135863739SMike Smith /*- 235863739SMike Smith * Copyright (c) 2000 Michael Smith 3c6eafcf2SScott Long * Copyright (c) 2001 Scott Long 435863739SMike Smith * Copyright (c) 2000 BSDi 5c6eafcf2SScott Long * Copyright (c) 2001 Adaptec, Inc. 635863739SMike Smith * All rights reserved. 735863739SMike Smith * 835863739SMike Smith * Redistribution and use in source and binary forms, with or without 935863739SMike Smith * modification, are permitted provided that the following conditions 1035863739SMike Smith * are met: 1135863739SMike Smith * 1. Redistributions of source code must retain the above copyright 1235863739SMike Smith * notice, this list of conditions and the following disclaimer. 1335863739SMike Smith * 2. Redistributions in binary form must reproduce the above copyright 1435863739SMike Smith * notice, this list of conditions and the following disclaimer in the 1535863739SMike Smith * documentation and/or other materials provided with the distribution. 1635863739SMike Smith * 1735863739SMike Smith * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 1835863739SMike Smith * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 1935863739SMike Smith * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 2035863739SMike Smith * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 2135863739SMike Smith * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 2235863739SMike Smith * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 2335863739SMike Smith * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 2435863739SMike Smith * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 2535863739SMike Smith * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 2635863739SMike Smith * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 2735863739SMike Smith * SUCH DAMAGE. 2835863739SMike Smith * 2935863739SMike Smith * $FreeBSD$ 3035863739SMike Smith */ 3135863739SMike Smith 3235863739SMike Smith /* 3335863739SMike Smith * Driver for the Adaptec 'FSA' family of PCI/SCSI RAID adapters. 3435863739SMike Smith */ 3535863739SMike Smith 36f6c4dd3fSScott Long #include "opt_aac.h" 37f6c4dd3fSScott Long 3836e0bf6eSScott Long /* #include <stddef.h> */ 3935863739SMike Smith #include <sys/param.h> 4035863739SMike Smith #include <sys/systm.h> 4135863739SMike Smith #include <sys/malloc.h> 4235863739SMike Smith #include <sys/kernel.h> 4336e0bf6eSScott Long #include <sys/kthread.h> 443d04a9d7SScott Long #include <sys/sysctl.h> 45b3457b51SScott Long #include <sys/poll.h> 46891619a6SPoul-Henning Kamp #include <sys/ioccom.h> 4735863739SMike Smith 4835863739SMike Smith #include <sys/bus.h> 4935863739SMike Smith #include <sys/conf.h> 5035863739SMike Smith #include <sys/signalvar.h> 510b94a66eSMike Smith #include <sys/time.h> 5236e0bf6eSScott Long #include <sys/eventhandler.h> 5335863739SMike Smith 5435863739SMike Smith #include <machine/bus_memio.h> 5535863739SMike Smith #include <machine/bus.h> 5635863739SMike Smith #include <machine/resource.h> 5735863739SMike Smith 5835863739SMike Smith #include <dev/aac/aacreg.h> 590b94a66eSMike Smith #include <dev/aac/aac_ioctl.h> 6035863739SMike Smith #include <dev/aac/aacvar.h> 6135863739SMike Smith #include <dev/aac/aac_tables.h> 6235863739SMike Smith 6335863739SMike Smith static void aac_startup(void *arg); 64914da7d0SScott Long static void aac_add_container(struct aac_softc *sc, 65cbfd045bSScott Long struct aac_mntinforesp *mir, int f); 66fe3cb0e1SScott Long static void aac_get_bus_info(struct aac_softc *sc); 6735863739SMike Smith 6835863739SMike Smith /* Command Processing */ 690b94a66eSMike Smith static void aac_timeout(struct aac_softc *sc); 70cd481291SScott Long static int aac_map_command(struct aac_command *cm); 7135863739SMike Smith static void aac_complete(void *context, int pending); 7235863739SMike Smith static int aac_bio_command(struct aac_softc *sc, struct aac_command **cmp); 7335863739SMike Smith static void aac_bio_complete(struct aac_command *cm); 7435863739SMike Smith static int aac_wait_command(struct aac_command *cm, int timeout); 7570545d1aSScott Long static void aac_command_thread(struct aac_softc *sc); 7635863739SMike Smith 7735863739SMike Smith /* Command Buffer Management */ 78cd481291SScott Long static void aac_map_command_sg(void *arg, bus_dma_segment_t *segs, 79cd481291SScott Long int nseg, int error); 80c6eafcf2SScott Long static void aac_map_command_helper(void *arg, bus_dma_segment_t *segs, 81c6eafcf2SScott Long int nseg, int error); 820b94a66eSMike Smith static int aac_alloc_commands(struct aac_softc *sc); 838480cc63SScott Long static void aac_free_commands(struct aac_softc *sc); 8435863739SMike Smith static void aac_unmap_command(struct aac_command *cm); 8535863739SMike Smith 8635863739SMike Smith /* Hardware Interface */ 87c6eafcf2SScott Long static void aac_common_map(void *arg, bus_dma_segment_t *segs, int nseg, 88c6eafcf2SScott Long int error); 89fe94b852SScott Long static int aac_check_firmware(struct aac_softc *sc); 9035863739SMike Smith static int aac_init(struct aac_softc *sc); 9135863739SMike Smith static int aac_sync_command(struct aac_softc *sc, u_int32_t command, 92c6eafcf2SScott Long u_int32_t arg0, u_int32_t arg1, u_int32_t arg2, 93c6eafcf2SScott Long u_int32_t arg3, u_int32_t *sp); 94c6eafcf2SScott Long static int aac_enqueue_fib(struct aac_softc *sc, int queue, 95f6c4dd3fSScott Long struct aac_command *cm); 96c6eafcf2SScott Long static int aac_dequeue_fib(struct aac_softc *sc, int queue, 97914da7d0SScott Long u_int32_t *fib_size, struct aac_fib **fib_addr); 9836e0bf6eSScott Long static int aac_enqueue_response(struct aac_softc *sc, int queue, 9936e0bf6eSScott Long struct aac_fib *fib); 10035863739SMike Smith 101b3457b51SScott Long /* Falcon/PPC interface */ 102b3457b51SScott Long static int aac_fa_get_fwstatus(struct aac_softc *sc); 103b3457b51SScott Long static void aac_fa_qnotify(struct aac_softc *sc, int qbit); 104b3457b51SScott Long static int aac_fa_get_istatus(struct aac_softc *sc); 105b3457b51SScott Long static void aac_fa_clear_istatus(struct aac_softc *sc, int mask); 106b3457b51SScott Long static void aac_fa_set_mailbox(struct aac_softc *sc, u_int32_t command, 107b3457b51SScott Long u_int32_t arg0, u_int32_t arg1, 108b3457b51SScott Long u_int32_t arg2, u_int32_t arg3); 109a6d35632SScott Long static int aac_fa_get_mailbox(struct aac_softc *sc, int mb); 110b3457b51SScott Long static void aac_fa_set_interrupts(struct aac_softc *sc, int enable); 111b3457b51SScott Long 112b3457b51SScott Long struct aac_interface aac_fa_interface = { 113b3457b51SScott Long aac_fa_get_fwstatus, 114b3457b51SScott Long aac_fa_qnotify, 115b3457b51SScott Long aac_fa_get_istatus, 116b3457b51SScott Long aac_fa_clear_istatus, 117b3457b51SScott Long aac_fa_set_mailbox, 118a6d35632SScott Long aac_fa_get_mailbox, 119b3457b51SScott Long aac_fa_set_interrupts 120b3457b51SScott Long }; 121b3457b51SScott Long 12235863739SMike Smith /* StrongARM interface */ 12335863739SMike Smith static int aac_sa_get_fwstatus(struct aac_softc *sc); 12435863739SMike Smith static void aac_sa_qnotify(struct aac_softc *sc, int qbit); 12535863739SMike Smith static int aac_sa_get_istatus(struct aac_softc *sc); 12635863739SMike Smith static void aac_sa_clear_istatus(struct aac_softc *sc, int mask); 12735863739SMike Smith static void aac_sa_set_mailbox(struct aac_softc *sc, u_int32_t command, 128c6eafcf2SScott Long u_int32_t arg0, u_int32_t arg1, 129c6eafcf2SScott Long u_int32_t arg2, u_int32_t arg3); 130a6d35632SScott Long static int aac_sa_get_mailbox(struct aac_softc *sc, int mb); 13135863739SMike Smith static void aac_sa_set_interrupts(struct aac_softc *sc, int enable); 13235863739SMike Smith 13335863739SMike Smith struct aac_interface aac_sa_interface = { 13435863739SMike Smith aac_sa_get_fwstatus, 13535863739SMike Smith aac_sa_qnotify, 13635863739SMike Smith aac_sa_get_istatus, 13735863739SMike Smith aac_sa_clear_istatus, 13835863739SMike Smith aac_sa_set_mailbox, 139a6d35632SScott Long aac_sa_get_mailbox, 14035863739SMike Smith aac_sa_set_interrupts 14135863739SMike Smith }; 14235863739SMike Smith 14335863739SMike Smith /* i960Rx interface */ 14435863739SMike Smith static int aac_rx_get_fwstatus(struct aac_softc *sc); 14535863739SMike Smith static void aac_rx_qnotify(struct aac_softc *sc, int qbit); 14635863739SMike Smith static int aac_rx_get_istatus(struct aac_softc *sc); 14735863739SMike Smith static void aac_rx_clear_istatus(struct aac_softc *sc, int mask); 14835863739SMike Smith static void aac_rx_set_mailbox(struct aac_softc *sc, u_int32_t command, 149c6eafcf2SScott Long u_int32_t arg0, u_int32_t arg1, 150c6eafcf2SScott Long u_int32_t arg2, u_int32_t arg3); 151a6d35632SScott Long static int aac_rx_get_mailbox(struct aac_softc *sc, int mb); 15235863739SMike Smith static void aac_rx_set_interrupts(struct aac_softc *sc, int enable); 15335863739SMike Smith 15435863739SMike Smith struct aac_interface aac_rx_interface = { 15535863739SMike Smith aac_rx_get_fwstatus, 15635863739SMike Smith aac_rx_qnotify, 15735863739SMike Smith aac_rx_get_istatus, 15835863739SMike Smith aac_rx_clear_istatus, 15935863739SMike Smith aac_rx_set_mailbox, 160a6d35632SScott Long aac_rx_get_mailbox, 16135863739SMike Smith aac_rx_set_interrupts 16235863739SMike Smith }; 16335863739SMike Smith 16435863739SMike Smith /* Debugging and Diagnostics */ 16535863739SMike Smith static void aac_describe_controller(struct aac_softc *sc); 1666965a493SScott Long static char *aac_describe_code(struct aac_code_lookup *table, 167c6eafcf2SScott Long u_int32_t code); 16835863739SMike Smith 16935863739SMike Smith /* Management Interface */ 17035863739SMike Smith static d_open_t aac_open; 17135863739SMike Smith static d_close_t aac_close; 17235863739SMike Smith static d_ioctl_t aac_ioctl; 173b3457b51SScott Long static d_poll_t aac_poll; 174c6eafcf2SScott Long static int aac_ioctl_sendfib(struct aac_softc *sc, caddr_t ufib); 175c6eafcf2SScott Long static void aac_handle_aif(struct aac_softc *sc, 17636e0bf6eSScott Long struct aac_fib *fib); 177fb0c27d7SScott Long static int aac_rev_check(struct aac_softc *sc, caddr_t udata); 178fb0c27d7SScott Long static int aac_getnext_aif(struct aac_softc *sc, caddr_t arg); 179fb0c27d7SScott Long static int aac_return_aif(struct aac_softc *sc, caddr_t uptr); 18036e0bf6eSScott Long static int aac_query_disk(struct aac_softc *sc, caddr_t uptr); 18135863739SMike Smith 18235863739SMike Smith #define AAC_CDEV_MAJOR 150 18335863739SMike Smith 18435863739SMike Smith static struct cdevsw aac_cdevsw = { 1857ac40f5fSPoul-Henning Kamp .d_open = aac_open, 1867ac40f5fSPoul-Henning Kamp .d_close = aac_close, 1877ac40f5fSPoul-Henning Kamp .d_ioctl = aac_ioctl, 1887ac40f5fSPoul-Henning Kamp .d_poll = aac_poll, 1897ac40f5fSPoul-Henning Kamp .d_name = "aac", 1907ac40f5fSPoul-Henning Kamp .d_maj = AAC_CDEV_MAJOR, 19135863739SMike Smith }; 19235863739SMike Smith 19336e0bf6eSScott Long MALLOC_DEFINE(M_AACBUF, "aacbuf", "Buffers for the AAC driver"); 19436e0bf6eSScott Long 1953d04a9d7SScott Long /* sysctl node */ 1963d04a9d7SScott Long SYSCTL_NODE(_hw, OID_AUTO, aac, CTLFLAG_RD, 0, "AAC driver parameters"); 1973d04a9d7SScott Long 198914da7d0SScott Long /* 199914da7d0SScott Long * Device Interface 200914da7d0SScott Long */ 20135863739SMike Smith 202914da7d0SScott Long /* 20335863739SMike Smith * Initialise the controller and softc 20435863739SMike Smith */ 20535863739SMike Smith int 20635863739SMike Smith aac_attach(struct aac_softc *sc) 20735863739SMike Smith { 20835863739SMike Smith int error, unit; 20935863739SMike Smith 21035863739SMike Smith debug_called(1); 21135863739SMike Smith 21235863739SMike Smith /* 21335863739SMike Smith * Initialise per-controller queues. 21435863739SMike Smith */ 2150b94a66eSMike Smith aac_initq_free(sc); 2160b94a66eSMike Smith aac_initq_ready(sc); 2170b94a66eSMike Smith aac_initq_busy(sc); 2180b94a66eSMike Smith aac_initq_bio(sc); 21935863739SMike Smith 22035863739SMike Smith /* 22135863739SMike Smith * Initialise command-completion task. 22235863739SMike Smith */ 22335863739SMike Smith TASK_INIT(&sc->aac_task_complete, 0, aac_complete, sc); 22435863739SMike Smith 22535863739SMike Smith /* disable interrupts before we enable anything */ 22635863739SMike Smith AAC_MASK_INTERRUPTS(sc); 22735863739SMike Smith 22835863739SMike Smith /* mark controller as suspended until we get ourselves organised */ 22935863739SMike Smith sc->aac_state |= AAC_STATE_SUSPEND; 23035863739SMike Smith 23135863739SMike Smith /* 232fe94b852SScott Long * Check that the firmware on the card is supported. 233fe94b852SScott Long */ 234fe94b852SScott Long if ((error = aac_check_firmware(sc)) != 0) 235fe94b852SScott Long return(error); 236fe94b852SScott Long 237f6b1c44dSScott Long /* 238f6b1c44dSScott Long * Initialize locks 239f6b1c44dSScott Long */ 240cbfd045bSScott Long AAC_LOCK_INIT(&sc->aac_sync_lock, "AAC sync FIB lock"); 241f6b1c44dSScott Long AAC_LOCK_INIT(&sc->aac_aifq_lock, "AAC AIF lock"); 242f6b1c44dSScott Long AAC_LOCK_INIT(&sc->aac_io_lock, "AAC I/O lock"); 243f6b1c44dSScott Long AAC_LOCK_INIT(&sc->aac_container_lock, "AAC container lock"); 244f6b1c44dSScott Long TAILQ_INIT(&sc->aac_container_tqh); 245f6b1c44dSScott Long 246cbfd045bSScott Long 2470b94a66eSMike Smith /* 24835863739SMike Smith * Initialise the adapter. 24935863739SMike Smith */ 2500b94a66eSMike Smith if ((error = aac_init(sc)) != 0) 25135863739SMike Smith return(error); 25235863739SMike Smith 25335863739SMike Smith /* 25435863739SMike Smith * Print a little information about the controller. 25535863739SMike Smith */ 25635863739SMike Smith aac_describe_controller(sc); 25735863739SMike Smith 25835863739SMike Smith /* 259ae543596SScott Long * Register to probe our containers later. 260ae543596SScott Long */ 26135863739SMike Smith sc->aac_ich.ich_func = aac_startup; 26235863739SMike Smith sc->aac_ich.ich_arg = sc; 26335863739SMike Smith if (config_intrhook_establish(&sc->aac_ich) != 0) { 264914da7d0SScott Long device_printf(sc->aac_dev, 265914da7d0SScott Long "can't establish configuration hook\n"); 26635863739SMike Smith return(ENXIO); 26735863739SMike Smith } 26835863739SMike Smith 26935863739SMike Smith /* 27035863739SMike Smith * Make the control device. 27135863739SMike Smith */ 27235863739SMike Smith unit = device_get_unit(sc->aac_dev); 2739e9466baSRobert Watson sc->aac_dev_t = make_dev(&aac_cdevsw, unit, UID_ROOT, GID_OPERATOR, 2749e9466baSRobert Watson 0640, "aac%d", unit); 275157fbb2eSScott Long (void)make_dev_alias(sc->aac_dev_t, "afa%d", unit); 2764aa620cdSScott Long (void)make_dev_alias(sc->aac_dev_t, "hpn%d", unit); 27735863739SMike Smith sc->aac_dev_t->si_drv1 = sc; 27835863739SMike Smith 27936e0bf6eSScott Long /* Create the AIF thread */ 28070545d1aSScott Long if (kthread_create((void(*)(void *))aac_command_thread, sc, 281316ec49aSScott Long &sc->aifthread, 0, 0, "aac%daif", unit)) 28236e0bf6eSScott Long panic("Could not create AIF thread\n"); 28336e0bf6eSScott Long 28436e0bf6eSScott Long /* Register the shutdown method to only be called post-dump */ 2855f54d522SScott Long if ((sc->eh = EVENTHANDLER_REGISTER(shutdown_final, aac_shutdown, 2865f54d522SScott Long sc->aac_dev, SHUTDOWN_PRI_DEFAULT)) == NULL) 2875f54d522SScott Long device_printf(sc->aac_dev, 2885f54d522SScott Long "shutdown event registration failed\n"); 28936e0bf6eSScott Long 290fe3cb0e1SScott Long /* Register with CAM for the non-DASD devices */ 291a6d35632SScott Long if ((sc->flags & AAC_FLAGS_ENABLE_CAM) != 0) { 29270545d1aSScott Long TAILQ_INIT(&sc->aac_sim_tqh); 293fe3cb0e1SScott Long aac_get_bus_info(sc); 29470545d1aSScott Long } 295fe3cb0e1SScott Long 29635863739SMike Smith return(0); 29735863739SMike Smith } 29835863739SMike Smith 299914da7d0SScott Long /* 30035863739SMike Smith * Probe for containers, create disks. 30135863739SMike Smith */ 30235863739SMike Smith static void 30335863739SMike Smith aac_startup(void *arg) 30435863739SMike Smith { 305914da7d0SScott Long struct aac_softc *sc; 306cbfd045bSScott Long struct aac_fib *fib; 307cbfd045bSScott Long struct aac_mntinfo *mi; 308cbfd045bSScott Long struct aac_mntinforesp *mir = NULL; 309795d7dc0SScott Long int count = 0, i = 0; 31035863739SMike Smith 31135863739SMike Smith debug_called(1); 31235863739SMike Smith 313914da7d0SScott Long sc = (struct aac_softc *)arg; 314914da7d0SScott Long 31535863739SMike Smith /* disconnect ourselves from the intrhook chain */ 31635863739SMike Smith config_intrhook_disestablish(&sc->aac_ich); 31735863739SMike Smith 318fe3cb0e1SScott Long aac_alloc_sync_fib(sc, &fib, 0); 319cbfd045bSScott Long mi = (struct aac_mntinfo *)&fib->data[0]; 320cbfd045bSScott Long 32135863739SMike Smith /* loop over possible containers */ 32236e0bf6eSScott Long do { 32335863739SMike Smith /* request information on this container */ 32439ee03c3SScott Long bzero(mi, sizeof(struct aac_mntinfo)); 32539ee03c3SScott Long mi->Command = VM_NameServe; 32639ee03c3SScott Long mi->MntType = FT_FILESYS; 327cbfd045bSScott Long mi->MntCount = i; 328cbfd045bSScott Long if (aac_sync_fib(sc, ContainerCommand, 0, fib, 329cbfd045bSScott Long sizeof(struct aac_mntinfo))) { 330795d7dc0SScott Long printf("error probing container %d", i); 33135863739SMike Smith continue; 33235863739SMike Smith } 33335863739SMike Smith 334cbfd045bSScott Long mir = (struct aac_mntinforesp *)&fib->data[0]; 335795d7dc0SScott Long /* XXX Need to check if count changed */ 336795d7dc0SScott Long count = mir->MntRespCount; 337cbfd045bSScott Long aac_add_container(sc, mir, 0); 33836e0bf6eSScott Long i++; 339795d7dc0SScott Long } while ((i < count) && (i < AAC_MAX_CONTAINERS)); 340cbfd045bSScott Long 341cbfd045bSScott Long aac_release_sync_fib(sc); 34235863739SMike Smith 34335863739SMike Smith /* poke the bus to actually attach the child devices */ 34435863739SMike Smith if (bus_generic_attach(sc->aac_dev)) 34535863739SMike Smith device_printf(sc->aac_dev, "bus_generic_attach failed\n"); 34635863739SMike Smith 34735863739SMike Smith /* mark the controller up */ 34835863739SMike Smith sc->aac_state &= ~AAC_STATE_SUSPEND; 34935863739SMike Smith 35035863739SMike Smith /* enable interrupts now */ 35135863739SMike Smith AAC_UNMASK_INTERRUPTS(sc); 35235863739SMike Smith } 35335863739SMike Smith 354914da7d0SScott Long /* 355914da7d0SScott Long * Create a device to respresent a new container 356914da7d0SScott Long */ 357914da7d0SScott Long static void 358cbfd045bSScott Long aac_add_container(struct aac_softc *sc, struct aac_mntinforesp *mir, int f) 359914da7d0SScott Long { 360914da7d0SScott Long struct aac_container *co; 361914da7d0SScott Long device_t child; 362914da7d0SScott Long 363914da7d0SScott Long /* 364914da7d0SScott Long * Check container volume type for validity. Note that many of 365914da7d0SScott Long * the possible types may never show up. 366914da7d0SScott Long */ 367914da7d0SScott Long if ((mir->Status == ST_OK) && (mir->MntTable[0].VolType != CT_NONE)) { 368a761a1caSScott Long co = (struct aac_container *)malloc(sizeof *co, M_AACBUF, 369a761a1caSScott Long M_NOWAIT | M_ZERO); 370914da7d0SScott Long if (co == NULL) 371914da7d0SScott Long panic("Out of memory?!