xref: /freebsd/sys/cam/scsi/scsi_all.h (revision 9ff086544d5f85b58349e28ed36a9811b8fe5cf9)
1 /*-
2  * Largely written by Julian Elischer (julian@tfs.com)
3  * for TRW Financial Systems.
4  *
5  * TRW Financial Systems, in accordance with their agreement with Carnegie
6  * Mellon University, makes this software available to CMU to distribute
7  * or use in any manner that they see fit as long as this message is kept with
8  * the software. For this reason TFS also grants any other persons or
9  * organisations permission to use or modify this software.
10  *
11  * TFS supplies this software to be publicly redistributed
12  * on the understanding that TFS is not responsible for the correct
13  * functioning of this software in any circumstances.
14  *
15  * Ported to run under 386BSD by Julian Elischer (julian@tfs.com) Sept 1992
16  *
17  * $FreeBSD$
18  */
19 
20 /*
21  * SCSI general  interface description
22  */
23 
24 #ifndef	_SCSI_SCSI_ALL_H
25 #define	_SCSI_SCSI_ALL_H 1
26 
27 #include <sys/cdefs.h>
28 #include <machine/stdarg.h>
29 
30 #ifdef _KERNEL
31 /*
32  * This is the number of seconds we wait for devices to settle after a SCSI
33  * bus reset.
34  */
35 extern int scsi_delay;
36 #endif /* _KERNEL */
37 
38 /*
39  * SCSI command format
40  */
41 
42 /*
43  * Define dome bits that are in ALL (or a lot of) scsi commands
44  */
45 #define	SCSI_CTL_LINK		0x01
46 #define	SCSI_CTL_FLAG		0x02
47 #define	SCSI_CTL_VENDOR		0xC0
48 #define	SCSI_CMD_LUN		0xA0	/* these two should not be needed */
49 #define	SCSI_CMD_LUN_SHIFT	5	/* LUN in the cmd is no longer SCSI */
50 
51 #define	SCSI_MAX_CDBLEN		16	/*
52 					 * 16 byte commands are in the
53 					 * SCSI-3 spec
54 					 */
55 #if defined(CAM_MAX_CDBLEN) && (CAM_MAX_CDBLEN < SCSI_MAX_CDBLEN)
56 #error "CAM_MAX_CDBLEN cannot be less than SCSI_MAX_CDBLEN"
57 #endif
58 
59 /* 6byte CDBs special case 0 length to be 256 */
60 #define	SCSI_CDB6_LEN(len)	((len) == 0 ? 256 : len)
61 
62 /*
63  * This type defines actions to be taken when a particular sense code is
64  * received.  Right now, these flags are only defined to take up 16 bits,
65  * but can be expanded in the future if necessary.
66  */
67 typedef enum {
68 	SS_NOP      = 0x000000,	/* Do nothing */
69 	SS_RETRY    = 0x010000,	/* Retry the command */
70 	SS_FAIL     = 0x020000,	/* Bail out */
71 	SS_START    = 0x030000,	/* Send a Start Unit command to the device,
72 				 * then retry the original command.
73 				 */
74 	SS_TUR      = 0x040000,	/* Send a Test Unit Ready command to the
75 				 * device, then retry the original command.
76 				 */
77 	SS_MASK     = 0xff0000
78 } scsi_sense_action;
79 
80 typedef enum {
81 	SSQ_NONE		= 0x0000,
82 	SSQ_DECREMENT_COUNT	= 0x0100,  /* Decrement the retry count */
83 	SSQ_MANY		= 0x0200,  /* send lots of recovery commands */
84 	SSQ_RANGE		= 0x0400,  /*
85 					    * This table entry represents the
86 					    * end of a range of ASCQs that
87 					    * have identical error actions
88 					    * and text.
89 					    */
90 	SSQ_PRINT_SENSE		= 0x0800,
91 	SSQ_UA			= 0x1000,  /* Broadcast UA. */
92 	SSQ_RESCAN		= 0x2000,  /* Rescan target for LUNs. */
93 	SSQ_LOST		= 0x4000,  /* Destroy the LUNs. */
94 	SSQ_MASK		= 0xff00
95 } scsi_sense_action_qualifier;
96 
97 /* Mask for error status values */
98 #define	SS_ERRMASK	0xff
99 
100 /* The default, retyable, error action */
101 #define	SS_RDEF		SS_RETRY|SSQ_DECREMENT_COUNT|SSQ_PRINT_SENSE|EIO
102 
103 /* The retyable, error action, with table specified error code */
104 #define	SS_RET		SS_RETRY|SSQ_DECREMENT_COUNT|SSQ_PRINT_SENSE
105 
106 /* Wait for transient error status to change */
107 #define	SS_WAIT		SS_TUR|SSQ_MANY|SSQ_DECREMENT_COUNT|SSQ_PRINT_SENSE
108 
109 /* Fatal error action, with table specified error code */
110 #define	SS_FATAL	SS_FAIL|SSQ_PRINT_SENSE
111 
112 struct scsi_generic
113 {
114 	u_int8_t opcode;
115 	u_int8_t bytes[11];
116 };
117 
118 struct scsi_request_sense
119 {
120 	u_int8_t opcode;
121 	u_int8_t byte2;
122 #define	SRS_DESC	0x01
123 	u_int8_t unused[2];
124 	u_int8_t length;
125 	u_int8_t control;
126 };
127 
128 struct scsi_test_unit_ready
129 {
130 	u_int8_t opcode;
131 	u_int8_t byte2;
132 	u_int8_t unused[3];
133 	u_int8_t control;
134 };
135 
136 struct scsi_receive_diag {
137 	uint8_t opcode;
138 	uint8_t byte2;
139 #define SRD_PCV		0x01
140 	uint8_t page_code;
141 	uint8_t length[2];
142 	uint8_t control;
143 };
144 
145 struct scsi_send_diag {
146 	uint8_t opcode;
147 	uint8_t byte2;
148 #define SSD_UNITOFFL				0x01
149 #define SSD_DEVOFFL				0x02
150 #define SSD_SELFTEST				0x04
151 #define SSD_PF					0x10
152 #define SSD_SELF_TEST_CODE_MASK			0xE0
153 #define SSD_SELF_TEST_CODE_SHIFT		5
154 #define		SSD_SELF_TEST_CODE_NONE		0x00
155 #define		SSD_SELF_TEST_CODE_BG_SHORT	0x01
156 #define		SSD_SELF_TEST_CODE_BG_EXTENDED	0x02
157 #define		SSD_SELF_TEST_CODE_BG_ABORT	0x04
158 #define		SSD_SELF_TEST_CODE_FG_SHORT	0x05
159 #define		SSD_SELF_TEST_CODE_FG_EXTENDED	0x06
160 	uint8_t	reserved;
161 	uint8_t	length[2];
162 	uint8_t control;
163 };
164 
165 struct scsi_sense
166 {
167 	u_int8_t opcode;
168 	u_int8_t byte2;
169 	u_int8_t unused[2];
170 	u_int8_t length;
171 	u_int8_t control;
172 };
173 
174 struct scsi_inquiry
175 {
176 	u_int8_t opcode;
177 	u_int8_t byte2;
178 #define	SI_EVPD 	0x01
179 #define	SI_CMDDT	0x02
180 	u_int8_t page_code;
181 	u_int8_t length[2];
182 	u_int8_t control;
183 };
184 
185 struct scsi_mode_sense_6
186 {
187 	u_int8_t opcode;
188 	u_int8_t byte2;
189 #define	SMS_DBD				0x08
190 	u_int8_t page;
191 #define	SMS_PAGE_CODE 			0x3F
192 #define	SMS_VENDOR_SPECIFIC_PAGE	0x00
193 #define	SMS_DISCONNECT_RECONNECT_PAGE	0x02
194 #define	SMS_FORMAT_DEVICE_PAGE		0x03
195 #define	SMS_GEOMETRY_PAGE		0x04
196 #define	SMS_CACHE_PAGE			0x08
197 #define	SMS_PERIPHERAL_DEVICE_PAGE	0x09
198 #define	SMS_CONTROL_MODE_PAGE		0x0A
199 #define	SMS_PROTO_SPECIFIC_PAGE		0x19
200 #define	SMS_INFO_EXCEPTIONS_PAGE	0x1C
201 #define	SMS_ALL_PAGES_PAGE		0x3F
202 #define	SMS_PAGE_CTRL_MASK		0xC0
203 #define	SMS_PAGE_CTRL_CURRENT 		0x00
204 #define	SMS_PAGE_CTRL_CHANGEABLE 	0x40
205 #define	SMS_PAGE_CTRL_DEFAULT 		0x80
206 #define	SMS_PAGE_CTRL_SAVED 		0xC0
207 	u_int8_t subpage;
208 #define	SMS_SUBPAGE_PAGE_0		0x00
209 #define	SMS_SUBPAGE_ALL			0xff
210 	u_int8_t length;
211 	u_int8_t control;
212 };
213 
214 struct scsi_mode_sense_10
215 {
216 	u_int8_t opcode;
217 	u_int8_t byte2;		/* same bits as small version */
218 #define	SMS10_LLBAA			0x10
219 	u_int8_t page; 		/* same bits as small version */
220 	u_int8_t subpage;
221 	u_int8_t unused[3];
222 	u_int8_t length[2];
223 	u_int8_t control;
224 };
225 
226 struct scsi_mode_select_6
227 {
228 	u_int8_t opcode;
229 	u_int8_t byte2;
230 #define	SMS_SP	0x01
231 #define	SMS_PF	0x10
232 	u_int8_t unused[2];
233 	u_int8_t length;
234 	u_int8_t control;
235 };
236 
237 struct scsi_mode_select_10
238 {
239 	u_int8_t opcode;
240 	u_int8_t byte2;		/* same bits as small version */
241 	u_int8_t unused[5];
242 	u_int8_t length[2];
243 	u_int8_t control;
244 };
245 
246 /*
247  * When sending a mode select to a tape drive, the medium type must be 0.
248  */
249 struct scsi_mode_hdr_6
250 {
251 	u_int8_t datalen;
252 	u_int8_t medium_type;
253 	u_int8_t dev_specific;
254 	u_int8_t block_descr_len;
255 };
256 
257 struct scsi_mode_hdr_10
258 {
259 	u_int8_t datalen[2];
260 	u_int8_t medium_type;
261 	u_int8_t dev_specific;
262 	u_int8_t reserved[2];
263 	u_int8_t block_descr_len[2];
264 };
265 
266 struct scsi_mode_block_descr
267 {
268 	u_int8_t density_code;
269 	u_int8_t num_blocks[3];
270 	u_int8_t reserved;
271 	u_int8_t block_len[3];
272 };
273 
274 struct scsi_per_res_in
275 {
276 	u_int8_t opcode;
277 	u_int8_t action;
278 #define	SPRI_RK	0x00
279 #define	SPRI_RR	0x01
280 #define	SPRI_RC	0x02
281 #define	SPRI_RS	0x03
282 	u_int8_t reserved[5];
283 	u_int8_t length[2];
284 #define	SPRI_MAX_LEN		0xffff
285 	u_int8_t control;
286 };
287 
288 struct scsi_per_res_in_header
289 {
290 	u_int8_t generation[4];
291 	u_int8_t length[4];
292 };
293 
294 struct scsi_per_res_key
295 {
296 	u_int8_t key[8];
297 };
298 
299 struct scsi_per_res_in_keys
300 {
301 	struct scsi_per_res_in_header header;
302 	struct scsi_per_res_key keys[0];
303 };
304 
305 struct scsi_per_res_cap
306 {
307 	uint8_t length[2];
308 	uint8_t flags1;
309 #define	SPRI_RLR_C		0x80
310 #define	SPRI_CRH		0x10
311 #define	SPRI_SIP_C		0x08
312 #define	SPRI_ATP_C		0x04
313 #define	SPRI_PTPL_C		0x01
314 	uint8_t flags2;
315 #define	SPRI_TMV		0x80
316 #define	SPRI_ALLOW_CMD_MASK	0x70
317 #define	SPRI_ALLOW_CMD_SHIFT	4
318 #define	SPRI_ALLOW_NA		0x00
319 #define	SPRI_ALLOW_1		0x10
320 #define	SPRI_ALLOW_2		0x20
321 #define	SPRI_ALLOW_3		0x30
322 #define	SPRI_ALLOW_4		0x40
323 #define	SPRI_ALLOW_5		0x50
324 #define	SPRI_PTPL_A		0x01
325 	uint8_t type_mask[2];
326 #define	SPRI_TM_WR_EX_AR	0x8000
327 #define	SPRI_TM_EX_AC_RO	0x4000
328 #define	SPRI_TM_WR_EX_RO	0x2000
329 #define	SPRI_TM_EX_AC		0x0800
330 #define	SPRI_TM_WR_EX		0x0200
331 #define	SPRI_TM_EX_AC_AR	0x0001
332 	uint8_t reserved[2];
333 };
334 
335 struct scsi_per_res_in_rsrv_data
336 {
337 	uint8_t reservation[8];
338 	uint8_t scope_addr[4];
339 	uint8_t reserved;
340 	uint8_t scopetype;
341 #define	SPRT_WE    0x01
342 #define	SPRT_EA    0x03
343 #define	SPRT_WERO  0x05
344 #define	SPRT_EARO  0x06
345 #define	SPRT_WEAR  0x07
346 #define	SPRT_EAAR  0x08
347 	uint8_t extent_length[2];
348 };
349 
350 struct scsi_per_res_in_rsrv
351 {
352 	struct scsi_per_res_in_header header;
353 	struct scsi_per_res_in_rsrv_data data;
354 };
355 
356 struct scsi_per_res_in_full_desc
357 {
358 	struct scsi_per_res_key res_key;
359 	uint8_t reserved1[4];
360 	uint8_t flags;
361 #define	SPRI_FULL_ALL_TG_PT	0x02
362 #define	SPRI_FULL_R_HOLDER	0x01
363 	uint8_t scopetype;
364 	uint8_t reserved2[4];
365 	uint8_t rel_trgt_port_id[2];
366 	uint8_t additional_length[4];
367 	uint8_t transport_id[];
368 };
369 
370 struct scsi_per_res_in_full
371 {
372 	struct scsi_per_res_in_header header;
373 	struct scsi_per_res_in_full_desc desc[];
374 };
375 
376 struct scsi_per_res_out
377 {
378 	u_int8_t opcode;
379 	u_int8_t action;
380 #define	SPRO_REGISTER		0x00
381 #define	SPRO_RESERVE		0x01
382 #define	SPRO_RELEASE		0x02
383 #define	SPRO_CLEAR		0x03
384 #define	SPRO_PREEMPT		0x04
385 #define	SPRO_PRE_ABO		0x05
386 #define	SPRO_REG_IGNO		0x06
387 #define	SPRO_REG_MOVE		0x07
388 #define	SPRO_REPL_LOST_RES	0x08
389 #define	SPRO_ACTION_MASK	0x1f
390 	u_int8_t scope_type;
391 #define	SPR_SCOPE_MASK		0xf0
392 #define	SPR_SCOPE_SHIFT		4
393 #define	SPR_LU_SCOPE		0x00
394 #define	SPR_EXTENT_SCOPE	0x10
395 #define	SPR_ELEMENT_SCOPE	0x20
396 #define	SPR_TYPE_MASK		0x0f
397 #define	SPR_TYPE_RD_SHARED	0x00
398 #define	SPR_TYPE_WR_EX		0x01
399 #define	SPR_TYPE_RD_EX		0x02
400 #define	SPR_TYPE_EX_AC		0x03
401 #define	SPR_TYPE_SHARED		0x04
402 #define	SPR_TYPE_WR_EX_RO	0x05
403 #define	SPR_TYPE_EX_AC_RO	0x06
404 #define	SPR_TYPE_WR_EX_AR	0x07
405 #define	SPR_TYPE_EX_AC_AR	0x08
406 	u_int8_t reserved[2];
407 	u_int8_t length[4];
408 	u_int8_t control;
409 };
410 
411 struct scsi_per_res_out_parms
412 {
413 	struct scsi_per_res_key res_key;
414 	u_int8_t serv_act_res_key[8];
415 	u_int8_t scope_spec_address[4];
416 	u_int8_t flags;
417 #define	SPR_SPEC_I_PT		0x08
418 #define	SPR_ALL_TG_PT		0x04
419 #define	SPR_APTPL		0x01
420 	u_int8_t reserved1;
421 	u_int8_t extent_length[2];
422 	u_int8_t transport_id_list[];
423 };
424 
425 struct scsi_per_res_out_trans_ids {
426 	u_int8_t additional_length[4];
427 	u_int8_t transport_ids[];
428 };
429 
430 /*
431  * Used with REGISTER AND MOVE serivce action of the PERSISTENT RESERVE OUT
432  * command.
433  */
434 struct scsi_per_res_reg_move
435 {
436 	struct scsi_per_res_key res_key;
437 	u_int8_t serv_act_res_key[8];
438 	u_int8_t reserved;
439 	u_int8_t flags;
440 #define	SPR_REG_MOVE_UNREG	0x02
441 #define	SPR_REG_MOVE_APTPL	0x01
442 	u_int8_t rel_trgt_port_id[2];
443 	u_int8_t transport_id_length[4];
444 	u_int8_t transport_id[];
445 };
446 
447 struct scsi_transportid_header
448 {
449 	uint8_t format_protocol;
450 #define	SCSI_TRN_FORMAT_MASK		0xc0
451 #define	SCSI_TRN_FORMAT_SHIFT		6
452 #define	SCSI_TRN_PROTO_MASK		0x0f
453 };
454 
455 struct scsi_transportid_fcp
456 {
457 	uint8_t format_protocol;
458 #define	SCSI_TRN_FCP_FORMAT_DEFAULT	0x00
459 	uint8_t reserved1[7];
460 	uint8_t n_port_name[8];
461 	uint8_t reserved2[8];
462 };
463 
464 struct scsi_transportid_spi
465 {
466 	uint8_t format_protocol;
467 #define	SCSI_TRN_SPI_FORMAT_DEFAULT	0x00
468 	uint8_t reserved1;
469 	uint8_t scsi_addr[2];
470 	uint8_t obsolete[2];
471 	uint8_t rel_trgt_port_id[2];
472 	uint8_t reserved2[16];
473 };
474 
475 struct scsi_transportid_1394
476 {
477 	uint8_t format_protocol;
478 #define	SCSI_TRN_1394_FORMAT_DEFAULT	0x00
479 	uint8_t reserved1[7];
480 	uint8_t eui64[8];
481 	uint8_t reserved2[8];
482 };
483 
484 struct scsi_transportid_rdma
485 {
486 	uint8_t format_protocol;
487 #define	SCSI_TRN_RDMA_FORMAT_DEFAULT	0x00
488 	uint8_t reserved[7];
489 #define	SCSI_TRN_RDMA_PORT_LEN		16
490 	uint8_t initiator_port_id[SCSI_TRN_RDMA_PORT_LEN];
491 };
492 
493 struct scsi_transportid_iscsi_device
494 {
495 	uint8_t format_protocol;
496 #define	SCSI_TRN_ISCSI_FORMAT_DEVICE	0x00
497 	uint8_t reserved;
498 	uint8_t additional_length[2];
499 	uint8_t iscsi_name[];
500 };
501 
502 struct scsi_transportid_iscsi_port
503 {
504 	uint8_t format_protocol;
505 #define	SCSI_TRN_ISCSI_FORMAT_PORT	0x40
506 	uint8_t reserved;
507 	uint8_t additional_length[2];
508 	uint8_t iscsi_name[];
509 	/*
510 	 * Followed by a separator and iSCSI initiator session ID
511 	 */
512 };
513 
514 struct scsi_transportid_sas
515 {
516 	uint8_t format_protocol;
517 #define	SCSI_TRN_SAS_FORMAT_DEFAULT	0x00
518 	uint8_t reserved1[3];
519 	uint8_t sas_address[8];
520 	uint8_t reserved2[12];
521 };
522 
523 struct scsi_sop_routing_id_norm {
524 	uint8_t bus;
525 	uint8_t devfunc;
526 #define	SCSI_TRN_SOP_BUS_MAX		0xff
527 #define	SCSI_TRN_SOP_DEV_MAX		0x1f
528 #define	SCSI_TRN_SOP_DEV_MASK		0xf8
529 #define	SCSI_TRN_SOP_DEV_SHIFT		3
530 #define	SCSI_TRN_SOP_FUNC_NORM_MASK	0x07
531 #define	SCSI_TRN_SOP_FUNC_NORM_MAX	0x07
532 };
533 
534 struct scsi_sop_routing_id_alt {
535 	uint8_t bus;
536 	uint8_t function;
537 #define	SCSI_TRN_SOP_FUNC_ALT_MAX	0xff
538 };
539 
540 struct scsi_transportid_sop
541 {
542 	uint8_t format_protocol;
543 #define	SCSI_TRN_SOP_FORMAT_DEFAULT	0x00
544 	uint8_t reserved1;
545 	uint8_t routing_id[2];
546 	uint8_t reserved2[20];
547 };
548 
549 struct scsi_log_sense
550 {
551 	u_int8_t opcode;
552 	u_int8_t byte2;
553 #define	SLS_SP				0x01
554 #define	SLS_PPC				0x02
555 	u_int8_t page;
556 #define	SLS_PAGE_CODE 			0x3F
557 #define	SLS_SUPPORTED_PAGES_PAGE	0x00
558 #define	SLS_OVERRUN_PAGE		0x01
559 #define	SLS_ERROR_WRITE_PAGE		0x02
560 #define	SLS_ERROR_READ_PAGE		0x03
561 #define	SLS_ERROR_READREVERSE_PAGE	0x04
562 #define	SLS_ERROR_VERIFY_PAGE		0x05
563 #define	SLS_ERROR_NONMEDIUM_PAGE	0x06
564 #define	SLS_ERROR_LASTN_PAGE		0x07
565 #define	SLS_LOGICAL_BLOCK_PROVISIONING	0x0c
566 #define	SLS_SELF_TEST_PAGE		0x10
567 #define	SLS_STAT_AND_PERF		0x19
568 #define	SLS_IE_PAGE			0x2f
569 #define	SLS_PAGE_CTRL_MASK		0xC0
570 #define	SLS_PAGE_CTRL_THRESHOLD		0x00
571 #define	SLS_PAGE_CTRL_CUMULATIVE	0x40
572 #define	SLS_PAGE_CTRL_THRESH_DEFAULT	0x80
573 #define	SLS_PAGE_CTRL_CUMUL_DEFAULT	0xC0
574 	u_int8_t subpage;
575 #define	SLS_SUPPORTED_SUBPAGES_SUBPAGE	0xff
576 	u_int8_t reserved;
577 	u_int8_t paramptr[2];
578 	u_int8_t length[2];
579 	u_int8_t control;
580 };
581 
582 struct scsi_log_select
583 {
584 	u_int8_t opcode;
585 	u_int8_t byte2;
586 /*	SLS_SP				0x01 */
587 #define	SLS_PCR				0x02
588 	u_int8_t page;
589 /*	SLS_PAGE_CTRL_MASK		0xC0 */
590 /*	SLS_PAGE_CTRL_THRESHOLD		0x00 */
591 /*	SLS_PAGE_CTRL_CUMULATIVE	0x40 */
592 /*	SLS_PAGE_CTRL_THRESH_DEFAULT	0x80 */
593 /*	SLS_PAGE_CTRL_CUMUL_DEFAULT	0xC0 */
594 	u_int8_t reserved[4];
595 	u_int8_t length[2];
596 	u_int8_t control;
597 };
598 
599 struct scsi_log_header
600 {
601 	u_int8_t page;
602 #define	SL_PAGE_CODE			0x3F
603 #define	SL_SPF				0x40
604 #define	SL_DS				0x80
605 	u_int8_t subpage;
606 	u_int8_t datalen[2];
607 };
608 
609 struct scsi_log_param_header {
610 	u_int8_t param_code[2];
611 	u_int8_t param_control;
612 #define	SLP_LP				0x01
613 #define	SLP_LBIN			0x02
614 #define	SLP_TMC_MASK			0x0C
615 #define	SLP_TMC_ALWAYS			0x00
616 #define	SLP_TMC_EQUAL			0x04
617 #define	SLP_TMC_NOTEQUAL		0x08
618 #define	SLP_TMC_GREATER			0x0C
619 #define	SLP_ETC				0x10
620 #define	SLP_TSD				0x20
621 #define	SLP_DS				0x40
622 #define	SLP_DU				0x80
623 	u_int8_t param_len;
624 };
625 
626 struct scsi_log_stat_and_perf {
627 	struct scsi_log_param_header hdr;
628 #define	SLP_SAP				0x0001
629 	uint8_t	read_num[8];
630 	uint8_t	write_num[8];
631 	uint8_t	recvieved_lba[8];
632 	uint8_t	transmitted_lba[8];
633 	uint8_t	read_int[8];
634 	uint8_t	write_int[8];
635 	uint8_t	weighted_num[8];
636 	uint8_t	weighted_int[8];
637 };
638 
639 struct scsi_log_idle_time {
640 	struct scsi_log_param_header hdr;
641 #define	SLP_IT				0x0002
642 	uint8_t	idle_int[8];
643 };
644 
645 struct scsi_log_time_interval {
646 	struct scsi_log_param_header hdr;
647 #define	SLP_TI				0x0003
648 	uint8_t	exponent[4];
649 	uint8_t	integer[4];
650 };
651 
652 struct scsi_log_fua_stat_and_perf {
653 	struct scsi_log_param_header hdr;
654 #define	SLP_FUA_SAP			0x0004
655 	uint8_t	fua_read_num[8];
656 	uint8_t	fua_write_num[8];
657 	uint8_t	fuanv_read_num[8];
658 	uint8_t	fuanv_write_num[8];
659 	uint8_t	fua_read_int[8];
660 	uint8_t	fua_write_int[8];
661 	uint8_t	fuanv_read_int[8];
662 	uint8_t	fuanv_write_int[8];
663 };
664 
665 struct scsi_log_informational_exceptions {
666 	struct scsi_log_param_header hdr;
667 #define	SLP_IE_GEN			0x0000
668 	uint8_t	ie_asc;
669 	uint8_t	ie_ascq;
670 	uint8_t	temperature;
671 };
672 
673 struct scsi_control_page {
674 	u_int8_t page_code;
675 	u_int8_t page_length;
676 	u_int8_t rlec;
677 #define	SCP_RLEC			0x01	/*Report Log Exception Cond*/
678 #define	SCP_GLTSD			0x02	/*Global Logging target
679 						  save disable */
680 #define	SCP_DSENSE			0x04	/*Descriptor Sense */
681 #define	SCP_DPICZ			0x08	/*Disable Prot. Info Check
682 						  if Prot. Field is Zero */
683 #define	SCP_TMF_ONLY			0x10	/*TM Functions Only*/
684 #define	SCP_TST_MASK			0xE0	/*Task Set Type Mask*/
685 #define	SCP_TST_ONE			0x00	/*One Task Set*/
686 #define	SCP_TST_SEPARATE		0x20	/*Separate Task Sets*/
687 	u_int8_t queue_flags;
688 #define	SCP_QUEUE_ALG_MASK		0xF0
689 #define	SCP_QUEUE_ALG_RESTRICTED	0x00
690 #define	SCP_QUEUE_ALG_UNRESTRICTED	0x10
691 #define	SCP_NUAR			0x08	/*No UA on release*/
692 #define	SCP_QUEUE_ERR			0x02	/*Queued I/O aborted for CACs*/
693 #define	SCP_QUEUE_DQUE			0x01	/*Queued I/O disabled*/
694 	u_int8_t eca_and_aen;
695 #define	SCP_EECA			0x80	/*Enable Extended CA*/
696 #define	SCP_RAC				0x40	/*Report a check*/
697 #define	SCP_SWP				0x08	/*Software Write Protect*/
698 #define	SCP_RAENP			0x04	/*Ready AEN Permission*/
699 #define	SCP_UAAENP			0x02	/*UA AEN Permission*/
700 #define	SCP_EAENP			0x01	/*Error AEN Permission*/
701 	u_int8_t flags4;
702 #define	SCP_ATO				0x80	/*Application tag owner*/
703 #define	SCP_TAS				0x40	/*Task aborted status*/
704 #define	SCP_ATMPE			0x20	/*Application tag mode page*/
705 #define	SCP_RWWP			0x10	/*Reject write without prot*/
706 	u_int8_t aen_holdoff_period[2];
707 	u_int8_t busy_timeout_period[2];
708 	u_int8_t extended_selftest_completion_time[2];
709 };
710 
711 struct scsi_control_ext_page {
712 	uint8_t page_code;
713 #define SCEP_PAGE_CODE			0x0a
714 	uint8_t subpage_code;
715 #define SCEP_SUBPAGE_CODE		0x01
716 	uint8_t page_length[2];
717 	uint8_t flags;
718 #define	SCEP_TCMOS			0x04	/* Timestamp Changeable by */
719 #define	SCEP_SCSIP			0x02	/* SCSI Precedence (clock) */
720 #define	SCEP_IALUAE			0x01	/* Implicit ALUA Enabled */
721 	uint8_t prio;
722 	uint8_t max_sense;
723 	uint8_t reserve[25];
724 };
725 
726 struct scsi_cache_page {
727 	u_int8_t page_code;
728 #define	SCHP_PAGE_SAVABLE		0x80	/* Page is savable */
729 	u_int8_t page_length;
730 	u_int8_t cache_flags;
731 #define	SCHP_FLAGS_WCE			0x04	/* Write Cache Enable */
732 #define	SCHP_FLAGS_MF			0x02	/* Multiplication factor */
733 #define	SCHP_FLAGS_RCD			0x01	/* Read Cache Disable */
734 	u_int8_t rw_cache_policy;
735 	u_int8_t dis_prefetch[2];
736 	u_int8_t min_prefetch[2];
737 	u_int8_t max_prefetch[2];
738 	u_int8_t max_prefetch_ceil[2];
739 };
740 
741 /*
742  * XXX KDM
743  * Updated version of the cache page, as of SBC.  Update this to SBC-3 and
744  * rationalize the two.
