1 /* $FreeBSD$ */ 2 /*- 3 * Generic defines for LSI '909 FC adapters. 4 * FreeBSD Version. 5 * 6 * Copyright (c) 2000, 2001 by Greg Ansley 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 immediately at the beginning of the file, without modification, 13 * this list of conditions, and the following disclaimer. 14 * 2. The name of the author may not be used to endorse or promote products 15 * derived from this software without specific prior written permission. 16 * 17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 18 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 19 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 20 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR 21 * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 22 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 23 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 24 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 25 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 26 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 27 * SUCH DAMAGE. 28 */ 29 /*- 30 * Copyright (c) 2002, 2006 by Matthew Jacob 31 * All rights reserved. 32 * 33 * Redistribution and use in source and binary forms, with or without 34 * modification, are permitted provided that the following conditions are 35 * met: 36 * 1. Redistributions of source code must retain the above copyright 37 * notice, this list of conditions and the following disclaimer. 38 * 2. Redistributions in binary form must reproduce at minimum a disclaimer 39 * substantially similar to the "NO WARRANTY" disclaimer below 40 * ("Disclaimer") and any redistribution must be conditioned upon including 41 * a substantially similar Disclaimer requirement for further binary 42 * redistribution. 43 * 3. Neither the names of the above listed copyright holders nor the names 44 * of any contributors may be used to endorse or promote products derived 45 * from this software without specific prior written permission. 46 * 47 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" 48 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 49 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 50 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE 51 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 52 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 53 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 54 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 55 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 56 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF THE COPYRIGHT 57 * OWNER OR CONTRIBUTOR IS ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 58 * 59 * Support from Chris Ellsworth in order to make SAS adapters work 60 * is gratefully acknowledged. 61 * 62 * 63 * Support from LSI-Logic has also gone a great deal toward making this a 64 * workable subsystem and is gratefully acknowledged. 65 */ 66 /* 67 * Copyright (c) 2004, Avid Technology, Inc. and its contributors. 68 * Copyright (c) 2004, 2005 Justin T. Gibbs 69 * Copyright (c) 2005, WHEEL Sp. z o.o. 70 * All rights reserved. 71 * 72 * Redistribution and use in source and binary forms, with or without 73 * modification, are permitted provided that the following conditions are 74 * met: 75 * 1. Redistributions of source code must retain the above copyright 76 * notice, this list of conditions and the following disclaimer. 77 * 2. Redistributions in binary form must reproduce at minimum a disclaimer 78 * substantially similar to the "NO WARRANTY" disclaimer below 79 * ("Disclaimer") and any redistribution must be conditioned upon including 80 * a substantially similar Disclaimer requirement for further binary 81 * redistribution. 82 * 3. Neither the names of the above listed copyright holders nor the names 83 * of any contributors may be used to endorse or promote products derived 84 * from this software without specific prior written permission. 85 * 86 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" 87 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 88 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 89 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE 90 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 91 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 92 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 93 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 94 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 95 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF THE COPYRIGHT 96 * OWNER OR CONTRIBUTOR IS ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 97 */ 98 99 #ifndef _MPT_H_ 100 #define _MPT_H_ 101 102 /********************************* OS Includes ********************************/ 103 #include <sys/types.h> 104 #include <sys/param.h> 105 #include <sys/systm.h> 106 #include <sys/endian.h> 107 #include <sys/eventhandler.h> 108 #if __FreeBSD_version < 500000 109 #include <sys/kernel.h> 110 #include <sys/queue.h> 111 #include <sys/malloc.h> 112 #else 113 #include <sys/lock.h> 114 #include <sys/kernel.h> 115 #include <sys/queue.h> 116 #include <sys/malloc.h> 117 #include <sys/mutex.h> 118 #include <sys/condvar.h> 119 #endif 120 #include <sys/proc.h> 121 #include <sys/bus.h> 122 #include <sys/module.h> 123 124 #include <machine/cpu.h> 125 #include <machine/resource.h> 126 127 #if __FreeBSD_version < 500000 128 #include <machine/bus.h> 129 #include <machine/clock.h> 130 #endif 131 132 #include <sys/rman.h> 133 134 #if __FreeBSD_version < 500000 135 #include <pci/pcireg.h> 136 #include <pci/pcivar.h> 137 #else 138 #include <dev/pci/pcireg.h> 139 #include <dev/pci/pcivar.h> 140 #endif 141 142 #include <machine/bus.h> 143 #include "opt_ddb.h" 144 145 /**************************** Register Definitions ****************************/ 146 #include <dev/mpt/mpt_reg.h> 147 148 /******************************* MPI Definitions ******************************/ 149 #include <dev/mpt/mpilib/mpi_type.h> 150 #include <dev/mpt/mpilib/mpi.h> 151 #include <dev/mpt/mpilib/mpi_cnfg.h> 152 #include <dev/mpt/mpilib/mpi_ioc.h> 153 #include <dev/mpt/mpilib/mpi_raid.h> 154 155 /* XXX For mpt_debug.c */ 156 #include <dev/mpt/mpilib/mpi_init.h> 157 158 #define MPT_S64_2_SCALAR(y) ((((int64_t)y.High) << 32) | (y.Low)) 159 #define MPT_U64_2_SCALAR(y) ((((uint64_t)y.High) << 32) | (y.Low)) 160 161 /****************************** Misc Definitions ******************************/ 162 /* #define MPT_TEST_MULTIPATH 1 */ 163 #define MPT_OK (0) 164 #define MPT_FAIL (0x10000) 165 166 #define NUM_ELEMENTS(array) (sizeof(array) / sizeof(*array)) 167 168 #define MPT_ROLE_NONE 0 169 #define MPT_ROLE_INITIATOR 1 170 #define MPT_ROLE_TARGET 2 171 #define MPT_ROLE_BOTH 3 172 #define MPT_ROLE_DEFAULT MPT_ROLE_INITIATOR 173 174 /**************************** Forward Declarations ****************************/ 175 struct mpt_softc; 176 struct mpt_personality; 177 typedef struct req_entry request_t; 178 179 /************************* Personality Module Support *************************/ 180 typedef int mpt_load_handler_t(struct mpt_personality *); 181 typedef int mpt_probe_handler_t(struct mpt_softc *); 182 typedef int mpt_attach_handler_t(struct mpt_softc *); 183 typedef int mpt_enable_handler_t(struct mpt_softc *); 184 typedef void mpt_ready_handler_t(struct mpt_softc *); 185 typedef int mpt_event_handler_t(struct mpt_softc *, request_t *, 186 MSG_EVENT_NOTIFY_REPLY *); 187 typedef void mpt_reset_handler_t(struct mpt_softc *, int /*type*/); 188 /* XXX Add return value and use for veto? */ 189 typedef void mpt_shutdown_handler_t(struct mpt_softc *); 190 typedef void mpt_detach_handler_t(struct mpt_softc *); 191 typedef int mpt_unload_handler_t(struct mpt_personality *); 192 193 struct mpt_personality 194 { 195 const char *name; 196 uint32_t id; /* Assigned identifier. */ 197 u_int use_count; /* Instances using personality*/ 198 mpt_load_handler_t *load; /* configure personailty */ 199 #define MPT_PERS_FIRST_HANDLER(pers) (&(pers)->load) 200 mpt_probe_handler_t *probe; /* configure personailty */ 201 mpt_attach_handler_t *attach; /* initialize device instance */ 202 mpt_enable_handler_t *enable; /* enable device */ 203 mpt_ready_handler_t *ready; /* final open for business */ 204 mpt_event_handler_t *event; /* Handle MPI event. */ 205 mpt_reset_handler_t *reset; /* Re-init after reset. */ 206 mpt_shutdown_handler_t *shutdown; /* Shutdown instance. */ 207 mpt_detach_handler_t *detach; /* release device instance */ 208 mpt_unload_handler_t *unload; /* Shutdown personality */ 209 #define MPT_PERS_LAST_HANDLER(pers) (&(pers)->unload) 210 }; 211 212 int mpt_modevent(module_t, int, void *); 213 214 /* Maximum supported number of personalities. */ 215 #define MPT_MAX_PERSONALITIES (15) 216 217 #define MPT_PERSONALITY_DEPEND(name, dep, vmin, vpref, vmax) \ 218 MODULE_DEPEND(name, dep, vmin, vpref, vmax) 219 220 #define DECLARE_MPT_PERSONALITY(name, order) \ 221 static moduledata_t name##_mod = { \ 222 #name, mpt_modevent, &name##_personality \ 223 }; \ 224 DECLARE_MODULE(name, name##_mod, SI_SUB_DRIVERS, order); \ 225 MODULE_VERSION(name, 1); \ 226 MPT_PERSONALITY_DEPEND(name, mpt_core, 1, 1, 1) 227 228 /******************************* Bus DMA Support ******************************/ 229 /* XXX Need to update bus_dmamap_sync to take a range argument. */ 230 #define bus_dmamap_sync_range(dma_tag, dmamap, offset, len, op) \ 231 bus_dmamap_sync(dma_tag, dmamap, op) 232 233 #if __FreeBSD_version >= 501102 234 #define mpt_dma_tag_create(mpt, parent_tag, alignment, boundary, \ 235 lowaddr, highaddr, filter, filterarg, \ 236 maxsize, nsegments, maxsegsz, flags, \ 237 dma_tagp) \ 238 bus_dma_tag_create(parent_tag, alignment, boundary, \ 239 lowaddr, highaddr, filter, filterarg, \ 240 maxsize, nsegments, maxsegsz, flags, \ 241 busdma_lock_mutex, &Giant, \ 242 dma_tagp) 243 #else 244 #define mpt_dma_tag_create(mpt, parent_tag, alignment, boundary, \ 245 lowaddr, highaddr, filter, filterarg, \ 246 maxsize, nsegments, maxsegsz, flags, \ 247 dma_tagp) \ 248 bus_dma_tag_create(parent_tag, alignment, boundary, \ 249 lowaddr, highaddr, filter, filterarg, \ 250 maxsize, nsegments, maxsegsz, flags, \ 251 dma_tagp) 252 #endif 253 254 struct mpt_map_info { 255 struct mpt_softc *mpt; 256 int error; 257 uint32_t phys; 258 }; 259 260 void mpt_map_rquest(void *, bus_dma_segment_t *, int, int); 261 /* **************************** NewBUS interrupt Crock ************************/ 