\n"); 372914da7d0SScott Long debug(1, "id %x name '%.16s' size %u type %d", 373914da7d0SScott Long mir->MntTable[0].ObjectId, 374914da7d0SScott Long mir->MntTable[0].FileSystemName, 375914da7d0SScott Long mir->MntTable[0].Capacity, mir->MntTable[0].VolType); 376914da7d0SScott Long 377fe3cb0e1SScott Long if ((child = device_add_child(sc->aac_dev, "aacd", -1)) == NULL) 378914da7d0SScott Long device_printf(sc->aac_dev, "device_add_child failed\n"); 379914da7d0SScott Long else 380914da7d0SScott Long device_set_ivars(child, co); 381914da7d0SScott Long device_set_desc(child, aac_describe_code(aac_container_types, 382914da7d0SScott Long mir->MntTable[0].VolType)); 383914da7d0SScott Long co->co_disk = child; 384914da7d0SScott Long co->co_found = f; 385914da7d0SScott Long bcopy(&mir->MntTable[0], &co->co_mntobj, 386914da7d0SScott Long sizeof(struct aac_mntobj)); 387c3d15322SScott Long AAC_LOCK_ACQUIRE(&sc->aac_container_lock); 388914da7d0SScott Long TAILQ_INSERT_TAIL(&sc->aac_container_tqh, co, co_link); 389914da7d0SScott Long AAC_LOCK_RELEASE(&sc->aac_container_lock); 390914da7d0SScott Long } 391914da7d0SScott Long } 392914da7d0SScott Long 393914da7d0SScott Long /* 39435863739SMike Smith * Free all of the resources associated with (sc) 39535863739SMike Smith * 39635863739SMike Smith * Should not be called if the controller is active. 39735863739SMike Smith */ 39835863739SMike Smith void 39935863739SMike Smith aac_free(struct aac_softc *sc) 40035863739SMike Smith { 401ffb37f33SScott Long 40235863739SMike Smith debug_called(1); 40335863739SMike Smith 40435863739SMike Smith /* remove the control device */ 40535863739SMike Smith if (sc->aac_dev_t != NULL) 40635863739SMike Smith destroy_dev(sc->aac_dev_t); 40735863739SMike Smith 4080b94a66eSMike Smith /* throw away any FIB buffers, discard the FIB DMA tag */ 4098480cc63SScott Long aac_free_commands(sc); 4100b94a66eSMike Smith if (sc->aac_fib_dmat) 4110b94a66eSMike Smith bus_dma_tag_destroy(sc->aac_fib_dmat); 41235863739SMike Smith 413ffb37f33SScott Long free(sc->aac_commands, M_AACBUF); 414ffb37f33SScott Long 41535863739SMike Smith /* destroy the common area */ 41635863739SMike Smith if (sc->aac_common) { 41735863739SMike Smith bus_dmamap_unload(sc->aac_common_dmat, sc->aac_common_dmamap); 418c6eafcf2SScott Long bus_dmamem_free(sc->aac_common_dmat, sc->aac_common, 419c6eafcf2SScott Long sc->aac_common_dmamap); 42035863739SMike Smith } 4210b94a66eSMike Smith if (sc->aac_common_dmat) 4220b94a66eSMike Smith bus_dma_tag_destroy(sc->aac_common_dmat); 42335863739SMike Smith 42435863739SMike Smith /* disconnect the interrupt handler */ 42535863739SMike Smith if (sc->aac_intr) 42635863739SMike Smith bus_teardown_intr(sc->aac_dev, sc->aac_irq, sc->aac_intr); 42735863739SMike Smith if (sc->aac_irq != NULL) 428c6eafcf2SScott Long bus_release_resource(sc->aac_dev, SYS_RES_IRQ, sc->aac_irq_rid, 429c6eafcf2SScott Long sc->aac_irq); 43035863739SMike Smith 43135863739SMike Smith /* destroy data-transfer DMA tag */ 43235863739SMike Smith if (sc->aac_buffer_dmat) 43335863739SMike Smith bus_dma_tag_destroy(sc->aac_buffer_dmat); 43435863739SMike Smith 43535863739SMike Smith /* destroy the parent DMA tag */ 43635863739SMike Smith if (sc->aac_parent_dmat) 43735863739SMike Smith bus_dma_tag_destroy(sc->aac_parent_dmat); 43835863739SMike Smith 43935863739SMike Smith /* release the register window mapping */ 44035863739SMike Smith if (sc->aac_regs_resource != NULL) 441914da7d0SScott Long bus_release_resource(sc->aac_dev, SYS_RES_MEMORY, 442914da7d0SScott Long sc->aac_regs_rid, sc->aac_regs_resource); 44335863739SMike Smith } 44435863739SMike Smith 445914da7d0SScott Long /* 44635863739SMike Smith * Disconnect from the controller completely, in preparation for unload. 44735863739SMike Smith */ 44835863739SMike Smith int 44935863739SMike Smith aac_detach(device_t dev) 45035863739SMike Smith { 451914da7d0SScott Long struct aac_softc *sc; 45270545d1aSScott Long struct aac_container *co; 45370545d1aSScott Long struct aac_sim *sim; 45435863739SMike Smith int error; 45535863739SMike Smith 45635863739SMike Smith debug_called(1); 45735863739SMike Smith 458914da7d0SScott Long sc = device_get_softc(dev); 459914da7d0SScott Long 46035863739SMike Smith if (sc->aac_state & AAC_STATE_OPEN) 46135863739SMike Smith return(EBUSY); 46235863739SMike Smith 46370545d1aSScott Long /* Remove the child containers */ 464a761a1caSScott Long while ((co = TAILQ_FIRST(&sc->aac_container_tqh)) != NULL) { 46570545d1aSScott Long error = device_delete_child(dev, co->co_disk); 46670545d1aSScott Long if (error) 46770545d1aSScott Long return (error); 46865ac4ed6SScott Long TAILQ_REMOVE(&sc->aac_container_tqh, co, co_link); 469a761a1caSScott Long free(co, M_AACBUF); 47070545d1aSScott Long } 47170545d1aSScott Long 47270545d1aSScott Long /* Remove the CAM SIMs */ 473a761a1caSScott Long while ((sim = TAILQ_FIRST(&sc->aac_sim_tqh)) != NULL) { 474a761a1caSScott Long TAILQ_REMOVE(&sc->aac_sim_tqh, sim, sim_link); 47570545d1aSScott Long error = device_delete_child(dev, sim->sim_dev); 47670545d1aSScott Long if (error) 47770545d1aSScott Long return (error); 478a761a1caSScott Long free(sim, M_AACBUF); 47970545d1aSScott Long } 48070545d1aSScott Long 48136e0bf6eSScott Long if (sc->aifflags & AAC_AIFFLAGS_RUNNING) { 48236e0bf6eSScott Long sc->aifflags |= AAC_AIFFLAGS_EXIT; 48336e0bf6eSScott Long wakeup(sc->aifthread); 48436e0bf6eSScott Long tsleep(sc->aac_dev, PUSER | PCATCH, "aacdch", 30 * hz); 48536e0bf6eSScott Long } 48636e0bf6eSScott Long 48736e0bf6eSScott Long if (sc->aifflags & AAC_AIFFLAGS_RUNNING) 48836e0bf6eSScott Long panic("Cannot shutdown AIF thread\n"); 48936e0bf6eSScott Long 49035863739SMike Smith if ((error = aac_shutdown(dev))) 49135863739SMike Smith return(error); 49235863739SMike Smith 4935f54d522SScott Long EVENTHANDLER_DEREGISTER(shutdown_final, sc->eh); 4945f54d522SScott Long 49535863739SMike Smith aac_free(sc); 49635863739SMike Smith 49735863739SMike Smith return(0); 49835863739SMike Smith } 49935863739SMike Smith 500914da7d0SScott Long /* 50135863739SMike Smith * Bring the controller down to a dormant state and detach all child devices. 50235863739SMike Smith * 50335863739SMike Smith * This function is called before detach or system shutdown. 50435863739SMike Smith * 5050b94a66eSMike Smith * Note that we can assume that the bioq on the controller is empty, as we won't 50635863739SMike Smith * allow shutdown if any device is open. 50735863739SMike Smith */ 50835863739SMike Smith int 50935863739SMike Smith aac_shutdown(device_t dev) 51035863739SMike Smith { 511914da7d0SScott Long struct aac_softc *sc; 512cbfd045bSScott Long struct aac_fib *fib; 513cbfd045bSScott Long struct aac_close_command *cc; 51435863739SMike Smith 51535863739SMike Smith debug_called(1); 51635863739SMike Smith 517914da7d0SScott Long sc = device_get_softc(dev); 518914da7d0SScott Long 51935863739SMike Smith sc->aac_state |= AAC_STATE_SUSPEND; 52035863739SMike Smith 52135863739SMike Smith /* 52235863739SMike Smith * Send a Container shutdown followed by a HostShutdown FIB to the 52335863739SMike Smith * controller to convince it that we don't want to talk to it anymore. 52435863739SMike Smith * We've been closed and all I/O completed already 52535863739SMike Smith */ 52635863739SMike Smith device_printf(sc->aac_dev, "shutting down controller..."); 52735863739SMike Smith 528fe3cb0e1SScott Long aac_alloc_sync_fib(sc, &fib, AAC_SYNC_LOCK_FORCE); 529cbfd045bSScott Long cc = (struct aac_close_command *)&fib->data[0]; 530cbfd045bSScott Long 53139ee03c3SScott Long bzero(cc, sizeof(struct aac_close_command)); 532cbfd045bSScott Long cc->Command = VM_CloseAll; 533cbfd045bSScott Long cc->ContainerId = 0xffffffff; 534cbfd045bSScott Long if (aac_sync_fib(sc, ContainerCommand, 0, fib, 535cbfd045bSScott Long sizeof(struct aac_close_command))) 53635863739SMike Smith printf("FAILED.\n"); 53770545d1aSScott Long else 53870545d1aSScott Long printf("done\n"); 53970545d1aSScott Long #if 0 540914da7d0SScott Long else { 541cbfd045bSScott Long fib->data[0] = 0; 54236e0bf6eSScott Long /* 543914da7d0SScott Long * XXX Issuing this command to the controller makes it shut down 54436e0bf6eSScott Long * but also keeps it from coming back up without a reset of the 54536e0bf6eSScott Long * PCI bus. This is not desirable if you are just unloading the 54636e0bf6eSScott Long * driver module with the intent to reload it later. 54736e0bf6eSScott Long */ 548cbfd045bSScott Long if (aac_sync_fib(sc, FsaHostShutdown, AAC_FIBSTATE_SHUTDOWN, 549cbfd045bSScott Long fib, 1)) { 55035863739SMike Smith printf("FAILED.\n"); 55135863739SMike Smith } else { 55235863739SMike Smith printf("done.\n"); 55335863739SMike Smith } 55435863739SMike Smith } 55570545d1aSScott Long #endif 55635863739SMike Smith 55735863739SMike Smith AAC_MASK_INTERRUPTS(sc); 55835863739SMike Smith 55935863739SMike Smith return(0); 56035863739SMike Smith } 56135863739SMike Smith 562914da7d0SScott Long /* 56335863739SMike Smith * Bring the controller to a quiescent state, ready for system suspend. 56435863739SMike Smith */ 56535863739SMike Smith int 56635863739SMike Smith aac_suspend(device_t dev) 56735863739SMike Smith { 568914da7d0SScott Long struct aac_softc *sc; 56935863739SMike Smith 57035863739SMike Smith debug_called(1); 571914da7d0SScott Long 572914da7d0SScott Long sc = device_get_softc(dev); 573914da7d0SScott Long 57435863739SMike Smith sc->aac_state |= AAC_STATE_SUSPEND; 57535863739SMike Smith 57635863739SMike Smith AAC_MASK_INTERRUPTS(sc); 57735863739SMike Smith return(0); 57835863739SMike Smith } 57935863739SMike Smith 580914da7d0SScott Long /* 58135863739SMike Smith * Bring the controller back to a state ready for operation. 58235863739SMike Smith */ 58335863739SMike Smith int 58435863739SMike Smith aac_resume(device_t dev) 58535863739SMike Smith { 586914da7d0SScott Long struct aac_softc *sc; 58735863739SMike Smith 58835863739SMike Smith debug_called(1); 589914da7d0SScott Long 590914da7d0SScott Long sc = device_get_softc(dev); 591914da7d0SScott Long 59235863739SMike Smith sc->aac_state &= ~AAC_STATE_SUSPEND; 59335863739SMike Smith AAC_UNMASK_INTERRUPTS(sc); 59435863739SMike Smith return(0); 59535863739SMike Smith } 59635863739SMike Smith 597914da7d0SScott Long /* 59835863739SMike Smith * Take an interrupt. 59935863739SMike Smith */ 60035863739SMike Smith void 60135863739SMike Smith aac_intr(void *arg) 60235863739SMike Smith { 603914da7d0SScott Long struct aac_softc *sc; 604f30ac74cSScott Long u_int32_t *resp_queue; 60570545d1aSScott Long u_int16_t reason; 60635863739SMike Smith 60735863739SMike Smith debug_called(2); 60835863739SMike Smith 609914da7d0SScott Long sc = (struct aac_softc *)arg; 610914da7d0SScott Long 611f30ac74cSScott Long /* 612f30ac74cSScott Long * Optimize the common case of adapter response interrupts. 613f30ac74cSScott Long * We must read from the card prior to processing the responses 614f30ac74cSScott Long * to ensure the clear is flushed prior to accessing the queues. 615f30ac74cSScott Long * Reading the queues from local memory might save us a PCI read. 616f30ac74cSScott Long */ 617f30ac74cSScott Long resp_queue = sc->aac_queues->qt_qindex[AAC_HOST_NORM_RESP_QUEUE]; 618f30ac74cSScott Long if (resp_queue[AAC_PRODUCER_INDEX] != resp_queue[AAC_CONSUMER_INDEX]) 619f30ac74cSScott Long reason = AAC_DB_RESPONSE_READY; 620f30ac74cSScott Long else 62135863739SMike Smith reason = AAC_GET_ISTATUS(sc); 622f30ac74cSScott Long AAC_CLEAR_ISTATUS(sc, reason); 623f30ac74cSScott Long (void)AAC_GET_ISTATUS(sc); 624f30ac74cSScott Long 625f30ac74cSScott Long /* It's not ok to return here because of races with the previous step */ 626f30ac74cSScott Long if (reason & AAC_DB_RESPONSE_READY) 6279c3a7fceSScott Long /* handle completion processing */ 628ae543596SScott Long taskqueue_enqueue(taskqueue_swi, &sc->aac_task_complete); 62935863739SMike Smith 630b3457b51SScott Long /* controller wants to talk to the log */ 63170545d1aSScott Long if (reason & AAC_DB_PRINTF) { 63270545d1aSScott Long if (sc->aifflags & AAC_AIFFLAGS_RUNNING) { 63370545d1aSScott Long sc->aifflags |= AAC_AIFFLAGS_PRINTF; 63470545d1aSScott Long } else 63536e0bf6eSScott Long aac_print_printf(sc); 63670545d1aSScott Long } 63735863739SMike Smith 63835863739SMike Smith /* controller has a message for us? */ 63935863739SMike Smith if (reason & AAC_DB_COMMAND_READY) { 64036e0bf6eSScott Long if (sc->aifflags & AAC_AIFFLAGS_RUNNING) { 64170545d1aSScott Long sc->aifflags |= AAC_AIFFLAGS_AIF; 64270545d1aSScott Long } else { 64370545d1aSScott Long /* 64470545d1aSScott Long * XXX If the kthread is dead and we're at this point, 64570545d1aSScott Long * there are bigger problems than just figuring out 64670545d1aSScott Long * what to do with an AIF. 64770545d1aSScott Long */ 64870545d1aSScott Long } 64970545d1aSScott Long 65070545d1aSScott Long } 65170545d1aSScott Long 65270545d1aSScott Long if ((sc->aifflags & AAC_AIFFLAGS_PENDING) != 0) 65370545d1aSScott Long /* XXX Should this be done with cv_signal? */ 65436e0bf6eSScott Long wakeup(sc->aifthread); 65536e0bf6eSScott Long } 65635863739SMike Smith 657c6eafcf2SScott Long /* 658914da7d0SScott Long * Command Processing 659914da7d0SScott Long */ 66035863739SMike Smith 661914da7d0SScott Long /* 66235863739SMike Smith * Start as much queued I/O as possible on the controller 66335863739SMike Smith */ 664fe3cb0e1SScott Long void 66535863739SMike Smith aac_startio(struct aac_softc *sc) 66635863739SMike Smith { 66735863739SMike Smith struct aac_command *cm; 66835863739SMike Smith 66935863739SMike Smith debug_called(2); 67035863739SMike Smith 671cd481291SScott Long if (sc->flags & AAC_QUEUE_FRZN) 672cd481291SScott Long return; 673cd481291SScott Long 67435863739SMike Smith for (;;) { 675914da7d0SScott Long /* 676914da7d0SScott Long * Try to get a command that's been put off for lack of 677914da7d0SScott Long * resources 678914da7d0SScott Long */ 67935863739SMike Smith cm = aac_dequeue_ready(sc); 68035863739SMike Smith 681914da7d0SScott Long /* 682914da7d0SScott Long * Try to build a command off the bio queue (ignore error 683914da7d0SScott Long * return) 684914da7d0SScott Long */ 6850b94a66eSMike Smith if (cm == NULL) 68635863739SMike Smith aac_bio_command(sc, &cm); 68735863739SMike Smith 68835863739SMike Smith /* nothing to do? */ 68935863739SMike Smith if (cm == NULL) 69035863739SMike Smith break; 69135863739SMike Smith 69235863739SMike Smith /* try to give the command to the controller */ 693cd481291SScott Long if (aac_map_command(cm) == EBUSY) { 69435863739SMike Smith /* put it on the ready queue for later */ 69535863739SMike Smith aac_requeue_ready(cm); 69635863739SMike Smith break; 69735863739SMike Smith } 69835863739SMike Smith } 69935863739SMike Smith } 70035863739SMike Smith 701914da7d0SScott Long /* 70235863739SMike Smith * Deliver a command to the controller; allocate controller resources at the 70335863739SMike Smith * last moment when possible. 70435863739SMike Smith */ 70535863739SMike Smith static int 706cd481291SScott Long aac_map_command(struct aac_command *cm) 70735863739SMike Smith { 708914da7d0SScott Long struct aac_softc *sc; 709ed5c5fb4SMike Smith int error; 71035863739SMike Smith 71135863739SMike Smith debug_called(2); 71235863739SMike Smith 713914da7d0SScott Long sc = cm->cm_sc; 714cd481291SScott Long error = 0; 715914da7d0SScott Long 716cd481291SScott Long /* don't map more than once */ 717cd481291SScott Long if (cm->cm_flags & AAC_CMD_MAPPED) 718cd481291SScott Long return (0); 71935863739SMike Smith 720cd481291SScott Long if (cm->cm_datalen != 0) { 721cd481291SScott Long error = bus_dmamap_load(sc->aac_buffer_dmat, cm->cm_datamap, 722cd481291SScott Long cm->cm_data, cm->cm_datalen, 723cd481291SScott Long aac_map_command_sg, cm, 0); 724cd481291SScott Long if (error == EINPROGRESS) { 725cd481291SScott Long debug(1, "freezing queue\n"); 726cd481291SScott Long sc->flags |= AAC_QUEUE_FRZN; 727cd481291SScott Long error = 0; 728cd481291SScott Long } 729cd481291SScott Long } 7300b94a66eSMike Smith return (error); 73135863739SMike Smith } 73235863739SMike Smith 733914da7d0SScott Long /* 73435863739SMike Smith * Handle notification of one or more FIBs coming from the controller. 