subr_disk_mbr.c revision 1.37 1 1.37 pooka /* $NetBSD: subr_disk_mbr.c,v 1.37 2009/11/23 13:40:11 pooka Exp $ */
2 1.1 dsl
3 1.1 dsl /*
4 1.1 dsl * Copyright (c) 1982, 1986, 1988 Regents of the University of California.
5 1.1 dsl * All rights reserved.
6 1.1 dsl *
7 1.1 dsl * Redistribution and use in source and binary forms, with or without
8 1.1 dsl * modification, are permitted provided that the following conditions
9 1.1 dsl * are met:
10 1.1 dsl * 1. Redistributions of source code must retain the above copyright
11 1.1 dsl * notice, this list of conditions and the following disclaimer.
12 1.1 dsl * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 dsl * notice, this list of conditions and the following disclaimer in the
14 1.1 dsl * documentation and/or other materials provided with the distribution.
15 1.2 agc * 3. Neither the name of the University nor the names of its contributors
16 1.1 dsl * may be used to endorse or promote products derived from this software
17 1.1 dsl * without specific prior written permission.
18 1.1 dsl *
19 1.1 dsl * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
20 1.1 dsl * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21 1.1 dsl * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 1.1 dsl * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
23 1.1 dsl * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 1.1 dsl * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25 1.1 dsl * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 1.1 dsl * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 1.1 dsl * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 1.1 dsl * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 1.1 dsl * SUCH DAMAGE.
30 1.1 dsl *
31 1.1 dsl * @(#)ufs_disksubr.c 7.16 (Berkeley) 5/4/91
32 1.1 dsl */
33 1.1 dsl
34 1.1 dsl /*
35 1.1 dsl * Code to find a NetBSD label on a disk that contains an i386 style MBR.
36 1.1 dsl * The first NetBSD label found in the 2nd sector of a NetBSD partition
37 1.3 dsl * is used.
38 1.3 dsl * If we don't find a label searching the MBR, we look at the start of the
39 1.3 dsl * disk, if that fails then a label is faked up from the MBR.
40 1.1 dsl *
41 1.32 reinoud * If there isn't a disklabel or anything in the MBR then the disc is searched
42 1.32 reinoud * for ecma-167/iso9660/udf style partition indicators.
43 1.32 reinoud * Useful for media or files that contain single filesystems (etc).
44 1.1 dsl *
45 1.1 dsl * This code will read host endian netbsd labels from little endian MBR.
46 1.1 dsl *
47 1.1 dsl * Based on the i386 disksubr.c
48 1.1 dsl *
49 1.3 dsl * Since the mbr only has 32bit fields for sector addresses, we do the same.
50 1.3 dsl *
51 1.1 dsl * XXX There are potential problems writing labels to disks where there
52 1.1 dsl * is only space for 8 netbsd partitions but this code has been compiled
53 1.1 dsl * with MAXPARTITIONS=16.
54 1.1 dsl */
55 1.1 dsl
56 1.1 dsl #include <sys/cdefs.h>
57 1.37 pooka __KERNEL_RCSID(0, "$NetBSD: subr_disk_mbr.c,v 1.37 2009/11/23 13:40:11 pooka Exp $");
58 1.1 dsl
59 1.1 dsl #include <sys/param.h>
60 1.1 dsl #include <sys/systm.h>
61 1.1 dsl #include <sys/buf.h>
62 1.27 dyoung #include <sys/bootblock.h>
63 1.1 dsl #include <sys/disklabel.h>
64 1.1 dsl #include <sys/disk.h>
65 1.1 dsl #include <sys/syslog.h>
66 1.32 reinoud #include <sys/vnode.h>
67 1.32 reinoud #include <sys/fcntl.h>
68 1.32 reinoud #include <sys/conf.h>
69 1.32 reinoud #include <sys/cdio.h>
70 1.37 pooka #include <sys/dkbad.h>
71 1.32 reinoud #include <fs/udf/ecma167-udf.h>
72 1.32 reinoud
73 1.32 reinoud #include <sys/kauth.h>
74 1.1 dsl
75 1.36 pooka #ifdef _KERNEL_OPT
76 1.1 dsl #include "opt_mbr.h"
77 1.36 pooka #endif /* _KERNEL_OPT */
78 1.1 dsl
79 1.13 dsl typedef struct mbr_partition mbr_partition_t;
80 1.13 dsl
81 1.17 dsl /*
82 1.17 dsl * We allocate a buffer 2 sectors large, and look in both....
83 1.17 dsl * That means we find labels written by other ports with different offsets.
84 1.17 dsl * LABELSECTOR and LABELOFFSET are only used if the disk doesn't have a label.
