1 /* 2 * Implementation of Utility functions for all SCSI device types. 3 * 4 * Copyright (c) 1997, 1998 Justin T. Gibbs. 5 * Copyright (c) 1997, 1998, 2003 Kenneth D. Merry. 6 * All rights reserved. 7 * 8 * Redistribution and use in source and binary forms, with or without 9 * modification, are permitted provided that the following conditions 10 * are met: 11 * 1. Redistributions of source code must retain the above copyright 12 * notice, this list of conditions, and the following disclaimer, 13 * without modification, immediately at the beginning of the file. 14 * 2. The name of the author may not be used to endorse or promote products 15 * derived from this software without specific prior written permission. 16 * 17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 18 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 19 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 20 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR 21 * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 22 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 23 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 24 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 25 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 26 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 27 * SUCH DAMAGE. 28 * 29 * $FreeBSD: src/sys/cam/scsi/scsi_all.c,v 1.54 2009/01/14 21:25:17 trasz Exp $ 30 */ 31 32 #include <sys/param.h> 33 34 #ifdef _KERNEL 35 36 #include <opt_scsi.h> 37 #include <sys/systm.h> 38 #include <sys/libkern.h> 39 #include <sys/kernel.h> 40 #include <sys/sysctl.h> 41 42 #else 43 44 #include <errno.h> 45 #include <stdio.h> 46 #include <stdlib.h> 47 #include <string.h> 48 49 #define ksnprintf snprintf /* ick, userland uses us too */ 50 #define kprintf printf 51 #define kbsearch bsearch 52 53 #endif 54 55 #include "../cam.h" 56 #include "../cam_ccb.h" 57 #include "../cam_xpt.h" 58 #include "scsi_all.h" 59 #include <sys/sbuf.h> 60 #ifndef _KERNEL 61 #include <sys/camlib.h> 62 63 #ifndef FALSE 64 #define FALSE 0 65 #endif /* FALSE */ 66 #ifndef TRUE 67 #define TRUE 1 68 #endif /* TRUE */ 69 #define ERESTART -1 /* restart syscall */ 70 #define EJUSTRETURN -2 /* don't modify regs, just return */ 71 #endif /* !_KERNEL */ 72 73 /* 74 * This is the default number of milliseconds we wait for devices to settle 75 * after a SCSI bus reset. 76 */ 77 #ifndef SCSI_DELAY 78 #define SCSI_DELAY 2000 79 #endif 80 /* 81 * All devices need _some_ sort of bus settle delay, so we'll set it to 82 * a minimum value of 100ms. Note that this is pertinent only for SPI- 83 * not transport like Fibre Channel or iSCSI where 'delay' is completely 84 * meaningless. 85 */ 86 #ifndef SCSI_MIN_DELAY 87 #define SCSI_MIN_DELAY 100 88 #endif 89 /* 90 * Make sure the user isn't using seconds instead of milliseconds. 91 */ 92 #if (SCSI_DELAY < SCSI_MIN_DELAY && SCSI_DELAY != 0) 93 #error "SCSI_DELAY is in milliseconds, not seconds! Please use a larger value" 94 #endif 95 96 int scsi_delay; 97 98 static int ascentrycomp(const void *key, const void *member); 99 static int senseentrycomp(const void *key, const void *member); 100 static void fetchtableentries(int sense_key, int asc, int ascq, 101 struct scsi_inquiry_data *, 102 const struct sense_key_table_entry **, 103 const struct asc_table_entry **); 104 #ifdef _KERNEL 105 static void init_scsi_delay(void); 106 static int sysctl_scsi_delay(SYSCTL_HANDLER_ARGS); 107 static int set_scsi_delay(int delay); 108 #endif 109 110 #if !defined(SCSI_NO_OP_STRINGS) 111 112 #define D (1 << T_DIRECT) 113 #define T (1 << T_SEQUENTIAL) 114 #define L (1 << T_PRINTER) 115 #define P (1 << T_PROCESSOR) 116 #define W (1 << T_WORM) 117 #define R (1 << T_CDROM) 118 #define O (1 << T_OPTICAL) 119 #define M (1 << T_CHANGER) 120 #define A (1 << T_STORARRAY) 121 #define E (1 << T_ENCLOSURE) 122 #define B (1 << T_RBC) 123 #define K (1 << T_OCRW) 124 #define V (1 << T_ADC) 125 #define F (1 << T_OSD) 126 #define S (1 << T_SCANNER) 127 #define C (1 << T_COMM) 128 129 #define ALL (D | T | L | P | W | R | O | M | A | E | B | K | V | F | S | C) 130 131 static struct op_table_entry plextor_cd_ops[] = { 132 { 0xD8, R, "CD-DA READ" } 133 }; 134 135 static struct scsi_op_quirk_entry scsi_op_quirk_table[] = { 136 { 137 /* 138 * I believe that 0xD8 is the Plextor proprietary command 139 * to read CD-DA data. I'm not sure which Plextor CDROM 140 * models support the command, though. I know for sure 141 * that the 4X, 8X, and 12X models do, and presumably the 142 * 12-20X does. I don't know about any earlier models, 143 * though. If anyone has any more complete information, 144 * feel free to change this quirk entry. 145 */ 146 {T_CDROM, SIP_MEDIA_REMOVABLE, "PLEXTOR", "CD-ROM PX*", "*"}, 147 NELEM(plextor_cd_ops), 148 plextor_cd_ops 149 } 150 }; 151 152 static struct op_table_entry scsi_op_codes[] = { 153 /* 154 * From: http://www.t10.org/lists/op-num.txt 155 * Modifications by Kenneth Merry (ken@FreeBSD.ORG) 156 * and Jung-uk Kim (jkim@FreeBSD.org) 157 * 158 * Note: order is important in this table, scsi_op_desc() currently 159 * depends on the opcodes in the table being in order to save 160 * search time. 161 * Note: scanner and comm. devices are carried over from the previous 162 * version because they were removed in the latest spec. 163 */ 164 /* File: OP-NUM.TXT 165 * 166 * SCSI Operation Codes 167 * Numeric Sorted Listing 168 * as of 3/11/08 169 * 170 * D - DIRECT ACCESS DEVICE (SBC-2) device column key 171 * .T - SEQUENTIAL ACCESS DEVICE (SSC-2) ----------------- 172 * . L - PRINTER DEVICE (SSC) M = Mandatory 173 * . P - PROCESSOR DEVICE (SPC) O = Optional 174 * . .W - WRITE ONCE READ MULTIPLE DEVICE (SBC-2) V = Vendor spec. 175 * . . R - CD/DVE DEVICE (MMC-3) Z = Obsolete 176 * . . O - OPTICAL MEMORY DEVICE (SBC-2) 177 * . . .M - MEDIA CHANGER DEVICE (SMC-2) 178 * . . . A - STORAGE ARRAY DEVICE (SCC-2) 179 * . . . .E - ENCLOSURE SERVICES DEVICE (SES) 180 * . . . .B - SIMPLIFIED DIRECT-ACCESS DEVICE (RBC) 181 * . . . . K - OPTICAL CARD READER/WRITER DEVICE (OCRW) 182 * . . . . V - AUTOMATION/DRIVE INTERFACE (ADC) 183 * . . . . .F - OBJECT-BASED STORAGE (OSD) 184 * OP DTLPWROMAEBKVF Description 185 * -- -------------- ---------------------------------------------- */ 186 /* 00 MMMMMMMMMMMMMM TEST UNIT READY */ 187 { 0x00, ALL, "TEST UNIT READY" }, 188 /* 01 M REWIND */ 189 { 0x01, T, "REWIND" }, 190 /* 01 Z V ZZZZ REZERO UNIT */ 191 { 0x01, D | W | R | O | M, "REZERO UNIT" }, 192 /* 02 VVVVVV V */ 193 /* 03 MMMMMMMMMMOMMM REQUEST SENSE */ 194 { 0x03, ALL, "REQUEST SENSE" }, 195 /* 04 M OO FORMAT UNIT */ 196 { 0x04, D | R | O, "FORMAT UNIT" }, 197 /* 04 O FORMAT MEDIUM */ 198 { 0x04, T, "FORMAT MEDIUM" }, 199 /* 04 O FORMAT */ 200 { 0x04, L, "FORMAT" }, 201 /* 05 VMVVVV V READ BLOCK LIMITS */ 202 { 0x05, T, "READ BLOCK LIMITS" }, 203 /* 06 VVVVVV V */ 204 /* 07 OVV O OV REASSIGN BLOCKS */ 205 { 0x07, D | W | O, "REASSIGN BLOCKS" }, 206 /* 07 O INITIALIZE ELEMENT STATUS */ 207 { 0x07, M, "INITIALIZE ELEMENT STATUS" }, 208 /* 08 MOV O OV READ(6) */ 209 { 0x08, D | T | W | O, "READ(6)" }, 210 /* 08 O RECEIVE */ 211 { 0x08, P, "RECEIVE" }, 212 /* 08 GET MESSAGE(6) */ 213 { 0x08, C, "GET MESSAGE(6)" }, 214 /* 09 VVVVVV V */ 215 /* 0A OO O OV WRITE(6) */ 216 { 0x0A, D | T | W | O, "WRITE(6)" }, 217 /* 0A M SEND(6) */ 218 { 0x0A, P, "SEND(6)" }, 219 /* 0A SEND MESSAGE(6) */ 220 { 0x0A, C, "SEND MESSAGE(6)" }, 221 /* 0A M PRINT */ 222 { 0x0A, L, "PRINT" }, 223 /* 0B Z ZOZV SEEK(6) */ 224 { 0x0B, D | W | R | O, "SEEK(6)" }, 225 /* 0B O SET CAPACITY */ 226 { 0x0B, T, "SET CAPACITY" }, 227 /* 0B O SLEW AND PRINT */ 228 { 0x0B, L, "SLEW AND PRINT" }, 229 /* 0C VVVVVV V */ 230 /* 0D VVVVVV V */ 231 /* 0E VVVVVV V */ 232 /* 0F VOVVVV V READ REVERSE(6) */ 233 { 0x0F, T, "READ REVERSE(6)" }, 234 /* 10 VM VVV WRITE FILEMARKS(6) */ 235 { 0x10, T, "WRITE FILEMARKS(6)" }, 236 /* 10 O SYNCHRONIZE BUFFER */ 237 { 0x10, L, "SYNCHRONIZE BUFFER" }, 238 /* 11 VMVVVV SPACE(6) */ 239 { 0x11, T, "SPACE(6)" }, 240 /* 12 MMMMMMMMMMMMMM INQUIRY */ 241 { 0x12, ALL, "INQUIRY" }, 242 /* 13 V VVVV */ 243 /* 13 O VERIFY(6) */ 244 { 0x13, T, "VERIFY(6)" }, 245 /* 14 VOOVVV RECOVER BUFFERED DATA */ 246 { 0x14, T | L, "RECOVER BUFFERED DATA" }, 247 /* 15 OMO O OOOO OO MODE SELECT(6) */ 248 { 0x15, ALL & ~(P | R | B | F), "MODE SELECT(6)" }, 249 /* 16 ZZMZO OOOZ O RESERVE(6) */ 250 { 0x16, ALL & ~(R | B | V | F | C), "RESERVE(6)" }, 251 /* 16 Z RESERVE ELEMENT(6) */ 252 { 0x16, M, "RESERVE ELEMENT(6)" }, 253 /* 17 ZZMZO OOOZ O RELEASE(6) */ 254 { 0x17, ALL & ~(R | B | V | F | C), "RELEASE(6)" }, 255 /* 17 Z RELEASE ELEMENT(6) */ 256 { 0x17, M, "RELEASE ELEMENT(6)" }, 257 /* 18 ZZZZOZO Z COPY */ 258 { 0x18, D | T | L | P | W | R | O | K | S, "COPY" }, 259 /* 19 VMVVVV ERASE(6) */ 260 { 0x19, T, "ERASE(6)" }, 261 /* 1A OMO O OOOO OO MODE SENSE(6) */ 262 { 0x1A, ALL & ~(P | R | B | F), "MODE SENSE(6)" }, 263 /* 1B O OOO O MO O START STOP UNIT */ 264 { 0x1B, D | W | R | O | A | B | K | F, "START STOP UNIT" }, 265 /* 1B O M LOAD UNLOAD */ 266 { 0x1B, T | V, "LOAD UNLOAD" }, 267 /* 1B SCAN */ 268 { 0x1B, S, "SCAN" }, 269 /* 1B O STOP PRINT */ 270 { 0x1B, L, "STOP PRINT" }, 271 /* 1B O OPEN/CLOSE IMPORT/EXPORT ELEMENT */ 272 { 0x1B, M, "OPEN/CLOSE IMPORT/EXPORT ELEMENT" }, 273 /* 1C OOOOO OOOM OOO RECEIVE DIAGNOSTIC RESULTS */ 274 { 0x1C, ALL & ~(R | B), "RECEIVE DIAGNOSTIC RESULTS" }, 275 /* 1D MMMMM MMOM MMM SEND DIAGNOSTIC */ 276 { 0x1D, ALL & ~(R | B), "SEND DIAGNOSTIC" }, 277 /* 1E OO OOOO O O PREVENT ALLOW MEDIUM REMOVAL */ 278 { 0x1E, D | T | W | R | O | M | K | F, "PREVENT ALLOW MEDIUM REMOVAL" }, 279 /* 1F */ 280 /* 20 V VVV V */ 281 /* 21 V VVV V */ 282 /* 22 V VVV V */ 283 /* 23 V V V V */ 284 /* 23 O READ FORMAT CAPACITIES */ 285 { 0x23, R, "READ FORMAT CAPACITIES" }, 286 /* 24 V VV SET WINDOW */ 287 { 0x24, S, "SET WINDOW" }, 288 /* 25 M M M M READ CAPACITY(10) */ 289 { 0x25, D | W | O | B, "READ CAPACITY(10)" }, 290 /* 25 O READ CAPACITY */ 291 { 0x25, R, "READ CAPACITY" }, 292 /* 25 M READ CARD CAPACITY */ 293 { 0x25, K, "READ CARD CAPACITY" }, 294 /* 25 GET WINDOW */ 295 { 0x25, S, "GET WINDOW" }, 296 /* 26 V VV */ 297 /* 27 V VV */ 298 /* 28 M MOM MM READ(10) */ 299 { 0x28, D | W | R | O | B | K | S, "READ(10)" }, 300 /* 28 GET MESSAGE(10) */ 301 { 0x28, C, "GET MESSAGE(10)" }, 302 /* 29 V VVO READ GENERATION */ 303 { 0x29, O, "READ GENERATION" }, 304 /* 2A O MOM MO WRITE(10) */ 305 { 0x2A, D | W | R | O | B | K, "WRITE(10)" }, 306 /* 2A SEND(10) */ 307 { 0x2A, S, "SEND(10)" }, 308 /* 2A SEND MESSAGE(10) */ 309 { 0x2A, C, "SEND MESSAGE(10)" }, 310 /* 2B Z OOO O SEEK(10) */ 311 { 0x2B, D | W | R | O | K, "SEEK(10)" }, 312 /* 2B O LOCATE(10) */ 313 { 0x2B, T, "LOCATE(10)" }, 314 /* 2B O POSITION TO ELEMENT */ 315 { 0x2B, M, "POSITION TO ELEMENT" }, 316 /* 2C V OO ERASE(10) */ 317 { 0x2C, R | O, "ERASE(10)" }, 318 /* 2D O READ UPDATED BLOCK */ 319 { 0x2D, O, "READ UPDATED BLOCK" }, 320 /* 2D V */ 321 /* 2E O OOO MO WRITE AND VERIFY(10) */ 322 { 0x2E, D | W | R | O | B | K, "WRITE AND VERIFY(10)" }, 323 /* 2F O OOO VERIFY(10) */ 324 { 0x2F, D | W | R | O, "VERIFY(10)" }, 325 /* 30 Z ZZZ SEARCH DATA HIGH(10) */ 326 { 0x30, D | W | R | O, "SEARCH DATA HIGH(10)" }, 327 /* 31 Z ZZZ SEARCH DATA EQUAL(10) */ 328 { 0x31, D | W | R | O, "SEARCH DATA EQUAL(10)" }, 329 /* 31 OBJECT POSITION */ 330 { 0x31, S, "OBJECT POSITION" }, 331 /* 32 Z ZZZ SEARCH DATA LOW(10) */ 332 { 0x32, D | W | R | O, "SEARCH DATA LOW(10)" }, 333 /* 33 Z OZO SET LIMITS(10) */ 334 { 0x33, D | W | R | O, "SET LIMITS(10)" }, 335 /* 34 O O O O PRE-FETCH(10) */ 336 { 0x34, D | W | O | K, "PRE-FETCH(10)" }, 337 /* 34 M READ POSITION */ 338 { 0x34, T, "READ POSITION" }, 339 /* 34 GET DATA BUFFER STATUS */ 340 { 0x34, S, "GET DATA BUFFER STATUS" }, 341 /* 35 O OOO MO SYNCHRONIZE CACHE(10) */ 342 { 0x35, D | W | R | O | B | K, "SYNCHRONIZE CACHE(10)" }, 343 /* 36 Z O O O LOCK UNLOCK CACHE(10) */ 344 { 0x36, D | W | O | K, "LOCK UNLOCK CACHE(10)" }, 345 /* 37 O O READ DEFECT DATA(10) */ 346 { 0x37, D | O, "READ DEFECT DATA(10)" }, 347 /* 37 O INITIALIZE ELEMENT STATUS WITH RANGE */ 348 { 0x37, M, "INITIALIZE ELEMENT STATUS WITH RANGE" }, 349 /* 38 O O O MEDIUM SCAN */ 350 { 0x38, W | O | K, "MEDIUM SCAN" }, 351 /* 39 ZZZZOZO Z COMPARE */ 352 { 0x39, D | T | L | P | W | R | O | K | S, "COMPARE" }, 353 /* 3A ZZZZOZO Z COPY AND VERIFY */ 354 { 0x3A, D | T | L | P | W | R | O | K | S, "COPY AND VERIFY" }, 355 /* 3B OOOOOOOOOOMOOO WRITE BUFFER */ 356 { 0x3B, ALL, "WRITE BUFFER" }, 357 /* 3C OOOOOOOOOO OOO READ BUFFER */ 358 { 0x3C, ALL & ~(B), "READ BUFFER" }, 359 /* 3D O UPDATE BLOCK */ 360 { 0x3D, O, "UPDATE BLOCK" }, 361 /* 3E O O O READ LONG(10) */ 362 { 0x3E, D | W | O, "READ LONG(10)" }, 363 /* 3F O O O WRITE LONG(10) */ 364 { 0x3F, D | W | O, "WRITE LONG(10)" }, 365 /* 40 ZZZZOZOZ CHANGE DEFINITION */ 366 { 0x40, D | T | L | P | W | R | O | M | S | C, "CHANGE DEFINITION" }, 367 /* 41 O WRITE SAME(10) */ 368 { 0x41, D, "WRITE SAME(10)" }, 369 /* 42 O READ SUB-CHANNEL */ 370 { 0x42, R, "READ SUB-CHANNEL" }, 371 /* 43 O READ TOC/PMA/ATIP */ 372 { 0x43, R, "READ TOC/PMA/ATIP" }, 373 /* 44 M M REPORT DENSITY SUPPORT */ 374 { 0x44, T | V, "REPORT DENSITY SUPPORT" }, 375 /* 44 READ HEADER */ 376 /* 45 O PLAY AUDIO(10) */ 377 { 0x45, R, "PLAY AUDIO(10)" }, 378 /* 46 M GET CONFIGURATION */ 379 { 0x46, R, "GET CONFIGURATION" }, 380 /* 47 O PLAY AUDIO MSF */ 381 { 0x47, R, "PLAY AUDIO MSF" }, 382 /* 48 */ 383 /* 49 */ 384 /* 4A M GET EVENT STATUS NOTIFICATION */ 385 { 0x4A, R, "GET EVENT STATUS NOTIFICATION" }, 386 /* 4B O PAUSE/RESUME */ 387 { 0x4B, R, "PAUSE/RESUME" }, 388 /* 4C OOOOO OOOO OOO LOG SELECT */ 389 { 0x4C, ALL & ~(R | B), "LOG SELECT" }, 390 /* 4D OOOOO OOOO OMO LOG SENSE */ 391 { 0x4D, ALL & ~(R | B), "LOG SENSE" }, 392 /* 4E O STOP PLAY/SCAN */ 393 { 0x4E, R, "STOP PLAY/SCAN" }, 394 /* 4F */ 395 /* 50 O XDWRITE(10) */ 396 { 0x50, D, "XDWRITE(10)" }, 397 /* 51 O XPWRITE(10) */ 398 { 0x51, D, "XPWRITE(10)" }, 399 /* 51 O READ DISC INFORMATION */ 400 { 0x51, R, "READ DISC INFORMATION" }, 401 /* 52 O XDREAD(10) */ 402 { 0x52, D, "XDREAD(10)" }, 403 /* 52 O READ TRACK INFORMATION */ 404 { 0x52, R, "READ TRACK INFORMATION" }, 405 /* 53 O RESERVE TRACK */ 406 { 0x53, R, "RESERVE TRACK" }, 407 /* 54 O SEND OPC INFORMATION */ 408 { 0x54, R, "SEND OPC INFORMATION" }, 409 /* 55 OOO OMOOOOMOMO MODE SELECT(10) */ 410 { 0x55, ALL & ~(P), "MODE SELECT(10)" }, 411 /* 56 ZZMZO OOOZ RESERVE(10) */ 412 { 0x56, ALL & ~(R | B | K | V | F | C), "RESERVE(10)" }, 413 /* 56 Z RESERVE ELEMENT(10) */ 414 { 0x56, M, "RESERVE ELEMENT(10)" }, 415 /* 57 ZZMZO OOOZ RELEASE(10) */ 416 { 0x57, ALL & ~(R | B | K | V | F | C), "RELEASE(10)" }, 417 /* 57 Z RELEASE ELEMENT(10) */ 418 { 0x57, M, "RELEASE ELEMENT(10)" }, 419 /* 58 O REPAIR TRACK */ 420 { 0x58, R, "REPAIR TRACK" }, 421 /* 59 */ 422 /* 5A OOO OMOOOOMOMO MODE SENSE(10) */ 423 { 0x5A, ALL & ~(P), "MODE SENSE(10)" }, 424 /* 5B O CLOSE TRACK/SESSION */ 425 { 0x5B, R, "CLOSE TRACK/SESSION" }, 426 /* 5C O READ BUFFER CAPACITY */ 427 { 0x5C, R, "READ BUFFER CAPACITY" }, 428 /* 5D O SEND CUE SHEET */ 429 { 0x5D, R, "SEND CUE SHEET" }, 430 /* 5E OOOOO OOOO M PERSISTENT RESERVE IN */ 431 { 0x5E, ALL & ~(R | B | K | V | C), "PERSISTENT RESERVE IN" }, 432 /* 5F OOOOO OOOO M PERSISTENT RESERVE OUT */ 433 { 0x5F, ALL & ~(R | B | K | V | C), "PERSISTENT RESERVE OUT" }, 434 /* 7E OO O OOOO O extended CDB */ 435 { 0x7E, D | T | R | M | A | E | B | V, "extended CDB" }, 436 /* 7F O M variable length CDB (more than 16 bytes) */ 437 { 0x7F, D | F, "variable length CDB (more than 16 bytes)" }, 438 /* 80 Z XDWRITE EXTENDED(16) */ 439 { 0x80, D, "XDWRITE EXTENDED(16)" }, 440 /* 80 M WRITE FILEMARKS(16) */ 441 { 0x80, T, "WRITE FILEMARKS(16)" }, 442 /* 81 Z REBUILD(16) */ 443 { 0x81, D, "REBUILD(16)" }, 444 /* 81 O READ REVERSE(16) */ 445 { 0x81, T, "READ REVERSE(16)" }, 446 /* 82 Z REGENERATE(16) */ 447 { 0x82, D, "REGENERATE(16)" }, 448 /* 83 OOOOO O OO EXTENDED COPY */ 449 { 0x83, D | T | L | P | W | O | K | V, "EXTENDED COPY" }, 450 /* 84 OOOOO O OO RECEIVE COPY RESULTS */ 451 { 0x84, D | T | L | P | W | O | K | V, "RECEIVE COPY RESULTS" }, 452 /* 85 O O O ATA COMMAND PASS THROUGH(16) */ 453 { 0x85, D | R | B, "ATA COMMAND PASS THROUGH(16)" }, 454 /* 86 OO OO OOOOOOO ACCESS CONTROL IN */ 455 { 0x86, ALL & ~(L | R | F), "ACCESS CONTROL IN" }, 456 /* 87 OO OO OOOOOOO ACCESS CONTROL OUT */ 457 { 0x87, ALL & ~(L | R | F), "ACCESS CONTROL OUT" }, 458 /* 459 * XXX READ(16)/WRITE(16) were not listed for CD/DVE in op-num.txt 460 * but we had it since r1.40. Do we really want them? 461 */ 462 /* 88 MM O O O READ(16) */ 463 { 0x88, D | T | W | O | B, "READ(16)" }, 464 /* 89 */ 465 /* 8A OM O O O WRITE(16) */ 466 { 0x8A, D | T | W | O | B, "WRITE(16)" }, 467 /* 8B O ORWRITE */ 468 { 0x8B, D, "ORWRITE" }, 469 /* 8C OO O OO O M READ ATTRIBUTE */ 470 { 0x8C, D | T | W | O | M | B | V, "READ ATTRIBUTE" }, 471 /* 8D OO O OO O O WRITE ATTRIBUTE */ 472 { 