scsipi_base.c revision 1.53 1 1.53 ad /* $NetBSD: scsipi_base.c,v 1.53 2001/08/20 07:47:01 ad Exp $ */
2 1.2 bouyer
3 1.8 mycroft /*-
4 1.39 bouyer * Copyright (c) 1998, 1999, 2000 The NetBSD Foundation, Inc.
5 1.8 mycroft * All rights reserved.
6 1.8 mycroft *
7 1.8 mycroft * This code is derived from software contributed to The NetBSD Foundation
8 1.39 bouyer * by Charles M. Hannum; by Jason R. Thorpe of the Numerical Aerospace
9 1.39 bouyer * Simulation Facility, NASA Ames Research Center.
10 1.2 bouyer *
11 1.2 bouyer * Redistribution and use in source and binary forms, with or without
12 1.2 bouyer * modification, are permitted provided that the following conditions
13 1.2 bouyer * are met:
14 1.2 bouyer * 1. Redistributions of source code must retain the above copyright
15 1.2 bouyer * notice, this list of conditions and the following disclaimer.
16 1.2 bouyer * 2. Redistributions in binary form must reproduce the above copyright
17 1.2 bouyer * notice, this list of conditions and the following disclaimer in the
18 1.2 bouyer * documentation and/or other materials provided with the distribution.
19 1.2 bouyer * 3. All advertising materials mentioning features or use of this software
20 1.2 bouyer * must display the following acknowledgement:
21 1.8 mycroft * This product includes software developed by the NetBSD
22 1.8 mycroft * Foundation, Inc. and its contributors.
23 1.8 mycroft * 4. Neither the name of The NetBSD Foundation nor the names of its
24 1.8 mycroft * contributors may be used to endorse or promote products derived
25 1.8 mycroft * from this software without specific prior written permission.
26 1.2 bouyer *
27 1.8 mycroft * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
28 1.8 mycroft * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
29 1.8 mycroft * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
30 1.8 mycroft * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
31 1.8 mycroft * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
32 1.8 mycroft * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
33 1.8 mycroft * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
34 1.8 mycroft * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
35 1.8 mycroft * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
36 1.8 mycroft * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
37 1.8 mycroft * POSSIBILITY OF SUCH DAMAGE.
38 1.2 bouyer */
39 1.2 bouyer
40 1.13 bouyer #include "opt_scsi.h"
41 1.13 bouyer
42 1.2 bouyer #include <sys/types.h>
43 1.2 bouyer #include <sys/param.h>
44 1.2 bouyer #include <sys/systm.h>
45 1.2 bouyer #include <sys/kernel.h>
46 1.2 bouyer #include <sys/buf.h>
47 1.2 bouyer #include <sys/uio.h>
48 1.2 bouyer #include <sys/malloc.h>
49 1.6 thorpej #include <sys/pool.h>
50 1.2 bouyer #include <sys/errno.h>
51 1.2 bouyer #include <sys/device.h>
52 1.2 bouyer #include <sys/proc.h>
53 1.39 bouyer #include <sys/kthread.h>
54 1.2 bouyer
55 1.2 bouyer #include <dev/scsipi/scsipi_all.h>
56 1.2 bouyer #include <dev/scsipi/scsipi_disk.h>
57 1.2 bouyer #include <dev/scsipi/scsipiconf.h>
58 1.2 bouyer #include <dev/scsipi/scsipi_base.h>
59 1.2 bouyer
60 1.39 bouyer #include <dev/scsipi/scsi_all.h>
61 1.39 bouyer #include <dev/scsipi/scsi_message.h>
62 1.39 bouyer
63 1.39 bouyer int scsipi_complete __P((struct scsipi_xfer *));
64 1.39 bouyer void scsipi_request_sense __P((struct scsipi_xfer *));
65 1.39 bouyer int scsipi_enqueue __P((struct scsipi_xfer *));
66 1.39 bouyer void scsipi_run_queue __P((struct scsipi_channel *chan));
67 1.39 bouyer
68 1.39 bouyer void scsipi_completion_thread __P((void *));
69 1.39 bouyer
70 1.39 bouyer void scsipi_get_tag __P((struct scsipi_xfer *));
71 1.39 bouyer void scsipi_put_tag __P((struct scsipi_xfer *));
72 1.39 bouyer
73 1.39 bouyer int scsipi_get_resource __P((struct scsipi_channel *));
74 1.39 bouyer void scsipi_put_resource __P((struct scsipi_channel *));
75 1.39 bouyer __inline int scsipi_grow_resources __P((struct scsipi_channel *));
76 1.39 bouyer
77 1.39 bouyer void scsipi_async_event_max_openings __P((struct scsipi_channel *,
78 1.39 bouyer struct scsipi_max_openings *));
79 1.39 bouyer void scsipi_async_event_xfer_mode __P((struct scsipi_channel *,
80 1.39 bouyer struct scsipi_xfer_mode *));
81 1.39 bouyer void scsipi_async_event_channel_reset __P((struct scsipi_channel *));
82 1.39 bouyer
83 1.6 thorpej struct pool scsipi_xfer_pool;
84 1.6 thorpej
85 1.2 bouyer /*
86 1.39 bouyer * scsipi_init:
87 1.39 bouyer *
88 1.39 bouyer * Called when a scsibus or atapibus is attached to the system
89 1.39 bouyer * to initialize shared data structures.
90 1.6 thorpej */
91 1.6 thorpej void
92 1.6 thorpej scsipi_init()
93 1.6 thorpej {
94 1.6 thorpej static int scsipi_init_done;
95 1.6 thorpej
96 1.6 thorpej if (scsipi_init_done)
97 1.6 thorpej return;
98 1.6 thorpej scsipi_init_done = 1;
99 1.6 thorpej
100 1.6 thorpej /* Initialize the scsipi_xfer pool. */
101 1.6 thorpej pool_init(&scsipi_xfer_pool, sizeof(struct scsipi_xfer), 0,
102 1.6 thorpej 0, 0, "scxspl", 0, NULL, NULL, M_DEVBUF);
103 1.6 thorpej }
104 1.6 thorpej
105 1.6 thorpej /*
106 1.39 bouyer * scsipi_channel_init:
107 1.39 bouyer *
108 1.39 bouyer * Initialize a scsipi_channel when it is attached.
109 1.39 bouyer */
110 1.39 bouyer int
111 1.39 bouyer scsipi_channel_init(chan)
112 1.39 bouyer struct scsipi_channel *chan;
113 1.39 bouyer {
114 1.39 bouyer size_t nbytes;
115 1.39 bouyer int i;
116 1.39 bouyer
117 1.39 bouyer /* Initialize shared data. */
118 1.39 bouyer scsipi_init();
119 1.39 bouyer
120 1.39 bouyer /* Initialize the queues. */
121 1.39 bouyer TAILQ_INIT(&chan->chan_queue);
122 1.39 bouyer TAILQ_INIT(&chan->chan_complete);
123 1.39 bouyer
124 1.39 bouyer nbytes = chan->chan_ntargets * sizeof(struct scsipi_periph **);
125 1.39 bouyer chan->chan_periphs = malloc(nbytes, M_DEVBUF, M_NOWAIT);
126 1.39 bouyer if (chan->chan_periphs == NULL)
127 1.39 bouyer return (ENOMEM);
128 1.39 bouyer
129 1.39 bouyer
130 1.39 bouyer nbytes = chan->chan_nluns * sizeof(struct scsipi_periph *);
131 1.39 bouyer for (i = 0; i < chan->chan_ntargets; i++) {
132 1.39 bouyer chan->chan_periphs[i] = malloc(nbytes, M_DEVBUF, M_NOWAIT);
133 1.39 bouyer if (chan->chan_periphs[i] == NULL) {
134 1.39 bouyer while (--i >= 0) {
135 1.39 bouyer free(chan->chan_periphs[i], M_DEVBUF);
136 1.39 bouyer }
137 1.39 bouyer return (ENOMEM);
138 1.39 bouyer }
139 1.39 bouyer memset(chan->chan_periphs[i], 0, nbytes);
140 1.39 bouyer }
141 1.39 bouyer
142 1.39 bouyer /*
143 1.39 bouyer * Create the asynchronous completion thread.
144 1.39 bouyer */
145 1.39 bouyer kthread_create(scsipi_create_completion_thread, chan);
146 1.39 bouyer return (0);
147 1.39 bouyer }
148 1.39 bouyer
149 1.39 bouyer /*
150 1.39 bouyer * scsipi_channel_shutdown:
151 1.39 bouyer *
152 1.39 bouyer * Shutdown a scsipi_channel.
153 1.39 bouyer */
154 1.39 bouyer void
155 1.39 bouyer scsipi_channel_shutdown(chan)
156 1.39 bouyer struct scsipi_channel *chan;
157 1.39 bouyer {
158 1.39 bouyer
159 1.39 bouyer /*
160 1.39 bouyer * Shut down the completion thread.
161 1.39 bouyer */
162 1.39 bouyer chan->chan_flags |= SCSIPI_CHAN_SHUTDOWN;
163 1.39 bouyer wakeup(&chan->chan_complete);
164 1.39 bouyer
165 1.39 bouyer /*
166 1.39 bouyer * Now wait for the thread to exit.
167 1.39 bouyer */
168 1.39 bouyer while (chan->chan_thread != NULL)
169 1.39 bouyer (void) tsleep(&chan->chan_thread, PRIBIO, "scshut", 0);
170 1.39 bouyer }
171 1.39 bouyer
172 1.39 bouyer /*
173 1.39 bouyer * scsipi_insert_periph:
174 1.39 bouyer *
175 1.39 bouyer * Insert a periph into the channel.
176 1.39 bouyer */
177 1.39 bouyer void
178 1.39 bouyer scsipi_insert_periph(chan, periph)
179 1.39 bouyer struct scsipi_channel *chan;
180 1.39 bouyer struct scsipi_periph *periph;
181 1.39 bouyer {
182 1.39 bouyer int s;
183 1.39 bouyer
184 1.39 bouyer s = splbio();
185 1.39 bouyer chan->chan_periphs[periph->periph_target][periph->periph_lun] = periph;
186 1.39 bouyer splx(s);
187 1.39 bouyer }
188 1.39 bouyer
189 1.39 bouyer /*
190 1.39 bouyer * scsipi_remove_periph:
191 1.39 bouyer *
192 1.39 bouyer * Remove a periph from the channel.
193 1.39 bouyer */
194 1.39 bouyer void
195 1.39 bouyer scsipi_remove_periph(chan, periph)
196 1.39 bouyer struct scsipi_channel *chan;
197 1.39 bouyer struct scsipi_periph *periph;
198 1.39 bouyer {
199 1.39 bouyer int s;
200 1.39 bouyer
201 1.39 bouyer s = splbio();
202 1.39 bouyer chan->chan_periphs[periph->periph_target][periph->periph_lun] = NULL;
203 1.39 bouyer splx(s);
204 1.39 bouyer }
205 1.39 bouyer
206 1.39 bouyer /*
207 1.39 bouyer * scsipi_lookup_periph:
208 1.39 bouyer *
209 1.39 bouyer * Lookup a periph on the specified channel.
210 1.39 bouyer */
211 1.39 bouyer struct scsipi_periph *
212 1.39 bouyer scsipi_lookup_periph(chan, target, lun)
213 1.39 bouyer struct scsipi_channel *chan;
214 1.39 bouyer int target, lun;
215 1.39 bouyer {
216 1.39 bouyer struct scsipi_periph *periph;
217 1.39 bouyer int s;
218 1.39 bouyer
219 1.39 bouyer if (target >= chan->chan_ntargets ||
220 1.39 bouyer lun >= chan->chan_nluns)
221 1.39 bouyer return (NULL);
222 1.39 bouyer
223 1.39 bouyer s = splbio();
224 1.39 bouyer periph = chan->chan_periphs[target][lun];
225 1.39 bouyer splx(s);
226 1.39 bouyer
227 1.39 bouyer return (periph);
228 1.39 bouyer }
229 1.39 bouyer
230 1.39 bouyer /*
231 1.39 bouyer * scsipi_get_resource:
232 1.39 bouyer *
233 1.39 bouyer * Allocate a single xfer `resource' from the channel.
234 1.39 bouyer *
235 1.39 bouyer * NOTE: Must be called at splbio().
236 1.39 bouyer */
237 1.39 bouyer int
238 1.39 bouyer scsipi_get_resource(chan)
239 1.39 bouyer struct scsipi_channel *chan;
240 1.39 bouyer {
241 1.39 bouyer struct scsipi_adapter *adapt = chan->chan_adapter;
242 1.39 bouyer
243 1.39 bouyer if (chan->chan_flags & SCSIPI_CHAN_OPENINGS) {
244 1.39 bouyer if (chan->chan_openings > 0) {
245 1.39 bouyer chan->chan_openings--;
246 1.39 bouyer return (1);
247 1.39 bouyer }
248 1.39 bouyer return (0);
249 1.39 bouyer }
250 1.39 bouyer
251 1.39 bouyer if (adapt->adapt_openings > 0) {
252 1.39 bouyer adapt->adapt_openings--;
253 1.39 bouyer return (1);
254 1.39 bouyer }
255 1.39 bouyer return (0);
256 1.39 bouyer }
257 1.39 bouyer
258 1.39 bouyer /*
259 1.39 bouyer * scsipi_grow_resources:
260 1.39 bouyer *
261 1.39 bouyer * Attempt to grow resources for a channel. If this succeeds,
262 1.39 bouyer * we allocate one for our caller.
263 1.39 bouyer *
264 1.39 bouyer * NOTE: Must be called at splbio().
265 1.39 bouyer */
266 1.39 bouyer __inline int
267 1.39 bouyer scsipi_grow_resources(chan)
268 1.39 bouyer struct scsipi_channel *chan;
269 1.39 bouyer {
270 1.39 bouyer
271 1.39 bouyer if (chan->chan_flags & SCSIPI_CHAN_CANGROW) {
272 1.39 bouyer scsipi_adapter_request(chan, ADAPTER_REQ_GROW_RESOURCES, NULL);
273 1.39 bouyer return (scsipi_get_resource(chan));
274 1.39 bouyer }
275 1.39 bouyer
276 1.39 bouyer return (0);
277 1.39 bouyer }
278 1.39 bouyer
279 1.39 bouyer /*
280 1.39 bouyer * scsipi_put_resource:
281 1.39 bouyer *
282 1.39 bouyer * Free a single xfer `resource' to the channel.
283 1.39 bouyer *
284 1.39 bouyer * NOTE: Must be called at splbio().
285 1.39 bouyer */
286 1.39 bouyer void
287 1.39 bouyer scsipi_put_resource(chan)
288 1.39 bouyer struct scsipi_channel *chan;
289 1.39 bouyer {
290 1.39 bouyer struct scsipi_adapter *adapt = chan->chan_adapter;
291 1.39 bouyer
292 1.39 bouyer if (chan->chan_flags & SCSIPI_CHAN_OPENINGS)
293 1.39 bouyer chan->chan_openings++;
294 1.39 bouyer else
295 1.39 bouyer adapt->adapt_openings++;
296 1.39 bouyer }
297 1.39 bouyer
298 1.39 bouyer /*
299 1.39 bouyer * scsipi_get_tag:
300 1.39 bouyer *
301 1.39 bouyer * Get a tag ID for the specified xfer.
302 1.39 bouyer *
303 1.39 bouyer * NOTE: Must be called at splbio().
304 1.39 bouyer */
305 1.39 bouyer void
306 1.39 bouyer scsipi_get_tag(xs)
307 1.39 bouyer struct scsipi_xfer *xs;
308 1.39 bouyer {
309 1.39 bouyer struct scsipi_periph *periph = xs->xs_periph;
310 1.39 bouyer int word, bit, tag;
311 1.39 bouyer
312 1.39 bouyer for (word = 0; word < PERIPH_NTAGWORDS; word++) {
313 1.39 bouyer bit = ffs(periph->periph_freetags[word]);
314 1.39 bouyer if (bit != 0)
315 1.39 bouyer break;
316 1.39 bouyer }
317 1.39 bouyer #ifdef DIAGNOSTIC
318 1.39 bouyer if (word == PERIPH_NTAGWORDS) {
319 1.39 bouyer scsipi_printaddr(periph);
320 1.39 bouyer printf("no free tags\n");
321 1.39 bouyer panic("scsipi_get_tag");
322 1.39 bouyer }
323 1.39 bouyer #endif
324 1.39 bouyer
325 1.39 bouyer bit -= 1;
326 1.39 bouyer periph->periph_freetags[word] &= ~(1 << bit);
327 1.39 bouyer tag = (word << 5) | bit;
328 1.39 bouyer
329 1.39 bouyer /* XXX Should eventually disallow this completely. */
330 1.39 bouyer if (tag >= periph->periph_openings) {
331 1.39 bouyer scsipi_printaddr(periph);
332 1.39 bouyer printf("WARNING: tag %d greater than available openings %d\n",
333 1.39 bouyer tag, periph->periph_openings);
334 1.39 bouyer }
335 1.39 bouyer
336 1.39 bouyer xs->xs_tag_id = tag;
337 1.39 bouyer }
338 1.39 bouyer
339 1.39 bouyer /*
340 1.39 bouyer * scsipi_put_tag:
341 1.39 bouyer *
342 1.39 bouyer * Put the tag ID for the specified xfer back into the pool.