262 #if __FreeBSD_version < 700031 263 #define mpt_setup_intr(d, i, f, U, if, ifa, hp) \ 264 bus_setup_intr(d, i, f, if, ifa, hp) 265 #else 266 #define mpt_setup_intr bus_setup_intr 267 #endif 268 269 /**************************** Kernel Thread Support ***************************/ 270 #if __FreeBSD_version > 500005 271 #define mpt_kthread_create(func, farg, proc_ptr, flags, stackpgs, fmtstr, arg) \ 272 kthread_create(func, farg, proc_ptr, flags, stackpgs, fmtstr, arg) 273 #else 274 #define mpt_kthread_create(func, farg, proc_ptr, flags, stackpgs, fmtstr, arg) \ 275 kthread_create(func, farg, proc_ptr, fmtstr, arg) 276 #endif 277 278 /****************************** Timer Facilities ******************************/ 279 #if __FreeBSD_version > 500000 280 #define mpt_callout_init(c) callout_init(c, /*mpsafe*/0); 281 #else 282 #define mpt_callout_init(c) callout_init(c); 283 #endif 284 285 /********************************** Endianess *********************************/ 286 #define MPT_2_HOST64(ptr, tag) ptr->tag = le64toh(ptr->tag) 287 #define MPT_2_HOST32(ptr, tag) ptr->tag = le32toh(ptr->tag) 288 #define MPT_2_HOST16(ptr, tag) ptr->tag = le16toh(ptr->tag) 289 290 #define HOST_2_MPT64(ptr, tag) ptr->tag = htole64(ptr->tag) 291 #define HOST_2_MPT32(ptr, tag) ptr->tag = htole32(ptr->tag) 292 #define HOST_2_MPT16(ptr, tag) ptr->tag = htole16(ptr->tag) 293 294 #if _BYTE_ORDER == _BIG_ENDIAN 295 void mpt2host_sge_simple_union(SGE_SIMPLE_UNION *); 296 void mpt2host_iocfacts_reply(MSG_IOC_FACTS_REPLY *); 297 void mpt2host_portfacts_reply(MSG_PORT_FACTS_REPLY *); 298 void mpt2host_config_page_ioc2(CONFIG_PAGE_IOC_2 *); 299 void mpt2host_config_page_raid_vol_0(CONFIG_PAGE_RAID_VOL_0 *); 300 void mpt2host_mpi_raid_vol_indicator(MPI_RAID_VOL_INDICATOR *); 301 #else 302 #define mpt2host_sge_simple_union(x) do { ; } while (0) 303 #define mpt2host_iocfacts_reply(x) do { ; } while (0) 304 #define mpt2host_portfacts_reply(x) do { ; } while (0) 305 #define mpt2host_config_page_ioc2(x) do { ; } while (0) 306 #define mpt2host_config_page_raid_vol_0(x) do { ; } while (0) 307 #define mpt2host_mpi_raid_vol_indicator(x) do { ; } while (0) 308 #endif 309 310 /**************************** MPI Transaction State ***************************/ 311 typedef enum { 312 REQ_STATE_NIL = 0x00, 313 REQ_STATE_FREE = 0x01, 314 REQ_STATE_ALLOCATED = 0x02, 315 REQ_STATE_QUEUED = 0x04, 316 REQ_STATE_DONE = 0x08, 317 REQ_STATE_TIMEDOUT = 0x10, 318 REQ_STATE_NEED_WAKEUP = 0x20, 319 REQ_STATE_LOCKED = 0x80, /* can't be freed */ 320 REQ_STATE_MASK = 0xFF 321 } mpt_req_state_t; 322 323 struct req_entry { 324 TAILQ_ENTRY(req_entry) links; /* Pointer to next in list */ 325 mpt_req_state_t state; /* Request State Information */ 326 uint16_t index; /* Index of this entry */ 327 uint16_t IOCStatus; /* Completion status */ 328 uint16_t ResponseCode; /* TMF Reponse Code */ 329 uint16_t serno; /* serial number */ 330 union ccb *ccb; /* CAM request */ 331 void *req_vbuf; /* Virtual Address of Entry */ 332 void *sense_vbuf; /* Virtual Address of sense data */ 333 bus_addr_t req_pbuf; /* Physical Address of Entry */ 334 bus_addr_t sense_pbuf; /* Physical Address of sense data */ 335 bus_dmamap_t dmap; /* DMA map for data buffers */ 336 struct req_entry *chain; /* for SGE overallocations */ 337 }; 338 339 /**************************** MPI Target State Info ***************************/ 340 341 typedef struct { 342 uint32_t reply_desc; /* current reply descriptor */ 343 uint32_t resid; /* current data residual */ 344 uint32_t bytes_xfered; /* current relative offset */ 345 union ccb *ccb; /* pointer to currently active ccb */ 346 request_t *req; /* pointer to currently active assist request */ 347 uint32_t 348 is_local : 1, 349 nxfers : 31; 350 uint32_t tag_id; 351 enum { 352 TGT_STATE_NIL, 353 TGT_STATE_LOADING, 354 TGT_STATE_LOADED, 355 TGT_STATE_IN_CAM, 356 TGT_STATE_SETTING_UP_FOR_DATA, 357 TGT_STATE_MOVING_DATA, 358 TGT_STATE_MOVING_DATA_AND_STATUS, 359 TGT_STATE_SENDING_STATUS 360 } state; 361 } mpt_tgt_state_t; 362 363 /* 364 * When we get an incoming command it has its own tag which is called the 365 * IoIndex. This is the value we gave that particular command buffer when 366 * we originally assigned it. It's just a number, really. The FC card uses 367 * it as an RX_ID. We can use it to index into mpt->tgt_cmd_ptrs, which 368 * contains pointers the request_t structures related to that IoIndex. 369 * 370 * What *we* do is construct a tag out of the index for the target command 371 * which owns the incoming ATIO plus a rolling sequence number. 372 */ 373 #define MPT_MAKE_TAGID(mpt, req, ioindex) \ 374 ((ioindex << 18) | (((mpt->sequence++) & 0x3f) << 12) | (req->index & 0xfff)) 375 376 #ifdef INVARIANTS 377 #define MPT_TAG_2_REQ(a, b) mpt_tag_2_req(a, (uint32_t) b) 378 #else 379 #define MPT_TAG_2_REQ(mpt, tag) mpt->tgt_cmd_ptrs[tag >> 18] 380 #endif 381 382 #define MPT_TGT_STATE(mpt, req) ((mpt_tgt_state_t *) \ 383 (&((uint8_t *)req->req_vbuf)[MPT_RQSL(mpt) - sizeof (mpt_tgt_state_t)])) 384 385 STAILQ_HEAD(mpt_hdr_stailq, ccb_hdr); 386 #define MPT_MAX_LUNS 256 387 typedef struct { 388 struct mpt_hdr_stailq atios; 389 struct mpt_hdr_stailq inots; 390 int enabled; 391 } tgt_resource_t; 392 #define MPT_MAX_ELS 64 393 394 /**************************** Handler Registration ****************************/ 395 /* 396 * Global table of registered reply handlers. The 397 * handler is indicated by byte 3 of the request 398 * index submitted to the IOC. This allows the 399 * driver core to perform generic processing without 400 * any knowledge of per-personality behavior. 