hdfd.c revision 1.25 1 1.25 mrg /* $NetBSD: hdfd.c,v 1.25 2000/06/29 08:28:25 mrg Exp $ */
2 1.1 leo
3 1.1 leo /*-
4 1.1 leo * Copyright (c) 1996 Leo Weppelman
5 1.1 leo * Copyright (c) 1993, 1994, 1995, 1996
6 1.1 leo * Charles M. Hannum. All rights reserved.
7 1.1 leo * Copyright (c) 1990 The Regents of the University of California.
8 1.1 leo * All rights reserved.
9 1.1 leo *
10 1.1 leo * This code is derived from software contributed to Berkeley by
11 1.1 leo * Don Ahn.
12 1.1 leo *
13 1.1 leo * Redistribution and use in source and binary forms, with or without
14 1.1 leo * modification, are permitted provided that the following conditions
15 1.1 leo * are met:
16 1.1 leo * 1. Redistributions of source code must retain the above copyright
17 1.1 leo * notice, this list of conditions and the following disclaimer.
18 1.1 leo * 2. Redistributions in binary form must reproduce the above copyright
19 1.1 leo * notice, this list of conditions and the following disclaimer in the
20 1.1 leo * documentation and/or other materials provided with the distribution.
21 1.1 leo * 3. All advertising materials mentioning features or use of this software
22 1.1 leo * must display the following acknowledgement:
23 1.1 leo * This product includes software developed by the University of
24 1.1 leo * California, Berkeley and its contributors.
25 1.1 leo * 4. Neither the name of the University nor the names of its contributors
26 1.1 leo * may be used to endorse or promote products derived from this software
27 1.1 leo * without specific prior written permission.
28 1.1 leo *
29 1.1 leo * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
30 1.1 leo * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
31 1.1 leo * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
32 1.1 leo * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
33 1.1 leo * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
34 1.1 leo * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
35 1.1 leo * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
36 1.1 leo * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
37 1.1 leo * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
38 1.1 leo * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
39 1.1 leo * SUCH DAMAGE.
40 1.1 leo *
41 1.1 leo * @(#)fd.c 7.4 (Berkeley) 5/25/91
42 1.1 leo */
43 1.1 leo
44 1.3 leo /*
45 1.3 leo * Floppy formatting facilities merged from FreeBSD fd.c driver:
46 1.3 leo * Id: fd.c,v 1.53 1995/03/12 22:40:56 joerg Exp
47 1.3 leo * which carries the same copyright/redistribution notice as shown above with
48 1.3 leo * the addition of the following statement before the "Redistribution and
49 1.3 leo * use ..." clause:
50 1.3 leo *
51 1.3 leo * Copyright (c) 1993, 1994 by
52 1.3 leo * jc (at) irbs.UUCP (John Capo)
53 1.3 leo * vak (at) zebub.msk.su (Serge Vakulenko)
54 1.3 leo * ache (at) astral.msk.su (Andrew A. Chernov)
55 1.3 leo *
56 1.3 leo * Copyright (c) 1993, 1994, 1995 by
57 1.3 leo * joerg_wunsch (at) uriah.sax.de (Joerg Wunsch)
58 1.3 leo * dufault (at) hda.com (Peter Dufault)
59 1.3 leo */
60 1.11 jonathan
61 1.11 jonathan #include "opt_ddb.h"
62 1.3 leo
63 1.1 leo #include <sys/param.h>
64 1.1 leo #include <sys/systm.h>
65 1.20 thorpej #include <sys/callout.h>
66 1.1 leo #include <sys/kernel.h>
67 1.1 leo #include <sys/file.h>
68 1.1 leo #include <sys/ioctl.h>
69 1.1 leo #include <sys/device.h>
70 1.1 leo #include <sys/disklabel.h>
71 1.1 leo #include <sys/dkstat.h>
72 1.1 leo #include <sys/disk.h>
73 1.1 leo #include <sys/buf.h>
74 1.3 leo #include <sys/malloc.h>
75 1.1 leo #include <sys/uio.h>
76 1.1 leo #include <sys/syslog.h>
77 1.1 leo #include <sys/queue.h>
78 1.3 leo #include <sys/proc.h>
79 1.3 leo #include <sys/fdio.h>
80 1.1 leo #include <sys/conf.h>
81 1.1 leo #include <sys/device.h>
82 1.23 leo
83 1.23 leo #include <uvm/uvm_extern.h>
84 1.1 leo
85 1.1 leo #include <machine/cpu.h>
86 1.1 leo #include <machine/bus.h>
87 1.1 leo #include <machine/iomap.h>
88 1.1 leo #include <machine/mfp.h>
89 1.1 leo
90 1.1 leo #include <atari/dev/hdfdreg.h>
91 1.6 leo #include <atari/atari/intr.h>
92 1.1 leo #include <atari/atari/device.h>
93 1.1 leo
94 1.8 jtk #include "locators.h"
95 1.8 jtk
96 1.1 leo /*
97 1.1 leo * {b,c}devsw[] function prototypes
98 1.1 leo */
99 1.1 leo dev_type_open(fdopen);
100 1.1 leo dev_type_close(fdclose);
101 1.1 leo dev_type_read(fdread);
102 1.1 leo dev_type_write(fdwrite);
103 1.1 leo dev_type_ioctl(fdioctl);
104 1.1 leo dev_type_size(fdsize);
105 1.1 leo dev_type_dump(fddump);
106 1.1 leo
107 1.1 leo volatile u_char *fdio_addr;
108 1.1 leo
109 1.1 leo #define wrt_fdc_reg(reg, val) { fdio_addr[reg] = val; }
110 1.1 leo #define rd_fdc_reg(reg) ( fdio_addr[reg] )
111 1.1 leo
112 1.1 leo #define fdc_ienable() MFP2->mf_ierb |= IB_DCHG;
113 1.1 leo
114 1.1 leo /*
115 1.1 leo * Interface to the pseudo-dma handler
116 1.1 leo */
117 1.1 leo void fddma_intr(void);
118 1.1 leo caddr_t fddmaaddr = NULL;
119 1.1 leo int fddmalen = 0;
120 1.1 leo
121 1.6 leo extern void mfp_hdfd_nf __P((void)), mfp_hdfd_fifo __P((void));
122 1.6 leo
123 1.1 leo /*
124 1.1 leo * Argument to fdcintr.....
125 1.1 leo */
126 1.1 leo static void *intr_arg = NULL; /* XXX: arg. to intr_establish() */
127 1.1 leo
128 1.1 leo
129 1.6 leo
130 1.1 leo #define FDUNIT(dev) (minor(dev) / 8)
131 1.1 leo #define FDTYPE(dev) (minor(dev) % 8)
132 1.1 leo
133 1.3 leo /* XXX misuse a flag to identify format operation */
134 1.3 leo #define B_FORMAT B_XXX
135 1.3 leo
136 1.1 leo enum fdc_state {
137 1.1 leo DEVIDLE = 0,
138 1.1 leo MOTORWAIT,
139 1.1 leo DOSEEK,
140 1.1 leo SEEKWAIT,
141 1.1 leo SEEKTIMEDOUT,
142 1.1 leo SEEKCOMPLETE,
143 1.1 leo DOIO,
144 1.1 leo IOCOMPLETE,
145 1.1 leo IOTIMEDOUT,
146 1.1 leo DORESET,
147 1.1 leo RESETCOMPLETE,
148 1.1 leo RESETTIMEDOUT,
149 1.1 leo DORECAL,
150 1.1 leo RECALWAIT,
151 1.1 leo RECALTIMEDOUT,
152 1.1 leo RECALCOMPLETE,
153 1.1 leo };
154 1.1 leo
155 1.1 leo /* software state, per controller */
156 1.1 leo struct fdc_softc {
157 1.1 leo struct device sc_dev; /* boilerplate */
158 1.20 thorpej
159 1.20 thorpej struct callout sc_timo_ch; /* timeout callout */
160 1.20 thorpej struct callout sc_intr_ch; /* pseudo-intr callout */
161 1.20 thorpej
162 1.1 leo struct fd_softc *sc_fd[4]; /* pointers to children */
163 1.1 leo TAILQ_HEAD(drivehead, fd_softc) sc_drives;
164 1.1 leo enum fdc_state sc_state;
165 1.1 leo int sc_errors; /* number of retries so far */
166 1.1 leo int sc_overruns; /* number of overruns so far */
167 1.1 leo u_char sc_status[7]; /* copy of registers */
168 1.1 leo };
169 1.1 leo
170 1.1 leo /* controller driver configuration */
171 1.5 leo int fdcprobe __P((struct device *, struct cfdata *, void *));
172 1.1 leo int fdprint __P((void *, const char *));
173 1.1 leo void fdcattach __P((struct device *, struct device *, void *));
174 1.1 leo
175 1.1 leo struct cfattach fdc_ca = {
176 1.1 leo sizeof(struct fdc_softc), fdcprobe, fdcattach
177 1.1 leo };
178 1.1 leo
179 1.1 leo /*
180 1.1 leo * Floppies come in various flavors, e.g., 1.2MB vs 1.44MB; here is how
181 1.1 leo * we tell them apart.
182 1.1 leo */
183 1.1 leo struct fd_type {
184 1.1 leo int sectrac; /* sectors per track */
185 1.1 leo int heads; /* number of heads */
186 1.1 leo int seccyl; /* sectors per cylinder */
187 1.1 leo int secsize; /* size code for sectors */
188 1.1 leo int datalen; /* data len when secsize = 0 */
189 1.1 leo int steprate; /* step rate and head unload time */
190 1.1 leo int gap1; /* gap len between sectors */
191 1.1 leo int gap2; /* formatting gap */
192 1.1 leo int tracks; /* total num of tracks */
193 1.1 leo int size; /* size of disk in sectors */
194 1.1 leo int step; /* steps per cylinder */
195 1.1 leo int rate; /* transfer speed code */
196 1.3 leo u_char fillbyte; /* format fill byte */
197 1.3 leo u_char interleave; /* interleave factor (formatting) */
198 1.1 leo char *name;
199 1.1 leo };
200 1.1 leo
201 1.1 leo /*
202 1.1 leo * The order of entries in the following table is important -- BEWARE!
203 1.1 leo * The order of the types is the same as for the TT/Falcon....
