isp_netbsd.c revision 1.39.2.5 1 1.39.2.5 nathanw /* $NetBSD: isp_netbsd.c,v 1.39.2.5 2001/10/08 20:11:01 nathanw Exp $ */
2 1.30 mjacob /*
3 1.30 mjacob * This driver, which is contained in NetBSD in the files:
4 1.30 mjacob *
5 1.30 mjacob * sys/dev/ic/isp.c
6 1.34 wiz * sys/dev/ic/isp_inline.h
7 1.34 wiz * sys/dev/ic/isp_netbsd.c
8 1.34 wiz * sys/dev/ic/isp_netbsd.h
9 1.34 wiz * sys/dev/ic/isp_target.c
10 1.34 wiz * sys/dev/ic/isp_target.h
11 1.34 wiz * sys/dev/ic/isp_tpublic.h
12 1.34 wiz * sys/dev/ic/ispmbox.h
13 1.34 wiz * sys/dev/ic/ispreg.h
14 1.34 wiz * sys/dev/ic/ispvar.h
15 1.30 mjacob * sys/microcode/isp/asm_sbus.h
16 1.30 mjacob * sys/microcode/isp/asm_1040.h
17 1.30 mjacob * sys/microcode/isp/asm_1080.h
18 1.30 mjacob * sys/microcode/isp/asm_12160.h
19 1.30 mjacob * sys/microcode/isp/asm_2100.h
20 1.30 mjacob * sys/microcode/isp/asm_2200.h
21 1.30 mjacob * sys/pci/isp_pci.c
22 1.30 mjacob * sys/sbus/isp_sbus.c
23 1.30 mjacob *
24 1.30 mjacob * Is being actively maintained by Matthew Jacob (mjacob (at) netbsd.org).
25 1.30 mjacob * This driver also is shared source with FreeBSD, OpenBSD, Linux, Solaris,
26 1.30 mjacob * Linux versions. This tends to be an interesting maintenance problem.
27 1.30 mjacob *
28 1.30 mjacob * Please coordinate with Matthew Jacob on changes you wish to make here.
29 1.30 mjacob */
30 1.1 mjacob /*
31 1.1 mjacob * Platform (NetBSD) dependent common attachment code for Qlogic adapters.
32 1.15 mjacob * Matthew Jacob <mjacob (at) nas.nasa.gov>
33 1.15 mjacob */
34 1.15 mjacob /*
35 1.15 mjacob * Copyright (C) 1997, 1998, 1999 National Aeronautics & Space Administration
36 1.1 mjacob * All rights reserved.
37 1.1 mjacob *
38 1.1 mjacob * Redistribution and use in source and binary forms, with or without
39 1.1 mjacob * modification, are permitted provided that the following conditions
40 1.1 mjacob * are met:
41 1.1 mjacob * 1. Redistributions of source code must retain the above copyright
42 1.15 mjacob * notice, this list of conditions and the following disclaimer.
43 1.1 mjacob * 2. Redistributions in binary form must reproduce the above copyright
44 1.1 mjacob * notice, this list of conditions and the following disclaimer in the
45 1.1 mjacob * documentation and/or other materials provided with the distribution.
46 1.1 mjacob * 3. The name of the author may not be used to endorse or promote products
47 1.15 mjacob * derived from this software without specific prior written permission
48 1.1 mjacob *
49 1.15 mjacob * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
50 1.15 mjacob * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
51 1.15 mjacob * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
52 1.15 mjacob * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
53 1.15 mjacob * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
54 1.15 mjacob * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
55 1.15 mjacob * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
56 1.15 mjacob * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
57 1.15 mjacob * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
58 1.15 mjacob * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
59 1.1 mjacob */
60 1.1 mjacob
61 1.1 mjacob #include <dev/ic/isp_netbsd.h>
62 1.17 mjacob #include <sys/scsiio.h>
63 1.1 mjacob
64 1.27 mjacob
65 1.27 mjacob /*
66 1.27 mjacob * Set a timeout for the watchdogging of a command.
67 1.27 mjacob *
68 1.27 mjacob * The dimensional analysis is
69 1.27 mjacob *
70 1.27 mjacob * milliseconds * (seconds/millisecond) * (ticks/second) = ticks
71 1.27 mjacob *
72 1.27 mjacob * =
73 1.27 mjacob *
74 1.27 mjacob * (milliseconds / 1000) * hz = ticks
75 1.27 mjacob *
76 1.27 mjacob *
77 1.27 mjacob * For timeouts less than 1 second, we'll get zero. Because of this, and
78 1.27 mjacob * because we want to establish *our* timeout to be longer than what the
79 1.27 mjacob * firmware might do, we just add 3 seconds at the back end.
80 1.27 mjacob */
81 1.27 mjacob #define _XT(xs) ((((xs)->timeout/1000) * hz) + (3 * hz))
82 1.26 mjacob
83 1.39.2.3 nathanw static void isp_config_interrupts(struct device *);
84 1.39.2.2 nathanw static void ispminphys_1020(struct buf *);
85 1.39.2.1 nathanw static void ispminphys(struct buf *);
86 1.39.2.2 nathanw static INLINE void ispcmd(struct ispsoftc *, XS_T *);
87 1.39.2.2 nathanw static void isprequest(struct scsipi_channel *, scsipi_adapter_req_t, void *);
88 1.39.2.2 nathanw static int
89 1.39.2.2 nathanw ispioctl(struct scsipi_channel *, u_long, caddr_t, int, struct proc *);
90 1.1 mjacob
91 1.39.2.2 nathanw static void isp_polled_cmd(struct ispsoftc *, XS_T *);
92 1.39.2.1 nathanw static void isp_dog(void *);
93 1.39.2.2 nathanw static void isp_create_fc_worker(void *);
94 1.39.2.2 nathanw static void isp_fc_worker(void *);
95 1.10 mjacob
96 1.1 mjacob /*
97 1.1 mjacob * Complete attachment of hardware, include subdevices.
98 1.1 mjacob */
99 1.1 mjacob void
100 1.39.2.1 nathanw isp_attach(struct ispsoftc *isp)
101 1.1 mjacob {
102 1.1 mjacob isp->isp_state = ISP_RUNSTATE;
103 1.39.2.2 nathanw
104 1.39.2.2 nathanw isp->isp_osinfo._adapter.adapt_dev = &isp->isp_osinfo._dev;
105 1.39.2.2 nathanw isp->isp_osinfo._adapter.adapt_nchannels = IS_DUALBUS(isp) ? 2 : 1;
106 1.39.2.2 nathanw isp->isp_osinfo._adapter.adapt_openings = isp->isp_maxcmds;
107 1.39.2.2 nathanw /*
108 1.39.2.2 nathanw * It's not stated whether max_periph is limited by SPI
109 1.39.2.2 nathanw * tag uage, but let's assume that it is.
110 1.39.2.2 nathanw */
111 1.39.2.2 nathanw isp->isp_osinfo._adapter.adapt_max_periph = min(isp->isp_maxcmds, 255);
112 1.39.2.2 nathanw isp->isp_osinfo._adapter.adapt_ioctl = ispioctl;
113 1.39.2.2 nathanw isp->isp_osinfo._adapter.adapt_request = isprequest;
114 1.39.2.2 nathanw if (isp->isp_type <= ISP_HA_SCSI_1020A) {
115 1.39.2.2 nathanw isp->isp_osinfo._adapter.adapt_minphys = ispminphys_1020;
116 1.39.2.2 nathanw } else {
117 1.39.2.2 nathanw isp->isp_osinfo._adapter.adapt_minphys = ispminphys;
118 1.39.2.2 nathanw }
119 1.39.2.2 nathanw
120 1.39.2.2 nathanw isp->isp_osinfo._chan.chan_adapter = &isp->isp_osinfo._adapter;
121 1.39.2.2 nathanw isp->isp_osinfo._chan.chan_bustype = &scsi_bustype;
122 1.39.2.2 nathanw isp->isp_osinfo._chan.chan_channel = 0;
123 1.39.2.2 nathanw
124 1.28 mjacob /*
125 1.28 mjacob * Until the midlayer is fixed to use REPORT LUNS, limit to 8 luns.
