mmemcard.c revision 1.1 1 1.1 itohy /* $NetBSD: mmemcard.c,v 1.1 2002/11/15 14:10:12 itohy Exp $ */
2 1.1 itohy
3 1.1 itohy /*-
4 1.1 itohy * Copyright (c) 2002 The NetBSD Foundation, Inc.
5 1.1 itohy * All rights reserved.
6 1.1 itohy *
7 1.1 itohy * This code is derived from software contributed to The NetBSD Foundation
8 1.1 itohy * by ITOH Yasufumi.
9 1.1 itohy *
10 1.1 itohy * Redistribution and use in source and binary forms, with or without
11 1.1 itohy * modification, are permitted provided that the following conditions
12 1.1 itohy * are met:
13 1.1 itohy * 1. Redistributions of source code must retain the above copyright
14 1.1 itohy * notice, this list of conditions and the following disclaimer.
15 1.1 itohy * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 itohy * notice, this list of conditions and the following disclaimer in the
17 1.1 itohy * documentation and/or other materials provided with the distribution.
18 1.1 itohy * 3. All advertising materials mentioning features or use of this software
19 1.1 itohy * must display the following acknowledgement:
20 1.1 itohy * This product includes software developed by the NetBSD
21 1.1 itohy * Foundation, Inc. and its contributors.
22 1.1 itohy * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.1 itohy * contributors may be used to endorse or promote products derived
24 1.1 itohy * from this software without specific prior written permission.
25 1.1 itohy *
26 1.1 itohy * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.1 itohy * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.1 itohy * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.1 itohy * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.1 itohy * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.1 itohy * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.1 itohy * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.1 itohy * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.1 itohy * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.1 itohy * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.1 itohy * POSSIBILITY OF SUCH DAMAGE.
37 1.1 itohy */
38 1.1 itohy
39 1.1 itohy #include <sys/param.h>
40 1.1 itohy #include <sys/buf.h>
41 1.1 itohy #include <sys/device.h>
42 1.1 itohy #include <sys/disklabel.h>
43 1.1 itohy #include <sys/disk.h>
44 1.1 itohy #include <sys/kernel.h>
45 1.1 itohy #include <sys/malloc.h>
46 1.1 itohy #include <sys/proc.h>
47 1.1 itohy #include <sys/stat.h>
48 1.1 itohy #include <sys/systm.h>
49 1.1 itohy #include <sys/vnode.h>
50 1.1 itohy #include <sys/conf.h>
51 1.1 itohy
52 1.1 itohy #include <dreamcast/dev/maple/maple.h>
53 1.1 itohy #include <dreamcast/dev/maple/mapleconf.h>
54 1.1 itohy
55 1.1 itohy #define MMEM_MAXACCSIZE 1012 /* (255*4) - 8 = 253*32 / 8 */
56 1.1 itohy
57 1.1 itohy struct mmem_funcdef { /* XXX assuming little-endian structure packing */
58 1.1 itohy unsigned unused : 8,
59 1.1 itohy ra : 4, /* number of access / read */
60 1.1 itohy wa : 4, /* number of access / write */
61 1.1 itohy bb : 8, /* block size / 32 - 1 */
62 1.1 itohy pt : 8; /* number of partition - 1 */
63 1.1 itohy };
64 1.1 itohy
65 1.1 itohy struct mmem_request_read_data {
66 1.1 itohy u_int32_t func_code;
67 1.1 itohy u_int8_t pt;
68 1.1 itohy u_int8_t phase;
69 1.1 itohy u_int16_t block;
70 1.1 itohy };
71 1.1 itohy
72 1.1 itohy struct mmem_response_read_data {
73 1.1 itohy u_int32_t func_code; /* function code (big endian) */
74 1.1 itohy u_int32_t blkno; /* 512byte block number (big endian) */
75 1.1 itohy u_int8_t data[MMEM_MAXACCSIZE];
76 1.1 itohy };
77 1.1 itohy
78 1.1 itohy struct mmem_request_write_data {
79 1.1 itohy u_int32_t func_code;
80 1.1 itohy u_int8_t pt;
81 1.1 itohy u_int8_t phase; /* 0, 1, 2, 3: for each 128 byte */
82 1.1 itohy u_int16_t block;
83 1.1 itohy u_int8_t data[MMEM_MAXACCSIZE];
84 1.1 itohy };
85 1.1 itohy #define MMEM_SIZE_REQW(sc) ((sc)->sc_waccsz + 8)
86 1.1 itohy
87 1.1 itohy struct mmem_request_get_media_info {
88 1.1 itohy u_int32_t func_code;
89 1.1 itohy u_int32_t pt; /* pt (1 byte) and unused 3 bytes */
90 1.1 itohy };
91 1.1 itohy
92 1.1 itohy struct mmem_media_info {
93 1.1 itohy u_int16_t maxblk, minblk;
94 1.1 itohy u_int16_t infpos;
95 1.1 itohy u_int16_t fatpos, fatsz;
96 1.1 itohy u_int16_t dirpos, dirsz;
97 1.1 itohy u_int16_t icon;
98 1.1 itohy u_int16_t datasz;
99 1.1 itohy u_int16_t rsvd[3];
100 1.1 itohy };
101 1.1 itohy
102 1.1 itohy struct mmem_response_media_info {
103 1.1 itohy u_int32_t func_code; /* function code (big endian) */
104 1.1 itohy struct mmem_media_info info;
105 1.1 itohy };
106 1.1 itohy
107 1.1 itohy struct mmem_softc {
108 1.1 itohy struct device sc_dev;
109 1.1 itohy