85 1.17 dsl */
86 1.17 dsl #if LABELSECTOR > 1 || LABELOFFSET > 512
87 1.17 dsl #error Invalid LABELSECTOR or LABELOFFSET
88 1.17 dsl #endif
89 1.17 dsl
90 1.1 dsl #define MBR_LABELSECTOR 1
91 1.1 dsl
92 1.1 dsl #define SCAN_CONTINUE 0
93 1.1 dsl #define SCAN_FOUND 1
94 1.1 dsl #define SCAN_ERROR 2
95 1.1 dsl
96 1.1 dsl typedef struct mbr_args {
97 1.1 dsl struct disklabel *lp;
98 1.1 dsl void (*strat)(struct buf *);
99 1.1 dsl struct buf *bp;
100 1.1 dsl const char *msg;
101 1.1 dsl int error;
102 1.3 dsl int written; /* number of times we wrote label */
103 1.17 dsl int found_mbr; /* set if disk has a valid mbr */
104 1.3 dsl uint label_sector; /* where we found the label */
105 1.17 dsl int action;
106 1.28 dyoung uint32_t secperunit;
107 1.1 dsl #define READ_LABEL 1
108 1.3 dsl #define UPDATE_LABEL 2
109 1.3 dsl #define WRITE_LABEL 3
110 1.17 dsl } mbr_args_t;
111 1.17 dsl
112 1.17 dsl static int validate_label(mbr_args_t *, uint);
113 1.13 dsl static int look_netbsd_part(mbr_args_t *, mbr_partition_t *, int, uint);
114 1.13 dsl static int write_netbsd_label(mbr_args_t *, mbr_partition_t *, int, uint);
115 1.1 dsl
116 1.1 dsl static int
117 1.17 dsl read_sector(mbr_args_t *a, uint sector, int count)
118 1.1 dsl {
119 1.1 dsl int error;
120 1.1 dsl
121 1.28 dyoung error = disk_read_sectors(a->strat, a->lp, a->bp, sector, count);
122 1.1 dsl if (error != 0)
123 1.1 dsl a->error = error;
124 1.1 dsl return error;
125 1.1 dsl }
126 1.1 dsl
127 1.6 perry /*
128 1.1 dsl * Scan MBR for partitions, call 'action' routine for each.
129 1.1 dsl */
130 1.1 dsl
131 1.1 dsl static int
132 1.13 dsl scan_mbr(mbr_args_t *a, int (*actn)(mbr_args_t *, mbr_partition_t *, int, uint))
133 1.1 dsl {
134 1.13 dsl mbr_partition_t ptns[MBR_PART_COUNT];
135 1.13 dsl mbr_partition_t *dp;
136 1.4 lukem struct mbr_sector *mbr;
137 1.1 dsl uint ext_base, this_ext, next_ext;
138 1.1 dsl int rval;
139 1.1 dsl int i;
140 1.18 christos int j;
141 1.1 dsl #ifdef COMPAT_386BSD_MBRPART
142 1.1 dsl int dp_386bsd = -1;
143 1.18 christos int ap_386bsd = -1;
144 1.1 dsl #endif
145 1.1 dsl
146 1.1 dsl ext_base = 0;
147 1.1 dsl this_ext = 0;
148 1.1 dsl for (;;) {
149 1.17 dsl if (read_sector(a, this_ext, 1)) {
150 1.1 dsl a->msg = "dos partition I/O error";
151 1.1 dsl return SCAN_ERROR;
152 1.1 dsl }
153 1.1 dsl
154 1.1 dsl /* Note: Magic number is little-endian. */
155 1.1 dsl mbr = (void *)a->bp->b_data;
156 1.4 lukem if (mbr->mbr_magic != htole16(MBR_MAGIC))
157 1.3 dsl return SCAN_CONTINUE;
158 1.1 dsl
159 1.1 dsl /* Copy data out of buffer so action can use bp */
160 1.1 dsl memcpy(ptns, &mbr->mbr_parts, sizeof ptns);
161 1.1 dsl
162 1.14 christos /* Look for drivers and skip them */
163 1.17 dsl if (ext_base == 0 && ptns[0].mbrp_type == MBR_PTYPE_DM6_DDO) {
164 1.16 jmmv /* We've found a DM6 DDO partition type (used by
165 1.16 jmmv * the Ontrack Disk Manager drivers).
