xref: /freebsd/sys/cam/scsi/scsi_xpt.c (revision 190cef3d)
1 /*-
2  * Implementation of the SCSI Transport
3  *
4  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
5  *
6  * Copyright (c) 1997, 1998, 1999 Justin T. Gibbs.
7  * Copyright (c) 1997, 1998, 1999 Kenneth D. Merry.
8  * All rights reserved.
9  *
10  * Redistribution and use in source and binary forms, with or without
11  * modification, are permitted provided that the following conditions
12  * are met:
13  * 1. Redistributions of source code must retain the above copyright
14  *    notice, this list of conditions, and the following disclaimer,
15  *    without modification, immediately at the beginning of the file.
16  * 2. The name of the author may not be used to endorse or promote products
17  *    derived from this software without specific prior written permission.
18  *
19  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
20  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22  * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR
23  * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29  * SUCH DAMAGE.
30  */
31 
32 #include <sys/cdefs.h>
33 __FBSDID("$FreeBSD$");
34 
35 #include <sys/param.h>
36 #include <sys/bus.h>
37 #include <sys/systm.h>
38 #include <sys/types.h>
39 #include <sys/malloc.h>
40 #include <sys/kernel.h>
41 #include <sys/time.h>
42 #include <sys/conf.h>
43 #include <sys/fcntl.h>
44 #include <sys/md5.h>
45 #include <sys/sbuf.h>
46 
47 #include <sys/lock.h>
48 #include <sys/mutex.h>
49 #include <sys/sysctl.h>
50 
51 #include <cam/cam.h>
52 #include <cam/cam_ccb.h>
53 #include <cam/cam_queue.h>
54 #include <cam/cam_periph.h>
55 #include <cam/cam_sim.h>
56 #include <cam/cam_xpt.h>
57 #include <cam/cam_xpt_sim.h>
58 #include <cam/cam_xpt_periph.h>
59 #include <cam/cam_xpt_internal.h>
60 #include <cam/cam_debug.h>
61 
62 #include <cam/scsi/scsi_all.h>
63 #include <cam/scsi/scsi_message.h>
64 #include <cam/scsi/scsi_pass.h>
65 #include <machine/stdarg.h>	/* for xpt_print below */
66 #include "opt_cam.h"
67 
68 struct scsi_quirk_entry {
69 	struct scsi_inquiry_pattern inq_pat;
70 	u_int8_t quirks;
71 #define	CAM_QUIRK_NOLUNS	0x01
72 #define	CAM_QUIRK_NOVPDS	0x02
73 #define	CAM_QUIRK_HILUNS	0x04
74 #define	CAM_QUIRK_NOHILUNS	0x08
75 #define	CAM_QUIRK_NORPTLUNS	0x10
76 	u_int mintags;
77 	u_int maxtags;
78 };
79 #define SCSI_QUIRK(dev)	((struct scsi_quirk_entry *)((dev)->quirk))
80 
81 static int cam_srch_hi = 0;
82 static int sysctl_cam_search_luns(SYSCTL_HANDLER_ARGS);
83 SYSCTL_PROC(_kern_cam, OID_AUTO, cam_srch_hi, CTLTYPE_INT | CTLFLAG_RWTUN, 0, 0,
84     sysctl_cam_search_luns, "I",
85     "allow search above LUN 7 for SCSI3 and greater devices");
86 
87 #define	CAM_SCSI2_MAXLUN	8
88 #define	CAM_CAN_GET_SIMPLE_LUN(x, i)				\
89 	((((x)->luns[i].lundata[0] & RPL_LUNDATA_ATYP_MASK) ==	\
90 	RPL_LUNDATA_ATYP_PERIPH) ||				\
91 	(((x)->luns[i].lundata[0] & RPL_LUNDATA_ATYP_MASK) ==	\
92 	RPL_LUNDATA_ATYP_FLAT))
93 #define	CAM_GET_SIMPLE_LUN(lp, i, lval)					\
94 	if (((lp)->luns[(i)].lundata[0] & RPL_LUNDATA_ATYP_MASK) == 	\
95 	    RPL_LUNDATA_ATYP_PERIPH) {					\
96 		(lval) = (lp)->luns[(i)].lundata[1];			\
97 	} else {							\
98 		(lval) = (lp)->luns[(i)].lundata[0];			\
99 		(lval) &= RPL_LUNDATA_FLAT_LUN_MASK;			\
100 		(lval) <<= 8;						\
101 		(lval) |=  (lp)->luns[(i)].lundata[1];			\
102 	}
103 #define	CAM_GET_LUN(lp, i, lval)					\
104 	(lval) = scsi_8btou64((lp)->luns[(i)].lundata);			\
105 	(lval) = CAM_EXTLUN_BYTE_SWIZZLE(lval);
106 
107 /*
108  * If we're not quirked to search <= the first 8 luns
109  * and we are either quirked to search above lun 8,
110  * or we're > SCSI-2 and we've enabled hilun searching,
111  * or we're > SCSI-2 and the last lun was a success,
112  * we can look for luns above lun 8.
113  */
114 #define	CAN_SRCH_HI_SPARSE(dv)					\
115   (((SCSI_QUIRK(dv)->quirks & CAM_QUIRK_NOHILUNS) == 0) 	\
116   && ((SCSI_QUIRK(dv)->quirks & CAM_QUIRK_HILUNS)		\
117   || (SID_ANSI_REV(&dv->inq_data) > SCSI_REV_2 && cam_srch_hi)))
118 
119 #define	CAN_SRCH_HI_DENSE(dv)					\
120   (((SCSI_QUIRK(dv)->quirks & CAM_QUIRK_NOHILUNS) == 0) 	\
121   && ((SCSI_QUIRK(dv)->quirks & CAM_QUIRK_HILUNS)		\
122   || (SID_ANSI_REV(&dv->inq_data) > SCSI_REV_2)))
123 
124 static periph_init_t probe_periph_init;
125 
126 static struct periph_driver probe_driver =
127 {
128 	probe_periph_init, "probe",
129 	TAILQ_HEAD_INITIALIZER(probe_driver.units), /* generation */ 0,
130 	CAM_PERIPH_DRV_EARLY
131 };
132 
133 PERIPHDRIVER_DECLARE(probe, probe_driver);
134 
135 typedef enum {
136 	PROBE_TUR,
137 	PROBE_INQUIRY,	/* this counts as DV0 for Basic Domain Validation */
138 	PROBE_FULL_INQUIRY,
139 	PROBE_REPORT_LUNS,
140 	PROBE_MODE_SENSE,
141 	PROBE_SUPPORTED_VPD_LIST,
142 	PROBE_DEVICE_ID,
143 	PROBE_EXTENDED_INQUIRY,
144 	PROBE_SERIAL_NUM,
145 	PROBE_TUR_FOR_NEGOTIATION,
146 	PROBE_INQUIRY_BASIC_DV1,
147 	PROBE_INQUIRY_BASIC_DV2,
148 	PROBE_DV_EXIT,
149 	PROBE_DONE,
150 	PROBE_INVALID
151 } probe_action;
152 
153 static char *probe_action_text[] = {
154 	"PROBE_TUR",
155 	"PROBE_INQUIRY",
156 	"PROBE_FULL_INQUIRY",
157 	"PROBE_REPORT_LUNS",
158 	"PROBE_MODE_SENSE",
159 	"PROBE_SUPPORTED_VPD_LIST",
160 	"PROBE_DEVICE_ID",
161 	"PROBE_EXTENDED_INQUIRY",
162 	"PROBE_SERIAL_NUM",
163 	"PROBE_TUR_FOR_NEGOTIATION",
164 	"PROBE_INQUIRY_BASIC_DV1",
165 	"PROBE_INQUIRY_BASIC_DV2",
166 	"PROBE_DV_EXIT",
167 	"PROBE_DONE",
168 	"PROBE_INVALID"
169 };
170 
171 #define PROBE_SET_ACTION(softc, newaction)	\
172 do {									\
173 	char **text;							\
174 	text = probe_action_text;					\
175 	CAM_DEBUG((softc)->periph->path, CAM_DEBUG_PROBE,		\
176 	    ("Probe %s to %s\n", text[(softc)->action],			\
177 	    text[(newaction)]));					\
178 	(softc)->action = (newaction);					\
179 } while(0)
180 
181 typedef enum {
182 	PROBE_INQUIRY_CKSUM	= 0x01,
183 	PROBE_SERIAL_CKSUM	= 0x02,
184 	PROBE_NO_ANNOUNCE	= 0x04,
185 	PROBE_EXTLUN		= 0x08
186 } probe_flags;
187 
188 typedef struct {
189 	TAILQ_HEAD(, ccb_hdr) request_ccbs;
190 	probe_action	action;
191 	union ccb	saved_ccb;
192 	probe_flags	flags;
193 	MD5_CTX		context;
194 	u_int8_t	digest[16];
195 	struct cam_periph *periph;
196 } probe_softc;
197 
198 static const char quantum[] = "QUANTUM";
199 static const char sony[] = "SONY";
200 static const char west_digital[] = "WDIGTL";
201 static const char samsung[] = "SAMSUNG";
202 static const char seagate[] = "SEAGATE";
203 static const char microp[] = "MICROP";
204 
205 static struct scsi_quirk_entry scsi_quirk_table[] =
206 {
207 	{
208 		/* Reports QUEUE FULL for temporary resource shortages */
209 		{ T_DIRECT, SIP_MEDIA_FIXED, quantum, "XP39100*", "*" },
210 		/*quirks*/0, /*mintags*/24, /*maxtags*/32
211 	},
212 	{
213 		/* Reports QUEUE FULL for temporary resource shortages */
214 		{ T_DIRECT, SIP_MEDIA_FIXED, quantum, "XP34550*", "*" },
215 		/*quirks*/0, /*mintags*/24, /*maxtags*/32
216 	},
217 	{
218 		/* Reports QUEUE FULL for temporary resource shortages */
219 		{ T_DIRECT, SIP_MEDIA_FIXED, quantum, "XP32275*", "*" },
220 		/*quirks*/0, /*mintags*/24, /*maxtags*/32
221 	},
222 	{
223 		/* Broken tagged queuing drive */
224 		{ T_DIRECT, SIP_MEDIA_FIXED, microp, "4421-07*", "*" },
225 		/*quirks*/0, /*mintags*/0, /*maxtags*/0
226 	},
227 	{
228 		/* Broken tagged queuing drive */
229 		{ T_DIRECT, SIP_MEDIA_FIXED, "HP", "C372*", "*" },
230 		/*quirks*/0, /*mintags*/0, /*maxtags*/0
231 	},
232 	{
233 		/* Broken tagged queuing drive */
234 		{ T_DIRECT, SIP_MEDIA_FIXED, microp, "3391*", "x43h" },
235 		/*quirks*/0, /*mintags*/0, /*maxtags*/0
236 	},
237 	{
238 		/*
239 		 * Unfortunately, the Quantum Atlas III has the same
240 		 * problem as the Atlas II drives above.
241 		 * Reported by: "Johan Granlund" <johan@granlund.nu>
242 		 *
243 		 * For future reference, the drive with the problem was:
244 		 * QUANTUM QM39100TD-SW N1B0
245 		 *
246 		 * It's possible that Quantum will fix the problem in later
247 		 * firmware revisions.  If that happens, the quirk entry
248 		 * will need to be made specific to the firmware revisions
249 		 * with the problem.
250 		 *
251 		 */
252 		/* Reports QUEUE FULL for temporary resource shortages */
253 		{ T_DIRECT, SIP_MEDIA_FIXED, quantum, "QM39100*", "*" },
254 		/*quirks*/0, /*mintags*/24, /*maxtags*/32
255 	},
256 	{
257 		/*
258 		 * 18 Gig Atlas III, same problem as the 9G version.
259 		 * Reported by: Andre Albsmeier
260 		 *		<andre.albsmeier@mchp.siemens.de>
261 		 *
262 		 * For future reference, the drive with the problem was:
263 		 * QUANTUM QM318000TD-S N491
264 		 */
265 		/* Reports QUEUE FULL for temporary resource shortages */
266 		{ T_DIRECT, SIP_MEDIA_FIXED, quantum, "QM318000*", "*" },
267 		/*quirks*/0, /*mintags*/24, /*maxtags*/32
268 	},
269 	{
270 		/*
271 		 * Broken tagged queuing drive
272 		 * Reported by: Bret Ford <bford@uop.cs.uop.edu>
273 		 *         and: Martin Renters <martin@tdc.on.ca>
274 		 */
275 		{ T_DIRECT, SIP_MEDIA_FIXED, seagate, "ST410800*", "71*" },
276 		/*quirks*/0, /*mintags*/0, /*maxtags*/0
277 	},
278 		/*
279 		 * The Seagate Medalist Pro drives have very poor write
280 		 * performance with anything more than 2 tags.
281 		 *
282 		 * Reported by:  Paul van der Zwan <paulz@trantor.xs4all.nl>
283 		 * Drive:  <SEAGATE ST36530N 1444>
284 		 *
285 		 * Reported by:  Jeremy Lea <reg@shale.csir.co.za>
286 		 * Drive:  <SEAGATE ST34520W 1281>
287 		 *
288 		 * No one has actually reported that the 9G version
289 		 * (ST39140*) of the Medalist Pro has the same problem, but
290 		 * we're assuming that it does because the 4G and 6.5G
291 		 * versions of the drive are broken.
292 		 */
293 	{
294 		{ T_DIRECT, SIP_MEDIA_FIXED, seagate, "ST34520*", "*"},
295 		/*quirks*/0, /*mintags*/2, /*maxtags*/2
296 	},
297 	{
298 		{ T_DIRECT, SIP_MEDIA_FIXED, seagate, "ST36530*", "*"},
299 		/*quirks*/0, /*mintags*/2, /*maxtags*/2
300 	},
301 	{
302 		{ T_DIRECT, SIP_MEDIA_FIXED, seagate, "ST39140*", "*"},
303 		/*quirks*/0, /*mintags*/2, /*maxtags*/2
304 	},
305 	{
306 		/*
307 		 * Experiences command timeouts under load with a
308 		 * tag count higher than 55.
309 		 */
310 		{ T_DIRECT, SIP_MEDIA_FIXED, seagate, "ST3146855LW", "*"},
311 		/*quirks*/0, /*mintags*/2, /*maxtags*/55
312 	},
313 	{
314 		/*
315 		 * Slow when tagged queueing is enabled.  Write performance
316 		 * steadily drops off with more and more concurrent
317 		 * transactions.  Best sequential write performance with
318 		 * tagged queueing turned off and write caching turned on.
319 		 *
320 		 * PR:  kern/10398
321 		 * Submitted by:  Hideaki Okada <hokada@isl.melco.co.jp>
322 		 * Drive:  DCAS-34330 w/ "S65A" firmware.
323 		 *
324 		 * The drive with the problem had the "S65A" firmware
325 		 * revision, and has also been reported (by Stephen J.
326 		 * Roznowski <sjr@home.net>) for a drive with the "S61A"
327 		 * firmware revision.
328 		 *
329 		 * Although no one has reported problems with the 2 gig
330 		 * version of the DCAS drive, the assumption is that it
331 		 * has the same problems as the 4 gig version.  Therefore
332 		 * this quirk entries disables tagged queueing for all
333 		 * DCAS drives.
334 		 */
335 		{ T_DIRECT, SIP_MEDIA_FIXED, "IBM", "DCAS*", "*" },
336 		/*quirks*/0, /*mintags*/0, /*maxtags*/0
337 	},
338 	{
339 		/* Broken tagged queuing drive */
340 		{ T_DIRECT, SIP_MEDIA_REMOVABLE, "iomega", "jaz*", "*" },
341 		/*quirks*/0, /*mintags*/0, /*maxtags*/0
342 	},
343 	{
344 		/* Broken tagged queuing drive */
345 		{ T_DIRECT, SIP_MEDIA_FIXED, "CONNER", "CFP2107*", "*" },
346 		/*quirks*/0, /*mintags*/0, /*maxtags*/0
347 	},
348 	{
349 		/* This does not support other than LUN 0 */
350 		{ T_DIRECT, SIP_MEDIA_FIXED, "VMware*", "*", "*" },
351 		CAM_QUIRK_NOLUNS, /*mintags*/2, /*maxtags*/255
352 	},
353 	{
354 		/*
355 		 * Broken tagged queuing drive.
356 		 * Submitted by:
357 		 * NAKAJI Hiroyuki <nakaji@zeisei.dpri.kyoto-u.ac.jp>
358 		 * in PR kern/9535
359 		 */
360 		{ T_DIRECT, SIP_MEDIA_FIXED, samsung, "WN34324U*", "*" },
361 		/*quirks*/0, /*mintags*/0, /*maxtags*/0
362 	},
363         {
364 		/*
365 		 * Slow when tagged queueing is enabled. (1.5MB/sec versus
366 		 * 8MB/sec.)
367 		 * Submitted by: Andrew Gallatin <gallatin@cs.duke.edu>
368 		 * Best performance with these drives is achieved with
369 		 * tagged queueing turned off, and write caching turned on.
370 		 */
371 		{ T_DIRECT, SIP_MEDIA_FIXED, west_digital, "WDE*", "*" },
372 		/*quirks*/0, /*mintags*/0, /*maxtags*/0
373         },
374         {
375 		/*
376 		 * Slow when tagged queueing is enabled. (1.5MB/sec versus
377 		 * 8MB/sec.)
378 		 * Submitted by: Andrew Gallatin <gallatin@cs.duke.edu>
379 		 * Best performance with these drives is achieved with
380 		 * tagged queueing turned off, and write caching turned on.
381 		 */
382 		{ T_DIRECT, SIP_MEDIA_FIXED, west_digital, "ENTERPRISE", "*" },
383 		/*quirks*/0, /*mintags*/0, /*maxtags*/0
384         },
385 	{
386 		/*
387 		 * Doesn't handle queue full condition correctly,
388 		 * so we need to limit maxtags to what the device
389 		 * can handle instead of determining this automatically.