73535863739SMike Smith */ 73635863739SMike Smith static void 73770545d1aSScott Long aac_command_thread(struct aac_softc *sc) 73835863739SMike Smith { 73935863739SMike Smith struct aac_fib *fib; 74035863739SMike Smith u_int32_t fib_size; 74136e0bf6eSScott Long int size; 74235863739SMike Smith 74336e0bf6eSScott Long debug_called(2); 74435863739SMike Smith 74536e0bf6eSScott Long sc->aifflags |= AAC_AIFFLAGS_RUNNING; 74636e0bf6eSScott Long 74736e0bf6eSScott Long while (!(sc->aifflags & AAC_AIFFLAGS_EXIT)) { 74870545d1aSScott Long if ((sc->aifflags & AAC_AIFFLAGS_PENDING) == 0) 74970545d1aSScott Long tsleep(sc->aifthread, PRIBIO, "aifthd", 75070545d1aSScott Long AAC_PERIODIC_INTERVAL * hz); 75136e0bf6eSScott Long 75270545d1aSScott Long if ((sc->aifflags & AAC_AIFFLAGS_PENDING) == 0) 75370545d1aSScott Long aac_timeout(sc); 75470545d1aSScott Long 75570545d1aSScott Long /* Check the hardware printf message buffer */ 75670545d1aSScott Long if ((sc->aifflags & AAC_AIFFLAGS_PRINTF) != 0) { 75770545d1aSScott Long sc->aifflags &= ~AAC_AIFFLAGS_PRINTF; 75870545d1aSScott Long aac_print_printf(sc); 75970545d1aSScott Long } 76070545d1aSScott Long 761ae543596SScott Long /* See if any FIBs need to be allocated */ 762ae543596SScott Long if ((sc->aifflags & AAC_AIFFLAGS_ALLOCFIBS) != 0) { 763ae543596SScott Long AAC_LOCK_ACQUIRE(&sc->aac_io_lock); 764ae543596SScott Long aac_alloc_commands(sc); 765ae543596SScott Long sc->aifflags &= ~AAC_AIFFLAGS_ALLOCFIBS; 766ae543596SScott Long AAC_LOCK_RELEASE(&sc->aac_io_lock); 767ae543596SScott Long } 76870545d1aSScott Long 769ae543596SScott Long /* While we're here, check to see if any commands are stuck */ 770ae543596SScott Long while (sc->aifflags & AAC_AIFFLAGS_AIF) { 771914da7d0SScott Long if (aac_dequeue_fib(sc, AAC_HOST_NORM_CMD_QUEUE, 77270545d1aSScott Long &fib_size, &fib)) { 77370545d1aSScott Long sc->aifflags &= ~AAC_AIFFLAGS_AIF; 77435863739SMike Smith break; /* nothing to do */ 77570545d1aSScott Long } 77635863739SMike Smith 77736e0bf6eSScott Long AAC_PRINT_FIB(sc, fib); 77836e0bf6eSScott Long 77935863739SMike Smith switch (fib->Header.Command) { 78035863739SMike Smith case AifRequest: 78136e0bf6eSScott Long aac_handle_aif(sc, fib); 78235863739SMike Smith break; 78335863739SMike Smith default: 784914da7d0SScott Long device_printf(sc->aac_dev, "unknown command " 785914da7d0SScott Long "from controller\n"); 78635863739SMike Smith break; 78735863739SMike Smith } 78835863739SMike Smith 78936e0bf6eSScott Long if ((fib->Header.XferState == 0) || 79036e0bf6eSScott Long (fib->Header.StructType != AAC_FIBTYPE_TFIB)) 79136e0bf6eSScott Long break; 79236e0bf6eSScott Long 79370545d1aSScott Long /* Return the AIF to the controller. */ 79436e0bf6eSScott Long if (fib->Header.XferState & AAC_FIBSTATE_FROMADAP) { 79536e0bf6eSScott Long fib->Header.XferState |= AAC_FIBSTATE_DONEHOST; 79636e0bf6eSScott Long *(AAC_FSAStatus*)fib->data = ST_OK; 79736e0bf6eSScott Long 79836e0bf6eSScott Long /* XXX Compute the Size field? */ 79936e0bf6eSScott Long size = fib->Header.Size; 80036e0bf6eSScott Long if (size > sizeof(struct aac_fib)) { 80136e0bf6eSScott Long size = sizeof(struct aac_fib); 80236e0bf6eSScott Long fib->Header.Size = size; 80336e0bf6eSScott Long } 80436e0bf6eSScott Long /* 805914da7d0SScott Long * Since we did not generate this command, it 806914da7d0SScott Long * cannot go through the normal 807914da7d0SScott Long * enqueue->startio chain. 80836e0bf6eSScott Long */ 809914da7d0SScott Long aac_enqueue_response(sc, 810914da7d0SScott Long AAC_ADAP_NORM_RESP_QUEUE, 811914da7d0SScott Long fib); 81236e0bf6eSScott Long } 81336e0bf6eSScott Long } 81436e0bf6eSScott Long } 81536e0bf6eSScott Long sc->aifflags &= ~AAC_AIFFLAGS_RUNNING; 81636e0bf6eSScott Long wakeup(sc->aac_dev); 81736e0bf6eSScott Long 81836e0bf6eSScott Long mtx_lock(&Giant); 81936e0bf6eSScott Long kthread_exit(0); 82035863739SMike Smith } 82135863739SMike Smith 822914da7d0SScott Long /* 8239c3a7fceSScott Long * Process completed commands. 82435863739SMike Smith */ 82535863739SMike Smith static void 8269c3a7fceSScott Long aac_complete(void *context, int pending) 82735863739SMike Smith { 8289c3a7fceSScott Long struct aac_softc *sc; 82935863739SMike Smith struct aac_command *cm; 83035863739SMike Smith struct aac_fib *fib; 83135863739SMike Smith u_int32_t fib_size; 83235863739SMike Smith 83335863739SMike Smith debug_called(2); 83435863739SMike Smith 8359c3a7fceSScott Long sc = (struct aac_softc *)context; 8369c3a7fceSScott Long 837ae543596SScott Long AAC_LOCK_ACQUIRE(&sc->aac_io_lock); 838ae543596SScott Long 8399c3a7fceSScott Long /* pull completed commands off the queue */ 84035863739SMike Smith for (;;) { 84135863739SMike Smith /* look for completed FIBs on our queue */ 842914da7d0SScott Long if (aac_dequeue_fib(sc, AAC_HOST_NORM_RESP_QUEUE, &fib_size, 843914da7d0SScott Long &fib)) 84435863739SMike Smith break; /* nothing to do */ 84535863739SMike Smith 84635863739SMike Smith /* get the command, unmap and queue for later processing */ 847cb0d64b9SScott Long cm = sc->aac_commands + fib->Header.SenderData; 84835863739SMike Smith if (cm == NULL) { 84935863739SMike Smith AAC_PRINT_FIB(sc, fib); 8509c3a7fceSScott Long break; 8519c3a7fceSScott Long } 8529c3a7fceSScott Long 8530b94a66eSMike Smith aac_remove_busy(cm); 85435863739SMike Smith aac_unmap_command(cm); /* XXX defer? */ 85535863739SMike Smith cm->cm_flags |= AAC_CMD_COMPLETED; 85635863739SMike Smith 85735863739SMike Smith /* is there a completion handler? */ 85835863739SMike Smith if (cm->cm_complete != NULL) { 85935863739SMike Smith cm->cm_complete(cm); 86035863739SMike Smith } else { 86135863739SMike Smith /* assume that someone is sleeping on this command */ 86235863739SMike Smith wakeup(cm); 86335863739SMike Smith } 86435863739SMike Smith } 8650b94a66eSMike Smith 8660b94a66eSMike Smith /* see if we can start some more I/O */ 867cd481291SScott Long sc->flags &= ~AAC_QUEUE_FRZN; 8680b94a66eSMike Smith aac_startio(sc); 869ae543596SScott Long 870ae543596SScott Long AAC_LOCK_RELEASE(&sc->aac_io_lock); 87135863739SMike Smith } 87235863739SMike Smith 873914da7d0SScott Long /* 87435863739SMike Smith * Handle a bio submitted from a disk device. 87535863739SMike Smith */ 87635863739SMike Smith void 87735863739SMike Smith aac_submit_bio(struct bio *bp) 87835863739SMike Smith { 879914da7d0SScott Long struct aac_disk *ad; 880914da7d0SScott Long struct aac_softc *sc; 88135863739SMike Smith 88235863739SMike Smith debug_called(2); 88335863739SMike Smith 8847540e65eSScott Long ad = (struct aac_disk *)bp->bio_disk->d_drv1; 885914da7d0SScott Long sc = ad->ad_controller; 886914da7d0SScott Long 88735863739SMike Smith /* queue the BIO and try to get some work done */ 8880b94a66eSMike Smith aac_enqueue_bio(sc, bp); 88935863739SMike Smith aac_startio(sc); 89035863739SMike Smith } 89135863739SMike Smith 892914da7d0SScott Long /* 89335863739SMike Smith * Get a bio and build a command to go with it. 89435863739SMike Smith */ 89535863739SMike Smith static int 89635863739SMike Smith aac_bio_command(struct aac_softc *sc, struct aac_command **cmp) 89735863739SMike Smith { 89835863739SMike Smith struct aac_command *cm; 89935863739SMike Smith struct aac_fib *fib; 90035863739SMike Smith struct aac_disk *ad; 90135863739SMike Smith struct bio *bp; 90235863739SMike Smith 90335863739SMike Smith debug_called(2); 90435863739SMike Smith 90535863739SMike Smith /* get the resources we will need */ 90635863739SMike Smith cm = NULL; 9070b94a66eSMike Smith if ((bp = aac_dequeue_bio(sc)) == NULL) 90835863739SMike Smith goto fail; 90935863739SMike Smith if (aac_alloc_command(sc, &cm)) /* get a command */ 91035863739SMike Smith goto fail; 91135863739SMike Smith 91235863739SMike Smith /* fill out the command */ 9130b94a66eSMike Smith cm->cm_data = (void *)bp->bio_data; 9140b94a66eSMike Smith cm->cm_datalen = bp->bio_bcount; 9150b94a66eSMike Smith cm->cm_complete = aac_bio_complete; 91635863739SMike Smith cm->cm_private = bp; 9170b94a66eSMike Smith cm->cm_timestamp = time_second; 91836e0bf6eSScott Long cm->cm_queue = AAC_ADAP_NORM_CMD_QUEUE; 91935863739SMike Smith 92035863739SMike Smith /* build the FIB */ 92135863739SMike Smith fib = cm->cm_fib; 922b85f5808SScott Long fib->Header.Size = sizeof(struct aac_fib_header); 92335863739SMike Smith fib->Header.XferState = 92435863739SMike Smith AAC_FIBSTATE_HOSTOWNED | 92535863739SMike Smith AAC_FIBSTATE_INITIALISED | 926f30ac74cSScott Long AAC_FIBSTATE_EMPTY | 92735863739SMike Smith AAC_FIBSTATE_FROMHOST | 92835863739SMike Smith AAC_FIBSTATE_REXPECTED | 929f30ac74cSScott Long AAC_FIBSTATE_NORM | 930f30ac74cSScott Long AAC_FIBSTATE_ASYNC | 931f30ac74cSScott Long AAC_FIBSTATE_FAST_RESPONSE; 93235863739SMike Smith 93335863739SMike Smith /* build the read/write request */ 9347540e65eSScott Long ad = (struct aac_disk *)bp->bio_disk->d_drv1; 935b85f5808SScott Long 936b85f5808SScott Long if ((sc->flags & AAC_FLAGS_SG_64BIT) == 0) { 937b85f5808SScott Long fib->Header.Command = ContainerCommand; 9389e2e96d8SScott Long if (bp->bio_cmd == BIO_READ) { 939b85f5808SScott Long struct aac_blockread *br; 94035863739SMike Smith br = (struct aac_blockread *)&fib->data[0]; 94135863739SMike Smith br->Command = VM_CtBlockRead; 94235863739SMike Smith br->ContainerId = ad->ad_container->co_mntobj.ObjectId; 94335863739SMike Smith br->BlockNumber = bp->bio_pblkno; 94435863739SMike Smith br->ByteCount = bp->bio_bcount; 94535863739SMike Smith fib->Header.Size += sizeof(struct aac_blockread); 94635863739SMike Smith cm->cm_sgtable = &br->SgMap; 94735863739SMike Smith cm->cm_flags |= AAC_CMD_DATAIN; 94835863739SMike Smith } else { 949b85f5808SScott Long struct aac_blockwrite *bw; 95035863739SMike Smith bw = (struct aac_blockwrite *)&fib->data[0]; 95135863739SMike Smith bw->Command = VM_CtBlockWrite; 95235863739SMike Smith bw->ContainerId = ad->ad_container->co_mntobj.ObjectId; 95335863739SMike Smith bw->BlockNumber = bp->bio_pblkno; 95435863739SMike Smith bw->ByteCount = bp->bio_bcount; 955b85f5808SScott Long bw->Stable = CUNSTABLE; 95635863739SMike Smith fib->Header.Size += sizeof(struct aac_blockwrite); 95735863739SMike Smith cm->cm_flags |= AAC_CMD_DATAOUT; 95835863739SMike Smith cm->cm_sgtable = &bw->SgMap; 95935863739SMike Smith } 960b85f5808SScott Long } else { 961b85f5808SScott Long fib->Header.Command = ContainerCommand64; 962b85f5808SScott Long if (bp->bio_cmd == BIO_READ) { 963b85f5808SScott Long struct aac_blockread64 *br; 964b85f5808SScott Long br = (struct aac_blockread64 *)&fib->data[0]; 965b85f5808SScott Long br->Command = VM_CtHostRead64; 966b85f5808SScott Long br->ContainerId = ad->ad_container->co_mntobj.ObjectId; 967b85f5808SScott Long br->SectorCount = bp->bio_bcount / AAC_BLOCK_SIZE; 968b85f5808SScott Long br->BlockNumber = bp->bio_pblkno; 969b85f5808SScott Long br->Pad = 0; 970b85f5808SScott Long br->Flags = 0; 971b85f5808SScott Long fib->Header.Size += sizeof(struct aac_blockread64); 972b85f5808SScott Long cm->cm_flags |= AAC_CMD_DATAOUT; 973b85f5808SScott Long (struct aac_sg_table64 *)cm->cm_sgtable = &br->SgMap64; 974b85f5808SScott Long } else { 975b85f5808SScott Long struct aac_blockwrite64 *bw; 976b85f5808SScott Long bw = (struct aac_blockwrite64 *)&fib->data[0]; 977b85f5808SScott Long bw->Command = VM_CtHostWrite64; 978b85f5808SScott Long bw->ContainerId = ad->ad_container->co_mntobj.ObjectId; 979b85f5808SScott Long bw->SectorCount = bp->bio_bcount / AAC_BLOCK_SIZE; 980b85f5808SScott Long bw->BlockNumber = bp->bio_pblkno; 981b85f5808SScott Long bw->Pad = 0; 982b85f5808SScott Long bw->Flags = 0; 983b85f5808SScott Long fib->Header.Size += sizeof(struct aac_blockwrite64); 984b85f5808SScott Long cm->cm_flags |= AAC_CMD_DATAIN; 985b85f5808SScott Long (struct aac_sg_table64 *)cm->cm_sgtable = &bw->SgMap64; 986b85f5808SScott Long } 987b85f5808SScott Long } 98835863739SMike Smith 98935863739SMike Smith *cmp = cm; 99035863739SMike Smith return(0); 99135863739SMike Smith 99235863739SMike Smith fail: 99335863739SMike Smith if (bp != NULL) 9940b94a66eSMike Smith aac_enqueue_bio(sc, bp); 99535863739SMike Smith if (cm != NULL) 99635863739SMike Smith aac_release_command(cm); 99735863739SMike Smith return(ENOMEM); 99835863739SMike Smith } 99935863739SMike Smith 1000914da7d0SScott Long /* 100135863739SMike Smith * Handle a bio-instigated command that has been completed. 100235863739SMike Smith */ 100335863739SMike Smith static void 100435863739SMike Smith aac_bio_complete(struct aac_command *cm) 100535863739SMike Smith { 100635863739SMike Smith struct aac_blockread_response *brr; 100735863739SMike Smith struct aac_blockwrite_response *bwr; 100835863739SMike Smith struct bio *bp; 100935863739SMike Smith AAC_FSAStatus status; 101035863739SMike Smith 101135863739SMike Smith /* fetch relevant status and then release the command */ 101235863739SMike Smith bp = (struct bio *)cm->cm_private; 10139e2e96d8SScott Long if (bp->bio_cmd == BIO_READ) { 101435863739SMike Smith brr = (struct aac_blockread_response *)&cm->cm_fib->data[0]; 101535863739SMike Smith status = brr->Status; 101635863739SMike Smith } else { 101735863739SMike Smith bwr = (struct aac_blockwrite_response *)&cm->cm_fib->data[0]; 101835863739SMike Smith status = bwr->Status; 101935863739SMike Smith } 102035863739SMike Smith aac_release_command(cm); 102135863739SMike Smith 102235863739SMike Smith /* fix up the bio based on status */ 102335863739SMike Smith if (status == ST_OK) { 102435863739SMike Smith bp->bio_resid = 0; 102535863739SMike Smith } else { 102635863739SMike Smith bp->bio_error = EIO; 102735863739SMike Smith bp->bio_flags |= BIO_ERROR; 10280b94a66eSMike Smith /* pass an error string out to the disk layer */ 1029914da7d0SScott Long bp->bio_driver1 = aac_describe_code(aac_command_status_table, 1030914da7d0SScott Long status); 103135863739SMike Smith } 10320b94a66eSMike Smith aac_biodone(bp); 103335863739SMike Smith } 103435863739SMike Smith 1035914da7d0SScott Long /* 103635863739SMike Smith * Submit a command to the controller, return when it completes. 1037b3457b51SScott Long * XXX This is very dangerous! If the card has gone out to lunch, we could 1038b3457b51SScott Long * be stuck here forever. At the same time, signals are not caught 1039b3457b51SScott Long * because there is a risk that a signal could wakeup the tsleep before 1040b3457b51SScott Long * the card has a chance to complete the command. The passed in timeout 1041b3457b51SScott Long * is ignored for the same reason. Since there is no way to cancel a 1042b3457b51SScott Long * command in progress, we should probably create a 'dead' queue where 1043b3457b51SScott Long * commands go that have been interrupted/timed-out/etc, that keeps them 1044b3457b51SScott Long * out of the free pool. That way, if the card is just slow, it won't 1045b3457b51SScott Long * spam the memory of a command that has been recycled. 104635863739SMike Smith */ 104735863739SMike Smith static int 104835863739SMike Smith aac_wait_command(struct aac_command *cm, int timeout) 104935863739SMike Smith { 1050ae543596SScott Long struct aac_softc *sc; 1051ae543596SScott Long int error = 0; 105235863739SMike Smith 105335863739SMike Smith debug_called(2); 105435863739SMike Smith 1055ae543596SScott Long sc = cm->cm_sc; 1056ae543596SScott Long 105735863739SMike Smith /* Put the command on the ready queue and get things going */ 105836e0bf6eSScott Long cm->cm_queue = AAC_ADAP_NORM_CMD_QUEUE; 105935863739SMike Smith aac_enqueue_ready(cm); 1060ae543596SScott Long aac_startio(sc); 106135863739SMike Smith while (!(cm->cm_flags & AAC_CMD_COMPLETED) && (error != EWOULDBLOCK)) { 1062ae543596SScott Long error = msleep(cm, &sc->aac_io_lock, PRIBIO, "aacwait", 0); 106335863739SMike Smith } 106435863739SMike Smith return(error); 106535863739SMike Smith } 106635863739SMike Smith 1067914da7d0SScott Long /* 1068914da7d0SScott Long *Command Buffer Management 1069914da7d0SScott Long */ 107035863739SMike Smith 1071914da7d0SScott Long /* 107235863739SMike Smith * Allocate a command. 107335863739SMike Smith */ 1074fe3cb0e1SScott Long int 107535863739SMike Smith aac_alloc_command(struct aac_softc *sc, struct aac_command **cmp) 107635863739SMike Smith { 107735863739SMike Smith struct aac_command *cm; 107835863739SMike Smith 107935863739SMike Smith debug_called(3); 108035863739SMike Smith 1081ffb37f33SScott Long if ((cm = aac_dequeue_free(sc)) == NULL) { 1082b85f5808SScott Long if (sc->total_fibs < sc->aac_max_fibs) { 1083ae543596SScott Long sc->aifflags |= AAC_AIFFLAGS_ALLOCFIBS; 1084ae543596SScott Long wakeup(sc->aifthread); 1085b85f5808SScott Long } 1086ae543596SScott Long return (EBUSY); 1087ffb37f33SScott Long } 108835863739SMike Smith 10890b94a66eSMike Smith *cmp = cm; 10900b94a66eSMike Smith return(0); 10910b94a66eSMike Smith } 10920b94a66eSMike Smith 1093914da7d0SScott Long /* 10940b94a66eSMike Smith * Release a command back to the freelist. 10950b94a66eSMike Smith */ 1096fe3cb0e1SScott Long void 10970b94a66eSMike Smith aac_release_command(struct aac_command *cm) 10980b94a66eSMike Smith { 10990b94a66eSMike Smith debug_called(3); 11000b94a66eSMike Smith 11010b94a66eSMike Smith /* (re)initialise the command/FIB */ 110235863739SMike Smith cm->cm_sgtable = NULL; 110335863739SMike Smith cm->cm_flags = 0; 110435863739SMike Smith cm->cm_complete = NULL; 110535863739SMike Smith cm->cm_private = NULL; 110635863739SMike Smith cm->cm_fib->Header.XferState = AAC_FIBSTATE_EMPTY; 110735863739SMike Smith cm->cm_fib->Header.StructType = AAC_FIBTYPE_TFIB; 110835863739SMike Smith cm->cm_fib->Header.Flags = 0; 110935863739SMike Smith cm->cm_fib->Header.SenderSize = sizeof(struct aac_fib); 111035863739SMike Smith 111135863739SMike Smith /* 111235863739SMike Smith * These are duplicated in aac_start to cover the case where an 111335863739SMike Smith * intermediate stage may have destroyed them. They're left 111435863739SMike Smith * initialised here for debugging purposes only. 111535863739SMike Smith */ 1116f30ac74cSScott Long cm->cm_fib->Header.ReceiverFibAddress = (u_int32_t)cm->cm_fibphys; 1117f30ac74cSScott Long cm->cm_fib->Header.SenderData = 0; 111835863739SMike Smith 111935863739SMike Smith aac_enqueue_free(cm); 112035863739SMike Smith } 112135863739SMike Smith 1122914da7d0SScott Long /* 11230b94a66eSMike Smith * Map helper for command/FIB allocation. 