xref: /csrg-svn/sys/tahoe/vba/vd.c (revision 30574)
1*30574Skarels /*	vd.c	1.16	87/03/01	*/
224004Ssam 
329564Ssam #include "dk.h"
424004Ssam #if NVD > 0
524004Ssam /*
630519Ssam  * Versabus VDDC/SMDE driver.
725675Ssam  */
825675Ssam #include "param.h"
925675Ssam #include "buf.h"
1025675Ssam #include "cmap.h"
1125675Ssam #include "conf.h"
1225675Ssam #include "dir.h"
1329564Ssam #include "dkstat.h"
1430519Ssam #include "disklabel.h"
1525675Ssam #include "map.h"
1630519Ssam #include "file.h"
1725675Ssam #include "systm.h"
1825675Ssam #include "user.h"
1925675Ssam #include "vmmac.h"
2025675Ssam #include "proc.h"
2125675Ssam #include "uio.h"
2230370Skarels #include "syslog.h"
2330370Skarels #include "kernel.h"
2430519Ssam #include "ioctl.h"
2524004Ssam 
2629951Skarels #include "../tahoe/cpu.h"
2729951Skarels #include "../tahoe/mtpr.h"
2829951Skarels #include "../tahoe/pte.h"
2929951Skarels 
3025675Ssam #include "../tahoevba/vbavar.h"
3125928Ssam #include "../tahoevba/vdreg.h"
3224004Ssam 
3330519Ssam #define	COMPAT_42
3430519Ssam 
3525925Ssam #define	VDMAXIO		(MAXBPTE*NBPG)
3624004Ssam 
3730519Ssam #define vdunit(dev)	(minor(dev) >> 3)
3830519Ssam #define vdpart(dev)	(minor(dev) & 0x07)
3930519Ssam #define	vdminor(unit,part)	(((unit) << 3) | (part))
4024004Ssam 
4124004Ssam struct	vba_ctlr *vdminfo[NVD];
4229564Ssam struct  vba_device *vddinfo[NDK];
4325675Ssam int	vdprobe(), vdslave(), vdattach(), vddgo();
4430519Ssam long	vdaddr[] = { 0xffff2000, 0xffff2100, 0xffff2200, 0xffff2300, 0 };
4525675Ssam struct	vba_driver vddriver =
4630519Ssam   { vdprobe, vdslave, vdattach, vddgo, vdaddr, "dk", vddinfo, "vd", vdminfo };
4724004Ssam 
4824004Ssam /*
4930519Ssam  * Per-controller state.
5030519Ssam  */
5130519Ssam struct vdsoftc {
5230519Ssam 	u_short	vd_flags;
5330519Ssam #define	VD_INIT		0x1	/* controller initialized */
5430519Ssam #define	VD_STARTED	0x2	/* start command issued */
5530519Ssam #define	VD_DOSEEKS	0x4	/* should overlap seeks */
5630519Ssam 	u_short	vd_type;	/* controller type */
5730519Ssam 	u_short	vd_wticks;	/* timeout */
5830519Ssam 	struct	mdcb vd_mdcb;	/* master command block */
5930519Ssam 	u_long	vd_mdcbphys;	/* physical address of vd_mdcb */
6030519Ssam 	struct	dcb vd_dcb;	/* i/o command block */
6130519Ssam 	u_long	vd_dcbphys;	/* physical address of vd_dcb */
6230519Ssam 	struct	pte *vd_map;	/* i/o page map */
6330519Ssam 	caddr_t	vd_utl;		/* mapped i/o space */
6430519Ssam 	caddr_t	vd_rawbuf;	/* buffer for raw+swap i/o */
6530519Ssam } vdsoftc[NVD];
6630519Ssam 
6730519Ssam /*
6825675Ssam  * Per-drive state.
6925675Ssam  */
7030519Ssam struct	dksoftc {
7130519Ssam 	u_short	dk_state;	/* open fsm */
7230519Ssam 	u_short	dk_openpart;	/* units open on this drive */
7330519Ssam 	u_int	dk_curcyl;	/* last selected cylinder */
7430519Ssam 	struct	dcb dk_dcb;	/* seek command block */
7530519Ssam 	u_long	dk_dcbphys;	/* physical address of dk_dcb */
7630519Ssam } dksoftc[NDK];
7724004Ssam 
7824004Ssam /*
7930519Ssam  * Drive states.  Used during steps of open/initialization.
8030519Ssam  * States < OPEN (> 0) are transient, during an open operation.
8130519Ssam  * OPENRAW is used for unabeled disks, to allow format operations.
8225675Ssam  */
8330519Ssam #define	CLOSED		0		/* disk is closed */
8430519Ssam #define	WANTOPEN	1		/* open requested, not started */
8530519Ssam #define	WANTOPENRAW	2		/* open requested, no label */
8630519Ssam #define	RDLABEL		3		/* reading pack label */
8730519Ssam #define	OPEN		4		/* intialized and ready */
8830519Ssam #define	OPENRAW		5		/* open, no label */
8924004Ssam 
9030519Ssam struct	buf rdkbuf[NDK];	/* raw i/o buffer headers */
9130519Ssam struct	buf dkutab[NDK];	/* i/o queue headers */
9230519Ssam struct	disklabel dklabel[NDK];	/* pack labels */
9324004Ssam 
9430519Ssam #define b_cylin	b_resid
95*30574Skarels #define	b_track	b_error		/* used for seek commands */
96*30574Skarels #define	b_seekf	b_forw		/* second queue on um_tab */
97*30574Skarels #define	b_seekl	b_back		/* second queue on um_tab */
9830519Ssam 
9930519Ssam int	vdwstart, vdwatch();
10030519Ssam 
10124004Ssam /*
10225675Ssam  * See if the controller is really there; if so, initialize it.
10325675Ssam  */
10425857Ssam vdprobe(reg, vm)
10525857Ssam 	caddr_t reg;
10625857Ssam 	struct vba_ctlr *vm;
10725675Ssam {
10825857Ssam 	register br, cvec;		/* must be r12, r11 */
10930519Ssam 	register struct vddevice *vdaddr = (struct vddevice *)reg;
11030519Ssam 	struct vdsoftc *vd;
11130573Skarels 	int s;
11225857Ssam 
11330370Skarels #ifdef lint
11430370Skarels 	br = 0; cvec = br; br = cvec;
11530370Skarels 	vdintr(0);
11630370Skarels #endif
11725857Ssam 	if (badaddr((caddr_t)reg, 2))
11825675Ssam 		return (0);
11930519Ssam 	vd = &vdsoftc[vm->um_ctlr];
12030519Ssam 	vdaddr->vdreset = 0xffffffff;
12125675Ssam 	DELAY(1000000);
12230519Ssam 	if (vdaddr->vdreset != (unsigned)0xffffffff) {
12330519Ssam 		vd->vd_type = VDTYPE_VDDC;
12430519Ssam 		vd->vd_flags &= ~VD_DOSEEKS;
12525675Ssam 		DELAY(1000000);
12625675Ssam 	} else {
12730519Ssam 		vd->vd_type = VDTYPE_SMDE;
12830519Ssam 		vd->vd_flags |= VD_DOSEEKS;
12930519Ssam 		vdaddr->vdrstclr = 0;
13025675Ssam 		DELAY(3000000);
13130519Ssam 		vdaddr->vdcsr = 0;
13230519Ssam 		vdaddr->vdtcf_mdcb = AM_ENPDA;
13330519Ssam 		vdaddr->vdtcf_dcb = AM_ENPDA;
13430519Ssam 		vdaddr->vdtcf_trail = AM_ENPDA;
13530519Ssam 		vdaddr->vdtcf_data = AM_ENPDA;
13630519Ssam 		vdaddr->vdccf = CCF_SEN | CCF_DER | CCF_STS |
13729921Skarels 		    XMD_32BIT | BSZ_16WRD |
13825925Ssam 		    CCF_ENP | CCF_EPE | CCF_EDE | CCF_ECE | CCF_ERR;
13925675Ssam 	}
14030519Ssam 	vd->vd_mdcbphys = vtoph((struct proc *)0, (unsigned)&vd->vd_mdcb);
14130519Ssam 	vd->vd_dcbphys = vtoph((struct proc *)0, (unsigned)&vd->vd_dcb);
14230519Ssam 	vm->um_addr = reg;		/* XXX */
14330573Skarels 	s = spl7();
14430519Ssam 	if (!vdcmd(vm, VDOP_INIT, 10) || !vdcmd(vm, VDOP_DIAG, 10)) {
14530519Ssam 		printf("vd%d: %s cmd failed\n", vm->um_ctlr,
14630519Ssam 		    vd->vd_dcb.opcode == VDOP_INIT ? "init" : "diag");
14730573Skarels 		splx(s);
14830519Ssam 		return (0);
14930519Ssam 	}
15030573Skarels 	splx(s);
15125925Ssam 	/*
15225950Ssam 	 * Allocate page tables and i/o buffer.