390 		 */
391 		{ T_DIRECT, SIP_MEDIA_FIXED, samsung, "WN321010S*", "*" },
392 		/*quirks*/0, /*mintags*/2, /*maxtags*/32
393 	},
394 	{
395 		/* Really only one LUN */
396 		{ T_ENCLOSURE, SIP_MEDIA_FIXED, "SUN", "SENA", "*" },
397 		CAM_QUIRK_NOLUNS, /*mintags*/0, /*maxtags*/0
398 	},
399 	{
400 		/* I can't believe we need a quirk for DPT volumes. */
401 		{ T_ANY, SIP_MEDIA_FIXED|SIP_MEDIA_REMOVABLE, "DPT", "*", "*" },
402 		CAM_QUIRK_NOLUNS,
403 		/*mintags*/0, /*maxtags*/255
404 	},
405 	{
406 		/*
407 		 * Many Sony CDROM drives don't like multi-LUN probing.
408 		 */
409 		{ T_CDROM, SIP_MEDIA_REMOVABLE, sony, "CD-ROM CDU*", "*" },
410 		CAM_QUIRK_NOLUNS, /*mintags*/0, /*maxtags*/0
411 	},
412 	{
413 		/*
414 		 * This drive doesn't like multiple LUN probing.
415 		 * Submitted by:  Parag Patel <parag@cgt.com>
416 		 */
417 		{ T_WORM, SIP_MEDIA_REMOVABLE, sony, "CD-R   CDU9*", "*" },
418 		CAM_QUIRK_NOLUNS, /*mintags*/0, /*maxtags*/0
419 	},
420 	{
421 		{ T_WORM, SIP_MEDIA_REMOVABLE, "YAMAHA", "CDR100*", "*" },
422 		CAM_QUIRK_NOLUNS, /*mintags*/0, /*maxtags*/0
423 	},
424 	{
425 		/*
426 		 * The 8200 doesn't like multi-lun probing, and probably
427 		 * don't like serial number requests either.
428 		 */
429 		{
430 			T_SEQUENTIAL, SIP_MEDIA_REMOVABLE, "EXABYTE",
431 			"EXB-8200*", "*"
432 		},
433 		CAM_QUIRK_NOLUNS, /*mintags*/0, /*maxtags*/0
434 	},
435 	{
436 		/*
437 		 * Let's try the same as above, but for a drive that says
438 		 * it's an IPL-6860 but is actually an EXB 8200.
439 		 */
440 		{
441 			T_SEQUENTIAL, SIP_MEDIA_REMOVABLE, "EXABYTE",
442 			"IPL-6860*", "*"
443 		},
444 		CAM_QUIRK_NOLUNS, /*mintags*/0, /*maxtags*/0
445 	},
446 	{
447 		/*
448 		 * These Hitachi drives don't like multi-lun probing.
449 		 * The PR submitter has a DK319H, but says that the Linux
450 		 * kernel has a similar work-around for the DK312 and DK314,
451 		 * so all DK31* drives are quirked here.
452 		 * PR:            misc/18793
453 		 * Submitted by:  Paul Haddad <paul@pth.com>
454 		 */
455 		{ T_DIRECT, SIP_MEDIA_FIXED, "HITACHI", "DK31*", "*" },
456 		CAM_QUIRK_NOLUNS, /*mintags*/2, /*maxtags*/255
457 	},
458 	{
459 		/*
460 		 * The Hitachi CJ series with J8A8 firmware apparently has
461 		 * problems with tagged commands.
462 		 * PR: 23536
463 		 * Reported by: amagai@nue.org
464 		 */
465 		{ T_DIRECT, SIP_MEDIA_FIXED, "HITACHI", "DK32CJ*", "J8A8" },
466 		CAM_QUIRK_NOLUNS, /*mintags*/0, /*maxtags*/0
467 	},
468 	{
469 		/*
470 		 * These are the large storage arrays.
471 		 * Submitted by:  William Carrel <william.carrel@infospace.com>
472 		 */
473 		{ T_DIRECT, SIP_MEDIA_FIXED, "HITACHI", "OPEN*", "*" },
474 		CAM_QUIRK_HILUNS, 2, 1024
475 	},
476 	{
477 		/*
478 		 * This old revision of the TDC3600 is also SCSI-1, and
479 		 * hangs upon serial number probing.
480 		 */
481 		{
482 			T_SEQUENTIAL, SIP_MEDIA_REMOVABLE, "TANDBERG",
483 			" TDC 3600", "U07:"
484 		},
485 		CAM_QUIRK_NOVPDS, /*mintags*/0, /*maxtags*/0
486 	},
487 	{
488 		/*
489 		 * Would repond to all LUNs if asked for.
490 		 */
491 		{
492 			T_SEQUENTIAL, SIP_MEDIA_REMOVABLE, "CALIPER",
493 			"CP150", "*"
494 		},
495 		CAM_QUIRK_NOLUNS, /*mintags*/0, /*maxtags*/0
496 	},
497 	{
498 		/*
499 		 * Would repond to all LUNs if asked for.
500 		 */
501 		{
502 			T_SEQUENTIAL, SIP_MEDIA_REMOVABLE, "KENNEDY",
503 			"96X2*", "*"
504 		},
505 		CAM_QUIRK_NOLUNS, /*mintags*/0, /*maxtags*/0
506 	},
507 	{
508 		/* Submitted by: Matthew Dodd <winter@jurai.net> */
509 		{ T_PROCESSOR, SIP_MEDIA_FIXED, "Cabletrn", "EA41*", "*" },
510 		CAM_QUIRK_NOLUNS, /*mintags*/0, /*maxtags*/0
511 	},
512 	{
513 		/* Submitted by: Matthew Dodd <winter@jurai.net> */
514 		{ T_PROCESSOR, SIP_MEDIA_FIXED, "CABLETRN", "EA41*", "*" },
515 		CAM_QUIRK_NOLUNS, /*mintags*/0, /*maxtags*/0
516 	},
517 	{
518 		/* TeraSolutions special settings for TRC-22 RAID */
519 		{ T_DIRECT, SIP_MEDIA_FIXED, "TERASOLU", "TRC-22", "*" },
520 		  /*quirks*/0, /*mintags*/55, /*maxtags*/255
521 	},
522 	{
523 		/* Veritas Storage Appliance */
524 		{ T_DIRECT, SIP_MEDIA_FIXED, "VERITAS", "*", "*" },
525 		  CAM_QUIRK_HILUNS, /*mintags*/2, /*maxtags*/1024
526 	},
527 	{
528 		/*
529 		 * Would respond to all LUNs.  Device type and removable
530 		 * flag are jumper-selectable.
531 		 */
532 		{ T_ANY, SIP_MEDIA_REMOVABLE|SIP_MEDIA_FIXED, "MaxOptix",
533 		  "Tahiti 1", "*"
534 		},
535 		CAM_QUIRK_NOLUNS, /*mintags*/0, /*maxtags*/0
536 	},
537 	{
538 		/* EasyRAID E5A aka. areca ARC-6010 */
539 		{ T_DIRECT, SIP_MEDIA_FIXED, "easyRAID", "*", "*" },
540 		  CAM_QUIRK_NOHILUNS, /*mintags*/2, /*maxtags*/255
541 	},
542 	{
543 		{ T_ENCLOSURE, SIP_MEDIA_FIXED, "DP", "BACKPLANE", "*" },
544 		CAM_QUIRK_NOLUNS, /*mintags*/0, /*maxtags*/0
545 	},
546 	{
547 		{ T_DIRECT, SIP_MEDIA_REMOVABLE, "Garmin", "*", "*" },
548 		CAM_QUIRK_NORPTLUNS, /*mintags*/2, /*maxtags*/255
549 	},
550 	{
551 		{ T_DIRECT, SIP_MEDIA_REMOVABLE, "Generic", "STORAGE DEVICE*", "120?" },
552 		CAM_QUIRK_NORPTLUNS, /*mintags*/2, /*maxtags*/255
553 	},
554 	{
555 		{ T_DIRECT, SIP_MEDIA_REMOVABLE, "Generic", "MassStorageClass", "1533" },
556 		CAM_QUIRK_NORPTLUNS, /*mintags*/2, /*maxtags*/255
557 	},
558 	{
559 		/* Default tagged queuing parameters for all devices */
560 		{
561 		  T_ANY, SIP_MEDIA_REMOVABLE|SIP_MEDIA_FIXED,
562 		  /*vendor*/"*", /*product*/"*", /*revision*/"*"
563 		},
564 		/*quirks*/0, /*mintags*/2, /*maxtags*/255
565 	},
566 };
567 
568 static cam_status	proberegister(struct cam_periph *periph,
569 				      void *arg);
570 static void	 probeschedule(struct cam_periph *probe_periph);
571 static void	 probestart(struct cam_periph *periph, union ccb *start_ccb);
572 static void	 proberequestdefaultnegotiation(struct cam_periph *periph);
573 static int       proberequestbackoff(struct cam_periph *periph,
574 				     struct cam_ed *device);
575 static void	 probedone(struct cam_periph *periph, union ccb *done_ccb);
576 static void	 probe_purge_old(struct cam_path *path,
577 				 struct scsi_report_luns_data *new,
578 				 probe_flags flags);
579 static void	 probecleanup(struct cam_periph *periph);
580 static void	 scsi_find_quirk(struct cam_ed *device);
581 static void	 scsi_scan_bus(struct cam_periph *periph, union ccb *ccb);
582 static void	 scsi_scan_lun(struct cam_periph *periph,
583 			       struct cam_path *path, cam_flags flags,
584 			       union ccb *ccb);
585 static void	 xptscandone(struct cam_periph *periph, union ccb *done_ccb);
586 static struct cam_ed *
587 		 scsi_alloc_device(struct cam_eb *bus, struct cam_et *target,
588 				   lun_id_t lun_id);
589 static void	 scsi_devise_transport(struct cam_path *path);
590 static void	 scsi_set_transfer_settings(struct ccb_trans_settings *cts,
591 					    struct cam_path *path,
592 					    int async_update);
593 static void	 scsi_toggle_tags(struct cam_path *path);
594 static void	 scsi_dev_async(u_int32_t async_code,
595 				struct cam_eb *bus,
596 				struct cam_et *target,
597 				struct cam_ed *device,
598 				void *async_arg);
599 static void	 scsi_action(union ccb *start_ccb);
600 static void	 scsi_announce_periph(struct cam_periph *periph);
601 static void	 scsi_announce_periph_sbuf(struct cam_periph *periph, struct sbuf *sb);
602 static void	 scsi_proto_announce(struct cam_ed *device);
603 static void	 scsi_proto_announce_sbuf(struct cam_ed *device,
604 					  struct sbuf *sb);
605 static void	 scsi_proto_denounce(struct cam_ed *device);
606 static void	 scsi_proto_denounce_sbuf(struct cam_ed *device,
607 					  struct sbuf *sb);
608 static void	 scsi_proto_debug_out(union ccb *ccb);
609 static void	 _scsi_announce_periph(struct cam_periph *, u_int *, u_int *, struct ccb_trans_settings *);
610 
611 static struct xpt_xport_ops scsi_xport_ops = {
612 	.alloc_device = scsi_alloc_device,
613 	.action = scsi_action,
614 	.async = scsi_dev_async,
615 	.announce = scsi_announce_periph,
616 	.announce_sbuf = scsi_announce_periph_sbuf,
617 };
618 #define SCSI_XPT_XPORT(x, X)			\
619 static struct xpt_xport scsi_xport_ ## x = {	\
620 	.xport = XPORT_ ## X,			\
621 	.name = #x,				\
622 	.ops = &scsi_xport_ops,			\
623 };						\
624 CAM_XPT_XPORT(scsi_xport_ ## x);
625 
626 SCSI_XPT_XPORT(spi, SPI);
627 SCSI_XPT_XPORT(sas, SAS);
628 SCSI_XPT_XPORT(fc, FC);
629 SCSI_XPT_XPORT(usb, USB);
630 SCSI_XPT_XPORT(iscsi, ISCSI);
631 SCSI_XPT_XPORT(srp, SRP);
632 SCSI_XPT_XPORT(ppb, PPB);
633 
634 #undef SCSI_XPORT_XPORT
635 
636 static struct xpt_proto_ops scsi_proto_ops = {
637 	.announce = scsi_proto_announce,
638 	.announce_sbuf = scsi_proto_announce_sbuf,
639 	.denounce = scsi_proto_denounce,
640 	.denounce_sbuf = scsi_proto_denounce_sbuf,
641 	.debug_out = scsi_proto_debug_out,
642 };
643 static struct xpt_proto scsi_proto = {
644 	.proto = PROTO_SCSI,
645 	.name = "scsi",
646 	.ops = &scsi_proto_ops,
647 };
648 CAM_XPT_PROTO(scsi_proto);
649 
650 static void
651 probe_periph_init()
652 {
653 }
654 
655 static cam_status
656 proberegister(struct cam_periph *periph, void *arg)
657 {
658 	union ccb *request_ccb;	/* CCB representing the probe request */
659 	probe_softc *softc;
660 
661 	request_ccb = (union ccb *)arg;
662 	if (request_ccb == NULL) {
663 		printf("proberegister: no probe CCB, "
664 		       "can't register device\n");
665 		return(CAM_REQ_CMP_ERR);
666 	}
667 
668 	softc = (probe_softc *)malloc(sizeof(*softc), M_CAMXPT, M_NOWAIT);
669 
670 	if (softc == NULL) {
671 		printf("proberegister: Unable to probe new device. "
672 		       "Unable to allocate softc\n");
673 		return(CAM_REQ_CMP_ERR);
674 	}
675 	TAILQ_INIT(&softc->request_ccbs);
676 	TAILQ_INSERT_TAIL(&softc->request_ccbs, &request_ccb->ccb_h,
677 			  periph_links.tqe);
678 	softc->flags = 0;
679 	periph->softc = softc;
680 	softc->periph = periph;
681 	softc->action = PROBE_INVALID;
682 	if (cam_periph_acquire(periph) != 0)
683 		return (CAM_REQ_CMP_ERR);
684 
685 	CAM_DEBUG(periph->path, CAM_DEBUG_PROBE, ("Probe started\n"));
686 	scsi_devise_transport(periph->path);
687 
688 	/*
689 	 * Ensure we've waited at least a bus settle
690 	 * delay before attempting to probe the device.
691 	 * For HBAs that don't do bus resets, this won't make a difference.
692 	 */
693 	cam_periph_freeze_after_event(periph, &periph->path->bus->last_reset,
694 				      scsi_delay);
695 	probeschedule(periph);
696 	return(CAM_REQ_CMP);
697 }
698 
699 static void
700 probeschedule(struct cam_periph *periph)
701 {
702 	struct ccb_pathinq cpi;
703 	union ccb *ccb;
704 	probe_softc *softc;
705 
706 	softc = (probe_softc *)periph->softc;
707 	ccb = (union ccb *)TAILQ_FIRST(&softc->request_ccbs);
708 
709 	xpt_path_inq(&cpi, periph->path);
710 
711 	/*
712 	 * If a device has gone away and another device, or the same one,
713 	 * is back in the same place, it should have a unit attention
714 	 * condition pending.  It will not report the unit attention in
715 	 * response to an inquiry, which may leave invalid transfer
716 	 * negotiations in effect.  The TUR will reveal the unit attention
717 	 * condition.  Only send the TUR for lun 0, since some devices
718 	 * will get confused by commands other than inquiry to non-existent
719 	 * luns.  If you think a device has gone away start your scan from
720 	 * lun 0.  This will insure that any bogus transfer settings are
721 	 * invalidated.
722 	 *
723 	 * If we haven't seen the device before and the controller supports
724 	 * some kind of transfer negotiation, negotiate with the first
725 	 * sent command if no bus reset was performed at startup.  This
726 	 * ensures that the device is not confused by transfer negotiation
727 	 * settings left over by loader or BIOS action.
728 	 */
729 	if (((ccb->ccb_h.path->device->flags & CAM_DEV_UNCONFIGURED) == 0)
730 	 && (ccb->ccb_h.target_lun == 0)) {
731 		PROBE_SET_ACTION(softc, PROBE_TUR);
732 	} else if ((cpi.hba_inquiry & (PI_WIDE_32|PI_WIDE_16|PI_SDTR_ABLE)) != 0
733 	      && (cpi.hba_misc & PIM_NOBUSRESET) != 0) {
734 		proberequestdefaultnegotiation(periph);
735 		PROBE_SET_ACTION(softc, PROBE_INQUIRY);
736 	} else {
737 		PROBE_SET_ACTION(softc, PROBE_INQUIRY);
738 	}
739 
740 	if (ccb->crcn.flags & CAM_EXPECT_INQ_CHANGE)
741 		softc->flags |= PROBE_NO_ANNOUNCE;
742 	else
743 		softc->flags &= ~PROBE_NO_ANNOUNCE;
744 
745 	if (cpi.hba_misc & PIM_EXTLUNS)
746 		softc->flags |= PROBE_EXTLUN;
747 	else
748 		softc->flags &= ~PROBE_EXTLUN;
749 
750 	xpt_schedule(periph, CAM_PRIORITY_XPT);
751 }
752 
753 static void
754 probestart(struct cam_periph *periph, union ccb *start_ccb)
755 {
756 	/* Probe the device that our peripheral driver points to */
757 	struct ccb_scsiio *csio;
758 	probe_softc *softc;
759 
760 	CAM_DEBUG(start_ccb->ccb_h.path, CAM_DEBUG_TRACE, ("probestart\n"));
761 
762 	softc = (probe_softc *)periph->softc;
763 	csio = &start_ccb->csio;
764 again:
765 
766 	switch (softc->action) {
767 	case PROBE_TUR:
768 	case PROBE_TUR_FOR_NEGOTIATION:
769 	case PROBE_DV_EXIT:
770 	{
771 		scsi_test_unit_ready(csio,
772 				     /*retries*/4,
773 				     probedone,
774 				     MSG_SIMPLE_Q_TAG,
775 				     SSD_FULL_SIZE,
776 				     /*timeout*/60000);
777 		break;
778 	}
779 	case PROBE_INQUIRY:
780 	case PROBE_FULL_INQUIRY:
781 	case PROBE_INQUIRY_BASIC_DV1:
782 	case PROBE_INQUIRY_BASIC_DV2:
783 	{
784 		u_int inquiry_len;
785 		struct scsi_inquiry_data *inq_buf;
786 
787 		inq_buf = &periph->path->device->inq_data;
788 
789 		/*
790 		 * If the device is currently configured, we calculate an
791 		 * MD5 checksum of the inquiry data, and if the serial number
792 		 * length is greater than 0, add the serial number data
793 		 * into the checksum as well.  Once the inquiry and the
794 		 * serial number check finish, we attempt to figure out
795 		 * whether we still have the same device.
