xref: /freebsd/sys/cam/scsi/scsi_pt.c (revision f856af0466c076beef4ea9b15d088e1119a945b8)
1 /*-
2  * Implementation of SCSI Processor Target Peripheral driver for CAM.
3  *
4  * Copyright (c) 1998 Justin T. Gibbs.
5  * All rights reserved.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  * 1. Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions, and the following disclaimer,
12  *    without modification, immediately at the beginning of the file.
13  * 2. The name of the author may not be used to endorse or promote products
14  *    derived from this software without specific prior written permission.
15  *
16  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
17  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19  * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR
20  * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26  * SUCH DAMAGE.
27  */
28 
29 #include <sys/cdefs.h>
30 __FBSDID("$FreeBSD$");
31 
32 #include <sys/param.h>
33 #include <sys/queue.h>
34 #include <sys/systm.h>
35 #include <sys/kernel.h>
36 #include <sys/types.h>
37 #include <sys/bio.h>
38 #include <sys/devicestat.h>
39 #include <sys/malloc.h>
40 #include <sys/conf.h>
41 #include <sys/ptio.h>
42 
43 #include <cam/cam.h>
44 #include <cam/cam_ccb.h>
45 #include <cam/cam_periph.h>
46 #include <cam/cam_xpt_periph.h>
47 #include <cam/cam_debug.h>
48 
49 #include <cam/scsi/scsi_all.h>
50 #include <cam/scsi/scsi_message.h>
51 #include <cam/scsi/scsi_pt.h>
52 
53 #include "opt_pt.h"
54 
55 typedef enum {
56 	PT_STATE_PROBE,
57 	PT_STATE_NORMAL
58 } pt_state;
59 
60 typedef enum {
61 	PT_FLAG_NONE		= 0x00,
62 	PT_FLAG_OPEN		= 0x01,
63 	PT_FLAG_DEVICE_INVALID	= 0x02,
64 	PT_FLAG_RETRY_UA	= 0x04
65 } pt_flags;
66 
67 typedef enum {
68 	PT_CCB_BUFFER_IO	= 0x01,
69 	PT_CCB_WAITING		= 0x02,
70 	PT_CCB_RETRY_UA		= 0x04,
71 	PT_CCB_BUFFER_IO_UA	= PT_CCB_BUFFER_IO|PT_CCB_RETRY_UA
72 } pt_ccb_state;
73 
74 /* Offsets into our private area for storing information */
75 #define ccb_state	ppriv_field0
76 #define ccb_bp		ppriv_ptr1
77 
78 struct pt_softc {
79 	struct	 bio_queue_head bio_queue;
80 	struct	 devstat *device_stats;
81 	LIST_HEAD(, ccb_hdr) pending_ccbs;
82 	pt_state state;
83 	pt_flags flags;
84 	union	 ccb saved_ccb;
85 	int	 io_timeout;
86 	struct cdev *dev;
87 };
88 
89 static	d_open_t	ptopen;
90 static	d_close_t	ptclose;
91 static	d_strategy_t	ptstrategy;
92 static	periph_init_t	ptinit;
93 static	void		ptasync(void *callback_arg, u_int32_t code,
94 				struct cam_path *path, void *arg);
95 static	periph_ctor_t	ptctor;
96 static	periph_oninv_t	ptoninvalidate;
97 static	periph_dtor_t	ptdtor;
98 static	periph_start_t	ptstart;
99 static	void		ptdone(struct cam_periph *periph,
100 			       union ccb *done_ccb);
101 static	d_ioctl_t	ptioctl;
102 static  int		pterror(union ccb *ccb, u_int32_t cam_flags,
103 				u_int32_t sense_flags);
104 
105 void	scsi_send_receive(struct ccb_scsiio *csio, u_int32_t retries,
106 			  void (*cbfcnp)(struct cam_periph *, union ccb *),
107 			  u_int tag_action, int readop, u_int byte2,
108 			  u_int32_t xfer_len, u_int8_t *data_ptr,
109 			  u_int8_t sense_len, u_int32_t timeout);
110 
111 static struct periph_driver ptdriver =
112 {
113 	ptinit, "pt",
114 	TAILQ_HEAD_INITIALIZER(ptdriver.units), /* generation */ 0
