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adw.c revision 1.41
      1  1.41  mycroft /* $NetBSD: adw.c,v 1.41 2003/09/18 01:33:58 mycroft Exp $	 */
      2   1.1    dante 
      3   1.1    dante /*
      4   1.1    dante  * Generic driver for the Advanced Systems Inc. SCSI controllers
      5   1.1    dante  *
      6  1.13    dante  * Copyright (c) 1998, 1999, 2000 The NetBSD Foundation, Inc.
      7   1.1    dante  * All rights reserved.
      8   1.1    dante  *
      9   1.1    dante  * Author: Baldassare Dante Profeta <dante (at) mclink.it>
     10   1.1    dante  *
     11   1.1    dante  * Redistribution and use in source and binary forms, with or without
     12   1.1    dante  * modification, are permitted provided that the following conditions
     13   1.1    dante  * are met:
     14   1.1    dante  * 1. Redistributions of source code must retain the above copyright
     15   1.1    dante  *    notice, this list of conditions and the following disclaimer.
     16   1.1    dante  * 2. Redistributions in binary form must reproduce the above copyright
     17   1.1    dante  *    notice, this list of conditions and the following disclaimer in the
     18   1.1    dante  *    documentation and/or other materials provided with the distribution.
     19   1.1    dante  * 3. All advertising materials mentioning features or use of this software
     20   1.1    dante  *    must display the following acknowledgement:
     21   1.1    dante  *        This product includes software developed by the NetBSD
     22   1.1    dante  *        Foundation, Inc. and its contributors.
     23   1.1    dante  * 4. Neither the name of The NetBSD Foundation nor the names of its
     24   1.1    dante  *    contributors may be used to endorse or promote products derived
     25   1.1    dante  *    from this software without specific prior written permission.
     26   1.1    dante  *
     27   1.1    dante  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     28   1.1    dante  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     29   1.1    dante  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     30   1.1    dante  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     31   1.1    dante  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     32   1.1    dante  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     33   1.1    dante  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     34   1.1    dante  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     35   1.1    dante  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     36   1.1    dante  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     37   1.1    dante  * POSSIBILITY OF SUCH DAMAGE.
     38   1.1    dante  */
     39  1.36    lukem 
     40  1.36    lukem #include <sys/cdefs.h>
     41  1.41  mycroft __KERNEL_RCSID(0, "$NetBSD: adw.c,v 1.41 2003/09/18 01:33:58 mycroft Exp $");
     42   1.1    dante 
     43   1.1    dante #include <sys/param.h>
     44   1.1    dante #include <sys/systm.h>
     45  1.15  thorpej #include <sys/callout.h>
     46   1.1    dante #include <sys/kernel.h>
     47   1.1    dante #include <sys/errno.h>
     48   1.1    dante #include <sys/ioctl.h>
     49   1.1    dante #include <sys/device.h>
     50   1.1    dante #include <sys/malloc.h>
     51   1.1    dante #include <sys/buf.h>
     52   1.1    dante #include <sys/proc.h>
     53   1.1    dante #include <sys/user.h>
     54   1.1    dante 
     55   1.1    dante #include <machine/bus.h>
     56   1.1    dante #include <machine/intr.h>
     57   1.1    dante 
     58  1.25      mrg #include <uvm/uvm_extern.h>
     59   1.1    dante 
     60   1.1    dante #include <dev/scsipi/scsi_all.h>
     61   1.1    dante #include <dev/scsipi/scsipi_all.h>
     62   1.1    dante #include <dev/scsipi/scsiconf.h>
     63   1.1    dante 
     64   1.1    dante #include <dev/ic/adwlib.h>
     65  1.22    dante #include <dev/ic/adwmcode.h>
     66   1.1    dante #include <dev/ic/adw.h>
     67   1.1    dante 
     68   1.1    dante #ifndef DDB
     69  1.11    dante #define	Debugger()	panic("should call debugger here (adw.c)")
     70   1.2    dante #endif				/* ! DDB */
     71   1.1    dante 
     72   1.1    dante /******************************************************************************/
     73   1.1    dante 
     74   1.1    dante 
     75  1.30    lukem static int adw_alloc_controls(ADW_SOFTC *);
     76  1.30    lukem static int adw_alloc_carriers(ADW_SOFTC *);
     77  1.30    lukem static int adw_create_ccbs(ADW_SOFTC *, ADW_CCB *, int);
     78  1.30    lukem static void adw_free_ccb(ADW_SOFTC *, ADW_CCB *);
     79  1.30    lukem static void adw_reset_ccb(ADW_CCB *);
     80  1.30    lukem static int adw_init_ccb(ADW_SOFTC *, ADW_CCB *);
     81  1.30    lukem static ADW_CCB *adw_get_ccb(ADW_SOFTC *);
     82  1.30    lukem static int adw_queue_ccb(ADW_SOFTC *, ADW_CCB *);
     83  1.30    lukem 
     84  1.30    lukem static void adw_scsipi_request(struct scsipi_channel *,
     85  1.30    lukem 	scsipi_adapter_req_t, void *);
     86  1.30    lukem static int adw_build_req(ADW_SOFTC *, ADW_CCB *);
     87  1.30    lukem static void adw_build_sglist(ADW_CCB *, ADW_SCSI_REQ_Q *, ADW_SG_BLOCK *);
     88  1.30    lukem static void adwminphys(struct buf *);
     89  1.30    lukem static void adw_isr_callback(ADW_SOFTC *, ADW_SCSI_REQ_Q *);
     90  1.30    lukem static void adw_async_callback(ADW_SOFTC *, u_int8_t);
     91  1.30    lukem 
     92  1.30    lukem static void adw_print_info(ADW_SOFTC *, int);
     93  1.30    lukem 
     94  1.30    lukem static int adw_poll(ADW_SOFTC *, struct scsipi_xfer *, int);
     95  1.30    lukem static void adw_timeout(void *);
     96  1.30    lukem static void adw_reset_bus(ADW_SOFTC *);
     97   1.1    dante 
     98   1.1    dante 
     99   1.1    dante /******************************************************************************/
    100  1.22    dante /*                       DMA Mapping for Control Blocks                       */
    101   1.1    dante /******************************************************************************/
    102   1.1    dante 
    103   1.1    dante 
    104   1.1    dante static int
    105  1.30    lukem adw_alloc_controls(ADW_SOFTC *sc)
    106   1.1    dante {
    107   1.1    dante 	bus_dma_segment_t seg;
    108   1.1    dante 	int             error, rseg;
    109   1.1    dante 
    110   1.1    dante 	/*
    111  1.13    dante          * Allocate the control structure.
    112   1.1    dante          */
    113   1.1    dante 	if ((error = bus_dmamem_alloc(sc->sc_dmat, sizeof(struct adw_control),
    114  1.26  thorpej 			   PAGE_SIZE, 0, &seg, 1, &rseg,
    115  1.26  thorpej 			   BUS_DMA_NOWAIT)) != 0) {
    116   1.1    dante 		printf("%s: unable to allocate control structures,"
    117   1.1    dante 		       " error = %d\n", sc->sc_dev.dv_xname, error);
    118   1.1    dante 		return (error);
    119   1.1    dante 	}
    120   1.1    dante 	if ((error = bus_dmamem_map(sc->sc_dmat, &seg, rseg,
    121   1.1    dante 		   sizeof(struct adw_control), (caddr_t *) & sc->sc_control,
    122   1.1    dante 				 BUS_DMA_NOWAIT | BUS_DMA_COHERENT)) != 0) {
    123   1.1    dante 		printf("%s: unable to map control structures, error = %d\n",
    124   1.1    dante 		       sc->sc_dev.dv_xname, error);
    125   1.1    dante 		return (error);
    126   1.1    dante 	}
    127  1.13    dante 
    128   1.1    dante 	/*
    129   1.1    dante          * Create and load the DMA map used for the control blocks.
    130   1.1    dante          */
    131   1.1    dante 	if ((error = bus_dmamap_create(sc->sc_dmat, sizeof(struct adw_control),
    132   1.1    dante 			   1, sizeof(struct adw_control), 0, BUS_DMA_NOWAIT,
    133   1.1    dante 				       &sc->sc_dmamap_control)) != 0) {
    134   1.1    dante 		printf("%s: unable to create control DMA map, error = %d\n",
    135   1.1    dante 		       sc->sc_dev.dv_xname, error);
    136   1.1    dante 		return (error);
    137   1.1    dante 	}
    138   1.1    dante 	if ((error = bus_dmamap_load(sc->sc_dmat, sc->sc_dmamap_control,
    139   1.1    dante 			   sc->sc_control, sizeof(struct adw_control), NULL,
    140   1.1    dante 				     BUS_DMA_NOWAIT)) != 0) {
    141   1.1    dante 		printf("%s: unable to load control DMA map, error = %d\n",
    142   1.1    dante 		       sc->sc_dev.dv_xname, error);
    143   1.1    dante 		return (error);
    144   1.1    dante 	}
    145  1.13    dante 
    146  1.13    dante 	return (0);
    147  1.13    dante }
    148  1.13    dante 
    149  1.13    dante 
    150  1.13    dante static int
    151  1.30    lukem adw_alloc_carriers(ADW_SOFTC *sc)
    152  1.13    dante {
    153  1.13    dante 	bus_dma_segment_t seg;
    154  1.13    dante 	int             error, rseg;
    155  1.13    dante 
    156  1.13    dante 	/*
    157  1.13    dante          * Allocate the control structure.