343 1.39 bouyer *
344 1.39 bouyer * NOTE: Must be called at splbio().
345 1.2 bouyer */
346 1.39 bouyer void
347 1.39 bouyer scsipi_put_tag(xs)
348 1.39 bouyer struct scsipi_xfer *xs;
349 1.39 bouyer {
350 1.39 bouyer struct scsipi_periph *periph = xs->xs_periph;
351 1.39 bouyer int word, bit;
352 1.39 bouyer
353 1.39 bouyer word = xs->xs_tag_id >> 5;
354 1.39 bouyer bit = xs->xs_tag_id & 0x1f;
355 1.39 bouyer
356 1.39 bouyer periph->periph_freetags[word] |= (1 << bit);
357 1.39 bouyer }
358 1.2 bouyer
359 1.39 bouyer /*
360 1.39 bouyer * scsipi_get_xs:
361 1.39 bouyer *
362 1.39 bouyer * Allocate an xfer descriptor and associate it with the
363 1.39 bouyer * specified peripherial. If the peripherial has no more
364 1.39 bouyer * available command openings, we either block waiting for
365 1.39 bouyer * one to become available, or fail.
366 1.39 bouyer */
367 1.2 bouyer struct scsipi_xfer *
368 1.39 bouyer scsipi_get_xs(periph, flags)
369 1.39 bouyer struct scsipi_periph *periph;
370 1.39 bouyer int flags;
371 1.2 bouyer {
372 1.2 bouyer struct scsipi_xfer *xs;
373 1.2 bouyer int s;
374 1.2 bouyer
375 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB3, ("scsipi_get_xs\n"));
376 1.6 thorpej
377 1.24 thorpej /*
378 1.24 thorpej * If we're cold, make sure we poll.
379 1.24 thorpej */
380 1.24 thorpej if (cold)
381 1.24 thorpej flags |= XS_CTL_NOSLEEP | XS_CTL_POLL;
382 1.24 thorpej
383 1.39 bouyer #ifdef DIAGNOSTIC
384 1.39 bouyer /*
385 1.39 bouyer * URGENT commands can never be ASYNC.
386 1.39 bouyer */
387 1.39 bouyer if ((flags & (XS_CTL_URGENT|XS_CTL_ASYNC)) ==
388 1.39 bouyer (XS_CTL_URGENT|XS_CTL_ASYNC)) {
389 1.39 bouyer scsipi_printaddr(periph);
390 1.39 bouyer printf("URGENT and ASYNC\n");
391 1.39 bouyer panic("scsipi_get_xs");
392 1.39 bouyer }
393 1.39 bouyer #endif
394 1.39 bouyer
395 1.2 bouyer s = splbio();
396 1.39 bouyer /*
397 1.39 bouyer * Wait for a command opening to become available. Rules:
398 1.39 bouyer *
399 1.39 bouyer * - All xfers must wait for an available opening.
400 1.39 bouyer * Exception: URGENT xfers can proceed when
401 1.39 bouyer * active == openings, because we use the opening
402 1.39 bouyer * of the command we're recovering for.
403 1.39 bouyer * - if the periph has sense pending, only URGENT & REQSENSE
404 1.39 bouyer * xfers may proceed.
405 1.39 bouyer *
406 1.39 bouyer * - If the periph is recovering, only URGENT xfers may
407 1.39 bouyer * proceed.
408 1.39 bouyer *
409 1.39 bouyer * - If the periph is currently executing a recovery
410 1.39 bouyer * command, URGENT commands must block, because only
411 1.39 bouyer * one recovery command can execute at a time.
412 1.39 bouyer */
413 1.39 bouyer for (;;) {
414 1.39 bouyer if (flags & XS_CTL_URGENT) {
415 1.39 bouyer if (periph->periph_active > periph->periph_openings)
416 1.39 bouyer goto wait_for_opening;
417 1.39 bouyer if (periph->periph_flags & PERIPH_SENSE) {
418 1.39 bouyer if ((flags & XS_CTL_REQSENSE) == 0)
419 1.39 bouyer goto wait_for_opening;
420 1.39 bouyer } else {
421 1.39 bouyer if ((periph->periph_flags &
422 1.39 bouyer PERIPH_RECOVERY_ACTIVE) != 0)
423 1.39 bouyer goto wait_for_opening;
424 1.39 bouyer periph->periph_flags |= PERIPH_RECOVERY_ACTIVE;
425 1.39 bouyer }
426 1.39 bouyer break;
427 1.39 bouyer }
428 1.39 bouyer if (periph->periph_active >= periph->periph_openings ||
429 1.39 bouyer (periph->periph_flags & PERIPH_RECOVERING) != 0)
430 1.39 bouyer goto wait_for_opening;
431 1.39 bouyer periph->periph_active++;
432 1.39 bouyer break;
433 1.39 bouyer
434 1.39 bouyer wait_for_opening:
435 1.39 bouyer if (flags & XS_CTL_NOSLEEP) {
436 1.2 bouyer splx(s);
437 1.39 bouyer return (NULL);
438 1.2 bouyer }
439 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB3, ("sleeping\n"));
440 1.39 bouyer periph->periph_flags |= PERIPH_WAITING;
441 1.39 bouyer (void) tsleep(periph, PRIBIO, "getxs", 0);
442 1.2 bouyer }
443 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB3, ("calling pool_get\n"));
444 1.6 thorpej xs = pool_get(&scsipi_xfer_pool,
445 1.24 thorpej ((flags & XS_CTL_NOSLEEP) != 0 ? PR_NOWAIT : PR_WAITOK));
446 1.39 bouyer if (xs == NULL) {
447 1.39 bouyer if (flags & XS_CTL_URGENT) {
448 1.39 bouyer if ((flags & XS_CTL_REQSENSE) == 0)
449 1.39 bouyer periph->periph_flags &= ~PERIPH_RECOVERY_ACTIVE;
450 1.39 bouyer } else
451 1.39 bouyer periph->periph_active--;
452 1.39 bouyer scsipi_printaddr(periph);
453 1.39 bouyer printf("unable to allocate %sscsipi_xfer\n",
454 1.39 bouyer (flags & XS_CTL_URGENT) ? "URGENT " : "");
455 1.2 bouyer }
456 1.6 thorpej splx(s);
457 1.2 bouyer
458 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB3, ("returning\n"));
459 1.6 thorpej
460 1.7 scottr if (xs != NULL) {
461 1.30 thorpej callout_init(&xs->xs_callout);
462 1.39 bouyer memset(xs, 0, sizeof(*xs));
463 1.39 bouyer xs->xs_periph = periph;
464 1.24 thorpej xs->xs_control = flags;
465 1.37 fvdl xs->xs_status = 0;
466 1.39 bouyer s = splbio();
467 1.39 bouyer TAILQ_INSERT_TAIL(&periph->periph_xferq, xs, device_q);
468 1.39 bouyer splx(s);
469 1.7 scottr }
470 1.3 enami return (xs);
471 1.2 bouyer }
472 1.2 bouyer
473 1.2 bouyer /*
474 1.39 bouyer * scsipi_put_xs:
475 1.39 bouyer *
476 1.39 bouyer * Release an xfer descriptor, decreasing the outstanding command
477 1.39 bouyer * count for the peripherial. If there is a thread waiting for
478 1.39 bouyer * an opening, wake it up. If not, kick any queued I/O the
479 1.39 bouyer * peripherial may have.
480 1.6 thorpej *
481 1.39 bouyer * NOTE: Must be called at splbio().
482 1.2 bouyer */
483 1.3 enami void
484 1.39 bouyer scsipi_put_xs(xs)
485 1.2 bouyer struct scsipi_xfer *xs;
486 1.2 bouyer {
487 1.39 bouyer struct scsipi_periph *periph = xs->xs_periph;
488 1.39 bouyer int flags = xs->xs_control;
489 1.39 bouyer
490 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB3, ("scsipi_free_xs\n"));
491 1.2 bouyer
492 1.39 bouyer TAILQ_REMOVE(&periph->periph_xferq, xs, device_q);
493 1.39 bouyer pool_put(&scsipi_xfer_pool, xs);
494 1.39 bouyer
495 1.39 bouyer #ifdef DIAGNOSTIC
496 1.39 bouyer if ((periph->periph_flags & PERIPH_RECOVERY_ACTIVE) != 0 &&
497 1.39 bouyer periph->periph_active == 0) {
498 1.39 bouyer scsipi_printaddr(periph);
499 1.39 bouyer printf("recovery without a command to recovery for\n");
500 1.39 bouyer panic("scsipi_put_xs");
501 1.39 bouyer }
502 1.39 bouyer #endif
503 1.39 bouyer
504 1.39 bouyer if (flags & XS_CTL_URGENT) {
505 1.39 bouyer if ((flags & XS_CTL_REQSENSE) == 0)
506 1.39 bouyer periph->periph_flags &= ~PERIPH_RECOVERY_ACTIVE;
507 1.39 bouyer } else
508 1.39 bouyer periph->periph_active--;
509 1.39 bouyer if (periph->periph_active == 0 &&
510 1.39 bouyer (periph->periph_flags & PERIPH_WAITDRAIN) != 0) {
511 1.39 bouyer periph->periph_flags &= ~PERIPH_WAITDRAIN;
512 1.39 bouyer wakeup(&periph->periph_active);
513 1.16 thorpej }
514 1.2 bouyer
515 1.39 bouyer if (periph->periph_flags & PERIPH_WAITING) {
516 1.39 bouyer periph->periph_flags &= ~PERIPH_WAITING;
517 1.39 bouyer wakeup(periph);
518 1.2 bouyer } else {
519 1.39 bouyer if (periph->periph_switch->psw_start != NULL) {
520 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB2,
521 1.3 enami ("calling private start()\n"));
522 1.39 bouyer (*periph->periph_switch->psw_start)(periph);
523 1.2 bouyer }
524 1.2 bouyer }
525 1.15 thorpej }
526 1.15 thorpej
527 1.15 thorpej /*
528 1.39 bouyer * scsipi_channel_freeze:
529 1.39 bouyer *
530 1.39 bouyer * Freeze a channel's xfer queue.
531 1.39 bouyer */
532 1.39 bouyer void
533 1.39 bouyer scsipi_channel_freeze(chan, count)
534 1.39 bouyer struct scsipi_channel *chan;
535 1.39 bouyer int count;
536 1.39 bouyer {
537 1.39 bouyer int s;
538 1.39 bouyer
539 1.39 bouyer s = splbio();
540 1.39 bouyer chan->chan_qfreeze += count;
541 1.39 bouyer splx(s);
542 1.39 bouyer }
543 1.39 bouyer
544 1.39 bouyer /*
545 1.39 bouyer * scsipi_channel_thaw:
546 1.39 bouyer *
547 1.39 bouyer * Thaw a channel's xfer queue.
548 1.39 bouyer */
549 1.39 bouyer void
550 1.39 bouyer scsipi_channel_thaw(chan, count)
551 1.39 bouyer struct scsipi_channel *chan;
552 1.39 bouyer int count;
553 1.39 bouyer {
554 1.39 bouyer int s;
555 1.39 bouyer
556 1.39 bouyer s = splbio();
557 1.39 bouyer chan->chan_qfreeze -= count;
558 1.39 bouyer /*
559 1.39 bouyer * Don't let the freeze count go negative.
560 1.39 bouyer *
561 1.39 bouyer * Presumably the adapter driver could keep track of this,
562 1.39 bouyer * but it might just be easier to do this here so as to allow
563 1.39 bouyer * multiple callers, including those outside the adapter driver.
564 1.39 bouyer */
565 1.39 bouyer if (chan->chan_qfreeze < 0) {
566 1.39 bouyer chan->chan_qfreeze = 0;
567 1.39 bouyer }
568 1.39 bouyer splx(s);
569 1.44 bouyer /*
570 1.44 bouyer * Kick the channel's queue here. Note, we may be running in
571 1.44 bouyer * interrupt context (softclock or HBA's interrupt), so the adapter
572 1.44 bouyer * driver had better not sleep.
573 1.44 bouyer */
574 1.44 bouyer if (chan->chan_qfreeze == 0)
575 1.44 bouyer scsipi_run_queue(chan);
576 1.39 bouyer }
577 1.39 bouyer
578 1.39 bouyer /*
579 1.39 bouyer * scsipi_channel_timed_thaw:
580 1.39 bouyer *
581 1.44 bouyer * Thaw a channel after some time has expired. This will also
582 1.44 bouyer * run the channel's queue if the freeze count has reached 0.
583 1.39 bouyer */
584 1.39 bouyer void
585 1.39 bouyer scsipi_channel_timed_thaw(arg)
586 1.39 bouyer void *arg;
587 1.39 bouyer {
588 1.39 bouyer struct scsipi_channel *chan = arg;
589 1.39 bouyer
590 1.39 bouyer scsipi_channel_thaw(chan, 1);
591 1.39 bouyer }
592 1.39 bouyer
593 1.39 bouyer /*
594 1.39 bouyer * scsipi_periph_freeze:
595 1.39 bouyer *
596 1.39 bouyer * Freeze a device's xfer queue.
597 1.39 bouyer */
598 1.39 bouyer void
599 1.39 bouyer scsipi_periph_freeze(periph, count)
600 1.39 bouyer struct scsipi_periph *periph;
601 1.39 bouyer int count;
602 1.39 bouyer {
603 1.39 bouyer int s;
604 1.39 bouyer
605 1.39 bouyer s = splbio();
606 1.39 bouyer periph->periph_qfreeze += count;
607 1.39 bouyer splx(s);
608 1.39 bouyer }
609 1.39 bouyer
610 1.39 bouyer /*
611 1.39 bouyer * scsipi_periph_thaw:
612 1.39 bouyer *
613 1.39 bouyer * Thaw a device's xfer queue.
614 1.39 bouyer */
615 1.39 bouyer void
616 1.39 bouyer scsipi_periph_thaw(periph, count)
617 1.39 bouyer struct scsipi_periph *periph;
618 1.39 bouyer int count;
619 1.39 bouyer {
620 1.39 bouyer int s;
621 1.39 bouyer
622 1.39 bouyer s = splbio();
623 1.39 bouyer periph->periph_qfreeze -= count;
624 1.39 bouyer if (periph->periph_qfreeze == 0 &&
625 1.39 bouyer (periph->periph_flags & PERIPH_WAITING) != 0)
626 1.39 bouyer wakeup(periph);
627 1.39 bouyer splx(s);
628 1.39 bouyer }
629 1.39 bouyer
630 1.39 bouyer /*
631 1.39 bouyer * scsipi_periph_timed_thaw:
632 1.39 bouyer *
633 1.39 bouyer * Thaw a device after some time has expired.
634 1.39 bouyer */
635 1.39 bouyer void
636 1.39 bouyer scsipi_periph_timed_thaw(arg)
637 1.39 bouyer void *arg;
638 1.39 bouyer {
639 1.39 bouyer struct scsipi_periph *periph = arg;
640 1.39 bouyer
641 1.39 bouyer callout_stop(&periph->periph_callout);
642 1.39 bouyer scsipi_periph_thaw(periph, 1);
643 1.39 bouyer
644 1.39 bouyer /*
645 1.39 bouyer * Kick the channel's queue here. Note, we're running in
646 1.39 bouyer * interrupt context (softclock), so the adapter driver
647 1.39 bouyer * had better not sleep.
648 1.39 bouyer */
649 1.39 bouyer scsipi_run_queue(periph->periph_channel);
650 1.39 bouyer }
651 1.39 bouyer
652 1.39 bouyer /*
653 1.39 bouyer * scsipi_wait_drain:
654 1.39 bouyer *
655 1.39 bouyer * Wait for a periph's pending xfers to drain.
656 1.15 thorpej */
657 1.15 thorpej void
658 1.39 bouyer scsipi_wait_drain(periph)
659 1.39 bouyer struct scsipi_periph *periph;
660 1.15 thorpej {
661 1.15 thorpej int s;
662 1.15 thorpej
663 1.15 thorpej s = splbio();
664 1.39 bouyer while (periph->periph_active != 0) {
665 1.39 bouyer periph->periph_flags |= PERIPH_WAITDRAIN;
666 1.39 bouyer (void) tsleep(&periph->periph_active, PRIBIO, "sxdrn", 0);
667 1.15 thorpej }
668 1.15 thorpej splx(s);
669 1.23 thorpej }
670 1.23 thorpej
671 1.23 thorpej /*
672 1.39 bouyer * scsipi_kill_pending:
673 1.39 bouyer *
674 1.39 bouyer * Kill off all pending xfers for a periph.
