fd.c revision 1.40.14.3 1 1.40.14.2 bouyer /* $NetBSD: fd.c,v 1.40.14.3 2001/01/18 09:22:09 bouyer Exp $ */
2 1.12 cgd
3 1.3 chopps /*
4 1.5 chopps * Copyright (c) 1994 Christian E. Hopps
5 1.32 mhitch * Copyright (c) 1996 Ezra Story
6 1.3 chopps * All rights reserved.
7 1.3 chopps *
8 1.3 chopps * Redistribution and use in source and binary forms, with or without
9 1.3 chopps * modification, are permitted provided that the following conditions
10 1.3 chopps * are met:
11 1.3 chopps * 1. Redistributions of source code must retain the above copyright
12 1.3 chopps * notice, this list of conditions and the following disclaimer.
13 1.3 chopps * 2. Redistributions in binary form must reproduce the above copyright
14 1.3 chopps * notice, this list of conditions and the following disclaimer in the
15 1.3 chopps * documentation and/or other materials provided with the distribution.
16 1.3 chopps * 3. All advertising materials mentioning features or use of this software
17 1.3 chopps * must display the following acknowledgement:
18 1.5 chopps * This product includes software developed by Christian E. Hopps.
19 1.32 mhitch * This product includes software developed by Ezra Story.
20 1.3 chopps * 4. The name of the author may not be used to endorse or promote products
21 1.3 chopps * derived from this software without specific prior written permission
22 1.3 chopps *
23 1.3 chopps * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
24 1.3 chopps * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
25 1.3 chopps * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
26 1.3 chopps * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
27 1.3 chopps * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
28 1.3 chopps * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
29 1.3 chopps * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
30 1.3 chopps * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
31 1.3 chopps * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
32 1.3 chopps * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
33 1.1 chopps */
34 1.1 chopps #include <sys/param.h>
35 1.1 chopps #include <sys/systm.h>
36 1.40.14.1 bouyer #include <sys/callout.h>
37 1.5 chopps #include <sys/kernel.h>
38 1.5 chopps #include <sys/malloc.h>
39 1.1 chopps #include <sys/buf.h>
40 1.5 chopps #include <sys/device.h>
41 1.5 chopps #include <sys/ioctl.h>
42 1.5 chopps #include <sys/fcntl.h>
43 1.1 chopps #include <sys/disklabel.h>
44 1.5 chopps #include <sys/disk.h>
45 1.5 chopps #include <sys/dkbad.h>
46 1.29 veego #include <sys/proc.h>
47 1.29 veego #include <machine/cpu.h>
48 1.5 chopps #include <amiga/amiga/device.h>
49 1.5 chopps #include <amiga/amiga/custom.h>
50 1.1 chopps #include <amiga/amiga/cia.h>
51 1.5 chopps #include <amiga/amiga/cc.h>
52 1.1 chopps
53 1.29 veego #include <sys/conf.h>
54 1.29 veego #include <machine/conf.h>
55 1.29 veego
56 1.37 jtk #include "locators.h"
57 1.37 jtk
58 1.5 chopps enum fdc_bits { FDB_CHANGED = 2, FDB_PROTECT, FDB_CYLZERO, FDB_READY };
59 1.5 chopps /*
60 1.5 chopps * partitions in fd represent different format floppies
61 1.5 chopps * partition a is 0 etc..
62 1.5 chopps */
63 1.21 mycroft enum fd_parttypes {
64 1.21 mycroft FDAMIGAPART = 0,
65 1.5 chopps FDMSDOSPART,
66 1.5 chopps FDMAXPARTS
67 1.1 chopps };
68 1.1 chopps
69 1.5 chopps #define FDBBSIZE (8192)
70 1.5 chopps #define FDSBSIZE (8192)
71 1.1 chopps
72 1.10 chopps #define FDUNIT(dev) DISKUNIT(dev)
73 1.10 chopps #define FDPART(dev) DISKPART(dev)
74 1.10 chopps #define FDMAKEDEV(m, u, p) MAKEDISKDEV((m), (u), (p))
75 1.5 chopps
76 1.32 mhitch /* that's nice, but we don't want to always use this as an amiga drive
77 1.32 mhitch bunghole :-) */
78 1.5 chopps #define FDNHEADS (2) /* amiga drives always have 2 heads */
79 1.5 chopps #define FDSECSIZE (512) /* amiga drives always have 512 byte sectors */
80 1.5 chopps #define FDSECLWORDS (128)
81 1.5 chopps
82 1.5 chopps #define FDSETTLEDELAY (18000) /* usec delay after seeking after switch dir */
83 1.5 chopps #define FDSTEPDELAY (3500) /* usec delay after steping */
84 1.5 chopps #define FDPRESIDEDELAY (1000) /* usec delay before writing can occur */
85 1.5 chopps #define FDWRITEDELAY (1300) /* usec delay after write */
86 1.5 chopps
87 1.5 chopps #define FDSTEPOUT (1) /* decrease track step */
88 1.5 chopps #define FDSTEPIN (0) /* increase track step */
89 1.5 chopps
90 1.5 chopps #define FDCUNITMASK (0x78) /* mask for all units (bits 6-3) */
91 1.5 chopps
92 1.5 chopps #define FDRETRIES (2) /* default number of retries */
93 1.5 chopps #define FDMAXUNITS (4) /* maximum number of supported units */
94 1.5 chopps
95 1.5 chopps #define DISKLEN_READ (0) /* fake mask for reading */
96 1.5 chopps #define DISKLEN_WRITE (1 << 14) /* bit for writing */
97 1.5 chopps #define DISKLEN_DMAEN (1 << 15) /* dma go */
98 1.5 chopps #define DMABUFSZ ((DISKLEN_WRITE - 1) * 2) /* largest dma possible */
99 1.5 chopps
100 1.5 chopps #define FDMFMSYNC (0x4489)
101 1.32 mhitch #define FDMFMID (0x5554)
102 1.32 mhitch #define FDMFMDATA (0x5545)
103 1.32 mhitch #define FDMFMGAP1 (0x9254)
104 1.32 mhitch #define FDMFMGAP2 (0xAAAA)
105 1.32 mhitch #define FDMFMGAP3 (0x9254)
106 1.32 mhitch #define CRC16POLY (0x1021) /* (x^16) + x^12 + x^5 + x^0 */
107 1.32 mhitch
108 1.32 mhitch /*
109 1.32 mhitch * Msdos-type MFM encode/decode
110 1.32 mhitch */
111 1.32 mhitch static u_char msdecode[128];
112 1.32 mhitch static u_char msencode[16] =
113 1.32 mhitch {
114 1.32 mhitch 0x2a, 0x29, 0x24, 0x25, 0x12, 0x11, 0x14, 0x15,
115 1.32 mhitch 0x4a, 0x49, 0x44, 0x45, 0x52, 0x51, 0x54, 0x55
116 1.32 mhitch };
117 1.32 mhitch static u_short mscrctab[256];
118 1.32 mhitch
119 1.32 mhitch /*
120 1.32 mhitch 5554 aaaa aaaa aaa5 2aa4 4452 aa51
121 1.32 mhitch 00 00 03 02 ac 0d
122 1.32 mhitch */
123 1.5 chopps
124 1.5 chopps /*
125 1.5 chopps * floppy device type
126 1.5 chopps */
127 1.5 chopps struct fdtype {
128 1.5 chopps u_int driveid; /* drive identification (from drive) */
129 1.5 chopps u_int ncylinders; /* number of cylinders on drive */
130 1.5 chopps u_int amiga_nsectors; /* number of sectors per amiga track */
131 1.5 chopps u_int msdos_nsectors; /* number of sectors per msdos track */
132 1.5 chopps u_int nreadw; /* number of words (short) read per track */
133 1.5 chopps u_int nwritew; /* number of words (short) written per track */
134 1.5 chopps u_int gap; /* track gap size in long words */
135 1.5 chopps u_int precomp[2]; /* 1st and 2nd precomp values */
136 1.5 chopps char *desc; /* description of drive type (useq) */
137 1.1 chopps };
138 1.1 chopps
139 1.1 chopps /*
140 1.5 chopps * floppy disk device data
141 1.1 chopps */
142 1.5 chopps struct fd_softc {
143 1.22 thorpej struct device sc_dv; /* generic device info; must come first */
144 1.22 thorpej struct disk dkdev; /* generic disk info */
145 1.40.14.1 bouyer struct buf_queue bufq; /* queue pending I/O operations */
146 1.40.14.1 bouyer struct buf curbuf; /* state of current I/O operation */
147 1.40.14.1 bouyer struct callout calibrate_ch;
148 1.40.14.1 bouyer struct callout motor_ch;
149 1.5 chopps struct fdtype *type;
150 1.5 chopps void *cachep; /* cached track data (write through) */
151 1.5 chopps int cachetrk; /* cahced track -1 for none */
152 1.5 chopps int hwunit; /* unit for amiga controlling hw */
153 1.5 chopps int unitmask; /* mask for cia select deslect */
154 1.5 chopps int pstepdir; /* previous step direction */
155 1.6 chopps int curcyl; /* current curcyl head positioned on */
156 1.5 chopps int flags; /* misc flags */
157 1.5 chopps int wlabel;
158 1.5 chopps int stepdelay; /* useq to delay after seek user setable */
159 1.5 chopps int nsectors; /* number of sectors per track */
160 1.5 chopps int openpart; /* which partition [ab] == [12] is open */
161 1.5 chopps short retries; /* number of times to retry failed io */
162 1.5 chopps short retried; /* number of times current io retried */
163 1.32 mhitch int bytespersec; /* number of bytes per sector */
164 1.1 chopps };
165 1.1 chopps
166 1.5 chopps /* fd_softc->flags */
167 1.5 chopps #define FDF_MOTORON (0x01) /* motor is running */
168 1.5 chopps #define FDF_MOTOROFF (0x02) /* motor is waiting to be turned off */
169 1.5 chopps #define FDF_WMOTOROFF (0x04) /* unit wants a wakeup after off */
170 1.5 chopps #define FDF_DIRTY (0x08) /* track cache needs write */
171 1.5 chopps #define FDF_WRITEWAIT (0x10) /* need to head select delay on next setpos */
172 1.5 chopps #define FDF_HAVELABEL (0x20) /* label is valid */
173 1.5 chopps #define FDF_JUSTFLUSH (0x40) /* don't bother caching track. */
174 1.11 chopps #define FDF_NOTRACK0 (0x80) /* was not able to recalibrate drive */
175 1.5 chopps
176 1.5 chopps int fdc_wantwakeup;
177 1.6 chopps int fdc_side;
178 1.5 chopps void *fdc_dmap;
179 1.5 chopps struct fd_softc *fdc_indma;
180 1.30 mhitch int fdc_dmalen;
181 1.30 mhitch int fdc_dmawrite;
182 1.5 chopps
183 1.5 chopps struct fdcargs {
184 1.5 chopps struct fdtype *type;
185 1.5 chopps int unit;
186 1.1 chopps };
187 1.1 chopps
188 1.36 veego int fdcmatch __P((struct device *, struct cfdata *, void *));
189 1.29 veego void fdcattach __P((struct device *, struct device *, void *));
190 1.33 cgd int fdcprint __P((void *, const char *));
191 1.36 veego int fdmatch __P((struct device *, struct cfdata *, void *));
192 1.29 veego void fdattach __P((struct device *, struct device *, void *));
193 1.29 veego
194 1.29 veego void fdintr __P((int));
195 1.30 mhitch void fdidxintr __P((void));
196 1.29 veego void fdstrategy __P((struct buf *));
197 1.29 veego int fdloaddisk __P((struct fd_softc *));
198 1.38 thorpej void fdgetdefaultlabel __P((struct fd_softc *, struct disklabel *, int));
199 1.29 veego int fdgetdisklabel __P((struct fd_softc *, dev_t));
200 1.29 veego int fdsetdisklabel __P((struct fd_softc *, struct disklabel *));
201 1.29 veego int fdputdisklabel __P((struct fd_softc *, dev_t));
202 1.29 veego struct fdtype * fdcgetfdtype __P((int));
203 1.29 veego void fdmotoroff __P((void *));
204 1.29 veego void fdsetpos __P((struct fd_softc *, int, int));
205 1.29 veego void fdselunit __P((struct fd_softc *));
206 1.29 veego void fdstart __P((struct fd_softc *));
207 1.29 veego void fdcont __P((struct fd_softc *));
208 1.29 veego void fddmastart __P((struct fd_softc *, int));
209 1.29 veego void fdcalibrate __P((void *));
210 1.29 veego void fddmadone __P((struct fd_softc *, int));
211 1.29 veego void fddone __P((struct fd_softc *));
212 1.29 veego void fdfindwork __P((int));
213 1.29 veego void fdminphys __P((struct buf *));
214 1.29 veego void fdcachetoraw __P((struct fd_softc *));
215 1.32 mhitch void amcachetoraw __P((struct fd_softc *));
216 1.32 mhitch int amrawtocache __P((struct fd_softc *));
217 1.29 veego u_long *fdfindsync __P((u_long *, u_long *));
218 1.29 veego int fdrawtocache __P((struct fd_softc *));
219 1.32 mhitch void mscachetoraw __P((struct fd_softc *));
220 1.32 mhitch int msrawtocache __P((struct fd_softc *));
221 1.29 veego u_long *mfmblkencode __P((u_long *, u_long *, u_long *, int));
222 1.29 veego u_long *mfmblkdecode __P((u_long *, u_long *, u_long *, int));
223 1.32 mhitch u_short *msblkdecode __P((u_short *, u_char *, int));
224 1.32 mhitch u_short *msblkencode __P((u_short *, u_char *, int, u_short *));
225 1.5 chopps
226 1.5 chopps struct dkdriver fddkdriver = { fdstrategy };
227 1.5 chopps
228 1.5 chopps /*
229 1.21 mycroft * read size is (nsectors + 1) * mfm secsize + gap bytes + 2 shorts
230 1.5 chopps * write size is nsectors * mfm secsize + gap bytes + 3 shorts
231 1.5 chopps * the extra shorts are to deal with a dma hw bug in the controller
232 1.5 chopps * they are probably too much (I belive the bug is 1 short on write and
233 1.5 chopps * 3 bits on read) but there is no need to be cheap here.
