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xy.c revision 1.53.6.1
      1  1.53.6.1    simonb /*	$NetBSD: xy.c,v 1.53.6.1 2006/04/22 11:38:05 simonb Exp $	*/
      2       1.1       gwr 
      3       1.1       gwr /*
      4       1.1       gwr  *
      5       1.1       gwr  * Copyright (c) 1995 Charles D. Cranor
      6       1.1       gwr  * All rights reserved.
      7       1.1       gwr  *
      8       1.1       gwr  * Redistribution and use in source and binary forms, with or without
      9       1.1       gwr  * modification, are permitted provided that the following conditions
     10       1.1       gwr  * are met:
     11       1.1       gwr  * 1. Redistributions of source code must retain the above copyright
     12       1.1       gwr  *    notice, this list of conditions and the following disclaimer.
     13       1.1       gwr  * 2. Redistributions in binary form must reproduce the above copyright
     14       1.1       gwr  *    notice, this list of conditions and the following disclaimer in the
     15       1.1       gwr  *    documentation and/or other materials provided with the distribution.
     16       1.1       gwr  * 3. All advertising materials mentioning features or use of this software
     17       1.1       gwr  *    must display the following acknowledgement:
     18       1.1       gwr  *      This product includes software developed by Charles D. Cranor.
     19       1.1       gwr  * 4. The name of the author may not be used to endorse or promote products
     20       1.1       gwr  *    derived from this software without specific prior written permission.
     21       1.1       gwr  *
     22       1.1       gwr  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     23       1.1       gwr  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     24       1.1       gwr  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     25       1.1       gwr  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     26       1.1       gwr  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     27       1.1       gwr  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     28       1.1       gwr  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     29       1.1       gwr  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     30       1.1       gwr  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     31       1.1       gwr  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     32       1.1       gwr  */
     33       1.1       gwr 
     34       1.1       gwr /*
     35       1.1       gwr  *
     36       1.1       gwr  * x y . c   x y l o g i c s   4 5 0 / 4 5 1   s m d   d r i v e r
     37       1.1       gwr  *
     38       1.1       gwr  * author: Chuck Cranor <chuck (at) ccrc.wustl.edu>
     39      1.19       gwr  * id: &Id: xy.c,v 1.1 1995/09/25 20:35:14 chuck Exp &
     40       1.1       gwr  * started: 14-Sep-95
     41       1.1       gwr  * references: [1] Xylogics Model 753 User's Manual
     42       1.1       gwr  *                 part number: 166-753-001, Revision B, May 21, 1988.
     43       1.1       gwr  *                 "Your Partner For Performance"
     44       1.1       gwr  *             [2] other NetBSD disk device drivers
     45       1.1       gwr  *	       [3] Xylogics Model 450 User's Manual
     46       1.1       gwr  *		   part number: 166-017-001, Revision B, 1983.
     47      1.17       gwr  *	       [4] Addendum to Xylogics Model 450 Disk Controller User's
     48       1.1       gwr  *			Manual, Jan. 1985.
     49       1.1       gwr  *	       [5] The 451 Controller, Rev. B3, September 2, 1986.
     50       1.1       gwr  *	       [6] David Jones <dej (at) achilles.net>'s unfinished 450/451 driver
     51       1.1       gwr  *
     52       1.1       gwr  */
     53      1.47     lukem 
     54      1.47     lukem #include <sys/cdefs.h>
     55  1.53.6.1    simonb __KERNEL_RCSID(0, "$NetBSD: xy.c,v 1.53.6.1 2006/04/22 11:38:05 simonb Exp $");
     56       1.1       gwr 
     57       1.1       gwr #undef XYC_DEBUG		/* full debug */
     58       1.1       gwr #undef XYC_DIAG			/* extra sanity checks */
     59       1.1       gwr #if defined(DIAGNOSTIC) && !defined(XYC_DIAG)
     60       1.1       gwr #define XYC_DIAG		/* link in with master DIAG option */
     61       1.1       gwr #endif
     62       1.1       gwr 
     63       1.1       gwr #include <sys/param.h>
     64       1.1       gwr #include <sys/proc.h>
     65       1.1       gwr #include <sys/systm.h>
     66       1.1       gwr #include <sys/kernel.h>
     67       1.1       gwr #include <sys/file.h>
     68       1.1       gwr #include <sys/stat.h>
     69       1.1       gwr #include <sys/ioctl.h>
     70       1.1       gwr #include <sys/buf.h>
     71      1.49      yamt #include <sys/bufq.h>
     72       1.1       gwr #include <sys/uio.h>
     73       1.1       gwr #include <sys/malloc.h>
     74       1.1       gwr #include <sys/device.h>
     75       1.1       gwr #include <sys/disklabel.h>
     76       1.1       gwr #include <sys/disk.h>
     77       1.1       gwr #include <sys/syslog.h>
     78       1.1       gwr #include <sys/dkbad.h>
     79      1.13       gwr #include <sys/conf.h>
     80      1.13       gwr 
     81      1.33       mrg #include <uvm/uvm_extern.h>
     82       1.1       gwr 
     83      1.21       mrg #include <dev/sun/disklabel.h>
     84      1.21       mrg 
     85       1.1       gwr #include <machine/autoconf.h>
     86       1.1       gwr #include <machine/dvma.h>
     87       1.1       gwr 
     88       1.1       gwr #include <sun3/dev/xyreg.h>
     89       1.1       gwr #include <sun3/dev/xyvar.h>
     90       1.1       gwr #include <sun3/dev/xio.h>
     91       1.1       gwr 
     92      1.17       gwr #include "locators.h"
     93      1.22       gwr 
     94      1.22       gwr /*
     95      1.22       gwr  * Print a complaint when no xy children were specified
     96      1.22       gwr  * in the config file.  Better than a link error...
     97      1.22       gwr  *
     98      1.22       gwr  * XXX: Some folks say this driver should be split in two,
     99      1.22       gwr  * but that seems pointless with ONLY one type of child.
    100      1.22       gwr  */
    101      1.22       gwr #include "xy.h"
    102      1.22       gwr #if NXY == 0
    103      1.22       gwr #error "xyc but no xy?"
    104      1.22       gwr #endif
    105      1.17       gwr 
    106       1.1       gwr /*
    107       1.1       gwr  * macros
    108       1.1       gwr  */
    109       1.1       gwr 
    110       1.1       gwr /*
    111       1.1       gwr  * XYC_GO: start iopb ADDR (DVMA addr in a u_long) on XYC
    112       1.1       gwr  */
    113       1.1       gwr #define XYC_GO(XYC, ADDR) { \
    114       1.1       gwr 	(XYC)->xyc_addr_lo = ((ADDR) & 0xff); \
    115       1.1       gwr 	(ADDR) = ((ADDR) >> 8); \
    116       1.1       gwr 	(XYC)->xyc_addr_hi = ((ADDR) & 0xff); \
    117       1.1       gwr 	(ADDR) = ((ADDR) >> 8); \
    118       1.1       gwr 	(XYC)->xyc_reloc_lo = ((ADDR) & 0xff); \
    119       1.1       gwr 	(ADDR) = ((ADDR) >> 8); \
    120       1.1       gwr 	(XYC)->xyc_reloc_hi = (ADDR); \
    121       1.7     chuck 	(XYC)->xyc_csr = XYC_GBSY; /* go! */ \
    122       1.1       gwr }
    123       1.1       gwr 
    124       1.1       gwr /*
    125       1.1       gwr  * XYC_DONE: don't need IORQ, get error code and free (done after xyc_cmd)
    126       1.1       gwr  */
    127       1.1       gwr 
    128       1.1       gwr #define XYC_DONE(SC,ER) { \
    129       1.1       gwr 	if ((ER) == XY_ERR_AOK) { \
    130       1.1       gwr 		(ER) = (SC)->ciorq->errno; \
    131       1.1       gwr 		(SC)->ciorq->mode = XY_SUB_FREE; \
    132       1.1       gwr 		wakeup((SC)->ciorq); \
    133       1.1       gwr 	} \
    134       1.1       gwr 	}
    135       1.1       gwr 
    136       1.1       gwr /*
    137       1.1       gwr  * XYC_ADVANCE: advance iorq's pointers by a number of sectors
    138       1.1       gwr  */
    139       1.1       gwr 
    140       1.1       gwr #define XYC_ADVANCE(IORQ, N) { \
    141       1.1       gwr 	if (N) { \
    142       1.1       gwr 		(IORQ)->sectcnt -= (N); \
    143       1.1       gwr 		(IORQ)->blockno += (N); \
    144       1.1       gwr 		(IORQ)->dbuf += ((N)*XYFM_BPS); \
    145       1.1       gwr 	} \
    146       1.1       gwr }
    147       1.1       gwr 
    148       1.1       gwr /*
    149       1.1       gwr  * note - addresses you can sleep on:
    150       1.1       gwr  *   [1] & of xy_softc's "state" (waiting for a chance to attach a drive)
    151       1.1       gwr  *   [2] & an iorq (waiting for an XY_SUB_WAIT iorq to finish)
    152       1.1       gwr  */
    153       1.1       gwr 
    154       1.1       gwr 
    155       1.1       gwr /*
    156       1.1       gwr  * function prototypes
    157       1.1       gwr  * "xyc_*" functions are internal, all others are external interfaces
    158       1.1       gwr  */
    159       1.1       gwr 
    160       1.1       gwr /* internals */
    161      1.50       chs struct xy_iopb *xyc_chain(struct xyc_softc *, struct xy_iorq *);
    162      1.50       chs int	xyc_cmd(struct xyc_softc *, int, int, int, int, int, char *, int);
    163      1.51   tsutsui const char *xyc_e2str(int);
    164      1.50       chs int	xyc_entoact(int);
    165      1.50       chs int	xyc_error(struct xyc_softc *, struct xy_iorq *, struct xy_iopb *, int);
    166      1.50       chs int	xyc_ioctlcmd(struct xy_softc *, dev_t dev, struct xd_iocmd *);
    167      1.50       chs void	xyc_perror(struct xy_iorq *, struct xy_iopb *, int);
    168      1.50       chs int	xyc_piodriver(struct xyc_softc *, struct xy_iorq *);
    169      1.50       chs int	xyc_remove_iorq(struct xyc_softc *);
    170      1.50       chs int	xyc_reset(struct xyc_softc *, int, struct xy_iorq *, int,
    171      1.50       chs 	    struct xy_softc *);
    172      1.50       chs inline void xyc_rqinit(struct xy_iorq *, struct xyc_softc *, struct xy_softc *,
    173      1.50       chs 	    int, u_long, int, caddr_t, struct buf *);
    174      1.50       chs void	xyc_rqtopb(struct xy_iorq *, struct xy_iopb *, int, int);
    175      1.50       chs void	xyc_start(struct xyc_softc *, struct xy_iorq *);
    176      1.50       chs int	xyc_startbuf(struct xyc_softc *, struct xy_softc *, struct buf *);
    177      1.50       chs int	xyc_submit_iorq(struct xyc_softc *, struct xy_iorq *, int);
    178      1.50       chs void	xyc_tick(void *);
    179      1.50       chs int	xyc_unbusy(struct xyc *, int);
    180      1.50       chs void	xyc_xyreset(struct xyc_softc *, struct xy_softc *);
    181       1.1       gwr 
    182       1.1       gwr /* machine interrupt hook */
    183      1.50       chs int	xycintr(void *);
    184       1.1       gwr 
    185       1.1       gwr /* autoconf */
    186      1.50       chs static int	xycmatch(struct device *, struct cfdata *, void *);
    187      1.50       chs static void	xycattach(struct device *, struct device *, void *);
    188      1.50       chs static int	xyc_print(void *, const char *);
    189      1.50       chs 
    190      1.50       chs static int	xymatch(struct device *, struct cfdata *, void *);
    191      1.50       chs static void	xyattach(struct device *, struct device *, void *);
    192      1.50       chs static void	xy_init(struct xy_softc *);
    193       1.1       gwr 
    194      1.50       chs static	void xydummystrat(struct buf *);
    195      1.50       chs int	xygetdisklabel(struct xy_softc *, void *);
    196       1.1       gwr 
    197       1.1       gwr /*
    198      1.18   thorpej  * cfattach's: device driver interface to autoconfig
    199       1.1       gwr  */
    200       1.1       gwr 
    201      1.40   thorpej CFATTACH_DECL(xyc, sizeof(struct xyc_softc),
    202      1.41   thorpej     xycmatch, xycattach, NULL, NULL);
    203      1.40   thorpej 
    204      1.40   thorpej CFATTACH_DECL(xy, sizeof(struct xy_softc),
    205      1.41   thorpej     xymatch, xyattach, NULL, NULL);
    206       1.9   thorpej 
    207      1.18   thorpej extern struct cfdriver xy_cd;
    208       1.1       gwr 
    209       1.1       gwr struct xyc_attach_args {	/* this is the "aux" args to xyattach */
    210       1.1       gwr 	int	driveno;	/* unit number */
    211      1.37   gehenna };
    212      1.37   gehenna 
    213      1.37   gehenna dev_type_open(xyopen);
    214      1.37   gehenna dev_type_close(xyclose);
    215      1.37   gehenna dev_type_read(xyread);
    216      1.37   gehenna dev_type_write(xywrite);
    217      1.37   gehenna dev_type_ioctl(xyioctl);
    218      1.37   gehenna dev_type_strategy(xystrategy);
    219      1.37   gehenna dev_type_dump(xydump);
    220      1.37   gehenna dev_type_size(xysize);
    221      1.37   gehenna 
    222      1.37   gehenna const struct bdevsw xy_bdevsw = {
    223      1.37   gehenna 	xyopen, xyclose, xystrategy, xyioctl, xydump, xysize, D_DISK
    224      1.37   gehenna };
    225      1.37   gehenna 
    226      1.37   gehenna const struct cdevsw xy_cdevsw = {
    227      1.37   gehenna 	xyopen, xyclose, xyread, xywrite, xyioctl,
    228      1.42  jdolecek 	nostop, notty, nopoll, nommap, nokqfilter, D_DISK
    229       1.1       gwr };
    230       1.1       gwr 
    231       1.1       gwr /*
    232       1.1       gwr  * dkdriver
    233       1.1       gwr  */
    234       1.1       gwr 
    235       1.1       gwr struct dkdriver xydkdriver = { xystrategy };
    236       1.1       gwr 
    237       1.1       gwr /*
    238       1.1       gwr  * start: disk label fix code (XXX)
    239       1.1       gwr  */
    240       1.1       gwr 
    241       1.1       gwr static void *xy_labeldata;
    242       1.1       gwr 
    243      1.50       chs static void
    244      1.50       chs xydummystrat(struct buf *bp)
    245       1.1       gwr {
    246       1.1       gwr 	if (bp->b_bcount != XYFM_BPS)
    247       1.1       gwr 		panic("xydummystrat");
    248      1.35   tsutsui 	memcpy(bp->b_data, xy_labeldata, XYFM_BPS);
    249       1.1       gwr 	bp->b_flags |= B_DONE;
    250       1.1       gwr 	bp->b_flags &= ~B_BUSY;
    251       1.1       gwr }
    252       1.1       gwr 
    253      1.50       chs int
    254      1.50       chs xygetdisklabel(struct xy_softc *xy, void *b)
    255       1.1       gwr {
    256      1.45       dsl 	const char *err;
    257       1.1       gwr 	struct sun_disklabel *sdl;
    258       1.1       gwr 
    259       1.1       gwr 	/* We already have the label data in `b'; setup for dummy strategy */
    260       1.1       gwr 	xy_labeldata = b;
    261       1.1       gwr 
    262       1.1       gwr 	/* Required parameter for readdisklabel() */
    263       1.2   thorpej 	xy->sc_dk.dk_label->d_secsize = XYFM_BPS;
    264       1.1       gwr 
    265  1.53.6.1    simonb 	err = readdisklabel(MAKEDISKDEV(0, device_unit(&xy->sc_dev), RAW_PART),
    266       1.1       gwr 					xydummystrat,
    267       1.2   thorpej 				xy->sc_dk.dk_label, xy->sc_dk.dk_cpulabel);
    268       1.1       gwr 	if (err) {
    269      1.11  christos 		printf("%s: %s\n", xy->sc_dev.dv_xname, err);
    270       1.1       gwr 		return(XY_ERR_FAIL);
    271       1.1       gwr 	}
    272       1.1       gwr 
    273       1.1       gwr 	/* Ok, we have the label; fill in `pcyl' if there's SunOS magic */
    274       1.2   thorpej 	sdl = (struct sun_disklabel *)xy->sc_dk.dk_cpulabel->cd_block;
    275       1.1       gwr 	if (sdl->sl_magic == SUN_DKMAGIC)
    276       1.1       gwr 		xy->pcyl = sdl->sl_pcyl;
    277       1.1       gwr 	else {
    278      1.17       gwr 		printf("%s: WARNING: no `pcyl' in disk label.\n",
    279      1.17       gwr 			   xy->sc_dev.dv_xname);
    280       1.2   thorpej 		xy->pcyl = xy->sc_dk.dk_label->d_ncylinders +
    281       1.2   thorpej 			xy->sc_dk.dk_label->d_acylinders;
    282      1.17       gwr 		printf("%s: WARNING: guessing pcyl=%d (ncyl+acyl)\n",
    283       1.1       gwr 		xy->sc_dev.dv_xname, xy->pcyl);
    284       1.1       gwr 	}
    285       1.1       gwr 
    286       1.2   thorpej 	xy->ncyl = xy->sc_dk.dk_label->d_ncylinders;
    287       1.2   thorpej 	xy->acyl = xy->sc_dk.dk_label->d_acylinders;
    288       1.2   thorpej 	xy->nhead = xy->sc_dk.dk_label->d_ntracks;
    289       1.2   thorpej 	xy->nsect = xy->sc_dk.dk_label->d_nsectors;
    290       1.1       gwr 	xy->sectpercyl = xy->nhead * xy->nsect;
    291       1.2   thorpej 	xy->sc_dk.dk_label->d_secsize = XYFM_BPS; /* not handled by
    292       1.1       gwr                                           	  * sun->bsd */
    293       1.1       gwr 	return(XY_ERR_AOK);
    294       1.1       gwr }
    295       1.1       gwr 
    296       1.1       gwr /*
    297       1.1       gwr  * end: disk label fix code (XXX)
    298       1.1       gwr  */
    299       1.1       gwr 
    300       1.1       gwr /*
    301       1.1       gwr  * a u t o c o n f i g   f u n c t i o n s
    302       1.1       gwr  */
    303       1.1       gwr 
    304       1.1       gwr /*
    305       1.1       gwr  * xycmatch: determine if xyc is present or not.   we do a
    306       1.1       gwr  * soft reset to detect the xyc.
