iwm_fd.c revision 1.26 1 1.26 drochner /* $NetBSD: iwm_fd.c,v 1.26 2004/09/13 15:17:44 drochner Exp $ */
2 1.1 scottr
3 1.1 scottr /*
4 1.1 scottr * Copyright (c) 1997, 1998 Hauke Fath. All rights reserved.
5 1.1 scottr *
6 1.1 scottr * Redistribution and use in source and binary forms, with or without
7 1.1 scottr * modification, are permitted provided that the following conditions
8 1.1 scottr * are met:
9 1.1 scottr * 1. Redistributions of source code must retain the above copyright
10 1.1 scottr * notice, this list of conditions and the following disclaimer.
11 1.1 scottr * 2. Redistributions in binary form must reproduce the above copyright
12 1.1 scottr * notice, this list of conditions and the following disclaimer in the
13 1.1 scottr * documentation and/or other materials provided with the distribution.
14 1.1 scottr * 3. The name of the author may not be used to endorse or promote products
15 1.1 scottr * derived from this software without specific prior written permission.
16 1.1 scottr *
17 1.1 scottr * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 1.1 scottr * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 1.1 scottr * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 1.1 scottr * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 1.1 scottr * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 1.1 scottr * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 1.1 scottr * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 1.1 scottr * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 1.1 scottr * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 1.1 scottr * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 1.1 scottr */
28 1.1 scottr
29 1.1 scottr /*
30 1.2 scottr * iwm_fd.c -- Sony (floppy disk) driver for m68k Macintoshes
31 1.1 scottr *
32 1.2 scottr * The present implementation supports the GCR format (800K) on
33 1.2 scottr * non-{DMA,IOP} machines.
34 1.1 scottr */
35 1.24 lukem
36 1.24 lukem #include <sys/cdefs.h>
37 1.26 drochner __KERNEL_RCSID(0, "$NetBSD: iwm_fd.c,v 1.26 2004/09/13 15:17:44 drochner Exp $");
38 1.24 lukem
39 1.1 scottr #include <sys/param.h>
40 1.1 scottr #include <sys/systm.h>
41 1.8 thorpej #include <sys/callout.h>
42 1.1 scottr #include <sys/kernel.h>
43 1.1 scottr #include <sys/file.h>
44 1.1 scottr #include <sys/ioctl.h>
45 1.1 scottr #include <sys/malloc.h>
46 1.1 scottr #include <sys/device.h>
47 1.18 jdolecek #include <sys/event.h>
48 1.1 scottr
49 1.1 scottr #define FSTYPENAMES
50 1.2 scottr #define DKTYPENAMES
51 1.1 scottr #include <sys/disklabel.h>
52 1.1 scottr
53 1.1 scottr #include <sys/disk.h>
54 1.1 scottr #include <sys/dkbad.h>
55 1.1 scottr #include <sys/buf.h>
56 1.1 scottr #include <sys/uio.h>
57 1.1 scottr #include <sys/stat.h>
58 1.1 scottr #include <sys/syslog.h>
59 1.1 scottr #include <sys/conf.h>
60 1.1 scottr
61 1.1 scottr #include <machine/autoconf.h>
62 1.1 scottr #include <machine/cpu.h>
63 1.1 scottr
64 1.1 scottr #include <mac68k/obio/iwmreg.h>
65 1.1 scottr #include <mac68k/obio/iwm_fdvar.h>
66 1.1 scottr
67 1.1 scottr /**
68 1.1 scottr ** Private functions
69 1.1 scottr **/
70 1.2 scottr static int map_iwm_base __P((vm_offset_t base));
71 1.1 scottr
72 1.1 scottr /* Autoconfig */
73 1.1 scottr int iwm_match __P((struct device *, struct cfdata *, void *));
74 1.1 scottr void iwm_attach __P((struct device *, struct device *, void *));
75 1.1 scottr int iwm_print __P((void *, const char *));
76 1.1 scottr int fd_match __P((struct device *, struct cfdata *, void *));
77 1.1 scottr void fd_attach __P((struct device *, struct device *, void *));
78 1.1 scottr int fd_print __P((void *, const char *));
79 1.1 scottr
80 1.1 scottr /* Disklabel stuff */
81 1.2 scottr static void fdGetDiskLabel __P((fd_softc_t *fd, dev_t dev));
82 1.2 scottr static void fdPrintDiskLabel __P((struct disklabel *lp));
83 1.1 scottr
84 1.2 scottr static fdInfo_t *getFDType __P((short unit));
85 1.2 scottr static fdInfo_t *fdDeviceToType __P((fd_softc_t *fd, dev_t dev));
86 1.1 scottr
87 1.2 scottr static void fdstart __P((fd_softc_t *fd));
88 1.2 scottr static void remap_geometry __P((daddr_t block, int heads, diskPosition_t *loc));
89 1.2 scottr static void motor_off __P((void *param));
90 1.2 scottr static int seek __P((fd_softc_t *fd, int style));
91 1.2 scottr static int checkTrack __P((diskPosition_t *loc, int debugFlag));
92 1.2 scottr static int initCylinderCache __P((fd_softc_t *fd));
93 1.2 scottr static void invalidateCylinderCache __P((fd_softc_t *fd));
94 1.1 scottr
95 1.1 scottr #ifdef _LKM
96 1.2 scottr static int probe_fd __P((void));
97 1.9 jdolecek int fd_mod_init __P((void));
98 1.11 jdolecek void fd_mod_free __P((void));
99 1.1 scottr #endif
100 1.1 scottr
101 1.2 scottr static int fdstart_Init __P((fd_softc_t *fd));
102 1.2 scottr static int fdstart_Seek __P((fd_softc_t *fd));
103 1.2 scottr static int fdstart_Read __P((fd_softc_t *fd));
104 1.2 scottr static int fdstart_Write __P((fd_softc_t *fd));
105 1.2 scottr static int fdstart_Flush __P((fd_softc_t *fd));
106 1.2 scottr static int fdstart_IOFinish __P((fd_softc_t *fd));
107 1.2 scottr static int fdstart_IOErr __P((fd_softc_t *fd));
108 1.2 scottr static int fdstart_Fault __P((fd_softc_t *fd));
109 1.2 scottr static int fdstart_Exit __P((fd_softc_t *fd));
110 1.2 scottr
111 1.1 scottr
112 1.1 scottr /**
113 1.1 scottr ** Driver debugging
114 1.1 scottr **/
115 1.1 scottr
116 1.2 scottr #ifdef DEBUG
117 1.2 scottr #define IWM_DEBUG
118 1.2 scottr #endif
119 1.2 scottr
120 1.2 scottr
121 1.2 scottr static void hexDump __P((u_char *buf, int len));
122 1.1 scottr
123 1.1 scottr /*
124 1.2 scottr * Stuff taken from Egan/Teixeira ch 8: 'if(TRACE_FOO)' debug output
125 1.2 scottr * statements don't break indentation, and when DEBUG is not defined,
126 1.2 scottr * the compiler code optimizer drops them as dead code.
127 1.1 scottr */
128 1.2 scottr #ifdef IWM_DEBUG
129 1.1 scottr #define M_TRACE_CONFIG 0x0001
130 1.1 scottr #define M_TRACE_OPEN 0x0002
131 1.1 scottr #define M_TRACE_CLOSE 0x0004
132 1.1 scottr #define M_TRACE_READ 0x0008
133 1.1 scottr #define M_TRACE_WRITE 0x0010
134 1.1 scottr #define M_TRACE_STRAT (M_TRACE_READ | M_TRACE_WRITE)
135 1.1 scottr #define M_TRACE_IOCTL 0x0020
136 1.1 scottr #define M_TRACE_STEP 0x0040
137 1.1 scottr #define M_TRACE_ALL 0xFFFF
138 1.1 scottr
139 1.1 scottr #define TRACE_CONFIG (iwmDebugging & M_TRACE_CONFIG)
140 1.1 scottr #define TRACE_OPEN (iwmDebugging & M_TRACE_OPEN)
141 1.1 scottr #define TRACE_CLOSE (iwmDebugging & M_TRACE_CLOSE)
142 1.1 scottr #define TRACE_READ (iwmDebugging & M_TRACE_READ)
143 1.1 scottr #define TRACE_WRITE (iwmDebugging & M_TRACE_WRITE)
144 1.1 scottr #define TRACE_STRAT (iwmDebugging & M_TRACE_STRAT)
145 1.1 scottr #define TRACE_IOCTL (iwmDebugging & M_TRACE_IOCTL)
146 1.1 scottr #define TRACE_STEP (iwmDebugging & M_TRACE_STEP)
147 1.1 scottr #define TRACE_ALL (iwmDebugging & M_TRACE_ALL)
148 1.1 scottr
149 1.1 scottr /* -1 = all active */
150 1.2 scottr int iwmDebugging = 0 /* | M_TRACE_OPEN | M_TRACE_STRAT | M_TRACE_IOCTL */ ;
151 1.1 scottr
152 1.1 scottr #else
153 1.1 scottr #define TRACE_CONFIG 0
154 1.1 scottr #define TRACE_OPEN 0
155 1.1 scottr #define TRACE_CLOSE 0
156 1.1 scottr #define TRACE_READ 0
157 1.1 scottr #define TRACE_WRITE 0
158 1.1 scottr #define TRACE_STRAT 0
159 1.1 scottr #define TRACE_IOCTL 0
160 1.1 scottr #define TRACE_STEP 0
161 1.1 scottr #define TRACE_ALL 0
162 1.1 scottr #endif
163 1.1 scottr
164 1.1 scottr #define DISABLED 0
165 1.1 scottr
166 1.1 scottr
167 1.1 scottr
168 1.1 scottr /**
169 1.1 scottr ** Module-global Variables
170 1.1 scottr **/
171 1.1 scottr
172 1.1 scottr /* The IWM base address */
173 1.1 scottr u_long IWMBase;
174 1.1 scottr
175 1.1 scottr /*
176 1.1 scottr * Table of supported disk types.
177 1.1 scottr * The table order seems to be pretty standardized across NetBSD ports, but
178 1.1 scottr * then, they are all MFM... So we roll our own for now.
179 1.1 scottr */
180 1.1 scottr static fdInfo_t fdTypes[] = {
181 1.1 scottr {1, 80, 512, 10, 10, 800, 12, 2, IWM_GCR, "400K Sony"},
182 1.1 scottr {2, 80, 512, 10, 20, 1600, 12, 2, IWM_GCR, "800K Sony"}
183 1.1 scottr };
184 1.1 scottr
185 1.1 scottr /* Table of GCR disk zones for one side (see IM II-211, The Disk Driver) */
186 1.1 scottr static diskZone_t diskZones[] = {
187 1.1 scottr {16, 12, 0, 191},
188 1.1 scottr {16, 11, 192, 367},
189 1.1 scottr {16, 10, 368, 527},
190 1.1 scottr {16, 9, 528, 671},
191 1.1 scottr {16, 8, 672, 799}
192 1.1 scottr };
193 1.1 scottr
194 1.1 scottr /* Drive format codes/indexes */
195 1.1 scottr enum {
196 1.2 scottr IWM_400K_GCR = 0,
197 1.2 scottr IWM_800K_GCR = 1,
198 1.2 scottr IWM_720K_MFM = 2,
199 1.2 scottr IWM_1440K_MFM = 3
200 1.1 scottr };
201 1.1 scottr
202 1.1 scottr
203 1.1 scottr /**
204 1.1 scottr ** Autoconfiguration code
205 1.1 scottr **/
206 1.1 scottr
207 1.1 scottr /*
208 1.1 scottr * Autoconfig data structures
209 1.1 scottr *
210 1.1 scottr * These data structures (see <sys/device.h>) are referenced in
211 1.1 scottr * compile/$KERNEL/ioconf.c, which is generated by config(8).
212 1.1 scottr * Their names are formed like {device}_{ca,cd}.
213 1.1 scottr *
214 1.2 scottr * {device}_ca
215 1.1 scottr * is used for dynamically allocating driver data, probing and
216 1.1 scottr * attaching a device;
217 1.1 scottr *
218 1.1 scottr * {device}_cd
219 1.1 scottr * references all found devices of a type.
220 1.1 scottr */
221 1.17 jdolecek #ifndef _LKM
222 1.1 scottr
223 1.1 scottr extern struct cfdriver iwm_cd;
224 1.1 scottr extern struct cfdriver fd_cd;
225 1.1 scottr
226 1.1 scottr #endif /* defined _LKM */
227 1.1 scottr
228 1.1 scottr /* IWM floppy disk controller */
229 1.16 thorpej CFATTACH_DECL(iwm, sizeof(iwm_softc_t),
230 1.16 thorpej iwm_match, iwm_attach, NULL, NULL);
231 1.1 scottr
232 1.1 scottr /* Attached floppy disk drives */
233 1.16 thorpej CFATTACH_DECL(fd, sizeof(fd_softc_t),
234 1.16 thorpej fd_match, fd_attach, NULL, NULL);
235 1.1 scottr
236 1.13 gehenna dev_type_open(fdopen);
237 1.13 gehenna dev_type_close(fdclose);
238 1.13 gehenna dev_type_read(fdread);
239 1.13 gehenna dev_type_write(fdwrite);
240 1.13 gehenna dev_type_ioctl(fdioctl);
241 1.13 gehenna dev_type_strategy(fdstrategy);
242 1.13 gehenna
243 1.13 gehenna const struct bdevsw fd_bdevsw = {
244 1.13 gehenna fdopen, fdclose, fdstrategy, fdioctl, nodump, nosize, D_DISK
245 1.13 gehenna };
246 1.1 scottr
247 1.13 gehenna const struct cdevsw fd_cdevsw = {
248 1.13 gehenna fdopen, fdclose, fdread, fdwrite, fdioctl,
249 1.18 jdolecek nostop, notty, nopoll, nommap, nokqfilter, D_DISK
250 1.13 gehenna };
251 1.13 gehenna
252 1.13 gehenna /* disk(9) framework device switch */
253 1.13 gehenna struct dkdriver fd_dkDriver = {
254 1.13 gehenna fdstrategy
255 1.13 gehenna };
256 1.1 scottr
257 1.1 scottr /*** Configure the IWM controller ***/
258 1.1 scottr
259 1.1 scottr /*
260 1.1 scottr * iwm_match
261 1.1 scottr *
262 1.2 scottr * Is the IWM chip present? Here, *auxp is a ptr to struct confargs
263 1.2 scottr * (see <mac68k/mac68k/autoconf.h>), which does not hold any information
264 1.2 scottr * to match against. After all, that's what the obio concept is
265 1.2 scottr * about: Onboard components that are present depending (only)
266 1.2 scottr * on machine type.
