1 /*- 2 * Copyright (c) 2009 Alexander Motin <mav@FreeBSD.org> 3 * All rights reserved. 4 * 5 * Redistribution and use in source and binary forms, with or without 6 * modification, are permitted provided that the following conditions 7 * are met: 8 * 1. Redistributions of source code must retain the above copyright 9 * notice, this list of conditions and the following disclaimer, 10 * without modification, immediately at the beginning of the file. 11 * 2. Redistributions in binary form must reproduce the above copyright 12 * notice, this list of conditions and the following disclaimer in the 13 * documentation and/or other materials provided with the distribution. 14 * 15 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 16 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 17 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 18 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 19 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 20 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 21 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 22 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 23 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 24 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 25 */ 26 27 #include <sys/cdefs.h> 28 __FBSDID("$FreeBSD$"); 29 30 #include "opt_ada.h" 31 32 #include <sys/param.h> 33 34 #ifdef _KERNEL 35 #include <sys/systm.h> 36 #include <sys/kernel.h> 37 #include <sys/bio.h> 38 #include <sys/sysctl.h> 39 #include <sys/taskqueue.h> 40 #include <sys/lock.h> 41 #include <sys/mutex.h> 42 #include <sys/conf.h> 43 #include <sys/devicestat.h> 44 #include <sys/eventhandler.h> 45 #include <sys/malloc.h> 46 #include <sys/endian.h> 47 #include <sys/cons.h> 48 #include <sys/proc.h> 49 #include <sys/reboot.h> 50 #include <sys/sbuf.h> 51 #include <geom/geom_disk.h> 52 #endif /* _KERNEL */ 53 54 #ifndef _KERNEL 55 #include <stdio.h> 56 #include <string.h> 57 #endif /* _KERNEL */ 58 59 #include <cam/cam.h> 60 #include <cam/cam_ccb.h> 61 #include <cam/cam_periph.h> 62 #include <cam/cam_xpt_periph.h> 63 #include <cam/scsi/scsi_all.h> 64 #include <cam/scsi/scsi_da.h> 65 #include <cam/cam_sim.h> 66 #include <cam/cam_iosched.h> 67 68 #include <cam/ata/ata_all.h> 69 70 #include <machine/md_var.h> /* geometry translation */ 71 72 #ifdef _KERNEL 73 74 #define ATA_MAX_28BIT_LBA 268435455UL 75 76 extern int iosched_debug; 77 78 typedef enum { 79 ADA_STATE_RAHEAD, 80 ADA_STATE_WCACHE, 81 ADA_STATE_LOGDIR, 82 ADA_STATE_IDDIR, 83 ADA_STATE_SUP_CAP, 84 ADA_STATE_ZONE, 85 ADA_STATE_NORMAL 86 } ada_state; 87 88 typedef enum { 89 ADA_FLAG_CAN_48BIT = 0x00000002, 90 ADA_FLAG_CAN_FLUSHCACHE = 0x00000004, 91 ADA_FLAG_CAN_NCQ = 0x00000008, 92 ADA_FLAG_CAN_DMA = 0x00000010, 93 ADA_FLAG_NEED_OTAG = 0x00000020, 94 ADA_FLAG_WAS_OTAG = 0x00000040, 95 ADA_FLAG_CAN_TRIM = 0x00000080, 96 ADA_FLAG_OPEN = 0x00000100, 97 ADA_FLAG_SCTX_INIT = 0x00000200, 98 ADA_FLAG_CAN_CFA = 0x00000400, 99 ADA_FLAG_CAN_POWERMGT = 0x00000800, 100 ADA_FLAG_CAN_DMA48 = 0x00001000, 101 ADA_FLAG_CAN_LOG = 0x00002000, 102 ADA_FLAG_CAN_IDLOG = 0x00004000, 103 ADA_FLAG_CAN_SUPCAP = 0x00008000, 104 ADA_FLAG_CAN_ZONE = 0x00010000, 105 ADA_FLAG_CAN_WCACHE = 0x00020000, 106 ADA_FLAG_CAN_RAHEAD = 0x00040000, 107 ADA_FLAG_PROBED = 0x00080000, 108 ADA_FLAG_ANNOUNCED = 0x00100000, 109 ADA_FLAG_DIRTY = 0x00200000, 110 ADA_FLAG_CAN_NCQ_TRIM = 0x00400000, /* CAN_TRIM also set */ 111 ADA_FLAG_PIM_ATA_EXT = 0x00800000 112 } ada_flags; 113 114 typedef enum { 115 ADA_Q_NONE = 0x00, 116 ADA_Q_4K = 0x01, 117 ADA_Q_NCQ_TRIM_BROKEN = 0x02, 118 ADA_Q_LOG_BROKEN = 0x04, 119 ADA_Q_SMR_DM = 0x08 120 } ada_quirks; 121 122 #define ADA_Q_BIT_STRING \ 123 "\020" \ 124 "\0014K" \ 125 "\002NCQ_TRIM_BROKEN" \ 126 "\003LOG_BROKEN" \ 127 "\004SMR_DM" 128 129 typedef enum { 130 ADA_CCB_RAHEAD = 0x01, 131 ADA_CCB_WCACHE = 0x02, 132 ADA_CCB_BUFFER_IO = 0x03, 133 ADA_CCB_DUMP = 0x05, 134 ADA_CCB_TRIM = 0x06, 135 ADA_CCB_LOGDIR = 0x07, 136 ADA_CCB_IDDIR = 0x08, 137 ADA_CCB_SUP_CAP = 0x09, 138 ADA_CCB_ZONE = 0x0a, 139 ADA_CCB_TYPE_MASK = 0x0F, 140 } ada_ccb_state; 141 142 typedef enum { 143 ADA_ZONE_NONE = 0x00, 144 ADA_ZONE_DRIVE_MANAGED = 0x01, 145 ADA_ZONE_HOST_AWARE = 0x02, 146 ADA_ZONE_HOST_MANAGED = 0x03 147 } ada_zone_mode; 148 149 typedef enum { 150 ADA_ZONE_FLAG_RZ_SUP = 0x0001, 151 ADA_ZONE_FLAG_OPEN_SUP = 0x0002, 152 ADA_ZONE_FLAG_CLOSE_SUP = 0x0004, 153 ADA_ZONE_FLAG_FINISH_SUP = 0x0008, 154 ADA_ZONE_FLAG_RWP_SUP = 0x0010, 155 ADA_ZONE_FLAG_SUP_MASK = (ADA_ZONE_FLAG_RZ_SUP | 156 ADA_ZONE_FLAG_OPEN_SUP | 157 ADA_ZONE_FLAG_CLOSE_SUP | 158 ADA_ZONE_FLAG_FINISH_SUP | 159 ADA_ZONE_FLAG_RWP_SUP), 160 ADA_ZONE_FLAG_URSWRZ = 0x0020, 161 ADA_ZONE_FLAG_OPT_SEQ_SET = 0x0040, 162 ADA_ZONE_FLAG_OPT_NONSEQ_SET = 0x0080, 163 ADA_ZONE_FLAG_MAX_SEQ_SET = 0x0100, 164 ADA_ZONE_FLAG_SET_MASK = (ADA_ZONE_FLAG_OPT_SEQ_SET | 165 ADA_ZONE_FLAG_OPT_NONSEQ_SET | 166 ADA_ZONE_FLAG_MAX_SEQ_SET) 167 } ada_zone_flags; 168 169 static struct ada_zone_desc { 170 ada_zone_flags value; 171 const char *desc; 172 } ada_zone_desc_table[] = { 173 {ADA_ZONE_FLAG_RZ_SUP, "Report Zones" }, 174 {ADA_ZONE_FLAG_OPEN_SUP, "Open" }, 175 {ADA_ZONE_FLAG_CLOSE_SUP, "Close" }, 176 {ADA_ZONE_FLAG_FINISH_SUP, "Finish" }, 177 {ADA_ZONE_FLAG_RWP_SUP, "Reset Write Pointer" }, 178 }; 179 180 181 /* Offsets into our private area for storing information */ 182 #define ccb_state ppriv_field0 183 #define ccb_bp ppriv_ptr1 184 185 typedef enum { 186 ADA_DELETE_NONE, 187 ADA_DELETE_DISABLE, 188 ADA_DELETE_CFA_ERASE, 189 ADA_DELETE_DSM_TRIM, 190 ADA_DELETE_NCQ_DSM_TRIM, 191 ADA_DELETE_MIN = ADA_DELETE_CFA_ERASE, 192 ADA_DELETE_MAX = ADA_DELETE_NCQ_DSM_TRIM, 193 } ada_delete_methods; 194 195 static const char *ada_delete_method_names[] = 196 { "NONE", "DISABLE", "CFA_ERASE", "DSM_TRIM", "NCQ_DSM_TRIM" }; 197 #if 0 198 static const char *ada_delete_method_desc[] = 199 { "NONE", "DISABLED", "CFA Erase", "DSM Trim", "DSM Trim via NCQ" }; 200 #endif 201 202 struct disk_params { 203 u_int8_t heads; 204 u_int8_t secs_per_track; 205 u_int32_t cylinders; 206 u_int32_t secsize; /* Number of bytes/logical sector */ 207 u_int64_t sectors; /* Total number sectors */ 208 }; 209 210 #define TRIM_MAX_BLOCKS 8 211 #define TRIM_MAX_RANGES (TRIM_MAX_BLOCKS * ATA_DSM_BLK_RANGES) 212 struct trim_request { 213 uint8_t data[TRIM_MAX_RANGES * ATA_DSM_RANGE_SIZE]; 214 TAILQ_HEAD(, bio) bps; 215 }; 216 217 struct ada_softc { 218 struct cam_iosched_softc *cam_iosched; 219 int outstanding_cmds; /* Number of active commands */ 220 int refcount; /* Active xpt_action() calls */ 221 ada_state state; 222 ada_flags flags; 223 ada_zone_mode zone_mode; 224 ada_zone_flags zone_flags; 225 struct ata_gp_log_dir ata_logdir; 226 int valid_logdir_len; 227 struct ata_identify_log_pages ata_iddir; 228 int valid_iddir_len; 229 uint64_t optimal_seq_zones; 230 uint64_t optimal_nonseq_zones; 231 uint64_t max_seq_zones; 232 ada_quirks quirks; 233 ada_delete_methods delete_method; 234 int trim_max_ranges; 235 int read_ahead; 236 int write_cache; 237 int unmappedio; 238 int rotating; 239 #ifdef ADA_TEST_FAILURE 240 int force_read_error; 241 int force_write_error; 242 int periodic_read_error; 243 int periodic_read_count; 244 #endif 245 struct disk_params params; 246 struct disk *disk; 247 struct task sysctl_task; 248 struct sysctl_ctx_list sysctl_ctx; 249 struct sysctl_oid *sysctl_tree; 250 struct callout sendordered_c; 251 struct trim_request trim_req; 252 #ifdef CAM_IO_STATS 253 struct sysctl_ctx_list sysctl_stats_ctx; 254 struct sysctl_oid *sysctl_stats_tree; 255 u_int timeouts; 256 u_int errors; 257 u_int invalidations; 258 #endif 259 #define ADA_ANNOUNCETMP_SZ 80 260 char announce_temp[ADA_ANNOUNCETMP_SZ]; 261 #define ADA_ANNOUNCE_SZ 400 262 char announce_buffer[ADA_ANNOUNCE_SZ]; 263 }; 264 265 struct ada_quirk_entry { 266 struct scsi_inquiry_pattern inq_pat; 267 ada_quirks quirks; 268 }; 269 270 static struct ada_quirk_entry ada_quirk_table[] = 271 { 272 { 273 /* Hitachi Advanced Format (4k) drives */ 274 { T_DIRECT, SIP_MEDIA_FIXED, "*", "Hitachi H??????????E3*", "*" }, 275 /*quirks*/ADA_Q_4K 276 }, 277 { 278 /* Samsung Advanced Format (4k) drives */ 279 { T_DIRECT, SIP_MEDIA_FIXED, "*", "SAMSUNG HD155UI*", "*" }, 280 /*quirks*/ADA_Q_4K 281 }, 282 { 283 /* Samsung Advanced Format (4k) drives */ 284 { T_DIRECT, SIP_MEDIA_FIXED, "*", "SAMSUNG HD204UI*", "*" }, 285 /*quirks*/ADA_Q_4K 286 }, 287 { 288 /* Seagate Barracuda Green Advanced Format (4k) drives */ 289 { T_DIRECT, SIP_MEDIA_FIXED, "*", "ST????DL*", "*" }, 290 /*quirks*/ADA_Q_4K 291 }, 292 { 293 /* Seagate Barracuda Advanced Format (4k) drives */ 294 { T_DIRECT, SIP_MEDIA_FIXED, "*", "ST???DM*", "*" }, 295 /*quirks*/ADA_Q_4K 296 }, 297 { 298 /* Seagate Barracuda Advanced Format (4k) drives */ 299 { T_DIRECT, SIP_MEDIA_FIXED, "*", "ST????DM*", "*" }, 300 /*quirks*/ADA_Q_4K 301 }, 302 { 303 /* Seagate Momentus Advanced Format (4k) drives */ 304 { T_DIRECT, SIP_MEDIA_FIXED, "*", "ST9500423AS*", "*" }, 305 /*quirks*/ADA_Q_4K 306 }, 307 { 308 /* Seagate Momentus Advanced Format (4k) drives */ 309 { T_DIRECT, SIP_MEDIA_FIXED, "*", "ST9500424AS*", "*" }, 310 /*quirks*/ADA_Q_4K 311 }, 312 { 313 /* Seagate Momentus Advanced Format (4k) drives */ 314 { T_DIRECT, SIP_MEDIA_FIXED, "*", "ST9640423AS*", "*" }, 315 /*quirks*/ADA_Q_4K 316 }, 317 { 318 /* Seagate Momentus Advanced Format (4k) drives */ 319 { T_DIRECT, SIP_MEDIA_FIXED, "*", "ST9640424AS*", "*" }, 320 /*quirks*/ADA_Q_4K 321 }, 322 { 323 /* Seagate Momentus Advanced Format (4k) drives */ 324 { T_DIRECT, SIP_MEDIA_FIXED, "*", "ST9750420AS*", "*" }, 325 /*quirks*/ADA_Q_4K 326 }, 327 { 328 /* Seagate Momentus Advanced Format (4k) drives */ 329 { T_DIRECT, SIP_MEDIA_FIXED, "*", "ST9750422AS*", "*" }, 330 /*quirks*/ADA_Q_4K 331 }, 332 { 333 /* Seagate Momentus Advanced Format (4k) drives */ 334 { T_DIRECT, SIP_MEDIA_FIXED, "*", "ST9750423AS*", "*" }, 335 /*quirks*/ADA_Q_4K 336 }, 337 { 338 /* Seagate Momentus Thin Advanced Format (4k) drives */ 339 { T_DIRECT, SIP_MEDIA_FIXED, "*", "ST???LT*", "*" }, 340 /*quirks*/ADA_Q_4K 341 }, 342 { 343 /* WDC Caviar Red Advanced Format (4k) drives */ 344 { T_DIRECT, SIP_MEDIA_FIXED, "*", "WDC WD????CX*", "*" }, 345 /*quirks*/ADA_Q_4K 346 }, 347 { 348 /* WDC Caviar Green Advanced Format (4k) drives */ 349 { T_DIRECT, SIP_MEDIA_FIXED, "*", "WDC WD????RS*", "*" }, 350 /*quirks*/ADA_Q_4K 351 }, 352 { 353 /* WDC Caviar Green/Red Advanced Format (4k) drives */ 354 { T_DIRECT, SIP_MEDIA_FIXED, "*", "WDC WD????RX*", "*" }, 355 /*quirks*/ADA_Q_4K 356 }, 357 { 358 /* WDC Caviar Red Advanced Format (4k) drives */ 359 { T_DIRECT, SIP_MEDIA_FIXED, "*", "WDC WD??????CX*", "*" }, 360 /*quirks*/ADA_Q_4K 361 }, 362 { 363 /* WDC Caviar Black Advanced Format (4k) drives */ 364 { T_DIRECT, SIP_MEDIA_FIXED, "*", "WDC WD??????EX*", "*" }, 365 /*quirks*/ADA_Q_4K 366 }, 367 { 368 /* WDC Caviar Green Advanced Format (4k) drives */ 369 { T_DIRECT, SIP_MEDIA_FIXED, "*", "WDC WD??????RS*", "*" }, 370 /*quirks*/ADA_Q_4K 371 }, 372 { 373 /* WDC Caviar Green Advanced Format (4k) drives */ 374 { T_DIRECT, SIP_MEDIA_FIXED, "*", "WDC WD??????RX*", "*" }, 375 /*quirks*/ADA_Q_4K 376 }, 377 { 378 /* WDC Scorpio Black Advanced Format (4k) drives */ 379 { T_DIRECT, SIP_MEDIA_FIXED, "*", "WDC WD???PKT*", "*" }, 380 /*quirks*/ADA_Q_4K 381 }, 382 { 383 /* WDC Scorpio Black Advanced Format (4k) drives */ 384 { T_DIRECT, SIP_MEDIA_FIXED, "*", "WDC WD?????PKT*", "*" }, 385 /*quirks*/ADA_Q_4K 386 }, 387 { 388 /* WDC Scorpio Blue Advanced Format (4k) drives */ 389 { T_DIRECT, SIP_MEDIA_FIXED, "*", "WDC WD???PVT*", "*" }, 390 /*quirks*/ADA_Q_4K 391 }, 392 { 393 /* WDC Scorpio Blue Advanced Format (4k) drives */ 394 { T_DIRECT, SIP_MEDIA_FIXED, "*", "WDC WD?????PVT*", "*" }, 395 /*quirks*/ADA_Q_4K 396 }, 397 /* SSDs */ 398 { 399 /* 400 * Corsair Force 2 SSDs 401 * 4k optimised & trim only works in 4k requests + 4k aligned 402 */ 403 { T_DIRECT, SIP_MEDIA_FIXED, "*", "Corsair CSSD-F*", "*" }, 404 /*quirks*/ADA_Q_4K 405 }, 406 { 407 /* 408 * Corsair Force 3 SSDs 409 * 4k optimised & trim only works in 4k requests + 4k aligned 410 */ 411 { T_DIRECT, SIP_MEDIA_FIXED, "*", "Corsair Force 3*", "*" }, 412 /*quirks*/ADA_Q_4K 413 }, 414 { 415 /* 416 * Corsair Neutron GTX SSDs 417 * 4k optimised & trim only works in 4k requests + 4k aligned 418 */ 419 { T_DIRECT, SIP_MEDIA_FIXED, "*", "Corsair Neutron GTX*", "*" }, 420 /*quirks*/ADA_Q_4K 421 }, 422 { 423 /* 424 * Corsair Force GT & GS SSDs 425 * 4k optimised & trim only works in 4k requests + 4k aligned 426 */ 427 { T_DIRECT, SIP_MEDIA_FIXED, "*", "Corsair Force G*", "*" }, 428 /*quirks*/ADA_Q_4K 429 }, 430 { 431 /* 432 * Crucial M4 SSDs 433 * 4k optimised & trim only works in 4k requests + 4k aligned 434 */ 435 { T_DIRECT, SIP_MEDIA_FIXED, "*", "M4-CT???M4SSD2*", "*" }, 436 /*quirks*/ADA_Q_4K 437 }, 438 { 439 /* 440 * Crucial M500 SSDs MU07 firmware 441 * NCQ Trim works 442 */ 443 { T_DIRECT, SIP_MEDIA_FIXED, "*", "Crucial CT*M500*", "MU07" }, 444 /*quirks*/0 445 }, 446 { 447 /* 448 * Crucial M500 SSDs all other firmware 449 * NCQ Trim doesn't work 450 */ 451 { T_DIRECT, SIP_MEDIA_FIXED, "*", "Crucial