745  */
746 struct scsi_caching_page {
747 	uint8_t page_code;
748 #define	SMS_CACHING_PAGE		0x08
749 	uint8_t page_length;
750 	uint8_t flags1;
751 #define	SCP_IC		0x80
752 #define	SCP_ABPF	0x40
753 #define	SCP_CAP		0x20
754 #define	SCP_DISC	0x10
755 #define	SCP_SIZE	0x08
756 #define	SCP_WCE		0x04
757 #define	SCP_MF		0x02
758 #define	SCP_RCD		0x01
759 	uint8_t ret_priority;
760 	uint8_t disable_pf_transfer_len[2];
761 	uint8_t min_prefetch[2];
762 	uint8_t max_prefetch[2];
763 	uint8_t max_pf_ceiling[2];
764 	uint8_t flags2;
765 #define	SCP_FSW		0x80
766 #define	SCP_LBCSS	0x40
767 #define	SCP_DRA		0x20
768 #define	SCP_VS1		0x10
769 #define	SCP_VS2		0x08
770 	uint8_t cache_segments;
771 	uint8_t cache_seg_size[2];
772 	uint8_t reserved;
773 	uint8_t non_cache_seg_size[3];
774 };
775 
776 struct scsi_info_exceptions_page {
777 	u_int8_t page_code;
778 #define	SIEP_PAGE_SAVABLE		0x80	/* Page is savable */
779 	u_int8_t page_length;
780 	u_int8_t info_flags;
781 #define	SIEP_FLAGS_PERF			0x80
782 #define	SIEP_FLAGS_EBF			0x20
783 #define	SIEP_FLAGS_EWASC		0x10
784 #define	SIEP_FLAGS_DEXCPT		0x08
785 #define	SIEP_FLAGS_TEST			0x04
786 #define	SIEP_FLAGS_EBACKERR		0x02
787 #define	SIEP_FLAGS_LOGERR		0x01
788 	u_int8_t mrie;
789 #define	SIEP_MRIE_NO		0x00
790 #define	SIEP_MRIE_UA		0x02
791 #define	SIEP_MRIE_REC_COND	0x03
792 #define	SIEP_MRIE_REC_UNCOND	0x04
793 #define	SIEP_MRIE_NO_SENSE	0x05
794 #define	SIEP_MRIE_ON_REQ	0x06
795 	u_int8_t interval_timer[4];
796 	u_int8_t report_count[4];
797 };
798 
799 struct scsi_logical_block_provisioning_page_descr {
800 	uint8_t flags;
801 #define	SLBPPD_ENABLED		0x80
802 #define	SLBPPD_TYPE_MASK	0x38
803 #define	SLBPPD_ARMING_MASK	0x07
804 #define	SLBPPD_ARMING_DEC	0x02
805 #define	SLBPPD_ARMING_INC	0x01
806 	uint8_t resource;
807 	uint8_t reserved[2];
808 	uint8_t count[4];
809 };
810 
811 struct scsi_logical_block_provisioning_page {
812 	uint8_t page_code;
813 	uint8_t subpage_code;
814 	uint8_t page_length[2];
815 	uint8_t flags;
816 #define	SLBPP_SITUA		0x01
817 	uint8_t reserved[11];
818 	struct scsi_logical_block_provisioning_page_descr descr[0];
819 };
820 
821 /*
822  * SCSI protocol identifier values, current as of SPC4r36l.
823  */
824 #define	SCSI_PROTO_FC		0x00	/* Fibre Channel */
825 #define	SCSI_PROTO_SPI		0x01	/* Parallel SCSI */
826 #define	SCSI_PROTO_SSA		0x02	/* Serial Storage Arch. */
827 #define	SCSI_PROTO_1394		0x03	/* IEEE 1394 (Firewire) */
828 #define	SCSI_PROTO_RDMA		0x04	/* SCSI RDMA Protocol */
829 #define	SCSI_PROTO_ISCSI	0x05	/* Internet SCSI */
830 #define	SCSI_PROTO_iSCSI	0x05	/* Internet SCSI */
831 #define	SCSI_PROTO_SAS		0x06	/* SAS Serial SCSI Protocol */
832 #define	SCSI_PROTO_ADT		0x07	/* Automation/Drive Int. Trans. Prot.*/
833 #define	SCSI_PROTO_ADITP	0x07	/* Automation/Drive Int. Trans. Prot.*/
834 #define	SCSI_PROTO_ATA		0x08	/* AT Attachment Interface */
835 #define	SCSI_PROTO_UAS		0x09	/* USB Atached SCSI */
836 #define	SCSI_PROTO_SOP		0x0a	/* SCSI over PCI Express */
837 #define	SCSI_PROTO_NONE		0x0f	/* No specific protocol */
838 
839 struct scsi_proto_specific_page {
840 	u_int8_t page_code;
841 #define	SPSP_PAGE_SAVABLE		0x80	/* Page is savable */
842 	u_int8_t page_length;
843 	u_int8_t protocol;
844 #define	SPSP_PROTO_FC			SCSI_PROTO_FC
845 #define	SPSP_PROTO_SPI			SCSI_PROTO_SPI
846 #define	SPSP_PROTO_SSA			SCSI_PROTO_SSA
847 #define	SPSP_PROTO_1394			SCSI_PROTO_1394
848 #define	SPSP_PROTO_RDMA			SCSI_PROTO_RDMA
849 #define	SPSP_PROTO_ISCSI		SCSI_PROTO_ISCSI
850 #define	SPSP_PROTO_SAS			SCSI_PROTO_SAS
851 #define	SPSP_PROTO_ADT			SCSI_PROTO_ADITP
852 #define	SPSP_PROTO_ATA			SCSI_PROTO_ATA
853 #define	SPSP_PROTO_UAS			SCSI_PROTO_UAS
854 #define	SPSP_PROTO_SOP			SCSI_PROTO_SOP
855 #define	SPSP_PROTO_NONE			SCSI_PROTO_NONE
856 };
857 
858 struct scsi_reserve
859 {
860 	u_int8_t opcode;
861 	u_int8_t byte2;
862 #define	SR_EXTENT	0x01
863 #define	SR_ID_MASK	0x0e
864 #define	SR_3RDPTY	0x10
865 #define	SR_LUN_MASK	0xe0
866 	u_int8_t resv_id;
867 	u_int8_t length[2];
868 	u_int8_t control;
869 };
870 
871 struct scsi_reserve_10 {
872 	uint8_t	opcode;
873 	uint8_t	byte2;
874 #define	SR10_3RDPTY	0x10
875 #define	SR10_LONGID	0x02
876 #define	SR10_EXTENT	0x01
877 	uint8_t resv_id;
878 	uint8_t thirdparty_id;
879 	uint8_t reserved[3];
880 	uint8_t length[2];
881 	uint8_t control;
882 };
883 
884 
885 struct scsi_release
886 {
887 	u_int8_t opcode;
888 	u_int8_t byte2;
889 	u_int8_t resv_id;
890 	u_int8_t unused[1];
891 	u_int8_t length;
892 	u_int8_t control;
893 };
894 
895 struct scsi_release_10 {
896 	uint8_t opcode;
897 	uint8_t byte2;
898 	uint8_t resv_id;
899 	uint8_t thirdparty_id;
900 	uint8_t reserved[3];
901 	uint8_t length[2];
902 	uint8_t control;
903 };
904 
905 struct scsi_prevent
906 {
907 	u_int8_t opcode;
908 	u_int8_t byte2;
909 	u_int8_t unused[2];
910 	u_int8_t how;
911 	u_int8_t control;
912 };
913 #define	PR_PREVENT 0x01
914 #define	PR_ALLOW   0x00
915 
916 struct scsi_sync_cache
917 {
918 	u_int8_t opcode;
919 	u_int8_t byte2;
920 #define	SSC_IMMED	0x02
921 #define	SSC_RELADR	0x01
922 	u_int8_t begin_lba[4];
923 	u_int8_t reserved;
924 	u_int8_t lb_count[2];
925 	u_int8_t control;
926 };
927 
928 struct scsi_sync_cache_16
929 {
930 	uint8_t opcode;
931 	uint8_t byte2;
932 	uint8_t begin_lba[8];
933 	uint8_t lb_count[4];
934 	uint8_t reserved;
935 	uint8_t control;
936 };
937 
938 struct scsi_format {
939 	uint8_t opcode;
940 	uint8_t byte2;
941 #define	SF_LONGLIST		0x20
942 #define	SF_FMTDATA		0x10
943 #define	SF_CMPLIST		0x08
944 #define	SF_FORMAT_MASK		0x07
945 #define	SF_FORMAT_BLOCK		0x00
946 #define	SF_FORMAT_LONG_BLOCK	0x03
947 #define	SF_FORMAT_BFI		0x04
948 #define	SF_FORMAT_PHYS		0x05
949 	uint8_t vendor;
950 	uint8_t interleave[2];
951 	uint8_t control;
952 };
953 
954 struct scsi_format_header_short {
955 	uint8_t reserved;
956 #define	SF_DATA_FOV	0x80
957 #define	SF_DATA_DPRY	0x40
958 #define	SF_DATA_DCRT	0x20
959 #define	SF_DATA_STPF	0x10
960 #define	SF_DATA_IP	0x08
961 #define	SF_DATA_DSP	0x04
962 #define	SF_DATA_IMMED	0x02
963 #define	SF_DATA_VS	0x01
964 	uint8_t byte2;
965 	uint8_t defect_list_len[2];
966 };
967 
968 struct scsi_format_header_long {
969 	uint8_t reserved;
970 	uint8_t byte2;
971 	uint8_t reserved2[2];
972 	uint8_t defect_list_len[4];
973 };
974 
975 struct scsi_changedef
976 {
977 	u_int8_t opcode;
978 	u_int8_t byte2;
979 	u_int8_t unused1;
980 	u_int8_t how;
981 	u_int8_t unused[4];
982 	u_int8_t datalen;
983 	u_int8_t control;
984 };
985 
986 struct scsi_read_buffer
987 {
988 	u_int8_t opcode;
989 	u_int8_t byte2;
990 #define	RWB_MODE		0x1F
991 #define	RWB_MODE_HDR_DATA	0x00
992 #define	RWB_MODE_VENDOR		0x01
993 #define	RWB_MODE_DATA		0x02
994 #define	RWB_MODE_DESCR		0x03
995 #define	RWB_MODE_DOWNLOAD	0x04
996 #define	RWB_MODE_DOWNLOAD_SAVE	0x05
997 #define	RWB_MODE_ECHO		0x0A
998 #define	RWB_MODE_ECHO_DESCR	0x0B
999 #define	RWB_MODE_ERROR_HISTORY	0x1C
1000         u_int8_t buffer_id;
1001         u_int8_t offset[3];
1002         u_int8_t length[3];
1003         u_int8_t control;
1004 };
1005 
1006 struct scsi_read_buffer_16
1007 {
1008 	uint8_t opcode;
1009 	uint8_t byte2;
1010 	uint8_t offset[8];
1011 	uint8_t length[4];
1012 	uint8_t buffer_id;
1013 	uint8_t control;
1014 };
1015 
1016 struct scsi_write_buffer
1017 {
1018 	u_int8_t opcode;
1019 	u_int8_t byte2;
1020 	u_int8_t buffer_id;
1021 	u_int8_t offset[3];
1022 	u_int8_t length[3];
1023 	u_int8_t control;
1024 };
1025 
1026 struct scsi_read_attribute
1027 {
1028 	u_int8_t opcode;
1029 	u_int8_t service_action;
1030 #define	SRA_SA_ATTR_VALUES		0x00
1031 #define	SRA_SA_ATTR_LIST		0x01
1032 #define	SRA_SA_LOG_VOL_LIST		0x02
1033 #define	SRA_SA_PART_LIST		0x03
1034 #define	SRA_SA_RESTRICTED		0x04
1035 #define	SRA_SA_SUPPORTED_ATTRS		0x05
1036 #define	SRA_SA_MASK			0x1f
1037 	u_int8_t element[2];
1038 	u_int8_t elem_type;
1039 	u_int8_t logical_volume;
1040 	u_int8_t reserved1;
1041 	u_int8_t partition;
1042 	u_int8_t first_attribute[2];
1043 	u_int8_t length[4];
1044 	u_int8_t cache;
1045 #define	SRA_CACHE			0x01
1046 	u_int8_t control;
1047 };
1048 
1049 struct scsi_write_attribute
1050 {
1051 	u_int8_t opcode;
1052 	u_int8_t byte2;
1053 #define	SWA_WTC				0x01
1054 	u_int8_t element[3];
1055 	u_int8_t logical_volume;
1056 	u_int8_t reserved1;
1057 	u_int8_t partition;
1058 	u_int8_t reserved2[2];
1059 	u_int8_t length[4];
1060 	u_int8_t reserved3;
1061 	u_int8_t control;
1062 };
1063 
1064 
1065 struct scsi_read_attribute_values
1066 {
1067 	u_int8_t length[4];
1068 	u_int8_t attribute_0[0];
1069 };
1070 
1071 struct scsi_mam_attribute_header
1072 {
1073 	u_int8_t id[2];
1074 	/*
1075 	 * Attributes obtained from SPC-4r36g (section 7.4.2.2) and
1076 	 * SSC-4r03 (section 4.2.21).
1077 	 */
1078 #define	SMA_ATTR_ID_DEVICE_MIN		0x0000
1079 
1080 #define	SMA_ATTR_REM_CAP_PARTITION	0x0000
1081 #define	SMA_ATTR_MAX_CAP_PARTITION	0x0001
1082 #define	SMA_ATTR_TAPEALERT_FLAGS	0x0002
1083 #define	SMA_ATTR_LOAD_COUNT		0x0003
1084 #define	SMA_ATTR_MAM_SPACE_REMAINING	0x0004
1085 
1086 #define	SMA_ATTR_DEV_ASSIGNING_ORG	0x0005
1087 #define	SMA_ATTR_FORMAT_DENSITY_CODE	0x0006
1088 #define	SMA_ATTR_INITIALIZATION_COUNT	0x0007
1089 #define	SMA_ATTR_VOLUME_ID		0x0008
1090 #define	SMA_ATTR_VOLUME_CHANGE_REF	0x0009
1091 
1092 #define	SMA_ATTR_DEV_SERIAL_LAST_LOAD	0x020a
1093 #define	SMA_ATTR_DEV_SERIAL_LAST_LOAD_1	0x020b
1094 #define	SMA_ATTR_DEV_SERIAL_LAST_LOAD_2	0x020c
1095 #define	SMA_ATTR_DEV_SERIAL_LAST_LOAD_3	0x020d
1096 
1097 #define	SMA_ATTR_TOTAL_MB_WRITTEN_LT	0x0220
1098 #define	SMA_ATTR_TOTAL_MB_READ_LT	0x0221
1099 #define	SMA_ATTR_TOTAL_MB_WRITTEN_CUR	0x0222
1100 #define	SMA_ATTR_TOTAL_MB_READ_CUR	0x0223
1101 #define	SMA_ATTR_FIRST_ENC_BLOCK	0x0224
1102 #define	SMA_ATTR_NEXT_UNENC_BLOCK	0x0225
1103 
1104 #define	SMA_ATTR_MEDIUM_USAGE_HIST	0x0340
1105 #define	SMA_ATTR_PART_USAGE_HIST	0x0341
1106 
1107 #define	SMA_ATTR_ID_DEVICE_MAX		0x03ff
1108 
1109 #define	SMA_ATTR_ID_MEDIUM_MIN		0x0400
1110 
1111 #define	SMA_ATTR_MED_MANUF		0x0400
1112 #define	SMA_ATTR_MED_SERIAL		0x0401
1113 
1114 #define	SMA_ATTR_MED_LENGTH		0x0402
1115 #define	SMA_ATTR_MED_WIDTH		0x0403
1116 #define	SMA_ATTR_MED_ASSIGNING_ORG	0x0404
1117 #define	SMA_ATTR_MED_DENSITY_CODE	0x0405
1118 
1119 #define	SMA_ATTR_MED_MANUF_DATE		0x0406
1120 #define	SMA_ATTR_MAM_CAPACITY		0x0407
1121 #define	SMA_ATTR_MED_TYPE		0x0408
1122 #define	SMA_ATTR_MED_TYPE_INFO		0x0409
1123 #define	SMA_ATTR_MED_SERIAL_NUM		0x040a
1124 
1125 #define	SMA_ATTR_ID_MEDIUM_MAX		0x07ff
1126 
1127 #define	SMA_ATTR_ID_HOST_MIN		0x0800
1128 
1129 #define	SMA_ATTR_APP_VENDOR		0x0800
1130 #define	SMA_ATTR_APP_NAME		0x0801
1131 #define	SMA_ATTR_APP_VERSION		0x0802
1132 #define	SMA_ATTR_USER_MED_TEXT_LABEL	0x0803
1133 #define	SMA_ATTR_LAST_WRITTEN_TIME	0x0804
1134 #define	SMA_ATTR_TEXT_LOCAL_ID		0x0805
1135 #define	SMA_ATTR_BARCODE		0x0806
1136 #define	SMA_ATTR_HOST_OWNER_NAME	0x0807
1137 #define	SMA_ATTR_MEDIA_POOL		0x0808
1138 #define	SMA_ATTR_PART_USER_LABEL	0x0809
1139 #define	SMA_ATTR_LOAD_UNLOAD_AT_PART	0x080a
1140 #define	SMA_ATTR_APP_FORMAT_VERSION	0x080b
1141 #define	SMA_ATTR_VOL_COHERENCY_INFO	0x080c
1142 
1143 #define	SMA_ATTR_ID_HOST_MAX		0x0bff
1144 
1145 #define	SMA_ATTR_VENDOR_DEVICE_MIN	0x0c00
1146 #define	SMA_ATTR_VENDOR_DEVICE_MAX	0x0fff
1147 #define	SMA_ATTR_VENDOR_MEDIUM_MIN	0x1000
1148 #define	SMA_ATTR_VENDOR_MEDIUM_MAX	0x13ff
1149 #define	SMA_ATTR_VENDOR_HOST_MIN	0x1400
1150 #define	SMA_ATTR_VENDOR_HOST_MAX	0x17ff
1151 	u_int8_t byte2;
1152 #define	SMA_FORMAT_BINARY	0x00
1153 #define	SMA_FORMAT_ASCII	0x01
1154 #define	SMA_FORMAT_TEXT		0x02
1155 #define	SMA_FORMAT_MASK		0x03
1156 #define	SMA_READ_ONLY		0x80
1157 	u_int8_t length[2];
1158 	u_int8_t attribute[0];
1159 };
1160 
1161 struct scsi_attrib_list_header {
1162 	u_int8_t length[4];
1163 	u_int8_t first_attr_0[0];
1164 };
1165 
1166 struct scsi_attrib_lv_list {
1167 	u_int8_t length[2];
1168 	u_int8_t first_lv_number;
1169 	u_int8_t num_logical_volumes;
1170 };
1171 
1172 struct scsi_attrib_vendser {
1173 	uint8_t vendor[8];
1174 	uint8_t serial_num[32];
1175 };
1176 
1177 /*
1178  * These values are used to decode the Volume Coherency Information
1179  * Attribute (0x080c) for LTFS-format coherency information.