267 1.1 scottr */
268 1.1 scottr int
269 1.1 scottr iwm_match(parent, match, auxp)
270 1.1 scottr struct device *parent;
271 1.1 scottr struct cfdata *match;
272 1.1 scottr void *auxp;
273 1.1 scottr {
274 1.1 scottr int matched;
275 1.1 scottr #ifdef _LKM
276 1.1 scottr int iwmErr;
277 1.1 scottr #endif
278 1.1 scottr extern u_long IOBase; /* from mac68k/machdep.c */
279 1.1 scottr extern u_long IWMBase;
280 1.1 scottr
281 1.1 scottr if (0 == map_iwm_base(IOBase)) {
282 1.1 scottr /*
283 1.1 scottr * Unknown machine HW:
284 1.1 scottr * The SWIM II/III chips that are present in post-Q700
285 1.1 scottr * '040 Macs have dropped the IWM register structure.
286 1.1 scottr * We know next to nothing about the SWIM.
287 1.1 scottr */
288 1.1 scottr matched = 0;
289 1.7 scottr if (TRACE_CONFIG)
290 1.7 scottr printf("IWM or SWIM not found: Unknown location (SWIM II?).\n");
291 1.1 scottr } else {
292 1.1 scottr matched = 1;
293 1.1 scottr if (TRACE_CONFIG) {
294 1.1 scottr printf("iwm: IWMBase mapped to 0x%lx in VM.\n",
295 1.1 scottr IWMBase);
296 1.1 scottr }
297 1.1 scottr #ifdef _LKM
298 1.1 scottr iwmErr = iwmInit();
299 1.1 scottr if (TRACE_CONFIG)
300 1.1 scottr printf("initIWM() says %d.\n", iwmErr);
301 1.1 scottr matched = (iwmErr == 0) ? 1 : 0;
302 1.1 scottr #endif
303 1.1 scottr }
304 1.1 scottr return matched;
305 1.1 scottr }
306 1.1 scottr
307 1.1 scottr
308 1.1 scottr /*
309 1.1 scottr * iwm_attach
310 1.1 scottr *
311 1.1 scottr * The IWM is present, initialize it. Then look up the connected drives
312 1.1 scottr * and attach them.
313 1.1 scottr */
314 1.1 scottr void
315 1.1 scottr iwm_attach(parent, self, auxp)
316 1.1 scottr struct device *parent;
317 1.1 scottr struct device *self;
318 1.1 scottr void *auxp;
319 1.1 scottr {
320 1.1 scottr int iwmErr;
321 1.1 scottr iwm_softc_t *iwm;
322 1.1 scottr iwmAttachArgs_t ia;
323 1.1 scottr
324 1.1 scottr printf(": Apple GCR floppy disk controller\n");
325 1.1 scottr iwm = (iwm_softc_t *)self;
326 1.1 scottr
327 1.1 scottr iwmErr = iwmInit();
328 1.1 scottr if (TRACE_CONFIG)
329 1.1 scottr printf("initIWM() says %d.\n", iwmErr);
330 1.1 scottr
331 1.1 scottr if (0 == iwmErr) {
332 1.1 scottr /* Set up the IWM softc */
333 1.1 scottr iwm->maxRetries = 10;
334 1.1 scottr
335 1.1 scottr /* Look for attached drives */
336 1.1 scottr for (ia.unit = 0; ia.unit < IWM_MAX_DRIVE; ia.unit++) {
337 1.1 scottr iwm->fd[ia.unit] = NULL;
338 1.1 scottr ia.driveType = getFDType(ia.unit);
339 1.1 scottr if (NULL != ia.driveType)
340 1.26 drochner config_found(self, (void *)&ia,
341 1.26 drochner fd_print);
342 1.1 scottr }
343 1.1 scottr if (TRACE_CONFIG)
344 1.1 scottr printf("iwm: Initialization completed.\n");
345 1.1 scottr } else {
346 1.2 scottr printf("iwm: Chip revision not supported (%d)\n", iwmErr);
347 1.1 scottr }
348 1.1 scottr }
349 1.1 scottr
350 1.1 scottr
351 1.1 scottr /*
352 1.1 scottr * iwm_print -- print device configuration.
353 1.1 scottr *
354 1.2 scottr * If the device is not configured 'controller' it is NULL and
355 1.2 scottr * we print a message in the *Attach routine; the return value
356 1.2 scottr * of *Print() is ignored.
357 1.1 scottr */
358 1.1 scottr int
359 1.1 scottr iwm_print(auxp, controller)
360 1.1 scottr void *auxp;
361 1.1 scottr const char *controller;
362 1.1 scottr {
363 1.1 scottr return UNCONF;
364 1.1 scottr }
365 1.1 scottr
366 1.2 scottr
367 1.1 scottr /*
368 1.1 scottr * map_iwm_base
369 1.1 scottr *
370 1.1 scottr * Map physical IO address of IWM to VM address
371 1.1 scottr */
372 1.1 scottr static int
373 1.2 scottr map_iwm_base(base)
374 1.2 scottr vm_offset_t base;
375 1.1 scottr {
376 1.1 scottr int known;
377 1.1 scottr extern u_long IWMBase;
378 1.1 scottr
379 1.1 scottr switch (current_mac_model->class) {
380 1.1 scottr case MACH_CLASSQ:
381 1.1 scottr case MACH_CLASSQ2:
382 1.1 scottr case MACH_CLASSP580:
383 1.1 scottr IWMBase = base + 0x1E000;
384 1.1 scottr known = 1;
385 1.1 scottr break;
386 1.1 scottr case MACH_CLASSII:
387 1.1 scottr case MACH_CLASSPB:
388 1.1 scottr case MACH_CLASSDUO:
389 1.1 scottr case MACH_CLASSIIci:
390 1.1 scottr case MACH_CLASSIIsi:
391 1.1 scottr case MACH_CLASSIIvx:
392 1.1 scottr case MACH_CLASSLC:
393 1.1 scottr IWMBase = base + 0x16000;
394 1.1 scottr known = 1;
395 1.1 scottr break;
396 1.1 scottr case MACH_CLASSIIfx:
397 1.1 scottr case MACH_CLASSAV:
398 1.1 scottr default:
399 1.2 scottr /*
400 1.2 scottr * Neither IIfx/Q9[05]0 style IOP controllers nor
401 1.2 scottr * Q[68]40AV DMA based controllers are supported.
402 1.2 scottr */
403 1.7 scottr if (TRACE_CONFIG)
404 1.7 scottr printf("Unknown floppy controller chip.\n");
405 1.1 scottr IWMBase = 0L;
406 1.1 scottr known = 0;
407 1.1 scottr break;
408 1.1 scottr }
409 1.1 scottr return known;
410 1.1 scottr }
411 1.1 scottr
412 1.1 scottr
413 1.1 scottr /*** Configure Sony disk drive(s) ***/
414 1.1 scottr
415 1.1 scottr /*
416 1.1 scottr * fd_match
417 1.1 scottr */
418 1.1 scottr int
419 1.1 scottr fd_match(parent, match, auxp)
420 1.1 scottr struct device *parent;
421 1.1 scottr struct cfdata *match;
422 1.1 scottr void *auxp;
423 1.1 scottr {
424 1.1 scottr int matched, cfUnit;
425 1.1 scottr struct cfdata *cfp;
426 1.1 scottr iwmAttachArgs_t *fdParams;
427 1.1 scottr
428 1.1 scottr cfp = match;
429 1.1 scottr fdParams = (iwmAttachArgs_t *)auxp;
430 1.1 scottr cfUnit = cfp->cf_loc[0];
431 1.1 scottr matched = (cfUnit == fdParams->unit || cfUnit == -1) ? 1 : 0;
432 1.1 scottr if (TRACE_CONFIG) {
433 1.1 scottr printf("fdMatch() drive %d ? cfUnit = %d\n",
434 1.1 scottr fdParams->unit, cfp->cf_loc[0]);
435 1.1 scottr }
436 1.1 scottr return matched;
437 1.1 scottr }
438 1.1 scottr
439 1.1 scottr
440 1.1 scottr /*
441 1.1 scottr * fd_attach
442 1.1 scottr *
443 1.1 scottr * We have checked that the IWM is fine and the drive is present,
444 1.1 scottr * so we can attach it.
445 1.1 scottr */
446 1.1 scottr void
447 1.1 scottr fd_attach(parent, self, auxp)
448 1.1 scottr struct device *parent;
449 1.1 scottr struct device *self;
450 1.1 scottr void *auxp;
451 1.1 scottr {
452 1.1 scottr iwm_softc_t *iwm;
453 1.1 scottr fd_softc_t *fd;
454 1.1 scottr iwmAttachArgs_t *ia;
455 1.1 scottr int driveInfo;
456 1.1 scottr
457 1.1 scottr iwm = (iwm_softc_t *)parent;
458 1.1 scottr fd = (fd_softc_t *)self;
459 1.1 scottr ia = (iwmAttachArgs_t *)auxp;
460 1.1 scottr
461 1.1 scottr driveInfo = iwmCheckDrive(ia->unit);
462 1.1 scottr
463 1.1 scottr fd->currentType = ia->driveType;
464 1.1 scottr fd->unit = ia->unit;
465 1.2 scottr fd->defaultType = &fdTypes[IWM_800K_GCR];
466 1.1 scottr fd->stepDirection = 0;
467 1.1 scottr
468 1.1 scottr iwm->fd[ia->unit] = fd; /* iwm has ptr to this drive */
469 1.1 scottr iwm->drives++;
470 1.5 ender
471 1.12 hannken bufq_alloc(&fd->bufQueue, BUFQ_DISKSORT|BUFQ_SORT_CYLINDER);
472 1.8 thorpej callout_init(&fd->motor_ch);
473 1.5 ender
474 1.1 scottr printf(" drive %d: ", fd->unit);
475 1.1 scottr
476 1.1 scottr if (IWM_NO_DISK & driveInfo) {
477 1.1 scottr printf("(drive empty)\n");
478 1.1 scottr } else
479 1.1 scottr if (!(IWM_DD_DISK & driveInfo)) {
480 1.1 scottr printf("(HD disk -- not supported)\n");
481 1.1 scottr iwmDiskEject(fd->unit); /* XXX */
482 1.1 scottr } else {
483 1.1 scottr printf("%s %d cyl, %d head(s)\n",
484 1.1 scottr fd->currentType->description,
485 1.1 scottr fd->currentType->tracks,
486 1.1 scottr fd->currentType->heads);
487 1.1 scottr }
488 1.1 scottr if (TRACE_CONFIG) {
489 1.1 scottr int reg, flags, spl;
490 1.1 scottr
491 1.1 scottr /* List contents of drive status registers */
492 1.2 scottr spl = spl6();
493 1.1 scottr for (reg = 0; reg < 0x10; reg++) {
494 1.1 scottr flags = iwmQueryDrvFlag(fd->unit, reg);
495 1.1 scottr printf("iwm: Drive register 0x%x = 0x%x\n", reg, flags);
496 1.1 scottr }
497 1.1 scottr splx(spl);
498 1.1 scottr }
499 1.1 scottr fd->diskInfo.dk_name = fd->devInfo.dv_xname;
500 1.1 scottr fd->diskInfo.dk_driver = &fd_dkDriver;
501 1.1 scottr disk_attach(&fd->diskInfo);
502 1.1 scottr }
503 1.1 scottr
504 1.1 scottr
505 1.1 scottr /*
506 1.1 scottr * fdPrint -- print device configuration.
507 1.1 scottr *
508 1.1 scottr * If the device is not configured 'controller' refers to a name string
509 1.1 scottr * we print here.
510 1.1 scottr * Else it is NULL and we print a message in the *Attach routine; the
511 1.1 scottr * return value of *Print() is ignored.
512 1.1 scottr */
513 1.1 scottr int
514 1.1 scottr fd_print(auxp, controller)
515 1.1 scottr void *auxp;
516 1.1 scottr const char *controller;
517 1.1 scottr {
518 1.1 scottr iwmAttachArgs_t *ia;
519 1.1 scottr
520 1.1 scottr ia = (iwmAttachArgs_t *)auxp;
521 1.1 scottr if (NULL != controller)
522 1.20 thorpej aprint_normal("fd%d at %s", ia->unit, controller);
523 1.1 scottr return UNCONF;
524 1.1 scottr }
525 1.1 scottr
526 1.1 scottr
527 1.1 scottr #ifdef _LKM
528 1.1 scottr
529 1.1 scottr static iwm_softc_t *iwm;
530 1.1 scottr
531 1.1 scottr /*
532 1.1 scottr * fd_mod_init
533 1.1 scottr *
534 1.1 scottr * Any initializations necessary after loading the module happen here.