166 1.16 jmmv *
167 1.16 jmmv * Ensure that there are no other partitions in the
168 1.16 jmmv * MBR and jump to the real partition table (stored
169 1.16 jmmv * in the first sector of the second track). */
170 1.25 thorpej bool ok = true;
171 1.14 christos
172 1.14 christos for (i = 1; i < MBR_PART_COUNT; i++)
173 1.14 christos if (ptns[i].mbrp_type != MBR_PTYPE_UNUSED)
174 1.25 thorpej ok = false;
175 1.14 christos
176 1.14 christos if (ok) {
177 1.15 christos this_ext = le32toh(a->lp->d_secpercyl /
178 1.15 christos a->lp->d_ntracks);
179 1.14 christos continue;
180 1.14 christos }
181 1.14 christos }
182 1.14 christos
183 1.1 dsl /* look for NetBSD partition */
184 1.1 dsl next_ext = 0;
185 1.1 dsl dp = ptns;
186 1.18 christos j = 0;
187 1.4 lukem for (i = 0; i < MBR_PART_COUNT; i++, dp++) {
188 1.18 christos if (dp->mbrp_type == MBR_PTYPE_UNUSED)
189 1.1 dsl continue;
190 1.17 dsl /* Check end of partition is inside disk limits */
191 1.17 dsl if ((uint64_t)ext_base + le32toh(dp->mbrp_start) +
192 1.17 dsl le32toh(dp->mbrp_size) > a->lp->d_secperunit) {
193 1.17 dsl /* This mbr doesn't look good.... */
194 1.17 dsl a->msg = "mbr partition exceeds disk size";
195 1.17 dsl /* ...but don't report this as an error (yet) */
196 1.17 dsl return SCAN_CONTINUE;
197 1.17 dsl }
198 1.17 dsl a->found_mbr = 1;
199 1.4 lukem if (MBR_IS_EXTENDED(dp->mbrp_type)) {
200 1.1 dsl next_ext = le32toh(dp->mbrp_start);
201 1.1 dsl continue;
202 1.1 dsl }
203 1.1 dsl #ifdef COMPAT_386BSD_MBRPART
204 1.4 lukem if (dp->mbrp_type == MBR_PTYPE_386BSD) {
205 1.1 dsl /*
206 1.1 dsl * If more than one matches, take last,
207 1.1 dsl * as NetBSD install tool does.
208 1.1 dsl */
209 1.18 christos if (this_ext == 0) {
210 1.1 dsl dp_386bsd = i;
211 1.18 christos ap_386bsd = j;
212 1.18 christos }
213 1.1 dsl continue;
214 1.1 dsl }
215 1.1 dsl #endif
216 1.18 christos rval = (*actn)(a, dp, j, this_ext);
217 1.1 dsl if (rval != SCAN_CONTINUE)
218 1.1 dsl return rval;
219 1.18 christos j++;
220 1.1 dsl }
221 1.1 dsl if (next_ext == 0)
222 1.1 dsl break;
223 1.1 dsl if (ext_base == 0) {
224 1.1 dsl ext_base = next_ext;
225 1.1 dsl next_ext = 0;
226 1.1 dsl }
227 1.1 dsl next_ext += ext_base;
228 1.1 dsl if (next_ext <= this_ext)
229 1.1 dsl break;
230 1.1 dsl this_ext = next_ext;
231 1.1 dsl }
232 1.1 dsl #ifdef COMPAT_386BSD_MBRPART
233 1.1 dsl if (this_ext == 0 && dp_386bsd != -1)
234 1.18 christos return (*actn)(a, &ptns[dp_386bsd], ap_386bsd, 0);
235 1.1 dsl #endif
236 1.1 dsl return SCAN_CONTINUE;
237 1.1 dsl }
238 1.1 dsl
239 1.32 reinoud
240 1.32 reinoud static void
241 1.32 reinoud scan_iso_vrs_session(mbr_args_t *a, uint32_t first_sector,
242 1.32 reinoud int *is_iso9660, int *is_udf)
243 1.32 reinoud {
244 1.32 reinoud struct vrs_desc *vrsd;
245 1.32 reinoud uint64_t vrs;
246 1.32 reinoud int sector_size;
247 1.33 reinoud int blks, inc;
248 1.32 reinoud
249 1.32 reinoud sector_size = a->lp->d_secsize;
250 1.32 reinoud blks = sector_size / DEV_BSIZE;
251 1.33 reinoud inc = MAX(1, 2048 / sector_size);
252 1.32 reinoud
253 1.32 reinoud /* by definition */
254 1.32 reinoud vrs = ((32*1024 + sector_size - 1) / sector_size)
255 1.32 reinoud + first_sector;
256 1.32 reinoud
257 1.32 reinoud /* read first vrs sector */
258 1.34 reinoud if (read_sector(a, vrs * blks, 1))
259 1.32 reinoud return;
260 1.32 reinoud
