1 /*-
2 * Implementation of SCSI Direct Access Peripheral driver for CAM.
3 *
4 * SPDX-License-Identifier: BSD-2-Clause
5 *
6 * Copyright (c) 1997 Justin T. Gibbs.
7 * All rights reserved.
8 *
9 * Redistribution and use in source and binary forms, with or without
10 * modification, are permitted provided that the following conditions
11 * are met:
12 * 1. Redistributions of source code must retain the above copyright
13 * notice, this list of conditions, and the following disclaimer,
14 * without modification, immediately at the beginning of the file.
15 * 2. The name of the author may not be used to endorse or promote products
16 * derived from this software without specific prior written permission.
17 *
18 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
19 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
20 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
21 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR
22 * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
23 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
24 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
25 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
26 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
27 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
28 * SUCH DAMAGE.
29 */
30
31 #include <sys/param.h>
32
33 #ifdef _KERNEL
34 #include "opt_da.h"
35 #include <sys/systm.h>
36 #include <sys/kernel.h>
37 #include <sys/bio.h>
38 #include <sys/sysctl.h>
39 #include <sys/taskqueue.h>
40 #include <sys/lock.h>
41 #include <sys/mutex.h>
42 #include <sys/conf.h>
43 #include <sys/devicestat.h>
44 #include <sys/eventhandler.h>
45 #include <sys/malloc.h>
46 #include <sys/cons.h>
47 #include <sys/endian.h>
48 #include <sys/proc.h>
49 #include <sys/reboot.h>
50 #include <sys/sbuf.h>
51 #include <geom/geom.h>
52 #include <geom/geom_disk.h>
53 #include <machine/atomic.h>
54 #endif /* _KERNEL */
55
56 #ifndef _KERNEL
57 #include <stdio.h>
58 #include <string.h>
59 #endif /* _KERNEL */
60
61 #include <cam/cam.h>
62 #include <cam/cam_ccb.h>
63 #include <cam/cam_periph.h>
64 #include <cam/cam_xpt_periph.h>
65 #ifdef _KERNEL
66 #include <cam/cam_xpt_internal.h>
67 #endif /* _KERNEL */
68 #include <cam/cam_sim.h>
69 #include <cam/cam_iosched.h>
70
71 #include <cam/scsi/scsi_message.h>
72 #include <cam/scsi/scsi_da.h>
73
74 #ifdef _KERNEL
75 /*
76 * Note that there are probe ordering dependencies here. The order isn't
77 * controlled by this enumeration, but by explicit state transitions in
78 * dastart() and dadone(). Here are some of the dependencies:
79 *
80 * 1. RC should come first, before RC16, unless there is evidence that RC16
81 * is supported.
82 * 2. BDC needs to come before any of the ATA probes, or the ZONE probe.
83 * 3. The ATA probes should go in this order:
84 * ATA -> LOGDIR -> IDDIR -> SUP -> ATA_ZONE
85 */
86 typedef enum {
87 DA_STATE_PROBE_WP,
88 DA_STATE_PROBE_RC,
89 DA_STATE_PROBE_RC16,
90 DA_STATE_PROBE_LBP,
91 DA_STATE_PROBE_BLK_LIMITS,
92 DA_STATE_PROBE_BDC,
93 DA_STATE_PROBE_ATA,
94 DA_STATE_PROBE_ATA_LOGDIR,
95 DA_STATE_PROBE_ATA_IDDIR,
96 DA_STATE_PROBE_ATA_SUP,
97 DA_STATE_PROBE_ATA_ZONE,
98 DA_STATE_PROBE_ZONE,
99 DA_STATE_NORMAL
100 } da_state;
101
102 typedef enum {
103 DA_FLAG_PACK_INVALID = 0x000001,
104 DA_FLAG_NEW_PACK = 0x000002,
105 DA_FLAG_PACK_LOCKED = 0x000004,
106 DA_FLAG_PACK_REMOVABLE = 0x000008,
107 DA_FLAG_ROTATING = 0x000010,
108 DA_FLAG_NEED_OTAG = 0x000020,
109 DA_FLAG_WAS_OTAG = 0x000040,
110 DA_FLAG_RETRY_UA = 0x000080,
111 DA_FLAG_OPEN = 0x000100,
112 DA_FLAG_SCTX_INIT = 0x000200,
113 DA_FLAG_CAN_RC16 = 0x000400,
114 DA_FLAG_PROBED = 0x000800,
115 DA_FLAG_DIRTY = 0x001000,
116 DA_FLAG_ANNOUNCED = 0x002000,
117 DA_FLAG_CAN_ATA_DMA = 0x004000,
118 DA_FLAG_CAN_ATA_LOG = 0x008000,
119 DA_FLAG_CAN_ATA_IDLOG = 0x010000,
120 DA_FLAG_CAN_ATA_SUPCAP = 0x020000,
121 DA_FLAG_CAN_ATA_ZONE = 0x040000,
122 DA_FLAG_TUR_PENDING = 0x080000,
123 DA_FLAG_UNMAPPEDIO = 0x100000
124 } da_flags;
125 #define DA_FLAG_STRING \
126 "\020" \
127 "\001PACK_INVALID" \
128 "\002NEW_PACK" \
129 "\003PACK_LOCKED" \
130 "\004PACK_REMOVABLE" \
131 "\005ROTATING" \
132 "\006NEED_OTAG" \
133 "\007WAS_OTAG" \
134 "\010RETRY_UA" \
135 "\011OPEN" \
136 "\012SCTX_INIT" \
137 "\013CAN_RC16" \
138 "\014PROBED" \
139 "\015DIRTY" \
140 "\016ANNOUNCED" \
141 "\017CAN_ATA_DMA" \
142 "\020CAN_ATA_LOG" \
143 "\021CAN_ATA_IDLOG" \
144 "\022CAN_ATA_SUPACP" \
145 "\023CAN_ATA_ZONE" \
146 "\024TUR_PENDING" \
147 "\025UNMAPPEDIO"
148
149 typedef enum {
150 DA_Q_NONE = 0x00,
151 DA_Q_NO_SYNC_CACHE = 0x01,
152 DA_Q_NO_6_BYTE = 0x02,
153 DA_Q_NO_PREVENT = 0x04,
154 DA_Q_4K = 0x08,
155 DA_Q_NO_RC16 = 0x10,
156 DA_Q_NO_UNMAP = 0x20,
157 DA_Q_RETRY_BUSY = 0x40,
158 DA_Q_SMR_DM = 0x80,
159 DA_Q_STRICT_UNMAP = 0x100,
160 DA_Q_128KB = 0x200
161 } da_quirks;
162
163 #define DA_Q_BIT_STRING \
164 "\020" \
165 "\001NO_SYNC_CACHE" \
166 "\002NO_6_BYTE" \
167 "\003NO_PREVENT" \
168 "\0044K" \
169 "\005NO_RC16" \
170 "\006NO_UNMAP" \
171 "\007RETRY_BUSY" \
172 "\010SMR_DM" \
173 "\011STRICT_UNMAP" \
174 "\012128KB"
175
176 typedef enum {
177 DA_CCB_PROBE_RC = 0x01,
178 DA_CCB_PROBE_RC16 = 0x02,
179 DA_CCB_PROBE_LBP = 0x03,
180 DA_CCB_PROBE_BLK_LIMITS = 0x04,
181 DA_CCB_PROBE_BDC = 0x05,
182 DA_CCB_PROBE_ATA = 0x06,
183 DA_CCB_BUFFER_IO = 0x07,
184 DA_CCB_DUMP = 0x0A,
185 DA_CCB_DELETE = 0x0B,
186 DA_CCB_TUR = 0x0C,
187 DA_CCB_PROBE_ZONE = 0x0D,
188 DA_CCB_PROBE_ATA_LOGDIR = 0x0E,
189 DA_CCB_PROBE_ATA_IDDIR = 0x0F,
190 DA_CCB_PROBE_ATA_SUP = 0x10,
191 DA_CCB_PROBE_ATA_ZONE = 0x11,
192 DA_CCB_PROBE_WP = 0x12,
193 DA_CCB_TYPE_MASK = 0x1F,
194 DA_CCB_RETRY_UA = 0x20
195 } da_ccb_state;
196
197 /*
198 * Order here is important for method choice
199 *
200 * We prefer ATA_TRIM as tests run against a Sandforce 2281 SSD attached to
201 * LSI 2008 (mps) controller (FW: v12, Drv: v14) resulted 20% quicker deletes
202 * using ATA_TRIM than the corresponding UNMAP results for a real world mysql
203 * import taking 5mins.
204 *
205 */
206 typedef enum {
207 DA_DELETE_NONE,
208 DA_DELETE_DISABLE,
209 DA_DELETE_ATA_TRIM,
210 DA_DELETE_UNMAP,
211 DA_DELETE_WS16,
212 DA_DELETE_WS10,
213 DA_DELETE_ZERO,
214 DA_DELETE_MIN = DA_DELETE_ATA_TRIM,
215 DA_DELETE_MAX = DA_DELETE_ZERO
216 } da_delete_methods;
217
218 /*
219 * For SCSI, host managed drives show up as a separate device type. For
220 * ATA, host managed drives also have a different device signature.
221 * XXX KDM figure out the ATA host managed signature.
222 */
223 typedef enum {
224 DA_ZONE_NONE = 0x00,
225 DA_ZONE_DRIVE_MANAGED = 0x01,
226 DA_ZONE_HOST_AWARE = 0x02,
227 DA_ZONE_HOST_MANAGED = 0x03
228 } da_zone_mode;
229
230 /*
231 * We distinguish between these interface cases in addition to the drive type:
232 * o ATA drive behind a SCSI translation layer that knows about ZBC/ZAC
233 * o ATA drive behind a SCSI translation layer that does not know about
234 * ZBC/ZAC, and so needs to be managed via ATA passthrough. In this
235 * case, we would need to share the ATA code with the ada(4) driver.
236 * o SCSI drive.
237 */
238 typedef enum {
239 DA_ZONE_IF_SCSI,
240 DA_ZONE_IF_ATA_PASS,
241 DA_ZONE_IF_ATA_SAT,
242 } da_zone_interface;
243
244 typedef enum {
245 DA_ZONE_FLAG_RZ_SUP = 0x0001,
246 DA_ZONE_FLAG_OPEN_SUP = 0x0002,
247 DA_ZONE_FLAG_CLOSE_SUP = 0x0004,
248 DA_ZONE_FLAG_FINISH_SUP = 0x0008,
249 DA_ZONE_FLAG_RWP_SUP = 0x0010,
250 DA_ZONE_FLAG_SUP_MASK = (DA_ZONE_FLAG_RZ_SUP |
251 DA_ZONE_FLAG_OPEN_SUP |
252 DA_ZONE_FLAG_CLOSE_SUP |
253 DA_ZONE_FLAG_FINISH_SUP |
254 DA_ZONE_FLAG_RWP_SUP),
255 DA_ZONE_FLAG_URSWRZ = 0x0020,
256 DA_ZONE_FLAG_OPT_SEQ_SET = 0x0040,
257 DA_ZONE_FLAG_OPT_NONSEQ_SET = 0x0080,
258 DA_ZONE_FLAG_MAX_SEQ_SET = 0x0100,
259 DA_ZONE_FLAG_SET_MASK = (DA_ZONE_FLAG_OPT_SEQ_SET |
260 DA_ZONE_FLAG_OPT_NONSEQ_SET |
261 DA_ZONE_FLAG_MAX_SEQ_SET)
262 } da_zone_flags;
263
264 static struct da_zone_desc {
265 da_zone_flags value;
266 const char *desc;
267 } da_zone_desc_table[] = {
268 {DA_ZONE_FLAG_RZ_SUP, "Report Zones" },
269 {DA_ZONE_FLAG_OPEN_SUP, "Open" },
270 {DA_ZONE_FLAG_CLOSE_SUP, "Close" },
271 {DA_ZONE_FLAG_FINISH_SUP, "Finish" },
272 {DA_ZONE_FLAG_RWP_SUP, "Reset Write Pointer" },
273 };
274
275 typedef void da_delete_func_t (struct cam_periph *periph, union ccb *ccb,
276 struct bio *bp);
277 static da_delete_func_t da_delete_trim;
278 static da_delete_func_t da_delete_unmap;
279 static da_delete_func_t da_delete_ws;
280
281 static const void * da_delete_functions[] = {
282 NULL,
283 NULL,
284 da_delete_trim,
285 da_delete_unmap,
286 da_delete_ws,
287 da_delete_ws,
288 da_delete_ws
289 };
290
291 static const char *da_delete_method_names[] =
292 { "NONE", "DISABLE", "ATA_TRIM", "UNMAP", "WS16", "WS10", "ZERO" };
293 static const char *da_delete_method_desc[] =
294 { "NONE", "DISABLED", "ATA TRIM", "UNMAP", "WRITE SAME(16) with UNMAP",
295 "WRITE SAME(10) with UNMAP", "ZERO" };
296
297 /* Offsets into our private area for storing information */
298 #define ccb_state ppriv_field0
299 #define ccb_bp ppriv_ptr1
300
301 struct disk_params {
302 uint8_t heads;
303 uint32_t cylinders;
304 uint8_t secs_per_track;
305 uint32_t secsize; /* Number of bytes/sector */
306 uint64_t sectors; /* total number sectors */
307 u_int stripesize;
308 u_int stripeoffset;
309 };
310
311 #define UNMAP_RANGE_MAX 0xffffffff
312 #define UNMAP_HEAD_SIZE 8
313 #define UNMAP_RANGE_SIZE 16
314 #define UNMAP_MAX_RANGES 2048 /* Protocol Max is 4095 */
315 #define UNMAP_BUF_SIZE ((UNMAP_MAX_RANGES * UNMAP_RANGE_SIZE) + \
316 UNMAP_HEAD_SIZE)
317
318 #define WS10_MAX_BLKS 0xffff
319 #define WS16_MAX_BLKS 0xffffffff
320 #define ATA_TRIM_MAX_RANGES ((UNMAP_BUF_SIZE / \
321 (ATA_DSM_RANGE_SIZE * ATA_DSM_BLK_SIZE)) * ATA_DSM_BLK_SIZE)
322
323 #define DA_WORK_TUR (1 << 16)
324
325 typedef enum {
326 DA_REF_OPEN = 1,
327 DA_REF_OPEN_HOLD,
328 DA_REF_CLOSE_HOLD,
329 DA_REF_TUR,
330 DA_REF_GEOM,
331 DA_REF_SYSCTL,
332 DA_REF_REPROBE,
333 DA_REF_MAX /* KEEP LAST */
334 } da_ref_token;
335
336 struct da_softc {
337 struct cam_iosched_softc *cam_iosched;
338 struct bio_queue_head delete_run_queue;
339 LIST_HEAD(, ccb_hdr) pending_ccbs;
340 int refcount; /* Active xpt_action() calls */
341 da_state state;
342 da_flags flags;
343 da_quirks quirks;
344 int minimum_cmd_size;
345 int mode_page;
346 int error_inject;
347 int trim_max_ranges;
348 int delete_available; /* Delete methods possibly available */
349 da_zone_mode zone_mode;
350 da_zone_interface zone_interface;
351 da_zone_flags zone_flags;
352 struct ata_gp_log_dir ata_logdir;
353 int valid_logdir_len;
354 struct ata_identify_log_pages ata_iddir;
355 int valid_iddir_len;
356 uint64_t optimal_seq_zones;
357 uint64_t optimal_nonseq_zones;
358 uint64_t max_seq_zones;
359 u_int maxio;
360 uint32_t unmap_max_ranges;
361 uint32_t unmap_max_lba; /* Max LBAs in UNMAP req */
362 uint32_t unmap_gran;
363 uint32_t unmap_gran_align;
364 uint64_t ws_max_blks;
365 uint64_t trim_count;
366 uint64_t trim_ranges;
367 uint64_t trim_lbas;
368 da_delete_methods delete_method_pref;
369 da_delete_methods delete_method;
370 da_delete_func_t *delete_func;
371 int p_type;
372 struct disk_params params;
373 struct disk *disk;
374 struct task sysctl_task;
375 struct sysctl_ctx_list sysctl_ctx;
376 struct sysctl_oid *sysctl_tree;
377 struct callout sendordered_c;
378 uint64_t wwpn;
379 uint8_t unmap_buf[UNMAP_BUF_SIZE];
380 struct scsi_read_capacity_data_long rcaplong;
381 struct callout mediapoll_c;
382 int ref_flags[DA_REF_MAX];
383 #ifdef CAM_IO_STATS
384 struct sysctl_ctx_list sysctl_stats_ctx;
385 struct sysctl_oid *sysctl_stats_tree;
386 u_int errors;
387 u_int timeouts;
388 u_int invalidations;
389 #endif
390 #define DA_ANNOUNCETMP_SZ 160
391 char announce_temp[DA_ANNOUNCETMP_SZ];
392 #define DA_ANNOUNCE_SZ 400
393 char announcebuf[DA_ANNOUNCE_SZ];
394 };
395
396 #define dadeleteflag(softc, delete_method, enable) \
397 if (enable) { \
398 softc->delete_available |= (1 << delete_method); \
399 } else { \
400 softc->delete_available &= ~(1 << delete_method); \
401 }
402
403 static uma_zone_t da_ccb_zone;
404
405 struct da_quirk_entry {
406 struct scsi_inquiry_pattern inq_pat;
407 da_quirks quirks;
408 };
409
410 static const char quantum[] = "QUANTUM";
411 static const char microp[] = "MICROP";
412
413 static struct da_quirk_entry da_quirk_table[] =
414 {
415 /* SPI, FC devices */
416 {
417 /*
418 * Fujitsu M2513A MO drives.
419 * Tested devices: M2513A2 firmware versions 1200 & 1300.
420 * (dip switch selects whether T_DIRECT or T_OPTICAL device)
421 * Reported by: W.Scholten <whs@xs4all.nl>
422 */
423 {T_DIRECT, SIP_MEDIA_REMOVABLE, "FUJITSU", "M2513A", "*"},
424 /*quirks*/ DA_Q_NO_SYNC_CACHE
425 },
426 {
427 /* See above. */
428 {T_OPTICAL, SIP_MEDIA_REMOVABLE, "FUJITSU", "M2513A", "*"},
429 /*quirks*/ DA_Q_NO_SYNC_CACHE
430 },
431 {
432 /*
433 * This particular Fujitsu drive doesn't like the
434 * synchronize cache command.
435 * Reported by: Tom Jackson <toj@gorilla.net>
436 */
437 {T_DIRECT, SIP_MEDIA_FIXED, "FUJITSU", "M2954*", "*"},
438 /*quirks*/ DA_Q_NO_SYNC_CACHE
439 },
440 {
441 /*
442 * This drive doesn't like the synchronize cache command
443 * either. Reported by: Matthew Jacob <mjacob@feral.com>
444 * in NetBSD PR kern/6027, August 24, 1998.
445 */
446 {T_DIRECT, SIP_MEDIA_FIXED, microp, "2217*", "*"},
447 /*quirks*/ DA_Q_NO_SYNC_CACHE
448 },
449 {
450 /*
451 * This drive doesn't like the synchronize cache command
452 * either. Reported by: Hellmuth Michaelis (hm@kts.org)
453 * (PR 8882).
454 */
455 {T_DIRECT, SIP_MEDIA_FIXED, microp, "2112*", "*"},
456 /*quirks*/ DA_Q_NO_SYNC_CACHE
457 },
458 {
459 /*
460 * Doesn't like the synchronize cache command.
461 * Reported by: Blaz Zupan <blaz@gold.amis.net>
462 */
463 {T_DIRECT, SIP_MEDIA_FIXED, "NEC", "D3847*", "*"},
464 /*quirks*/ DA_Q_NO_SYNC_CACHE
465 },
466 {
467 /*
468 * Doesn't like the synchronize cache command.
469 * Reported by: Blaz Zupan <blaz@gold.amis.net>
470 */
471 {T_DIRECT, SIP_MEDIA_FIXED, quantum, "MAVERICK 540S", "*"},
472 /*quirks*/ DA_Q_NO_SYNC_CACHE
473 },
474 {
475 /*
476 * Doesn't like the synchronize cache command.
477 */
478 {T_DIRECT, SIP_MEDIA_FIXED, quantum, "LPS525S", "*"},
479 /*quirks*/ DA_Q_NO_SYNC_CACHE
480 },
481 {
482 /*
483 * Doesn't like the synchronize cache command.
484 * Reported by: walter@pelissero.de
485 */
486 {T_DIRECT, SIP_MEDIA_FIXED, quantum, "LPS540S", "*"},
487 /*quirks*/ DA_Q_NO_SYNC_CACHE
488 },
489 {
490 /*
491 * Doesn't work correctly with 6 byte reads/writes.
492 * Returns illegal request, and points to byte 9 of the
493 * 6-byte CDB.
494 * Reported by: Adam McDougall <bsdx@spawnet.com>
495 */
496 {T_DIRECT, SIP_MEDIA_FIXED, quantum, "VIKING 4*", "*"},
497 /*quirks*/ DA_Q_NO_6_BYTE
498 },
499 {
500 /* See above. */
501 {T_DIRECT, SIP_MEDIA_FIXED, quantum, "VIKING 2*", "*"},
502 /*quirks*/ DA_Q_NO_6_BYTE
503 },
504 {
505 /*
506 * Doesn't like the synchronize cache command.
507 * Reported by: walter@pelissero.de
508 */
509 {T_DIRECT, SIP_MEDIA_FIXED, "CONNER", "CP3500*", "*"},
510 /*quirks*/ DA_Q_NO_SYNC_CACHE
511 },
512 {
513 /*
514 * The CISS RAID controllers do not support SYNC_CACHE
515 */
516 {T_DIRECT, SIP_MEDIA_FIXED, "COMPAQ", "RAID*", "*"},
517 /*quirks*/ DA_Q_NO_SYNC_CACHE
518 },
519 {
520 /*
521 * The STEC SSDs sometimes hang on UNMAP.
522 */
523 {T_DIRECT, SIP_MEDIA_FIXED, "STEC", "*", "*"},
524 /*quirks*/ DA_Q_NO_UNMAP
525 },
526 {
527 /*
528 * VMware returns BUSY status when storage has transient
529 * connectivity problems, so better wait.
530 * Also VMware returns odd errors on misaligned UNMAPs.
531 */
532 {T_DIRECT, SIP_MEDIA_FIXED, "VMware*", "*", "*"},
533 /*quirks*/ DA_Q_RETRY_BUSY | DA_Q_STRICT_UNMAP
534 },
535 /* USB mass storage devices supported by umass(4) */
536 {
537 /*
538 * EXATELECOM (Sigmatel) i-Bead 100/105 USB Flash MP3 Player
539 * PR: kern/51675
540 */
541 {T_DIRECT, SIP_MEDIA_REMOVABLE, "EXATEL", "i-BEAD10*", "*"},
542 /*quirks*/ DA_Q_NO_SYNC_CACHE
543 },
544 {
545 /*
546 * Power Quotient Int. (PQI) USB flash key
547 * PR: kern/53067
548 */
549 {T_DIRECT, SIP_MEDIA_REMOVABLE, "Generic*", "USB Flash Disk*",
550 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
551 },
552 {
553 /*
554 * Creative Nomad MUVO mp3 player (USB)
555 * PR: kern/53094
556 */
557 {T_DIRECT, SIP_MEDIA_REMOVABLE, "CREATIVE", "NOMAD_MUVO", "*"},
558 /*quirks*/ DA_Q_NO_SYNC_CACHE|DA_Q_NO_PREVENT
559 },
560 {
561 /*
562 * Jungsoft NEXDISK USB flash key
563 * PR: kern/54737
564 */
565 {T_DIRECT, SIP_MEDIA_REMOVABLE, "JUNGSOFT", "NEXDISK*", "*"},
566 /*quirks*/ DA_Q_NO_SYNC_CACHE
567 },
568 {
569 /*
570 * FreeDik USB Mini Data Drive
571 * PR: kern/54786
572 */
573 {T_DIRECT, SIP_MEDIA_REMOVABLE, "FreeDik*", "Mini Data Drive",
574 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
575 },
576 {
577 /*
578 * Sigmatel USB Flash MP3 Player
579 * PR: kern/57046
580 */
581 {T_DIRECT, SIP_MEDIA_REMOVABLE, "SigmaTel", "MSCN", "*"},
582 /*quirks*/ DA_Q_NO_SYNC_CACHE|DA_Q_NO_PREVENT
583 },
584 {
585 /*
586 * Neuros USB Digital Audio Computer
587 * PR: kern/63645
588 */
589 {T_DIRECT, SIP_MEDIA_REMOVABLE, "NEUROS", "dig. audio comp.",
590 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
591 },
592 {
593 /*
594 * SEAGRAND NP-900 MP3 Player
595 * PR: kern/64563
596 */
597 {T_DIRECT, SIP_MEDIA_REMOVABLE, "SEAGRAND", "NP-900*", "*"},
598 /*quirks*/ DA_Q_NO_SYNC_CACHE|DA_Q_NO_PREVENT
599 },
600 {
601 /*
602 * iRiver iFP MP3 player (with UMS Firmware)
603 * PR: kern/54881, i386/63941, kern/66124
604 */
605 {T_DIRECT, SIP_MEDIA_REMOVABLE, "iRiver", "iFP*", "*"},
606 /*quirks*/ DA_Q_NO_SYNC_CACHE
607 },
608 {
609 /*
610 * Frontier Labs NEX IA+ Digital Audio Player, rev 1.10/0.01
611 * PR: kern/70158
612 */
613 {T_DIRECT, SIP_MEDIA_REMOVABLE, "FL" , "Nex*", "*"},
614 /*quirks*/ DA_Q_NO_SYNC_CACHE
615 },
616 {
617 /*
618 * ZICPlay USB MP3 Player with FM
619 * PR: kern/75057
620 */
621 {T_DIRECT, SIP_MEDIA_REMOVABLE, "ACTIONS*" , "USB DISK*", "*"},
622 /*quirks*/ DA_Q_NO_SYNC_CACHE
623 },
624 {
625 /*
626 * TEAC USB floppy mechanisms
627 */
628 {T_DIRECT, SIP_MEDIA_REMOVABLE, "TEAC" , "FD-05*", "*"},
629 /*quirks*/ DA_Q_NO_SYNC_CACHE
630 },
631 {
632 /*
633 * Kingston DataTraveler II+ USB Pen-Drive.
634 * Reported by: Pawel Jakub Dawidek <pjd@FreeBSD.org>
635 */
636 {T_DIRECT, SIP_MEDIA_REMOVABLE, "Kingston" , "DataTraveler II+",
637 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
638 },
639 {
640 /*
641 * USB DISK Pro PMAP
642 * Reported by: jhs
643 * PR: usb/96381
644 */
645 {T_DIRECT, SIP_MEDIA_REMOVABLE, " ", "USB DISK Pro", "PMAP"},
646 /*quirks*/ DA_Q_NO_SYNC_CACHE
647 },
648 {
649 /*
650 * Motorola E398 Mobile Phone (TransFlash memory card).
651 * Reported by: Wojciech A. Koszek <dunstan@FreeBSD.czest.pl>
652 * PR: usb/89889
653 */
654 {T_DIRECT, SIP_MEDIA_REMOVABLE, "Motorola" , "Motorola Phone",
655 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
656 },
657 {
658 /*
659 * Qware BeatZkey! Pro
660 * PR: usb/79164
661 */
662 {T_DIRECT, SIP_MEDIA_REMOVABLE, "GENERIC", "USB DISK DEVICE",
663 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
664 },
665 {
666 /*
667 * Time DPA20B 1GB MP3 Player
668 * PR: usb/81846
669 */
670 {T_DIRECT, SIP_MEDIA_REMOVABLE, "USB2.0*", "(FS) FLASH DISK*",
671 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
672 },
673 {
674 /*
675 * Samsung USB key 128Mb
676 * PR: usb/90081
677 */
678 {T_DIRECT, SIP_MEDIA_REMOVABLE, "USB-DISK", "FreeDik-FlashUsb",
679 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
680 },
681 {
682 /*
683 * Kingston DataTraveler 2.0 USB Flash memory.