401 * 402 * MPT_NUM_REPLY_HANDLERS must be a power of 2 403 * to allow the easy generation of a mask. 404 * 405 * The handler offsets used by the core are hard coded 406 * allowing faster code generation when assigning a handler 407 * to a request. All "personalities" must use the 408 * the handler registration mechanism. 409 * 410 * The IOC handlers that are rarely executed are placed 411 * at the tail of the table to make it more likely that 412 * all commonly executed handlers fit in a single cache 413 * line. 414 */ 415 #define MPT_NUM_REPLY_HANDLERS (32) 416 #define MPT_REPLY_HANDLER_EVENTS MPT_CBI_TO_HID(0) 417 #define MPT_REPLY_HANDLER_CONFIG MPT_CBI_TO_HID(MPT_NUM_REPLY_HANDLERS-1) 418 #define MPT_REPLY_HANDLER_HANDSHAKE MPT_CBI_TO_HID(MPT_NUM_REPLY_HANDLERS-2) 419 typedef int mpt_reply_handler_t(struct mpt_softc *mpt, request_t *request, 420 uint32_t reply_desc, MSG_DEFAULT_REPLY *reply_frame); 421 typedef union { 422 mpt_reply_handler_t *reply_handler; 423 } mpt_handler_t; 424 425 typedef enum { 426 MPT_HANDLER_REPLY, 427 MPT_HANDLER_EVENT, 428 MPT_HANDLER_RESET, 429 MPT_HANDLER_SHUTDOWN 430 } mpt_handler_type; 431 432 struct mpt_handler_record 433 { 434 LIST_ENTRY(mpt_handler_record) links; 435 mpt_handler_t handler; 436 }; 437 438 LIST_HEAD(mpt_handler_list, mpt_handler_record); 439 440 /* 441 * The handler_id is currently unused but would contain the 442 * handler ID used in the MsgContext field to allow direction 443 * of replies to the handler. Registrations that don't require 444 * a handler id can pass in NULL for the handler_id. 445 * 446 * Deregistrations for handlers without a handler id should 447 * pass in MPT_HANDLER_ID_NONE. 448 */ 449 #define MPT_HANDLER_ID_NONE (0xFFFFFFFF) 450 int mpt_register_handler(struct mpt_softc *, mpt_handler_type, 451 mpt_handler_t, uint32_t *); 452 int mpt_deregister_handler(struct mpt_softc *, mpt_handler_type, 453 mpt_handler_t, uint32_t); 454 455 /******************* Per-Controller Instance Data Structures ******************/ 456 TAILQ_HEAD(req_queue, req_entry); 457 458 /* Structure for saving proper values for modifyable PCI config registers */ 459 struct mpt_pci_cfg { 460 uint16_t Command; 461 uint16_t LatencyTimer_LineSize; 462 uint32_t IO_BAR; 463 uint32_t Mem0_BAR[2]; 464 uint32_t Mem1_BAR[2]; 465 uint32_t ROM_BAR; 466 uint8_t IntLine; 467 uint32_t PMCSR; 468 }; 469 470 typedef enum { 471 MPT_RVF_NONE = 0x0, 472 MPT_RVF_ACTIVE = 0x1, 473 MPT_RVF_ANNOUNCED = 0x2, 474 MPT_RVF_UP2DATE = 0x4, 475 MPT_RVF_REFERENCED = 0x8, 476 MPT_RVF_WCE_CHANGED = 0x10 477 } mpt_raid_volume_flags; 478 479 struct mpt_raid_volume { 480 CONFIG_PAGE_RAID_VOL_0 *config_page; 481 MPI_RAID_VOL_INDICATOR sync_progress; 482 mpt_raid_volume_flags flags; 483 u_int quiesced_disks; 484 }; 485 486 typedef enum { 487 MPT_RDF_NONE = 0x00, 488 MPT_RDF_ACTIVE = 0x01, 489 MPT_RDF_ANNOUNCED = 0x02, 490 MPT_RDF_UP2DATE = 0x04, 491 MPT_RDF_REFERENCED = 0x08, 492 MPT_RDF_QUIESCING = 0x10, 493 MPT_RDF_QUIESCED = 0x20 494 } mpt_raid_disk_flags; 495 496 struct mpt_raid_disk { 497 CONFIG_PAGE_RAID_PHYS_DISK_0 config_page; 498 struct mpt_raid_volume *volume; 499 u_int member_number; 500 u_int pass_thru_active; 501 mpt_raid_disk_flags flags; 502 }; 503 504 struct mpt_evtf_record { 505 MSG_EVENT_NOTIFY_REPLY reply; 506 uint32_t context; 507 LIST_ENTRY(mpt_evtf_record) links; 508 }; 509 510 LIST_HEAD(mpt_evtf_list, mpt_evtf_record); 511 512 struct mpt_softc { 513 device_t dev; 514 #if __FreeBSD_version < 500000 515 uint32_t mpt_islocked; 516 int mpt_splsaved; 517 #else 518 struct mtx mpt_lock; 519 int mpt_locksetup; 520 #endif 521 uint32_t mpt_pers_mask; 522 uint32_t 523 : 8, 524 unit : 8, 525 ready : 1, 526 fw_uploaded : 1, 527 msi_enable : 1, 528 twildcard : 1, 529 tenabled : 1, 530 do_cfg_role : 1, 531 raid_enabled : 1, 532 raid_mwce_set : 1, 533 getreqwaiter : 1, 534 shutdwn_raid : 1, 535 shutdwn_recovery: 1, 536 outofbeer : 1, 537 disabled : 1, 538 is_spi : 1, 539 is_sas : 1, 540 is_fc : 1; 541 542 u_int cfg_role; 543 u_int role; /* role: none, ini, target, both */ 544 545 u_int verbose; 546 #ifdef MPT_TEST_MULTIPATH 547 int failure_id; 548 #endif 549 550 /* 551 * IOC Facts 552 */ 553 MSG_IOC_FACTS_REPLY ioc_facts; 554 555 /* 556 * Port Facts 557 */ 558 MSG_PORT_FACTS_REPLY * port_facts; 559 #define mpt_ini_id port_facts[0].PortSCSIID 560 #define mpt_max_tgtcmds port_facts[0].MaxPostedCmdBuffers 561 562 /* 563 * Device Configuration Information 564 */ 565 union { 566 struct mpt_spi_cfg { 567 CONFIG_PAGE_SCSI_PORT_0 _port_page0; 568 CONFIG_PAGE_SCSI_PORT_1 _port_page1; 569 CONFIG_PAGE_SCSI_PORT_2 _port_page2; 570 CONFIG_PAGE_SCSI_DEVICE_0 _dev_page0[16]; 571 CONFIG_PAGE_SCSI_DEVICE_1 _dev_page1[16]; 572 uint16_t _tag_enable; 573 uint16_t _disc_enable; 574 } spi; 575 #define mpt_port_page0 cfg.spi._port_page0 576 #define mpt_port_page1 