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fd.c revision 1.36.8.2
      1  1.36.8.2  jdolecek /*	$NetBSD: fd.c,v 1.36.8.2 2002/09/06 08:33:24 jdolecek Exp $	*/
      2       1.1       leo 
      3       1.1       leo /*
      4       1.1       leo  * Copyright (c) 1995 Leo Weppelman.
      5       1.1       leo  * All rights reserved.
      6       1.1       leo  *
      7       1.1       leo  * Redistribution and use in source and binary forms, with or without
      8       1.1       leo  * modification, are permitted provided that the following conditions
      9       1.1       leo  * are met:
     10       1.1       leo  * 1. Redistributions of source code must retain the above copyright
     11       1.1       leo  *    notice, this list of conditions and the following disclaimer.
     12       1.1       leo  * 2. Redistributions in binary form must reproduce the above copyright
     13       1.1       leo  *    notice, this list of conditions and the following disclaimer in the
     14       1.1       leo  *    documentation and/or other materials provided with the distribution.
     15       1.1       leo  * 3. All advertising materials mentioning features or use of this software
     16       1.1       leo  *    must display the following acknowledgement:
     17       1.1       leo  *      This product includes software developed by Leo Weppelman.
     18       1.1       leo  * 4. The name of the author may not be used to endorse or promote products
     19       1.1       leo  *    derived from this software without specific prior written permission
     20       1.1       leo  *
     21       1.1       leo  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     22       1.1       leo  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     23       1.1       leo  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     24       1.1       leo  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     25       1.1       leo  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     26       1.1       leo  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     27       1.1       leo  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     28       1.1       leo  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     29       1.1       leo  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     30       1.1       leo  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     31       1.1       leo  */
     32       1.1       leo 
     33       1.1       leo /*
     34       1.1       leo  * This file contains a driver for the Floppy Disk Controller (FDC)
     35       1.1       leo  * on the Atari TT. It uses the WD 1772 chip, modified for steprates.
     36       1.1       leo  *
     37       1.1       leo  * The ST floppy disk controller shares the access to the DMA circuitry
     38       1.1       leo  * with other devices. For this reason the floppy disk controller makes
     39       1.1       leo  * use of some special DMA accessing code.
     40       1.1       leo  *
     41       1.1       leo  * Interrupts from the FDC are in fact DMA interrupts which get their
     42       1.1       leo  * first level handling in 'dma.c' . If the floppy driver is currently
     43       1.1       leo  * using DMA the interrupt is signalled to 'fdcint'.
     44       1.1       leo  *
     45       1.1       leo  * TODO:
     46       1.1       leo  *   - Test it with 2 drives (I don't have them)
     47       1.1       leo  *   - Test it with an HD-drive (Don't have that either)
     48       1.1       leo  *   - Finish ioctl's
     49       1.1       leo  */
     50       1.1       leo 
     51      1.14   mycroft #include <sys/param.h>
     52      1.14   mycroft #include <sys/systm.h>
     53      1.35   thorpej #include <sys/callout.h>
     54      1.14   mycroft #include <sys/kernel.h>
     55      1.14   mycroft #include <sys/malloc.h>
     56      1.14   mycroft #include <sys/buf.h>
     57      1.15       leo #include <sys/proc.h>
     58      1.14   mycroft #include <sys/device.h>
     59      1.14   mycroft #include <sys/ioctl.h>
     60      1.14   mycroft #include <sys/fcntl.h>
     61      1.14   mycroft #include <sys/conf.h>
     62      1.14   mycroft #include <sys/disklabel.h>
     63      1.14   mycroft #include <sys/disk.h>
     64      1.14   mycroft #include <sys/dkbad.h>
     65      1.14   mycroft #include <atari/atari/device.h>
     66      1.19       leo #include <atari/atari/stalloc.h>
     67      1.14   mycroft #include <machine/disklabel.h>
     68      1.14   mycroft #include <machine/iomap.h>
     69      1.14   mycroft #include <machine/mfp.h>
     70      1.14   mycroft #include <machine/dma.h>
     71      1.14   mycroft #include <machine/video.h>
     72      1.20       leo #include <machine/cpu.h>
     73      1.18       leo #include <atari/dev/ym2149reg.h>
     74      1.14   mycroft #include <atari/dev/fdreg.h>
     75       1.1       leo 
     76       1.1       leo /*
     77       1.1       leo  * Be verbose for debugging
     78       1.1       leo  */
     79       1.4       leo /*#define FLP_DEBUG	1 */
     80       1.1       leo 
     81       1.1       leo #define	FDC_MAX_DMA_AD	0x1000000	/* No DMA possible beyond	*/
     82       1.1       leo 
     83       1.1       leo /* Parameters for the disk drive. */
     84       1.1       leo #define SECTOR_SIZE	512	/* physical sector size in bytes	*/
     85       1.1       leo #define NR_DRIVES	2	/* maximum number of drives		*/
     86       1.1       leo #define NR_TYPES	3	/* number of diskette/drive combinations*/
     87       1.1       leo #define MAX_ERRORS	10	/* how often to try rd/wt before quitting*/
     88       1.1       leo #define STEP_DELAY	6000	/* 6ms (6000us) delay after stepping	*/
     89       1.1       leo 
     90       1.1       leo 
     91       1.1       leo #define	INV_TRK		32000	/* Should fit in unsigned short		*/
     92       1.1       leo #define	INV_PART	NR_TYPES
     93       1.1       leo 
     94       1.1       leo /*
     95       1.1       leo  * Driver states
     96       1.1       leo  */
     97       1.1       leo #define	FLP_IDLE	0x00	/* floppy is idle			*/
     98       1.1       leo #define	FLP_MON		0x01	/* idle with motor on			*/
     99       1.1       leo #define	FLP_STAT	0x02	/* determine floppy status		*/
    100       1.1       leo #define	FLP_XFER	0x04	/* read/write data from floppy		*/
    101       1.1       leo 
    102       1.1       leo /*
    103       1.1       leo  * Timer delay's
    104       1.1       leo  */
    105       1.1       leo #define	FLP_MONDELAY	(3 * hz)	/* motor-on delay		*/
    106       1.1       leo #define	FLP_XFERDELAY	(2 * hz)	/* timeout on transfer		*/
    107       1.1       leo 
    108       1.8       leo /*
    109       1.8       leo  * The density codes
    110       1.8       leo  */
    111       1.8       leo #define	FLP_DD		0		/* Double density		*/
    112       1.8       leo #define	FLP_HD		1		/* High density			*/
    113       1.8       leo 
    114       1.1       leo 
    115       1.1       leo #define	b_block		b_resid		/* FIXME: this is not the place	*/
    116       1.1       leo 
    117       1.1       leo /*
    118       1.1       leo  * Global data for all physical floppy devices
    119       1.1       leo  */
    120       1.1       leo static short	selected = 0;		/* drive/head currently selected*/
    121       1.1       leo static short	motoron  = 0;		/* motor is spinning		*/
    122       1.1       leo static short	nopens   = 0;		/* Number of opens executed	*/
    123       1.1       leo 
    124       1.4       leo static short	fd_state = FLP_IDLE;	/* Current driver state		*/
    125       1.5       leo static int	lock_stat= 0;		/* dma locking status		*/
    126       1.1       leo static short	fd_cmd   = 0;		/* command being executed	*/
    127       1.1       leo static char	*fd_error= NULL;	/* error from fd_xfer_ok()	*/
    128       1.1       leo 
    129       1.1       leo /*
    130       1.1       leo  * Private per device data
    131       1.1       leo  */
    132       1.1       leo struct fd_softc {
    133      1.13   thorpej 	struct device	sc_dv;		/* generic device info		*/
    134      1.13   thorpej 	struct disk	dkdev;		/* generic disk info		*/
    135  1.36.8.2  jdolecek 	struct bufq_state bufq;		/* queue of buf's		*/
    136      1.35   thorpej 	struct callout	sc_motor_ch;
    137       1.1       leo 	int		unit;		/* unit for atari controlling hw*/
    138       1.1       leo 	int		nheads;		/* number of heads in use	*/
    139       1.1       leo 	int		nsectors;	/* number of sectors/track	*/
    140       1.8       leo 	int		density;	/* density code			*/
    141       1.1       leo 	int		nblocks;	/* number of blocks on disk	*/
    142       1.1       leo 	int		curtrk;		/* track head positioned on	*/
    143       1.1       leo 	short		flags;		/* misc flags			*/
    144       1.1       leo 	short		part;		/* Current open partition	*/
    145       1.1       leo 	int		sector;		/* logical sector for I/O	*/
    146       1.1       leo 	caddr_t		io_data;	/* KVA for data transfer	*/
    147       1.1       leo 	int		io_bytes;	/* bytes left for I/O		*/
    148       1.1       leo 	int		io_dir;		/* B_READ/B_WRITE		*/
    149       1.1       leo 	int		errcnt;		/* current error count		*/
    150       1.1       leo 	u_char		*bounceb;	/* Bounce buffer		*/
    151      1.10   mycroft 
    152       1.1       leo };
    153       1.1       leo 
    154       1.1       leo /*
    155       1.1       leo  * Flags in fd_softc:
    156       1.1       leo  */
    157       1.4       leo #define FLPF_NOTRESP	0x001		/* Unit not responding		*/
    158       1.4       leo #define FLPF_ISOPEN	0x002		/* Unit is open			*/
    159       1.8       leo #define FLPF_SPARE	0x004		/* Not used			*/
    160       1.4       leo #define FLPF_HAVELAB	0x008		/* We have a valid label	*/
    161       1.4       leo #define FLPF_BOUNCE	0x010		/* Now using the bounce buffer	*/
    162       1.4       leo #define FLPF_WRTPROT	0x020		/* Unit is write-protected	*/
    163       1.4       leo #define FLPF_EMPTY	0x040		/* Unit is empty		*/
    164       1.4       leo #define FLPF_INOPEN	0x080		/* Currently being opened	*/
    165       1.4       leo #define FLPF_GETSTAT	0x100		/* Getting unit status		*/
    166       1.1       leo 
    167       1.1       leo struct fd_types {
    168       1.1       leo 	int		nheads;		/* Heads in use			*/
    169       1.1       leo 	int		nsectors;	/* sectors per track		*/
    170       1.1       leo 	int		nblocks;	/* number of blocks		*/
    171       1.8       leo 	int		density;	/* density code			*/
    172      1.24       leo 	const char	*descr;		/* type description		*/
    173       1.1       leo } fdtypes[NR_TYPES] = {
    174      1.24       leo 		{ 1,  9,  720 , FLP_DD , "360KB" },	/* 360  Kb	*/
    175      1.24       leo 		{ 2,  9, 1440 , FLP_DD , "720KB" },	/* 720  Kb	*/
    176      1.24       leo 		{ 2, 18, 2880 , FLP_HD , "1.44MB" },	/* 1.44 Mb	*/
    177       1.1       leo };
    178       1.1       leo 
    179      1.30       leo #define	FLP_TYPE_360	0		/* XXX: Please keep these in	*/
    180      1.30       leo #define	FLP_TYPE_720	1		/* sync with the numbering in	*/
    181      1.30       leo #define	FLP_TYPE_144	2		/* 'fdtypes' right above!	*/
    182      1.30       leo 
    183      1.30       leo /*
    184      1.30       leo  * This is set only once at attach time. The value is determined by reading
    185      1.30       leo  * the configuration switches and is one of the FLP_TYPE_*'s.
