1 /*- 2 * Copyright (c) 2000 Michael Smith 3 * Copyright (c) 2000-2001 Scott Long 4 * Copyright (c) 2000 BSDi 5 * Copyright (c) 2001 Adaptec, Inc. 6 * All rights reserved. 7 * 8 * Redistribution and use in source and binary forms, with or without 9 * modification, are permitted provided that the following conditions 10 * are met: 11 * 1. Redistributions of source code must retain the above copyright 12 * notice, this list of conditions and the following disclaimer. 13 * 2. Redistributions in binary form must reproduce the above copyright 14 * notice, this list of conditions and the following disclaimer in the 15 * documentation and/or other materials provided with the distribution. 16 * 17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 18 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 19 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 20 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 21 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 22 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 23 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 24 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 25 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 26 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 27 * SUCH DAMAGE. 28 * 29 * $FreeBSD$ 30 */ 31 32 /* 33 * Data structures defining the interface between the driver and the Adaptec 34 * 'FSA' adapters. Note that many field names and comments here are taken 35 * verbatim from the Adaptec driver source in order to make comparing the 36 * two slightly easier. 37 */ 38 39 /* 40 * Misc. magic numbers. 41 */ 42 #define AAC_MAX_CONTAINERS 64 43 #define AAC_BLOCK_SIZE 512 44 45 /* 46 * Communications interface. 47 * 48 * Where datastructure layouts are closely parallel to the Adaptec sample code, 49 * retain their naming conventions (for now) to aid in cross-referencing. 50 */ 51 52 /* 53 * We establish 4 command queues and matching response queues. Queues must 54 * be 16-byte aligned, and are sized as follows: 55 */ 56 #define AAC_HOST_NORM_CMD_ENTRIES 8 /* command adapter->host, 57 * normal priority */ 58 #define AAC_HOST_HIGH_CMD_ENTRIES 4 /* command adapter->host, 59 * high priority */ 60 #define AAC_ADAP_NORM_CMD_ENTRIES 512 /* command host->adapter, 61 * normal priority */ 62 #define AAC_ADAP_HIGH_CMD_ENTRIES 4 /* command host->adapter, 63 * high priority */ 64 #define AAC_HOST_NORM_RESP_ENTRIES 512 /* response, adapter->host, 65 * normal priority */ 66 #define AAC_HOST_HIGH_RESP_ENTRIES 4 /* response, adapter->host, 67 * high priority */ 68 #define AAC_ADAP_NORM_RESP_ENTRIES 8 /* response, host->adapter, 69 * normal priority */ 70 #define AAC_ADAP_HIGH_RESP_ENTRIES 4 /* response, host->adapter, 71 * high priority */ 72 73 #define AAC_TOTALQ_LENGTH (AAC_HOST_HIGH_CMD_ENTRIES + \ 74 AAC_HOST_NORM_CMD_ENTRIES + \ 75 AAC_ADAP_HIGH_CMD_ENTRIES + \ 76 AAC_ADAP_NORM_CMD_ENTRIES + \ 77 AAC_HOST_HIGH_RESP_ENTRIES + \ 78 AAC_HOST_NORM_RESP_ENTRIES + \ 79 AAC_ADAP_HIGH_RESP_ENTRIES + \ 80 AAC_ADAP_NORM_RESP_ENTRIES) 81 #define AAC_QUEUE_COUNT 8 82 #define AAC_QUEUE_ALIGN 16 83 84 struct aac_queue_entry { 85 u_int32_t aq_fib_size; /* FIB size in bytes */ 86 u_int32_t aq_fib_addr; /* receiver-space address of the FIB */ 87 } __packed; 88 89 #define AAC_PRODUCER_INDEX 0 90 #define AAC_CONSUMER_INDEX 1 91 92 /* 93 * Table of queue indices and queues used to communicate with the 94 * controller. This structure must be aligned to AAC_QUEUE_ALIGN 95 */ 96 struct aac_queue_table { 97 /* queue consumer/producer indexes (layout mandated by adapter) */ 98 u_int32_t qt_qindex[AAC_QUEUE_COUNT][2]; 99 100 /* queue entry structures (layout mandated by adapter) */ 101 struct aac_queue_entry qt_HostNormCmdQueue [AAC_HOST_NORM_CMD_ENTRIES]; 102 struct aac_queue_entry qt_HostHighCmdQueue [AAC_HOST_HIGH_CMD_ENTRIES]; 103 struct aac_queue_entry qt_AdapNormCmdQueue [AAC_ADAP_NORM_CMD_ENTRIES]; 104 struct aac_queue_entry qt_AdapHighCmdQueue [AAC_ADAP_HIGH_CMD_ENTRIES]; 105 struct aac_queue_entry qt_HostNormRespQueue[AAC_HOST_NORM_RESP_ENTRIES]; 106 struct aac_queue_entry qt_HostHighRespQueue[AAC_HOST_HIGH_RESP_ENTRIES]; 107 struct aac_queue_entry qt_AdapNormRespQueue[AAC_ADAP_NORM_RESP_ENTRIES]; 108 struct aac_queue_entry qt_AdapHighRespQueue[AAC_ADAP_HIGH_RESP_ENTRIES]; 109 } __packed; 110 111 /* 112 * Queue names 113 * 114 * Note that we base these at 0 in order to use them as array indices. Adaptec 115 * used base 1 for some unknown reason, and sorted them in a different order. 116 */ 117 #define AAC_HOST_NORM_CMD_QUEUE 0 118 #define AAC_HOST_HIGH_CMD_QUEUE 1 119 #define AAC_ADAP_NORM_CMD_QUEUE 2 120 #define AAC_ADAP_HIGH_CMD_QUEUE 3 121 #define AAC_HOST_NORM_RESP_QUEUE 4 122 #define AAC_HOST_HIGH_RESP_QUEUE 5 123 #define AAC_ADAP_NORM_RESP_QUEUE 6 124 #define AAC_ADAP_HIGH_RESP_QUEUE 7 125 126 /* 127 * List structure used to chain FIBs (used by the adapter - we hang FIBs off 128 * our private command structure and don't touch these) 129 */ 130 struct aac_fib_list_entry { 131 u_int32_t Flink; 132 u_int32_t Blink; 133 } __packed; 134 135 /* 136 * FIB (FSA Interface Block?); this is the datastructure passed between the host 137 * and adapter. 