0x8D, D | T | W | O | M | B | V, "WRITE ATTRIBUTE" }, 473 /* 8E O O O O WRITE AND VERIFY(16) */ 474 { 0x8E, D | W | O | B, "WRITE AND VERIFY(16)" }, 475 /* 8F OO O O O VERIFY(16) */ 476 { 0x8F, D | T | W | O | B, "VERIFY(16)" }, 477 /* 90 O O O O PRE-FETCH(16) */ 478 { 0x90, D | W | O | B, "PRE-FETCH(16)" }, 479 /* 91 O O O O SYNCHRONIZE CACHE(16) */ 480 { 0x91, D | W | O | B, "SYNCHRONIZE CACHE(16)" }, 481 /* 91 O SPACE(16) */ 482 { 0x91, T, "SPACE(16)" }, 483 /* 92 Z O O LOCK UNLOCK CACHE(16) */ 484 { 0x92, D | W | O, "LOCK UNLOCK CACHE(16)" }, 485 /* 92 O LOCATE(16) */ 486 { 0x92, T, "LOCATE(16)" }, 487 /* 93 O WRITE SAME(16) */ 488 { 0x93, D, "WRITE SAME(16)" }, 489 /* 93 M ERASE(16) */ 490 { 0x93, T, "ERASE(16)" }, 491 /* 94 [usage proposed by SCSI Socket Services project] */ 492 /* 95 [usage proposed by SCSI Socket Services project] */ 493 /* 96 [usage proposed by SCSI Socket Services project] */ 494 /* 97 [usage proposed by SCSI Socket Services project] */ 495 /* 98 */ 496 /* 99 */ 497 /* 9A */ 498 /* 9B */ 499 /* 9C */ 500 /* 9D */ 501 /* XXX KDM ALL for this? op-num.txt defines it for none.. */ 502 /* 9E SERVICE ACTION IN(16) */ 503 { 0x9E, ALL, "SERVICE ACTION IN(16)" }, 504 /* XXX KDM ALL for this? op-num.txt defines it for ADC.. */ 505 /* 9F M SERVICE ACTION OUT(16) */ 506 { 0x9F, ALL, "SERVICE ACTION OUT(16)" }, 507 /* A0 MMOOO OMMM OMO REPORT LUNS */ 508 { 0xA0, ALL & ~(R | B), "REPORT LUNS" }, 509 /* A1 O BLANK */ 510 { 0xA1, R, "BLANK" }, 511 /* A1 O O ATA COMMAND PASS THROUGH(12) */ 512 { 0xA1, D | B, "ATA COMMAND PASS THROUGH(12)" }, 513 /* A2 OO O O SECURITY PROTOCOL IN */ 514 { 0xA2, D | T | R | V, "SECURITY PROTOCOL IN" }, 515 /* A3 OOO O OOMOOOM MAINTENANCE (IN) */ 516 { 0xA3, ALL & ~(P | R | F), "MAINTENANCE (IN)" }, 517 /* A3 O SEND KEY */ 518 { 0xA3, R, "SEND KEY" }, 519 /* A4 OOO O OOOOOOO MAINTENANCE (OUT) */ 520 { 0xA4, ALL & ~(P | R | F), "MAINTENANCE (OUT)" }, 521 /* A4 O REPORT KEY */ 522 { 0xA4, R, "REPORT KEY" }, 523 /* A5 O O OM MOVE MEDIUM */ 524 { 0xA5, T | W | O | M, "MOVE MEDIUM" }, 525 /* A5 O PLAY AUDIO(12) */ 526 { 0xA5, R, "PLAY AUDIO(12)" }, 527 /* A6 O EXCHANGE MEDIUM */ 528 { 0xA6, M, "EXCHANGE MEDIUM" }, 529 /* A6 O LOAD/UNLOAD C/DVD */ 530 { 0xA6, R, "LOAD/UNLOAD C/DVD" }, 531 /* A7 ZZ O O MOVE MEDIUM ATTACHED */ 532 { 0xA7, D | T | W | O, "MOVE MEDIUM ATTACHED" }, 533 /* A7 O SET READ AHEAD */ 534 { 0xA7, R, "SET READ AHEAD" }, 535 /* A8 O OOO READ(12) */ 536 { 0xA8, D | W | R | O, "READ(12)" }, 537 /* A8 GET MESSAGE(12) */ 538 { 0xA8, C, "GET MESSAGE(12)" }, 539 /* A9 O SERVICE ACTION OUT(12) */ 540 { 0xA9, V, "SERVICE ACTION OUT(12)" }, 541 /* AA O OOO WRITE(12) */ 542 { 0xAA, D | W | R | O, "WRITE(12)" }, 543 /* AA SEND MESSAGE(12) */ 544 { 0xAA, C, "SEND MESSAGE(12)" }, 545 /* AB O O SERVICE ACTION IN(12) */ 546 { 0xAB, R | V, "SERVICE ACTION IN(12)" }, 547 /* AC O ERASE(12) */ 548 { 0xAC, O, "ERASE(12)" }, 549 /* AC O GET PERFORMANCE */ 550 { 0xAC, R, "GET PERFORMANCE" }, 551 /* AD O READ DVD STRUCTURE */ 552 { 0xAD, R, "READ DVD STRUCTURE" }, 553 /* AE O O O WRITE AND VERIFY(12) */ 554 { 0xAE, D | W | O, "WRITE AND VERIFY(12)" }, 555 /* AF O OZO VERIFY(12) */ 556 { 0xAF, D | W | R | O, "VERIFY(12)" }, 557 /* B0 ZZZ SEARCH DATA HIGH(12) */ 558 { 0xB0, W | R | O, "SEARCH DATA HIGH(12)" }, 559 /* B1 ZZZ SEARCH DATA EQUAL(12) */ 560 { 0xB1, W | R | O, "SEARCH DATA EQUAL(12)" }, 561 /* B2 ZZZ SEARCH DATA LOW(12) */ 562 { 0xB2, W | R | O, "SEARCH DATA LOW(12)" }, 563 /* B3 Z OZO SET LIMITS(12) */ 564 { 0xB3, D | W | R | O, "SET LIMITS(12)" }, 565 /* B4 ZZ OZO READ ELEMENT STATUS ATTACHED */ 566 { 0xB4, D | T | W | R | O, "READ ELEMENT STATUS ATTACHED" }, 567 /* B5 OO O O SECURITY PROTOCOL OUT */ 568 { 0xB5, D | T | R | V, "SECURITY PROTOCOL OUT" }, 569 /* B5 O REQUEST VOLUME ELEMENT ADDRESS */ 570 { 0xB5, M, "REQUEST VOLUME ELEMENT ADDRESS" }, 571 /* B6 O SEND VOLUME TAG */ 572 { 0xB6, M, "SEND VOLUME TAG" }, 573 /* B6 O SET STREAMING */ 574 { 0xB6, R, "SET STREAMING" }, 575 /* B7 O O READ DEFECT DATA(12) */ 576 { 0xB7, D | O, "READ DEFECT DATA(12)" }, 577 /* B8 O OZOM READ ELEMENT STATUS */ 578 { 0xB8, T | W | R | O | M, "READ ELEMENT STATUS" }, 579 /* B9 O READ CD MSF */ 580 { 0xB9, R, "READ CD MSF" }, 581 /* BA O O OOMO REDUNDANCY GROUP (IN) */ 582 { 0xBA, D | W | O | M | A | E, "REDUNDANCY GROUP (IN)" }, 583 /* BA O SCAN */ 584 { 0xBA, R, "SCAN" }, 585 /* BB O O OOOO REDUNDANCY GROUP (OUT) */ 586 { 0xBB, D | W | O | M | A | E, "REDUNDANCY GROUP (OUT)" }, 587 /* BB O SET CD SPEED */ 588 { 0xBB, R, "SET CD SPEED" }, 589 /* BC O O OOMO SPARE (IN) */ 590 { 0xBC, D | W | O | M | A | E, "SPARE (IN)" }, 591 /* BD O O OOOO SPARE (OUT) */ 592 { 0xBD, D | W | O | M | A | E, "SPARE (OUT)" }, 593 /* BD O MECHANISM STATUS */ 594 { 0xBD, R, "MECHANISM STATUS" }, 595 /* BE O O OOMO VOLUME SET (IN) */ 596 { 0xBE, D | W | O | M | A | E, "VOLUME SET (IN)" }, 597 /* BE O READ CD */ 598 { 0xBE, R, "READ CD" }, 599 /* BF O O OOOO VOLUME SET (OUT) */ 600 { 0xBF, D | W | O | M | A | E, "VOLUME SET (OUT)" }, 601 /* BF O SEND DVD STRUCTURE */ 602 { 0xBF, R, "SEND DVD STRUCTURE" } 603 }; 604 605 const char * 606 scsi_op_desc(u_int16_t opcode, struct scsi_inquiry_data *inq_data) 607 { 608 caddr_t match; 609 int i, j; 610 u_int32_t opmask; 611 u_int16_t pd_type; 612 int num_ops[2]; 613 struct op_table_entry *table[2]; 614 int num_tables; 615 616 pd_type = SID_TYPE(inq_data); 617 618 match = cam_quirkmatch((caddr_t)inq_data, 619 (caddr_t)scsi_op_quirk_table, 620 NELEM(scsi_op_quirk_table), 621 sizeof(*scsi_op_quirk_table), 622 scsi_inquiry_match); 623 624 if (match != NULL) { 625 table[0] = ((struct scsi_op_quirk_entry *)match)->op_table; 626 num_ops[0] = ((struct scsi_op_quirk_entry *)match)->num_ops; 627 table[1] = scsi_op_codes; 628 num_ops[1] = NELEM(scsi_op_codes); 629 num_tables = 2; 630 } else { 631 /* 632 * If this is true, we have a vendor specific opcode that 633 * wasn't covered in the quirk table. 634 */ 635 if ((opcode > 0xBF) || ((opcode > 0x5F) && (opcode < 0x80))) 636 return("Vendor Specific Command"); 637 638 table[0] = scsi_op_codes; 639 num_ops[0] = NELEM(scsi_op_codes); 640 num_tables = 1; 641 } 642 643 /* RBC is 'Simplified' Direct Access Device */ 644 if (pd_type == T_RBC) 645 pd_type = T_DIRECT; 646 647 opmask = 1 << pd_type; 648 649 for (j = 0; j < num_tables; j++) { 650 for (i = 0;i < num_ops[j] && table[j][i].opcode <= opcode; i++){ 651 if ((table[j][i].opcode == opcode) 652 && ((table[j][i].opmask & opmask) != 0)) 653 return(table[j][i].desc); 654 } 655 } 656 657 /* 658 * If we can't find a match for the command in the table, we just 659 * assume it's a vendor specifc command. 660 */ 661 return("Vendor Specific Command"); 662 663 } 664 665 #else /* SCSI_NO_OP_STRINGS */ 666 667 const char * 668 scsi_op_desc(u_int16_t opcode, struct scsi_inquiry_data *inq_data) 669 { 670 return(""); 671 } 672 673 #endif 674 675 676 #if !defined(SCSI_NO_SENSE_STRINGS) 677 #define SST(asc, ascq, action, desc) \ 678 asc, ascq, action, desc 679 #else 680 const char empty_string[] = ""; 681 682 #define SST(asc, ascq, action, desc) \ 683 asc, ascq, action, empty_string 684 #endif 685 686 const struct sense_key_table_entry sense_key_table[] = 687 { 688 { SSD_KEY_NO_SENSE, SS_NOP, "NO SENSE" }, 689 { SSD_KEY_RECOVERED_ERROR, SS_NOP|SSQ_PRINT_SENSE, "RECOVERED ERROR" }, 690 { 691 SSD_KEY_NOT_READY, SS_TUR|SSQ_MANY|SSQ_DECREMENT_COUNT|EBUSY, 692 "NOT READY" 693 }, 694 { SSD_KEY_MEDIUM_ERROR, SS_RDEF, "MEDIUM ERROR" }, 695 { SSD_KEY_HARDWARE_ERROR, SS_RDEF, "HARDWARE FAILURE" }, 696 { SSD_KEY_ILLEGAL_REQUEST, SS_FATAL|EINVAL, "ILLEGAL REQUEST" }, 697 { SSD_KEY_UNIT_ATTENTION, SS_FATAL|ENXIO, "UNIT ATTENTION" }, 698 { SSD_KEY_DATA_PROTECT, SS_FATAL|EACCES, "DATA PROTECT" }, 699 { SSD_KEY_BLANK_CHECK, SS_FATAL|ENOSPC, "BLANK CHECK" }, 700 { SSD_KEY_Vendor_Specific, SS_FATAL|EIO, "Vendor Specific" }, 701 { SSD_KEY_COPY_ABORTED, SS_FATAL|EIO, "COPY ABORTED" }, 702 { SSD_KEY_ABORTED_COMMAND, SS_RDEF, "ABORTED COMMAND" }, 703 { SSD_KEY_EQUAL, SS_NOP, "EQUAL" }, 704 { SSD_KEY_VOLUME_OVERFLOW, SS_FATAL|EIO, "VOLUME OVERFLOW" }, 705 { SSD_KEY_MISCOMPARE, SS_NOP, "MISCOMPARE" }, 706 { SSD_KEY_RESERVED, SS_FATAL|EIO, "RESERVED" } 707 }; 708 709 const int sense_key_table_size = NELEM(sense_key_table); 710 711 static struct asc_table_entry quantum_fireball_entries[] = { 712 { SST(0x04, 0x0b, SS_START | SSQ_DECREMENT_COUNT | ENXIO, 713 "Logical unit not ready, initializing cmd. required") } 714 }; 715 716 static struct asc_table_entry sony_mo_entries[] = { 717 { SST(0x04, 0x00, SS_START | SSQ_DECREMENT_COUNT | ENXIO, 718 "Logical unit not ready, cause not reportable") } 719 }; 720 721 static struct scsi_sense_quirk_entry sense_quirk_table[] = { 722 { 723 /* 724 * XXX The Quantum Fireball ST and SE like to return 0x04 0x0b 725 * when they really should return 0x04 0x02. 726 */ 727 {T_DIRECT, SIP_MEDIA_FIXED, "QUANTUM", "FIREBALL S*", "*"}, 728 /*num_sense_keys*/0, 729 NELEM(quantum_fireball_entries), 730 /*sense key entries*/NULL, 731 quantum_fireball_entries 732 }, 733 { 734 /* 735 * This Sony MO drive likes to return 0x04, 0x00 when it 736 * isn't spun up. 737 */ 738 {T_DIRECT, SIP_MEDIA_REMOVABLE, "SONY", "SMO-*", "*"}, 739 /*num_sense_keys*/0, 740 NELEM(sony_mo_entries), 741 /*sense key entries*/NULL, 742 sony_mo_entries 743 } 744 }; 745 746 const int sense_quirk_table_size = NELEM(sense_quirk_table); 747 748 static struct asc_table_entry asc_table[] = { 749 /* 750 * From: http://www.t10.org/lists/asc-num.txt 751 * Modifications by Jung-uk Kim (jkim@FreeBSD.org) 752 */ 753 /* 754 * File: ASC-NUM.TXT 755 * 756 * SCSI ASC/ASCQ Assignments 757 * Numeric Sorted Listing 758 * as of 7/29/08 759 * 760 * D - DIRECT ACCESS DEVICE (SBC-2) device column key 761 * .T - SEQUENTIAL ACCESS DEVICE (SSC) ------------------- 762 * . L - PRINTER DEVICE (SSC) blank = reserved 763 * . P - PROCESSOR DEVICE (SPC) not blank = allowed 764 * . .W - WRITE ONCE READ MULTIPLE DEVICE (SBC-2) 765 * . . R - CD DEVICE (MMC) 766 * . . O - OPTICAL MEMORY DEVICE (SBC-2) 767 * . . .M - MEDIA CHANGER DEVICE (SMC) 768 * . . . A - STORAGE ARRAY DEVICE (SCC) 769 * . . . E - ENCLOSURE SERVICES DEVICE (SES) 770 * . . . .B - SIMPLIFIED DIRECT-ACCESS DEVICE (RBC) 771 * . . . . K - OPTICAL CARD READER/WRITER DEVICE (OCRW) 772 * . . . . V - AUTOMATION/DRIVE INTERFACE (ADC) 773 * . . . . .F - OBJECT-BASED STORAGE (OSD) 774 * DTLPWROMAEBKVF 775 * ASC ASCQ Action 776 * Description 777 */ 778 /* DTLPWROMAEBKVF */ 779 { SST(0x00, 0x00, SS_NOP, 780 "No additional sense information") }, 781 /* T */ 782 { SST(0x00, 0x01, SS_RDEF, 783 "Filemark detected") }, 784 /* T */ 785 { SST(0x00, 0x02, SS_RDEF, 786 "End-of-partition/medium detected") }, 787 /* T */ 788 { SST(0x00, 0x03, SS_RDEF, 789 "Setmark detected") }, 790 /* T */ 791 { SST(0x00, 0x04, SS_RDEF, 792 "Beginning-of-partition/medium detected") }, 793 /* TL */ 794 { SST(0x00, 0x05, SS_RDEF, 795 "End-of-data detected") }, 796 /* DTLPWROMAEBKVF */ 797 { SST(0x00, 0x06, SS_RDEF, 798 "I/O process terminated") }, 799 /* T */ 800 { SST(0x00, 0x07, SS_RDEF, /* XXX TBD */ 801 "Programmable early warning detected") }, 802 /* R */ 803 { SST(0x00, 0x11, SS_FATAL | EBUSY, 804 "Audio play operation in progress") }, 805 /* R */ 806 { SST(0x00, 0x12, SS_NOP, 807 "Audio play operation paused") }, 808 /* R */ 809 { SST(0x00, 0x13, SS_NOP, 810 "Audio play operation successfully completed") }, 811 /* R */ 812 { SST(0x00, 0x14, SS_RDEF, 813 "Audio play operation stopped due to error") }, 814 /* R */ 815 { SST(0x00, 0x15, SS_NOP, 816 "No current audio status to return") }, 817 /* DTLPWROMAEBKVF */ 818 { SST(0x00, 0x16, SS_FATAL | EBUSY, 819 "Operation in progress") }, 820 /* DTL WROMAEBKVF */ 821 { SST(0x00, 0x17, SS_RDEF, 822 "Cleaning requested") }, 823 /* T */ 824 { SST(0x00, 0x18, SS_RDEF, /* XXX TBD */ 825 "Erase operation in progress") }, 826 /* T */ 827 { SST(0x00, 0x19, SS_RDEF, /* XXX TBD */ 828 "Locate operation in progress") }, 829 /* T */ 830 { SST(0x00, 0x1A, SS_RDEF, /* XXX TBD */ 831 "Rewind operation in progress") }, 832 /* T */ 833 { SST(0x00, 0x1B, SS_RDEF, /* XXX TBD */ 834 "Set capacity operation in progress") }, 835 /* T */ 836 { SST(0x00, 0x1C, SS_RDEF, /* XXX TBD */ 837 "Verify operation in progress") }, 838 /* DT B */ 839 { SST(0x00, 0x1D, SS_RDEF, /* XXX TBD */ 840 "ATA pass through information available") }, 841 /* DT R MAEBKV */ 842 { SST(0x00, 0x1E, SS_RDEF, /* XXX TBD */ 843 "Conflicting SA creation request") }, 844 /* D W O BK */ 845 { SST(0x01, 0x00, SS_RDEF, 846 "No index/sector signal") }, 847 /* D WRO BK */ 848 { SST(0x02, 0x00, SS_RDEF, 849 "No seek complete") }, 850 /* DTL W O BK */ 851 { SST(0x03, 0x00, SS_RDEF, 852 "Peripheral device write fault") }, 853 /* T */ 854 { SST(0x03, 0x01, SS_RDEF, 855 "No write current") }, 856 /* T */ 857 { SST(0x03, 0x02, SS_RDEF, 858 "Excessive write errors") }, 859 /* DTLPWROMAEBKVF */ 860 { SST(0x04, 0x00, SS_TUR | SSQ_MANY | SSQ_DECREMENT_COUNT | EIO, 861 "Logical unit not ready, cause not reportable") }, 862 /* DTLPWROMAEBKVF */ 863 { SST(0x04, 0x01, SS_TUR | SSQ_MANY | SSQ_DECREMENT_COUNT | EBUSY, 864 "Logical unit is in process of becoming ready") }, 865 /* DTLPWROMAEBKVF */ 866 { SST(0x04, 0x02, SS_START | SSQ_DECREMENT_COUNT | ENXIO, 867 "Logical unit not ready, initializing command required") }, 868 /* DTLPWROMAEBKVF */ 869 { SST(0x04, 0x03, SS_FATAL | ENXIO, 870 "Logical unit not ready, manual intervention required") }, 871 /* DTL RO B */ 872 { SST(0x04, 0x04, SS_FATAL | EBUSY, 873 "Logical unit not ready, format in progress") }, 874 /* DT W O A BK F */ 875 { SST(0x04, 0x05, SS_FATAL | EBUSY, 876 "Logical unit not ready, rebuild in progress") }, 877 /* DT W O A BK */ 878 { SST(0x04, 0x06, SS_FATAL | EBUSY, 879 "Logical unit not ready, recalculation in progress") }, 880 /* DTLPWROMAEBKVF */ 881 { SST(0x04, 0x07, SS_FATAL | EBUSY, 882 "Logical unit not ready, operation in progress") }, 883 /* R */ 884 { SST(0x04, 0x08, SS_FATAL | EBUSY, 885 "Logical unit not ready, long write in progress") }, 886 /* DTLPWROMAEBKVF */ 887 { SST(0x04, 0x09, SS_RDEF, /* XXX TBD */ 888 "Logical unit not ready, self-test in progress") }, 889 /* DTLPWROMAEBKVF */ 890 { SST(0x04, 0x0A, SS_RDEF, /* XXX TBD */ 891 "Logical unit not accessible, asymmetric access state transition")}, 892 /* DTLPWROMAEBKVF */ 893 { SST(0x04, 0x0B, SS_RDEF, /* XXX TBD */ 894 "Logical unit not accessible, target port in standby state") }, 895 /* DTLPWROMAEBKVF */ 896 { SST(0x04, 0x0C, SS_RDEF, /* XXX TBD */ 897 "Logical unit not accessible, target port in unavailable state") }, 898 /* F */ 899 { SST(0x04, 0x0D, SS_RDEF, /* XXX TBD */ 900 "Logical unit not ready, structure check required") }, 901 /* DT WROM B */ 902 { SST(0x04, 0x10, SS_RDEF, /* XXX TBD */ 903 "Logical unit not ready, auxiliary memory not accessible") }, 904 /* DT WRO AEB VF */ 905 { SST(0x04, 0x11, SS_RDEF, /* XXX TBD */ 906 "Logical unit not ready, notify (enable spinup) required") }, 907 /* M V */ 908 { SST(0x04, 0x12, SS_RDEF, /* XXX TBD */ 909 "Logical unit not ready, offline") }, 910 /* DT R MAEBKV */ 911 { SST(0x04, 0x13, SS_RDEF, /* XXX TBD */ 912 "Logical unit not ready, SA creation in progress") }, 913 /* DTL WROMAEBKVF */ 914 { SST(0x05, 0x00, SS_RDEF, 915 "Logical unit does not respond to selection") }, 916 /* D WROM BK */ 917 { SST(0x06, 0x00, SS_RDEF, 918 "No reference position found") }, 919 /* DTL WROM BK */ 920 { SST(0x07, 0x00, SS_RDEF, 921 "Multiple peripheral devices selected") }, 922 /* DTL WROMAEBKVF */ 923 { SST(0x08, 0x00, SS_RDEF, 924 "Logical unit communication failure") }, 925 /* DTL WROMAEBKVF */ 926 { SST(0x08, 0x01, SS_RDEF, 927 "Logical unit communication time-out") }, 928 /* DTL WROMAEBKVF */ 929 { SST(0x08, 0x02, SS_RDEF, 930 "Logical unit communication parity error") }, 931 /* DT ROM BK */ 932 { SST(0x08, 0x03, SS_RDEF, 933 "Logical unit communication CRC error (Ultra-DMA/32)") }, 934 /* DTLPWRO K */ 935 { SST(0x08, 0x04, SS_RDEF, /* XXX TBD */ 936 "Unreachable copy target") }, 937 /* DT WRO B */ 938 { SST(0x09, 0x00, SS_RDEF, 939 "Track following error") }, 940 /* WRO K */ 941 { SST(0x09, 0x01, SS_RDEF, 942 "Tracking servo failure") }, 943 /* WRO K */ 944 { SST(0x09, 0x02, SS_RDEF, 945 "Focus servo failure") }, 946 /* WRO */ 947 { SST(0x09, 0x03, SS_RDEF, 948 "Spindle servo failure") }, 949 /* DT WRO B */ 950 { SST(0x09, 0x04, SS_RDEF, 951 "Head select fault") }, 952 /* DTLPWROMAEBKVF */ 953 { SST(0x0A, 0x00, SS_FATAL | ENOSPC, 954 "Error log overflow") }, 955 /* DTLPWROMAEBKVF */ 956 { SST(0x0B, 0x00, SS_RDEF, 957 "Warning") }, 958 /* DTLPWROMAEBKVF */ 959 { SST(0x0B, 0x01, SS_RDEF, 960 "Warning - specified temperature exceeded") }, 961 /* DTLPWROMAEBKVF */ 962 { SST(0x0B, 0x02, SS_RDEF, 963 "Warning - enclosure degraded") }, 964 /* DTLPWROMAEBKVF */ 965 { SST(0x0B, 0x03, SS_RDEF, /* XXX TBD */ 966 "Warning - background self-test failed") }, 967 /* DTLPWRO AEBKVF */ 968 { SST(0x0B, 0x04, SS_RDEF, /* XXX TBD */ 969 "Warning - background pre-scan detected medium error") }, 970 /* DTLPWRO AEBKVF */ 971 { SST(0x0B, 0x05, SS_RDEF, /* XXX TBD */ 972 "Warning - background medium scan detected medium error") }, 973 /* DTLPWROMAEBKVF */ 974 { SST(0x0B, 0x06, SS_RDEF, /* XXX TBD */ 975 "Warning - non-volatile cache now volatile") }, 976 /* DTLPWROMAEBKVF */ 977 { SST(0x0B, 0x07, SS_RDEF, /* XXX TBD */ 978 "Warning - degraded power to non-volatile cache") }, 979 /* T R */ 980 { SST(0x0C, 0x00, SS_RDEF, 981 "Write error") }, 982 /* K */ 983 { SST(0x0C, 0x01, SS_NOP | SSQ_PRINT_SENSE, 984 "Write error - recovered with auto reallocation") }, 985 /* D W O BK */ 986 { SST(0x0C, 0x02, SS_RDEF, 987 "Write error - auto reallocation failed") }, 988 /* D W O BK */ 989 { SST(0x0C, 0x03, SS_RDEF, 990 "Write error - recommend reassignment") }, 991 /* DT W O B */ 992 { SST(0x0C, 0x04, SS_RDEF, 993 "Compression check miscompare error") }, 994 /* DT W O B */ 995 { SST(0x0C, 0x05, SS_RDEF, 996 "Data expansion occurred during compression") }, 997 /* DT W O B */ 998 { SST(0x0C, 0x06, SS_RDEF, 999 "Block not compressible") }, 1000 /* R */ 1001 { SST(0x0C, 0x07, SS_RDEF, 1002 "Write error - recovery needed") }, 1003 /* R */ 1004 { SST(0x0C, 0x08, SS_RDEF, 1005 "Write error - recovery failed") }, 1006 /* R */ 1007 { SST(0x0C, 0x09, SS_RDEF, 1008 "Write error - loss of streaming") }, 1009 /* R */ 1010 { SST(0x0C, 0x0A, SS_RDEF, 1011 "Write error - padding blocks added") }, 1012 /* DT WROM B */ 1013 { SST(0x0C, 0x0B, SS_RDEF, /* XXX TBD */ 1014 "Auxiliary memory write error") }, 1015 /* DTLPWRO AEBKVF */ 1016 { SST(0x0C, 0x0C, SS_RDEF, /* XXX TBD */ 1017 "Write error - unexpected unsolicited data") }, 1018 /* DTLPWRO AEBKVF */ 1019 { SST(0x0C, 0x0D, SS_RDEF, /* XXX TBD */ 1020 "Write error - not enough unsolicited data") }, 1021 /* R */ 1022 { SST(0x0C, 0x0F, SS_RDEF, /* XXX TBD */ 1023 "Defects in error window") }, 1024 /* DTLPWRO A K */ 1025 { SST(0x0D, 0x00, SS_RDEF, /* XXX TBD */ 1026 "Error detected by third party temporary initiator") }, 1027 /* DTLPWRO A K */ 1028 { SST(0x0D, 0x01, SS_RDEF, /* XXX TBD */ 1029 "Third party device failure") }, 1030 /* DTLPWRO A K */ 1031 { SST(0x0D, 0x02, SS_RDEF, /* XXX TBD */ 1032 "Copy target device not reachable") }, 1033 /* DTLPWRO A K */ 1034 { SST(0x0D, 0x03, SS_RDEF, /* XXX TBD */ 1035 "Incorrect copy target device type") }, 1036 /* DTLPWRO A K */ 1037 { SST(0x0D, 0x04, SS_RDEF, /* XXX TBD */ 1038 "Copy target device data underrun") }, 1039 /* DTLPWRO A K */ 1040 { SST(0x0D, 0x05, SS_RDEF, /* XXX TBD */ 1041 "Copy target device data overrun") }, 1042 /* DT PWROMAEBK F */ 1043 { SST(0x0E, 0x00, SS_RDEF, /* XXX TBD */ 1044 "Invalid information unit") }, 1045 /* DT PWROMAEBK F */ 1046 { SST(0x0E, 0x01, SS_RDEF, /* XXX TBD */ 1047 "Information unit too short") }, 1048 /* DT PWROMAEBK F */ 1049 { SST(0x0E, 0x02, SS_RDEF, /* XXX TBD */ 1050 "Information unit too long") }, 1051 /* DT P R MAEBK F */ 1052 { SST(0x0E, 0x03, SS_RDEF, /* XXX TBD */ 1053 "Invalid field in command information unit") }, 1054 /* D W O BK */ 1055 { SST(0x10, 0x00, SS_RDEF, 1056 "ID CRC or ECC error") }, 1057 /* DT W O */ 1058 { SST(0x10, 0x01, SS_RDEF, /* XXX TBD */ 1059 "Logical block guard check failed") }, 1060 /* DT W O */ 1061 { SST(0x10, 0x02, SS_RDEF, /* XXX TBD */ 1062 "Logical block application tag check failed") }, 1063 /* DT W O */ 1064 { SST(0x10, 0x03, SS_RDEF, /* XXX TBD */ 1065 "Logical block reference tag check failed") }, 1066 /* DT WRO BK */ 1067 { SST(0x11, 0x00, SS_RDEF, 1068 "Unrecovered read error") }, 1069 /* DT WRO BK */ 1070 { SST(0x11, 0x01, SS_RDEF, 1071 "Read retries exhausted") }, 1072 /* DT WRO BK */ 1073 { SST(0x11, 0x02, SS_RDEF, 1074 "Error too long to correct") }, 1075 /* DT W O BK */ 1076 { SST(0x11, 0x03, SS_RDEF, 1077 "Multiple read errors") }, 1078 /* D W O BK */ 1079 { SST(0x11, 0x04, SS_RDEF, 1080 "Unrecovered read error - auto reallocate failed") }, 1081 /* WRO B */ 1082 { SST(0x11, 0x05, SS_RDEF, 1083 "L-EC uncorrectable error") }, 1084 /* WRO B */ 1085 { SST(0x11, 0x06, SS_RDEF, 1086 "CIRC unrecovered error") }, 1087 /* W O B */ 1088 { SST(0x11, 0x07, SS_RDEF, 1089 "Data re-synchronization error") }, 1090 /* T */ 1091 { SST(0x11, 0x08, SS_RDEF, 1092 "Incomplete block read") }, 1093 /* T */ 1094 { SST(0x11, 0x09, SS_RDEF, 1095 "No gap found") }, 1096 /* DT O BK */ 1097 { SST(0x11, 0x0A, SS_RDEF, 1098 "Miscorrected error") }, 1099 /* D W O BK */ 1100 { SST(0x11, 0x0B, SS_RDEF, 1101 "Unrecovered read error - recommend reassignment") }, 1102 /* D W O BK */ 1103 { SST(0x11, 0x0C, SS_RDEF, 1104 "Unrecovered read error - recommend rewrite the data") }, 1105 /* DT WRO B */ 1106 { SST(0x11, 0x0D, SS_RDEF, 1107 "De-compression CRC error") }, 1108 /* DT WRO B */ 1109 { SST(0x11, 0x0E, SS_RDEF, 1110 "Cannot decompress using declared algorithm") }, 1111 /* R */ 1112 { SST(0x11, 0x0F, SS_RDEF, 1113 "Error reading UPC/EAN number") }, 1114 /* R */ 1115 { SST(0x11, 0x10, SS_RDEF, 1116 "Error reading ISRC number") }, 1117 /* R */ 1118 { SST(0x11, 0x11, SS_RDEF, 1119 "Read error - loss of streaming") }, 1120 /* DT WROM B */ 1121 { SST(0x11, 0x12, SS_RDEF, /* XXX TBD */ 1122 "Auxiliary memory read error") }, 1123 /* DTLPWRO AEBKVF */ 1124 { SST(0x11, 0x13, SS_RDEF, /* XXX TBD */ 1125 "Read error - failed retransmission request") }, 1126 /* D */ 1127 { SST(0x11, 0x14, SS_RDEF, /* XXX TBD */ 1128 "Read error - LBA marked bad by application client") }, 1129 /* D W O BK */ 1130 { SST(0x12, 0x00, SS_RDEF, 1131 "Address mark not found for ID field") }, 1132 /* D W O BK */ 1133 { SST(0x13, 0x00, SS_RDEF, 1134 "Address mark not found for data field") }, 1135 /* DTL WRO BK */ 1136 { SST(0x14, 0x00, SS_RDEF, 1137 "Recorded entity not found") }, 1138 /* DT WRO BK */ 1139 { SST(0x14, 0x01, SS_RDEF, 1140 "Record not found") }, 1141 /* T */ 1142 { SST(0x14, 0x02, SS_RDEF, 1143 "Filemark or setmark not found") }, 1144 /* T */ 1145 { SST(0x14, 0x03, SS_RDEF, 1146 "End-of-data not found") }, 1147 /* T */ 1148 { SST(0x14, 0x04, SS_RDEF, 1149 "Block sequence error") }, 1150 /* DT W O BK */ 1151 { SST(0x14, 0x05, SS_RDEF, 1152 "Record not found - recommend reassignment") }, 1153 /* DT W O BK */ 1154 { SST(0x14, 0x06, SS_RDEF, 1155 "Record not found - data auto-reallocated") }, 1156 /* T */ 1157 { SST(0x14, 0x07, SS_RDEF, /* XXX TBD */ 1158 "Locate operation failure") }, 1159 /* DTL WROM BK */ 1160 { SST(0x15, 0x00, SS_RDEF, 1161 "Random positioning error") }, 1162 /* DTL WROM BK */ 1163 { SST(0x15, 0x01, SS_RDEF, 1164 "Mechanical positioning error") }, 1165 /* DT WRO BK */ 1166 { SST(0x15, 0x02, SS_RDEF, 1167 "Positioning error detected by read of medium") }, 1168 /* D W O BK */ 1169 { SST(0x16, 0x00, SS_RDEF, 1170 "Data synchronization mark error") }, 1171 /* D W O BK */ 1172 { SST(0x16, 0x01, SS_RDEF, 1173 "Data sync error - data rewritten") }, 1174 /* D W O BK */ 1175 { SST(0x16, 0x02, SS_RDEF, 1176 "Data sync error - recommend rewrite") }, 1177 /* D W O BK */ 1178 { SST(0x16, 0x03, SS_NOP | SSQ_PRINT_SENSE, 1179 "Data sync error - data auto-reallocated") }, 1180 /* D W O BK */ 1181 { SST(0x16, 0x04, SS_RDEF, 1182 "Data sync error - recommend reassignment") }, 1183 /* DT WRO BK */ 1184 { SST(0x17, 0x00, SS_NOP | SSQ_PRINT_SENSE, 1185 "Recovered data with no error correction applied") }, 1186 /* DT WRO BK */ 1187 { SST(0x17, 0x01, SS_NOP | SSQ_PRINT_SENSE, 1188 "Recovered data with retries") }, 1189 /* DT WRO BK */ 1190 { SST(0x17, 0x02, SS_NOP | SSQ_PRINT_SENSE, 1191 "Recovered data with positive head offset") }, 1192 /* DT WRO BK */ 1193 { SST(0x17, 0x03, SS_NOP | SSQ_PRINT_SENSE, 1194 "Recovered data with negative head offset") }, 1195 /* WRO B */ 1196 { SST(0x17, 0x04, SS_NOP | SSQ_PRINT_SENSE, 1197 "Recovered data with retries and/or CIRC applied") }, 1198 /* D WRO BK */ 1199 { SST(0x17, 0x05, SS_NOP | SSQ_PRINT_SENSE, 1200 "Recovered data using previous sector ID") }, 1201 /* D W O BK */ 1202 { SST(0x17, 0x06, SS_NOP | SSQ_PRINT_SENSE, 1203 "Recovered data without ECC - data auto-reallocated") }, 1204 /* D WRO BK */ 1205 { SST(0x17, 0x07, SS_NOP | SSQ_PRINT_SENSE, 1206 "Recovered data without ECC - recommend reassignment") }, 1207 /* D WRO BK */ 1208 { SST(0x17, 0x08, SS_NOP | SSQ_PRINT_SENSE, 1209 "Recovered data without ECC - recommend rewrite") }, 1210 /* D WRO BK */ 1211 { SST(0x17, 0x09, SS_NOP | SSQ_PRINT_SENSE, 1212 "Recovered data without ECC - data rewritten") }, 1213 /* DT WRO BK */ 1214 { SST(0x18, 0x00, SS_NOP | SSQ_PRINT_SENSE, 1215 "Recovered data with error correction applied") }, 1216 /* D WRO BK */ 1217 { SST(0x18, 0x01, SS_NOP | SSQ_PRINT_SENSE, 1218 "Recovered data with error corr. & retries applied") }, 1219 /* D WRO BK */ 1220 { SST(0x18, 0x02, SS_NOP | SSQ_PRINT_SENSE, 1221 "Recovered data - data auto-reallocated") }, 1222 /* R */ 1223 { SST(0x18, 0x03, SS_NOP | SSQ_PRINT_SENSE, 1224 "Recovered data with CIRC") }, 1225 /* R */ 1226 { SST(0x18, 0x04, SS_NOP | SSQ_PRINT_SENSE, 1227 "Recovered data with L-EC") }, 1228 /* D WRO BK */ 1229 { SST(0x18, 0x05, SS_NOP | SSQ_PRINT_SENSE, 1230 "Recovered data - recommend reassignment") }, 1231 /* D WRO BK */ 1232 { SST(0x18, 0x06, SS_NOP | SSQ_PRINT_SENSE, 1233 "Recovered data - recommend rewrite") }, 1234 /* D W O BK */ 1235 { SST(0x18, 0x07, SS_NOP | SSQ_PRINT_SENSE, 1236 "Recovered data with ECC - data rewritten") }, 1237 /* R */ 1238 { SST(0x18, 0x08, SS_RDEF, /* XXX TBD */ 1239 "Recovered data with linking") }, 1240 /* D O K */ 1241 { SST(0x19, 0x00, SS_RDEF, 1242 "Defect list error") }, 1243 /* D O K */ 1244 { SST(0x19, 0x01, SS_RDEF, 1245 "Defect list not available") }, 1246 /* D O K */ 1247 { SST(0x19, 0x02, SS_RDEF, 1248 "Defect list error in primary list") }, 1249 /* D O K */ 1250 { SST(0x19, 0x03, SS_RDEF, 1251 "Defect list error in grown list") }, 1252 /* DTLPWROMAEBKVF */ 1253 { SST(0x1A, 0x00, SS_RDEF, 1254 "Parameter list length error") }, 1255 /* DTLPWROMAEBKVF */ 1256 { SST(0x1B, 0x00, SS_RDEF, 1257 "Synchronous data transfer error") }, 1258 /* D O BK */ 1259 { SST(0x1C, 0x00, SS_RDEF, 1260 "Defect list not found") }, 1261 /* D O BK */ 1262 { SST(0x1C, 0x01, SS_RDEF, 1263 "Primary defect list not found") }, 1264 /* D O BK */ 1265 { SST(0x1C, 0x02, SS_RDEF, 1266 "Grown defect list not found") }, 1267 /* DT WRO BK */ 1268 { SST(0x1D, 0x00, SS_FATAL, 1269 "Miscompare during verify operation") }, 1270 /* D W O BK */ 1271 { SST(0x1E, 0x00, SS_NOP | SSQ_PRINT_SENSE, 1272 "Recovered ID with ECC correction") }, 1273 /* D O K */ 1274 { SST(0x1F, 0x00, SS_RDEF, 1275 "Partial defect list transfer") }, 1276 /* DTLPWROMAEBKVF */ 1277 { SST(0x20, 0x00, SS_FATAL | EINVAL, 1278 "Invalid command operation code") }, 1279 /* DT PWROMAEBK */ 1280 { SST(0x20, 0x01, SS_RDEF, /* XXX TBD */ 1281 "Access denied - initiator pending-enrolled") }, 1282 /* DT PWROMAEBK */ 1283 { SST(0x20, 0x02, SS_RDEF, /* XXX TBD */ 1284 "Access denied - no access rights") }, 1285 /* DT PWROMAEBK */ 1286 { SST(0x20, 0x03, SS_RDEF, /* XXX TBD */ 1287 "Access denied - invalid mgmt ID key") }, 1288 /* T */ 1289 { SST(0x20, 0x04, SS_RDEF, /* XXX TBD */ 1290 "Illegal command while in write capable state") }, 1291 /* T */ 1292 { SST(0x20, 0x05, SS_RDEF, /* XXX TBD */ 1293 "Obsolete") }, 1294 /* T */ 1295 { SST(0x20, 0x06, SS_RDEF, /* XXX TBD */ 1296 "Illegal command while in explicit address mode") }, 1297 /* T */ 1298 { SST(0x20, 0x07, SS_RDEF, /* XXX TBD */ 1299 "Illegal command while in implicit address mode") }, 1300 /* DT PWROMAEBK */ 1301 { SST(0x20, 0x08, SS_RDEF, /* XXX TBD */ 1302 "Access denied - enrollment conflict") }, 1303 /* DT PWROMAEBK */ 1304 { SST(0x20, 0x09, SS_RDEF, /* XXX TBD */ 1305 "Access denied - invalid LU identifier") }, 1306 /* DT PWROMAEBK */ 1307 { SST(0x20, 0x0A, SS_RDEF, /* XXX TBD */ 1308 "Access denied - invalid proxy token") }, 1309 /* DT PWROMAEBK */ 1310 { SST(0x20, 0x0B, SS_RDEF, /* XXX TBD */ 1311 "Access denied - ACL LUN conflict") }, 1312 /* DT WRO BK */ 1313 { SST(0x21, 0x00, SS_FATAL | EINVAL, 1314 "Logical block address out of range") }, 1315 /* DT WROM BK */ 1316 { SST(0x21, 0x01, SS_FATAL | EINVAL, 1317 "Invalid element address") }, 1318 /* R */ 1319 { SST(0x21, 0x02, SS_RDEF, /* XXX TBD */ 1320 "Invalid address for write") }, 1321 /* R */ 1322 { SST(0x21, 0x03, SS_RDEF, /* XXX TBD */ 1323 "Invalid write crossing layer jump") }, 1324 /* D */ 1325 { SST(0x22, 0x00, SS_FATAL | EINVAL, 1326 "Illegal function (use 20 00, 24 00, or 26 00)") }, 1327 /* DTLPWROMAEBKVF */ 1328 { SST(0x24, 0x00, SS_FATAL | EINVAL, 1329 "Invalid field in CDB") }, 1330 /* DTLPWRO AEBKVF */ 1331 { SST(0x24, 0x01, SS_RDEF, /* XXX TBD */ 1332 "CDB decryption error") }, 1333 /* T */ 1334 { SST(0x24, 0x02, SS_RDEF, /* XXX TBD */ 1335 "Obsolete") }, 1336 /* T */ 1337 { SST(0x24, 0x03, SS_RDEF, /* XXX TBD */ 1338 "Obsolete") }, 1339 /* F */ 1340 { SST(0x24, 0x04, SS_RDEF, /* XXX TBD */ 1341 "Security audit value frozen") }, 1342 /* F */ 1343 { SST(0x24, 0x05, SS_RDEF, /* XXX TBD */ 1344 "Security working key frozen") }, 1345 /* F */ 1346 { SST(0x24, 0x06, SS_RDEF, /* XXX TBD */ 1347 "NONCE not unique") }, 1348 /* F */ 1349 { SST(0x24, 0x07, SS_RDEF, /* XXX TBD */ 1350 "NONCE timestamp out of range") }, 1351 /* DT R MAEBKV */ 1352 { SST(0x24, 0x08, SS_RDEF, /* XXX TBD */ 1353 "Invalid XCDB") }, 1354 /* DTLPWROMAEBKVF */ 1355 { SST(0x25, 0x00, SS_FATAL | ENXIO, 1356 "Logical unit not supported") }, 1357 /* DTLPWROMAEBKVF */ 1358 { SST(0x26, 0x00, SS_FATAL | EINVAL, 1359 "Invalid field in parameter list") }, 1360 /* DTLPWROMAEBKVF */ 1361 { SST(0x26, 0x01, SS_FATAL | EINVAL, 1362 "Parameter not supported") }, 1363 /* DTLPWROMAEBKVF */ 1364 { SST(0x26, 0x02, SS_FATAL | EINVAL, 1365 "Parameter value invalid") }, 1366 /* DTLPWROMAE K */ 1367 { SST(0x26, 0x03, SS_FATAL | EINVAL, 1368 "Threshold parameters not supported") }, 1369 /* DTLPWROMAEBKVF */ 1370 { SST(0x26, 0x04, SS_FATAL | EINVAL, 1371 "Invalid release of persistent reservation") }, 1372 /* DTLPWRO A BK */ 1373 { SST(0x26, 0x05, SS_RDEF, /* XXX TBD */ 1374 "Data decryption error") }, 1375 /* DTLPWRO K */ 1376 { SST(0x26, 0x06, SS_RDEF, /* XXX TBD */ 1377 "Too many target descriptors") }, 1378 /* DTLPWRO K */ 1379 { SST(0x26, 0x07, SS_RDEF, /* XXX TBD */ 1380 "Unsupported target descriptor type code") }, 1381 /* DTLPWRO K */ 1382 { SST(0x26, 0x08, SS_RDEF, /* XXX TBD */ 1383 "Too many segment descriptors") }, 1384 /* DTLPWRO K */ 1385 { SST(0x26, 0x09, SS_RDEF, /* XXX TBD */ 1386 "Unsupported segment descriptor type code") }, 1387 /* DTLPWRO K */ 1388 { SST(0x26, 0x0A, SS_RDEF, /* XXX TBD */ 1389 "Unexpected inexact segment") }, 1390 /* DTLPWRO K */ 1391 { SST(0x26, 0x0B, SS_RDEF, /* XXX TBD */ 1392 "Inline data length exceeded") }, 1393 /* DTLPWRO K */ 1394 { SST(0x26, 0x0C, SS_RDEF, /* XXX TBD */ 1395 "Invalid operation for copy source or destination") }, 1396 /* DTLPWRO K */ 1397 { SST(0x26, 0x0D, SS_RDEF, /* XXX TBD */ 1398 "Copy segment granularity violation") }, 1399 /* DT PWROMAEBK */ 1400 { SST(0x26, 0x0E, SS_RDEF, /* XXX TBD */ 1401 "Invalid parameter while port is enabled") }, 1402 /* F */ 1403 { SST(0x26, 0x0F, SS_RDEF, /* XXX TBD */ 1404 "Invalid data-out buffer integrity check value") }, 1405 /* T */ 1406 { SST(0x26, 0x10, SS_RDEF, /* XXX TBD */ 1407 "Data decryption key fail limit reached") }, 1408 /* T */ 1409 { SST(0x26, 0x11, SS_RDEF, /* XXX TBD */ 1410 "Incomplete key-associated data set") }, 1411 /* T */ 1412 { SST(0x26, 0x12, SS_RDEF, /* XXX TBD */ 1413 "Vendor specific key reference not found") }, 1414 /* DT WRO BK */ 1415 { SST(0x27, 0x00, SS_FATAL | EACCES, 1416 "Write protected") }, 1417 /* DT WRO BK */ 1418 { SST(0x27, 0x01, SS_FATAL | EACCES, 1419 "Hardware write protected") }, 1420 /* DT WRO BK */ 1421 { SST(0x27, 0x02, SS_FATAL | EACCES, 1422 "Logical unit software write protected") }, 1423 /* T R */ 1424 { SST(0x27, 0x03, SS_FATAL | EACCES, 1425 "Associated write protect") }, 1426 /* T R */ 1427 { SST(0x27, 0x04, SS_FATAL | EACCES, 1428 "Persistent write protect") }, 1429 /* T R */ 1430 { SST(0x27, 0x05, SS_FATAL | EACCES, 1431 "Permanent write protect") }, 1432 /* R F */ 1433 { SST(0x27, 0x06, SS_RDEF, /* XXX TBD */ 1434 "Conditional write protect") }, 1435 /* DTLPWROMAEBKVF */ 1436 { SST(0x28, 0x00, SS_FATAL | ENXIO, 1437 "Not ready to ready change, medium may have changed") }, 1438 /* DT WROM B */ 1439 { SST(0x28, 0x01, SS_FATAL | ENXIO, 1440 "Import or export element accessed") }, 1441 /* R */ 1442 { SST(0x28, 0x02, SS_RDEF, /* XXX TBD */ 1443 "Format-layer may have changed") }, 1444 /* M */ 1445 { SST(0x28, 0x03, SS_RDEF, /* XXX TBD */ 1446 "Import/export element accessed, medium changed") }, 1447 /* 1448 * XXX JGibbs - All of these should use the same errno, but I don't 1449 * think ENXIO is the correct choice. Should we borrow from 1450 * the networking errnos? ECONNRESET anyone? 