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mpt_netbsd.c revision 1.29
      1  1.29  jmcneill /*	$NetBSD: mpt_netbsd.c,v 1.29 2014/09/27 21:01:51 jmcneill Exp $	*/
      2   1.1   thorpej 
      3   1.1   thorpej /*
      4   1.1   thorpej  * Copyright (c) 2003 Wasabi Systems, Inc.
      5   1.1   thorpej  * All rights reserved.
      6   1.1   thorpej  *
      7   1.1   thorpej  * Written by Jason R. Thorpe for Wasabi Systems, Inc.
      8   1.1   thorpej  *
      9   1.1   thorpej  * Redistribution and use in source and binary forms, with or without
     10   1.1   thorpej  * modification, are permitted provided that the following conditions
     11   1.1   thorpej  * are met:
     12   1.1   thorpej  * 1. Redistributions of source code must retain the above copyright
     13   1.1   thorpej  *    notice, this list of conditions and the following disclaimer.
     14   1.1   thorpej  * 2. Redistributions in binary form must reproduce the above copyright
     15   1.1   thorpej  *    notice, this list of conditions and the following disclaimer in the
     16   1.1   thorpej  *    documentation and/or other materials provided with the distribution.
     17   1.1   thorpej  * 3. All advertising materials mentioning features or use of this software
     18   1.1   thorpej  *    must display the following acknowledgement:
     19   1.1   thorpej  *	This product includes software developed for the NetBSD Project by
     20   1.1   thorpej  *	Wasabi Systems, Inc.
     21   1.1   thorpej  * 4. The name of Wasabi Systems, Inc. may not be used to endorse
     22   1.1   thorpej  *    or promote products derived from this software without specific prior
     23   1.1   thorpej  *    written permission.
     24   1.1   thorpej  *
     25   1.1   thorpej  * THIS SOFTWARE IS PROVIDED BY WASABI SYSTEMS, INC. ``AS IS'' AND
     26   1.1   thorpej  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     27   1.1   thorpej  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     28   1.1   thorpej  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL WASABI SYSTEMS, INC
     29   1.1   thorpej  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     30   1.1   thorpej  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     31   1.1   thorpej  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     32   1.1   thorpej  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     33   1.1   thorpej  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     34   1.1   thorpej  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     35   1.1   thorpej  * POSSIBILITY OF SUCH DAMAGE.
     36   1.1   thorpej  */
     37   1.1   thorpej 
     38   1.1   thorpej /*
     39   1.1   thorpej  * Copyright (c) 2000, 2001 by Greg Ansley
     40   1.1   thorpej  * Partially derived from Matt Jacob's ISP driver.
     41   1.1   thorpej  *
     42   1.1   thorpej  * Redistribution and use in source and binary forms, with or without
     43   1.1   thorpej  * modification, are permitted provided that the following conditions
     44   1.1   thorpej  * are met:
     45   1.1   thorpej  * 1. Redistributions of source code must retain the above copyright
     46   1.1   thorpej  *    notice immediately at the beginning of the file, without modification,
     47   1.1   thorpej  *    this list of conditions, and the following disclaimer.
     48   1.1   thorpej  * 2. The name of the author may not be used to endorse or promote products
     49   1.1   thorpej  *    derived from this software without specific prior written permission.
     50   1.1   thorpej  *
     51   1.1   thorpej  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
     52   1.1   thorpej  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     53   1.1   thorpej  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     54   1.1   thorpej  * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR
     55   1.1   thorpej  * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     56   1.1   thorpej  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     57   1.1   thorpej  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     58   1.1   thorpej  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     59   1.1   thorpej  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     60   1.1   thorpej  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     61   1.1   thorpej  * SUCH DAMAGE.
     62   1.1   thorpej  */
     63   1.1   thorpej /*
     64   1.1   thorpej  * Additional Copyright (c) 2002 by Matthew Jacob under same license.
     65   1.1   thorpej  */
     66   1.1   thorpej 
     67   1.1   thorpej /*
     68   1.1   thorpej  * mpt_netbsd.c:
     69   1.1   thorpej  *
     70   1.1   thorpej  * NetBSD-specific routines for LSI Fusion adapters.  Includes some
     71   1.1   thorpej  * bus_dma glue, and SCSIPI glue.
     72   1.1   thorpej  *
     73   1.1   thorpej  * Adapted from the FreeBSD "mpt" driver by Jason R. Thorpe for
     74   1.1   thorpej  * Wasabi Systems, Inc.
     75  1.12      tron  *
     76  1.12      tron  * Additional contributions by Garrett D'Amore on behalf of TELES AG.
     77   1.1   thorpej  */
     78   1.7     lukem 
     79   1.7     lukem #include <sys/cdefs.h>
     80  1.29  jmcneill __KERNEL_RCSID(0, "$NetBSD: mpt_netbsd.c,v 1.29 2014/09/27 21:01:51 jmcneill Exp $");
     81  1.26  jmcneill 
     82  1.26  jmcneill #include "bio.h"
     83   1.1   thorpej 
     84   1.1   thorpej #include <dev/ic/mpt.h>			/* pulls in all headers */
     85  1.20    buhrow #include <sys/scsiio.h>
     86   1.1   thorpej 
     87  1.26  jmcneill #if NBIO > 0
     88  1.26  jmcneill #include <dev/biovar.h>
     89  1.26  jmcneill #endif
     90  1.26  jmcneill 
     91   1.1   thorpej static int	mpt_poll(mpt_softc_t *, struct scsipi_xfer *, int);
     92   1.1   thorpej static void	mpt_timeout(void *);
     93  1.20    buhrow static void	mpt_restart(mpt_softc_t *, request_t *);
     94   1.1   thorpej static void	mpt_done(mpt_softc_t *, uint32_t);
     95  1.20    buhrow static int	mpt_drain_queue(mpt_softc_t *);
     96   1.1   thorpej static void	mpt_run_xfer(mpt_softc_t *, struct scsipi_xfer *);
     97   1.1   thorpej static void	mpt_set_xfer_mode(mpt_softc_t *, struct scsipi_xfer_mode *);
     98   1.1   thorpej static void	mpt_get_xfer_mode(mpt_softc_t *, struct scsipi_periph *);
     99   1.1   thorpej static void	mpt_ctlop(mpt_softc_t *, void *vmsg, uint32_t);
    100   1.1   thorpej static void	mpt_event_notify_reply(mpt_softc_t *, MSG_EVENT_NOTIFY_REPLY *);
    101  1.20    buhrow static void  mpt_bus_reset(mpt_softc_t *);
    102   1.1   thorpej 
    103   1.1   thorpej static void	mpt_scsipi_request(struct scsipi_channel *,
    104   1.1   thorpej 		    scsipi_adapter_req_t, void *);
    105   1.1   thorpej static void	mpt_minphys(struct buf *);
    106  1.20    buhrow static int 	mpt_ioctl(struct scsipi_channel *, u_long, void *, int,
    107  1.20    buhrow 	struct proc *);
    108   1.1   thorpej 
    109  1.26  jmcneill #if NBIO > 0
    110  1.26  jmcneill static bool	mpt_is_raid(mpt_softc_t *);
    111  1.26  jmcneill static int	mpt_bio_ioctl(device_t, u_long, void *);
    112  1.26  jmcneill static int	mpt_bio_ioctl_inq(mpt_softc_t *, struct bioc_inq *);
    113  1.26  jmcneill static int	mpt_bio_ioctl_vol(mpt_softc_t *, struct bioc_vol *);
    114  1.26  jmcneill static int	mpt_bio_ioctl_disk(mpt_softc_t *, struct bioc_disk *);
    115  1.29  jmcneill static int	mpt_bio_ioctl_disk_novol(mpt_softc_t *, struct bioc_disk *);
    116  1.26  jmcneill static int	mpt_bio_ioctl_setstate(mpt_softc_t *, struct bioc_setstate *);
    117  1.26  jmcneill #endif
    118  1.26  jmcneill 
    119   1.1   thorpej void
    120   1.1   thorpej mpt_scsipi_attach(mpt_softc_t *mpt)
    121   1.1   thorpej {
    122   1.1   thorpej 	struct scsipi_adapter *adapt = &mpt->sc_adapter;
    123   1.1   thorpej 	struct scsipi_channel *chan = &mpt->sc_channel;
    124   1.1   thorpej 	int maxq;
    125   1.1   thorpej 
    126   1.1   thorpej 	mpt->bus = 0;		/* XXX ?? */
    127   1.1   thorpej 
    128   1.1   thorpej 	maxq = (mpt->mpt_global_credits < MPT_MAX_REQUESTS(mpt)) ?
    129   1.1   thorpej 	    mpt->mpt_global_credits : MPT_MAX_REQUESTS(mpt);
    130   1.1   thorpej 
    131   1.1   thorpej 	/* Fill in the scsipi_adapter. */
    132   1.1   thorpej 	memset(adapt, 0, sizeof(*adapt));
    133  1.18    martin 	adapt->adapt_dev = mpt->sc_dev;
    134   1.1   thorpej 	adapt->adapt_nchannels = 1;
    135  1.17    mhitch 	adapt->adapt_openings = maxq - 2;	/* Reserve 2 for driver use*/
    136  1.17    mhitch 	adapt->adapt_max_periph = maxq - 2;
    137   1.1   thorpej 	adapt->adapt_request = mpt_scsipi_request;
    138   1.1   thorpej 	adapt->adapt_minphys = mpt_minphys;
    139  1.20    buhrow 	adapt->adapt_ioctl = mpt_ioctl;
    140   1.1   thorpej 
    141   1.1   thorpej 	/* Fill in the scsipi_channel. */
    142   1.1   thorpej 	memset(chan, 0, sizeof(*chan));
    143   1.1   thorpej 	chan->chan_adapter = adapt;
    144  1.19       chs 	if (mpt->is_sas) {
    145  1.19       chs 		chan->chan_bustype = &scsi_sas_bustype;
    146  1.19       chs 	} else if (mpt->is_fc) {
    147  1.19       chs 		chan->chan_bustype = &scsi_fc_bustype;
    148  1.19       chs 	} else {
    149  1.19       chs 		chan->chan_bustype = &scsi_bustype;
    150  1.19       chs 	}
    151   1.1   thorpej 	chan->chan_channel = 0;
    152   1.1   thorpej 	chan->chan_flags = 0;
    153   1.1   thorpej 	chan->chan_nluns = 8;
    154  1.12      tron 	chan->chan_ntargets = mpt->mpt_max_devices;
    155  1.12      tron 	chan->chan_id = mpt->mpt_ini_id;
    156   1.1   thorpej 
    157  1.22    buhrow 	/*
    158  1.22    buhrow 	* Save the output of the config so we can rescan the bus in case of
    159  1.22    buhrow 	* errors
    160  1.22    buhrow 	*/
    161  1.22    buhrow 	mpt->sc_scsibus_dv = config_found(mpt->sc_dev, &mpt->sc_channel,
    162  1.22    buhrow 	scsiprint);
    163  1.26  jmcneill 
    164  1.26  jmcneill #if NBIO > 0
    165  1.26  jmcneill 	if (mpt_is_raid(mpt)) {
    166  1.26  jmcneill 		if (bio_register(mpt->sc_dev, mpt_bio_ioctl) != 0)
    167  1.26  jmcneill 			panic("%s: controller registration failed",
    168  1.26  jmcneill 			    device_xname(mpt->sc_dev));
    169  1.26  jmcneill 	}
    170  1.26  jmcneill #endif
    171   1.1   thorpej }
    172   1.1   thorpej 
    173   1.1   thorpej int
    174   1.1   thorpej mpt_dma_mem_alloc(mpt_softc_t *mpt)
    175   1.1   thorpej {
    176   1.1   thorpej 	bus_dma_segment_t reply_seg, request_seg;
    177   1.1   thorpej 	int reply_rseg, request_rseg;
    178   1.1   thorpej 	bus_addr_t pptr, end;
    179  1.11  christos 	char *vptr;
    180   1.1   thorpej 	size_t len;
    181   1.1   thorpej 	int error, i;
    182   1.1   thorpej 
    183   1.1   thorpej 	/* Check if we have already allocated the reply memory. */
    184   1.1   thorpej 	if (mpt->reply != NULL)
    185   1.1   thorpej 		return (0);
    186   1.1   thorpej 
    187   1.1   thorpej 	/*
    188   1.1   thorpej 	 * Allocate the request pool.  This isn't really DMA'd memory,
    189   1.1   thorpej 	 * but it's a convenient place to do it.
    190   1.1   thorpej 	 */
    191   1.1   thorpej 	len = sizeof(request_t) * MPT_MAX_REQUESTS(mpt);
    192   1.1   thorpej 	mpt->request_pool = malloc(len, M_DEVBUF, M_WAITOK | M_ZERO);
    193   1.1   thorpej 	if (mpt->request_pool == NULL) {
    194  1.18    martin 		aprint_error_dev(mpt->sc_dev, "unable to allocate request pool\n");
    195   1.1   thorpej 		return (ENOMEM);
    196   1.1   thorpej 	}
    197   1.1   thorpej 
    198   1.1   thorpej 	/*
    199   1.1   thorpej 	 * Allocate DMA resources for reply buffers.
    200   1.1   thorpej 	 */
    201   1.1   thorpej 	error = bus_dmamem_alloc(mpt->sc_dmat, PAGE_SIZE, PAGE_SIZE, 0,
    202   1.1   thorpej 	    &reply_seg, 1, &reply_rseg, 0);
    203   1.1   thorpej 	if (error) {
    204  1.18    martin 		aprint_error_dev(mpt->sc_dev, "unable to allocate reply area, error = %d\n",
    205  1.14    cegger 		    error);
    206   1.1   thorpej 		goto fail_0;
    207   1.1   thorpej 	}
    208   1.1   thorpej 
    209   1.1   thorpej 	error = bus_dmamem_map(mpt->sc_dmat, &reply_seg, reply_rseg, PAGE_SIZE,
    210  1.11  christos 	    (void **) &mpt->reply, BUS_DMA_COHERENT/*XXX*/);
    211   1.1   thorpej 	if (error) {
    212  1.18    martin 		aprint_error_dev(mpt->sc_dev, "unable to map reply area, error = %d\n",
    213  1.14    cegger 		    error);
    214   1.1   thorpej 		goto fail_1;
    215   1.1   thorpej 	}
    216   1.1   thorpej 
    217   1.1   thorpej 	error = bus_dmamap_create(mpt->sc_dmat, PAGE_SIZE, 1, PAGE_SIZE,
    218   1.1   thorpej 	    0, 0, &mpt->reply_dmap);
    219   1.1   thorpej 	if (error) {
    220  1.18    martin 		aprint_error_dev(mpt->sc_dev, "unable to create reply DMA map, error = %d\n",
    221  1.14    cegger 		    error);
    222   1.1   thorpej 		goto fail_2;
    223   1.1   thorpej 	}
    224   1.1   thorpej 
    225   1.1   thorpej 	error = bus_dmamap_load(mpt->sc_dmat, mpt->reply_dmap, mpt->reply,
    226   1.1   thorpej 	    PAGE_SIZE, NULL, 0);
    227   1.1   thorpej 	if (error) {
    228  1.18    martin 		aprint_error_dev(mpt->sc_dev, "unable to load reply DMA map, error = %d\n",
    229  1.14    cegger 		    error);
    230   1.1   thorpej 		goto fail_3;
    231   1.1   thorpej 	}
    232   1.1   thorpej 	mpt->reply_phys = mpt->reply_dmap->dm_segs[0].ds_addr;
    233   1.1   thorpej 
    234   1.1   thorpej 	/*
    235   1.1   thorpej 	 * Allocate DMA resources for request buffers.