cfg.spi._port_page1 577 #define mpt_port_page2 cfg.spi._port_page2 578 #define mpt_dev_page0 cfg.spi._dev_page0 579 #define mpt_dev_page1 cfg.spi._dev_page1 580 #define mpt_tag_enable cfg.spi._tag_enable 581 #define mpt_disc_enable cfg.spi._disc_enable 582 struct mpi_fc_cfg { 583 CONFIG_PAGE_FC_PORT_0 _port_page0; 584 uint32_t _port_speed; 585 #define mpt_fcport_page0 cfg.fc._port_page0 586 #define mpt_fcport_speed cfg.fc._port_speed 587 } fc; 588 } cfg; 589 #if __FreeBSD_version >= 500000 590 /* 591 * Device config information stored up for sysctl to access 592 */ 593 union { 594 struct { 595 unsigned int initiator_id; 596 } spi; 597 struct { 598 char wwnn[19]; 599 char wwpn[19]; 600 } fc; 601 } scinfo; 602 #endif 603 604 /* Controller Info for RAID information */ 605 CONFIG_PAGE_IOC_2 * ioc_page2; 606 CONFIG_PAGE_IOC_3 * ioc_page3; 607 608 /* Raid Data */ 609 struct mpt_raid_volume* raid_volumes; 610 struct mpt_raid_disk* raid_disks; 611 u_int raid_max_volumes; 612 u_int raid_max_disks; 613 u_int raid_page0_len; 614 u_int raid_wakeup; 615 u_int raid_rescan; 616 u_int raid_resync_rate; 617 u_int raid_mwce_setting; 618 u_int raid_queue_depth; 619 u_int raid_nonopt_volumes; 620 struct proc *raid_thread; 621 struct callout raid_timer; 622 623 /* 624 * PCI Hardware info 625 */ 626 int pci_msi_count; 627 struct resource * pci_irq; /* Interrupt map for chip */ 628 void * ih; /* Interupt handle */ 629 struct mpt_pci_cfg pci_cfg; /* saved PCI conf registers */ 630 631 /* 632 * DMA Mapping Stuff 633 */ 634 struct resource * pci_reg; /* Register map for chip */ 635 int pci_mem_rid; /* Resource ID */ 636 bus_space_tag_t pci_st; /* Bus tag for registers */ 637 bus_space_handle_t pci_sh; /* Bus handle for registers */ 638 /* PIO versions of above. */ 639 int pci_pio_rid; 640 struct resource * pci_pio_reg; 641 bus_space_tag_t pci_pio_st; 642 bus_space_handle_t pci_pio_sh; 643 644 bus_dma_tag_t parent_dmat; /* DMA tag for parent PCI bus */ 645 bus_dma_tag_t reply_dmat; /* DMA tag for reply memory */ 646 bus_dmamap_t reply_dmap; /* DMA map for reply memory */ 647 uint8_t *reply; /* KVA of reply memory */ 648 bus_addr_t reply_phys; /* BusAddr of reply memory */ 649 650 bus_dma_tag_t buffer_dmat; /* DMA tag for buffers */ 651 bus_dma_tag_t request_dmat; /* DMA tag for request memroy */ 652 bus_dmamap_t request_dmap; /* DMA map for request memroy */ 653 uint8_t *request; /* KVA of Request memory */ 654 bus_addr_t request_phys; /* BusAddr of request memory */ 655 656 uint32_t max_seg_cnt; /* calculated after IOC facts */ 657 658 /* 659 * Hardware management 660 */ 661 u_int reset_cnt; 662 663 /* 664 * CAM && Software Management 665 */ 666 request_t *request_pool; 667 struct req_queue request_free_list; 668 struct req_queue request_pending_list; 669 struct req_queue request_timeout_list; 670 671 672 struct cam_sim *sim; 673 struct cam_path *path; 674 675 struct cam_sim *phydisk_sim; 676 struct cam_path *phydisk_path; 677 678 struct proc *recovery_thread; 679 request_t *tmf_req; 680 681 /* 682 * Deferred frame acks due to resource shortage. 683 */ 684 struct mpt_evtf_list ack_frames; 685 686 /* 687 * Target Mode Support 688 */ 689 uint32_t scsi_tgt_handler_id; 690 request_t ** tgt_cmd_ptrs; 691 request_t ** els_cmd_ptrs; /* FC only */ 692 693 /* 694 * *snork*- this is chosen to be here *just in case* somebody 695 * forgets to point to it exactly and we index off of trt with 696 * CAM_LUN_WILDCARD. 697 */ 698 tgt_resource_t trt_wildcard; /* wildcard luns */ 699 tgt_resource_t trt[MPT_MAX_LUNS]; 700 uint16_t tgt_cmds_allocated; 701 uint16_t els_cmds_allocated; /* FC only */ 702 703 uint16_t timeouts; /* timeout count */ 704 uint16_t success; /* successes afer timeout */ 705 uint16_t sequence; /* Sequence Number */ 706 uint16_t pad3; 707 708 709 /* Paired port in some dual adapters configurations */ 710 struct mpt_softc * mpt2; 711 712 /* FW Image management */ 713 uint32_t fw_image_size; 714 uint8_t *fw_image; 715 bus_dma_tag_t fw_dmat; /* DMA tag for firmware image */ 716 bus_dmamap_t fw_dmap; /* DMA map for firmware image */ 717 bus_addr_t fw_phys; /* BusAddr of firmware image */ 718 719 /* Shutdown Event Handler. */ 720 eventhandler_tag eh; 721 722 TAILQ_ENTRY(mpt_softc) links; 723 }; 724 725 static __inline void mpt_assign_serno(struct mpt_softc *, request_t *); 726 727 static __inline void 728 mpt_assign_serno(struct mpt_softc *mpt, request_t *req) 729 { 730 if ((req->serno = mpt->sequence++) == 0) { 731 req->serno = mpt->sequence++; 732 } 733 } 734 735 /***************************** Locking Primitives *****************************/ 736 #if __FreeBSD_version < 500000 737 #define MPT_IFLAGS INTR_TYPE_CAM 738 #define MPT_LOCK(mpt) mpt_lockspl(mpt) 739 #define MPT_UNLOCK(mpt) mpt_unlockspl(mpt) 740 #define MPT_OWNED(mpt) mpt->mpt_islocked 741 #define MPTLOCK_2_CAMLOCK MPT_UNLOCK 742 #define CAMLOCK_2_MPTLOCK MPT_LOCK 743 #define MPT_LOCK_SETUP(mpt) 744 #define MPT_LOCK_DESTROY(mpt) 745 746 static __inline void mpt_lockspl(struct mpt_softc *mpt); 747 static __inline void mpt_unlockspl(struct mpt_softc *mpt); 748 749 static __inline void 750 mpt_lockspl(struct mpt_softc *mpt) 751 { 752 int s; 753 754 s = splcam(); 755 if (mpt->mpt_islocked++ == 0) { 756 