isp_netbsd.c revision 1.83 1 /* $NetBSD: isp_netbsd.c,v 1.83 2010/03/26 20:52:00 mjacob Exp $ */
2 /*
3 * Platform (NetBSD) dependent common attachment code for Qlogic adapters.
4 */
5 /*
6 * Copyright (C) 1997, 1998, 1999 National Aeronautics & Space Administration
7 * All rights reserved.
8 *
9 * Additional Copyright (C) 2000-2007 by Matthew Jacob
10 * All rights reserved.
11 *
12 * Redistribution and use in source and binary forms, with or without
13 * modification, are permitted provided that the following conditions
14 * are met:
15 * 1. Redistributions of source code must retain the above copyright
16 * notice, this list of conditions and the following disclaimer.
17 * 2. Redistributions in binary form must reproduce the above copyright
18 * notice, this list of conditions and the following disclaimer in the
19 * documentation and/or other materials provided with the distribution.
20 * 3. The name of the author may not be used to endorse or promote products
21 * derived from this software without specific prior written permission
22 *
23 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
24 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
25 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
26 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
27 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
28 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
29 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
30 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
31 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
32 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
33 */
34
35 #include <sys/cdefs.h>
36 __KERNEL_RCSID(0, "$NetBSD: isp_netbsd.c,v 1.83 2010/03/26 20:52:00 mjacob Exp $");
37
38 #include <dev/ic/isp_netbsd.h>
39 #include <dev/ic/isp_ioctl.h>
40 #include <sys/scsiio.h>
41
42 #include <sys/timevar.h>
43
44 /*
45 * Set a timeout for the watchdogging of a command.
46 *
47 * The dimensional analysis is
48 *
49 * milliseconds * (seconds/millisecond) * (ticks/second) = ticks
50 *
51 * =
52 *
53 * (milliseconds / 1000) * hz = ticks
54 *
55 *
56 * For timeouts less than 1 second, we'll get zero. Because of this, and
57 * because we want to establish *our* timeout to be longer than what the
58 * firmware might do, we just add 3 seconds at the back end.
59 */
60 #define _XT(xs) ((((xs)->timeout/1000) * hz) + (3 * hz))
61
62 static void isp_config_interrupts(device_t);
63 static void ispminphys_1020(struct buf *);
64 static void ispminphys(struct buf *);
65 static void ispcmd(struct ispsoftc *, XS_T *);
66 static void isprequest(struct scsipi_channel *, scsipi_adapter_req_t, void *);
67 static int
68 ispioctl(struct scsipi_channel *, u_long, void *, int, struct proc *);
69
70 static void isp_polled_cmd_wait(struct ispsoftc *, XS_T *);
71 static void isp_dog(void *);
72 static void isp_gdt(void *);
73 static void isp_ldt(void *);
74 static void isp_make_here(ispsoftc_t *, int);
75 static void isp_make_gone(ispsoftc_t *, int);
76 static void isp_fc_worker(void *);
77
78 static const char *roles[4] = {
79 "(none)", "Target", "Initiator", "Target/Initiator"
80 };
81 static const char prom3[] =
82 "PortID 0x%06x Departed from Target %u because of %s";
83 int isp_change_is_bad = 0; /* "changed" devices are bad */
84 int isp_quickboot_time = 15; /* don't wait more than N secs for loop up */
85 static int isp_fabric_hysteresis = 5;
86 #define isp_change_is_bad 0
87
88 /*
89 * Complete attachment of hardware, include subdevices.
90 */
91
92 void
93 isp_attach(struct ispsoftc *isp)
94 {
95 device_t self = isp->isp_osinfo.dev;
96 int i;
97
98 isp->isp_state = ISP_RUNSTATE;
99
100 isp->isp_osinfo.adapter.adapt_dev = self;
101 isp->isp_osinfo.adapter.adapt_openings = isp->isp_maxcmds;
102 isp->isp_osinfo.loop_down_limit = 300;
103
104 /*
105 * It's not stated whether max_periph is limited by SPI
106 * tag uage, but let's assume that it is.
107 */
108 isp->isp_osinfo.adapter.adapt_max_periph = min(isp->isp_maxcmds, 255);
109 isp->isp_osinfo.adapter.adapt_ioctl = ispioctl;
110 isp->isp_osinfo.adapter.adapt_request = isprequest;
111 if (isp->isp_type <= ISP_HA_SCSI_1020A) {
112 isp->isp_osinfo.adapter.adapt_minphys = ispminphys_1020;
113 } else {
114 isp->isp_osinfo.adapter.adapt_minphys = ispminphys;
115 }
116
117 callout_init(&isp->isp_osinfo.gdt, 0);
118 callout_setfunc(&isp->isp_osinfo.gdt, isp_gdt, isp);
119 callout_init(&isp->isp_osinfo.ldt, 0);
120 callout_setfunc(&isp->isp_osinfo.ldt, isp_ldt, isp);
121 if (IS_FC(isp)) {
122 if (kthread_create(PRI_NONE, 0, NULL, isp_fc_worker, isp,
123 &isp->isp_osinfo.thread, "%s:fc_thrd",
124 device_xname(self))) {
125 isp_prt(isp, ISP_LOGERR,
126 "unable to create FC worker thread");
127 return;
128 }
129 }
130
131 for (i = 0; i != isp->isp_osinfo.adapter.adapt_nchannels; i++) {
132 isp->isp_osinfo.chan[i].chan_adapter =
133 &isp->isp_osinfo.adapter;
134 isp->isp_osinfo.chan[i].chan_bustype = &scsi_bustype;
135 isp->isp_osinfo.chan[i].chan_channel = i;
136 /*
137 * Until the midlayer is fixed to use REPORT LUNS,
138 * limit to 8 luns.
139 */
140 isp->isp_osinfo.chan[i].chan_nluns = min(isp->isp_maxluns, 8);
141 if (IS_FC(isp)) {
142 isp->isp_osinfo.chan[i].chan_ntargets = MAX_FC_TARG;
143 if (ISP_CAP_2KLOGIN(isp) == 0 && MAX_FC_TARG > 256) {
144 isp->isp_osinfo.chan[i].chan_ntargets = 256;
145 }
146 isp->isp_osinfo.chan[i].chan_id = MAX_FC_TARG;
147 } else {
148 isp->isp_osinfo.chan[i].chan_ntargets = MAX_TARGETS;
149 isp->isp_osinfo.chan[i].chan_id =
150 SDPARAM(isp, i)->isp_initiator_id;
151 ISP_LOCK(isp);
152 (void) isp_control(isp, ISPCTL_RESET_BUS, i);
153 ISP_UNLOCK(isp);
154 }
155 }
156
157 /*
158 * Defer enabling mailbox interrupts until later.
159 */
160 config_interrupts(self, isp_config_interrupts);
161 }
162
163 static void
164 isp_config_interrupts(device_t self)
165 {
166 int i;
167 struct ispsoftc *isp = device_private(self);
168
169 isp->isp_osinfo.mbox_sleep_ok = 1;
170
171 if (IS_FC(isp) && (FCPARAM(isp, 0)->isp_fwstate != FW_READY ||
172 FCPARAM(isp, 0)->isp_loopstate != LOOP_READY)) {
173 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
174 "Starting Initial Loop Down Timer");
175 callout_schedule(&isp->isp_osinfo.ldt, isp_quickboot_time * hz);
176 }
177
178 /*
179 * And attach children (if any).