1180  * Although the Application Client Specific lengths are different for
1181  * Version 0 and Version 1, the data is in fact the same.  The length
1182  * difference was due to a code bug.
1183  */
1184 #define	SCSI_LTFS_VER0_LEN	42
1185 #define	SCSI_LTFS_VER1_LEN	43
1186 #define	SCSI_LTFS_UUID_LEN	36
1187 #define	SCSI_LTFS_STR_NAME	"LTFS"
1188 #define	SCSI_LTFS_STR_LEN	4
1189 
1190 typedef enum {
1191 	SCSI_ATTR_FLAG_NONE		= 0x00,
1192 	SCSI_ATTR_FLAG_HEX		= 0x01,
1193 	SCSI_ATTR_FLAG_FP		= 0x02,
1194 	SCSI_ATTR_FLAG_DIV_10		= 0x04,
1195 	SCSI_ATTR_FLAG_FP_1DIGIT	= 0x08
1196 } scsi_attrib_flags;
1197 
1198 typedef enum {
1199 	SCSI_ATTR_OUTPUT_NONE		= 0x00,
1200 	SCSI_ATTR_OUTPUT_TEXT_MASK	= 0x03,
1201 	SCSI_ATTR_OUTPUT_TEXT_RAW	= 0x00,
1202 	SCSI_ATTR_OUTPUT_TEXT_ESC	= 0x01,
1203 	SCSI_ATTR_OUTPUT_TEXT_RSV1	= 0x02,
1204 	SCSI_ATTR_OUTPUT_TEXT_RSV2	= 0x03,
1205 	SCSI_ATTR_OUTPUT_NONASCII_MASK	= 0x0c,
1206 	SCSI_ATTR_OUTPUT_NONASCII_TRIM	= 0x00,
1207 	SCSI_ATTR_OUTPUT_NONASCII_ESC	= 0x04,
1208 	SCSI_ATTR_OUTPUT_NONASCII_RAW	= 0x08,
1209 	SCSI_ATTR_OUTPUT_NONASCII_RSV1	= 0x0c,
1210 	SCSI_ATTR_OUTPUT_FIELD_MASK	= 0xf0,
1211 	SCSI_ATTR_OUTPUT_FIELD_ALL	= 0xf0,
1212 	SCSI_ATTR_OUTPUT_FIELD_NONE	= 0x00,
1213 	SCSI_ATTR_OUTPUT_FIELD_DESC	= 0x10,
1214 	SCSI_ATTR_OUTPUT_FIELD_NUM	= 0x20,
1215 	SCSI_ATTR_OUTPUT_FIELD_SIZE	= 0x40,
1216 	SCSI_ATTR_OUTPUT_FIELD_RW	= 0x80
1217 } scsi_attrib_output_flags;
1218 
1219 struct sbuf;
1220 
1221 struct scsi_attrib_table_entry
1222 {
1223 	u_int32_t id;
1224 	u_int32_t flags;
1225 	const char *desc;
1226 	const char *suffix;
1227 	int (*to_str)(struct sbuf *sb, struct scsi_mam_attribute_header *hdr,
1228 		      uint32_t valid_len, uint32_t flags,
1229 		      uint32_t output_flags, char *error_str,
1230 		      int error_str_len);
1231 	int (*parse_str)(char *str, struct scsi_mam_attribute_header *hdr,
1232 			 uint32_t alloc_len, uint32_t flags, char *error_str,
1233 			 int error_str_len);
1234 };
1235 
1236 struct scsi_rw_6
1237 {
1238 	u_int8_t opcode;
1239 	u_int8_t addr[3];
1240 /* only 5 bits are valid in the MSB address byte */
1241 #define	SRW_TOPADDR	0x1F
1242 	u_int8_t length;
1243 	u_int8_t control;
1244 };
1245 
1246 struct scsi_rw_10
1247 {
1248 	u_int8_t opcode;
1249 #define	SRW10_RELADDR	0x01
1250 /* EBP defined for WRITE(10) only */
1251 #define	SRW10_EBP	0x04
1252 #define	SRW10_FUA	0x08
1253 #define	SRW10_DPO	0x10
1254 	u_int8_t byte2;
1255 	u_int8_t addr[4];
1256 	u_int8_t reserved;
1257 	u_int8_t length[2];
1258 	u_int8_t control;
1259 };
1260 
1261 struct scsi_rw_12
1262 {
1263 	u_int8_t opcode;
1264 #define	SRW12_RELADDR	0x01
1265 #define	SRW12_FUA	0x08
1266 #define	SRW12_DPO	0x10
1267 	u_int8_t byte2;
1268 	u_int8_t addr[4];
1269 	u_int8_t length[4];
1270 	u_int8_t reserved;
1271 	u_int8_t control;
1272 };
1273 
1274 struct scsi_rw_16
1275 {
1276 	u_int8_t opcode;
1277 #define	SRW16_RELADDR	0x01
1278 #define	SRW16_FUA	0x08
1279 #define	SRW16_DPO	0x10
1280 	u_int8_t byte2;
1281 	u_int8_t addr[8];
1282 	u_int8_t length[4];
1283 	u_int8_t reserved;
1284 	u_int8_t control;
1285 };
1286 
1287 struct scsi_write_atomic_16
1288 {
1289 	uint8_t	opcode;
1290 	uint8_t	byte2;
1291 	uint8_t	addr[8];
1292 	uint8_t	boundary[2];
1293 	uint8_t	length[2];
1294 	uint8_t	group;
1295 	uint8_t	control;
1296 };
1297 
1298 struct scsi_write_same_10
1299 {
1300 	uint8_t	opcode;
1301 	uint8_t	byte2;
1302 #define	SWS_LBDATA	0x02
1303 #define	SWS_PBDATA	0x04
1304 #define	SWS_UNMAP	0x08
1305 #define	SWS_ANCHOR	0x10
1306 	uint8_t	addr[4];
1307 	uint8_t	group;
1308 	uint8_t	length[2];
1309 	uint8_t	control;
1310 };
1311 
1312 struct scsi_write_same_16
1313 {
1314 	uint8_t	opcode;
1315 	uint8_t	byte2;
1316 #define	SWS_NDOB	0x01
1317 	uint8_t	addr[8];
1318 	uint8_t	length[4];
1319 	uint8_t	group;
1320 	uint8_t	control;
1321 };
1322 
1323 struct scsi_unmap
1324 {
1325 	uint8_t	opcode;
1326 	uint8_t	byte2;
1327 #define	SU_ANCHOR	0x01
1328 	uint8_t	reserved[4];
1329 	uint8_t	group;
1330 	uint8_t	length[2];
1331 	uint8_t	control;
1332 };
1333 
1334 struct scsi_unmap_header
1335 {
1336 	uint8_t	length[2];
1337 	uint8_t	desc_length[2];
1338 	uint8_t	reserved[4];
1339 };
1340 
1341 struct scsi_unmap_desc
1342 {
1343 	uint8_t	lba[8];
1344 	uint8_t	length[4];
1345 	uint8_t	reserved[4];
1346 };
1347 
1348 struct scsi_write_verify_10
1349 {
1350 	uint8_t	opcode;
1351 	uint8_t	byte2;
1352 #define	SWV_BYTCHK		0x02
1353 #define	SWV_DPO			0x10
1354 #define	SWV_WRPROECT_MASK	0xe0
1355 	uint8_t	addr[4];
1356 	uint8_t	group;
1357 	uint8_t length[2];
1358 	uint8_t	control;
1359 };
1360 
1361 struct scsi_write_verify_12
1362 {
1363 	uint8_t	opcode;
1364 	uint8_t	byte2;
1365 	uint8_t	addr[4];
1366 	uint8_t	length[4];
1367 	uint8_t	group;
1368 	uint8_t	control;
1369 };
1370 
1371 struct scsi_write_verify_16
1372 {
1373 	uint8_t	opcode;
1374 	uint8_t	byte2;
1375 	uint8_t	addr[8];
1376 	uint8_t	length[4];
1377 	uint8_t	group;
1378 	uint8_t	control;
1379 };
1380 
1381 
1382 struct scsi_start_stop_unit
1383 {
1384 	u_int8_t opcode;
1385 	u_int8_t byte2;
1386 #define	SSS_IMMED		0x01
1387 	u_int8_t reserved[2];
1388 	u_int8_t how;
1389 #define	SSS_START		0x01
1390 #define	SSS_LOEJ		0x02
1391 #define	SSS_PC_MASK		0xf0
1392 #define	SSS_PC_START_VALID	0x00
1393 #define	SSS_PC_ACTIVE		0x10
1394 #define	SSS_PC_IDLE		0x20
1395 #define	SSS_PC_STANDBY		0x30
1396 #define	SSS_PC_LU_CONTROL	0x70
1397 #define	SSS_PC_FORCE_IDLE_0	0xa0
1398 #define	SSS_PC_FORCE_STANDBY_0	0xb0
1399 	u_int8_t control;
1400 };
1401 
1402 struct ata_pass_12 {
1403 	u_int8_t opcode;
1404 	u_int8_t protocol;
1405 #define	AP_PROTO_HARD_RESET	(0x00 << 1)
1406 #define	AP_PROTO_SRST		(0x01 << 1)
1407 #define	AP_PROTO_NON_DATA	(0x03 << 1)
1408 #define	AP_PROTO_PIO_IN		(0x04 << 1)
1409 #define	AP_PROTO_PIO_OUT	(0x05 << 1)
1410 #define	AP_PROTO_DMA		(0x06 << 1)
1411 #define	AP_PROTO_DMA_QUEUED	(0x07 << 1)
1412 #define	AP_PROTO_DEVICE_DIAG	(0x08 << 1)
1413 #define	AP_PROTO_DEVICE_RESET	(0x09 << 1)
1414 #define	AP_PROTO_UDMA_IN	(0x0a << 1)
1415 #define	AP_PROTO_UDMA_OUT	(0x0b << 1)
1416 #define	AP_PROTO_FPDMA		(0x0c << 1)
1417 #define	AP_PROTO_RESP_INFO	(0x0f << 1)
1418 #define AP_PROTO_MASK		0x1e
1419 #define	AP_MULTI	0xe0
1420 	u_int8_t flags;
1421 #define	AP_T_LEN	0x03
1422 #define	AP_BB		0x04
1423 #define	AP_T_DIR	0x08
1424 #define	AP_CK_COND	0x20
1425 #define	AP_OFFLINE	0x60
1426 	u_int8_t features;
1427 	u_int8_t sector_count;
1428 	u_int8_t lba_low;
1429 	u_int8_t lba_mid;
1430 	u_int8_t lba_high;
1431 	u_int8_t device;
1432 	u_int8_t command;
1433 	u_int8_t reserved;
1434 	u_int8_t control;
1435 };
1436 
1437 struct scsi_maintenance_in
1438 {
1439         uint8_t  opcode;
1440         uint8_t  byte2;
1441 #define SERVICE_ACTION_MASK  0x1f
1442 #define SA_RPRT_TRGT_GRP     0x0a
1443         uint8_t  reserved[4];
1444 	uint8_t  length[4];
1445 	uint8_t  reserved1;
1446 	uint8_t  control;
1447 };
1448 
1449 struct scsi_report_supported_opcodes
1450 {
1451         uint8_t  opcode;
1452         uint8_t  service_action;
1453         uint8_t  options;
1454 #define RSO_RCTD		0x80
1455 #define RSO_OPTIONS_MASK	0x07
1456 #define RSO_OPTIONS_ALL		0x00
1457 #define RSO_OPTIONS_OC		0x01
1458 #define RSO_OPTIONS_OC_SA	0x02
1459         uint8_t  requested_opcode;
1460         uint8_t  requested_service_action[2];
1461 	uint8_t  length[4];
1462 	uint8_t  reserved1;
1463 	uint8_t  control;
1464 };
1465 
1466 struct scsi_report_supported_opcodes_timeout
1467 {
1468 	uint8_t  length[2];
1469 	uint8_t  reserved;
1470 	uint8_t  cmd_specific;
1471 	uint8_t  nominal_time[4];
1472 	uint8_t  recommended_time[4];
1473 };
1474 
1475 struct scsi_report_supported_opcodes_descr
1476 {
1477 	uint8_t  opcode;
1478 	uint8_t  reserved;
1479 	uint8_t  service_action[2];
1480 	uint8_t  reserved2;
1481 	uint8_t  flags;
1482 #define RSO_SERVACTV		0x01
1483 #define RSO_CTDP		0x02
1484 	uint8_t  cdb_length[2];
1485 	struct scsi_report_supported_opcodes_timeout timeout[0];
1486 };
1487 
1488 struct scsi_report_supported_opcodes_all
1489 {
1490 	uint8_t  length[4];
1491 	struct scsi_report_supported_opcodes_descr descr[0];
1492 };
1493 
1494 struct scsi_report_supported_opcodes_one
1495 {
1496 	uint8_t  reserved;
1497 	uint8_t  support;
1498 #define RSO_ONE_CTDP		0x80
1499 #define RSO_ONE_SUP_MASK	0x07
1500 #define RSO_ONE_SUP_UNAVAIL	0x00
1501 #define RSO_ONE_SUP_NOT_SUP	0x01
1502 #define RSO_ONE_SUP_AVAIL	0x03
1503 #define RSO_ONE_SUP_VENDOR	0x05
1504 	uint8_t  cdb_length[2];
1505 	uint8_t  cdb_usage[];
1506 };
1507 
1508 struct scsi_report_supported_tmf
1509 {
1510 	uint8_t  opcode;
1511 	uint8_t  service_action;
1512 	uint8_t  reserved[4];
1513 	uint8_t  length[4];
1514 	uint8_t  reserved1;
1515 	uint8_t  control;
1516 };
1517 
1518 struct scsi_report_supported_tmf_data
1519 {
1520 	uint8_t  byte1;
1521 #define RST_WAKES		0x01
1522 #define RST_TRS			0x02
1523 #define RST_QTS			0x04
1524 #define RST_LURS		0x08
1525 #define RST_CTSS		0x10
1526 #define RST_CACAS		0x20
1527 #define RST_ATSS		0x40
1528 #define RST_ATS			0x80
1529 	uint8_t  byte2;
1530 #define RST_ITNRS		0x01
1531 #define RST_QTSS		0x02
1532 #define RST_QAES		0x04
1533 	uint8_t  reserved[2];
1534 };
1535 
1536 struct scsi_report_timestamp
1537 {
1538 	uint8_t  opcode;
1539 	uint8_t  service_action;
1540 	uint8_t  reserved[4];
1541 	uint8_t  length[4];
1542 	uint8_t  reserved1;
1543 	uint8_t  control;
1544 };
1545 
1546 struct scsi_report_timestamp_data
1547 {
1548 	uint8_t  length[2];
1549 	uint8_t  origin;
1550 #define RTS_ORIG_MASK		0x00
1551 #define RTS_ORIG_ZERO		0x00
1552 #define RTS_ORIG_SET		0x02
1553 #define RTS_ORIG_OUTSIDE	0x03
1554 	uint8_t  reserved;
1555 	uint8_t  timestamp[6];
1556 	uint8_t  reserve2[2];
1557 };
1558 
1559 struct scsi_receive_copy_status_lid1
1560 {
1561 	uint8_t  opcode;
1562 	uint8_t  service_action;
1563 #define RCS_RCS_LID1		0x00
1564 	uint8_t  list_identifier;
1565 	uint8_t  reserved[7];
1566 	uint8_t  length[4];
1567 	uint8_t  reserved1;
1568 	uint8_t  control;
1569 };
1570 
1571 struct scsi_receive_copy_status_lid1_data
1572 {
1573 	uint8_t  available_data[4];
1574 	uint8_t  copy_command_status;
1575 #define RCS_CCS_INPROG		0x00
1576 #define RCS_CCS_COMPLETED	0x01
1577 #define RCS_CCS_ERROR		0x02
1578 	uint8_t  segments_processed[2];
1579 	uint8_t  transfer_count_units;
1580 #define RCS_TC_BYTES		0x00
1581 #define RCS_TC_KBYTES		0x01
1582 #define RCS_TC_MBYTES		0x02
1583 #define RCS_TC_GBYTES		0x03
1584 #define RCS_TC_TBYTES		0x04
1585 #define RCS_TC_PBYTES		0x05
1586 #define RCS_TC_EBYTES		0x06
1587 #define RCS_TC_LBAS		0xf1
1588 	uint8_t  transfer_count[4];
1589 };
1590 
1591 struct scsi_receive_copy_failure_details
1592 {
1593 	uint8_t  opcode;
1594 	uint8_t  service_action;
1595 #define RCS_RCFD		0x04
1596 	uint8_t  list_identifier;
1597 	uint8_t  reserved[7];
1598 	uint8_t  length[4];
1599 	uint8_t  reserved1;
1600 	uint8_t  control;
1601 };
1602 
1603 struct scsi_receive_copy_failure_details_data
1604 {
1605 	uint8_t  available_data[4];
1606 	uint8_t  reserved[52];
1607 	uint8_t  copy_command_status;
1608 	uint8_t  reserved2;
1609 	uint8_t  sense_data_length[2];
1610 	uint8_t  sense_data[];
1611 };
1612 
1613 struct scsi_receive_copy_status_lid4
1614 {
1615 	uint8_t  opcode;
1616 	uint8_t  service_action;
1617 #define RCS_RCS_LID4		0x05
1618 	uint8_t  list_identifier[4];
1619 	uint8_t  reserved[4];
1620 	uint8_t  length[4];
1621 	uint8_t  reserved1;
1622 	uint8_t  control;
1623 };
1624 
1625 struct scsi_receive_copy_status_lid4_data
1626 {
1627 	uint8_t  available_data[4];
1628 	uint8_t  response_to_service_action;
1629 	uint8_t  copy_command_status;
1630 #define RCS_CCS_COMPLETED_PROD	0x03
1631 #define RCS_CCS_COMPLETED_RESID	0x04
1632 #define RCS_CCS_INPROG_FGBG	0x10
1633 #define RCS_CCS_INPROG_FG	0x11
1634 #define RCS_CCS_INPROG_BG	0x12
1635 #define RCS_CCS_ABORTED		0x60
1636 	uint8_t  operation_counter[2];
1637 	uint8_t  estimated_status_update_delay[4];
1638 	uint8_t  extended_copy_completion_status;
1639 	uint8_t  length_of_the_sense_data_field;
1640 	uint8_t  sense_data_length;
1641 	uint8_t  transfer_count_units;
1642 	uint8_t  transfer_count[8];
1643 	uint8_t  segments_processed[2];
1644 	uint8_t  reserved[6];
1645 	uint8_t  sense_data[];
1646 };
1647 
1648 struct scsi_receive_copy_operating_parameters
1649 {
1650 	uint8_t  opcode;
1651 	uint8_t  service_action;
1652 #define RCS_RCOP		0x03
1653 	uint8_t  reserved[8];
1654 	uint8_t  length[4];
1655 	uint8_t  reserved1;
1656 	uint8_t  control;
1657 };
1658 
1659 struct scsi_receive_copy_operating_parameters_data
1660 {
1661 	uint8_t  length[4];
1662 	uint8_t  snlid;
1663 #define RCOP_SNLID		0x01
1664 	uint8_t  reserved[3];
1665 	uint8_t  maximum_cscd_descriptor_count[2];
1666 	uint8_t  maximum_segment_descriptor_count[2];
1667 	uint8_t  maximum_descriptor_list_length[4];
1668 	uint8_t  maximum_segment_length[4];
1669 	uint8_t  maximum_inline_data_length[4];
1670 	uint8_t  held_data_limit[4];
1671 	uint8_t  maximum_stream_device_transfer_size[4];
1672 	uint8_t  reserved2[2];
1673 	uint8_t  total_concurrent_copies[2];
1674 	uint8_t  maximum_concurrent_copies;
1675 	uint8_t  data_segment_granularity;
1676 	uint8_t  inline_data_granularity;
1677 	uint8_t  held_data_granularity;
1678 	uint8_t  reserved3[3];
1679 	uint8_t  implemented_descriptor_list_length;
1680 	uint8_t  list_of_implemented_descriptor_type_codes[0];
1681 };
1682 
1683 struct scsi_extended_copy
1684 {
1685 	uint8_t  opcode;
1686 	uint8_t  service_action;
1687 #define EC_EC_LID1		0x00
1688 #define EC_EC_LID4		0x01
1689 	uint8_t  reserved[8];
1690 	uint8_t  length[4];
1691 	uint8_t  reserved1;
1692 	uint8_t  control;
1693 };
1694 
1695 struct scsi_ec_cscd_dtsp
1696 {
1697 	uint8_t  flags;
1698 #define EC_CSCD_FIXED		0x01
1699 #define EC_CSCD_PAD		0x04
1700 	uint8_t  block_length[3];
1701 };
1702 
1703 struct scsi_ec_cscd
1704 {
1705 	uint8_t  type_code;
1706 #define EC_CSCD_EXT		0xff
1707 	uint8_t  luidt_pdt;
1708 #define EC_NUL			0x20
1709 #define EC_LUIDT_MASK		0xc0
1710 #define EC_LUIDT_LUN		0x00
1711 #define EC_LUIDT_PROXY_TOKEN	0x40
1712 	uint8_t  relative_initiator_port[2];
1713 	uint8_t  cscd_params[24];
1714 	struct scsi_ec_cscd_dtsp dtsp;
1715 };
1716 
1717 struct scsi_ec_cscd_id
1718 {
1719 	uint8_t  type_code;
1720 #define EC_CSCD_ID		0xe4
1721 	uint8_t  luidt_pdt;
1722 	uint8_t  relative_initiator_port[2];
1723 	uint8_t  codeset;
1724 	uint8_t  id_type;
1725 	uint8_t  reserved;
1726 	uint8_t  length;
1727 	uint8_t  designator[20];
1728 	struct scsi_ec_cscd_dtsp dtsp;
1729 };
1730 
1731 struct scsi_ec_segment
1732 {
1733 	uint8_t  type_code;
1734 	uint8_t  flags;
1735 #define EC_SEG_DC		0x02
1736 #define EC_SEG_CAT		0x01
1737 	uint8_t  descr_length[2];
1738 	uint8_t  params[];
1739 };
1740 
1741 struct scsi_ec_segment_b2b
1742 {
1743 	uint8_t  type_code;
1744 #define EC_SEG_B2B		0x02
1745 	uint8_t  flags;
1746 	uint8_t  descr_length[2];
1747 	uint8_t  src_cscd[2];
1748 	uint8_t  dst_cscd[2];
1749 	uint8_t  reserved[2];
1750 	uint8_t  number_of_blocks[2];
1751 	uint8_t  src_lba[8];
1752 	uint8_t  dst_lba[8];
1753 };
1754 
1755 struct scsi_ec_segment_verify
1756 {
1757 	uint8_t  type_code;