mpt->mpt_splsaved = s; 757 } else { 758 splx(s); 759 panic("Recursed lock with mask: 0x%x\n", s); 760 } 761 } 762 763 static __inline void 764 mpt_unlockspl(struct mpt_softc *mpt) 765 { 766 if (mpt->mpt_islocked) { 767 if (--mpt->mpt_islocked == 0) { 768 splx(mpt->mpt_splsaved); 769 } 770 } else 771 panic("Negative lock count\n"); 772 } 773 774 static __inline int 775 mpt_sleep(struct mpt_softc *mpt, void *ident, int priority, 776 const char *wmesg, int timo) 777 { 778 int saved_cnt; 779 int saved_spl; 780 int error; 781 782 KASSERT(mpt->mpt_islocked <= 1, ("Invalid lock count on tsleep")); 783 saved_cnt = mpt->mpt_islocked; 784 saved_spl = mpt->mpt_splsaved; 785 mpt->mpt_islocked = 0; 786 error = tsleep(ident, priority, wmesg, timo); 787 KASSERT(mpt->mpt_islocked == 0, ("Invalid lock count on wakeup")); 788 mpt->mpt_islocked = saved_cnt; 789 mpt->mpt_splsaved = saved_spl; 790 return (error); 791 } 792 793 #else 794 #ifdef LOCKING_WORKED_AS_IT_SHOULD 795 #error "Shouldn't Be Here!" 796 #define MPT_IFLAGS INTR_TYPE_CAM | INTR_ENTROPY | INTR_MPSAFE 797 #define MPT_LOCK_SETUP(mpt) \ 798 mtx_init(&mpt->mpt_lock, "mpt", NULL, MTX_DEF); \ 799 mpt->mpt_locksetup = 1 800 #define MPT_LOCK_DESTROY(mpt) \ 801 if (mpt->mpt_locksetup) { \ 802 mtx_destroy(&mpt->mpt_lock); \ 803 mpt->mpt_locksetup = 0; \ 804 } 805 806 #define MPT_LOCK(mpt) mtx_lock(&(mpt)->mpt_lock) 807 #define MPT_UNLOCK(mpt) mtx_unlock(&(mpt)->mpt_lock) 808 #define MPT_OWNED(mpt) mtx_owned(&(mpt)->mpt_lock) 809 #define MPTLOCK_2_CAMLOCK(mpt) \ 810 mtx_unlock(&(mpt)->mpt_lock); mtx_lock(&Giant) 811 #define CAMLOCK_2_MPTLOCK(mpt) \ 812 mtx_unlock(&Giant); mtx_lock(&(mpt)->mpt_lock) 813 #define mpt_sleep(mpt, ident, priority, wmesg, timo) \ 814 msleep(ident, &(mpt)->mpt_lock, priority, wmesg, timo) 815 816 #else 817 818 #define MPT_IFLAGS INTR_TYPE_CAM | INTR_ENTROPY 819 #define MPT_LOCK_SETUP(mpt) do { } while (0) 820 #define MPT_LOCK_DESTROY(mpt) do { } while (0) 821 #if 0 822 #define MPT_LOCK(mpt) \ 823 device_printf(mpt->dev, "LOCK %s:%d\n", __FILE__, __LINE__); \ 824 KASSERT(mpt->mpt_locksetup == 0, \ 825 ("recursive lock acquire at %s:%d", __FILE__, __LINE__)); \ 826 mpt->mpt_locksetup = 1 827 #define MPT_UNLOCK(mpt) \ 828 device_printf(mpt->dev, "UNLK %s:%d\n", __FILE__, __LINE__); \ 829 KASSERT(mpt->mpt_locksetup == 1, \ 830 ("release unowned lock at %s:%d", __FILE__, __LINE__)); \ 831 mpt->mpt_locksetup = 0 832 #else 833 #define MPT_LOCK(mpt) \ 834 KASSERT(mpt->mpt_locksetup == 0, \ 835 ("recursive lock acquire at %s:%d", __FILE__, __LINE__)); \ 836 mpt->mpt_locksetup = 1 837 #define MPT_UNLOCK(mpt) \ 838 KASSERT(mpt->mpt_locksetup == 1, \ 839 ("release unowned lock at %s:%d", __FILE__, __LINE__)); \ 840 mpt->mpt_locksetup = 0 841 #endif 842 #define MPT_OWNED(mpt) mpt->mpt_locksetup 843 #define MPTLOCK_2_CAMLOCK(mpt) MPT_UNLOCK(mpt) 844 #define CAMLOCK_2_MPTLOCK(mpt) MPT_LOCK(mpt) 845 846 static __inline int 847 mpt_sleep(struct mpt_softc *, void *, int, const char *, int); 848 849 static __inline int 850 mpt_sleep(struct mpt_softc *mpt, void *i, int p, const char *w, int t) 851 { 852 int r; 853 MPT_UNLOCK(mpt); 854 r = tsleep(i, p, w, t); 855 MPT_LOCK(mpt); 856 return (r); 857 } 858 #endif 859 #endif 860 861 /******************************* Register Access ******************************/ 862 static __inline void mpt_write(struct mpt_softc *, size_t, uint32_t); 863 static __inline uint32_t mpt_read(struct mpt_softc *, int); 864 static __inline void mpt_pio_write(struct mpt_softc *, size_t, uint32_t); 865 static __inline uint32_t mpt_pio_read(struct mpt_softc *, int); 866 867 static __inline void 868 mpt_write(struct mpt_softc *mpt, size_t offset, uint32_t val) 869 { 870 bus_space_write_4(mpt->pci_st, mpt->pci_sh, offset, val); 871 } 872 873 static __inline uint32_t 874 mpt_read(struct mpt_softc *mpt, int offset) 875 { 876 return (bus_space_read_4(mpt->pci_st, mpt->pci_sh, offset)); 877 } 878 879 /* 880 * Some operations (e.g. diagnostic register writes while the ARM proccessor 881 * is disabled), must be performed using "PCI pio" operations. On non-PCI 882 * busses, these operations likely map to normal register accesses. 883 */ 884 static __inline void 885 mpt_pio_write(struct mpt_softc *mpt, size_t offset, uint32_t val) 886 { 887 bus_space_write_4(mpt->pci_pio_st, mpt->pci_pio_sh, offset, val); 888 } 889 890 static __inline uint32_t 891 mpt_pio_read(struct mpt_softc *mpt, int offset) 892 { 893 return (bus_space_read_4(mpt->pci_pio_st, mpt->pci_pio_sh, offset)); 894 } 895 /*********************** Reply Frame/Request Management ***********************/ 896 /* Max MPT Reply we are willing to accept (must be power of 2) */ 897 #define MPT_REPLY_SIZE 256 898 899 /* 900 * Must be less than 16384 in order for target mode to work 901 */ 902 #define MPT_MAX_REQUESTS(mpt) 512 903 #define MPT_REQUEST_AREA 512 904 #define MPT_SENSE_SIZE 32 /* included in MPT_REQUEST_AREA */ 905 #define MPT_REQ_MEM_SIZE(mpt) (MPT_MAX_REQUESTS(mpt) * MPT_REQUEST_AREA) 906 907 #define MPT_CONTEXT_CB_SHIFT (16) 908 #define MPT_CBI(handle) (handle >> MPT_CONTEXT_CB_SHIFT) 909 #define MPT_CBI_TO_HID(cbi) ((cbi) << MPT_CONTEXT_CB_SHIFT) 910 #define MPT_CONTEXT_TO_CBI(x) \ 911 (((x) >> MPT_CONTEXT_CB_SHIFT) & (MPT_NUM_REPLY_HANDLERS - 1)) 912 #define MPT_CONTEXT_REQI_MASK 0xFFFF 913 #define MPT_CONTEXT_TO_REQI(x) ((x) & MPT_CONTEXT_REQI_MASK) 914 915 /* 916 * Convert a 32bit physical address returned from IOC to an 917 * offset into our reply frame memory or the kvm address needed 918 * to access the data. The returned address is only the low 919 * 32 bits, so mask our base physical address accordingly. 