    186      1.30       leo  * This is simular to the way Atari handles the _FLP cookie.
    187      1.30       leo  */
    188      1.30       leo static short	def_type = 0;		/* Reflects config-switches	*/
    189      1.30       leo 
    190      1.24       leo #define	FLP_DEFTYPE	1		/* 720Kb, reasonable default	*/
    191      1.30       leo #define	FLP_TYPE(dev)	( DISKPART(dev) == 0 ? def_type : DISKPART(dev) - 1 )
    192      1.24       leo 
    193      1.17       leo typedef void	(*FPV) __P((void *));
    194       1.1       leo 
    195       1.1       leo /*
    196      1.15       leo  * {b,c}devsw[] function prototypes
    197      1.15       leo  */
    198      1.24       leo dev_type_open(fdopen);
    199      1.15       leo dev_type_close(fdclose);
    200      1.15       leo dev_type_read(fdread);
    201      1.15       leo dev_type_write(fdwrite);
    202      1.15       leo dev_type_ioctl(fdioctl);
    203      1.15       leo dev_type_size(fdsize);
    204      1.15       leo dev_type_dump(fddump);
    205      1.15       leo 
    206      1.15       leo /*
    207       1.1       leo  * Private drive functions....
    208       1.1       leo  */
    209       1.1       leo static void	fdstart __P((struct fd_softc *));
    210       1.1       leo static void	fddone __P((struct fd_softc *));
    211       1.4       leo static void	fdstatus __P((struct fd_softc *));
    212       1.1       leo static void	fd_xfer __P((struct fd_softc *));
    213       1.4       leo static void	fdcint __P((struct fd_softc *));
    214       1.1       leo static int	fd_xfer_ok __P((struct fd_softc *));
    215       1.1       leo static void	fdmotoroff __P((struct fd_softc *));
    216      1.10   mycroft static void	fdminphys __P((struct buf *));
    217       1.1       leo static void	fdtestdrv __P((struct fd_softc *));
    218      1.26   thorpej static void	fdgetdefaultlabel __P((struct fd_softc *, struct disklabel *,
    219      1.26   thorpej 		    int));
    220       1.1       leo static int	fdgetdisklabel __P((struct fd_softc *, dev_t));
    221       1.8       leo static int	fdselect __P((int, int, int));
    222       1.8       leo static void	fddeselect __P((void));
    223      1.12       leo static void	fdmoff __P((struct fd_softc *));
    224      1.17       leo        u_char	read_fdreg __P((u_short));
    225      1.17       leo        void	write_fdreg __P((u_short, u_short));
    226      1.17       leo        u_char	read_dmastat __P((void));
    227       1.1       leo 
    228       1.4       leo extern __inline__ u_char read_fdreg(u_short regno)
    229       1.4       leo {
    230       1.4       leo 	DMA->dma_mode = regno;
    231       1.4       leo 	return(DMA->dma_data);
    232       1.4       leo }
    233       1.4       leo 
    234       1.4       leo extern __inline__ void write_fdreg(u_short regno, u_short val)
    235       1.4       leo {
    236       1.4       leo 	DMA->dma_mode = regno;
    237       1.4       leo 	DMA->dma_data = val;
    238       1.4       leo }
    239       1.4       leo 
    240       1.4       leo extern __inline__ u_char read_dmastat(void)
    241       1.4       leo {
    242       1.4       leo 	DMA->dma_mode = FDC_CS | DMA_SCREG;
    243       1.4       leo 	return(DMA->dma_stat);
    244       1.4       leo }
    245       1.4       leo 
    246       1.1       leo /*
    247      1.30       leo  * Config switch stuff. Used only for the floppy type for now. That's
    248      1.30       leo  * why it's here...
    249      1.30       leo  * XXX: If needed in more places, it should be moved to it's own include file.
    250      1.30       leo  * Note: This location _must_ be read as an u_short. Failure to do so
    251      1.30       leo  *       will return garbage!
    252      1.30       leo  */
    253      1.30       leo static u_short rd_cfg_switch __P((void));
    254      1.30       leo static u_short rd_cfg_switch(void)
    255      1.30       leo {
    256      1.30       leo 	return(*((u_short*)AD_CFG_SWITCH));
    257      1.30       leo }
    258      1.30       leo 
    259      1.30       leo /*
    260      1.30       leo  * Switch definitions.
    261      1.30       leo  * Note: ON reads as a zero bit!
    262      1.30       leo  */
    263      1.30       leo #define	CFG_SWITCH_NOHD	0x4000
    264      1.30       leo 
    265      1.30       leo /*
    266       1.1       leo  * Autoconfig stuff....
    267       1.1       leo  */
    268      1.28       leo extern struct cfdriver fd_cd;
    269      1.28       leo 
    270      1.25       leo static int	fdcmatch __P((struct device *, struct cfdata *, void *));
    271      1.21       cgd static int	fdcprint __P((void *, const char *));
    272       1.1       leo static void	fdcattach __P((struct device *, struct device *, void *));
    273       1.1       leo 
    274      1.16   thorpej struct cfattach fdc_ca = {
    275      1.16   thorpej 	sizeof(struct device), fdcmatch, fdcattach
    276      1.16   thorpej };
    277      1.16   thorpej 
    278       1.1       leo static int
    279      1.25       leo fdcmatch(pdp, cfp, auxp)
    280       1.1       leo struct device	*pdp;
    281      1.25       leo struct cfdata	*cfp;
    282      1.25       leo void		*auxp;
    283       1.1       leo {
    284      1.36       leo 	static int	fdc_matched = 0;
    285      1.36       leo 
    286      1.36       leo 	/* Match only once */
    287      1.36       leo 	if(strcmp("fdc", auxp) || fdc_matched)
    288       1.1       leo 		return(0);
    289      1.36       leo 	fdc_matched = 1;
    290       1.1       leo 	return(1);
    291       1.1       leo }
    292       1.1       leo 
    293       1.1       leo static void
    294       1.1       leo fdcattach(pdp, dp, auxp)
    295       1.1       leo struct device	*pdp, *dp;
    296       1.1       leo void		*auxp;
    297       1.1       leo {
    298       1.1       leo 	struct fd_softc	fdsoftc;
    299      1.15       leo 	int		i, nfound, first_found;
    300       1.1       leo 
    301      1.15       leo 	nfound = first_found = 0;
    302      1.23  christos 	printf("\n");
    303       1.8       leo 	fddeselect();
    304       1.1       leo 	for(i = 0; i < NR_DRIVES; i++) {
    305       1.1       leo 
    306       1.1       leo 		/*
    307       1.1       leo 		 * Test if unit is present
    308       1.1       leo 		 */
    309       1.1       leo 		fdsoftc.unit  = i;
    310       1.1       leo 		fdsoftc.flags = 0;
    311      1.15       leo 		st_dmagrab((dma_farg)fdcint, (dma_farg)fdtestdrv, &fdsoftc,
    312      1.15       leo 								&lock_stat, 0);
    313       1.5       leo 		st_dmafree(&fdsoftc, &lock_stat);
    314       1.1       leo 
    315       1.1       leo 		if(!(fdsoftc.flags & FLPF_NOTRESP)) {
    316      1.12       leo 			if(!nfound)
    317      1.12       leo 				first_found = i;
    318       1.1       leo 			nfound++;
    319       1.1       leo 			config_found(dp, (void*)i, fdcprint);
    320       1.1       leo 		}
    321       1.1       leo 	}
    322       1.1       leo 
    323       1.1       leo 	if(nfound) {
    324      1.35   thorpej 		struct fd_softc *fdsc = getsoftc(fd_cd, first_found);
    325      1.12       leo 
    326      1.12       leo 		/*
    327      1.12       leo 		 * Make sure motor will be turned of when a floppy is
    328      1.12       leo 		 * inserted in the first selected drive.