535 1.1 scottr */
536 1.1 scottr int
537 1.1 scottr fd_mod_init(void)
538 1.1 scottr {
539 1.1 scottr int err;
540 1.1 scottr
541 1.1 scottr iwm = (iwm_softc_t *)malloc(sizeof(iwm_softc_t), M_DEVBUF, M_WAITOK);
542 1.1 scottr
543 1.1 scottr err = (1 == iwm_match(NULL, NULL, NULL)) ? 0 : EIO;
544 1.1 scottr if (!err) {
545 1.2 scottr memset(iwm, 0, sizeof(iwm_softc_t));
546 1.1 scottr iwm->maxRetries = 10;
547 1.1 scottr err = (0 == probe_fd()) ? 0 : EIO;
548 1.1 scottr }
549 1.1 scottr return err;
550 1.1 scottr }
551 1.1 scottr
552 1.1 scottr
553 1.1 scottr /*
554 1.1 scottr * fd_mod_free
555 1.1 scottr *
556 1.1 scottr * Necessary clean-up before unloading the module.
557 1.1 scottr */
558 1.1 scottr void
559 1.1 scottr fd_mod_free(void)
560 1.1 scottr {
561 1.1 scottr int unit, spl;
562 1.1 scottr
563 1.1 scottr spl = splbio();
564 1.1 scottr /* Release any allocated memory */
565 1.1 scottr for (unit = 0; unit < IWM_MAX_DRIVE; unit++)
566 1.1 scottr if (iwm->fd[unit] != NULL) {
567 1.1 scottr /*
568 1.1 scottr * Let's hope there is only one task per drive,
569 1.9 jdolecek * see callout(9).
570 1.1 scottr */
571 1.9 jdolecek callout_stop(&iwm->fd[unit]->motor_ch);
572 1.1 scottr disk_detach(&iwm->fd[unit]->diskInfo);
573 1.1 scottr free(iwm->fd[unit], M_DEVBUF);
574 1.1 scottr iwm->fd[unit] = NULL;
575 1.1 scottr }
576 1.1 scottr free(iwm, M_DEVBUF);
577 1.1 scottr splx(spl);
578 1.1 scottr }
579 1.1 scottr
580 1.1 scottr
581 1.1 scottr /*
582 1.1 scottr * probe_fd
583 1.1 scottr *
584 1.1 scottr * See if there are any drives out there and configure them.
585 1.1 scottr * If we find a drive we allocate a softc structure for it and
586 1.1 scottr * insert its address into the iwm_softc.
587 1.1 scottr *
588 1.1 scottr * XXX Merge the remainder of probeFD() with the autoconfig framework.
589 1.1 scottr */
590 1.1 scottr static int
591 1.1 scottr probe_fd(void)
592 1.1 scottr {
593 1.1 scottr fd_softc_t *fd;
594 1.1 scottr iwmAttachArgs_t ia;
595 1.1 scottr int err, unit;
596 1.1 scottr
597 1.1 scottr err = 0;
598 1.1 scottr for (ia.unit = 0; ia.unit < IWM_MAX_DRIVE; ia.unit++) {
599 1.1 scottr ia.driveType = getFDType(ia.unit);
600 1.1 scottr if (NULL == ia.driveType) {
601 1.1 scottr iwm->fd[ia.unit] = NULL;
602 1.1 scottr continue;
603 1.1 scottr }
604 1.1 scottr fd = (fd_softc_t *)malloc(sizeof(fd_softc_t),
605 1.1 scottr M_DEVBUF, M_WAITOK);
606 1.1 scottr if (fd == NULL) {
607 1.1 scottr err = ENOMEM;
608 1.1 scottr break;
609 1.1 scottr } else {
610 1.2 scottr memset(fd, 0, sizeof(fd_softc_t));
611 1.1 scottr
612 1.1 scottr /* This is usually set by the autoconfig framework */
613 1.1 scottr sprintf(fd->devInfo.dv_xname, "fd%d%c", ia.unit, 'a');
614 1.1 scottr fd_attach((struct device *)iwm, (struct device *)fd,
615 1.1 scottr &ia);
616 1.1 scottr }
617 1.1 scottr }
618 1.1 scottr if (err) {
619 1.1 scottr /* Release any allocated memory */
620 1.1 scottr for (unit = 0; unit < IWM_MAX_DRIVE; unit++)
621 1.1 scottr if (iwm->fd[unit] != NULL) {
622 1.1 scottr free(iwm->fd[unit], M_DEVBUF);
623 1.1 scottr iwm->fd[unit] = NULL;
624 1.1 scottr }
625 1.1 scottr }
626 1.1 scottr return err;
627 1.1 scottr }
628 1.1 scottr
629 1.1 scottr #endif /* defined _LKM */
630 1.1 scottr
631 1.1 scottr
632 1.1 scottr /**
633 1.1 scottr ** Implementation section of driver interface
634 1.1 scottr **
635 1.1 scottr ** The prototypes for these functions are set up automagically
636 1.1 scottr ** by macros in mac68k/conf.c. Their names are generated from {fd}
637 1.1 scottr ** and {open,close,strategy,dump,size,read,write}. The driver entry
638 1.1 scottr ** points are then plugged into bdevsw[] and cdevsw[].
639 1.1 scottr **/
640 1.1 scottr
641 1.1 scottr
642 1.1 scottr /*
643 1.1 scottr * fdopen
644 1.1 scottr *
645 1.1 scottr * Open a floppy disk device.
646 1.1 scottr */
647 1.1 scottr int
648 1.1 scottr fdopen(dev, flags, devType, proc)
649 1.1 scottr dev_t dev;
650 1.1 scottr int flags;
651 1.1 scottr int devType;
652 1.1 scottr struct proc *proc;
653 1.1 scottr {
654 1.1 scottr fd_softc_t *fd;
655 1.1 scottr fdInfo_t *info;
656 1.1 scottr int partitionMask;
657 1.1 scottr int fdType, fdUnit;
658 1.1 scottr int ierr, err;
659 1.1 scottr #ifndef _LKM
660 1.1 scottr iwm_softc_t *iwm = iwm_cd.cd_devs[0];
661 1.1 scottr #endif
662 1.1 scottr info = NULL; /* XXX shut up egcs */
663 1.25 fredb fd = NULL; /* XXX shut up gcc3 */
664 1.1 scottr
665 1.1 scottr /*
666 1.1 scottr * See <device.h> for struct cfdriver, <disklabel.h> for
667 1.2 scottr * DISKUNIT() and <atari/atari/device.h> for getsoftc().
668 1.1 scottr */
669 1.1 scottr fdType = minor(dev) % MAXPARTITIONS;
670 1.1 scottr fdUnit = minor(dev) / MAXPARTITIONS;
671 1.1 scottr if (TRACE_OPEN)
672 1.1 scottr printf("iwm: Open drive %d", fdUnit);
673 1.1 scottr
674 1.1 scottr /* Check if device # is valid */
675 1.1 scottr err = (iwm->drives < fdUnit) ? ENXIO : 0;
676 1.1 scottr if (!err) {
677 1.1 scottr (void)iwmSelectDrive(fdUnit);
678 1.1 scottr if (TRACE_OPEN)
679 1.1 scottr printf(".\n Get softc");
680 1.1 scottr
681 1.1 scottr /* Get fd state */
682 1.1 scottr fd = iwm->fd[fdUnit];
683 1.1 scottr err = (NULL == fd) ? ENXIO : 0;
684 1.1 scottr }
685 1.1 scottr if (!err) {
686 1.1 scottr if (fd->state & IWM_FD_IS_OPEN) {
687 1.1 scottr /*
688 1.1 scottr * Allow multiple open calls only if for identical
689 1.1 scottr * floppy format.
690 1.1 scottr */
691 1.1 scottr if (TRACE_OPEN)
692 1.1 scottr printf(".\n Drive already opened!\n");
693 1.1 scottr err = (fd->partition == fdType) ? 0 : ENXIO;
694 1.1 scottr } else {
695 1.1 scottr if (TRACE_OPEN)
696 1.1 scottr printf(".\n Get format info");
697 1.1 scottr
698 1.1 scottr /* Get format type */
699 1.1 scottr info = fdDeviceToType(fd, dev);
700 1.1 scottr if (NULL == info) {
701 1.1 scottr err = ENXIO;
702 1.1 scottr if (TRACE_OPEN)
703 1.1 scottr printf(".\n No such drive.\n");
704 1.1 scottr }
705 1.1 scottr }
706 1.1 scottr }
707 1.1 scottr if (!err && !(fd->state & IWM_FD_IS_OPEN)) {
708 1.1 scottr if (TRACE_OPEN)
709 1.1 scottr printf(".\n Set diskInfo flags.\n");
710 1.1 scottr
711 1.2 scottr fd->writeLabel = 0; /* XXX currently unused */
712 1.1 scottr fd->partition = fdType;
713 1.1 scottr fd->currentType = info;
714 1.1 scottr fd->drvFlags = iwmCheckDrive(fd->unit);
715 1.1 scottr
716 1.1 scottr if (fd->drvFlags & IWM_NO_DISK) {
717 1.1 scottr err = EIO;
718 1.1 scottr #ifdef DIAGNOSTIC
719 1.1 scottr printf(" Drive %d is empty.\n", fd->unit);
720 1.1 scottr #endif
721 1.2 scottr } else {
722 1.21 wiz if (!(fd->drvFlags & IWM_WRITABLE) && (flags & FWRITE)) {
723 1.2 scottr
724 1.1 scottr err = EPERM;
725 1.1 scottr #ifdef DIAGNOSTIC
726 1.1 scottr printf(" Disk is write protected.\n");
727 1.1 scottr #endif
728 1.2 scottr } else {
729 1.1 scottr if (!(fd->drvFlags & IWM_DD_DISK)) {
730 1.1 scottr err = ENXIO;
731 1.1 scottr #ifdef DIAGNOSTIC
732 1.1 scottr printf(" HD format not supported.\n");
733 1.1 scottr #endif
734 1.1 scottr (void)iwmDiskEject(fd->unit);
735 1.2 scottr } else {
736 1.1 scottr /* We're open now! */
737 1.1 scottr fd->state |= IWM_FD_IS_OPEN;
738 1.2 scottr err = initCylinderCache(fd);
739 1.2 scottr }
740 1.2 scottr }
741 1.2 scottr }
742 1.1 scottr }
743 1.1 scottr if (!err) {
744 1.1 scottr /*
745 1.1 scottr * Later, we might not want to recalibrate the drive when it
746 1.1 scottr * is already open. For now, it doesn't hurt.
747 1.1 scottr */
748 1.1 scottr if (TRACE_OPEN)
749 1.1 scottr printf(" Seek track 00 says");
750 1.1 scottr
751 1.2 scottr memset(&fd->pos, 0, sizeof(diskPosition_t));
752 1.2 scottr ierr = seek(fd, IWM_SEEK_RECAL);
753 1.1 scottr if (TRACE_OPEN)
754 1.1 scottr printf(" %d.\n", ierr);
755 1.2 scottr err = (0 == ierr) ? 0 : EIO;
756 1.1 scottr }
757 1.1 scottr if (!err) {
758 1.1 scottr /*
759 1.1 scottr * Update disklabel if we are not yet open.
760 1.1 scottr * (We shouldn't be: We are synchronous.)
761 1.1 scottr */
762 1.1 scottr if (fd->diskInfo.dk_openmask == 0)
763 1.1 scottr fdGetDiskLabel(fd, dev);
764 1.1 scottr
765 1.1 scottr partitionMask = (1 << fdType);
766 1.1 scottr
767 1.1 scottr switch (devType) {
768 1.1 scottr case S_IFCHR:
769 1.1 scottr fd->diskInfo.dk_copenmask |= partitionMask;
770 1.1 scottr break;
771 1.1 scottr
772 1.1 scottr case S_IFBLK:
773 1.1 scottr fd->diskInfo.dk_bopenmask |= partitionMask;
774 1.1 scottr break;
775 1.1 scottr }
776 1.1 scottr fd->diskInfo.dk_openmask =
777 1.1 scottr fd->diskInfo.dk_copenmask | fd->diskInfo.dk_bopenmask;
778 1.1 scottr }
779 1.1 scottr if (TRACE_OPEN)
780 1.1 scottr printf("iwm: fdopen() says %d.\n", err);
781 1.1 scottr return err;
782 1.1 scottr }
783 1.1 scottr
784 1.1 scottr
785 1.1 scottr /*
786 1.1 scottr * fdclose
787 1.1 scottr */
788 1.1 scottr int
789 1.1 scottr fdclose(dev, flags, devType, proc)
790 1.1 scottr dev_t dev;
791 1.1 scottr int flags;
792 1.1 scottr int devType;
793 1.1 scottr struct proc *proc;
794 1.1 scottr {
795 1.1 scottr fd_softc_t *fd;
796 1.1 scottr int partitionMask, fdUnit, fdType;
797 1.1 scottr #ifndef _LKM
798 1.1 scottr iwm_softc_t *iwm = iwm_cd.cd_devs[0];
799 1.1 scottr #endif
800 1.1 scottr
801 1.1 scottr if (TRACE_CLOSE)
802 1.1 scottr printf("iwm: Closing driver.");
803 1.1 scottr fdUnit = minor(dev) / MAXPARTITIONS;
804 1.1 scottr fdType = minor(dev) % MAXPARTITIONS;
805 1.1 scottr fd = iwm->fd[fdUnit];
806 1.2 scottr /* release cylinder cache memory */
807 1.2 scottr if (fd->cbuf != NULL)
808 1.2 scottr free(fd->cbuf, M_DEVBUF);
809 1.2 scottr
810 1.1 scottr partitionMask = (1 << fdType);
811 1.1 scottr
812 1.1 scottr /* Set state flag. */
813 1.1 scottr fd->state &= ~IWM_FD_IS_OPEN;
814 1.1 scottr
815 1.1 scottr switch (devType) {
816 1.1 scottr case S_IFCHR:
817 1.1 scottr fd->diskInfo.dk_copenmask &= ~partitionMask;
818 1.1 scottr break;
819 1.1 scottr
820 1.1 scottr case S_IFBLK:
821 1.1 scottr fd->diskInfo.dk_bopenmask &= ~partitionMask;
822 1.1 scottr break;
823 1.1 scottr }
824 1.1 scottr fd->diskInfo.dk_openmask =
825 1.1 scottr fd->diskInfo.dk_copenmask | fd->diskInfo.dk_bopenmask;
826 1.1 scottr return 0;
827 1.1 scottr }
828 1.1 scottr
829 1.1 scottr
830 1.1 scottr /*
831 1.1 scottr * fdioctl
832 1.1 scottr *
833 1.1 scottr * We deal with all the disk-specific ioctls in <sys/dkio.h> here even if
834 1.1 scottr * we do not support them.