    158  1.13    dante          */
    159  1.19    dante 	sc->sc_control->carriers = malloc(sizeof(ADW_CARRIER) * ADW_MAX_CARRIER,
    160  1.13    dante 			M_DEVBUF, M_WAITOK);
    161  1.13    dante 	if(!sc->sc_control->carriers) {
    162  1.39  thorpej 		aprint_error(
    163  1.39  thorpej 		    "%s: malloc() failed in allocating carrier structures\n",
    164  1.39  thorpej 		    sc->sc_dev.dv_xname);
    165  1.18  thorpej 		return (ENOMEM);
    166  1.13    dante 	}
    167  1.13    dante 
    168  1.13    dante 	if ((error = bus_dmamem_alloc(sc->sc_dmat,
    169  1.19    dante 			sizeof(ADW_CARRIER) * ADW_MAX_CARRIER,
    170  1.19    dante 			0x10, 0, &seg, 1, &rseg, BUS_DMA_NOWAIT)) != 0) {
    171  1.39  thorpej 		aprint_error("%s: unable to allocate carrier structures,"
    172  1.13    dante 		       " error = %d\n", sc->sc_dev.dv_xname, error);
    173  1.13    dante 		return (error);
    174  1.13    dante 	}
    175  1.13    dante 	if ((error = bus_dmamem_map(sc->sc_dmat, &seg, rseg,
    176  1.19    dante 			sizeof(ADW_CARRIER) * ADW_MAX_CARRIER,
    177  1.13    dante 			(caddr_t *) &sc->sc_control->carriers,
    178  1.13    dante 			BUS_DMA_NOWAIT | BUS_DMA_COHERENT)) != 0) {
    179  1.39  thorpej 		aprint_error("%s: unable to map carrier structures,"
    180  1.13    dante 			" error = %d\n", sc->sc_dev.dv_xname, error);
    181  1.13    dante 		return (error);
    182  1.13    dante 	}
    183  1.13    dante 
    184  1.13    dante 	/*
    185  1.13    dante          * Create and load the DMA map used for the control blocks.
    186  1.13    dante          */
    187  1.13    dante 	if ((error = bus_dmamap_create(sc->sc_dmat,
    188  1.19    dante 			sizeof(ADW_CARRIER) * ADW_MAX_CARRIER, 1,
    189  1.19    dante 			sizeof(ADW_CARRIER) * ADW_MAX_CARRIER, 0,BUS_DMA_NOWAIT,
    190  1.13    dante 			&sc->sc_dmamap_carrier)) != 0) {
    191  1.39  thorpej 		aprint_error("%s: unable to create carriers DMA map,"
    192  1.13    dante 			" error = %d\n", sc->sc_dev.dv_xname, error);
    193  1.13    dante 		return (error);
    194  1.13    dante 	}
    195  1.13    dante 	if ((error = bus_dmamap_load(sc->sc_dmat,
    196  1.13    dante 			sc->sc_dmamap_carrier, sc->sc_control->carriers,
    197  1.19    dante 			sizeof(ADW_CARRIER) * ADW_MAX_CARRIER, NULL,
    198  1.13    dante 			BUS_DMA_NOWAIT)) != 0) {
    199  1.39  thorpej 		aprint_error("%s: unable to load carriers DMA map,"
    200  1.13    dante 			" error = %d\n", sc->sc_dev.dv_xname, error);
    201  1.13    dante 		return (error);
    202  1.13    dante 	}
    203  1.13    dante 
    204   1.1    dante 	return (0);
    205   1.1    dante }
    206   1.1    dante 
    207   1.1    dante 
    208  1.22    dante /******************************************************************************/
    209  1.22    dante /*                           Control Blocks routines                          */
    210  1.22    dante /******************************************************************************/
    211  1.13    dante 
    212  1.13    dante 
    213  1.13    dante /*
    214   1.1    dante  * Create a set of ccbs and add them to the free list.  Called once
    215   1.1    dante  * by adw_init().  We return the number of CCBs successfully created.
    216   1.1    dante  */
    217   1.1    dante static int
    218  1.30    lukem adw_create_ccbs(ADW_SOFTC *sc, ADW_CCB *ccbstore, int count)
    219   1.1    dante {
    220   1.1    dante 	ADW_CCB        *ccb;
    221   1.1    dante 	int             i, error;
    222   1.1    dante 
    223   1.1    dante 	for (i = 0; i < count; i++) {
    224   1.1    dante 		ccb = &ccbstore[i];
    225   1.1    dante 		if ((error = adw_init_ccb(sc, ccb)) != 0) {
    226   1.1    dante 			printf("%s: unable to initialize ccb, error = %d\n",
    227   1.1    dante 			       sc->sc_dev.dv_xname, error);
    228   1.1    dante 			return (i);
    229   1.1    dante 		}
    230   1.1    dante 		TAILQ_INSERT_TAIL(&sc->sc_free_ccb, ccb, chain);
    231   1.1    dante 	}
    232   1.1    dante 
    233   1.1    dante 	return (i);
    234   1.1    dante }
    235   1.1    dante 
    236   1.1    dante 
    237   1.1    dante /*
    238   1.1    dante  * A ccb is put onto the free list.
    239   1.1    dante  */
    240   1.1    dante static void
    241  1.30    lukem adw_free_ccb(ADW_SOFTC *sc, ADW_CCB *ccb)
    242   1.1    dante {
    243   1.1    dante 	int             s;
    244   1.1    dante 
    245   1.1    dante 	s = splbio();
    246   1.1    dante 
    247   1.1    dante 	adw_reset_ccb(ccb);
    248   1.1    dante 	TAILQ_INSERT_HEAD(&sc->sc_free_ccb, ccb, chain);
    249   1.1    dante 
    250   1.1    dante 	splx(s);
    251   1.1    dante }
    252   1.1    dante 
    253   1.1    dante 
    254   1.1    dante static void
    255  1.30    lukem adw_reset_ccb(ADW_CCB *ccb)
    256   1.1    dante {
    257   1.1    dante 
    258   1.1    dante 	ccb->flags = 0;
    259   1.1    dante }
    260   1.1    dante 
    261   1.1    dante 
    262   1.1    dante static int
    263  1.30    lukem adw_init_ccb(ADW_SOFTC *sc, ADW_CCB *ccb)
    264   1.1    dante {
    265   1.7    dante 	int	hashnum, error;
    266   1.1    dante 
    267   1.1    dante 	/*
    268   1.1    dante          * Create the DMA map for this CCB.
    269   1.1    dante          */
    270   1.1    dante 	error = bus_dmamap_create(sc->sc_dmat,
    271   1.1    dante 				  (ADW_MAX_SG_LIST - 1) * PAGE_SIZE,
    272   1.1    dante 			 ADW_MAX_SG_LIST, (ADW_MAX_SG_LIST - 1) * PAGE_SIZE,
    273   1.1    dante 		   0, BUS_DMA_NOWAIT | BUS_DMA_ALLOCNOW, &ccb->dmamap_xfer);
    274   1.1    dante 	if (error) {
    275  1.13    dante 		printf("%s: unable to create CCB DMA map, error = %d\n",
    276   1.1    dante 		       sc->sc_dev.dv_xname, error);
    277   1.1    dante 		return (error);
    278   1.1    dante 	}
    279   1.7    dante 
    280   1.7    dante 	/*
    281   1.7    dante 	 * put in the phystokv hash table
    282   1.7    dante 	 * Never gets taken out.
    283   1.7    dante 	 */
    284  1.35   briggs 	ccb->hashkey = htole32(sc->sc_dmamap_control->dm_segs[0].ds_addr +
    285  1.35   briggs 	    ADW_CCB_OFF(ccb));
    286   1.7    dante 	hashnum = CCB_HASH(ccb->hashkey);
    287   1.7    dante 	ccb->nexthash = sc->sc_ccbhash[hashnum];
    288   1.7    dante 	sc->sc_ccbhash[hashnum] = ccb;
    289   1.1    dante 	adw_reset_ccb(ccb);
    290   1.1    dante 	return (0);
    291   1.1    dante }
    292   1.1    dante 
    293   1.1    dante 
    294   1.1    dante /*
    295   1.1    dante  * Get a free ccb
    296   1.1    dante  *
    297   1.1    dante  * If there are none, see if we can allocate a new one
    298   1.1    dante  */
    299   1.1    dante static ADW_CCB *
    300  1.30    lukem adw_get_ccb(ADW_SOFTC *sc)
    301   1.1    dante {
    302   1.1    dante 	ADW_CCB        *ccb = 0;
    303   1.1    dante 	int             s;
    304   1.1    dante 
    305   1.1    dante 	s = splbio();
    306   1.1    dante 
    307  1.29   bouyer 	ccb = sc->sc_free_ccb.tqh_first;
    308  1.29   bouyer 	if (ccb != NULL) {
    309  1.29   bouyer 		TAILQ_REMOVE(&sc->sc_free_ccb, ccb, chain);
    310  1.29   bouyer 		ccb->flags |= CCB_ALLOC;
    311   1.1    dante 	}
    312   1.1    dante 	splx(s);
    313   1.1    dante 	return (ccb);
    314   1.1    dante }
    315   1.1    dante 
    316   1.1    dante 
    317   1.1    dante /*
    318   1.7    dante  * Given a physical address, find the ccb that it corresponds to.