180 */
181 for (i = 0; i < isp->isp_osinfo.adapter.adapt_nchannels; i++) {
182 config_found(self, &isp->isp_osinfo.chan[i], scsiprint);
183 }
184 }
185
186 /*
187 * minphys our xfers
188 */
189 static void
190 ispminphys_1020(struct buf *bp)
191 {
192 if (bp->b_bcount >= (1 << 24)) {
193 bp->b_bcount = (1 << 24);
194 }
195 minphys(bp);
196 }
197
198 static void
199 ispminphys(struct buf *bp)
200 {
201 if (bp->b_bcount >= (1 << 30)) {
202 bp->b_bcount = (1 << 30);
203 }
204 minphys(bp);
205 }
206
207 static int
208 ispioctl(struct scsipi_channel *chan, u_long cmd, void *addr, int flag,
209 struct proc *p)
210 {
211 struct ispsoftc *isp = device_private(chan->chan_adapter->adapt_dev);
212 int nr, bus, retval = ENOTTY;
213
214 switch (cmd) {
215 case ISP_SDBLEV:
216 {
217 int olddblev = isp->isp_dblev;
218 isp->isp_dblev = *(int *)addr;
219 *(int *)addr = olddblev;
220 retval = 0;
221 break;
222 }
223 case ISP_GETROLE:
224 bus = *(int *)addr;
225 if (bus < 0 || bus >= isp->isp_nchan) {
226 retval = -ENXIO;
227 break;
228 }
229 if (IS_FC(isp)) {
230 *(int *)addr = FCPARAM(isp, bus)->role;
231 } else {
232 *(int *)addr = SDPARAM(isp, bus)->role;
233 }
234 retval = 0;
235 break;
236 case ISP_SETROLE:
237
238 nr = *(int *)addr;
239 bus = nr >> 8;
240 if (bus < 0 || bus >= isp->isp_nchan) {
241 retval = -ENXIO;
242 break;
243 }
244 nr &= 0xff;
245 if (nr & ~(ISP_ROLE_INITIATOR|ISP_ROLE_TARGET)) {
246 retval = EINVAL;
247 break;
248 }
249 if (IS_FC(isp)) {
250 *(int *)addr = FCPARAM(isp, bus)->role;
251 FCPARAM(isp, bus)->role = nr;
252 } else {
253 *(int *)addr = SDPARAM(isp, bus)->role;
254 SDPARAM(isp, bus)->role = nr;
255 }
256 retval = 0;
257 break;
258
259 case ISP_RESETHBA:
260 ISP_LOCK(isp);
261 isp_reinit(isp, 0);
262 ISP_UNLOCK(isp);
263 retval = 0;
264 break;
265
266 case ISP_RESCAN:
267 if (IS_FC(isp)) {
268 bus = *(int *)addr;
269 if (bus < 0 || bus >= isp->isp_nchan) {
270 retval = -ENXIO;
271 break;
272 }
273 ISP_LOCK(isp);
274 if (isp_fc_runstate(isp, bus, 5 * 1000000)) {
275 retval = EIO;
276 } else {
277 retval = 0;
278 }
279 ISP_UNLOCK(isp);
280 }
281 break;
282
283 case ISP_FC_LIP:
284 if (IS_FC(isp)) {
285 bus = *(int *)addr;
286 if (bus < 0 || bus >= isp->isp_nchan) {
287 retval = -ENXIO;
288 break;
289 }
290 ISP_LOCK(isp);
291 if (isp_control(isp, ISPCTL_SEND_LIP, bus)) {
292 retval = EIO;
293 } else {
294 retval = 0;
295 }
296 ISP_UNLOCK(isp);
297 }
298 break;
299 case ISP_FC_GETDINFO:
300 {
301 struct isp_fc_device *ifc = (struct isp_fc_device *) addr;
302 fcportdb_t *lp;
303
304 if (IS_SCSI(isp)) {
305 break;
306 }
307 if (ifc->loopid >= MAX_FC_TARG) {
308 retval = EINVAL;
309 break;
310 }
311 lp = &FCPARAM(isp, ifc->chan)->portdb[ifc->loopid];
312 if (lp->state == FC_PORTDB_STATE_VALID) {
313 ifc->role = lp->roles;
314 ifc->loopid = lp->handle;
315 ifc->portid = lp->portid;
316 ifc->node_wwn = lp->node_wwn;
317 ifc->port_wwn = lp->port_wwn;
318 retval = 0;
319 } else {
320 retval = ENODEV;
321 }
322 break;
323 }
324 case ISP_GET_STATS:
325 {
326 isp_stats_t *sp = (isp_stats_t *) addr;
327
328 ISP_MEMZERO(sp, sizeof (*sp));
329 sp->isp_stat_version = ISP_STATS_VERSION;
330 sp->isp_type = isp->isp_type;
331 sp->isp_revision = isp->isp_revision;
332 ISP_LOCK(isp);
333 sp->isp_stats[ISP_INTCNT] = isp->isp_intcnt;
334 sp->isp_stats[ISP_INTBOGUS] = isp->isp_intbogus;
335 sp->isp_stats[ISP_INTMBOXC] = isp->isp_intmboxc;
336 sp->isp_stats[ISP_INGOASYNC] = isp->isp_intoasync;
337 sp->isp_stats[ISP_RSLTCCMPLT] = isp->isp_rsltccmplt;
338 sp->isp_stats[ISP_FPHCCMCPLT] = isp->isp_fphccmplt;
339 sp->isp_stats[ISP_RSCCHIWAT] = isp->isp_rscchiwater;
340 sp->isp_stats[ISP_FPCCHIWAT] = isp->isp_fpcchiwater;
341 ISP_UNLOCK(isp);
342 retval = 0;
343 break;
344 }
345 case ISP_CLR_STATS:
346 ISP_LOCK(isp);
347 isp->isp_intcnt = 0;
348 isp->isp_intbogus = 0;
349 isp->isp_intmboxc = 0;
350 isp->isp_intoasync = 0;
351 isp->isp_rsltccmplt = 0;
352 isp->isp_fphccmplt = 0;
353 isp->isp_rscchiwater = 0;
354 isp->isp_fpcchiwater = 0;
355 ISP_UNLOCK(isp);
356 retval = 0;
357 break;
358 case ISP_FC_GETHINFO:
359 {
360 struct isp_hba_device *hba = (struct isp_hba_device *) addr;
361 bus = hba->fc_channel;
362
363 if (bus < 0 || bus >= isp->isp_nchan) {
364 retval = ENXIO;
365 break;
366 }
367 hba->fc_fw_major = ISP_FW_MAJORX(isp->isp_fwrev);
368 hba->fc_fw_minor = ISP_FW_MINORX(isp->isp_fwrev);
369 hba->fc_fw_micro = ISP_FW_MICROX(isp->isp_fwrev);
370 hba->fc_nchannels = isp->isp_nchan;
371 hba->fc_nports = isp->isp_nchan;/* XXXX 24XX STUFF? XXX */
372 if (IS_FC(isp)) {
373 hba->fc_speed = FCPARAM(isp, bus)->isp_gbspeed;
374 hba->fc_topology = FCPARAM(isp, bus)->isp_topo + 1;
375 hba->fc_loopid = FCPARAM(isp, bus)->isp_loopid;
376 hba->nvram_node_wwn = FCPARAM(isp, bus)->isp_wwnn_nvram;
377 hba->nvram_port_wwn = FCPARAM(isp, bus)->isp_wwpn_nvram;
378 hba->active_node_wwn = FCPARAM(isp, bus)->isp_wwnn;
379 hba->active_port_wwn = FCPARAM(isp, bus)->isp_wwpn;
380 } else {
381 hba->fc_speed = 0;
382 hba->fc_topology = 0;
383 hba->nvram_node_wwn = 0ull;
384 hba->nvram_port_wwn = 0ull;
385 hba->active_node_wwn = 0ull;
386 hba->active_port_wwn = 0ull;
387 }
388 retval = 0;
389 break;
390 }
391 case ISP_TSK_MGMT:
392 {
393 int needmarker;
394 struct isp_fc_tsk_mgmt *fct = (struct isp_fc_tsk_mgmt *) addr;
395 uint16_t loopid;
396 mbreg_t mbs;
397
398 if (IS_SCSI(isp)) {
399 break;
400 }
401
402 bus = fct->chan;
403 if (bus < 0 || bus >= isp->isp_nchan) {
404 retval = -ENXIO;
405 break;
406 }
407
408 memset(&mbs, 0, sizeof (mbs));
409 needmarker = retval = 0;
410 loopid = fct->loopid;
411 if (ISP_CAP_2KLOGIN(isp) == 0) {
412 loopid <<= 8;
413 }
414 switch (fct->action) {
415 case IPT_CLEAR_ACA:
416 mbs.param[0] = MBOX_CLEAR_ACA;
417 mbs.param[1] = loopid;
418 mbs.param[2] = fct->lun;
419 break;
420 case IPT_TARGET_RESET:
421 mbs.param[0] = MBOX_TARGET_RESET;
422 mbs.param[1] = loopid;
423 needmarker = 1;
424 break;
425 case IPT_LUN_RESET:
426 mbs.param[0] = MBOX_LUN_RESET;