    329      1.12       leo 		 */
    330      1.12       leo 		fdselect(first_found, 0, FLP_DD);
    331      1.12       leo 		fd_state = FLP_MON;
    332      1.35   thorpej 		callout_reset(&fdsc->sc_motor_ch, 0, (FPV)fdmotoroff, fdsc);
    333      1.12       leo 
    334       1.1       leo 		/*
    335       1.1       leo 		 * enable disk related interrupts
    336       1.1       leo 		 */
    337      1.29       leo 		MFP->mf_ierb |= IB_DINT;
    338      1.29       leo 		MFP->mf_iprb  = (u_int8_t)~IB_DINT;
    339      1.29       leo 		MFP->mf_imrb |= IB_DINT;
    340       1.1       leo 	}
    341       1.1       leo }
    342       1.1       leo 
    343       1.1       leo static int
    344       1.1       leo fdcprint(auxp, pnp)
    345       1.1       leo void	*auxp;
    346      1.21       cgd const char	*pnp;
    347       1.1       leo {
    348      1.24       leo 	if (pnp != NULL)
    349      1.24       leo 		printf("fd%d at %s:", (int)auxp, pnp);
    350      1.24       leo 
    351       1.1       leo 	return(UNCONF);
    352       1.1       leo }
    353       1.1       leo 
    354      1.25       leo static int	fdmatch __P((struct device *, struct cfdata *, void *));
    355       1.1       leo static void	fdattach __P((struct device *, struct device *, void *));
    356      1.24       leo 
    357      1.24       leo        void	fdstrategy __P((struct buf *));
    358       1.1       leo struct dkdriver fddkdriver = { fdstrategy };
    359       1.1       leo 
    360      1.16   thorpej struct cfattach fd_ca = {
    361      1.16   thorpej 	sizeof(struct fd_softc), fdmatch, fdattach
    362      1.16   thorpej };
    363      1.16   thorpej 
    364      1.27   thorpej extern struct cfdriver fd_cd;
    365       1.1       leo 
    366       1.1       leo static int
    367      1.25       leo fdmatch(pdp, cfp, auxp)
    368       1.1       leo struct device	*pdp;
    369      1.25       leo struct cfdata	*cfp;
    370      1.25       leo void		*auxp;
    371       1.1       leo {
    372       1.1       leo 	return(1);
    373       1.1       leo }
    374       1.1       leo 
    375       1.1       leo static void
    376       1.1       leo fdattach(pdp, dp, auxp)
    377       1.1       leo struct device	*pdp, *dp;
    378       1.1       leo void		*auxp;
    379       1.1       leo {
    380       1.1       leo 	struct fd_softc	*sc;
    381      1.30       leo 	struct fd_types *type;
    382      1.30       leo 	u_short		swtch;
    383       1.1       leo 
    384       1.1       leo 	sc = (struct fd_softc *)dp;
    385      1.30       leo 
    386      1.35   thorpej 	callout_init(&sc->sc_motor_ch);
    387      1.35   thorpej 
    388      1.30       leo 	/*
    389      1.30       leo 	 * Find out if an Ajax chip might be installed. Set the default
    390      1.30       leo 	 * floppy type accordingly.
    391      1.30       leo 	 */
    392      1.30       leo 	swtch    = rd_cfg_switch();
    393      1.30       leo 	def_type = (swtch & CFG_SWITCH_NOHD) ? FLP_TYPE_720 : FLP_TYPE_144;
    394      1.30       leo 	type     = &fdtypes[def_type];
    395       1.1       leo 
    396      1.24       leo 	printf(": %s %d cyl, %d head, %d sec\n", type->descr,
    397      1.24       leo 		type->nblocks / (type->nsectors * type->nheads), type->nheads,
    398      1.24       leo 		type->nsectors);
    399       1.1       leo 
    400      1.13   thorpej 	/*
    401      1.13   thorpej 	 * Initialize and attach the disk structure.
    402      1.13   thorpej 	 */
    403      1.13   thorpej 	sc->dkdev.dk_name = sc->sc_dv.dv_xname;
    404       1.1       leo 	sc->dkdev.dk_driver = &fddkdriver;
    405      1.13   thorpej 	disk_attach(&sc->dkdev);
    406       1.1       leo }
    407       1.1       leo 
    408      1.15       leo int
    409       1.1       leo fdioctl(dev, cmd, addr, flag, p)
    410       1.1       leo dev_t		dev;
    411       1.1       leo u_long		cmd;
    412       1.1       leo int		flag;
    413       1.1       leo caddr_t		addr;
    414       1.1       leo struct proc	*p;
    415       1.1       leo {
    416       1.1       leo 	struct fd_softc *sc;
    417       1.1       leo 
    418      1.16   thorpej 	sc = getsoftc(fd_cd, DISKUNIT(dev));
    419      1.10   mycroft 
    420       1.1       leo 	if((sc->flags & FLPF_HAVELAB) == 0)
    421       1.1       leo 		return(EBADF);
    422       1.1       leo 
    423       1.1       leo 	switch(cmd) {
    424       1.1       leo 		case DIOCSBAD:
    425       1.1       leo 			return(EINVAL);
    426       1.1       leo 		case DIOCGDINFO:
    427      1.13   thorpej 			*(struct disklabel *)addr = *(sc->dkdev.dk_label);
    428       1.1       leo 			return(0);
    429       1.1       leo 		case DIOCGPART:
    430       1.1       leo 			((struct partinfo *)addr)->disklab =
    431      1.13   thorpej 				sc->dkdev.dk_label;
    432      1.10   mycroft 			((struct partinfo *)addr)->part =
    433      1.24       leo 			      &sc->dkdev.dk_label->d_partitions[RAW_PART];
    434       1.1       leo 			return(0);
    435       1.1       leo #ifdef notyet /* XXX LWP */
    436       1.1       leo 		case DIOCSRETRIES:
    437       1.1       leo 		case DIOCSSTEP:
    438       1.1       leo 		case DIOCSDINFO:
    439       1.1       leo 		case DIOCWDINFO:
    440       1.1       leo 		case DIOCWLABEL:
    441      1.26   thorpej 			break;
    442       1.1       leo #endif /* notyet */
    443      1.26   thorpej 		case DIOCGDEFLABEL:
    444      1.26   thorpej 			fdgetdefaultlabel(sc, (struct disklabel *)addr,
    445      1.26   thorpej 			    RAW_PART);
    446      1.26   thorpej 			return(0);
    447       1.1       leo 	}
    448      1.15       leo 	return(ENOTTY);
    449       1.1       leo }
    450       1.1       leo 
    451       1.1       leo /*
    452       1.1       leo  * Open the device. If this is the first open on both the floppy devices,
    453       1.1       leo  * intialize the controller.
    454       1.1       leo  * Note that partition info on the floppy device is used to distinguise
    455       1.1       leo  * between 780Kb and 360Kb floppy's.
    456       1.1       leo  *	partition 0: 360Kb
    457       1.3       leo  *	partition 1: 780Kb
    458       1.1       leo  */
    459      1.15       leo int
    460      1.24       leo fdopen(dev, flags, devtype, proc)
    461       1.1       leo dev_t		dev;
    462       1.1       leo int		flags, devtype;
    463       1.1       leo struct proc	*proc;
    464       1.1       leo {
    465       1.1       leo 	struct fd_softc	*sc;
    466       1.1       leo 	int		sps;
    467       1.1       leo 
    468       1.1       leo #ifdef FLP_DEBUG
    469      1.24       leo 	printf("fdopen dev=0x%x\n", dev);
    470       1.1       leo #endif
    471       1.1       leo 
    472      1.24       leo 	if(FLP_TYPE(dev) >= NR_TYPES)
    473       1.1       leo 		return(ENXIO);
    474       1.1       leo 
    475      1.16   thorpej 	if((sc = getsoftc(fd_cd, DISKUNIT(dev))) == NULL)
    476       1.1       leo 		return(ENXIO);
    477       1.1       leo 
    478       1.1       leo 	/*
    479       1.1       leo 	 * If no floppy currently open, reset the controller and select
    480       1.1       leo 	 * floppy type.
    481       1.1       leo 	 */
    482       1.1       leo 	if(!nopens) {
    483       1.1       leo 
    484       1.1       leo #ifdef FLP_DEBUG
    485      1.24       leo 		printf("fdopen device not yet open\n");
    486       1.1       leo #endif
    487       1.1       leo 		nopens++;
    488       1.4       leo 		write_fdreg(FDC_CS, IRUPT);
    489       1.8       leo 		delay(40);
    490       1.1       leo 	}
    491       1.1       leo 
    492       1.4       leo 	/*
    493       1.4       leo 	 * Sleep while other process is opening the device
    494       1.4       leo 	 */
    495       1.4       leo 	sps = splbio();
    496       1.4       leo 	while(sc->flags & FLPF_INOPEN)
    497      1.24       leo 		tsleep((caddr_t)sc, PRIBIO, "fdopen", 0);
    498       1.4       leo 	splx(sps);
    499       1.4       leo 
    500       1.1       leo 	if(!(sc->flags & FLPF_ISOPEN)) {
    501       1.1       leo 		/*
    502       1.1       leo 		 * Initialise some driver values.