835 1.1 scottr */
836 1.1 scottr int
837 1.1 scottr fdioctl(dev, cmd, data, flags, proc)
838 1.1 scottr dev_t dev;
839 1.1 scottr u_long cmd;
840 1.1 scottr caddr_t data;
841 1.1 scottr int flags;
842 1.1 scottr struct proc *proc;
843 1.1 scottr {
844 1.1 scottr int result, fdUnit, fdType;
845 1.1 scottr fd_softc_t *fd;
846 1.1 scottr #ifndef _LKM
847 1.1 scottr iwm_softc_t *iwm = iwm_cd.cd_devs[0];
848 1.1 scottr #endif
849 1.1 scottr
850 1.1 scottr if (TRACE_IOCTL)
851 1.1 scottr printf("iwm: Execute ioctl... ");
852 1.1 scottr
853 1.1 scottr /* Check if device # is valid and get its softc */
854 1.1 scottr fdUnit = minor(dev) / MAXPARTITIONS;
855 1.1 scottr fdType = minor(dev) % MAXPARTITIONS;
856 1.1 scottr if (fdUnit >= iwm->drives) {
857 1.1 scottr if (TRACE_IOCTL) {
858 1.1 scottr printf("iwm: Wanted device no (%d) is >= %d.\n",
859 1.1 scottr fdUnit, iwm->drives);
860 1.1 scottr }
861 1.1 scottr return ENXIO;
862 1.1 scottr }
863 1.1 scottr fd = iwm->fd[fdUnit];
864 1.1 scottr result = 0;
865 1.1 scottr
866 1.1 scottr switch (cmd) {
867 1.1 scottr case DIOCGDINFO:
868 1.1 scottr if (TRACE_IOCTL)
869 1.1 scottr printf(" DIOCGDINFO: Get in-core disklabel.\n");
870 1.1 scottr *(struct disklabel *) data = *(fd->diskInfo.dk_label);
871 1.1 scottr result = 0;
872 1.1 scottr break;
873 1.1 scottr
874 1.1 scottr case DIOCSDINFO:
875 1.1 scottr if (TRACE_IOCTL)
876 1.1 scottr printf(" DIOCSDINFO: Set in-core disklabel.\n");
877 1.1 scottr result = ((flags & FWRITE) == 0) ? EBADF : 0;
878 1.1 scottr if (result == 0)
879 1.1 scottr result = setdisklabel(fd->diskInfo.dk_label,
880 1.1 scottr (struct disklabel *)data, 0,
881 1.1 scottr fd->diskInfo.dk_cpulabel);
882 1.1 scottr break;
883 1.1 scottr
884 1.1 scottr case DIOCWDINFO:
885 1.1 scottr if (TRACE_IOCTL)
886 1.1 scottr printf(" DIOCWDINFO: Set in-core disklabel "
887 1.1 scottr "& update disk.\n");
888 1.1 scottr result = ((flags & FWRITE) == 0) ? EBADF : 0;
889 1.1 scottr
890 1.1 scottr if (result == 0)
891 1.1 scottr result = setdisklabel(fd->diskInfo.dk_label,
892 1.1 scottr (struct disklabel *)data, 0,
893 1.1 scottr fd->diskInfo.dk_cpulabel);
894 1.1 scottr if (result == 0)
895 1.1 scottr result = writedisklabel(dev, fdstrategy,
896 1.1 scottr fd->diskInfo.dk_label,
897 1.1 scottr fd->diskInfo.dk_cpulabel);
898 1.1 scottr break;
899 1.1 scottr
900 1.1 scottr case DIOCGPART:
901 1.1 scottr if (TRACE_IOCTL)
902 1.1 scottr printf(" DIOCGPART: Get disklabel & partition table.\n");
903 1.1 scottr ((struct partinfo *)data)->disklab = fd->diskInfo.dk_label;
904 1.1 scottr ((struct partinfo *)data)->part =
905 1.1 scottr &fd->diskInfo.dk_label->d_partitions[fdType];
906 1.1 scottr result = 0;
907 1.1 scottr break;
908 1.1 scottr
909 1.1 scottr case DIOCRFORMAT:
910 1.1 scottr case DIOCWFORMAT:
911 1.1 scottr if (TRACE_IOCTL)
912 1.1 scottr printf(" DIOC{R,W}FORMAT: No formatter support (yet?).\n");
913 1.1 scottr result = EINVAL;
914 1.1 scottr break;
915 1.1 scottr
916 1.1 scottr case DIOCSSTEP:
917 1.1 scottr if (TRACE_IOCTL)
918 1.1 scottr printf(" DIOCSSTEP: IWM does step handshake.\n");
919 1.1 scottr result = EINVAL;
920 1.1 scottr break;
921 1.1 scottr
922 1.1 scottr case DIOCSRETRIES:
923 1.1 scottr if (TRACE_IOCTL)
924 1.1 scottr printf(" DIOCSRETRIES: Set max. # of retries.\n");
925 1.1 scottr if (*(int *)data < 0)
926 1.1 scottr result = EINVAL;
927 1.1 scottr else {
928 1.1 scottr iwm->maxRetries = *(int *)data;
929 1.1 scottr result = 0;
930 1.1 scottr }
931 1.1 scottr break;
932 1.1 scottr
933 1.1 scottr case DIOCWLABEL:
934 1.1 scottr if (TRACE_IOCTL)
935 1.1 scottr printf(" DIOCWLABEL: Set write access to disklabel.\n");
936 1.1 scottr result = ((flags & FWRITE) == 0) ? EBADF : 0;
937 1.1 scottr
938 1.1 scottr if (result == 0)
939 1.1 scottr fd->writeLabel = *(int *)data;
940 1.1 scottr break;
941 1.1 scottr
942 1.1 scottr case DIOCSBAD:
943 1.1 scottr if (TRACE_IOCTL)
944 1.1 scottr printf(" DIOCSBAD: No bad144-style handling.\n");
945 1.1 scottr result = EINVAL;
946 1.1 scottr break;
947 1.1 scottr
948 1.2 scottr case ODIOCEJECT:
949 1.1 scottr case DIOCEJECT:
950 1.1 scottr /* XXX Eject disk only when unlocked */
951 1.1 scottr if (TRACE_IOCTL)
952 1.1 scottr printf(" DIOCEJECT: Eject disk from unit %d.\n",
953 1.1 scottr fd->unit);
954 1.1 scottr result = iwmDiskEject(fd->unit);
955 1.1 scottr break;
956 1.1 scottr
957 1.1 scottr case DIOCLOCK:
958 1.1 scottr /* XXX Use lock to prevent ejectimg a mounted disk */
959 1.1 scottr if (TRACE_IOCTL)
960 1.1 scottr printf(" DIOCLOCK: No need to (un)lock Sony drive.\n");
961 1.1 scottr result = 0;
962 1.1 scottr break;
963 1.1 scottr
964 1.1 scottr default:
965 1.1 scottr if (TRACE_IOCTL)
966 1.1 scottr printf(" Not a disk related ioctl!\n");
967 1.1 scottr result = ENOTTY;
968 1.1 scottr break;
969 1.1 scottr }
970 1.1 scottr return result;
971 1.1 scottr }
972 1.1 scottr
973 1.1 scottr
974 1.1 scottr /*
975 1.1 scottr * fdread
976 1.1 scottr */
977 1.1 scottr int
978 1.1 scottr fdread(dev, uio, flags)
979 1.1 scottr dev_t dev;
980 1.1 scottr struct uio *uio;
981 1.1 scottr int flags;
982 1.1 scottr {
983 1.2 scottr return physio(fdstrategy, NULL, dev, B_READ, minphys, uio);
984 1.1 scottr }
985 1.1 scottr
986 1.1 scottr
987 1.1 scottr /*
988 1.1 scottr * fdwrite
989 1.1 scottr */
990 1.1 scottr int
991 1.1 scottr fdwrite(dev, uio, flags)
992 1.1 scottr dev_t dev;
993 1.1 scottr struct uio *uio;
994 1.1 scottr int flags;
995 1.1 scottr {
996 1.2 scottr return physio(fdstrategy, NULL, dev, B_WRITE, minphys, uio);
997 1.1 scottr }
998 1.1 scottr
999 1.1 scottr
1000 1.1 scottr /*
1001 1.2 scottr * fdstrategy
1002 1.1 scottr *
1003 1.2 scottr * Entry point for read and write requests. The strategy routine usually
1004 1.2 scottr * queues io requests and kicks off the next transfer if the device is idle;
1005 1.2 scottr * but we get no interrupts from the IWM and have to do synchronous
1006 1.2 scottr * transfers - no queue.
1007 1.1 scottr */
1008 1.2 scottr void
1009 1.2 scottr fdstrategy(bp)
1010 1.2 scottr struct buf *bp;
1011 1.2 scottr {
1012 1.2 scottr int fdUnit, err, done, spl;
1013 1.2 scottr int sectSize, transferSize;
1014 1.2 scottr diskPosition_t physDiskLoc;
1015 1.1 scottr fd_softc_t *fd;
1016 1.1 scottr #ifndef _LKM
1017 1.1 scottr iwm_softc_t *iwm = iwm_cd.cd_devs[0];
1018 1.1 scottr #endif
1019 1.1 scottr
1020 1.2 scottr err = 0;
1021 1.2 scottr done = 0;
1022 1.25 fredb sectSize = 0; /* XXX shut up gcc3 */
1023 1.25 fredb fd = NULL; /* XXX shut up gcc3 */
1024 1.1 scottr
1025 1.2 scottr fdUnit = minor(bp->b_dev) / MAXPARTITIONS;
1026 1.2 scottr if (TRACE_STRAT) {
1027 1.2 scottr printf("iwm: fdstrategy()...\n");
1028 1.2 scottr printf(" struct buf is at %p\n", bp);
1029 1.2 scottr printf(" Allocated buffer size (b_bufsize): 0x0%lx\n",
1030 1.2 scottr bp->b_bufsize);
1031 1.10 thorpej printf(" Base address of buffer (b_data): %p\n",
1032 1.10 thorpej bp->b_data);
1033 1.2 scottr printf(" Bytes to be transferred (b_bcount): 0x0%lx\n",
1034 1.2 scottr bp->b_bcount);
1035 1.2 scottr printf(" Remaining I/O (b_resid): 0x0%lx\n",
1036 1.2 scottr bp->b_resid);
1037 1.1 scottr }
1038 1.2 scottr /* Check for valid fd unit, controller and io request */
1039 1.1 scottr
1040 1.2 scottr if (fdUnit >= iwm->drives) {
1041 1.1 scottr if (TRACE_STRAT)
1042 1.2 scottr printf(" No such unit (%d)\n", fdUnit);
1043 1.2 scottr err = EINVAL;
1044 1.2 scottr }
1045 1.2 scottr if (!err) {
1046 1.2 scottr fd = iwm->fd[fdUnit];
1047 1.2 scottr err = (NULL == fd) ? EINVAL : 0;
1048 1.2 scottr }
1049 1.2 scottr if (!err) {
1050 1.2 scottr sectSize = fd->currentType->sectorSize;
1051 1.2 scottr if (bp->b_blkno < 0
1052 1.2 scottr || (bp->b_bcount % sectSize) != 0) {
1053 1.1 scottr if (TRACE_STRAT)
1054 1.2 scottr printf(" Illegal transfer size: "
1055 1.22 jdolecek "block %lld, %ld bytes\n",
1056 1.22 jdolecek (long long) bp->b_blkno, bp->b_bcount);
1057 1.2 scottr err = EINVAL;
1058 1.2 scottr }
1059 1.2 scottr }
1060 1.2 scottr if (!err) {
1061 1.2 scottr /* Null transfer: Return, nothing to do. */
1062 1.2 scottr if (0 == bp->b_bcount) {
1063 1.1 scottr if (TRACE_STRAT)
1064 1.2 scottr printf(" Zero transfer length.\n");
1065 1.2 scottr done = 1;
1066 1.2 scottr }
1067 1.2 scottr }
1068 1.2 scottr if (!err && !done) {
1069 1.2 scottr /* What to do if we touch the boundaries of the disk? */
1070 1.2 scottr transferSize = (bp->b_bcount + (sectSize - 1)) / sectSize;
1071 1.2 scottr if (bp->b_blkno + transferSize > fd->currentType->secPerDisk) {
1072 1.2 scottr if (TRACE_STRAT) {
1073 1.2 scottr printf("iwm: Transfer beyond end of disk!\n" \
1074 1.22 jdolecek " (Starting block %lld, # of blocks %d," \
1075 1.2 scottr " last disk block %d).\n",
1076 1.22 jdolecek (long long) bp->b_blkno, transferSize,
1077 1.2 scottr fd->currentType->secPerDisk);
1078 1.2 scottr }
1079 1.2 scottr /* Return EOF if we are exactly at the end of the
1080 1.2 scottr * disk, EINVAL if we try to reach past the end; else
1081 1.2 scottr * truncate the request. */
1082 1.2 scottr transferSize = fd->currentType->secPerDisk -
1083 1.2 scottr bp->b_blkno;
1084 1.2 scottr if (0 == transferSize) {
1085 1.2 scottr bp->b_resid = bp->b_bcount;
1086 1.2 scottr done = 1;
1087 1.2 scottr } else
1088 1.2 scottr if (0 > transferSize)
1089 1.2 scottr err = EINVAL;
1090 1.2 scottr else
1091 1.2 scottr bp->b_bcount = transferSize << DEV_BSHIFT;
1092 1.2 scottr }
1093 1.2 scottr }
1094 1.2 scottr if (!err && !done) {
1095 1.2 scottr /*
1096 1.2 scottr * Calculate cylinder # for disksort().