    307       1.1       gwr  */
    308      1.50       chs static int
    309      1.50       chs xycmatch(struct device *parent, struct cfdata *cf, void *aux)
    310       1.1       gwr {
    311       1.1       gwr 	struct confargs *ca = aux;
    312       1.1       gwr 
    313      1.17       gwr 	/* No default VME address. */
    314      1.17       gwr 	if (ca->ca_paddr == -1)
    315       1.1       gwr 		return (0);
    316       1.1       gwr 
    317      1.17       gwr 	/* Make sure something is there... */
    318      1.17       gwr 	if (bus_peek(ca->ca_bustype, ca->ca_paddr + 5, 1) == -1)
    319      1.17       gwr 		return (0);
    320      1.17       gwr 
    321      1.17       gwr 	/* Default interrupt priority. */
    322       1.1       gwr 	if (ca->ca_intpri == -1)
    323       1.1       gwr 		ca->ca_intpri = 2;
    324       1.1       gwr 
    325       1.1       gwr 	return (1);
    326       1.1       gwr }
    327       1.1       gwr 
    328       1.1       gwr /*
    329       1.1       gwr  * xycattach: attach controller
    330       1.1       gwr  */
    331      1.17       gwr static void
    332      1.50       chs xycattach(struct device *parent, struct device *self, void *aux)
    333       1.1       gwr {
    334       1.1       gwr 	struct xyc_softc *xyc = (void *) self;
    335       1.1       gwr 	struct confargs *ca = aux;
    336       1.1       gwr 	struct xyc_attach_args xa;
    337      1.17       gwr 	int     lcv, err, res, pbsz;
    338       1.1       gwr 	void	*tmp, *tmp2;
    339       1.1       gwr 	u_long	ultmp;
    340       1.1       gwr 
    341       1.1       gwr 	/* get addressing and intr level stuff from autoconfig and load it
    342       1.1       gwr 	 * into our xyc_softc. */
    343       1.1       gwr 
    344       1.1       gwr 	xyc->xyc = (struct xyc *)
    345       1.1       gwr 		bus_mapin(ca->ca_bustype, ca->ca_paddr, sizeof(struct xyc));
    346      1.19       gwr 	xyc->bustype = ca->ca_bustype;
    347      1.19       gwr 	xyc->ipl     = ca->ca_intpri;
    348      1.19       gwr 	xyc->vector  = ca->ca_intvec;
    349       1.1       gwr 	xyc->no_ols = 0; /* XXX should be from config */
    350       1.1       gwr 
    351       1.1       gwr 	for (lcv = 0; lcv < XYC_MAXDEV; lcv++)
    352       1.1       gwr 		xyc->sc_drives[lcv] = (struct xy_softc *) 0;
    353       1.1       gwr 
    354      1.17       gwr 	/*
    355       1.1       gwr 	 * allocate and zero buffers
    356      1.17       gwr 	 * check boundaries of the KVA's ... all IOPBs must reside in
    357      1.17       gwr  	 * the same 64K region.
    358       1.1       gwr 	 */
    359       1.1       gwr 
    360       1.1       gwr 	pbsz = XYC_MAXIOPB * sizeof(struct xy_iopb);
    361       1.1       gwr 	tmp = tmp2 = (struct xy_iopb *) dvma_malloc(pbsz);	/* KVA */
    362       1.1       gwr 	ultmp = (u_long) tmp;
    363       1.1       gwr 	if ((ultmp & 0xffff0000) != ((ultmp + pbsz) & 0xffff0000)) {
    364       1.1       gwr 		tmp = (struct xy_iopb *) dvma_malloc(pbsz); /* retry! */
    365       1.1       gwr 		dvma_free(tmp2, pbsz);
    366       1.1       gwr 		ultmp = (u_long) tmp;
    367       1.1       gwr 		if ((ultmp & 0xffff0000) != ((ultmp + pbsz) & 0xffff0000)) {
    368      1.17       gwr 			printf("%s: can't alloc IOPB mem in 64K\n",
    369       1.1       gwr 				xyc->sc_dev.dv_xname);
    370       1.1       gwr 			return;
    371       1.1       gwr 		}
    372       1.1       gwr 	}
    373      1.35   tsutsui 	memset(tmp, 0, pbsz);
    374       1.1       gwr 	xyc->iopbase = tmp;
    375       1.1       gwr 	xyc->dvmaiopb = (struct xy_iopb *)
    376      1.19       gwr 		dvma_kvtopa(xyc->iopbase, xyc->bustype);
    377       1.1       gwr 	xyc->reqs = (struct xy_iorq *)
    378       1.1       gwr 	    malloc(XYC_MAXIOPB * sizeof(struct xy_iorq), M_DEVBUF, M_NOWAIT);
    379       1.1       gwr 	if (xyc->reqs == NULL)
    380       1.1       gwr 		panic("xyc malloc");
    381      1.35   tsutsui 	memset(xyc->reqs, 0, XYC_MAXIOPB * sizeof(struct xy_iorq));
    382       1.1       gwr 
    383      1.17       gwr 	/*
    384       1.1       gwr 	 * init iorq to iopb pointers, and non-zero fields in the
    385      1.17       gwr 	 * iopb which never change.
    386       1.1       gwr 	 */
    387       1.1       gwr 
    388       1.1       gwr 	for (lcv = 0; lcv < XYC_MAXIOPB; lcv++) {
    389       1.1       gwr 		xyc->xy_chain[lcv] = NULL;
    390       1.1       gwr 		xyc->reqs[lcv].iopb = &xyc->iopbase[lcv];
    391       1.1       gwr 		xyc->iopbase[lcv].asr = 1;	/* always the same */
    392       1.1       gwr 		xyc->iopbase[lcv].eef = 1;	/* always the same */
    393       1.1       gwr 		xyc->iopbase[lcv].ecm = XY_ECM;	/* always the same */
    394       1.1       gwr 		xyc->iopbase[lcv].aud = 1;	/* always the same */
    395       1.1       gwr 		xyc->iopbase[lcv].relo = 1;	/* always the same */
    396       1.1       gwr 		xyc->iopbase[lcv].thro = XY_THRO;/* always the same */
    397       1.1       gwr 	}
    398       1.1       gwr 	xyc->ciorq = &xyc->reqs[XYC_CTLIOPB];    /* short hand name */
    399       1.1       gwr 	xyc->ciopb = &xyc->iopbase[XYC_CTLIOPB]; /* short hand name */
    400       1.1       gwr 	xyc->xy_hand = 0;
    401       1.1       gwr 
    402       1.1       gwr 	/* read controller parameters and insure we have a 450/451 */
    403       1.1       gwr 
    404       1.1       gwr 	err = xyc_cmd(xyc, XYCMD_ST, 0, 0, 0, 0, 0, XY_SUB_POLL);
    405       1.1       gwr 	res = xyc->ciopb->ctyp;
    406       1.1       gwr 	XYC_DONE(xyc, err);
    407       1.1       gwr 	if (res != XYCT_450) {
    408       1.1       gwr 		if (err)
    409      1.11  christos 			printf(": %s: ", xyc_e2str(err));
    410      1.11  christos 		printf(": doesn't identify as a 450/451\n");
    411       1.1       gwr 		return;
    412       1.1       gwr 	}
    413      1.11  christos 	printf(": Xylogics 450/451");
    414       1.1       gwr 	if (xyc->no_ols)
    415      1.11  christos 		printf(" [OLS disabled]"); /* 450 doesn't overlap seek right */
    416      1.11  christos 	printf("\n");
    417       1.1       gwr 	if (err) {
    418      1.11  christos 		printf("%s: error: %s\n", xyc->sc_dev.dv_xname,
    419       1.1       gwr 				xyc_e2str(err));
    420       1.1       gwr 		return;
    421       1.1       gwr 	}
    422       1.1       gwr 	if ((xyc->xyc->xyc_csr & XYC_ADRM) == 0) {
    423      1.17       gwr 		printf("%s: 24 bit addressing turned off\n",
    424      1.17       gwr 			   xyc->sc_dev.dv_xname);
    425      1.11  christos 		printf("please set hardware jumpers JM1-JM2=in, JM3-JM4=out\n");
    426      1.11  christos 		printf("to enable 24 bit mode and this driver\n");
    427       1.1       gwr 		return;
    428       1.1       gwr 	}
    429       1.1       gwr 
    430       1.1       gwr 	/* link in interrupt with higher level software */
    431       1.1       gwr 	isr_add_vectored(xycintr, (void *)xyc,
    432       1.1       gwr 	                 ca->ca_intpri, ca->ca_intvec);
    433      1.31       cgd 	evcnt_attach_dynamic(&xyc->sc_intrcnt, EVCNT_TYPE_INTR, NULL,
    434      1.31       cgd 	    xyc->sc_dev.dv_xname, "intr");
    435       1.1       gwr 
    436      1.26   thorpej 	callout_init(&xyc->sc_tick_ch);
    437      1.26   thorpej 
    438       1.1       gwr 	/* now we must look for disks using autoconfig */
    439       1.1       gwr 	for (xa.driveno = 0; xa.driveno < XYC_MAXDEV; xa.driveno++)
    440      1.13       gwr 		(void) config_found(self, (void *) &xa, xyc_print);
    441       1.1       gwr 
    442       1.1       gwr 	/* start the watchdog clock */
    443      1.26   thorpej 	callout_reset(&xyc->sc_tick_ch, XYC_TICKCNT, xyc_tick, xyc);
    444      1.13       gwr }
    445      1.13       gwr 
    446      1.50       chs static int
    447      1.50       chs xyc_print(void *aux, const char *name)
    448      1.13       gwr {
    449      1.13       gwr 	struct xyc_attach_args *xa = aux;
    450      1.13       gwr 
    451      1.13       gwr 	if (name != NULL)
    452      1.44   thorpej 		aprint_normal("%s: ", name);
    453      1.13       gwr 
    454      1.13       gwr 	if (xa->driveno != -1)
    455      1.44   thorpej 		aprint_normal(" drive %d", xa->driveno);
    456      1.13       gwr 
    457      1.13       gwr 	return UNCONF;
    458       1.1       gwr }
    459       1.1       gwr 
    460       1.1       gwr /*
    461       1.1       gwr  * xymatch: probe for disk.
    462       1.1       gwr  *
    463       1.1       gwr  * note: we almost always say disk is present.   this allows us to
    464       1.1       gwr  * spin up and configure a disk after the system is booted (we can
    465      1.17       gwr  * call xyattach!).  Also, wire down the relationship between the
    466      1.17       gwr  * xy* and xyc* devices, to simplify boot device identification.
    467       1.1       gwr  */
    468      1.17       gwr static int
    469      1.50       chs xymatch(struct device *parent, struct cfdata *cf, void *aux)
    470       1.1       gwr {
    471       1.1       gwr 	struct xyc_attach_args *xa = aux;
    472      1.17       gwr 	int xy_unit;
    473       1.1       gwr 
    474      1.17       gwr 	/* Match only on the "wired-down" controller+disk. */
    475  1.53.6.1    simonb 	xy_unit = device_unit(parent) * 2 + xa->driveno;
    476      1.17       gwr 	if (cf->cf_unit != xy_unit)
    477      1.17       gwr 		return (0);
    478       1.1       gwr 
    479      1.17       gwr 	return (1);
    480       1.1       gwr }
    481       1.1       gwr 
    482       1.1       gwr /*
    483      1.17       gwr  * xyattach: attach a disk.
    484       1.1       gwr  */
    485      1.17       gwr static void
    486      1.50       chs xyattach(struct device *parent, struct device *self, void *aux)
    487       1.1       gwr {
    488      1.17       gwr 	struct xy_softc *xy = (void *) self;
    489       1.1       gwr 	struct xyc_softc *xyc = (void *) parent;
    490       1.1       gwr 	struct xyc_attach_args *xa = aux;
    491      1.17       gwr 
    492      1.17       gwr 	printf("\n");
    493       1.1       gwr 
    494       1.2   thorpej 	/*
    495       1.2   thorpej 	 * Always re-initialize the disk structure.  We want statistics
    496       1.2   thorpej 	 * to start with a clean slate.
    497       1.2   thorpej 	 */
    498      1.35   tsutsui 	memset(&xy->sc_dk, 0, sizeof(xy->sc_dk));
    499       1.2   thorpej 	xy->sc_dk.dk_driver = &xydkdriver;
    500       1.2   thorpej 	xy->sc_dk.dk_name = xy->sc_dev.dv_xname;
    501       1.2   thorpej 
    502      1.17       gwr 	xy->state = XY_DRIVE_UNKNOWN;	/* to start */
    503      1.17       gwr 	xy->flags = 0;
    504      1.17       gwr 	xy->parent = xyc;
    505      1.17       gwr 
    506      1.17       gwr 	/* init queue of waiting bufs */
    507      1.52      yamt 	bufq_alloc(&xy->xyq, "disksort", BUFQ_SORT_RAWBLOCK);
    508      1.17       gwr 	xy->xyrq = &xyc->reqs[xa->driveno];
    509       1.1       gwr 
    510       1.1       gwr 	xy->xy_drive = xa->driveno;
    511       1.1       gwr 	xyc->sc_drives[xa->driveno] = xy;
    512       1.1       gwr 
    513      1.17       gwr 	/* Do init work common to attach and open. */
    514      1.17       gwr 	xy_init(xy);
    515      1.17       gwr }
    516      1.17       gwr 
    517      1.17       gwr /*
    518      1.17       gwr  * end of autoconfig functions
    519      1.17       gwr  */
    520       1.1       gwr 
    521      1.17       gwr /*
    522      1.17       gwr  * Initialize a disk.  This can be called from both autoconf and
    523      1.17       gwr  * also from xyopen/xystrategy.