    319   1.7    dante  */
    320   1.7    dante ADW_CCB *
    321  1.30    lukem adw_ccb_phys_kv(ADW_SOFTC *sc, u_int32_t ccb_phys)
    322   1.7    dante {
    323   1.7    dante 	int hashnum = CCB_HASH(ccb_phys);
    324   1.7    dante 	ADW_CCB *ccb = sc->sc_ccbhash[hashnum];
    325   1.7    dante 
    326   1.7    dante 	while (ccb) {
    327   1.7    dante 		if (ccb->hashkey == ccb_phys)
    328   1.7    dante 			break;
    329   1.7    dante 		ccb = ccb->nexthash;
    330   1.7    dante 	}
    331   1.7    dante 	return (ccb);
    332   1.7    dante }
    333   1.7    dante 
    334   1.7    dante 
    335   1.7    dante /*
    336   1.1    dante  * Queue a CCB to be sent to the controller, and send it if possible.
    337   1.1    dante  */
    338  1.13    dante static int
    339  1.30    lukem adw_queue_ccb(ADW_SOFTC *sc, ADW_CCB *ccb)
    340   1.1    dante {
    341  1.19    dante 	int		errcode = ADW_SUCCESS;
    342   1.1    dante 
    343  1.29   bouyer 	TAILQ_INSERT_TAIL(&sc->sc_waiting_ccb, ccb, chain);
    344   1.1    dante 
    345  1.13    dante 	while ((ccb = sc->sc_waiting_ccb.tqh_first) != NULL) {
    346   1.1    dante 
    347  1.29   bouyer 		TAILQ_REMOVE(&sc->sc_waiting_ccb, ccb, chain);
    348  1.22    dante 		errcode = AdwExeScsiQueue(sc, &ccb->scsiq);
    349  1.13    dante 		switch(errcode) {
    350  1.13    dante 		case ADW_SUCCESS:
    351  1.13    dante 			break;
    352   1.1    dante 
    353  1.13    dante 		case ADW_BUSY:
    354  1.13    dante 			printf("ADW_BUSY\n");
    355  1.13    dante 			return(ADW_BUSY);
    356  1.13    dante 
    357  1.13    dante 		case ADW_ERROR:
    358  1.13    dante 			printf("ADW_ERROR\n");
    359  1.13    dante 			return(ADW_ERROR);
    360  1.13    dante 		}
    361  1.11    dante 
    362  1.19    dante 		TAILQ_INSERT_TAIL(&sc->sc_pending_ccb, ccb, chain);
    363   1.1    dante 
    364  1.12  thorpej 		if ((ccb->xs->xs_control & XS_CTL_POLL) == 0)
    365  1.15  thorpej 			callout_reset(&ccb->xs->xs_callout,
    366  1.38   bouyer 			    mstohz(ccb->timeout), adw_timeout, ccb);
    367   1.1    dante 	}
    368  1.13    dante 
    369  1.13    dante 	return(errcode);
    370   1.1    dante }
    371   1.1    dante 
    372   1.1    dante 
    373   1.1    dante /******************************************************************************/
    374  1.22    dante /*                       SCSI layer interfacing routines                      */
    375   1.1    dante /******************************************************************************/
    376   1.1    dante 
    377   1.1    dante 
    378   1.1    dante int
    379  1.30    lukem adw_init(ADW_SOFTC *sc)
    380   1.1    dante {
    381   1.2    dante 	u_int16_t       warn_code;
    382   1.1    dante 
    383   1.1    dante 
    384   1.1    dante 	sc->cfg.lib_version = (ADW_LIB_VERSION_MAJOR << 8) |
    385   1.2    dante 		ADW_LIB_VERSION_MINOR;
    386   1.1    dante 	sc->cfg.chip_version =
    387   1.1    dante 		ADW_GET_CHIP_VERSION(sc->sc_iot, sc->sc_ioh, sc->bus_type);
    388   1.1    dante 
    389   1.1    dante 	/*
    390   1.1    dante 	 * Reset the chip to start and allow register writes.
    391   1.1    dante 	 */
    392   1.1    dante 	if (ADW_FIND_SIGNATURE(sc->sc_iot, sc->sc_ioh) == 0) {
    393   1.1    dante 		panic("adw_init: adw_find_signature failed");
    394   1.2    dante 	} else {
    395  1.22    dante 		AdwResetChip(sc->sc_iot, sc->sc_ioh);
    396   1.1    dante 
    397  1.23    dante 		warn_code = AdwInitFromEEPROM(sc);
    398  1.13    dante 
    399  1.22    dante 		if (warn_code & ADW_WARN_EEPROM_CHKSUM)
    400  1.39  thorpej 			aprint_error("%s: Bad checksum found. "
    401   1.2    dante 			       "Setting default values\n",
    402   1.2    dante 			       sc->sc_dev.dv_xname);
    403  1.22    dante 		if (warn_code & ADW_WARN_EEPROM_TERMINATION)
    404  1.39  thorpej 			aprint_error("%s: Bad bus termination setting."
    405   1.2    dante 			       "Using automatic termination.\n",
    406   1.2    dante 			       sc->sc_dev.dv_xname);
    407   1.1    dante 	}
    408   1.1    dante 
    409  1.13    dante 	sc->isr_callback = (ADW_CALLBACK) adw_isr_callback;
    410  1.13    dante 	sc->async_callback = (ADW_CALLBACK) adw_async_callback;
    411   1.1    dante 
    412  1.16    dante 	return 0;
    413   1.1    dante }
    414   1.1    dante 
    415   1.1    dante 
    416   1.1    dante void
    417  1.30    lukem adw_attach(ADW_SOFTC *sc)
    418   1.1    dante {
    419  1.29   bouyer 	struct scsipi_adapter *adapt = &sc->sc_adapter;
    420  1.29   bouyer 	struct scsipi_channel *chan = &sc->sc_channel;
    421  1.29   bouyer 	int             ncontrols, error;
    422   1.1    dante 
    423  1.13    dante 	TAILQ_INIT(&sc->sc_free_ccb);
    424  1.13    dante 	TAILQ_INIT(&sc->sc_waiting_ccb);
    425  1.19    dante 	TAILQ_INIT(&sc->sc_pending_ccb);
    426  1.13    dante 
    427  1.13    dante 	/*
    428  1.13    dante          * Allocate the Control Blocks.
    429  1.13    dante          */
    430  1.13    dante 	error = adw_alloc_controls(sc);
    431  1.13    dante 	if (error)
    432  1.13    dante 		return; /* (error) */ ;
    433  1.13    dante 
    434  1.32  thorpej 	memset(sc->sc_control, 0, sizeof(struct adw_control));
    435  1.13    dante 
    436  1.13    dante 	/*
    437  1.13    dante 	 * Create and initialize the Control Blocks.
    438  1.13    dante 	 */
    439  1.29   bouyer 	ncontrols = adw_create_ccbs(sc, sc->sc_control->ccbs, ADW_MAX_CCB);
    440  1.29   bouyer 	if (ncontrols == 0) {
    441  1.39  thorpej 		aprint_error("%s: unable to create Control Blocks\n",
    442  1.13    dante 		       sc->sc_dev.dv_xname);
    443  1.13    dante 		return; /* (ENOMEM) */ ;
    444  1.29   bouyer 	} else if (ncontrols != ADW_MAX_CCB) {
    445  1.39  thorpej 		aprint_error("%s: WARNING: only %d of %d Control Blocks"
    446  1.13    dante 		       " created\n",
    447  1.29   bouyer 		       sc->sc_dev.dv_xname, ncontrols, ADW_MAX_CCB);
    448  1.13    dante 	}
    449  1.13    dante 
    450  1.13    dante 	/*
    451  1.13    dante 	 * Create and initialize the Carriers.
    452  1.13    dante 	 */
    453  1.13    dante 	error = adw_alloc_carriers(sc);
    454  1.13    dante 	if (error)
    455  1.13    dante 		return; /* (error) */ ;
    456  1.13    dante 
    457  1.21    dante 	/*
    458  1.21    dante 	 * Zero's the freeze_device status
    459  1.21    dante 	 */
    460  1.32  thorpej 	 memset(sc->sc_freeze_dev, 0, sizeof(sc->sc_freeze_dev));
    461  1.13    dante 
    462   1.1    dante 	/*
    463  1.16    dante 	 * Initialize the adapter
    464   1.1    dante 	 */
    465  1.23    dante 	switch (AdwInitDriver(sc)) {
    466  1.22    dante 	case ADW_IERR_BIST_PRE_TEST:
    467  1.19    dante 		panic("%s: BIST pre-test error",
    468  1.19    dante 		      sc->sc_dev.dv_xname);
    469  1.19    dante 		break;
    470  1.19    dante 
    471  1.22    dante 	case ADW_IERR_BIST_RAM_TEST:
    472  1.19    dante 		panic("%s: BIST RAM test error",
    473  1.19    dante 		      sc->sc_dev.dv_xname);
    474  1.19    dante 		break;
    475  1.19    dante 
    476  1.22    dante 	case ADW_IERR_MCODE_CHKSUM:
    477   1.2    dante 		panic("%s: Microcode checksum error",
    478   1.2    dante 		      sc->sc_dev.dv_xname);
    479   1.2    dante 		break;
    480   1.2    dante 
    481  1.22    dante 	case ADW_IERR_ILLEGAL_CONNECTION:
    482   1.2    dante 		panic("%s: All three connectors are in use",
    483   1.2    dante 		      sc->sc_dev.dv_xname);
    484   1.2    dante 		break;
    485   1.2    dante 
    486  1.22    dante 	case ADW_IERR_REVERSED_CABLE:
    487   1.2    dante 		panic("%s: Cable is reversed",
    488   1.2    dante 		      sc->sc_dev.dv_xname);
    489   1.2    dante 		break;
    490   1.2    dante 
    491  1.22    dante 	case ADW_IERR_HVD_DEVICE:
    492  1.19    dante 		panic("%s: HVD attached to LVD connector",
    493  1.19    dante 		      sc->sc_dev.dv_xname);
    494  1.19    dante 		break;
    495  1.19    dante 
    496  1.22    dante 	case ADW_IERR_SINGLE_END_DEVICE:
    497   1.2    dante 		panic("%s: single-ended device is attached to"
    498   1.2    dante 		      " one of the connectors",
    499   1.2    dante 		      sc->sc_dev.dv_xname);
    500   1.2    dante 		break;
    501  1.13    dante 
    502  1.22    dante 	case ADW_IERR_NO_CARRIER:
    503  1.22    dante 		panic("%s: unable to create Carriers",
    504  1.13    dante 		      sc->sc_dev.dv_xname);
    505  1.13    dante 		break;
    506  1.13    dante 
    507  1.22    dante 	case ADW_WARN_BUSRESET_ERROR:
    508  1.39  thorpej 		aprint_error("%s: WARNING: Bus Reset Error\n",
    509  1.13    dante 		      sc->sc_dev.dv_xname);
    510  1.13    dante 		break;
    511   1.1    dante 	}
    512   1.1    dante 
    513   1.4  thorpej 	/*
    514  1.29   bouyer 	 * Fill in the scsipi_adapter.
