xref: /csrg-svn/sys/tahoe/vba/vd.c (revision 34562)
134528Skarels /*
234528Skarels  * Copyright (c) 1988 Regents of the University of California.
334528Skarels  * All rights reserved.
434528Skarels  *
534528Skarels  * Redistribution and use in source and binary forms are permitted
634528Skarels  * provided that this notice is preserved and that due credit is given
734528Skarels  * to the University of California at Berkeley. The name of the University
834528Skarels  * may not be used to endorse or promote products derived from this
934528Skarels  * software without specific prior written permission. This software
1034528Skarels  * is provided ``as is'' without express or implied warranty.
1134528Skarels  *
12*34562Skarels  *	@(#)vd.c	1.27 (Berkeley) 05/31/88
1334528Skarels  */
1424004Ssam 
1529564Ssam #include "dk.h"
1624004Ssam #if NVD > 0
1724004Ssam /*
1830519Ssam  * Versabus VDDC/SMDE driver.
1925675Ssam  */
2025675Ssam #include "param.h"
2125675Ssam #include "buf.h"
2225675Ssam #include "cmap.h"
2325675Ssam #include "conf.h"
2425675Ssam #include "dir.h"
2529564Ssam #include "dkstat.h"
2630519Ssam #include "disklabel.h"
2725675Ssam #include "map.h"
2830519Ssam #include "file.h"
2925675Ssam #include "systm.h"
3025675Ssam #include "user.h"
3125675Ssam #include "vmmac.h"
3225675Ssam #include "proc.h"
3325675Ssam #include "uio.h"
3430370Skarels #include "syslog.h"
3530370Skarels #include "kernel.h"
3630519Ssam #include "ioctl.h"
3730756Skarels #include "stat.h"
3824004Ssam 
3929951Skarels #include "../tahoe/cpu.h"
4029951Skarels #include "../tahoe/mtpr.h"
4129951Skarels #include "../tahoe/pte.h"
4229951Skarels 
4325675Ssam #include "../tahoevba/vbavar.h"
4425928Ssam #include "../tahoevba/vdreg.h"
4524004Ssam 
4632211Skarels #ifndef	COMPAT_42
4730519Ssam #define	COMPAT_42
4832211Skarels #endif
4934396Skarels #define	B_FORMAT	B_XXX		/* XXX */
5030519Ssam 
5130519Ssam #define vdunit(dev)	(minor(dev) >> 3)
5230519Ssam #define vdpart(dev)	(minor(dev) & 0x07)
5330519Ssam #define	vdminor(unit,part)	(((unit) << 3) | (part))
5424004Ssam 
5524004Ssam struct	vba_ctlr *vdminfo[NVD];
5629564Ssam struct  vba_device *vddinfo[NDK];
5730756Skarels int	vdprobe(), vdslave(), vdattach(), vddgo(), vdstrategy();
5834528Skarels long	vdstd[] = { 0xffff2000, 0xffff2100, 0xffff2200, 0xffff2300, 0 };
5925675Ssam struct	vba_driver vddriver =
6034528Skarels   { vdprobe, vdslave, vdattach, vddgo, vdstd, "dk", vddinfo, "vd", vdminfo };
6124004Ssam 
6224004Ssam /*
6330519Ssam  * Per-controller state.
6430519Ssam  */
6530519Ssam struct vdsoftc {
6630519Ssam 	u_short	vd_flags;
6730519Ssam #define	VD_INIT		0x1	/* controller initialized */
6830519Ssam #define	VD_STARTED	0x2	/* start command issued */
6930519Ssam #define	VD_DOSEEKS	0x4	/* should overlap seeks */
7030756Skarels #define	VD_SCATGATH	0x8	/* can do scatter-gather commands (correctly) */
7130519Ssam 	u_short	vd_type;	/* controller type */
7230519Ssam 	u_short	vd_wticks;	/* timeout */
7330519Ssam 	struct	mdcb vd_mdcb;	/* master command block */
7430519Ssam 	u_long	vd_mdcbphys;	/* physical address of vd_mdcb */
7530519Ssam 	struct	dcb vd_dcb;	/* i/o command block */
7630519Ssam 	u_long	vd_dcbphys;	/* physical address of vd_dcb */
7730601Skarels 	struct	vb_buf vd_rbuf;	/* vba resources */
7830519Ssam } vdsoftc[NVD];
7930519Ssam 
8034396Skarels #define	VDMAXTIME	20	/* max time for operation, sec. */
8134396Skarels 
8230519Ssam /*
8325675Ssam  * Per-drive state.
8425675Ssam  */
8530519Ssam struct	dksoftc {
8634076Skarels 	int	dk_state;	/* open fsm */
8730756Skarels #ifndef SECSIZE
8830756Skarels 	u_short	dk_bshift;	/* shift for * (DEV_BSIZE / sectorsize) XXX */
8930756Skarels #endif SECSIZE
9034076Skarels 	int	dk_wlabel;	/* label sector is currently writable */
9132576Skarels 	u_long	dk_copenpart;	/* character units open on this drive */
9232576Skarels 	u_long	dk_bopenpart;	/* block units open on this drive */
9332576Skarels 	u_long	dk_openpart;	/* all units open on this drive */
9430519Ssam 	u_int	dk_curcyl;	/* last selected cylinder */
9530756Skarels 	struct	skdcb dk_dcb;	/* seek command block */
9630519Ssam 	u_long	dk_dcbphys;	/* physical address of dk_dcb */
9734396Skarels 	int	df_reg[3];	/* for formatting, in-out parameters */
9830519Ssam } dksoftc[NDK];
9924004Ssam 
10024004Ssam /*
10130519Ssam  * Drive states.  Used during steps of open/initialization.
10230519Ssam  * States < OPEN (> 0) are transient, during an open operation.
10334076Skarels  * OPENRAW is used for unlabeled disks, to allow format operations.
10425675Ssam  */
10530519Ssam #define	CLOSED		0		/* disk is closed */
10630519Ssam #define	WANTOPEN	1		/* open requested, not started */
10730519Ssam #define	WANTOPENRAW	2		/* open requested, no label */
10830519Ssam #define	RDLABEL		3		/* reading pack label */
10930519Ssam #define	OPEN		4		/* intialized and ready */
11030519Ssam #define	OPENRAW		5		/* open, no label */
11124004Ssam 
11230519Ssam struct	buf dkutab[NDK];	/* i/o queue headers */
11330519Ssam struct	disklabel dklabel[NDK];	/* pack labels */
11424004Ssam 
11530519Ssam #define b_cylin	b_resid
11630574Skarels #define	b_track	b_error		/* used for seek commands */
11730574Skarels #define	b_seekf	b_forw		/* second queue on um_tab */
11830574Skarels #define	b_seekl	b_back		/* second queue on um_tab */
11930519Ssam 
12030519Ssam int	vdwstart, vdwatch();
12130519Ssam 
12224004Ssam /*
12325675Ssam  * See if the controller is really there; if so, initialize it.
12425675Ssam  */
12525857Ssam vdprobe(reg, vm)
12625857Ssam 	caddr_t reg;
12725857Ssam 	struct vba_ctlr *vm;
12825675Ssam {
12925857Ssam 	register br, cvec;		/* must be r12, r11 */
13030519Ssam 	register struct vddevice *vdaddr = (struct vddevice *)reg;
13130519Ssam 	struct vdsoftc *vd;
13230573Skarels 	int s;
13325857Ssam 
13430370Skarels #ifdef lint
13530370Skarels 	br = 0; cvec = br; br = cvec;
13630370Skarels 	vdintr(0);
13730370Skarels #endif
13825857Ssam 	if (badaddr((caddr_t)reg, 2))
13925675Ssam 		return (0);
14030519Ssam 	vd = &vdsoftc[vm->um_ctlr];
14130519Ssam 	vdaddr->vdreset = 0xffffffff;
14225675Ssam 	DELAY(1000000);
14330519Ssam 	if (vdaddr->vdreset != (unsigned)0xffffffff) {
14430519Ssam 		vd->vd_type = VDTYPE_VDDC;
14530519Ssam 		vd->vd_flags &= ~VD_DOSEEKS;
14625675Ssam 		DELAY(1000000);
14725675Ssam 	} else {
14830519Ssam 		vd->vd_type = VDTYPE_SMDE;
14930519Ssam 		vd->vd_flags |= VD_DOSEEKS;
15030519Ssam 		vdaddr->vdrstclr = 0;
15125675Ssam 		DELAY(3000000);
15230519Ssam 		vdaddr->vdcsr = 0;
15330519Ssam 		vdaddr->vdtcf_mdcb = AM_ENPDA;
15430519Ssam 		vdaddr->vdtcf_dcb = AM_ENPDA;
15530519Ssam 		vdaddr->vdtcf_trail = AM_ENPDA;
15630519Ssam 		vdaddr->vdtcf_data = AM_ENPDA;
15730519Ssam 		vdaddr->vdccf = CCF_SEN | CCF_DER | CCF_STS |
15829921Skarels 		    XMD_32BIT | BSZ_16WRD |
15925925Ssam 		    CCF_ENP | CCF_EPE | CCF_EDE | CCF_ECE | CCF_ERR;
16025675Ssam 	}
16130519Ssam 	vd->vd_mdcbphys = vtoph((struct proc *)0, (unsigned)&vd->vd_mdcb);
16230519Ssam 	vd->vd_dcbphys = vtoph((struct proc *)0, (unsigned)&vd->vd_dcb);
16330519Ssam 	vm->um_addr = reg;		/* XXX */
16430573Skarels 	s = spl7();
16530519Ssam 	if (!vdcmd(vm, VDOP_INIT, 10) || !vdcmd(vm, VDOP_DIAG, 10)) {
16630519Ssam 		printf("vd%d: %s cmd failed\n", vm->um_ctlr,
16730519Ssam 		    vd->vd_dcb.opcode == VDOP_INIT ? "init" : "diag");
16830573Skarels 		splx(s);
16930519Ssam 		return (0);
17030519Ssam 	}
17130756Skarels 	if (vd->vd_type == VDTYPE_SMDE) {
17230756Skarels 		vd->vd_dcb.trail.idtrail.date = 0;
17330756Skarels 		if (vdcmd(vm, VDOP_IDENT, 10)) {
17430756Skarels 			uncache(&vd->vd_dcb.trail.idtrail.date);
17530756Skarels 			if (vd->vd_dcb.trail.idtrail.date != 0)
17630756Skarels 				vd->vd_flags |= VD_SCATGATH;
17730756Skarels 		}
17830756Skarels 	}
17930573Skarels 	splx(s);
18025925Ssam 	/*
18125950Ssam 	 * Allocate page tables and i/o buffer.