138 */ 139 struct aac_fib_header { 140 u_int32_t XferState; 141 u_int16_t Command; 142 u_int8_t StructType; 143 u_int8_t Flags; 144 u_int16_t Size; 145 u_int16_t SenderSize; 146 u_int32_t SenderFibAddress; 147 u_int32_t ReceiverFibAddress; 148 u_int32_t SenderData; 149 union { 150 struct { 151 u_int32_t ReceiverTimeStart; 152 u_int32_t ReceiverTimeDone; 153 } _s; 154 struct aac_fib_list_entry FibLinks; 155 } _u; 156 } __packed; 157 158 #define AAC_FIB_DATASIZE (512 - sizeof(struct aac_fib_header)) 159 160 struct aac_fib { 161 struct aac_fib_header Header; 162 u_int8_t data[AAC_FIB_DATASIZE]; 163 } __packed; 164 165 /* 166 * FIB commands 167 */ 168 typedef enum { 169 TestCommandResponse = 1, 170 TestAdapterCommand = 2, 171 172 /* lowlevel and comm commands */ 173 LastTestCommand = 100, 174 ReinitHostNormCommandQueue = 101, 175 ReinitHostHighCommandQueue = 102, 176 ReinitHostHighRespQueue = 103, 177 ReinitHostNormRespQueue = 104, 178 ReinitAdapNormCommandQueue = 105, 179 ReinitAdapHighCommandQueue = 107, 180 ReinitAdapHighRespQueue = 108, 181 ReinitAdapNormRespQueue = 109, 182 InterfaceShutdown = 110, 183 DmaCommandFib = 120, 184 StartProfile = 121, 185 TermProfile = 122, 186 SpeedTest = 123, 187 TakeABreakPt = 124, 188 RequestPerfData = 125, 189 SetInterruptDefTimer= 126, 190 SetInterruptDefCount= 127, 191 GetInterruptDefStatus= 128, 192 LastCommCommand = 129, 193 194 /* filesystem commands */ 195 NuFileSystem = 300, 196 UFS = 301, 197 HostFileSystem = 302, 198 LastFileSystemCommand = 303, 199 200 /* Container Commands */ 201 ContainerCommand = 500, 202 ContainerCommand64 = 501, 203 RawIo = 502, 204 205 /* Cluster Commands */ 206 ClusterCommand = 550, 207 208 /* Scsi Port commands (scsi passthrough) */ 209 ScsiPortCommand = 600, 210 ScsiPortCommandU64 = 601, 211 SataPortCommandU64 = 602, 212 SasSmpPassThrough = 603, 213 SasRequestPhyInfo = 612, 214 215 /* misc house keeping and generic adapter initiated commands */ 216 AifRequest = 700, 217 CheckRevision = 701, 218 FsaHostShutdown = 702, 219 RequestAdapterInfo = 703, 220 IsAdapterPaused = 704, 221 SendHostTime = 705, 222 RequestSupplementAdapterInfo = 706, /* Supp. Info for set in UCC 223 * use only if supported 224 * (RequestAdapterInfo first) */ 225 LastMiscCommand = 707, 226 227 OnLineDiagnostic = 800, 228 FduAdapterTest = 801, 229 RequestCompatibilityId = 802, 230 AdapterEnvironmentInfo = 803, /* temp. sensors */ 231 NvsramEventLog = 900, 232 ResetNvsramEventLogPointers = 901, 233 EnableEventLog = 902, 234 DisableEventLog = 903, 235 EncryptedKeyTransportFIB= 904, 236 KeyableFeaturesFIB= 905 237 } AAC_FibCommands; 238 239 /* 240 * FIB types 241 */ 242 #define AAC_FIBTYPE_TFIB 1 243 #define AAC_FIBTYPE_TQE 2 244 #define AAC_FIBTYPE_TCTPERF 3 245 246 /* 247 * FIB transfer state 248 */ 249 #define AAC_FIBSTATE_HOSTOWNED (1<<0) /* owned by the host */ 250 #define AAC_FIBSTATE_ADAPTEROWNED (1<<1) /* owned by the adapter */ 251 #define AAC_FIBSTATE_INITIALISED (1<<2) /* initialised */ 252 #define AAC_FIBSTATE_EMPTY (1<<3) /* empty */ 253 #define AAC_FIBSTATE_FROMPOOL (1<<4) /* allocated from pool */ 254 #define AAC_FIBSTATE_FROMHOST (1<<5) /* sent from the host */ 255 #define AAC_FIBSTATE_FROMADAP (1<<6) /* sent from the adapter */ 256 #define AAC_FIBSTATE_REXPECTED (1<<7) /* response is expected */ 257 #define AAC_FIBSTATE_RNOTEXPECTED (1<<8) /* response is not expected */ 258 #define AAC_FIBSTATE_DONEADAP (1<<9) /* processed by the adapter */ 259 #define AAC_FIBSTATE_DONEHOST (1<<10) /* processed by the host */ 260 #define AAC_FIBSTATE_HIGH (1<<11) /* high priority */ 261 #define AAC_FIBSTATE_NORM (1<<12) /* normal priority */ 262 #define AAC_FIBSTATE_ASYNC (1<<13) 263 #define AAC_FIBSTATE_ASYNCIO (1<<13) /* to be removed */ 264 #define AAC_FIBSTATE_PAGEFILEIO (1<<14) /* to be removed */ 265 #define AAC_FIBSTATE_SHUTDOWN (1<<15) 266 #define AAC_FIBSTATE_LAZYWRITE (1<<16) /* to be removed */ 267 #define AAC_FIBSTATE_ADAPMICROFIB (1<<17) 268 #define AAC_FIBSTATE_BIOSFIB (1<<18) 269 #define AAC_FIBSTATE_FAST_RESPONSE (1<<19) /* fast response capable */ 270 #define AAC_FIBSTATE_APIFIB (1<<20) 271 272 /* 273 * FIB error values 274 */ 275 #define AAC_ERROR_NORMAL 0x00 276 #define AAC_ERROR_PENDING 0x01 277 #define AAC_ERROR_FATAL 0x02 278 #define AAC_ERROR_INVALID_QUEUE 0x03 279 #define AAC_ERROR_NOENTRIES 0x04 280 #define AAC_ERROR_SENDFAILED 0x05 281 #define AAC_ERROR_INVALID_QUEUE_PRIORITY 0x06 282 #define AAC_ERROR_FIB_ALLOCATION_FAILED 0x07 283 #define AAC_ERROR_FIB_DEALLOCATION_FAILED 0x08 284 285 /* 286 * Adapter Init Structure: this is passed to the adapter with the 287 * AAC_MONKER_INITSTRUCT command to point it at our control structures. 288 */ 289 struct aac_adapter_init { 290 u_int32_t InitStructRevision; 291 #define AAC_INIT_STRUCT_REVISION 3 292 #define AAC_INIT_STRUCT_REVISION_4 4 293 u_int32_t MiniPortRevision; 294 #define AAC_INIT_STRUCT_MINIPORT_REVISION 1 295 u_int32_t FilesystemRevision; 296 u_int32_t CommHeaderAddress; 297 u_int32_t FastIoCommAreaAddress; 298 u_int32_t AdapterFibsPhysicalAddress; 299 u_int32_t AdapterFibsVirtualAddress; 300 u_int32_t AdapterFibsSize; 301 u_int32_t AdapterFibAlign; 302 u_int32_t PrintfBufferAddress; 303 u_int32_t PrintfBufferSize; 304 #define AAC_PAGE_SIZE 4096 305 u_int32_t HostPhysMemPages; 306 u_int32_t HostElapsedSeconds; 307 /* ADAPTER_INIT_STRUCT_REVISION_4 begins here */ 308 u_int32_t InitFlags; /* flags for supported features */ 309 #define INITFLAGS_NEW_COMM_SUPPORTED 1 310 u_int32_t MaxIoCommands; /* max outstanding commands */ 311 u_int32_t MaxIoSize; /* largest I/O command */ 312 u_int32_t MaxFibSize; /* largest FIB to adapter */ 313 } __packed; 314 315 /* 316 * Shared data types 317 */ 318 /* 319 * Container types 320 */ 321 typedef enum { 322 CT_NONE = 0, 323 CT_VOLUME, 324 CT_MIRROR, 325 CT_STRIPE, 326 CT_RAID5, 327 CT_SSRW, 328 CT_SSRO, 329 CT_MORPH, 330 CT_PASSTHRU, 331 CT_RAID4, 332 CT_RAID10, /* stripe of mirror */ 333 CT_RAID00, /* stripe of stripe */ 334 CT_VOLUME_OF_MIRRORS, /* volume of mirror */ 335 CT_PSEUDO_RAID3, /* really raid4 */ 336 CT_RAID50, /* stripe of raid5 */ 337 CT_RAID5D, /* raid5 distributed hot-sparing */ 338 CT_RAID5D0, 339 CT_RAID1E, /* extended raid1 mirroring */ 340 CT_RAID6, 341 CT_RAID60, 342 } AAC_FSAVolType; 