    515   1.4  thorpej 	 */
    516  1.29   bouyer 	memset(adapt, 0, sizeof(*adapt));
    517  1.29   bouyer 	adapt->adapt_dev = &sc->sc_dev;
    518  1.29   bouyer 	adapt->adapt_nchannels = 1;
    519  1.29   bouyer 	adapt->adapt_openings = ncontrols;
    520  1.29   bouyer 	adapt->adapt_max_periph = adapt->adapt_openings;
    521  1.29   bouyer 	adapt->adapt_request = adw_scsipi_request;
    522  1.29   bouyer 	adapt->adapt_minphys = adwminphys;
    523   1.1    dante 
    524   1.1    dante 	/*
    525  1.29   bouyer 	 * Fill in the scsipi_channel.
    526  1.29   bouyer 	 */
    527  1.29   bouyer 	memset(chan, 0, sizeof(*chan));
    528  1.29   bouyer 	chan->chan_adapter = adapt;
    529  1.29   bouyer 	chan->chan_bustype = &scsi_bustype;
    530  1.29   bouyer 	chan->chan_channel = 0;
    531  1.29   bouyer 	chan->chan_ntargets = ADW_MAX_TID + 1;
    532  1.41  mycroft 	chan->chan_nluns = 8;
    533  1.29   bouyer 	chan->chan_id = sc->chip_scsi_id;
    534   1.1    dante 
    535  1.29   bouyer 	config_found(&sc->sc_dev, &sc->sc_channel, scsiprint);
    536   1.1    dante }
    537   1.1    dante 
    538   1.1    dante 
    539   1.1    dante static void
    540  1.30    lukem adwminphys(struct buf *bp)
    541   1.1    dante {
    542   1.1    dante 
    543   1.1    dante 	if (bp->b_bcount > ((ADW_MAX_SG_LIST - 1) * PAGE_SIZE))
    544   1.1    dante 		bp->b_bcount = ((ADW_MAX_SG_LIST - 1) * PAGE_SIZE);
    545   1.1    dante 	minphys(bp);
    546   1.1    dante }
    547   1.1    dante 
    548   1.1    dante 
    549   1.1    dante /*
    550   1.2    dante  * start a scsi operation given the command and the data address.
    551   1.2    dante  * Also needs the unit, target and lu.
    552   1.1    dante  */
    553  1.29   bouyer static void
    554  1.30    lukem adw_scsipi_request(struct scsipi_channel *chan, scsipi_adapter_req_t req,
    555  1.30    lukem 	void *arg)
    556  1.29   bouyer {
    557   1.1    dante 	struct scsipi_xfer *xs;
    558  1.29   bouyer 	ADW_SOFTC      *sc = (void *)chan->chan_adapter->adapt_dev;
    559   1.1    dante 	ADW_CCB        *ccb;
    560  1.29   bouyer 	int            s, retry;
    561   1.1    dante 
    562  1.29   bouyer 	switch (req) {
    563  1.29   bouyer 	case ADAPTER_REQ_RUN_XFER:
    564  1.29   bouyer 		xs = arg;
    565   1.1    dante 
    566  1.29   bouyer 		/*
    567  1.29   bouyer 		 * get a ccb to use. If the transfer
    568  1.29   bouyer 		 * is from a buf (possibly from interrupt time)
    569  1.29   bouyer 		 * then we can't allow it to sleep
    570  1.29   bouyer 		 */
    571   1.1    dante 
    572  1.29   bouyer 		ccb = adw_get_ccb(sc);
    573  1.29   bouyer #ifdef DIAGNOSTIC
    574   1.1    dante 		/*
    575  1.29   bouyer                  * This should never happen as we track the resources
    576  1.29   bouyer 		 * in the mid-layer.
    577   1.1    dante                  */
    578  1.29   bouyer 		if (ccb == NULL) {
    579  1.29   bouyer 			scsipi_printaddr(xs->xs_periph);
    580  1.29   bouyer 			printf("unable to allocate ccb\n");
    581  1.29   bouyer 			panic("adw_scsipi_request");
    582   1.1    dante 		}
    583  1.29   bouyer #endif
    584   1.1    dante 
    585  1.29   bouyer 		ccb->xs = xs;
    586  1.29   bouyer 		ccb->timeout = xs->timeout;
    587   1.1    dante 
    588  1.29   bouyer 		if (adw_build_req(sc, ccb)) {
    589  1.29   bouyer 			s = splbio();
    590  1.29   bouyer 			retry = adw_queue_ccb(sc, ccb);
    591   1.1    dante 			splx(s);
    592   1.1    dante 
    593  1.29   bouyer 			switch(retry) {
    594  1.29   bouyer 			case ADW_BUSY:
    595  1.29   bouyer 				xs->error = XS_RESOURCE_SHORTAGE;
    596  1.29   bouyer 				adw_free_ccb(sc, ccb);
    597  1.29   bouyer 				scsipi_done(xs);
    598  1.29   bouyer 				return;
    599   1.1    dante 
    600  1.29   bouyer 			case ADW_ERROR:
    601  1.29   bouyer 				xs->error = XS_DRIVER_STUFFUP;
    602  1.29   bouyer 				adw_free_ccb(sc, ccb);
    603  1.29   bouyer 				scsipi_done(xs);
    604  1.29   bouyer 				return;
    605  1.29   bouyer 			}
    606  1.29   bouyer 			if ((xs->xs_control & XS_CTL_POLL) == 0)
    607  1.29   bouyer 				return;
    608  1.29   bouyer 			/*
    609  1.29   bouyer 			 * Not allowed to use interrupts, poll for completion.
    610  1.29   bouyer 			 */
    611  1.29   bouyer 			if (adw_poll(sc, xs, ccb->timeout)) {
    612  1.29   bouyer 				adw_timeout(ccb);
    613  1.29   bouyer 				if (adw_poll(sc, xs, ccb->timeout))
    614  1.29   bouyer 					adw_timeout(ccb);
    615  1.29   bouyer 			}
    616  1.13    dante 		}
    617  1.29   bouyer 		return;
    618   1.1    dante 
    619  1.29   bouyer 	case ADAPTER_REQ_GROW_RESOURCES:
    620  1.29   bouyer 		/* XXX Not supported. */
    621  1.29   bouyer 		return;
    622   1.1    dante 
    623  1.29   bouyer 	case ADAPTER_REQ_SET_XFER_MODE:
    624  1.29   bouyer 		/* XXX XXX XXX */
    625  1.29   bouyer 		return;
    626   1.1    dante 	}
    627   1.1    dante }
    628   1.1    dante 
    629   1.1    dante 
    630   1.1    dante /*
    631   1.1    dante  * Build a request structure for the Wide Boards.
    632   1.1    dante  */
    633   1.1    dante static int
    634  1.30    lukem adw_build_req(ADW_SOFTC *sc, ADW_CCB *ccb)
    635   1.1    dante {
    636  1.29   bouyer 	struct scsipi_xfer *xs = ccb->xs;
    637  1.29   bouyer 	struct scsipi_periph *periph = xs->xs_periph;
    638   1.2    dante 	bus_dma_tag_t   dmat = sc->sc_dmat;
    639   1.2    dante 	ADW_SCSI_REQ_Q *scsiqp;
    640   1.2    dante 	int             error;
    641   1.1    dante 
    642   1.1    dante 	scsiqp = &ccb->scsiq;
    643  1.32  thorpej 	memset(scsiqp, 0, sizeof(ADW_SCSI_REQ_Q));
    644   1.1    dante 
    645   1.1    dante 	/*
    646   1.7    dante 	 * Set the ADW_SCSI_REQ_Q 'ccb_ptr' to point to the
    647   1.7    dante 	 * physical CCB structure.