    503       1.1       leo 		 */
    504      1.24       leo 		int	type;
    505       1.1       leo 		void	*addr;
    506       1.1       leo 
    507      1.24       leo 		type = FLP_TYPE(dev);
    508      1.24       leo 
    509  1.36.8.2  jdolecek 		bufq_alloc(&sc->bufq, BUFQ_DISKSORT|BUFQ_SORT_RAWBLOCK);
    510       1.1       leo 		sc->unit        = DISKUNIT(dev);
    511      1.24       leo 		sc->part        = RAW_PART;
    512      1.24       leo 		sc->nheads	= fdtypes[type].nheads;
    513      1.24       leo 		sc->nsectors	= fdtypes[type].nsectors;
    514      1.24       leo 		sc->nblocks     = fdtypes[type].nblocks;
    515      1.24       leo 		sc->density	= fdtypes[type].density;
    516       1.1       leo 		sc->curtrk	= INV_TRK;
    517       1.1       leo 		sc->sector	= 0;
    518       1.1       leo 		sc->errcnt	= 0;
    519       1.1       leo 		sc->bounceb	= (u_char*)alloc_stmem(SECTOR_SIZE, &addr);
    520       1.1       leo 		if(sc->bounceb == NULL)
    521       1.1       leo 			return(ENOMEM); /* XXX */
    522       1.1       leo 
    523       1.4       leo 		/*
    524       1.4       leo 		 * Go get write protect + loaded status
    525       1.4       leo 		 */
    526       1.6       leo 		sc->flags |= FLPF_INOPEN|FLPF_GETSTAT;
    527       1.4       leo 		sps = splbio();
    528      1.15       leo 		st_dmagrab((dma_farg)fdcint, (dma_farg)fdstatus, sc,
    529      1.15       leo 								&lock_stat, 0);
    530       1.4       leo 		while(sc->flags & FLPF_GETSTAT)
    531      1.24       leo 			tsleep((caddr_t)sc, PRIBIO, "fdopen", 0);
    532       1.4       leo 		splx(sps);
    533       1.4       leo 		wakeup((caddr_t)sc);
    534       1.4       leo 
    535       1.4       leo 		if((sc->flags & FLPF_WRTPROT) && (flags & FWRITE)) {
    536       1.4       leo 			sc->flags = 0;
    537       1.4       leo 			return(EPERM);
    538       1.4       leo 		}
    539       1.4       leo 		if(sc->flags & FLPF_EMPTY) {
    540       1.4       leo 			sc->flags = 0;
    541       1.4       leo 			return(ENXIO);
    542       1.4       leo 		}
    543       1.6       leo 		sc->flags &= ~(FLPF_INOPEN|FLPF_GETSTAT);
    544       1.6       leo 		sc->flags |= FLPF_ISOPEN;
    545       1.1       leo 	}
    546       1.1       leo 	else {
    547       1.1       leo 		/*
    548       1.1       leo 		 * Multiply opens are granted when accessing the same type of
    549       1.1       leo 		 * floppy (eq. the same partition).
    550       1.1       leo 		 */
    551      1.24       leo 		if(sc->density != fdtypes[DISKPART(dev)].density)
    552       1.1       leo 			return(ENXIO);	/* XXX temporarely out of business */
    553       1.1       leo 	}
    554       1.1       leo 	fdgetdisklabel(sc, dev);
    555       1.1       leo #ifdef FLP_DEBUG
    556      1.24       leo 	printf("fdopen open succeeded on type %d\n", sc->part);
    557       1.1       leo #endif
    558      1.15       leo 	return (0);
    559       1.1       leo }
    560       1.1       leo 
    561      1.15       leo int
    562       1.2   mycroft fdclose(dev, flags, devtype, proc)
    563       1.1       leo dev_t		dev;
    564       1.1       leo int		flags, devtype;
    565       1.1       leo struct proc	*proc;
    566       1.1       leo {
    567       1.1       leo 	struct fd_softc	*sc;
    568       1.1       leo 
    569      1.16   thorpej 	sc = getsoftc(fd_cd, DISKUNIT(dev));
    570       1.1       leo 	free_stmem(sc->bounceb);
    571       1.1       leo 	sc->flags = 0;
    572       1.1       leo 	nopens--;
    573       1.1       leo 
    574       1.1       leo #ifdef FLP_DEBUG
    575      1.23  christos 	printf("Closed floppy device -- nopens: %d\n", nopens);
    576       1.1       leo #endif
    577       1.4       leo 	return(0);
    578       1.1       leo }
    579       1.1       leo 
    580       1.1       leo void
    581       1.1       leo fdstrategy(bp)
    582       1.1       leo struct buf	*bp;
    583       1.1       leo {
    584      1.11       leo 	struct fd_softc	 *sc;
    585      1.11       leo 	struct disklabel *lp;
    586      1.24       leo 	int		 sps, sz;
    587       1.1       leo 
    588      1.16   thorpej 	sc = getsoftc(fd_cd, DISKUNIT(bp->b_dev));
    589       1.1       leo 
    590       1.1       leo #ifdef FLP_DEBUG
    591      1.24       leo 	printf("fdstrategy: %p, b_bcount: %ld\n", bp, bp->b_bcount);
    592       1.1       leo #endif
    593       1.1       leo 
    594       1.1       leo 	/*
    595       1.1       leo 	 * check for valid partition and bounds
    596       1.1       leo 	 */
    597      1.13   thorpej 	lp = sc->dkdev.dk_label;
    598      1.11       leo 	if ((sc->flags & FLPF_HAVELAB) == 0) {
    599      1.11       leo 		bp->b_error = EIO;
    600      1.11       leo 		goto bad;
    601       1.1       leo 	}
    602      1.24       leo 	if (bp->b_blkno < 0 || (bp->b_bcount % SECTOR_SIZE)) {
    603      1.24       leo 		bp->b_error = EINVAL;
    604      1.24       leo 		goto bad;
    605      1.24       leo 	}
    606      1.24       leo 	if (bp->b_bcount == 0)
    607       1.1       leo 		goto done;
    608       1.1       leo 
    609      1.24       leo 	sz = howmany(bp->b_bcount, SECTOR_SIZE);
    610      1.24       leo 
    611      1.24       leo 	if (bp->b_blkno + sz > sc->nblocks) {
    612      1.24       leo 		sz = sc->nblocks - bp->b_blkno;
    613      1.24       leo 		if (sz == 0) /* Exactly at EndOfDisk */
    614      1.24       leo 			goto done;
    615      1.24       leo 		if (sz < 0) { /* Past EndOfDisk */
    616      1.24       leo 			bp->b_error = EINVAL;
    617      1.24       leo 			goto bad;
    618      1.24       leo 		}
    619      1.24       leo 		/* Trucate it */
    620      1.24       leo 		if (bp->b_flags & B_RAW)
    621      1.24       leo 			bp->b_bcount = sz << DEV_BSHIFT;
    622      1.24       leo 		else bp->b_bcount = sz * lp->d_secsize;
    623      1.24       leo 	}
    624      1.32   thorpej 
    625      1.32   thorpej 	/* No partition translation. */
    626      1.32   thorpej 	bp->b_rawblkno = bp->b_blkno;
    627       1.1       leo 
    628       1.1       leo 	/*
    629       1.1       leo 	 * queue the buf and kick the low level code
    630       1.1       leo 	 */
    631       1.1       leo 	sps = splbio();
    632  1.36.8.2  jdolecek 	BUFQ_PUT(&sc->bufq, bp);	/* XXX disksort_cylinder */
    633      1.11       leo 	if (!lock_stat) {
    634      1.11       leo 		if (fd_state & FLP_MON)
    635      1.35   thorpej 			callout_stop(&sc->sc_motor_ch);
    636       1.1       leo 		fd_state = FLP_IDLE;
    637      1.15       leo 		st_dmagrab((dma_farg)fdcint, (dma_farg)fdstart, sc,
    638      1.15       leo 							&lock_stat, 0);
    639       1.1       leo 	}
    640       1.1       leo 	splx(sps);
    641       1.1       leo 
    642       1.1       leo 	return;
    643      1.11       leo bad:
    644      1.11       leo 	bp->b_flags |= B_ERROR;
    645       1.1       leo done:
    646       1.1       leo 	bp->b_resid = bp->b_bcount;
    647       1.1       leo 	biodone(bp);
    648       1.3       leo }
    649       1.3       leo 
    650      1.10   mycroft /*
    651       1.3       leo  * no dumps to floppy disks thank you.
    652       1.3       leo  */
    653       1.3       leo int
    654      1.15       leo fddump(dev, blkno, va, size)
    655      1.15       leo dev_t	dev;
    656      1.15       leo daddr_t	blkno;
    657      1.15       leo caddr_t	va;
    658      1.15       leo size_t	size;
    659       1.3       leo {
    660       1.3       leo 	return(ENXIO);
    661       1.1       leo }
    662       1.1       leo 
    663      1.10   mycroft /*
    664       1.1       leo  * no dumps to floppy disks thank you.
    665       1.1       leo  */
    666       1.1       leo int
    667       1.1       leo fdsize(dev)
    668       1.1       leo dev_t dev;
    669       1.1       leo {
    670       1.1       leo 	return(-1);
    671       1.1       leo }
    672       1.1       leo 
    673       1.1       leo int
    674      1.15       leo fdread(dev, uio, flags)
    675       1.1       leo dev_t		dev;
    676       1.1       leo struct uio	*uio;
    677      1.15       leo int		flags;
    678       1.1       leo {
    679       1.8       leo 	return(physio(fdstrategy, NULL, dev, B_READ, fdminphys, uio));
    680       1.1       leo }
    681       1.1       leo 
    682       1.1       leo int
    683      1.15       leo fdwrite(dev, uio, flags)
    684       1.1       leo dev_t		dev;
    685       1.1       leo struct uio	*uio;
    686      1.15       leo int		flags;
    687       1.1       leo {
    688       1.8       leo 	return(physio(fdstrategy, NULL, dev, B_WRITE, fdminphys, uio));
    689       1.1       leo }
    690       1.1       leo 
    691       1.1       leo /*
    692       1.4       leo  * Called through DMA-dispatcher, get status.