18225925Ssam 	 */
18332211Skarels 	if (vbainit(&vd->vd_rbuf, MAXPHYS,
18432211Skarels 	    vd->vd_type == VDTYPE_VDDC ? VB_24BIT : VB_32BIT) == 0) {
18532211Skarels 		printf("vd%d: vbainit failed\n", vm->um_ctlr);
18632211Skarels 		return (0);
18732211Skarels 	}
18825857Ssam 	br = 0x17, cvec = 0xe0 + vm->um_ctlr;	/* XXX */
18930519Ssam 	return (sizeof (struct vddevice));
19025675Ssam }
19124004Ssam 
19224004Ssam /*
19330519Ssam  * See if a drive is really there.
19430519Ssam  *
19530519Ssam  * Can't read pack label here as various data structures
19630519Ssam  * aren't setup for doing a read in a straightforward
19730519Ssam  * manner.  Instead just probe for the drive and leave
19830519Ssam  * the pack label stuff to the attach routine.
19925675Ssam  */
20034076Skarels /* ARGSUSED */
20134076Skarels vdslave(vi, vdaddr)
20225675Ssam 	register struct vba_device *vi;
20330519Ssam 	struct vddevice *vdaddr;
20425675Ssam {
20530519Ssam 	register struct disklabel *lp = &dklabel[vi->ui_unit];
20632211Skarels 	register struct dksoftc *dk = &dksoftc[vi->ui_unit];
20730519Ssam 	struct vdsoftc *vd = &vdsoftc[vi->ui_ctlr];
20824004Ssam 
20930519Ssam 	if ((vd->vd_flags&VD_INIT) == 0) {
21030756Skarels 		printf("vd%d: %s controller%s\n", vi->ui_ctlr,
21130756Skarels 		    vd->vd_type == VDTYPE_VDDC ? "VDDC" : "SMDE",
21230756Skarels 		    (vd->vd_flags & VD_SCATGATH) ? " with scatter-gather" : "");
21330519Ssam 		vd->vd_flags |= VD_INIT;
21425675Ssam 	}
21530519Ssam 
21625675Ssam 	/*
21730519Ssam 	 * Initialize label enough to do a reset on
21830519Ssam 	 * the drive.  The remainder of the default
21930519Ssam 	 * label values will be filled in in vdinit
22030519Ssam 	 * at attach time.
22125675Ssam 	 */
22232211Skarels 	if (vd->vd_type == VDTYPE_SMDE)
22332211Skarels 		lp->d_secsize = VD_MAXSECSIZE;
22432211Skarels 	else
22532211Skarels 		lp->d_secsize = VDDC_SECSIZE;
22634396Skarels 	lp->d_nsectors = 66;		/* only used on smd-e */
22734076Skarels 	lp->d_ntracks = 23;
22834396Skarels 	lp->d_ncylinders = 850;
22934396Skarels 	lp->d_secpercyl = 66*23;
23024004Ssam 
23130519Ssam 	/*
23230519Ssam 	 * Initialize invariant portion of
23330519Ssam 	 * dcb used for overlapped seeks.
23430519Ssam 	 */
23530519Ssam 	dk->dk_dcb.opcode = VDOP_SEEK;
23630519Ssam 	dk->dk_dcb.intflg = DCBINT_NONE | DCBINT_PBA;
23730519Ssam 	dk->dk_dcb.devselect = vi->ui_slave;
23830756Skarels 	dk->dk_dcb.trailcnt = sizeof (struct trseek) / sizeof (long);
23930519Ssam 	dk->dk_dcb.trail.sktrail.skaddr.sector = 0;
24030519Ssam 	dk->dk_dcbphys = vtoph((struct proc *)0, (unsigned)&dk->dk_dcb);
24132211Skarels #ifndef SECSIZE
24232211Skarels 	vd_setsecsize(dk, lp);
24332211Skarels #endif
24432211Skarels 	return (vdreset_drive(vi));
24532211Skarels }
24632211Skarels 
24732211Skarels vdattach(vi)
24832211Skarels 	register struct vba_device *vi;
24932211Skarels {
25032211Skarels 	register int unit = vi->ui_unit;
25132211Skarels 	register struct disklabel *lp = &dklabel[unit];
25232211Skarels 
25330601Skarels 	/*
25430601Skarels 	 * Try to initialize device and read pack label.
25530601Skarels 	 */
25630601Skarels 	if (vdinit(vdminor(unit, 0), 0) != 0) {
25730601Skarels 		printf(": unknown drive type");
25830601Skarels 		return;
25930601Skarels 	}
26032211Skarels 	if (dksoftc[unit].dk_state == OPEN)
26132211Skarels 		printf(": %s <secsize %d, ntrak %d, ncyl %d, nsec %d>",
26232211Skarels 		    lp->d_typename, lp->d_secsize,
26332211Skarels 		    lp->d_ntracks, lp->d_ncylinders, lp->d_nsectors);
26430519Ssam 	/*
26530519Ssam 	 * (60 / rpm) / (sectors per track * (bytes per sector / 2))
26630519Ssam 	 */
26730519Ssam 	if (vi->ui_dk >= 0)
26830519Ssam 		dk_mspw[vi->ui_dk] = 120.0 /
26930519Ssam 		    (lp->d_rpm * lp->d_nsectors * lp->d_secsize);
27030519Ssam #ifdef notyet
27130573Skarels 	addswap(makedev(VDMAJOR, vdminor(unit, 0)), lp);
27230519Ssam #endif
27324004Ssam }
27424004Ssam 
27530756Skarels vdopen(dev, flags, fmt)
27630519Ssam 	dev_t dev;
27730756Skarels 	int flags, fmt;
27824004Ssam {
27930519Ssam 	register unit = vdunit(dev);
28030519Ssam 	register struct disklabel *lp;
28130519Ssam 	register struct dksoftc *dk;
28230519Ssam 	register struct partition *pp;
28330519Ssam 	struct vba_device *vi;
28430756Skarels 	int s, error, part = vdpart(dev), mask = 1 << part;
28530519Ssam 	daddr_t start, end;
28624004Ssam 
28730519Ssam 	if (unit >= NDK || (vi = vddinfo[unit]) == 0 || vi->ui_alive == 0)
28830519Ssam 		return (ENXIO);
28930519Ssam 	lp = &dklabel[unit];
29030519Ssam 	dk = &dksoftc[unit];
29130519Ssam 
29230519Ssam 	s = spl7();
29330519Ssam 	while (dk->dk_state != OPEN && dk->dk_state != OPENRAW &&
29430519Ssam 	    dk->dk_state != CLOSED)
29530519Ssam 		sleep((caddr_t)dk, PZERO+1);
29630519Ssam 	splx(s);
29730519Ssam 	if (dk->dk_state != OPEN && dk->dk_state != OPENRAW)
29830519Ssam 		if (error = vdinit(dev, flags))
29930519Ssam 			return (error);
30030573Skarels 
30130573Skarels 	if (vdwstart == 0) {
30230573Skarels 		timeout(vdwatch, (caddr_t)0, hz);
30330573Skarels 		vdwstart++;
30430573Skarels 	}
30530519Ssam 	/*
30630519Ssam 	 * Warn if a partion is opened
30730519Ssam 	 * that overlaps another partition which is open
30830519Ssam 	 * unless one is the "raw" partition (whole disk).
30930519Ssam 	 */
31032211Skarels #define	RAWPART		8		/* 'x' partition */	/* XXX */
31132576Skarels 	if ((dk->dk_openpart & mask) == 0 && part != RAWPART) {
31230519Ssam 		pp = &lp->d_partitions[part];
31330519Ssam 		start = pp->p_offset;
31430519Ssam 		end = pp->p_offset + pp->p_size;
31530519Ssam 		for (pp = lp->d_partitions;
31630519Ssam 		     pp < &lp->d_partitions[lp->d_npartitions]; pp++) {
31730519Ssam 			if (pp->p_offset + pp->p_size <= start ||
31830519Ssam 			    pp->p_offset >= end)
31930519Ssam 				continue;
32030519Ssam 			if (pp - lp->d_partitions == RAWPART)
32130519Ssam 				continue;
32230519Ssam 			if (dk->dk_openpart & (1 << (pp - lp->d_partitions)))
32330519Ssam 				log(LOG_WARNING,
32430519Ssam 				    "dk%d%c: overlaps open partition (%c)\n",
32530519Ssam 				    unit, part + 'a',
32630519Ssam 				    pp - lp->d_partitions + 'a');
32730519Ssam 		}
32824004Ssam 	}
32930519Ssam 	if (part >= lp->d_npartitions)
33030519Ssam 		return (ENXIO);
33130756Skarels 	dk->dk_openpart |= mask;
33230756Skarels 	switch (fmt) {
33330756Skarels 	case S_IFCHR:
33430756Skarels 		dk->dk_copenpart |= mask;
33530756Skarels 		break;
33630756Skarels 	case S_IFBLK:
33730756Skarels 		dk->dk_bopenpart |= mask;
33830756Skarels 		break;
33930756Skarels 	}
34030519Ssam 	return (0);
34125675Ssam }
34224004Ssam 
34334528Skarels /* ARGSUSED */
34430756Skarels vdclose(dev, flags, fmt)
34530519Ssam 	dev_t dev;
34630756Skarels 	int flags, fmt;
34724004Ssam {
34830519Ssam 	register int unit = vdunit(dev);
34930519Ssam 	register struct dksoftc *dk = &dksoftc[unit];
35030756Skarels 	int part = vdpart(dev), mask = 1 << part;
35124004Ssam 
35230756Skarels 	switch (fmt) {
35330756Skarels 	case S_IFCHR:
35430756Skarels 		dk->dk_copenpart &= ~mask;
35530756Skarels 		break;
35630756Skarels 	case S_IFBLK:
35730756Skarels 		dk->dk_bopenpart &= ~mask;
35830756Skarels 		break;
35930756Skarels 	}
36030756Skarels 	if (((dk->dk_copenpart | dk->dk_bopenpart) & mask) == 0)
36130756Skarels 		dk->dk_openpart &= ~mask;
36230519Ssam 	/*
36330519Ssam 	 * Should wait for i/o to complete on this partition
36430519Ssam 	 * even if others are open, but wait for work on blkflush().