    648   1.1    dante 	 */
    649  1.10  thorpej 	scsiqp->ccb_ptr = ccb->hashkey;
    650   1.1    dante 
    651   1.1    dante 	/*
    652   1.1    dante 	 * Build the ADW_SCSI_REQ_Q request.
    653   1.1    dante 	 */
    654   1.1    dante 
    655   1.1    dante 	/*
    656   1.1    dante 	 * Set CDB length and copy it to the request structure.
    657  1.16    dante 	 * For wide  boards a CDB length maximum of 16 bytes
    658  1.16    dante 	 * is supported.
    659   1.1    dante 	 */
    660  1.31  thorpej 	memcpy(&scsiqp->cdb, xs->cmd, ((scsiqp->cdb_len = xs->cmdlen) <= 12)?
    661  1.16    dante 			xs->cmdlen : 12 );
    662  1.16    dante 	if(xs->cmdlen > 12)
    663  1.31  thorpej 		memcpy(&scsiqp->cdb16, &(xs->cmd[12]), xs->cmdlen - 12);
    664   1.1    dante 
    665  1.29   bouyer 	scsiqp->target_id = periph->periph_target;
    666  1.29   bouyer 	scsiqp->target_lun = periph->periph_lun;
    667   1.1    dante 
    668   1.7    dante 	scsiqp->vsense_addr = &ccb->scsi_sense;
    669  1.35   briggs 	scsiqp->sense_addr = htole32(sc->sc_dmamap_control->dm_segs[0].ds_addr +
    670  1.35   briggs 			ADW_CCB_OFF(ccb) + offsetof(struct adw_ccb, scsi_sense));
    671  1.21    dante 	scsiqp->sense_len = sizeof(struct scsipi_sense_data);
    672   1.1    dante 
    673   1.1    dante 	/*
    674   1.1    dante 	 * Build ADW_SCSI_REQ_Q for a scatter-gather buffer command.
    675   1.1    dante 	 */
    676   1.1    dante 	if (xs->datalen) {
    677   1.1    dante 		/*
    678   1.1    dante                  * Map the DMA transfer.
    679   1.1    dante                  */
    680   1.1    dante #ifdef TFS
    681  1.12  thorpej 		if (xs->xs_control & SCSI_DATA_UIO) {
    682  1.29   bouyer 			error = bus_dmamap_load_uio(dmat,
    683  1.29   bouyer 				ccb->dmamap_xfer, (struct uio *) xs->data,
    684  1.29   bouyer 			        ((flags & XS_CTL_NOSLEEP) ? BUS_DMA_NOWAIT :
    685  1.33  thorpej 			         BUS_DMA_WAITOK) | BUS_DMA_STREAMING |
    686  1.33  thorpej 				 ((flags & XS_CTL_DATA_IN) ? BUS_DMA_READ :
    687  1.33  thorpej 				  BUS_DMA_WRITE));
    688   1.1    dante 		} else
    689  1.13    dante #endif		/* TFS */
    690   1.1    dante 		{
    691  1.29   bouyer 			error = bus_dmamap_load(dmat,
    692  1.29   bouyer 			      ccb->dmamap_xfer, xs->data, xs->datalen, NULL,
    693  1.29   bouyer 			      ((xs->xs_control & XS_CTL_NOSLEEP) ?
    694  1.29   bouyer 			       BUS_DMA_NOWAIT : BUS_DMA_WAITOK) |
    695  1.33  thorpej 			       BUS_DMA_STREAMING |
    696  1.33  thorpej 			       ((xs->xs_control & XS_CTL_DATA_IN) ?
    697  1.33  thorpej 			        BUS_DMA_READ : BUS_DMA_WRITE));
    698   1.1    dante 		}
    699   1.1    dante 
    700  1.29   bouyer 		switch (error) {
    701  1.29   bouyer 		case 0:
    702  1.29   bouyer 			break;
    703  1.29   bouyer 		case ENOMEM:
    704  1.29   bouyer 		case EAGAIN:
    705  1.29   bouyer 			xs->error = XS_RESOURCE_SHORTAGE;
    706  1.29   bouyer 			goto out_bad;
    707   1.1    dante 
    708  1.29   bouyer 		default:
    709   1.1    dante 			xs->error = XS_DRIVER_STUFFUP;
    710  1.29   bouyer 			printf("%s: error %d loading DMA map\n",
    711  1.29   bouyer 			    sc->sc_dev.dv_xname, error);
    712  1.29   bouyer out_bad:
    713   1.1    dante 			adw_free_ccb(sc, ccb);
    714  1.29   bouyer 			scsipi_done(xs);
    715  1.29   bouyer 			return(0);
    716   1.1    dante 		}
    717  1.29   bouyer 
    718   1.1    dante 		bus_dmamap_sync(dmat, ccb->dmamap_xfer, 0,
    719  1.29   bouyer 		    ccb->dmamap_xfer->dm_mapsize,
    720  1.29   bouyer 		    (xs->xs_control & XS_CTL_DATA_IN) ?
    721  1.29   bouyer 		    BUS_DMASYNC_PREREAD : BUS_DMASYNC_PREWRITE);
    722   1.1    dante 
    723   1.1    dante 		/*
    724   1.1    dante 		 * Build scatter-gather list.
    725   1.1    dante 		 */
    726  1.35   briggs 		scsiqp->data_cnt = htole32(xs->datalen);
    727   1.7    dante 		scsiqp->vdata_addr = xs->data;
    728  1.35   briggs 		scsiqp->data_addr = htole32(ccb->dmamap_xfer->dm_segs[0].ds_addr);
    729  1.32  thorpej 		memset(ccb->sg_block, 0,
    730  1.32  thorpej 		    sizeof(ADW_SG_BLOCK) * ADW_NUM_SG_BLOCK);
    731   1.7    dante 		adw_build_sglist(ccb, scsiqp, ccb->sg_block);
    732   1.1    dante 	} else {
    733   1.1    dante 		/*
    734   1.1    dante                  * No data xfer, use non S/G values.
    735   1.1    dante                  */
    736   1.1    dante 		scsiqp->data_cnt = 0;
    737   1.1    dante 		scsiqp->vdata_addr = 0;
    738   1.1    dante 		scsiqp->data_addr = 0;
    739   1.1    dante 	}
    740   1.1    dante 
    741   1.1    dante 	return (1);
    742   1.1    dante }
    743   1.1    dante 
    744   1.1    dante 
    745   1.1    dante /*
    746   1.1    dante  * Build scatter-gather list for Wide Boards.
    747   1.1    dante  */
    748   1.1    dante static void
    749  1.30    lukem adw_build_sglist(ADW_CCB *ccb, ADW_SCSI_REQ_Q *scsiqp, ADW_SG_BLOCK *sg_block)
    750   1.1    dante {
    751   1.9  thorpej 	u_long          sg_block_next_addr;	/* block and its next */
    752   1.9  thorpej 	u_int32_t       sg_block_physical_addr;
    753  1.13    dante 	int             i;	/* how many SG entries */
    754   1.1    dante 	bus_dma_segment_t *sg_list = &ccb->dmamap_xfer->dm_segs[0];
    755   1.2    dante 	int             sg_elem_cnt = ccb->dmamap_xfer->dm_nsegs;
    756   1.1    dante 
    757   1.1    dante 
    758   1.9  thorpej 	sg_block_next_addr = (u_long) sg_block;	/* allow math operation */
    759  1.35   briggs 	sg_block_physical_addr = le32toh(ccb->hashkey) +
    760  1.10  thorpej 	    offsetof(struct adw_ccb, sg_block[0]);
    761  1.35   briggs 	scsiqp->sg_real_addr = htole32(sg_block_physical_addr);
    762   1.1    dante 
    763   1.1    dante 	/*
    764  1.40      wiz 	 * If there are more than NO_OF_SG_PER_BLOCK DMA segments (hw sg-list)
    765   1.1    dante 	 * then split the request into multiple sg-list blocks.