427 mbs.param[1] = loopid;
428 mbs.param[2] = fct->lun;
429 needmarker = 1;
430 break;
431 case IPT_CLEAR_TASK_SET:
432 mbs.param[0] = MBOX_CLEAR_TASK_SET;
433 mbs.param[1] = loopid;
434 mbs.param[2] = fct->lun;
435 needmarker = 1;
436 break;
437 case IPT_ABORT_TASK_SET:
438 mbs.param[0] = MBOX_ABORT_TASK_SET;
439 mbs.param[1] = loopid;
440 mbs.param[2] = fct->lun;
441 needmarker = 1;
442 break;
443 default:
444 retval = EINVAL;
445 break;
446 }
447 if (retval == 0) {
448 if (needmarker) {
449 FCPARAM(isp, bus)->sendmarker = 1;
450 }
451 ISP_LOCK(isp);
452 retval = isp_control(isp, ISPCTL_RUN_MBOXCMD, &mbs);
453 ISP_UNLOCK(isp);
454 if (retval) {
455 retval = EIO;
456 }
457 }
458 break;
459 }
460 case ISP_FC_GETDLIST:
461 {
462 isp_dlist_t local, *ua;
463 uint16_t nph, nphe, count, channel, lim;
464 struct wwnpair pair, *uptr;
465
466 if (IS_SCSI(isp)) {
467 retval = EINVAL;
468 break;
469 }
470
471 ua = *(isp_dlist_t **)addr;
472 if (copyin(ua, &local, sizeof (isp_dlist_t))) {
473 retval = EFAULT;
474 break;
475 }
476 lim = local.count;
477 channel = local.channel;
478
479 ua = *(isp_dlist_t **)addr;
480 uptr = &ua->wwns[0];
481
482 if (ISP_CAP_2KLOGIN(isp)) {
483 nphe = NPH_MAX_2K;
484 } else {
485 nphe = NPH_MAX;
486 }
487 for (count = 0, nph = 0; count < lim && nph != nphe; nph++) {
488 ISP_LOCK(isp);
489 retval = isp_control(isp, ISPCTL_GET_NAMES, channel,
490 nph, &pair.wwnn, &pair.wwpn);
491 ISP_UNLOCK(isp);
492 if (retval || (pair.wwpn == INI_NONE &&
493 pair.wwnn == INI_NONE)) {
494 retval = 0;
495 continue;
496 }
497 if (copyout(&pair, (void *)uptr++, sizeof (pair))) {
498 retval = EFAULT;
499 break;
500 }
501 count++;
502 }
503 if (retval == 0) {
504 if (copyout(&count, (void *)&ua->count,
505 sizeof (count))) {
506 retval = EFAULT;
507 }
508 }
509 break;
510 }
511 case SCBUSIORESET:
512 ISP_LOCK(isp);
513 if (isp_control(isp, ISPCTL_RESET_BUS, &chan->chan_channel)) {
514 retval = EIO;
515 } else {
516 retval = 0;
517 }
518 ISP_UNLOCK(isp);
519 break;
520 default:
521 break;
522 }
523 return (retval);
524 }
525
526 static void
527 ispcmd(struct ispsoftc *isp, XS_T *xs)
528 {
529 volatile uint8_t ombi;
530 int lim, chan;
531
532 ISP_LOCK(isp);
533 if (isp->isp_state < ISP_RUNSTATE) {
534 ISP_DISABLE_INTS(isp);
535 isp_init(isp);
536 if (isp->isp_state != ISP_INITSTATE) {
537 ISP_ENABLE_INTS(isp);
538 ISP_UNLOCK(isp);
539 isp_prt(isp, ISP_LOGERR, "isp not at init state");
540 XS_SETERR(xs, HBA_BOTCH);
541 scsipi_done(xs);
542 return;
543 }
544 isp->isp_state = ISP_RUNSTATE;
545 ISP_ENABLE_INTS(isp);
546 }
547 chan = XS_CHANNEL(xs);
548
549 /*
550 * Handle the case of a FC card where the FC thread hasn't
551 * fired up yet and we don't yet have a known loop state.
552 */
553 if (IS_FC(isp) && (FCPARAM(isp, chan)->isp_fwstate != FW_READY ||
554 FCPARAM(isp, chan)->isp_loopstate != LOOP_READY) &&
555 isp->isp_osinfo.thread == NULL) {
556 ombi = isp->isp_osinfo.mbox_sleep_ok != 0;
557 int delay_time;
558
559 if (xs->xs_control & XS_CTL_POLL) {
560 isp->isp_osinfo.mbox_sleep_ok = 0;
561 }
562
563 if (isp->isp_osinfo.loop_checked == 0) {
564 delay_time = 10 * 1000000;
565 isp->isp_osinfo.loop_checked = 1;
566 } else {
567 delay_time = 250000;
568 }
569
570 if (isp_fc_runstate(isp, XS_CHANNEL(xs), delay_time) != 0) {
571 if (xs->xs_control & XS_CTL_POLL) {
572 isp->isp_osinfo.mbox_sleep_ok = ombi;
573 }
574 if (FCPARAM(isp, XS_CHANNEL(xs))->loop_seen_once == 0) {
575 XS_SETERR(xs, HBA_SELTIMEOUT);
576 scsipi_done(xs);
577 ISP_UNLOCK(isp);
578 return;
579 }
580 /*
581 * Otherwise, fall thru to be queued up for later.
582 */
583 } else {
584 int wasblocked =
585 (isp->isp_osinfo.blocked || isp->isp_osinfo.paused);
586 isp->isp_osinfo.blocked = isp->isp_osinfo.paused = 0;
587 if (wasblocked) {
588 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
589 "THAW QUEUES @ LINE %d", __LINE__);
590 scsipi_channel_thaw(&isp->isp_osinfo.chan[chan],
591 1);
592 }
593 }
594 if (xs->xs_control & XS_CTL_POLL) {
595 isp->isp_osinfo.mbox_sleep_ok = ombi;
596 }
597 }
598
599 if (isp->isp_osinfo.paused) {
600 isp_prt(isp, ISP_LOGWARN, "I/O while paused");
601 xs->error = XS_RESOURCE_SHORTAGE;
602 scsipi_done(xs);
603 ISP_UNLOCK(isp);
604 return;
605 }
606 if (isp->isp_osinfo.blocked) {
607 isp_prt(isp, ISP_LOGWARN,
608 "I/O while blocked with retries %d", xs, xs->xs_retries);
609 if (xs->xs_retries) {
610 xs->error = XS_REQUEUE;
611 xs->xs_retries--;
612 } else {
613 XS_SETERR(xs, HBA_SELTIMEOUT);
614 }
615 scsipi_done(xs);
616 ISP_UNLOCK(isp);
617 return;
618 }
619
620 if (xs->xs_control & XS_CTL_POLL) {
621 ombi = isp->isp_osinfo.mbox_sleep_ok;
622 isp->isp_osinfo.mbox_sleep_ok = 0;
623 }
624
625 switch (isp_start(xs)) {
626 case CMD_QUEUED:
627 if (IS_FC(isp) && isp->isp_osinfo.wwns[XS_TGT(xs)] == 0) {
628 fcparam *fcp = FCPARAM(isp, XS_CHANNEL(xs));
629 int dbidx = fcp->isp_dev_map[XS_TGT(xs)] - 1;
630 device_t dev = xs->xs_periph->periph_dev;
631
632 if (dbidx >= 0 && dev &&
633 prop_dictionary_set_uint64(device_properties(dev),
634 "port-wwn", fcp->portdb[dbidx].port_wwn) == TRUE) {
635 isp->isp_osinfo.wwns[XS_TGT(xs)] =
636 fcp->portdb[dbidx].port_wwn;
637 }
638 }
639 if (xs->xs_control & XS_CTL_POLL) {
640 isp_polled_cmd_wait(isp, xs);
641 isp->isp_osinfo.mbox_sleep_ok = ombi;
642 } else if (xs->timeout) {
643 callout_reset(&xs->xs_callout, _XT(xs), isp_dog, xs);
644 }
645 break;
646 case CMD_EAGAIN:
647 isp->isp_osinfo.paused = 1;
648 xs->error = XS_RESOURCE_SHORTAGE;
649 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
650 "FREEZE QUEUES @ LINE %d", __LINE__);
651 for (chan = 0; chan < isp->isp_nchan; chan++) {
652 scsipi_channel_freeze(&isp->isp_osinfo.chan[chan], 1);
653 }
654 scsipi_done(xs);
655 break;
656 case CMD_RQLATER:
657 /*
658 * We can only get RQLATER from FC devices (1 channel only)
659 *
660 * If we've never seen loop up see if if we've been down
661 * quickboot time, otherwise wait loop down limit time.