675 1.23 thorpej *
676 1.39 bouyer * NOTE: Must be called at splbio().
677 1.23 thorpej */
678 1.23 thorpej void
679 1.39 bouyer scsipi_kill_pending(periph)
680 1.39 bouyer struct scsipi_periph *periph;
681 1.23 thorpej {
682 1.23 thorpej
683 1.39 bouyer (*periph->periph_channel->chan_bustype->bustype_kill_pending)(periph);
684 1.39 bouyer #ifdef DIAGNOSTIC
685 1.39 bouyer if (TAILQ_FIRST(&periph->periph_xferq) != NULL)
686 1.39 bouyer panic("scsipi_kill_pending");
687 1.39 bouyer #endif
688 1.39 bouyer scsipi_wait_drain(periph);
689 1.2 bouyer }
690 1.2 bouyer
691 1.2 bouyer /*
692 1.39 bouyer * scsipi_interpret_sense:
693 1.39 bouyer *
694 1.39 bouyer * Look at the returned sense and act on the error, determining
695 1.39 bouyer * the unix error number to pass back. (0 = report no error)
696 1.39 bouyer *
697 1.39 bouyer * NOTE: If we return ERESTART, we are expected to haved
698 1.39 bouyer * thawed the device!
699 1.13 bouyer *
700 1.39 bouyer * THIS IS THE DEFAULT ERROR HANDLER FOR SCSI DEVICES.
701 1.13 bouyer */
702 1.13 bouyer int
703 1.13 bouyer scsipi_interpret_sense(xs)
704 1.13 bouyer struct scsipi_xfer *xs;
705 1.13 bouyer {
706 1.13 bouyer struct scsipi_sense_data *sense;
707 1.39 bouyer struct scsipi_periph *periph = xs->xs_periph;
708 1.13 bouyer u_int8_t key;
709 1.13 bouyer u_int32_t info;
710 1.13 bouyer int error;
711 1.13 bouyer #ifndef SCSIVERBOSE
712 1.13 bouyer static char *error_mes[] = {
713 1.13 bouyer "soft error (corrected)",
714 1.13 bouyer "not ready", "medium error",
715 1.13 bouyer "non-media hardware failure", "illegal request",
716 1.13 bouyer "unit attention", "readonly device",
717 1.13 bouyer "no data found", "vendor unique",
718 1.13 bouyer "copy aborted", "command aborted",
719 1.13 bouyer "search returned equal", "volume overflow",
720 1.13 bouyer "verify miscompare", "unknown error key"
721 1.13 bouyer };
722 1.13 bouyer #endif
723 1.13 bouyer
724 1.13 bouyer sense = &xs->sense.scsi_sense;
725 1.39 bouyer #ifdef SCSIPI_DEBUG
726 1.39 bouyer if (periph->periph_flags & SCSIPI_DB1) {
727 1.13 bouyer int count;
728 1.39 bouyer scsipi_printaddr(periph);
729 1.39 bouyer printf(" sense debug information:\n");
730 1.39 bouyer printf("\tcode 0x%x valid 0x%x\n",
731 1.13 bouyer sense->error_code & SSD_ERRCODE,
732 1.13 bouyer sense->error_code & SSD_ERRCODE_VALID ? 1 : 0);
733 1.39 bouyer printf("\tseg 0x%x key 0x%x ili 0x%x eom 0x%x fmark 0x%x\n",
734 1.13 bouyer sense->segment,
735 1.13 bouyer sense->flags & SSD_KEY,
736 1.13 bouyer sense->flags & SSD_ILI ? 1 : 0,
737 1.13 bouyer sense->flags & SSD_EOM ? 1 : 0,
738 1.13 bouyer sense->flags & SSD_FILEMARK ? 1 : 0);
739 1.39 bouyer printf("\ninfo: 0x%x 0x%x 0x%x 0x%x followed by %d "
740 1.39 bouyer "extra bytes\n",
741 1.13 bouyer sense->info[0],
742 1.13 bouyer sense->info[1],
743 1.13 bouyer sense->info[2],
744 1.13 bouyer sense->info[3],
745 1.13 bouyer sense->extra_len);
746 1.39 bouyer printf("\textra: ");
747 1.13 bouyer for (count = 0; count < ADD_BYTES_LIM(sense); count++)
748 1.13 bouyer printf("0x%x ", sense->cmd_spec_info[count]);
749 1.13 bouyer printf("\n");
750 1.13 bouyer }
751 1.39 bouyer #endif
752 1.39 bouyer
753 1.13 bouyer /*
754 1.39 bouyer * If the periph has it's own error handler, call it first.
755 1.13 bouyer * If it returns a legit error value, return that, otherwise
756 1.13 bouyer * it wants us to continue with normal error processing.
757 1.13 bouyer */
758 1.39 bouyer if (periph->periph_switch->psw_error != NULL) {
759 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB2,
760 1.13 bouyer ("calling private err_handler()\n"));
761 1.39 bouyer error = (*periph->periph_switch->psw_error)(xs);
762 1.39 bouyer if (error != EJUSTRETURN)
763 1.39 bouyer return (error);
764 1.13 bouyer }
765 1.13 bouyer /* otherwise use the default */
766 1.13 bouyer switch (sense->error_code & SSD_ERRCODE) {
767 1.13 bouyer /*
768 1.13 bouyer * If it's code 70, use the extended stuff and
769 1.13 bouyer * interpret the key
770 1.13 bouyer */
771 1.13 bouyer case 0x71: /* delayed error */
772 1.39 bouyer scsipi_printaddr(periph);
773 1.13 bouyer key = sense->flags & SSD_KEY;
774 1.13 bouyer printf(" DEFERRED ERROR, key = 0x%x\n", key);
775 1.13 bouyer /* FALLTHROUGH */
776 1.13 bouyer case 0x70:
777 1.13 bouyer if ((sense->error_code & SSD_ERRCODE_VALID) != 0)
778 1.13 bouyer info = _4btol(sense->info);
779 1.13 bouyer else
780 1.13 bouyer info = 0;
781 1.13 bouyer key = sense->flags & SSD_KEY;
782 1.13 bouyer
783 1.13 bouyer switch (key) {
784 1.13 bouyer case SKEY_NO_SENSE:
785 1.13 bouyer case SKEY_RECOVERED_ERROR:
786 1.13 bouyer if (xs->resid == xs->datalen && xs->datalen) {
787 1.13 bouyer /*
788 1.13 bouyer * Why is this here?
789 1.13 bouyer */
790 1.13 bouyer xs->resid = 0; /* not short read */
791 1.13 bouyer }
792 1.13 bouyer case SKEY_EQUAL:
793 1.13 bouyer error = 0;
794 1.13 bouyer break;
795 1.13 bouyer case SKEY_NOT_READY:
796 1.39 bouyer if ((periph->periph_flags & PERIPH_REMOVABLE) != 0)
797 1.39 bouyer periph->periph_flags &= ~PERIPH_MEDIA_LOADED;
798 1.24 thorpej if ((xs->xs_control & XS_CTL_IGNORE_NOT_READY) != 0)
799 1.13 bouyer return (0);
800 1.53 ad if (sense->add_sense_code == 0x3A) {
801 1.19 bouyer error = ENODEV; /* Medium not present */
802 1.46 bouyer if (xs->xs_control & XS_CTL_SILENT_NODEV)
803 1.46 bouyer return (error);
804 1.46 bouyer } else
805 1.19 bouyer error = EIO;
806 1.24 thorpej if ((xs->xs_control & XS_CTL_SILENT) != 0)
807 1.19 bouyer return (error);
808 1.13 bouyer break;
809 1.13 bouyer case SKEY_ILLEGAL_REQUEST:
810 1.24 thorpej if ((xs->xs_control &
811 1.24 thorpej XS_CTL_IGNORE_ILLEGAL_REQUEST) != 0)
812 1.13 bouyer return (0);
813 1.24 thorpej /*
814 1.24 thorpej * Handle the case where a device reports
815 1.24 thorpej * Logical Unit Not Supported during discovery.
816 1.24 thorpej */
817 1.24 thorpej if ((xs->xs_control & XS_CTL_DISCOVERY) != 0 &&
818 1.24 thorpej sense->add_sense_code == 0x25 &&
819 1.24 thorpej sense->add_sense_code_qual == 0x00)
820 1.24 thorpej return (EINVAL);
821 1.24 thorpej if ((xs->xs_control & XS_CTL_SILENT) != 0)
822 1.13 bouyer return (EIO);
823 1.13 bouyer error = EINVAL;
824 1.13 bouyer break;
825 1.13 bouyer case SKEY_UNIT_ATTENTION:
826 1.20 bouyer if (sense->add_sense_code == 0x29 &&
827 1.39 bouyer sense->add_sense_code_qual == 0x00) {
828 1.39 bouyer /* device or bus reset */
829 1.39 bouyer return (ERESTART);
830 1.39 bouyer }
831 1.39 bouyer if ((periph->periph_flags & PERIPH_REMOVABLE) != 0)
832 1.39 bouyer periph->periph_flags &= ~PERIPH_MEDIA_LOADED;
833 1.24 thorpej if ((xs->xs_control &
834 1.24 thorpej XS_CTL_IGNORE_MEDIA_CHANGE) != 0 ||
835 1.13 bouyer /* XXX Should reupload any transient state. */
836 1.39 bouyer (periph->periph_flags &
837 1.39 bouyer PERIPH_REMOVABLE) == 0) {
838 1.13 bouyer return (ERESTART);
839 1.39 bouyer }
840 1.24 thorpej if ((xs->xs_control & XS_CTL_SILENT) != 0)
841 1.13 bouyer return (EIO);
842 1.13 bouyer error = EIO;
843 1.13 bouyer break;
844 1.13 bouyer case SKEY_WRITE_PROTECT:
845 1.13 bouyer error = EROFS;
846 1.13 bouyer break;
847 1.13 bouyer case SKEY_BLANK_CHECK:
848 1.13 bouyer error = 0;
849 1.13 bouyer break;
850 1.13 bouyer case SKEY_ABORTED_COMMAND:
851 1.13 bouyer error = ERESTART;
852 1.13 bouyer break;
853 1.13 bouyer case SKEY_VOLUME_OVERFLOW:
854 1.13 bouyer error = ENOSPC;
855 1.13 bouyer break;
856 1.13 bouyer default:
857 1.13 bouyer error = EIO;
858 1.13 bouyer break;
859 1.13 bouyer }
860 1.13 bouyer
861 1.13 bouyer #ifdef SCSIVERBOSE
862 1.32 augustss if (key && (xs->xs_control & XS_CTL_SILENT) == 0)
863 1.13 bouyer scsipi_print_sense(xs, 0);
864 1.13 bouyer #else
865 1.13 bouyer if (key) {
866 1.39 bouyer scsipi_printaddr(periph);
867 1.13 bouyer printf("%s", error_mes[key - 1]);
868 1.13 bouyer if ((sense->error_code & SSD_ERRCODE_VALID) != 0) {
869 1.13 bouyer switch (key) {
870 1.13 bouyer case SKEY_NOT_READY:
871 1.13 bouyer case SKEY_ILLEGAL_REQUEST:
872 1.13 bouyer case SKEY_UNIT_ATTENTION:
873 1.13 bouyer case SKEY_WRITE_PROTECT:
874 1.13 bouyer break;
875 1.13 bouyer case SKEY_BLANK_CHECK:
876 1.13 bouyer printf(", requested size: %d (decimal)",
877 1.13 bouyer info);
878 1.13 bouyer break;
879 1.13 bouyer case SKEY_ABORTED_COMMAND:
880 1.39 bouyer if (xs->xs_retries)
881 1.13 bouyer printf(", retrying");
882 1.13 bouyer printf(", cmd 0x%x, info 0x%x",
883 1.13 bouyer xs->cmd->opcode, info);
884 1.13 bouyer break;
885 1.13 bouyer default:
886 1.13 bouyer printf(", info = %d (decimal)", info);
887 1.13 bouyer }
888 1.13 bouyer }
889 1.13 bouyer if (sense->extra_len != 0) {
890 1.13 bouyer int n;
891 1.13 bouyer printf(", data =");
892 1.13 bouyer for (n = 0; n < sense->extra_len; n++)
893 1.13 bouyer printf(" %02x",
894 1.13 bouyer sense->cmd_spec_info[n]);
895 1.13 bouyer }
896 1.13 bouyer printf("\n");
897 1.13 bouyer }
898 1.13 bouyer #endif
899 1.13 bouyer return (error);
900 1.13 bouyer
901 1.13 bouyer /*
902 1.13 bouyer * Not code 70, just report it
903 1.13 bouyer */
904 1.13 bouyer default:
905 1.39 bouyer #if defined(SCSIDEBUG) || defined(DEBUG)
906 1.28 mjacob {
907 1.28 mjacob static char *uc = "undecodable sense error";
908 1.28 mjacob int i;
909 1.28 mjacob u_int8_t *cptr = (u_int8_t *) sense;
910 1.39 bouyer scsipi_printaddr(periph);
911 1.28 mjacob if (xs->cmd == &xs->cmdstore) {
912 1.28 mjacob printf("%s for opcode 0x%x, data=",
913 1.28 mjacob uc, xs->cmdstore.opcode);
914 1.28 mjacob } else {
915 1.28 mjacob printf("%s, data=", uc);
916 1.28 mjacob }
917 1.28 mjacob for (i = 0; i < sizeof (sense); i++)
918 1.28 mjacob printf(" 0x%02x", *(cptr++) & 0xff);
919 1.28 mjacob printf("\n");
920 1.28 mjacob }
921 1.28 mjacob #else
922 1.39 bouyer
923 1.39 bouyer scsipi_printaddr(periph);
924 1.17 mjacob printf("Sense Error Code 0x%x",
925 1.17 mjacob sense->error_code & SSD_ERRCODE);
926 1.13 bouyer if ((sense->error_code & SSD_ERRCODE_VALID) != 0) {
927 1.13 bouyer struct scsipi_sense_data_unextended *usense =
928 1.13 bouyer (struct scsipi_sense_data_unextended *)sense;
929 1.13 bouyer printf(" at block no. %d (decimal)",
930 1.13 bouyer _3btol(usense->block));
931 1.13 bouyer }
932 1.13 bouyer printf("\n");
933 1.28 mjacob #endif
934 1.13 bouyer return (EIO);
935 1.13 bouyer }
936 1.13 bouyer }
937 1.13 bouyer
938 1.13 bouyer /*
939 1.39 bouyer * scsipi_size:
940 1.39 bouyer *
941 1.39 bouyer * Find out from the device what its capacity is.
942 1.2 bouyer */
943 1.2 bouyer u_long
944 1.39 bouyer scsipi_size(periph, flags)
945 1.39 bouyer struct scsipi_periph *periph;
946 1.2 bouyer int flags;
947 1.2 bouyer {
948 1.2 bouyer struct scsipi_read_cap_data rdcap;
949 1.2 bouyer struct scsipi_read_capacity scsipi_cmd;
950 1.2 bouyer
951 1.50 thorpej memset(&scsipi_cmd, 0, sizeof(scsipi_cmd));
952 1.2 bouyer scsipi_cmd.opcode = READ_CAPACITY;
953 1.2 bouyer
954 1.2 bouyer /*
955 1.2 bouyer * If the command works, interpret the result as a 4 byte
956 1.2 bouyer * number of blocks
957 1.2 bouyer */
958 1.39 bouyer if (scsipi_command(periph, (struct scsipi_generic *)&scsipi_cmd,
959 1.3 enami sizeof(scsipi_cmd), (u_char *)&rdcap, sizeof(rdcap),
960 1.38 enami SCSIPIRETRIES, 20000, NULL,
961 1.38 enami flags | XS_CTL_DATA_IN | XS_CTL_DATA_ONSTACK) != 0) {
962 1.39 bouyer scsipi_printaddr(periph);
963 1.2 bouyer printf("could not get size\n");
964 1.3 enami return (0);
965 1.2 bouyer }
966 1.2 bouyer
967 1.3 enami return (_4btol(rdcap.addr) + 1);
968 1.2 bouyer }
969 1.2 bouyer
970 1.2 bouyer /*
971 1.39 bouyer * scsipi_test_unit_ready:
972 1.39 bouyer *
973 1.39 bouyer * Issue a `test unit ready' request.