    236   1.1   thorpej 	 */
    237   1.1   thorpej 	error = bus_dmamem_alloc(mpt->sc_dmat, MPT_REQ_MEM_SIZE(mpt),
    238   1.1   thorpej 	    PAGE_SIZE, 0, &request_seg, 1, &request_rseg, 0);
    239   1.1   thorpej 	if (error) {
    240  1.18    martin 		aprint_error_dev(mpt->sc_dev, "unable to allocate request area, "
    241  1.14    cegger 		    "error = %d\n", error);
    242   1.1   thorpej 		goto fail_4;
    243   1.1   thorpej 	}
    244   1.1   thorpej 
    245   1.1   thorpej 	error = bus_dmamem_map(mpt->sc_dmat, &request_seg, request_rseg,
    246  1.11  christos 	    MPT_REQ_MEM_SIZE(mpt), (void **) &mpt->request, 0);
    247   1.1   thorpej 	if (error) {
    248  1.18    martin 		aprint_error_dev(mpt->sc_dev, "unable to map request area, error = %d\n",
    249  1.14    cegger 		    error);
    250   1.1   thorpej 		goto fail_5;
    251   1.1   thorpej 	}
    252   1.1   thorpej 
    253   1.1   thorpej 	error = bus_dmamap_create(mpt->sc_dmat, MPT_REQ_MEM_SIZE(mpt), 1,
    254   1.1   thorpej 	    MPT_REQ_MEM_SIZE(mpt), 0, 0, &mpt->request_dmap);
    255   1.1   thorpej 	if (error) {
    256  1.18    martin 		aprint_error_dev(mpt->sc_dev, "unable to create request DMA map, "
    257  1.14    cegger 		    "error = %d\n", error);
    258   1.1   thorpej 		goto fail_6;
    259   1.1   thorpej 	}
    260   1.1   thorpej 
    261   1.1   thorpej 	error = bus_dmamap_load(mpt->sc_dmat, mpt->request_dmap, mpt->request,
    262   1.1   thorpej 	    MPT_REQ_MEM_SIZE(mpt), NULL, 0);
    263   1.1   thorpej 	if (error) {
    264  1.18    martin 		aprint_error_dev(mpt->sc_dev, "unable to load request DMA map, error = %d\n",
    265  1.14    cegger 		    error);
    266   1.1   thorpej 		goto fail_7;
    267   1.1   thorpej 	}
    268   1.1   thorpej 	mpt->request_phys = mpt->request_dmap->dm_segs[0].ds_addr;
    269   1.1   thorpej 
    270   1.1   thorpej 	pptr = mpt->request_phys;
    271  1.11  christos 	vptr = (void *) mpt->request;
    272   1.1   thorpej 	end = pptr + MPT_REQ_MEM_SIZE(mpt);
    273   1.1   thorpej 
    274   1.1   thorpej 	for (i = 0; pptr < end; i++) {
    275   1.1   thorpej 		request_t *req = &mpt->request_pool[i];
    276   1.1   thorpej 		req->index = i;
    277   1.1   thorpej 
    278   1.1   thorpej 		/* Store location of Request Data */
    279   1.1   thorpej 		req->req_pbuf = pptr;
    280   1.1   thorpej 		req->req_vbuf = vptr;
    281   1.1   thorpej 
    282   1.1   thorpej 		pptr += MPT_REQUEST_AREA;
    283   1.1   thorpej 		vptr += MPT_REQUEST_AREA;
    284   1.1   thorpej 
    285   1.1   thorpej 		req->sense_pbuf = (pptr - MPT_SENSE_SIZE);
    286   1.1   thorpej 		req->sense_vbuf = (vptr - MPT_SENSE_SIZE);
    287   1.1   thorpej 
    288   1.5       tls 		error = bus_dmamap_create(mpt->sc_dmat, MAXPHYS,
    289   1.5       tls 		    MPT_SGL_MAX, MAXPHYS, 0, 0, &req->dmap);
    290   1.1   thorpej 		if (error) {
    291  1.18    martin 			aprint_error_dev(mpt->sc_dev, "unable to create req %d DMA map, "
    292  1.14    cegger 			    "error = %d\n", i, error);
    293   1.1   thorpej 			goto fail_8;
    294   1.1   thorpej 		}
    295   1.1   thorpej 	}
    296   1.1   thorpej 
    297   1.1   thorpej 	return (0);
    298   1.1   thorpej 
    299   1.1   thorpej  fail_8:
    300   1.1   thorpej 	for (--i; i >= 0; i--) {
    301   1.1   thorpej 		request_t *req = &mpt->request_pool[i];
    302   1.3   thorpej 		if (req->dmap != NULL)
    303   1.3   thorpej 			bus_dmamap_destroy(mpt->sc_dmat, req->dmap);
    304   1.1   thorpej 	}
    305   1.1   thorpej 	bus_dmamap_unload(mpt->sc_dmat, mpt->request_dmap);
    306   1.1   thorpej  fail_7:
    307   1.1   thorpej 	bus_dmamap_destroy(mpt->sc_dmat, mpt->request_dmap);
    308   1.1   thorpej  fail_6:
    309  1.11  christos 	bus_dmamem_unmap(mpt->sc_dmat, (void *)mpt->request, PAGE_SIZE);
    310   1.1   thorpej  fail_5:
    311   1.1   thorpej 	bus_dmamem_free(mpt->sc_dmat, &request_seg, request_rseg);
    312   1.1   thorpej  fail_4:
    313   1.1   thorpej 	bus_dmamap_unload(mpt->sc_dmat, mpt->reply_dmap);
    314   1.1   thorpej  fail_3:
    315   1.1   thorpej 	bus_dmamap_destroy(mpt->sc_dmat, mpt->reply_dmap);
    316   1.1   thorpej  fail_2:
    317  1.11  christos 	bus_dmamem_unmap(mpt->sc_dmat, (void *)mpt->reply, PAGE_SIZE);
    318   1.1   thorpej  fail_1:
    319   1.1   thorpej 	bus_dmamem_free(mpt->sc_dmat, &reply_seg, reply_rseg);
    320   1.1   thorpej  fail_0:
    321   1.1   thorpej 	free(mpt->request_pool, M_DEVBUF);
    322   1.1   thorpej 
    323   1.1   thorpej 	mpt->reply = NULL;
    324   1.1   thorpej 	mpt->request = NULL;
    325   1.1   thorpej 	mpt->request_pool = NULL;
    326   1.1   thorpej 
    327   1.1   thorpej 	return (error);
    328   1.1   thorpej }
    329   1.1   thorpej 
    330   1.1   thorpej int
    331   1.1   thorpej mpt_intr(void *arg)
    332   1.1   thorpej {
    333   1.1   thorpej 	mpt_softc_t *mpt = arg;
    334   1.1   thorpej 	int nrepl = 0;
    335   1.1   thorpej 
    336   1.1   thorpej 	if ((mpt_read(mpt, MPT_OFFSET_INTR_STATUS) & MPT_INTR_REPLY_READY) == 0)
    337   1.1   thorpej 		return (0);
    338   1.1   thorpej 
    339  1.21    buhrow 	nrepl = mpt_drain_queue(mpt);
    340   1.1   thorpej 	return (nrepl != 0);
    341   1.1   thorpej }
    342   1.1   thorpej 
    343   1.1   thorpej void
    344   1.1   thorpej mpt_prt(mpt_softc_t *mpt, const char *fmt, ...)
    345   1.1   thorpej {
    346   1.1   thorpej 	va_list ap;
    347   1.1   thorpej 
    348  1.18    martin 	printf("%s: ", device_xname(mpt->sc_dev));
    349   1.1   thorpej 	va_start(ap, fmt);
    350   1.1   thorpej 	vprintf(fmt, ap);
    351   1.1   thorpej 	va_end(ap);
    352   1.1   thorpej 	printf("\n");
    353   1.1   thorpej }
    354   1.1   thorpej 
    355   1.1   thorpej static int
    356   1.1   thorpej mpt_poll(mpt_softc_t *mpt, struct scsipi_xfer *xs, int count)
    357   1.1   thorpej {
    358   1.1   thorpej 
    359   1.1   thorpej 	/* Timeouts are in msec, so we loop in 1000usec cycles */
    360   1.1   thorpej 	while (count) {
    361   1.1   thorpej 		mpt_intr(mpt);
    362   1.1   thorpej 		if (xs->xs_status & XS_STS_DONE)
    363   1.1   thorpej 			return (0);
    364   1.1   thorpej 		delay(1000);		/* only happens in boot, so ok */
    365   1.1   thorpej 		count--;
    366   1.1   thorpej 	}
    367   1.1   thorpej 	return (1);
    368   1.1   thorpej }
    369   1.1   thorpej 
    370   1.1   thorpej static void
    371   1.1   thorpej mpt_timeout(void *arg)
    372   1.1   thorpej {
    373   1.1   thorpej 	request_t *req = arg;
    374  1.20    buhrow 	struct scsipi_xfer *xs;
    375  1.20    buhrow 	struct scsipi_periph *periph;
    376  1.20    buhrow 	mpt_softc_t *mpt;
    377  1.20    buhrow  	uint32_t oseq;
    378  1.20    buhrow 	int s, nrepl = 0;
    379  1.20    buhrow 
    380  1.21    buhrow 	if (req->xfer  == NULL) {
    381  1.20    buhrow 		printf("mpt_timeout: NULL xfer for request index 0x%x, sequenc 0x%x\n",
    382  1.20    buhrow 		req->index, req->sequence);
    383  1.20    buhrow 		return;
    384  1.20    buhrow 	}
    385  1.20    buhrow 	xs = req->xfer;
    386  1.21    buhrow 	periph = xs->xs_periph;
    387  1.25       chs 	mpt = device_private(periph->periph_channel->chan_adapter->adapt_dev);
    388   1.1   thorpej 	scsipi_printaddr(periph);
    389   1.1   thorpej 	printf("command timeout\n");
    390   1.1   thorpej 
    391   1.1   thorpej 	s = splbio();
    392   1.1   thorpej 
    393   1.1   thorpej 	oseq = req->sequence;
    394   1.1   thorpej 	mpt->timeouts++;
    395   1.1   thorpej 	if (mpt_intr(mpt)) {
    396   1.1   thorpej 		if (req->sequence != oseq) {
    397  1.22    buhrow 			mpt->success++;
    398   1.1   thorpej 			mpt_prt(mpt, "recovered from command timeout");
    399   1.1   thorpej 			splx(s);
    400   1.1   thorpej 			return;
    401   1.1   thorpej 		}
    402   1.1   thorpej 	}
    403  1.20    buhrow 
    404  1.20    buhrow 	/*
    405  1.22    buhrow 	 * Ensure the IOC is really done giving us data since it appears it can
    406  1.22    buhrow 	 * sometimes fail to give us interrupts under heavy load.
    407  1.20    buhrow 	 */
    408  1.20    buhrow 	nrepl = mpt_drain_queue(mpt);
    409  1.20    buhrow 	if (nrepl ) {
    410  1.20    buhrow 		mpt_prt(mpt, "mpt_timeout: recovered %d commands",nrepl);
    411  1.20    buhrow 	}
    412  1.20    buhrow 
    413  1.20    buhrow 	if (req->sequence != oseq) {
    414  1.22    buhrow 		mpt->success++;
    415  1.20    buhrow 		splx(s);
    416  1.20    buhrow 		return;
    417  1.20    buhrow 	}
    418  1.20    buhrow 
    419   1.1   thorpej 	mpt_prt(mpt,
    420   1.1   thorpej 	    "timeout on request index = 0x%x, seq = 0x%08x",
    421   1.1   thorpej 	    req->index, req->sequence);
    422   1.1   thorpej 	mpt_check_doorbell(mpt);
    423   1.1   thorpej 	mpt_prt(mpt, "Status 0x%08x, Mask 0x%08x, Doorbell 0x%08x",
    424   1.1   thorpej 	    mpt_read(mpt, MPT_OFFSET_INTR_STATUS),
    425   1.1   thorpej 	    mpt_read(mpt, MPT_OFFSET_INTR_MASK),
    426   1.1   thorpej 	    mpt_read(mpt, MPT_OFFSET_DOORBELL));
    427   1.1   thorpej 	mpt_prt(mpt, "request state: %s", mpt_req_state(req->debug));
    428   1.1   thorpej 	if (mpt->verbose > 1)
    429   1.1   thorpej 		mpt_print_scsi_io_request((MSG_SCSI_IO_REQUEST *)req->req_vbuf);
    430   1.1   thorpej 
    431  1.20    buhrow 	xs->error = XS_TIMEOUT;
    432  1.20    buhrow 	splx(s);
    433  1.20    buhrow 	mpt_restart(mpt, req);
    434  1.20    buhrow }
    435  1.20    buhrow 
    436  1.20    buhrow static void
    437  1.20    buhrow mpt_restart(mpt_softc_t *mpt, request_t *req0)
    438  1.20    buhrow {
    439  1.20    buhrow 	int i, s, nreq;
    440  1.20    buhrow 	request_t *req;
    441  1.20    buhrow 	struct scsipi_xfer *xs;
    442  1.20    buhrow 
    443  1.20    buhrow 	/* first, reset the IOC, leaving stopped so all requests are idle */
    444  1.20    buhrow 	if (mpt_soft_reset(mpt) != MPT_OK) {
    445  1.20    buhrow 		mpt_prt(mpt, "soft reset failed");
    446  1.22    buhrow 		/*
    447  1.22    buhrow 		* Don't try a hard reset since this mangles the PCI
    448  1.22    buhrow 		* configuration registers.
    449  1.22    buhrow 		*/
    450  1.20    buhrow 		return;
    451  1.20    buhrow 	}
    452   1.1   thorpej 
    453  1.22    buhrow 	/* Freeze the channel so scsipi doesn't queue more commands. */
    454  1.20    buhrow 	scsipi_channel_freeze(&mpt->sc_channel, 1);
    455   1.6   thorpej 
    456  1.22    buhrow 	/* Return all pending requests to scsipi and de-allocate them. */
    457  1.20    buhrow 	s = splbio();
    458  1.20    buhrow 	nreq = 0;
    459  1.20    buhrow 	for (i = 0; i < MPT_MAX_REQUESTS(mpt); i++) {
    460  1.20    buhrow 		req = &mpt->request_pool[i];
    461  1.20    buhrow 		xs = req->xfer;
    462  1.20    buhrow 		if (xs != NULL) {
    463  1.20    buhrow 			if (xs->datalen != 0)
    464  1.20    buhrow 				bus_dmamap_unload(mpt->sc_dmat, req->dmap);
    465  1.20    buhrow 			req->xfer = NULL;
    466  1.20    buhrow 			callout_stop(&xs->xs_callout);
    467  1.20    buhrow 			if (req != req0) {
    468  1.20    buhrow 				nreq++;
    469  1.20    buhrow 				xs->error = XS_REQUEUE;
    470  1.20    buhrow 			}
    471  1.20    buhrow 			scsipi_done(xs);
    472  1.22    buhrow 			/*
    473  1.22    buhrow 			* Don't need to mpt_free_request() since mpt_init()
    474  1.22    buhrow 			* below will free all requests anyway.
    475  1.22    buhrow 			*/
    476  1.20    buhrow 			mpt_free_request(mpt, req);
    477  1.20    buhrow 		}
    478  1.20    buhrow 	}
    479   1.1   thorpej 	splx(s);
    480  1.20    buhrow 	if (nreq > 0)
    481  1.20    buhrow 		mpt_prt(mpt, "re-queued %d requests", nreq);
    482  1.20    buhrow 
    483  1.22    buhrow 	/* Re-initialize the IOC (which restarts it). */
    484  1.20    buhrow 	if (mpt_init(mpt, MPT_DB_INIT_HOST) == 0)
    485  1.20    buhrow 		mpt_prt(mpt, "restart succeeded");
    486  1.20    buhrow 	/* else error message already printed */
    487  1.20    buhrow 
    488  1.22    buhrow 	/* Thaw the channel, causing scsipi to re-queue the commands. */
    489  1.20    buhrow 	scsipi_channel_thaw(&mpt->sc_channel, 1);
    490  1.20    buhrow }
    491  1.20    buhrow 
    492  1.22    buhrow static int
    493  1.22    buhrow mpt_drain_queue(mpt_softc_t *mpt)
    494  1.20    buhrow {
    495  1.20    buhrow 	int nrepl = 0;
    496  1.20    buhrow 	uint32_t reply;
    497  1.20    buhrow 
    498  1.20    buhrow 	reply = mpt_pop_reply_queue(mpt);
    499  1.20    buhrow 	while (reply != MPT_REPLY_EMPTY) {
    500  1.20    buhrow 		nrepl++;
    501  1.20    buhrow 		if (mpt->verbose > 1) {
    502  1.20    buhrow 			if ((reply & MPT_CONTEXT_REPLY) != 0) {
    503  1.20    buhrow 				/* Address reply; IOC has something to say */
    504  1.20    buhrow 				mpt_print_reply(MPT_REPLY_PTOV(mpt, reply));
    505  1.20    buhrow 			} else {
    506  1.20    buhrow 				/* Context reply; all went well */
    507  1.20    buhrow 				mpt_prt(mpt, "context %u reply OK", reply);
    508  1.20    buhrow 			}
    509  1.20    buhrow 		}
    510  1.20    buhrow 		mpt_done(mpt, reply);
    511  1.20    buhrow 		reply = mpt_pop_reply_queue(mpt);
    512  1.20    buhrow 	}
    513  1.20    buhrow 	return (nrepl);
    514   1.1   thorpej }
    515   1.1   thorpej 
    516   1.1   thorpej static void
    517   1.1   thorpej mpt_done(mpt_softc_t *mpt, uint32_t reply)
    518   1.1   thorpej {
    519   1.6   thorpej 	struct scsipi_xfer *xs = NULL;
    520   1.1   thorpej 	struct scsipi_periph *periph;
    521   1.1   thorpej 	int index;
    522   1.1   thorpej 	request_t *req;
    523   1.1   thorpej 	MSG_REQUEST_HEADER *mpt_req;
    524   1.1   thorpej 	MSG_SCSI_IO_REPLY *mpt_reply;
    525  1.22    buhrow 	int restart = 0; /* nonzero if we need to restart the IOC*/
    526   1.1   thorpej 
    527   1.1   thorpej 	if (__predict_true((reply & MPT_CONTEXT_REPLY) == 0)) {
    528   1.1   thorpej 		/* context reply (ok) */
    529   1.1   thorpej 		mpt_reply = NULL;
    530   1.1   thorpej 		index = reply & MPT_CONTEXT_MASK;
    531   1.1   thorpej 	} else {
    532   1.1   thorpej 		/* address reply (error) */
    533   1.1   thorpej 
    534   1.1   thorpej 		/* XXX BUS_DMASYNC_POSTREAD XXX */
    535   1.1   thorpej 		mpt_reply = MPT_REPLY_PTOV(mpt, reply);
    536  1.24  christos 		if (mpt_reply != NULL) {
    537  1.24  christos 			if (mpt->verbose > 1) {
    538  1.24  christos 				uint32_t *pReply = (uint32_t *) mpt_reply;
    539   1.9     perry 
    540  1.24  christos 				mpt_prt(mpt, "Address Reply (index %u):",
    541  1.24  christos 				    le32toh(mpt_reply->MsgContext) & 0xffff);
    542  1.24  christos 				mpt_prt(mpt, "%08x %08x %08x %08x", pReply[0],
    543  1.24  christos 				    pReply[1], pReply[2], pReply[3]);
    544  1.24  christos 				mpt_prt(mpt, "%08x %08x %08x %08x", pReply[4],
    545  1.24  christos 				    pReply[5], pReply[6], pReply[7]);
    546  1.24  christos 				mpt_prt(mpt, "%08x %08x %08x %08x", pReply[8],
    547  1.24  christos 				    pReply[9], pReply[10], pReply[11]);
    548  1.24  christos 			}
    549  1.24  christos 			index = le32toh(mpt_reply->MsgContext);
    550  1.24  christos 		} else
    551  1.24  christos 			index = reply & MPT_CONTEXT_MASK;
    552   1.1   thorpej 	}
    553   1.1   thorpej 
    554   1.1   thorpej 	/*
    555   1.1   thorpej 	 * Address reply with MessageContext high bit set.