    524      1.17       gwr  */
    525      1.50       chs static void
    526      1.50       chs xy_init(struct xy_softc *xy)
    527      1.17       gwr {
    528      1.17       gwr 	struct xyc_softc *xyc;
    529      1.17       gwr 	struct dkbad *dkb;
    530      1.17       gwr 	void *dvmabuf;
    531      1.17       gwr 	int err, spt, mb, blk, lcv, fullmode, newstate;
    532       1.1       gwr 
    533      1.17       gwr 	xyc = xy->parent;
    534       1.1       gwr 	xy->state = XY_DRIVE_ATTACHING;
    535       1.1       gwr 	newstate = XY_DRIVE_UNKNOWN;
    536      1.17       gwr 	fullmode = (cold) ? XY_SUB_POLL : XY_SUB_WAIT;
    537      1.17       gwr 	dvmabuf  = dvma_malloc(XYFM_BPS);
    538       1.1       gwr 
    539       1.1       gwr 	/* first try and reset the drive */
    540       1.1       gwr 
    541      1.17       gwr 	err = xyc_cmd(xyc, XYCMD_RST, 0, xy->xy_drive, 0, 0, 0, fullmode);
    542       1.1       gwr 	XYC_DONE(xyc, err);
    543       1.1       gwr 	if (err == XY_ERR_DNRY) {
    544      1.17       gwr 		printf("%s: drive %d: off-line\n",
    545      1.17       gwr 			   xy->sc_dev.dv_xname, xy->xy_drive);
    546       1.1       gwr 		goto done;
    547       1.1       gwr 	}
    548       1.1       gwr 	if (err) {
    549      1.17       gwr 		printf("%s: ERROR 0x%02x (%s)\n",
    550      1.17       gwr 			   xy->sc_dev.dv_xname, err, xyc_e2str(err));
    551       1.1       gwr 		goto done;
    552       1.1       gwr 	}
    553      1.17       gwr 	printf("%s: drive %d ready",
    554      1.17       gwr 		   xy->sc_dev.dv_xname, xy->xy_drive);
    555       1.1       gwr 
    556       1.1       gwr 	/*
    557       1.1       gwr 	 * now set drive parameters (to semi-bogus values) so we can read the
    558       1.1       gwr 	 * disk label.
    559       1.1       gwr 	 */
    560       1.1       gwr 	xy->pcyl = xy->ncyl = 1;
    561       1.1       gwr 	xy->acyl = 0;
    562       1.1       gwr 	xy->nhead = 1;
    563       1.1       gwr 	xy->nsect = 1;
    564       1.1       gwr 	xy->sectpercyl = 1;
    565       1.1       gwr 	for (lcv = 0; lcv < 126; lcv++)	/* init empty bad144 table */
    566      1.17       gwr 		xy->dkb.bt_bad[lcv].bt_cyl =
    567       1.1       gwr 			xy->dkb.bt_bad[lcv].bt_trksec = 0xffff;
    568       1.1       gwr 
    569       1.1       gwr 	/* read disk label */
    570      1.17       gwr 	for (xy->drive_type = 0 ; xy->drive_type <= XYC_MAXDT ;
    571       1.1       gwr 						xy->drive_type++) {
    572      1.17       gwr 		err = xyc_cmd(xyc, XYCMD_RD, 0, xy->xy_drive, 0, 1,
    573      1.17       gwr 						dvmabuf, fullmode);
    574       1.1       gwr 		XYC_DONE(xyc, err);
    575       1.1       gwr 		if (err == XY_ERR_AOK) break;
    576       1.1       gwr 	}
    577       1.1       gwr 
    578       1.1       gwr 	if (err != XY_ERR_AOK) {
    579      1.17       gwr 		printf("%s: reading disk label failed: %s\n",
    580       1.1       gwr 			xy->sc_dev.dv_xname, xyc_e2str(err));
    581       1.1       gwr 		goto done;
    582       1.1       gwr 	}
    583      1.17       gwr 	printf("%s: drive type %d\n",
    584      1.17       gwr 		   xy->sc_dev.dv_xname, xy->drive_type);
    585       1.1       gwr 
    586       1.1       gwr 	newstate = XY_DRIVE_NOLABEL;
    587       1.1       gwr 
    588       1.1       gwr 	xy->hw_spt = spt = 0; /* XXX needed ? */
    589       1.3     chuck 	/* Attach the disk: must be before getdisklabel to malloc label */
    590       1.3     chuck 	disk_attach(&xy->sc_dk);
    591       1.3     chuck 
    592      1.17       gwr 	if (xygetdisklabel(xy, dvmabuf) != XY_ERR_AOK)
    593       1.1       gwr 		goto done;
    594       1.1       gwr 
    595       1.1       gwr 	/* inform the user of what is up */
    596      1.17       gwr 	printf("%s: <%s>, pcyl %d\n",
    597      1.17       gwr 		   xy->sc_dev.dv_xname,
    598      1.17       gwr 		   (char *)dvmabuf, xy->pcyl);
    599       1.1       gwr 	mb = xy->ncyl * (xy->nhead * xy->nsect) / (1048576 / XYFM_BPS);
    600      1.17       gwr 	printf("%s: %dMB, %d cyl, %d head, %d sec\n",
    601      1.17       gwr 		xy->sc_dev.dv_xname, mb,
    602      1.17       gwr 		xy->ncyl, xy->nhead, xy->nsect);
    603       1.1       gwr 
    604       1.1       gwr 	/*
    605       1.1       gwr 	 * 450/451 stupidity: the drive type is encoded into the format
    606       1.1       gwr 	 * of the disk.   the drive type in the IOPB must match the drive
    607       1.1       gwr 	 * type in the format, or you will not be able to do I/O to the
    608      1.17       gwr 	 * disk (you get header not found errors).  if you have two drives
    609      1.17       gwr 	 * of different sizes that have the same drive type in their
    610      1.17       gwr 	 * formatting then you are out of luck.
    611       1.1       gwr 	 *
    612       1.1       gwr 	 * this problem was corrected in the 753/7053.
    613       1.1       gwr 	 */
    614       1.1       gwr 
    615       1.1       gwr 	for (lcv = 0 ; lcv < XYC_MAXDEV ; lcv++) {
    616      1.17       gwr 		struct xy_softc *oxy;
    617      1.17       gwr 
    618       1.1       gwr 		oxy = xyc->sc_drives[lcv];
    619       1.1       gwr 		if (oxy == NULL || oxy == xy) continue;
    620       1.1       gwr 		if (oxy->drive_type != xy->drive_type) continue;
    621       1.1       gwr 		if (xy->nsect != oxy->nsect || xy->pcyl != oxy->pcyl ||
    622       1.1       gwr 			xy->nhead != oxy->nhead) {
    623      1.11  christos 			printf("%s: %s and %s must be the same size!\n",
    624      1.17       gwr 				xyc->sc_dev.dv_xname,
    625      1.17       gwr 				xy ->sc_dev.dv_xname,
    626       1.1       gwr 				oxy->sc_dev.dv_xname);
    627       1.1       gwr 			panic("xy drive size mismatch");
    628       1.1       gwr 		}
    629       1.1       gwr 	}
    630      1.17       gwr 
    631       1.1       gwr 
    632       1.1       gwr 	/* now set the real drive parameters! */
    633       1.1       gwr 	blk = (xy->nsect - 1) +
    634       1.1       gwr 		((xy->nhead - 1) * xy->nsect) +
    635       1.1       gwr 		((xy->pcyl - 1) * xy->nsect * xy->nhead);
    636      1.17       gwr 	err = xyc_cmd(xyc, XYCMD_SDS, 0, xy->xy_drive, blk, 0, 0, fullmode);
    637       1.1       gwr 	XYC_DONE(xyc, err);
    638       1.1       gwr 	if (err) {
    639      1.11  christos 		printf("%s: write drive size failed: %s\n",
    640       1.1       gwr 			xy->sc_dev.dv_xname, xyc_e2str(err));
    641       1.1       gwr 		goto done;
    642       1.1       gwr 	}
    643       1.1       gwr 	newstate = XY_DRIVE_ONLINE;
    644       1.1       gwr 
    645       1.1       gwr 	/*
    646       1.1       gwr 	 * read bad144 table. this table resides on the first sector of the
    647       1.1       gwr 	 * last track of the disk (i.e. second cyl of "acyl" area).
    648       1.1       gwr 	 */
    649      1.17       gwr 	blk = (xy->ncyl + xy->acyl - 1) * (xy->nhead * xy->nsect) +
    650       1.1       gwr 								/* last cyl */
    651       1.1       gwr 	    (xy->nhead - 1) * xy->nsect;	/* last head */
    652      1.17       gwr 	err = xyc_cmd(xyc, XYCMD_RD, 0, xy->xy_drive, blk, 1,
    653      1.17       gwr 						dvmabuf, fullmode);
    654       1.1       gwr 	XYC_DONE(xyc, err);
    655       1.1       gwr 	if (err) {
    656      1.11  christos 		printf("%s: reading bad144 failed: %s\n",
    657       1.1       gwr 			xy->sc_dev.dv_xname, xyc_e2str(err));
    658       1.1       gwr 		goto done;
    659       1.1       gwr 	}
    660       1.1       gwr 
    661       1.1       gwr 	/* check dkbad for sanity */
    662      1.17       gwr 	dkb = (struct dkbad *) dvmabuf;
    663       1.1       gwr 	for (lcv = 0; lcv < 126; lcv++) {
    664       1.1       gwr 		if ((dkb->bt_bad[lcv].bt_cyl == 0xffff ||
    665       1.1       gwr 				dkb->bt_bad[lcv].bt_cyl == 0) &&
    666       1.1       gwr 		     dkb->bt_bad[lcv].bt_trksec == 0xffff)
    667       1.1       gwr 			continue;	/* blank */
    668       1.1       gwr 		if (dkb->bt_bad[lcv].bt_cyl >= xy->ncyl)
    669       1.1       gwr 			break;
    670       1.1       gwr 		if ((dkb->bt_bad[lcv].bt_trksec >> 8) >= xy->nhead)
    671       1.1       gwr 			break;
    672       1.1       gwr 		if ((dkb->bt_bad[lcv].bt_trksec & 0xff) >= xy->nsect)
    673       1.1       gwr 			break;
    674       1.1       gwr 	}
    675       1.1       gwr 	if (lcv != 126) {
    676      1.11  christos 		printf("%s: warning: invalid bad144 sector!\n",
    677       1.1       gwr 			xy->sc_dev.dv_xname);
    678       1.1       gwr 	} else {
    679      1.35   tsutsui 		memcpy(&xy->dkb, dvmabuf, XYFM_BPS);
    680       1.1       gwr 	}
    681       1.1       gwr 
    682       1.1       gwr done:
    683       1.1       gwr 	xy->state = newstate;
    684      1.17       gwr 	dvma_free(dvmabuf, XYFM_BPS);
    685       1.1       gwr }
    686       1.1       gwr 
    687       1.1       gwr /*
    688       1.1       gwr  * { b , c } d e v s w   f u n c t i o n s
    689       1.1       gwr  */
    690       1.1       gwr 
    691       1.1       gwr /*
    692       1.1       gwr  * xyclose: close device
    693       1.1       gwr  */
    694      1.50       chs int
    695      1.53  christos xyclose(dev_t dev, int flag, int fmt, struct lwp *l)
    696       1.1       gwr {
    697       1.9   thorpej 	struct xy_softc *xy = xy_cd.cd_devs[DISKUNIT(dev)];
    698       1.1       gwr 	int     part = DISKPART(dev);
    699       1.1       gwr 
    700       1.1       gwr 	/* clear mask bits */
    701       1.1       gwr 
    702       1.1       gwr 	switch (fmt) {
    703       1.1       gwr 	case S_IFCHR:
    704       1.1       gwr 		xy->sc_dk.dk_copenmask &= ~(1 << part);
    705       1.1       gwr 		break;
    706       1.1       gwr 	case S_IFBLK:
    707       1.1       gwr 		xy->sc_dk.dk_bopenmask &= ~(1 << part);
    708       1.1       gwr 		break;
    709       1.1       gwr 	}
    710       1.1       gwr 	xy->sc_dk.dk_openmask = xy->sc_dk.dk_copenmask | xy->sc_dk.dk_bopenmask;
    711       1.1       gwr 
    712       1.1       gwr 	return 0;
    713       1.1       gwr }
    714       1.1       gwr 
    715       1.1       gwr /*
    716       1.1       gwr  * xydump: crash dump system
    717       1.1       gwr  */
    718      1.50       chs int
    719      1.50       chs xydump(dev_t dev, daddr_t blkno, caddr_t va, size_t sz)
    720       1.1       gwr {
    721       1.1       gwr 	int     unit, part;
    722       1.1       gwr 	struct xy_softc *xy;
    723       1.1       gwr 
    724       1.1       gwr 	unit = DISKUNIT(dev);
    725       1.9   thorpej 	if (unit >= xy_cd.cd_ndevs)
    726       1.1       gwr 		return ENXIO;
    727       1.1       gwr 	part = DISKPART(dev);
    728       1.1       gwr 
    729       1.9   thorpej 	xy = xy_cd.cd_devs[unit];
    730       1.1       gwr 
    731      1.11  christos 	printf("%s%c: crash dump not supported (yet)\n", xy->sc_dev.dv_xname,
    732       1.1       gwr 	    'a' + part);
    733       1.1       gwr 
    734       1.1       gwr 	return ENXIO;
    735       1.1       gwr 
    736       1.1       gwr 	/* outline: globals: "dumplo" == sector number of partition to start
    737       1.1       gwr 	 * dump at (convert to physical sector with partition table)
    738       1.1       gwr 	 * "dumpsize" == size of dump in clicks "physmem" == size of physical
    739       1.1       gwr 	 * memory (clicks, ctob() to get bytes) (normal case: dumpsize ==
    740       1.1       gwr 	 * physmem)
    741      1.17       gwr 	 *
    742       1.1       gwr 	 * dump a copy of physical memory to the dump device starting at sector
    743       1.1       gwr 	 * "dumplo" in the swap partition (make sure > 0).   map in pages as
    744       1.1       gwr 	 * we go.   use polled I/O.
    745      1.17       gwr 	 *
    746      1.17       gwr 	 * XXX how to handle NON_CONTIG?
    747      1.17       gwr 	 */
    748       1.1       gwr }
    749       1.1       gwr 
    750       1.1       gwr /*
    751       1.1       gwr  * xyioctl: ioctls on XY drives.   based on ioctl's of other netbsd disks.