662 * If so, then we start giving up on commands.
663 */
664 if (FCPARAM(isp, XS_CHANNEL(xs))->loop_seen_once == 0) {
665 lim = isp_quickboot_time;
666 } else {
667 lim = isp->isp_osinfo.loop_down_limit;
668 }
669 if (isp->isp_osinfo.loop_down_time >= lim) {
670 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
671 "RQLATER->SELTIMEOUT for %d (%d >= %d)", XS_TGT(xs),
672 isp->isp_osinfo.loop_down_time, lim);
673 XS_SETERR(xs, HBA_SELTIMEOUT);
674 scsipi_done(xs);
675 break;
676 }
677 if (isp->isp_osinfo.blocked == 0) {
678 isp->isp_osinfo.blocked = 1;
679 scsipi_channel_freeze(&isp->isp_osinfo.chan[chan], 1);
680 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
681 "FREEZE QUEUES @ LINE %d", __LINE__);
682 } else {
683 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
684 "RQLATER WITH FROZEN QUEUES @ LINE %d", __LINE__);
685 }
686 xs->error = XS_REQUEUE;
687 scsipi_done(xs);
688 break;
689 case CMD_COMPLETE:
690 scsipi_done(xs);
691 break;
692 }
693 ISP_UNLOCK(isp);
694 }
695
696 static void
697 isprequest(struct scsipi_channel *chan, scsipi_adapter_req_t req, void *arg)
698 {
699 struct ispsoftc *isp = device_private(chan->chan_adapter->adapt_dev);
700
701 switch (req) {
702 case ADAPTER_REQ_RUN_XFER:
703 ispcmd(isp, (XS_T *) arg);
704 break;
705
706 case ADAPTER_REQ_GROW_RESOURCES:
707 /* Not supported. */
708 break;
709
710 case ADAPTER_REQ_SET_XFER_MODE:
711 if (IS_SCSI(isp)) {
712 struct scsipi_xfer_mode *xm = arg;
713 int dflags = 0;
714 sdparam *sdp = SDPARAM(isp, chan->chan_channel);
715
716 printf("CHAN %d\n", chan->chan_channel);
717 if (1) break;
718 if (xm->xm_mode & PERIPH_CAP_TQING)
719 dflags |= DPARM_TQING;
720 if (xm->xm_mode & PERIPH_CAP_WIDE16)
721 dflags |= DPARM_WIDE;
722 if (xm->xm_mode & PERIPH_CAP_SYNC)
723 dflags |= DPARM_SYNC;
724 ISP_LOCK(isp);
725 sdp->isp_devparam[xm->xm_target].goal_flags |= dflags;
726 dflags = sdp->isp_devparam[xm->xm_target].goal_flags;
727 sdp->isp_devparam[xm->xm_target].dev_update = 1;
728 sdp->update = 1;
729 ISP_UNLOCK(isp);
730 isp_prt(isp, ISP_LOGDEBUG1,
731 "isprequest: device flags 0x%x for %d.%d.X",
732 dflags, chan->chan_channel, xm->xm_target);
733 break;
734 }
735 default:
736 break;
737 }
738 }
739
740 static void
741 isp_polled_cmd_wait(struct ispsoftc *isp, XS_T *xs)
742 {
743 int infinite = 0, mswait;
744
745 /*
746 * If we can't use interrupts, poll on completion.
747 */
748 if ((mswait = XS_TIME(xs)) == 0) {
749 infinite = 1;
750 }
751
752 while (mswait || infinite) {
753 uint32_t isr;
754 uint16_t sema, mbox;
755 if (ISP_READ_ISR(isp, &isr, &sema, &mbox)) {
756 isp_intr(isp, isr, sema, mbox);
757 if (XS_CMD_DONE_P(xs)) {
758 break;
759 }
760 }
761 ISP_DELAY(1000);
762 mswait -= 1;
763 }
764
765 /*
766 * If no other error occurred but we didn't finish
767 * something bad happened, so abort the command.
768 */
769 if (XS_CMD_DONE_P(xs) == 0) {
770 if (isp_control(isp, ISPCTL_ABORT_CMD, xs)) {
771 isp_reinit(isp, 0);
772 }
773 if (XS_NOERR(xs)) {
774 isp_prt(isp, ISP_LOGERR, "polled command timed out");
775 XS_SETERR(xs, HBA_BOTCH);
776 }
777 }
778 scsipi_done(xs);
779 }
780
781 void
782 isp_done(XS_T *xs)
783 {
784 if (XS_CMD_WDOG_P(xs) == 0) {
785 struct ispsoftc *isp = XS_ISP(xs);
786 callout_stop(&xs->xs_callout);
787 if (XS_CMD_GRACE_P(xs)) {
788 isp_prt(isp, ISP_LOGDEBUG1,
789 "finished command on borrowed time");
790 }
791 XS_CMD_S_CLEAR(xs);
792 /*
793 * Fixup- if we get a QFULL, we need
794 * to set XS_BUSY as the error.
795 */
796 if (xs->status == SCSI_QUEUE_FULL) {
797 xs->error = XS_BUSY;
798 }
799 if (isp->isp_osinfo.paused) {
800 int i;
801 isp->isp_osinfo.paused = 0;
802 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
803 "THAW QUEUES @ LINE %d", __LINE__);
804 for (i = 0; i < isp->isp_nchan; i++) {
805 scsipi_channel_timed_thaw(&isp->isp_osinfo.chan[i]);
806 }
807 }
808 if (xs->error == XS_DRIVER_STUFFUP) {
809 isp_prt(isp, ISP_LOGERR,
810 "BOTCHED cmd for %d.%d.%d cmd 0x%x datalen %ld",
811 XS_CHANNEL(xs), XS_TGT(xs), XS_LUN(xs),
812 XS_CDBP(xs)[0], (long) XS_XFRLEN(xs));
813 }
814 scsipi_done(xs);
815 }
816 }
817
818 static void
819 isp_dog(void *arg)
820 {
821 XS_T *xs = arg;
822 struct ispsoftc *isp = XS_ISP(xs);
823 uint32_t handle;
824
825
826 ISP_ILOCK(isp);
827 /*
828 * We've decided this command is dead. Make sure we're not trying
829 * to kill a command that's already dead by getting it's handle and
830 * and seeing whether it's still alive.
831 */
832 handle = isp_find_handle(isp, xs);
833 if (handle) {
834 uint32_t isr;
835 uint16_t mbox, sema;
836
837 if (XS_CMD_DONE_P(xs)) {
838 isp_prt(isp, ISP_LOGDEBUG1,
839 "watchdog found done cmd (handle 0x%x)", handle);
840 ISP_IUNLOCK(isp);
841 return;
842 }
843
844 if (XS_CMD_WDOG_P(xs)) {
845 isp_prt(isp, ISP_LOGDEBUG1,
846 "recursive watchdog (handle 0x%x)", handle);
847 ISP_IUNLOCK(isp);
848 return;
849 }
850
851 XS_CMD_S_WDOG(xs);
852
853 if (ISP_READ_ISR(isp, &isr, &sema, &mbox)) {
854 isp_intr(isp, isr, sema, mbox);
855
856 }
857 if (XS_CMD_DONE_P(xs)) {
858 isp_prt(isp, ISP_LOGDEBUG1,
859 "watchdog cleanup for handle 0x%x", handle);
860 XS_CMD_C_WDOG(xs);
861 isp_done(xs);
862 } else if (XS_CMD_GRACE_P(xs)) {
863 isp_prt(isp, ISP_LOGDEBUG1,
864 "watchdog timeout for handle 0x%x", handle);
865 /*
866 * Make sure the command is *really* dead before we
867 * release the handle (and DMA resources) for reuse.
