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      1  1.52    andvar /*	$NetBSD: fd.c,v 1.52 2023/08/29 21:55:11 andvar Exp $	*/
      2   1.1        ur /*	$OpenBSD: fd.c,v 1.6 1998/10/03 21:18:57 millert Exp $	*/
      3   1.1        ur /*	NetBSD: fd.c,v 1.78 1995/07/04 07:23:09 mycroft Exp 	*/
      4   1.1        ur 
      5   1.1        ur /*-
      6   1.1        ur  * Copyright (c) 1998 The NetBSD Foundation, Inc.
      7   1.1        ur  * All rights reserved.
      8   1.1        ur  *
      9   1.1        ur  * This code is derived from software contributed to The NetBSD Foundation
     10   1.1        ur  * by Charles M. Hannum.
     11   1.1        ur  *
     12   1.1        ur  * Redistribution and use in source and binary forms, with or without
     13   1.1        ur  * modification, are permitted provided that the following conditions
     14   1.1        ur  * are met:
     15   1.1        ur  * 1. Redistributions of source code must retain the above copyright
     16   1.1        ur  *    notice, this list of conditions and the following disclaimer.
     17   1.1        ur  * 2. Redistributions in binary form must reproduce the above copyright
     18   1.1        ur  *    notice, this list of conditions and the following disclaimer in the
     19   1.1        ur  *    documentation and/or other materials provided with the distribution.
     20   1.1        ur  *
     21   1.1        ur  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     22   1.1        ur  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     23   1.1        ur  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     24   1.1        ur  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     25   1.1        ur  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     26   1.1        ur  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     27   1.1        ur  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     28   1.1        ur  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     29   1.1        ur  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     30   1.1        ur  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     31   1.1        ur  * POSSIBILITY OF SUCH DAMAGE.
     32   1.1        ur  */
     33   1.1        ur 
     34   1.1        ur /*-
     35   1.1        ur  * Copyright (c) 1990 The Regents of the University of California.
     36   1.1        ur  * All rights reserved.
     37   1.1        ur  *
     38   1.1        ur  * This code is derived from software contributed to Berkeley by
     39   1.1        ur  * Don Ahn.
     40   1.1        ur  *
     41   1.1        ur  * Redistribution and use in source and binary forms, with or without
     42   1.1        ur  * modification, are permitted provided that the following conditions
     43   1.1        ur  * are met:
     44   1.1        ur  * 1. Redistributions of source code must retain the above copyright
     45   1.1        ur  *    notice, this list of conditions and the following disclaimer.
     46   1.1        ur  * 2. Redistributions in binary form must reproduce the above copyright
     47   1.1        ur  *    notice, this list of conditions and the following disclaimer in the
     48   1.1        ur  *    documentation and/or other materials provided with the distribution.
     49  1.17       agc  * 3. Neither the name of the University nor the names of its contributors
     50   1.1        ur  *    may be used to endorse or promote products derived from this software
     51   1.1        ur  *    without specific prior written permission.
     52   1.1        ur  *
     53   1.1        ur  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     54   1.1        ur  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     55   1.1        ur  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     56   1.1        ur  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     57   1.1        ur  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     58   1.1        ur  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     59   1.1        ur  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     60   1.1        ur  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     61   1.1        ur  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     62   1.1        ur  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     63   1.1        ur  * SUCH DAMAGE.
     64   1.1        ur  *
     65   1.1        ur  *	@(#)fd.c	7.4 (Berkeley) 5/25/91
     66   1.1        ur  */
     67  1.16     lukem 
     68  1.16     lukem #include <sys/cdefs.h>
     69  1.52    andvar __KERNEL_RCSID(0, "$NetBSD: fd.c,v 1.52 2023/08/29 21:55:11 andvar Exp $");
     70   1.1        ur 
     71   1.1        ur #include <sys/param.h>
     72   1.1        ur #include <sys/systm.h>
     73   1.1        ur #include <sys/callout.h>
     74   1.1        ur #include <sys/kernel.h>
     75   1.1        ur #include <sys/conf.h>
     76   1.1        ur #include <sys/file.h>
     77   1.1        ur #include <sys/ioctl.h>
     78   1.1        ur #include <sys/device.h>
     79   1.1        ur #include <sys/disklabel.h>
     80   1.1        ur #include <sys/disk.h>
     81   1.1        ur #include <sys/buf.h>
     82  1.18      yamt #include <sys/bufq.h>
     83   1.1        ur #include <sys/uio.h>
     84   1.1        ur #include <sys/syslog.h>
     85   1.1        ur #include <sys/queue.h>
     86   1.1        ur 
     87   1.1        ur #include <uvm/uvm_extern.h>
     88   1.1        ur 
     89   1.2      soda #include <dev/cons.h>
     90   1.2      soda 
     91  1.41    dyoung #include <sys/bus.h>
     92   1.1        ur #include <machine/cpu.h>
     93   1.1        ur 
     94   1.1        ur #include <arc/jazz/fdreg.h>
     95   1.2      soda #include <arc/jazz/fdcvar.h>
     96   1.1        ur 
     97  1.27   tsutsui #include "ioconf.h"
     98   1.1        ur #include "locators.h"
     99   1.1        ur 
    100   1.2      soda #define FDUNIT(dev)	DISKUNIT(dev)
    101   1.2      soda #define FDTYPE(dev)	DISKPART(dev)
    102   1.1        ur 
    103   1.1        ur /* controller driver configuration */
    104  1.37   tsutsui static int fdprint(void *, const char *);
    105   1.1        ur 
    106   1.1        ur /*
    107   1.1        ur  * Floppies come in various flavors, e.g., 1.2MB vs 1.44MB; here is how
    108   1.1        ur  * we tell them apart.
    109   1.1        ur  */
    110   1.1        ur struct fd_type {
    111   1.1        ur 	int	sectrac;	/* sectors per track */
    112   1.1        ur 	int	heads;		/* number of heads */
    113   1.1        ur 	int	seccyl;		/* sectors per cylinder */
    114   1.1        ur 	int	secsize;	/* size code for sectors */
    115   1.1        ur 	int	datalen;	/* data len when secsize = 0 */
    116   1.1        ur 	int	steprate;	/* step rate and head unload time */
    117   1.1        ur 	int	gap1;		/* gap len between sectors */
    118   1.1        ur 	int	gap2;		/* formatting gap */
    119   1.2      soda 	int	cyls;		/* total num of cylinders */
    120   1.1        ur 	int	size;		/* size of disk in sectors */
    121   1.1        ur 	int	step;		/* steps per cylinder */
    122   1.1        ur 	int	rate;		/* transfer speed code */
    123   1.2      soda 	const char *name;
    124   1.1        ur };
    125   1.1        ur 
    126   1.1        ur /* The order of entries in the following table is important -- BEWARE! */
    127  1.37   tsutsui const static struct fd_type fd_types[] = {
    128  1.11   tsutsui 	/* 1.44MB diskette */
    129  1.11   tsutsui 	{ 18,2,36,2,0xff,0xcf,0x1b,0x6c,80,2880,1,FDC_500KBPS,"1.44MB"    },
    130  1.11   tsutsui 	/* 1.2 MB AT-diskettes */