974 1.2 bouyer */
975 1.3 enami int
976 1.39 bouyer scsipi_test_unit_ready(periph, flags)
977 1.39 bouyer struct scsipi_periph *periph;
978 1.2 bouyer int flags;
979 1.2 bouyer {
980 1.2 bouyer struct scsipi_test_unit_ready scsipi_cmd;
981 1.2 bouyer
982 1.2 bouyer /* some ATAPI drives don't support TEST_UNIT_READY. Sigh */
983 1.39 bouyer if (periph->periph_quirks & PQUIRK_NOTUR)
984 1.3 enami return (0);
985 1.2 bouyer
986 1.50 thorpej memset(&scsipi_cmd, 0, sizeof(scsipi_cmd));
987 1.2 bouyer scsipi_cmd.opcode = TEST_UNIT_READY;
988 1.2 bouyer
989 1.39 bouyer return (scsipi_command(periph,
990 1.3 enami (struct scsipi_generic *)&scsipi_cmd, sizeof(scsipi_cmd),
991 1.29 bouyer 0, 0, SCSIPIRETRIES, 10000, NULL, flags));
992 1.2 bouyer }
993 1.2 bouyer
994 1.2 bouyer /*
995 1.39 bouyer * scsipi_inquire:
996 1.39 bouyer *
997 1.39 bouyer * Ask the device about itself.
998 1.2 bouyer */
999 1.3 enami int
1000 1.39 bouyer scsipi_inquire(periph, inqbuf, flags)
1001 1.39 bouyer struct scsipi_periph *periph;
1002 1.2 bouyer struct scsipi_inquiry_data *inqbuf;
1003 1.2 bouyer int flags;
1004 1.2 bouyer {
1005 1.2 bouyer struct scsipi_inquiry scsipi_cmd;
1006 1.2 bouyer
1007 1.50 thorpej memset(&scsipi_cmd, 0, sizeof(scsipi_cmd));
1008 1.2 bouyer scsipi_cmd.opcode = INQUIRY;
1009 1.2 bouyer scsipi_cmd.length = sizeof(struct scsipi_inquiry_data);
1010 1.2 bouyer
1011 1.39 bouyer return (scsipi_command(periph,
1012 1.3 enami (struct scsipi_generic *) &scsipi_cmd, sizeof(scsipi_cmd),
1013 1.3 enami (u_char *) inqbuf, sizeof(struct scsipi_inquiry_data),
1014 1.29 bouyer SCSIPIRETRIES, 10000, NULL, XS_CTL_DATA_IN | flags));
1015 1.2 bouyer }
1016 1.2 bouyer
1017 1.2 bouyer /*
1018 1.39 bouyer * scsipi_prevent:
1019 1.39 bouyer *
1020 1.39 bouyer * Prevent or allow the user to remove the media
1021 1.2 bouyer */
1022 1.3 enami int
1023 1.39 bouyer scsipi_prevent(periph, type, flags)
1024 1.39 bouyer struct scsipi_periph *periph;
1025 1.2 bouyer int type, flags;
1026 1.2 bouyer {
1027 1.2 bouyer struct scsipi_prevent scsipi_cmd;
1028 1.2 bouyer
1029 1.39 bouyer if (periph->periph_quirks & PQUIRK_NODOORLOCK)
1030 1.3 enami return (0);
1031 1.2 bouyer
1032 1.50 thorpej memset(&scsipi_cmd, 0, sizeof(scsipi_cmd));
1033 1.2 bouyer scsipi_cmd.opcode = PREVENT_ALLOW;
1034 1.2 bouyer scsipi_cmd.how = type;
1035 1.39 bouyer
1036 1.39 bouyer return (scsipi_command(periph,
1037 1.3 enami (struct scsipi_generic *) &scsipi_cmd, sizeof(scsipi_cmd),
1038 1.29 bouyer 0, 0, SCSIPIRETRIES, 5000, NULL, flags));
1039 1.2 bouyer }
1040 1.2 bouyer
1041 1.2 bouyer /*
1042 1.39 bouyer * scsipi_start:
1043 1.39 bouyer *
1044 1.39 bouyer * Send a START UNIT.
1045 1.2 bouyer */
1046 1.3 enami int
1047 1.39 bouyer scsipi_start(periph, type, flags)
1048 1.39 bouyer struct scsipi_periph *periph;
1049 1.2 bouyer int type, flags;
1050 1.2 bouyer {
1051 1.2 bouyer struct scsipi_start_stop scsipi_cmd;
1052 1.18 bouyer
1053 1.39 bouyer if (periph->periph_quirks & PQUIRK_NOSTARTUNIT)
1054 1.18 bouyer return 0;
1055 1.2 bouyer
1056 1.50 thorpej memset(&scsipi_cmd, 0, sizeof(scsipi_cmd));
1057 1.2 bouyer scsipi_cmd.opcode = START_STOP;
1058 1.2 bouyer scsipi_cmd.byte2 = 0x00;
1059 1.2 bouyer scsipi_cmd.how = type;
1060 1.39 bouyer
1061 1.39 bouyer return (scsipi_command(periph,
1062 1.3 enami (struct scsipi_generic *) &scsipi_cmd, sizeof(scsipi_cmd),
1063 1.29 bouyer 0, 0, SCSIPIRETRIES, (type & SSS_START) ? 60000 : 10000,
1064 1.29 bouyer NULL, flags));
1065 1.41 bouyer }
1066 1.41 bouyer
1067 1.41 bouyer /*
1068 1.41 bouyer * scsipi_mode_sense, scsipi_mode_sense_big:
1069 1.41 bouyer * get a sense page from a device
1070 1.41 bouyer */
1071 1.41 bouyer
1072 1.41 bouyer int
1073 1.41 bouyer scsipi_mode_sense(periph, byte2, page, data, len, flags, retries, timeout)
1074 1.41 bouyer struct scsipi_periph *periph;
1075 1.41 bouyer int byte2, page, len, flags, retries, timeout;
1076 1.41 bouyer struct scsipi_mode_header *data;
1077 1.41 bouyer {
1078 1.41 bouyer struct scsipi_mode_sense scsipi_cmd;
1079 1.41 bouyer int error;
1080 1.41 bouyer
1081 1.50 thorpej memset(&scsipi_cmd, 0, sizeof(scsipi_cmd));
1082 1.41 bouyer scsipi_cmd.opcode = MODE_SENSE;
1083 1.41 bouyer scsipi_cmd.byte2 = byte2;
1084 1.41 bouyer scsipi_cmd.page = page;
1085 1.41 bouyer if (scsipi_periph_bustype(periph) == SCSIPI_BUSTYPE_ATAPI)
1086 1.41 bouyer _lto2b(len, scsipi_cmd.u_len.atapi.length);
1087 1.41 bouyer else
1088 1.41 bouyer scsipi_cmd.u_len.scsi.length = len & 0xff;
1089 1.41 bouyer error = scsipi_command(periph, (struct scsipi_generic *)&scsipi_cmd,
1090 1.41 bouyer sizeof(scsipi_cmd), (void *)data, len, retries, timeout, NULL,
1091 1.41 bouyer flags | XS_CTL_DATA_IN);
1092 1.41 bouyer SC_DEBUG(periph, SCSIPI_DB2,
1093 1.41 bouyer ("scsipi_mode_sense: error=%d\n", error));
1094 1.41 bouyer return (error);
1095 1.41 bouyer }
1096 1.41 bouyer
1097 1.41 bouyer int
1098 1.41 bouyer scsipi_mode_sense_big(periph, byte2, page, data, len, flags, retries, timeout)
1099 1.41 bouyer struct scsipi_periph *periph;
1100 1.41 bouyer int byte2, page, len, flags, retries, timeout;
1101 1.41 bouyer struct scsipi_mode_header_big *data;
1102 1.41 bouyer {
1103 1.41 bouyer struct scsipi_mode_sense_big scsipi_cmd;
1104 1.41 bouyer int error;
1105 1.41 bouyer
1106 1.50 thorpej memset(&scsipi_cmd, 0, sizeof(scsipi_cmd));
1107 1.41 bouyer scsipi_cmd.opcode = MODE_SENSE_BIG;
1108 1.41 bouyer scsipi_cmd.byte2 = byte2;
1109 1.41 bouyer scsipi_cmd.page = page;
1110 1.41 bouyer _lto2b(len, scsipi_cmd.length);
1111 1.41 bouyer error = scsipi_command(periph, (struct scsipi_generic *)&scsipi_cmd,
1112 1.41 bouyer sizeof(scsipi_cmd), (void *)data, len, retries, timeout, NULL,
1113 1.41 bouyer flags | XS_CTL_DATA_IN);
1114 1.41 bouyer SC_DEBUG(periph, SCSIPI_DB2,
1115 1.41 bouyer ("scsipi_mode_sense_big: error=%d\n", error));
1116 1.41 bouyer return (error);
1117 1.41 bouyer }
1118 1.41 bouyer
1119 1.41 bouyer int
1120 1.41 bouyer scsipi_mode_select(periph, byte2, data, len, flags, retries, timeout)
1121 1.41 bouyer struct scsipi_periph *periph;
1122 1.41 bouyer int byte2, len, flags, retries, timeout;
1123 1.41 bouyer struct scsipi_mode_header *data;
1124 1.41 bouyer {
1125 1.41 bouyer struct scsipi_mode_select scsipi_cmd;
1126 1.41 bouyer int error;
1127 1.41 bouyer
1128 1.50 thorpej memset(&scsipi_cmd, 0, sizeof(scsipi_cmd));
1129 1.41 bouyer scsipi_cmd.opcode = MODE_SELECT;
1130 1.41 bouyer scsipi_cmd.byte2 = byte2;
1131 1.41 bouyer if (scsipi_periph_bustype(periph) == SCSIPI_BUSTYPE_ATAPI)
1132 1.41 bouyer _lto2b(len, scsipi_cmd.u_len.atapi.length);
1133 1.41 bouyer else
1134 1.41 bouyer scsipi_cmd.u_len.scsi.length = len & 0xff;
1135 1.41 bouyer error = scsipi_command(periph, (struct scsipi_generic *)&scsipi_cmd,
1136 1.41 bouyer sizeof(scsipi_cmd), (void *)data, len, retries, timeout, NULL,
1137 1.41 bouyer flags | XS_CTL_DATA_OUT);
1138 1.41 bouyer SC_DEBUG(periph, SCSIPI_DB2,
1139 1.41 bouyer ("scsipi_mode_select: error=%d\n", error));
1140 1.41 bouyer return (error);
1141 1.41 bouyer }
1142 1.41 bouyer
1143 1.41 bouyer int
1144 1.41 bouyer scsipi_mode_select_big(periph, byte2, data, len, flags, retries, timeout)
1145 1.41 bouyer struct scsipi_periph *periph;
1146 1.41 bouyer int byte2, len, flags, retries, timeout;
1147 1.41 bouyer struct scsipi_mode_header_big *data;
1148 1.41 bouyer {
1149 1.41 bouyer struct scsipi_mode_select_big scsipi_cmd;
1150 1.41 bouyer int error;
1151 1.41 bouyer
1152 1.50 thorpej memset(&scsipi_cmd, 0, sizeof(scsipi_cmd));
1153 1.41 bouyer scsipi_cmd.opcode = MODE_SELECT_BIG;
1154 1.41 bouyer scsipi_cmd.byte2 = byte2;
1155 1.41 bouyer _lto2b(len, scsipi_cmd.length);
1156 1.41 bouyer error = scsipi_command(periph, (struct scsipi_generic *)&scsipi_cmd,
1157 1.41 bouyer sizeof(scsipi_cmd), (void *)data, len, retries, timeout, NULL,
1158 1.41 bouyer flags | XS_CTL_DATA_OUT);
1159 1.41 bouyer SC_DEBUG(periph, SCSIPI_DB2,
1160 1.41 bouyer ("scsipi_mode_select: error=%d\n", error));
1161 1.41 bouyer return (error);
1162 1.2 bouyer }
1163 1.2 bouyer
1164 1.2 bouyer /*
1165 1.39 bouyer * scsipi_done:
1166 1.39 bouyer *
1167 1.39 bouyer * This routine is called by an adapter's interrupt handler when
1168 1.39 bouyer * an xfer is completed.
1169 1.2 bouyer */
1170 1.3 enami void
1171 1.2 bouyer scsipi_done(xs)
1172 1.2 bouyer struct scsipi_xfer *xs;
1173 1.2 bouyer {
1174 1.39 bouyer struct scsipi_periph *periph = xs->xs_periph;
1175 1.39 bouyer struct scsipi_channel *chan = periph->periph_channel;
1176 1.39 bouyer int s, freezecnt;
1177 1.39 bouyer
1178 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB2, ("scsipi_done\n"));
1179 1.39 bouyer #ifdef SCSIPI_DEBUG
1180 1.39 bouyer if (periph->periph_dbflags & SCSIPI_DB1)
1181 1.39 bouyer show_scsipi_cmd(xs);
1182 1.39 bouyer #endif
1183 1.39 bouyer
1184 1.39 bouyer s = splbio();
1185 1.39 bouyer /*
1186 1.39 bouyer * The resource this command was using is now free.
1187 1.39 bouyer */
1188 1.39 bouyer scsipi_put_resource(chan);
1189 1.39 bouyer xs->xs_periph->periph_sent--;
1190 1.39 bouyer
1191 1.39 bouyer /*
1192 1.39 bouyer * If the command was tagged, free the tag.
1193 1.39 bouyer */
1194 1.39 bouyer if (XS_CTL_TAGTYPE(xs) != 0)
1195 1.39 bouyer scsipi_put_tag(xs);
1196 1.39 bouyer else
1197 1.39 bouyer periph->periph_flags &= ~PERIPH_UNTAG;
1198 1.39 bouyer
1199 1.39 bouyer /* Mark the command as `done'. */
1200 1.39 bouyer xs->xs_status |= XS_STS_DONE;
1201 1.39 bouyer
1202 1.39 bouyer #ifdef DIAGNOSTIC
1203 1.39 bouyer if ((xs->xs_control & (XS_CTL_ASYNC|XS_CTL_POLL)) ==
1204 1.39 bouyer (XS_CTL_ASYNC|XS_CTL_POLL))
1205 1.39 bouyer panic("scsipi_done: ASYNC and POLL");
1206 1.39 bouyer #endif
1207 1.39 bouyer
1208 1.39 bouyer /*
1209 1.39 bouyer * If the xfer had an error of any sort, freeze the
1210 1.39 bouyer * periph's queue. Freeze it again if we were requested
1211 1.39 bouyer * to do so in the xfer.
1212 1.39 bouyer */
1213 1.39 bouyer freezecnt = 0;
1214 1.39 bouyer if (xs->error != XS_NOERROR)
1215 1.39 bouyer freezecnt++;
1216 1.39 bouyer if (xs->xs_control & XS_CTL_FREEZE_PERIPH)
1217 1.39 bouyer freezecnt++;
1218 1.39 bouyer if (freezecnt != 0)
1219 1.39 bouyer scsipi_periph_freeze(periph, freezecnt);
1220 1.39 bouyer
1221 1.39 bouyer /*
1222 1.39 bouyer * record the xfer with a pending sense, in case a SCSI reset is
1223 1.39 bouyer * received before the thread is waked up.
1224 1.39 bouyer */
1225 1.39 bouyer if (xs->error == XS_BUSY && xs->status == SCSI_CHECK) {
1226 1.39 bouyer periph->periph_flags |= PERIPH_SENSE;
1227 1.39 bouyer periph->periph_xscheck = xs;
1228 1.39 bouyer }
1229 1.39 bouyer
1230 1.39 bouyer /*
1231 1.39 bouyer * If this was an xfer that was not to complete asynchrnously,
1232 1.39 bouyer * let the requesting thread perform error checking/handling
1233 1.39 bouyer * in its context.
1234 1.39 bouyer */
1235 1.39 bouyer if ((xs->xs_control & XS_CTL_ASYNC) == 0) {
1236 1.39 bouyer splx(s);
1237 1.39 bouyer /*
1238 1.39 bouyer * If it's a polling job, just return, to unwind the
1239 1.39 bouyer * call graph. We don't need to restart the queue,
1240 1.39 bouyer * because pollings jobs are treated specially, and
1241 1.39 bouyer * are really only used during crash dumps anyway
1242 1.39 bouyer * (XXX or during boot-time autconfiguration of
1243 1.39 bouyer * ATAPI devices).
1244 1.39 bouyer */
1245 1.39 bouyer if (xs->xs_control & XS_CTL_POLL)
1246 1.39 bouyer return;
1247 1.39 bouyer wakeup(xs);
1248 1.39 bouyer goto out;
1249 1.39 bouyer }
1250 1.39 bouyer
1251 1.39 bouyer /*
1252 1.39 bouyer * Catch the extremely common case of I/O completing
1253 1.39 bouyer * without error; no use in taking a context switch
1254 1.39 bouyer * if we can handle it in interrupt context.
1255 1.39 bouyer */
1256 1.39 bouyer if (xs->error == XS_NOERROR) {
1257 1.39 bouyer splx(s);
1258 1.39 bouyer (void) scsipi_complete(xs);
1259 1.39 bouyer goto out;
1260 1.39 bouyer }
1261 1.39 bouyer
1262 1.39 bouyer /*
1263 1.39 bouyer * There is an error on this xfer. Put it on the channel's
1264 1.39 bouyer * completion queue, and wake up the completion thread.