110 1.1 itohy struct device *sc_parent;
111 1.1 itohy struct maple_unit *sc_unit;
112 1.1 itohy struct maple_devinfo *sc_devinfo;
113 1.1 itohy
114 1.1 itohy enum mmem_stat {
115 1.1 itohy MMEM_INIT, /* during initialization */
116 1.1 itohy MMEM_INIT2, /* during initialization */
117 1.1 itohy MMEM_IDLE, /* init done, not in I/O */
118 1.1 itohy MMEM_READ, /* in read operation */
119 1.1 itohy MMEM_WRITE1, /* in write operation (read and compare) */
120 1.1 itohy MMEM_WRITE2, /* in write operation (write) */
121 1.1 itohy MMEM_DETACH /* detaching */
122 1.1 itohy } sc_stat;
123 1.1 itohy
124 1.1 itohy int sc_npt; /* number of partitions */
125 1.1 itohy int sc_bsize; /* block size */
126 1.1 itohy int sc_wacc; /* number of write access per block */
127 1.1 itohy int sc_waccsz; /* size of a write access */
128 1.1 itohy int sc_racc; /* number of read access per block */
129 1.1 itohy int sc_raccsz; /* size of a read access */
130 1.1 itohy
131 1.1 itohy struct mmem_pt {
132 1.1 itohy int pt_flags;
133 1.1 itohy #define MMEM_PT_OK 1 /* partition is alive */
134 1.1 itohy struct disk pt_dk; /* disk(9) */
135 1.1 itohy struct mmem_media_info pt_info; /* geometry per part */
136 1.1 itohy
137 1.1 itohy char pt_name[16 /* see device.h */ + 4 /* ".256" */];
138 1.1 itohy } *sc_pt;
139 1.1 itohy
140 1.1 itohy /* write request buffer (only one is used at a time) */
141 1.1 itohy union {
142 1.1 itohy struct mmem_request_read_data req_read;
143 1.1 itohy struct mmem_request_write_data req_write;
144 1.1 itohy struct mmem_request_get_media_info req_minfo;
145 1.1 itohy } sc_req;
146 1.1 itohy #define sc_reqr sc_req.req_read
147 1.1 itohy #define sc_reqw sc_req.req_write
148 1.1 itohy #define sc_reqm sc_req.req_minfo
149 1.1 itohy
150 1.1 itohy /* pending buffers */
151 1.1 itohy struct bufq_state sc_q;
152 1.1 itohy
153 1.1 itohy /* current I/O access */
154 1.1 itohy struct buf *sc_bp;
155 1.1 itohy int sc_cnt;
156 1.1 itohy char *sc_iobuf;
157 1.1 itohy int sc_retry;
158 1.1 itohy #define MMEM_MAXRETRY 12
159 1.1 itohy };
160 1.1 itohy
161 1.1 itohy /*
162 1.1 itohy * minor number layout (mmemdetach() depends on this layout):
163 1.1 itohy *
164 1.1 itohy * 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0
165 1.1 itohy * |---------------------| |---------------------| |---------|
166 1.1 itohy * unit part disklabel partition
167 1.1 itohy */
168 1.1 itohy #define MMEM_PART(diskunit) ((diskunit) & 0xff)
169 1.1 itohy #define MMEM_UNIT(diskunit) ((diskunit) >> 8)
170 1.1 itohy #define MMEM_DISKMINOR(unit, part, disklabel_partition) \
171 1.1 itohy DISKMINOR(((unit) << 8) | (part), (disklabel_partition))
172 1.1 itohy
173 1.1 itohy static int mmemmatch __P((struct device *, struct cfdata *, void *));
174 1.1 itohy static void mmemattach __P((struct device *, struct device *, void *));
175 1.1 itohy static void mmem_defaultlabel __P((struct mmem_softc *, struct mmem_pt *,
176 1.1 itohy struct disklabel *));
177 1.1 itohy static int mmemdetach __P((struct device *, int));
178 1.1 itohy static void mmem_intr __P((void *, struct maple_response *, int, int));
179 1.1 itohy static void mmem_printerror __P((const char *, int, int, u_int32_t));
180 1.1 itohy static void mmemstart __P((struct mmem_softc *));
181 1.1 itohy static void mmemstart_bp __P((struct mmem_softc *));
182 1.1 itohy static void mmemstart_write2 __P((struct mmem_softc *));
183 1.1 itohy static void mmemdone __P((struct mmem_softc *, struct mmem_pt *, int));
184 1.1 itohy
185 1.1 itohy dev_type_open(mmemopen);
186 1.1 itohy dev_type_close(mmemclose);
187 1.1 itohy dev_type_read(mmemread);
188 1.1 itohy dev_type_write(mmemwrite);
189 1.1 itohy dev_type_ioctl(mmemioctl);
190 1.1 itohy dev_type_strategy(mmemstrategy);
191 1.1 itohy
192 1.1 itohy const struct bdevsw mmem_bdevsw = {
193 1.1 itohy mmemopen, mmemclose, mmemstrategy, mmemioctl, nodump,
194 1.1 itohy nosize, D_DISK
195 1.1 itohy };
196 1.1 itohy
197 1.1 itohy const struct cdevsw mmem_cdevsw = {
198 1.1 itohy mmemopen, mmemclose, mmemread, mmemwrite, mmemioctl,
199 1.1 itohy nostop, notty, nopoll, nommap, nokqfilter, D_DISK
200 1.1 itohy };
201 1.1 itohy
202 1.1 itohy CFATTACH_DECL(mmem, sizeof(struct mmem_softc),
203 1.1 itohy mmemmatch, mmemattach, mmemdetach, NULL);
204 1.1 itohy
205 1.1 itohy extern struct cfdriver mmem_cd;
206 1.1 itohy
207 1.1 itohy struct dkdriver mmemdkdriver = { mmemstrategy };
208 1.1 itohy
209 1.1 itohy static int
210 1.1 itohy mmemmatch(parent, cf, aux)
211 1.1 itohy struct device *parent;
212 1.1 itohy struct cfdata *cf;
213 1.1 itohy void *aux;
214 1.1 itohy {
215 1.1 itohy struct maple_attach_args *ma = aux;
216 1.1 itohy
217 1.1 itohy return (ma->ma_function == MAPLE_FN_MEMCARD ? MAPLE_MATCH_FUNC : 0);