1097 1.2 scottr *
1098 1.2 scottr * XXX Shouldn't we use the (fake) logical cyl no here?
1099 1.2 scottr */
1100 1.2 scottr remap_geometry(bp->b_blkno, fd->currentType->heads,
1101 1.2 scottr &physDiskLoc);
1102 1.6 thorpej bp->b_rawblkno = bp->b_blkno;
1103 1.2 scottr bp->b_cylinder = physDiskLoc.track;
1104 1.2 scottr
1105 1.2 scottr if (TRACE_STRAT) {
1106 1.22 jdolecek printf(" This job starts at b_blkno %lld; ",
1107 1.22 jdolecek (long long) bp->b_blkno);
1108 1.2 scottr printf("it gets sorted for cylinder # %ld.\n",
1109 1.2 scottr bp->b_cylinder);
1110 1.2 scottr }
1111 1.2 scottr spl = splbio();
1112 1.8 thorpej callout_stop(&fd->motor_ch);
1113 1.12 hannken BUFQ_PUT(&fd->bufQueue, bp);
1114 1.4 thorpej if (fd->sc_active == 0)
1115 1.2 scottr fdstart(fd);
1116 1.2 scottr splx(spl);
1117 1.2 scottr }
1118 1.2 scottr /* Clean up, if necessary */
1119 1.2 scottr else {
1120 1.2 scottr if (TRACE_STRAT)
1121 1.2 scottr printf(" fdstrategy() finished early, err = %d.\n",
1122 1.2 scottr err);
1123 1.2 scottr if (err) {
1124 1.2 scottr bp->b_error = err;
1125 1.2 scottr bp->b_flags |= B_ERROR;
1126 1.2 scottr }
1127 1.2 scottr bp->b_resid = bp->b_bcount;
1128 1.2 scottr biodone(bp);
1129 1.2 scottr }
1130 1.2 scottr /* Comment on results */
1131 1.2 scottr if (TRACE_STRAT) {
1132 1.2 scottr printf("iwm: fdstrategy() done.\n");
1133 1.2 scottr printf(" We have b_resid = %ld bytes left, " \
1134 1.2 scottr "b_error is %d;\n", bp->b_resid, bp->b_error);
1135 1.2 scottr printf(" b_flags are 0x0%lx.\n", bp->b_flags);
1136 1.2 scottr }
1137 1.2 scottr }
1138 1.2 scottr
1139 1.2 scottr
1140 1.2 scottr
1141 1.2 scottr /* ======================================================================== */
1142 1.2 scottr
1143 1.2 scottr
1144 1.2 scottr /*
1145 1.2 scottr * fdstart
1146 1.2 scottr *
1147 1.2 scottr * we are called from the strategy() routine to perform a data transfer.
1148 1.2 scottr *
1149 1.2 scottr * The disk(9) framework demands we run at splbio(); our caller
1150 1.2 scottr * takes care of that.
1151 1.2 scottr *
1152 1.2 scottr * Wish we had pascalish local functions here...
1153 1.2 scottr */
1154 1.2 scottr
1155 1.2 scottr /* fdstart FSM states */
1156 1.2 scottr enum {
1157 1.2 scottr state_Init = 0,
1158 1.2 scottr state_Seek,
1159 1.2 scottr state_Read,
1160 1.2 scottr state_Write,
1161 1.2 scottr state_Flush,
1162 1.2 scottr state_IOFinish,
1163 1.2 scottr state_IOErr,
1164 1.2 scottr state_Fault,
1165 1.2 scottr state_Exit,
1166 1.2 scottr state_Done
1167 1.2 scottr };
1168 1.2 scottr
1169 1.2 scottr static void
1170 1.2 scottr fdstart(fd)
1171 1.2 scottr fd_softc_t *fd;
1172 1.2 scottr {
1173 1.2 scottr int st;
1174 1.2 scottr
1175 1.2 scottr static char *stateDesc[] = {
1176 1.2 scottr "Init",
1177 1.2 scottr "Seek",
1178 1.2 scottr "Read",
1179 1.2 scottr "Write",
1180 1.2 scottr "Flush",
1181 1.2 scottr "IOFinish",
1182 1.2 scottr "IOErr",
1183 1.2 scottr "Fault",
1184 1.2 scottr "Exit",
1185 1.2 scottr "Done"
1186 1.2 scottr };
1187 1.2 scottr int (*state[])(fd_softc_t *fd) = {
1188 1.2 scottr fdstart_Init,
1189 1.2 scottr fdstart_Seek,
1190 1.2 scottr fdstart_Read,
1191 1.2 scottr fdstart_Write,
1192 1.2 scottr fdstart_Flush,
1193 1.2 scottr fdstart_IOFinish,
1194 1.2 scottr fdstart_IOErr,
1195 1.2 scottr fdstart_Fault,
1196 1.2 scottr fdstart_Exit
1197 1.2 scottr };
1198 1.2 scottr
1199 1.2 scottr st = state_Init;
1200 1.2 scottr do {
1201 1.2 scottr if (TRACE_STRAT)
1202 1.2 scottr printf(" fdstart state %d [%s] ",
1203 1.2 scottr st, stateDesc[st]);
1204 1.2 scottr
1205 1.2 scottr st = (*state[st])(fd);
1206 1.2 scottr
1207 1.2 scottr if (TRACE_STRAT)
1208 1.2 scottr printf(".\n");
1209 1.2 scottr } while (st != state_Done);
1210 1.2 scottr }
1211 1.2 scottr
1212 1.2 scottr
1213 1.2 scottr /*
1214 1.2 scottr * fdstart_Init
1215 1.2 scottr *
1216 1.2 scottr * Set up things
1217 1.2 scottr */
1218 1.2 scottr static int
1219 1.2 scottr fdstart_Init(fd)
1220 1.2 scottr fd_softc_t *fd;
1221 1.2 scottr {
1222 1.2 scottr struct buf *bp;
1223 1.2 scottr
1224 1.2 scottr /*
1225 1.2 scottr * Get the first entry from the queue. This is the buf we gave to
1226 1.2 scottr * fdstrategy(); disksort() put it into our softc.
1227 1.2 scottr */
1228 1.12 hannken bp = BUFQ_PEEK(&fd->bufQueue);
1229 1.2 scottr if (NULL == bp) {
1230 1.2 scottr if (TRACE_STRAT)
1231 1.2 scottr printf("Queue empty: Nothing to do");
1232 1.2 scottr return state_Done;
1233 1.2 scottr }
1234 1.2 scottr fd->ioDirection = bp->b_flags & B_READ;
1235 1.2 scottr
1236 1.2 scottr disk_busy(&fd->diskInfo);
1237 1.2 scottr if (!(fd->state & IWM_FD_MOTOR_ON)) {
1238 1.2 scottr iwmMotor(fd->unit, 1);
1239 1.2 scottr fd->state |= IWM_FD_MOTOR_ON;
1240 1.2 scottr }
1241 1.10 thorpej fd->current_buffer = bp->b_data;
1242 1.2 scottr
1243 1.2 scottr /* XXX - assumes blocks of 512 bytes */
1244 1.2 scottr fd->startBlk = bp->b_blkno;
1245 1.2 scottr
1246 1.2 scottr fd->iwmErr = 0;
1247 1.2 scottr fd->ioRetries = 0; /* XXX */
1248 1.2 scottr fd->seekRetries = 0;
1249 1.2 scottr fd->bytesDone = 0;
1250 1.2 scottr fd->bytesLeft = bp->b_bcount;
1251 1.2 scottr return state_Seek;
1252 1.2 scottr }
1253 1.2 scottr
1254 1.2 scottr
1255 1.2 scottr /*
1256 1.2 scottr * fdstart_Seek
1257 1.2 scottr */
1258 1.2 scottr static int
1259 1.2 scottr fdstart_Seek(fd)
1260 1.2 scottr fd_softc_t *fd;
1261 1.2 scottr {
1262 1.2 scottr int state;
1263 1.2 scottr
1264 1.2 scottr /* Calculate the side/track/sector our block is at. */
1265 1.2 scottr if (TRACE_STRAT)
1266 1.22 jdolecek printf(" Remap block %lld ", (long long) fd->startBlk);
1267 1.2 scottr remap_geometry(fd->startBlk,
1268 1.2 scottr fd->currentType->heads, &fd->pos);
1269 1.2 scottr if (TRACE_STRAT)
1270 1.2 scottr printf("to c%d_h%d_s%d ", fd->pos.track,
1271 1.2 scottr fd->pos.side, fd->pos.sector);
1272 1.2 scottr
1273 1.2 scottr if (fd->cachedSide != fd->pos.side) {
1274 1.2 scottr if (TRACE_STRAT)
1275 1.2 scottr printf(" (invalidate cache) ");
1276 1.2 scottr invalidateCylinderCache(fd);
1277 1.2 scottr fd->cachedSide = fd->pos.side;
1278 1.2 scottr }
1279 1.2 scottr
1280 1.2 scottr /*
1281 1.2 scottr * If necessary, seek to wanted track. Note that
1282 1.2 scottr * seek() performs any necessary retries.
1283 1.2 scottr */
1284 1.2 scottr if (fd->pos.track != fd->pos.oldTrack &&
1285 1.2 scottr 0 != (fd->iwmErr = seek(fd, IWM_SEEK_VANILLA))) {
1286 1.2 scottr state = state_Fault;
1287 1.2 scottr } else {
1288 1.2 scottr state = (fd->ioDirection == IWM_WRITE)
1289 1.2 scottr ? state_Write : state_Read;
1290 1.2 scottr }
1291 1.2 scottr return state;
1292 1.2 scottr }
1293 1.2 scottr
1294 1.2 scottr
1295 1.2 scottr /*
1296 1.2 scottr * fdstart_Read
1297 1.2 scottr *
1298 1.2 scottr * Transfer a sector from disk. Get it from the track cache, if available;
1299 1.2 scottr * otherwise, while we are at it, store in the cache all the sectors we find
1300 1.2 scottr * on the way.
1301 1.2 scottr *
1302 1.2 scottr * Track buffering reads:
1303 1.2 scottr * o Look if the sector is already cached.
1304 1.2 scottr * o Else, read sectors into track cache until we meet the header of
1305 1.2 scottr * the sector we want.
1306 1.2 scottr * o Read that sector directly to fs buffer and return.
1307 1.2 scottr */
1308 1.2 scottr static int
1309 1.2 scottr fdstart_Read(fd)
1310 1.2 scottr fd_softc_t *fd;
1311 1.2 scottr {
1312 1.2 scottr int i;
1313 1.2 scottr diskPosition_t *pos;
1314 1.2 scottr sectorHdr_t *shdr;
1315 1.2 scottr #ifndef _LKM
1316 1.2 scottr iwm_softc_t *iwm = iwm_cd.cd_devs[0];
1317 1.2 scottr #endif
1318 1.2 scottr
1319 1.2 scottr /* Initialize retry counters */
1320 1.2 scottr fd->seekRetries = 0;
1321 1.2 scottr fd->sectRetries = 0;
1322 1.2 scottr pos = &fd->pos;
1323 1.2 scottr shdr = &fd->sHdr;
1324 1.2 scottr
1325 1.2 scottr if (TRACE_STRAT)
1326 1.2 scottr printf("<%s c%d_h%d_s%d> ",
1327 1.2 scottr fd->ioDirection ? "Read" : "Write",
1328 1.2 scottr pos->track, pos->side, pos->sector);
1329 1.2 scottr
1330 1.2 scottr /* Sector already cached? */
1331 1.2 scottr i = pos->sector;
1332 1.2 scottr if (fd->r_slots[i].valid) {
1333 1.2 scottr if (TRACE_STRAT)
1334 1.2 scottr printf("(cached)");
1335 1.2 scottr memcpy(fd->current_buffer, fd->r_slots[i].secbuf,
1336 1.2 scottr fd->currentType->sectorSize);
1337 1.2 scottr return state_IOFinish;
1338 1.2 scottr }
1339 1.2 scottr
1340 1.2 scottr /* Get sector from disk */
1341 1.2 scottr shdr->side = pos->side;
1342 1.2 scottr shdr->sector = pos->sector;
1343 1.2 scottr shdr->track = pos->track;
1344 1.2 scottr
1345 1.2 scottr (void)iwmSelectSide(pos->side);
1346 1.2 scottr fd->iwmErr = iwmReadSector(&fd->sHdr, fd->r_slots,
1347 1.2 scottr fd->current_buffer);
1348 1.2 scottr
1349 1.2 scottr /* Check possible error conditions */
1350 1.2 scottr if (TRACE_STRAT)
1351 1.2 scottr printf("c%d_h%d_s%d_err(%d)_sr%d ",
1352 1.2 scottr shdr->track, shdr->side >> 3,
1353 1.2 scottr shdr->sector, fd->iwmErr, fd->sectRetries);
1354 1.2 scottr
1355 1.2 scottr /* IWM IO error? */
1356 1.2 scottr if (fd->iwmErr != 0)
1357 1.2 scottr return state_IOErr;
1358 1.2 scottr
1359 1.2 scottr /* Bad seek? Retry */
1360 1.2 scottr if (shdr->track != pos->track) {
1361 1.2 scottr if (TRACE_STRAT) {
1362 1.2 scottr printf("Wanted track %d, got %d, %d seek retries.\n",
1363 1.2 scottr pos->track, shdr->track, fd->seekRetries);
1364 1.2 scottr }
1365 1.2 scottr if (iwm->maxRetries > fd->seekRetries++) {
1366 1.2 scottr fd->iwmErr = seek(fd, IWM_SEEK_RECAL);
1367 1.2 scottr if (TRACE_STRAT) {
1368 1.2 scottr printf("[%d]", fd->seekRetries);
1369 1.2 scottr (void)checkTrack(&fd->pos, 1);
1370 1.2 scottr }
1371 1.2 scottr } else
1372 1.2 scottr fd->iwmErr = seekErr;
1373 1.2 scottr return (0 == fd->iwmErr) ? state_Read : state_Fault;
1374 1.2 scottr }
1375 1.2 scottr
1376 1.2 scottr /* Sector not found? */
1377 1.2 scottr if (shdr->sector != pos->sector) {
1378 1.2 scottr if (TRACE_STRAT)
1379 1.2 scottr printf("c%d_h%d_s%d sect not found, %d retries ",
1380 1.2 scottr shdr->track, shdr->side >> 3,
1381 1.2 scottr shdr->sector, fd->sectRetries);
1382 1.2 scottr fd->iwmErr = noAdrMkErr;
1383 1.2 scottr return state_Fault;
1384 1.2 scottr }
1385 1.2 scottr
1386 1.2 scottr /* Success */
1387 1.2 scottr return state_IOFinish;
1388 1.2 scottr }
1389 1.2 scottr
1390 1.2 scottr
1391 1.2 scottr /*
1392 1.2 scottr * fdstart_Write
1393 1.2 scottr *
1394 1.2 scottr * Insert a sector into a write buffer slot and mark the slot dirty.