204 1.1 leo */
205 1.1 leo struct fd_type fd_types[] = {
206 1.1 leo /* 360kB in 720kB drive */
207 1.3 leo { 9,2,18,2,0xff,0xdf,0x2a,0x50,40, 720,2,FDC_125KBPS,0xf6,1,"360KB" },
208 1.1 leo /* 3.5" 720kB diskette */
209 1.3 leo { 9,2,18,2,0xff,0xdf,0x2a,0x50,80,1440,1,FDC_125KBPS,0xf6,1,"720KB" },
210 1.1 leo /* 1.44MB diskette */
211 1.3 leo { 18,2,36,2,0xff,0xcf,0x1b,0x6c,80,2880,1,FDC_250KBPS,0xf6,1,"1.44MB" },
212 1.1 leo };
213 1.1 leo
214 1.1 leo /* software state, per disk (with up to 4 disks per ctlr) */
215 1.1 leo struct fd_softc {
216 1.1 leo struct device sc_dev;
217 1.1 leo struct disk sc_dk;
218 1.1 leo
219 1.1 leo struct fd_type *sc_deftype; /* default type descriptor */
220 1.1 leo struct fd_type *sc_type; /* current type descriptor */
221 1.1 leo
222 1.22 thorpej struct callout sc_motoron_ch;
223 1.22 thorpej struct callout sc_motoroff_ch;
224 1.20 thorpej
225 1.1 leo daddr_t sc_blkno; /* starting block number */
226 1.1 leo int sc_bcount; /* byte count left */
227 1.3 leo int sc_opts; /* user-set options */
228 1.1 leo int sc_skip; /* bytes already transferred */
229 1.1 leo int sc_nblks; /* #blocks currently tranferring */
230 1.1 leo int sc_nbytes; /* #bytes currently tranferring */
231 1.1 leo
232 1.1 leo int sc_drive; /* physical unit number */
233 1.1 leo int sc_flags;
234 1.1 leo #define FD_OPEN 0x01 /* it's open */
235 1.1 leo #define FD_MOTOR 0x02 /* motor should be on */
236 1.1 leo #define FD_MOTOR_WAIT 0x04 /* motor coming up */
237 1.1 leo int sc_cylin; /* where we think the head is */
238 1.1 leo
239 1.1 leo void *sc_sdhook; /* saved shutdown hook for drive. */
240 1.1 leo
241 1.1 leo TAILQ_ENTRY(fd_softc) sc_drivechain;
242 1.1 leo int sc_ops; /* I/O ops since last switch */
243 1.18 thorpej struct buf_queue sc_q; /* pending I/O requests */
244 1.18 thorpej int sc_active; /* number of active I/O operations */
245 1.1 leo };
246 1.1 leo
247 1.1 leo /* floppy driver configuration */
248 1.5 leo int fdprobe __P((struct device *, struct cfdata *, void *));
249 1.1 leo void fdattach __P((struct device *, struct device *, void *));
250 1.1 leo
251 1.1 leo struct cfattach hdfd_ca = {
252 1.1 leo sizeof(struct fd_softc), fdprobe, fdattach
253 1.1 leo };
254 1.1 leo
255 1.9 thorpej extern struct cfdriver hdfd_cd;
256 1.1 leo
257 1.1 leo void fdstrategy __P((struct buf *));
258 1.1 leo void fdstart __P((struct fd_softc *));
259 1.1 leo
260 1.1 leo struct dkdriver fddkdriver = { fdstrategy };
261 1.1 leo
262 1.1 leo void fd_set_motor __P((struct fdc_softc *fdc, int reset));
263 1.1 leo void fd_motor_off __P((void *arg));
264 1.1 leo void fd_motor_on __P((void *arg));
265 1.1 leo int fdcresult __P((struct fdc_softc *fdc));
266 1.1 leo int out_fdc __P((u_char x));
267 1.4 leo void fdc_ctrl_intr __P((struct clockframe));
268 1.1 leo void fdcstart __P((struct fdc_softc *fdc));
269 1.1 leo void fdcstatus __P((struct device *dv, int n, char *s));
270 1.1 leo void fdctimeout __P((void *arg));
271 1.1 leo void fdcpseudointr __P((void *arg));
272 1.1 leo int fdcintr __P((void *));
273 1.1 leo void fdcretry __P((struct fdc_softc *fdc));
274 1.1 leo void fdfinish __P((struct fd_softc *fd, struct buf *bp));
275 1.3 leo int fdformat __P((dev_t, struct ne7_fd_formb *, struct proc *));
276 1.3 leo
277 1.14 leo static void fdgetdisklabel __P((struct fd_softc *, dev_t));
278 1.14 leo static void fdgetdefaultlabel __P((struct fd_softc *, struct disklabel *,
279 1.14 leo int));
280 1.14 leo
281 1.1 leo __inline struct fd_type *fd_dev_to_type __P((struct fd_softc *, dev_t));
282 1.1 leo
283 1.1 leo int
284 1.5 leo fdcprobe(parent, cfp, aux)
285 1.5 leo struct device *parent;
286 1.5 leo struct cfdata *cfp;
287 1.5 leo void *aux;
288 1.1 leo {
289 1.21 leo static int fdc_matched = 0;
290 1.10 leo bus_space_tag_t mb_tag;
291 1.1 leo
292 1.21 leo /* Match only once */
293 1.21 leo if(strcmp("fdc", aux) || fdc_matched)
294 1.1 leo return(0);
295 1.1 leo
296 1.1 leo if (!atari_realconfig)
297 1.1 leo return 0;
298 1.1 leo
299 1.10 leo if ((mb_tag = mb_alloc_bus_space_tag()) == NULL)
300 1.10 leo return 0;
301 1.10 leo
302 1.17 leo if (bus_space_map(mb_tag, FD_IOBASE, FD_IOSIZE, 0,
303 1.17 leo (caddr_t*)&fdio_addr)) {
304 1.1 leo printf("fdcprobe: cannot map io-area\n");
305 1.10 leo mb_free_bus_space_tag(mb_tag);
306 1.1 leo return (0);
307 1.1 leo }
308 1.1 leo
309 1.1 leo #ifdef FD_DEBUG
310 1.1 leo printf("fdcprobe: I/O mapping done va: %p\n", fdio_addr);
311 1.1 leo #endif
312 1.1 leo
313 1.1 leo /* reset */
314 1.1 leo wrt_fdc_reg(fdout, 0);
315 1.1 leo delay(100);
316 1.1 leo wrt_fdc_reg(fdout, FDO_FRST);
317 1.1 leo
318 1.1 leo /* see if it can handle a command */
319 1.1 leo if (out_fdc(NE7CMD_SPECIFY) < 0)
320 1.1 leo goto out;
321 1.1 leo out_fdc(0xdf);
322 1.1 leo out_fdc(7);
323 1.1 leo
324 1.21 leo fdc_matched = 1;
325 1.1 leo
326 1.1 leo out:
327 1.21 leo if (fdc_matched == 0) {
328 1.17 leo bus_space_unmap(mb_tag, (caddr_t)fdio_addr, FD_IOSIZE);
329 1.10 leo mb_free_bus_space_tag(mb_tag);
330 1.10 leo }
331 1.1 leo
332 1.21 leo return fdc_matched;
333 1.1 leo }
334 1.1 leo
335 1.1 leo /*
336 1.1 leo * Arguments passed between fdcattach and fdprobe.
337 1.1 leo */
338 1.1 leo struct fdc_attach_args {
339 1.1 leo int fa_drive;
340 1.1 leo struct fd_type *fa_deftype;
341 1.1 leo };
342 1.1 leo
343 1.1 leo /*
344 1.1 leo * Print the location of a disk drive (called just before attaching the
345 1.1 leo * the drive). If `fdc' is not NULL, the drive was found but was not
346 1.1 leo * in the system config file; print the drive name as well.
347 1.1 leo * Return QUIET (config_find ignores this if the device was configured) to
348 1.1 leo * avoid printing `fdN not configured' messages.
349 1.1 leo */
350 1.1 leo int
351 1.1 leo fdprint(aux, fdc)
352 1.1 leo void *aux;
353 1.1 leo const char *fdc;
354 1.1 leo {
355 1.1 leo register struct fdc_attach_args *fa = aux;
356 1.1 leo
357 1.1 leo if (!fdc)
358 1.1 leo printf(" drive %d", fa->fa_drive);
359 1.1 leo return QUIET;
360 1.1 leo }
361 1.1 leo
362 1.1 leo void
363 1.1 leo fdcattach(parent, self, aux)
364 1.1 leo struct device *parent, *self;
365 1.1 leo void *aux;
366 1.1 leo {
367 1.1 leo struct fdc_softc *fdc = (void *)self;
368 1.1 leo struct fdc_attach_args fa;
369 1.1 leo int has_fifo;
370 1.1 leo
371 1.1 leo has_fifo = 0;
372 1.1 leo
373 1.1 leo fdc->sc_state = DEVIDLE;
374 1.1 leo TAILQ_INIT(&fdc->sc_drives);
375 1.1 leo
376 1.1 leo out_fdc(NE7CMD_CONFIGURE);
377 1.1 leo if (out_fdc(0) == 0) {
378 1.1 leo out_fdc(0x1a); /* No polling, fifo depth = 10 */
379 1.1 leo out_fdc(0);
380 1.1 leo
381 1.1 leo /* Retain configuration across resets */
382 1.1 leo out_fdc(NE7CMD_LOCK);
383 1.1 leo (void)fdcresult(fdc);
384 1.1 leo has_fifo = 1;
385 1.1 leo }
386 1.1 leo else {
387 1.1 leo (void)rd_fdc_reg(fddata);
388 1.1 leo printf(": no fifo");
389 1.1 leo }
390 1.1 leo
391 1.1 leo printf("\n");
392 1.1 leo
393 1.20 thorpej callout_init(&fdc->sc_timo_ch);
394 1.20 thorpej callout_init(&fdc->sc_intr_ch);
395 1.20 thorpej
396 1.6 leo if (intr_establish(22, USER_VEC|FAST_VEC, 0,
397 1.6 leo (hw_ifun_t)(has_fifo ? mfp_hdfd_fifo : mfp_hdfd_nf),
398 1.6 leo NULL) == NULL) {
399 1.6 leo printf("fdcattach: Can't establish interrupt\n");
400 1.6 leo return;
401 1.1 leo }
402 1.1 leo
403 1.1 leo /*
404 1.1 leo * Setup the interrupt logic.
405 1.1 leo */
406 1.15 leo MFP2->mf_iprb = (u_int8_t)~IB_DCHG;
407 1.1 leo MFP2->mf_imrb |= IB_DCHG;
408 1.1 leo MFP2->mf_aer |= 0x10; /* fdc int low->high */
409 1.1 leo
410 1.1 leo /* physical limit: four drives per controller. */
411 1.1 leo for (fa.fa_drive = 0; fa.fa_drive < 4; fa.fa_drive++) {
412 1.1 leo /*
413 1.1 leo * XXX: Choose something sensible as a default...