    131  1.11   tsutsui 	{ 15,2,30,2,0xff,0xdf,0x1b,0x54,80,2400,1,FDC_500KBPS, "1.2MB"    },
    132  1.11   tsutsui 	/* 360kB in 1.2MB drive */
    133  1.11   tsutsui 	{  9,2,18,2,0xff,0xdf,0x23,0x50,40, 720,2,FDC_300KBPS, "360KB/AT" },
    134  1.11   tsutsui 	/* 360kB PC diskettes */
    135  1.11   tsutsui 	{  9,2,18,2,0xff,0xdf,0x2a,0x50,40, 720,1,FDC_250KBPS, "360KB/PC" },
    136  1.11   tsutsui 	/* 3.5" 720kB diskette */
    137  1.11   tsutsui 	{  9,2,18,2,0xff,0xdf,0x2a,0x50,80,1440,1,FDC_250KBPS, "720KB"    },
    138  1.11   tsutsui 	/* 720kB in 1.2MB drive */
    139  1.11   tsutsui 	{  9,2,18,2,0xff,0xdf,0x23,0x50,80,1440,1,FDC_300KBPS, "720KB/x"  },
    140  1.11   tsutsui 	/* 360kB in 720kB drive */
    141  1.11   tsutsui 	{  9,2,18,2,0xff,0xdf,0x2a,0x50,40, 720,2,FDC_250KBPS, "360KB/x"  },
    142   1.1        ur };
    143   1.1        ur 
    144   1.1        ur /* software state, per disk (with up to 4 disks per ctlr) */
    145   1.1        ur struct fd_softc {
    146  1.37   tsutsui 	device_t sc_dev;
    147   1.1        ur 	struct disk sc_dk;
    148   1.1        ur 
    149   1.2      soda 	const struct fd_type *sc_deftype; /* default type descriptor */
    150   1.1        ur 	struct fd_type *sc_type;	/* current type descriptor */
    151   1.2      soda 	struct fd_type sc_type_copy;	/* copy for fiddling when formatting */
    152   1.1        ur 
    153   1.1        ur 	struct callout sc_motoron_ch;
    154   1.1        ur 	struct callout sc_motoroff_ch;
    155   1.1        ur 
    156   1.1        ur 	daddr_t	sc_blkno;	/* starting block number */
    157   1.1        ur 	int sc_bcount;		/* byte count left */
    158   1.2      soda 	int sc_opts;		/* user-set options */
    159   1.1        ur 	int sc_skip;		/* bytes already transferred */
    160   1.3       wiz 	int sc_nblks;		/* number of blocks currently transferring */
    161   1.3       wiz 	int sc_nbytes;		/* number of bytes currently transferring */
    162   1.1        ur 
    163   1.1        ur 	int sc_drive;		/* physical unit number */
    164   1.1        ur 	int sc_flags;
    165   1.1        ur #define	FD_OPEN		0x01		/* it's open */
    166   1.1        ur #define	FD_MOTOR	0x02		/* motor should be on */
    167   1.1        ur #define	FD_MOTOR_WAIT	0x04		/* motor coming up */
    168   1.1        ur 	int sc_cylin;		/* where we think the head is */
    169   1.1        ur 
    170   1.1        ur 	TAILQ_ENTRY(fd_softc) sc_drivechain;
    171   1.1        ur 	int sc_ops;		/* I/O ops since last switch */
    172  1.22      yamt 	struct bufq_state *sc_q;/* pending I/O requests */
    173   1.1        ur 	int sc_active;		/* number of active I/O operations */
    174   1.1        ur };
    175   1.1        ur 
    176   1.1        ur /* floppy driver configuration */
    177  1.37   tsutsui static int fdprobe(device_t, cfdata_t, void *);
    178  1.37   tsutsui static void fdattach(device_t, device_t, void *);
    179   1.1        ur 
    180  1.37   tsutsui CFATTACH_DECL_NEW(fd, sizeof(struct fd_softc), fdprobe, fdattach, NULL, NULL);
    181   1.1        ur 
    182   1.5   gehenna dev_type_open(fdopen);
    183   1.5   gehenna dev_type_close(fdclose);
    184   1.5   gehenna dev_type_read(fdread);
    185   1.5   gehenna dev_type_write(fdwrite);
    186   1.5   gehenna dev_type_ioctl(fdioctl);
    187   1.5   gehenna dev_type_strategy(fdstrategy);
    188   1.5   gehenna 
    189   1.5   gehenna const struct bdevsw fd_bdevsw = {
    190  1.43  dholland 	.d_open = fdopen,
    191  1.43  dholland 	.d_close = fdclose,
    192  1.43  dholland 	.d_strategy = fdstrategy,
    193  1.43  dholland 	.d_ioctl = fdioctl,
    194  1.43  dholland 	.d_dump = nodump,
    195  1.43  dholland 	.d_psize = nosize,
    196  1.44  dholland 	.d_discard = nodiscard,
    197  1.43  dholland 	.d_flag = D_DISK
    198   1.5   gehenna };
    199   1.5   gehenna 
    200   1.5   gehenna const struct cdevsw fd_cdevsw = {
    201  1.43  dholland 	.d_open = fdopen,
    202  1.43  dholland 	.d_close = fdclose,
    203  1.43  dholland 	.d_read = fdread,
    204  1.43  dholland 	.d_write = fdwrite,
    205  1.43  dholland 	.d_ioctl = fdioctl,
    206  1.43  dholland 	.d_stop = nostop,
    207  1.43  dholland 	.d_tty = notty,
    208  1.43  dholland 	.d_poll = nopoll,
    209  1.43  dholland 	.d_mmap = nommap,
    210  1.43  dholland 	.d_kqfilter = nokqfilter,
    211  1.45  dholland 	.d_discard = nodiscard,
    212  1.43  dholland 	.d_flag = D_DISK
    213   1.5   gehenna };
    214   1.5   gehenna 
    215  1.37   tsutsui static void fdstart(struct fd_softc *);
    216   1.1        ur 
    217  1.47   mlelstv struct dkdriver fddkdriver = {
    218  1.47   mlelstv 	.d_strategy = fdstrategy
    219  1.47   mlelstv };
    220   1.1        ur 
    221  1.40   tsutsui static bool fd_shutdown(device_t, int);
    222   1.2      soda #if 0
    223  1.37   tsutsui static const struct fd_type *fd_nvtotype(char *, int, int);
    224   1.2      soda #endif
    225  1.37   tsutsui static void fd_set_motor(struct fdc_softc *, int);
    226  1.37   tsutsui static void fd_motor_off(void *);
    227  1.37   tsutsui static void fd_motor_on(void *);
    228  1.37   tsutsui static int fdcresult(struct fdc_softc *);
    229  1.37   tsutsui static void fdcstart(struct fdc_softc *);
    230  1.37   tsutsui static void fdcstatus(device_t, int, const char *);
    231  1.37   tsutsui static void fdctimeout(void *);
    232  1.37   tsutsui static void fdcpseudointr(void *);
    233  1.37   tsutsui static void fdcretry(struct fdc_softc *);
    234  1.37   tsutsui static void fdfinish(struct fd_softc *, struct buf *);
    235  1.49       mrg static const struct fd_type *fd_dev_to_type(struct fd_softc *, dev_t);
    236  1.37   tsutsui static void fd_mountroot_hook(device_t);
    237   1.1        ur 
    238   1.1        ur /*
    239   1.1        ur  * Arguments passed between fdcattach and fdprobe.
    240   1.1        ur  */
    241   1.1        ur struct fdc_attach_args {
    242   1.1        ur 	int fa_drive;
    243   1.2      soda 	const struct fd_type *fa_deftype;
    244   1.1        ur };
    245   1.1        ur 
    246   1.1        ur /*
    247   1.1        ur  * Print the location of a disk drive (called just before attaching the
    248   1.1        ur  * the drive).  If `fdc' is not NULL, the drive was found but was not
    249   1.1        ur  * in the system config file; print the drive name as well.
    250   1.1        ur  * Return QUIET (config_find ignores this if the device was configured) to
    251   1.1        ur  * avoid printing `fdN not configured' messages.
    252   1.1        ur  */
    253  1.37   tsutsui static int
    254  1.19   tsutsui fdprint(void *aux, const char *fdc)
    255   1.1        ur {
    256  1.14   tsutsui 	struct fdc_attach_args *fa = aux;
    257   1.1        ur 
    258  1.37   tsutsui 	if (fdc == NULL)
    259  1.10   thorpej 		aprint_normal(" drive %d", fa->fa_drive);
    260   1.1        ur 	return QUIET;
    261   1.1        ur }
    262   1.1        ur 
    263   1.1        ur void
    264  1.19   tsutsui fdcattach(struct fdc_softc *fdc)
    265   1.1        ur {
    266   1.1        ur 	struct fdc_attach_args fa;
    267   1.1        ur 	int type;
    268   1.1        ur 
    269  1.30        ad 	callout_init(&fdc->sc_timo_ch, 0);
    270  1.30        ad 	callout_init(&fdc->sc_intr_ch, 0);
    271   1.2      soda 
    272   1.1        ur 	fdc->sc_state = DEVIDLE;
    273   1.1        ur 	TAILQ_INIT(&fdc->sc_drives);
    274   1.1        ur 
    275   1.1        ur 	/*
    276   1.1        ur 	 * No way yet to determine default disk types.
    277   1.1        ur 	 * we assume 1.44 3.5" type for the moment.