218 1.1 itohy }
219 1.1 itohy
220 1.1 itohy static void
221 1.1 itohy mmemattach(parent, self, aux)
222 1.1 itohy struct device *parent, *self;
223 1.1 itohy void *aux;
224 1.1 itohy {
225 1.1 itohy struct mmem_softc *sc = (void *) self;
226 1.1 itohy struct maple_attach_args *ma = aux;
227 1.1 itohy int i;
228 1.1 itohy union {
229 1.1 itohy u_int32_t v;
230 1.1 itohy struct mmem_funcdef s;
231 1.1 itohy } funcdef;
232 1.1 itohy
233 1.1 itohy sc->sc_parent = parent;
234 1.1 itohy sc->sc_unit = ma->ma_unit;
235 1.1 itohy sc->sc_devinfo = ma->ma_devinfo;
236 1.1 itohy
237 1.1 itohy funcdef.v = maple_get_function_data(ma->ma_devinfo, MAPLE_FN_MEMCARD);
238 1.1 itohy printf(": Memory card\n");
239 1.1 itohy printf("%s: %d part, %d bytes/block, ",
240 1.1 itohy sc->sc_dev.dv_xname,
241 1.1 itohy sc->sc_npt = funcdef.s.pt + 1,
242 1.1 itohy sc->sc_bsize = (funcdef.s.bb + 1) << 5);
243 1.1 itohy if ((sc->sc_wacc = funcdef.s.wa) == 0)
244 1.1 itohy printf("no write, ");
245 1.1 itohy else
246 1.1 itohy printf("%d acc/write, ", sc->sc_wacc);
247 1.1 itohy if ((sc->sc_racc = funcdef.s.ra) == 0)
248 1.1 itohy printf("no read\n");
249 1.1 itohy else
250 1.1 itohy printf("%d acc/read\n", sc->sc_racc);
251 1.1 itohy
252 1.1 itohy /*
253 1.1 itohy * start init sequence
254 1.1 itohy */
255 1.1 itohy sc->sc_stat = MMEM_INIT;
256 1.1 itohy bufq_alloc(&sc->sc_q, BUFQ_DISKSORT|BUFQ_SORT_RAWBLOCK);
257 1.1 itohy
258 1.1 itohy /* check consistency */
259 1.1 itohy if (sc->sc_wacc != 0) {
260 1.1 itohy sc->sc_waccsz = sc->sc_bsize / sc->sc_wacc;
261 1.1 itohy if (sc->sc_bsize != sc->sc_waccsz * sc->sc_wacc) {
262 1.1 itohy printf("%s: write access isn't equally divided\n",
263 1.1 itohy sc->sc_dev.dv_xname);
264 1.1 itohy sc->sc_wacc = 0; /* no write */
265 1.1 itohy } else if (sc->sc_waccsz > MMEM_MAXACCSIZE) {
266 1.1 itohy printf("%s: write access size is too large\n",
267 1.1 itohy sc->sc_dev.dv_xname);
268 1.1 itohy sc->sc_wacc = 0; /* no write */
269 1.1 itohy }
270 1.1 itohy }
271 1.1 itohy if (sc->sc_racc != 0) {
272 1.1 itohy sc->sc_raccsz = sc->sc_bsize / sc->sc_racc;
273 1.1 itohy if (sc->sc_bsize != sc->sc_raccsz * sc->sc_racc) {
274 1.1 itohy printf("%s: read access isn't equally divided\n",
275 1.1 itohy sc->sc_dev.dv_xname);
276 1.1 itohy sc->sc_racc = 0; /* no read */
277 1.1 itohy } else if (sc->sc_raccsz > MMEM_MAXACCSIZE) {
278 1.1 itohy printf("%s: read access size is too large\n",
279 1.1 itohy sc->sc_dev.dv_xname);
280 1.1 itohy sc->sc_racc = 0; /* no read */
281 1.1 itohy }
282 1.1 itohy }
283 1.1 itohy if (sc->sc_wacc == 0 && sc->sc_racc == 0) {
284 1.1 itohy printf("%s: device doesn't support read nor write\n",
285 1.1 itohy sc->sc_dev.dv_xname);
286 1.1 itohy return;
287 1.1 itohy }
288 1.1 itohy
289 1.1 itohy /* per-part structure */
290 1.1 itohy sc->sc_pt = malloc(sizeof(struct mmem_pt) * sc->sc_npt, M_DEVBUF,
291 1.1 itohy M_WAITOK|M_ZERO);
292 1.1 itohy
293 1.1 itohy for (i = 0; i < sc->sc_npt; i++) {
294 1.1 itohy sprintf(sc->sc_pt[i].pt_name, "%s.%d", sc->sc_dev.dv_xname, i);
295 1.1 itohy }
296 1.1 itohy
297 1.1 itohy maple_set_callback(parent, sc->sc_unit, MAPLE_FN_MEMCARD,
298 1.1 itohy mmem_intr, sc);
299 1.1 itohy
300 1.1 itohy /*
301 1.1 itohy * get capacity (start from partition 0)
302 1.1 itohy */
303 1.1 itohy sc->sc_reqm.func_code = htonl(MAPLE_FUNC(MAPLE_FN_MEMCARD));
304 1.1 itohy sc->sc_reqm.pt = 0;
305 1.1 itohy maple_command(sc->sc_parent, sc->sc_unit, MAPLE_FN_MEMCARD,
306 1.1 itohy MAPLE_COMMAND_GETMINFO, sizeof sc->sc_reqm / 4, &sc->sc_reqm, 0);
307 1.1 itohy }
308 1.1 itohy
309 1.1 itohy static int
310 1.1 itohy mmemdetach(self, flags)
311 1.1 itohy struct device *self;
312 1.1 itohy int flags;
313 1.1 itohy {
314 1.1 itohy struct mmem_softc *sc = (struct mmem_softc *) self;
315 1.1 itohy struct buf *bp;
316 1.1 itohy int i;
317 1.1 itohy int minor_l, minor_h;
318 1.1 itohy
319 1.1 itohy sc->sc_stat = MMEM_DETACH; /* just in case */
320 1.1 itohy
321 1.1 itohy /*
322 1.1 itohy * kill pending I/O
323 1.1 itohy */
324 1.1 itohy if ((bp = sc->sc_bp) != NULL) {
325 1.1 itohy bp->b_error = EIO;
326 1.1 itohy bp->b_flags |= B_ERROR;
327 1.1 itohy bp->b_resid = bp->b_bcount;
328 1.1 itohy biodone(bp);
329 1.1 itohy }
330 1.1 itohy while ((bp = BUFQ_GET(&sc->sc_q)) != NULL) {
331 1.1 itohy bp->b_error = EIO;
332 1.1 itohy bp->b_flags |= B_ERROR;
333 1.1 itohy bp->b_resid = bp->b_bcount;
334 1.1 itohy biodone(bp);
335 1.1 itohy }
336 1.1 itohy bufq_free(&sc->sc_q);
337 1.1 itohy
338 1.1 itohy /*
339 1.1 itohy * revoke vnodes
340 1.1 itohy */
341 1.1 itohy #ifdef __HAVE_OLD_DISKLABEL
342 1.1 itohy #error This code assumes DISKUNIT() is contiguous in minor number.
