1 /* fc.c: Generic Fibre Channel and FC4 SCSI driver.
3 * Copyright (C) 1997,1998,1999 Jakub Jelinek (jj@ultra.linux.cz)
4 * Copyright (C) 1997,1998 Jirka Hanika (geo@ff.cuni.cz)
6 * There are two kinds of Fibre Channel adapters used in Linux. Either
7 * the adapter is "smart" and does all FC bookkeeping by itself and
8 * just presents a standard SCSI interface to the operating system
9 * (that's e.g. the case with Qlogic FC cards), or leaves most of the FC
10 * bookkeeping to the OS (e.g. soc, socal). Drivers for the former adapters
11 * will look like normal SCSI drivers (with the exception of max_id will be
12 * usually 127), the latter on the other side allows SCSI, IP over FC and other
13 * protocols. This driver tree is for the latter adapters.
15 * This file should support both Point-to-Point and Arbitrated Loop topologies.
18 * Fibre Channel Physical & Signaling Interface (FC-PH), dpANS, 1994
19 * dpANS Fibre Channel Protocol for SCSI (X3.269-199X), Rev. 012, 1995
20 * Fibre Channel Arbitrated Loop (FC-AL), Rev. 4.5, 1995
21 * Fibre Channel Private Loop SCSI Direct Attach (FC-PLDA), Rev. 2.1, 1997
24 #include <linux/module.h>
25 #include <linux/kernel.h>
26 #include <linux/jiffies.h>
27 #include <linux/types.h>
28 #include <linux/fcntl.h>
29 #include <linux/interrupt.h>
30 #include <linux/ptrace.h>
31 #include <linux/ioport.h>
33 #include <linux/slab.h>
34 #include <linux/string.h>
35 #include <linux/init.h>
37 #include <asm/pgtable.h>
39 #include <asm/semaphore.h>
41 #include <scsi/scsi_host.h>
45 #define fc_printk printk ("%s: ", fc->name); printk
48 #define FCD(x) fc_printk x;
49 #define FCND(x) printk ("FC: "); printk x;
56 #define dma_alloc_consistent(d,s,p) sbus_alloc_consistent(d,s,p)
57 #define dma_free_consistent(d,s,v,h) sbus_free_consistent(d,s,v,h)
58 #define dma_map_single(d,v,s,dir) sbus_map_single(d,v,s,dir)
59 #define dma_unmap_single(d,h,s,dir) sbus_unmap_single(d,h,s,dir)
60 #define dma_map_sg(d,s,n,dir) sbus_map_sg(d,s,n,dir)
61 #define dma_unmap_sg(d,s,n,dir) sbus_unmap_sg(d,s,n,dir)
63 #define dma_alloc_consistent(d,s,p) pci_alloc_consistent(d,s,p)
64 #define dma_free_consistent(d,s,v,h) pci_free_consistent(d,s,v,h)
65 #define dma_map_single(d,v,s,dir) pci_map_single(d,v,s,dir)
66 #define dma_unmap_single(d,h,s,dir) pci_unmap_single(d,h,s,dir)
67 #define dma_map_sg(d,s,n,dir) pci_map_sg(d,s,n,dir)
68 #define dma_unmap_sg(d,s,n,dir) pci_unmap_sg(d,s,n,dir)
71 #define FCP_CMND(SCpnt) ((fcp_cmnd *)&(SCpnt->SCp))
72 #define FC_SCMND(SCpnt) ((fc_channel *)(SCpnt->device->host->hostdata[0]))
73 #define SC_FCMND(fcmnd) ((struct scsi_cmnd *)((long)fcmnd - (long)&(((struct scsi_cmnd *)0)->SCp)))
75 static int fcp_scsi_queue_it(fc_channel *, struct scsi_cmnd *, fcp_cmnd *, int);
76 void fcp_queue_empty(fc_channel *);
78 static void fcp_scsi_insert_queue (fc_channel *fc, fcp_cmnd *fcmd)
85 fc->scsi_que->prev->next = fcmd;
86 fcmd->prev = fc->scsi_que->prev;
87 fc->scsi_que->prev = fcmd;
88 fcmd->next = fc->scsi_que;
92 static void fcp_scsi_remove_queue (fc_channel *fc, fcp_cmnd *fcmd)
94 if (fcmd == fcmd->next) {
98 if (fcmd == fc->scsi_que)
99 fc->scsi_que = fcmd->next;
100 fcmd->prev->next = fcmd->next;
101 fcmd->next->prev = fcmd->prev;
104 fc_channel *fc_channels = NULL;
106 #define LSMAGIC 620829043
109 struct semaphore sem;
115 struct timer_list timer;
116 unsigned char grace[0];
119 #define LSOMAGIC 654907799
122 struct semaphore sem;
127 struct timer_list timer;
130 #define LSEMAGIC 84482456
