomic_read(&ndlp->cmd_pending) &&
4279 (atomic_read(&ndlp->cmd_pending) >
4280 LPFC_MIN_TGT_QDEPTH) &&
4281 (cmd->cmnd[0] == READ_10 ||
4282 cmd->cmnd[0] == WRITE_10))
4283 ndlp->cmd_qdepth =
4284 atomic_read(&ndlp->cmd_pending);
4285
4286 ndlp->last_change_time = jiffies;
4287 }
4288 spin_unlock_irqrestore(shost->host_lock, flags);
4289 }
4290 lpfc_scsi_unprep_dma_buf(phba, lpfc_cmd);
4291
4292 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
4293 if (lpfc_cmd->ts_cmd_start) {
4294 lpfc_cmd->ts_isr_cmpl = lpfc_cmd->cur_iocbq.isr_timestamp;
4295 lpfc_cmd->ts_data_io = ktime_get_ns();
4296 phba->ktime_last_cmd = lpfc_cmd->ts_data_io;
4297 lpfc_io_ktime(phba, lpfc_cmd);
4298 }
4299 #endif
4300 if (likely(!wait_xb_clr))
4301 lpfc_cmd->pCmd = NULL;
4302 spin_unlock(&lpfc_cmd->buf_lock);
4303
4304 /* Check if IO qualified for CMF */
4305 if (phba->cmf_active_mode != LPFC_CFG_OFF &&
4306 cmd->sc_data_direction == DMA_FROM_DEVICE &&
4307 (scsi_sg_count(cmd))) {
4308 /* Used when calculating average latency */
4309 lat = ktime_get_ns() - lpfc_cmd->rx_cmd_start;
4310 lpfc_update_cmf_cmpl(phba, lat, scsi_bufflen(cmd), shost);
4311 }
4312
4313 if (wait_xb_clr)
4314 goto out;
4315
4316 /* The sdev is not guaranteed to be valid post scsi_done upcall. */
4317 scsi_done(cmd);
4318
4319 /*
4320 * If there is an abort thread waiting for command completion
4321 * wake up the thread.
4322 */
4323 spin_lock(&lpfc_cmd->buf_lock);
4324 lpfc_cmd->cur_iocbq.cmd_flag &= ~LPFC_DRIVER_ABORTED;
4325 if (lpfc_cmd->waitq)
4326 wake_up(lpfc_cmd->waitq);
4327 spin_unlock(&lpfc_cmd->buf_lock);
4328 out:
4329 lpfc_release_scsi_buf(phba, lpfc_cmd);
4330 }
4331
4332 /**
4333 * lpfc_scsi_cmd_iocb_cmpl - Scsi cmnd IOCB completion routine
4334 * @phba: The Hba for which this call is being executed.
4335 * @pIocbIn: The command IOCBQ for the scsi cmnd.
4336 * @pIocbOut: The response IOCBQ for the scsi cmnd.
4337 *
4338 * This routine assigns scsi command result by looking into response IOCB
4339 * status field appropriately. This routine handles QUEUE FULL condition as
4340 * well by ramping down device queue depth.
4341 **/
4342 static void
lpfc_scsi_cmd_iocb_cmpl(struct lpfc_hba * phba,struct lpfc_iocbq * pIocbIn,struct lpfc_iocbq * pIocbOut)4343 lpfc_scsi_cmd_iocb_cmpl(struct lpfc_hba *phba, struct lpfc_iocbq *pIocbIn,
4344 struct lpfc_iocbq *pIocbOut)
4345 {
4346 struct lpfc_io_buf *lpfc_cmd =
4347 (struct lpfc_io_buf *) pIocbIn->io_buf;
4348 struct lpfc_vport *vport = pIocbIn->vport;
4349 struct lpfc_rport_data *rdata = lpfc_cmd->rdata;
4350 struct lpfc_nodelist *pnode = rdata->pnode;
4351 struct scsi_cmnd *cmd;
4352 unsigned long flags;
4353 struct lpfc_fast_path_event *fast_path_evt;
4354 struct Scsi_Host *shost;
4355 int idx;
4356 uint32_t logit = LOG_FCP;
4357
4358 /* Guard against abort handler being called at same time */
4359 spin_lock(&lpfc_cmd->buf_lock);
4360
4361 /* Sanity check on return of outstanding command */
4362 cmd = lpfc_cmd->pCmd;
4363 if (!cmd || !phba) {
4364 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
4365 "2621 IO completion: Not an active IO\n");
4366 spin_unlock(&lpfc_cmd->buf_lock);
4367 return;
4368 }
4369
4370 idx = lpfc_cmd->cur_iocbq.hba_wqidx;
4371 if (phba->sli4_hba.hdwq)
4372 phba->sli4_hba.hdwq[idx].scsi_cstat.io_cmpls++;
4373
4374 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
4375 if (unlikely(phba->hdwqstat_on & LPFC_CHECK_SCSI_IO))
4376 this_cpu_inc(phba->sli4_hba.c_stat->cmpl_io);
4377 #endif
4378 shost = cmd->device->host;
4379
4380 lpfc_cmd->result = (pIocbOut->iocb.un.ulpWord[4] & IOERR_PARAM_MASK);
4381 lpfc_cmd->status = pIocbOut->iocb.ulpStatus;
4382 /* pick up SLI4 exchange busy status from HBA */
4383 lpfc_cmd->flags &= ~LPFC_SBUF_XBUSY;
4384 if (pIocbOut->cmd_flag & LPFC_EXCHANGE_BUSY)
4385 lpfc_cmd->flags |= LPFC_SBUF_XBUSY;
4386
4387 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
4388 if (lpfc_cmd->prot_data_type) {
4389 struct scsi_dif_tuple *src = NULL;
4390
4391 src = (struct scsi_dif_tuple *)lpfc_cmd->prot_data_segment;
4392 /*
4393 * Used to restore any changes to protection
4394 * data for error injection.
4395 */
4396 switch (lpfc_cmd->prot_data_type) {
4397 case LPFC_INJERR_REFTAG:
4398 src->ref_tag =
4399 lpfc_cmd->prot_data;
4400 break;
4401 case LPFC_INJERR_APPTAG:
4402 src->app_tag =
4403 (uint16_t)lpfc_cmd->prot_data;
4404 break;
4405 case LPFC_INJERR_GUARD:
4406 src->guard_tag =
4407 (uint16_t)lpfc_cmd->prot_data;
4408 break;
4409 default:
4410 break;
4411 }
4412
4413 lpfc_cmd->prot_data = 0;
4414 lpfc_cmd->prot_data_type = 0;
4415 lpfc_cmd->prot_data_segment = NULL;
4416 }
4417 #endif
4418
4419 if (unlikely(lpfc_cmd->status)) {
4420 if (lpfc_cmd->status == IOSTAT_LOCAL_REJECT &&
4421 (lpfc_cmd->result & IOERR_DRVR_MASK))
4422 lpfc_cmd->status = IOSTAT_DRIVER_REJECT;
4423 else if (lpfc_cmd->status >= IOSTAT_CNT)
4424 lpfc_cmd->status = IOSTAT_DEFAULT;
4425 if (lpfc_cmd->status == IOSTAT_FCP_RSP_ERROR &&
4426 !lpfc_cmd->fcp_rsp->rspStatus3 &&
4427 (lpfc_cmd->fcp_rsp->rspStatus2 & RESID_UNDER) &&
4428 !(vport->cfg_log_verbose & LOG_FCP_UNDER))
4429 logit = 0;
4430 else
4431 logit = LOG_FCP | LOG_FCP_UNDER;
4432 lpfc_printf_vlog(vport, KERN_WARNING, logit,
4433 "9030 FCP cmd x%x failed <%d/%lld> "
4434 "status: x%x result: x%x "
4435 "sid: x%x did: x%x oxid: x%x "
4436 "Data: x%x x%x\n",
4437 cmd->cmnd[0],
4438 cmd->device ? cmd->device->id : 0xffff,
4439 cmd->device ? cmd->device->lun : 0xffff,
4440 lpfc_cmd->status, lpfc_cmd->result,
4441 vport->fc_myDID,
4442 (pnode) ? pnode->nlp_DID : 0,
4443 phba->sli_rev == LPFC_SLI_REV4 ?
4444 lpfc_cmd->cur_iocbq.sli4_xritag : 0xffff,
4445 pIocbOut->iocb.ulpContext,
4446 lpfc_cmd->cur_iocbq.iocb.ulpIoTag);
4447
4448 switch (lpfc_cmd->status) {
4449 case IOSTAT_FCP_RSP_ERROR:
4450 /* Call FCP RSP handler to determine result */
4451 lpfc_handle_fcp_err(vport, lpfc_cmd,
4452 pIocbOut->iocb.un.fcpi.fcpi_parm);
4453 break;
4454 case IOSTAT_NPORT_BSY:
4455 case IOSTAT_FABRIC_BSY:
4456 cmd->result = DID_TRANSPORT_DISRUPTED << 16;
4457 fast_path_evt = lpfc_alloc_fast_evt(phba);
4458 if (!fast_path_evt)
4459 break;
4460 fast_path_evt->un.fabric_evt.event_type =
4461 FC_REG_FABRIC_EVENT;
4462 fast_path_evt->un.fabric_evt.subcategory =
4463 (lpfc_cmd->status == IOSTAT_NPORT_BSY) ?
4464 LPFC_EVENT_PORT_BUSY : LPFC_EVENT_FABRIC_BUSY;
4465 if (pnode) {
4466 memcpy(&fast_path_evt->un.fabric_evt.wwpn,
4467 &pnode->nlp_portname,
4468 sizeof(struct lpfc_name));
4469 memcpy(&fast_path_evt->un.fabric_evt.wwnn,
4470 &pnode->nlp_nodename,
4471 sizeof(struct lpfc_name));
4472 }
4473 fast_path_evt->vport = vport;
4474 fast_path_evt->work_evt.evt =
4475 LPFC_EVT_FASTPATH_MGMT_EVT;
4476 spin_lock_irqsave(&phba->hbalock, flags);
4477 list_add_tail(&fast_path_evt->work_evt.evt_listp,
4478 &phba->work_list);
4479 spin_unlock_irqrestore(&phba->hbalock, flags);
4480 lpfc_worker_wake_up(phba);
4481 break;
4482 case IOSTAT_LOCAL_REJECT:
4483 case IOSTAT_REMOTE_STOP:
4484 if (lpfc_cmd->result == IOERR_ELXSEC_KEY_UNWRAP_ERROR ||
4485 lpfc_cmd->result ==
4486 IOERR_ELXSEC_KEY_UNWRAP_COMPARE_ERROR ||
4487 lpfc_cmd->result == IOERR_ELXSEC_CRYPTO_ERROR ||
4488 lpfc_cmd->result ==
4489 IOERR_ELXSEC_CRYPTO_COMPARE_ERROR) {
4490 cmd->result = DID_NO_CONNECT << 16;
4491 break;
4492 }
4493 if (lpfc_cmd->result == IOERR_INVALID_RPI ||
4494 lpfc_cmd->result == IOERR_NO_RESOURCES ||
4495 lpfc_cmd->result == IOERR_ABORT_REQUESTED ||
4496 lpfc_cmd->result == IOERR_SLER_CMD_RCV_FAILURE) {
4497 cmd->result = DID_TRANSPORT_DISRUPTED << 16;
4498 break;
4499 }
4500 if ((lpfc_cmd->result == IOERR_RX_DMA_FAILED ||
4501 lpfc_cmd->result == IOERR_TX_DMA_FAILED) &&
4502 pIocbOut->iocb.unsli3.sli3_bg.bgstat) {
4503 if (scsi_get_prot_op(cmd) != SCSI_PROT_NORMAL) {
4504 /*
4505 * This is a response for a BG enabled
4506 * cmd. Parse BG error
4507 */
4508 lpfc_parse_bg_err(phba, lpfc_cmd,
4509 pIocbOut);
4510 break;
4511 } else {
4512 lpfc_printf_vlog(vport, KERN_WARNING,
4513 LOG_BG,
4514 "9031 non-zero BGSTAT "
4515 "on unprotected cmd\n");
4516 }
4517 }
4518 if ((lpfc_cmd->status == IOSTAT_REMOTE_STOP)
4519 && (phba->sli_rev == LPFC_SLI_REV4)
4520 && pnode) {
4521 /* This IO was aborted by the target, we don't
4522 * know the rxid and because we did not send the
4523 * ABTS we cannot generate and RRQ.
4524 */
4525 lpfc_set_rrq_active(phba, pnode,
4526 lpfc_cmd->cur_iocbq.sli4_lxritag,
4527 0, 0);
4528 }
4529 fallthrough;
4530 default:
4531 cmd->result = DID_ERROR << 16;
4532 break;
4533 }
4534
4535 if (!pnode || (pnode->nlp_state != NLP_STE_MAPPED_NODE))
4536 cmd->result = DID_TRANSPORT_DISRUPTED << 16 |
4537 SAM_STAT_BUSY;
4538 } else
4539 cmd->result = DID_OK << 16;
4540
4541 if (cmd->result || lpfc_cmd->fcp_rsp->rspSnsLen) {
4542 uint32_t *lp = (uint32_t *)cmd->sense_buffer;
4543
4544 lpfc_printf_vlog(vport, KERN_INFO, LOG_FCP,
4545 "0710 Iodone <%d/%llu> cmd x%px, error "
4546 "x%x SNS x%x x%x Data: x%x x%x\n",
4547 cmd->device->id, cmd->device->lun, cmd,
4548 cmd->result, *lp, *(lp + 3), cmd->retries,
4549 scsi_get_resid(cmd));
4550 }
4551
4552 if (vport->cfg_max_scsicmpl_time &&
4553 time_after(jiffies, lpfc_cmd->start_time +
4554 msecs_to_jiffies(vport->cfg_max_scsicmpl_time))) {
4555 spin_lock_irqsave(shost->host_lock, flags);
4556 if (pnode) {
4557 if (pnode->cmd_qdepth >
4558 atomic_read(&pnode->cmd_pending) &&
4559 (atomic_read(&pnode->cmd_pending) >
4560 LPFC_MIN_TGT_QDEPTH) &&
4561 ((cmd->cmnd[0] == READ_10) ||
4562 (cmd->cmnd[0] == WRITE_10)))
4563 pnode->cmd_qdepth =
4564 atomic_read(&pnode->cmd_pending);
4565
4566 pnode->last_change_time = jiffies;
4567 }
4568 spin_unlock_irqrestore(shost->host_lock, flags);
4569 }
4570 lpfc_scsi_unprep_dma_buf(phba, lpfc_cmd);
4571
4572 lpfc_cmd->pCmd = NULL;
4573 spin_unlock(&lpfc_cmd->buf_lock);
4574
4575 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
4576 if (lpfc_cmd->ts_cmd_start) {
4577 lpfc_cmd->ts_isr_cmpl = pIocbIn->isr_timestamp;
4578 lpfc_cmd->ts_data_io = ktime_get_ns();
4579 phba->ktime_last_cmd = lpfc_cmd->ts_data_io;
4580 lpfc_io_ktime(phba, lpfc_cmd);
4581 }
4582 #endif
4583
4584 /* The sdev is not guaranteed to be valid post scsi_done upcall. */
4585 scsi_done(cmd);
4586
4587 /*
4588 * If there is an abort thread waiting for command completion
4589 * wake up the thread.