234 1.5 chopps */
235 1.5 chopps #define MAXTRKSZ (22 * FDSECSIZE)
236 1.5 chopps struct fdtype fdtype[] = {
237 1.5 chopps { 0x00000000, 80, 11, 9, 7358, 6815, 414, { 80, 161 }, "3.5dd" },
238 1.5 chopps { 0x55555555, 40, 11, 9, 7358, 6815, 414, { 80, 161 }, "5.25dd" },
239 1.5 chopps { 0xAAAAAAAA, 80, 22, 18, 14716, 13630, 828, { 80, 161 }, "3.5hd" }
240 1.1 chopps };
241 1.5 chopps int nfdtype = sizeof(fdtype) / sizeof(*fdtype);
242 1.1 chopps
243 1.26 thorpej struct cfattach fd_ca = {
244 1.26 thorpej sizeof(struct fd_softc), fdmatch, fdattach
245 1.27 mhitch };
246 1.26 thorpej
247 1.40 thorpej extern struct cfdriver fd_cd;
248 1.26 thorpej
249 1.26 thorpej struct cfattach fdc_ca = {
250 1.26 thorpej sizeof(struct device), fdcmatch, fdcattach
251 1.26 thorpej };
252 1.1 chopps
253 1.5 chopps /*
254 1.21 mycroft * all hw access through macros, this helps to hide the active low
255 1.5 chopps * properties
256 1.5 chopps */
257 1.1 chopps
258 1.5 chopps #define FDUNITMASK(unit) (1 << (3 + (unit)))
259 1.1 chopps
260 1.5 chopps /*
261 1.5 chopps * select units using mask
262 1.5 chopps */
263 1.5 chopps #define FDSELECT(um) do { ciab.prb &= ~(um); } while (0)
264 1.1 chopps
265 1.5 chopps /*
266 1.5 chopps * deselect units using mask
267 1.5 chopps */
268 1.5 chopps #define FDDESELECT(um) do { ciab.prb |= (um); delay(1); } while (0)
269 1.1 chopps
270 1.1 chopps /*
271 1.5 chopps * test hw condition bits
272 1.1 chopps */
273 1.5 chopps #define FDTESTC(bit) ((ciaa.pra & (1 << (bit))) == 0)
274 1.1 chopps
275 1.1 chopps /*
276 1.5 chopps * set motor for select units, true motor on else off
277 1.1 chopps */
278 1.5 chopps #define FDSETMOTOR(on) do { \
279 1.5 chopps if (on) ciab.prb &= ~CIAB_PRB_MTR; else ciab.prb |= CIAB_PRB_MTR; \
280 1.5 chopps } while (0)
281 1.1 chopps
282 1.5 chopps /*
283 1.5 chopps * set head for select units
284 1.5 chopps */
285 1.5 chopps #define FDSETHEAD(head) do { \
286 1.5 chopps if (head) ciab.prb &= ~CIAB_PRB_SIDE; else ciab.prb |= CIAB_PRB_SIDE; \
287 1.5 chopps delay(1); } while (0)
288 1.1 chopps
289 1.1 chopps /*
290 1.5 chopps * select direction, true towards spindle else outwards
291 1.1 chopps */
292 1.5 chopps #define FDSETDIR(in) do { \
293 1.5 chopps if (in) ciab.prb &= ~CIAB_PRB_DIR; else ciab.prb |= CIAB_PRB_DIR; \
294 1.5 chopps delay(1); } while (0)
295 1.1 chopps
296 1.5 chopps /*
297 1.5 chopps * step the selected units
298 1.5 chopps */
299 1.5 chopps #define FDSTEP do { \
300 1.5 chopps ciab.prb &= ~CIAB_PRB_STEP; ciab.prb |= CIAB_PRB_STEP; \
301 1.5 chopps } while (0)
302 1.1 chopps
303 1.5 chopps #define FDDMASTART(len, towrite) do { \
304 1.5 chopps int dmasz = (len) | ((towrite) ? DISKLEN_WRITE : 0) | DISKLEN_DMAEN; \
305 1.5 chopps custom.dsklen = dmasz; custom.dsklen = dmasz; } while (0)
306 1.1 chopps
307 1.5 chopps #define FDDMASTOP do { custom.dsklen = 0; } while (0)
308 1.1 chopps
309 1.1 chopps
310 1.5 chopps int
311 1.36 veego fdcmatch(pdp, cfp, auxp)
312 1.5 chopps struct device *pdp;
313 1.36 veego struct cfdata *cfp;
314 1.36 veego void *auxp;
315 1.1 chopps {
316 1.40.14.1 bouyer static int fdc_matched = 0;
317 1.26 thorpej
318 1.40.14.1 bouyer /* Allow only once instance. */
319 1.40.14.1 bouyer if (matchname("fdc", auxp) == 0 || fdc_matched)
320 1.5 chopps return(0);
321 1.5 chopps if ((fdc_dmap = alloc_chipmem(DMABUFSZ)) == NULL) {
322 1.35 christos printf("fdc: unable to allocate dma buffer\n");
323 1.5 chopps return(0);
324 1.5 chopps }
325 1.40.14.1 bouyer
326 1.40.14.1 bouyer fdc_matched = 1;
327 1.5 chopps return(1);
328 1.1 chopps }
329 1.1 chopps
330 1.1 chopps void
331 1.5 chopps fdcattach(pdp, dp, auxp)
332 1.29 veego struct device *pdp, *dp;
333 1.5 chopps void *auxp;
334 1.5 chopps {
335 1.5 chopps struct fdcargs args;
336 1.5 chopps
337 1.35 christos printf(": dmabuf pa 0x%x", kvtop(fdc_dmap));
338 1.35 christos printf(": dmabuf ka %p\n", fdc_dmap);
339 1.5 chopps args.unit = 0;
340 1.5 chopps args.type = fdcgetfdtype(args.unit);
341 1.5 chopps
342 1.6 chopps fdc_side = -1;
343 1.5 chopps config_found(dp, &args, fdcprint);
344 1.5 chopps for (args.unit++; args.unit < FDMAXUNITS; args.unit++) {
345 1.5 chopps if ((args.type = fdcgetfdtype(args.unit)) == NULL)
346 1.5 chopps continue;
347 1.5 chopps config_found(dp, &args, fdcprint);
348 1.5 chopps }
349 1.1 chopps }
350 1.1 chopps
351 1.5 chopps int
352 1.5 chopps fdcprint(auxp, pnp)
353 1.5 chopps void *auxp;
354 1.33 cgd const char *pnp;
355 1.1 chopps {
356 1.15 chopps struct fdcargs *fcp;
357 1.15 chopps
358 1.15 chopps fcp = auxp;
359 1.15 chopps if (pnp)
360 1.35 christos printf("fd%d at %s unit %d:", fcp->unit, pnp,
361 1.29 veego fcp->type->driveid);
362 1.5 chopps return(UNCONF);
363 1.1 chopps }
364 1.1 chopps
365 1.5 chopps /*ARGSUSED*/
366 1.5 chopps int
367 1.36 veego fdmatch(pdp, cfp, auxp)
368 1.5 chopps struct device *pdp;
369 1.36 veego struct cfdata *cfp;
370 1.36 veego void *auxp;
371 1.1 chopps {
372 1.5 chopps struct fdcargs *fdap;
373 1.1 chopps
374 1.5 chopps fdap = auxp;
375 1.40.14.1 bouyer if (cfp->cf_loc[FDCCF_UNIT] == fdap->unit ||
376 1.40.14.1 bouyer cfp->cf_loc[FDCCF_UNIT] == FDCCF_UNIT_DEFAULT)
377 1.5 chopps return(1);
378 1.40.14.1 bouyer
379 1.5 chopps return(0);
380 1.1 chopps }
381 1.1 chopps
382 1.1 chopps void
383 1.5 chopps fdattach(pdp, dp, auxp)
384 1.5 chopps struct device *pdp, *dp;
385 1.5 chopps void *auxp;
386 1.5 chopps {
387 1.5 chopps struct fdcargs *ap;
388 1.5 chopps struct fd_softc *sc;
389 1.32 mhitch int i;
390 1.5 chopps
391 1.5 chopps ap = auxp;
392 1.5 chopps sc = (struct fd_softc *)dp;
393 1.5 chopps
394 1.40.14.1 bouyer BUFQ_INIT(&sc->bufq);
395 1.40.14.1 bouyer callout_init(&sc->calibrate_ch);
396 1.40.14.1 bouyer callout_init(&sc->motor_ch);
397 1.40.14.1 bouyer
398 1.6 chopps sc->curcyl = sc->cachetrk = -1;
399 1.5 chopps sc->openpart = -1;
400 1.5 chopps sc->type = ap->type;
401 1.5 chopps sc->hwunit = ap->unit;
402 1.5 chopps sc->unitmask = 1 << (3 + ap->unit);
403 1.5 chopps sc->retries = FDRETRIES;
404 1.5 chopps sc->stepdelay = FDSTEPDELAY;
405 1.32 mhitch sc->bytespersec = 512;
406 1.35 christos printf(" unit %d: %s %d cyl, %d head, %d sec [%d sec], 512 bytes/sec\n",
407 1.29 veego sc->hwunit, sc->type->desc, sc->type->ncylinders, FDNHEADS,
408 1.5 chopps sc->type->amiga_nsectors, sc->type->msdos_nsectors);
409 1.1 chopps
410 1.5 chopps /*
411 1.22 thorpej * Initialize and attach the disk structure.
412 1.22 thorpej */
413 1.22 thorpej sc->dkdev.dk_name = sc->sc_dv.dv_xname;
414 1.22 thorpej sc->dkdev.dk_driver = &fddkdriver;
415 1.22 thorpej disk_attach(&sc->dkdev);
416 1.22 thorpej
417 1.22 thorpej /*
418 1.5 chopps * calibrate the drive
419 1.5 chopps */
420 1.5 chopps fdsetpos(sc, 0, 0);
421 1.5 chopps fdsetpos(sc, sc->type->ncylinders, 0);
422 1.5 chopps fdsetpos(sc, 0, 0);
423 1.5 chopps fdmotoroff(sc);
424 1.1 chopps
425 1.5 chopps /*
426 1.32 mhitch * precalc msdos MFM and CRC
427 1.32 mhitch */
428 1.32 mhitch for (i = 0; i < 128; i++)
429 1.32 mhitch msdecode[i] = 0xff;
430 1.32 mhitch for (i = 0; i < 16; i++)
431 1.32 mhitch msdecode[msencode[i]] = i;
432 1.32 mhitch for (i = 0; i < 256; i++) {
433 1.32 mhitch mscrctab[i] = (0x1021 * (i & 0xf0)) ^ (0x1021 * (i & 0x0f)) ^
434 1.32 mhitch (0x1021 * (i >> 4));
435 1.32 mhitch }
436 1.32 mhitch
437 1.32 mhitch /*
438 1.5 chopps * enable disk related interrupts
439 1.5 chopps */
440 1.25 chopps custom.dmacon = DMAF_SETCLR | DMAF_MASTER | DMAF_DISK;
441 1.30 mhitch custom.intena = INTF_SETCLR | INTF_DSKBLK;
442 1.30 mhitch ciab.icr = CIA_ICR_FLG;
443 1.1 chopps }
444 1.1 chopps
445 1.5 chopps /*ARGSUSED*/
446 1.5 chopps int
447 1.29 veego fdopen(dev, flags, devtype, p)
448 1.5 chopps dev_t dev;
449 1.5 chopps int flags, devtype;
450 1.5 chopps struct proc *p;
451 1.1 chopps {
452 1.5 chopps struct fd_softc *sc;
453 1.5 chopps int wasopen, fwork, error, s;
454 1.1 chopps
455 1.5 chopps error = 0;
456 1.5 chopps
457 1.5 chopps if (FDPART(dev) >= FDMAXPARTS)
458 1.5 chopps return(ENXIO);
459 1.1 chopps
460 1.26 thorpej if ((sc = getsoftc(fd_cd, FDUNIT(dev))) == NULL)
461 1.5 chopps return(ENXIO);
462 1.11 chopps if (sc->flags & FDF_NOTRACK0)
463 1.11 chopps return(ENXIO);
464 1.5 chopps if (sc->cachep == NULL)
465 1.5 chopps sc->cachep = malloc(MAXTRKSZ, M_DEVBUF, M_WAITOK);
466 1.1 chopps
467 1.5 chopps s = splbio();
468 1.5 chopps /*
469 1.16 mycroft * if we are sleeping in fdclose(); waiting for a chance to
470 1.5 chopps * shut the motor off, do a sleep here also.
471 1.5 chopps */
472 1.5 chopps while (sc->flags & FDF_WMOTOROFF)
473 1.29 veego tsleep(fdmotoroff, PRIBIO, "fdopen", 0);
474 1.1 chopps
475 1.5 chopps fwork = 0;
476 1.5 chopps /*
477 1.21 mycroft * if not open let user open request type, otherwise
478 1.5 chopps * ensure they are trying to open same type.
479 1.5 chopps */
480 1.5 chopps if (sc->openpart == FDPART(dev))
481 1.5 chopps wasopen = 1;
482 1.5 chopps else if (sc->openpart == -1) {
483 1.5 chopps sc->openpart = FDPART(dev);
484 1.5 chopps wasopen = 0;
485 1.1 chopps } else {
486 1.5 chopps wasopen = 1;
487 1.5 chopps error = EPERM;
488 1.5 chopps goto done;
489 1.21 mycroft }
490 1.1 chopps
491 1.5 chopps /*
492 1.5 chopps * wait for current io to complete if any
493 1.5 chopps */
494 1.5 chopps if (fdc_indma) {
495 1.5 chopps fwork = 1;
496 1.21 mycroft fdc_wantwakeup++;
497 1.29 veego tsleep(fdopen, PRIBIO, "fdopen", 0);
498 1.5 chopps }
499 1.29 veego if ((error = fdloaddisk(sc)) != 0)
500 1.5 chopps goto done;
501 1.29 veego if ((error = fdgetdisklabel(sc, dev)) != 0)
502 1.5 chopps goto done;
503 1.5 chopps #ifdef FDDEBUG
504 1.35 christos printf(" open successful\n");
505 1.5 chopps #endif
506 1.5 chopps done:
507 1.5 chopps /*
508 1.21 mycroft * if we requested that fddone()->fdfindwork() wake us, allow it to
509 1.5 chopps * complete its job now
510 1.5 chopps */
511 1.5 chopps if (fwork)
512 1.5 chopps fdfindwork(FDUNIT(dev));
513 1.5 chopps splx(s);
514 1.1 chopps
515 1.21 mycroft /*
516 1.5 chopps * if we were not open and we marked us so reverse that.