343 1.1 itohy #endif
344 1.1 itohy minor_l = MMEM_DISKMINOR(self->dv_unit, 0, 0);
345 1.1 itohy minor_h = MMEM_DISKMINOR(self->dv_unit, sc->sc_npt - 1,
346 1.1 itohy MAXPARTITIONS - 1);
347 1.1 itohy vdevgone(bdevsw_lookup_major(&mmem_bdevsw), minor_l, minor_h, VBLK);
348 1.1 itohy vdevgone(cdevsw_lookup_major(&mmem_cdevsw), minor_l, minor_h, VCHR);
349 1.1 itohy
350 1.1 itohy /*
351 1.1 itohy * free per-partition structure
352 1.1 itohy */
353 1.1 itohy if (sc->sc_pt) {
354 1.1 itohy /*
355 1.1 itohy * detach disks
356 1.1 itohy */
357 1.1 itohy for (i = 0; i < sc->sc_npt; i++) {
358 1.1 itohy if (sc->sc_pt[i].pt_flags & MMEM_PT_OK)
359 1.1 itohy disk_detach(&sc->sc_pt[i].pt_dk);
360 1.1 itohy }
361 1.1 itohy free(sc->sc_pt, M_DEVBUF);
362 1.1 itohy }
363 1.1 itohy
364 1.1 itohy return 0;
365 1.1 itohy }
366 1.1 itohy
367 1.1 itohy /* fake disklabel */
368 1.1 itohy static void
369 1.1 itohy mmem_defaultlabel(sc, pt, d)
370 1.1 itohy struct mmem_softc *sc;
371 1.1 itohy struct mmem_pt *pt;
372 1.1 itohy struct disklabel *d;
373 1.1 itohy {
374 1.1 itohy
375 1.1 itohy bzero(d, sizeof *d);
376 1.1 itohy
377 1.1 itohy #if 0
378 1.1 itohy d->d_type = DTYPE_FLOPPY; /* XXX? */
379 1.1 itohy #endif
380 1.1 itohy strncpy(d->d_typename, sc->sc_devinfo->di_product_name,
381 1.1 itohy sizeof d->d_typename);
382 1.1 itohy strcpy(d->d_packname, "fictitious");
383 1.1 itohy d->d_secsize = sc->sc_bsize;
384 1.1 itohy d->d_ntracks = 1; /* XXX */
385 1.1 itohy d->d_nsectors = d->d_secpercyl = 8; /* XXX */
386 1.1 itohy d->d_secperunit = pt->pt_info.maxblk - pt->pt_info.minblk + 1;
387 1.1 itohy d->d_ncylinders = d->d_secperunit / d->d_secpercyl;
388 1.1 itohy d->d_rpm = 1; /* when 4 acc/write */
389 1.1 itohy
390 1.1 itohy d->d_npartitions = RAW_PART + 1;
391 1.1 itohy d->d_partitions[RAW_PART].p_size = d->d_secperunit;
392 1.1 itohy
393 1.1 itohy d->d_magic = d->d_magic2 = DISKMAGIC;
394 1.1 itohy d->d_checksum = dkcksum(d);
395 1.1 itohy }
396 1.1 itohy
397 1.1 itohy /*
398 1.1 itohy * called back from maple bus driver
399 1.1 itohy */
400 1.1 itohy static void
401 1.1 itohy mmem_intr(dev, response, sz, flags)
402 1.1 itohy void *dev;
403 1.1 itohy struct maple_response *response;
404 1.1 itohy int sz, flags;
405 1.1 itohy {
406 1.1 itohy struct mmem_softc *sc = dev;
407 1.1 itohy struct mmem_response_read_data *r = (void *) response->data;
408 1.1 itohy struct mmem_response_media_info *rm = (void *) response->data;
409 1.1 itohy struct buf *bp;
410 1.1 itohy int part;
411 1.1 itohy struct mmem_pt *pt;
412 1.1 itohy char pbuf[9];
413 1.1 itohy int off;
414 1.1 itohy
415 1.1 itohy switch (sc->sc_stat) {
416 1.1 itohy case MMEM_INIT:
417 1.1 itohy /* checking part geometry */
418 1.1 itohy part = sc->sc_reqm.pt;
419 1.1 itohy pt = &sc->sc_pt[part];
420 1.1 itohy switch ((maple_response_t) response->response_code) {
421 1.1 itohy case MAPLE_RESPONSE_DATATRF:
422 1.1 itohy pt->pt_info = rm->info;
423 1.1 itohy format_bytes(pbuf, sizeof(pbuf),
424 1.1 itohy (u_int64_t)
425 1.1 itohy ((pt->pt_info.maxblk - pt->pt_info.minblk + 1)
426 1.1 itohy * sc->sc_bsize));
427 1.1 itohy printf("%s: %s, blk %d %d, inf %d, fat %d %d, dir %d %d, icon %d, data %d\n",
428 1.1 itohy pt->pt_name,
429 1.1 itohy pbuf,
430 1.1 itohy pt->pt_info.maxblk, pt->pt_info.minblk,
431 1.1 itohy pt->pt_info.infpos,
432 1.1 itohy pt->pt_info.fatpos, pt->pt_info.fatsz,
433 1.1 itohy pt->pt_info.dirpos, pt->pt_info.dirsz,
434 1.1 itohy pt->pt_info.icon,
435 1.1 itohy pt->pt_info.datasz);
436 1.1 itohy
437 1.1 itohy pt->pt_dk.dk_driver = &mmemdkdriver;
438 1.1 itohy pt->pt_dk.dk_name = pt->pt_name;
439 1.1 itohy disk_attach(&pt->pt_dk);
440 1.1 itohy
441 1.1 itohy mmem_defaultlabel(sc, pt, pt->pt_dk.dk_label);
442 1.1 itohy
443 1.1 itohy /* this partition is active */
444 1.1 itohy pt->pt_flags = MMEM_PT_OK;
445 1.1 itohy
446 1.1 itohy break;
447 1.1 itohy default:
448 1.1 itohy printf("%s: init: unexpected response %#x, sz %d\n",
449 1.1 itohy pt->pt_name, ntohl(response->response_code), sz);
450 1.1 itohy break;
451 1.1 itohy }
452 1.1 itohy if (++part == sc->sc_npt) {
453 1.1 itohy #if 1
454 1.1 itohy /*
455 1.1 itohy * XXX Read a block and discard the contents (only to
456 1.1 itohy * turn off the access indicator on Visual Memory).