126 1.28 mjacob */
127 1.39.2.2 nathanw isp->isp_osinfo._chan.chan_nluns = min(isp->isp_maxluns, 8);
128 1.1 mjacob
129 1.15 mjacob if (IS_FC(isp)) {
130 1.39.2.2 nathanw isp->isp_osinfo._chan.chan_ntargets = MAX_FC_TARG;
131 1.39.2.2 nathanw isp->isp_osinfo._chan.chan_id = MAX_FC_TARG;
132 1.39.2.2 nathanw isp->isp_osinfo.threadwork = 1;
133 1.39.2.2 nathanw /*
134 1.39.2.2 nathanw * Note that isp_create_fc_worker won't get called
135 1.39.2.2 nathanw * until much much later (after proc0 is created).
136 1.39.2.2 nathanw */
137 1.39.2.2 nathanw kthread_create(isp_create_fc_worker, isp);
138 1.1 mjacob } else {
139 1.39.2.2 nathanw int bus = 0;
140 1.14 mjacob sdparam *sdp = isp->isp_param;
141 1.39.2.2 nathanw
142 1.39.2.2 nathanw isp->isp_osinfo._chan.chan_ntargets = MAX_TARGETS;
143 1.39.2.2 nathanw isp->isp_osinfo._chan.chan_id = sdp->isp_initiator_id;
144 1.17 mjacob isp->isp_osinfo.discovered[0] = 1 << sdp->isp_initiator_id;
145 1.21 mjacob if (IS_DUALBUS(isp)) {
146 1.39.2.2 nathanw isp->isp_osinfo._chan_b = isp->isp_osinfo._chan;
147 1.14 mjacob sdp++;
148 1.18 mjacob isp->isp_osinfo.discovered[1] =
149 1.18 mjacob 1 << sdp->isp_initiator_id;
150 1.39.2.2 nathanw isp->isp_osinfo._chan_b.chan_id = sdp->isp_initiator_id;
151 1.39.2.2 nathanw isp->isp_osinfo._chan_b.chan_channel = 1;
152 1.14 mjacob }
153 1.28 mjacob ISP_LOCK(isp);
154 1.14 mjacob (void) isp_control(isp, ISPCTL_RESET_BUS, &bus);
155 1.21 mjacob if (IS_DUALBUS(isp)) {
156 1.14 mjacob bus++;
157 1.14 mjacob (void) isp_control(isp, ISPCTL_RESET_BUS, &bus);
158 1.14 mjacob }
159 1.29 mjacob ISP_UNLOCK(isp);
160 1.11 mjacob }
161 1.10 mjacob
162 1.39.2.3 nathanw
163 1.10 mjacob /*
164 1.39.2.3 nathanw * Defer enabling mailbox interrupts until later.
165 1.39.2.3 nathanw */
166 1.39.2.3 nathanw config_interrupts((struct device *) isp, isp_config_interrupts);
167 1.28 mjacob
168 1.28 mjacob /*
169 1.8 mjacob * And attach children (if any).
170 1.8 mjacob */
171 1.39.2.2 nathanw config_found((void *)isp, &isp->isp_chanA, scsiprint);
172 1.21 mjacob if (IS_DUALBUS(isp)) {
173 1.39.2.2 nathanw config_found((void *)isp, &isp->isp_chanB, scsiprint);
174 1.14 mjacob }
175 1.1 mjacob }
176 1.1 mjacob
177 1.39.2.3 nathanw
178 1.39.2.3 nathanw static void
179 1.39.2.3 nathanw isp_config_interrupts(struct device *self)
180 1.39.2.3 nathanw {
181 1.39.2.3 nathanw struct ispsoftc *isp = (struct ispsoftc *) self;
182 1.39.2.3 nathanw
183 1.39.2.3 nathanw /*
184 1.39.2.3 nathanw * After this point, we'll be doing the new configuration
185 1.39.2.5 nathanw * schema which allows interrups, so we can do tsleep/wakeup
186 1.39.2.3 nathanw * for mailbox stuff at that point.
187 1.39.2.3 nathanw */
188 1.39.2.3 nathanw isp->isp_osinfo.no_mbox_ints = 0;
189 1.39.2.3 nathanw }
190 1.39.2.3 nathanw
191 1.39.2.3 nathanw
192 1.1 mjacob /*
193 1.1 mjacob * minphys our xfers
194 1.1 mjacob */
195 1.1 mjacob
196 1.1 mjacob static void
197 1.39.2.2 nathanw ispminphys_1020(struct buf *bp)
198 1.1 mjacob {
199 1.1 mjacob if (bp->b_bcount >= (1 << 24)) {
200 1.1 mjacob bp->b_bcount = (1 << 24);
201 1.1 mjacob }
202 1.1 mjacob minphys(bp);
203 1.1 mjacob }
204 1.1 mjacob
205 1.39.2.2 nathanw static void
206 1.39.2.2 nathanw ispminphys(struct buf *bp)
207 1.39.2.2 nathanw {
208 1.39.2.2 nathanw if (bp->b_bcount >= (1 << 30)) {
209 1.39.2.2 nathanw bp->b_bcount = (1 << 30);
210 1.39.2.2 nathanw }
211 1.39.2.2 nathanw minphys(bp);
212 1.39.2.2 nathanw }
213 1.39.2.2 nathanw
214 1.17 mjacob static int
215 1.39.2.2 nathanw ispioctl(struct scsipi_channel *chan, u_long cmd, caddr_t addr, int flag,
216 1.39.2.2 nathanw struct proc *p)
217 1.17 mjacob {
218 1.39.2.2 nathanw struct ispsoftc *isp = (void *)chan->chan_adapter->adapt_dev;
219 1.39.2.2 nathanw int retval = ENOTTY;
220 1.17 mjacob
221 1.17 mjacob switch (cmd) {
222 1.39.2.2 nathanw case SCBUSIORESET:
223 1.39.2.2 nathanw ISP_LOCK(isp);
224 1.39.2.2 nathanw if (isp_control(isp, ISPCTL_RESET_BUS, &chan->chan_channel))
225 1.39.2.2 nathanw retval = EIO;
226 1.39.2.2 nathanw else
227 1.39.2.2 nathanw retval = 0;
228 1.39.2.2 nathanw ISP_UNLOCK(isp);
229 1.39.2.2 nathanw break;
230 1.39.2.2 nathanw case ISP_SDBLEV:
231 1.29 mjacob {
232 1.39.2.2 nathanw int olddblev = isp->isp_dblev;
233 1.39.2.2 nathanw isp->isp_dblev = *(int *)addr;