15325925Ssam 	 */
15430519Ssam 	vbmapalloc(btoc(VDMAXIO)+1, &vd->vd_map, &vd->vd_utl);
15530519Ssam 	vd->vd_rawbuf = calloc(VDMAXIO);
15625857Ssam 	br = 0x17, cvec = 0xe0 + vm->um_ctlr;	/* XXX */
15730519Ssam 	return (sizeof (struct vddevice));
15825675Ssam }
15924004Ssam 
16024004Ssam /*
16130519Ssam  * See if a drive is really there.
16230519Ssam  *
16330519Ssam  * Can't read pack label here as various data structures
16430519Ssam  * aren't setup for doing a read in a straightforward
16530519Ssam  * manner.  Instead just probe for the drive and leave
16630519Ssam  * the pack label stuff to the attach routine.
16725675Ssam  */
16825675Ssam vdslave(vi, addr)
16925675Ssam 	register struct vba_device *vi;
17030519Ssam 	struct vddevice *vdaddr;
17125675Ssam {
17230519Ssam 	register struct disklabel *lp = &dklabel[vi->ui_unit];
17330519Ssam 	struct vdsoftc *vd = &vdsoftc[vi->ui_ctlr];
17424004Ssam 
17530519Ssam 	if ((vd->vd_flags&VD_INIT) == 0) {
17625925Ssam 		printf("vd%d: %s controller\n", vi->ui_ctlr,
17730519Ssam 		    vd->vd_type == VDTYPE_VDDC ? "VDDC" : "SMDE");
17830519Ssam 		vd->vd_flags |= VD_INIT;
17925675Ssam 	}
18030519Ssam 
18125675Ssam 	/*
18230519Ssam 	 * Initialize label enough to do a reset on
18330519Ssam 	 * the drive.  The remainder of the default
18430519Ssam 	 * label values will be filled in in vdinit
18530519Ssam 	 * at attach time.
18625675Ssam 	 */
18730519Ssam 	lp->d_secsize = DEV_BSIZE / 2;		/* XXX */
18830519Ssam 	lp->d_nsectors = 32;
18930519Ssam 	lp->d_ntracks = 24;
19030519Ssam 	lp->d_ncylinders = 711;
19130519Ssam 	lp->d_secpercyl = 32*24;
19230519Ssam 	return (vdreset_drive(vi));
19324004Ssam }
19424004Ssam 
19530519Ssam /*
19630519Ssam  * Read pack label.
19730519Ssam  */
19830519Ssam vdattach(vi)
19930519Ssam 	register struct vba_device *vi;
20024004Ssam {
20130519Ssam 	register int unit = vi->ui_unit;
20230519Ssam 	register struct dksoftc *dk = &dksoftc[unit];
20330519Ssam 	register struct disklabel *lp;
20425675Ssam 
20530519Ssam 	/*
20630519Ssam 	 * Try to initialize device and read pack label.
20730519Ssam 	 */
20830519Ssam 	if (vdinit(vdminor(unit, 0), 0) != 0) {
20930519Ssam 		printf(": unknown drive type");
21030519Ssam 		return;
21125675Ssam 	}
21230519Ssam 	/*
21330519Ssam 	 * Initialize invariant portion of
21430519Ssam 	 * dcb used for overlapped seeks.
21530519Ssam 	 */
21630519Ssam 	dk->dk_dcb.opcode = VDOP_SEEK;
21730519Ssam 	dk->dk_dcb.intflg = DCBINT_NONE | DCBINT_PBA;
21830519Ssam 	dk->dk_dcb.devselect = vi->ui_slave;
21930519Ssam 	dk->dk_dcb.trailcnt = sizeof (trseek) / sizeof (long);
22030519Ssam 	dk->dk_dcb.trail.sktrail.skaddr.sector = 0;
22130519Ssam 	dk->dk_dcbphys = vtoph((struct proc *)0, (unsigned)&dk->dk_dcb);
22230519Ssam 	lp = &dklabel[unit];
22330519Ssam 	printf(": %s <ntrak %d, ncyl %d, nsec %d>",
22430519Ssam 	    lp->d_typename, lp->d_ntracks, lp->d_ncylinders, lp->d_nsectors);
22530519Ssam 	/*
22630519Ssam 	 * (60 / rpm) / (sectors per track * (bytes per sector / 2))
22730519Ssam 	 */
22830519Ssam 	if (vi->ui_dk >= 0)
22930519Ssam 		dk_mspw[vi->ui_dk] = 120.0 /
23030519Ssam 		    (lp->d_rpm * lp->d_nsectors * lp->d_secsize);
23130519Ssam #ifdef notyet
23230573Skarels 	addswap(makedev(VDMAJOR, vdminor(unit, 0)), lp);
23330519Ssam #endif
23424004Ssam }
23524004Ssam 
23630519Ssam /*ARGSUSED*/
23730519Ssam vdopen(dev, flags)
23830519Ssam 	dev_t dev;
23930519Ssam 	int flags;
24024004Ssam {
24130519Ssam 	register unit = vdunit(dev);
24230519Ssam 	register struct disklabel *lp;
24330519Ssam 	register struct dksoftc *dk;
24430519Ssam 	register struct partition *pp;
24530519Ssam 	struct vba_device *vi;
24630519Ssam 	int s, error, part = vdpart(dev);
24730519Ssam 	daddr_t start, end;
24824004Ssam 
24930519Ssam 	if (unit >= NDK || (vi = vddinfo[unit]) == 0 || vi->ui_alive == 0)
25030519Ssam 		return (ENXIO);
25130519Ssam 	lp = &dklabel[unit];
25230519Ssam 	dk = &dksoftc[unit];
25330519Ssam 
25430519Ssam 	s = spl7();
25530519Ssam 	while (dk->dk_state != OPEN && dk->dk_state != OPENRAW &&
25630519Ssam 	    dk->dk_state != CLOSED)
25730519Ssam 		sleep((caddr_t)dk, PZERO+1);
25830519Ssam 	splx(s);
25930519Ssam 	if (dk->dk_state != OPEN && dk->dk_state != OPENRAW)
26030519Ssam 		if (error = vdinit(dev, flags))
26130519Ssam 			return (error);
26230573Skarels 
26330573Skarels 	if (vdwstart == 0) {
26430573Skarels 		timeout(vdwatch, (caddr_t)0, hz);
26530573Skarels 		vdwstart++;
26630573Skarels 	}
26730519Ssam 	/*
26830519Ssam 	 * Warn if a partion is opened
26930519Ssam 	 * that overlaps another partition which is open
27030519Ssam 	 * unless one is the "raw" partition (whole disk).
27130519Ssam 	 */
27230519Ssam #define	RAWPART		2		/* 'c' partition */	/* XXX */
27330519Ssam 	if ((dk->dk_openpart & (1 << part)) == 0 &&
27430519Ssam 	    part != RAWPART) {
27530519Ssam 		pp = &lp->d_partitions[part];
27630519Ssam 		start = pp->p_offset;
27730519Ssam 		end = pp->p_offset + pp->p_size;
27830519Ssam 		for (pp = lp->d_partitions;
27930519Ssam 		     pp < &lp->d_partitions[lp->d_npartitions]; pp++) {
28030519Ssam 			if (pp->p_offset + pp->p_size <= start ||
28130519Ssam 			    pp->p_offset >= end)
28230519Ssam 				continue;
28330519Ssam 			if (pp - lp->d_partitions == RAWPART)
28430519Ssam 				continue;
28530519Ssam 			if (dk->dk_openpart & (1 << (pp - lp->d_partitions)))
28630519Ssam 				log(LOG_WARNING,
28730519Ssam 				    "dk%d%c: overlaps open partition (%c)\n",
28830519Ssam 				    unit, part + 'a',
28930519Ssam 				    pp - lp->d_partitions + 'a');
29030519Ssam 		}
29124004Ssam 	}
29230519Ssam 	if (part >= lp->d_npartitions)
29330519Ssam 		return (ENXIO);
29430519Ssam 	dk->dk_openpart |= 1 << part;
29530519Ssam 	return (0);
29625675Ssam }
29724004Ssam 
29830519Ssam vdclose(dev, flags)
29930519Ssam 	dev_t dev;
30030519Ssam 	int flags;
30124004Ssam {
30230519Ssam 	register int unit = vdunit(dev);
30330519Ssam 	register struct dksoftc *dk = &dksoftc[unit];
30424004Ssam 
30530519Ssam 	dk->dk_openpart &= ~(1 << vdpart(dev));
30630519Ssam 	/*
30730519Ssam 	 * Should wait for i/o to complete on this partition
30830519Ssam 	 * even if others are open, but wait for work on blkflush().