457 1.1 itohy */
458 1.1 itohy pt = &sc->sc_pt[0];
459 1.1 itohy sc->sc_reqr.func_code =
460 1.1 itohy htonl(MAPLE_FUNC(MAPLE_FN_MEMCARD));
461 1.1 itohy sc->sc_reqr.pt = 0;
462 1.1 itohy sc->sc_reqr.block = htons(pt->pt_info.minblk);
463 1.1 itohy sc->sc_reqr.phase = 0;
464 1.1 itohy maple_command(sc->sc_parent, sc->sc_unit,
465 1.1 itohy MAPLE_FN_MEMCARD, MAPLE_COMMAND_BREAD,
466 1.1 itohy sizeof sc->sc_reqr / 4, &sc->sc_reqr, 0);
467 1.1 itohy sc->sc_stat = MMEM_INIT2;
468 1.1 itohy #else
469 1.1 itohy sc->sc_stat = MMEM_IDLE; /* init done */
470 1.1 itohy #endif
471 1.1 itohy } else {
472 1.1 itohy sc->sc_reqm.pt = part;
473 1.1 itohy maple_command(sc->sc_parent, sc->sc_unit,
474 1.1 itohy MAPLE_FN_MEMCARD, MAPLE_COMMAND_GETMINFO,
475 1.1 itohy sizeof sc->sc_reqm / 4, &sc->sc_reqm, 0);
476 1.1 itohy }
477 1.1 itohy break;
478 1.1 itohy
479 1.1 itohy case MMEM_INIT2:
480 1.1 itohy /* XXX just discard */
481 1.1 itohy sc->sc_stat = MMEM_IDLE; /* init done */
482 1.1 itohy break;
483 1.1 itohy
484 1.1 itohy case MMEM_READ:
485 1.1 itohy bp = sc->sc_bp;
486 1.1 itohy
487 1.1 itohy switch ((maple_response_t) response->response_code) {
488 1.1 itohy case MAPLE_RESPONSE_DATATRF: /* read done */
489 1.1 itohy off = sc->sc_raccsz * sc->sc_reqr.phase;
490 1.1 itohy bcopy(r->data + off, sc->sc_iobuf + off, sc->sc_raccsz);
491 1.1 itohy
492 1.1 itohy if (++sc->sc_reqr.phase == sc->sc_racc) {
493 1.1 itohy /* all phase done */
494 1.1 itohy pt = &sc->sc_pt[sc->sc_reqr.pt];
495 1.1 itohy mmemdone(sc, pt, 0);
496 1.1 itohy } else {
497 1.1 itohy /* go next phase */
498 1.1 itohy maple_command(sc->sc_parent, sc->sc_unit,
499 1.1 itohy MAPLE_FN_MEMCARD, MAPLE_COMMAND_BREAD,
500 1.1 itohy sizeof sc->sc_reqr / 4, &sc->sc_reqr, 0);
501 1.1 itohy }
502 1.1 itohy break;
503 1.1 itohy case MAPLE_RESPONSE_FILEERR:
504 1.1 itohy mmem_printerror(sc->sc_pt[sc->sc_reqr.pt].pt_name,
505 1.1 itohy 1, bp->b_rawblkno,
506 1.1 itohy r->func_code /* XXX */);
507 1.1 itohy mmemstart_bp(sc); /* retry */
508 1.1 itohy break;
509 1.1 itohy default:
510 1.1 itohy printf("%s: read: unexpected response %#x %#x, sz %d\n",
511 1.1 itohy sc->sc_pt[sc->sc_reqr.pt].pt_name,
512 1.1 itohy ntohl(response->response_code),
513 1.1 itohy ntohl(r->func_code), sz);
514 1.1 itohy mmemstart_bp(sc); /* retry */
515 1.1 itohy break;
516 1.1 itohy }
517 1.1 itohy break;
518 1.1 itohy
519 1.1 itohy case MMEM_WRITE1: /* read before write / verify after write */
520 1.1 itohy bp = sc->sc_bp;
521 1.1 itohy
522 1.1 itohy switch ((maple_response_t) response->response_code) {
523 1.1 itohy case MAPLE_RESPONSE_DATATRF: /* read done */
524 1.1 itohy off = sc->sc_raccsz * sc->sc_reqr.phase;
525 1.1 itohy if (bcmp(r->data + off, sc->sc_iobuf + off,
526 1.1 itohy sc->sc_raccsz)) {
527 1.1 itohy /*
528 1.1 itohy * data differ, start writing
529 1.1 itohy */
530 1.1 itohy mmemstart_write2(sc);
531 1.1 itohy } else if (++sc->sc_reqr.phase == sc->sc_racc) {
532 1.1 itohy /*
533 1.1 itohy * all phase done and compared equal
534 1.1 itohy */
535 1.1 itohy pt = &sc->sc_pt[sc->sc_reqr.pt];
536 1.1 itohy mmemdone(sc, pt, 0);
537 1.1 itohy } else {
538 1.1 itohy /* go next phase */
539 1.1 itohy maple_command(sc->sc_parent, sc->sc_unit,
540 1.1 itohy MAPLE_FN_MEMCARD, MAPLE_COMMAND_BREAD,
541 1.1 itohy sizeof sc->sc_reqr / 4, &sc->sc_reqr, 0);
542 1.1 itohy }
543 1.1 itohy break;
544 1.1 itohy case MAPLE_RESPONSE_FILEERR:
545 1.1 itohy mmem_printerror(sc->sc_pt[sc->sc_reqr.pt].pt_name,
546 1.1 itohy 1, bp->b_rawblkno,
547 1.1 itohy r->func_code /* XXX */);
548 1.1 itohy mmemstart_write2(sc); /* start writing */
549 1.1 itohy break;
550 1.1 itohy default:
551 1.1 itohy printf("%s: verify: unexpected response %#x %#x, sz %d\n",
552 1.1 itohy sc->sc_pt[sc->sc_reqr.pt].pt_name,
553 1.1 itohy ntohl(response->response_code),
554 1.1 itohy ntohl(r->func_code), sz);
555 1.1 itohy mmemstart_write2(sc); /* start writing */
556 1.1 itohy break;
557 1.1 itohy }
558 1.1 itohy break;
559 1.1 itohy
560 1.1 itohy case MMEM_WRITE2: /* write */
561 1.1 itohy bp = sc->sc_bp;
562 1.1 itohy
563 1.1 itohy switch ((maple_response_t) response->response_code) {
564 1.1 itohy case MAPLE_RESPONSE_OK: /* write done */
565 1.1 itohy if (sc->sc_reqw.phase == sc->sc_wacc) {
566 1.1 itohy /* all phase done */
567 1.1 itohy mmemstart_bp(sc); /* start verify */
568 1.1 itohy } else if (++sc->sc_reqw.phase == sc->sc_wacc) {
569 1.1 itohy /* check error */