133 struct semaphore sem;
136 struct timer_list timer;
139 static void fcp_login_timeout(unsigned long data)
142 FCND(("Login timeout\n"))
146 static void fcp_login_done(fc_channel *fc, int i, int status)
151 ls *l = (ls *)fc->ls;
153 FCD(("Login done %d %d\n", i, status))
155 if (fc->state == FC_STATE_FPORT_OK) {
156 FCD(("Additional FPORT_OK received with status %d\n", status))
160 case FC_STATUS_OK: /* Oh, we found a fabric */
161 case FC_STATUS_P_RJT: /* Oh, we haven't found any */
162 fc->state = FC_STATE_FPORT_OK;
164 plogi = l->logi + 3 * i;
165 dma_unmap_single (fc->dev, fcmd->cmd, 3 * sizeof(logi),
167 plogi->code = LS_PLOGI;
168 memcpy (&plogi->nport_wwn, &fc->wwn_nport, sizeof(fc_wwn));
169 memcpy (&plogi->node_wwn, &fc->wwn_node, sizeof(fc_wwn));
170 memcpy (&plogi->common, fc->common_svc, sizeof(common_svc_parm));
171 memcpy (&plogi->class1, fc->class_svcs, 3*sizeof(svc_parm));
173 fcmd->token += l->count;
174 FILL_FCHDR_RCTL_DID(fch, R_CTL_ELS_REQ, fc->did);
175 FILL_FCHDR_SID(fch, fc->sid);
179 unsigned *x = (unsigned *)plogi;
181 for (i = 0; i < 21; i++)
182 printk ("%08x ", x[i]);
186 fcmd->cmd = dma_map_single (fc->dev, plogi, 3 * sizeof(logi),
188 fcmd->rsp = fcmd->cmd + 2 * sizeof(logi);
189 if (fc->hw_enque (fc, fcmd))
190 printk ("FC: Cannot enque PLOGI packet on %s\n", fc->name);
192 case FC_STATUS_ERR_OFFLINE:
193 fc->state = FC_STATE_MAYBEOFFLINE;
194 FCD (("FC is offline %d\n", l->grace[i]))
197 printk ("FLOGI failed for %s with status %d\n", fc->name, status);
198 /* Do some sort of error recovery here */
203 if (fc->state != FC_STATE_FPORT_OK) {
204 FCD(("Unexpected N-PORT rsp received"))
209 plogi = l->logi + 3 * i;
210 dma_unmap_single (fc->dev, l->fcmds[i].cmd, 3 * sizeof(logi),
212 if (!fc->wwn_dest.lo && !fc->wwn_dest.hi) {
213 memcpy (&fc->wwn_dest, &plogi[1].node_wwn, sizeof(fc_wwn));
214 FCD(("Dest WWN %08x%08x\n", *(u32 *)&fc->wwn_dest, fc->wwn_dest.lo))
215 } else if (fc->wwn_dest.lo != plogi[1].node_wwn.lo ||
216 fc->wwn_dest.hi != plogi[1].node_wwn.hi) {
217 printk ("%s: mismatch in wwns. Got %08x%08x, expected %08x%08x\n",
219 *(u32 *)&plogi[1].node_wwn, plogi[1].node_wwn.lo,
220 *(u32 *)&fc->wwn_dest, fc->wwn_dest.lo);
222 fc->state = FC_STATE_ONLINE;
223 printk ("%s: ONLINE\n", fc->name);
224 if (atomic_dec_and_test (&l->todo))
227 case FC_STATUS_ERR_OFFLINE:
228 fc->state = FC_STATE_OFFLINE;
229 dma_unmap_single (fc->dev, l->fcmds[i].cmd, 3 * sizeof(logi),
231 printk ("%s: FC is offline\n", fc->name);
232 if (atomic_dec_and_test (&l->todo))
236 printk ("PLOGI failed for %s with status %d\n", fc->name, status);
237 /* Do some sort of error recovery here */
243 static void fcp_report_map_done(fc_channel *fc, int i, int status)
248 ls *l = (ls *)fc->ls;
251 FCD(("Report map done %d %d\n", i, status))
253 case FC_STATUS_OK: /* Ok, let's have a fun on a loop */
254 dma_unmap_single (fc->dev, l->fcmds[i].cmd, 3 * sizeof(logi),
256 p = (fc_al_posmap *)(l->logi + 3 * i);
260 FCD(("%08x\n", u[0]))
262 FCD(("%08x.%08x.%08x.%08x.%08x.%08x.%08x.%08x\n", u[0],u[1],u[2],u[3],u[4],u[5],u[6],u[7]))
265 if ((p->magic & 0xffff0000) != FC_AL_LILP || !p->len) {
266 printk ("FC: Bad magic from REPORT_AL_MAP on %s - %08x\n", fc->name, p->magic);
267 fc->state = FC_STATE_OFFLINE;
269 fc->posmap = kzalloc(sizeof(fcp_posmap)+p->len, GFP_KERNEL);
271 printk("FC: Not enough memory, offlining channel\n");
272 fc->state = FC_STATE_OFFLINE;
275 /* FIXME: This is where SOCAL transfers our AL-PA.