30930519Ssam 	 */
31030519Ssam 	if (dk->dk_openpart == 0) {
31130573Skarels 		int s = spl7();
31230573Skarels 		while (dkutab[unit].b_actf)
31330573Skarels 			sleep((caddr_t)dk, PZERO-1);
31430519Ssam 		splx(s);
31530519Ssam 		dk->dk_state = CLOSED;
31624004Ssam 	}
31725675Ssam }
31824004Ssam 
31930519Ssam vdinit(dev, flags)
32030519Ssam 	dev_t dev;
32130519Ssam 	int flags;
32225675Ssam {
32330519Ssam 	register struct buf *bp = NULL;
32430519Ssam 	register struct disklabel *lp;
32530519Ssam 	register struct dksoftc *dk;
32630519Ssam 	struct vba_device *vi;
32730519Ssam 	struct disklabel *dlp;
32830519Ssam 	int unit = vdunit(dev), error = 0;
32930519Ssam 	extern int cold;
33025675Ssam 
33130519Ssam 	dk = &dksoftc[unit];
33230519Ssam 	if (flags & O_NDELAY) {
33330519Ssam 		dk->dk_state = OPENRAW;
33430519Ssam 		goto done;
33530519Ssam 	}
33630519Ssam 
33730519Ssam 	/*
33830519Ssam 	 * Initialize portion of the label
33930519Ssam 	 * not set up in the slave routine.
34030519Ssam 	 */
34130519Ssam 	dk->dk_state = RDLABEL;
34230519Ssam 	lp = &dklabel[unit];
34330519Ssam 	lp->d_secperunit = 0x1fffffff;
34430519Ssam 	lp->d_npartitions = 1;
34530519Ssam 	lp->d_partitions[0].p_size = 0x1fffffff;
34630519Ssam 	lp->d_partitions[0].p_offset = 0;
34730519Ssam 
34830519Ssam 	bp = geteblk(DEV_BSIZE);		/* max sector size */
34930519Ssam 	bp->b_dev = dev;
35030519Ssam 	bp->b_blkno = LABELSECTOR;
35130519Ssam 	bp->b_bcount = DEV_BSIZE;
35230519Ssam 	bp->b_flags = B_BUSY | B_READ;
35330519Ssam 	bp->b_cylin = LABELSECTOR / lp->d_secpercyl;
35430519Ssam 	vdstrategy(bp);
35530519Ssam 	biowait(bp);
35630519Ssam 	if (bp->b_flags & B_ERROR) {
35730519Ssam 		error = u.u_error;		/* XXX */
35830519Ssam 		u.u_error = 0;
35930519Ssam 		dk->dk_state = CLOSED;
36030519Ssam 		goto done;
36130519Ssam 	}
36230519Ssam 	vi = vddinfo[unit];
36330519Ssam 	dlp = (struct disklabel *)(bp->b_un.b_addr + LABELOFFSET);
36430519Ssam 	if (dlp->d_magic == DISKMAGIC && dlp->d_magic2 == DISKMAGIC &&
36530519Ssam 	    dkcksum(dlp) == 0) {
36630519Ssam 		*lp = *dlp;
36730519Ssam 		/*
36830519Ssam 		 * Now that we have the label, configure
36930519Ssam 		 * the correct drive parameters.
37030519Ssam 		 */
37130519Ssam 		if (!vdreset_drive(vi))
37230519Ssam 			dk->dk_state = CLOSED;
37330519Ssam 		else
37430519Ssam 			dk->dk_state = OPEN;
37525675Ssam 	} else {
37630519Ssam 		if (cold)
37730519Ssam 			printf(": no disk label");
37830519Ssam 		else
37930519Ssam 			log(LOG_ERR, "dk%d: no disk label\n", vi->ui_unit);
38030519Ssam #ifdef COMPAT_42
38130519Ssam 		if (!vdmaptype(vi, lp)) {
38230519Ssam 			error = ENXIO;
38330519Ssam 			dk->dk_state = CLOSED;
38430519Ssam 		} else
38530519Ssam 			dk->dk_state = OPEN;
38630519Ssam #else
38730519Ssam 		dk->dk_state = OPENRAW;
38830519Ssam #endif
38925675Ssam 	}
39030519Ssam done:
39130519Ssam 	if (bp) {
39230519Ssam 		bp->b_flags = B_INVAL | B_AGE;
39330519Ssam 		brelse(bp);
39430519Ssam 	}
39530519Ssam 	wakeup((caddr_t)dk);
39630519Ssam 	return (error);
39724004Ssam }
39824004Ssam 
39925675Ssam /*ARGSUSED*/
40030519Ssam vddgo(vm)
40130519Ssam 	struct vba_device *vm;
40224004Ssam {
40324004Ssam 
40424004Ssam }
40524004Ssam 
40624004Ssam vdstrategy(bp)
40725675Ssam 	register struct buf *bp;
40824004Ssam {
40930519Ssam 	register struct vba_device *vi;
41030519Ssam 	register struct disklabel *lp;
41130519Ssam 	register struct dksoftc *dk;
41230519Ssam 	register int unit;
41330573Skarels 	register daddr_t sn;
41430519Ssam 	struct buf *dp;
41530573Skarels 	daddr_t sz, maxsz;
41630519Ssam 	int part, s;
41724004Ssam 
41830519Ssam 	sz = bp->b_bcount;
41930519Ssam 	sz = (sz + DEV_BSIZE - 1) >> DEV_BSHIFT;
42030519Ssam 	unit = vdunit(bp->b_dev);
42130519Ssam 	if (unit > NDK) {
42229954Skarels 		bp->b_error = ENXIO;
42325675Ssam 		goto bad;
42429954Skarels 	}
42530519Ssam 	vi = vddinfo[unit];
42630519Ssam 	lp = &dklabel[unit];
42730519Ssam 	if (vi == 0 || vi->ui_alive == 0) {
42830519Ssam 		bp->b_error = ENXIO;
42930519Ssam 		goto bad;
43030519Ssam 	}
43130519Ssam 	dk = &dksoftc[unit];
43230519Ssam 	if (dk->dk_state < OPEN)
43330519Ssam 		goto q;
43430519Ssam 	part = vdpart(bp->b_dev);
43530519Ssam 	if ((dk->dk_openpart & (1 << part)) == 0) {
43630519Ssam 		bp->b_error = ENODEV;
43730519Ssam 		goto bad;
43830519Ssam 	}
43930519Ssam 	maxsz = lp->d_partitions[part].p_size;
44030573Skarels 	sn = bp->b_blkno;
44130519Ssam 	if (sn < 0 || sn + sz > maxsz) {
44230519Ssam 		if (sn == maxsz) {
44329954Skarels 			bp->b_resid = bp->b_bcount;
44429954Skarels 			goto done;
44529954Skarels 		}
44630573Skarels 		sz = maxsz - bp->b_blkno;
44730573Skarels 		if (sz <= 0) {
44830573Skarels 			bp->b_error = EINVAL;
44930573Skarels 			goto bad;
45030573Skarels 		}
45130573Skarels 		bp->b_bcount = sz * lp->d_secsize;
45225675Ssam 	}
45330519Ssam 	bp->b_cylin = (sn + lp->d_partitions[part].p_offset) / lp->d_secpercyl;
45430519Ssam q:
45530519Ssam 	vbasetup(bp, lp->d_secsize);
45625675Ssam 	s = spl7();
45730519Ssam 	dp = &dkutab[vi->ui_unit];
45830519Ssam 	disksort(dp, bp);
45930519Ssam 	if (!dp->b_active) {
46030519Ssam 		(void) vdustart(vi);
46130573Skarels 		if (!vi->ui_mi->um_tab.b_active)
46230519Ssam 			vdstart(vi->ui_mi);
46324004Ssam 	}
46430519Ssam 	splx(s);
46524004Ssam 	return;
46625675Ssam bad:
46729954Skarels 	bp->b_flags |= B_ERROR;
46829954Skarels done:
46930519Ssam 	biodone(bp);
47030519Ssam 	return;
47124004Ssam }
47224004Ssam 
47330519Ssam vdustart(vi)
47430519Ssam 	register struct vba_device *vi;
47524004Ssam {
47630519Ssam 	register struct buf *bp, *dp;
47730519Ssam 	register struct vba_ctlr *vm;
47830519Ssam 	register int unit = vi->ui_unit;
47930519Ssam 	register struct dksoftc *dk;
48030519Ssam 	register struct vdsoftc *vd;
48130519Ssam 	struct disklabel *lp;
48224004Ssam 
48330519Ssam 	dp = &dkutab[unit];
48430519Ssam 	/*
48530519Ssam 	 * If queue empty, nothing to do.
48630519Ssam 	 */
48730519Ssam 	if ((bp = dp->b_actf) == NULL)
48830519Ssam 		return;
48930519Ssam 	/*
490*30574Skarels 	 * If drive is off-cylinder and controller supports seeks,
491*30574Skarels 	 * place drive on seek queue for controller.
492*30574Skarels 	 * Otherwise, place on transfer queue.