CT*M500*", "*" }, 452 /*quirks*/ADA_Q_NCQ_TRIM_BROKEN 453 }, 454 { 455 /* 456 * Crucial M550 SSDs 457 * NCQ Trim doesn't work, but only on MU01 firmware 458 */ 459 { T_DIRECT, SIP_MEDIA_FIXED, "*", "Crucial CT*M550*", "MU01" }, 460 /*quirks*/ADA_Q_NCQ_TRIM_BROKEN 461 }, 462 { 463 /* 464 * Crucial MX100 SSDs 465 * NCQ Trim doesn't work, but only on MU01 firmware 466 */ 467 { T_DIRECT, SIP_MEDIA_FIXED, "*", "Crucial CT*MX100*", "MU01" }, 468 /*quirks*/ADA_Q_NCQ_TRIM_BROKEN 469 }, 470 { 471 /* 472 * Crucial RealSSD C300 SSDs 473 * 4k optimised 474 */ 475 { T_DIRECT, SIP_MEDIA_FIXED, "*", "C300-CTFDDAC???MAG*", 476 "*" }, /*quirks*/ADA_Q_4K 477 }, 478 { 479 /* 480 * FCCT M500 SSDs 481 * NCQ Trim doesn't work 482 */ 483 { T_DIRECT, SIP_MEDIA_FIXED, "*", "FCCT*M500*", "*" }, 484 /*quirks*/ADA_Q_NCQ_TRIM_BROKEN 485 }, 486 { 487 /* 488 * Intel 320 Series SSDs 489 * 4k optimised & trim only works in 4k requests + 4k aligned 490 */ 491 { T_DIRECT, SIP_MEDIA_FIXED, "*", "INTEL SSDSA2CW*", "*" }, 492 /*quirks*/ADA_Q_4K 493 }, 494 { 495 /* 496 * Intel 330 Series SSDs 497 * 4k optimised & trim only works in 4k requests + 4k aligned 498 */ 499 { T_DIRECT, SIP_MEDIA_FIXED, "*", "INTEL SSDSC2CT*", "*" }, 500 /*quirks*/ADA_Q_4K 501 }, 502 { 503 /* 504 * Intel 510 Series SSDs 505 * 4k optimised & trim only works in 4k requests + 4k aligned 506 */ 507 { T_DIRECT, SIP_MEDIA_FIXED, "*", "INTEL SSDSC2MH*", "*" }, 508 /*quirks*/ADA_Q_4K 509 }, 510 { 511 /* 512 * Intel 520 Series SSDs 513 * 4k optimised & trim only works in 4k requests + 4k aligned 514 */ 515 { T_DIRECT, SIP_MEDIA_FIXED, "*", "INTEL SSDSC2BW*", "*" }, 516 /*quirks*/ADA_Q_4K 517 }, 518 { 519 /* 520 * Intel S3610 Series SSDs 521 * 4k optimised & trim only works in 4k requests + 4k aligned 522 */ 523 { T_DIRECT, SIP_MEDIA_FIXED, "*", "INTEL SSDSC2BX*", "*" }, 524 /*quirks*/ADA_Q_4K 525 }, 526 { 527 /* 528 * Intel X25-M Series SSDs 529 * 4k optimised & trim only works in 4k requests + 4k aligned 530 */ 531 { T_DIRECT, SIP_MEDIA_FIXED, "*", "INTEL SSDSA2M*", "*" }, 532 /*quirks*/ADA_Q_4K 533 }, 534 { 535 /* 536 * Kingston E100 Series SSDs 537 * 4k optimised & trim only works in 4k requests + 4k aligned 538 */ 539 { T_DIRECT, SIP_MEDIA_FIXED, "*", "KINGSTON SE100S3*", "*" }, 540 /*quirks*/ADA_Q_4K 541 }, 542 { 543 /* 544 * Kingston HyperX 3k SSDs 545 * 4k optimised & trim only works in 4k requests + 4k aligned 546 */ 547 { T_DIRECT, SIP_MEDIA_FIXED, "*", "KINGSTON SH103S3*", "*" }, 548 /*quirks*/ADA_Q_4K 549 }, 550 { 551 /* 552 * Marvell SSDs (entry taken from OpenSolaris) 553 * 4k optimised & trim only works in 4k requests + 4k aligned 554 */ 555 { T_DIRECT, SIP_MEDIA_FIXED, "*", "MARVELL SD88SA02*", "*" }, 556 /*quirks*/ADA_Q_4K 557 }, 558 { 559 /* 560 * Micron M500 SSDs firmware MU07 561 * NCQ Trim works? 562 */ 563 { T_DIRECT, SIP_MEDIA_FIXED, "*", "Micron M500*", "MU07" }, 564 /*quirks*/0 565 }, 566 { 567 /* 568 * Micron M500 SSDs all other firmware 569 * NCQ Trim doesn't work 570 */ 571 { T_DIRECT, SIP_MEDIA_FIXED, "*", "Micron M500*", "*" }, 572 /*quirks*/ADA_Q_NCQ_TRIM_BROKEN 573 }, 574 { 575 /* 576 * Micron M5[15]0 SSDs 577 * NCQ Trim doesn't work, but only MU01 firmware 578 */ 579 { T_DIRECT, SIP_MEDIA_FIXED, "*", "Micron M5[15]0*", "MU01" }, 580 /*quirks*/ADA_Q_NCQ_TRIM_BROKEN 581 }, 582 { 583 /* 584 * Micron 5100 SSDs 585 * 4k optimised & trim only works in 4k requests + 4k aligned 586 */ 587 { T_DIRECT, SIP_MEDIA_FIXED, "*", "Micron 5100 MTFDDAK*", "*" }, 588 /*quirks*/ADA_Q_4K 589 }, 590 { 591 /* 592 * OCZ Agility 2 SSDs 593 * 4k optimised & trim only works in 4k requests + 4k aligned 594 */ 595 { T_DIRECT, SIP_MEDIA_FIXED, "*", "OCZ-AGILITY2*", "*" }, 596 /*quirks*/ADA_Q_4K 597 }, 598 { 599 /* 600 * OCZ Agility 3 SSDs 601 * 4k optimised & trim only works in 4k requests + 4k aligned 602 */ 603 { T_DIRECT, SIP_MEDIA_FIXED, "*", "OCZ-AGILITY3*", "*" }, 604 /*quirks*/ADA_Q_4K 605 }, 606 { 607 /* 608 * OCZ Deneva R Series SSDs 609 * 4k optimised & trim only works in 4k requests + 4k aligned 610 */ 611 { T_DIRECT, SIP_MEDIA_FIXED, "*", "DENRSTE251M45*", "*" }, 612 /*quirks*/ADA_Q_4K 613 }, 614 { 615 /* 616 * OCZ Vertex 2 SSDs (inc pro series) 617 * 4k optimised & trim only works in 4k requests + 4k aligned 618 */ 619 { T_DIRECT, SIP_MEDIA_FIXED, "*", "OCZ?VERTEX2*", "*" }, 620 /*quirks*/ADA_Q_4K 621 }, 622 { 623 /* 624 * OCZ Vertex 3 SSDs 625 * 4k optimised & trim only works in 4k requests + 4k aligned 626 */ 627 { T_DIRECT, SIP_MEDIA_FIXED, "*", "OCZ-VERTEX3*", "*" }, 628 /*quirks*/ADA_Q_4K 629 }, 630 { 631 /* 632 * OCZ Vertex 4 SSDs 633 * 4k optimised & trim only works in 4k requests + 4k aligned 634 */ 635 { T_DIRECT, SIP_MEDIA_FIXED, "*", "OCZ-VERTEX4*", "*" }, 636 /*quirks*/ADA_Q_4K 637 }, 638 { 639 /* 640 * Samsung 830 Series SSDs 641 * 4k optimised, NCQ TRIM Broken (normal TRIM is fine) 642 */ 643 { T_DIRECT, SIP_MEDIA_FIXED, "*", "SAMSUNG SSD 830 Series*", "*" }, 644 /*quirks*/ADA_Q_4K | ADA_Q_NCQ_TRIM_BROKEN 645 }, 646 { 647 /* 648 * Samsung 840 SSDs 649 * 4k optimised, NCQ TRIM Broken (normal TRIM is fine) 650 */ 651 { T_DIRECT, SIP_MEDIA_FIXED, "*", "Samsung SSD 840*", "*" }, 652 /*quirks*/ADA_Q_4K | ADA_Q_NCQ_TRIM_BROKEN 653 }, 654 { 655 /* 656 * Samsung 850 SSDs 657 * 4k optimised, NCQ TRIM broken (normal TRIM fine) 658 */ 659 { T_DIRECT, SIP_MEDIA_FIXED, "*", "Samsung SSD 850*", "*" }, 660 /*quirks*/ADA_Q_4K | ADA_Q_NCQ_TRIM_BROKEN 661 }, 662 { 663 /* 664 * Samsung SM863 Series SSDs (MZ7KM*) 665 * 4k optimised, NCQ believed to be working 666 */ 667 { T_DIRECT, SIP_MEDIA_FIXED, "*", "SAMSUNG MZ7KM*", "*" }, 668 /*quirks*/ADA_Q_4K 669 }, 670 { 671 /* 672 * Samsung 843T Series SSDs (MZ7WD*) 673 * Samsung PM851 Series SSDs (MZ7TE*) 674 * Samsung PM853T Series SSDs (MZ7GE*) 675 * 4k optimised, NCQ believed to be broken since these are 676 * appear to be built with the same controllers as the 840/850. 677 */ 678 { T_DIRECT, SIP_MEDIA_FIXED, "*", "SAMSUNG MZ7*", "*" }, 679 /*quirks*/ADA_Q_4K | ADA_Q_NCQ_TRIM_BROKEN 680 }, 681 { 682 /* 683 * Samsung PM851 Series SSDs Dell OEM 684 * device model "SAMSUNG SSD PM851 mSATA 256GB" 685 * 4k optimised, NCQ broken 686 */ 687 { T_DIRECT, SIP_MEDIA_FIXED, "*", "SAMSUNG SSD PM851*", "*" }, 688 /*quirks*/ADA_Q_4K | ADA_Q_NCQ_TRIM_BROKEN 689 }, 690 { 691 /* 692 * SuperTalent TeraDrive CT SSDs 693 * 4k optimised & trim only works in 4k requests + 4k aligned 694 */ 695 { T_DIRECT, SIP_MEDIA_FIXED, "*", "FTM??CT25H*", "*" }, 696 /*quirks*/ADA_Q_4K 697 }, 698 { 699 /* 700 * XceedIOPS SATA SSDs 701 * 4k optimised 702 */ 703 { T_DIRECT, SIP_MEDIA_FIXED, "*", "SG9XCS2D*", "*" }, 704 /*quirks*/ADA_Q_4K 705 }, 706 { 707 /* 708 * Samsung drive that doesn't support READ LOG EXT or 709 * READ LOG DMA EXT, despite reporting that it does in 710 * ATA identify data: 711 * SAMSUNG HD200HJ KF100-06 712 */ 713 { T_DIRECT, SIP_MEDIA_FIXED, "*", "SAMSUNG HD200*", "*" }, 714 /*quirks*/ADA_Q_LOG_BROKEN 715 }, 716 { 717 /* 718 * Samsung drive that doesn't support READ LOG EXT or 719 * READ LOG DMA EXT, despite reporting that it does in 720 * ATA identify data: 721 * SAMSUNG HD501LJ CR100-10 722 */ 723 { T_DIRECT, SIP_MEDIA_FIXED, "*", "SAMSUNG HD501*", "*" }, 724 /*quirks*/ADA_Q_LOG_BROKEN 725 }, 726 { 727 /* 728 * Seagate Lamarr 8TB Shingled Magnetic Recording (SMR) 729 * Drive Managed SATA hard drive. This drive doesn't report 730 * in firmware that it is a drive managed SMR drive. 731 */ 732 { T_DIRECT, SIP_MEDIA_FIXED, "*", "ST8000AS0002*", "*" }, 733 /*quirks*/ADA_Q_SMR_DM 734 }, 735 { 736 /* Default */ 737 { 738 T_ANY, SIP_MEDIA_REMOVABLE|SIP_MEDIA_FIXED, 739 /*vendor*/"*", /*product*/"*", /*revision*/"*" 740 }, 741 /*quirks*/0 742 }, 743 }; 744 745 static disk_strategy_t adastrategy; 746 static dumper_t adadump; 747 static periph_init_t adainit; 748 static void adadiskgonecb(struct disk *dp); 749 static periph_oninv_t adaoninvalidate; 750 static periph_dtor_t adacleanup; 751 static void adaasync(void *callback_arg, u_int32_t code, 752 struct cam_path *path, void *arg); 753 static int adazonemodesysctl(SYSCTL_HANDLER_ARGS); 754 static int adazonesupsysctl(SYSCTL_HANDLER_ARGS); 755 static void adasysctlinit(void *context, int pending); 756 static int adagetattr(struct bio *bp); 757 static void adasetflags(struct ada_softc *softc, 758 struct ccb_getdev *cgd); 759 static periph_ctor_t adaregister; 760 static void ada_dsmtrim(struct ada_softc *softc, struct bio *bp, 761 struct ccb_ataio *ataio); 762 static void ada_cfaerase(struct ada_softc *softc, struct bio *bp, 763 struct ccb_ataio *ataio); 764 static int ada_zone_bio_to_ata(int disk_zone_cmd); 765 static int ada_zone_cmd(struct cam_periph *periph, union ccb *ccb, 766 struct bio *bp, int *queue_ccb); 767 static periph_start_t adastart; 768 static void adaprobedone(struct cam_periph *periph, union ccb *ccb); 769 static void adazonedone(struct cam_periph *periph, union ccb *ccb); 770 static void adadone(struct cam_periph *periph, 771 union ccb *done_ccb); 772 static int adaerror(union ccb *ccb, u_int32_t cam_flags, 773 u_int32_t sense_flags); 774 static void adagetparams(struct cam_periph *periph, 775 struct ccb_getdev *cgd); 776 static timeout_t adasendorderedtag; 777 static void adashutdown(void *arg, int howto); 778 static void adasuspend(void *arg); 779 static void adaresume(void *arg); 780 781 #ifndef ADA_DEFAULT_TIMEOUT 782 #define ADA_DEFAULT_TIMEOUT 30 /* Timeout in seconds */ 783 #endif 784 785 #ifndef ADA_DEFAULT_RETRY 786 #define ADA_DEFAULT_RETRY 4 787 #endif 788 789 #ifndef ADA_DEFAULT_SEND_ORDERED 790 #define ADA_DEFAULT_SEND_ORDERED 1 791 #endif 792 793 #ifndef ADA_DEFAULT_SPINDOWN_SHUTDOWN 794 #define ADA_DEFAULT_SPINDOWN_SHUTDOWN 1 795 #endif 796 797 #ifndef ADA_DEFAULT_SPINDOWN_SUSPEND 798 #define ADA_DEFAULT_SPINDOWN_SUSPEND 1 799 #endif 800 801 #ifndef ADA_DEFAULT_READ_AHEAD 802 #define ADA_DEFAULT_READ_AHEAD 1 803 #endif 804 805 #ifndef ADA_DEFAULT_WRITE_CACHE 806 #define ADA_DEFAULT_WRITE_CACHE 1 807 #endif 808 809 #define ADA_RA (softc->read_ahead >= 0 ? \ 810 softc->read_ahead : ada_read_ahead) 811 #define ADA_WC (softc->write_cache >= 0 ? \ 812 softc->write_cache : ada_write_cache) 813 814 /* 815 * Most platforms map firmware geometry to actual, but some don't. If 816 * not overridden, default to nothing. 817 */ 818 #ifndef ata_disk_firmware_geom_adjust 819 #define ata_disk_firmware_geom_adjust(disk) 820 #endif 821 822 static int ada_retry_count = ADA_DEFAULT_RETRY; 823 static int ada_default_timeout = ADA_DEFAULT_TIMEOUT; 824 static int ada_send_ordered = ADA_DEFAULT_SEND_ORDERED; 825 static int ada_spindown_shutdown = ADA_DEFAULT_SPINDOWN_SHUTDOWN; 826 static int ada_spindown_suspend = ADA_DEFAULT_SPINDOWN_SUSPEND; 827 static int ada_read_ahead = ADA_DEFAULT_READ_AHEAD; 828 static int ada_write_cache = ADA_DEFAULT_WRITE_CACHE; 829 830 static SYSCTL_NODE(_kern_cam, OID_AUTO, ada, CTLFLAG_RD, 0, 831 "CAM Direct Access Disk driver"); 832 SYSCTL_INT(_kern_cam_ada, OID_AUTO, retry_count, CTLFLAG_RWTUN, 833 &ada_retry_count, 0, "Normal I/O retry count"); 834 SYSCTL_INT(_kern_cam_ada, OID_AUTO, default_timeout, CTLFLAG_RWTUN, 835 &ada_default_timeout, 0, "Normal I/O timeout (in seconds)"); 836 SYSCTL_INT(_kern_cam_ada, OID_AUTO, send_ordered, CTLFLAG_RWTUN, 837 &ada_send_ordered, 0, "Send Ordered Tags"); 838 SYSCTL_INT(_kern_cam_ada, OID_AUTO, spindown_shutdown, CTLFLAG_RWTUN, 839 &ada_spindown_shutdown, 0, "Spin down upon shutdown"); 840 SYSCTL_INT(_kern_cam_ada, OID_AUTO, spindown_suspend, CTLFLAG_RWTUN, 841 &ada_spindown_suspend, 0, "Spin down upon suspend"); 842 SYSCTL_INT(_kern_cam_ada, OID_AUTO, read_ahead, CTLFLAG_RWTUN, 843 &ada_read_ahead, 0, "Enable disk read-ahead"); 844 SYSCTL_INT(_kern_cam_ada, OID_AUTO, write_cache, CTLFLAG_RWTUN, 845 &ada_write_cache, 0, "Enable disk write cache"); 846 847 /* 848 * ADA_ORDEREDTAG_INTERVAL determines how often, relative 849 * to the default timeout, we check to see whether an ordered 850 * tagged transaction is appropriate to prevent simple tag 851 * starvation. Since we'd like to ensure that there is at least 852 * 1/2 of the timeout length left for a starved transaction to 853 * complete after we've sent an ordered tag, we must poll at least 854 * four times in every timeout period. This takes care of the worst 855 * case where a starved transaction starts during an interval that 856 * meets the requirement "don't send an ordered tag" test so it takes 857 * us two intervals to determine that a tag must be sent. 858 */ 859 #ifndef ADA_ORDEREDTAG_INTERVAL 860 #define ADA_ORDEREDTAG_INTERVAL 4 861 #endif 862 863 static struct periph_driver adadriver = 864 { 865 adainit, "ada", 866 TAILQ_HEAD_INITIALIZER(adadriver.units), /* generation */ 0 867 }; 868 869 static int adadeletemethodsysctl(SYSCTL_HANDLER_ARGS); 870 871 PERIPHDRIVER_DECLARE(ada, adadriver); 872 873 static MALLOC_DEFINE(M_ATADA, "ata_da", "ata_da buffers"); 874 875 static int 876 adaopen(struct disk *dp) 877 { 878 struct cam_periph *periph; 879 struct ada_softc *softc; 880 int error; 881 882 periph = (struct cam_periph *)dp->d_drv1; 883 if (cam_periph_acquire(periph) != CAM_REQ_CMP) { 884 return(ENXIO); 885 } 886 887 cam_periph_lock(periph); 888 if ((error = cam_periph_hold(periph, PRIBIO|PCATCH)) != 0) { 889 cam_periph_unlock(periph); 890 cam_periph_release(periph); 891 return (error); 892 } 893 894 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE | CAM_DEBUG_PERIPH, 895 ("adaopen\n")); 896 897 softc = (struct ada_softc *)periph->softc; 898 softc->flags |= ADA_FLAG_OPEN; 899 900 cam_periph_unhold(periph); 901 cam_periph_unlock(periph); 902 return (0); 903 } 904 905 static int 906 adaclose(struct disk *dp) 907 { 908 struct cam_periph *periph; 909 struct ada_softc *softc; 910 union ccb *ccb; 911 int error; 912 913 periph = (struct cam_periph *)dp->d_drv1; 914 softc = (struct ada_softc *)periph->softc; 915 cam_periph_lock(periph); 916 917 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE | CAM_DEBUG_PERIPH, 918 ("adaclose\n")); 919 920 /* We only sync the cache if the drive is capable of it. */ 921 if ((softc->flags & ADA_FLAG_DIRTY) != 0 && 922 (softc->flags & ADA_FLAG_CAN_FLUSHCACHE) != 0 && 923 (periph->flags & CAM_PERIPH_INVALID) == 0 && 924 cam_periph_hold(periph, PRIBIO) == 0) { 925 926 ccb = cam_periph_getccb(periph, CAM_PRIORITY_NORMAL); 927 cam_fill_ataio(&ccb->ataio, 928 1, 929 adadone, 930 CAM_DIR_NONE, 931 0, 932 NULL, 933 0, 934 ada_default_timeout*1000); 935 936 if (softc->flags & ADA_FLAG_CAN_48BIT) 937 ata_48bit_cmd(&ccb->ataio, ATA_FLUSHCACHE48, 0, 0, 0); 938 else 939 ata_28bit_cmd(&ccb->ataio, ATA_FLUSHCACHE, 0, 0, 0); 940 error = cam_periph_runccb(ccb, adaerror, /*cam_flags*/0, 941 /*sense_flags*/0, softc->disk->d_devstat); 942 943 if (error != 0) 944 xpt_print(periph->path, "Synchronize cache failed\n"); 945 softc->flags &= ~ADA_FLAG_DIRTY; 946 xpt_release_ccb(ccb); 947 cam_periph_unhold(periph); 948 } 949 950 softc->flags &= ~ADA_FLAG_OPEN; 951 952 while (softc->refcount != 0) 953 cam_periph_sleep(periph, &softc->refcount, PRIBIO, "adaclose", 1); 954 cam_periph_unlock(periph); 955 cam_periph_release(periph); 956 return (0); 957 } 958 959 static void 960 adaschedule(struct cam_periph *periph) 961 { 962 struct ada_softc *softc = (struct ada_softc *)periph->softc; 963 964 if (softc->state != ADA_STATE_NORMAL) 965 return; 966 967 cam_iosched_schedule(softc->cam_iosched, periph); 968 } 969 970 /* 971 * Actually translate the requested transfer into one the physical driver 972 * can understand. The transfer is described by a buf and will include 973 * only one physical transfer. 974 */ 975 static void 976 adastrategy(struct bio *bp) 977 { 978 struct cam_periph *periph; 979 struct ada_softc *softc; 980 981 periph = (struct cam_periph *)bp->bio_disk->d_drv1; 982 softc = (struct ada_softc *)periph->softc; 983 984 cam_periph_lock(periph); 985 986 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE, ("adastrategy(%p)\n", bp)); 987 988 /* 989 * If the device has been made invalid, error out 990 */ 991 if ((periph->flags & CAM_PERIPH_INVALID) != 0) { 992 cam_periph_unlock(periph); 993 biofinish(bp, NULL, ENXIO); 994 return; 995 } 996 997 /* 998 * Zone commands must be ordered, because they can depend on the 999 * effects of previously issued commands, and they may affect 1000 * commands after them. 1001 */ 1002 if (bp->bio_cmd == BIO_ZONE) 1003 bp->bio_flags |= BIO_ORDERED; 1004 1005 /* 1006 * Place it in the queue of disk activities for this disk 1007 */ 1008 cam_iosched_queue_work(softc->cam_iosched, bp); 1009 1010 /* 1011 * Schedule ourselves for performing the work. 1012 */ 1013 adaschedule(periph); 1014 cam_periph_unlock(periph); 1015 1016 return; 1017 } 1018 1019 static int 1020 adadump(void *arg, void *virtual, vm_offset_t physical, off_t offset, size_t length) 1021 { 1022 struct cam_periph *periph; 1023 struct ada_softc *softc; 1024 u_int secsize; 1025 union ccb ccb; 1026 struct disk *dp; 1027 uint64_t lba; 1028 uint16_t count; 1029 int error = 0; 1030 1031 dp = arg; 1032 periph = dp->d_drv1; 1033 softc = (struct ada_softc *)periph->softc; 1034 cam_periph_lock(periph); 1035 secsize = softc->params.secsize; 1036 lba = offset / secsize; 1037 count = length / secsize; 1038 1039 if ((periph->flags & CAM_PERIPH_INVALID) != 0) { 1040 cam_periph_unlock(periph); 1041 return (ENXIO); 1042 } 1043 1044 if (length > 0) { 1045 xpt_setup_ccb(&ccb.ccb_h, periph->path, CAM_PRIORITY_NORMAL); 1046 ccb.ccb_h.ccb_state = ADA_CCB_DUMP; 1047 cam_fill_ataio(&ccb.ataio, 1048 0, 1049 adadone, 1050 CAM_DIR_OUT, 1051 0, 1052 (u_int8_t *) virtual, 1053 length, 1054 ada_default_timeout*1000); 1055 if ((softc->flags & ADA_FLAG_CAN_48BIT) && 1056 (lba + count >= ATA_MAX_28BIT_LBA || 1057 count >= 256)) { 1058 ata_48bit_cmd(&ccb.ataio, ATA_WRITE_DMA48, 1059 0, lba, count); 1060 } else { 1061 ata_28bit_cmd(&ccb.ataio, ATA_WRITE_DMA, 1062 0, lba, count); 1063 } 1064 xpt_polled_action(&ccb); 1065 1066 error = cam_periph_error(&ccb, 1067 0, SF_NO_RECOVERY | SF_NO_RETRY, NULL); 1068 if ((ccb.ccb_h.status & CAM_DEV_QFRZN) != 0) 1069 cam_release_devq(ccb.ccb_h.path, /*relsim_flags*/0, 1070 /*reduction*/0, /*timeout*/0, /*getcount_only*/0); 1071 if (error != 0) 1072 printf("Aborting dump due to I/O error.\n"); 1073 1074 cam_periph_unlock(periph); 1075 return (error); 1076 } 1077 1078 if (softc->flags & ADA_FLAG_CAN_FLUSHCACHE) { 1079 xpt_setup_ccb(&ccb.ccb_h, periph->path, CAM_PRIORITY_NORMAL); 1080 1081 /* 1082 * Tell the drive to flush its internal cache. if we 1083 * can't flush in 5s we have big problems. No need to 1084 * wait the default 60s to detect problems. 1085 */ 1086 ccb.ccb_h.ccb_state = ADA_CCB_DUMP; 1087 cam_fill_ataio(&ccb.ataio, 1088 0, 1089 adadone, 1090 CAM_DIR_NONE, 1091 0, 1092 NULL, 1093 0, 1094 5*1000); 1095 1096 if (softc->flags & ADA_FLAG_CAN_48BIT) 1097 ata_48bit_cmd(&ccb.ataio, ATA_FLUSHCACHE48, 0, 0, 0); 1098 else 1099 ata_28bit_cmd(&ccb.ataio, ATA_FLUSHCACHE, 0, 0, 0); 1100 xpt_polled_action(&ccb); 1101 1102 error = cam_periph_error(&ccb, 1103 0, SF_NO_RECOVERY | SF_NO_RETRY, NULL); 1104 if ((ccb.ccb_h.status & CAM_DEV_QFRZN) != 0) 1105 cam_release_devq(ccb.ccb_h.path, /*relsim_flags*/0, 1106 /*reduction*/0, /*timeout*/0, /*getcount_only*/0); 1107 if (error != 0) 1108 xpt_print(periph->path, "Synchronize cache failed\n"); 1109 } 1110 cam_periph_unlock(periph); 1111 return (error); 1112 } 1113 1114 static void 1115 adainit(void) 1116 { 1117 cam_status status; 1118 1119 /* 1120 * Install a global async callback. This callback will 1121 * receive async callbacks like "new device found". 1122 */ 1123 status = xpt_register_async(AC_FOUND_DEVICE, adaasync, NULL, NULL); 1124 1125 if (status != CAM_REQ_CMP) { 1126 printf("ada: Failed to attach master async callback " 1127 "due to status 0x%x!\n", status); 1128 } else if (ada_send_ordered) { 1129 1130 /* Register our event handlers */ 1131 if ((EVENTHANDLER_REGISTER(power_suspend, adasuspend, 1132 NULL, EVENTHANDLER_PRI_LAST)) == NULL) 1133 printf("adainit: power event registration failed!\n"); 1134 if ((EVENTHANDLER_REGISTER(power_resume, adaresume, 1135 NULL, EVENTHANDLER_PRI_LAST)) == NULL) 1136 printf("adainit: power event registration failed!\n"); 1137 if ((EVENTHANDLER_REGISTER(shutdown_post_sync, adashutdown, 1138 NULL, SHUTDOWN_PRI_DEFAULT)) == NULL) 1139 printf("adainit: shutdown event registration failed!\n"); 1140 } 1141 } 1142 1143 /* 1144 * Callback from GEOM, called when it has finished cleaning up its 1145 * resources. 1146 */ 1147 static void 1148 adadiskgonecb(struct disk *dp) 1149 { 1150 struct cam_periph *periph; 1151 1152 periph = (struct cam_periph *)dp->d_drv1; 1153 1154 cam_periph_release(periph); 1155 } 1156 1157 static void 1158 adaoninvalidate(struct cam_periph *periph) 1159 { 1160 struct ada_softc *softc; 1161 1162 softc = (struct ada_softc *)periph->softc; 1163 1164 /* 1165 * De-register any async callbacks. 1166 */ 1167 xpt_register_async(0, adaasync, periph, periph->path); 1168 #ifdef CAM_IO_STATS 1169 softc->invalidations++; 1170 #endif 1171 1172 /* 1173 * Return all queued I/O with ENXIO. 1174 * XXX Handle any transactions queued to the card 1175 * with XPT_ABORT_CCB. 1176 */ 1177 cam_iosched_flush(softc->cam_iosched, NULL, ENXIO); 1178 1179 disk_gone(softc->disk); 1180 } 1181 1182 static void 1183 adacleanup(struct cam_periph *periph) 1184 { 1185 struct ada_softc *softc; 1186 1187 softc = (struct ada_softc *)periph->softc; 1188 1189 cam_periph_unlock(periph); 1190 1191 cam_iosched_fini(softc->cam_iosched); 1192 1193 /* 1194 * If we can't free the sysctl tree, oh well... 1195 */ 1196 if ((softc->flags & ADA_FLAG_SCTX_INIT) != 0) { 1197 #ifdef CAM_IO_STATS 1198 if (sysctl_ctx_free(&softc->sysctl_stats_ctx) != 0) 1199 xpt_print(periph->path, 1200 "can't remove sysctl stats context\n"); 1201 #endif 1202 if (sysctl_ctx_free(&softc->sysctl_ctx) != 0) 1203 xpt_print(periph->path, 1204 "can't remove sysctl context\n"); 1205 } 1206 1207 disk_destroy(softc->disk); 1208 callout_drain(&softc->sendordered_c); 1209 free(softc, M_DEVBUF); 1210 cam_periph_lock(periph); 1211 } 1212 1213 static void 1214 adasetdeletemethod(struct ada_softc *softc) 1215 { 1216 1217 if (softc->flags & ADA_FLAG_CAN_NCQ_TRIM) 1218 softc->delete_method = ADA_DELETE_NCQ_DSM_TRIM; 1219 else if (softc->flags & ADA_FLAG_CAN_TRIM) 1220 softc->delete_method = ADA_DELETE_DSM_TRIM; 1221 else if ((softc->flags & ADA_FLAG_CAN_CFA) && !(softc->flags & ADA_FLAG_CAN_48BIT)) 1222 softc->delete_method = ADA_DELETE_CFA_ERASE; 1223 else 1224 softc->delete_method = ADA_DELETE_NONE; 1225 } 1226 1227 static void 1228 adaasync(void *callback_arg, u_int32_t code, 1229 struct cam_path *path, void *arg) 1230 { 1231 struct ccb_getdev cgd; 1232 struct cam_periph *periph; 1233 struct ada_softc *softc; 1234 1235 periph = (struct cam_periph *)callback_arg; 1236 switch (code) { 1237 case AC_FOUND_DEVICE: 1238 { 1239 struct ccb_getdev *cgd; 1240 cam_status status; 1241 1242 cgd = (struct ccb_getdev *)arg; 1243 if (cgd == NULL) 1244 break; 1245 1246 if (cgd->protocol != PROTO_ATA) 1247 break; 1248 1249 /* 1250 * Allocate a peripheral instance for 1251 * this device and start the probe 1252 * process. 1253 */ 1254 status = cam_periph_alloc(adaregister, adaoninvalidate, 1255 adacleanup, adastart, 1256 "ada", CAM_PERIPH_BIO, 1257 path, adaasync, 1258 AC_FOUND_DEVICE, cgd); 1259 1260 if (status != CAM_REQ_CMP 1261 && status != CAM_REQ_INPROG) 1262 printf("adaasync: Unable to attach to new device " 1263 "due to status 0x%x\n", status); 1264 break; 1265 } 1266 case AC_GETDEV_CHANGED: 1267 { 1268 softc = (struct ada_softc *)periph->softc; 1269 xpt_setup_ccb(&cgd.ccb_h, periph->path, CAM_PRIORITY_NORMAL); 1270 cgd.ccb_h.func_code = XPT_GDEV_TYPE; 1271 xpt_action((union ccb *)&cgd); 1272 1273 /* 1274 * Set/clear support flags based on the new Identify data. 1275 */ 1276 adasetflags(softc, &cgd); 1277 1278 cam_periph_async(periph, code, path, arg); 1279 break; 1280 } 1281 case AC_ADVINFO_CHANGED: 1282 { 1283 uintptr_t buftype; 1284 1285 buftype = (uintptr_t)arg; 1286 if (buftype == CDAI_TYPE_PHYS_PATH) { 1287 struct ada_softc *softc; 1288 1289 softc = periph->softc; 1290 disk_attr_changed(softc->disk, "GEOM::physpath", 1291 M_NOWAIT); 1292 } 1293 break; 1294 } 1295 case AC_SENT_BDR: 1296 case AC_BUS_RESET: 1297 { 1298 softc = (struct ada_softc *)periph->softc; 1299 cam_periph_async(periph, code, path, arg); 1300 if (softc->state != ADA_STATE_NORMAL) 1301 break; 1302 xpt_setup_ccb(&cgd.ccb_h, periph->path, CAM_PRIORITY_NORMAL); 1303 cgd.ccb_h.func_code = XPT_GDEV_TYPE; 1304 xpt_action((union ccb *)&cgd); 1305 if (ADA_RA >= 0 && softc->flags & ADA_FLAG_CAN_RAHEAD) 1306 softc->state = ADA_STATE_RAHEAD; 1307 else if (ADA_WC >= 0 && softc->flags & ADA_FLAG_CAN_RAHEAD) 1308 softc->state = ADA_STATE_WCACHE; 1309 else if ((softc->flags & ADA_FLAG_CAN_LOG) 1310 && (softc->zone_mode != ADA_ZONE_NONE)) 1311 softc->state = ADA_STATE_LOGDIR; 1312 else 1313 break; 1314 if (cam_periph_acquire(periph) != CAM_REQ_CMP) 1315 softc->state = ADA_STATE_NORMAL; 1316 else 1317 xpt_schedule(periph, CAM_PRIORITY_DEV); 1318 } 1319 default: 1320 cam_periph_async(periph, code, path, arg); 1321 break; 1322 } 1323 } 1324 1325 static int 1326 adazonemodesysctl(SYSCTL_HANDLER_ARGS) 1327 { 1328 char tmpbuf[40]; 1329 struct ada_softc *softc; 1330 int error; 1331 1332 softc = (struct ada_softc *)arg1; 1333 1334 switch (softc->zone_mode) { 1335 case ADA_ZONE_DRIVE_MANAGED: 1336 snprintf(tmpbuf, sizeof(tmpbuf), "Drive Managed"); 1337 break; 1338 case ADA_ZONE_HOST_AWARE: 1339 snprintf(tmpbuf, sizeof(tmpbuf), "Host Aware"); 1340 break; 1341 case ADA_ZONE_HOST_MANAGED: 1342 snprintf(tmpbuf, sizeof(tmpbuf), "Host Managed"); 1343 break; 1344 case ADA_ZONE_NONE: 1345 default: 1346 snprintf(tmpbuf, sizeof(tmpbuf), "Not Zoned"); 1347 break; 1348 } 1349 1350 error = sysctl_handle_string(oidp, tmpbuf, sizeof(tmpbuf), req); 1351 1352 return (error); 1353 } 1354 1355 static int 1356 adazonesupsysctl(SYSCTL_HANDLER_ARGS) 1357 { 1358 char tmpbuf[180]; 1359 struct ada_softc *softc; 1360 struct sbuf sb; 1361 int error, first; 1362 unsigned int i; 1363 1364 softc = (struct ada_softc *)arg1; 1365 1366 error = 0; 1367 first = 1; 1368 sbuf_new(&sb, tmpbuf, sizeof(tmpbuf), 0); 1369 1370 for (i = 0; i < sizeof(ada_zone_desc_table) / 1371 sizeof(ada_zone_desc_table[0]); i++) { 1372 if (softc->zone_flags & ada_zone_desc_table[i].value) { 1373 if (first == 0) 1374 sbuf_printf(&sb, ", "); 1375 else 1376 first = 0; 1377 sbuf_cat(&sb, ada_zone_desc_table[i].desc); 1378 } 1379 } 1380 1381 if (first == 1) 1382 sbuf_printf(&sb, "None"); 1383 1384 sbuf_finish(&sb); 1385 1386 error = sysctl_handle_string(oidp, sbuf_data(&sb), sbuf_len(&sb), req); 1387 1388 return (error); 1389 } 1390 1391 1392 static void 1393 adasysctlinit(void *context, int pending) 1394 { 1395 struct cam_periph *periph; 1396 struct ada_softc *softc; 1397 char tmpstr[80], tmpstr2[80]; 1398 1399 periph = (struct cam_periph *)context; 1400 1401 /* periph was held for us when this task was enqueued */ 1402 if ((periph->flags & CAM_PERIPH_INVALID) != 0) { 1403 cam_periph_release(periph); 1404 return; 1405 } 1406 1407 softc = (struct ada_softc *)periph->softc; 1408 snprintf(tmpstr, sizeof(tmpstr), "CAM ADA unit %d",periph->unit_number); 1409 snprintf(tmpstr2, sizeof(tmpstr2), "%d", periph->unit_number); 1410 1411 sysctl_ctx_init(&softc->sysctl_ctx); 1412 softc->flags |= ADA_FLAG_SCTX_INIT; 1413 softc->sysctl_tree = SYSCTL_ADD_NODE_WITH_LABEL(&softc->sysctl_ctx, 1414 SYSCTL_STATIC_CHILDREN(_kern_cam_ada), OID_AUTO, tmpstr2, 1415 CTLFLAG_RD, 0, tmpstr, "device_index"); 1416 if (softc->sysctl_tree == NULL) { 1417 printf("adasysctlinit: unable to allocate sysctl tree\n"); 1418 cam_periph_release(periph); 1419 return; 1420 } 1421 1422 SYSCTL_ADD_PROC(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree), 1423 OID_AUTO, "delete_method", CTLTYPE_STRING | CTLFLAG_RW, 1424 softc, 0, adadeletemethodsysctl, "A", 1425 "BIO_DELETE execution method"); 1426 SYSCTL_ADD_INT(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree), 1427 OID_AUTO, "read_ahead", CTLFLAG_RW | CTLFLAG_MPSAFE, 1428 &softc->read_ahead, 0, "Enable disk read ahead."); 1429 SYSCTL_ADD_INT(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree), 1430 OID_AUTO, "write_cache", CTLFLAG_RW | CTLFLAG_MPSAFE, 1431 &softc->write_cache, 0, "Enable disk write cache."); 1432 SYSCTL_ADD_INT(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree), 1433 OID_AUTO, "unmapped_io", CTLFLAG_RD | CTLFLAG_MPSAFE, 1434 &softc->unmappedio, 0, "Unmapped I/O leaf"); 1435 SYSCTL_ADD_INT(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree), 1436 OID_AUTO, "rotating", CTLFLAG_RD | CTLFLAG_MPSAFE, 1437 &softc->rotating, 0, "Rotating media"); 1438 SYSCTL_ADD_PROC(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree), 1439 OID_AUTO, "zone_mode", CTLTYPE_STRING | CTLFLAG_RD, 1440 softc, 0, adazonemodesysctl, "A", 1441 "Zone Mode"); 1442 SYSCTL_ADD_PROC(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree), 1443 OID_AUTO, "zone_support", CTLTYPE_STRING | CTLFLAG_RD, 1444 softc, 0, adazonesupsysctl, "A", 1445 "Zone Support"); 1446 SYSCTL_ADD_UQUAD(&softc->sysctl_ctx, 1447 SYSCTL_CHILDREN(softc->sysctl_tree), OID_AUTO, 1448 "optimal_seq_zones", CTLFLAG_RD, &softc->optimal_seq_zones, 1449 "Optimal Number of Open Sequential Write Preferred Zones"); 1450 SYSCTL_ADD_UQUAD(&softc->sysctl_ctx, 1451 SYSCTL_CHILDREN(softc->sysctl_tree), OID_AUTO, 1452 "optimal_nonseq_zones", CTLFLAG_RD, 1453 &softc->optimal_nonseq_zones, 1454 "Optimal Number of Non-Sequentially Written Sequential Write " 1455 "Preferred Zones"); 1456 SYSCTL_ADD_UQUAD(&softc->sysctl_ctx, 1457 SYSCTL_CHILDREN(softc->sysctl_tree), OID_AUTO, 1458 "max_seq_zones", CTLFLAG_RD, &softc->max_seq_zones, 1459 "Maximum Number of Open Sequential Write Required Zones"); 1460 1461 #ifdef ADA_TEST_FAILURE 1462 /* 1463 * Add a 'door bell' sysctl which allows one to set it from userland 1464 * and cause something bad to happen. For the moment, we only allow 1465 * whacking the next read or write. 1466 */ 1467 SYSCTL_ADD_INT(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree), 1468 OID_AUTO, "force_read_error", CTLFLAG_RW | CTLFLAG_MPSAFE, 1469 &softc->force_read_error, 0, 1470 "Force a read error for the next N reads."); 1471 SYSCTL_ADD_INT(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree), 1472 OID_AUTO, "force_write_error", CTLFLAG_RW | CTLFLAG_MPSAFE, 1473 &softc->force_write_error, 0, 1474 "Force a write error for the next N writes."); 1475 SYSCTL_ADD_INT(&softc->sysctl_ctx, SYSCTL_CHILDREN(softc->sysctl_tree), 1476 OID_AUTO, "periodic_read_error", CTLFLAG_RW | CTLFLAG_MPSAFE, 1477 &softc->periodic_read_error, 0, 1478 "Force a read error every N reads (don't set too low)."); 1479 #endif 1480 1481 #ifdef CAM_IO_STATS 1482 softc->sysctl_stats_tree = SYSCTL_ADD_NODE(&softc->sysctl_stats_ctx, 1483 SYSCTL_CHILDREN(softc->sysctl_tree), OID_AUTO, "stats", 1484 CTLFLAG_RD, 0, "Statistics"); 1485 SYSCTL_ADD_INT(&softc->sysctl_stats_ctx, 1486 SYSCTL_CHILDREN(softc->sysctl_stats_tree), 1487 OID_AUTO, "timeouts", CTLFLAG_RD | CTLFLAG_MPSAFE, 1488 &softc->timeouts, 0, 1489 "Device timeouts reported by the SIM"); 1490 SYSCTL_ADD_INT(&softc->sysctl_stats_ctx, 1491 SYSCTL_CHILDREN(softc->sysctl_stats_tree), 1492 OID_AUTO, "errors", CTLFLAG_RD | CTLFLAG_MPSAFE, 1493 &softc->errors, 0, 1494 "Transport errors reported by the SIM."); 1495 SYSCTL_ADD_INT(&softc->sysctl_stats_ctx, 1496 SYSCTL_CHILDREN(softc->sysctl_stats_tree), 1497 OID_AUTO, "pack_invalidations", CTLFLAG_RD | CTLFLAG_MPSAFE, 1498 &softc->invalidations, 0, 1499 "Device pack invalidations."); 1500 #endif 1501 1502 cam_iosched_sysctl_init(softc->cam_iosched, &softc->sysctl_ctx, 1503 softc->sysctl_tree); 1504 1505 cam_periph_release(periph); 1506 } 1507 1508 static int 1509 adagetattr(struct bio *bp) 1510 { 1511 int ret; 1512 struct cam_periph *periph; 1513 1514 periph = (struct cam_periph *)bp->bio_disk->d_drv1; 1515 cam_periph_lock(periph); 1516 ret = xpt_getattr(bp->bio_data, bp->bio_length, bp->bio_attribute, 1517 periph->path); 1518 cam_periph_unlock(periph); 1519 if (ret == 0) 1520 bp->bio_completed = bp->bio_length; 1521 return ret; 1522 } 1523 1524 static int 1525 adadeletemethodsysctl(SYSCTL_HANDLER_ARGS) 1526 { 1527 char buf[16]; 1528 const char *p; 1529 struct ada_softc *softc; 1530 int i, error, value, methods; 1531 1532 softc = (struct ada_softc *)arg1; 1533 1534 value = softc->delete_method; 1535 if (value < 0 || value > ADA_DELETE_MAX) 1536 p = "UNKNOWN"; 1537 else 1538 p = ada_delete_method_names[value]; 1539 strncpy(buf, p, sizeof(buf)); 1540 error = sysctl_handle_string(oidp, buf, sizeof(buf), req); 1541 if (error != 0 || req->newptr == NULL) 1542 return (error); 1543 methods = 1 << ADA_DELETE_DISABLE; 1544 if ((softc->flags & ADA_FLAG_CAN_CFA) && 1545 !(softc->flags & ADA_FLAG_CAN_48BIT)) 1546 methods |= 1 << ADA_DELETE_CFA_ERASE; 1547 if (softc->flags & ADA_FLAG_CAN_TRIM) 1548 methods |= 1 << ADA_DELETE_DSM_TRIM; 1549 if (softc->flags & ADA_FLAG_CAN_NCQ_TRIM) 1550 methods |= 1 << ADA_DELETE_NCQ_DSM_TRIM; 1551 for (i = 0; i <= ADA_DELETE_MAX; i++) { 1552 if (!(methods & (1 << i)) || 1553 strcmp(buf, ada_delete_method_names[i]) != 0) 1554 continue; 1555 softc->delete_method = i; 1556 return (0); 1557 } 1558 return (EINVAL); 1559 } 1560 1561 static void 1562 adasetflags(struct ada_softc *softc, struct ccb_getdev *cgd) 1563 { 1564 if ((cgd->ident_data.capabilities1 & ATA_SUPPORT_DMA) && 1565 (cgd->inq_flags & SID_DMA)) 1566 softc->flags |= ADA_FLAG_CAN_DMA; 1567 else 1568 softc->flags &= ~ADA_FLAG_CAN_DMA; 1569 1570 if (cgd->ident_data.support.command2 & ATA_SUPPORT_ADDRESS48) { 1571 softc->flags |= ADA_FLAG_CAN_48BIT; 1572 if (cgd->inq_flags & SID_DMA48) 1573 softc->flags |= ADA_FLAG_CAN_DMA48; 1574 else 1575 softc->flags &= ~ADA_FLAG_CAN_DMA48; 1576 } else 1577 softc->flags &= ~(ADA_FLAG_CAN_48BIT | ADA_FLAG_CAN_DMA48); 1578 1579 if (cgd->ident_data.support.command2 & ATA_SUPPORT_FLUSHCACHE) 1580 softc->flags |= ADA_FLAG_CAN_FLUSHCACHE; 1581 else 1582 softc->flags &= ~ADA_FLAG_CAN_FLUSHCACHE; 1583 1584 if (cgd->ident_data.support.command1 & ATA_SUPPORT_POWERMGT) 1585 softc->flags |= ADA_FLAG_CAN_POWERMGT; 1586 else 1587 softc->flags &= ~ADA_FLAG_CAN_POWERMGT; 1588 1589 if ((cgd->ident_data.satacapabilities & ATA_SUPPORT_NCQ) && 1590 (cgd->inq_flags & SID_DMA) && (cgd->inq_flags & SID_CmdQue)) 1591 softc->flags |= ADA_FLAG_CAN_NCQ; 1592 else 1593 softc->flags &= ~ADA_FLAG_CAN_NCQ; 1594 1595 if ((cgd->ident_data.support_dsm & ATA_SUPPORT_DSM_TRIM) && 1596 (cgd->inq_flags & SID_DMA)) { 1597 softc->flags |= ADA_FLAG_CAN_TRIM; 1598 softc->trim_max_ranges = TRIM_MAX_RANGES; 1599 if (cgd->ident_data.max_dsm_blocks != 0) { 1600 softc->trim_max_ranges = 1601 min(cgd->ident_data.max_dsm_blocks * 1602 ATA_DSM_BLK_RANGES, softc->trim_max_ranges); 1603 } 1604 /* 1605 * If we can do RCVSND_FPDMA_QUEUED commands, we may be able 1606 * to do NCQ trims, if we support trims at all. We also need 1607 * support from the SIM to do things properly. Perhaps we 1608 * should look at log 13 dword 0 bit 0 and dword 1 bit 0 are 1609 * set too... 1610 */ 1611 if ((softc->quirks & ADA_Q_NCQ_TRIM_BROKEN) == 0 && 1612 (softc->flags & ADA_FLAG_PIM_ATA_EXT) != 0 && 1613 (cgd->ident_data.satacapabilities2 & 1614 ATA_SUPPORT_RCVSND_FPDMA_QUEUED) != 0 && 1615 (softc->flags & ADA_FLAG_CAN_TRIM) != 0) 1616 softc->flags |= ADA_FLAG_CAN_NCQ_TRIM; 1617 else 1618 softc->flags &= ~ADA_FLAG_CAN_NCQ_TRIM; 1619 } else 1620 softc->flags &= ~(ADA_FLAG_CAN_TRIM | ADA_FLAG_CAN_NCQ_TRIM); 1621 1622 if (cgd->ident_data.support.command2 & ATA_SUPPORT_CFA) 1623 softc->flags |= ADA_FLAG_CAN_CFA; 1624 else 1625 softc->flags &= ~ADA_FLAG_CAN_CFA; 1626 1627 /* 1628 * Now that we've set the appropriate flags, setup the delete 1629 * method. 1630 */ 1631 adasetdeletemethod(softc); 1632 1633 if ((cgd->ident_data.support.extension & ATA_SUPPORT_GENLOG) 1634 && ((softc->quirks & ADA_Q_LOG_BROKEN) == 0)) 1635 softc->flags |= ADA_FLAG_CAN_LOG; 1636 else 1637 softc->flags &= ~ADA_FLAG_CAN_LOG; 1638 1639 if ((cgd->ident_data.support3 & ATA_SUPPORT_ZONE_MASK) == 1640 ATA_SUPPORT_ZONE_HOST_AWARE) 1641 softc->zone_mode = ADA_ZONE_HOST_AWARE; 1642 else if (((cgd->ident_data.support3 & ATA_SUPPORT_ZONE_MASK) == 1643 ATA_SUPPORT_ZONE_DEV_MANAGED) 1644 || (softc->quirks & ADA_Q_SMR_DM)) 1645 softc->zone_mode = ADA_ZONE_DRIVE_MANAGED; 1646 else 1647 softc->zone_mode = ADA_ZONE_NONE; 1648 1649 if (cgd->ident_data.support.command1 & ATA_SUPPORT_LOOKAHEAD) 1650 softc->flags |= ADA_FLAG_CAN_RAHEAD; 1651 else 1652 softc->flags &= ~ADA_FLAG_CAN_RAHEAD; 1653 1654 if (cgd->ident_data.support.command1 & ATA_SUPPORT_WRITECACHE) 1655 softc->flags |= ADA_FLAG_CAN_WCACHE; 1656 else 1657 softc->flags &= ~ADA_FLAG_CAN_WCACHE; 1658 } 1659 1660 static cam_status 1661 adaregister(struct cam_periph *periph, void *arg) 1662 { 1663 struct ada_softc *softc; 1664 struct ccb_pathinq cpi; 1665 struct ccb_getdev *cgd; 1666 struct disk_params *dp; 1667 struct sbuf sb; 1668 char *announce_buf; 1669 caddr_t match; 1670 u_int maxio; 1671 int quirks; 1672 1673 cgd = (struct ccb_getdev *)arg; 1674 if (cgd == NULL) { 1675 printf("adaregister: no getdev CCB, can't register device\n"); 1676 return(CAM_REQ_CMP_ERR); 1677 } 1678 1679 softc = (struct ada_softc *)malloc(sizeof(*softc), M_DEVBUF, 1680 M_NOWAIT|M_ZERO); 1681 1682 if (softc == NULL) { 1683 printf("adaregister: Unable to probe new device. " 1684 "Unable to allocate softc\n"); 1685 return(CAM_REQ_CMP_ERR); 1686 } 1687 1688 announce_buf = softc->announce_temp; 1689 bzero(announce_buf, ADA_ANNOUNCETMP_SZ); 1690 1691 if (cam_iosched_init(&softc->cam_iosched, periph) != 0) { 1692 printf("adaregister: Unable to probe new device. " 1693 "Unable to allocate iosched memory\n"); 1694 free(softc, M_DEVBUF); 1695 return(CAM_REQ_CMP_ERR); 1696 } 1697 1698 periph->softc = softc; 1699 1700 /* 1701 * See if this device has any quirks. 1702 */ 1703 match = cam_quirkmatch((caddr_t)&cgd->ident_data, 1704 (caddr_t)ada_quirk_table, 1705 nitems(ada_quirk_table), 1706 sizeof(*ada_quirk_table), ata_identify_match); 1707 if (match != NULL) 1708 softc->quirks = ((struct ada_quirk_entry *)match)->quirks; 1709 else 1710 softc->quirks = ADA_Q_NONE; 1711 1712 bzero(&cpi, sizeof(cpi)); 1713 xpt_setup_ccb(&cpi.ccb_h, periph->path, CAM_PRIORITY_NONE); 1714 cpi.ccb_h.func_code = XPT_PATH_INQ; 1715 xpt_action((union ccb *)&cpi); 1716 1717 TASK_INIT(&softc->sysctl_task, 0, adasysctlinit, periph); 1718 1719 /* 1720 * Register this media as a disk 1721 */ 1722 (void)cam_periph_hold(periph, PRIBIO); 1723 cam_periph_unlock(periph); 1724 snprintf(announce_buf, ADA_ANNOUNCETMP_SZ, 1725 "kern.cam.ada.%d.quirks", periph->unit_number); 1726 quirks = softc->quirks; 1727 TUNABLE_INT_FETCH(announce_buf, &quirks); 1728 softc->quirks = quirks; 1729 softc->read_ahead = -1; 1730 snprintf(announce_buf, ADA_ANNOUNCETMP_SZ, 1731 "kern.cam.ada.%d.read_ahead", periph->unit_number); 1732 TUNABLE_INT_FETCH(announce_buf, &softc->read_ahead); 1733 softc->write_cache = -1; 1734 snprintf(announce_buf, ADA_ANNOUNCETMP_SZ, 1735 "kern.cam.ada.%d.write_cache", periph->unit_number); 1736 TUNABLE_INT_FETCH(announce_buf, &softc->write_cache); 1737 1738 /* 1739 * Set support flags based on the Identify data and quirks. 