1265 1.39 bouyer */
1266 1.39 bouyer TAILQ_INSERT_TAIL(&chan->chan_complete, xs, channel_q);
1267 1.39 bouyer splx(s);
1268 1.39 bouyer wakeup(&chan->chan_complete);
1269 1.39 bouyer
1270 1.39 bouyer out:
1271 1.39 bouyer /*
1272 1.39 bouyer * If there are more xfers on the channel's queue, attempt to
1273 1.39 bouyer * run them.
1274 1.39 bouyer */
1275 1.39 bouyer scsipi_run_queue(chan);
1276 1.39 bouyer }
1277 1.39 bouyer
1278 1.39 bouyer /*
1279 1.39 bouyer * scsipi_complete:
1280 1.39 bouyer *
1281 1.39 bouyer * Completion of a scsipi_xfer. This is the guts of scsipi_done().
1282 1.39 bouyer *
1283 1.39 bouyer * NOTE: This routine MUST be called with valid thread context
1284 1.39 bouyer * except for the case where the following two conditions are
1285 1.39 bouyer * true:
1286 1.39 bouyer *
1287 1.39 bouyer * xs->error == XS_NOERROR
1288 1.39 bouyer * XS_CTL_ASYNC is set in xs->xs_control
1289 1.39 bouyer *
1290 1.39 bouyer * The semantics of this routine can be tricky, so here is an
1291 1.39 bouyer * explanation:
1292 1.39 bouyer *
1293 1.39 bouyer * 0 Xfer completed successfully.
1294 1.39 bouyer *
1295 1.39 bouyer * ERESTART Xfer had an error, but was restarted.
1296 1.39 bouyer *
1297 1.39 bouyer * anything else Xfer had an error, return value is Unix
1298 1.39 bouyer * errno.
1299 1.39 bouyer *
1300 1.39 bouyer * If the return value is anything but ERESTART:
1301 1.39 bouyer *
1302 1.39 bouyer * - If XS_CTL_ASYNC is set, `xs' has been freed back to
1303 1.39 bouyer * the pool.
1304 1.39 bouyer * - If there is a buf associated with the xfer,
1305 1.39 bouyer * it has been biodone()'d.
1306 1.39 bouyer */
1307 1.39 bouyer int
1308 1.39 bouyer scsipi_complete(xs)
1309 1.39 bouyer struct scsipi_xfer *xs;
1310 1.39 bouyer {
1311 1.39 bouyer struct scsipi_periph *periph = xs->xs_periph;
1312 1.39 bouyer struct scsipi_channel *chan = periph->periph_channel;
1313 1.2 bouyer struct buf *bp;
1314 1.31 enami int error, s;
1315 1.2 bouyer
1316 1.39 bouyer #ifdef DIAGNOSTIC
1317 1.39 bouyer if ((xs->xs_control & XS_CTL_ASYNC) != 0 && xs->bp == NULL)
1318 1.39 bouyer panic("scsipi_complete: XS_CTL_ASYNC but no buf");
1319 1.39 bouyer #endif
1320 1.39 bouyer /*
1321 1.39 bouyer * If command terminated with a CHECK CONDITION, we need to issue a
1322 1.39 bouyer * REQUEST_SENSE command. Once the REQUEST_SENSE has been processed
1323 1.39 bouyer * we'll have the real status.
1324 1.39 bouyer * Must be processed at splbio() to avoid missing a SCSI bus reset
1325 1.39 bouyer * for this command.
1326 1.39 bouyer */
1327 1.39 bouyer s = splbio();
1328 1.39 bouyer if (xs->error == XS_BUSY && xs->status == SCSI_CHECK) {
1329 1.39 bouyer /* request sense for a request sense ? */
1330 1.39 bouyer if (xs->xs_control & XS_CTL_REQSENSE) {
1331 1.39 bouyer scsipi_printaddr(periph);
1332 1.47 bouyer printf("request sense for a request sense ?\n");
1333 1.39 bouyer /* XXX maybe we should reset the device ? */
1334 1.39 bouyer /* we've been frozen because xs->error != XS_NOERROR */
1335 1.39 bouyer scsipi_periph_thaw(periph, 1);
1336 1.39 bouyer splx(s);
1337 1.47 bouyer if (xs->resid < xs->datalen) {
1338 1.47 bouyer printf("we read %d bytes of sense anyway:\n",
1339 1.47 bouyer xs->datalen - xs->resid);
1340 1.48 ross #ifdef SCSIVERBOSE
1341 1.47 bouyer scsipi_print_sense_data((void *)xs->data, 0);
1342 1.48 ross #endif
1343 1.47 bouyer }
1344 1.39 bouyer return EINVAL;
1345 1.39 bouyer }
1346 1.39 bouyer scsipi_request_sense(xs);
1347 1.39 bouyer }
1348 1.39 bouyer splx(s);
1349 1.2 bouyer /*
1350 1.3 enami * If it's a user level request, bypass all usual completion
1351 1.39 bouyer * processing, let the user work it out..
1352 1.3 enami */
1353 1.24 thorpej if ((xs->xs_control & XS_CTL_USERCMD) != 0) {
1354 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB3, ("calling user done()\n"));
1355 1.39 bouyer if (xs->error != XS_NOERROR)
1356 1.39 bouyer scsipi_periph_thaw(periph, 1);
1357 1.39 bouyer scsipi_user_done(xs);
1358 1.39 bouyer SC_DEBUG(periph, SCSIPI_DB3, ("returned from user done()\n "));
1359 1.39 bouyer return 0;
1360 1.39 bouyer }
1361 1.39 bouyer
1362 1.39 bouyer
1363 1.39 bouyer switch (xs->error) {
1364 1.39 bouyer case XS_NOERROR:
1365 1.39 bouyer error = 0;
1366 1.39 bouyer break;
1367 1.39 bouyer
1368 1.39 bouyer case XS_SENSE:
1369 1.39 bouyer case XS_SHORTSENSE:
1370 1.39 bouyer error = (*chan->chan_bustype->bustype_interpret_sense)(xs);
1371 1.39 bouyer break;
1372 1.2 bouyer
1373 1.39 bouyer case XS_RESOURCE_SHORTAGE:
1374 1.9 scottr /*
1375 1.39 bouyer * XXX Should freeze channel's queue.
1376 1.39 bouyer */
1377 1.39 bouyer scsipi_printaddr(periph);
1378 1.39 bouyer printf("adapter resource shortage\n");
1379 1.39 bouyer /* FALLTHROUGH */
1380 1.39 bouyer
1381 1.39 bouyer case XS_BUSY:
1382 1.39 bouyer if (xs->error == XS_BUSY && xs->status == SCSI_QUEUE_FULL) {
1383 1.39 bouyer struct scsipi_max_openings mo;
1384 1.39 bouyer
1385 1.39 bouyer /*
1386 1.39 bouyer * We set the openings to active - 1, assuming that
1387 1.39 bouyer * the command that got us here is the first one that
1388 1.39 bouyer * can't fit into the device's queue. If that's not
1389 1.39 bouyer * the case, I guess we'll find out soon enough.
1390 1.39 bouyer */
1391 1.39 bouyer mo.mo_target = periph->periph_target;
1392 1.39 bouyer mo.mo_lun = periph->periph_lun;
1393 1.42 bouyer if (periph->periph_active < periph->periph_openings)
1394 1.42 bouyer mo.mo_openings = periph->periph_active - 1;
1395 1.42 bouyer else
1396 1.42 bouyer mo.mo_openings = periph->periph_openings - 1;
1397 1.39 bouyer #ifdef DIAGNOSTIC
1398 1.39 bouyer if (mo.mo_openings < 0) {
1399 1.39 bouyer scsipi_printaddr(periph);
1400 1.39 bouyer printf("QUEUE FULL resulted in < 0 openings\n");
1401 1.39 bouyer panic("scsipi_done");
1402 1.39 bouyer }
1403 1.39 bouyer #endif
1404 1.39 bouyer if (mo.mo_openings == 0) {
1405 1.39 bouyer scsipi_printaddr(periph);
1406 1.39 bouyer printf("QUEUE FULL resulted in 0 openings\n");
1407 1.39 bouyer mo.mo_openings = 1;
1408 1.39 bouyer }
1409 1.39 bouyer scsipi_async_event(chan, ASYNC_EVENT_MAX_OPENINGS, &mo);
1410 1.39 bouyer error = ERESTART;
1411 1.39 bouyer } else if (xs->xs_retries != 0) {
1412 1.39 bouyer xs->xs_retries--;
1413 1.39 bouyer /*
1414 1.39 bouyer * Wait one second, and try again.
1415 1.39 bouyer */
1416 1.39 bouyer if (xs->xs_control & XS_CTL_POLL)
1417 1.39 bouyer delay(1000000);
1418 1.39 bouyer else {
1419 1.39 bouyer scsipi_periph_freeze(periph, 1);
1420 1.39 bouyer callout_reset(&periph->periph_callout,
1421 1.39 bouyer hz, scsipi_periph_timed_thaw, periph);
1422 1.39 bouyer }
1423 1.39 bouyer error = ERESTART;
1424 1.39 bouyer } else
1425 1.39 bouyer error = EBUSY;
1426 1.39 bouyer break;
1427 1.39 bouyer
1428 1.39 bouyer case XS_REQUEUE:
1429 1.39 bouyer error = ERESTART;
1430 1.39 bouyer break;
1431 1.39 bouyer
1432 1.39 bouyer case XS_TIMEOUT:
1433 1.39 bouyer if (xs->xs_retries != 0) {
1434 1.39 bouyer xs->xs_retries--;
1435 1.39 bouyer error = ERESTART;
1436 1.39 bouyer } else
1437 1.39 bouyer error = EIO;
1438 1.39 bouyer break;
1439 1.39 bouyer
1440 1.39 bouyer case XS_SELTIMEOUT:
1441 1.39 bouyer /* XXX Disable device? */
1442 1.39 bouyer error = EIO;
1443 1.39 bouyer break;
1444 1.39 bouyer
1445 1.39 bouyer case XS_RESET:
1446 1.39 bouyer if (xs->xs_control & XS_CTL_REQSENSE) {
1447 1.39 bouyer /*
1448 1.39 bouyer * request sense interrupted by reset: signal it
1449 1.39 bouyer * with EINTR return code.
1450 1.39 bouyer */
1451 1.39 bouyer error = EINTR;
1452 1.39 bouyer } else {
1453 1.39 bouyer if (xs->xs_retries != 0) {
1454 1.39 bouyer xs->xs_retries--;
1455 1.39 bouyer error = ERESTART;
1456 1.39 bouyer } else
1457 1.39 bouyer error = EIO;
1458 1.31 enami }
1459 1.39 bouyer break;
1460 1.39 bouyer
1461 1.39 bouyer default:
1462 1.39 bouyer scsipi_printaddr(periph);
1463 1.39 bouyer printf("invalid return code from adapter: %d\n", xs->error);
1464 1.39 bouyer error = EIO;
1465 1.39 bouyer break;
1466 1.2 bouyer }
1467 1.2 bouyer
1468 1.39 bouyer s = splbio();
1469 1.39 bouyer if (error == ERESTART) {
1470 1.2 bouyer /*
1471 1.39 bouyer * If we get here, the periph has been thawed and frozen
1472 1.39 bouyer * again if we had to issue recovery commands. Alternatively,
1473 1.39 bouyer * it may have been frozen again and in a timed thaw. In
1474 1.39 bouyer * any case, we thaw the periph once we re-enqueue the
1475 1.39 bouyer * command. Once the periph is fully thawed, it will begin
1476 1.39 bouyer * operation again.
1477 1.2 bouyer */
1478 1.39 bouyer xs->error = XS_NOERROR;
1479 1.39 bouyer xs->status = SCSI_OK;
1480 1.39 bouyer xs->xs_status &= ~XS_STS_DONE;
1481 1.39 bouyer xs->xs_requeuecnt++;
1482 1.39 bouyer error = scsipi_enqueue(xs);
1483 1.39 bouyer if (error == 0) {
1484 1.39 bouyer scsipi_periph_thaw(periph, 1);
1485 1.39 bouyer splx(s);
1486 1.39 bouyer return (ERESTART);
1487 1.39 bouyer }
1488 1.2 bouyer }
1489 1.2 bouyer
1490 1.2 bouyer /*
1491 1.39 bouyer * scsipi_done() freezes the queue if not XS_NOERROR.
1492 1.39 bouyer * Thaw it here.
1493 1.2 bouyer */
1494 1.39 bouyer if (xs->error != XS_NOERROR)
1495 1.39 bouyer scsipi_periph_thaw(periph, 1);
1496 1.2 bouyer
1497 1.40 bouyer
1498 1.40 bouyer if (periph->periph_switch->psw_done)
1499 1.40 bouyer periph->periph_switch->psw_done(xs);
1500 1.39 bouyer if ((bp = xs->bp) != NULL) {
1501 1.2 bouyer if (error) {
1502 1.2 bouyer bp->b_error = error;
1503 1.2 bouyer bp->b_flags |= B_ERROR;
1504 1.2 bouyer bp->b_resid = bp->b_bcount;
1505 1.2 bouyer } else {
1506 1.2 bouyer bp->b_error = 0;
1507 1.2 bouyer bp->b_resid = xs->resid;
1508 1.2 bouyer }
1509 1.39 bouyer biodone(bp);
1510 1.2 bouyer }
1511 1.39 bouyer
1512 1.39 bouyer if (xs->xs_control & XS_CTL_ASYNC)
1513 1.39 bouyer scsipi_put_xs(xs);
1514 1.39 bouyer splx(s);
1515 1.39 bouyer
1516 1.39 bouyer return (error);
1517 1.39 bouyer }
1518 1.39 bouyer
1519 1.39 bouyer /*
1520 1.39 bouyer * Issue a request sense for the given scsipi_xfer. Called when the xfer
1521 1.39 bouyer * returns with a CHECK_CONDITION status. Must be called in valid thread
1522 1.39 bouyer * context and at splbio().
1523 1.39 bouyer */
1524 1.39 bouyer
1525 1.39 bouyer void
1526 1.39 bouyer scsipi_request_sense(xs)
1527 1.39 bouyer struct scsipi_xfer *xs;
1528 1.39 bouyer {
1529 1.39 bouyer struct scsipi_periph *periph = xs->xs_periph;
1530 1.39 bouyer int flags, error;
1531 1.39 bouyer struct scsipi_sense cmd;
1532 1.39 bouyer
1533 1.39 bouyer periph->periph_flags |= PERIPH_SENSE;
1534 1.39 bouyer
1535 1.39 bouyer /* if command was polling, request sense will too */
1536 1.39 bouyer flags = xs->xs_control & XS_CTL_POLL;
1537 1.39 bouyer /* Polling commands can't sleep */
1538 1.39 bouyer if (flags)
1539 1.39 bouyer flags |= XS_CTL_NOSLEEP;
1540 1.39 bouyer
1541 1.39 bouyer flags |= XS_CTL_REQSENSE | XS_CTL_URGENT | XS_CTL_DATA_IN |
1542 1.39 bouyer XS_CTL_THAW_PERIPH | XS_CTL_FREEZE_PERIPH;
1543 1.39 bouyer
1544 1.50 thorpej memset(&cmd, 0, sizeof(cmd));
1545 1.39 bouyer cmd.opcode = REQUEST_SENSE;
1546 1.39 bouyer cmd.length = sizeof(struct scsipi_sense_data);
1547 1.39 bouyer
1548 1.39 bouyer error = scsipi_command(periph,
1549 1.39 bouyer (struct scsipi_generic *) &cmd, sizeof(cmd),
1550 1.39 bouyer (u_char*)&xs->sense.scsi_sense, sizeof(struct scsipi_sense_data),
1551 1.39 bouyer 0, 1000, NULL, flags);
1552 1.39 bouyer periph->periph_flags &= ~PERIPH_SENSE;
1553 1.39 bouyer periph->periph_xscheck = NULL;
1554 1.39 bouyer switch(error) {
1555 1.39 bouyer case 0:
1556 1.39 bouyer /* we have a valid sense */
1557 1.39 bouyer xs->error = XS_SENSE;
1558 1.39 bouyer return;
1559 1.39 bouyer case EINTR:
1560 1.39 bouyer /* REQUEST_SENSE interrupted by bus reset. */
1561 1.39 bouyer xs->error = XS_RESET;
1562 1.39 bouyer return;
1563 1.39 bouyer case EIO:
1564 1.39 bouyer /* request sense coudn't be performed */
1565 1.2 bouyer /*
1566 1.39 bouyer * XXX this isn't quite rigth but we don't have anything
1567 1.39 bouyer * better for now
1568 1.2 bouyer */
1569 1.39 bouyer xs->error = XS_DRIVER_STUFFUP;
1570 1.39 bouyer return;
1571 1.39 bouyer default:
1572 1.39 bouyer /* Notify that request sense failed. */
1573 1.39 bouyer xs->error = XS_DRIVER_STUFFUP;
1574 1.39 bouyer scsipi_printaddr(periph);
1575 1.39 bouyer printf("request sense failed with error %d\n", error);
1576 1.39 bouyer return;
1577 1.39 bouyer }
1578 1.39 bouyer }
1579 1.39 bouyer
1580 1.39 bouyer /*
1581 1.39 bouyer * scsipi_enqueue:
1582 1.39 bouyer *
1583 1.39 bouyer * Enqueue an xfer on a channel.