36530519Ssam 	 */
36630519Ssam 	if (dk->dk_openpart == 0) {
36730573Skarels 		int s = spl7();
36830573Skarels 		while (dkutab[unit].b_actf)
36930573Skarels 			sleep((caddr_t)dk, PZERO-1);
37030519Ssam 		splx(s);
37130519Ssam 		dk->dk_state = CLOSED;
37234076Skarels 		dk->dk_wlabel = 0;
37324004Ssam 	}
37430756Skarels 	return (0);
37525675Ssam }
37624004Ssam 
37730519Ssam vdinit(dev, flags)
37830519Ssam 	dev_t dev;
37930519Ssam 	int flags;
38025675Ssam {
38130519Ssam 	register struct disklabel *lp;
38230519Ssam 	register struct dksoftc *dk;
38330519Ssam 	struct vba_device *vi;
38430519Ssam 	int unit = vdunit(dev), error = 0;
38530756Skarels 	char *msg, *readdisklabel();
38630519Ssam 	extern int cold;
38725675Ssam 
38830519Ssam 	dk = &dksoftc[unit];
38930519Ssam 	if (flags & O_NDELAY) {
39030519Ssam 		dk->dk_state = OPENRAW;
39134528Skarels 		return (0);
39230519Ssam 	}
39330519Ssam 	dk->dk_state = RDLABEL;
39430519Ssam 	lp = &dklabel[unit];
39530519Ssam 	vi = vddinfo[unit];
39630756Skarels 	if (msg = readdisklabel(dev, vdstrategy, lp)) {
39734076Skarels 		if (cold) {
39830601Skarels 			printf(": %s", msg);
39934076Skarels 			dk->dk_state = CLOSED;
40034076Skarels 		} else {
40132211Skarels 			log(LOG_ERR, "dk%d: %s\n", unit, msg);
40234076Skarels 			dk->dk_state = OPENRAW;
40334076Skarels 		}
40430519Ssam #ifdef COMPAT_42
40534076Skarels 		if (vdmaptype(vi, lp))
40630519Ssam 			dk->dk_state = OPEN;
40730519Ssam #endif
40830756Skarels 	} else {
40930756Skarels 		/*
41030756Skarels 		 * Now that we have the label, configure
41130756Skarels 		 * the correct drive parameters.
41230756Skarels 		 */
41332211Skarels 		if (vdreset_drive(vi))
41432211Skarels 			dk->dk_state = OPEN;
41532211Skarels 		else {
41630756Skarels 			dk->dk_state = CLOSED;
41730756Skarels 			error = ENXIO;
41832211Skarels 		}
41925675Ssam 	}
42030756Skarels #ifndef SECSIZE
42132211Skarels 	vd_setsecsize(dk, lp);
42232211Skarels #endif
42330519Ssam 	wakeup((caddr_t)dk);
42430519Ssam 	return (error);
42524004Ssam }
42624004Ssam 
42732211Skarels #ifndef SECSIZE
42832211Skarels vd_setsecsize(dk, lp)
42932211Skarels 	register struct dksoftc *dk;
43032211Skarels 	register struct disklabel *lp;
43132211Skarels {
43232211Skarels 	int mul;
43332211Skarels 
43432211Skarels 	/*
43532211Skarels 	 * Calculate scaling shift for mapping
43632211Skarels 	 * DEV_BSIZE blocks to drive sectors.
43732211Skarels 	 */
43832211Skarels 	mul = DEV_BSIZE / lp->d_secsize;
43932211Skarels 	dk->dk_bshift = 0;
44032211Skarels 	while ((mul >>= 1) > 0)
44132211Skarels 		dk->dk_bshift++;
44232211Skarels }
44332211Skarels #endif SECSIZE
44432211Skarels 
44525675Ssam /*ARGSUSED*/
44630519Ssam vddgo(vm)
44730519Ssam 	struct vba_device *vm;
44824004Ssam {
44924004Ssam 
45024004Ssam }
45124004Ssam 
45224004Ssam vdstrategy(bp)
45325675Ssam 	register struct buf *bp;
45424004Ssam {
45530519Ssam 	register struct vba_device *vi;
45630519Ssam 	register struct disklabel *lp;
45730519Ssam 	register struct dksoftc *dk;
45830519Ssam 	register int unit;
45930573Skarels 	register daddr_t sn;
46030519Ssam 	struct buf *dp;
46130573Skarels 	daddr_t sz, maxsz;
46230519Ssam 	int part, s;
46324004Ssam 
46430519Ssam 	unit = vdunit(bp->b_dev);
46532211Skarels 	if (unit >= NDK) {
46629954Skarels 		bp->b_error = ENXIO;
46725675Ssam 		goto bad;
46829954Skarels 	}
46930519Ssam 	vi = vddinfo[unit];
47030519Ssam 	lp = &dklabel[unit];
47130519Ssam 	if (vi == 0 || vi->ui_alive == 0) {
47230519Ssam 		bp->b_error = ENXIO;
47330519Ssam 		goto bad;
47430519Ssam 	}
47530519Ssam 	dk = &dksoftc[unit];
47630519Ssam 	if (dk->dk_state < OPEN)
47730519Ssam 		goto q;
47834076Skarels 	if (dk->dk_state != OPEN && (bp->b_flags & B_READ) == 0) {
47934076Skarels 		bp->b_error = EROFS;
48034076Skarels 		goto bad;
48134076Skarels 	}
48230519Ssam 	part = vdpart(bp->b_dev);
48330519Ssam 	if ((dk->dk_openpart & (1 << part)) == 0) {
48430519Ssam 		bp->b_error = ENODEV;
48530519Ssam 		goto bad;
48630519Ssam 	}
48732211Skarels 	sz = (bp->b_bcount + lp->d_secsize - 1) / lp->d_secsize;
48830519Ssam 	maxsz = lp->d_partitions[part].p_size;
48930756Skarels #ifndef SECSIZE
49030756Skarels 	sn = bp->b_blkno << dk->dk_bshift;
49130756Skarels #else SECSIZE
49230573Skarels 	sn = bp->b_blkno;
49330756Skarels #endif SECSIZE
49434076Skarels 	if (sn + lp->d_partitions[part].p_offset <= LABELSECTOR &&
49534076Skarels #if LABELSECTOR != 0
49634076Skarels 	    sn + lp->d_partitions[part].p_offset + sz > LABELSECTOR &&
49734076Skarels #endif
49834076Skarels 	    (bp->b_flags & B_READ) == 0 && dk->dk_wlabel == 0) {
49934076Skarels 		bp->b_error = EROFS;
50034076Skarels 		goto bad;
50134076Skarels 	}
50230519Ssam 	if (sn < 0 || sn + sz > maxsz) {
50330519Ssam 		if (sn == maxsz) {
50429954Skarels 			bp->b_resid = bp->b_bcount;
50529954Skarels 			goto done;
50629954Skarels 		}
50730756Skarels 		sz = maxsz - sn;
50830573Skarels 		if (sz <= 0) {
50930573Skarels 			bp->b_error = EINVAL;
51030573Skarels 			goto bad;
51130573Skarels 		}
51230573Skarels 		bp->b_bcount = sz * lp->d_secsize;
51325675Ssam 	}
51430519Ssam 	bp->b_cylin = (sn + lp->d_partitions[part].p_offset) / lp->d_secpercyl;
51530756Skarels #ifdef SECSIZE
51630756Skarels if (bp->b_blksize != lp->d_secsize && (bp->b_flags & B_PGIN) == 0)
51730756Skarels panic("vdstrat blksize");
51830756Skarels #endif SECSIZE
51930519Ssam q:
52025675Ssam 	s = spl7();
52130519Ssam 	dp = &dkutab[vi->ui_unit];
52230519Ssam 	disksort(dp, bp);
52330519Ssam 	if (!dp->b_active) {
52430519Ssam 		(void) vdustart(vi);
52530573Skarels 		if (!vi->ui_mi->um_tab.b_active)
52630519Ssam 			vdstart(vi->ui_mi);
52724004Ssam 	}
52830519Ssam 	splx(s);
52924004Ssam 	return;
53025675Ssam bad:
53129954Skarels 	bp->b_flags |= B_ERROR;
53229954Skarels done:
53330519Ssam 	biodone(bp);
53430519Ssam 	return;
53524004Ssam }
53624004Ssam 
53730519Ssam vdustart(vi)
53830519Ssam 	register struct vba_device *vi;
53924004Ssam {
54030519Ssam 	register struct buf *bp, *dp;
54130519Ssam 	register struct vba_ctlr *vm;
54230519Ssam 	register int unit = vi->ui_unit;
54330519Ssam 	register struct dksoftc *dk;
54430519Ssam 	register struct vdsoftc *vd;
54530519Ssam 	struct disklabel *lp;
54624004Ssam 
54730519Ssam 	dp = &dkutab[unit];
54830519Ssam 	/*
54930519Ssam 	 * If queue empty, nothing to do.
55030519Ssam 	 */
55130519Ssam 	if ((bp = dp->b_actf) == NULL)
55230519Ssam 		return;
55330519Ssam 	/*
55430574Skarels 	 * If drive is off-cylinder and controller supports seeks,
55530574Skarels 	 * place drive on seek queue for controller.
55630574Skarels 	 * Otherwise, place on transfer queue.