796 		 */
797 		if (((periph->path->device->flags & CAM_DEV_UNCONFIGURED) == 0)
798 		 && ((softc->flags & PROBE_INQUIRY_CKSUM) == 0)) {
799 
800 			MD5Init(&softc->context);
801 			MD5Update(&softc->context, (unsigned char *)inq_buf,
802 				  sizeof(struct scsi_inquiry_data));
803 			softc->flags |= PROBE_INQUIRY_CKSUM;
804 			if (periph->path->device->serial_num_len > 0) {
805 				MD5Update(&softc->context,
806 					  periph->path->device->serial_num,
807 					  periph->path->device->serial_num_len);
808 				softc->flags |= PROBE_SERIAL_CKSUM;
809 			}
810 			MD5Final(softc->digest, &softc->context);
811 		}
812 
813 		if (softc->action == PROBE_INQUIRY)
814 			inquiry_len = SHORT_INQUIRY_LENGTH;
815 		else
816 			inquiry_len = SID_ADDITIONAL_LENGTH(inq_buf);
817 
818 		/*
819 		 * Some parallel SCSI devices fail to send an
820 		 * ignore wide residue message when dealing with
821 		 * odd length inquiry requests.  Round up to be
822 		 * safe.
823 		 */
824 		inquiry_len = roundup2(inquiry_len, 2);
825 
826 		if (softc->action == PROBE_INQUIRY_BASIC_DV1
827 		 || softc->action == PROBE_INQUIRY_BASIC_DV2) {
828 			inq_buf = malloc(inquiry_len, M_CAMXPT, M_NOWAIT);
829 		}
830 		if (inq_buf == NULL) {
831 			xpt_print(periph->path, "malloc failure- skipping Basic"
832 			    "Domain Validation\n");
833 			PROBE_SET_ACTION(softc, PROBE_DV_EXIT);
834 			scsi_test_unit_ready(csio,
835 					     /*retries*/4,
836 					     probedone,
837 					     MSG_SIMPLE_Q_TAG,
838 					     SSD_FULL_SIZE,
839 					     /*timeout*/60000);
840 			break;
841 		}
842 		scsi_inquiry(csio,
843 			     /*retries*/4,
844 			     probedone,
845 			     MSG_SIMPLE_Q_TAG,
846 			     (u_int8_t *)inq_buf,
847 			     inquiry_len,
848 			     /*evpd*/FALSE,
849 			     /*page_code*/0,
850 			     SSD_MIN_SIZE,
851 			     /*timeout*/60 * 1000);
852 		break;
853 	}
854 	case PROBE_REPORT_LUNS:
855 	{
856 		void *rp;
857 
858 		rp = malloc(periph->path->target->rpl_size,
859 		    M_CAMXPT, M_NOWAIT | M_ZERO);
860 		if (rp == NULL) {
861 			struct scsi_inquiry_data *inq_buf;
862 			inq_buf = &periph->path->device->inq_data;
863 			xpt_print(periph->path,
864 			    "Unable to alloc report luns storage\n");
865 			if (INQ_DATA_TQ_ENABLED(inq_buf))
866 				PROBE_SET_ACTION(softc, PROBE_MODE_SENSE);
867 			else
868 				PROBE_SET_ACTION(softc,
869 				    PROBE_SUPPORTED_VPD_LIST);
870 			goto again;
871 		}
872 		scsi_report_luns(csio, 5, probedone, MSG_SIMPLE_Q_TAG,
873 		    RPL_REPORT_DEFAULT, rp, periph->path->target->rpl_size,
874 		    SSD_FULL_SIZE, 60000); break;
875 		break;
876 	}
877 	case PROBE_MODE_SENSE:
878 	{
879 		void  *mode_buf;
880 		int    mode_buf_len;
881 
882 		mode_buf_len = sizeof(struct scsi_mode_header_6)
883 			     + sizeof(struct scsi_mode_blk_desc)
884 			     + sizeof(struct scsi_control_page);
885 		mode_buf = malloc(mode_buf_len, M_CAMXPT, M_NOWAIT);
886 		if (mode_buf != NULL) {
887 	                scsi_mode_sense(csio,
888 					/*retries*/4,
889 					probedone,
890 					MSG_SIMPLE_Q_TAG,
891 					/*dbd*/FALSE,
892 					SMS_PAGE_CTRL_CURRENT,
893 					SMS_CONTROL_MODE_PAGE,
894 					mode_buf,
895 					mode_buf_len,
896 					SSD_FULL_SIZE,
897 					/*timeout*/60000);
898 			break;
899 		}
900 		xpt_print(periph->path, "Unable to mode sense control page - "
901 		    "malloc failure\n");
902 		PROBE_SET_ACTION(softc, PROBE_SUPPORTED_VPD_LIST);
903 	}
904 	/* FALLTHROUGH */
905 	case PROBE_SUPPORTED_VPD_LIST:
906 	{
907 		struct scsi_vpd_supported_page_list *vpd_list;
908 		struct cam_ed *device;
909 
910 		vpd_list = NULL;
911 		device = periph->path->device;
912 
913 		if ((SCSI_QUIRK(device)->quirks & CAM_QUIRK_NOVPDS) == 0)
914 			vpd_list = malloc(sizeof(*vpd_list), M_CAMXPT,
915 			    M_NOWAIT | M_ZERO);
916 
917 		if (vpd_list != NULL) {
918 			scsi_inquiry(csio,
919 				     /*retries*/4,
920 				     probedone,
921 				     MSG_SIMPLE_Q_TAG,
922 				     (u_int8_t *)vpd_list,
923 				     sizeof(*vpd_list),
924 				     /*evpd*/TRUE,
925 				     SVPD_SUPPORTED_PAGE_LIST,
926 				     SSD_MIN_SIZE,
927 				     /*timeout*/60 * 1000);
928 			break;
929 		}
930 done:
931 		/*
932 		 * We'll have to do without, let our probedone
933 		 * routine finish up for us.
934 		 */
935 		start_ccb->csio.data_ptr = NULL;
936 		cam_freeze_devq(periph->path);
937 		cam_periph_doacquire(periph);
938 		probedone(periph, start_ccb);
939 		return;
940 	}
941 	case PROBE_DEVICE_ID:
942 	{
943 		struct scsi_vpd_device_id *devid;
944 
945 		devid = NULL;
946 		if (scsi_vpd_supported_page(periph, SVPD_DEVICE_ID))
947 			devid = malloc(SVPD_DEVICE_ID_MAX_SIZE, M_CAMXPT,
948 			    M_NOWAIT | M_ZERO);
949 
950 		if (devid != NULL) {
951 			scsi_inquiry(csio,
952 				     /*retries*/4,
953 				     probedone,
954 				     MSG_SIMPLE_Q_TAG,
955 				     (uint8_t *)devid,
956 				     SVPD_DEVICE_ID_MAX_SIZE,
957 				     /*evpd*/TRUE,
958 				     SVPD_DEVICE_ID,
959 				     SSD_MIN_SIZE,
960 				     /*timeout*/60 * 1000);
961 			break;
962 		}
963 		goto done;
964 	}
965 	case PROBE_EXTENDED_INQUIRY:
966 	{
967 		struct scsi_vpd_extended_inquiry_data *ext_inq;
968 
969 		ext_inq = NULL;
970 		if (scsi_vpd_supported_page(periph, SVPD_EXTENDED_INQUIRY_DATA))
971 			ext_inq = malloc(sizeof(*ext_inq), M_CAMXPT,
972 			    M_NOWAIT | M_ZERO);
973 
974 		if (ext_inq != NULL) {
975 			scsi_inquiry(csio,
976 				     /*retries*/4,
977 				     probedone,
978 				     MSG_SIMPLE_Q_TAG,
979 				     (uint8_t *)ext_inq,
980 				     sizeof(*ext_inq),
981 				     /*evpd*/TRUE,
982 				     SVPD_EXTENDED_INQUIRY_DATA,
983 				     SSD_MIN_SIZE,
984 				     /*timeout*/60 * 1000);
985 			break;
986 		}
987 		/*
988 		 * We'll have to do without, let our probedone
989 		 * routine finish up for us.
990 		 */
991 		goto done;
992 	}
993 	case PROBE_SERIAL_NUM:
994 	{
995 		struct scsi_vpd_unit_serial_number *serial_buf;
996 		struct cam_ed* device;
997 
998 		serial_buf = NULL;
999 		device = periph->path->device;
1000 		if (device->serial_num != NULL) {
1001 			free(device->serial_num, M_CAMXPT);
1002 			device->serial_num = NULL;
1003 			device->serial_num_len = 0;
1004 		}
1005 
1006 		if (scsi_vpd_supported_page(periph, SVPD_UNIT_SERIAL_NUMBER))
1007 			serial_buf = (struct scsi_vpd_unit_serial_number *)
1008 				malloc(sizeof(*serial_buf), M_CAMXPT,
1009 				    M_NOWAIT|M_ZERO);
1010 
1011 		if (serial_buf != NULL) {
1012 			scsi_inquiry(csio,
1013 				     /*retries*/4,
1014 				     probedone,
1015 				     MSG_SIMPLE_Q_TAG,
1016 				     (u_int8_t *)serial_buf,
1017 				     sizeof(*serial_buf),
1018 				     /*evpd*/TRUE,
1019 				     SVPD_UNIT_SERIAL_NUMBER,
1020 				     SSD_MIN_SIZE,
1021 				     /*timeout*/60 * 1000);
1022 			break;
1023 		}
1024 		goto done;
1025 	}
1026 	default:
1027 		panic("probestart: invalid action state 0x%x\n", softc->action);
1028 	}
1029 	start_ccb->ccb_h.flags |= CAM_DEV_QFREEZE;
1030 	cam_periph_doacquire(periph);
1031 	xpt_action(start_ccb);
1032 }
1033 
1034 static void
1035 proberequestdefaultnegotiation(struct cam_periph *periph)
1036 {
1037 	struct ccb_trans_settings cts;
1038 
1039 	xpt_setup_ccb(&cts.ccb_h, periph->path, CAM_PRIORITY_NONE);
1040 	cts.ccb_h.func_code = XPT_GET_TRAN_SETTINGS;
1041 	cts.type = CTS_TYPE_USER_SETTINGS;
1042 	xpt_action((union ccb *)&cts);
1043 	if (cam_ccb_status((union ccb *)&cts) != CAM_REQ_CMP) {
1044 		return;
1045 	}
1046 	cts.ccb_h.func_code = XPT_SET_TRAN_SETTINGS;
1047 	cts.type = CTS_TYPE_CURRENT_SETTINGS;
1048 	xpt_action((union ccb *)&cts);
1049 }
1050 
1051 /*
1052  * Backoff Negotiation Code- only pertinent for SPI devices.
1053  */
1054 static int
1055 proberequestbackoff(struct cam_periph *periph, struct cam_ed *device)
1056 {
1057 	struct ccb_trans_settings cts;
1058 	struct ccb_trans_settings_spi *spi;
1059 
1060 	memset(&cts, 0, sizeof (cts));
1061 	xpt_setup_ccb(&cts.ccb_h, periph->path, CAM_PRIORITY_NONE);
1062 	cts.ccb_h.func_code = XPT_GET_TRAN_SETTINGS;
1063 	cts.type = CTS_TYPE_CURRENT_SETTINGS;
1064 	xpt_action((union ccb *)&cts);
1065 	if (cam_ccb_status((union ccb *)&cts) != CAM_REQ_CMP) {
1066 		if (bootverbose) {
1067 			xpt_print(periph->path,
1068 			    "failed to get current device settings\n");
1069 		}
1070 		return (0);
1071 	}
1072 	if (cts.transport != XPORT_SPI) {
1073 		if (bootverbose) {
1074 			xpt_print(periph->path, "not SPI transport\n");
1075 		}
1076 		return (0);
1077 	}
1078 	spi = &cts.xport_specific.spi;
1079 
1080 	/*
1081 	 * We cannot renegotiate sync rate if we don't have one.
1082 	 */
1083 	if ((spi->valid & CTS_SPI_VALID_SYNC_RATE) == 0) {
1084 		if (bootverbose) {
1085 			xpt_print(periph->path, "no sync rate known\n");
1086 		}
1087 		return (0);
1088 	}
1089 
1090 	/*
1091 	 * We'll assert that we don't have to touch PPR options- the
1092 	 * SIM will see what we do with period and offset and adjust
1093 	 * the PPR options as appropriate.
1094 	 */
1095 
1096 	/*
1097 	 * A sync rate with unknown or zero offset is nonsensical.
1098 	 * A sync period of zero means Async.
1099 	 */
1100 	if ((spi->valid & CTS_SPI_VALID_SYNC_OFFSET) == 0
1101 	 || spi->sync_offset == 0 || spi->sync_period == 0) {
1102 		if (bootverbose) {
1103 			xpt_print(periph->path, "no sync rate available\n");
1104 		}
1105 		return (0);
1106 	}
1107 
1108 	if (device->flags & CAM_DEV_DV_HIT_BOTTOM) {
1109 		CAM_DEBUG(periph->path, CAM_DEBUG_PROBE,
1110 		    ("hit async: giving up on DV\n"));
1111 		return (0);
1112 	}
1113 
1114 
1115 	/*
1116 	 * Jump sync_period up by one, but stop at 5MHz and fall back to Async.
1117 	 * We don't try to remember 'last' settings to see if the SIM actually
1118 	 * gets into the speed we want to set. We check on the SIM telling
1119 	 * us that a requested speed is bad, but otherwise don't try and
1120 	 * check the speed due to the asynchronous and handshake nature
1121 	 * of speed setting.
1122 	 */
1123 	spi->valid = CTS_SPI_VALID_SYNC_RATE | CTS_SPI_VALID_SYNC_OFFSET;
1124 	for (;;) {
1125 		spi->sync_period++;
1126 		if (spi->sync_period >= 0xf) {
1127 			spi->sync_period = 0;
1128 			spi->sync_offset = 0;
1129 			CAM_DEBUG(periph->path, CAM_DEBUG_PROBE,
1130 			    ("setting to async for DV\n"));
1131 			/*
1132 			 * Once we hit async, we don't want to try
1133 			 * any more settings.
1134 			 */
1135 			device->flags |= CAM_DEV_DV_HIT_BOTTOM;
1136 		} else if (bootverbose) {
1137 			CAM_DEBUG(periph->path, CAM_DEBUG_PROBE,
1138 			    ("DV: period 0x%x\n", spi->sync_period));
1139 			printf("setting period to 0x%x\n", spi->sync_period);
1140 		}
1141 		cts.ccb_h.func_code = XPT_SET_TRAN_SETTINGS;
1142 		cts.type = CTS_TYPE_CURRENT_SETTINGS;
1143 		xpt_action((union ccb *)&cts);
1144 		if (cam_ccb_status((union ccb *)&cts) != CAM_REQ_CMP) {
1145 			break;
1146 		}
1147 		CAM_DEBUG(periph->path, CAM_DEBUG_PROBE,
1148 		    ("DV: failed to set period 0x%x\n", spi->sync_period));
1149 		if (spi->sync_period == 0) {
1150 			return (0);
1151 		}
1152 	}
1153 	return (1);
1154 }
1155 
1156 #define CCB_COMPLETED_OK(ccb) (((ccb).status & CAM_STATUS_MASK) == CAM_REQ_CMP)
1157 
1158 static void
1159 probedone(struct cam_periph *periph, union ccb *done_ccb)
1160 {
1161 	probe_softc *softc;
1162 	struct cam_path *path;
1163 	struct scsi_inquiry_data *inq_buf;
1164 	u_int32_t  priority;
1165 
1166 	CAM_DEBUG(done_ccb->ccb_h.path, CAM_DEBUG_TRACE, ("probedone\n"));
1167 
1168 	softc = (probe_softc *)periph->softc;
1169 	path = done_ccb->ccb_h.path;
1170 	priority = done_ccb->ccb_h.pinfo.priority;
1171 	cam_periph_assert(periph, MA_OWNED);
1172 
1173 	switch (softc->action) {
1174 	case PROBE_TUR:
1175 	{
1176 		if (cam_ccb_status(done_ccb) != CAM_REQ_CMP) {
1177 
1178 			if (cam_periph_error(done_ccb, 0, SF_NO_PRINT) ==
1179 			    ERESTART) {
1180 outr:
1181 				/* Drop freeze taken due to CAM_DEV_QFREEZE */
1182 				cam_release_devq(path, 0, 0, 0, FALSE);
1183 				return;
1184 			}
1185 			else if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0)
1186 				/* Don't wedge the queue */
1187 				xpt_release_devq(done_ccb->ccb_h.path,
1188 						 /*count*/1,
1189 						 /*run_queue*/TRUE);
1190 		}
1191 		PROBE_SET_ACTION(softc, PROBE_INQUIRY);
1192 		xpt_release_ccb(done_ccb);
1193 		xpt_schedule(periph, priority);
1194 out:
1195 		/* Drop freeze taken due to CAM_DEV_QFREEZE and release. */
1196 		cam_release_devq(path, 0, 0, 0, FALSE);
1197 		cam_periph_release_locked(periph);
1198 		return;
1199 	}
1200 	case PROBE_INQUIRY:
1201 	case PROBE_FULL_INQUIRY:
1202 	{
1203 		if (cam_ccb_status(done_ccb) == CAM_REQ_CMP) {
1204 			u_int8_t periph_qual;
1205 
1206 			path->device->flags |= CAM_DEV_INQUIRY_DATA_VALID;
1207 			scsi_find_quirk(path->device);
1208 			inq_buf = &path->device->inq_data;
1209 
1210 			periph_qual = SID_QUAL(inq_buf);
1211 
1212 			if (periph_qual == SID_QUAL_LU_CONNECTED ||
1213 			    periph_qual == SID_QUAL_LU_OFFLINE) {
1214 				u_int8_t len;
1215 
1216 				/*
1217 				 * We conservatively request only
1218 				 * SHORT_INQUIRY_LEN bytes of inquiry
1219 				 * information during our first try
1220 				 * at sending an INQUIRY. If the device
1221 				 * has more information to give,
1222 				 * perform a second request specifying
1223 				 * the amount of information the device
1224 				 * is willing to give.