1584 1.39 bouyer */
1585 1.39 bouyer int
1586 1.39 bouyer scsipi_enqueue(xs)
1587 1.39 bouyer struct scsipi_xfer *xs;
1588 1.39 bouyer {
1589 1.39 bouyer struct scsipi_channel *chan = xs->xs_periph->periph_channel;
1590 1.39 bouyer struct scsipi_xfer *qxs;
1591 1.39 bouyer int s;
1592 1.39 bouyer
1593 1.39 bouyer s = splbio();
1594 1.39 bouyer
1595 1.39 bouyer /*
1596 1.39 bouyer * If the xfer is to be polled, and there are already jobs on
1597 1.39 bouyer * the queue, we can't proceed.
1598 1.39 bouyer */
1599 1.39 bouyer if ((xs->xs_control & XS_CTL_POLL) != 0 &&
1600 1.39 bouyer TAILQ_FIRST(&chan->chan_queue) != NULL) {
1601 1.39 bouyer splx(s);
1602 1.39 bouyer xs->error = XS_DRIVER_STUFFUP;
1603 1.39 bouyer return (EAGAIN);
1604 1.2 bouyer }
1605 1.39 bouyer
1606 1.9 scottr /*
1607 1.39 bouyer * If we have an URGENT xfer, it's an error recovery command
1608 1.39 bouyer * and it should just go on the head of the channel's queue.
1609 1.9 scottr */
1610 1.39 bouyer if (xs->xs_control & XS_CTL_URGENT) {
1611 1.39 bouyer TAILQ_INSERT_HEAD(&chan->chan_queue, xs, channel_q);
1612 1.39 bouyer goto out;
1613 1.39 bouyer }
1614 1.39 bouyer
1615 1.39 bouyer /*
1616 1.39 bouyer * If this xfer has already been on the queue before, we
1617 1.39 bouyer * need to reinsert it in the correct order. That order is:
1618 1.39 bouyer *
1619 1.39 bouyer * Immediately before the first xfer for this periph
1620 1.39 bouyer * with a requeuecnt less than xs->xs_requeuecnt.
1621 1.39 bouyer *
1622 1.39 bouyer * Failing that, at the end of the queue. (We'll end up
1623 1.39 bouyer * there naturally.)
1624 1.39 bouyer */
1625 1.39 bouyer if (xs->xs_requeuecnt != 0) {
1626 1.39 bouyer for (qxs = TAILQ_FIRST(&chan->chan_queue); qxs != NULL;
1627 1.39 bouyer qxs = TAILQ_NEXT(qxs, channel_q)) {
1628 1.39 bouyer if (qxs->xs_periph == xs->xs_periph &&
1629 1.39 bouyer qxs->xs_requeuecnt < xs->xs_requeuecnt)
1630 1.39 bouyer break;
1631 1.39 bouyer }
1632 1.39 bouyer if (qxs != NULL) {
1633 1.39 bouyer TAILQ_INSERT_AFTER(&chan->chan_queue, qxs, xs,
1634 1.39 bouyer channel_q);
1635 1.39 bouyer goto out;
1636 1.39 bouyer }
1637 1.39 bouyer }
1638 1.39 bouyer TAILQ_INSERT_TAIL(&chan->chan_queue, xs, channel_q);
1639 1.39 bouyer out:
1640 1.39 bouyer if (xs->xs_control & XS_CTL_THAW_PERIPH)
1641 1.39 bouyer scsipi_periph_thaw(xs->xs_periph, 1);
1642 1.39 bouyer splx(s);
1643 1.39 bouyer return (0);
1644 1.39 bouyer }
1645 1.39 bouyer
1646 1.39 bouyer /*
1647 1.39 bouyer * scsipi_run_queue:
1648 1.39 bouyer *
1649 1.39 bouyer * Start as many xfers as possible running on the channel.
1650 1.39 bouyer */
1651 1.39 bouyer void
1652 1.39 bouyer scsipi_run_queue(chan)
1653 1.39 bouyer struct scsipi_channel *chan;
1654 1.39 bouyer {
1655 1.39 bouyer struct scsipi_xfer *xs;
1656 1.39 bouyer struct scsipi_periph *periph;
1657 1.39 bouyer int s;
1658 1.39 bouyer
1659 1.39 bouyer for (;;) {
1660 1.31 enami s = splbio();
1661 1.39 bouyer
1662 1.39 bouyer /*
1663 1.39 bouyer * If the channel is frozen, we can't do any work right
1664 1.39 bouyer * now.
1665 1.39 bouyer */
1666 1.39 bouyer if (chan->chan_qfreeze != 0) {
1667 1.39 bouyer splx(s);
1668 1.39 bouyer return;
1669 1.39 bouyer }
1670 1.39 bouyer
1671 1.39 bouyer /*
1672 1.39 bouyer * Look for work to do, and make sure we can do it.
1673 1.39 bouyer */
1674 1.39 bouyer for (xs = TAILQ_FIRST(&chan->chan_queue); xs != NULL;
1675 1.39 bouyer xs = TAILQ_NEXT(xs, channel_q)) {
1676 1.39 bouyer periph = xs->xs_periph;
1677 1.39 bouyer
1678 1.39 bouyer if ((periph->periph_sent >= periph->periph_openings) ||
1679 1.39 bouyer periph->periph_qfreeze != 0 ||
1680 1.39 bouyer (periph->periph_flags & PERIPH_UNTAG) != 0)
1681 1.39 bouyer continue;
1682 1.39 bouyer
1683 1.39 bouyer if ((periph->periph_flags &
1684 1.39 bouyer (PERIPH_RECOVERING | PERIPH_SENSE)) != 0 &&
1685 1.39 bouyer (xs->xs_control & XS_CTL_URGENT) == 0)
1686 1.39 bouyer continue;
1687 1.39 bouyer
1688 1.39 bouyer /*
1689 1.39 bouyer * We can issue this xfer!
1690 1.39 bouyer */
1691 1.39 bouyer goto got_one;
1692 1.39 bouyer }
1693 1.39 bouyer
1694 1.39 bouyer /*
1695 1.39 bouyer * Can't find any work to do right now.
1696 1.39 bouyer */
1697 1.22 pk splx(s);
1698 1.39 bouyer return;
1699 1.39 bouyer
1700 1.39 bouyer got_one:
1701 1.39 bouyer /*
1702 1.39 bouyer * Have an xfer to run. Allocate a resource from
1703 1.39 bouyer * the adapter to run it. If we can't allocate that
1704 1.39 bouyer * resource, we don't dequeue the xfer.
1705 1.39 bouyer */
1706 1.39 bouyer if (scsipi_get_resource(chan) == 0) {
1707 1.39 bouyer /*
1708 1.39 bouyer * Adapter is out of resources. If the adapter
1709 1.39 bouyer * supports it, attempt to grow them.
1710 1.39 bouyer */
1711 1.39 bouyer if (scsipi_grow_resources(chan) == 0) {
1712 1.39 bouyer /*
1713 1.39 bouyer * Wasn't able to grow resources,
1714 1.39 bouyer * nothing more we can do.
1715 1.39 bouyer */
1716 1.39 bouyer if (xs->xs_control & XS_CTL_POLL) {
1717 1.39 bouyer scsipi_printaddr(xs->xs_periph);
1718 1.39 bouyer printf("polling command but no "
1719 1.39 bouyer "adapter resources");
1720 1.39 bouyer /* We'll panic shortly... */
1721 1.39 bouyer }
1722 1.39 bouyer splx(s);
1723 1.39 bouyer
1724 1.39 bouyer /*
1725 1.39 bouyer * XXX: We should be able to note that
1726 1.39 bouyer * XXX: that resources are needed here!
1727 1.39 bouyer */
1728 1.39 bouyer return;
1729 1.39 bouyer }
1730 1.39 bouyer /*
1731 1.39 bouyer * scsipi_grow_resources() allocated the resource
1732 1.39 bouyer * for us.
1733 1.39 bouyer */
1734 1.39 bouyer }
1735 1.39 bouyer
1736 1.39 bouyer /*
1737 1.39 bouyer * We have a resource to run this xfer, do it!
1738 1.39 bouyer */
1739 1.39 bouyer TAILQ_REMOVE(&chan->chan_queue, xs, channel_q);
1740 1.39 bouyer
1741 1.39 bouyer /*
1742 1.39 bouyer * If the command is to be tagged, allocate a tag ID
1743 1.39 bouyer * for it.
1744 1.39 bouyer */
1745 1.39 bouyer if (XS_CTL_TAGTYPE(xs) != 0)
1746 1.39 bouyer scsipi_get_tag(xs);
1747 1.39 bouyer else
1748 1.39 bouyer periph->periph_flags |= PERIPH_UNTAG;
1749 1.39 bouyer periph->periph_sent++;
1750 1.39 bouyer splx(s);
1751 1.39 bouyer
1752 1.39 bouyer scsipi_adapter_request(chan, ADAPTER_REQ_RUN_XFER, xs);
1753 1.22 pk }
1754 1.39 bouyer #ifdef DIAGNOSTIC
1755 1.39 bouyer panic("scsipi_run_queue: impossible");
1756 1.39 bouyer #endif
1757 1.2 bouyer }
1758 1.2 bouyer
1759 1.39 bouyer /*
1760 1.39 bouyer * scsipi_execute_xs:
1761 1.39 bouyer *
1762 1.39 bouyer * Begin execution of an xfer, waiting for it to complete, if necessary.
1763 1.39 bouyer */
1764 1.2 bouyer int
1765 1.2 bouyer scsipi_execute_xs(xs)
1766 1.2 bouyer struct scsipi_xfer *xs;
1767 1.2 bouyer {
1768 1.39 bouyer struct scsipi_periph *periph = xs->xs_periph;
1769 1.39 bouyer struct scsipi_channel *chan = periph->periph_channel;
1770 1.39 bouyer int async, poll, retries, error, s;
1771 1.2 bouyer
1772 1.24 thorpej xs->xs_status &= ~XS_STS_DONE;
1773 1.2 bouyer xs->error = XS_NOERROR;
1774 1.2 bouyer xs->resid = xs->datalen;
1775 1.39 bouyer xs->status = SCSI_OK;
1776 1.39 bouyer
1777 1.39 bouyer #ifdef SCSIPI_DEBUG
1778 1.39 bouyer if (xs->xs_periph->periph_dbflags & SCSIPI_DB3) {
1779 1.39 bouyer printf("scsipi_execute_xs: ");
1780 1.39 bouyer show_scsipi_xs(xs);
1781 1.39 bouyer printf("\n");
1782 1.39 bouyer }
1783 1.39 bouyer #endif
1784 1.2 bouyer
1785 1.2 bouyer /*
1786 1.39 bouyer * Deal with command tagging:
1787 1.3 enami *
1788 1.39 bouyer * - If the device's current operating mode doesn't
1789 1.39 bouyer * include tagged queueing, clear the tag mask.
1790 1.3 enami *
1791 1.39 bouyer * - If the device's current operating mode *does*
1792 1.39 bouyer * include tagged queueing, set the tag_type in
1793 1.39 bouyer * the xfer to the appropriate byte for the tag
1794 1.39 bouyer * message.
1795 1.39 bouyer */
1796 1.39 bouyer if ((PERIPH_XFER_MODE(periph) & PERIPH_CAP_TQING) == 0 ||
1797 1.39 bouyer (xs->xs_control & XS_CTL_REQSENSE)) {
1798 1.39 bouyer xs->xs_control &= ~XS_CTL_TAGMASK;
1799 1.39 bouyer xs->xs_tag_type = 0;
1800 1.39 bouyer } else {
1801 1.39 bouyer /*
1802 1.39 bouyer * If the request doesn't specify a tag, give Head
1803 1.39 bouyer * tags to URGENT operations and Ordered tags to
1804 1.39 bouyer * everything else.
1805 1.39 bouyer */
1806 1.39 bouyer if (XS_CTL_TAGTYPE(xs) == 0) {
1807 1.39 bouyer if (xs->xs_control & XS_CTL_URGENT)
1808 1.39 bouyer xs->xs_control |= XS_CTL_HEAD_TAG;
1809 1.39 bouyer else
1810 1.39 bouyer xs->xs_control |= XS_CTL_ORDERED_TAG;
1811 1.39 bouyer }
1812 1.39 bouyer
1813 1.39 bouyer switch (XS_CTL_TAGTYPE(xs)) {
1814 1.39 bouyer case XS_CTL_ORDERED_TAG:
1815 1.39 bouyer xs->xs_tag_type = MSG_ORDERED_Q_TAG;
1816 1.39 bouyer break;
1817 1.39 bouyer
1818 1.39 bouyer case XS_CTL_SIMPLE_TAG:
1819 1.39 bouyer xs->xs_tag_type = MSG_SIMPLE_Q_TAG;
1820 1.39 bouyer break;
1821 1.39 bouyer
1822 1.39 bouyer case XS_CTL_HEAD_TAG:
1823 1.39 bouyer xs->xs_tag_type = MSG_HEAD_OF_Q_TAG;
1824 1.39 bouyer break;
1825 1.39 bouyer
1826 1.39 bouyer default:
1827 1.39 bouyer scsipi_printaddr(periph);
1828 1.39 bouyer printf("invalid tag mask 0x%08x\n",
1829 1.39 bouyer XS_CTL_TAGTYPE(xs));
1830 1.39 bouyer panic("scsipi_execute_xs");
1831 1.39 bouyer }
1832 1.2 bouyer }
1833 1.45 bjh21
1834 1.45 bjh21 /* If the adaptor wants us to poll, poll. */
1835 1.45 bjh21 if (chan->chan_adapter->adapt_flags & SCSIPI_ADAPT_POLL_ONLY)
1836 1.45 bjh21 xs->xs_control |= XS_CTL_POLL;
1837 1.39 bouyer
1838 1.39 bouyer /*
1839 1.39 bouyer * If we don't yet have a completion thread, or we are to poll for
1840 1.39 bouyer * completion, clear the ASYNC flag.
1841 1.39 bouyer */
1842 1.39 bouyer if (chan->chan_thread == NULL || (xs->xs_control & XS_CTL_POLL) != 0)
1843 1.39 bouyer xs->xs_control &= ~XS_CTL_ASYNC;
1844 1.39 bouyer
1845 1.24 thorpej async = (xs->xs_control & XS_CTL_ASYNC);
1846 1.39 bouyer poll = (xs->xs_control & XS_CTL_POLL);
1847 1.39 bouyer retries = xs->xs_retries; /* for polling commands */
1848 1.39 bouyer
1849 1.2 bouyer #ifdef DIAGNOSTIC
1850 1.39 bouyer if (async != 0 && xs->bp == NULL)
1851 1.39 bouyer panic("scsipi_execute_xs: XS_CTL_ASYNC but no buf");
1852 1.2 bouyer #endif
1853 1.39 bouyer
1854 1.39 bouyer /*
1855 1.39 bouyer * Enqueue the transfer. If we're not polling for completion, this
1856 1.39 bouyer * should ALWAYS return `no error'.
1857 1.39 bouyer */
1858 1.39 bouyer try_again:
1859 1.39 bouyer error = scsipi_enqueue(xs);
1860 1.39 bouyer if (error) {
1861 1.39 bouyer if (poll == 0) {
1862 1.39 bouyer scsipi_printaddr(periph);
1863 1.39 bouyer printf("not polling, but enqueue failed with %d\n",
1864 1.39 bouyer error);
1865 1.39 bouyer panic("scsipi_execute_xs");
1866 1.39 bouyer }
1867 1.39 bouyer
1868 1.39 bouyer scsipi_printaddr(periph);
1869 1.39 bouyer printf("failed to enqueue polling command");
1870 1.39 bouyer if (retries != 0) {
1871 1.39 bouyer printf(", retrying...\n");
1872 1.39 bouyer delay(1000000);
1873 1.39 bouyer retries--;
1874 1.39 bouyer goto try_again;
1875 1.39 bouyer }
1876 1.39 bouyer printf("\n");
1877 1.39 bouyer goto free_xs;
1878 1.39 bouyer }
1879 1.39 bouyer
1880 1.39 bouyer restarted:
1881 1.39 bouyer scsipi_run_queue(chan);
1882 1.39 bouyer
1883 1.39 bouyer /*
1884 1.39 bouyer * The xfer is enqueued, and possibly running. If it's to be
1885 1.39 bouyer * completed asynchronously, just return now.