    556   1.1   thorpej 	 * This is most likely a notify message, so we try
    557   1.1   thorpej 	 * to process it, then free it.
    558   1.1   thorpej 	 */
    559   1.1   thorpej 	if (__predict_false((index & 0x80000000) != 0)) {
    560   1.1   thorpej 		if (mpt_reply != NULL)
    561   1.1   thorpej 			mpt_ctlop(mpt, mpt_reply, reply);
    562   1.1   thorpej 		else
    563  1.23  christos 			mpt_prt(mpt, "%s: index 0x%x, NULL reply", __func__,
    564  1.23  christos 			    index);
    565   1.1   thorpej 		return;
    566   1.1   thorpej 	}
    567   1.1   thorpej 
    568   1.1   thorpej 	/* Did we end up with a valid index into the table? */
    569   1.1   thorpej 	if (__predict_false(index < 0 || index >= MPT_MAX_REQUESTS(mpt))) {
    570  1.23  christos 		mpt_prt(mpt, "%s: invalid index (0x%x) in reply", __func__,
    571  1.23  christos 		    index);
    572   1.1   thorpej 		return;
    573   1.1   thorpej 	}
    574   1.1   thorpej 
    575   1.1   thorpej 	req = &mpt->request_pool[index];
    576   1.1   thorpej 
    577   1.1   thorpej 	/* Make sure memory hasn't been trashed. */
    578   1.1   thorpej 	if (__predict_false(req->index != index)) {
    579  1.23  christos 		mpt_prt(mpt, "%s: corrupted request_t (0x%x)", __func__,
    580  1.23  christos 		    index);
    581   1.1   thorpej 		return;
    582   1.1   thorpej 	}
    583   1.1   thorpej 
    584   1.2   thorpej 	MPT_SYNC_REQ(mpt, req, BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
    585   1.1   thorpej 	mpt_req = req->req_vbuf;
    586   1.1   thorpej 
    587   1.1   thorpej 	/* Short cut for task management replies; nothing more for us to do. */
    588   1.1   thorpej 	if (__predict_false(mpt_req->Function == MPI_FUNCTION_SCSI_TASK_MGMT)) {
    589   1.1   thorpej 		if (mpt->verbose > 1)
    590  1.23  christos 			mpt_prt(mpt, "%s: TASK MGMT", __func__);
    591  1.21    buhrow 		KASSERT(req == mpt->mngt_req);
    592  1.21    buhrow 		mpt->mngt_req = NULL;
    593   1.1   thorpej 		goto done;
    594   1.1   thorpej 	}
    595   1.1   thorpej 
    596   1.1   thorpej 	if (__predict_false(mpt_req->Function == MPI_FUNCTION_PORT_ENABLE))
    597   1.1   thorpej 		goto done;
    598   1.1   thorpej 
    599   1.1   thorpej 	/*
    600   1.1   thorpej 	 * At this point, it had better be a SCSI I/O command, but don't
    601   1.1   thorpej 	 * crash if it isn't.
    602   1.1   thorpej 	 */
    603   1.1   thorpej 	if (__predict_false(mpt_req->Function !=
    604   1.1   thorpej 			    MPI_FUNCTION_SCSI_IO_REQUEST)) {
    605   1.1   thorpej 		if (mpt->verbose > 1)
    606  1.23  christos 			mpt_prt(mpt, "%s: unknown Function 0x%x (0x%x)",
    607  1.23  christos 			    __func__, mpt_req->Function, index);
    608   1.1   thorpej 		goto done;
    609   1.1   thorpej 	}
    610   1.1   thorpej 
    611   1.1   thorpej 	/* Recover scsipi_xfer from the request structure. */
    612   1.1   thorpej 	xs = req->xfer;
    613   1.1   thorpej 
    614   1.1   thorpej 	/* Can't have a SCSI command without a scsipi_xfer. */
    615   1.1   thorpej 	if (__predict_false(xs == NULL)) {
    616   1.1   thorpej 		mpt_prt(mpt,
    617  1.23  christos 		    "%s: no scsipi_xfer, index = 0x%x, seq = 0x%08x", __func__,
    618   1.1   thorpej 		    req->index, req->sequence);
    619   1.1   thorpej 		mpt_prt(mpt, "request state: %s", mpt_req_state(req->debug));
    620   1.1   thorpej 		mpt_prt(mpt, "mpt_request:");
    621   1.1   thorpej 		mpt_print_scsi_io_request((MSG_SCSI_IO_REQUEST *)req->req_vbuf);
    622   1.1   thorpej 
    623   1.1   thorpej 		if (mpt_reply != NULL) {
    624   1.1   thorpej 			mpt_prt(mpt, "mpt_reply:");
    625   1.1   thorpej 			mpt_print_reply(mpt_reply);
    626   1.1   thorpej 		} else {
    627   1.1   thorpej 			mpt_prt(mpt, "context reply: 0x%08x", reply);
    628   1.1   thorpej 		}
    629   1.1   thorpej 		goto done;
    630   1.1   thorpej 	}
    631   1.1   thorpej 
    632   1.1   thorpej 	callout_stop(&xs->xs_callout);
    633   1.1   thorpej 
    634   1.1   thorpej 	periph = xs->xs_periph;
    635   1.1   thorpej 
    636   1.1   thorpej 	/*
    637   1.1   thorpej 	 * If we were a data transfer, unload the map that described
    638   1.1   thorpej 	 * the data buffer.
    639   1.1   thorpej 	 */
    640   1.1   thorpej 	if (__predict_true(xs->datalen != 0)) {
    641   1.1   thorpej 		bus_dmamap_sync(mpt->sc_dmat, req->dmap, 0,
    642   1.1   thorpej 		    req->dmap->dm_mapsize,
    643   1.1   thorpej 		    (xs->xs_control & XS_CTL_DATA_IN) ? BUS_DMASYNC_POSTREAD
    644   1.1   thorpej 						      : BUS_DMASYNC_POSTWRITE);
    645   1.1   thorpej 		bus_dmamap_unload(mpt->sc_dmat, req->dmap);
    646   1.1   thorpej 	}
    647   1.1   thorpej 
    648   1.1   thorpej 	if (__predict_true(mpt_reply == NULL)) {
    649   1.1   thorpej 		/*
    650   1.1   thorpej 		 * Context reply; report that the command was
    651   1.1   thorpej 		 * successful!
    652   1.1   thorpej 		 *
    653   1.1   thorpej 		 * Also report the xfer mode, if necessary.
    654   1.1   thorpej 		 */
    655   1.1   thorpej 		if (__predict_false(mpt->mpt_report_xfer_mode != 0)) {
    656   1.1   thorpej 			if ((mpt->mpt_report_xfer_mode &
    657   1.1   thorpej 			     (1 << periph->periph_target)) != 0)
    658   1.1   thorpej 				mpt_get_xfer_mode(mpt, periph);
    659   1.1   thorpej 		}
    660   1.1   thorpej 		xs->error = XS_NOERROR;
    661   1.1   thorpej 		xs->status = SCSI_OK;
    662   1.1   thorpej 		xs->resid = 0;
    663   1.6   thorpej 		mpt_free_request(mpt, req);
    664   1.1   thorpej 		scsipi_done(xs);
    665   1.6   thorpej 		return;
    666   1.1   thorpej 	}
    667   1.1   thorpej 
    668   1.1   thorpej 	xs->status = mpt_reply->SCSIStatus;
    669  1.22    buhrow 	switch (le16toh(mpt_reply->IOCStatus) & MPI_IOCSTATUS_MASK) {
    670   1.1   thorpej 	case MPI_IOCSTATUS_SCSI_DATA_OVERRUN:
    671   1.1   thorpej 		xs->error = XS_DRIVER_STUFFUP;
    672  1.23  christos 		mpt_prt(mpt, "%s: IOC overrun!", __func__);
    673   1.1   thorpej 		break;
    674   1.1   thorpej 
    675   1.1   thorpej 	case MPI_IOCSTATUS_SCSI_DATA_UNDERRUN:
    676   1.1   thorpej 		/*
    677   1.1   thorpej 		 * Yikes!  Tagged queue full comes through this path!
    678   1.1   thorpej 		 *
    679   1.1   thorpej 		 * So we'll change it to a status error and anything
    680   1.1   thorpej 		 * that returns status should probably be a status
    681   1.1   thorpej 		 * error as well.
    682   1.1   thorpej 		 */
    683  1.15       chs 		xs->resid = xs->datalen - le32toh(mpt_reply->TransferCount);
    684   1.1   thorpej 		if (mpt_reply->SCSIState &
    685   1.1   thorpej 		    MPI_SCSI_STATE_NO_SCSI_STATUS) {
    686   1.1   thorpej 			xs->error = XS_DRIVER_STUFFUP;
    687   1.1   thorpej 			break;
    688   1.1   thorpej 		}
    689   1.1   thorpej 		/* FALLTHROUGH */
    690   1.1   thorpej 	case MPI_IOCSTATUS_SUCCESS:
    691   1.1   thorpej 	case MPI_IOCSTATUS_SCSI_RECOVERED_ERROR:
    692   1.1   thorpej 		switch (xs->status) {
    693   1.1   thorpej 		case SCSI_OK:
    694   1.1   thorpej 			/* Report the xfer mode, if necessary. */
    695   1.1   thorpej 			if ((mpt->mpt_report_xfer_mode &
    696   1.1   thorpej 			     (1 << periph->periph_target)) != 0)
    697   1.1   thorpej 				mpt_get_xfer_mode(mpt, periph);
    698   1.1   thorpej 			xs->resid = 0;
    699   1.1   thorpej 			break;
    700   1.1   thorpej 
    701   1.1   thorpej 		case SCSI_CHECK:
    702   1.1   thorpej 			xs->error = XS_SENSE;
    703   1.1   thorpej 			break;
    704   1.1   thorpej 
    705   1.1   thorpej 		case SCSI_BUSY:
    706   1.1   thorpej 		case SCSI_QUEUE_FULL:
    707   1.1   thorpej 			xs->error = XS_BUSY;
    708   1.1   thorpej 			break;
    709   1.1   thorpej 
    710   1.1   thorpej 		default:
    711   1.1   thorpej 			scsipi_printaddr(periph);
    712   1.1   thorpej 			printf("invalid status code %d\n", xs->status);
    713   1.1   thorpej 			xs->error = XS_DRIVER_STUFFUP;
    714   1.1   thorpej 			break;
    715   1.1   thorpej 		}
    716   1.1   thorpej 		break;
    717   1.1   thorpej 
    718   1.1   thorpej 	case MPI_IOCSTATUS_BUSY:
    719   1.1   thorpej 	case MPI_IOCSTATUS_INSUFFICIENT_RESOURCES:
    720   1.1   thorpej 		xs->error = XS_RESOURCE_SHORTAGE;
    721   1.1   thorpej 		break;
    722   1.1   thorpej 
    723   1.1   thorpej 	case MPI_IOCSTATUS_SCSI_INVALID_BUS:
    724   1.1   thorpej 	case MPI_IOCSTATUS_SCSI_INVALID_TARGETID:
    725   1.1   thorpej 	case MPI_IOCSTATUS_SCSI_DEVICE_NOT_THERE:
    726   1.1   thorpej 		xs->error = XS_SELTIMEOUT;
    727   1.1   thorpej 		break;
    728   1.1   thorpej 
    729   1.1   thorpej 	case MPI_IOCSTATUS_SCSI_RESIDUAL_MISMATCH:
    730   1.1   thorpej 		xs->error = XS_DRIVER_STUFFUP;
    731  1.23  christos 		mpt_prt(mpt, "%s: IOC SCSI residual mismatch!", __func__);
    732  1.20    buhrow 		restart = 1;
    733   1.1   thorpej 		break;
    734   1.1   thorpej 
    735   1.1   thorpej 	case MPI_IOCSTATUS_SCSI_TASK_TERMINATED:
    736   1.1   thorpej 		/* XXX What should we do here? */
    737  1.23  christos 		mpt_prt(mpt, "%s: IOC SCSI task terminated!", __func__);
    738  1.20    buhrow 		restart = 1;
    739   1.1   thorpej 		break;
    740   1.1   thorpej 
    741   1.1   thorpej 	case MPI_IOCSTATUS_SCSI_TASK_MGMT_FAILED:
    742   1.1   thorpej 		/* XXX */
    743   1.1   thorpej 		xs->error = XS_DRIVER_STUFFUP;
    744  1.23  christos 		mpt_prt(mpt, "%s: IOC SCSI task failed!", __func__);
    745  1.20    buhrow 		restart = 1;
    746   1.1   thorpej 		break;
    747   1.1   thorpej 
    748   1.1   thorpej 	case MPI_IOCSTATUS_SCSI_IOC_TERMINATED:
    749   1.1   thorpej 		/* XXX */
    750   1.1   thorpej 		xs->error = XS_DRIVER_STUFFUP;
    751  1.23  christos 		mpt_prt(mpt, "%s: IOC task terminated!", __func__);
    752  1.20    buhrow 		restart = 1;
    753   1.1   thorpej 		break;
    754   1.1   thorpej 
    755   1.1   thorpej 	case MPI_IOCSTATUS_SCSI_EXT_TERMINATED:
    756   1.1   thorpej 		/* XXX This is a bus-reset */
    757   1.1   thorpej 		xs->error = XS_DRIVER_STUFFUP;
    758  1.23  christos 		mpt_prt(mpt, "%s: IOC SCSI bus reset!", __func__);
    759  1.20    buhrow 		restart = 1;
    760  1.20    buhrow 		break;
    761  1.20    buhrow 
    762  1.21    buhrow 	case MPI_IOCSTATUS_SCSI_PROTOCOL_ERROR:
    763  1.20    buhrow 		/*
    764  1.22    buhrow 		 * FreeBSD and Linux indicate this is a phase error between
    765  1.22    buhrow 		 * the IOC and the drive itself. When this happens, the IOC
    766  1.23  christos 		 * becomes unhappy and stops processing all transactions.
    767  1.23  christos 		 * Call mpt_timeout which knows how to get the IOC back
    768  1.23  christos 		 * on its feet.
    769  1.20    buhrow 		 */
    770  1.23  christos 		 mpt_prt(mpt, "%s: IOC indicates protocol error -- "
    771  1.23  christos 		     "recovering...", __func__);
    772  1.20    buhrow 		xs->error = XS_TIMEOUT;
    773  1.20    buhrow 		restart = 1;
    774  1.20    buhrow 
    775   1.1   thorpej 		break;
    776   1.1   thorpej 
    777   1.1   thorpej 	default:
    778   1.1   thorpej 		/* XXX unrecognized HBA error */
    779   1.1   thorpej 		xs->error = XS_DRIVER_STUFFUP;
    780  1.23  christos 		mpt_prt(mpt, "%s: IOC returned unknown code: 0x%x", __func__,
    781  1.23  christos 		    le16toh(mpt_reply->IOCStatus));
    782  1.20    buhrow 		restart = 1;
    783   1.1   thorpej 		break;
    784   1.1   thorpej 	}
    785   1.9     perry 
    786  1.24  christos 	if (mpt_reply != NULL) {
    787  1.24  christos 		if (mpt_reply->SCSIState & MPI_SCSI_STATE_AUTOSENSE_VALID) {
    788  1.24  christos 			memcpy(&xs->sense.scsi_sense, req->sense_vbuf,
    789  1.24  christos 			    sizeof(xs->sense.scsi_sense));
    790  1.24  christos 		} else if (mpt_reply->SCSIState &
    791  1.24  christos 		    MPI_SCSI_STATE_AUTOSENSE_FAILED) {
    792  1.24  christos 			/*
    793  1.24  christos 			 * This will cause the scsipi layer to issue
    794  1.24  christos 			 * a REQUEST SENSE.