234 1.39.2.2 nathanw *(int *)addr = olddblev;
235 1.29 mjacob retval = 0;
236 1.29 mjacob break;
237 1.29 mjacob }
238 1.39.2.2 nathanw case ISP_RESETHBA:
239 1.39.2.2 nathanw ISP_LOCK(isp);
240 1.39.2.2 nathanw isp_reinit(isp);
241 1.39.2.2 nathanw ISP_UNLOCK(isp);
242 1.39.2.2 nathanw retval = 0;
243 1.39.2.2 nathanw break;
244 1.39.2.2 nathanw case ISP_FC_RESCAN:
245 1.39.2.2 nathanw if (IS_FC(isp)) {
246 1.39.2.2 nathanw ISP_LOCK(isp);
247 1.39.2.2 nathanw if (isp_fc_runstate(isp, 5 * 1000000)) {
248 1.39.2.2 nathanw retval = EIO;
249 1.39.2.2 nathanw } else {
250 1.39.2.2 nathanw retval = 0;
251 1.39.2.2 nathanw }
252 1.39.2.2 nathanw ISP_UNLOCK(isp);
253 1.39.2.2 nathanw }
254 1.39.2.2 nathanw break;
255 1.39.2.2 nathanw case ISP_FC_LIP:
256 1.39.2.2 nathanw if (IS_FC(isp)) {
257 1.39.2.2 nathanw ISP_LOCK(isp);
258 1.39.2.2 nathanw if (isp_control(isp, ISPCTL_SEND_LIP, 0)) {
259 1.39.2.2 nathanw retval = EIO;
260 1.39.2.2 nathanw } else {
261 1.39.2.2 nathanw retval = 0;
262 1.39.2.2 nathanw }
263 1.39.2.2 nathanw ISP_UNLOCK(isp);
264 1.39.2.2 nathanw }
265 1.39.2.2 nathanw break;
266 1.39.2.2 nathanw case ISP_FC_GETDINFO:
267 1.39.2.2 nathanw {
268 1.39.2.2 nathanw struct isp_fc_device *ifc = (struct isp_fc_device *) addr;
269 1.39.2.2 nathanw struct lportdb *lp;
270 1.39.2.2 nathanw
271 1.39.2.2 nathanw if (ifc->loopid < 0 || ifc->loopid >= MAX_FC_TARG) {
272 1.39.2.2 nathanw retval = EINVAL;
273 1.39.2.2 nathanw break;
274 1.39.2.2 nathanw }
275 1.39.2.2 nathanw ISP_LOCK(isp);
276 1.39.2.2 nathanw lp = &FCPARAM(isp)->portdb[ifc->loopid];
277 1.39.2.2 nathanw if (lp->valid) {
278 1.39.2.2 nathanw ifc->loopid = lp->loopid;
279 1.39.2.2 nathanw ifc->portid = lp->portid;
280 1.39.2.2 nathanw ifc->node_wwn = lp->node_wwn;
281 1.39.2.2 nathanw ifc->port_wwn = lp->port_wwn;
282 1.17 mjacob retval = 0;
283 1.39.2.2 nathanw } else {
284 1.39.2.2 nathanw retval = ENODEV;
285 1.39.2.2 nathanw }
286 1.39.2.2 nathanw ISP_UNLOCK(isp);
287 1.17 mjacob break;
288 1.39.2.2 nathanw }
289 1.17 mjacob default:
290 1.17 mjacob break;
291 1.3 mjacob }
292 1.17 mjacob return (retval);
293 1.17 mjacob }
294 1.17 mjacob
295 1.39.2.2 nathanw static INLINE void
296 1.39.2.2 nathanw ispcmd(struct ispsoftc *isp, XS_T *xs)
297 1.17 mjacob {
298 1.39.2.2 nathanw ISP_LOCK(isp);
299 1.11 mjacob if (isp->isp_state < ISP_RUNSTATE) {
300 1.11 mjacob DISABLE_INTS(isp);
301 1.11 mjacob isp_init(isp);
302 1.39.2.2 nathanw if (isp->isp_state != ISP_INITSTATE) {
303 1.11 mjacob ENABLE_INTS(isp);
304 1.39.2.2 nathanw ISP_UNLOCK(isp);
305 1.39.2.2 nathanw XS_SETERR(xs, HBA_BOTCH);
306 1.39.2.2 nathanw scsipi_done(xs);
307 1.39.2.2 nathanw return;
308 1.39.2.2 nathanw }
309 1.39.2.2 nathanw isp->isp_state = ISP_RUNSTATE;
310 1.11 mjacob ENABLE_INTS(isp);
311 1.39.2.2 nathanw }
312 1.10 mjacob /*
313 1.39.2.2 nathanw * Handle the case of a FC card where the FC thread hasn't
314 1.39.2.2 nathanw * fired up yet and we have loop state to clean up. If we
315 1.39.2.2 nathanw * can't clear things up and we've never seen loop up, bounce
316 1.39.2.2 nathanw * the command.
317 1.10 mjacob */
318 1.39.2.2 nathanw if (IS_FC(isp) && isp->isp_osinfo.threadwork &&
319 1.39.2.2 nathanw isp->isp_osinfo.thread == 0) {
320 1.39.2.2 nathanw volatile u_int8_t ombi = isp->isp_osinfo.no_mbox_ints;
321 1.39.2.2 nathanw int delay_time;
322 1.39.2.2 nathanw
323 1.16 thorpej if (xs->xs_control & XS_CTL_POLL) {
324 1.39.2.2 nathanw isp->isp_osinfo.no_mbox_ints = 1;
325 1.10 mjacob }
326 1.39.2.2 nathanw
327 1.39.2.2 nathanw if (isp->isp_osinfo.loop_checked == 0) {
328 1.39.2.2 nathanw delay_time = 10 * 1000000;
329 1.39.2.2 nathanw isp->isp_osinfo.loop_checked = 1;
330 1.39.2.2 nathanw } else {
331 1.39.2.2 nathanw delay_time = 250000;
332 1.39.2.2 nathanw }
333 1.39.2.2 nathanw
334 1.39.2.2 nathanw if (isp_fc_runstate(isp, delay_time) != 0) {
335 1.39.2.2 nathanw if (xs->xs_control & XS_CTL_POLL) {
336 1.39.2.2 nathanw isp->isp_osinfo.no_mbox_ints = ombi;
337 1.39.2.2 nathanw }
338 1.39.2.2 nathanw if (FCPARAM(isp)->loop_seen_once == 0) {
339 1.39.2.2 nathanw XS_SETERR(xs, HBA_SELTIMEOUT);
340 1.39.2.2 nathanw scsipi_done(xs);
341 1.39.2.2 nathanw ISP_UNLOCK(isp);
342 1.39.2.2 nathanw return;
343 1.39.2.2 nathanw }
344 1.39.2.2 nathanw /*
345 1.39.2.2 nathanw * Otherwise, fall thru to be queued up for later.