55730519Ssam 	 */
55830519Ssam 	vd = &vdsoftc[vi->ui_ctlr];
55930519Ssam 	dk = &dksoftc[unit];
56030574Skarels 	vm = vi->ui_mi;
56130519Ssam 	if (bp->b_cylin != dk->dk_curcyl && vd->vd_flags&VD_DOSEEKS) {
56230519Ssam 		lp = &dklabel[unit];
56330574Skarels 		bp->b_track = (bp->b_blkno % lp->d_secpercyl) / lp->d_nsectors;
56430574Skarels 		if (vm->um_tab.b_seekf == NULL)
56530574Skarels 			vm->um_tab.b_seekf = dp;
56630574Skarels 		else
56730574Skarels 			vm->um_tab.b_seekl->b_forw = dp;
56830574Skarels 		vm->um_tab.b_seekl = dp;
56930574Skarels 	} else {
57030574Skarels 		if (vm->um_tab.b_actf == NULL)
57130574Skarels 			vm->um_tab.b_actf = dp;
57230574Skarels 		else
57330574Skarels 			vm->um_tab.b_actl->b_forw = dp;
57430574Skarels 		vm->um_tab.b_actl = dp;
57530519Ssam 	}
57630573Skarels 	dp->b_forw = NULL;
57730573Skarels 	dp->b_active++;
57825675Ssam }
57925675Ssam 
58025675Ssam /*
58130519Ssam  * Start next transfer on a controller.
58230574Skarels  * There are two queues of drives, the first on-cylinder
58330574Skarels  * and the second off-cylinder from their next transfers.
58430574Skarels  * Perform the first transfer for the first drive on the on-cylinder
58530574Skarels  * queue, if any, otherwise the first transfer for the first drive
58630574Skarels  * on the second queue.  Initiate seeks on remaining drives on the
58730574Skarels  * off-cylinder queue, then move them all to the on-cylinder queue.
58825675Ssam  */
58930519Ssam vdstart(vm)
59030519Ssam 	register struct vba_ctlr *vm;
59125675Ssam {
59225675Ssam 	register struct buf *bp;
59330519Ssam 	register struct vba_device *vi;
59430519Ssam 	register struct vdsoftc *vd;
59530519Ssam 	register struct dksoftc *dk;
59630519Ssam 	register struct disklabel *lp;
59730519Ssam 	register struct dcb **dcbp;
59830519Ssam 	struct buf *dp;
59930519Ssam 	int sn, tn;
60025675Ssam 
60130519Ssam loop:
60230519Ssam 	/*
60330519Ssam 	 * Pull a request off the controller queue.
60430519Ssam 	 */
60530574Skarels 	if ((dp = vm->um_tab.b_actf) == NULL &&
60630574Skarels 	    (dp = vm->um_tab.b_seekf) == NULL)
60730519Ssam 		return;
60830519Ssam 	if ((bp = dp->b_actf) == NULL) {
60930601Skarels 		if (dp == vm->um_tab.b_actf)
61030601Skarels 			vm->um_tab.b_actf = dp->b_forw;
61130601Skarels 		else
61230601Skarels 			vm->um_tab.b_seekf = dp->b_forw;
61330519Ssam 		goto loop;
61430519Ssam 	}
61525675Ssam 
61624004Ssam 	/*
61730519Ssam 	 * Mark controller busy, and determine
61830519Ssam 	 * destination of this request.
61924004Ssam 	 */
62030519Ssam 	vm->um_tab.b_active++;
62130519Ssam 	vi = vddinfo[vdunit(bp->b_dev)];
62230519Ssam 	dk = &dksoftc[vi->ui_unit];
62330756Skarels #ifndef SECSIZE
62430756Skarels 	sn = bp->b_blkno << dk->dk_bshift;
62530756Skarels #else SECSIZE
62630573Skarels 	sn = bp->b_blkno;
62730756Skarels #endif SECSIZE
62830519Ssam 	lp = &dklabel[vi->ui_unit];
62930519Ssam 	sn %= lp->d_secpercyl;
63030519Ssam 	tn = sn / lp->d_nsectors;
63130519Ssam 	sn %= lp->d_nsectors;
63230519Ssam 
63330519Ssam 	/*
63430519Ssam 	 * Construct dcb for read/write command.
63530519Ssam 	 */
63630519Ssam 	vd = &vdsoftc[vm->um_ctlr];
63730519Ssam 	vd->vd_dcb.intflg = DCBINT_DONE;
63832211Skarels 	vd->vd_dcb.devselect = dk->dk_dcb.devselect;
63930519Ssam 	vd->vd_dcb.operrsta = 0;
64030519Ssam 	vd->vd_dcb.nxtdcb = (struct dcb *)0;	/* end of chain */
64130519Ssam 	vd->vd_dcb.trail.rwtrail.disk.cylinder = bp->b_cylin;
64230519Ssam 	vd->vd_dcb.trail.rwtrail.disk.track = tn;
64330519Ssam 	vd->vd_dcb.trail.rwtrail.disk.sector = sn;
64430574Skarels 	dk->dk_curcyl = bp->b_cylin;
64530574Skarels 	bp->b_track = 0;		/* init overloaded field */
64630756Skarels 	vd->vd_dcb.trailcnt = sizeof (struct trrw) / sizeof (long);
64734396Skarels 	if (bp->b_flags & B_FORMAT)
64834396Skarels 		vd->vd_dcb.opcode = dk->dk_op;
64934396Skarels 	else if (vd->vd_flags & VD_SCATGATH &&
65034396Skarels 	    ((int)bp->b_un.b_addr & (sizeof(long) - 1)) == 0)
65130756Skarels 		vd->vd_dcb.opcode = (bp->b_flags & B_READ)? VDOP_RAS : VDOP_GAW;
65234396Skarels 	else
65330756Skarels 		vd->vd_dcb.opcode = (bp->b_flags & B_READ)? VDOP_RD : VDOP_WD;
65434396Skarels 
65534396Skarels 	switch (vd->vd_dcb.opcode) {
65634396Skarels 	case VDOP_FSECT:
65734396Skarels 		vd->vd_dcb.trailcnt = sizeof (struct trrw) / sizeof (long);
65834396Skarels 		vd->vd_dcb.trail.fmtrail.nsectors = bp->b_bcount /
65934396Skarels 		    lp->d_secsize;
66034396Skarels 		vd->vd_dcb.trail.fmtrail.hdr = *(dskadr *)&dk->dk_althdr;
66134396Skarels 		vd->vd_dcb.trail.rwtrail.disk.cylinder |= dk->dk_fmtflags;
66234396Skarels 		goto setupaddr;
66334396Skarels 
66434396Skarels 	case VDOP_RDRAW:
66534396Skarels 	case VDOP_RD:
66634396Skarels 	case VDOP_WD:
66734396Skarels 		vd->vd_dcb.trail.rwtrail.wcount = (bp->b_bcount+1) >> 1;
66834396Skarels setupaddr:
66930756Skarels 		vd->vd_dcb.trail.rwtrail.memadr =
67034528Skarels 			vbasetup(bp, &vd->vd_rbuf, (int)lp->d_secsize);
67134396Skarels 		break;
67234396Skarels 
67334396Skarels 	case VDOP_RAS:
67434396Skarels 	case VDOP_GAW:
67534396Skarels 		vd->vd_dcb.trailcnt += vba_sgsetup(bp, &vd->vd_rbuf,
67634396Skarels 		    &vd->vd_dcb.trail.sgtrail);
67734396Skarels 		break;
67830756Skarels 	}
67930574Skarels 	if (vi->ui_dk >= 0) {
68030574Skarels 		dk_busy |= 1<<vi->ui_dk;
68130574Skarels 		dk_xfer[vi->ui_dk]++;
68230574Skarels 		dk_wds[vi->ui_dk] += bp->b_bcount>>6;
68330574Skarels 	}
68430519Ssam 
68530519Ssam 	/*
68630519Ssam 	 * Look for any seeks to be performed on other drives on this
68730519Ssam 	 * controller.  If overlapped seeks exist, insert seek commands
68830519Ssam 	 * on the controller's command queue before the transfer.
68930519Ssam 	 */
69030519Ssam 	dcbp = &vd->vd_mdcb.mdcb_head;
69130519Ssam 
69230574Skarels 	if (dp == vm->um_tab.b_seekf)
69330574Skarels 		dp = dp->b_forw;
69430574Skarels 	else
69530574Skarels 		dp = vm->um_tab.b_seekf;
69630574Skarels 	for (; dp != NULL; dp = dp->b_forw) {
69730574Skarels 		if ((bp = dp->b_actf) == NULL)
69830574Skarels 			continue;
69930574Skarels 		vi = vddinfo[vdunit(bp->b_dev)];
70030574Skarels 		dk = &dksoftc[vi->ui_unit];
70130519Ssam 		dk->dk_curcyl = bp->b_cylin;
70230574Skarels 		if (vi->ui_dk >= 0)
70330574Skarels 			dk_seek[vi->ui_dk]++;
70430574Skarels 		dk->dk_dcb.operrsta = 0;
70530574Skarels 		dk->dk_dcb.trail.sktrail.skaddr.cylinder = bp->b_cylin;
70630574Skarels 		dk->dk_dcb.trail.sktrail.skaddr.track = bp->b_track;
70730574Skarels 		*dcbp = (struct dcb *)dk->dk_dcbphys;
70830574Skarels 		dcbp = &dk->dk_dcb.nxtdcb;
70924004Ssam 	}
71030519Ssam 	*dcbp = (struct dcb *)vd->vd_dcbphys;
71130574Skarels 	if (vm->um_tab.b_actf)
71230574Skarels 		vm->um_tab.b_actl->b_forw = vm->um_tab.b_seekf;
71330574Skarels 	else
71430574Skarels 		vm->um_tab.b_actf = vm->um_tab.b_seekf;
71530601Skarels 	if (vm->um_tab.b_seekf)
71630601Skarels 		vm->um_tab.b_actl = vm->um_tab.b_seekl;
71730574Skarels 	vm->um_tab.b_seekf = 0;
71824004Ssam 
71930519Ssam 	/*
72030519Ssam 	 * Initiate operation.
72130519Ssam 	 */
72230519Ssam 	vd->vd_mdcb.mdcb_status = 0;
72330519Ssam 	VDGO(vm->um_addr, vd->vd_mdcbphys, vd->vd_type);
72424004Ssam }
72524004Ssam 
72630519Ssam #define	DONTCARE (DCBS_DSE|DCBS_DSL|DCBS_TOP|DCBS_TOM|DCBS_FAIL|DCBS_DONE)
72724004Ssam /*
72824004Ssam  * Handle a disk interrupt.