    795  1.24  christos 			 */
    796  1.24  christos 			if (xs->status == SCSI_CHECK)
    797  1.24  christos 				xs->error = XS_BUSY;
    798  1.24  christos 		}
    799   1.1   thorpej 	}
    800   1.1   thorpej 
    801   1.1   thorpej  done:
    802  1.23  christos 	if (mpt_reply != NULL && le16toh(mpt_reply->IOCStatus) &
    803  1.22    buhrow 	MPI_IOCSTATUS_FLAG_LOG_INFO_AVAILABLE) {
    804  1.23  christos 		mpt_prt(mpt, "%s: IOC has error - logging...\n", __func__);
    805  1.20    buhrow 		mpt_ctlop(mpt, mpt_reply, reply);
    806  1.20    buhrow 	}
    807  1.20    buhrow 
    808  1.22    buhrow 	/* If IOC done with this request, free it up. */
    809   1.1   thorpej 	if (mpt_reply == NULL || (mpt_reply->MsgFlags & 0x80) == 0)
    810   1.1   thorpej 		mpt_free_request(mpt, req);
    811   1.1   thorpej 
    812   1.1   thorpej 	/* If address reply, give the buffer back to the IOC. */
    813   1.1   thorpej 	if (mpt_reply != NULL)
    814   1.1   thorpej 		mpt_free_reply(mpt, (reply << 1));
    815   1.6   thorpej 
    816   1.6   thorpej 	if (xs != NULL)
    817   1.6   thorpej 		scsipi_done(xs);
    818  1.20    buhrow 
    819  1.20    buhrow 	if (restart) {
    820  1.23  christos 		mpt_prt(mpt, "%s: IOC fatal error: restarting...", __func__);
    821  1.20    buhrow 		mpt_restart(mpt, NULL);
    822  1.20    buhrow 	}
    823   1.1   thorpej }
    824   1.1   thorpej 
    825   1.1   thorpej static void
    826   1.1   thorpej mpt_run_xfer(mpt_softc_t *mpt, struct scsipi_xfer *xs)
    827   1.1   thorpej {
    828   1.1   thorpej 	struct scsipi_periph *periph = xs->xs_periph;
    829   1.1   thorpej 	request_t *req;
    830   1.1   thorpej 	MSG_SCSI_IO_REQUEST *mpt_req;
    831   1.1   thorpej 	int error, s;
    832   1.1   thorpej 
    833   1.1   thorpej 	s = splbio();
    834   1.1   thorpej 	req = mpt_get_request(mpt);
    835   1.1   thorpej 	if (__predict_false(req == NULL)) {
    836   1.1   thorpej 		/* This should happen very infrequently. */
    837   1.1   thorpej 		xs->error = XS_RESOURCE_SHORTAGE;
    838   1.1   thorpej 		scsipi_done(xs);
    839   1.1   thorpej 		splx(s);
    840   1.1   thorpej 		return;
    841   1.1   thorpej 	}
    842   1.1   thorpej 	splx(s);
    843   1.1   thorpej 
    844   1.1   thorpej 	/* Link the req and the scsipi_xfer. */
    845   1.1   thorpej 	req->xfer = xs;
    846   1.1   thorpej 
    847   1.1   thorpej 	/* Now we build the command for the IOC */
    848   1.1   thorpej 	mpt_req = req->req_vbuf;
    849   1.1   thorpej 	memset(mpt_req, 0, sizeof(*mpt_req));
    850   1.1   thorpej 
    851   1.1   thorpej 	mpt_req->Function = MPI_FUNCTION_SCSI_IO_REQUEST;
    852   1.1   thorpej 	mpt_req->Bus = mpt->bus;
    853   1.1   thorpej 
    854   1.1   thorpej 	mpt_req->SenseBufferLength =
    855   1.1   thorpej 	    (sizeof(xs->sense.scsi_sense) < MPT_SENSE_SIZE) ?
    856   1.1   thorpej 	    sizeof(xs->sense.scsi_sense) : MPT_SENSE_SIZE;
    857   1.1   thorpej 
    858   1.1   thorpej 	/*
    859   1.1   thorpej 	 * We use the message context to find the request structure when
    860   1.1   thorpej 	 * we get the command completion interrupt from the IOC.
    861   1.1   thorpej 	 */
    862  1.15       chs 	mpt_req->MsgContext = htole32(req->index);
    863   1.1   thorpej 
    864   1.1   thorpej 	/* Which physical device to do the I/O on. */
    865   1.1   thorpej 	mpt_req->TargetID = periph->periph_target;
    866   1.1   thorpej 	mpt_req->LUN[1] = periph->periph_lun;
    867   1.1   thorpej 
    868   1.1   thorpej 	/* Set the direction of the transfer. */
    869   1.1   thorpej 	if (xs->xs_control & XS_CTL_DATA_IN)
    870   1.1   thorpej 		mpt_req->Control = MPI_SCSIIO_CONTROL_READ;
    871   1.1   thorpej 	else if (xs->xs_control & XS_CTL_DATA_OUT)
    872   1.1   thorpej 		mpt_req->Control = MPI_SCSIIO_CONTROL_WRITE;
    873   1.1   thorpej 	else
    874   1.1   thorpej 		mpt_req->Control = MPI_SCSIIO_CONTROL_NODATATRANSFER;
    875   1.1   thorpej 
    876   1.1   thorpej 	/* Set the queue behavior. */
    877  1.12      tron 	if (__predict_true((!mpt->is_scsi) ||
    878   1.1   thorpej 			   (mpt->mpt_tag_enable &
    879   1.1   thorpej 			    (1 << periph->periph_target)))) {
    880   1.1   thorpej 		switch (XS_CTL_TAGTYPE(xs)) {
    881   1.1   thorpej 		case XS_CTL_HEAD_TAG:
    882   1.1   thorpej 			mpt_req->Control |= MPI_SCSIIO_CONTROL_HEADOFQ;
    883   1.1   thorpej 			break;
    884   1.1   thorpej 
    885   1.1   thorpej #if 0	/* XXX */
    886   1.1   thorpej 		case XS_CTL_ACA_TAG:
    887   1.1   thorpej 			mpt_req->Control |= MPI_SCSIIO_CONTROL_ACAQ;
    888   1.1   thorpej 			break;
    889   1.1   thorpej #endif
    890   1.1   thorpej 
    891   1.1   thorpej 		case XS_CTL_ORDERED_TAG:
    892   1.1   thorpej 			mpt_req->Control |= MPI_SCSIIO_CONTROL_ORDEREDQ;
    893   1.1   thorpej 			break;
    894   1.1   thorpej 
    895   1.1   thorpej 		case XS_CTL_SIMPLE_TAG:
    896   1.1   thorpej 			mpt_req->Control |= MPI_SCSIIO_CONTROL_SIMPLEQ;
    897   1.1   thorpej 			break;
    898   1.1   thorpej 
    899   1.1   thorpej 		default:
    900  1.12      tron 			if (mpt->is_scsi)
    901  1.12      tron 				mpt_req->Control |= MPI_SCSIIO_CONTROL_UNTAGGED;
    902  1.12      tron 			else
    903   1.1   thorpej 				mpt_req->Control |= MPI_SCSIIO_CONTROL_SIMPLEQ;
    904   1.1   thorpej 			break;
    905   1.1   thorpej 		}
    906   1.1   thorpej 	} else
    907   1.1   thorpej 		mpt_req->Control |= MPI_SCSIIO_CONTROL_UNTAGGED;
    908   1.1   thorpej 
    909  1.12      tron 	if (__predict_false(mpt->is_scsi &&
    910   1.1   thorpej 			    (mpt->mpt_disc_enable &
    911   1.1   thorpej 			     (1 << periph->periph_target)) == 0))
    912   1.1   thorpej 		mpt_req->Control |= MPI_SCSIIO_CONTROL_NO_DISCONNECT;
    913   1.1   thorpej 
    914  1.15       chs 	mpt_req->Control = htole32(mpt_req->Control);
    915  1.15       chs 
    916   1.1   thorpej 	/* Copy the SCSI command block into place. */
    917   1.1   thorpej 	memcpy(mpt_req->CDB, xs->cmd, xs->cmdlen);
    918   1.1   thorpej 
    919   1.1   thorpej 	mpt_req->CDBLength = xs->cmdlen;
    920  1.15       chs 	mpt_req->DataLength = htole32(xs->datalen);
    921  1.15       chs 	mpt_req->SenseBufferLowAddr = htole32(req->sense_pbuf);
    922   1.1   thorpej 
    923   1.1   thorpej 	/*
    924   1.1   thorpej 	 * Map the DMA transfer.
    925   1.1   thorpej 	 */
    926   1.1   thorpej 	if (xs->datalen) {
    927   1.1   thorpej 		SGE_SIMPLE32 *se;
    928   1.1   thorpej 
    929   1.1   thorpej 		error = bus_dmamap_load(mpt->sc_dmat, req->dmap, xs->data,
    930   1.1   thorpej 		    xs->datalen, NULL,
    931   1.1   thorpej 		    ((xs->xs_control & XS_CTL_NOSLEEP) ? BUS_DMA_NOWAIT
    932   1.1   thorpej 						       : BUS_DMA_WAITOK) |
    933   1.1   thorpej 		    BUS_DMA_STREAMING |
    934   1.1   thorpej 		    ((xs->xs_control & XS_CTL_DATA_IN) ? BUS_DMA_READ
    935   1.1   thorpej 						       : BUS_DMA_WRITE));
    936   1.1   thorpej 		switch (error) {
    937   1.1   thorpej 		case 0:
    938   1.1   thorpej 			break;
    939   1.1   thorpej 
    940   1.1   thorpej 		case ENOMEM:
    941   1.1   thorpej 		case EAGAIN:
    942   1.1   thorpej 			xs->error = XS_RESOURCE_SHORTAGE;
    943   1.1   thorpej 			goto out_bad;
    944   1.1   thorpej 
    945   1.1   thorpej 		default:
    946   1.1   thorpej 			xs->error = XS_DRIVER_STUFFUP;
    947   1.1   thorpej 			mpt_prt(mpt, "error %d loading DMA map", error);
    948   1.1   thorpej  out_bad:
    949   1.1   thorpej 			s = splbio();
    950   1.1   thorpej 			mpt_free_request(mpt, req);
    951   1.1   thorpej 			scsipi_done(xs);
    952   1.1   thorpej 			splx(s);
    953   1.1   thorpej 			return;
    954   1.1   thorpej 		}
    955   1.1   thorpej 
    956   1.1   thorpej 		if (req->dmap->dm_nsegs > MPT_NSGL_FIRST(mpt)) {
    957   1.1   thorpej 			int seg, i, nleft = req->dmap->dm_nsegs;
    958   1.1   thorpej 			uint32_t flags;
    959   1.1   thorpej 			SGE_CHAIN32 *ce;
    960   1.1   thorpej 
    961   1.1   thorpej 			seg = 0;
    962   1.1   thorpej 			flags = MPI_SGE_FLAGS_SIMPLE_ELEMENT;
    963   1.1   thorpej 			if (xs->xs_control & XS_CTL_DATA_OUT)
    964   1.1   thorpej 				flags |= MPI_SGE_FLAGS_HOST_TO_IOC;
    965   1.1   thorpej 
    966   1.1   thorpej 			se = (SGE_SIMPLE32 *) &mpt_req->SGL;
    967   1.1   thorpej 			for (i = 0; i < MPT_NSGL_FIRST(mpt) - 1;
    968   1.1   thorpej 			     i++, se++, seg++) {
    969   1.1   thorpej 				uint32_t tf;
    970   1.1   thorpej 
    971   1.1   thorpej 				memset(se, 0, sizeof(*se));
    972  1.15       chs 				se->Address =
    973  1.15       chs 				    htole32(req->dmap->dm_segs[seg].ds_addr);
    974   1.1   thorpej 				MPI_pSGE_SET_LENGTH(se,
    975   1.1   thorpej 				    req->dmap->dm_segs[seg].ds_len);
    976   1.1   thorpej 				tf = flags;
    977   1.1   thorpej 				if (i == MPT_NSGL_FIRST(mpt) - 2)
    978   1.1   thorpej 					tf |= MPI_SGE_FLAGS_LAST_ELEMENT;
    979   1.1   thorpej 				MPI_pSGE_SET_FLAGS(se, tf);
    980  1.15       chs 				se->FlagsLength = htole32(se->FlagsLength);
    981   1.1   thorpej 				nleft--;
    982   1.1   thorpej 			}
    983   1.1   thorpej 
    984   1.1   thorpej 			/*
    985   1.1   thorpej 			 * Tell the IOC where to find the first chain element.
    986   1.1   thorpej 			 */
    987   1.1   thorpej 			mpt_req->ChainOffset =
    988   1.1   thorpej 			    ((char *)se - (char *)mpt_req) >> 2;
    989   1.1   thorpej 
    990   1.1   thorpej 			/*
    991   1.1   thorpej 			 * Until we're finished with all segments...
    992   1.1   thorpej 			 */
    993   1.1   thorpej 			while (nleft) {
    994   1.1   thorpej 				int ntodo;
    995   1.1   thorpej 
    996   1.1   thorpej 				/*
    997   1.1   thorpej 				 * Construct the chain element that points to
    998   1.1   thorpej 				 * the next segment.
    999   1.1   thorpej 				 */
   1000   1.1   thorpej 				ce = (SGE_CHAIN32 *) se++;
   1001   1.1   thorpej 				if (nleft > MPT_NSGL(mpt)) {
   1002   1.1   thorpej 					ntodo = MPT_NSGL(mpt) - 1;
   1003   1.1   thorpej 					ce->NextChainOffset = (MPT_RQSL(mpt) -
   1004   1.1   thorpej 					    sizeof(SGE_SIMPLE32)) >> 2;
   1005  1.15       chs 					ce->Length = htole16(MPT_NSGL(mpt)
   1006  1.15       chs 						* sizeof(SGE_SIMPLE32));
   1007   1.1   thorpej 				} else {
   1008   1.1   thorpej 					ntodo = nleft;
   1009   1.1   thorpej 					ce->NextChainOffset = 0;
   1010  1.15       chs 					ce->Length = htole16(ntodo
   1011  1.15       chs 						* sizeof(SGE_SIMPLE32));
   1012   1.1   thorpej 				}
   1013  1.15       chs 				ce->Address = htole32(req->req_pbuf +
   1014  1.15       chs 				    ((char *)se - (char *)mpt_req));
   1015   1.1   thorpej 				ce->Flags = MPI_SGE_FLAGS_CHAIN_ELEMENT;
   1016   1.1   thorpej 				for (i = 0; i < ntodo; i++, se++, seg++) {
   1017   1.1   thorpej 					uint32_t tf;
   1018   1.1   thorpej 
   1019   1.1   thorpej 					memset(se, 0, sizeof(*se));
   1020  1.15       chs 					se->Address = htole32(
   1021  1.15       chs 					    req->dmap->dm_segs[seg].ds_addr);
   1022   1.1   thorpej 					MPI_pSGE_SET_LENGTH(se,
   1023   1.1   thorpej 					    req->dmap->dm_segs[seg].ds_len);
   1024   1.1   thorpej 					tf = flags;
   1025   1.1   thorpej 					if (i == ntodo - 1) {
   1026   1.1   thorpej 						tf |=
   1027   1.1   thorpej 						    MPI_SGE_FLAGS_LAST_ELEMENT;
   1028   1.1   thorpej 						if (ce->NextChainOffset == 0) {
   1029   1.1   thorpej 							tf |=
   1030   1.1   thorpej 						    MPI_SGE_FLAGS_END_OF_LIST |
   1031   1.1   thorpej 						    MPI_SGE_FLAGS_END_OF_BUFFER;
   1032   1.1   thorpej 						}
   1033   1.1   thorpej 					}
   1034   1.1   thorpej 					MPI_pSGE_SET_FLAGS(se, tf);
   1035  1.15       chs 					se->FlagsLength =
   1036  1.15       chs 					    htole32(se->FlagsLength);
   1037   1.1   thorpej 					nleft--;
   1038   1.1   thorpej 				}
   1039   1.1   thorpej 			}
   1040   1.1   thorpej 			bus_dmamap_sync(mpt->sc_dmat, req->dmap, 0,
   1041   1.1   thorpej 			    req->dmap->dm_mapsize,
   1042   1.1   thorpej 			    (xs->xs_control & XS_CTL_DATA_IN) ?