1758 #define EC_SEG_VERIFY		0x07
1759 	uint8_t  reserved;
1760 	uint8_t  descr_length[2];
1761 	uint8_t  src_cscd[2];
1762 	uint8_t  reserved2[2];
1763 	uint8_t  tur;
1764 	uint8_t  reserved3[3];
1765 };
1766 
1767 struct scsi_ec_segment_register_key
1768 {
1769 	uint8_t  type_code;
1770 #define EC_SEG_REGISTER_KEY	0x14
1771 	uint8_t  reserved;
1772 	uint8_t  descr_length[2];
1773 	uint8_t  reserved2[2];
1774 	uint8_t  dst_cscd[2];
1775 	uint8_t  res_key[8];
1776 	uint8_t  sa_res_key[8];
1777 	uint8_t  reserved3[4];
1778 };
1779 
1780 struct scsi_extended_copy_lid1_data
1781 {
1782 	uint8_t  list_identifier;
1783 	uint8_t  flags;
1784 #define EC_PRIORITY		0x07
1785 #define EC_LIST_ID_USAGE_MASK	0x18
1786 #define EC_LIST_ID_USAGE_FULL	0x08
1787 #define EC_LIST_ID_USAGE_NOHOLD	0x10
1788 #define EC_LIST_ID_USAGE_NONE	0x18
1789 #define EC_STR			0x20
1790 	uint8_t  cscd_list_length[2];
1791 	uint8_t  reserved[4];
1792 	uint8_t  segment_list_length[4];
1793 	uint8_t  inline_data_length[4];
1794 	uint8_t  data[];
1795 };
1796 
1797 struct scsi_extended_copy_lid4_data
1798 {
1799 	uint8_t  list_format;
1800 #define EC_LIST_FORMAT		0x01
1801 	uint8_t  flags;
1802 	uint8_t  header_cscd_list_length[2];
1803 	uint8_t  reserved[11];
1804 	uint8_t  flags2;
1805 #define EC_IMMED		0x01
1806 #define EC_G_SENSE		0x02
1807 	uint8_t  header_cscd_type_code;
1808 	uint8_t  reserved2[3];
1809 	uint8_t  list_identifier[4];
1810 	uint8_t  reserved3[18];
1811 	uint8_t  cscd_list_length[2];
1812 	uint8_t  segment_list_length[2];
1813 	uint8_t  inline_data_length[2];
1814 	uint8_t  data[];
1815 };
1816 
1817 struct scsi_copy_operation_abort
1818 {
1819 	uint8_t  opcode;
1820 	uint8_t  service_action;
1821 #define EC_COA			0x1c
1822 	uint8_t  list_identifier[4];
1823 	uint8_t  reserved[9];
1824 	uint8_t  control;
1825 };
1826 
1827 struct scsi_populate_token
1828 {
1829 	uint8_t  opcode;
1830 	uint8_t  service_action;
1831 #define EC_PT			0x10
1832 	uint8_t  reserved[4];
1833 	uint8_t  list_identifier[4];
1834 	uint8_t  length[4];
1835 	uint8_t  group_number;
1836 	uint8_t  control;
1837 };
1838 
1839 struct scsi_range_desc
1840 {
1841 	uint8_t	lba[8];
1842 	uint8_t	length[4];
1843 	uint8_t	reserved[4];
1844 };
1845 
1846 struct scsi_populate_token_data
1847 {
1848 	uint8_t  length[2];
1849 	uint8_t  flags;
1850 #define EC_PT_IMMED			0x01
1851 #define EC_PT_RTV			0x02
1852 	uint8_t  reserved;
1853 	uint8_t  inactivity_timeout[4];
1854 	uint8_t  rod_type[4];
1855 	uint8_t  reserved2[2];
1856 	uint8_t  range_descriptor_length[2];
1857 	struct scsi_range_desc desc[];
1858 };
1859 
1860 struct scsi_write_using_token
1861 {
1862 	uint8_t  opcode;
1863 	uint8_t  service_action;
1864 #define EC_WUT			0x11
1865 	uint8_t  reserved[4];
1866 	uint8_t  list_identifier[4];
1867 	uint8_t  length[4];
1868 	uint8_t  group_number;
1869 	uint8_t  control;
1870 };
1871 
1872 struct scsi_write_using_token_data
1873 {
1874 	uint8_t  length[2];
1875 	uint8_t  flags;
1876 #define EC_WUT_IMMED			0x01
1877 #define EC_WUT_DEL_TKN			0x02
1878 	uint8_t  reserved[5];
1879 	uint8_t  offset_into_rod[8];
1880 	uint8_t  rod_token[512];
1881 	uint8_t  reserved2[6];
1882 	uint8_t  range_descriptor_length[2];
1883 	struct scsi_range_desc desc[];
1884 };
1885 
1886 struct scsi_receive_rod_token_information
1887 {
1888 	uint8_t  opcode;
1889 	uint8_t  service_action;
1890 #define RCS_RRTI		0x07
1891 	uint8_t  list_identifier[4];
1892 	uint8_t  reserved[4];
1893 	uint8_t  length[4];
1894 	uint8_t  reserved2;
1895 	uint8_t  control;
1896 };
1897 
1898 struct scsi_token
1899 {
1900 	uint8_t  type[4];
1901 #define ROD_TYPE_INTERNAL	0x00000000
1902 #define ROD_TYPE_AUR		0x00010000
1903 #define ROD_TYPE_PIT_DEF	0x00800000
1904 #define ROD_TYPE_PIT_VULN	0x00800001
1905 #define ROD_TYPE_PIT_PERS	0x00800002
1906 #define ROD_TYPE_PIT_ANY	0x0080FFFF
1907 #define ROD_TYPE_BLOCK_ZERO	0xFFFF0001
1908 	uint8_t  reserved[2];
1909 	uint8_t  length[2];
1910 	uint8_t  body[0];
1911 };
1912 
1913 struct scsi_report_all_rod_tokens
1914 {
1915 	uint8_t  opcode;
1916 	uint8_t  service_action;
1917 #define RCS_RART		0x08
1918 	uint8_t  reserved[8];
1919 	uint8_t  length[4];
1920 	uint8_t  reserved2;
1921 	uint8_t  control;
1922 };
1923 
1924 struct scsi_report_all_rod_tokens_data
1925 {
1926 	uint8_t  available_data[4];
1927 	uint8_t  reserved[4];
1928 	uint8_t  rod_management_token_list[];
1929 };
1930 
1931 struct ata_pass_16 {
1932 	u_int8_t opcode;
1933 	u_int8_t protocol;
1934 #define	AP_EXTEND	0x01
1935 	u_int8_t flags;
1936 #define	AP_FLAG_TLEN_NO_DATA	(0 << 0)
1937 #define	AP_FLAG_TLEN_FEAT	(1 << 0)
1938 #define	AP_FLAG_TLEN_SECT_CNT	(2 << 0)
1939 #define	AP_FLAG_TLEN_STPSIU	(3 << 0)
1940 #define	AP_FLAG_BYT_BLOK_BYTES	(0 << 2)
1941 #define	AP_FLAG_BYT_BLOK_BLOCKS	(1 << 2)
1942 #define	AP_FLAG_TDIR_TO_DEV	(0 << 3)
1943 #define	AP_FLAG_TDIR_FROM_DEV	(1 << 3)
1944 #define	AP_FLAG_CHK_COND	(1 << 5)
1945 	u_int8_t features_ext;
1946 	u_int8_t features;
1947 	u_int8_t sector_count_ext;
1948 	u_int8_t sector_count;
1949 	u_int8_t lba_low_ext;
1950 	u_int8_t lba_low;
1951 	u_int8_t lba_mid_ext;
1952 	u_int8_t lba_mid;
1953 	u_int8_t lba_high_ext;
1954 	u_int8_t lba_high;
1955 	u_int8_t device;
1956 	u_int8_t command;
1957 	u_int8_t control;
1958 };
1959 
1960 struct ata_pass_32 {
1961 	uint8_t opcode;
1962 	uint8_t control;
1963 	uint8_t reserved1[5];
1964 	uint8_t length;
1965 	uint8_t service_action[2];
1966 #define	ATA_PASS_32_SA		0x1ff0
1967 	uint8_t protocol;
1968 	uint8_t flags;
1969 	uint8_t reserved2[2];
1970 	uint8_t lba[6];
1971 	uint8_t features[2];
1972 	uint8_t count[2];
1973 	uint8_t device;
1974 	uint8_t command;
1975 	uint8_t reserved3;
1976 	uint8_t icc;
1977 	uint8_t auxiliary[4];
1978 };
1979 
1980 
1981 #define	SC_SCSI_1 0x01
1982 #define	SC_SCSI_2 0x03
1983 
1984 /*
1985  * Opcodes
1986  */
1987 
1988 #define	TEST_UNIT_READY		0x00
1989 #define	REQUEST_SENSE		0x03
1990 #define	READ_6			0x08
1991 #define	WRITE_6			0x0A
1992 #define	INQUIRY			0x12
1993 #define	MODE_SELECT_6		0x15
1994 #define	MODE_SENSE_6		0x1A
1995 #define	START_STOP_UNIT		0x1B
1996 #define	START_STOP		0x1B
1997 #define	RESERVE      		0x16
1998 #define	RELEASE      		0x17
1999 #define	RECEIVE_DIAGNOSTIC	0x1C
2000 #define	SEND_DIAGNOSTIC		0x1D
2001 #define	PREVENT_ALLOW		0x1E
2002 #define	READ_CAPACITY		0x25
2003 #define	READ_10			0x28
2004 #define	WRITE_10		0x2A
2005 #define	POSITION_TO_ELEMENT	0x2B
2006 #define	WRITE_VERIFY_10		0x2E
2007 #define	VERIFY_10		0x2F
2008 #define	SYNCHRONIZE_CACHE	0x35
2009 #define	READ_DEFECT_DATA_10	0x37
2010 #define	WRITE_BUFFER            0x3B
2011 #define	READ_BUFFER             0x3C
2012 #define	CHANGE_DEFINITION	0x40
2013 #define	WRITE_SAME_10		0x41
2014 #define	UNMAP			0x42
2015 #define	LOG_SELECT		0x4C
2016 #define	LOG_SENSE		0x4D
2017 #define	MODE_SELECT_10		0x55
2018 #define	RESERVE_10		0x56
2019 #define	RELEASE_10		0x57
2020 #define	MODE_SENSE_10		0x5A
2021 #define	PERSISTENT_RES_IN	0x5E
2022 #define	PERSISTENT_RES_OUT	0x5F
2023 #define	EXTENDED_CDB		0x7E
2024 #define	VARIABLE_LEN_CDB	0x7F
2025 #define	EXTENDED_COPY		0x83
2026 #define	RECEIVE_COPY_STATUS	0x84
2027 #define	ATA_PASS_16		0x85
2028 #define	READ_16			0x88
2029 #define	COMPARE_AND_WRITE	0x89
2030 #define	WRITE_16		0x8A
2031 #define	READ_ATTRIBUTE		0x8C
2032 #define	WRITE_ATTRIBUTE		0x8D
2033 #define	WRITE_VERIFY_16		0x8E
2034 #define	VERIFY_16		0x8F
2035 #define	SYNCHRONIZE_CACHE_16	0x91
2036 #define	WRITE_SAME_16		0x93
2037 #define	READ_BUFFER_16		0x9B
2038 #define	WRITE_ATOMIC_16		0x9C
2039 #define	SERVICE_ACTION_IN	0x9E
2040 #define	REPORT_LUNS		0xA0
2041 #define	ATA_PASS_12		0xA1
2042 #define	SECURITY_PROTOCOL_IN	0xA2
2043 #define	MAINTENANCE_IN		0xA3
2044 #define	MAINTENANCE_OUT		0xA4
2045 #define	MOVE_MEDIUM     	0xA5
2046 #define	READ_12			0xA8
2047 #define	WRITE_12		0xAA
2048 #define	WRITE_VERIFY_12		0xAE
2049 #define	VERIFY_12		0xAF
2050 #define	SECURITY_PROTOCOL_OUT	0xB5
2051 #define	READ_ELEMENT_STATUS	0xB8
2052 #define	READ_CD			0xBE
2053 
2054 /* Maintenance In Service Action Codes */
2055 #define	REPORT_IDENTIFYING_INFRMATION		0x05
2056 #define	REPORT_TARGET_PORT_GROUPS		0x0A
2057 #define	REPORT_ALIASES				0x0B
2058 #define	REPORT_SUPPORTED_OPERATION_CODES	0x0C
2059 #define	REPORT_SUPPORTED_TASK_MANAGEMENT_FUNCTIONS	0x0D
2060 #define	REPORT_PRIORITY				0x0E
2061 #define	REPORT_TIMESTAMP			0x0F
2062 #define	MANAGEMENT_PROTOCOL_IN			0x10
2063 /* Maintenance Out Service Action Codes */
2064 #define	SET_IDENTIFY_INFORMATION		0x06
2065 #define	SET_TARGET_PORT_GROUPS			0x0A
2066 #define	CHANGE_ALIASES				0x0B
2067 #define	SET_PRIORITY				0x0E
2068 #define	SET_TIMESTAMP				0x0F
2069 #define	MANGAEMENT_PROTOCOL_OUT			0x10
2070 
2071 /*
2072  * Device Types
2073  */
2074 #define	T_DIRECT	0x00
2075 #define	T_SEQUENTIAL	0x01
2076 #define	T_PRINTER	0x02
2077 #define	T_PROCESSOR	0x03
2078 #define	T_WORM		0x04
2079 #define	T_CDROM		0x05
2080 #define	T_SCANNER	0x06
2081 #define	T_OPTICAL 	0x07
2082 #define	T_CHANGER	0x08
2083 #define	T_COMM		0x09
2084 #define	T_ASC0		0x0a
2085 #define	T_ASC1		0x0b
2086 #define	T_STORARRAY	0x0c
2087 #define	T_ENCLOSURE	0x0d
2088 #define	T_RBC		0x0e
2089 #define	T_OCRW		0x0f
2090 #define	T_OSD		0x11
2091 #define	T_ADC		0x12
2092 #define	T_ZBC_HM	0x14
2093 #define	T_NODEVICE	0x1f
2094 #define	T_ANY		0xff	/* Used in Quirk table matches */
2095 
2096 #define	T_REMOV		1
2097 #define	T_FIXED		0
2098 
2099 /*
2100  * This length is the initial inquiry length used by the probe code, as
2101  * well as the length necessary for scsi_print_inquiry() to function
2102  * correctly.  If either use requires a different length in the future,
2103  * the two values should be de-coupled.
2104  */
2105 #define	SHORT_INQUIRY_LENGTH	36
2106 
2107 struct scsi_inquiry_data
2108 {
2109 	u_int8_t device;
2110 #define	SID_TYPE(inq_data) ((inq_data)->device & 0x1f)
2111 #define	SID_QUAL(inq_data) (((inq_data)->device & 0xE0) >> 5)
2112 #define	SID_QUAL_LU_CONNECTED	0x00	/*
2113 					 * The specified peripheral device
2114 					 * type is currently connected to
2115 					 * logical unit.  If the target cannot
2116 					 * determine whether or not a physical
2117 					 * device is currently connected, it
2118 					 * shall also use this peripheral
2119 					 * qualifier when returning the INQUIRY
2120 					 * data.  This peripheral qualifier
2121 					 * does not mean that the device is
2122 					 * ready for access by the initiator.
2123 					 */
2124 #define	SID_QUAL_LU_OFFLINE	0x01	/*
2125 					 * The target is capable of supporting
2126 					 * the specified peripheral device type
2127 					 * on this logical unit; however, the
2128 					 * physical device is not currently
2129 					 * connected to this logical unit.
2130 					 */
2131 #define	SID_QUAL_RSVD		0x02
2132 #define	SID_QUAL_BAD_LU		0x03	/*
2133 					 * The target is not capable of
2134 					 * supporting a physical device on
2135 					 * this logical unit. For this
2136 					 * peripheral qualifier the peripheral
2137 					 * device type shall be set to 1Fh to
2138 					 * provide compatibility with previous
2139 					 * versions of SCSI. All other
2140 					 * peripheral device type values are
2141 					 * reserved for this peripheral
2142 					 * qualifier.
2143 					 */
2144 #define	SID_QUAL_IS_VENDOR_UNIQUE(inq_data) ((SID_QUAL(inq_data) & 0x04) != 0)
2145 	u_int8_t dev_qual2;
2146 #define	SID_QUAL2	0x7F
2147 #define	SID_LU_CONG	0x40
2148 #define	SID_RMB		0x80
2149 #define	SID_IS_REMOVABLE(inq_data) (((inq_data)->dev_qual2 & SID_RMB) != 0)
2150 	u_int8_t version;
2151 #define	SID_ANSI_REV(inq_data) ((inq_data)->version & 0x07)
2152 #define		SCSI_REV_0		0
2153 #define		SCSI_REV_CCS		1
2154 #define		SCSI_REV_2		2
2155 #define		SCSI_REV_SPC		3
2156 #define		SCSI_REV_SPC2		4
2157 #define		SCSI_REV_SPC3		5
2158 #define		SCSI_REV_SPC4		6
2159 
2160 #define	SID_ECMA	0x38
2161 #define	SID_ISO		0xC0
2162 	u_int8_t response_format;
2163 #define	SID_AENC	0x80
2164 #define	SID_TrmIOP	0x40
2165 #define	SID_NormACA	0x20
2166 #define	SID_HiSup	0x10
2167 	u_int8_t additional_length;
2168 #define	SID_ADDITIONAL_LENGTH(iqd)					\
2169 	((iqd)->additional_length +					\
2170 	__offsetof(struct scsi_inquiry_data, additional_length) + 1)
2171 	u_int8_t spc3_flags;
2172 #define	SPC3_SID_PROTECT	0x01
2173 #define	SPC3_SID_3PC		0x08
2174 #define	SPC3_SID_TPGS_MASK	0x30
2175 #define	SPC3_SID_TPGS_IMPLICIT	0x10
2176 #define	SPC3_SID_TPGS_EXPLICIT	0x20
2177 #define	SPC3_SID_ACC		0x40
2178 #define	SPC3_SID_SCCS		0x80
2179 	u_int8_t spc2_flags;
2180 #define	SPC2_SID_ADDR16		0x01
2181 #define	SPC2_SID_MChngr 	0x08
2182 #define	SPC2_SID_MultiP 	0x10
2183 #define	SPC2_SID_EncServ	0x40
2184 #define	SPC2_SID_BQueue		0x80
2185 
2186 #define	INQ_DATA_TQ_ENABLED(iqd)				\
2187     ((SID_ANSI_REV(iqd) < SCSI_REV_SPC2)? ((iqd)->flags & SID_CmdQue) :	\
2188     (((iqd)->flags & SID_CmdQue) && !((iqd)->spc2_flags & SPC2_SID_BQueue)) || \
2189     (!((iqd)->flags & SID_CmdQue) && ((iqd)->spc2_flags & SPC2_SID_BQueue)))
2190 
2191 	u_int8_t flags;
2192 #define	SID_SftRe	0x01
2193 #define	SID_CmdQue	0x02
2194 #define	SID_Linked	0x08
2195 #define	SID_Sync	0x10
2196 #define	SID_WBus16	0x20
2197 #define	SID_WBus32	0x40
2198 #define	SID_RelAdr	0x80
2199 #define	SID_VENDOR_SIZE   8
2200 	char	 vendor[SID_VENDOR_SIZE];
2201 #define	SID_PRODUCT_SIZE  16
2202 	char	 product[SID_PRODUCT_SIZE];
2203 #define	SID_REVISION_SIZE 4
2204 	char	 revision[SID_REVISION_SIZE];
2205 	/*
2206 	 * The following fields were taken from SCSI Primary Commands - 2
2207 	 * (SPC-2) Revision 14, Dated 11 November 1999
2208 	 */
2209 #define	SID_VENDOR_SPECIFIC_0_SIZE	20
2210 	u_int8_t vendor_specific0[SID_VENDOR_SPECIFIC_0_SIZE];
2211 	/*
2212 	 * An extension of SCSI Parallel Specific Values
2213 	 */
2214 #define	SID_SPI_IUS		0x01
2215 #define	SID_SPI_QAS		0x02
2216 #define	SID_SPI_CLOCK_ST	0x00
2217 #define	SID_SPI_CLOCK_DT	0x04
2218 #define	SID_SPI_CLOCK_DT_ST	0x0C
2219 #define	SID_SPI_MASK		0x0F
2220 	u_int8_t spi3data;
2221 	u_int8_t reserved2;
2222 	/*
2223 	 * Version Descriptors, stored 2 byte values.
2224 	 */
2225 	u_int8_t version1[2];
2226 	u_int8_t version2[2];
2227 	u_int8_t version3[2];
2228 	u_int8_t version4[2];
2229 	u_int8_t version5[2];
2230 	u_int8_t version6[2];
2231 	u_int8_t version7[2];
2232 	u_int8_t version8[2];
2233 
2234 	u_int8_t reserved3[22];
2235 
2236 #define	SID_VENDOR_SPECIFIC_1_SIZE	160
2237 	u_int8_t vendor_specific1[SID_VENDOR_SPECIFIC_1_SIZE];
2238 };
2239 
2240 /*
2241  * This structure is more suited to initiator operation, because the
2242  * maximum number of supported pages is already allocated.
2243  */
2244 struct scsi_vpd_supported_page_list
2245 {
2246 	u_int8_t device;
2247 	u_int8_t page_code;
2248 #define	SVPD_SUPPORTED_PAGE_LIST	0x00
2249 #define	SVPD_SUPPORTED_PAGES_HDR_LEN	4
2250 	u_int8_t reserved;
2251 	u_int8_t length;	/* number of VPD entries */
2252 #define	SVPD_SUPPORTED_PAGES_SIZE	251
2253 	u_int8_t list[SVPD_SUPPORTED_PAGES_SIZE];
2254 };
2255 
2256 /*
2257  * This structure is more suited to target operation, because the
2258  * number of supported pages is left to the user to allocate.