115 };
116 
117 PERIPHDRIVER_DECLARE(pt, ptdriver);
118 
119 
120 static struct cdevsw pt_cdevsw = {
121 	.d_version =	D_VERSION,
122 	.d_flags =	D_NEEDGIANT,
123 	.d_open =	ptopen,
124 	.d_close =	ptclose,
125 	.d_read =	physread,
126 	.d_write =	physwrite,
127 	.d_ioctl =	ptioctl,
128 	.d_strategy =	ptstrategy,
129 	.d_name =	"pt",
130 };
131 
132 #ifndef SCSI_PT_DEFAULT_TIMEOUT
133 #define SCSI_PT_DEFAULT_TIMEOUT		60
134 #endif
135 
136 static int
137 ptopen(struct cdev *dev, int flags, int fmt, struct thread *td)
138 {
139 	struct cam_periph *periph;
140 	struct pt_softc *softc;
141 	int unit;
142 	int error;
143 	int s;
144 
145 	unit = minor(dev);
146 	periph = (struct cam_periph *)dev->si_drv1;
147 	if (periph == NULL)
148 		return (ENXIO);
149 
150 	softc = (struct pt_softc *)periph->softc;
151 
152 	s = splsoftcam();
153 	if (softc->flags & PT_FLAG_DEVICE_INVALID) {
154 		splx(s);
155 		return(ENXIO);
156 	}
157 
158 	CAM_DEBUG(periph->path, CAM_DEBUG_TRACE,
159 	    ("ptopen: dev=%s (unit %d)\n", devtoname(dev), unit));
160 
161 	if ((error = cam_periph_lock(periph, PRIBIO|PCATCH)) != 0) {
162 		splx(s);
163 		return (error); /* error code from tsleep */
164 	}
165 
166 	splx(s);
167 
168 	if ((softc->flags & PT_FLAG_OPEN) == 0) {
169 		if (cam_periph_acquire(periph) != CAM_REQ_CMP)
170 			error = ENXIO;
171 		else
172 			softc->flags |= PT_FLAG_OPEN;
173 	} else
174 		error = EBUSY;
175 
176 	cam_periph_unlock(periph);
177 	return (error);
178 }
179 
180 static int
181 ptclose(struct cdev *dev, int flag, int fmt, struct thread *td)
182 {
183 	struct	cam_periph *periph;
184 	struct	pt_softc *softc;
185 	int	error;
186 
187 	periph = (struct cam_periph *)dev->si_drv1;
188 	if (periph == NULL)
189 		return (ENXIO);
190 
191 	softc = (struct pt_softc *)periph->softc;
192 
193 	if ((error = cam_periph_lock(periph, PRIBIO)) != 0)
194 		return (error); /* error code from tsleep */
195 
196 	softc->flags &= ~PT_FLAG_OPEN;
197 	cam_periph_unlock(periph);
198 	cam_periph_release(periph);
199 	return (0);
200 }
201 
202 /*
203  * Actually translate the requested transfer into one the physical driver
204  * can understand.  The transfer is described by a buf and will include
205  * only one physical transfer.
206  */
207 static void
208 ptstrategy(struct bio *bp)
209 {
210 	struct cam_periph *periph;
211 	struct pt_softc *softc;
212 	int    s;
213 
214 	periph = (struct cam_periph *)bp->bio_dev->si_drv1;
215 	bp->bio_resid = bp->bio_bcount;
216 	if (periph == NULL) {
217 		biofinish(bp, NULL, ENXIO);
218 		return;
219 	}
220 	softc = (struct pt_softc *)periph->softc;
221 
222 	/*
223 	 * Mask interrupts so that the pack cannot be invalidated until
224 	 * after we are in the queue.  Otherwise, we might not properly
225 	 * clean up one of the buffers.
226 	 */
227 	s = splbio();
228 
229 	/*
230 	 * If the device has been made invalid, error out
231 	 */
232 	if ((softc->flags & PT_FLAG_DEVICE_INVALID)) {
233 		splx(s);
234 		biofinish(bp, NULL, ENXIO);
235 		return;
236 	}
237 
238 	/*
239 	 * Place it in the queue of disk activities for this disk
240 	 */
241 	bioq_insert_tail(&softc->bio_queue, bp);
242 
243 	splx(s);
244 
245 	/*
246 	 * Schedule ourselves for performing the work.