868 */
869 (void) isp_control(isp, ISPCTL_ABORT_CMD, arg);
870
871 /*
872 * After this point, the command is really dead.
873 */
874 if (XS_XFRLEN(xs)) {
875 ISP_DMAFREE(isp, xs, handle);
876 }
877 isp_destroy_handle(isp, handle);
878 XS_SETERR(xs, XS_TIMEOUT);
879 XS_CMD_S_CLEAR(xs);
880 isp_done(xs);
881 } else {
882 void *qe;
883 isp_marker_t local, *mp = &local;
884 isp_prt(isp, ISP_LOGDEBUG2,
885 "possible command timeout on handle %x", handle);
886 XS_CMD_C_WDOG(xs);
887 callout_reset(&xs->xs_callout, hz, isp_dog, xs);
888 qe = isp_getrqentry(isp);
889 if (qe == NULL) {
890 ISP_UNLOCK(isp);
891 return;
892 }
893 XS_CMD_S_GRACE(xs);
894 ISP_MEMZERO((void *) mp, sizeof (*mp));
895 mp->mrk_header.rqs_entry_count = 1;
896 mp->mrk_header.rqs_entry_type = RQSTYPE_MARKER;
897 mp->mrk_modifier = SYNC_ALL;
898 mp->mrk_target = XS_CHANNEL(xs) << 7;
899 isp_put_marker(isp, mp, qe);
900 ISP_SYNC_REQUEST(isp);
901 }
902 } else {
903 isp_prt(isp, ISP_LOGDEBUG0, "watchdog with no command");
904 }
905 ISP_IUNLOCK(isp);
906 }
907
908 /*
909 * Gone Device Timer Function- when we have decided that a device has gone
910 * away, we wait a specific period of time prior to telling the OS it has
911 * gone away.
912 *
913 * This timer function fires once a second and then scans the port database
914 * for devices that are marked dead but still have a virtual target assigned.
915 * We decrement a counter for that port database entry, and when it hits zero,
916 * we tell the OS the device has gone away.
917 */
918 static void
919 isp_gdt(void *arg)
920 {
921 ispsoftc_t *isp = arg;
922 fcportdb_t *lp;
923 int dbidx, tgt, more_to_do = 0;
924
925 isp_prt(isp, ISP_LOGDEBUG0, "GDT timer expired");
926 ISP_LOCK(isp);
927 for (dbidx = 0; dbidx < MAX_FC_TARG; dbidx++) {
928 lp = &FCPARAM(isp, 0)->portdb[dbidx];
929
930 if (lp->state != FC_PORTDB_STATE_ZOMBIE) {
931 continue;
932 }
933 if (lp->dev_map_idx == 0) {
934 continue;
935 }
936 if (lp->new_reserved == 0) {
937 continue;
938 }
939 lp->new_reserved -= 1;
940 if (lp->new_reserved != 0) {
941 more_to_do++;
942 continue;
943 }
944 tgt = lp->dev_map_idx - 1;
945 FCPARAM(isp, 0)->isp_dev_map[tgt] = 0;
946 lp->dev_map_idx = 0;
947 lp->state = FC_PORTDB_STATE_NIL;
948 isp_prt(isp, ISP_LOGCONFIG, prom3, lp->portid, tgt,
949 "Gone Device Timeout");
950 isp_make_gone(isp, tgt);
951 }
952 if (more_to_do) {
953 callout_schedule(&isp->isp_osinfo.gdt, hz);
954 } else {
955 isp->isp_osinfo.gdt_running = 0;
956 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
957 "stopping Gone Device Timer");
958 }
959 ISP_UNLOCK(isp);
960 }
961
962 /*
963 * Loop Down Timer Function- when loop goes down, a timer is started and
964 * and after it expires we come here and take all probational devices that
965 * the OS knows about and the tell the OS that they've gone away.
966 *
967 * We don't clear the devices out of our port database because, when loop
968 * come back up, we have to do some actual cleanup with the chip at that
969 * point (implicit PLOGO, e.g., to get the chip's port database state right).
970 */
971 static void
972 isp_ldt(void *arg)
973 {
974 ispsoftc_t *isp = arg;
975 fcportdb_t *lp;
976 int dbidx, tgt;
977
978 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0, "Loop Down Timer expired");
979 ISP_LOCK(isp);
980
981 /*
982 * Notify to the OS all targets who we now consider have departed.
983 */
984 for (dbidx = 0; dbidx < MAX_FC_TARG; dbidx++) {
985 lp = &FCPARAM(isp, 0)->portdb[dbidx];
986
987 if (lp->state != FC_PORTDB_STATE_PROBATIONAL) {
988 continue;
989 }
990 if (lp->dev_map_idx == 0) {
991 continue;
992 }
993
994 /*
995 * XXX: CLEAN UP AND COMPLETE ANY PENDING COMMANDS FIRST!
996 */
997
998 /*
999 * Mark that we've announced that this device is gone....
1000 */
1001 lp->reserved = 1;
1002
1003 /*
1004 * but *don't* change the state of the entry. Just clear
1005 * any target id stuff and announce to CAM that the
1006 * device is gone. This way any necessary PLOGO stuff
1007 * will happen when loop comes back up.
1008 */
1009
1010 tgt = lp->dev_map_idx - 1;
1011 FCPARAM(isp, 0)->isp_dev_map[tgt] = 0;
1012 lp->dev_map_idx = 0;
1013 isp_prt(isp, ISP_LOGCONFIG, prom3, lp->portid, tgt,
1014 "Loop Down Timeout");
1015 isp_make_gone(isp, tgt);
1016 }
1017
1018 /*
1019 * The loop down timer has expired. Wake up the kthread
1020 * to notice that fact (or make it false).
1021 */
1022 isp->isp_osinfo.loop_down_time = isp->isp_osinfo.loop_down_limit+1;
1023 wakeup(&isp->isp_osinfo.thread);
1024 ISP_UNLOCK(isp);
1025 }
1026
1027 static void
1028 isp_make_here(ispsoftc_t *isp, int tgt)
1029 {
1030 isp_prt(isp, ISP_LOGINFO, "target %d has arrived", tgt);
1031 }
1032
1033 static void
1034 isp_make_gone(ispsoftc_t *isp, int tgt)
1035 {
1036 isp_prt(isp, ISP_LOGINFO, "target %d has departed", tgt);
1037 }
1038
1039 static void
1040 isp_fc_worker(void *arg)
1041 {
1042 void scsipi_run_queue(struct scsipi_channel *);
1043 ispsoftc_t *isp = arg;
1044 int slp = 0;
1045 int chan = 0;
1046
1047 int s = splbio();
1048 /*
1049 * The first loop is for our usage where we have yet to have
1050 * gotten good fibre channel state.
1051 */
1052 while (isp->isp_osinfo.thread != NULL) {
1053 int sok, lb, lim;
1054
1055 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0, "checking FC state");
1056 sok = isp->isp_osinfo.mbox_sleep_ok;
1057 isp->isp_osinfo.mbox_sleep_ok = 1;
1058 lb = isp_fc_runstate(isp, chan, 250000);
1059 isp->isp_osinfo.mbox_sleep_ok = sok;
1060 if (lb) {
1061 /*
1062 * Increment loop down time by the last sleep interval
1063 */
1064 isp->isp_osinfo.loop_down_time += slp;
1065
1066 if (lb < 0) {
1067 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
1068 "FC loop not up (down count %d)",
1069 isp->isp_osinfo.loop_down_time);
1070 } else {
1071 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
1072 "FC got to %d (down count %d)",
1073 lb, isp->isp_osinfo.loop_down_time);
1074 }
1075
1076
1077 /*
1078 * If we've never seen loop up and we've waited longer
1079 * than quickboot time, or we've seen loop up but we've
1080 * waited longer than loop_down_limit, give up and go
1081 * to sleep until loop comes up.