    766   1.1    dante 	 */
    767   1.1    dante 
    768   1.2    dante 	do {
    769   1.2    dante 		for (i = 0; i < NO_OF_SG_PER_BLOCK; i++) {
    770  1.35   briggs 			sg_block->sg_list[i].sg_addr = htole32(sg_list->ds_addr);
    771  1.35   briggs 			sg_block->sg_list[i].sg_count = htole32(sg_list->ds_len);
    772   1.1    dante 
    773   1.2    dante 			if (--sg_elem_cnt == 0) {
    774   1.1    dante 				/* last entry, get out */
    775  1.27  hpeyerl 				sg_block->sg_cnt = i + 1;
    776   1.2    dante 				sg_block->sg_ptr = NULL; /* next link = NULL */
    777   1.1    dante 				return;
    778   1.1    dante 			}
    779   1.1    dante 			sg_list++;
    780   1.1    dante 		}
    781   1.1    dante 		sg_block_next_addr += sizeof(ADW_SG_BLOCK);
    782   1.1    dante 		sg_block_physical_addr += sizeof(ADW_SG_BLOCK);
    783   1.1    dante 
    784  1.13    dante 		sg_block->sg_cnt = NO_OF_SG_PER_BLOCK;
    785  1.35   briggs 		sg_block->sg_ptr = htole32(sg_block_physical_addr);
    786   1.2    dante 		sg_block = (ADW_SG_BLOCK *) sg_block_next_addr;	/* virt. addr */
    787  1.10  thorpej 	} while (1);
    788   1.1    dante }
    789   1.1    dante 
    790   1.1    dante 
    791  1.22    dante /******************************************************************************/
    792  1.22    dante /*                       Interrupts and TimeOut routines                      */
    793  1.22    dante /******************************************************************************/
    794  1.22    dante 
    795  1.22    dante 
    796   1.1    dante int
    797  1.30    lukem adw_intr(void *arg)
    798   1.1    dante {
    799   1.1    dante 	ADW_SOFTC      *sc = arg;
    800   1.1    dante 
    801   1.1    dante 
    802  1.22    dante 	if(AdwISR(sc) != ADW_FALSE) {
    803  1.16    dante 		return (1);
    804  1.13    dante 	}
    805   1.1    dante 
    806  1.16    dante 	return (0);
    807   1.1    dante }
    808   1.1    dante 
    809   1.1    dante 
    810   1.1    dante /*
    811   1.1    dante  * Poll a particular unit, looking for a particular xs
    812   1.1    dante  */
    813   1.1    dante static int
    814  1.30    lukem adw_poll(ADW_SOFTC *sc, struct scsipi_xfer *xs, int count)
    815   1.1    dante {
    816   1.1    dante 
    817   1.1    dante 	/* timeouts are in msec, so we loop in 1000 usec cycles */
    818   1.1    dante 	while (count) {
    819   1.1    dante 		adw_intr(sc);
    820  1.12  thorpej 		if (xs->xs_status & XS_STS_DONE)
    821   1.1    dante 			return (0);
    822   1.1    dante 		delay(1000);	/* only happens in boot so ok */
    823   1.1    dante 		count--;
    824   1.1    dante 	}
    825   1.1    dante 	return (1);
    826   1.1    dante }
    827   1.1    dante 
    828   1.1    dante 
    829   1.1    dante static void
    830  1.30    lukem adw_timeout(void *arg)
    831   1.1    dante {
    832   1.1    dante 	ADW_CCB        *ccb = arg;
    833   1.1    dante 	struct scsipi_xfer *xs = ccb->xs;
    834  1.29   bouyer 	struct scsipi_periph *periph = xs->xs_periph;
    835  1.29   bouyer 	ADW_SOFTC      *sc =
    836  1.29   bouyer 	    (void *)periph->periph_channel->chan_adapter->adapt_dev;
    837   1.1    dante 	int             s;
    838   1.1    dante 
    839  1.29   bouyer 	scsipi_printaddr(periph);
    840   1.1    dante 	printf("timed out");
    841   1.1    dante 
    842   1.1    dante 	s = splbio();
    843   1.1    dante 
    844  1.11    dante 	if (ccb->flags & CCB_ABORTED) {
    845  1.11    dante 	/*
    846  1.11    dante 	 * Abort Timed Out
    847  1.19    dante 	 *
    848  1.20    dante 	 * No more opportunities. Lets try resetting the bus and
    849  1.20    dante 	 * reinitialize the host adapter.
    850  1.11    dante 	 */
    851  1.19    dante 		callout_stop(&xs->xs_callout);
    852  1.11    dante 		printf(" AGAIN. Resetting SCSI Bus\n");
    853  1.22    dante 		adw_reset_bus(sc);
    854  1.19    dante 		splx(s);
    855  1.19    dante 		return;
    856  1.19    dante 	} else if (ccb->flags & CCB_ABORTING) {
    857  1.19    dante 	/*
    858  1.20    dante 	 * Abort the operation that has timed out.
    859  1.19    dante 	 *
    860  1.19    dante 	 * Second opportunity.
    861  1.19    dante 	 */
    862  1.19    dante 		printf("\n");
    863  1.19    dante 		xs->error = XS_TIMEOUT;
    864  1.19    dante 		ccb->flags |= CCB_ABORTED;
    865  1.19    dante #if 0
    866  1.19    dante 		/*
    867  1.19    dante 		 * - XXX - 3.3a microcode is BROKEN!!!
    868  1.19    dante 		 *
    869  1.19    dante 		 * We cannot abort a CCB, so we can only hope the command
    870  1.19    dante 		 * get completed before the next timeout, otherwise a
    871  1.19    dante 		 * Bus Reset will arrive inexorably.
    872  1.19    dante 		 */
    873  1.19    dante 		/*
    874  1.19    dante 		 * ADW_ABORT_CCB() makes the board to generate an interrupt
    875  1.19    dante 		 *
    876  1.19    dante 		 * - XXX - The above assertion MUST be verified (and this
    877  1.19    dante 		 *         code changed as well [callout_*()]), when the
    878  1.19    dante 		 *         ADW_ABORT_CCB will be working again
    879  1.19    dante 		 */
    880  1.19    dante 		ADW_ABORT_CCB(sc, ccb);
    881  1.19    dante #endif
    882  1.19    dante 		/*
    883  1.19    dante 		 * waiting for multishot callout_reset() let's restart it
    884  1.19    dante 		 * by hand so the next time a timeout event will occour
    885  1.19    dante 		 * we will reset the bus.
    886  1.19    dante 		 */
    887  1.19    dante 		callout_reset(&xs->xs_callout,
    888  1.38   bouyer 			    mstohz(ccb->timeout), adw_timeout, ccb);
    889   1.1    dante 	} else {
    890  1.11    dante 	/*
    891  1.20    dante 	 * Abort the operation that has timed out.
    892  1.19    dante 	 *
    893  1.19    dante 	 * First opportunity.
    894  1.11    dante 	 */
    895   1.1    dante 		printf("\n");
    896  1.11    dante 		xs->error = XS_TIMEOUT;
    897  1.11    dante 		ccb->flags |= CCB_ABORTING;
    898  1.19    dante #if 0
    899  1.19    dante 		/*
    900  1.19    dante 		 * - XXX - 3.3a microcode is BROKEN!!!
    901  1.19    dante 		 *
    902  1.19    dante 		 * We cannot abort a CCB, so we can only hope the command
    903  1.19    dante 		 * get completed before the next 2 timeout, otherwise a
    904  1.19    dante 		 * Bus Reset will arrive inexorably.
    905  1.19    dante 		 */
    906  1.19    dante 		/*
    907  1.19    dante 		 * ADW_ABORT_CCB() makes the board to generate an interrupt
    908  1.19    dante 		 *
    909  1.19    dante 		 * - XXX - The above assertion MUST be verified (and this
    910  1.19    dante 		 *         code changed as well [callout_*()]), when the
    911  1.19    dante 		 *         ADW_ABORT_CCB will be working again
    912  1.19    dante 		 */
    913   1.1    dante 		ADW_ABORT_CCB(sc, ccb);
    914  1.19    dante #endif
    915  1.19    dante 		/*
    916  1.19    dante 		 * waiting for multishot callout_reset() let's restart it
    917  1.20    dante 		 * by hand so to give a second opportunity to the command
    918  1.20    dante 		 * which timed-out.