1395 1.2 scottr */
1396 1.2 scottr static int
1397 1.2 scottr fdstart_Write(fd)
1398 1.2 scottr fd_softc_t *fd;
1399 1.2 scottr {
1400 1.2 scottr int i;
1401 1.2 scottr
1402 1.2 scottr /* XXX let's see... */
1403 1.2 scottr fd->sHdr.side = fd->pos.side;
1404 1.2 scottr fd->sHdr.sector = fd->pos.sector;
1405 1.2 scottr fd->sHdr.track = fd->pos.track;
1406 1.2 scottr
1407 1.2 scottr i = fd->pos.sector;
1408 1.2 scottr fd->w_slots[i].secbuf = fd->current_buffer;
1409 1.2 scottr fd->w_slots[i].valid = 1; /* "valid" is a dirty buffer here */
1410 1.2 scottr
1411 1.2 scottr if (TRACE_STRAT)
1412 1.2 scottr printf("<%s c%d_h%d_s%d> (cached) ",
1413 1.2 scottr fd->ioDirection ? "Read" : "Write",
1414 1.2 scottr fd->pos.track, fd->pos.side, fd->pos.sector);
1415 1.2 scottr return state_IOFinish;
1416 1.2 scottr }
1417 1.2 scottr
1418 1.2 scottr
1419 1.2 scottr
1420 1.2 scottr /*
1421 1.2 scottr * fdstart_Flush
1422 1.2 scottr *
1423 1.2 scottr * Flush dirty buffers in the track cache to disk.
1424 1.2 scottr */
1425 1.2 scottr static int
1426 1.2 scottr fdstart_Flush(fd)
1427 1.2 scottr fd_softc_t *fd;
1428 1.2 scottr {
1429 1.2 scottr int state;
1430 1.2 scottr int i, dcnt;
1431 1.2 scottr diskPosition_t *pos;
1432 1.2 scottr sectorHdr_t *shdr;
1433 1.2 scottr #ifndef _LKM
1434 1.2 scottr iwm_softc_t *iwm = iwm_cd.cd_devs[0];
1435 1.2 scottr #endif
1436 1.2 scottr dcnt = 0;
1437 1.2 scottr pos = &fd->pos;
1438 1.2 scottr shdr = &fd->sHdr;
1439 1.2 scottr
1440 1.2 scottr if (TRACE_STRAT) {
1441 1.2 scottr for (i=0; i < IWM_MAX_GCR_SECTORS; i++)
1442 1.2 scottr if (fd->w_slots[i].valid) {
1443 1.2 scottr printf("|%d", i);
1444 1.2 scottr dcnt++;
1445 1.2 scottr }
1446 1.2 scottr printf("|\n");
1447 1.2 scottr
1448 1.2 scottr printf(" <%s c%d_h%d_#s%d>\n",
1449 1.2 scottr fd->ioDirection ? "Read" : "Write",
1450 1.2 scottr pos->track, pos->side, dcnt);
1451 1.2 scottr }
1452 1.2 scottr (void)iwmSelectSide(pos->side);
1453 1.2 scottr fd->iwmErr = iwmWriteSector(&fd->sHdr, fd->w_slots);
1454 1.2 scottr
1455 1.2 scottr switch (fd->iwmErr) {
1456 1.2 scottr case noErr: /* Success */
1457 1.2 scottr #ifdef DIAGNOSTIC
1458 1.2 scottr /* XXX Panic if buffer not clean? */
1459 1.2 scottr for (i=0; i<IWM_MAX_GCR_SECTORS; i++)
1460 1.2 scottr if (0 != fd->w_slots[i].valid)
1461 1.2 scottr printf("Oops! <c%d_h%d_s%d> not flushed.\n",
1462 1.2 scottr fd->pos.track, fd->pos.side,
1463 1.2 scottr fd->pos.sector);
1464 1.2 scottr #endif
1465 1.2 scottr if (TRACE_STRAT)
1466 1.2 scottr printf("(Cache flushed, re-initialize) ");
1467 1.2 scottr for (i=0; i < IWM_MAX_GCR_SECTORS; i++) {
1468 1.2 scottr fd->w_slots[i].valid = 0;
1469 1.2 scottr fd->w_slots[i].secbuf = NULL;
1470 1.2 scottr }
1471 1.2 scottr fd->seekRetries = 0;
1472 1.2 scottr state = state_Exit;
1473 1.2 scottr break;
1474 1.2 scottr
1475 1.2 scottr case seekErr: /* Bad seek? Retry */
1476 1.2 scottr if (TRACE_STRAT) {
1477 1.2 scottr printf("Wanted track %d, got %d, %d seek retries.\n",
1478 1.2 scottr pos->track, shdr->track, fd->seekRetries);
1479 1.2 scottr }
1480 1.2 scottr if (iwm->maxRetries > fd->seekRetries++) {
1481 1.2 scottr fd->iwmErr = seek(fd, IWM_SEEK_RECAL);
1482 1.2 scottr if (TRACE_STRAT) {
1483 1.2 scottr printf("[%d]", fd->seekRetries);
1484 1.1 scottr }
1485 1.2 scottr }
1486 1.2 scottr state = (0 == fd->iwmErr) ? state_Exit : state_Fault;
1487 1.2 scottr break;
1488 1.2 scottr
1489 1.2 scottr default: /* General IWM IO error? */
1490 1.2 scottr state = state_IOErr;
1491 1.2 scottr }
1492 1.2 scottr return state;
1493 1.2 scottr }
1494 1.2 scottr
1495 1.1 scottr
1496 1.2 scottr /*
1497 1.2 scottr * fdstart_IOFinish
1498 1.2 scottr *
1499 1.2 scottr * Prepare for next block, if any is available
1500 1.2 scottr */
1501 1.2 scottr static int
1502 1.2 scottr fdstart_IOFinish(fd)
1503 1.2 scottr fd_softc_t *fd;
1504 1.2 scottr {
1505 1.2 scottr int state;
1506 1.1 scottr
1507 1.2 scottr if (DISABLED && TRACE_STRAT)
1508 1.2 scottr printf("%s c%d_h%d_s%d ok ",
1509 1.2 scottr fd->ioDirection ? "Read" : "Write",
1510 1.2 scottr fd->sHdr.track, fd->sHdr.side >> 3, fd->sHdr.sector);
1511 1.2 scottr
1512 1.2 scottr fd->bytesDone += fd->currentType->sectorSize;
1513 1.2 scottr fd->bytesLeft -= fd->currentType->sectorSize;
1514 1.2 scottr fd->current_buffer += fd->currentType->sectorSize;
1515 1.2 scottr /*
1516 1.2 scottr * Instead of recalculating the chs mapping for
1517 1.2 scottr * each and every sector, check for
1518 1.2 scottr * 'current sector# <= max sector#' and recalculate
1519 1.2 scottr * after overflow.
1520 1.2 scottr */
1521 1.2 scottr fd->startBlk++;
1522 1.2 scottr if (fd->bytesLeft > 0) {
1523 1.2 scottr if (++fd->pos.sector < fd->pos.maxSect) {
1524 1.1 scottr if (TRACE_STRAT)
1525 1.2 scottr printf("continue");
1526 1.2 scottr state = (fd->ioDirection == IWM_WRITE)
1527 1.2 scottr ? state_Write : state_Read;
1528 1.2 scottr }
1529 1.2 scottr else {
1530 1.1 scottr /*
1531 1.2 scottr * Invalidate read cache when changing track;
1532 1.2 scottr * flush write cache to disk.
1533 1.1 scottr */
1534 1.2 scottr if (fd->ioDirection == IWM_WRITE) {
1535 1.2 scottr if (TRACE_STRAT)
1536 1.2 scottr printf("flush ");
1537 1.2 scottr state = (state_Exit == fdstart_Flush(fd))
1538 1.2 scottr ? state_Seek : state_IOErr;
1539 1.1 scottr }
1540 1.2 scottr else {
1541 1.1 scottr if (TRACE_STRAT)
1542 1.2 scottr printf("step ");
1543 1.2 scottr invalidateCylinderCache(fd);
1544 1.2 scottr state = state_Seek;
1545 1.1 scottr }
1546 1.2 scottr }
1547 1.2 scottr } else {
1548 1.2 scottr state = (fd->ioDirection == IWM_WRITE)
1549 1.2 scottr ? state_Flush : state_Exit;
1550 1.2 scottr }
1551 1.2 scottr return state;
1552 1.2 scottr }
1553 1.1 scottr
1554 1.1 scottr
1555 1.2 scottr /*
1556 1.2 scottr * fdstart_IOErr
1557 1.2 scottr *
1558 1.2 scottr * Bad IO, repeat
1559 1.2 scottr */
1560 1.2 scottr static int
1561 1.2 scottr fdstart_IOErr(fd)
1562 1.2 scottr fd_softc_t *fd;
1563 1.2 scottr {
1564 1.2 scottr int state;
1565 1.2 scottr #ifndef _LKM
1566 1.2 scottr iwm_softc_t *iwm = iwm_cd.cd_devs[0];
1567 1.2 scottr #endif
1568 1.2 scottr
1569 1.2 scottr #ifdef DIAGNOSTIC
1570 1.2 scottr printf("iwm%sSector() err = %d, %d retries, on c%d_h%d_s%d.\n",
1571 1.2 scottr fd->ioDirection ? "Read" : "Write",
1572 1.2 scottr fd->iwmErr, fd->ioRetries, fd->pos.track,
1573 1.2 scottr fd->pos.side, fd->pos.sector);
1574 1.2 scottr #endif
1575 1.2 scottr /* XXX Do statistics */
1576 1.2 scottr if (fd->ioRetries++ < iwm->maxRetries)
1577 1.2 scottr state = (fd->ioDirection == IWM_WRITE)
1578 1.2 scottr ? state_Flush : state_Read;
1579 1.2 scottr else
1580 1.2 scottr state = state_Fault;
1581 1.2 scottr return state;
1582 1.2 scottr }
1583 1.1 scottr
1584 1.1 scottr
1585 1.2 scottr /*
1586 1.2 scottr * fdstart_Fault
1587 1.2 scottr *
1588 1.2 scottr * A non-recoverable error
1589 1.2 scottr */
1590 1.2 scottr static int
1591 1.2 scottr fdstart_Fault(fd)
1592 1.2 scottr fd_softc_t *fd;
1593 1.2 scottr {
1594 1.1 scottr #ifdef DIAGNOSTIC
1595 1.2 scottr printf("Seek retries %d, IO retries %d, sect retries %d :\n" \
1596 1.2 scottr "\t\t only found c%d_h%d_s%d \n",
1597 1.2 scottr fd->seekRetries, fd->ioRetries, fd->sectRetries,
1598 1.2 scottr fd->sHdr.track, fd->sHdr.side >> 3, fd->sHdr.sector);
1599 1.2 scottr printf("A non-recoverable error: %d ", fd->iwmErr);
1600 1.2 scottr #else
1601 1.2 scottr /* ARGSUSED */
1602 1.2 scottr #endif
1603 1.2 scottr return state_Exit;
1604 1.2 scottr }
1605 1.2 scottr
1606 1.1 scottr
1607 1.2 scottr /*
1608 1.2 scottr * fdstart_Exit
1609 1.2 scottr *
1610 1.2 scottr * We are done, for good or bad
1611 1.2 scottr */
1612 1.2 scottr static int
1613 1.2 scottr fdstart_Exit(fd)
1614 1.2 scottr fd_softc_t *fd;
1615 1.2 scottr {
1616 1.3 kleink struct buf *bp;
1617 1.3 kleink #ifdef DIAGNOSTIC
1618 1.2 scottr int i;
1619 1.3 kleink #endif
1620 1.2 scottr
1621 1.2 scottr invalidateCylinderCache(fd);
1622 1.1 scottr
1623 1.2 scottr #ifdef DIAGNOSTIC
1624 1.2 scottr /* XXX Panic if buffer not clean? */
1625 1.2 scottr for (i=0; i<IWM_MAX_GCR_SECTORS; i++)
1626 1.2 scottr if (0 != fd->w_slots[i].valid)
1627 1.2 scottr printf("Oops! <c%d_h%d_s%d> not flushed.\n",
1628 1.2 scottr fd->pos.track, fd->pos.side, fd->pos.sector);
1629 1.2 scottr #endif
1630 1.1 scottr
1631 1.12 hannken bp = BUFQ_GET(&fd->bufQueue);
1632 1.1 scottr
1633 1.2 scottr bp->b_resid = fd->bytesLeft;
1634 1.2 scottr bp->b_error = (0 == fd->iwmErr) ? 0 : EIO;
1635 1.2 scottr if (fd->iwmErr)
1636 1.2 scottr bp->b_flags |= B_ERROR;
1637 1.1 scottr
1638 1.2 scottr if (TRACE_STRAT) {
1639 1.2 scottr printf(" fdstart() finished job; fd->iwmErr = %d, b_error = %d",
1640 1.2 scottr fd->iwmErr, bp->b_error);
1641 1.2 scottr if (DISABLED)
1642 1.10 thorpej hexDump(bp->b_data, bp->b_bcount);
1643 1.2 scottr }
1644 1.2 scottr if (DISABLED && TRACE_STRAT)
1645 1.4 thorpej printf(" Next buf (bufQueue first) at %p\n",
1646 1.12 hannken BUFQ_PEEK(&fd->bufQueue));
1647 1.19 mrg disk_unbusy(&fd->diskInfo, bp->b_bcount - bp->b_resid,
1648 1.19 mrg (bp->b_flags & B_READ));
1649 1.2 scottr biodone(bp);
1650 1.2 scottr /*
1651 1.2 scottr * Stop motor after 10s
1652 1.2 scottr *
1653 1.2 scottr * XXX Unloading the module while the timeout is still
1654 1.2 scottr * running WILL crash the machine.