276 Keep it here till we found out what other cards do... */
277 fc->sid = (p->magic & 0xff);
278 for (i = 0; i < p->len; i++)
279 if (p->alpa[i] == fc->sid)
288 fc->posmap->len = p->len;
289 for (j = 0; j < p->len; j++) {
291 fc->posmap->list[j] = p->alpa[i++];
293 fc->state = FC_STATE_ONLINE;
296 printk ("%s: ONLINE\n", fc->name);
297 if (atomic_dec_and_test (&l->todo))
300 case FC_STATUS_POINTTOPOINT: /* We're Point-to-Point, no AL... */
301 FCD(("SID %d DID %d\n", fc->sid, fc->did))
303 dma_unmap_single(fc->dev, fcmd->cmd, 3 * sizeof(logi),
306 memset(l->logi + 3 * i, 0, 3 * sizeof(logi));
307 FILL_FCHDR_RCTL_DID(fch, R_CTL_ELS_REQ, FS_FABRIC_F_PORT);
308 FILL_FCHDR_SID(fch, 0);
309 FILL_FCHDR_TYPE_FCTL(fch, TYPE_EXTENDED_LS, F_CTL_FIRST_SEQ | F_CTL_SEQ_INITIATIVE);
310 FILL_FCHDR_SEQ_DF_SEQ(fch, 0, 0, 0);
311 FILL_FCHDR_OXRX(fch, 0xffff, 0xffff);
313 l->logi [3 * i].code = LS_FLOGI;
314 fcmd->cmd = dma_map_single (fc->dev, l->logi + 3 * i, 3 * sizeof(logi),
316 fcmd->rsp = fcmd->cmd + sizeof(logi);
317 fcmd->cmdlen = sizeof(logi);
318 fcmd->rsplen = sizeof(logi);
319 fcmd->data = (dma_addr_t)NULL;
320 fcmd->class = FC_CLASS_SIMPLE;
321 fcmd->proto = TYPE_EXTENDED_LS;
322 if (fc->hw_enque (fc, fcmd))
323 printk ("FC: Cannot enque FLOGI packet on %s\n", fc->name);
325 case FC_STATUS_ERR_OFFLINE:
326 fc->state = FC_STATE_MAYBEOFFLINE;
327 FCD (("FC is offline %d\n", l->grace[i]))
330 printk ("FLOGI failed for %s with status %d\n", fc->name, status);
331 /* Do some sort of error recovery here */
336 void fcp_register(fc_channel *fc, u8 type, int unregister)
339 int slots = (fc->can_queue * 3) >> 1;
341 FCND(("Going to %sregister\n", unregister ? "un" : ""))
343 if (type == TYPE_SCSI_FCP) {
345 fc->scsi_cmd_pool = (fcp_cmd *)
346 dma_alloc_consistent (fc->dev,
347 slots * (sizeof (fcp_cmd) + fc->rsp_size),
349 fc->scsi_rsp_pool = (char *)(fc->scsi_cmd_pool + slots);
350 fc->dma_scsi_rsp = fc->dma_scsi_cmd + slots * sizeof (fcp_cmd);
351 fc->scsi_bitmap_end = (slots + 63) & ~63;
352 size = fc->scsi_bitmap_end / 8;
353 fc->scsi_bitmap = kzalloc (size, GFP_KERNEL);
354 set_bit (0, fc->scsi_bitmap);
355 for (i = fc->can_queue; i < fc->scsi_bitmap_end; i++)
356 set_bit (i, fc->scsi_bitmap);
357 fc->scsi_free = fc->can_queue;
358 fc->cmd_slots = kzalloc(slots * sizeof(fcp_cmnd*), GFP_KERNEL);
361 fc->scsi_name[0] = 0;
362 kfree (fc->scsi_bitmap);
363 kfree (fc->cmd_slots);
364 FCND(("Unregistering\n"));
367 if (fc->rst_pkt->eh_state == SCSI_STATE_UNUSED)
370 /* Can't happen. Some memory would be lost. */
371 printk("FC: Reset in progress. Now?!");
375 FCND(("Unregistered\n"));
378 printk ("FC: %segistering unknown type %02x\n", unregister ? "Unr" : "R", type);
381 static void fcp_scsi_done(struct scsi_cmnd *SCpnt);
383 static inline void fcp_scsi_receive(fc_channel *fc, int token, int status, fc_hdr *fch)
388 struct scsi_cmnd *SCpnt;
392 fcmd = fc->cmd_slots[token];
394 rsp = (fcp_rsp *) (fc->scsi_rsp_pool + fc->rsp_size * token);
395 SCpnt = SC_FCMND(fcmd);
397 if (SCpnt->done != fcp_scsi_done)
400 rsp_status = rsp->fcp_status;
401 FCD(("rsp_status %08x status %08x\n", rsp_status, status))
406 if (rsp_status & FCP_STATUS_RESID) {
408 FCD(("Resid %d\n", rsp->fcp_resid))
410 fcp_cmd *cmd = fc->scsi_cmd_pool + token;
414 for (i = 0; i < sizeof(fcp_cmd); i+=4)
415 printk ("%08x ", *(u32 *)(((char *)cmd)+i));
416 printk ("\nResponse ");
417 for (i = 0; i < fc->rsp_size; i+=4)
418 printk ("%08x ", *(u32 *)(((char *)rsp)+i));
424 if (rsp_status & FCP_STATUS_SENSE_LEN) {
425 sense_len = rsp->fcp_sense_len;
