hp.c revision 1.12 1 1.12 christos /* $NetBSD: hp.c,v 1.12 1996/10/13 03:34:58 christos Exp $ */
2 1.1 ragge /*
3 1.4 ragge * Copyright (c) 1996 Ludd, University of Lule}, Sweden.
4 1.1 ragge * All rights reserved.
5 1.1 ragge *
6 1.1 ragge * Redistribution and use in source and binary forms, with or without
7 1.1 ragge * modification, are permitted provided that the following conditions
8 1.1 ragge * are met:
9 1.1 ragge * 1. Redistributions of source code must retain the above copyright
10 1.1 ragge * notice, this list of conditions and the following disclaimer.
11 1.1 ragge * 2. Redistributions in binary form must reproduce the above copyright
12 1.1 ragge * notice, this list of conditions and the following disclaimer in the
13 1.1 ragge * documentation and/or other materials provided with the distribution.
14 1.1 ragge * 3. All advertising materials mentioning features or use of this software
15 1.1 ragge * must display the following acknowledgement:
16 1.4 ragge * This product includes software developed at Ludd, University of
17 1.4 ragge * Lule}, Sweden and its contributors.
18 1.1 ragge * 4. The name of the author may not be used to endorse or promote products
19 1.1 ragge * derived from this software without specific prior written permission
20 1.1 ragge *
21 1.1 ragge * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
22 1.1 ragge * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
23 1.1 ragge * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
24 1.1 ragge * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
25 1.1 ragge * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
26 1.1 ragge * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27 1.1 ragge * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28 1.1 ragge * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29 1.1 ragge * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
30 1.1 ragge * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31 1.1 ragge */
32 1.1 ragge
33 1.4 ragge /*
34 1.4 ragge * Simple device driver routine for massbuss disks.
35 1.4 ragge * TODO:
36 1.4 ragge * Fix support for Standard DEC BAD144 bad block forwarding.
37 1.4 ragge * Be able to to handle soft/hard transfer errors.
38 1.4 ragge * Handle non-data transfer interrupts.
39 1.4 ragge * Autoconfiguration of disk drives 'on the fly'.
40 1.4 ragge * Handle disk media changes.
41 1.4 ragge * Dual-port operations should be supported.
42 1.4 ragge */
43 1.2 mycroft #include <sys/param.h>
44 1.8 ragge #include <sys/systm.h>
45 1.4 ragge #include <sys/device.h>
46 1.4 ragge #include <sys/disklabel.h>
47 1.4 ragge #include <sys/disk.h>
48 1.4 ragge #include <sys/dkio.h>
49 1.4 ragge #include <sys/buf.h>
50 1.4 ragge #include <sys/stat.h>
51 1.4 ragge #include <sys/ioccom.h>
52 1.2 mycroft #include <sys/fcntl.h>
53 1.2 mycroft #include <sys/syslog.h>
54 1.3 mycroft
55 1.4 ragge #include <machine/trap.h>
56 1.4 ragge #include <machine/pte.h>
57 1.4 ragge #include <machine/mtpr.h>
58 1.8 ragge #include <machine/cpu.h>
59 1.4 ragge
60 1.4 ragge #include <vax/mba/mbavar.h>
61 1.2 mycroft #include <vax/mba/mbareg.h>
62 1.4 ragge #include <vax/mba/hpreg.h>
63 1.3 mycroft
64 1.4 ragge #define HPMASK 0xffff
65 1.1 ragge
66 1.4 ragge struct hp_softc {
67 1.4 ragge struct device sc_dev;
68 1.4 ragge struct disk sc_disk;
69 1.4 ragge struct mba_device sc_md; /* Common struct used by mbaqueue. */
70 1.6 ragge int sc_wlabel; /* Disklabel area is writable */
71 1.6 ragge int sc_physnr; /* Physical disk number */
72 1.4 ragge };
73 1.1 ragge
74 1.4 ragge int hpmatch __P((struct device *, void *, void *));
75 1.4 ragge void hpattach __P((struct device *, struct device *, void *));
76 1.4 ragge void hpstrategy __P((struct buf *));
77 1.4 ragge void hpstart __P((struct mba_device *));
78 1.4 ragge int hpattn __P((struct mba_device *));
79 1.4 ragge enum xfer_action hpfinish __P((struct mba_device *, int, int *));
80 1.4 ragge int hpopen __P((dev_t, int, int));
81 1.4 ragge int hpclose __P((dev_t, int, int));
82 1.4 ragge int hpioctl __P((dev_t, u_long, caddr_t, int, struct proc *));
83 1.4 ragge int hpdump __P((dev_t, caddr_t, caddr_t, size_t));
84 1.4 ragge int hpread __P((dev_t, struct uio *));
85 1.4 ragge int hpwrite __P((dev_t, struct uio *));
86 1.4 ragge int hpsize __P((dev_t));
87 1.1 ragge
88 1.7 ragge struct cfdriver hp_cd = {
89 1.7 ragge NULL, "hp", DV_DISK
90 1.7 ragge };
91 1.7 ragge
92 1.7 ragge struct cfattach hp_ca = {
93 1.7 ragge sizeof(struct hp_softc), hpmatch, hpattach
94 1.1 ragge };
95 1.1 ragge
96 1.4 ragge /*
97 1.4 ragge * Check if this is a disk drive; done by checking type from mbaattach.