4590 */
4591 spin_lock(&lpfc_cmd->buf_lock);
4592 lpfc_cmd->cur_iocbq.cmd_flag &= ~LPFC_DRIVER_ABORTED;
4593 if (lpfc_cmd->waitq)
4594 wake_up(lpfc_cmd->waitq);
4595 spin_unlock(&lpfc_cmd->buf_lock);
4596
4597 lpfc_release_scsi_buf(phba, lpfc_cmd);
4598 }
4599
4600 /**
4601 * lpfc_scsi_prep_cmnd_buf_s3 - SLI-3 IOCB init for the IO
4602 * @vport: Pointer to vport object.
4603 * @lpfc_cmd: The scsi buffer which is going to be prep'ed.
4604 * @tmo: timeout value for the IO
4605 *
4606 * Based on the data-direction of the command, initialize IOCB
4607 * in the I/O buffer. Fill in the IOCB fields which are independent
4608 * of the scsi buffer
4609 *
4610 * RETURNS 0 - SUCCESS,
4611 **/
lpfc_scsi_prep_cmnd_buf_s3(struct lpfc_vport * vport,struct lpfc_io_buf * lpfc_cmd,uint8_t tmo)4612 static int lpfc_scsi_prep_cmnd_buf_s3(struct lpfc_vport *vport,
4613 struct lpfc_io_buf *lpfc_cmd,
4614 uint8_t tmo)
4615 {
4616 IOCB_t *iocb_cmd = &lpfc_cmd->cur_iocbq.iocb;
4617 struct lpfc_iocbq *piocbq = &lpfc_cmd->cur_iocbq;
4618 struct scsi_cmnd *scsi_cmnd = lpfc_cmd->pCmd;
4619 struct fcp_cmnd *fcp_cmnd = lpfc_cmd->fcp_cmnd;
4620 struct lpfc_nodelist *pnode = lpfc_cmd->ndlp;
4621 int datadir = scsi_cmnd->sc_data_direction;
4622 u32 fcpdl;
4623
4624 piocbq->iocb.un.fcpi.fcpi_XRdy = 0;
4625
4626 /*
4627 * There are three possibilities here - use scatter-gather segment, use
4628 * the single mapping, or neither. Start the lpfc command prep by
4629 * bumping the bpl beyond the fcp_cmnd and fcp_rsp regions to the first
4630 * data bde entry.
4631 */
4632 if (scsi_sg_count(scsi_cmnd)) {
4633 if (datadir == DMA_TO_DEVICE) {
4634 iocb_cmd->ulpCommand = CMD_FCP_IWRITE64_CR;
4635 iocb_cmd->ulpPU = PARM_READ_CHECK;
4636 if (vport->cfg_first_burst_size &&
4637 test_bit(NLP_FIRSTBURST, &pnode->nlp_flag)) {
4638 u32 xrdy_len;
4639
4640 fcpdl = scsi_bufflen(scsi_cmnd);
4641 xrdy_len = min(fcpdl,
4642 vport->cfg_first_burst_size);
4643 piocbq->iocb.un.fcpi.fcpi_XRdy = xrdy_len;
4644 }
4645 fcp_cmnd->fcpCntl3 = WRITE_DATA;
4646 } else {
4647 iocb_cmd->ulpCommand = CMD_FCP_IREAD64_CR;
4648 iocb_cmd->ulpPU = PARM_READ_CHECK;
4649 fcp_cmnd->fcpCntl3 = READ_DATA;
4650 }
4651 } else {
4652 iocb_cmd->ulpCommand = CMD_FCP_ICMND64_CR;
4653 iocb_cmd->un.fcpi.fcpi_parm = 0;
4654 iocb_cmd->ulpPU = 0;
4655 fcp_cmnd->fcpCntl3 = 0;
4656 }
4657
4658 /*
4659 * Finish initializing those IOCB fields that are independent
4660 * of the scsi_cmnd request_buffer
4661 */
4662 piocbq->iocb.ulpContext = pnode->nlp_rpi;
4663 if (pnode->nlp_fcp_info & NLP_FCP_2_DEVICE)
4664 piocbq->iocb.ulpFCP2Rcvy = 1;
4665 else
4666 piocbq->iocb.ulpFCP2Rcvy = 0;
4667
4668 piocbq->iocb.ulpClass = (pnode->nlp_fcp_info & 0x0f);
4669 piocbq->io_buf = lpfc_cmd;
4670 if (!piocbq->cmd_cmpl)
4671 piocbq->cmd_cmpl = lpfc_scsi_cmd_iocb_cmpl;
4672 piocbq->iocb.ulpTimeout = tmo;
4673 piocbq->vport = vport;
4674 return 0;
4675 }
4676
4677 /**
4678 * lpfc_scsi_prep_cmnd_buf_s4 - SLI-4 WQE init for the IO
4679 * @vport: Pointer to vport object.
4680 * @lpfc_cmd: The scsi buffer which is going to be prep'ed.
4681 * @tmo: timeout value for the IO
4682 *
4683 * Based on the data-direction of the command copy WQE template
4684 * to I/O buffer WQE. Fill in the WQE fields which are independent
4685 * of the scsi buffer
4686 *
4687 * RETURNS 0 - SUCCESS,
4688 **/
lpfc_scsi_prep_cmnd_buf_s4(struct lpfc_vport * vport,struct lpfc_io_buf * lpfc_cmd,uint8_t tmo)4689 static int lpfc_scsi_prep_cmnd_buf_s4(struct lpfc_vport *vport,
4690 struct lpfc_io_buf *lpfc_cmd,
4691 uint8_t tmo)
4692 {
4693 struct lpfc_hba *phba = vport->phba;
4694 struct scsi_cmnd *scsi_cmnd = lpfc_cmd->pCmd;
4695 struct fcp_cmnd *fcp_cmnd = lpfc_cmd->fcp_cmnd;
4696 struct lpfc_sli4_hdw_queue *hdwq = NULL;
4697 struct lpfc_iocbq *pwqeq = &lpfc_cmd->cur_iocbq;
4698 struct lpfc_nodelist *pnode = lpfc_cmd->ndlp;
4699 union lpfc_wqe128 *wqe = &pwqeq->wqe;
4700 u16 idx = lpfc_cmd->hdwq_no;
4701 int datadir = scsi_cmnd->sc_data_direction;
4702
4703 hdwq = &phba->sli4_hba.hdwq[idx];
4704
4705 /* Initialize 64 bytes only */
4706 memset(wqe, 0, sizeof(union lpfc_wqe128));
4707
4708 /*
4709 * There are three possibilities here - use scatter-gather segment, use
4710 * the single mapping, or neither.
4711 */
4712 if (scsi_sg_count(scsi_cmnd)) {
4713 if (datadir == DMA_TO_DEVICE) {
4714 /* From the iwrite template, initialize words 7 - 11 */
4715 memcpy(&wqe->words[7],
4716 &lpfc_iwrite_cmd_template.words[7],
4717 sizeof(uint32_t) * 5);
4718
4719 fcp_cmnd->fcpCntl3 = WRITE_DATA;
4720 if (hdwq)
4721 hdwq->scsi_cstat.output_requests++;
4722 } else {
4723 /* From the iread template, initialize words 7 - 11 */
4724 memcpy(&wqe->words[7],
4725 &lpfc_iread_cmd_template.words[7],
4726 sizeof(uint32_t) * 5);
4727
4728 /* Word 7 */
4729 bf_set(wqe_tmo, &wqe->fcp_iread.wqe_com, tmo);
4730
4731 fcp_cmnd->fcpCntl3 = READ_DATA;
4732 if (hdwq)
4733 hdwq->scsi_cstat.input_requests++;
4734
4735 /* For a CMF Managed port, iod must be zero'ed */
4736 if (phba->cmf_active_mode == LPFC_CFG_MANAGED)
4737 bf_set(wqe_iod, &wqe->fcp_iread.wqe_com,
4738 LPFC_WQE_IOD_NONE);
4739 }
4740
4741 /* Additional fcp cdb length field calculation.
4742 * LPFC_FCP_CDB_LEN_32 - normal 16 byte cdb length,
4743 * then divide by 4 for the word count.
4744 * shift 2 because of the RDDATA/WRDATA.
4745 */
4746 if (scsi_cmnd->cmd_len > LPFC_FCP_CDB_LEN)
4747 fcp_cmnd->fcpCntl3 |= 4 << 2;
4748 } else {
4749 /* From the icmnd template, initialize words 4 - 11 */
4750 memcpy(&wqe->words[4], &lpfc_icmnd_cmd_template.words[4],
4751 sizeof(uint32_t) * 8);
4752
4753 /* Word 7 */
4754 bf_set(wqe_tmo, &wqe->fcp_icmd.wqe_com, tmo);
4755
4756 fcp_cmnd->fcpCntl3 = 0;
4757 if (hdwq)
4758 hdwq->scsi_cstat.control_requests++;
4759 }
4760
4761 /*
4762 * Finish initializing those WQE fields that are independent
4763 * of the request_buffer
4764 */
4765
4766 /* Word 3 */
4767 bf_set(payload_offset_len, &wqe->fcp_icmd,
4768 sizeof(struct fcp_cmnd) + sizeof(struct fcp_rsp));
4769
4770 /* Word 6 */
4771 bf_set(wqe_ctxt_tag, &wqe->generic.wqe_com,
4772 phba->sli4_hba.rpi_ids[pnode->nlp_rpi]);
4773 bf_set(wqe_xri_tag, &wqe->generic.wqe_com, pwqeq->sli4_xritag);
4774
4775 /* Word 7*/
4776 if (pnode->nlp_fcp_info & NLP_FCP_2_DEVICE)
4777 bf_set(wqe_erp, &wqe->generic.wqe_com, 1);
4778
4779 bf_set(wqe_class, &wqe->generic.wqe_com,
4780 (pnode->nlp_fcp_info & 0x0f));
4781
4782 /* Word 8 */
4783 wqe->generic.wqe_com.abort_tag = pwqeq->iotag;
4784
4785 /* Word 9 */
4786 bf_set(wqe_reqtag, &wqe->generic.wqe_com, pwqeq->iotag);
4787
4788 pwqeq->vport = vport;
4789 pwqeq->io_buf = lpfc_cmd;
4790 pwqeq->hba_wqidx = lpfc_cmd->hdwq_no;
4791 pwqeq->cmd_cmpl = lpfc_fcp_io_cmd_wqe_cmpl;
4792
4793 return 0;
4794 }
4795
4796 /**
4797 * lpfc_scsi_prep_cmnd - Wrapper func for convert scsi cmnd to FCP info unit
4798 * @vport: The virtual port for which this call is being executed.
4799 * @lpfc_cmd: The scsi command which needs to send.
4800 * @pnode: Pointer to lpfc_nodelist.
4801 *
4802 * This routine initializes fcp_cmnd and iocb data structure from scsi command
4803 * to transfer for device with SLI3 interface spec.
4804 **/
4805 static int
lpfc_scsi_prep_cmnd(struct lpfc_vport * vport,struct lpfc_io_buf * lpfc_cmd,struct lpfc_nodelist * pnode)4806 lpfc_scsi_prep_cmnd(struct lpfc_vport *vport, struct lpfc_io_buf *lpfc_cmd,
4807 struct lpfc_nodelist *pnode)
4808 {
4809 struct scsi_cmnd *scsi_cmnd = lpfc_cmd->pCmd;
4810 struct fcp_cmnd *fcp_cmnd = lpfc_cmd->fcp_cmnd;
4811 u8 *ptr;
4812
4813 if (!pnode)
4814 return 0;
4815
4816 lpfc_cmd->fcp_rsp->rspSnsLen = 0;
4817 /* clear task management bits */
4818 lpfc_cmd->fcp_cmnd->fcpCntl2 = 0;
4819
4820 int_to_scsilun(lpfc_cmd->pCmd->device->lun,
4821 &lpfc_cmd->fcp_cmnd->fcp_lun);
4822
4823 ptr = &((struct fcp_cmnd32 *)fcp_cmnd)->fcpCdb[0];
4824 memcpy(ptr, scsi_cmnd->cmnd, scsi_cmnd->cmd_len);
4825 if (scsi_cmnd->cmd_len < LPFC_FCP_CDB_LEN) {
4826 ptr += scsi_cmnd->cmd_len;
4827 memset(ptr, 0, (LPFC_FCP_CDB_LEN - scsi_cmnd->cmd_len));
4828 }
4829
4830 fcp_cmnd->fcpCntl1 = SIMPLE_Q;
4831
4832 lpfc_scsi_prep_cmnd_buf(vport, lpfc_cmd, lpfc_cmd->timeout);
4833
4834 return 0;
4835 }
4836
4837 /**
4838 * lpfc_scsi_prep_task_mgmt_cmd_s3 - Convert SLI3 scsi TM cmd to FCP info unit
4839 * @vport: The virtual port for which this call is being executed.
4840 * @lpfc_cmd: Pointer to lpfc_io_buf data structure.
4841 * @lun: Logical unit number.
4842 * @task_mgmt_cmd: SCSI task management command.
4843 *
4844 * This routine creates FCP information unit corresponding to @task_mgmt_cmd
4845 * for device with SLI-3 interface spec.
4846 *
4847 * Return codes:
4848 * 0 - Error
4849 * 1 - Success
4850 **/
4851 static int
lpfc_scsi_prep_task_mgmt_cmd_s3(struct lpfc_vport * vport,struct lpfc_io_buf * lpfc_cmd,u64 lun,u8 task_mgmt_cmd)4852 lpfc_scsi_prep_task_mgmt_cmd_s3(struct lpfc_vport *vport,
4853 struct lpfc_io_buf *lpfc_cmd,
4854 u64 lun, u8 task_mgmt_cmd)
4855 {
4856 struct lpfc_iocbq *piocbq;
4857 IOCB_t *piocb;
4858 struct fcp_cmnd *fcp_cmnd;
4859 struct lpfc_rport_data *rdata = lpfc_cmd->rdata;
4860 struct lpfc_nodelist *ndlp = rdata->pnode;
4861
4862 if (!ndlp || ndlp->nlp_state != NLP_STE_MAPPED_NODE)
4863 return 0;
4864
4865 piocbq = &(lpfc_cmd->cur_iocbq);
4866 piocbq->vport = vport;
4867
4868 piocb = &piocbq->iocb;
4869
4870 fcp_cmnd = lpfc_cmd->fcp_cmnd;
4871 /* Clear out any old data in the FCP command area */
4872 memset(fcp_cmnd, 0, sizeof(struct fcp_cmnd));
4873 int_to_scsilun(lun, &fcp_cmnd->fcp_lun);
4874 fcp_cmnd->fcpCntl2 = task_mgmt_cmd;
4875 if (!(vport->phba->sli3_options & LPFC_SLI3_BG_ENABLED))
4876 lpfc_fcpcmd_to_iocb(piocb->unsli3.fcp_ext.icd, fcp_cmnd);
4877 piocb->ulpCommand = CMD_FCP_ICMND64_CR;
4878 piocb->ulpContext = ndlp->nlp_rpi;
4879 piocb->ulpFCP2Rcvy = (ndlp->nlp_fcp_info & NLP_FCP_2_DEVICE) ? 1 : 0;
4880 piocb->ulpClass = (ndlp->nlp_fcp_info & 0x0f);
4881 piocb->ulpPU = 0;
4882 piocb->un.fcpi.fcpi_parm = 0;
4883
4884 /* ulpTimeout is only one byte */
4885 if (lpfc_cmd->timeout > 0xff) {
4886 /*
4887 * Do not timeout the command at the firmware level.