346 1.39.2.2 nathanw */
347 1.39.2.2 nathanw } else {
348 1.39.2.2 nathanw int wasblocked =
349 1.39.2.2 nathanw (isp->isp_osinfo.blocked || isp->isp_osinfo.paused);
350 1.39.2.2 nathanw isp->isp_osinfo.threadwork = 0;
351 1.39.2.2 nathanw isp->isp_osinfo.blocked =
352 1.39.2.2 nathanw isp->isp_osinfo.paused = 0;
353 1.39.2.2 nathanw if (wasblocked) {
354 1.39.2.2 nathanw scsipi_channel_thaw(&isp->isp_chanA, 1);
355 1.39.2.2 nathanw }
356 1.39.2.2 nathanw }
357 1.39.2.2 nathanw if (xs->xs_control & XS_CTL_POLL) {
358 1.39.2.2 nathanw isp->isp_osinfo.no_mbox_ints = ombi;
359 1.39.2.2 nathanw }
360 1.39.2.2 nathanw }
361 1.39.2.2 nathanw
362 1.39.2.2 nathanw if (isp->isp_osinfo.paused) {
363 1.39.2.2 nathanw isp_prt(isp, ISP_LOGWARN, "I/O while paused");
364 1.39.2.2 nathanw xs->error = XS_RESOURCE_SHORTAGE;
365 1.39.2.2 nathanw scsipi_done(xs);
366 1.39.2.2 nathanw ISP_UNLOCK(isp);
367 1.39.2.2 nathanw return;
368 1.39.2.2 nathanw }
369 1.39.2.2 nathanw if (isp->isp_osinfo.blocked) {
370 1.39.2.2 nathanw isp_prt(isp, ISP_LOGWARN, "I/O while blocked");
371 1.39.2.2 nathanw xs->error = XS_REQUEUE;
372 1.39.2.2 nathanw scsipi_done(xs);
373 1.39.2.2 nathanw ISP_UNLOCK(isp);
374 1.39.2.2 nathanw return;
375 1.10 mjacob }
376 1.17 mjacob
377 1.26 mjacob if (xs->xs_control & XS_CTL_POLL) {
378 1.28 mjacob volatile u_int8_t ombi = isp->isp_osinfo.no_mbox_ints;
379 1.28 mjacob isp->isp_osinfo.no_mbox_ints = 1;
380 1.39.2.2 nathanw isp_polled_cmd(isp, xs);
381 1.28 mjacob isp->isp_osinfo.no_mbox_ints = ombi;
382 1.39.2.2 nathanw ISP_UNLOCK(isp);
383 1.39.2.2 nathanw return;
384 1.1 mjacob }
385 1.1 mjacob
386 1.39.2.2 nathanw switch (isp_start(xs)) {
387 1.26 mjacob case CMD_QUEUED:
388 1.26 mjacob if (xs->timeout) {
389 1.26 mjacob callout_reset(&xs->xs_callout, _XT(xs), isp_dog, xs);
390 1.26 mjacob }
391 1.26 mjacob break;
392 1.26 mjacob case CMD_EAGAIN:
393 1.39.2.2 nathanw isp->isp_osinfo.paused = 1;
394 1.39.2.2 nathanw xs->error = XS_RESOURCE_SHORTAGE;
395 1.39.2.2 nathanw scsipi_channel_freeze(&isp->isp_chanA, 1);
396 1.39.2.2 nathanw if (IS_DUALBUS(isp)) {
397 1.39.2.2 nathanw scsipi_channel_freeze(&isp->isp_chanB, 1);
398 1.39.2.2 nathanw }
399 1.39.2.2 nathanw scsipi_done(xs);
400 1.26 mjacob break;
401 1.26 mjacob case CMD_RQLATER:
402 1.39.2.2 nathanw /*
403 1.39.2.2 nathanw * We can only get RQLATER from FC devices (1 channel only)
404 1.39.2.2 nathanw *
405 1.39.2.2 nathanw * Also, if we've never seen loop up, bounce the command
406 1.39.2.2 nathanw * (somebody has booted with no FC cable connected)
407 1.39.2.2 nathanw */
408 1.39.2.2 nathanw if (FCPARAM(isp)->loop_seen_once == 0) {
409 1.39.2.2 nathanw XS_SETERR(xs, HBA_SELTIMEOUT);
410 1.39.2.2 nathanw scsipi_done(xs);
411 1.39.2.2 nathanw break;
412 1.39.2.2 nathanw }
413 1.39.2.2 nathanw if (isp->isp_osinfo.blocked == 0) {
414 1.39.2.2 nathanw isp->isp_osinfo.blocked = 1;
415 1.39.2.2 nathanw scsipi_channel_freeze(&isp->isp_chanA, 1);
416 1.39.2.2 nathanw }
417 1.39.2.2 nathanw xs->error = XS_REQUEUE;
418 1.39.2.2 nathanw scsipi_done(xs);
419 1.26 mjacob break;
420 1.26 mjacob case CMD_COMPLETE:
421 1.39.2.2 nathanw scsipi_done(xs);
422 1.26 mjacob break;
423 1.26 mjacob }
424 1.39.2.2 nathanw ISP_UNLOCK(isp);
425 1.26 mjacob }
426 1.26 mjacob
427 1.39.2.2 nathanw static void
428 1.39.2.2 nathanw isprequest(struct scsipi_channel *chan, scsipi_adapter_req_t req, void *arg)
429 1.39.2.2 nathanw {
430 1.39.2.2 nathanw struct ispsoftc *isp = (void *)chan->chan_adapter->adapt_dev;
431 1.39.2.2 nathanw
432 1.39.2.2 nathanw switch (req) {
433 1.39.2.2 nathanw case ADAPTER_REQ_RUN_XFER:
434 1.39.2.2 nathanw ispcmd(isp, (XS_T *) arg);
435 1.39.2.2 nathanw break;
436 1.39.2.2 nathanw
437 1.39.2.2 nathanw case ADAPTER_REQ_GROW_RESOURCES:
438 1.39.2.2 nathanw /* Not supported. */
439 1.39.2.2 nathanw break;
440 1.39.2.2 nathanw
441 1.39.2.2 nathanw case ADAPTER_REQ_SET_XFER_MODE:
442 1.39.2.2 nathanw if (IS_SCSI(isp)) {
443 1.39.2.2 nathanw struct scsipi_xfer_mode *xm = arg;
444 1.39.2.2 nathanw int dflags = 0;
445 1.39.2.2 nathanw sdparam *sdp = SDPARAM(isp);
446 1.39.2.2 nathanw
447 1.39.2.2 nathanw sdp += chan->chan_channel;
448 1.39.2.2 nathanw if (xm->xm_mode & PERIPH_CAP_TQING)
449 1.39.2.2 nathanw dflags |= DPARM_TQING;
450 1.39.2.2 nathanw if (xm->xm_mode & PERIPH_CAP_WIDE16)
451 1.39.2.2 nathanw dflags |= DPARM_WIDE;
452 1.39.2.2 nathanw if (xm->xm_mode & PERIPH_CAP_SYNC)
453 1.39.2.2 nathanw dflags |= DPARM_SYNC;
454 1.39.2.2 nathanw ISP_LOCK(isp);
455 1.39.2.4 nathanw sdp->isp_devparam[xm->xm_target].goal_flags |= dflags;
456 1.39.2.4 nathanw dflags = sdp->isp_devparam[xm->xm_target].goal_flags;
457 1.39.2.2 nathanw sdp->isp_devparam[xm->xm_target].dev_update = 1;
458 1.39.2.2 nathanw isp->isp_update |= (1 << chan->chan_channel);
459 1.39.2.2 nathanw ISP_UNLOCK(isp);
460 1.39.2.2 nathanw isp_prt(isp, ISP_LOGDEBUG1,
461 1.39.2.2 nathanw "ispioctl: device flags 0x%x for %d.%d.X",
462 1.39.2.2 nathanw dflags, chan->chan_channel, xm->xm_target);
463 1.39.2.2 nathanw break;
464 1.39.2.2 nathanw }
465 1.39.2.2 nathanw default:
466 1.39.2.2 nathanw break;
467 1.39.2.2 nathanw }
468 1.39.2.2 nathanw }
469 1.39.2.2 nathanw
470 1.39.2.2 nathanw static void
471 1.39.2.1 nathanw isp_polled_cmd(struct ispsoftc *isp, XS_T *xs)
472 1.26 mjacob {
473 1.26 mjacob int result;
474 1.26 mjacob int infinite = 0, mswait;
475 1.26 mjacob
476 1.28 mjacob result = isp_start(xs);
477 1.26 mjacob
478 1.17 mjacob switch (result) {
479 1.17 mjacob case CMD_QUEUED:
480 1.17 mjacob break;
481 1.17 mjacob case CMD_RQLATER:
482 1.39.2.2 nathanw if (XS_NOERR(xs)) {
483 1.39.2.2 nathanw xs->error = XS_REQUEUE;
484 1.39.2.2 nathanw }
485 1.17 mjacob case CMD_EAGAIN:
486 1.17 mjacob if (XS_NOERR(xs)) {
487 1.39.2.2 nathanw xs->error = XS_RESOURCE_SHORTAGE;
488 1.17 mjacob }
489 1.39.2.2 nathanw /* FALLTHROUGH */
490 1.17 mjacob case CMD_COMPLETE:
491 1.39.2.2 nathanw scsipi_done(xs);
492 1.39.2.2 nathanw return;
493 1.17 mjacob
494 1.17 mjacob }
495 1.26 mjacob
496 1.1 mjacob /*
497 1.1 mjacob * If we can't use interrupts, poll on completion.
498 1.1 mjacob */
499 1.26 mjacob if ((mswait = XS_TIME(xs)) == 0)
500 1.26 mjacob infinite = 1;
501 1.26 mjacob
502 1.26 mjacob while (mswait || infinite) {
503 1.39.2.4 nathanw u_int16_t isr, sema, mbox;
504 1.39.2.4 nathanw if (ISP_READ_ISR(isp, &isr, &sema, &mbox)) {
505 1.39.2.4 nathanw isp_intr(isp, isr, sema, mbox);
506 1.26 mjacob if (XS_CMD_DONE_P(xs)) {
507 1.26 mjacob break;
508 1.1 mjacob }
509 1.1 mjacob }
510 1.28 mjacob USEC_DELAY(1000);
511 1.26 mjacob mswait -= 1;
512 1.26 mjacob }
513 1.26 mjacob
514 1.26 mjacob /*
515 1.26 mjacob * If no other error occurred but we didn't finish,
516 1.26 mjacob * something bad happened.