414 1.1 leo */
415 1.1 leo fa.fa_deftype = &fd_types[2]; /* 1.44MB */
416 1.1 leo (void)config_found(self, (void *)&fa, fdprint);
417 1.1 leo }
418 1.1 leo }
419 1.1 leo
420 1.1 leo int
421 1.5 leo fdprobe(parent, cfp, aux)
422 1.5 leo struct device *parent;
423 1.5 leo struct cfdata *cfp;
424 1.5 leo void *aux;
425 1.1 leo {
426 1.1 leo struct fdc_softc *fdc = (void *)parent;
427 1.1 leo struct fdc_attach_args *fa = aux;
428 1.1 leo int drive = fa->fa_drive;
429 1.1 leo int n;
430 1.1 leo
431 1.8 jtk if (cfp->cf_loc[FDCCF_UNIT] != FDCCF_UNIT_DEFAULT &&
432 1.8 jtk cfp->cf_loc[FDCCF_UNIT] != drive)
433 1.1 leo return 0;
434 1.1 leo /*
435 1.1 leo * XXX
436 1.1 leo * This is to work around some odd interactions between this driver
437 1.1 leo * and SMC Ethernet cards.
438 1.1 leo */
439 1.8 jtk if (cfp->cf_loc[FDCCF_UNIT] == FDCCF_UNIT_DEFAULT && drive >= 2)
440 1.1 leo return 0;
441 1.1 leo
442 1.1 leo /* select drive and turn on motor */
443 1.1 leo wrt_fdc_reg(fdout, drive | FDO_FRST | FDO_MOEN(drive));
444 1.1 leo
445 1.1 leo /* wait for motor to spin up */
446 1.1 leo delay(250000);
447 1.1 leo out_fdc(NE7CMD_RECAL);
448 1.1 leo out_fdc(drive);
449 1.1 leo
450 1.1 leo /* wait for recalibrate */
451 1.1 leo delay(2000000);
452 1.1 leo out_fdc(NE7CMD_SENSEI);
453 1.1 leo n = fdcresult(fdc);
454 1.1 leo
455 1.1 leo #ifdef FD_DEBUG
456 1.1 leo {
457 1.1 leo int i;
458 1.1 leo printf("fdprobe: status");
459 1.1 leo for (i = 0; i < n; i++)
460 1.1 leo printf(" %x", fdc->sc_status[i]);
461 1.1 leo printf("\n");
462 1.1 leo }
463 1.1 leo #endif
464 1.1 leo intr_arg = (void*)fdc;
465 1.1 leo if (n != 2 || (fdc->sc_status[0] & 0xf8) != 0x20)
466 1.1 leo return 0;
467 1.1 leo /* turn off motor */
468 1.1 leo wrt_fdc_reg(fdout, FDO_FRST);
469 1.1 leo
470 1.1 leo return 1;
471 1.1 leo }
472 1.1 leo
473 1.1 leo /*
474 1.1 leo * Controller is working, and drive responded. Attach it.
475 1.1 leo */
476 1.1 leo void
477 1.1 leo fdattach(parent, self, aux)
478 1.1 leo struct device *parent, *self;
479 1.1 leo void *aux;
480 1.1 leo {
481 1.1 leo struct fdc_softc *fdc = (void *)parent;
482 1.1 leo struct fd_softc *fd = (void *)self;
483 1.1 leo struct fdc_attach_args *fa = aux;
484 1.1 leo struct fd_type *type = fa->fa_deftype;
485 1.1 leo int drive = fa->fa_drive;
486 1.1 leo
487 1.22 thorpej callout_init(&fd->sc_motoron_ch);
488 1.22 thorpej callout_init(&fd->sc_motoroff_ch);
489 1.20 thorpej
490 1.1 leo /* XXX Allow `flags' to override device type? */
491 1.1 leo
492 1.1 leo if (type)
493 1.1 leo printf(": %s %d cyl, %d head, %d sec\n", type->name,
494 1.1 leo type->tracks, type->heads, type->sectrac);
495 1.1 leo else
496 1.1 leo printf(": density unknown\n");
497 1.1 leo
498 1.18 thorpej BUFQ_INIT(&fd->sc_q);
499 1.1 leo fd->sc_cylin = -1;
500 1.1 leo fd->sc_drive = drive;
501 1.1 leo fd->sc_deftype = type;
502 1.1 leo fdc->sc_fd[drive] = fd;
503 1.1 leo
504 1.1 leo /*
505 1.1 leo * Initialize and attach the disk structure.
506 1.1 leo */
507 1.1 leo fd->sc_dk.dk_name = fd->sc_dev.dv_xname;
508 1.1 leo fd->sc_dk.dk_driver = &fddkdriver;
509 1.1 leo disk_attach(&fd->sc_dk);
510 1.1 leo
511 1.1 leo /* Needed to power off if the motor is on when we halt. */
512 1.1 leo fd->sc_sdhook = shutdownhook_establish(fd_motor_off, fd);
513 1.1 leo }
514 1.1 leo
515 1.1 leo /*
516 1.1 leo * This is called from the assembly part of the interrupt handler
517 1.1 leo * when it is clear that the interrupt was not related to shoving
518 1.1 leo * data.
519 1.1 leo */
520 1.1 leo void
521 1.1 leo fdc_ctrl_intr(frame)
522 1.4 leo struct clockframe frame;
523 1.1 leo {
524 1.1 leo int s;
525 1.1 leo
526 1.1 leo /*
527 1.1 leo * Disable further interrupts. The fdcintr() routine
528 1.1 leo * explicitely enables them when needed.
529 1.1 leo */
530 1.1 leo MFP2->mf_ierb &= ~IB_DCHG;
531 1.1 leo
532 1.1 leo /*
533 1.1 leo * Set fddmalen to zero so no pseudo-dma transfers will
534 1.1 leo * occur.
535 1.1 leo */
536 1.1 leo fddmalen = 0;
537 1.1 leo
538 1.4 leo if (!BASEPRI(frame.cf_sr)) {
539 1.1 leo /*
540 1.1 leo * We don't want to stay on ipl6.....
541 1.1 leo */
542 1.1 leo add_sicallback((si_farg)fdcpseudointr, intr_arg, 0);
543 1.1 leo }
544 1.1 leo else {
545 1.1 leo s = splbio();
546 1.1 leo (void) fdcintr(intr_arg);
547 1.1 leo splx(s);
548 1.1 leo }
549 1.1 leo }
550 1.1 leo
551 1.1 leo __inline struct fd_type *
552 1.1 leo fd_dev_to_type(fd, dev)
553 1.1 leo struct fd_softc *fd;
554 1.1 leo dev_t dev;
555 1.1 leo {
556 1.1 leo int type = FDTYPE(dev);
557 1.1 leo
558 1.1 leo if (type > (sizeof(fd_types) / sizeof(fd_types[0])))
559 1.1 leo return NULL;
560 1.1 leo return type ? &fd_types[type - 1] : fd->sc_deftype;
561 1.1 leo }
562 1.1 leo
563 1.1 leo void
564 1.1 leo fdstrategy(bp)
565 1.1 leo register struct buf *bp; /* IO operation to perform */
566 1.1 leo {
567 1.1 leo struct fd_softc *fd = hdfd_cd.cd_devs[FDUNIT(bp->b_dev)];
568 1.1 leo int sz;
569 1.1 leo int s;
570 1.1 leo
571 1.1 leo /* Valid unit, controller, and request? */
572 1.1 leo if (bp->b_blkno < 0 ||
573 1.3 leo ((bp->b_bcount % FDC_BSIZE) != 0 &&
574 1.3 leo (bp->b_flags & B_FORMAT) == 0)) {
575 1.1 leo bp->b_error = EINVAL;
576 1.1 leo goto bad;
577 1.1 leo }
578 1.1 leo
579 1.1 leo /* If it's a null transfer, return immediately. */
580 1.1 leo if (bp->b_bcount == 0)
581 1.1 leo goto done;
582 1.1 leo
583 1.1 leo sz = howmany(bp->b_bcount, FDC_BSIZE);
584 1.1 leo
585 1.1 leo if (bp->b_blkno + sz > fd->sc_type->size) {
586 1.1 leo sz = fd->sc_type->size - bp->b_blkno;
587 1.1 leo if (sz == 0) {
588 1.1 leo /* If exactly at end of disk, return EOF. */
589 1.1 leo goto done;
590 1.1 leo }
591 1.1 leo if (sz < 0) {
592 1.1 leo /* If past end of disk, return EINVAL. */
593 1.1 leo bp->b_error = EINVAL;
594 1.1 leo goto bad;
595 1.1 leo }
596 1.1 leo /* Otherwise, truncate request. */
597 1.1 leo bp->b_bcount = sz << DEV_BSHIFT;
598 1.1 leo }
599 1.1 leo
600 1.19 thorpej bp->b_rawblkno = bp->b_blkno;
601 1.18 thorpej bp->b_cylinder = bp->b_blkno / (FDC_BSIZE/DEV_BSIZE) / fd->sc_type->seccyl;
602 1.1 leo
603 1.1 leo #ifdef FD_DEBUG
604 1.1 leo printf("fdstrategy: b_blkno %d b_bcount %ld blkno %ld cylin %ld sz"
605 1.1 leo " %d\n", bp->b_blkno, bp->b_bcount, (long)fd->sc_blkno,
606 1.18 thorpej bp->b_cylinder, sz);
607 1.1 leo #endif
608 1.1 leo
609 1.1 leo /* Queue transfer on drive, activate drive and controller if idle. */
610 1.1 leo s = splbio();
611 1.18 thorpej disksort_cylinder(&fd->sc_q, bp);
612 1.22 thorpej callout_stop(&fd->sc_motoroff_ch); /* a good idea */
613 1.18 thorpej if (fd->sc_active == 0)
614 1.1 leo fdstart(fd);
615 1.1 leo #ifdef DIAGNOSTIC
616 1.1 leo else {
617 1.1 leo struct fdc_softc *fdc = (void *)fd->sc_dev.dv_parent;
618 1.1 leo if (fdc->sc_state == DEVIDLE) {
619 1.1 leo printf("fdstrategy: controller inactive\n");
620 1.1 leo fdcstart(fdc);
621 1.1 leo }
622 1.1 leo }
623 1.1 leo #endif
624 1.1 leo splx(s);
625 1.1 leo return;
626 1.1 leo
627 1.1 leo bad:
628 1.1 leo bp->b_flags |= B_ERROR;
629 1.1 leo done:
630 1.1 leo /* Toss transfer; we're done early. */
631 1.1 leo bp->b_resid = bp->b_bcount;
632 1.1 leo biodone(bp);
633 1.1 leo }
634 1.1 leo
635 1.1 leo void
636 1.1 leo fdstart(fd)
637 1.1 leo struct fd_softc *fd;
638 1.1 leo {
639 1.1 leo struct fdc_softc *fdc = (void *)fd->sc_dev.dv_parent;
640 1.1 leo int active = fdc->sc_drives.tqh_first != 0;
641 1.1 leo
642 1.1 leo /* Link into controller queue. */
643 1.18 thorpej fd->sc_active = 1;
644 1.1 leo TAILQ_INSERT_TAIL(&fdc->sc_drives, fd, sc_drivechain);
645 1.1 leo
646 1.1 leo /* If controller not already active, start it. */
647 1.1 leo if (!active)
648 1.1 leo fdcstart(fdc);
649 1.1 leo }
650 1.1 leo
651 1.1 leo void
652 1.1 leo fdfinish(fd, bp)
653 1.1 leo struct fd_softc *fd;
654 1.1 leo struct buf *bp;
655 1.1 leo {
656 1.1 leo struct fdc_softc *fdc = (void *)fd->sc_dev.dv_parent;
657 1.1 leo
658 1.1 leo /*
659 1.1 leo * Move this drive to the end of the queue to give others a `fair'
660 1.1 leo * chance. We only force a switch if N operations are completed while
661 1.1 leo * another drive is waiting to be serviced, since there is a long motor
662 1.1 leo * startup delay whenever we switch.