247 	 */
248 	xpt_schedule(periph, /* XXX priority */1);
249 
250 	return;
251 }
252 
253 static void
254 ptinit(void)
255 {
256 	cam_status status;
257 	struct cam_path *path;
258 
259 	/*
260 	 * Install a global async callback.  This callback will
261 	 * receive async callbacks like "new device found".
262 	 */
263 	status = xpt_create_path(&path, /*periph*/NULL, CAM_XPT_PATH_ID,
264 				 CAM_TARGET_WILDCARD, CAM_LUN_WILDCARD);
265 
266 	if (status == CAM_REQ_CMP) {
267 		struct ccb_setasync csa;
268 
269                 xpt_setup_ccb(&csa.ccb_h, path, /*priority*/5);
270                 csa.ccb_h.func_code = XPT_SASYNC_CB;
271                 csa.event_enable = AC_FOUND_DEVICE;
272                 csa.callback = ptasync;
273                 csa.callback_arg = NULL;
274                 xpt_action((union ccb *)&csa);
275 		status = csa.ccb_h.status;
276                 xpt_free_path(path);
277         }
278 
279 	if (status != CAM_REQ_CMP) {
280 		printf("pt: Failed to attach master async callback "
281 		       "due to status 0x%x!\n", status);
282 	}
283 }
284 
285 static cam_status
286 ptctor(struct cam_periph *periph, void *arg)
287 {
288 	struct pt_softc *softc;
289 	struct ccb_setasync csa;
290 	struct ccb_getdev *cgd;
291 
292 	cgd = (struct ccb_getdev *)arg;
293 	if (periph == NULL) {
294 		printf("ptregister: periph was NULL!!\n");
295 		return(CAM_REQ_CMP_ERR);
296 	}
297 
298 	if (cgd == NULL) {
299 		printf("ptregister: no getdev CCB, can't register device\n");
300 		return(CAM_REQ_CMP_ERR);
301 	}
302 
303 	softc = (struct pt_softc *)malloc(sizeof(*softc),M_DEVBUF,M_NOWAIT);
304 
305 	if (softc == NULL) {
306 		printf("daregister: Unable to probe new device. "
307 		       "Unable to allocate softc\n");
308 		return(CAM_REQ_CMP_ERR);
309 	}
310 
311 	bzero(softc, sizeof(*softc));
312 	LIST_INIT(&softc->pending_ccbs);
313 	softc->state = PT_STATE_NORMAL;
314 	bioq_init(&softc->bio_queue);
315 
316 	softc->io_timeout = SCSI_PT_DEFAULT_TIMEOUT * 1000;
317 
318 	periph->softc = softc;
319 
320 	softc->device_stats = devstat_new_entry("pt",
321 			  periph->unit_number, 0,
322 			  DEVSTAT_NO_BLOCKSIZE,
323 			  SID_TYPE(&cgd->inq_data) | DEVSTAT_TYPE_IF_SCSI,
324 			  DEVSTAT_PRIORITY_OTHER);
325 
326 	softc->dev = make_dev(&pt_cdevsw, periph->unit_number, UID_ROOT,
327 			      GID_OPERATOR, 0600, "%s%d", periph->periph_name,
328 			      periph->unit_number);
329 	softc->dev->si_drv1 = periph;
330 
331 	/*
332 	 * Add async callbacks for bus reset and
333 	 * bus device reset calls.  I don't bother
334 	 * checking if this fails as, in most cases,
335 	 * the system will function just fine without
336 	 * them and the only alternative would be to
337 	 * not attach the device on failure.
338 	 */
339 	xpt_setup_ccb(&csa.ccb_h, periph->path, /*priority*/5);
340 	csa.ccb_h.func_code = XPT_SASYNC_CB;
341 	csa.event_enable = AC_SENT_BDR | AC_BUS_RESET | AC_LOST_DEVICE;
342 	csa.callback = ptasync;
343 	csa.callback_arg = periph;
344 	xpt_action((union ccb *)&csa);
345 
346 	/* Tell the user we've attached to the device */
347 	xpt_announce_periph(periph, NULL);
348 
349 	return(CAM_REQ_CMP);
350 }
351 
352 static void
353 ptoninvalidate(struct cam_periph *periph)
354 {
355 	int s;
356 	struct pt_softc *softc;
357 	struct ccb_setasync csa;
358 
359 	softc = (struct pt_softc *)periph->softc;
360 
361 	/*
362 	 * De-register any async callbacks.