112435863739SMike Smith */ 112535863739SMike Smith static void 11260b94a66eSMike Smith aac_map_command_helper(void *arg, bus_dma_segment_t *segs, int nseg, int error) 112735863739SMike Smith { 11288480cc63SScott Long uint32_t *fibphys; 1129914da7d0SScott Long 11308480cc63SScott Long fibphys = (uint32_t *)arg; 113135863739SMike Smith 113235863739SMike Smith debug_called(3); 113335863739SMike Smith 1134ffb37f33SScott Long *fibphys = segs[0].ds_addr; 113535863739SMike Smith } 113635863739SMike Smith 1137914da7d0SScott Long /* 11380b94a66eSMike Smith * Allocate and initialise commands/FIBs for this adapter. 113935863739SMike Smith */ 11400b94a66eSMike Smith static int 11410b94a66eSMike Smith aac_alloc_commands(struct aac_softc *sc) 114235863739SMike Smith { 114335863739SMike Smith struct aac_command *cm; 1144ffb37f33SScott Long struct aac_fibmap *fm; 11458480cc63SScott Long uint32_t fibphys; 1146ffb37f33SScott Long int i, error; 114735863739SMike Smith 1148a6d35632SScott Long debug_called(2); 114935863739SMike Smith 1150a6d35632SScott Long if (sc->total_fibs + AAC_FIB_COUNT > sc->aac_max_fibs) 1151ffb37f33SScott Long return (ENOMEM); 1152ffb37f33SScott Long 11538480cc63SScott Long fm = malloc(sizeof(struct aac_fibmap), M_AACBUF, M_NOWAIT|M_ZERO); 1154a6d35632SScott Long if (fm == NULL) 1155a6d35632SScott Long return (ENOMEM); 1156ffb37f33SScott Long 11570b94a66eSMike Smith /* allocate the FIBs in DMAable memory and load them */ 1158ffb37f33SScott Long if (bus_dmamem_alloc(sc->aac_fib_dmat, (void **)&fm->aac_fibs, 1159ffb37f33SScott Long BUS_DMA_NOWAIT, &fm->aac_fibmap)) { 116070545d1aSScott Long device_printf(sc->aac_dev, 116170545d1aSScott Long "Not enough contiguous memory available.\n"); 11628480cc63SScott Long free(fm, M_AACBUF); 11630b94a66eSMike Smith return (ENOMEM); 116435863739SMike Smith } 1165128aa5a0SScott Long 1166cd481291SScott Long /* Ignore errors since this doesn't bounce */ 1167cd481291SScott Long (void)bus_dmamap_load(sc->aac_fib_dmat, fm->aac_fibmap, fm->aac_fibs, 1168ffb37f33SScott Long AAC_FIB_COUNT * sizeof(struct aac_fib), 1169ffb37f33SScott Long aac_map_command_helper, &fibphys, 0); 1170128aa5a0SScott Long 11710b94a66eSMike Smith /* initialise constant fields in the command structure */ 1172ffb37f33SScott Long bzero(fm->aac_fibs, AAC_FIB_COUNT * sizeof(struct aac_fib)); 11730b94a66eSMike Smith for (i = 0; i < AAC_FIB_COUNT; i++) { 11748480cc63SScott Long cm = sc->aac_commands + sc->total_fibs; 1175ffb37f33SScott Long fm->aac_commands = cm; 117635863739SMike Smith cm->cm_sc = sc; 1177ffb37f33SScott Long cm->cm_fib = fm->aac_fibs + i; 11788480cc63SScott Long cm->cm_fibphys = fibphys + (i * sizeof(struct aac_fib)); 1179cb0d64b9SScott Long cm->cm_index = sc->total_fibs; 118035863739SMike Smith 1181ffb37f33SScott Long if ((error = bus_dmamap_create(sc->aac_buffer_dmat, 0, 1182ffb37f33SScott Long &cm->cm_datamap)) == 0) 118335863739SMike Smith aac_release_command(cm); 1184ffb37f33SScott Long else 11858480cc63SScott Long break; 11868480cc63SScott Long sc->total_fibs++; 118735863739SMike Smith } 1188ffb37f33SScott Long 11898480cc63SScott Long if (i > 0) { 1190ffb37f33SScott Long TAILQ_INSERT_TAIL(&sc->aac_fibmap_tqh, fm, fm_link); 1191a6d35632SScott Long debug(1, "total_fibs= %d\n", sc->total_fibs); 11920b94a66eSMike Smith return (0); 119335863739SMike Smith } 119435863739SMike Smith 11958480cc63SScott Long bus_dmamap_unload(sc->aac_fib_dmat, fm->aac_fibmap); 11968480cc63SScott Long bus_dmamem_free(sc->aac_fib_dmat, fm->aac_fibs, fm->aac_fibmap); 11978480cc63SScott Long free(fm, M_AACBUF); 11988480cc63SScott Long return (ENOMEM); 11998480cc63SScott Long } 12008480cc63SScott Long 1201914da7d0SScott Long /* 12020b94a66eSMike Smith * Free FIBs owned by this adapter. 120335863739SMike Smith */ 120435863739SMike Smith static void 12058480cc63SScott Long aac_free_commands(struct aac_softc *sc) 120635863739SMike Smith { 12078480cc63SScott Long struct aac_fibmap *fm; 1208ffb37f33SScott Long struct aac_command *cm; 120935863739SMike Smith int i; 121035863739SMike Smith 121135863739SMike Smith debug_called(1); 121235863739SMike Smith 12138480cc63SScott Long while ((fm = TAILQ_FIRST(&sc->aac_fibmap_tqh)) != NULL) { 12148480cc63SScott Long 12158480cc63SScott Long TAILQ_REMOVE(&sc->aac_fibmap_tqh, fm, fm_link); 12168480cc63SScott Long /* 12178480cc63SScott Long * We check against total_fibs to handle partially 12188480cc63SScott Long * allocated blocks. 12198480cc63SScott Long */ 12208480cc63SScott Long for (i = 0; i < AAC_FIB_COUNT && sc->total_fibs--; i++) { 1221ffb37f33SScott Long cm = fm->aac_commands + i; 1222ffb37f33SScott Long bus_dmamap_destroy(sc->aac_buffer_dmat, cm->cm_datamap); 1223ffb37f33SScott Long } 1224ffb37f33SScott Long bus_dmamap_unload(sc->aac_fib_dmat, fm->aac_fibmap); 1225ffb37f33SScott Long bus_dmamem_free(sc->aac_fib_dmat, fm->aac_fibs, fm->aac_fibmap); 12268480cc63SScott Long free(fm, M_AACBUF); 12278480cc63SScott Long } 122835863739SMike Smith } 122935863739SMike Smith 1230914da7d0SScott Long /* 123135863739SMike Smith * Command-mapping helper function - populate this command's s/g table. 123235863739SMike Smith */ 123335863739SMike Smith static void 123435863739SMike Smith aac_map_command_sg(void *arg, bus_dma_segment_t *segs, int nseg, int error) 123535863739SMike Smith { 1236cd481291SScott Long struct aac_softc *sc; 1237914da7d0SScott Long struct aac_command *cm; 1238914da7d0SScott Long struct aac_fib *fib; 123935863739SMike Smith int i; 124035863739SMike Smith 124135863739SMike Smith debug_called(3); 124235863739SMike Smith 1243914da7d0SScott Long cm = (struct aac_command *)arg; 1244cd481291SScott Long sc = cm->cm_sc; 1245914da7d0SScott Long fib = cm->cm_fib; 1246914da7d0SScott Long 124735863739SMike Smith /* copy into the FIB */ 1248b85f5808SScott Long if (cm->cm_sgtable != NULL) { 1249b85f5808SScott Long if ((cm->cm_sc->flags & AAC_FLAGS_SG_64BIT) == 0) { 1250b85f5808SScott Long struct aac_sg_table *sg; 1251b85f5808SScott Long sg = cm->cm_sgtable; 125235863739SMike Smith sg->SgCount = nseg; 125335863739SMike Smith for (i = 0; i < nseg; i++) { 125435863739SMike Smith sg->SgEntry[i].SgAddress = segs[i].ds_addr; 125535863739SMike Smith sg->SgEntry[i].SgByteCount = segs[i].ds_len; 125635863739SMike Smith } 125735863739SMike Smith /* update the FIB size for the s/g count */ 125835863739SMike Smith fib->Header.Size += nseg * sizeof(struct aac_sg_entry); 1259b85f5808SScott Long } else { 1260b85f5808SScott Long struct aac_sg_table64 *sg; 1261b85f5808SScott Long sg = (struct aac_sg_table64 *)cm->cm_sgtable; 1262b85f5808SScott Long sg->SgCount = nseg; 1263b85f5808SScott Long for (i = 0; i < nseg; i++) { 1264b85f5808SScott Long sg->SgEntry64[i].SgAddress = segs[i].ds_addr; 1265b85f5808SScott Long sg->SgEntry64[i].SgByteCount = segs[i].ds_len; 126635863739SMike Smith } 1267b85f5808SScott Long /* update the FIB size for the s/g count */ 1268b85f5808SScott Long fib->Header.Size += nseg*sizeof(struct aac_sg_entry64); 1269b85f5808SScott Long } 1270b85f5808SScott Long } 127135863739SMike Smith 1272cd481291SScott Long /* Fix up the address values in the FIB. Use the command array index 1273cd481291SScott Long * instead of a pointer since these fields are only 32 bits. Shift 1274cd481291SScott Long * the SenderFibAddress over to make room for the fast response bit. 127535863739SMike Smith */ 1276cd481291SScott Long cm->cm_fib->Header.SenderFibAddress = (cm->cm_index << 1); 1277cd481291SScott Long cm->cm_fib->Header.ReceiverFibAddress = cm->cm_fibphys; 127835863739SMike Smith 1279cd481291SScott Long /* save a pointer to the command for speedy reverse-lookup */ 1280cd481291SScott Long cm->cm_fib->Header.SenderData = cm->cm_index; 128135863739SMike Smith 128235863739SMike Smith if (cm->cm_flags & AAC_CMD_DATAIN) 1283c6eafcf2SScott Long bus_dmamap_sync(sc->aac_buffer_dmat, cm->cm_datamap, 1284c6eafcf2SScott Long BUS_DMASYNC_PREREAD); 128535863739SMike Smith if (cm->cm_flags & AAC_CMD_DATAOUT) 1286c6eafcf2SScott Long bus_dmamap_sync(sc->aac_buffer_dmat, cm->cm_datamap, 1287c6eafcf2SScott Long BUS_DMASYNC_PREWRITE); 128835863739SMike Smith cm->cm_flags |= AAC_CMD_MAPPED; 1289cd481291SScott Long 1290cd481291SScott Long /* put the FIB on the outbound queue */ 1291cd481291SScott Long if (aac_enqueue_fib(sc, cm->cm_queue, cm) == EBUSY) 1292cd481291SScott Long aac_requeue_ready(cm); 1293cd481291SScott Long 1294cd481291SScott Long return; 129535863739SMike Smith } 129635863739SMike Smith 1297914da7d0SScott Long /* 129835863739SMike Smith * Unmap a command from controller-visible space. 129935863739SMike Smith */ 130035863739SMike Smith static void 130135863739SMike Smith aac_unmap_command(struct aac_command *cm) 130235863739SMike Smith { 1303914da7d0SScott Long struct aac_softc *sc; 130435863739SMike Smith 130535863739SMike Smith debug_called(2); 130635863739SMike Smith 1307914da7d0SScott Long sc = cm->cm_sc; 1308914da7d0SScott Long 130935863739SMike Smith if (!(cm->cm_flags & AAC_CMD_MAPPED)) 131035863739SMike Smith return; 131135863739SMike Smith 131235863739SMike Smith if (cm->cm_datalen != 0) { 131335863739SMike Smith if (cm->cm_flags & AAC_CMD_DATAIN) 1314c6eafcf2SScott Long bus_dmamap_sync(sc->aac_buffer_dmat, cm->cm_datamap, 1315c6eafcf2SScott Long BUS_DMASYNC_POSTREAD); 131635863739SMike Smith if (cm->cm_flags & AAC_CMD_DATAOUT) 1317c6eafcf2SScott Long bus_dmamap_sync(sc->aac_buffer_dmat, cm->cm_datamap, 1318c6eafcf2SScott Long BUS_DMASYNC_POSTWRITE); 131935863739SMike Smith 132035863739SMike Smith bus_dmamap_unload(sc->aac_buffer_dmat, cm->cm_datamap); 132135863739SMike Smith } 132235863739SMike Smith cm->cm_flags &= ~AAC_CMD_MAPPED; 132335863739SMike Smith } 132435863739SMike Smith 1325914da7d0SScott Long /* 1326914da7d0SScott Long * Hardware Interface 1327914da7d0SScott Long */ 132835863739SMike Smith 1329914da7d0SScott Long /* 133035863739SMike Smith * Initialise the adapter. 133135863739SMike Smith */ 133235863739SMike Smith static void 133335863739SMike Smith aac_common_map(void *arg, bus_dma_segment_t *segs, int nseg, int error) 133435863739SMike Smith { 1335914da7d0SScott Long struct aac_softc *sc; 133635863739SMike Smith 133735863739SMike Smith debug_called(1); 133835863739SMike Smith 1339914da7d0SScott Long sc = (struct aac_softc *)arg; 1340914da7d0SScott Long 134135863739SMike Smith sc->aac_common_busaddr = segs[0].ds_addr; 134235863739SMike Smith } 134335863739SMike Smith 1344a6d35632SScott Long static int 1345a6d35632SScott Long aac_check_firmware(struct aac_softc *sc) 1346a6d35632SScott Long { 1347a6d35632SScott Long u_int32_t major, minor, options; 1348a6d35632SScott Long 1349a6d35632SScott Long debug_called(1); 1350a6d35632SScott Long 1351fe94b852SScott Long /* 1352fe94b852SScott Long * Retrieve the firmware version numbers. Dell PERC2/QC cards with 1353fe94b852SScott Long * firmware version 1.x are not compatible with this driver. 1354fe94b852SScott Long */ 1355a6d35632SScott Long if (sc->flags & AAC_FLAGS_PERC2QC) { 1356fe94b852SScott Long if (aac_sync_command(sc, AAC_MONKER_GETKERNVER, 0, 0, 0, 0, 1357fe94b852SScott Long NULL)) { 1358fe94b852SScott Long device_printf(sc->aac_dev, 1359fe94b852SScott Long "Error reading firmware version\n"); 1360fe94b852SScott Long return (EIO); 1361fe94b852SScott Long } 1362fe94b852SScott Long 1363fe94b852SScott Long /* These numbers are stored as ASCII! */ 1364a6d35632SScott Long major = (AAC_GET_MAILBOX(sc, 1) & 0xff) - 0x30; 1365a6d35632SScott Long minor = (AAC_GET_MAILBOX(sc, 2) & 0xff) - 0x30; 1366fe94b852SScott Long if (major == 1) { 1367fe94b852SScott Long device_printf(sc->aac_dev, 1368fe94b852SScott Long "Firmware version %d.%d is not supported.\n", 1369fe94b852SScott Long major, minor); 1370fe94b852SScott Long return (EINVAL); 1371fe94b852SScott Long } 1372fe94b852SScott Long } 1373fe94b852SScott Long 1374a6d35632SScott Long /* 1375a6d35632SScott Long * Retrieve the capabilities/supported options word so we know what 1376a6d35632SScott Long * work-arounds to enable. 1377a6d35632SScott Long */ 1378a6d35632SScott Long if (aac_sync_command(sc, AAC_MONKER_GETINFO, 0, 0, 0, 0, NULL)) { 1379a6d35632SScott Long device_printf(sc->aac_dev, "RequestAdapterInfo failed\n"); 1380a6d35632SScott Long return (EIO); 1381a6d35632SScott Long } 1382a6d35632SScott Long options = AAC_GET_MAILBOX(sc, 1); 1383a6d35632SScott Long sc->supported_options = options; 1384a6d35632SScott Long 1385a6d35632SScott Long if ((options & AAC_SUPPORTED_4GB_WINDOW) != 0 && 1386a6d35632SScott Long (sc->flags & AAC_FLAGS_NO4GB) == 0) 1387a6d35632SScott Long sc->flags |= AAC_FLAGS_4GB_WINDOW; 1388a6d35632SScott Long if (options & AAC_SUPPORTED_NONDASD) 1389a6d35632SScott Long sc->flags |= AAC_FLAGS_ENABLE_CAM; 1390cd481291SScott Long if ((options & AAC_SUPPORTED_SGMAP_HOST64) != 0 1391cd481291SScott Long && (sizeof(bus_addr_t) > 4)) { 1392a6d35632SScott Long device_printf(sc->aac_dev, "Enabling 64-bit address support\n"); 1393a6d35632SScott Long sc->flags |= AAC_FLAGS_SG_64BIT; 1394a6d35632SScott Long } 1395a6d35632SScott Long 1396a6d35632SScott Long /* Check for broken hardware that does a lower number of commands */ 1397a6d35632SScott Long if ((sc->flags & AAC_FLAGS_256FIBS) == 0) 1398a6d35632SScott Long sc->aac_max_fibs = AAC_MAX_FIBS; 1399a6d35632SScott Long else 1400a6d35632SScott Long sc->aac_max_fibs = 256; 1401a6d35632SScott Long 1402fe94b852SScott Long return (0); 1403fe94b852SScott Long } 1404fe94b852SScott Long 140535863739SMike Smith static int 140635863739SMike Smith aac_init(struct aac_softc *sc) 140735863739SMike Smith { 140835863739SMike Smith struct aac_adapter_init *ip; 140935863739SMike Smith time_t then; 1410b88ffdc8SScott Long u_int32_t code, qoffset; 1411a6d35632SScott Long int error; 141235863739SMike Smith 141335863739SMike Smith debug_called(1); 141435863739SMike Smith 141535863739SMike Smith /* 141635863739SMike Smith * First wait for the adapter to come ready. 141735863739SMike Smith */ 141835863739SMike Smith then = time_second; 141935863739SMike Smith do { 142035863739SMike Smith code = AAC_GET_FWSTATUS(sc); 142135863739SMike Smith if (code & AAC_SELF_TEST_FAILED) { 142235863739SMike Smith device_printf(sc->aac_dev, "FATAL: selftest failed\n"); 142335863739SMike Smith return(ENXIO); 142435863739SMike Smith } 142535863739SMike Smith if (code & AAC_KERNEL_PANIC) { 1426914da7d0SScott Long device_printf(sc->aac_dev, 1427914da7d0SScott Long "FATAL: controller kernel panic\n"); 142835863739SMike Smith return(ENXIO); 142935863739SMike Smith } 143035863739SMike Smith if (time_second > (then + AAC_BOOT_TIMEOUT)) { 1431914da7d0SScott Long device_printf(sc->aac_dev, 1432914da7d0SScott Long "FATAL: controller not coming ready, " 1433c6eafcf2SScott Long "status %x\n", code); 143435863739SMike Smith return(ENXIO); 143535863739SMike Smith } 143635863739SMike Smith } while (!(code & AAC_UP_AND_RUNNING)); 143735863739SMike Smith 1438a6d35632SScott Long error = ENOMEM; 1439a6d35632SScott Long /* 1440a6d35632SScott Long * Create DMA tag for mapping buffers into controller-addressable space. 1441a6d35632SScott Long */ 1442a6d35632SScott Long if (bus_dma_tag_create(sc->aac_parent_dmat, /* parent */ 1443a6d35632SScott Long 1, 0, /* algnmnt, boundary */ 1444a6d35632SScott Long (sc->flags & AAC_FLAGS_SG_64BIT) ? 1445a6d35632SScott Long BUS_SPACE_MAXADDR : 1446a6d35632SScott Long BUS_SPACE_MAXADDR_32BIT, /* lowaddr */ 1447a6d35632SScott Long BUS_SPACE_MAXADDR, /* highaddr */ 1448a6d35632SScott Long NULL, NULL, /* filter, filterarg */ 1449a6d35632SScott Long MAXBSIZE, /* maxsize */ 1450a6d35632SScott Long AAC_MAXSGENTRIES, /* nsegments */ 1451a6d35632SScott Long MAXBSIZE, /* maxsegsize */ 1452a6d35632SScott Long BUS_DMA_ALLOCNOW, /* flags */ 1453f6b1c44dSScott Long busdma_lock_mutex, /* lockfunc */ 1454f6b1c44dSScott Long &sc->aac_io_lock, /* lockfuncarg */ 1455a6d35632SScott Long &sc->aac_buffer_dmat)) { 1456a6d35632SScott Long device_printf(sc->aac_dev, "can't allocate buffer DMA tag\n"); 1457a6d35632SScott Long goto out; 1458a6d35632SScott Long } 1459a6d35632SScott Long 1460a6d35632SScott Long /* 1461a6d35632SScott Long * Create DMA tag for mapping FIBs into controller-addressable space.. 1462a6d35632SScott Long */ 1463a6d35632SScott Long if (bus_dma_tag_create(sc->aac_parent_dmat, /* parent */ 1464a6d35632SScott Long 1, 0, /* algnmnt, boundary */ 1465a6d35632SScott Long (sc->flags & AAC_FLAGS_4GB_WINDOW) ? 1466a6d35632SScott Long BUS_SPACE_MAXADDR_32BIT : 1467a6d35632SScott Long 0x7fffffff, /* lowaddr */ 1468a6d35632SScott Long BUS_SPACE_MAXADDR, /* highaddr */ 1469a6d35632SScott Long NULL, NULL, /* filter, filterarg */ 1470a6d35632SScott Long AAC_FIB_COUNT * 1471a6d35632SScott Long sizeof(struct aac_fib), /* maxsize */ 1472a6d35632SScott Long 1, /* nsegments */ 1473a6d35632SScott Long AAC_FIB_COUNT * 1474a6d35632SScott Long sizeof(struct aac_fib), /* maxsegsize */ 1475a6d35632SScott Long BUS_DMA_ALLOCNOW, /* flags */ 1476f6b1c44dSScott Long NULL, NULL, /* No locking needed */ 1477a6d35632SScott Long &sc->aac_fib_dmat)) { 1478a6d35632SScott Long device_printf(sc->aac_dev, "can't allocate FIB DMA tag\n");; 1479a6d35632SScott Long goto out; 1480a6d35632SScott Long } 1481a6d35632SScott Long 148235863739SMike Smith /* 148335863739SMike Smith * Create DMA tag for the common structure and allocate it. 148435863739SMike Smith */ 148535863739SMike Smith if (bus_dma_tag_create(sc->aac_parent_dmat, /* parent */ 1486c6eafcf2SScott Long 1, 0, /* algnmnt, boundary */ 1487a6d35632SScott Long (sc->flags & AAC_FLAGS_4GB_WINDOW) ? 