   1043   1.1   thorpej 			    				BUS_DMASYNC_PREREAD
   1044   1.1   thorpej 						      : BUS_DMASYNC_PREWRITE);
   1045   1.1   thorpej 		} else {
   1046   1.1   thorpej 			int i;
   1047   1.1   thorpej 			uint32_t flags;
   1048   1.1   thorpej 
   1049   1.1   thorpej 			flags = MPI_SGE_FLAGS_SIMPLE_ELEMENT;
   1050   1.1   thorpej 			if (xs->xs_control & XS_CTL_DATA_OUT)
   1051   1.1   thorpej 				flags |= MPI_SGE_FLAGS_HOST_TO_IOC;
   1052   1.1   thorpej 
   1053   1.1   thorpej 			/* Copy the segments into our SG list. */
   1054   1.1   thorpej 			se = (SGE_SIMPLE32 *) &mpt_req->SGL;
   1055   1.1   thorpej 			for (i = 0; i < req->dmap->dm_nsegs;
   1056   1.1   thorpej 			     i++, se++) {
   1057   1.1   thorpej 				uint32_t tf;
   1058   1.1   thorpej 
   1059   1.1   thorpej 				memset(se, 0, sizeof(*se));
   1060  1.15       chs 				se->Address =
   1061  1.15       chs 				    htole32(req->dmap->dm_segs[i].ds_addr);
   1062   1.1   thorpej 				MPI_pSGE_SET_LENGTH(se,
   1063   1.1   thorpej 				    req->dmap->dm_segs[i].ds_len);
   1064   1.1   thorpej 				tf = flags;
   1065   1.1   thorpej 				if (i == req->dmap->dm_nsegs - 1) {
   1066   1.1   thorpej 					tf |=
   1067   1.1   thorpej 					    MPI_SGE_FLAGS_LAST_ELEMENT |
   1068   1.1   thorpej 					    MPI_SGE_FLAGS_END_OF_BUFFER |
   1069   1.1   thorpej 					    MPI_SGE_FLAGS_END_OF_LIST;
   1070   1.1   thorpej 				}
   1071   1.1   thorpej 				MPI_pSGE_SET_FLAGS(se, tf);
   1072  1.15       chs 				se->FlagsLength = htole32(se->FlagsLength);
   1073   1.1   thorpej 			}
   1074   1.1   thorpej 			bus_dmamap_sync(mpt->sc_dmat, req->dmap, 0,
   1075   1.1   thorpej 			    req->dmap->dm_mapsize,
   1076   1.1   thorpej 			    (xs->xs_control & XS_CTL_DATA_IN) ?
   1077   1.1   thorpej 			    				BUS_DMASYNC_PREREAD
   1078   1.1   thorpej 						      : BUS_DMASYNC_PREWRITE);
   1079   1.1   thorpej 		}
   1080   1.1   thorpej 	} else {
   1081   1.1   thorpej 		/*
   1082   1.1   thorpej 		 * No data to transfer; just make a single simple SGL
   1083   1.1   thorpej 		 * with zero length.
   1084   1.1   thorpej 		 */
   1085   1.1   thorpej 		SGE_SIMPLE32 *se = (SGE_SIMPLE32 *) &mpt_req->SGL;
   1086   1.1   thorpej 		memset(se, 0, sizeof(*se));
   1087   1.1   thorpej 		MPI_pSGE_SET_FLAGS(se,
   1088   1.1   thorpej 		    (MPI_SGE_FLAGS_LAST_ELEMENT | MPI_SGE_FLAGS_END_OF_BUFFER |
   1089   1.1   thorpej 		     MPI_SGE_FLAGS_SIMPLE_ELEMENT | MPI_SGE_FLAGS_END_OF_LIST));
   1090  1.15       chs 		se->FlagsLength = htole32(se->FlagsLength);
   1091   1.1   thorpej 	}
   1092   1.1   thorpej 
   1093   1.1   thorpej 	if (mpt->verbose > 1)
   1094   1.1   thorpej 		mpt_print_scsi_io_request(mpt_req);
   1095   1.1   thorpej 
   1096  1.20    buhrow 		if (xs->timeout == 0) {
   1097  1.23  christos 			mpt_prt(mpt, "mpt_run_xfer: no timeout specified for request: 0x%x\n",
   1098  1.20    buhrow 			req->index);
   1099  1.20    buhrow 			xs->timeout = 500;
   1100  1.20    buhrow 		}
   1101  1.20    buhrow 
   1102   1.1   thorpej 	s = splbio();
   1103   1.1   thorpej 	if (__predict_true((xs->xs_control & XS_CTL_POLL) == 0))
   1104   1.1   thorpej 		callout_reset(&xs->xs_callout,
   1105   1.1   thorpej 		    mstohz(xs->timeout), mpt_timeout, req);
   1106   1.1   thorpej 	mpt_send_cmd(mpt, req);
   1107   1.1   thorpej 	splx(s);
   1108   1.1   thorpej 
   1109   1.1   thorpej 	if (__predict_true((xs->xs_control & XS_CTL_POLL) == 0))
   1110   1.1   thorpej 		return;
   1111   1.1   thorpej 
   1112   1.1   thorpej 	/*
   1113   1.1   thorpej 	 * If we can't use interrupts, poll on completion.
   1114   1.1   thorpej 	 */
   1115   1.4   thorpej 	if (mpt_poll(mpt, xs, xs->timeout))
   1116   1.1   thorpej 		mpt_timeout(req);
   1117   1.1   thorpej }
   1118   1.1   thorpej 
   1119   1.1   thorpej static void
   1120   1.1   thorpej mpt_set_xfer_mode(mpt_softc_t *mpt, struct scsipi_xfer_mode *xm)
   1121   1.1   thorpej {
   1122   1.1   thorpej 	fCONFIG_PAGE_SCSI_DEVICE_1 tmp;
   1123   1.1   thorpej 
   1124   1.1   thorpej 	/*
   1125   1.1   thorpej 	 * Always allow disconnect; we don't have a way to disable
   1126   1.1   thorpej 	 * it right now, in any case.
   1127   1.1   thorpej 	 */
   1128   1.1   thorpej 	mpt->mpt_disc_enable |= (1 << xm->xm_target);
   1129   1.1   thorpej 
   1130   1.1   thorpej 	if (xm->xm_mode & PERIPH_CAP_TQING)
   1131   1.1   thorpej 		mpt->mpt_tag_enable |= (1 << xm->xm_target);
   1132   1.1   thorpej 	else
   1133   1.1   thorpej 		mpt->mpt_tag_enable &= ~(1 << xm->xm_target);
   1134   1.1   thorpej 
   1135  1.17    mhitch 	if (mpt->is_scsi) {
   1136  1.17    mhitch 		/*
   1137  1.17    mhitch 		 * SCSI transport settings only make any sense for
   1138  1.17    mhitch 		 * SCSI
   1139  1.17    mhitch 		 */
   1140  1.17    mhitch 
   1141  1.17    mhitch 		tmp = mpt->mpt_dev_page1[xm->xm_target];
   1142   1.1   thorpej 
   1143  1.17    mhitch 		/*
   1144  1.17    mhitch 		 * Set the wide/narrow parameter for the target.
   1145  1.17    mhitch 		 */
   1146  1.17    mhitch 		if (xm->xm_mode & PERIPH_CAP_WIDE16)
   1147  1.17    mhitch 			tmp.RequestedParameters |= MPI_SCSIDEVPAGE1_RP_WIDE;
   1148  1.17    mhitch 		else
   1149  1.17    mhitch 			tmp.RequestedParameters &= ~MPI_SCSIDEVPAGE1_RP_WIDE;
   1150   1.1   thorpej 
   1151  1.17    mhitch 		/*
   1152  1.17    mhitch 		 * Set the synchronous parameters for the target.
   1153  1.17    mhitch 		 *
   1154  1.17    mhitch 		 * XXX If we request sync transfers, we just go ahead and
   1155  1.17    mhitch 		 * XXX request the maximum available.  We need finer control
   1156  1.17    mhitch 		 * XXX in order to implement Domain Validation.
   1157  1.17    mhitch 		 */
   1158  1.17    mhitch 		tmp.RequestedParameters &= ~(MPI_SCSIDEVPAGE1_RP_MIN_SYNC_PERIOD_MASK |
   1159  1.17    mhitch 		    MPI_SCSIDEVPAGE1_RP_MAX_SYNC_OFFSET_MASK |
   1160  1.17    mhitch 		    MPI_SCSIDEVPAGE1_RP_DT | MPI_SCSIDEVPAGE1_RP_QAS |
   1161  1.17    mhitch 		    MPI_SCSIDEVPAGE1_RP_IU);
   1162  1.17    mhitch 		if (xm->xm_mode & PERIPH_CAP_SYNC) {
   1163  1.17    mhitch 			int factor, offset, np;
   1164  1.17    mhitch 
   1165  1.17    mhitch 			factor = (mpt->mpt_port_page0.Capabilities >> 8) & 0xff;
   1166  1.17    mhitch 			offset = (mpt->mpt_port_page0.Capabilities >> 16) & 0xff;
   1167  1.17    mhitch 			np = 0;
   1168  1.17    mhitch 			if (factor < 0x9) {
   1169  1.17    mhitch 				/* Ultra320 */
   1170  1.17    mhitch 				np |= MPI_SCSIDEVPAGE1_RP_QAS | MPI_SCSIDEVPAGE1_RP_IU;
   1171  1.17    mhitch 			}
   1172  1.17    mhitch 			if (factor < 0xa) {
   1173  1.17    mhitch 				/* at least Ultra160 */
   1174  1.17    mhitch 				np |= MPI_SCSIDEVPAGE1_RP_DT;
   1175  1.17    mhitch 			}
   1176  1.17    mhitch 			np |= (factor << 8) | (offset << 16);
   1177  1.17    mhitch 			tmp.RequestedParameters |= np;
   1178   1.1   thorpej 		}
   1179  1.17    mhitch 
   1180  1.17    mhitch 		host2mpt_config_page_scsi_device_1(&tmp);
   1181  1.17    mhitch 		if (mpt_write_cfg_page(mpt, xm->xm_target, &tmp.Header)) {
   1182  1.17    mhitch 			mpt_prt(mpt, "unable to write Device Page 1");
   1183  1.17    mhitch 			return;
   1184   1.1   thorpej 		}
   1185   1.1   thorpej 
   1186  1.17    mhitch 		if (mpt_read_cfg_page(mpt, xm->xm_target, &tmp.Header)) {
   1187  1.17    mhitch 			mpt_prt(mpt, "unable to read back Device Page 1");
   1188  1.17    mhitch 			return;
   1189  1.17    mhitch 		}
   1190   1.1   thorpej 
   1191  1.17    mhitch 		mpt2host_config_page_scsi_device_1(&tmp);
   1192  1.17    mhitch 		mpt->mpt_dev_page1[xm->xm_target] = tmp;
   1193  1.17    mhitch 		if (mpt->verbose > 1) {
   1194  1.17    mhitch 			mpt_prt(mpt,
   1195  1.17    mhitch 			    "SPI Target %d Page 1: RequestedParameters %x Config %x",
   1196  1.17    mhitch 			    xm->xm_target,
   1197  1.17    mhitch 			    mpt->mpt_dev_page1[xm->xm_target].RequestedParameters,
   1198  1.17    mhitch 			    mpt->mpt_dev_page1[xm->xm_target].Configuration);
   1199  1.17    mhitch 		}
   1200   1.1   thorpej 	}
   1201   1.1   thorpej 
   1202   1.1   thorpej 	/*
   1203   1.1   thorpej 	 * Make a note that we should perform an async callback at the
   1204   1.1   thorpej 	 * end of the next successful command completion to report the
   1205   1.1   thorpej 	 * negotiated transfer mode.
   1206   1.1   thorpej 	 */
   1207   1.1   thorpej 	mpt->mpt_report_xfer_mode |= (1 << xm->xm_target);
   1208   1.1   thorpej }
   1209   1.1   thorpej 
   1210   1.1   thorpej static void
   1211   1.1   thorpej mpt_get_xfer_mode(mpt_softc_t *mpt, struct scsipi_periph *periph)
   1212   1.1   thorpej {
   1213   1.1   thorpej 	fCONFIG_PAGE_SCSI_DEVICE_0 tmp;
   1214   1.1   thorpej 	struct scsipi_xfer_mode xm;
   1215   1.1   thorpej 	int period, offset;
   1216   1.1   thorpej 
   1217   1.1   thorpej 	tmp = mpt->mpt_dev_page0[periph->periph_target];
   1218  1.15       chs 	host2mpt_config_page_scsi_device_0(&tmp);
   1219   1.1   thorpej 	if (mpt_read_cfg_page(mpt, periph->periph_target, &tmp.Header)) {
   1220   1.1   thorpej 		mpt_prt(mpt, "unable to read Device Page 0");
   1221   1.1   thorpej 		return;
   1222   1.1   thorpej 	}
   1223  1.15       chs 	mpt2host_config_page_scsi_device_0(&tmp);
   1224   1.1   thorpej 
   1225   1.1   thorpej 	if (mpt->verbose > 1) {
   1226   1.1   thorpej 		mpt_prt(mpt,
   1227   1.1   thorpej 		    "SPI Tgt %d Page 0: NParms %x Information %x",
   1228   1.1   thorpej 		    periph->periph_target,
   1229   1.1   thorpej 		    tmp.NegotiatedParameters, tmp.Information);
   1230   1.1   thorpej 	}
   1231   1.1   thorpej 
   1232   1.1   thorpej 	xm.xm_target = periph->periph_target;
   1233   1.1   thorpej 	xm.xm_mode = 0;
   1234   1.1   thorpej 
   1235   1.1   thorpej 	if (tmp.NegotiatedParameters & MPI_SCSIDEVPAGE0_NP_WIDE)
   1236   1.1   thorpej 		xm.xm_mode |= PERIPH_CAP_WIDE16;
   1237   1.1   thorpej 
   1238   1.1   thorpej 	period = (tmp.NegotiatedParameters >> 8) & 0xff;
   1239   1.1   thorpej 	offset = (tmp.NegotiatedParameters >> 16) & 0xff;
   1240   1.1   thorpej 	if (offset) {
   1241   1.1   thorpej 		xm.xm_period = period;
   1242   1.1   thorpej 		xm.xm_offset = offset;
   1243   1.1   thorpej 		xm.xm_mode |= PERIPH_CAP_SYNC;
   1244   1.1   thorpej 	}
   1245   1.1   thorpej 
   1246   1.1   thorpej 	/*
   1247   1.1   thorpej 	 * Tagged queueing is all controlled by us; there is no
   1248   1.1   thorpej 	 * other setting to query.
   1249   1.1   thorpej 	 */
   1250   1.1   thorpej 	if (mpt->mpt_tag_enable & (1 << periph->periph_target))
   1251   1.1   thorpej 		xm.xm_mode |= PERIPH_CAP_TQING;
   1252   1.1   thorpej 
   1253   1.1   thorpej 	/*
   1254   1.1   thorpej 	 * We're going to deliver the async event, so clear the marker.