363 	 */
364 	xpt_setup_ccb(&csa.ccb_h, periph->path,
365 		      /* priority */ 5);
366 	csa.ccb_h.func_code = XPT_SASYNC_CB;
367 	csa.event_enable = 0;
368 	csa.callback = ptasync;
369 	csa.callback_arg = periph;
370 	xpt_action((union ccb *)&csa);
371 
372 	softc->flags |= PT_FLAG_DEVICE_INVALID;
373 
374 	/*
375 	 * Although the oninvalidate() routines are always called at
376 	 * splsoftcam, we need to be at splbio() here to keep the buffer
377 	 * queue from being modified while we traverse it.
378 	 */
379 	s = splbio();
380 
381 	/*
382 	 * Return all queued I/O with ENXIO.
383 	 * XXX Handle any transactions queued to the card
384 	 *     with XPT_ABORT_CCB.
385 	 */
386 	bioq_flush(&softc->bio_queue, NULL, ENXIO);
387 
388 	splx(s);
389 
390 	xpt_print(periph->path, "lost device\n");
391 }
392 
393 static void
394 ptdtor(struct cam_periph *periph)
395 {
396 	struct pt_softc *softc;
397 
398 	softc = (struct pt_softc *)periph->softc;
399 
400 	devstat_remove_entry(softc->device_stats);
401 
402 	destroy_dev(softc->dev);
403 
404 	xpt_print(periph->path, "removing device entry\n");
405 	free(softc, M_DEVBUF);
406 }
407 
408 static void
409 ptasync(void *callback_arg, u_int32_t code, struct cam_path *path, void *arg)
410 {
411 	struct cam_periph *periph;
412 
413 	periph = (struct cam_periph *)callback_arg;
414 	switch (code) {
415 	case AC_FOUND_DEVICE:
416 	{
417 		struct ccb_getdev *cgd;
418 		cam_status status;
419 
420 		cgd = (struct ccb_getdev *)arg;
421 		if (cgd == NULL)
422 			break;
423 
424 		if (SID_TYPE(&cgd->inq_data) != T_PROCESSOR)
425 			break;
426 
427 		/*
428 		 * Allocate a peripheral instance for
429 		 * this device and start the probe
430 		 * process.
431 		 */
432 		status = cam_periph_alloc(ptctor, ptoninvalidate, ptdtor,
433 					  ptstart, "pt", CAM_PERIPH_BIO,
434 					  cgd->ccb_h.path, ptasync,
435 					  AC_FOUND_DEVICE, cgd);
436 
437 		if (status != CAM_REQ_CMP
438 		 && status != CAM_REQ_INPROG)
439 			printf("ptasync: Unable to attach to new device "
440 				"due to status 0x%x\n", status);
441 		break;
442 	}
443 	case AC_SENT_BDR:
444 	case AC_BUS_RESET:
445 	{
446 		struct pt_softc *softc;
447 		struct ccb_hdr *ccbh;
448 		int s;
449 
450 		softc = (struct pt_softc *)periph->softc;
451 		s = splsoftcam();
452 		/*
453 		 * Don't fail on the expected unit attention
454 		 * that will occur.
455 		 */
456 		softc->flags |= PT_FLAG_RETRY_UA;
457 		LIST_FOREACH(ccbh, &softc->pending_ccbs, periph_links.le)
458 			ccbh->ccb_state |= PT_CCB_RETRY_UA;
459 		splx(s);
460 	}
461 	/* FALLTHROUGH */
462 	default:
463 		cam_periph_async(periph, code, path, arg);
464 		break;
465 	}
466 }
467 
468 static void
469 ptstart(struct cam_periph *periph, union ccb *start_ccb)
470 {
471 	struct pt_softc *softc;
472 	struct bio *bp;
473 	int s;
474 
475 	softc = (struct pt_softc *)periph->softc;
476 
477 	/*
478 	 * See if there is a buf with work for us to do..