1886 1.39 bouyer */
1887 1.39 bouyer if (async)
1888 1.39 bouyer return (EJUSTRETURN);
1889 1.39 bouyer
1890 1.39 bouyer /*
1891 1.39 bouyer * Not an asynchronous command; wait for it to complete.
1892 1.39 bouyer */
1893 1.39 bouyer s = splbio();
1894 1.39 bouyer while ((xs->xs_status & XS_STS_DONE) == 0) {
1895 1.39 bouyer if (poll) {
1896 1.39 bouyer scsipi_printaddr(periph);
1897 1.39 bouyer printf("polling command not done\n");
1898 1.39 bouyer panic("scsipi_execute_xs");
1899 1.39 bouyer }
1900 1.39 bouyer (void) tsleep(xs, PRIBIO, "xscmd", 0);
1901 1.39 bouyer }
1902 1.39 bouyer splx(s);
1903 1.39 bouyer
1904 1.39 bouyer /*
1905 1.39 bouyer * Command is complete. scsipi_done() has awakened us to perform
1906 1.39 bouyer * the error handling.
1907 1.39 bouyer */
1908 1.39 bouyer error = scsipi_complete(xs);
1909 1.39 bouyer if (error == ERESTART)
1910 1.39 bouyer goto restarted;
1911 1.39 bouyer
1912 1.39 bouyer /*
1913 1.39 bouyer * Command completed successfully or fatal error occurred. Fall
1914 1.39 bouyer * into....
1915 1.39 bouyer */
1916 1.39 bouyer free_xs:
1917 1.39 bouyer s = splbio();
1918 1.39 bouyer scsipi_put_xs(xs);
1919 1.39 bouyer splx(s);
1920 1.39 bouyer
1921 1.39 bouyer /*
1922 1.39 bouyer * Kick the queue, keep it running in case it stopped for some
1923 1.39 bouyer * reason.
1924 1.39 bouyer */
1925 1.39 bouyer scsipi_run_queue(chan);
1926 1.39 bouyer
1927 1.39 bouyer return (error);
1928 1.39 bouyer }
1929 1.39 bouyer
1930 1.39 bouyer /*
1931 1.39 bouyer * scsipi_completion_thread:
1932 1.39 bouyer *
1933 1.39 bouyer * This is the completion thread. We wait for errors on
1934 1.39 bouyer * asynchronous xfers, and perform the error handling
1935 1.39 bouyer * function, restarting the command, if necessary.
1936 1.39 bouyer */
1937 1.39 bouyer void
1938 1.39 bouyer scsipi_completion_thread(arg)
1939 1.39 bouyer void *arg;
1940 1.39 bouyer {
1941 1.39 bouyer struct scsipi_channel *chan = arg;
1942 1.39 bouyer struct scsipi_xfer *xs;
1943 1.39 bouyer int s;
1944 1.39 bouyer
1945 1.39 bouyer for (;;) {
1946 1.11 scottr s = splbio();
1947 1.39 bouyer xs = TAILQ_FIRST(&chan->chan_complete);
1948 1.39 bouyer if (xs == NULL &&
1949 1.51 bouyer (chan->chan_flags &
1950 1.51 bouyer (SCSIPI_CHAN_SHUTDOWN | SCSIPI_CHAN_CALLBACK)) == 0) {
1951 1.39 bouyer (void) tsleep(&chan->chan_complete, PRIBIO,
1952 1.39 bouyer "sccomp", 0);
1953 1.39 bouyer splx(s);
1954 1.39 bouyer continue;
1955 1.39 bouyer }
1956 1.51 bouyer if (chan->chan_flags & SCSIPI_CHAN_CALLBACK) {
1957 1.51 bouyer /* call chan_callback from thread context */
1958 1.51 bouyer chan->chan_flags &= ~SCSIPI_CHAN_CALLBACK;
1959 1.51 bouyer chan->chan_callback(chan, chan->chan_callback_arg);
1960 1.51 bouyer splx(s);
1961 1.51 bouyer continue;
1962 1.51 bouyer }
1963 1.39 bouyer if (chan->chan_flags & SCSIPI_CHAN_SHUTDOWN) {
1964 1.39 bouyer splx(s);
1965 1.39 bouyer break;
1966 1.39 bouyer }
1967 1.51 bouyer if (xs) {
1968 1.51 bouyer TAILQ_REMOVE(&chan->chan_complete, xs, channel_q);
1969 1.51 bouyer splx(s);
1970 1.2 bouyer
1971 1.51 bouyer /*
1972 1.51 bouyer * Have an xfer with an error; process it.
1973 1.51 bouyer */
1974 1.51 bouyer (void) scsipi_complete(xs);
1975 1.2 bouyer
1976 1.51 bouyer /*
1977 1.51 bouyer * Kick the queue; keep it running if it was stopped
1978 1.51 bouyer * for some reason.
1979 1.51 bouyer */
1980 1.51 bouyer scsipi_run_queue(chan);
1981 1.51 bouyer } else {
1982 1.51 bouyer splx(s);
1983 1.51 bouyer }
1984 1.2 bouyer }
1985 1.2 bouyer
1986 1.39 bouyer chan->chan_thread = NULL;
1987 1.39 bouyer
1988 1.39 bouyer /* In case parent is waiting for us to exit. */
1989 1.39 bouyer wakeup(&chan->chan_thread);
1990 1.39 bouyer
1991 1.39 bouyer kthread_exit(0);
1992 1.2 bouyer }
1993 1.2 bouyer
1994 1.39 bouyer /*
1995 1.39 bouyer * scsipi_create_completion_thread:
1996 1.39 bouyer *
1997 1.39 bouyer * Callback to actually create the completion thread.
1998 1.39 bouyer */
1999 1.39 bouyer void
2000 1.39 bouyer scsipi_create_completion_thread(arg)
2001 1.39 bouyer void *arg;
2002 1.2 bouyer {
2003 1.39 bouyer struct scsipi_channel *chan = arg;
2004 1.39 bouyer struct scsipi_adapter *adapt = chan->chan_adapter;
2005 1.2 bouyer
2006 1.39 bouyer if (kthread_create1(scsipi_completion_thread, chan,
2007 1.39 bouyer &chan->chan_thread, "%s:%d", adapt->adapt_dev->dv_xname,
2008 1.39 bouyer chan->chan_channel)) {
2009 1.39 bouyer printf("%s: unable to create completion thread for "
2010 1.39 bouyer "channel %d\n", adapt->adapt_dev->dv_xname,
2011 1.39 bouyer chan->chan_channel);
2012 1.39 bouyer panic("scsipi_create_completion_thread");
2013 1.39 bouyer }
2014 1.39 bouyer }
2015 1.2 bouyer
2016 1.39 bouyer /*
2017 1.51 bouyer * scsipi_thread_call_callback:
2018 1.51 bouyer *
2019 1.51 bouyer * request to call a callback from the completion thread
2020 1.51 bouyer */
2021 1.51 bouyer int
2022 1.51 bouyer scsipi_thread_call_callback(chan, callback, arg)
2023 1.51 bouyer struct scsipi_channel *chan;
2024 1.51 bouyer void (*callback) __P((struct scsipi_channel *, void *));
2025 1.51 bouyer void *arg;
2026 1.51 bouyer {
2027 1.51 bouyer int s;
2028 1.51 bouyer
2029 1.51 bouyer s = splbio();
2030 1.51 bouyer if (chan->chan_flags & SCSIPI_CHAN_CALLBACK) {
2031 1.51 bouyer splx(s);
2032 1.51 bouyer return EBUSY;
2033 1.51 bouyer }
2034 1.51 bouyer scsipi_channel_freeze(chan, 1);
2035 1.51 bouyer chan->chan_callback = callback;
2036 1.51 bouyer chan->chan_callback_arg = arg;
2037 1.51 bouyer chan->chan_flags |= SCSIPI_CHAN_CALLBACK;
2038 1.51 bouyer wakeup(&chan->chan_complete);
2039 1.51 bouyer splx(s);
2040 1.51 bouyer return(0);
2041 1.51 bouyer }
2042 1.51 bouyer
2043 1.51 bouyer /*
2044 1.39 bouyer * scsipi_async_event:
2045 1.39 bouyer *
2046 1.39 bouyer * Handle an asynchronous event from an adapter.
2047 1.39 bouyer */
2048 1.39 bouyer void
2049 1.39 bouyer scsipi_async_event(chan, event, arg)
2050 1.39 bouyer struct scsipi_channel *chan;
2051 1.39 bouyer scsipi_async_event_t event;
2052 1.39 bouyer void *arg;
2053 1.39 bouyer {
2054 1.39 bouyer int s;
2055 1.39 bouyer
2056 1.39 bouyer s = splbio();
2057 1.39 bouyer switch (event) {
2058 1.39 bouyer case ASYNC_EVENT_MAX_OPENINGS:
2059 1.39 bouyer scsipi_async_event_max_openings(chan,
2060 1.39 bouyer (struct scsipi_max_openings *)arg);
2061 1.2 bouyer break;
2062 1.2 bouyer
2063 1.39 bouyer case ASYNC_EVENT_XFER_MODE:
2064 1.39 bouyer scsipi_async_event_xfer_mode(chan,
2065 1.39 bouyer (struct scsipi_xfer_mode *)arg);
2066 1.39 bouyer break;
2067 1.39 bouyer case ASYNC_EVENT_RESET:
2068 1.39 bouyer scsipi_async_event_channel_reset(chan);
2069 1.2 bouyer break;
2070 1.39 bouyer }
2071 1.39 bouyer splx(s);
2072 1.39 bouyer }
2073 1.39 bouyer
2074 1.39 bouyer /*
2075 1.39 bouyer * scsipi_print_xfer_mode:
2076 1.39 bouyer *
2077 1.39 bouyer * Print a periph's capabilities.
2078 1.39 bouyer */
2079 1.39 bouyer void
2080 1.39 bouyer scsipi_print_xfer_mode(periph)
2081 1.39 bouyer struct scsipi_periph *periph;
2082 1.39 bouyer {
2083 1.39 bouyer int period, freq, speed, mbs;
2084 1.39 bouyer
2085 1.39 bouyer if ((periph->periph_flags & PERIPH_MODE_VALID) == 0)
2086 1.39 bouyer return;
2087 1.2 bouyer
2088 1.39 bouyer printf("%s: ", periph->periph_dev->dv_xname);
2089 1.39 bouyer if (periph->periph_mode & PERIPH_CAP_SYNC) {
2090 1.39 bouyer period = scsipi_sync_factor_to_period(periph->periph_period);
2091 1.43 enami printf("sync (%d.%dns offset %d)",
2092 1.39 bouyer period / 10, period % 10, periph->periph_offset);
2093 1.39 bouyer } else
2094 1.43 enami printf("async");
2095 1.39 bouyer
2096 1.39 bouyer if (periph->periph_mode & PERIPH_CAP_WIDE32)
2097 1.39 bouyer printf(", 32-bit");
2098 1.39 bouyer else if (periph->periph_mode & PERIPH_CAP_WIDE16)
2099 1.39 bouyer printf(", 16-bit");
2100 1.39 bouyer else
2101 1.39 bouyer printf(", 8-bit");
2102 1.39 bouyer
2103 1.39 bouyer if (periph->periph_mode & PERIPH_CAP_SYNC) {
2104 1.39 bouyer freq = scsipi_sync_factor_to_freq(periph->periph_period);
2105 1.39 bouyer speed = freq;
2106 1.39 bouyer if (periph->periph_mode & PERIPH_CAP_WIDE32)
2107 1.39 bouyer speed *= 4;
2108 1.39 bouyer else if (periph->periph_mode & PERIPH_CAP_WIDE16)
2109 1.39 bouyer speed *= 2;
2110 1.39 bouyer mbs = speed / 1000;
2111 1.39 bouyer if (mbs > 0)
2112 1.39 bouyer printf(" (%d.%03dMB/s)", mbs, speed % 1000);
2113 1.39 bouyer else
2114 1.39 bouyer printf(" (%dKB/s)", speed % 1000);
2115 1.39 bouyer }
2116 1.39 bouyer
2117 1.39 bouyer printf(" transfers");
2118 1.39 bouyer
2119 1.39 bouyer if (periph->periph_mode & PERIPH_CAP_TQING)
2120 1.39 bouyer printf(", tagged queueing");
2121 1.39 bouyer
2122 1.39 bouyer printf("\n");
2123 1.39 bouyer }
2124 1.39 bouyer
2125 1.39 bouyer /*
2126 1.39 bouyer * scsipi_async_event_max_openings:
2127 1.39 bouyer *
2128 1.39 bouyer * Update the maximum number of outstanding commands a
2129 1.39 bouyer * device may have.
2130 1.39 bouyer */
2131 1.39 bouyer void
2132 1.39 bouyer scsipi_async_event_max_openings(chan, mo)
2133 1.39 bouyer struct scsipi_channel *chan;
2134 1.39 bouyer struct scsipi_max_openings *mo;
2135 1.39 bouyer {
2136 1.39 bouyer struct scsipi_periph *periph;
2137 1.39 bouyer int minlun, maxlun;
2138 1.39 bouyer
2139 1.39 bouyer if (mo->mo_lun == -1) {
2140 1.39 bouyer /*
2141 1.39 bouyer * Wildcarded; apply it to all LUNs.
2142 1.39 bouyer */
2143 1.39 bouyer minlun = 0;
2144 1.39 bouyer maxlun = chan->chan_nluns - 1;
2145 1.39 bouyer } else
2146 1.39 bouyer minlun = maxlun = mo->mo_lun;
2147 1.39 bouyer
2148 1.39 bouyer for (; minlun <= maxlun; minlun++) {
2149 1.39 bouyer periph = scsipi_lookup_periph(chan, mo->mo_target, minlun);
2150 1.39 bouyer if (periph == NULL)
2151 1.39 bouyer continue;
2152 1.39 bouyer
2153 1.39 bouyer if (mo->mo_openings < periph->periph_openings)
2154 1.39 bouyer periph->periph_openings = mo->mo_openings;
2155 1.39 bouyer else if (mo->mo_openings > periph->periph_openings &&
2156 1.39 bouyer (periph->periph_flags & PERIPH_GROW_OPENINGS) != 0)
2157 1.39 bouyer periph->periph_openings = mo->mo_openings;
2158 1.39 bouyer }
2159 1.39 bouyer }
2160 1.39 bouyer
2161 1.39 bouyer /*
2162 1.39 bouyer * scsipi_async_event_xfer_mode:
2163 1.39 bouyer *
2164 1.39 bouyer * Update the xfer mode for all periphs sharing the
2165 1.39 bouyer * specified I_T Nexus.
2166 1.39 bouyer */
2167 1.39 bouyer void
2168 1.39 bouyer scsipi_async_event_xfer_mode(chan, xm)
2169 1.39 bouyer struct scsipi_channel *chan;
2170 1.39 bouyer struct scsipi_xfer_mode *xm;
2171 1.39 bouyer {
2172 1.39 bouyer struct scsipi_periph *periph;
2173 1.39 bouyer int lun, announce, mode, period, offset;
2174 1.39 bouyer
2175 1.39 bouyer for (lun = 0; lun < chan->chan_nluns; lun++) {
2176 1.39 bouyer periph = scsipi_lookup_periph(chan, xm->xm_target, lun);
2177 1.39 bouyer if (periph == NULL)
2178 1.39 bouyer continue;
2179 1.39 bouyer announce = 0;
2180 1.39 bouyer
2181 1.39 bouyer /*
2182 1.39 bouyer * Clamp the xfer mode down to this periph's capabilities.
2183 1.39 bouyer */
2184 1.39 bouyer mode = xm->xm_mode & periph->periph_cap;
2185 1.39 bouyer if (mode & PERIPH_CAP_SYNC) {
2186 1.39 bouyer period = xm->xm_period;
2187 1.39 bouyer offset = xm->xm_offset;
2188 1.39 bouyer } else {
2189 1.39 bouyer period = 0;
2190 1.39 bouyer offset = 0;
2191 1.2 bouyer }
2192 1.2 bouyer
2193 1.39 bouyer /*
2194 1.39 bouyer * If we do not have a valid xfer mode yet, or the parameters
2195 1.39 bouyer * are different, announce them.
2196 1.39 bouyer */
2197 1.39 bouyer if ((periph->periph_flags & PERIPH_MODE_VALID) == 0 ||
2198 1.39 bouyer periph->periph_mode != mode ||
2199 1.39 bouyer periph->periph_period != period ||
2200 1.39 bouyer periph->periph_offset != offset)
2201 1.39 bouyer announce = 1;
2202 1.39 bouyer
2203 1.39 bouyer periph->periph_mode = mode;
2204 1.39 bouyer periph->periph_period = period;
2205 1.39 bouyer periph->periph_offset = offset;
2206 1.39 bouyer periph->periph_flags |= PERIPH_MODE_VALID;
2207 1.39 bouyer
2208 1.39 bouyer if (announce)
2209 1.39 bouyer scsipi_print_xfer_mode(periph);
2210 1.39 bouyer }
2211 1.39 bouyer }
2212 1.39 bouyer
2213 1.39 bouyer /*
2214 1.39 bouyer * scsipi_set_xfer_mode:
2215 1.39 bouyer *
2216 1.39 bouyer * Set the xfer mode for the specified I_T Nexus.