72924004Ssam  */
73025675Ssam vdintr(ctlr)
73130519Ssam 	register ctlr;
73224004Ssam {
73330519Ssam 	register struct buf *bp, *dp;
73430519Ssam 	register struct vba_ctlr *vm = vdminfo[ctlr];
73530519Ssam 	register struct vba_device *vi;
73630519Ssam 	register struct vdsoftc *vd = &vdsoftc[ctlr];
73730519Ssam 	register status;
73834528Skarels 	int timedout;
73930573Skarels 	struct dksoftc *dk;
74024004Ssam 
74130519Ssam 	if (!vm->um_tab.b_active) {
74225675Ssam 		printf("vd%d: stray interrupt\n", ctlr);
74324004Ssam 		return;
74424004Ssam 	}
74525675Ssam 	/*
74630519Ssam 	 * Get device and block structures, and a pointer
74730519Ssam 	 * to the vba_device for the drive.
74825675Ssam 	 */
74930519Ssam 	dp = vm->um_tab.b_actf;
75030519Ssam 	bp = dp->b_actf;
75130519Ssam 	vi = vddinfo[vdunit(bp->b_dev)];
75234528Skarels 	dk = &dksoftc[vi->ui_unit];
75330574Skarels 	if (vi->ui_dk >= 0)
75430574Skarels 		dk_busy &= ~(1<<vi->ui_dk);
75534396Skarels 	timedout = (vd->vd_wticks >= VDMAXTIME);
75630519Ssam 	/*
75730519Ssam 	 * Check for and process errors on
75830519Ssam 	 * either the drive or the controller.
75930519Ssam 	 */
76030519Ssam 	uncache(&vd->vd_dcb.operrsta);
76130519Ssam 	status = vd->vd_dcb.operrsta;
76234396Skarels 	if (bp->b_flags & B_FORMAT) {
76334396Skarels 		dk->dk_operrsta = status;
76434396Skarels 		uncache(&vd->vd_dcb.err_code);
76534396Skarels 		dk->dk_ecode = vd->vd_dcb.err_code;
76634396Skarels 	}
76734396Skarels 	if (status & VDERR_HARD || timedout) {
76834528Skarels 		if (vd->vd_type == VDTYPE_SMDE)
76930601Skarels 			uncache(&vd->vd_dcb.err_code);
77030519Ssam 		if (status & DCBS_WPT) {
77130519Ssam 			/*
77230519Ssam 			 * Give up on write locked devices immediately.
77330519Ssam 			 */
77430573Skarels 			printf("dk%d: write locked\n", vi->ui_unit);
77530519Ssam 			bp->b_flags |= B_ERROR;
77634396Skarels 		} else if (status & VDERR_RETRY || timedout) {
77732211Skarels 			int endline = 1;
77832211Skarels 
77934396Skarels 			if (status & VDERR_CTLR || timedout) {
78034396Skarels 				vdharderr("controller err",
78134396Skarels 				    vd, bp, &vd->vd_dcb);
78234396Skarels 				printf("; resetting controller...");
78334396Skarels 				vdreset_ctlr(vm);
78434396Skarels 			} else if (status & VDERR_DRIVE) {
78534396Skarels 				vdharderr("drive err", vd, bp, &vd->vd_dcb);
78634396Skarels 				printf("; resetting drive...");
78730519Ssam 				if (!vdreset_drive(vi))
78830519Ssam 					vi->ui_alive = 0;
78932211Skarels 			} else
79032211Skarels 				endline = 0;
79130519Ssam 			/*
79230519Ssam 			 * Retry transfer once, unless reset failed.
79330519Ssam 			 */
79434396Skarels 			if (!vi->ui_alive || dp->b_errcnt++ >= 2 ||
79534396Skarels 			    bp->b_flags & B_FORMAT) {
79632211Skarels 				if (endline)
79732211Skarels 					printf("\n");
79830519Ssam 				goto hard;
79932211Skarels 			}
80032211Skarels 
80132211Skarels 			if (endline)
80232211Skarels 				printf(" retrying\n");
80330519Ssam 			vm->um_tab.b_active = 0;	/* force retry */
80430519Ssam 		} else  {
80530519Ssam 	hard:
80630519Ssam 			bp->b_flags |= B_ERROR;
80734396Skarels 			vdharderr("hard error", vd, bp, &vd->vd_dcb);
80830519Ssam 			printf("\n");
80930519Ssam 		}
81030519Ssam 	} else if (status & DCBS_SOFT)
81134528Skarels 		vdsofterr(bp, &vd->vd_dcb);
81234396Skarels 	vd->vd_wticks = 0;
81330519Ssam 	if (vm->um_tab.b_active) {
81430519Ssam 		vm->um_tab.b_active = 0;
81530519Ssam 		vm->um_tab.b_actf = dp->b_forw;
81630519Ssam 		dp->b_active = 0;
81730519Ssam 		dp->b_errcnt = 0;
81830519Ssam 		dp->b_actf = bp->av_forw;
81930519Ssam 		bp->b_resid = 0;
82030601Skarels 		vbadone(bp, &vd->vd_rbuf);
82130519Ssam 		biodone(bp);
82230370Skarels 		/*
82330519Ssam 		 * If this unit has more work to do,
82430519Ssam 		 * then start it up right away.
82530370Skarels 		 */
82630519Ssam 		if (dp->b_actf)
82730519Ssam 			vdustart(vi);
82834528Skarels 		else if (dk->dk_openpart == 0)
82930573Skarels 			wakeup((caddr_t)dk);
83024004Ssam 	}
83125675Ssam 	/*
83230519Ssam 	 * If there are devices ready to
83330519Ssam 	 * transfer, start the controller.
83425675Ssam 	 */
83530601Skarels 	if (vm->um_tab.b_actf || vm->um_tab.b_seekf)
83630519Ssam 		vdstart(vm);
83724004Ssam }
83824004Ssam 
83934396Skarels vdharderr(what, vd, bp, dcb)
84034396Skarels 	char *what;
84134396Skarels 	struct vdsoftc *vd;
84234396Skarels 	register struct buf *bp;
84334396Skarels 	register struct dcb *dcb;
84434396Skarels {
84534396Skarels 	int unit = vdunit(bp->b_dev), status = dcb->operrsta;
84634396Skarels 	register struct disklabel *lp = &dklabel[unit];
84734528Skarels 	int blkdone;
84834396Skarels 
84934396Skarels 	if (vd->vd_wticks < VDMAXTIME)
85034396Skarels 		status &= ~DONTCARE;
85134528Skarels 	blkdone = ((((dcb->err_cyl & 0xfff) * lp->d_ntracks + dcb->err_trk)
85234528Skarels 	    * lp->d_nsectors + dcb->err_sec) >> dksoftc[unit].dk_bshift)
85334528Skarels 	    - lp->d_partitions[vdpart(bp->b_dev)].p_offset - bp->b_blkno;
85434528Skarels 	diskerr(bp, "dk", what, LOG_PRINTF, blkdone, lp);
85534528Skarels 	printf(", status %b", status, VDERRBITS);
85634396Skarels 	if (vd->vd_type == VDTYPE_SMDE)
85734396Skarels 		printf(" ecode %x", dcb->err_code);
85834396Skarels }
85934396Skarels 
86034528Skarels vdsofterr(bp, dcb)
86125675Ssam 	register struct buf *bp;
86230519Ssam 	register struct dcb *dcb;
86325675Ssam {
864*34562Skarels 	int unit = vdunit(bp->b_dev);
865*34562Skarels 	struct disklabel *lp = &dklabel[unit];
86634528Skarels 	int status = dcb->operrsta;
86734528Skarels 	int blkdone;
86825675Ssam 
86934528Skarels 	blkdone = ((((dcb->err_cyl & 0xfff) * lp->d_ntracks + dcb->err_trk)
87034528Skarels 	    * lp->d_nsectors + dcb->err_sec) >> dksoftc[unit].dk_bshift)
87134528Skarels 	    - lp->d_partitions[vdpart(bp->b_dev)].p_offset - bp->b_blkno;
87234528Skarels 
87334528Skarels 	if (status != (DCBS_CCD|DCBS_SOFT|DCBS_ERR|DCBS_DONE)) {
87434528Skarels 		diskerr(bp, "dk", "soft error", LOG_WARNING, blkdone, lp);
87534528Skarels 		addlog(", status %b ecode %x\n", status, VDERRBITS,
87634396Skarels 		    dcb->err_code);
87734528Skarels 	} else {
87834528Skarels 		diskerr(bp, "dk", "soft ecc", LOG_WARNING, blkdone, lp);
87934528Skarels 		addlog("\n");
88034528Skarels 	}
88125675Ssam }
88225675Ssam 
88330519Ssam vdioctl(dev, cmd, data, flag)
88425675Ssam 	dev_t dev;
88530519Ssam 	int cmd;
88630519Ssam 	caddr_t data;
88730519Ssam 	int flag;
88824004Ssam {
88932576Skarels 	register int unit = vdunit(dev);
89030519Ssam 	register struct disklabel *lp = &dklabel[unit];
89134076Skarels 	register struct dksoftc *dk = &dksoftc[unit];
89234396Skarels 	int error = 0, wlab, vdformat();
89324004Ssam 
89430519Ssam 	switch (cmd) {
89530519Ssam 
89630519Ssam 	case DIOCGDINFO:
89730519Ssam 		*(struct disklabel *)data = *lp;
89830519Ssam 		break;
89930519Ssam 
90030573Skarels 	case DIOCGPART:
90130573Skarels 		((struct partinfo *)data)->disklab = lp;
90230573Skarels 		((struct partinfo *)data)->part =
90330573Skarels 		    &lp->d_partitions[vdpart(dev)];
90430519Ssam 		break;
90530519Ssam 
90630519Ssam 	case DIOCSDINFO:
90730519Ssam 		if ((flag & FWRITE) == 0)
90830519Ssam 			error = EBADF;
90930519Ssam 		else
91032576Skarels 			error = setdisklabel(lp, (struct disklabel *)data,
91134076Skarels 			    (dk->dk_state == OPENRAW) ? 0 : dk->dk_openpart);
91234396Skarels 		if (error == 0 && dk->dk_state == OPENRAW &&
91334396Skarels 		    vdreset_drive(vddinfo[unit]))
91434076Skarels 			dk->dk_state = OPEN;
91530519Ssam 		break;
91630519Ssam 
91734076Skarels 	case DIOCWLABEL:
91834076Skarels 		if ((flag & FWRITE) == 0)
91934076Skarels 			error = EBADF;
92034076Skarels 		else
92134076Skarels 			dk->dk_wlabel = *(int *)data;
92234076Skarels 		break;
92334076Skarels 
92432576Skarels 	case DIOCWDINFO:
92534076Skarels 		/* simulate opening partition 0 so write succeeds */
92634076Skarels 		dk->dk_openpart |= (1 << 0);		/* XXX */
92734076Skarels 		wlab = dk->dk_wlabel;
92834076Skarels 		dk->dk_wlabel = 1;
92932576Skarels 		if ((flag & FWRITE) == 0)
93030519Ssam 			error = EBADF;
93132576Skarels 		else if ((error = setdisklabel(lp, (struct disklabel *)data,
93234076Skarels 		    (dk->dk_state == OPENRAW) ? 0 : dk->dk_openpart)) == 0) {
93334076Skarels 			dk->dk_state = OPEN;
93432576Skarels 			error = writedisklabel(dev, vdstrategy, lp);
93534076Skarels 		}
93634076Skarels 		dk->dk_openpart = dk->dk_copenpart | dk->dk_bopenpart;
93734076Skarels 		dk->dk_wlabel = wlab;
93830519Ssam 		break;
93930519Ssam 
94034396Skarels 	case DIOCWFORMAT:
94134396Skarels 	    {
94234396Skarels 		register struct format_op *fop;
94334396Skarels 		struct uio auio;
94434396Skarels 		struct iovec aiov;
94534396Skarels 
94634396Skarels 		if ((flag & FWRITE) == 0) {
94734396Skarels 			error = EBADF;
94834396Skarels 			break;
94934396Skarels 		}
95034396Skarels 		fop = (struct format_op *)data;
95134396Skarels 		aiov.iov_base = fop->df_buf;
95234396Skarels 		aiov.iov_len = fop->df_count;
95334396Skarels 		auio.uio_iov = &aiov;
95434396Skarels 		auio.uio_iovcnt = 1;
95534396Skarels 		auio.uio_resid = fop->df_count;
95634396Skarels 		auio.uio_segflg = UIO_USERSPACE;
95734396Skarels 		auio.uio_offset = fop->df_startblk * lp->d_secsize;
95834396Skarels 		dk->dk_operrsta = fop->dk_operrsta;
95934396Skarels 		dk->dk_ecode = fop->dk_ecode;
96034396Skarels 		/*
96134396Skarels 		 * Don't return errors, as the format op won't get copied
96234396Skarels 		 * out if we return nonzero.  Callers must check the returned
96334396Skarels 		 * count.