    752       1.1       gwr  */
    753      1.50       chs int
    754      1.53  christos xyioctl(dev_t dev, u_long command, caddr_t addr, int flag, struct lwp *l)
    755       1.1       gwr {
    756       1.1       gwr 	struct xy_softc *xy;
    757       1.1       gwr 	struct xd_iocmd *xio;
    758       1.1       gwr 	int     error, s, unit;
    759       1.1       gwr 
    760       1.1       gwr 	unit = DISKUNIT(dev);
    761       1.1       gwr 
    762       1.9   thorpej 	if (unit >= xy_cd.cd_ndevs || (xy = xy_cd.cd_devs[unit]) == NULL)
    763       1.1       gwr 		return (ENXIO);
    764       1.1       gwr 
    765       1.1       gwr 	/* switch on ioctl type */
    766       1.1       gwr 
    767       1.1       gwr 	switch (command) {
    768       1.1       gwr 	case DIOCSBAD:		/* set bad144 info */
    769       1.1       gwr 		if ((flag & FWRITE) == 0)
    770       1.1       gwr 			return EBADF;
    771       1.1       gwr 		s = splbio();
    772      1.35   tsutsui 		memcpy(&xy->dkb, addr, sizeof(xy->dkb));
    773       1.1       gwr 		splx(s);
    774       1.1       gwr 		return 0;
    775       1.1       gwr 
    776       1.1       gwr 	case DIOCGDINFO:	/* get disk label */
    777      1.35   tsutsui 		memcpy(addr, xy->sc_dk.dk_label, sizeof(struct disklabel));
    778       1.1       gwr 		return 0;
    779       1.1       gwr 
    780       1.1       gwr 	case DIOCGPART:	/* get partition info */
    781       1.2   thorpej 		((struct partinfo *) addr)->disklab = xy->sc_dk.dk_label;
    782       1.1       gwr 		((struct partinfo *) addr)->part =
    783       1.2   thorpej 		    &xy->sc_dk.dk_label->d_partitions[DISKPART(dev)];
    784       1.1       gwr 		return 0;
    785       1.1       gwr 
    786       1.1       gwr 	case DIOCSDINFO:	/* set disk label */
    787       1.1       gwr 		if ((flag & FWRITE) == 0)
    788       1.1       gwr 			return EBADF;
    789       1.2   thorpej 		error = setdisklabel(xy->sc_dk.dk_label,
    790       1.1       gwr 		    (struct disklabel *) addr, /* xy->sc_dk.dk_openmask : */ 0,
    791       1.2   thorpej 		    xy->sc_dk.dk_cpulabel);
    792       1.1       gwr 		if (error == 0) {
    793       1.1       gwr 			if (xy->state == XY_DRIVE_NOLABEL)
    794       1.1       gwr 				xy->state = XY_DRIVE_ONLINE;
    795       1.1       gwr 		}
    796       1.1       gwr 		return error;
    797       1.1       gwr 
    798       1.1       gwr 	case DIOCWLABEL:	/* change write status of disk label */
    799       1.1       gwr 		if ((flag & FWRITE) == 0)
    800       1.1       gwr 			return EBADF;
    801       1.1       gwr 		if (*(int *) addr)
    802       1.1       gwr 			xy->flags |= XY_WLABEL;
    803       1.1       gwr 		else
    804       1.1       gwr 			xy->flags &= ~XY_WLABEL;
    805       1.1       gwr 		return 0;
    806       1.1       gwr 
    807       1.1       gwr 	case DIOCWDINFO:	/* write disk label */
    808       1.1       gwr 		if ((flag & FWRITE) == 0)
    809       1.1       gwr 			return EBADF;
    810       1.2   thorpej 		error = setdisklabel(xy->sc_dk.dk_label,
    811       1.1       gwr 		    (struct disklabel *) addr, /* xy->sc_dk.dk_openmask : */ 0,
    812       1.2   thorpej 		    xy->sc_dk.dk_cpulabel);
    813       1.1       gwr 		if (error == 0) {
    814       1.1       gwr 			if (xy->state == XY_DRIVE_NOLABEL)
    815       1.1       gwr 				xy->state = XY_DRIVE_ONLINE;
    816       1.1       gwr 
    817       1.1       gwr 			/* Simulate opening partition 0 so write succeeds. */
    818       1.1       gwr 			xy->sc_dk.dk_openmask |= (1 << 0);
    819       1.1       gwr 			error = writedisklabel(MAKEDISKDEV(major(dev), DISKUNIT(dev), RAW_PART),
    820       1.2   thorpej 			    xystrategy, xy->sc_dk.dk_label,
    821       1.2   thorpej 			    xy->sc_dk.dk_cpulabel);
    822       1.1       gwr 			xy->sc_dk.dk_openmask =
    823       1.1       gwr 			    xy->sc_dk.dk_copenmask | xy->sc_dk.dk_bopenmask;
    824       1.1       gwr 		}
    825       1.1       gwr 		return error;
    826       1.1       gwr 
    827       1.1       gwr 	case DIOSXDCMD:
    828       1.1       gwr 		xio = (struct xd_iocmd *) addr;
    829      1.53  christos 		if ((error = suser(l->l_proc->p_ucred, &l->l_proc->p_acflag)) != 0)
    830       1.1       gwr 			return (error);
    831       1.1       gwr 		return (xyc_ioctlcmd(xy, dev, xio));
    832       1.1       gwr 
    833       1.1       gwr 	default:
    834       1.1       gwr 		return ENOTTY;
    835       1.1       gwr 	}
    836       1.1       gwr }
    837       1.1       gwr 
    838       1.1       gwr /*
    839       1.1       gwr  * xyopen: open drive
    840       1.1       gwr  */
    841      1.50       chs int
    842      1.53  christos xyopen(dev_t dev, int flag, int fmt, struct lwp *l)
    843       1.1       gwr {
    844      1.17       gwr 	int err, unit, part, s;
    845       1.1       gwr 	struct xy_softc *xy;
    846       1.1       gwr 
    847       1.1       gwr 	/* first, could it be a valid target? */
    848       1.1       gwr 	unit = DISKUNIT(dev);
    849       1.9   thorpej 	if (unit >= xy_cd.cd_ndevs || (xy = xy_cd.cd_devs[unit]) == NULL)
    850       1.1       gwr 		return (ENXIO);
    851       1.1       gwr 	part = DISKPART(dev);
    852      1.17       gwr 	err = 0;
    853       1.1       gwr 
    854      1.17       gwr 	/*
    855      1.17       gwr 	 * If some other processing is doing init, sleep.
    856      1.17       gwr 	 */
    857      1.17       gwr 	s = splbio();
    858      1.17       gwr 	while (xy->state == XY_DRIVE_ATTACHING) {
    859      1.17       gwr 		if (tsleep(&xy->state, PRIBIO, "xyopen", 0)) {
    860      1.17       gwr 			err = EINTR;
    861      1.17       gwr 			goto done;
    862      1.17       gwr 		}
    863      1.17       gwr 	}
    864      1.17       gwr 	/* Do we need to init the drive? */
    865      1.17       gwr 	if (xy->state == XY_DRIVE_UNKNOWN) {
    866      1.17       gwr 		xy_init(xy);
    867      1.17       gwr 		wakeup(&xy->state);
    868      1.17       gwr 	}
    869      1.17       gwr 	/* Was the init successful? */
    870       1.1       gwr 	if (xy->state == XY_DRIVE_UNKNOWN) {
    871      1.17       gwr 		err = EIO;
    872      1.17       gwr 		goto done;
    873       1.1       gwr 	}
    874      1.17       gwr 
    875       1.1       gwr 	/* check for partition */
    876       1.1       gwr 	if (part != RAW_PART &&
    877       1.2   thorpej 	    (part >= xy->sc_dk.dk_label->d_npartitions ||
    878       1.2   thorpej 		xy->sc_dk.dk_label->d_partitions[part].p_fstype == FS_UNUSED)) {
    879      1.17       gwr 		err = ENXIO;
    880      1.17       gwr 		goto done;
    881       1.1       gwr 	}
    882      1.17       gwr 
    883       1.1       gwr 	/* set open masks */
    884       1.1       gwr 	switch (fmt) {
    885       1.1       gwr 	case S_IFCHR:
    886       1.1       gwr 		xy->sc_dk.dk_copenmask |= (1 << part);
    887       1.1       gwr 		break;
    888       1.1       gwr 	case S_IFBLK:
    889       1.1       gwr 		xy->sc_dk.dk_bopenmask |= (1 << part);
    890       1.1       gwr 		break;
    891       1.1       gwr 	}
    892       1.1       gwr 	xy->sc_dk.dk_openmask = xy->sc_dk.dk_copenmask | xy->sc_dk.dk_bopenmask;
    893       1.1       gwr 
    894      1.17       gwr done:
    895      1.17       gwr 	splx(s);
    896      1.17       gwr 	return (err);
    897       1.1       gwr }
    898       1.1       gwr 
    899      1.50       chs int
    900      1.50       chs xyread(dev_t dev, struct uio *uio, int flags)
    901       1.1       gwr {
    902       1.1       gwr 
    903       1.1       gwr 	return (physio(xystrategy, NULL, dev, B_READ, minphys, uio));
    904       1.1       gwr }
    905       1.1       gwr 
    906      1.50       chs int
    907      1.50       chs xywrite(dev_t dev, struct uio *uio, int flags)
    908       1.1       gwr {
    909       1.1       gwr 
    910       1.1       gwr 	return (physio(xystrategy, NULL, dev, B_WRITE, minphys, uio));
    911       1.1       gwr }
    912       1.1       gwr 
    913       1.1       gwr 
    914       1.1       gwr /*
    915       1.1       gwr  * xysize: return size of a partition for a dump
    916       1.1       gwr  */
    917       1.1       gwr 
    918      1.50       chs int
    919      1.50       chs xysize(dev_t dev)
    920       1.1       gwr {
    921       1.1       gwr 	struct xy_softc *xysc;
    922      1.14        pk 	int     unit, part, size, omask;
    923       1.1       gwr 
    924      1.14        pk 	/* valid unit? */
    925      1.14        pk 	unit = DISKUNIT(dev);
    926      1.14        pk 	if (unit >= xy_cd.cd_ndevs || (xysc = xy_cd.cd_devs[unit]) == NULL)
    927      1.14        pk 		return (-1);
    928       1.1       gwr 
    929      1.14        pk 	part = DISKPART(dev);
    930      1.14        pk 	omask = xysc->sc_dk.dk_openmask & (1 << part);
    931      1.14        pk 
    932      1.17       gwr 	if (omask == 0 && xyopen(dev, 0, S_IFBLK, NULL) != 0)
    933       1.1       gwr 		return (-1);
    934       1.1       gwr 
    935       1.1       gwr 	/* do it */
    936       1.2   thorpej 	if (xysc->sc_dk.dk_label->d_partitions[part].p_fstype != FS_SWAP)
    937       1.1       gwr 		size = -1;	/* only give valid size for swap partitions */
    938       1.1       gwr 	else
    939      1.15   thorpej 		size = xysc->sc_dk.dk_label->d_partitions[part].p_size *
    940      1.15   thorpej 		    (xysc->sc_dk.dk_label->d_secsize / DEV_BSIZE);
    941      1.17       gwr 	if (omask == 0 && xyclose(dev, 0, S_IFBLK, NULL) != 0)
    942      1.14        pk 		return (-1);
    943      1.14        pk 	return (size);
    944       1.1       gwr }
    945       1.1       gwr 
    946       1.1       gwr /*
    947       1.1       gwr  * xystrategy: buffering system interface to xy.
    948       1.1       gwr  */
    949      1.50       chs void
    950      1.50       chs xystrategy(struct buf *bp)
    951       1.1       gwr {
    952       1.1       gwr 	struct xy_softc *xy;
    953       1.1       gwr 	int     s, unit;
    954      1.25   thorpej 	struct disklabel *lp;
    955      1.25   thorpej 	daddr_t blkno;
    956       1.1       gwr 
    957       1.1       gwr 	unit = DISKUNIT(bp->b_dev);
    958       1.1       gwr 
    959       1.1       gwr 	/* check for live device */
    960       1.1       gwr 
    961       1.9   thorpej 	if (unit >= xy_cd.cd_ndevs || (xy = xy_cd.cd_devs[unit]) == 0 ||
    962       1.1       gwr 	    bp->b_blkno < 0 ||
    963       1.2   thorpej 	    (bp->b_bcount % xy->sc_dk.dk_label->d_secsize) != 0) {
    964       1.1       gwr 		bp->b_error = EINVAL;
    965       1.1       gwr 		goto bad;
    966       1.1       gwr 	}
    967       1.1       gwr 
    968      1.17       gwr 	/* There should always be an open first. */
    969       1.1       gwr 	if (xy->state == XY_DRIVE_UNKNOWN) {
    970      1.17       gwr 		bp->b_error = EIO;
    971      1.17       gwr 		goto bad;
    972       1.1       gwr 	}
    973       1.1       gwr 	if (xy->state != XY_DRIVE_ONLINE && DISKPART(bp->b_dev) != RAW_PART) {
    974       1.1       gwr 		/* no I/O to unlabeled disks, unless raw partition */
    975       1.1       gwr 		bp->b_error = EIO;
    976       1.1       gwr 		goto bad;
    977       1.1       gwr 	}
    978       1.1       gwr 	/* short circuit zero length request */
    979       1.1       gwr 
    980       1.1       gwr 	if (bp->b_bcount == 0)
    981       1.1       gwr 		goto done;
    982       1.1       gwr 
    983       1.1       gwr 	/* check bounds with label (disksubr.c).  Determine the size of the
    984       1.1       gwr 	 * transfer, and make sure it is within the boundaries of the
    985       1.1       gwr 	 * partition. Adjust transfer if needed, and signal errors or early
    986       1.1       gwr 	 * completion. */
    987       1.1       gwr 
    988      1.25   thorpej 	lp = xy->sc_dk.dk_label;
    989      1.25   thorpej 
    990      1.46   thorpej 	if (bounds_check_with_label(&xy->sc_dk, bp,
    991       1.1       gwr 		(xy->flags & XY_WLABEL) != 0) <= 0)
    992       1.1       gwr 		goto done;
    993       1.1       gwr 
    994       1.1       gwr 	/*
    995      1.25   thorpej 	 * Now convert the block number to absolute and put it in
    996      1.25   thorpej 	 * terms of the device's logical block size.
    997      1.25   thorpej 	 */
    998      1.25   thorpej 	blkno = bp->b_blkno / (lp->d_secsize / DEV_BSIZE);
    999      1.25   thorpej 	if (DISKPART(bp->b_dev) != RAW_PART)
   1000      1.25   thorpej 		blkno += lp->d_partitions[DISKPART(bp->b_dev)].p_offset;
   1001      1.25   thorpej 
   1002      1.25   thorpej 	bp->b_rawblkno = blkno;
   1003      1.25   thorpej 
   1004      1.25   thorpej 	/*
   1005       1.1       gwr 	 * now we know we have a valid buf structure that we need to do I/O
   1006       1.1       gwr 	 * on.
   1007       1.1       gwr 	 */
   1008       1.1       gwr 
   1009       1.1       gwr 	s = splbio();		/* protect the queues */
   1010       1.1       gwr 
   1011      1.52      yamt 	BUFQ_PUT(xy->xyq, bp);	 /* XXX disksort_cylinder */
   1012       1.1       gwr 
   1013       1.1       gwr 	/* start 'em up */
   1014       1.1       gwr 
   1015       1.1       gwr 	xyc_start(xy->parent, NULL);
   1016       1.1       gwr 
   1017       1.1       gwr 	/* done! */
   1018       1.1       gwr 
   1019       1.1       gwr 	splx(s);
   1020       1.1       gwr 	return;
   1021       1.1       gwr 
   1022       1.1       gwr bad:				/* tells upper layers we have an error */
   1023       1.1       gwr 	bp->b_flags |= B_ERROR;
   1024       1.1       gwr done:				/* tells upper layers we are done with this
   1025       1.1       gwr 				 * buf */
   1026       1.1       gwr 	bp->b_resid = bp->b_bcount;
   1027       1.1       gwr 	biodone(bp);
   1028       1.1       gwr }
   1029       1.1       gwr /*
   1030       1.1       gwr  * end of {b,c}devsw functions
   1031       1.1       gwr  */
   1032       1.1       gwr 
   1033       1.1       gwr /*
   1034       1.1       gwr  * i n t e r r u p t   f u n c t i o n
   1035       1.1       gwr  *
   1036       1.1       gwr  * xycintr: hardware interrupt.