1225 				 */
1226 				len = inq_buf->additional_length
1227 				    + offsetof(struct scsi_inquiry_data,
1228                                                additional_length) + 1;
1229 				if (softc->action == PROBE_INQUIRY
1230 				    && len > SHORT_INQUIRY_LENGTH) {
1231 					PROBE_SET_ACTION(softc, PROBE_FULL_INQUIRY);
1232 					xpt_release_ccb(done_ccb);
1233 					xpt_schedule(periph, priority);
1234 					goto out;
1235 				}
1236 
1237 				scsi_devise_transport(path);
1238 
1239 				if (path->device->lun_id == 0 &&
1240 				    SID_ANSI_REV(inq_buf) > SCSI_REV_SPC2 &&
1241 				    (SCSI_QUIRK(path->device)->quirks &
1242 				     CAM_QUIRK_NORPTLUNS) == 0) {
1243 					PROBE_SET_ACTION(softc,
1244 					    PROBE_REPORT_LUNS);
1245 					/*
1246 					 * Start with room for *one* lun.
1247 					 */
1248 					periph->path->target->rpl_size = 16;
1249 				} else if (INQ_DATA_TQ_ENABLED(inq_buf))
1250 					PROBE_SET_ACTION(softc,
1251 					    PROBE_MODE_SENSE);
1252 				else
1253 					PROBE_SET_ACTION(softc,
1254 					    PROBE_SUPPORTED_VPD_LIST);
1255 
1256 				if (path->device->flags & CAM_DEV_UNCONFIGURED) {
1257 					path->device->flags &= ~CAM_DEV_UNCONFIGURED;
1258 					xpt_acquire_device(path->device);
1259 				}
1260 				xpt_release_ccb(done_ccb);
1261 				xpt_schedule(periph, priority);
1262 				goto out;
1263 			} else if (path->device->lun_id == 0 &&
1264 			    SID_ANSI_REV(inq_buf) >= SCSI_REV_SPC2 &&
1265 			    (SCSI_QUIRK(path->device)->quirks &
1266 			     CAM_QUIRK_NORPTLUNS) == 0) {
1267 				PROBE_SET_ACTION(softc, PROBE_REPORT_LUNS);
1268 				periph->path->target->rpl_size = 16;
1269 				xpt_release_ccb(done_ccb);
1270 				xpt_schedule(periph, priority);
1271 				goto out;
1272 			}
1273 		} else if (cam_periph_error(done_ccb, 0,
1274 					    done_ccb->ccb_h.target_lun > 0
1275 					    ? SF_RETRY_UA|SF_QUIET_IR
1276 					    : SF_RETRY_UA) == ERESTART) {
1277 			goto outr;
1278 		} else {
1279 			if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) {
1280 				/* Don't wedge the queue */
1281 				xpt_release_devq(done_ccb->ccb_h.path,
1282 				    /*count*/1, /*run_queue*/TRUE);
1283 			}
1284 			path->device->flags &= ~CAM_DEV_INQUIRY_DATA_VALID;
1285 		}
1286 		/*
1287 		 * If we get to this point, we got an error status back
1288 		 * from the inquiry and the error status doesn't require
1289 		 * automatically retrying the command.  Therefore, the
1290 		 * inquiry failed.  If we had inquiry information before
1291 		 * for this device, but this latest inquiry command failed,
1292 		 * the device has probably gone away.  If this device isn't
1293 		 * already marked unconfigured, notify the peripheral
1294 		 * drivers that this device is no more.
1295 		 */
1296 		if ((path->device->flags & CAM_DEV_UNCONFIGURED) == 0)
1297 			/* Send the async notification. */
1298 			xpt_async(AC_LOST_DEVICE, path, NULL);
1299 		PROBE_SET_ACTION(softc, PROBE_INVALID);
1300 
1301 		xpt_release_ccb(done_ccb);
1302 		break;
1303 	}
1304 	case PROBE_REPORT_LUNS:
1305 	{
1306 		struct ccb_scsiio *csio;
1307 		struct scsi_report_luns_data *lp;
1308 		u_int nlun, maxlun;
1309 
1310 		csio = &done_ccb->csio;
1311 
1312 		lp = (struct scsi_report_luns_data *)csio->data_ptr;
1313 		nlun = scsi_4btoul(lp->length) / 8;
1314 		maxlun = (csio->dxfer_len / 8) - 1;
1315 
1316 		if (cam_ccb_status(done_ccb) != CAM_REQ_CMP) {
1317 			if (cam_periph_error(done_ccb, 0,
1318 				done_ccb->ccb_h.target_lun > 0 ?
1319 				SF_RETRY_UA|SF_QUIET_IR : SF_RETRY_UA) ==
1320 			    ERESTART) {
1321 				goto outr;
1322 			}
1323 			if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) {
1324 				xpt_release_devq(done_ccb->ccb_h.path, 1,
1325 				    TRUE);
1326 			}
1327 			free(lp, M_CAMXPT);
1328 			lp = NULL;
1329 		} else if (nlun > maxlun) {
1330 			/*
1331 			 * Reallocate and retry to cover all luns
1332 			 */
1333 			CAM_DEBUG(path, CAM_DEBUG_PROBE,
1334 			    ("Probe: reallocating REPORT_LUNS for %u luns\n",
1335 			     nlun));
1336 			free(lp, M_CAMXPT);
1337 			path->target->rpl_size = (nlun << 3) + 8;
1338 			xpt_release_ccb(done_ccb);
1339 			xpt_schedule(periph, priority);
1340 			goto out;
1341 		} else if (nlun == 0) {
1342 			/*
1343 			 * If there don't appear to be any luns, bail.
1344 			 */
1345 			free(lp, M_CAMXPT);
1346 			lp = NULL;
1347 		} else {
1348 			lun_id_t lun;
1349 			int idx;
1350 
1351 			CAM_DEBUG(path, CAM_DEBUG_PROBE,
1352 			   ("Probe: %u lun(s) reported\n", nlun));
1353 
1354 			CAM_GET_LUN(lp, 0, lun);
1355 			/*
1356 			 * If the first lun is not lun 0, then either there
1357 			 * is no lun 0 in the list, or the list is unsorted.
1358 			 */
1359 			if (lun != 0) {
1360 				for (idx = 0; idx < nlun; idx++) {
1361 					CAM_GET_LUN(lp, idx, lun);
1362 					if (lun == 0) {
1363 						break;
1364 					}
1365 				}
1366 				if (idx != nlun) {
1367 					uint8_t tlun[8];
1368 					memcpy(tlun,
1369 					    lp->luns[0].lundata, 8);
1370 					memcpy(lp->luns[0].lundata,
1371 					    lp->luns[idx].lundata, 8);
1372 					memcpy(lp->luns[idx].lundata,
1373 					    tlun, 8);
1374 					CAM_DEBUG(path, CAM_DEBUG_PROBE,
1375 					    ("lun 0 in position %u\n", idx));
1376 				}
1377 			}
1378 			/*
1379 			 * If we have an old lun list, We can either
1380 			 * retest luns that appear to have been dropped,
1381 			 * or just nuke them.  We'll opt for the latter.
1382 			 * This function will also install the new list
1383 			 * in the target structure.
1384 			 */
1385 			probe_purge_old(path, lp, softc->flags);
1386 			lp = NULL;
1387 		}
1388 		inq_buf = &path->device->inq_data;
1389 		if (path->device->flags & CAM_DEV_INQUIRY_DATA_VALID &&
1390 		    (SID_QUAL(inq_buf) == SID_QUAL_LU_CONNECTED ||
1391 		    SID_QUAL(inq_buf) == SID_QUAL_LU_OFFLINE)) {
1392 			if (INQ_DATA_TQ_ENABLED(inq_buf))
1393 				PROBE_SET_ACTION(softc, PROBE_MODE_SENSE);
1394 			else
1395 				PROBE_SET_ACTION(softc,
1396 				    PROBE_SUPPORTED_VPD_LIST);
1397 			xpt_release_ccb(done_ccb);
1398 			xpt_schedule(periph, priority);
1399 			goto out;
1400 		}
1401 		if (lp) {
1402 			free(lp, M_CAMXPT);
1403 		}
1404 		PROBE_SET_ACTION(softc, PROBE_INVALID);
1405 		xpt_release_ccb(done_ccb);
1406 		break;
1407 	}
1408 	case PROBE_MODE_SENSE:
1409 	{
1410 		struct ccb_scsiio *csio;
1411 		struct scsi_mode_header_6 *mode_hdr;
1412 
1413 		csio = &done_ccb->csio;
1414 		mode_hdr = (struct scsi_mode_header_6 *)csio->data_ptr;
1415 		if (cam_ccb_status(done_ccb) == CAM_REQ_CMP) {
1416 			struct scsi_control_page *page;
1417 			u_int8_t *offset;
1418 
1419 			offset = ((u_int8_t *)&mode_hdr[1])
1420 			    + mode_hdr->blk_desc_len;
1421 			page = (struct scsi_control_page *)offset;
1422 			path->device->queue_flags = page->queue_flags;
1423 		} else if (cam_periph_error(done_ccb, 0,
1424 			SF_RETRY_UA|SF_NO_PRINT) == ERESTART) {
1425 			goto outr;
1426 		} else if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) {
1427 			/* Don't wedge the queue */
1428 			xpt_release_devq(done_ccb->ccb_h.path,
1429 					 /*count*/1, /*run_queue*/TRUE);
1430 		}
1431 		xpt_release_ccb(done_ccb);
1432 		free(mode_hdr, M_CAMXPT);
1433 		PROBE_SET_ACTION(softc, PROBE_SUPPORTED_VPD_LIST);
1434 		xpt_schedule(periph, priority);
1435 		goto out;
1436 	}
1437 	case PROBE_SUPPORTED_VPD_LIST:
1438 	{
1439 		struct ccb_scsiio *csio;
1440 		struct scsi_vpd_supported_page_list *page_list;
1441 
1442 		csio = &done_ccb->csio;
1443 		page_list =
1444 		    (struct scsi_vpd_supported_page_list *)csio->data_ptr;
1445 
1446 		if (path->device->supported_vpds != NULL) {
1447 			free(path->device->supported_vpds, M_CAMXPT);
1448 			path->device->supported_vpds = NULL;
1449 			path->device->supported_vpds_len = 0;
1450 		}
1451 
1452 		if (page_list == NULL) {
1453 			/*
1454 			 * Don't process the command as it was never sent
1455 			 */
1456 		} else if (CCB_COMPLETED_OK(csio->ccb_h)) {
1457 			/* Got vpd list */
1458 			path->device->supported_vpds_len = page_list->length +
1459 			    SVPD_SUPPORTED_PAGES_HDR_LEN;
1460 			path->device->supported_vpds = (uint8_t *)page_list;
1461 			xpt_release_ccb(done_ccb);
1462 			PROBE_SET_ACTION(softc, PROBE_DEVICE_ID);
1463 			xpt_schedule(periph, priority);
1464 			goto out;
1465 		} else if (cam_periph_error(done_ccb, 0,
1466 			SF_RETRY_UA|SF_NO_PRINT) == ERESTART) {
1467 			goto outr;
1468 		} else if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) {
1469 			/* Don't wedge the queue */
1470 			xpt_release_devq(done_ccb->ccb_h.path, /*count*/1,
1471 					 /*run_queue*/TRUE);
1472 		}
1473 
1474 		if (page_list)
1475 			free(page_list, M_CAMXPT);
1476 		/* No VPDs available, skip to device check. */
1477 		csio->data_ptr = NULL;
1478 		goto probe_device_check;
1479 	}
1480 	case PROBE_DEVICE_ID:
1481 	{
1482 		struct scsi_vpd_device_id *devid;
1483 		struct ccb_scsiio *csio;
1484 		uint32_t length = 0;
1485 
1486 		csio = &done_ccb->csio;
1487 		devid = (struct scsi_vpd_device_id *)csio->data_ptr;
1488 
1489 		/* Clean up from previous instance of this device */
1490 		if (path->device->device_id != NULL) {
1491 			path->device->device_id_len = 0;
1492 			free(path->device->device_id, M_CAMXPT);
1493 			path->device->device_id = NULL;
1494 		}
1495 
1496 		if (devid == NULL) {
1497 			/* Don't process the command as it was never sent */
1498 		} else if (CCB_COMPLETED_OK(csio->ccb_h)) {
1499 			length = scsi_2btoul(devid->length);
1500 			if (length != 0) {
1501 				/*
1502 				 * NB: device_id_len is actual response
1503 				 * size, not buffer size.
1504 				 */
1505 				path->device->device_id_len = length +
1506 				    SVPD_DEVICE_ID_HDR_LEN;
1507 				path->device->device_id = (uint8_t *)devid;
1508 			}
1509 		} else if (cam_periph_error(done_ccb, 0,
1510 			SF_RETRY_UA) == ERESTART) {
1511 			goto outr;
1512 		} else if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) {
1513 			/* Don't wedge the queue */
1514 			xpt_release_devq(done_ccb->ccb_h.path, /*count*/1,
1515 					 /*run_queue*/TRUE);
1516 		}
1517 
1518 		/* Free the device id space if we don't use it */
1519 		if (devid && length == 0)
1520 			free(devid, M_CAMXPT);
1521 		xpt_release_ccb(done_ccb);
1522 		PROBE_SET_ACTION(softc, PROBE_EXTENDED_INQUIRY);
1523 		xpt_schedule(periph, priority);
1524 		goto out;
1525 	}
1526 	case PROBE_EXTENDED_INQUIRY: {
1527 		struct scsi_vpd_extended_inquiry_data *ext_inq;
1528 		struct ccb_scsiio *csio;
1529 		int32_t length = 0;
1530 
1531 		csio = &done_ccb->csio;
1532 		ext_inq = (struct scsi_vpd_extended_inquiry_data *)
1533 		    csio->data_ptr;
1534 		if (path->device->ext_inq != NULL) {
1535 			path->device->ext_inq_len = 0;
1536 			free(path->device->ext_inq, M_CAMXPT);
1537 			path->device->ext_inq = NULL;
1538 		}
1539 
1540 		if (ext_inq == NULL) {
1541 			/* Don't process the command as it was never sent */
1542 		} else if (CCB_COMPLETED_OK(csio->ccb_h)) {
1543 			length = scsi_2btoul(ext_inq->page_length) +
1544 			    __offsetof(struct scsi_vpd_extended_inquiry_data,
1545 			    flags1);
1546 			length = min(length, sizeof(*ext_inq));
1547 			length -= csio->resid;
1548 			if (length > 0) {
1549 				path->device->ext_inq_len = length;
1550 				path->device->ext_inq = (uint8_t *)ext_inq;
1551 			}
1552 		} else if (cam_periph_error(done_ccb, 0, SF_RETRY_UA) ==
1553 		    ERESTART) {
1554 			goto outr;
1555 		} else if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) {
1556 			/* Don't wedge the queue */
1557 			xpt_release_devq(done_ccb->ccb_h.path, /*count*/1,
1558 					 /*run_queue*/TRUE);
1559 		}
1560 
1561 		/* Free the device id space if we don't use it */
1562 		if (ext_inq && length <= 0)
1563 			free(ext_inq, M_CAMXPT);
1564 		xpt_release_ccb(done_ccb);
1565 		PROBE_SET_ACTION(softc, PROBE_SERIAL_NUM);
1566 		xpt_schedule(periph, priority);
1567 		goto out;
1568 	}
1569 
1570 probe_device_check:
1571 	case PROBE_SERIAL_NUM:
1572 	{
1573 		struct ccb_scsiio *csio;
1574 		struct scsi_vpd_unit_serial_number *serial_buf;
1575 		u_int32_t  priority;
1576 		int changed;
1577 		int have_serialnum;
1578 
1579 		changed = 1;
1580 		have_serialnum = 0;
1581 		csio = &done_ccb->csio;
1582 		priority = done_ccb->ccb_h.pinfo.priority;
1583 		serial_buf =
1584 		    (struct scsi_vpd_unit_serial_number *)csio->data_ptr;
1585 
1586 		if (serial_buf == NULL) {
1587 			/*
1588 			 * Don't process the command as it was never sent
1589 			 */
1590 		} else if (cam_ccb_status(done_ccb) == CAM_REQ_CMP
1591 			&& (serial_buf->length > 0)) {
1592 
1593 			have_serialnum = 1;
1594 			path->device->serial_num =
1595 				(u_int8_t *)malloc((serial_buf->length + 1),
1596 						   M_CAMXPT, M_NOWAIT);
1597 			if (path->device->serial_num != NULL) {
1598 				int start, slen;
1599 
1600 				start = strspn(serial_buf->serial_num, " ");
1601 				slen = serial_buf->length - start;
1602 				if (slen <= 0) {
1603 					/*
1604 					 * SPC5r05 says that an all-space serial
1605 					 * number means no product serial number
1606 					 * is available
1607 					 */
1608 					slen = 0;
1609 				}
1610 				memcpy(path->device->serial_num,
1611 				       &serial_buf->serial_num[start], slen);
1612 				path->device->serial_num_len = slen;
1613 				path->device->serial_num[slen] = '\0';
1614 			}
1615 		} else if (cam_periph_error(done_ccb, 0,
1616 			SF_RETRY_UA|SF_NO_PRINT) == ERESTART) {
1617 			goto outr;
1618 		} else if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) {
1619 			/* Don't wedge the queue */
1620 			xpt_release_devq(done_ccb->ccb_h.path, /*count*/1,
1621 					 /*run_queue*/TRUE);
1622 		}
1623 
1624 		/*
1625 		 * Let's see if we have seen this device before.