   1255   1.1   thorpej 	 */
   1256   1.1   thorpej 	mpt->mpt_report_xfer_mode &= ~(1 << periph->periph_target);
   1257   1.1   thorpej 
   1258   1.1   thorpej 	scsipi_async_event(&mpt->sc_channel, ASYNC_EVENT_XFER_MODE, &xm);
   1259   1.1   thorpej }
   1260   1.1   thorpej 
   1261   1.1   thorpej static void
   1262   1.1   thorpej mpt_ctlop(mpt_softc_t *mpt, void *vmsg, uint32_t reply)
   1263   1.1   thorpej {
   1264   1.1   thorpej 	MSG_DEFAULT_REPLY *dmsg = vmsg;
   1265   1.1   thorpej 
   1266   1.1   thorpej 	switch (dmsg->Function) {
   1267   1.1   thorpej 	case MPI_FUNCTION_EVENT_NOTIFICATION:
   1268   1.1   thorpej 		mpt_event_notify_reply(mpt, vmsg);
   1269   1.1   thorpej 		mpt_free_reply(mpt, (reply << 1));
   1270   1.1   thorpej 		break;
   1271   1.1   thorpej 
   1272   1.1   thorpej 	case MPI_FUNCTION_EVENT_ACK:
   1273   1.1   thorpej 		mpt_free_reply(mpt, (reply << 1));
   1274   1.1   thorpej 		break;
   1275   1.1   thorpej 
   1276   1.1   thorpej 	case MPI_FUNCTION_PORT_ENABLE:
   1277   1.1   thorpej 	    {
   1278   1.1   thorpej 		MSG_PORT_ENABLE_REPLY *msg = vmsg;
   1279  1.15       chs 		int index = le32toh(msg->MsgContext) & ~0x80000000;
   1280   1.1   thorpej 		if (mpt->verbose > 1)
   1281   1.1   thorpej 			mpt_prt(mpt, "enable port reply index %d", index);
   1282   1.1   thorpej 		if (index >= 0 && index < MPT_MAX_REQUESTS(mpt)) {
   1283   1.1   thorpej 			request_t *req = &mpt->request_pool[index];
   1284   1.1   thorpej 			req->debug = REQ_DONE;
   1285   1.1   thorpej 		}
   1286   1.1   thorpej 		mpt_free_reply(mpt, (reply << 1));
   1287   1.1   thorpej 		break;
   1288   1.1   thorpej 	    }
   1289   1.1   thorpej 
   1290   1.1   thorpej 	case MPI_FUNCTION_CONFIG:
   1291   1.1   thorpej 	    {
   1292   1.1   thorpej 		MSG_CONFIG_REPLY *msg = vmsg;
   1293  1.15       chs 		int index = le32toh(msg->MsgContext) & ~0x80000000;
   1294   1.1   thorpej 		if (index >= 0 && index < MPT_MAX_REQUESTS(mpt)) {
   1295   1.1   thorpej 			request_t *req = &mpt->request_pool[index];
   1296   1.1   thorpej 			req->debug = REQ_DONE;
   1297   1.1   thorpej 			req->sequence = reply;
   1298   1.1   thorpej 		} else
   1299   1.1   thorpej 			mpt_free_reply(mpt, (reply << 1));
   1300   1.1   thorpej 		break;
   1301   1.1   thorpej 	    }
   1302   1.1   thorpej 
   1303   1.1   thorpej 	default:
   1304   1.1   thorpej 		mpt_prt(mpt, "unknown ctlop: 0x%x", dmsg->Function);
   1305   1.1   thorpej 	}
   1306   1.1   thorpej }
   1307   1.1   thorpej 
   1308   1.1   thorpej static void
   1309   1.1   thorpej mpt_event_notify_reply(mpt_softc_t *mpt, MSG_EVENT_NOTIFY_REPLY *msg)
   1310   1.1   thorpej {
   1311   1.1   thorpej 
   1312  1.15       chs 	switch (le32toh(msg->Event)) {
   1313   1.1   thorpej 	case MPI_EVENT_LOG_DATA:
   1314   1.1   thorpej 	    {
   1315   1.1   thorpej 		int i;
   1316   1.1   thorpej 
   1317   1.1   thorpej 		/* Some error occurrerd that the Fusion wants logged. */
   1318   1.1   thorpej 		mpt_prt(mpt, "EvtLogData: IOCLogInfo: 0x%08x", msg->IOCLogInfo);
   1319   1.1   thorpej 		mpt_prt(mpt, "EvtLogData: Event Data:");
   1320   1.1   thorpej 		for (i = 0; i < msg->EventDataLength; i++) {
   1321   1.1   thorpej 			if ((i % 4) == 0)
   1322  1.18    martin 				printf("%s:\t", device_xname(mpt->sc_dev));
   1323   1.1   thorpej 			printf("0x%08x%c", msg->Data[i],
   1324   1.1   thorpej 			    ((i % 4) == 3) ? '\n' : ' ');
   1325   1.1   thorpej 		}
   1326   1.1   thorpej 		if ((i % 4) != 0)
   1327   1.1   thorpej 			printf("\n");
   1328   1.1   thorpej 		break;
   1329   1.1   thorpej 	    }
   1330   1.1   thorpej 
   1331   1.1   thorpej 	case MPI_EVENT_UNIT_ATTENTION:
   1332   1.1   thorpej 		mpt_prt(mpt, "Unit Attn: Bus 0x%02x Target 0x%02x",
   1333   1.1   thorpej 		    (msg->Data[0] >> 8) & 0xff, msg->Data[0] & 0xff);
   1334   1.1   thorpej 		break;
   1335   1.1   thorpej 
   1336   1.1   thorpej 	case MPI_EVENT_IOC_BUS_RESET:
   1337   1.1   thorpej 		/* We generated a bus reset. */
   1338   1.1   thorpej 		mpt_prt(mpt, "IOC Bus Reset Port %d",
   1339   1.1   thorpej 		    (msg->Data[0] >> 8) & 0xff);
   1340   1.1   thorpej 		break;
   1341   1.1   thorpej 
   1342   1.1   thorpej 	case MPI_EVENT_EXT_BUS_RESET:
   1343   1.1   thorpej 		/* Someone else generated a bus reset. */
   1344   1.1   thorpej 		mpt_prt(mpt, "External Bus Reset");
   1345   1.1   thorpej 		/*
   1346   1.1   thorpej 		 * These replies don't return EventData like the MPI
   1347   1.1   thorpej 		 * spec says they do.
   1348   1.1   thorpej 		 */
   1349   1.1   thorpej 		/* XXX Send an async event? */
   1350   1.1   thorpej 		break;
   1351   1.1   thorpej 
   1352   1.1   thorpej 	case MPI_EVENT_RESCAN:
   1353   1.1   thorpej 		/*
   1354   1.1   thorpej 		 * In general, thise means a device has been added
   1355   1.1   thorpej 		 * to the loop.
   1356   1.1   thorpej 		 */
   1357   1.1   thorpej 		mpt_prt(mpt, "Rescan Port %d", (msg->Data[0] >> 8) & 0xff);
   1358   1.1   thorpej 		/* XXX Send an async event? */
   1359   1.1   thorpej 		break;
   1360   1.1   thorpej 
   1361   1.1   thorpej 	case MPI_EVENT_LINK_STATUS_CHANGE:
   1362   1.1   thorpej 		mpt_prt(mpt, "Port %d: Link state %s",
   1363   1.1   thorpej 		    (msg->Data[1] >> 8) & 0xff,
   1364   1.1   thorpej 		    (msg->Data[0] & 0xff) == 0 ? "Failed" : "Active");
   1365   1.1   thorpej 		break;
   1366   1.1   thorpej 
   1367   1.1   thorpej 	case MPI_EVENT_LOOP_STATE_CHANGE:
   1368   1.1   thorpej 		switch ((msg->Data[0] >> 16) & 0xff) {
   1369   1.1   thorpej 		case 0x01:
   1370   1.1   thorpej 			mpt_prt(mpt,
   1371   1.1   thorpej 			    "Port %d: FC Link Event: LIP(%02x,%02x) "
   1372   1.1   thorpej 			    "(Loop Initialization)",
   1373   1.1   thorpej 			    (msg->Data[1] >> 8) & 0xff,
   1374   1.1   thorpej 			    (msg->Data[0] >> 8) & 0xff,
   1375   1.1   thorpej 			    (msg->Data[0]     ) & 0xff);
   1376   1.1   thorpej 			switch ((msg->Data[0] >> 8) & 0xff) {
   1377   1.1   thorpej 			case 0xf7:
   1378   1.1   thorpej 				if ((msg->Data[0] & 0xff) == 0xf7)
   1379   1.1   thorpej 					mpt_prt(mpt, "\tDevice needs AL_PA");
   1380   1.1   thorpej 				else
   1381   1.1   thorpej 					mpt_prt(mpt, "\tDevice %02x doesn't "
   1382   1.1   thorpej 					    "like FC performance",
   1383   1.1   thorpej 					    msg->Data[0] & 0xff);
   1384   1.1   thorpej 				break;
   1385   1.1   thorpej 
   1386   1.1   thorpej 			case 0xf8:
   1387   1.1   thorpej 				if ((msg->Data[0] & 0xff) == 0xf7)
   1388   1.1   thorpej 					mpt_prt(mpt, "\tDevice detected loop "
   1389   1.1   thorpej 					    "failure before acquiring AL_PA");
   1390   1.1   thorpej 				else
   1391   1.1   thorpej 					mpt_prt(mpt, "\tDevice %02x detected "
   1392   1.1   thorpej 					    "loop failure",
   1393   1.1   thorpej 					    msg->Data[0] & 0xff);
   1394   1.1   thorpej 				break;
   1395   1.1   thorpej 
   1396   1.1   thorpej 			default:
   1397   1.1   thorpej 				mpt_prt(mpt, "\tDevice %02x requests that "
   1398   1.1   thorpej 				    "device %02x reset itself",
   1399   1.1   thorpej 				    msg->Data[0] & 0xff,
   1400   1.1   thorpej 				    (msg->Data[0] >> 8) & 0xff);
   1401   1.1   thorpej 				break;
   1402   1.1   thorpej 			}
   1403   1.1   thorpej 			break;
   1404   1.1   thorpej 
   1405   1.1   thorpej 		case 0x02:
   1406   1.1   thorpej 			mpt_prt(mpt, "Port %d: FC Link Event: LPE(%02x,%02x) "
   1407   1.1   thorpej 			    "(Loop Port Enable)",
   1408   1.1   thorpej 			    (msg->Data[1] >> 8) & 0xff,
   1409   1.1   thorpej 			    (msg->Data[0] >> 8) & 0xff,
   1410   1.1   thorpej 			    (msg->Data[0]     ) & 0xff);
   1411   1.1   thorpej 			break;
   1412   1.1   thorpej 
   1413   1.1   thorpej 		case 0x03:
   1414   1.1   thorpej 			mpt_prt(mpt, "Port %d: FC Link Event: LPB(%02x,%02x) "
   1415   1.1   thorpej 			    "(Loop Port Bypass)",
   1416   1.1   thorpej 			    (msg->Data[1] >> 8) & 0xff,
   1417   1.1   thorpej 			    (msg->Data[0] >> 8) & 0xff,
   1418   1.1   thorpej 			    (msg->Data[0]     ) & 0xff);
   1419   1.1   thorpej 			break;
   1420   1.1   thorpej 
   1421   1.1   thorpej 		default:
   1422   1.1   thorpej 			mpt_prt(mpt, "Port %d: FC Link Event: "
   1423   1.1   thorpej 			    "Unknown event (%02x %02x %02x)",
   1424   1.1   thorpej 			    (msg->Data[1] >>  8) & 0xff,
   1425   1.1   thorpej 			    (msg->Data[0] >> 16) & 0xff,
   1426   1.1   thorpej 			    (msg->Data[0] >>  8) & 0xff,
   1427   1.1   thorpej 			    (msg->Data[0]      ) & 0xff);
   1428   1.1   thorpej 			break;
   1429   1.1   thorpej 		}
   1430   1.1   thorpej 		break;
   1431   1.1   thorpej 
   1432   1.1   thorpej 	case MPI_EVENT_LOGOUT:
   1433   1.1   thorpej 		mpt_prt(mpt, "Port %d: FC Logout: N_PortID: %02x",
   1434   1.1   thorpej 		    (msg->Data[1] >> 8) & 0xff, msg->Data[0]);
   1435   1.1   thorpej 		break;
   1436   1.1   thorpej 
   1437   1.1   thorpej 	case MPI_EVENT_EVENT_CHANGE:
   1438   1.1   thorpej 		/*
   1439   1.1   thorpej 		 * This is just an acknowledgement of our
   1440   1.1   thorpej 		 * mpt_send_event_request().
   1441   1.1   thorpej 		 */
   1442   1.1   thorpej 		break;
   1443   1.1   thorpej 
   1444  1.12      tron 	case MPI_EVENT_SAS_PHY_LINK_STATUS:
   1445  1.13      tron 		switch ((msg->Data[0] >> 12) & 0x0f) {
   1446  1.12      tron 		case 0x00:
   1447  1.12      tron 			mpt_prt(mpt, "Phy %d: Link Status Unknown",
   1448  1.12      tron 			    msg->Data[0] & 0xff);
   1449  1.12      tron 			break;
   1450  1.12      tron 		case 0x01:
   1451  1.12      tron 			mpt_prt(mpt, "Phy %d: Link Disabled",
   1452  1.12      tron 			    msg->Data[0] & 0xff);
   1453  1.12      tron 			break;
   1454  1.12      tron 		case 0x02:
   1455  1.12      tron 			mpt_prt(mpt, "Phy %d: Failed Speed Negotiation",
   1456  1.12      tron 			    msg->Data[0] & 0xff);
   1457  1.12      tron 			break;
   1458  1.12      tron 		case 0x03:
   1459  1.12      tron 			mpt_prt(mpt, "Phy %d: SATA OOB Complete",
   1460  1.12      tron 			    msg->Data[0] & 0xff);
   1461  1.12      tron 			break;
   1462  1.12      tron 		case 0x08:
   1463  1.12      tron 			mpt_prt(mpt, "Phy %d: Link Rate 1.5 Gbps",
   1464  1.12      tron 			    msg->Data[0] & 0xff);
   1465  1.12      tron 			break;
   1466  1.12      tron 		case 0x09:
   1467  1.12      tron 			mpt_prt(mpt, "Phy %d: Link Rate 3.0 Gbps",
   1468  1.12      tron 			    msg->Data[0] & 0xff);
   1469  1.12      tron 			break;
   1470  1.13      tron 		default:
   1471  1.12      tron 			mpt_prt(mpt, "Phy %d: SAS Phy Link Status Event: "
   1472  1.12      tron 			    "Unknown event (%0x)",
   1473  1.12      tron 			    msg->Data[0] & 0xff, (msg->Data[0] >> 8) & 0xff);
   1474  1.12      tron 		}
   1475  1.12      tron 		break;
   1476  1.12      tron 
   1477  1.12      tron 	case MPI_EVENT_SAS_DEVICE_STATUS_CHANGE:
   1478  1.12      tron 	case MPI_EVENT_SAS_DISCOVERY:
   1479  1.12      tron 		/* ignore these events for now */
   1480  1.12      tron 		break;
   1481  1.12      tron 
   1482  1.17    mhitch 	case MPI_EVENT_QUEUE_FULL:
   1483  1.17    mhitch 		/* This can get a little chatty */
   1484  1.17    mhitch 		if (mpt->verbose > 0)
   1485  1.17    mhitch 			mpt_prt(mpt, "Queue Full Event");
   1486  1.17    mhitch 		break;
   1487  1.17    mhitch 
   1488   1.1   thorpej 	default:
   1489   1.1   thorpej 		mpt_prt(mpt, "Unknown async event: 0x%x", msg->Event);
   1490   1.1   thorpej 		break;
   1491   1.1   thorpej 	}
   1492   1.9     perry 
   1493   1.1   thorpej 	if (msg->AckRequired) {
   1494   1.1   thorpej 		MSG_EVENT_ACK *ackp;
   1495   1.1   thorpej 		request_t *req;
   1496   1.1   thorpej 
   1497   1.1   thorpej 		if ((req = mpt_get_request(mpt)) == NULL) {
   1498   1.1   thorpej 			/* XXX XXX XXX XXXJRT */
   1499   1.1   thorpej 			panic("mpt_event_notify_reply: unable to allocate "
   1500   1.1   thorpej 			    "request structure");
   1501   1.1   thorpej 		}
   1502   1.1   thorpej 
   1503   1.1   thorpej 		ackp = (MSG_EVENT_ACK *) req->req_vbuf;
   1504   1.1   thorpej 		memset(ackp, 0, sizeof(*ackp));
   1505   1.1   thorpej 		ackp->Function = MPI_FUNCTION_EVENT_ACK;
   1506   1.1   thorpej 		ackp->Event = msg->Event;
   1507   1.1   thorpej 		ackp->EventContext = msg->EventContext;
   1508  1.15       chs 		ackp->MsgContext = htole32(req->index | 0x80000000);
   1509   1.1   thorpej 		mpt_check_doorbell(mpt);
   1510   1.1   thorpej 		mpt_send_cmd(mpt, req);
   1511   1.1   thorpej 	}
   1512   1.1   thorpej }
   1513   1.1   thorpej 
   1514  1.20    buhrow static void
   1515  1.20    buhrow mpt_bus_reset(mpt_softc_t *mpt)
   1516  1.20    buhrow {
   1517  1.20    buhrow 	request_t *req;
   1518  1.20    buhrow 	MSG_SCSI_TASK_MGMT *mngt_req;
   1519  1.20    buhrow 	int s;
   1520  1.20    buhrow 
   1521  1.20    buhrow 	s = splbio();
   1522  1.20    buhrow 	if (mpt->mngt_req) {
   1523  1.20    buhrow 		/* request already queued; can't do more */
   1524  1.20    buhrow 		splx(s);
   1525  1.20    buhrow 		return;
   1526  1.20    buhrow 	}
   1527  1.20    buhrow 	req = mpt_get_request(mpt);
   1528  1.20    buhrow 	if (__predict_false(req == NULL)) {
   1529  1.20    buhrow 		mpt_prt(mpt, "no mngt request\n");
   1530  1.20    buhrow 		splx(s);
   1531  1.20    buhrow 		return;
   1532  1.20    buhrow 	}
   1533  1.20    buhrow 	mpt->mngt_req = req;
   1534  1.20    buhrow 	splx(s);
   1535  1.20    buhrow 	mngt_req = req->req_vbuf;
   1536  1.20    buhrow 	memset(mngt_req, 0, sizeof(*mngt_req));
   1537  1.20    buhrow 	mngt_req->Function = MPI_FUNCTION_SCSI_TASK_MGMT;
   1538  1.20    buhrow 	mngt_req->Bus = mpt->bus;
   1539  1.20    buhrow 	mngt_req->TargetID = 0;
   1540  1.20    buhrow 	mngt_req->ChainOffset = 0;
   1541  1.20    buhrow 	mngt_req->TaskType = MPI_SCSITASKMGMT_TASKTYPE_RESET_BUS;
   1542  1.20    buhrow 	mngt_req->Reserved1 = 0;
   1543  1.20    buhrow 	mngt_req->MsgFlags =
   1544  1.20    buhrow 	    mpt->is_fc ? MPI_SCSITASKMGMT_MSGFLAGS_LIP_RESET_OPTION : 0;
   1545  1.20    buhrow 	mngt_req->MsgContext = req->index;
   1546  1.20    buhrow 	mngt_req->TaskMsgContext = 0;
   1547  1.20    buhrow 	s = splbio();
   1548  1.20    buhrow 	mpt_send_handshake_cmd(mpt, sizeof(*mngt_req), mngt_req);
   1549  1.20    buhrow 	splx(s);
   1550  1.20    buhrow }
   1551   1.1   thorpej 
   1552   1.1   thorpej /*****************************************************************************
   1553   1.1   thorpej  * SCSI interface routines
   1554   1.1   thorpej  *****************************************************************************/
   1555   1.1   thorpej 
   1556   1.1   thorpej static void
   1557   1.1   thorpej mpt_scsipi_request(struct scsipi_channel *chan, scsipi_adapter_req_t req,
   1558   1.1   thorpej     void *arg)
   1559   1.1   thorpej {
   1560   1.1   thorpej 	struct scsipi_adapter *adapt = chan->chan_adapter;
   1561  1.25       chs 	mpt_softc_t *mpt = device_private(adapt->adapt_dev);
   1562   1.1   thorpej 
   1563   1.1   thorpej 	switch (req) {
   1564   1.1   thorpej 	case ADAPTER_REQ_RUN_XFER:
   1565   1.1   thorpej 		mpt_run_xfer(mpt, (struct scsipi_xfer *) arg);
   1566   1.1   thorpej 		return;
   1567   1.1   thorpej 
   1568   1.1   thorpej 	case ADAPTER_REQ_GROW_RESOURCES:
   1569   1.1   thorpej 		/* Not supported. */
   1570   1.1   thorpej 		return;
   1571   1.1   thorpej 
   1572   1.1   thorpej 	case ADAPTER_REQ_SET_XFER_MODE:
   1573   1.1   thorpej 		mpt_set_xfer_mode(mpt, (struct scsipi_xfer_mode *) arg);
   1574   1.1   thorpej 		return;
   1575   1.1   thorpej 	}
   1576   1.1   thorpej }
   1577   1.1   thorpej 
   1578   1.1   thorpej static void
   1579   1.1   thorpej mpt_minphys(struct buf *bp)
   1580   1.1   thorpej {
   1581   1.1   thorpej 
   1582   1.1   thorpej /*
   1583   1.1   thorpej  * Subtract one from the SGL limit, since we need an extra one to handle
   1584   1.1   thorpej  * an non-page-aligned transfer.