684 * PR: usb/89196
685 */
686 {T_DIRECT, SIP_MEDIA_REMOVABLE, "Kingston", "DataTraveler 2.0",
687 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
688 },
689 {
690 /*
691 * Creative MUVO Slim mp3 player (USB)
692 * PR: usb/86131
693 */
694 {T_DIRECT, SIP_MEDIA_REMOVABLE, "CREATIVE", "MuVo Slim",
695 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE|DA_Q_NO_PREVENT
696 },
697 {
698 /*
699 * United MP5512 Portable MP3 Player (2-in-1 USB DISK/MP3)
700 * PR: usb/80487
701 */
702 {T_DIRECT, SIP_MEDIA_REMOVABLE, "Generic*", "MUSIC DISK",
703 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
704 },
705 {
706 /*
707 * SanDisk Micro Cruzer 128MB
708 * PR: usb/75970
709 */
710 {T_DIRECT, SIP_MEDIA_REMOVABLE, "SanDisk" , "Micro Cruzer",
711 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
712 },
713 {
714 /*
715 * TOSHIBA TransMemory USB sticks
716 * PR: kern/94660
717 */
718 {T_DIRECT, SIP_MEDIA_REMOVABLE, "TOSHIBA", "TransMemory",
719 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
720 },
721 {
722 /*
723 * PNY USB 3.0 Flash Drives
724 */
725 {T_DIRECT, SIP_MEDIA_REMOVABLE, "PNY", "USB 3.0 FD*",
726 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE | DA_Q_NO_RC16
727 },
728 {
729 /*
730 * PNY USB Flash keys
731 * PR: usb/75578, usb/72344, usb/65436
732 */
733 {T_DIRECT, SIP_MEDIA_REMOVABLE, "*" , "USB DISK*",
734 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
735 },
736 {
737 /*
738 * Genesys GL3224
739 */
740 {T_DIRECT, SIP_MEDIA_REMOVABLE, "Generic*", "STORAGE DEVICE*",
741 "120?"}, /*quirks*/ DA_Q_NO_SYNC_CACHE | DA_Q_4K | DA_Q_NO_RC16
742 },
743 {
744 /*
745 * Genesys 6-in-1 Card Reader
746 * PR: usb/94647
747 */
748 {T_DIRECT, SIP_MEDIA_REMOVABLE, "Generic*", "STORAGE DEVICE*",
749 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
750 },
751 {
752 /*
753 * Rekam Digital CAMERA
754 * PR: usb/98713
755 */
756 {T_DIRECT, SIP_MEDIA_REMOVABLE, "CAMERA*", "4MP-9J6*",
757 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
758 },
759 {
760 /*
761 * iRiver H10 MP3 player
762 * PR: usb/102547
763 */
764 {T_DIRECT, SIP_MEDIA_REMOVABLE, "iriver", "H10*",
765 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
766 },
767 {
768 /*
769 * iRiver U10 MP3 player
770 * PR: usb/92306
771 */
772 {T_DIRECT, SIP_MEDIA_REMOVABLE, "iriver", "U10*",
773 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
774 },
775 {
776 /*
777 * X-Micro Flash Disk
778 * PR: usb/96901
779 */
780 {T_DIRECT, SIP_MEDIA_REMOVABLE, "X-Micro", "Flash Disk",
781 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
782 },
783 {
784 /*
785 * EasyMP3 EM732X USB 2.0 Flash MP3 Player
786 * PR: usb/96546
787 */
788 {T_DIRECT, SIP_MEDIA_REMOVABLE, "EM732X", "MP3 Player*",
789 "1.00"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
790 },
791 {
792 /*
793 * Denver MP3 player
794 * PR: usb/107101
795 */
796 {T_DIRECT, SIP_MEDIA_REMOVABLE, "DENVER", "MP3 PLAYER",
797 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
798 },
799 {
800 /*
801 * Philips USB Key Audio KEY013
802 * PR: usb/68412
803 */
804 {T_DIRECT, SIP_MEDIA_REMOVABLE, "PHILIPS", "Key*", "*"},
805 /*quirks*/ DA_Q_NO_SYNC_CACHE | DA_Q_NO_PREVENT
806 },
807 {
808 /*
809 * JNC MP3 Player
810 * PR: usb/94439
811 */
812 {T_DIRECT, SIP_MEDIA_REMOVABLE, "JNC*" , "MP3 Player*",
813 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
814 },
815 {
816 /*
817 * SAMSUNG MP0402H
818 * PR: usb/108427
819 */
820 {T_DIRECT, SIP_MEDIA_FIXED, "SAMSUNG", "MP0402H", "*"},
821 /*quirks*/ DA_Q_NO_SYNC_CACHE
822 },
823 {
824 /*
825 * I/O Magic USB flash - Giga Bank
826 * PR: usb/108810
827 */
828 {T_DIRECT, SIP_MEDIA_FIXED, "GS-Magic", "stor*", "*"},
829 /*quirks*/ DA_Q_NO_SYNC_CACHE
830 },
831 {
832 /*
833 * JoyFly 128mb USB Flash Drive
834 * PR: 96133
835 */
836 {T_DIRECT, SIP_MEDIA_REMOVABLE, "USB 2.0", "Flash Disk*",
837 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
838 },
839 {
840 /*
841 * ChipsBnk usb stick
842 * PR: 103702
843 */
844 {T_DIRECT, SIP_MEDIA_REMOVABLE, "ChipsBnk", "USB*",
845 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
846 },
847 {
848 /*
849 * Storcase (Kingston) InfoStation IFS FC2/SATA-R 201A
850 * PR: 129858
851 */
852 {T_DIRECT, SIP_MEDIA_FIXED, "IFS", "FC2/SATA-R*",
853 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
854 },
855 {
856 /*
857 * Samsung YP-U3 mp3-player
858 * PR: 125398
859 */
860 {T_DIRECT, SIP_MEDIA_REMOVABLE, "Samsung", "YP-U3",
861 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
862 },
863 {
864 {T_DIRECT, SIP_MEDIA_REMOVABLE, "Netac", "OnlyDisk*",
865 "2000"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
866 },
867 {
868 /*
869 * Sony Cyber-Shot DSC cameras
870 * PR: usb/137035
871 */
872 {T_DIRECT, SIP_MEDIA_REMOVABLE, "Sony", "Sony DSC", "*"},
873 /*quirks*/ DA_Q_NO_SYNC_CACHE | DA_Q_NO_PREVENT
874 },
875 {
876 {T_DIRECT, SIP_MEDIA_REMOVABLE, "Kingston", "DataTraveler G3",
877 "1.00"}, /*quirks*/ DA_Q_NO_PREVENT
878 },
879 {
880 /* At least several Transcent USB sticks lie on RC16. */
881 {T_DIRECT, SIP_MEDIA_REMOVABLE, "JetFlash", "Transcend*",
882 "*"}, /*quirks*/ DA_Q_NO_RC16
883 },
884 {
885 /* ADATA USB sticks lie on RC16. */
886 {T_DIRECT, SIP_MEDIA_REMOVABLE, "ADATA", "USB Flash Drive*",
887 "*"}, /*quirks*/ DA_Q_NO_RC16
888 },
889 {
890 /*
891 * I-O Data USB Flash Disk
892 * PR: usb/211716
893 */
894 {T_DIRECT, SIP_MEDIA_REMOVABLE, "I-O DATA", "USB Flash Disk*",
895 "*"}, /*quirks*/ DA_Q_NO_RC16
896 },
897 {
898 /*
899 * SLC CHIPFANCIER USB drives
900 * PR: usb/234503 (RC10 right, RC16 wrong)
901 * 16GB, 32GB and 128GB confirmed to have same issue
902 */
903 {T_DIRECT, SIP_MEDIA_REMOVABLE, "*SLC", "CHIPFANCIER",
904 "*"}, /*quirks*/ DA_Q_NO_RC16
905 },
906 /* ATA/SATA devices over SAS/USB/... */
907 {
908 /* Sandisk X400 */
909 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "SanDisk SD8SB8U1*", "*" },
910 /*quirks*/DA_Q_128KB
911 },
912 {
913 /* Hitachi Advanced Format (4k) drives */
914 { T_DIRECT, SIP_MEDIA_FIXED, "Hitachi", "H??????????E3*", "*" },
915 /*quirks*/DA_Q_4K
916 },
917 {
918 /* Micron Advanced Format (4k) drives */
919 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "Micron 5100 MTFDDAK*", "*" },
920 /*quirks*/DA_Q_4K
921 },
922 {
923 /* Samsung Advanced Format (4k) drives */
924 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "SAMSUNG HD155UI*", "*" },
925 /*quirks*/DA_Q_4K
926 },
927 {
928 /* Samsung Advanced Format (4k) drives */
929 { T_DIRECT, SIP_MEDIA_FIXED, "SAMSUNG", "HD155UI*", "*" },
930 /*quirks*/DA_Q_4K
931 },
932 {
933 /* Samsung Advanced Format (4k) drives */
934 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "SAMSUNG HD204UI*", "*" },
935 /*quirks*/DA_Q_4K
936 },
937 {
938 /* Samsung Advanced Format (4k) drives */
939 { T_DIRECT, SIP_MEDIA_FIXED, "SAMSUNG", "HD204UI*", "*" },
940 /*quirks*/DA_Q_4K
941 },
942 {
943 /* Seagate Barracuda Green Advanced Format (4k) drives */
944 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "ST????DL*", "*" },
945 /*quirks*/DA_Q_4K
946 },
947 {
948 /* Seagate Barracuda Green Advanced Format (4k) drives */
949 { T_DIRECT, SIP_MEDIA_FIXED, "ST????DL", "*", "*" },
950 /*quirks*/DA_Q_4K
951 },
952 {
953 /* Seagate Barracuda Green Advanced Format (4k) drives */
954 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "ST???DM*", "*" },
955 /*quirks*/DA_Q_4K
956 },
957 {
958 /* Seagate Barracuda Green Advanced Format (4k) drives */
959 { T_DIRECT, SIP_MEDIA_FIXED, "ST???DM*", "*", "*" },
960 /*quirks*/DA_Q_4K
961 },
962 {
963 /* Seagate Barracuda Green Advanced Format (4k) drives */
964 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "ST????DM*", "*" },
965 /*quirks*/DA_Q_4K
966 },
967 {
968 /* Seagate Barracuda Green Advanced Format (4k) drives */
969 { T_DIRECT, SIP_MEDIA_FIXED, "ST????DM", "*", "*" },
970 /*quirks*/DA_Q_4K
971 },
972 {
973 /* Seagate Momentus Advanced Format (4k) drives */
974 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "ST9500423AS*", "*" },
975 /*quirks*/DA_Q_4K
976 },
977 {
978 /* Seagate Momentus Advanced Format (4k) drives */
979 { T_DIRECT, SIP_MEDIA_FIXED, "ST950042", "3AS*", "*" },
980 /*quirks*/DA_Q_4K
981 },
982 {
983 /* Seagate Momentus Advanced Format (4k) drives */
984 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "ST9500424AS*", "*" },
985 /*quirks*/DA_Q_4K
986 },
987 {
988 /* Seagate Momentus Advanced Format (4k) drives */
989 { T_DIRECT, SIP_MEDIA_FIXED, "ST950042", "4AS*", "*" },
990 /*quirks*/DA_Q_4K
991 },
992 {
993 /* Seagate Momentus Advanced Format (4k) drives */
994 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "ST9640423AS*", "*" },
995 /*quirks*/DA_Q_4K
996 },
997 {
998 /* Seagate Momentus Advanced Format (4k) drives */
999 { T_DIRECT, SIP_MEDIA_FIXED, "ST964042", "3AS*", "*" },
1000 /*quirks*/DA_Q_4K
1001 },
1002 {
1003 /* Seagate Momentus Advanced Format (4k) drives */
1004 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "ST9640424AS*", "*" },
1005 /*quirks*/DA_Q_4K
1006 },
1007 {
1008 /* Seagate Momentus Advanced Format (4k) drives */
1009 { T_DIRECT, SIP_MEDIA_FIXED, "ST964042", "4AS*", "*" },
1010 /*quirks*/DA_Q_4K
1011 },
1012 {
1013 /* Seagate Momentus Advanced Format (4k) drives */
1014 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "ST9750420AS*", "*" },
1015 /*quirks*/DA_Q_4K
1016 },
1017 {
1018 /* Seagate Momentus Advanced Format (4k) drives */
1019 { T_DIRECT, SIP_MEDIA_FIXED, "ST975042", "0AS*", "*" },
1020 /*quirks*/DA_Q_4K
1021 },
1022 {
1023 /* Seagate Momentus Advanced Format (4k) drives */
1024 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "ST9750422AS*", "*" },
1025 /*quirks*/DA_Q_4K
1026 },
1027 {
1028 /* Seagate Momentus Advanced Format (4k) drives */
1029 { T_DIRECT, SIP_MEDIA_FIXED, "ST975042", "2AS*", "*" },
1030 /*quirks*/DA_Q_4K
1031 },
1032 {
1033 /* Seagate Momentus Advanced Format (4k) drives */
1034 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "ST9750423AS*", "*" },
1035 /*quirks*/DA_Q_4K
1036 },
1037 {
1038 /* Seagate Momentus Advanced Format (4k) drives */
1039 { T_DIRECT, SIP_MEDIA_FIXED, "ST975042", "3AS*", "*" },
1040 /*quirks*/DA_Q_4K
1041 },
1042 {
1043 /* Seagate Momentus Thin Advanced Format (4k) drives */
1044 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "ST???LT*", "*" },
1045 /*quirks*/DA_Q_4K
1046 },
1047 {
1048 /* Seagate Momentus Thin Advanced Format (4k) drives */
1049 { T_DIRECT, SIP_MEDIA_FIXED, "ST???LT*", "*", "*" },
1050 /*quirks*/DA_Q_4K
1051 },
1052 {
1053 /* WDC Caviar Green Advanced Format (4k) drives */
1054 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "WDC WD????RS*", "*" },
1055 /*quirks*/DA_Q_4K
1056 },
1057 {
1058 /* WDC Caviar Green Advanced Format (4k) drives */
1059 { T_DIRECT, SIP_MEDIA_FIXED, "WDC WD??", "??RS*", "*" },
1060 /*quirks*/DA_Q_4K
1061 },
1062 {
1063 /* WDC Caviar Green Advanced Format (4k) drives */
1064 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "WDC WD????RX*", "*" },
1065 /*quirks*/DA_Q_4K
1066 },
1067 {
1068 /* WDC Caviar Green Advanced Format (4k) drives */
1069 { T_DIRECT, SIP_MEDIA_FIXED, "WDC WD??", "??RX*", "*" },
1070 /*quirks*/DA_Q_4K
1071 },
1072 {
1073 /* WDC Caviar Green Advanced Format (4k) drives */
1074 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "WDC WD??????RS*", "*" },
1075 /*quirks*/DA_Q_4K
1076 },
1077 {
1078 /* WDC Caviar Green Advanced Format (4k) drives */
1079 { T_DIRECT, SIP_MEDIA_FIXED, "WDC WD??", "????RS*", "*" },
1080 /*quirks*/DA_Q_4K
1081 },
1082 {
1083 /* WDC Caviar Green Advanced Format (4k) drives */
1084 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "WDC WD??????RX*", "*" },
1085 /*quirks*/DA_Q_4K
1086 },
1087 {
1088 /* WDC Caviar Green Advanced Format (4k) drives */
1089 { T_DIRECT, SIP_MEDIA_FIXED, "WDC WD??", "????RX*", "*" },
1090 /*quirks*/DA_Q_4K
1091 },
1092 {
1093 /* WDC Scorpio Black Advanced Format (4k) drives */
1094 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "WDC WD???PKT*", "*" },
1095 /*quirks*/DA_Q_4K
1096 },
1097 {
1098 /* WDC Scorpio Black Advanced Format (4k) drives */
1099 { T_DIRECT, SIP_MEDIA_FIXED, "WDC WD??", "?PKT*", "*" },
1100 /*quirks*/DA_Q_4K
1101 },
1102 {
1103 /* WDC Scorpio Black Advanced Format (4k) drives */
1104 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "WDC WD?????PKT*", "*" },
1105 /*quirks*/DA_Q_4K
1106 },
1107 {
1108 /* WDC Scorpio Black Advanced Format (4k) drives */
1109 { T_DIRECT, SIP_MEDIA_FIXED, "WDC WD??", "???PKT*", "*" },
1110 /*quirks*/DA_Q_4K
1111 },
1112 {
1113 /* WDC Scorpio Blue Advanced Format (4k) drives */
1114 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "WDC WD???PVT*", "*" },
1115 /*quirks*/DA_Q_4K
1116 },
1117 {
1118 /* WDC Scorpio Blue Advanced Format (4k) drives */
1119 { T_DIRECT, SIP_MEDIA_FIXED, "WDC WD??", "?PVT*", "*" },
1120 /*quirks*/DA_Q_4K
1121 },
1122 {
1123 /* WDC Scorpio Blue Advanced Format (4k) drives */
1124 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "WDC WD?????PVT*", "*" },
1125 /*quirks*/DA_Q_4K
1126 },
1127 {
1128 /* WDC Scorpio Blue Advanced Format (4k) drives */
1129 { T_DIRECT, SIP_MEDIA_FIXED, "WDC WD??", "???PVT*", "*" },
1130 /*quirks*/DA_Q_4K
1131 },
1132 {
1133 /*
1134 * Olympus digital cameras (C-3040ZOOM, C-2040ZOOM, C-1)
1135 * PR: usb/97472
1136 */
1137 { T_DIRECT, SIP_MEDIA_REMOVABLE, "OLYMPUS", "C*", "*"},
1138 /*quirks*/ DA_Q_NO_6_BYTE | DA_Q_NO_SYNC_CACHE
1139 },
1140 {
1141 /*
1142 * Olympus digital cameras (D-370)
1143 * PR: usb/97472
1144 */
1145 { T_DIRECT, SIP_MEDIA_REMOVABLE, "OLYMPUS", "D*", "*"},
1146 /*quirks*/ DA_Q_NO_6_BYTE
1147 },
1148 {
1149 /*
1150 * Olympus digital cameras (E-100RS, E-10).
1151 * PR: usb/97472
1152 */
1153 { T_DIRECT, SIP_MEDIA_REMOVABLE, "OLYMPUS", "E*", "*"},
1154 /*quirks*/ DA_Q_NO_6_BYTE | DA_Q_NO_SYNC_CACHE
1155 },
1156 {
1157 /*
1158 * Olympus FE-210 camera
1159 */
1160 {T_DIRECT, SIP_MEDIA_REMOVABLE, "OLYMPUS", "FE210*",
1161 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
1162 },
1163 {
1164 /*
1165 * Pentax Digital Camera
1166 * PR: usb/93389
1167 */
1168 {T_DIRECT, SIP_MEDIA_REMOVABLE, "PENTAX", "DIGITAL CAMERA",
1169 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
1170 },
1171 {
1172 /*
1173 * LG UP3S MP3 player
1174 */
1175 {T_DIRECT, SIP_MEDIA_REMOVABLE, "LG", "UP3S",
1176 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
1177 },
1178 {
1179 /*
1180 * Laser MP3-2GA13 MP3 player
1181 */
1182 {T_DIRECT, SIP_MEDIA_REMOVABLE, "USB 2.0", "(HS) Flash Disk",
1183 "*"}, /*quirks*/ DA_Q_NO_SYNC_CACHE
1184 },
1185 {
1186 /*
1187 * LaCie external 250GB Hard drive des by Porsche
1188 * Submitted by: Ben Stuyts <ben@altesco.nl>
1189 * PR: 121474
1190 */
1191 {T_DIRECT, SIP_MEDIA_FIXED, "SAMSUNG", "HM250JI", "*"},
1192 /*quirks*/ DA_Q_NO_SYNC_CACHE
1193 },
1194 /* SATA SSDs */
1195 {
1196 /*
1197 * Corsair Force 2 SSDs
1198 * 4k optimised & trim only works in 4k requests + 4k aligned
1199 */
1200 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "Corsair CSSD-F*", "*" },
1201 /*quirks*/DA_Q_4K
1202 },
1203 {
1204 /*
1205 * Corsair Force 3 SSDs
1206 * 4k optimised & trim only works in 4k requests + 4k aligned
1207 */
1208 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "Corsair Force 3*", "*" },
1209 /*quirks*/DA_Q_4K
1210 },
1211 {
1212 /*
1213 * Corsair Neutron GTX SSDs
1214 * 4k optimised & trim only works in 4k requests + 4k aligned
1215 */
1216 { T_DIRECT, SIP_MEDIA_FIXED, "*", "Corsair Neutron GTX*", "*" },
1217 /*quirks*/DA_Q_4K
1218 },
1219 {
1220 /*
1221 * Corsair Force GT & GS SSDs
1222 * 4k optimised & trim only works in 4k requests + 4k aligned
1223 */
1224 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "Corsair Force G*", "*" },
1225 /*quirks*/DA_Q_4K
1226 },
1227 {
1228 /*
1229 * Crucial M4 SSDs
1230 * 4k optimised & trim only works in 4k requests + 4k aligned
1231 */
1232 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "M4-CT???M4SSD2*", "*" },
1233 /*quirks*/DA_Q_4K
1234 },
1235 {
1236 /*
1237 * Crucial RealSSD C300 SSDs
1238 * 4k optimised
1239 */
1240 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "C300-CTFDDAC???MAG*",
1241 "*" }, /*quirks*/DA_Q_4K
1242 },
1243 {
1244 /*
1245 * Intel 320 Series SSDs
1246 * 4k optimised & trim only works in 4k requests + 4k aligned
1247 */
1248 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "INTEL SSDSA2CW*", "*" },
1249 /*quirks*/DA_Q_4K
1250 },
1251 {
1252 /*
1253 * Intel 330 Series SSDs
1254 * 4k optimised & trim only works in 4k requests + 4k aligned
1255 */
1256 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "INTEL SSDSC2CT*", "*" },
1257 /*quirks*/DA_Q_4K
1258 },
1259 {
1260 /*
1261 * Intel 510 Series SSDs
1262 * 4k optimised & trim only works in 4k requests + 4k aligned
1263 */
1264 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "INTEL SSDSC2MH*", "*" },
1265 /*quirks*/DA_Q_4K
1266 },
1267 {
1268 /*
1269 * Intel 520 Series SSDs
1270 * 4k optimised & trim only works in 4k requests + 4k aligned
1271 */
1272 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "INTEL SSDSC2BW*", "*" },
1273 /*quirks*/DA_Q_4K
1274 },
1275 {
1276 /*
1277 * Intel S3610 Series SSDs
1278 * 4k optimised & trim only works in 4k requests + 4k aligned
1279 */
1280 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "INTEL SSDSC2BX*", "*" },
1281 /*quirks*/DA_Q_4K
1282 },
1283 {
1284 /*
1285 * Intel X25-M Series SSDs
1286 * 4k optimised & trim only works in 4k requests + 4k aligned
1287 */
1288 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "INTEL SSDSA2M*", "*" },
1289 /*quirks*/DA_Q_4K
1290 },
1291 {
1292 /*
1293 * Kingston E100 Series SSDs
1294 * 4k optimised & trim only works in 4k requests + 4k aligned
1295 */
1296 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "KINGSTON SE100S3*", "*" },
1297 /*quirks*/DA_Q_4K
1298 },
1299 {
1300 /*
1301 * Kingston HyperX 3k SSDs
1302 * 4k optimised & trim only works in 4k requests + 4k aligned
1303 */
1304 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "KINGSTON SH103S3*", "*" },
1305 /*quirks*/DA_Q_4K
1306 },
1307 {
1308 /*
1309 * Marvell SSDs (entry taken from OpenSolaris)
1310 * 4k optimised & trim only works in 4k requests + 4k aligned
1311 */
1312 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "MARVELL SD88SA02*", "*" },
1313 /*quirks*/DA_Q_4K
1314 },
1315 {
1316 /*
1317 * OCZ Agility 2 SSDs
1318 * 4k optimised & trim only works in 4k requests + 4k aligned
1319 */
1320 { T_DIRECT, SIP_MEDIA_FIXED, "*", "OCZ-AGILITY2*", "*" },
1321 /*quirks*/DA_Q_4K
1322 },
1323 {
1324 /*
1325 * OCZ Agility 3 SSDs
1326 * 4k optimised & trim only works in 4k requests + 4k aligned
1327 */
1328 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "OCZ-AGILITY3*", "*" },
1329 /*quirks*/DA_Q_4K
1330 },
1331 {
1332 /*
1333 * OCZ Deneva R Series SSDs
1334 * 4k optimised & trim only works in 4k requests + 4k aligned
1335 */
1336 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "DENRSTE251M45*", "*" },
1337 /*quirks*/DA_Q_4K
1338 },
1339 {
1340 /*
1341 * OCZ Vertex 2 SSDs (inc pro series)
1342 * 4k optimised & trim only works in 4k requests + 4k aligned
1343 */
1344 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "OCZ?VERTEX2*", "*" },
1345 /*quirks*/DA_Q_4K
1346 },
1347 {
1348 /*
1349 * OCZ Vertex 3 SSDs
1350 * 4k optimised & trim only works in 4k requests + 4k aligned
1351 */
1352 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "OCZ-VERTEX3*", "*" },
1353 /*quirks*/DA_Q_4K
1354 },
1355 {
1356 /*
1357 * OCZ Vertex 4 SSDs
1358 * 4k optimised & trim only works in 4k requests + 4k aligned
1359 */
1360 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "OCZ-VERTEX4*", "*" },
1361 /*quirks*/DA_Q_4K
1362 },
1363 {
1364 /*
1365 * Samsung 750 Series SSDs
1366 * 4k optimised & trim only works in 4k requests + 4k aligned
1367 */
1368 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "Samsung SSD 750*", "*" },
1369 /*quirks*/DA_Q_4K
1370 },
1371 {
1372 /*
1373 * Samsung 830 Series SSDs
1374 * 4k optimised & trim only works in 4k requests + 4k aligned
1375 */
1376 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "SAMSUNG SSD 830 Series*", "*" },
1377 /*quirks*/DA_Q_4K
1378 },
1379 {
1380 /*
1381 * Samsung 840 SSDs
1382 * 4k optimised & trim only works in 4k requests + 4k aligned
1383 */
1384 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "Samsung SSD 840*", "*" },
1385 /*quirks*/DA_Q_4K
1386 },
1387 {
1388 /*
1389 * Samsung 845 SSDs
1390 * 4k optimised & trim only works in 4k requests + 4k aligned
1391 */
1392 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "Samsung SSD 845*", "*" },
1393 /*quirks*/DA_Q_4K
1394 },
1395 {
1396 /*
1397 * Samsung 850 SSDs
1398 * 4k optimised & trim only works in 4k requests + 4k aligned
1399 */
1400 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "Samsung SSD 850*", "*" },
1401 /*quirks*/DA_Q_4K
1402 },
1403 {
1404 /*
1405 * Samsung 860 SSDs
1406 * 4k optimised & trim only works in 4k requests + 4k aligned
1407 */
1408 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "Samsung SSD 860*", "*" },
1409 /*quirks*/DA_Q_4K
1410 },
1411 {
1412 /*
1413 * Samsung 870 SSDs
1414 * 4k optimised & trim only works in 4k requests + 4k aligned
1415 */
1416 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "Samsung SSD 870*", "*" },
1417 /*quirks*/DA_Q_4K
1418 },
1419 {
1420 /*
1421 * Samsung 843T Series SSDs (MZ7WD*)
1422 * Samsung PM851 Series SSDs (MZ7TE*)
1423 * Samsung PM853T Series SSDs (MZ7GE*)
1424 * Samsung SM863 Series SSDs (MZ7KM*)
1425 * 4k optimised
1426 */
1427 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "SAMSUNG MZ7*", "*" },
1428 /*quirks*/DA_Q_4K
1429 },
1430 {
1431 /*
1432 * Same as for SAMSUNG MZ7* but enable the quirks for SSD
1433 * starting with MZ7* too
1434 */
1435 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "MZ7*", "*" },
1436 /*quirks*/DA_Q_4K
1437 },
1438 {
1439 /*
1440 * Same as above but enable the quirks for SSD SAMSUNG MZ7*
1441 * connected via SATA-to-SAS interposer and because of this
1442 * starting without "ATA"
1443 */
1444 { T_DIRECT, SIP_MEDIA_FIXED, "SAMSUNG", "MZ7*", "*" },
1445 /*quirks*/DA_Q_4K
1446 },
1447 {
1448 /*
1449 * SuperTalent TeraDrive CT SSDs
1450 * 4k optimised & trim only works in 4k requests + 4k aligned
1451 */
1452 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "FTM??CT25H*", "*" },
1453 /*quirks*/DA_Q_4K
1454 },
1455 {
1456 /*
1457 * XceedIOPS SATA SSDs
1458 * 4k optimised
1459 */
1460 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "SG9XCS2D*", "*" },
1461 /*quirks*/DA_Q_4K
1462 },
1463 {
1464 /*
1465 * Hama Innostor USB-Stick
1466 */
1467 { T_DIRECT, SIP_MEDIA_REMOVABLE, "Innostor", "Innostor*", "*" },
1468 /*quirks*/DA_Q_NO_RC16
1469 },
1470 {
1471 /*
1472 * Seagate Lamarr 8TB Shingled Magnetic Recording (SMR)
1473 * Drive Managed SATA hard drive. This drive doesn't report
1474 * in firmware that it is a drive managed SMR drive.
1475 */
1476 { T_DIRECT, SIP_MEDIA_FIXED, "ATA", "ST8000AS000[23]*", "*" },
1477 /*quirks*/DA_Q_SMR_DM
1478 },
1479 {
1480 /*
1481 * MX-ES USB Drive by Mach Xtreme
1482 */
1483 { T_DIRECT, SIP_MEDIA_REMOVABLE, "MX", "MXUB3*", "*"},
1484 /*quirks*/DA_Q_NO_RC16
1485 },
1486 };
1487
1488 static disk_strategy_t dastrategy;
1489 static dumper_t dadump;
1490 static periph_init_t dainit;
1491 static void daasync(void *callback_arg, uint32_t code,
1492 struct cam_path *path, void *arg);
1493 static void dasysctlinit(void *context, int pending);
1494 static int dasysctlsofttimeout(SYSCTL_HANDLER_ARGS);
1495 static int dacmdsizesysctl(SYSCTL_HANDLER_ARGS);
1496 static int dadeletemethodsysctl(SYSCTL_HANDLER_ARGS);
1497 static int dabitsysctl(SYSCTL_HANDLER_ARGS);
1498 static int daflagssysctl(SYSCTL_HANDLER_ARGS);
1499 static int dazonemodesysctl(SYSCTL_HANDLER_ARGS);
1500 static int dazonesupsysctl(SYSCTL_HANDLER_ARGS);
1501 static int dadeletemaxsysctl(SYSCTL_HANDLER_ARGS);
1502 static void dadeletemethodset(struct da_softc *softc,
1503 da_delete_methods delete_method);
1504 static off_t dadeletemaxsize(struct da_softc *softc,
1505 da_delete_methods delete_method);
1506 static void dadeletemethodchoose(struct da_softc *softc,
1507 da_delete_methods default_method);
1508 static void daprobedone(struct cam_periph *periph, union ccb *ccb);
1509
1510 static periph_ctor_t daregister;
1511 static periph_dtor_t dacleanup;
1512 static periph_start_t dastart;
1513 static periph_oninv_t daoninvalidate;
1514 static void dazonedone(struct cam_periph *periph, union ccb *ccb);
1515 static void dadone(struct cam_periph *periph,
1516 union ccb *done_ccb);
1517 static void dadone_probewp(struct cam_periph *periph,
1518 union ccb *done_ccb);
1519 static void dadone_proberc(struct cam_periph *periph,
1520 union ccb *done_ccb);
1521 static void dadone_probelbp(struct cam_periph *periph,
1522 union ccb *done_ccb);
1523 static void dadone_probeblklimits(struct cam_periph *periph,
1524 union ccb *done_ccb);
1525 static void dadone_probebdc(struct cam_periph *periph,
1526 union ccb *done_ccb);
1527 static void dadone_probeata(struct cam_periph *periph,
1528 union ccb *done_ccb);
1529 static void dadone_probeatalogdir(struct cam_periph *periph,
1530 union ccb *done_ccb);
1531 static void dadone_probeataiddir(struct cam_periph *periph,
1532 union ccb *done_ccb);
1533 static void dadone_probeatasup(struct cam_periph *periph,
1534 union ccb *done_ccb);
1535 static void dadone_probeatazone(struct cam_periph *periph,
1536 union ccb *done_ccb);
1537 static void dadone_probezone(struct cam_periph *periph,
1538 union ccb *done_ccb);
1539 static void dadone_tur(struct cam_periph *periph,
1540 union ccb *done_ccb);
1541 static int daerror(union ccb *ccb, uint32_t cam_flags,
1542 uint32_t sense_flags);
1543 static void daprevent(struct cam_periph *periph, int action);
1544 static void dareprobe(struct cam_periph *periph);
1545 static void dasetgeom(struct cam_periph *periph, uint32_t block_len,
1546 uint64_t maxsector,
1547 struct scsi_read_capacity_data_long *rcaplong,
1548 size_t rcap_size);
1549 static callout_func_t dasendorderedtag;
1550 static void dashutdown(void *arg, int howto);
1551 static callout_func_t damediapoll;
1552
1553 #ifndef DA_DEFAULT_POLL_PERIOD
1554 #define DA_DEFAULT_POLL_PERIOD 3
1555 #endif
1556
1557 #ifndef DA_DEFAULT_TIMEOUT
1558 #define DA_DEFAULT_TIMEOUT 60 /* Timeout in seconds */
1559 #endif
1560
1561 #ifndef DA_DEFAULT_SOFTTIMEOUT
1562 #define DA_DEFAULT_SOFTTIMEOUT 0
1563 #endif
1564
1565 #ifndef DA_DEFAULT_RETRY
1566 #define DA_DEFAULT_RETRY 4
1567 #endif
1568
1569 #ifndef DA_DEFAULT_SEND_ORDERED
1570 #define DA_DEFAULT_SEND_ORDERED 1
1571 #endif
1572
1573 static int da_poll_period = DA_DEFAULT_POLL_PERIOD;
1574 static int da_retry_count = DA_DEFAULT_RETRY;
1575 static int da_default_timeout = DA_DEFAULT_TIMEOUT;
1576 static sbintime_t da_default_softtimeout = DA_DEFAULT_SOFTTIMEOUT;
1577 static int da_send_ordered = DA_DEFAULT_SEND_ORDERED;
1578 static int da_disable_wp_detection = 0;
1579 static int da_enable_biospeedup = 1;
1580 static int da_enable_uma_ccbs = 1;
1581
1582 static SYSCTL_NODE(_kern_cam, OID_AUTO, da, CTLFLAG_RD | CTLFLAG_MPSAFE, 0,
1583 "CAM Direct Access Disk driver");
1584 SYSCTL_INT(_kern_cam_da, OID_AUTO, poll_period, CTLFLAG_RWTUN,
1585 &da_poll_period, 0, "Media polling period in seconds");
1586 SYSCTL_INT(_kern_cam_da, OID_AUTO, retry_count, CTLFLAG_RWTUN,
1587 &da_retry_count, 0, "Normal I/O retry count");
1588 SYSCTL_INT(_kern_cam_da, OID_AUTO, default_timeout, CTLFLAG_RWTUN,
1589 &da_default_timeout, 0, "Normal I/O timeout (in seconds)");
1590 SYSCTL_INT(_kern_cam_da, OID_AUTO, send_ordered, CTLFLAG_RWTUN,
1591 &da_send_ordered, 0, "Send Ordered Tags");
1592 SYSCTL_INT(_kern_cam_da, OID_AUTO, disable_wp_detection, CTLFLAG_RWTUN,
1593 &da_disable_wp_detection, 0,
1594 "Disable detection of write-protected disks");
1595 SYSCTL_INT(_kern_cam_da, OID_AUTO, enable_biospeedup, CTLFLAG_RDTUN,
1596 &da_enable_biospeedup, 0, "Enable BIO_SPEEDUP processing");
1597 SYSCTL_INT(_kern_cam_da, OID_AUTO, enable_uma_ccbs, CTLFLAG_RWTUN,
1598 &da_enable_uma_ccbs, 0, "Use UMA for CCBs");
1599
1600 SYSCTL_PROC(_kern_cam_da, OID_AUTO, default_softtimeout,
1601 CTLTYPE_UINT | CTLFLAG_RW | CTLFLAG_MPSAFE, NULL, 0,
1602 dasysctlsofttimeout, "I",
1603 "Soft I/O timeout (ms)");
1604 TUNABLE_INT64("kern.cam.da.default_softtimeout", &da_default_softtimeout);
1605
1606 /*
1607 * DA_ORDEREDTAG_INTERVAL determines how often, relative
1608 * to the default timeout, we check to see whether an ordered
1609 * tagged transaction is appropriate to prevent simple tag
1610 * starvation. Since we'd like to ensure that there is at least
1611 * 1/2 of the timeout length left for a starved transaction to
1612 * complete after we've sent an ordered tag, we must poll at least
1613 * four times in every timeout period. This takes care of the worst
1614 * case where a starved transaction starts during an interval that
1615 * meets the requirement "don't send an ordered tag" test so it takes
1616 * us two intervals to determine that a tag must be sent.
1617 */
1618 #ifndef DA_ORDEREDTAG_INTERVAL
1619 #define DA_ORDEREDTAG_INTERVAL 4
1620 #endif
1621
1622 static struct periph_driver dadriver =
1623 {
1624 dainit, "da",
1625 TAILQ_HEAD_INITIALIZER(dadriver.units), /* generation */ 0
1626 };
1627
1628 PERIPHDRIVER_DECLARE(da, dadriver);
1629
1630 static MALLOC_DEFINE(M_SCSIDA, "scsi_da", "scsi_da buffers");
1631
1632 /*
1633 * This driver takes out references / holds in well defined pairs, never
1634 * recursively. These macros / inline functions enforce those rules. They
1635 * are only enabled with DA_TRACK_REFS or INVARIANTS. If DA_TRACK_REFS is
1636 * defined to be 2 or larger, the tracking also includes debug printfs.
1637 */
1638 #if defined(DA_TRACK_REFS) || defined(INVARIANTS)
1639
1640 #ifndef DA_TRACK_REFS
1641 #define DA_TRACK_REFS 1
1642 #endif
1643
1644 #if DA_TRACK_REFS > 1
1645 static const char *da_ref_text[] = {
1646 "bogus",
1647 "open",
1648 "open hold",
1649 "close hold",
1650 "reprobe hold",
1651 "Test Unit Ready",
1652 "Geom",
1653 "sysctl",
1654 "reprobe",
1655 "max -- also bogus"
1656 };
1657
1658 #define DA_PERIPH_PRINT(periph, msg, args...) \
1659 CAM_PERIPH_PRINT(periph, msg, ##args)
1660 #else
1661 #define DA_PERIPH_PRINT(periph, msg, args...)
1662 #endif
1663
1664 static inline void
token_sanity(da_ref_token token)1665 token_sanity(da_ref_token token)
1666 {
1667 if ((unsigned)token >= DA_REF_MAX)
1668 panic("Bad token value passed in %d\n", token);
1669 }
1670
1671 static inline int
da_periph_hold(struct cam_periph * periph,int priority,da_ref_token token)1672 da_periph_hold(struct cam_periph *periph, int priority, da_ref_token token)
1673 {
1674 int err = cam_periph_hold(periph, priority);
1675
1676 token_sanity(token);
1677 DA_PERIPH_PRINT(periph, "Holding device %s (%d): %d\n",
1678 da_ref_text[token], token, err);
1679 if (err == 0) {
1680 int cnt;
1681 struct da_softc *softc = periph->softc;
1682
1683 cnt = atomic_fetchadd_int(&softc->ref_flags[token], 1);
1684 if (cnt != 0)
1685 panic("Re-holding for reason %d, cnt = %d", token, cnt);
1686 }
1687 return (err);
1688 }
1689
1690 static inline void
da_periph_unhold(struct cam_periph * periph,da_ref_token token)1691 da_periph_unhold(struct cam_periph *periph, da_ref_token token)
1692 {
1693 int cnt;
1694 struct da_softc *softc = periph->softc;
1695
1696 token_sanity(token);
1697 DA_PERIPH_PRINT(periph, "Unholding device %s (%d)\n",
1698 da_ref_text[token], token);
1699 cnt = atomic_fetchadd_int(&softc->ref_flags[token], -1);
1700 if (cnt != 1)
1701 panic("Unholding %d with cnt = %d", token, cnt);
1702 cam_periph_unhold(periph);
1703 }
1704
1705 static inline int
da_periph_acquire(struct cam_periph * periph,da_ref_token token)1706 da_periph_acquire(struct cam_periph *periph, da_ref_token token)
1707 {
1708 int err = cam_periph_acquire(periph);
1709
1710 token_sanity(token);
1711 DA_PERIPH_PRINT(periph, "acquiring device %s (%d): %d\n",
1712 da_ref_text[token], token, err);
1713 if (err == 0) {
1714 int cnt;
1715 struct da_softc *softc = periph->softc;
1716
1717 cnt = atomic_fetchadd_int(&softc->ref_flags[token], 1);
1718 if (cnt != 0)
1719 panic("Re-refing for reason %d, cnt = %d", token, cnt);
1720 }
1721 return (err);
1722 }
1723
1724 static inline void
da_periph_release(struct cam_periph * periph,da_ref_token token)1725 da_periph_release(struct cam_periph *periph, da_ref_token token)
1726 {
1727 int cnt;
1728 struct da_softc *softc = periph->softc;
1729
1730 token_sanity(token);
1731 DA_PERIPH_PRINT(periph, "releasing device %s (%d)\n",
1732 da_ref_text[token], token);
1733 cnt = atomic_fetchadd_int(&softc->ref_flags[token], -1);
1734 if (cnt != 1)
1735 panic("Releasing %d with cnt = %d", token, cnt);
1736 cam_periph_release(periph);
1737 }
1738
1739 static inline void
da_periph_release_locked(struct cam_periph * periph,da_ref_token token)1740 da_periph_release_locked(struct cam_periph *periph, da_ref_token token)
1741 {
1742 int cnt;
1743 struct da_softc *softc = periph->softc;
1744
1745 token_sanity(token);
1746 DA_PERIPH_PRINT(periph, "releasing device (locked) %s (%d)\n",
1747 da_ref_text[token], token);
1748 cnt = atomic_fetchadd_int(&softc->ref_flags[token], -1);
1749 if (cnt != 1)
1750 panic("releasing (locked) %d with cnt = %d", token, cnt);
1751 cam_periph_release_locked(periph);
1752 }
1753
1754 #define cam_periph_hold POISON
1755 #define cam_periph_unhold POISON
1756 #define cam_periph_acquire POISON
1757 #define cam_periph_release POISON
1758 #define cam_periph_release_locked POISON
1759
1760 #else
1761 #define da_periph_hold(periph, prio, token) cam_periph_hold((periph), (prio))
1762 #define da_periph_unhold(periph, token) cam_periph_unhold((periph))
1763 #define da_periph_acquire(periph, token) cam_periph_acquire((periph))
1764 #define da_periph_release(periph, token) cam_periph_release((periph))
1765 #define da_periph_release_locked(periph, token) cam_periph_release_locked((periph))
1766 #endif
1767
1768 static int
daopen(struct disk * dp)1769 daopen(struct disk *dp)
1770 {
1771 struct cam_periph *periph;
1772 struct da_softc *softc;
1773 int error;
1774
1775 periph = (struct cam_periph *)dp->d_drv1;
1776 if (da_periph_acquire(periph, DA_REF_OPEN) != 0) {
1777 return (ENXIO);
1778 }
1779
1780 cam_periph_lock(periph);
1781 if ((error = da_periph_hold(periph, PRIBIO|PCATCH, DA_REF_OPEN_HOLD)) != 0) {
1782 cam_periph_unlock(periph);
1783 da_periph_release(periph, DA_REF_OPEN);
1784 return (error);
1785 }
1786
1787 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE | CAM_DEBUG_PERIPH,
1788 ("daopen\n"));
1789
1790 softc = (struct da_softc *)periph->softc;
1791 dareprobe(periph);
1792
1793 /* Wait for the disk size update. */
1794 error = cam_periph_sleep(periph, &softc->disk->d_mediasize, PRIBIO,
1795 "dareprobe", 0);
1796 if (error != 0)
1797 xpt_print(periph->path, "unable to retrieve capacity data\n");
1798
1799 if (periph->flags & CAM_PERIPH_INVALID)
1800 error = ENXIO;
1801
1802 if (error == 0 && (softc->flags & DA_FLAG_PACK_REMOVABLE) != 0 &&
1803 (softc->quirks & DA_Q_NO_PREVENT) == 0)
1804 daprevent(periph, PR_PREVENT);
1805
1806 /*
1807 * Only 'validate' the pack if the media size is non-zero and the
1808 * underlying peripheral isn't invalid (the only error != 0 path). Once
1809 * the periph is marked invalid, we only get here on lost races with its
1810 * teardown, so keeping the pack invalid also keeps more I/O from
1811 * starting.