517 1.5 chopps */
518 1.5 chopps if (error && wasopen == 0)
519 1.32 mhitch sc->openpart = -1;
520 1.5 chopps return(error);
521 1.1 chopps }
522 1.1 chopps
523 1.5 chopps /*ARGSUSED*/
524 1.5 chopps int
525 1.16 mycroft fdclose(dev, flags, devtype, p)
526 1.5 chopps dev_t dev;
527 1.5 chopps int flags, devtype;
528 1.5 chopps struct proc *p;
529 1.1 chopps {
530 1.5 chopps struct fd_softc *sc;
531 1.5 chopps int s;
532 1.1 chopps
533 1.5 chopps #ifdef FDDEBUG
534 1.35 christos printf("fdclose()\n");
535 1.5 chopps #endif
536 1.26 thorpej sc = getsoftc(fd_cd, FDUNIT(dev));
537 1.5 chopps s = splbio();
538 1.5 chopps if (sc->flags & FDF_MOTORON) {
539 1.5 chopps sc->flags |= FDF_WMOTOROFF;
540 1.16 mycroft tsleep(fdmotoroff, PRIBIO, "fdclose", 0);
541 1.5 chopps sc->flags &= ~FDF_WMOTOROFF;
542 1.5 chopps wakeup(fdmotoroff);
543 1.5 chopps }
544 1.5 chopps sc->openpart = -1;
545 1.5 chopps splx(s);
546 1.5 chopps return(0);
547 1.1 chopps }
548 1.1 chopps
549 1.5 chopps int
550 1.5 chopps fdioctl(dev, cmd, addr, flag, p)
551 1.5 chopps dev_t dev;
552 1.13 chopps u_long cmd;
553 1.5 chopps caddr_t addr;
554 1.13 chopps int flag;
555 1.5 chopps struct proc *p;
556 1.1 chopps {
557 1.5 chopps struct fd_softc *sc;
558 1.5 chopps int error, wlab;
559 1.1 chopps
560 1.26 thorpej sc = getsoftc(fd_cd, FDUNIT(dev));
561 1.21 mycroft
562 1.5 chopps if ((sc->flags & FDF_HAVELABEL) == 0)
563 1.5 chopps return(EBADF);
564 1.1 chopps
565 1.5 chopps switch (cmd) {
566 1.5 chopps case DIOCSBAD:
567 1.5 chopps return(EINVAL);
568 1.5 chopps case DIOCSRETRIES:
569 1.5 chopps if (*(int *)addr < 0)
570 1.5 chopps return(EINVAL);
571 1.5 chopps sc->retries = *(int *)addr;
572 1.5 chopps return(0);
573 1.5 chopps case DIOCSSTEP:
574 1.5 chopps if (*(int *)addr < FDSTEPDELAY)
575 1.5 chopps return(EINVAL);
576 1.22 thorpej sc->dkdev.dk_label->d_trkseek = sc->stepdelay = *(int *)addr;
577 1.5 chopps return(0);
578 1.5 chopps case DIOCGDINFO:
579 1.22 thorpej *(struct disklabel *)addr = *(sc->dkdev.dk_label);
580 1.5 chopps return(0);
581 1.5 chopps case DIOCGPART:
582 1.22 thorpej ((struct partinfo *)addr)->disklab = sc->dkdev.dk_label;
583 1.21 mycroft ((struct partinfo *)addr)->part =
584 1.22 thorpej &sc->dkdev.dk_label->d_partitions[FDPART(dev)];
585 1.5 chopps return(0);
586 1.5 chopps case DIOCSDINFO:
587 1.5 chopps if ((flag & FWRITE) == 0)
588 1.5 chopps return(EBADF);
589 1.5 chopps return(fdsetdisklabel(sc, (struct disklabel *)addr));
590 1.5 chopps case DIOCWDINFO:
591 1.5 chopps if ((flag & FWRITE) == 0)
592 1.5 chopps return(EBADF);
593 1.29 veego if ((error = fdsetdisklabel(sc, (struct disklabel *)addr)) != 0)
594 1.5 chopps return(error);
595 1.5 chopps wlab = sc->wlabel;
596 1.5 chopps sc->wlabel = 1;
597 1.5 chopps error = fdputdisklabel(sc, dev);
598 1.5 chopps sc->wlabel = wlab;
599 1.5 chopps return(error);
600 1.5 chopps case DIOCWLABEL:
601 1.5 chopps if ((flag & FWRITE) == 0)
602 1.5 chopps return(EBADF);
603 1.5 chopps sc->wlabel = *(int *)addr;
604 1.5 chopps return(0);
605 1.38 thorpej case DIOCGDEFLABEL:
606 1.38 thorpej fdgetdefaultlabel(sc, (struct disklabel *)addr, FDPART(dev));
607 1.38 thorpej return(0);
608 1.5 chopps default:
609 1.5 chopps return(ENOTTY);
610 1.5 chopps }
611 1.5 chopps }
612 1.1 chopps
613 1.21 mycroft /*
614 1.5 chopps * no dumps to floppy disks thank you.
615 1.5 chopps */
616 1.5 chopps int
617 1.5 chopps fdsize(dev)
618 1.5 chopps dev_t dev;
619 1.5 chopps {
620 1.5 chopps return(-1);
621 1.1 chopps }
622 1.1 chopps
623 1.5 chopps int
624 1.29 veego fdread(dev, uio, flags)
625 1.29 veego dev_t dev;
626 1.29 veego struct uio *uio;
627 1.29 veego int flags;
628 1.1 chopps {
629 1.18 chopps return (physio(fdstrategy, NULL, dev, B_READ, fdminphys, uio));
630 1.1 chopps }
631 1.1 chopps
632 1.5 chopps int
633 1.29 veego fdwrite(dev, uio, flags)
634 1.29 veego dev_t dev;
635 1.29 veego struct uio *uio;
636 1.29 veego int flags;
637 1.1 chopps {
638 1.18 chopps return (physio(fdstrategy, NULL, dev, B_WRITE, fdminphys, uio));
639 1.5 chopps }
640 1.1 chopps
641 1.1 chopps
642 1.29 veego void
643 1.29 veego fdintr(flag)
644 1.29 veego int flag;
645 1.5 chopps {
646 1.5 chopps int s;
647 1.21 mycroft
648 1.5 chopps s = splbio();
649 1.5 chopps if (fdc_indma)
650 1.5 chopps fddmadone(fdc_indma, 0);
651 1.5 chopps splx(s);
652 1.1 chopps }
653 1.1 chopps
654 1.1 chopps void
655 1.30 mhitch fdidxintr()
656 1.30 mhitch {
657 1.30 mhitch if (fdc_indma && fdc_dmalen) {
658 1.30 mhitch /*
659 1.30 mhitch * turn off intr and start actual dma
660 1.30 mhitch */
661 1.30 mhitch ciab.icr = CIA_ICR_FLG;
662 1.30 mhitch FDDMASTART(fdc_dmalen, fdc_dmawrite);
663 1.30 mhitch fdc_dmalen = 0;
664 1.30 mhitch }
665 1.30 mhitch }
666 1.30 mhitch
667 1.30 mhitch void
668 1.5 chopps fdstrategy(bp)
669 1.5 chopps struct buf *bp;
670 1.1 chopps {
671 1.5 chopps struct disklabel *lp;
672 1.5 chopps struct fd_softc *sc;
673 1.5 chopps int unit, part, s;
674 1.1 chopps
675 1.5 chopps unit = FDUNIT(bp->b_dev);
676 1.5 chopps part = FDPART(bp->b_dev);
677 1.26 thorpej sc = getsoftc(fd_cd, unit);
678 1.1 chopps
679 1.5 chopps #ifdef FDDEBUG
680 1.35 christos printf("fdstrategy: 0x%x\n", bp);
681 1.5 chopps #endif
682 1.5 chopps /*
683 1.5 chopps * check for valid partition and bounds
684 1.5 chopps */
685 1.22 thorpej lp = sc->dkdev.dk_label;
686 1.5 chopps if ((sc->flags & FDF_HAVELABEL) == 0) {
687 1.5 chopps bp->b_error = EIO;
688 1.5 chopps goto bad;
689 1.21 mycroft }
690 1.5 chopps if (bounds_check_with_label(bp, lp, sc->wlabel) <= 0)
691 1.5 chopps goto done;
692 1.1 chopps
693 1.5 chopps /*
694 1.5 chopps * trans count of zero or bounds check indicates io is done
695 1.5 chopps * we are done.
696 1.5 chopps */
697 1.5 chopps if (bp->b_bcount == 0)
698 1.5 chopps goto done;
699 1.4 chopps
700 1.40.14.1 bouyer bp->b_rawblkno = bp->b_blkno;
701 1.40.14.1 bouyer
702 1.5 chopps /*
703 1.5 chopps * queue the buf and kick the low level code
704 1.5 chopps */
705 1.5 chopps s = splbio();
706 1.40.14.1 bouyer disksort_cylinder(&sc->bufq, bp);
707 1.5 chopps fdstart(sc);
708 1.5 chopps splx(s);
709 1.5 chopps return;
710 1.5 chopps bad:
711 1.5 chopps bp->b_flags |= B_ERROR;
712 1.5 chopps done:
713 1.5 chopps bp->b_resid = bp->b_bcount;
714 1.5 chopps biodone(bp);
715 1.1 chopps }
716 1.1 chopps
717 1.1 chopps /*
718 1.5 chopps * make sure disk is loaded and label is up-to-date.
719 1.1 chopps */
720 1.5 chopps int
721 1.5 chopps fdloaddisk(sc)
722 1.5 chopps struct fd_softc *sc;
723 1.1 chopps {
724 1.5 chopps /*
725 1.5 chopps * if diskchange is low step drive to 0 then up one then to zero.
726 1.5 chopps */
727 1.30 mhitch fdselunit(sc); /* make sure the unit is selected */
728 1.5 chopps if (FDTESTC(FDB_CHANGED)) {
729 1.30 mhitch fdsetpos(sc, 0, 0);
730 1.5 chopps sc->cachetrk = -1; /* invalidate the cache */
731 1.5 chopps sc->flags &= ~FDF_HAVELABEL;
732 1.5 chopps fdsetpos(sc, FDNHEADS, 0);
733 1.5 chopps fdsetpos(sc, 0, 0);
734 1.5 chopps if (FDTESTC(FDB_CHANGED)) {
735 1.5 chopps fdmotoroff(sc);
736 1.32 mhitch FDDESELECT(sc->unitmask);
737 1.5 chopps return(ENXIO);
738 1.1 chopps }
739 1.1 chopps }
740 1.32 mhitch FDDESELECT(sc->unitmask);
741 1.5 chopps fdmotoroff(sc);
742 1.5 chopps sc->type = fdcgetfdtype(sc->hwunit);
743 1.5 chopps if (sc->type == NULL)
744 1.5 chopps return(ENXIO);
745 1.5 chopps if (sc->openpart == FDMSDOSPART)
746 1.5 chopps sc->nsectors = sc->type->msdos_nsectors;
747 1.5 chopps else
748 1.5 chopps sc->nsectors = sc->type->amiga_nsectors;
749 1.5 chopps return(0);
750 1.1 chopps }
751 1.1 chopps
752 1.38 thorpej void
753 1.38 thorpej fdgetdefaultlabel(sc, lp, part)
754 1.38 thorpej struct fd_softc *sc;
755 1.39 mhitch struct disklabel *lp;
756 1.38 thorpej int part; /* XXX ick */
757 1.38 thorpej {
758 1.38 thorpej
759 1.38 thorpej bzero(lp, sizeof(struct disklabel));
760 1.38 thorpej lp->d_secsize = FDSECSIZE;
761 1.38 thorpej lp->d_ntracks = FDNHEADS;
762 1.38 thorpej lp->d_ncylinders = sc->type->ncylinders;
763 1.38 thorpej lp->d_nsectors = sc->nsectors;
764 1.38 thorpej lp->d_secpercyl = lp->d_ntracks * lp->d_nsectors;
765 1.38 thorpej lp->d_type = DTYPE_FLOPPY;
766 1.38 thorpej lp->d_secperunit = lp->d_secpercyl * lp->d_ncylinders;
767 1.38 thorpej lp->d_rpm = 300; /* good guess I suppose. */
768 1.38 thorpej lp->d_interleave = 1; /* should change when adding msdos */
769 1.38 thorpej sc->stepdelay = lp->d_trkseek = FDSTEPDELAY;
770 1.38 thorpej lp->d_bbsize = 0;
771 1.38 thorpej lp->d_sbsize = 0;
772 1.38 thorpej lp->d_partitions[part].p_size = lp->d_secperunit;
773 1.38 thorpej lp->d_partitions[part].p_fstype = FS_UNUSED;
774 1.38 thorpej lp->d_partitions[part].p_fsize = 1024;
775 1.38 thorpej lp->d_partitions[part].p_frag = 8;
776 1.38 thorpej lp->d_partitions[part].p_cpg = 2; /* adosfs: reserved blocks */
777 1.38 thorpej lp->d_npartitions = part + 1;
778 1.38 thorpej lp->d_magic = lp->d_magic2 = DISKMAGIC;
779 1.38 thorpej lp->d_checksum = dkcksum(lp);
780 1.38 thorpej }
781 1.38 thorpej
782 1.1 chopps /*
783 1.5 chopps * read disk label, if present otherwise create one
784 1.5 chopps * return a new label if raw part and none found, otherwise err.