98 1.4 ragge */
99 1.4 ragge int
100 1.4 ragge hpmatch(parent, match, aux)
101 1.4 ragge struct device *parent;
102 1.4 ragge void *match, *aux;
103 1.4 ragge {
104 1.4 ragge struct cfdata *cf = match;
105 1.4 ragge struct mba_attach_args *ma = aux;
106 1.1 ragge
107 1.4 ragge if (cf->cf_loc[0] != -1 && cf->cf_loc[0] != ma->unit)
108 1.4 ragge return 0;
109 1.1 ragge
110 1.4 ragge if (ma->devtyp != MB_RP)
111 1.4 ragge return 0;
112 1.1 ragge
113 1.4 ragge return 1;
114 1.1 ragge }
115 1.1 ragge
116 1.4 ragge /*
117 1.4 ragge * Disk drive found; fake a disklabel and try to read the real one.
118 1.4 ragge * If the on-disk label can't be read; we lose.
119 1.4 ragge */
120 1.4 ragge void
121 1.4 ragge hpattach(parent, self, aux)
122 1.4 ragge struct device *parent, *self;
123 1.4 ragge void *aux;
124 1.4 ragge {
125 1.4 ragge struct hp_softc *sc = (void *)self;
126 1.4 ragge struct mba_softc *ms = (void *)parent;
127 1.4 ragge struct disklabel *dl;
128 1.4 ragge struct mba_attach_args *ma = aux;
129 1.4 ragge char *msg;
130 1.4 ragge
131 1.4 ragge /*
132 1.4 ragge * Init the common struct for both the adapter and its slaves.
133 1.4 ragge */
134 1.4 ragge sc->sc_md.md_softc = (void *)sc; /* Pointer to this softc */
135 1.4 ragge sc->sc_md.md_mba = (void *)parent; /* Pointer to parent softc */
136 1.4 ragge sc->sc_md.md_start = hpstart; /* Disk start routine */
137 1.4 ragge sc->sc_md.md_attn = hpattn; /* Disk attention routine */
138 1.4 ragge sc->sc_md.md_finish = hpfinish; /* Disk xfer finish routine */
139 1.4 ragge
140 1.4 ragge ms->sc_md[ma->unit] = &sc->sc_md; /* Per-unit backpointer */
141 1.1 ragge
142 1.6 ragge sc->sc_physnr = ma->unit;
143 1.4 ragge /*
144 1.4 ragge * Init and attach the disk structure.
145 1.4 ragge */
146 1.4 ragge sc->sc_disk.dk_name = sc->sc_dev.dv_xname;
147 1.4 ragge disk_attach(&sc->sc_disk);
148 1.1 ragge
149 1.4 ragge /*
150 1.4 ragge * Fake a disklabel to be able to read in the real label.
151 1.4 ragge */
152 1.4 ragge dl = sc->sc_disk.dk_label;
153 1.1 ragge
154 1.4 ragge dl->d_secsize = DEV_BSIZE;
155 1.4 ragge dl->d_ntracks = 1;
156 1.4 ragge dl->d_nsectors = 32;
157 1.4 ragge dl->d_secpercyl = 32;
158 1.1 ragge
159 1.4 ragge /*
160 1.4 ragge * Read in label.