   1037       1.1       gwr  */
   1038      1.50       chs int
   1039      1.50       chs xycintr(void *v)
   1040       1.1       gwr {
   1041       1.1       gwr 	struct xyc_softc *xycsc = v;
   1042       1.1       gwr 
   1043       1.1       gwr 	/* kick the event counter */
   1044       1.1       gwr 	xycsc->sc_intrcnt.ev_count++;
   1045       1.1       gwr 
   1046       1.1       gwr 	/* remove as many done IOPBs as possible */
   1047       1.1       gwr 	xyc_remove_iorq(xycsc);
   1048       1.1       gwr 
   1049       1.1       gwr 	/* start any iorq's already waiting */
   1050       1.1       gwr 	xyc_start(xycsc, NULL);
   1051       1.1       gwr 
   1052       1.1       gwr 	return (1);
   1053       1.1       gwr }
   1054       1.1       gwr /*
   1055       1.1       gwr  * end of interrupt function
   1056       1.1       gwr  */
   1057       1.1       gwr 
   1058       1.1       gwr /*
   1059       1.1       gwr  * i n t e r n a l   f u n c t i o n s
   1060       1.1       gwr  */
   1061       1.1       gwr 
   1062       1.1       gwr /*
   1063       1.1       gwr  * xyc_rqinit: fill out the fields of an I/O request
   1064       1.1       gwr  */
   1065       1.1       gwr 
   1066      1.50       chs inline void
   1067      1.50       chs xyc_rqinit(struct xy_iorq *rq, struct xyc_softc *xyc, struct xy_softc *xy,
   1068      1.50       chs     int md, u_long blk, int cnt, caddr_t db, struct buf *bp)
   1069       1.1       gwr {
   1070       1.1       gwr 	rq->xyc = xyc;
   1071       1.1       gwr 	rq->xy = xy;
   1072       1.1       gwr 	rq->ttl = XYC_MAXTTL + 10;
   1073       1.1       gwr 	rq->mode = md;
   1074       1.1       gwr 	rq->tries = rq->errno = rq->lasterror = 0;
   1075       1.1       gwr 	rq->blockno = blk;
   1076       1.1       gwr 	rq->sectcnt = cnt;
   1077       1.1       gwr 	rq->dbuf = rq->dbufbase = db;
   1078       1.1       gwr 	rq->buf = bp;
   1079       1.1       gwr }
   1080       1.1       gwr 
   1081       1.1       gwr /*
   1082       1.1       gwr  * xyc_rqtopb: load up an IOPB based on an iorq
   1083       1.1       gwr  */
   1084       1.1       gwr 
   1085      1.50       chs void
   1086      1.50       chs xyc_rqtopb(struct xy_iorq *iorq, struct xy_iopb *iopb, int cmd, int subfun)
   1087       1.1       gwr {
   1088       1.1       gwr 	u_long  block, dp;
   1089       1.1       gwr 
   1090       1.1       gwr 	/* normal IOPB case, standard stuff */
   1091       1.1       gwr 
   1092       1.1       gwr 	/* chain bit handled later */
   1093       1.1       gwr 	iopb->ien = (XY_STATE(iorq->mode) == XY_SUB_POLL) ? 0 : 1;
   1094       1.1       gwr 	iopb->com = cmd;
   1095       1.1       gwr 	iopb->errno = 0;
   1096       1.1       gwr 	iopb->errs = 0;
   1097       1.1       gwr 	iopb->done = 0;
   1098       1.1       gwr 	if (iorq->xy) {
   1099       1.1       gwr 		iopb->unit = iorq->xy->xy_drive;
   1100       1.1       gwr 		iopb->dt = iorq->xy->drive_type;
   1101       1.1       gwr 	} else {
   1102       1.1       gwr 		iopb->unit = 0;
   1103       1.1       gwr 		iopb->dt = 0;
   1104       1.1       gwr 	}
   1105       1.1       gwr 	block = iorq->blockno;
   1106       1.1       gwr 	if (iorq->xy == NULL || block == 0) {
   1107       1.1       gwr 		iopb->sect = iopb->head = iopb->cyl = 0;
   1108       1.1       gwr 	} else {
   1109       1.1       gwr 		iopb->sect = block % iorq->xy->nsect;
   1110       1.1       gwr 		block = block / iorq->xy->nsect;
   1111       1.1       gwr 		iopb->head = block % iorq->xy->nhead;
   1112       1.1       gwr 		block = block / iorq->xy->nhead;
   1113       1.1       gwr 		iopb->cyl = block;
   1114       1.1       gwr 	}
   1115       1.1       gwr 	iopb->scnt = iorq->sectcnt;
   1116       1.1       gwr 	if (iorq->dbuf == NULL) {
   1117       1.1       gwr 		iopb->dataa = 0;
   1118       1.1       gwr 		iopb->datar = 0;
   1119       1.1       gwr 	} else {
   1120      1.19       gwr 		dp = dvma_kvtopa(iorq->dbuf, iorq->xyc->bustype);
   1121       1.1       gwr 		iopb->dataa = (dp & 0xffff);
   1122       1.1       gwr 		iopb->datar = ((dp & 0xff0000) >> 16);
   1123       1.1       gwr 	}
   1124       1.1       gwr 	iopb->subfn = subfun;
   1125       1.1       gwr }
   1126       1.1       gwr 
   1127       1.1       gwr 
   1128       1.1       gwr /*
   1129       1.1       gwr  * xyc_unbusy: wait for the xyc to go unbusy, or timeout.
   1130       1.1       gwr  */
   1131       1.1       gwr 
   1132      1.50       chs int
   1133      1.50       chs xyc_unbusy(struct xyc *xyc, int del)
   1134       1.1       gwr {
   1135       1.1       gwr 	while (del-- > 0) {
   1136       1.1       gwr 		if ((xyc->xyc_csr & XYC_GBSY) == 0)
   1137       1.1       gwr 			break;
   1138       1.1       gwr 		DELAY(1);
   1139       1.1       gwr 	}
   1140       1.1       gwr 	return(del == 0 ? XY_ERR_FAIL : XY_ERR_AOK);
   1141       1.1       gwr }
   1142       1.1       gwr 
   1143       1.1       gwr /*
   1144       1.1       gwr  * xyc_cmd: front end for POLL'd and WAIT'd commands.  Returns 0 or error.
   1145      1.34       wiz  * note that NORM requests are handled separately.
   1146       1.1       gwr  */
   1147      1.50       chs int
   1148      1.50       chs xyc_cmd(struct xyc_softc *xycsc, int cmd, int subfn, int unit, int block,
   1149      1.50       chs     int scnt, char *dptr, int fullmode)
   1150       1.1       gwr {
   1151       1.1       gwr 	struct xy_iorq *iorq = xycsc->ciorq;
   1152       1.1       gwr 	struct xy_iopb *iopb = xycsc->ciopb;
   1153      1.17       gwr 	int submode = XY_STATE(fullmode);
   1154       1.1       gwr 
   1155       1.1       gwr 	/*
   1156       1.1       gwr 	 * is someone else using the control iopq wait for it if we can
   1157       1.1       gwr 	 */
   1158       1.1       gwr start:
   1159       1.1       gwr 	if (submode == XY_SUB_WAIT && XY_STATE(iorq->mode) != XY_SUB_FREE) {
   1160      1.17       gwr 		if (tsleep(iorq, PRIBIO, "xyc_cmd", 0))
   1161       1.1       gwr                                 return(XY_ERR_FAIL);
   1162       1.1       gwr 		goto start;
   1163       1.1       gwr 	}
   1164       1.1       gwr 
   1165       1.1       gwr 	if (XY_STATE(iorq->mode) != XY_SUB_FREE) {
   1166       1.1       gwr 		DELAY(1000000);		/* XY_SUB_POLL: steal the iorq */
   1167       1.1       gwr 		iorq->mode = XY_SUB_FREE;
   1168      1.11  christos 		printf("%s: stole control iopb\n", xycsc->sc_dev.dv_xname);
   1169       1.1       gwr 	}
   1170       1.1       gwr 
   1171       1.1       gwr 	/* init iorq/iopb */
   1172       1.1       gwr 
   1173       1.1       gwr 	xyc_rqinit(iorq, xycsc,
   1174       1.1       gwr 	    (unit == XYC_NOUNIT) ? NULL : xycsc->sc_drives[unit],
   1175       1.1       gwr 	    fullmode, block, scnt, dptr, NULL);
   1176       1.1       gwr 
   1177       1.1       gwr 	/* load IOPB from iorq */
   1178       1.1       gwr 
   1179       1.1       gwr 	xyc_rqtopb(iorq, iopb, cmd, subfn);
   1180       1.1       gwr 
   1181       1.1       gwr 	/* submit it for processing */
   1182       1.1       gwr 
   1183       1.1       gwr 	xyc_submit_iorq(xycsc, iorq, fullmode);	/* error code will be in iorq */
   1184       1.1       gwr 
   1185       1.1       gwr 	return(XY_ERR_AOK);
   1186       1.1       gwr }
   1187       1.1       gwr 
   1188       1.1       gwr /*
   1189       1.1       gwr  * xyc_startbuf
   1190       1.1       gwr  * start a buffer for running
   1191       1.1       gwr  */
   1192       1.1       gwr 
   1193      1.50       chs int
   1194      1.50       chs xyc_startbuf(struct xyc_softc *xycsc, struct xy_softc *xysc, struct buf *bp)
   1195       1.1       gwr {
   1196       1.1       gwr 	int     partno;
   1197       1.1       gwr 	struct xy_iorq *iorq;
   1198       1.1       gwr 	struct xy_iopb *iopb;
   1199      1.17       gwr 	u_long  block;
   1200       1.1       gwr 	caddr_t dbuf;
   1201       1.1       gwr 
   1202       1.1       gwr 	iorq = xysc->xyrq;
   1203       1.1       gwr 	iopb = iorq->iopb;
   1204       1.1       gwr 
   1205       1.1       gwr 	/* get buf */
   1206       1.1       gwr 
   1207      1.17       gwr 	if (bp == NULL)
   1208       1.1       gwr 		panic("xyc_startbuf null buf");
   1209       1.1       gwr 
   1210       1.1       gwr 	partno = DISKPART(bp->b_dev);
   1211       1.1       gwr #ifdef XYC_DEBUG
   1212      1.11  christos 	printf("xyc_startbuf: %s%c: %s block %d\n", xysc->sc_dev.dv_xname,
   1213       1.1       gwr 	    'a' + partno, (bp->b_flags & B_READ) ? "read" : "write", bp->b_blkno);
   1214      1.11  christos 	printf("xyc_startbuf: b_bcount %d, b_data 0x%x\n",
   1215       1.1       gwr 	    bp->b_bcount, bp->b_data);
   1216       1.1       gwr #endif
   1217       1.1       gwr 
   1218       1.1       gwr 	/*
   1219      1.25   thorpej 	 * load request.
   1220      1.17       gwr 	 *
   1221       1.1       gwr 	 * also, note that there are two kinds of buf structures, those with
   1222       1.1       gwr 	 * B_PHYS set and those without B_PHYS.   if B_PHYS is set, then it is
   1223       1.1       gwr 	 * a raw I/O (to a cdevsw) and we are doing I/O directly to the users'
   1224       1.1       gwr 	 * buffer which has already been mapped into DVMA space. (Not on sun3)
   1225       1.1       gwr 	 * However, if B_PHYS is not set, then the buffer is a normal system
   1226       1.1       gwr 	 * buffer which does *not* live in DVMA space.  In that case we call
   1227       1.1       gwr 	 * dvma_mapin to map it into DVMA space so we can do the DMA to it.
   1228      1.17       gwr 	 *
   1229       1.1       gwr 	 * in cases where we do a dvma_mapin, note that iorq points to the buffer
   1230       1.1       gwr 	 * as mapped into DVMA space, where as the bp->b_data points to its
   1231       1.1       gwr 	 * non-DVMA mapping.
   1232       1.1       gwr 	 *
   1233       1.1       gwr 	 * XXX - On the sun3, B_PHYS does NOT mean the buffer is mapped
   1234       1.1       gwr 	 * into dvma space, only that it was remapped into the kernel.
   1235       1.1       gwr 	 * We ALWAYS have to remap the kernel buf into DVMA space.
   1236       1.1       gwr 	 * (It is done inexpensively, using whole segments!)
   1237       1.1       gwr 	 */
   1238       1.1       gwr 
   1239      1.25   thorpej 	block = bp->b_rawblkno;
   1240       1.1       gwr 
   1241      1.17       gwr 	dbuf = dvma_mapin(bp->b_data, bp->b_bcount, 0);
   1242       1.1       gwr 	if (dbuf == NULL) {	/* out of DVMA space */
   1243      1.17       gwr 		printf("%s: warning: out of DVMA space\n",
   1244       1.1       gwr 			   xycsc->sc_dev.dv_xname);
   1245       1.1       gwr 		return (XY_ERR_FAIL);	/* XXX: need some sort of
   1246       1.1       gwr 		                         * call-back scheme here? */
   1247       1.1       gwr 	}
   1248       1.1       gwr 
   1249       1.1       gwr 	/* init iorq and load iopb from it */
   1250       1.1       gwr 
   1251       1.1       gwr 	xyc_rqinit(iorq, xycsc, xysc, XY_SUB_NORM | XY_MODE_VERBO, block,
   1252       1.1       gwr 	    bp->b_bcount / XYFM_BPS, dbuf, bp);
   1253       1.1       gwr 
   1254       1.1       gwr 	xyc_rqtopb(iorq, iopb, (bp->b_flags & B_READ) ? XYCMD_RD : XYCMD_WR, 0);
   1255       1.1       gwr 
   1256       1.5     chuck 	/* Instrumentation. */
   1257       1.5     chuck 	disk_busy(&xysc->sc_dk);
   1258       1.5     chuck 
   1259       1.1       gwr 	return (XY_ERR_AOK);
   1260       1.1       gwr }
   1261       1.1       gwr 
   1262       1.1       gwr 
   1263       1.1       gwr /*
   1264       1.1       gwr  * xyc_submit_iorq: submit an iorq for processing.  returns XY_ERR_AOK
   1265       1.1       gwr  * if ok.  if it fail returns an error code.  type is XY_SUB_*.
   1266       1.1       gwr  *
   1267       1.1       gwr  * note: caller frees iorq in all cases except NORM
   1268       1.1       gwr  *
   1269       1.1       gwr  * return value:
   1270       1.1       gwr  *   NORM: XY_AOK (req pending), XY_FAIL (couldn't submit request)
   1271       1.1       gwr  *   WAIT: XY_AOK (success), <error-code> (failed)
   1272       1.1       gwr  *   POLL: <same as WAIT>
   1273       1.1       gwr  *   NOQ : <same as NORM>
   1274       1.1       gwr  *
   1275       1.1       gwr  * there are three sources for i/o requests:
   1276       1.1       gwr  * [1] xystrategy: normal block I/O, using "struct buf" system.
   1277       1.1       gwr  * [2] autoconfig/crash dump: these are polled I/O requests, no interrupts.
   1278       1.1       gwr  * [3] open/ioctl: these are I/O requests done in the context of a process,
   1279       1.1       gwr  *                 and the process should block until they are done.
   1280       1.1       gwr  *
   1281       1.1       gwr  * software state is stored in the iorq structure.  each iorq has an
   1282       1.1       gwr  * iopb structure.  the hardware understands the iopb structure.
   1283       1.1       gwr  * every command must go through an iopb.  a 450 handles one iopb at a
   1284       1.1       gwr  * time, where as a 451 can take them in chains.  [the 450 claims it
   1285       1.1       gwr  * can handle chains, but is appears to be buggy...]   iopb are allocated
   1286       1.1       gwr  * in DVMA space at boot up time.  each disk gets one iopb, and the
   1287      1.17       gwr  * controller gets one (for POLL and WAIT commands).  what happens if
   1288      1.17       gwr  * the iopb is busy?  for i/o type [1], the buffers are queued at the
   1289      1.17       gwr  * "buff" layer and * picked up later by the interrupt routine.  for case
   1290       1.1       gwr  * [2] we can only be blocked if there is a WAIT type I/O request being
   1291       1.1       gwr  * run.   since this can only happen when we are crashing, we wait a sec
   1292       1.1       gwr  * and then steal the IOPB.  for case [3] the process can sleep
   1293      1.48       wiz  * on the iorq free list until some iopbs are available.