2217 1.39 bouyer */
2218 1.39 bouyer void
2219 1.39 bouyer scsipi_set_xfer_mode(chan, target, immed)
2220 1.39 bouyer struct scsipi_channel *chan;
2221 1.39 bouyer int target, immed;
2222 1.39 bouyer {
2223 1.39 bouyer struct scsipi_xfer_mode xm;
2224 1.39 bouyer struct scsipi_periph *itperiph;
2225 1.39 bouyer int lun, s;
2226 1.39 bouyer
2227 1.39 bouyer /*
2228 1.39 bouyer * Go to the minimal xfer mode.
2229 1.39 bouyer */
2230 1.39 bouyer xm.xm_target = target;
2231 1.39 bouyer xm.xm_mode = 0;
2232 1.39 bouyer xm.xm_period = 0; /* ignored */
2233 1.39 bouyer xm.xm_offset = 0; /* ignored */
2234 1.39 bouyer
2235 1.39 bouyer /*
2236 1.39 bouyer * Find the first LUN we know about on this I_T Nexus.
2237 1.39 bouyer */
2238 1.39 bouyer for (lun = 0; lun < chan->chan_nluns; lun++) {
2239 1.39 bouyer itperiph = scsipi_lookup_periph(chan, target, lun);
2240 1.39 bouyer if (itperiph != NULL)
2241 1.39 bouyer break;
2242 1.39 bouyer }
2243 1.49 bouyer if (itperiph != NULL) {
2244 1.39 bouyer xm.xm_mode = itperiph->periph_cap;
2245 1.49 bouyer /*
2246 1.49 bouyer * Now issue the request to the adapter.
2247 1.49 bouyer */
2248 1.49 bouyer s = splbio();
2249 1.49 bouyer scsipi_adapter_request(chan, ADAPTER_REQ_SET_XFER_MODE, &xm);
2250 1.49 bouyer splx(s);
2251 1.49 bouyer /*
2252 1.49 bouyer * If we want this to happen immediately, issue a dummy
2253 1.49 bouyer * command, since most adapters can't really negotiate unless
2254 1.49 bouyer * they're executing a job.
2255 1.49 bouyer */
2256 1.49 bouyer if (immed != 0) {
2257 1.49 bouyer (void) scsipi_test_unit_ready(itperiph,
2258 1.49 bouyer XS_CTL_DISCOVERY | XS_CTL_IGNORE_ILLEGAL_REQUEST |
2259 1.49 bouyer XS_CTL_IGNORE_NOT_READY |
2260 1.49 bouyer XS_CTL_IGNORE_MEDIA_CHANGE);
2261 1.49 bouyer }
2262 1.2 bouyer }
2263 1.39 bouyer }
2264 1.2 bouyer
2265 1.39 bouyer /*
2266 1.39 bouyer * scsipi_channel_reset:
2267 1.39 bouyer *
2268 1.39 bouyer * handle scsi bus reset
2269 1.39 bouyer * called at splbio
2270 1.39 bouyer */
2271 1.39 bouyer void
2272 1.39 bouyer scsipi_async_event_channel_reset(chan)
2273 1.39 bouyer struct scsipi_channel *chan;
2274 1.39 bouyer {
2275 1.39 bouyer struct scsipi_xfer *xs, *xs_next;
2276 1.39 bouyer struct scsipi_periph *periph;
2277 1.39 bouyer int target, lun;
2278 1.39 bouyer
2279 1.39 bouyer /*
2280 1.39 bouyer * Channel has been reset. Also mark as reset pending REQUEST_SENSE
2281 1.39 bouyer * commands; as the sense is not available any more.
2282 1.39 bouyer * can't call scsipi_done() from here, as the command has not been
2283 1.39 bouyer * sent to the adapter yet (this would corrupt accounting).
2284 1.39 bouyer */
2285 1.39 bouyer
2286 1.39 bouyer for (xs = TAILQ_FIRST(&chan->chan_queue); xs != NULL; xs = xs_next) {
2287 1.39 bouyer xs_next = TAILQ_NEXT(xs, channel_q);
2288 1.39 bouyer if (xs->xs_control & XS_CTL_REQSENSE) {
2289 1.39 bouyer TAILQ_REMOVE(&chan->chan_queue, xs, channel_q);
2290 1.39 bouyer xs->error = XS_RESET;
2291 1.39 bouyer if ((xs->xs_control & XS_CTL_ASYNC) != 0)
2292 1.39 bouyer TAILQ_INSERT_TAIL(&chan->chan_complete, xs,
2293 1.39 bouyer channel_q);
2294 1.39 bouyer }
2295 1.39 bouyer }
2296 1.39 bouyer wakeup(&chan->chan_complete);
2297 1.39 bouyer /* Catch xs with pending sense which may not have a REQSENSE xs yet */
2298 1.39 bouyer for (target = 0; target < chan->chan_ntargets; target++) {
2299 1.39 bouyer if (target == chan->chan_id)
2300 1.39 bouyer continue;
2301 1.39 bouyer for (lun = 0; lun < chan->chan_nluns; lun++) {
2302 1.39 bouyer periph = chan->chan_periphs[target][lun];
2303 1.39 bouyer if (periph) {
2304 1.39 bouyer xs = periph->periph_xscheck;
2305 1.39 bouyer if (xs)
2306 1.39 bouyer xs->error = XS_RESET;
2307 1.39 bouyer }
2308 1.39 bouyer }
2309 1.39 bouyer }
2310 1.2 bouyer }
2311 1.2 bouyer
2312 1.51 bouyer /*
2313 1.51 bouyer * scsipi_target_detach:
2314 1.51 bouyer *
2315 1.51 bouyer * detach all periph associated with a I_T
2316 1.51 bouyer * must be called from valid thread context
2317 1.51 bouyer */
2318 1.51 bouyer int
2319 1.51 bouyer scsipi_target_detach(chan, target, lun, flags)
2320 1.51 bouyer struct scsipi_channel *chan;
2321 1.51 bouyer int target, lun;
2322 1.51 bouyer int flags;
2323 1.51 bouyer {
2324 1.51 bouyer struct scsipi_periph *periph;
2325 1.51 bouyer int ctarget, mintarget, maxtarget;
2326 1.51 bouyer int clun, minlun, maxlun;
2327 1.51 bouyer int error;
2328 1.51 bouyer
2329 1.51 bouyer if (target == -1) {
2330 1.51 bouyer mintarget = 0;
2331 1.51 bouyer maxtarget = chan->chan_ntargets;
2332 1.51 bouyer } else {
2333 1.51 bouyer if (target == chan->chan_id)
2334 1.51 bouyer return EINVAL;
2335 1.51 bouyer if (target < 0 || target >= chan->chan_ntargets)
2336 1.51 bouyer return EINVAL;
2337 1.51 bouyer mintarget = target;
2338 1.51 bouyer maxtarget = target + 1;
2339 1.51 bouyer }
2340 1.51 bouyer
2341 1.51 bouyer if (lun == -1) {
2342 1.51 bouyer minlun = 0;
2343 1.51 bouyer maxlun = chan->chan_nluns;
2344 1.51 bouyer } else {
2345 1.51 bouyer if (lun < 0 || lun >= chan->chan_nluns)
2346 1.51 bouyer return EINVAL;
2347 1.51 bouyer minlun = lun;
2348 1.51 bouyer maxlun = lun + 1;
2349 1.51 bouyer }
2350 1.51 bouyer
2351 1.52 yamt for (ctarget = mintarget; ctarget < maxtarget; ctarget++) {
2352 1.51 bouyer if (ctarget == chan->chan_id)
2353 1.51 bouyer continue;
2354 1.51 bouyer
2355 1.51 bouyer for (clun = minlun; clun < maxlun; clun++) {
2356 1.52 yamt periph = scsipi_lookup_periph(chan, ctarget, clun);
2357 1.51 bouyer if (periph == NULL)
2358 1.51 bouyer continue;
2359 1.51 bouyer error = config_detach(periph->periph_dev, flags);
2360 1.51 bouyer if (error)
2361 1.51 bouyer return (error);
2362 1.51 bouyer scsipi_remove_periph(chan, periph);
2363 1.51 bouyer free(periph, M_DEVBUF);
2364 1.51 bouyer }
2365 1.51 bouyer }
2366 1.51 bouyer return(0);
2367 1.51 bouyer }
2368 1.39 bouyer
2369 1.14 thorpej /*
2370 1.39 bouyer * scsipi_adapter_addref:
2371 1.39 bouyer *
2372 1.39 bouyer * Add a reference to the adapter pointed to by the provided
2373 1.39 bouyer * link, enabling the adapter if necessary.
2374 1.14 thorpej */
2375 1.14 thorpej int
2376 1.39 bouyer scsipi_adapter_addref(adapt)
2377 1.39 bouyer struct scsipi_adapter *adapt;
2378 1.14 thorpej {
2379 1.14 thorpej int s, error = 0;
2380 1.14 thorpej
2381 1.14 thorpej s = splbio();
2382 1.39 bouyer if (adapt->adapt_refcnt++ == 0 && adapt->adapt_enable != NULL) {
2383 1.39 bouyer error = (*adapt->adapt_enable)(adapt->adapt_dev, 1);
2384 1.14 thorpej if (error)
2385 1.39 bouyer adapt->adapt_refcnt--;
2386 1.14 thorpej }
2387 1.14 thorpej splx(s);
2388 1.14 thorpej return (error);
2389 1.14 thorpej }
2390 1.14 thorpej
2391 1.14 thorpej /*
2392 1.39 bouyer * scsipi_adapter_delref:
2393 1.39 bouyer *
2394 1.39 bouyer * Delete a reference to the adapter pointed to by the provided
2395 1.39 bouyer * link, disabling the adapter if possible.
2396 1.14 thorpej */
2397 1.14 thorpej void
2398 1.39 bouyer scsipi_adapter_delref(adapt)
2399 1.39 bouyer struct scsipi_adapter *adapt;
2400 1.14 thorpej {
2401 1.14 thorpej int s;
2402 1.14 thorpej
2403 1.14 thorpej s = splbio();
2404 1.39 bouyer if (adapt->adapt_refcnt-- == 1 && adapt->adapt_enable != NULL)
2405 1.39 bouyer (void) (*adapt->adapt_enable)(adapt->adapt_dev, 0);
2406 1.14 thorpej splx(s);
2407 1.14 thorpej }
2408 1.14 thorpej
2409 1.39 bouyer struct scsipi_syncparam {
2410 1.39 bouyer int ss_factor;
2411 1.39 bouyer int ss_period; /* ns * 10 */
2412 1.39 bouyer } scsipi_syncparams[] = {
2413 1.39 bouyer { 0x0a, 250 },
2414 1.39 bouyer { 0x0b, 303 },
2415 1.39 bouyer { 0x0c, 500 },
2416 1.39 bouyer };
2417 1.39 bouyer const int scsipi_nsyncparams =
2418 1.39 bouyer sizeof(scsipi_syncparams) / sizeof(scsipi_syncparams[0]);
2419 1.39 bouyer
2420 1.39 bouyer int
2421 1.39 bouyer scsipi_sync_period_to_factor(period)
2422 1.39 bouyer int period; /* ns * 10 */
2423 1.39 bouyer {
2424 1.39 bouyer int i;
2425 1.39 bouyer
2426 1.39 bouyer for (i = 0; i < scsipi_nsyncparams; i++) {
2427 1.39 bouyer if (period <= scsipi_syncparams[i].ss_period)
2428 1.39 bouyer return (scsipi_syncparams[i].ss_factor);
2429 1.39 bouyer }
2430 1.39 bouyer
2431 1.39 bouyer return ((period / 10) / 4);
2432 1.39 bouyer }
2433 1.39 bouyer
2434 1.39 bouyer int
2435 1.39 bouyer scsipi_sync_factor_to_period(factor)
2436 1.39 bouyer int factor;
2437 1.39 bouyer {
2438 1.39 bouyer int i;
2439 1.39 bouyer
2440 1.39 bouyer for (i = 0; i < scsipi_nsyncparams; i++) {
2441 1.39 bouyer if (factor == scsipi_syncparams[i].ss_factor)
2442 1.39 bouyer return (scsipi_syncparams[i].ss_period);
2443 1.39 bouyer }
2444 1.39 bouyer
2445 1.39 bouyer return ((factor * 4) * 10);
2446 1.39 bouyer }
2447 1.39 bouyer
2448 1.39 bouyer int
2449 1.39 bouyer scsipi_sync_factor_to_freq(factor)
2450 1.39 bouyer int factor;
2451 1.39 bouyer {
2452 1.39 bouyer int i;
2453 1.39 bouyer
2454 1.39 bouyer for (i = 0; i < scsipi_nsyncparams; i++) {
2455 1.39 bouyer if (factor == scsipi_syncparams[i].ss_factor)
2456 1.39 bouyer return (10000000 / scsipi_syncparams[i].ss_period);
2457 1.39 bouyer }
2458 1.39 bouyer
2459 1.39 bouyer return (10000000 / ((factor * 4) * 10));
2460 1.39 bouyer }
2461 1.39 bouyer
2462 1.39 bouyer #ifdef SCSIPI_DEBUG
2463 1.2 bouyer /*
2464 1.2 bouyer * Given a scsipi_xfer, dump the request, in all it's glory
2465 1.2 bouyer */
2466 1.2 bouyer void
2467 1.2 bouyer show_scsipi_xs(xs)
2468 1.2 bouyer struct scsipi_xfer *xs;
2469 1.2 bouyer {
2470 1.3 enami
2471 1.2 bouyer printf("xs(%p): ", xs);
2472 1.24 thorpej printf("xs_control(0x%08x)", xs->xs_control);
2473 1.24 thorpej printf("xs_status(0x%08x)", xs->xs_status);
2474 1.39 bouyer printf("periph(%p)", xs->xs_periph);
2475 1.39 bouyer printf("retr(0x%x)", xs->xs_retries);
2476 1.2 bouyer printf("timo(0x%x)", xs->timeout);
2477 1.2 bouyer printf("cmd(%p)", xs->cmd);
2478 1.2 bouyer printf("len(0x%x)", xs->cmdlen);
2479 1.2 bouyer printf("data(%p)", xs->data);
2480 1.2 bouyer printf("len(0x%x)", xs->datalen);
2481 1.2 bouyer printf("res(0x%x)", xs->resid);
2482 1.2 bouyer printf("err(0x%x)", xs->error);
2483 1.2 bouyer printf("bp(%p)", xs->bp);
2484 1.2 bouyer show_scsipi_cmd(xs);
2485 1.2 bouyer }
2486 1.2 bouyer
2487 1.2 bouyer void
2488 1.2 bouyer show_scsipi_cmd(xs)
2489 1.2 bouyer struct scsipi_xfer *xs;
2490 1.2 bouyer {
2491 1.2 bouyer u_char *b = (u_char *) xs->cmd;
2492 1.3 enami int i = 0;
2493 1.2 bouyer
2494 1.39 bouyer scsipi_printaddr(xs->xs_periph);
2495 1.39 bouyer printf(" command: ");
2496 1.2 bouyer
2497 1.24 thorpej if ((xs->xs_control & XS_CTL_RESET) == 0) {
2498 1.2 bouyer while (i < xs->cmdlen) {
2499 1.2 bouyer if (i)
2500 1.2 bouyer printf(",");
2501 1.2 bouyer printf("0x%x", b[i++]);
2502 1.2 bouyer }
2503 1.2 bouyer printf("-[%d bytes]\n", xs->datalen);
2504 1.2 bouyer if (xs->datalen)
2505 1.2 bouyer show_mem(xs->data, min(64, xs->datalen));
2506 1.2 bouyer } else
2507 1.2 bouyer printf("-RESET-\n");
2508 1.2 bouyer }
2509 1.2 bouyer
2510 1.2 bouyer void
2511 1.2 bouyer show_mem(address, num)
2512 1.2 bouyer u_char *address;
2513 1.2 bouyer int num;
2514 1.2 bouyer {
2515 1.2 bouyer int x;
2516 1.2 bouyer
2517 1.2 bouyer printf("------------------------------");
2518 1.2 bouyer for (x = 0; x < num; x++) {
2519 1.2 bouyer if ((x % 16) == 0)
2520 1.2 bouyer printf("\n%03d: ", x);
2521 1.2 bouyer printf("%02x ", *address++);
2522 1.2 bouyer }
2523 1.2 bouyer printf("\n------------------------------\n");
2524 1.2 bouyer }
2525 1.39 bouyer #endif /* SCSIPI_DEBUG */
2526