   1585   1.1   thorpej  */
   1586   1.1   thorpej #define	MPT_MAX_XFER	((MPT_SGL_MAX - 1) * PAGE_SIZE)
   1587   1.1   thorpej 
   1588   1.1   thorpej 	if (bp->b_bcount > MPT_MAX_XFER)
   1589   1.1   thorpej 		bp->b_bcount = MPT_MAX_XFER;
   1590   1.1   thorpej 	minphys(bp);
   1591   1.1   thorpej }
   1592  1.20    buhrow 
   1593  1.20    buhrow static int
   1594  1.20    buhrow mpt_ioctl(struct scsipi_channel *chan, u_long cmd, void *arg,
   1595  1.20    buhrow     int flag, struct proc *p)
   1596  1.20    buhrow {
   1597  1.20    buhrow 	mpt_softc_t *mpt;
   1598  1.20    buhrow 	int s;
   1599  1.20    buhrow 
   1600  1.20    buhrow 	mpt = device_private(chan->chan_adapter->adapt_dev);
   1601  1.20    buhrow 	switch (cmd) {
   1602  1.20    buhrow 	case SCBUSIORESET:
   1603  1.20    buhrow 		mpt_bus_reset(mpt);
   1604  1.20    buhrow 		s = splbio();
   1605  1.20    buhrow 		mpt_intr(mpt);
   1606  1.20    buhrow 		splx(s);
   1607  1.20    buhrow 		return(0);
   1608  1.20    buhrow 	default:
   1609  1.20    buhrow 		return (ENOTTY);
   1610  1.20    buhrow 	}
   1611  1.20    buhrow }
   1612  1.26  jmcneill 
   1613  1.26  jmcneill #if NBIO > 0
   1614  1.26  jmcneill static fCONFIG_PAGE_IOC_2 *
   1615  1.26  jmcneill mpt_get_cfg_page_ioc2(mpt_softc_t *mpt)
   1616  1.26  jmcneill {
   1617  1.26  jmcneill 	fCONFIG_PAGE_HEADER hdr;
   1618  1.26  jmcneill 	fCONFIG_PAGE_IOC_2 *ioc2;
   1619  1.26  jmcneill 	int rv;
   1620  1.26  jmcneill 
   1621  1.26  jmcneill 	rv = mpt_read_cfg_header(mpt, MPI_CONFIG_PAGETYPE_IOC, 2, 0, &hdr);
   1622  1.26  jmcneill 	if (rv)
   1623  1.26  jmcneill 		return NULL;
   1624  1.26  jmcneill 
   1625  1.26  jmcneill 	ioc2 = malloc(hdr.PageLength * 4, M_DEVBUF, M_WAITOK | M_ZERO);
   1626  1.26  jmcneill 	if (ioc2 == NULL)
   1627  1.26  jmcneill 		return NULL;
   1628  1.26  jmcneill 
   1629  1.26  jmcneill 	memcpy(ioc2, &hdr, sizeof(hdr));
   1630  1.26  jmcneill 
   1631  1.26  jmcneill 	rv = mpt_read_cfg_page(mpt, 0, &ioc2->Header);
   1632  1.26  jmcneill 	if (rv)
   1633  1.26  jmcneill 		goto fail;
   1634  1.26  jmcneill 	mpt2host_config_page_ioc_2(ioc2);
   1635  1.26  jmcneill 
   1636  1.26  jmcneill 	return ioc2;
   1637  1.26  jmcneill 
   1638  1.26  jmcneill fail:
   1639  1.26  jmcneill 	free(ioc2, M_DEVBUF);
   1640  1.26  jmcneill 	return NULL;
   1641  1.26  jmcneill }
   1642  1.26  jmcneill 
   1643  1.29  jmcneill static fCONFIG_PAGE_IOC_3 *
   1644  1.29  jmcneill mpt_get_cfg_page_ioc3(mpt_softc_t *mpt)
   1645  1.29  jmcneill {
   1646  1.29  jmcneill 	fCONFIG_PAGE_HEADER hdr;
   1647  1.29  jmcneill 	fCONFIG_PAGE_IOC_3 *ioc3;
   1648  1.29  jmcneill 	int rv;
   1649  1.29  jmcneill 
   1650  1.29  jmcneill 	rv = mpt_read_cfg_header(mpt, MPI_CONFIG_PAGETYPE_IOC, 3, 0, &hdr);
   1651  1.29  jmcneill 	if (rv)
   1652  1.29  jmcneill 		return NULL;
   1653  1.29  jmcneill 
   1654  1.29  jmcneill 	ioc3 = malloc(hdr.PageLength * 4, M_DEVBUF, M_WAITOK | M_ZERO);
   1655  1.29  jmcneill 	if (ioc3 == NULL)
   1656  1.29  jmcneill 		return NULL;
   1657  1.29  jmcneill 
   1658  1.29  jmcneill 	memcpy(ioc3, &hdr, sizeof(hdr));
   1659  1.29  jmcneill 
   1660  1.29  jmcneill 	rv = mpt_read_cfg_page(mpt, 0, &ioc3->Header);
   1661  1.29  jmcneill 	if (rv)
   1662  1.29  jmcneill 		goto fail;
   1663  1.29  jmcneill 
   1664  1.29  jmcneill 	return ioc3;
   1665  1.29  jmcneill 
   1666  1.29  jmcneill fail:
   1667  1.29  jmcneill 	free(ioc3, M_DEVBUF);
   1668  1.29  jmcneill 	return NULL;
   1669  1.29  jmcneill }
   1670  1.29  jmcneill 
   1671  1.29  jmcneill 
   1672  1.26  jmcneill static fCONFIG_PAGE_RAID_VOL_0 *
   1673  1.26  jmcneill mpt_get_cfg_page_raid_vol0(mpt_softc_t *mpt, int address)
   1674  1.26  jmcneill {
   1675  1.26  jmcneill 	fCONFIG_PAGE_HEADER hdr;
   1676  1.26  jmcneill 	fCONFIG_PAGE_RAID_VOL_0 *rvol0;
   1677  1.26  jmcneill 	int rv;
   1678  1.26  jmcneill 
   1679  1.26  jmcneill 	rv = mpt_read_cfg_header(mpt, MPI_CONFIG_PAGETYPE_RAID_VOLUME, 0,
   1680  1.26  jmcneill 	    address, &hdr);
   1681  1.26  jmcneill 	if (rv)
   1682  1.26  jmcneill 		return NULL;
   1683  1.26  jmcneill 
   1684  1.26  jmcneill 	rvol0 = malloc(hdr.PageLength * 4, M_DEVBUF, M_WAITOK | M_ZERO);
   1685  1.26  jmcneill 	if (rvol0 == NULL)
   1686  1.26  jmcneill 		return NULL;
   1687  1.26  jmcneill 
   1688  1.26  jmcneill 	memcpy(rvol0, &hdr, sizeof(hdr));
   1689  1.26  jmcneill 
   1690  1.26  jmcneill 	rv = mpt_read_cfg_page(mpt, address, &rvol0->Header);
   1691  1.26  jmcneill 	if (rv)
   1692  1.26  jmcneill 		goto fail;
   1693  1.26  jmcneill 	mpt2host_config_page_raid_vol_0(rvol0);
   1694  1.26  jmcneill 
   1695  1.26  jmcneill 	return rvol0;
   1696  1.26  jmcneill 
   1697  1.26  jmcneill fail:
   1698  1.26  jmcneill 	free(rvol0, M_DEVBUF);
   1699  1.26  jmcneill 	return NULL;
   1700  1.26  jmcneill }
   1701  1.26  jmcneill 
   1702  1.26  jmcneill static fCONFIG_PAGE_RAID_PHYS_DISK_0 *
   1703  1.26  jmcneill mpt_get_cfg_page_raid_phys_disk0(mpt_softc_t *mpt, int address)
   1704  1.26  jmcneill {
   1705  1.26  jmcneill 	fCONFIG_PAGE_HEADER hdr;
   1706  1.26  jmcneill 	fCONFIG_PAGE_RAID_PHYS_DISK_0 *physdisk0;
   1707  1.26  jmcneill 	int rv;
   1708  1.26  jmcneill 
   1709  1.26  jmcneill 	rv = mpt_read_cfg_header(mpt, MPI_CONFIG_PAGETYPE_RAID_PHYSDISK, 0,
   1710  1.26  jmcneill 	    address, &hdr);
   1711  1.26  jmcneill 	if (rv)
   1712  1.26  jmcneill 		return NULL;
   1713  1.26  jmcneill 
   1714  1.26  jmcneill 	physdisk0 = malloc(hdr.PageLength * 4, M_DEVBUF, M_WAITOK | M_ZERO);
   1715  1.26  jmcneill 	if (physdisk0 == NULL)
   1716  1.26  jmcneill 		return NULL;
   1717  1.26  jmcneill 
   1718  1.26  jmcneill 	memcpy(physdisk0, &hdr, sizeof(hdr));
   1719  1.26  jmcneill 
   1720  1.26  jmcneill 	rv = mpt_read_cfg_page(mpt, address, &physdisk0->Header);
   1721  1.26  jmcneill 	if (rv)
   1722  1.26  jmcneill 		goto fail;
   1723  1.26  jmcneill 	mpt2host_config_page_raid_phys_disk_0(physdisk0);
   1724  1.26  jmcneill 
   1725  1.26  jmcneill 	return physdisk0;
   1726  1.26  jmcneill 
   1727  1.26  jmcneill fail:
   1728  1.26  jmcneill 	free(physdisk0, M_DEVBUF);
   1729  1.26  jmcneill 	return NULL;
   1730  1.26  jmcneill }
   1731  1.26  jmcneill 
   1732  1.26  jmcneill static bool
   1733  1.26  jmcneill mpt_is_raid(mpt_softc_t *mpt)
   1734  1.26  jmcneill {
   1735  1.26  jmcneill 	fCONFIG_PAGE_IOC_2 *ioc2;
   1736  1.26  jmcneill 	bool is_raid = false;
   1737  1.26  jmcneill 
   1738  1.26  jmcneill 	ioc2 = mpt_get_cfg_page_ioc2(mpt);
   1739  1.26  jmcneill 	if (ioc2 == NULL)
   1740  1.26  jmcneill 		return false;
   1741  1.26  jmcneill 
   1742  1.26  jmcneill 	if (ioc2->CapabilitiesFlags != 0xdeadbeef) {
   1743  1.26  jmcneill 		is_raid = !!(ioc2->CapabilitiesFlags &
   1744  1.26  jmcneill 				(MPI_IOCPAGE2_CAP_FLAGS_IS_SUPPORT|
   1745  1.26  jmcneill 				 MPI_IOCPAGE2_CAP_FLAGS_IME_SUPPORT|
   1746  1.26  jmcneill 				 MPI_IOCPAGE2_CAP_FLAGS_IM_SUPPORT));
   1747  1.26  jmcneill 	}
   1748  1.26  jmcneill 
   1749  1.26  jmcneill 	free(ioc2, M_DEVBUF);
   1750  1.26  jmcneill 
   1751  1.26  jmcneill 	return is_raid;
   1752  1.26  jmcneill }
   1753  1.26  jmcneill 
   1754  1.26  jmcneill static int
   1755  1.26  jmcneill mpt_bio_ioctl(device_t dev, u_long cmd, void *addr)
   1756  1.26  jmcneill {
   1757  1.26  jmcneill 	mpt_softc_t *mpt = device_private(dev);
   1758  1.26  jmcneill 	int error, s;
   1759  1.26  jmcneill 
   1760  1.26  jmcneill 	KERNEL_LOCK(1, curlwp);
   1761  1.26  jmcneill 	s = splbio();
   1762  1.26  jmcneill 
   1763  1.26  jmcneill 	switch (cmd) {
   1764  1.26  jmcneill 	case BIOCINQ:
   1765  1.26  jmcneill 		error = mpt_bio_ioctl_inq(mpt, addr);
   1766  1.26  jmcneill 		break;
   1767  1.26  jmcneill 	case BIOCVOL:
   1768  1.26  jmcneill 		error = mpt_bio_ioctl_vol(mpt, addr);
   1769  1.26  jmcneill 		break;
   1770  1.29  jmcneill 	case BIOCDISK_NOVOL:
   1771  1.29  jmcneill 		error = mpt_bio_ioctl_disk_novol(mpt, addr);
   1772  1.29  jmcneill 		break;
   1773  1.26  jmcneill 	case BIOCDISK:
   1774  1.26  jmcneill 		error = mpt_bio_ioctl_disk(mpt, addr);
   1775  1.26  jmcneill 		break;
   1776  1.26  jmcneill 	case BIOCSETSTATE:
   1777  1.26  jmcneill 		error = mpt_bio_ioctl_setstate(mpt, addr);
   1778  1.26  jmcneill 		break;
   1779  1.26  jmcneill 	default:
   1780  1.26  jmcneill 		error = EINVAL;
   1781  1.26  jmcneill 		break;
   1782  1.26  jmcneill 	}
   1783  1.26  jmcneill 
   1784  1.26  jmcneill 	splx(s);
   1785  1.26  jmcneill 	KERNEL_UNLOCK_ONE(curlwp);
   1786  1.26  jmcneill 
   1787  1.26  jmcneill 	return error;
   1788  1.26  jmcneill }
   1789  1.26  jmcneill 
   1790  1.26  jmcneill static int
   1791  1.26  jmcneill mpt_bio_ioctl_inq(mpt_softc_t *mpt, struct bioc_inq *bi)
   1792  1.26  jmcneill {
   1793  1.26  jmcneill 	fCONFIG_PAGE_IOC_2 *ioc2;
   1794  1.29  jmcneill 	fCONFIG_PAGE_IOC_3 *ioc3;
   1795  1.26  jmcneill 
   1796  1.26  jmcneill 	ioc2 = mpt_get_cfg_page_ioc2(mpt);
   1797  1.26  jmcneill 	if (ioc2 == NULL)
   1798  1.26  jmcneill 		return EIO;
   1799  1.29  jmcneill 	ioc3 = mpt_get_cfg_page_ioc3(mpt);
   1800  1.29  jmcneill 	if (ioc3 == NULL) {
   1801  1.29  jmcneill 		free(ioc2, M_DEVBUF);
   1802  1.29  jmcneill 		return EIO;
   1803  1.29  jmcneill 	}
   1804  1.26  jmcneill 
   1805  1.26  jmcneill 	strlcpy(bi->bi_dev, device_xname(mpt->sc_dev), sizeof(bi->bi_dev));
   1806  1.26  jmcneill 	bi->bi_novol = ioc2->NumActiveVolumes;
   1807  1.29  jmcneill 	bi->bi_nodisk = ioc3->NumPhysDisks;
   1808  1.26  jmcneill 
   1809  1.26  jmcneill 	free(ioc2, M_DEVBUF);
   1810  1.29  jmcneill 	free(ioc3, M_DEVBUF);
   1811  1.26  jmcneill 
   1812  1.26  jmcneill 	return 0;
   1813  1.26  jmcneill }
   1814  1.26  jmcneill 
   1815  1.26  jmcneill static int
   1816  1.26  jmcneill mpt_bio_ioctl_vol(mpt_softc_t *mpt, struct bioc_vol *bv)
   1817  1.26  jmcneill {
   1818  1.26  jmcneill 	fCONFIG_PAGE_IOC_2 *ioc2 = NULL;
   1819  1.26  jmcneill 	fCONFIG_PAGE_IOC_2_RAID_VOL *ioc2rvol;
   1820  1.26  jmcneill 	fCONFIG_PAGE_RAID_VOL_0 *rvol0 = NULL;
   1821  1.27  jmcneill 	struct scsipi_periph *periph;
   1822  1.28  jmcneill 	struct scsipi_inquiry_data inqbuf;