    919  1.19    dante 		 */
    920  1.19    dante 		callout_reset(&xs->xs_callout,
    921  1.38   bouyer 			    mstohz(ccb->timeout), adw_timeout, ccb);
    922   1.1    dante 	}
    923   1.1    dante 
    924   1.1    dante 	splx(s);
    925   1.1    dante }
    926   1.1    dante 
    927   1.1    dante 
    928  1.21    dante static void
    929  1.30    lukem adw_reset_bus(ADW_SOFTC *sc)
    930  1.21    dante {
    931  1.21    dante 	ADW_CCB	*ccb;
    932  1.21    dante 	int	 s;
    933  1.29   bouyer 	struct scsipi_xfer *xs;
    934  1.21    dante 
    935  1.21    dante 	s = splbio();
    936  1.22    dante 	AdwResetSCSIBus(sc);
    937  1.21    dante 	while((ccb = TAILQ_LAST(&sc->sc_pending_ccb,
    938  1.21    dante 			adw_pending_ccb)) != NULL) {
    939  1.21    dante 		callout_stop(&ccb->xs->xs_callout);
    940  1.21    dante 		TAILQ_REMOVE(&sc->sc_pending_ccb, ccb, chain);
    941  1.29   bouyer 		xs = ccb->xs;
    942  1.29   bouyer 		adw_free_ccb(sc, ccb);
    943  1.29   bouyer 		xs->error = XS_RESOURCE_SHORTAGE;
    944  1.29   bouyer 		scsipi_done(xs);
    945  1.21    dante 	}
    946  1.21    dante 	splx(s);
    947  1.21    dante }
    948  1.21    dante 
    949  1.21    dante 
    950   1.1    dante /******************************************************************************/
    951  1.19    dante /*              Host Adapter and Peripherals Information Routines             */
    952  1.19    dante /******************************************************************************/
    953  1.19    dante 
    954  1.19    dante 
    955  1.19    dante static void
    956  1.30    lukem adw_print_info(ADW_SOFTC *sc, int tid)
    957  1.19    dante {
    958  1.19    dante 	bus_space_tag_t iot = sc->sc_iot;
    959  1.19    dante 	bus_space_handle_t ioh = sc->sc_ioh;
    960  1.19    dante 	u_int16_t wdtr_able, wdtr_done, wdtr;
    961  1.19    dante     	u_int16_t sdtr_able, sdtr_done, sdtr, period;
    962  1.20    dante 	static int wdtr_reneg = 0, sdtr_reneg = 0;
    963  1.20    dante 
    964  1.20    dante 	if (tid == 0){
    965  1.20    dante 		wdtr_reneg = sdtr_reneg = 0;
    966  1.20    dante 	}
    967  1.19    dante 
    968  1.19    dante 	printf("%s: target %d ", sc->sc_dev.dv_xname, tid);
    969  1.19    dante 
    970  1.22    dante 	ADW_READ_WORD_LRAM(iot, ioh, ADW_MC_SDTR_ABLE, wdtr_able);
    971  1.19    dante 	if(wdtr_able & ADW_TID_TO_TIDMASK(tid)) {
    972  1.22    dante 		ADW_READ_WORD_LRAM(iot, ioh, ADW_MC_SDTR_DONE, wdtr_done);
    973  1.22    dante 		ADW_READ_WORD_LRAM(iot, ioh, ADW_MC_DEVICE_HSHK_CFG_TABLE +
    974  1.19    dante 			(2 * tid), wdtr);
    975  1.19    dante 		printf("using %d-bits wide, ", (wdtr & 0x8000)? 16 : 8);
    976  1.19    dante 		if((wdtr_done & ADW_TID_TO_TIDMASK(tid)) == 0)
    977  1.19    dante 			wdtr_reneg = 1;
    978  1.19    dante 	} else {
    979  1.19    dante 		printf("wide transfers disabled, ");
    980  1.19    dante 	}
    981  1.19    dante 
    982  1.22    dante 	ADW_READ_WORD_LRAM(iot, ioh, ADW_MC_SDTR_ABLE, sdtr_able);
    983  1.19    dante 	if(sdtr_able & ADW_TID_TO_TIDMASK(tid)) {
    984  1.22    dante 		ADW_READ_WORD_LRAM(iot, ioh, ADW_MC_SDTR_DONE, sdtr_done);
    985  1.22    dante 		ADW_READ_WORD_LRAM(iot, ioh, ADW_MC_DEVICE_HSHK_CFG_TABLE +
    986  1.19    dante 			(2 * tid), sdtr);
    987  1.19    dante 		sdtr &=  ~0x8000;
    988  1.19    dante 		if((sdtr & 0x1F) != 0) {
    989  1.19    dante 			if((sdtr & 0x1F00) == 0x1100){
    990  1.19    dante 				printf("80.0 MHz");
    991  1.19    dante 			} else if((sdtr & 0x1F00) == 0x1000){
    992  1.19    dante 				printf("40.0 MHz");
    993  1.19    dante 			} else {
    994  1.19    dante 				/* <= 20.0 MHz */
    995  1.19    dante 				period = (((sdtr >> 8) * 25) + 50)/4;
    996  1.19    dante 				if(period == 0) {
    997  1.19    dante 					/* Should never happen. */
    998  1.19    dante 					printf("? MHz");
    999  1.19    dante 				} else {
   1000  1.19    dante 					printf("%d.%d MHz", 250/period,
   1001  1.19    dante 						ADW_TENTHS(250, period));
   1002  1.19    dante 				}
   1003  1.19    dante 			}
   1004  1.19    dante 			printf(" synchronous transfers\n");
   1005  1.19    dante 		} else {
   1006  1.19    dante 			printf("asynchronous transfers\n");
   1007  1.19    dante 		}
   1008  1.19    dante 		if((sdtr_done & ADW_TID_TO_TIDMASK(tid)) == 0)
   1009  1.19    dante 			sdtr_reneg = 1;
   1010  1.19    dante 	} else {
   1011  1.19    dante 		printf("synchronous transfers disabled\n");
   1012  1.19    dante 	}
   1013  1.19    dante 
   1014  1.19    dante 	if(wdtr_reneg || sdtr_reneg) {
   1015  1.19    dante 		printf("%s: target %d %s", sc->sc_dev.dv_xname, tid,
   1016  1.19    dante 			(wdtr_reneg)? ((sdtr_reneg)? "wide/sync" : "wide") :
   1017  1.19    dante 			((sdtr_reneg)? "sync" : "") );
   1018  1.19    dante 		printf(" renegotiation pending before next command.\n");
   1019  1.19    dante 	}
   1020  1.19    dante }
   1021  1.19    dante 
   1022  1.19    dante 
   1023  1.19    dante /******************************************************************************/
   1024  1.19    dante /*                        WIDE boards Interrupt callbacks                     */
   1025   1.1    dante /******************************************************************************/
   1026   1.1    dante 
   1027   1.1    dante 
   1028   1.1    dante /*
   1029  1.22    dante  * adw_isr_callback() - Second Level Interrupt Handler called by AdwISR()
   1030   1.1    dante  *
   1031   1.1    dante  * Interrupt callback function for the Wide SCSI Adv Library.
   1032  1.19    dante  *
   1033  1.19    dante  * Notice:
   1034  1.22    dante  * Interrupts are disabled by the caller (AdwISR() function), and will be
   1035  1.19    dante  * enabled at the end of the caller.
   1036   1.1    dante  */
   1037   1.1    dante static void
   1038  1.30    lukem adw_isr_callback(ADW_SOFTC *sc, ADW_SCSI_REQ_Q *scsiq)
   1039   1.1    dante {
   1040   1.2    dante 	bus_dma_tag_t   dmat = sc->sc_dmat;
   1041   1.7    dante 	ADW_CCB        *ccb;
   1042   1.7    dante 	struct scsipi_xfer *xs;
   1043   1.1    dante 	struct scsipi_sense_data *s1, *s2;
   1044   1.1    dante 
   1045   1.7    dante 
   1046   1.7    dante 	ccb = adw_ccb_phys_kv(sc, scsiq->ccb_ptr);
   1047  1.11    dante 
   1048  1.15  thorpej 	callout_stop(&ccb->xs->xs_callout);
   1049  1.11    dante 
   1050   1.7    dante 	xs = ccb->xs;
   1051   1.1    dante 
   1052   1.1    dante 	/*
   1053   1.1    dante          * If we were a data transfer, unload the map that described
   1054   1.1    dante          * the data buffer.
   1055   1.1    dante          */
   1056   1.1    dante 	if (xs->datalen) {
   1057   1.1    dante 		bus_dmamap_sync(dmat, ccb->dmamap_xfer, 0,
   1058   1.1    dante 				ccb->dmamap_xfer->dm_mapsize,
   1059  1.12  thorpej 			 (xs->xs_control & XS_CTL_DATA_IN) ?
   1060  1.12  thorpej 			 BUS_DMASYNC_POSTREAD : BUS_DMASYNC_POSTWRITE);
   1061   1.1    dante 		bus_dmamap_unload(dmat, ccb->dmamap_xfer);
   1062   1.1    dante 	}
   1063  1.20    dante 
   1064   1.1    dante 	if ((ccb->flags & CCB_ALLOC) == 0) {
   1065   1.1    dante 		printf("%s: exiting ccb not allocated!\n", sc->sc_dev.dv_xname);
   1066   1.1    dante 		Debugger();
   1067   1.1    dante 		return;
   1068   1.1    dante 	}
   1069  1.20    dante 
   1070   1.1    dante 	/*
   1071   1.1    dante 	 * 'done_status' contains the command's ending status.
   1072  1.20    dante 	 * 'host_status' conatins the host adapter status.
   1073  1.20    dante 	 * 'scsi_status' contains the scsi peripheral status.