1488a6d35632SScott Long BUS_SPACE_MAXADDR_32BIT : 1489a6d35632SScott Long 0x7fffffff, /* lowaddr */ 149035863739SMike Smith BUS_SPACE_MAXADDR, /* highaddr */ 149135863739SMike Smith NULL, NULL, /* filter, filterarg */ 1492ffb37f33SScott Long 8192 + sizeof(struct aac_common), /* maxsize */ 1493914da7d0SScott Long 1, /* nsegments */ 149435863739SMike Smith BUS_SPACE_MAXSIZE_32BIT, /* maxsegsize */ 1495a6d35632SScott Long BUS_DMA_ALLOCNOW, /* flags */ 1496f6b1c44dSScott Long NULL, NULL, /* No locking needed */ 149735863739SMike Smith &sc->aac_common_dmat)) { 1498914da7d0SScott Long device_printf(sc->aac_dev, 1499914da7d0SScott Long "can't allocate common structure DMA tag\n"); 1500a6d35632SScott Long goto out; 150135863739SMike Smith } 1502c6eafcf2SScott Long if (bus_dmamem_alloc(sc->aac_common_dmat, (void **)&sc->aac_common, 1503c6eafcf2SScott Long BUS_DMA_NOWAIT, &sc->aac_common_dmamap)) { 150435863739SMike Smith device_printf(sc->aac_dev, "can't allocate common structure\n"); 1505a6d35632SScott Long goto out; 150635863739SMike Smith } 1507ffb37f33SScott Long 1508ffb37f33SScott Long /* 1509ffb37f33SScott Long * Work around a bug in the 2120 and 2200 that cannot DMA commands 1510ffb37f33SScott Long * below address 8192 in physical memory. 1511ffb37f33SScott Long * XXX If the padding is not needed, can it be put to use instead 1512ffb37f33SScott Long * of ignored? 1513ffb37f33SScott Long */ 1514cd481291SScott Long (void)bus_dmamap_load(sc->aac_common_dmat, sc->aac_common_dmamap, 1515ffb37f33SScott Long sc->aac_common, 8192 + sizeof(*sc->aac_common), 1516ffb37f33SScott Long aac_common_map, sc, 0); 1517ffb37f33SScott Long 1518ffb37f33SScott Long if (sc->aac_common_busaddr < 8192) { 1519ffb37f33SScott Long (uint8_t *)sc->aac_common += 8192; 1520ffb37f33SScott Long sc->aac_common_busaddr += 8192; 1521ffb37f33SScott Long } 152235863739SMike Smith bzero(sc->aac_common, sizeof(*sc->aac_common)); 152335863739SMike Smith 1524ffb37f33SScott Long /* Allocate some FIBs and associated command structs */ 1525ffb37f33SScott Long TAILQ_INIT(&sc->aac_fibmap_tqh); 1526ffb37f33SScott Long sc->aac_commands = malloc(AAC_MAX_FIBS * sizeof(struct aac_command), 15278480cc63SScott Long M_AACBUF, M_WAITOK|M_ZERO); 15288480cc63SScott Long while (sc->total_fibs < AAC_PREALLOCATE_FIBS) { 1529ffb37f33SScott Long if (aac_alloc_commands(sc) != 0) 1530ffb37f33SScott Long break; 1531ffb37f33SScott Long } 1532ffb37f33SScott Long if (sc->total_fibs == 0) 1533a6d35632SScott Long goto out; 1534ffb37f33SScott Long 153535863739SMike Smith /* 1536914da7d0SScott Long * Fill in the init structure. This tells the adapter about the 1537914da7d0SScott Long * physical location of various important shared data structures. 153835863739SMike Smith */ 153935863739SMike Smith ip = &sc->aac_common->ac_init; 154035863739SMike Smith ip->InitStructRevision = AAC_INIT_STRUCT_REVISION; 1541f30ac74cSScott Long ip->MiniPortRevision = AAC_INIT_STRUCT_MINIPORT_REVISION; 154235863739SMike Smith 1543c6eafcf2SScott Long ip->AdapterFibsPhysicalAddress = sc->aac_common_busaddr + 1544c6eafcf2SScott Long offsetof(struct aac_common, ac_fibs); 1545149af931SScott Long ip->AdapterFibsVirtualAddress = 0; 154635863739SMike Smith ip->AdapterFibsSize = AAC_ADAPTER_FIBS * sizeof(struct aac_fib); 154735863739SMike Smith ip->AdapterFibAlign = sizeof(struct aac_fib); 154835863739SMike Smith 1549c6eafcf2SScott Long ip->PrintfBufferAddress = sc->aac_common_busaddr + 1550c6eafcf2SScott Long offsetof(struct aac_common, ac_printf); 155135863739SMike Smith ip->PrintfBufferSize = AAC_PRINTF_BUFSIZE; 155235863739SMike Smith 15534b00f859SScott Long /* 15544b00f859SScott Long * The adapter assumes that pages are 4K in size, except on some 15554b00f859SScott Long * broken firmware versions that do the page->byte conversion twice, 15564b00f859SScott Long * therefore 'assuming' that this value is in 16MB units (2^24). 15574b00f859SScott Long * Round up since the granularity is so high. 15584b00f859SScott Long */ 1559f30ac74cSScott Long ip->HostPhysMemPages = ctob(physmem) / AAC_PAGE_SIZE; 15604b00f859SScott Long if (sc->flags & AAC_FLAGS_BROKEN_MEMMAP) { 15614b00f859SScott Long ip->HostPhysMemPages = 15624b00f859SScott Long (ip->HostPhysMemPages + AAC_PAGE_SIZE) / AAC_PAGE_SIZE; 1563204c0befSScott Long } 156435863739SMike Smith ip->HostElapsedSeconds = time_second; /* reset later if invalid */ 156535863739SMike Smith 156635863739SMike Smith /* 1567c6eafcf2SScott Long * Initialise FIB queues. Note that it appears that the layout of the 1568c6eafcf2SScott Long * indexes and the segmentation of the entries may be mandated by the 1569c6eafcf2SScott Long * adapter, which is only told about the base of the queue index fields. 157035863739SMike Smith * 157135863739SMike Smith * The initial values of the indices are assumed to inform the adapter 1572914da7d0SScott Long * of the sizes of the respective queues, and theoretically it could 1573914da7d0SScott Long * work out the entire layout of the queue structures from this. We 1574914da7d0SScott Long * take the easy route and just lay this area out like everyone else 1575914da7d0SScott Long * does. 157635863739SMike Smith * 1577914da7d0SScott Long * The Linux driver uses a much more complex scheme whereby several 1578914da7d0SScott Long * header records are kept for each queue. We use a couple of generic 1579914da7d0SScott Long * list manipulation functions which 'know' the size of each list by 1580914da7d0SScott Long * virtue of a table. 158135863739SMike Smith */ 1582b88ffdc8SScott Long qoffset = offsetof(struct aac_common, ac_qbuf) + AAC_QUEUE_ALIGN; 1583b88ffdc8SScott Long qoffset &= (AAC_QUEUE_ALIGN - 1); 1584b88ffdc8SScott Long sc->aac_queues = (struct aac_queue_table *)((uintptr_t)sc->aac_common + qoffset); 1585b88ffdc8SScott Long ip->CommHeaderAddress = sc->aac_common_busaddr + qoffset; 158635863739SMike Smith 1587c6eafcf2SScott Long sc->aac_queues->qt_qindex[AAC_HOST_NORM_CMD_QUEUE][AAC_PRODUCER_INDEX] = 1588c6eafcf2SScott Long AAC_HOST_NORM_CMD_ENTRIES; 1589c6eafcf2SScott Long sc->aac_queues->qt_qindex[AAC_HOST_NORM_CMD_QUEUE][AAC_CONSUMER_INDEX] = 1590c6eafcf2SScott Long AAC_HOST_NORM_CMD_ENTRIES; 1591c6eafcf2SScott Long sc->aac_queues->qt_qindex[AAC_HOST_HIGH_CMD_QUEUE][AAC_PRODUCER_INDEX] = 1592c6eafcf2SScott Long AAC_HOST_HIGH_CMD_ENTRIES; 1593c6eafcf2SScott Long sc->aac_queues->qt_qindex[AAC_HOST_HIGH_CMD_QUEUE][AAC_CONSUMER_INDEX] = 1594c6eafcf2SScott Long AAC_HOST_HIGH_CMD_ENTRIES; 1595c6eafcf2SScott Long sc->aac_queues->qt_qindex[AAC_ADAP_NORM_CMD_QUEUE][AAC_PRODUCER_INDEX] = 1596c6eafcf2SScott Long AAC_ADAP_NORM_CMD_ENTRIES; 1597c6eafcf2SScott Long sc->aac_queues->qt_qindex[AAC_ADAP_NORM_CMD_QUEUE][AAC_CONSUMER_INDEX] = 1598c6eafcf2SScott Long AAC_ADAP_NORM_CMD_ENTRIES; 1599c6eafcf2SScott Long sc->aac_queues->qt_qindex[AAC_ADAP_HIGH_CMD_QUEUE][AAC_PRODUCER_INDEX] = 1600c6eafcf2SScott Long AAC_ADAP_HIGH_CMD_ENTRIES; 1601c6eafcf2SScott Long sc->aac_queues->qt_qindex[AAC_ADAP_HIGH_CMD_QUEUE][AAC_CONSUMER_INDEX] = 1602c6eafcf2SScott Long AAC_ADAP_HIGH_CMD_ENTRIES; 1603c6eafcf2SScott Long sc->aac_queues->qt_qindex[AAC_HOST_NORM_RESP_QUEUE][AAC_PRODUCER_INDEX]= 1604c6eafcf2SScott Long AAC_HOST_NORM_RESP_ENTRIES; 1605c6eafcf2SScott Long sc->aac_queues->qt_qindex[AAC_HOST_NORM_RESP_QUEUE][AAC_CONSUMER_INDEX]= 1606c6eafcf2SScott Long AAC_HOST_NORM_RESP_ENTRIES; 1607c6eafcf2SScott Long sc->aac_queues->qt_qindex[AAC_HOST_HIGH_RESP_QUEUE][AAC_PRODUCER_INDEX]= 1608c6eafcf2SScott Long AAC_HOST_HIGH_RESP_ENTRIES; 1609c6eafcf2SScott Long sc->aac_queues->qt_qindex[AAC_HOST_HIGH_RESP_QUEUE][AAC_CONSUMER_INDEX]= 1610c6eafcf2SScott Long AAC_HOST_HIGH_RESP_ENTRIES; 1611c6eafcf2SScott Long sc->aac_queues->qt_qindex[AAC_ADAP_NORM_RESP_QUEUE][AAC_PRODUCER_INDEX]= 1612c6eafcf2SScott Long AAC_ADAP_NORM_RESP_ENTRIES; 1613c6eafcf2SScott Long sc->aac_queues->qt_qindex[AAC_ADAP_NORM_RESP_QUEUE][AAC_CONSUMER_INDEX]= 1614c6eafcf2SScott Long AAC_ADAP_NORM_RESP_ENTRIES; 1615c6eafcf2SScott Long sc->aac_queues->qt_qindex[AAC_ADAP_HIGH_RESP_QUEUE][AAC_PRODUCER_INDEX]= 1616c6eafcf2SScott Long AAC_ADAP_HIGH_RESP_ENTRIES; 1617c6eafcf2SScott Long sc->aac_queues->qt_qindex[AAC_ADAP_HIGH_RESP_QUEUE][AAC_CONSUMER_INDEX]= 1618c6eafcf2SScott Long AAC_ADAP_HIGH_RESP_ENTRIES; 1619c6eafcf2SScott Long sc->aac_qentries[AAC_HOST_NORM_CMD_QUEUE] = 1620c6eafcf2SScott Long &sc->aac_queues->qt_HostNormCmdQueue[0]; 1621c6eafcf2SScott Long sc->aac_qentries[AAC_HOST_HIGH_CMD_QUEUE] = 1622c6eafcf2SScott Long &sc->aac_queues->qt_HostHighCmdQueue[0]; 1623c6eafcf2SScott Long sc->aac_qentries[AAC_ADAP_NORM_CMD_QUEUE] = 1624c6eafcf2SScott Long &sc->aac_queues->qt_AdapNormCmdQueue[0]; 1625c6eafcf2SScott Long sc->aac_qentries[AAC_ADAP_HIGH_CMD_QUEUE] = 1626c6eafcf2SScott Long &sc->aac_queues->qt_AdapHighCmdQueue[0]; 1627c6eafcf2SScott Long sc->aac_qentries[AAC_HOST_NORM_RESP_QUEUE] = 1628c6eafcf2SScott Long &sc->aac_queues->qt_HostNormRespQueue[0]; 1629c6eafcf2SScott Long sc->aac_qentries[AAC_HOST_HIGH_RESP_QUEUE] = 1630c6eafcf2SScott Long &sc->aac_queues->qt_HostHighRespQueue[0]; 1631c6eafcf2SScott Long sc->aac_qentries[AAC_ADAP_NORM_RESP_QUEUE] = 1632c6eafcf2SScott Long &sc->aac_queues->qt_AdapNormRespQueue[0]; 1633c6eafcf2SScott Long sc->aac_qentries[AAC_ADAP_HIGH_RESP_QUEUE] = 1634c6eafcf2SScott Long &sc->aac_queues->qt_AdapHighRespQueue[0]; 163535863739SMike Smith 163635863739SMike Smith /* 163735863739SMike Smith * Do controller-type-specific initialisation 163835863739SMike Smith */ 163935863739SMike Smith switch (sc->aac_hwif) { 164035863739SMike Smith case AAC_HWIF_I960RX: 164135863739SMike Smith AAC_SETREG4(sc, AAC_RX_ODBR, ~0); 164235863739SMike Smith break; 164335863739SMike Smith } 164435863739SMike Smith 164535863739SMike Smith /* 164635863739SMike Smith * Give the init structure to the controller. 164735863739SMike Smith */ 164835863739SMike Smith if (aac_sync_command(sc, AAC_MONKER_INITSTRUCT, 1649914da7d0SScott Long sc->aac_common_busaddr + 1650914da7d0SScott Long offsetof(struct aac_common, ac_init), 0, 0, 0, 1651914da7d0SScott Long NULL)) { 1652914da7d0SScott Long device_printf(sc->aac_dev, 1653914da7d0SScott Long "error establishing init structure\n"); 1654a6d35632SScott Long error = EIO; 1655a6d35632SScott Long goto out; 165635863739SMike Smith } 165735863739SMike Smith 1658a6d35632SScott Long error = 0; 1659a6d35632SScott Long out: 1660a6d35632SScott Long return(error); 166135863739SMike Smith } 166235863739SMike Smith 1663914da7d0SScott Long /* 166435863739SMike Smith * Send a synchronous command to the controller and wait for a result. 166535863739SMike Smith */ 166635863739SMike Smith static int 166735863739SMike Smith aac_sync_command(struct aac_softc *sc, u_int32_t command, 166835863739SMike Smith u_int32_t arg0, u_int32_t arg1, u_int32_t arg2, u_int32_t arg3, 166935863739SMike Smith u_int32_t *sp) 167035863739SMike Smith { 167135863739SMike Smith time_t then; 167235863739SMike Smith u_int32_t status; 167335863739SMike Smith 167435863739SMike Smith debug_called(3); 167535863739SMike Smith 167635863739SMike Smith /* populate the mailbox */ 167735863739SMike Smith AAC_SET_MAILBOX(sc, command, arg0, arg1, arg2, arg3); 167835863739SMike Smith 167935863739SMike Smith /* ensure the sync command doorbell flag is cleared */ 168035863739SMike Smith AAC_CLEAR_ISTATUS(sc, AAC_DB_SYNC_COMMAND); 168135863739SMike Smith 168235863739SMike Smith /* then set it to signal the adapter */ 168335863739SMike Smith AAC_QNOTIFY(sc, AAC_DB_SYNC_COMMAND); 168435863739SMike Smith 168535863739SMike Smith /* spin waiting for the command to complete */ 168635863739SMike Smith then = time_second; 168735863739SMike Smith do { 168835863739SMike Smith if (time_second > (then + AAC_IMMEDIATE_TIMEOUT)) { 1689a6d35632SScott Long debug(1, "timed out"); 169035863739SMike Smith return(EIO); 169135863739SMike Smith } 169235863739SMike Smith } while (!(AAC_GET_ISTATUS(sc) & AAC_DB_SYNC_COMMAND)); 169335863739SMike Smith 169435863739SMike Smith /* clear the completion flag */ 169535863739SMike Smith AAC_CLEAR_ISTATUS(sc, AAC_DB_SYNC_COMMAND); 169635863739SMike Smith 169735863739SMike Smith /* get the command status */ 1698a6d35632SScott Long status = AAC_GET_MAILBOX(sc, 0); 169935863739SMike Smith if (sp != NULL) 170035863739SMike Smith *sp = status; 17010b94a66eSMike Smith return(0); 170235863739SMike Smith } 170335863739SMike Smith 1704914da7d0SScott Long /* 1705cbfd045bSScott Long * Grab the sync fib area. 1706cbfd045bSScott Long */ 1707cbfd045bSScott Long int 1708fe3cb0e1SScott Long aac_alloc_sync_fib(struct aac_softc *sc, struct aac_fib **fib, int flags) 1709cbfd045bSScott Long { 1710cbfd045bSScott Long 1711cbfd045bSScott Long /* 1712cbfd045bSScott Long * If the force flag is set, the system is shutting down, or in 1713cbfd045bSScott Long * trouble. Ignore the mutex. 1714cbfd045bSScott Long */ 1715cbfd045bSScott Long if (!(flags & AAC_SYNC_LOCK_FORCE)) 1716cbfd045bSScott Long AAC_LOCK_ACQUIRE(&sc->aac_sync_lock); 1717cbfd045bSScott Long 1718cbfd045bSScott Long *fib = &sc->aac_common->ac_sync_fib; 1719cbfd045bSScott Long 1720cbfd045bSScott Long return (1); 1721cbfd045bSScott Long } 1722cbfd045bSScott Long 1723cbfd045bSScott Long /* 1724cbfd045bSScott Long * Release the sync fib area. 1725cbfd045bSScott Long */ 1726cbfd045bSScott Long void 1727cbfd045bSScott Long aac_release_sync_fib(struct aac_softc *sc) 1728cbfd045bSScott Long { 1729cbfd045bSScott Long 1730cbfd045bSScott Long AAC_LOCK_RELEASE(&sc->aac_sync_lock); 1731cbfd045bSScott Long } 1732cbfd045bSScott Long 1733cbfd045bSScott Long /* 173435863739SMike Smith * Send a synchronous FIB to the controller and wait for a result. 173535863739SMike Smith */ 1736cbfd045bSScott Long int 173735863739SMike Smith aac_sync_fib(struct aac_softc *sc, u_int32_t command, u_int32_t xferstate, 1738cbfd045bSScott Long struct aac_fib *fib, u_int16_t datasize) 173935863739SMike Smith { 174035863739SMike Smith debug_called(3); 174135863739SMike Smith 174235863739SMike Smith if (datasize > AAC_FIB_DATASIZE) 174335863739SMike Smith return(EINVAL); 174435863739SMike Smith 174535863739SMike Smith /* 174635863739SMike Smith * Set up the sync FIB 174735863739SMike Smith */ 1748914da7d0SScott Long fib->Header.XferState = AAC_FIBSTATE_HOSTOWNED | 1749914da7d0SScott Long AAC_FIBSTATE_INITIALISED | 1750c6eafcf2SScott Long AAC_FIBSTATE_EMPTY; 175135863739SMike Smith fib->Header.XferState |= xferstate; 175235863739SMike Smith fib->Header.Command = command; 175335863739SMike Smith fib->Header.StructType = AAC_FIBTYPE_TFIB; 175435863739SMike Smith fib->Header.Size = sizeof(struct aac_fib) + datasize; 175535863739SMike Smith fib->Header.SenderSize = sizeof(struct aac_fib); 1756b88ffdc8SScott Long fib->Header.SenderFibAddress = 0; /* Not needed */ 1757c6eafcf2SScott Long fib->Header.ReceiverFibAddress = sc->aac_common_busaddr + 1758914da7d0SScott Long offsetof(struct aac_common, 1759914da7d0SScott Long ac_sync_fib); 176035863739SMike Smith 176135863739SMike Smith /* 176235863739SMike Smith * Give the FIB to the controller, wait for a response. 176335863739SMike Smith */ 1764914da7d0SScott Long if (aac_sync_command(sc, AAC_MONKER_SYNCFIB, 1765914da7d0SScott Long fib->Header.ReceiverFibAddress, 0, 0, 0, NULL)) { 176635863739SMike Smith debug(2, "IO error"); 176735863739SMike Smith return(EIO); 176835863739SMike Smith } 176935863739SMike Smith 177035863739SMike Smith return (0); 177135863739SMike Smith } 177235863739SMike Smith 1773914da7d0SScott Long /* 177435863739SMike Smith * Adapter-space FIB queue manipulation 177535863739SMike Smith * 177635863739SMike Smith * Note that the queue implementation here is a little funky; neither the PI or 177735863739SMike Smith * CI will ever be zero. This behaviour is a controller feature. 177835863739SMike Smith */ 177935863739SMike Smith static struct { 178035863739SMike Smith int size; 178135863739SMike Smith int notify; 178235863739SMike Smith } aac_qinfo[] = { 178335863739SMike Smith {AAC_HOST_NORM_CMD_ENTRIES, AAC_DB_COMMAND_NOT_FULL}, 178435863739SMike Smith {AAC_HOST_HIGH_CMD_ENTRIES, 0}, 178535863739SMike Smith {AAC_ADAP_NORM_CMD_ENTRIES, AAC_DB_COMMAND_READY}, 178635863739SMike Smith {AAC_ADAP_HIGH_CMD_ENTRIES, 0}, 178735863739SMike Smith {AAC_HOST_NORM_RESP_ENTRIES, AAC_DB_RESPONSE_NOT_FULL}, 178835863739SMike Smith {AAC_HOST_HIGH_RESP_ENTRIES, 0}, 178935863739SMike Smith {AAC_ADAP_NORM_RESP_ENTRIES, AAC_DB_RESPONSE_READY}, 179035863739SMike Smith {AAC_ADAP_HIGH_RESP_ENTRIES, 0} 179135863739SMike Smith }; 179235863739SMike Smith 179335863739SMike Smith /* 1794c6eafcf2SScott Long * Atomically insert an entry into the nominated queue, returns 0 on success or 1795c6eafcf2SScott Long * EBUSY if the queue is full. 179635863739SMike Smith * 17970b94a66eSMike Smith * Note: it would be more efficient to defer notifying the controller in 1798914da7d0SScott Long * the case where we may be inserting several entries in rapid succession, 1799914da7d0SScott Long * but implementing this usefully may be difficult (it would involve a 1800c6eafcf2SScott Long * separate queue/notify interface). 