    278   1.1        ur 	 */
    279   1.1        ur 	type = 0;
    280   1.1        ur 
    281   1.1        ur 	/* physical limit: two drives per controller. */
    282   1.1        ur 	for (fa.fa_drive = 0; fa.fa_drive < 2; fa.fa_drive++) {
    283   1.2      soda 		fa.fa_deftype = &fd_types[type];
    284  1.50   thorpej 		(void)config_found(fdc->sc_dev, (void *)&fa, fdprint,
    285  1.51   thorpej 		    CFARGS_NONE);
    286   1.1        ur 	}
    287   1.1        ur }
    288   1.1        ur 
    289  1.37   tsutsui static int
    290  1.37   tsutsui fdprobe(device_t parent, cfdata_t cf , void *aux)
    291   1.1        ur {
    292  1.37   tsutsui 	struct fdc_softc *fdc = device_private(parent);
    293   1.1        ur 	struct fdc_attach_args *fa = aux;
    294   1.1        ur 	int drive = fa->fa_drive;
    295   1.2      soda 	bus_space_tag_t iot = fdc->sc_iot;
    296   1.2      soda 	bus_space_handle_t ioh = fdc->sc_ioh;
    297   1.1        ur 	int n;
    298   1.1        ur 
    299   1.2      soda 	if (cf->cf_loc[FDCCF_DRIVE] != FDCCF_DRIVE_DEFAULT &&
    300   1.2      soda 	    cf->cf_loc[FDCCF_DRIVE] != drive)
    301   1.1        ur 		return 0;
    302   1.1        ur 
    303   1.1        ur 	/* select drive and turn on motor */
    304   1.2      soda 	bus_space_write_1(iot, ioh, FDOUT, drive | FDO_FRST | FDO_MOEN(drive));
    305   1.1        ur 	/* wait for motor to spin up */
    306   1.2      soda 	delay(250000);
    307   1.2      soda 	out_fdc(iot, ioh, NE7CMD_RECAL);
    308   1.2      soda 	out_fdc(iot, ioh, drive);
    309   1.1        ur 	/* wait for recalibrate */
    310   1.1        ur 	delay(2000000);
    311   1.2      soda 	out_fdc(iot, ioh, NE7CMD_SENSEI);
    312   1.1        ur 	n = fdcresult(fdc);
    313   1.1        ur #ifdef FD_DEBUG
    314   1.1        ur 	{
    315   1.1        ur 		int i;
    316  1.37   tsutsui 		aprint_debug("%s: status", __func__);
    317   1.1        ur 		for (i = 0; i < n; i++)
    318  1.37   tsutsui 			aprint_debug(" %x", fdc->sc_status[i]);
    319  1.37   tsutsui 		aprint_debug("\n");
    320   1.1        ur 	}
    321   1.1        ur #endif
    322   1.1        ur 	if (n != 2 || (fdc->sc_status[0] & 0xf8) != 0x20)
    323   1.1        ur 		return 0;
    324   1.1        ur 	/* turn off motor */
    325   1.2      soda 	bus_space_write_1(iot, ioh, FDOUT, FDO_FRST);
    326   1.1        ur 
    327   1.1        ur 	return 1;
    328   1.1        ur }
    329   1.1        ur 
    330   1.1        ur /*
    331   1.1        ur  * Controller is working, and drive responded.  Attach it.
    332   1.1        ur  */
    333   1.1        ur void
    334  1.37   tsutsui fdattach(device_t parent, device_t self, void *aux)
    335   1.1        ur {
    336  1.37   tsutsui 	struct fdc_softc *fdc = device_private(parent);
    337  1.37   tsutsui 	struct fd_softc *fd = device_private(self);
    338   1.1        ur 	struct fdc_attach_args *fa = aux;
    339   1.2      soda 	const struct fd_type *type = fa->fa_deftype;
    340   1.1        ur 	int drive = fa->fa_drive;
    341   1.1        ur 
    342  1.37   tsutsui 	fd->sc_dev = self;
    343  1.37   tsutsui 
    344  1.30        ad 	callout_init(&fd->sc_motoron_ch, 0);
    345  1.30        ad 	callout_init(&fd->sc_motoroff_ch, 0);
    346   1.1        ur 
    347   1.1        ur 	/* XXX Allow `flags' to override device type? */
    348   1.1        ur 
    349   1.1        ur 	if (type)
    350   1.2      soda 		printf(": %s, %d cyl, %d head, %d sec\n", type->name,
    351   1.2      soda 		    type->cyls, type->heads, type->sectrac);
    352   1.1        ur 	else
    353   1.1        ur 		printf(": density unknown\n");
    354   1.1        ur 
    355  1.22      yamt 	bufq_alloc(&fd->sc_q, "disksort", BUFQ_SORT_CYLINDER);
    356   1.1        ur 	fd->sc_cylin = -1;
    357   1.1        ur 	fd->sc_drive = drive;
    358   1.1        ur 	fd->sc_deftype = type;
    359   1.1        ur 	fdc->sc_fd[drive] = fd;
    360   1.2      soda 
    361   1.2      soda 	/*
    362   1.2      soda 	 * Initialize and attach the disk structure.
    363   1.2      soda 	 */
    364  1.37   tsutsui 	disk_init(&fd->sc_dk, device_xname(fd->sc_dev), &fddkdriver);
    365   1.2      soda 	disk_attach(&fd->sc_dk);
    366   1.2      soda 
    367   1.2      soda 	/* Establish a mountroot hook. */
    368  1.37   tsutsui 	mountroothook_establish(fd_mountroot_hook, fd->sc_dev);
    369   1.1        ur 
    370   1.1        ur 	/* Needed to power off if the motor is on when we halt. */
    371  1.40   tsutsui 	if (!pmf_device_register1(self, NULL, NULL, fd_shutdown))
    372  1.40   tsutsui 		aprint_error_dev(self, "couldn't establish power handler\n");
    373  1.40   tsutsui }
    374  1.40   tsutsui 
    375  1.40   tsutsui bool
    376  1.40   tsutsui fd_shutdown(device_t self, int howto)
    377  1.40   tsutsui {
    378  1.40   tsutsui 	struct fd_softc *fd;
    379  1.40   tsutsui 
    380  1.40   tsutsui 	fd = device_private(self);
    381  1.40   tsutsui 	fd_motor_off(fd);
    382  1.40   tsutsui 
    383  1.40   tsutsui 	return true;
    384   1.1        ur }
    385   1.1        ur 
    386   1.2      soda #if 0
    387   1.1        ur /*
    388   1.1        ur  * Translate nvram type into internal data structure.  Return NULL for
    389   1.1        ur  * none/unknown/unusable.