663 1.1 leo */
664 1.1 leo if (fd->sc_drivechain.tqe_next && ++fd->sc_ops >= 8) {
665 1.1 leo fd->sc_ops = 0;
666 1.1 leo TAILQ_REMOVE(&fdc->sc_drives, fd, sc_drivechain);
667 1.18 thorpej if (BUFQ_NEXT(bp) != NULL)
668 1.1 leo TAILQ_INSERT_TAIL(&fdc->sc_drives, fd, sc_drivechain);
669 1.18 thorpej else
670 1.18 thorpej fd->sc_active = 0;
671 1.1 leo }
672 1.1 leo bp->b_resid = fd->sc_bcount;
673 1.1 leo fd->sc_skip = 0;
674 1.18 thorpej BUFQ_REMOVE(&fd->sc_q, bp);
675 1.1 leo
676 1.1 leo biodone(bp);
677 1.1 leo /* turn off motor 5s from now */
678 1.22 thorpej callout_reset(&fd->sc_motoroff_ch, 5 * hz, fd_motor_off, fd);
679 1.1 leo fdc->sc_state = DEVIDLE;
680 1.1 leo }
681 1.1 leo
682 1.1 leo int
683 1.1 leo fdread(dev, uio, flags)
684 1.1 leo dev_t dev;
685 1.1 leo struct uio *uio;
686 1.1 leo int flags;
687 1.1 leo {
688 1.1 leo return (physio(fdstrategy, NULL, dev, B_READ, minphys, uio));
689 1.1 leo }
690 1.1 leo
691 1.1 leo int
692 1.1 leo fdwrite(dev, uio, flags)
693 1.1 leo dev_t dev;
694 1.1 leo struct uio *uio;
695 1.1 leo int flags;
696 1.1 leo {
697 1.1 leo return (physio(fdstrategy, NULL, dev, B_WRITE, minphys, uio));
698 1.1 leo }
699 1.1 leo
700 1.1 leo void
701 1.1 leo fd_set_motor(fdc, reset)
702 1.1 leo struct fdc_softc *fdc;
703 1.1 leo int reset;
704 1.1 leo {
705 1.1 leo struct fd_softc *fd;
706 1.1 leo u_char status;
707 1.1 leo int n;
708 1.1 leo
709 1.1 leo if ((fd = fdc->sc_drives.tqh_first) != NULL)
710 1.1 leo status = fd->sc_drive;
711 1.1 leo else
712 1.1 leo status = 0;
713 1.1 leo if (!reset)
714 1.1 leo status |= FDO_FRST | FDO_FDMAEN;
715 1.1 leo for (n = 0; n < 4; n++)
716 1.1 leo if ((fd = fdc->sc_fd[n]) && (fd->sc_flags & FD_MOTOR))
717 1.1 leo status |= FDO_MOEN(n);
718 1.1 leo wrt_fdc_reg(fdout, status);
719 1.1 leo }
720 1.1 leo
721 1.1 leo void
722 1.1 leo fd_motor_off(arg)
723 1.1 leo void *arg;
724 1.1 leo {
725 1.1 leo struct fd_softc *fd = arg;
726 1.1 leo int s;
727 1.1 leo
728 1.1 leo s = splbio();
729 1.1 leo fd->sc_flags &= ~(FD_MOTOR | FD_MOTOR_WAIT);
730 1.1 leo fd_set_motor((struct fdc_softc *)fd->sc_dev.dv_parent, 0);
731 1.1 leo splx(s);
732 1.1 leo }
733 1.1 leo
734 1.1 leo void
735 1.1 leo fd_motor_on(arg)
736 1.1 leo void *arg;
737 1.1 leo {
738 1.1 leo struct fd_softc *fd = arg;
739 1.1 leo struct fdc_softc *fdc = (void *)fd->sc_dev.dv_parent;
740 1.1 leo int s;
741 1.1 leo
742 1.1 leo s = splbio();
743 1.1 leo fd->sc_flags &= ~FD_MOTOR_WAIT;
744 1.1 leo if ((fdc->sc_drives.tqh_first == fd) && (fdc->sc_state == MOTORWAIT))
745 1.1 leo (void) fdcintr(fdc);
746 1.1 leo splx(s);
747 1.1 leo }
748 1.1 leo
749 1.1 leo int
750 1.1 leo fdcresult(fdc)
751 1.1 leo struct fdc_softc *fdc;
752 1.1 leo {
753 1.1 leo u_char i;
754 1.1 leo int j = 100000,
755 1.1 leo n = 0;
756 1.1 leo
757 1.1 leo for (; j; j--) {
758 1.1 leo i = rd_fdc_reg(fdsts) & (NE7_DIO | NE7_RQM | NE7_CB);
759 1.1 leo if (i == NE7_RQM)
760 1.1 leo return n;
761 1.1 leo if (i == (NE7_DIO | NE7_RQM | NE7_CB)) {
762 1.1 leo if (n >= sizeof(fdc->sc_status)) {
763 1.1 leo log(LOG_ERR, "fdcresult: overrun\n");
764 1.1 leo return -1;
765 1.1 leo }
766 1.1 leo fdc->sc_status[n++] = rd_fdc_reg(fddata);
767 1.1 leo }
768 1.3 leo else delay(10);
769 1.1 leo }
770 1.1 leo log(LOG_ERR, "fdcresult: timeout\n");
771 1.1 leo return -1;
772 1.1 leo }
773 1.1 leo
774 1.1 leo int
775 1.1 leo out_fdc(x)
776 1.1 leo u_char x;
777 1.1 leo {
778 1.1 leo int i = 100000;
779 1.1 leo
780 1.3 leo while (((rd_fdc_reg(fdsts) & (NE7_DIO|NE7_RQM)) != NE7_RQM) && i-- > 0)
781 1.3 leo delay(1);
782 1.1 leo if (i <= 0)
783 1.1 leo return -1;
784 1.1 leo wrt_fdc_reg(fddata, x);
785 1.1 leo return 0;
786 1.1 leo }
787 1.1 leo
788 1.1 leo int
789 1.1 leo fdopen(dev, flags, mode, p)
790 1.1 leo dev_t dev;
791 1.1 leo int flags;
792 1.1 leo int mode;
793 1.1 leo struct proc *p;
794 1.1 leo {
795 1.1 leo int unit;
796 1.1 leo struct fd_softc *fd;
797 1.1 leo struct fd_type *type;
798 1.1 leo
799 1.1 leo unit = FDUNIT(dev);
800 1.1 leo if (unit >= hdfd_cd.cd_ndevs)
801 1.1 leo return ENXIO;
802 1.1 leo fd = hdfd_cd.cd_devs[unit];
803 1.1 leo if (fd == 0)
804 1.1 leo return ENXIO;
805 1.1 leo type = fd_dev_to_type(fd, dev);
806 1.1 leo if (type == NULL)
807 1.1 leo return ENXIO;
808 1.1 leo
809 1.1 leo if ((fd->sc_flags & FD_OPEN) != 0 &&
810 1.1 leo fd->sc_type != type)
811 1.1 leo return EBUSY;
812 1.1 leo
813 1.1 leo fd->sc_type = type;
814 1.1 leo fd->sc_cylin = -1;
815 1.1 leo fd->sc_flags |= FD_OPEN;
816 1.1 leo
817 1.1 leo return 0;
818 1.1 leo }
819 1.1 leo
820 1.1 leo int
821 1.1 leo fdclose(dev, flags, mode, p)
822 1.1 leo dev_t dev;
823 1.1 leo int flags;
824 1.1 leo int mode;
825 1.1 leo struct proc *p;
826 1.1 leo {
827 1.1 leo struct fd_softc *fd = hdfd_cd.cd_devs[FDUNIT(dev)];
828 1.1 leo
829 1.1 leo fd->sc_flags &= ~FD_OPEN;
830 1.3 leo fd->sc_opts &= ~(FDOPT_NORETRY|FDOPT_SILENT);
831 1.1 leo return 0;
832 1.1 leo }
833 1.1 leo
834 1.1 leo void
835 1.1 leo fdcstart(fdc)
836 1.1 leo struct fdc_softc *fdc;
837 1.1 leo {
838 1.1 leo
839 1.1 leo #ifdef DIAGNOSTIC
840 1.1 leo /* only got here if controller's drive queue was inactive; should
841 1.1 leo be in idle state */
842 1.1 leo if (fdc->sc_state != DEVIDLE) {
843 1.1 leo printf("fdcstart: not idle\n");
844 1.1 leo return;
845 1.1 leo }
846 1.1 leo #endif
847 1.1 leo (void) fdcintr(fdc);
848 1.1 leo }
849 1.1 leo
850 1.1 leo void
851 1.1 leo fdcstatus(dv, n, s)
852 1.1 leo struct device *dv;
853 1.1 leo int n;
854 1.1 leo char *s;
855 1.1 leo {
856 1.1 leo struct fdc_softc *fdc = (void *)dv->dv_parent;
857 1.2 thorpej char bits[64];
858 1.1 leo
859 1.1 leo if (n == 0) {
860 1.1 leo out_fdc(NE7CMD_SENSEI);
861 1.1 leo (void) fdcresult(fdc);
862 1.1 leo n = 2;
863 1.1 leo }
864 1.1 leo
865 1.1 leo printf("%s: %s", dv->dv_xname, s);
866 1.1 leo
867 1.1 leo switch (n) {
868 1.1 leo case 0:
869 1.1 leo printf("\n");
870 1.1 leo break;
871 1.1 leo case 2:
872 1.2 thorpej printf(" (st0 %s cyl %d)\n",
873 1.2 thorpej bitmask_snprintf(fdc->sc_status[0], NE7_ST0BITS,
874 1.2 thorpej bits, sizeof(bits)), fdc->sc_status[1]);
875 1.1 leo break;
876 1.1 leo case 7:
877 1.2 thorpej printf(" (st0 %s", bitmask_snprintf(fdc->sc_status[0],
878 1.2 thorpej NE7_ST0BITS, bits, sizeof(bits)));
879 1.2 thorpej printf(" st1 %s", bitmask_snprintf(fdc->sc_status[1],
880 1.2 thorpej NE7_ST1BITS, bits, sizeof(bits)));
881 1.2 thorpej printf(" st2 %s", bitmask_snprintf(fdc->sc_status[2],
882 1.2 thorpej NE7_ST2BITS, bits, sizeof(bits)));
883 1.2 thorpej printf(" cyl %d head %d sec %d)\n",