1451 */ 1452 /* DTLPWROMAEBKVF */ 1453 { SST(0x29, 0x00, SS_FATAL | ENXIO, 1454 "Power on, reset, or bus device reset occurred") }, 1455 /* DTLPWROMAEBKVF */ 1456 { SST(0x29, 0x01, SS_RDEF, 1457 "Power on occurred") }, 1458 /* DTLPWROMAEBKVF */ 1459 { SST(0x29, 0x02, SS_RDEF, 1460 "SCSI bus reset occurred") }, 1461 /* DTLPWROMAEBKVF */ 1462 { SST(0x29, 0x03, SS_RDEF, 1463 "Bus device reset function occurred") }, 1464 /* DTLPWROMAEBKVF */ 1465 { SST(0x29, 0x04, SS_RDEF, 1466 "Device internal reset") }, 1467 /* DTLPWROMAEBKVF */ 1468 { SST(0x29, 0x05, SS_RDEF, 1469 "Transceiver mode changed to single-ended") }, 1470 /* DTLPWROMAEBKVF */ 1471 { SST(0x29, 0x06, SS_RDEF, 1472 "Transceiver mode changed to LVD") }, 1473 /* DTLPWROMAEBKVF */ 1474 { SST(0x29, 0x07, SS_RDEF, /* XXX TBD */ 1475 "I_T nexus loss occurred") }, 1476 /* DTL WROMAEBKVF */ 1477 { SST(0x2A, 0x00, SS_RDEF, 1478 "Parameters changed") }, 1479 /* DTL WROMAEBKVF */ 1480 { SST(0x2A, 0x01, SS_RDEF, 1481 "Mode parameters changed") }, 1482 /* DTL WROMAE K */ 1483 { SST(0x2A, 0x02, SS_RDEF, 1484 "Log parameters changed") }, 1485 /* DTLPWROMAE K */ 1486 { SST(0x2A, 0x03, SS_RDEF, 1487 "Reservations preempted") }, 1488 /* DTLPWROMAE */ 1489 { SST(0x2A, 0x04, SS_RDEF, /* XXX TBD */ 1490 "Reservations released") }, 1491 /* DTLPWROMAE */ 1492 { SST(0x2A, 0x05, SS_RDEF, /* XXX TBD */ 1493 "Registrations preempted") }, 1494 /* DTLPWROMAEBKVF */ 1495 { SST(0x2A, 0x06, SS_RDEF, /* XXX TBD */ 1496 "Asymmetric access state changed") }, 1497 /* DTLPWROMAEBKVF */ 1498 { SST(0x2A, 0x07, SS_RDEF, /* XXX TBD */ 1499 "Implicit asymmetric access state transition failed") }, 1500 /* DT WROMAEBKVF */ 1501 { SST(0x2A, 0x08, SS_RDEF, /* XXX TBD */ 1502 "Priority changed") }, 1503 /* D */ 1504 { SST(0x2A, 0x09, SS_RDEF, /* XXX TBD */ 1505 "Capacity data has changed") }, 1506 /* DT */ 1507 { SST(0x2A, 0x0A, SS_RDEF, /* XXX TBD */ 1508 "Error history I_T nexus cleared") }, 1509 /* DT */ 1510 { SST(0x2A, 0x0B, SS_RDEF, /* XXX TBD */ 1511 "Error history snapshot released") }, 1512 /* F */ 1513 { SST(0x2A, 0x0C, SS_RDEF, /* XXX TBD */ 1514 "Error recovery attributes have changed") }, 1515 /* T */ 1516 { SST(0x2A, 0x0D, SS_RDEF, /* XXX TBD */ 1517 "Data encryption capabilities changed") }, 1518 /* DT M E V */ 1519 { SST(0x2A, 0x10, SS_RDEF, /* XXX TBD */ 1520 "Timestamp changed") }, 1521 /* T */ 1522 { SST(0x2A, 0x11, SS_RDEF, /* XXX TBD */ 1523 "Data encryption parameters changed by another I_T nexus") }, 1524 /* T */ 1525 { SST(0x2A, 0x12, SS_RDEF, /* XXX TBD */ 1526 "Data encryption parameters changed by vendor specific event") }, 1527 /* T */ 1528 { SST(0x2A, 0x13, SS_RDEF, /* XXX TBD */ 1529 "Data encryption key instance counter has changed") }, 1530 /* DT R MAEBKV */ 1531 { SST(0x2A, 0x14, SS_RDEF, /* XXX TBD */ 1532 "SA creation capabilities data has changed") }, 1533 /* DTLPWRO K */ 1534 { SST(0x2B, 0x00, SS_RDEF, 1535 "Copy cannot execute since host cannot disconnect") }, 1536 /* DTLPWROMAEBKVF */ 1537 { SST(0x2C, 0x00, SS_RDEF, 1538 "Command sequence error") }, 1539 /* */ 1540 { SST(0x2C, 0x01, SS_RDEF, 1541 "Too many windows specified") }, 1542 /* */ 1543 { SST(0x2C, 0x02, SS_RDEF, 1544 "Invalid combination of windows specified") }, 1545 /* R */ 1546 { SST(0x2C, 0x03, SS_RDEF, 1547 "Current program area is not empty") }, 1548 /* R */ 1549 { SST(0x2C, 0x04, SS_RDEF, 1550 "Current program area is empty") }, 1551 /* B */ 1552 { SST(0x2C, 0x05, SS_RDEF, /* XXX TBD */ 1553 "Illegal power condition request") }, 1554 /* R */ 1555 { SST(0x2C, 0x06, SS_RDEF, /* XXX TBD */ 1556 "Persistent prevent conflict") }, 1557 /* DTLPWROMAEBKVF */ 1558 { SST(0x2C, 0x07, SS_RDEF, /* XXX TBD */ 1559 "Previous busy status") }, 1560 /* DTLPWROMAEBKVF */ 1561 { SST(0x2C, 0x08, SS_RDEF, /* XXX TBD */ 1562 "Previous task set full status") }, 1563 /* DTLPWROM EBKVF */ 1564 { SST(0x2C, 0x09, SS_RDEF, /* XXX TBD */ 1565 "Previous reservation conflict status") }, 1566 /* F */ 1567 { SST(0x2C, 0x0A, SS_RDEF, /* XXX TBD */ 1568 "Partition or collection contains user objects") }, 1569 /* T */ 1570 { SST(0x2C, 0x0B, SS_RDEF, /* XXX TBD */ 1571 "Not reserved") }, 1572 /* T */ 1573 { SST(0x2D, 0x00, SS_RDEF, 1574 "Overwrite error on update in place") }, 1575 /* R */ 1576 { SST(0x2E, 0x00, SS_RDEF, /* XXX TBD */ 1577 "Insufficient time for operation") }, 1578 /* DTLPWROMAEBKVF */ 1579 { SST(0x2F, 0x00, SS_RDEF, 1580 "Commands cleared by another initiator") }, 1581 /* D */ 1582 { SST(0x2F, 0x01, SS_RDEF, /* XXX TBD */ 1583 "Commands cleared by power loss notification") }, 1584 /* DTLPWROMAEBKVF */ 1585 { SST(0x2F, 0x02, SS_RDEF, /* XXX TBD */ 1586 "Commands cleared by device server") }, 1587 /* DT WROM BK */ 1588 { SST(0x30, 0x00, SS_RDEF, 1589 "Incompatible medium installed") }, 1590 /* DT WRO BK */ 1591 { SST(0x30, 0x01, SS_RDEF, 1592 "Cannot read medium - unknown format") }, 1593 /* DT WRO BK */ 1594 { SST(0x30, 0x02, SS_RDEF, 1595 "Cannot read medium - incompatible format") }, 1596 /* DT R K */ 1597 { SST(0x30, 0x03, SS_RDEF, 1598 "Cleaning cartridge installed") }, 1599 /* DT WRO BK */ 1600 { SST(0x30, 0x04, SS_RDEF, 1601 "Cannot write medium - unknown format") }, 1602 /* DT WRO BK */ 1603 { SST(0x30, 0x05, SS_RDEF, 1604 "Cannot write medium - incompatible format") }, 1605 /* DT WRO B */ 1606 { SST(0x30, 0x06, SS_RDEF, 1607 "Cannot format medium - incompatible medium") }, 1608 /* DTL WROMAEBKVF */ 1609 { SST(0x30, 0x07, SS_RDEF, 1610 "Cleaning failure") }, 1611 /* R */ 1612 { SST(0x30, 0x08, SS_RDEF, 1613 "Cannot write - application code mismatch") }, 1614 /* R */ 1615 { SST(0x30, 0x09, SS_RDEF, 1616 "Current session not fixated for append") }, 1617 /* DT WRO AEBK */ 1618 { SST(0x30, 0x0A, SS_RDEF, /* XXX TBD */ 1619 "Cleaning request rejected") }, 1620 /* T */ 1621 { SST(0x30, 0x0C, SS_RDEF, /* XXX TBD */ 1622 "WORM medium - overwrite attempted") }, 1623 /* T */ 1624 { SST(0x30, 0x0D, SS_RDEF, /* XXX TBD */ 1625 "WORM medium - integrity check") }, 1626 /* R */ 1627 { SST(0x30, 0x10, SS_RDEF, /* XXX TBD */ 1628 "Medium not formatted") }, 1629 /* M */ 1630 { SST(0x30, 0x11, SS_RDEF, /* XXX TBD */ 1631 "Incompatible volume type") }, 1632 /* M */ 1633 { SST(0x30, 0x12, SS_RDEF, /* XXX TBD */ 1634 "Incompatible volume qualifier") }, 1635 /* DT WRO BK */ 1636 { SST(0x31, 0x00, SS_RDEF, 1637 "Medium format corrupted") }, 1638 /* D L RO B */ 1639 { SST(0x31, 0x01, SS_RDEF, 1640 "Format command failed") }, 1641 /* R */ 1642 { SST(0x31, 0x02, SS_RDEF, /* XXX TBD */ 1643 "Zoned formatting failed due to spare linking") }, 1644 /* D W O BK */ 1645 { SST(0x32, 0x00, SS_RDEF, 1646 "No defect spare location available") }, 1647 /* D W O BK */ 1648 { SST(0x32, 0x01, SS_RDEF, 1649 "Defect list update failure") }, 1650 /* T */ 1651 { SST(0x33, 0x00, SS_RDEF, 1652 "Tape length error") }, 1653 /* DTLPWROMAEBKVF */ 1654 { SST(0x34, 0x00, SS_RDEF, 1655 "Enclosure failure") }, 1656 /* DTLPWROMAEBKVF */ 1657 { SST(0x35, 0x00, SS_RDEF, 1658 "Enclosure services failure") }, 1659 /* DTLPWROMAEBKVF */ 1660 { SST(0x35, 0x01, SS_RDEF, 1661 "Unsupported enclosure function") }, 1662 /* DTLPWROMAEBKVF */ 1663 { SST(0x35, 0x02, SS_RDEF, 1664 "Enclosure services unavailable") }, 1665 /* DTLPWROMAEBKVF */ 1666 { SST(0x35, 0x03, SS_RDEF, 1667 "Enclosure services transfer failure") }, 1668 /* DTLPWROMAEBKVF */ 1669 { SST(0x35, 0x04, SS_RDEF, 1670 "Enclosure services transfer refused") }, 1671 /* DTL WROMAEBKVF */ 1672 { SST(0x35, 0x05, SS_RDEF, /* XXX TBD */ 1673 "Enclosure services checksum error") }, 1674 /* L */ 1675 { SST(0x36, 0x00, SS_RDEF, 1676 "Ribbon, ink, or toner failure") }, 1677 /* DTL WROMAEBKVF */ 1678 { SST(0x37, 0x00, SS_RDEF, 1679 "Rounded parameter") }, 1680 /* B */ 1681 { SST(0x38, 0x00, SS_RDEF, /* XXX TBD */ 1682 "Event status notification") }, 1683 /* B */ 1684 { SST(0x38, 0x02, SS_RDEF, /* XXX TBD */ 1685 "ESN - power management class event") }, 1686 /* B */ 1687 { SST(0x38, 0x04, SS_RDEF, /* XXX TBD */ 1688 "ESN - media class event") }, 1689 /* B */ 1690 { SST(0x38, 0x06, SS_RDEF, /* XXX TBD */ 1691 "ESN - device busy class event") }, 1692 /* DTL WROMAE K */ 1693 { SST(0x39, 0x00, SS_RDEF, 1694 "Saving parameters not supported") }, 1695 /* DTL WROM BK */ 1696 { SST(0x3A, 0x00, SS_FATAL | ENXIO, 1697 "Medium not present") }, 1698 /* DT WROM BK */ 1699 { SST(0x3A, 0x01, SS_FATAL | ENXIO, 1700 "Medium not present - tray closed") }, 1701 /* DT WROM BK */ 1702 { SST(0x3A, 0x02, SS_FATAL | ENXIO, 1703 "Medium not present - tray open") }, 1704 /* DT WROM B */ 1705 { SST(0x3A, 0x03, SS_RDEF, /* XXX TBD */ 1706 "Medium not present - loadable") }, 1707 /* DT WRO B */ 1708 { SST(0x3A, 0x04, SS_RDEF, /* XXX TBD */ 1709 "Medium not present - medium auxiliary memory accessible") }, 1710 /* TL */ 1711 { SST(0x3B, 0x00, SS_RDEF, 1712 "Sequential positioning error") }, 1713 /* T */ 1714 { SST(0x3B, 0x01, SS_RDEF, 1715 "Tape position error at beginning-of-medium") }, 1716 /* T */ 1717 { SST(0x3B, 0x02, SS_RDEF, 1718 "Tape position error at end-of-medium") }, 1719 /* L */ 1720 { SST(0x3B, 0x03, SS_RDEF, 1721 "Tape or electronic vertical forms unit not ready") }, 1722 /* L */ 1723 { SST(0x3B, 0x04, SS_RDEF, 1724 "Slew failure") }, 1725 /* L */ 1726 { SST(0x3B, 0x05, SS_RDEF, 1727 "Paper jam") }, 1728 /* L */ 1729 { SST(0x3B, 0x06, SS_RDEF, 1730 "Failed to sense top-of-form") }, 1731 /* L */ 1732 { SST(0x3B, 0x07, SS_RDEF, 1733 "Failed to sense bottom-of-form") }, 1734 /* T */ 1735 { SST(0x3B, 0x08, SS_RDEF, 1736 "Reposition error") }, 1737 /* */ 1738 { SST(0x3B, 0x09, SS_RDEF, 1739 "Read past end of medium") }, 1740 /* */ 1741 { SST(0x3B, 0x0A, SS_RDEF, 1742 "Read past beginning of medium") }, 1743 /* */ 1744 { SST(0x3B, 0x0B, SS_RDEF, 1745 "Position past end of medium") }, 1746 /* T */ 1747 { SST(0x3B, 0x0C, SS_RDEF, 1748 "Position past beginning of medium") }, 1749 /* DT WROM BK */ 1750 { SST(0x3B, 0x0D, SS_FATAL | ENOSPC, 1751 "Medium destination element full") }, 1752 /* DT WROM BK */ 1753 { SST(0x3B, 0x0E, SS_RDEF, 1754 "Medium source element empty") }, 1755 /* R */ 1756 { SST(0x3B, 0x0F, SS_RDEF, 1757 "End of medium reached") }, 1758 /* DT WROM BK */ 1759 { SST(0x3B, 0x11, SS_RDEF, 1760 "Medium magazine not accessible") }, 1761 /* DT WROM BK */ 1762 { SST(0x3B, 0x12, SS_RDEF, 1763 "Medium magazine removed") }, 1764 /* DT WROM BK */ 1765 { SST(0x3B, 0x13, SS_RDEF, 1766 "Medium magazine inserted") }, 1767 /* DT WROM BK */ 1768 { SST(0x3B, 0x14, SS_RDEF, 1769 "Medium magazine locked") }, 1770 /* DT WROM BK */ 1771 { SST(0x3B, 0x15, SS_RDEF, 1772 "Medium magazine unlocked") }, 1773 /* R */ 1774 { SST(0x3B, 0x16, SS_RDEF, /* XXX TBD */ 1775 "Mechanical positioning or changer error") }, 1776 /* F */ 1777 { SST(0x3B, 0x17, SS_RDEF, /* XXX TBD */ 1778 "Read past end of user object") }, 1779 /* M */ 1780 { SST(0x3B, 0x18, SS_RDEF, /* XXX TBD */ 1781 "Element disabled") }, 1782 /* M */ 1783 { SST(0x3B, 0x19, SS_RDEF, /* XXX TBD */ 1784 "Element enabled") }, 1785 /* M */ 1786 { SST(0x3B, 0x1A, SS_RDEF, /* XXX TBD */ 1787 "Data transfer device removed") }, 1788 /* M */ 1789 { SST(0x3B, 0x1B, SS_RDEF, /* XXX TBD */ 1790 "Data transfer device inserted") }, 1791 /* DTLPWROMAE K */ 1792 { SST(0x3D, 0x00, SS_RDEF, 1793 "Invalid bits in IDENTIFY message") }, 1794 /* DTLPWROMAEBKVF */ 1795 { SST(0x3E, 0x00, SS_RDEF, 1796 "Logical unit has not self-configured yet") }, 1797 /* DTLPWROMAEBKVF */ 1798 { SST(0x3E, 0x01, SS_RDEF, 1799 "Logical unit failure") }, 1800 /* DTLPWROMAEBKVF */ 1801 { SST(0x3E, 0x02, SS_RDEF, 1802 "Timeout on logical unit") }, 1803 /* DTLPWROMAEBKVF */ 1804 { SST(0x3E, 0x03, SS_RDEF, /* XXX TBD */ 1805 "Logical unit failed self-test") }, 1806 /* DTLPWROMAEBKVF */ 1807 { SST(0x3E, 0x04, SS_RDEF, /* XXX TBD */ 1808 "Logical unit unable to update self-test log") }, 1809 /* DTLPWROMAEBKVF */ 1810 { SST(0x3F, 0x00, SS_RDEF, 1811 "Target operating conditions have changed") }, 1812 /* DTLPWROMAEBKVF */ 1813 { SST(0x3F, 0x01, SS_RDEF, 1814 "Microcode has been changed") }, 1815 /* DTLPWROM BK */ 1816 { SST(0x3F, 0x02, SS_RDEF, 1817 "Changed operating definition") }, 1818 /* DTLPWROMAEBKVF */ 1819 { SST(0x3F, 0x03, SS_RDEF, 1820 "INQUIRY data has changed") }, 1821 /* DT WROMAEBK */ 1822 { SST(0x3F, 0x04, SS_RDEF, 1823 "Component device attached") }, 1824 /* DT WROMAEBK */ 1825 { SST(0x3F, 0x05, SS_RDEF, 1826 "Device identifier changed") }, 1827 /* DT WROMAEB */ 1828 { SST(0x3F, 0x06, SS_RDEF, 1829 "Redundancy group created or modified") }, 1830 /* DT WROMAEB */ 1831 { SST(0x3F, 0x07, SS_RDEF, 1832 "Redundancy group deleted") }, 1833 /* DT WROMAEB */ 1834 { SST(0x3F, 0x08, SS_RDEF, 1835 "Spare created or modified") }, 1836 /* DT WROMAEB */ 1837 { SST(0x3F, 0x09, SS_RDEF, 1838 "Spare deleted") }, 1839 /* DT WROMAEBK */ 1840 { SST(0x3F, 0x0A, SS_RDEF, 1841 "Volume set created or modified") }, 1842 /* DT WROMAEBK */ 1843 { SST(0x3F, 0x0B, SS_RDEF, 1844 "Volume set deleted") }, 1845 /* DT WROMAEBK */ 1846 { SST(0x3F, 0x0C, SS_RDEF, 1847 "Volume set deassigned") }, 1848 /* DT WROMAEBK */ 1849 { SST(0x3F, 0x0D, SS_RDEF, 1850 "Volume set reassigned") }, 1851 /* DTLPWROMAE */ 1852 { SST(0x3F, 0x0E, SS_RDEF, /* XXX TBD */ 1853 "Reported LUNs data has changed") }, 1854 /* DTLPWROMAEBKVF */ 1855 { SST(0x3F, 0x0F, SS_RDEF, /* XXX TBD */ 1856 "Echo buffer overwritten") }, 1857 /* DT WROM B */ 1858 { SST(0x3F, 0x10, SS_RDEF, /* XXX TBD */ 1859 "Medium loadable") }, 1860 /* DT WROM B */ 1861 { SST(0x3F, 0x11, SS_RDEF, /* XXX TBD */ 1862 "Medium auxiliary memory accessible") }, 1863 /* DTLPWR MAEBK F */ 1864 { SST(0x3F, 0x12, SS_RDEF, /* XXX TBD */ 1865 "iSCSI IP address added") }, 1866 /* DTLPWR MAEBK F */ 1867 { SST(0x3F, 0x13, SS_RDEF, /* XXX TBD */ 1868 "iSCSI IP address removed") }, 1869 /* DTLPWR MAEBK F */ 1870 { SST(0x3F, 0x14, SS_RDEF, /* XXX TBD */ 1871 "iSCSI IP address changed") }, 1872 /* D */ 1873 { SST(0x40, 0x00, SS_RDEF, 1874 "RAM failure") }, /* deprecated - use 40 NN instead */ 1875 /* DTLPWROMAEBKVF */ 1876 { SST(0x40, 0x80, SS_RDEF, 1877 "Diagnostic failure: ASCQ = Component ID") }, 1878 /* DTLPWROMAEBKVF */ 1879 { SST(0x40, 0xFF, SS_RDEF | SSQ_RANGE, 1880 NULL) }, /* Range 0x80->0xFF */ 1881 /* D */ 1882 { SST(0x41, 0x00, SS_RDEF, 1883 "Data path failure") }, /* deprecated - use 40 NN instead */ 1884 /* D */ 1885 { SST(0x42, 0x00, SS_RDEF, 1886 "Power-on or self-test failure") }, 1887 /* deprecated - use 40 NN instead */ 1888 /* DTLPWROMAEBKVF */ 1889 { SST(0x43, 0x00, SS_RDEF, 1890 "Message error") }, 1891 /* DTLPWROMAEBKVF */ 1892 { SST(0x44, 0x00, SS_RDEF, 1893 "Internal target failure") }, 1894 /* DT B */ 1895 { SST(0x44, 0x71, SS_RDEF, /* XXX TBD */ 1896 "ATA device failed set features") }, 1897 /* DTLPWROMAEBKVF */ 1898 { SST(0x45, 0x00, SS_RDEF, 1899 "Select or reselect failure") }, 1900 /* DTLPWROM BK */ 1901 { SST(0x46, 0x00, SS_RDEF, 1902 "Unsuccessful soft reset") }, 1903 /* DTLPWROMAEBKVF */ 1904 { SST(0x47, 0x00, SS_RDEF, 1905 "SCSI parity error") }, 1906 /* DTLPWROMAEBKVF */ 1907 { SST(0x47, 0x01, SS_RDEF, /* XXX TBD */ 1908 "Data phase CRC error detected") }, 1909 /* DTLPWROMAEBKVF */ 1910 { SST(0x47, 0x02, SS_RDEF, /* XXX TBD */ 1911 "SCSI parity error detected during ST data phase") }, 1912 /* DTLPWROMAEBKVF */ 1913 { SST(0x47, 0x03, SS_RDEF, /* XXX TBD */ 1914 "Information unit iuCRC error detected") }, 1915 /* DTLPWROMAEBKVF */ 1916 { SST(0x47, 0x04, SS_RDEF, /* XXX TBD */ 1917 "Asynchronous information protection error detected") }, 1918 /* DTLPWROMAEBKVF */ 1919 { SST(0x47, 0x05, SS_RDEF, /* XXX TBD */ 1920 "Protocol service CRC error") }, 1921 /* DT MAEBKVF */ 1922 { SST(0x47, 0x06, SS_RDEF, /* XXX TBD */ 1923 "PHY test function in progress") }, 1924 /* DT PWROMAEBK */ 1925 { SST(0x47, 0x7F, SS_RDEF, /* XXX TBD */ 1926 "Some commands cleared by iSCSI protocol event") }, 1927 /* DTLPWROMAEBKVF */ 1928 { SST(0x48, 0x00, SS_RDEF, 1929 "Initiator detected error message received") }, 1930 /* DTLPWROMAEBKVF */ 1931 { SST(0x49, 0x00, SS_RDEF, 1932 "Invalid message error") }, 1933 /* DTLPWROMAEBKVF */ 1934 { SST(0x4A, 0x00, SS_RDEF, 1935 "Command phase error") }, 1936 /* DTLPWROMAEBKVF */ 1937 { SST(0x4B, 0x00, SS_RDEF, 1938 "Data phase error") }, 1939 /* DT PWROMAEBK */ 1940 { SST(0x4B, 0x01, SS_RDEF, /* XXX TBD */ 1941 "Invalid target port transfer tag received") }, 1942 /* DT PWROMAEBK */ 1943 { SST(0x4B, 0x02, SS_RDEF, /* XXX TBD */ 1944 "Too much write data") }, 1945 /* DT PWROMAEBK */ 1946 { SST(0x4B, 0x03, SS_RDEF, /* XXX TBD */ 1947 "ACK/NAK timeout") }, 1948 /* DT PWROMAEBK */ 1949 { SST(0x4B, 0x04, SS_RDEF, /* XXX TBD */ 1950 "NAK received") }, 1951 /* DT PWROMAEBK */ 1952 { SST(0x4B, 0x05, SS_RDEF, /* XXX TBD */ 1953 "Data offset error") }, 1954 /* DT PWROMAEBK */ 1955 { SST(0x4B, 0x06, SS_RDEF, /* XXX TBD */ 1956 "Initiator response timeout") }, 1957 /* DTLPWROMAEBKVF */ 1958 { SST(0x4C, 0x00, SS_RDEF, 1959 "Logical unit failed self-configuration") }, 1960 /* DTLPWROMAEBKVF */ 1961 { SST(0x4D, 0x00, SS_RDEF, 1962 "Tagged overlapped commands: ASCQ = Queue tag ID") }, 1963 /* DTLPWROMAEBKVF */ 1964 { SST(0x4D, 0xFF, SS_RDEF | SSQ_RANGE, 1965 NULL) }, /* Range 0x00->0xFF */ 1966 /* DTLPWROMAEBKVF */ 1967 { SST(0x4E, 0x00, SS_RDEF, 