920 */ 921 #define MPT_REPLY_BADDR(x) \ 922 (x << 1) 923 #define MPT_REPLY_OTOV(m, i) \ 924 ((void *)(&m->reply[i])) 925 926 #define MPT_DUMP_REPLY_FRAME(mpt, reply_frame) \ 927 do { \ 928 if (mpt->verbose > MPT_PRT_DEBUG) \ 929 mpt_dump_reply_frame(mpt, reply_frame); \ 930 } while(0) 931 932 static __inline uint32_t mpt_pop_reply_queue(struct mpt_softc *mpt); 933 static __inline void mpt_free_reply(struct mpt_softc *mpt, uint32_t ptr); 934 935 /* 936 * Give the reply buffer back to the IOC after we have 937 * finished processing it. 938 */ 939 static __inline void 940 mpt_free_reply(struct mpt_softc *mpt, uint32_t ptr) 941 { 942 mpt_write(mpt, MPT_OFFSET_REPLY_Q, ptr); 943 } 944 945 /* Get a reply from the IOC */ 946 static __inline uint32_t 947 mpt_pop_reply_queue(struct mpt_softc *mpt) 948 { 949 return mpt_read(mpt, MPT_OFFSET_REPLY_Q); 950 } 951 952 void 953 mpt_complete_request_chain(struct mpt_softc *, struct req_queue *, u_int); 954 955 /************************** Scatter Gather Managment **************************/ 956 /* MPT_RQSL- size of request frame, in bytes */ 957 #define MPT_RQSL(mpt) (mpt->ioc_facts.RequestFrameSize << 2) 958 959 /* MPT_NSGL- how many SG entries can fit in a request frame size */ 960 #define MPT_NSGL(mpt) (MPT_RQSL(mpt) / sizeof (SGE_IO_UNION)) 961 962 /* MPT_NRFM- how many request frames can fit in each request alloc we make */ 963 #define MPT_NRFM(mpt) (MPT_REQUEST_AREA / MPT_RQSL(mpt)) 964 965 /* 966 * MPT_NSGL_FIRST- # of SG elements that can fit after 967 * an I/O request but still within the request frame. 968 * Do this safely based upon SGE_IO_UNION. 969 * 970 * Note that the first element is *within* the SCSI request. 971 */ 972 #define MPT_NSGL_FIRST(mpt) \ 973 ((MPT_RQSL(mpt) - sizeof (MSG_SCSI_IO_REQUEST) + sizeof (SGE_IO_UNION)) / \ 974 sizeof (SGE_IO_UNION)) 975 976 /***************************** IOC Initialization *****************************/ 977 int mpt_reset(struct mpt_softc *, int /*reinit*/); 978 979 /****************************** Debugging ************************************/ 980 typedef struct mpt_decode_entry { 981 char *name; 982 u_int value; 983 u_int mask; 984 } mpt_decode_entry_t; 985 986 int mpt_decode_value(mpt_decode_entry_t *table, u_int num_entries, 987 const char *name, u_int value, u_int *cur_column, 988 u_int wrap_point); 989 990 void mpt_dump_data(struct mpt_softc *, const char *, void *, int); 991 void mpt_dump_request(struct mpt_softc *, request_t *); 992 993 enum { 994 MPT_PRT_ALWAYS, 995 MPT_PRT_FATAL, 996 MPT_PRT_ERROR, 997 MPT_PRT_WARN, 998 MPT_PRT_INFO, 999 MPT_PRT_NEGOTIATION, 1000 MPT_PRT_DEBUG, 1001 MPT_PRT_DEBUG1, 1002 MPT_PRT_DEBUG2, 1003 MPT_PRT_DEBUG3, 1004 MPT_PRT_TRACE, 1005 MPT_PRT_NONE=100 1006 }; 1007 1008 #if __FreeBSD_version > 500000 1009 #define mpt_lprt(mpt, level, ...) \ 1010 do { \ 1011 if (level <= (mpt)->verbose) \ 1012 mpt_prt(mpt, __VA_ARGS__); \ 1013 } while (0) 1014 1015 #define mpt_lprtc(mpt, level, ...) \ 1016 do { \ 1017 if (level <= (mpt)->debug_level) \ 1018 mpt_prtc(mpt, __VA_ARGS__); \ 1019 } while (0) 1020 #else 1021 void mpt_lprt(struct mpt_softc *, int, const char *, ...) 1022 __printflike(3, 4); 1023 void mpt_lprtc(struct mpt_softc *, int, const char *, ...) 1024 __printflike(3, 4); 1025 #endif 1026 void mpt_prt(struct mpt_softc *, const char *, ...) 1027 __printflike(2, 3); 1028 void mpt_prtc(struct mpt_softc *, const char *, ...) 1029 __printflike(2, 3); 1030 1031 /**************************** Target Mode Related ***************************/ 1032 static __inline int mpt_cdblen(uint8_t, int); 1033 static __inline int 1034 mpt_cdblen(uint8_t cdb0, int maxlen) 1035 { 1036 int group = cdb0 >> 5; 1037 switch (group) { 1038 case 0: 1039 return (6); 1040 case 1: 1041 return (10); 1042 case 4: 1043 case 5: 1044 return (12); 1045 default: 1046 return (16); 1047 } 1048 } 1049 #ifdef INVARIANTS 1050 static __inline request_t * mpt_tag_2_req(struct mpt_softc *, uint32_t); 1051 static __inline request_t * 1052 mpt_tag_2_req(struct mpt_softc *mpt, uint32_t tag) 1053 { 1054 uint16_t rtg = (tag >> 18); 1055 KASSERT(rtg < mpt->tgt_cmds_allocated, ("bad tag %d\n", tag)); 1056 KASSERT(mpt->tgt_cmd_ptrs, ("no cmd backpointer array")); 1057 KASSERT(mpt->tgt_cmd_ptrs[rtg], ("no cmd backpointer")); 1058 return (mpt->tgt_cmd_ptrs[rtg]); 1059 } 1060 1061 1062 static __inline int 1063 mpt_req_on_free_list(struct mpt_softc *, request_t *); 1064 static __inline int 1065 mpt_req_on_pending_list(struct mpt_softc *, request_t *); 1066 1067 static __inline void 1068 mpt_req_spcl(struct mpt_softc *, request_t *, const char *, int); 1069 static __inline void 1070 mpt_req_not_spcl(struct mpt_softc *, request_t *, const char *, int); 1071 1072 1073 /* 1074 * Is request on freelist? 