1626 		 */
1627 		if ((softc->flags & PROBE_INQUIRY_CKSUM) != 0) {
1628 			MD5_CTX context;
1629 			u_int8_t digest[16];
1630 
1631 			MD5Init(&context);
1632 
1633 			MD5Update(&context,
1634 				  (unsigned char *)&path->device->inq_data,
1635 				  sizeof(struct scsi_inquiry_data));
1636 
1637 			if (have_serialnum)
1638 				MD5Update(&context, path->device->serial_num,
1639 					  path->device->serial_num_len);
1640 
1641 			MD5Final(digest, &context);
1642 			if (bcmp(softc->digest, digest, 16) == 0)
1643 				changed = 0;
1644 
1645 			/*
1646 			 * XXX Do we need to do a TUR in order to ensure
1647 			 *     that the device really hasn't changed???
1648 			 */
1649 			if ((changed != 0)
1650 			 && ((softc->flags & PROBE_NO_ANNOUNCE) == 0))
1651 				xpt_async(AC_LOST_DEVICE, path, NULL);
1652 		}
1653 		if (serial_buf != NULL)
1654 			free(serial_buf, M_CAMXPT);
1655 
1656 		if (changed != 0) {
1657 			/*
1658 			 * Now that we have all the necessary
1659 			 * information to safely perform transfer
1660 			 * negotiations... Controllers don't perform
1661 			 * any negotiation or tagged queuing until
1662 			 * after the first XPT_SET_TRAN_SETTINGS ccb is
1663 			 * received.  So, on a new device, just retrieve
1664 			 * the user settings, and set them as the current
1665 			 * settings to set the device up.
1666 			 */
1667 			proberequestdefaultnegotiation(periph);
1668 			xpt_release_ccb(done_ccb);
1669 
1670 			/*
1671 			 * Perform a TUR to allow the controller to
1672 			 * perform any necessary transfer negotiation.
1673 			 */
1674 			PROBE_SET_ACTION(softc, PROBE_TUR_FOR_NEGOTIATION);
1675 			xpt_schedule(periph, priority);
1676 			goto out;
1677 		}
1678 		xpt_release_ccb(done_ccb);
1679 		break;
1680 	}
1681 	case PROBE_TUR_FOR_NEGOTIATION:
1682 	case PROBE_DV_EXIT:
1683 		if (cam_ccb_status(done_ccb) != CAM_REQ_CMP) {
1684 			cam_periph_error(done_ccb, 0,
1685 			    SF_NO_PRINT | SF_NO_RECOVERY | SF_NO_RETRY);
1686 		}
1687 		if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) {
1688 			/* Don't wedge the queue */
1689 			xpt_release_devq(done_ccb->ccb_h.path, /*count*/1,
1690 					 /*run_queue*/TRUE);
1691 		}
1692 		/*
1693 		 * Do Domain Validation for lun 0 on devices that claim
1694 		 * to support Synchronous Transfer modes.
1695 		 */
1696 	 	if (softc->action == PROBE_TUR_FOR_NEGOTIATION
1697 		 && done_ccb->ccb_h.target_lun == 0
1698 		 && (path->device->inq_data.flags & SID_Sync) != 0
1699                  && (path->device->flags & CAM_DEV_IN_DV) == 0) {
1700 			CAM_DEBUG(periph->path, CAM_DEBUG_PROBE,
1701 			    ("Begin Domain Validation\n"));
1702 			path->device->flags |= CAM_DEV_IN_DV;
1703 			xpt_release_ccb(done_ccb);
1704 			PROBE_SET_ACTION(softc, PROBE_INQUIRY_BASIC_DV1);
1705 			xpt_schedule(periph, priority);
1706 			goto out;
1707 		}
1708 		if (softc->action == PROBE_DV_EXIT) {
1709 			CAM_DEBUG(periph->path, CAM_DEBUG_PROBE,
1710 			    ("Leave Domain Validation\n"));
1711 		}
1712 		if (path->device->flags & CAM_DEV_UNCONFIGURED) {
1713 			path->device->flags &= ~CAM_DEV_UNCONFIGURED;
1714 			xpt_acquire_device(path->device);
1715 		}
1716 		path->device->flags &=
1717 		    ~(CAM_DEV_IN_DV|CAM_DEV_DV_HIT_BOTTOM);
1718 		if ((softc->flags & PROBE_NO_ANNOUNCE) == 0) {
1719 			/* Inform the XPT that a new device has been found */
1720 			done_ccb->ccb_h.func_code = XPT_GDEV_TYPE;
1721 			xpt_action(done_ccb);
1722 			xpt_async(AC_FOUND_DEVICE, done_ccb->ccb_h.path,
1723 				  done_ccb);
1724 		}
1725 		PROBE_SET_ACTION(softc, PROBE_DONE);
1726 		xpt_release_ccb(done_ccb);
1727 		break;
1728 	case PROBE_INQUIRY_BASIC_DV1:
1729 	case PROBE_INQUIRY_BASIC_DV2:
1730 	{
1731 		struct scsi_inquiry_data *nbuf;
1732 		struct ccb_scsiio *csio;
1733 
1734 		if (cam_ccb_status(done_ccb) != CAM_REQ_CMP) {
1735 			cam_periph_error(done_ccb, 0,
1736 			    SF_NO_PRINT | SF_NO_RECOVERY | SF_NO_RETRY);
1737 		}
1738 		if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) {
1739 			/* Don't wedge the queue */
1740 			xpt_release_devq(done_ccb->ccb_h.path, /*count*/1,
1741 					 /*run_queue*/TRUE);
1742 		}
1743 		csio = &done_ccb->csio;
1744 		nbuf = (struct scsi_inquiry_data *)csio->data_ptr;
1745 		if (bcmp(nbuf, &path->device->inq_data, SHORT_INQUIRY_LENGTH)) {
1746 			xpt_print(path,
1747 			    "inquiry data fails comparison at DV%d step\n",
1748 			    softc->action == PROBE_INQUIRY_BASIC_DV1 ? 1 : 2);
1749 			if (proberequestbackoff(periph, path->device)) {
1750 				path->device->flags &= ~CAM_DEV_IN_DV;
1751 				PROBE_SET_ACTION(softc, PROBE_TUR_FOR_NEGOTIATION);
1752 			} else {
1753 				/* give up */
1754 				PROBE_SET_ACTION(softc, PROBE_DV_EXIT);
1755 			}
1756 			free(nbuf, M_CAMXPT);
1757 			xpt_release_ccb(done_ccb);
1758 			xpt_schedule(periph, priority);
1759 			goto out;
1760 		}
1761 		free(nbuf, M_CAMXPT);
1762 		if (softc->action == PROBE_INQUIRY_BASIC_DV1) {
1763 			PROBE_SET_ACTION(softc, PROBE_INQUIRY_BASIC_DV2);
1764 			xpt_release_ccb(done_ccb);
1765 			xpt_schedule(periph, priority);
1766 			goto out;
1767 		}
1768 		if (softc->action == PROBE_INQUIRY_BASIC_DV2) {
1769 			CAM_DEBUG(periph->path, CAM_DEBUG_PROBE,
1770 			    ("Leave Domain Validation Successfully\n"));
1771 		}
1772 		if (path->device->flags & CAM_DEV_UNCONFIGURED) {
1773 			path->device->flags &= ~CAM_DEV_UNCONFIGURED;
1774 			xpt_acquire_device(path->device);
1775 		}
1776 		path->device->flags &=
1777 		    ~(CAM_DEV_IN_DV|CAM_DEV_DV_HIT_BOTTOM);
1778 		if ((softc->flags & PROBE_NO_ANNOUNCE) == 0) {
1779 			/* Inform the XPT that a new device has been found */
1780 			done_ccb->ccb_h.func_code = XPT_GDEV_TYPE;
1781 			xpt_action(done_ccb);
1782 			xpt_async(AC_FOUND_DEVICE, done_ccb->ccb_h.path,
1783 				  done_ccb);
1784 		}
1785 		PROBE_SET_ACTION(softc, PROBE_DONE);
1786 		xpt_release_ccb(done_ccb);
1787 		break;
1788 	}
1789 	default:
1790 		panic("probedone: invalid action state 0x%x\n", softc->action);
1791 	}
1792 	done_ccb = (union ccb *)TAILQ_FIRST(&softc->request_ccbs);
1793 	TAILQ_REMOVE(&softc->request_ccbs, &done_ccb->ccb_h, periph_links.tqe);
1794 	done_ccb->ccb_h.status = CAM_REQ_CMP;
1795 	xpt_done(done_ccb);
1796 	if (TAILQ_FIRST(&softc->request_ccbs) == NULL) {
1797 		CAM_DEBUG(periph->path, CAM_DEBUG_PROBE, ("Probe completed\n"));
1798 		/* Drop freeze taken due to CAM_DEV_QFREEZE flag set. */
1799 		cam_release_devq(path, 0, 0, 0, FALSE);
1800 		cam_periph_release_locked(periph);
1801 		cam_periph_invalidate(periph);
1802 		cam_periph_release_locked(periph);
1803 	} else {
1804 		probeschedule(periph);
1805 		goto out;
1806 	}
1807 }
1808 
1809 static void
1810 probe_purge_old(struct cam_path *path, struct scsi_report_luns_data *new,
1811     probe_flags flags)
1812 {
1813 	struct cam_path *tp;
1814 	struct scsi_report_luns_data *old;
1815 	u_int idx1, idx2, nlun_old, nlun_new;
1816 	lun_id_t this_lun;
1817 	u_int8_t *ol, *nl;
1818 
1819 	if (path->target == NULL) {
1820 		return;
1821 	}
1822 	mtx_lock(&path->target->luns_mtx);
1823 	old = path->target->luns;
1824 	path->target->luns = new;
1825 	mtx_unlock(&path->target->luns_mtx);
1826 	if (old == NULL)
1827 		return;
1828 	nlun_old = scsi_4btoul(old->length) / 8;
1829 	nlun_new = scsi_4btoul(new->length) / 8;
1830 
1831 	/*
1832 	 * We are not going to assume sorted lists. Deal.
1833 	 */
1834 	for (idx1 = 0; idx1 < nlun_old; idx1++) {
1835 		ol = old->luns[idx1].lundata;
1836 		for (idx2 = 0; idx2 < nlun_new; idx2++) {
1837 			nl = new->luns[idx2].lundata;
1838 			if (memcmp(nl, ol, 8) == 0) {
1839 				break;
1840 			}
1841 		}
1842 		if (idx2 < nlun_new) {
1843 			continue;
1844 		}
1845 		/*
1846 		 * An 'old' item not in the 'new' list.
1847 		 * Nuke it. Except that if it is lun 0,
1848 		 * that would be what the probe state
1849 		 * machine is currently working on,
1850 		 * so we won't do that.
1851 		 */
1852 		CAM_GET_LUN(old, idx1, this_lun);
1853 		if (this_lun == 0) {
1854 			continue;
1855 		}
1856 
1857 		/*
1858 		 * We also cannot nuke it if it is
1859 		 * not in a lun format we understand
1860 		 * and replace the LUN with a "simple" LUN
1861 		 * if that is all the HBA supports.
1862 		 */
1863 		if (!(flags & PROBE_EXTLUN)) {
1864 			if (!CAM_CAN_GET_SIMPLE_LUN(old, idx1))
1865 				continue;
1866 			CAM_GET_SIMPLE_LUN(old, idx1, this_lun);
1867 		}
1868 
1869 		if (xpt_create_path(&tp, NULL, xpt_path_path_id(path),
1870 		    xpt_path_target_id(path), this_lun) == CAM_REQ_CMP) {
1871 			xpt_async(AC_LOST_DEVICE, tp, NULL);
1872 			xpt_free_path(tp);
1873 		}
1874 	}
1875 	free(old, M_CAMXPT);
1876 }
1877 
1878 static void
1879 probecleanup(struct cam_periph *periph)
1880 {
1881 	free(periph->softc, M_CAMXPT);
1882 }
1883 
1884 static void
1885 scsi_find_quirk(struct cam_ed *device)
1886 {
1887 	struct scsi_quirk_entry *quirk;
1888 	caddr_t	match;
1889 
1890 	match = cam_quirkmatch((caddr_t)&device->inq_data,
1891 			       (caddr_t)scsi_quirk_table,
1892 			       nitems(scsi_quirk_table),
1893 			       sizeof(*scsi_quirk_table), scsi_inquiry_match);
1894 
1895 	if (match == NULL)
1896 		panic("xpt_find_quirk: device didn't match wildcard entry!!");
1897 
1898 	quirk = (struct scsi_quirk_entry *)match;
1899 	device->quirk = quirk;
1900 	device->mintags = quirk->mintags;
1901 	device->maxtags = quirk->maxtags;
1902 }
1903 
1904 static int
1905 sysctl_cam_search_luns(SYSCTL_HANDLER_ARGS)
1906 {
1907 	int error, val;
1908 
1909 	val = cam_srch_hi;
1910 	error = sysctl_handle_int(oidp, &val, 0, req);
1911 	if (error != 0 || req->newptr == NULL)
1912 		return (error);
1913 	if (val == 0 || val == 1) {
1914 		cam_srch_hi = val;
1915 		return (0);
1916 	} else {
1917 		return (EINVAL);
1918 	}
1919 }
1920 
1921 typedef struct {
1922 	union	ccb *request_ccb;
1923 	struct 	ccb_pathinq *cpi;
1924 	int	counter;
1925 	int	lunindex[0];
1926 } scsi_scan_bus_info;
1927 
1928 /*
1929  * To start a scan, request_ccb is an XPT_SCAN_BUS ccb.
1930  * As the scan progresses, scsi_scan_bus is used as the
1931  * callback on completion function.
1932  */
1933 static void
1934 scsi_scan_bus(struct cam_periph *periph, union ccb *request_ccb)
1935 {
1936 	struct mtx *mtx;
1937 
1938 	CAM_DEBUG(request_ccb->ccb_h.path, CAM_DEBUG_TRACE,
1939 		  ("scsi_scan_bus\n"));
1940 	switch (request_ccb->ccb_h.func_code) {
1941 	case XPT_SCAN_BUS:
1942 	case XPT_SCAN_TGT:
1943 	{
1944 		scsi_scan_bus_info *scan_info;
1945 		union	ccb *work_ccb, *reset_ccb;
1946 		struct	cam_path *path;
1947 		u_int	i;
1948 		u_int	low_target, max_target;
1949 		u_int	initiator_id;
1950 
1951 		/* Find out the characteristics of the bus */
1952 		work_ccb = xpt_alloc_ccb_nowait();
1953 		if (work_ccb == NULL) {
1954 			request_ccb->ccb_h.status = CAM_RESRC_UNAVAIL;
1955 			xpt_done(request_ccb);
1956 			return;
1957 		}
1958 		xpt_setup_ccb(&work_ccb->ccb_h, request_ccb->ccb_h.path,
1959 			      request_ccb->ccb_h.pinfo.priority);
1960 		work_ccb->ccb_h.func_code = XPT_PATH_INQ;
1961 		xpt_action(work_ccb);
1962 		if (work_ccb->ccb_h.status != CAM_REQ_CMP) {
1963 			request_ccb->ccb_h.status = work_ccb->ccb_h.status;
1964 			xpt_free_ccb(work_ccb);
1965 			xpt_done(request_ccb);
1966 			return;
1967 		}
1968 
1969 		if ((work_ccb->cpi.hba_misc & PIM_NOINITIATOR) != 0) {
1970 			/*
1971 			 * Can't scan the bus on an adapter that
1972 			 * cannot perform the initiator role.
1973 			 */
1974 			request_ccb->ccb_h.status = CAM_REQ_CMP;
1975 			xpt_free_ccb(work_ccb);
1976 			xpt_done(request_ccb);
1977 			return;
1978 		}
1979 
1980 		/* We may need to reset bus first, if we haven't done it yet. */
1981 		if ((work_ccb->cpi.hba_inquiry &
1982 		    (PI_WIDE_32|PI_WIDE_16|PI_SDTR_ABLE)) &&
1983 		    !(work_ccb->cpi.hba_misc & PIM_NOBUSRESET) &&
1984 		    !timevalisset(&request_ccb->ccb_h.path->bus->last_reset) &&
1985 		    (reset_ccb = xpt_alloc_ccb_nowait()) != NULL) {
1986 			xpt_setup_ccb(&reset_ccb->ccb_h, request_ccb->ccb_h.path,
1987 			      CAM_PRIORITY_NONE);
1988 			reset_ccb->ccb_h.func_code = XPT_RESET_BUS;
1989 			xpt_action(reset_ccb);
1990 			if (reset_ccb->ccb_h.status != CAM_REQ_CMP) {
1991 				request_ccb->ccb_h.status = reset_ccb->ccb_h.status;
1992 				xpt_free_ccb(reset_ccb);
1993 				xpt_free_ccb(work_ccb);
1994 				xpt_done(request_ccb);
1995 				return;
1996 			}
1997 			xpt_free_ccb(reset_ccb);
1998 		}
1999 
2000 		/* Save some state for use while we probe for devices */
2001 		scan_info = (scsi_scan_bus_info *) malloc(sizeof(scsi_scan_bus_info) +
2002 		    (work_ccb->cpi.max_target * sizeof (u_int)), M_CAMXPT, M_ZERO|M_NOWAIT);
2003 		if (scan_info == NULL) {
2004 			request_ccb->ccb_h.status = CAM_RESRC_UNAVAIL;
2005 			xpt_free_ccb(work_ccb);
2006 			xpt_done(request_ccb);
2007 			return;
2008 		}
2009 		CAM_DEBUG(request_ccb->ccb_h.path, CAM_DEBUG_TRACE,
2010 		   ("SCAN start for %p\n", scan_info));
2011 		scan_info->request_ccb = request_ccb;
2012 		scan_info->cpi = &work_ccb->cpi;
2013 
2014 		/* Cache on our stack so we can work asynchronously */
2015 		max_target = scan_info->cpi->max_target;
2016 		low_target = 0;
2017 		initiator_id = scan_info->cpi->initiator_id;
2018 
2019 
2020 		/*
2021 		 * We can scan all targets in parallel, or do it sequentially.