2259  */
2260 struct scsi_vpd_supported_pages
2261 {
2262 	u_int8_t device;
2263 	u_int8_t page_code;
2264 	u_int8_t reserved;
2265 #define	SVPD_SUPPORTED_PAGES	0x00
2266 	u_int8_t length;
2267 	u_int8_t page_list[0];
2268 };
2269 
2270 
2271 struct scsi_vpd_unit_serial_number
2272 {
2273 	u_int8_t device;
2274 	u_int8_t page_code;
2275 #define	SVPD_UNIT_SERIAL_NUMBER	0x80
2276 	u_int8_t reserved;
2277 	u_int8_t length; /* serial number length */
2278 #define	SVPD_SERIAL_NUM_SIZE 251
2279 	u_int8_t serial_num[SVPD_SERIAL_NUM_SIZE];
2280 };
2281 
2282 struct scsi_vpd_device_id
2283 {
2284 	u_int8_t device;
2285 	u_int8_t page_code;
2286 #define	SVPD_DEVICE_ID			0x83
2287 #define	SVPD_DEVICE_ID_MAX_SIZE		252
2288 #define	SVPD_DEVICE_ID_HDR_LEN \
2289     __offsetof(struct scsi_vpd_device_id, desc_list)
2290 	u_int8_t length[2];
2291 	u_int8_t desc_list[];
2292 };
2293 
2294 struct scsi_vpd_id_descriptor
2295 {
2296 	u_int8_t	proto_codeset;
2297 	/*
2298 	 * See the SCSI_PROTO definitions above for the protocols.
2299 	 */
2300 #define	SVPD_ID_PROTO_SHIFT	4
2301 #define	SVPD_ID_CODESET_BINARY	0x01
2302 #define	SVPD_ID_CODESET_ASCII	0x02
2303 #define	SVPD_ID_CODESET_UTF8	0x03
2304 #define	SVPD_ID_CODESET_MASK	0x0f
2305 	u_int8_t	id_type;
2306 #define	SVPD_ID_PIV		0x80
2307 #define	SVPD_ID_ASSOC_LUN	0x00
2308 #define	SVPD_ID_ASSOC_PORT	0x10
2309 #define	SVPD_ID_ASSOC_TARGET	0x20
2310 #define	SVPD_ID_ASSOC_MASK	0x30
2311 #define	SVPD_ID_TYPE_VENDOR	0x00
2312 #define	SVPD_ID_TYPE_T10	0x01
2313 #define	SVPD_ID_TYPE_EUI64	0x02
2314 #define	SVPD_ID_TYPE_NAA	0x03
2315 #define	SVPD_ID_TYPE_RELTARG	0x04
2316 #define	SVPD_ID_TYPE_TPORTGRP	0x05
2317 #define	SVPD_ID_TYPE_LUNGRP	0x06
2318 #define	SVPD_ID_TYPE_MD5_LUN_ID	0x07
2319 #define	SVPD_ID_TYPE_SCSI_NAME	0x08
2320 #define	SVPD_ID_TYPE_PROTO	0x09
2321 #define	SVPD_ID_TYPE_UUID	0x0a
2322 #define	SVPD_ID_TYPE_MASK	0x0f
2323 	u_int8_t	reserved;
2324 	u_int8_t	length;
2325 #define	SVPD_DEVICE_ID_DESC_HDR_LEN \
2326     __offsetof(struct scsi_vpd_id_descriptor, identifier)
2327 	u_int8_t	identifier[];
2328 };
2329 
2330 struct scsi_vpd_id_t10
2331 {
2332 	u_int8_t	vendor[8];
2333 	u_int8_t	vendor_spec_id[0];
2334 };
2335 
2336 struct scsi_vpd_id_eui64
2337 {
2338 	u_int8_t	ieee_company_id[3];
2339 	u_int8_t	extension_id[5];
2340 };
2341 
2342 struct scsi_vpd_id_naa_basic
2343 {
2344 	uint8_t naa;
2345 	/* big endian, packed:
2346 	uint8_t	naa : 4;
2347 	uint8_t naa_desig : 4;
2348 	*/
2349 #define	SVPD_ID_NAA_NAA_SHIFT		4
2350 #define	SVPD_ID_NAA_IEEE_EXT		0x02
2351 #define	SVPD_ID_NAA_LOCAL_REG		0x03
2352 #define	SVPD_ID_NAA_IEEE_REG		0x05
2353 #define	SVPD_ID_NAA_IEEE_REG_EXT	0x06
2354 	uint8_t	naa_data[];
2355 };
2356 
2357 struct scsi_vpd_id_naa_ieee_extended_id
2358 {
2359 	uint8_t naa;
2360 	uint8_t vendor_specific_id_a;
2361 	uint8_t ieee_company_id[3];
2362 	uint8_t vendor_specific_id_b[4];
2363 };
2364 
2365 struct scsi_vpd_id_naa_local_reg
2366 {
2367 	uint8_t naa;
2368 	uint8_t local_value[7];
2369 };
2370 
2371 struct scsi_vpd_id_naa_ieee_reg
2372 {
2373 	uint8_t naa;
2374 	uint8_t reg_value[7];
2375 	/* big endian, packed:
2376 	uint8_t naa_basic : 4;
2377 	uint8_t ieee_company_id_0 : 4;
2378 	uint8_t ieee_company_id_1[2];
2379 	uint8_t ieee_company_id_2 : 4;
2380 	uint8_t vendor_specific_id_0 : 4;
2381 	uint8_t vendor_specific_id_1[4];
2382 	*/
2383 };
2384 
2385 struct scsi_vpd_id_naa_ieee_reg_extended
2386 {
2387 	uint8_t naa;
2388 	uint8_t reg_value[15];
2389 	/* big endian, packed:
2390 	uint8_t naa_basic : 4;
2391 	uint8_t ieee_company_id_0 : 4;
2392 	uint8_t ieee_company_id_1[2];
2393 	uint8_t ieee_company_id_2 : 4;
2394 	uint8_t vendor_specific_id_0 : 4;
2395 	uint8_t vendor_specific_id_1[4];
2396 	uint8_t vendor_specific_id_ext[8];
2397 	*/
2398 };
2399 
2400 struct scsi_vpd_id_rel_trgt_port_id
2401 {
2402 	uint8_t obsolete[2];
2403 	uint8_t rel_trgt_port_id[2];
2404 };
2405 
2406 struct scsi_vpd_id_trgt_port_grp_id
2407 {
2408 	uint8_t reserved[2];
2409 	uint8_t trgt_port_grp[2];
2410 };
2411 
2412 struct scsi_vpd_id_lun_grp_id
2413 {
2414 	uint8_t reserved[2];
2415 	uint8_t log_unit_grp[2];
2416 };
2417 
2418 struct scsi_vpd_id_md5_lun_id
2419 {
2420 	uint8_t lun_id[16];
2421 };
2422 
2423 struct scsi_vpd_id_scsi_name
2424 {
2425 	uint8_t name_string[256];
2426 };
2427 
2428 struct scsi_service_action_in
2429 {
2430 	uint8_t opcode;
2431 	uint8_t service_action;
2432 	uint8_t action_dependent[13];
2433 	uint8_t control;
2434 };
2435 
2436 struct scsi_vpd_extended_inquiry_data
2437 {
2438 	uint8_t device;
2439 	uint8_t page_code;
2440 #define	SVPD_EXTENDED_INQUIRY_DATA	0x86
2441 	uint8_t page_length[2];
2442 	uint8_t flags1;
2443 
2444 	/* These values are for direct access devices */
2445 #define	SVPD_EID_AM_MASK	0xC0
2446 #define	SVPD_EID_AM_DEFER	0x80
2447 #define	SVPD_EID_AM_IMMED	0x40
2448 #define	SVPD_EID_AM_UNDEFINED	0x00
2449 #define	SVPD_EID_AM_RESERVED	0xc0
2450 #define	SVPD_EID_SPT		0x38
2451 #define	SVPD_EID_SPT_1		0x00
2452 #define	SVPD_EID_SPT_12		0x08
2453 #define	SVPD_EID_SPT_2		0x10
2454 #define	SVPD_EID_SPT_13		0x18
2455 #define	SVPD_EID_SPT_3		0x20
2456 #define	SVPD_EID_SPT_23		0x28
2457 #define	SVPD_EID_SPT_123	0x38
2458 
2459 	/* These values are for sequential access devices */
2460 #define	SVPD_EID_SA_SPT_LBP	0x08
2461 
2462 #define	SVPD_EID_GRD_CHK	0x04
2463 #define	SVPD_EID_APP_CHK	0x02
2464 #define	SVPD_EID_REF_CHK	0x01
2465 
2466 	uint8_t flags2;
2467 #define	SVPD_EID_UASK_SUP	0x20
2468 #define	SVPD_EID_GROUP_SUP	0x10
2469 #define	SVPD_EID_PRIOR_SUP	0x08
2470 #define	SVPD_EID_HEADSUP	0x04
2471 #define	SVPD_EID_ORDSUP		0x02
2472 #define	SVPD_EID_SIMPSUP	0x01
2473 	uint8_t flags3;
2474 #define	SVPD_EID_WU_SUP		0x08
2475 #define	SVPD_EID_CRD_SUP	0x04
2476 #define	SVPD_EID_NV_SUP		0x02
2477 #define	SVPD_EID_V_SUP		0x01
2478 	uint8_t flags4;
2479 #define	SVPD_EID_NO_PI_CHK	0x20
2480 #define	SVPD_EID_P_I_I_SUP	0x10
2481 #define	SVPD_EID_LUICLR		0x01
2482 	uint8_t flags5;
2483 #define	SVPD_EID_LUCT_MASK	0xe0
2484 #define	SVPD_EID_LUCT_NOT_REP	0x00
2485 #define	SVPD_EID_LUCT_CONGL	0x20
2486 #define	SVPD_EID_LUCT_GROUP	0x40
2487 #define	SVPD_EID_R_SUP		0x10
2488 #define	SVPD_EID_RTD_SUP	0x08
2489 #define	SVPD_EID_HSSRELEF	0x02
2490 #define	SVPD_EID_CBCS		0x01
2491 	uint8_t flags6;
2492 #define	SVPD_EID_MULTI_I_T_FW	0x0F
2493 #define	SVPD_EID_MC_VENDOR_SPEC	0x00
2494 #define	SVPD_EID_MC_MODE_1	0x01
2495 #define	SVPD_EID_MC_MODE_2	0x02
2496 #define	SVPD_EID_MC_MODE_3	0x03
2497 	uint8_t est[2];
2498 	uint8_t flags7;
2499 #define	SVPD_EID_POA_SUP	0x80
2500 #define	SVPD_EID_HRA_SUP	0x40
2501 #define	SVPD_EID_VSA_SUP	0x20
2502 	uint8_t max_sense_length;
2503 	uint8_t bind_flags;
2504 #define	SVPD_EID_IBS		0x80
2505 #define	SVPD_EID_IAS		0x40
2506 #define	SVPD_EID_SAC		0x04
2507 #define	SVPD_EID_NRD1		0x02
2508 #define	SVPD_EID_NRD0		0x01
2509 	uint8_t reserved2[49];
2510 };
2511 
2512 struct scsi_vpd_mode_page_policy_descr
2513 {
2514 	uint8_t page_code;
2515 	uint8_t subpage_code;
2516 	uint8_t policy;
2517 #define	SVPD_MPP_SHARED		0x00
2518 #define	SVPD_MPP_PORT		0x01
2519 #define	SVPD_MPP_I_T		0x03
2520 #define	SVPD_MPP_MLUS		0x80
2521 	uint8_t reserved;
2522 };
2523 
2524 struct scsi_vpd_mode_page_policy
2525 {
2526 	uint8_t device;
2527 	uint8_t page_code;
2528 #define	SVPD_MODE_PAGE_POLICY	0x87
2529 	uint8_t page_length[2];
2530 	struct scsi_vpd_mode_page_policy_descr descr[0];
2531 };
2532 
2533 struct scsi_diag_page {
2534 	uint8_t page_code;
2535 	uint8_t page_specific_flags;
2536 	uint8_t length[2];
2537 	uint8_t params[0];
2538 };
2539 
2540 struct scsi_vpd_port_designation
2541 {
2542 	uint8_t reserved[2];
2543 	uint8_t relative_port_id[2];
2544 	uint8_t reserved2[2];
2545 	uint8_t initiator_transportid_length[2];
2546 	uint8_t initiator_transportid[0];
2547 };
2548 
2549 struct scsi_vpd_port_designation_cont
2550 {
2551 	uint8_t reserved[2];
2552 	uint8_t target_port_descriptors_length[2];
2553 	struct scsi_vpd_id_descriptor target_port_descriptors[0];
2554 };
2555 
2556 struct scsi_vpd_scsi_ports
2557 {
2558 	u_int8_t device;
2559 	u_int8_t page_code;
2560 #define	SVPD_SCSI_PORTS		0x88
2561 	u_int8_t page_length[2];
2562 	struct scsi_vpd_port_designation design[];
2563 };
2564 
2565 /*
2566  * ATA Information VPD Page based on
2567  * T10/2126-D Revision 04
2568  */
2569 #define SVPD_ATA_INFORMATION		0x89
2570 
2571 
2572 struct scsi_vpd_tpc_descriptor
2573 {
2574 	uint8_t desc_type[2];
2575 	uint8_t desc_length[2];
2576 	uint8_t parameters[];
2577 };
2578 
2579 struct scsi_vpd_tpc_descriptor_bdrl
2580 {
2581 	uint8_t desc_type[2];
2582 #define	SVPD_TPC_BDRL			0x0000
2583 	uint8_t desc_length[2];
2584 	uint8_t vendor_specific[6];
2585 	uint8_t maximum_ranges[2];
2586 	uint8_t maximum_inactivity_timeout[4];
2587 	uint8_t default_inactivity_timeout[4];
2588 	uint8_t maximum_token_transfer_size[8];
2589 	uint8_t optimal_transfer_count[8];
2590 };
2591 
2592 struct scsi_vpd_tpc_descriptor_sc_descr
2593 {
2594 	uint8_t opcode;
2595 	uint8_t sa_length;
2596 	uint8_t supported_service_actions[0];
2597 };
2598 
2599 struct scsi_vpd_tpc_descriptor_sc
2600 {
2601 	uint8_t desc_type[2];
2602 #define	SVPD_TPC_SC			0x0001
2603 	uint8_t desc_length[2];
2604 	uint8_t list_length;
2605 	struct scsi_vpd_tpc_descriptor_sc_descr descr[];
2606 };
2607 
2608 struct scsi_vpd_tpc_descriptor_pd
2609 {
2610 	uint8_t desc_type[2];
2611 #define	SVPD_TPC_PD			0x0004
2612 	uint8_t desc_length[2];
2613 	uint8_t reserved[4];
2614 	uint8_t maximum_cscd_descriptor_count[2];
2615 	uint8_t maximum_segment_descriptor_count[2];
2616 	uint8_t maximum_descriptor_list_length[4];
2617 	uint8_t maximum_inline_data_length[4];
2618 	uint8_t reserved2[12];
2619 };
2620 
2621 struct scsi_vpd_tpc_descriptor_sd
2622 {
2623 	uint8_t desc_type[2];
2624 #define	SVPD_TPC_SD			0x0008
2625 	uint8_t desc_length[2];
2626 	uint8_t list_length;
2627 	uint8_t supported_descriptor_codes[];
2628 };
2629 
2630 struct scsi_vpd_tpc_descriptor_sdid
2631 {
2632 	uint8_t desc_type[2];
2633 #define	SVPD_TPC_SDID			0x000C
2634 	uint8_t desc_length[2];
2635 	uint8_t list_length[2];
2636 	uint8_t supported_descriptor_ids[];
2637 };
2638 
2639 struct scsi_vpd_tpc_descriptor_rtf_block
2640 {
2641 	uint8_t type_format;
2642 #define	SVPD_TPC_RTF_BLOCK			0x00
2643 	uint8_t reserved;
2644 	uint8_t desc_length[2];
2645 	uint8_t reserved2[2];
2646 	uint8_t optimal_length_granularity[2];
2647 	uint8_t maximum_bytes[8];
2648 	uint8_t optimal_bytes[8];
2649 	uint8_t optimal_bytes_to_token_per_segment[8];
2650 	uint8_t optimal_bytes_from_token_per_segment[8];
2651 	uint8_t reserved3[8];
2652 };
2653 
2654 struct scsi_vpd_tpc_descriptor_rtf
2655 {
2656 	uint8_t desc_type[2];
2657 #define	SVPD_TPC_RTF			0x0106
2658 	uint8_t desc_length[2];
2659 	uint8_t remote_tokens;
2660 	uint8_t reserved[11];
2661 	uint8_t minimum_token_lifetime[4];
2662 	uint8_t maximum_token_lifetime[4];
2663 	uint8_t maximum_token_inactivity_timeout[4];
2664 	uint8_t reserved2[18];
2665 	uint8_t type_specific_features_length[2];
2666 	uint8_t type_specific_features[0];
2667 };
2668 
2669 struct scsi_vpd_tpc_descriptor_srtd
2670 {
2671 	uint8_t rod_type[4];
2672 	uint8_t flags;
2673 #define	SVPD_TPC_SRTD_TOUT		0x01
2674 #define	SVPD_TPC_SRTD_TIN		0x02
2675 #define	SVPD_TPC_SRTD_ECPY		0x80
2676 	uint8_t reserved;
2677 	uint8_t preference_indicator[2];
2678 	uint8_t reserved2[56];
2679 };
2680 
2681 struct scsi_vpd_tpc_descriptor_srt
2682 {
2683 	uint8_t desc_type[2];
2684 #define	SVPD_TPC_SRT			0x0108
2685 	uint8_t desc_length[2];
2686 	uint8_t reserved[2];
2687 	uint8_t rod_type_descriptors_length[2];
2688 	uint8_t rod_type_descriptors[0];
2689 };
2690 
2691 struct scsi_vpd_tpc_descriptor_gco
2692 {
2693 	uint8_t desc_type[2];
2694 #define	SVPD_TPC_GCO			0x8001
2695 	uint8_t desc_length[2];
2696 	uint8_t total_concurrent_copies[4];
2697 	uint8_t maximum_identified_concurrent_copies[4];
2698 	uint8_t maximum_segment_length[4];
2699 	uint8_t data_segment_granularity;
2700 	uint8_t inline_data_granularity;
2701 	uint8_t reserved[18];
2702 };
2703 
2704 struct scsi_vpd_tpc
2705 {
2706 	uint8_t device;
2707 	uint8_t page_code;
2708 #define	SVPD_SCSI_TPC			0x8F
2709 	uint8_t page_length[2];
2710 	struct scsi_vpd_tpc_descriptor descr[];
2711 };
2712 
2713 /*
2714  * Block Device Characteristics VPD Page based on
2715  * T10/1799-D Revision 31
2716  */
2717 struct scsi_vpd_block_characteristics
2718 {
2719 	u_int8_t device;
2720 	u_int8_t page_code;
2721 #define SVPD_BDC			0xB1
2722 	u_int8_t page_length[2];
2723 	u_int8_t medium_rotation_rate[2];
2724 #define SVPD_BDC_RATE_NOT_REPORTED	0x00
2725 #define SVPD_BDC_RATE_NON_ROTATING	0x01
2726 	u_int8_t reserved1;
2727 	u_int8_t nominal_form_factor;
2728 #define SVPD_BDC_FORM_NOT_REPORTED	0x00
2729 #define SVPD_BDC_FORM_5_25INCH		0x01
2730 #define SVPD_BDC_FORM_3_5INCH		0x02
2731 #define SVPD_BDC_FORM_2_5INCH		0x03
2732 #define SVPD_BDC_FORM_1_5INCH		0x04
2733 #define SVPD_BDC_FORM_LESSTHAN_1_5INCH	0x05
2734 	u_int8_t reserved2[56];
2735 };
2736 
2737 /*
2738  * Block Device Characteristics VPD Page
2739  */
2740 struct scsi_vpd_block_device_characteristics
2741 {
2742 	uint8_t device;
2743 	uint8_t page_code;
2744 #define	SVPD_BDC		0xB1
2745 	uint8_t page_length[2];
2746 	uint8_t medium_rotation_rate[2];
2747 #define	SVPD_NOT_REPORTED	0x0000
2748 #define	SVPD_NON_ROTATING	0x0001
2749 	uint8_t product_type;
2750 	uint8_t wab_wac_ff;
2751 	uint8_t flags;
2752 #define	SVPD_VBULS		0x01
2753 #define	SVPD_FUAB		0x02
2754 #define	SVPD_ZBC_NR		0x00	/* Not Reported */
2755 #define	SVPD_HAW_ZBC		0x10	/* Host Aware */
2756 #define	SVPD_DM_ZBC		0x20	/* Drive Managed */
2757 #define	SVPD_ZBC_MASK		0x30	/* Zoned mask */
2758 	uint8_t reserved[55];
2759 };
2760 
2761 #define SBDC_IS_PRESENT(bdc, length, field)				   \
2762 	((length >= offsetof(struct scsi_vpd_block_device_characteristics, \
2763 	  field) + sizeof(bdc->field)) ? 1 : 0)
2764 
2765 /*
2766  * Logical Block Provisioning VPD Page based on
2767  * T10/1799-D Revision 31
2768  */
2769 struct scsi_vpd_logical_block_prov
2770 {
2771 	u_int8_t device;
2772 	u_int8_t page_code;
2773 #define	SVPD_LBP		0xB2
2774 	u_int8_t page_length[2];
2775 #define SVPD_LBP_PL_BASIC	0x04
2776 	u_int8_t threshold_exponent;
2777 	u_int8_t flags;
2778 #define SVPD_LBP_UNMAP		0x80
2779 #define SVPD_LBP_WS16		0x40
2780 #define SVPD_LBP_WS10		0x20
2781 #define SVPD_LBP_RZ		0x04
2782 #define SVPD_LBP_ANC_SUP	0x02
2783 #define SVPD_LBP_DP		0x01
2784 	u_int8_t prov_type;
2785 #define SVPD_LBP_RESOURCE	0x01
2786 #define SVPD_LBP_THIN		0x02
2787 	u_int8_t reserved;
2788 	/*
2789 	 * Provisioning Group Descriptor can be here if SVPD_LBP_DP is set
2790 	 * Its size can be determined from page_length - 4
2791 	 */
2792 };
2793 
2794 /*
2795  * Block Limits VDP Page based on SBC-4 Revision 2
2796  */
2797 struct scsi_vpd_block_limits
2798 {
2799 	u_int8_t device;
2800 	u_int8_t page_code;
2801 #define	SVPD_BLOCK_LIMITS	0xB0
2802 	u_int8_t page_length[2];
2803 #define SVPD_BL_PL_BASIC	0x10
2804 #define SVPD_BL_PL_TP		0x3C
2805 	u_int8_t reserved1;
2806 	u_int8_t max_cmp_write_len;
2807 	u_int8_t opt_txfer_len_grain[2];
2808 	u_int8_t max_txfer_len[4];
2809 	u_int8_t opt_txfer_len[4];
2810 	u_int8_t max_prefetch[4];
2811 	u_int8_t max_unmap_lba_cnt[4];
2812 	u_int8_t max_unmap_blk_cnt[4];
2813 	u_int8_t opt_unmap_grain[4];
2814 	u_int8_t unmap_grain_align[4];
2815 	u_int8_t max_write_same_length[8];
2816 	u_int8_t max_atomic_transfer_length[4];
2817 	u_int8_t atomic_alignment[4];
2818 	u_int8_t atomic_transfer_length_granularity[4];
2819 	u_int8_t max_atomic_transfer_length_with_atomic_boundary[4];
2820 	u_int8_t max_atomic_boundary_size[4];
2821 };
2822 
2823 /*
2824  * Zoned Block Device Characacteristics VPD page.