426 if (sense_len > sizeof(SCpnt->sense_buffer)) sense_len = sizeof(SCpnt->sense_buffer);
427 memcpy(SCpnt->sense_buffer, ((char *)(rsp+1)), sense_len);
431 dma_unmap_sg(fc->dev, scsi_sglist(SCpnt),
432 scsi_sg_count(SCpnt),
433 SCpnt->sc_data_direction);
436 host_status=DID_ERROR; /* FIXME */
437 FCD(("Wrong FC status %d for token %d\n", status, token))
441 if (status_byte(rsp_status) == QUEUE_FULL) {
442 printk ("%s: (%d,%d) Received rsp_status 0x%x\n", fc->name, SCpnt->device->channel, SCpnt->device->id, rsp_status);
445 SCpnt->result = (host_status << 16) | (rsp_status & 0xff);
447 if (host_status || SCpnt->result || rsp_status) printk("FC: host_status %d, packet status %d\n",
448 host_status, SCpnt->result);
450 SCpnt->done = fcmd->done;
452 clear_bit(token, fc->scsi_bitmap);
454 FCD(("Calling scsi_done with %08x\n", SCpnt->result))
455 SCpnt->scsi_done(SCpnt);
458 void fcp_receive_solicited(fc_channel *fc, int proto, int token, int status, fc_hdr *fch)
461 FCD(("receive_solicited %d %d %d\n", proto, token, status))
464 fcp_scsi_receive(fc, token, status, fch); break;
465 case TYPE_EXTENDED_LS:
466 case PROTO_REPORT_AL_MAP:
469 magic = ((ls *)(fc->ls))->magic;
470 if (magic == LSMAGIC) {
471 ls *l = (ls *)fc->ls;
472 int i = (token >= l->count) ? token - l->count : token;
475 if ((unsigned)i < l->count && l->fcmds[i].fc == fc) {
476 if (proto == TYPE_EXTENDED_LS)
477 fcp_login_done(fc, token, status);
479 fcp_report_map_done(fc, token, status);
483 FCD(("fc %p fc->ls %p fc->cmd_slots %p\n", fc, fc->ls, fc->cmd_slots))
484 if (proto == TYPE_EXTENDED_LS && !fc->ls && fc->cmd_slots) {
487 fcmd = fc->cmd_slots[token];
488 if (fcmd && fcmd->ls && ((ls *)(fcmd->ls))->magic == LSEMAGIC) {
489 lse *l = (lse *)fcmd->ls;
497 if (fc->ls && ((lso *)(fc->ls))->magic == LSOMAGIC) {
498 lso *l = (lso *)fc->ls;
500 if ((unsigned)token < l->count && l->fcmds[token].fc == fc) {
501 /* Wow, OFFLINE response arrived :) */
502 FCD(("OFFLINE Response arrived\n"))
503 fc->state = FC_STATE_OFFLINE;
504 if (atomic_dec_and_test (&l->todo))
515 void fcp_state_change(fc_channel *fc, int state)
517 FCD(("state_change %d %d\n", state, fc->state))
518 if (state == FC_STATE_ONLINE && fc->state == FC_STATE_MAYBEOFFLINE)
519 fc->state = FC_STATE_UNINITED;
520 else if (state == FC_STATE_ONLINE)
521 printk (KERN_WARNING "%s: state change to ONLINE\n", fc->name);
523 printk (KERN_ERR "%s: state change to OFFLINE\n", fc->name);
526 int fcp_initialize(fc_channel *fcchain, int count)
533 FCND(("fcp_inititialize %08lx\n", (long)fcp_init))
534 FCND(("fc_channels %08lx\n", (long)fc_channels))
535 FCND((" SID %d DID %d\n", fcchain->sid, fcchain->did))
536 l = kzalloc(sizeof (ls) + count, GFP_KERNEL);
538 printk ("FC: Cannot allocate memory for initialization\n");
543 FCND(("FCP Init for %d channels\n", count))
544 init_MUTEX_LOCKED(&l->sem);
545 init_timer(&l->timer);
546 l->timer.function = fcp_login_timeout;
547 l->timer.data = (unsigned long)l;
548 atomic_set (&l->todo, count);
549 l->logi = kzalloc (count * 3 * sizeof(logi), GFP_KERNEL);
550 l->fcmds = kzalloc (count * sizeof(fcp_cmnd), GFP_KERNEL);
551 if (!l->logi || !l->fcmds) {
555 printk ("FC: Cannot allocate DMA memory for initialization\n");
558 for (fc = fcchain, i = 0; fc && i < count; fc = fc->next, i++) {
559 fc->state = FC_STATE_UNINITED;
560 fc->rst_pkt = NULL; /* kmalloc when first used */
562 /* First try if we are in a AL topology */
563 FCND(("Initializing REPORT_MAP packets\n"))
564 for (fc = fcchain, i = 0; fc && i < count; fc = fc->next, i++) {
568 /* Assumes sizeof(fc_al_posmap) < 3 * sizeof(logi), which is true */