570 1.1 itohy maple_command(sc->sc_parent, sc->sc_unit,
571 1.1 itohy MAPLE_FN_MEMCARD, MAPLE_COMMAND_GETLASTERR,
572 1.1 itohy 2 /* no data */ , &sc->sc_reqw,
573 1.1 itohy MAPLE_FLAG_CMD_PERIODIC_TIMING);
574 1.1 itohy } else {
575 1.1 itohy /* go next phase */
576 1.1 itohy bcopy(sc->sc_iobuf
577 1.1 itohy + sc->sc_waccsz * sc->sc_reqw.phase,
578 1.1 itohy sc->sc_reqw.data, sc->sc_waccsz);
579 1.1 itohy maple_command(sc->sc_parent, sc->sc_unit,
580 1.1 itohy MAPLE_FN_MEMCARD, MAPLE_COMMAND_BWRITE,
581 1.1 itohy MMEM_SIZE_REQW(sc) / 4, &sc->sc_reqw,
582 1.1 itohy MAPLE_FLAG_CMD_PERIODIC_TIMING);
583 1.1 itohy }
584 1.1 itohy break;
585 1.1 itohy case MAPLE_RESPONSE_FILEERR:
586 1.1 itohy mmem_printerror(sc->sc_pt[sc->sc_reqw.pt].pt_name,
587 1.1 itohy 0, bp->b_rawblkno,
588 1.1 itohy r->func_code /* XXX */);
589 1.1 itohy mmemstart_write2(sc); /* retry writing */
590 1.1 itohy break;
591 1.1 itohy default:
592 1.1 itohy printf("%s: write: unexpected response %#x, %#x, sz %d\n",
593 1.1 itohy sc->sc_pt[sc->sc_reqw.pt].pt_name,
594 1.1 itohy ntohl(response->response_code),
595 1.1 itohy ntohl(r->func_code), sz);
596 1.1 itohy mmemstart_write2(sc); /* retry writing */
597 1.1 itohy break;
598 1.1 itohy }
599 1.1 itohy break;
600 1.1 itohy
601 1.1 itohy default:
602 1.1 itohy break;
603 1.1 itohy }
604 1.1 itohy }
605 1.1 itohy
606 1.1 itohy static void
607 1.1 itohy mmem_printerror(head, rd, blk, code)
608 1.1 itohy const char *head;
609 1.1 itohy int rd; /* 1: read, 0: write */
610 1.1 itohy int blk;
611 1.1 itohy u_int32_t code;
612 1.1 itohy {
613 1.1 itohy
614 1.1 itohy printf("%s: error %sing blk %d:", head, rd? "read" : "writ", blk);
615 1.1 itohy NTOHL(code);
616 1.1 itohy if (code & 1)
617 1.1 itohy printf(" PT error");
618 1.1 itohy if (code & 2)
619 1.1 itohy printf(" Phase error");
620 1.1 itohy if (code & 4)
621 1.1 itohy printf(" Block error");
622 1.1 itohy if (code & 010)
623 1.1 itohy printf(" Write error");
624 1.1 itohy if (code & 020)
625 1.1 itohy printf(" Length error");
626 1.1 itohy if (code & 040)
627 1.1 itohy printf(" CRC error");
628 1.1 itohy if (code & ~077)
629 1.1 itohy printf(" Unknown error %#x", code & ~077);
630 1.1 itohy printf("\n");
631 1.1 itohy }
632 1.1 itohy
633 1.1 itohy int
634 1.1 itohy mmemopen(dev, flags, devtype, p)
635 1.1 itohy dev_t dev;
636 1.1 itohy int flags, devtype;
637 1.1 itohy struct proc *p;
638 1.1 itohy {
639 1.1 itohy int diskunit, unit, part, labelpart;
640 1.1 itohy struct mmem_softc *sc;
641 1.1 itohy struct mmem_pt *pt;
642 1.1 itohy
643 1.1 itohy diskunit = DISKUNIT(dev);
644 1.1 itohy unit = MMEM_UNIT(diskunit);
645 1.1 itohy part = MMEM_PART(diskunit);
646 1.1 itohy labelpart = DISKPART(dev);
647 1.1 itohy if ((sc = device_lookup(&mmem_cd, unit)) == NULL
648 1.1 itohy || sc->sc_stat == MMEM_INIT
649 1.1 itohy || sc->sc_stat == MMEM_INIT2
650 1.1 itohy || part >= sc->sc_npt || (pt = &sc->sc_pt[part])->pt_flags == 0)
651 1.1 itohy return ENXIO;
652 1.1 itohy
653 1.1 itohy switch (devtype) {
654 1.1 itohy case S_IFCHR:
655 1.1 itohy pt->pt_dk.dk_copenmask |= (1 << labelpart);
656 1.1 itohy break;
657 1.1 itohy case S_IFBLK:
658 1.1 itohy pt->pt_dk.dk_bopenmask |= (1 << labelpart);
659 1.1 itohy break;
660 1.1 itohy }
661 1.1 itohy
662 1.1 itohy return 0;
663 1.1 itohy }
664 1.1 itohy
665 1.1 itohy int
666 1.1 itohy mmemclose(dev, flags, devtype, p)
667 1.1 itohy dev_t dev;
668 1.1 itohy int flags, devtype;
669 1.1 itohy struct proc *p;
670 1.1 itohy {
671 1.1 itohy int diskunit, unit, part, labelpart;
672 1.1 itohy struct mmem_softc *sc;
673 1.1 itohy struct mmem_pt *pt;
674 1.1 itohy
675 1.1 itohy diskunit = DISKUNIT(dev);
676 1.1 itohy unit = MMEM_UNIT(diskunit);
677 1.1 itohy part = MMEM_PART(diskunit);
678 1.1 itohy sc = mmem_cd.cd_devs[unit];
679 1.1 itohy pt = &sc->sc_pt[part];
680 1.1 itohy labelpart = DISKPART(dev);
681 1.1 itohy
682 1.1 itohy switch (devtype) {
683 1.1 itohy case S_IFCHR:
684 1.1 itohy pt->pt_dk.dk_copenmask &= ~(1 << labelpart);
685 1.1 itohy break;
686 1.1 itohy case S_IFBLK:
687 1.1 itohy pt->pt_dk.dk_bopenmask &= ~(1 << labelpart);
688 1.1 itohy break;
689 1.1 itohy }
690 1.1 itohy
691 1.1 itohy return 0;
692 1.1 itohy }
693 1.1 itohy
694 1.1 itohy void
695 1.1 itohy mmemstrategy(bp)
696 1.1 itohy struct buf *bp;
697 1.1 itohy {
698 1.1 itohy int diskunit, unit, part, labelpart;
699 1.1 itohy struct mmem_softc *sc;
700 1.1 itohy struct mmem_pt *pt;