   1074   1.1    dante 	 */
   1075  1.21    dante 	if ((scsiq->host_status == QHSTA_NO_ERROR) &&
   1076  1.21    dante 	   ((scsiq->done_status == QD_NO_ERROR) ||
   1077  1.22    dante 	    (scsiq->done_status == QD_WITH_ERROR))) {
   1078  1.34    dante 		switch (scsiq->scsi_status) {
   1079  1.21    dante 		case SCSI_STATUS_GOOD:
   1080  1.21    dante 			if ((scsiq->cdb[0] == INQUIRY) &&
   1081  1.21    dante 			    (scsiq->target_lun == 0)) {
   1082  1.21    dante 				adw_print_info(sc, scsiq->target_id);
   1083  1.21    dante 			}
   1084  1.21    dante 			xs->error = XS_NOERROR;
   1085  1.35   briggs 			xs->resid = le32toh(scsiq->data_cnt);
   1086  1.21    dante 			sc->sc_freeze_dev[scsiq->target_id] = 0;
   1087  1.21    dante 			break;
   1088  1.21    dante 
   1089  1.21    dante 		case SCSI_STATUS_CHECK_CONDITION:
   1090  1.21    dante 		case SCSI_STATUS_CMD_TERMINATED:
   1091  1.21    dante 			s1 = &ccb->scsi_sense;
   1092  1.21    dante 			s2 = &xs->sense.scsi_sense;
   1093  1.21    dante 			*s2 = *s1;
   1094  1.21    dante 			xs->error = XS_SENSE;
   1095  1.21    dante 			sc->sc_freeze_dev[scsiq->target_id] = 1;
   1096  1.21    dante 			break;
   1097  1.21    dante 
   1098  1.21    dante 		default:
   1099  1.21    dante 			xs->error = XS_BUSY;
   1100  1.21    dante 			sc->sc_freeze_dev[scsiq->target_id] = 1;
   1101  1.21    dante 			break;
   1102  1.20    dante 		}
   1103  1.21    dante 	} else if (scsiq->done_status == QD_ABORTED_BY_HOST) {
   1104  1.21    dante 		xs->error = XS_DRIVER_STUFFUP;
   1105  1.21    dante 	} else {
   1106  1.21    dante 		switch (scsiq->host_status) {
   1107  1.21    dante 		case QHSTA_M_SEL_TIMEOUT:
   1108  1.21    dante 			xs->error = XS_SELTIMEOUT;
   1109  1.21    dante 			break;
   1110  1.21    dante 
   1111  1.21    dante 		case QHSTA_M_SXFR_OFF_UFLW:
   1112  1.21    dante 		case QHSTA_M_SXFR_OFF_OFLW:
   1113  1.21    dante 		case QHSTA_M_DATA_OVER_RUN:
   1114  1.21    dante 			printf("%s: Overrun/Overflow/Underflow condition\n",
   1115  1.21    dante 				sc->sc_dev.dv_xname);
   1116  1.21    dante 			xs->error = XS_DRIVER_STUFFUP;
   1117  1.21    dante 			break;
   1118  1.21    dante 
   1119  1.21    dante 		case QHSTA_M_SXFR_DESELECTED:
   1120  1.21    dante 		case QHSTA_M_UNEXPECTED_BUS_FREE:
   1121  1.21    dante 			printf("%s: Unexpected BUS free\n",sc->sc_dev.dv_xname);
   1122  1.21    dante 			xs->error = XS_DRIVER_STUFFUP;
   1123  1.21    dante 			break;
   1124  1.21    dante 
   1125  1.21    dante 		case QHSTA_M_SCSI_BUS_RESET:
   1126  1.21    dante 		case QHSTA_M_SCSI_BUS_RESET_UNSOL:
   1127  1.21    dante 			printf("%s: BUS Reset\n", sc->sc_dev.dv_xname);
   1128  1.21    dante 			xs->error = XS_DRIVER_STUFFUP;
   1129  1.21    dante 			break;
   1130   1.1    dante 
   1131  1.21    dante 		case QHSTA_M_BUS_DEVICE_RESET:
   1132  1.21    dante 			printf("%s: Device Reset\n", sc->sc_dev.dv_xname);
   1133  1.21    dante 			xs->error = XS_DRIVER_STUFFUP;
   1134  1.21    dante 			break;
   1135  1.20    dante 
   1136  1.21    dante 		case QHSTA_M_QUEUE_ABORTED:
   1137  1.21    dante 			printf("%s: Queue Aborted\n", sc->sc_dev.dv_xname);
   1138  1.21    dante 			xs->error = XS_DRIVER_STUFFUP;
   1139   1.1    dante 			break;
   1140   1.1    dante 
   1141  1.20    dante 		case QHSTA_M_SXFR_SDMA_ERR:
   1142  1.21    dante 		case QHSTA_M_SXFR_SXFR_PERR:
   1143  1.21    dante 		case QHSTA_M_RDMA_PERR:
   1144  1.20    dante 			/*
   1145  1.21    dante 			 * DMA Error. This should *NEVER* happen!
   1146  1.20    dante 			 *
   1147  1.20    dante 			 * Lets try resetting the bus and reinitialize
   1148  1.20    dante 			 * the host adapter.
   1149  1.20    dante 			 */
   1150  1.21    dante 			printf("%s: DMA Error. Reseting bus\n",
   1151  1.21    dante 				sc->sc_dev.dv_xname);
   1152  1.22    dante 			TAILQ_REMOVE(&sc->sc_pending_ccb, ccb, chain);
   1153  1.22    dante 			adw_reset_bus(sc);
   1154  1.21    dante 			xs->error = XS_BUSY;
   1155  1.22    dante 			goto done;
   1156  1.21    dante 
   1157  1.21    dante 		case QHSTA_M_WTM_TIMEOUT:
   1158  1.21    dante 		case QHSTA_M_SXFR_WD_TMO:
   1159  1.21    dante 			/* The SCSI bus hung in a phase */
   1160  1.21    dante 			printf("%s: Watch Dog timer expired. Reseting bus\n",
   1161  1.21    dante 				sc->sc_dev.dv_xname);
   1162  1.22    dante 			TAILQ_REMOVE(&sc->sc_pending_ccb, ccb, chain);
   1163  1.22    dante 			adw_reset_bus(sc);
   1164  1.21    dante 			xs->error = XS_BUSY;
   1165  1.22    dante 			goto done;
   1166  1.21    dante 
   1167  1.21    dante 		case QHSTA_M_SXFR_XFR_PH_ERR:
   1168  1.21    dante 			printf("%s: Transfer Error\n", sc->sc_dev.dv_xname);
   1169  1.21    dante 			xs->error = XS_DRIVER_STUFFUP;
   1170  1.21    dante 			break;
   1171  1.21    dante 
   1172  1.21    dante 		case QHSTA_M_BAD_CMPL_STATUS_IN:
   1173  1.21    dante 			/* No command complete after a status message */
   1174  1.21    dante 			printf("%s: Bad Completion Status\n",
   1175  1.21    dante 				sc->sc_dev.dv_xname);
   1176  1.21    dante 			xs->error = XS_DRIVER_STUFFUP;
   1177  1.21    dante 			break;
   1178  1.21    dante 
   1179  1.21    dante 		case QHSTA_M_AUTO_REQ_SENSE_FAIL:
   1180  1.21    dante 			printf("%s: Auto Sense Failed\n", sc->sc_dev.dv_xname);
   1181  1.21    dante 			xs->error = XS_DRIVER_STUFFUP;
   1182  1.21    dante 			break;
   1183  1.21    dante 
   1184  1.21    dante 		case QHSTA_M_INVALID_DEVICE:
   1185  1.21    dante 			printf("%s: Invalid Device\n", sc->sc_dev.dv_xname);
   1186  1.21    dante 			xs->error = XS_DRIVER_STUFFUP;
   1187  1.21    dante 			break;
   1188  1.11    dante 
   1189  1.21    dante 		case QHSTA_M_NO_AUTO_REQ_SENSE:
   1190  1.21    dante 			/*
   1191  1.21    dante 			 * User didn't request sense, but we got a
   1192  1.21    dante 			 * check condition.
   1193  1.21    dante 			 */
   1194  1.21    dante 			printf("%s: Unexpected Check Condition\n",
   1195  1.21    dante 					sc->sc_dev.dv_xname);
   1196   1.1    dante 			xs->error = XS_DRIVER_STUFFUP;
   1197   1.1    dante 			break;
   1198   1.1    dante 
   1199  1.21    dante 		case QHSTA_M_SXFR_UNKNOWN_ERROR:
   1200  1.21    dante 			printf("%s: Unknown Error\n", sc->sc_dev.dv_xname);
   1201  1.21    dante 			xs->error = XS_DRIVER_STUFFUP;
   1202  1.21    dante 			break;
   1203  1.11    dante 
   1204  1.21    dante 		default:
   1205  1.21    dante 			panic("%s: Unhandled Host Status Error %x",
   1206  1.21    dante 			      sc->sc_dev.dv_xname, scsiq->host_status);
   1207  1.21    dante 		}
   1208   1.1    dante 	}
   1209   1.1    dante 
   1210  1.19    dante 	TAILQ_REMOVE(&sc->sc_pending_ccb, ccb, chain);
   1211  1.22    dante done:	adw_free_ccb(sc, ccb);
   1212   1.1    dante 	scsipi_done(xs);
   1213  1.11    dante }
   1214  1.11    dante 
   1215  1.11    dante 
   1216  1.13    dante /*
   1217  1.22    dante  * adw_async_callback() - Adv Library asynchronous event callback function.
   1218  1.13    dante  */
   1219  1.11    dante static void
   1220  1.30    lukem adw_async_callback(ADW_SOFTC *sc, u_int8_t code)
   1221  1.11    dante {
   1222  1.13    dante 	switch (code) {
   1223  1.13    dante 	case ADV_ASYNC_SCSI_BUS_RESET_DET:
   1224  1.21    dante 		/* The firmware detected a SCSI Bus reset. */
   1225  1.19    dante 		printf("%s: SCSI Bus reset detected\n", sc->sc_dev.dv_xname);
   1226  1.13    dante 		break;
   1227  1.13    dante 
   1228  1.13    dante 	case ADV_ASYNC_RDMA_FAILURE:
   1229  1.13    dante 		/*
   1230  1.13    dante 		 * Handle RDMA failure by resetting the SCSI Bus and
   1231  1.19    dante 		 * possibly the chip if it is unresponsive.
   1232  1.13    dante 		 */
   1233  1.20    dante 		printf("%s: RDMA failure. Resetting the SCSI Bus and"
   1234  1.20    dante 				" the adapter\n", sc->sc_dev.dv_xname);
   1235  1.22    dante 		AdwResetSCSIBus(sc);
   1236  1.13    dante 		break;
   1237  1.13    dante 
   1238  1.13    dante 	case ADV_HOST_SCSI_BUS_RESET:
   1239  1.21    dante 		/* Host generated SCSI bus reset occurred. */
   1240  1.19    dante 		printf("%s: Host generated SCSI bus reset occurred\n",
   1241  1.19    dante 				sc->sc_dev.dv_xname);
   1242  1.19    dante 		break;
   1243  1.19    dante 
   1244  1.19    dante 	case ADV_ASYNC_CARRIER_READY_FAILURE:
   1245  1.21    dante 		/* Carrier Ready failure. */
   1246  1.19    dante 		printf("%s: Carrier Ready failure!\n", sc->sc_dev.dv_xname);
   1247  1.19    dante 		break;
   1248  1.13    dante 
   1249  1.13    dante 	default:
   1250  1.13    dante 		break;
   1251  1.13    dante 	}
   1252   1.1    dante }
   1253