884 1.1 leo fdc->sc_status[3], fdc->sc_status[4], fdc->sc_status[5]);
885 1.1 leo break;
886 1.1 leo #ifdef DIAGNOSTIC
887 1.1 leo default:
888 1.1 leo printf("\nfdcstatus: weird size");
889 1.1 leo break;
890 1.1 leo #endif
891 1.1 leo }
892 1.1 leo }
893 1.1 leo
894 1.1 leo void
895 1.1 leo fdctimeout(arg)
896 1.1 leo void *arg;
897 1.1 leo {
898 1.1 leo struct fdc_softc *fdc = arg;
899 1.1 leo struct fd_softc *fd = fdc->sc_drives.tqh_first;
900 1.1 leo int s;
901 1.1 leo
902 1.1 leo s = splbio();
903 1.1 leo fdcstatus(&fd->sc_dev, 0, "timeout");
904 1.1 leo
905 1.18 thorpej if (BUFQ_FIRST(&fd->sc_q) != NULL)
906 1.1 leo fdc->sc_state++;
907 1.1 leo else
908 1.1 leo fdc->sc_state = DEVIDLE;
909 1.1 leo
910 1.1 leo (void) fdcintr(fdc);
911 1.1 leo splx(s);
912 1.1 leo }
913 1.1 leo
914 1.1 leo void
915 1.1 leo fdcpseudointr(arg)
916 1.1 leo void *arg;
917 1.1 leo {
918 1.1 leo int s;
919 1.1 leo
920 1.1 leo /* Just ensure it has the right spl. */
921 1.1 leo s = splbio();
922 1.1 leo (void) fdcintr(arg);
923 1.1 leo splx(s);
924 1.1 leo }
925 1.1 leo
926 1.1 leo int
927 1.1 leo fdcintr(arg)
928 1.1 leo void *arg;
929 1.1 leo {
930 1.3 leo struct fdc_softc *fdc = arg;
931 1.1 leo #define st0 fdc->sc_status[0]
932 1.1 leo #define st1 fdc->sc_status[1]
933 1.1 leo #define cyl fdc->sc_status[1]
934 1.3 leo
935 1.3 leo struct fd_softc *fd;
936 1.3 leo struct buf *bp;
937 1.3 leo int read, head, sec, i, nblks;
938 1.3 leo struct fd_type *type;
939 1.3 leo struct ne7_fd_formb *finfo = NULL;
940 1.1 leo
941 1.1 leo loop:
942 1.1 leo /* Is there a drive for the controller to do a transfer with? */
943 1.1 leo fd = fdc->sc_drives.tqh_first;
944 1.1 leo if (fd == NULL) {
945 1.1 leo fdc->sc_state = DEVIDLE;
946 1.1 leo return 1;
947 1.1 leo }
948 1.1 leo
949 1.1 leo /* Is there a transfer to this drive? If not, deactivate drive. */
950 1.18 thorpej bp = BUFQ_FIRST(&fd->sc_q);
951 1.1 leo if (bp == NULL) {
952 1.1 leo fd->sc_ops = 0;
953 1.1 leo TAILQ_REMOVE(&fdc->sc_drives, fd, sc_drivechain);
954 1.18 thorpej fd->sc_active = 0;
955 1.1 leo goto loop;
956 1.1 leo }
957 1.1 leo
958 1.3 leo if (bp->b_flags & B_FORMAT)
959 1.3 leo finfo = (struct ne7_fd_formb *)bp->b_data;
960 1.3 leo
961 1.1 leo switch (fdc->sc_state) {
962 1.1 leo case DEVIDLE:
963 1.1 leo fdc->sc_errors = 0;
964 1.1 leo fdc->sc_overruns = 0;
965 1.1 leo fd->sc_skip = 0;
966 1.1 leo fd->sc_bcount = bp->b_bcount;
967 1.1 leo fd->sc_blkno = bp->b_blkno / (FDC_BSIZE / DEV_BSIZE);
968 1.22 thorpej callout_stop(&fd->sc_motoroff_ch);
969 1.1 leo if ((fd->sc_flags & FD_MOTOR_WAIT) != 0) {
970 1.1 leo fdc->sc_state = MOTORWAIT;
971 1.1 leo return 1;
972 1.1 leo }
973 1.1 leo if ((fd->sc_flags & FD_MOTOR) == 0) {
974 1.1 leo /* Turn on the motor, being careful about pairing. */
975 1.1 leo struct fd_softc *ofd = fdc->sc_fd[fd->sc_drive ^ 1];
976 1.1 leo if (ofd && ofd->sc_flags & FD_MOTOR) {
977 1.22 thorpej callout_stop(&ofd->sc_motoroff_ch);
978 1.1 leo ofd->sc_flags &= ~(FD_MOTOR | FD_MOTOR_WAIT);
979 1.1 leo }
980 1.1 leo fd->sc_flags |= FD_MOTOR | FD_MOTOR_WAIT;
981 1.1 leo fd_set_motor(fdc, 0);
982 1.1 leo fdc->sc_state = MOTORWAIT;
983 1.1 leo /* Allow .25s for motor to stabilize. */
984 1.22 thorpej callout_reset(&fd->sc_motoron_ch, hz / 4,
985 1.20 thorpej fd_motor_on, fd);
986 1.1 leo return 1;
987 1.1 leo }
988 1.1 leo /* Make sure the right drive is selected. */
989 1.1 leo fd_set_motor(fdc, 0);
990 1.1 leo
991 1.1 leo /* fall through */
992 1.1 leo case DOSEEK:
993 1.1 leo doseek:
994 1.18 thorpej if (fd->sc_cylin == bp->b_cylinder)
995 1.1 leo goto doio;
996 1.1 leo
997 1.1 leo out_fdc(NE7CMD_SPECIFY);/* specify command */
998 1.1 leo out_fdc(fd->sc_type->steprate);
999 1.1 leo out_fdc(0x7); /* XXX head load time == 6ms - non-dma */
1000 1.1 leo
1001 1.1 leo fdc_ienable();
1002 1.1 leo
1003 1.1 leo out_fdc(NE7CMD_SEEK); /* seek function */
1004 1.1 leo out_fdc(fd->sc_drive); /* drive number */
1005 1.18 thorpej out_fdc(bp->b_cylinder * fd->sc_type->step);
1006 1.1 leo
1007 1.1 leo fd->sc_cylin = -1;
1008 1.1 leo fdc->sc_state = SEEKWAIT;
1009 1.1 leo
1010 1.1 leo fd->sc_dk.dk_seek++;
1011 1.1 leo disk_busy(&fd->sc_dk);
1012 1.1 leo
1013 1.20 thorpej callout_reset(&fdc->sc_timo_ch, 4 * hz, fdctimeout, fdc);
1014 1.1 leo return 1;
1015 1.1 leo
1016 1.1 leo case DOIO:
1017 1.1 leo doio:
1018 1.3 leo if (finfo)
1019 1.3 leo fd->sc_skip = (char *)&(finfo->fd_formb_cylno(0)) -
1020 1.3 leo (char *)finfo;
1021 1.3 leo
1022 1.1 leo type = fd->sc_type;
1023 1.1 leo sec = fd->sc_blkno % type->seccyl;
1024 1.1 leo head = sec / type->sectrac;
1025 1.1 leo sec -= head * type->sectrac;
1026 1.1 leo nblks = type->sectrac - sec;
1027 1.1 leo nblks = min(nblks, fd->sc_bcount / FDC_BSIZE);
1028 1.1 leo nblks = min(nblks, FDC_MAXIOSIZE / FDC_BSIZE);
1029 1.1 leo fd->sc_nblks = nblks;
1030 1.3 leo fd->sc_nbytes = finfo ? bp->b_bcount : nblks * FDC_BSIZE;
1031 1.1 leo #ifdef DIAGNOSTIC
1032 1.1 leo {
1033 1.1 leo int block;
1034 1.1 leo
1035 1.1 leo block = (fd->sc_cylin * type->heads + head)
1036 1.1 leo * type->sectrac + sec;
1037 1.1 leo if (block != fd->sc_blkno) {
1038 1.1 leo printf("fdcintr: block %d != blkno %d\n",
1039 1.1 leo block, fd->sc_blkno);
1040 1.1 leo #ifdef DDB
1041 1.1 leo Debugger();
1042 1.1 leo #endif
1043 1.1 leo }
1044 1.1 leo }
1045 1.1 leo #endif
1046 1.1 leo read = bp->b_flags & B_READ ? 1 : 0;
1047 1.1 leo
1048 1.1 leo /*
1049 1.1 leo * Setup pseudo-dma address & count
1050 1.1 leo */
1051 1.1 leo fddmaaddr = bp->b_data + fd->sc_skip;
1052 1.1 leo fddmalen = fd->sc_nbytes;
1053 1.1 leo
1054 1.1 leo wrt_fdc_reg(fdctl, type->rate);
1055 1.1 leo #ifdef FD_DEBUG
1056 1.1 leo printf("fdcintr: %s drive %d track %d head %d sec %d"
1057 1.1 leo " nblks %d\n", read ? "read" : "write",
1058 1.1 leo fd->sc_drive, fd->sc_cylin, head, sec, nblks);
1059 1.1 leo #endif
1060 1.1 leo fdc_ienable();
1061 1.1 leo
1062 1.3 leo if (finfo) {
1063 1.3 leo /* formatting */
1064 1.3 leo if (out_fdc(NE7CMD_FORMAT) < 0) {
1065 1.3 leo fdc->sc_errors = 4;
1066 1.3 leo fdcretry(fdc);
1067 1.3 leo goto loop;
1068 1.3 leo }
1069 1.3 leo out_fdc((head << 2) | fd->sc_drive);
1070 1.3 leo out_fdc(finfo->fd_formb_secshift);
1071 1.3 leo out_fdc(finfo->fd_formb_nsecs);
1072 1.3 leo out_fdc(finfo->fd_formb_gaplen);
1073 1.3 leo out_fdc(finfo->fd_formb_fillbyte);
1074 1.3 leo } else {
1075 1.3 leo if (read)
1076 1.3 leo out_fdc(NE7CMD_READ); /* READ */
1077 1.3 leo else
1078 1.3 leo out_fdc(NE7CMD_WRITE); /* WRITE */
1079 1.3 leo out_fdc((head << 2) | fd->sc_drive);