   1294       1.1       gwr  */
   1295       1.1       gwr 
   1296      1.50       chs int
   1297      1.50       chs xyc_submit_iorq(struct xyc_softc *xycsc, struct xy_iorq *iorq, int type)
   1298       1.1       gwr {
   1299       1.1       gwr 	struct xy_iopb *iopb;
   1300       1.1       gwr 	u_long  iopbaddr;
   1301       1.1       gwr 
   1302       1.1       gwr #ifdef XYC_DEBUG
   1303      1.17       gwr 	printf("xyc_submit_iorq(%s, addr=0x%x, type=%d)\n",
   1304       1.1       gwr 		xycsc->sc_dev.dv_xname, iorq, type);
   1305       1.1       gwr #endif
   1306       1.1       gwr 
   1307       1.1       gwr 	/* first check and see if controller is busy */
   1308       1.1       gwr 	if ((xycsc->xyc->xyc_csr & XYC_GBSY) != 0) {
   1309       1.1       gwr #ifdef XYC_DEBUG
   1310      1.11  christos 		printf("xyc_submit_iorq: XYC not ready (BUSY)\n");
   1311       1.1       gwr #endif
   1312       1.1       gwr 		if (type == XY_SUB_NOQ)
   1313       1.1       gwr 			return (XY_ERR_FAIL);	/* failed */
   1314       1.1       gwr 		switch (type) {
   1315       1.1       gwr 		case XY_SUB_NORM:
   1316       1.1       gwr 			return XY_ERR_AOK;	/* success */
   1317       1.1       gwr 		case XY_SUB_WAIT:
   1318       1.1       gwr 			while (iorq->iopb->done == 0) {
   1319      1.30   thorpej 				(void) tsleep(iorq, PRIBIO, "xyciorq", 0);
   1320       1.1       gwr 			}
   1321       1.1       gwr 			return (iorq->errno);
   1322       1.1       gwr 		case XY_SUB_POLL:		/* steal controller */
   1323       1.1       gwr 			iopbaddr = xycsc->xyc->xyc_rsetup; /* RESET */
   1324       1.1       gwr 			if (xyc_unbusy(xycsc->xyc,XYC_RESETUSEC) == XY_ERR_FAIL)
   1325       1.1       gwr 				panic("xyc_submit_iorq: stuck xyc");
   1326      1.11  christos 			printf("%s: stole controller\n",
   1327       1.1       gwr 				xycsc->sc_dev.dv_xname);
   1328       1.1       gwr 			break;
   1329       1.1       gwr 		default:
   1330       1.1       gwr 			panic("xyc_submit_iorq adding");
   1331       1.1       gwr 		}
   1332       1.1       gwr 	}
   1333       1.1       gwr 
   1334       1.1       gwr 	iopb = xyc_chain(xycsc, iorq);	 /* build chain */
   1335       1.1       gwr 	if (iopb == NULL) { /* nothing doing? */
   1336      1.17       gwr 		if (type == XY_SUB_NORM || type == XY_SUB_NOQ)
   1337       1.1       gwr 			return(XY_ERR_AOK);
   1338      1.38    provos 		panic("xyc_submit_iorq: xyc_chain failed!");
   1339       1.1       gwr 	}
   1340      1.19       gwr 	iopbaddr = dvma_kvtopa(iopb, xycsc->bustype);
   1341      1.17       gwr 
   1342       1.1       gwr 	XYC_GO(xycsc->xyc, iopbaddr);
   1343       1.1       gwr 
   1344       1.1       gwr 	/* command now running, wrap it up */
   1345       1.1       gwr 	switch (type) {
   1346       1.1       gwr 	case XY_SUB_NORM:
   1347       1.1       gwr 	case XY_SUB_NOQ:
   1348       1.1       gwr 		return (XY_ERR_AOK);	/* success */
   1349       1.1       gwr 	case XY_SUB_WAIT:
   1350       1.1       gwr 		while (iorq->iopb->done == 0) {
   1351      1.30   thorpej 			(void) tsleep(iorq, PRIBIO, "xyciorq", 0);
   1352       1.1       gwr 		}
   1353       1.1       gwr 		return (iorq->errno);
   1354       1.1       gwr 	case XY_SUB_POLL:
   1355       1.1       gwr 		return (xyc_piodriver(xycsc, iorq));
   1356       1.1       gwr 	default:
   1357       1.1       gwr 		panic("xyc_submit_iorq wrap up");
   1358       1.1       gwr 	}
   1359       1.1       gwr 	panic("xyc_submit_iorq");
   1360       1.1       gwr 	return 0;	/* not reached */
   1361       1.1       gwr }
   1362       1.1       gwr 
   1363       1.1       gwr 
   1364       1.1       gwr /*
   1365       1.1       gwr  * xyc_chain: build a chain.  return dvma address of first element in
   1366       1.1       gwr  * the chain.   iorq != NULL: means we only want that item on the chain.
   1367       1.1       gwr  */
   1368       1.1       gwr 
   1369       1.1       gwr struct xy_iopb *
   1370      1.50       chs xyc_chain(struct xyc_softc *xycsc, struct xy_iorq *iorq)
   1371       1.1       gwr {
   1372      1.17       gwr 	int togo, chain, hand;
   1373      1.17       gwr 	struct xy_iopb *iopb, *prev_iopb;
   1374      1.50       chs 
   1375      1.35   tsutsui 	memset(xycsc->xy_chain, 0, sizeof(xycsc->xy_chain));
   1376      1.17       gwr 
   1377      1.17       gwr 	/*
   1378      1.17       gwr 	 * promote control IOPB to the top
   1379      1.17       gwr 	 */
   1380      1.17       gwr 	if (iorq == NULL) {
   1381      1.17       gwr 		if ((XY_STATE(xycsc->reqs[XYC_CTLIOPB].mode) == XY_SUB_POLL ||
   1382      1.17       gwr 			 XY_STATE(xycsc->reqs[XYC_CTLIOPB].mode) == XY_SUB_WAIT) &&
   1383      1.17       gwr 			xycsc->iopbase[XYC_CTLIOPB].done == 0)
   1384      1.17       gwr 		  iorq = &xycsc->reqs[XYC_CTLIOPB];
   1385      1.17       gwr 	}
   1386      1.50       chs 
   1387      1.17       gwr 	/*
   1388      1.17       gwr 	 * special case: if iorq != NULL then we have a POLL or WAIT request.
   1389      1.17       gwr 	 * we let these take priority and do them first.
   1390      1.17       gwr 	 */
   1391      1.17       gwr 	if (iorq) {
   1392      1.17       gwr 		xycsc->xy_chain[0] = iorq;
   1393      1.17       gwr 		iorq->iopb->chen = 0;
   1394      1.17       gwr 		return(iorq->iopb);
   1395      1.17       gwr 	}
   1396      1.17       gwr 
   1397      1.17       gwr 	/*
   1398      1.17       gwr 	 * NORM case: do round robin and maybe chain (if allowed and possible)
   1399      1.17       gwr 	 */
   1400      1.17       gwr 
   1401      1.17       gwr 	chain = 0;
   1402      1.17       gwr 	hand = xycsc->xy_hand;
   1403      1.17       gwr 	xycsc->xy_hand = (xycsc->xy_hand + 1) % XYC_MAXIOPB;
   1404      1.17       gwr 
   1405      1.17       gwr 	for (togo = XYC_MAXIOPB ;
   1406      1.17       gwr 		 togo > 0 ;
   1407      1.17       gwr 		 togo--, hand = (hand + 1) % XYC_MAXIOPB)
   1408      1.17       gwr 	{
   1409      1.17       gwr 
   1410      1.17       gwr 		if (XY_STATE(xycsc->reqs[hand].mode) != XY_SUB_NORM ||
   1411      1.17       gwr 			xycsc->iopbase[hand].done)
   1412      1.17       gwr 			continue;   /* not ready-for-i/o */
   1413      1.17       gwr 
   1414      1.17       gwr 		xycsc->xy_chain[chain] = &xycsc->reqs[hand];
   1415      1.17       gwr 		iopb = xycsc->xy_chain[chain]->iopb;
   1416      1.17       gwr 		iopb->chen = 0;
   1417      1.17       gwr 		if (chain != 0) {   /* adding a link to a chain? */
   1418      1.17       gwr 			prev_iopb = xycsc->xy_chain[chain-1]->iopb;
   1419      1.17       gwr 			prev_iopb->chen = 1;
   1420      1.17       gwr 			prev_iopb->nxtiopb = 0xffff &
   1421      1.19       gwr 			  dvma_kvtopa(iopb, xycsc->bustype);
   1422      1.17       gwr 		} else {            /* head of chain */
   1423      1.17       gwr 			iorq = xycsc->xy_chain[chain];
   1424      1.17       gwr 		}
   1425      1.17       gwr 		chain++;
   1426      1.17       gwr 		if (xycsc->no_ols) break;   /* quit if chaining dis-allowed */
   1427      1.17       gwr 	}
   1428      1.17       gwr 	return(iorq ? iorq->iopb : NULL);
   1429       1.1       gwr }
   1430       1.1       gwr 
   1431       1.1       gwr /*
   1432       1.1       gwr  * xyc_piodriver
   1433       1.1       gwr  *
   1434       1.1       gwr  * programmed i/o driver.   this function takes over the computer
   1435       1.1       gwr  * and drains off the polled i/o request.   it returns the status of the iorq
   1436      1.17       gwr  * the caller is interesting in.
   1437       1.1       gwr  */
   1438      1.50       chs int
   1439      1.50       chs xyc_piodriver(struct xyc_softc *xycsc, struct xy_iorq *iorq)
   1440       1.1       gwr {
   1441       1.1       gwr 	int     nreset = 0;
   1442       1.1       gwr 	int     retval = 0;
   1443       1.1       gwr 	u_long  res;
   1444      1.17       gwr 
   1445       1.1       gwr #ifdef XYC_DEBUG
   1446      1.11  christos 	printf("xyc_piodriver(%s, 0x%x)\n", xycsc->sc_dev.dv_xname, iorq);
   1447       1.1       gwr #endif
   1448       1.1       gwr 
   1449       1.1       gwr 	while (iorq->iopb->done == 0) {
   1450       1.1       gwr 
   1451       1.1       gwr 		res = xyc_unbusy(xycsc->xyc, XYC_MAXTIME);
   1452       1.1       gwr 
   1453       1.1       gwr 		/* we expect some progress soon */
   1454       1.1       gwr 		if (res == XY_ERR_FAIL && nreset >= 2) {
   1455       1.1       gwr 			xyc_reset(xycsc, 0, XY_RSET_ALL, XY_ERR_FAIL, 0);
   1456       1.1       gwr #ifdef XYC_DEBUG
   1457      1.11  christos 			printf("xyc_piodriver: timeout\n");
   1458       1.1       gwr #endif
   1459       1.1       gwr 			return (XY_ERR_FAIL);
   1460       1.1       gwr 		}
   1461       1.1       gwr 		if (res == XY_ERR_FAIL) {
   1462       1.1       gwr 			if (xyc_reset(xycsc, 0,
   1463       1.1       gwr 				      (nreset++ == 0) ? XY_RSET_NONE : iorq,
   1464       1.1       gwr 				      XY_ERR_FAIL,
   1465       1.1       gwr 				      0) == XY_ERR_FAIL)
   1466       1.1       gwr 				return (XY_ERR_FAIL);	/* flushes all but POLL
   1467       1.1       gwr 							 * requests, resets */
   1468       1.1       gwr 			continue;
   1469       1.1       gwr 		}
   1470       1.1       gwr 
   1471       1.1       gwr 		xyc_remove_iorq(xycsc);	 /* may resubmit request */
   1472       1.1       gwr 
   1473       1.1       gwr 		if (iorq->iopb->done == 0)
   1474       1.1       gwr 			xyc_start(xycsc, iorq);
   1475       1.1       gwr 	}
   1476       1.1       gwr 
   1477       1.1       gwr 	/* get return value */
   1478       1.1       gwr 
   1479       1.1       gwr 	retval = iorq->errno;
   1480       1.1       gwr 
   1481       1.1       gwr #ifdef XYC_DEBUG
   1482      1.11  christos 	printf("xyc_piodriver: done, retval = 0x%x (%s)\n",
   1483       1.1       gwr 	    iorq->errno, xyc_e2str(iorq->errno));
   1484       1.1       gwr #endif
   1485       1.1       gwr 
   1486       1.1       gwr 	/* start up any bufs that have queued */
   1487       1.1       gwr 
   1488      1.17       gwr 	xyc_start(xycsc, NULL);
   1489       1.1       gwr 
   1490       1.1       gwr 	return (retval);
   1491       1.1       gwr }
   1492       1.1       gwr 
   1493       1.1       gwr /*
   1494       1.1       gwr  * xyc_xyreset: reset one drive.   NOTE: assumes xyc was just reset.
   1495       1.1       gwr  * we steal iopb[XYC_CTLIOPB] for this, but we put it back when we are done.
   1496       1.1       gwr  */
   1497      1.50       chs void
   1498      1.50       chs xyc_xyreset(struct xyc_softc *xycsc, struct xy_softc *xysc)
   1499       1.1       gwr {
   1500       1.1       gwr 	struct xy_iopb tmpiopb;
   1501       1.1       gwr 	u_long  addr;
   1502       1.1       gwr 	int     del;
   1503      1.35   tsutsui 	memcpy(&tmpiopb, xycsc->ciopb, sizeof(tmpiopb));
   1504       1.1       gwr 	xycsc->ciopb->chen = xycsc->ciopb->done = xycsc->ciopb->errs = 0;
   1505       1.1       gwr 	xycsc->ciopb->ien = 0;
   1506       1.1       gwr 	xycsc->ciopb->com = XYCMD_RST;
   1507       1.1       gwr 	xycsc->ciopb->unit = xysc->xy_drive;
   1508      1.19       gwr 	addr = dvma_kvtopa(xycsc->ciopb, xycsc->bustype);
   1509       1.1       gwr 
   1510       1.1       gwr 	XYC_GO(xycsc->xyc, addr);
   1511       1.1       gwr 
   1512       1.1       gwr 	del = XYC_RESETUSEC;
   1513       1.1       gwr 	while (del > 0) {
   1514       1.1       gwr 		if ((xycsc->xyc->xyc_csr & XYC_GBSY) == 0) break;
   1515       1.1       gwr 		DELAY(1);
   1516       1.1       gwr 		del--;
   1517       1.1       gwr 	}
   1518       1.1       gwr 
   1519       1.1       gwr 	if (del <= 0 || xycsc->ciopb->errs) {
   1520      1.11  christos 		printf("%s: off-line: %s\n", xycsc->sc_dev.dv_xname,
   1521       1.1       gwr 		    xyc_e2str(xycsc->ciopb->errno));
   1522       1.1       gwr 		del = xycsc->xyc->xyc_rsetup;
   1523       1.1       gwr 		if (xyc_unbusy(xycsc->xyc, XYC_RESETUSEC) == XY_ERR_FAIL)
   1524       1.1       gwr 			panic("xyc_reset");
   1525       1.1       gwr 	} else {
   1526       1.7     chuck 		xycsc->xyc->xyc_csr = XYC_IPND;	/* clear IPND */
   1527       1.1       gwr 	}
   1528      1.35   tsutsui 	memcpy(xycsc->ciopb, &tmpiopb, sizeof(tmpiopb));
   1529       1.1       gwr }
   1530       1.1       gwr 
   1531       1.1       gwr 
   1532       1.1       gwr /*
   1533       1.1       gwr  * xyc_reset: reset everything: requests are marked as errors except
   1534       1.1       gwr  * a polled request (which is resubmitted)
   1535       1.1       gwr  */
   1536      1.50       chs int
   1537      1.50       chs xyc_reset(struct xyc_softc *xycsc, int quiet, struct xy_iorq *blastmode,
   1538      1.50       chs     int error, struct xy_softc *xysc)
   1539       1.1       gwr {
   1540      1.17       gwr 	int     del = 0, lcv, retval = XY_ERR_AOK;
   1541       1.1       gwr 	struct xy_iorq *iorq;
   1542       1.1       gwr 
   1543       1.1       gwr 	/* soft reset hardware */
   1544       1.1       gwr 
   1545       1.1       gwr 	if (!quiet)
   1546      1.11  christos 		printf("%s: soft reset\n", xycsc->sc_dev.dv_xname);
   1547       1.1       gwr 	del = xycsc->xyc->xyc_rsetup;
   1548       1.1       gwr 	del = xyc_unbusy(xycsc->xyc, XYC_RESETUSEC);
   1549       1.1       gwr 	if (del == XY_ERR_FAIL) {
   1550       1.1       gwr 		blastmode = XY_RSET_ALL;	/* dead, flush all requests */
   1551       1.1       gwr 		retval = XY_ERR_FAIL;
   1552       1.1       gwr 	}
   1553       1.1       gwr 	if (xysc)
   1554       1.1       gwr 		xyc_xyreset(xycsc, xysc);
   1555       1.1       gwr 
   1556       1.1       gwr 	/* fix queues based on "blast-mode" */
   1557       1.1       gwr 
   1558       1.1       gwr 	for (lcv = 0; lcv < XYC_MAXIOPB; lcv++) {
   1559       1.1       gwr 		iorq = &xycsc->reqs[lcv];
   1560       1.1       gwr 
   1561       1.1       gwr 		if (XY_STATE(iorq->mode) != XY_SUB_POLL &&
   1562       1.1       gwr 		    XY_STATE(iorq->mode) != XY_SUB_WAIT &&
   1563       1.1       gwr 		    XY_STATE(iorq->mode) != XY_SUB_NORM)
   1564       1.1       gwr 			/* is it active? */
   1565       1.1       gwr 			continue;
   1566       1.1       gwr 
   1567      1.17       gwr 		if (blastmode == XY_RSET_ALL ||
   1568       1.1       gwr 				blastmode != iorq) {
   1569       1.1       gwr 			/* failed */
   1570       1.1       gwr 			iorq->errno = error;
   1571       1.1       gwr 			xycsc->iopbase[lcv].done = xycsc->iopbase[lcv].errs = 1;
   1572       1.1       gwr 			switch (XY_STATE(iorq->mode)) {
   1573       1.1       gwr 			case XY_SUB_NORM:
   1574       1.1       gwr 			    iorq->buf->b_error = EIO;
   1575       1.1       gwr 			    iorq->buf->b_flags |= B_ERROR;
   1576       1.1       gwr 			    iorq->buf->b_resid =
   1577       1.1       gwr 			       iorq->sectcnt * XYFM_BPS;
   1578       1.1       gwr 				/* Sun3: map/unmap regardless of B_PHYS */
   1579       1.1       gwr 				dvma_mapout(iorq->dbufbase,
   1580       1.1       gwr 				            iorq->buf->b_bcount);
   1581      1.52      yamt 			    (void)BUFQ_GET(iorq->xy->xyq);
   1582       1.2   thorpej 			    disk_unbusy(&iorq->xy->sc_dk,
   1583      1.43       mrg 				(iorq->buf->b_bcount - iorq->buf->b_resid),
   1584      1.43       mrg 				(iorq->buf->b_flags & B_READ));
   1585       1.1       gwr 			    biodone(iorq->buf);
   1586       1.1       gwr 			    iorq->mode = XY_SUB_FREE;
   1587       1.1       gwr 			    break;
   1588       1.1       gwr 			case XY_SUB_WAIT:
   1589       1.1       gwr 			    wakeup(iorq);
   1590       1.1       gwr 			case XY_SUB_POLL:
   1591       1.1       gwr 			    iorq->mode =
   1592       1.1       gwr 				XY_NEWSTATE(iorq->mode, XY_SUB_DONE);
   1593       1.1       gwr 			    break;
   1594       1.1       gwr 			}
   1595       1.1       gwr 
   1596       1.1       gwr 		} else {
   1597       1.1       gwr 
   1598       1.1       gwr 			/* resubmit, no need to do anything here */
   1599       1.1       gwr 		}
   1600       1.1       gwr 	}
   1601       1.1       gwr 
   1602       1.1       gwr 	/*
   1603       1.1       gwr 	 * now, if stuff is waiting, start it.