4888 * The driver will provide the timeout mechanism.
4889 */
4890 piocb->ulpTimeout = 0;
4891 } else
4892 piocb->ulpTimeout = lpfc_cmd->timeout;
4893
4894 return 1;
4895 }
4896
4897 /**
4898 * lpfc_scsi_prep_task_mgmt_cmd_s4 - Convert SLI4 scsi TM cmd to FCP info unit
4899 * @vport: The virtual port for which this call is being executed.
4900 * @lpfc_cmd: Pointer to lpfc_io_buf data structure.
4901 * @lun: Logical unit number.
4902 * @task_mgmt_cmd: SCSI task management command.
4903 *
4904 * This routine creates FCP information unit corresponding to @task_mgmt_cmd
4905 * for device with SLI-4 interface spec.
4906 *
4907 * Return codes:
4908 * 0 - Error
4909 * 1 - Success
4910 **/
4911 static int
lpfc_scsi_prep_task_mgmt_cmd_s4(struct lpfc_vport * vport,struct lpfc_io_buf * lpfc_cmd,u64 lun,u8 task_mgmt_cmd)4912 lpfc_scsi_prep_task_mgmt_cmd_s4(struct lpfc_vport *vport,
4913 struct lpfc_io_buf *lpfc_cmd,
4914 u64 lun, u8 task_mgmt_cmd)
4915 {
4916 struct lpfc_iocbq *pwqeq = &lpfc_cmd->cur_iocbq;
4917 union lpfc_wqe128 *wqe = &pwqeq->wqe;
4918 struct fcp_cmnd *fcp_cmnd;
4919 struct lpfc_rport_data *rdata = lpfc_cmd->rdata;
4920 struct lpfc_nodelist *ndlp = rdata->pnode;
4921
4922 if (!ndlp || ndlp->nlp_state != NLP_STE_MAPPED_NODE)
4923 return 0;
4924
4925 pwqeq->vport = vport;
4926 /* Initialize 64 bytes only */
4927 memset(wqe, 0, sizeof(union lpfc_wqe128));
4928
4929 /* From the icmnd template, initialize words 4 - 11 */
4930 memcpy(&wqe->words[4], &lpfc_icmnd_cmd_template.words[4],
4931 sizeof(uint32_t) * 8);
4932
4933 fcp_cmnd = lpfc_cmd->fcp_cmnd;
4934 /* Clear out any old data in the FCP command area */
4935 memset(fcp_cmnd, 0, sizeof(struct fcp_cmnd));
4936 int_to_scsilun(lun, &fcp_cmnd->fcp_lun);
4937 fcp_cmnd->fcpCntl3 = 0;
4938 fcp_cmnd->fcpCntl2 = task_mgmt_cmd;
4939
4940 bf_set(payload_offset_len, &wqe->fcp_icmd,
4941 sizeof(struct fcp_cmnd) + sizeof(struct fcp_rsp));
4942 bf_set(cmd_buff_len, &wqe->fcp_icmd, 0);
4943 bf_set(wqe_ctxt_tag, &wqe->generic.wqe_com, /* ulpContext */
4944 vport->phba->sli4_hba.rpi_ids[ndlp->nlp_rpi]);
4945 bf_set(wqe_erp, &wqe->fcp_icmd.wqe_com,
4946 ((ndlp->nlp_fcp_info & NLP_FCP_2_DEVICE) ? 1 : 0));
4947 bf_set(wqe_class, &wqe->fcp_icmd.wqe_com,
4948 (ndlp->nlp_fcp_info & 0x0f));
4949
4950 /* ulpTimeout is only one byte */
4951 if (lpfc_cmd->timeout > 0xff) {
4952 /*
4953 * Do not timeout the command at the firmware level.
4954 * The driver will provide the timeout mechanism.
4955 */
4956 bf_set(wqe_tmo, &wqe->fcp_icmd.wqe_com, 0);
4957 } else {
4958 bf_set(wqe_tmo, &wqe->fcp_icmd.wqe_com, lpfc_cmd->timeout);
4959 }
4960
4961 lpfc_prep_embed_io(vport->phba, lpfc_cmd);
4962 bf_set(wqe_xri_tag, &wqe->generic.wqe_com, pwqeq->sli4_xritag);
4963 wqe->generic.wqe_com.abort_tag = pwqeq->iotag;
4964 bf_set(wqe_reqtag, &wqe->generic.wqe_com, pwqeq->iotag);
4965
4966 lpfc_sli4_set_rsp_sgl_last(vport->phba, lpfc_cmd);
4967
4968 return 1;
4969 }
4970
4971 /**
4972 * lpfc_scsi_api_table_setup - Set up scsi api function jump table
4973 * @phba: The hba struct for which this call is being executed.
4974 * @dev_grp: The HBA PCI-Device group number.
4975 *
4976 * This routine sets up the SCSI interface API function jump table in @phba
4977 * struct.
4978 * Returns: 0 - success, -ENODEV - failure.
4979 **/
4980 int
lpfc_scsi_api_table_setup(struct lpfc_hba * phba,uint8_t dev_grp)4981 lpfc_scsi_api_table_setup(struct lpfc_hba *phba, uint8_t dev_grp)
4982 {
4983
4984 phba->lpfc_scsi_unprep_dma_buf = lpfc_scsi_unprep_dma_buf;
4985
4986 switch (dev_grp) {
4987 case LPFC_PCI_DEV_LP:
4988 phba->lpfc_scsi_prep_dma_buf = lpfc_scsi_prep_dma_buf_s3;
4989 phba->lpfc_bg_scsi_prep_dma_buf = lpfc_bg_scsi_prep_dma_buf_s3;
4990 phba->lpfc_release_scsi_buf = lpfc_release_scsi_buf_s3;
4991 phba->lpfc_get_scsi_buf = lpfc_get_scsi_buf_s3;
4992 phba->lpfc_scsi_prep_cmnd_buf = lpfc_scsi_prep_cmnd_buf_s3;
4993 phba->lpfc_scsi_prep_task_mgmt_cmd =
4994 lpfc_scsi_prep_task_mgmt_cmd_s3;
4995 break;
4996 case LPFC_PCI_DEV_OC:
4997 phba->lpfc_scsi_prep_dma_buf = lpfc_scsi_prep_dma_buf_s4;
4998 phba->lpfc_bg_scsi_prep_dma_buf = lpfc_bg_scsi_prep_dma_buf_s4;
4999 phba->lpfc_release_scsi_buf = lpfc_release_scsi_buf_s4;
5000 phba->lpfc_get_scsi_buf = lpfc_get_scsi_buf_s4;
5001 phba->lpfc_scsi_prep_cmnd_buf = lpfc_scsi_prep_cmnd_buf_s4;
5002 phba->lpfc_scsi_prep_task_mgmt_cmd =
5003 lpfc_scsi_prep_task_mgmt_cmd_s4;
5004 break;
5005 default:
5006 lpfc_printf_log(phba, KERN_ERR, LOG_INIT,
5007 "1418 Invalid HBA PCI-device group: 0x%x\n",
5008 dev_grp);
5009 return -ENODEV;
5010 }
5011 phba->lpfc_rampdown_queue_depth = lpfc_rampdown_queue_depth;
5012 return 0;
5013 }
5014
5015 /**
5016 * lpfc_tskmgmt_def_cmpl - IOCB completion routine for task management command
5017 * @phba: The Hba for which this call is being executed.
5018 * @cmdiocbq: Pointer to lpfc_iocbq data structure.
5019 * @rspiocbq: Pointer to lpfc_iocbq data structure.
5020 *
5021 * This routine is IOCB completion routine for device reset and target reset
5022 * routine. This routine release scsi buffer associated with lpfc_cmd.
5023 **/
5024 static void
lpfc_tskmgmt_def_cmpl(struct lpfc_hba * phba,struct lpfc_iocbq * cmdiocbq,struct lpfc_iocbq * rspiocbq)5025 lpfc_tskmgmt_def_cmpl(struct lpfc_hba *phba,
5026 struct lpfc_iocbq *cmdiocbq,
5027 struct lpfc_iocbq *rspiocbq)
5028 {
5029 struct lpfc_io_buf *lpfc_cmd = cmdiocbq->io_buf;
5030 if (lpfc_cmd)
5031 lpfc_release_scsi_buf(phba, lpfc_cmd);
5032 return;
5033 }
5034
5035 /**
5036 * lpfc_check_pci_resettable - Walks list of devices on pci_dev's bus to check
5037 * if issuing a pci_bus_reset is possibly unsafe
5038 * @phba: lpfc_hba pointer.
5039 *
5040 * Description:
5041 * Walks the bus_list to ensure only PCI devices with Emulex
5042 * vendor id, device ids that support hot reset, and only one occurrence
5043 * of function 0.
5044 *
5045 * Returns:
5046 * -EBADSLT, detected invalid device
5047 * 0, successful
5048 */
5049 int
lpfc_check_pci_resettable(struct lpfc_hba * phba)5050 lpfc_check_pci_resettable(struct lpfc_hba *phba)
5051 {
5052 const struct pci_dev *pdev = phba->pcidev;
5053 struct pci_dev *ptr = NULL;
5054 u8 counter = 0;
5055
5056 /* Walk the list of devices on the pci_dev's bus */
5057 list_for_each_entry(ptr, &pdev->bus->devices, bus_list) {
5058 /* Check for Emulex Vendor ID */
5059 if (ptr->vendor != PCI_VENDOR_ID_EMULEX) {
5060 lpfc_printf_log(phba, KERN_INFO, LOG_INIT,
5061 "8346 Non-Emulex vendor found: "
5062 "0x%04x\n", ptr->vendor);
5063 return -EBADSLT;
5064 }
5065
5066 /* Check for valid Emulex Device ID */
5067 if (phba->sli_rev != LPFC_SLI_REV4 ||
5068 test_bit(HBA_FCOE_MODE, &phba->hba_flag)) {
5069 lpfc_printf_log(phba, KERN_INFO, LOG_INIT,
5070 "8347 Incapable PCI reset device: "
5071 "0x%04x\n", ptr->device);
5072 return -EBADSLT;
5073 }
5074
5075 /* Check for only one function 0 ID to ensure only one HBA on
5076 * secondary bus
5077 */
5078 if (ptr->devfn == 0) {
5079 if (++counter > 1) {
5080 lpfc_printf_log(phba, KERN_INFO, LOG_INIT,
5081 "8348 More than one device on "
5082 "secondary bus found\n");
5083 return -EBADSLT;
5084 }
5085 }
5086 }
5087
5088 return 0;
5089 }
5090
5091 /**
5092 * lpfc_info - Info entry point of scsi_host_template data structure
5093 * @host: The scsi host for which this call is being executed.
5094 *
5095 * This routine provides module information about hba.
5096 *
5097 * Reutrn code:
5098 * Pointer to char - Success.
5099 **/
5100 const char *
lpfc_info(struct Scsi_Host * host)5101 lpfc_info(struct Scsi_Host *host)
5102 {
5103 struct lpfc_vport *vport = (struct lpfc_vport *) host->hostdata;
5104 struct lpfc_hba *phba = vport->phba;
5105 int link_speed = 0;
5106 static char lpfcinfobuf[384];
5107 char tmp[384] = {0};
5108
5109 memset(lpfcinfobuf, 0, sizeof(lpfcinfobuf));
5110 if (phba && phba->pcidev){
5111 /* Model Description */
5112 scnprintf(tmp, sizeof(tmp), phba->ModelDesc);
5113 if (strlcat(lpfcinfobuf, tmp, sizeof(lpfcinfobuf)) >=
5114 sizeof(lpfcinfobuf))
5115 goto buffer_done;
5116
5117 /* PCI Info */
5118 scnprintf(tmp, sizeof(tmp),
5119 " on PCI bus %02x device %02x irq %d",
5120 phba->pcidev->bus->number, phba->pcidev->devfn,
5121 phba->pcidev->irq);
5122 if (strlcat(lpfcinfobuf, tmp, sizeof(lpfcinfobuf)) >=
5123 sizeof(lpfcinfobuf))
5124 goto buffer_done;
5125
5126 /* Port Number */
5127 if (phba->Port[0]) {
5128 scnprintf(tmp, sizeof(tmp), " port %s", phba->Port);
5129 if (strlcat(lpfcinfobuf, tmp, sizeof(lpfcinfobuf)) >=
5130 sizeof(lpfcinfobuf))
5131 goto buffer_done;
5132 }
5133
5134 /* Link Speed */
5135 link_speed = lpfc_sli_port_speed_get(phba);
5136 if (link_speed != 0) {
5137 scnprintf(tmp, sizeof(tmp),
5138 " Logical Link Speed: %d Mbps", link_speed);
5139 if (strlcat(lpfcinfobuf, tmp, sizeof(lpfcinfobuf)) >=
5140 sizeof(lpfcinfobuf))
5141 goto buffer_done;
5142 }
5143
5144 /* Support for BSG ioctls */
5145 scnprintf(tmp, sizeof(tmp), " BSG");
5146 if (strlcat(lpfcinfobuf, tmp, sizeof(lpfcinfobuf)) >=
5147 sizeof(lpfcinfobuf))
5148 goto buffer_done;
5149
5150 /* PCI resettable */
5151 if (!lpfc_check_pci_resettable(phba)) {
5152 scnprintf(tmp, sizeof(tmp), " PCI resettable");
5153 strlcat(lpfcinfobuf, tmp, sizeof(lpfcinfobuf));
5154 }
5155 }
5156
5157 buffer_done:
5158 return lpfcinfobuf;
5159 }
5160
5161 /**
5162 * lpfc_poll_rearm_timer - Routine to modify fcp_poll timer of hba
5163 * @phba: The Hba for which this call is being executed.
5164 *
5165 * This routine modifies fcp_poll_timer field of @phba by cfg_poll_tmo.
5166 * The default value of cfg_poll_tmo is 10 milliseconds.
5167 **/
lpfc_poll_rearm_timer(struct lpfc_hba * phba)5168 static __inline__ void lpfc_poll_rearm_timer(struct lpfc_hba * phba)
5169 {
5170 unsigned long poll_tmo_expires =
5171 (jiffies + msecs_to_jiffies(phba->cfg_poll_tmo));
5172
5173 if (!list_empty(&phba->sli.sli3_ring[LPFC_FCP_RING].txcmplq))
5174 mod_timer(&phba->fcp_poll_timer,
5175 poll_tmo_expires);
5176 }
5177
5178 /**
5179 * lpfc_poll_start_timer - Routine to start fcp_poll_timer of HBA
5180 * @phba: The Hba for which this call is being executed.