479 	 */
480 	s = splbio();
481 	bp = bioq_first(&softc->bio_queue);
482 	if (periph->immediate_priority <= periph->pinfo.priority) {
483 		CAM_DEBUG_PRINT(CAM_DEBUG_SUBTRACE,
484 				("queuing for immediate ccb\n"));
485 		start_ccb->ccb_h.ccb_state = PT_CCB_WAITING;
486 		SLIST_INSERT_HEAD(&periph->ccb_list, &start_ccb->ccb_h,
487 				  periph_links.sle);
488 		periph->immediate_priority = CAM_PRIORITY_NONE;
489 		splx(s);
490 		wakeup(&periph->ccb_list);
491 	} else if (bp == NULL) {
492 		splx(s);
493 		xpt_release_ccb(start_ccb);
494 	} else {
495 		int oldspl;
496 
497 		bioq_remove(&softc->bio_queue, bp);
498 
499 		devstat_start_transaction_bio(softc->device_stats, bp);
500 
501 		scsi_send_receive(&start_ccb->csio,
502 				  /*retries*/4,
503 				  ptdone,
504 				  MSG_SIMPLE_Q_TAG,
505 				  bp->bio_cmd == BIO_READ,
506 				  /*byte2*/0,
507 				  bp->bio_bcount,
508 				  bp->bio_data,
509 				  /*sense_len*/SSD_FULL_SIZE,
510 				  /*timeout*/softc->io_timeout);
511 
512 		start_ccb->ccb_h.ccb_state = PT_CCB_BUFFER_IO_UA;
513 
514 		/*
515 		 * Block out any asyncronous callbacks
516 		 * while we touch the pending ccb list.
517 		 */
518 		oldspl = splcam();
519 		LIST_INSERT_HEAD(&softc->pending_ccbs, &start_ccb->ccb_h,
520 				 periph_links.le);
521 		splx(oldspl);
522 
523 		start_ccb->ccb_h.ccb_bp = bp;
524 		bp = bioq_first(&softc->bio_queue);
525 		splx(s);
526 
527 		xpt_action(start_ccb);
528 
529 		if (bp != NULL) {
530 			/* Have more work to do, so ensure we stay scheduled */
531 			xpt_schedule(periph, /* XXX priority */1);
532 		}
533 	}
534 }
535 
536 static void
537 ptdone(struct cam_periph *periph, union ccb *done_ccb)
538 {
539 	struct pt_softc *softc;
540 	struct ccb_scsiio *csio;
541 
542 	softc = (struct pt_softc *)periph->softc;
543 	csio = &done_ccb->csio;
544 	switch (csio->ccb_h.ccb_state) {
545 	case PT_CCB_BUFFER_IO:
546 	case PT_CCB_BUFFER_IO_UA:
547 	{
548 		struct bio *bp;
549 		int    oldspl;
550 
551 		bp = (struct bio *)done_ccb->ccb_h.ccb_bp;
552 		if ((done_ccb->ccb_h.status & CAM_STATUS_MASK) != CAM_REQ_CMP) {
553 			int error;
554 			int s;
555 			int sf;
556 
557 			if ((csio->ccb_h.ccb_state & PT_CCB_RETRY_UA) != 0)
558 				sf = SF_RETRY_UA;
559 			else
560 				sf = 0;
561 
562 			error = pterror(done_ccb, CAM_RETRY_SELTO, sf);
563 			if (error == ERESTART) {
564 				/*
565 				 * A retry was scheuled, so
566 				 * just return.
567 				 */
568 				return;
569 			}
570 			if (error != 0) {
571 				s = splbio();
572 
573 				if (error == ENXIO) {
574 					/*
575 					 * Catastrophic error.  Mark our device
576 					 * as invalid.
577 					 */
578 					xpt_print(periph->path,
579 					    "Invalidating device\n");
580 					softc->flags |= PT_FLAG_DEVICE_INVALID;
581 				}
582 
583 				/*
584 				 * return all queued I/O with EIO, so that
585 				 * the client can retry these I/Os in the
586 				 * proper order should it attempt to recover.