49330519Ssam 	 */
49430519Ssam 	vd = &vdsoftc[vi->ui_ctlr];
49530519Ssam 	dk = &dksoftc[unit];
496*30574Skarels 	vm = vi->ui_mi;
49730519Ssam 	if (bp->b_cylin != dk->dk_curcyl && vd->vd_flags&VD_DOSEEKS) {
49830519Ssam 		lp = &dklabel[unit];
499*30574Skarels 		bp->b_track = (bp->b_blkno % lp->d_secpercyl) / lp->d_nsectors;
500*30574Skarels 		if (vm->um_tab.b_seekf == NULL)
501*30574Skarels 			vm->um_tab.b_seekf = dp;
502*30574Skarels 		else
503*30574Skarels 			vm->um_tab.b_seekl->b_forw = dp;
504*30574Skarels 		vm->um_tab.b_seekl = dp;
505*30574Skarels 	} else {
506*30574Skarels 		if (vm->um_tab.b_actf == NULL)
507*30574Skarels 			vm->um_tab.b_actf = dp;
508*30574Skarels 		else
509*30574Skarels 			vm->um_tab.b_actl->b_forw = dp;
510*30574Skarels 		vm->um_tab.b_actl = dp;
51130519Ssam 	}
51230573Skarels 	dp->b_forw = NULL;
51330573Skarels 	dp->b_active++;
51425675Ssam }
51525675Ssam 
51625675Ssam /*
51730519Ssam  * Start next transfer on a controller.
518*30574Skarels  * There are two queues of drives, the first on-cylinder
519*30574Skarels  * and the second off-cylinder from their next transfers.
520*30574Skarels  * Perform the first transfer for the first drive on the on-cylinder
521*30574Skarels  * queue, if any, otherwise the first transfer for the first drive
522*30574Skarels  * on the second queue.  Initiate seeks on remaining drives on the
523*30574Skarels  * off-cylinder queue, then move them all to the on-cylinder queue.
52425675Ssam  */
52530519Ssam vdstart(vm)
52630519Ssam 	register struct vba_ctlr *vm;
52725675Ssam {
52825675Ssam 	register struct buf *bp;
52930519Ssam 	register struct vba_device *vi;
53030519Ssam 	register struct vdsoftc *vd;
53130519Ssam 	register struct dksoftc *dk;
53230519Ssam 	register struct disklabel *lp;
53330519Ssam 	register int slave;
53430519Ssam 	register struct dcb **dcbp;
53530519Ssam 	struct mdcb *mdcb;
53630519Ssam 	struct buf *dp;
53730519Ssam 	int sn, tn;
53825675Ssam 
53930519Ssam loop:
54030519Ssam 	/*
54130519Ssam 	 * Pull a request off the controller queue.
54230519Ssam 	 */
543*30574Skarels 	if ((dp = vm->um_tab.b_actf) == NULL &&
544*30574Skarels 	    (dp = vm->um_tab.b_seekf) == NULL)
54530519Ssam 		return;
54630519Ssam 	if ((bp = dp->b_actf) == NULL) {
54730519Ssam 		vm->um_tab.b_actf = dp->b_forw;
54830519Ssam 		goto loop;
54930519Ssam 	}
55025675Ssam 
55124004Ssam 	/*
55230519Ssam 	 * Mark controller busy, and determine
55330519Ssam 	 * destination of this request.
55424004Ssam 	 */
55530519Ssam 	vm->um_tab.b_active++;
55630519Ssam 	vi = vddinfo[vdunit(bp->b_dev)];
55730519Ssam 	dk = &dksoftc[vi->ui_unit];
55830573Skarels 	sn = bp->b_blkno;
55930519Ssam 	lp = &dklabel[vi->ui_unit];
56030519Ssam 	sn %= lp->d_secpercyl;
56130519Ssam 	tn = sn / lp->d_nsectors;
56230519Ssam 	sn %= lp->d_nsectors;
56330519Ssam 
56430519Ssam 	/*
56530519Ssam 	 * Construct dcb for read/write command.
56630519Ssam 	 */
56730519Ssam 	vd = &vdsoftc[vm->um_ctlr];
56830519Ssam 	slave = vi->ui_slave;
56930519Ssam 	vd->vd_dcb.opcode = (bp->b_flags & B_READ) ? VDOP_RD : VDOP_WD;
57030519Ssam 	vd->vd_dcb.intflg = DCBINT_DONE;
57130519Ssam 	vd->vd_dcb.devselect = slave;
57230519Ssam 	vd->vd_dcb.operrsta = 0;
57330519Ssam 	vd->vd_dcb.nxtdcb = (struct dcb *)0;	/* end of chain */
57430519Ssam 	vd->vd_dcb.trailcnt = sizeof (trrw) / sizeof (long);
57530519Ssam 	vd->vd_dcb.trail.rwtrail.memadr = (char *)
57630519Ssam 	    vbastart(bp, vd->vd_rawbuf, (long *)vd->vd_map, vd->vd_utl);
57730519Ssam 	vd->vd_dcb.trail.rwtrail.wcount = (bp->b_bcount+1) >> 1;
57830519Ssam 	vd->vd_dcb.trail.rwtrail.disk.cylinder = bp->b_cylin;
57930519Ssam 	vd->vd_dcb.trail.rwtrail.disk.track = tn;
58030519Ssam 	vd->vd_dcb.trail.rwtrail.disk.sector = sn;
581*30574Skarels 	dk->dk_curcyl = bp->b_cylin;
582*30574Skarels 	bp->b_track = 0;		/* init overloaded field */
583*30574Skarels 	if (vi->ui_dk >= 0) {
584*30574Skarels 		dk_busy |= 1<<vi->ui_dk;
585*30574Skarels 		dk_xfer[vi->ui_dk]++;
586*30574Skarels 		dk_wds[vi->ui_dk] += bp->b_bcount>>6;
587*30574Skarels 	}
58830519Ssam 
58930519Ssam 	/*
59030519Ssam 	 * Look for any seeks to be performed on other drives on this
59130519Ssam 	 * controller.  If overlapped seeks exist, insert seek commands
59230519Ssam 	 * on the controller's command queue before the transfer.
59330519Ssam 	 */
59430519Ssam 	dcbp = &vd->vd_mdcb.mdcb_head;
59530519Ssam 
596*30574Skarels 	if (dp == vm->um_tab.b_seekf)
597*30574Skarels 		dp = dp->b_forw;
598*30574Skarels 	else
599*30574Skarels 		dp = vm->um_tab.b_seekf;
600*30574Skarels 	for (; dp != NULL; dp = dp->b_forw) {
601*30574Skarels 		if ((bp = dp->b_actf) == NULL)
602*30574Skarels 			continue;
603*30574Skarels 		vi = vddinfo[vdunit(bp->b_dev)];
604*30574Skarels 		dk = &dksoftc[vi->ui_unit];
60530519Ssam 		dk->dk_curcyl = bp->b_cylin;
606*30574Skarels 		if (vi->ui_dk >= 0)
607*30574Skarels 			dk_seek[vi->ui_dk]++;
608*30574Skarels 		dk->dk_dcb.operrsta = 0;
609*30574Skarels 		dk->dk_dcb.trail.sktrail.skaddr.cylinder = bp->b_cylin;
610*30574Skarels #ifdef notdef
611*30574Skarels 		dk->dk_dcb.trail.sktrail.skaddr.track = bp->b_daddr>>8;
612*30574Skarels 		dk->dk_dcb.trail.sktrail.skaddr.sector =
613*30574Skarels 		    bp->b_daddr & 0xff;
614*30574Skarels #else
615*30574Skarels 		dk->dk_dcb.trail.sktrail.skaddr.track = bp->b_track;
616*30574Skarels #endif
617*30574Skarels 		*dcbp = (struct dcb *)dk->dk_dcbphys;
618*30574Skarels 		dcbp = &dk->dk_dcb.nxtdcb;
61924004Ssam 	}
62030519Ssam 	*dcbp = (struct dcb *)vd->vd_dcbphys;
621*30574Skarels 	if (vm->um_tab.b_actf)
622*30574Skarels 		vm->um_tab.b_actl->b_forw = vm->um_tab.b_seekf;
623*30574Skarels 	else
624*30574Skarels 		vm->um_tab.b_actf = vm->um_tab.b_seekf;
625*30574Skarels 	vm->um_tab.b_actl = vm->um_tab.b_seekl;
626*30574Skarels 	vm->um_tab.b_seekf = 0;
627*30574Skarels 	vm->um_tab.b_seekl = 0;
62824004Ssam 
62930519Ssam 	/*
63030519Ssam 	 * Initiate operation.
63130519Ssam 	 */
63230519Ssam 	vd->vd_mdcb.mdcb_status = 0;
63330519Ssam 	VDGO(vm->um_addr, vd->vd_mdcbphys, vd->vd_type);
63424004Ssam }
63524004Ssam 
63630519Ssam #define	DONTCARE (DCBS_DSE|DCBS_DSL|DCBS_TOP|DCBS_TOM|DCBS_FAIL|DCBS_DONE)
63724004Ssam /*
63824004Ssam  * Handle a disk interrupt.