5181 *
5182 * This routine starts the fcp_poll_timer of @phba.
5183 **/
lpfc_poll_start_timer(struct lpfc_hba * phba)5184 void lpfc_poll_start_timer(struct lpfc_hba * phba)
5185 {
5186 lpfc_poll_rearm_timer(phba);
5187 }
5188
5189 /**
5190 * lpfc_poll_timeout - Restart polling timer
5191 * @t: Timer construct where lpfc_hba data structure pointer is obtained.
5192 *
5193 * This routine restarts fcp_poll timer, when FCP ring polling is enable
5194 * and FCP Ring interrupt is disable.
5195 **/
lpfc_poll_timeout(struct timer_list * t)5196 void lpfc_poll_timeout(struct timer_list *t)
5197 {
5198 struct lpfc_hba *phba = timer_container_of(phba, t, fcp_poll_timer);
5199
5200 if (phba->cfg_poll & ENABLE_FCP_RING_POLLING) {
5201 lpfc_sli_handle_fast_ring_event(phba,
5202 &phba->sli.sli3_ring[LPFC_FCP_RING], HA_R0RE_REQ);
5203
5204 if (phba->cfg_poll & DISABLE_FCP_RING_INT)
5205 lpfc_poll_rearm_timer(phba);
5206 }
5207 }
5208
5209 /*
5210 * lpfc_is_command_vm_io - get the UUID from blk cgroup
5211 * @cmd: Pointer to scsi_cmnd data structure
5212 * Returns UUID if present, otherwise NULL
5213 */
lpfc_is_command_vm_io(struct scsi_cmnd * cmd)5214 static char *lpfc_is_command_vm_io(struct scsi_cmnd *cmd)
5215 {
5216 struct bio *bio = scsi_cmd_to_rq(cmd)->bio;
5217
5218 if (!IS_ENABLED(CONFIG_BLK_CGROUP_FC_APPID) || !bio)
5219 return NULL;
5220 return blkcg_get_fc_appid(bio);
5221 }
5222
5223 /**
5224 * lpfc_queuecommand - scsi_host_template queuecommand entry point
5225 * @shost: kernel scsi host pointer.
5226 * @cmnd: Pointer to scsi_cmnd data structure.
5227 *
5228 * Driver registers this routine to scsi midlayer to submit a @cmd to process.
5229 * This routine prepares an IOCB from scsi command and provides to firmware.
5230 * The @done callback is invoked after driver finished processing the command.
5231 *
5232 * Return value :
5233 * 0 - Success
5234 * SCSI_MLQUEUE_HOST_BUSY - Block all devices served by this host temporarily.
5235 **/
5236 static int
lpfc_queuecommand(struct Scsi_Host * shost,struct scsi_cmnd * cmnd)5237 lpfc_queuecommand(struct Scsi_Host *shost, struct scsi_cmnd *cmnd)
5238 {
5239 struct lpfc_vport *vport = (struct lpfc_vport *) shost->hostdata;
5240 struct lpfc_hba *phba = vport->phba;
5241 struct lpfc_iocbq *cur_iocbq = NULL;
5242 struct lpfc_rport_data *rdata;
5243 struct lpfc_nodelist *ndlp;
5244 struct lpfc_io_buf *lpfc_cmd;
5245 struct fc_rport *rport = starget_to_rport(scsi_target(cmnd->device));
5246 int err, idx;
5247 u8 *uuid = NULL;
5248 uint64_t start;
5249
5250 start = ktime_get_ns();
5251 rdata = lpfc_rport_data_from_scsi_device(cmnd->device);
5252
5253 /* sanity check on references */
5254 if (unlikely(!rdata) || unlikely(!rport))
5255 goto out_fail_command;
5256
5257 err = fc_remote_port_chkready(rport);
5258 if (err) {
5259 cmnd->result = err;
5260 goto out_fail_command;
5261 }
5262 ndlp = rdata->pnode;
5263
5264 if ((scsi_get_prot_op(cmnd) != SCSI_PROT_NORMAL) &&
5265 (!(phba->sli3_options & LPFC_SLI3_BG_ENABLED))) {
5266
5267 lpfc_printf_log(phba, KERN_ERR, LOG_TRACE_EVENT,
5268 "9058 BLKGRD: ERROR: rcvd protected cmd:%02x"
5269 " op:%02x str=%s without registering for"
5270 " BlockGuard - Rejecting command\n",
5271 cmnd->cmnd[0], scsi_get_prot_op(cmnd),
5272 dif_op_str[scsi_get_prot_op(cmnd)]);
5273 goto out_fail_command;
5274 }
5275
5276 /*
5277 * Catch race where our node has transitioned, but the
5278 * transport is still transitioning.
5279 */
5280 if (!ndlp)
5281 goto out_tgt_busy1;
5282
5283 /* Check if IO qualifies for CMF */
5284 if (phba->cmf_active_mode != LPFC_CFG_OFF &&
5285 cmnd->sc_data_direction == DMA_FROM_DEVICE &&
5286 (scsi_sg_count(cmnd))) {
5287 /* Latency start time saved in rx_cmd_start later in routine */
5288 err = lpfc_update_cmf_cmd(phba, scsi_bufflen(cmnd));
5289 if (err)
5290 goto out_tgt_busy1;
5291 }
5292
5293 if (lpfc_ndlp_check_qdepth(phba, ndlp)) {
5294 if (atomic_read(&ndlp->cmd_pending) >= ndlp->cmd_qdepth) {
5295 lpfc_printf_vlog(vport, KERN_INFO, LOG_FCP_ERROR,
5296 "3377 Target Queue Full, scsi Id:%d "
5297 "Qdepth:%d Pending command:%d"
5298 " WWNN:%02x:%02x:%02x:%02x:"
5299 "%02x:%02x:%02x:%02x, "
5300 " WWPN:%02x:%02x:%02x:%02x:"
5301 "%02x:%02x:%02x:%02x",
5302 ndlp->nlp_sid, ndlp->cmd_qdepth,
5303 atomic_read(&ndlp->cmd_pending),
5304 ndlp->nlp_nodename.u.wwn[0],
5305 ndlp->nlp_nodename.u.wwn[1],
5306 ndlp->nlp_nodename.u.wwn[2],
5307 ndlp->nlp_nodename.u.wwn[3],
5308 ndlp->nlp_nodename.u.wwn[4],
5309 ndlp->nlp_nodename.u.wwn[5],
5310 ndlp->nlp_nodename.u.wwn[6],
5311 ndlp->nlp_nodename.u.wwn[7],
5312 ndlp->nlp_portname.u.wwn[0],
5313 ndlp->nlp_portname.u.wwn[1],
5314 ndlp->nlp_portname.u.wwn[2],
5315 ndlp->nlp_portname.u.wwn[3],
5316 ndlp->nlp_portname.u.wwn[4],
5317 ndlp->nlp_portname.u.wwn[5],
5318 ndlp->nlp_portname.u.wwn[6],
5319 ndlp->nlp_portname.u.wwn[7]);
5320 goto out_tgt_busy2;
5321 }
5322 }
5323
5324 lpfc_cmd = lpfc_get_scsi_buf(phba, ndlp, cmnd);
5325 if (lpfc_cmd == NULL) {
5326 lpfc_rampdown_queue_depth(phba);
5327
5328 lpfc_printf_vlog(vport, KERN_INFO, LOG_FCP_ERROR,
5329 "0707 driver's buffer pool is empty, "
5330 "IO busied\n");
5331 goto out_host_busy;
5332 }
5333 lpfc_cmd->rx_cmd_start = start;
5334
5335 cur_iocbq = &lpfc_cmd->cur_iocbq;
5336 /*
5337 * Store the midlayer's command structure for the completion phase
5338 * and complete the command initialization.
5339 */
5340 lpfc_cmd->pCmd = cmnd;
5341 lpfc_cmd->rdata = rdata;
5342 lpfc_cmd->ndlp = ndlp;
5343 cur_iocbq->cmd_cmpl = NULL;
5344 cmnd->host_scribble = (unsigned char *)lpfc_cmd;
5345
5346 err = lpfc_scsi_prep_cmnd(vport, lpfc_cmd, ndlp);
5347 if (err)
5348 goto out_host_busy_release_buf;
5349
5350 if (scsi_get_prot_op(cmnd) != SCSI_PROT_NORMAL) {
5351 if (vport->phba->cfg_enable_bg) {
5352 lpfc_printf_vlog(vport,
5353 KERN_INFO, LOG_SCSI_CMD,
5354 "9033 BLKGRD: rcvd %s cmd:x%x "
5355 "reftag x%x cnt %u pt %x\n",
5356 dif_op_str[scsi_get_prot_op(cmnd)],
5357 cmnd->cmnd[0],
5358 scsi_prot_ref_tag(cmnd),
5359 scsi_logical_block_count(cmnd),
5360 scsi_get_prot_type(cmnd));
5361 }
5362 err = lpfc_bg_scsi_prep_dma_buf(phba, lpfc_cmd);
5363 } else {
5364 err = lpfc_scsi_prep_dma_buf(phba, lpfc_cmd);
5365 }
5366
5367 if (unlikely(err)) {
5368 if (err == 2) {
5369 cmnd->result = DID_ERROR << 16;
5370 goto out_fail_command_release_buf;
5371 }
5372 goto out_host_busy_free_buf;
5373 }
5374
5375 /* check the necessary and sufficient condition to support VMID */
5376 if (lpfc_is_vmid_enabled(phba) &&
5377 (ndlp->vmid_support ||
5378 phba->pport->vmid_priority_tagging ==
5379 LPFC_VMID_PRIO_TAG_ALL_TARGETS)) {
5380 /* is the I/O generated by a VM, get the associated virtual */
5381 /* entity id */
5382 uuid = lpfc_is_command_vm_io(cmnd);
5383
5384 if (uuid) {
5385 err = lpfc_vmid_get_appid(vport, uuid,
5386 cmnd->sc_data_direction,
5387 (union lpfc_vmid_io_tag *)
5388 &cur_iocbq->vmid_tag);
5389 if (!err)
5390 cur_iocbq->cmd_flag |= LPFC_IO_VMID;
5391 }
5392 }
5393
5394 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
5395 if (unlikely(phba->hdwqstat_on & LPFC_CHECK_SCSI_IO))
5396 this_cpu_inc(phba->sli4_hba.c_stat->xmt_io);
5397 #endif
5398 /* Issue I/O to adapter */
5399 err = lpfc_sli_issue_fcp_io(phba, LPFC_FCP_RING, cur_iocbq,
5400 SLI_IOCB_RET_IOCB);
5401 #ifdef CONFIG_SCSI_LPFC_DEBUG_FS
5402 if (start) {
5403 lpfc_cmd->ts_cmd_start = start;
5404 lpfc_cmd->ts_last_cmd = phba->ktime_last_cmd;
5405 lpfc_cmd->ts_cmd_wqput = ktime_get_ns();
5406 } else {
5407 lpfc_cmd->ts_cmd_start = 0;
5408 }
5409 #endif
5410 if (err) {
5411 lpfc_printf_vlog(vport, KERN_INFO, LOG_FCP,
5412 "3376 FCP could not issue iocb err %x "
5413 "FCP cmd x%x <%d/%llu> "
5414 "sid: x%x did: x%x oxid: x%x "
5415 "Data: x%x x%x x%x x%x\n",
5416 err, cmnd->cmnd[0],
5417 cmnd->device ? cmnd->device->id : 0xffff,
5418 cmnd->device ? cmnd->device->lun : (u64)-1,
5419 vport->fc_myDID, ndlp->nlp_DID,
5420 phba->sli_rev == LPFC_SLI_REV4 ?
5421 cur_iocbq->sli4_xritag : 0xffff,
5422 phba->sli_rev == LPFC_SLI_REV4 ?
5423 phba->sli4_hba.rpi_ids[ndlp->nlp_rpi] :
5424 cur_iocbq->iocb.ulpContext,
5425 cur_iocbq->iotag,
5426 phba->sli_rev == LPFC_SLI_REV4 ?
5427 bf_get(wqe_tmo,
5428 &cur_iocbq->wqe.generic.wqe_com) :
5429 cur_iocbq->iocb.ulpTimeout,
5430 (uint32_t)(scsi_cmd_to_rq(cmnd)->timeout / 1000));
5431
5432 goto out_host_busy_free_buf;
5433 }
5434
5435 if (phba->cfg_poll & ENABLE_FCP_RING_POLLING) {
5436 lpfc_sli_handle_fast_ring_event(phba,
5437 &phba->sli.sli3_ring[LPFC_FCP_RING], HA_R0RE_REQ);
5438
5439 if (phba->cfg_poll & DISABLE_FCP_RING_INT)
5440 lpfc_poll_rearm_timer(phba);
5441 }
5442
5443 if (phba->cfg_xri_rebalancing)
5444 lpfc_keep_pvt_pool_above_lowwm(phba, lpfc_cmd->hdwq_no);
5445
5446 return 0;
5447
5448 out_host_busy_free_buf:
5449 idx = lpfc_cmd->hdwq_no;
5450 lpfc_scsi_unprep_dma_buf(phba, lpfc_cmd);
5451 if (phba->sli4_hba.hdwq) {
5452 switch (lpfc_cmd->fcp_cmnd->fcpCntl3) {
5453 case WRITE_DATA:
5454 phba->sli4_hba.hdwq[idx].scsi_cstat.output_requests--;
5455 break;
5456 case READ_DATA:
5457 phba->sli4_hba.hdwq[idx].scsi_cstat.input_requests--;
5458 break;
5459 default:
5460 phba->sli4_hba.hdwq[idx].scsi_cstat.control_requests--;
5461 }
5462 }
5463 out_host_busy_release_buf:
5464 lpfc_release_scsi_buf(phba, lpfc_cmd);
5465 out_host_busy:
5466 lpfc_update_cmf_cmpl(phba, LPFC_CGN_NOT_SENT, scsi_bufflen(cmnd),
5467 shost);
5468 return SCSI_MLQUEUE_HOST_BUSY;
5469
5470 out_tgt_busy2:
5471 lpfc_update_cmf_cmpl(phba, LPFC_CGN_NOT_SENT, scsi_bufflen(cmnd),
5472 shost);
5473 out_tgt_busy1:
5474 return SCSI_MLQUEUE_TARGET_BUSY;
5475
5476 out_fail_command_release_buf:
5477 lpfc_release_scsi_buf(phba, lpfc_cmd);
5478 lpfc_update_cmf_cmpl(phba, LPFC_CGN_NOT_SENT, scsi_bufflen(cmnd),
5479 shost);
5480
5481 out_fail_command:
5482 scsi_done(cmnd);
5483 return 0;
5484 }
5485
5486 /*
5487 * lpfc_vmid_vport_cleanup - cleans up the resources associated with a vport
5488 * @vport: The virtual port for which this call is being executed.