785 1.1 chopps */
786 1.1 chopps int
787 1.5 chopps fdgetdisklabel(sc, dev)
788 1.5 chopps struct fd_softc *sc;
789 1.5 chopps dev_t dev;
790 1.1 chopps {
791 1.5 chopps struct disklabel *lp, *dlp;
792 1.5 chopps struct cpu_disklabel *clp;
793 1.5 chopps struct buf *bp;
794 1.5 chopps int error, part;
795 1.1 chopps
796 1.32 mhitch if (sc->flags & FDF_HAVELABEL &&
797 1.32 mhitch sc->dkdev.dk_label->d_npartitions == (FDPART(dev) + 1))
798 1.5 chopps return(0);
799 1.5 chopps #ifdef FDDEBUG
800 1.35 christos printf("fdgetdisklabel()\n");
801 1.5 chopps #endif
802 1.5 chopps part = FDPART(dev);
803 1.22 thorpej lp = sc->dkdev.dk_label;
804 1.22 thorpej clp = sc->dkdev.dk_cpulabel;
805 1.5 chopps bzero(lp, sizeof(struct disklabel));
806 1.5 chopps bzero(clp, sizeof(struct cpu_disklabel));
807 1.21 mycroft
808 1.5 chopps lp->d_secsize = FDSECSIZE;
809 1.5 chopps lp->d_ntracks = FDNHEADS;
810 1.5 chopps lp->d_ncylinders = sc->type->ncylinders;
811 1.5 chopps lp->d_nsectors = sc->nsectors;
812 1.5 chopps lp->d_secpercyl = lp->d_ntracks * lp->d_nsectors;
813 1.5 chopps lp->d_secperunit = lp->d_secpercyl * lp->d_ncylinders;
814 1.5 chopps lp->d_npartitions = part + 1;
815 1.5 chopps lp->d_partitions[part].p_size = lp->d_secperunit;
816 1.5 chopps lp->d_partitions[part].p_fstype = FS_UNUSED;
817 1.8 chopps lp->d_partitions[part].p_fsize = 1024;
818 1.5 chopps lp->d_partitions[part].p_frag = 8;
819 1.28 mhitch lp->d_partitions[part].p_cpg = 2; /* for adosfs: reserved blks */
820 1.21 mycroft
821 1.5 chopps sc->flags |= FDF_HAVELABEL;
822 1.21 mycroft
823 1.5 chopps bp = (void *)geteblk((int)lp->d_secsize);
824 1.21 mycroft bp->b_dev = dev;
825 1.5 chopps bp->b_blkno = 0;
826 1.40.14.1 bouyer bp->b_cylinder = 0;
827 1.5 chopps bp->b_bcount = FDSECSIZE;
828 1.40.14.2 bouyer bp->b_flags |= B_READ;
829 1.5 chopps fdstrategy(bp);
830 1.29 veego if ((error = biowait(bp)) != 0)
831 1.5 chopps goto nolabel;
832 1.5 chopps dlp = (struct disklabel *)(bp->b_data + LABELOFFSET);
833 1.5 chopps if (dlp->d_magic != DISKMAGIC || dlp->d_magic2 != DISKMAGIC ||
834 1.5 chopps dkcksum(dlp)) {
835 1.5 chopps error = EINVAL;
836 1.5 chopps goto nolabel;
837 1.5 chopps }
838 1.5 chopps bcopy(dlp, lp, sizeof(struct disklabel));
839 1.5 chopps if (lp->d_trkseek > FDSTEPDELAY)
840 1.5 chopps sc->stepdelay = lp->d_trkseek;
841 1.5 chopps brelse(bp);
842 1.5 chopps return(0);
843 1.5 chopps nolabel:
844 1.38 thorpej fdgetdefaultlabel(sc, lp, part);
845 1.5 chopps brelse(bp);
846 1.1 chopps return(0);
847 1.1 chopps }
848 1.1 chopps
849 1.1 chopps /*
850 1.5 chopps * set the incore copy of this units disklabel
851 1.1 chopps */
852 1.5 chopps int
853 1.5 chopps fdsetdisklabel(sc, lp)
854 1.5 chopps struct fd_softc *sc;
855 1.5 chopps struct disklabel *lp;
856 1.1 chopps {
857 1.5 chopps struct disklabel *clp;
858 1.5 chopps struct partition *pp;
859 1.1 chopps
860 1.5 chopps /*
861 1.21 mycroft * must have at least opened raw unit to fetch the
862 1.5 chopps * raw_part stuff.
863 1.5 chopps */
864 1.5 chopps if ((sc->flags & FDF_HAVELABEL) == 0)
865 1.5 chopps return(EINVAL);
866 1.22 thorpej clp = sc->dkdev.dk_label;
867 1.5 chopps /*
868 1.5 chopps * make sure things check out and we only have one valid
869 1.5 chopps * partition
870 1.5 chopps */
871 1.5 chopps #ifdef FDDEBUG
872 1.35 christos printf("fdsetdisklabel\n");
873 1.5 chopps #endif
874 1.5 chopps if (lp->d_secsize != FDSECSIZE ||
875 1.5 chopps lp->d_nsectors != clp->d_nsectors ||
876 1.5 chopps lp->d_ntracks != FDNHEADS ||
877 1.5 chopps lp->d_ncylinders != clp->d_ncylinders ||
878 1.5 chopps lp->d_secpercyl != clp->d_secpercyl ||
879 1.5 chopps lp->d_secperunit != clp->d_secperunit ||
880 1.5 chopps lp->d_magic != DISKMAGIC ||
881 1.5 chopps lp->d_magic2 != DISKMAGIC ||
882 1.6 chopps lp->d_npartitions == 0 ||
883 1.6 chopps lp->d_npartitions > FDMAXPARTS ||
884 1.5 chopps (lp->d_partitions[0].p_offset && lp->d_partitions[1].p_offset) ||
885 1.5 chopps dkcksum(lp))
886 1.5 chopps return(EINVAL);
887 1.21 mycroft /*
888 1.21 mycroft * if any partitions are present make sure they
889 1.5 chopps * represent the currently open type
890 1.5 chopps */
891 1.5 chopps if ((pp = &lp->d_partitions[0])->p_size) {
892 1.5 chopps if ((pp = &lp->d_partitions[1])->p_size == 0)
893 1.5 chopps goto done;
894 1.5 chopps else if (sc->openpart != 1)
895 1.5 chopps return(EINVAL);
896 1.5 chopps } else if (sc->openpart != 0)
897 1.5 chopps return(EINVAL);
898 1.21 mycroft /*
899 1.5 chopps * make sure selected partition is within bounds
900 1.21 mycroft * XXX on the second check, its to handle a bug in
901 1.8 chopps * XXX the cluster routines as they require mutliples
902 1.40.14.1 bouyer * XXX of NBPG currently
903 1.5 chopps */
904 1.8 chopps if ((pp->p_offset + pp->p_size >= lp->d_secperunit) ||
905 1.40.14.1 bouyer (pp->p_frag * pp->p_fsize % NBPG))
906 1.5 chopps return(EINVAL);
907 1.5 chopps done:
908 1.5 chopps bcopy(lp, clp, sizeof(struct disklabel));
909 1.5 chopps return(0);
910 1.5 chopps }
911 1.1 chopps
912 1.5 chopps /*
913 1.5 chopps * write out the incore copy of this units disklabel
914 1.5 chopps */
915 1.5 chopps int
916 1.5 chopps fdputdisklabel(sc, dev)
917 1.5 chopps struct fd_softc *sc;
918 1.5 chopps dev_t dev;
919 1.5 chopps {
920 1.5 chopps struct disklabel *lp, *dlp;
921 1.5 chopps struct buf *bp;
922 1.5 chopps int error;
923 1.21 mycroft
924 1.5 chopps if ((sc->flags & FDF_HAVELABEL) == 0)
925 1.5 chopps return(EBADF);
926 1.5 chopps #ifdef FDDEBUG
927 1.35 christos printf("fdputdisklabel\n");
928 1.5 chopps #endif
929 1.5 chopps /*
930 1.5 chopps * get buf and read in sector 0
931 1.5 chopps */
932 1.22 thorpej lp = sc->dkdev.dk_label;
933 1.40.14.2 bouyer bp = geteblk((int)lp->d_secsize);
934 1.5 chopps bp->b_dev = FDMAKEDEV(major(dev), FDUNIT(dev), RAW_PART);
935 1.5 chopps bp->b_blkno = 0;
936 1.40.14.1 bouyer bp->b_cylinder = 0;
937 1.5 chopps bp->b_bcount = FDSECSIZE;
938 1.40.14.2 bouyer bp->b_flags |= B_READ;
939 1.5 chopps fdstrategy(bp);
940 1.29 veego if ((error = biowait(bp)) != 0)
941 1.5 chopps goto done;
942 1.5 chopps /*
943 1.5 chopps * copy disklabel to buf and write it out syncronous
944 1.5 chopps */
945 1.5 chopps dlp = (struct disklabel *)(bp->b_data + LABELOFFSET);
946 1.5 chopps bcopy(lp, dlp, sizeof(struct disklabel));
947 1.5 chopps bp->b_blkno = 0;
948 1.40.14.1 bouyer bp->b_cylinder = 0;
949 1.40.14.3 bouyer bp->b_flags &= ~(B_READ|B_DONE);
950 1.40.14.2 bouyer bp->b_flags |= B_WRITE;
951 1.5 chopps fdstrategy(bp);
952 1.5 chopps error = biowait(bp);
953 1.5 chopps done:
954 1.5 chopps brelse(bp);
955 1.5 chopps return(error);
956 1.1 chopps }
957 1.1 chopps
958 1.5 chopps /*
959 1.5 chopps * figure out drive type or NULL if none.
960 1.5 chopps */
961 1.5 chopps struct fdtype *
962 1.5 chopps fdcgetfdtype(unit)
963 1.1 chopps int unit;
964 1.1 chopps {
965 1.5 chopps struct fdtype *ftp;
966 1.5 chopps u_long id, idb;
967 1.5 chopps int cnt, umask;
968 1.1 chopps
969 1.1 chopps id = 0;
970 1.5 chopps umask = 1 << (3 + unit);
971 1.5 chopps
972 1.5 chopps FDDESELECT(FDCUNITMASK);
973 1.1 chopps
974 1.5 chopps FDSETMOTOR(1);
975 1.5 chopps delay(1);
976 1.5 chopps FDSELECT(umask);
977 1.5 chopps delay(1);
978 1.5 chopps FDDESELECT(umask);
979 1.5 chopps
980 1.5 chopps FDSETMOTOR(0);
981 1.5 chopps delay(1);
982 1.5 chopps FDSELECT(umask);
983 1.5 chopps delay(1);
984 1.5 chopps FDDESELECT(umask);
985 1.5 chopps
986 1.5 chopps for (idb = 0x80000000; idb; idb >>= 1) {
987 1.5 chopps FDSELECT(umask);
988 1.5 chopps delay(1);
989 1.5 chopps if (FDTESTC(FDB_READY) == 0)
990 1.5 chopps id |= idb;
991 1.5 chopps FDDESELECT(umask);
992 1.5 chopps delay(1);
993 1.5 chopps }
994 1.5 chopps #ifdef FDDEBUG
995 1.35 christos printf("fdcgettype unit %d id 0x%lx\n", unit, id);
996 1.1 chopps #endif
997 1.1 chopps
998 1.5 chopps for (cnt = 0, ftp = fdtype; cnt < nfdtype; ftp++, cnt++)
999 1.5 chopps if (ftp->driveid == id)
1000 1.5 chopps return(ftp);
1001 1.5 chopps /*
1002 1.5 chopps * 3.5dd's at unit 0 do not always return id.
1003 1.5 chopps */
1004 1.5 chopps if (unit == 0)
1005 1.5 chopps return(fdtype);
1006 1.5 chopps return(NULL);
1007 1.1 chopps }
1008 1.1 chopps
1009 1.5 chopps /*
1010 1.5 chopps * turn motor off if possible otherwise mark as needed and will be done
1011 1.5 chopps * later.
1012 1.5 chopps */
1013 1.1 chopps void
1014 1.5 chopps fdmotoroff(arg)
1015 1.5 chopps void *arg;
1016 1.1 chopps {
1017 1.5 chopps struct fd_softc *sc;
1018 1.29 veego int s;
1019 1.1 chopps
1020 1.5 chopps sc = arg;
1021 1.5 chopps s = splbio();
1022 1.1 chopps
1023 1.5 chopps #ifdef FDDEBUG
1024 1.35 christos printf("fdmotoroff: unit %d\n", sc->hwunit);
1025 1.5 chopps #endif
1026 1.21 mycroft if ((sc->flags & FDF_MOTORON) == 0)
1027 1.5 chopps goto done;
1028 1.5 chopps /*
1029 1.5 chopps * if we have a timeout on a dma operation let fddmadone()
1030 1.5 chopps * deal with it.
1031 1.5 chopps */
1032 1.5 chopps if (fdc_indma == sc) {
1033 1.5 chopps fddmadone(sc, 1);
1034 1.5 chopps goto done;
1035 1.5 chopps }
1036 1.5 chopps #ifdef FDDEBUG
1037 1.35 christos printf(" motor was on, turning off\n");
1038 1.5 chopps #endif
1039 1.1 chopps
1040 1.5 chopps /*
1041 1.5 chopps * flush cache if needed
1042 1.5 chopps */
1043 1.5 chopps if (sc->flags & FDF_DIRTY) {
1044 1.5 chopps sc->flags |= FDF_JUSTFLUSH | FDF_MOTOROFF;
1045 1.5 chopps #ifdef FDDEBUG
1046 1.35 christos printf(" flushing dirty buffer first\n");
1047 1.5 chopps #endif
1048 1.5 chopps /*
1049 1.5 chopps * if dma'ing done for now, fddone() will call us again
1050 1.5 chopps */
1051 1.5 chopps if (fdc_indma)
1052 1.5 chopps goto done;
1053 1.5 chopps fddmastart(sc, sc->cachetrk);
1054 1.5 chopps goto done;
1055 1.5 chopps }
1056 1.4 chopps
1057 1.5 chopps /*
1058 1.5 chopps * if controller is busy just schedule us to be called back
1059 1.5 chopps */
1060 1.5 chopps if (fdc_indma) {
1061 1.5 chopps /*
1062 1.5 chopps * someone else has the controller now
1063 1.5 chopps * just set flag and let fddone() call us again.
1064 1.5 chopps */
1065 1.5 chopps sc->flags |= FDF_MOTOROFF;
1066 1.5 chopps goto done;
1067 1.1 chopps }
1068 1.1 chopps
1069 1.5 chopps #ifdef FDDEBUG
1070 1.35 christos printf(" hw turning unit off\n");
1071 1.5 chopps #endif
1072 1.5 chopps
1073 1.5 chopps sc->flags &= ~(FDF_MOTORON | FDF_MOTOROFF);
1074 1.5 chopps FDDESELECT(FDCUNITMASK);
1075 1.5 chopps FDSETMOTOR(0);
1076 1.5 chopps delay(1);
1077 1.5 chopps FDSELECT(sc->unitmask);
1078 1.5 chopps delay(4);
1079 1.5 chopps FDDESELECT(sc->unitmask);
1080 1.5 chopps delay(1);
1081 1.5 chopps if (sc->flags & FDF_WMOTOROFF)
1082 1.5 chopps wakeup(fdmotoroff);
1083 1.5 chopps done:
1084 1.5 chopps splx(s);
1085 1.1 chopps }
1086 1.1 chopps
1087 1.5 chopps /*
1088 1.5 chopps * select drive seek to track exit with motor on.
1089 1.5 chopps * fdsetpos(x, 0, 0) does calibrates the drive.