517 1.26 mjacob */
518 1.26 mjacob if (XS_CMD_DONE_P(xs) == 0) {
519 1.26 mjacob if (isp_control(isp, ISPCTL_ABORT_CMD, xs)) {
520 1.28 mjacob isp_reinit(isp);
521 1.26 mjacob }
522 1.26 mjacob if (XS_NOERR(xs)) {
523 1.26 mjacob XS_SETERR(xs, HBA_BOTCH);
524 1.26 mjacob }
525 1.1 mjacob }
526 1.39.2.2 nathanw scsipi_done(xs);
527 1.1 mjacob }
528 1.1 mjacob
529 1.26 mjacob void
530 1.39.2.1 nathanw isp_done(XS_T *xs)
531 1.1 mjacob {
532 1.26 mjacob XS_CMD_S_DONE(xs);
533 1.26 mjacob if (XS_CMD_WDOG_P(xs) == 0) {
534 1.26 mjacob struct ispsoftc *isp = XS_ISP(xs);
535 1.26 mjacob callout_stop(&xs->xs_callout);
536 1.26 mjacob if (XS_CMD_GRACE_P(xs)) {
537 1.28 mjacob isp_prt(isp, ISP_LOGDEBUG1,
538 1.28 mjacob "finished command on borrowed time");
539 1.1 mjacob }
540 1.26 mjacob XS_CMD_S_CLEAR(xs);
541 1.39.2.2 nathanw /*
542 1.39.2.2 nathanw * Fixup- if we get a QFULL, we need
543 1.39.2.2 nathanw * to set XS_BUSY as the error.
544 1.39.2.2 nathanw */
545 1.39.2.2 nathanw if (xs->status == SCSI_QUEUE_FULL) {
546 1.39.2.2 nathanw xs->error = XS_BUSY;
547 1.39.2.2 nathanw }
548 1.39.2.2 nathanw if (isp->isp_osinfo.paused) {
549 1.39.2.2 nathanw isp->isp_osinfo.paused = 0;
550 1.39.2.2 nathanw scsipi_channel_timed_thaw(&isp->isp_chanA);
551 1.39.2.2 nathanw if (IS_DUALBUS(isp)) {
552 1.39.2.2 nathanw scsipi_channel_timed_thaw(&isp->isp_chanB);
553 1.39.2.2 nathanw }
554 1.39.2.2 nathanw }
555 1.26 mjacob scsipi_done(xs);
556 1.1 mjacob }
557 1.8 mjacob }
558 1.8 mjacob
559 1.8 mjacob static void
560 1.39.2.1 nathanw isp_dog(void *arg)
561 1.8 mjacob {
562 1.28 mjacob XS_T *xs = arg;
563 1.26 mjacob struct ispsoftc *isp = XS_ISP(xs);
564 1.39.2.1 nathanw u_int16_t handle;
565 1.8 mjacob
566 1.30 mjacob ISP_ILOCK(isp);
567 1.8 mjacob /*
568 1.26 mjacob * We've decided this command is dead. Make sure we're not trying
569 1.26 mjacob * to kill a command that's already dead by getting it's handle and
570 1.26 mjacob * and seeing whether it's still alive.
571 1.26 mjacob */
572 1.26 mjacob handle = isp_find_handle(isp, xs);
573 1.26 mjacob if (handle) {
574 1.39.2.4 nathanw u_int16_t isr, mbox, sema;
575 1.26 mjacob
576 1.26 mjacob if (XS_CMD_DONE_P(xs)) {
577 1.28 mjacob isp_prt(isp, ISP_LOGDEBUG1,
578 1.28 mjacob "watchdog found done cmd (handle 0x%x)", handle);
579 1.30 mjacob ISP_IUNLOCK(isp);
580 1.26 mjacob return;
581 1.26 mjacob }
582 1.26 mjacob
583 1.26 mjacob if (XS_CMD_WDOG_P(xs)) {
584 1.28 mjacob isp_prt(isp, ISP_LOGDEBUG1,
585 1.28 mjacob "recursive watchdog (handle 0x%x)", handle);
586 1.30 mjacob ISP_IUNLOCK(isp);
587 1.26 mjacob return;
588 1.26 mjacob }
589 1.26 mjacob
590 1.26 mjacob XS_CMD_S_WDOG(xs);
591 1.26 mjacob
592 1.39.2.4 nathanw if (ISP_READ_ISR(isp, &isr, &sema, &mbox)) {
593 1.39.2.4 nathanw isp_intr(isp, isr, sema, mbox);
594 1.39.2.4 nathanw
595 1.39.2.4 nathanw }
596 1.39.2.4 nathanw if (XS_CMD_DONE_P(xs)) {
597 1.39.2.4 nathanw isp_prt(isp, ISP_LOGDEBUG1,
598 1.39.2.4 nathanw "watchdog cleanup for handle 0x%x", handle);
599 1.26 mjacob XS_CMD_C_WDOG(xs);
600 1.26 mjacob isp_done(xs);
601 1.26 mjacob } else if (XS_CMD_GRACE_P(xs)) {
602 1.39.2.4 nathanw isp_prt(isp, ISP_LOGDEBUG1,
603 1.39.2.4 nathanw "watchdog timeout for handle 0x%x", handle);
604 1.26 mjacob /*
605 1.26 mjacob * Make sure the command is *really* dead before we
606 1.26 mjacob * release the handle (and DMA resources) for reuse.
607 1.26 mjacob */
608 1.26 mjacob (void) isp_control(isp, ISPCTL_ABORT_CMD, arg);
609 1.26 mjacob
610 1.26 mjacob /*
611 1.26 mjacob * After this point, the comamnd is really dead.
612 1.26 mjacob */
613 1.26 mjacob if (XS_XFRLEN(xs)) {
614 1.26 mjacob ISP_DMAFREE(isp, xs, handle);
615 1.26 mjacob }
616 1.26 mjacob isp_destroy_handle(isp, handle);
617 1.26 mjacob XS_SETERR(xs, XS_TIMEOUT);
618 1.26 mjacob XS_CMD_S_CLEAR(xs);
619 1.26 mjacob isp_done(xs);
620 1.26 mjacob } else {
621 1.26 mjacob u_int16_t iptr, optr;
622 1.26 mjacob ispreq_t *mp;
623 1.28 mjacob isp_prt(isp, ISP_LOGDEBUG2,
624 1.39.2.4 nathanw "possible command timeout on handle %x", handle);
625 1.26 mjacob XS_CMD_C_WDOG(xs);
626 1.26 mjacob callout_reset(&xs->xs_callout, hz, isp_dog, xs);
627 1.26 mjacob if (isp_getrqentry(isp, &iptr, &optr, (void **) &mp)) {
628 1.33 mjacob ISP_UNLOCK(isp);
629 1.26 mjacob return;
630 1.26 mjacob }
631 1.26 mjacob XS_CMD_S_GRACE(xs);
632 1.26 mjacob MEMZERO((void *) mp, sizeof (*mp));
633 1.26 mjacob mp->req_header.rqs_entry_count = 1;
634 1.26 mjacob mp->req_header.rqs_entry_type = RQSTYPE_MARKER;
635 1.26 mjacob mp->req_modifier = SYNC_ALL;
636 1.26 mjacob mp->req_target = XS_CHANNEL(xs) << 7;
637 1.26 mjacob ISP_SWIZZLE_REQUEST(isp, mp);
638 1.26 mjacob ISP_ADD_REQUEST(isp, iptr);
639 1.8 mjacob }
640 1.30 mjacob } else {
641 1.30 mjacob isp_prt(isp, ISP_LOGDEBUG0, "watchdog with no command");
642 1.8 mjacob }
643 1.30 mjacob ISP_IUNLOCK(isp);
644 1.8 mjacob }
645 1.8 mjacob
646 1.8 mjacob /*
647 1.39.2.2 nathanw * Fibre Channel state cleanup thread
648 1.39.2.2 nathanw */
649 1.39.2.2 nathanw static void
650 1.39.2.2 nathanw isp_create_fc_worker(void *arg)
651 1.39.2.2 nathanw {
652 1.39.2.2 nathanw struct ispsoftc *isp = arg;
653 1.39.2.2 nathanw
654 1.39.2.2 nathanw if (kthread_create1(isp_fc_worker, isp, &isp->isp_osinfo.thread,
655 1.39.2.2 nathanw "%s:fc_thrd", isp->isp_name)) {
656 1.39.2.2 nathanw isp_prt(isp, ISP_LOGERR, "unable to create FC worker thread");
657 1.39.2.2 nathanw panic("isp_create_fc_worker");
658 1.39.2.2 nathanw }
659 1.39.2.2 nathanw
660 1.39.2.2 nathanw }
661 1.39.2.2 nathanw
662 1.39.2.2 nathanw static void
663 1.39.2.2 nathanw isp_fc_worker(void *arg)
664 1.39.2.2 nathanw {
665 1.39.2.2 nathanw void scsipi_run_queue(struct scsipi_channel *);
666 1.39.2.2 nathanw struct ispsoftc *isp = arg;
667 1.39.2.2 nathanw
668 1.39.2.2 nathanw for (;;) {
669 1.39.2.2 nathanw int s;
670 1.39.2.2 nathanw
671 1.39.2.2 nathanw /*
672 1.39.2.2 nathanw * Note we do *not* use the ISP_LOCK/ISP_UNLOCK macros here.