    390   1.1        ur  */
    391  1.37   tsutsui static const struct fd_type *
    392  1.19   tsutsui fd_nvtotype(char *fdc, int nvraminfo, int drive)
    393   1.1        ur {
    394   1.1        ur 	int type;
    395   1.1        ur 
    396   1.1        ur 	type = (drive == 0 ? nvraminfo : nvraminfo << 4) & 0xf0;
    397   1.1        ur #if 0
    398   1.1        ur 	switch (type) {
    399   1.1        ur 	case NVRAM_DISKETTE_NONE:
    400   1.1        ur 		return NULL;
    401   1.1        ur 	case NVRAM_DISKETTE_12M:
    402   1.1        ur 		return &fd_types[1];
    403   1.1        ur 	case NVRAM_DISKETTE_TYPE5:
    404   1.1        ur 	case NVRAM_DISKETTE_TYPE6:
    405   1.1        ur 		/* XXX We really ought to handle 2.88MB format. */
    406   1.1        ur 	case NVRAM_DISKETTE_144M:
    407   1.1        ur 		return &fd_types[0];
    408   1.1        ur 	case NVRAM_DISKETTE_360K:
    409   1.1        ur 		return &fd_types[3];
    410   1.1        ur 	case NVRAM_DISKETTE_720K:
    411   1.1        ur 		return &fd_types[4];
    412   1.1        ur 	default:
    413   1.1        ur 		printf("%s: drive %d: unknown device type 0x%x\n",
    414   1.1        ur 		    fdc, drive, type);
    415   1.1        ur 		return NULL;
    416   1.1        ur 	}
    417   1.1        ur #else
    418   1.1        ur 	return &fd_types[0]; /* Use only 1.44 for now */
    419   1.1        ur #endif
    420   1.1        ur }
    421   1.2      soda #endif
    422   1.2      soda 
    423  1.49       mrg static const struct fd_type *
    424  1.19   tsutsui fd_dev_to_type(struct fd_softc *fd, dev_t dev)
    425   1.2      soda {
    426   1.2      soda 	int type = FDTYPE(dev);
    427   1.2      soda 
    428  1.37   tsutsui 	if (type > __arraycount(fd_types))
    429   1.2      soda 		return NULL;
    430   1.2      soda 	return type ? &fd_types[type - 1] : fd->sc_deftype;
    431   1.2      soda }
    432   1.1        ur 
    433   1.1        ur void
    434  1.19   tsutsui fdstrategy(struct buf *bp)
    435   1.1        ur {
    436  1.36   tsutsui 	struct fd_softc *fd = device_lookup_private(&fd_cd, FDUNIT(bp->b_dev));
    437   1.1        ur 	int sz;
    438  1.11   tsutsui 	int s;
    439   1.1        ur 
    440   1.1        ur 	/* Valid unit, controller, and request? */
    441   1.2      soda 	if (bp->b_blkno < 0 ||
    442   1.1        ur 	    (bp->b_bcount % FDC_BSIZE) != 0) {
    443   1.1        ur 		bp->b_error = EINVAL;
    444  1.32        he 		goto done;
    445   1.1        ur 	}
    446   1.1        ur 
    447   1.1        ur 	/* If it's a null transfer, return immediately. */
    448   1.1        ur 	if (bp->b_bcount == 0)
    449   1.1        ur 		goto done;
    450   1.1        ur 
    451   1.1        ur 	sz = howmany(bp->b_bcount, FDC_BSIZE);
    452   1.1        ur 
    453   1.1        ur 	if (bp->b_blkno + sz > fd->sc_type->size) {
    454   1.1        ur 		sz = fd->sc_type->size - bp->b_blkno;
    455   1.1        ur 		if (sz == 0) {
    456   1.1        ur 			/* If exactly at end of disk, return EOF. */
    457   1.1        ur 			goto done;
    458   1.1        ur 		}
    459   1.1        ur 		if (sz < 0) {
    460   1.1        ur 			/* If past end of disk, return EINVAL. */
    461   1.1        ur 			bp->b_error = EINVAL;
    462  1.31        ad 			goto done;
    463   1.1        ur 		}
    464   1.1        ur 		/* Otherwise, truncate request. */
    465   1.1        ur 		bp->b_bcount = sz << DEV_BSHIFT;
    466   1.1        ur 	}
    467   1.1        ur 
    468   1.1        ur 	bp->b_rawblkno = bp->b_blkno;
    469  1.11   tsutsui 	bp->b_cylinder =
    470   1.2      soda 	    bp->b_blkno / (FDC_BSIZE / DEV_BSIZE) / fd->sc_type->seccyl;
    471   1.1        ur 
    472   1.1        ur #ifdef FD_DEBUG
    473  1.52    andvar 	printf("%s: b_blkno %" PRId64 " b_bcount %d blkno %" PRId64
    474  1.52    andvar 	    " cylin %d sz %d\n", __func__,
    475   1.1        ur 	    bp->b_blkno, bp->b_bcount, fd->sc_blkno, bp->b_cylinder, sz);
    476   1.1        ur #endif
    477   1.1        ur 
    478   1.1        ur 	/* Queue transfer on drive, activate drive and controller if idle. */
    479   1.1        ur 	s = splbio();
    480  1.39      yamt 	bufq_put(fd->sc_q, bp);
    481   1.1        ur 	callout_stop(&fd->sc_motoroff_ch);		/* a good idea */
    482   1.1        ur 	if (fd->sc_active == 0)
    483   1.1        ur 		fdstart(fd);
    484   1.1        ur #ifdef DIAGNOSTIC
    485   1.1        ur 	else {
    486  1.37   tsutsui 		struct fdc_softc *fdc =
    487  1.37   tsutsui 		    device_private(device_parent(fd->sc_dev));
    488   1.1        ur 		if (fdc->sc_state == DEVIDLE) {
    489  1.37   tsutsui 			printf("%s: controller inactive\n", __func__);
    490   1.1        ur 			fdcstart(fdc);
    491   1.1        ur 		}
    492   1.1        ur 	}
    493   1.1        ur #endif
    494   1.1        ur 	splx(s);
    495   1.1        ur 	return;
    496   1.1        ur 
    497  1.37   tsutsui  done:
    498   1.1        ur 	/* Toss transfer; we're done early. */
    499   1.2      soda 	bp->b_resid = bp->b_bcount;
    500   1.1        ur 	biodone(bp);
    501   1.1        ur }
    502   1.1        ur 
    503   1.1        ur void
    504  1.19   tsutsui fdstart(struct fd_softc *fd)
    505   1.1        ur {
    506  1.37   tsutsui 	struct fdc_softc *fdc = device_private(device_parent(fd->sc_dev));
    507  1.20   tsutsui 	int active = TAILQ_FIRST(&fdc->sc_drives) != 0;
    508   1.1        ur 
    509   1.1        ur 	/* Link into controller queue. */
    510   1.1        ur 	fd->sc_active = 1;
    511   1.1        ur 	TAILQ_INSERT_TAIL(&fdc->sc_drives, fd, sc_drivechain);
    512   1.1        ur 
    513   1.1        ur 	/* If controller not already active, start it. */
    514   1.1        ur 	if (!active)
    515   1.1        ur 		fdcstart(fdc);
    516   1.1        ur }
    517   1.1        ur 
    518   1.1        ur void
    519  1.19   tsutsui fdfinish(struct fd_softc *fd, struct buf *bp)
    520   1.1        ur {
    521  1.37   tsutsui 	struct fdc_softc *fdc = device_private(device_parent(fd->sc_dev));
    522   1.1        ur 
    523   1.1        ur 	/*
    524   1.1        ur 	 * Move this drive to the end of the queue to give others a `fair'
    525   1.1        ur 	 * chance.  We only force a switch if N operations are completed while
    526   1.1        ur 	 * another drive is waiting to be serviced, since there is a long motor
    527   1.1        ur 	 * startup delay whenever we switch.
    528   1.1        ur 	 */
    529  1.39      yamt 	(void)bufq_get(fd->sc_q);
    530  1.37   tsutsui 	if (TAILQ_NEXT(fd, sc_drivechain) && ++fd->sc_ops >= 8) {