180135863739SMike Smith */ 180235863739SMike Smith static int 1803f6c4dd3fSScott Long aac_enqueue_fib(struct aac_softc *sc, int queue, struct aac_command *cm) 180435863739SMike Smith { 180535863739SMike Smith u_int32_t pi, ci; 18069e2e96d8SScott Long int error; 1807f6c4dd3fSScott Long u_int32_t fib_size; 1808f6c4dd3fSScott Long u_int32_t fib_addr; 1809f6c4dd3fSScott Long 181036e0bf6eSScott Long debug_called(3); 181136e0bf6eSScott Long 1812f6c4dd3fSScott Long fib_size = cm->cm_fib->Header.Size; 1813f6c4dd3fSScott Long fib_addr = cm->cm_fib->Header.ReceiverFibAddress; 181435863739SMike Smith 181535863739SMike Smith /* get the producer/consumer indices */ 181635863739SMike Smith pi = sc->aac_queues->qt_qindex[queue][AAC_PRODUCER_INDEX]; 181735863739SMike Smith ci = sc->aac_queues->qt_qindex[queue][AAC_CONSUMER_INDEX]; 181835863739SMike Smith 181935863739SMike Smith /* wrap the queue? */ 182035863739SMike Smith if (pi >= aac_qinfo[queue].size) 182135863739SMike Smith pi = 0; 182235863739SMike Smith 182335863739SMike Smith /* check for queue full */ 182435863739SMike Smith if ((pi + 1) == ci) { 182535863739SMike Smith error = EBUSY; 182635863739SMike Smith goto out; 182735863739SMike Smith } 182835863739SMike Smith 182935863739SMike Smith /* populate queue entry */ 183035863739SMike Smith (sc->aac_qentries[queue] + pi)->aq_fib_size = fib_size; 183135863739SMike Smith (sc->aac_qentries[queue] + pi)->aq_fib_addr = fib_addr; 183235863739SMike Smith 183335863739SMike Smith /* update producer index */ 183435863739SMike Smith sc->aac_queues->qt_qindex[queue][AAC_PRODUCER_INDEX] = pi + 1; 183535863739SMike Smith 1836f6c4dd3fSScott Long /* 1837914da7d0SScott Long * To avoid a race with its completion interrupt, place this command on 1838914da7d0SScott Long * the busy queue prior to advertising it to the controller. 1839f6c4dd3fSScott Long */ 1840f6c4dd3fSScott Long aac_enqueue_busy(cm); 1841f6c4dd3fSScott Long 184235863739SMike Smith /* notify the adapter if we know how */ 184335863739SMike Smith if (aac_qinfo[queue].notify != 0) 184435863739SMike Smith AAC_QNOTIFY(sc, aac_qinfo[queue].notify); 184535863739SMike Smith 184635863739SMike Smith error = 0; 184735863739SMike Smith 184835863739SMike Smith out: 184935863739SMike Smith return(error); 185035863739SMike Smith } 185135863739SMike Smith 185235863739SMike Smith /* 185336e0bf6eSScott Long * Atomically remove one entry from the nominated queue, returns 0 on 185436e0bf6eSScott Long * success or ENOENT if the queue is empty. 185535863739SMike Smith */ 185635863739SMike Smith static int 1857c6eafcf2SScott Long aac_dequeue_fib(struct aac_softc *sc, int queue, u_int32_t *fib_size, 1858c6eafcf2SScott Long struct aac_fib **fib_addr) 185935863739SMike Smith { 186035863739SMike Smith u_int32_t pi, ci; 1861149af931SScott Long u_int32_t fib_index; 18629e2e96d8SScott Long int error; 1863f6c4dd3fSScott Long int notify; 186435863739SMike Smith 186535863739SMike Smith debug_called(3); 186635863739SMike Smith 186735863739SMike Smith /* get the producer/consumer indices */ 186835863739SMike Smith pi = sc->aac_queues->qt_qindex[queue][AAC_PRODUCER_INDEX]; 186935863739SMike Smith ci = sc->aac_queues->qt_qindex[queue][AAC_CONSUMER_INDEX]; 187035863739SMike Smith 187135863739SMike Smith /* check for queue empty */ 187235863739SMike Smith if (ci == pi) { 187335863739SMike Smith error = ENOENT; 187435863739SMike Smith goto out; 187535863739SMike Smith } 187635863739SMike Smith 1877f6c4dd3fSScott Long notify = 0; 1878f6c4dd3fSScott Long if (ci == pi + 1) 1879f6c4dd3fSScott Long notify++; 1880f6c4dd3fSScott Long 188135863739SMike Smith /* wrap the queue? */ 188235863739SMike Smith if (ci >= aac_qinfo[queue].size) 188335863739SMike Smith ci = 0; 188435863739SMike Smith 188535863739SMike Smith /* fetch the entry */ 188635863739SMike Smith *fib_size = (sc->aac_qentries[queue] + ci)->aq_fib_size; 1887149af931SScott Long 1888149af931SScott Long switch (queue) { 1889149af931SScott Long case AAC_HOST_NORM_CMD_QUEUE: 1890149af931SScott Long case AAC_HOST_HIGH_CMD_QUEUE: 1891149af931SScott Long /* 1892149af931SScott Long * The aq_fib_addr is only 32 bits wide so it can't be counted 1893149af931SScott Long * on to hold an address. For AIF's, the adapter assumes 1894149af931SScott Long * that it's giving us an address into the array of AIF fibs. 1895149af931SScott Long * Therefore, we have to convert it to an index. 1896149af931SScott Long */ 1897149af931SScott Long fib_index = (sc->aac_qentries[queue] + ci)->aq_fib_addr / 1898149af931SScott Long sizeof(struct aac_fib); 1899149af931SScott Long *fib_addr = &sc->aac_common->ac_fibs[fib_index]; 1900149af931SScott Long break; 1901149af931SScott Long 1902149af931SScott Long case AAC_HOST_NORM_RESP_QUEUE: 1903149af931SScott Long case AAC_HOST_HIGH_RESP_QUEUE: 1904149af931SScott Long { 1905149af931SScott Long struct aac_command *cm; 1906149af931SScott Long 1907149af931SScott Long /* 1908149af931SScott Long * As above, an index is used instead of an actual address. 1909149af931SScott Long * Gotta shift the index to account for the fast response 1910149af931SScott Long * bit. No other correction is needed since this value was 1911149af931SScott Long * originally provided by the driver via the SenderFibAddress 1912149af931SScott Long * field. 1913149af931SScott Long */ 1914149af931SScott Long fib_index = (sc->aac_qentries[queue] + ci)->aq_fib_addr; 1915149af931SScott Long cm = sc->aac_commands + (fib_index >> 1); 1916149af931SScott Long *fib_addr = cm->cm_fib; 191735863739SMike Smith 1918f30ac74cSScott Long /* 1919f30ac74cSScott Long * Is this a fast response? If it is, update the fib fields in 1920149af931SScott Long * local memory since the whole fib isn't DMA'd back up. 1921f30ac74cSScott Long */ 1922149af931SScott Long if (fib_index & 0x01) { 1923f30ac74cSScott Long (*fib_addr)->Header.XferState |= AAC_FIBSTATE_DONEADAP; 1924f30ac74cSScott Long *((u_int32_t*)((*fib_addr)->data)) = AAC_ERROR_NORMAL; 1925f30ac74cSScott Long } 1926149af931SScott Long break; 1927149af931SScott Long } 1928149af931SScott Long default: 1929149af931SScott Long panic("Invalid queue in aac_dequeue_fib()"); 1930149af931SScott Long break; 1931149af931SScott Long } 1932149af931SScott Long 193335863739SMike Smith /* update consumer index */ 193435863739SMike Smith sc->aac_queues->qt_qindex[queue][AAC_CONSUMER_INDEX] = ci + 1; 193535863739SMike Smith 193635863739SMike Smith /* if we have made the queue un-full, notify the adapter */ 1937f6c4dd3fSScott Long if (notify && (aac_qinfo[queue].notify != 0)) 193835863739SMike Smith AAC_QNOTIFY(sc, aac_qinfo[queue].notify); 193935863739SMike Smith error = 0; 194035863739SMike Smith 194135863739SMike Smith out: 194235863739SMike Smith return(error); 194335863739SMike Smith } 194435863739SMike Smith 1945914da7d0SScott Long /* 194636e0bf6eSScott Long * Put our response to an Adapter Initialed Fib on the response queue 194736e0bf6eSScott Long */ 194836e0bf6eSScott Long static int 194936e0bf6eSScott Long aac_enqueue_response(struct aac_softc *sc, int queue, struct aac_fib *fib) 195036e0bf6eSScott Long { 195136e0bf6eSScott Long u_int32_t pi, ci; 19529e2e96d8SScott Long int error; 195336e0bf6eSScott Long u_int32_t fib_size; 195436e0bf6eSScott Long u_int32_t fib_addr; 195536e0bf6eSScott Long 195636e0bf6eSScott Long debug_called(1); 195736e0bf6eSScott Long 195836e0bf6eSScott Long /* Tell the adapter where the FIB is */ 195936e0bf6eSScott Long fib_size = fib->Header.Size; 196036e0bf6eSScott Long fib_addr = fib->Header.SenderFibAddress; 196136e0bf6eSScott Long fib->Header.ReceiverFibAddress = fib_addr; 196236e0bf6eSScott Long 196336e0bf6eSScott Long /* get the producer/consumer indices */ 196436e0bf6eSScott Long pi = sc->aac_queues->qt_qindex[queue][AAC_PRODUCER_INDEX]; 196536e0bf6eSScott Long ci = sc->aac_queues->qt_qindex[queue][AAC_CONSUMER_INDEX]; 196636e0bf6eSScott Long 196736e0bf6eSScott Long /* wrap the queue? */ 196836e0bf6eSScott Long if (pi >= aac_qinfo[queue].size) 196936e0bf6eSScott Long pi = 0; 197036e0bf6eSScott Long 197136e0bf6eSScott Long /* check for queue full */ 197236e0bf6eSScott Long if ((pi + 1) == ci) { 197336e0bf6eSScott Long error = EBUSY; 197436e0bf6eSScott Long goto out; 197536e0bf6eSScott Long } 197636e0bf6eSScott Long 197736e0bf6eSScott Long /* populate queue entry */ 197836e0bf6eSScott Long (sc->aac_qentries[queue] + pi)->aq_fib_size = fib_size; 197936e0bf6eSScott Long (sc->aac_qentries[queue] + pi)->aq_fib_addr = fib_addr; 198036e0bf6eSScott Long 198136e0bf6eSScott Long /* update producer index */ 198236e0bf6eSScott Long sc->aac_queues->qt_qindex[queue][AAC_PRODUCER_INDEX] = pi + 1; 198336e0bf6eSScott Long 198436e0bf6eSScott Long /* notify the adapter if we know how */ 198536e0bf6eSScott Long if (aac_qinfo[queue].notify != 0) 198636e0bf6eSScott Long AAC_QNOTIFY(sc, aac_qinfo[queue].notify); 198736e0bf6eSScott Long 198836e0bf6eSScott Long error = 0; 198936e0bf6eSScott Long 199036e0bf6eSScott Long out: 199136e0bf6eSScott Long return(error); 199236e0bf6eSScott Long } 199336e0bf6eSScott Long 1994914da7d0SScott Long /* 19950b94a66eSMike Smith * Check for commands that have been outstanding for a suspiciously long time, 19960b94a66eSMike Smith * and complain about them. 19970b94a66eSMike Smith */ 19980b94a66eSMike Smith static void 19990b94a66eSMike Smith aac_timeout(struct aac_softc *sc) 20000b94a66eSMike Smith { 20010b94a66eSMike Smith struct aac_command *cm; 20020b94a66eSMike Smith time_t deadline; 20030b94a66eSMike Smith 2004f6c4dd3fSScott Long /* 200570545d1aSScott Long * Traverse the busy command list, bitch about late commands once 2006914da7d0SScott Long * only. 2007914da7d0SScott Long */ 20080b94a66eSMike Smith deadline = time_second - AAC_CMD_TIMEOUT; 20090b94a66eSMike Smith TAILQ_FOREACH(cm, &sc->aac_busy, cm_link) { 2010f6c4dd3fSScott Long if ((cm->cm_timestamp < deadline) 2011f6c4dd3fSScott Long /* && !(cm->cm_flags & AAC_CMD_TIMEDOUT) */) { 20120b94a66eSMike Smith cm->cm_flags |= AAC_CMD_TIMEDOUT; 2013914da7d0SScott Long device_printf(sc->aac_dev, 2014914da7d0SScott Long "COMMAND %p TIMEOUT AFTER %d SECONDS\n", 2015f6c4dd3fSScott Long cm, (int)(time_second-cm->cm_timestamp)); 20160b94a66eSMike Smith AAC_PRINT_FIB(sc, cm->cm_fib); 20170b94a66eSMike Smith } 20180b94a66eSMike Smith } 20190b94a66eSMike Smith 20200b94a66eSMike Smith return; 20210b94a66eSMike Smith } 20220b94a66eSMike Smith 2023914da7d0SScott Long /* 2024914da7d0SScott Long * Interface Function Vectors 2025914da7d0SScott Long */ 202635863739SMike Smith 2027914da7d0SScott Long /* 202835863739SMike Smith * Read the current firmware status word. 202935863739SMike Smith */ 203035863739SMike Smith static int 203135863739SMike Smith aac_sa_get_fwstatus(struct aac_softc *sc) 203235863739SMike Smith { 203335863739SMike Smith debug_called(3); 203435863739SMike Smith 203535863739SMike Smith return(AAC_GETREG4(sc, AAC_SA_FWSTATUS)); 203635863739SMike Smith } 203735863739SMike Smith 203835863739SMike Smith static int 203935863739SMike Smith aac_rx_get_fwstatus(struct aac_softc *sc) 204035863739SMike Smith { 204135863739SMike Smith debug_called(3); 204235863739SMike Smith 204335863739SMike Smith return(AAC_GETREG4(sc, AAC_RX_FWSTATUS)); 204435863739SMike Smith } 204535863739SMike Smith 2046b3457b51SScott Long static int 2047b3457b51SScott Long aac_fa_get_fwstatus(struct aac_softc *sc) 2048b3457b51SScott Long { 2049b3457b51SScott Long int val; 2050b3457b51SScott Long 2051b3457b51SScott Long debug_called(3); 2052b3457b51SScott Long 2053b3457b51SScott Long val = AAC_GETREG4(sc, AAC_FA_FWSTATUS); 2054b3457b51SScott Long return (val); 2055b3457b51SScott Long } 2056b3457b51SScott Long 2057914da7d0SScott Long /* 205835863739SMike Smith * Notify the controller of a change in a given queue 205935863739SMike Smith */ 206035863739SMike Smith 206135863739SMike Smith static void 206235863739SMike Smith aac_sa_qnotify(struct aac_softc *sc, int qbit) 206335863739SMike Smith { 206435863739SMike Smith debug_called(3); 206535863739SMike Smith 206635863739SMike Smith AAC_SETREG2(sc, AAC_SA_DOORBELL1_SET, qbit); 206735863739SMike Smith } 206835863739SMike Smith 206935863739SMike Smith static void 207035863739SMike Smith aac_rx_qnotify(struct aac_softc *sc, int qbit) 207135863739SMike Smith { 207235863739SMike Smith debug_called(3); 207335863739SMike Smith 207435863739SMike Smith AAC_SETREG4(sc, AAC_RX_IDBR, qbit); 207535863739SMike Smith } 207635863739SMike Smith 2077b3457b51SScott Long static void 2078b3457b51SScott Long aac_fa_qnotify(struct aac_softc *sc, int qbit) 2079b3457b51SScott Long { 2080b3457b51SScott Long debug_called(3); 2081b3457b51SScott Long 2082b3457b51SScott Long AAC_SETREG2(sc, AAC_FA_DOORBELL1, qbit); 2083b3457b51SScott Long AAC_FA_HACK(sc); 2084b3457b51SScott Long } 2085b3457b51SScott Long 2086914da7d0SScott Long /* 208735863739SMike Smith * Get the interrupt reason bits 208835863739SMike Smith */ 208935863739SMike Smith static int 209035863739SMike Smith aac_sa_get_istatus(struct aac_softc *sc) 209135863739SMike Smith { 209235863739SMike Smith debug_called(3); 209335863739SMike Smith 209435863739SMike Smith return(AAC_GETREG2(sc, AAC_SA_DOORBELL0)); 209535863739SMike Smith } 209635863739SMike Smith 209735863739SMike Smith static int 209835863739SMike Smith aac_rx_get_istatus(struct aac_softc *sc) 209935863739SMike Smith { 210035863739SMike Smith debug_called(3); 210135863739SMike Smith 210235863739SMike Smith return(AAC_GETREG4(sc, AAC_RX_ODBR)); 210335863739SMike Smith } 210435863739SMike Smith 2105b3457b51SScott Long static int 2106b3457b51SScott Long aac_fa_get_istatus(struct aac_softc *sc) 2107b3457b51SScott Long { 2108b3457b51SScott Long int val; 2109b3457b51SScott Long 2110b3457b51SScott Long debug_called(3); 2111b3457b51SScott Long 2112b3457b51SScott Long val = AAC_GETREG2(sc, AAC_FA_DOORBELL0); 2113b3457b51SScott Long return (val); 2114b3457b51SScott Long } 2115b3457b51SScott Long 2116914da7d0SScott Long /* 211735863739SMike Smith * Clear some interrupt reason bits 211835863739SMike Smith */ 211935863739SMike Smith static void 212035863739SMike Smith aac_sa_clear_istatus(struct aac_softc *sc, int mask) 212135863739SMike Smith { 212235863739SMike Smith debug_called(3); 212335863739SMike Smith 212435863739SMike Smith AAC_SETREG2(sc, AAC_SA_DOORBELL0_CLEAR, mask); 212535863739SMike Smith } 212635863739SMike Smith 212735863739SMike Smith static void 212835863739SMike Smith aac_rx_clear_istatus(struct aac_softc *sc, int mask) 212935863739SMike Smith { 213035863739SMike Smith debug_called(3); 213135863739SMike Smith 213235863739SMike Smith AAC_SETREG4(sc, AAC_RX_ODBR, mask); 213335863739SMike Smith } 213435863739SMike Smith 2135b3457b51SScott Long static void 2136b3457b51SScott Long aac_fa_clear_istatus(struct aac_softc *sc, int mask) 2137b3457b51SScott Long { 2138b3457b51SScott Long debug_called(3); 2139b3457b51SScott Long 2140b3457b51SScott Long AAC_SETREG2(sc, AAC_FA_DOORBELL0_CLEAR, mask); 2141b3457b51SScott Long AAC_FA_HACK(sc); 2142b3457b51SScott Long } 2143b3457b51SScott Long 2144914da7d0SScott Long /* 214535863739SMike Smith * Populate the mailbox and set the command word 214635863739SMike Smith */ 214735863739SMike Smith static void 214835863739SMike Smith aac_sa_set_mailbox(struct aac_softc *sc, u_int32_t command, 214935863739SMike Smith u_int32_t arg0, u_int32_t arg1, u_int32_t arg2, u_int32_t arg3) 215035863739SMike Smith { 215135863739SMike Smith debug_called(4); 215235863739SMike Smith 215335863739SMike Smith AAC_SETREG4(sc, AAC_SA_MAILBOX, command); 215435863739SMike Smith AAC_SETREG4(sc, AAC_SA_MAILBOX + 4, arg0); 215535863739SMike Smith AAC_SETREG4(sc, AAC_SA_MAILBOX + 8, arg1); 215635863739SMike Smith AAC_SETREG4(sc, AAC_SA_MAILBOX + 12, arg2); 215735863739SMike Smith AAC_SETREG4(sc, AAC_SA_MAILBOX + 16, arg3); 215835863739SMike Smith } 215935863739SMike Smith 216035863739SMike Smith static void 216135863739SMike Smith aac_rx_set_mailbox(struct aac_softc *sc, u_int32_t command, 216235863739SMike Smith u_int32_t arg0, u_int32_t arg1, u_int32_t arg2, u_int32_t arg3) 216335863739SMike Smith { 216435863739SMike Smith debug_called(4); 216535863739SMike Smith 216635863739SMike Smith AAC_SETREG4(sc, AAC_RX_MAILBOX, command); 216735863739SMike Smith AAC_SETREG4(sc, AAC_RX_MAILBOX + 4, arg0); 216835863739SMike Smith AAC_SETREG4(sc, AAC_RX_MAILBOX + 8, arg1); 216935863739SMike Smith AAC_SETREG4(sc, AAC_RX_MAILBOX + 12, arg2); 217035863739SMike Smith AAC_SETREG4(sc, AAC_RX_MAILBOX + 16, arg3); 217135863739SMike Smith } 217235863739SMike Smith 2173b3457b51SScott Long static void 2174b3457b51SScott Long aac_fa_set_mailbox(struct aac_softc *sc, u_int32_t command, 2175b3457b51SScott Long u_int32_t arg0, u_int32_t arg1, u_int32_t arg2, u_int32_t arg3) 2176b3457b51SScott Long { 2177b3457b51SScott Long debug_called(4); 2178b3457b51SScott Long 2179b3457b51SScott Long AAC_SETREG4(sc, AAC_FA_MAILBOX, command); 2180b3457b51SScott Long AAC_FA_HACK(sc); 2181b3457b51SScott Long AAC_SETREG4(sc, AAC_FA_MAILBOX + 4, arg0); 2182b3457b51SScott Long AAC_FA_HACK(sc); 2183b3457b51SScott Long AAC_SETREG4(sc, AAC_FA_MAILBOX + 8, arg1); 2184b3457b51SScott Long AAC_FA_HACK(sc); 2185b3457b51SScott Long AAC_SETREG4(sc, AAC_FA_MAILBOX + 12, arg2); 2186b3457b51SScott Long AAC_FA_HACK(sc); 2187b3457b51SScott Long AAC_SETREG4(sc, AAC_FA_MAILBOX + 16, arg3); 2188b3457b51SScott Long AAC_FA_HACK(sc); 2189b3457b51SScott Long } 2190b3457b51SScott Long 2191914da7d0SScott Long /* 219235863739SMike Smith * Fetch the immediate command status word 219335863739SMike Smith */ 219435863739SMike Smith static int 2195a6d35632SScott Long aac_sa_get_mailbox(struct aac_softc *sc, int mb) 219635863739SMike Smith { 219735863739SMike Smith debug_called(4); 219835863739SMike Smith 2199a6d35632SScott Long return(AAC_GETREG4(sc, AAC_SA_MAILBOX + (mb * 4))); 220035863739SMike Smith } 220135863739SMike Smith 220235863739SMike Smith static int 2203a6d35632SScott Long aac_rx_get_mailbox(struct aac_softc *sc, int mb) 220435863739SMike Smith { 220535863739SMike Smith debug_called(4); 220635863739SMike Smith 2207a6d35632SScott Long return(AAC_GETREG4(sc, AAC_RX_MAILBOX + (mb * 4))); 220835863739SMike Smith } 220935863739SMike Smith 2210b3457b51SScott Long static int 2211a6d35632SScott Long aac_fa_get_mailbox(struct aac_softc *sc, int mb) 2212b3457b51SScott Long { 2213b3457b51SScott Long int val; 2214b3457b51SScott Long 2215b3457b51SScott Long debug_called(4); 2216b3457b51SScott Long 2217a6d35632SScott Long val = AAC_GETREG4(sc, AAC_FA_MAILBOX + (mb * 4)); 2218b3457b51SScott Long return (val); 2219b3457b51SScott Long } 2220b3457b51SScott Long 2221914da7d0SScott Long /* 222235863739SMike Smith * Set/clear interrupt masks 222335863739SMike Smith */ 222435863739SMike Smith static void 222535863739SMike Smith aac_sa_set_interrupts(struct aac_softc *sc, int enable) 222635863739SMike Smith { 222735863739SMike Smith debug(2, "%sable interrupts", enable ? "en" : "dis"); 222835863739SMike Smith 222935863739SMike Smith if (enable) { 223035863739SMike Smith AAC_SETREG2((sc), AAC_SA_MASK0_CLEAR, AAC_DB_INTERRUPTS); 223135863739SMike Smith } else { 223235863739SMike Smith AAC_SETREG2((sc), AAC_SA_MASK0_SET, ~0); 223335863739SMike Smith } 223435863739SMike Smith } 223535863739SMike Smith 223635863739SMike Smith static void 223735863739SMike Smith aac_rx_set_interrupts(struct aac_softc *sc, int enable) 223835863739SMike Smith { 223935863739SMike Smith debug(2, "%sable interrupts", enable ? "en" : "dis"); 224035863739SMike Smith 224135863739SMike Smith if (enable) { 224235863739SMike Smith AAC_SETREG4(sc, AAC_RX_OIMR, ~AAC_DB_INTERRUPTS); 224335863739SMike Smith } else { 224435863739SMike Smith AAC_SETREG4(sc, AAC_RX_OIMR, ~0); 224535863739SMike Smith } 224635863739SMike Smith } 224735863739SMike Smith 2248b3457b51SScott Long static void 2249b3457b51SScott Long aac_fa_set_interrupts(struct aac_softc *sc, int enable) 2250b3457b51SScott Long { 2251b3457b51SScott Long debug(2, "%sable interrupts", enable ? "en" : "dis"); 2252b3457b51SScott Long 2253b3457b51SScott Long if (enable) { 2254b3457b51SScott Long AAC_SETREG2((sc), AAC_FA_MASK0_CLEAR, AAC_DB_INTERRUPTS); 2255b3457b51SScott Long AAC_FA_HACK(sc); 2256b3457b51SScott Long } else { 2257b3457b51SScott Long AAC_SETREG2((sc), AAC_FA_MASK0, ~0); 2258b3457b51SScott Long AAC_FA_HACK(sc); 2259b3457b51SScott Long } 2260b3457b51SScott Long } 2261b3457b51SScott Long 2262914da7d0SScott Long /* 2263914da7d0SScott Long * Debugging and Diagnostics 2264914da7d0SScott Long */ 226535863739SMike Smith 2266914da7d0SScott Long /* 226735863739SMike Smith * Print some information about the controller. 