    693       1.4       leo  */
    694       1.4       leo static void
    695       1.4       leo fdstatus(sc)
    696       1.4       leo struct fd_softc	*sc;
    697       1.4       leo {
    698       1.4       leo #ifdef FLP_DEBUG
    699      1.23  christos 	printf("fdstatus\n");
    700       1.4       leo #endif
    701       1.4       leo 	sc->errcnt = 0;
    702       1.4       leo 	fd_state   = FLP_STAT;
    703       1.4       leo 	fd_xfer(sc);
    704       1.4       leo }
    705       1.4       leo 
    706       1.4       leo /*
    707       1.1       leo  * Called through the dma-dispatcher. So we know we are the only ones
    708       1.1       leo  * messing with the floppy-controler.
    709       1.1       leo  * Initialize some fields in the fdsoftc for the state-machine and get
    710       1.1       leo  * it going.
    711       1.1       leo  */
    712       1.1       leo static void
    713       1.1       leo fdstart(sc)
    714       1.1       leo struct fd_softc	*sc;
    715       1.1       leo {
    716       1.1       leo 	struct buf	*bp;
    717       1.1       leo 
    718  1.36.8.2  jdolecek 	bp	     = BUFQ_PEEK(&sc->bufq);
    719       1.1       leo 	sc->sector   = bp->b_blkno;	/* Start sector for I/O		*/
    720       1.1       leo 	sc->io_data  = bp->b_data;	/* KVA base for I/O		*/
    721       1.1       leo 	sc->io_bytes = bp->b_bcount;	/* Transfer size in bytes	*/
    722       1.1       leo 	sc->io_dir   = bp->b_flags & B_READ;/* Direction of transfer	*/
    723       1.1       leo 	sc->errcnt   = 0;		/* No errors yet		*/
    724       1.1       leo 	fd_state     = FLP_XFER;	/* Yes, we're going to transfer	*/
    725       1.1       leo 
    726      1.13   thorpej 	/* Instrumentation. */
    727      1.13   thorpej 	disk_busy(&sc->dkdev);
    728      1.13   thorpej 
    729       1.1       leo 	fd_xfer(sc);
    730       1.1       leo }
    731       1.1       leo 
    732       1.1       leo /*
    733       1.1       leo  * The current transaction is finished (for good or bad). Let go of
    734      1.34     soren  * the dma-resources. Call biodone() to finish the transaction.
    735       1.1       leo  * Find a new transaction to work on.
    736       1.1       leo  */
    737       1.1       leo static void
    738       1.1       leo fddone(sc)
    739       1.1       leo register struct fd_softc	*sc;
    740       1.1       leo {
    741      1.33       leo 	struct buf	*bp;
    742       1.1       leo 	struct fd_softc	*sc1;
    743       1.5       leo 	int		i, sps;
    744       1.1       leo 
    745       1.1       leo 	/*
    746       1.1       leo 	 * Give others a chance to use the dma.
    747       1.1       leo 	 */
    748       1.5       leo 	st_dmafree(sc, &lock_stat);
    749       1.4       leo 
    750       1.1       leo 
    751       1.4       leo 	if(fd_state != FLP_STAT) {
    752       1.4       leo 		/*
    753       1.4       leo 		 * Finish current transaction.
    754       1.4       leo 		 */
    755       1.5       leo 		sps = splbio();
    756  1.36.8.2  jdolecek 		bp = BUFQ_GET(&sc->bufq);
    757      1.31   thorpej 		if (bp == NULL)
    758       1.4       leo 			panic("fddone");
    759       1.5       leo 		splx(sps);
    760       1.4       leo 
    761       1.4       leo #ifdef FLP_DEBUG
    762      1.24       leo 		printf("fddone: unit: %d, buf: %p, resid: %d\n",sc->unit,bp,
    763       1.4       leo 								sc->io_bytes);
    764       1.4       leo #endif
    765       1.4       leo 		bp->b_resid = sc->io_bytes;
    766      1.13   thorpej 
    767      1.13   thorpej 		disk_unbusy(&sc->dkdev, (bp->b_bcount - bp->b_resid));
    768      1.13   thorpej 
    769       1.4       leo 		biodone(bp);
    770       1.4       leo 	}
    771       1.4       leo 	fd_state = FLP_MON;
    772       1.1       leo 
    773       1.5       leo 	if(lock_stat)
    774       1.1       leo 		return;		/* XXX Is this possible?	*/
    775       1.1       leo 
    776       1.1       leo 	/*
    777       1.1       leo 	 * Find a new transaction on round-robin basis.
    778       1.1       leo 	 */
    779       1.1       leo 	for(i = sc->unit + 1; ;i++) {
    780      1.16   thorpej 		if(i >= fd_cd.cd_ndevs)
    781       1.1       leo 			i = 0;
    782      1.16   thorpej 		if((sc1 = fd_cd.cd_devs[i]) == NULL)
    783       1.1       leo 			continue;
    784  1.36.8.2  jdolecek 		if (BUFQ_PEEK(&sc1->bufq) != NULL)
    785       1.1       leo 			break;
    786       1.1       leo 		if(i == sc->unit) {
    787      1.35   thorpej 			callout_reset(&sc->sc_motor_ch, FLP_MONDELAY,
    788      1.35   thorpej 			    (FPV)fdmotoroff, sc);
    789       1.1       leo #ifdef FLP_DEBUG
    790      1.23  christos 			printf("fddone: Nothing to do\n");
    791       1.1       leo #endif
    792       1.1       leo 			return;	/* No work */
    793       1.1       leo 		}
    794       1.1       leo 	}
    795       1.1       leo 	fd_state = FLP_IDLE;
    796       1.1       leo #ifdef FLP_DEBUG
    797      1.23  christos 	printf("fddone: Staring job on unit %d\n", sc1->unit);
    798       1.1       leo #endif
    799      1.15       leo 	st_dmagrab((dma_farg)fdcint, (dma_farg)fdstart, sc1, &lock_stat, 0);
    800       1.1       leo }
    801       1.1       leo 
    802       1.8       leo static int
    803       1.8       leo fdselect(drive, head, dense)
    804       1.8       leo int	drive, head, dense;
    805       1.8       leo {
    806      1.18       leo 	int	i, spinning;
    807       1.8       leo #ifdef FLP_DEBUG
    808      1.23  christos 	printf("fdselect: drive=%d, head=%d, dense=%d\n", drive, head, dense);
    809       1.8       leo #endif
    810       1.8       leo 	i = ((drive == 1) ? PA_FLOP1 : PA_FLOP0) | head;
    811       1.8       leo 	spinning = motoron;
    812       1.8       leo 	motoron  = 1;
    813       1.8       leo 
    814       1.8       leo 	switch(dense) {
    815       1.8       leo 		case FLP_DD:
    816       1.8       leo 			DMA->dma_drvmode = 0;
    817       1.8       leo 			break;
    818       1.8       leo 		case FLP_HD:
    819       1.8       leo 			DMA->dma_drvmode = (FDC_HDSET|FDC_HDSIG);
    820       1.8       leo 			break;
    821       1.8       leo 		default:
    822       1.8       leo 			panic("fdselect: unknown density code\n");
    823       1.8       leo 	}
    824       1.8       leo 	if(i != selected) {
    825       1.8       leo 		selected = i;
    826      1.20       leo 		ym2149_fd_select((i ^ PA_FDSEL));
    827       1.8       leo 	}
    828       1.8       leo 	return(spinning);
    829       1.8       leo }
    830       1.8       leo 
    831       1.8       leo static void
    832       1.8       leo fddeselect()
    833       1.8       leo {
    834      1.18       leo 	ym2149_fd_select(PA_FDSEL);
    835       1.8       leo 	motoron = selected = 0;
    836       1.8       leo 	DMA->dma_drvmode   = 0;
    837       1.8       leo }
    838       1.8       leo 
    839       1.1       leo /****************************************************************************
    840       1.1       leo  * The following functions assume to be running as a result of a            *
    841       1.1       leo  * disk-interrupt (e.q. spl = splbio).				            *
    842       1.1       leo  * They form the finit-state machine, the actual driver.                    *
    843       1.1       leo  *                                                                          *
    844       1.1       leo  *	fdstart()/ --> fd_xfer() -> activate hardware                       *
    845       1.1       leo  *  fdopen()          ^                                                     *
    846       1.1       leo  *                    |                                                     *
    847       1.1       leo  *                    +-- not ready -<------------+                         *
    848       1.1       leo  *                                                |                         *
    849       1.1       leo  *  fdmotoroff()/ --> fdcint() -> fd_xfer_ok() ---+                         *
    850       1.1       leo  *  h/w interrupt                 |                                         *
    851       1.1       leo  *                               \|/                                        *
    852       1.1       leo  *                            finished ---> fdone()                         *
    853       1.1       leo  *                                                                          *
    854       1.1       leo  ****************************************************************************/
    855       1.1       leo static void
    856       1.1       leo fd_xfer(sc)
    857       1.1       leo struct fd_softc	*sc;
    858       1.1       leo {
    859      1.15       leo 	register int	head;
    860       1.1       leo 	register int	track, sector, hbit;
    861       1.1       leo 		 u_long	phys_addr;
    862       1.1       leo 
    863      1.15       leo 	head = track = 0;
    864       1.4       leo 	switch(fd_state) {
    865       1.4       leo 	    case FLP_XFER:
    866       1.4       leo 		/*
    867       1.4       leo 		 * Calculate head/track values
    868       1.4       leo 		 */
    869       1.4       leo 		track  = sc->sector / sc->nsectors;
    870       1.4       leo 		head   = track % sc->nheads;
    871       1.4       leo 		track  = track / sc->nheads;
    872       1.1       leo #ifdef FLP_DEBUG
    873      1.23  christos 		printf("fd_xfer: sector:%d,head:%d,track:%d\n", sc->sector,head,
    874       1.4       leo 								track);
    875       1.1       leo #endif
    876       1.4       leo 		break;
    877       1.4       leo 
    878       1.4       leo 	    case FLP_STAT:
    879       1.4       leo 		/*
    880       1.4       leo 		 * FLP_STAT only wants to recalibrate
    881       1.4       leo 		 */
    882       1.4       leo 		sc->curtrk = INV_TRK;
    883       1.4       leo 		break;
    884       1.4       leo 	    default:
    885       1.4       leo 		panic("fd_xfer: wrong state (0x%x)", fd_state);
    886       1.4       leo 	}
    887       1.1       leo 
    888       1.1       leo 	/*
    889       1.8       leo 	 * Select the drive.