    531   1.1        ur 		fd->sc_ops = 0;
    532   1.1        ur 		TAILQ_REMOVE(&fdc->sc_drives, fd, sc_drivechain);
    533  1.39      yamt 		if (bufq_peek(fd->sc_q) != NULL)
    534   1.1        ur 			TAILQ_INSERT_TAIL(&fdc->sc_drives, fd, sc_drivechain);
    535   1.2      soda 		else
    536   1.1        ur 			fd->sc_active = 0;
    537   1.1        ur 	}
    538   1.1        ur 	bp->b_resid = fd->sc_bcount;
    539   1.1        ur 	fd->sc_skip = 0;
    540   1.1        ur 	biodone(bp);
    541   1.1        ur 	/* turn off motor 5s from now */
    542   1.2      soda 	callout_reset(&fd->sc_motoroff_ch, 5 * hz, fd_motor_off, fd);
    543   1.1        ur 	fdc->sc_state = DEVIDLE;
    544   1.1        ur }
    545   1.1        ur 
    546   1.1        ur int
    547  1.19   tsutsui fdread(dev_t dev, struct uio *uio, int flags)
    548   1.1        ur {
    549   1.1        ur 
    550  1.19   tsutsui 	return physio(fdstrategy, NULL, dev, B_READ, minphys, uio);
    551   1.1        ur }
    552   1.1        ur 
    553   1.1        ur int
    554  1.19   tsutsui fdwrite(dev_t dev, struct uio *uio, int flags)
    555   1.1        ur {
    556   1.1        ur 
    557  1.19   tsutsui 	return physio(fdstrategy, NULL, dev, B_WRITE, minphys, uio);
    558   1.1        ur }
    559   1.1        ur 
    560   1.1        ur void
    561  1.19   tsutsui fd_set_motor(struct fdc_softc *fdc, int reset)
    562   1.1        ur {
    563   1.1        ur 	struct fd_softc *fd;
    564   1.1        ur 	u_char status;
    565   1.1        ur 	int n;
    566   1.1        ur 
    567  1.20   tsutsui 	if ((fd = TAILQ_FIRST(&fdc->sc_drives)) != NULL)
    568   1.1        ur 		status = fd->sc_drive;
    569   1.1        ur 	else
    570   1.1        ur 		status = 0;
    571   1.1        ur 	if (!reset)
    572   1.1        ur 		status |= FDO_FRST | FDO_FDMAEN;
    573   1.1        ur 	for (n = 0; n < 4; n++)
    574   1.1        ur 		if ((fd = fdc->sc_fd[n]) && (fd->sc_flags & FD_MOTOR))
    575   1.1        ur 			status |= FDO_MOEN(n);
    576   1.2      soda 	bus_space_write_1(fdc->sc_iot, fdc->sc_ioh, FDOUT, status);
    577   1.1        ur }
    578   1.1        ur 
    579   1.1        ur void
    580  1.19   tsutsui fd_motor_off(void *arg)
    581   1.1        ur {
    582   1.1        ur 	struct fd_softc *fd = arg;
    583  1.37   tsutsui 	struct fdc_softc *fdc = device_private(device_parent(fd->sc_dev));
    584   1.1        ur 	int s;
    585   1.1        ur 
    586   1.1        ur 	s = splbio();
    587   1.1        ur 	fd->sc_flags &= ~(FD_MOTOR | FD_MOTOR_WAIT);
    588  1.37   tsutsui 	fd_set_motor(fdc, 0);
    589   1.1        ur 	splx(s);
    590   1.1        ur }
    591   1.1        ur 
    592   1.1        ur void
    593  1.19   tsutsui fd_motor_on(void *arg)
    594   1.1        ur {
    595   1.1        ur 	struct fd_softc *fd = arg;
    596  1.37   tsutsui 	struct fdc_softc *fdc = device_private(device_parent(fd->sc_dev));
    597   1.1        ur 	int s;
    598   1.1        ur 
    599   1.1        ur 	s = splbio();
    600   1.1        ur 	fd->sc_flags &= ~FD_MOTOR_WAIT;
    601  1.20   tsutsui 	if ((TAILQ_FIRST(&fdc->sc_drives) == fd) &&
    602  1.20   tsutsui 	    (fdc->sc_state == MOTORWAIT))
    603  1.37   tsutsui 		(void)fdcintr(fdc);
    604   1.1        ur 	splx(s);
    605   1.1        ur }
    606   1.1        ur 
    607   1.1        ur int
    608  1.19   tsutsui fdcresult(struct fdc_softc *fdc)
    609   1.1        ur {
    610   1.2      soda 	bus_space_tag_t iot = fdc->sc_iot;
    611   1.2      soda 	bus_space_handle_t ioh = fdc->sc_ioh;
    612   1.1        ur 	u_char i;
    613  1.37   tsutsui 	int j, n = 0;
    614   1.1        ur 
    615  1.37   tsutsui 	for (j = 100000; j; j--) {
    616   1.2      soda 		i = bus_space_read_1(iot, ioh, FDSTS) &
    617   1.2      soda 		    (NE7_DIO | NE7_RQM | NE7_CB);
    618   1.2      soda 		if (i == NE7_RQM)
    619   1.1        ur 			return n;
    620   1.1        ur 		if (i == (NE7_DIO | NE7_RQM | NE7_CB)) {
    621   1.1        ur 			if (n >= sizeof(fdc->sc_status)) {
    622  1.37   tsutsui 				log(LOG_ERR, "%s: overrun\n", __func__);
    623   1.1        ur 				return -1;
    624   1.1        ur 			}
    625   1.2      soda 			fdc->sc_status[n++] =
    626   1.2      soda 			    bus_space_read_1(iot, ioh, FDDATA);
    627   1.1        ur 		}
    628   1.2      soda 		delay(10);
    629   1.1        ur 	}
    630  1.37   tsutsui 	log(LOG_ERR, "%s: timeout\n", __func__);
    631   1.1        ur 	return -1;
    632   1.1        ur }
    633   1.1        ur 
    634   1.1        ur int
    635  1.37   tsutsui out_fdc(bus_space_tag_t iot, bus_space_handle_t ioh, uint8_t x)
    636   1.1        ur {
    637   1.1        ur 	int i = 100000;
    638   1.1        ur 
    639   1.2      soda 	while ((bus_space_read_1(iot, ioh, FDSTS) & NE7_DIO) && i-- > 0);
    640   1.1        ur 	if (i <= 0)
    641   1.1        ur 		return -1;
    642   1.2      soda 	while ((bus_space_read_1(iot, ioh, FDSTS) & NE7_RQM) == 0 && i-- > 0);
    643   1.1        ur 	if (i <= 0)
    644   1.1        ur 		return -1;
    645   1.2      soda 	bus_space_write_1(iot, ioh, FDDATA, x);
    646   1.1        ur 	return 0;
    647   1.1        ur }
    648   1.1        ur 
    649   1.1        ur int
    650  1.23  christos fdopen(dev_t dev, int flags, int mode, struct lwp *l)
    651   1.1        ur {
    652   1.1        ur 	struct fd_softc *fd;
    653   1.2      soda 	const struct fd_type *type;
    654   1.1        ur 
    655  1.36   tsutsui 	fd = device_lookup_private(&fd_cd, FDUNIT(dev));
    656   1.2      soda 	if (fd == NULL)
    657   1.1        ur 		return ENXIO;
    658   1.1        ur 
    659   1.2      soda 	type = fd_dev_to_type(fd, dev);
    660   1.1        ur 	if (type == NULL)
    661   1.1        ur 		return ENXIO;
    662   1.1        ur 
    663   1.1        ur 	if ((fd->sc_flags & FD_OPEN) != 0 &&
    664   1.2      soda 	    memcmp(fd->sc_type, type, sizeof(*type)))
    665   1.1        ur 		return EBUSY;
    666   1.1        ur 
    667   1.2      soda 	fd->sc_type_copy = *type;
    668   1.2      soda 	fd->sc_type = &fd->sc_type_copy;
    669   1.1        ur 	fd->sc_cylin = -1;
    670   1.1        ur 	fd->sc_flags |= FD_OPEN;
    671   1.1        ur 
    672   1.1        ur 	return 0;
    673   1.1        ur }
    674   1.1        ur 
    675   1.1        ur int
    676  1.23  christos fdclose(dev_t dev, int flags, int mode, struct lwp *l)
    677   1.1        ur {
    678  1.36   tsutsui 	struct fd_softc *fd = device_lookup_private(&fd_cd, FDUNIT(dev));
    679   1.1        ur 