161 1.4 ragge */
162 1.4 ragge if ((msg = readdisklabel(makedev(0, self->dv_unit * 8), hpstrategy,
163 1.4 ragge dl, NULL)) != NULL)
164 1.12 christos printf(": %s", msg);
165 1.12 christos printf(": %s, size = %d sectors\n", dl->d_typename, dl->d_secperunit);
166 1.4 ragge }
167 1.4 ragge
168 1.4 ragge
169 1.4 ragge void
170 1.4 ragge hpstrategy(bp)
171 1.4 ragge struct buf *bp;
172 1.1 ragge {
173 1.4 ragge struct hp_softc *sc;
174 1.4 ragge struct buf *gp;
175 1.4 ragge int unit, s;
176 1.4 ragge
177 1.4 ragge unit = DISKUNIT(bp->b_dev);
178 1.7 ragge sc = hp_cd.cd_devs[unit];
179 1.4 ragge
180 1.5 ragge if (bounds_check_with_label(bp, sc->sc_disk.dk_label, sc->sc_wlabel)
181 1.5 ragge <= 0)
182 1.4 ragge goto done;
183 1.4 ragge s = splbio();
184 1.4 ragge
185 1.4 ragge gp = sc->sc_md.md_q.b_actf;
186 1.4 ragge disksort(&sc->sc_md.md_q, bp);
187 1.4 ragge if (gp == 0)
188 1.4 ragge mbaqueue(&sc->sc_md);
189 1.4 ragge
190 1.4 ragge splx(s);
191 1.4 ragge return;
192 1.4 ragge
193 1.4 ragge done:
194 1.4 ragge bp->b_resid = bp->b_bcount;
195 1.4 ragge biodone(bp);
196 1.4 ragge }
197 1.1 ragge
198 1.1 ragge /*
199 1.4 ragge * Start transfer on given disk. Called from mbastart().
200 1.1 ragge */
201 1.4 ragge void
202 1.4 ragge hpstart(md)
203 1.4 ragge struct mba_device *md;
204 1.4 ragge {
205 1.4 ragge struct hp_softc *sc = md->md_softc;
206 1.4 ragge struct mba_regs *mr = md->md_mba->sc_mbareg;
207 1.4 ragge volatile struct hp_regs *hr;
208 1.4 ragge struct disklabel *lp = sc->sc_disk.dk_label;
209 1.4 ragge struct buf *bp = md->md_q.b_actf;
210 1.4 ragge unsigned bn, cn, sn, tn;
211 1.4 ragge int part = DISKPART(bp->b_dev);
212 1.4 ragge
213 1.4 ragge /*
214 1.4 ragge * Collect statistics.
215 1.4 ragge */
216 1.4 ragge disk_busy(&sc->sc_disk);
217 1.4 ragge sc->sc_disk.dk_seek++;
218 1.4 ragge
219 1.4 ragge hr = (void *)&mr->mba_md[DISKUNIT(bp->b_dev)];
220 1.4 ragge
221 1.4 ragge bn = bp->b_blkno + lp->d_partitions[part].p_offset;
222 1.4 ragge if (bn) {
223 1.4 ragge cn = bn / lp->d_secpercyl;
224 1.4 ragge sn = bn % lp->d_secpercyl;
225 1.4 ragge tn = sn / lp->d_nsectors;
226 1.4 ragge sn = sn % lp->d_nsectors;
227 1.4 ragge } else
228 1.4 ragge cn = sn = tn = 0;
229 1.4 ragge
230 1.4 ragge hr->hp_dc = cn;
231 1.4 ragge hr->hp_da = (tn << 8) | sn;
232 1.4 ragge if (bp->b_flags & B_READ)
233 1.4 ragge hr->hp_cs1 = HPCS_READ; /* GO */
234 1.4 ragge else
235 1.4 ragge hr->hp_cs1 = HPCS_WRITE;
236 1.4 ragge }
237 1.4 ragge
238 1.4 ragge int
239 1.4 ragge hpopen(dev, flag, fmt)
240 1.4 ragge dev_t dev;
241 1.4 ragge int flag, fmt;
242 1.4 ragge {
243 1.4 ragge struct hp_softc *sc;
244 1.4 ragge int unit, part;
245 1.4 ragge
246 1.4 ragge unit = DISKUNIT(dev);
247 1.7 ragge if (unit >= hp_cd.cd_ndevs)
248 1.4 ragge return ENXIO;
249 1.7 ragge sc = hp_cd.cd_devs[unit];
250 1.4 ragge if (sc == 0)
251 1.4 ragge return ENXIO;
252 1.4 ragge
253 1.4 ragge part = DISKPART(dev);
254 1.4 ragge
255 1.5 ragge if (part >= sc->sc_disk.dk_label->d_npartitions)