5489 */
lpfc_vmid_vport_cleanup(struct lpfc_vport * vport)5490 void lpfc_vmid_vport_cleanup(struct lpfc_vport *vport)
5491 {
5492 u32 bucket;
5493 struct lpfc_vmid *cur;
5494
5495 if (vport->port_type == LPFC_PHYSICAL_PORT)
5496 timer_delete_sync(&vport->phba->inactive_vmid_poll);
5497
5498 kfree(vport->qfpa_res);
5499 kfree(vport->vmid_priority.vmid_range);
5500 kfree(vport->vmid);
5501
5502 if (!hash_empty(vport->hash_table))
5503 hash_for_each(vport->hash_table, bucket, cur, hnode)
5504 hash_del(&cur->hnode);
5505
5506 vport->qfpa_res = NULL;
5507 vport->vmid_priority.vmid_range = NULL;
5508 vport->vmid = NULL;
5509 vport->cur_vmid_cnt = 0;
5510 }
5511
5512 /**
5513 * lpfc_abort_handler - scsi_host_template eh_abort_handler entry point
5514 * @cmnd: Pointer to scsi_cmnd data structure.
5515 *
5516 * This routine aborts @cmnd pending in base driver.
5517 *
5518 * Return code :
5519 * 0x2003 - Error
5520 * 0x2002 - Success
5521 **/
5522 static int
lpfc_abort_handler(struct scsi_cmnd * cmnd)5523 lpfc_abort_handler(struct scsi_cmnd *cmnd)
5524 {
5525 struct Scsi_Host *shost = cmnd->device->host;
5526 struct fc_rport *rport = starget_to_rport(scsi_target(cmnd->device));
5527 struct lpfc_vport *vport = (struct lpfc_vport *) shost->hostdata;
5528 struct lpfc_hba *phba = vport->phba;
5529 struct lpfc_iocbq *iocb;
5530 struct lpfc_io_buf *lpfc_cmd;
5531 int ret = SUCCESS, status = 0;
5532 struct lpfc_sli_ring *pring_s4 = NULL;
5533 struct lpfc_sli_ring *pring = NULL;
5534 int ret_val;
5535 unsigned long flags;
5536 DECLARE_WAIT_QUEUE_HEAD_ONSTACK(waitq);
5537
5538 status = fc_block_rport(rport);
5539 if (status != 0 && status != SUCCESS)
5540 return status;
5541
5542 lpfc_cmd = (struct lpfc_io_buf *)cmnd->host_scribble;
5543 if (!lpfc_cmd)
5544 return ret;
5545
5546 /* Guard against IO completion being called at same time */
5547 spin_lock_irqsave(&lpfc_cmd->buf_lock, flags);
5548
5549 spin_lock(&phba->hbalock);
5550 /* driver queued commands are in process of being flushed */
5551 if (test_bit(HBA_IOQ_FLUSH, &phba->hba_flag)) {
5552 lpfc_printf_vlog(vport, KERN_WARNING, LOG_FCP,
5553 "3168 SCSI Layer abort requested I/O has been "
5554 "flushed by LLD.\n");
5555 ret = FAILED;
5556 goto out_unlock_hba;
5557 }
5558
5559 if (!lpfc_cmd->pCmd) {
5560 lpfc_printf_vlog(vport, KERN_WARNING, LOG_FCP,
5561 "2873 SCSI Layer I/O Abort Request IO CMPL Status "
5562 "x%x ID %d LUN %llu\n",
5563 SUCCESS, cmnd->device->id, cmnd->device->lun);
5564 goto out_unlock_hba;
5565 }
5566
5567 iocb = &lpfc_cmd->cur_iocbq;
5568 if (phba->sli_rev == LPFC_SLI_REV4) {
5569 /* if the io_wq & pring are gone, the port was reset. */
5570 if (!phba->sli4_hba.hdwq[iocb->hba_wqidx].io_wq ||
5571 !phba->sli4_hba.hdwq[iocb->hba_wqidx].io_wq->pring) {
5572 lpfc_printf_vlog(vport, KERN_WARNING, LOG_FCP,
5573 "2877 SCSI Layer I/O Abort Request "
5574 "IO CMPL Status x%x ID %d LUN %llu "
5575 "HBA_SETUP %d\n", FAILED,
5576 cmnd->device->id,
5577 (u64)cmnd->device->lun,
5578 test_bit(HBA_SETUP, &phba->hba_flag));
5579 ret = FAILED;
5580 goto out_unlock_hba;
5581 }
5582 pring_s4 = phba->sli4_hba.hdwq[iocb->hba_wqidx].io_wq->pring;
5583 spin_lock(&pring_s4->ring_lock);
5584 }
5585 /* the command is in process of being cancelled */
5586 if (!(iocb->cmd_flag & LPFC_IO_ON_TXCMPLQ)) {
5587 lpfc_printf_vlog(vport, KERN_WARNING, LOG_FCP,
5588 "3169 SCSI Layer abort requested I/O has been "
5589 "cancelled by LLD.\n");
5590 ret = FAILED;
5591 goto out_unlock_ring;
5592 }
5593 /*
5594 * If pCmd field of the corresponding lpfc_io_buf structure
5595 * points to a different SCSI command, then the driver has
5596 * already completed this command, but the midlayer did not
5597 * see the completion before the eh fired. Just return SUCCESS.
5598 */
5599 if (lpfc_cmd->pCmd != cmnd) {
5600 lpfc_printf_vlog(vport, KERN_WARNING, LOG_FCP,
5601 "3170 SCSI Layer abort requested I/O has been "
5602 "completed by LLD.\n");
5603 goto out_unlock_ring;
5604 }
5605
5606 WARN_ON(iocb->io_buf != lpfc_cmd);
5607
5608 /* abort issued in recovery is still in progress */
5609 if (iocb->cmd_flag & LPFC_DRIVER_ABORTED) {
5610 lpfc_printf_vlog(vport, KERN_WARNING, LOG_FCP,
5611 "3389 SCSI Layer I/O Abort Request is pending\n");
5612 if (phba->sli_rev == LPFC_SLI_REV4)
5613 spin_unlock(&pring_s4->ring_lock);
5614 spin_unlock(&phba->hbalock);
5615 spin_unlock_irqrestore(&lpfc_cmd->buf_lock, flags);
5616 goto wait_for_cmpl;
5617 }
5618
5619 lpfc_cmd->waitq = &waitq;
5620 if (phba->sli_rev == LPFC_SLI_REV4) {
5621 spin_unlock(&pring_s4->ring_lock);
5622 ret_val = lpfc_sli4_issue_abort_iotag(phba, iocb,
5623 lpfc_sli_abort_fcp_cmpl);
5624 } else {
5625 pring = &phba->sli.sli3_ring[LPFC_FCP_RING];
5626 ret_val = lpfc_sli_issue_abort_iotag(phba, pring, iocb,
5627 lpfc_sli_abort_fcp_cmpl);
5628 }
5629
5630 /* Make sure HBA is alive */
5631 lpfc_issue_hb_tmo(phba);
5632
5633 if (ret_val != IOCB_SUCCESS) {
5634 /* Indicate the IO is not being aborted by the driver. */
5635 lpfc_cmd->waitq = NULL;
5636 ret = FAILED;
5637 goto out_unlock_hba;
5638 }
5639
5640 /* no longer need the lock after this point */
5641 spin_unlock(&phba->hbalock);
5642 spin_unlock_irqrestore(&lpfc_cmd->buf_lock, flags);
5643
5644 if (phba->cfg_poll & DISABLE_FCP_RING_INT)
5645 lpfc_sli_handle_fast_ring_event(phba,
5646 &phba->sli.sli3_ring[LPFC_FCP_RING], HA_R0RE_REQ);
5647
5648 wait_for_cmpl:
5649 /*
5650 * cmd_flag is set to LPFC_DRIVER_ABORTED before we wait
5651 * for abort to complete.
5652 */
5653 wait_event_timeout(waitq, (lpfc_cmd->pCmd != cmnd),
5654 secs_to_jiffies(2*vport->cfg_devloss_tmo));
5655
5656 spin_lock(&lpfc_cmd->buf_lock);
5657
5658 if (lpfc_cmd->pCmd == cmnd) {
5659 ret = FAILED;
5660 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
5661 "0748 abort handler timed out waiting "
5662 "for aborting I/O (xri:x%x) to complete: "
5663 "ret %#x, ID %d, LUN %llu\n",
5664 iocb->sli4_xritag, ret,
5665 cmnd->device->id, cmnd->device->lun);
5666 }
5667
5668 lpfc_cmd->waitq = NULL;
5669
5670 spin_unlock(&lpfc_cmd->buf_lock);
5671 goto out;
5672
5673 out_unlock_ring:
5674 if (phba->sli_rev == LPFC_SLI_REV4)
5675 spin_unlock(&pring_s4->ring_lock);
5676 out_unlock_hba:
5677 spin_unlock(&phba->hbalock);
5678 spin_unlock_irqrestore(&lpfc_cmd->buf_lock, flags);
5679 out:
5680 lpfc_printf_vlog(vport, KERN_WARNING, LOG_FCP,
5681 "0749 SCSI Layer I/O Abort Request Status x%x ID %d "
5682 "LUN %llu\n", ret, cmnd->device->id,
5683 cmnd->device->lun);
5684 return ret;
5685 }
5686
5687 static char *
lpfc_taskmgmt_name(uint8_t task_mgmt_cmd)5688 lpfc_taskmgmt_name(uint8_t task_mgmt_cmd)
5689 {
5690 switch (task_mgmt_cmd) {
5691 case FCP_ABORT_TASK_SET:
5692 return "ABORT_TASK_SET";
5693 case FCP_CLEAR_TASK_SET:
5694 return "FCP_CLEAR_TASK_SET";
5695 case FCP_BUS_RESET:
5696 return "FCP_BUS_RESET";
5697 case FCP_LUN_RESET:
5698 return "FCP_LUN_RESET";
5699 case FCP_TARGET_RESET:
5700 return "FCP_TARGET_RESET";
5701 case FCP_CLEAR_ACA:
5702 return "FCP_CLEAR_ACA";
5703 case FCP_TERMINATE_TASK:
5704 return "FCP_TERMINATE_TASK";
5705 default:
5706 return "unknown";
5707 }
5708 }
5709
5710
5711 /**
5712 * lpfc_check_fcp_rsp - check the returned fcp_rsp to see if task failed
5713 * @vport: The virtual port for which this call is being executed.
5714 * @lpfc_cmd: Pointer to lpfc_io_buf data structure.
5715 *
5716 * This routine checks the FCP RSP INFO to see if the tsk mgmt command succeded
5717 *
5718 * Return code :
5719 * 0x2003 - Error
5720 * 0x2002 - Success
5721 **/
5722 static int
lpfc_check_fcp_rsp(struct lpfc_vport * vport,struct lpfc_io_buf * lpfc_cmd)5723 lpfc_check_fcp_rsp(struct lpfc_vport *vport, struct lpfc_io_buf *lpfc_cmd)
5724 {
5725 struct fcp_rsp *fcprsp = lpfc_cmd->fcp_rsp;
5726 uint32_t rsp_info;
5727 uint32_t rsp_len;
5728 uint8_t rsp_info_code;
5729 int ret = FAILED;
5730
5731
5732 if (fcprsp == NULL)
5733 lpfc_printf_vlog(vport, KERN_INFO, LOG_FCP,
5734 "0703 fcp_rsp is missing\n");
5735 else {
5736 rsp_info = fcprsp->rspStatus2;
5737 rsp_len = be32_to_cpu(fcprsp->rspRspLen);
5738 rsp_info_code = fcprsp->rspInfo3;
5739
5740
5741 lpfc_printf_vlog(vport, KERN_INFO,
5742 LOG_FCP,
5743 "0706 fcp_rsp valid 0x%x,"
5744 " rsp len=%d code 0x%x\n",
5745 rsp_info,
5746 rsp_len, rsp_info_code);
5747
5748 /* If FCP_RSP_LEN_VALID bit is one, then the FCP_RSP_LEN
5749 * field specifies the number of valid bytes of FCP_RSP_INFO.
5750 * The FCP_RSP_LEN field shall be set to 0x04 or 0x08
5751 */
5752 if ((fcprsp->rspStatus2 & RSP_LEN_VALID) &&
5753 ((rsp_len == 8) || (rsp_len == 4))) {
5754 switch (rsp_info_code) {
5755 case RSP_NO_FAILURE:
5756 lpfc_printf_vlog(vport, KERN_INFO, LOG_FCP,
5757 "0715 Task Mgmt No Failure\n");
5758 ret = SUCCESS;
5759 break;
5760 case RSP_TM_NOT_SUPPORTED: /* TM rejected */
5761 lpfc_printf_vlog(vport, KERN_INFO, LOG_FCP,
5762 "0716 Task Mgmt Target "
5763 "reject\n");
5764 break;
5765 case RSP_TM_NOT_COMPLETED: /* TM failed */
5766 lpfc_printf_vlog(vport, KERN_INFO, LOG_FCP,
5767 "0717 Task Mgmt Target "
5768 "failed TM\n");
5769 break;
5770 case RSP_TM_INVALID_LU: /* TM to invalid LU! */
5771 lpfc_printf_vlog(vport, KERN_INFO, LOG_FCP,
5772 "0718 Task Mgmt to invalid "
5773 "LUN\n");
5774 break;
5775 }
5776 }
5777 }
5778 return ret;
5779 }
5780
5781
5782 /**
5783 * lpfc_send_taskmgmt - Generic SCSI Task Mgmt Handler
5784 * @vport: The virtual port for which this call is being executed.
5785 * @rport: Pointer to remote port
5786 * @tgt_id: Target ID of remote device.
5787 * @lun_id: Lun number for the TMF
5788 * @task_mgmt_cmd: type of TMF to send
5789 *
5790 * This routine builds and sends a TMF (SCSI Task Mgmt Function) to
5791 * a remote port.
5792 *
5793 * Return Code:
5794 * 0x2003 - Error
5795 * 0x2002 - Success.