63924004Ssam  */
64025675Ssam vdintr(ctlr)
64130519Ssam 	register ctlr;
64224004Ssam {
64330519Ssam 	register struct buf *bp, *dp;
64430519Ssam 	register struct vba_ctlr *vm = vdminfo[ctlr];
64530519Ssam 	register struct vba_device *vi;
64630519Ssam 	register struct vdsoftc *vd = &vdsoftc[ctlr];
64730519Ssam 	register status;
64830573Skarels 	struct dksoftc *dk;
64924004Ssam 
65030519Ssam 	vd->vd_wticks = 0;
65130519Ssam 	if (!vm->um_tab.b_active) {
65225675Ssam 		printf("vd%d: stray interrupt\n", ctlr);
65324004Ssam 		return;
65424004Ssam 	}
65525675Ssam 	/*
65630519Ssam 	 * Get device and block structures, and a pointer
65730519Ssam 	 * to the vba_device for the drive.
65825675Ssam 	 */
65930519Ssam 	dp = vm->um_tab.b_actf;
66030519Ssam 	bp = dp->b_actf;
66130519Ssam 	vi = vddinfo[vdunit(bp->b_dev)];
662*30574Skarels 	if (vi->ui_dk >= 0)
663*30574Skarels 		dk_busy &= ~(1<<vi->ui_dk);
66430519Ssam 	/*
66530519Ssam 	 * Check for and process errors on
66630519Ssam 	 * either the drive or the controller.
66730519Ssam 	 */
66830519Ssam 	uncache(&vd->vd_dcb.operrsta);
66930519Ssam 	status = vd->vd_dcb.operrsta;
67030519Ssam 	if (status & VDERR_HARD) {
67130519Ssam 		if (status & DCBS_WPT) {
67230519Ssam 			/*
67330519Ssam 			 * Give up on write locked devices immediately.
67430519Ssam 			 */
67530573Skarels 			printf("dk%d: write locked\n", vi->ui_unit);
67630519Ssam 			bp->b_flags |= B_ERROR;
67730573Skarels 		} else if (status & VDERR_RETRY) {
67830519Ssam 			if (status & VDERR_DRIVE) {
67930519Ssam 				if (!vdreset_drive(vi))
68030519Ssam 					vi->ui_alive = 0;
68130519Ssam 			} else if (status & VDERR_CTLR)
68230519Ssam 				vdreset_ctlr(vm);
68330519Ssam 			/*
68430519Ssam 			 * Retry transfer once, unless reset failed.
68530519Ssam 			 */
68630519Ssam 			if (!vi->ui_alive || bp->b_errcnt++ >= 2)
68730519Ssam 				goto hard;
68830519Ssam 			vm->um_tab.b_active = 0;	/* force retry */
68930519Ssam 		} else  {
69030519Ssam 	hard:
69130519Ssam 			bp->b_flags |= B_ERROR;
69230519Ssam 			/* NEED TO ADJUST b_blkno to failed sector */
69330519Ssam 			harderr(bp, "dk");
69430519Ssam 			printf("status %x (%b)", status,
69530519Ssam 			   status &~ DONTCARE, VDERRBITS);
69630519Ssam 			if (vd->vd_type == VDTYPE_SMDE) {
69730519Ssam 				uncache(&vd->vd_dcb.err_code);
69830519Ssam 				printf(" ecode %x", vd->vd_dcb.err_code);
69930519Ssam 			}
70030519Ssam 			printf("\n");
70130519Ssam 		}
70230519Ssam 	} else if (status & DCBS_SOFT)
70330519Ssam 		vdsofterr(vd, bp, &vd->vd_dcb);
70430519Ssam 	if (vm->um_tab.b_active) {
70530519Ssam 		vm->um_tab.b_active = 0;
70630519Ssam 		vm->um_tab.b_errcnt = 0;
70730519Ssam 		vm->um_tab.b_actf = dp->b_forw;
70830519Ssam 		dp->b_active = 0;
70930519Ssam 		dp->b_errcnt = 0;
71030519Ssam 		dp->b_actf = bp->av_forw;
71130519Ssam 		bp->b_resid = 0;
71230519Ssam 		vbadone(bp, vd->vd_rawbuf, (long *)vd->vd_map, vd->vd_utl);
71330519Ssam 		biodone(bp);
71430370Skarels 		/*
71530519Ssam 		 * If this unit has more work to do,
71630519Ssam 		 * then start it up right away.
71730370Skarels 		 */
71830519Ssam 		if (dp->b_actf)
71930519Ssam 			vdustart(vi);
72030573Skarels 		else if ((dk = &dksoftc[vi->ui_unit])->dk_openpart == 0)
72130573Skarels 			wakeup((caddr_t)dk);
72224004Ssam 	}
72325675Ssam 	/*
72430519Ssam 	 * If there are devices ready to
72530519Ssam 	 * transfer, start the controller.
72625675Ssam 	 */
72730519Ssam 	if (vm->um_tab.b_actf)
72830519Ssam 		vdstart(vm);
72924004Ssam }
73024004Ssam 
73130519Ssam vdsofterr(vd, bp, dcb)
73230519Ssam 	struct vdsoftc *vd;
73325675Ssam 	register struct buf *bp;
73430519Ssam 	register struct dcb *dcb;
73525675Ssam {
73630519Ssam 	int unit = vdunit(bp->b_dev), status = dcb->operrsta;
73730519Ssam 	char part = 'a' + vdpart(bp->b_dev);
73825675Ssam 
73930519Ssam 	if (status != (DCBS_DCE|DCBS_CCD|DCBS_SOFT|DCBS_ERR)) {
74030519Ssam 		if (vd->vd_type == VDTYPE_SMDE)
74130519Ssam 			uncache(&dcb->err_code);
74230519Ssam 		log(LOG_WARNING, "dk%d%c: soft error sn%d status %b ecode %x\n",
74330519Ssam 		    unit, part, bp->b_blkno, status, VDERRBITS, dcb->err_code);
74430519Ssam 	} else
74530370Skarels 		log(LOG_WARNING, "dk%d%c: soft ecc sn%d\n",
74630370Skarels 		    unit, part, bp->b_blkno);
74725675Ssam }
74825675Ssam 
74924004Ssam vdread(dev, uio)
75025675Ssam 	dev_t dev;
75125675Ssam 	struct uio *uio;
75224004Ssam {
75330519Ssam 	register int unit = vdunit(dev);
75424004Ssam 
75529564Ssam 	if (unit >= NDK)
75625675Ssam 		return (ENXIO);
75730519Ssam 	return (physio(vdstrategy, &rdkbuf[unit], dev, B_READ, minphys, uio));
75824004Ssam }
75924004Ssam 
76024004Ssam vdwrite(dev, uio)
76125675Ssam 	dev_t dev;
76225675Ssam 	struct uio *uio;
76324004Ssam {
76430519Ssam 	register int unit = vdunit(dev);
76524004Ssam 
76629564Ssam 	if (unit >= NDK)
76725675Ssam 		return (ENXIO);
76830519Ssam 	return (physio(vdstrategy, &rdkbuf[unit], dev, B_WRITE, minphys, uio));
76924004Ssam }
77024004Ssam 
77130519Ssam vdioctl(dev, cmd, data, flag)
77225675Ssam 	dev_t dev;
77330519Ssam 	int cmd;
77430519Ssam 	caddr_t data;
77530519Ssam 	int flag;
77624004Ssam {
77730519Ssam 	int unit = vdunit(dev);
77830519Ssam 	register struct disklabel *lp = &dklabel[unit];
77930519Ssam 	int error = 0;
78024004Ssam 
78130519Ssam 	switch (cmd) {
78230519Ssam 
78330519Ssam 	case DIOCGDINFO:
78430519Ssam 		*(struct disklabel *)data = *lp;
78530519Ssam 		break;
78630519Ssam 
78730573Skarels 	case DIOCGPART:
78830573Skarels 		((struct partinfo *)data)->disklab = lp;
78930573Skarels 		((struct partinfo *)data)->part =
79030573Skarels 		    &lp->d_partitions[vdpart(dev)];
79130519Ssam 		break;
79230519Ssam 
79330519Ssam 	case DIOCSDINFO:
79430519Ssam 		if ((flag & FWRITE) == 0)
79530519Ssam 			error = EBADF;
79630519Ssam 		else
79730519Ssam 			*lp = *(struct disklabel *)data;
79830519Ssam 		break;
79930519Ssam 
80030519Ssam 	case DIOCWDINFO: {
80130519Ssam 		struct buf *bp;
80230519Ssam 		struct disklabel *dlp;
80330519Ssam 
80430519Ssam 		if ((flag & FWRITE) == 0) {
80530519Ssam 			error = EBADF;
80630519Ssam 			break;
80730519Ssam 		}
80830519Ssam 		*lp = *(struct disklabel *)data;
80930519Ssam 		bp = geteblk(lp->d_secsize);
81030519Ssam 		bp->b_dev = dev;
81130519Ssam 		bp->b_blkno = LABELSECTOR;
81230519Ssam 		bp->b_bcount = lp->d_secsize;
81330519Ssam 		bp->b_flags = B_READ;
81430519Ssam 		dlp = (struct disklabel *)(bp->b_un.b_addr + LABELOFFSET);
81530519Ssam 		vdstrategy(bp);
81630519Ssam 		biowait(bp);
81730519Ssam 		if (bp->b_flags & B_ERROR) {
81830519Ssam 			error = u.u_error;		/* XXX */
81930519Ssam 			u.u_error = 0;
82030519Ssam 			goto bad;
82130519Ssam 		}
82230519Ssam 		*dlp = *lp;
82330519Ssam 		bp->b_flags = B_WRITE;
82430519Ssam 		vdstrategy(bp);
82530519Ssam 		biowait(bp);
82630519Ssam 		if (bp->b_flags & B_ERROR) {
82730519Ssam 			error = u.u_error;		/* XXX */
82830519Ssam 			u.u_error = 0;
82930519Ssam 		}
83030519Ssam bad:
83130519Ssam 		brelse(bp);
83230519Ssam 		break;
83325675Ssam 	}
83430519Ssam 
83530519Ssam 	default:
83630519Ssam 		error = ENOTTY;
83730519Ssam 		break;
83824004Ssam 	}
83925675Ssam 	return (0);
84024004Ssam }
84124004Ssam 
84225675Ssam /*
84330519Ssam  * Watch for lost interrupts.