256 1.4 ragge return ENXIO;
257 1.4 ragge
258 1.4 ragge switch (fmt) {
259 1.4 ragge case S_IFCHR:
260 1.4 ragge sc->sc_disk.dk_copenmask |= (1 << part);
261 1.4 ragge break;
262 1.4 ragge
263 1.4 ragge case S_IFBLK:
264 1.4 ragge sc->sc_disk.dk_bopenmask |= (1 << part);
265 1.4 ragge break;
266 1.1 ragge }
267 1.4 ragge sc->sc_disk.dk_openmask =
268 1.4 ragge sc->sc_disk.dk_copenmask | sc->sc_disk.dk_bopenmask;
269 1.4 ragge
270 1.4 ragge return 0;
271 1.4 ragge }
272 1.4 ragge
273 1.4 ragge int
274 1.4 ragge hpclose(dev, flag, fmt)
275 1.4 ragge dev_t dev;
276 1.4 ragge int flag, fmt;
277 1.4 ragge {
278 1.4 ragge struct hp_softc *sc;
279 1.4 ragge int unit, part;
280 1.4 ragge
281 1.4 ragge unit = DISKUNIT(dev);
282 1.7 ragge sc = hp_cd.cd_devs[unit];
283 1.4 ragge
284 1.4 ragge part = DISKPART(dev);
285 1.4 ragge
286 1.4 ragge switch (fmt) {
287 1.4 ragge case S_IFCHR:
288 1.4 ragge sc->sc_disk.dk_copenmask &= ~(1 << part);
289 1.4 ragge break;
290 1.4 ragge
291 1.4 ragge case S_IFBLK:
292 1.4 ragge sc->sc_disk.dk_bopenmask &= ~(1 << part);
293 1.4 ragge break;
294 1.1 ragge }
295 1.4 ragge sc->sc_disk.dk_openmask =
296 1.4 ragge sc->sc_disk.dk_copenmask | sc->sc_disk.dk_bopenmask;
297 1.4 ragge
298 1.4 ragge return 0;
299 1.4 ragge }
300 1.1 ragge
301 1.4 ragge int
302 1.4 ragge hpioctl(dev, cmd, addr, flag, p)
303 1.4 ragge dev_t dev;
304 1.4 ragge u_long cmd;
305 1.4 ragge caddr_t addr;
306 1.4 ragge int flag;
307 1.4 ragge struct proc *p;
308 1.4 ragge {
309 1.7 ragge struct hp_softc *sc = hp_cd.cd_devs[DISKUNIT(dev)];
310 1.4 ragge struct disklabel *lp = sc->sc_disk.dk_label;
311 1.5 ragge int error;
312 1.1 ragge
313 1.4 ragge switch (cmd) {
314 1.4 ragge case DIOCGDINFO:
315 1.4 ragge bcopy(lp, addr, sizeof (struct disklabel));
316 1.4 ragge return 0;
317 1.4 ragge
318 1.4 ragge case DIOCGPART:
319 1.4 ragge ((struct partinfo *)addr)->disklab = lp;
320 1.4 ragge ((struct partinfo *)addr)->part =
321 1.4 ragge &lp->d_partitions[DISKPART(dev)];
322 1.4 ragge break;
323 1.4 ragge
324 1.4 ragge case DIOCSDINFO:
325 1.4 ragge if ((flag & FWRITE) == 0)
326 1.4 ragge return EBADF;
327 1.4 ragge
328 1.4 ragge return setdisklabel(lp, (struct disklabel *)addr, 0, 0);
329 1.4 ragge
330 1.4 ragge case DIOCWDINFO:
331 1.4 ragge if ((flag & FWRITE) == 0)
332 1.5 ragge error = EBADF;
333 1.5 ragge else {
334 1.5 ragge sc->sc_wlabel = 1;
335 1.5 ragge error = writedisklabel(dev, hpstrategy, lp, 0);
336 1.5 ragge sc->sc_wlabel = 0;
337 1.5 ragge }
338 1.5 ragge return error;
339 1.6 ragge case DIOCWLABEL:
340 1.6 ragge if ((flag & FWRITE) == 0)
341 1.6 ragge return EBADF;
342 1.6 ragge sc->sc_wlabel = 1;
343 1.6 ragge break;
344 1.4 ragge
345 1.4 ragge default:
346 1.12 christos printf("hpioctl: command %x\n", (unsigned int)cmd);
347 1.4 ragge return ENOTTY;
348 1.4 ragge }
349 1.6 ragge return 0;
350 1.1 ragge }
351 1.1 ragge
352 1.1 ragge /*
353 1.4 ragge * Called when a transfer is finished. Check if transfer went OK,
354 1.4 ragge * Return info about what-to-do-now.