343 344 /* 345 * Host-addressable object types 346 */ 347 typedef enum { 348 FT_REG = 1, /* regular file */ 349 FT_DIR, /* directory */ 350 FT_BLK, /* "block" device - reserved */ 351 FT_CHR, /* "character special" device - reserved */ 352 FT_LNK, /* symbolic link */ 353 FT_SOCK, /* socket */ 354 FT_FIFO, /* fifo */ 355 FT_FILESYS, /* ADAPTEC's "FSA"(tm) filesystem */ 356 FT_DRIVE, /* physical disk - addressable in scsi by b/t/l */ 357 FT_SLICE, /* virtual disk - raw volume - slice */ 358 FT_PARTITION, /* FSA partition - carved out of a slice - building 359 * block for containers */ 360 FT_VOLUME, /* Container - Volume Set */ 361 FT_STRIPE, /* Container - Stripe Set */ 362 FT_MIRROR, /* Container - Mirror Set */ 363 FT_RAID5, /* Container - Raid 5 Set */ 364 FT_DATABASE /* Storage object with "foreign" content manager */ 365 } AAC_FType; 366 367 /* 368 * Host-side scatter/gather list for 32-bit commands. 369 */ 370 struct aac_sg_entry { 371 u_int32_t SgAddress; 372 u_int32_t SgByteCount; 373 } __packed; 374 375 struct aac_sg_entry64 { 376 u_int64_t SgAddress; 377 u_int32_t SgByteCount; 378 } __packed; 379 380 struct aac_sg_entryraw { 381 u_int32_t Next; /* reserved for FW use */ 382 u_int32_t Prev; /* reserved for FW use */ 383 u_int64_t SgAddress; 384 u_int32_t SgByteCount; 385 u_int32_t Flags; /* reserved for FW use */ 386 } __packed; 387 388 struct aac_sg_table { 389 u_int32_t SgCount; 390 struct aac_sg_entry SgEntry[0]; 391 } __packed; 392 393 /* 394 * Host-side scatter/gather list for 64-bit commands. 395 */ 396 struct aac_sg_table64 { 397 u_int32_t SgCount; 398 struct aac_sg_entry64 SgEntry64[0]; 399 } __packed; 400 401 /* 402 * s/g list for raw commands 403 */ 404 struct aac_sg_tableraw { 405 u_int32_t SgCount; 406 struct aac_sg_entryraw SgEntryRaw[0]; 407 } __packed; 408 409 /* 410 * Container creation data 411 */ 412 struct aac_container_creation { 413 u_int8_t ViaBuildNumber; 414 u_int8_t MicroSecond; 415 u_int8_t Via; /* 1 = FSU, 2 = API, etc. */ 416 u_int8_t YearsSince1900; 417 u_int32_t Month:4; /* 1-12 */ 418 u_int32_t Day:6; /* 1-32 */ 419 u_int32_t Hour:6; /* 0-23 */ 420 u_int32_t Minute:6; /* 0-59 */ 421 u_int32_t Second:6; /* 0-59 */ 422 u_int64_t ViaAdapterSerialNumber; 423 } __packed; 424 425 /* 426 * Revision number handling 427 */ 428 429 typedef enum { 430 RevApplication = 1, 431 RevDkiCli, 432 RevNetService, 433 RevApi, 434 RevFileSysDriver, 435 RevMiniportDriver, 436 RevAdapterSW, 437 RevMonitor, 438 RevRemoteApi 439 } RevComponent; 440 441 struct FsaRevision { 442 union { 443 struct { 444 u_int8_t dash; 445 u_int8_t type; 446 u_int8_t minor; 447 u_int8_t major; 448 } comp; 449 u_int32_t ul; 450 } external; 451 u_int32_t buildNumber; 452 } __packed; 453 454 /* 455 * Adapter Information 456 */ 457 458 typedef enum { 459 CPU_NTSIM = 1, 460 CPU_I960, 461 CPU_ARM, 462 CPU_SPARC, 463 CPU_POWERPC, 464 CPU_ALPHA, 465 CPU_P7, 466 CPU_I960_RX, 467 CPU_MIPS, 468 CPU_XSCALE, 469 CPU__last 470 } AAC_CpuType; 471 472 typedef enum { 473 CPUI960_JX = 1, 474 CPUI960_CX, 475 CPUI960_HX, 476 CPUI960_RX, 477 CPUARM_SA110, 478 CPUARM_xxx, 479 CPUPPC_603e, 480 CPUPPC_xxx, 481 CPUI960_80303, 482 CPU_XSCALE_80321, 483 CPU_MIPS_4KC, 484 CPU_MIPS_5KC, 485 CPUSUBTYPE__last 486 } AAC_CpuSubType; 487 488 typedef enum { 489 PLAT_NTSIM = 1, 490 PLAT_V3ADU, 491 PLAT_CYCLONE, 492 PLAT_CYCLONE_HD, 493 PLAT_BATBOARD, 494 PLAT_BATBOARD_HD, 495 PLAT_YOLO, 496 PLAT_COBRA, 497 PLAT_ANAHEIM, 498 PLAT_JALAPENO, 499 PLAT_QUEENS, 500 PLAT_JALAPENO_DELL, 501 PLAT_POBLANO, 502 PLAT_POBLANO_OPAL, 503 PLAT_POBLANO_SL0, 504 PLAT_POBLANO_SL1, 505 PLAT_POBLANO_SL2, 506 PLAT_POBLANO_XXX, 507 PLAT_JALAPENO_P2, 508 PLAT_HABANERO, 509 PLAT_VULCAN, 510 PLAT_CRUSADER, 511 PLAT_LANCER, 512 PLAT_HARRIER, 513 PLAT_TERMINATOR, 514 PLAT_SKYHAWK, 515 PLAT_CORSAIR, 516 PLAT_JAGUAR, 517 PLAT_SATAHAWK, 518 PLAT_SATANATOR, 519 PLAT_PROWLER, 520 PLAT_BLACKBIRD, 521 PLAT_SABREEXPRESS, 522 PLAT_INTRUDER, 523 PLAT__last 524 } AAC_Platform; 525 526 typedef enum { 527 OEM_FLAVOR_ADAPTEC = 1, 528 OEM_FLAVOR_DELL, 529 OEM_FLAVOR_HP, 530 OEM_FLAVOR_IBM, 531 OEM_FLAVOR_CPQ, 532 OEM_FLAVOR_FSC, 533 OEM_FLAVOR_DWS, 534 OEM_FLAVOR_BRAND_Z, 535 OEM_FLAVOR_LEGEND, 536 OEM_FLAVOR_HITACHI, 537 OEM_FLAVOR_ESG, 538 OEM_FLAVOR_ICP, 539 OEM_FLAVOR_SCM, 540 OEM_FLAVOR__last 541 } AAC_OemFlavor; 542 543 /* 544 * XXX the aac-2622 with no battery present reports PLATFORM_BAT_OPT_PRESENT 545 */ 546 typedef enum 547 { 548 PLATFORM_BAT_REQ_PRESENT = 1, /* BATTERY REQUIRED AND PRESENT */ 549 PLATFORM_BAT_REQ_NOTPRESENT, /* BATTERY REQUIRED AND NOT PRESENT */ 550 PLATFORM_BAT_OPT_PRESENT, /* BATTERY OPTIONAL AND PRESENT */ 551 PLATFORM_BAT_OPT_NOTPRESENT, /* BATTERY OPTIONAL AND NOT PRESENT */ 552 PLATFORM_BAT_NOT_SUPPORTED /* BATTERY NOT SUPPORTED */ 553 } AAC_BatteryPlatform; 554 555 /* 556 * options supported by this board 557 * there has to be a one to one mapping of these defines and the ones in 558 * fsaapi.h, search for FSA_SUPPORT_SNAPSHOT 559 */ 560 #define AAC_SUPPORTED_SNAPSHOT 0x01 561 #define AAC_SUPPORTED_CLUSTERS 0x02 562 #define AAC_SUPPORTED_WRITE_CACHE 0x04 563 #define AAC_SUPPORTED_64BIT_DATA 0x08 564 #define AAC_SUPPORTED_HOST_TIME_FIB 0x10 565 #define AAC_SUPPORTED_RAID50 0x20 566 #define AAC_SUPPORTED_4GB_WINDOW 0x40 567 #define AAC_SUPPORTED_SCSI_UPGRADEABLE 0x80 568 #define AAC_SUPPORTED_SOFT_ERR_REPORT 0x100 569 #define AAC_SUPPORTED_NOT_RECONDITION 0x200 570 #define AAC_SUPPORTED_SGMAP_HOST64 0x400 571 #define AAC_SUPPORTED_ALARM 0x800 572 #define AAC_SUPPORTED_NONDASD 0x1000 573 #define AAC_SUPPORTED_SCSI_MANAGED 0x2000 574 #define AAC_SUPPORTED_RAID_SCSI_MODE 0x4000 575 #define AAC_SUPPORTED_SUPPLEMENT_ADAPTER_INFO 0x10000 576 #define AAC_SUPPORTED_NEW_COMM 