96434396Skarels 		 */
96534396Skarels 		(void) physio(vdformat, (struct buf *)NULL, dev,
96634396Skarels 		    (cmd == DIOCWFORMAT ? B_WRITE : B_READ), minphys, &auio);
96734396Skarels 		fop->df_count -= auio.uio_resid;
96834396Skarels 		fop->dk_operrsta = dk->dk_operrsta;
96934396Skarels 		fop->dk_ecode = dk->dk_ecode;
97034396Skarels 		break;
97134396Skarels 	    }
97234396Skarels 
97330519Ssam 	default:
97430519Ssam 		error = ENOTTY;
97530519Ssam 		break;
97624004Ssam 	}
97732606Skarels 	return (error);
97824004Ssam }
97924004Ssam 
98034396Skarels vdformat(bp)
98134396Skarels 	struct buf *bp;
98234396Skarels {
98334396Skarels 	bp->b_flags |= B_FORMAT;
98434396Skarels 	vdstrategy(bp);
98534396Skarels }
98634396Skarels 
98725675Ssam /*
98830519Ssam  * Watch for lost interrupts.
98925675Ssam  */
99030519Ssam vdwatch()
99130519Ssam {
99230519Ssam 	register struct vdsoftc *vd;
99330519Ssam 	register struct vba_ctlr *vm;
99434528Skarels 	register int ctlr;
99534396Skarels 	int s;
99630519Ssam 
99730519Ssam 	timeout(vdwatch, (caddr_t)0, hz);
99830519Ssam 	for (ctlr = 0; ctlr < NVD; ctlr++) {
99930519Ssam 		vm = vdminfo[ctlr];
100030519Ssam 		if (vm == 0 || vm->um_alive == 0)
100130519Ssam 			continue;
100230519Ssam 		vd = &vdsoftc[ctlr];
100334396Skarels 		s = spl7();
100434396Skarels 		if (vm->um_tab.b_active && vd->vd_wticks++ >= VDMAXTIME) {
100530519Ssam 			printf("vd%d: lost interrupt\n", ctlr);
100634396Skarels #ifdef maybe
100734396Skarels 			VDABORT((struct vddevice *)vm->um_addr, vd->vd_type);
100834396Skarels #endif
100934396Skarels 			vdintr(ctlr);
101030519Ssam 		}
101134396Skarels 		splx(s);
101230519Ssam 	}
101330519Ssam }
101430519Ssam 
101530519Ssam #define	DBSIZE	64	/* controller limit with 1K sectors */
101630519Ssam /*
101730519Ssam  * Crash dump.
101830519Ssam  */
101930519Ssam vddump(dev)
102030519Ssam 	dev_t dev;
102124004Ssam {
102230519Ssam 	register struct vba_device *vi;
102330519Ssam 	register struct vba_ctlr *vm;
102430519Ssam 	register struct disklabel *lp;
102530519Ssam 	register struct vdsoftc *vd;
102630519Ssam 	struct dksoftc *dk;
102730519Ssam 	int part, unit, num;
102830601Skarels 	u_long start;
102924004Ssam 
103030519Ssam 	start = 0;
103130519Ssam 	unit = vdunit(dev);
103230519Ssam 	if (unit > NDK || (vi = vddinfo[unit]) == 0 || vi->ui_alive == 0)
103330519Ssam 		return (ENXIO);
103430519Ssam 	dk = &dksoftc[unit];
103534076Skarels 	if (dk->dk_state != OPEN && dk->dk_state != OPENRAW &&
103634076Skarels 	    vdinit(vdminor(unit, 0), 0) != 0)
103730519Ssam 		return (ENXIO);
103830519Ssam 	lp = &dklabel[unit];
103930519Ssam 	part = vdpart(dev);
104030519Ssam 	if (part >= lp->d_npartitions)
104130519Ssam 		return (ENXIO);
104232211Skarels 	vm = vi->ui_mi;
104330519Ssam 	vdreset_ctlr(vm);
104430519Ssam 	if (dumplo < 0)
104530519Ssam 		return (EINVAL);
104630519Ssam 	/*
104730756Skarels 	 * Maxfree is in pages, dumplo is in DEV_BSIZE units.
104830519Ssam 	 */
104930519Ssam 	num = maxfree * (NBPG / lp->d_secsize);
105030756Skarels 	dumplo *= DEV_BSIZE / lp->d_secsize;
105130519Ssam 	if (dumplo + num >= lp->d_partitions[vdpart(dev)].p_size)
105230519Ssam 		num = lp->d_partitions[vdpart(dev)].p_size - dumplo;
105330519Ssam 	vd = &vdsoftc[vm->um_ctlr];
105430519Ssam 	vd->vd_dcb.intflg = DCBINT_NONE;
105530519Ssam 	vd->vd_dcb.opcode = VDOP_WD;
105632211Skarels 	vd->vd_dcb.devselect = dk->dk_dcb.devselect;
105730756Skarels 	vd->vd_dcb.trailcnt = sizeof (struct trrw) / sizeof (long);
105830519Ssam 	while (num > 0) {
105930519Ssam 		int nsec, cn, sn, tn;
106030519Ssam 
106130519Ssam 		nsec = MIN(num, DBSIZE);
106230601Skarels 		sn = dumplo + start / lp->d_secsize;
106330519Ssam 		cn = (sn + lp->d_partitions[vdpart(dev)].p_offset) /
106430519Ssam 		    lp->d_secpercyl;
106530519Ssam 		sn %= lp->d_secpercyl;
106630519Ssam 		tn = sn / lp->d_nsectors;
106730519Ssam 		sn %= lp->d_nsectors;
106830519Ssam 		vd->vd_mdcb.mdcb_head = (struct dcb *)vd->vd_dcbphys;
106930519Ssam 		vd->vd_dcb.trail.rwtrail.memadr = start;
107030519Ssam 		vd->vd_dcb.trail.rwtrail.wcount = (nsec * lp->d_secsize) >> 1;
107130519Ssam 		vd->vd_dcb.trail.rwtrail.disk.cylinder = cn;
107230519Ssam 		vd->vd_dcb.trail.rwtrail.disk.track = tn;
107330519Ssam 		vd->vd_dcb.trail.rwtrail.disk.sector = sn;
107430519Ssam 		vd->vd_dcb.operrsta = 0;
107530519Ssam 		VDGO(vm->um_addr, vd->vd_mdcbphys, vd->vd_type);
107630519Ssam 		if (!vdpoll(vm, 5)) {
107730519Ssam 			printf(" during dump\n");
107830519Ssam 			return (EIO);
107930519Ssam 		}
108030519Ssam 		if (vd->vd_dcb.operrsta & VDERR_HARD) {
108130519Ssam 			printf("dk%d: hard error, status=%b\n", unit,
108230519Ssam 			    vd->vd_dcb.operrsta, VDERRBITS);
108330519Ssam 			return (EIO);
108430519Ssam 		}
108530519Ssam 		start += nsec * lp->d_secsize;
108630519Ssam 		num -= nsec;
108725675Ssam 	}
108830519Ssam 	return (0);
108924004Ssam }
109024004Ssam 
109124004Ssam vdsize(dev)
109225675Ssam 	dev_t dev;
109324004Ssam {
109430519Ssam 	register int unit = vdunit(dev);
109530519Ssam 	register struct dksoftc *dk;
109630519Ssam 	struct vba_device *vi;
109730519Ssam 	struct disklabel *lp;
109824004Ssam 
109930519Ssam 	if (unit >= NDK || (vi = vddinfo[unit]) == 0 || vi->ui_alive == 0 ||
110030519Ssam 	    (dk = &dksoftc[unit])->dk_state != OPEN)
110125675Ssam 		return (-1);
110230519Ssam 	lp = &dklabel[unit];
110330756Skarels #ifdef SECSIZE
110430573Skarels 	return ((int)lp->d_partitions[vdpart(dev)].p_size);
110530756Skarels #else SECSIZE
110630756Skarels 	return ((int)lp->d_partitions[vdpart(dev)].p_size >> dk->dk_bshift);
110730756Skarels #endif SECSIZE
110824004Ssam }
110924004Ssam 
111025675Ssam /*
111125675Ssam  * Perform a controller reset.