355 1.1 ragge */
356 1.4 ragge enum xfer_action
357 1.4 ragge hpfinish(md, mbasr, attn)
358 1.4 ragge struct mba_device *md;
359 1.4 ragge int mbasr, *attn;
360 1.1 ragge {
361 1.4 ragge struct hp_softc *sc = md->md_softc;
362 1.4 ragge struct buf *bp = md->md_q.b_actf;
363 1.4 ragge volatile struct mba_regs *mr = md->md_mba->sc_mbareg;
364 1.4 ragge volatile struct hp_regs *hr = (void *)&mr->mba_md[DISKUNIT(bp->b_dev)];
365 1.4 ragge int er1, er2;
366 1.4 ragge volatile int bc; /* to get GCC read whole longword */
367 1.4 ragge unsigned byte;
368 1.4 ragge
369 1.4 ragge er1 = hr->hp_er1 & HPMASK;
370 1.4 ragge er2 = hr->hp_er2 & HPMASK;
371 1.4 ragge hr->hp_er1 = hr->hp_er2 = 0;
372 1.4 ragge hper1:
373 1.4 ragge switch (ffs(er1) - 1) {
374 1.4 ragge case -1:
375 1.4 ragge hr->hp_er1 = 0;
376 1.4 ragge goto hper2;
377 1.4 ragge
378 1.4 ragge case HPER1_DCK: /* Corrected? data read. Just notice. */
379 1.4 ragge bc = mr->mba_bc;
380 1.4 ragge byte = ~(bc >> 16);
381 1.7 ragge diskerr(buf, hp_cd.cd_name, "soft ecc", LOG_PRINTF,
382 1.4 ragge btodb(bp->b_bcount - byte), sc->sc_disk.dk_label);
383 1.4 ragge er1 &= ~(1<<HPER1_DCK);
384 1.4 ragge er1 &= HPMASK;
385 1.4 ragge break;
386 1.4 ragge
387 1.4 ragge default:
388 1.12 christos printf("drive error :%s er1 %x er2 %x\n",
389 1.4 ragge sc->sc_dev.dv_xname, er1, er2);
390 1.4 ragge hr->hp_er1 = hr->hp_er2 = 0;
391 1.4 ragge goto hper2;
392 1.4 ragge }
393 1.4 ragge goto hper1;
394 1.1 ragge
395 1.4 ragge hper2:
396 1.4 ragge mbasr &= ~(MBASR_DTBUSY|MBASR_DTCMP|MBASR_ATTN);
397 1.4 ragge if (mbasr)
398 1.12 christos printf("massbuss error :%s %x\n",
399 1.4 ragge sc->sc_dev.dv_xname, mbasr);
400 1.4 ragge
401 1.4 ragge md->md_q.b_actf->b_resid = 0;
402 1.4 ragge disk_unbusy(&sc->sc_disk, md->md_q.b_actf->b_bcount);
403 1.4 ragge return XFER_FINISH;
404 1.1 ragge }
405 1.1 ragge
406 1.1 ragge /*
407 1.4 ragge * Non-data transfer interrupt; like volume change.