2825  * From ZBC-r04, dated August 12, 2015.
2826  */
2827 struct scsi_vpd_zoned_bdc {
2828 	uint8_t device;
2829 	uint8_t page_code;
2830 #define	SVPD_ZONED_BDC		0xB6
2831 	uint8_t page_length[2];
2832 #define	SVPD_ZBDC_PL	0x3C
2833 	uint8_t flags;
2834 #define	SVPD_ZBDC_URSWRZ	0x01
2835 	uint8_t reserved1[3];
2836 	uint8_t optimal_seq_zones[4];
2837 #define	SVPD_ZBDC_OPT_SEQ_NR		0xffffffff
2838 	uint8_t optimal_nonseq_zones[4];
2839 #define SVPD_ZBDC_OPT_NONSEQ_NR		0xffffffff
2840 	uint8_t max_seq_req_zones[4];
2841 #define	SVPD_ZBDC_MAX_SEQ_UNLIMITED	0xffffffff
2842 	uint8_t reserved2[44];
2843 };
2844 
2845 struct scsi_read_capacity
2846 {
2847 	u_int8_t opcode;
2848 	u_int8_t byte2;
2849 #define	SRC_RELADR	0x01
2850 	u_int8_t addr[4];
2851 	u_int8_t unused[2];
2852 	u_int8_t pmi;
2853 #define	SRC_PMI		0x01
2854 	u_int8_t control;
2855 };
2856 
2857 struct scsi_read_capacity_16
2858 {
2859 	uint8_t opcode;
2860 #define	SRC16_SERVICE_ACTION	0x10
2861 	uint8_t service_action;
2862 	uint8_t addr[8];
2863 	uint8_t alloc_len[4];
2864 #define	SRC16_PMI		0x01
2865 #define	SRC16_RELADR		0x02
2866 	uint8_t reladr;
2867 	uint8_t control;
2868 };
2869 
2870 struct scsi_read_capacity_data
2871 {
2872 	u_int8_t addr[4];
2873 	u_int8_t length[4];
2874 };
2875 
2876 struct scsi_read_capacity_data_long
2877 {
2878 	uint8_t addr[8];
2879 	uint8_t length[4];
2880 #define	SRC16_PROT_EN		0x01
2881 #define	SRC16_P_TYPE		0x0e
2882 #define	SRC16_PTYPE_1		0x00
2883 #define	SRC16_PTYPE_2		0x02
2884 #define	SRC16_PTYPE_3		0x04
2885 	uint8_t prot;
2886 #define	SRC16_LBPPBE		0x0f
2887 #define	SRC16_PI_EXPONENT	0xf0
2888 #define	SRC16_PI_EXPONENT_SHIFT	4
2889 	uint8_t prot_lbppbe;
2890 #define	SRC16_LALBA		0x3f
2891 #define	SRC16_LBPRZ		0x40
2892 #define	SRC16_LBPME		0x80
2893 /*
2894  * Alternate versions of these macros that are intended for use on a 16-bit
2895  * version of the lalba_lbp field instead of the array of 2 8 bit numbers.
2896  */
2897 #define	SRC16_LALBA_A		0x3fff
2898 #define	SRC16_LBPRZ_A		0x4000
2899 #define	SRC16_LBPME_A		0x8000
2900 	uint8_t lalba_lbp[2];
2901 	uint8_t	reserved[16];
2902 };
2903 
2904 struct scsi_get_lba_status
2905 {
2906 	uint8_t opcode;
2907 #define	SGLS_SERVICE_ACTION	0x12
2908 	uint8_t service_action;
2909 	uint8_t addr[8];
2910 	uint8_t alloc_len[4];
2911 	uint8_t reserved;
2912 	uint8_t control;
2913 };
2914 
2915 struct scsi_get_lba_status_data_descr
2916 {
2917 	uint8_t addr[8];
2918 	uint8_t length[4];
2919 	uint8_t status;
2920 	uint8_t reserved[3];
2921 };
2922 
2923 struct scsi_get_lba_status_data
2924 {
2925 	uint8_t length[4];
2926 	uint8_t reserved[4];
2927 	struct scsi_get_lba_status_data_descr descr[];
2928 };
2929 
2930 struct scsi_report_luns
2931 {
2932 	uint8_t opcode;
2933 	uint8_t reserved1;
2934 #define	RPL_REPORT_DEFAULT	0x00
2935 #define	RPL_REPORT_WELLKNOWN	0x01
2936 #define	RPL_REPORT_ALL		0x02
2937 #define	RPL_REPORT_ADMIN	0x10
2938 #define	RPL_REPORT_NONSUBSID	0x11
2939 #define	RPL_REPORT_CONGLOM	0x12
2940 	uint8_t select_report;
2941 	uint8_t reserved2[3];
2942 	uint8_t length[4];
2943 	uint8_t reserved3;
2944 	uint8_t control;
2945 };
2946 
2947 struct scsi_report_luns_lundata {
2948 	uint8_t lundata[8];
2949 #define	RPL_LUNDATA_PERIPH_BUS_MASK	0x3f
2950 #define	RPL_LUNDATA_FLAT_LUN_MASK	0x3f
2951 #define	RPL_LUNDATA_FLAT_LUN_BITS	0x06
2952 #define	RPL_LUNDATA_LUN_TARG_MASK	0x3f
2953 #define	RPL_LUNDATA_LUN_BUS_MASK	0xe0
2954 #define	RPL_LUNDATA_LUN_LUN_MASK	0x1f
2955 #define	RPL_LUNDATA_EXT_LEN_MASK	0x30
2956 #define	RPL_LUNDATA_EXT_EAM_MASK	0x0f
2957 #define	RPL_LUNDATA_EXT_EAM_WK		0x01
2958 #define	RPL_LUNDATA_EXT_EAM_NOT_SPEC	0x0f
2959 #define	RPL_LUNDATA_ATYP_MASK	0xc0	/* MBZ for type 0 lun */
2960 #define	RPL_LUNDATA_ATYP_PERIPH	0x00
2961 #define	RPL_LUNDATA_ATYP_FLAT	0x40
2962 #define	RPL_LUNDATA_ATYP_LUN	0x80
2963 #define	RPL_LUNDATA_ATYP_EXTLUN	0xc0
2964 };
2965 
2966 struct scsi_report_luns_data {
2967 	u_int8_t length[4];	/* length of LUN inventory, in bytes */
2968 	u_int8_t reserved[4];	/* unused */
2969 	/*
2970 	 * LUN inventory- we only support the type zero form for now.
2971 	 */
2972 	struct scsi_report_luns_lundata luns[0];
2973 };
2974 
2975 struct scsi_target_group
2976 {
2977 	uint8_t opcode;
2978 	uint8_t service_action;
2979 #define	STG_PDF_MASK		0xe0
2980 #define	STG_PDF_LENGTH		0x00
2981 #define	STG_PDF_EXTENDED	0x20
2982 	uint8_t reserved1[4];
2983 	uint8_t length[4];
2984 	uint8_t reserved2;
2985 	uint8_t control;
2986 };
2987 
2988 struct scsi_timestamp
2989 {
2990 	uint8_t opcode;
2991 	uint8_t service_action;
2992 	uint8_t reserved1[4];
2993 	uint8_t length[4];
2994 	uint8_t reserved2;
2995 	uint8_t control;
2996 };
2997 
2998 struct scsi_set_timestamp_parameters
2999 {
3000 	uint8_t reserved1[4];
3001 	uint8_t timestamp[6];
3002 	uint8_t reserved2[4];
3003 };
3004 
3005 struct scsi_report_timestamp_parameter_data
3006 {
3007 	uint8_t length[2];
3008 	uint8_t reserved1[2];
3009 	uint8_t timestamp[6];
3010 	uint8_t reserved2[2];
3011 };
3012 
3013 struct scsi_target_port_descriptor {
3014 	uint8_t	reserved[2];
3015 	uint8_t	relative_target_port_identifier[2];
3016 	uint8_t desc_list[];
3017 };
3018 
3019 struct scsi_target_port_group_descriptor {
3020 	uint8_t	pref_state;
3021 #define	TPG_PRIMARY				0x80
3022 #define	TPG_ASYMMETRIC_ACCESS_STATE_MASK	0xf
3023 #define	TPG_ASYMMETRIC_ACCESS_OPTIMIZED		0x0
3024 #define	TPG_ASYMMETRIC_ACCESS_NONOPTIMIZED	0x1
3025 #define	TPG_ASYMMETRIC_ACCESS_STANDBY		0x2
3026 #define	TPG_ASYMMETRIC_ACCESS_UNAVAILABLE	0x3
3027 #define	TPG_ASYMMETRIC_ACCESS_LBA_DEPENDENT	0x4
3028 #define	TPG_ASYMMETRIC_ACCESS_OFFLINE		0xE
3029 #define	TPG_ASYMMETRIC_ACCESS_TRANSITIONING	0xF
3030 	uint8_t support;
3031 #define	TPG_AO_SUP	0x01
3032 #define	TPG_AN_SUP	0x02
3033 #define	TPG_S_SUP	0x04
3034 #define	TPG_U_SUP	0x08
3035 #define	TPG_LBD_SUP	0x10
3036 #define	TPG_O_SUP	0x40
3037 #define	TPG_T_SUP	0x80
3038 	uint8_t target_port_group[2];
3039 	uint8_t reserved;
3040 	uint8_t status;
3041 #define TPG_UNAVLBL      0
3042 #define TPG_SET_BY_STPG  0x01
3043 #define TPG_IMPLICIT     0x02
3044 	uint8_t vendor_specific;
3045 	uint8_t	target_port_count;
3046 	struct scsi_target_port_descriptor descriptors[];
3047 };
3048 
3049 struct scsi_target_group_data {
3050 	uint8_t length[4];	/* length of returned data, in bytes */
3051 	struct scsi_target_port_group_descriptor groups[];
3052 };
3053 
3054 struct scsi_target_group_data_extended {
3055 	uint8_t length[4];	/* length of returned data, in bytes */
3056 	uint8_t format_type;	/* STG_PDF_LENGTH or STG_PDF_EXTENDED */
3057 	uint8_t	implicit_transition_time;
3058 	uint8_t reserved[2];
3059 	struct scsi_target_port_group_descriptor groups[];
3060 };
3061 
3062 struct scsi_security_protocol_in
3063 {
3064 	uint8_t opcode;
3065 	uint8_t security_protocol;
3066 #define	SPI_PROT_INFORMATION		0x00
3067 #define	SPI_PROT_CBCS			0x07
3068 #define	SPI_PROT_TAPE_DATA_ENC		0x20
3069 #define	SPI_PROT_DATA_ENC_CONFIG	0x21
3070 #define	SPI_PROT_SA_CREATE_CAP		0x40
3071 #define	SPI_PROT_IKEV2_SCSI		0x41
3072 #define	SPI_PROT_JEDEC_UFS		0xEC
3073 #define	SPI_PROT_SDCARD_TFSSS		0xED
3074 #define	SPI_PROT_AUTH_HOST_TRANSIENT	0xEE
3075 #define	SPI_PROT_ATA_DEVICE_PASSWORD	0xEF
3076 	uint8_t security_protocol_specific[2];
3077 	uint8_t byte4;
3078 #define	SPI_INC_512	0x80
3079 	uint8_t reserved1;
3080 	uint8_t length[4];
3081 	uint8_t reserved2;
3082 	uint8_t control;
3083 };
3084 
3085 struct scsi_security_protocol_out
3086 {
3087 	uint8_t opcode;
3088 	uint8_t security_protocol;
3089 	uint8_t security_protocol_specific[2];
3090 	uint8_t byte4;
3091 #define	SPO_INC_512	0x80
3092 	uint8_t reserved1;
3093 	uint8_t length[4];
3094 	uint8_t reserved2;
3095 	uint8_t control;
3096 };
3097 
3098 typedef enum {
3099 	SSD_TYPE_NONE,
3100 	SSD_TYPE_FIXED,
3101 	SSD_TYPE_DESC
3102 } scsi_sense_data_type;
3103 
3104 typedef enum {
3105 	SSD_ELEM_NONE,
3106 	SSD_ELEM_SKIP,
3107 	SSD_ELEM_DESC,
3108 	SSD_ELEM_SKS,
3109 	SSD_ELEM_COMMAND,
3110 	SSD_ELEM_INFO,
3111 	SSD_ELEM_FRU,
3112 	SSD_ELEM_STREAM,
3113 	SSD_ELEM_MAX
3114 } scsi_sense_elem_type;
3115 
3116 
3117 struct scsi_sense_data
3118 {
3119 	uint8_t error_code;
3120 	/*
3121 	 * SPC-4 says that the maximum length of sense data is 252 bytes.
3122 	 * So this structure is exactly 252 bytes log.
3123 	 */
3124 #define	SSD_FULL_SIZE 252
3125 	uint8_t sense_buf[SSD_FULL_SIZE - 1];
3126 	/*
3127 	 * XXX KDM is this still a reasonable minimum size?
3128 	 */
3129 #define	SSD_MIN_SIZE 18
3130 	/*
3131 	 * Maximum value for the extra_len field in the sense data.
3132 	 */
3133 #define	SSD_EXTRA_MAX 244
3134 };
3135 
3136 /*
3137  * Fixed format sense data.
3138  */
3139 struct scsi_sense_data_fixed
3140 {
3141 	u_int8_t error_code;
3142 #define	SSD_ERRCODE			0x7F
3143 #define		SSD_CURRENT_ERROR	0x70
3144 #define		SSD_DEFERRED_ERROR	0x71
3145 #define	SSD_ERRCODE_VALID	0x80
3146 	u_int8_t segment;
3147 	u_int8_t flags;
3148 #define	SSD_KEY				0x0F
3149 #define		SSD_KEY_NO_SENSE	0x00
3150 #define		SSD_KEY_RECOVERED_ERROR	0x01
3151 #define		SSD_KEY_NOT_READY	0x02
3152 #define		SSD_KEY_MEDIUM_ERROR	0x03
3153 #define		SSD_KEY_HARDWARE_ERROR	0x04
3154 #define		SSD_KEY_ILLEGAL_REQUEST	0x05
3155 #define		SSD_KEY_UNIT_ATTENTION	0x06
3156 #define		SSD_KEY_DATA_PROTECT	0x07
3157 #define		SSD_KEY_BLANK_CHECK	0x08
3158 #define		SSD_KEY_Vendor_Specific	0x09
3159 #define		SSD_KEY_COPY_ABORTED	0x0a
3160 #define		SSD_KEY_ABORTED_COMMAND	0x0b
3161 #define		SSD_KEY_EQUAL		0x0c
3162 #define		SSD_KEY_VOLUME_OVERFLOW	0x0d
3163 #define		SSD_KEY_MISCOMPARE	0x0e
3164 #define		SSD_KEY_COMPLETED	0x0f
3165 #define	SSD_ILI		0x20
3166 #define	SSD_EOM		0x40
3167 #define	SSD_FILEMARK	0x80
3168 	u_int8_t info[4];
3169 	u_int8_t extra_len;
3170 	u_int8_t cmd_spec_info[4];
3171 	u_int8_t add_sense_code;
3172 	u_int8_t add_sense_code_qual;
3173 	u_int8_t fru;
3174 	u_int8_t sense_key_spec[3];
3175 #define	SSD_SCS_VALID		0x80
3176 #define	SSD_FIELDPTR_CMD	0x40
3177 #define	SSD_BITPTR_VALID	0x08
3178 #define	SSD_BITPTR_VALUE	0x07
3179 	u_int8_t extra_bytes[14];
3180 #define	SSD_FIXED_IS_PRESENT(sense, length, field) 			\
3181 	((length >= (offsetof(struct scsi_sense_data_fixed, field) +	\
3182 	sizeof(sense->field))) ? 1 :0)
3183 #define	SSD_FIXED_IS_FILLED(sense, field) 				\
3184 	((((offsetof(struct scsi_sense_data_fixed, field) +		\
3185 	sizeof(sense->field)) -						\
3186 	(offsetof(struct scsi_sense_data_fixed, extra_len) +		\
3187 	sizeof(sense->extra_len))) <= sense->extra_len) ? 1 : 0)
3188 };
3189 
3190 /*
3191  * Descriptor format sense data definitions.
3192  * Introduced in SPC-3.
3193  */
3194 struct scsi_sense_data_desc
3195 {
3196 	uint8_t	error_code;
3197 #define	SSD_DESC_CURRENT_ERROR	0x72
3198 #define	SSD_DESC_DEFERRED_ERROR	0x73
3199 	uint8_t sense_key;
3200 	uint8_t	add_sense_code;
3201 	uint8_t	add_sense_code_qual;
3202 	uint8_t	reserved[3];
3203 	/*
3204 	 * Note that SPC-4, section 4.5.2.1 says that the extra_len field
3205 	 * must be less than or equal to 244.
3206 	 */
3207 	uint8_t	extra_len;
3208 	uint8_t	sense_desc[0];
3209 #define	SSD_DESC_IS_PRESENT(sense, length, field) 			\
3210 	((length >= (offsetof(struct scsi_sense_data_desc, field) +	\
3211 	sizeof(sense->field))) ? 1 :0)
3212 };
3213 
3214 struct scsi_sense_desc_header
3215 {
3216 	uint8_t desc_type;
3217 	uint8_t length;
3218 };
3219 /*
3220  * The information provide in the Information descriptor is device type or
3221  * command specific information, and defined in a command standard.
3222  *
3223  * Note that any changes to the field names or positions in this structure,
3224  * even reserved fields, should be accompanied by an examination of the
3225  * code in ctl_set_sense() that uses them.
3226  *
3227  * Maximum descriptors allowed: 1 (as of SPC-4)
3228  */
3229 struct scsi_sense_info
3230 {
3231 	uint8_t	desc_type;
3232 #define	SSD_DESC_INFO	0x00
3233 	uint8_t	length;
3234 	uint8_t	byte2;
3235 #define	SSD_INFO_VALID	0x80
3236 	uint8_t	reserved;
3237 	uint8_t	info[8];
3238 };
3239 
3240 /*
3241  * Command-specific information depends on the command for which the
3242  * reported condition occurred.
3243  *
3244  * Note that any changes to the field names or positions in this structure,
3245  * even reserved fields, should be accompanied by an examination of the
3246  * code in ctl_set_sense() that uses them.
3247  *
3248  * Maximum descriptors allowed: 1 (as of SPC-4)
3249  */
3250 struct scsi_sense_command
3251 {
3252 	uint8_t	desc_type;
3253 #define	SSD_DESC_COMMAND	0x01
3254 	uint8_t	length;
3255 	uint8_t	reserved[2];
3256 	uint8_t	command_info[8];
3257 };
3258 
3259 /*
3260  * Sense key specific descriptor.  The sense key specific data format
3261  * depends on the sense key in question.
3262  *
3263  * Maximum descriptors allowed: 1 (as of SPC-4)
3264  */
3265 struct scsi_sense_sks
3266 {
3267 	uint8_t	desc_type;
3268 #define	SSD_DESC_SKS		0x02
3269 	uint8_t	length;
3270 	uint8_t reserved1[2];
3271 	uint8_t	sense_key_spec[3];
3272 #define	SSD_SKS_VALID		0x80
3273 	uint8_t reserved2;
3274 };
3275 
3276 /*
3277  * This is used for the Illegal Request sense key (0x05) only.
3278  */
3279 struct scsi_sense_sks_field
3280 {
3281 	uint8_t	byte0;
3282 #define	SSD_SKS_FIELD_VALID	0x80
3283 #define	SSD_SKS_FIELD_CMD	0x40
3284 #define	SSD_SKS_BPV		0x08
3285 #define	SSD_SKS_BIT_VALUE	0x07
3286 	uint8_t	field[2];
3287 };
3288 
3289 
3290 /*
3291  * This is used for the Hardware Error (0x04), Medium Error (0x03) and
3292  * Recovered Error (0x01) sense keys.
3293  */
3294 struct scsi_sense_sks_retry
3295 {
3296 	uint8_t byte0;
3297 #define	SSD_SKS_RETRY_VALID	0x80
3298 	uint8_t actual_retry_count[2];
3299 };
3300 
3301 /*
3302  * Used with the NO Sense (0x00) or Not Ready (0x02) sense keys.
3303  */
3304 struct scsi_sense_sks_progress
3305 {
3306 	uint8_t byte0;
3307 #define	SSD_SKS_PROGRESS_VALID	0x80
3308 	uint8_t progress[2];
3309 #define	SSD_SKS_PROGRESS_DENOM	0x10000
3310 };
3311 
3312 /*
3313  * Used with the Copy Aborted (0x0a) sense key.
3314  */
3315 struct scsi_sense_sks_segment
3316 {
3317 	uint8_t byte0;
3318 #define	SSD_SKS_SEGMENT_VALID	0x80
3319 #define	SSD_SKS_SEGMENT_SD	0x20
3320 #define	SSD_SKS_SEGMENT_BPV	0x08
3321 #define	SSD_SKS_SEGMENT_BITPTR	0x07
3322 	uint8_t field[2];
3323 };
3324 
3325 /*
3326  * Used with the Unit Attention (0x06) sense key.
3327  *
3328  * This is currently used to indicate that the unit attention condition
3329  * queue has overflowed (when the overflow bit is set).
3330  */
3331 struct scsi_sense_sks_overflow
3332 {
3333 	uint8_t byte0;
3334 #define	SSD_SKS_OVERFLOW_VALID	0x80
3335 #define	SSD_SKS_OVERFLOW_SET	0x01
3336 	uint8_t	reserved[2];
3337 };
3338 
3339 /*
3340  * This specifies which component is associated with the sense data.  There
3341  * is no standard meaning for the fru value.
3342  *
3343  * Maximum descriptors allowed: 1 (as of SPC-4)
3344  */
3345 struct scsi_sense_fru
3346 {
3347 	uint8_t	desc_type;
3348 #define	SSD_DESC_FRU		0x03
3349 	uint8_t	length;
3350 	uint8_t reserved;
3351 	uint8_t fru;
3352 };
3353 
3354 /*
3355  * Used for Stream commands, defined in SSC-4.
3356  *
3357  * Maximum descriptors allowed: 1 (as of SPC-4)
3358  */
3359 
3360 struct scsi_sense_stream
3361 {
3362 	uint8_t	desc_type;
3363 #define	SSD_DESC_STREAM		0x04
3364 	uint8_t	length;
3365 	uint8_t	reserved;
3366 	uint8_t	byte3;
3367 #define	SSD_DESC_STREAM_FM	0x80
3368 #define	SSD_DESC_STREAM_EOM	0x40
3369 #define	SSD_DESC_STREAM_ILI	0x20
3370 };
3371 
3372 /*
3373  * Used for Block commands, defined in SBC-3.
3374  *
3375  * This is currently (as of SBC-3) only used for the Incorrect Length
3376  * Indication (ILI) bit, which says that the data length requested in the
3377  * READ LONG or WRITE LONG command did not match the length of the logical
3378  * block.
3379  *
3380  * Maximum descriptors allowed: 1 (as of SPC-4)
3381  */
3382 struct scsi_sense_block
3383 {
3384 	uint8_t	desc_type;
3385 #define	SSD_DESC_BLOCK		0x05
3386 	uint8_t	length;
3387 	uint8_t	reserved;
3388 	uint8_t	byte3;
3389 #define	SSD_DESC_BLOCK_ILI	0x20
3390 };
3391 
3392 /*
3393  * Used for Object-Based Storage Devices (OSD-3).