0x20000 577 #define AAC_SUPPORTED_64BIT_ARRAYSIZE 0x40000 578 #define AAC_SUPPORTED_HEAT_SENSOR 0x80000 579 580 /* 581 * Structure used to respond to a RequestAdapterInfo fib. 582 */ 583 struct aac_adapter_info { 584 AAC_Platform PlatformBase; /* adapter type */ 585 AAC_CpuType CpuArchitecture; /* adapter CPU type */ 586 AAC_CpuSubType CpuVariant; /* adapter CPU subtype */ 587 u_int32_t ClockSpeed; /* adapter CPU clockspeed */ 588 u_int32_t ExecutionMem; /* adapter Execution Memory 589 * size */ 590 u_int32_t BufferMem; /* adapter Data Memory */ 591 u_int32_t TotalMem; /* adapter Total Memory */ 592 struct FsaRevision KernelRevision; /* adapter Kernel Software 593 * Revision */ 594 struct FsaRevision MonitorRevision; /* adapter Monitor/Diagnostic 595 * Software Revision */ 596 struct FsaRevision HardwareRevision;/* TBD */ 597 struct FsaRevision BIOSRevision; /* adapter BIOS Revision */ 598 u_int32_t ClusteringEnabled; 599 u_int32_t ClusterChannelMask; 600 u_int64_t SerialNumber; 601 AAC_BatteryPlatform batteryPlatform; 602 u_int32_t SupportedOptions; /* supported features of this 603 * controller */ 604 AAC_OemFlavor OemVariant; 605 } __packed; 606 607 /* 608 * Monitor/Kernel interface. 609 */ 610 611 /* 612 * Synchronous commands to the monitor/kernel. 613 */ 614 #define AAC_MONKER_BREAKPOINT 0x04 615 #define AAC_MONKER_INITSTRUCT 0x05 616 #define AAC_MONKER_SYNCFIB 0x0c 617 #define AAC_MONKER_GETKERNVER 0x11 618 #define AAC_MONKER_POSTRESULTS 0x14 619 #define AAC_MONKER_GETINFO 0x19 620 #define AAC_MONKER_GETDRVPROP 0x23 621 #define AAC_MONKER_RCVTEMP 0x25 622 #define AAC_MONKER_GETCOMMPREF 0x26 623 #define AAC_MONKER_REINIT 0xee 624 625 /* 626 * Adapter Status Register 627 * 628 * Phase Staus mailbox is 32bits: 629 * <31:16> = Phase Status 630 * <15:0> = Phase 631 * 632 * The adapter reports its present state through the phase. Only 633 * a single phase should be ever be set. Each phase can have multiple 634 * phase status bits to provide more detailed information about the 635 * state of the adapter. 636 */ 637 #define AAC_SELF_TEST_FAILED 0x00000004 638 #define AAC_MONITOR_PANIC 0x00000020 639 #define AAC_UP_AND_RUNNING 0x00000080 640 #define AAC_KERNEL_PANIC 0x00000100 641 642 /* 643 * Data types relating to control and monitoring of the NVRAM/WriteCache 644 * subsystem. 645 */ 646 647 #define AAC_NFILESYS 24 /* maximum number of filesystems */ 648 649 /* 650 * NVRAM/Write Cache subsystem states 651 */ 652 typedef enum { 653 NVSTATUS_DISABLED = 0, /* present, clean, not being used */ 654 NVSTATUS_ENABLED, /* present, possibly dirty, ready for use */ 655 NVSTATUS_ERROR, /* present, dirty, contains dirty data */ 656 NVSTATUS_BATTERY, /* present, bad or low battery, may contain 657 * dirty data */ 658 NVSTATUS_UNKNOWN /* for bad/missing device */ 659 } AAC_NVSTATUS; 660 661 /* 662 * NVRAM/Write Cache subsystem battery component states 663 * 664 */ 665 typedef enum { 666 NVBATTSTATUS_NONE = 0, /* battery has no power or is not present */ 667 NVBATTSTATUS_LOW, /* battery is low on power */ 668 NVBATTSTATUS_OK, /* battery is okay - normal operation possible 669 * only in this state */ 670 NVBATTSTATUS_RECONDITIONING /* no battery present - reconditioning 671 * in process */ 672 } AAC_NVBATTSTATUS; 673 674 /* 675 * Battery transition type 676 */ 677 typedef enum { 678 NVBATT_TRANSITION_NONE = 0, /* battery now has no power or is not 679 * present */ 680 NVBATT_TRANSITION_LOW, /* battery is now low on power */ 681 NVBATT_TRANSITION_OK /* battery is now okay - normal 682 * operation possible only in this 683 * state */ 684 } AAC_NVBATT_TRANSITION; 685 686 /* 687 * NVRAM Info structure returned for NVRAM_GetInfo call 688 */ 689 struct aac_nvramdevinfo { 690 u_int32_t NV_Enabled; /* write caching enabled */ 691 u_int32_t NV_Error; /* device in error state */ 692 u_int32_t NV_NDirty; /* count of dirty NVRAM buffers */ 693 u_int32_t NV_NActive; /* count of NVRAM buffers being 694 * written */ 695 } __packed; 696 697 struct aac_nvraminfo { 698 AAC_NVSTATUS NV_Status; /* nvram subsystem status */ 699 AAC_NVBATTSTATUS NV_BattStatus; /* battery status */ 700 u_int32_t NV_Size; /* size of WriteCache NVRAM in 701 * bytes */ 702 u_int32_t NV_BufSize; /* size of NVRAM buffers in 703 * bytes */ 704 u_int32_t NV_NBufs; /* number of NVRAM buffers */ 705 u_int32_t NV_NDirty; /* Num dirty NVRAM buffers */ 706 u_int32_t NV_NClean; /* Num clean NVRAM buffers */ 707 u_int32_t NV_NActive; /* Num NVRAM buffers being 708 * written */ 709 u_int32_t NV_NBrokered; /* Num brokered NVRAM buffers */ 710 struct aac_nvramdevinfo NV_DevInfo[AAC_NFILESYS]; /* per device 711 * info */ 712 u_int32_t NV_BattNeedsReconditioning; /* boolean */ 713 u_int32_t NV_TotalSize; /* size of all non-volatile 714 * memories in bytes */ 715 } __packed; 716 717 /* 718 * Data types relating to adapter-initiated FIBs 719 * 720 * Based on types and structures in <aifstruc.h> 721 */ 722 723 /* 724 * Progress Reports 725 */ 726 typedef enum { 727 AifJobStsSuccess = 1, 728 AifJobStsFinished, 729 AifJobStsAborted, 730 AifJobStsFailed, 731 AifJobStsLastReportMarker = 100, /* All prior mean last report */ 732 AifJobStsSuspended, 733 AifJobStsRunning 734 } AAC_AifJobStatus; 735 736 typedef enum { 737 AifJobScsiMin = 1, /* Minimum value for Scsi operation */ 738 AifJobScsiZero, /* SCSI device clear operation */ 739 AifJobScsiVerify, /* SCSI device Verify operation NO 740 * REPAIR */ 741 AifJobScsiExercise, /* SCSI device Exercise operation */ 742 AifJobScsiVerifyRepair, /* SCSI device Verify operation WITH 743 * repair */ 744 AifJobScsiWritePattern, /* write pattern */ 745 AifJobScsiMax = 99, /* Max Scsi value */ 746 AifJobCtrMin, /* Min Ctr op value */ 747 AifJobCtrZero, /* Container clear