1812 */
1813 if (error == 0 && softc->params.sectors != 0)
1814 softc->flags &= ~DA_FLAG_PACK_INVALID;
1815 else
1816 softc->flags |= DA_FLAG_PACK_INVALID;
1817
1818 if (error == 0)
1819 softc->flags |= DA_FLAG_OPEN;
1820
1821 da_periph_unhold(periph, DA_REF_OPEN_HOLD);
1822 cam_periph_unlock(periph);
1823
1824 if (error != 0)
1825 da_periph_release(periph, DA_REF_OPEN);
1826
1827 return (error);
1828 }
1829
1830 static int
daclose(struct disk * dp)1831 daclose(struct disk *dp)
1832 {
1833 struct cam_periph *periph;
1834 struct da_softc *softc;
1835 union ccb *ccb;
1836
1837 periph = (struct cam_periph *)dp->d_drv1;
1838 softc = (struct da_softc *)periph->softc;
1839 cam_periph_lock(periph);
1840 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE | CAM_DEBUG_PERIPH,
1841 ("daclose\n"));
1842
1843 if (da_periph_hold(periph, PRIBIO, DA_REF_CLOSE_HOLD) == 0) {
1844 /* Flush disk cache. */
1845 if ((softc->flags & DA_FLAG_DIRTY) != 0 &&
1846 (softc->quirks & DA_Q_NO_SYNC_CACHE) == 0 &&
1847 (softc->flags & DA_FLAG_PACK_INVALID) == 0) {
1848 ccb = cam_periph_getccb(periph, CAM_PRIORITY_NORMAL);
1849 scsi_synchronize_cache(&ccb->csio, /*retries*/1,
1850 /*cbfcnp*/NULL, MSG_SIMPLE_Q_TAG,
1851 /*begin_lba*/0, /*lb_count*/0, SSD_FULL_SIZE,
1852 5 * 60 * 1000);
1853 cam_periph_runccb(ccb, daerror, /*cam_flags*/0,
1854 /*sense_flags*/SF_RETRY_UA | SF_QUIET_IR,
1855 softc->disk->d_devstat);
1856 softc->flags &= ~DA_FLAG_DIRTY;
1857 xpt_release_ccb(ccb);
1858 }
1859
1860 /* Allow medium removal. */
1861 if ((softc->flags & DA_FLAG_PACK_REMOVABLE) != 0 &&
1862 (softc->quirks & DA_Q_NO_PREVENT) == 0)
1863 daprevent(periph, PR_ALLOW);
1864
1865 da_periph_unhold(periph, DA_REF_CLOSE_HOLD);
1866 }
1867
1868 /*
1869 * If we've got removable media, mark the blocksize as
1870 * unavailable, since it could change when new media is
1871 * inserted.
1872 */
1873 if ((softc->flags & DA_FLAG_PACK_REMOVABLE) != 0)
1874 softc->disk->d_devstat->flags |= DEVSTAT_BS_UNAVAILABLE;
1875
1876 softc->flags &= ~DA_FLAG_OPEN;
1877 while (softc->refcount != 0)
1878 cam_periph_sleep(periph, &softc->refcount, PRIBIO, "daclose", 1);
1879 cam_periph_unlock(periph);
1880 da_periph_release(periph, DA_REF_OPEN);
1881 return (0);
1882 }
1883
1884 static void
daschedule(struct cam_periph * periph)1885 daschedule(struct cam_periph *periph)
1886 {
1887 struct da_softc *softc = (struct da_softc *)periph->softc;
1888
1889 if (softc->state != DA_STATE_NORMAL)
1890 return;
1891
1892 cam_iosched_schedule(softc->cam_iosched, periph);
1893 }
1894
1895 /*
1896 * Actually translate the requested transfer into one the physical driver
1897 * can understand. The transfer is described by a buf and will include
1898 * only one physical transfer.
1899 */
1900 static void
dastrategy(struct bio * bp)1901 dastrategy(struct bio *bp)
1902 {
1903 struct cam_periph *periph;
1904 struct da_softc *softc;
1905
1906 periph = (struct cam_periph *)bp->bio_disk->d_drv1;
1907 softc = (struct da_softc *)periph->softc;
1908
1909 cam_periph_lock(periph);
1910
1911 /*
1912 * If the pack has been invalidated, fail all I/O. The medium is not
1913 * suitable for normal I/O, because one or more is ture:
1914 * - the medium is missing
1915 * - its size is unknown
1916 * - it differs from the medium present at daopen
1917 * - we're tearing the cam periph device down
1918 * Since we have the cam periph lock, we don't need to check it for
1919 * the last condition since PACK_INVALID is set when we invalidate
1920 * the device.
1921 */
1922 if ((softc->flags & DA_FLAG_PACK_INVALID)) {
1923 cam_periph_unlock(periph);
1924 biofinish(bp, NULL, ENXIO);
1925 return;
1926 }
1927
1928 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE, ("dastrategy(%p)\n", bp));
1929
1930 /*
1931 * Zone commands must be ordered, because they can depend on the
1932 * effects of previously issued commands, and they may affect
1933 * commands after them.
1934 */
1935 if (bp->bio_cmd == BIO_ZONE)
1936 bp->bio_flags |= BIO_ORDERED;
1937
1938 /*
1939 * Place it in the queue of disk activities for this disk
1940 */
1941 cam_iosched_queue_work(softc->cam_iosched, bp);
1942
1943 /*
1944 * Schedule ourselves for performing the work.
1945 */
1946 daschedule(periph);
1947 cam_periph_unlock(periph);
1948
1949 return;
1950 }
1951
1952 static int
dadump(void * arg,void * virtual,off_t offset,size_t length)1953 dadump(void *arg, void *virtual, off_t offset, size_t length)
1954 {
1955 struct cam_periph *periph;
1956 struct da_softc *softc;
1957 u_int secsize;
1958 struct ccb_scsiio csio;
1959 struct disk *dp;
1960 int error = 0;
1961
1962 dp = arg;
1963 periph = dp->d_drv1;
1964 softc = (struct da_softc *)periph->softc;
1965 secsize = softc->params.secsize;
1966
1967 /*
1968 * Can't dump to a disk that's not there or changed, for whatever
1969 * reason.
1970 */
1971 if ((softc->flags & DA_FLAG_PACK_INVALID) != 0)
1972 return (ENXIO);
1973
1974 memset(&csio, 0, sizeof(csio));
1975 if (length > 0) {
1976 xpt_setup_ccb(&csio.ccb_h, periph->path, CAM_PRIORITY_NORMAL);
1977 csio.ccb_h.ccb_state = DA_CCB_DUMP;
1978 scsi_read_write(&csio,
1979 /*retries*/0,
1980 /*cbfcnp*/NULL,
1981 MSG_ORDERED_Q_TAG,
1982 /*read*/SCSI_RW_WRITE,
1983 /*byte2*/0,
1984 /*minimum_cmd_size*/ softc->minimum_cmd_size,
1985 offset / secsize,
1986 length / secsize,
1987 /*data_ptr*/(uint8_t *) virtual,
1988 /*dxfer_len*/length,
1989 /*sense_len*/SSD_FULL_SIZE,
1990 da_default_timeout * 1000);
1991 error = cam_periph_runccb((union ccb *)&csio, cam_periph_error,
1992 0, SF_NO_RECOVERY | SF_NO_RETRY, NULL);
1993 if (error != 0)
1994 printf("Aborting dump due to I/O error.\n");
1995 return (error);
1996 }
1997
1998 /*
1999 * Sync the disk cache contents to the physical media.
2000 */
2001 if ((softc->quirks & DA_Q_NO_SYNC_CACHE) == 0) {
2002 xpt_setup_ccb(&csio.ccb_h, periph->path, CAM_PRIORITY_NORMAL);
2003 csio.ccb_h.ccb_state = DA_CCB_DUMP;
2004 scsi_synchronize_cache(&csio,
2005 /*retries*/0,
2006 /*cbfcnp*/NULL,
2007 MSG_SIMPLE_Q_TAG,
2008 /*begin_lba*/0,/* Cover the whole disk */
2009 /*lb_count*/0,
2010 SSD_FULL_SIZE,
2011 5 * 1000);
2012 error = cam_periph_runccb((union ccb *)&csio, cam_periph_error,
2013 0, SF_NO_RECOVERY | SF_NO_RETRY, NULL);
2014 if (error != 0)
2015 xpt_print(periph->path, "Synchronize cache failed\n");
2016 }
2017 return (error);
2018 }
2019
2020 static int
dagetattr(struct bio * bp)2021 dagetattr(struct bio *bp)
2022 {
2023 int ret;
2024 struct cam_periph *periph;
2025
2026 if (g_handleattr_int(bp, "GEOM::canspeedup", da_enable_biospeedup))
2027 return (EJUSTRETURN);
2028
2029 periph = (struct cam_periph *)bp->bio_disk->d_drv1;
2030 cam_periph_lock(periph);
2031 ret = xpt_getattr(bp->bio_data, bp->bio_length, bp->bio_attribute,
2032 periph->path);
2033 cam_periph_unlock(periph);
2034 if (ret == 0)
2035 bp->bio_completed = bp->bio_length;
2036 return ret;
2037 }
2038
2039 static void
dainit(void)2040 dainit(void)
2041 {
2042 cam_status status;
2043
2044 da_ccb_zone = uma_zcreate("da_ccb",
2045 sizeof(struct ccb_scsiio), NULL, NULL, NULL, NULL,
2046 UMA_ALIGN_PTR, 0);
2047
2048 /*
2049 * Install a global async callback. This callback will
2050 * receive async callbacks like "new device found".
2051 */
2052 status = xpt_register_async(AC_FOUND_DEVICE, daasync, NULL, NULL);
2053
2054 if (status != CAM_REQ_CMP) {
2055 printf("da: Failed to attach master async callback "
2056 "due to status 0x%x!\n", status);
2057 } else if (da_send_ordered) {
2058 /* Register our shutdown event handler */
2059 if ((EVENTHANDLER_REGISTER(shutdown_post_sync, dashutdown,
2060 NULL, SHUTDOWN_PRI_DEFAULT)) == NULL)
2061 printf("dainit: shutdown event registration failed!\n");
2062 }
2063 }
2064
2065 /*
2066 * Callback from GEOM, called when it has finished cleaning up its
2067 * resources.
2068 */
2069 static void
dadiskgonecb(struct disk * dp)2070 dadiskgonecb(struct disk *dp)
2071 {
2072 struct cam_periph *periph;
2073
2074 periph = (struct cam_periph *)dp->d_drv1;
2075 da_periph_release(periph, DA_REF_GEOM);
2076 }
2077
2078 static void
daoninvalidate(struct cam_periph * periph)2079 daoninvalidate(struct cam_periph *periph)
2080 {
2081 struct da_softc *softc;
2082
2083 cam_periph_assert(periph, MA_OWNED);
2084 softc = (struct da_softc *)periph->softc;
2085
2086 /*
2087 * De-register any async callbacks.
2088 */
2089 xpt_register_async(0, daasync, periph, periph->path);
2090
2091 softc->flags |= DA_FLAG_PACK_INVALID;
2092 #ifdef CAM_IO_STATS
2093 softc->invalidations++;
2094 #endif
2095
2096 /*
2097 * Return all queued I/O with ENXIO. Transactions may be queued up here
2098 * for retry (since we are called while there's other transactions
2099 * pending). Any requests in the hardware will drain before dacleanup
2100 * is called.
2101 */
2102 cam_iosched_flush(softc->cam_iosched, NULL, ENXIO);
2103
2104 /*
2105 * Tell GEOM that we've gone away, we'll get a callback when it is
2106 * done cleaning up its resources.
2107 */
2108 disk_gone(softc->disk);
2109 }
2110
2111 static void
dacleanup(struct cam_periph * periph)2112 dacleanup(struct cam_periph *periph)
2113 {
2114 struct da_softc *softc;
2115
2116 softc = (struct da_softc *)periph->softc;
2117
2118 cam_periph_unlock(periph);
2119
2120 cam_iosched_fini(softc->cam_iosched);
2121
2122 /*
2123 * If we can't free the sysctl tree, oh well...
2124 */
2125 if ((softc->flags & DA_FLAG_SCTX_INIT) != 0) {
2126 #ifdef CAM_IO_STATS
2127 if (sysctl_ctx_free(&softc->sysctl_stats_ctx) != 0)
2128 xpt_print(periph->path,
2129 "can't remove sysctl stats context\n");
2130 #endif
2131 if (sysctl_ctx_free(&softc->sysctl_ctx) != 0)
2132 xpt_print(periph->path,
2133 "can't remove sysctl context\n");
2134 }
2135
2136 callout_drain(&softc->mediapoll_c);
2137 disk_destroy(softc->disk);
2138 callout_drain(&softc->sendordered_c);
2139 free(softc, M_DEVBUF);
2140 cam_periph_lock(periph);
2141 }
2142
2143 static void
daasync(void * callback_arg,uint32_t code,struct cam_path * path,void * arg)2144 daasync(void *callback_arg, uint32_t code,
2145 struct cam_path *path, void *arg)
2146 {
2147 struct cam_periph *periph;
2148 struct da_softc *softc;
2149
2150 periph = (struct cam_periph *)callback_arg;
2151 switch (code) {
2152 case AC_FOUND_DEVICE: /* callback to create periph, no locking yet */
2153 {
2154 struct ccb_getdev *cgd;
2155 cam_status status;
2156
2157 cgd = (struct ccb_getdev *)arg;
2158 if (cgd == NULL)
2159 break;
2160
2161 if (cgd->protocol != PROTO_SCSI)
2162 break;
2163 if (SID_QUAL(&cgd->inq_data) != SID_QUAL_LU_CONNECTED)
2164 break;
2165 if (SID_TYPE(&cgd->inq_data) != T_DIRECT
2166 && SID_TYPE(&cgd->inq_data) != T_RBC
2167 && SID_TYPE(&cgd->inq_data) != T_OPTICAL
2168 && SID_TYPE(&cgd->inq_data) != T_ZBC_HM)
2169 break;
2170
2171 /*
2172 * Allocate a peripheral instance for
2173 * this device and start the probe
2174 * process.
2175 */
2176 status = cam_periph_alloc(daregister, daoninvalidate,
2177 dacleanup, dastart,
2178 "da", CAM_PERIPH_BIO,
2179 path, daasync,
2180 AC_FOUND_DEVICE, cgd);
2181
2182 if (status != CAM_REQ_CMP
2183 && status != CAM_REQ_INPROG)
2184 printf("daasync: Unable to attach to new device "
2185 "due to status 0x%x\n", status);
2186 return;
2187 }
2188 case AC_ADVINFO_CHANGED: /* Doesn't touch periph */
2189 {
2190 uintptr_t buftype;
2191
2192 buftype = (uintptr_t)arg;
2193 if (buftype == CDAI_TYPE_PHYS_PATH) {
2194 struct da_softc *softc;
2195
2196 softc = periph->softc;
2197 disk_attr_changed(softc->disk, "GEOM::physpath",
2198 M_NOWAIT);
2199 }
2200 break;
2201 }
2202 case AC_UNIT_ATTENTION: /* Called for this path: periph locked */
2203 {
2204 union ccb *ccb;
2205 int error_code, sense_key, asc, ascq;
2206
2207 softc = (struct da_softc *)periph->softc;
2208 ccb = (union ccb *)arg;
2209
2210 /*
2211 * Unit attentions are broadcast to all the LUNs of the device
2212 * so handle all UNIT ATTENTIONs except our own, as they will be
2213 * handled by daerror().
2214 */
2215 if (xpt_path_periph(ccb->ccb_h.path) != periph &&
2216 scsi_extract_sense_ccb(ccb,
2217 &error_code, &sense_key, &asc, &ascq)) {
2218 if (asc == 0x2A && ascq == 0x09) {
2219 /* 2a/9: CAPACITY DATA HAS CHANGED */
2220 xpt_print(ccb->ccb_h.path,
2221 "Capacity data has changed\n");
2222 cam_periph_assert(periph, MA_OWNED);
2223 softc->flags &= ~DA_FLAG_PROBED;
2224 dareprobe(periph);
2225 } else if (asc == 0x28 && ascq == 0x00) {
2226 /* 28/0: NOT READY TO READY CHANGE, MEDIUM MAY HAVE CHANGED */
2227 cam_periph_assert(periph, MA_OWNED);
2228 softc->flags &= ~DA_FLAG_PROBED;
2229 disk_media_changed(softc->disk, M_NOWAIT);
2230 } else if (asc == 0x3F && ascq == 0x03) {
2231 /* 3f/3: INQUIRY DATA HAS CHANGED */
2232 xpt_print(ccb->ccb_h.path,
2233 "INQUIRY data has changed\n");
2234 cam_periph_assert(periph, MA_OWNED);
2235 softc->flags &= ~DA_FLAG_PROBED;
2236 dareprobe(periph);
2237 }
2238 }
2239 break;
2240 }
2241 case AC_SCSI_AEN: /* Called for this path: periph locked */
2242 /*
2243 * Appears to be currently unused for SCSI devices, only ata SIMs
2244 * generate this.
2245 */
2246 cam_periph_assert(periph, MA_OWNED);
2247 softc = (struct da_softc *)periph->softc;
2248 if (!cam_iosched_has_work_flags(softc->cam_iosched, DA_WORK_TUR) &&
2249 (softc->flags & DA_FLAG_TUR_PENDING) == 0) {
2250 if (da_periph_acquire(periph, DA_REF_TUR) == 0) {
2251 cam_iosched_set_work_flags(softc->cam_iosched, DA_WORK_TUR);
2252 daschedule(periph);
2253 }
2254 }
2255 /* FALLTHROUGH */
2256 case AC_SENT_BDR: /* Called for this path: periph locked */
2257 case AC_BUS_RESET: /* Called for this path: periph locked */
2258 {
2259 struct ccb_hdr *ccbh;
2260
2261 cam_periph_assert(periph, MA_OWNED);
2262 softc = (struct da_softc *)periph->softc;
2263 /*
2264 * Don't fail on the expected unit attention
2265 * that will occur.
2266 */
2267 softc->flags |= DA_FLAG_RETRY_UA;
2268 LIST_FOREACH(ccbh, &softc->pending_ccbs, periph_links.le)
2269 ccbh->ccb_state |= DA_CCB_RETRY_UA;
2270 break;
2271 }
2272 case AC_INQ_CHANGED: /* Called for this path: periph locked */
2273 cam_periph_assert(periph, MA_OWNED);
2274 softc = (struct da_softc *)periph->softc;
2275 softc->flags &= ~DA_FLAG_PROBED;
2276 dareprobe(periph);
2277 break;
2278 default:
2279 break;
2280 }
2281 cam_periph_async(periph, code, path, arg);
2282 }
2283
2284 static void
dasysctlinit(void * context,int pending)2285 dasysctlinit(void *context, int pending)
2286 {
2287 struct cam_periph *periph;
2288 struct da_softc *softc;
2289 char tmpstr[32], tmpstr2[16];
2290 struct ccb_trans_settings cts;
2291
2292 periph = (struct cam_periph *)context;
2293 /*
2294 * periph was held for us when this task was enqueued
2295 */
2296 if (periph->flags & CAM_PERIPH_INVALID) {
2297 da_periph_release(periph, DA_REF_SYSCTL);
2298 return;
2299 }
2300
2301 softc = (struct da_softc *)periph->softc;
2302 snprintf(tmpstr, sizeof(tmpstr), "CAM DA unit %d", periph->unit_number);
2303 snprintf(tmpstr2, sizeof(tmpstr2), "%d", periph->unit_number);
2304
2305 sysctl_ctx_init(&softc->sysctl_ctx);
2306 cam_periph_lock(periph);
2307 softc->flags |= DA_FLAG_SCTX_INIT;
2308 cam_periph_unlock(periph);
2309 softc->sysctl_tree = SYSCTL_ADD_NODE_WITH_LABEL(&softc->sysctl_ctx,
2310 SYSCTL_STATIC_CHILDREN(_kern_cam_da), OID_AUTO, tmpstr2,
2311 CTLFLAG_RD | CTLFLAG_MPSAFE, 0, tmpstr, "device_index");
2312 if (softc->sysctl_tree == NULL) {
2313 printf("dasysctlinit: unable to allocate sysctl tree\n");
2314 da_periph_release(periph, DA_REF_SYSCTL);
2315 return;
2316 }
2317
2318 /*
2319 * Now register the sysctl handler, so the user can change the value on
2320 * the fly.
2321 */
2322 SYSCTL_ADD_PROC(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree),
2323 OID_AUTO, "delete_method",
2324 CTLTYPE_STRING | CTLFLAG_RWTUN | CTLFLAG_MPSAFE,
2325 softc, 0, dadeletemethodsysctl, "A",
2326 "BIO_DELETE execution method");
2327 SYSCTL_ADD_PROC(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree),
2328 OID_AUTO, "delete_max",
2329 CTLTYPE_U64 | CTLFLAG_RW | CTLFLAG_MPSAFE,
2330 softc, 0, dadeletemaxsysctl, "Q",
2331 "Maximum BIO_DELETE size");
2332 SYSCTL_ADD_PROC(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree),
2333 OID_AUTO, "minimum_cmd_size",
2334 CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_MPSAFE,
2335 &softc->minimum_cmd_size, 0, dacmdsizesysctl, "I",
2336 "Minimum CDB size");
2337 SYSCTL_ADD_UQUAD(&softc->sysctl_ctx,
2338 SYSCTL_CHILDREN(softc->sysctl_tree), OID_AUTO,
2339 "trim_count", CTLFLAG_RD, &softc->trim_count,
2340 "Total number of unmap/dsm commands sent");
2341 SYSCTL_ADD_UQUAD(&softc->sysctl_ctx,
2342 SYSCTL_CHILDREN(softc->sysctl_tree), OID_AUTO,
2343 "trim_ranges", CTLFLAG_RD, &softc->trim_ranges,
2344 "Total number of ranges in unmap/dsm commands");
2345 SYSCTL_ADD_UQUAD(&softc->sysctl_ctx,
2346 SYSCTL_CHILDREN(softc->sysctl_tree), OID_AUTO,
2347 "trim_lbas", CTLFLAG_RD, &softc->trim_lbas,
2348 "Total lbas in the unmap/dsm commands sent");
2349
2350 SYSCTL_ADD_PROC(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree),
2351 OID_AUTO, "zone_mode",
2352 CTLTYPE_STRING | CTLFLAG_RD | CTLFLAG_MPSAFE,
2353 softc, 0, dazonemodesysctl, "A",
2354 "Zone Mode");
2355 SYSCTL_ADD_PROC(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree),
2356 OID_AUTO, "zone_support",
2357 CTLTYPE_STRING | CTLFLAG_RD | CTLFLAG_MPSAFE,
2358 softc, 0, dazonesupsysctl, "A",
2359 "Zone Support");
2360 SYSCTL_ADD_UQUAD(&softc->sysctl_ctx,
2361 SYSCTL_CHILDREN(softc->sysctl_tree), OID_AUTO,
2362 "optimal_seq_zones", CTLFLAG_RD, &softc->optimal_seq_zones,
2363 "Optimal Number of Open Sequential Write Preferred Zones");
2364 SYSCTL_ADD_UQUAD(&softc->sysctl_ctx,
2365 SYSCTL_CHILDREN(softc->sysctl_tree), OID_AUTO,
2366 "optimal_nonseq_zones", CTLFLAG_RD,
2367 &softc->optimal_nonseq_zones,
2368 "Optimal Number of Non-Sequentially Written Sequential Write "
2369 "Preferred Zones");
2370 SYSCTL_ADD_UQUAD(&softc->sysctl_ctx,
2371 SYSCTL_CHILDREN(softc->sysctl_tree), OID_AUTO,
2372 "max_seq_zones", CTLFLAG_RD, &softc->max_seq_zones,
2373 "Maximum Number of Open Sequential Write Required Zones");
2374
2375 SYSCTL_ADD_INT(&softc->sysctl_ctx,
2376 SYSCTL_CHILDREN(softc->sysctl_tree),
2377 OID_AUTO,
2378 "error_inject",
2379 CTLFLAG_RW,
2380 &softc->error_inject,
2381 0,
2382 "error_inject leaf");
2383
2384 SYSCTL_ADD_INT(&softc->sysctl_ctx,
2385 SYSCTL_CHILDREN(softc->sysctl_tree),
2386 OID_AUTO,
2387 "p_type",
2388 CTLFLAG_RD,
2389 &softc->p_type,
2390 0,
2391 "DIF protection type");
2392
2393 SYSCTL_ADD_PROC(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree),
2394 OID_AUTO, "flags", CTLTYPE_STRING | CTLFLAG_RD | CTLFLAG_MPSAFE,
2395 softc, 0, daflagssysctl, "A",
2396 "Flags for drive");
2397 SYSCTL_ADD_PROC(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree),
2398 OID_AUTO, "rotating", CTLTYPE_INT | CTLFLAG_RD | CTLFLAG_MPSAFE,
2399 &softc->flags, (u_int)DA_FLAG_ROTATING, dabitsysctl, "I",
2400 "Rotating media *DEPRECATED* gone in FreeBSD 15");
2401 SYSCTL_ADD_PROC(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree),
2402 OID_AUTO, "unmapped_io", CTLTYPE_INT | CTLFLAG_RD | CTLFLAG_MPSAFE,
2403 &softc->flags, (u_int)DA_FLAG_UNMAPPEDIO, dabitsysctl, "I",
2404 "Unmapped I/O support *DEPRECATED* gone in FreeBSD 15");
2405
2406 #ifdef CAM_TEST_FAILURE
2407 SYSCTL_ADD_PROC(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree),
2408 OID_AUTO, "invalidate", CTLTYPE_U64 | CTLFLAG_RW | CTLFLAG_MPSAFE,
2409 periph, 0, cam_periph_invalidate_sysctl, "I",
2410 "Write 1 to invalidate the drive immediately");
2411 #endif
2412
2413 /*
2414 * Add some addressing info.
2415 */
2416 memset(&cts, 0, sizeof (cts));
2417 xpt_setup_ccb(&cts.ccb_h, periph->path, CAM_PRIORITY_NONE);
2418 cts.ccb_h.func_code = XPT_GET_TRAN_SETTINGS;
2419 cts.type = CTS_TYPE_CURRENT_SETTINGS;
2420 cam_periph_lock(periph);
2421 xpt_action((union ccb *)&cts);
2422 cam_periph_unlock(periph);
2423 if (cts.ccb_h.status != CAM_REQ_CMP) {
2424 da_periph_release(periph, DA_REF_SYSCTL);
2425 return;
2426 }
2427 if (cts.protocol == PROTO_SCSI && cts.transport == XPORT_FC) {
2428 struct ccb_trans_settings_fc *fc = &cts.xport_specific.fc;
2429 if (fc->valid & CTS_FC_VALID_WWPN) {
2430 softc->wwpn = fc->wwpn;
2431 SYSCTL_ADD_UQUAD(&softc->sysctl_ctx,
2432 SYSCTL_CHILDREN(softc->sysctl_tree),
2433 OID_AUTO, "wwpn", CTLFLAG_RD,
2434 &softc->wwpn, "World Wide Port Name");
2435 }
2436 }
2437
2438 #ifdef CAM_IO_STATS
2439 /*
2440 * Now add some useful stats.
2441 * XXX These should live in cam_periph and be common to all periphs
2442 */
2443 softc->sysctl_stats_tree = SYSCTL_ADD_NODE(&softc->sysctl_stats_ctx,
2444 SYSCTL_CHILDREN(softc->sysctl_tree), OID_AUTO, "stats",
2445 CTLFLAG_RD | CTLFLAG_MPSAFE, 0, "Statistics");
2446 SYSCTL_ADD_INT(&softc->sysctl_stats_ctx,
2447 SYSCTL_CHILDREN(softc->sysctl_stats_tree),
2448 OID_AUTO,
2449 "errors",
2450 CTLFLAG_RD,
2451 &softc->errors,
2452 0,
2453 "Transport errors reported by the SIM");
2454 SYSCTL_ADD_INT(&softc->sysctl_stats_ctx,
2455 SYSCTL_CHILDREN(softc->sysctl_stats_tree),
2456 OID_AUTO,
2457 "timeouts",
2458 CTLFLAG_RD,
2459 &softc->timeouts,
2460 0,
2461 "Device timeouts reported by the SIM");
2462 SYSCTL_ADD_INT(&softc->sysctl_stats_ctx,
2463 SYSCTL_CHILDREN(softc->sysctl_stats_tree),
2464 OID_AUTO,
2465 "pack_invalidations",
2466 CTLFLAG_RD,
2467 &softc->invalidations,
2468 0,
2469 "Device pack invalidations");
2470 #endif
2471
2472 cam_iosched_sysctl_init(softc->cam_iosched, &softc->sysctl_ctx,
2473 softc->sysctl_tree);
2474
2475 da_periph_release(periph, DA_REF_SYSCTL);
2476 }
2477
2478 static int
dadeletemaxsysctl(SYSCTL_HANDLER_ARGS)2479 dadeletemaxsysctl(SYSCTL_HANDLER_ARGS)
2480 {
2481 int error;
2482 uint64_t value;
2483 struct da_softc *softc;
2484
2485 softc = (struct da_softc *)arg1;
2486
2487 value = softc->disk->d_delmaxsize;
2488 error = sysctl_handle_64(oidp, &value, 0, req);
2489 if ((error != 0) || (req->newptr == NULL))
2490 return (error);
2491
2492 /* only accept values smaller than the calculated value */
2493 if (value > dadeletemaxsize(softc, softc->delete_method)) {
2494 return (EINVAL);
2495 }
2496 softc->disk->d_delmaxsize = value;
2497
2498 return (0);
2499 }
2500
2501 static int
dacmdsizesysctl(SYSCTL_HANDLER_ARGS)2502 dacmdsizesysctl(SYSCTL_HANDLER_ARGS)
2503 {
2504 int error, value;
2505
2506 value = *(int *)arg1;
2507
2508 error = sysctl_handle_int(oidp, &value, 0, req);
2509
2510 if ((error != 0)
2511 || (req->newptr == NULL))
2512 return (error);
2513
2514 /*
2515 * Acceptable values here are 6, 10, 12 or 16.
2516 */
2517 if (value < 6)
2518 value = 6;
2519 else if ((value > 6)
2520 && (value <= 10))
2521 value = 10;
2522 else if ((value > 10)
2523 && (value <= 12))
2524 value = 12;
2525 else if (value > 12)
2526 value = 16;
2527
2528 *(int *)arg1 = value;
2529
2530 return (0);
2531 }
2532
2533 static int
dasysctlsofttimeout(SYSCTL_HANDLER_ARGS)2534 dasysctlsofttimeout(SYSCTL_HANDLER_ARGS)
2535 {
2536 sbintime_t value;
2537 int error;
2538
2539 value = da_default_softtimeout / SBT_1MS;
2540
2541 error = sysctl_handle_int(oidp, (int *)&value, 0, req);
2542 if ((error != 0) || (req->newptr == NULL))
2543 return (error);
2544
2545 /* XXX Should clip this to a reasonable level */
2546 if (value > da_default_timeout * 1000)
2547 return (EINVAL);
2548
2549 da_default_softtimeout = value * SBT_1MS;
2550 return (0);
2551 }
2552
2553 static void
dadeletemethodset(struct da_softc * softc,da_delete_methods delete_method)2554 dadeletemethodset(struct da_softc *softc, da_delete_methods delete_method)
2555 {
2556
2557 softc->delete_method = delete_method;
2558 softc->disk->d_delmaxsize = dadeletemaxsize(softc, delete_method);
2559 softc->delete_func = da_delete_functions[delete_method];
2560
2561 if (softc->delete_method > DA_DELETE_DISABLE)
2562 softc->disk->d_flags |= DISKFLAG_CANDELETE;
2563 else
2564 softc->disk->d_flags &= ~DISKFLAG_CANDELETE;
2565 }
2566
2567 static off_t
dadeletemaxsize(struct da_softc * softc,da_delete_methods delete_method)2568 dadeletemaxsize(struct da_softc *softc, da_delete_methods delete_method)
2569 {
2570 off_t sectors;
2571
2572 switch(delete_method) {
2573 case DA_DELETE_UNMAP:
2574 sectors = (off_t)softc->unmap_max_lba;
2575 break;
2576 case DA_DELETE_ATA_TRIM:
2577 sectors = (off_t)ATA_DSM_RANGE_MAX * softc->trim_max_ranges;
2578 break;
2579 case DA_DELETE_WS16:
2580 sectors = omin(softc->ws_max_blks, WS16_MAX_BLKS);
2581 break;
2582 case DA_DELETE_ZERO:
2583 case DA_DELETE_WS10:
2584 sectors = omin(softc->ws_max_blks, WS10_MAX_BLKS);
2585 break;
2586 default:
2587 return 0;
2588 }
2589
2590 return (off_t)softc->params.secsize *
2591 omin(sectors, softc->params.sectors);
2592 }
2593
2594 static void
daprobedone(struct cam_periph * periph,union ccb * ccb)2595 daprobedone(struct cam_periph *periph, union ccb *ccb)
2596 {
2597 struct da_softc *softc;
2598
2599 softc = (struct da_softc *)periph->softc;
2600
2601 cam_periph_assert(periph, MA_OWNED);
2602
2603 dadeletemethodchoose(softc, DA_DELETE_NONE);
2604
2605 if (bootverbose && (softc->flags & DA_FLAG_ANNOUNCED) == 0) {
2606 char buf[80];
2607 int i, sep;
2608
2609 snprintf(buf, sizeof(buf), "Delete methods: <");
2610 sep = 0;
2611 for (i = 0; i <= DA_DELETE_MAX; i++) {
2612 if ((softc->delete_available & (1 << i)) == 0 &&
2613 i != softc->delete_method)
2614 continue;
2615 if (sep)
2616 strlcat(buf, ",", sizeof(buf));
2617 strlcat(buf, da_delete_method_names[i],
2618 sizeof(buf));
2619 if (i == softc->delete_method)
2620 strlcat(buf, "(*)", sizeof(buf));
2621 sep = 1;
2622 }
2623 strlcat(buf, ">", sizeof(buf));
2624 printf("%s%d: %s\n", periph->periph_name,
2625 periph->unit_number, buf);
2626 }
2627 if ((softc->disk->d_flags & DISKFLAG_WRITE_PROTECT) != 0 &&
2628 (softc->flags & DA_FLAG_ANNOUNCED) == 0) {
2629 printf("%s%d: Write Protected\n", periph->periph_name,
2630 periph->unit_number);
2631 }
2632
2633 /*
2634 * Since our peripheral may be invalidated by an error
2635 * above or an external event, we must release our CCB
2636 * before releasing the probe lock on the peripheral.