701 1.1 itohy daddr_t off, nblk, cnt;
702 1.1 itohy
703 1.1 itohy diskunit = DISKUNIT(bp->b_dev);
704 1.1 itohy unit = MMEM_UNIT(diskunit);
705 1.1 itohy part = MMEM_PART(diskunit);
706 1.1 itohy sc = mmem_cd.cd_devs[unit];
707 1.1 itohy pt = &sc->sc_pt[part];
708 1.1 itohy
709 1.1 itohy #if 0
710 1.1 itohy printf("%s: mmemstrategy: blkno %d, count %ld\n",
711 1.1 itohy pt->pt_name, bp->b_blkno, bp->b_bcount);
712 1.1 itohy #endif
713 1.1 itohy
714 1.1 itohy if (bp->b_flags & B_READ) {
715 1.1 itohy if (sc->sc_racc == 0)
716 1.1 itohy goto inval; /* no read */
717 1.1 itohy } else if (sc->sc_wacc == 0) {
718 1.1 itohy bp->b_error = EROFS; /* no write */
719 1.1 itohy goto bad;
720 1.1 itohy }
721 1.1 itohy
722 1.1 itohy if (bp->b_blkno & ~(~(daddr_t)0 >> (DEV_BSHIFT + 1 /* sign bit */))
723 1.1 itohy || (bp->b_bcount % sc->sc_bsize) != 0)
724 1.1 itohy goto inval;
725 1.1 itohy
726 1.1 itohy cnt = howmany(bp->b_bcount, sc->sc_bsize);
727 1.1 itohy if (cnt == 0)
728 1.1 itohy goto done; /* no work */
729 1.1 itohy
730 1.1 itohy off = bp->b_blkno * DEV_BSIZE / sc->sc_bsize;
731 1.1 itohy
732 1.1 itohy /* offset to disklabel partition */
733 1.1 itohy labelpart = DISKPART(bp->b_dev);
734 1.1 itohy if (labelpart == RAW_PART) {
735 1.1 itohy nblk = pt->pt_info.maxblk - pt->pt_info.minblk + 1;
736 1.1 itohy } else {
737 1.1 itohy off +=
738 1.1 itohy nblk = pt->pt_dk.dk_label->d_partitions[labelpart].p_offset;
739 1.1 itohy nblk += pt->pt_dk.dk_label->d_partitions[labelpart].p_size;
740 1.1 itohy }
741 1.1 itohy
742 1.1 itohy /* deal with the EOF condition */
743 1.1 itohy if (off + cnt > nblk) {
744 1.1 itohy if (off >= nblk) {
745 1.1 itohy if (off == nblk)
746 1.1 itohy goto done;
747 1.1 itohy goto inval;
748 1.1 itohy }
749 1.1 itohy cnt = nblk - off;
750 1.1 itohy bp->b_resid = bp->b_bcount - (cnt * sc->sc_bsize);
751 1.1 itohy }
752 1.1 itohy
753 1.1 itohy bp->b_rawblkno = off;
754 1.1 itohy
755 1.1 itohy /* queue this transfer */
756 1.1 itohy BUFQ_PUT(&sc->sc_q, bp);
757 1.1 itohy
758 1.1 itohy if (sc->sc_stat == MMEM_IDLE)
759 1.1 itohy mmemstart(sc);
760 1.1 itohy
761 1.1 itohy return;
762 1.1 itohy
763 1.1 itohy inval: bp->b_error = EINVAL;
764 1.1 itohy bad: bp->b_flags |= B_ERROR;
765 1.1 itohy done: bp->b_resid = bp->b_bcount;
766 1.1 itohy biodone(bp);
767 1.1 itohy }
768 1.1 itohy
769 1.1 itohy /*
770 1.1 itohy * start I/O operations
771 1.1 itohy */
772 1.1 itohy static void
773 1.1 itohy mmemstart(sc)
774 1.1 itohy struct mmem_softc *sc;
775 1.1 itohy {
776 1.1 itohy struct buf *bp;
777 1.1 itohy struct mmem_pt *pt;
778 1.1 itohy int s;
779 1.1 itohy
780 1.1 itohy if ((bp = BUFQ_GET(&sc->sc_q)) == NULL) {
781 1.1 itohy sc->sc_stat = MMEM_IDLE;
782 1.1 itohy maple_enable_unit_ping(sc->sc_parent, sc->sc_unit,
783 1.1 itohy MAPLE_FN_MEMCARD, 1);
784 1.1 itohy return;
785 1.1 itohy }
786 1.1 itohy
787 1.1 itohy sc->sc_bp = bp;
788 1.1 itohy sc->sc_cnt = howmany(bp->b_bcount - bp->b_resid, sc->sc_bsize);
789 1.1 itohy KASSERT(sc->sc_cnt);
790 1.1 itohy sc->sc_iobuf = bp->b_data;
791 1.1 itohy sc->sc_retry = 0;
792 1.1 itohy
793 1.1 itohy pt = &sc->sc_pt[MMEM_PART(DISKUNIT(bp->b_dev))];
794 1.1 itohy s = splbio();
795 1.1 itohy disk_busy(&pt->pt_dk);
796 1.1 itohy splx(s);
797 1.1 itohy
798 1.1 itohy /*
799 1.1 itohy * I/O access will fail if the removal detection (by maple driver)
800 1.1 itohy * occurs before finishing the I/O, so disable it.
801 1.1 itohy * We are sending commands, and the removal detection is still alive.
802 1.1 itohy */
803 1.1 itohy maple_enable_unit_ping(sc->sc_parent, sc->sc_unit, MAPLE_FN_MEMCARD, 0);
804 1.1 itohy
805 1.1 itohy mmemstart_bp(sc);
806 1.1 itohy }
807 1.1 itohy
808 1.1 itohy /*
809 1.1 itohy * start/retry a specified I/O operation
810 1.1 itohy */
811 1.1 itohy static void
812 1.1 itohy mmemstart_bp(sc)
813 1.1 itohy struct mmem_softc *sc;
814 1.1 itohy {
815 1.1 itohy struct buf *bp;
816 1.1 itohy int diskunit, part;
817 1.1 itohy struct mmem_pt *pt;
818 1.1 itohy
819 1.1 itohy bp = sc->sc_bp;
820 1.1 itohy diskunit = DISKUNIT(bp->b_dev);
821 1.1 itohy part = MMEM_PART(diskunit);
822 1.1 itohy pt = &sc->sc_pt[part];
823 1.1 itohy
824 1.1 itohy /* handle retry */
825 1.1 itohy if (sc->sc_retry++ > MMEM_MAXRETRY) {
826 1.1 itohy /* retry count exceeded */
827 1.1 itohy mmemdone(sc, pt, 1);
828 1.1 itohy return;
829 1.1 itohy }
830 1.1 itohy
831 1.1 itohy /*
832 1.1 itohy * Start the first phase (phase# = 0).