operation */ 748 AifJobCtrCopy, /* Container copy operation */ 749 AifJobCtrCreateMirror, /* Container Create Mirror operation */ 750 AifJobCtrMergeMirror, /* Container Merge Mirror operation */ 751 AifJobCtrScrubMirror, /* Container Scrub Mirror operation */ 752 AifJobCtrRebuildRaid5, /* Container Rebuild Raid5 operation */ 753 AifJobCtrScrubRaid5, /* Container Scrub Raid5 operation */ 754 AifJobCtrMorph, /* Container morph operation */ 755 AifJobCtrPartCopy, /* Container Partition copy operation */ 756 AifJobCtrRebuildMirror, /* Container Rebuild Mirror operation */ 757 AifJobCtrCrazyCache, /* crazy cache */ 758 AifJobCtrCopyback, /* Container Copyback operation */ 759 AifJobCtrCompactRaid5D, /* Container Compaction operation */ 760 AifJobCtrExpandRaid5D, /* Container Expansion operation */ 761 AifJobCtrRebuildRaid6, /* Container Rebuild Raid6 operation */ 762 AifJobCtrScrubRaid6, /* Container Scrub Raid6 operation */ 763 AifJobCtrSSBackup, /* Container snapshot backup task */ 764 AifJobCtrMax = 199, /* Max Ctr type operation */ 765 AifJobFsMin, /* Min Fs type operation */ 766 AifJobFsCreate, /* File System Create operation */ 767 AifJobFsVerify, /* File System Verify operation */ 768 AifJobFsExtend, /* File System Extend operation */ 769 AifJobFsMax = 299, /* Max Fs type operation */ 770 AifJobApiFormatNTFS, /* Format a drive to NTFS */ 771 AifJobApiFormatFAT, /* Format a drive to FAT */ 772 AifJobApiUpdateSnapshot, /* update the read/write half of a 773 * snapshot */ 774 AifJobApiFormatFAT32, /* Format a drive to FAT32 */ 775 AifJobApiMax = 399, /* Max API type operation */ 776 AifJobCtlContinuousCtrVerify, /* Adapter operation */ 777 AifJobCtlMax = 499 /* Max Adapter type operation */ 778 } AAC_AifJobType; 779 780 struct aac_AifContainers { 781 u_int32_t src; /* from/master */ 782 u_int32_t dst; /* to/slave */ 783 } __packed; 784 785 union aac_AifJobClient { 786 struct aac_AifContainers container; /* For Container and 787 * filesystem progress 788 * ops; */ 789 int32_t scsi_dh; /* For SCSI progress 790 * ops */ 791 }; 792 793 struct aac_AifJobDesc { 794 u_int32_t jobID; /* DO NOT FILL IN! Will be 795 * filled in by AIF */ 796 AAC_AifJobType type; /* Operation that is being 797 * performed */ 798 union aac_AifJobClient client; /* Details */ 799 } __packed; 800 801 struct aac_AifJobProgressReport { 802 struct aac_AifJobDesc jd; 803 AAC_AifJobStatus status; 804 u_int32_t finalTick; 805 u_int32_t currentTick; 806 u_int32_t jobSpecificData1; 807 u_int32_t jobSpecificData2; 808 } __packed; 809 810 /* 811 * Event Notification 812 */ 813 typedef enum { 814 /* General application notifies start here */ 815 AifEnGeneric = 1, /* Generic notification */ 816 AifEnTaskComplete, /* Task has completed */ 817 AifEnConfigChange, /* Adapter config change occurred */ 818 AifEnContainerChange, /* Adapter specific container 819 * configuration change */ 820 AifEnDeviceFailure, /* SCSI device failed */ 821 AifEnMirrorFailover, /* Mirror failover started */ 822 AifEnContainerEvent, /* Significant container event */ 823 AifEnFileSystemChange, /* File system changed */ 824 AifEnConfigPause, /* Container pause event */ 825 AifEnConfigResume, /* Container resume event */ 826 AifEnFailoverChange, /* Failover space assignment changed */ 827 AifEnRAID5RebuildDone, /* RAID5 rebuild finished */ 828 AifEnEnclosureManagement, /* Enclosure management event */ 829 AifEnBatteryEvent, /* Significant NV battery event */ 830 AifEnAddContainer, /* A new container was created. */ 831 AifEnDeleteContainer, /* A container was deleted. */ 832 AifEnSMARTEvent, /* SMART Event */ 833 AifEnBatteryNeedsRecond, /* The battery needs reconditioning */ 834 AifEnClusterEvent, /* Some cluster event */ 835 AifEnDiskSetEvent, /* A disk set event occured. */ 836 AifDriverNotifyStart=199, /* Notifies for host driver go here */ 837 /* Host driver notifications start here */ 838 AifDenMorphComplete, /* A morph operation completed */ 839 AifDenVolumeExtendComplete /* Volume expand operation completed */ 840 } AAC_AifEventNotifyType; 841 842 struct aac_AifEnsGeneric { 843 char text[132]; /* Generic text */ 844 } __packed; 845 846 struct aac_AifEnsDeviceFailure { 847 u_int32_t deviceHandle; /* SCSI device handle */ 848 } __packed; 849 850 struct aac_AifEnsMirrorFailover { 851 u_int32_t container; /* Container with failed element */ 852 u_int32_t failedSlice; /* Old slice which failed */ 853 u_int32_t creatingSlice; /* New slice used for auto-create */ 854 } __packed; 855 856 struct aac_AifEnsContainerChange { 857 u_int32_t container[2]; /* container that changed, -1 if no 858 * container */ 859 } __packed; 860 861 struct aac_AifEnsContainerEvent { 862 u_int32_t container; /* container number */ 863 u_int32_t eventType; /* event type */ 864 } __packed; 865 866 struct aac_AifEnsEnclosureEvent { 867 u_int32_t empID; /* enclosure management proc number */ 868 u_int32_t unitID; /* unitId, fan id, power supply id, 869 * slot id, tempsensor id. */ 870 u_int32_t eventType; /* event type */ 871 } __packed; 872 873 struct aac_AifEnsBatteryEvent { 874 AAC_NVBATT_TRANSITION transition_type; /* eg from low to ok */ 875 AAC_NVBATTSTATUS current_state; /* current batt state */ 876 AAC_NVBATTSTATUS prior_state; /* prev batt state */ 877 } __packed; 878 879 struct aac_AifEnsDiskSetEvent { 880 u_int32_t eventType; 881 u_int64_t DsNum; 882 u_int64_t CreatorId; 883 } __packed; 884 885 typedef enum { 886 CLUSTER_NULL_EVENT = 0, 887 CLUSTER_PARTNER_NAME_EVENT, /* change in partner hostname or 888 * adaptername from NULL to non-NULL */ 889 /* (partner's agent may be up) */ 890 CLUSTER_PARTNER_NULL_NAME_EVENT /* change in partner hostname or 891 * adaptername from non-null to NULL */ 892 /* (partner has