    890       1.1       leo 	 */
    891       1.8       leo 	hbit = fdselect(sc->unit, head, sc->density) ? HBIT : 0;
    892       1.1       leo 
    893       1.1       leo 	if(sc->curtrk == INV_TRK) {
    894      1.10   mycroft 		/*
    895       1.1       leo 		 * Recalibrate, since we lost track of head positioning.
    896       1.1       leo 		 * The floppy disk controller has no way of determining its
    897       1.1       leo 		 * absolute arm position (track).  Instead, it steps the
    898       1.1       leo 		 * arm a track at a time and keeps track of where it
    899       1.1       leo 		 * thinks it is (in software).  However, after a SEEK, the
    900       1.1       leo 		 * hardware reads information from the diskette telling
    901       1.1       leo 		 * where the arm actually is.  If the arm is in the wrong place,
    902       1.1       leo 		 * a recalibration is done, which forces the arm to track 0.
    903       1.1       leo 		 * This way the controller can get back into sync with reality.
    904       1.1       leo 		 */
    905       1.8       leo 		fd_cmd = RESTORE;
    906       1.4       leo 		write_fdreg(FDC_CS, RESTORE|VBIT|hbit);
    907      1.35   thorpej 		callout_reset(&sc->sc_motor_ch, FLP_XFERDELAY,
    908      1.35   thorpej 		    (FPV)fdmotoroff, sc);
    909       1.1       leo 
    910       1.1       leo #ifdef FLP_DEBUG
    911      1.23  christos 		printf("fd_xfer:Recalibrating drive %d\n", sc->unit);
    912       1.1       leo #endif
    913       1.1       leo 		return;
    914       1.1       leo 	}
    915       1.1       leo 
    916       1.4       leo 	write_fdreg(FDC_TR, sc->curtrk);
    917       1.1       leo 
    918       1.1       leo 	/*
    919       1.1       leo 	 * Issue a SEEK command on the indicated drive unless the arm is
    920       1.1       leo 	 * already positioned on the correct track.
    921       1.1       leo 	 */
    922       1.1       leo 	if(track != sc->curtrk) {
    923       1.1       leo 		sc->curtrk = track;	/* be optimistic */
    924       1.4       leo 		write_fdreg(FDC_DR, track);
    925       1.4       leo 		write_fdreg(FDC_CS, SEEK|RATE6|VBIT|hbit);
    926      1.35   thorpej 		callout_reset(&sc->sc_motor_ch, FLP_XFERDELAY,
    927      1.35   thorpej 		    (FPV)fdmotoroff, sc);
    928       1.1       leo 		fd_cmd = SEEK;
    929       1.1       leo #ifdef FLP_DEBUG
    930      1.23  christos 		printf("fd_xfer:Seek to track %d on drive %d\n",track,sc->unit);
    931       1.1       leo #endif
    932       1.1       leo 		return;
    933       1.1       leo 	}
    934       1.1       leo 
    935       1.1       leo 	/*
    936       1.1       leo 	 * The drive is now on the proper track. Read or write 1 block.
    937       1.1       leo 	 */
    938       1.1       leo 	sector = sc->sector % sc->nsectors;
    939       1.1       leo 	sector++;	/* start numbering at 1 */
    940       1.1       leo 
    941       1.4       leo 	write_fdreg(FDC_SR, sector);
    942       1.1       leo 
    943       1.1       leo 	phys_addr = (u_long)kvtop(sc->io_data);
    944       1.1       leo 	if(phys_addr >= FDC_MAX_DMA_AD) {
    945       1.1       leo 		/*
    946       1.1       leo 		 * We _must_ bounce this address
    947       1.1       leo 		 */
    948       1.1       leo 		phys_addr = (u_long)kvtop(sc->bounceb);
    949       1.1       leo 		if(sc->io_dir == B_WRITE)
    950       1.1       leo 			bcopy(sc->io_data, sc->bounceb, SECTOR_SIZE);
    951       1.1       leo 		sc->flags |= FLPF_BOUNCE;
    952       1.1       leo 	}
    953       1.7       leo 	st_dmaaddr_set((caddr_t)phys_addr);	/* DMA address setup */
    954       1.1       leo 
    955       1.1       leo #ifdef FLP_DEBUG
    956      1.24       leo 	printf("fd_xfer:Start io (io_addr:%lx)\n", (u_long)kvtop(sc->io_data));
    957       1.1       leo #endif
    958       1.1       leo 
    959       1.1       leo 	if(sc->io_dir == B_READ) {
    960       1.1       leo 		/* Issue the command */
    961       1.4       leo 		st_dmacomm(DMA_FDC | DMA_SCREG, 1);
    962       1.4       leo 		write_fdreg(FDC_CS, F_READ|hbit);
    963       1.1       leo 		fd_cmd = F_READ;
    964       1.1       leo 	}
    965       1.1       leo 	else {
    966       1.1       leo 		/* Issue the command */
    967       1.4       leo 		st_dmacomm(DMA_WRBIT | DMA_FDC | DMA_SCREG, 1);
    968       1.4       leo 		write_fdreg(DMA_WRBIT | FDC_CS, F_WRITE|hbit|EBIT|PBIT);
    969       1.1       leo 		fd_cmd = F_WRITE;
    970       1.1       leo 	}
    971      1.35   thorpej 	callout_reset(&sc->sc_motor_ch, FLP_XFERDELAY, (FPV)fdmotoroff, sc);
    972       1.1       leo }
    973       1.1       leo 
    974       1.1       leo /* return values of fd_xfer_ok(): */
    975       1.1       leo #define X_OK			0
    976       1.1       leo #define X_AGAIN			1
    977       1.1       leo #define X_ERROR			2
    978       1.1       leo #define X_FAIL			3
    979       1.1       leo 
    980       1.1       leo /*
    981       1.1       leo  * Hardware interrupt function.
    982       1.1       leo  */
    983       1.4       leo static void
    984       1.1       leo fdcint(sc)
    985       1.1       leo struct fd_softc	*sc;
    986       1.1       leo {
    987       1.1       leo 	struct	buf	*bp;
    988       1.1       leo 
    989       1.1       leo #ifdef FLP_DEBUG
    990      1.23  christos 	printf("fdcint: unit = %d\n", sc->unit);
    991       1.1       leo #endif
    992       1.1       leo 
    993       1.1       leo 	/*
    994       1.1       leo 	 * Cancel timeout (we made it, didn't we)
    995       1.1       leo 	 */
    996      1.35   thorpej 	callout_stop(&sc->sc_motor_ch);
    997       1.1       leo 
    998       1.1       leo 	switch(fd_xfer_ok(sc)) {
    999       1.1       leo 		case X_ERROR :
   1000       1.1       leo 			if(++(sc->errcnt) < MAX_ERRORS) {
   1001       1.1       leo 				/*
   1002       1.1       leo 				 * Command failed but still retries left.
   1003       1.1       leo 				 */
   1004       1.1       leo 				break;
   1005       1.1       leo 			}
   1006       1.1       leo 			/* FALL THROUGH */
   1007       1.1       leo 		case X_FAIL  :
   1008       1.1       leo 			/*
   1009       1.1       leo 			 * Non recoverable error. Fall back to motor-on
   1010       1.1       leo 			 * idle-state.
   1011       1.1       leo 			 */
   1012       1.8       leo 			if(fd_error != NULL) {
   1013      1.23  christos 				printf("Floppy error: %s\n", fd_error);
   1014       1.8       leo 				fd_error = NULL;
   1015       1.8       leo 			}
   1016       1.8       leo 
   1017       1.4       leo 			if(fd_state == FLP_STAT) {
   1018       1.4       leo 				sc->flags |= FLPF_EMPTY;
   1019       1.4       leo 				sc->flags &= ~FLPF_GETSTAT;
   1020       1.4       leo 				wakeup((caddr_t)sc);
   1021       1.4       leo 				fddone(sc);
   1022       1.4       leo 				return;
   1023       1.4       leo 			}
   1024       1.4       leo 
   1025  1.36.8.2  jdolecek 			bp = BUFQ_PEEK(&sc->bufq);
   1026       1.1       leo 
   1027       1.1       leo 			bp->b_error  = EIO;
   1028       1.1       leo 			bp->b_flags |= B_ERROR;
   1029       1.8       leo 			fd_state     = FLP_MON;
   1030       1.1       leo 
   1031       1.1       leo 			break;
   1032       1.1       leo 		case X_AGAIN:
   1033       1.1       leo 			/*
   1034       1.1       leo 			 * Start next part of state machine.
   1035       1.1       leo 			 */
   1036       1.1       leo 			break;
   1037       1.1       leo 		case X_OK:
   1038       1.1       leo 			/*
   1039       1.1       leo 			 * Command ok and finished. Reset error-counter.