673 1.39.2.2 nathanw */
674 1.39.2.2 nathanw s = splbio();
675 1.39.2.2 nathanw while (isp->isp_osinfo.threadwork) {
676 1.39.2.2 nathanw isp->isp_osinfo.threadwork = 0;
677 1.39.2.5 nathanw if (isp_fc_runstate(isp, 10 * 1000000) == 0) {
678 1.39.2.2 nathanw break;
679 1.39.2.2 nathanw }
680 1.39.2.4 nathanw if (isp->isp_osinfo.loop_checked &&
681 1.39.2.4 nathanw FCPARAM(isp)->loop_seen_once == 0) {
682 1.39.2.4 nathanw splx(s);
683 1.39.2.4 nathanw goto skip;
684 1.39.2.4 nathanw }
685 1.39.2.2 nathanw isp->isp_osinfo.threadwork = 1;
686 1.39.2.2 nathanw splx(s);
687 1.39.2.2 nathanw delay(500 * 1000);
688 1.39.2.2 nathanw s = splbio();
689 1.39.2.2 nathanw }
690 1.39.2.2 nathanw if (FCPARAM(isp)->isp_fwstate != FW_READY ||
691 1.39.2.2 nathanw FCPARAM(isp)->isp_loopstate != LOOP_READY) {
692 1.39.2.2 nathanw isp_prt(isp, ISP_LOGINFO, "isp_fc_runstate in vain");
693 1.39.2.2 nathanw isp->isp_osinfo.threadwork = 1;
694 1.39.2.2 nathanw splx(s);
695 1.39.2.2 nathanw continue;
696 1.39.2.2 nathanw }
697 1.39.2.2 nathanw
698 1.39.2.2 nathanw if (isp->isp_osinfo.blocked) {
699 1.39.2.2 nathanw isp->isp_osinfo.blocked = 0;
700 1.39.2.4 nathanw isp_prt(isp, ISP_LOGDEBUG0,
701 1.39.2.4 nathanw "restarting queues (freeze count %d)",
702 1.39.2.4 nathanw isp->isp_chanA.chan_qfreeze);
703 1.39.2.2 nathanw scsipi_channel_thaw(&isp->isp_chanA, 1);
704 1.39.2.2 nathanw }
705 1.39.2.2 nathanw
706 1.39.2.2 nathanw if (isp->isp_osinfo.thread == NULL)
707 1.39.2.2 nathanw break;
708 1.39.2.2 nathanw
709 1.39.2.4 nathanw skip:
710 1.39.2.2 nathanw (void) tsleep(&isp->isp_osinfo.thread, PRIBIO, "fcclnup", 0);
711 1.39.2.2 nathanw
712 1.39.2.2 nathanw splx(s);
713 1.39.2.2 nathanw }
714 1.39.2.2 nathanw
715 1.39.2.2 nathanw /* In case parent is waiting for us to exit. */
716 1.39.2.2 nathanw wakeup(&isp->isp_osinfo.thread);
717 1.39.2.2 nathanw
718 1.39.2.2 nathanw kthread_exit(0);
719 1.39.2.2 nathanw }
720 1.39.2.2 nathanw
721 1.39.2.2 nathanw /*
722 1.8 mjacob * Free any associated resources prior to decommissioning and
723 1.8 mjacob * set the card to a known state (so it doesn't wake up and kick
724 1.8 mjacob * us when we aren't expecting it to).
725 1.8 mjacob *
726 1.8 mjacob * Locks are held before coming here.
727 1.8 mjacob */
728 1.8 mjacob void
729 1.39.2.1 nathanw isp_uninit(struct ispsoftc *isp)
730 1.8 mjacob {
731 1.28 mjacob isp_lock(isp);
732 1.8 mjacob /*
733 1.8 mjacob * Leave with interrupts disabled.
734 1.8 mjacob */
735 1.8 mjacob DISABLE_INTS(isp);
736 1.28 mjacob isp_unlock(isp);
737 1.9 mjacob }
738 1.9 mjacob
739 1.9 mjacob int
740 1.39.2.1 nathanw isp_async(struct ispsoftc *isp, ispasync_t cmd, void *arg)
741 1.9 mjacob {
742 1.14 mjacob int bus, tgt;
743 1.39.2.2 nathanw
744 1.9 mjacob switch (cmd) {
745 1.9 mjacob case ISPASYNC_NEW_TGT_PARAMS:
746 1.17 mjacob if (IS_SCSI(isp) && isp->isp_dblev) {
747 1.17 mjacob sdparam *sdp = isp->isp_param;
748 1.39.2.2 nathanw int flags;
749 1.39.2.2 nathanw struct scsipi_xfer_mode xm;
750 1.17 mjacob
751 1.17 mjacob tgt = *((int *) arg);
752 1.17 mjacob bus = (tgt >> 16) & 0xffff;
753 1.17 mjacob tgt &= 0xffff;
754 1.21 mjacob sdp += bus;
755 1.39.2.4 nathanw flags = sdp->isp_devparam[tgt].actv_flags;
756 1.21 mjacob
757 1.39.2.2 nathanw xm.xm_mode = 0;
758 1.39.2.4 nathanw xm.xm_period = sdp->isp_devparam[tgt].actv_period;
759 1.39.2.4 nathanw xm.xm_offset = sdp->isp_devparam[tgt].actv_offset;
760 1.39.2.2 nathanw xm.xm_target = tgt;
761 1.39.2.2 nathanw
762 1.39.2.2 nathanw if ((flags & DPARM_SYNC) && xm.xm_period && xm.xm_offset)
763 1.39.2.2 nathanw xm.xm_mode |= PERIPH_CAP_SYNC;
764 1.39.2.2 nathanw if (flags & DPARM_WIDE)
765 1.39.2.2 nathanw xm.xm_mode |= PERIPH_CAP_WIDE16;
766 1.39.2.2 nathanw if (flags & DPARM_TQING)
767 1.39.2.2 nathanw xm.xm_mode |= PERIPH_CAP_TQING;
768 1.39.2.2 nathanw scsipi_async_event(bus? &isp->isp_chanB : &isp->isp_chanA,
769 1.39.2.2 nathanw ASYNC_EVENT_XFER_MODE, &xm);
770 1.11 mjacob break;
771 1.17 mjacob }
772 1.11 mjacob case ISPASYNC_BUS_RESET:
773 1.39.2.2 nathanw bus = *((int *) arg);
774 1.39.2.2 nathanw scsipi_async_event(bus? &isp->isp_chanB : &isp->isp_chanA,
775 1.39.2.2 nathanw ASYNC_EVENT_RESET, NULL);
776 1.28 mjacob isp_prt(isp, ISP_LOGINFO, "SCSI bus %d reset detected", bus);
777 1.11 mjacob break;
778 1.39.2.2 nathanw case ISPASYNC_LIP:
779 1.39.2.2 nathanw /*
780 1.39.2.2 nathanw * Don't do queue freezes or blockage until we have the
781 1.39.2.2 nathanw * thread running that can unfreeze/unblock us.