1968 "Overlapped commands attempted") }, 1969 /* T */ 1970 { SST(0x50, 0x00, SS_RDEF, 1971 "Write append error") }, 1972 /* T */ 1973 { SST(0x50, 0x01, SS_RDEF, 1974 "Write append position error") }, 1975 /* T */ 1976 { SST(0x50, 0x02, SS_RDEF, 1977 "Position error related to timing") }, 1978 /* T RO */ 1979 { SST(0x51, 0x00, SS_RDEF, 1980 "Erase failure") }, 1981 /* R */ 1982 { SST(0x51, 0x01, SS_RDEF, /* XXX TBD */ 1983 "Erase failure - incomplete erase operation detected") }, 1984 /* T */ 1985 { SST(0x52, 0x00, SS_RDEF, 1986 "Cartridge fault") }, 1987 /* DTL WROM BK */ 1988 { SST(0x53, 0x00, SS_RDEF, 1989 "Media load or eject failed") }, 1990 /* T */ 1991 { SST(0x53, 0x01, SS_RDEF, 1992 "Unload tape failure") }, 1993 /* DT WROM BK */ 1994 { SST(0x53, 0x02, SS_RDEF, 1995 "Medium removal prevented") }, 1996 /* M */ 1997 { SST(0x53, 0x03, SS_RDEF, /* XXX TBD */ 1998 "Medium removal prevented by data transfer element") }, 1999 /* T */ 2000 { SST(0x53, 0x04, SS_RDEF, /* XXX TBD */ 2001 "Medium thread or unthread failure") }, 2002 /* P */ 2003 { SST(0x54, 0x00, SS_RDEF, 2004 "SCSI to host system interface failure") }, 2005 /* P */ 2006 { SST(0x55, 0x00, SS_RDEF, 2007 "System resource failure") }, 2008 /* D O BK */ 2009 { SST(0x55, 0x01, SS_FATAL | ENOSPC, 2010 "System buffer full") }, 2011 /* DTLPWROMAE K */ 2012 { SST(0x55, 0x02, SS_RDEF, /* XXX TBD */ 2013 "Insufficient reservation resources") }, 2014 /* DTLPWROMAE K */ 2015 { SST(0x55, 0x03, SS_RDEF, /* XXX TBD */ 2016 "Insufficient resources") }, 2017 /* DTLPWROMAE K */ 2018 { SST(0x55, 0x04, SS_RDEF, /* XXX TBD */ 2019 "Insufficient registration resources") }, 2020 /* DT PWROMAEBK */ 2021 { SST(0x55, 0x05, SS_RDEF, /* XXX TBD */ 2022 "Insufficient access control resources") }, 2023 /* DT WROM B */ 2024 { SST(0x55, 0x06, SS_RDEF, /* XXX TBD */ 2025 "Auxiliary memory out of space") }, 2026 /* F */ 2027 { SST(0x55, 0x07, SS_RDEF, /* XXX TBD */ 2028 "Quota error") }, 2029 /* T */ 2030 { SST(0x55, 0x08, SS_RDEF, /* XXX TBD */ 2031 "Maximum number of supplemental decryption keys exceeded") }, 2032 /* M */ 2033 { SST(0x55, 0x09, SS_RDEF, /* XXX TBD */ 2034 "Medium auxiliary memory not accessible") }, 2035 /* M */ 2036 { SST(0x55, 0x0A, SS_RDEF, /* XXX TBD */ 2037 "Data currently unavailable") }, 2038 /* R */ 2039 { SST(0x57, 0x00, SS_RDEF, 2040 "Unable to recover table-of-contents") }, 2041 /* O */ 2042 { SST(0x58, 0x00, SS_RDEF, 2043 "Generation does not exist") }, 2044 /* O */ 2045 { SST(0x59, 0x00, SS_RDEF, 2046 "Updated block read") }, 2047 /* DTLPWRO BK */ 2048 { SST(0x5A, 0x00, SS_RDEF, 2049 "Operator request or state change input") }, 2050 /* DT WROM BK */ 2051 { SST(0x5A, 0x01, SS_RDEF, 2052 "Operator medium removal request") }, 2053 /* DT WRO A BK */ 2054 { SST(0x5A, 0x02, SS_RDEF, 2055 "Operator selected write protect") }, 2056 /* DT WRO A BK */ 2057 { SST(0x5A, 0x03, SS_RDEF, 2058 "Operator selected write permit") }, 2059 /* DTLPWROM K */ 2060 { SST(0x5B, 0x00, SS_RDEF, 2061 "Log exception") }, 2062 /* DTLPWROM K */ 2063 { SST(0x5B, 0x01, SS_RDEF, 2064 "Threshold condition met") }, 2065 /* DTLPWROM K */ 2066 { SST(0x5B, 0x02, SS_RDEF, 2067 "Log counter at maximum") }, 2068 /* DTLPWROM K */ 2069 { SST(0x5B, 0x03, SS_RDEF, 2070 "Log list codes exhausted") }, 2071 /* D O */ 2072 { SST(0x5C, 0x00, SS_RDEF, 2073 "RPL status change") }, 2074 /* D O */ 2075 { SST(0x5C, 0x01, SS_NOP | SSQ_PRINT_SENSE, 2076 "Spindles synchronized") }, 2077 /* D O */ 2078 { SST(0x5C, 0x02, SS_RDEF, 2079 "Spindles not synchronized") }, 2080 /* DTLPWROMAEBKVF */ 2081 { SST(0x5D, 0x00, SS_RDEF, 2082 "Failure prediction threshold exceeded") }, 2083 /* R B */ 2084 { SST(0x5D, 0x01, SS_RDEF, /* XXX TBD */ 2085 "Media failure prediction threshold exceeded") }, 2086 /* R */ 2087 { SST(0x5D, 0x02, SS_RDEF, /* XXX TBD */ 2088 "Logical unit failure prediction threshold exceeded") }, 2089 /* R */ 2090 { SST(0x5D, 0x03, SS_RDEF, /* XXX TBD */ 2091 "Spare area exhaustion prediction threshold exceeded") }, 2092 /* D B */ 2093 { SST(0x5D, 0x10, SS_RDEF, /* XXX TBD */ 2094 "Hardware impending failure general hard drive failure") }, 2095 /* D B */ 2096 { SST(0x5D, 0x11, SS_RDEF, /* XXX TBD */ 2097 "Hardware impending failure drive error rate too high") }, 2098 /* D B */ 2099 { SST(0x5D, 0x12, SS_RDEF, /* XXX TBD */ 2100 "Hardware impending failure data error rate too high") }, 2101 /* D B */ 2102 { SST(0x5D, 0x13, SS_RDEF, /* XXX TBD */ 2103 "Hardware impending failure seek error rate too high") }, 2104 /* D B */ 2105 { SST(0x5D, 0x14, SS_RDEF, /* XXX TBD */ 2106 "Hardware impending failure too many block reassigns") }, 2107 /* D B */ 2108 { SST(0x5D, 0x15, SS_RDEF, /* XXX TBD */ 2109 "Hardware impending failure access times too high") }, 2110 /* D B */ 2111 { SST(0x5D, 0x16, SS_RDEF, /* XXX TBD */ 2112 "Hardware impending failure start unit times too high") }, 2113 /* D B */ 2114 { SST(0x5D, 0x17, SS_RDEF, /* XXX TBD */ 2115 "Hardware impending failure channel parametrics") }, 2116 /* D B */ 2117 { SST(0x5D, 0x18, SS_RDEF, /* XXX TBD */ 2118 "Hardware impending failure controller detected") }, 2119 /* D B */ 2120 { SST(0x5D, 0x19, SS_RDEF, /* XXX TBD */ 2121 "Hardware impending failure throughput performance") }, 2122 /* D B */ 2123 { SST(0x5D, 0x1A, SS_RDEF, /* XXX TBD */ 2124 "Hardware impending failure seek time performance") }, 2125 /* D B */ 2126 { SST(0x5D, 0x1B, SS_RDEF, /* XXX TBD */ 2127 "Hardware impending failure spin-up retry count") }, 2128 /* D B */ 2129 { SST(0x5D, 0x1C, SS_RDEF, /* XXX TBD */ 2130 "Hardware impending failure drive calibration retry count") }, 2131 /* D B */ 2132 { SST(0x5D, 0x20, SS_RDEF, /* XXX TBD */ 2133 "Controller impending failure general hard drive failure") }, 2134 /* D B */ 2135 { SST(0x5D, 0x21, SS_RDEF, /* XXX TBD */ 2136 "Controller impending failure drive error rate too high") }, 2137 /* D B */ 2138 { SST(0x5D, 0x22, SS_RDEF, /* XXX TBD */ 2139 "Controller impending failure data error rate too high") }, 2140 /* D B */ 2141 { SST(0x5D, 0x23, SS_RDEF, /* XXX TBD */ 2142 "Controller impending failure seek error rate too high") }, 2143 /* D B */ 2144 { SST(0x5D, 0x24, SS_RDEF, /* XXX TBD */ 2145 "Controller impending failure too many block reassigns") }, 2146 /* D B */ 2147 { SST(0x5D, 0x25, SS_RDEF, /* XXX TBD */ 2148 "Controller impending failure access times too high") }, 2149 /* D B */ 2150 { SST(0x5D, 0x26, SS_RDEF, /* XXX TBD */ 2151 "Controller impending failure start unit times too high") }, 2152 /* D B */ 2153 { SST(0x5D, 0x27, SS_RDEF, /* XXX TBD */ 2154 "Controller impending failure channel parametrics") }, 2155 /* D B */ 2156 { SST(0x5D, 0x28, SS_RDEF, /* XXX TBD */ 2157 "Controller impending failure controller detected") }, 2158 /* D B */ 2159 { SST(0x5D, 0x29, SS_RDEF, /* XXX TBD */ 2160 "Controller impending failure throughput performance") }, 2161 /* D B */ 2162 { SST(0x5D, 0x2A, SS_RDEF, /* XXX TBD */ 2163 "Controller impending failure seek time performance") }, 2164 /* D B */ 2165 { SST(0x5D, 0x2B, SS_RDEF, /* XXX TBD */ 2166 "Controller impending failure spin-up retry count") }, 2167 /* D B */ 2168 { SST(0x5D, 0x2C, SS_RDEF, /* XXX TBD */ 2169 "Controller impending failure drive calibration retry count") }, 2170 /* D B */ 2171 { SST(0x5D, 0x30, SS_RDEF, /* XXX TBD */ 2172 "Data channel impending failure general hard drive failure") }, 2173 /* D B */ 2174 { SST(0x5D, 0x31, SS_RDEF, /* XXX TBD */ 2175 "Data channel impending failure drive error rate too high") }, 2176 /* D B */ 2177 { SST(0x5D, 0x32, SS_RDEF, /* XXX TBD */ 2178 "Data channel impending failure data error rate too high") }, 2179 /* D B */ 2180 { SST(0x5D, 0x33, SS_RDEF, /* XXX TBD */ 2181 "Data channel impending failure seek error rate too high") }, 2182 /* D B */ 2183 { SST(0x5D, 0x34, SS_RDEF, /* XXX TBD */ 2184 "Data channel impending failure too many block reassigns") }, 2185 /* D B */ 2186 { SST(0x5D, 0x35, SS_RDEF, /* XXX TBD */ 2187 "Data channel impending failure access times too high") }, 2188 /* D B */ 2189 { SST(0x5D, 0x36, SS_RDEF, /* XXX TBD */ 2190 "Data channel impending failure start unit times too high") }, 2191 /* D B */ 2192 { SST(0x5D, 0x37, SS_RDEF, /* XXX TBD */ 2193 "Data channel impending failure channel parametrics") }, 2194 /* D B */ 2195 { SST(0x5D, 0x38, SS_RDEF, /* XXX TBD */ 2196 "Data channel impending failure controller detected") }, 2197 /* D B */ 2198 { SST(0x5D, 0x39, SS_RDEF, /* XXX TBD */ 2199 "Data channel impending failure throughput performance") }, 2200 /* D B */ 2201 { SST(0x5D, 0x3A, SS_RDEF, /* XXX TBD */ 2202 "Data channel impending failure seek time performance") }, 2203 /* D B */ 2204 { SST(0x5D, 0x3B, SS_RDEF, /* XXX TBD */ 2205 "Data channel impending failure spin-up retry count") }, 2206 /* D B */ 2207 { SST(0x5D, 0x3C, SS_RDEF, /* XXX TBD */ 2208 "Data channel impending failure drive calibration retry count") }, 2209 /* D B */ 2210 { SST(0x5D, 0x40, SS_RDEF, /* XXX TBD */ 2211 "Servo impending failure general hard drive failure") }, 2212 /* D B */ 2213 { SST(0x5D, 0x41, SS_RDEF, /* XXX TBD */ 2214 "Servo impending failure drive error rate too high") }, 2215 /* D B */ 2216 { SST(0x5D, 0x42, SS_RDEF, /* XXX TBD */ 2217 "Servo impending failure data error rate too high") }, 2218 /* D B */ 2219 { SST(0x5D, 0x43, SS_RDEF, /* XXX TBD */ 2220 "Servo impending failure seek error rate too high") }, 2221 /* D B */ 2222 { SST(0x5D, 0x44, SS_RDEF, /* XXX TBD */ 2223 "Servo impending failure too many block reassigns") }, 2224 /* D B */ 2225 { SST(0x5D, 0x45, SS_RDEF, /* XXX TBD */ 2226 "Servo impending failure access times too high") }, 2227 /* D B */ 2228 { SST(0x5D, 0x46, SS_RDEF, /* XXX TBD */ 2229 "Servo impending failure start unit times too high") }, 2230 /* D B */ 2231 { SST(0x5D, 0x47, SS_RDEF, /* XXX TBD */ 2232 "Servo impending failure channel parametrics") }, 2233 /* D B */ 2234 { SST(0x5D, 0x48, SS_RDEF, /* XXX TBD */ 2235 "Servo impending failure controller detected") }, 2236 /* D B */ 2237 { SST(0x5D, 0x49, SS_RDEF, /* XXX TBD */ 2238 "Servo impending failure throughput performance") }, 2239 /* D B */ 2240 { SST(0x5D, 0x4A, SS_RDEF, /* XXX TBD */ 2241 "Servo impending failure seek time performance") }, 2242 /* D B */ 2243 { SST(0x5D, 0x4B, SS_RDEF, /* XXX TBD */ 2244 "Servo impending failure spin-up retry count") }, 2245 /* D B */ 2246 { SST(0x5D, 0x4C, SS_RDEF, /* XXX TBD */ 2247 "Servo impending failure drive calibration retry count") }, 2248 /* D B */ 2249 { SST(0x5D, 0x50, SS_RDEF, /* XXX TBD */ 2250 "Spindle impending failure general hard drive failure") }, 2251 /* D B */ 2252 { SST(0x5D, 0x51, SS_RDEF, /* XXX TBD */ 2253 "Spindle impending failure drive error rate too high") }, 2254 /* D B */ 2255 { SST(0x5D, 0x52, SS_RDEF, /* XXX TBD */ 2256 "Spindle impending failure data error rate too high") }, 2257 /* D B */ 2258 { SST(0x5D, 0x53, SS_RDEF, /* XXX TBD */ 2259 "Spindle impending failure seek error rate too high") }, 2260 /* D B */ 2261 { SST(0x5D, 0x54, SS_RDEF, /* XXX TBD */ 2262 "Spindle impending failure too many block reassigns") }, 2263 /* D B */ 2264 { SST(0x5D, 0x55, SS_RDEF, /* XXX TBD */ 2265 "Spindle impending failure access times too high") }, 2266 /* D B */ 2267 { SST(0x5D, 0x56, SS_RDEF, /* XXX TBD */ 2268 "Spindle impending failure start unit times too high") }, 2269 /* D B */ 2270 { SST(0x5D, 0x57, SS_RDEF, /* XXX TBD */ 2271 "Spindle impending failure channel parametrics") }, 2272 /* D B */ 2273 { SST(0x5D, 0x58, SS_RDEF, /* XXX TBD */ 2274 "Spindle impending failure controller detected") }, 2275 /* D B */ 2276 { SST(0x5D, 0x59, SS_RDEF, /* XXX TBD */ 2277 "Spindle impending failure throughput performance") }, 2278 /* D B */ 2279 { SST(0x5D, 0x5A, SS_RDEF, /* XXX TBD */ 2280 "Spindle impending failure seek time performance") }, 2281 /* D B */ 2282 { SST(0x5D, 0x5B, SS_RDEF, /* XXX TBD */ 2283 "Spindle impending failure spin-up retry count") }, 2284 /* D B */ 2285 { SST(0x5D, 0x5C, SS_RDEF, /* XXX TBD */ 2286 "Spindle impending failure drive calibration retry count") }, 2287 /* D B */ 2288 { SST(0x5D, 0x60, SS_RDEF, /* XXX TBD */ 2289 "Firmware impending failure general hard drive failure") }, 2290 /* D B */ 2291 { SST(0x5D, 0x61, SS_RDEF, /* XXX TBD */ 2292 "Firmware impending failure drive error rate too high") }, 2293 /* D B */ 2294 { SST(0x5D, 0x62, SS_RDEF, /* XXX TBD */ 2295 "Firmware impending failure data error rate too high") }, 2296 /* D B */ 2297 { SST(0x5D, 0x63, SS_RDEF, /* XXX TBD */ 2298 "Firmware impending failure seek error rate too high") }, 2299 /* D B */ 2300 { SST(0x5D, 0x64, SS_RDEF, /* XXX TBD */ 2301 "Firmware impending failure too many block reassigns") }, 2302 /* D B */ 2303 { SST(0x5D, 0x65, SS_RDEF, /* XXX TBD */ 2304 "Firmware impending failure access times too high") }, 2305 /* D B */ 2306 { SST(0x5D, 0x66, SS_RDEF, /* XXX TBD */ 2307 "Firmware impending failure start unit times too high") }, 2308 /* D B */ 2309 { SST(0x5D, 0x67, SS_RDEF, /* XXX TBD */ 2310 "Firmware impending failure channel parametrics") }, 2311 /* D B */ 2312 { SST(0x5D, 0x68, SS_RDEF, /* XXX TBD */ 2313 "Firmware impending failure controller detected") }, 2314 /* D B */ 2315 { SST(0x5D, 0x69, SS_RDEF, /* XXX TBD */ 2316 "Firmware impending failure throughput performance") }, 2317 /* D B */ 2318 { SST(0x5D, 0x6A, SS_RDEF, /* XXX TBD */ 2319 "Firmware impending failure seek time performance") }, 2320 /* D B */ 2321 { SST(0x5D, 0x6B, SS_RDEF, /* XXX TBD */ 2322 "Firmware impending failure spin-up retry count") }, 2323 /* D B */ 2324 { SST(0x5D, 0x6C, SS_RDEF, /* XXX TBD */ 2325 "Firmware impending failure drive calibration retry count") }, 2326 /* DTLPWROMAEBKVF */ 2327 { SST(0x5D, 0xFF, SS_RDEF, 2328 "Failure prediction threshold exceeded (false)") }, 2329 /* DTLPWRO A K */ 2330 { SST(0x5E, 0x00, SS_RDEF, 2331 "Low power condition on") }, 2332 /* DTLPWRO A K */ 2333 { SST(0x5E, 0x01, SS_RDEF, 2334 "Idle condition activated by timer") }, 2335 /* DTLPWRO A K */ 2336 { SST(0x5E, 0x02, SS_RDEF, 2337 "Standby condition activated by timer") }, 2338 /* DTLPWRO A K */ 2339 { SST(0x5E, 0x03, SS_RDEF, 2340 "Idle condition activated by command") }, 2341 /* DTLPWRO A K */ 2342 { SST(0x5E, 0x04, SS_RDEF, 2343 "Standby condition activated by command") }, 2344 /* B */ 2345 { SST(0x5E, 0x41, SS_RDEF, /* XXX TBD */ 2346 "Power state change to active") }, 2347 /* B */ 2348 { SST(0x5E, 0x42, SS_RDEF, /* XXX TBD */ 2349 "Power state change to idle") }, 2350 /* B */ 2351 { SST(0x5E, 0x43, SS_RDEF, /* XXX TBD */ 2352 "Power state change to standby") }, 2353 /* B */ 2354 { SST(0x5E, 0x45, SS_RDEF, /* XXX TBD */ 2355 "Power state change to sleep") }, 2356 /* BK */ 2357 { SST(0x5E, 0x47, SS_RDEF, /* XXX TBD */ 2358 "Power state change to device control") }, 2359 /* */ 2360 { SST(0x60, 0x00, SS_RDEF, 2361 "Lamp failure") }, 2362 /* */ 2363 { SST(0x61, 0x00, SS_RDEF, 2364 "Video acquisition error") }, 2365 /* */ 2366 { SST(0x61, 0x01, SS_RDEF, 2367 "Unable to acquire video") }, 2368 /* */ 2369 { SST(0x61, 0x02, SS_RDEF, 2370 "Out of focus") }, 2371 /* */ 2372 { SST(0x62, 0x00, SS_RDEF, 2373 "Scan head positioning error") }, 2374 /* R */ 2375 { SST(0x63, 0x00, SS_RDEF, 2376 "End of user area encountered on this track") }, 2377 /* R */ 2378 { SST(0x63, 0x01, SS_FATAL | ENOSPC, 2379 "Packet does not fit in available space") }, 2380 /* R */ 2381 { SST(0x64, 0x00, SS_FATAL | ENXIO, 2382 "Illegal mode for this track") }, 2383 /* R */ 2384 { SST(0x64, 0x01, SS_RDEF, 2385 "Invalid packet size") }, 2386 /* DTLPWROMAEBKVF */ 2387 { SST(0x65, 0x00, SS_RDEF, 2388 "Voltage fault") }, 2389 /* */ 2390 { SST(0x66, 0x00, SS_RDEF, 2391 "Automatic document feeder cover up") }, 2392 /* */ 2393 { SST(0x66, 0x01, SS_RDEF, 2394 "Automatic document feeder lift up") }, 2395 /* */ 2396 { SST(0x66, 0x02, SS_RDEF, 2397 "Document jam in automatic document feeder") }, 2398 /* */ 2399 { SST(0x66, 0x03, SS_RDEF, 2400 "Document miss feed automatic in document feeder") }, 2401 /* A */ 2402 { SST(0x67, 0x00, SS_RDEF, 2403 "Configuration failure") }, 2404 /* A */ 2405 { SST(0x67, 0x01, SS_RDEF, 2406 "Configuration of incapable logical units failed") }, 2407 /* A */ 2408 { SST(0x67, 0x02, SS_RDEF, 2409 "Add logical unit failed") }, 2410 /* A */ 2411 { SST(0x67, 0x03, SS_RDEF, 2412 "Modification of logical unit failed") }, 2413 /* A */ 2414 { SST(0x67, 0x04, SS_RDEF, 2415 "Exchange of logical unit failed") }, 2416 /* A */ 2417 { SST(0x67, 0x05, SS_RDEF, 2418 "Remove of logical unit failed") }, 2419 /* A */ 2420 { SST(0x67, 0x06, SS_RDEF, 2421 "Attachment of logical unit failed") }, 2422 /* A */ 2423 { SST(0x67, 0x07, SS_RDEF, 2424 "Creation of logical unit failed") }, 2425 /* A */ 2426 { SST(0x67, 0x08, SS_RDEF, /* XXX TBD */ 2427 "Assign failure occurred") }, 2428 /* A */ 2429 { SST(0x67, 0x09, SS_RDEF, /* XXX TBD */ 2430 "Multiply assigned logical unit") }, 2431 /* DTLPWROMAEBKVF */ 2432 { SST(0x67, 0x0A, SS_RDEF, /* XXX TBD */ 2433 "Set target port groups command failed") }, 2434 /* DT B */ 2435 { SST(0x67, 0x0B, SS_RDEF, /* XXX TBD */ 2436 "ATA device feature not enabled") }, 2437 /* A */ 2438 { SST(0x68, 0x00, SS_RDEF, 2439 "Logical unit not configured") }, 2440 /* A */ 2441 { SST(0x69, 0x00, SS_RDEF, 2442 "Data loss on logical unit") }, 2443 /* A */ 2444 { SST(0x69, 0x01, SS_RDEF, 2445 "Multiple logical unit failures") }, 2446 /* A */ 2447 { SST(0x69, 0x02, SS_RDEF, 2448 "Parity/data mismatch") }, 2449 /* A */ 2450 { SST(0x6A, 0x00, SS_RDEF, 2451 "Informational, refer to log") }, 2452 /* A */ 2453 { SST(0x6B, 0x00, SS_RDEF, 2454 "State change has occurred") }, 2455 /* A */ 2456 { SST(0x6B, 0x01, SS_RDEF, 2457 "Redundancy level got better") }, 2458 /* A */ 2459 { SST(0x6B, 0x02, SS_RDEF, 2460 "Redundancy level got worse") }, 2461 /* A */ 2462 { SST(0x6C, 0x00, SS_RDEF, 2463 "Rebuild failure occurred") }, 2464 /* A */ 2465 { SST(0x6D, 0x00, SS_RDEF, 2466 "Recalculate failure occurred") }, 2467 /* A */ 2468 { SST(0x6E, 0x00, SS_RDEF, 2469 "Command to logical unit failed") }, 2470 /* R */ 2471 { SST(0x6F, 0x00, SS_RDEF, /* XXX TBD */ 2472 "Copy protection key exchange failure - authentication failure") }, 2473 /* R */ 2474 { SST(0x6F, 0x01, SS_RDEF, /* XXX TBD */ 2475 "Copy protection key exchange failure - key not present") }, 2476 /* R */ 2477 { SST(0x6F, 0x02, SS_RDEF, /* XXX TBD */ 2478 "Copy protection key exchange failure - key not established") }, 2479 /* R */ 2480 { SST(0x6F, 0x03, SS_RDEF, /* XXX TBD */ 2481 "Read of scrambled sector without authentication") }, 2482 /* R */ 2483 { SST(0x6F, 0x04, SS_RDEF, /* XXX TBD */ 2484 "Media region code is mismatched to logical unit region") }, 2485 /* R */ 2486 { SST(0x6F, 0x05, SS_RDEF, /* XXX TBD */ 2487 "Drive region must be permanent/region reset count error") }, 2488 /* R */ 2489 { SST(0x6F, 0x06, SS_RDEF, /* XXX TBD */ 2490 "Insufficient block count for binding NONCE recording") }, 2491 /* R */ 2492 { SST(0x6F, 0x07, SS_RDEF, /* XXX TBD */ 2493 "Conflict in binding NONCE recording") }, 2494 /* T */ 2495 { SST(0x70, 0x00, SS_RDEF, 2496 "Decompression exception short: ASCQ = Algorithm ID") }, 2497 /* T */ 2498 { SST(0x70, 0xFF, SS_RDEF | SSQ_RANGE, 2499 NULL) }, /* Range 0x00 -> 0xFF */ 2500 /* T */ 2501 { SST(0x71, 0x00, SS_RDEF, 2502 "Decompression exception long: ASCQ = Algorithm ID") }, 2503 /* T */ 2504 { SST(0x71, 0xFF, SS_RDEF | SSQ_RANGE, 2505 NULL) }, /* Range 0x00 -> 0xFF */ 2506 /* R */ 2507 { SST(0x72, 0x00, SS_RDEF, 2508 "Session fixation error") }, 2509 /* R */ 2510 { SST(0x72, 0x01, SS_RDEF, 2511 "Session fixation error writing lead-in") }, 2512 /* R */ 2513 { SST(0x72, 0x02, SS_RDEF, 2514 "Session fixation error writing lead-out") }, 2515 /* R */ 2516 { SST(0x72, 0x03, SS_RDEF, 2517 "Session fixation error - incomplete track in session") }, 2518 /* R */ 2519 { SST(0x72, 0x04, SS_RDEF, 2520 "Empty or partially written reserved track") }, 2521 /* R */ 2522 { SST(0x72, 0x05, SS_RDEF, /* XXX TBD */ 2523 "No more track reservations allowed") }, 2524 /* R */ 2525 { SST(0x72, 0x06, SS_RDEF, /* XXX TBD */ 2526 "RMZ extension is not allowed") }, 2527 /* R */ 2528 { SST(0x72, 0x07, SS_RDEF, /* XXX TBD */ 2529 "No more test zone extensions are allowed") }, 2530 /* R */ 2531 { SST(0x73, 0x00, SS_RDEF, 2532 "CD control error") }, 2533 /* R */ 2534 { SST(0x73, 0x01, SS_RDEF, 2535 "Power calibration area almost full") }, 2536 /* R */ 2537 { SST(0x73, 0x02, SS_FATAL | ENOSPC, 2538 "Power calibration area is full") }, 2539 /* R */ 2540 { SST(0x73, 0x03, SS_RDEF, 2541 "Power calibration area error") }, 2542 /* R */ 2543 { SST(0x73, 0x04, SS_RDEF, 2544 "Program memory area update failure") }, 2545 /* R */ 2546 { SST(0x73, 0x05, SS_RDEF, 2547 "Program memory area is full") }, 2548 /* R */ 2549 { SST(0x73, 0x06, SS_RDEF, /* XXX TBD */ 2550 "RMA/PMA is almost full") }, 2551 /* R */ 2552 { SST(0x73, 0x10, SS_RDEF, /* XXX TBD */ 2553 "Current power calibration area almost full") }, 2554 /* R */ 2555 { SST(0x73, 0x11, SS_RDEF, /* XXX TBD */ 2556 "Current power calibration area is full") }, 2557 /* R */ 2558 { SST(0x73, 0x17, SS_RDEF, /* XXX TBD */ 2559 "RDZ is full") }, 2560 /* T */ 2561 { SST(0x74, 0x00, SS_RDEF, /* XXX TBD */ 2562 "Security error") }, 2563 /* T */ 2564 { SST(0x74, 0x01, SS_RDEF, /* XXX TBD */ 2565 "Unable to decrypt data") }, 2566 /* T */ 2567 { SST(0x74, 0x02, SS_RDEF, /* XXX TBD */ 2568 "Unencrypted data encountered while decrypting") }, 2569 /* T */ 2570 { SST(0x74, 0x03, SS_RDEF, /* XXX TBD */ 2571 "Incorrect data encryption key") }, 2572 /* T */ 2573 { SST(0x74, 0x04, SS_RDEF, /* XXX TBD */ 2574 "Cryptographic integrity validation failed") }, 2575 /* T */ 2576 { SST(0x74, 0x05, SS_RDEF, /* XXX TBD */ 2577 "Error decrypting data") }, 2578 /* T */ 2579 { SST(0x74, 0x06, SS_RDEF, /* XXX TBD */ 2580 "Unknown signature verification key") }, 2581 /* T */ 2582 { SST(0x74, 0x07, SS_RDEF, /* XXX TBD */ 2583 "Encryption parameters not usable") }, 2584 /* DT R M E VF */ 2585 { SST(0x74, 0x08, SS_RDEF, /* XXX TBD */ 2586 "Digital signature validation failure") }, 2587 /* T */ 2588 { SST(0x74, 0x09, SS_RDEF, /* XXX TBD */ 2589 "Encryption mode mismatch on read") }, 2590 /* T */ 2591 { SST(0x74, 0x0A, SS_RDEF, /* XXX TBD */ 2592 "Encrypted block not raw read enabled") }, 2593 /* T */ 2594 { SST(0x74, 0x0B, SS_RDEF, /* XXX TBD */ 2595 "Incorrect encryption parameters") }, 2596 /* DT R MAEBKV */ 2597 { SST(0x74, 0x0C, SS_RDEF, /* XXX TBD */ 2598 "Unable to decrypt parameter list") }, 2599 /* T */ 2600 { SST(0x74, 0x0D, SS_RDEF, /* XXX TBD */ 2601 "Encryption algorithm disabled") }, 2602 /* DT R MAEBKV */ 2603 { SST(0x74, 0x10, SS_RDEF, /* XXX TBD */ 2604 "SA creation parameter value invalid") }, 2605 /* DT R MAEBKV */ 2606 { SST(0x74, 0x11, SS_RDEF, /* XXX TBD */ 2607 "SA creation parameter value rejected") }, 2608 /* DT R MAEBKV */ 2609 { SST(0x74, 0x12, SS_RDEF, /* XXX TBD */ 2610 "Invalid SA usage") }, 2611 /* T */ 2612 { SST(0x74, 0x21, SS_RDEF, /* XXX TBD */ 2613 "Data encryption configuration prevented") }, 2614 /* DT R MAEBKV */ 2615 { SST(0x74, 0x30, SS_RDEF, /* XXX TBD */ 2616 "SA creation parameter not supported") }, 2617 /* DT R MAEBKV */ 2618 { SST(0x74, 0x40, SS_RDEF, /* XXX TBD */ 2619 "Authentication failed") }, 2620 /* V */ 2621 { SST(0x74, 0x61, SS_RDEF, /* XXX TBD */ 2622 "External data encryption key manager access error") }, 2623 /* V */ 2624 { SST(0x74, 0x62, SS_RDEF, /* XXX TBD */ 2625 "External data encryption key manager error") }, 2626 /* V */ 2627 { SST(0x74, 0x63, SS_RDEF, /* XXX TBD */ 2628 "External data encryption key not found") }, 2629 /* V */ 2630 { SST(0x74, 0x64, SS_RDEF, /* XXX TBD */ 2631 "External data encryption request not authorized") }, 2632 /* T */ 2633 { SST(0x74, 0x6E, SS_RDEF, /* XXX TBD */ 2634 "External data encryption control timeout") }, 2635 /* T */ 2636 { SST(0x74, 0x6F, SS_RDEF, /* XXX TBD */ 2637 "External data encryption control error") }, 2638 /* DT R M E V */ 2639 { SST(0x74, 0x71, SS_RDEF, /* XXX TBD */ 2640 "Logical unit access not authorized") }, 2641 /* D */ 2642 { SST(0x74, 0x79, SS_RDEF, /* XXX TBD */ 2643 "Security conflict in translated device") } 2644 }; 2645 2646 const int asc_table_size = NELEM(asc_table); 2647 2648 struct asc_key 2649 { 2650 int asc; 2651 int ascq; 2652 }; 2653 2654 static int 2655 ascentrycomp(const void *key, const void *member) 2656 { 2657 int asc; 2658 int ascq; 2659 const struct asc_table_entry *table_entry; 2660 2661 asc = ((const struct asc_key *)key)->asc; 2662 ascq = ((const struct asc_key *)key)->ascq; 2663 table_entry = (const struct asc_table_entry *)member; 2664 2665 if (asc >= table_entry->asc) { 2666 2667 if (asc > table_entry->asc) 2668 return (1); 2669 2670 if (ascq <= table_entry->ascq) { 2671 /* Check for ranges */ 2672 if (ascq == table_entry->ascq 2673 || ((table_entry->action & SSQ_RANGE) != 0 2674 && ascq >= (table_entry - 1)->ascq)) 2675 return (0); 2676 return (-1); 2677 } 2678 return (1); 2679 } 2680 return (-1); 2681 } 2682 2683 static int 2684 senseentrycomp(const void *key, const void *member) 2685 { 2686 int sense_key; 2687 const struct sense_key_table_entry *table_entry; 2688 2689 sense_key = *((const int *)key); 2690 table_entry = (const struct sense_key_table_entry *)member; 2691 2692 if (sense_key >= table_entry->sense_key) { 2693 if (sense_key == table_entry->sense_key) 2694 return (0); 2695 return (1); 2696 } 2697 return (-1); 2698 } 2699 2700 static void 2701 fetchtableentries(int sense_key, int asc, int ascq, 2702 struct scsi_inquiry_data *inq_data, 2703 const struct sense_key_table_entry **sense_entry, 2704 const struct asc_table_entry **asc_entry) 2705 { 2706 caddr_t match; 2707 const struct asc_table_entry *asc_tables[2]; 2708 const struct sense_key_table_entry *sense_tables[2]; 2709 struct asc_key asc_ascq; 2710 size_t asc_tables_size[2]; 2711 size_t sense_tables_size[2]; 2712 int num_asc_tables; 2713 int num_sense_tables; 2714 int i; 2715 2716 /* Default to failure */ 2717 *sense_entry = NULL; 2718 *asc_entry = NULL; 2719 match = NULL; 2720 if (inq_data != NULL) 2721 match = cam_quirkmatch((caddr_t)inq_data, 2722 (caddr_t)sense_quirk_table, 2723 sense_quirk_table_size, 2724 sizeof(*sense_quirk_table), 2725 scsi_inquiry_match); 2726 2727 if (match != NULL) { 2728 struct scsi_sense_quirk_entry *quirk; 2729 2730 quirk = (struct scsi_sense_quirk_entry *)match; 2731 asc_tables[0] = quirk->asc_info; 2732 asc_tables_size[0] = quirk->num_ascs; 2733 asc_tables[1] = asc_table; 2734 asc_tables_size[1] = asc_table_size; 2735 num_asc_tables = 2; 2736 sense_tables[0] = quirk->sense_key_info; 2737 sense_tables_size[0] = quirk->num_sense_keys; 2738 sense_tables[1] = sense_key_table; 2739 sense_tables_size[1] = sense_key_table_size; 2740 num_sense_tables = 2; 2741 } else { 2742 asc_tables[0] = asc_table; 2743 asc_tables_size[0] = asc_table_size; 2744 num_asc_tables = 1; 2745 sense_tables[0] = sense_key_table; 2746 sense_tables_size[0] = sense_key_table_size; 2747 num_sense_tables = 1; 2748 } 2749 2750 asc_ascq.asc = asc; 2751 asc_ascq.ascq = ascq; 2752 for (i = 0; i < num_asc_tables; i++) { 2753 void *found_entry; 2754 2755 found_entry = kbsearch(&asc_ascq, asc_tables[i], 2756 asc_tables_size[i], 2757 sizeof(**asc_tables), 2758 ascentrycomp); 2759 2760 if (found_entry) { 2761 *asc_entry = (struct asc_table_entry *)found_entry; 2762 break; 2763 } 2764 } 2765 2766 for (i = 0; i < num_sense_tables; i++) { 2767 void *found_entry; 2768 2769 found_entry = kbsearch(&sense_key, sense_tables[i], 2770 sense_tables_size[i], 2771 sizeof(**sense_tables), 2772 senseentrycomp); 2773 2774 if (found_entry) { 2775 *sense_entry = 2776 (struct sense_key_table_entry *)found_entry; 2777 break; 2778 } 2779 } 2780 } 2781 2782 void 2783 scsi_sense_desc(int sense_key, int asc, int ascq, 2784 struct scsi_inquiry_data *inq_data, 2785 const char **sense_key_desc, const char **asc_desc) 2786 { 2787 const struct asc_table_entry *asc_entry; 2788 const struct sense_key_table_entry *sense_entry; 2789 2790 fetchtableentries(sense_key, asc, ascq, 2791 inq_data, 2792 &sense_entry, 2793 &asc_entry); 2794 2795 *sense_key_desc = sense_entry->desc; 2796 2797 if (asc_entry != NULL) 2798 *asc_desc = asc_entry->desc; 2799 else if (asc >= 0x80 && asc <= 0xff) 2800 *asc_desc = "Vendor Specific ASC"; 2801 else if (ascq >= 0x80 && ascq <= 0xff) 2802 *asc_desc = "Vendor Specific ASCQ"; 2803 else 2804 *asc_desc = "Reserved ASC/ASCQ pair"; 2805 } 2806 2807 /* 2808 * Given sense and device type information, return the appropriate action. 2809 * If we do not understand the specific error as identified by the ASC/ASCQ 2810 * pair, fall back on the more generic actions derived from the sense key. 2811 */ 2812 scsi_sense_action 2813 scsi_error_action(struct ccb_scsiio *csio, struct scsi_inquiry_data *inq_data, 2814 u_int32_t sense_flags) 2815 { 2816 const struct asc_table_entry *asc_entry; 2817 const struct sense_key_table_entry *sense_entry; 2818 int error_code, sense_key, asc, ascq; 2819 scsi_sense_action action; 2820 2821 scsi_extract_sense(&csio->sense_data, &error_code, 2822 &sense_key, &asc, &ascq); 2823 2824 if (error_code == SSD_DEFERRED_ERROR) { 2825 /* 2826 * XXX dufault@FreeBSD.org 2827 * This error doesn't relate to the command associated 2828 * with this request sense. A deferred error is an error 2829 * for a command that has already returned GOOD status 2830 * (see SCSI2 8.2.14.2). 2831 * 2832 * By my reading of that section, it looks like the current 2833 * command has been cancelled, we should now clean things up 2834 * (hopefully recovering any lost data) and then retry the 2835 * current command. There are two easy choices, both wrong: 2836 * 2837 * 1. Drop through (like we had been doing), thus treating 2838 * this as if the error were for the current command and 2839 * return and stop the current command. 2840 * 2841 * 2. Issue a retry (like I made it do) thus hopefully 2842 * recovering the current transfer, and ignoring the 2843 * fact that we've dropped a command. 2844 * 2845 * These should probably be handled in a device specific 2846 * sense handler or punted back up to a user mode daemon 2847 */ 2848 action = SS_RETRY|SSQ_DECREMENT_COUNT|SSQ_PRINT_SENSE; 2849 } else { 2850 fetchtableentries(sense_key, asc, ascq, 2851 inq_data, 2852 &sense_entry, 2853 &asc_entry); 2854 2855 /* 2856 * Override the 'No additional Sense' entry (0,0) 2857 * with the error action of the sense key. 2858 */ 2859 if (asc_entry != NULL 2860 && (asc != 0 || ascq != 0)) 2861 action = asc_entry->action; 2862 else 2863 action = sense_entry->action; 2864 2865 if (sense_key == SSD_KEY_RECOVERED_ERROR) { 2866 /* 2867 * The action succeeded but the device wants 2868 * the user to know that some recovery action 2869 * was required. 2870 */ 2871 action &= ~(SS_MASK|SSQ_MASK|SS_ERRMASK); 2872 action |= SS_NOP|SSQ_PRINT_SENSE; 2873 } else if (sense_key == SSD_KEY_ILLEGAL_REQUEST) { 2874 if ((sense_flags & SF_QUIET_IR) != 0) 2875 action &= ~SSQ_PRINT_SENSE; 2876 } else if (sense_key == SSD_KEY_UNIT_ATTENTION) { 2877 if ((sense_flags & SF_RETRY_UA) != 0 2878 && (action & SS_MASK) == SS_FAIL) { 2879 action &= ~(SS_MASK|SSQ_MASK); 2880 action |= SS_RETRY|SSQ_DECREMENT_COUNT| 2881 SSQ_PRINT_SENSE; 2882 } 2883 } 2884 } 2885 #ifdef KERNEL 2886 if (bootverbose) 2887 sense_flags |= SF_PRINT_ALWAYS; 2888 #endif 2889 if ((sense_flags & SF_PRINT_ALWAYS) != 0) 2890 action |= SSQ_PRINT_SENSE; 2891 else if ((sense_flags & SF_NO_PRINT) != 0) 2892 action &= ~SSQ_PRINT_SENSE; 2893 2894 return (action); 2895 } 2896 2897 char * 2898 scsi_cdb_string(u_int8_t *cdb_ptr, char *cdb_string, size_t len) 2899 { 2900 u_int8_t cdb_len; 2901 int i; 2902 2903 if (cdb_ptr == NULL) 2904 return(""); 2905 2906 /* Silence warnings */ 2907 cdb_len = 0; 2908 2909 /* 2910 * This is taken from the SCSI-3 draft spec. 2911 * (T10/1157D revision 0.3) 2912 * The top 3 bits of an opcode are the group code. The next 5 bits 2913 * are the command code. 2914 * Group 0: six byte commands 2915 * Group 1: ten byte commands 2916 * Group 2: ten byte commands 2917 * Group 3: reserved 2918 * Group 4: sixteen byte commands 2919 * Group 5: twelve byte commands 2920 * Group 6: vendor specific 2921 * Group 7: vendor specific 2922 */ 2923 switch((*cdb_ptr >> 5) & 0x7) { 2924 case 0: 2925 cdb_len = 6; 2926 break; 2927 case 1: 2928 case 2: 2929 cdb_len = 10; 2930 break; 2931 case 3: 2932 case 6: 2933 case 7: 2934 /* in this case, just print out the opcode */ 2935 cdb_len = 1; 2936 break; 2937 case 4: 2938 cdb_len = 16; 2939 break; 2940 case 5: 2941 cdb_len = 12; 2942 break; 2943 } 2944 *cdb_string = '\0'; 2945 for (i = 0; i < cdb_len; i++) 2946 ksnprintf(cdb_string + strlen(cdb_string), 2947 len - strlen(cdb_string), "%x ", cdb_ptr[i]); 2948 2949 return(cdb_string); 2950 } 2951 2952 const char * 2953 scsi_status_string(struct ccb_scsiio *csio) 2954 { 2955 switch(csio->scsi_status) { 2956 case SCSI_STATUS_OK: 2957 return("OK"); 2958 case SCSI_STATUS_CHECK_COND: 2959 return("Check Condition"); 2960 case SCSI_STATUS_BUSY: 2961 return("Busy"); 2962 case SCSI_STATUS_INTERMED: 2963 return("Intermediate"); 2964 case SCSI_STATUS_INTERMED_COND_MET: 2965 return("Intermediate-Condition Met"); 2966 case SCSI_STATUS_RESERV_CONFLICT: 2967 return("Reservation Conflict"); 2968 case SCSI_STATUS_CMD_TERMINATED: 2969 return("Command Terminated"); 2970 case SCSI_STATUS_QUEUE_FULL: 2971 return("Queue Full"); 2972 case SCSI_STATUS_ACA_ACTIVE: 2973 return("ACA Active"); 2974 case SCSI_STATUS_TASK_ABORTED: 2975 return("Task Aborted"); 2976 default: { 2977 static char unkstr[64]; 2978 ksnprintf(unkstr, sizeof(unkstr), "Unknown %#x", 2979 csio->scsi_status); 2980 return(unkstr); 2981 } 2982 } 2983 } 2984 2985 /* 2986 * scsi_command_string() returns 0 for success and -1 for failure. 2987 */ 2988 #ifdef _KERNEL 2989 int 2990 scsi_command_string(struct ccb_scsiio *csio, struct sbuf *sb) 2991 #else 2992 int 2993 scsi_command_string(struct cam_device *device, struct ccb_scsiio *csio, 2994 struct sbuf *sb) 2995 #endif 2996 { 2997 struct scsi_inquiry_data *inq_data; 2998 char cdb_str[(SCSI_MAX_CDBLEN * 3) + 1]; 2999 #ifdef _KERNEL 3000 struct ccb_getdev cgd; 3001 #endif 3002 3003 #ifdef _KERNEL 3004 /* 3005 * Get the device information. 