    680   1.1        ur 	fd->sc_flags &= ~FD_OPEN;
    681   1.1        ur 	return 0;
    682   1.1        ur }
    683   1.1        ur 
    684   1.1        ur void
    685  1.19   tsutsui fdcstart(struct fdc_softc *fdc)
    686   1.1        ur {
    687   1.1        ur 
    688   1.1        ur #ifdef DIAGNOSTIC
    689   1.1        ur 	/* only got here if controller's drive queue was inactive; should
    690   1.1        ur 	   be in idle state */
    691   1.1        ur 	if (fdc->sc_state != DEVIDLE) {
    692  1.37   tsutsui 		printf("%s: not idle\n", __func__);
    693   1.1        ur 		return;
    694   1.1        ur 	}
    695   1.1        ur #endif
    696  1.37   tsutsui 	(void)fdcintr(fdc);
    697   1.1        ur }
    698   1.1        ur 
    699  1.38  christos static void
    700  1.38  christos fdcpstatus(int n, struct fdc_softc *fdc)
    701   1.1        ur {
    702   1.1        ur 	char bits[64];
    703   1.1        ur 
    704   1.1        ur 	switch (n) {
    705   1.1        ur 	case 0:
    706   1.1        ur 		printf("\n");
    707   1.1        ur 		break;
    708   1.1        ur 	case 2:
    709  1.38  christos 		snprintb(bits, sizeof(bits), NE7_ST0BITS, fdc->sc_status[0]);
    710  1.38  christos 		printf(" (st0 %s cyl %d)\n", bits, fdc->sc_status[1]);
    711   1.1        ur 		break;
    712   1.1        ur 	case 7:
    713  1.38  christos 		snprintb(bits, sizeof(bits), NE7_ST0BITS, fdc->sc_status[0]);
    714  1.38  christos 		printf(" (st0 %s", bits);
    715  1.38  christos 		snprintb(bits, sizeof(bits), NE7_ST1BITS, fdc->sc_status[1]);
    716  1.38  christos 		printf(" st1 %s", bits);
    717  1.38  christos 		snprintb(bits, sizeof(bits), NE7_ST2BITS, fdc->sc_status[2]);
    718  1.38  christos 		printf(" st2 %s", bits);
    719   1.1        ur 		printf(" cyl %d head %d sec %d)\n",
    720   1.1        ur 		    fdc->sc_status[3], fdc->sc_status[4], fdc->sc_status[5]);
    721   1.1        ur 		break;
    722   1.1        ur #ifdef DIAGNOSTIC
    723   1.1        ur 	default:
    724  1.38  christos 		printf("\nfdcstatus: weird size");
    725   1.1        ur 		break;
    726   1.1        ur #endif
    727   1.1        ur 	}
    728   1.1        ur }
    729   1.1        ur 
    730   1.1        ur void
    731  1.38  christos fdcstatus(device_t dev, int n, const char *s)
    732  1.38  christos {
    733  1.38  christos 	struct fdc_softc *fdc = device_private(device_parent(dev));
    734  1.38  christos 
    735  1.38  christos 	if (n == 0) {
    736  1.38  christos 		out_fdc(fdc->sc_iot, fdc->sc_ioh, NE7CMD_SENSEI);
    737  1.38  christos 		(void)fdcresult(fdc);
    738  1.38  christos 		n = 2;
    739  1.38  christos 	}
    740  1.38  christos 
    741  1.38  christos 	printf("%s: %s", device_xname(dev), s);
    742  1.38  christos 	fdcpstatus(n, fdc);
    743  1.38  christos }
    744  1.38  christos 
    745  1.38  christos void
    746  1.19   tsutsui fdctimeout(void *arg)
    747   1.1        ur {
    748   1.1        ur 	struct fdc_softc *fdc = arg;
    749  1.20   tsutsui 	struct fd_softc *fd = TAILQ_FIRST(&fdc->sc_drives);
    750   1.1        ur 	int s;
    751   1.1        ur 
    752   1.1        ur 	s = splbio();
    753   1.2      soda #ifdef DEBUG
    754  1.37   tsutsui 	log(LOG_ERR, "%s: state %d\n", __func__, fdc->sc_state);
    755   1.2      soda #endif
    756  1.37   tsutsui 	fdcstatus(fd->sc_dev, 0, "timeout");
    757   1.1        ur 
    758  1.39      yamt 	if (bufq_peek(fd->sc_q) != NULL)
    759   1.1        ur 		fdc->sc_state++;
    760   1.1        ur 	else
    761   1.1        ur 		fdc->sc_state = DEVIDLE;
    762   1.1        ur 
    763  1.37   tsutsui 	(void)fdcintr(fdc);
    764   1.1        ur 	splx(s);
    765   1.1        ur }
    766   1.1        ur 
    767   1.1        ur void
    768  1.19   tsutsui fdcpseudointr(void *arg)
    769   1.1        ur {
    770   1.1        ur 	int s;
    771   1.1        ur 
    772   1.1        ur 	/* Just ensure it has the right spl. */
    773   1.1        ur 	s = splbio();
    774  1.37   tsutsui 	(void)fdcintr(arg);
    775   1.1        ur 	splx(s);
    776   1.1        ur }
    777   1.1        ur 
    778   1.1        ur int
    779  1.19   tsutsui fdcintr(void *arg)
    780   1.1        ur {
    781   1.1        ur 	struct fdc_softc *fdc = arg;
    782   1.1        ur #define	st0	fdc->sc_status[0]
    783   1.1        ur #define	cyl	fdc->sc_status[1]
    784   1.1        ur 	struct fd_softc *fd;
    785   1.1        ur 	struct buf *bp;
    786   1.2      soda 	bus_space_tag_t iot = fdc->sc_iot;
    787   1.2      soda 	bus_space_handle_t ioh = fdc->sc_ioh;
    788   1.1        ur 	int read, head, sec, i, nblks;
    789   1.1        ur 	struct fd_type *type;
    790   1.1        ur 
    791  1.37   tsutsui  loop:
    792   1.1        ur 	/* Is there a drive for the controller to do a transfer with? */
    793  1.20   tsutsui 	fd = TAILQ_FIRST(&fdc->sc_drives);
    794   1.1        ur 	if (fd == NULL) {
    795   1.1        ur 		fdc->sc_state = DEVIDLE;
    796  1.11   tsutsui 		return 1;
    797   1.1        ur 	}
    798   1.1        ur 
    799   1.1        ur 	/* Is there a transfer to this drive?  If not, deactivate drive. */
    800  1.39      yamt 	bp = bufq_peek(fd->sc_q);
    801   1.1        ur 	if (bp == NULL) {
    802   1.1        ur 		fd->sc_ops = 0;
    803   1.1        ur 		TAILQ_REMOVE(&fdc->sc_drives, fd, sc_drivechain);
    804   1.1        ur 		fd->sc_active = 0;
    805   1.1        ur 		goto loop;
    806   1.1        ur 	}
    807   1.1        ur 
    808   1.1        ur 	switch (fdc->sc_state) {
    809   1.1        ur 	case DEVIDLE:
    810   1.1        ur 		fdc->sc_errors = 0;
    811   1.1        ur 		fd->sc_skip = 0;
    812   1.1        ur 		fd->sc_bcount = bp->b_bcount;
    813   1.1        ur 		fd->sc_blkno = bp->b_blkno / (FDC_BSIZE / DEV_BSIZE);
    814   1.1        ur 		callout_stop(&fd->sc_motoroff_ch);
    815   1.1        ur 		if ((fd->sc_flags & FD_MOTOR_WAIT) != 0) {
    816   1.1        ur 			fdc->sc_state = MOTORWAIT;
    817   1.1        ur 			return 1;
    818   1.1        ur 		}
    819   1.1        ur 		if ((fd->sc_flags & FD_MOTOR) == 0) {
    820   1.1        ur 			/* Turn on the motor, being careful about pairing. */
    821   1.1        ur 			struct fd_softc *ofd = fdc->sc_fd[fd->sc_drive ^ 1];
    822   1.1        ur 			if (ofd && ofd->sc_flags & FD_MOTOR) {
    823   1.1        ur 				callout_stop(&ofd->sc_motoroff_ch);
    824   1.1        ur 				ofd->sc_flags &= ~(FD_MOTOR | FD_MOTOR_WAIT);
    825   1.1        ur 			}
    826   1.1        ur 			fd->sc_flags |= FD_MOTOR | FD_MOTOR_WAIT;