rebooted) */ 893 } AAC_ClusterAifEvent; 894 895 struct aac_AifEnsClusterEvent { 896 AAC_ClusterAifEvent eventType; 897 } __packed; 898 899 struct aac_AifEventNotify { 900 AAC_AifEventNotifyType type; 901 union { 902 struct aac_AifEnsGeneric EG; 903 struct aac_AifEnsDeviceFailure EDF; 904 struct aac_AifEnsMirrorFailover EMF; 905 struct aac_AifEnsContainerChange ECC; 906 struct aac_AifEnsContainerEvent ECE; 907 struct aac_AifEnsEnclosureEvent EEE; 908 struct aac_AifEnsBatteryEvent EBE; 909 struct aac_AifEnsDiskSetEvent EDS; 910 /* struct aac_AifEnsSMARTEvent ES;*/ 911 struct aac_AifEnsClusterEvent ECLE; 912 } data; 913 } __packed; 914 915 /* 916 * Adapter Initiated FIB command structures. Start with the adapter 917 * initiated FIBs that really come from the adapter, and get responded 918 * to by the host. 919 */ 920 #define AAC_AIF_REPORT_MAX_SIZE 64 921 922 typedef enum { 923 AifCmdEventNotify = 1, /* Notify of event */ 924 AifCmdJobProgress, /* Progress report */ 925 AifCmdAPIReport, /* Report from other user of API */ 926 AifCmdDriverNotify, /* Notify host driver of event */ 927 AifReqJobList = 100, /* Gets back complete job list */ 928 AifReqJobsForCtr, /* Gets back jobs for specific container */ 929 AifReqJobsForScsi, /* Gets back jobs for specific SCSI device */ 930 AifReqJobReport, /* Gets back a specific job report or list */ 931 AifReqTerminateJob, /* Terminates job */ 932 AifReqSuspendJob, /* Suspends a job */ 933 AifReqResumeJob, /* Resumes a job */ 934 AifReqSendAPIReport, /* API generic report requests */ 935 AifReqAPIJobStart, /* Start a job from the API */ 936 AifReqAPIJobUpdate, /* Update a job report from the API */ 937 AifReqAPIJobFinish /* Finish a job from the API */ 938 } AAC_AifCommand; 939 940 struct aac_aif_command { 941 AAC_AifCommand command; /* Tell host what type of 942 * notify this is */ 943 u_int32_t seqNumber; /* To allow ordering of 944 * reports (if necessary) */ 945 union { 946 struct aac_AifEventNotify EN; /* Event notify */ 947 struct aac_AifJobProgressReport PR[1]; /* Progress report */ 948 u_int8_t AR[AAC_AIF_REPORT_MAX_SIZE]; 949 u_int8_t data[AAC_FIB_DATASIZE - 8]; 950 } data; 951 } __packed; 952 953 /* 954 * Filesystem commands/data 955 * 956 * The adapter has a very complex filesystem interface, most of which we ignore. 957 * (And which seems not to be implemented, anyway.) 958 */ 959 960 /* 961 * FSA commands 962 * (not used?) 963 */ 964 typedef enum { 965 Null = 0, 966 GetAttributes, 967 SetAttributes, 968 Lookup, 969 ReadLink, 970 Read, 971 Write, 972 Create, 973 MakeDirectory, 974 SymbolicLink, 975 MakeNode, 976 Removex, 977 RemoveDirectory, 978 Rename, 979 Link, 980 ReadDirectory, 981 ReadDirectoryPlus, 982 FileSystemStatus, 983 FileSystemInfo, 984 PathConfigure, 985 Commit, 986 Mount, 987 UnMount, 988 Newfs, 989 FsCheck, 990 FsSync, 991 SimReadWrite, 992 SetFileSystemStatus, 993 BlockRead, 994 BlockWrite, 995 NvramIoctl, 996 FsSyncWait, 997 ClearArchiveBit, 998 SetAcl, 999 GetAcl, 1000 AssignAcl, 1001 FaultInsertion, 1002 CrazyCache 1003 } AAC_FSACommand; 1004 1005 /* 1006 * Command status values 1007 */ 1008 typedef enum { 1009 ST_OK = 0, 1010 ST_PERM = 1, 1011 ST_NOENT = 2, 1012 ST_IO = 5, 1013 ST_NXIO = 6, 1014 ST_E2BIG = 7, 1015 ST_ACCES = 13, 1016 ST_EXIST = 17, 1017 ST_XDEV = 18, 1018 ST_NODEV = 19, 1019 ST_NOTDIR = 20, 1020 ST_ISDIR = 21, 1021 ST_INVAL = 22, 1022 ST_FBIG = 27, 1023 ST_NOSPC = 28, 1024 ST_ROFS = 30, 1025 ST_MLINK = 31, 1026 ST_WOULDBLOCK = 35, 1027 ST_NAMETOOLONG = 63, 1028 ST_NOTEMPTY = 66, 1029 ST_DQUOT = 69, 1030 ST_STALE = 70, 1031 ST_REMOTE = 71, 1032 ST_BADHANDLE = 10001, 1033 ST_NOT_SYNC = 10002, 1034 ST_BAD_COOKIE = 10003, 1035 ST_NOTSUPP = 10004, 1036 ST_TOOSMALL = 10005, 1037 ST_SERVERFAULT = 10006, 1038 ST_BADTYPE = 10007, 1039 ST_JUKEBOX = 10008, 1040 ST_NOTMOUNTED = 10009, 1041 ST_MAINTMODE = 10010, 1042 ST_STALEACL = 10011 1043 } AAC_FSAStatus; 1044 1045 /* 1046 * Volume manager commands 1047 */ 1048 typedef enum _VM_COMMANDS { 1049 VM_Null = 0, 1050 VM_NameServe, 1051 VM_ContainerConfig, 1052 VM_Ioctl, 1053 VM_FilesystemIoctl, 1054 VM_CloseAll, 1055 VM_CtBlockRead, 1056 VM_CtBlockWrite, 1057 VM_SliceBlockRead, /* raw access to configured storage objects */ 1058 VM_SliceBlockWrite, 1059 VM_DriveBlockRead, /* raw access to physical devices */ 1060 VM_DriveBlockWrite, 1061 VM_EnclosureMgt, /* enclosure management */ 1062 VM_Unused, /* used to be diskset management */ 1063 VM_CtBlockVerify, 1064 VM_CtPerf, /* performance test */ 1065 VM_CtBlockRead64, 1066 VM_CtBlockWrite64, 1067 VM_CtBlockVerify64, 1068 VM_CtHostRead64, 1069 VM_CtHostWrite64, 1070 VM_DrvErrTblLog, /* drive error table/log type of command */ 1071 VM_NameServe64 1072 } AAC_VMCommand; 1073 1074 /* 1075 * "mountable object" 1076 */ 1077 struct aac_mntobj { 1078 u_int32_t ObjectId; 1079 char FileSystemName[16]; 1080 struct aac_container_creation CreateInfo; 1081 u_int32_t Capacity; 1082 u_int32_t VolType; 1083 u_int32_t ObjType; 1084 u_int32_t ContentState; 1085 #define FSCS_READONLY 0x0002 /* XXX need more information 1086 * than this */ 1087 union { 1088 u_int32_t pad[8]; 1089 } ObjExtension; 1090 u_int32_t AlterEgoId; 1091 } __packed; 1092 1093 struct aac_mntinfo { 1094 u_int32_t Command; 1095 u_int32_t MntType; 1096 u_int32_t MntCount; 1097 } __packed; 1098 1099 struct aac_mntinforesp { 1100 u_int32_t Status; 1101 u_int32_t MntType; 1102 u_int32_t MntRespCount; 1103 struct aac_mntobj MntTable[1]; 1104 } __packed; 1105 1106 /* 1107 * Container shutdown command. 