3006 */ 3007 xpt_setup_ccb(&cgd.ccb_h, 3008 csio->ccb_h.path, 3009 /*priority*/ 1); 3010 cgd.ccb_h.func_code = XPT_GDEV_TYPE; 3011 xpt_action((union ccb *)&cgd); 3012 3013 /* 3014 * If the device is unconfigured, just pretend that it is a hard 3015 * drive. scsi_op_desc() needs this. 3016 */ 3017 if (cgd.ccb_h.status == CAM_DEV_NOT_THERE) 3018 cgd.inq_data.device = T_DIRECT; 3019 3020 inq_data = &cgd.inq_data; 3021 3022 #else /* !_KERNEL */ 3023 3024 inq_data = &device->inq_data; 3025 3026 #endif /* _KERNEL/!_KERNEL */ 3027 3028 if ((csio->ccb_h.flags & CAM_CDB_POINTER) != 0) { 3029 sbuf_printf(sb, "%s. CDB: %s", 3030 scsi_op_desc(csio->cdb_io.cdb_ptr[0], inq_data), 3031 scsi_cdb_string(csio->cdb_io.cdb_ptr, cdb_str, 3032 sizeof(cdb_str))); 3033 } else { 3034 sbuf_printf(sb, "%s. CDB: %s", 3035 scsi_op_desc(csio->cdb_io.cdb_bytes[0], inq_data), 3036 scsi_cdb_string(csio->cdb_io.cdb_bytes, cdb_str, 3037 sizeof(cdb_str))); 3038 } 3039 3040 return(0); 3041 } 3042 3043 /* 3044 * scsi_sense_sbuf() returns 0 for success and -1 for failure. 3045 */ 3046 #ifdef _KERNEL 3047 int 3048 scsi_sense_sbuf(struct ccb_scsiio *csio, struct sbuf *sb, 3049 scsi_sense_string_flags flags) 3050 #else /* !_KERNEL */ 3051 int 3052 scsi_sense_sbuf(struct cam_device *device, struct ccb_scsiio *csio, 3053 struct sbuf *sb, scsi_sense_string_flags flags) 3054 #endif /* _KERNEL/!_KERNEL */ 3055 { 3056 struct scsi_sense_data *sense; 3057 struct scsi_inquiry_data *inq_data; 3058 #ifdef _KERNEL 3059 struct ccb_getdev cgd; 3060 #endif /* _KERNEL */ 3061 u_int32_t info; 3062 int error_code; 3063 int sense_key; 3064 int asc, ascq; 3065 char path_str[64]; 3066 3067 #ifndef _KERNEL 3068 if (device == NULL) 3069 return(-1); 3070 #endif /* !_KERNEL */ 3071 if ((csio == NULL) || (sb == NULL)) 3072 return(-1); 3073 3074 /* 3075 * If the CDB is a physical address, we can't deal with it.. 3076 */ 3077 if ((csio->ccb_h.flags & CAM_CDB_PHYS) != 0) 3078 flags &= ~SSS_FLAG_PRINT_COMMAND; 3079 3080 #ifdef _KERNEL 3081 xpt_path_string(csio->ccb_h.path, path_str, sizeof(path_str)); 3082 #else /* !_KERNEL */ 3083 cam_path_string(device, path_str, sizeof(path_str)); 3084 #endif /* _KERNEL/!_KERNEL */ 3085 3086 #ifdef _KERNEL 3087 /* 3088 * Get the device information. 3089 */ 3090 xpt_setup_ccb(&cgd.ccb_h, 3091 csio->ccb_h.path, 3092 /*priority*/ 1); 3093 cgd.ccb_h.func_code = XPT_GDEV_TYPE; 3094 xpt_action((union ccb *)&cgd); 3095 3096 /* 3097 * If the device is unconfigured, just pretend that it is a hard 3098 * drive. scsi_op_desc() needs this. 3099 */ 3100 if (cgd.ccb_h.status == CAM_DEV_NOT_THERE) 3101 cgd.inq_data.device = T_DIRECT; 3102 3103 inq_data = &cgd.inq_data; 3104 3105 #else /* !_KERNEL */ 3106 3107 inq_data = &device->inq_data; 3108 3109 #endif /* _KERNEL/!_KERNEL */ 3110 3111 sense = NULL; 3112 3113 if (flags & SSS_FLAG_PRINT_COMMAND) { 3114 3115 sbuf_cat(sb, path_str); 3116 3117 #ifdef _KERNEL 3118 scsi_command_string(csio, sb); 3119 #else /* !_KERNEL */ 3120 scsi_command_string(device, csio, sb); 3121 #endif /* _KERNEL/!_KERNEL */ 3122 } 3123 3124 /* 3125 * If the sense data is a physical pointer, forget it. 3126 */ 3127 if (csio->ccb_h.flags & CAM_SENSE_PTR) { 3128 if (csio->ccb_h.flags & CAM_SENSE_PHYS) 3129 return(-1); 3130 else { 3131 /* 3132 * bcopy the pointer to avoid unaligned access 3133 * errors on finicky architectures. We don't 3134 * ensure that the sense data is pointer aligned. 3135 */ 3136 bcopy(&csio->sense_data, &sense, 3137 sizeof(struct scsi_sense_data *)); 3138 } 3139 } else { 3140 /* 3141 * If the physical sense flag is set, but the sense pointer 3142 * is not also set, we assume that the user is an idiot and 3143 * return. (Well, okay, it could be that somehow, the 3144 * entire csio is physical, but we would have probably core 3145 * dumped on one of the bogus pointer deferences above 3146 * already.) 3147 */ 3148 if (csio->ccb_h.flags & CAM_SENSE_PHYS) 3149 return(-1); 3150 else 3151 sense = &csio->sense_data; 3152 } 3153 3154 3155 sbuf_cat(sb, path_str); 3156 3157 error_code = sense->error_code & SSD_ERRCODE; 3158 sense_key = sense->flags & SSD_KEY; 3159 3160 switch (error_code) { 3161 case SSD_DEFERRED_ERROR: 3162 sbuf_printf(sb, "Deferred Error: "); 3163 3164 /* FALLTHROUGH */ 3165 case SSD_CURRENT_ERROR: 3166 { 3167 const char *sense_key_desc; 3168 const char *asc_desc; 3169 3170 asc = (sense->extra_len >= 5) ? sense->add_sense_code : 0; 3171 ascq = (sense->extra_len >= 6) ? sense->add_sense_code_qual : 0; 3172 scsi_sense_desc(sense_key, asc, ascq, inq_data, 3173 &sense_key_desc, &asc_desc); 3174 sbuf_cat(sb, sense_key_desc); 3175 3176 info = scsi_4btoul(sense->info); 3177 3178 if (sense->error_code & SSD_ERRCODE_VALID) { 3179 3180 switch (sense_key) { 3181 case SSD_KEY_NOT_READY: 3182 case SSD_KEY_ILLEGAL_REQUEST: 3183 case SSD_KEY_UNIT_ATTENTION: 3184 case SSD_KEY_DATA_PROTECT: 3185 break; 3186 case SSD_KEY_BLANK_CHECK: 3187 sbuf_printf(sb, " req sz: %d (decimal)", info); 3188 break; 3189 default: 3190 if (info) { 3191 if (sense->flags & SSD_ILI) { 3192 sbuf_printf(sb, " ILI (length " 3193 "mismatch): %d", info); 3194 3195 } else { 3196 sbuf_printf(sb, " info:%x", 3197 info); 3198 } 3199 } 3200 } 3201 } else if (info) { 3202 sbuf_printf(sb, " info?:%x", info); 3203 } 3204 3205 if (sense->extra_len >= 4) { 3206 if (bcmp(sense->cmd_spec_info, "\0\0\0\0", 4)) { 3207 sbuf_printf(sb, " csi:%x,%x,%x,%x", 3208 sense->cmd_spec_info[0], 3209 sense->cmd_spec_info[1], 3210 sense->cmd_spec_info[2], 3211 sense->cmd_spec_info[3]); 3212 } 3213 } 3214 3215 sbuf_printf(sb, " asc:%x,%x\n%s%s", asc, ascq, 3216 path_str, asc_desc); 3217 3218 if (sense->extra_len >= 7 && sense->fru) { 3219 sbuf_printf(sb, " field replaceable unit: %x", 3220 sense->fru); 3221 } 3222 3223 if ((sense->extra_len >= 10) 3224 && (sense->sense_key_spec[0] & SSD_SCS_VALID) != 0) { 3225 switch(sense_key) { 3226 case SSD_KEY_ILLEGAL_REQUEST: { 3227 int bad_command; 3228 char tmpstr2[40]; 3229 3230 if (sense->sense_key_spec[0] & 0x40) 3231 bad_command = 1; 3232 else 3233 bad_command = 0; 3234 3235 tmpstr2[0] = '\0'; 3236 3237 /* Bit pointer is valid */ 3238 if (sense->sense_key_spec[0] & 0x08) 3239 ksnprintf(tmpstr2, sizeof(tmpstr2), 3240 "bit %d", 3241 sense->sense_key_spec[0] & 0x7); 3242 sbuf_printf(sb, ": %s byte %d %s is invalid", 3243 bad_command ? "Command" : "Data", 3244 scsi_2btoul(&sense->sense_key_spec[1]), 3245 tmpstr2); 3246 break; 3247 } 3248 case SSD_KEY_RECOVERED_ERROR: 3249 case SSD_KEY_HARDWARE_ERROR: 3250 case SSD_KEY_MEDIUM_ERROR: 3251 sbuf_printf(sb, " actual retry count: %d", 3252 scsi_2btoul( 3253 &sense->sense_key_spec[1])); 3254 break; 3255 default: 3256 sbuf_printf(sb, " sks:%#x,%#x", 3257 sense->sense_key_spec[0], 3258 scsi_2btoul( 3259 &sense->sense_key_spec[1])); 3260 break; 3261 } 3262 } 3263 break; 3264 3265 } 3266 default: 3267 sbuf_printf(sb, "Sense Error Code 0x%x", sense->error_code); 3268 if (sense->error_code & SSD_ERRCODE_VALID) { 3269 sbuf_printf(sb, " at block no. %d (decimal)", 3270 info = scsi_4btoul(sense->info)); 3271 } 3272 } 3273 3274 sbuf_printf(sb, "\n"); 3275 3276 return(0); 3277 } 3278 3279 #ifdef _KERNEL 3280 char * 3281 scsi_sense_string(struct ccb_scsiio *csio, char *str, int str_len) 3282 #else /* !_KERNEL */ 3283 char * 3284 scsi_sense_string(struct cam_device *device, struct ccb_scsiio *csio, 3285 char *str, int str_len) 3286 #endif /* _KERNEL/!_KERNEL */ 3287 { 3288 struct sbuf sb; 3289 3290 sbuf_new(&sb, str, str_len, 0); 3291 3292 #ifdef _KERNEL 3293 scsi_sense_sbuf(csio, &sb, SSS_FLAG_PRINT_COMMAND); 3294 #else /* !_KERNEL */ 3295 scsi_sense_sbuf(device, csio, &sb, SSS_FLAG_PRINT_COMMAND); 3296 #endif /* _KERNEL/!_KERNEL */ 3297 3298 sbuf_finish(&sb); 3299 3300 return(sbuf_data(&sb)); 3301 } 3302 3303 #ifdef _KERNEL 3304 void 3305 scsi_sense_print(struct ccb_scsiio *csio) 3306 { 3307 struct sbuf sb; 3308 char str[512]; 3309 3310 sbuf_new(&sb, str, sizeof(str), 0); 3311 3312 scsi_sense_sbuf(csio, &sb, SSS_FLAG_PRINT_COMMAND); 3313 3314 sbuf_finish(&sb); 3315 3316 kprintf("%s", sbuf_data(&sb)); 3317 } 3318 3319 #else /* !_KERNEL */ 3320 void 3321 scsi_sense_print(struct cam_device *device, struct ccb_scsiio *csio, 3322 FILE *ofile) 3323 { 3324 struct sbuf sb; 3325 char str[512]; 3326 3327 if ((device == NULL) || (csio == NULL) || (ofile == NULL)) 3328 return; 3329 3330 sbuf_new(&sb, str, sizeof(str), 0); 3331 3332 scsi_sense_sbuf(device, csio, &sb, SSS_FLAG_PRINT_COMMAND); 3333 3334 sbuf_finish(&sb); 3335 3336 fprintf(ofile, "%s", sbuf_data(&sb)); 3337 } 3338 3339 #endif /* _KERNEL/!_KERNEL */ 3340 3341 /* 3342 * This function currently requires at least 36 bytes, or 3343 * SHORT_INQUIRY_LENGTH, worth of data to function properly. If this 3344 * function needs more or less data in the future, another length should be 3345 * defined in scsi_all.h to indicate the minimum amount of data necessary 3346 * for this routine to function properly. 3347 */ 3348 void 3349 scsi_print_inquiry(struct scsi_inquiry_data *inq_data) 3350 { 3351 u_int8_t type; 3352 char *dtype, *qtype; 3353 char vendor[16], product[48], revision[16], rstr[4]; 3354 3355 type = SID_TYPE(inq_data); 3356 3357 /* 3358 * Figure out basic device type and qualifier. 3359 */ 3360 if (SID_QUAL_IS_VENDOR_UNIQUE(inq_data)) { 3361 qtype = "(vendor-unique qualifier)"; 3362 } else { 3363 switch (SID_QUAL(inq_data)) { 3364 case SID_QUAL_LU_CONNECTED: 3365 qtype = ""; 3366 break; 3367 3368 case SID_QUAL_LU_OFFLINE: 3369 qtype = "(offline)"; 3370 break; 3371 3372 case SID_QUAL_RSVD: 3373 qtype = "(reserved qualifier)"; 3374 break; 3375 default: 3376 case SID_QUAL_BAD_LU: 3377 qtype = "(LUN not supported)"; 3378 break; 3379 } 3380 } 3381 3382 switch (type) { 3383 case T_DIRECT: 3384 dtype = "Direct Access"; 3385 break; 3386 case T_SEQUENTIAL: 3387 dtype = "Sequential Access"; 3388 break; 3389 case T_PRINTER: 3390 dtype = "Printer"; 3391 break; 3392 case T_PROCESSOR: 3393 dtype = "Processor"; 3394 break; 3395 case T_WORM: 3396 dtype = "WORM"; 3397 break; 3398 case T_CDROM: 3399 dtype = "CD-ROM"; 3400 break; 3401 case T_SCANNER: 3402 dtype = "Scanner"; 3403 break; 3404 case T_OPTICAL: 3405 dtype = "Optical"; 3406 break; 3407 case T_CHANGER: 3408 dtype = "Changer"; 3409 break; 3410 case T_COMM: 3411 dtype = "Communication"; 3412 break; 3413 case T_STORARRAY: 3414 dtype = "Storage Array"; 3415 break; 3416 case T_ENCLOSURE: 3417 dtype = "Enclosure Services"; 3418 break; 3419 case T_RBC: 3420 dtype = "Simplified Direct Access"; 3421 break; 3422 case T_OCRW: 3423 dtype = "Optical Card Read/Write"; 3424 break; 3425 case T_OSD: 3426 dtype = "Object-Based Storage"; 3427 break; 3428 case T_ADC: 3429 dtype = "Automation/Drive Interface"; 3430 break; 3431 case T_NODEVICE: 3432 dtype = "Uninstalled"; 3433 break; 3434 default: 3435 dtype = "unknown"; 3436 break; 3437 } 3438 3439 cam_strvis(vendor, inq_data->vendor, sizeof(inq_data->vendor), 3440 sizeof(vendor)); 3441 cam_strvis(product, inq_data->product, sizeof(inq_data->product), 3442 sizeof(product)); 3443 cam_strvis(revision, inq_data->revision, sizeof(inq_data->revision), 3444 sizeof(revision)); 3445 3446 if (SID_ANSI_REV(inq_data) == SCSI_REV_CCS) 3447 bcopy("CCS", rstr, 4); 3448 else 3449 ksnprintf(rstr, sizeof (rstr), "%d", SID_ANSI_REV(inq_data)); 3450 kprintf("<%s %s %s> %s %s SCSI-%s device %s\n", 3451 vendor, product, revision, 3452 SID_IS_REMOVABLE(inq_data) ? "Removable" : "Fixed", 3453 dtype, rstr, qtype); 3454 } 3455 3456 /* 3457 * Table of syncrates that don't follow the "divisible by 4" 3458 * rule. This table will be expanded in future SCSI specs. 3459 */ 3460 static struct { 3461 u_int period_factor; 3462 u_int period; /* in 100ths of ns */ 3463 } scsi_syncrates[] = { 3464 { 0x08, 625 }, /* FAST-160 */ 3465 { 0x09, 1250 }, /* FAST-80 */ 3466 { 0x0a, 2500 }, /* FAST-40 40MHz */ 3467 { 0x0b, 3030 }, /* FAST-40 33MHz */ 3468 { 0x0c, 5000 } /* FAST-20 */ 3469 }; 3470 3471 /* 3472 * Return the frequency in kHz corresponding to the given 3473 * sync period factor. 3474 */ 3475 u_int 3476 scsi_calc_syncsrate(u_int period_factor) 3477 { 3478 int i; 3479 int num_syncrates; 3480 3481 /* 3482 * It's a bug if period is zero, but if it is anyway, don't 3483 * die with a divide fault- instead return something which 3484 * 'approximates' async 3485 */ 3486 if (period_factor == 0) { 3487 return (3300); 3488 } 3489 3490 num_syncrates = NELEM(scsi_syncrates); 3491 /* See if the period is in the "exception" table */ 3492 for (i = 0; i < num_syncrates; i++) { 3493 3494 if (period_factor == scsi_syncrates[i].period_factor) { 3495 /* Period in kHz */ 3496 return (100000000 / scsi_syncrates[i].period); 3497 } 3498 } 3499 3500 /* 3501 * Wasn't in the table, so use the standard 3502 * 4 times conversion. 3503 */ 3504 return (10000000 / (period_factor * 4 * 10)); 3505 } 3506 3507 /* 3508 * Return the SCSI sync parameter that corresponsd to 3509 * the passed in period in 10ths of ns. 3510 */ 3511 u_int 3512 scsi_calc_syncparam(u_int period) 3513 { 3514 int i; 3515 int num_syncrates; 3516 3517 if (period == 0) 3518 return (~0); /* Async */ 3519 3520 /* Adjust for exception table being in 100ths. */ 3521 period *= 10; 3522 num_syncrates = NELEM(scsi_syncrates); 3523 /* See if the period is in the "exception" table */ 3524 for (i = 0; i < num_syncrates; i++) { 3525 3526 if (period <= scsi_syncrates[i].period) { 3527 /* Period in 100ths of ns */ 3528 return (scsi_syncrates[i].period_factor); 3529 } 3530 } 3531 3532 /* 3533 * Wasn't in the table, so use the standard 3534 * 1/4 period in ns conversion. 3535 */ 3536 return (period/400); 3537 } 3538 3539 void 3540 scsi_test_unit_ready(struct ccb_scsiio *csio, u_int32_t retries, 3541 void (*cbfcnp)(struct cam_periph *, union ccb *), 3542 u_int8_t tag_action, u_int8_t sense_len, u_int32_t timeout) 3543 { 3544 struct scsi_test_unit_ready *scsi_cmd; 3545 3546 cam_fill_csio(csio, 3547 retries, 3548 cbfcnp, 3549 CAM_DIR_NONE, 3550 tag_action, 3551 /*data_ptr*/NULL, 3552 /*dxfer_len*/0, 3553 sense_len, 3554 sizeof(*scsi_cmd), 3555 timeout); 3556 3557 scsi_cmd = (struct scsi_test_unit_ready *)&csio->cdb_io.cdb_bytes; 3558 bzero(scsi_cmd, sizeof(*scsi_cmd)); 3559 scsi_cmd->opcode = TEST_UNIT_READY; 3560 } 3561 3562 void 3563 scsi_request_sense(struct ccb_scsiio *csio, u_int32_t retries, 3564 void (*cbfcnp)(struct cam_periph *, union ccb *), 3565 void *data_ptr, u_int8_t dxfer_len, u_int8_t tag_action, 3566 u_int8_t sense_len, u_int32_t timeout) 3567 { 3568 struct scsi_request_sense *scsi_cmd; 3569 3570 cam_fill_csio(csio, 3571 retries, 3572 cbfcnp, 3573 CAM_DIR_IN, 3574 tag_action, 3575 data_ptr, 3576 dxfer_len, 3577 sense_len, 3578 sizeof(*scsi_cmd), 3579 timeout); 3580 3581 scsi_cmd = (struct scsi_request_sense *)&csio->cdb_io.cdb_bytes; 3582 bzero(scsi_cmd, sizeof(*scsi_cmd)); 3583 scsi_cmd->opcode = REQUEST_SENSE; 3584 scsi_cmd->length = dxfer_len; 3585 } 3586 3587 void 3588 scsi_inquiry(struct ccb_scsiio *csio, u_int32_t retries, 3589 void (*cbfcnp)(struct cam_periph *, union ccb *), 3590 u_int8_t tag_action, u_int8_t *inq_buf, u_int32_t inq_len, 3591 int evpd, u_int8_t page_code, u_int8_t sense_len, 3592 u_int32_t timeout) 3593 { 3594 struct scsi_inquiry *scsi_cmd; 3595 3596 cam_fill_csio(csio, 3597 retries, 3598 cbfcnp, 3599 /*flags*/CAM_DIR_IN, 3600 tag_action, 3601 /*data_ptr*/inq_buf, 3602 /*dxfer_len*/inq_len, 3603 sense_len, 3604 sizeof(*scsi_cmd), 3605 timeout); 3606 3607 scsi_cmd = (struct scsi_inquiry *)&csio->cdb_io.cdb_bytes; 3608 bzero(scsi_cmd, sizeof(*scsi_cmd)); 3609 scsi_cmd->opcode = INQUIRY; 3610 if (evpd) { 3611 scsi_cmd->byte2 |= SI_EVPD; 3612 scsi_cmd->page_code = page_code; 3613 } 3614 /* 3615 * A 'transfer units' count of 256 is coded as 3616 * zero for all commands with a single byte count 3617 * field. 3618 */ 3619 if (inq_len == 256) 3620 inq_len = 0; 3621 scsi_cmd->length = inq_len; 3622 } 3623 3624 void 3625 scsi_mode_sense(struct ccb_scsiio *csio, u_int32_t retries, 3626 void (*cbfcnp)(struct cam_periph *, union ccb *), 3627 u_int8_t tag_action, int dbd, u_int8_t page_code, 3628 u_int8_t page, u_int8_t *param_buf, u_int32_t param_len, 3629 u_int8_t sense_len, u_int32_t timeout) 3630 { 3631 scsi_mode_sense_len(csio, retries, cbfcnp, tag_action, dbd, 3632 page_code, page, param_buf, param_len, 0, 3633 sense_len, timeout); 3634 } 3635 3636 void 3637 scsi_mode_sense_len(struct ccb_scsiio *csio, u_int32_t retries, 3638 void (*cbfcnp)(struct cam_periph *, union ccb *), 3639 u_int8_t tag_action, int dbd, u_int8_t page_code, 3640 u_int8_t page, u_int8_t *param_buf, u_int32_t param_len, 3641 int minimum_cmd_size, u_int8_t sense_len, u_int32_t timeout) 3642 { 3643 u_int8_t cdb_len; 3644 3645 /* 3646 * Use the smallest possible command to perform the operation. 