1080 1.3 leo out_fdc(fd->sc_cylin); /* track */
1081 1.3 leo out_fdc(head); /* head */
1082 1.3 leo out_fdc(sec + 1); /* sector +1 */
1083 1.3 leo out_fdc(type->secsize); /* sector size */
1084 1.3 leo out_fdc(sec + nblks); /* last sectors */
1085 1.3 leo out_fdc(type->gap1); /* gap1 size */
1086 1.3 leo out_fdc(type->datalen); /* data length */
1087 1.3 leo }
1088 1.1 leo fdc->sc_state = IOCOMPLETE;
1089 1.1 leo
1090 1.1 leo disk_busy(&fd->sc_dk);
1091 1.1 leo
1092 1.1 leo /* allow 2 seconds for operation */
1093 1.20 thorpej callout_reset(&fdc->sc_timo_ch, 2 * hz, fdctimeout, fdc);
1094 1.1 leo return 1; /* will return later */
1095 1.1 leo
1096 1.1 leo case SEEKWAIT:
1097 1.20 thorpej callout_stop(&fdc->sc_timo_ch);
1098 1.1 leo fdc->sc_state = SEEKCOMPLETE;
1099 1.1 leo /* allow 1/50 second for heads to settle */
1100 1.20 thorpej callout_reset(&fdc->sc_intr_ch, hz / 50, fdcpseudointr, fdc);
1101 1.1 leo return 1;
1102 1.1 leo
1103 1.1 leo case SEEKCOMPLETE:
1104 1.1 leo disk_unbusy(&fd->sc_dk, 0); /* no data on seek */
1105 1.1 leo
1106 1.1 leo /* Make sure seek really happened. */
1107 1.1 leo out_fdc(NE7CMD_SENSEI);
1108 1.1 leo if (fdcresult(fdc) != 2 || (st0 & 0xf8) != 0x20 ||
1109 1.18 thorpej cyl != bp->b_cylinder * fd->sc_type->step) {
1110 1.1 leo #ifdef FD_DEBUG
1111 1.1 leo fdcstatus(&fd->sc_dev, 2, "seek failed");
1112 1.1 leo #endif
1113 1.1 leo fdcretry(fdc);
1114 1.1 leo goto loop;
1115 1.1 leo }
1116 1.18 thorpej fd->sc_cylin = bp->b_cylinder;
1117 1.1 leo goto doio;
1118 1.1 leo
1119 1.1 leo case IOTIMEDOUT:
1120 1.1 leo case SEEKTIMEDOUT:
1121 1.1 leo case RECALTIMEDOUT:
1122 1.1 leo case RESETTIMEDOUT:
1123 1.1 leo fdcretry(fdc);
1124 1.1 leo goto loop;
1125 1.1 leo
1126 1.1 leo case IOCOMPLETE: /* IO DONE, post-analyze */
1127 1.20 thorpej callout_stop(&fdc->sc_timo_ch);
1128 1.1 leo
1129 1.1 leo disk_unbusy(&fd->sc_dk, (bp->b_bcount - bp->b_resid));
1130 1.1 leo
1131 1.1 leo if (fdcresult(fdc) != 7 || (st1 & 0x37) != 0) {
1132 1.1 leo /*
1133 1.1 leo * As the damn chip doesn't seem to have a FIFO,
1134 1.1 leo * accept a few overruns as a fact of life *sigh*
1135 1.1 leo */
1136 1.1 leo if ((st1 & 0x10) && (++fdc->sc_overruns < 4)) {
1137 1.1 leo fdc->sc_state = DOSEEK;
1138 1.1 leo goto loop;
1139 1.1 leo }
1140 1.1 leo #ifdef FD_DEBUG
1141 1.1 leo fdcstatus(&fd->sc_dev, 7, bp->b_flags & B_READ ?
1142 1.1 leo "read failed" : "write failed");
1143 1.1 leo printf("blkno %d nblks %d\n",
1144 1.1 leo fd->sc_blkno, fd->sc_nblks);
1145 1.1 leo #endif
1146 1.1 leo fdcretry(fdc);
1147 1.1 leo goto loop;
1148 1.1 leo }
1149 1.1 leo if (fdc->sc_errors) {
1150 1.1 leo diskerr(bp, "fd", "soft error", LOG_PRINTF,
1151 1.1 leo fd->sc_skip / FDC_BSIZE, (struct disklabel *)NULL);
1152 1.1 leo printf("\n");
1153 1.1 leo fdc->sc_errors = 0;
1154 1.1 leo }
1155 1.1 leo fdc->sc_overruns = 0;
1156 1.1 leo fd->sc_blkno += fd->sc_nblks;
1157 1.1 leo fd->sc_skip += fd->sc_nbytes;
1158 1.1 leo fd->sc_bcount -= fd->sc_nbytes;
1159 1.3 leo if (!finfo && fd->sc_bcount > 0) {
1160 1.18 thorpej bp->b_cylinder = fd->sc_blkno / fd->sc_type->seccyl;
1161 1.1 leo goto doseek;
1162 1.1 leo }
1163 1.1 leo fdfinish(fd, bp);
1164 1.1 leo goto loop;
1165 1.1 leo
1166 1.1 leo case DORESET:
1167 1.1 leo /* try a reset, keep motor on */
1168 1.1 leo fd_set_motor(fdc, 1);
1169 1.1 leo delay(100);
1170 1.1 leo fd_set_motor(fdc, 0);
1171 1.1 leo fdc->sc_state = RESETCOMPLETE;
1172 1.20 thorpej callout_reset(&fdc->sc_timo_ch, hz / 2, fdctimeout, fdc);
1173 1.1 leo return 1; /* will return later */
1174 1.1 leo
1175 1.1 leo case RESETCOMPLETE:
1176 1.20 thorpej callout_stop(&fdc->sc_timo_ch);
1177 1.1 leo /* clear the controller output buffer */
1178 1.1 leo for (i = 0; i < 4; i++) {
1179 1.1 leo out_fdc(NE7CMD_SENSEI);
1180 1.1 leo (void) fdcresult(fdc);
1181 1.1 leo }
1182 1.1 leo
1183 1.1 leo /* fall through */
1184 1.1 leo case DORECAL:
1185 1.1 leo fdc_ienable();
1186 1.1 leo
1187 1.1 leo out_fdc(NE7CMD_RECAL); /* recalibrate function */
1188 1.1 leo out_fdc(fd->sc_drive);
1189 1.1 leo fdc->sc_state = RECALWAIT;
1190 1.20 thorpej callout_reset(&fdc->sc_timo_ch, 5 * hz, fdctimeout, fdc);
1191 1.1 leo return 1; /* will return later */
1192 1.1 leo
1193 1.1 leo case RECALWAIT:
1194 1.20 thorpej callout_stop(&fdc->sc_timo_ch);
1195 1.1 leo fdc->sc_state = RECALCOMPLETE;
1196 1.1 leo /* allow 1/30 second for heads to settle */
1197 1.20 thorpej callout_reset(&fdc->sc_intr_ch, hz / 30, fdcpseudointr, fdc);
1198 1.1 leo return 1; /* will return later */
1199 1.1 leo
1200 1.1 leo case RECALCOMPLETE:
1201 1.1 leo out_fdc(NE7CMD_SENSEI);
1202 1.1 leo if (fdcresult(fdc) != 2 || (st0 & 0xf8) != 0x20 || cyl != 0) {
1203 1.1 leo #ifdef FD_DEBUG
1204 1.1 leo fdcstatus(&fd->sc_dev, 2, "recalibrate failed");
1205 1.1 leo #endif
1206 1.1 leo fdcretry(fdc);
1207 1.1 leo goto loop;
1208 1.1 leo }
1209 1.1 leo fd->sc_cylin = 0;
1210 1.1 leo goto doseek;
1211 1.1 leo
1212 1.1 leo case MOTORWAIT:
1213 1.1 leo if (fd->sc_flags & FD_MOTOR_WAIT)
1214 1.1 leo return 1; /* time's not up yet */
1215 1.1 leo goto doseek;
1216 1.1 leo
1217 1.1 leo default:
1218 1.1 leo fdcstatus(&fd->sc_dev, 0, "stray interrupt");
1219 1.1 leo return 1;
1220 1.1 leo }
1221 1.1 leo #ifdef DIAGNOSTIC
1222 1.1 leo panic("fdcintr: impossible");
1223 1.1 leo #endif
1224 1.1 leo #undef st0
1225 1.1 leo #undef st1
1226 1.1 leo #undef cyl
1227 1.1 leo }
1228 1.1 leo
1229 1.1 leo void
1230 1.1 leo fdcretry(fdc)
1231 1.1 leo struct fdc_softc *fdc;
1232 1.1 leo {
1233 1.2 thorpej char bits[64];
1234 1.1 leo struct fd_softc *fd;
1235 1.1 leo struct buf *bp;
1236 1.1 leo
1237 1.1 leo fd = fdc->sc_drives.tqh_first;
1238 1.18 thorpej bp = BUFQ_FIRST(&fd->sc_q);
1239 1.1 leo
1240 1.3 leo if (fd->sc_opts & FDOPT_NORETRY)
1241 1.3 leo goto fail;
1242 1.3 leo
1243 1.1 leo switch (fdc->sc_errors) {
1244 1.1 leo case 0:
1245 1.1 leo /* try again */
1246 1.1 leo fdc->sc_state = DOSEEK;
1247 1.1 leo break;
1248 1.1 leo
1249 1.1 leo case 1: case 2: case 3:
1250 1.1 leo /* didn't work; try recalibrating */
1251 1.1 leo fdc->sc_state = DORECAL;
1252 1.1 leo break;
1253 1.1 leo
1254 1.1 leo case 4:
1255 1.1 leo /* still no go; reset the bastard */
1256 1.1 leo fdc->sc_state = DORESET;
1257 1.1 leo break;
1258 1.1 leo
1259 1.1 leo default:
1260 1.3 leo fail:
1261 1.3 leo if ((fd->sc_opts & FDOPT_SILENT) == 0) {
1262 1.3 leo diskerr(bp, "fd", "hard error", LOG_PRINTF,
1263 1.3 leo fd->sc_skip / FDC_BSIZE,
1264 1.3 leo (struct disklabel *)NULL);
1265 1.3 leo
1266 1.3 leo printf(" (st0 %s",