2022 		 */
2023 
2024 		if (request_ccb->ccb_h.func_code == XPT_SCAN_TGT) {
2025 			max_target = low_target = request_ccb->ccb_h.target_id;
2026 			scan_info->counter = 0;
2027 		} else if (scan_info->cpi->hba_misc & PIM_SEQSCAN) {
2028 			max_target = 0;
2029 			scan_info->counter = 0;
2030 		} else {
2031 			scan_info->counter = scan_info->cpi->max_target + 1;
2032 			if (scan_info->cpi->initiator_id < scan_info->counter) {
2033 				scan_info->counter--;
2034 			}
2035 		}
2036 		mtx = xpt_path_mtx(scan_info->request_ccb->ccb_h.path);
2037 		mtx_unlock(mtx);
2038 
2039 		for (i = low_target; i <= max_target; i++) {
2040 			cam_status status;
2041 			if (i == initiator_id)
2042 				continue;
2043 
2044 			status = xpt_create_path(&path, NULL,
2045 						 request_ccb->ccb_h.path_id,
2046 						 i, 0);
2047 			if (status != CAM_REQ_CMP) {
2048 				printf("scsi_scan_bus: xpt_create_path failed"
2049 				       " with status %#x, bus scan halted\n",
2050 				       status);
2051 				free(scan_info, M_CAMXPT);
2052 				request_ccb->ccb_h.status = status;
2053 				xpt_free_ccb(work_ccb);
2054 				xpt_done(request_ccb);
2055 				break;
2056 			}
2057 			work_ccb = xpt_alloc_ccb_nowait();
2058 			if (work_ccb == NULL) {
2059 				xpt_free_ccb((union ccb *)scan_info->cpi);
2060 				free(scan_info, M_CAMXPT);
2061 				xpt_free_path(path);
2062 				request_ccb->ccb_h.status = CAM_RESRC_UNAVAIL;
2063 				xpt_done(request_ccb);
2064 				break;
2065 			}
2066 			xpt_setup_ccb(&work_ccb->ccb_h, path,
2067 				      request_ccb->ccb_h.pinfo.priority);
2068 			work_ccb->ccb_h.func_code = XPT_SCAN_LUN;
2069 			work_ccb->ccb_h.cbfcnp = scsi_scan_bus;
2070 			work_ccb->ccb_h.flags |= CAM_UNLOCKED;
2071 			work_ccb->ccb_h.ppriv_ptr0 = scan_info;
2072 			work_ccb->crcn.flags = request_ccb->crcn.flags;
2073 			xpt_action(work_ccb);
2074 		}
2075 
2076 		mtx_lock(mtx);
2077 		break;
2078 	}
2079 	case XPT_SCAN_LUN:
2080 	{
2081 		cam_status status;
2082 		struct cam_path *path, *oldpath;
2083 		scsi_scan_bus_info *scan_info;
2084 		struct cam_et *target;
2085 		struct cam_ed *device, *nextdev;
2086 		int next_target;
2087 		path_id_t path_id;
2088 		target_id_t target_id;
2089 		lun_id_t lun_id;
2090 
2091 		oldpath = request_ccb->ccb_h.path;
2092 
2093 		status = cam_ccb_status(request_ccb);
2094 		scan_info = (scsi_scan_bus_info *)request_ccb->ccb_h.ppriv_ptr0;
2095 		path_id = request_ccb->ccb_h.path_id;
2096 		target_id = request_ccb->ccb_h.target_id;
2097 		lun_id = request_ccb->ccb_h.target_lun;
2098 		target = request_ccb->ccb_h.path->target;
2099 		next_target = 1;
2100 
2101 		mtx = xpt_path_mtx(scan_info->request_ccb->ccb_h.path);
2102 		mtx_lock(mtx);
2103 		mtx_lock(&target->luns_mtx);
2104 		if (target->luns) {
2105 			lun_id_t first;
2106 			u_int nluns = scsi_4btoul(target->luns->length) / 8;
2107 
2108 			/*
2109 			 * Make sure we skip over lun 0 if it's the first member
2110 			 * of the list as we've actually just finished probing
2111 			 * it.
2112 			 */
2113 			CAM_GET_LUN(target->luns, 0, first);
2114 			if (first == 0 && scan_info->lunindex[target_id] == 0) {
2115 				scan_info->lunindex[target_id]++;
2116 			}
2117 
2118 			/*
2119 			 * Skip any LUNs that the HBA can't deal with.
2120 			 */
2121 			while (scan_info->lunindex[target_id] < nluns) {
2122 				if (scan_info->cpi->hba_misc & PIM_EXTLUNS) {
2123 					CAM_GET_LUN(target->luns,
2124 					    scan_info->lunindex[target_id],
2125 					    lun_id);
2126 					break;
2127 				}
2128 
2129 				if (CAM_CAN_GET_SIMPLE_LUN(target->luns,
2130 				    scan_info->lunindex[target_id])) {
2131 					CAM_GET_SIMPLE_LUN(target->luns,
2132 					    scan_info->lunindex[target_id],
2133 					    lun_id);
2134 					break;
2135 				}
2136 
2137 				scan_info->lunindex[target_id]++;
2138 			}
2139 
2140 			if (scan_info->lunindex[target_id] < nluns) {
2141 				mtx_unlock(&target->luns_mtx);
2142 				next_target = 0;
2143 				CAM_DEBUG(request_ccb->ccb_h.path,
2144 				    CAM_DEBUG_PROBE,
2145 				   ("next lun to try at index %u is %jx\n",
2146 				   scan_info->lunindex[target_id],
2147 				   (uintmax_t)lun_id));
2148 				scan_info->lunindex[target_id]++;
2149 			} else {
2150 				mtx_unlock(&target->luns_mtx);
2151 				/* We're done with scanning all luns. */
2152 			}
2153 		} else {
2154 			mtx_unlock(&target->luns_mtx);
2155 			device = request_ccb->ccb_h.path->device;
2156 			/* Continue sequential LUN scan if: */
2157 			/*  -- we have more LUNs that need recheck */
2158 			mtx_lock(&target->bus->eb_mtx);
2159 			nextdev = device;
2160 			while ((nextdev = TAILQ_NEXT(nextdev, links)) != NULL)
2161 				if ((nextdev->flags & CAM_DEV_UNCONFIGURED) == 0)
2162 					break;
2163 			mtx_unlock(&target->bus->eb_mtx);
2164 			if (nextdev != NULL) {
2165 				next_target = 0;
2166 			/*  -- stop if CAM_QUIRK_NOLUNS is set. */
2167 			} else if (SCSI_QUIRK(device)->quirks & CAM_QUIRK_NOLUNS) {
2168 				next_target = 1;
2169 			/*  -- this LUN is connected and its SCSI version
2170 			 *     allows more LUNs. */
2171 			} else if ((device->flags & CAM_DEV_UNCONFIGURED) == 0) {
2172 				if (lun_id < (CAM_SCSI2_MAXLUN-1) ||
2173 				    CAN_SRCH_HI_DENSE(device))
2174 					next_target = 0;
2175 			/*  -- this LUN is disconnected, its SCSI version
2176 			 *     allows more LUNs and we guess they may be. */
2177 			} else if ((device->flags & CAM_DEV_INQUIRY_DATA_VALID) != 0) {
2178 				if (lun_id < (CAM_SCSI2_MAXLUN-1) ||
2179 				    CAN_SRCH_HI_SPARSE(device))
2180 					next_target = 0;
2181 			}
2182 			if (next_target == 0) {
2183 				lun_id++;
2184 				if (lun_id > scan_info->cpi->max_lun)
2185 					next_target = 1;
2186 			}
2187 		}
2188 
2189 		/*
2190 		 * Check to see if we scan any further luns.
2191 		 */
2192 		if (next_target) {
2193 			int done;
2194 
2195 			/*
2196 			 * Free the current request path- we're done with it.
2197 			 */
2198 			xpt_free_path(oldpath);
2199  hop_again:
2200 			done = 0;
2201 			if (scan_info->request_ccb->ccb_h.func_code == XPT_SCAN_TGT) {
2202 				done = 1;
2203 			} else if (scan_info->cpi->hba_misc & PIM_SEQSCAN) {
2204 				scan_info->counter++;
2205 				if (scan_info->counter ==
2206 				    scan_info->cpi->initiator_id) {
2207 					scan_info->counter++;
2208 				}
2209 				if (scan_info->counter >=
2210 				    scan_info->cpi->max_target+1) {
2211 					done = 1;
2212 				}
2213 			} else {
2214 				scan_info->counter--;
2215 				if (scan_info->counter == 0) {
2216 					done = 1;
2217 				}
2218 			}
2219 			if (done) {
2220 				mtx_unlock(mtx);
2221 				xpt_free_ccb(request_ccb);
2222 				xpt_free_ccb((union ccb *)scan_info->cpi);
2223 				request_ccb = scan_info->request_ccb;
2224 				CAM_DEBUG(request_ccb->ccb_h.path,
2225 				    CAM_DEBUG_TRACE,
2226 				   ("SCAN done for %p\n", scan_info));
2227 				free(scan_info, M_CAMXPT);
2228 				request_ccb->ccb_h.status = CAM_REQ_CMP;
2229 				xpt_done(request_ccb);
2230 				break;
2231 			}
2232 
2233 			if ((scan_info->cpi->hba_misc & PIM_SEQSCAN) == 0) {
2234 				mtx_unlock(mtx);
2235 				xpt_free_ccb(request_ccb);
2236 				break;
2237 			}
2238 			status = xpt_create_path(&path, NULL,
2239 			    scan_info->request_ccb->ccb_h.path_id,
2240 			    scan_info->counter, 0);
2241 			if (status != CAM_REQ_CMP) {
2242 				mtx_unlock(mtx);
2243 				printf("scsi_scan_bus: xpt_create_path failed"
2244 				    " with status %#x, bus scan halted\n",
2245 			       	    status);
2246 				xpt_free_ccb(request_ccb);
2247 				xpt_free_ccb((union ccb *)scan_info->cpi);
2248 				request_ccb = scan_info->request_ccb;
2249 				free(scan_info, M_CAMXPT);
2250 				request_ccb->ccb_h.status = status;
2251 				xpt_done(request_ccb);
2252 				break;
2253 			}
2254 			xpt_setup_ccb(&request_ccb->ccb_h, path,
2255 			    request_ccb->ccb_h.pinfo.priority);
2256 			request_ccb->ccb_h.func_code = XPT_SCAN_LUN;
2257 			request_ccb->ccb_h.cbfcnp = scsi_scan_bus;
2258 			request_ccb->ccb_h.flags |= CAM_UNLOCKED;
2259 			request_ccb->ccb_h.ppriv_ptr0 = scan_info;
2260 			request_ccb->crcn.flags =
2261 			    scan_info->request_ccb->crcn.flags;
2262 		} else {
2263 			status = xpt_create_path(&path, NULL,
2264 						 path_id, target_id, lun_id);
2265 			/*
2266 			 * Free the old request path- we're done with it. We
2267 			 * do this *after* creating the new path so that
2268 			 * we don't remove a target that has our lun list
2269 			 * in the case that lun 0 is not present.
2270 			 */
2271 			xpt_free_path(oldpath);
2272 			if (status != CAM_REQ_CMP) {
2273 				printf("scsi_scan_bus: xpt_create_path failed "
2274 				       "with status %#x, halting LUN scan\n",
2275 			 	       status);
2276 				goto hop_again;
2277 			}
2278 			xpt_setup_ccb(&request_ccb->ccb_h, path,
2279 				      request_ccb->ccb_h.pinfo.priority);
2280 			request_ccb->ccb_h.func_code = XPT_SCAN_LUN;
2281 			request_ccb->ccb_h.cbfcnp = scsi_scan_bus;
2282 			request_ccb->ccb_h.flags |= CAM_UNLOCKED;
2283 			request_ccb->ccb_h.ppriv_ptr0 = scan_info;
2284 			request_ccb->crcn.flags =
2285 				scan_info->request_ccb->crcn.flags;
2286 		}
2287 		mtx_unlock(mtx);
2288 		xpt_action(request_ccb);
2289 		break;
2290 	}
2291 	default:
2292 		break;
2293 	}
2294 }
2295 
2296 static void
2297 scsi_scan_lun(struct cam_periph *periph, struct cam_path *path,
2298 	     cam_flags flags, union ccb *request_ccb)
2299 {
2300 	struct ccb_pathinq cpi;
2301 	cam_status status;
2302 	struct cam_path *new_path;
2303 	struct cam_periph *old_periph;
2304 	int lock;
2305 
2306 	CAM_DEBUG(path, CAM_DEBUG_TRACE, ("scsi_scan_lun\n"));
2307 
2308 	xpt_setup_ccb(&cpi.ccb_h, path, CAM_PRIORITY_NONE);
2309 	cpi.ccb_h.func_code = XPT_PATH_INQ;
2310 	xpt_action((union ccb *)&cpi);
2311 
2312 	if (cpi.ccb_h.status != CAM_REQ_CMP) {
2313 		if (request_ccb != NULL) {
2314 			request_ccb->ccb_h.status = cpi.ccb_h.status;
2315 			xpt_done(request_ccb);
2316 		}
2317 		return;
2318 	}
2319 
2320 	if ((cpi.hba_misc & PIM_NOINITIATOR) != 0) {
2321 		/*
2322 		 * Can't scan the bus on an adapter that
2323 		 * cannot perform the initiator role.
2324 		 */
2325 		if (request_ccb != NULL) {
2326 			request_ccb->ccb_h.status = CAM_REQ_CMP;
2327 			xpt_done(request_ccb);
2328 		}
2329 		return;
2330 	}
2331 
2332 	if (request_ccb == NULL) {
2333 		request_ccb = xpt_alloc_ccb_nowait();
2334 		if (request_ccb == NULL) {
2335 			xpt_print(path, "scsi_scan_lun: can't allocate CCB, "
2336 			    "can't continue\n");
2337 			return;
2338 		}
2339 		status = xpt_create_path(&new_path, NULL,
2340 					  path->bus->path_id,
2341 					  path->target->target_id,
2342 					  path->device->lun_id);
2343 		if (status != CAM_REQ_CMP) {
2344 			xpt_print(path, "scsi_scan_lun: can't create path, "
2345 			    "can't continue\n");
2346 			xpt_free_ccb(request_ccb);
2347 			return;
2348 		}
2349 		xpt_setup_ccb(&request_ccb->ccb_h, new_path, CAM_PRIORITY_XPT);
2350 		request_ccb->ccb_h.cbfcnp = xptscandone;
2351 		request_ccb->ccb_h.func_code = XPT_SCAN_LUN;
2352 		request_ccb->ccb_h.flags |= CAM_UNLOCKED;
2353 		request_ccb->crcn.flags = flags;
2354 	}
2355 
2356 	lock = (xpt_path_owned(path) == 0);
2357 	if (lock)
2358 		xpt_path_lock(path);
2359 	if ((old_periph = cam_periph_find(path, "probe")) != NULL) {
2360 		if ((old_periph->flags & CAM_PERIPH_INVALID) == 0) {
2361 			probe_softc *softc;
2362 
2363 			softc = (probe_softc *)old_periph->softc;
2364 			TAILQ_INSERT_TAIL(&softc->request_ccbs,
2365 			    &request_ccb->ccb_h, periph_links.tqe);
2366 		} else {
2367 			request_ccb->ccb_h.status = CAM_REQ_CMP_ERR;
2368 			xpt_done(request_ccb);
2369 		}
2370 	} else {
2371 		status = cam_periph_alloc(proberegister, NULL, probecleanup,
2372 					  probestart, "probe",
2373 					  CAM_PERIPH_BIO,
2374 					  request_ccb->ccb_h.path, NULL, 0,
2375 					  request_ccb);
2376 
2377 		if (status != CAM_REQ_CMP) {
2378 			xpt_print(path, "scsi_scan_lun: cam_alloc_periph "
2379 			    "returned an error, can't continue probe\n");
2380 			request_ccb->ccb_h.status = status;
2381 			xpt_done(request_ccb);
2382 		}
2383 	}
2384 	if (lock)
2385 		xpt_path_unlock(path);
2386 }
2387 
2388 static void
2389 xptscandone(struct cam_periph *periph, union ccb *done_ccb)
2390 {
2391 
2392 	xpt_free_path(done_ccb->ccb_h.path);
2393 	xpt_free_ccb(done_ccb);
2394 }
2395 
2396 static struct cam_ed *
2397 scsi_alloc_device(struct cam_eb *bus, struct cam_et *target, lun_id_t lun_id)
2398 {
2399 	struct scsi_quirk_entry *quirk;
2400 	struct cam_ed *device;
2401 
2402 	device = xpt_alloc_device(bus, target, lun_id);
2403 	if (device == NULL)
2404 		return (NULL);
2405 
2406 	/*
2407 	 * Take the default quirk entry until we have inquiry
2408 	 * data and can determine a better quirk to use.
2409 	 */
2410 	quirk = &scsi_quirk_table[nitems(scsi_quirk_table) - 1];
2411 	device->quirk = (void *)quirk;
2412 	device->mintags = quirk->mintags;
2413 	device->maxtags = quirk->maxtags;
2414 	bzero(&device->inq_data, sizeof(device->inq_data));
2415 	device->inq_flags = 0;
2416 	device->queue_flags = 0;
2417 	device->serial_num = NULL;
2418 	device->serial_num_len = 0;
2419 	device->device_id = NULL;
2420 	device->device_id_len = 0;
2421 	device->supported_vpds = NULL;
2422 	device->supported_vpds_len = 0;
2423 	return (device);
2424 }
2425 
2426 static void
2427 scsi_devise_transport(struct cam_path *path)
2428 {
2429 	struct ccb_pathinq cpi;
2430 	struct ccb_trans_settings cts;
2431 	struct scsi_inquiry_data *inq_buf;
2432 
2433 	/* Get transport information from the SIM */
2434 	xpt_setup_ccb(&cpi.ccb_h, path, CAM_PRIORITY_NONE);
2435 	cpi.ccb_h.func_code = XPT_PATH_INQ;
2436 	xpt_action((union ccb *)&cpi);
2437 
2438 	inq_buf = NULL;
2439 	if ((path->device->flags & CAM_DEV_INQUIRY_DATA_VALID) != 0)
2440 		inq_buf = &path->device->inq_data;
2441 	path->device->protocol = PROTO_SCSI;
2442 	path->device->protocol_version =
2443 	    inq_buf != NULL ? SID_ANSI_REV(inq_buf) : cpi.protocol_version;
2444 	path->device->transport = cpi.transport;
2445 	path->device->transport_version = cpi.transport_version;
2446 
2447 	/*
2448 	 * Any device not using SPI3 features should
2449 	 * be considered SPI2 or lower.