1082 */
1083 if (FCPARAM(isp, 0)->loop_seen_once == 0) {
1084 lim = isp_quickboot_time;
1085 } else {
1086 lim = isp->isp_osinfo.loop_down_limit;
1087 }
1088 if (isp->isp_osinfo.loop_down_time >= lim) {
1089 /*
1090 * If we're now past our limit, release
1091 * the queues and let them come in and
1092 * either get HBA_SELTIMOUT or cause
1093 * another freeze.
1094 */
1095 isp->isp_osinfo.blocked = 1;
1096 slp = 0;
1097 } else if (isp->isp_osinfo.loop_down_time < 10) {
1098 slp = 1;
1099 } else if (isp->isp_osinfo.loop_down_time < 30) {
1100 slp = 5;
1101 } else if (isp->isp_osinfo.loop_down_time < 60) {
1102 slp = 10;
1103 } else if (isp->isp_osinfo.loop_down_time < 120) {
1104 slp = 20;
1105 } else {
1106 slp = 30;
1107 }
1108
1109 } else {
1110 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
1111 "FC state OK");
1112 isp->isp_osinfo.loop_down_time = 0;
1113 slp = 0;
1114 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
1115 "THAW QUEUES @ LINE %d", __LINE__);
1116 scsipi_channel_thaw(&isp->isp_osinfo.chan[chan], 1);
1117 }
1118
1119 /*
1120 * If we'd frozen the queues, unfreeze them now so that
1121 * we can start getting commands. If the FC state isn't
1122 * okay yet, they'll hit that in isp_start which will
1123 * freeze the queues again.
1124 */
1125 if (isp->isp_osinfo.blocked) {
1126 isp->isp_osinfo.blocked = 0;
1127 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
1128 "THAW QUEUES @ LINE %d", __LINE__);
1129 scsipi_channel_thaw(&isp->isp_osinfo.chan[chan], 1);
1130 }
1131 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0, "sleep time %d", slp);
1132 tsleep(&isp->isp_osinfo.thread, PRIBIO, "ispf", slp * hz);
1133
1134 /*
1135 * If slp is zero, we're waking up for the first time after
1136 * things have been okay. In this case, we set a deferral state
1137 * for all commands and delay hysteresis seconds before starting
1138 * the FC state evaluation. This gives the loop/fabric a chance
1139 * to settle.
1140 */
1141 if (slp == 0 && isp_fabric_hysteresis) {
1142 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
1143 "sleep hysteresis tick time %d",
1144 isp_fabric_hysteresis * hz);
1145 (void) tsleep(&isp_fabric_hysteresis, PRIBIO, "ispT",
1146 (isp_fabric_hysteresis * hz));
1147 }
1148 }
1149 splx(s);
1150
1151 /* In case parent is waiting for us to exit. */
1152 wakeup(&isp->isp_osinfo.thread);
1153 kthread_exit(0);
1154 }
1155
1156 /*
1157 * Free any associated resources prior to decommissioning and
1158 * set the card to a known state (so it doesn't wake up and kick
1159 * us when we aren't expecting it to).
1160 *
1161 * Locks are held before coming here.
1162 */
1163 void
1164 isp_uninit(struct ispsoftc *isp)
1165 {
1166 isp_lock(isp);
1167 /*
1168 * Leave with interrupts disabled.
1169 */
1170 ISP_DISABLE_INTS(isp);
1171 isp_unlock(isp);
1172 }
1173
1174 void
1175 isp_async(struct ispsoftc *isp, ispasync_t cmd, ...)
1176 {
1177 int bus, tgt;
1178 const char *msg = NULL;
1179 static const char prom[] =
1180 "PortID 0x%06x handle 0x%x role %s %s\n"
1181 " WWNN 0x%08x%08x WWPN 0x%08x%08x";
1182 static const char prom2[] =
1183 "PortID 0x%06x handle 0x%x role %s %s tgt %u\n"
1184 " WWNN 0x%08x%08x WWPN 0x%08x%08x";
1185 fcportdb_t *lp;
1186 va_list ap;
1187
1188 switch (cmd) {
1189 case ISPASYNC_NEW_TGT_PARAMS:
1190 if (IS_SCSI(isp)) {
1191 sdparam *sdp;
1192 int flags;
1193 struct scsipi_xfer_mode xm;
1194
1195 va_start(ap, cmd);
1196 bus = va_arg(ap, int);
1197 tgt = va_arg(ap, int);
1198 va_end(ap);
1199 sdp = SDPARAM(isp, bus);
1200 flags = sdp->isp_devparam[tgt].actv_flags;
1201
1202 xm.xm_mode = 0;
1203 xm.xm_period = sdp->isp_devparam[tgt].actv_period;
1204 xm.xm_offset = sdp->isp_devparam[tgt].actv_offset;
1205 xm.xm_target = tgt;
1206
1207 if ((flags & DPARM_SYNC) && xm.xm_period && xm.xm_offset)
1208 xm.xm_mode |= PERIPH_CAP_SYNC;
1209 if (flags & DPARM_WIDE)
1210 xm.xm_mode |= PERIPH_CAP_WIDE16;
1211 if (flags & DPARM_TQING)
1212 xm.xm_mode |= PERIPH_CAP_TQING;
1213 scsipi_async_event(&isp->isp_osinfo.chan[bus],
1214 ASYNC_EVENT_XFER_MODE, &xm);
1215 break;
1216 }
1217 case ISPASYNC_BUS_RESET:
1218 va_start(ap, cmd);
1219 bus = va_arg(ap, int);
1220 va_end(ap);
1221 isp_prt(isp, ISP_LOGINFO, "SCSI bus %d reset detected", bus);
1222 scsipi_async_event(&isp->isp_osinfo.chan[bus],
1223 ASYNC_EVENT_RESET, NULL);
1224 break;
1225 case ISPASYNC_LIP:
1226 if (msg == NULL) {
1227 msg = "LIP Received";
1228 }
1229 /* FALLTHROUGH */
1230 case ISPASYNC_LOOP_RESET:
1231 if (msg == NULL) {
1232 msg = "LOOP Reset Received";
1233 }
1234 /* FALLTHROUGH */
1235 case ISPASYNC_LOOP_DOWN:
1236 if (msg == NULL) {
1237 msg = "Loop DOWN";
1238 }
1239 va_start(ap, cmd);
1240 bus = va_arg(ap, int);
1241 va_end(ap);
1242
1243 /*
1244 * Don't do queue freezes or blockage until we have the
1245 * thread running and interrupts that can unfreeze/unblock us.
1246 */
1247 if (isp->isp_osinfo.mbox_sleep_ok &&
1248 isp->isp_osinfo.blocked == 0 &&
1249 isp->isp_osinfo.thread) {
1250 isp->isp_osinfo.blocked = 1;
1251 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
1252 "FREEZE QUEUES @ LINE %d", __LINE__);
1253 scsipi_channel_freeze(&isp->isp_osinfo.chan[bus], 1);
1254 if (callout_pending(&isp->isp_osinfo.ldt) == 0) {
1255 callout_schedule(&isp->isp_osinfo.ldt,
1256 isp->isp_osinfo.loop_down_limit * hz);
1257 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
1258 "Starting Loop Down Timer");
1259 }
1260 }
1261 isp_prt(isp, ISP_LOGINFO, msg);
1262 break;
1263 case ISPASYNC_LOOP_UP:
1264 /*
1265 * Let the subsequent ISPASYNC_CHANGE_NOTIFY invoke
1266 * the FC worker thread. When the FC worker thread
1267 * is done, let *it* call scsipi_channel_thaw...