226835863739SMike Smith */ 226935863739SMike Smith static void 227035863739SMike Smith aac_describe_controller(struct aac_softc *sc) 227135863739SMike Smith { 2272cbfd045bSScott Long struct aac_fib *fib; 227335863739SMike Smith struct aac_adapter_info *info; 227435863739SMike Smith 227535863739SMike Smith debug_called(2); 227635863739SMike Smith 2277fe3cb0e1SScott Long aac_alloc_sync_fib(sc, &fib, 0); 2278cbfd045bSScott Long 2279cbfd045bSScott Long fib->data[0] = 0; 2280cbfd045bSScott Long if (aac_sync_fib(sc, RequestAdapterInfo, 0, fib, 1)) { 228135863739SMike Smith device_printf(sc->aac_dev, "RequestAdapterInfo failed\n"); 2282fe3cb0e1SScott Long aac_release_sync_fib(sc); 228335863739SMike Smith return; 228435863739SMike Smith } 2285cbfd045bSScott Long info = (struct aac_adapter_info *)&fib->data[0]; 228635863739SMike Smith 228736e0bf6eSScott Long device_printf(sc->aac_dev, "%s %dMHz, %dMB cache memory, %s\n", 2288c6eafcf2SScott Long aac_describe_code(aac_cpu_variant, info->CpuVariant), 228936e0bf6eSScott Long info->ClockSpeed, info->BufferMem / (1024 * 1024), 2290914da7d0SScott Long aac_describe_code(aac_battery_platform, 2291914da7d0SScott Long info->batteryPlatform)); 229235863739SMike Smith 229335863739SMike Smith /* save the kernel revision structure for later use */ 229435863739SMike Smith sc->aac_revision = info->KernelRevision; 229536e0bf6eSScott Long device_printf(sc->aac_dev, "Kernel %d.%d-%d, Build %d, S/N %6X\n", 229635863739SMike Smith info->KernelRevision.external.comp.major, 229735863739SMike Smith info->KernelRevision.external.comp.minor, 229835863739SMike Smith info->KernelRevision.external.comp.dash, 229936e0bf6eSScott Long info->KernelRevision.buildNumber, 230036e0bf6eSScott Long (u_int32_t)(info->SerialNumber & 0xffffff)); 2301fe3cb0e1SScott Long 2302fe3cb0e1SScott Long aac_release_sync_fib(sc); 2303a6d35632SScott Long 2304a6d35632SScott Long if (1 || bootverbose) { 2305a6d35632SScott Long device_printf(sc->aac_dev, "Supported Options=%b\n", 2306a6d35632SScott Long sc->supported_options, 2307a6d35632SScott Long "\20" 2308a6d35632SScott Long "\1SNAPSHOT" 2309a6d35632SScott Long "\2CLUSTERS" 2310a6d35632SScott Long "\3WCACHE" 2311a6d35632SScott Long "\4DATA64" 2312a6d35632SScott Long "\5HOSTTIME" 2313a6d35632SScott Long "\6RAID50" 2314a6d35632SScott Long "\7WINDOW4GB" 2315a6d35632SScott Long "\10SCSIUPGD" 2316a6d35632SScott Long "\11SOFTERR" 2317a6d35632SScott Long "\12NORECOND" 2318a6d35632SScott Long "\13SGMAP64" 2319a6d35632SScott Long "\14ALARM" 2320a6d35632SScott Long "\15NONDASD"); 2321a6d35632SScott Long } 232235863739SMike Smith } 232335863739SMike Smith 2324914da7d0SScott Long /* 232535863739SMike Smith * Look up a text description of a numeric error code and return a pointer to 232635863739SMike Smith * same. 232735863739SMike Smith */ 232835863739SMike Smith static char * 232935863739SMike Smith aac_describe_code(struct aac_code_lookup *table, u_int32_t code) 233035863739SMike Smith { 233135863739SMike Smith int i; 233235863739SMike Smith 233335863739SMike Smith for (i = 0; table[i].string != NULL; i++) 233435863739SMike Smith if (table[i].code == code) 233535863739SMike Smith return(table[i].string); 233635863739SMike Smith return(table[i + 1].string); 233735863739SMike Smith } 233835863739SMike Smith 2339914da7d0SScott Long /* 2340914da7d0SScott Long * Management Interface 2341914da7d0SScott Long */ 234235863739SMike Smith 234335863739SMike Smith static int 2344c3d15322SScott Long aac_open(dev_t dev, int flags, int fmt, d_thread_t *td) 234535863739SMike Smith { 2346914da7d0SScott Long struct aac_softc *sc; 234735863739SMike Smith 234835863739SMike Smith debug_called(2); 234935863739SMike Smith 2350914da7d0SScott Long sc = dev->si_drv1; 2351914da7d0SScott Long 235235863739SMike Smith /* Check to make sure the device isn't already open */ 235335863739SMike Smith if (sc->aac_state & AAC_STATE_OPEN) { 235435863739SMike Smith return EBUSY; 235535863739SMike Smith } 235635863739SMike Smith sc->aac_state |= AAC_STATE_OPEN; 235735863739SMike Smith 235835863739SMike Smith return 0; 235935863739SMike Smith } 236035863739SMike Smith 236135863739SMike Smith static int 2362c3d15322SScott Long aac_close(dev_t dev, int flags, int fmt, d_thread_t *td) 236335863739SMike Smith { 2364914da7d0SScott Long struct aac_softc *sc; 236535863739SMike Smith 236635863739SMike Smith debug_called(2); 236735863739SMike Smith 2368914da7d0SScott Long sc = dev->si_drv1; 2369914da7d0SScott Long 237035863739SMike Smith /* Mark this unit as no longer open */ 237135863739SMike Smith sc->aac_state &= ~AAC_STATE_OPEN; 237235863739SMike Smith 237335863739SMike Smith return 0; 237435863739SMike Smith } 237535863739SMike Smith 237635863739SMike Smith static int 2377c3d15322SScott Long aac_ioctl(dev_t dev, u_long cmd, caddr_t arg, int flag, d_thread_t *td) 237835863739SMike Smith { 2379914da7d0SScott Long union aac_statrequest *as; 2380914da7d0SScott Long struct aac_softc *sc; 23810b94a66eSMike Smith int error = 0; 2382b88ffdc8SScott Long uint32_t cookie; 238335863739SMike Smith 238435863739SMike Smith debug_called(2); 238535863739SMike Smith 2386914da7d0SScott Long as = (union aac_statrequest *)arg; 2387914da7d0SScott Long sc = dev->si_drv1; 2388914da7d0SScott Long 238935863739SMike Smith switch (cmd) { 23900b94a66eSMike Smith case AACIO_STATS: 23910b94a66eSMike Smith switch (as->as_item) { 23920b94a66eSMike Smith case AACQ_FREE: 23930b94a66eSMike Smith case AACQ_BIO: 23940b94a66eSMike Smith case AACQ_READY: 23950b94a66eSMike Smith case AACQ_BUSY: 23960b94a66eSMike Smith case AACQ_COMPLETE: 2397c6eafcf2SScott Long bcopy(&sc->aac_qstat[as->as_item], &as->as_qstat, 2398c6eafcf2SScott Long sizeof(struct aac_qstat)); 23990b94a66eSMike Smith break; 24000b94a66eSMike Smith default: 24010b94a66eSMike Smith error = ENOENT; 24020b94a66eSMike Smith break; 24030b94a66eSMike Smith } 24040b94a66eSMike Smith break; 24050b94a66eSMike Smith 240635863739SMike Smith case FSACTL_SENDFIB: 2407fb0c27d7SScott Long arg = *(caddr_t*)arg; 2408fb0c27d7SScott Long case FSACTL_LNX_SENDFIB: 24090b94a66eSMike Smith debug(1, "FSACTL_SENDFIB"); 241035863739SMike Smith error = aac_ioctl_sendfib(sc, arg); 241135863739SMike Smith break; 241235863739SMike Smith case FSACTL_AIF_THREAD: 2413fb0c27d7SScott Long case FSACTL_LNX_AIF_THREAD: 24140b94a66eSMike Smith debug(1, "FSACTL_AIF_THREAD"); 241535863739SMike Smith error = EINVAL; 241635863739SMike Smith break; 241735863739SMike Smith case FSACTL_OPEN_GET_ADAPTER_FIB: 2418fb0c27d7SScott Long arg = *(caddr_t*)arg; 2419fb0c27d7SScott Long case FSACTL_LNX_OPEN_GET_ADAPTER_FIB: 24200b94a66eSMike Smith debug(1, "FSACTL_OPEN_GET_ADAPTER_FIB"); 242135863739SMike Smith /* 242235863739SMike Smith * Pass the caller out an AdapterFibContext. 242335863739SMike Smith * 242435863739SMike Smith * Note that because we only support one opener, we 242535863739SMike Smith * basically ignore this. Set the caller's context to a magic 242635863739SMike Smith * number just in case. 24270b94a66eSMike Smith * 24280b94a66eSMike Smith * The Linux code hands the driver a pointer into kernel space, 24290b94a66eSMike Smith * and then trusts it when the caller hands it back. Aiee! 2430914da7d0SScott Long * Here, we give it the proc pointer of the per-adapter aif 2431914da7d0SScott Long * thread. It's only used as a sanity check in other calls. 243235863739SMike Smith */ 2433b88ffdc8SScott Long cookie = (uint32_t)(uintptr_t)sc->aifthread; 2434b88ffdc8SScott Long error = copyout(&cookie, arg, sizeof(cookie)); 243535863739SMike Smith break; 243635863739SMike Smith case FSACTL_GET_NEXT_ADAPTER_FIB: 2437fb0c27d7SScott Long arg = *(caddr_t*)arg; 2438fb0c27d7SScott Long case FSACTL_LNX_GET_NEXT_ADAPTER_FIB: 24390b94a66eSMike Smith debug(1, "FSACTL_GET_NEXT_ADAPTER_FIB"); 2440fb0c27d7SScott Long error = aac_getnext_aif(sc, arg); 244135863739SMike Smith break; 244235863739SMike Smith case FSACTL_CLOSE_GET_ADAPTER_FIB: 2443fb0c27d7SScott Long case FSACTL_LNX_CLOSE_GET_ADAPTER_FIB: 24440b94a66eSMike Smith debug(1, "FSACTL_CLOSE_GET_ADAPTER_FIB"); 244535863739SMike Smith /* don't do anything here */ 244635863739SMike Smith break; 244735863739SMike Smith case FSACTL_MINIPORT_REV_CHECK: 2448fb0c27d7SScott Long arg = *(caddr_t*)arg; 2449fb0c27d7SScott Long case FSACTL_LNX_MINIPORT_REV_CHECK: 24500b94a66eSMike Smith debug(1, "FSACTL_MINIPORT_REV_CHECK"); 2451fb0c27d7SScott Long error = aac_rev_check(sc, arg); 245235863739SMike Smith break; 245336e0bf6eSScott Long case FSACTL_QUERY_DISK: 245436e0bf6eSScott Long arg = *(caddr_t*)arg; 245536e0bf6eSScott Long case FSACTL_LNX_QUERY_DISK: 245636e0bf6eSScott Long debug(1, "FSACTL_QUERY_DISK"); 245736e0bf6eSScott Long error = aac_query_disk(sc, arg); 245836e0bf6eSScott Long break; 245936e0bf6eSScott Long case FSACTL_DELETE_DISK: 246036e0bf6eSScott Long case FSACTL_LNX_DELETE_DISK: 2461914da7d0SScott Long /* 2462914da7d0SScott Long * We don't trust the underland to tell us when to delete a 2463914da7d0SScott Long * container, rather we rely on an AIF coming from the 2464914da7d0SScott Long * controller 2465914da7d0SScott Long */ 246636e0bf6eSScott Long error = 0; 246736e0bf6eSScott Long break; 246835863739SMike Smith default: 2469b3457b51SScott Long debug(1, "unsupported cmd 0x%lx\n", cmd); 247035863739SMike Smith error = EINVAL; 247135863739SMike Smith break; 247235863739SMike Smith } 247335863739SMike Smith return(error); 247435863739SMike Smith } 247535863739SMike Smith 2476b3457b51SScott Long static int 2477c3d15322SScott Long aac_poll(dev_t dev, int poll_events, d_thread_t *td) 2478b3457b51SScott Long { 2479b3457b51SScott Long struct aac_softc *sc; 2480b3457b51SScott Long int revents; 2481b3457b51SScott Long 2482b3457b51SScott Long sc = dev->si_drv1; 2483b3457b51SScott Long revents = 0; 2484b3457b51SScott Long 2485c3d15322SScott Long AAC_LOCK_ACQUIRE(&sc->aac_aifq_lock); 2486b3457b51SScott Long if ((poll_events & (POLLRDNORM | POLLIN)) != 0) { 2487b3457b51SScott Long if (sc->aac_aifq_tail != sc->aac_aifq_head) 2488b3457b51SScott Long revents |= poll_events & (POLLIN | POLLRDNORM); 2489b3457b51SScott Long } 2490b3457b51SScott Long AAC_LOCK_RELEASE(&sc->aac_aifq_lock); 2491b3457b51SScott Long 2492b3457b51SScott Long if (revents == 0) { 2493b3457b51SScott Long if (poll_events & (POLLIN | POLLRDNORM)) 2494b3457b51SScott Long selrecord(td, &sc->rcv_select); 2495b3457b51SScott Long } 2496b3457b51SScott Long 2497b3457b51SScott Long return (revents); 2498b3457b51SScott Long } 2499b3457b51SScott Long 2500914da7d0SScott Long /* 250135863739SMike Smith * Send a FIB supplied from userspace 250235863739SMike Smith */ 250335863739SMike Smith static int 250435863739SMike Smith aac_ioctl_sendfib(struct aac_softc *sc, caddr_t ufib) 250535863739SMike Smith { 250635863739SMike Smith struct aac_command *cm; 250735863739SMike Smith int size, error; 250835863739SMike Smith 250935863739SMike Smith debug_called(2); 251035863739SMike Smith 251135863739SMike Smith cm = NULL; 251235863739SMike Smith 251335863739SMike Smith /* 251435863739SMike Smith * Get a command 251535863739SMike Smith */ 2516ae543596SScott Long AAC_LOCK_ACQUIRE(&sc->aac_io_lock); 251735863739SMike Smith if (aac_alloc_command(sc, &cm)) { 251835863739SMike Smith error = EBUSY; 251935863739SMike Smith goto out; 252035863739SMike Smith } 252135863739SMike Smith 252235863739SMike Smith /* 252335863739SMike Smith * Fetch the FIB header, then re-copy to get data as well. 252435863739SMike Smith */ 2525914da7d0SScott Long if ((error = copyin(ufib, cm->cm_fib, 2526914da7d0SScott Long sizeof(struct aac_fib_header))) != 0) 252735863739SMike Smith goto out; 252835863739SMike Smith size = cm->cm_fib->Header.Size + sizeof(struct aac_fib_header); 252935863739SMike Smith if (size > sizeof(struct aac_fib)) { 2530b88ffdc8SScott Long device_printf(sc->aac_dev, "incoming FIB oversized (%d > %zd)\n", 2531914da7d0SScott Long size, sizeof(struct aac_fib)); 253235863739SMike Smith size = sizeof(struct aac_fib); 253335863739SMike Smith } 253435863739SMike Smith if ((error = copyin(ufib, cm->cm_fib, size)) != 0) 253535863739SMike Smith goto out; 253635863739SMike Smith cm->cm_fib->Header.Size = size; 2537f6c4dd3fSScott Long cm->cm_timestamp = time_second; 253835863739SMike Smith 253935863739SMike Smith /* 254035863739SMike Smith * Pass the FIB to the controller, wait for it to complete. 254135863739SMike Smith */ 2542b3457b51SScott Long if ((error = aac_wait_command(cm, 30)) != 0) { /* XXX user timeout? */ 254370545d1aSScott Long device_printf(sc->aac_dev, 254470545d1aSScott Long "aac_wait_command return %d\n", error); 254535863739SMike Smith goto out; 2546b3457b51SScott Long } 254735863739SMike Smith 254835863739SMike Smith /* 254935863739SMike Smith * Copy the FIB and data back out to the caller. 255035863739SMike Smith */ 255135863739SMike Smith size = cm->cm_fib->Header.Size; 255235863739SMike Smith if (size > sizeof(struct aac_fib)) { 2553b88ffdc8SScott Long device_printf(sc->aac_dev, "outbound FIB oversized (%d > %zd)\n", 2554914da7d0SScott Long size, sizeof(struct aac_fib)); 255535863739SMike Smith size = sizeof(struct aac_fib); 255635863739SMike Smith } 255735863739SMike Smith error = copyout(cm->cm_fib, ufib, size); 255835863739SMike Smith 255935863739SMike Smith out: 2560f6c4dd3fSScott Long if (cm != NULL) { 256135863739SMike Smith aac_release_command(cm); 2562f6c4dd3fSScott Long } 2563ae543596SScott Long 2564ae543596SScott Long AAC_LOCK_RELEASE(&sc->aac_io_lock); 256535863739SMike Smith return(error); 256635863739SMike Smith } 256735863739SMike Smith 2568914da7d0SScott Long /* 256935863739SMike Smith * Handle an AIF sent to us by the controller; queue it for later reference. 257036e0bf6eSScott Long * If the queue fills up, then drop the older entries. 257135863739SMike Smith */ 257235863739SMike Smith static void 257336e0bf6eSScott Long aac_handle_aif(struct aac_softc *sc, struct aac_fib *fib) 257435863739SMike Smith { 257536e0bf6eSScott Long struct aac_aif_command *aif; 257636e0bf6eSScott Long struct aac_container *co, *co_next; 2577cbfd045bSScott Long struct aac_mntinfo *mi; 2578cbfd045bSScott Long struct aac_mntinforesp *mir = NULL; 257936e0bf6eSScott Long u_int16_t rsize; 2580b3457b51SScott Long int next, found; 2581795d7dc0SScott Long int count = 0, added = 0, i = 0; 258235863739SMike Smith 258335863739SMike Smith debug_called(2); 258435863739SMike Smith 258536e0bf6eSScott Long aif = (struct aac_aif_command*)&fib->data[0]; 258636e0bf6eSScott Long aac_print_aif(sc, aif); 258736e0bf6eSScott Long 258836e0bf6eSScott Long /* Is it an event that we should care about? */ 258936e0bf6eSScott Long switch (aif->command) { 259036e0bf6eSScott Long case AifCmdEventNotify: 259136e0bf6eSScott Long switch (aif->data.EN.type) { 259236e0bf6eSScott Long case AifEnAddContainer: 259336e0bf6eSScott Long case AifEnDeleteContainer: 259436e0bf6eSScott Long /* 2595914da7d0SScott Long * A container was added or deleted, but the message 2596914da7d0SScott Long * doesn't tell us anything else! Re-enumerate the 2597914da7d0SScott Long * containers and sort things out. 259836e0bf6eSScott Long */ 2599fe3cb0e1SScott Long aac_alloc_sync_fib(sc, &fib, 0); 2600cbfd045bSScott Long mi = (struct aac_mntinfo *)&fib->data[0]; 260136e0bf6eSScott Long do { 260236e0bf6eSScott Long /* 2603914da7d0SScott Long * Ask the controller for its containers one at 2604914da7d0SScott Long * a time. 2605914da7d0SScott Long * XXX What if the controller's list changes 2606914da7d0SScott Long * midway through this enumaration? 