84425675Ssam  */
84530519Ssam vdwatch()
84630519Ssam {
84730519Ssam 	register struct vdsoftc *vd;
84830519Ssam 	register struct vba_ctlr *vm;
84925675Ssam 	register int ctlr, unit;
85030519Ssam 
85130519Ssam 	timeout(vdwatch, (caddr_t)0, hz);
85230519Ssam 	for (ctlr = 0; ctlr < NVD; ctlr++) {
85330519Ssam 		vm = vdminfo[ctlr];
85430519Ssam 		if (vm == 0 || vm->um_alive == 0)
85530519Ssam 			continue;
85630519Ssam 		vd = &vdsoftc[ctlr];
85730519Ssam 		if (!vm->um_tab.b_active) {
85830519Ssam 			for (unit = 0; unit < NDK; unit++)
85930519Ssam 				if (dkutab[unit].b_active &&
86030519Ssam 				    vddinfo[unit]->ui_mi == vm)
86130519Ssam 					goto active;
86230519Ssam 			vd->vd_wticks = 0;
86330519Ssam 			continue;
86430519Ssam 		}
86530519Ssam active:
86630519Ssam 		vd->vd_wticks++;
86730519Ssam 		if (vd->vd_wticks >= 20) {
86830519Ssam 			vd->vd_wticks = 0;
86930519Ssam 			printf("vd%d: lost interrupt\n", ctlr);
87030519Ssam 			/* abort pending dcb's and restart controller */
87130519Ssam 		}
87230519Ssam 	}
87330519Ssam }
87430519Ssam 
87530519Ssam #define	DBSIZE	64	/* controller limit with 1K sectors */
87630519Ssam /*
87730519Ssam  * Crash dump.
87830519Ssam  */
87930519Ssam vddump(dev)
88030519Ssam 	dev_t dev;
88124004Ssam {
88230519Ssam 	register struct vba_device *vi;
88330519Ssam 	register struct vba_ctlr *vm;
88430519Ssam 	register struct disklabel *lp;
88530519Ssam 	register struct vdsoftc *vd;
88630519Ssam 	struct dksoftc *dk;
88730519Ssam 	int part, unit, num;
88830519Ssam 	caddr_t start;
88924004Ssam 
89030519Ssam 	start = 0;
89130519Ssam 	unit = vdunit(dev);
89230519Ssam 	if (unit > NDK || (vi = vddinfo[unit]) == 0 || vi->ui_alive == 0)
89330519Ssam 		return (ENXIO);
89430519Ssam 	dk = &dksoftc[unit];
89530519Ssam 	if (dk->dk_state != OPEN && dk->dk_state != OPENRAW)
89630519Ssam 		return (ENXIO);
89730519Ssam 	lp = &dklabel[unit];
89830519Ssam 	part = vdpart(dev);
89930519Ssam 	if (part >= lp->d_npartitions)
90030519Ssam 		return (ENXIO);
90130519Ssam 	vm = vdminfo[vi->ui_ctlr];
90230519Ssam 	vdreset_ctlr(vm);
90330519Ssam 	if (dumplo < 0)
90430519Ssam 		return (EINVAL);
90530519Ssam 	/*
90630573Skarels 	 * Dumplo and maxfree are in pages.
90730519Ssam 	 */
90830519Ssam 	num = maxfree * (NBPG / lp->d_secsize);
90930573Skarels 	dumplo *= NBPG / lp->d_secsize;
91030519Ssam 	if (dumplo + num >= lp->d_partitions[vdpart(dev)].p_size)
91130519Ssam 		num = lp->d_partitions[vdpart(dev)].p_size - dumplo;
91230519Ssam 	vd = &vdsoftc[vm->um_ctlr];
91330519Ssam 	vd->vd_dcb.intflg = DCBINT_NONE;
91430519Ssam 	vd->vd_dcb.opcode = VDOP_WD;
91530519Ssam 	vd->vd_dcb.devselect = vi->ui_slave;
91630519Ssam 	vd->vd_dcb.trailcnt = sizeof (trrw) / sizeof (long);
91730519Ssam 	while (num > 0) {
91830519Ssam 		int nsec, cn, sn, tn;
91930519Ssam 
92030519Ssam 		nsec = MIN(num, DBSIZE);
92130519Ssam 		sn = dumplo + (unsigned)start / lp->d_secsize;
92230519Ssam 		cn = (sn + lp->d_partitions[vdpart(dev)].p_offset) /
92330519Ssam 		    lp->d_secpercyl;
92430519Ssam 		sn %= lp->d_secpercyl;
92530519Ssam 		tn = sn / lp->d_nsectors;
92630519Ssam 		sn %= lp->d_nsectors;
92730519Ssam 		vd->vd_mdcb.mdcb_head = (struct dcb *)vd->vd_dcbphys;
92830519Ssam 		vd->vd_dcb.trail.rwtrail.memadr = start;
92930519Ssam 		vd->vd_dcb.trail.rwtrail.wcount = (nsec * lp->d_secsize) >> 1;
93030519Ssam 		vd->vd_dcb.trail.rwtrail.disk.cylinder = cn;
93130519Ssam 		vd->vd_dcb.trail.rwtrail.disk.track = tn;
93230519Ssam 		vd->vd_dcb.trail.rwtrail.disk.sector = sn;
93330519Ssam 		vd->vd_dcb.operrsta = 0;
93430519Ssam 		VDGO(vm->um_addr, vd->vd_mdcbphys, vd->vd_type);
93530519Ssam 		if (!vdpoll(vm, 5)) {
93630519Ssam 			printf(" during dump\n");
93730519Ssam 			return (EIO);
93830519Ssam 		}
93930519Ssam 		if (vd->vd_dcb.operrsta & VDERR_HARD) {
94030519Ssam 			printf("dk%d: hard error, status=%b\n", unit,
94130519Ssam 			    vd->vd_dcb.operrsta, VDERRBITS);
94230519Ssam 			return (EIO);
94330519Ssam 		}
94430519Ssam 		start += nsec * lp->d_secsize;
94530519Ssam 		num -= nsec;
94625675Ssam 	}
94730519Ssam 	return (0);
94824004Ssam }
94924004Ssam 
95024004Ssam vdsize(dev)
95125675Ssam 	dev_t dev;
95224004Ssam {
95330519Ssam 	register int unit = vdunit(dev);
95430519Ssam 	register struct dksoftc *dk;
95530519Ssam 	struct vba_device *vi;
95630519Ssam 	struct disklabel *lp;
95724004Ssam 
95830519Ssam 	if (unit >= NDK || (vi = vddinfo[unit]) == 0 || vi->ui_alive == 0 ||
95930519Ssam 	    (dk = &dksoftc[unit])->dk_state != OPEN)
96025675Ssam 		return (-1);
96130519Ssam 	lp = &dklabel[unit];
96230573Skarels 	return ((int)lp->d_partitions[vdpart(dev)].p_size);
96324004Ssam }
96424004Ssam 
96525675Ssam /*
96625675Ssam  * Perform a controller reset.