1268 */
1269 isp_prt(isp, ISP_LOGINFO, "Loop UP");
1270 break;
1271 case ISPASYNC_DEV_ARRIVED:
1272 va_start(ap, cmd);
1273 bus = va_arg(ap, int);
1274 lp = va_arg(ap, fcportdb_t *);
1275 va_end(ap);
1276 lp->reserved = 0;
1277 if ((FCPARAM(isp, bus)->role & ISP_ROLE_INITIATOR) &&
1278 (lp->roles & (SVC3_TGT_ROLE >> SVC3_ROLE_SHIFT))) {
1279 int dbidx = lp - FCPARAM(isp, bus)->portdb;
1280 int i;
1281
1282 for (i = 0; i < MAX_FC_TARG; i++) {
1283 if (i >= FL_ID && i <= SNS_ID) {
1284 continue;
1285 }
1286 if (FCPARAM(isp, bus)->isp_dev_map[i] == 0) {
1287 break;
1288 }
1289 }
1290 if (i < MAX_FC_TARG) {
1291 FCPARAM(isp, bus)->isp_dev_map[i] = dbidx + 1;
1292 lp->dev_map_idx = i + 1;
1293 } else {
1294 isp_prt(isp, ISP_LOGWARN, "out of target ids");
1295 isp_dump_portdb(isp, bus);
1296 }
1297 }
1298 if (lp->dev_map_idx) {
1299 tgt = lp->dev_map_idx - 1;
1300 isp_prt(isp, ISP_LOGCONFIG, prom2,
1301 lp->portid, lp->handle,
1302 roles[lp->roles], "arrived at", tgt,
1303 (uint32_t) (lp->node_wwn >> 32),
1304 (uint32_t) lp->node_wwn,
1305 (uint32_t) (lp->port_wwn >> 32),
1306 (uint32_t) lp->port_wwn);
1307 isp_make_here(isp, tgt);
1308 } else {
1309 isp_prt(isp, ISP_LOGCONFIG, prom,
1310 lp->portid, lp->handle,
1311 roles[lp->roles], "arrived",
1312 (uint32_t) (lp->node_wwn >> 32),
1313 (uint32_t) lp->node_wwn,
1314 (uint32_t) (lp->port_wwn >> 32),
1315 (uint32_t) lp->port_wwn);
1316 }
1317 break;
1318 case ISPASYNC_DEV_CHANGED:
1319 va_start(ap, cmd);
1320 bus = va_arg(ap, int);
1321 lp = va_arg(ap, fcportdb_t *);
1322 va_end(ap);
1323 if (isp_change_is_bad) {
1324 lp->state = FC_PORTDB_STATE_NIL;
1325 if (lp->dev_map_idx) {
1326 tgt = lp->dev_map_idx - 1;
1327 FCPARAM(isp, bus)->isp_dev_map[tgt] = 0;
1328 lp->dev_map_idx = 0;
1329 isp_prt(isp, ISP_LOGCONFIG, prom3,
1330 lp->portid, tgt, "change is bad");
1331 isp_make_gone(isp, tgt);
1332 } else {
1333 isp_prt(isp, ISP_LOGCONFIG, prom,
1334 lp->portid, lp->handle,
1335 roles[lp->roles],
1336 "changed and departed",
1337 (uint32_t) (lp->node_wwn >> 32),
1338 (uint32_t) lp->node_wwn,
1339 (uint32_t) (lp->port_wwn >> 32),
1340 (uint32_t) lp->port_wwn);
1341 }
1342 } else {
1343 lp->portid = lp->new_portid;
1344 lp->roles = lp->new_roles;
1345 if (lp->dev_map_idx) {
1346 int t = lp->dev_map_idx - 1;
1347 FCPARAM(isp, bus)->isp_dev_map[t] =
1348 (lp - FCPARAM(isp, bus)->portdb) + 1;
1349 tgt = lp->dev_map_idx - 1;
1350 isp_prt(isp, ISP_LOGCONFIG, prom2,
1351 lp->portid, lp->handle,
1352 roles[lp->roles], "changed at", tgt,
1353 (uint32_t) (lp->node_wwn >> 32),
1354 (uint32_t) lp->node_wwn,
1355 (uint32_t) (lp->port_wwn >> 32),
1356 (uint32_t) lp->port_wwn);
1357 } else {
1358 isp_prt(isp, ISP_LOGCONFIG, prom,
1359 lp->portid, lp->handle,
1360 roles[lp->roles], "changed",
1361 (uint32_t) (lp->node_wwn >> 32),
1362 (uint32_t) lp->node_wwn,
1363 (uint32_t) (lp->port_wwn >> 32),
1364 (uint32_t) lp->port_wwn);
1365 }
1366 }
1367 break;
1368 case ISPASYNC_DEV_STAYED:
1369 va_start(ap, cmd);
1370 bus = va_arg(ap, int);
1371 lp = va_arg(ap, fcportdb_t *);
1372 va_end(ap);
1373 if (lp->dev_map_idx) {
1374 tgt = lp->dev_map_idx - 1;
1375 isp_prt(isp, ISP_LOGCONFIG, prom2,
1376 lp->portid, lp->handle,
1377 roles[lp->roles], "stayed at", tgt,
1378 (uint32_t) (lp->node_wwn >> 32),
1379 (uint32_t) lp->node_wwn,
1380 (uint32_t) (lp->port_wwn >> 32),
1381 (uint32_t) lp->port_wwn);
1382 } else {
1383 isp_prt(isp, ISP_LOGCONFIG, prom,
1384 lp->portid, lp->handle,
1385 roles[lp->roles], "stayed",
1386 (uint32_t) (lp->node_wwn >> 32),
1387 (uint32_t) lp->node_wwn,
1388 (uint32_t) (lp->port_wwn >> 32),
1389 (uint32_t) lp->port_wwn);
1390 }
1391 break;
1392 case ISPASYNC_DEV_GONE:
1393 va_start(ap, cmd);
1394 bus = va_arg(ap, int);
1395 lp = va_arg(ap, fcportdb_t *);
1396 va_end(ap);
1397 /*
1398 * If this has a virtual target and we haven't marked it
1399 * that we're going to have isp_gdt tell the OS it's gone,
1400 * set the isp_gdt timer running on it.
1401 *
1402 * If it isn't marked that isp_gdt is going to get rid of it,
1403 * announce that it's gone.
1404 */
1405 if (lp->dev_map_idx && lp->reserved == 0) {
1406 lp->reserved = 1;
1407 lp->new_reserved = isp->isp_osinfo.gone_device_time;
1408 lp->state = FC_PORTDB_STATE_ZOMBIE;
1409 if (isp->isp_osinfo.gdt_running == 0) {
1410 isp->isp_osinfo.gdt_running = 1;
1411 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
1412 "starting Gone Device Timer");
1413 callout_schedule(&isp->isp_osinfo.gdt, hz);
1414 }
1415 tgt = lp->dev_map_idx - 1;
1416 isp_prt(isp, ISP_LOGCONFIG, prom2,
1417 lp->portid, lp->handle,
1418 roles[lp->roles], "gone zombie at", tgt,
1419 (uint32_t) (lp->node_wwn >> 32),
1420 (uint32_t) lp->node_wwn,
1421 (uint32_t) (lp->port_wwn >> 32),
1422 (uint32_t) lp->port_wwn);
1423 } else if (lp->reserved == 0) {
1424 isp_prt(isp, ISP_LOGCONFIG, prom,
1425 lp->portid, lp->handle,
1426 roles[lp->roles], "departed",
1427 (uint32_t) (lp->node_wwn >> 32),
1428 (uint32_t) lp->node_wwn,
1429 (uint32_t) (lp->port_wwn >> 32),
1430 (uint32_t) lp->port_wwn);
1431 }
1432 break;
1433 case ISPASYNC_CHANGE_NOTIFY:
1434 {
1435 int opt;
1436
1437 va_start(ap, cmd);
1438 bus = va_arg(ap, int);
1439 opt = va_arg(ap, int);
1440 va_end(ap);
1441
1442 if (opt == ISPASYNC_CHANGE_PDB) {
1443 msg = "Port Database Changed";
1444 } else if (opt == ISPASYNC_CHANGE_SNS) {
1445 msg = "Name Server Database Changed";
1446 } else {
1447 msg = "Other Change Notify";
1448 }
1449 /*
1450 * If the loop down timer is running, cancel it.
1451 */
1452 if (callout_pending(&isp->isp_osinfo.ldt)) {
1453 callout_stop(&isp->isp_osinfo.ldt);
1454 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
1455 "Stopping Loop Down Timer");
1456 }
1457 isp_prt(isp, ISP_LOGINFO, msg);
1458 /*
1459 * We can set blocked here because we know it's now okay
1460 * to try and run isp_fc_runstate (in order to build loop
1461 * state). But we don't try and freeze the midlayer's queue
1462 * if we have no thread that we can wake to later unfreeze
1463 * it.