1090 1.5 chopps */
1091 1.1 chopps void
1092 1.5 chopps fdsetpos(sc, trk, towrite)
1093 1.5 chopps struct fd_softc *sc;
1094 1.5 chopps int trk, towrite;
1095 1.5 chopps {
1096 1.6 chopps int nstep, sdir, ondly, ncyl, nside;
1097 1.5 chopps
1098 1.5 chopps FDDESELECT(FDCUNITMASK);
1099 1.5 chopps FDSETMOTOR(1);
1100 1.5 chopps delay(1);
1101 1.5 chopps FDSELECT(sc->unitmask);
1102 1.5 chopps delay(1);
1103 1.6 chopps if ((sc->flags & FDF_MOTORON) == 0) {
1104 1.6 chopps ondly = 0;
1105 1.6 chopps while (FDTESTC(FDB_READY) == 0) {
1106 1.6 chopps delay(1000);
1107 1.6 chopps if (++ondly >= 1000)
1108 1.6 chopps break;
1109 1.6 chopps }
1110 1.6 chopps }
1111 1.5 chopps sc->flags |= FDF_MOTORON;
1112 1.1 chopps
1113 1.6 chopps ncyl = trk / FDNHEADS;
1114 1.6 chopps nside = trk % FDNHEADS;
1115 1.6 chopps
1116 1.6 chopps if (sc->curcyl == ncyl && fdc_side == nside)
1117 1.5 chopps return;
1118 1.6 chopps
1119 1.5 chopps if (towrite)
1120 1.5 chopps sc->flags |= FDF_WRITEWAIT;
1121 1.21 mycroft
1122 1.5 chopps #ifdef FDDEBUG
1123 1.35 christos printf("fdsetpos: cyl %d head %d towrite %d\n", trk / FDNHEADS,
1124 1.5 chopps trk % FDNHEADS, towrite);
1125 1.5 chopps #endif
1126 1.6 chopps nstep = ncyl - sc->curcyl;
1127 1.5 chopps if (nstep) {
1128 1.5 chopps /*
1129 1.5 chopps * figure direction
1130 1.5 chopps */
1131 1.7 chopps if (nstep > 0 && ncyl != 0) {
1132 1.5 chopps sdir = FDSTEPIN;
1133 1.5 chopps FDSETDIR(1);
1134 1.5 chopps } else {
1135 1.5 chopps nstep = -nstep;
1136 1.5 chopps sdir = FDSTEPOUT;
1137 1.5 chopps FDSETDIR(0);
1138 1.5 chopps }
1139 1.6 chopps if (ncyl == 0) {
1140 1.5 chopps /*
1141 1.21 mycroft * either just want cylinder 0 or doing
1142 1.5 chopps * a calibrate.
1143 1.5 chopps */
1144 1.11 chopps nstep = 256;
1145 1.11 chopps while (FDTESTC(FDB_CYLZERO) == 0 && nstep--) {
1146 1.5 chopps FDSTEP;
1147 1.5 chopps delay(sc->stepdelay);
1148 1.5 chopps }
1149 1.11 chopps if (nstep < 0)
1150 1.11 chopps sc->flags |= FDF_NOTRACK0;
1151 1.5 chopps } else {
1152 1.5 chopps /*
1153 1.5 chopps * step the needed amount amount.
1154 1.5 chopps */
1155 1.5 chopps while (nstep--) {
1156 1.5 chopps FDSTEP;
1157 1.5 chopps delay(sc->stepdelay);
1158 1.5 chopps }
1159 1.5 chopps }
1160 1.5 chopps /*
1161 1.21 mycroft * if switched directions
1162 1.5 chopps * allow drive to settle.
1163 1.5 chopps */
1164 1.5 chopps if (sc->pstepdir != sdir)
1165 1.5 chopps delay(FDSETTLEDELAY);
1166 1.5 chopps sc->pstepdir = sdir;
1167 1.6 chopps sc->curcyl = ncyl;
1168 1.5 chopps }
1169 1.6 chopps if (nside == fdc_side)
1170 1.5 chopps return;
1171 1.5 chopps /*
1172 1.5 chopps * select side
1173 1.5 chopps */
1174 1.6 chopps fdc_side = nside;
1175 1.6 chopps FDSETHEAD(nside);
1176 1.5 chopps delay(FDPRESIDEDELAY);
1177 1.5 chopps }
1178 1.1 chopps
1179 1.5 chopps void
1180 1.5 chopps fdselunit(sc)
1181 1.5 chopps struct fd_softc *sc;
1182 1.5 chopps {
1183 1.5 chopps FDDESELECT(FDCUNITMASK); /* deselect all */
1184 1.5 chopps FDSETMOTOR(sc->flags & FDF_MOTORON); /* set motor to unit's state */
1185 1.5 chopps delay(1);
1186 1.5 chopps FDSELECT(sc->unitmask); /* select unit */
1187 1.5 chopps delay(1);
1188 1.1 chopps }
1189 1.1 chopps
1190 1.5 chopps /*
1191 1.5 chopps * process next buf on device queue.
1192 1.5 chopps * normall sequence of events:
1193 1.21 mycroft * fdstart() -> fddmastart();
1194 1.32 mhitch * fdidxintr();
1195 1.5 chopps * fdintr() -> fddmadone() -> fddone();
1196 1.5 chopps * if the track is in the cache then fdstart() will short-circuit
1197 1.5 chopps * to fddone() else if the track cache is dirty it will flush. If
1198 1.5 chopps * the buf is not an entire track it will cache the requested track.
1199 1.5 chopps */
1200 1.1 chopps void
1201 1.5 chopps fdstart(sc)
1202 1.5 chopps struct fd_softc *sc;
1203 1.1 chopps {
1204 1.5 chopps int trk, error, write;
1205 1.5 chopps struct buf *bp, *dp;
1206 1.32 mhitch int changed;
1207 1.1 chopps
1208 1.5 chopps #ifdef FDDEBUG
1209 1.35 christos printf("fdstart: unit %d\n", sc->hwunit);
1210 1.5 chopps #endif
1211 1.1 chopps
1212 1.5 chopps /*
1213 1.5 chopps * if dma'ing just return. we must have been called from fdstartegy.
1214 1.5 chopps */
1215 1.5 chopps if (fdc_indma)
1216 1.5 chopps return;
1217 1.1 chopps
1218 1.5 chopps /*
1219 1.5 chopps * get next buf if there.
1220 1.5 chopps */
1221 1.40.14.1 bouyer dp = &sc->curbuf;
1222 1.40.14.1 bouyer if ((bp = BUFQ_FIRST(&sc->bufq)) == NULL) {
1223 1.5 chopps #ifdef FDDEBUG
1224 1.35 christos printf(" nothing to do\n");
1225 1.5 chopps #endif
1226 1.5 chopps return;
1227 1.5 chopps }
1228 1.21 mycroft
1229 1.5 chopps /*
1230 1.24 thorpej * Mark us as busy now, in case fddone() gets called in one
1231 1.24 thorpej * of the cases below.
1232 1.24 thorpej */
1233 1.24 thorpej disk_busy(&sc->dkdev);
1234 1.24 thorpej
1235 1.24 thorpej /*
1236 1.5 chopps * make sure same disk is loaded
1237 1.5 chopps */
1238 1.5 chopps fdselunit(sc);
1239 1.32 mhitch changed = FDTESTC(FDB_CHANGED);
1240 1.32 mhitch FDDESELECT(sc->unitmask);
1241 1.32 mhitch if (changed) {
1242 1.5 chopps /*
1243 1.21 mycroft * disk missing, invalidate all future io on
1244 1.21 mycroft * this unit until re-open()'ed also invalidate
1245 1.5 chopps * all current io
1246 1.5 chopps */
1247 1.35 christos printf("fdstart: disk changed\n");
1248 1.5 chopps #ifdef FDDEBUG
1249 1.35 christos printf(" disk was removed invalidating all io\n");
1250 1.5 chopps #endif
1251 1.5 chopps sc->flags &= ~FDF_HAVELABEL;
1252 1.5 chopps for (;;) {
1253 1.5 chopps bp->b_flags |= B_ERROR;
1254 1.5 chopps bp->b_error = EIO;
1255 1.40.14.1 bouyer if (BUFQ_NEXT(bp) == NULL)
1256 1.5 chopps break;
1257 1.5 chopps biodone(bp);
1258 1.40.14.1 bouyer bp = BUFQ_NEXT(bp);
1259 1.5 chopps }
1260 1.5 chopps /*
1261 1.5 chopps * do fddone() on last buf to allow other units to start.
1262 1.5 chopps */
1263 1.40.14.1 bouyer BUFQ_INSERT_HEAD(&sc->bufq, bp);
1264 1.5 chopps fddone(sc);
1265 1.5 chopps return;
1266 1.5 chopps }
1267 1.1 chopps
1268 1.21 mycroft /*
1269 1.5 chopps * we have a valid buf, setup our local version
1270 1.5 chopps * we use this count to allow reading over multiple tracks.
1271 1.5 chopps * into a single buffer
1272 1.5 chopps */
1273 1.5 chopps dp->b_bcount = bp->b_bcount;
1274 1.5 chopps dp->b_blkno = bp->b_blkno;
1275 1.5 chopps dp->b_data = bp->b_data;
1276 1.5 chopps dp->b_flags = bp->b_flags;
1277 1.5 chopps dp->b_resid = 0;
1278 1.21 mycroft
1279 1.5 chopps if (bp->b_flags & B_READ)
1280 1.5 chopps write = 0;
1281 1.5 chopps else if (FDTESTC(FDB_PROTECT) == 0)
1282 1.5 chopps write = 1;
1283 1.5 chopps else {
1284 1.5 chopps error = EPERM;
1285 1.5 chopps goto bad;
1286 1.5 chopps }
1287 1.1 chopps
1288 1.5 chopps /*
1289 1.5 chopps * figure trk given blkno
1290 1.5 chopps */
1291 1.5 chopps trk = bp->b_blkno / sc->nsectors;
1292 1.22 thorpej
1293 1.5 chopps /*
1294 1.5 chopps * check to see if same as currently cached track
1295 1.5 chopps * if so we need to do no dma read.
1296 1.5 chopps */
1297 1.5 chopps if (trk == sc->cachetrk) {
1298 1.5 chopps fddone(sc);
1299 1.1 chopps return;
1300 1.5 chopps }
1301 1.21 mycroft
1302 1.5 chopps /*
1303 1.21 mycroft * if we will be overwriting the entire cache, don't bother to
1304 1.5 chopps * fetch it.
1305 1.5 chopps */
1306 1.9 chopps if (bp->b_bcount == (sc->nsectors * FDSECSIZE) && write &&
1307 1.9 chopps bp->b_blkno % sc->nsectors == 0) {
1308 1.5 chopps if (sc->flags & FDF_DIRTY)
1309 1.5 chopps sc->flags |= FDF_JUSTFLUSH;
1310 1.5 chopps else {
1311 1.5 chopps sc->cachetrk = trk;
1312 1.5 chopps fddone(sc);
1313 1.5 chopps return;
1314 1.5 chopps }
1315 1.5 chopps }
1316 1.21 mycroft
1317 1.5 chopps /*
1318 1.5 chopps * start dma read of `trk'
1319 1.5 chopps */
1320 1.5 chopps fddmastart(sc, trk);
1321 1.5 chopps return;
1322 1.5 chopps bad:
1323 1.5 chopps bp->b_flags |= B_ERROR;
1324 1.5 chopps bp->b_error = error;
1325 1.5 chopps fddone(sc);
1326 1.1 chopps }
1327 1.1 chopps
1328 1.1 chopps /*
1329 1.21 mycroft * continue a started operation on next track. always begin at
1330 1.9 chopps * sector 0 on the next track.
1331 1.1 chopps */
1332 1.5 chopps void
1333 1.5 chopps fdcont(sc)
1334 1.5 chopps struct fd_softc *sc;
1335 1.1 chopps {
1336 1.5 chopps struct buf *dp, *bp;
1337 1.5 chopps int trk, write;
1338 1.21 mycroft
1339 1.40.14.1 bouyer dp = &sc->curbuf;
1340 1.40.14.1 bouyer bp = BUFQ_FIRST(&sc->bufq);
1341 1.5 chopps dp->b_data += (dp->b_bcount - bp->b_resid);
1342 1.5 chopps dp->b_blkno += (dp->b_bcount - bp->b_resid) / FDSECSIZE;
1343 1.5 chopps dp->b_bcount = bp->b_resid;
1344 1.1 chopps
1345 1.5 chopps /*
1346 1.5 chopps * figure trk given blkno
1347 1.5 chopps */
1348 1.5 chopps trk = dp->b_blkno / sc->nsectors;
1349 1.5 chopps #ifdef DEBUG
1350 1.9 chopps if (trk != sc->cachetrk + 1 || dp->b_blkno % sc->nsectors != 0)
1351 1.5 chopps panic("fdcont: confused");
1352 1.5 chopps #endif
1353 1.5 chopps if (dp->b_flags & B_READ)
1354 1.5 chopps write = 0;
1355 1.5 chopps else
1356 1.5 chopps write = 1;
1357 1.5 chopps /*
1358 1.21 mycroft * if we will be overwriting the entire cache, don't bother to
1359 1.5 chopps * fetch it.
1360 1.5 chopps */
1361 1.5 chopps if (dp->b_bcount == (sc->nsectors * FDSECSIZE) && write) {
1362 1.5 chopps if (sc->flags & FDF_DIRTY)
1363 1.5 chopps sc->flags |= FDF_JUSTFLUSH;
1364 1.5 chopps else {
1365 1.5 chopps sc->cachetrk = trk;
1366 1.5 chopps fddone(sc);
1367 1.5 chopps return;
1368 1.1 chopps }
1369 1.1 chopps }
1370 1.5 chopps /*
1371 1.5 chopps * start dma read of `trk'
1372 1.5 chopps */
1373 1.5 chopps fddmastart(sc, trk);
1374 1.5 chopps return;
1375 1.1 chopps }
1376 1.1 chopps
1377 1.5 chopps void
1378 1.5 chopps fddmastart(sc, trk)
1379 1.5 chopps struct fd_softc *sc;
1380 1.5 chopps int trk;
1381 1.1 chopps {
1382 1.5 chopps int adkmask, ndmaw, write, dmatrk;
1383 1.1 chopps
1384 1.5 chopps #ifdef FDDEBUG
1385 1.35 christos printf("fddmastart: unit %d cyl %d head %d", sc->hwunit,
1386 1.5 chopps trk / FDNHEADS, trk % FDNHEADS);
1387 1.5 chopps #endif
1388 1.5 chopps /*
1389 1.5 chopps * flush the cached track if dirty else read requested track.