96725675Ssam  */
96830519Ssam vdreset_ctlr(vm)
96930519Ssam 	register struct vba_ctlr *vm;
97024004Ssam {
97130519Ssam 	register struct vddevice *vdaddr = (struct vddevice *)vm->um_addr;
97230519Ssam 	register struct vdsoftc *vd = &vdsoftc[vm->um_ctlr];
97330519Ssam 	register int unit;
97430519Ssam 	struct vba_device *vi;
97525675Ssam 
97630519Ssam 	VDRESET(vdaddr, vd->vd_type);
97730519Ssam 	if (vd->vd_type == VDTYPE_SMDE) {
97830519Ssam 		vdaddr->vdcsr = 0;
97930519Ssam 		vdaddr->vdtcf_mdcb = AM_ENPDA;
98030519Ssam 		vdaddr->vdtcf_dcb = AM_ENPDA;
98130519Ssam 		vdaddr->vdtcf_trail = AM_ENPDA;
98230519Ssam 		vdaddr->vdtcf_data = AM_ENPDA;
98330519Ssam 		vdaddr->vdccf = CCF_STS | XMD_32BIT | BSZ_16WRD |
98425675Ssam 		    CCF_ENP | CCF_EPE | CCF_EDE | CCF_ECE | CCF_ERR;
98525675Ssam 	}
98630519Ssam 	if (!vdcmd(vm, VDOP_INIT, 10) || !vdcmd(vm, VDOP_DIAG, 10)) {
98730519Ssam 		printf("%s cmd failed\n",
98830519Ssam 		    vd->vd_dcb.opcode == VDOP_INIT ? "init" : "diag");
98930370Skarels 		return;
99025675Ssam 	}
99130519Ssam 	for (unit = 0; unit < NDK; unit++)
99230519Ssam 		if ((vi = vddinfo[unit])->ui_mi == vm && vi->ui_alive)
99330519Ssam 			(void) vdreset_drive(vi);
99430519Ssam }
99530519Ssam 
99630519Ssam vdreset_drive(vi)
99730519Ssam 	register struct vba_device *vi;
99830519Ssam {
99930519Ssam 	register struct disklabel *lp = &dklabel[vi->ui_unit];
100030519Ssam 	struct vba_ctlr *vm = vdminfo[vi->ui_ctlr];
100130519Ssam 	struct vddevice *vdaddr = (struct vddevice *)vm->um_addr;
100230519Ssam 	struct vdsoftc *vd = &vdsoftc[vi->ui_ctlr];
100330519Ssam 
100430519Ssam top:
100530519Ssam 	vd->vd_dcb.opcode = VDOP_CONFIG;		/* command */
100630519Ssam 	vd->vd_dcb.intflg = DCBINT_NONE;
100730519Ssam 	vd->vd_dcb.nxtdcb = (struct dcb *)0;	/* end of chain */
100830519Ssam 	vd->vd_dcb.operrsta = 0;
100930519Ssam 	vd->vd_dcb.devselect = vi->ui_slave;
101030519Ssam 	vd->vd_dcb.trail.rstrail.ncyl = lp->d_ncylinders;
101130519Ssam 	vd->vd_dcb.trail.rstrail.nsurfaces = lp->d_ntracks;
101230519Ssam 	if (vd->vd_type == VDTYPE_SMDE) {
101330519Ssam 		vd->vd_dcb.trailcnt = sizeof (treset) / sizeof (long);
101430519Ssam 		vd->vd_dcb.trail.rstrail.nsectors = lp->d_nsectors;
101530519Ssam 		vd->vd_dcb.trail.rstrail.slip_sec = lp->d_trackskew;
101630519Ssam 		vd->vd_dcb.trail.rstrail.recovery = 0x18f;
101730519Ssam 	} else
101830519Ssam 		vd->vd_dcb.trailcnt = 2;		/* XXX */
101930519Ssam 	vd->vd_mdcb.mdcb_head = (struct dcb *)vd->vd_dcbphys;
102030519Ssam 	vd->vd_mdcb.mdcb_status = 0;
102130519Ssam 	VDGO(vdaddr, vd->vd_mdcbphys, vd->vd_type);
102230519Ssam 	if (!vdpoll(vm, 5)) {
102330519Ssam 		printf(" during config\n");
102430519Ssam 		return (0);
102525675Ssam 	}
102630519Ssam 	if (vd->vd_dcb.operrsta & VDERR_HARD) {
102730519Ssam 		if (vd->vd_type == VDTYPE_SMDE &&
102830519Ssam 		    (vdaddr->vdstatus[vi->ui_slave]&STA_US) == 0)
102930519Ssam 			return (0);
103030519Ssam 		if ((vd->vd_dcb.operrsta & (DCBS_OCYL|DCBS_NRDY)) == 0)
103130519Ssam 			printf("dk%d: config error\n", vi->ui_unit);
103230519Ssam 		else if ((vd->vd_flags&VD_STARTED) == 0) {
103330519Ssam 			int started;
103430519Ssam 
103530519Ssam 			printf("vd%d: starting drives, wait ... ", vm->um_ctlr);
103630519Ssam 			vd->vd_flags |= VD_STARTED;
103730519Ssam 			started = (vdcmd(vm, VDOP_START, 10) == 1);
103830519Ssam 			DELAY(62000000);
103930519Ssam 			printf("\n");
104030519Ssam 			if (started)
104130519Ssam 				goto top;
104230519Ssam 		}
104330519Ssam 		return (0);
104430519Ssam 	}
104530519Ssam 	return (1);
104625675Ssam }
104724004Ssam 
104825675Ssam /*
104930519Ssam  * Perform a command w/o trailer.
105025675Ssam  */
105130519Ssam vdcmd(vm, cmd, t)
105230519Ssam 	register struct vba_ctlr *vm;
105325675Ssam {
105430519Ssam 	register struct vdsoftc *vd = &vdsoftc[vm->um_ctlr];
105525675Ssam 
105630519Ssam 	vd->vd_dcb.opcode = cmd;		/* command */
105730519Ssam 	vd->vd_dcb.intflg = DCBINT_NONE;
105830519Ssam 	vd->vd_dcb.nxtdcb = (struct dcb *)0;	/* end of chain */
105930519Ssam 	vd->vd_dcb.operrsta = 0;
106030519Ssam 	vd->vd_dcb.devselect = 0;
106130519Ssam 	vd->vd_dcb.trailcnt = 0;
106230519Ssam 	vd->vd_mdcb.mdcb_head = (struct dcb *)vd->vd_dcbphys;
106330519Ssam 	vd->vd_mdcb.mdcb_status = 0;
106430519Ssam 	VDGO(vm->um_addr, vd->vd_mdcbphys, vd->vd_type);
106530519Ssam 	if (!vdpoll(vm, t)) {
106630519Ssam 		printf(" during init\n");
106730370Skarels 		return (0);
106830370Skarels 	}
106930519Ssam 	return ((vd->vd_dcb.operrsta&VDERR_HARD) == 0);
107025675Ssam }
107125675Ssam 
107225925Ssam /*
107330519Ssam  * Poll controller until operation
107430519Ssam  * completes or timeout expires.