2637 * The peripheral will only go away once the last lock
2638 * is removed, and we need it around for the CCB release
2639 * operation.
2640 */
2641 xpt_release_ccb(ccb);
2642 softc->state = DA_STATE_NORMAL;
2643 softc->flags |= DA_FLAG_PROBED;
2644 daschedule(periph);
2645 wakeup(&softc->disk->d_mediasize);
2646 if ((softc->flags & DA_FLAG_ANNOUNCED) == 0) {
2647 softc->flags |= DA_FLAG_ANNOUNCED;
2648
2649 /*
2650 * We'll release this reference once GEOM calls us back via
2651 * dadiskgonecb(), telling us that our provider has been freed.
2652 */
2653 if (da_periph_acquire(periph, DA_REF_GEOM) == 0)
2654 disk_create(softc->disk, DISK_VERSION);
2655
2656 cam_periph_release_boot(periph);
2657 }
2658 da_periph_release_locked(periph, DA_REF_REPROBE);
2659 }
2660
2661 static void
dadeletemethodchoose(struct da_softc * softc,da_delete_methods default_method)2662 dadeletemethodchoose(struct da_softc *softc, da_delete_methods default_method)
2663 {
2664 int i, methods;
2665
2666 /* If available, prefer the method requested by user. */
2667 i = softc->delete_method_pref;
2668 methods = softc->delete_available | (1 << DA_DELETE_DISABLE);
2669 if (methods & (1 << i)) {
2670 dadeletemethodset(softc, i);
2671 return;
2672 }
2673
2674 /* Use the pre-defined order to choose the best performing delete. */
2675 for (i = DA_DELETE_MIN; i <= DA_DELETE_MAX; i++) {
2676 if (i == DA_DELETE_ZERO)
2677 continue;
2678 if (softc->delete_available & (1 << i)) {
2679 dadeletemethodset(softc, i);
2680 return;
2681 }
2682 }
2683
2684 /* Fallback to default. */
2685 dadeletemethodset(softc, default_method);
2686 }
2687
2688 static int
dabitsysctl(SYSCTL_HANDLER_ARGS)2689 dabitsysctl(SYSCTL_HANDLER_ARGS)
2690 {
2691 u_int *flags = arg1;
2692 u_int test = arg2;
2693 int tmpout, error;
2694
2695 tmpout = !!(*flags & test);
2696 error = SYSCTL_OUT(req, &tmpout, sizeof(tmpout));
2697 if (error || !req->newptr)
2698 return (error);
2699
2700 return (EPERM);
2701 }
2702
2703 static int
daflagssysctl(SYSCTL_HANDLER_ARGS)2704 daflagssysctl(SYSCTL_HANDLER_ARGS)
2705 {
2706 struct sbuf sbuf;
2707 struct da_softc *softc = arg1;
2708 int error;
2709
2710 sbuf_new_for_sysctl(&sbuf, NULL, 0, req);
2711 if (softc->flags != 0)
2712 sbuf_printf(&sbuf, "0x%b", (unsigned)softc->flags, DA_FLAG_STRING);
2713 else
2714 sbuf_putc(&sbuf, '0');
2715 error = sbuf_finish(&sbuf);
2716 sbuf_delete(&sbuf);
2717
2718 return (error);
2719 }
2720
2721 static int
dadeletemethodsysctl(SYSCTL_HANDLER_ARGS)2722 dadeletemethodsysctl(SYSCTL_HANDLER_ARGS)
2723 {
2724 char buf[16];
2725 const char *p;
2726 struct da_softc *softc;
2727 int i, error, value;
2728
2729 softc = (struct da_softc *)arg1;
2730
2731 value = softc->delete_method;
2732 if (value < 0 || value > DA_DELETE_MAX)
2733 p = "UNKNOWN";
2734 else
2735 p = da_delete_method_names[value];
2736 strncpy(buf, p, sizeof(buf));
2737 error = sysctl_handle_string(oidp, buf, sizeof(buf), req);
2738 if (error != 0 || req->newptr == NULL)
2739 return (error);
2740 for (i = 0; i <= DA_DELETE_MAX; i++) {
2741 if (strcmp(buf, da_delete_method_names[i]) == 0)
2742 break;
2743 }
2744 if (i > DA_DELETE_MAX)
2745 return (EINVAL);
2746 softc->delete_method_pref = i;
2747 dadeletemethodchoose(softc, DA_DELETE_NONE);
2748 return (0);
2749 }
2750
2751 static int
dazonemodesysctl(SYSCTL_HANDLER_ARGS)2752 dazonemodesysctl(SYSCTL_HANDLER_ARGS)
2753 {
2754 char tmpbuf[40];
2755 struct da_softc *softc;
2756 int error;
2757
2758 softc = (struct da_softc *)arg1;
2759
2760 switch (softc->zone_mode) {
2761 case DA_ZONE_DRIVE_MANAGED:
2762 snprintf(tmpbuf, sizeof(tmpbuf), "Drive Managed");
2763 break;
2764 case DA_ZONE_HOST_AWARE:
2765 snprintf(tmpbuf, sizeof(tmpbuf), "Host Aware");
2766 break;
2767 case DA_ZONE_HOST_MANAGED:
2768 snprintf(tmpbuf, sizeof(tmpbuf), "Host Managed");
2769 break;
2770 case DA_ZONE_NONE:
2771 default:
2772 snprintf(tmpbuf, sizeof(tmpbuf), "Not Zoned");
2773 break;
2774 }
2775
2776 error = sysctl_handle_string(oidp, tmpbuf, sizeof(tmpbuf), req);
2777
2778 return (error);
2779 }
2780
2781 static int
dazonesupsysctl(SYSCTL_HANDLER_ARGS)2782 dazonesupsysctl(SYSCTL_HANDLER_ARGS)
2783 {
2784 struct da_softc *softc;
2785 struct sbuf sb;
2786 int error, first;
2787 unsigned int i;
2788
2789 softc = (struct da_softc *)arg1;
2790
2791 first = 1;
2792 sbuf_new_for_sysctl(&sb, NULL, 0, req);
2793
2794 for (i = 0; i < sizeof(da_zone_desc_table) /
2795 sizeof(da_zone_desc_table[0]); i++) {
2796 if (softc->zone_flags & da_zone_desc_table[i].value) {
2797 if (first == 0)
2798 sbuf_cat(&sb, ", ");
2799 else
2800 first = 0;
2801 sbuf_cat(&sb, da_zone_desc_table[i].desc);
2802 }
2803 }
2804
2805 if (first == 1)
2806 sbuf_cat(&sb, "None");
2807
2808 error = sbuf_finish(&sb);
2809 sbuf_delete(&sb);
2810 return (error);
2811 }
2812
2813 static cam_status
daregister(struct cam_periph * periph,void * arg)2814 daregister(struct cam_periph *periph, void *arg)
2815 {
2816 struct da_softc *softc;
2817 struct ccb_pathinq cpi;
2818 struct ccb_getdev *cgd;
2819 char tmpstr[80];
2820 caddr_t match;
2821 int quirks;
2822
2823 cgd = (struct ccb_getdev *)arg;
2824 if (cgd == NULL) {
2825 printf("daregister: no getdev CCB, can't register device\n");
2826 return(CAM_REQ_CMP_ERR);
2827 }
2828
2829 softc = (struct da_softc *)malloc(sizeof(*softc), M_DEVBUF,
2830 M_NOWAIT|M_ZERO);
2831
2832 if (softc == NULL) {
2833 printf("daregister: Unable to probe new device. "
2834 "Unable to allocate softc\n");
2835 return(CAM_REQ_CMP_ERR);
2836 }
2837
2838 LIST_INIT(&softc->pending_ccbs);
2839 softc->state = DA_STATE_PROBE_WP;
2840 bioq_init(&softc->delete_run_queue);
2841 if (SID_IS_REMOVABLE(&cgd->inq_data))
2842 softc->flags |= DA_FLAG_PACK_REMOVABLE;
2843 softc->unmap_max_ranges = UNMAP_MAX_RANGES;
2844 softc->unmap_max_lba = UNMAP_RANGE_MAX;
2845 softc->unmap_gran = 0;
2846 softc->unmap_gran_align = 0;
2847 softc->ws_max_blks = WS16_MAX_BLKS;
2848 softc->trim_max_ranges = ATA_TRIM_MAX_RANGES;
2849 softc->flags |= DA_FLAG_ROTATING;
2850
2851 periph->softc = softc;
2852
2853 /*
2854 * See if this device has any quirks.
2855 */
2856 match = cam_quirkmatch((caddr_t)&cgd->inq_data,
2857 (caddr_t)da_quirk_table,
2858 nitems(da_quirk_table),
2859 sizeof(*da_quirk_table), scsi_inquiry_match);
2860
2861 if (match != NULL)
2862 softc->quirks = ((struct da_quirk_entry *)match)->quirks;
2863 else
2864 softc->quirks = DA_Q_NONE;
2865
2866 /* Check if the SIM does not want 6 byte commands */
2867 xpt_path_inq(&cpi, periph->path);
2868 if (cpi.ccb_h.status == CAM_REQ_CMP && (cpi.hba_misc & PIM_NO_6_BYTE))
2869 softc->quirks |= DA_Q_NO_6_BYTE;
2870
2871 /* Override quirks if tunable is set */
2872 snprintf(tmpstr, sizeof(tmpstr), "kern.cam.da.%d.quirks",
2873 periph->unit_number);
2874 quirks = softc->quirks;
2875 TUNABLE_INT_FETCH(tmpstr, &quirks);
2876 softc->quirks = quirks;
2877
2878 if (SID_TYPE(&cgd->inq_data) == T_ZBC_HM)
2879 softc->zone_mode = DA_ZONE_HOST_MANAGED;
2880 else if (softc->quirks & DA_Q_SMR_DM)
2881 softc->zone_mode = DA_ZONE_DRIVE_MANAGED;
2882 else
2883 softc->zone_mode = DA_ZONE_NONE;
2884
2885 if (softc->zone_mode != DA_ZONE_NONE) {
2886 if (scsi_vpd_supported_page(periph, SVPD_ATA_INFORMATION)) {
2887 if (scsi_vpd_supported_page(periph, SVPD_ZONED_BDC))
2888 softc->zone_interface = DA_ZONE_IF_ATA_SAT;
2889 else
2890 softc->zone_interface = DA_ZONE_IF_ATA_PASS;
2891 } else
2892 softc->zone_interface = DA_ZONE_IF_SCSI;
2893 }
2894
2895 TASK_INIT(&softc->sysctl_task, 0, dasysctlinit, periph);
2896
2897 /*
2898 * Let XPT know we can use UMA-allocated CCBs.
2899 */
2900 if (da_enable_uma_ccbs) {
2901 KASSERT(da_ccb_zone != NULL,
2902 ("%s: NULL da_ccb_zone", __func__));
2903 periph->ccb_zone = da_ccb_zone;
2904 }
2905
2906 /*
2907 * Take a reference on the periph while dastart is called to finish the
2908 * probe. The reference will be dropped in dadone at the end of probe.
2909 */
2910 (void)da_periph_acquire(periph, DA_REF_REPROBE);
2911
2912 /*
2913 * Schedule a periodic event to occasionally send an
2914 * ordered tag to a device.
2915 */
2916 callout_init_mtx(&softc->sendordered_c, cam_periph_mtx(periph), 0);
2917 callout_reset_sbt(&softc->sendordered_c,
2918 SBT_1S / DA_ORDEREDTAG_INTERVAL * da_default_timeout, 0,
2919 dasendorderedtag, periph, C_PREL(1));
2920
2921 cam_periph_unlock(periph);
2922 /*
2923 * RBC devices don't have to support READ(6), only READ(10).
2924 */
2925 if (softc->quirks & DA_Q_NO_6_BYTE || SID_TYPE(&cgd->inq_data) == T_RBC)
2926 softc->minimum_cmd_size = 10;
2927 else
2928 softc->minimum_cmd_size = 6;
2929
2930 /*
2931 * Load the user's default, if any.
2932 */
2933 snprintf(tmpstr, sizeof(tmpstr), "kern.cam.da.%d.minimum_cmd_size",
2934 periph->unit_number);
2935 TUNABLE_INT_FETCH(tmpstr, &softc->minimum_cmd_size);
2936
2937 /*
2938 * 6, 10, 12 and 16 are the currently permissible values.
2939 */
2940 if (softc->minimum_cmd_size > 12)
2941 softc->minimum_cmd_size = 16;
2942 else if (softc->minimum_cmd_size > 10)
2943 softc->minimum_cmd_size = 12;
2944 else if (softc->minimum_cmd_size > 6)
2945 softc->minimum_cmd_size = 10;
2946 else
2947 softc->minimum_cmd_size = 6;
2948
2949 /* On first PROBE_WP request all more pages, then adjust. */
2950 softc->mode_page = SMS_ALL_PAGES_PAGE;
2951
2952 /* Predict whether device may support READ CAPACITY(16). */
2953 if (SID_ANSI_REV(&cgd->inq_data) >= SCSI_REV_SPC3 &&
2954 (softc->quirks & DA_Q_NO_RC16) == 0) {
2955 softc->flags |= DA_FLAG_CAN_RC16;
2956 }
2957
2958 /*
2959 * Register this media as a disk.
2960 */
2961 softc->disk = disk_alloc();
2962 softc->disk->d_devstat = devstat_new_entry(periph->periph_name,
2963 periph->unit_number, 0,
2964 DEVSTAT_BS_UNAVAILABLE,
2965 SID_TYPE(&cgd->inq_data) |
2966 XPORT_DEVSTAT_TYPE(cpi.transport),
2967 DEVSTAT_PRIORITY_DISK);
2968 softc->disk->d_open = daopen;
2969 softc->disk->d_close = daclose;
2970 softc->disk->d_strategy = dastrategy;
2971 if (cam_sim_pollable(periph->sim))
2972 softc->disk->d_dump = dadump;
2973 softc->disk->d_getattr = dagetattr;
2974 softc->disk->d_gone = dadiskgonecb;
2975 softc->disk->d_name = "da";
2976 softc->disk->d_drv1 = periph;
2977 if (cpi.maxio == 0)
2978 softc->maxio = DFLTPHYS; /* traditional default */
2979 else if (cpi.maxio > maxphys)
2980 softc->maxio = maxphys; /* for safety */
2981 else
2982 softc->maxio = cpi.maxio;
2983 if (softc->quirks & DA_Q_128KB)
2984 softc->maxio = min(softc->maxio, 128 * 1024);
2985 softc->disk->d_maxsize = softc->maxio;
2986 softc->disk->d_unit = periph->unit_number;
2987 softc->disk->d_flags = DISKFLAG_DIRECT_COMPLETION | DISKFLAG_CANZONE;
2988 if ((softc->quirks & DA_Q_NO_SYNC_CACHE) == 0)
2989 softc->disk->d_flags |= DISKFLAG_CANFLUSHCACHE;
2990 if ((cpi.hba_misc & PIM_UNMAPPED) != 0) {
2991 softc->flags |= DA_FLAG_UNMAPPEDIO;
2992 softc->disk->d_flags |= DISKFLAG_UNMAPPED_BIO;
2993 }
2994 cam_strvis(softc->disk->d_descr, cgd->inq_data.vendor,
2995 sizeof(cgd->inq_data.vendor), sizeof(softc->disk->d_descr));
2996 strlcat(softc->disk->d_descr, " ", sizeof(softc->disk->d_descr));
2997 cam_strvis(&softc->disk->d_descr[strlen(softc->disk->d_descr)],
2998 cgd->inq_data.product, sizeof(cgd->inq_data.product),
2999 sizeof(softc->disk->d_descr) - strlen(softc->disk->d_descr));
3000 softc->disk->d_hba_vendor = cpi.hba_vendor;
3001 softc->disk->d_hba_device = cpi.hba_device;
3002 softc->disk->d_hba_subvendor = cpi.hba_subvendor;
3003 softc->disk->d_hba_subdevice = cpi.hba_subdevice;
3004 snprintf(softc->disk->d_attachment, sizeof(softc->disk->d_attachment),
3005 "%s%d", cpi.dev_name, cpi.unit_number);
3006
3007 if (cam_iosched_init(&softc->cam_iosched, periph, softc->disk,
3008 daschedule) != 0) {
3009 printf("daregister: Unable to probe new device. "
3010 "Unable to allocate iosched memory\n");
3011 free(softc, M_DEVBUF);
3012 return(CAM_REQ_CMP_ERR);
3013 }
3014
3015 /*
3016 * Add async callbacks for events of interest.
3017 * I don't bother checking if this fails as,
3018 * in most cases, the system will function just
3019 * fine without them and the only alternative
3020 * would be to not attach the device on failure.
3021 */
3022 cam_periph_lock(periph);
3023 xpt_register_async(AC_SENT_BDR | AC_BUS_RESET | AC_LOST_DEVICE |
3024 AC_ADVINFO_CHANGED | AC_SCSI_AEN | AC_UNIT_ATTENTION |
3025 AC_INQ_CHANGED, daasync, periph, periph->path);
3026
3027 /*
3028 * Schedule a periodic media polling events.
3029 */
3030 callout_init_mtx(&softc->mediapoll_c, cam_periph_mtx(periph), 0);
3031 if ((softc->flags & DA_FLAG_PACK_REMOVABLE) &&
3032 (cgd->inq_flags & SID_AEN) == 0 &&
3033 da_poll_period != 0) {
3034 callout_reset_sbt(&softc->mediapoll_c, da_poll_period * SBT_1S,
3035 0, damediapoll, periph, C_PREL(1));
3036 }
3037
3038 /* Released after probe when disk_create() call pass it to GEOM. */
3039 cam_periph_hold_boot(periph);
3040
3041 xpt_schedule(periph, CAM_PRIORITY_DEV);
3042 return(CAM_REQ_CMP);
3043 }
3044
3045 static int
da_zone_bio_to_scsi(int disk_zone_cmd)3046 da_zone_bio_to_scsi(int disk_zone_cmd)
3047 {
3048 switch (disk_zone_cmd) {
3049 case DISK_ZONE_OPEN:
3050 return ZBC_OUT_SA_OPEN;
3051 case DISK_ZONE_CLOSE:
3052 return ZBC_OUT_SA_CLOSE;
3053 case DISK_ZONE_FINISH:
3054 return ZBC_OUT_SA_FINISH;
3055 case DISK_ZONE_RWP:
3056 return ZBC_OUT_SA_RWP;
3057 }
3058
3059 return -1;
3060 }
3061
3062 static int
da_zone_cmd(struct cam_periph * periph,union ccb * ccb,struct bio * bp,int * queue_ccb)3063 da_zone_cmd(struct cam_periph *periph, union ccb *ccb, struct bio *bp,
3064 int *queue_ccb)
3065 {
3066 struct da_softc *softc;
3067 int error;
3068
3069 error = 0;
3070
3071 if (bp->bio_cmd != BIO_ZONE) {
3072 error = EINVAL;
3073 goto bailout;
3074 }
3075
3076 softc = periph->softc;
3077
3078 switch (bp->bio_zone.zone_cmd) {
3079 case DISK_ZONE_OPEN:
3080 case DISK_ZONE_CLOSE:
3081 case DISK_ZONE_FINISH:
3082 case DISK_ZONE_RWP: {
3083 int zone_flags;
3084 int zone_sa;
3085 uint64_t lba;
3086
3087 zone_sa = da_zone_bio_to_scsi(bp->bio_zone.zone_cmd);
3088 if (zone_sa == -1) {
3089 xpt_print(periph->path, "Cannot translate zone "
3090 "cmd %#x to SCSI\n", bp->bio_zone.zone_cmd);
3091 error = EINVAL;
3092 goto bailout;
3093 }
3094
3095 zone_flags = 0;
3096 lba = bp->bio_zone.zone_params.rwp.id;
3097
3098 if (bp->bio_zone.zone_params.rwp.flags &
3099 DISK_ZONE_RWP_FLAG_ALL)
3100 zone_flags |= ZBC_OUT_ALL;
3101
3102 if (softc->zone_interface != DA_ZONE_IF_ATA_PASS) {
3103 scsi_zbc_out(&ccb->csio,
3104 /*retries*/ da_retry_count,
3105 /*cbfcnp*/ dadone,
3106 /*tag_action*/ MSG_SIMPLE_Q_TAG,
3107 /*service_action*/ zone_sa,
3108 /*zone_id*/ lba,
3109 /*zone_flags*/ zone_flags,
3110 /*data_ptr*/ NULL,
3111 /*dxfer_len*/ 0,
3112 /*sense_len*/ SSD_FULL_SIZE,
3113 /*timeout*/ da_default_timeout * 1000);
3114 } else {
3115 /*
3116 * Note that in this case, even though we can
3117 * technically use NCQ, we don't bother for several
3118 * reasons:
3119 * 1. It hasn't been tested on a SAT layer that
3120 * supports it. This is new as of SAT-4.
3121 * 2. Even when there is a SAT layer that supports
3122 * it, that SAT layer will also probably support
3123 * ZBC -> ZAC translation, since they are both
3124 * in the SAT-4 spec.
3125 * 3. Translation will likely be preferable to ATA
3126 * passthrough. LSI / Avago at least single
3127 * steps ATA passthrough commands in the HBA,
3128 * regardless of protocol, so unless that
3129 * changes, there is a performance penalty for
3130 * doing ATA passthrough no matter whether
3131 * you're using NCQ/FPDMA, DMA or PIO.
3132 * 4. It requires a 32-byte CDB, which at least at
3133 * this point in CAM requires a CDB pointer, which
3134 * would require us to allocate an additional bit
3135 * of storage separate from the CCB.
3136 */
3137 error = scsi_ata_zac_mgmt_out(&ccb->csio,
3138 /*retries*/ da_retry_count,
3139 /*cbfcnp*/ dadone,
3140 /*tag_action*/ MSG_SIMPLE_Q_TAG,
3141 /*use_ncq*/ 0,
3142 /*zm_action*/ zone_sa,
3143 /*zone_id*/ lba,
3144 /*zone_flags*/ zone_flags,
3145 /*data_ptr*/ NULL,
3146 /*dxfer_len*/ 0,
3147 /*cdb_storage*/ NULL,
3148 /*cdb_storage_len*/ 0,
3149 /*sense_len*/ SSD_FULL_SIZE,
3150 /*timeout*/ da_default_timeout * 1000);
3151 if (error != 0) {
3152 error = EINVAL;
3153 xpt_print(periph->path,
3154 "scsi_ata_zac_mgmt_out() returned an "
3155 "error!");
3156 goto bailout;
3157 }
3158 }
3159 *queue_ccb = 1;
3160
3161 break;
3162 }
3163 case DISK_ZONE_REPORT_ZONES: {
3164 uint8_t *rz_ptr;
3165 uint32_t num_entries, alloc_size;
3166 struct disk_zone_report *rep;
3167
3168 rep = &bp->bio_zone.zone_params.report;
3169
3170 num_entries = rep->entries_allocated;
3171 if (num_entries == 0) {
3172 xpt_print(periph->path, "No entries allocated for "
3173 "Report Zones request\n");
3174 error = EINVAL;
3175 goto bailout;
3176 }
3177 alloc_size = sizeof(struct scsi_report_zones_hdr) +
3178 (sizeof(struct scsi_report_zones_desc) * num_entries);
3179 alloc_size = min(alloc_size, softc->disk->d_maxsize);
3180 rz_ptr = malloc(alloc_size, M_SCSIDA, M_NOWAIT | M_ZERO);
3181 if (rz_ptr == NULL) {
3182 xpt_print(periph->path, "Unable to allocate memory "
3183 "for Report Zones request\n");
3184 error = ENOMEM;
3185 goto bailout;
3186 }
3187
3188 if (softc->zone_interface != DA_ZONE_IF_ATA_PASS) {
3189 scsi_zbc_in(&ccb->csio,
3190 /*retries*/ da_retry_count,
3191 /*cbcfnp*/ dadone,
3192 /*tag_action*/ MSG_SIMPLE_Q_TAG,
3193 /*service_action*/ ZBC_IN_SA_REPORT_ZONES,
3194 /*zone_start_lba*/ rep->starting_id,
3195 /*zone_options*/ rep->rep_options,
3196 /*data_ptr*/ rz_ptr,
3197 /*dxfer_len*/ alloc_size,
3198 /*sense_len*/ SSD_FULL_SIZE,
3199 /*timeout*/ da_default_timeout * 1000);
3200 } else {
3201 /*
3202 * Note that in this case, even though we can
3203 * technically use NCQ, we don't bother for several
3204 * reasons:
3205 * 1. It hasn't been tested on a SAT layer that
3206 * supports it. This is new as of SAT-4.
3207 * 2. Even when there is a SAT layer that supports
3208 * it, that SAT layer will also probably support
3209 * ZBC -> ZAC translation, since they are both
3210 * in the SAT-4 spec.
3211 * 3. Translation will likely be preferable to ATA
3212 * passthrough. LSI / Avago at least single
3213 * steps ATA passthrough commands in the HBA,
3214 * regardless of protocol, so unless that
3215 * changes, there is a performance penalty for
3216 * doing ATA passthrough no matter whether
3217 * you're using NCQ/FPDMA, DMA or PIO.
3218 * 4. It requires a 32-byte CDB, which at least at
3219 * this point in CAM requires a CDB pointer, which
3220 * would require us to allocate an additional bit
3221 * of storage separate from the CCB.
3222 */
3223 error = scsi_ata_zac_mgmt_in(&ccb->csio,
3224 /*retries*/ da_retry_count,
3225 /*cbcfnp*/ dadone,
3226 /*tag_action*/ MSG_SIMPLE_Q_TAG,
3227 /*use_ncq*/ 0,
3228 /*zm_action*/ ATA_ZM_REPORT_ZONES,
3229 /*zone_id*/ rep->starting_id,
3230 /*zone_flags*/ rep->rep_options,
3231 /*data_ptr*/ rz_ptr,
3232 /*dxfer_len*/ alloc_size,
3233 /*cdb_storage*/ NULL,
3234 /*cdb_storage_len*/ 0,
3235 /*sense_len*/ SSD_FULL_SIZE,
3236 /*timeout*/ da_default_timeout * 1000);
3237 if (error != 0) {
3238 error = EINVAL;
3239 xpt_print(periph->path,
3240 "scsi_ata_zac_mgmt_in() returned an "
3241 "error!");
3242 goto bailout;
3243 }
3244 }
3245
3246 /*
3247 * For BIO_ZONE, this isn't normally needed. However, it
3248 * is used by devstat_end_transaction_bio() to determine
3249 * how much data was transferred.
3250 */
3251 /*
3252 * XXX KDM we have a problem. But I'm not sure how to fix
3253 * it. devstat uses bio_bcount - bio_resid to calculate
3254 * the amount of data transferred. The GEOM disk code
3255 * uses bio_length - bio_resid to calculate the amount of
3256 * data in bio_completed. We have different structure
3257 * sizes above and below the ada(4) driver. So, if we
3258 * use the sizes above, the amount transferred won't be
3259 * quite accurate for devstat. If we use different sizes
3260 * for bio_bcount and bio_length (above and below
3261 * respectively), then the residual needs to match one or
3262 * the other. Everything is calculated after the bio
3263 * leaves the driver, so changing the values around isn't
3264 * really an option. For now, just set the count to the
3265 * passed in length. This means that the calculations
3266 * above (e.g. bio_completed) will be correct, but the
3267 * amount of data reported to devstat will be slightly
3268 * under or overstated.
3269 */
3270 bp->bio_bcount = bp->bio_length;
3271
3272 *queue_ccb = 1;
3273
3274 break;
3275 }
3276 case DISK_ZONE_GET_PARAMS: {
3277 struct disk_zone_disk_params *params;
3278
3279 params = &bp->bio_zone.zone_params.disk_params;
3280 bzero(params, sizeof(*params));
3281
3282 switch (softc->zone_mode) {
3283 case DA_ZONE_DRIVE_MANAGED:
3284 params->zone_mode = DISK_ZONE_MODE_DRIVE_MANAGED;
3285 break;
3286 case DA_ZONE_HOST_AWARE:
3287 params->zone_mode = DISK_ZONE_MODE_HOST_AWARE;
3288 break;
3289 case DA_ZONE_HOST_MANAGED:
3290 params->zone_mode = DISK_ZONE_MODE_HOST_MANAGED;
3291 break;
3292 default:
3293 case DA_ZONE_NONE:
3294 params->zone_mode = DISK_ZONE_MODE_NONE;
3295 break;
3296 }
3297
3298 if (softc->zone_flags & DA_ZONE_FLAG_URSWRZ)
3299 params->flags |= DISK_ZONE_DISK_URSWRZ;
3300
3301 if (softc->zone_flags & DA_ZONE_FLAG_OPT_SEQ_SET) {
3302 params->optimal_seq_zones = softc->optimal_seq_zones;
3303 params->flags |= DISK_ZONE_OPT_SEQ_SET;
3304 }
3305
3306 if (softc->zone_flags & DA_ZONE_FLAG_OPT_NONSEQ_SET) {
3307 params->optimal_nonseq_zones =
3308 softc->optimal_nonseq_zones;
3309 params->flags |= DISK_ZONE_OPT_NONSEQ_SET;
3310 }
3311
3312 if (softc->zone_flags & DA_ZONE_FLAG_MAX_SEQ_SET) {
3313 params->max_seq_zones = softc->max_seq_zones;
3314 params->flags |= DISK_ZONE_MAX_SEQ_SET;
3315 }
3316 if (softc->zone_flags & DA_ZONE_FLAG_RZ_SUP)
3317 params->flags |= DISK_ZONE_RZ_SUP;
3318
3319 if (softc->zone_flags & DA_ZONE_FLAG_OPEN_SUP)
3320 params->flags |= DISK_ZONE_OPEN_SUP;
3321
3322 if (softc->zone_flags & DA_ZONE_FLAG_CLOSE_SUP)
3323 params->flags |= DISK_ZONE_CLOSE_SUP;
3324
3325 if (softc->zone_flags & DA_ZONE_FLAG_FINISH_SUP)
3326 params->flags |= DISK_ZONE_FINISH_SUP;
3327
3328 if (softc->zone_flags & DA_ZONE_FLAG_RWP_SUP)
3329 params->flags |= DISK_ZONE_RWP_SUP;
3330 break;
3331 }
3332 default:
3333 break;
3334 }
3335 bailout:
3336 return (error);
3337 }
3338
3339 static void
dastart(struct cam_periph * periph,union ccb * start_ccb)3340 dastart(struct cam_periph *periph, union ccb *start_ccb)
3341 {
3342 struct da_softc *softc;
3343
3344 cam_periph_assert(periph, MA_OWNED);
3345 softc = (struct da_softc *)periph->softc;
3346
3347 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE, ("dastart\n"));
3348
3349 skipstate:
3350 switch (softc->state) {
3351 case DA_STATE_NORMAL:
3352 {
3353 struct bio *bp;
3354 uint8_t tag_code;
3355
3356 more:
3357 bp = cam_iosched_next_bio(softc->cam_iosched);
3358 if (bp == NULL) {
3359 if (cam_iosched_has_work_flags(softc->cam_iosched,
3360 DA_WORK_TUR)) {
3361 softc->flags |= DA_FLAG_TUR_PENDING;
3362 cam_iosched_clr_work_flags(softc->cam_iosched,
3363 DA_WORK_TUR);
3364 scsi_test_unit_ready(&start_ccb->csio,
3365 /*retries*/ da_retry_count,
3366 dadone_tur,
3367 MSG_SIMPLE_Q_TAG,
3368 SSD_FULL_SIZE,
3369 da_default_timeout * 1000);
3370 start_ccb->ccb_h.ccb_bp = NULL;
3371 start_ccb->ccb_h.ccb_state = DA_CCB_TUR;
3372 xpt_action(start_ccb);
3373 } else
3374 xpt_release_ccb(start_ccb);
3375 break;
3376 }
3377
3378 if (bp->bio_cmd == BIO_DELETE) {
3379 if (softc->delete_func != NULL) {
3380 softc->delete_func(periph, start_ccb, bp);
3381 goto out;
3382 } else {
3383 /*
3384 * Not sure this is possible, but failsafe by
3385 * lying and saying "sure, done."
3386 */
3387 biofinish(bp, NULL, 0);
3388 goto more;
3389 }
3390 }
3391
3392 if (cam_iosched_has_work_flags(softc->cam_iosched,
3393 DA_WORK_TUR)) {
3394 cam_iosched_clr_work_flags(softc->cam_iosched,
3395 DA_WORK_TUR);
3396 da_periph_release_locked(periph, DA_REF_TUR);
3397 }
3398
3399 if ((bp->bio_flags & BIO_ORDERED) != 0 ||
3400 (softc->flags & DA_FLAG_NEED_OTAG) != 0) {
3401 softc->flags &= ~DA_FLAG_NEED_OTAG;
3402 softc->flags |= DA_FLAG_WAS_OTAG;
3403 tag_code = MSG_ORDERED_Q_TAG;
3404 } else {
3405 tag_code = MSG_SIMPLE_Q_TAG;
3406 }
3407
3408 switch (bp->bio_cmd) {
3409 case BIO_WRITE:
3410 case BIO_READ:
3411 {
3412 void *data_ptr;
3413 int rw_op;
3414
3415 biotrack(bp, __func__);
3416
3417 if (bp->bio_cmd == BIO_WRITE) {
3418 softc->flags |= DA_FLAG_DIRTY;
3419 rw_op = SCSI_RW_WRITE;
3420 } else {
3421 rw_op = SCSI_RW_READ;
3422 }
3423
3424 data_ptr = bp->bio_data;
3425 if ((bp->bio_flags & (BIO_UNMAPPED|BIO_VLIST)) != 0) {
3426 rw_op |= SCSI_RW_BIO;
3427 data_ptr = bp;
3428 }
3429
3430 scsi_read_write(&start_ccb->csio,
3431 /*retries*/da_retry_count,
3432 /*cbfcnp*/dadone,
3433 /*tag_action*/tag_code,
3434 rw_op,
3435 /*byte2*/0,
3436 softc->minimum_cmd_size,
3437 /*lba*/bp->bio_pblkno,
3438 /*block_count*/bp->bio_bcount /
3439 softc->params.secsize,
3440 data_ptr,
3441 /*dxfer_len*/ bp->bio_bcount,
3442 /*sense_len*/SSD_FULL_SIZE,
3443 da_default_timeout * 1000);
3444 #if defined(BUF_TRACKING) || defined(FULL_BUF_TRACKING)
3445 start_ccb->csio.bio = bp;
3446 #endif
3447 break;
3448 }
3449 case BIO_FLUSH:
3450 /*
3451 * If we don't support sync cache, or the disk
3452 * isn't dirty, FLUSH is a no-op. Use the
3453 * allocated CCB for the next bio if one is
3454 * available.