1390 1.5 chopps */
1391 1.5 chopps if (sc->flags & FDF_DIRTY) {
1392 1.5 chopps fdcachetoraw(sc);
1393 1.5 chopps ndmaw = sc->type->nwritew;
1394 1.5 chopps dmatrk = sc->cachetrk;
1395 1.5 chopps write = 1;
1396 1.5 chopps } else {
1397 1.5 chopps ndmaw = sc->type->nreadw;
1398 1.5 chopps dmatrk = trk;
1399 1.5 chopps write = 0;
1400 1.5 chopps }
1401 1.1 chopps
1402 1.5 chopps #ifdef FDDEBUG
1403 1.35 christos printf(" %s", write ? " flushing cache\n" : " loading cache\n");
1404 1.4 chopps #endif
1405 1.5 chopps sc->cachetrk = trk;
1406 1.5 chopps fdc_indma = sc;
1407 1.5 chopps fdsetpos(sc, dmatrk, write);
1408 1.4 chopps
1409 1.5 chopps /*
1410 1.5 chopps * setup dma stuff
1411 1.5 chopps */
1412 1.5 chopps if (write == 0) {
1413 1.5 chopps custom.adkcon = ADKF_MSBSYNC;
1414 1.5 chopps custom.adkcon = ADKF_SETCLR | ADKF_WORDSYNC | ADKF_FAST;
1415 1.5 chopps custom.dsksync = FDMFMSYNC;
1416 1.5 chopps } else {
1417 1.5 chopps custom.adkcon = ADKF_PRECOMP1 | ADKF_PRECOMP0 | ADKF_WORDSYNC |
1418 1.5 chopps ADKF_MSBSYNC;
1419 1.5 chopps adkmask = ADKF_SETCLR | ADKF_FAST | ADKF_MFMPREC;
1420 1.5 chopps if (dmatrk >= sc->type->precomp[0])
1421 1.5 chopps adkmask |= ADKF_PRECOMP0;
1422 1.5 chopps if (dmatrk >= sc->type->precomp[1])
1423 1.5 chopps adkmask |= ADKF_PRECOMP1;
1424 1.5 chopps custom.adkcon = adkmask;
1425 1.5 chopps }
1426 1.5 chopps custom.dskpt = (u_char *)kvtop(fdc_dmap);
1427 1.32 mhitch
1428 1.32 mhitch /*
1429 1.32 mhitch * If writing an MSDOS track, activate disk index pulse
1430 1.32 mhitch * interrupt, dma will be started in the intr routine fdidxintr()
1431 1.32 mhitch * Otherwise, start the DMA here.
1432 1.32 mhitch */
1433 1.32 mhitch if (write && sc->openpart == FDMSDOSPART) {
1434 1.32 mhitch fdc_dmalen = ndmaw;
1435 1.32 mhitch fdc_dmawrite = write;
1436 1.32 mhitch ciab.icr = CIA_ICR_IR_SC | CIA_ICR_FLG;
1437 1.32 mhitch } else {
1438 1.32 mhitch FDDMASTART(ndmaw, write);
1439 1.32 mhitch fdc_dmalen = 0;
1440 1.32 mhitch }
1441 1.4 chopps
1442 1.5 chopps #ifdef FDDEBUG
1443 1.35 christos printf(" dma started\n");
1444 1.5 chopps #endif
1445 1.1 chopps }
1446 1.1 chopps
1447 1.5 chopps /*
1448 1.5 chopps * recalibrate the drive
1449 1.5 chopps */
1450 1.5 chopps void
1451 1.5 chopps fdcalibrate(arg)
1452 1.5 chopps void *arg;
1453 1.1 chopps {
1454 1.5 chopps struct fd_softc *sc;
1455 1.5 chopps static int loopcnt;
1456 1.5 chopps
1457 1.5 chopps sc = arg;
1458 1.1 chopps
1459 1.5 chopps if (loopcnt == 0) {
1460 1.5 chopps /*
1461 1.5 chopps * seek cyl 0
1462 1.5 chopps */
1463 1.5 chopps fdc_indma = sc;
1464 1.5 chopps sc->stepdelay += 900;
1465 1.5 chopps if (sc->cachetrk > 1)
1466 1.5 chopps fdsetpos(sc, sc->cachetrk % FDNHEADS, 0);
1467 1.5 chopps sc->stepdelay -= 900;
1468 1.5 chopps }
1469 1.5 chopps if (loopcnt++ & 1)
1470 1.5 chopps fdsetpos(sc, sc->cachetrk, 0);
1471 1.5 chopps else
1472 1.5 chopps fdsetpos(sc, sc->cachetrk + FDNHEADS, 0);
1473 1.5 chopps /*
1474 1.5 chopps * trk++, trk, trk++, trk, trk++, trk, trk++, trk and dma
1475 1.5 chopps */
1476 1.5 chopps if (loopcnt < 8)
1477 1.40.14.1 bouyer callout_reset(&sc->calibrate_ch, hz / 8, fdcalibrate, sc);
1478 1.5 chopps else {
1479 1.5 chopps loopcnt = 0;
1480 1.5 chopps fdc_indma = NULL;
1481 1.40.14.1 bouyer callout_reset(&sc->motor_ch, 3 * hz / 2, fdmotoroff, sc);
1482 1.5 chopps fddmastart(sc, sc->cachetrk);
1483 1.5 chopps }
1484 1.1 chopps }
1485 1.1 chopps
1486 1.5 chopps void
1487 1.5 chopps fddmadone(sc, timeo)
1488 1.5 chopps struct fd_softc *sc;
1489 1.5 chopps int timeo;
1490 1.1 chopps {
1491 1.5 chopps #ifdef FDDEBUG
1492 1.35 christos printf("fddmadone: unit %d, timeo %d\n", sc->hwunit, timeo);
1493 1.5 chopps #endif
1494 1.5 chopps fdc_indma = NULL;
1495 1.40.14.1 bouyer callout_stop(&sc->motor_ch);
1496 1.5 chopps FDDMASTOP;
1497 1.1 chopps
1498 1.5 chopps /*
1499 1.5 chopps * guarantee the drive has been at current head and cyl
1500 1.5 chopps * for at least FDWRITEDELAY after a write.
1501 1.5 chopps */
1502 1.5 chopps if (sc->flags & FDF_WRITEWAIT) {
1503 1.5 chopps delay(FDWRITEDELAY);
1504 1.5 chopps sc->flags &= ~FDF_WRITEWAIT;
1505 1.5 chopps }
1506 1.1 chopps
1507 1.5 chopps if ((sc->flags & FDF_MOTOROFF) == 0) {
1508 1.5 chopps /*
1509 1.5 chopps * motor runs for 1.5 seconds after last dma
1510 1.5 chopps */
1511 1.40.14.1 bouyer callout_reset(&sc->motor_ch, 3 * hz / 2, fdmotoroff, sc);
1512 1.5 chopps }
1513 1.5 chopps if (sc->flags & FDF_DIRTY) {
1514 1.5 chopps /*
1515 1.5 chopps * if buffer dirty, the last dma cleaned it
1516 1.5 chopps */
1517 1.5 chopps sc->flags &= ~FDF_DIRTY;
1518 1.5 chopps if (timeo)
1519 1.35 christos printf("%s: write of track cache timed out.\n",
1520 1.23 thorpej sc->sc_dv.dv_xname);
1521 1.5 chopps if (sc->flags & FDF_JUSTFLUSH) {
1522 1.9 chopps sc->flags &= ~FDF_JUSTFLUSH;
1523 1.5 chopps /*
1524 1.5 chopps * we are done dma'ing
1525 1.5 chopps */
1526 1.5 chopps fddone(sc);
1527 1.5 chopps return;
1528 1.5 chopps }
1529 1.5 chopps /*
1530 1.5 chopps * load the cache
1531 1.5 chopps */
1532 1.5 chopps fddmastart(sc, sc->cachetrk);
1533 1.5 chopps return;
1534 1.5 chopps }
1535 1.5 chopps #ifdef FDDEBUG
1536 1.5 chopps else if (sc->flags & FDF_MOTOROFF)
1537 1.5 chopps panic("fddmadone: FDF_MOTOROFF with no FDF_DIRTY");
1538 1.5 chopps #endif
1539 1.1 chopps
1540 1.5 chopps /*
1541 1.5 chopps * cache loaded decode it into cache buffer
1542 1.5 chopps */
1543 1.5 chopps if (timeo == 0 && fdrawtocache(sc) == 0)
1544 1.5 chopps sc->retried = 0;
1545 1.5 chopps else {
1546 1.5 chopps #ifdef FDDEBUG
1547 1.5 chopps if (timeo)
1548 1.35 christos printf("%s: fddmadone: cache load timed out.\n",
1549 1.22 thorpej sc->sc_dv.dv_xname);
1550 1.5 chopps #endif
1551 1.5 chopps if (sc->retried >= sc->retries) {
1552 1.5 chopps sc->retried = 0;
1553 1.5 chopps sc->cachetrk = -1;
1554 1.5 chopps } else {
1555 1.5 chopps sc->retried++;
1556 1.5 chopps /*
1557 1.5 chopps * this will be restarted at end of calibrate loop.
1558 1.5 chopps */
1559 1.40.14.1 bouyer callout_stop(&sc->motor_ch);
1560 1.5 chopps fdcalibrate(sc);
1561 1.5 chopps return;
1562 1.5 chopps }
1563 1.5 chopps }
1564 1.5 chopps fddone(sc);
1565 1.1 chopps }
1566 1.1 chopps
1567 1.5 chopps void
1568 1.5 chopps fddone(sc)
1569 1.5 chopps struct fd_softc *sc;
1570 1.1 chopps {
1571 1.5 chopps struct buf *dp, *bp;
1572 1.5 chopps char *data;
1573 1.29 veego int sz;
1574 1.1 chopps
1575 1.5 chopps #ifdef FDDEBUG
1576 1.35 christos printf("fddone: unit %d\n", sc->hwunit);
1577 1.5 chopps #endif
1578 1.5 chopps /*
1579 1.5 chopps * check to see if unit is just flushing the cache,
1580 1.9 chopps * that is we have no io queued.
1581 1.5 chopps */
1582 1.9 chopps if (sc->flags & FDF_MOTOROFF)
1583 1.5 chopps goto nobuf;
1584 1.5 chopps
1585 1.40.14.1 bouyer dp = &sc->curbuf;
1586 1.40.14.1 bouyer if ((bp = BUFQ_FIRST(&sc->bufq)) == NULL)
1587 1.5 chopps panic ("fddone");
1588 1.1 chopps /*
1589 1.5 chopps * check for an error that may have occured
1590 1.5 chopps * while getting the track.
1591 1.1 chopps */
1592 1.5 chopps if (sc->cachetrk == -1) {
1593 1.5 chopps sc->retried = 0;
1594 1.5 chopps bp->b_flags |= B_ERROR;
1595 1.5 chopps bp->b_error = EIO;
1596 1.5 chopps } else if ((bp->b_flags & B_ERROR) == 0) {
1597 1.5 chopps data = sc->cachep;
1598 1.5 chopps /*
1599 1.5 chopps * get offset of data in track cache and limit
1600 1.5 chopps * the copy size to not exceed the cache's end.
1601 1.5 chopps */
1602 1.5 chopps data += (dp->b_blkno % sc->nsectors) * FDSECSIZE;
1603 1.5 chopps sz = sc->nsectors - dp->b_blkno % sc->nsectors;
1604 1.5 chopps sz *= FDSECSIZE;
1605 1.5 chopps sz = min(dp->b_bcount, sz);
1606 1.5 chopps if (bp->b_flags & B_READ)
1607 1.5 chopps bcopy(data, dp->b_data, sz);
1608 1.5 chopps else {
1609 1.5 chopps bcopy(dp->b_data, data, sz);
1610 1.5 chopps sc->flags |= FDF_DIRTY;
1611 1.4 chopps }
1612 1.5 chopps bp->b_resid = dp->b_bcount - sz;
1613 1.5 chopps if (bp->b_resid == 0) {
1614 1.5 chopps bp->b_error = 0;
1615 1.5 chopps } else {
1616 1.5 chopps /*
1617 1.5 chopps * not done yet need to read next track
1618 1.5 chopps */
1619 1.5 chopps fdcont(sc);
1620 1.4 chopps return;
1621 1.4 chopps }
1622 1.1 chopps }
1623 1.5 chopps /*
1624 1.5 chopps * remove from queue.
1625 1.5 chopps */
1626 1.40.14.1 bouyer BUFQ_REMOVE(&sc->bufq, bp);
1627 1.22 thorpej
1628 1.22 thorpej disk_unbusy(&sc->dkdev, (bp->b_bcount - bp->b_resid));
1629 1.22 thorpej
1630 1.5 chopps biodone(bp);
1631 1.5 chopps nobuf:
1632 1.22 thorpej fdfindwork(sc->sc_dv.dv_unit);
1633 1.1 chopps }
1634 1.1 chopps
1635 1.1 chopps void
1636 1.5 chopps fdfindwork(unit)
1637 1.5 chopps int unit;
1638 1.21 mycroft {
1639 1.5 chopps struct fd_softc *ssc, *sc;
1640 1.5 chopps int i, last;
1641 1.1 chopps
1642 1.5 chopps /*
1643 1.29 veego * first see if we have any fdopen()'s waiting
1644 1.5 chopps */
1645 1.5 chopps if (fdc_wantwakeup) {
1646 1.29 veego wakeup(fdopen);
1647 1.5 chopps fdc_wantwakeup--;
1648 1.5 chopps return;
1649 1.5 chopps }
1650 1.1 chopps
1651 1.5 chopps /*
1652 1.5 chopps * start next available unit, linear search from the next unit
1653 1.5 chopps * wrapping and finally this unit.