1740 */ 1741 adasetflags(softc, cgd); 1742 1743 /* Disable queue sorting for non-rotational media by default. */ 1744 if (cgd->ident_data.media_rotation_rate == ATA_RATE_NON_ROTATING) { 1745 softc->rotating = 0; 1746 } else { 1747 softc->rotating = 1; 1748 } 1749 cam_iosched_set_sort_queue(softc->cam_iosched, softc->rotating ? -1 : 0); 1750 adagetparams(periph, cgd); 1751 softc->disk = disk_alloc(); 1752 softc->disk->d_rotation_rate = cgd->ident_data.media_rotation_rate; 1753 softc->disk->d_devstat = devstat_new_entry(periph->periph_name, 1754 periph->unit_number, softc->params.secsize, 1755 DEVSTAT_ALL_SUPPORTED, 1756 DEVSTAT_TYPE_DIRECT | 1757 XPORT_DEVSTAT_TYPE(cpi.transport), 1758 DEVSTAT_PRIORITY_DISK); 1759 softc->disk->d_open = adaopen; 1760 softc->disk->d_close = adaclose; 1761 softc->disk->d_strategy = adastrategy; 1762 softc->disk->d_getattr = adagetattr; 1763 softc->disk->d_dump = adadump; 1764 softc->disk->d_gone = adadiskgonecb; 1765 softc->disk->d_name = "ada"; 1766 softc->disk->d_drv1 = periph; 1767 maxio = cpi.maxio; /* Honor max I/O size of SIM */ 1768 if (maxio == 0) 1769 maxio = DFLTPHYS; /* traditional default */ 1770 else if (maxio > MAXPHYS) 1771 maxio = MAXPHYS; /* for safety */ 1772 if (softc->flags & ADA_FLAG_CAN_48BIT) 1773 maxio = min(maxio, 65536 * softc->params.secsize); 1774 else /* 28bit ATA command limit */ 1775 maxio = min(maxio, 256 * softc->params.secsize); 1776 softc->disk->d_maxsize = maxio; 1777 softc->disk->d_unit = periph->unit_number; 1778 softc->disk->d_flags = DISKFLAG_DIRECT_COMPLETION | DISKFLAG_CANZONE; 1779 if (softc->flags & ADA_FLAG_CAN_FLUSHCACHE) 1780 softc->disk->d_flags |= DISKFLAG_CANFLUSHCACHE; 1781 if (softc->flags & ADA_FLAG_CAN_TRIM) { 1782 softc->disk->d_flags |= DISKFLAG_CANDELETE; 1783 softc->disk->d_delmaxsize = softc->params.secsize * 1784 ATA_DSM_RANGE_MAX * 1785 softc->trim_max_ranges; 1786 } else if ((softc->flags & ADA_FLAG_CAN_CFA) && 1787 !(softc->flags & ADA_FLAG_CAN_48BIT)) { 1788 softc->disk->d_flags |= DISKFLAG_CANDELETE; 1789 softc->disk->d_delmaxsize = 256 * softc->params.secsize; 1790 } else 1791 softc->disk->d_delmaxsize = maxio; 1792 if ((cpi.hba_misc & PIM_UNMAPPED) != 0) { 1793 softc->disk->d_flags |= DISKFLAG_UNMAPPED_BIO; 1794 softc->unmappedio = 1; 1795 } 1796 if (cpi.hba_misc & PIM_ATA_EXT) 1797 softc->flags |= ADA_FLAG_PIM_ATA_EXT; 1798 strlcpy(softc->disk->d_descr, cgd->ident_data.model, 1799 MIN(sizeof(softc->disk->d_descr), sizeof(cgd->ident_data.model))); 1800 strlcpy(softc->disk->d_ident, cgd->ident_data.serial, 1801 MIN(sizeof(softc->disk->d_ident), sizeof(cgd->ident_data.serial))); 1802 softc->disk->d_hba_vendor = cpi.hba_vendor; 1803 softc->disk->d_hba_device = cpi.hba_device; 1804 softc->disk->d_hba_subvendor = cpi.hba_subvendor; 1805 softc->disk->d_hba_subdevice = cpi.hba_subdevice; 1806 1807 softc->disk->d_sectorsize = softc->params.secsize; 1808 softc->disk->d_mediasize = (off_t)softc->params.sectors * 1809 softc->params.secsize; 1810 if (ata_physical_sector_size(&cgd->ident_data) != 1811 softc->params.secsize) { 1812 softc->disk->d_stripesize = 1813 ata_physical_sector_size(&cgd->ident_data); 1814 softc->disk->d_stripeoffset = (softc->disk->d_stripesize - 1815 ata_logical_sector_offset(&cgd->ident_data)) % 1816 softc->disk->d_stripesize; 1817 } else if (softc->quirks & ADA_Q_4K) { 1818 softc->disk->d_stripesize = 4096; 1819 softc->disk->d_stripeoffset = 0; 1820 } 1821 softc->disk->d_fwsectors = softc->params.secs_per_track; 1822 softc->disk->d_fwheads = softc->params.heads; 1823 ata_disk_firmware_geom_adjust(softc->disk); 1824 1825 /* 1826 * Acquire a reference to the periph before we register with GEOM. 1827 * We'll release this reference once GEOM calls us back (via 1828 * adadiskgonecb()) telling us that our provider has been freed. 1829 */ 1830 if (cam_periph_acquire(periph) != CAM_REQ_CMP) { 1831 xpt_print(periph->path, "%s: lost periph during " 1832 "registration!\n", __func__); 1833 cam_periph_lock(periph); 1834 return (CAM_REQ_CMP_ERR); 1835 } 1836 disk_create(softc->disk, DISK_VERSION); 1837 cam_periph_lock(periph); 1838 1839 dp = &softc->params; 1840 snprintf(announce_buf, ADA_ANNOUNCETMP_SZ, 1841 "%juMB (%ju %u byte sectors)", 1842 ((uintmax_t)dp->secsize * dp->sectors) / (1024 * 1024), 1843 (uintmax_t)dp->sectors, dp->secsize); 1844 1845 sbuf_new(&sb, softc->announce_buffer, ADA_ANNOUNCE_SZ, SBUF_FIXEDLEN); 1846 xpt_announce_periph_sbuf(periph, &sb, announce_buf); 1847 xpt_announce_quirks_sbuf(periph, &sb, softc->quirks, ADA_Q_BIT_STRING); 1848 sbuf_finish(&sb); 1849 sbuf_putbuf(&sb); 1850 1851 /* 1852 * Create our sysctl variables, now that we know 1853 * we have successfully attached. 1854 */ 1855 if (cam_periph_acquire(periph) == CAM_REQ_CMP) 1856 taskqueue_enqueue(taskqueue_thread, &softc->sysctl_task); 1857 1858 /* 1859 * Add async callbacks for bus reset and 1860 * bus device reset calls. I don't bother 1861 * checking if this fails as, in most cases, 1862 * the system will function just fine without 1863 * them and the only alternative would be to 1864 * not attach the device on failure. 1865 */ 1866 xpt_register_async(AC_SENT_BDR | AC_BUS_RESET | AC_LOST_DEVICE | 1867 AC_GETDEV_CHANGED | AC_ADVINFO_CHANGED, 1868 adaasync, periph, periph->path); 1869 1870 /* 1871 * Schedule a periodic event to occasionally send an 1872 * ordered tag to a device. 1873 */ 1874 callout_init_mtx(&softc->sendordered_c, cam_periph_mtx(periph), 0); 1875 callout_reset(&softc->sendordered_c, 1876 (ada_default_timeout * hz) / ADA_ORDEREDTAG_INTERVAL, 1877 adasendorderedtag, softc); 1878 1879 if (ADA_RA >= 0 && softc->flags & ADA_FLAG_CAN_RAHEAD) { 1880 softc->state = ADA_STATE_RAHEAD; 1881 } else if (ADA_WC >= 0 && softc->flags & ADA_FLAG_CAN_WCACHE) { 1882 softc->state = ADA_STATE_WCACHE; 1883 } else if ((softc->flags & ADA_FLAG_CAN_LOG) 1884 && (softc->zone_mode != ADA_ZONE_NONE)) { 1885 softc->state = ADA_STATE_LOGDIR; 1886 } else { 1887 /* 1888 * Nothing to probe, so we can just transition to the 1889 * normal state. 1890 */ 1891 adaprobedone(periph, NULL); 1892 return(CAM_REQ_CMP); 1893 } 1894 1895 xpt_schedule(periph, CAM_PRIORITY_DEV); 1896 1897 return(CAM_REQ_CMP); 1898 } 1899 1900 static int 1901 ada_dsmtrim_req_create(struct ada_softc *softc, struct bio *bp, struct trim_request *req) 1902 { 1903 uint64_t lastlba = (uint64_t)-1; 1904 int c, lastcount = 0, off, ranges = 0; 1905 1906 bzero(req, sizeof(*req)); 1907 TAILQ_INIT(&req->bps); 1908 do { 1909 uint64_t lba = bp->bio_pblkno; 1910 int count = bp->bio_bcount / softc->params.secsize; 1911 1912 /* Try to extend the previous range. */ 1913 if (lba == lastlba) { 1914 c = min(count, ATA_DSM_RANGE_MAX - lastcount); 1915 lastcount += c; 1916 off = (ranges - 1) * ATA_DSM_RANGE_SIZE; 1917 req->data[off + 6] = lastcount & 0xff; 1918 req->data[off + 7] = 1919 (lastcount >> 8) & 0xff; 1920 count -= c; 1921 lba += c; 1922 } 1923 1924 while (count > 0) { 1925 c = min(count, ATA_DSM_RANGE_MAX); 1926 off = ranges * ATA_DSM_RANGE_SIZE; 1927 req->data[off + 0] = lba & 0xff; 1928 req->data[off + 1] = (lba >> 8) & 0xff; 1929 req->data[off + 2] = (lba >> 16) & 0xff; 1930 req->data[off + 3] = (lba >> 24) & 0xff; 1931 req->data[off + 4] = (lba >> 32) & 0xff; 1932 req->data[off + 5] = (lba >> 40) & 0xff; 1933 req->data[off + 6] = c & 0xff; 1934 req->data[off + 7] = (c >> 8) & 0xff; 1935 lba += c; 1936 count -= c; 1937 lastcount = c; 1938 ranges++; 1939 /* 1940 * Its the caller's responsibility to ensure the 1941 * request will fit so we don't need to check for 1942 * overrun here 1943 */ 1944 } 1945 lastlba = lba; 1946 TAILQ_INSERT_TAIL(&req->bps, bp, bio_queue); 1947 1948 bp = cam_iosched_next_trim(softc->cam_iosched); 1949 if (bp == NULL) 1950 break; 1951 if (bp->bio_bcount / softc->params.secsize > 1952 (softc->trim_max_ranges - ranges) * ATA_DSM_RANGE_MAX) { 1953 cam_iosched_put_back_trim(softc->cam_iosched, bp); 1954 break; 1955 } 1956 } while (1); 1957 1958 return (ranges); 1959 } 1960 1961 static void 1962 ada_dsmtrim(struct ada_softc *softc, struct bio *bp, struct ccb_ataio *ataio) 1963 { 1964 struct trim_request *req = &softc->trim_req; 1965 int ranges; 1966 1967 ranges = ada_dsmtrim_req_create(softc, bp, req); 1968 cam_fill_ataio(ataio, 1969 ada_retry_count, 1970 adadone, 1971 CAM_DIR_OUT, 1972 0, 1973 req->data, 1974 howmany(ranges, ATA_DSM_BLK_RANGES) * ATA_DSM_BLK_SIZE, 1975 ada_default_timeout * 1000); 1976 ata_48bit_cmd(ataio, ATA_DATA_SET_MANAGEMENT, 1977 ATA_DSM_TRIM, 0, howmany(ranges, ATA_DSM_BLK_RANGES)); 1978 } 1979 1980 static void 1981 ada_ncq_dsmtrim(struct ada_softc *softc, struct bio *bp, struct ccb_ataio *ataio) 1982 { 1983 struct trim_request *req = &softc->trim_req; 1984 int ranges; 1985 1986 ranges = ada_dsmtrim_req_create(softc, bp, req); 1987 cam_fill_ataio(ataio, 1988 ada_retry_count, 1989 adadone, 1990 CAM_DIR_OUT, 1991 0, 1992 req->data, 1993 howmany(ranges, ATA_DSM_BLK_RANGES) * ATA_DSM_BLK_SIZE, 1994 ada_default_timeout * 1000); 1995 ata_ncq_cmd(ataio, 1996 ATA_SEND_FPDMA_QUEUED, 1997 0, 1998 howmany(ranges, ATA_DSM_BLK_RANGES)); 1999 ataio->cmd.sector_count_exp = ATA_SFPDMA_DSM; 2000 ataio->ata_flags |= ATA_FLAG_AUX; 2001 ataio->aux = 1; 2002 } 2003 2004 static void 2005 ada_cfaerase(struct ada_softc *softc, struct bio *bp, struct ccb_ataio *ataio) 2006 { 2007 struct trim_request *req = &softc->trim_req; 2008 uint64_t lba = bp->bio_pblkno; 2009 uint16_t count = bp->bio_bcount / softc->params.secsize; 2010 2011 bzero(req, sizeof(*req)); 2012 TAILQ_INIT(&req->bps); 2013 TAILQ_INSERT_TAIL(&req->bps, bp, bio_queue); 2014 2015 cam_fill_ataio(ataio, 2016 ada_retry_count, 2017 adadone, 2018 CAM_DIR_NONE, 2019 0, 2020 NULL, 2021 0, 2022 ada_default_timeout*1000); 2023 2024 if (count >= 256) 2025 count = 0; 2026 ata_28bit_cmd(ataio, ATA_CFA_ERASE, 0, lba, count); 2027 } 2028 2029 static int 2030 ada_zone_bio_to_ata(int disk_zone_cmd) 2031 { 2032 switch (disk_zone_cmd) { 2033 case DISK_ZONE_OPEN: 2034 return ATA_ZM_OPEN_ZONE; 2035 case DISK_ZONE_CLOSE: 2036 return ATA_ZM_CLOSE_ZONE; 2037 case DISK_ZONE_FINISH: 2038 return ATA_ZM_FINISH_ZONE; 2039 case DISK_ZONE_RWP: 2040 return ATA_ZM_RWP; 2041 } 2042 2043 return -1; 2044 } 2045 2046 static int 2047 ada_zone_cmd(struct cam_periph *periph, union ccb *ccb, struct bio *bp, 2048 int *queue_ccb) 2049 { 2050 struct ada_softc *softc; 2051 int error; 2052 2053 error = 0; 2054 2055 if (bp->bio_cmd != BIO_ZONE) { 2056 error = EINVAL; 2057 goto bailout; 2058 } 2059 2060 softc = periph->softc; 2061 2062 switch (bp->bio_zone.zone_cmd) { 2063 case DISK_ZONE_OPEN: 2064 case DISK_ZONE_CLOSE: 2065 case DISK_ZONE_FINISH: 2066 case DISK_ZONE_RWP: { 2067 int zone_flags; 2068 int zone_sa; 2069 uint64_t lba; 2070 2071 zone_sa = ada_zone_bio_to_ata(bp->bio_zone.zone_cmd); 2072 if (zone_sa == -1) { 2073 xpt_print(periph->path, "Cannot translate zone " 2074 "cmd %#x to ATA\n", bp->bio_zone.zone_cmd); 2075 error = EINVAL; 2076 goto bailout; 2077 } 2078 2079 zone_flags = 0; 2080 lba = bp->bio_zone.zone_params.rwp.id; 2081 2082 if (bp->bio_zone.zone_params.rwp.flags & 2083 DISK_ZONE_RWP_FLAG_ALL) 2084 zone_flags |= ZBC_OUT_ALL; 2085 2086 ata_zac_mgmt_out(&ccb->ataio, 2087 /*retries*/ ada_retry_count, 2088 /*cbfcnp*/ adadone, 2089 /*use_ncq*/ (softc->flags & 2090 ADA_FLAG_PIM_ATA_EXT) ? 1 : 0, 2091 /*zm_action*/ zone_sa, 2092 /*zone_id*/ lba, 2093 /*zone_flags*/ zone_flags, 2094 /*sector_count*/ 0, 2095 /*data_ptr*/ NULL, 2096 /*dxfer_len*/ 0, 2097 /*timeout*/ ada_default_timeout * 1000); 2098 *queue_ccb = 1; 2099 2100 break; 2101 } 2102 case DISK_ZONE_REPORT_ZONES: { 2103 uint8_t *rz_ptr; 2104 uint32_t num_entries, alloc_size; 2105 struct disk_zone_report *rep; 2106 2107 rep = &bp->bio_zone.zone_params.report; 2108 2109 num_entries = rep->entries_allocated; 2110 if (num_entries == 0) { 2111 xpt_print(periph->path, "No entries allocated for " 2112 "Report Zones request\n"); 2113 error = EINVAL; 2114 goto bailout; 2115 } 2116 alloc_size = sizeof(struct scsi_report_zones_hdr) + 2117 (sizeof(struct scsi_report_zones_desc) * num_entries); 2118 alloc_size = min(alloc_size, softc->disk->d_maxsize); 2119 rz_ptr = malloc(alloc_size, M_ATADA, M_NOWAIT | M_ZERO); 2120 if (rz_ptr == NULL) { 2121 xpt_print(periph->path, "Unable to allocate memory " 2122 "for Report Zones request\n"); 2123 error = ENOMEM; 2124 goto bailout; 2125 } 2126 2127 ata_zac_mgmt_in(&ccb->ataio, 2128 /*retries*/ ada_retry_count, 2129 /*cbcfnp*/ adadone, 2130 /*use_ncq*/ (softc->flags & 2131 ADA_FLAG_PIM_ATA_EXT) ? 1 : 0, 2132 /*zm_action*/ ATA_ZM_REPORT_ZONES, 2133 /*zone_id*/ rep->starting_id, 2134 /*zone_flags*/ rep->rep_options, 2135 /*data_ptr*/ rz_ptr, 2136 /*dxfer_len*/ alloc_size, 2137 /*timeout*/ ada_default_timeout * 1000); 2138 2139 /* 2140 * For BIO_ZONE, this isn't normally needed. However, it 2141 * is used by devstat_end_transaction_bio() to determine 2142 * how much data was transferred. 