1267 1.3 leo bitmask_snprintf(fdc->sc_status[0],
1268 1.3 leo NE7_ST0BITS, bits,
1269 1.3 leo sizeof(bits)));
1270 1.3 leo printf(" st1 %s",
1271 1.3 leo bitmask_snprintf(fdc->sc_status[1],
1272 1.3 leo NE7_ST1BITS, bits,
1273 1.3 leo sizeof(bits)));
1274 1.3 leo printf(" st2 %s",
1275 1.3 leo bitmask_snprintf(fdc->sc_status[2],
1276 1.3 leo NE7_ST2BITS, bits,
1277 1.3 leo sizeof(bits)));
1278 1.3 leo printf(" cyl %d head %d sec %d)\n",
1279 1.3 leo fdc->sc_status[3],
1280 1.3 leo fdc->sc_status[4],
1281 1.3 leo fdc->sc_status[5]);
1282 1.3 leo }
1283 1.1 leo bp->b_flags |= B_ERROR;
1284 1.1 leo bp->b_error = EIO;
1285 1.1 leo fdfinish(fd, bp);
1286 1.1 leo }
1287 1.1 leo fdc->sc_errors++;
1288 1.1 leo }
1289 1.1 leo
1290 1.1 leo int
1291 1.1 leo fdsize(dev)
1292 1.1 leo dev_t dev;
1293 1.1 leo {
1294 1.1 leo
1295 1.1 leo /* Swapping to floppies would not make sense. */
1296 1.1 leo return -1;
1297 1.1 leo }
1298 1.1 leo
1299 1.1 leo int
1300 1.1 leo fddump(dev, blkno, va, size)
1301 1.1 leo dev_t dev;
1302 1.1 leo daddr_t blkno;
1303 1.1 leo caddr_t va;
1304 1.1 leo size_t size;
1305 1.1 leo {
1306 1.1 leo
1307 1.1 leo /* Not implemented. */
1308 1.1 leo return ENXIO;
1309 1.1 leo }
1310 1.1 leo
1311 1.1 leo int
1312 1.1 leo fdioctl(dev, cmd, addr, flag, p)
1313 1.1 leo dev_t dev;
1314 1.1 leo u_long cmd;
1315 1.1 leo caddr_t addr;
1316 1.1 leo int flag;
1317 1.1 leo struct proc *p;
1318 1.1 leo {
1319 1.1 leo struct fd_softc *fd;
1320 1.1 leo struct disklabel buffer;
1321 1.3 leo int error;
1322 1.3 leo struct fdformat_parms *form_parms;
1323 1.3 leo struct fdformat_cmd *form_cmd;
1324 1.3 leo struct ne7_fd_formb fd_formb;
1325 1.3 leo unsigned int scratch;
1326 1.3 leo int il[FD_MAX_NSEC + 1];
1327 1.3 leo register int i, j;
1328 1.1 leo
1329 1.1 leo fd = hdfd_cd.cd_devs[FDUNIT(dev)];
1330 1.1 leo
1331 1.1 leo switch (cmd) {
1332 1.1 leo case DIOCGDINFO:
1333 1.14 leo fdgetdisklabel(fd, dev);
1334 1.14 leo *(struct disklabel *)addr = *(fd->sc_dk.dk_label);
1335 1.14 leo return 0;
1336 1.1 leo
1337 1.14 leo case DIOCGPART:
1338 1.14 leo fdgetdisklabel(fd, dev);
1339 1.14 leo ((struct partinfo *)addr)->disklab = fd->sc_dk.dk_label;
1340 1.14 leo ((struct partinfo *)addr)->part =
1341 1.14 leo &fd->sc_dk.dk_label->d_partitions[RAW_PART];
1342 1.14 leo return(0);
1343 1.1 leo
1344 1.1 leo case DIOCWLABEL:
1345 1.1 leo if ((flag & FWRITE) == 0)
1346 1.1 leo return EBADF;
1347 1.1 leo /* XXX do something */
1348 1.1 leo return 0;
1349 1.1 leo
1350 1.16 leo case DIOCSDINFO:
1351 1.1 leo case DIOCWDINFO:
1352 1.1 leo if ((flag & FWRITE) == 0)
1353 1.16 leo return EBADF;
1354 1.1 leo
1355 1.3 leo error = setdisklabel(&buffer, (struct disklabel *)addr, 0,NULL);
1356 1.1 leo if (error)
1357 1.16 leo return error;
1358 1.1 leo
1359 1.16 leo if (cmd == DIOCWDINFO)
1360 1.16 leo error = writedisklabel(dev, fdstrategy, &buffer, NULL);
1361 1.1 leo return error;
1362 1.1 leo
1363 1.3 leo case FDIOCGETFORMAT:
1364 1.3 leo form_parms = (struct fdformat_parms *)addr;
1365 1.3 leo form_parms->fdformat_version = FDFORMAT_VERSION;
1366 1.3 leo form_parms->nbps = 128 * (1 << fd->sc_type->secsize);
1367 1.3 leo form_parms->ncyl = fd->sc_type->tracks;
1368 1.3 leo form_parms->nspt = fd->sc_type->sectrac;
1369 1.3 leo form_parms->ntrk = fd->sc_type->heads;
1370 1.3 leo form_parms->stepspercyl = fd->sc_type->step;
1371 1.3 leo form_parms->gaplen = fd->sc_type->gap2;
1372 1.3 leo form_parms->fillbyte = fd->sc_type->fillbyte;
1373 1.3 leo form_parms->interleave = fd->sc_type->interleave;
1374 1.3 leo switch (fd->sc_type->rate) {
1375 1.3 leo case FDC_500KBPS:
1376 1.3 leo form_parms->xfer_rate = 500 * 1024;
1377 1.3 leo break;
1378 1.3 leo case FDC_300KBPS:
1379 1.3 leo form_parms->xfer_rate = 300 * 1024;
1380 1.3 leo break;
1381 1.3 leo case FDC_250KBPS:
1382 1.3 leo form_parms->xfer_rate = 250 * 1024;
1383 1.3 leo break;
1384 1.7 leo case FDC_125KBPS:
1385 1.7 leo form_parms->xfer_rate = 125 * 1024;
1386 1.7 leo break;
1387 1.3 leo default:
1388 1.3 leo return EINVAL;
1389 1.3 leo }
1390 1.3 leo return 0;
1391 1.3 leo
1392 1.3 leo case FDIOCSETFORMAT:
1393 1.3 leo if((flag & FWRITE) == 0)
1394 1.3 leo return EBADF; /* must be opened for writing */
1395 1.3 leo form_parms = (struct fdformat_parms *)addr;
1396 1.3 leo if (form_parms->fdformat_version != FDFORMAT_VERSION)
1397 1.3 leo return EINVAL; /* wrong version of formatting prog */
1398 1.3 leo
1399 1.3 leo scratch = form_parms->nbps >> 7;
1400 1.3 leo if ((form_parms->nbps & 0x7f) || ffs(scratch) == 0 ||
1401 1.3 leo scratch & ~(1 << (ffs(scratch)-1)))
1402 1.3 leo /* not a power-of-two multiple of 128 */
1403 1.3 leo return EINVAL;
1404 1.3 leo
1405 1.3 leo switch (form_parms->xfer_rate) {
1406 1.3 leo case 500 * 1024:
1407 1.3 leo fd->sc_type->rate = FDC_500KBPS;
1408 1.3 leo break;
1409 1.3 leo case 300 * 1024:
1410 1.3 leo fd->sc_type->rate = FDC_300KBPS;
1411 1.3 leo break;
1412 1.3 leo case 250 * 1024:
1413 1.3 leo fd->sc_type->rate = FDC_250KBPS;
1414 1.7 leo break;
1415 1.7 leo case 125 * 1024:
1416 1.7 leo fd->sc_type->rate = FDC_125KBPS;
1417 1.3 leo break;
1418 1.3 leo default:
1419 1.3 leo return EINVAL;
1420 1.3 leo }
1421 1.3 leo
1422 1.3 leo if (form_parms->nspt > FD_MAX_NSEC ||
1423 1.3 leo form_parms->fillbyte > 0xff ||
1424 1.3 leo form_parms->interleave > 0xff)
1425 1.3 leo return EINVAL;
1426 1.3 leo fd->sc_type->sectrac = form_parms->nspt;
1427 1.3 leo if (form_parms->ntrk != 2 && form_parms->ntrk != 1)
1428 1.3 leo return EINVAL;
1429 1.3 leo fd->sc_type->heads = form_parms->ntrk;
1430 1.3 leo fd->sc_type->seccyl = form_parms->nspt * form_parms->ntrk;
1431 1.3 leo fd->sc_type->secsize = ffs(scratch)-1;
1432 1.3 leo fd->sc_type->gap2 = form_parms->gaplen;
1433 1.3 leo fd->sc_type->tracks = form_parms->ncyl;
1434 1.3 leo fd->sc_type->size = fd->sc_type->seccyl * form_parms->ncyl *
1435 1.3 leo form_parms->nbps / DEV_BSIZE;
1436 1.3 leo fd->sc_type->step = form_parms->stepspercyl;
1437 1.3 leo fd->sc_type->fillbyte = form_parms->fillbyte;
1438 1.3 leo fd->sc_type->interleave = form_parms->interleave;
1439 1.3 leo return 0;
1440 1.3 leo
1441 1.3 leo case FDIOCFORMAT_TRACK:
1442 1.3 leo if((flag & FWRITE) == 0)
1443 1.3 leo return EBADF; /* must be opened for writing */
1444 1.3 leo form_cmd = (struct fdformat_cmd *)addr;
1445 1.3 leo if (form_cmd->formatcmd_version != FDFORMAT_VERSION)
1446 1.3 leo return EINVAL; /* wrong version of formatting prog */
1447 1.3 leo
1448 1.3 leo if (form_cmd->head >= fd->sc_type->heads ||
1449 1.3 leo form_cmd->cylinder >= fd->sc_type->tracks) {