2450 	 */
2451 	if (inq_buf != NULL) {
2452 		if (path->device->transport == XPORT_SPI
2453 		 && (inq_buf->spi3data & SID_SPI_MASK) == 0
2454 		 && path->device->transport_version > 2)
2455 			path->device->transport_version = 2;
2456 	} else {
2457 		struct cam_ed* otherdev;
2458 
2459 		for (otherdev = TAILQ_FIRST(&path->target->ed_entries);
2460 		     otherdev != NULL;
2461 		     otherdev = TAILQ_NEXT(otherdev, links)) {
2462 			if (otherdev != path->device)
2463 				break;
2464 		}
2465 
2466 		if (otherdev != NULL) {
2467 			/*
2468 			 * Initially assume the same versioning as
2469 			 * prior luns for this target.
2470 			 */
2471 			path->device->protocol_version =
2472 			    otherdev->protocol_version;
2473 			path->device->transport_version =
2474 			    otherdev->transport_version;
2475 		} else {
2476 			/* Until we know better, opt for safety */
2477 			path->device->protocol_version = 2;
2478 			if (path->device->transport == XPORT_SPI)
2479 				path->device->transport_version = 2;
2480 			else
2481 				path->device->transport_version = 0;
2482 		}
2483 	}
2484 
2485 	/*
2486 	 * XXX
2487 	 * For a device compliant with SPC-2 we should be able
2488 	 * to determine the transport version supported by
2489 	 * scrutinizing the version descriptors in the
2490 	 * inquiry buffer.
2491 	 */
2492 
2493 	/* Tell the controller what we think */
2494 	xpt_setup_ccb(&cts.ccb_h, path, CAM_PRIORITY_NONE);
2495 	cts.ccb_h.func_code = XPT_SET_TRAN_SETTINGS;
2496 	cts.type = CTS_TYPE_CURRENT_SETTINGS;
2497 	cts.transport = path->device->transport;
2498 	cts.transport_version = path->device->transport_version;
2499 	cts.protocol = path->device->protocol;
2500 	cts.protocol_version = path->device->protocol_version;
2501 	cts.proto_specific.valid = 0;
2502 	cts.xport_specific.valid = 0;
2503 	xpt_action((union ccb *)&cts);
2504 }
2505 
2506 static void
2507 scsi_dev_advinfo(union ccb *start_ccb)
2508 {
2509 	struct cam_ed *device;
2510 	struct ccb_dev_advinfo *cdai;
2511 	off_t amt;
2512 
2513 	start_ccb->ccb_h.status = CAM_REQ_INVALID;
2514 	device = start_ccb->ccb_h.path->device;
2515 	cdai = &start_ccb->cdai;
2516 	switch(cdai->buftype) {
2517 	case CDAI_TYPE_SCSI_DEVID:
2518 		if (cdai->flags & CDAI_FLAG_STORE)
2519 			return;
2520 		cdai->provsiz = device->device_id_len;
2521 		if (device->device_id_len == 0)
2522 			break;
2523 		amt = device->device_id_len;
2524 		if (cdai->provsiz > cdai->bufsiz)
2525 			amt = cdai->bufsiz;
2526 		memcpy(cdai->buf, device->device_id, amt);
2527 		break;
2528 	case CDAI_TYPE_SERIAL_NUM:
2529 		if (cdai->flags & CDAI_FLAG_STORE)
2530 			return;
2531 		cdai->provsiz = device->serial_num_len;
2532 		if (device->serial_num_len == 0)
2533 			break;
2534 		amt = device->serial_num_len;
2535 		if (cdai->provsiz > cdai->bufsiz)
2536 			amt = cdai->bufsiz;
2537 		memcpy(cdai->buf, device->serial_num, amt);
2538 		break;
2539 	case CDAI_TYPE_PHYS_PATH:
2540 		if (cdai->flags & CDAI_FLAG_STORE) {
2541 			if (device->physpath != NULL) {
2542 				free(device->physpath, M_CAMXPT);
2543 				device->physpath = NULL;
2544 				device->physpath_len = 0;
2545 			}
2546 			/* Clear existing buffer if zero length */
2547 			if (cdai->bufsiz == 0)
2548 				break;
2549 			device->physpath = malloc(cdai->bufsiz, M_CAMXPT, M_NOWAIT);
2550 			if (device->physpath == NULL) {
2551 				start_ccb->ccb_h.status = CAM_REQ_ABORTED;
2552 				return;
2553 			}
2554 			device->physpath_len = cdai->bufsiz;
2555 			memcpy(device->physpath, cdai->buf, cdai->bufsiz);
2556 		} else {
2557 			cdai->provsiz = device->physpath_len;
2558 			if (device->physpath_len == 0)
2559 				break;
2560 			amt = device->physpath_len;
2561 			if (cdai->provsiz > cdai->bufsiz)
2562 				amt = cdai->bufsiz;
2563 			memcpy(cdai->buf, device->physpath, amt);
2564 		}
2565 		break;
2566 	case CDAI_TYPE_RCAPLONG:
2567 		if (cdai->flags & CDAI_FLAG_STORE) {
2568 			if (device->rcap_buf != NULL) {
2569 				free(device->rcap_buf, M_CAMXPT);
2570 				device->rcap_buf = NULL;
2571 			}
2572 
2573 			device->rcap_len = cdai->bufsiz;
2574 			/* Clear existing buffer if zero length */
2575 			if (cdai->bufsiz == 0)
2576 				break;
2577 
2578 			device->rcap_buf = malloc(cdai->bufsiz, M_CAMXPT,
2579 						  M_NOWAIT);
2580 			if (device->rcap_buf == NULL) {
2581 				start_ccb->ccb_h.status = CAM_REQ_ABORTED;
2582 				return;
2583 			}
2584 
2585 			memcpy(device->rcap_buf, cdai->buf, cdai->bufsiz);
2586 		} else {
2587 			cdai->provsiz = device->rcap_len;
2588 			if (device->rcap_len == 0)
2589 				break;
2590 			amt = device->rcap_len;
2591 			if (cdai->provsiz > cdai->bufsiz)
2592 				amt = cdai->bufsiz;
2593 			memcpy(cdai->buf, device->rcap_buf, amt);
2594 		}
2595 		break;
2596 	case CDAI_TYPE_EXT_INQ:
2597 		/*
2598 		 * We fetch extended inquiry data during probe, if
2599 		 * available.  We don't allow changing it.
2600 		 */
2601 		if (cdai->flags & CDAI_FLAG_STORE)
2602 			return;
2603 		cdai->provsiz = device->ext_inq_len;
2604 		if (device->ext_inq_len == 0)
2605 			break;
2606 		amt = device->ext_inq_len;
2607 		if (cdai->provsiz > cdai->bufsiz)
2608 			amt = cdai->bufsiz;
2609 		memcpy(cdai->buf, device->ext_inq, amt);
2610 		break;
2611 	default:
2612 		return;
2613 	}
2614 	start_ccb->ccb_h.status = CAM_REQ_CMP;
2615 
2616 	if (cdai->flags & CDAI_FLAG_STORE) {
2617 		xpt_async(AC_ADVINFO_CHANGED, start_ccb->ccb_h.path,
2618 			  (void *)(uintptr_t)cdai->buftype);
2619 	}
2620 }
2621 
2622 static void
2623 scsi_action(union ccb *start_ccb)
2624 {
2625 
2626 	switch (start_ccb->ccb_h.func_code) {
2627 	case XPT_SET_TRAN_SETTINGS:
2628 	{
2629 		scsi_set_transfer_settings(&start_ccb->cts,
2630 					   start_ccb->ccb_h.path,
2631 					   /*async_update*/FALSE);
2632 		break;
2633 	}
2634 	case XPT_SCAN_BUS:
2635 	case XPT_SCAN_TGT:
2636 		scsi_scan_bus(start_ccb->ccb_h.path->periph, start_ccb);
2637 		break;
2638 	case XPT_SCAN_LUN:
2639 		scsi_scan_lun(start_ccb->ccb_h.path->periph,
2640 			      start_ccb->ccb_h.path, start_ccb->crcn.flags,
2641 			      start_ccb);
2642 		break;
2643 	case XPT_DEV_ADVINFO:
2644 	{
2645 		scsi_dev_advinfo(start_ccb);
2646 		break;
2647 	}
2648 	default:
2649 		xpt_action_default(start_ccb);
2650 		break;
2651 	}
2652 }
2653 
2654 static void
2655 scsi_set_transfer_settings(struct ccb_trans_settings *cts, struct cam_path *path,
2656 			   int async_update)
2657 {
2658 	struct	ccb_pathinq cpi;
2659 	struct	ccb_trans_settings cur_cts;
2660 	struct	ccb_trans_settings_scsi *scsi;
2661 	struct	ccb_trans_settings_scsi *cur_scsi;
2662 	struct	scsi_inquiry_data *inq_data;
2663 	struct	cam_ed *device;
2664 
2665 	if (path == NULL || (device = path->device) == NULL) {
2666 		cts->ccb_h.status = CAM_PATH_INVALID;
2667 		xpt_done((union ccb *)cts);
2668 		return;
2669 	}
2670 
2671 	if (cts->protocol == PROTO_UNKNOWN
2672 	 || cts->protocol == PROTO_UNSPECIFIED) {
2673 		cts->protocol = device->protocol;
2674 		cts->protocol_version = device->protocol_version;
2675 	}
2676 
2677 	if (cts->protocol_version == PROTO_VERSION_UNKNOWN
2678 	 || cts->protocol_version == PROTO_VERSION_UNSPECIFIED)
2679 		cts->protocol_version = device->protocol_version;
2680 
2681 	if (cts->protocol != device->protocol) {
2682 		xpt_print(path, "Uninitialized Protocol %x:%x?\n",
2683 		       cts->protocol, device->protocol);
2684 		cts->protocol = device->protocol;
2685 	}
2686 
2687 	if (cts->protocol_version > device->protocol_version) {
2688 		if (bootverbose) {
2689 			xpt_print(path, "Down reving Protocol "
2690 			    "Version from %d to %d?\n", cts->protocol_version,
2691 			    device->protocol_version);
2692 		}
2693 		cts->protocol_version = device->protocol_version;
2694 	}
2695 
2696 	if (cts->transport == XPORT_UNKNOWN
2697 	 || cts->transport == XPORT_UNSPECIFIED) {
2698 		cts->transport = device->transport;
2699 		cts->transport_version = device->transport_version;
2700 	}
2701 
2702 	if (cts->transport_version == XPORT_VERSION_UNKNOWN
2703 	 || cts->transport_version == XPORT_VERSION_UNSPECIFIED)
2704 		cts->transport_version = device->transport_version;
2705 
2706 	if (cts->transport != device->transport) {
2707 		xpt_print(path, "Uninitialized Transport %x:%x?\n",
2708 		    cts->transport, device->transport);
2709 		cts->transport = device->transport;
2710 	}
2711 
2712 	if (cts->transport_version > device->transport_version) {
2713 		if (bootverbose) {
2714 			xpt_print(path, "Down reving Transport "
2715 			    "Version from %d to %d?\n", cts->transport_version,
2716 			    device->transport_version);
2717 		}
2718 		cts->transport_version = device->transport_version;
2719 	}
2720 
2721 	/*
2722 	 * Nothing more of interest to do unless
2723 	 * this is a device connected via the
2724 	 * SCSI protocol.
2725 	 */
2726 	if (cts->protocol != PROTO_SCSI) {
2727 		if (async_update == FALSE)
2728 			xpt_action_default((union ccb *)cts);
2729 		return;
2730 	}
2731 
2732 	inq_data = &device->inq_data;
2733 	scsi = &cts->proto_specific.scsi;
2734 	xpt_setup_ccb(&cpi.ccb_h, path, CAM_PRIORITY_NONE);
2735 	cpi.ccb_h.func_code = XPT_PATH_INQ;
2736 	xpt_action((union ccb *)&cpi);
2737 
2738 	/* SCSI specific sanity checking */
2739 	if ((cpi.hba_inquiry & PI_TAG_ABLE) == 0
2740 	 || (INQ_DATA_TQ_ENABLED(inq_data)) == 0
2741 	 || (device->queue_flags & SCP_QUEUE_DQUE) != 0
2742 	 || (device->mintags == 0)) {
2743 		/*
2744 		 * Can't tag on hardware that doesn't support tags,
2745 		 * doesn't have it enabled, or has broken tag support.
2746 		 */
2747 		scsi->flags &= ~CTS_SCSI_FLAGS_TAG_ENB;
2748 	}
2749 
2750 	if (async_update == FALSE) {
2751 		/*
2752 		 * Perform sanity checking against what the
2753 		 * controller and device can do.
2754 		 */
2755 		xpt_setup_ccb(&cur_cts.ccb_h, path, CAM_PRIORITY_NONE);
2756 		cur_cts.ccb_h.func_code = XPT_GET_TRAN_SETTINGS;
2757 		cur_cts.type = cts->type;
2758 		xpt_action((union ccb *)&cur_cts);
2759 		if (cam_ccb_status((union ccb *)&cur_cts) != CAM_REQ_CMP) {
2760 			return;
2761 		}
2762 		cur_scsi = &cur_cts.proto_specific.scsi;
2763 		if ((scsi->valid & CTS_SCSI_VALID_TQ) == 0) {
2764 			scsi->flags &= ~CTS_SCSI_FLAGS_TAG_ENB;
2765 			scsi->flags |= cur_scsi->flags & CTS_SCSI_FLAGS_TAG_ENB;
2766 		}
2767 		if ((cur_scsi->valid & CTS_SCSI_VALID_TQ) == 0)
2768 			scsi->flags &= ~CTS_SCSI_FLAGS_TAG_ENB;
2769 	}
2770 
2771 	/* SPI specific sanity checking */
2772 	if (cts->transport == XPORT_SPI && async_update == FALSE) {
2773 		u_int spi3caps;
2774 		struct ccb_trans_settings_spi *spi;
2775 		struct ccb_trans_settings_spi *cur_spi;
2776 
2777 		spi = &cts->xport_specific.spi;
2778 
2779 		cur_spi = &cur_cts.xport_specific.spi;
2780 
2781 		/* Fill in any gaps in what the user gave us */
2782 		if ((spi->valid & CTS_SPI_VALID_SYNC_RATE) == 0)
2783 			spi->sync_period = cur_spi->sync_period;
2784 		if ((cur_spi->valid & CTS_SPI_VALID_SYNC_RATE) == 0)
2785 			spi->sync_period = 0;
2786 		if ((spi->valid & CTS_SPI_VALID_SYNC_OFFSET) == 0)
2787 			spi->sync_offset = cur_spi->sync_offset;
2788 		if ((cur_spi->valid & CTS_SPI_VALID_SYNC_OFFSET) == 0)
2789 			spi->sync_offset = 0;
2790 		if ((spi->valid & CTS_SPI_VALID_PPR_OPTIONS) == 0)
2791 			spi->ppr_options = cur_spi->ppr_options;
2792 		if ((cur_spi->valid & CTS_SPI_VALID_PPR_OPTIONS) == 0)
2793 			spi->ppr_options = 0;
2794 		if ((spi->valid & CTS_SPI_VALID_BUS_WIDTH) == 0)
2795 			spi->bus_width = cur_spi->bus_width;
2796 		if ((cur_spi->valid & CTS_SPI_VALID_BUS_WIDTH) == 0)
2797 			spi->bus_width = 0;
2798 		if ((spi->valid & CTS_SPI_VALID_DISC) == 0) {
2799 			spi->flags &= ~CTS_SPI_FLAGS_DISC_ENB;
2800 			spi->flags |= cur_spi->flags & CTS_SPI_FLAGS_DISC_ENB;
2801 		}
2802 		if ((cur_spi->valid & CTS_SPI_VALID_DISC) == 0)
2803 			spi->flags &= ~CTS_SPI_FLAGS_DISC_ENB;
2804 		if (((device->flags & CAM_DEV_INQUIRY_DATA_VALID) != 0
2805 		  && (inq_data->flags & SID_Sync) == 0
2806 		  && cts->type == CTS_TYPE_CURRENT_SETTINGS)
2807 		 || ((cpi.hba_inquiry & PI_SDTR_ABLE) == 0)) {
2808 			/* Force async */
2809 			spi->sync_period = 0;
2810 			spi->sync_offset = 0;
2811 		}
2812 
2813 		switch (spi->bus_width) {
2814 		case MSG_EXT_WDTR_BUS_32_BIT:
2815 			if (((device->flags & CAM_DEV_INQUIRY_DATA_VALID) == 0
2816 			  || (inq_data->flags & SID_WBus32) != 0
2817 			  || cts->type == CTS_TYPE_USER_SETTINGS)
2818 			 && (cpi.hba_inquiry & PI_WIDE_32) != 0)
2819 				break;
2820 			/* Fall Through to 16-bit */
2821 		case MSG_EXT_WDTR_BUS_16_BIT:
2822 			if (((device->flags & CAM_DEV_INQUIRY_DATA_VALID) == 0
2823 			  || (inq_data->flags & SID_WBus16) != 0
2824 			  || cts->type == CTS_TYPE_USER_SETTINGS)
2825 			 && (cpi.hba_inquiry & PI_WIDE_16) != 0) {
2826 				spi->bus_width = MSG_EXT_WDTR_BUS_16_BIT;
2827 				break;
2828 			}
2829 			/* Fall Through to 8-bit */
2830 		default: /* New bus width?? */
2831 		case MSG_EXT_WDTR_BUS_8_BIT:
2832 			/* All targets can do this */
2833 			spi->bus_width = MSG_EXT_WDTR_BUS_8_BIT;
2834 			break;
2835 		}
2836 
2837 		spi3caps = cpi.xport_specific.spi.ppr_options;
2838 		if ((device->flags & CAM_DEV_INQUIRY_DATA_VALID) != 0
2839 		 && cts->type == CTS_TYPE_CURRENT_SETTINGS)
2840 			spi3caps &= inq_data->spi3data;
2841 
2842 		if ((spi3caps & SID_SPI_CLOCK_DT) == 0)
2843 			spi->ppr_options &= ~MSG_EXT_PPR_DT_REQ;
2844 
2845 		if ((spi3caps & SID_SPI_IUS) == 0)
2846 			spi->ppr_options &= ~MSG_EXT_PPR_IU_REQ;
2847 
2848 		if ((spi3caps & SID_SPI_QAS) == 0)
2849 			spi->ppr_options &= ~MSG_EXT_PPR_QAS_REQ;
2850 
2851 		/* No SPI Transfer settings are allowed unless we are wide */
2852 		if (spi->bus_width == 0)
2853 			spi->ppr_options = 0;
2854 
2855 		if ((spi->valid & CTS_SPI_VALID_DISC)
2856 		 && ((spi->flags & CTS_SPI_FLAGS_DISC_ENB) == 0)) {
2857 			/*
2858 			 * Can't tag queue without disconnection.