782 1.39.2.2 nathanw */
783 1.39.2.2 nathanw if (isp->isp_osinfo.blocked == 0) {
784 1.39.2.2 nathanw if (isp->isp_osinfo.thread) {
785 1.39.2.2 nathanw isp->isp_osinfo.blocked = 1;
786 1.39.2.2 nathanw scsipi_channel_freeze(&isp->isp_chanA, 1);
787 1.39.2.2 nathanw }
788 1.39.2.2 nathanw }
789 1.39.2.2 nathanw isp_prt(isp, ISP_LOGINFO, "LIP Received");
790 1.39.2.2 nathanw break;
791 1.39.2.2 nathanw case ISPASYNC_LOOP_RESET:
792 1.39.2.2 nathanw /*
793 1.39.2.2 nathanw * Don't do queue freezes or blockage until we have the
794 1.39.2.2 nathanw * thread running that can unfreeze/unblock us.
795 1.39.2.2 nathanw */
796 1.39.2.2 nathanw if (isp->isp_osinfo.blocked == 0) {
797 1.39.2.2 nathanw if (isp->isp_osinfo.thread) {
798 1.39.2.2 nathanw isp->isp_osinfo.blocked = 1;
799 1.39.2.2 nathanw scsipi_channel_freeze(&isp->isp_chanA, 1);
800 1.39.2.2 nathanw }
801 1.39.2.2 nathanw }
802 1.39.2.2 nathanw isp_prt(isp, ISP_LOGINFO, "Loop Reset Received");
803 1.39.2.2 nathanw break;
804 1.11 mjacob case ISPASYNC_LOOP_DOWN:
805 1.11 mjacob /*
806 1.39.2.2 nathanw * Don't do queue freezes or blockage until we have the
807 1.39.2.2 nathanw * thread running that can unfreeze/unblock us.
808 1.11 mjacob */
809 1.39.2.2 nathanw if (isp->isp_osinfo.blocked == 0) {
810 1.39.2.2 nathanw if (isp->isp_osinfo.thread) {
811 1.39.2.2 nathanw isp->isp_osinfo.blocked = 1;
812 1.39.2.2 nathanw scsipi_channel_freeze(&isp->isp_chanA, 1);
813 1.39.2.2 nathanw }
814 1.39.2.2 nathanw }
815 1.28 mjacob isp_prt(isp, ISP_LOGINFO, "Loop DOWN");
816 1.11 mjacob break;
817 1.11 mjacob case ISPASYNC_LOOP_UP:
818 1.39.2.2 nathanw /*
819 1.39.2.2 nathanw * Let the subsequent ISPASYNC_CHANGE_NOTIFY invoke
820 1.39.2.2 nathanw * the FC worker thread. When the FC worker thread
821 1.39.2.2 nathanw * is done, let *it* call scsipi_channel_thaw...
822 1.39.2.2 nathanw */
823 1.28 mjacob isp_prt(isp, ISP_LOGINFO, "Loop UP");
824 1.11 mjacob break;
825 1.39 mjacob case ISPASYNC_PROMENADE:
826 1.17 mjacob if (IS_FC(isp) && isp->isp_dblev) {
827 1.37 mjacob const char fmt[] = "Target %d (Loop 0x%x) Port ID 0x%x "
828 1.39 mjacob "(role %s) %s\n Port WWN 0x%08x%08x\n Node WWN 0x%08x%08x";
829 1.15 mjacob const static char *roles[4] = {
830 1.39.2.2 nathanw "None", "Target", "Initiator", "Target/Initiator"
831 1.11 mjacob };
832 1.15 mjacob fcparam *fcp = isp->isp_param;
833 1.15 mjacob int tgt = *((int *) arg);
834 1.15 mjacob struct lportdb *lp = &fcp->portdb[tgt];
835 1.15 mjacob
836 1.28 mjacob isp_prt(isp, ISP_LOGINFO, fmt, tgt, lp->loopid, lp->portid,
837 1.39 mjacob roles[lp->roles & 0x3],
838 1.39 mjacob (lp->valid)? "Arrived" : "Departed",
839 1.15 mjacob (u_int32_t) (lp->port_wwn >> 32),
840 1.15 mjacob (u_int32_t) (lp->port_wwn & 0xffffffffLL),
841 1.15 mjacob (u_int32_t) (lp->node_wwn >> 32),
842 1.15 mjacob (u_int32_t) (lp->node_wwn & 0xffffffffLL));
843 1.11 mjacob break;
844 1.11 mjacob }
845 1.11 mjacob case ISPASYNC_CHANGE_NOTIFY:
846 1.39.2.2 nathanw if (arg == ISPASYNC_CHANGE_PDB) {
847 1.39.2.2 nathanw isp_prt(isp, ISP_LOGINFO, "Port Database Changed");
848 1.39.2.2 nathanw } else if (arg == ISPASYNC_CHANGE_SNS) {
849 1.38 mjacob isp_prt(isp, ISP_LOGINFO,
850 1.38 mjacob "Name Server Database Changed");
851 1.39.2.2 nathanw }
852 1.39.2.2 nathanw
853 1.39.2.2 nathanw /*
854 1.39.2.2 nathanw * We can set blocked here because we know it's now okay
855 1.39.2.2 nathanw * to try and run isp_fc_runstate (in order to build loop
856 1.39.2.2 nathanw * state). But we don't try and freeze the midlayer's queue
857 1.39.2.2 nathanw * if we have no thread that we can wake to later unfreeze
858 1.39.2.2 nathanw * it.
859 1.39.2.2 nathanw */
860 1.39.2.2 nathanw if (isp->isp_osinfo.blocked == 0) {
861 1.39.2.2 nathanw isp->isp_osinfo.blocked = 1;
862 1.39.2.2 nathanw if (isp->isp_osinfo.thread) {
863 1.39.2.2 nathanw scsipi_channel_freeze(&isp->isp_chanA, 1);
864 1.39.2.2 nathanw }
865 1.39.2.2 nathanw }
866 1.39.2.2 nathanw /*
867 1.39.2.2 nathanw * Note that we have work for the thread to do, and
868 1.39.2.2 nathanw * if the thread is here already, wake it up.