   1604       1.1       gwr 	 * since we just reset it should go
   1605       1.1       gwr 	 */
   1606       1.1       gwr 	xyc_start(xycsc, NULL);
   1607       1.1       gwr 
   1608       1.1       gwr 	return (retval);
   1609       1.1       gwr }
   1610       1.1       gwr 
   1611       1.1       gwr /*
   1612       1.1       gwr  * xyc_start: start waiting buffers
   1613       1.1       gwr  */
   1614       1.1       gwr 
   1615      1.50       chs void
   1616      1.50       chs xyc_start(struct xyc_softc *xycsc, struct xy_iorq *iorq)
   1617       1.1       gwr {
   1618       1.1       gwr 	int lcv;
   1619       1.1       gwr 	struct xy_softc *xy;
   1620       1.1       gwr 
   1621       1.1       gwr 	if (iorq == NULL) {
   1622       1.1       gwr 		for (lcv = 0; lcv < XYC_MAXDEV ; lcv++) {
   1623       1.1       gwr 			if ((xy = xycsc->sc_drives[lcv]) == NULL) continue;
   1624      1.52      yamt 			if (BUFQ_PEEK(xy->xyq) == NULL) continue;
   1625       1.1       gwr 			if (xy->xyrq->mode != XY_SUB_FREE) continue;
   1626      1.52      yamt 			xyc_startbuf(xycsc, xy, BUFQ_PEEK(xy->xyq));
   1627       1.1       gwr 		}
   1628       1.1       gwr 	}
   1629       1.1       gwr 	xyc_submit_iorq(xycsc, iorq, XY_SUB_NOQ);
   1630       1.1       gwr }
   1631       1.1       gwr 
   1632       1.1       gwr /*
   1633      1.17       gwr  * xyc_remove_iorq: remove "done" IOPB's.
   1634       1.1       gwr  */
   1635       1.1       gwr 
   1636      1.50       chs int
   1637      1.50       chs xyc_remove_iorq(struct xyc_softc *xycsc)
   1638       1.1       gwr {
   1639       1.1       gwr 	int     errno, rq, comm, errs;
   1640       1.1       gwr 	struct xyc *xyc = xycsc->xyc;
   1641       1.1       gwr 	u_long  addr;
   1642       1.1       gwr 	struct xy_iopb *iopb;
   1643       1.1       gwr 	struct xy_iorq *iorq;
   1644       1.1       gwr 	struct buf *bp;
   1645       1.1       gwr 
   1646       1.1       gwr 	if (xyc->xyc_csr & XYC_DERR) {
   1647       1.1       gwr 		/*
   1648       1.1       gwr 		 * DOUBLE ERROR: should never happen under normal use. This
   1649       1.1       gwr 		 * error is so bad, you can't even tell which IOPB is bad, so
   1650       1.1       gwr 		 * we dump them all.
   1651       1.1       gwr 		 */
   1652       1.1       gwr 		errno = XY_ERR_DERR;
   1653      1.11  christos 		printf("%s: DOUBLE ERROR!\n", xycsc->sc_dev.dv_xname);
   1654       1.1       gwr 		if (xyc_reset(xycsc, 0, XY_RSET_ALL, errno, 0) != XY_ERR_AOK) {
   1655      1.11  christos 			printf("%s: soft reset failed!\n",
   1656       1.1       gwr 				xycsc->sc_dev.dv_xname);
   1657       1.1       gwr 			panic("xyc_remove_iorq: controller DEAD");
   1658       1.1       gwr 		}
   1659       1.1       gwr 		return (XY_ERR_AOK);
   1660       1.1       gwr 	}
   1661       1.1       gwr 
   1662       1.1       gwr 	/*
   1663       1.1       gwr 	 * get iopb that is done, loop down the chain
   1664       1.1       gwr 	 */
   1665       1.1       gwr 
   1666       1.1       gwr 	if (xyc->xyc_csr & XYC_ERR) {
   1667       1.7     chuck 		xyc->xyc_csr = XYC_ERR; /* clear error condition */
   1668       1.1       gwr 	}
   1669       1.1       gwr 	if (xyc->xyc_csr & XYC_IPND) {
   1670       1.7     chuck 		xyc->xyc_csr = XYC_IPND; /* clear interrupt */
   1671       1.1       gwr 	}
   1672       1.1       gwr 
   1673       1.1       gwr 	for (rq = 0; rq < XYC_MAXIOPB; rq++) {
   1674       1.1       gwr 		iorq = xycsc->xy_chain[rq];
   1675       1.1       gwr 		if (iorq == NULL) break; /* done ! */
   1676       1.1       gwr 		if (iorq->mode == 0 || XY_STATE(iorq->mode) == XY_SUB_DONE)
   1677       1.1       gwr 			continue;	/* free, or done */
   1678       1.1       gwr 		iopb = iorq->iopb;
   1679       1.1       gwr 		if (iopb->done == 0)
   1680       1.1       gwr 			continue;	/* not done yet */
   1681       1.1       gwr 
   1682       1.1       gwr 		comm = iopb->com;
   1683       1.1       gwr 		errs = iopb->errs;
   1684       1.1       gwr 
   1685       1.1       gwr 		if (errs)
   1686       1.1       gwr 			iorq->errno = iopb->errno;
   1687       1.1       gwr 		else
   1688       1.1       gwr 			iorq->errno = 0;
   1689       1.1       gwr 
   1690       1.1       gwr 		/* handle non-fatal errors */
   1691       1.1       gwr 
   1692       1.1       gwr 		if (errs &&
   1693       1.1       gwr 		    xyc_error(xycsc, iorq, iopb, comm) == XY_ERR_AOK)
   1694       1.1       gwr 			continue;	/* AOK: we resubmitted it */
   1695       1.1       gwr 
   1696       1.1       gwr 
   1697       1.1       gwr 		/* this iorq is now done (hasn't been restarted or anything) */
   1698       1.1       gwr 
   1699       1.1       gwr 		if ((iorq->mode & XY_MODE_VERBO) && iorq->lasterror)
   1700       1.1       gwr 			xyc_perror(iorq, iopb, 0);
   1701       1.1       gwr 
   1702       1.1       gwr 		/* now, if read/write check to make sure we got all the data
   1703       1.1       gwr 		 * we needed. (this may not be the case if we got an error in
   1704       1.1       gwr 		 * the middle of a multisector request).   */
   1705       1.1       gwr 
   1706       1.1       gwr 		if ((iorq->mode & XY_MODE_B144) != 0 && errs == 0 &&
   1707       1.1       gwr 		    (comm == XYCMD_RD || comm == XYCMD_WR)) {
   1708       1.1       gwr 			/* we just successfully processed a bad144 sector
   1709       1.1       gwr 			 * note: if we are in bad 144 mode, the pointers have
   1710       1.1       gwr 			 * been advanced already (see above) and are pointing
   1711       1.1       gwr 			 * at the bad144 sector.   to exit bad144 mode, we
   1712       1.1       gwr 			 * must advance the pointers 1 sector and issue a new
   1713       1.1       gwr 			 * request if there are still sectors left to process
   1714      1.17       gwr 			 *
   1715       1.1       gwr 			 */
   1716       1.1       gwr 			XYC_ADVANCE(iorq, 1);	/* advance 1 sector */
   1717       1.1       gwr 
   1718       1.1       gwr 			/* exit b144 mode */
   1719       1.1       gwr 			iorq->mode = iorq->mode & (~XY_MODE_B144);
   1720       1.1       gwr 
   1721       1.1       gwr 			if (iorq->sectcnt) {	/* more to go! */
   1722       1.1       gwr 				iorq->lasterror = iorq->errno = iopb->errno = 0;
   1723       1.1       gwr 				iopb->errs = iopb->done = 0;
   1724       1.1       gwr 				iorq->tries = 0;
   1725       1.1       gwr 				iopb->scnt = iorq->sectcnt;
   1726       1.1       gwr 				iopb->cyl = iorq->blockno /
   1727       1.1       gwr 						iorq->xy->sectpercyl;
   1728       1.1       gwr 				iopb->head =
   1729       1.1       gwr 					(iorq->blockno / iorq->xy->nhead) %
   1730       1.1       gwr 						iorq->xy->nhead;
   1731       1.1       gwr 				iopb->sect = iorq->blockno % XYFM_BPS;
   1732      1.19       gwr 				addr = dvma_kvtopa(iorq->dbuf, xycsc->bustype);
   1733       1.1       gwr 				iopb->dataa = (addr & 0xffff);
   1734       1.1       gwr 				iopb->datar = ((addr & 0xff0000) >> 16);
   1735       1.1       gwr 				/* will resubit at end */
   1736       1.1       gwr 				continue;
   1737       1.1       gwr 			}
   1738       1.1       gwr 		}
   1739       1.1       gwr 		/* final cleanup, totally done with this request */
   1740       1.1       gwr 
   1741       1.1       gwr 		switch (XY_STATE(iorq->mode)) {
   1742       1.1       gwr 		case XY_SUB_NORM:
   1743       1.1       gwr 			bp = iorq->buf;
   1744       1.1       gwr 			if (errs) {
   1745       1.1       gwr 				bp->b_error = EIO;
   1746       1.1       gwr 				bp->b_flags |= B_ERROR;
   1747       1.1       gwr 				bp->b_resid = iorq->sectcnt * XYFM_BPS;
   1748       1.1       gwr 			} else {
   1749       1.1       gwr 				bp->b_resid = 0;	/* done */
   1750       1.1       gwr 			}
   1751       1.1       gwr 			/* Sun3: map/unmap regardless of B_PHYS */
   1752       1.1       gwr 			dvma_mapout(iorq->dbufbase,
   1753       1.1       gwr 					    iorq->buf->b_bcount);
   1754      1.52      yamt 			(void)BUFQ_GET(iorq->xy->xyq);
   1755       1.2   thorpej 			disk_unbusy(&iorq->xy->sc_dk,
   1756      1.43       mrg 			    (bp->b_bcount - bp->b_resid),
   1757      1.43       mrg 			    (bp->b_flags & B_READ));
   1758      1.17       gwr 			iorq->mode = XY_SUB_FREE;
   1759       1.1       gwr 			biodone(bp);
   1760       1.1       gwr 			break;
   1761       1.1       gwr 		case XY_SUB_WAIT:
   1762       1.1       gwr 			iorq->mode = XY_NEWSTATE(iorq->mode, XY_SUB_DONE);
   1763       1.1       gwr 			wakeup(iorq);
   1764       1.1       gwr 			break;
   1765       1.1       gwr 		case XY_SUB_POLL:
   1766       1.1       gwr 			iorq->mode = XY_NEWSTATE(iorq->mode, XY_SUB_DONE);
   1767       1.1       gwr 			break;
   1768       1.1       gwr 		}
   1769       1.1       gwr 	}
   1770       1.1       gwr 
   1771       1.1       gwr 	return (XY_ERR_AOK);
   1772       1.1       gwr }
   1773       1.1       gwr 
   1774       1.1       gwr /*
   1775       1.1       gwr  * xyc_perror: print error.
   1776       1.1       gwr  * - if still_trying is true: we got an error, retried and got a
   1777       1.1       gwr  *   different error.  in that case lasterror is the old error,
   1778       1.1       gwr  *   and errno is the new one.
   1779       1.1       gwr  * - if still_trying is not true, then if we ever had an error it
   1780       1.1       gwr  *   is in lasterror. also, if iorq->errno == 0, then we recovered
   1781       1.1       gwr  *   from that error (otherwise iorq->errno == iorq->lasterror).
   1782       1.1       gwr  */
   1783      1.50       chs void
   1784      1.50       chs xyc_perror(struct xy_iorq *iorq, struct xy_iopb *iopb, int still_trying)
   1785       1.1       gwr {
   1786       1.1       gwr 
   1787       1.1       gwr 	int     error = iorq->lasterror;
   1788       1.1       gwr 
   1789      1.11  christos 	printf("%s", (iorq->xy) ? iorq->xy->sc_dev.dv_xname
   1790       1.1       gwr 	    : iorq->xyc->sc_dev.dv_xname);
   1791       1.1       gwr 	if (iorq->buf)
   1792      1.11  christos 		printf("%c: ", 'a' + DISKPART(iorq->buf->b_dev));
   1793       1.1       gwr 	if (iopb->com == XYCMD_RD || iopb->com == XYCMD_WR)
   1794      1.11  christos 		printf("%s %d/%d/%d: ",
   1795       1.1       gwr 			(iopb->com == XYCMD_RD) ? "read" : "write",
   1796       1.1       gwr 			iopb->cyl, iopb->head, iopb->sect);
   1797      1.11  christos 	printf("%s", xyc_e2str(error));
   1798       1.1       gwr 
   1799       1.1       gwr 	if (still_trying)
   1800      1.11  christos 		printf(" [still trying, new error=%s]", xyc_e2str(iorq->errno));
   1801       1.1       gwr 	else
   1802       1.1       gwr 		if (iorq->errno == 0)
   1803      1.11  christos 			printf(" [recovered in %d tries]", iorq->tries);
   1804       1.1       gwr 
   1805      1.11  christos 	printf("\n");
   1806       1.1       gwr }
   1807       1.1       gwr 
   1808       1.1       gwr /*
   1809       1.1       gwr  * xyc_error: non-fatal error encountered... recover.