   1040       1.1       leo 			 * If there are no more bytes to transfer fall back
   1041       1.1       leo 			 * to motor-on idle state.
   1042       1.1       leo 			 */
   1043       1.1       leo 			sc->errcnt = 0;
   1044       1.4       leo 
   1045       1.4       leo 			if(fd_state == FLP_STAT) {
   1046       1.4       leo 				sc->flags &= ~FLPF_GETSTAT;
   1047       1.4       leo 				wakeup((caddr_t)sc);
   1048       1.4       leo 				fddone(sc);
   1049       1.4       leo 				return;
   1050       1.4       leo 			}
   1051       1.4       leo 
   1052       1.1       leo 			if((sc->flags & FLPF_BOUNCE) && (sc->io_dir == B_READ))
   1053       1.1       leo 				bcopy(sc->bounceb, sc->io_data, SECTOR_SIZE);
   1054       1.1       leo 			sc->flags &= ~FLPF_BOUNCE;
   1055       1.1       leo 
   1056       1.1       leo 			sc->sector++;
   1057       1.1       leo 			sc->io_data  += SECTOR_SIZE;
   1058       1.1       leo 			sc->io_bytes -= SECTOR_SIZE;
   1059       1.1       leo 			if(sc->io_bytes <= 0)
   1060       1.1       leo 				fd_state = FLP_MON;
   1061       1.1       leo 	}
   1062       1.1       leo 	if(fd_state == FLP_MON)
   1063       1.1       leo 		fddone(sc);
   1064       1.1       leo 	else fd_xfer(sc);
   1065       1.1       leo }
   1066       1.1       leo 
   1067       1.1       leo /*
   1068       1.1       leo  * Determine status of last command. Should only be called through
   1069       1.1       leo  * 'fdcint()'.
   1070       1.1       leo  * Returns:
   1071       1.1       leo  *	X_ERROR : Error on command; might succeed next time.
   1072       1.1       leo  *	X_FAIL  : Error on command; will never succeed.
   1073       1.1       leo  *	X_AGAIN : Part of a command succeeded, call 'fd_xfer()' to complete.
   1074       1.1       leo  *	X_OK	: Command succeeded and is complete.
   1075       1.1       leo  *
   1076       1.1       leo  * This function only affects sc->curtrk.
   1077       1.1       leo  */
   1078       1.1       leo static int
   1079       1.1       leo fd_xfer_ok(sc)
   1080       1.1       leo register struct fd_softc	*sc;
   1081       1.1       leo {
   1082       1.1       leo 	register int	status;
   1083       1.1       leo 
   1084       1.4       leo #ifdef FLP_DEBUG
   1085      1.23  christos 	printf("fd_xfer_ok: cmd: 0x%x, state: 0x%x\n", fd_cmd, fd_state);
   1086       1.4       leo #endif
   1087       1.1       leo 	switch(fd_cmd) {
   1088       1.1       leo 		case IRUPT:
   1089       1.1       leo 			/*
   1090       1.1       leo 			 * Timeout. Force a recalibrate before we try again.
   1091       1.1       leo 			 */
   1092       1.8       leo 			status = read_fdreg(FDC_CS);
   1093       1.8       leo 
   1094       1.1       leo 			fd_error = "Timeout";
   1095       1.1       leo 			sc->curtrk = INV_TRK;
   1096       1.1       leo 			return(X_ERROR);
   1097       1.1       leo 		case F_READ:
   1098       1.1       leo 			/*
   1099       1.1       leo 			 * Test for DMA error
   1100       1.1       leo 			 */
   1101       1.4       leo 			status = read_dmastat();
   1102       1.1       leo 			if(!(status & DMAOK)) {
   1103       1.1       leo 				fd_error = "Dma error";
   1104       1.1       leo 				return(X_ERROR);
   1105       1.1       leo 			}
   1106       1.1       leo 			/*
   1107       1.1       leo 			 * Get controller status and check for errors.
   1108       1.1       leo 			 */
   1109       1.4       leo 			status = read_fdreg(FDC_CS);
   1110       1.1       leo 			if(status & (RNF | CRCERR | LD_T00)) {
   1111       1.1       leo 				fd_error = "Read error";
   1112       1.1       leo 				if(status & RNF)
   1113       1.1       leo 					sc->curtrk = INV_TRK;
   1114       1.1       leo 				return(X_ERROR);
   1115       1.1       leo 			}
   1116       1.1       leo 			break;
   1117       1.1       leo 		case F_WRITE:
   1118       1.1       leo 			/*
   1119       1.4       leo 			 * Test for DMA error
   1120       1.4       leo 			 */
   1121       1.4       leo 			status = read_dmastat();
   1122       1.4       leo 			if(!(status & DMAOK)) {
   1123       1.4       leo 				fd_error = "Dma error";
   1124       1.4       leo 				return(X_ERROR);
   1125       1.4       leo 			}
   1126       1.4       leo 			/*
   1127       1.1       leo 			 * Get controller status and check for errors.
   1128       1.1       leo 			 */
   1129       1.4       leo 			status = read_fdreg(FDC_CS);
   1130       1.1       leo 			if(status & WRI_PRO) {
   1131       1.1       leo 				fd_error = "Write protected";
   1132       1.1       leo 				return(X_FAIL);
   1133       1.1       leo 			}
   1134       1.1       leo 			if(status & (RNF | CRCERR | LD_T00)) {
   1135       1.1       leo 				fd_error = "Write error";
   1136       1.1       leo 				sc->curtrk = INV_TRK;
   1137       1.1       leo 				return(X_ERROR);
   1138       1.1       leo 			}
   1139       1.1       leo 			break;
   1140       1.1       leo 		case SEEK:
   1141       1.4       leo 			status = read_fdreg(FDC_CS);
   1142       1.1       leo 			if(status & (RNF | CRCERR)) {
   1143       1.1       leo 				fd_error = "Seek error";
   1144       1.1       leo 				sc->curtrk = INV_TRK;
   1145       1.1       leo 				return(X_ERROR);
   1146       1.1       leo 			}
   1147       1.1       leo 			return(X_AGAIN);
   1148       1.1       leo 		case RESTORE:
   1149       1.1       leo 			/*
   1150       1.1       leo 			 * Determine if the recalibration succeeded.
   1151       1.1       leo 			 */
   1152       1.4       leo 			status = read_fdreg(FDC_CS);
   1153       1.1       leo 			if(status & RNF) {
   1154       1.1       leo 				fd_error = "Recalibrate error";
   1155       1.1       leo 				/* reset controller */
   1156       1.4       leo 				write_fdreg(FDC_CS, IRUPT);
   1157       1.1       leo 				sc->curtrk = INV_TRK;
   1158       1.1       leo 				return(X_ERROR);
   1159       1.1       leo 			}
   1160       1.1       leo 			sc->curtrk = 0;
   1161       1.4       leo 			if(fd_state == FLP_STAT) {
   1162       1.4       leo 				if(status & WRI_PRO)
   1163       1.4       leo 					sc->flags |= FLPF_WRTPROT;
   1164       1.4       leo 				break;
   1165       1.4       leo 			}
   1166       1.1       leo 			return(X_AGAIN);
   1167       1.1       leo 		default:
   1168       1.1       leo 			fd_error = "Driver error: fd_xfer_ok : Unknown state";
   1169       1.1       leo 			return(X_FAIL);
   1170       1.1       leo 	}
   1171       1.1       leo 	return(X_OK);
   1172       1.1       leo }
   1173       1.1       leo 
   1174       1.1       leo /*
   1175       1.1       leo  * All timeouts will call this function.
   1176       1.1       leo  */
   1177       1.1       leo static void
   1178       1.1       leo fdmotoroff(sc)
   1179       1.1       leo struct fd_softc	*sc;
   1180       1.1       leo {
   1181       1.8       leo 	int	sps;
   1182       1.1       leo 
   1183       1.1       leo 	/*
   1184       1.1       leo 	 * Get at harware interrupt level
   1185       1.1       leo 	 */
   1186       1.1       leo 	sps = splbio();
   1187       1.1       leo 
   1188       1.1       leo #if FLP_DEBUG
   1189      1.23  christos 	printf("fdmotoroff, state = 0x%x\n", fd_state);
   1190       1.1       leo #endif
   1191       1.1       leo 
   1192       1.1       leo 	switch(fd_state) {
   1193       1.4       leo 		case FLP_STAT :
   1194       1.1       leo 		case FLP_XFER :
   1195       1.1       leo 			/*
   1196       1.1       leo 			 * Timeout during a transfer; cancel transaction
   1197       1.1       leo 			 * set command to 'IRUPT'.
   1198       1.1       leo 			 * A drive-interrupt is simulated to trigger the state
   1199       1.1       leo 			 * machine.
   1200       1.1       leo 			 */
   1201       1.1       leo 			/*
   1202       1.1       leo 			 * Cancel current transaction
   1203       1.1       leo 			 */
   1204       1.1       leo 			fd_cmd = IRUPT;
   1205       1.8       leo 			write_fdreg(FDC_CS, IRUPT);
   1206       1.8       leo 			delay(20);
   1207       1.8       leo 			(void)read_fdreg(FDC_CS);
   1208       1.8       leo 			write_fdreg(FDC_CS, RESTORE);
   1209       1.8       leo 			break;
   1210       1.1       leo 
   1211       1.1       leo 		case FLP_MON  :
   1212       1.1       leo 			/*
   1213       1.1       leo 			 * Turn motor off.