1108 */ 1109 struct aac_closecommand { 1110 u_int32_t Command; 1111 u_int32_t ContainerId; 1112 } __packed; 1113 1114 /* 1115 * Container Config Command 1116 */ 1117 #define CT_GET_SCSI_METHOD 64 1118 struct aac_ctcfg { 1119 u_int32_t Command; 1120 u_int32_t cmd; 1121 u_int32_t param; 1122 } __packed; 1123 1124 struct aac_ctcfg_resp { 1125 u_int32_t Status; 1126 u_int32_t resp; 1127 u_int32_t param; 1128 } __packed; 1129 1130 /* 1131 * 'Ioctl' commads 1132 */ 1133 #define AAC_SCSI_MAX_PORTS 10 1134 #define AAC_BUS_NO_EXIST 0 1135 #define AAC_BUS_VALID 1 1136 #define AAC_BUS_FAULTED 2 1137 #define AAC_BUS_DISABLED 3 1138 #define GetBusInfo 0x9 1139 1140 struct aac_getbusinf { 1141 u_int32_t ProbeComplete; 1142 u_int32_t BusCount; 1143 u_int32_t TargetsPerBus; 1144 u_int8_t InitiatorBusId[AAC_SCSI_MAX_PORTS]; 1145 u_int8_t BusValid[AAC_SCSI_MAX_PORTS]; 1146 } __packed; 1147 1148 struct aac_vmioctl { 1149 u_int32_t Command; 1150 u_int32_t ObjType; 1151 u_int32_t MethId; 1152 u_int32_t ObjId; 1153 u_int32_t IoctlCmd; 1154 u_int32_t IoctlBuf[1]; /* Placeholder? */ 1155 } __packed; 1156 1157 struct aac_vmi_businf_resp { 1158 u_int32_t Status; 1159 u_int32_t ObjType; 1160 u_int32_t MethId; 1161 u_int32_t ObjId; 1162 u_int32_t IoctlCmd; 1163 struct aac_getbusinf BusInf; 1164 } __packed; 1165 1166 #if 0 1167 #define AAC_BTL_TO_HANDLE(b, t, l) \ 1168 (((b & 0x3f) << 7) | ((l & 0x7) << 4) | (t & 0xf)) 1169 #else 1170 #define AAC_BTL_TO_HANDLE(b, t, l) \ 1171 ((((u_int32_t)b & 0x0f) << 24) | \ 1172 (((u_int32_t)l & 0xff) << 16) | \ 1173 ((u_int32_t)t & 0xffff)) 1174 #endif 1175 #define GetDeviceProbeInfo 0x5 1176 1177 struct aac_vmi_devinfo_resp { 1178 u_int32_t Status; 1179 u_int32_t ObjType; 1180 u_int32_t MethId; 1181 u_int32_t ObjId; 1182 u_int32_t IoctlCmd; 1183 u_int8_t VendorId[8]; 1184 u_int8_t ProductId[16]; 1185 u_int8_t ProductRev[4]; 1186 u_int32_t Inquiry7; 1187 u_int32_t align1; 1188 u_int32_t Inquiry0; 1189 u_int32_t align2; 1190 u_int32_t Inquiry1; 1191 u_int32_t align3; 1192 u_int32_t reserved[2]; 1193 u_int8_t VendorSpecific[20]; 1194 u_int32_t Smart:1; 1195 u_int32_t AAC_Managed:1; 1196 u_int32_t align4; 1197 u_int32_t reserved2:6; 1198 u_int32_t Bus; 1199 u_int32_t Target; 1200 u_int32_t Lun; 1201 u_int32_t ultraEnable:1, 1202 disconnectEnable:1, 1203 fast20EnabledW:1, 1204 scamDevice:1, 1205 scamTolerant:1, 1206 setForSync:1, 1207 setForWide:1, 1208 syncDevice:1, 1209 wideDevice:1, 1210 reserved1:7, 1211 ScsiRate:8, 1212 ScsiOffset:8; 1213 }; /* Do not pack */ 1214 1215 #define ResetBus 0x16 1216 struct aac_resetbus { 1217 u_int32_t BusNumber; 1218 }; 1219 1220 /* 1221 * Write 'stability' options. 1222 */ 1223 typedef enum { 1224 CSTABLE = 1, 1225 CUNSTABLE 1226 } AAC_CacheLevel; 1227 1228 /* 1229 * Commit level response for a write request. 1230 */ 1231 typedef enum { 1232 CMFILE_SYNC_NVRAM = 1, 1233 CMDATA_SYNC_NVRAM, 1234 CMFILE_SYNC, 1235 CMDATA_SYNC, 1236 CMUNSTABLE 1237 } AAC_CommitLevel; 1238 1239 /* 1240 * Block read/write operations. 1241 * These structures are packed into the 'data' area in the FIB. 1242 */ 1243 1244 struct aac_blockread { 1245 u_int32_t Command; /* not FSACommand! */ 1246 u_int32_t ContainerId; 1247 u_int32_t BlockNumber; 1248 u_int32_t ByteCount; 1249 struct aac_sg_table SgMap; /* variable size */ 1250 } __packed; 1251 1252 struct aac_blockread64 { 1253 u_int32_t Command; 1254 u_int16_t ContainerId; 1255 u_int16_t SectorCount; 1256 u_int32_t BlockNumber; 1257 u_int16_t Pad; 1258 u_int16_t Flags; 1259 struct aac_sg_table64 SgMap64; 1260 } __packed; 1261 1262 struct aac_blockread_response { 1263 u_int32_t Status; 1264 u_int32_t ByteCount; 1265 } __packed; 1266 1267 struct aac_blockwrite { 1268 u_int32_t Command; /* not FSACommand! */ 1269 u_int32_t ContainerId; 1270 u_int32_t BlockNumber; 1271 u_int32_t ByteCount; 1272 u_int32_t Stable; 1273 struct aac_sg_table SgMap; /* variable size */ 1274 } __packed; 1275 1276 struct aac_blockwrite64 { 1277 u_int32_t Command; /* not FSACommand! */ 1278 u_int16_t ContainerId; 1279 u_int16_t SectorCount; 1280 u_int32_t BlockNumber; 1281 u_int16_t Pad; 1282 u_int16_t Flags; 1283 struct aac_sg_table64 SgMap64; /* variable size */ 1284 } __packed; 1285 1286 struct aac_blockwrite_response { 1287 u_int32_t Status; 1288 u_int32_t ByteCount; 1289 u_int32_t Committed; 1290 } __packed; 1291 1292 struct aac_raw_io { 1293 u_int64_t BlockNumber; 1294 u_int32_t ByteCount; 1295 u_int16_t ContainerId; 1296 u_int16_t Flags; /* 0: W, 1: R */ 1297 u_int16_t BpTotal; /* reserved for FW use */ 1298 u_int16_t BpComplete; /* reserved for FW use */ 1299 struct aac_sg_tableraw SgMapRaw; /* variable size */ 1300 } __packed; 1301 1302 /* 1303 * Container shutdown command. 1304 */ 1305 struct aac_close_command { 1306 u_int32_t Command; 1307 u_int32_t ContainerId; 1308 }; 1309 1310 /* 1311 * SCSI Passthrough structures 1312 */ 1313 struct aac_srb32 { 1314 u_int32_t function; 1315 u_int32_t bus; 1316 u_int32_t target; 1317 u_int32_t lun; 1318 u_int32_t timeout; 1319 u_int32_t flags; 1320 u_int32_t data_len; 1321 u_int32_t retry_limit; 1322 u_int32_t cdb_len; 1323 u_int8_t cdb[16]; 1324 struct aac_sg_table sg_map32; 1325 }; 1326 1327 enum { 1328 AAC_SRB_FUNC_EXECUTE_SCSI = 0x00, 1329 AAC_SRB_FUNC_CLAIM_DEVICE, 1330 AAC_SRB_FUNC_IO_CONTROL, 1331 AAC_SRB_FUNC_RECEIVE_EVENT, 1332 AAC_SRB_FUNC_RELEASE_QUEUE, 1333 AAC_SRB_FUNC_ATTACH_DEVICE, 1334 AAC_SRB_FUNC_RELEASE_DEVICE, 1335 AAC_SRB_FUNC_SHUTDOWN, 1336 AAC_SRB_FUNC_FLUSH, 1337 AAC_SRB_FUNC_ABORT_COMMAND = 0x10, 1338 AAC_SRB_FUNC_RELEASE_RECOVERY, 1339 AAC_SRB_FUNC_RESET_BUS, 1340 AAC_SRB_FUNC_RESET_DEVICE, 1341 AAC_SRB_FUNC_TERMINATE_IO, 1342 AAC_SRB_FUNC_FLUSH_QUEUE, 1343 AAC_SRB_FUNC_REMOVE_DEVICE, 1344 AAC_SRB_FUNC_DOMAIN_VALIDATION 1345 }; 1346 1347 #define AAC_SRB_FLAGS_NO_DATA_XFER 0x0000 1348 #define AAC_SRB_FLAGS_DISABLE_DISCONNECT 0x0004 1349 #define AAC_SRB_FLAGS_DISABLE_SYNC_TRANSFER 0x0008 1350 #define AAC_SRB_FLAGS_BYPASS_FROZEN_QUEUE 0x0010 1351 #define AAC_SRB_FLAGS_DISABLE_AUTOSENSE 0x0020 1352 #define AAC_SRB_FLAGS_DATA_IN 0x0040 1353 #define AAC_SRB_FLAGS_DATA_OUT 0x0080 1354 #define AAC_SRB_FLAGS_UNSPECIFIED_DIRECTION \ 1355 (AAC_SRB_FLAGS_DATA_IN | AAC_SRB_FLAGS_DATA_OUT) 1356 1357 #define AAC_HOST_SENSE_DATA_MAX 30 1358 1359 struct aac_srb_response { 1360 u_int32_t fib_status; 1361 u_int32_t srb_status; 1362 u_int32_t scsi_status; 1363 u_int32_t data_len; 1364 u_int32_t sense_len; 1365 u_int8_t sense[AAC_HOST_SENSE_DATA_MAX]; 1366 }; 1367 1368 /* 1369 * Status codes for SCSI passthrough commands. Since they are based on ASPI, 1370 * they also exactly match CAM status codes in both enumeration and meaning. 