3455 */
3456 if ((softc->quirks & DA_Q_NO_SYNC_CACHE) != 0 ||
3457 (softc->flags & DA_FLAG_DIRTY) == 0) {
3458 biodone(bp);
3459 goto skipstate;
3460 }
3461
3462 /*
3463 * BIO_FLUSH doesn't currently communicate
3464 * range data, so we synchronize the cache
3465 * over the whole disk.
3466 */
3467 scsi_synchronize_cache(&start_ccb->csio,
3468 /*retries*/1,
3469 /*cbfcnp*/dadone,
3470 /*tag_action*/tag_code,
3471 /*begin_lba*/0,
3472 /*lb_count*/0,
3473 SSD_FULL_SIZE,
3474 da_default_timeout*1000);
3475 /*
3476 * Clear the dirty flag before sending the command.
3477 * Either this sync cache will be successful, or it
3478 * will fail after a retry. If it fails, it is
3479 * unlikely to be successful if retried later, so
3480 * we'll save ourselves time by just marking the
3481 * device clean.
3482 */
3483 softc->flags &= ~DA_FLAG_DIRTY;
3484 break;
3485 case BIO_ZONE: {
3486 int error, queue_ccb;
3487
3488 queue_ccb = 0;
3489
3490 error = da_zone_cmd(periph, start_ccb, bp, &queue_ccb);
3491 if ((error != 0)
3492 || (queue_ccb == 0)) {
3493 /*
3494 * g_io_deliver will recurisvely call start
3495 * routine for ENOMEM, so drop the periph
3496 * lock to allow that recursion.
3497 */
3498 if (error == ENOMEM)
3499 cam_periph_unlock(periph);
3500 biofinish(bp, NULL, error);
3501 if (error == ENOMEM)
3502 cam_periph_lock(periph);
3503 xpt_release_ccb(start_ccb);
3504 return;
3505 }
3506 break;
3507 }
3508 default:
3509 biofinish(bp, NULL, EOPNOTSUPP);
3510 xpt_release_ccb(start_ccb);
3511 return;
3512 }
3513 start_ccb->ccb_h.ccb_state = DA_CCB_BUFFER_IO;
3514 start_ccb->ccb_h.flags |= CAM_UNLOCKED;
3515 start_ccb->ccb_h.softtimeout = sbttotv(da_default_softtimeout);
3516
3517 out:
3518 LIST_INSERT_HEAD(&softc->pending_ccbs,
3519 &start_ccb->ccb_h, periph_links.le);
3520
3521 /* We expect a unit attention from this device */
3522 if ((softc->flags & DA_FLAG_RETRY_UA) != 0) {
3523 start_ccb->ccb_h.ccb_state |= DA_CCB_RETRY_UA;
3524 softc->flags &= ~DA_FLAG_RETRY_UA;
3525 }
3526
3527 start_ccb->ccb_h.ccb_bp = bp;
3528 softc->refcount++;
3529 cam_periph_unlock(periph);
3530 xpt_action(start_ccb);
3531 cam_periph_lock(periph);
3532
3533 /* May have more work to do, so ensure we stay scheduled */
3534 daschedule(periph);
3535 break;
3536 }
3537 case DA_STATE_PROBE_WP:
3538 {
3539 void *mode_buf;
3540 int mode_buf_len;
3541
3542 if (da_disable_wp_detection || softc->mode_page < 0) {
3543 if ((softc->flags & DA_FLAG_CAN_RC16) != 0)
3544 softc->state = DA_STATE_PROBE_RC16;
3545 else
3546 softc->state = DA_STATE_PROBE_RC;
3547 goto skipstate;
3548 }
3549 mode_buf_len = 192;
3550 mode_buf = malloc(mode_buf_len, M_SCSIDA, M_NOWAIT);
3551 if (mode_buf == NULL) {
3552 xpt_print(periph->path, "Unable to send mode sense - "
3553 "malloc failure\n");
3554 if ((softc->flags & DA_FLAG_CAN_RC16) != 0)
3555 softc->state = DA_STATE_PROBE_RC16;
3556 else
3557 softc->state = DA_STATE_PROBE_RC;
3558 goto skipstate;
3559 }
3560 scsi_mode_sense_len(&start_ccb->csio,
3561 /*retries*/ da_retry_count,
3562 /*cbfcnp*/ dadone_probewp,
3563 /*tag_action*/ MSG_SIMPLE_Q_TAG,
3564 /*dbd*/ FALSE,
3565 /*pc*/ SMS_PAGE_CTRL_CURRENT,
3566 /*page*/ softc->mode_page,
3567 /*param_buf*/ mode_buf,
3568 /*param_len*/ mode_buf_len,
3569 /*minimum_cmd_size*/ softc->minimum_cmd_size,
3570 /*sense_len*/ SSD_FULL_SIZE,
3571 /*timeout*/ da_default_timeout * 1000);
3572 start_ccb->ccb_h.ccb_bp = NULL;
3573 start_ccb->ccb_h.ccb_state = DA_CCB_PROBE_WP;
3574 xpt_action(start_ccb);
3575 break;
3576 }
3577 case DA_STATE_PROBE_RC:
3578 {
3579 struct scsi_read_capacity_data *rcap;
3580
3581 rcap = (struct scsi_read_capacity_data *)
3582 malloc(sizeof(*rcap), M_SCSIDA, M_NOWAIT|M_ZERO);
3583 if (rcap == NULL) {
3584 printf("dastart: Couldn't malloc read_capacity data\n");
3585 /* da_free_periph??? */
3586 break;
3587 }
3588 scsi_read_capacity(&start_ccb->csio,
3589 /*retries*/da_retry_count,
3590 dadone_proberc,
3591 MSG_SIMPLE_Q_TAG,
3592 rcap,
3593 SSD_FULL_SIZE,
3594 /*timeout*/5000);
3595 start_ccb->ccb_h.ccb_bp = NULL;
3596 start_ccb->ccb_h.ccb_state = DA_CCB_PROBE_RC;
3597 xpt_action(start_ccb);
3598 break;
3599 }
3600 case DA_STATE_PROBE_RC16:
3601 {
3602 struct scsi_read_capacity_data_long *rcaplong;
3603
3604 rcaplong = (struct scsi_read_capacity_data_long *)
3605 malloc(sizeof(*rcaplong), M_SCSIDA, M_NOWAIT|M_ZERO);
3606 if (rcaplong == NULL) {
3607 printf("dastart: Couldn't malloc read_capacity data\n");
3608 /* da_free_periph??? */
3609 break;
3610 }
3611 scsi_read_capacity_16(&start_ccb->csio,
3612 /*retries*/ da_retry_count,
3613 /*cbfcnp*/ dadone_proberc,
3614 /*tag_action*/ MSG_SIMPLE_Q_TAG,
3615 /*lba*/ 0,
3616 /*reladr*/ 0,
3617 /*pmi*/ 0,
3618 /*rcap_buf*/ (uint8_t *)rcaplong,
3619 /*rcap_buf_len*/ sizeof(*rcaplong),
3620 /*sense_len*/ SSD_FULL_SIZE,
3621 /*timeout*/ da_default_timeout * 1000);
3622 start_ccb->ccb_h.ccb_bp = NULL;
3623 start_ccb->ccb_h.ccb_state = DA_CCB_PROBE_RC16;
3624 xpt_action(start_ccb);
3625 break;
3626 }
3627 case DA_STATE_PROBE_LBP:
3628 {
3629 struct scsi_vpd_logical_block_prov *lbp;
3630
3631 if (!scsi_vpd_supported_page(periph, SVPD_LBP)) {
3632 /*
3633 * If we get here we don't support any SBC-3 delete
3634 * methods with UNMAP as the Logical Block Provisioning
3635 * VPD page support is required for devices which
3636 * support it according to T10/1799-D Revision 31
3637 * however older revisions of the spec don't mandate
3638 * this so we currently don't remove these methods
3639 * from the available set.
3640 */
3641 softc->state = DA_STATE_PROBE_BLK_LIMITS;
3642 goto skipstate;
3643 }
3644
3645 lbp = (struct scsi_vpd_logical_block_prov *)
3646 malloc(sizeof(*lbp), M_SCSIDA, M_NOWAIT|M_ZERO);
3647
3648 if (lbp == NULL) {
3649 printf("dastart: Couldn't malloc lbp data\n");
3650 /* da_free_periph??? */
3651 break;
3652 }
3653
3654 scsi_inquiry(&start_ccb->csio,
3655 /*retries*/da_retry_count,
3656 /*cbfcnp*/dadone_probelbp,
3657 /*tag_action*/MSG_SIMPLE_Q_TAG,
3658 /*inq_buf*/(uint8_t *)lbp,
3659 /*inq_len*/sizeof(*lbp),
3660 /*evpd*/TRUE,
3661 /*page_code*/SVPD_LBP,
3662 /*sense_len*/SSD_MIN_SIZE,
3663 /*timeout*/da_default_timeout * 1000);
3664 start_ccb->ccb_h.ccb_bp = NULL;
3665 start_ccb->ccb_h.ccb_state = DA_CCB_PROBE_LBP;
3666 xpt_action(start_ccb);
3667 break;
3668 }
3669 case DA_STATE_PROBE_BLK_LIMITS:
3670 {
3671 struct scsi_vpd_block_limits *block_limits;
3672
3673 if (!scsi_vpd_supported_page(periph, SVPD_BLOCK_LIMITS)) {
3674 /* Not supported skip to next probe */
3675 softc->state = DA_STATE_PROBE_BDC;
3676 goto skipstate;
3677 }
3678
3679 block_limits = (struct scsi_vpd_block_limits *)
3680 malloc(sizeof(*block_limits), M_SCSIDA, M_NOWAIT|M_ZERO);
3681
3682 if (block_limits == NULL) {
3683 printf("dastart: Couldn't malloc block_limits data\n");
3684 /* da_free_periph??? */
3685 break;
3686 }
3687
3688 scsi_inquiry(&start_ccb->csio,
3689 /*retries*/da_retry_count,
3690 /*cbfcnp*/dadone_probeblklimits,
3691 /*tag_action*/MSG_SIMPLE_Q_TAG,
3692 /*inq_buf*/(uint8_t *)block_limits,
3693 /*inq_len*/sizeof(*block_limits),
3694 /*evpd*/TRUE,
3695 /*page_code*/SVPD_BLOCK_LIMITS,
3696 /*sense_len*/SSD_MIN_SIZE,
3697 /*timeout*/da_default_timeout * 1000);
3698 start_ccb->ccb_h.ccb_bp = NULL;
3699 start_ccb->ccb_h.ccb_state = DA_CCB_PROBE_BLK_LIMITS;
3700 xpt_action(start_ccb);
3701 break;
3702 }
3703 case DA_STATE_PROBE_BDC:
3704 {
3705 struct scsi_vpd_block_device_characteristics *bdc;
3706
3707 if (!scsi_vpd_supported_page(periph, SVPD_BDC)) {
3708 softc->state = DA_STATE_PROBE_ATA;
3709 goto skipstate;
3710 }
3711
3712 bdc = (struct scsi_vpd_block_device_characteristics *)
3713 malloc(sizeof(*bdc), M_SCSIDA, M_NOWAIT|M_ZERO);
3714
3715 if (bdc == NULL) {
3716 printf("dastart: Couldn't malloc bdc data\n");
3717 /* da_free_periph??? */
3718 break;
3719 }
3720
3721 scsi_inquiry(&start_ccb->csio,
3722 /*retries*/da_retry_count,
3723 /*cbfcnp*/dadone_probebdc,
3724 /*tag_action*/MSG_SIMPLE_Q_TAG,
3725 /*inq_buf*/(uint8_t *)bdc,
3726 /*inq_len*/sizeof(*bdc),
3727 /*evpd*/TRUE,
3728 /*page_code*/SVPD_BDC,
3729 /*sense_len*/SSD_MIN_SIZE,
3730 /*timeout*/da_default_timeout * 1000);
3731 start_ccb->ccb_h.ccb_bp = NULL;
3732 start_ccb->ccb_h.ccb_state = DA_CCB_PROBE_BDC;
3733 xpt_action(start_ccb);
3734 break;
3735 }
3736 case DA_STATE_PROBE_ATA:
3737 {
3738 struct ata_params *ata_params;
3739
3740 if (!scsi_vpd_supported_page(periph, SVPD_ATA_INFORMATION)) {
3741 if ((softc->zone_mode == DA_ZONE_HOST_AWARE)
3742 || (softc->zone_mode == DA_ZONE_HOST_MANAGED)) {
3743 /*
3744 * Note that if the ATA VPD page isn't
3745 * supported, we aren't talking to an ATA
3746 * device anyway. Support for that VPD
3747 * page is mandatory for SCSI to ATA (SAT)
3748 * translation layers.
3749 */
3750 softc->state = DA_STATE_PROBE_ZONE;
3751 goto skipstate;
3752 }
3753 daprobedone(periph, start_ccb);
3754 break;
3755 }
3756
3757 ata_params = &periph->path->device->ident_data;
3758
3759 scsi_ata_identify(&start_ccb->csio,
3760 /*retries*/da_retry_count,
3761 /*cbfcnp*/dadone_probeata,
3762 /*tag_action*/MSG_SIMPLE_Q_TAG,
3763 /*data_ptr*/(uint8_t *)ata_params,
3764 /*dxfer_len*/sizeof(*ata_params),
3765 /*sense_len*/SSD_FULL_SIZE,
3766 /*timeout*/da_default_timeout * 1000);
3767 start_ccb->ccb_h.ccb_bp = NULL;
3768 start_ccb->ccb_h.ccb_state = DA_CCB_PROBE_ATA;
3769 xpt_action(start_ccb);
3770 break;
3771 }
3772 case DA_STATE_PROBE_ATA_LOGDIR:
3773 {
3774 struct ata_gp_log_dir *log_dir;
3775 int retval;
3776
3777 retval = 0;
3778
3779 if ((softc->flags & DA_FLAG_CAN_ATA_LOG) == 0) {
3780 /*
3781 * If we don't have log support, not much point in
3782 * trying to probe zone support.
3783 */
3784 daprobedone(periph, start_ccb);
3785 break;
3786 }
3787
3788 /*
3789 * If we have an ATA device (the SCSI ATA Information VPD
3790 * page should be present and the ATA identify should have
3791 * succeeded) and it supports logs, ask for the log directory.
3792 */
3793
3794 log_dir = malloc(sizeof(*log_dir), M_SCSIDA, M_NOWAIT|M_ZERO);
3795 if (log_dir == NULL) {
3796 xpt_print(periph->path, "Couldn't malloc log_dir "
3797 "data\n");
3798 daprobedone(periph, start_ccb);
3799 break;
3800 }
3801
3802 retval = scsi_ata_read_log(&start_ccb->csio,
3803 /*retries*/ da_retry_count,
3804 /*cbfcnp*/ dadone_probeatalogdir,
3805 /*tag_action*/ MSG_SIMPLE_Q_TAG,
3806 /*log_address*/ ATA_LOG_DIRECTORY,
3807 /*page_number*/ 0,
3808 /*block_count*/ 1,
3809 /*protocol*/ softc->flags & DA_FLAG_CAN_ATA_DMA ?
3810 AP_PROTO_DMA : AP_PROTO_PIO_IN,
3811 /*data_ptr*/ (uint8_t *)log_dir,
3812 /*dxfer_len*/ sizeof(*log_dir),
3813 /*sense_len*/ SSD_FULL_SIZE,
3814 /*timeout*/ da_default_timeout * 1000);
3815
3816 if (retval != 0) {
3817 xpt_print(periph->path, "scsi_ata_read_log() failed!");
3818 free(log_dir, M_SCSIDA);
3819 daprobedone(periph, start_ccb);
3820 break;
3821 }
3822 start_ccb->ccb_h.ccb_bp = NULL;
3823 start_ccb->ccb_h.ccb_state = DA_CCB_PROBE_ATA_LOGDIR;
3824 xpt_action(start_ccb);
3825 break;
3826 }
3827 case DA_STATE_PROBE_ATA_IDDIR:
3828 {
3829 struct ata_identify_log_pages *id_dir;
3830 int retval;
3831
3832 retval = 0;
3833
3834 /*
3835 * Check here to see whether the Identify Device log is
3836 * supported in the directory of logs. If so, continue
3837 * with requesting the log of identify device pages.
3838 */
3839 if ((softc->flags & DA_FLAG_CAN_ATA_IDLOG) == 0) {
3840 daprobedone(periph, start_ccb);
3841 break;
3842 }
3843
3844 id_dir = malloc(sizeof(*id_dir), M_SCSIDA, M_NOWAIT | M_ZERO);
3845 if (id_dir == NULL) {
3846 xpt_print(periph->path, "Couldn't malloc id_dir "
3847 "data\n");
3848 daprobedone(periph, start_ccb);
3849 break;
3850 }
3851
3852 retval = scsi_ata_read_log(&start_ccb->csio,
3853 /*retries*/ da_retry_count,
3854 /*cbfcnp*/ dadone_probeataiddir,
3855 /*tag_action*/ MSG_SIMPLE_Q_TAG,
3856 /*log_address*/ ATA_IDENTIFY_DATA_LOG,
3857 /*page_number*/ ATA_IDL_PAGE_LIST,
3858 /*block_count*/ 1,
3859 /*protocol*/ softc->flags & DA_FLAG_CAN_ATA_DMA ?
3860 AP_PROTO_DMA : AP_PROTO_PIO_IN,
3861 /*data_ptr*/ (uint8_t *)id_dir,
3862 /*dxfer_len*/ sizeof(*id_dir),
3863 /*sense_len*/ SSD_FULL_SIZE,
3864 /*timeout*/ da_default_timeout * 1000);
3865
3866 if (retval != 0) {
3867 xpt_print(periph->path, "scsi_ata_read_log() failed!");
3868 free(id_dir, M_SCSIDA);
3869 daprobedone(periph, start_ccb);
3870 break;
3871 }
3872 start_ccb->ccb_h.ccb_bp = NULL;
3873 start_ccb->ccb_h.ccb_state = DA_CCB_PROBE_ATA_IDDIR;
3874 xpt_action(start_ccb);
3875 break;
3876 }
3877 case DA_STATE_PROBE_ATA_SUP:
3878 {
3879 struct ata_identify_log_sup_cap *sup_cap;
3880 int retval;
3881
3882 retval = 0;
3883
3884 /*
3885 * Check here to see whether the Supported Capabilities log
3886 * is in the list of Identify Device logs.
3887 */
3888 if ((softc->flags & DA_FLAG_CAN_ATA_SUPCAP) == 0) {
3889 daprobedone(periph, start_ccb);
3890 break;
3891 }
3892
3893 sup_cap = malloc(sizeof(*sup_cap), M_SCSIDA, M_NOWAIT|M_ZERO);
3894 if (sup_cap == NULL) {
3895 xpt_print(periph->path, "Couldn't malloc sup_cap "
3896 "data\n");
3897 daprobedone(periph, start_ccb);
3898 break;
3899 }
3900
3901 retval = scsi_ata_read_log(&start_ccb->csio,
3902 /*retries*/ da_retry_count,
3903 /*cbfcnp*/ dadone_probeatasup,
3904 /*tag_action*/ MSG_SIMPLE_Q_TAG,
3905 /*log_address*/ ATA_IDENTIFY_DATA_LOG,
3906 /*page_number*/ ATA_IDL_SUP_CAP,
3907 /*block_count*/ 1,
3908 /*protocol*/ softc->flags & DA_FLAG_CAN_ATA_DMA ?
3909 AP_PROTO_DMA : AP_PROTO_PIO_IN,
3910 /*data_ptr*/ (uint8_t *)sup_cap,
3911 /*dxfer_len*/ sizeof(*sup_cap),
3912 /*sense_len*/ SSD_FULL_SIZE,
3913 /*timeout*/ da_default_timeout * 1000);
3914
3915 if (retval != 0) {
3916 xpt_print(periph->path, "scsi_ata_read_log() failed!");
3917 free(sup_cap, M_SCSIDA);
3918 daprobedone(periph, start_ccb);
3919 break;
3920 }
3921
3922 start_ccb->ccb_h.ccb_bp = NULL;
3923 start_ccb->ccb_h.ccb_state = DA_CCB_PROBE_ATA_SUP;
3924 xpt_action(start_ccb);
3925 break;
3926 }
3927 case DA_STATE_PROBE_ATA_ZONE:
3928 {
3929 struct ata_zoned_info_log *ata_zone;
3930 int retval;
3931
3932 retval = 0;
3933
3934 /*
3935 * Check here to see whether the zoned device information
3936 * page is supported. If so, continue on to request it.
3937 * If not, skip to DA_STATE_PROBE_LOG or done.
3938 */
3939 if ((softc->flags & DA_FLAG_CAN_ATA_ZONE) == 0) {
3940 daprobedone(periph, start_ccb);
3941 break;
3942 }
3943 ata_zone = malloc(sizeof(*ata_zone), M_SCSIDA,
3944 M_NOWAIT|M_ZERO);
3945 if (ata_zone == NULL) {
3946 xpt_print(periph->path, "Couldn't malloc ata_zone "
3947 "data\n");
3948 daprobedone(periph, start_ccb);
3949 break;
3950 }
3951
3952 retval = scsi_ata_read_log(&start_ccb->csio,
3953 /*retries*/ da_retry_count,
3954 /*cbfcnp*/ dadone_probeatazone,
3955 /*tag_action*/ MSG_SIMPLE_Q_TAG,
3956 /*log_address*/ ATA_IDENTIFY_DATA_LOG,
3957 /*page_number*/ ATA_IDL_ZDI,
3958 /*block_count*/ 1,
3959 /*protocol*/ softc->flags & DA_FLAG_CAN_ATA_DMA ?
3960 AP_PROTO_DMA : AP_PROTO_PIO_IN,
3961 /*data_ptr*/ (uint8_t *)ata_zone,
3962 /*dxfer_len*/ sizeof(*ata_zone),
3963 /*sense_len*/ SSD_FULL_SIZE,
3964 /*timeout*/ da_default_timeout * 1000);
3965
3966 if (retval != 0) {
3967 xpt_print(periph->path, "scsi_ata_read_log() failed!");
3968 free(ata_zone, M_SCSIDA);
3969 daprobedone(periph, start_ccb);
3970 break;
3971 }
3972 start_ccb->ccb_h.ccb_bp = NULL;
3973 start_ccb->ccb_h.ccb_state = DA_CCB_PROBE_ATA_ZONE;
3974 xpt_action(start_ccb);
3975
3976 break;
3977 }
3978 case DA_STATE_PROBE_ZONE:
3979 {
3980 struct scsi_vpd_zoned_bdc *bdc;
3981
3982 /*
3983 * Note that this page will be supported for SCSI protocol
3984 * devices that support ZBC (SMR devices), as well as ATA
3985 * protocol devices that are behind a SAT (SCSI to ATA
3986 * Translation) layer that supports converting ZBC commands
3987 * to their ZAC equivalents.
3988 */
3989 if (!scsi_vpd_supported_page(periph, SVPD_ZONED_BDC)) {
3990 daprobedone(periph, start_ccb);
3991 break;
3992 }
3993 bdc = (struct scsi_vpd_zoned_bdc *)
3994 malloc(sizeof(*bdc), M_SCSIDA, M_NOWAIT|M_ZERO);
3995
3996 if (bdc == NULL) {
3997 xpt_release_ccb(start_ccb);
3998 xpt_print(periph->path, "Couldn't malloc zone VPD "
3999 "data\n");
4000 break;
4001 }
4002 scsi_inquiry(&start_ccb->csio,
4003 /*retries*/da_retry_count,
4004 /*cbfcnp*/dadone_probezone,
4005 /*tag_action*/MSG_SIMPLE_Q_TAG,
4006 /*inq_buf*/(uint8_t *)bdc,
4007 /*inq_len*/sizeof(*bdc),
4008 /*evpd*/TRUE,
4009 /*page_code*/SVPD_ZONED_BDC,
4010 /*sense_len*/SSD_FULL_SIZE,
4011 /*timeout*/da_default_timeout * 1000);
4012 start_ccb->ccb_h.ccb_bp = NULL;
4013 start_ccb->ccb_h.ccb_state = DA_CCB_PROBE_ZONE;
4014 xpt_action(start_ccb);
4015 break;
4016 }
4017 }
4018 }
4019
4020 /*
4021 * In each of the methods below, while its the caller's
4022 * responsibility to ensure the request will fit into a
4023 * single device request, we might have changed the delete
4024 * method due to the device incorrectly advertising either
4025 * its supported methods or limits.
4026 *
4027 * To prevent this causing further issues we validate the
4028 * against the methods limits, and warn which would
4029 * otherwise be unnecessary.
4030 */
4031 static void
da_delete_unmap(struct cam_periph * periph,union ccb * ccb,struct bio * bp)4032 da_delete_unmap(struct cam_periph *periph, union ccb *ccb, struct bio *bp)
4033 {
4034 struct da_softc *softc = (struct da_softc *)periph->softc;
4035 struct bio *bp1;
4036 uint8_t *buf = softc->unmap_buf;
4037 struct scsi_unmap_desc *d = (void *)&buf[UNMAP_HEAD_SIZE];
4038 uint64_t lba, lastlba = (uint64_t)-1;
4039 uint64_t totalcount = 0;
4040 uint64_t count;
4041 uint32_t c, lastcount = 0, ranges = 0;
4042
4043 /*
4044 * Currently this doesn't take the UNMAP
4045 * Granularity and Granularity Alignment
4046 * fields into account.
4047 *
4048 * This could result in both unoptimal unmap
4049 * requests as as well as UNMAP calls unmapping
4050 * fewer LBA's than requested.
4051 */
4052
4053 bzero(softc->unmap_buf, sizeof(softc->unmap_buf));
4054 bp1 = bp;
4055 do {
4056 /*
4057 * Note: ada and da are different in how they store the
4058 * pending bp's in a trim. ada stores all of them in the
4059 * trim_req.bps. da stores all but the first one in the
4060 * delete_run_queue. ada then completes all the bps in
4061 * its adadone() loop. da completes all the bps in the
4062 * delete_run_queue in dadone, and relies on the biodone
4063 * after to complete. This should be reconciled since there's
4064 * no real reason to do it differently. XXX
4065 */
4066 if (bp1 != bp)
4067 bioq_insert_tail(&softc->delete_run_queue, bp1);
4068 lba = bp1->bio_pblkno;
4069 count = bp1->bio_bcount / softc->params.secsize;
4070
4071 /* Try to extend the previous range. */
4072 if (lba == lastlba) {
4073 c = omin(count, UNMAP_RANGE_MAX - lastcount);
4074 lastlba += c;
4075 lastcount += c;
4076 scsi_ulto4b(lastcount, d[ranges - 1].length);
4077 count -= c;
4078 lba += c;
4079 totalcount += c;
4080 } else if ((softc->quirks & DA_Q_STRICT_UNMAP) &&
4081 softc->unmap_gran != 0) {
4082 /* Align length of the previous range. */
4083 if ((c = lastcount % softc->unmap_gran) != 0) {
4084 if (lastcount <= c) {
4085 totalcount -= lastcount;
4086 lastlba = (uint64_t)-1;
4087 lastcount = 0;
4088 ranges--;
4089 } else {
4090 totalcount -= c;
4091 lastlba -= c;
4092 lastcount -= c;
4093 scsi_ulto4b(lastcount,
4094 d[ranges - 1].length);
4095 }
4096 }
4097 /* Align beginning of the new range. */
4098 c = (lba - softc->unmap_gran_align) % softc->unmap_gran;
4099 if (c != 0) {
4100 c = softc->unmap_gran - c;
4101 if (count <= c) {
4102 count = 0;
4103 } else {
4104 lba += c;
4105 count -= c;
4106 }
4107 }
4108 }
4109
4110 while (count > 0) {
4111 c = omin(count, UNMAP_RANGE_MAX);
4112 if (totalcount + c > softc->unmap_max_lba ||
4113 ranges >= softc->unmap_max_ranges) {
4114 xpt_print(periph->path,
4115 "%s issuing short delete %ld > %ld"
4116 "|| %d >= %d",
4117 da_delete_method_desc[softc->delete_method],
4118 totalcount + c, softc->unmap_max_lba,
4119 ranges, softc->unmap_max_ranges);
4120 break;
4121 }
4122 scsi_u64to8b(lba, d[ranges].lba);
4123 scsi_ulto4b(c, d[ranges].length);
4124 lba += c;
4125 totalcount += c;
4126 ranges++;
4127 count -= c;
4128 lastlba = lba;
4129 lastcount = c;
4130 }
4131 bp1 = cam_iosched_next_trim(softc->cam_iosched);
4132 if (bp1 == NULL)
4133 break;
4134 if (ranges >= softc->unmap_max_ranges ||
4135 totalcount + bp1->bio_bcount /
4136 softc->params.secsize > softc->unmap_max_lba) {
4137 cam_iosched_put_back_trim(softc->cam_iosched, bp1);
4138 break;
4139 }
4140 } while (1);
4141
4142 /* Align length of the last range. */
4143 if ((softc->quirks & DA_Q_STRICT_UNMAP) && softc->unmap_gran != 0 &&
4144 (c = lastcount % softc->unmap_gran) != 0) {
4145 if (lastcount <= c)
4146 ranges--;
4147 else
4148 scsi_ulto4b(lastcount - c, d[ranges - 1].length);
4149 }
4150
4151 scsi_ulto2b(ranges * 16 + 6, &buf[0]);
4152 scsi_ulto2b(ranges * 16, &buf[2]);
4153
4154 scsi_unmap(&ccb->csio,
4155 /*retries*/da_retry_count,
4156 /*cbfcnp*/dadone,
4157 /*tag_action*/MSG_SIMPLE_Q_TAG,
4158 /*byte2*/0,
4159 /*data_ptr*/ buf,
4160 /*dxfer_len*/ ranges * 16 + 8,
4161 /*sense_len*/SSD_FULL_SIZE,
4162 da_default_timeout * 1000);
4163 ccb->ccb_h.ccb_state = DA_CCB_DELETE;
4164 ccb->ccb_h.flags |= CAM_UNLOCKED;
4165 softc->trim_count++;
4166 softc->trim_ranges += ranges;
4167 softc->trim_lbas += totalcount;
4168 cam_iosched_submit_trim(softc->cam_iosched);
4169 }
4170
4171 static void
da_delete_trim(struct cam_periph * periph,union ccb * ccb,struct bio * bp)4172 da_delete_trim(struct cam_periph *periph, union ccb *ccb, struct bio *bp)
4173 {
4174 struct da_softc *softc = (struct da_softc *)periph->softc;
4175 struct bio *bp1;
4176 uint8_t *buf = softc->unmap_buf;
4177 uint64_t lastlba = (uint64_t)-1;
4178 uint64_t count;
4179 uint64_t lba;
4180 uint32_t lastcount = 0, c, requestcount;
4181 int ranges = 0, off, block_count;
4182
4183 bzero(softc->unmap_buf, sizeof(softc->unmap_buf));
4184 bp1 = bp;
4185 do {
4186 if (bp1 != bp)//XXX imp XXX
4187 bioq_insert_tail(&softc->delete_run_queue, bp1);
4188 lba = bp1->bio_pblkno;
4189 count = bp1->bio_bcount / softc->params.secsize;
4190 requestcount = count;
4191
4192 /* Try to extend the previous range. */
4193 if (lba == lastlba) {
4194 c = omin(count, ATA_DSM_RANGE_MAX - lastcount);
4195 lastcount += c;
4196 off = (ranges - 1) * 8;
4197 buf[off + 6] = lastcount & 0xff;
4198 buf[off + 7] = (lastcount >> 8) & 0xff;
4199 count -= c;
4200 lba += c;
4201 }
4202
4203 while (count > 0) {
4204 c = omin(count, ATA_DSM_RANGE_MAX);
4205 off = ranges * 8;
4206
4207 buf[off + 0] = lba & 0xff;
4208 buf[off + 1] = (lba >> 8) & 0xff;
4209 buf[off + 2] = (lba >> 16) & 0xff;
4210 buf[off + 3] = (lba >> 24) & 0xff;
4211 buf[off + 4] = (lba >> 32) & 0xff;
4212 buf[off + 5] = (lba >> 40) & 0xff;
4213 buf[off + 6] = c & 0xff;
4214 buf[off + 7] = (c >> 8) & 0xff;
4215 lba += c;
4216 ranges++;
4217 count -= c;
4218 lastcount = c;
4219 if (count != 0 && ranges == softc->trim_max_ranges) {
4220 xpt_print(periph->path,
4221 "%s issuing short delete %ld > %ld\n",
4222 da_delete_method_desc[softc->delete_method],
4223 requestcount,
4224 (softc->trim_max_ranges - ranges) *
4225 ATA_DSM_RANGE_MAX);
4226 break;
4227 }
4228 }
4229 lastlba = lba;
4230 bp1 = cam_iosched_next_trim(softc->cam_iosched);
4231 if (bp1 == NULL)
4232 break;
4233 if (bp1->bio_bcount / softc->params.secsize >
4234 (softc->trim_max_ranges - ranges) * ATA_DSM_RANGE_MAX) {
4235 cam_iosched_put_back_trim(softc->cam_iosched, bp1);
4236 break;
4237 }
4238 } while (1);
4239
4240 block_count = howmany(ranges, ATA_DSM_BLK_RANGES);
4241 scsi_ata_trim(&ccb->csio,
4242 /*retries*/da_retry_count,
4243 /*cbfcnp*/dadone,
4244 /*tag_action*/MSG_SIMPLE_Q_TAG,
4245 block_count,
4246 /*data_ptr*/buf,
4247 /*dxfer_len*/block_count * ATA_DSM_BLK_SIZE,
4248 /*sense_len*/SSD_FULL_SIZE,
4249 da_default_timeout * 1000);
4250 ccb->ccb_h.ccb_state = DA_CCB_DELETE;
4251 ccb->ccb_h.flags |= CAM_UNLOCKED;
4252 softc->trim_count++;
4253 softc->trim_ranges += ranges;
4254 softc->trim_lbas += block_count;
4255 cam_iosched_submit_trim(softc->cam_iosched);
4256 }
4257
4258 /*
4259 * We calculate ws_max_blks here based off d_delmaxsize instead
4260 * of using softc->ws_max_blks as it is absolute max for the
4261 * device not the protocol max which may well be lower.