   1810       1.1       gwr  * return AOK if resubmitted, return FAIL if this iopb is done
   1811       1.1       gwr  */
   1812      1.50       chs int
   1813      1.50       chs xyc_error(struct xyc_softc *xycsc, struct xy_iorq *iorq, struct xy_iopb *iopb,
   1814      1.50       chs     int comm)
   1815       1.1       gwr {
   1816       1.1       gwr 	int     errno = iorq->errno;
   1817       1.1       gwr 	int     erract = xyc_entoact(errno);
   1818       1.1       gwr 	int     oldmode, advance, i;
   1819       1.1       gwr 
   1820       1.1       gwr 	if (erract == XY_ERA_RSET) {	/* some errors require a reset */
   1821       1.1       gwr 		oldmode = iorq->mode;
   1822       1.1       gwr 		iorq->mode = XY_SUB_DONE | (~XY_SUB_MASK & oldmode);
   1823       1.1       gwr 		/* make xyc_start ignore us */
   1824       1.1       gwr 		xyc_reset(xycsc, 1, XY_RSET_NONE, errno, iorq->xy);
   1825       1.1       gwr 		iorq->mode = oldmode;
   1826       1.1       gwr 	}
   1827       1.1       gwr 	/* check for read/write to a sector in bad144 table if bad: redirect
   1828       1.1       gwr 	 * request to bad144 area */
   1829       1.1       gwr 
   1830       1.1       gwr 	if ((comm == XYCMD_RD || comm == XYCMD_WR) &&
   1831       1.1       gwr 	    (iorq->mode & XY_MODE_B144) == 0) {
   1832       1.1       gwr 		advance = iorq->sectcnt - iopb->scnt;
   1833       1.1       gwr 		XYC_ADVANCE(iorq, advance);
   1834       1.1       gwr 		if ((i = isbad(&iorq->xy->dkb, iorq->blockno / iorq->xy->sectpercyl,
   1835       1.1       gwr 			    (iorq->blockno / iorq->xy->nsect) % iorq->xy->nhead,
   1836       1.1       gwr 			    iorq->blockno % iorq->xy->nsect)) != -1) {
   1837       1.1       gwr 			iorq->mode |= XY_MODE_B144;	/* enter bad144 mode &
   1838       1.1       gwr 							 * redirect */
   1839       1.1       gwr 			iopb->errno = iopb->done = iopb->errs = 0;
   1840       1.1       gwr 			iopb->scnt = 1;
   1841       1.1       gwr 			iopb->cyl = (iorq->xy->ncyl + iorq->xy->acyl) - 2;
   1842       1.1       gwr 			/* second to last acyl */
   1843       1.1       gwr 			i = iorq->xy->sectpercyl - 1 - i;	/* follow bad144
   1844       1.1       gwr 								 * standard */
   1845       1.1       gwr 			iopb->head = i / iorq->xy->nhead;
   1846       1.1       gwr 			iopb->sect = i % iorq->xy->nhead;
   1847       1.1       gwr 			/* will resubmit when we come out of remove_iorq */
   1848       1.1       gwr 			return (XY_ERR_AOK);	/* recovered! */
   1849       1.1       gwr 		}
   1850       1.1       gwr 	}
   1851       1.1       gwr 
   1852       1.1       gwr 	/*
   1853       1.1       gwr 	 * it isn't a bad144 sector, must be real error! see if we can retry
   1854       1.1       gwr 	 * it?
   1855       1.1       gwr 	 */
   1856       1.1       gwr 	if ((iorq->mode & XY_MODE_VERBO) && iorq->lasterror)
   1857       1.1       gwr 		xyc_perror(iorq, iopb, 1);	/* inform of error state
   1858       1.1       gwr 						 * change */
   1859       1.1       gwr 	iorq->lasterror = errno;
   1860       1.1       gwr 
   1861       1.1       gwr 	if ((erract == XY_ERA_RSET || erract == XY_ERA_HARD)
   1862       1.1       gwr 	    && iorq->tries < XYC_MAXTRIES) {	/* retry? */
   1863       1.1       gwr 		iorq->tries++;
   1864       1.1       gwr 		iorq->errno = iopb->errno = iopb->done = iopb->errs = 0;
   1865       1.1       gwr 		/* will resubmit at end of remove_iorq */
   1866       1.1       gwr 		return (XY_ERR_AOK);	/* recovered! */
   1867       1.1       gwr 	}
   1868       1.1       gwr 
   1869       1.1       gwr 	/* failed to recover from this error */
   1870       1.1       gwr 	return (XY_ERR_FAIL);
   1871       1.1       gwr }
   1872       1.1       gwr 
   1873       1.1       gwr /*
   1874       1.1       gwr  * xyc_tick: make sure xy is still alive and ticking (err, kicking).
   1875       1.1       gwr  */
   1876      1.50       chs void
   1877      1.50       chs xyc_tick(void *arg)
   1878       1.1       gwr {
   1879       1.1       gwr 	struct xyc_softc *xycsc = arg;
   1880       1.1       gwr 	int     lcv, s, reset = 0;
   1881       1.1       gwr 
   1882       1.1       gwr 	/* reduce ttl for each request if one goes to zero, reset xyc */
   1883       1.1       gwr 	s = splbio();
   1884       1.1       gwr 	for (lcv = 0; lcv < XYC_MAXIOPB; lcv++) {
   1885       1.1       gwr 		if (xycsc->reqs[lcv].mode == 0 ||
   1886       1.1       gwr 		    XY_STATE(xycsc->reqs[lcv].mode) == XY_SUB_DONE)
   1887       1.1       gwr 			continue;
   1888       1.1       gwr 		xycsc->reqs[lcv].ttl--;
   1889       1.1       gwr 		if (xycsc->reqs[lcv].ttl == 0)
   1890       1.1       gwr 			reset = 1;
   1891       1.1       gwr 	}
   1892       1.1       gwr 	if (reset) {
   1893      1.11  christos 		printf("%s: watchdog timeout\n", xycsc->sc_dev.dv_xname);
   1894       1.1       gwr 		xyc_reset(xycsc, 0, XY_RSET_NONE, XY_ERR_FAIL, NULL);
   1895       1.1       gwr 	}
   1896       1.1       gwr 	splx(s);
   1897       1.1       gwr 
   1898       1.1       gwr 	/* until next time */
   1899       1.1       gwr 
   1900      1.27   tsutsui 	callout_reset(&xycsc->sc_tick_ch, XYC_TICKCNT, xyc_tick, xycsc);
   1901       1.1       gwr }
   1902       1.1       gwr 
   1903       1.1       gwr /*
   1904       1.1       gwr  * xyc_ioctlcmd: this function provides a user level interface to the
   1905       1.1       gwr  * controller via ioctl.   this allows "format" programs to be written
   1906       1.1       gwr  * in user code, and is also useful for some debugging.   we return
   1907       1.1       gwr  * an error code.   called at user priority.
   1908       1.1       gwr  *
   1909       1.1       gwr  * XXX missing a few commands (see the 7053 driver for ideas)
   1910       1.1       gwr  */
   1911      1.50       chs int
   1912      1.50       chs xyc_ioctlcmd(struct xy_softc *xy, dev_t dev, struct xd_iocmd *xio)
   1913       1.1       gwr {
   1914      1.17       gwr 	int     s, err, rqno;
   1915      1.17       gwr 	void * dvmabuf = NULL;
   1916       1.1       gwr 	struct xyc_softc *xycsc;
   1917       1.1       gwr 
   1918       1.1       gwr 	/* check sanity of requested command */
   1919       1.1       gwr 
   1920       1.1       gwr 	switch (xio->cmd) {
   1921       1.1       gwr 
   1922       1.1       gwr 	case XYCMD_NOP:	/* no op: everything should be zero */
   1923       1.1       gwr 		if (xio->subfn || xio->dptr || xio->dlen ||
   1924       1.1       gwr 		    xio->block || xio->sectcnt)
   1925       1.1       gwr 			return (EINVAL);
   1926       1.1       gwr 		break;
   1927       1.1       gwr 
   1928       1.1       gwr 	case XYCMD_RD:		/* read / write sectors (up to XD_IOCMD_MAXS) */
   1929       1.1       gwr 	case XYCMD_WR:
   1930       1.1       gwr 		if (xio->subfn || xio->sectcnt > XD_IOCMD_MAXS ||
   1931       1.1       gwr 		    xio->sectcnt * XYFM_BPS != xio->dlen || xio->dptr == NULL)
   1932       1.1       gwr 			return (EINVAL);
   1933       1.1       gwr 		break;
   1934       1.1       gwr 
   1935       1.1       gwr 	case XYCMD_SK:		/* seek: doesn't seem useful to export this */
   1936       1.1       gwr 		return (EINVAL);
   1937       1.1       gwr 
   1938       1.1       gwr 		break;
   1939       1.1       gwr 
   1940       1.1       gwr 	default:
   1941       1.1       gwr 		return (EINVAL);/* ??? */
   1942       1.1       gwr 	}
   1943       1.1       gwr 
   1944       1.1       gwr 	/* create DVMA buffer for request if needed */
   1945       1.1       gwr 
   1946       1.1       gwr 	if (xio->dlen) {
   1947       1.1       gwr 		dvmabuf = dvma_malloc(xio->dlen);
   1948       1.1       gwr 		if (xio->cmd == XYCMD_WR) {
   1949      1.17       gwr 			err = copyin(xio->dptr, dvmabuf, xio->dlen);
   1950      1.17       gwr 			if (err) {
   1951       1.1       gwr 				dvma_free(dvmabuf, xio->dlen);
   1952       1.1       gwr 				return (err);
   1953       1.1       gwr 			}
   1954       1.1       gwr 		}
   1955       1.1       gwr 	}
   1956       1.1       gwr 	/* do it! */
   1957       1.1       gwr 
   1958       1.1       gwr 	err = 0;
   1959       1.1       gwr 	xycsc = xy->parent;
   1960       1.1       gwr 	s = splbio();
   1961       1.1       gwr 	rqno = xyc_cmd(xycsc, xio->cmd, xio->subfn, xy->xy_drive, xio->block,
   1962       1.1       gwr 	    xio->sectcnt, dvmabuf, XY_SUB_WAIT);
   1963       1.1       gwr 	if (rqno == XY_ERR_FAIL) {
   1964       1.1       gwr 		err = EIO;
   1965       1.1       gwr 		goto done;
   1966       1.1       gwr 	}
   1967       1.1       gwr 	xio->errno = xycsc->ciorq->errno;
   1968       1.1       gwr 	xio->tries = xycsc->ciorq->tries;
   1969      1.17       gwr 	XYC_DONE(xycsc, err);
   1970       1.1       gwr 
   1971       1.1       gwr 	if (xio->cmd == XYCMD_RD)
   1972       1.1       gwr 		err = copyout(dvmabuf, xio->dptr, xio->dlen);
   1973       1.1       gwr 
   1974       1.1       gwr done:
   1975       1.1       gwr 	splx(s);
   1976       1.1       gwr 	if (dvmabuf)
   1977       1.1       gwr 		dvma_free(dvmabuf, xio->dlen);
   1978       1.1       gwr 	return (err);
   1979       1.1       gwr }
   1980       1.1       gwr 
   1981       1.1       gwr /*
   1982       1.1       gwr  * xyc_e2str: convert error code number into an error string
   1983       1.1       gwr  */
   1984      1.51   tsutsui const char *
   1985      1.50       chs xyc_e2str(int no)
   1986       1.1       gwr {
   1987       1.1       gwr 	switch (no) {
   1988       1.1       gwr 	case XY_ERR_FAIL:
   1989       1.1       gwr 		return ("Software fatal error");
   1990       1.1       gwr 	case XY_ERR_DERR:
   1991       1.1       gwr 		return ("DOUBLE ERROR");
   1992       1.1       gwr 	case XY_ERR_AOK:
   1993       1.1       gwr 		return ("Successful completion");
   1994       1.1       gwr 	case XY_ERR_IPEN:
   1995       1.1       gwr 		return("Interrupt pending");
   1996       1.1       gwr 	case XY_ERR_BCFL:
   1997       1.1       gwr 		return("Busy conflict");
   1998       1.1       gwr 	case XY_ERR_TIMO:
   1999       1.1       gwr 		return("Operation timeout");
   2000       1.1       gwr 	case XY_ERR_NHDR:
   2001       1.1       gwr 		return("Header not found");
   2002       1.1       gwr 	case XY_ERR_HARD:
   2003       1.1       gwr 		return("Hard ECC error");
   2004       1.1       gwr 	case XY_ERR_ICYL:
   2005       1.1       gwr 		return("Illegal cylinder address");
   2006       1.1       gwr 	case XY_ERR_ISEC:
   2007       1.1       gwr 		return("Illegal sector address");
   2008       1.1       gwr 	case XY_ERR_SMAL:
   2009       1.1       gwr 		return("Last sector too small");
   2010       1.1       gwr 	case XY_ERR_SACK:
   2011       1.1       gwr 		return("Slave ACK error (non-existent memory)");
   2012       1.1       gwr 	case XY_ERR_CHER:
   2013       1.1       gwr 		return("Cylinder and head/header error");
   2014       1.1       gwr 	case XY_ERR_SRTR:
   2015       1.1       gwr 		return("Auto-seek retry successful");
   2016       1.1       gwr 	case XY_ERR_WPRO:
   2017       1.1       gwr 		return("Write-protect error");
   2018       1.1       gwr 	case XY_ERR_UIMP:
   2019       1.1       gwr 		return("Unimplemented command");
   2020       1.1       gwr 	case XY_ERR_DNRY:
   2021       1.1       gwr 		return("Drive not ready");
   2022       1.1       gwr 	case XY_ERR_SZER:
   2023       1.1       gwr 		return("Sector count zero");
   2024       1.1       gwr 	case XY_ERR_DFLT:
   2025       1.1       gwr 		return("Drive faulted");
   2026       1.1       gwr 	case XY_ERR_ISSZ:
   2027       1.1       gwr 		return("Illegal sector size");
   2028       1.1       gwr 	case XY_ERR_SLTA:
   2029       1.1       gwr 		return("Self test A");
   2030       1.1       gwr 	case XY_ERR_SLTB:
   2031       1.1       gwr 		return("Self test B");
   2032       1.1       gwr 	case XY_ERR_SLTC:
   2033       1.1       gwr 		return("Self test C");
   2034       1.1       gwr 	case XY_ERR_SOFT:
   2035       1.1       gwr 		return("Soft ECC error");
   2036       1.1       gwr 	case XY_ERR_SFOK:
   2037       1.1       gwr 		return("Soft ECC error recovered");
   2038       1.1       gwr 	case XY_ERR_IHED:
   2039       1.1       gwr 		return("Illegal head");
   2040       1.1       gwr 	case XY_ERR_DSEQ:
   2041       1.1       gwr 		return("Disk sequencer error");
   2042       1.1       gwr 	case XY_ERR_SEEK:
   2043       1.1       gwr 		return("Seek error");
   2044       1.1       gwr 	default:
   2045       1.1       gwr 		return ("Unknown error");
   2046       1.1       gwr 	}
   2047       1.1       gwr }
   2048       1.1       gwr 
   2049      1.50       chs int
   2050      1.50       chs xyc_entoact(int errno)
   2051       1.1       gwr {
   2052      1.50       chs 	switch (errno) {
   2053      1.50       chs 	case XY_ERR_FAIL:	case XY_ERR_DERR:	case XY_ERR_IPEN:
   2054      1.50       chs 	case XY_ERR_BCFL:	case XY_ERR_ICYL:	case XY_ERR_ISEC:
   2055      1.50       chs 	case XY_ERR_UIMP:	case XY_ERR_SZER:	case XY_ERR_ISSZ:
   2056      1.50       chs 	case XY_ERR_SLTA:	case XY_ERR_SLTB:	case XY_ERR_SLTC:
   2057      1.50       chs 	case XY_ERR_IHED:	case XY_ERR_SACK:	case XY_ERR_SMAL:
   2058       1.1       gwr 
   2059      1.50       chs 		return(XY_ERA_PROG); /* program error ! */
   2060       1.1       gwr 
   2061      1.50       chs 	case XY_ERR_TIMO:	case XY_ERR_NHDR:	case XY_ERR_HARD:
   2062      1.50       chs 	case XY_ERR_DNRY:	case XY_ERR_CHER:	case XY_ERR_SEEK:
   2063      1.50       chs 	case XY_ERR_SOFT:
   2064       1.1       gwr 
   2065      1.50       chs 		return(XY_ERA_HARD); /* hard error, retry */
   2066       1.1       gwr 
   2067      1.50       chs 	case XY_ERR_DFLT:	case XY_ERR_DSEQ:
   2068       1.1       gwr 
   2069      1.50       chs 		return(XY_ERA_RSET); /* hard error reset */
   2070       1.1       gwr 
   2071      1.50       chs 	case XY_ERR_SRTR:	case XY_ERR_SFOK:	case XY_ERR_AOK:
   2072       1.1       gwr 
   2073      1.50       chs 		return(XY_ERA_SOFT); /* an FYI error */
   2074       1.1       gwr 
   2075      1.50       chs 	case XY_ERR_WPRO:
   2076       1.1       gwr 
   2077      1.50       chs 		return(XY_ERA_WPRO); /* write protect */
   2078      1.50       chs 	}
   2079       1.1       gwr 
   2080      1.50       chs 	return(XY_ERA_PROG); /* ??? */
   2081       1.1       gwr }
   2082