408 1.1 ragge */
409 1.4 ragge int
410 1.4 ragge hpattn(md)
411 1.4 ragge struct mba_device *md;
412 1.4 ragge {
413 1.4 ragge struct hp_softc *sc = md->md_softc;
414 1.4 ragge struct mba_softc *ms = (void *)sc->sc_dev.dv_parent;
415 1.4 ragge struct mba_regs *mr = ms->sc_mbareg;
416 1.4 ragge struct hp_regs *hr = (void *)&mr->mba_md[sc->sc_dev.dv_unit];
417 1.4 ragge int er1, er2;
418 1.4 ragge
419 1.4 ragge er1 = hr->hp_er1 & HPMASK;
420 1.4 ragge er2 = hr->hp_er2 & HPMASK;
421 1.4 ragge
422 1.12 christos printf("%s: Attention! er1 %x er2 %x\n",
423 1.4 ragge sc->sc_dev.dv_xname, er1, er2);
424 1.4 ragge return 0;
425 1.4 ragge }
426 1.4 ragge
427 1.4 ragge
428 1.4 ragge int
429 1.4 ragge hpsize(dev)
430 1.4 ragge dev_t dev;
431 1.1 ragge {
432 1.4 ragge int size, unit = DISKUNIT(dev);
433 1.4 ragge struct hp_softc *sc;
434 1.4 ragge
435 1.7 ragge if (unit >= hp_cd.cd_ndevs || hp_cd.cd_devs[unit] == 0)
436 1.4 ragge return -1;
437 1.4 ragge
438 1.7 ragge sc = hp_cd.cd_devs[unit];
439 1.4 ragge size = sc->sc_disk.dk_label->d_partitions[DISKPART(dev)].p_size;
440 1.1 ragge
441 1.4 ragge return size;
442 1.4 ragge }
443 1.1 ragge
444 1.4 ragge int
445 1.4 ragge hpdump(dev, a1, a2, size)
446 1.4 ragge dev_t dev;
447 1.4 ragge caddr_t a1, a2;
448 1.4 ragge size_t size;
449 1.4 ragge {
450 1.12 christos printf("hpdump: Not implemented yet.\n");
451 1.8 ragge return 0;
452 1.4 ragge }
453 1.1 ragge
454 1.4 ragge int
455 1.4 ragge hpread(dev, uio)
456 1.4 ragge dev_t dev;
457 1.4 ragge struct uio *uio;
458 1.4 ragge {
459 1.4 ragge return (physio(hpstrategy, NULL, dev, B_READ, minphys, uio));
460 1.1 ragge }
461 1.1 ragge
462 1.4 ragge int
463 1.4 ragge hpwrite(dev, uio)
464 1.4 ragge dev_t dev;
465 1.4 ragge struct uio *uio;
466 1.1 ragge {
467 1.4 ragge return (physio(hpstrategy, NULL, dev, B_WRITE, minphys, uio));
468 1.6 ragge }
469 1.6 ragge
470 1.6 ragge /*
471 1.6 ragge * Convert physical adapternr and unit to the unit number used by kernel.
472 1.6 ragge */
473 1.6 ragge int
474 1.10 ragge hp_getdev(mbanr, unit, uname)
475 1.6 ragge int mbanr, unit;
476 1.10 ragge char **uname;
477 1.6 ragge {
478 1.6 ragge struct mba_softc *ms;
479 1.6 ragge struct hp_softc *sc;
480 1.6 ragge int i;
481 1.6 ragge
482 1.7 ragge for (i = 0; i < hp_cd.cd_ndevs; i++) {
483 1.7 ragge if (hp_cd.cd_devs[i] == 0)
484 1.6 ragge continue;
485 1.6 ragge
486 1.7 ragge sc = hp_cd.cd_devs[i];
487 1.6 ragge ms = (void *)sc->sc_dev.dv_parent;
488 1.10 ragge if (ms->sc_physnr == mbanr && sc->sc_physnr == unit) {
489 1.10 ragge *uname = sc->sc_dev.dv_xname;
490 1.6 ragge return i;
491 1.10 ragge }
492 1.6 ragge }
493 1.6 ragge return -1;
494 1.1 ragge }
495 1.4 ragge
496