    827   1.1        ur 			fd_set_motor(fdc, 0);
    828   1.1        ur 			fdc->sc_state = MOTORWAIT;
    829   1.2      soda 			/* Allow .25s for motor to stabilize. */
    830   1.2      soda 			callout_reset(&fd->sc_motoron_ch, hz / 4,
    831   1.1        ur 			    fd_motor_on, fd);
    832   1.1        ur 			return 1;
    833   1.1        ur 		}
    834   1.1        ur 		/* Make sure the right drive is selected. */
    835   1.1        ur 		fd_set_motor(fdc, 0);
    836   1.1        ur 
    837   1.1        ur 		/* fall through */
    838   1.1        ur 	case DOSEEK:
    839  1.37   tsutsui  doseek:
    840   1.1        ur 		if (fd->sc_cylin == bp->b_cylinder)
    841   1.1        ur 			goto doio;
    842   1.1        ur 
    843   1.2      soda 		out_fdc(iot, ioh, NE7CMD_SPECIFY);/* specify command */
    844   1.2      soda 		out_fdc(iot, ioh, fd->sc_type->steprate);
    845   1.2      soda 		out_fdc(iot, ioh, 6);		/* XXX head load time == 6ms */
    846   1.2      soda 
    847   1.2      soda 		out_fdc(iot, ioh, NE7CMD_SEEK);	/* seek function */
    848   1.2      soda 		out_fdc(iot, ioh, fd->sc_drive); /* drive number */
    849   1.2      soda 		out_fdc(iot, ioh, bp->b_cylinder * fd->sc_type->step);
    850   1.1        ur 
    851   1.1        ur 		fd->sc_cylin = -1;
    852   1.1        ur 		fdc->sc_state = SEEKWAIT;
    853   1.2      soda 
    854  1.26     blymn 		iostat_seek(fd->sc_dk.dk_stats);
    855   1.2      soda 		disk_busy(&fd->sc_dk);
    856   1.2      soda 
    857   1.1        ur 		callout_reset(&fdc->sc_timo_ch, 4 * hz, fdctimeout, fdc);
    858   1.1        ur 		return 1;
    859   1.1        ur 
    860   1.1        ur 	case DOIO:
    861  1.37   tsutsui  doio:
    862   1.1        ur 		type = fd->sc_type;
    863   1.1        ur 		sec = fd->sc_blkno % type->seccyl;
    864   1.1        ur 		nblks = type->seccyl - sec;
    865  1.48  riastrad 		nblks = uimin(nblks, fd->sc_bcount / FDC_BSIZE);
    866  1.48  riastrad 		nblks = uimin(nblks, fdc->sc_maxiosize / FDC_BSIZE);
    867   1.1        ur 		fd->sc_nblks = nblks;
    868   1.1        ur 		fd->sc_nbytes = nblks * FDC_BSIZE;
    869   1.1        ur 		head = sec / type->sectrac;
    870   1.1        ur 		sec -= head * type->sectrac;
    871   1.1        ur #ifdef DIAGNOSTIC
    872   1.2      soda 		{
    873   1.2      soda 			int block;
    874   1.2      soda 			block = (fd->sc_cylin * type->heads + head) *
    875   1.2      soda 			    type->sectrac + sec;
    876   1.2      soda 			if (block != fd->sc_blkno) {
    877  1.37   tsutsui 				printf("%s: block %d != blkno %" PRId64
    878  1.37   tsutsui 				    "\n", __func__, block, fd->sc_blkno);
    879   1.1        ur #ifdef DDB
    880   1.2      soda 				 Debugger();
    881   1.1        ur #endif
    882   1.2      soda 			}
    883   1.2      soda 		}
    884   1.1        ur #endif
    885   1.2      soda 		read = (bp->b_flags & B_READ) != 0;
    886  1.37   tsutsui 		FDCDMA_START(fdc, (uint8_t *)bp->b_data + fd->sc_skip,
    887   1.2      soda 		    fd->sc_nbytes, read);
    888   1.2      soda 		bus_space_write_1(iot, ioh, FDCTL, type->rate);
    889   1.1        ur #ifdef FD_DEBUG
    890  1.37   tsutsui 		printf("%s: %s drive %d track %d head %d sec %d nblks %d\n",
    891  1.37   tsutsui 		    __func__, read ? "read" : "write", fd->sc_drive,
    892  1.37   tsutsui 		    fd->sc_cylin, head, sec, nblks);
    893   1.1        ur #endif
    894   1.1        ur 		if (read)
    895   1.2      soda 			out_fdc(iot, ioh, NE7CMD_READ);	/* READ */
    896   1.1        ur 		else
    897   1.2      soda 			out_fdc(iot, ioh, NE7CMD_WRITE);/* WRITE */
    898   1.2      soda 		out_fdc(iot, ioh, (head << 2) | fd->sc_drive);
    899   1.2      soda 		out_fdc(iot, ioh, fd->sc_cylin);	/* track */
    900   1.2      soda 		out_fdc(iot, ioh, head);
    901   1.2      soda 		out_fdc(iot, ioh, sec + 1);		/* sector + 1 */
    902   1.2      soda 		out_fdc(iot, ioh, type->secsize);	/* sector size */
    903   1.2      soda 		out_fdc(iot, ioh, type->sectrac);	/* sectors/track */
    904   1.2      soda 		out_fdc(iot, ioh, type->gap1);		/* gap1 size */
    905   1.2      soda 		out_fdc(iot, ioh, type->datalen);	/* data length */
    906   1.1        ur 		fdc->sc_state = IOCOMPLETE;
    907   1.2      soda 
    908   1.2      soda 		disk_busy(&fd->sc_dk);
    909   1.2      soda 
    910   1.1        ur 		/* allow 2 seconds for operation */
    911   1.1        ur 		callout_reset(&fdc->sc_timo_ch, 2 * hz, fdctimeout, fdc);
    912   1.1        ur 		return 1;				/* will return later */
    913   1.1        ur 
    914   1.1        ur 	case SEEKWAIT:
    915   1.1        ur 		callout_stop(&fdc->sc_timo_ch);
    916   1.1        ur 		fdc->sc_state = SEEKCOMPLETE;
    917   1.1        ur 		/* allow 1/50 second for heads to settle */
    918   1.2      soda 		callout_reset(&fdc->sc_intr_ch, hz / 50, fdcpseudointr, fdc);
    919   1.1        ur 		return 1;
    920   1.2      soda 
    921   1.1        ur 	case SEEKCOMPLETE:
    922   1.9       mrg 		disk_unbusy(&fd->sc_dk, 0, 0);
    923   1.2      soda 
    924   1.1        ur 		/* Make sure seek really happened. */
    925   1.2      soda 		out_fdc(iot, ioh, NE7CMD_SENSEI);
    926   1.1        ur 		if (fdcresult(fdc) != 2 || (st0 & 0xf8) != 0x20 ||
    927   1.1        ur 		    cyl != bp->b_cylinder * fd->sc_type->step) {
    928   1.1        ur #ifdef FD_DEBUG
    929  1.37   tsutsui 			fdcstatus(fd->sc_dev, 2, "seek failed");
    930   1.1        ur #endif
    931   1.1        ur 			fdcretry(fdc);
    932   1.1        ur 			goto loop;
    933   1.1        ur 		}
    934   1.1        ur 		fd->sc_cylin = bp->b_cylinder;
    935   1.1        ur 		goto doio;
    936   1.1        ur 
    937   1.1        ur 	case IOTIMEDOUT:
    938   1.2      soda 		FDCDMA_ABORT(fdc);
    939   1.1        ur 
    940   1.1        ur 	case SEEKTIMEDOUT:
    941   1.1        ur 	case RECALTIMEDOUT:
    942   1.1        ur 	case RESETTIMEDOUT:
    943   1.1        ur 		fdcretry(fdc);
    944   1.1        ur 		goto loop;
    945   1.1        ur 
    946   1.1        ur 	case IOCOMPLETE: /* IO DONE, post-analyze */
    947   1.1        ur 		callout_stop(&fdc->sc_timo_ch);
    948   1.2      soda 
    949   1.9       mrg 		disk_unbusy(&fd->sc_dk, (bp->b_bcount - bp->b_resid),
    950   1.9       mrg 		    (bp->b_flags & B_READ));
    951   1.2      soda 
    952   1.2      soda 		i = fdcresult(fdc);
    953   1.2      soda 		if (i != 7 || (st0 & 0xf8) != 0) {
    954   1.2      soda 			FDCDMA_ABORT(fdc);
    955   1.1        ur #ifdef FD_DEBUG
    956  1.37   tsutsui 			fdcstatus(fd->sc_dev, 7, bp->b_flags & B_READ ?