5796 **/
5797 static int
lpfc_send_taskmgmt(struct lpfc_vport * vport,struct fc_rport * rport,unsigned int tgt_id,uint64_t lun_id,uint8_t task_mgmt_cmd)5798 lpfc_send_taskmgmt(struct lpfc_vport *vport, struct fc_rport *rport,
5799 unsigned int tgt_id, uint64_t lun_id,
5800 uint8_t task_mgmt_cmd)
5801 {
5802 struct lpfc_hba *phba = vport->phba;
5803 struct lpfc_io_buf *lpfc_cmd;
5804 struct lpfc_iocbq *iocbq;
5805 struct lpfc_iocbq *iocbqrsp;
5806 struct lpfc_rport_data *rdata;
5807 struct lpfc_nodelist *pnode;
5808 int ret;
5809 int status;
5810
5811 rdata = rport->dd_data;
5812 if (!rdata || !rdata->pnode)
5813 return FAILED;
5814 pnode = rdata->pnode;
5815
5816 lpfc_cmd = lpfc_get_scsi_buf(phba, rdata->pnode, NULL);
5817 if (lpfc_cmd == NULL)
5818 return FAILED;
5819 lpfc_cmd->timeout = phba->cfg_task_mgmt_tmo;
5820 lpfc_cmd->rdata = rdata;
5821 lpfc_cmd->pCmd = NULL;
5822 lpfc_cmd->ndlp = pnode;
5823
5824 status = phba->lpfc_scsi_prep_task_mgmt_cmd(vport, lpfc_cmd, lun_id,
5825 task_mgmt_cmd);
5826 if (!status) {
5827 lpfc_release_scsi_buf(phba, lpfc_cmd);
5828 return FAILED;
5829 }
5830
5831 iocbq = &lpfc_cmd->cur_iocbq;
5832 iocbqrsp = lpfc_sli_get_iocbq(phba);
5833 if (iocbqrsp == NULL) {
5834 lpfc_release_scsi_buf(phba, lpfc_cmd);
5835 return FAILED;
5836 }
5837 iocbq->cmd_cmpl = lpfc_tskmgmt_def_cmpl;
5838 iocbq->vport = vport;
5839
5840 lpfc_printf_vlog(vport, KERN_INFO, LOG_FCP,
5841 "0702 Issue %s to TGT %d LUN %llu "
5842 "rpi x%x nlp_flag x%lx Data: x%x x%x\n",
5843 lpfc_taskmgmt_name(task_mgmt_cmd), tgt_id, lun_id,
5844 pnode->nlp_rpi, pnode->nlp_flag, iocbq->sli4_xritag,
5845 iocbq->cmd_flag);
5846
5847 status = lpfc_sli_issue_iocb_wait(phba, LPFC_FCP_RING,
5848 iocbq, iocbqrsp, lpfc_cmd->timeout);
5849 if ((status != IOCB_SUCCESS) ||
5850 (get_job_ulpstatus(phba, iocbqrsp) != IOSTAT_SUCCESS)) {
5851 if (status != IOCB_SUCCESS ||
5852 get_job_ulpstatus(phba, iocbqrsp) != IOSTAT_FCP_RSP_ERROR)
5853 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
5854 "0727 TMF %s to TGT %d LUN %llu "
5855 "failed (%d, %d) cmd_flag x%x\n",
5856 lpfc_taskmgmt_name(task_mgmt_cmd),
5857 tgt_id, lun_id,
5858 get_job_ulpstatus(phba, iocbqrsp),
5859 get_job_word4(phba, iocbqrsp),
5860 iocbq->cmd_flag);
5861 /* if ulpStatus != IOCB_SUCCESS, then status == IOCB_SUCCESS */
5862 if (status == IOCB_SUCCESS) {
5863 if (get_job_ulpstatus(phba, iocbqrsp) ==
5864 IOSTAT_FCP_RSP_ERROR)
5865 /* Something in the FCP_RSP was invalid.
5866 * Check conditions */
5867 ret = lpfc_check_fcp_rsp(vport, lpfc_cmd);
5868 else
5869 ret = FAILED;
5870 } else if ((status == IOCB_TIMEDOUT) ||
5871 (status == IOCB_ABORTED)) {
5872 ret = TIMEOUT_ERROR;
5873 } else {
5874 ret = FAILED;
5875 }
5876 } else
5877 ret = SUCCESS;
5878
5879 lpfc_sli_release_iocbq(phba, iocbqrsp);
5880
5881 if (status != IOCB_TIMEDOUT)
5882 lpfc_release_scsi_buf(phba, lpfc_cmd);
5883
5884 return ret;
5885 }
5886
5887 /**
5888 * lpfc_chk_tgt_mapped -
5889 * @vport: The virtual port to check on
5890 * @rport: Pointer to fc_rport data structure.
5891 *
5892 * This routine delays until the scsi target (aka rport) for the
5893 * command exists (is present and logged in) or we declare it non-existent.
5894 *
5895 * Return code :
5896 * 0x2003 - Error
5897 * 0x2002 - Success
5898 **/
5899 static int
lpfc_chk_tgt_mapped(struct lpfc_vport * vport,struct fc_rport * rport)5900 lpfc_chk_tgt_mapped(struct lpfc_vport *vport, struct fc_rport *rport)
5901 {
5902 struct lpfc_rport_data *rdata;
5903 struct lpfc_nodelist *pnode = NULL;
5904 unsigned long later;
5905
5906 rdata = rport->dd_data;
5907 if (!rdata) {
5908 lpfc_printf_vlog(vport, KERN_INFO, LOG_FCP,
5909 "0797 Tgt Map rport failure: rdata x%px\n", rdata);
5910 return FAILED;
5911 }
5912 pnode = rdata->pnode;
5913
5914 /*
5915 * If target is not in a MAPPED state, delay until
5916 * target is rediscovered or devloss timeout expires.
5917 */
5918 later = secs_to_jiffies(2 * vport->cfg_devloss_tmo) + jiffies;
5919 while (time_after(later, jiffies)) {
5920 if (!pnode)
5921 return FAILED;
5922 if (pnode->nlp_state == NLP_STE_MAPPED_NODE)
5923 return SUCCESS;
5924 schedule_timeout_uninterruptible(msecs_to_jiffies(500));
5925 rdata = rport->dd_data;
5926 if (!rdata)
5927 return FAILED;
5928 pnode = rdata->pnode;
5929 }
5930 if (!pnode || (pnode->nlp_state != NLP_STE_MAPPED_NODE))
5931 return FAILED;
5932 return SUCCESS;
5933 }
5934
5935 /**
5936 * lpfc_reset_flush_io_context -
5937 * @vport: The virtual port (scsi_host) for the flush context
5938 * @tgt_id: If aborting by Target contect - specifies the target id
5939 * @lun_id: If aborting by Lun context - specifies the lun id
5940 * @context: specifies the context level to flush at.
5941 *
5942 * After a reset condition via TMF, we need to flush orphaned i/o
5943 * contexts from the adapter. This routine aborts any contexts
5944 * outstanding, then waits for their completions. The wait is
5945 * bounded by devloss_tmo though.
5946 *
5947 * Return code :
5948 * 0x2003 - Error
5949 * 0x2002 - Success
5950 **/
5951 static int
lpfc_reset_flush_io_context(struct lpfc_vport * vport,uint16_t tgt_id,uint64_t lun_id,lpfc_ctx_cmd context)5952 lpfc_reset_flush_io_context(struct lpfc_vport *vport, uint16_t tgt_id,
5953 uint64_t lun_id, lpfc_ctx_cmd context)
5954 {
5955 struct lpfc_hba *phba = vport->phba;
5956 unsigned long later;
5957 int cnt;
5958
5959 cnt = lpfc_sli_sum_iocb(vport, tgt_id, lun_id, context);
5960 if (cnt)
5961 lpfc_sli_abort_taskmgmt(vport,
5962 &phba->sli.sli3_ring[LPFC_FCP_RING],
5963 tgt_id, lun_id, context);
5964 later = secs_to_jiffies(2 * vport->cfg_devloss_tmo) + jiffies;
5965 while (time_after(later, jiffies) && cnt) {
5966 schedule_timeout_uninterruptible(msecs_to_jiffies(20));
5967 cnt = lpfc_sli_sum_iocb(vport, tgt_id, lun_id, context);
5968 }
5969 if (cnt) {
5970 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
5971 "0724 I/O flush failure for context %s : cnt x%x\n",
5972 ((context == LPFC_CTX_LUN) ? "LUN" :
5973 ((context == LPFC_CTX_TGT) ? "TGT" :
5974 ((context == LPFC_CTX_HOST) ? "HOST" : "Unknown"))),
5975 cnt);
5976 return FAILED;
5977 }
5978 return SUCCESS;
5979 }
5980
5981 /**
5982 * lpfc_device_reset_handler - scsi_host_template eh_device_reset entry point
5983 * @cmnd: Pointer to scsi_cmnd data structure.
5984 *
5985 * This routine does a device reset by sending a LUN_RESET task management
5986 * command.
5987 *
5988 * Return code :
5989 * 0x2003 - Error
5990 * 0x2002 - Success
5991 **/
5992 static int
lpfc_device_reset_handler(struct scsi_cmnd * cmnd)5993 lpfc_device_reset_handler(struct scsi_cmnd *cmnd)
5994 {
5995 struct Scsi_Host *shost = cmnd->device->host;
5996 struct fc_rport *rport = starget_to_rport(scsi_target(cmnd->device));
5997 struct lpfc_vport *vport = (struct lpfc_vport *) shost->hostdata;
5998 struct lpfc_rport_data *rdata;
5999 struct lpfc_nodelist *pnode;
6000 unsigned tgt_id = cmnd->device->id;
6001 uint64_t lun_id = cmnd->device->lun;
6002 struct lpfc_scsi_event_header scsi_event;
6003 int status;
6004 u32 logit = LOG_FCP;
6005
6006 if (!rport)
6007 return FAILED;
6008
6009 rdata = rport->dd_data;
6010 if (!rdata || !rdata->pnode) {
6011 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
6012 "0798 Device Reset rdata failure: rdata x%px\n",
6013 rdata);
6014 return FAILED;
6015 }
6016 pnode = rdata->pnode;
6017 status = fc_block_rport(rport);
6018 if (status != 0 && status != SUCCESS)
6019 return status;
6020
6021 status = lpfc_chk_tgt_mapped(vport, rport);
6022 if (status == FAILED) {
6023 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
6024 "0721 Device Reset rport failure: rdata x%px\n", rdata);
6025 return FAILED;
6026 }
6027
6028 scsi_event.event_type = FC_REG_SCSI_EVENT;
6029 scsi_event.subcategory = LPFC_EVENT_LUNRESET;
6030 scsi_event.lun = lun_id;
6031 memcpy(scsi_event.wwpn, &pnode->nlp_portname, sizeof(struct lpfc_name));
6032 memcpy(scsi_event.wwnn, &pnode->nlp_nodename, sizeof(struct lpfc_name));
6033
6034 fc_host_post_vendor_event(shost, fc_get_event_number(),
6035 sizeof(scsi_event), (char *)&scsi_event, LPFC_NL_VENDOR_ID);
6036
6037 status = lpfc_send_taskmgmt(vport, rport, tgt_id, lun_id,
6038 FCP_LUN_RESET);
6039 if (status != SUCCESS)
6040 logit = LOG_TRACE_EVENT;
6041
6042 lpfc_printf_vlog(vport, KERN_ERR, logit,
6043 "0713 SCSI layer issued Device Reset (%d, %llu) "
6044 "return x%x\n", tgt_id, lun_id, status);
6045
6046 /*
6047 * We have to clean up i/o as : they may be orphaned by the TMF;
6048 * or if the TMF failed, they may be in an indeterminate state.
6049 * So, continue on.
6050 * We will report success if all the i/o aborts successfully.
6051 */
6052 if (status == SUCCESS)
6053 status = lpfc_reset_flush_io_context(vport, tgt_id, lun_id,
6054 LPFC_CTX_LUN);
6055
6056 return status;
6057 }
6058
6059 /**
6060 * lpfc_target_reset_handler - scsi_host_template eh_target_reset entry point
6061 * @cmnd: Pointer to scsi_cmnd data structure.
6062 *
6063 * This routine does a target reset by sending a TARGET_RESET task management
6064 * command.
6065 *
6066 * Return code :
6067 * 0x2003 - Error
6068 * 0x2002 - Success
6069 **/
6070 static int
lpfc_target_reset_handler(struct scsi_cmnd * cmnd)6071 lpfc_target_reset_handler(struct scsi_cmnd *cmnd)
6072 {
6073 struct Scsi_Host *shost = cmnd->device->host;
6074 struct fc_rport *rport = starget_to_rport(scsi_target(cmnd->device));
6075 struct lpfc_vport *vport = (struct lpfc_vport *) shost->hostdata;
6076 struct lpfc_rport_data *rdata;
6077 struct lpfc_nodelist *pnode;
6078 unsigned tgt_id = cmnd->device->id;
6079 uint64_t lun_id = cmnd->device->lun;
6080 struct lpfc_scsi_event_header scsi_event;
6081 int status;
6082 u32 logit = LOG_FCP;
6083 u32 dev_loss_tmo = vport->cfg_devloss_tmo;
6084 unsigned long flags;
6085 DECLARE_WAIT_QUEUE_HEAD_ONSTACK(waitq);
6086
6087 if (!rport)
6088 return FAILED;
6089
6090 rdata = rport->dd_data;
6091 if (!rdata || !rdata->pnode) {
6092 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
6093 "0799 Target Reset rdata failure: rdata x%px\n",
6094 rdata);
6095 return FAILED;
6096 }
6097 pnode = rdata->pnode;
6098 status = fc_block_rport(rport);
6099 if (status != 0 && status != SUCCESS)
6100 return status;
6101
6102 status = lpfc_chk_tgt_mapped(vport, rport);
6103 if (status == FAILED) {
6104 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
6105 "0722 Target Reset rport failure: rdata x%px\n", rdata);
6106 if (pnode) {
6107 clear_bit(NLP_NPR_ADISC, &pnode->nlp_flag);
6108 spin_lock_irqsave(&pnode->lock, flags);
6109 pnode->nlp_fcp_info &= ~NLP_FCP_2_DEVICE;
6110 spin_unlock_irqrestore(&pnode->lock, flags);
6111 }
6112 lpfc_reset_flush_io_context(vport, tgt_id, lun_id,
6113 LPFC_CTX_TGT);
6114 return FAST_IO_FAIL;
6115 }
6116
6117 scsi_event.event_type = FC_REG_SCSI_EVENT;
6118 scsi_event.subcategory = LPFC_EVENT_TGTRESET;
6119 scsi_event.lun = 0;
6120 memcpy(scsi_event.wwpn, &pnode->nlp_portname, sizeof(struct lpfc_name));
6121 memcpy(scsi_event.wwnn, &pnode->nlp_nodename, sizeof(struct lpfc_name));
6122
6123 fc_host_post_vendor_event(shost, fc_get_event_number(),
6124 sizeof(scsi_event), (char *)&scsi_event, LPFC_NL_VENDOR_ID);
6125
6126 status = lpfc_send_taskmgmt(vport, rport, tgt_id, lun_id,
6127 FCP_TARGET_RESET);
6128 if (status != SUCCESS) {
6129 logit = LOG_TRACE_EVENT;
6130
6131 /* Issue LOGO, if no LOGO is outstanding */
6132 spin_lock_irqsave(&pnode->lock, flags);
6133 if (!test_bit(NLP_WAIT_FOR_LOGO, &pnode->save_flags) &&
6134 !pnode->logo_waitq) {
6135 pnode->logo_waitq = &waitq;
6136 pnode->nlp_fcp_info &= ~NLP_FCP_2_DEVICE;
6137 spin_unlock_irqrestore(&pnode->lock, flags);
6138 set_bit(NLP_ISSUE_LOGO, &pnode->nlp_flag);
6139 set_bit(NLP_WAIT_FOR_LOGO, &pnode->save_flags);
6140 lpfc_unreg_rpi(vport, pnode);
6141 wait_event_timeout(waitq,
6142 !test_bit(NLP_WAIT_FOR_LOGO,
6143 &pnode->save_flags),
6144 secs_to_jiffies(dev_loss_tmo));
6145
6146 if (test_and_clear_bit(NLP_WAIT_FOR_LOGO,
6147 &pnode->save_flags))
6148 lpfc_printf_vlog(vport, KERN_ERR, logit,
6149 "0725 SCSI layer TGTRST "
6150 "failed & LOGO TMO (%d, %llu) "
6151 "return x%x\n",
6152 tgt_id, lun_id, status);
6153 spin_lock_irqsave(&pnode->lock, flags);
6154 pnode->logo_waitq = NULL;
6155 spin_unlock_irqrestore(&pnode->lock, flags);
6156 status = SUCCESS;
6157
6158 } else {
6159 spin_unlock_irqrestore(&pnode->lock, flags);
6160 status = FAILED;
6161 }
6162 }
6163
6164 lpfc_printf_vlog(vport, KERN_ERR, logit,
6165 "0723 SCSI layer issued Target Reset (%d, %llu) "
6166 "return x%x\n", tgt_id, lun_id, status);
6167
6168 /*
6169 * We have to clean up i/o as : they may be orphaned by the TMF;
6170 * or if the TMF failed, they may be in an indeterminate state.