260736e0bf6eSScott Long * XXX This should be done async. 260836e0bf6eSScott Long */ 260939ee03c3SScott Long bzero(mi, sizeof(struct aac_mntinfo)); 261039ee03c3SScott Long mi->Command = VM_NameServe; 261139ee03c3SScott Long mi->MntType = FT_FILESYS; 2612cbfd045bSScott Long mi->MntCount = i; 261336e0bf6eSScott Long rsize = sizeof(mir); 2614cbfd045bSScott Long if (aac_sync_fib(sc, ContainerCommand, 0, fib, 2615cbfd045bSScott Long sizeof(struct aac_mntinfo))) { 2616795d7dc0SScott Long printf("Error probing container %d\n", 2617914da7d0SScott Long i); 261836e0bf6eSScott Long continue; 261936e0bf6eSScott Long } 2620cbfd045bSScott Long mir = (struct aac_mntinforesp *)&fib->data[0]; 2621795d7dc0SScott Long /* XXX Need to check if count changed */ 2622795d7dc0SScott Long count = mir->MntRespCount; 262336e0bf6eSScott Long /* 2624914da7d0SScott Long * Check the container against our list. 2625914da7d0SScott Long * co->co_found was already set to 0 in a 2626914da7d0SScott Long * previous run. 262736e0bf6eSScott Long */ 2628cbfd045bSScott Long if ((mir->Status == ST_OK) && 2629cbfd045bSScott Long (mir->MntTable[0].VolType != CT_NONE)) { 263036e0bf6eSScott Long found = 0; 2631914da7d0SScott Long TAILQ_FOREACH(co, 2632914da7d0SScott Long &sc->aac_container_tqh, 2633914da7d0SScott Long co_link) { 263436e0bf6eSScott Long if (co->co_mntobj.ObjectId == 2635cbfd045bSScott Long mir->MntTable[0].ObjectId) { 263636e0bf6eSScott Long co->co_found = 1; 263736e0bf6eSScott Long found = 1; 263836e0bf6eSScott Long break; 263936e0bf6eSScott Long } 264036e0bf6eSScott Long } 2641914da7d0SScott Long /* 2642914da7d0SScott Long * If the container matched, continue 2643914da7d0SScott Long * in the list. 2644914da7d0SScott Long */ 264536e0bf6eSScott Long if (found) { 264636e0bf6eSScott Long i++; 264736e0bf6eSScott Long continue; 264836e0bf6eSScott Long } 264936e0bf6eSScott Long 265036e0bf6eSScott Long /* 2651914da7d0SScott Long * This is a new container. Do all the 265270545d1aSScott Long * appropriate things to set it up. 265370545d1aSScott Long */ 2654cbfd045bSScott Long aac_add_container(sc, mir, 1); 265536e0bf6eSScott Long added = 1; 265636e0bf6eSScott Long } 265736e0bf6eSScott Long i++; 2658795d7dc0SScott Long } while ((i < count) && (i < AAC_MAX_CONTAINERS)); 2659cbfd045bSScott Long aac_release_sync_fib(sc); 266036e0bf6eSScott Long 266136e0bf6eSScott Long /* 2662914da7d0SScott Long * Go through our list of containers and see which ones 2663914da7d0SScott Long * were not marked 'found'. Since the controller didn't 2664914da7d0SScott Long * list them they must have been deleted. Do the 2665914da7d0SScott Long * appropriate steps to destroy the device. Also reset 2666914da7d0SScott Long * the co->co_found field. 266736e0bf6eSScott Long */ 266836e0bf6eSScott Long co = TAILQ_FIRST(&sc->aac_container_tqh); 266936e0bf6eSScott Long while (co != NULL) { 267036e0bf6eSScott Long if (co->co_found == 0) { 2671914da7d0SScott Long device_delete_child(sc->aac_dev, 2672914da7d0SScott Long co->co_disk); 267336e0bf6eSScott Long co_next = TAILQ_NEXT(co, co_link); 2674c3d15322SScott Long AAC_LOCK_ACQUIRE(&sc-> 2675914da7d0SScott Long aac_container_lock); 2676914da7d0SScott Long TAILQ_REMOVE(&sc->aac_container_tqh, co, 2677914da7d0SScott Long co_link); 2678914da7d0SScott Long AAC_LOCK_RELEASE(&sc-> 2679914da7d0SScott Long aac_container_lock); 268036e0bf6eSScott Long FREE(co, M_AACBUF); 268136e0bf6eSScott Long co = co_next; 268236e0bf6eSScott Long } else { 268336e0bf6eSScott Long co->co_found = 0; 268436e0bf6eSScott Long co = TAILQ_NEXT(co, co_link); 268536e0bf6eSScott Long } 268636e0bf6eSScott Long } 268736e0bf6eSScott Long 268836e0bf6eSScott Long /* Attach the newly created containers */ 268936e0bf6eSScott Long if (added) 269036e0bf6eSScott Long bus_generic_attach(sc->aac_dev); 269136e0bf6eSScott Long 269236e0bf6eSScott Long break; 269336e0bf6eSScott Long 269436e0bf6eSScott Long default: 269536e0bf6eSScott Long break; 269636e0bf6eSScott Long } 269736e0bf6eSScott Long 269836e0bf6eSScott Long default: 269936e0bf6eSScott Long break; 270036e0bf6eSScott Long } 270136e0bf6eSScott Long 270236e0bf6eSScott Long /* Copy the AIF data to the AIF queue for ioctl retrieval */ 2703c3d15322SScott Long AAC_LOCK_ACQUIRE(&sc->aac_aifq_lock); 270435863739SMike Smith next = (sc->aac_aifq_head + 1) % AAC_AIFQ_LENGTH; 270535863739SMike Smith if (next != sc->aac_aifq_tail) { 270635863739SMike Smith bcopy(aif, &sc->aac_aifq[next], sizeof(struct aac_aif_command)); 270735863739SMike Smith sc->aac_aifq_head = next; 2708b3457b51SScott Long 2709b3457b51SScott Long /* On the off chance that someone is sleeping for an aif... */ 271035863739SMike Smith if (sc->aac_state & AAC_STATE_AIF_SLEEPER) 271135863739SMike Smith wakeup(sc->aac_aifq); 2712b3457b51SScott Long /* Wakeup any poll()ers */ 2713b3457b51SScott Long selwakeup(&sc->rcv_select); 271435863739SMike Smith } 2715b3457b51SScott Long AAC_LOCK_RELEASE(&sc->aac_aifq_lock); 271636e0bf6eSScott Long 271736e0bf6eSScott Long return; 271835863739SMike Smith } 271935863739SMike Smith 2720914da7d0SScott Long /* 27210b94a66eSMike Smith * Return the Revision of the driver to userspace and check to see if the 272236e0bf6eSScott Long * userspace app is possibly compatible. This is extremely bogus since 272336e0bf6eSScott Long * our driver doesn't follow Adaptec's versioning system. Cheat by just 272436e0bf6eSScott Long * returning what the card reported. 272535863739SMike Smith */ 272635863739SMike Smith static int 2727fb0c27d7SScott Long aac_rev_check(struct aac_softc *sc, caddr_t udata) 272835863739SMike Smith { 272935863739SMike Smith struct aac_rev_check rev_check; 273035863739SMike Smith struct aac_rev_check_resp rev_check_resp; 273135863739SMike Smith int error = 0; 273235863739SMike Smith 273335863739SMike Smith debug_called(2); 273435863739SMike Smith 273535863739SMike Smith /* 273635863739SMike Smith * Copyin the revision struct from userspace 273735863739SMike Smith */ 2738c6eafcf2SScott Long if ((error = copyin(udata, (caddr_t)&rev_check, 2739c6eafcf2SScott Long sizeof(struct aac_rev_check))) != 0) { 274035863739SMike Smith return error; 274135863739SMike Smith } 274235863739SMike Smith 2743914da7d0SScott Long debug(2, "Userland revision= %d\n", 2744914da7d0SScott Long rev_check.callingRevision.buildNumber); 274535863739SMike Smith 274635863739SMike Smith /* 274735863739SMike Smith * Doctor up the response struct. 274835863739SMike Smith */ 274935863739SMike Smith rev_check_resp.possiblyCompatible = 1; 2750914da7d0SScott Long rev_check_resp.adapterSWRevision.external.ul = 2751914da7d0SScott Long sc->aac_revision.external.ul; 2752914da7d0SScott Long rev_check_resp.adapterSWRevision.buildNumber = 2753914da7d0SScott Long sc->aac_revision.buildNumber; 275435863739SMike Smith 2755c6eafcf2SScott Long return(copyout((caddr_t)&rev_check_resp, udata, 2756c6eafcf2SScott Long sizeof(struct aac_rev_check_resp))); 275735863739SMike Smith } 275835863739SMike Smith 2759914da7d0SScott Long /* 276035863739SMike Smith * Pass the caller the next AIF in their queue 276135863739SMike Smith */ 276235863739SMike Smith static int 2763fb0c27d7SScott Long aac_getnext_aif(struct aac_softc *sc, caddr_t arg) 276435863739SMike Smith { 276535863739SMike Smith struct get_adapter_fib_ioctl agf; 27669e2e96d8SScott Long int error; 276735863739SMike Smith 276835863739SMike Smith debug_called(2); 276935863739SMike Smith 277035863739SMike Smith if ((error = copyin(arg, &agf, sizeof(agf))) == 0) { 277135863739SMike Smith 277235863739SMike Smith /* 277335863739SMike Smith * Check the magic number that we gave the caller. 277435863739SMike Smith */ 2775b88ffdc8SScott Long if (agf.AdapterFibContext != (int)(uintptr_t)sc->aifthread) { 277635863739SMike Smith error = EFAULT; 277735863739SMike Smith } else { 2778fb0c27d7SScott Long error = aac_return_aif(sc, agf.AifFib); 277935863739SMike Smith if ((error == EAGAIN) && (agf.Wait)) { 278035863739SMike Smith sc->aac_state |= AAC_STATE_AIF_SLEEPER; 278135863739SMike Smith while (error == EAGAIN) { 2782914da7d0SScott Long error = tsleep(sc->aac_aifq, PRIBIO | 2783914da7d0SScott Long PCATCH, "aacaif", 0); 278435863739SMike Smith if (error == 0) 2785914da7d0SScott Long error = aac_return_aif(sc, 2786914da7d0SScott Long agf.AifFib); 278735863739SMike Smith } 278835863739SMike Smith sc->aac_state &= ~AAC_STATE_AIF_SLEEPER; 278935863739SMike Smith } 279035863739SMike Smith } 279135863739SMike Smith } 279235863739SMike Smith return(error); 279335863739SMike Smith } 279435863739SMike Smith 2795914da7d0SScott Long /* 27960b94a66eSMike Smith * Hand the next AIF off the top of the queue out to userspace. 27970b94a66eSMike Smith */ 27980b94a66eSMike Smith static int 2799fb0c27d7SScott Long aac_return_aif(struct aac_softc *sc, caddr_t uptr) 28000b94a66eSMike Smith { 2801b3457b51SScott Long int error; 28020b94a66eSMike Smith 28030b94a66eSMike Smith debug_called(2); 28040b94a66eSMike Smith 2805c3d15322SScott Long AAC_LOCK_ACQUIRE(&sc->aac_aifq_lock); 28060b94a66eSMike Smith if (sc->aac_aifq_tail == sc->aac_aifq_head) { 28070b94a66eSMike Smith error = EAGAIN; 28080b94a66eSMike Smith } else { 2809c6eafcf2SScott Long error = copyout(&sc->aac_aifq[sc->aac_aifq_tail], uptr, 2810c6eafcf2SScott Long sizeof(struct aac_aif_command)); 281136e0bf6eSScott Long if (error) 281270545d1aSScott Long device_printf(sc->aac_dev, 281370545d1aSScott Long "aac_return_aif: copyout returned %d\n", error); 28140b94a66eSMike Smith if (!error) 2815914da7d0SScott Long sc->aac_aifq_tail = (sc->aac_aifq_tail + 1) % 2816914da7d0SScott Long AAC_AIFQ_LENGTH; 28170b94a66eSMike Smith } 2818b3457b51SScott Long AAC_LOCK_RELEASE(&sc->aac_aifq_lock); 28190b94a66eSMike Smith return(error); 28200b94a66eSMike Smith } 282136e0bf6eSScott Long 2822914da7d0SScott Long /* 282336e0bf6eSScott Long * Give the userland some information about the container. The AAC arch 282436e0bf6eSScott Long * expects the driver to be a SCSI passthrough type driver, so it expects 282536e0bf6eSScott Long * the containers to have b:t:l numbers. Fake it. 282636e0bf6eSScott Long */ 282736e0bf6eSScott Long static int 282836e0bf6eSScott Long aac_query_disk(struct aac_softc *sc, caddr_t uptr) 282936e0bf6eSScott Long { 283036e0bf6eSScott Long struct aac_query_disk query_disk; 283136e0bf6eSScott Long struct aac_container *co; 2832914da7d0SScott Long struct aac_disk *disk; 283336e0bf6eSScott Long int error, id; 283436e0bf6eSScott Long 283536e0bf6eSScott Long debug_called(2); 283636e0bf6eSScott Long 2837914da7d0SScott Long disk = NULL; 2838914da7d0SScott Long 2839914da7d0SScott Long error = copyin(uptr, (caddr_t)&query_disk, 2840914da7d0SScott Long sizeof(struct aac_query_disk)); 284136e0bf6eSScott Long if (error) 284236e0bf6eSScott Long return (error); 284336e0bf6eSScott Long 284436e0bf6eSScott Long id = query_disk.ContainerNumber; 284536e0bf6eSScott Long if (id == -1) 284636e0bf6eSScott Long return (EINVAL); 284736e0bf6eSScott Long 2848c3d15322SScott Long AAC_LOCK_ACQUIRE(&sc->aac_container_lock); 284936e0bf6eSScott Long TAILQ_FOREACH(co, &sc->aac_container_tqh, co_link) { 285036e0bf6eSScott Long if (co->co_mntobj.ObjectId == id) 285136e0bf6eSScott Long break; 285236e0bf6eSScott Long } 285336e0bf6eSScott Long 285436e0bf6eSScott Long if (co == NULL) { 285536e0bf6eSScott Long query_disk.Valid = 0; 285636e0bf6eSScott Long query_disk.Locked = 0; 285736e0bf6eSScott Long query_disk.Deleted = 1; /* XXX is this right? */ 285836e0bf6eSScott Long } else { 285936e0bf6eSScott Long disk = device_get_softc(co->co_disk); 286036e0bf6eSScott Long query_disk.Valid = 1; 2861914da7d0SScott Long query_disk.Locked = 2862914da7d0SScott Long (disk->ad_flags & AAC_DISK_OPEN) ? 1 : 0; 286336e0bf6eSScott Long query_disk.Deleted = 0; 2864b3457b51SScott Long query_disk.Bus = device_get_unit(sc->aac_dev); 286536e0bf6eSScott Long query_disk.Target = disk->unit; 286636e0bf6eSScott Long query_disk.Lun = 0; 286736e0bf6eSScott Long query_disk.UnMapped = 0; 28687540e65eSScott Long sprintf(&query_disk.diskDeviceName[0], "%s%d", 28697540e65eSScott Long disk->ad_disk.d_name, disk->ad_disk.d_unit); 287036e0bf6eSScott Long } 287136e0bf6eSScott Long AAC_LOCK_RELEASE(&sc->aac_container_lock); 287236e0bf6eSScott Long 2873914da7d0SScott Long error = copyout((caddr_t)&query_disk, uptr, 2874914da7d0SScott Long sizeof(struct aac_query_disk)); 287536e0bf6eSScott Long 287636e0bf6eSScott Long return (error); 287736e0bf6eSScott Long } 287836e0bf6eSScott Long 2879fe3cb0e1SScott Long static void 2880fe3cb0e1SScott Long aac_get_bus_info(struct aac_softc *sc) 2881fe3cb0e1SScott Long { 2882fe3cb0e1SScott Long struct aac_fib *fib; 2883fe3cb0e1SScott Long struct aac_ctcfg *c_cmd; 2884fe3cb0e1SScott Long struct aac_ctcfg_resp *c_resp; 2885fe3cb0e1SScott Long struct aac_vmioctl *vmi; 2886fe3cb0e1SScott Long struct aac_vmi_businf_resp *vmi_resp; 2887fe3cb0e1SScott Long struct aac_getbusinf businfo; 288870545d1aSScott Long struct aac_sim *caminf; 2889fe3cb0e1SScott Long device_t child; 2890fe3cb0e1SScott Long int i, found, error; 2891fe3cb0e1SScott Long 2892fe3cb0e1SScott Long aac_alloc_sync_fib(sc, &fib, 0); 2893fe3cb0e1SScott Long c_cmd = (struct aac_ctcfg *)&fib->data[0]; 289439ee03c3SScott Long bzero(c_cmd, sizeof(struct aac_ctcfg)); 2895fe3cb0e1SScott Long 2896fe3cb0e1SScott Long c_cmd->Command = VM_ContainerConfig; 2897fe3cb0e1SScott Long c_cmd->cmd = CT_GET_SCSI_METHOD; 2898fe3cb0e1SScott Long c_cmd->param = 0; 2899fe3cb0e1SScott Long 2900fe3cb0e1SScott Long error = aac_sync_fib(sc, ContainerCommand, 0, fib, 2901fe3cb0e1SScott Long sizeof(struct aac_ctcfg)); 2902fe3cb0e1SScott Long if (error) { 2903fe3cb0e1SScott Long device_printf(sc->aac_dev, "Error %d sending " 2904fe3cb0e1SScott Long "VM_ContainerConfig command\n", error); 2905fe3cb0e1SScott Long aac_release_sync_fib(sc); 2906fe3cb0e1SScott Long return; 2907fe3cb0e1SScott Long } 2908fe3cb0e1SScott Long 2909fe3cb0e1SScott Long c_resp = (struct aac_ctcfg_resp *)&fib->data[0]; 2910fe3cb0e1SScott Long if (c_resp->Status != ST_OK) { 2911fe3cb0e1SScott Long device_printf(sc->aac_dev, "VM_ContainerConfig returned 0x%x\n", 2912fe3cb0e1SScott Long c_resp->Status); 2913fe3cb0e1SScott Long aac_release_sync_fib(sc); 2914fe3cb0e1SScott Long return; 2915fe3cb0e1SScott Long } 2916fe3cb0e1SScott Long 2917fe3cb0e1SScott Long sc->scsi_method_id = c_resp->param; 2918fe3cb0e1SScott Long 2919fe3cb0e1SScott Long vmi = (struct aac_vmioctl *)&fib->data[0]; 292039ee03c3SScott Long bzero(vmi, sizeof(struct aac_vmioctl)); 292139ee03c3SScott Long 2922fe3cb0e1SScott Long vmi->Command = VM_Ioctl; 2923fe3cb0e1SScott Long vmi->ObjType = FT_DRIVE; 2924fe3cb0e1SScott Long vmi->MethId = sc->scsi_method_id; 2925fe3cb0e1SScott Long vmi->ObjId = 0; 2926fe3cb0e1SScott Long vmi->IoctlCmd = GetBusInfo; 2927fe3cb0e1SScott Long 2928fe3cb0e1SScott Long error = aac_sync_fib(sc, ContainerCommand, 0, fib, 2929fe3cb0e1SScott Long sizeof(struct aac_vmioctl)); 2930fe3cb0e1SScott Long if (error) { 2931fe3cb0e1SScott Long device_printf(sc->aac_dev, "Error %d sending VMIoctl command\n", 2932fe3cb0e1SScott Long error); 2933fe3cb0e1SScott Long aac_release_sync_fib(sc); 2934fe3cb0e1SScott Long return; 2935fe3cb0e1SScott Long } 2936fe3cb0e1SScott Long 2937fe3cb0e1SScott Long vmi_resp = (struct aac_vmi_businf_resp *)&fib->data[0]; 2938fe3cb0e1SScott Long if (vmi_resp->Status != ST_OK) { 2939fe3cb0e1SScott Long device_printf(sc->aac_dev, "VM_Ioctl returned %d\n", 2940fe3cb0e1SScott Long vmi_resp->Status); 2941fe3cb0e1SScott Long aac_release_sync_fib(sc); 2942fe3cb0e1SScott Long return; 2943fe3cb0e1SScott Long } 2944fe3cb0e1SScott Long 2945fe3cb0e1SScott Long bcopy(&vmi_resp->BusInf, &businfo, sizeof(struct aac_getbusinf)); 2946fe3cb0e1SScott Long aac_release_sync_fib(sc); 2947fe3cb0e1SScott Long 2948fe3cb0e1SScott Long found = 0; 2949fe3cb0e1SScott Long for (i = 0; i < businfo.BusCount; i++) { 2950fe3cb0e1SScott Long if (businfo.BusValid[i] != AAC_BUS_VALID) 2951fe3cb0e1SScott Long continue; 2952fe3cb0e1SScott Long 2953a761a1caSScott Long caminf = (struct aac_sim *)malloc( sizeof(struct aac_sim), 2954a761a1caSScott Long M_AACBUF, M_NOWAIT | M_ZERO); 2955fe3cb0e1SScott Long if (caminf == NULL) 2956fe3cb0e1SScott Long continue; 2957fe3cb0e1SScott Long 2958fe3cb0e1SScott Long child = device_add_child(sc->aac_dev, "aacp", -1); 2959fe3cb0e1SScott Long if (child == NULL) { 2960fe3cb0e1SScott Long device_printf(sc->aac_dev, "device_add_child failed\n"); 2961fe3cb0e1SScott Long continue; 2962fe3cb0e1SScott Long } 2963fe3cb0e1SScott Long 2964fe3cb0e1SScott Long caminf->TargetsPerBus = businfo.TargetsPerBus; 2965fe3cb0e1SScott Long caminf->BusNumber = i; 2966fe3cb0e1SScott Long caminf->InitiatorBusId = businfo.InitiatorBusId[i]; 2967fe3cb0e1SScott Long caminf->aac_sc = sc; 2968ddb8683eSScott Long caminf->sim_dev = child; 2969fe3cb0e1SScott Long 2970fe3cb0e1SScott Long device_set_ivars(child, caminf); 2971fe3cb0e1SScott Long device_set_desc(child, "SCSI Passthrough Bus"); 297270545d1aSScott Long TAILQ_INSERT_TAIL(&sc->aac_sim_tqh, caminf, sim_link); 2973fe3cb0e1SScott Long 2974fe3cb0e1SScott Long found = 1; 2975fe3cb0e1SScott Long } 2976fe3cb0e1SScott Long 2977fe3cb0e1SScott Long if (found) 2978fe3cb0e1SScott Long bus_generic_attach(sc->aac_dev); 2979fe3cb0e1SScott Long 2980fe3cb0e1SScott Long return; 2981fe3cb0e1SScott Long } 2982