   1823  1.28  jmcneill 	char vendor[9], product[17], revision[5];
   1824  1.26  jmcneill 	int address;
   1825  1.26  jmcneill 
   1826  1.26  jmcneill 	ioc2 = mpt_get_cfg_page_ioc2(mpt);
   1827  1.26  jmcneill 	if (ioc2 == NULL)
   1828  1.26  jmcneill 		return EIO;
   1829  1.26  jmcneill 
   1830  1.26  jmcneill 	if (bv->bv_volid < 0 || bv->bv_volid >= ioc2->NumActiveVolumes)
   1831  1.26  jmcneill 		goto fail;
   1832  1.26  jmcneill 
   1833  1.26  jmcneill 	ioc2rvol = &ioc2->RaidVolume[bv->bv_volid];
   1834  1.26  jmcneill 	address = ioc2rvol->VolumeID | (ioc2rvol->VolumeBus << 8);
   1835  1.26  jmcneill 
   1836  1.26  jmcneill 	rvol0 = mpt_get_cfg_page_raid_vol0(mpt, address);
   1837  1.26  jmcneill 	if (rvol0 == NULL)
   1838  1.26  jmcneill 		goto fail;
   1839  1.26  jmcneill 
   1840  1.28  jmcneill 	bv->bv_dev[0] = '\0';
   1841  1.28  jmcneill 	bv->bv_vendor[0] = '\0';
   1842  1.28  jmcneill 
   1843  1.27  jmcneill 	periph = scsipi_lookup_periph(&mpt->sc_channel, ioc2rvol->VolumeBus, 0);
   1844  1.28  jmcneill 	if (periph != NULL) {
   1845  1.28  jmcneill 		if (periph->periph_dev != NULL) {
   1846  1.28  jmcneill 			snprintf(bv->bv_dev, sizeof(bv->bv_dev), "%s",
   1847  1.28  jmcneill 			    device_xname(periph->periph_dev));
   1848  1.28  jmcneill 		}
   1849  1.28  jmcneill 		memset(&inqbuf, 0, sizeof(inqbuf));
   1850  1.28  jmcneill 		if (scsipi_inquire(periph, &inqbuf,
   1851  1.28  jmcneill 		    XS_CTL_DISCOVERY | XS_CTL_SILENT) == 0) {
   1852  1.28  jmcneill 			scsipi_strvis(vendor, sizeof(vendor),
   1853  1.28  jmcneill 			    inqbuf.vendor, sizeof(inqbuf.vendor));
   1854  1.28  jmcneill 			scsipi_strvis(product, sizeof(product),
   1855  1.28  jmcneill 			    inqbuf.product, sizeof(inqbuf.product));
   1856  1.28  jmcneill 			scsipi_strvis(revision, sizeof(revision),
   1857  1.28  jmcneill 			    inqbuf.revision, sizeof(inqbuf.revision));
   1858  1.28  jmcneill 
   1859  1.28  jmcneill 			snprintf(bv->bv_vendor, sizeof(bv->bv_vendor),
   1860  1.28  jmcneill 			    "%s %s %s", vendor, product, revision);
   1861  1.28  jmcneill 		}
   1862  1.28  jmcneill 
   1863  1.27  jmcneill 		snprintf(bv->bv_dev, sizeof(bv->bv_dev), "%s",
   1864  1.27  jmcneill 		    device_xname(periph->periph_dev));
   1865  1.27  jmcneill 	}
   1866  1.26  jmcneill 	bv->bv_nodisk = rvol0->NumPhysDisks;
   1867  1.26  jmcneill 	bv->bv_size = (uint64_t)rvol0->MaxLBA * 512;
   1868  1.26  jmcneill 	bv->bv_stripe_size = rvol0->StripeSize;
   1869  1.26  jmcneill 	bv->bv_percent = -1;
   1870  1.26  jmcneill 	bv->bv_seconds = 0;
   1871  1.26  jmcneill 
   1872  1.26  jmcneill 	switch (rvol0->VolumeStatus.State) {
   1873  1.26  jmcneill 	case MPI_RAIDVOL0_STATUS_STATE_OPTIMAL:
   1874  1.26  jmcneill 		bv->bv_status = BIOC_SVONLINE;
   1875  1.26  jmcneill 		break;
   1876  1.26  jmcneill 	case MPI_RAIDVOL0_STATUS_STATE_DEGRADED:
   1877  1.26  jmcneill 		bv->bv_status = BIOC_SVDEGRADED;
   1878  1.26  jmcneill 		break;
   1879  1.26  jmcneill 	case MPI_RAIDVOL0_STATUS_STATE_FAILED:
   1880  1.26  jmcneill 		bv->bv_status = BIOC_SVOFFLINE;
   1881  1.26  jmcneill 		break;
   1882  1.26  jmcneill 	default:
   1883  1.26  jmcneill 		bv->bv_status = BIOC_SVINVALID;
   1884  1.26  jmcneill 		break;
   1885  1.26  jmcneill 	}
   1886  1.26  jmcneill 
   1887  1.26  jmcneill 	switch (ioc2rvol->VolumeType) {
   1888  1.26  jmcneill 	case MPI_RAID_VOL_TYPE_IS:
   1889  1.26  jmcneill 		bv->bv_level = 0;
   1890  1.26  jmcneill 		break;
   1891  1.26  jmcneill 	case MPI_RAID_VOL_TYPE_IME:
   1892  1.26  jmcneill 	case MPI_RAID_VOL_TYPE_IM:
   1893  1.26  jmcneill 		bv->bv_level = 1;
   1894  1.26  jmcneill 		break;
   1895  1.26  jmcneill 	default:
   1896  1.26  jmcneill 		bv->bv_level = -1;
   1897  1.26  jmcneill 		break;
   1898  1.26  jmcneill 	}
   1899  1.26  jmcneill 
   1900  1.26  jmcneill 	free(ioc2, M_DEVBUF);
   1901  1.26  jmcneill 	free(rvol0, M_DEVBUF);
   1902  1.26  jmcneill 
   1903  1.26  jmcneill 	return 0;
   1904  1.26  jmcneill 
   1905  1.26  jmcneill fail:
   1906  1.26  jmcneill 	if (ioc2) free(ioc2, M_DEVBUF);
   1907  1.26  jmcneill 	if (rvol0) free(rvol0, M_DEVBUF);
   1908  1.26  jmcneill 	return EINVAL;
   1909  1.26  jmcneill }
   1910  1.26  jmcneill 
   1911  1.29  jmcneill static void
   1912  1.29  jmcneill mpt_bio_ioctl_disk_common(mpt_softc_t *mpt, struct bioc_disk *bd,
   1913  1.29  jmcneill     int address)
   1914  1.26  jmcneill {
   1915  1.26  jmcneill 	fCONFIG_PAGE_RAID_PHYS_DISK_0 *phys = NULL;
   1916  1.28  jmcneill 	char vendor_id[9], product_id[17], product_rev_level[5];
   1917  1.26  jmcneill 
   1918  1.26  jmcneill 	phys = mpt_get_cfg_page_raid_phys_disk0(mpt, address);
   1919  1.26  jmcneill 	if (phys == NULL)
   1920  1.29  jmcneill 		return;
   1921  1.26  jmcneill 
   1922  1.28  jmcneill 	scsipi_strvis(vendor_id, sizeof(vendor_id),
   1923  1.28  jmcneill 	    phys->InquiryData.VendorID, sizeof(phys->InquiryData.VendorID));
   1924  1.28  jmcneill 	scsipi_strvis(product_id, sizeof(product_id),
   1925  1.28  jmcneill 	    phys->InquiryData.ProductID, sizeof(phys->InquiryData.ProductID));
   1926  1.28  jmcneill 	scsipi_strvis(product_rev_level, sizeof(product_rev_level),
   1927  1.28  jmcneill 	    phys->InquiryData.ProductRevLevel,
   1928  1.28  jmcneill 	    sizeof(phys->InquiryData.ProductRevLevel));
   1929  1.28  jmcneill 
   1930  1.28  jmcneill 	snprintf(bd->bd_vendor, sizeof(bd->bd_vendor), "%s %s %s",
   1931  1.28  jmcneill 	    vendor_id, product_id, product_rev_level);
   1932  1.28  jmcneill 	strlcpy(bd->bd_serial, phys->InquiryData.Info, sizeof(bd->bd_serial));
   1933  1.28  jmcneill 	bd->bd_procdev[0] = '\0';
   1934  1.26  jmcneill 	bd->bd_channel = phys->PhysDiskBus;
   1935  1.26  jmcneill 	bd->bd_target = phys->PhysDiskID;
   1936  1.26  jmcneill 	bd->bd_lun = 0;
   1937  1.26  jmcneill 	bd->bd_size = (uint64_t)phys->MaxLBA * 512;
   1938  1.26  jmcneill 
   1939  1.26  jmcneill 	switch (phys->PhysDiskStatus.State) {
   1940  1.26  jmcneill 	case MPI_PHYSDISK0_STATUS_ONLINE:
   1941  1.26  jmcneill 		bd->bd_status = BIOC_SDONLINE;
   1942  1.26  jmcneill 		break;
   1943  1.26  jmcneill 	case MPI_PHYSDISK0_STATUS_MISSING:
   1944  1.26  jmcneill 	case MPI_PHYSDISK0_STATUS_FAILED:
   1945  1.26  jmcneill 		bd->bd_status = BIOC_SDFAILED;
   1946  1.26  jmcneill 		break;
   1947  1.26  jmcneill 	case MPI_PHYSDISK0_STATUS_OFFLINE_REQUESTED:
   1948  1.26  jmcneill 	case MPI_PHYSDISK0_STATUS_FAILED_REQUESTED:
   1949  1.26  jmcneill 	case MPI_PHYSDISK0_STATUS_OTHER_OFFLINE:
   1950  1.26  jmcneill 		bd->bd_status = BIOC_SDOFFLINE;
   1951  1.26  jmcneill 		break;
   1952  1.26  jmcneill 	case MPI_PHYSDISK0_STATUS_INITIALIZING:
   1953  1.26  jmcneill 		bd->bd_status = BIOC_SDSCRUB;
   1954  1.26  jmcneill 		break;
   1955  1.26  jmcneill 	case MPI_PHYSDISK0_STATUS_NOT_COMPATIBLE:
   1956  1.26  jmcneill 	default:
   1957  1.26  jmcneill 		bd->bd_status = BIOC_SDINVALID;
   1958  1.26  jmcneill 		break;
   1959  1.26  jmcneill 	}
   1960  1.26  jmcneill 
   1961  1.29  jmcneill 	free(phys, M_DEVBUF);
   1962  1.29  jmcneill }
   1963  1.29  jmcneill 
   1964  1.29  jmcneill static int
   1965  1.29  jmcneill mpt_bio_ioctl_disk_novol(mpt_softc_t *mpt, struct bioc_disk *bd)
   1966  1.29  jmcneill {
   1967  1.29  jmcneill 	fCONFIG_PAGE_IOC_3 *ioc3 = NULL;
   1968  1.29  jmcneill 	int address;
   1969  1.29  jmcneill 
   1970  1.29  jmcneill 	ioc3 = mpt_get_cfg_page_ioc3(mpt);
   1971  1.29  jmcneill 	if (ioc3 == NULL)
   1972  1.29  jmcneill 		return EIO;
   1973  1.29  jmcneill 
   1974  1.29  jmcneill 	if (bd->bd_diskid < 0 || bd->bd_diskid >= ioc3->NumPhysDisks)
   1975  1.29  jmcneill 		goto fail;
   1976  1.29  jmcneill 
   1977  1.29  jmcneill 	address = ioc3->PhysDisk[bd->bd_diskid].PhysDiskNum;
   1978  1.29  jmcneill 
   1979  1.29  jmcneill 	mpt_bio_ioctl_disk_common(mpt, bd, address);
   1980  1.29  jmcneill 
   1981  1.29  jmcneill 	free(ioc3, M_DEVBUF);
   1982  1.29  jmcneill 
   1983  1.29  jmcneill 	return 0;
   1984  1.29  jmcneill 
   1985  1.29  jmcneill fail:
   1986  1.29  jmcneill 	if (ioc3) free(ioc3, M_DEVBUF);
   1987  1.29  jmcneill 	return EINVAL;
   1988  1.29  jmcneill }
   1989  1.29  jmcneill 
   1990  1.29  jmcneill 
   1991  1.29  jmcneill static int
   1992  1.29  jmcneill mpt_bio_ioctl_disk(mpt_softc_t *mpt, struct bioc_disk *bd)
   1993  1.29  jmcneill {
   1994  1.29  jmcneill 	fCONFIG_PAGE_IOC_2 *ioc2 = NULL;
   1995  1.29  jmcneill 	fCONFIG_PAGE_RAID_VOL_0 *rvol0 = NULL;
   1996  1.29  jmcneill 	fCONFIG_PAGE_IOC_2_RAID_VOL *ioc2rvol;
   1997  1.29  jmcneill 	int address;
   1998  1.29  jmcneill 
   1999  1.29  jmcneill 	ioc2 = mpt_get_cfg_page_ioc2(mpt);
   2000  1.29  jmcneill 	if (ioc2 == NULL)
   2001  1.29  jmcneill 		return EIO;
   2002  1.29  jmcneill 
   2003  1.29  jmcneill 	if (bd->bd_volid < 0 || bd->bd_volid >= ioc2->NumActiveVolumes)
   2004  1.29  jmcneill 		goto fail;
   2005  1.29  jmcneill 
   2006  1.29  jmcneill 	ioc2rvol = &ioc2->RaidVolume[bd->bd_volid];
   2007  1.29  jmcneill 	address = ioc2rvol->VolumeID | (ioc2rvol->VolumeBus << 8);
   2008  1.29  jmcneill 
   2009  1.29  jmcneill 	rvol0 = mpt_get_cfg_page_raid_vol0(mpt, address);
   2010  1.29  jmcneill 	if (rvol0 == NULL)
   2011  1.29  jmcneill 		goto fail;
   2012  1.29  jmcneill 
   2013  1.29  jmcneill 	if (bd->bd_diskid < 0 || bd->bd_diskid >= rvol0->NumPhysDisks)
   2014  1.29  jmcneill 		goto fail;
   2015  1.29  jmcneill 
   2016  1.29  jmcneill 	address = rvol0->PhysDisk[bd->bd_diskid].PhysDiskNum;
   2017  1.29  jmcneill 
   2018  1.29  jmcneill 	mpt_bio_ioctl_disk_common(mpt, bd, address);
   2019  1.29  jmcneill 
   2020  1.26  jmcneill 	free(ioc2, M_DEVBUF);
   2021  1.26  jmcneill 
   2022  1.26  jmcneill 	return 0;
   2023  1.26  jmcneill 
   2024  1.26  jmcneill fail:
   2025  1.26  jmcneill 	if (ioc2) free(ioc2, M_DEVBUF);
   2026  1.26  jmcneill 	return EINVAL;
   2027  1.26  jmcneill }
   2028  1.26  jmcneill 
   2029  1.26  jmcneill static int
   2030  1.26  jmcneill mpt_bio_ioctl_setstate(mpt_softc_t *mpt, struct bioc_setstate *bs)
   2031  1.26  jmcneill {
   2032  1.26  jmcneill 	return ENOTTY;
   2033  1.26  jmcneill }
   2034  1.26  jmcneill #endif
   2035  1.26  jmcneill 
   2036