6171 * So, continue on.
6172 * We will report success if all the i/o aborts successfully.
6173 */
6174 if (status == SUCCESS)
6175 status = lpfc_reset_flush_io_context(vport, tgt_id, lun_id,
6176 LPFC_CTX_TGT);
6177 return status;
6178 }
6179
6180 /**
6181 * lpfc_host_reset_handler - scsi_host_template eh_host_reset_handler entry pt
6182 * @cmnd: Pointer to scsi_cmnd data structure.
6183 *
6184 * This routine does host reset to the adaptor port. It brings the HBA
6185 * offline, performs a board restart, and then brings the board back online.
6186 * The lpfc_offline calls lpfc_sli_hba_down which will abort and local
6187 * reject all outstanding SCSI commands to the host and error returned
6188 * back to SCSI mid-level. As this will be SCSI mid-level's last resort
6189 * of error handling, it will only return error if resetting of the adapter
6190 * is not successful; in all other cases, will return success.
6191 *
6192 * Return code :
6193 * 0x2003 - Error
6194 * 0x2002 - Success
6195 **/
6196 static int
lpfc_host_reset_handler(struct scsi_cmnd * cmnd)6197 lpfc_host_reset_handler(struct scsi_cmnd *cmnd)
6198 {
6199 struct Scsi_Host *shost = cmnd->device->host;
6200 struct lpfc_vport *vport = (struct lpfc_vport *) shost->hostdata;
6201 struct lpfc_hba *phba = vport->phba;
6202 int rc, ret = SUCCESS;
6203
6204 lpfc_printf_vlog(vport, KERN_ERR, LOG_FCP,
6205 "3172 SCSI layer issued Host Reset Data:\n");
6206
6207 lpfc_offline_prep(phba, LPFC_MBX_WAIT);
6208 lpfc_offline(phba);
6209 rc = lpfc_sli_brdrestart(phba);
6210 if (rc)
6211 goto error;
6212
6213 /* Wait for successful restart of adapter */
6214 if (phba->sli_rev < LPFC_SLI_REV4) {
6215 rc = lpfc_sli_chipset_init(phba);
6216 if (rc)
6217 goto error;
6218 }
6219
6220 rc = lpfc_online(phba);
6221 if (rc)
6222 goto error;
6223
6224 lpfc_unblock_mgmt_io(phba);
6225
6226 return ret;
6227 error:
6228 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
6229 "3323 Failed host reset\n");
6230 lpfc_unblock_mgmt_io(phba);
6231 return FAILED;
6232 }
6233
6234 /**
6235 * lpfc_sdev_init - scsi_host_template sdev_init entry point
6236 * @sdev: Pointer to scsi_device.
6237 *
6238 * This routine populates the cmds_per_lun count + 2 scsi_bufs into this host's
6239 * globally available list of scsi buffers. This routine also makes sure scsi
6240 * buffer is not allocated more than HBA limit conveyed to midlayer. This list
6241 * of scsi buffer exists for the lifetime of the driver.
6242 *
6243 * Return codes:
6244 * non-0 - Error
6245 * 0 - Success
6246 **/
6247 static int
lpfc_sdev_init(struct scsi_device * sdev)6248 lpfc_sdev_init(struct scsi_device *sdev)
6249 {
6250 struct lpfc_vport *vport = (struct lpfc_vport *) sdev->host->hostdata;
6251 struct lpfc_hba *phba = vport->phba;
6252 struct fc_rport *rport = starget_to_rport(scsi_target(sdev));
6253 uint32_t total = 0;
6254 uint32_t num_to_alloc = 0;
6255 int num_allocated = 0;
6256 uint32_t sdev_cnt;
6257 struct lpfc_device_data *device_data;
6258 unsigned long flags;
6259 struct lpfc_name target_wwpn;
6260
6261 if (!rport || fc_remote_port_chkready(rport))
6262 return -ENXIO;
6263
6264 if (phba->cfg_fof) {
6265
6266 /*
6267 * Check to see if the device data structure for the lun
6268 * exists. If not, create one.
6269 */
6270
6271 u64_to_wwn(rport->port_name, target_wwpn.u.wwn);
6272 spin_lock_irqsave(&phba->devicelock, flags);
6273 device_data = __lpfc_get_device_data(phba,
6274 &phba->luns,
6275 &vport->fc_portname,
6276 &target_wwpn,
6277 sdev->lun);
6278 if (!device_data) {
6279 spin_unlock_irqrestore(&phba->devicelock, flags);
6280 device_data = lpfc_create_device_data(phba,
6281 &vport->fc_portname,
6282 &target_wwpn,
6283 sdev->lun,
6284 phba->cfg_XLanePriority,
6285 true);
6286 if (!device_data)
6287 return -ENOMEM;
6288 spin_lock_irqsave(&phba->devicelock, flags);
6289 list_add_tail(&device_data->listentry, &phba->luns);
6290 }
6291 device_data->rport_data = rport->dd_data;
6292 device_data->available = true;
6293 spin_unlock_irqrestore(&phba->devicelock, flags);
6294 sdev->hostdata = device_data;
6295 } else {
6296 sdev->hostdata = rport->dd_data;
6297 }
6298 sdev_cnt = atomic_inc_return(&phba->sdev_cnt);
6299
6300 /* For SLI4, all IO buffers are pre-allocated */
6301 if (phba->sli_rev == LPFC_SLI_REV4)
6302 return 0;
6303
6304 /* This code path is now ONLY for SLI3 adapters */
6305
6306 /*
6307 * Populate the cmds_per_lun count scsi_bufs into this host's globally
6308 * available list of scsi buffers. Don't allocate more than the
6309 * HBA limit conveyed to the midlayer via the host structure. The
6310 * formula accounts for the lun_queue_depth + error handlers + 1
6311 * extra. This list of scsi bufs exists for the lifetime of the driver.
6312 */
6313 total = phba->total_scsi_bufs;
6314 num_to_alloc = vport->cfg_lun_queue_depth + 2;
6315
6316 /* If allocated buffers are enough do nothing */
6317 if ((sdev_cnt * (vport->cfg_lun_queue_depth + 2)) < total)
6318 return 0;
6319
6320 /* Allow some exchanges to be available always to complete discovery */
6321 if (total >= phba->cfg_hba_queue_depth - LPFC_DISC_IOCB_BUFF_COUNT ) {
6322 lpfc_printf_vlog(vport, KERN_WARNING, LOG_FCP,
6323 "0704 At limitation of %d preallocated "
6324 "command buffers\n", total);
6325 return 0;
6326 /* Allow some exchanges to be available always to complete discovery */
6327 } else if (total + num_to_alloc >
6328 phba->cfg_hba_queue_depth - LPFC_DISC_IOCB_BUFF_COUNT ) {
6329 lpfc_printf_vlog(vport, KERN_WARNING, LOG_FCP,
6330 "0705 Allocation request of %d "
6331 "command buffers will exceed max of %d. "
6332 "Reducing allocation request to %d.\n",
6333 num_to_alloc, phba->cfg_hba_queue_depth,
6334 (phba->cfg_hba_queue_depth - total));
6335 num_to_alloc = phba->cfg_hba_queue_depth - total;
6336 }
6337 num_allocated = lpfc_new_scsi_buf_s3(vport, num_to_alloc);
6338 if (num_to_alloc != num_allocated) {
6339 lpfc_printf_vlog(vport, KERN_ERR, LOG_TRACE_EVENT,
6340 "0708 Allocation request of %d "
6341 "command buffers did not succeed. "
6342 "Allocated %d buffers.\n",
6343 num_to_alloc, num_allocated);
6344 }
6345 if (num_allocated > 0)
6346 phba->total_scsi_bufs += num_allocated;
6347 return 0;
6348 }
6349
6350 /**
6351 * lpfc_sdev_configure - scsi_host_template sdev_configure entry point
6352 * @sdev: Pointer to scsi_device.
6353 * @lim: Request queue limits.
6354 *
6355 * This routine configures following items
6356 * - Tag command queuing support for @sdev if supported.
6357 * - Enable SLI polling for fcp ring if ENABLE_FCP_RING_POLLING flag is set.
6358 *
6359 * Return codes:
6360 * 0 - Success
6361 **/
6362 static int
lpfc_sdev_configure(struct scsi_device * sdev,struct queue_limits * lim)6363 lpfc_sdev_configure(struct scsi_device *sdev, struct queue_limits *lim)
6364 {
6365 struct lpfc_vport *vport = (struct lpfc_vport *) sdev->host->hostdata;
6366 struct lpfc_hba *phba = vport->phba;
6367
6368 scsi_change_queue_depth(sdev, vport->cfg_lun_queue_depth);
6369
6370 if (phba->cfg_poll & ENABLE_FCP_RING_POLLING) {
6371 lpfc_sli_handle_fast_ring_event(phba,
6372 &phba->sli.sli3_ring[LPFC_FCP_RING], HA_R0RE_REQ);
6373 if (phba->cfg_poll & DISABLE_FCP_RING_INT)
6374 lpfc_poll_rearm_timer(phba);
6375 }
6376
6377 return 0;
6378 }
6379
6380 /**
6381 * lpfc_sdev_destroy - sdev_destroy entry point of SHT data structure
6382 * @sdev: Pointer to scsi_device.
6383 *
6384 * This routine sets @sdev hostatdata filed to null.
6385 **/
6386 static void
lpfc_sdev_destroy(struct scsi_device * sdev)6387 lpfc_sdev_destroy(struct scsi_device *sdev)
6388 {
6389 struct lpfc_vport *vport = (struct lpfc_vport *) sdev->host->hostdata;
6390 struct lpfc_hba *phba = vport->phba;
6391 unsigned long flags;
6392 struct lpfc_device_data *device_data = sdev->hostdata;
6393
6394 atomic_dec(&phba->sdev_cnt);
6395 if ((phba->cfg_fof) && (device_data)) {
6396 spin_lock_irqsave(&phba->devicelock, flags);
6397 device_data->available = false;
6398 if (!device_data->oas_enabled)
6399 lpfc_delete_device_data(phba, device_data);
6400 spin_unlock_irqrestore(&phba->devicelock, flags);
6401 }
6402 sdev->hostdata = NULL;
6403 return;
6404 }
6405
6406 /**
6407 * lpfc_create_device_data - creates and initializes device data structure for OAS
6408 * @phba: Pointer to host bus adapter structure.
6409 * @vport_wwpn: Pointer to vport's wwpn information
6410 * @target_wwpn: Pointer to target's wwpn information
6411 * @lun: Lun on target
6412 * @pri: Priority
6413 * @atomic_create: Flag to indicate if memory should be allocated using the
6414 * GFP_ATOMIC flag or not.
6415 *
6416 * This routine creates a device data structure which will contain identifying
6417 * information for the device (host wwpn, target wwpn, lun), state of OAS,
6418 * whether or not the corresponding lun is available by the system,
6419 * and pointer to the rport data.
6420 *
6421 * Return codes:
6422 * NULL - Error
6423 * Pointer to lpfc_device_data - Success
6424 **/
6425 struct lpfc_device_data*
lpfc_create_device_data(struct lpfc_hba * phba,struct lpfc_name * vport_wwpn,struct lpfc_name * target_wwpn,uint64_t lun,uint32_t pri,bool atomic_create)6426 lpfc_create_device_data(struct lpfc_hba *phba, struct lpfc_name *vport_wwpn,
6427 struct lpfc_name *target_wwpn, uint64_t lun,
6428 uint32_t pri, bool atomic_create)
6429 {
6430
6431 struct lpfc_device_data *lun_info;
6432 gfp_t memory_flags;
6433
6434 if (unlikely(!phba) || !vport_wwpn || !target_wwpn ||
6435 !(phba->cfg_fof))
6436 return NULL;
6437
6438 /* Attempt to create the device data to contain lun info */
6439
6440 if (atomic_create)
6441 memory_flags = GFP_ATOMIC;
6442 else
6443 memory_flags = GFP_KERNEL;
6444 lun_info = mempool_alloc(phba->device_data_mem_pool, memory_flags);
6445 if (!lun_info)
6446 return NULL;
6447 INIT_LIST_HEAD(&lun_info->listentry);
6448 lun_info->rport_data = NULL;
6449 memcpy(&lun_info->device_id.vport_wwpn, vport_wwpn,
6450 sizeof(struct lpfc_name));
6451 memcpy(&lun_info->device_id.target_wwpn, target_wwpn,
6452 sizeof(struct lpfc_name));
6453 lun_info->device_id.lun = lun;
6454 lun_info->oas_enabled = false;
6455 lun_info->priority = pri;
6456 lun_info->available = false;
6457 return lun_info;
6458 }
6459
6460 /**
6461 * lpfc_delete_device_data - frees a device data structure for OAS
6462 * @phba: Pointer to host bus adapter structure.
6463 * @lun_info: Pointer to device data structure to free.
6464 *
6465 * This routine frees the previously allocated device data structure passed.
6466 *
6467 **/
6468 void
lpfc_delete_device_data(struct lpfc_hba * phba,struct lpfc_device_data * lun_info)6469 lpfc_delete_device_data(struct lpfc_hba *phba,
6470 struct lpfc_device_data *lun_info)
6471 {
6472
6473 if (unlikely(!phba) || !lun_info ||
6474 !(phba->cfg_fof))
6475 return;
6476
6477 if (!list_empty(&lun_info->listentry))
6478 list_del(&lun_info->listentry);
6479 mempool_free(lun_info, phba->device_data_mem_pool);
6480 return;
6481 }
6482
6483 /**
6484 * __lpfc_get_device_data - returns the device data for the specified lun
6485 * @phba: Pointer to host bus adapter structure.
6486 * @list: Point to list to search.
6487 * @vport_wwpn: Pointer to vport's wwpn information
6488 * @target_wwpn: Pointer to target's wwpn information
6489 * @lun: Lun on target
6490 *
6491 * This routine searches the list passed for the specified lun's device data.
6492 * This function does not hold locks, it is the responsibility of the caller
6493 * to ensure the proper lock is held before calling the function.