    957   1.1        ur 			    "read failed" : "write failed");
    958  1.13   tsutsui 			printf("blkno %" PRId64 " nblks %d\n",
    959   1.1        ur 			    fd->sc_blkno, fd->sc_nblks);
    960   1.1        ur #endif
    961   1.1        ur 			fdcretry(fdc);
    962   1.1        ur 			goto loop;
    963   1.1        ur 		}
    964   1.2      soda 		FDCDMA_DONE(fdc);
    965   1.1        ur 		if (fdc->sc_errors) {
    966   1.2      soda 			diskerr(bp, "fd", "soft error (corrected)", LOG_PRINTF,
    967  1.37   tsutsui 			    fd->sc_skip / FDC_BSIZE, NULL);
    968   1.1        ur 			printf("\n");
    969   1.1        ur 			fdc->sc_errors = 0;
    970   1.1        ur 		}
    971   1.1        ur 		fd->sc_blkno += fd->sc_nblks;
    972   1.1        ur 		fd->sc_skip += fd->sc_nbytes;
    973   1.1        ur 		fd->sc_bcount -= fd->sc_nbytes;
    974   1.1        ur 		if (fd->sc_bcount > 0) {
    975   1.1        ur 			bp->b_cylinder = fd->sc_blkno / fd->sc_type->seccyl;
    976   1.1        ur 			goto doseek;
    977   1.1        ur 		}
    978   1.1        ur 		fdfinish(fd, bp);
    979   1.1        ur 		goto loop;
    980   1.1        ur 
    981   1.1        ur 	case DORESET:
    982   1.1        ur 		/* try a reset, keep motor on */
    983   1.1        ur 		fd_set_motor(fdc, 1);
    984   1.1        ur 		delay(100);
    985   1.1        ur 		fd_set_motor(fdc, 0);
    986   1.1        ur 		fdc->sc_state = RESETCOMPLETE;
    987   1.1        ur 		callout_reset(&fdc->sc_timo_ch, hz / 2, fdctimeout, fdc);
    988   1.1        ur 		return 1;			/* will return later */
    989   1.1        ur 
    990   1.1        ur 	case RESETCOMPLETE:
    991   1.1        ur 		callout_stop(&fdc->sc_timo_ch);
    992   1.1        ur 		/* clear the controller output buffer */
    993   1.1        ur 		for (i = 0; i < 4; i++) {
    994   1.2      soda 			out_fdc(iot, ioh, NE7CMD_SENSEI);
    995  1.37   tsutsui 			(void)fdcresult(fdc);
    996   1.1        ur 		}
    997   1.1        ur 
    998   1.1        ur 		/* fall through */
    999   1.1        ur 	case DORECAL:
   1000   1.2      soda 		out_fdc(iot, ioh, NE7CMD_RECAL); /* recalibrate function */
   1001   1.2      soda 		out_fdc(iot, ioh, fd->sc_drive);
   1002   1.1        ur 		fdc->sc_state = RECALWAIT;
   1003   1.1        ur 		callout_reset(&fdc->sc_timo_ch, 5 * hz, fdctimeout, fdc);
   1004   1.1        ur 		return 1;			/* will return later */
   1005   1.1        ur 
   1006   1.1        ur 	case RECALWAIT:
   1007   1.1        ur 		callout_stop(&fdc->sc_timo_ch);
   1008   1.1        ur 		fdc->sc_state = RECALCOMPLETE;
   1009   1.1        ur 		/* allow 1/30 second for heads to settle */
   1010   1.2      soda 		callout_reset(&fdc->sc_intr_ch, hz / 30, fdcpseudointr, fdc);
   1011   1.1        ur 		return 1;			/* will return later */
   1012   1.1        ur 
   1013   1.1        ur 	case RECALCOMPLETE:
   1014   1.2      soda 		out_fdc(iot, ioh, NE7CMD_SENSEI);
   1015   1.1        ur 		if (fdcresult(fdc) != 2 || (st0 & 0xf8) != 0x20 || cyl != 0) {
   1016   1.1        ur #ifdef FD_DEBUG
   1017  1.37   tsutsui 			fdcstatus(fd->sc_dev, 2, "recalibrate failed");
   1018   1.1        ur #endif
   1019   1.1        ur 			fdcretry(fdc);
   1020   1.1        ur 			goto loop;
   1021   1.1        ur 		}
   1022   1.1        ur 		fd->sc_cylin = 0;
   1023   1.1        ur 		goto doseek;
   1024   1.1        ur 
   1025   1.1        ur 	case MOTORWAIT:
   1026   1.1        ur 		if (fd->sc_flags & FD_MOTOR_WAIT)
   1027   1.1        ur 			return 1;		/* time's not up yet */
   1028   1.1        ur 		goto doseek;
   1029   1.1        ur 
   1030   1.1        ur 	default:
   1031  1.37   tsutsui 		fdcstatus(fd->sc_dev, 0, "stray interrupt");
   1032   1.1        ur 		return 1;
   1033   1.1        ur 	}
   1034   1.1        ur #ifdef DIAGNOSTIC
   1035  1.37   tsutsui 	panic("%s: impossible", __func__);
   1036   1.1        ur #endif
   1037   1.1        ur #undef	st0
   1038   1.1        ur #undef	cyl
   1039   1.1        ur }
   1040   1.1        ur 
   1041   1.1        ur void
   1042  1.19   tsutsui fdcretry(struct fdc_softc *fdc)
   1043   1.1        ur {
   1044   1.1        ur 	struct fd_softc *fd;
   1045   1.1        ur 	struct buf *bp;
   1046   1.1        ur 
   1047  1.20   tsutsui 	fd = TAILQ_FIRST(&fdc->sc_drives);
   1048  1.39      yamt 	bp = bufq_peek(fd->sc_q);
   1049   1.1        ur 
   1050   1.1        ur 	switch (fdc->sc_errors) {
   1051   1.1        ur 	case 0:
   1052   1.1        ur 		/* try again */
   1053   1.2      soda 		fdc->sc_state = DOSEEK;
   1054   1.1        ur 		break;
   1055   1.1        ur 
   1056  1.37   tsutsui 	case 1:
   1057  1.37   tsutsui 	case 2:
   1058  1.37   tsutsui 	case 3:
   1059   1.1        ur 		/* didn't work; try recalibrating */
   1060   1.1        ur 		fdc->sc_state = DORECAL;
   1061   1.1        ur 		break;
   1062   1.1        ur 
   1063   1.1        ur 	case 4:
   1064   1.1        ur 		/* still no go; reset the bastard */
   1065   1.1        ur 		fdc->sc_state = DORESET;
   1066   1.1        ur 		break;
   1067   1.1        ur 
   1068   1.1        ur 	default:
   1069   1.1        ur 		diskerr(bp, "fd", "hard error", LOG_PRINTF,
   1070   1.1        ur 		    fd->sc_skip / FDC_BSIZE, (struct disklabel *)NULL);
   1071   1.1        ur 
   1072  1.38  christos 		fdcpstatus(7, fdc);
   1073   1.1        ur 		bp->b_error = EIO;
   1074   1.1        ur 		fdfinish(fd, bp);
   1075   1.1        ur 	}
   1076   1.1        ur 	fdc->sc_errors++;
   1077   1.1        ur }
   1078   1.1        ur 
   1079   1.1        ur int
   1080  1.28  christos fdioctl(dev_t dev, u_long cmd, void *addr, int flag, struct lwp *l)
   1081   1.1        ur {
   1082  1.36   tsutsui 	struct fd_softc *fd = device_lookup_private(&fd_cd, FDUNIT(dev));
   1083   1.1        ur 	struct disklabel buffer;
   1084   1.1        ur 	int error;
   1085   1.1        ur 
   1086   1.1        ur 	switch (cmd) {
   1087   1.1        ur 	case DIOCGDINFO:
   1088   1.2      soda 		memset(&buffer, 0, sizeof(buffer));
   1089   1.2      soda 
   1090   1.1        ur 		buffer.d_secpercyl = fd->sc_type->seccyl;
   1091  1.46  christos 		buffer.d_type = DKTYPE_FLOPPY;
   1092   1.1        ur 		buffer.d_secsize = FDC_BSIZE;
   1093   1.1        ur 
   1094   1.1        ur 		if (readdisklabel(dev, fdstrategy, &buffer, NULL) != NULL)
   1095   1.1        ur 			return EINVAL;
   1096   1.1        ur 
   1097   1.1        ur 		*(struct disklabel *)addr = buffer;
   1098   1.1        ur 		return 0;
   1099   1.1        ur 
   1100   1.1        ur 	case DIOCWLABEL:
   1101   1.1        ur 		if ((flag & FWRITE) == 0)
   1102   1.1        ur 			return EBADF;
   1103   1.1        ur 		/* XXX do something */
   1104   1.1        ur 		return 0;
   1105   1.1        ur 
   1106   1.1        ur 	case DIOCWDINFO:
   1107   1.1        ur 		if ((flag & FWRITE) == 0)
   1108   1.1        ur 			return EBADF;
   1109   1.1        ur 
   1110   1.2      soda 		error = setdisklabel(&buffer, (struct disklabel *)addr,
   1111   1.2      soda 		    0, NULL);
   1112   1.1        ur 		if (error)
   1113   1.1        ur 			return error;
   1114   1.1        ur 
   1115   1.1        ur 		error = writedisklabel(dev, fdstrategy, &buffer, NULL);
   1116   1.1        ur 		return error;
   1117   1.1        ur 
   1118   1.1        ur 	default:
   1119   1.1        ur 		return ENOTTY;
   1120   1.1        ur 	}
   1121   1.1        ur 
   1122   1.1        ur #ifdef DIAGNOSTIC
   1123  1.37   tsutsui 	panic("%s: impossible", __func__);
   1124   1.1        ur #endif
   1125   1.2      soda }
   1126   1.2      soda 
   1127   1.2      soda /*
   1128   1.2      soda  * Mountroot hook: prompt the user to enter the root file system floppy.
   1129   1.2      soda  */
   1130   1.2      soda void
   1131  1.37   tsutsui fd_mountroot_hook(device_t dev)
   1132   1.2      soda {
   1133   1.2      soda 	int c;
   1134   1.2      soda 
   1135   1.2      soda 	printf("Insert filesystem floppy and press return.");
   1136   1.2      soda 	cnpollc(1);
   1137   1.2      soda 	for (;;) {
   1138   1.2      soda 		c = cngetc();
   1139   1.2      soda 		if ((c == '\r') || (c == '\n')) {
   1140   1.2      soda 			printf("\n");
   1141   1.2      soda 			break;
   1142   1.2      soda 		}
   1143   1.2      soda 	}
   1144   1.2      soda 	cnpollc(0);
   1145   1.1        ur }
   1146