869 1.39.2.2 nathanw */
870 1.39.2.2 nathanw isp->isp_osinfo.threadwork++;
871 1.39.2.2 nathanw if (isp->isp_osinfo.thread) {
872 1.39.2.2 nathanw wakeup(&isp->isp_osinfo.thread);
873 1.38 mjacob } else {
874 1.39.2.2 nathanw isp_prt(isp, ISP_LOGDEBUG1, "no FC thread yet");
875 1.38 mjacob }
876 1.9 mjacob break;
877 1.15 mjacob case ISPASYNC_FABRIC_DEV:
878 1.15 mjacob {
879 1.39 mjacob int target, lrange;
880 1.39 mjacob struct lportdb *lp = NULL;
881 1.39 mjacob char *pt;
882 1.39 mjacob sns_ganrsp_t *resp = (sns_ganrsp_t *) arg;
883 1.15 mjacob u_int32_t portid;
884 1.39 mjacob u_int64_t wwpn, wwnn;
885 1.15 mjacob fcparam *fcp = isp->isp_param;
886 1.15 mjacob
887 1.15 mjacob portid =
888 1.15 mjacob (((u_int32_t) resp->snscb_port_id[0]) << 16) |
889 1.15 mjacob (((u_int32_t) resp->snscb_port_id[1]) << 8) |
890 1.15 mjacob (((u_int32_t) resp->snscb_port_id[2]));
891 1.39 mjacob
892 1.39 mjacob wwpn =
893 1.15 mjacob (((u_int64_t)resp->snscb_portname[0]) << 56) |
894 1.15 mjacob (((u_int64_t)resp->snscb_portname[1]) << 48) |
895 1.15 mjacob (((u_int64_t)resp->snscb_portname[2]) << 40) |
896 1.15 mjacob (((u_int64_t)resp->snscb_portname[3]) << 32) |
897 1.15 mjacob (((u_int64_t)resp->snscb_portname[4]) << 24) |
898 1.15 mjacob (((u_int64_t)resp->snscb_portname[5]) << 16) |
899 1.15 mjacob (((u_int64_t)resp->snscb_portname[6]) << 8) |
900 1.15 mjacob (((u_int64_t)resp->snscb_portname[7]));
901 1.31 mjacob
902 1.39 mjacob wwnn =
903 1.39 mjacob (((u_int64_t)resp->snscb_nodename[0]) << 56) |
904 1.39 mjacob (((u_int64_t)resp->snscb_nodename[1]) << 48) |
905 1.39 mjacob (((u_int64_t)resp->snscb_nodename[2]) << 40) |
906 1.39 mjacob (((u_int64_t)resp->snscb_nodename[3]) << 32) |
907 1.39 mjacob (((u_int64_t)resp->snscb_nodename[4]) << 24) |
908 1.39 mjacob (((u_int64_t)resp->snscb_nodename[5]) << 16) |
909 1.39 mjacob (((u_int64_t)resp->snscb_nodename[6]) << 8) |
910 1.39 mjacob (((u_int64_t)resp->snscb_nodename[7]));
911 1.39 mjacob if (portid == 0 || wwpn == 0) {
912 1.39 mjacob break;
913 1.39 mjacob }
914 1.39 mjacob
915 1.39 mjacob switch (resp->snscb_port_type) {
916 1.39 mjacob case 1:
917 1.39 mjacob pt = " N_Port";
918 1.39 mjacob break;
919 1.39 mjacob case 2:
920 1.39 mjacob pt = " NL_Port";
921 1.39 mjacob break;
922 1.39 mjacob case 3:
923 1.39 mjacob pt = "F/NL_Port";
924 1.39 mjacob break;
925 1.39 mjacob case 0x7f:
926 1.39 mjacob pt = " Nx_Port";
927 1.39 mjacob break;
928 1.39 mjacob case 0x81:
929 1.39 mjacob pt = " F_port";
930 1.39 mjacob break;
931 1.39 mjacob case 0x82:
932 1.39 mjacob pt = " FL_Port";
933 1.39 mjacob break;
934 1.39 mjacob case 0x84:
935 1.39 mjacob pt = " E_port";
936 1.39 mjacob break;
937 1.39 mjacob default:
938 1.39 mjacob pt = "?";
939 1.39 mjacob break;
940 1.39 mjacob }
941 1.28 mjacob isp_prt(isp, ISP_LOGINFO,
942 1.39 mjacob "%s @ 0x%x, Node 0x%08x%08x Port %08x%08x",
943 1.39 mjacob pt, portid, ((u_int32_t) (wwnn >> 32)), ((u_int32_t) wwnn),
944 1.39 mjacob ((u_int32_t) (wwpn >> 32)), ((u_int32_t) wwpn));
945 1.39 mjacob /*
946 1.39 mjacob * We're only interested in SCSI_FCP types (for now)
947 1.39 mjacob */
948 1.39 mjacob if ((resp->snscb_fc4_types[2] & 1) == 0) {
949 1.39 mjacob break;
950 1.39 mjacob }
951 1.39 mjacob if (fcp->isp_topo != TOPO_F_PORT)
952 1.39 mjacob lrange = FC_SNS_ID+1;
953 1.39 mjacob else
954 1.39 mjacob lrange = 0;
955 1.39 mjacob /*
956 1.39 mjacob * Is it already in our list?
957 1.39 mjacob */
958 1.39 mjacob for (target = lrange; target < MAX_FC_TARG; target++) {
959 1.39 mjacob if (target >= FL_PORT_ID && target <= FC_SNS_ID) {
960 1.39 mjacob continue;
961 1.39 mjacob }
962 1.15 mjacob lp = &fcp->portdb[target];
963 1.39 mjacob if (lp->port_wwn == wwpn && lp->node_wwn == wwnn) {
964 1.39 mjacob lp->fabric_dev = 1;
965 1.15 mjacob break;
966 1.39 mjacob }
967 1.15 mjacob }
968 1.15 mjacob if (target < MAX_FC_TARG) {
969 1.15 mjacob break;
970 1.15 mjacob }
971 1.39 mjacob for (target = lrange; target < MAX_FC_TARG; target++) {
972 1.39 mjacob if (target >= FL_PORT_ID && target <= FC_SNS_ID) {
973 1.39 mjacob continue;
974 1.39 mjacob }
975 1.15 mjacob lp = &fcp->portdb[target];
976 1.39 mjacob if (lp->port_wwn == 0) {
977 1.15 mjacob break;
978 1.39 mjacob }
979 1.15 mjacob }
980 1.15 mjacob if (target == MAX_FC_TARG) {
981 1.28 mjacob isp_prt(isp, ISP_LOGWARN,
982 1.28 mjacob "no more space for fabric devices");
983 1.39 mjacob break;
984 1.15 mjacob }
985 1.39 mjacob lp->node_wwn = wwnn;
986 1.39 mjacob lp->port_wwn = wwpn;
987 1.15 mjacob lp->portid = portid;
988 1.39 mjacob lp->fabric_dev = 1;
989 1.39.2.3 nathanw break;
990 1.39.2.3 nathanw }
991 1.39.2.3 nathanw case ISPASYNC_FW_CRASH:
992 1.39.2.3 nathanw {
993 1.39.2.3 nathanw u_int16_t mbox1, mbox6;
994 1.39.2.3 nathanw mbox1 = ISP_READ(isp, OUTMAILBOX1);
995 1.39.2.3 nathanw if (IS_DUALBUS(isp)) {
996 1.39.2.3 nathanw mbox6 = ISP_READ(isp, OUTMAILBOX6);
997 1.39.2.3 nathanw } else {
998 1.39.2.3 nathanw mbox6 = 0;
999 1.39.2.3 nathanw }
1000 1.39.2.3 nathanw isp_prt(isp, ISP_LOGERR,
1001 1.39.2.4 nathanw "Internal Firmware Error on bus %d @ RISC Address 0x%x",
1002 1.39.2.3 nathanw mbox6, mbox1);
1003 1.39.2.3 nathanw isp_reinit(isp);
1004 1.15 mjacob break;
1005 1.15 mjacob }
1006 1.9 mjacob default:
1007 1.9 mjacob break;
1008 1.9 mjacob }
1009 1.9 mjacob return (0);
1010 1.28 mjacob }
1011 1.28 mjacob
1012 1.28 mjacob #include <machine/stdarg.h>
1013 1.28 mjacob void
1014 1.28 mjacob isp_prt(struct ispsoftc *isp, int level, const char *fmt, ...)
1015 1.28 mjacob {
1016 1.28 mjacob va_list ap;
1017 1.28 mjacob if (level != ISP_LOGALL && (level & isp->isp_dblev) == 0) {
1018 1.28 mjacob return;
1019 1.28 mjacob }
1020 1.28 mjacob printf("%s: ", isp->isp_name);
1021 1.28 mjacob va_start(ap, fmt);
1022 1.28 mjacob vprintf(fmt, ap);
1023 1.28 mjacob va_end(ap);
1024 1.28 mjacob printf("\n");
1025 1.1 mjacob }
1026