587 				 */
588 				bioq_flush(&softc->bio_queue, NULL, EIO);
589 				splx(s);
590 				bp->bio_error = error;
591 				bp->bio_resid = bp->bio_bcount;
592 				bp->bio_flags |= BIO_ERROR;
593 			} else {
594 				bp->bio_resid = csio->resid;
595 				bp->bio_error = 0;
596 				if (bp->bio_resid != 0) {
597 					/* Short transfer ??? */
598 					bp->bio_flags |= BIO_ERROR;
599 				}
600 			}
601 			if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0)
602 				cam_release_devq(done_ccb->ccb_h.path,
603 						 /*relsim_flags*/0,
604 						 /*reduction*/0,
605 						 /*timeout*/0,
606 						 /*getcount_only*/0);
607 		} else {
608 			bp->bio_resid = csio->resid;
609 			if (bp->bio_resid != 0)
610 				bp->bio_flags |= BIO_ERROR;
611 		}
612 
613 		/*
614 		 * Block out any asyncronous callbacks
615 		 * while we touch the pending ccb list.
616 		 */
617 		oldspl = splcam();
618 		LIST_REMOVE(&done_ccb->ccb_h, periph_links.le);
619 		splx(oldspl);
620 
621 		biofinish(bp, softc->device_stats, 0);
622 		break;
623 	}
624 	case PT_CCB_WAITING:
625 		/* Caller will release the CCB */
626 		wakeup(&done_ccb->ccb_h.cbfcnp);
627 		return;
628 	}
629 	xpt_release_ccb(done_ccb);
630 }
631 
632 static int
633 pterror(union ccb *ccb, u_int32_t cam_flags, u_int32_t sense_flags)
634 {
635 	struct pt_softc	  *softc;
636 	struct cam_periph *periph;
637 
638 	periph = xpt_path_periph(ccb->ccb_h.path);
639 	softc = (struct pt_softc *)periph->softc;
640 
641 	return(cam_periph_error(ccb, cam_flags, sense_flags,
642 				&softc->saved_ccb));
643 }
644 
645 static int
646 ptioctl(struct cdev *dev, u_long cmd, caddr_t addr, int flag, struct thread *td)
647 {
648 	struct cam_periph *periph;
649 	struct pt_softc *softc;
650 	int error;
651 
652 	periph = (struct cam_periph *)dev->si_drv1;
653 	if (periph == NULL)
654 		return(ENXIO);
655 
656 	softc = (struct pt_softc *)periph->softc;
657 
658 	if ((error = cam_periph_lock(periph, PRIBIO|PCATCH)) != 0) {
659 		return (error); /* error code from tsleep */
660 	}
661 
662 	switch(cmd) {
663 	case PTIOCGETTIMEOUT:
664 		if (softc->io_timeout >= 1000)
665 			*(int *)addr = softc->io_timeout / 1000;
666 		else
667 			*(int *)addr = 0;
668 		break;
669 	case PTIOCSETTIMEOUT:
670 	{
671 		int s;
672 
673 		if (*(int *)addr < 1) {
674 			error = EINVAL;
675 			break;
676 		}
677 
678 		s = splsoftcam();
679 		softc->io_timeout = *(int *)addr * 1000;
680 		splx(s);
681 
682 		break;
683 	}
684 	default:
685 		error = cam_periph_ioctl(periph, cmd, addr, pterror);
686 		break;
687 	}
688 
689 	cam_periph_unlock(periph);
690 
691 	return(error);
692 }
693 
694 void
695 scsi_send_receive(struct ccb_scsiio *csio, u_int32_t retries,
696 		  void (*cbfcnp)(struct cam_periph *, union ccb *),
697 		  u_int tag_action, int readop, u_int byte2,
698 		  u_int32_t xfer_len, u_int8_t *data_ptr, u_int8_t sense_len,
699 		  u_int32_t timeout)
700 {
701 	struct scsi_send_receive *scsi_cmd;
702 
703 	scsi_cmd = (struct scsi_send_receive *)&csio->cdb_io.cdb_bytes;
704 	scsi_cmd->opcode = readop ? RECEIVE : SEND;
705 	scsi_cmd->byte2 = byte2;
706 	scsi_ulto3b(xfer_len, scsi_cmd->xfer_len);
707 	scsi_cmd->control = 0;
708 
709 	cam_fill_csio(csio,
710 		      retries,
711 		      cbfcnp,
712 		      /*flags*/readop ? CAM_DIR_IN : CAM_DIR_OUT,
713 		      tag_action,
714 		      data_ptr,
715 		      xfer_len,
716 		      sense_len,
717 		      sizeof(*scsi_cmd),
718 		      timeout);
719 }
720