569 fcmd->cmd = dma_map_single (fc->dev, l->logi + 3 * i, 3 * sizeof(logi),
571 fcmd->proto = PROTO_REPORT_AL_MAP;
575 for (retry = 0; retry < 8; retry++) {
577 FCND(("Sending REPORT_MAP/FLOGI/PLOGI packets\n"))
578 for (fc = fcchain, i = 0; fc && i < count; fc = fc->next, i++) {
579 if (fc->state == FC_STATE_ONLINE || fc->state == FC_STATE_OFFLINE)
581 disable_irq(fc->irq);
582 if (fc->state == FC_STATE_MAYBEOFFLINE) {
587 fc->state = FC_STATE_OFFLINE;
589 dma_unmap_single (fc->dev, l->fcmds[i].cmd, 3 * sizeof(logi), DMA_BIDIRECTIONAL);
590 if (atomic_dec_and_test (&l->todo))
594 ret = fc->hw_enque (fc, fc->login);
600 if (ret == -ENOSYS && fc->login->proto == PROTO_REPORT_AL_MAP) {
601 /* Oh yes, this card handles Point-to-Point only, so let's try that. */
604 FCD(("SID %d DID %d\n", fc->sid, fc->did))
606 dma_unmap_single(fc->dev, fcmd->cmd, 3 * sizeof(logi), DMA_BIDIRECTIONAL);
608 FILL_FCHDR_RCTL_DID(fch, R_CTL_ELS_REQ, FS_FABRIC_F_PORT);
609 FILL_FCHDR_SID(fch, 0);
610 FILL_FCHDR_TYPE_FCTL(fch, TYPE_EXTENDED_LS, F_CTL_FIRST_SEQ | F_CTL_SEQ_INITIATIVE);
611 FILL_FCHDR_SEQ_DF_SEQ(fch, 0, 0, 0);
612 FILL_FCHDR_OXRX(fch, 0xffff, 0xffff);
614 l->logi [3 * i].code = LS_FLOGI;
615 fcmd->cmd = dma_map_single (fc->dev, l->logi + 3 * i, 3 * sizeof(logi), DMA_BIDIRECTIONAL);
616 fcmd->rsp = fcmd->cmd + sizeof(logi);
617 fcmd->cmdlen = sizeof(logi);
618 fcmd->rsplen = sizeof(logi);
619 fcmd->data = (dma_addr_t)NULL;
620 fcmd->class = FC_CLASS_SIMPLE;
621 fcmd->proto = TYPE_EXTENDED_LS;
623 printk ("FC: Cannot enque FLOGI/REPORT_MAP packet on %s\n", fc->name);
627 l->timer.expires = jiffies + 5 * HZ;
628 add_timer(&l->timer);
631 if (!atomic_read(&l->todo)) {
632 FCND(("All channels answered in time\n"))
633 break; /* All fc channels have answered us */
638 for (fc = fcchain, i = 0; fc && i < count; fc = fc->next, i++) {
641 case FC_STATE_ONLINE: break;
642 case FC_STATE_OFFLINE: break;
643 default: dma_unmap_single (fc->dev, l->fcmds[i].cmd, 3 * sizeof(logi), DMA_BIDIRECTIONAL);
647 del_timer(&l->timer);
654 int fcp_forceoffline(fc_channel *fcchain, int count)
661 memset (&l, 0, sizeof(lso));
664 FCND(("FCP Force Offline for %d channels\n", count))
665 init_MUTEX_LOCKED(&l.sem);
666 init_timer(&l.timer);
667 l.timer.function = fcp_login_timeout;
668 l.timer.data = (unsigned long)&l;
669 atomic_set (&l.todo, count);
670 l.fcmds = kzalloc (count * sizeof(fcp_cmnd), GFP_KERNEL);
672 printk ("FC: Cannot allocate memory for forcing offline\n");
675 FCND(("Initializing OFFLINE packets\n"))
676 for (fc = fcchain, i = 0; fc && i < count; fc = fc->next, i++) {
677 fc->state = FC_STATE_UNINITED;
682 fcmd->class = FC_CLASS_OFFLINE;
683 fcmd->proto = PROTO_OFFLINE;
686 disable_irq(fc->irq);
687 ret = fc->hw_enque (fc, fc->login);
689 if (ret) printk ("FC: Cannot enque OFFLINE packet on %s\n", fc->name);
692 l.timer.expires = jiffies + 5 * HZ;
697 for (fc = fcchain, i = 0; fc && i < count; fc = fc->next, i++)
703 int fcp_init(fc_channel *fcchain)
709 for (fc = fcchain; fc; fc = fc->next) {
710 fc->fcp_register = fcp_register;
714 ret = fcp_initialize (fcchain, count);
719 fc_channels = fcchain;
721 for (fc = fc_channels; fc->next; fc = fc->next);
727 void fcp_release(fc_channel *fcchain, int count) /* count must > 0 */
732 for (fc = fcchain; --count && fc->next; fc = fc->next);
734 printk("FC: nothing to release\n");
738 if (fc_channels == fcchain)
739 fc_channels = fc->next;
741 for (fcx = fc_channels; fcx->next != fcchain; fcx = fcx->next);
742 fcx->next = fc->next;
747 * We've just grabbed fcchain out of the fc_channel list
748 * and zero-terminated it, while destroying the count.