111225675Ssam  */
111330519Ssam vdreset_ctlr(vm)
111430519Ssam 	register struct vba_ctlr *vm;
111524004Ssam {
111630519Ssam 	register struct vddevice *vdaddr = (struct vddevice *)vm->um_addr;
111730519Ssam 	register struct vdsoftc *vd = &vdsoftc[vm->um_ctlr];
111830519Ssam 	register int unit;
111930519Ssam 	struct vba_device *vi;
112025675Ssam 
112130519Ssam 	VDRESET(vdaddr, vd->vd_type);
112230519Ssam 	if (vd->vd_type == VDTYPE_SMDE) {
112330519Ssam 		vdaddr->vdcsr = 0;
112430519Ssam 		vdaddr->vdtcf_mdcb = AM_ENPDA;
112530519Ssam 		vdaddr->vdtcf_dcb = AM_ENPDA;
112630519Ssam 		vdaddr->vdtcf_trail = AM_ENPDA;
112730519Ssam 		vdaddr->vdtcf_data = AM_ENPDA;
112830519Ssam 		vdaddr->vdccf = CCF_STS | XMD_32BIT | BSZ_16WRD |
112925675Ssam 		    CCF_ENP | CCF_EPE | CCF_EDE | CCF_ECE | CCF_ERR;
113025675Ssam 	}
113130519Ssam 	if (!vdcmd(vm, VDOP_INIT, 10) || !vdcmd(vm, VDOP_DIAG, 10)) {
113230519Ssam 		printf("%s cmd failed\n",
113330519Ssam 		    vd->vd_dcb.opcode == VDOP_INIT ? "init" : "diag");
113430370Skarels 		return;
113525675Ssam 	}
113630519Ssam 	for (unit = 0; unit < NDK; unit++)
113730519Ssam 		if ((vi = vddinfo[unit])->ui_mi == vm && vi->ui_alive)
113830519Ssam 			(void) vdreset_drive(vi);
113930519Ssam }
114030519Ssam 
114130519Ssam vdreset_drive(vi)
114230519Ssam 	register struct vba_device *vi;
114330519Ssam {
114430519Ssam 	register struct disklabel *lp = &dklabel[vi->ui_unit];
114530519Ssam 	struct vba_ctlr *vm = vdminfo[vi->ui_ctlr];
114630519Ssam 	struct vddevice *vdaddr = (struct vddevice *)vm->um_addr;
114732211Skarels 	register struct vdsoftc *vd = &vdsoftc[vi->ui_ctlr];
114832211Skarels 	register struct dksoftc *dk = &dksoftc[vi->ui_unit];
114930519Ssam 
115030519Ssam top:
115130519Ssam 	vd->vd_dcb.opcode = VDOP_CONFIG;		/* command */
115230519Ssam 	vd->vd_dcb.intflg = DCBINT_NONE;
115330519Ssam 	vd->vd_dcb.nxtdcb = (struct dcb *)0;	/* end of chain */
115430519Ssam 	vd->vd_dcb.operrsta = 0;
115532211Skarels 	vd->vd_dcb.devselect = vi->ui_slave | lp->d_devflags;
115630519Ssam 	vd->vd_dcb.trail.rstrail.ncyl = lp->d_ncylinders;
115730519Ssam 	vd->vd_dcb.trail.rstrail.nsurfaces = lp->d_ntracks;
115830519Ssam 	if (vd->vd_type == VDTYPE_SMDE) {
115930756Skarels 		vd->vd_dcb.trailcnt = sizeof (struct treset) / sizeof (long);
116030519Ssam 		vd->vd_dcb.trail.rstrail.nsectors = lp->d_nsectors;
116130601Skarels 		vd->vd_dcb.trail.rstrail.slip_sec = lp->d_sparespertrack;
116232211Skarels 		vd->vd_dcb.trail.rstrail.recovery = VDRF_NORMAL;
116330519Ssam 	} else
116430519Ssam 		vd->vd_dcb.trailcnt = 2;		/* XXX */
116530519Ssam 	vd->vd_mdcb.mdcb_head = (struct dcb *)vd->vd_dcbphys;
116630519Ssam 	vd->vd_mdcb.mdcb_status = 0;
116730519Ssam 	VDGO(vdaddr, vd->vd_mdcbphys, vd->vd_type);
116830519Ssam 	if (!vdpoll(vm, 5)) {
116930519Ssam 		printf(" during config\n");
117030519Ssam 		return (0);
117125675Ssam 	}
117230519Ssam 	if (vd->vd_dcb.operrsta & VDERR_HARD) {
117332211Skarels 		if (vd->vd_type == VDTYPE_SMDE) {
117432211Skarels 			if (lp->d_devflags == 0) {
117532211Skarels 				lp->d_devflags = VD_ESDI;
117632211Skarels 				goto top;
117732211Skarels 			}
117832211Skarels #ifdef notdef
117932211Skarels 			/* this doesn't work, STA_US isn't set(?) */
118032211Skarels 			if ((vdaddr->vdstatus[vi->ui_slave] & STA_US) == 0)
118132211Skarels 				return (0);
118232211Skarels #endif
118332211Skarels 		}
118430519Ssam 		if ((vd->vd_dcb.operrsta & (DCBS_OCYL|DCBS_NRDY)) == 0)
118532211Skarels 			printf("dk%d: config error %b ecode %x\n", vi->ui_unit,
118634396Skarels 			   vd->vd_dcb.operrsta, VDERRBITS,
118734396Skarels 			   (u_char) vd->vd_dcb.err_code);
118832211Skarels 		else if ((vd->vd_flags & VD_STARTED) == 0) {
118930519Ssam 			int started;
119030519Ssam 
119132211Skarels 			printf(" starting drives, wait ... ");
119230519Ssam 			vd->vd_flags |= VD_STARTED;
119330519Ssam 			started = (vdcmd(vm, VDOP_START, 10) == 1);
119430519Ssam 			DELAY(62000000);
119532211Skarels 			printf("done");
119632211Skarels 			lp->d_devflags = 0;
119730519Ssam 			if (started)
119830519Ssam 				goto top;
119930519Ssam 		}
120030519Ssam 		return (0);
120130519Ssam 	}
120232211Skarels 	dk->dk_dcb.devselect |= lp->d_devflags;
120330519Ssam 	return (1);
120425675Ssam }
120524004Ssam 
120625675Ssam /*
120730519Ssam  * Perform a command w/o trailer.
120825675Ssam  */
120930519Ssam vdcmd(vm, cmd, t)
121030519Ssam 	register struct vba_ctlr *vm;
121125675Ssam {
121230519Ssam 	register struct vdsoftc *vd = &vdsoftc[vm->um_ctlr];
121325675Ssam 
121430519Ssam 	vd->vd_dcb.opcode = cmd;		/* command */
121530519Ssam 	vd->vd_dcb.intflg = DCBINT_NONE;
121630519Ssam 	vd->vd_dcb.nxtdcb = (struct dcb *)0;	/* end of chain */
121730519Ssam 	vd->vd_dcb.operrsta = 0;
121830519Ssam 	vd->vd_dcb.devselect = 0;
121930519Ssam 	vd->vd_dcb.trailcnt = 0;
122030519Ssam 	vd->vd_mdcb.mdcb_head = (struct dcb *)vd->vd_dcbphys;
122130519Ssam 	vd->vd_mdcb.mdcb_status = 0;
122230519Ssam 	VDGO(vm->um_addr, vd->vd_mdcbphys, vd->vd_type);
122330519Ssam 	if (!vdpoll(vm, t)) {
122430519Ssam 		printf(" during init\n");
122530370Skarels 		return (0);
122630370Skarels 	}
122730519Ssam 	return ((vd->vd_dcb.operrsta&VDERR_HARD) == 0);
122825675Ssam }
122925675Ssam 
123025925Ssam /*
123130519Ssam  * Poll controller until operation
123230519Ssam  * completes or timeout expires.