1655 1.2 scottr */
1656 1.8 thorpej callout_reset(&fd->motor_ch, 10 * hz, motor_off, fd);
1657 1.1 scottr
1658 1.2 scottr return state_Done;
1659 1.1 scottr }
1660 1.1 scottr
1661 1.1 scottr
1662 1.1 scottr /*
1663 1.2 scottr * remap_geometry
1664 1.2 scottr *
1665 1.1 scottr * Remap the rigid UN*X view of a disk's cylinder/sector geometry
1666 1.1 scottr * to our zone recorded real Sony drive by splitting the disk
1667 1.1 scottr * into zones.
1668 1.1 scottr *
1669 1.1 scottr * Loop {
1670 1.1 scottr * Look if logical block number is in current zone
1671 1.1 scottr * NO: Add # of tracks for current zone to track counter
1672 1.1 scottr * Process next zone
1673 1.1 scottr *
1674 1.1 scottr * YES: Subtract (number of first sector of current zone times heads)
1675 1.1 scottr * from logical block number, then break up the difference
1676 1.1 scottr * in tracks/side/sectors (spt is constant within a zone).
1677 1.1 scottr * Done
1678 1.1 scottr * }
1679 1.1 scottr */
1680 1.1 scottr static void
1681 1.1 scottr remap_geometry(block, heads, loc)
1682 1.1 scottr daddr_t block;
1683 1.1 scottr int heads;
1684 1.1 scottr diskPosition_t *loc;
1685 1.1 scottr {
1686 1.1 scottr int zone, spt;
1687 1.1 scottr extern diskZone_t diskZones[];
1688 1.1 scottr
1689 1.1 scottr spt = 0; /* XXX Shut up egcs warning */
1690 1.1 scottr loc->oldTrack = loc->track;
1691 1.1 scottr loc->track = 0;
1692 1.1 scottr
1693 1.1 scottr for (zone = 0; zone < IWM_GCR_DISK_ZONES; zone++) {
1694 1.1 scottr if (block >= heads * (diskZones[zone].lastBlock + 1)) {
1695 1.1 scottr /* Process full zones */
1696 1.1 scottr loc->track += diskZones[zone].tracks;
1697 1.1 scottr } else {
1698 1.1 scottr /* Process partial zone */
1699 1.1 scottr spt = diskZones[zone].sectPerTrack;
1700 1.1 scottr block -= heads * diskZones[zone].firstBlock;
1701 1.1 scottr loc->track += block / (spt * heads);
1702 1.1 scottr loc->sector = (block % spt);
1703 1.1 scottr loc->side = (block % (spt * heads)) / spt;
1704 1.1 scottr break;
1705 1.1 scottr }
1706 1.1 scottr }
1707 1.1 scottr loc->maxSect = spt;
1708 1.1 scottr }
1709 1.1 scottr
1710 1.1 scottr
1711 1.1 scottr /*
1712 1.1 scottr * motor_off
1713 1.1 scottr *
1714 1.1 scottr * Callback for timeout()
1715 1.1 scottr */
1716 1.1 scottr static void
1717 1.1 scottr motor_off(param)
1718 1.1 scottr void *param;
1719 1.1 scottr {
1720 1.1 scottr int spl;
1721 1.1 scottr fd_softc_t *fd;
1722 1.1 scottr
1723 1.1 scottr fd = (fd_softc_t *)param;
1724 1.1 scottr if (TRACE_STRAT)
1725 1.1 scottr printf("iwm: Switching motor OFF (timeout).\n");
1726 1.2 scottr spl = spl6();
1727 1.1 scottr (void)iwmMotor(fd->unit, 0);
1728 1.1 scottr fd->state &= ~IWM_FD_MOTOR_ON;
1729 1.1 scottr splx(spl);
1730 1.1 scottr }
1731 1.1 scottr
1732 1.1 scottr
1733 1.1 scottr /*
1734 1.1 scottr * fdGetDiskLabel
1735 1.1 scottr *
1736 1.1 scottr * Set up disk label with parameters from current disk type.
1737 1.1 scottr * Then call the generic disklabel read routine which tries to
1738 1.1 scottr * read a label from disk and insert it. If it doesn't exist use
1739 1.1 scottr * our defaults.
1740 1.1 scottr */
1741 1.1 scottr static void
1742 1.1 scottr fdGetDiskLabel(fd, dev)
1743 1.1 scottr fd_softc_t *fd;
1744 1.1 scottr dev_t dev;
1745 1.1 scottr {
1746 1.23 dsl const char *msg;
1747 1.1 scottr int fdType;
1748 1.1 scottr struct disklabel *lp;
1749 1.1 scottr struct cpu_disklabel *clp;
1750 1.1 scottr
1751 1.1 scottr if (TRACE_IOCTL)
1752 1.1 scottr printf("iwm: fdGetDiskLabel() for disk %d.\n",
1753 1.1 scottr minor(dev) / MAXPARTITIONS);
1754 1.1 scottr fdType = minor(dev) % MAXPARTITIONS;
1755 1.1 scottr lp = fd->diskInfo.dk_label;
1756 1.1 scottr clp = fd->diskInfo.dk_cpulabel;
1757 1.2 scottr memset(lp, 0, sizeof(struct disklabel));
1758 1.2 scottr memset(clp, 0, sizeof(struct cpu_disklabel));
1759 1.1 scottr /*
1760 1.1 scottr * How to describe a drive with a variable # of sectors per
1761 1.1 scottr * track (8..12) and variable rpm (300..550)? Apple came up
1762 1.1 scottr * with ZBR in 1983! Un*x drive management sucks.
1763 1.1 scottr */
1764 1.1 scottr lp->d_type = DTYPE_FLOPPY;
1765 1.1 scottr lp->d_rpm = 300;
1766 1.1 scottr lp->d_secsize = fd->currentType->sectorSize;
1767 1.1 scottr lp->d_ntracks = fd->currentType->heads;
1768 1.1 scottr lp->d_ncylinders = fd->currentType->tracks;
1769 1.1 scottr lp->d_nsectors = fd->currentType->secPerTrack;
1770 1.1 scottr lp->d_secpercyl = fd->currentType->secPerCyl;
1771 1.1 scottr lp->d_secperunit = fd->currentType->secPerDisk;
1772 1.1 scottr lp->d_interleave = fd->currentType->interleave;
1773 1.2 scottr lp->d_trkseek = fd->currentType->stepRate;
1774 1.1 scottr
1775 1.2 scottr strcpy(lp->d_typename, dktypenames[DTYPE_FLOPPY]);
1776 1.1 scottr strncpy(lp->d_packname, "fictitious", sizeof(lp->d_packname));
1777 1.1 scottr
1778 1.1 scottr lp->d_npartitions = fdType + 1;
1779 1.1 scottr lp->d_partitions[fdType].p_offset = 0;
1780 1.1 scottr lp->d_partitions[fdType].p_size = lp->d_secperunit;
1781 1.1 scottr lp->d_partitions[fdType].p_fstype = FS_BSDFFS;
1782 1.1 scottr lp->d_partitions[fdType].p_fsize = 512;
1783 1.1 scottr lp->d_partitions[fdType].p_frag = 8;
1784 1.1 scottr
1785 1.1 scottr lp->d_magic = DISKMAGIC;
1786 1.1 scottr lp->d_magic2 = DISKMAGIC;
1787 1.1 scottr lp->d_checksum = dkcksum(lp);
1788 1.1 scottr /*
1789 1.1 scottr * Call the generic disklabel extraction routine. If we don't
1790 1.1 scottr * find a label on disk, keep our faked one.
1791 1.1 scottr */
1792 1.1 scottr if (TRACE_OPEN)
1793 1.1 scottr printf(" now calling readdisklabel()...\n");
1794 1.1 scottr
1795 1.1 scottr msg = readdisklabel(dev, fdstrategy, lp, clp);
1796 1.1 scottr if (msg == NULL) {
1797 1.1 scottr strncpy(lp->d_packname, "default label",
1798 1.1 scottr sizeof(lp->d_packname)); /* XXX - ?? */
1799 1.1 scottr }
1800 1.2 scottr #ifdef IWM_DEBUG
1801 1.1 scottr else
1802 1.1 scottr printf("iwm: %s.\n", msg);
1803 1.1 scottr #endif
1804 1.1 scottr if (TRACE_OPEN)
1805 1.1 scottr fdPrintDiskLabel(lp);
1806 1.1 scottr }
1807 1.1 scottr
1808 1.1 scottr
1809 1.2 scottr
1810 1.2 scottr /*
1811 1.2 scottr * initCylinderCache
1812 1.2 scottr *
1813 1.2 scottr * Allocate cylinder cache and set up pointers to sectors.
1814 1.2 scottr */
1815 1.2 scottr static int
1816 1.2 scottr initCylinderCache(fd)
1817 1.2 scottr fd_softc_t *fd;
1818 1.2 scottr {
1819 1.2 scottr int i;
1820 1.2 scottr int err;
1821 1.2 scottr int secsize;
1822 1.2 scottr
1823 1.2 scottr err = 0;
1824 1.2 scottr secsize = fd->currentType->sectorSize;
1825 1.2 scottr fd->cachedSide = 0;
1826 1.2 scottr
1827 1.2 scottr fd->cbuf = (unsigned char *) malloc(IWM_MAX_GCR_SECTORS
1828 1.2 scottr * secsize, M_DEVBUF, M_WAITOK);
1829 1.2 scottr if (NULL == fd->cbuf)
1830 1.2 scottr err = ENOMEM;
1831 1.2 scottr else
1832 1.2 scottr for (i=0; i < IWM_MAX_GCR_SECTORS; i++) {
1833 1.2 scottr fd->w_slots[i].valid = 0;
1834 1.2 scottr fd->w_slots[i].secbuf = NULL;
1835 1.2 scottr
1836 1.2 scottr fd->r_slots[i].valid = 0;
1837 1.2 scottr fd->r_slots[i].secbuf = fd->cbuf + i * secsize;
1838 1.2 scottr }
1839 1.2 scottr return err;
1840 1.2 scottr }
1841 1.2 scottr
1842 1.2 scottr
1843 1.2 scottr /*
1844 1.2 scottr * invalidateCylinderCache
1845 1.2 scottr *
1846 1.2 scottr * Switching cylinders (tracks?) invalidates the read cache.
1847 1.2 scottr */
1848 1.2 scottr static void
1849 1.2 scottr invalidateCylinderCache(fd)
1850 1.2 scottr fd_softc_t *fd;
1851 1.2 scottr {
1852 1.2 scottr int i;
1853 1.2 scottr
1854 1.2 scottr fd->cachedSide = 0;
1855 1.2 scottr for (i=0; i < IWM_MAX_GCR_SECTORS; i++) {
1856 1.2 scottr fd->r_slots[i].valid = 0;
1857 1.2 scottr }
1858 1.2 scottr }
1859 1.2 scottr
1860 1.2 scottr
1861 1.1 scottr /*
1862 1.1 scottr * getFDType
1863 1.1 scottr *
1864 1.1 scottr * return pointer to disk format description
1865 1.1 scottr */
1866 1.1 scottr static fdInfo_t *
1867 1.1 scottr getFDType(unit)
1868 1.1 scottr short unit;
1869 1.1 scottr {
1870 1.1 scottr int driveFlags;
1871 1.1 scottr fdInfo_t *thisType;
1872 1.1 scottr extern fdInfo_t fdTypes[];
1873 1.1 scottr
1874 1.1 scottr driveFlags = iwmCheckDrive(unit);
1875 1.1 scottr /*
1876 1.1 scottr * Drive flags are: Bit 0 - 1 = Drive is double sided
1877 1.1 scottr * 1 - 1 = No disk inserted
1878 1.1 scottr * 2 - 1 = Motor is off
1879 1.21 wiz * 3 - 1 = Disk is writable
1880 1.1 scottr * 4 - 1 = Disk is DD (800/720K)
1881 1.1 scottr * 31 - 1 = No drive / invalid drive #
1882 1.1 scottr */
1883 1.1 scottr if (TRACE_CONFIG) {
1884 1.1 scottr printf("iwm: Drive %d says 0x0%x (%d)\n",
1885 1.1 scottr unit, driveFlags, driveFlags);
1886 1.1 scottr }
1887 1.1 scottr if (driveFlags < 0)
1888 1.1 scottr thisType = NULL;/* no such drive */
1889 1.1 scottr else
1890 1.1 scottr if (driveFlags & 0x01)
1891 1.1 scottr thisType = &fdTypes[1]; /* double sided */
1892 1.1 scottr else
1893 1.1 scottr thisType = &fdTypes[0]; /* single sided */
1894 1.1 scottr
1895 1.1 scottr return thisType;
1896 1.1 scottr }
1897 1.1 scottr
1898 1.1 scottr
1899 1.1 scottr /*
1900 1.1 scottr * fdDeviceToType
1901 1.1 scottr *
1902 1.1 scottr * maps the minor device number (elsewhere: partition type) to
1903 1.1 scottr * a corresponding disk format.