1371 * They seem to also be used as status codes for synchronous FIBs. 1372 */ 1373 enum { 1374 AAC_SRB_STS_PENDING = 0x00, 1375 AAC_SRB_STS_SUCCESS, 1376 AAC_SRB_STS_ABORTED, 1377 AAC_SRB_STS_ABORT_FAILED, 1378 AAC_SRB_STS_ERROR, 1379 AAC_SRB_STS_BUSY, 1380 AAC_SRB_STS_INVALID_REQUEST, 1381 AAC_SRB_STS_INVALID_PATH_ID, 1382 AAC_SRB_STS_NO_DEVICE, 1383 AAC_SRB_STS_TIMEOUT, 1384 AAC_SRB_STS_SELECTION_TIMEOUT, 1385 AAC_SRB_STS_COMMAND_TIMEOUT, 1386 AAC_SRB_STS_MESSAGE_REJECTED = 0x0D, 1387 AAC_SRB_STS_BUS_RESET, 1388 AAC_SRB_STS_PARITY_ERROR, 1389 AAC_SRB_STS_REQUEST_SENSE_FAILED, 1390 AAC_SRB_STS_NO_HBA, 1391 AAC_SRB_STS_DATA_OVERRUN, 1392 AAC_SRB_STS_UNEXPECTED_BUS_FREE, 1393 AAC_SRB_STS_PHASE_SEQUENCE_FAILURE, 1394 AAC_SRB_STS_BAD_SRB_BLOCK_LENGTH, 1395 AAC_SRB_STS_REQUEST_FLUSHED, 1396 AAC_SRB_STS_INVALID_LUN = 0x20, 1397 AAC_SRB_STS_INVALID_TARGET_ID, 1398 AAC_SRB_STS_BAD_FUNCTION, 1399 AAC_SRB_STS_ERROR_RECOVERY 1400 }; 1401 1402 /* 1403 * Register set for adapters based on the Falcon bridge and PPC core 1404 */ 1405 1406 #define AAC_FA_DOORBELL0_CLEAR 0x00 1407 #define AAC_FA_DOORBELL1_CLEAR 0x02 1408 #define AAC_FA_DOORBELL0 0x04 1409 #define AAC_FA_DOORBELL1 0x06 1410 #define AAC_FA_MASK0_CLEAR 0x08 1411 #define AAC_FA_MASK1_CLEAR 0x0a 1412 #define AAC_FA_MASK0 0x0c 1413 #define AAC_FA_MASK1 0x0e 1414 #define AAC_FA_MAILBOX 0x10 1415 #define AAC_FA_FWSTATUS 0x2c /* Mailbox 7 */ 1416 #define AAC_FA_INTSRC 0x900 1417 1418 #define AAC_FA_HACK(sc) (void)AAC_GETREG4(sc, AAC_FA_INTSRC) 1419 1420 /* 1421 * Register definitions for the Adaptec AAC-364 'Jalapeno I/II' adapters, based 1422 * on the SA110 'StrongArm'. 1423 */ 1424 1425 #define AAC_SA_DOORBELL0_CLEAR 0x98 /* doorbell 0 (adapter->host) */ 1426 #define AAC_SA_DOORBELL0_SET 0x9c 1427 #define AAC_SA_DOORBELL0 0x9c 1428 #define AAC_SA_MASK0_CLEAR 0xa0 1429 #define AAC_SA_MASK0_SET 0xa4 1430 1431 #define AAC_SA_DOORBELL1_CLEAR 0x9a /* doorbell 1 (host->adapter) */ 1432 #define AAC_SA_DOORBELL1_SET 0x9e 1433 #define AAC_SA_DOORBELL1 0x9e 1434 #define AAC_SA_MASK1_CLEAR 0xa2 1435 #define AAC_SA_MASK1_SET 0xa6 1436 1437 #define AAC_SA_MAILBOX 0xa8 /* mailbox (20 bytes) */ 1438 #define AAC_SA_FWSTATUS 0xc4 1439 1440 /* 1441 * Register definitions for the Adaptec 'Pablano' adapters, based on the i960Rx, 1442 * and other related adapters. 1443 */ 1444 1445 #define AAC_RX_IDBR 0x20 /* inbound doorbell register */ 1446 #define AAC_RX_IISR 0x24 /* inbound interrupt status register */ 1447 #define AAC_RX_IIMR 0x28 /* inbound interrupt mask register */ 1448 #define AAC_RX_ODBR 0x2c /* outbound doorbell register */ 1449 #define AAC_RX_OISR 0x30 /* outbound interrupt status register */ 1450 #define AAC_RX_OIMR 0x34 /* outbound interrupt mask register */ 1451 #define AAC_RX_IQUE 0x40 /* inbound queue */ 1452 #define AAC_RX_OQUE 0x44 /* outbound queue */ 1453 1454 #define AAC_RX_MAILBOX 0x50 /* mailbox (20 bytes) */ 1455 #define AAC_RX_FWSTATUS 0x6c 1456 1457 /* 1458 * Register definitions for the Adaptec 'Rocket' RAID-On-Chip adapters. 1459 * Unsurprisingly, it's quite similar to the i960! 1460 */ 1461 1462 #define AAC_RKT_IDBR 0x20 /* inbound doorbell register */ 1463 #define AAC_RKT_IISR 0x24 /* inbound interrupt status register */ 1464 #define AAC_RKT_IIMR 0x28 /* inbound interrupt mask register */ 1465 #define AAC_RKT_ODBR 0x2c /* outbound doorbell register */ 1466 #define AAC_RKT_OISR 0x30 /* outbound interrupt status register */ 1467 #define AAC_RKT_OIMR 0x34 /* outbound interrupt mask register */ 1468 #define AAC_RKT_IQUE 0x40 /* inbound queue */ 1469 #define AAC_RKT_OQUE 0x44 /* outbound queue */ 1470 1471 #define AAC_RKT_MAILBOX 0x1000 /* mailbox */ 1472 #define AAC_RKT_FWSTATUS 0x101c /* Firmware Status (mailbox 7) */ 1473 1474 /* 1475 * Common bit definitions for the doorbell registers. 1476 */ 1477 1478 /* 1479 * Status bits in the doorbell registers. 1480 */ 1481 #define AAC_DB_SYNC_COMMAND (1<<0) /* send/completed synchronous FIB */ 1482 #define AAC_DB_COMMAND_READY (1<<1) /* posted one or more commands */ 1483 #define AAC_DB_RESPONSE_READY (1<<2) /* one or more commands complete */ 1484 #define AAC_DB_COMMAND_NOT_FULL (1<<3) /* command queue not full */ 1485 #define AAC_DB_RESPONSE_NOT_FULL (1<<4) /* response queue not full */ 1486 1487 /* 1488 * The adapter can request the host print a message by setting the 1489 * DB_PRINTF flag in DOORBELL0. The driver responds by collecting the 1490 * message from the printf buffer, clearing the DB_PRINTF flag in 1491 * DOORBELL0 and setting it in DOORBELL1. 1492 * (ODBR and IDBR respectively for the i960Rx adapters) 1493 */ 1494 #define AAC_DB_PRINTF (1<<5) /* adapter requests host printf */ 1495 #define AAC_PRINTF_DONE (1<<5) /* Host completed printf processing */ 1496 1497 /* 1498 * Mask containing the interrupt bits we care about. We don't anticipate (or 1499 * want) interrupts not in this mask. 1500 */ 1501 #define AAC_DB_INTERRUPTS (AAC_DB_COMMAND_READY | \ 1502 AAC_DB_RESPONSE_READY | \ 1503 AAC_DB_PRINTF) 1504 #define AAC_DB_INT_NEW_COMM 0x08 1505 1506