4262 */
4263 static void
da_delete_ws(struct cam_periph * periph,union ccb * ccb,struct bio * bp)4264 da_delete_ws(struct cam_periph *periph, union ccb *ccb, struct bio *bp)
4265 {
4266 struct da_softc *softc;
4267 struct bio *bp1;
4268 uint64_t ws_max_blks;
4269 uint64_t lba;
4270 uint64_t count; /* forward compat with WS32 */
4271
4272 softc = (struct da_softc *)periph->softc;
4273 ws_max_blks = softc->disk->d_delmaxsize / softc->params.secsize;
4274 lba = bp->bio_pblkno;
4275 count = 0;
4276 bp1 = bp;
4277 do {
4278 if (bp1 != bp)//XXX imp XXX
4279 bioq_insert_tail(&softc->delete_run_queue, bp1);
4280 count += bp1->bio_bcount / softc->params.secsize;
4281 if (count > ws_max_blks) {
4282 xpt_print(periph->path,
4283 "%s issuing short delete %ld > %ld\n",
4284 da_delete_method_desc[softc->delete_method],
4285 count, ws_max_blks);
4286 count = omin(count, ws_max_blks);
4287 break;
4288 }
4289 bp1 = cam_iosched_next_trim(softc->cam_iosched);
4290 if (bp1 == NULL)
4291 break;
4292 if (lba + count != bp1->bio_pblkno ||
4293 count + bp1->bio_bcount /
4294 softc->params.secsize > ws_max_blks) {
4295 cam_iosched_put_back_trim(softc->cam_iosched, bp1);
4296 break;
4297 }
4298 } while (1);
4299
4300 scsi_write_same(&ccb->csio,
4301 /*retries*/da_retry_count,
4302 /*cbfcnp*/dadone,
4303 /*tag_action*/MSG_SIMPLE_Q_TAG,
4304 /*byte2*/softc->delete_method ==
4305 DA_DELETE_ZERO ? 0 : SWS_UNMAP,
4306 softc->delete_method == DA_DELETE_WS16 ? 16 : 10,
4307 /*lba*/lba,
4308 /*block_count*/count,
4309 /*data_ptr*/ __DECONST(void *, zero_region),
4310 /*dxfer_len*/ softc->params.secsize,
4311 /*sense_len*/SSD_FULL_SIZE,
4312 da_default_timeout * 1000);
4313 ccb->ccb_h.ccb_state = DA_CCB_DELETE;
4314 ccb->ccb_h.flags |= CAM_UNLOCKED;
4315 softc->trim_count++;
4316 softc->trim_ranges++;
4317 softc->trim_lbas += count;
4318 cam_iosched_submit_trim(softc->cam_iosched);
4319 }
4320
4321 static int
cmd6workaround(union ccb * ccb)4322 cmd6workaround(union ccb *ccb)
4323 {
4324 struct scsi_rw_6 cmd6;
4325 struct scsi_rw_10 *cmd10;
4326 struct da_softc *softc;
4327 uint8_t *cdb;
4328 struct bio *bp;
4329 int frozen;
4330
4331 cdb = ccb->csio.cdb_io.cdb_bytes;
4332 softc = (struct da_softc *)xpt_path_periph(ccb->ccb_h.path)->softc;
4333
4334 if (ccb->ccb_h.ccb_state == DA_CCB_DELETE) {
4335 da_delete_methods old_method = softc->delete_method;
4336
4337 /*
4338 * Typically there are two reasons for failure here
4339 * 1. Delete method was detected as supported but isn't
4340 * 2. Delete failed due to invalid params e.g. too big
4341 *
4342 * While we will attempt to choose an alternative delete method
4343 * this may result in short deletes if the existing delete
4344 * requests from geom are big for the new method chosen.
4345 *
4346 * This method assumes that the error which triggered this
4347 * will not retry the io otherwise a panic will occur
4348 */
4349 dadeleteflag(softc, old_method, 0);
4350 dadeletemethodchoose(softc, DA_DELETE_DISABLE);
4351 if (softc->delete_method == DA_DELETE_DISABLE)
4352 xpt_print(ccb->ccb_h.path,
4353 "%s failed, disabling BIO_DELETE\n",
4354 da_delete_method_desc[old_method]);
4355 else
4356 xpt_print(ccb->ccb_h.path,
4357 "%s failed, switching to %s BIO_DELETE\n",
4358 da_delete_method_desc[old_method],
4359 da_delete_method_desc[softc->delete_method]);
4360
4361 while ((bp = bioq_takefirst(&softc->delete_run_queue)) != NULL)
4362 cam_iosched_queue_work(softc->cam_iosched, bp);
4363 cam_iosched_queue_work(softc->cam_iosched,
4364 (struct bio *)ccb->ccb_h.ccb_bp);
4365 ccb->ccb_h.ccb_bp = NULL;
4366 return (0);
4367 }
4368
4369 /* Detect unsupported PREVENT ALLOW MEDIUM REMOVAL. */
4370 if ((ccb->ccb_h.flags & CAM_CDB_POINTER) == 0 &&
4371 (*cdb == PREVENT_ALLOW) &&
4372 (softc->quirks & DA_Q_NO_PREVENT) == 0) {
4373 if (bootverbose)
4374 xpt_print(ccb->ccb_h.path,
4375 "PREVENT ALLOW MEDIUM REMOVAL not supported.\n");
4376 softc->quirks |= DA_Q_NO_PREVENT;
4377 return (0);
4378 }
4379
4380 /* Detect unsupported SYNCHRONIZE CACHE(10). */
4381 if ((ccb->ccb_h.flags & CAM_CDB_POINTER) == 0 &&
4382 (*cdb == SYNCHRONIZE_CACHE) &&
4383 (softc->quirks & DA_Q_NO_SYNC_CACHE) == 0) {
4384 if (bootverbose)
4385 xpt_print(ccb->ccb_h.path,
4386 "SYNCHRONIZE CACHE(10) not supported.\n");
4387 softc->quirks |= DA_Q_NO_SYNC_CACHE;
4388 softc->disk->d_flags &= ~DISKFLAG_CANFLUSHCACHE;
4389 return (0);
4390 }
4391
4392 /* Translation only possible if CDB is an array and cmd is R/W6 */
4393 if ((ccb->ccb_h.flags & CAM_CDB_POINTER) != 0 ||
4394 (*cdb != READ_6 && *cdb != WRITE_6))
4395 return 0;
4396
4397 xpt_print(ccb->ccb_h.path, "READ(6)/WRITE(6) not supported, "
4398 "increasing minimum_cmd_size to 10.\n");
4399 softc->minimum_cmd_size = 10;
4400
4401 bcopy(cdb, &cmd6, sizeof(struct scsi_rw_6));
4402 cmd10 = (struct scsi_rw_10 *)cdb;
4403 cmd10->opcode = (cmd6.opcode == READ_6) ? READ_10 : WRITE_10;
4404 cmd10->byte2 = 0;
4405 scsi_ulto4b(scsi_3btoul(cmd6.addr), cmd10->addr);
4406 cmd10->reserved = 0;
4407 scsi_ulto2b(cmd6.length, cmd10->length);
4408 cmd10->control = cmd6.control;
4409 ccb->csio.cdb_len = sizeof(*cmd10);
4410
4411 /* Requeue request, unfreezing queue if necessary */
4412 frozen = (ccb->ccb_h.status & CAM_DEV_QFRZN) != 0;
4413 ccb->ccb_h.status = CAM_REQUEUE_REQ;
4414 xpt_action(ccb);
4415 if (frozen) {
4416 cam_release_devq(ccb->ccb_h.path,
4417 /*relsim_flags*/0,
4418 /*reduction*/0,
4419 /*timeout*/0,
4420 /*getcount_only*/0);
4421 }
4422 return (ERESTART);
4423 }
4424
4425 static void
dazonedone(struct cam_periph * periph,union ccb * ccb)4426 dazonedone(struct cam_periph *periph, union ccb *ccb)
4427 {
4428 struct da_softc *softc;
4429 struct bio *bp;
4430
4431 softc = periph->softc;
4432 bp = (struct bio *)ccb->ccb_h.ccb_bp;
4433
4434 switch (bp->bio_zone.zone_cmd) {
4435 case DISK_ZONE_OPEN:
4436 case DISK_ZONE_CLOSE:
4437 case DISK_ZONE_FINISH:
4438 case DISK_ZONE_RWP:
4439 break;
4440 case DISK_ZONE_REPORT_ZONES: {
4441 uint32_t avail_len;
4442 struct disk_zone_report *rep;
4443 struct scsi_report_zones_hdr *hdr;
4444 struct scsi_report_zones_desc *desc;
4445 struct disk_zone_rep_entry *entry;
4446 uint32_t hdr_len, num_avail;
4447 uint32_t num_to_fill, i;
4448 int ata;
4449
4450 rep = &bp->bio_zone.zone_params.report;
4451 avail_len = ccb->csio.dxfer_len - ccb->csio.resid;
4452 /*
4453 * Note that bio_resid isn't normally used for zone
4454 * commands, but it is used by devstat_end_transaction_bio()
4455 * to determine how much data was transferred. Because
4456 * the size of the SCSI/ATA data structures is different
4457 * than the size of the BIO interface structures, the
4458 * amount of data actually transferred from the drive will
4459 * be different than the amount of data transferred to
4460 * the user.
4461 */
4462 bp->bio_resid = ccb->csio.resid;
4463 hdr = (struct scsi_report_zones_hdr *)ccb->csio.data_ptr;
4464 if (avail_len < sizeof(*hdr)) {
4465 /*
4466 * Is there a better error than EIO here? We asked
4467 * for at least the header, and we got less than
4468 * that.
4469 */
4470 bp->bio_error = EIO;
4471 bp->bio_flags |= BIO_ERROR;
4472 bp->bio_resid = bp->bio_bcount;
4473 break;
4474 }
4475
4476 if (softc->zone_interface == DA_ZONE_IF_ATA_PASS)
4477 ata = 1;
4478 else
4479 ata = 0;
4480
4481 hdr_len = ata ? le32dec(hdr->length) :
4482 scsi_4btoul(hdr->length);
4483 if (hdr_len > 0)
4484 rep->entries_available = hdr_len / sizeof(*desc);
4485 else
4486 rep->entries_available = 0;
4487 /*
4488 * NOTE: using the same values for the BIO version of the
4489 * same field as the SCSI/ATA values. This means we could
4490 * get some additional values that aren't defined in bio.h
4491 * if more values of the same field are defined later.
4492 */
4493 rep->header.same = hdr->byte4 & SRZ_SAME_MASK;
4494 rep->header.maximum_lba = ata ? le64dec(hdr->maximum_lba) :
4495 scsi_8btou64(hdr->maximum_lba);
4496 /*
4497 * If the drive reports no entries that match the query,
4498 * we're done.
4499 */
4500 if (hdr_len == 0) {
4501 rep->entries_filled = 0;
4502 break;
4503 }
4504
4505 num_avail = min((avail_len - sizeof(*hdr)) / sizeof(*desc),
4506 hdr_len / sizeof(*desc));
4507 /*
4508 * If the drive didn't return any data, then we're done.
4509 */
4510 if (num_avail == 0) {
4511 rep->entries_filled = 0;
4512 break;
4513 }
4514
4515 num_to_fill = min(num_avail, rep->entries_allocated);
4516 /*
4517 * If the user didn't allocate any entries for us to fill,
4518 * we're done.
4519 */
4520 if (num_to_fill == 0) {
4521 rep->entries_filled = 0;
4522 break;
4523 }
4524
4525 for (i = 0, desc = &hdr->desc_list[0], entry=&rep->entries[0];
4526 i < num_to_fill; i++, desc++, entry++) {
4527 /*
4528 * NOTE: we're mapping the values here directly
4529 * from the SCSI/ATA bit definitions to the bio.h
4530 * definitions. There is also a warning in
4531 * disk_zone.h, but the impact is that if
4532 * additional values are added in the SCSI/ATA
4533 * specs these will be visible to consumers of
4534 * this interface.
4535 */
4536 entry->zone_type = desc->zone_type & SRZ_TYPE_MASK;
4537 entry->zone_condition =
4538 (desc->zone_flags & SRZ_ZONE_COND_MASK) >>
4539 SRZ_ZONE_COND_SHIFT;
4540 entry->zone_flags |= desc->zone_flags &
4541 (SRZ_ZONE_NON_SEQ|SRZ_ZONE_RESET);
4542 entry->zone_length =
4543 ata ? le64dec(desc->zone_length) :
4544 scsi_8btou64(desc->zone_length);
4545 entry->zone_start_lba =
4546 ata ? le64dec(desc->zone_start_lba) :
4547 scsi_8btou64(desc->zone_start_lba);
4548 entry->write_pointer_lba =
4549 ata ? le64dec(desc->write_pointer_lba) :
4550 scsi_8btou64(desc->write_pointer_lba);
4551 }
4552 rep->entries_filled = num_to_fill;
4553 break;
4554 }
4555 case DISK_ZONE_GET_PARAMS:
4556 default:
4557 /*
4558 * In theory we should not get a GET_PARAMS bio, since it
4559 * should be handled without queueing the command to the
4560 * drive.
4561 */
4562 panic("%s: Invalid zone command %d", __func__,
4563 bp->bio_zone.zone_cmd);
4564 break;
4565 }
4566
4567 if (bp->bio_zone.zone_cmd == DISK_ZONE_REPORT_ZONES)
4568 free(ccb->csio.data_ptr, M_SCSIDA);
4569 }
4570
4571 static void
dadone(struct cam_periph * periph,union ccb * done_ccb)4572 dadone(struct cam_periph *periph, union ccb *done_ccb)
4573 {
4574 struct bio *bp, *bp1;
4575 struct da_softc *softc;
4576 struct ccb_scsiio *csio;
4577 da_ccb_state state;
4578
4579 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE, ("dadone\n"));
4580
4581 softc = (struct da_softc *)periph->softc;
4582 csio = &done_ccb->csio;
4583
4584 #if defined(BUF_TRACKING) || defined(FULL_BUF_TRACKING)
4585 if (csio->bio != NULL)
4586 biotrack(csio->bio, __func__);
4587 #endif
4588 state = csio->ccb_h.ccb_state & DA_CCB_TYPE_MASK;
4589
4590 cam_periph_lock(periph);
4591 bp = (struct bio *)done_ccb->ccb_h.ccb_bp;
4592 if ((done_ccb->ccb_h.status & CAM_STATUS_MASK) != CAM_REQ_CMP) {
4593 int error;
4594 int sf;
4595
4596 if ((csio->ccb_h.ccb_state & DA_CCB_RETRY_UA) != 0)
4597 sf = SF_RETRY_UA;
4598 else
4599 sf = 0;
4600
4601 error = daerror(done_ccb, CAM_RETRY_SELTO, sf);
4602 if (error == ERESTART) {
4603 /* A retry was scheduled, so just return. */
4604 cam_periph_unlock(periph);
4605 return;
4606 }
4607 /*
4608 * refresh bp, since cmd6workaround may set it to NULL when
4609 * there's no delete methos available since it pushes the bp
4610 * back onto the work queue to reschedule it (since different
4611 * delete methods have different size limitations).
4612 */
4613 bp = (struct bio *)done_ccb->ccb_h.ccb_bp;
4614 if (error != 0) {
4615 bool pack_invalid =
4616 (softc->flags & DA_FLAG_PACK_INVALID) != 0;
4617
4618 if (error == ENXIO && !pack_invalid) {
4619 /*
4620 * ENXIO flags ASC/ASCQ codes for either media
4621 * missing, or the drive being extremely
4622 * unhealthy. Invalidate peripheral on this
4623 * catestrophic error when the pack is valid
4624 * since we set the pack invalid bit only for
4625 * the few ASC/ASCQ codes indicating missing
4626 * media. The invalidation will flush any
4627 * queued I/O and short-circuit retries for
4628 * other I/O. We only invalidate the da device
4629 * so the passX device remains for recovery and
4630 * diagnostics.
4631 *
4632 * While we do also set the pack invalid bit
4633 * after invalidating the peripheral, the
4634 * pending I/O will have been flushed then with
4635 * no new I/O starting, so this 'edge' case
4636 * doesn't matter.
4637 */
4638 xpt_print(periph->path, "Invalidating pack\n");
4639 cam_periph_invalidate(periph);
4640 } else {
4641 /*
4642 * Return all queued I/O with EIO, so that the
4643 * client can retry these I/Os in the proper
4644 * order should it attempt to recover. When the
4645 * pack is invalid, fail all I/O with ENXIO
4646 * since we can't assume when the media returns
4647 * it's the same media and we force a trip
4648 * through daclose / daopen and the client won't
4649 * retry.
4650 */
4651 cam_iosched_flush(softc->cam_iosched, NULL,
4652 pack_invalid ? ENXIO : EIO);
4653 }
4654 if (bp != NULL) {
4655 bp->bio_error = error;
4656 bp->bio_resid = bp->bio_bcount;
4657 bp->bio_flags |= BIO_ERROR;
4658 }
4659 } else if (bp != NULL) {
4660 if (state == DA_CCB_DELETE)
4661 bp->bio_resid = 0;
4662 else
4663 bp->bio_resid = csio->resid;
4664 bp->bio_error = 0;
4665 if (bp->bio_resid != 0)
4666 bp->bio_flags |= BIO_ERROR;
4667 }
4668 if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0)
4669 cam_release_devq(done_ccb->ccb_h.path,
4670 /*relsim_flags*/0,
4671 /*reduction*/0,
4672 /*timeout*/0,
4673 /*getcount_only*/0);
4674 } else if (bp != NULL) {
4675 if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0)
4676 panic("REQ_CMP with QFRZN");
4677 if (bp->bio_cmd == BIO_ZONE)
4678 dazonedone(periph, done_ccb);
4679 else if (state == DA_CCB_DELETE)
4680 bp->bio_resid = 0;
4681 else
4682 bp->bio_resid = csio->resid;
4683 if ((csio->resid > 0) && (bp->bio_cmd != BIO_ZONE))
4684 bp->bio_flags |= BIO_ERROR;
4685 if (softc->error_inject != 0) {
4686 bp->bio_error = softc->error_inject;
4687 bp->bio_resid = bp->bio_bcount;
4688 bp->bio_flags |= BIO_ERROR;
4689 softc->error_inject = 0;
4690 }
4691 }
4692
4693 if (bp != NULL)
4694 biotrack(bp, __func__);
4695 LIST_REMOVE(&done_ccb->ccb_h, periph_links.le);
4696 if (LIST_EMPTY(&softc->pending_ccbs))
4697 softc->flags |= DA_FLAG_WAS_OTAG;
4698
4699 /*
4700 * We need to call cam_iosched before we call biodone so that we don't
4701 * measure any activity that happens in the completion routine, which in
4702 * the case of sendfile can be quite extensive. Release the periph
4703 * refcount taken in dastart() for each CCB.
4704 */
4705 cam_iosched_bio_complete(softc->cam_iosched, bp, done_ccb);
4706 xpt_release_ccb(done_ccb);
4707 KASSERT(softc->refcount >= 1, ("dadone softc %p refcount %d", softc, softc->refcount));
4708 softc->refcount--;
4709 if (state == DA_CCB_DELETE) {
4710 TAILQ_HEAD(, bio) queue;
4711
4712 TAILQ_INIT(&queue);
4713 TAILQ_CONCAT(&queue, &softc->delete_run_queue.queue, bio_queue);
4714 softc->delete_run_queue.insert_point = NULL;
4715 /*
4716 * Normally, the xpt_release_ccb() above would make sure
4717 * that when we have more work to do, that work would
4718 * get kicked off. However, we specifically keep
4719 * delete_running set to 0 before the call above to
4720 * allow other I/O to progress when many BIO_DELETE
4721 * requests are pushed down. We set delete_running to 0
4722 * and call daschedule again so that we don't stall if
4723 * there are no other I/Os pending apart from BIO_DELETEs.
4724 */
4725 cam_iosched_trim_done(softc->cam_iosched);
4726 daschedule(periph);
4727 cam_periph_unlock(periph);
4728 while ((bp1 = TAILQ_FIRST(&queue)) != NULL) {
4729 TAILQ_REMOVE(&queue, bp1, bio_queue);
4730 bp1->bio_error = bp->bio_error;
4731 if (bp->bio_flags & BIO_ERROR) {
4732 bp1->bio_flags |= BIO_ERROR;
4733 bp1->bio_resid = bp1->bio_bcount;
4734 } else
4735 bp1->bio_resid = 0;
4736 biodone(bp1);
4737 }
4738 } else {
4739 daschedule(periph);
4740 cam_periph_unlock(periph);
4741 }
4742 if (bp != NULL)
4743 biodone(bp);
4744 return;
4745 }
4746
4747 static void
dadone_probewp(struct cam_periph * periph,union ccb * done_ccb)4748 dadone_probewp(struct cam_periph *periph, union ccb *done_ccb)
4749 {
4750 struct da_softc *softc;
4751 struct ccb_scsiio *csio;
4752 uint32_t priority;
4753
4754 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE, ("dadone_probewp\n"));
4755
4756 softc = (struct da_softc *)periph->softc;
4757 priority = done_ccb->ccb_h.pinfo.priority;
4758 csio = &done_ccb->csio;
4759
4760 cam_periph_assert(periph, MA_OWNED);
4761
4762 KASSERT(softc->state == DA_STATE_PROBE_WP,
4763 ("State (%d) not PROBE_WP in dadone_probewp, periph %p ccb %p",
4764 softc->state, periph, done_ccb));
4765 KASSERT((csio->ccb_h.ccb_state & DA_CCB_TYPE_MASK) == DA_CCB_PROBE_WP,
4766 ("CCB State (%lu) not PROBE_WP in dadone_probewp, periph %p ccb %p",
4767 (unsigned long)csio->ccb_h.ccb_state & DA_CCB_TYPE_MASK, periph,
4768 done_ccb));
4769
4770 if (cam_ccb_status(done_ccb) == CAM_REQ_CMP) {
4771 int len, off;
4772 uint8_t dev_spec;
4773
4774 if (csio->cdb_len > 6) {
4775 struct scsi_mode_header_10 *mh =
4776 (struct scsi_mode_header_10 *)csio->data_ptr;
4777 len = 2 + scsi_2btoul(mh->data_length);
4778 off = sizeof(*mh) + scsi_2btoul(mh->blk_desc_len);
4779 dev_spec = mh->dev_spec;
4780 } else {
4781 struct scsi_mode_header_6 *mh =
4782 (struct scsi_mode_header_6 *)csio->data_ptr;
4783 len = 1 + mh->data_length;
4784 off = sizeof(*mh) + mh->blk_desc_len;
4785 dev_spec = mh->dev_spec;
4786 }
4787 if ((dev_spec & 0x80) != 0)
4788 softc->disk->d_flags |= DISKFLAG_WRITE_PROTECT;
4789 else
4790 softc->disk->d_flags &= ~DISKFLAG_WRITE_PROTECT;
4791
4792 /* Next time request only the first of returned mode pages. */
4793 if (off < len && off < csio->dxfer_len - csio->resid)
4794 softc->mode_page = csio->data_ptr[off] & SMPH_PC_MASK;
4795 } else {
4796 int error;
4797
4798 error = daerror(done_ccb, CAM_RETRY_SELTO,
4799 SF_RETRY_UA|SF_NO_PRINT);
4800 if (error == ERESTART)
4801 return;
4802 else if (error != 0) {
4803 if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) {
4804 /* Don't wedge this device's queue */
4805 cam_release_devq(done_ccb->ccb_h.path,
4806 /*relsim_flags*/0,
4807 /*reduction*/0,
4808 /*timeout*/0,
4809 /*getcount_only*/0);
4810 }
4811
4812 /* We don't depend on it, so don't try again. */
4813 softc->mode_page = -1;
4814 }
4815 }
4816
4817 free(csio->data_ptr, M_SCSIDA);
4818 if ((softc->flags & DA_FLAG_CAN_RC16) != 0)
4819 softc->state = DA_STATE_PROBE_RC16;
4820 else
4821 softc->state = DA_STATE_PROBE_RC;
4822 xpt_release_ccb(done_ccb);
4823 xpt_schedule(periph, priority);
4824 return;
4825 }
4826
4827 static void
dadone_proberc(struct cam_periph * periph,union ccb * done_ccb)4828 dadone_proberc(struct cam_periph *periph, union ccb *done_ccb)
4829 {
4830 struct scsi_read_capacity_data *rdcap;
4831 struct scsi_read_capacity_data_long *rcaplong;
4832 struct da_softc *softc;
4833 struct ccb_scsiio *csio;
4834 da_ccb_state state;
4835 char *announce_buf;
4836 uint32_t priority;
4837 int lbp, n;
4838
4839 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE, ("dadone_proberc\n"));
4840
4841 softc = (struct da_softc *)periph->softc;
4842 priority = done_ccb->ccb_h.pinfo.priority;
4843 csio = &done_ccb->csio;
4844 state = csio->ccb_h.ccb_state & DA_CCB_TYPE_MASK;
4845
4846 KASSERT(softc->state == DA_STATE_PROBE_RC || softc->state == DA_STATE_PROBE_RC16,
4847 ("State (%d) not PROBE_RC* in dadone_proberc, periph %p ccb %p",
4848 softc->state, periph, done_ccb));
4849 KASSERT(state == DA_CCB_PROBE_RC || state == DA_CCB_PROBE_RC16,
4850 ("CCB State (%lu) not PROBE_RC* in dadone_probewp, periph %p ccb %p",
4851 (unsigned long)state, periph, done_ccb));
4852
4853 lbp = 0;
4854 rdcap = NULL;
4855 rcaplong = NULL;
4856 /* XXX TODO: can this be a malloc? */
4857 announce_buf = softc->announce_temp;
4858 bzero(announce_buf, DA_ANNOUNCETMP_SZ);
4859
4860 if (state == DA_CCB_PROBE_RC)
4861 rdcap =(struct scsi_read_capacity_data *)csio->data_ptr;
4862 else
4863 rcaplong = (struct scsi_read_capacity_data_long *)
4864 csio->data_ptr;
4865
4866 cam_periph_assert(periph, MA_OWNED);
4867
4868 if ((csio->ccb_h.status & CAM_STATUS_MASK) == CAM_REQ_CMP) {
4869 struct disk_params *dp;
4870 uint32_t block_size;
4871 uint64_t maxsector;
4872 u_int lalba; /* Lowest aligned LBA. */
4873
4874 if (state == DA_CCB_PROBE_RC) {
4875 block_size = scsi_4btoul(rdcap->length);
4876 maxsector = scsi_4btoul(rdcap->addr);
4877 lalba = 0;
4878
4879 /*
4880 * According to SBC-2, if the standard 10
4881 * byte READ CAPACITY command returns 2^32,
4882 * we should issue the 16 byte version of
4883 * the command, since the device in question
4884 * has more sectors than can be represented
4885 * with the short version of the command.
4886 */
4887 if (maxsector == 0xffffffff) {
4888 free(rdcap, M_SCSIDA);
4889 softc->state = DA_STATE_PROBE_RC16;
4890 xpt_release_ccb(done_ccb);
4891 xpt_schedule(periph, priority);
4892 return;
4893 }
4894 } else {
4895 block_size = scsi_4btoul(rcaplong->length);
4896 maxsector = scsi_8btou64(rcaplong->addr);
4897 lalba = scsi_2btoul(rcaplong->lalba_lbp);
4898 }
4899
4900 /*
4901 * Because GEOM code just will panic us if we
4902 * give them an 'illegal' value we'll avoid that
4903 * here.
4904 */
4905 if (block_size == 0) {
4906 block_size = 512;
4907 if (maxsector == 0)
4908 maxsector = -1;
4909 }
4910 if (block_size >= maxphys) {
4911 xpt_print(periph->path,
4912 "unsupportable block size %ju\n",
4913 (uintmax_t) block_size);
4914 announce_buf = NULL;
4915 cam_periph_invalidate(periph);
4916 } else {
4917 /*
4918 * We pass rcaplong into dasetgeom(),
4919 * because it will only use it if it is
4920 * non-NULL.
4921 */
4922 dasetgeom(periph, block_size, maxsector,
4923 rcaplong, sizeof(*rcaplong));
4924 lbp = (lalba & SRC16_LBPME_A);
4925 dp = &softc->params;
4926 n = snprintf(announce_buf, DA_ANNOUNCETMP_SZ,
4927 "%juMB (%ju %u byte sectors",
4928 ((uintmax_t)dp->secsize * dp->sectors) /
4929 (1024 * 1024),
4930 (uintmax_t)dp->sectors, dp->secsize);
4931 if (softc->p_type != 0) {
4932 n += snprintf(announce_buf + n,
4933 DA_ANNOUNCETMP_SZ - n,
4934 ", DIF type %d", softc->p_type);
4935 }
4936 snprintf(announce_buf + n, DA_ANNOUNCETMP_SZ - n, ")");
4937 }
4938 } else {
4939 int error;
4940
4941 /*
4942 * Retry any UNIT ATTENTION type errors. They
4943 * are expected at boot.
4944 */
4945 error = daerror(done_ccb, CAM_RETRY_SELTO,
4946 SF_RETRY_UA|SF_NO_PRINT);
4947 if (error == ERESTART) {
4948 /*
4949 * A retry was scheuled, so
4950 * just return.
4951 */
4952 return;
4953 } else if (error != 0) {
4954 int asc, ascq;
4955 int sense_key, error_code;
4956 int have_sense;
4957 cam_status status;
4958 struct ccb_getdev cgd;
4959
4960 /* Don't wedge this device's queue */
4961 status = done_ccb->ccb_h.status;
4962 if ((status & CAM_DEV_QFRZN) != 0)
4963 cam_release_devq(done_ccb->ccb_h.path,
4964 /*relsim_flags*/0,
4965 /*reduction*/0,
4966 /*timeout*/0,
4967 /*getcount_only*/0);
4968
4969 memset(&cgd, 0, sizeof(cgd));
4970 xpt_setup_ccb(&cgd.ccb_h, done_ccb->ccb_h.path,
4971 CAM_PRIORITY_NORMAL);
4972 cgd.ccb_h.func_code = XPT_GDEV_TYPE;
4973 xpt_action((union ccb *)&cgd);
4974
4975 if (scsi_extract_sense_ccb(done_ccb,
4976 &error_code, &sense_key, &asc, &ascq))
4977 have_sense = TRUE;
4978 else
4979 have_sense = FALSE;
4980
4981 /*
4982 * If we tried READ CAPACITY(16) and failed,
4983 * fallback to READ CAPACITY(10).
4984 */
4985 if ((state == DA_CCB_PROBE_RC16) &&
4986 (softc->flags & DA_FLAG_CAN_RC16) &&
4987 (((csio->ccb_h.status & CAM_STATUS_MASK) ==
4988 CAM_REQ_INVALID) ||
4989 ((have_sense) &&
4990 (error_code == SSD_CURRENT_ERROR ||
4991 error_code == SSD_DESC_CURRENT_ERROR) &&
4992 (sense_key == SSD_KEY_ILLEGAL_REQUEST)))) {
4993 cam_periph_assert(periph, MA_OWNED);
4994 softc->flags &= ~DA_FLAG_CAN_RC16;
4995 free(rdcap, M_SCSIDA);
4996 softc->state = DA_STATE_PROBE_RC;
4997 xpt_release_ccb(done_ccb);
4998 xpt_schedule(periph, priority);
4999 return;
5000 }
5001
5002 /*
5003 * Attach to anything that claims to be a direct access
5004 * or optical disk device, as long as it doesn't return
5005 * a "Logical unit not supported" (25/0) error.
5006 * "Internal Target Failure" (44/0) is also special and
5007 * typically means that the device is a SATA drive
5008 * behind a SATL translation that's fallen into a
5009 * terminally fatal state.
5010 *
5011 * 25/0: LOGICAL UNIT NOT SUPPORTED
5012 * 44/0: INTERNAL TARGET FAILURE
5013 * 44/1: PERSISTENT RESERVATION INFORMATION LOST
5014 * 44/71: ATA DEVICE FAILED SET FEATURES
5015 */
5016 if ((have_sense)
5017 && (asc != 0x25) && (asc != 0x44)
5018 && (error_code == SSD_CURRENT_ERROR
5019 || error_code == SSD_DESC_CURRENT_ERROR)) {
5020 const char *sense_key_desc;
5021 const char *asc_desc;
5022
5023 dasetgeom(periph, 512, -1, NULL, 0);
5024 scsi_sense_desc(sense_key, asc, ascq,
5025 &cgd.inq_data, &sense_key_desc,
5026 &asc_desc);
5027 snprintf(announce_buf, DA_ANNOUNCETMP_SZ,
5028 "Attempt to query device "
5029 "size failed: %s, %s",
5030 sense_key_desc, asc_desc);
5031 } else {
5032 if (have_sense)
5033 scsi_sense_print(&done_ccb->csio);
5034 else {
5035 xpt_print(periph->path,
5036 "got CAM status %#x\n",
5037 done_ccb->ccb_h.status);
5038 }
5039
5040 xpt_print(periph->path, "fatal error, "
5041 "failed to attach to device\n");
5042
5043 announce_buf = NULL;
5044
5045 /*
5046 * Free up resources.
5047 */
5048 cam_periph_invalidate(periph);
5049 }
5050 }
5051 }
5052 free(csio->data_ptr, M_SCSIDA);
5053 if (announce_buf != NULL &&
5054 ((softc->flags & DA_FLAG_ANNOUNCED) == 0)) {
5055 struct sbuf sb;
5056
5057 sbuf_new(&sb, softc->announcebuf, DA_ANNOUNCE_SZ,
5058 SBUF_FIXEDLEN);
5059 xpt_announce_periph_sbuf(periph, &sb, announce_buf);
5060 xpt_announce_quirks_sbuf(periph, &sb, softc->quirks,
5061 DA_Q_BIT_STRING);
5062 sbuf_finish(&sb);
5063 sbuf_putbuf(&sb);
5064
5065 /*
5066 * Create our sysctl variables, now that we know
5067 * we have successfully attached.
5068 */
5069 /* increase the refcount */
5070 if (da_periph_acquire(periph, DA_REF_SYSCTL) == 0) {
5071 taskqueue_enqueue(taskqueue_thread,
5072 &softc->sysctl_task);
5073 } else {
5074 /* XXX This message is useless! */
5075 xpt_print(periph->path, "fatal error, "
5076 "could not acquire reference count\n");
5077 }
5078 }
5079
5080 /* We already probed the device. */
5081 if (softc->flags & DA_FLAG_PROBED) {
5082 daprobedone(periph, done_ccb);
5083 return;
5084 }
5085
5086 /* Ensure re-probe doesn't see old delete. */
5087 softc->delete_available = 0;
5088 dadeleteflag(softc, DA_DELETE_ZERO, 1);
5089 if (lbp && (softc->quirks & DA_Q_NO_UNMAP) == 0) {
5090 /*
5091 * Based on older SBC-3 spec revisions
5092 * any of the UNMAP methods "may" be
5093 * available via LBP given this flag so
5094 * we flag all of them as available and
5095 * then remove those which further
5096 * probes confirm aren't available
5097 * later.
5098 *
5099 * We could also check readcap(16) p_type
5100 * flag to exclude one or more invalid
5101 * write same (X) types here
5102 */
5103 dadeleteflag(softc, DA_DELETE_WS16, 1);
5104 dadeleteflag(softc, DA_DELETE_WS10, 1);
5105 dadeleteflag(softc, DA_DELETE_UNMAP, 1);
5106
5107 softc->state = DA_STATE_PROBE_LBP;
5108 xpt_release_ccb(done_ccb);
5109 xpt_schedule(periph, priority);
5110 return;
5111 }
5112
5113 softc->state = DA_STATE_PROBE_BDC;
5114 xpt_release_ccb(done_ccb);
5115 xpt_schedule(periph, priority);
5116 return;
5117 }
5118
5119 static void
dadone_probelbp(struct cam_periph * periph,union ccb * done_ccb)5120 dadone_probelbp(struct cam_periph *periph, union ccb *done_ccb)
5121 {
5122 struct scsi_vpd_logical_block_prov *lbp;
5123 struct da_softc *softc;
5124 struct ccb_scsiio *csio;
5125 uint32_t priority;
5126
5127 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE, ("dadone_probelbp\n"));
5128
5129 softc = (struct da_softc *)periph->softc;
5130 priority = done_ccb->ccb_h.pinfo.priority;
5131 csio = &done_ccb->csio;
5132 lbp = (struct scsi_vpd_logical_block_prov *)csio->data_ptr;
5133
5134 cam_periph_assert(periph, MA_OWNED);
5135
5136 if ((csio->ccb_h.status & CAM_STATUS_MASK) == CAM_REQ_CMP) {
5137 /*
5138 * T10/1799-D Revision 31 states at least one of these
5139 * must be supported but we don't currently enforce this.