1464 */
1465 if (isp->isp_osinfo.blocked == 0) {
1466 isp->isp_osinfo.blocked = 1;
1467 if (isp->isp_osinfo.thread) {
1468 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
1469 "FREEZE QUEUES @ LINE %d", __LINE__);
1470 scsipi_channel_freeze(&isp->isp_osinfo.chan[bus], 1);
1471 }
1472 }
1473 /*
1474 * Note that we have work for the thread to do, and
1475 * if the thread is here already, wake it up.
1476 */
1477 if (isp->isp_osinfo.thread) {
1478 wakeup(&isp->isp_osinfo.thread);
1479 } else {
1480 isp_prt(isp, ISP_LOGDEBUG1, "no FC thread yet");
1481 }
1482 break;
1483 }
1484 case ISPASYNC_FW_CRASH:
1485 {
1486 uint16_t mbox1;
1487 mbox1 = ISP_READ(isp, OUTMAILBOX1);
1488 if (IS_DUALBUS(isp)) {
1489 bus = ISP_READ(isp, OUTMAILBOX6);
1490 } else {
1491 bus = 0;
1492 }
1493 isp_prt(isp, ISP_LOGERR,
1494 "Internal Firmware Error on bus %d @ RISC Address 0x%x",
1495 bus, mbox1);
1496 if (IS_FC(isp)) {
1497 if (isp->isp_osinfo.blocked == 0) {
1498 isp->isp_osinfo.blocked = 1;
1499 isp_prt(isp, ISP_LOGSANCFG|ISP_LOGDEBUG0,
1500 "FREEZE QUEUES @ LINE %d", __LINE__);
1501 scsipi_channel_freeze(&isp->isp_osinfo.chan[bus], 1);
1502 }
1503 }
1504 mbox1 = isp->isp_osinfo.mbox_sleep_ok;
1505 isp->isp_osinfo.mbox_sleep_ok = 0;
1506 isp_reinit(isp, 0);
1507 isp->isp_osinfo.mbox_sleep_ok = mbox1;
1508 isp_async(isp, ISPASYNC_FW_RESTARTED, NULL);
1509 break;
1510 }
1511 default:
1512 break;
1513 }
1514 }
1515
1516 void
1517 isp_prt(struct ispsoftc *isp, int level, const char *fmt, ...)
1518 {
1519 va_list ap;
1520 if (level != ISP_LOGALL && (level & isp->isp_dblev) == 0) {
1521 return;
1522 }
1523 printf("%s: ", device_xname(isp->isp_osinfo.dev));
1524 va_start(ap, fmt);
1525 vprintf(fmt, ap);
1526 va_end(ap);
1527 printf("\n");
1528 }
1529
1530 void
1531 isp_xs_prt(struct ispsoftc *isp, XS_T *xs, int level, const char *fmt, ...)
1532 {
1533 va_list ap;
1534 if (level != ISP_LOGALL && (level & isp->isp_dblev) == 0) {
1535 return;
1536 }
1537 scsipi_printaddr(xs->xs_periph);
1538 va_start(ap, fmt);
1539 vprintf(fmt, ap);
1540 va_end(ap);
1541 printf("\n");
1542 }
1543
1544 void
1545 isp_lock(struct ispsoftc *isp)
1546 {
1547 int s = splbio();
1548 if (isp->isp_osinfo.islocked++ == 0) {
1549 isp->isp_osinfo.splsaved = s;
1550 } else {
1551 splx(s);
1552 }
1553 }
1554
1555 void
1556 isp_unlock(struct ispsoftc *isp)
1557 {
1558 if (isp->isp_osinfo.islocked-- <= 1) {
1559 isp->isp_osinfo.islocked = 0;
1560 splx(isp->isp_osinfo.splsaved);
1561 }
1562 }
1563
1564 uint64_t
1565 isp_microtime_sub(struct timeval *b, struct timeval *a)
1566 {
1567 struct timeval x;
1568 uint64_t elapsed;
1569 timersub(b, a, &x);
1570 elapsed = GET_NANOSEC(&x);
1571 if (elapsed == 0)
1572 elapsed++;
1573 return (elapsed);
1574 }
1575
1576 int
1577 isp_mbox_acquire(ispsoftc_t *isp)
1578 {
1579 if (isp->isp_osinfo.mboxbsy) {
1580 return (1);
1581 } else {
1582 isp->isp_osinfo.mboxcmd_done = 0;
1583 isp->isp_osinfo.mboxbsy = 1;
1584 return (0);
1585 }
1586 }
1587
1588 void
1589 isp_mbox_wait_complete(struct ispsoftc *isp, mbreg_t *mbp)
1590 {
1591 unsigned int usecs = mbp->timeout;
1592 unsigned int maxc, olim, ilim;
1593 struct timeval start;
1594
1595 if (usecs == 0) {
1596 usecs = MBCMD_DEFAULT_TIMEOUT;
1597 }
1598 maxc = isp->isp_mbxwrk0 + 1;
1599
1600 microtime(&start);
1601 if (isp->isp_osinfo.mbox_sleep_ok) {
1602 int to;
1603 struct timeval tv;
1604
1605 tv.tv_sec = 0;
1606 tv.tv_usec = 0;
1607 for (olim = 0; olim < maxc; olim++) {
1608 tv.tv_sec += (usecs / 1000000);
1609 tv.tv_usec += (usecs % 1000000);
1610 if (tv.tv_usec >= 100000) {
1611 tv.tv_sec++;
1612 tv.tv_usec -= 1000000;
1613 }
1614 }
1615 timeradd(&tv, &start, &tv);
1616 to = tvhzto(&tv);
1617 if (to == 0)
1618 to = 1;
1619
1620 isp->isp_osinfo.mbox_sleep_ok = 0;
1621 isp->isp_osinfo.mbox_sleeping = 1;
1622 tsleep(&isp->isp_mbxworkp, PRIBIO, "ispmbx_sleep", to);
1623 isp->isp_osinfo.mbox_sleeping = 0;
1624 isp->isp_osinfo.mbox_sleep_ok = 1;
1625 } else {
1626 for (olim = 0; olim < maxc; olim++) {
1627 for (ilim = 0; ilim < usecs; ilim += 100) {
1628 uint32_t isr;
1629 uint16_t sema, mbox;
1630 if (isp->isp_osinfo.mboxcmd_done) {
1631 break;
1632 }
1633 if (ISP_READ_ISR(isp, &isr, &sema, &mbox)) {
1634 isp_intr(isp, isr, sema, mbox);
1635 if (isp->isp_osinfo.mboxcmd_done) {
1636 break;
1637 }
1638 }
1639 ISP_DELAY(100);
1640 }
1641 if (isp->isp_osinfo.mboxcmd_done) {
1642 break;
1643 }
1644 }
1645 }
1646 if (isp->isp_osinfo.mboxcmd_done == 0) {
1647 struct timeval finish, elapsed;
1648
1649 microtime(&finish);
1650 timersub(&finish, &start, &elapsed);
1651 isp_prt(isp, ISP_LOGWARN,
1652 "%s Mailbox Command (0x%x) Timeout (%uus actual)",
1653 isp->isp_osinfo.mbox_sleep_ok? "Interrupting" : "Polled",
1654 isp->isp_lastmbxcmd, (elapsed.tv_sec * 1000000) +
1655 elapsed.tv_usec);
1656 mbp->param[0] = MBOX_TIMEOUT;
1657 isp->isp_osinfo.mboxcmd_done = 1;
1658 }
1659 }
1660
1661 void
1662 isp_mbox_notify_done(ispsoftc_t *isp)
1663 {
1664 if (isp->isp_osinfo.mbox_sleeping) {
1665 wakeup(&isp->isp_mbxworkp);
1666 }
1667 isp->isp_osinfo.mboxcmd_done = 1;
1668 }
1669
1670 void
1671 isp_mbox_release(ispsoftc_t *isp)
1672 {
1673 isp->isp_osinfo.mboxbsy = 0;
1674 }
1675