3647 */ 3648 if ((param_len < 256) && (minimum_cmd_size < 10)) { 3649 /* 3650 * We can fit in a 6 byte cdb. 3651 */ 3652 struct scsi_mode_sense_6 *scsi_cmd; 3653 3654 scsi_cmd = (struct scsi_mode_sense_6 *)&csio->cdb_io.cdb_bytes; 3655 bzero(scsi_cmd, sizeof(*scsi_cmd)); 3656 scsi_cmd->opcode = MODE_SENSE_6; 3657 if (dbd != 0) 3658 scsi_cmd->byte2 |= SMS_DBD; 3659 scsi_cmd->page = page_code | page; 3660 scsi_cmd->length = param_len; 3661 cdb_len = sizeof(*scsi_cmd); 3662 } else { 3663 /* 3664 * Need a 10 byte cdb. 3665 */ 3666 struct scsi_mode_sense_10 *scsi_cmd; 3667 3668 scsi_cmd = (struct scsi_mode_sense_10 *)&csio->cdb_io.cdb_bytes; 3669 bzero(scsi_cmd, sizeof(*scsi_cmd)); 3670 scsi_cmd->opcode = MODE_SENSE_10; 3671 if (dbd != 0) 3672 scsi_cmd->byte2 |= SMS_DBD; 3673 scsi_cmd->page = page_code | page; 3674 scsi_ulto2b(param_len, scsi_cmd->length); 3675 cdb_len = sizeof(*scsi_cmd); 3676 } 3677 cam_fill_csio(csio, 3678 retries, 3679 cbfcnp, 3680 CAM_DIR_IN, 3681 tag_action, 3682 param_buf, 3683 param_len, 3684 sense_len, 3685 cdb_len, 3686 timeout); 3687 } 3688 3689 void 3690 scsi_mode_select(struct ccb_scsiio *csio, u_int32_t retries, 3691 void (*cbfcnp)(struct cam_periph *, union ccb *), 3692 u_int8_t tag_action, int scsi_page_fmt, int save_pages, 3693 u_int8_t *param_buf, u_int32_t param_len, u_int8_t sense_len, 3694 u_int32_t timeout) 3695 { 3696 scsi_mode_select_len(csio, retries, cbfcnp, tag_action, 3697 scsi_page_fmt, save_pages, param_buf, 3698 param_len, 0, sense_len, timeout); 3699 } 3700 3701 void 3702 scsi_mode_select_len(struct ccb_scsiio *csio, u_int32_t retries, 3703 void (*cbfcnp)(struct cam_periph *, union ccb *), 3704 u_int8_t tag_action, int scsi_page_fmt, int save_pages, 3705 u_int8_t *param_buf, u_int32_t param_len, 3706 int minimum_cmd_size, u_int8_t sense_len, 3707 u_int32_t timeout) 3708 { 3709 u_int8_t cdb_len; 3710 3711 /* 3712 * Use the smallest possible command to perform the operation. 3713 */ 3714 if ((param_len < 256) && (minimum_cmd_size < 10)) { 3715 /* 3716 * We can fit in a 6 byte cdb. 3717 */ 3718 struct scsi_mode_select_6 *scsi_cmd; 3719 3720 scsi_cmd = (struct scsi_mode_select_6 *)&csio->cdb_io.cdb_bytes; 3721 bzero(scsi_cmd, sizeof(*scsi_cmd)); 3722 scsi_cmd->opcode = MODE_SELECT_6; 3723 if (scsi_page_fmt != 0) 3724 scsi_cmd->byte2 |= SMS_PF; 3725 if (save_pages != 0) 3726 scsi_cmd->byte2 |= SMS_SP; 3727 scsi_cmd->length = param_len; 3728 cdb_len = sizeof(*scsi_cmd); 3729 } else { 3730 /* 3731 * Need a 10 byte cdb. 3732 */ 3733 struct scsi_mode_select_10 *scsi_cmd; 3734 3735 scsi_cmd = 3736 (struct scsi_mode_select_10 *)&csio->cdb_io.cdb_bytes; 3737 bzero(scsi_cmd, sizeof(*scsi_cmd)); 3738 scsi_cmd->opcode = MODE_SELECT_10; 3739 if (scsi_page_fmt != 0) 3740 scsi_cmd->byte2 |= SMS_PF; 3741 if (save_pages != 0) 3742 scsi_cmd->byte2 |= SMS_SP; 3743 scsi_ulto2b(param_len, scsi_cmd->length); 3744 cdb_len = sizeof(*scsi_cmd); 3745 } 3746 cam_fill_csio(csio, 3747 retries, 3748 cbfcnp, 3749 CAM_DIR_OUT, 3750 tag_action, 3751 param_buf, 3752 param_len, 3753 sense_len, 3754 cdb_len, 3755 timeout); 3756 } 3757 3758 void 3759 scsi_read_capacity_16(struct ccb_scsiio *csio, uint32_t retries, 3760 void (*cbfcnp)(struct cam_periph *, union ccb *), 3761 uint8_t tag_action, uint64_t lba, int reladr, int pmi, 3762 struct scsi_read_capacity_data_16 *rcap_buf, 3763 uint8_t sense_len, uint32_t timeout) 3764 { 3765 struct scsi_read_capacity_16 *scsi_cmd; 3766 3767 cam_fill_csio(csio, 3768 retries, 3769 cbfcnp, 3770 /*flags*/CAM_DIR_IN, 3771 tag_action, 3772 /*data_ptr*/(u_int8_t *)rcap_buf, 3773 /*dxfer_len*/sizeof(*rcap_buf), 3774 sense_len, 3775 sizeof(*scsi_cmd), 3776 timeout); 3777 scsi_cmd = (struct scsi_read_capacity_16 *)&csio->cdb_io.cdb_bytes; 3778 bzero(scsi_cmd, sizeof(*scsi_cmd)); 3779 scsi_cmd->opcode = READ_CAPACITY_16; 3780 scsi_cmd->service_action = SRC16_SERVICE_ACTION; 3781 scsi_u64to8b(lba, scsi_cmd->addr); 3782 scsi_ulto4b(sizeof(*rcap_buf), scsi_cmd->alloc_len); 3783 if (pmi) 3784 reladr |= SRC16_PMI; 3785 if (reladr) 3786 reladr |= SRC16_RELADR; 3787 } 3788 3789 /* 3790 * Prevent or allow the user to remove the media 3791 */ 3792 void 3793 scsi_prevent(struct ccb_scsiio *csio, u_int32_t retries, 3794 void (*cbfcnp)(struct cam_periph *, union ccb *), 3795 u_int8_t tag_action, u_int8_t action, 3796 u_int8_t sense_len, u_int32_t timeout) 3797 { 3798 struct scsi_prevent *scsi_cmd; 3799 3800 cam_fill_csio(csio, 3801 retries, 3802 cbfcnp, 3803 /*flags*/CAM_DIR_NONE, 3804 tag_action, 3805 /*data_ptr*/NULL, 3806 /*dxfer_len*/0, 3807 sense_len, 3808 sizeof(*scsi_cmd), 3809 timeout); 3810 3811 scsi_cmd = (struct scsi_prevent *)&csio->cdb_io.cdb_bytes; 3812 bzero(scsi_cmd, sizeof(*scsi_cmd)); 3813 scsi_cmd->opcode = PREVENT_ALLOW; 3814 scsi_cmd->how = action; 3815 } 3816 3817 /* XXX allow specification of address and PMI bit and LBA */ 3818 void 3819 scsi_read_capacity(struct ccb_scsiio *csio, u_int32_t retries, 3820 void (*cbfcnp)(struct cam_periph *, union ccb *), 3821 u_int8_t tag_action, 3822 struct scsi_read_capacity_data *rcap_buf, 3823 u_int8_t sense_len, u_int32_t timeout) 3824 { 3825 struct scsi_read_capacity *scsi_cmd; 3826 3827 cam_fill_csio(csio, 3828 retries, 3829 cbfcnp, 3830 /*flags*/CAM_DIR_IN, 3831 tag_action, 3832 /*data_ptr*/(u_int8_t *)rcap_buf, 3833 /*dxfer_len*/sizeof(*rcap_buf), 3834 sense_len, 3835 sizeof(*scsi_cmd), 3836 timeout); 3837 3838 scsi_cmd = (struct scsi_read_capacity *)&csio->cdb_io.cdb_bytes; 3839 bzero(scsi_cmd, sizeof(*scsi_cmd)); 3840 scsi_cmd->opcode = READ_CAPACITY; 3841 } 3842 3843 void 3844 scsi_report_luns(struct ccb_scsiio *csio, u_int32_t retries, 3845 void (*cbfcnp)(struct cam_periph *, union ccb *), 3846 u_int8_t tag_action, u_int8_t select_report, 3847 struct scsi_report_luns_data *rpl_buf, u_int32_t alloc_len, 3848 u_int8_t sense_len, u_int32_t timeout) 3849 { 3850 struct scsi_report_luns *scsi_cmd; 3851 3852 cam_fill_csio(csio, 3853 retries, 3854 cbfcnp, 3855 /*flags*/CAM_DIR_IN, 3856 tag_action, 3857 /*data_ptr*/(u_int8_t *)rpl_buf, 3858 /*dxfer_len*/alloc_len, 3859 sense_len, 3860 sizeof(*scsi_cmd), 3861 timeout); 3862 scsi_cmd = (struct scsi_report_luns *)&csio->cdb_io.cdb_bytes; 3863 bzero(scsi_cmd, sizeof(*scsi_cmd)); 3864 scsi_cmd->opcode = REPORT_LUNS; 3865 scsi_cmd->select_report = select_report; 3866 scsi_ulto4b(alloc_len, scsi_cmd->length); 3867 } 3868 3869 /* 3870 * Syncronize the media to the contents of the cache for 3871 * the given lba/count pair. Specifying 0/0 means sync 3872 * the whole cache. 3873 */ 3874 void 3875 scsi_synchronize_cache(struct ccb_scsiio *csio, u_int32_t retries, 3876 void (*cbfcnp)(struct cam_periph *, union ccb *), 3877 u_int8_t tag_action, u_int32_t begin_lba, 3878 u_int16_t lb_count, u_int8_t sense_len, 3879 u_int32_t timeout) 3880 { 3881 struct scsi_sync_cache *scsi_cmd; 3882 3883 cam_fill_csio(csio, 3884 retries, 3885 cbfcnp, 3886 /*flags*/CAM_DIR_NONE, 3887 tag_action, 3888 /*data_ptr*/NULL, 3889 /*dxfer_len*/0, 3890 sense_len, 3891 sizeof(*scsi_cmd), 3892 timeout); 3893 3894 scsi_cmd = (struct scsi_sync_cache *)&csio->cdb_io.cdb_bytes; 3895 bzero(scsi_cmd, sizeof(*scsi_cmd)); 3896 scsi_cmd->opcode = SYNCHRONIZE_CACHE; 3897 scsi_ulto4b(begin_lba, scsi_cmd->begin_lba); 3898 scsi_ulto2b(lb_count, scsi_cmd->lb_count); 3899 } 3900 3901 void 3902 scsi_read_write(struct ccb_scsiio *csio, u_int32_t retries, 3903 void (*cbfcnp)(struct cam_periph *, union ccb *), 3904 u_int8_t tag_action, int readop, u_int8_t byte2, 3905 int minimum_cmd_size, u_int64_t lba, u_int32_t block_count, 3906 u_int8_t *data_ptr, u_int32_t dxfer_len, u_int8_t sense_len, 3907 u_int32_t timeout) 3908 { 3909 u_int8_t cdb_len; 3910 3911 /* 3912 * Use the smallest possible command to perform the operation 3913 * as some legacy hardware does not support the 10 byte commands. 3914 * If any of the bits in byte2 is set, we have to go with a larger 3915 * command. 3916 */ 3917 if ((minimum_cmd_size < 10) 3918 && ((lba & 0x1fffff) == lba) 3919 && ((block_count & 0xff) == block_count) 3920 && (byte2 == 0)) { 3921 /* 3922 * We can fit in a 6 byte cdb. 3923 */ 3924 struct scsi_rw_6 *scsi_cmd; 3925 3926 scsi_cmd = (struct scsi_rw_6 *)&csio->cdb_io.cdb_bytes; 3927 scsi_cmd->opcode = readop ? READ_6 : WRITE_6; 3928 scsi_ulto3b(lba, scsi_cmd->addr); 3929 scsi_cmd->length = block_count & 0xff; 3930 scsi_cmd->control = 0; 3931 cdb_len = sizeof(*scsi_cmd); 3932 3933 CAM_DEBUG(csio->ccb_h.path, CAM_DEBUG_SUBTRACE, 3934 ("6byte: %x%x%x:%d:%d\n", scsi_cmd->addr[0], 3935 scsi_cmd->addr[1], scsi_cmd->addr[2], 3936 scsi_cmd->length, dxfer_len)); 3937 } else if ((minimum_cmd_size < 12) 3938 && ((block_count & 0xffff) == block_count) 3939 && ((lba & 0xffffffffU) == lba)) { 3940 /* 3941 * Need a 10 byte cdb. 3942 */ 3943 struct scsi_rw_10 *scsi_cmd; 3944 3945 scsi_cmd = (struct scsi_rw_10 *)&csio->cdb_io.cdb_bytes; 3946 scsi_cmd->opcode = readop ? READ_10 : WRITE_10; 3947 scsi_cmd->byte2 = byte2; 3948 scsi_ulto4b(lba, scsi_cmd->addr); 3949 scsi_cmd->reserved = 0; 3950 scsi_ulto2b(block_count, scsi_cmd->length); 3951 scsi_cmd->control = 0; 3952 cdb_len = sizeof(*scsi_cmd); 3953 3954 CAM_DEBUG(csio->ccb_h.path, CAM_DEBUG_SUBTRACE, 3955 ("10byte: %x%x%x%x:%x%x: %d\n", scsi_cmd->addr[0], 3956 scsi_cmd->addr[1], scsi_cmd->addr[2], 3957 scsi_cmd->addr[3], scsi_cmd->length[0], 3958 scsi_cmd->length[1], dxfer_len)); 3959 } else if ((minimum_cmd_size < 16) 3960 && ((block_count & 0xffffffffU) == block_count) 3961 && ((lba & 0xffffffffU) == lba)) { 3962 /* 3963 * The block count is too big for a 10 byte CDB, use a 12 3964 * byte CDB. 3965 */ 3966 struct scsi_rw_12 *scsi_cmd; 3967 3968 scsi_cmd = (struct scsi_rw_12 *)&csio->cdb_io.cdb_bytes; 3969 scsi_cmd->opcode = readop ? READ_12 : WRITE_12; 3970 scsi_cmd->byte2 = byte2; 3971 scsi_ulto4b(lba, scsi_cmd->addr); 3972 scsi_cmd->reserved = 0; 3973 scsi_ulto4b(block_count, scsi_cmd->length); 3974 scsi_cmd->control = 0; 3975 cdb_len = sizeof(*scsi_cmd); 3976 3977 CAM_DEBUG(csio->ccb_h.path, CAM_DEBUG_SUBTRACE, 3978 ("12byte: %x%x%x%x:%x%x%x%x: %d\n", scsi_cmd->addr[0], 3979 scsi_cmd->addr[1], scsi_cmd->addr[2], 3980 scsi_cmd->addr[3], scsi_cmd->length[0], 3981 scsi_cmd->length[1], scsi_cmd->length[2], 3982 scsi_cmd->length[3], dxfer_len)); 3983 } else { 3984 /* 3985 * 16 byte CDB. We'll only get here if the LBA is larger 3986 * than 2^32, or if the user asks for a 16 byte command. 3987 */ 3988 struct scsi_rw_16 *scsi_cmd; 3989 3990 scsi_cmd = (struct scsi_rw_16 *)&csio->cdb_io.cdb_bytes; 3991 scsi_cmd->opcode = readop ? READ_16 : WRITE_16; 3992 scsi_cmd->byte2 = byte2; 3993 scsi_u64to8b(lba, scsi_cmd->addr); 3994 scsi_cmd->reserved = 0; 3995 scsi_ulto4b(block_count, scsi_cmd->length); 3996 scsi_cmd->control = 0; 3997 cdb_len = sizeof(*scsi_cmd); 3998 } 3999 cam_fill_csio(csio, 4000 retries, 4001 cbfcnp, 4002 /*flags*/readop ? CAM_DIR_IN : CAM_DIR_OUT, 4003 tag_action, 4004 data_ptr, 4005 dxfer_len, 4006 sense_len, 4007 cdb_len, 4008 timeout); 4009 } 4010 4011 void 4012 scsi_start_stop(struct ccb_scsiio *csio, u_int32_t retries, 4013 void (*cbfcnp)(struct cam_periph *, union ccb *), 4014 u_int8_t tag_action, int start, int load_eject, 4015 int immediate, u_int8_t sense_len, u_int32_t timeout) 4016 { 4017 struct scsi_start_stop_unit *scsi_cmd; 4018 int extra_flags = 0; 4019 4020 scsi_cmd = (struct scsi_start_stop_unit *)&csio->cdb_io.cdb_bytes; 4021 bzero(scsi_cmd, sizeof(*scsi_cmd)); 4022 scsi_cmd->opcode = START_STOP_UNIT; 4023 if (start != 0) { 4024 scsi_cmd->how |= SSS_START; 4025 /* it takes a lot of power to start a drive */ 4026 extra_flags |= CAM_HIGH_POWER; 4027 } 4028 if (load_eject != 0) 4029 scsi_cmd->how |= SSS_LOEJ; 4030 if (immediate != 0) 4031 scsi_cmd->byte2 |= SSS_IMMED; 4032 4033 cam_fill_csio(csio, 4034 retries, 4035 cbfcnp, 4036 /*flags*/CAM_DIR_NONE | extra_flags, 4037 tag_action, 4038 /*data_ptr*/NULL, 4039 /*dxfer_len*/0, 4040 sense_len, 4041 sizeof(*scsi_cmd), 4042 timeout); 4043 4044 } 4045 4046 void 4047 scsi_log_sense(struct ccb_scsiio *csio, u_int32_t retries, 4048 void (*cbfcnp)(struct cam_periph *, union ccb *), 4049 u_int8_t tag_action, u_int8_t page_code, u_int8_t page, 4050 int save_pages, int ppc, u_int32_t paramptr, 4051 u_int8_t *param_buf, u_int32_t param_len, u_int8_t sense_len, 4052 u_int32_t timeout) 4053 { 4054 struct scsi_log_sense *scsi_cmd; 4055 u_int8_t cdb_len; 4056 4057 scsi_cmd = (struct scsi_log_sense *)&csio->cdb_io.cdb_bytes; 4058 bzero(scsi_cmd, sizeof(*scsi_cmd)); 4059 scsi_cmd->opcode = LOG_SENSE; 4060 scsi_cmd->page = page_code | page; 4061 if (save_pages != 0) 4062 scsi_cmd->byte2 |= SLS_SP; 4063 if (ppc != 0) 4064 scsi_cmd->byte2 |= SLS_PPC; 4065 scsi_ulto2b(paramptr, scsi_cmd->paramptr); 4066 scsi_ulto2b(param_len, scsi_cmd->length); 4067 cdb_len = sizeof(*scsi_cmd); 4068 4069 cam_fill_csio(csio, 4070 retries, 4071 cbfcnp, 4072 /*flags*/CAM_DIR_IN, 4073 tag_action, 4074 /*data_ptr*/param_buf, 4075 /*dxfer_len*/param_len, 4076 sense_len, 4077 cdb_len, 4078 timeout); 4079 } 4080 4081 void 4082 scsi_log_select(struct ccb_scsiio *csio, u_int32_t retries, 4083 void (*cbfcnp)(struct cam_periph *, union ccb *), 4084 u_int8_t tag_action, u_int8_t page_code, int save_pages, 4085 int pc_reset, u_int8_t *param_buf, u_int32_t param_len, 4086 u_int8_t sense_len, u_int32_t timeout) 4087 { 4088 struct scsi_log_select *scsi_cmd; 4089 u_int8_t cdb_len; 4090 4091 scsi_cmd = (struct scsi_log_select *)&csio->cdb_io.cdb_bytes; 4092 bzero(scsi_cmd, sizeof(*scsi_cmd)); 4093 scsi_cmd->opcode = LOG_SELECT; 4094 scsi_cmd->page = page_code & SLS_PAGE_CODE; 4095 if (save_pages != 0) 4096 scsi_cmd->byte2 |= SLS_SP; 4097 if (pc_reset != 0) 4098 scsi_cmd->byte2 |= SLS_PCR; 4099 scsi_ulto2b(param_len, scsi_cmd->length); 4100 cdb_len = sizeof(*scsi_cmd); 4101 4102 cam_fill_csio(csio, 4103 retries, 4104 cbfcnp, 4105 /*flags*/CAM_DIR_OUT, 4106 tag_action, 4107 /*data_ptr*/param_buf, 4108 /*dxfer_len*/param_len, 4109 sense_len, 4110 cdb_len, 4111 timeout); 4112 } 4113 4114 /* 4115 * Try make as good a match as possible with 4116 * available sub drivers 4117 */ 4118 int 4119 scsi_inquiry_match(caddr_t inqbuffer, caddr_t table_entry) 4120 { 4121 struct scsi_inquiry_pattern *entry; 4122 struct scsi_inquiry_data *inq; 4123 4124 entry = (struct scsi_inquiry_pattern *)table_entry; 4125 inq = (struct scsi_inquiry_data *)inqbuffer; 4126 4127 if (((SID_TYPE(inq) == entry->type) 4128 || (entry->type == T_ANY)) 4129 && (SID_IS_REMOVABLE(inq) ? entry->media_type & SIP_MEDIA_REMOVABLE 4130 : entry->media_type & SIP_MEDIA_FIXED) 4131 && (cam_strmatch(inq->vendor, entry->vendor, sizeof(inq->vendor)) == 0) 4132 && (cam_strmatch(inq->product, entry->product, 4133 sizeof(inq->product)) == 0) 4134 && (cam_strmatch(inq->revision, entry->revision, 4135 sizeof(inq->revision)) == 0)) { 4136 return (0); 4137 } 4138 return (-1); 4139 } 4140 4141 #ifdef _KERNEL 4142 static void 4143 init_scsi_delay(void) 4144 { 4145 int delay; 4146 4147 delay = SCSI_DELAY; 4148 TUNABLE_INT_FETCH("kern.cam.scsi_delay", &delay); 4149 4150 if (set_scsi_delay(delay) != 0) { 4151 kprintf("cam: invalid value for tunable kern.cam.scsi_delay\n"); 4152 set_scsi_delay(SCSI_DELAY); 4153 } 4154 } 4155 SYSINIT(scsi_delay, SI_BOOT1_TUNABLES, SI_ORDER_ANY, init_scsi_delay, NULL); 4156 4157 static int 4158 sysctl_scsi_delay(SYSCTL_HANDLER_ARGS) 4159 { 4160 int error, delay; 4161 4162 delay = scsi_delay; 4163 error = sysctl_handle_int(oidp, &delay, 0, req); 4164 if (error != 0 || req->newptr == NULL) 4165 return (error); 4166 return (set_scsi_delay(delay)); 4167 } 4168 SYSCTL_PROC(_kern_cam, OID_AUTO, scsi_delay, CTLTYPE_INT|CTLFLAG_RW, 4169 0, 0, sysctl_scsi_delay, "I", 4170 "Delay to allow devices to settle after a SCSI bus reset (ms)"); 4171 4172 static int 4173 set_scsi_delay(int delay) 4174 { 4175 /* 4176 * If someone sets this to 0, we assume that they want the 4177 * minimum allowable bus settle delay. 4178 */ 4179 if (delay == 0) { 4180 kprintf("cam: using minimum scsi_delay (%dms)\n", 4181 SCSI_MIN_DELAY); 4182 delay = SCSI_MIN_DELAY; 4183 } 4184 if (delay < SCSI_MIN_DELAY) 4185 return (EINVAL); 4186 scsi_delay = delay; 4187 return (0); 4188 } 4189 #endif /* _KERNEL */ 4190 4191 /* 4192 * Try make as good a match as possible with 4193 * available sub drivers 4194 */ 4195 int 4196 scsi_static_inquiry_match(caddr_t inqbuffer, caddr_t table_entry) 4197 { 4198 struct scsi_static_inquiry_pattern *entry; 4199 struct scsi_inquiry_data *inq; 4200 4201 entry = (struct scsi_static_inquiry_pattern *)table_entry; 4202 inq = (struct scsi_inquiry_data *)inqbuffer; 4203 4204 if (((SID_TYPE(inq) == entry->type) 4205 || (entry->type == T_ANY)) 4206 && (SID_IS_REMOVABLE(inq) ? entry->media_type & SIP_MEDIA_REMOVABLE 4207 : entry->media_type & SIP_MEDIA_FIXED) 4208 && (cam_strmatch(inq->vendor, entry->vendor, sizeof(inq->vendor)) == 0) 4209 && (cam_strmatch(inq->product, entry->product, 4210 sizeof(inq->product)) == 0) 4211 && (cam_strmatch(inq->revision, entry->revision, 4212 sizeof(inq->revision)) == 0)) { 4213 return (0); 4214 } 4215 return (-1); 4216 } 4217