123325925Ssam  */
123430519Ssam vdpoll(vm, t)
123530519Ssam 	register struct vba_ctlr *vm;
123625925Ssam 	register int t;
123725925Ssam {
123830519Ssam 	register struct vdsoftc *vd = &vdsoftc[vm->um_ctlr];
123930519Ssam 	register struct vddevice *vdaddr = (struct vddevice *)vm->um_addr;
124025925Ssam 
124125925Ssam 	t *= 1000;
124230370Skarels 	for (;;) {
124330519Ssam 		uncache(&vd->vd_dcb.operrsta);
124430519Ssam 		if (vd->vd_dcb.operrsta & (DCBS_DONE|DCBS_ABORT))
124530370Skarels 			break;
124625925Ssam 		if (--t <= 0) {
124730519Ssam 			printf("vd%d: controller timeout", vm->um_ctlr);
124830519Ssam 			VDABORT(vdaddr, vd->vd_type);
124925925Ssam 			return (0);
125025925Ssam 		}
125130370Skarels 		DELAY(1000);
125225925Ssam 	}
125330519Ssam 	if (vd->vd_type == VDTYPE_SMDE) {
125430519Ssam 		do {
125525925Ssam 			DELAY(50);
125630519Ssam 			uncache(&vdaddr->vdcsr);
125730519Ssam 		} while (vdaddr->vdcsr & CS_GO);
125832211Skarels 	 	DELAY(300);
125932211Skarels 		uncache(&vd->vd_dcb.err_code);
126025925Ssam 	}
126125925Ssam 	DELAY(200);
126230519Ssam 	uncache(&vd->vd_dcb.operrsta);
126325925Ssam 	return (1);
126425925Ssam }
126525925Ssam 
126630519Ssam #ifdef COMPAT_42
126730519Ssam struct	vdst {
126830519Ssam 	int	nsec;		/* sectors/track */
126930519Ssam 	int	ntrack;		/* tracks/cylinder */
127030519Ssam 	int	ncyl;		/* cylinders */
127132211Skarels 	int	secsize;	/* sector size */
127230519Ssam 	char	*name;		/* type name */
127330519Ssam 	struct {
127430519Ssam 		int	off;	/* partition offset in sectors */
127530519Ssam 		int	size;	/* partition size in sectors */
127630573Skarels 	} parts[8];
127730519Ssam } vdst[] = {
127832211Skarels 	{ 66, 23, 850, 512, "NEC 800",
127932211Skarels 		{0,	 1290300},	/* a cyl   0 - 849 */
128032211Skarels 	},
128132211Skarels 	{ 48, 24, 711, 512, "xsd",
128231039Skarels 		{0,	 61056},	/* a cyl   0 - 52 */
128331039Skarels 		{61056,	 61056},	/* b cyl  53 - 105 */
128431039Skarels 		{122112, 691200}, 	/* c cyl 106 - 705 */
128531039Skarels 		{237312, 576000}, 	/* d cyl 206 - 705 */
128631039Skarels 		{352512, 460800},	/* e cyl 306 - 705 */
128731039Skarels 		{467712, 345600}, 	/* f cyl 406 - 705 */
128831039Skarels 		{582912, 230400},	/* g cyl 506 - 705 */
128931039Skarels 		{698112, 115200}	/* h cyl 606 - 705 */
129030573Skarels 	},
129132211Skarels 	{ 44, 20, 842, 512, "eagle",
129230601Skarels 		{0,	 52800},	/* egl0a cyl   0 - 59 */
129330601Skarels 		{52800,	 66000},	/* egl0b cyl  60 - 134 */
129430601Skarels 		{118800, 617760}, 	/* egl0c cyl 135 - 836 */
129530756Skarels 		{736560, 4400}, 	/* egl0d cyl 837 - 841 */
129631039Skarels 		{0, 	 736560},	/* egl0e cyl   0 - 836 */
129731039Skarels 		{0, 	 740960}, 	/* egl0f cyl   0 - 841 */
129830601Skarels 		{118800, 310640},	/* egl0g cyl 135 - 487 */
129930601Skarels 		{429440, 307120}	/* egl0h cyl 488 - 836 */
130030573Skarels 	},
130132211Skarels 	{ 64, 10, 823, 512, "fuj",
130231039Skarels 		{0,	 38400},	/* fuj0a cyl   0 - 59 */
130331039Skarels 		{38400,	 48000},	/* fuj0b cyl  60 - 134 */
130431039Skarels 		{86400,	 437120}, 	/* fuj0c cyl 135 - 817 */
130531039Skarels 		{159360, 364160}, 	/* fuj0d cyl 249 - 817 */
130631039Skarels 		{232320, 291200},	/* fuj0e cyl 363 - 817 */
130731039Skarels 		{305280, 218240}, 	/* fuj0f cyl 477 - 817 */
130831039Skarels 		{378240, 145280},	/* fuj0g cyl 591 - 817 */
130931039Skarels 		{451200, 72320}		/* fug0h cyl 705 - 817 */
131030573Skarels 	},
131132211Skarels 	{ 32, 24, 711, 512, "xfd",
131230756Skarels 		{ 0,	 40704 },	/* a cyl   0 - 52 */
131330756Skarels 		{ 40704, 40704 },	/* b cyl  53 - 105 */
131430756Skarels 		{ 81408, 460800 },	/* c cyl 106 - 705 */
131530756Skarels 		{ 0,	 81408 },	/* d cyl 709 - 710 (a & b) */
131630756Skarels 		{ 0,	 542208 },	/* e cyl   0 - 705 */
131730756Skarels 		{ 40704, 501504 },	/* f cyl  53 - 705 (b & c) */
131830756Skarels 		{ 81408, 230400 },	/* g cyl 106 - 405 (1/2 of c) */
131930756Skarels 		{ 311808,230400 }	/* h cyl 406 - 705 (1/2 of c) */
132030573Skarels 	},
132132211Skarels 	{ 32, 19, 823, 512, "smd",
132231039Skarels 		{0,	 40128},	/* a cyl   0-65 */
132331039Skarels 		{40128,  27360},	/* b cyl  66-110 */
132431039Skarels 		{67488,  429856},	/* c cyl 111-817 */
132531039Skarels 		{139232, 358112},	/* d cyl 229 - 817 */
132631039Skarels 		{210976, 286368},	/* e cyl 347 - 817 */
132731039Skarels 		{282720, 214624},	/* f cyl 465 - 817 */
132831039Skarels 		{354464, 142880},	/* g cyl 583 - 817 */
132931039Skarels 		{426208, 71136}		/* h cyl 701 - 817 */
133030573Skarels 	},
133132211Skarels 	{ 18, 15, 1224, 1024, "mxd",
133232211Skarels 		{0,	 21600},	/* a cyl   0-79 */
133332211Skarels 		{21600,  22410},	/* b cyl  80-162 */
133432211Skarels 		{44010,  285120},	/* c cyl 163-1217 */
133532211Skarels #ifdef notyet
133632211Skarels 		{x, 237600},	/* d cyl y - 1217 */
133732211Skarels 		{x, 190080},	/* e cyl y - 1217 */
133832211Skarels 		{x, 142560},	/* f cyl y - 1217 */
133932211Skarels 		{x, 95040},	/* g cyl y - 1217 */
134032211Skarels 		{x, 47520}		/* h cyl 701 - 817 */
134132211Skarels #endif
134232211Skarels 	},
134332211Skarels 	{ 32, 10, 823, 512, "fsd",
134430756Skarels 		{0,	 19200},	/* a cyl   0 -  59 */
134530756Skarels 		{19200,	 24000},	/* b cyl  60 - 134 */
134630756Skarels 		{43200,	 218560},	/* c cyl 135 - 817 */
134730573Skarels 	}
134830519Ssam };
134930519Ssam #define	NVDST	(sizeof (vdst) / sizeof (vdst[0]))
135030519Ssam 
135125675Ssam /*
135230519Ssam  * Construct a label for an unlabeled pack.  We
135330519Ssam  * deduce the drive type by reading from the last
135430519Ssam  * track on successively smaller drives until we
135530519Ssam  * don't get an error.
135625675Ssam  */
135730519Ssam vdmaptype(vi, lp)
135830519Ssam 	register struct vba_device *vi;
135930519Ssam 	register struct disklabel *lp;
136025675Ssam {
136130519Ssam 	register struct vdsoftc *vd;
136230519Ssam 	register struct vdst *p;
136332211Skarels 	struct vba_ctlr *vm = vi->ui_mi;
136430519Ssam 	int i;
136525675Ssam 
136630519Ssam 	vd = &vdsoftc[vi->ui_ctlr];
136730519Ssam 	for (p = vdst; p < &vdst[NVDST]; p++) {
136830519Ssam 		if (vd->vd_type == VDTYPE_VDDC && p->nsec != 32)
136930519Ssam 			continue;
137030519Ssam 		lp->d_nsectors = p->nsec;
137130519Ssam 		lp->d_ntracks = p->ntrack;
137230519Ssam 		lp->d_ncylinders = p->ncyl;
137332211Skarels 		lp->d_secsize = p->secsize;
137430519Ssam 		if (!vdreset_drive(vi))
137530519Ssam 			return (0);
137630519Ssam 		vd->vd_dcb.opcode = VDOP_RD;
137730519Ssam 		vd->vd_dcb.intflg = DCBINT_NONE;
137830519Ssam 		vd->vd_dcb.nxtdcb = (struct dcb *)0;	/* end of chain */
137932211Skarels 		vd->vd_dcb.devselect = dksoftc[vi->ui_unit].dk_dcb.devselect;
138030756Skarels 		vd->vd_dcb.trailcnt = sizeof (struct trrw) / sizeof (long);
138130601Skarels 		vd->vd_dcb.trail.rwtrail.memadr =
138230601Skarels 		    vtoph((struct proc *)0, (unsigned)vd->vd_rbuf.vb_rawbuf);
138332211Skarels 		vd->vd_dcb.trail.rwtrail.wcount = lp->d_secsize / sizeof(short);
138430519Ssam 		vd->vd_dcb.operrsta = 0;
138530519Ssam 		vd->vd_dcb.trail.rwtrail.disk.cylinder = p->ncyl - 2;
138630519Ssam 		vd->vd_dcb.trail.rwtrail.disk.track = p->ntrack - 1;
138730519Ssam 		vd->vd_dcb.trail.rwtrail.disk.sector = p->nsec - 1;
138830519Ssam 		vd->vd_mdcb.mdcb_head = (struct dcb *)vd->vd_dcbphys;
138930519Ssam 		vd->vd_mdcb.mdcb_status = 0;
139030519Ssam 		VDGO(vm->um_addr, vd->vd_mdcbphys, vd->vd_type);
139130519Ssam 		if (!vdpoll(vm, 60))
139230519Ssam 			printf(" during probe\n");
139330519Ssam 		if ((vd->vd_dcb.operrsta & VDERR_HARD) == 0)
139430519Ssam 			break;
139524004Ssam 	}
139632211Skarels 	if (p >= &vdst[NVDST])
139730519Ssam 		return (0);
139832211Skarels 
139930573Skarels 	for (i = 0; i < 8; i++) {
140030519Ssam 		lp->d_partitions[i].p_offset = p->parts[i].off;
140130519Ssam 		lp->d_partitions[i].p_size = p->parts[i].size;
140230519Ssam 	}
140330573Skarels 	lp->d_npartitions = 8;
140430519Ssam 	lp->d_secpercyl = lp->d_nsectors * lp->d_ntracks;
140530519Ssam 	lp->d_rpm = 3600;
140630519Ssam 	bcopy(p->name, lp->d_typename, 4);
140730519Ssam 	return (1);
140824004Ssam }
140930519Ssam #endif COMPAT_42
141024004Ssam #endif
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