3394  *
3395  * Maximum descriptors allowed: 1 (as of SPC-4)
3396  */
3397 struct scsi_sense_osd_objid
3398 {
3399 	uint8_t	desc_type;
3400 #define	SSD_DESC_OSD_OBJID	0x06
3401 	uint8_t	length;
3402 	uint8_t	reserved[6];
3403 	/*
3404 	 * XXX KDM provide the bit definitions here?  There are a lot of
3405 	 * them, and we don't have an OSD driver yet.
3406 	 */
3407 	uint8_t	not_init_cmds[4];
3408 	uint8_t	completed_cmds[4];
3409 	uint8_t	partition_id[8];
3410 	uint8_t	object_id[8];
3411 };
3412 
3413 /*
3414  * Used for Object-Based Storage Devices (OSD-3).
3415  *
3416  * Maximum descriptors allowed: 1 (as of SPC-4)
3417  */
3418 struct scsi_sense_osd_integrity
3419 {
3420 	uint8_t	desc_type;
3421 #define	SSD_DESC_OSD_INTEGRITY	0x07
3422 	uint8_t	length;
3423 	uint8_t	integ_check_val[32];
3424 };
3425 
3426 /*
3427  * Used for Object-Based Storage Devices (OSD-3).
3428  *
3429  * Maximum descriptors allowed: 1 (as of SPC-4)
3430  */
3431 struct scsi_sense_osd_attr_id
3432 {
3433 	uint8_t	desc_type;
3434 #define	SSD_DESC_OSD_ATTR_ID	0x08
3435 	uint8_t	length;
3436 	uint8_t	reserved[2];
3437 	uint8_t	attr_desc[0];
3438 };
3439 
3440 /*
3441  * ATA Return descriptor, used for the SCSI ATA PASS-THROUGH(12), (16) and
3442  * (32) commands.  Described in SAT-4r05.
3443  */
3444 struct scsi_sense_ata_ret_desc
3445 {
3446 	uint8_t desc_type;
3447 #define	SSD_DESC_ATA		0x09
3448 	uint8_t length;
3449 	uint8_t flags;
3450 #define	SSD_DESC_ATA_FLAG_EXTEND	0x01
3451 	uint8_t error;
3452 	uint8_t count_15_8;
3453 	uint8_t count_7_0;
3454 	uint8_t lba_31_24;
3455 	uint8_t lba_7_0;
3456 	uint8_t lba_39_32;
3457 	uint8_t lba_15_8;
3458 	uint8_t lba_47_40;
3459 	uint8_t lba_23_16;
3460 	uint8_t device;
3461 	uint8_t status;
3462 };
3463 /*
3464  * Used with Sense keys No Sense (0x00) and Not Ready (0x02).
3465  *
3466  * Maximum descriptors allowed: 32 (as of SPC-4)
3467  */
3468 struct scsi_sense_progress
3469 {
3470 	uint8_t	desc_type;
3471 #define	SSD_DESC_PROGRESS	0x0a
3472 	uint8_t	length;
3473 	uint8_t	sense_key;
3474 	uint8_t	add_sense_code;
3475 	uint8_t	add_sense_code_qual;
3476 	uint8_t reserved;
3477 	uint8_t	progress[2];
3478 };
3479 
3480 /*
3481  * This is typically forwarded as the result of an EXTENDED COPY command.
3482  *
3483  * Maximum descriptors allowed: 2 (as of SPC-4)
3484  */
3485 struct scsi_sense_forwarded
3486 {
3487 	uint8_t	desc_type;
3488 #define	SSD_DESC_FORWARDED	0x0c
3489 	uint8_t	length;
3490 	uint8_t	byte2;
3491 #define	SSD_FORWARDED_FSDT	0x80
3492 #define	SSD_FORWARDED_SDS_MASK	0x0f
3493 #define	SSD_FORWARDED_SDS_UNK	0x00
3494 #define	SSD_FORWARDED_SDS_EXSRC	0x01
3495 #define	SSD_FORWARDED_SDS_EXDST	0x02
3496 };
3497 
3498 /*
3499  * Vendor-specific sense descriptor.  The desc_type field will be in the
3500  * range between MIN and MAX inclusive.
3501  */
3502 struct scsi_sense_vendor
3503 {
3504 	uint8_t	desc_type;
3505 #define	SSD_DESC_VENDOR_MIN	0x80
3506 #define	SSD_DESC_VENDOR_MAX	0xff
3507 	uint8_t length;
3508 	uint8_t	data[0];
3509 };
3510 
3511 struct scsi_mode_header_6
3512 {
3513 	u_int8_t data_length;	/* Sense data length */
3514 	u_int8_t medium_type;
3515 	u_int8_t dev_spec;
3516 	u_int8_t blk_desc_len;
3517 };
3518 
3519 struct scsi_mode_header_10
3520 {
3521 	u_int8_t data_length[2];/* Sense data length */
3522 	u_int8_t medium_type;
3523 	u_int8_t dev_spec;
3524 	u_int8_t unused[2];
3525 	u_int8_t blk_desc_len[2];
3526 };
3527 
3528 struct scsi_mode_page_header
3529 {
3530 	u_int8_t page_code;
3531 #define	SMPH_PS		0x80
3532 #define	SMPH_SPF	0x40
3533 #define	SMPH_PC_MASK	0x3f
3534 	u_int8_t page_length;
3535 };
3536 
3537 struct scsi_mode_page_header_sp
3538 {
3539 	uint8_t page_code;
3540 	uint8_t subpage;
3541 	uint8_t page_length[2];
3542 };
3543 
3544 
3545 struct scsi_mode_blk_desc
3546 {
3547 	u_int8_t density;
3548 	u_int8_t nblocks[3];
3549 	u_int8_t reserved;
3550 	u_int8_t blklen[3];
3551 };
3552 
3553 #define	SCSI_DEFAULT_DENSITY	0x00	/* use 'default' density */
3554 #define	SCSI_SAME_DENSITY	0x7f	/* use 'same' density- >= SCSI-2 only */
3555 
3556 
3557 /*
3558  * Status Byte
3559  */
3560 #define	SCSI_STATUS_OK			0x00
3561 #define	SCSI_STATUS_CHECK_COND		0x02
3562 #define	SCSI_STATUS_COND_MET		0x04
3563 #define	SCSI_STATUS_BUSY		0x08
3564 #define	SCSI_STATUS_INTERMED		0x10
3565 #define	SCSI_STATUS_INTERMED_COND_MET	0x14
3566 #define	SCSI_STATUS_RESERV_CONFLICT	0x18
3567 #define	SCSI_STATUS_CMD_TERMINATED	0x22	/* Obsolete in SAM-2 */
3568 #define	SCSI_STATUS_QUEUE_FULL		0x28
3569 #define	SCSI_STATUS_ACA_ACTIVE		0x30
3570 #define	SCSI_STATUS_TASK_ABORTED	0x40
3571 
3572 struct scsi_inquiry_pattern {
3573 	u_int8_t   type;
3574 	u_int8_t   media_type;
3575 #define	SIP_MEDIA_REMOVABLE	0x01
3576 #define	SIP_MEDIA_FIXED		0x02
3577 	const char *vendor;
3578 	const char *product;
3579 	const char *revision;
3580 };
3581 
3582 struct scsi_static_inquiry_pattern {
3583 	u_int8_t   type;
3584 	u_int8_t   media_type;
3585 	char       vendor[SID_VENDOR_SIZE+1];
3586 	char       product[SID_PRODUCT_SIZE+1];
3587 	char       revision[SID_REVISION_SIZE+1];
3588 };
3589 
3590 struct scsi_sense_quirk_entry {
3591 	struct scsi_inquiry_pattern	inq_pat;
3592 	int				num_sense_keys;
3593 	int				num_ascs;
3594 	struct sense_key_table_entry	*sense_key_info;
3595 	struct asc_table_entry		*asc_info;
3596 };
3597 
3598 struct sense_key_table_entry {
3599 	u_int8_t    sense_key;
3600 	u_int32_t   action;
3601 	const char *desc;
3602 };
3603 
3604 struct asc_table_entry {
3605 	u_int8_t    asc;
3606 	u_int8_t    ascq;
3607 	u_int32_t   action;
3608 	const char *desc;
3609 };
3610 
3611 struct op_table_entry {
3612 	u_int8_t    opcode;
3613 	u_int32_t   opmask;
3614 	const char  *desc;
3615 };
3616 
3617 struct scsi_op_quirk_entry {
3618 	struct scsi_inquiry_pattern	inq_pat;
3619 	int				num_ops;
3620 	struct op_table_entry		*op_table;
3621 };
3622 
3623 typedef enum {
3624 	SSS_FLAG_NONE		= 0x00,
3625 	SSS_FLAG_PRINT_COMMAND	= 0x01
3626 } scsi_sense_string_flags;
3627 
3628 struct scsi_nv {
3629 	const char *name;
3630 	uint64_t value;
3631 };
3632 
3633 typedef enum {
3634 	SCSI_NV_FOUND,
3635 	SCSI_NV_AMBIGUOUS,
3636 	SCSI_NV_NOT_FOUND
3637 } scsi_nv_status;
3638 
3639 typedef enum {
3640 	SCSI_NV_FLAG_NONE	= 0x00,
3641 	SCSI_NV_FLAG_IG_CASE	= 0x01	/* Case insensitive comparison */
3642 } scsi_nv_flags;
3643 
3644 struct ccb_scsiio;
3645 struct cam_periph;
3646 union  ccb;
3647 #ifndef _KERNEL
3648 struct cam_device;
3649 #endif
3650 
3651 extern const char *scsi_sense_key_text[];
3652 
3653 __BEGIN_DECLS
3654 void scsi_sense_desc(int sense_key, int asc, int ascq,
3655 		     struct scsi_inquiry_data *inq_data,
3656 		     const char **sense_key_desc, const char **asc_desc);
3657 scsi_sense_action scsi_error_action(struct ccb_scsiio* csio,
3658 				    struct scsi_inquiry_data *inq_data,
3659 				    u_int32_t sense_flags);
3660 const char *	scsi_status_string(struct ccb_scsiio *csio);
3661 
3662 void scsi_desc_iterate(struct scsi_sense_data_desc *sense, u_int sense_len,
3663 		       int (*iter_func)(struct scsi_sense_data_desc *sense,
3664 					u_int, struct scsi_sense_desc_header *,
3665 					void *), void *arg);
3666 uint8_t *scsi_find_desc(struct scsi_sense_data_desc *sense, u_int sense_len,
3667 			uint8_t desc_type);
3668 void scsi_set_sense_data(struct scsi_sense_data *sense_data,
3669 			 scsi_sense_data_type sense_format, int current_error,
3670 			 int sense_key, int asc, int ascq, ...) ;
3671 void scsi_set_sense_data_va(struct scsi_sense_data *sense_data,
3672 			    scsi_sense_data_type sense_format,
3673 			    int current_error, int sense_key, int asc,
3674 			    int ascq, va_list ap);
3675 int scsi_get_sense_info(struct scsi_sense_data *sense_data, u_int sense_len,
3676 			uint8_t info_type, uint64_t *info,
3677 			int64_t *signed_info);
3678 int scsi_get_sks(struct scsi_sense_data *sense_data, u_int sense_len,
3679 		 uint8_t *sks);
3680 int scsi_get_block_info(struct scsi_sense_data *sense_data, u_int sense_len,
3681 			struct scsi_inquiry_data *inq_data,
3682 			uint8_t *block_bits);
3683 int scsi_get_stream_info(struct scsi_sense_data *sense_data, u_int sense_len,
3684 			 struct scsi_inquiry_data *inq_data,
3685 			 uint8_t *stream_bits);
3686 void scsi_info_sbuf(struct sbuf *sb, uint8_t *cdb, int cdb_len,
3687 		    struct scsi_inquiry_data *inq_data, uint64_t info);
3688 void scsi_command_sbuf(struct sbuf *sb, uint8_t *cdb, int cdb_len,
3689 		       struct scsi_inquiry_data *inq_data, uint64_t csi);
3690 void scsi_progress_sbuf(struct sbuf *sb, uint16_t progress);
3691 int scsi_sks_sbuf(struct sbuf *sb, int sense_key, uint8_t *sks);
3692 void scsi_fru_sbuf(struct sbuf *sb, uint64_t fru);
3693 void scsi_stream_sbuf(struct sbuf *sb, uint8_t stream_bits, uint64_t info);
3694 void scsi_block_sbuf(struct sbuf *sb, uint8_t block_bits, uint64_t info);
3695 void scsi_sense_info_sbuf(struct sbuf *sb, struct scsi_sense_data *sense,
3696 			  u_int sense_len, uint8_t *cdb, int cdb_len,
3697 			  struct scsi_inquiry_data *inq_data,
3698 			  struct scsi_sense_desc_header *header);
3699 
3700 void scsi_sense_command_sbuf(struct sbuf *sb, struct scsi_sense_data *sense,
3701 			     u_int sense_len, uint8_t *cdb, int cdb_len,
3702 			     struct scsi_inquiry_data *inq_data,
3703 			     struct scsi_sense_desc_header *header);
3704 void scsi_sense_sks_sbuf(struct sbuf *sb, struct scsi_sense_data *sense,
3705 			 u_int sense_len, uint8_t *cdb, int cdb_len,
3706 			 struct scsi_inquiry_data *inq_data,
3707 			 struct scsi_sense_desc_header *header);
3708 void scsi_sense_fru_sbuf(struct sbuf *sb, struct scsi_sense_data *sense,
3709 			 u_int sense_len, uint8_t *cdb, int cdb_len,
3710 			 struct scsi_inquiry_data *inq_data,
3711 			 struct scsi_sense_desc_header *header);
3712 void scsi_sense_stream_sbuf(struct sbuf *sb, struct scsi_sense_data *sense,
3713 			    u_int sense_len, uint8_t *cdb, int cdb_len,
3714 			    struct scsi_inquiry_data *inq_data,
3715 			    struct scsi_sense_desc_header *header);
3716 void scsi_sense_block_sbuf(struct sbuf *sb, struct scsi_sense_data *sense,
3717 			   u_int sense_len, uint8_t *cdb, int cdb_len,
3718 			   struct scsi_inquiry_data *inq_data,
3719 			   struct scsi_sense_desc_header *header);
3720 void scsi_sense_progress_sbuf(struct sbuf *sb, struct scsi_sense_data *sense,
3721 			      u_int sense_len, uint8_t *cdb, int cdb_len,
3722 			      struct scsi_inquiry_data *inq_data,
3723 			      struct scsi_sense_desc_header *header);
3724 void scsi_sense_ata_sbuf(struct sbuf *sb, struct scsi_sense_data *sense,
3725 			 u_int sense_len, uint8_t *cdb, int cdb_len,
3726 			 struct scsi_inquiry_data *inq_data,
3727 			 struct scsi_sense_desc_header *header);
3728 void scsi_sense_generic_sbuf(struct sbuf *sb, struct scsi_sense_data *sense,
3729 			     u_int sense_len, uint8_t *cdb, int cdb_len,
3730 			     struct scsi_inquiry_data *inq_data,
3731 			     struct scsi_sense_desc_header *header);
3732 void scsi_sense_desc_sbuf(struct sbuf *sb, struct scsi_sense_data *sense,
3733 			  u_int sense_len, uint8_t *cdb, int cdb_len,
3734 			  struct scsi_inquiry_data *inq_data,
3735 			  struct scsi_sense_desc_header *header);
3736 scsi_sense_data_type scsi_sense_type(struct scsi_sense_data *sense_data);
3737 
3738 void scsi_sense_only_sbuf(struct scsi_sense_data *sense, u_int sense_len,
3739 			  struct sbuf *sb, char *path_str,
3740 			  struct scsi_inquiry_data *inq_data, uint8_t *cdb,
3741 			  int cdb_len);
3742 
3743 #ifdef _KERNEL
3744 int		scsi_command_string(struct ccb_scsiio *csio, struct sbuf *sb);
3745 int		scsi_sense_sbuf(struct ccb_scsiio *csio, struct sbuf *sb,
3746 				scsi_sense_string_flags flags);
3747 char *		scsi_sense_string(struct ccb_scsiio *csio,
3748 				  char *str, int str_len);
3749 void		scsi_sense_print(struct ccb_scsiio *csio);
3750 int 		scsi_vpd_supported_page(struct cam_periph *periph,
3751 					uint8_t page_id);
3752 #else /* _KERNEL */
3753 int		scsi_command_string(struct cam_device *device,
3754 				    struct ccb_scsiio *csio, struct sbuf *sb);
3755 int		scsi_sense_sbuf(struct cam_device *device,
3756 				struct ccb_scsiio *csio, struct sbuf *sb,
3757 				scsi_sense_string_flags flags);
3758 char *		scsi_sense_string(struct cam_device *device,
3759 				  struct ccb_scsiio *csio,
3760 				  char *str, int str_len);
3761 void		scsi_sense_print(struct cam_device *device,
3762 				 struct ccb_scsiio *csio, FILE *ofile);
3763 #endif /* _KERNEL */
3764 
3765 const char *	scsi_op_desc(u_int16_t opcode,
3766 			     struct scsi_inquiry_data *inq_data);
3767 char *		scsi_cdb_string(u_int8_t *cdb_ptr, char *cdb_string,
3768 				size_t len);
3769 void		scsi_cdb_sbuf(u_int8_t *cdb_ptr, struct sbuf *sb);
3770 
3771 void		scsi_print_inquiry(struct scsi_inquiry_data *inq_data);
3772 void		scsi_print_inquiry_short(struct scsi_inquiry_data *inq_data);
3773 
3774 u_int		scsi_calc_syncsrate(u_int period_factor);
3775 u_int		scsi_calc_syncparam(u_int period);
3776 
3777 typedef int	(*scsi_devid_checkfn_t)(uint8_t *);
3778 int		scsi_devid_is_naa_ieee_reg(uint8_t *bufp);
3779 int		scsi_devid_is_sas_target(uint8_t *bufp);
3780 int		scsi_devid_is_lun_eui64(uint8_t *bufp);
3781 int		scsi_devid_is_lun_naa(uint8_t *bufp);
3782 int		scsi_devid_is_lun_name(uint8_t *bufp);
3783 int		scsi_devid_is_lun_t10(uint8_t *bufp);
3784 int		scsi_devid_is_port_naa(uint8_t *bufp);
3785 struct scsi_vpd_id_descriptor *
3786 		scsi_get_devid(struct scsi_vpd_device_id *id, uint32_t len,
3787 			       scsi_devid_checkfn_t ck_fn);
3788 struct scsi_vpd_id_descriptor *
3789 		scsi_get_devid_desc(struct scsi_vpd_id_descriptor *desc, uint32_t len,
3790 			       scsi_devid_checkfn_t ck_fn);
3791 
3792 int		scsi_transportid_sbuf(struct sbuf *sb,
3793 				      struct scsi_transportid_header *hdr,
3794 				      uint32_t valid_len);
3795 
3796 const char *	scsi_nv_to_str(struct scsi_nv *table, int num_table_entries,
3797 			       uint64_t value);
3798 
3799 scsi_nv_status	scsi_get_nv(struct scsi_nv *table, int num_table_entries,
3800 			    char *name, int *table_entry, scsi_nv_flags flags);
3801 
3802 int	scsi_parse_transportid_64bit(int proto_id, char *id_str,
3803 				     struct scsi_transportid_header **hdr,
3804 				     unsigned int *alloc_len,
3805 #ifdef _KERNEL
3806 				     struct malloc_type *type, int flags,
3807 #endif
3808 				     char *error_str, int error_str_len);
3809 
3810 int	scsi_parse_transportid_spi(char *id_str,
3811 				   struct scsi_transportid_header **hdr,
3812 				   unsigned int *alloc_len,
3813 #ifdef _KERNEL
3814 				   struct malloc_type *type, int flags,
3815 #endif
3816 				   char *error_str, int error_str_len);
3817 
3818 int	scsi_parse_transportid_rdma(char *id_str,
3819 				    struct scsi_transportid_header **hdr,
3820 				    unsigned int *alloc_len,
3821 #ifdef _KERNEL
3822 				    struct malloc_type *type, int flags,
3823 #endif
3824 				    char *error_str, int error_str_len);
3825 
3826 int	scsi_parse_transportid_iscsi(char *id_str,
3827 				     struct scsi_transportid_header **hdr,
3828 				     unsigned int *alloc_len,
3829 #ifdef _KERNEL
3830 				     struct malloc_type *type, int flags,
3831 #endif
3832 				     char *error_str,int error_str_len);
3833 
3834 int	scsi_parse_transportid_sop(char *id_str,
3835 				   struct scsi_transportid_header **hdr,
3836 				   unsigned int *alloc_len,
3837 #ifdef _KERNEL
3838 				   struct malloc_type *type, int flags,
3839 #endif
3840 				   char *error_str,int error_str_len);
3841 
3842 int	scsi_parse_transportid(char *transportid_str,
3843 			       struct scsi_transportid_header **hdr,
3844 			       unsigned int *alloc_len,
3845 #ifdef _KERNEL
3846 			       struct malloc_type *type, int flags,
3847 #endif
3848 			       char *error_str, int error_str_len);
3849 
3850 
3851 int scsi_attrib_volcoh_sbuf(struct sbuf *sb,
3852 			    struct scsi_mam_attribute_header *hdr,
3853 			    uint32_t valid_len, uint32_t flags,
3854 			    uint32_t output_flags, char *error_str,
3855 			    int error_str_len);
3856 
3857 int scsi_attrib_vendser_sbuf(struct sbuf *sb,
3858 			     struct scsi_mam_attribute_header *hdr,
3859 			     uint32_t valid_len, uint32_t flags,
3860 			     uint32_t output_flags, char *error_str,
3861 			     int error_str_len);
3862 
3863 int scsi_attrib_hexdump_sbuf(struct sbuf *sb,
3864 			     struct scsi_mam_attribute_header *hdr,
3865 			     uint32_t valid_len, uint32_t flags,
3866 			     uint32_t output_flags, char *error_str,
3867 			     int error_str_len);
3868 
3869 int scsi_attrib_int_sbuf(struct sbuf *sb, struct scsi_mam_attribute_header *hdr,
3870 			 uint32_t valid_len, uint32_t flags,
3871 			 uint32_t output_flags, char *error_str,
3872 			 int error_str_len);
3873 
3874 int scsi_attrib_ascii_sbuf(struct sbuf *sb,
3875 			   struct scsi_mam_attribute_header *hdr,
3876 			   uint32_t valid_len, uint32_t flags,
3877 			   uint32_t output_flags, char *error_str,
3878 			   int error_str_len);
3879 
3880 int scsi_attrib_text_sbuf(struct sbuf *sb,
3881 			  struct scsi_mam_attribute_header *hdr,
3882 			  uint32_t valid_len, uint32_t flags,
3883 			  uint32_t output_flags, char *error_str,
3884 			  int error_str_len);
3885 
3886 struct scsi_attrib_table_entry *scsi_find_attrib_entry(
3887 			struct scsi_attrib_table_entry *table,
3888 			size_t num_table_entries, uint32_t id);
3889 
3890 struct scsi_attrib_table_entry *scsi_get_attrib_entry(uint32_t id);
3891 
3892 int scsi_attrib_value_sbuf(struct sbuf *sb, uint32_t valid_len,
3893 			   struct scsi_mam_attribute_header *hdr,
3894 			   uint32_t output_flags, char *error_str,
3895 			   size_t error_str_len);
3896 
3897 void scsi_attrib_prefix_sbuf(struct sbuf *sb, uint32_t output_flags,
3898 			     struct scsi_mam_attribute_header *hdr,
3899 			     uint32_t valid_len, const char *desc);
3900 
3901 int scsi_attrib_sbuf(struct sbuf *sb, struct scsi_mam_attribute_header *hdr,
3902 		     uint32_t valid_len,