2143 */ 2144 /* 2145 * XXX KDM we have a problem. But I'm not sure how to fix 2146 * it. devstat uses bio_bcount - bio_resid to calculate 2147 * the amount of data transferred. The GEOM disk code 2148 * uses bio_length - bio_resid to calculate the amount of 2149 * data in bio_completed. We have different structure 2150 * sizes above and below the ada(4) driver. So, if we 2151 * use the sizes above, the amount transferred won't be 2152 * quite accurate for devstat. If we use different sizes 2153 * for bio_bcount and bio_length (above and below 2154 * respectively), then the residual needs to match one or 2155 * the other. Everything is calculated after the bio 2156 * leaves the driver, so changing the values around isn't 2157 * really an option. For now, just set the count to the 2158 * passed in length. This means that the calculations 2159 * above (e.g. bio_completed) will be correct, but the 2160 * amount of data reported to devstat will be slightly 2161 * under or overstated. 2162 */ 2163 bp->bio_bcount = bp->bio_length; 2164 2165 *queue_ccb = 1; 2166 2167 break; 2168 } 2169 case DISK_ZONE_GET_PARAMS: { 2170 struct disk_zone_disk_params *params; 2171 2172 params = &bp->bio_zone.zone_params.disk_params; 2173 bzero(params, sizeof(*params)); 2174 2175 switch (softc->zone_mode) { 2176 case ADA_ZONE_DRIVE_MANAGED: 2177 params->zone_mode = DISK_ZONE_MODE_DRIVE_MANAGED; 2178 break; 2179 case ADA_ZONE_HOST_AWARE: 2180 params->zone_mode = DISK_ZONE_MODE_HOST_AWARE; 2181 break; 2182 case ADA_ZONE_HOST_MANAGED: 2183 params->zone_mode = DISK_ZONE_MODE_HOST_MANAGED; 2184 break; 2185 default: 2186 case ADA_ZONE_NONE: 2187 params->zone_mode = DISK_ZONE_MODE_NONE; 2188 break; 2189 } 2190 2191 if (softc->zone_flags & ADA_ZONE_FLAG_URSWRZ) 2192 params->flags |= DISK_ZONE_DISK_URSWRZ; 2193 2194 if (softc->zone_flags & ADA_ZONE_FLAG_OPT_SEQ_SET) { 2195 params->optimal_seq_zones = softc->optimal_seq_zones; 2196 params->flags |= DISK_ZONE_OPT_SEQ_SET; 2197 } 2198 2199 if (softc->zone_flags & ADA_ZONE_FLAG_OPT_NONSEQ_SET) { 2200 params->optimal_nonseq_zones = 2201 softc->optimal_nonseq_zones; 2202 params->flags |= DISK_ZONE_OPT_NONSEQ_SET; 2203 } 2204 2205 if (softc->zone_flags & ADA_ZONE_FLAG_MAX_SEQ_SET) { 2206 params->max_seq_zones = softc->max_seq_zones; 2207 params->flags |= DISK_ZONE_MAX_SEQ_SET; 2208 } 2209 if (softc->zone_flags & ADA_ZONE_FLAG_RZ_SUP) 2210 params->flags |= DISK_ZONE_RZ_SUP; 2211 2212 if (softc->zone_flags & ADA_ZONE_FLAG_OPEN_SUP) 2213 params->flags |= DISK_ZONE_OPEN_SUP; 2214 2215 if (softc->zone_flags & ADA_ZONE_FLAG_CLOSE_SUP) 2216 params->flags |= DISK_ZONE_CLOSE_SUP; 2217 2218 if (softc->zone_flags & ADA_ZONE_FLAG_FINISH_SUP) 2219 params->flags |= DISK_ZONE_FINISH_SUP; 2220 2221 if (softc->zone_flags & ADA_ZONE_FLAG_RWP_SUP) 2222 params->flags |= DISK_ZONE_RWP_SUP; 2223 break; 2224 } 2225 default: 2226 break; 2227 } 2228 bailout: 2229 return (error); 2230 } 2231 2232 static void 2233 adastart(struct cam_periph *periph, union ccb *start_ccb) 2234 { 2235 struct ada_softc *softc = (struct ada_softc *)periph->softc; 2236 struct ccb_ataio *ataio = &start_ccb->ataio; 2237 2238 CAM_DEBUG(periph->path, CAM_DEBUG_TRACE, ("adastart\n")); 2239 2240 switch (softc->state) { 2241 case ADA_STATE_NORMAL: 2242 { 2243 struct bio *bp; 2244 u_int8_t tag_code; 2245 2246 bp = cam_iosched_next_bio(softc->cam_iosched); 2247 if (bp == NULL) { 2248 xpt_release_ccb(start_ccb); 2249 break; 2250 } 2251 2252 if ((bp->bio_flags & BIO_ORDERED) != 0 || 2253 (bp->bio_cmd != BIO_DELETE && (softc->flags & ADA_FLAG_NEED_OTAG) != 0)) { 2254 softc->flags &= ~ADA_FLAG_NEED_OTAG; 2255 softc->flags |= ADA_FLAG_WAS_OTAG; 2256 tag_code = 0; 2257 } else { 2258 tag_code = 1; 2259 } 2260 switch (bp->bio_cmd) { 2261 case BIO_WRITE: 2262 case BIO_READ: 2263 { 2264 uint64_t lba = bp->bio_pblkno; 2265 uint16_t count = bp->bio_bcount / softc->params.secsize; 2266 void *data_ptr; 2267 int rw_op; 2268 2269 if (bp->bio_cmd == BIO_WRITE) { 2270 softc->flags |= ADA_FLAG_DIRTY; 2271 rw_op = CAM_DIR_OUT; 2272 } else { 2273 rw_op = CAM_DIR_IN; 2274 } 2275 2276 data_ptr = bp->bio_data; 2277 if ((bp->bio_flags & (BIO_UNMAPPED|BIO_VLIST)) != 0) { 2278 rw_op |= CAM_DATA_BIO; 2279 data_ptr = bp; 2280 } 2281 2282 #ifdef ADA_TEST_FAILURE 2283 int fail = 0; 2284 2285 /* 2286 * Support the failure ioctls. If the command is a 2287 * read, and there are pending forced read errors, or 2288 * if a write and pending write errors, then fail this 2289 * operation with EIO. This is useful for testing 2290 * purposes. Also, support having every Nth read fail. 2291 * 2292 * This is a rather blunt tool. 2293 */ 2294 if (bp->bio_cmd == BIO_READ) { 2295 if (softc->force_read_error) { 2296 softc->force_read_error--; 2297 fail = 1; 2298 } 2299 if (softc->periodic_read_error > 0) { 2300 if (++softc->periodic_read_count >= 2301 softc->periodic_read_error) { 2302 softc->periodic_read_count = 0; 2303 fail = 1; 2304 } 2305 } 2306 } else { 2307 if (softc->force_write_error) { 2308 softc->force_write_error--; 2309 fail = 1; 2310 } 2311 } 2312 if (fail) { 2313 biofinish(bp, NULL, EIO); 2314 xpt_release_ccb(start_ccb); 2315 adaschedule(periph); 2316 return; 2317 } 2318 #endif 2319 KASSERT((bp->bio_flags & BIO_UNMAPPED) == 0 || 2320 round_page(bp->bio_bcount + bp->bio_ma_offset) / 2321 PAGE_SIZE == bp->bio_ma_n, 2322 ("Short bio %p", bp)); 2323 cam_fill_ataio(ataio, 2324 ada_retry_count, 2325 adadone, 2326 rw_op, 2327 0, 2328 data_ptr, 2329 bp->bio_bcount, 2330 ada_default_timeout*1000); 2331 2332 if ((softc->flags & ADA_FLAG_CAN_NCQ) && tag_code) { 2333 if (bp->bio_cmd == BIO_READ) { 2334 ata_ncq_cmd(ataio, ATA_READ_FPDMA_QUEUED, 2335 lba, count); 2336 } else { 2337 ata_ncq_cmd(ataio, ATA_WRITE_FPDMA_QUEUED, 2338 lba, count); 2339 } 2340 } else if ((softc->flags & ADA_FLAG_CAN_48BIT) && 2341 (lba + count >= ATA_MAX_28BIT_LBA || 2342 count > 256)) { 2343 if (softc->flags & ADA_FLAG_CAN_DMA48) { 2344 if (bp->bio_cmd == BIO_READ) { 2345 ata_48bit_cmd(ataio, ATA_READ_DMA48, 2346 0, lba, count); 2347 } else { 2348 ata_48bit_cmd(ataio, ATA_WRITE_DMA48, 2349 0, lba, count); 2350 } 2351 } else { 2352 if (bp->bio_cmd == BIO_READ) { 2353 ata_48bit_cmd(ataio, ATA_READ_MUL48, 2354 0, lba, count); 2355 } else { 2356 ata_48bit_cmd(ataio, ATA_WRITE_MUL48, 2357 0, lba, count); 2358 } 2359 } 2360 } else { 2361 if (count == 256) 2362 count = 0; 2363 if (softc->flags & ADA_FLAG_CAN_DMA) { 2364 if (bp->bio_cmd == BIO_READ) { 2365 ata_28bit_cmd(ataio, ATA_READ_DMA, 2366 0, lba, count); 2367 } else { 2368 ata_28bit_cmd(ataio, ATA_WRITE_DMA, 2369 0, lba, count); 2370 } 2371 } else { 2372 if (bp->bio_cmd == BIO_READ) { 2373 ata_28bit_cmd(ataio, ATA_READ_MUL, 2374 0, lba, count); 2375 } else { 2376 ata_28bit_cmd(ataio, ATA_WRITE_MUL, 2377 0, lba, count); 2378 } 2379 } 2380 } 2381 break; 2382 } 2383 case BIO_DELETE: 2384 switch (softc->delete_method) { 2385 case ADA_DELETE_NCQ_DSM_TRIM: 2386 ada_ncq_dsmtrim(softc, bp, ataio); 2387 break; 2388 case ADA_DELETE_DSM_TRIM: 2389 ada_dsmtrim(softc, bp, ataio); 2390 break; 2391 case ADA_DELETE_CFA_ERASE: 2392 ada_cfaerase(softc, bp, ataio); 2393 break; 2394 default: 2395 biofinish(bp, NULL, EOPNOTSUPP); 2396 xpt_release_ccb(start_ccb); 2397 adaschedule(periph); 2398 return; 2399 } 2400 start_ccb->ccb_h.ccb_state = ADA_CCB_TRIM; 2401 start_ccb->ccb_h.flags |= CAM_UNLOCKED; 2402 cam_iosched_submit_trim(softc->cam_iosched); 2403 goto out; 2404 case BIO_FLUSH: 2405 cam_fill_ataio(ataio, 2406 1, 2407 adadone, 2408 CAM_DIR_NONE, 2409 0, 2410 NULL, 2411 0, 2412 ada_default_timeout*1000); 2413 2414 if (softc->flags & ADA_FLAG_CAN_48BIT) 2415 ata_48bit_cmd(ataio, ATA_FLUSHCACHE48, 0, 0, 0); 2416 else 2417 ata_28bit_cmd(ataio, ATA_FLUSHCACHE, 0, 0, 0); 2418 break; 2419 case BIO_ZONE: { 2420 int error, queue_ccb; 2421 2422 queue_ccb = 0; 2423 2424 error = ada_zone_cmd(periph, start_ccb, bp, &queue_ccb); 2425 if ((error != 0) 2426 || (queue_ccb == 0)) { 2427 biofinish(bp, NULL, error); 2428 xpt_release_ccb(start_ccb); 2429 return; 2430 } 2431 break; 2432 } 2433 } 2434 start_ccb->ccb_h.ccb_state = ADA_CCB_BUFFER_IO; 2435 start_ccb->ccb_h.flags |= CAM_UNLOCKED; 2436 out: 2437 start_ccb->ccb_h.ccb_bp = bp; 2438 softc->outstanding_cmds++; 2439 softc->refcount++; 2440 cam_periph_unlock(periph); 2441 xpt_action(start_ccb); 2442 cam_periph_lock(periph); 2443 softc->refcount--; 2444 2445 /* May have more work to do, so ensure we stay scheduled */ 2446 adaschedule(periph); 2447 break; 2448 } 2449 case ADA_STATE_RAHEAD: 2450 case ADA_STATE_WCACHE: 2451 { 2452 cam_fill_ataio(ataio, 2453 1, 2454 adadone, 2455 CAM_DIR_NONE, 2456 0, 2457 NULL, 2458 0, 2459 ada_default_timeout*1000); 2460 2461 if (softc->state == ADA_STATE_RAHEAD) { 2462 ata_28bit_cmd(ataio, ATA_SETFEATURES, ADA_RA ? 2463 ATA_SF_ENAB_RCACHE : ATA_SF_DIS_RCACHE, 0, 0); 2464 start_ccb->ccb_h.ccb_state = ADA_CCB_RAHEAD; 2465 } else { 2466 ata_28bit_cmd(ataio, ATA_SETFEATURES, ADA_WC ? 2467 ATA_SF_ENAB_WCACHE : ATA_SF_DIS_WCACHE, 0, 0); 2468 start_ccb->ccb_h.ccb_state = ADA_CCB_WCACHE; 2469 } 2470 start_ccb->ccb_h.flags |= CAM_DEV_QFREEZE; 2471 xpt_action(start_ccb); 2472 break; 2473 } 2474 case ADA_STATE_LOGDIR: 2475 { 2476 struct ata_gp_log_dir *log_dir; 2477 2478 if ((softc->flags & ADA_FLAG_CAN_LOG) == 0) { 2479 adaprobedone(periph, start_ccb); 2480 break; 2481 } 2482 2483 log_dir = malloc(sizeof(*log_dir), M_ATADA, M_NOWAIT|M_ZERO); 2484 if (log_dir == NULL) { 2485 xpt_print(periph->path, "Couldn't malloc log_dir " 2486 "data\n"); 2487 softc->state = ADA_STATE_NORMAL; 2488 xpt_release_ccb(start_ccb); 2489 break; 2490 } 2491 2492 2493 ata_read_log(ataio, 2494 /*retries*/1, 2495 /*cbfcnp*/adadone, 2496 /*log_address*/ ATA_LOG_DIRECTORY, 2497 /*page_number*/ 0, 2498 /*block_count*/ 1, 2499 /*protocol*/ softc->flags & ADA_FLAG_CAN_DMA ? 2500 CAM_ATAIO_DMA : 0, 2501 /*data_ptr*/ (uint8_t *)log_dir, 2502 /*dxfer_len*/sizeof(*log_dir), 2503 /*timeout*/ada_default_timeout*1000); 2504 2505 start_ccb->ccb_h.ccb_state = ADA_CCB_LOGDIR; 2506 xpt_action(start_ccb); 2507 break; 2508 } 2509 case ADA_STATE_IDDIR: 2510 { 2511 struct ata_identify_log_pages *id_dir; 2512 2513 id_dir = malloc(sizeof(*id_dir), M_ATADA, M_NOWAIT | M_ZERO); 2514 if (id_dir == NULL) { 2515 xpt_print(periph->path, "Couldn't malloc id_dir " 2516 "data\n"); 2517 adaprobedone(periph, start_ccb); 2518 break; 2519 } 2520 2521 ata_read_log(ataio, 2522 /*retries*/1, 2523 /*cbfcnp*/adadone, 2524 /*log_address*/ ATA_IDENTIFY_DATA_LOG, 2525 /*page_number*/ ATA_IDL_PAGE_LIST, 2526 /*block_count*/ 1, 2527 /*protocol*/ softc->flags & ADA_FLAG_CAN_DMA ? 2528 CAM_ATAIO_DMA : 0, 2529 /*data_ptr*/ (uint8_t *)id_dir, 2530 /*dxfer_len*/ sizeof(*id_dir), 2531 /*timeout*/ada_default_timeout*1000); 2532 2533 start_ccb->ccb_h.ccb_state = ADA_CCB_IDDIR; 2534 xpt_action(start_ccb); 2535 break; 2536 } 2537 case ADA_STATE_SUP_CAP: 2538 { 2539 struct ata_identify_log_sup_cap *sup_cap; 2540 2541 sup_cap = malloc(sizeof(*sup_cap), M_ATADA, M_NOWAIT|M_ZERO); 2542 if (sup_cap == NULL) { 2543 xpt_print(periph->path, "Couldn't malloc sup_cap " 2544 "data\n"); 2545 adaprobedone(periph, start_ccb); 2546 break; 2547 } 2548 2549 ata_read_log(ataio, 2550 /*retries*/1, 2551 /*cbfcnp*/adadone, 2552 /*log_address*/ ATA_IDENTIFY_DATA_LOG, 2553 /*page_number*/ ATA_IDL_SUP_CAP, 2554 /*block_count*/ 1, 2555 /*protocol*/ softc->flags & ADA_FLAG_CAN_DMA ? 2556 CAM_ATAIO_DMA : 0, 2557 /*data_ptr*/ (uint8_t *)sup_cap, 2558 /*dxfer_len*/ sizeof(*sup_cap), 2559 /*timeout*/ada_default_timeout*1000); 2560 2561 start_ccb->ccb_h.ccb_state = ADA_CCB_SUP_CAP; 2562 xpt_action(start_ccb); 2563 break; 2564 } 2565 case ADA_STATE_ZONE: 2566 { 2567 struct ata_zoned_info_log *ata_zone; 2568 2569 ata_zone = malloc(sizeof(*ata_zone), M_ATADA, M_NOWAIT|M_ZERO); 2570 if (ata_zone == NULL) { 2571 xpt_print(periph->path, "Couldn't malloc ata_zone " 2572 "data\n"); 2573 adaprobedone(periph, start_ccb); 2574 break; 2575 } 2576 2577 ata_read_log(ataio, 2578 /*retries*/1, 2579 /*cbfcnp*/adadone, 2580 /*log_address*/ ATA_IDENTIFY_DATA_LOG, 2581 /*page_number*/ ATA_IDL_ZDI, 2582 /*block_count*/ 1, 2583 /*protocol*/ softc->flags & ADA_FLAG_CAN_DMA ? 2584 CAM_ATAIO_DMA : 0, 2585 /*data_ptr*/ (uint8_t *)ata_zone, 2586 /*dxfer_len*/ sizeof(*ata_zone), 2587 /*timeout*/ada_default_timeout*1000); 2588 2589 start_ccb->ccb_h.ccb_state = ADA_CCB_ZONE; 2590 xpt_action(start_ccb); 2591 break; 2592 } 2593 } 2594 } 2595 2596 static void 2597 adaprobedone(struct cam_periph *periph, union ccb *ccb) 2598 { 2599 struct ada_softc *softc; 2600 2601 softc = (struct ada_softc *)periph->softc; 2602 2603 if (ccb != NULL) 2604 xpt_release_ccb(ccb); 2605 2606 softc->state = ADA_STATE_NORMAL; 2607 softc->flags |= ADA_FLAG_PROBED; 2608 adaschedule(periph); 2609 if ((softc->flags & ADA_FLAG_ANNOUNCED) == 0) { 2610 softc->flags |= ADA_FLAG_ANNOUNCED; 2611 cam_periph_unhold(periph); 2612 } else { 2613 cam_periph_release_locked(periph); 2614 } 2615 } 2616 2617 static void 2618 adazonedone(struct cam_periph *periph, union ccb *ccb) 2619 { 2620 struct ada_softc *softc; 2621 struct bio *bp; 2622 2623 softc = periph->softc; 2624 bp = (struct bio *)ccb->ccb_h.ccb_bp; 2625 2626 switch (bp->bio_zone.zone_cmd) { 2627 case DISK_ZONE_OPEN: 2628 case DISK_ZONE_CLOSE: 2629 case DISK_ZONE_FINISH: 2630 case DISK_ZONE_RWP: 2631 break; 2632 case DISK_ZONE_REPORT_ZONES: { 2633 uint32_t avail_len; 2634 struct disk_zone_report *rep; 2635 struct scsi_report_zones_hdr *hdr; 2636 struct scsi_report_zones_desc *desc; 2637 struct disk_zone_rep_entry *entry; 2638 uint32_t num_alloced, hdr_len, num_avail; 2639 uint32_t num_to_fill, i; 2640 2641 rep = &bp->bio_zone.zone_params.report; 2642 avail_len = ccb->ataio.dxfer_len - ccb->ataio.resid; 2643 /* 2644 * Note that bio_resid isn't normally used for zone 2645 * commands, but it is used by devstat_end_transaction_bio() 2646 * to determine how much data was transferred. Because 2647 * the size of the SCSI/ATA data structures is different 2648 * than the size of the BIO interface structures, the 2649 * amount of data actually transferred from the drive will 2650 * be different than the amount of data transferred to 2651 * the user. 2652 */ 2653 num_alloced = rep->entries_allocated; 2654 hdr = (struct scsi_report_zones_hdr *)ccb->ataio.data_ptr; 2655 if (avail_len < sizeof(*hdr)) { 2656 /* 2657 * Is there a better error than EIO here? We asked 2658 * for at least the header, and we got less than 2659 * that. 2660 */ 2661 bp->bio_error = EIO; 2662 bp->bio_flags |= BIO_ERROR; 2663 bp->bio_resid = bp->bio_bcount; 2664 break; 2665 } 2666 2667 hdr_len = le32dec(hdr->length); 2668 if (hdr_len > 0) 2669 rep->entries_available = hdr_len / sizeof(*desc); 2670 else 2671 rep->entries_available = 0; 2672 /* 2673 * NOTE: using the same values for the BIO version of the 2674 * same field as the SCSI/ATA values. This means we could 2675 * get some additional values that aren't defined in bio.h 2676 * if more values of the same field are defined later. 