6494 *
6495 * Return codes:
6496 * NULL - Error
6497 * Pointer to lpfc_device_data - Success
6498 **/
6499 struct lpfc_device_data*
__lpfc_get_device_data(struct lpfc_hba * phba,struct list_head * list,struct lpfc_name * vport_wwpn,struct lpfc_name * target_wwpn,uint64_t lun)6500 __lpfc_get_device_data(struct lpfc_hba *phba, struct list_head *list,
6501 struct lpfc_name *vport_wwpn,
6502 struct lpfc_name *target_wwpn, uint64_t lun)
6503 {
6504
6505 struct lpfc_device_data *lun_info;
6506
6507 if (unlikely(!phba) || !list || !vport_wwpn || !target_wwpn ||
6508 !phba->cfg_fof)
6509 return NULL;
6510
6511 /* Check to see if the lun is already enabled for OAS. */
6512
6513 list_for_each_entry(lun_info, list, listentry) {
6514 if ((memcmp(&lun_info->device_id.vport_wwpn, vport_wwpn,
6515 sizeof(struct lpfc_name)) == 0) &&
6516 (memcmp(&lun_info->device_id.target_wwpn, target_wwpn,
6517 sizeof(struct lpfc_name)) == 0) &&
6518 (lun_info->device_id.lun == lun))
6519 return lun_info;
6520 }
6521
6522 return NULL;
6523 }
6524
6525 /**
6526 * lpfc_find_next_oas_lun - searches for the next oas lun
6527 * @phba: Pointer to host bus adapter structure.
6528 * @vport_wwpn: Pointer to vport's wwpn information
6529 * @target_wwpn: Pointer to target's wwpn information
6530 * @starting_lun: Pointer to the lun to start searching for
6531 * @found_vport_wwpn: Pointer to the found lun's vport wwpn information
6532 * @found_target_wwpn: Pointer to the found lun's target wwpn information
6533 * @found_lun: Pointer to the found lun.
6534 * @found_lun_status: Pointer to status of the found lun.
6535 * @found_lun_pri: Pointer to priority of the found lun.
6536 *
6537 * This routine searches the luns list for the specified lun
6538 * or the first lun for the vport/target. If the vport wwpn contains
6539 * a zero value then a specific vport is not specified. In this case
6540 * any vport which contains the lun will be considered a match. If the
6541 * target wwpn contains a zero value then a specific target is not specified.
6542 * In this case any target which contains the lun will be considered a
6543 * match. If the lun is found, the lun, vport wwpn, target wwpn and lun status
6544 * are returned. The function will also return the next lun if available.
6545 * If the next lun is not found, starting_lun parameter will be set to
6546 * NO_MORE_OAS_LUN.
6547 *
6548 * Return codes:
6549 * non-0 - Error
6550 * 0 - Success
6551 **/
6552 bool
lpfc_find_next_oas_lun(struct lpfc_hba * phba,struct lpfc_name * vport_wwpn,struct lpfc_name * target_wwpn,uint64_t * starting_lun,struct lpfc_name * found_vport_wwpn,struct lpfc_name * found_target_wwpn,uint64_t * found_lun,uint32_t * found_lun_status,uint32_t * found_lun_pri)6553 lpfc_find_next_oas_lun(struct lpfc_hba *phba, struct lpfc_name *vport_wwpn,
6554 struct lpfc_name *target_wwpn, uint64_t *starting_lun,
6555 struct lpfc_name *found_vport_wwpn,
6556 struct lpfc_name *found_target_wwpn,
6557 uint64_t *found_lun,
6558 uint32_t *found_lun_status,
6559 uint32_t *found_lun_pri)
6560 {
6561
6562 unsigned long flags;
6563 struct lpfc_device_data *lun_info;
6564 struct lpfc_device_id *device_id;
6565 uint64_t lun;
6566 bool found = false;
6567
6568 if (unlikely(!phba) || !vport_wwpn || !target_wwpn ||
6569 !starting_lun || !found_vport_wwpn ||
6570 !found_target_wwpn || !found_lun || !found_lun_status ||
6571 (*starting_lun == NO_MORE_OAS_LUN) ||
6572 !phba->cfg_fof)
6573 return false;
6574
6575 lun = *starting_lun;
6576 *found_lun = NO_MORE_OAS_LUN;
6577 *starting_lun = NO_MORE_OAS_LUN;
6578
6579 /* Search for lun or the lun closet in value */
6580
6581 spin_lock_irqsave(&phba->devicelock, flags);
6582 list_for_each_entry(lun_info, &phba->luns, listentry) {
6583 if (((wwn_to_u64(vport_wwpn->u.wwn) == 0) ||
6584 (memcmp(&lun_info->device_id.vport_wwpn, vport_wwpn,
6585 sizeof(struct lpfc_name)) == 0)) &&
6586 ((wwn_to_u64(target_wwpn->u.wwn) == 0) ||
6587 (memcmp(&lun_info->device_id.target_wwpn, target_wwpn,
6588 sizeof(struct lpfc_name)) == 0)) &&
6589 (lun_info->oas_enabled)) {
6590 device_id = &lun_info->device_id;
6591 if ((!found) &&
6592 ((lun == FIND_FIRST_OAS_LUN) ||
6593 (device_id->lun == lun))) {
6594 *found_lun = device_id->lun;
6595 memcpy(found_vport_wwpn,
6596 &device_id->vport_wwpn,
6597 sizeof(struct lpfc_name));
6598 memcpy(found_target_wwpn,
6599 &device_id->target_wwpn,
6600 sizeof(struct lpfc_name));
6601 if (lun_info->available)
6602 *found_lun_status =
6603 OAS_LUN_STATUS_EXISTS;
6604 else
6605 *found_lun_status = 0;
6606 *found_lun_pri = lun_info->priority;
6607 if (phba->cfg_oas_flags & OAS_FIND_ANY_VPORT)
6608 memset(vport_wwpn, 0x0,
6609 sizeof(struct lpfc_name));
6610 if (phba->cfg_oas_flags & OAS_FIND_ANY_TARGET)
6611 memset(target_wwpn, 0x0,
6612 sizeof(struct lpfc_name));
6613 found = true;
6614 } else if (found) {
6615 *starting_lun = device_id->lun;
6616 memcpy(vport_wwpn, &device_id->vport_wwpn,
6617 sizeof(struct lpfc_name));
6618 memcpy(target_wwpn, &device_id->target_wwpn,
6619 sizeof(struct lpfc_name));
6620 break;
6621 }
6622 }
6623 }
6624 spin_unlock_irqrestore(&phba->devicelock, flags);
6625 return found;
6626 }
6627
6628 /**
6629 * lpfc_enable_oas_lun - enables a lun for OAS operations
6630 * @phba: Pointer to host bus adapter structure.
6631 * @vport_wwpn: Pointer to vport's wwpn information
6632 * @target_wwpn: Pointer to target's wwpn information
6633 * @lun: Lun
6634 * @pri: Priority
6635 *
6636 * This routine enables a lun for oas operations. The routines does so by
6637 * doing the following :
6638 *
6639 * 1) Checks to see if the device data for the lun has been created.
6640 * 2) If found, sets the OAS enabled flag if not set and returns.
6641 * 3) Otherwise, creates a device data structure.
6642 * 4) If successfully created, indicates the device data is for an OAS lun,
6643 * indicates the lun is not available and add to the list of luns.
6644 *
6645 * Return codes:
6646 * false - Error
6647 * true - Success
6648 **/
6649 bool
lpfc_enable_oas_lun(struct lpfc_hba * phba,struct lpfc_name * vport_wwpn,struct lpfc_name * target_wwpn,uint64_t lun,uint8_t pri)6650 lpfc_enable_oas_lun(struct lpfc_hba *phba, struct lpfc_name *vport_wwpn,
6651 struct lpfc_name *target_wwpn, uint64_t lun, uint8_t pri)
6652 {
6653
6654 struct lpfc_device_data *lun_info;
6655 unsigned long flags;
6656
6657 if (unlikely(!phba) || !vport_wwpn || !target_wwpn ||
6658 !phba->cfg_fof)
6659 return false;
6660
6661 spin_lock_irqsave(&phba->devicelock, flags);
6662
6663 /* Check to see if the device data for the lun has been created */
6664 lun_info = __lpfc_get_device_data(phba, &phba->luns, vport_wwpn,
6665 target_wwpn, lun);
6666 if (lun_info) {
6667 if (!lun_info->oas_enabled)
6668 lun_info->oas_enabled = true;
6669 lun_info->priority = pri;
6670 spin_unlock_irqrestore(&phba->devicelock, flags);
6671 return true;
6672 }
6673
6674 /* Create an lun info structure and add to list of luns */
6675 lun_info = lpfc_create_device_data(phba, vport_wwpn, target_wwpn, lun,
6676 pri, true);
6677 if (lun_info) {
6678 lun_info->oas_enabled = true;
6679 lun_info->priority = pri;
6680 lun_info->available = false;
6681 list_add_tail(&lun_info->listentry, &phba->luns);
6682 spin_unlock_irqrestore(&phba->devicelock, flags);
6683 return true;
6684 }
6685 spin_unlock_irqrestore(&phba->devicelock, flags);
6686 return false;
6687 }
6688
6689 /**
6690 * lpfc_disable_oas_lun - disables a lun for OAS operations
6691 * @phba: Pointer to host bus adapter structure.
6692 * @vport_wwpn: Pointer to vport's wwpn information
6693 * @target_wwpn: Pointer to target's wwpn information
6694 * @lun: Lun
6695 * @pri: Priority
6696 *
6697 * This routine disables a lun for oas operations. The routines does so by
6698 * doing the following :
6699 *
6700 * 1) Checks to see if the device data for the lun is created.
6701 * 2) If present, clears the flag indicating this lun is for OAS.
6702 * 3) If the lun is not available by the system, the device data is
6703 * freed.
6704 *
6705 * Return codes:
6706 * false - Error
6707 * true - Success
6708 **/
6709 bool
lpfc_disable_oas_lun(struct lpfc_hba * phba,struct lpfc_name * vport_wwpn,struct lpfc_name * target_wwpn,uint64_t lun,uint8_t pri)6710 lpfc_disable_oas_lun(struct lpfc_hba *phba, struct lpfc_name *vport_wwpn,
6711 struct lpfc_name *target_wwpn, uint64_t lun, uint8_t pri)
6712 {
6713
6714 struct lpfc_device_data *lun_info;
6715 unsigned long flags;
6716
6717 if (unlikely(!phba) || !vport_wwpn || !target_wwpn ||
6718 !phba->cfg_fof)
6719 return false;
6720
6721 spin_lock_irqsave(&phba->devicelock, flags);
6722
6723 /* Check to see if the lun is available. */
6724 lun_info = __lpfc_get_device_data(phba,
6725 &phba->luns, vport_wwpn,
6726 target_wwpn, lun);
6727 if (lun_info) {
6728 lun_info->oas_enabled = false;
6729 lun_info->priority = pri;
6730 if (!lun_info->available)
6731 lpfc_delete_device_data(phba, lun_info);
6732 spin_unlock_irqrestore(&phba->devicelock, flags);
6733 return true;
6734 }
6735
6736 spin_unlock_irqrestore(&phba->devicelock, flags);
6737 return false;
6738 }
6739
6740 static int
lpfc_no_command(struct Scsi_Host * shost,struct scsi_cmnd * cmnd)6741 lpfc_no_command(struct Scsi_Host *shost, struct scsi_cmnd *cmnd)
6742 {
6743 return SCSI_MLQUEUE_HOST_BUSY;
6744 }
6745
6746 static int
lpfc_init_no_sdev(struct scsi_device * sdev)6747 lpfc_init_no_sdev(struct scsi_device *sdev)
6748 {
6749 return -ENODEV;
6750 }
6751
6752 static int
lpfc_config_no_sdev(struct scsi_device * sdev,struct queue_limits * lim)6753 lpfc_config_no_sdev(struct scsi_device *sdev, struct queue_limits *lim)
6754 {
6755 return -ENODEV;
6756 }
6757
6758 struct scsi_host_template lpfc_template_nvme = {
6759 .module = THIS_MODULE,
6760 .name = LPFC_DRIVER_NAME,
6761 .proc_name = LPFC_DRIVER_NAME,
6762 .info = lpfc_info,
6763 .queuecommand = lpfc_no_command,
6764 .sdev_init = lpfc_init_no_sdev,
6765 .sdev_configure = lpfc_config_no_sdev,
6766 .scan_finished = lpfc_scan_finished,
6767 .this_id = -1,
6768 .sg_tablesize = 1,
6769 .cmd_per_lun = 1,
6770 .shost_groups = lpfc_hba_groups,
6771 .max_sectors = 0xFFFFFFFF,
6772 .vendor_id = LPFC_NL_VENDOR_ID,
6773 .track_queue_depth = 0,
6774 };
6775
6776 struct scsi_host_template lpfc_template = {
6777 .module = THIS_MODULE,
6778 .name = LPFC_DRIVER_NAME,
6779 .proc_name = LPFC_DRIVER_NAME,
6780 .info = lpfc_info,
6781 .queuecommand = lpfc_queuecommand,
6782 .eh_timed_out = fc_eh_timed_out,
6783 .eh_should_retry_cmd = fc_eh_should_retry_cmd,
6784 .eh_abort_handler = lpfc_abort_handler,
6785 .eh_device_reset_handler = lpfc_device_reset_handler,
6786 .eh_target_reset_handler = lpfc_target_reset_handler,
6787 .eh_host_reset_handler = lpfc_host_reset_handler,
6788 .sdev_init = lpfc_sdev_init,
6789 .sdev_configure = lpfc_sdev_configure,
6790 .sdev_destroy = lpfc_sdev_destroy,
6791 .scan_finished = lpfc_scan_finished,
6792 .this_id = -1,
6793 .sg_tablesize = LPFC_DEFAULT_SG_SEG_CNT,
6794 .cmd_per_lun = LPFC_CMD_PER_LUN,
6795 .shost_groups = lpfc_hba_groups,
6796 .max_sectors = 0xFFFFFFFF,
6797 .vendor_id = LPFC_NL_VENDOR_ID,
6798 .change_queue_depth = scsi_change_queue_depth,
6799 .track_queue_depth = 1,
6800 };
6801
6802 struct scsi_host_template lpfc_vport_template = {
6803 .module = THIS_MODULE,
6804 .name = LPFC_DRIVER_NAME,
6805 .proc_name = LPFC_DRIVER_NAME,
6806 .info = lpfc_info,
6807 .queuecommand = lpfc_queuecommand,
6808 .eh_timed_out = fc_eh_timed_out,
6809 .eh_should_retry_cmd = fc_eh_should_retry_cmd,
6810 .eh_abort_handler = lpfc_abort_handler,
6811 .eh_device_reset_handler = lpfc_device_reset_handler,
6812 .eh_target_reset_handler = lpfc_target_reset_handler,
6813 .eh_bus_reset_handler = NULL,
6814 .eh_host_reset_handler = NULL,
6815 .sdev_init = lpfc_sdev_init,
6816 .sdev_configure = lpfc_sdev_configure,
6817 .sdev_destroy = lpfc_sdev_destroy,
6818 .scan_finished = lpfc_scan_finished,
6819 .this_id = -1,
6820 .sg_tablesize = LPFC_DEFAULT_SG_SEG_CNT,
6821 .cmd_per_lun = LPFC_CMD_PER_LUN,
6822 .shost_groups = lpfc_vport_groups,
6823 .max_sectors = 0xFFFFFFFF,
6824 .vendor_id = 0,
6825 .change_queue_depth = scsi_change_queue_depth,
6826 .track_queue_depth = 1,
6827 };
6828