1654 1.5 chopps */
1655 1.5 chopps last = 0;
1656 1.5 chopps ssc = NULL;
1657 1.5 chopps for (i = unit + 1; last == 0; i++) {
1658 1.5 chopps if (i == unit)
1659 1.5 chopps last = 1;
1660 1.26 thorpej if (i >= fd_cd.cd_ndevs) {
1661 1.5 chopps i = -1;
1662 1.5 chopps continue;
1663 1.5 chopps }
1664 1.26 thorpej if ((sc = fd_cd.cd_devs[i]) == NULL)
1665 1.5 chopps continue;
1666 1.1 chopps
1667 1.5 chopps /*
1668 1.21 mycroft * if unit has requested to be turned off
1669 1.5 chopps * and it has no buf's queued do it now
1670 1.5 chopps */
1671 1.5 chopps if (sc->flags & FDF_MOTOROFF) {
1672 1.40.14.1 bouyer if (BUFQ_FIRST(&sc->bufq) == NULL)
1673 1.5 chopps fdmotoroff(sc);
1674 1.5 chopps else {
1675 1.5 chopps /*
1676 1.21 mycroft * we gained a buf request while
1677 1.5 chopps * we waited, forget the motoroff
1678 1.5 chopps */
1679 1.5 chopps sc->flags &= ~FDF_MOTOROFF;
1680 1.5 chopps }
1681 1.5 chopps /*
1682 1.5 chopps * if we now have dma unit must have needed
1683 1.5 chopps * flushing, quit
1684 1.5 chopps */
1685 1.5 chopps if (fdc_indma)
1686 1.5 chopps return;
1687 1.21 mycroft }
1688 1.5 chopps /*
1689 1.5 chopps * if we have no start unit and the current unit has
1690 1.5 chopps * io waiting choose this unit to start.
1691 1.5 chopps */
1692 1.40.14.1 bouyer if (ssc == NULL && BUFQ_FIRST(&sc->bufq) != NULL)
1693 1.5 chopps ssc = sc;
1694 1.5 chopps }
1695 1.5 chopps if (ssc)
1696 1.5 chopps fdstart(ssc);
1697 1.1 chopps }
1698 1.1 chopps
1699 1.5 chopps /*
1700 1.5 chopps * min byte count to whats left of the track in question
1701 1.5 chopps */
1702 1.21 mycroft void
1703 1.5 chopps fdminphys(bp)
1704 1.5 chopps struct buf *bp;
1705 1.1 chopps {
1706 1.5 chopps struct fd_softc *sc;
1707 1.5 chopps int trk, sec, toff, tsz;
1708 1.1 chopps
1709 1.26 thorpej if ((sc = getsoftc(fd_cd, FDUNIT(bp->b_dev))) == NULL)
1710 1.19 cgd panic("fdminphys: couldn't get softc");
1711 1.1 chopps
1712 1.5 chopps trk = bp->b_blkno / sc->nsectors;
1713 1.5 chopps sec = bp->b_blkno % sc->nsectors;
1714 1.4 chopps
1715 1.5 chopps toff = sec * FDSECSIZE;
1716 1.5 chopps tsz = sc->nsectors * FDSECSIZE;
1717 1.5 chopps #ifdef FDDEBUG
1718 1.35 christos printf("fdminphys: before %d", bp->b_bcount);
1719 1.5 chopps #endif
1720 1.5 chopps bp->b_bcount = min(bp->b_bcount, tsz - toff);
1721 1.5 chopps #ifdef FDDEBUG
1722 1.35 christos printf(" after %d\n", bp->b_bcount);
1723 1.4 chopps #endif
1724 1.21 mycroft minphys(bp);
1725 1.1 chopps }
1726 1.1 chopps
1727 1.1 chopps /*
1728 1.5 chopps * encode the track cache into raw MFM ready for dma
1729 1.5 chopps * when we go to multiple disk formats, this will call type dependent
1730 1.5 chopps * functions
1731 1.1 chopps */
1732 1.32 mhitch void fdcachetoraw(sc)
1733 1.32 mhitch struct fd_softc *sc;
1734 1.32 mhitch {
1735 1.32 mhitch if (sc->openpart == FDMSDOSPART)
1736 1.32 mhitch mscachetoraw(sc);
1737 1.32 mhitch else
1738 1.32 mhitch amcachetoraw(sc);
1739 1.32 mhitch }
1740 1.32 mhitch
1741 1.32 mhitch /*
1742 1.32 mhitch * decode raw MFM from dma into units track cache.
1743 1.32 mhitch * when we go to multiple disk formats, this will call type dependent
1744 1.32 mhitch * functions
1745 1.32 mhitch */
1746 1.32 mhitch int
1747 1.32 mhitch fdrawtocache(sc)
1748 1.32 mhitch struct fd_softc *sc;
1749 1.32 mhitch {
1750 1.32 mhitch
1751 1.32 mhitch if (sc->openpart == FDMSDOSPART)
1752 1.32 mhitch return(msrawtocache(sc));
1753 1.32 mhitch else
1754 1.32 mhitch return(amrawtocache(sc));
1755 1.32 mhitch }
1756 1.32 mhitch
1757 1.1 chopps void
1758 1.32 mhitch amcachetoraw(sc)
1759 1.5 chopps struct fd_softc *sc;
1760 1.1 chopps {
1761 1.5 chopps static u_long mfmnull[4];
1762 1.5 chopps u_long *rp, *crp, *dp, hcksum, dcksum, info, zero;
1763 1.5 chopps int sec, i;
1764 1.1 chopps
1765 1.5 chopps rp = fdc_dmap;
1766 1.5 chopps
1767 1.5 chopps /*
1768 1.5 chopps * not yet one sector (- 1 long) gap.
1769 1.5 chopps * for now use previous drivers values
1770 1.5 chopps */
1771 1.5 chopps for (i = 0; i < sc->type->gap; i++)
1772 1.5 chopps *rp++ = 0xaaaaaaaa;
1773 1.5 chopps /*
1774 1.5 chopps * process sectors
1775 1.5 chopps */
1776 1.5 chopps dp = sc->cachep;
1777 1.5 chopps zero = 0;
1778 1.5 chopps info = 0xff000000 | (sc->cachetrk << 16) | sc->nsectors;
1779 1.5 chopps for (sec = 0; sec < sc->nsectors; sec++, info += (1 << 8) - 1) {
1780 1.5 chopps hcksum = dcksum = 0;
1781 1.5 chopps /*
1782 1.5 chopps * sector format
1783 1.5 chopps * offset description
1784 1.5 chopps *-----------------------------------
1785 1.21 mycroft * 0 null
1786 1.21 mycroft * 1 sync
1787 1.5 chopps * oddbits evenbits
1788 1.5 chopps *----------------------
1789 1.5 chopps * 2 3 [0xff]b [trk]b [sec]b [togap]b
1790 1.5 chopps * 4-7 8-11 null
1791 1.5 chopps * 12 13 header cksum [2-11]
1792 1.5 chopps * 14 15 data cksum [16-271]
1793 1.5 chopps * 16-143 144-271 data
1794 1.5 chopps */
1795 1.5 chopps *rp = 0xaaaaaaaa;
1796 1.5 chopps if (*(rp - 1) & 0x1)
1797 1.5 chopps *rp &= 0x7fffffff; /* clock bit correction */
1798 1.5 chopps rp++;
1799 1.5 chopps *rp++ = (FDMFMSYNC << 16) | FDMFMSYNC;
1800 1.5 chopps rp = mfmblkencode(&info, rp, &hcksum, 1);
1801 1.5 chopps rp = mfmblkencode(mfmnull, rp, &hcksum, 4);
1802 1.5 chopps rp = mfmblkencode(&hcksum, rp, NULL, 1);
1803 1.5 chopps
1804 1.5 chopps crp = rp;
1805 1.5 chopps rp = mfmblkencode(dp, rp + 2, &dcksum, FDSECLWORDS);
1806 1.5 chopps dp += FDSECLWORDS;
1807 1.5 chopps crp = mfmblkencode(&dcksum, crp, NULL, 1);
1808 1.5 chopps if (*(crp - 1) & 0x1)
1809 1.5 chopps *crp &= 0x7fffffff; /* clock bit correction */
1810 1.5 chopps else if ((*crp & 0x40000000) == 0)
1811 1.5 chopps *crp |= 0x80000000;
1812 1.32 mhitch }
1813 1.5 chopps *rp = 0xaaa80000;
1814 1.5 chopps if (*(rp - 1) & 0x1)
1815 1.5 chopps *rp &= 0x7fffffff;
1816 1.5 chopps }
1817 1.5 chopps
1818 1.5 chopps u_long *
1819 1.5 chopps fdfindsync(rp, ep)
1820 1.5 chopps u_long *rp, *ep;
1821 1.5 chopps {
1822 1.5 chopps u_short *sp;
1823 1.5 chopps
1824 1.5 chopps sp = (u_short *)rp;
1825 1.5 chopps while ((u_long *)sp < ep && *sp != FDMFMSYNC)
1826 1.5 chopps sp++;
1827 1.5 chopps while ((u_long *)sp < ep && *sp == FDMFMSYNC)
1828 1.5 chopps sp++;
1829 1.5 chopps if ((u_long *)sp < ep)
1830 1.5 chopps return((u_long *)sp);
1831 1.5 chopps return(NULL);
1832 1.1 chopps }
1833 1.1 chopps
1834 1.1 chopps int
1835 1.32 mhitch amrawtocache(sc)
1836 1.5 chopps struct fd_softc *sc;
1837 1.1 chopps {
1838 1.5 chopps u_long mfmnull[4];
1839 1.5 chopps u_long *dp, *rp, *erp, *crp, *srp, hcksum, dcksum, info, cktmp;
1840 1.5 chopps int cnt, doagain;
1841 1.5 chopps
1842 1.5 chopps doagain = 1;
1843 1.5 chopps srp = rp = fdc_dmap;
1844 1.5 chopps erp = (u_long *)((u_short *)rp + sc->type->nreadw);
1845 1.5 chopps cnt = 0;
1846 1.5 chopps again:
1847 1.5 chopps if (doagain == 0 || (rp = srp = fdfindsync(srp, erp)) == NULL) {
1848 1.5 chopps #ifdef DIAGNOSTIC
1849 1.35 christos printf("%s: corrupted track (%d) data.\n",
1850 1.22 thorpej sc->sc_dv.dv_xname, sc->cachetrk);
1851 1.5 chopps #endif
1852 1.5 chopps return(-1);
1853 1.5 chopps }
1854 1.21 mycroft
1855 1.5 chopps /*
1856 1.5 chopps * process sectors
1857 1.5 chopps */
1858 1.5 chopps for (; cnt < sc->nsectors; cnt++) {
1859 1.5 chopps hcksum = dcksum = 0;
1860 1.5 chopps rp = mfmblkdecode(rp, &info, &hcksum, 1);
1861 1.5 chopps rp = mfmblkdecode(rp, mfmnull, &hcksum, 4);
1862 1.5 chopps rp = mfmblkdecode(rp, &cktmp, NULL, 1);
1863 1.5 chopps if (cktmp != hcksum) {
1864 1.5 chopps #ifdef FDDEBUG
1865 1.35 christos printf(" info 0x%x hchksum 0x%x trkhcksum 0x%x\n",
1866 1.5 chopps info, hcksum, cktmp);
1867 1.5 chopps #endif
1868 1.5 chopps goto again;
1869 1.5 chopps }
1870 1.5 chopps if (((info >> 16) & 0xff) != sc->cachetrk) {
1871 1.5 chopps #ifdef DEBUG
1872 1.35 christos printf("%s: incorrect track found: 0x%lx %d\n",
1873 1.22 thorpej sc->sc_dv.dv_xname, info, sc->cachetrk);
1874 1.5 chopps #endif
1875 1.5 chopps goto again;
1876 1.1 chopps }
1877 1.5 chopps #ifdef FDDEBUG
1878 1.35 christos printf(" info 0x%x\n", info);
1879 1.5 chopps #endif
1880 1.1 chopps
1881 1.5 chopps rp = mfmblkdecode(rp, &cktmp, NULL, 1);
1882 1.5 chopps dp = sc->cachep;
1883 1.5 chopps dp += FDSECLWORDS * ((info >> 8) & 0xff);
1884 1.5 chopps crp = mfmblkdecode(rp, dp, &dcksum, FDSECLWORDS);
1885 1.5 chopps if (cktmp != dcksum) {
1886 1.5 chopps #ifdef FDDEBUG
1887 1.35 christos printf(" info 0x%x dchksum 0x%x trkdcksum 0x%x\n",
1888 1.5 chopps info, dcksum, cktmp);
1889 1.5 chopps #endif
1890 1.5 chopps goto again;
1891 1.5 chopps }
1892 1.1 chopps
1893 1.5 chopps /*
1894 1.5 chopps * if we are at gap then we can no longer be sure
1895 1.5 chopps * of correct sync marks
1896 1.5 chopps */
1897 1.5 chopps if ((info && 0xff) == 1)
1898 1.5 chopps doagain = 1;
1899 1.5 chopps else
1900 1.5 chopps doagain = 0;
1901 1.5 chopps srp = rp = fdfindsync(crp, erp);
1902 1.1 chopps }
1903 1.5 chopps return(0);
1904 1.5 chopps }
1905 1.1 chopps
1906 1.32 mhitch void
1907 1.32 mhitch mscachetoraw(sc)
1908 1.32 mhitch struct fd_softc *sc;
1909 1.32 mhitch {
1910 1.32 mhitch u_short *rp, *erp, crc;
1911 1.32 mhitch u_char *cp, tb[5];
1912 1.32 mhitch int sec, i;
1913 1.32 mhitch
1914 1.32 mhitch rp = (u_short *)fdc_dmap;
1915 1.32 mhitch erp = rp + sc->type->nwritew;
1916 1.32 mhitch cp = sc->cachep;
1917 1.32 mhitch
1918 1.32 mhitch /*
1919 1.32 mhitch * initial track filler (828 * GAP1)
1920 1.32 mhitch */
1921 1.32 mhitch for (i = 0; i < sc->type->gap; i++) {
1922 1.32 mhitch *rp++ = FDMFMGAP1;
1923 1.32 mhitch *rp++ = FDMFMGAP1;
1924 1.32 mhitch }
1925 1.32 mhitch
1926 1.32 mhitch for (sec = 0; sec < sc->nsectors; sec++) {
1927 1.32 mhitch
1928 1.32 mhitch /*
1929 1.32 mhitch * leading sector gap
1930 1.32 mhitch * (12 * GAP2) + (3 * SYNC)
1931 1.32 mhitch */
1932 1.32 mhitch for (i = 0; i < 12; i++)
1933 1.32 mhitch *rp++ = FDMFMGAP2;
1934 1.32 mhitch *rp++ = FDMFMSYNC;
1935 1.32 mhitch *rp++ = FDMFMSYNC;