   1214       1.1       leo 			 */
   1215      1.12       leo 			if(selected) {
   1216      1.12       leo 				int tmp;
   1217      1.12       leo 
   1218      1.15       leo 				st_dmagrab((dma_farg)fdcint, (dma_farg)fdmoff,
   1219      1.15       leo 								sc, &tmp, 0);
   1220      1.12       leo 			}
   1221      1.12       leo 			else  fd_state = FLP_IDLE;
   1222       1.1       leo 			break;
   1223       1.1       leo 	}
   1224       1.1       leo 	splx(sps);
   1225       1.1       leo }
   1226       1.1       leo 
   1227       1.1       leo /*
   1228       1.1       leo  * min byte count to whats left of the track in question
   1229       1.1       leo  */
   1230      1.10   mycroft static void
   1231       1.1       leo fdminphys(bp)
   1232       1.1       leo struct buf	*bp;
   1233       1.1       leo {
   1234       1.1       leo 	struct fd_softc	*sc;
   1235       1.1       leo 	int		sec, toff, tsz;
   1236       1.1       leo 
   1237      1.16   thorpej 	if((sc = getsoftc(fd_cd, DISKUNIT(bp->b_dev))) == NULL)
   1238       1.9       cgd 		panic("fdminphys: couldn't get softc");
   1239       1.1       leo 
   1240       1.1       leo 	sec  = bp->b_blkno % (sc->nsectors * sc->nheads);
   1241       1.1       leo 	toff = sec * SECTOR_SIZE;
   1242       1.1       leo 	tsz  = sc->nsectors * sc->nheads * SECTOR_SIZE;
   1243       1.1       leo 
   1244       1.1       leo #ifdef FLP_DEBUG
   1245      1.24       leo 	printf("fdminphys: before %ld", bp->b_bcount);
   1246       1.1       leo #endif
   1247       1.1       leo 
   1248       1.1       leo 	bp->b_bcount = min(bp->b_bcount, tsz - toff);
   1249       1.1       leo 
   1250       1.1       leo #ifdef FLP_DEBUG
   1251      1.24       leo 	printf(" after %ld\n", bp->b_bcount);
   1252       1.1       leo #endif
   1253       1.1       leo 
   1254      1.10   mycroft 	minphys(bp);
   1255      1.12       leo }
   1256      1.12       leo 
   1257      1.12       leo /*
   1258      1.12       leo  * Called from fdmotoroff to turn the motor actually off....
   1259      1.12       leo  * This can't be done in fdmotoroff itself, because exclusive access to the
   1260      1.12       leo  * DMA controller is needed to read the FDC-status register. The function
   1261      1.12       leo  * 'fdmoff()' always runs as the result of a 'dmagrab()'.
   1262      1.12       leo  * We need to test the status-register because we want to be sure that the
   1263      1.12       leo  * drive motor is really off before deselecting the drive. The FDC only
   1264      1.12       leo  * turns off the drive motor after having seen 10 index-pulses. You only
   1265      1.12       leo  * get index-pulses when a drive is selected....This means that if the
   1266      1.12       leo  * drive is deselected when the motor is still spinning, it will continue
   1267      1.12       leo  * to spin _even_ when you insert a floppy later on...
   1268      1.12       leo  */
   1269      1.12       leo static void
   1270      1.12       leo fdmoff(fdsoftc)
   1271      1.12       leo struct fd_softc	*fdsoftc;
   1272      1.12       leo {
   1273      1.12       leo 	int tmp;
   1274      1.12       leo 
   1275      1.12       leo 	if ((fd_state == FLP_MON) && selected) {
   1276      1.12       leo 		tmp = read_fdreg(FDC_CS);
   1277      1.12       leo 		if (!(tmp & MOTORON)) {
   1278      1.12       leo 			fddeselect();
   1279      1.12       leo 			fd_state = FLP_IDLE;
   1280      1.12       leo 		}
   1281      1.35   thorpej 		else
   1282      1.35   thorpej 			callout_reset(&fdsoftc->sc_motor_ch, 10*FLP_MONDELAY,
   1283      1.35   thorpej 			    (FPV)fdmotoroff, fdsoftc);
   1284      1.12       leo 	}
   1285      1.12       leo 	st_dmafree(fdsoftc, &tmp);
   1286       1.1       leo }
   1287       1.1       leo 
   1288       1.1       leo /*
   1289  1.36.8.1     lukem  * Used to find out wich drives are actually connected. We do this by issuing
   1290       1.1       leo  * is 'RESTORE' command and check if the 'track-0' bit is set. This also works
   1291       1.1       leo  * if the drive is present but no floppy is inserted.
   1292       1.1       leo  */
   1293       1.1       leo static void
   1294       1.1       leo fdtestdrv(fdsoftc)
   1295       1.1       leo struct fd_softc	*fdsoftc;
   1296       1.1       leo {
   1297      1.15       leo 	int	status;
   1298       1.1       leo 
   1299       1.1       leo 	/*
   1300       1.1       leo 	 * Select the right unit and head.
   1301       1.1       leo 	 */
   1302       1.8       leo 	fdselect(fdsoftc->unit, 0, FLP_DD);
   1303       1.1       leo 
   1304       1.8       leo 	write_fdreg(FDC_CS, RESTORE|HBIT);
   1305       1.1       leo 
   1306       1.1       leo 	/*
   1307       1.1       leo 	 * Wait for about 2 seconds.
   1308       1.1       leo 	 */
   1309       1.1       leo 	delay(2000000);
   1310       1.1       leo 
   1311       1.4       leo 	status = read_fdreg(FDC_CS);
   1312       1.8       leo 	if(status & (RNF|BUSY)) {
   1313       1.4       leo 		write_fdreg(FDC_CS, IRUPT);	/* reset controller */
   1314       1.8       leo 		delay(40);
   1315       1.8       leo 	}
   1316       1.1       leo 
   1317       1.1       leo 	if(!(status & LD_T00))
   1318       1.1       leo 		fdsoftc->flags |= FLPF_NOTRESP;
   1319       1.8       leo 
   1320       1.8       leo 	fddeselect();
   1321       1.1       leo }
   1322       1.1       leo 
   1323      1.26   thorpej static void
   1324      1.26   thorpej fdgetdefaultlabel(sc, lp, part)
   1325      1.26   thorpej 	struct fd_softc *sc;
   1326      1.26   thorpej 	struct disklabel *lp;
   1327      1.26   thorpej 	int part;
   1328       1.1       leo {
   1329       1.1       leo 
   1330       1.1       leo 	bzero(lp, sizeof(struct disklabel));
   1331      1.10   mycroft 
   1332       1.1       leo 	lp->d_secsize     = SECTOR_SIZE;
   1333       1.1       leo 	lp->d_ntracks     = sc->nheads;
   1334       1.1       leo 	lp->d_nsectors    = sc->nsectors;
   1335       1.1       leo 	lp->d_secpercyl   = lp->d_ntracks * lp->d_nsectors;
   1336       1.1       leo 	lp->d_ncylinders  = sc->nblocks / lp->d_secpercyl;
   1337       1.1       leo 	lp->d_secperunit  = sc->nblocks;
   1338       1.1       leo 
   1339       1.1       leo 	lp->d_type        = DTYPE_FLOPPY;
   1340       1.1       leo 	lp->d_rpm         = 300; 	/* good guess I suppose.	*/
   1341       1.1       leo 	lp->d_interleave  = 1;		/* FIXME: is this OK?		*/
   1342       1.1       leo 	lp->d_bbsize      = 0;
   1343       1.1       leo 	lp->d_sbsize      = 0;
   1344       1.1       leo 	lp->d_npartitions = part + 1;
   1345      1.10   mycroft 	lp->d_trkseek     = STEP_DELAY;
   1346       1.1       leo 	lp->d_magic       = DISKMAGIC;
   1347       1.1       leo 	lp->d_magic2      = DISKMAGIC;
   1348       1.1       leo 	lp->d_checksum    = dkcksum(lp);
   1349       1.1       leo 	lp->d_partitions[part].p_size   = lp->d_secperunit;
   1350       1.1       leo 	lp->d_partitions[part].p_fstype = FS_UNUSED;
   1351       1.1       leo 	lp->d_partitions[part].p_fsize  = 1024;
   1352       1.1       leo 	lp->d_partitions[part].p_frag   = 8;
   1353      1.26   thorpej }
   1354      1.26   thorpej 
   1355      1.26   thorpej /*
   1356      1.26   thorpej  * Build disk label. For now we only create a label from what we know
   1357      1.26   thorpej  * from 'sc'.
   1358      1.26   thorpej  */
   1359      1.26   thorpej static int
   1360      1.26   thorpej fdgetdisklabel(sc, dev)
   1361      1.26   thorpej struct fd_softc *sc;
   1362      1.26   thorpej dev_t			dev;
   1363      1.26   thorpej {
   1364      1.26   thorpej 	struct disklabel	*lp;
   1365      1.26   thorpej 	int			part;
   1366      1.26   thorpej 
   1367      1.26   thorpej 	/*
   1368      1.26   thorpej 	 * If we already got one, get out.
   1369      1.26   thorpej 	 */
   1370      1.26   thorpej 	if(sc->flags & FLPF_HAVELAB)
   1371      1.26   thorpej 		return(0);
   1372      1.26   thorpej 
   1373      1.26   thorpej #ifdef FLP_DEBUG
   1374      1.26   thorpej 	printf("fdgetdisklabel()\n");
   1375      1.26   thorpej #endif
   1376      1.26   thorpej 
   1377      1.26   thorpej 	part = RAW_PART;
   1378      1.26   thorpej 	lp   = sc->dkdev.dk_label;
   1379      1.26   thorpej 	fdgetdefaultlabel(sc, lp, part);
   1380       1.1       leo 	sc->flags        |= FLPF_HAVELAB;
   1381      1.10   mycroft 
   1382       1.1       leo 	return(0);
   1383       1.1       leo }
   1384