3903 		     struct scsi_attrib_table_entry *user_table,
3904 		     size_t num_user_entries, int prefer_user_table,
3905 		     uint32_t output_flags, char *error_str, int error_str_len);
3906 
3907 void		scsi_test_unit_ready(struct ccb_scsiio *csio, u_int32_t retries,
3908 				     void (*cbfcnp)(struct cam_periph *,
3909 						    union ccb *),
3910 				     u_int8_t tag_action,
3911 				     u_int8_t sense_len, u_int32_t timeout);
3912 
3913 void		scsi_request_sense(struct ccb_scsiio *csio, u_int32_t retries,
3914 				   void (*cbfcnp)(struct cam_periph *,
3915 						  union ccb *),
3916 				   void *data_ptr, u_int8_t dxfer_len,
3917 				   u_int8_t tag_action, u_int8_t sense_len,
3918 				   u_int32_t timeout);
3919 
3920 void		scsi_inquiry(struct ccb_scsiio *csio, u_int32_t retries,
3921 			     void (*cbfcnp)(struct cam_periph *, union ccb *),
3922 			     u_int8_t tag_action, u_int8_t *inq_buf,
3923 			     u_int32_t inq_len, int evpd, u_int8_t page_code,
3924 			     u_int8_t sense_len, u_int32_t timeout);
3925 
3926 void		scsi_mode_sense(struct ccb_scsiio *csio, u_int32_t retries,
3927 				void (*cbfcnp)(struct cam_periph *,
3928 					       union ccb *),
3929 				u_int8_t tag_action, int dbd,
3930 				u_int8_t page_code, u_int8_t page,
3931 				u_int8_t *param_buf, u_int32_t param_len,
3932 				u_int8_t sense_len, u_int32_t timeout);
3933 
3934 void		scsi_mode_sense_len(struct ccb_scsiio *csio, u_int32_t retries,
3935 				    void (*cbfcnp)(struct cam_periph *,
3936 						   union ccb *),
3937 				    u_int8_t tag_action, int dbd,
3938 				    u_int8_t page_code, u_int8_t page,
3939 				    u_int8_t *param_buf, u_int32_t param_len,
3940 				    int minimum_cmd_size, u_int8_t sense_len,
3941 				    u_int32_t timeout);
3942 
3943 void		scsi_mode_select(struct ccb_scsiio *csio, u_int32_t retries,
3944 				 void (*cbfcnp)(struct cam_periph *,
3945 						union ccb *),
3946 				 u_int8_t tag_action, int scsi_page_fmt,
3947 				 int save_pages, u_int8_t *param_buf,
3948 				 u_int32_t param_len, u_int8_t sense_len,
3949 				 u_int32_t timeout);
3950 
3951 void		scsi_mode_select_len(struct ccb_scsiio *csio, u_int32_t retries,
3952 				     void (*cbfcnp)(struct cam_periph *,
3953 						    union ccb *),
3954 				     u_int8_t tag_action, int scsi_page_fmt,
3955 				     int save_pages, u_int8_t *param_buf,
3956 				     u_int32_t param_len, int minimum_cmd_size,
3957 				     u_int8_t sense_len, u_int32_t timeout);
3958 
3959 void		scsi_log_sense(struct ccb_scsiio *csio, u_int32_t retries,
3960 			       void (*cbfcnp)(struct cam_periph *, union ccb *),
3961 			       u_int8_t tag_action, u_int8_t page_code,
3962 			       u_int8_t page, int save_pages, int ppc,
3963 			       u_int32_t paramptr, u_int8_t *param_buf,
3964 			       u_int32_t param_len, u_int8_t sense_len,
3965 			       u_int32_t timeout);
3966 
3967 void		scsi_log_select(struct ccb_scsiio *csio, u_int32_t retries,
3968 				void (*cbfcnp)(struct cam_periph *,
3969 				union ccb *), u_int8_t tag_action,
3970 				u_int8_t page_code, int save_pages,
3971 				int pc_reset, u_int8_t *param_buf,
3972 				u_int32_t param_len, u_int8_t sense_len,
3973 				u_int32_t timeout);
3974 
3975 void		scsi_prevent(struct ccb_scsiio *csio, u_int32_t retries,
3976 			     void (*cbfcnp)(struct cam_periph *, union ccb *),
3977 			     u_int8_t tag_action, u_int8_t action,
3978 			     u_int8_t sense_len, u_int32_t timeout);
3979 
3980 void		scsi_read_capacity(struct ccb_scsiio *csio, u_int32_t retries,
3981 				   void (*cbfcnp)(struct cam_periph *,
3982 				   union ccb *), u_int8_t tag_action,
3983 				   struct scsi_read_capacity_data *,
3984 				   u_int8_t sense_len, u_int32_t timeout);
3985 void		scsi_read_capacity_16(struct ccb_scsiio *csio, uint32_t retries,
3986 				      void (*cbfcnp)(struct cam_periph *,
3987 				      union ccb *), uint8_t tag_action,
3988 				      uint64_t lba, int reladr, int pmi,
3989 				      uint8_t *rcap_buf, int rcap_buf_len,
3990 				      uint8_t sense_len, uint32_t timeout);
3991 
3992 void		scsi_report_luns(struct ccb_scsiio *csio, u_int32_t retries,
3993 				 void (*cbfcnp)(struct cam_periph *,
3994 				 union ccb *), u_int8_t tag_action,
3995 				 u_int8_t select_report,
3996 				 struct scsi_report_luns_data *rpl_buf,
3997 				 u_int32_t alloc_len, u_int8_t sense_len,
3998 				 u_int32_t timeout);
3999 
4000 void		scsi_report_target_group(struct ccb_scsiio *csio, u_int32_t retries,
4001 				 void (*cbfcnp)(struct cam_periph *,
4002 				 union ccb *), u_int8_t tag_action,
4003 				 u_int8_t pdf,
4004 				 void *buf,
4005 				 u_int32_t alloc_len, u_int8_t sense_len,
4006 				 u_int32_t timeout);
4007 
4008 void		scsi_report_timestamp(struct ccb_scsiio *csio, u_int32_t retries,
4009 				 void (*cbfcnp)(struct cam_periph *,
4010 				 union ccb *), u_int8_t tag_action,
4011 				 u_int8_t pdf,
4012 				 void *buf,
4013 				 u_int32_t alloc_len, u_int8_t sense_len,
4014 				 u_int32_t timeout);
4015 
4016 void		scsi_set_target_group(struct ccb_scsiio *csio, u_int32_t retries,
4017 				 void (*cbfcnp)(struct cam_periph *,
4018 				 union ccb *), u_int8_t tag_action, void *buf,
4019 				 u_int32_t alloc_len, u_int8_t sense_len,
4020 				 u_int32_t timeout);
4021 
4022 void		scsi_create_timestamp(uint8_t *timestamp_6b_buf,
4023 				      uint64_t timestamp);
4024 
4025 void		scsi_set_timestamp(struct ccb_scsiio *csio, u_int32_t retries,
4026 				   void (*cbfcnp)(struct cam_periph *,
4027 				   union ccb *), u_int8_t tag_action,
4028 				   void *buf, u_int32_t alloc_len,
4029 				   u_int8_t sense_len, u_int32_t timeout);
4030 
4031 void		scsi_synchronize_cache(struct ccb_scsiio *csio,
4032 				       u_int32_t retries,
4033 				       void (*cbfcnp)(struct cam_periph *,
4034 				       union ccb *), u_int8_t tag_action,
4035 				       u_int32_t begin_lba, u_int16_t lb_count,
4036 				       u_int8_t sense_len, u_int32_t timeout);
4037 
4038 void scsi_receive_diagnostic_results(struct ccb_scsiio *csio, u_int32_t retries,
4039 				     void (*cbfcnp)(struct cam_periph *,
4040 						    union ccb*),
4041 				     uint8_t tag_action, int pcv,
4042 				     uint8_t page_code, uint8_t *data_ptr,
4043 				     uint16_t allocation_length,
4044 				     uint8_t sense_len, uint32_t timeout);
4045 
4046 void scsi_send_diagnostic(struct ccb_scsiio *csio, u_int32_t retries,
4047 			  void (*cbfcnp)(struct cam_periph *, union ccb *),
4048 			  uint8_t tag_action, int unit_offline,
4049 			  int device_offline, int self_test, int page_format,
4050 			  int self_test_code, uint8_t *data_ptr,
4051 			  uint16_t param_list_length, uint8_t sense_len,
4052 			  uint32_t timeout);
4053 
4054 void scsi_read_buffer(struct ccb_scsiio *csio, u_int32_t retries,
4055 			void (*cbfcnp)(struct cam_periph *, union ccb*),
4056 			uint8_t tag_action, int mode,
4057 			uint8_t buffer_id, u_int32_t offset,
4058 			uint8_t *data_ptr, uint32_t allocation_length,
4059 			uint8_t sense_len, uint32_t timeout);
4060 
4061 void scsi_write_buffer(struct ccb_scsiio *csio, u_int32_t retries,
4062 			void (*cbfcnp)(struct cam_periph *, union ccb *),
4063 			uint8_t tag_action, int mode,
4064 			uint8_t buffer_id, u_int32_t offset,
4065 			uint8_t *data_ptr, uint32_t param_list_length,
4066 			uint8_t sense_len, uint32_t timeout);
4067 
4068 #define	SCSI_RW_READ	0x0001
4069 #define	SCSI_RW_WRITE	0x0002
4070 #define	SCSI_RW_DIRMASK	0x0003
4071 #define	SCSI_RW_BIO	0x1000
4072 void scsi_read_write(struct ccb_scsiio *csio, u_int32_t retries,
4073 		     void (*cbfcnp)(struct cam_periph *, union ccb *),
4074 		     u_int8_t tag_action, int readop, u_int8_t byte2,
4075 		     int minimum_cmd_size, u_int64_t lba,
4076 		     u_int32_t block_count, u_int8_t *data_ptr,
4077 		     u_int32_t dxfer_len, u_int8_t sense_len,
4078 		     u_int32_t timeout);
4079 
4080 void scsi_write_same(struct ccb_scsiio *csio, u_int32_t retries,
4081 		     void (*cbfcnp)(struct cam_periph *, union ccb *),
4082 		     u_int8_t tag_action, u_int8_t byte2,
4083 		     int minimum_cmd_size, u_int64_t lba,
4084 		     u_int32_t block_count, u_int8_t *data_ptr,
4085 		     u_int32_t dxfer_len, u_int8_t sense_len,
4086 		     u_int32_t timeout);
4087 
4088 void scsi_ata_identify(struct ccb_scsiio *csio, u_int32_t retries,
4089 		       void (*cbfcnp)(struct cam_periph *, union ccb *),
4090 		       u_int8_t tag_action, u_int8_t *data_ptr,
4091 		       u_int16_t dxfer_len, u_int8_t sense_len,
4092 		       u_int32_t timeout);
4093 
4094 void scsi_ata_trim(struct ccb_scsiio *csio, u_int32_t retries,
4095 	           void (*cbfcnp)(struct cam_periph *, union ccb *),
4096 	           u_int8_t tag_action, u_int16_t block_count,
4097 	           u_int8_t *data_ptr, u_int16_t dxfer_len,
4098 	           u_int8_t sense_len, u_int32_t timeout);
4099 
4100 int scsi_ata_read_log(struct ccb_scsiio *csio, uint32_t retries,
4101 		      void (*cbfcnp)(struct cam_periph *, union ccb *),
4102 		      uint8_t tag_action, uint32_t log_address,
4103 		      uint32_t page_number, uint16_t block_count,
4104 		      uint8_t protocol, uint8_t *data_ptr, uint32_t dxfer_len,
4105 		      uint8_t sense_len, uint32_t timeout);
4106 
4107 int scsi_ata_pass(struct ccb_scsiio *csio, uint32_t retries,
4108 		  void (*cbfcnp)(struct cam_periph *, union ccb *),
4109 		  uint32_t flags, uint8_t tag_action,
4110 		  uint8_t protocol, uint8_t ata_flags, uint16_t features,
4111 		  uint16_t sector_count, uint64_t lba, uint8_t command,
4112 		  uint8_t device, uint8_t icc, uint32_t auxiliary,
4113 		  uint8_t control, u_int8_t *data_ptr, uint32_t dxfer_len,
4114 		  uint8_t *cdb_storage, size_t cdb_storage_len,
4115 		  int minimum_cmd_size, u_int8_t sense_len, u_int32_t timeout);
4116 
4117 void scsi_ata_pass_16(struct ccb_scsiio *csio, u_int32_t retries,
4118 		      void (*cbfcnp)(struct cam_periph *, union ccb *),
4119 		      u_int32_t flags, u_int8_t tag_action,
4120 		      u_int8_t protocol, u_int8_t ata_flags, u_int16_t features,
4121 		      u_int16_t sector_count, uint64_t lba, u_int8_t command,
4122 		      u_int8_t control, u_int8_t *data_ptr, u_int16_t dxfer_len,
4123 		      u_int8_t sense_len, u_int32_t timeout);
4124 
4125 void scsi_unmap(struct ccb_scsiio *csio, u_int32_t retries,
4126 		void (*cbfcnp)(struct cam_periph *, union ccb *),
4127 		u_int8_t tag_action, u_int8_t byte2,
4128 		u_int8_t *data_ptr, u_int16_t dxfer_len,
4129 		u_int8_t sense_len, u_int32_t timeout);
4130 
4131 void scsi_start_stop(struct ccb_scsiio *csio, u_int32_t retries,
4132 		     void (*cbfcnp)(struct cam_periph *, union ccb *),
4133 		     u_int8_t tag_action, int start, int load_eject,
4134 		     int immediate, u_int8_t sense_len, u_int32_t timeout);
4135 void scsi_read_attribute(struct ccb_scsiio *csio, u_int32_t retries,
4136 			 void (*cbfcnp)(struct cam_periph *, union ccb *),
4137 			 u_int8_t tag_action, u_int8_t service_action,
4138 			 uint32_t element, u_int8_t elem_type,
4139 			 int logical_volume, int partition,
4140 			 u_int32_t first_attribute, int cache, u_int8_t *data_ptr,
4141 			 u_int32_t length, int sense_len, u_int32_t timeout);
4142 void scsi_write_attribute(struct ccb_scsiio *csio, u_int32_t retries,
4143 			  void (*cbfcnp)(struct cam_periph *, union ccb *),
4144 			  u_int8_t tag_action, uint32_t element,
4145 			  int logical_volume, int partition, int wtc, u_int8_t *data_ptr,
4146 			  u_int32_t length, int sense_len, u_int32_t timeout);
4147 
4148 void scsi_security_protocol_in(struct ccb_scsiio *csio, uint32_t retries,
4149 			       void (*cbfcnp)(struct cam_periph *, union ccb *),
4150 			       uint8_t tag_action, uint32_t security_protocol,
4151 			       uint32_t security_protocol_specific, int byte4,
4152 			       uint8_t *data_ptr, uint32_t dxfer_len,
4153 			       int sense_len, int timeout);
4154 
4155 void scsi_security_protocol_out(struct ccb_scsiio *csio, uint32_t retries,
4156 				void (*cbfcnp)(struct cam_periph *,union ccb *),
4157 				uint8_t tag_action, uint32_t security_protocol,
4158 				uint32_t security_protocol_specific, int byte4,
4159 				uint8_t *data_ptr, uint32_t dxfer_len,
4160 				int sense_len, int timeout);
4161 
4162 void scsi_persistent_reserve_in(struct ccb_scsiio *csio, uint32_t retries,
4163 				void (*cbfcnp)(struct cam_periph *,union ccb *),
4164 				uint8_t tag_action, int service_action,
4165 				uint8_t *data_ptr, uint32_t dxfer_len,
4166 				int sense_len, int timeout);
4167 
4168 void scsi_persistent_reserve_out(struct ccb_scsiio *csio, uint32_t retries,
4169 				 void (*cbfcnp)(struct cam_periph *,
4170 				       union ccb *),
4171 				 uint8_t tag_action, int service_action,
4172 				 int scope, int res_type, uint8_t *data_ptr,
4173 				 uint32_t dxfer_len, int sense_len,
4174 				 int timeout);
4175 
4176 void scsi_report_supported_opcodes(struct ccb_scsiio *csio, uint32_t retries,
4177 				   void (*cbfcnp)(struct cam_periph *,
4178 						  union ccb *),
4179 				   uint8_t tag_action, int options,
4180 				   int req_opcode, int req_service_action,
4181 				   uint8_t *data_ptr, uint32_t dxfer_len,
4182 				   int sense_len, int timeout);
4183 
4184 int		scsi_inquiry_match(caddr_t inqbuffer, caddr_t table_entry);
4185 int		scsi_static_inquiry_match(caddr_t inqbuffer,
4186 					  caddr_t table_entry);
4187 int		scsi_devid_match(uint8_t *rhs, size_t rhs_len,
4188 				 uint8_t *lhs, size_t lhs_len);
4189 
4190 void scsi_extract_sense(struct scsi_sense_data *sense, int *error_code,
4191 			int *sense_key, int *asc, int *ascq);
4192 int scsi_extract_sense_ccb(union ccb *ccb, int *error_code, int *sense_key,
4193 			   int *asc, int *ascq);
4194 void scsi_extract_sense_len(struct scsi_sense_data *sense,
4195 			    u_int sense_len, int *error_code, int *sense_key,
4196 			    int *asc, int *ascq, int show_errors);
4197 int scsi_get_sense_key(struct scsi_sense_data *sense, u_int sense_len,
4198 		       int show_errors);
4199 int scsi_get_asc(struct scsi_sense_data *sense, u_int sense_len,
4200 		 int show_errors);
4201 int scsi_get_ascq(struct scsi_sense_data *sense, u_int sense_len,
4202 		  int show_errors);
4203 static __inline void scsi_ulto2b(u_int32_t val, u_int8_t *bytes);
4204 static __inline void scsi_ulto3b(u_int32_t val, u_int8_t *bytes);
4205 static __inline void scsi_ulto4b(u_int32_t val, u_int8_t *bytes);
4206 static __inline void scsi_u64to8b(u_int64_t val, u_int8_t *bytes);
4207 static __inline uint32_t scsi_2btoul(const uint8_t *bytes);
4208 static __inline uint32_t scsi_3btoul(const uint8_t *bytes);
4209 static __inline int32_t scsi_3btol(const uint8_t *bytes);
4210 static __inline uint32_t scsi_4btoul(const uint8_t *bytes);
4211 static __inline uint64_t scsi_8btou64(const uint8_t *bytes);
4212 static __inline void *find_mode_page_6(struct scsi_mode_header_6 *mode_header);
4213 static __inline void *find_mode_page_10(struct scsi_mode_header_10 *mode_header);
4214 
4215 static __inline void
4216 scsi_ulto2b(u_int32_t val, u_int8_t *bytes)
4217 {
4218 
4219 	bytes[0] = (val >> 8) & 0xff;
4220 	bytes[1] = val & 0xff;
4221 }
4222 
4223 static __inline void
4224 scsi_ulto3b(u_int32_t val, u_int8_t *bytes)
4225 {
4226 
4227 	bytes[0] = (val >> 16) & 0xff;
4228 	bytes[1] = (val >> 8) & 0xff;
4229 	bytes[2] = val & 0xff;
4230 }
4231 
4232 static __inline void
4233 scsi_ulto4b(u_int32_t val, u_int8_t *bytes)
4234 {
4235 
4236 	bytes[0] = (val >> 24) & 0xff;
4237 	bytes[1] = (val >> 16) & 0xff;
4238 	bytes[2] = (val >> 8) & 0xff;
4239 	bytes[3] = val & 0xff;
4240 }
4241 
4242 static __inline void
4243 scsi_u64to8b(u_int64_t val, u_int8_t *bytes)
4244 {
4245 
4246 	bytes[0] = (val >> 56) & 0xff;
4247 	bytes[1] = (val >> 48) & 0xff;
4248 	bytes[2] = (val >> 40) & 0xff;
4249 	bytes[3] = (val >> 32) & 0xff;
4250 	bytes[4] = (val >> 24) & 0xff;
4251 	bytes[5] = (val >> 16) & 0xff;
4252 	bytes[6] = (val >> 8) & 0xff;
4253 	bytes[7] = val & 0xff;
4254 }
4255 
4256 static __inline uint32_t
4257 scsi_2btoul(const uint8_t *bytes)
4258 {
4259 	uint32_t rv;
4260 
4261 	rv = (bytes[0] << 8) |
4262 	     bytes[1];
4263 	return (rv);
4264 }
4265 
4266 static __inline uint32_t
4267 scsi_3btoul(const uint8_t *bytes)
4268 {
4269 	uint32_t rv;
4270 
4271 	rv = (bytes[0] << 16) |
4272 	     (bytes[1] << 8) |
4273 	     bytes[2];
4274 	return (rv);
4275 }
4276 
4277 static __inline int32_t
4278 scsi_3btol(const uint8_t *bytes)
4279 {
4280 	uint32_t rc = scsi_3btoul(bytes);
4281 
4282 	if (rc & 0x00800000)
4283 		rc |= 0xff000000;
4284 
4285 	return (int32_t) rc;
4286 }
4287 
4288 static __inline uint32_t
4289 scsi_4btoul(const uint8_t *bytes)
4290 {
4291 	uint32_t rv;
4292 
4293 	rv = (bytes[0] << 24) |
4294 	     (bytes[1] << 16) |
4295 	     (bytes[2] << 8) |
4296 	     bytes[3];
4297 	return (rv);
4298 }
4299 
4300 static __inline uint64_t
4301 scsi_8btou64(const uint8_t *bytes)
4302 {
4303         uint64_t rv;
4304 
4305 	rv = (((uint64_t)bytes[0]) << 56) |
4306 	     (((uint64_t)bytes[1]) << 48) |
4307 	     (((uint64_t)bytes[2]) << 40) |
4308 	     (((uint64_t)bytes[3]) << 32) |
4309 	     (((uint64_t)bytes[4]) << 24) |
4310 	     (((uint64_t)bytes[5]) << 16) |
4311 	     (((uint64_t)bytes[6]) << 8) |
4312 	     bytes[7];
4313 	return (rv);
4314 }
4315 
4316 /*
4317  * Given the pointer to a returned mode sense buffer, return a pointer to
4318  * the start of the first mode page.
4319  */
4320 static __inline void *
4321 find_mode_page_6(struct scsi_mode_header_6 *mode_header)
4322 {
4323 	void *page_start;
4324 
4325 	page_start = (void *)((u_int8_t *)&mode_header[1] +
4326 			      mode_header->blk_desc_len);
4327 
4328 	return(page_start);
4329 }
4330 
4331 static __inline void *
4332 find_mode_page_10(struct scsi_mode_header_10 *mode_header)
4333 {
4334 	void *page_start;
4335 
4336 	page_start = (void *)((u_int8_t *)&mode_header[1] +
4337 			       scsi_2btoul(mode_header->blk_desc_len));
4338 
4339 	return(page_start);
4340 }
4341 
4342 __END_DECLS
4343 
4344 #endif /*_SCSI_SCSI_ALL_H*/
4345