5140 */
5141 dadeleteflag(softc, DA_DELETE_WS16,
5142 (lbp->flags & SVPD_LBP_WS16));
5143 dadeleteflag(softc, DA_DELETE_WS10,
5144 (lbp->flags & SVPD_LBP_WS10));
5145 dadeleteflag(softc, DA_DELETE_UNMAP,
5146 (lbp->flags & SVPD_LBP_UNMAP));
5147 } else {
5148 int error;
5149 error = daerror(done_ccb, CAM_RETRY_SELTO,
5150 SF_RETRY_UA|SF_NO_PRINT);
5151 if (error == ERESTART)
5152 return;
5153 else if (error != 0) {
5154 if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) {
5155 /* Don't wedge this device's queue */
5156 cam_release_devq(done_ccb->ccb_h.path,
5157 /*relsim_flags*/0,
5158 /*reduction*/0,
5159 /*timeout*/0,
5160 /*getcount_only*/0);
5161 }
5162
5163 /*
5164 * Failure indicates we don't support any SBC-3
5165 * delete methods with UNMAP
5166 */
5167 }
5168 }
5169
5170 free(lbp, M_SCSIDA);
5171 softc->state = DA_STATE_PROBE_BLK_LIMITS;
5172 xpt_release_ccb(done_ccb);
5173 xpt_schedule(periph, priority);
5174 return;
5175 }
5176
5177 static void
dadone_probeblklimits(struct cam_periph * periph,union ccb * done_ccb)5178 dadone_probeblklimits(struct cam_periph *periph, union ccb *done_ccb)
5179 {
5180 struct scsi_vpd_block_limits *block_limits;
5181 struct da_softc *softc;
5182 struct ccb_scsiio *csio;
5183 uint32_t priority;
5184
5185 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE, ("dadone_probeblklimits\n"));
5186
5187 softc = (struct da_softc *)periph->softc;
5188 priority = done_ccb->ccb_h.pinfo.priority;
5189 csio = &done_ccb->csio;
5190 block_limits = (struct scsi_vpd_block_limits *)csio->data_ptr;
5191
5192 cam_periph_assert(periph, MA_OWNED);
5193
5194 if ((csio->ccb_h.status & CAM_STATUS_MASK) == CAM_REQ_CMP) {
5195 uint32_t max_txfer_len = scsi_4btoul(
5196 block_limits->max_txfer_len);
5197 uint32_t max_unmap_lba_cnt = scsi_4btoul(
5198 block_limits->max_unmap_lba_cnt);
5199 uint32_t max_unmap_blk_cnt = scsi_4btoul(
5200 block_limits->max_unmap_blk_cnt);
5201 uint32_t unmap_gran = scsi_4btoul(
5202 block_limits->opt_unmap_grain);
5203 uint32_t unmap_gran_align = scsi_4btoul(
5204 block_limits->unmap_grain_align);
5205 uint64_t ws_max_blks = scsi_8btou64(
5206 block_limits->max_write_same_length);
5207
5208 if (max_txfer_len != 0) {
5209 softc->disk->d_maxsize = MIN(softc->maxio,
5210 (off_t)max_txfer_len * softc->params.secsize);
5211 }
5212
5213 /*
5214 * We should already support UNMAP but we check lba
5215 * and block count to be sure
5216 */
5217 if (max_unmap_lba_cnt != 0x00L &&
5218 max_unmap_blk_cnt != 0x00L) {
5219 softc->unmap_max_lba = max_unmap_lba_cnt;
5220 softc->unmap_max_ranges = min(max_unmap_blk_cnt,
5221 UNMAP_MAX_RANGES);
5222 if (unmap_gran > 1) {
5223 softc->unmap_gran = unmap_gran;
5224 if (unmap_gran_align & 0x80000000) {
5225 softc->unmap_gran_align =
5226 unmap_gran_align & 0x7fffffff;
5227 }
5228 }
5229 } else {
5230 /*
5231 * Unexpected UNMAP limits which means the
5232 * device doesn't actually support UNMAP
5233 */
5234 dadeleteflag(softc, DA_DELETE_UNMAP, 0);
5235 }
5236
5237 if (ws_max_blks != 0x00L)
5238 softc->ws_max_blks = ws_max_blks;
5239 } else {
5240 int error;
5241 error = daerror(done_ccb, CAM_RETRY_SELTO,
5242 SF_RETRY_UA|SF_NO_PRINT);
5243 if (error == ERESTART)
5244 return;
5245 else if (error != 0) {
5246 if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) {
5247 /* Don't wedge this device's queue */
5248 cam_release_devq(done_ccb->ccb_h.path,
5249 /*relsim_flags*/0,
5250 /*reduction*/0,
5251 /*timeout*/0,
5252 /*getcount_only*/0);
5253 }
5254
5255 /*
5256 * Failure here doesn't mean UNMAP is not
5257 * supported as this is an optional page.
5258 */
5259 softc->unmap_max_lba = 1;
5260 softc->unmap_max_ranges = 1;
5261 }
5262 }
5263
5264 free(block_limits, M_SCSIDA);
5265 softc->state = DA_STATE_PROBE_BDC;
5266 xpt_release_ccb(done_ccb);
5267 xpt_schedule(periph, priority);
5268 return;
5269 }
5270
5271 static void
dadone_probebdc(struct cam_periph * periph,union ccb * done_ccb)5272 dadone_probebdc(struct cam_periph *periph, union ccb *done_ccb)
5273 {
5274 struct scsi_vpd_block_device_characteristics *bdc;
5275 struct da_softc *softc;
5276 struct ccb_scsiio *csio;
5277 uint32_t priority;
5278
5279 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE, ("dadone_probebdc\n"));
5280
5281 softc = (struct da_softc *)periph->softc;
5282 priority = done_ccb->ccb_h.pinfo.priority;
5283 csio = &done_ccb->csio;
5284 bdc = (struct scsi_vpd_block_device_characteristics *)csio->data_ptr;
5285
5286 cam_periph_assert(periph, MA_OWNED);
5287
5288 if ((csio->ccb_h.status & CAM_STATUS_MASK) == CAM_REQ_CMP) {
5289 uint32_t valid_len;
5290
5291 /*
5292 * Disable queue sorting for non-rotational media
5293 * by default.
5294 */
5295 uint16_t old_rate = softc->disk->d_rotation_rate;
5296
5297 valid_len = csio->dxfer_len - csio->resid;
5298 if (SBDC_IS_PRESENT(bdc, valid_len,
5299 medium_rotation_rate)) {
5300 softc->disk->d_rotation_rate =
5301 scsi_2btoul(bdc->medium_rotation_rate);
5302 if (softc->disk->d_rotation_rate == SVPD_NON_ROTATING) {
5303 cam_iosched_set_sort_queue(
5304 softc->cam_iosched, 0);
5305 softc->flags &= ~DA_FLAG_ROTATING;
5306 }
5307 if (softc->disk->d_rotation_rate != old_rate) {
5308 disk_attr_changed(softc->disk,
5309 "GEOM::rotation_rate", M_NOWAIT);
5310 }
5311 }
5312 if ((SBDC_IS_PRESENT(bdc, valid_len, flags))
5313 && (softc->zone_mode == DA_ZONE_NONE)) {
5314 int ata_proto;
5315
5316 if (scsi_vpd_supported_page(periph,
5317 SVPD_ATA_INFORMATION))
5318 ata_proto = 1;
5319 else
5320 ata_proto = 0;
5321
5322 /*
5323 * The Zoned field will only be set for
5324 * Drive Managed and Host Aware drives. If
5325 * they are Host Managed, the device type
5326 * in the standard INQUIRY data should be
5327 * set to T_ZBC_HM (0x14).
5328 */
5329 if ((bdc->flags & SVPD_ZBC_MASK) ==
5330 SVPD_HAW_ZBC) {
5331 softc->zone_mode = DA_ZONE_HOST_AWARE;
5332 softc->zone_interface = (ata_proto) ?
5333 DA_ZONE_IF_ATA_SAT : DA_ZONE_IF_SCSI;
5334 } else if ((bdc->flags & SVPD_ZBC_MASK) ==
5335 SVPD_DM_ZBC) {
5336 softc->zone_mode =DA_ZONE_DRIVE_MANAGED;
5337 softc->zone_interface = (ata_proto) ?
5338 DA_ZONE_IF_ATA_SAT : DA_ZONE_IF_SCSI;
5339 } else if ((bdc->flags & SVPD_ZBC_MASK) !=
5340 SVPD_ZBC_NR) {
5341 xpt_print(periph->path, "Unknown zoned "
5342 "type %#x",
5343 bdc->flags & SVPD_ZBC_MASK);
5344 }
5345 }
5346 } else {
5347 int error;
5348 error = daerror(done_ccb, CAM_RETRY_SELTO,
5349 SF_RETRY_UA|SF_NO_PRINT);
5350 if (error == ERESTART)
5351 return;
5352 else if (error != 0) {
5353 if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) {
5354 /* Don't wedge this device's queue */
5355 cam_release_devq(done_ccb->ccb_h.path,
5356 /*relsim_flags*/0,
5357 /*reduction*/0,
5358 /*timeout*/0,
5359 /*getcount_only*/0);
5360 }
5361 }
5362 }
5363
5364 free(bdc, M_SCSIDA);
5365 softc->state = DA_STATE_PROBE_ATA;
5366 xpt_release_ccb(done_ccb);
5367 xpt_schedule(periph, priority);
5368 return;
5369 }
5370
5371 static void
dadone_probeata(struct cam_periph * periph,union ccb * done_ccb)5372 dadone_probeata(struct cam_periph *periph, union ccb *done_ccb)
5373 {
5374 struct ata_params *ata_params;
5375 struct ccb_scsiio *csio;
5376 struct da_softc *softc;
5377 uint32_t priority;
5378 int continue_probe;
5379 int error;
5380
5381 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE, ("dadone_probeata\n"));
5382
5383 softc = (struct da_softc *)periph->softc;
5384 priority = done_ccb->ccb_h.pinfo.priority;
5385 csio = &done_ccb->csio;
5386 ata_params = (struct ata_params *)csio->data_ptr;
5387 continue_probe = 0;
5388 error = 0;
5389
5390 cam_periph_assert(periph, MA_OWNED);
5391
5392 if ((csio->ccb_h.status & CAM_STATUS_MASK) == CAM_REQ_CMP) {
5393 uint16_t old_rate;
5394
5395 ata_param_fixup(ata_params);
5396 if (ata_params->support_dsm & ATA_SUPPORT_DSM_TRIM &&
5397 (softc->quirks & DA_Q_NO_UNMAP) == 0) {
5398 dadeleteflag(softc, DA_DELETE_ATA_TRIM, 1);
5399 if (ata_params->max_dsm_blocks != 0)
5400 softc->trim_max_ranges = min(
5401 softc->trim_max_ranges,
5402 ata_params->max_dsm_blocks *
5403 ATA_DSM_BLK_RANGES);
5404 }
5405 /*
5406 * Disable queue sorting for non-rotational media
5407 * by default.
5408 */
5409 old_rate = softc->disk->d_rotation_rate;
5410 softc->disk->d_rotation_rate = ata_params->media_rotation_rate;
5411 if (softc->disk->d_rotation_rate == ATA_RATE_NON_ROTATING) {
5412 cam_iosched_set_sort_queue(softc->cam_iosched, 0);
5413 softc->flags &= ~DA_FLAG_ROTATING;
5414 }
5415 if (softc->disk->d_rotation_rate != old_rate) {
5416 disk_attr_changed(softc->disk,
5417 "GEOM::rotation_rate", M_NOWAIT);
5418 }
5419
5420 cam_periph_assert(periph, MA_OWNED);
5421 if (ata_params->capabilities1 & ATA_SUPPORT_DMA)
5422 softc->flags |= DA_FLAG_CAN_ATA_DMA;
5423
5424 if (ata_params->support.extension & ATA_SUPPORT_GENLOG)
5425 softc->flags |= DA_FLAG_CAN_ATA_LOG;
5426
5427 /*
5428 * At this point, if we have a SATA host aware drive,
5429 * we communicate via ATA passthrough unless the
5430 * SAT layer supports ZBC -> ZAC translation. In
5431 * that case,
5432 *
5433 * XXX KDM figure out how to detect a host managed
5434 * SATA drive.
5435 */
5436 if (softc->zone_mode == DA_ZONE_NONE) {
5437 /*
5438 * Note that we don't override the zone
5439 * mode or interface if it has already been
5440 * set. This is because it has either been
5441 * set as a quirk, or when we probed the
5442 * SCSI Block Device Characteristics page,
5443 * the zoned field was set. The latter
5444 * means that the SAT layer supports ZBC to
5445 * ZAC translation, and we would prefer to
5446 * use that if it is available.
5447 */
5448 if ((ata_params->support3 &
5449 ATA_SUPPORT_ZONE_MASK) ==
5450 ATA_SUPPORT_ZONE_HOST_AWARE) {
5451 softc->zone_mode = DA_ZONE_HOST_AWARE;
5452 softc->zone_interface =
5453 DA_ZONE_IF_ATA_PASS;
5454 } else if ((ata_params->support3 &
5455 ATA_SUPPORT_ZONE_MASK) ==
5456 ATA_SUPPORT_ZONE_DEV_MANAGED) {
5457 softc->zone_mode =DA_ZONE_DRIVE_MANAGED;
5458 softc->zone_interface = DA_ZONE_IF_ATA_PASS;
5459 }
5460 }
5461
5462 } else {
5463 error = daerror(done_ccb, CAM_RETRY_SELTO,
5464 SF_RETRY_UA|SF_NO_PRINT);
5465 if (error == ERESTART)
5466 return;
5467 else if (error != 0) {
5468 if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) {
5469 /* Don't wedge this device's queue */
5470 cam_release_devq(done_ccb->ccb_h.path,
5471 /*relsim_flags*/0,
5472 /*reduction*/0,
5473 /*timeout*/0,
5474 /*getcount_only*/0);
5475 }
5476 }
5477 }
5478
5479 if ((softc->zone_mode == DA_ZONE_HOST_AWARE)
5480 || (softc->zone_mode == DA_ZONE_HOST_MANAGED)) {
5481 /*
5482 * If the ATA IDENTIFY failed, we could be talking
5483 * to a SCSI drive, although that seems unlikely,
5484 * since the drive did report that it supported the
5485 * ATA Information VPD page. If the ATA IDENTIFY
5486 * succeeded, and the SAT layer doesn't support
5487 * ZBC -> ZAC translation, continue on to get the
5488 * directory of ATA logs, and complete the rest of
5489 * the ZAC probe. If the SAT layer does support
5490 * ZBC -> ZAC translation, we want to use that,
5491 * and we'll probe the SCSI Zoned Block Device
5492 * Characteristics VPD page next.
5493 */
5494 if ((error == 0)
5495 && (softc->flags & DA_FLAG_CAN_ATA_LOG)
5496 && (softc->zone_interface == DA_ZONE_IF_ATA_PASS))
5497 softc->state = DA_STATE_PROBE_ATA_LOGDIR;
5498 else
5499 softc->state = DA_STATE_PROBE_ZONE;
5500 continue_probe = 1;
5501 }
5502 if (continue_probe != 0) {
5503 xpt_schedule(periph, priority);
5504 xpt_release_ccb(done_ccb);
5505 return;
5506 } else
5507 daprobedone(periph, done_ccb);
5508 return;
5509 }
5510
5511 static void
dadone_probeatalogdir(struct cam_periph * periph,union ccb * done_ccb)5512 dadone_probeatalogdir(struct cam_periph *periph, union ccb *done_ccb)
5513 {
5514 struct da_softc *softc;
5515 struct ccb_scsiio *csio;
5516 uint32_t priority;
5517 int error;
5518
5519 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE, ("dadone_probeatalogdir\n"));
5520
5521 softc = (struct da_softc *)periph->softc;
5522 priority = done_ccb->ccb_h.pinfo.priority;
5523 csio = &done_ccb->csio;
5524
5525 cam_periph_assert(periph, MA_OWNED);
5526 if ((csio->ccb_h.status & CAM_STATUS_MASK) == CAM_REQ_CMP) {
5527 error = 0;
5528 softc->valid_logdir_len = 0;
5529 bzero(&softc->ata_logdir, sizeof(softc->ata_logdir));
5530 softc->valid_logdir_len = csio->dxfer_len - csio->resid;
5531 if (softc->valid_logdir_len > 0)
5532 bcopy(csio->data_ptr, &softc->ata_logdir,
5533 min(softc->valid_logdir_len,
5534 sizeof(softc->ata_logdir)));
5535 /*
5536 * Figure out whether the Identify Device log is
5537 * supported. The General Purpose log directory
5538 * has a header, and lists the number of pages
5539 * available for each GP log identified by the
5540 * offset into the list.
5541 */
5542 if ((softc->valid_logdir_len >=
5543 ((ATA_IDENTIFY_DATA_LOG + 1) * sizeof(uint16_t)))
5544 && (le16dec(softc->ata_logdir.header) ==
5545 ATA_GP_LOG_DIR_VERSION)
5546 && (le16dec(&softc->ata_logdir.num_pages[
5547 (ATA_IDENTIFY_DATA_LOG *
5548 sizeof(uint16_t)) - sizeof(uint16_t)]) > 0)){
5549 softc->flags |= DA_FLAG_CAN_ATA_IDLOG;
5550 } else {
5551 softc->flags &= ~DA_FLAG_CAN_ATA_IDLOG;
5552 }
5553 } else {
5554 error = daerror(done_ccb, CAM_RETRY_SELTO,
5555 SF_RETRY_UA|SF_NO_PRINT);
5556 if (error == ERESTART)
5557 return;
5558 else if (error != 0) {
5559 /*
5560 * If we can't get the ATA log directory,
5561 * then ATA logs are effectively not
5562 * supported even if the bit is set in the
5563 * identify data.
5564 */
5565 softc->flags &= ~(DA_FLAG_CAN_ATA_LOG |
5566 DA_FLAG_CAN_ATA_IDLOG);
5567 if ((done_ccb->ccb_h.status &
5568 CAM_DEV_QFRZN) != 0) {
5569 /* Don't wedge this device's queue */
5570 cam_release_devq(done_ccb->ccb_h.path,
5571 /*relsim_flags*/0,
5572 /*reduction*/0,
5573 /*timeout*/0,
5574 /*getcount_only*/0);
5575 }
5576 }
5577 }
5578
5579 free(csio->data_ptr, M_SCSIDA);
5580
5581 if ((error == 0)
5582 && (softc->flags & DA_FLAG_CAN_ATA_IDLOG)) {
5583 softc->state = DA_STATE_PROBE_ATA_IDDIR;
5584 xpt_release_ccb(done_ccb);
5585 xpt_schedule(periph, priority);
5586 return;
5587 }
5588 daprobedone(periph, done_ccb);
5589 return;
5590 }
5591
5592 static void
dadone_probeataiddir(struct cam_periph * periph,union ccb * done_ccb)5593 dadone_probeataiddir(struct cam_periph *periph, union ccb *done_ccb)
5594 {
5595 struct da_softc *softc;
5596 struct ccb_scsiio *csio;
5597 uint32_t priority;
5598 int error;
5599
5600 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE, ("dadone_probeataiddir\n"));
5601
5602 softc = (struct da_softc *)periph->softc;
5603 priority = done_ccb->ccb_h.pinfo.priority;
5604 csio = &done_ccb->csio;
5605
5606 cam_periph_assert(periph, MA_OWNED);
5607
5608 if ((csio->ccb_h.status & CAM_STATUS_MASK) == CAM_REQ_CMP) {
5609 off_t entries_offset, max_entries;
5610 error = 0;
5611
5612 softc->valid_iddir_len = 0;
5613 bzero(&softc->ata_iddir, sizeof(softc->ata_iddir));
5614 softc->flags &= ~(DA_FLAG_CAN_ATA_SUPCAP |
5615 DA_FLAG_CAN_ATA_ZONE);
5616 softc->valid_iddir_len = csio->dxfer_len - csio->resid;
5617 if (softc->valid_iddir_len > 0)
5618 bcopy(csio->data_ptr, &softc->ata_iddir,
5619 min(softc->valid_iddir_len,
5620 sizeof(softc->ata_iddir)));
5621
5622 entries_offset =
5623 __offsetof(struct ata_identify_log_pages,entries);
5624 max_entries = softc->valid_iddir_len - entries_offset;
5625 if ((softc->valid_iddir_len > (entries_offset + 1))
5626 && (le64dec(softc->ata_iddir.header) == ATA_IDLOG_REVISION)
5627 && (softc->ata_iddir.entry_count > 0)) {
5628 int num_entries, i;
5629
5630 num_entries = softc->ata_iddir.entry_count;
5631 num_entries = min(num_entries,
5632 softc->valid_iddir_len - entries_offset);
5633 for (i = 0; i < num_entries && i < max_entries; i++) {
5634 if (softc->ata_iddir.entries[i] ==
5635 ATA_IDL_SUP_CAP)
5636 softc->flags |= DA_FLAG_CAN_ATA_SUPCAP;
5637 else if (softc->ata_iddir.entries[i] ==
5638 ATA_IDL_ZDI)
5639 softc->flags |= DA_FLAG_CAN_ATA_ZONE;
5640
5641 if ((softc->flags & DA_FLAG_CAN_ATA_SUPCAP)
5642 && (softc->flags & DA_FLAG_CAN_ATA_ZONE))
5643 break;
5644 }
5645 }
5646 } else {
5647 error = daerror(done_ccb, CAM_RETRY_SELTO,
5648 SF_RETRY_UA|SF_NO_PRINT);
5649 if (error == ERESTART)
5650 return;
5651 else if (error != 0) {
5652 /*
5653 * If we can't get the ATA Identify Data log
5654 * directory, then it effectively isn't
5655 * supported even if the ATA Log directory
5656 * a non-zero number of pages present for
5657 * this log.
5658 */
5659 softc->flags &= ~DA_FLAG_CAN_ATA_IDLOG;
5660 if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) {
5661 /* Don't wedge this device's queue */
5662 cam_release_devq(done_ccb->ccb_h.path,
5663 /*relsim_flags*/0,
5664 /*reduction*/0,
5665 /*timeout*/0,
5666 /*getcount_only*/0);
5667 }
5668 }
5669 }
5670
5671 free(csio->data_ptr, M_SCSIDA);
5672
5673 if ((error == 0) && (softc->flags & DA_FLAG_CAN_ATA_SUPCAP)) {
5674 softc->state = DA_STATE_PROBE_ATA_SUP;
5675 xpt_release_ccb(done_ccb);
5676 xpt_schedule(periph, priority);
5677 return;
5678 }
5679 daprobedone(periph, done_ccb);
5680 return;
5681 }
5682
5683 static void
dadone_probeatasup(struct cam_periph * periph,union ccb * done_ccb)5684 dadone_probeatasup(struct cam_periph *periph, union ccb *done_ccb)
5685 {
5686 struct da_softc *softc;
5687 struct ccb_scsiio *csio;
5688 uint32_t priority;
5689 int error;
5690
5691 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE, ("dadone_probeatasup\n"));
5692
5693 softc = (struct da_softc *)periph->softc;
5694 priority = done_ccb->ccb_h.pinfo.priority;
5695 csio = &done_ccb->csio;
5696
5697 cam_periph_assert(periph, MA_OWNED);
5698
5699 if ((csio->ccb_h.status & CAM_STATUS_MASK) == CAM_REQ_CMP) {
5700 uint32_t valid_len;
5701 size_t needed_size;
5702 struct ata_identify_log_sup_cap *sup_cap;
5703 error = 0;
5704
5705 sup_cap = (struct ata_identify_log_sup_cap *)csio->data_ptr;
5706 valid_len = csio->dxfer_len - csio->resid;
5707 needed_size = __offsetof(struct ata_identify_log_sup_cap,
5708 sup_zac_cap) + 1 + sizeof(sup_cap->sup_zac_cap);
5709 if (valid_len >= needed_size) {
5710 uint64_t zoned, zac_cap;
5711
5712 zoned = le64dec(sup_cap->zoned_cap);
5713 if (zoned & ATA_ZONED_VALID) {
5714 /*
5715 * This should have already been
5716 * set, because this is also in the
5717 * ATA identify data.
5718 */
5719 if ((zoned & ATA_ZONED_MASK) ==
5720 ATA_SUPPORT_ZONE_HOST_AWARE)
5721 softc->zone_mode = DA_ZONE_HOST_AWARE;
5722 else if ((zoned & ATA_ZONED_MASK) ==
5723 ATA_SUPPORT_ZONE_DEV_MANAGED)
5724 softc->zone_mode =
5725 DA_ZONE_DRIVE_MANAGED;
5726 }
5727
5728 zac_cap = le64dec(sup_cap->sup_zac_cap);
5729 if (zac_cap & ATA_SUP_ZAC_CAP_VALID) {
5730 if (zac_cap & ATA_REPORT_ZONES_SUP)
5731 softc->zone_flags |=
5732 DA_ZONE_FLAG_RZ_SUP;
5733 if (zac_cap & ATA_ND_OPEN_ZONE_SUP)
5734 softc->zone_flags |=
5735 DA_ZONE_FLAG_OPEN_SUP;
5736 if (zac_cap & ATA_ND_CLOSE_ZONE_SUP)
5737 softc->zone_flags |=
5738 DA_ZONE_FLAG_CLOSE_SUP;
5739 if (zac_cap & ATA_ND_FINISH_ZONE_SUP)
5740 softc->zone_flags |=
5741 DA_ZONE_FLAG_FINISH_SUP;
5742 if (zac_cap & ATA_ND_RWP_SUP)
5743 softc->zone_flags |=
5744 DA_ZONE_FLAG_RWP_SUP;
5745 } else {
5746 /*
5747 * This field was introduced in
5748 * ACS-4, r08 on April 28th, 2015.
5749 * If the drive firmware was written
5750 * to an earlier spec, it won't have
5751 * the field. So, assume all
5752 * commands are supported.
5753 */
5754 softc->zone_flags |= DA_ZONE_FLAG_SUP_MASK;
5755 }
5756 }
5757 } else {
5758 error = daerror(done_ccb, CAM_RETRY_SELTO,
5759 SF_RETRY_UA|SF_NO_PRINT);
5760 if (error == ERESTART)
5761 return;
5762 else if (error != 0) {
5763 /*
5764 * If we can't get the ATA Identify Data
5765 * Supported Capabilities page, clear the
5766 * flag...
5767 */
5768 softc->flags &= ~DA_FLAG_CAN_ATA_SUPCAP;
5769 /*
5770 * And clear zone capabilities.
5771 */
5772 softc->zone_flags &= ~DA_ZONE_FLAG_SUP_MASK;
5773 if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) {
5774 /* Don't wedge this device's queue */
5775 cam_release_devq(done_ccb->ccb_h.path,
5776 /*relsim_flags*/0,
5777 /*reduction*/0,
5778 /*timeout*/0,
5779 /*getcount_only*/0);
5780 }
5781 }
5782 }
5783
5784 free(csio->data_ptr, M_SCSIDA);
5785
5786 if ((error == 0) && (softc->flags & DA_FLAG_CAN_ATA_ZONE)) {
5787 softc->state = DA_STATE_PROBE_ATA_ZONE;
5788 xpt_release_ccb(done_ccb);
5789 xpt_schedule(periph, priority);
5790 return;
5791 }
5792 daprobedone(periph, done_ccb);
5793 return;
5794 }
5795
5796 static void
dadone_probeatazone(struct cam_periph * periph,union ccb * done_ccb)5797 dadone_probeatazone(struct cam_periph *periph, union ccb *done_ccb)
5798 {
5799 struct da_softc *softc;
5800 struct ccb_scsiio *csio;
5801 int error;
5802
5803 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE, ("dadone_probeatazone\n"));
5804
5805 softc = (struct da_softc *)periph->softc;
5806 csio = &done_ccb->csio;
5807
5808 cam_periph_assert(periph, MA_OWNED);
5809
5810 if ((csio->ccb_h.status & CAM_STATUS_MASK) == CAM_REQ_CMP) {
5811 struct ata_zoned_info_log *zi_log;
5812 uint32_t valid_len;
5813 size_t needed_size;
5814
5815 zi_log = (struct ata_zoned_info_log *)csio->data_ptr;
5816
5817 valid_len = csio->dxfer_len - csio->resid;
5818 needed_size = __offsetof(struct ata_zoned_info_log,
5819 version_info) + 1 + sizeof(zi_log->version_info);
5820 if (valid_len >= needed_size) {
5821 uint64_t tmpvar;
5822
5823 tmpvar = le64dec(zi_log->zoned_cap);
5824 if (tmpvar & ATA_ZDI_CAP_VALID) {
5825 if (tmpvar & ATA_ZDI_CAP_URSWRZ)
5826 softc->zone_flags |=
5827 DA_ZONE_FLAG_URSWRZ;
5828 else
5829 softc->zone_flags &=
5830 ~DA_ZONE_FLAG_URSWRZ;
5831 }
5832 tmpvar = le64dec(zi_log->optimal_seq_zones);
5833 if (tmpvar & ATA_ZDI_OPT_SEQ_VALID) {
5834 softc->zone_flags |= DA_ZONE_FLAG_OPT_SEQ_SET;
5835 softc->optimal_seq_zones = (tmpvar &
5836 ATA_ZDI_OPT_SEQ_MASK);
5837 } else {
5838 softc->zone_flags &= ~DA_ZONE_FLAG_OPT_SEQ_SET;
5839 softc->optimal_seq_zones = 0;
5840 }
5841
5842 tmpvar =le64dec(zi_log->optimal_nonseq_zones);
5843 if (tmpvar & ATA_ZDI_OPT_NS_VALID) {
5844 softc->zone_flags |=
5845 DA_ZONE_FLAG_OPT_NONSEQ_SET;
5846 softc->optimal_nonseq_zones =
5847 (tmpvar & ATA_ZDI_OPT_NS_MASK);
5848 } else {
5849 softc->zone_flags &=
5850 ~DA_ZONE_FLAG_OPT_NONSEQ_SET;
5851 softc->optimal_nonseq_zones = 0;
5852 }
5853
5854 tmpvar = le64dec(zi_log->max_seq_req_zones);
5855 if (tmpvar & ATA_ZDI_MAX_SEQ_VALID) {
5856 softc->zone_flags |= DA_ZONE_FLAG_MAX_SEQ_SET;
5857 softc->max_seq_zones =
5858 (tmpvar & ATA_ZDI_MAX_SEQ_MASK);
5859 } else {
5860 softc->zone_flags &= ~DA_ZONE_FLAG_MAX_SEQ_SET;
5861 softc->max_seq_zones = 0;
5862 }
5863 }
5864 } else {
5865 error = daerror(done_ccb, CAM_RETRY_SELTO,
5866 SF_RETRY_UA|SF_NO_PRINT);
5867 if (error == ERESTART)
5868 return;
5869 else if (error != 0) {
5870 softc->flags &= ~DA_FLAG_CAN_ATA_ZONE;
5871 softc->flags &= ~DA_ZONE_FLAG_SET_MASK;
5872
5873 if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) {
5874 /* Don't wedge this device's queue */
5875 cam_release_devq(done_ccb->ccb_h.path,
5876 /*relsim_flags*/0,
5877 /*reduction*/0,
5878 /*timeout*/0,
5879 /*getcount_only*/0);
5880 }
5881 }
5882 }
5883
5884 free(csio->data_ptr, M_SCSIDA);
5885
5886 daprobedone(periph, done_ccb);
5887 return;
5888 }
5889
5890 static void
dadone_probezone(struct cam_periph * periph,union ccb * done_ccb)5891 dadone_probezone(struct cam_periph *periph, union ccb *done_ccb)
5892 {
5893 struct da_softc *softc;
5894 struct ccb_scsiio *csio;
5895 int error;
5896
5897 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE, ("dadone_probezone\n"));
5898
5899 softc = (struct da_softc *)periph->softc;
5900 csio = &done_ccb->csio;
5901
5902 cam_periph_assert(periph, MA_OWNED);
5903
5904 if ((csio->ccb_h.status & CAM_STATUS_MASK) == CAM_REQ_CMP) {
5905 uint32_t valid_len;
5906 size_t needed_len;
5907 struct scsi_vpd_zoned_bdc *zoned_bdc;
5908
5909 error = 0;
5910 zoned_bdc = (struct scsi_vpd_zoned_bdc *)csio->data_ptr;
5911 valid_len = csio->dxfer_len - csio->resid;
5912 needed_len = __offsetof(struct scsi_vpd_zoned_bdc,
5913 max_seq_req_zones) + 1 +
5914 sizeof(zoned_bdc->max_seq_req_zones);
5915 if ((valid_len >= needed_len)
5916 && (scsi_2btoul(zoned_bdc->page_length) >= SVPD_ZBDC_PL)) {
5917 if (zoned_bdc->flags & SVPD_ZBDC_URSWRZ)
5918 softc->zone_flags |= DA_ZONE_FLAG_URSWRZ;
5919 else
5920 softc->zone_flags &= ~DA_ZONE_FLAG_URSWRZ;
5921 softc->optimal_seq_zones =
5922 scsi_4btoul(zoned_bdc->optimal_seq_zones);
5923 softc->zone_flags |= DA_ZONE_FLAG_OPT_SEQ_SET;
5924 softc->optimal_nonseq_zones = scsi_4btoul(
5925 zoned_bdc->optimal_nonseq_zones);
5926 softc->zone_flags |= DA_ZONE_FLAG_OPT_NONSEQ_SET;
5927 softc->max_seq_zones =
5928 scsi_4btoul(zoned_bdc->max_seq_req_zones);
5929 softc->zone_flags |= DA_ZONE_FLAG_MAX_SEQ_SET;
5930 }
5931 /*
5932 * All of the zone commands are mandatory for SCSI
5933 * devices.
5934 *
5935 * XXX KDM this is valid as of September 2015.
5936 * Re-check this assumption once the SAT spec is
5937 * updated to support SCSI ZBC to ATA ZAC mapping.
5938 * Since ATA allows zone commands to be reported
5939 * as supported or not, this may not necessarily
5940 * be true for an ATA device behind a SAT (SCSI to
5941 * ATA Translation) layer.
5942 */
5943 softc->zone_flags |= DA_ZONE_FLAG_SUP_MASK;
5944 } else {
5945 error = daerror(done_ccb, CAM_RETRY_SELTO,
5946 SF_RETRY_UA|SF_NO_PRINT);
5947 if (error == ERESTART)
5948 return;
5949 else if (error != 0) {
5950 if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) {
5951 /* Don't wedge this device's queue */
5952 cam_release_devq(done_ccb->ccb_h.path,
5953 /*relsim_flags*/0,
5954 /*reduction*/0,
5955 /*timeout*/0,
5956 /*getcount_only*/0);
5957 }
5958 }
5959 }
5960
5961 free(csio->data_ptr, M_SCSIDA);
5962
5963 daprobedone(periph, done_ccb);
5964 return;
5965 }
5966
5967 static void
dadone_tur(struct cam_periph * periph,union ccb * done_ccb)5968 dadone_tur(struct cam_periph *periph, union ccb *done_ccb)
5969 {
5970 struct da_softc *softc;
5971
5972 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE, ("dadone_tur\n"));
5973
5974 softc = (struct da_softc *)periph->softc;
5975
5976 cam_periph_assert(periph, MA_OWNED);
5977
5978 if ((done_ccb->ccb_h.status & CAM_STATUS_MASK) != CAM_REQ_CMP) {
5979 if (daerror(done_ccb, CAM_RETRY_SELTO,
5980 SF_RETRY_UA | SF_NO_RECOVERY | SF_NO_PRINT) == ERESTART)
5981 return; /* Will complete again, keep reference */
5982 if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0)
5983 cam_release_devq(done_ccb->ccb_h.path,
5984 /*relsim_flags*/0,
5985 /*reduction*/0,
5986 /*timeout*/0,
5987 /*getcount_only*/0);
5988 }
5989 softc->flags &= ~DA_FLAG_TUR_PENDING;
5990 xpt_release_ccb(done_ccb);
5991 da_periph_release_locked(periph, DA_REF_TUR);
5992 return;
5993 }
5994
5995 static void
dareprobe(struct cam_periph * periph)5996 dareprobe(struct cam_periph *periph)
5997 {
5998 struct da_softc *softc;
5999 int status __diagused;
6000
6001 softc = (struct da_softc *)periph->softc;
6002
6003 cam_periph_assert(periph, MA_OWNED);
6004
6005 /* Probe in progress; don't interfere. */
6006 if (softc->state != DA_STATE_NORMAL)
6007 return;
6008
6009 status = da_periph_acquire(periph, DA_REF_REPROBE);
6010 KASSERT(status == 0, ("dareprobe: cam_periph_acquire failed"));
6011
6012 softc->state = DA_STATE_PROBE_WP;
6013 xpt_schedule(periph, CAM_PRIORITY_DEV);
6014 }
6015
6016 static int
daerror(union ccb * ccb,uint32_t cam_flags,uint32_t sense_flags)6017 daerror(union ccb *ccb, uint32_t cam_flags, uint32_t sense_flags)
6018 {
6019 struct da_softc *softc;
6020 struct cam_periph *periph;
6021 int error, error_code, sense_key, asc, ascq;
6022
6023 #if defined(BUF_TRACKING) || defined(FULL_BUF_TRACKING)
6024 if (ccb->csio.bio != NULL)
6025 biotrack(ccb->csio.bio, __func__);
6026 #endif
6027
6028 periph = xpt_path_periph(ccb->ccb_h.path);
6029 softc = (struct da_softc *)periph->softc;
6030
6031 cam_periph_assert(periph, MA_OWNED);
6032
6033 /*
6034 * Automatically detect devices that do not support
6035 * READ(6)/WRITE(6) and upgrade to using 10 byte cdbs.