2859 			 */
2860 			scsi->flags &= ~CTS_SCSI_FLAGS_TAG_ENB;
2861 			scsi->valid |= CTS_SCSI_VALID_TQ;
2862 		}
2863 
2864 		/*
2865 		 * If we are currently performing tagged transactions to
2866 		 * this device and want to change its negotiation parameters,
2867 		 * go non-tagged for a bit to give the controller a chance to
2868 		 * negotiate unhampered by tag messages.
2869 		 */
2870 		if (cts->type == CTS_TYPE_CURRENT_SETTINGS
2871 		 && (device->inq_flags & SID_CmdQue) != 0
2872 		 && (scsi->flags & CTS_SCSI_FLAGS_TAG_ENB) != 0
2873 		 && (spi->flags & (CTS_SPI_VALID_SYNC_RATE|
2874 				   CTS_SPI_VALID_SYNC_OFFSET|
2875 				   CTS_SPI_VALID_BUS_WIDTH)) != 0)
2876 			scsi_toggle_tags(path);
2877 	}
2878 
2879 	if (cts->type == CTS_TYPE_CURRENT_SETTINGS
2880 	 && (scsi->valid & CTS_SCSI_VALID_TQ) != 0) {
2881 		int device_tagenb;
2882 
2883 		/*
2884 		 * If we are transitioning from tags to no-tags or
2885 		 * vice-versa, we need to carefully freeze and restart
2886 		 * the queue so that we don't overlap tagged and non-tagged
2887 		 * commands.  We also temporarily stop tags if there is
2888 		 * a change in transfer negotiation settings to allow
2889 		 * "tag-less" negotiation.
2890 		 */
2891 		if ((device->flags & CAM_DEV_TAG_AFTER_COUNT) != 0
2892 		 || (device->inq_flags & SID_CmdQue) != 0)
2893 			device_tagenb = TRUE;
2894 		else
2895 			device_tagenb = FALSE;
2896 
2897 		if (((scsi->flags & CTS_SCSI_FLAGS_TAG_ENB) != 0
2898 		  && device_tagenb == FALSE)
2899 		 || ((scsi->flags & CTS_SCSI_FLAGS_TAG_ENB) == 0
2900 		  && device_tagenb == TRUE)) {
2901 
2902 			if ((scsi->flags & CTS_SCSI_FLAGS_TAG_ENB) != 0) {
2903 				/*
2904 				 * Delay change to use tags until after a
2905 				 * few commands have gone to this device so
2906 				 * the controller has time to perform transfer
2907 				 * negotiations without tagged messages getting
2908 				 * in the way.
2909 				 */
2910 				device->tag_delay_count = CAM_TAG_DELAY_COUNT;
2911 				device->flags |= CAM_DEV_TAG_AFTER_COUNT;
2912 			} else {
2913 				xpt_stop_tags(path);
2914 			}
2915 		}
2916 	}
2917 	if (async_update == FALSE)
2918 		xpt_action_default((union ccb *)cts);
2919 }
2920 
2921 static void
2922 scsi_toggle_tags(struct cam_path *path)
2923 {
2924 	struct cam_ed *dev;
2925 
2926 	/*
2927 	 * Give controllers a chance to renegotiate
2928 	 * before starting tag operations.  We
2929 	 * "toggle" tagged queuing off then on
2930 	 * which causes the tag enable command delay
2931 	 * counter to come into effect.
2932 	 */
2933 	dev = path->device;
2934 	if ((dev->flags & CAM_DEV_TAG_AFTER_COUNT) != 0
2935 	 || ((dev->inq_flags & SID_CmdQue) != 0
2936  	  && (dev->inq_flags & (SID_Sync|SID_WBus16|SID_WBus32)) != 0)) {
2937 		struct ccb_trans_settings cts;
2938 
2939 		xpt_setup_ccb(&cts.ccb_h, path, CAM_PRIORITY_NONE);
2940 		cts.protocol = PROTO_SCSI;
2941 		cts.protocol_version = PROTO_VERSION_UNSPECIFIED;
2942 		cts.transport = XPORT_UNSPECIFIED;
2943 		cts.transport_version = XPORT_VERSION_UNSPECIFIED;
2944 		cts.proto_specific.scsi.flags = 0;
2945 		cts.proto_specific.scsi.valid = CTS_SCSI_VALID_TQ;
2946 		scsi_set_transfer_settings(&cts, path,
2947 					  /*async_update*/TRUE);
2948 		cts.proto_specific.scsi.flags = CTS_SCSI_FLAGS_TAG_ENB;
2949 		scsi_set_transfer_settings(&cts, path,
2950 					  /*async_update*/TRUE);
2951 	}
2952 }
2953 
2954 /*
2955  * Handle any per-device event notifications that require action by the XPT.
2956  */
2957 static void
2958 scsi_dev_async(u_int32_t async_code, struct cam_eb *bus, struct cam_et *target,
2959 	      struct cam_ed *device, void *async_arg)
2960 {
2961 	cam_status status;
2962 	struct cam_path newpath;
2963 
2964 	/*
2965 	 * We only need to handle events for real devices.
2966 	 */
2967 	if (target->target_id == CAM_TARGET_WILDCARD
2968 	 || device->lun_id == CAM_LUN_WILDCARD)
2969 		return;
2970 
2971 	/*
2972 	 * We need our own path with wildcards expanded to
2973 	 * handle certain types of events.
2974 	 */
2975 	if ((async_code == AC_SENT_BDR)
2976 	 || (async_code == AC_BUS_RESET)
2977 	 || (async_code == AC_INQ_CHANGED))
2978 		status = xpt_compile_path(&newpath, NULL,
2979 					  bus->path_id,
2980 					  target->target_id,
2981 					  device->lun_id);
2982 	else
2983 		status = CAM_REQ_CMP_ERR;
2984 
2985 	if (status == CAM_REQ_CMP) {
2986 
2987 		/*
2988 		 * Allow transfer negotiation to occur in a
2989 		 * tag free environment and after settle delay.
2990 		 */
2991 		if (async_code == AC_SENT_BDR
2992 		 || async_code == AC_BUS_RESET) {
2993 			cam_freeze_devq(&newpath);
2994 			cam_release_devq(&newpath,
2995 				RELSIM_RELEASE_AFTER_TIMEOUT,
2996 				/*reduction*/0,
2997 				/*timeout*/scsi_delay,
2998 				/*getcount_only*/0);
2999 			scsi_toggle_tags(&newpath);
3000 		}
3001 
3002 		if (async_code == AC_INQ_CHANGED) {
3003 			/*
3004 			 * We've sent a start unit command, or
3005 			 * something similar to a device that
3006 			 * may have caused its inquiry data to
3007 			 * change. So we re-scan the device to
3008 			 * refresh the inquiry data for it.
3009 			 */
3010 			scsi_scan_lun(newpath.periph, &newpath,
3011 				     CAM_EXPECT_INQ_CHANGE, NULL);
3012 		}
3013 		xpt_release_path(&newpath);
3014 	} else if (async_code == AC_LOST_DEVICE &&
3015 	    (device->flags & CAM_DEV_UNCONFIGURED) == 0) {
3016 		device->flags |= CAM_DEV_UNCONFIGURED;
3017 		xpt_release_device(device);
3018 	} else if (async_code == AC_TRANSFER_NEG) {
3019 		struct ccb_trans_settings *settings;
3020 		struct cam_path path;
3021 
3022 		settings = (struct ccb_trans_settings *)async_arg;
3023 		xpt_compile_path(&path, NULL, bus->path_id, target->target_id,
3024 				 device->lun_id);
3025 		scsi_set_transfer_settings(settings, &path,
3026 					  /*async_update*/TRUE);
3027 		xpt_release_path(&path);
3028 	}
3029 }
3030 
3031 static void
3032 _scsi_announce_periph(struct cam_periph *periph, u_int *speed, u_int *freq, struct ccb_trans_settings *cts)
3033 {
3034 	struct	ccb_pathinq cpi;
3035 	struct	cam_path *path = periph->path;
3036 
3037 	cam_periph_assert(periph, MA_OWNED);
3038 
3039 	xpt_setup_ccb(&cts->ccb_h, path, CAM_PRIORITY_NORMAL);
3040 	cts->ccb_h.func_code = XPT_GET_TRAN_SETTINGS;
3041 	cts->type = CTS_TYPE_CURRENT_SETTINGS;
3042 	xpt_action((union ccb*)cts);
3043 	if (cam_ccb_status((union ccb *)cts) != CAM_REQ_CMP)
3044 		return;
3045 
3046 	/* Ask the SIM for its base transfer speed */
3047 	xpt_setup_ccb(&cpi.ccb_h, path, CAM_PRIORITY_NORMAL);
3048 	cpi.ccb_h.func_code = XPT_PATH_INQ;
3049 	xpt_action((union ccb *)&cpi);
3050 
3051 	/* Report connection speed */
3052 	*speed = cpi.base_transfer_speed;
3053 	*freq = 0;
3054 
3055 	if (cts->ccb_h.status == CAM_REQ_CMP && cts->transport == XPORT_SPI) {
3056 		struct	ccb_trans_settings_spi *spi =
3057 		    &cts->xport_specific.spi;
3058 
3059 		if ((spi->valid & CTS_SPI_VALID_SYNC_OFFSET) != 0
3060 		  && spi->sync_offset != 0) {
3061 			*freq = scsi_calc_syncsrate(spi->sync_period);
3062 			*speed = *freq;
3063 		}
3064 		if ((spi->valid & CTS_SPI_VALID_BUS_WIDTH) != 0)
3065 			*speed *= (0x01 << spi->bus_width);
3066 	}
3067 	if (cts->ccb_h.status == CAM_REQ_CMP && cts->transport == XPORT_FC) {
3068 		struct	ccb_trans_settings_fc *fc =
3069 		    &cts->xport_specific.fc;
3070 
3071 		if (fc->valid & CTS_FC_VALID_SPEED)
3072 			*speed = fc->bitrate;
3073 	}
3074 	if (cts->ccb_h.status == CAM_REQ_CMP && cts->transport == XPORT_SAS) {
3075 		struct	ccb_trans_settings_sas *sas =
3076 		    &cts->xport_specific.sas;
3077 
3078 		if (sas->valid & CTS_SAS_VALID_SPEED)
3079 			*speed = sas->bitrate;
3080 	}
3081 }
3082 
3083 static void
3084 scsi_announce_periph_sbuf(struct cam_periph *periph, struct sbuf *sb)
3085 {
3086 	struct	ccb_trans_settings cts;
3087 	u_int speed, freq, mb;
3088 
3089 	_scsi_announce_periph(periph, &speed, &freq, &cts);
3090 	if (cam_ccb_status((union ccb *)&cts) != CAM_REQ_CMP)
3091 		return;
3092 
3093 	mb = speed / 1000;
3094 	if (mb > 0)
3095 		sbuf_printf(sb, "%s%d: %d.%03dMB/s transfers",
3096 		       periph->periph_name, periph->unit_number,
3097 		       mb, speed % 1000);
3098 	else
3099 		sbuf_printf(sb, "%s%d: %dKB/s transfers", periph->periph_name,
3100 		       periph->unit_number, speed);
3101 	/* Report additional information about SPI connections */
3102 	if (cts.ccb_h.status == CAM_REQ_CMP && cts.transport == XPORT_SPI) {
3103 		struct	ccb_trans_settings_spi *spi;
3104 
3105 		spi = &cts.xport_specific.spi;
3106 		if (freq != 0) {
3107 			sbuf_printf(sb, " (%d.%03dMHz%s, offset %d", freq / 1000,
3108 			       freq % 1000,
3109 			       (spi->ppr_options & MSG_EXT_PPR_DT_REQ) != 0
3110 			     ? " DT" : "",
3111 			       spi->sync_offset);
3112 		}
3113 		if ((spi->valid & CTS_SPI_VALID_BUS_WIDTH) != 0
3114 		 && spi->bus_width > 0) {
3115 			if (freq != 0) {
3116 				sbuf_printf(sb, ", ");
3117 			} else {
3118 				sbuf_printf(sb, " (");
3119 			}
3120 			sbuf_printf(sb, "%dbit)", 8 * (0x01 << spi->bus_width));
3121 		} else if (freq != 0) {
3122 			sbuf_printf(sb, ")");
3123 		}
3124 	}
3125 	if (cts.ccb_h.status == CAM_REQ_CMP && cts.transport == XPORT_FC) {
3126 		struct	ccb_trans_settings_fc *fc;
3127 
3128 		fc = &cts.xport_specific.fc;
3129 		if (fc->valid & CTS_FC_VALID_WWNN)
3130 			sbuf_printf(sb, " WWNN 0x%llx", (long long) fc->wwnn);
3131 		if (fc->valid & CTS_FC_VALID_WWPN)
3132 			sbuf_printf(sb, " WWPN 0x%llx", (long long) fc->wwpn);
3133 		if (fc->valid & CTS_FC_VALID_PORT)
3134 			sbuf_printf(sb, " PortID 0x%x", fc->port);
3135 	}
3136 	sbuf_printf(sb, "\n");
3137 }
3138 
3139 static void
3140 scsi_announce_periph(struct cam_periph *periph)
3141 {
3142 	struct	ccb_trans_settings cts;
3143 	u_int speed, freq, mb;
3144 
3145 	_scsi_announce_periph(periph, &speed, &freq, &cts);
3146 	if (cam_ccb_status((union ccb *)&cts) != CAM_REQ_CMP)
3147 		return;
3148 
3149 	mb = speed / 1000;
3150 	if (mb > 0)
3151 		printf("%s%d: %d.%03dMB/s transfers",
3152 		       periph->periph_name, periph->unit_number,
3153 		       mb, speed % 1000);
3154 	else
3155 		printf("%s%d: %dKB/s transfers", periph->periph_name,
3156 		       periph->unit_number, speed);
3157 	/* Report additional information about SPI connections */
3158 	if (cts.ccb_h.status == CAM_REQ_CMP && cts.transport == XPORT_SPI) {
3159 		struct	ccb_trans_settings_spi *spi;
3160 
3161 		spi = &cts.xport_specific.spi;
3162 		if (freq != 0) {
3163 			printf(" (%d.%03dMHz%s, offset %d", freq / 1000,
3164 			       freq % 1000,
3165 			       (spi->ppr_options & MSG_EXT_PPR_DT_REQ) != 0
3166 			     ? " DT" : "",
3167 			       spi->sync_offset);
3168 		}
3169 		if ((spi->valid & CTS_SPI_VALID_BUS_WIDTH) != 0
3170 		 && spi->bus_width > 0) {
3171 			if (freq != 0) {
3172 				printf(", ");
3173 			} else {
3174 				printf(" (");
3175 			}
3176 			printf("%dbit)", 8 * (0x01 << spi->bus_width));
3177 		} else if (freq != 0) {
3178 			printf(")");
3179 		}
3180 	}
3181 	if (cts.ccb_h.status == CAM_REQ_CMP && cts.transport == XPORT_FC) {
3182 		struct	ccb_trans_settings_fc *fc;
3183 
3184 		fc = &cts.xport_specific.fc;
3185 		if (fc->valid & CTS_FC_VALID_WWNN)
3186 			printf(" WWNN 0x%llx", (long long) fc->wwnn);
3187 		if (fc->valid & CTS_FC_VALID_WWPN)
3188 			printf(" WWPN 0x%llx", (long long) fc->wwpn);
3189 		if (fc->valid & CTS_FC_VALID_PORT)
3190 			printf(" PortID 0x%x", fc->port);
3191 	}
3192 	printf("\n");
3193 }
3194 
3195 static void
3196 scsi_proto_announce_sbuf(struct cam_ed *device, struct sbuf *sb)
3197 {
3198 	scsi_print_inquiry_sbuf(sb, &device->inq_data);
3199 }
3200 
3201 static void
3202 scsi_proto_announce(struct cam_ed *device)
3203 {
3204 	scsi_print_inquiry(&device->inq_data);
3205 }
3206 
3207 static void
3208 scsi_proto_denounce_sbuf(struct cam_ed *device, struct sbuf *sb)
3209 {
3210 	scsi_print_inquiry_short_sbuf(sb, &device->inq_data);
3211 }
3212 
3213 static void
3214 scsi_proto_denounce(struct cam_ed *device)
3215 {
3216 	scsi_print_inquiry_short(&device->inq_data);
3217 }
3218 
3219 static void
3220 scsi_proto_debug_out(union ccb *ccb)
3221 {
3222 	char cdb_str[(SCSI_MAX_CDBLEN * 3) + 1];
3223 	struct cam_ed *device;
3224 
3225 	if (ccb->ccb_h.func_code != XPT_SCSI_IO)
3226 		return;
3227 
3228 	device = ccb->ccb_h.path->device;
3229 	CAM_DEBUG(ccb->ccb_h.path,
3230 	    CAM_DEBUG_CDB,("%s. CDB: %s\n",
3231 		scsi_op_desc(scsiio_cdb_ptr(&ccb->csio)[0], &device->inq_data),
3232 		scsi_cdb_string(scsiio_cdb_ptr(&ccb->csio), cdb_str, sizeof(cdb_str))));
3233 }
3234