1075 */ 1076 static __inline int 1077 mpt_req_on_free_list(struct mpt_softc *mpt, request_t *req) 1078 { 1079 request_t *lrq; 1080 1081 TAILQ_FOREACH(lrq, &mpt->request_free_list, links) { 1082 if (lrq == req) { 1083 return (1); 1084 } 1085 } 1086 return (0); 1087 } 1088 1089 /* 1090 * Is request on pending list? 1091 */ 1092 static __inline int 1093 mpt_req_on_pending_list(struct mpt_softc *mpt, request_t *req) 1094 { 1095 request_t *lrq; 1096 1097 TAILQ_FOREACH(lrq, &mpt->request_pending_list, links) { 1098 if (lrq == req) { 1099 return (1); 1100 } 1101 } 1102 return (0); 1103 } 1104 1105 /* 1106 * Make sure that req *is* part of one of the special lists 1107 */ 1108 static __inline void 1109 mpt_req_spcl(struct mpt_softc *mpt, request_t *req, const char *s, int line) 1110 { 1111 int i; 1112 for (i = 0; i < mpt->els_cmds_allocated; i++) { 1113 if (req == mpt->els_cmd_ptrs[i]) { 1114 return; 1115 } 1116 } 1117 for (i = 0; i < mpt->tgt_cmds_allocated; i++) { 1118 if (req == mpt->tgt_cmd_ptrs[i]) { 1119 return; 1120 } 1121 } 1122 panic("%s(%d): req %p:%u function %x not in els or tgt ptrs\n", 1123 s, line, req, req->serno, 1124 ((PTR_MSG_REQUEST_HEADER)req->req_vbuf)->Function); 1125 } 1126 1127 /* 1128 * Make sure that req is *not* part of one of the special lists. 1129 */ 1130 static __inline void 1131 mpt_req_not_spcl(struct mpt_softc *mpt, request_t *req, const char *s, int line) 1132 { 1133 int i; 1134 for (i = 0; i < mpt->els_cmds_allocated; i++) { 1135 KASSERT(req != mpt->els_cmd_ptrs[i], 1136 ("%s(%d): req %p:%u func %x in els ptrs at ioindex %d\n", 1137 s, line, req, req->serno, 1138 ((PTR_MSG_REQUEST_HEADER)req->req_vbuf)->Function, i)); 1139 } 1140 for (i = 0; i < mpt->tgt_cmds_allocated; i++) { 1141 KASSERT(req != mpt->tgt_cmd_ptrs[i], 1142 ("%s(%d): req %p:%u func %x in tgt ptrs at ioindex %d\n", 1143 s, line, req, req->serno, 1144 ((PTR_MSG_REQUEST_HEADER)req->req_vbuf)->Function, i)); 1145 } 1146 } 1147 #endif 1148 1149 /* 1150 * Task Management Types, purely for internal consumption 1151 */ 1152 typedef enum { 1153 MPT_ABORT_TASK_SET=1234, 1154 MPT_CLEAR_TASK_SET, 1155 MPT_TARGET_RESET, 1156 MPT_CLEAR_ACA, 1157 MPT_TERMINATE_TASK, 1158 MPT_NIL_TMT_VALUE=5678 1159 } mpt_task_mgmt_t; 1160 1161 /**************************** Unclassified Routines ***************************/ 1162 void mpt_send_cmd(struct mpt_softc *mpt, request_t *req); 1163 int mpt_recv_handshake_reply(struct mpt_softc *mpt, 1164 size_t reply_len, void *reply); 1165 int mpt_wait_req(struct mpt_softc *mpt, request_t *req, 1166 mpt_req_state_t state, mpt_req_state_t mask, 1167 int sleep_ok, int time_ms); 1168 void mpt_enable_ints(struct mpt_softc *mpt); 1169 void mpt_disable_ints(struct mpt_softc *mpt); 1170 int mpt_attach(struct mpt_softc *mpt); 1171 int mpt_shutdown(struct mpt_softc *mpt); 1172 int mpt_detach(struct mpt_softc *mpt); 1173 int mpt_send_handshake_cmd(struct mpt_softc *mpt, 1174 size_t len, void *cmd); 1175 request_t * mpt_get_request(struct mpt_softc *mpt, int sleep_ok); 1176 void mpt_free_request(struct mpt_softc *mpt, request_t *req); 1177 void mpt_intr(void *arg); 1178 void mpt_check_doorbell(struct mpt_softc *mpt); 1179 void mpt_dump_reply_frame(struct mpt_softc *mpt, 1180 MSG_DEFAULT_REPLY *reply_frame); 1181 1182 void mpt_set_config_regs(struct mpt_softc *); 1183 int mpt_issue_cfg_req(struct mpt_softc */*mpt*/, request_t */*req*/, 1184 u_int /*Action*/, u_int /*PageVersion*/, 1185 u_int /*PageLength*/, u_int /*PageNumber*/, 1186 u_int /*PageType*/, uint32_t /*PageAddress*/, 1187 bus_addr_t /*addr*/, bus_size_t/*len*/, 1188 int /*sleep_ok*/, int /*timeout_ms*/); 1189 int mpt_read_cfg_header(struct mpt_softc *, int /*PageType*/, 1190 int /*PageNumber*/, 1191 uint32_t /*PageAddress*/, 1192 CONFIG_PAGE_HEADER *, 1193 int /*sleep_ok*/, int /*timeout_ms*/); 1194 int mpt_read_cfg_page(struct mpt_softc *t, int /*Action*/, 1195 uint32_t /*PageAddress*/, 1196 CONFIG_PAGE_HEADER *, size_t /*len*/, 1197 int /*sleep_ok*/, int /*timeout_ms*/); 1198 int mpt_write_cfg_page(struct mpt_softc *, int /*Action*/, 1199 uint32_t /*PageAddress*/, 1200 CONFIG_PAGE_HEADER *, size_t /*len*/, 1201 int /*sleep_ok*/, int /*timeout_ms*/); 1202 static __inline int 1203 mpt_read_cur_cfg_page(struct mpt_softc *mpt, uint32_t PageAddress, 1204 CONFIG_PAGE_HEADER *hdr, size_t len, 1205 int sleep_ok, int timeout_ms) 1206 { 1207 return (mpt_read_cfg_page(mpt, MPI_CONFIG_ACTION_PAGE_READ_CURRENT, 1208 PageAddress, hdr, len, sleep_ok, timeout_ms)); 1209 } 1210 1211 static __inline int 1212 mpt_write_cur_cfg_page(struct mpt_softc *mpt, uint32_t PageAddress, 1213 CONFIG_PAGE_HEADER *hdr, size_t len, int sleep_ok, 1214 int timeout_ms) 1215 { 1216 return (mpt_write_cfg_page(mpt, MPI_CONFIG_ACTION_PAGE_WRITE_CURRENT, 1217 PageAddress, hdr, len, sleep_ok, 1218 timeout_ms)); 1219 } 1220 /* mpt_debug.c functions */ 1221 void mpt_print_reply(void *vmsg); 1222 void mpt_print_db(uint32_t mb); 1223 void mpt_print_config_reply(void *vmsg); 1224 char *mpt_ioc_diag(uint32_t diag); 1225 void mpt_req_state(mpt_req_state_t state); 1226 void mpt_print_config_request(void *vmsg); 1227 void mpt_print_request(void *vmsg); 1228 void mpt_print_scsi_io_request(MSG_SCSI_IO_REQUEST *msg); 1229 void mpt_dump_sgl(SGE_IO_UNION *se, int offset); 1230 #endif /* _MPT_H_ */ 1231