1936 1.32 mhitch *rp++ = FDMFMSYNC;
1937 1.32 mhitch
1938 1.32 mhitch /*
1939 1.32 mhitch * sector information
1940 1.32 mhitch * (ID) + track + side + sector + sector size + CRC16
1941 1.32 mhitch */
1942 1.32 mhitch *rp++ = FDMFMID;
1943 1.32 mhitch tb[0] = sc->cachetrk / FDNHEADS;
1944 1.32 mhitch tb[1] = sc->cachetrk % FDNHEADS;
1945 1.32 mhitch tb[2] = sec + 1;
1946 1.32 mhitch i = sc->bytespersec;
1947 1.32 mhitch tb[3] = i < 256 ? 0 : (i < 512 ? 1 : (i < 1024 ? 2 : 3));
1948 1.32 mhitch rp = msblkencode(rp, tb, 4, &crc);
1949 1.32 mhitch tb[0] = crc >> 8;
1950 1.32 mhitch tb[1] = crc & 0xff;
1951 1.32 mhitch tb[2] = 0x4e; /* GAP1 decoded */
1952 1.32 mhitch rp = msblkencode(rp, tb, 3, 0);
1953 1.32 mhitch
1954 1.32 mhitch /*
1955 1.32 mhitch * sector info/data gap
1956 1.32 mhitch * (22 * GAP1) + (12 * GAP2) + (3 * SYNC)
1957 1.32 mhitch */
1958 1.32 mhitch for (i = 0; i < 21; i++)
1959 1.32 mhitch *rp++ = FDMFMGAP1;
1960 1.32 mhitch for (i = 0; i < 12; i++)
1961 1.32 mhitch *rp++ = FDMFMGAP2;
1962 1.32 mhitch *rp++ = FDMFMSYNC;
1963 1.32 mhitch *rp++ = FDMFMSYNC;
1964 1.32 mhitch *rp++ = FDMFMSYNC;
1965 1.32 mhitch
1966 1.32 mhitch /*
1967 1.32 mhitch * sector data
1968 1.32 mhitch * (DATA) + ...data... + CRC16
1969 1.32 mhitch */
1970 1.32 mhitch *rp++ = FDMFMDATA;
1971 1.32 mhitch rp = msblkencode(rp, cp, sc->bytespersec, &crc);
1972 1.32 mhitch cp += sc->bytespersec;
1973 1.32 mhitch tb[0] = crc >> 8;
1974 1.32 mhitch tb[1] = crc & 0xff;
1975 1.32 mhitch tb[2] = 0x4e; /* GAP3 decoded */
1976 1.32 mhitch rp = msblkencode(rp, tb, 3, 0);
1977 1.32 mhitch
1978 1.32 mhitch /*
1979 1.32 mhitch * trailing sector gap
1980 1.32 mhitch * (80 * GAP3)
1981 1.32 mhitch */
1982 1.32 mhitch for (i = 0; i < 79; i++)
1983 1.32 mhitch *rp++ = FDMFMGAP3;
1984 1.32 mhitch }
1985 1.32 mhitch
1986 1.32 mhitch /*
1987 1.32 mhitch * fill rest of track with GAP3
1988 1.32 mhitch */
1989 1.32 mhitch while (rp != erp)
1990 1.32 mhitch *rp++ = FDMFMGAP3;
1991 1.32 mhitch
1992 1.32 mhitch }
1993 1.32 mhitch
1994 1.32 mhitch int
1995 1.32 mhitch msrawtocache(sc)
1996 1.32 mhitch struct fd_softc *sc;
1997 1.32 mhitch {
1998 1.32 mhitch u_short *rp, *srp, *erp;
1999 1.32 mhitch u_char tb[5], *cp;
2000 1.32 mhitch int ct, sec, retry;
2001 1.32 mhitch
2002 1.32 mhitch srp = rp = (u_short *)fdc_dmap;
2003 1.32 mhitch erp = rp + sc->type->nreadw;
2004 1.32 mhitch cp = sc->cachep;
2005 1.32 mhitch
2006 1.32 mhitch for (ct = 0; ct < sc->nsectors; ct++) {
2007 1.32 mhitch retry = 1;
2008 1.32 mhitch do {
2009 1.32 mhitch /*
2010 1.32 mhitch * skip leading gap to sync
2011 1.32 mhitch */
2012 1.32 mhitch if ((rp = (u_short *)fdfindsync((u_long *)rp, (u_long *)erp)) == NULL) {
2013 1.32 mhitch #ifdef DIAGNOSTIC
2014 1.35 christos printf("%s: corrupted track (%d) data.\n",
2015 1.32 mhitch sc->sc_dv.dv_xname, sc->cachetrk);
2016 1.32 mhitch #endif
2017 1.32 mhitch return(-1);
2018 1.32 mhitch }
2019 1.32 mhitch
2020 1.32 mhitch /*
2021 1.32 mhitch * Grab sector info
2022 1.32 mhitch */
2023 1.32 mhitch if (*rp++ != FDMFMID)
2024 1.32 mhitch continue;
2025 1.32 mhitch rp = msblkdecode(rp, tb, 4);
2026 1.32 mhitch #ifdef FDDEBUG
2027 1.35 christos printf("sector id: sector %d, track %d, side %d,"
2028 1.32 mhitch "bps %d\n", tb[2], tb[0], tb[1], 128 << tb[3]);
2029 1.32 mhitch #endif
2030 1.32 mhitch if ((tb[0] * FDNHEADS + tb[1]) != sc->cachetrk ||
2031 1.32 mhitch tb[2] > sc->nsectors)
2032 1.32 mhitch continue;
2033 1.32 mhitch
2034 1.32 mhitch sec = tb[2];
2035 1.32 mhitch sc->bytespersec = 128 << tb[3];
2036 1.32 mhitch rp += 2; /* skip CRC-16 */
2037 1.32 mhitch
2038 1.32 mhitch /*
2039 1.32 mhitch * skip gap and read in data
2040 1.32 mhitch */
2041 1.32 mhitch if ((rp = (u_short *)fdfindsync((u_long *)rp, (u_long *)erp)) == NULL)
2042 1.32 mhitch return(-1);
2043 1.32 mhitch if (*rp++ != FDMFMDATA)
2044 1.32 mhitch continue;
2045 1.32 mhitch rp = msblkdecode(rp, cp + ((sec-1) * sc->bytespersec),
2046 1.32 mhitch sc->bytespersec);
2047 1.32 mhitch rp += 2; /* skip CRC-16 */
2048 1.32 mhitch
2049 1.32 mhitch retry = 0;
2050 1.32 mhitch } while (retry);
2051 1.32 mhitch }
2052 1.32 mhitch return(0);
2053 1.32 mhitch }
2054 1.32 mhitch
2055 1.5 chopps /*
2056 1.5 chopps * encode len longwords of `dp' data in amiga mfm block format (`rp')
2057 1.5 chopps * this format specified that the odd bits are at current pos and even
2058 1.5 chopps * bits at len + current pos
2059 1.5 chopps */
2060 1.5 chopps u_long *
2061 1.5 chopps mfmblkencode(dp, rp, cp, len)
2062 1.5 chopps u_long *dp, *rp, *cp;
2063 1.5 chopps int len;
2064 1.5 chopps {
2065 1.5 chopps u_long *sdp, *edp, d, dtmp, correct;
2066 1.21 mycroft
2067 1.5 chopps sdp = dp;
2068 1.5 chopps edp = dp + len;
2069 1.1 chopps
2070 1.5 chopps if (*(rp - 1) & 0x1)
2071 1.5 chopps correct = 1;
2072 1.5 chopps else
2073 1.5 chopps correct = 0;
2074 1.5 chopps /*
2075 1.5 chopps * do odd bits
2076 1.5 chopps */
2077 1.5 chopps while (dp < edp) {
2078 1.5 chopps d = (*dp >> 1) & 0x55555555; /* remove clock bits */
2079 1.5 chopps dtmp = d ^ 0x55555555;
2080 1.5 chopps d |= ((dtmp >> 1) | 0x80000000) & (dtmp << 1);
2081 1.5 chopps /*
2082 1.5 chopps * correct upper clock bit if needed
2083 1.5 chopps */
2084 1.5 chopps if (correct)
2085 1.5 chopps d &= 0x7fffffff;
2086 1.5 chopps if (d & 0x1)
2087 1.5 chopps correct = 1;
2088 1.5 chopps else
2089 1.5 chopps correct = 0;
2090 1.1 chopps /*
2091 1.5 chopps * do checksums and store in raw buffer
2092 1.1 chopps */
2093 1.5 chopps if (cp)
2094 1.5 chopps *cp ^= d;
2095 1.5 chopps *rp++ = d;
2096 1.5 chopps dp++;
2097 1.5 chopps }
2098 1.5 chopps /*
2099 1.5 chopps * do even bits
2100 1.5 chopps */
2101 1.5 chopps dp = sdp;
2102 1.5 chopps while (dp < edp) {
2103 1.5 chopps d = *dp & 0x55555555; /* remove clock bits */
2104 1.5 chopps dtmp = d ^ 0x55555555;
2105 1.5 chopps d |= ((dtmp >> 1) | 0x80000000) & (dtmp << 1);
2106 1.1 chopps /*
2107 1.5 chopps * correct upper clock bit if needed
2108 1.1 chopps */
2109 1.5 chopps if (correct)
2110 1.5 chopps d &= 0x7fffffff;
2111 1.5 chopps if (d & 0x1)
2112 1.5 chopps correct = 1;
2113 1.5 chopps else
2114 1.5 chopps correct = 0;
2115 1.4 chopps /*
2116 1.5 chopps * do checksums and store in raw buffer
2117 1.4 chopps */
2118 1.5 chopps if (cp)
2119 1.5 chopps *cp ^= d;
2120 1.5 chopps *rp++ = d;
2121 1.5 chopps dp++;
2122 1.1 chopps }
2123 1.5 chopps if (cp)
2124 1.5 chopps *cp &= 0x55555555;
2125 1.5 chopps return(rp);
2126 1.1 chopps }
2127 1.1 chopps
2128 1.5 chopps /*
2129 1.5 chopps * decode len longwords of `dp' data in amiga mfm block format (`rp')
2130 1.5 chopps * this format specified that the odd bits are at current pos and even
2131 1.5 chopps * bits at len + current pos
2132 1.5 chopps */
2133 1.5 chopps u_long *
2134 1.5 chopps mfmblkdecode(rp, dp, cp, len)
2135 1.5 chopps u_long *rp, *dp, *cp;
2136 1.5 chopps int len;
2137 1.1 chopps {
2138 1.5 chopps u_long o, e;
2139 1.5 chopps int cnt;
2140 1.1 chopps
2141 1.5 chopps cnt = len;
2142 1.5 chopps while (cnt--) {
2143 1.5 chopps o = *rp;
2144 1.5 chopps e = *(rp + len);
2145 1.5 chopps if (cp) {
2146 1.5 chopps *cp ^= o;
2147 1.5 chopps *cp ^= e;
2148 1.5 chopps }
2149 1.5 chopps o &= 0x55555555;
2150 1.5 chopps e &= 0x55555555;
2151 1.5 chopps *dp++ = (o << 1) | e;
2152 1.5 chopps rp++;
2153 1.5 chopps }
2154 1.5 chopps if (cp)
2155 1.5 chopps *cp &= 0x55555555;
2156 1.5 chopps return(rp + len);
2157 1.32 mhitch }
2158 1.32 mhitch
2159 1.32 mhitch /*
2160 1.32 mhitch * decode len words in standard MFM format to len bytes
2161 1.32 mhitch * of data.
2162 1.32 mhitch */
2163 1.32 mhitch u_short *
2164 1.32 mhitch msblkdecode(rp, cp, len)
2165 1.32 mhitch u_short *rp;
2166 1.32 mhitch u_char *cp;
2167 1.32 mhitch int len;
2168 1.32 mhitch {
2169 1.32 mhitch while (len--) {
2170 1.32 mhitch *cp++ = msdecode[*rp & 0x7f] |
2171 1.32 mhitch (msdecode[(*rp >> 8) & 0x7f] << 4);
2172 1.32 mhitch rp++;
2173 1.32 mhitch }
2174 1.32 mhitch
2175 1.32 mhitch return(rp);
2176 1.32 mhitch }
2177 1.32 mhitch
2178 1.32 mhitch /*
2179 1.32 mhitch * encode len bytes of data into len words in standard MFM format.
2180 1.32 mhitch * If a pointer is supplied for crc, calculate the CRC-16 of the data
2181 1.32 mhitch * as well.
2182 1.32 mhitch */
2183 1.32 mhitch u_short *
2184 1.32 mhitch msblkencode(rp, cp, len, crc)
2185 1.32 mhitch u_short *rp;
2186 1.32 mhitch u_char *cp;
2187 1.32 mhitch int len;
2188 1.32 mhitch u_short *crc;
2189 1.32 mhitch {
2190 1.32 mhitch u_short td;
2191 1.32 mhitch u_short mycrc;
2192 1.32 mhitch
2193 1.32 mhitch /* preload crc for header (4 bytes)
2194 1.32 mhitch * or data (anything else)
2195 1.32 mhitch */
2196 1.32 mhitch mycrc = (len == 4) ? 0xb230 : 0xe295;
2197 1.32 mhitch
2198 1.32 mhitch while (len--) {
2199 1.32 mhitch td = (msencode[*cp >> 4] << 8) | msencode[*cp & 0x0f];
2200 1.32 mhitch
2201 1.32 mhitch /* Check for zeros in top bit of encode and bottom
2202 1.32 mhitch * bit of previous encode. if so, slap a one in betweem
2203 1.32 mhitch * them.
2204 1.32 mhitch */
2205 1.32 mhitch if ((td & 0x140) == 0)
2206 1.32 mhitch td |= 0x80;
2207 1.32 mhitch if ((td & 0x4000) == 0 && (rp[-1] & 1) == 0)
2208 1.32 mhitch td |= 0x8000;
2209 1.32 mhitch
2210 1.32 mhitch *rp++ = td;
2211 1.32 mhitch
2212 1.32 mhitch /*
2213 1.32 mhitch * calc crc if requested
2214 1.32 mhitch */
2215 1.32 mhitch if (crc)
2216 1.32 mhitch mycrc = (mycrc << 8) ^ mscrctab[*cp ^ (mycrc >> 8)];
2217 1.32 mhitch
2218 1.32 mhitch cp++;
2219 1.32 mhitch }
2220 1.32 mhitch
2221 1.32 mhitch if (crc)
2222 1.32 mhitch *crc = mycrc;
2223 1.32 mhitch
2224 1.32 mhitch return(rp);
2225 1.17 chopps }
2226 1.17 chopps
2227 1.17 chopps int
2228 1.29 veego fddump(dev, blkno, va, size)
2229 1.29 veego dev_t dev;
2230 1.29 veego daddr_t blkno;
2231 1.29 veego caddr_t va;
2232 1.29 veego size_t size;
2233 1.17 chopps {
2234 1.17 chopps return (EINVAL);
2235 1.1 chopps }
2236