833 1.1 itohy */
834 1.1 itohy /* start read */
835 1.1 itohy sc->sc_stat = (bp->b_flags & B_READ) ? MMEM_READ : MMEM_WRITE1;
836 1.1 itohy sc->sc_reqr.func_code = htonl(MAPLE_FUNC(MAPLE_FN_MEMCARD));
837 1.1 itohy sc->sc_reqr.pt = part;
838 1.1 itohy sc->sc_reqr.block = htons(bp->b_rawblkno);
839 1.1 itohy sc->sc_reqr.phase = 0; /* first phase */
840 1.1 itohy maple_command(sc->sc_parent, sc->sc_unit, MAPLE_FN_MEMCARD,
841 1.1 itohy MAPLE_COMMAND_BREAD, sizeof sc->sc_reqr / 4, &sc->sc_reqr, 0);
842 1.1 itohy }
843 1.1 itohy
844 1.1 itohy static void
845 1.1 itohy mmemstart_write2(sc)
846 1.1 itohy struct mmem_softc *sc;
847 1.1 itohy {
848 1.1 itohy struct buf *bp;
849 1.1 itohy int diskunit, part;
850 1.1 itohy struct mmem_pt *pt;
851 1.1 itohy
852 1.1 itohy bp = sc->sc_bp;
853 1.1 itohy diskunit = DISKUNIT(bp->b_dev);
854 1.1 itohy part = MMEM_PART(diskunit);
855 1.1 itohy pt = &sc->sc_pt[part];
856 1.1 itohy
857 1.1 itohy /* handle retry */
858 1.1 itohy if (sc->sc_retry++ > MMEM_MAXRETRY - 2 /* spare for verify read */) {
859 1.1 itohy /* retry count exceeded */
860 1.1 itohy mmemdone(sc, pt, 1);
861 1.1 itohy return;
862 1.1 itohy }
863 1.1 itohy
864 1.1 itohy /*
865 1.1 itohy * Start the first phase (phase# = 0).
866 1.1 itohy */
867 1.1 itohy /* start write */
868 1.1 itohy sc->sc_stat = MMEM_WRITE2;
869 1.1 itohy sc->sc_reqw.func_code = htonl(MAPLE_FUNC(MAPLE_FN_MEMCARD));
870 1.1 itohy sc->sc_reqw.pt = part;
871 1.1 itohy sc->sc_reqw.block = htons(bp->b_rawblkno);
872 1.1 itohy sc->sc_reqw.phase = 0; /* first phase */
873 1.1 itohy bcopy(sc->sc_iobuf /* + sc->sc_waccsz * phase */,
874 1.1 itohy sc->sc_reqw.data, sc->sc_waccsz);
875 1.1 itohy maple_command(sc->sc_parent, sc->sc_unit, MAPLE_FN_MEMCARD,
876 1.1 itohy MAPLE_COMMAND_BWRITE, MMEM_SIZE_REQW(sc) / 4, &sc->sc_reqw,
877 1.1 itohy MAPLE_FLAG_CMD_PERIODIC_TIMING);
878 1.1 itohy }
879 1.1 itohy
880 1.1 itohy static void
881 1.1 itohy mmemdone(sc, pt, err)
882 1.1 itohy struct mmem_softc *sc;
883 1.1 itohy struct mmem_pt *pt;
884 1.1 itohy int err;
885 1.1 itohy {
886 1.1 itohy struct buf *bp = sc->sc_bp;
887 1.1 itohy int s;
888 1.1 itohy int bcnt;
889 1.1 itohy
890 1.1 itohy KASSERT(bp);
891 1.1 itohy
892 1.1 itohy if (err) {
893 1.1 itohy bcnt = sc->sc_iobuf - bp->b_data;
894 1.1 itohy bp->b_resid = bp->b_bcount - bcnt;
895 1.1 itohy
896 1.1 itohy /* raise error if no block is read */
897 1.1 itohy if (bcnt == 0) {
898 1.1 itohy bp->b_error = EIO;
899 1.1 itohy bp->b_flags |= B_ERROR;
900 1.1 itohy }
901 1.1 itohy goto term_xfer;
902 1.1 itohy }
903 1.1 itohy
904 1.1 itohy sc->sc_iobuf += sc->sc_bsize;
905 1.1 itohy if (--sc->sc_cnt == 0) {
906 1.1 itohy term_xfer:
907 1.1 itohy /* terminate current transfer */
908 1.1 itohy sc->sc_bp = NULL;
909 1.1 itohy s = splbio();
910 1.1 itohy disk_unbusy(&pt->pt_dk, sc->sc_iobuf - bp->b_data,
911 1.1 itohy sc->sc_stat == MMEM_READ);
912 1.1 itohy biodone(bp);
913 1.1 itohy splx(s);
914 1.1 itohy
915 1.1 itohy /* go next transfer */
916 1.1 itohy mmemstart(sc);
917 1.1 itohy } else {
918 1.1 itohy /* go next block */
919 1.1 itohy bp->b_rawblkno++;
920 1.1 itohy sc->sc_retry = 0;
921 1.1 itohy mmemstart_bp(sc);
922 1.1 itohy }
923 1.1 itohy }
924 1.1 itohy
925 1.1 itohy int
926 1.1 itohy mmemread(dev, uio, flags)
927 1.1 itohy dev_t dev;
928 1.1 itohy struct uio *uio;
929 1.1 itohy int flags;
930 1.1 itohy {
931 1.1 itohy
932 1.1 itohy return (physio(mmemstrategy, NULL, dev, B_READ, minphys, uio));
933 1.1 itohy }
934 1.1 itohy
935 1.1 itohy int
936 1.1 itohy mmemwrite(dev, uio, flags)
937 1.1 itohy dev_t dev;
938 1.1 itohy struct uio *uio;
939 1.1 itohy int flags;
940 1.1 itohy {
941 1.1 itohy
942 1.1 itohy return (physio(mmemstrategy, NULL, dev, B_WRITE, minphys, uio));
943 1.1 itohy }
944 1.1 itohy
945 1.1 itohy int
946 1.1 itohy mmemioctl(dev, cmd, data, flag, p)
947 1.1 itohy dev_t dev;
948 1.1 itohy u_long cmd;
949 1.1 itohy caddr_t data;
950 1.1 itohy int flag;
951 1.1 itohy struct proc *p;
952 1.1 itohy {
953 1.1 itohy int diskunit, unit, part;
954 1.1 itohy struct mmem_softc *sc;
955 1.1 itohy struct mmem_pt *pt;
956 1.1 itohy
957 1.1 itohy diskunit = DISKUNIT(dev);
958 1.1 itohy unit = MMEM_UNIT(diskunit);
959 1.1 itohy part = MMEM_PART(diskunit);
960 1.1 itohy sc = mmem_cd.cd_devs[unit];
961 1.1 itohy pt = &sc->sc_pt[part];
962 1.1 itohy
963 1.1 itohy switch (cmd) {
964 1.1 itohy case DIOCGDINFO:
965 1.1 itohy *(struct disklabel *)data = *pt->pt_dk.dk_label; /* XXX */
966 1.1 itohy break;
967 1.1 itohy
968 1.1 itohy default:
969 1.1 itohy /* generic maple ioctl */
970 1.1 itohy return maple_unit_ioctl(sc->sc_parent, sc->sc_unit, cmd, data,
971 1.1 itohy flag, p);
972 1.1 itohy }
973 1.1 itohy
974 1.1 itohy return 0;
975 1.1 itohy }
976