750 * Freeing the fc's is the low level driver's responsibility.
755 static void fcp_scsi_done(struct scsi_cmnd *SCpnt)
757 if (FCP_CMND(SCpnt)->done)
758 FCP_CMND(SCpnt)->done(SCpnt);
761 static int fcp_scsi_queue_it(fc_channel *fc, struct scsi_cmnd *SCpnt,
762 fcp_cmnd *fcmd, int prepare)
768 i = find_first_zero_bit (fc->scsi_bitmap, fc->scsi_bitmap_end);
769 set_bit (i, fc->scsi_bitmap);
771 cmd = fc->scsi_cmd_pool + i;
773 if (fc->encode_addr (SCpnt, cmd->fcp_addr, fc, fcmd)) {
774 /* Invalid channel/id/lun and couldn't map it into fcp_addr */
775 clear_bit (i, fc->scsi_bitmap);
776 SCpnt->result = (DID_BAD_TARGET << 16);
777 SCpnt->scsi_done(SCpnt);
781 fc->cmd_slots[fcmd->token] = fcmd;
783 if (SCpnt->device->tagged_supported) {
784 if (jiffies - fc->ages[SCpnt->device->channel * fc->targets + SCpnt->device->id] > (5 * 60 * HZ)) {
785 fc->ages[SCpnt->device->channel * fc->targets + SCpnt->device->id] = jiffies;
786 fcp_cntl = FCP_CNTL_QTYPE_ORDERED;
788 fcp_cntl = FCP_CNTL_QTYPE_SIMPLE;
790 fcp_cntl = FCP_CNTL_QTYPE_UNTAGGED;
792 if (!scsi_bufflen(SCpnt)) {
793 cmd->fcp_cntl = fcp_cntl;
794 fcmd->data = (dma_addr_t)NULL;
796 struct scatterlist *sg;
799 switch (SCpnt->cmnd[0]) {
803 cmd->fcp_cntl = (FCP_CNTL_WRITE | fcp_cntl); break;
805 cmd->fcp_cntl = (FCP_CNTL_READ | fcp_cntl); break;
808 sg = scsi_sglist(SCpnt);
809 nents = dma_map_sg(fc->dev, sg, scsi_sg_count(SCpnt),
810 SCpnt->sc_data_direction);
811 fcmd->data = sg_dma_address(sg);
812 cmd->fcp_data_len = sg_dma_len(sg);
814 memcpy (cmd->fcp_cdb, SCpnt->cmnd, SCpnt->cmd_len);
815 memset (cmd->fcp_cdb+SCpnt->cmd_len, 0, sizeof(cmd->fcp_cdb)-SCpnt->cmd_len);
816 FCD(("XXX: %04x.%04x.%04x.%04x - %08x%08x%08x\n", cmd->fcp_addr[0], cmd->fcp_addr[1], cmd->fcp_addr[2], cmd->fcp_addr[3], *(u32 *)SCpnt->cmnd, *(u32 *)(SCpnt->cmnd+4), *(u32 *)(SCpnt->cmnd+8)))
818 FCD(("Trying to enque %p\n", fcmd))
820 if (!fc->hw_enque (fc, fcmd)) {
821 FCD(("hw_enque succeeded for %p\n", fcmd))
825 FCD(("Putting into que1 %p\n", fcmd))
826 fcp_scsi_insert_queue (fc, fcmd);
830 int fcp_scsi_queuecommand(struct scsi_cmnd *SCpnt,
831 void (* done)(struct scsi_cmnd *))
833 fcp_cmnd *fcmd = FCP_CMND(SCpnt);
834 fc_channel *fc = FC_SCMND(SCpnt);
836 FCD(("Entering SCSI queuecommand %p\n", fcmd))
837 if (SCpnt->done != fcp_scsi_done) {
838 fcmd->done = SCpnt->done;
839 SCpnt->done = fcp_scsi_done;
840 SCpnt->scsi_done = done;
841 fcmd->proto = TYPE_SCSI_FCP;
842 if (!fc->scsi_free) {
843 FCD(("FC: !scsi_free, putting cmd on ML queue\n"))
844 #if (FCP_SCSI_USE_NEW_EH_CODE == 0)
845 printk("fcp_scsi_queue_command: queue full, losing cmd, bad\n");
849 return fcp_scsi_queue_it(fc, SCpnt, fcmd, 1);
851 return fcp_scsi_queue_it(fc, SCpnt, fcmd, 0);
854 void fcp_queue_empty(fc_channel *fc)
858 FCD(("Queue empty\n"))
859 while ((fcmd = fc->scsi_que)) {
860 /* The hw told us we can try again queue some packet */
861 if (fc->hw_enque (fc, fcmd))
863 fcp_scsi_remove_queue (fc, fcmd);
867 int fcp_scsi_abort(struct scsi_cmnd *SCpnt)
869 /* Internal bookkeeping only. Lose 1 cmd_slots slot. */
870 fcp_cmnd *fcmd = FCP_CMND(SCpnt);
871 fc_channel *fc = FC_SCMND(SCpnt);
874 * We react to abort requests by simply forgetting
875 * about the command and pretending everything's sweet.