107525925Ssam  */
107630519Ssam vdpoll(vm, t)
107730519Ssam 	register struct vba_ctlr *vm;
107825925Ssam 	register int t;
107925925Ssam {
108030519Ssam 	register struct vdsoftc *vd = &vdsoftc[vm->um_ctlr];
108130519Ssam 	register struct vddevice *vdaddr = (struct vddevice *)vm->um_addr;
108225925Ssam 
108325925Ssam 	t *= 1000;
108430370Skarels 	for (;;) {
108530519Ssam 		uncache(&vd->vd_dcb.operrsta);
108630519Ssam 		if (vd->vd_dcb.operrsta & (DCBS_DONE|DCBS_ABORT))
108730370Skarels 			break;
108825925Ssam 		if (--t <= 0) {
108930519Ssam 			printf("vd%d: controller timeout", vm->um_ctlr);
109030519Ssam 			VDABORT(vdaddr, vd->vd_type);
109125925Ssam 			DELAY(30000);
109225925Ssam 			return (0);
109325925Ssam 		}
109430370Skarels 		DELAY(1000);
109525925Ssam 	}
109630519Ssam 	if (vd->vd_type == VDTYPE_SMDE) {
109730519Ssam 		do {
109825925Ssam 			DELAY(50);
109930519Ssam 			uncache(&vdaddr->vdcsr);
110030519Ssam 		} while (vdaddr->vdcsr & CS_GO);
110125925Ssam 		DELAY(300);
110225925Ssam 	}
110325925Ssam 	DELAY(200);
110430519Ssam 	uncache(&vd->vd_dcb.operrsta);
110525925Ssam 	return (1);
110625925Ssam }
110725925Ssam 
110830519Ssam #ifdef COMPAT_42
110930519Ssam struct	vdst {
111030519Ssam 	int	nsec;		/* sectors/track */
111130519Ssam 	int	ntrack;		/* tracks/cylinder */
111230519Ssam 	int	ncyl;		/* cylinders */
111330519Ssam 	char	*name;		/* type name */
111430519Ssam 	struct {
111530519Ssam 		int	off;	/* partition offset in sectors */
111630519Ssam 		int	size;	/* partition size in sectors */
111730573Skarels 	} parts[8];
111830519Ssam } vdst[] = {
111930573Skarels 	{ 48, 24, 711, "xsd",
112030573Skarels 		{0,	 30528},	/* a cyl   0 - 52 */
112130573Skarels 		{30528,	 30528},	/* b cyl  53 - 105 */
112230573Skarels 		{61056,	 345600}, 	/* c cyl 106 - 705 */
112330573Skarels 		{118656, 288000}, 	/* d cyl 206 - 705 */
112430573Skarels 		{176256, 230400},	/* e cyl 306 - 705 */
112530573Skarels 		{233856, 172800}, 	/* f cyl 406 - 705 */
112630573Skarels 		{291456, 115200},	/* g cyl 506 - 705 */
112730573Skarels 		{349056, 57600}		/* h cyl 606 - 705 */
112830573Skarels 	},
112930573Skarels 	{ 44, 20, 842, "egl",
113030573Skarels 		{0,	 26400},	/* egl0a cyl   0 - 59 */
113130573Skarels 		{26400,	 33000},	/* egl0b cyl  60 - 134 */
113230573Skarels 		{59400,	 308880}, 	/* egl0c cyl 135 - 836 */
113330573Skarels 		{368280, 2640}, 	/* egl0d cyl 837 - 842 */
113430573Skarels 		{0, 368280},		/* egl0e cyl 0 - 836 */
113530573Skarels 		{0, 370920}, 		/* egl0f cyl 0 - 842 */
113630573Skarels 		{59400, 155320},	/* egl0g cyl 135 - 487 */
113730573Skarels 		{214720, 153560}	/* egl0h cyl 488 - 836 */
113830573Skarels 	},
113930573Skarels 	{ 64, 10, 823, "fuj",
114030573Skarels 		{0,	 19200},	/* fuj0a cyl   0 - 59 */
114130573Skarels 		{19200,	 24000},	/* fuj0b cyl  60 - 134 */
114230573Skarels 		{43200,	 218560}, 	/* fuj0c cyl 135 - 817 */
114330573Skarels 		{79680,	 182080}, 	/* fuj0d cyl 249 - 817 */
114430573Skarels 		{116160, 145600},	/* fuj0e cyl 363 - 817 */
114530573Skarels 		{152640, 109120}, 	/* fuj0f cyl 477 - 817 */
114630573Skarels 		{189120, 72640},	/* fuj0g cyl 591 - 817 */
114730573Skarels 		{225600, 36160}		/* fug0h cyl 705 - 817 */
114830573Skarels 	},
114930573Skarels 	{ 32, 24, 711, "xfd",
115030573Skarels 		{ 0,	 20352 },	/* a cyl   0 - 52 */
115130573Skarels 		{ 20352, 20352 },	/* b cyl  53 - 105 */
115230573Skarels 		{ 40704, 230400 },	/* c cyl 106 - 705 */
115330573Skarels 		{ 0,	 40704 },	/* d cyl 709 - 710 (a & b) */
115430573Skarels 		{ 0,	 271104 },	/* e cyl   0 - 705 */
115530573Skarels 		{ 20352, 250752 },	/* f cyl  53 - 705 (b & c) */
115630573Skarels 		{ 40704, 115200 },	/* g cyl 106 - 405 (1/2 of c) */
115730573Skarels 		{ 155904,115200 }	/* h cyl 406 - 705 (1/2 of c) */
115830573Skarels 	},
115930573Skarels 	{ 32, 19, 823, "smd",
116030573Skarels 		{0,	 20064},	/* a cyl   0-65 */
116130573Skarels 		{20064, 13680},		/* b cyl  66-110 */
116230573Skarels 		{33744, 214928},	/* c cyl 111-817 */
116330573Skarels 		{69616,	 179056},	/* d cyl 229 - 817 */
116430573Skarels 		{105488, 143184},	/* e cyl 347 - 817 */
116530573Skarels 		{141360, 107312},	/* f cyl 465 - 817 */
116630573Skarels 		{177232, 71440},	/* g cyl 583 - 817 */
116730573Skarels 		{213104, 35568}		/* h cyl 701 - 817 */
116830573Skarels 	},
116930573Skarels 	{ 32, 10, 823, "fsd",
117030573Skarels 		{0,	 9600},		/* a cyl   0 -  59 */
117130573Skarels 		{9600,	 12000},	/* b cyl  60 - 134 */
117230573Skarels 		{21600,	 109280},	/* c cyl 135 - 817 */
117330573Skarels 		{39840,	 91040},	/* d cyl 249 - 817 */
117430573Skarels 		{58080,	 72800},	/* e cyl 363 - 817 */
117530573Skarels 		{76320,	 54560},	/* f cyl 477 - 817 */
117630573Skarels 		{94560,  36320},	/* g cyl 591 - 817 */
117730573Skarels 		{112800, 18080}		/* h cyl 705 - 817 */
117830573Skarels 	}
117930519Ssam };
118030519Ssam #define	NVDST	(sizeof (vdst) / sizeof (vdst[0]))
118130519Ssam 
118225675Ssam /*
118330519Ssam  * Construct a label for an unlabeled pack.  We
118430519Ssam  * deduce the drive type by reading from the last
118530519Ssam  * track on successively smaller drives until we
118630519Ssam  * don't get an error.
118725675Ssam  */
118830519Ssam vdmaptype(vi, lp)
118930519Ssam 	register struct vba_device *vi;
119030519Ssam 	register struct disklabel *lp;
119125675Ssam {
119230519Ssam 	register struct vdsoftc *vd;
119330519Ssam 	register struct vdst *p;
119430519Ssam 	struct vba_ctlr *vm = vdminfo[vi->ui_ctlr];
119530519Ssam 	int i;
119625675Ssam 
119730519Ssam 	vd = &vdsoftc[vi->ui_ctlr];
119830519Ssam 	for (p = vdst; p < &vdst[NVDST]; p++) {
119930519Ssam 		if (vd->vd_type == VDTYPE_VDDC && p->nsec != 32)
120030519Ssam 			continue;
120130519Ssam 		lp->d_nsectors = p->nsec;
120230519Ssam 		lp->d_ntracks = p->ntrack;
120330519Ssam 		lp->d_ncylinders = p->ncyl;
120430519Ssam 		if (!vdreset_drive(vi))
120530519Ssam 			return (0);
120630519Ssam 		vd->vd_dcb.opcode = VDOP_RD;
120730519Ssam 		vd->vd_dcb.intflg = DCBINT_NONE;
120830519Ssam 		vd->vd_dcb.nxtdcb = (struct dcb *)0;	/* end of chain */
120930519Ssam 		vd->vd_dcb.devselect = vi->ui_slave;
121030519Ssam 		vd->vd_dcb.trailcnt = sizeof (trrw) / sizeof (long);
121130519Ssam 		vd->vd_dcb.trail.rwtrail.memadr = (char *)
121230519Ssam 		    vtoph((struct proc *)0, (unsigned)vd->vd_rawbuf);
121330519Ssam 		vd->vd_dcb.trail.rwtrail.wcount = 512 / sizeof(short);
121430519Ssam 		vd->vd_dcb.operrsta = 0;
121530519Ssam 		vd->vd_dcb.trail.rwtrail.disk.cylinder = p->ncyl - 2;
121630519Ssam 		vd->vd_dcb.trail.rwtrail.disk.track = p->ntrack - 1;
121730519Ssam 		vd->vd_dcb.trail.rwtrail.disk.sector = p->nsec - 1;
121830519Ssam 		vd->vd_mdcb.mdcb_head = (struct dcb *)vd->vd_dcbphys;
121930519Ssam 		vd->vd_mdcb.mdcb_status = 0;
122030519Ssam 		VDGO(vm->um_addr, vd->vd_mdcbphys, vd->vd_type);
122130519Ssam 		if (!vdpoll(vm, 60))
122230519Ssam 			printf(" during probe\n");
122330519Ssam 		if ((vd->vd_dcb.operrsta & VDERR_HARD) == 0)
122430519Ssam 			break;
122524004Ssam 	}
122630519Ssam 	if (p >= &vdst[NVDST]) {
122730519Ssam 		printf("dk%d: unknown drive type\n", vi->ui_unit);
122830519Ssam 		return (0);
122930519Ssam 	}
123030573Skarels 	for (i = 0; i < 8; i++) {
123130519Ssam 		lp->d_partitions[i].p_offset = p->parts[i].off;
123230519Ssam 		lp->d_partitions[i].p_size = p->parts[i].size;
123330519Ssam 	}
123430573Skarels 	lp->d_npartitions = 8;
123530519Ssam 	lp->d_secpercyl = lp->d_nsectors * lp->d_ntracks;
123630519Ssam 	lp->d_rpm = 3600;
123730519Ssam 	lp->d_secsize = 512;
123830519Ssam 	bcopy(p->name, lp->d_typename, 4);
123930519Ssam 	return (1);
124024004Ssam }
124130519Ssam #endif COMPAT_42
124224004Ssam #endif
1243