1904 1.1 scottr * This is currently:
1905 1.1 scottr * fdXa default (800K GCR)
1906 1.1 scottr * fdXb 400K GCR
1907 1.1 scottr * fdXc 800K GCR
1908 1.1 scottr */
1909 1.1 scottr static fdInfo_t *
1910 1.1 scottr fdDeviceToType(fd, dev)
1911 1.1 scottr fd_softc_t *fd;
1912 1.1 scottr dev_t dev;
1913 1.1 scottr {
1914 1.1 scottr int type;
1915 1.1 scottr fdInfo_t *thisInfo;
1916 1.1 scottr /* XXX This broke with egcs 1.0.2 */
1917 1.1 scottr /* extern fdInfo_t fdTypes[]; */
1918 1.1 scottr
1919 1.1 scottr type = minor(dev) % MAXPARTITIONS; /* 1,2,... */
1920 1.1 scottr if (type > sizeof(fdTypes) / sizeof(fdTypes[0]))
1921 1.1 scottr thisInfo = NULL;
1922 1.1 scottr else
1923 1.1 scottr thisInfo = (type == 0) ? fd->defaultType : &fdTypes[type - 1];
1924 1.1 scottr return thisInfo;
1925 1.1 scottr }
1926 1.1 scottr
1927 1.1 scottr
1928 1.1 scottr /*
1929 1.1 scottr * seek
1930 1.1 scottr *
1931 1.1 scottr * Step to given track; optionally restore to track zero before
1932 1.1 scottr * and/or verify correct track.
1933 1.1 scottr * Note that any necessary retries are done here.
1934 1.1 scottr * We keep the current position on disk in a 'struct diskPosition'.
1935 1.1 scottr */
1936 1.1 scottr static int
1937 1.2 scottr seek(fd, style)
1938 1.2 scottr fd_softc_t *fd;
1939 1.1 scottr int style;
1940 1.1 scottr {
1941 1.1 scottr int state, done;
1942 1.1 scottr int err, ierr;
1943 1.1 scottr int steps;
1944 1.2 scottr
1945 1.2 scottr diskPosition_t *loc;
1946 1.1 scottr sectorHdr_t hdr;
1947 1.1 scottr char action[32];
1948 1.1 scottr #ifndef _LKM
1949 1.1 scottr iwm_softc_t *iwm = iwm_cd.cd_devs[0];
1950 1.1 scottr #endif
1951 1.1 scottr
1952 1.1 scottr char *stateDesc[] = {
1953 1.1 scottr "Init",
1954 1.1 scottr "Seek",
1955 1.1 scottr "Recalibrate",
1956 1.1 scottr "Verify",
1957 1.1 scottr "Exit"
1958 1.1 scottr };
1959 1.1 scottr enum {
1960 1.1 scottr state_Init = 0,
1961 1.1 scottr state_Seek,
1962 1.1 scottr state_Recalibrate,
1963 1.1 scottr state_Verify,
1964 1.1 scottr state_Exit
1965 1.1 scottr };
1966 1.2 scottr /* XXX egcs */
1967 1.2 scottr done = err = ierr = 0;
1968 1.2 scottr fd->seekRetries = 0;
1969 1.2 scottr fd->verifyRetries = 0;
1970 1.2 scottr
1971 1.2 scottr loc = &fd->pos;
1972 1.2 scottr
1973 1.1 scottr state = state_Init;
1974 1.1 scottr do {
1975 1.1 scottr if (TRACE_STEP)
1976 1.1 scottr printf(" seek state %d [%s].\n",
1977 1.1 scottr state, stateDesc[state]);
1978 1.1 scottr switch (state) {
1979 1.1 scottr
1980 1.1 scottr case state_Init:
1981 1.1 scottr if (TRACE_STEP)
1982 1.1 scottr printf("Current track is %d, new track %d.\n",
1983 1.1 scottr loc->oldTrack, loc->track);
1984 1.2 scottr memset(&hdr, 0, sizeof(hdr));
1985 1.1 scottr err = ierr = 0;
1986 1.2 scottr fd->seekRetries = 0;
1987 1.2 scottr fd->verifyRetries = 0;
1988 1.1 scottr state = (style == IWM_SEEK_RECAL)
1989 1.1 scottr ? state_Recalibrate : state_Seek;
1990 1.1 scottr done = 0;
1991 1.1 scottr break;
1992 1.1 scottr
1993 1.1 scottr case state_Recalibrate:
1994 1.1 scottr ierr = iwmTrack00();
1995 1.1 scottr if (ierr == 0) {
1996 1.1 scottr loc->oldTrack = 0;
1997 1.1 scottr state = state_Seek;
1998 1.1 scottr } else {
1999 1.1 scottr strncpy(action, "Recalibrate (track 0)",
2000 1.1 scottr sizeof(action));
2001 1.1 scottr state = state_Exit;
2002 1.1 scottr }
2003 1.1 scottr break;
2004 1.1 scottr
2005 1.1 scottr case state_Seek:
2006 1.1 scottr ierr = 0;
2007 1.1 scottr steps = loc->track - loc->oldTrack;
2008 1.1 scottr
2009 1.1 scottr if (steps != 0)
2010 1.1 scottr ierr = iwmSeek(steps);
2011 1.1 scottr if (ierr == 0) {
2012 1.1 scottr /* No error or nothing to do */
2013 1.1 scottr state = (style == IWM_SEEK_VERIFY)
2014 1.1 scottr ? state_Verify : state_Exit;
2015 1.1 scottr } else {
2016 1.2 scottr if (fd->seekRetries++ < iwm->maxRetries)
2017 1.1 scottr state = state_Recalibrate;
2018 1.1 scottr else {
2019 1.1 scottr strncpy(action, "Seek retries",
2020 1.1 scottr sizeof(action));
2021 1.1 scottr state = state_Exit;
2022 1.1 scottr }
2023 1.1 scottr }
2024 1.1 scottr break;
2025 1.1 scottr
2026 1.1 scottr case state_Verify:
2027 1.2 scottr ierr = checkTrack(loc, TRACE_STEP);
2028 1.1 scottr if (ierr == 0 && loc->track == hdr.track)
2029 1.1 scottr state = state_Exit;
2030 1.1 scottr else {
2031 1.2 scottr if (fd->verifyRetries++ < iwm->maxRetries)
2032 1.1 scottr state = state_Recalibrate;
2033 1.1 scottr else {
2034 1.1 scottr strncpy(action, "Verify retries",
2035 1.1 scottr sizeof(action));
2036 1.1 scottr state = state_Exit;
2037 1.1 scottr }
2038 1.1 scottr }
2039 1.1 scottr break;
2040 1.1 scottr
2041 1.1 scottr case state_Exit:
2042 1.1 scottr if (ierr == 0) {
2043 1.1 scottr loc->oldTrack = loc->track;
2044 1.1 scottr err = 0;
2045 1.1 scottr /* Give the head some time to settle down */
2046 1.1 scottr delay(3000);
2047 1.1 scottr } else {
2048 1.1 scottr #ifdef DIAGNOSTIC
2049 1.1 scottr printf(" seek() action \"%s\", err = %d.\n",
2050 1.1 scottr action, ierr);
2051 1.1 scottr #endif
2052 1.1 scottr err = EIO;
2053 1.1 scottr }
2054 1.1 scottr done = 1;
2055 1.1 scottr break;
2056 1.1 scottr }
2057 1.1 scottr } while (!done);
2058 1.1 scottr return err;
2059 1.1 scottr }
2060 1.1 scottr
2061 1.1 scottr
2062 1.1 scottr /*
2063 1.1 scottr * checkTrack
2064 1.1 scottr *
2065 1.1 scottr * After positioning, get a sector header for validation
2066 1.1 scottr */
2067 1.1 scottr static int
2068 1.1 scottr checkTrack(loc, debugFlag)
2069 1.2 scottr diskPosition_t *loc;
2070 1.1 scottr int debugFlag;
2071 1.1 scottr {
2072 1.1 scottr int spl;
2073 1.1 scottr int iwmErr;
2074 1.1 scottr sectorHdr_t hdr;
2075 1.1 scottr
2076 1.2 scottr spl = spl6();
2077 1.2 scottr iwmSelectSide(loc->side);
2078 1.1 scottr iwmErr = iwmReadSectHdr(&hdr);
2079 1.1 scottr splx(spl);
2080 1.1 scottr if (debugFlag) {
2081 1.1 scottr printf("Seeked for %d, got at %d, Hdr read err %d.\n",
2082 1.2 scottr loc->track, hdr.track, iwmErr);
2083 1.1 scottr }
2084 1.1 scottr return iwmErr;
2085 1.1 scottr }
2086 1.1 scottr
2087 1.1 scottr
2088 1.1 scottr /* Debugging stuff */
2089 1.1 scottr
2090 1.1 scottr static void
2091 1.1 scottr hexDump(buf, len)
2092 1.1 scottr u_char *buf;
2093 1.1 scottr int len;
2094 1.1 scottr {
2095 1.1 scottr int i, j;
2096 1.1 scottr u_char ch;
2097 1.1 scottr
2098 1.1 scottr printf("\nDump %d from %p:\n", len, buf);
2099 1.1 scottr i = j = 0;
2100 1.1 scottr if (NULL != buf) do {
2101 1.1 scottr printf("%04x: ", i);
2102 1.1 scottr for (j = 0; j < 8; j++)
2103 1.1 scottr printf("%02x ", buf[i + j]);
2104 1.1 scottr printf(" ");
2105 1.1 scottr for (j = 8; j < 16; j++)
2106 1.1 scottr printf("%02x ", buf[i + j]);
2107 1.1 scottr printf(" ");
2108 1.1 scottr for (j = 0; j < 16; j++) {
2109 1.1 scottr ch = buf[i + j];
2110 1.1 scottr if (ch > 31 && ch < 127)
2111 1.1 scottr printf("%c", ch);
2112 1.1 scottr else
2113 1.1 scottr printf(".");
2114 1.1 scottr }
2115 1.1 scottr printf("\n");
2116 1.1 scottr i += 16;
2117 1.1 scottr } while (len > i);
2118 1.1 scottr }
2119 1.1 scottr
2120 1.1 scottr
2121 1.1 scottr static void
2122 1.1 scottr fdPrintDiskLabel(lp)
2123 1.1 scottr struct disklabel *lp;
2124 1.1 scottr {
2125 1.1 scottr int i;
2126 1.1 scottr
2127 1.1 scottr printf("iwm: Disklabel entries of current floppy.\n");
2128 1.1 scottr printf("\t d_type:\t%d (%s)\n", lp->d_type,
2129 1.2 scottr dktypenames[lp->d_type]);
2130 1.1 scottr printf("\t d_typename:\t%s\n", lp->d_typename);
2131 1.1 scottr printf("\t d_packname:\t%s\n", lp->d_packname);
2132 1.1 scottr
2133 1.1 scottr printf("\t d_secsize:\t%d\n", lp->d_secsize);
2134 1.1 scottr printf("\t d_nsectors:\t%d\n", lp->d_nsectors);
2135 1.1 scottr printf("\t d_ntracks:\t%d\n", lp->d_ntracks);
2136 1.1 scottr printf("\t d_ncylinders:\t%d\n", lp->d_ncylinders);
2137 1.1 scottr printf("\t d_secpercyl:\t%d\n", lp->d_secpercyl);
2138 1.1 scottr printf("\t d_secperunit:\t%d\n", lp->d_secperunit);
2139 1.1 scottr
2140 1.1 scottr printf("\t d_rpm: \t%d\n", lp->d_rpm);
2141 1.1 scottr printf("\t d_interleave:\t%d\n", lp->d_interleave);
2142 1.2 scottr printf("\t d_trkseek:\t%d [ms]\n", lp->d_trkseek);
2143 1.1 scottr
2144 1.1 scottr printf(" d_npartitions:\t%d\n", lp->d_npartitions);
2145 1.1 scottr for (i = 0; i < lp->d_npartitions; i++) {
2146 1.1 scottr printf("\t d_partitions[%d].p_offset:\t%d\n", i,
2147 1.1 scottr lp->d_partitions[i].p_offset);
2148 1.1 scottr printf("\t d_partitions[%d].p_size:\t%d\n", i,
2149 1.1 scottr lp->d_partitions[i].p_size);
2150 1.1 scottr printf("\t d_partitions[%d].p_fstype:\t%d (%s)\n", i,
2151 1.1 scottr lp->d_partitions[i].p_fstype,
2152 1.1 scottr fstypenames[lp->d_partitions[i].p_fstype]);
2153 1.1 scottr printf("\t d_partitions[%d].p_frag:\t%d\n", i,
2154 1.1 scottr lp->d_partitions[i].p_frag);
2155 1.1 scottr printf("\n");
2156 1.1 scottr }
2157 1.1 scottr }
2158