6036 */
6037 error = 0;
6038 if ((ccb->ccb_h.status & CAM_STATUS_MASK) == CAM_REQ_INVALID) {
6039 error = cmd6workaround(ccb);
6040 } else if (scsi_extract_sense_ccb(ccb,
6041 &error_code, &sense_key, &asc, &ascq)) {
6042 if (sense_key == SSD_KEY_ILLEGAL_REQUEST)
6043 error = cmd6workaround(ccb);
6044 /*
6045 * If the target replied with CAPACITY DATA HAS CHANGED UA,
6046 * query the capacity and notify upper layers.
6047 */
6048 else if (sense_key == SSD_KEY_UNIT_ATTENTION &&
6049 asc == 0x2A && ascq == 0x09) {
6050 /* 2a/9: CAPACITY DATA HAS CHANGED */
6051 xpt_print(periph->path, "Capacity data has changed\n");
6052 softc->flags &= ~DA_FLAG_PROBED;
6053 dareprobe(periph);
6054 sense_flags |= SF_NO_PRINT;
6055 } else if (sense_key == SSD_KEY_UNIT_ATTENTION &&
6056 asc == 0x28 && ascq == 0x00) {
6057 /* 28/0: NOT READY TO READY CHANGE, MEDIUM MAY HAVE CHANGED */
6058 softc->flags &= ~DA_FLAG_PROBED;
6059 disk_media_changed(softc->disk, M_NOWAIT);
6060 /*
6061 * In an ideal world, we'd make sure that we have the
6062 * same medium mounted (if we'd seen one already) but
6063 * instead we don't invalidate the pack here and flag
6064 * below to retry the UAs. If we exhaust retries, then
6065 * we'll invalidate it in dadone for ENXIO errors (which
6066 * 28/0 will fail with eventually). Usually, retrying
6067 * just works and/or we get this before we've opened the
6068 * device (which clears the invalid flag).
6069 */
6070 } else if (sense_key == SSD_KEY_UNIT_ATTENTION &&
6071 asc == 0x3F && ascq == 0x03) {
6072 /* 3f/3: INQUIRY DATA HAS CHANGED */
6073 xpt_print(periph->path, "INQUIRY data has changed\n");
6074 softc->flags &= ~DA_FLAG_PROBED;
6075 dareprobe(periph);
6076 sense_flags |= SF_NO_PRINT;
6077 } else if (sense_key == SSD_KEY_NOT_READY &&
6078 asc == 0x3a && (softc->flags & DA_FLAG_PACK_INVALID) == 0) {
6079 /* 3a/0: MEDIUM NOT PRESENT */
6080 /* 3a/1: MEDIUM NOT PRESENT - TRAY CLOSED */
6081 /* 3a/2: MEDIUM NOT PRESENT - TRAY OPEN */
6082 /* 3a/3: MEDIUM NOT PRESENT - LOADABLE */
6083 /* 3a/4: MEDIUM NOT PRESENT - MEDIUM AUXILIARY MEMORY ACCESSIBLE */
6084 softc->flags |= DA_FLAG_PACK_INVALID;
6085 disk_media_gone(softc->disk, M_NOWAIT);
6086 }
6087 }
6088 if (error == ERESTART)
6089 return (ERESTART);
6090
6091 #ifdef CAM_IO_STATS
6092 switch (ccb->ccb_h.status & CAM_STATUS_MASK) {
6093 case CAM_CMD_TIMEOUT:
6094 softc->timeouts++;
6095 break;
6096 case CAM_REQ_ABORTED:
6097 case CAM_REQ_CMP_ERR:
6098 case CAM_REQ_TERMIO:
6099 case CAM_UNREC_HBA_ERROR:
6100 case CAM_DATA_RUN_ERR:
6101 case CAM_SCSI_STATUS_ERROR:
6102 case CAM_ATA_STATUS_ERROR:
6103 softc->errors++;
6104 break;
6105 default:
6106 break;
6107 }
6108 #endif
6109
6110 /*
6111 * XXX
6112 * Until we have a better way of doing pack validation,
6113 * don't treat UAs as errors.
6114 */
6115 sense_flags |= SF_RETRY_UA;
6116
6117 if (softc->quirks & DA_Q_RETRY_BUSY)
6118 sense_flags |= SF_RETRY_BUSY;
6119 return(cam_periph_error(ccb, cam_flags, sense_flags));
6120 }
6121
6122 static void
damediapoll(void * arg)6123 damediapoll(void *arg)
6124 {
6125 struct cam_periph *periph = arg;
6126 struct da_softc *softc = periph->softc;
6127
6128 if (!cam_iosched_has_work_flags(softc->cam_iosched, DA_WORK_TUR) &&
6129 (softc->flags & DA_FLAG_TUR_PENDING) == 0 &&
6130 softc->state == DA_STATE_NORMAL &&
6131 LIST_EMPTY(&softc->pending_ccbs)) {
6132 if (da_periph_acquire(periph, DA_REF_TUR) == 0) {
6133 cam_iosched_set_work_flags(softc->cam_iosched, DA_WORK_TUR);
6134 daschedule(periph);
6135 }
6136 }
6137
6138 /* Queue us up again */
6139 if (da_poll_period != 0) {
6140 callout_schedule_sbt(&softc->mediapoll_c,
6141 da_poll_period * SBT_1S, 0, C_PREL(1));
6142 }
6143 }
6144
6145 static void
daprevent(struct cam_periph * periph,int action)6146 daprevent(struct cam_periph *periph, int action)
6147 {
6148 struct da_softc *softc;
6149 union ccb *ccb;
6150 int error;
6151
6152 cam_periph_assert(periph, MA_OWNED);
6153 softc = (struct da_softc *)periph->softc;
6154
6155 if (((action == PR_ALLOW)
6156 && (softc->flags & DA_FLAG_PACK_LOCKED) == 0)
6157 || ((action == PR_PREVENT)
6158 && (softc->flags & DA_FLAG_PACK_LOCKED) != 0)) {
6159 return;
6160 }
6161
6162 ccb = cam_periph_getccb(periph, CAM_PRIORITY_NORMAL);
6163
6164 scsi_prevent(&ccb->csio,
6165 /*retries*/1,
6166 /*cbcfp*/NULL,
6167 MSG_SIMPLE_Q_TAG,
6168 action,
6169 SSD_FULL_SIZE,
6170 5000);
6171
6172 error = cam_periph_runccb(ccb, daerror, CAM_RETRY_SELTO,
6173 SF_RETRY_UA | SF_NO_PRINT, softc->disk->d_devstat);
6174
6175 if (error == 0) {
6176 if (action == PR_ALLOW)
6177 softc->flags &= ~DA_FLAG_PACK_LOCKED;
6178 else
6179 softc->flags |= DA_FLAG_PACK_LOCKED;
6180 }
6181
6182 xpt_release_ccb(ccb);
6183 }
6184
6185 static void
dasetgeom(struct cam_periph * periph,uint32_t block_len,uint64_t maxsector,struct scsi_read_capacity_data_long * rcaplong,size_t rcap_len)6186 dasetgeom(struct cam_periph *periph, uint32_t block_len, uint64_t maxsector,
6187 struct scsi_read_capacity_data_long *rcaplong, size_t rcap_len)
6188 {
6189 struct ccb_calc_geometry ccg;
6190 struct da_softc *softc;
6191 struct disk_params *dp;
6192 u_int lbppbe, lalba;
6193 int error;
6194
6195 softc = (struct da_softc *)periph->softc;
6196
6197 dp = &softc->params;
6198 dp->secsize = block_len;
6199 dp->sectors = maxsector + 1;
6200 if (rcaplong != NULL) {
6201 lbppbe = rcaplong->prot_lbppbe & SRC16_LBPPBE;
6202 lalba = scsi_2btoul(rcaplong->lalba_lbp);
6203 lalba &= SRC16_LALBA_A;
6204 if (rcaplong->prot & SRC16_PROT_EN)
6205 softc->p_type = ((rcaplong->prot & SRC16_P_TYPE) >>
6206 SRC16_P_TYPE_SHIFT) + 1;
6207 else
6208 softc->p_type = 0;
6209 } else {
6210 lbppbe = 0;
6211 lalba = 0;
6212 softc->p_type = 0;
6213 }
6214
6215 if (lbppbe > 0) {
6216 dp->stripesize = block_len << lbppbe;
6217 dp->stripeoffset = (dp->stripesize - block_len * lalba) %
6218 dp->stripesize;
6219 } else if (softc->quirks & DA_Q_4K) {
6220 dp->stripesize = 4096;
6221 dp->stripeoffset = 0;
6222 } else if (softc->unmap_gran != 0) {
6223 dp->stripesize = block_len * softc->unmap_gran;
6224 dp->stripeoffset = (dp->stripesize - block_len *
6225 softc->unmap_gran_align) % dp->stripesize;
6226 } else {
6227 dp->stripesize = 0;
6228 dp->stripeoffset = 0;
6229 }
6230 /*
6231 * Have the controller provide us with a geometry
6232 * for this disk. The only time the geometry
6233 * matters is when we boot and the controller
6234 * is the only one knowledgeable enough to come
6235 * up with something that will make this a bootable
6236 * device.
6237 */
6238 memset(&ccg, 0, sizeof(ccg));
6239 xpt_setup_ccb(&ccg.ccb_h, periph->path, CAM_PRIORITY_NORMAL);
6240 ccg.ccb_h.func_code = XPT_CALC_GEOMETRY;
6241 ccg.block_size = dp->secsize;
6242 ccg.volume_size = dp->sectors;
6243 ccg.heads = 0;
6244 ccg.secs_per_track = 0;
6245 ccg.cylinders = 0;
6246 xpt_action((union ccb*)&ccg);
6247 if ((ccg.ccb_h.status & CAM_STATUS_MASK) != CAM_REQ_CMP) {
6248 /*
6249 * We don't know what went wrong here- but just pick
6250 * a geometry so we don't have nasty things like divide
6251 * by zero.
6252 */
6253 dp->heads = 255;
6254 dp->secs_per_track = 255;
6255 dp->cylinders = dp->sectors / (255 * 255);
6256 if (dp->cylinders == 0) {
6257 dp->cylinders = 1;
6258 }
6259 } else {
6260 dp->heads = ccg.heads;
6261 dp->secs_per_track = ccg.secs_per_track;
6262 dp->cylinders = ccg.cylinders;
6263 }
6264
6265 /*
6266 * If the user supplied a read capacity buffer, and if it is
6267 * different than the previous buffer, update the data in the EDT.
6268 * If it's the same, we don't bother. This avoids sending an
6269 * update every time someone opens this device.
6270 */
6271 if ((rcaplong != NULL)
6272 && (bcmp(rcaplong, &softc->rcaplong,
6273 min(sizeof(softc->rcaplong), rcap_len)) != 0)) {
6274 struct ccb_dev_advinfo cdai;
6275
6276 memset(&cdai, 0, sizeof(cdai));
6277 xpt_setup_ccb(&cdai.ccb_h, periph->path, CAM_PRIORITY_NORMAL);
6278 cdai.ccb_h.func_code = XPT_DEV_ADVINFO;
6279 cdai.buftype = CDAI_TYPE_RCAPLONG;
6280 cdai.flags = CDAI_FLAG_STORE;
6281 cdai.bufsiz = rcap_len;
6282 cdai.buf = (uint8_t *)rcaplong;
6283 xpt_action((union ccb *)&cdai);
6284 if ((cdai.ccb_h.status & CAM_DEV_QFRZN) != 0)
6285 cam_release_devq(cdai.ccb_h.path, 0, 0, 0, FALSE);
6286 if (cdai.ccb_h.status != CAM_REQ_CMP) {
6287 xpt_print(periph->path, "%s: failed to set read "
6288 "capacity advinfo\n", __func__);
6289 /* Use cam_error_print() to decode the status */
6290 cam_error_print((union ccb *)&cdai, CAM_ESF_CAM_STATUS,
6291 CAM_EPF_ALL);
6292 } else {
6293 bcopy(rcaplong, &softc->rcaplong,
6294 min(sizeof(softc->rcaplong), rcap_len));
6295 }
6296 }
6297
6298 softc->disk->d_sectorsize = softc->params.secsize;
6299 softc->disk->d_mediasize = softc->params.secsize * (off_t)softc->params.sectors;
6300 softc->disk->d_stripesize = softc->params.stripesize;
6301 softc->disk->d_stripeoffset = softc->params.stripeoffset;
6302 /* XXX: these are not actually "firmware" values, so they may be wrong */
6303 softc->disk->d_fwsectors = softc->params.secs_per_track;
6304 softc->disk->d_fwheads = softc->params.heads;
6305 softc->disk->d_devstat->block_size = softc->params.secsize;
6306 softc->disk->d_devstat->flags &= ~DEVSTAT_BS_UNAVAILABLE;
6307
6308 error = disk_resize(softc->disk, M_NOWAIT);
6309 if (error != 0)
6310 xpt_print(periph->path, "disk_resize(9) failed, error = %d\n", error);
6311 }
6312
6313 static void
dasendorderedtag(void * arg)6314 dasendorderedtag(void *arg)
6315 {
6316 struct cam_periph *periph = arg;
6317 struct da_softc *softc = periph->softc;
6318
6319 cam_periph_assert(periph, MA_OWNED);
6320 if (da_send_ordered) {
6321 if (!LIST_EMPTY(&softc->pending_ccbs)) {
6322 if ((softc->flags & DA_FLAG_WAS_OTAG) == 0)
6323 softc->flags |= DA_FLAG_NEED_OTAG;
6324 softc->flags &= ~DA_FLAG_WAS_OTAG;
6325 }
6326 }
6327
6328 /* Queue us up again */
6329 callout_schedule_sbt(&softc->sendordered_c,
6330 SBT_1S / DA_ORDEREDTAG_INTERVAL * da_default_timeout, 0,
6331 C_PREL(1));
6332 }
6333
6334 /*
6335 * Step through all DA peripheral drivers, and if the device is still open,
6336 * sync the disk cache to physical media.
6337 */
6338 static void
dashutdown(void * arg,int howto)6339 dashutdown(void * arg, int howto)
6340 {
6341 struct cam_periph *periph;
6342 struct da_softc *softc;
6343 union ccb *ccb;
6344 int error;
6345
6346 if ((howto & RB_NOSYNC) != 0)
6347 return;
6348
6349 CAM_PERIPH_FOREACH(periph, &dadriver) {
6350 softc = (struct da_softc *)periph->softc;
6351 if (SCHEDULER_STOPPED()) {
6352 /* If we paniced with the lock held, do not recurse. */
6353 if (!cam_periph_owned(periph) &&
6354 (softc->flags & DA_FLAG_OPEN)) {
6355 dadump(softc->disk, NULL, 0, 0);
6356 }
6357 continue;
6358 }
6359 cam_periph_lock(periph);
6360
6361 /*
6362 * We only sync the cache if the drive is still open, and
6363 * if the drive is capable of it..
6364 */
6365 if (((softc->flags & DA_FLAG_OPEN) == 0)
6366 || (softc->quirks & DA_Q_NO_SYNC_CACHE)) {
6367 cam_periph_unlock(periph);
6368 continue;
6369 }
6370
6371 ccb = cam_periph_getccb(periph, CAM_PRIORITY_NORMAL);
6372 scsi_synchronize_cache(&ccb->csio,
6373 /*retries*/0,
6374 /*cbfcnp*/NULL,
6375 MSG_SIMPLE_Q_TAG,
6376 /*begin_lba*/0, /* whole disk */
6377 /*lb_count*/0,
6378 SSD_FULL_SIZE,
6379 60 * 60 * 1000);
6380
6381 error = cam_periph_runccb(ccb, daerror, /*cam_flags*/0,
6382 /*sense_flags*/ SF_NO_RECOVERY | SF_NO_RETRY | SF_QUIET_IR,
6383 softc->disk->d_devstat);
6384 if (error != 0)
6385 xpt_print(periph->path, "Synchronize cache failed\n");
6386 xpt_release_ccb(ccb);
6387 cam_periph_unlock(periph);
6388 }
6389 }
6390
6391 #else /* !_KERNEL */
6392
6393 /*
6394 * XXX These are only left out of the kernel build to silence warnings. If,
6395 * for some reason these functions are used in the kernel, the ifdefs should
6396 * be moved so they are included both in the kernel and userland.
6397 */
6398 void
scsi_format_unit(struct ccb_scsiio * csio,uint32_t retries,void (* cbfcnp)(struct cam_periph *,union ccb *),uint8_t tag_action,uint8_t byte2,uint16_t ileave,uint8_t * data_ptr,uint32_t dxfer_len,uint8_t sense_len,uint32_t timeout)6399 scsi_format_unit(struct ccb_scsiio *csio, uint32_t retries,
6400 void (*cbfcnp)(struct cam_periph *, union ccb *),
6401 uint8_t tag_action, uint8_t byte2, uint16_t ileave,
6402 uint8_t *data_ptr, uint32_t dxfer_len, uint8_t sense_len,
6403 uint32_t timeout)
6404 {
6405 struct scsi_format_unit *scsi_cmd;
6406
6407 scsi_cmd = (struct scsi_format_unit *)&csio->cdb_io.cdb_bytes;
6408 scsi_cmd->opcode = FORMAT_UNIT;
6409 scsi_cmd->byte2 = byte2;
6410 scsi_ulto2b(ileave, scsi_cmd->interleave);
6411
6412 cam_fill_csio(csio,
6413 retries,
6414 cbfcnp,
6415 /*flags*/ (dxfer_len > 0) ? CAM_DIR_OUT : CAM_DIR_NONE,
6416 tag_action,
6417 data_ptr,
6418 dxfer_len,
6419 sense_len,
6420 sizeof(*scsi_cmd),
6421 timeout);
6422 }
6423
6424 void
scsi_read_defects(struct ccb_scsiio * csio,uint32_t retries,void (* cbfcnp)(struct cam_periph *,union ccb *),uint8_t tag_action,uint8_t list_format,uint32_t addr_desc_index,uint8_t * data_ptr,uint32_t dxfer_len,int minimum_cmd_size,uint8_t sense_len,uint32_t timeout)6425 scsi_read_defects(struct ccb_scsiio *csio, uint32_t retries,
6426 void (*cbfcnp)(struct cam_periph *, union ccb *),
6427 uint8_t tag_action, uint8_t list_format,
6428 uint32_t addr_desc_index, uint8_t *data_ptr,
6429 uint32_t dxfer_len, int minimum_cmd_size,
6430 uint8_t sense_len, uint32_t timeout)
6431 {
6432 uint8_t cdb_len;
6433
6434 /*
6435 * These conditions allow using the 10 byte command. Otherwise we
6436 * need to use the 12 byte command.
6437 */
6438 if ((minimum_cmd_size <= 10)
6439 && (addr_desc_index == 0)
6440 && (dxfer_len <= SRDD10_MAX_LENGTH)) {
6441 struct scsi_read_defect_data_10 *cdb10;
6442
6443 cdb10 = (struct scsi_read_defect_data_10 *)
6444 &csio->cdb_io.cdb_bytes;
6445
6446 cdb_len = sizeof(*cdb10);
6447 bzero(cdb10, cdb_len);
6448 cdb10->opcode = READ_DEFECT_DATA_10;
6449 cdb10->format = list_format;
6450 scsi_ulto2b(dxfer_len, cdb10->alloc_length);
6451 } else {
6452 struct scsi_read_defect_data_12 *cdb12;
6453
6454 cdb12 = (struct scsi_read_defect_data_12 *)
6455 &csio->cdb_io.cdb_bytes;
6456
6457 cdb_len = sizeof(*cdb12);
6458 bzero(cdb12, cdb_len);
6459 cdb12->opcode = READ_DEFECT_DATA_12;
6460 cdb12->format = list_format;
6461 scsi_ulto4b(dxfer_len, cdb12->alloc_length);
6462 scsi_ulto4b(addr_desc_index, cdb12->address_descriptor_index);
6463 }
6464
6465 cam_fill_csio(csio,
6466 retries,
6467 cbfcnp,
6468 /*flags*/ CAM_DIR_IN,
6469 tag_action,
6470 data_ptr,
6471 dxfer_len,
6472 sense_len,
6473 cdb_len,
6474 timeout);
6475 }
6476
6477 void
scsi_sanitize(struct ccb_scsiio * csio,uint32_t retries,void (* cbfcnp)(struct cam_periph *,union ccb *),uint8_t tag_action,uint8_t byte2,uint16_t control,uint8_t * data_ptr,uint32_t dxfer_len,uint8_t sense_len,uint32_t timeout)6478 scsi_sanitize(struct ccb_scsiio *csio, uint32_t retries,
6479 void (*cbfcnp)(struct cam_periph *, union ccb *),
6480 uint8_t tag_action, uint8_t byte2, uint16_t control,
6481 uint8_t *data_ptr, uint32_t dxfer_len, uint8_t sense_len,
6482 uint32_t timeout)
6483 {
6484 struct scsi_sanitize *scsi_cmd;
6485
6486 scsi_cmd = (struct scsi_sanitize *)&csio->cdb_io.cdb_bytes;
6487 scsi_cmd->opcode = SANITIZE;
6488 scsi_cmd->byte2 = byte2;
6489 scsi_cmd->control = control;
6490 scsi_ulto2b(dxfer_len, scsi_cmd->length);
6491
6492 cam_fill_csio(csio,
6493 retries,
6494 cbfcnp,
6495 /*flags*/ (dxfer_len > 0) ? CAM_DIR_OUT : CAM_DIR_NONE,
6496 tag_action,
6497 data_ptr,
6498 dxfer_len,
6499 sense_len,
6500 sizeof(*scsi_cmd),
6501 timeout);
6502 }
6503
6504 #endif /* _KERNEL */
6505
6506 void
scsi_zbc_out(struct ccb_scsiio * csio,uint32_t retries,void (* cbfcnp)(struct cam_periph *,union ccb *),uint8_t tag_action,uint8_t service_action,uint64_t zone_id,uint8_t zone_flags,uint8_t * data_ptr,uint32_t dxfer_len,uint8_t sense_len,uint32_t timeout)6507 scsi_zbc_out(struct ccb_scsiio *csio, uint32_t retries,
6508 void (*cbfcnp)(struct cam_periph *, union ccb *),
6509 uint8_t tag_action, uint8_t service_action, uint64_t zone_id,
6510 uint8_t zone_flags, uint8_t *data_ptr, uint32_t dxfer_len,
6511 uint8_t sense_len, uint32_t timeout)
6512 {
6513 struct scsi_zbc_out *scsi_cmd;
6514
6515 scsi_cmd = (struct scsi_zbc_out *)&csio->cdb_io.cdb_bytes;
6516 scsi_cmd->opcode = ZBC_OUT;
6517 scsi_cmd->service_action = service_action;
6518 scsi_u64to8b(zone_id, scsi_cmd->zone_id);
6519 scsi_cmd->zone_flags = zone_flags;
6520
6521 cam_fill_csio(csio,
6522 retries,
6523 cbfcnp,
6524 /*flags*/ (dxfer_len > 0) ? CAM_DIR_OUT : CAM_DIR_NONE,
6525 tag_action,
6526 data_ptr,
6527 dxfer_len,
6528 sense_len,
6529 sizeof(*scsi_cmd),
6530 timeout);
6531 }
6532
6533 void
scsi_zbc_in(struct ccb_scsiio * csio,uint32_t retries,void (* cbfcnp)(struct cam_periph *,union ccb *),uint8_t tag_action,uint8_t service_action,uint64_t zone_start_lba,uint8_t zone_options,uint8_t * data_ptr,uint32_t dxfer_len,uint8_t sense_len,uint32_t timeout)6534 scsi_zbc_in(struct ccb_scsiio *csio, uint32_t retries,
6535 void (*cbfcnp)(struct cam_periph *, union ccb *),
6536 uint8_t tag_action, uint8_t service_action, uint64_t zone_start_lba,
6537 uint8_t zone_options, uint8_t *data_ptr, uint32_t dxfer_len,
6538 uint8_t sense_len, uint32_t timeout)
6539 {
6540 struct scsi_zbc_in *scsi_cmd;
6541
6542 scsi_cmd = (struct scsi_zbc_in *)&csio->cdb_io.cdb_bytes;
6543 scsi_cmd->opcode = ZBC_IN;
6544 scsi_cmd->service_action = service_action;
6545 scsi_ulto4b(dxfer_len, scsi_cmd->length);
6546 scsi_u64to8b(zone_start_lba, scsi_cmd->zone_start_lba);
6547 scsi_cmd->zone_options = zone_options;
6548
6549 cam_fill_csio(csio,
6550 retries,
6551 cbfcnp,
6552 /*flags*/ (dxfer_len > 0) ? CAM_DIR_IN : CAM_DIR_NONE,
6553 tag_action,
6554 data_ptr,
6555 dxfer_len,
6556 sense_len,
6557 sizeof(*scsi_cmd),
6558 timeout);
6559
6560 }
6561
6562 int
scsi_ata_zac_mgmt_out(struct ccb_scsiio * csio,uint32_t retries,void (* cbfcnp)(struct cam_periph *,union ccb *),uint8_t tag_action,int use_ncq,uint8_t zm_action,uint64_t zone_id,uint8_t zone_flags,uint8_t * data_ptr,uint32_t dxfer_len,uint8_t * cdb_storage,size_t cdb_storage_len,uint8_t sense_len,uint32_t timeout)6563 scsi_ata_zac_mgmt_out(struct ccb_scsiio *csio, uint32_t retries,
6564 void (*cbfcnp)(struct cam_periph *, union ccb *),
6565 uint8_t tag_action, int use_ncq,
6566 uint8_t zm_action, uint64_t zone_id, uint8_t zone_flags,
6567 uint8_t *data_ptr, uint32_t dxfer_len,
6568 uint8_t *cdb_storage, size_t cdb_storage_len,
6569 uint8_t sense_len, uint32_t timeout)
6570 {
6571 uint8_t command_out, protocol, ata_flags;
6572 uint16_t features_out;
6573 uint32_t sectors_out, auxiliary;
6574 int retval;
6575
6576 retval = 0;
6577
6578 if (use_ncq == 0) {
6579 command_out = ATA_ZAC_MANAGEMENT_OUT;
6580 features_out = (zm_action & 0xf) | (zone_flags << 8);
6581 ata_flags = AP_FLAG_BYT_BLOK_BLOCKS;
6582 if (dxfer_len == 0) {
6583 protocol = AP_PROTO_NON_DATA;
6584 ata_flags |= AP_FLAG_TLEN_NO_DATA;
6585 sectors_out = 0;
6586 } else {
6587 protocol = AP_PROTO_DMA;
6588 ata_flags |= AP_FLAG_TLEN_SECT_CNT |
6589 AP_FLAG_TDIR_TO_DEV;
6590 sectors_out = ((dxfer_len >> 9) & 0xffff);
6591 }
6592 auxiliary = 0;
6593 } else {
6594 ata_flags = AP_FLAG_BYT_BLOK_BLOCKS;
6595 if (dxfer_len == 0) {
6596 command_out = ATA_NCQ_NON_DATA;
6597 features_out = ATA_NCQ_ZAC_MGMT_OUT;
6598 /*
6599 * We're assuming the SCSI to ATA translation layer
6600 * will set the NCQ tag number in the tag field.
6601 * That isn't clear from the SAT-4 spec (as of rev 05).
6602 */
6603 sectors_out = 0;
6604 ata_flags |= AP_FLAG_TLEN_NO_DATA;
6605 } else {
6606 command_out = ATA_SEND_FPDMA_QUEUED;
6607 /*
6608 * Note that we're defaulting to normal priority,
6609 * and assuming that the SCSI to ATA translation
6610 * layer will insert the NCQ tag number in the tag
6611 * field. That isn't clear in the SAT-4 spec (as
6612 * of rev 05).
6613 */
6614 sectors_out = ATA_SFPDMA_ZAC_MGMT_OUT << 8;
6615
6616 ata_flags |= AP_FLAG_TLEN_FEAT |
6617 AP_FLAG_TDIR_TO_DEV;
6618
6619 /*
6620 * For SEND FPDMA QUEUED, the transfer length is
6621 * encoded in the FEATURE register, and 0 means
6622 * that 65536 512 byte blocks are to be tranferred.
6623 * In practice, it seems unlikely that we'll see
6624 * a transfer that large, and it may confuse the
6625 * the SAT layer, because generally that means that
6626 * 0 bytes should be transferred.
6627 */
6628 if (dxfer_len == (65536 * 512)) {
6629 features_out = 0;
6630 } else if (dxfer_len <= (65535 * 512)) {
6631 features_out = ((dxfer_len >> 9) & 0xffff);
6632 } else {
6633 /* The transfer is too big. */
6634 retval = 1;
6635 goto bailout;
6636 }
6637 }
6638
6639 auxiliary = (zm_action & 0xf) | (zone_flags << 8);
6640 protocol = AP_PROTO_FPDMA;
6641 }
6642
6643 protocol |= AP_EXTEND;
6644
6645 retval = scsi_ata_pass(csio,
6646 retries,
6647 cbfcnp,
6648 /*flags*/ (dxfer_len > 0) ? CAM_DIR_OUT : CAM_DIR_NONE,
6649 tag_action,
6650 /*protocol*/ protocol,
6651 /*ata_flags*/ ata_flags,
6652 /*features*/ features_out,
6653 /*sector_count*/ sectors_out,
6654 /*lba*/ zone_id,
6655 /*command*/ command_out,
6656 /*device*/ 0,
6657 /*icc*/ 0,
6658 /*auxiliary*/ auxiliary,
6659 /*control*/ 0,
6660 /*data_ptr*/ data_ptr,
6661 /*dxfer_len*/ dxfer_len,
6662 /*cdb_storage*/ cdb_storage,
6663 /*cdb_storage_len*/ cdb_storage_len,
6664 /*minimum_cmd_size*/ 0,
6665 /*sense_len*/ SSD_FULL_SIZE,
6666 /*timeout*/ timeout);
6667
6668 bailout:
6669
6670 return (retval);
6671 }
6672
6673 int
scsi_ata_zac_mgmt_in(struct ccb_scsiio * csio,uint32_t retries,void (* cbfcnp)(struct cam_periph *,union ccb *),uint8_t tag_action,int use_ncq,uint8_t zm_action,uint64_t zone_id,uint8_t zone_flags,uint8_t * data_ptr,uint32_t dxfer_len,uint8_t * cdb_storage,size_t cdb_storage_len,uint8_t sense_len,uint32_t timeout)6674 scsi_ata_zac_mgmt_in(struct ccb_scsiio *csio, uint32_t retries,
6675 void (*cbfcnp)(struct cam_periph *, union ccb *),
6676 uint8_t tag_action, int use_ncq,
6677 uint8_t zm_action, uint64_t zone_id, uint8_t zone_flags,
6678 uint8_t *data_ptr, uint32_t dxfer_len,
6679 uint8_t *cdb_storage, size_t cdb_storage_len,
6680 uint8_t sense_len, uint32_t timeout)
6681 {
6682 uint8_t command_out, protocol;
6683 uint16_t features_out, sectors_out;
6684 uint32_t auxiliary;
6685 int ata_flags;
6686 int retval;
6687
6688 retval = 0;
6689 ata_flags = AP_FLAG_TDIR_FROM_DEV | AP_FLAG_BYT_BLOK_BLOCKS;
6690
6691 if (use_ncq == 0) {
6692 command_out = ATA_ZAC_MANAGEMENT_IN;
6693 /* XXX KDM put a macro here */
6694 features_out = (zm_action & 0xf) | (zone_flags << 8);
6695 sectors_out = dxfer_len >> 9; /* XXX KDM macro */
6696 protocol = AP_PROTO_DMA;
6697 ata_flags |= AP_FLAG_TLEN_SECT_CNT;
6698 auxiliary = 0;
6699 } else {
6700 ata_flags |= AP_FLAG_TLEN_FEAT;
6701
6702 command_out = ATA_RECV_FPDMA_QUEUED;
6703 sectors_out = ATA_RFPDMA_ZAC_MGMT_IN << 8;
6704
6705 /*
6706 * For RECEIVE FPDMA QUEUED, the transfer length is
6707 * encoded in the FEATURE register, and 0 means
6708 * that 65536 512 byte blocks are to be tranferred.
6709 * In practice, it seems unlikely that we'll see
6710 * a transfer that large, and it may confuse the
6711 * the SAT layer, because generally that means that
6712 * 0 bytes should be transferred.
6713 */
6714 if (dxfer_len == (65536 * 512)) {
6715 features_out = 0;
6716 } else if (dxfer_len <= (65535 * 512)) {
6717 features_out = ((dxfer_len >> 9) & 0xffff);
6718 } else {
6719 /* The transfer is too big. */
6720 retval = 1;
6721 goto bailout;
6722 }
6723 auxiliary = (zm_action & 0xf) | (zone_flags << 8),
6724 protocol = AP_PROTO_FPDMA;
6725 }
6726
6727 protocol |= AP_EXTEND;
6728
6729 retval = scsi_ata_pass(csio,
6730 retries,
6731 cbfcnp,
6732 /*flags*/ CAM_DIR_IN,
6733 tag_action,
6734 /*protocol*/ protocol,
6735 /*ata_flags*/ ata_flags,
6736 /*features*/ features_out,
6737 /*sector_count*/ sectors_out,
6738 /*lba*/ zone_id,
6739 /*command*/ command_out,
6740 /*device*/ 0,
6741 /*icc*/ 0,
6742 /*auxiliary*/ auxiliary,
6743 /*control*/ 0,
6744 /*data_ptr*/ data_ptr,
6745 /*dxfer_len*/ (dxfer_len >> 9) * 512, /* XXX KDM */
6746 /*cdb_storage*/ cdb_storage,
6747 /*cdb_storage_len*/ cdb_storage_len,
6748 /*minimum_cmd_size*/ 0,
6749 /*sense_len*/ SSD_FULL_SIZE,
6750 /*timeout*/ timeout);
6751
6752 bailout:
6753 return (retval);
6754 }
6755