2677 */ 2678 rep->header.same = hdr->byte4 & SRZ_SAME_MASK; 2679 rep->header.maximum_lba = le64dec(hdr->maximum_lba); 2680 /* 2681 * If the drive reports no entries that match the query, 2682 * we're done. 2683 */ 2684 if (hdr_len == 0) { 2685 rep->entries_filled = 0; 2686 bp->bio_resid = bp->bio_bcount; 2687 break; 2688 } 2689 2690 num_avail = min((avail_len - sizeof(*hdr)) / sizeof(*desc), 2691 hdr_len / sizeof(*desc)); 2692 /* 2693 * If the drive didn't return any data, then we're done. 2694 */ 2695 if (num_avail == 0) { 2696 rep->entries_filled = 0; 2697 bp->bio_resid = bp->bio_bcount; 2698 break; 2699 } 2700 2701 num_to_fill = min(num_avail, rep->entries_allocated); 2702 /* 2703 * If the user didn't allocate any entries for us to fill, 2704 * we're done. 2705 */ 2706 if (num_to_fill == 0) { 2707 rep->entries_filled = 0; 2708 bp->bio_resid = bp->bio_bcount; 2709 break; 2710 } 2711 2712 for (i = 0, desc = &hdr->desc_list[0], entry=&rep->entries[0]; 2713 i < num_to_fill; i++, desc++, entry++) { 2714 /* 2715 * NOTE: we're mapping the values here directly 2716 * from the SCSI/ATA bit definitions to the bio.h 2717 * definitions. There is also a warning in 2718 * disk_zone.h, but the impact is that if 2719 * additional values are added in the SCSI/ATA 2720 * specs these will be visible to consumers of 2721 * this interface. 2722 */ 2723 entry->zone_type = desc->zone_type & SRZ_TYPE_MASK; 2724 entry->zone_condition = 2725 (desc->zone_flags & SRZ_ZONE_COND_MASK) >> 2726 SRZ_ZONE_COND_SHIFT; 2727 entry->zone_flags |= desc->zone_flags & 2728 (SRZ_ZONE_NON_SEQ|SRZ_ZONE_RESET); 2729 entry->zone_length = le64dec(desc->zone_length); 2730 entry->zone_start_lba = le64dec(desc->zone_start_lba); 2731 entry->write_pointer_lba = 2732 le64dec(desc->write_pointer_lba); 2733 } 2734 rep->entries_filled = num_to_fill; 2735 /* 2736 * Note that this residual is accurate from the user's 2737 * standpoint, but the amount transferred isn't accurate 2738 * from the standpoint of what actually came back from the 2739 * drive. 2740 */ 2741 bp->bio_resid = bp->bio_bcount - (num_to_fill * sizeof(*entry)); 2742 break; 2743 } 2744 case DISK_ZONE_GET_PARAMS: 2745 default: 2746 /* 2747 * In theory we should not get a GET_PARAMS bio, since it 2748 * should be handled without queueing the command to the 2749 * drive. 2750 */ 2751 panic("%s: Invalid zone command %d", __func__, 2752 bp->bio_zone.zone_cmd); 2753 break; 2754 } 2755 2756 if (bp->bio_zone.zone_cmd == DISK_ZONE_REPORT_ZONES) 2757 free(ccb->ataio.data_ptr, M_ATADA); 2758 } 2759 2760 2761 static void 2762 adadone(struct cam_periph *periph, union ccb *done_ccb) 2763 { 2764 struct ada_softc *softc; 2765 struct ccb_ataio *ataio; 2766 struct cam_path *path; 2767 uint32_t priority; 2768 int state; 2769 2770 softc = (struct ada_softc *)periph->softc; 2771 ataio = &done_ccb->ataio; 2772 path = done_ccb->ccb_h.path; 2773 priority = done_ccb->ccb_h.pinfo.priority; 2774 2775 CAM_DEBUG(path, CAM_DEBUG_TRACE, ("adadone\n")); 2776 2777 state = ataio->ccb_h.ccb_state & ADA_CCB_TYPE_MASK; 2778 switch (state) { 2779 case ADA_CCB_BUFFER_IO: 2780 case ADA_CCB_TRIM: 2781 { 2782 struct bio *bp; 2783 int error; 2784 2785 cam_periph_lock(periph); 2786 bp = (struct bio *)done_ccb->ccb_h.ccb_bp; 2787 if ((done_ccb->ccb_h.status & CAM_STATUS_MASK) != CAM_REQ_CMP) { 2788 error = adaerror(done_ccb, 0, 0); 2789 if (error == ERESTART) { 2790 /* A retry was scheduled, so just return. */ 2791 cam_periph_unlock(periph); 2792 return; 2793 } 2794 if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) 2795 cam_release_devq(path, 2796 /*relsim_flags*/0, 2797 /*reduction*/0, 2798 /*timeout*/0, 2799 /*getcount_only*/0); 2800 /* 2801 * If we get an error on an NCQ DSM TRIM, fall back 2802 * to a non-NCQ DSM TRIM forever. Please note that if 2803 * CAN_NCQ_TRIM is set, CAN_TRIM is necessarily set too. 2804 * However, for this one trim, we treat it as advisory 2805 * and return success up the stack. 2806 */ 2807 if (state == ADA_CCB_TRIM && 2808 error != 0 && 2809 (softc->flags & ADA_FLAG_CAN_NCQ_TRIM) != 0) { 2810 softc->flags &= ~ADA_FLAG_CAN_NCQ_TRIM; 2811 error = 0; 2812 adasetdeletemethod(softc); 2813 } 2814 } else { 2815 if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) 2816 panic("REQ_CMP with QFRZN"); 2817 2818 error = 0; 2819 } 2820 bp->bio_error = error; 2821 if (error != 0) { 2822 bp->bio_resid = bp->bio_bcount; 2823 bp->bio_flags |= BIO_ERROR; 2824 } else { 2825 if (bp->bio_cmd == BIO_ZONE) 2826 adazonedone(periph, done_ccb); 2827 else if (state == ADA_CCB_TRIM) 2828 bp->bio_resid = 0; 2829 else 2830 bp->bio_resid = ataio->resid; 2831 2832 if ((bp->bio_resid > 0) 2833 && (bp->bio_cmd != BIO_ZONE)) 2834 bp->bio_flags |= BIO_ERROR; 2835 } 2836 softc->outstanding_cmds--; 2837 if (softc->outstanding_cmds == 0) 2838 softc->flags |= ADA_FLAG_WAS_OTAG; 2839 2840 cam_iosched_bio_complete(softc->cam_iosched, bp, done_ccb); 2841 xpt_release_ccb(done_ccb); 2842 if (state == ADA_CCB_TRIM) { 2843 TAILQ_HEAD(, bio) queue; 2844 struct bio *bp1; 2845 2846 TAILQ_INIT(&queue); 2847 TAILQ_CONCAT(&queue, &softc->trim_req.bps, bio_queue); 2848 /* 2849 * Normally, the xpt_release_ccb() above would make sure 2850 * that when we have more work to do, that work would 2851 * get kicked off. However, we specifically keep 2852 * trim_running set to 0 before the call above to allow 2853 * other I/O to progress when many BIO_DELETE requests 2854 * are pushed down. We set trim_running to 0 and call 2855 * daschedule again so that we don't stall if there are 2856 * no other I/Os pending apart from BIO_DELETEs. 2857 */ 2858 cam_iosched_trim_done(softc->cam_iosched); 2859 adaschedule(periph); 2860 cam_periph_unlock(periph); 2861 while ((bp1 = TAILQ_FIRST(&queue)) != NULL) { 2862 TAILQ_REMOVE(&queue, bp1, bio_queue); 2863 bp1->bio_error = error; 2864 if (error != 0) { 2865 bp1->bio_flags |= BIO_ERROR; 2866 bp1->bio_resid = bp1->bio_bcount; 2867 } else 2868 bp1->bio_resid = 0; 2869 biodone(bp1); 2870 } 2871 } else { 2872 adaschedule(periph); 2873 cam_periph_unlock(periph); 2874 biodone(bp); 2875 } 2876 return; 2877 } 2878 case ADA_CCB_RAHEAD: 2879 { 2880 if ((done_ccb->ccb_h.status & CAM_STATUS_MASK) != CAM_REQ_CMP) { 2881 if (adaerror(done_ccb, 0, 0) == ERESTART) { 2882 /* Drop freeze taken due to CAM_DEV_QFREEZE */ 2883 cam_release_devq(path, 0, 0, 0, FALSE); 2884 return; 2885 } else if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) { 2886 cam_release_devq(path, 2887 /*relsim_flags*/0, 2888 /*reduction*/0, 2889 /*timeout*/0, 2890 /*getcount_only*/0); 2891 } 2892 } 2893 2894 /* 2895 * Since our peripheral may be invalidated by an error 2896 * above or an external event, we must release our CCB 2897 * before releasing the reference on the peripheral. 2898 * The peripheral will only go away once the last reference 2899 * is removed, and we need it around for the CCB release 2900 * operation. 2901 */ 2902 2903 xpt_release_ccb(done_ccb); 2904 softc->state = ADA_STATE_WCACHE; 2905 xpt_schedule(periph, priority); 2906 /* Drop freeze taken due to CAM_DEV_QFREEZE */ 2907 cam_release_devq(path, 0, 0, 0, FALSE); 2908 return; 2909 } 2910 case ADA_CCB_WCACHE: 2911 { 2912 if ((done_ccb->ccb_h.status & CAM_STATUS_MASK) != CAM_REQ_CMP) { 2913 if (adaerror(done_ccb, 0, 0) == ERESTART) { 2914 /* Drop freeze taken due to CAM_DEV_QFREEZE */ 2915 cam_release_devq(path, 0, 0, 0, FALSE); 2916 return; 2917 } else if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) != 0) { 2918 cam_release_devq(path, 2919 /*relsim_flags*/0, 2920 /*reduction*/0, 2921 /*timeout*/0, 2922 /*getcount_only*/0); 2923 } 2924 } 2925 2926 /* Drop freeze taken due to CAM_DEV_QFREEZE */ 2927 cam_release_devq(path, 0, 0, 0, FALSE); 2928 2929 if ((softc->flags & ADA_FLAG_CAN_LOG) 2930 && (softc->zone_mode != ADA_ZONE_NONE)) { 2931 xpt_release_ccb(done_ccb); 2932 softc->state = ADA_STATE_LOGDIR; 2933 xpt_schedule(periph, priority); 2934 } else { 2935 adaprobedone(periph, done_ccb); 2936 } 2937 return; 2938 } 2939 case ADA_CCB_LOGDIR: 2940 { 2941 int error; 2942 2943 if ((done_ccb->ccb_h.status & CAM_STATUS_MASK) == CAM_REQ_CMP) { 2944 error = 0; 2945 softc->valid_logdir_len = 0; 2946 bzero(&softc->ata_logdir, sizeof(softc->ata_logdir)); 2947 softc->valid_logdir_len = 2948 ataio->dxfer_len - ataio->resid; 2949 if (softc->valid_logdir_len > 0) 2950 bcopy(ataio->data_ptr, &softc->ata_logdir, 2951 min(softc->valid_logdir_len, 2952 sizeof(softc->ata_logdir))); 2953 /* 2954 * Figure out whether the Identify Device log is 2955 * supported. The General Purpose log directory 2956 * has a header, and lists the number of pages 2957 * available for each GP log identified by the 2958 * offset into the list. 2959 */ 2960 if ((softc->valid_logdir_len >= 2961 ((ATA_IDENTIFY_DATA_LOG + 1) * sizeof(uint16_t))) 2962 && (le16dec(softc->ata_logdir.header) == 2963 ATA_GP_LOG_DIR_VERSION) 2964 && (le16dec(&softc->ata_logdir.num_pages[ 2965 (ATA_IDENTIFY_DATA_LOG * 2966 sizeof(uint16_t)) - sizeof(uint16_t)]) > 0)){ 2967 softc->flags |= ADA_FLAG_CAN_IDLOG; 2968 } else { 2969 softc->flags &= ~ADA_FLAG_CAN_IDLOG; 2970 } 2971 } else { 2972 error = adaerror(done_ccb, CAM_RETRY_SELTO, 2973 SF_RETRY_UA|SF_NO_PRINT); 2974 if (error == ERESTART) 2975 return; 2976 else if (error != 0) { 2977 /* 2978 * If we can't get the ATA log directory, 2979 * then ATA logs are effectively not 2980 * supported even if the bit is set in the 2981 * identify data. 2982 */ 2983 softc->flags &= ~(ADA_FLAG_CAN_LOG | 2984 ADA_FLAG_CAN_IDLOG); 2985 if ((done_ccb->ccb_h.status & 2986 CAM_DEV_QFRZN) != 0) { 2987 /* Don't wedge this device's queue */ 2988 cam_release_devq(done_ccb->ccb_h.path, 2989 /*relsim_flags*/0, 2990 /*reduction*/0, 2991 /*timeout*/0, 2992 /*getcount_only*/0); 2993 } 2994 } 2995 2996 2997 } 2998 2999 free(ataio->data_ptr, M_ATADA); 3000 3001 if ((error == 0) 3002 && (softc->flags & ADA_FLAG_CAN_IDLOG)) { 3003 softc->state = ADA_STATE_IDDIR; 3004 xpt_release_ccb(done_ccb); 3005 xpt_schedule(periph, priority); 3006 } else 3007 adaprobedone(periph, done_ccb); 3008 3009 return; 3010 } 3011 case ADA_CCB_IDDIR: { 3012 int error; 3013 3014 if ((ataio->ccb_h.status & CAM_STATUS_MASK) == CAM_REQ_CMP) { 3015 off_t entries_offset, max_entries; 3016 error = 0; 3017 3018 softc->valid_iddir_len = 0; 3019 bzero(&softc->ata_iddir, sizeof(softc->ata_iddir)); 3020 softc->flags &= ~(ADA_FLAG_CAN_SUPCAP | 3021 ADA_FLAG_CAN_ZONE); 3022 softc->valid_iddir_len = 3023 ataio->dxfer_len - ataio->resid; 3024 if (softc->valid_iddir_len > 0) 3025 bcopy(ataio->data_ptr, &softc->ata_iddir, 3026 min(softc->valid_iddir_len, 3027 sizeof(softc->ata_iddir))); 3028 3029 entries_offset = 3030 __offsetof(struct ata_identify_log_pages,entries); 3031 max_entries = softc->valid_iddir_len - entries_offset; 3032 if ((softc->valid_iddir_len > (entries_offset + 1)) 3033 && (le64dec(softc->ata_iddir.header) == 3034 ATA_IDLOG_REVISION) 3035 && (softc->ata_iddir.entry_count > 0)) { 3036 int num_entries, i; 3037 3038 num_entries = softc->ata_iddir.entry_count; 3039 num_entries = min(num_entries, 3040 softc->valid_iddir_len - entries_offset); 3041 for (i = 0; i < num_entries && 3042 i < max_entries; i++) { 3043 if (softc->ata_iddir.entries[i] == 3044 ATA_IDL_SUP_CAP) 3045 softc->flags |= 3046 ADA_FLAG_CAN_SUPCAP; 3047 else if (softc->ata_iddir.entries[i]== 3048 ATA_IDL_ZDI) 3049 softc->flags |= 3050 ADA_FLAG_CAN_ZONE; 3051 3052 if ((softc->flags & 3053 ADA_FLAG_CAN_SUPCAP) 3054 && (softc->flags & 3055 ADA_FLAG_CAN_ZONE)) 3056 break; 3057 } 3058 } 3059 } else { 3060 error = adaerror(done_ccb, CAM_RETRY_SELTO, 3061 SF_RETRY_UA|SF_NO_PRINT); 3062 if (error == ERESTART) 3063 return; 3064 else if (error != 0) { 3065 /* 3066 * If we can't get the ATA Identify Data log 3067 * directory, then it effectively isn't 3068 * supported even if the ATA Log directory 3069 * a non-zero number of pages present for 3070 * this log. 3071 */ 3072 softc->flags &= ~ADA_FLAG_CAN_IDLOG; 3073 if ((done_ccb->ccb_h.status & 3074 CAM_DEV_QFRZN) != 0) { 3075 /* Don't wedge this device's queue */ 3076 cam_release_devq(done_ccb->ccb_h.path, 3077 /*relsim_flags*/0, 3078 /*reduction*/0, 3079 /*timeout*/0, 3080 /*getcount_only*/0); 3081 } 3082 } 3083 } 3084 3085 free(ataio->data_ptr, M_ATADA); 3086 3087 if ((error == 0) 3088 && (softc->flags & ADA_FLAG_CAN_SUPCAP)) { 3089 softc->state = ADA_STATE_SUP_CAP; 3090 xpt_release_ccb(done_ccb); 3091 xpt_schedule(periph, priority); 3092 } else 3093 adaprobedone(periph, done_ccb); 3094 return; 3095 } 3096 case ADA_CCB_SUP_CAP: { 3097 int error; 3098 3099 if ((ataio->ccb_h.status & CAM_STATUS_MASK) == CAM_REQ_CMP) { 3100 uint32_t valid_len; 3101 size_t needed_size; 3102 struct ata_identify_log_sup_cap *sup_cap; 3103 error = 0; 3104 3105 sup_cap = (struct ata_identify_log_sup_cap *) 3106 ataio->data_ptr; 3107 valid_len = ataio->dxfer_len - ataio->resid; 3108 needed_size = 3109 __offsetof(struct ata_identify_log_sup_cap, 3110 sup_zac_cap) + 1 + sizeof(sup_cap->sup_zac_cap); 3111 if (valid_len >= needed_size) { 3112 uint64_t zoned, zac_cap; 3113 3114 zoned = le64dec(sup_cap->zoned_cap); 3115 if (zoned & ATA_ZONED_VALID) { 3116 /* 3117 * This should have already been 3118 * set, because this is also in the 3119 * ATA identify data. 3120 */ 3121 if ((zoned & ATA_ZONED_MASK) == 3122 ATA_SUPPORT_ZONE_HOST_AWARE) 3123 softc->zone_mode = 3124 ADA_ZONE_HOST_AWARE; 3125 else if ((zoned & ATA_ZONED_MASK) == 3126 ATA_SUPPORT_ZONE_DEV_MANAGED) 3127 softc->zone_mode = 3128 ADA_ZONE_DRIVE_MANAGED; 3129 } 3130 3131 zac_cap = le64dec(sup_cap->sup_zac_cap); 3132 if (zac_cap & ATA_SUP_ZAC_CAP_VALID) { 3133 if (zac_cap & ATA_REPORT_ZONES_SUP) 3134 softc->zone_flags |= 3135 ADA_ZONE_FLAG_RZ_SUP; 3136 if (zac_cap & ATA_ND_OPEN_ZONE_SUP) 3137 softc->zone_flags |= 3138 ADA_ZONE_FLAG_OPEN_SUP; 3139 if (zac_cap & ATA_ND_CLOSE_ZONE_SUP) 3140 softc->zone_flags |= 3141 ADA_ZONE_FLAG_CLOSE_SUP; 3142 if (zac_cap & ATA_ND_FINISH_ZONE_SUP) 3143 softc->zone_flags |= 3144 ADA_ZONE_FLAG_FINISH_SUP; 3145 if (zac_cap & ATA_ND_RWP_SUP) 3146 softc->zone_flags |= 3147 ADA_ZONE_FLAG_RWP_SUP; 3148 } else { 3149 /* 3150 * This field was introduced in 3151 * ACS-4, r08 on April 28th, 2015. 3152 * If the drive firmware was written 3153 * to an earlier spec, it won't have 3154 * the field. So, assume all 3155 * commands are supported. 3156 */ 3157 softc->zone_flags |= 3158 ADA_ZONE_FLAG_SUP_MASK; 3159 } 3160 3161 } 3162 } else { 3163 error = adaerror(done_ccb, CAM_RETRY_SELTO, 3164 SF_RETRY_UA|SF_NO_PRINT); 3165 if (error == ERESTART) 3166 return; 3167 else if (error != 0) { 3168 /* 3169 * If we can't get the ATA Identify Data 3170 * Supported Capabilities page, clear the 3171 * flag... 3172 */ 3173 softc->flags &= ~ADA_FLAG_CAN_SUPCAP; 3174 /* 3175 * And clear zone capabilities. 3176 */ 3177 softc->zone_flags &= ~ADA_ZONE_FLAG_SUP_MASK; 3178 if ((done_ccb->ccb_h.status & 3179 CAM_DEV_QFRZN) != 0) { 3180 /* Don't wedge this device's queue */ 3181 cam_release_devq(done_ccb->ccb_h.path, 3182 /*relsim_flags*/0, 3183 /*reduction*/0, 3184 /*timeout*/0, 3185 /*getcount_only*/0); 3186 } 3187 } 3188 } 3189 3190 free(ataio->data_ptr, M_ATADA); 3191 3192 if ((error == 0) 3193 && (softc->flags & ADA_FLAG_CAN_ZONE)) { 3194 softc->state = ADA_STATE_ZONE; 3195 xpt_release_ccb(done_ccb); 3196 xpt_schedule(periph, priority); 3197 } else 3198 adaprobedone(periph, done_ccb); 3199 return; 3200 } 3201 case ADA_CCB_ZONE: { 3202 int error; 3203 3204 if ((ataio->ccb_h.status & CAM_STATUS_MASK) == CAM_REQ_CMP) { 3205 struct ata_zoned_info_log *zi_log; 3206 uint32_t valid_len; 3207 size_t needed_size; 3208 3209 zi_log = (struct ata_zoned_info_log *)ataio->data_ptr; 3210 3211 valid_len = ataio->dxfer_len - ataio->resid; 3212 needed_size = __offsetof(struct ata_zoned_info_log, 3213 version_info) + 1 + sizeof(zi_log->version_info); 3214 if (valid_len >= needed_size) { 3215 uint64_t tmpvar; 3216 3217 tmpvar = le64dec(zi_log->zoned_cap); 3218 if (tmpvar & ATA_ZDI_CAP_VALID) { 3219 if (tmpvar & ATA_ZDI_CAP_URSWRZ) 3220 softc->zone_flags |= 3221 ADA_ZONE_FLAG_URSWRZ; 3222 else 3223 softc->zone_flags &= 3224 ~ADA_ZONE_FLAG_URSWRZ; 3225 } 3226 tmpvar = le64dec(zi_log->optimal_seq_zones); 3227 if (tmpvar & ATA_ZDI_OPT_SEQ_VALID) { 3228 softc->zone_flags |= 3229 ADA_ZONE_FLAG_OPT_SEQ_SET; 3230 softc->optimal_seq_zones = (tmpvar & 3231 ATA_ZDI_OPT_SEQ_MASK); 3232 } else { 3233 softc->zone_flags &= 3234 ~ADA_ZONE_FLAG_OPT_SEQ_SET; 3235 softc->optimal_seq_zones = 0; 3236 } 3237 3238 tmpvar =le64dec(zi_log->optimal_nonseq_zones); 3239 if (tmpvar & ATA_ZDI_OPT_NS_VALID) { 3240 softc->zone_flags |= 3241 ADA_ZONE_FLAG_OPT_NONSEQ_SET; 3242 softc->optimal_nonseq_zones = 3243 (tmpvar & ATA_ZDI_OPT_NS_MASK); 3244 } else { 3245 softc->zone_flags &= 3246 ~ADA_ZONE_FLAG_OPT_NONSEQ_SET; 3247 softc->optimal_nonseq_zones = 0; 3248 } 3249 3250 tmpvar = le64dec(zi_log->max_seq_req_zones); 3251 if (tmpvar & ATA_ZDI_MAX_SEQ_VALID) { 3252 softc->zone_flags |= 3253 ADA_ZONE_FLAG_MAX_SEQ_SET; 3254 softc->max_seq_zones = 3255 (tmpvar & ATA_ZDI_MAX_SEQ_MASK); 3256 } else { 3257 softc->zone_flags &= 3258 ~ADA_ZONE_FLAG_MAX_SEQ_SET; 3259 softc->max_seq_zones = 0; 3260 } 3261 } 3262 } else { 3263 error = adaerror(done_ccb, CAM_RETRY_SELTO, 3264 SF_RETRY_UA|SF_NO_PRINT); 3265 if (error == ERESTART) 3266 return; 3267 else if (error != 0) { 3268 softc->flags &= ~ADA_FLAG_CAN_ZONE; 3269 softc->flags &= ~ADA_ZONE_FLAG_SET_MASK; 3270 3271 if ((done_ccb->ccb_h.status & 3272 CAM_DEV_QFRZN) != 0) { 3273 /* Don't wedge this device's queue */ 3274 cam_release_devq(done_ccb->ccb_h.path, 3275 /*relsim_flags*/0, 3276 /*reduction*/0, 3277 /*timeout*/0, 3278 /*getcount_only*/0); 3279 } 3280 } 3281 3282 } 3283 free(ataio->data_ptr, M_ATADA); 3284 3285 adaprobedone(periph, done_ccb); 3286 return; 3287 } 3288 case ADA_CCB_DUMP: 3289 /* No-op. We're polling */ 3290 return; 3291 default: 3292 break; 3293 } 3294 xpt_release_ccb(done_ccb); 3295 } 3296 3297 static int 3298 adaerror(union ccb *ccb, u_int32_t cam_flags, u_int32_t sense_flags) 3299 { 3300 #ifdef CAM_IO_STATS 3301 struct ada_softc *softc; 3302 struct cam_periph *periph; 3303 3304 periph = xpt_path_periph(ccb->ccb_h.path); 3305 softc = (struct ada_softc *)periph->softc; 3306 3307 switch (ccb->ccb_h.status & CAM_STATUS_MASK) { 3308 case CAM_CMD_TIMEOUT: 3309 softc->timeouts++; 3310 break; 3311 case CAM_REQ_ABORTED: 3312 case CAM_REQ_CMP_ERR: 3313 case CAM_REQ_TERMIO: 3314 case CAM_UNREC_HBA_ERROR: 3315 case CAM_DATA_RUN_ERR: 3316 case CAM_ATA_STATUS_ERROR: 3317 softc->errors++; 3318 break; 3319 default: 3320 break; 3321 } 3322 #endif 3323 3324 return(cam_periph_error(ccb, cam_flags, sense_flags, NULL)); 3325 } 3326 3327 static void 3328 adagetparams(struct cam_periph *periph, struct ccb_getdev *cgd) 3329 { 3330 struct ada_softc *softc = (struct ada_softc *)periph->softc; 3331 struct disk_params *dp = &softc->params; 3332 u_int64_t lbasize48; 3333 u_int32_t lbasize; 3334 3335 dp->secsize = ata_logical_sector_size(&cgd->ident_data); 3336 if ((cgd->ident_data.atavalid & ATA_FLAG_54_58) && 3337 cgd->ident_data.current_heads && cgd->ident_data.current_sectors) { 3338 dp->heads = cgd->ident_data.current_heads; 3339 dp->secs_per_track = cgd->ident_data.current_sectors; 3340 dp->cylinders = cgd->ident_data.cylinders; 3341 dp->sectors = (u_int32_t)cgd->ident_data.current_size_1 | 3342 ((u_int32_t)cgd->ident_data.current_size_2 << 16); 3343 } else { 3344 dp->heads = cgd->ident_data.heads; 3345 dp->secs_per_track = cgd->ident_data.sectors; 3346 dp->cylinders = cgd->ident_data.cylinders; 3347 dp->sectors = cgd->ident_data.cylinders * dp->heads * dp->secs_per_track; 3348 } 3349 lbasize = (u_int32_t)cgd->ident_data.lba_size_1 | 3350 ((u_int32_t)cgd->ident_data.lba_size_2 << 16); 3351 3352 /* use the 28bit LBA size if valid or bigger than the CHS mapping */ 3353 if (cgd->ident_data.cylinders == 16383 || dp->sectors < lbasize) 3354 dp->sectors = lbasize; 3355 3356 /* use the 48bit LBA size if valid */ 3357 lbasize48 = ((u_int64_t)cgd->ident_data.lba_size48_1) | 3358 ((u_int64_t)cgd->ident_data.lba_size48_2 << 16) | 3359 ((u_int64_t)cgd->ident_data.lba_size48_3 << 32) | 3360 ((u_int64_t)cgd->ident_data.lba_size48_4 << 48); 3361 if ((cgd->ident_data.support.command2 & ATA_SUPPORT_ADDRESS48) && 3362 lbasize48 > ATA_MAX_28BIT_LBA) 3363 dp->sectors = lbasize48; 3364 } 3365 3366 static void 3367 adasendorderedtag(void *arg) 3368 { 3369 struct ada_softc *softc = arg; 3370 3371 if (ada_send_ordered) { 3372 if (softc->outstanding_cmds > 0) { 3373 if ((softc->flags & ADA_FLAG_WAS_OTAG) == 0) 3374 softc->flags |= ADA_FLAG_NEED_OTAG; 3375 softc->flags &= ~ADA_FLAG_WAS_OTAG; 3376 } 3377 } 3378 /* Queue us up again */ 3379 callout_reset(&softc->sendordered_c, 3380 (ada_default_timeout * hz) / ADA_ORDEREDTAG_INTERVAL, 3381 adasendorderedtag, softc); 3382 } 3383 3384 /* 3385 * Step through all ADA peripheral drivers, and if the device is still open, 3386 * sync the disk cache to physical media. 3387 */ 3388 static void 3389 adaflush(void) 3390 { 3391 struct cam_periph *periph; 3392 struct ada_softc *softc; 3393 union ccb *ccb; 3394 int error; 3395 3396 CAM_PERIPH_FOREACH(periph, &adadriver) { 3397 softc = (struct ada_softc *)periph->softc; 3398 if (SCHEDULER_STOPPED()) { 3399 /* If we paniced with the lock held, do not recurse. */ 3400 if (!cam_periph_owned(periph) && 3401 (softc->flags & ADA_FLAG_OPEN)) { 3402 adadump(softc->disk, NULL, 0, 0, 0); 3403 } 3404 continue; 3405 } 3406 cam_periph_lock(periph); 3407 /* 3408 * We only sync the cache if the drive is still open, and 3409 * if the drive is capable of it.. 3410 */ 3411 if (((softc->flags & ADA_FLAG_OPEN) == 0) || 3412 (softc->flags & ADA_FLAG_CAN_FLUSHCACHE) == 0) { 3413 cam_periph_unlock(periph); 3414 continue; 3415 } 3416 3417 ccb = cam_periph_getccb(periph, CAM_PRIORITY_NORMAL); 3418 cam_fill_ataio(&ccb->ataio, 3419 0, 3420 adadone, 3421 CAM_DIR_NONE, 3422 0, 3423 NULL, 3424 0, 3425 ada_default_timeout*1000); 3426 if (softc->flags & ADA_FLAG_CAN_48BIT) 3427 ata_48bit_cmd(&ccb->ataio, ATA_FLUSHCACHE48, 0, 0, 0); 3428 else 3429 ata_28bit_cmd(&ccb->ataio, ATA_FLUSHCACHE, 0, 0, 0); 3430 3431 error = cam_periph_runccb(ccb, adaerror, /*cam_flags*/0, 3432 /*sense_flags*/ SF_NO_RECOVERY | SF_NO_RETRY, 3433 softc->disk->d_devstat); 3434 if (error != 0) 3435 xpt_print(periph->path, "Synchronize cache failed\n"); 3436 xpt_release_ccb(ccb); 3437 cam_periph_unlock(periph); 3438 } 3439 } 3440 3441 static void 3442 adaspindown(uint8_t cmd, int flags) 3443 { 3444 struct cam_periph *periph; 3445 struct ada_softc *softc; 3446 union ccb *ccb; 3447 int error; 3448 3449 CAM_PERIPH_FOREACH(periph, &adadriver) { 3450 /* If we paniced with lock held - not recurse here. */ 3451 if (cam_periph_owned(periph)) 3452 continue; 3453 cam_periph_lock(periph); 3454 softc = (struct ada_softc *)periph->softc; 3455 /* 3456 * We only spin-down the drive if it is capable of it.. 3457 */ 3458 if ((softc->flags & ADA_FLAG_CAN_POWERMGT) == 0) { 3459 cam_periph_unlock(periph); 3460 continue; 3461 } 3462 3463 if (bootverbose) 3464 xpt_print(periph->path, "spin-down\n"); 3465 3466 ccb = cam_periph_getccb(periph, CAM_PRIORITY_NORMAL); 3467 cam_fill_ataio(&ccb->ataio, 3468 0, 3469 adadone, 3470 CAM_DIR_NONE | flags, 3471 0, 3472 NULL, 3473 0, 3474 ada_default_timeout*1000); 3475 ata_28bit_cmd(&ccb->ataio, cmd, 0, 0, 0); 3476 3477 error = cam_periph_runccb(ccb, adaerror, /*cam_flags*/0, 3478 /*sense_flags*/ SF_NO_RECOVERY | SF_NO_RETRY, 3479 softc->disk->d_devstat); 3480 if (error != 0) 3481 xpt_print(periph->path, "Spin-down disk failed\n"); 3482 xpt_release_ccb(ccb); 3483 cam_periph_unlock(periph); 3484 } 3485 } 3486 3487 static void 3488 adashutdown(void *arg, int howto) 3489 { 3490 3491 adaflush(); 3492 if (ada_spindown_shutdown != 0 && 3493 (howto & (RB_HALT | RB_POWEROFF)) != 0) 3494 adaspindown(ATA_STANDBY_IMMEDIATE, 0); 3495 } 3496 3497 static void 3498 adasuspend(void *arg) 3499 { 3500 3501 adaflush(); 3502 if (ada_spindown_suspend != 0) 3503 adaspindown(ATA_SLEEP, CAM_DEV_QFREEZE); 3504 } 3505 3506 static void 3507 adaresume(void *arg) 3508 { 3509 struct cam_periph *periph; 3510 struct ada_softc *softc; 3511 3512 if (ada_spindown_suspend == 0) 3513 return; 3514 3515 CAM_PERIPH_FOREACH(periph, &adadriver) { 3516 cam_periph_lock(periph); 3517 softc = (struct ada_softc *)periph->softc; 3518 /* 3519 * We only spin-down the drive if it is capable of it.. 3520 */ 3521 if ((softc->flags & ADA_FLAG_CAN_POWERMGT) == 0) { 3522 cam_periph_unlock(periph); 3523 continue; 3524 } 3525 3526 if (bootverbose) 3527 xpt_print(periph->path, "resume\n"); 3528 3529 /* 3530 * Drop freeze taken due to CAM_DEV_QFREEZE flag set on 3531 * sleep request. 3532 */ 3533 cam_release_devq(periph->path, 3534 /*relsim_flags*/0, 3535 /*openings*/0, 3536 /*timeout*/0, 3537 /*getcount_only*/0); 3538 3539 cam_periph_unlock(periph); 3540 } 3541 } 3542 3543 #endif /* _KERNEL */ 3544