1450 1.3 leo return EINVAL;
1451 1.3 leo }
1452 1.3 leo
1453 1.3 leo fd_formb.head = form_cmd->head;
1454 1.3 leo fd_formb.cyl = form_cmd->cylinder;
1455 1.3 leo fd_formb.transfer_rate = fd->sc_type->rate;
1456 1.3 leo fd_formb.fd_formb_secshift = fd->sc_type->secsize;
1457 1.3 leo fd_formb.fd_formb_nsecs = fd->sc_type->sectrac;
1458 1.3 leo fd_formb.fd_formb_gaplen = fd->sc_type->gap2;
1459 1.3 leo fd_formb.fd_formb_fillbyte = fd->sc_type->fillbyte;
1460 1.3 leo
1461 1.3 leo bzero(il,sizeof il);
1462 1.3 leo for (j = 0, i = 1; i <= fd_formb.fd_formb_nsecs; i++) {
1463 1.3 leo while (il[(j%fd_formb.fd_formb_nsecs)+1])
1464 1.3 leo j++;
1465 1.3 leo il[(j%fd_formb.fd_formb_nsecs)+1] = i;
1466 1.3 leo j += fd->sc_type->interleave;
1467 1.3 leo }
1468 1.3 leo for (i = 0; i < fd_formb.fd_formb_nsecs; i++) {
1469 1.3 leo fd_formb.fd_formb_cylno(i) = form_cmd->cylinder;
1470 1.3 leo fd_formb.fd_formb_headno(i) = form_cmd->head;
1471 1.3 leo fd_formb.fd_formb_secno(i) = il[i+1];
1472 1.3 leo fd_formb.fd_formb_secsize(i) = fd->sc_type->secsize;
1473 1.3 leo }
1474 1.3 leo case FDIOCGETOPTS: /* get drive options */
1475 1.3 leo *(int *)addr = fd->sc_opts;
1476 1.3 leo return 0;
1477 1.3 leo
1478 1.3 leo case FDIOCSETOPTS: /* set drive options */
1479 1.3 leo fd->sc_opts = *(int *)addr;
1480 1.3 leo return 0;
1481 1.3 leo
1482 1.3 leo
1483 1.1 leo default:
1484 1.1 leo return ENOTTY;
1485 1.1 leo }
1486 1.1 leo
1487 1.1 leo #ifdef DIAGNOSTIC
1488 1.1 leo panic("fdioctl: impossible");
1489 1.1 leo #endif
1490 1.3 leo }
1491 1.3 leo
1492 1.3 leo int
1493 1.3 leo fdformat(dev, finfo, p)
1494 1.3 leo dev_t dev;
1495 1.3 leo struct ne7_fd_formb *finfo;
1496 1.3 leo struct proc *p;
1497 1.3 leo {
1498 1.3 leo int rv = 0, s;
1499 1.3 leo struct fd_softc *fd = hdfd_cd.cd_devs[FDUNIT(dev)];
1500 1.3 leo struct fd_type *type = fd->sc_type;
1501 1.3 leo struct buf *bp;
1502 1.3 leo
1503 1.3 leo /* set up a buffer header for fdstrategy() */
1504 1.3 leo bp = (struct buf *)malloc(sizeof(struct buf), M_TEMP, M_NOWAIT);
1505 1.3 leo if(bp == 0)
1506 1.3 leo return ENOBUFS;
1507 1.3 leo PHOLD(p);
1508 1.3 leo bzero((void *)bp, sizeof(struct buf));
1509 1.3 leo bp->b_flags = B_BUSY | B_PHYS | B_FORMAT;
1510 1.3 leo bp->b_proc = p;
1511 1.3 leo bp->b_dev = dev;
1512 1.3 leo
1513 1.3 leo /*
1514 1.3 leo * calculate a fake blkno, so fdstrategy() would initiate a
1515 1.3 leo * seek to the requested cylinder
1516 1.3 leo */
1517 1.3 leo bp->b_blkno = (finfo->cyl * (type->sectrac * type->heads)
1518 1.3 leo + finfo->head * type->sectrac) * FDC_BSIZE / DEV_BSIZE;
1519 1.3 leo
1520 1.3 leo bp->b_bcount = sizeof(struct fd_idfield_data) * finfo->fd_formb_nsecs;
1521 1.3 leo bp->b_data = (caddr_t)finfo;
1522 1.3 leo
1523 1.3 leo #ifdef DEBUG
1524 1.12 leo printf("fdformat: blkno %x count %lx\n", bp->b_blkno, bp->b_bcount);
1525 1.3 leo #endif
1526 1.3 leo
1527 1.3 leo /* now do the format */
1528 1.3 leo fdstrategy(bp);
1529 1.3 leo
1530 1.3 leo /* ...and wait for it to complete */
1531 1.3 leo s = splbio();
1532 1.3 leo while(!(bp->b_flags & B_DONE)) {
1533 1.3 leo rv = tsleep((caddr_t)bp, PRIBIO, "fdform", 20 * hz);
1534 1.3 leo if (rv == EWOULDBLOCK)
1535 1.3 leo break;
1536 1.3 leo }
1537 1.3 leo splx(s);
1538 1.3 leo
1539 1.3 leo if (rv == EWOULDBLOCK) {
1540 1.3 leo /* timed out */
1541 1.3 leo rv = EIO;
1542 1.3 leo biodone(bp);
1543 1.3 leo }
1544 1.3 leo if(bp->b_flags & B_ERROR) {
1545 1.3 leo rv = bp->b_error;
1546 1.3 leo }
1547 1.3 leo PRELE(p);
1548 1.3 leo free(bp, M_TEMP);
1549 1.3 leo return rv;
1550 1.14 leo }
1551 1.14 leo
1552 1.14 leo
1553 1.14 leo /*
1554 1.14 leo * Obtain a disklabel. Either a real one from the disk or, if there
1555 1.14 leo * is none, a fake one.
1556 1.14 leo */
1557 1.14 leo static void
1558 1.14 leo fdgetdisklabel(fd, dev)
1559 1.14 leo struct fd_softc *fd;
1560 1.14 leo dev_t dev;
1561 1.14 leo {
1562 1.14 leo struct disklabel *lp;
1563 1.14 leo struct cpu_disklabel cpulab;
1564 1.14 leo
1565 1.14 leo lp = fd->sc_dk.dk_label;
1566 1.14 leo
1567 1.14 leo bzero(lp, sizeof(*lp));
1568 1.14 leo bzero(&cpulab, sizeof(cpulab));
1569 1.14 leo
1570 1.14 leo lp->d_secpercyl = fd->sc_type->seccyl;
1571 1.14 leo lp->d_type = DTYPE_FLOPPY;
1572 1.14 leo lp->d_secsize = FDC_BSIZE;
1573 1.14 leo lp->d_secperunit = fd->sc_type->size;
1574 1.14 leo
1575 1.14 leo /*
1576 1.14 leo * If there is no label on the disk: fake one
1577 1.14 leo */
1578 1.14 leo if (readdisklabel(dev, fdstrategy, lp, &cpulab) != NULL)
1579 1.14 leo fdgetdefaultlabel(fd, lp, RAW_PART);
1580 1.14 leo
1581 1.14 leo if ((FDC_BSIZE * fd->sc_type->size)
1582 1.14 leo < (lp->d_secsize * lp->d_secperunit)) {
1583 1.14 leo /*
1584 1.14 leo * XXX: Ignore these fields. If you drop a vnddisk
1585 1.14 leo * on more than one floppy, you'll get disturbing
1586 1.14 leo * sounds!
1587 1.14 leo */
1588 1.14 leo lp->d_secpercyl = fd->sc_type->seccyl;
1589 1.14 leo lp->d_type = DTYPE_FLOPPY;
1590 1.14 leo lp->d_secsize = FDC_BSIZE;
1591 1.14 leo lp->d_secperunit = fd->sc_type->size;
1592 1.14 leo }
1593 1.14 leo }
1594 1.14 leo
1595 1.14 leo /*
1596 1.14 leo * Build defaultdisk label. For now we only create a label from what we
1597 1.14 leo * know from 'sc'.
1598 1.14 leo */
1599 1.14 leo static void
1600 1.14 leo fdgetdefaultlabel(fd, lp, part)
1601 1.14 leo struct fd_softc *fd;
1602 1.14 leo struct disklabel *lp;
1603 1.14 leo int part;
1604 1.14 leo {
1605 1.14 leo bzero(lp, sizeof(struct disklabel));
1606 1.14 leo
1607 1.14 leo lp->d_secsize = 128 * (1 << fd->sc_type->secsize);
1608 1.14 leo lp->d_ntracks = fd->sc_type->heads;
1609 1.14 leo lp->d_nsectors = fd->sc_type->sectrac;
1610 1.14 leo lp->d_secpercyl = lp->d_ntracks * lp->d_nsectors;
1611 1.14 leo lp->d_ncylinders = fd->sc_type->size / lp->d_secpercyl;
1612 1.14 leo lp->d_secperunit = fd->sc_type->size;
1613 1.14 leo
1614 1.14 leo lp->d_type = DTYPE_FLOPPY;
1615 1.14 leo lp->d_rpm = 300; /* good guess I suppose. */
1616 1.14 leo lp->d_interleave = 1; /* FIXME: is this OK? */
1617 1.14 leo lp->d_bbsize = 0;
1618 1.14 leo lp->d_sbsize = 0;
1619 1.14 leo lp->d_npartitions = part + 1;
1620 1.14 leo lp->d_trkseek = 6000; /* Who cares... */
1621 1.14 leo lp->d_magic = DISKMAGIC;
1622 1.14 leo lp->d_magic2 = DISKMAGIC;
1623 1.14 leo lp->d_checksum = dkcksum(lp);
1624 1.14 leo lp->d_partitions[part].p_size = lp->d_secperunit;
1625 1.14 leo lp->d_partitions[part].p_fstype = FS_UNUSED;
1626 1.14 leo lp->d_partitions[part].p_fsize = 1024;
1627 1.14 leo lp->d_partitions[part].p_frag = 8;
1628 1.1 leo }
1629