876 * This may or may not be silly. We can't, however,
877 * immediately reuse the command's cmd_slots slot,
878 * as its result may arrive later and we cannot
879 * check whether it is the aborted one, can't we?
881 * Therefore, after the first few aborts are done,
882 * we tell the scsi error handler to do something clever.
883 * It will eventually call host reset, refreshing
886 * There is a theoretical chance that we sometimes allow
887 * more than can_queue packets to the jungle this way,
888 * but the worst outcome possible is a series of
889 * more aborts and eventually the dev_reset catharsis.
892 if (++fc->abort_count < (fc->can_queue >> 1)) {
893 SCpnt->result = DID_ABORT;
895 printk("FC: soft abort\n");
898 printk("FC: hard abort refused\n");
904 void fcp_scsi_reset_done(struct scsi_cmnd *SCpnt)
906 fc_channel *fc = FC_SCMND(SCpnt);
908 fc->rst_pkt->eh_state = SCSI_STATE_FINISHED;
909 up(fc->rst_pkt->device->host->eh_action);
913 #define FCP_RESET_TIMEOUT (2*HZ)
915 int fcp_scsi_dev_reset(struct scsi_cmnd *SCpnt)
917 #if 0 /* broken junk, but if davem wants to compile this driver, let him.. */
921 fc_channel *fc = FC_SCMND(SCpnt);
922 DECLARE_MUTEX_LOCKED(sem);
925 fc->rst_pkt = kmalloc(sizeof(SCpnt), GFP_KERNEL);
926 if (!fc->rst_pkt) return FAILED;
928 fcmd = FCP_CMND(fc->rst_pkt);
932 cmd = fc->scsi_cmd_pool + 0;
933 FCD(("Preparing rst packet\n"))
934 fc->encode_addr (SCpnt, cmd->fcp_addr, fc, fcmd);
935 fc->rst_pkt->device = SCpnt->device;
936 fc->rst_pkt->cmd_len = 0;
938 fc->cmd_slots[0] = fcmd;
940 cmd->fcp_cntl = FCP_CNTL_QTYPE_ORDERED | FCP_CNTL_RESET;
941 fcmd->data = (dma_addr_t)NULL;
942 fcmd->proto = TYPE_SCSI_FCP;
944 memcpy (cmd->fcp_cdb, SCpnt->cmnd, SCpnt->cmd_len);
945 memset (cmd->fcp_cdb+SCpnt->cmd_len, 0, sizeof(cmd->fcp_cdb)-SCpnt->cmd_len);
946 FCD(("XXX: %04x.%04x.%04x.%04x - %08x%08x%08x\n", cmd->fcp_addr[0], cmd->fcp_addr[1], cmd->fcp_addr[2], cmd->fcp_addr[3], *(u32 *)SCpnt->cmnd, *(u32 *)(SCpnt->cmnd+4), *(u32 *)(SCpnt->cmnd+8)))
948 fcmd = FCP_CMND(fc->rst_pkt);
949 if (fc->rst_pkt->eh_state == SCSI_STATE_QUEUED)
950 return FAILED; /* or SUCCESS. Only these */
952 fc->rst_pkt->done = NULL;
955 fc->rst_pkt->eh_state = SCSI_STATE_QUEUED;
956 init_timer(&fc->rst_pkt->eh_timeout);
957 fc->rst_pkt->eh_timeout.data = (unsigned long) fc->rst_pkt;
958 fc->rst_pkt->eh_timeout.expires = jiffies + FCP_RESET_TIMEOUT;
959 fc->rst_pkt->eh_timeout.function = (void (*)(unsigned long))fcp_scsi_reset_done;
961 add_timer(&fc->rst_pkt->eh_timeout);
964 * Set up the semaphore so we wait for the command to complete.
967 fc->rst_pkt->device->host->eh_action = &sem;
969 fc->rst_pkt->done = fcp_scsi_reset_done;
971 spin_lock_irqsave(SCpnt->device->host->host_lock, flags);
972 fcp_scsi_queue_it(fc, fc->rst_pkt, fcmd, 0);
973 spin_unlock_irqrestore(SCpnt->device->host->host_lock, flags);
977 fc->rst_pkt->device->host->eh_action = NULL;
978 del_timer(&fc->rst_pkt->eh_timeout);
981 * See if timeout. If so, tell the host to forget about it.
982 * In other words, we don't want a callback any more.
984 if (fc->rst_pkt->eh_state == SCSI_STATE_TIMEOUT ) {
985 fc->rst_pkt->eh_state = SCSI_STATE_UNUSED;
988 fc->rst_pkt->eh_state = SCSI_STATE_UNUSED;
993 static int __fcp_scsi_host_reset(struct scsi_cmnd *SCpnt)
995 fc_channel *fc = FC_SCMND(SCpnt);
996 fcp_cmnd *fcmd = FCP_CMND(SCpnt);
999 printk ("FC: host reset\n");
1001 for (i=0; i < fc->can_queue; i++) {
1002 if (fc->cmd_slots[i] && SCpnt->result != DID_ABORT) {
1003 SCpnt->result = DID_RESET;
1005 fc->cmd_slots[i] = NULL;
1009 fc->abort_count = 0;
1010 if (fcp_initialize(fc, 1)) return SUCCESS;
1014 int fcp_scsi_host_reset(struct scsi_cmnd *SCpnt)
1016 unsigned long flags;
1019 spin_lock_irqsave(SCpnt->device->host->host_lock, flags);
1020 rc = __fcp_scsi_host_reset(SCpnt);
1021 spin_unlock_irqrestore(SCpnt->device->host->host_lock, flags);
1026 static int fcp_els_queue_it(fc_channel *fc, fcp_cmnd *fcmd)
1030 i = find_first_zero_bit (fc->scsi_bitmap, fc->scsi_bitmap_end);
1031 set_bit (i, fc->scsi_bitmap);
1034 fc->cmd_slots[fcmd->token] = fcmd;
1035 return fcp_scsi_queue_it(fc, NULL, fcmd, 0);
1038 static int fc_do_els(fc_channel *fc, unsigned int alpa, void *data, int len)
1040 fcp_cmnd _fcmd, *fcmd;
1046 memset(fcmd, 0, sizeof(fcp_cmnd));
1047 FCD(("PLOGI SID %d DID %d\n", fc->sid, alpa))
1049 FILL_FCHDR_RCTL_DID(fch, R_CTL_ELS_REQ, alpa);
1050 FILL_FCHDR_SID(fch, fc->sid);
1051 FILL_FCHDR_TYPE_FCTL(fch, TYPE_EXTENDED_LS, F_CTL_FIRST_SEQ | F_CTL_SEQ_INITIATIVE);
1052 FILL_FCHDR_SEQ_DF_SEQ(fch, 0, 0, 0);
1053 FILL_FCHDR_OXRX(fch, 0xffff, 0xffff);
1055 fcmd->cmd = dma_map_single (fc->dev, data, 2 * len, DMA_BIDIRECTIONAL);
1056 fcmd->rsp = fcmd->cmd + len;
1059 fcmd->data = (dma_addr_t)NULL;
1061 fcmd->class = FC_CLASS_SIMPLE;
1062 fcmd->proto = TYPE_EXTENDED_LS;
1064 memset (&l, 0, sizeof(lse));
1066 init_MUTEX_LOCKED(&l.sem);
1067 l.timer.function = fcp_login_timeout;
1068 l.timer.data = (unsigned long)&l;
1069 l.status = FC_STATUS_TIMED_OUT;
1070 fcmd->ls = (void *)&l;
1072 disable_irq(fc->irq);
1073 fcp_els_queue_it(fc, fcmd);
1074 enable_irq(fc->irq);
1077 l.timer.expires = jiffies + 5 * HZ;
1078 add_timer(&l.timer);
1080 del_timer(&l.timer);
1081 if (l.status != FC_STATUS_TIMED_OUT) break;
1082 if (++i == 3) break;
1083 disable_irq(fc->irq);
1084 fcp_scsi_queue_it(fc, NULL, fcmd, 0);
1085 enable_irq(fc->irq);
1088 clear_bit(fcmd->token, fc->scsi_bitmap);
1090 dma_unmap_single (fc->dev, fcmd->cmd, 2 * len, DMA_BIDIRECTIONAL);
1094 int fc_do_plogi(fc_channel *fc, unsigned char alpa, fc_wwn *node, fc_wwn *nport)
1099 l = kzalloc(2 * sizeof(logi), GFP_KERNEL);
1100 if (!l) return -ENOMEM;
1102 memcpy (&l->nport_wwn, &fc->wwn_nport, sizeof(fc_wwn));
1103 memcpy (&l->node_wwn, &fc->wwn_node, sizeof(fc_wwn));
1104 memcpy (&l->common, fc->common_svc, sizeof(common_svc_parm));
1105 memcpy (&l->class1, fc->class_svcs, 3*sizeof(svc_parm));
1106 status = fc_do_els(fc, alpa, l, sizeof(logi));
1107 if (status == FC_STATUS_OK) {
1108 if (l[1].code == LS_ACC) {
1110 u32 *u = (u32 *)&l[1].nport_wwn;
1111 FCD(("AL-PA %02x: Port WWN %08x%08x Node WWN %08x%08x\n", alpa,
1112 u[0], u[1], u[2], u[3]))
1114 memcpy(nport, &l[1].nport_wwn, sizeof(fc_wwn));
1115 memcpy(node, &l[1].node_wwn, sizeof(fc_wwn));
1117 status = FC_STATUS_BAD_RSP;
1128 int fc_do_prli(fc_channel *fc, unsigned char alpa)
1133 p = kzalloc(2 * sizeof(prli), GFP_KERNEL);
1134 if (!p) return -ENOMEM;
1136 p->params[0] = 0x08002000;
1137 p->params[3] = 0x00000022;
1138 status = fc_do_els(fc, alpa, p, sizeof(prli));
1139 if (status == FC_STATUS_OK && p[1].code != LS_PRLI_ACC && p[1].code != LS_ACC)
1140 status = FC_STATUS_BAD_RSP;
1145 MODULE_LICENSE("GPL");