261 1.32 reinoud /* skip all CD001 records */
262 1.32 reinoud vrsd = a->bp->b_data;
263 1.33 reinoud /* printf("vrsd->identifier = `%s`\n", vrsd->identifier); */
264 1.32 reinoud while (memcmp(vrsd->identifier, "CD001", 5) == 0) {
265 1.32 reinoud /* for sure */
266 1.32 reinoud *is_iso9660 = first_sector;
267 1.32 reinoud
268 1.33 reinoud vrs += inc;
269 1.34 reinoud if (read_sector(a, vrs * blks, 1))
270 1.32 reinoud return;
271 1.32 reinoud }
272 1.32 reinoud
273 1.32 reinoud /* search for BEA01 */
274 1.32 reinoud vrsd = a->bp->b_data;
275 1.32 reinoud /* printf("vrsd->identifier = `%s`\n", vrsd->identifier); */
276 1.32 reinoud if (memcmp(vrsd->identifier, "BEA01", 5))
277 1.32 reinoud return;
278 1.32 reinoud
279 1.32 reinoud /* read successor */
280 1.33 reinoud vrs += inc;
281 1.34 reinoud if (read_sector(a, vrs * blks, 1))
282 1.32 reinoud return;
283 1.32 reinoud
284 1.32 reinoud /* check for NSR[23] */
285 1.32 reinoud vrsd = a->bp->b_data;
286 1.33 reinoud /* printf("vrsd->identifier = `%s`\n", vrsd->identifier); */
287 1.32 reinoud if (memcmp(vrsd->identifier, "NSR0", 4))
288 1.32 reinoud return;
289 1.32 reinoud
290 1.32 reinoud *is_udf = first_sector;
291 1.32 reinoud }
292 1.32 reinoud
293 1.32 reinoud
294 1.32 reinoud /*
295 1.32 reinoud * Scan for ISO Volume Recognition Sequences
296 1.32 reinoud */
297 1.32 reinoud
298 1.32 reinoud static int
299 1.32 reinoud scan_iso_vrs(mbr_args_t *a)
300 1.32 reinoud {
301 1.32 reinoud struct mmc_discinfo di;
302 1.32 reinoud struct mmc_trackinfo ti;
303 1.32 reinoud dev_t dev;
304 1.32 reinoud uint64_t sector;
305 1.32 reinoud int is_iso9660, is_udf;
306 1.32 reinoud int tracknr, sessionnr;
307 1.32 reinoud int new_session, error;
308 1.32 reinoud
309 1.32 reinoud is_iso9660 = is_udf = -1;
310 1.32 reinoud
311 1.32 reinoud /* parse all sessions of disc if we're on a SCSI MMC device */
312 1.32 reinoud if (a->lp->d_flags & D_SCSI_MMC) {
313 1.32 reinoud /* get disc info */
314 1.32 reinoud dev = a->bp->b_dev;
315 1.32 reinoud error = bdev_ioctl(dev, MMCGETDISCINFO, &di, FKIOCTL, curlwp);
316 1.32 reinoud if (error)
317 1.32 reinoud return SCAN_CONTINUE;
318 1.32 reinoud
319 1.32 reinoud /* go trough all (data) tracks */
320 1.32 reinoud sessionnr = -1;
321 1.32 reinoud for (tracknr = di.first_track;
322 1.32 reinoud tracknr <= di.first_track_last_session; tracknr++)
323 1.32 reinoud {
324 1.32 reinoud ti.tracknr = tracknr;
325 1.32 reinoud error = bdev_ioctl(dev, MMCGETTRACKINFO, &ti,
326 1.32 reinoud FKIOCTL, curlwp);
327 1.32 reinoud if (error)
328 1.32 reinoud return SCAN_CONTINUE;
329 1.32 reinoud new_session = (ti.sessionnr != sessionnr);
330 1.32 reinoud sessionnr = ti.sessionnr;
331 1.32 reinoud if (new_session) {
332 1.32 reinoud if (ti.flags & MMC_TRACKINFO_BLANK)
333 1.32 reinoud continue;
334 1.32 reinoud if (!(ti.flags & MMC_TRACKINFO_DATA))
335 1.32 reinoud continue;
336 1.32 reinoud sector = ti.track_start;
337 1.32 reinoud scan_iso_vrs_session(a, sector,
338 1.32 reinoud &is_iso9660, &is_udf);
339 1.32 reinoud }
340 1.32 reinoud }
341 1.32 reinoud if (is_udf < 0) {
342 1.32 reinoud /* defaulting udf on the RAW partition */
343 1.32 reinoud is_udf = 0;
344 1.32 reinoud }
345 1.32 reinoud } else {
346 1.32 reinoud /* try start of disc */
347 1.32 reinoud sector = 0;
348 1.32 reinoud scan_iso_vrs_session(a, sector, &is_iso9660, &is_udf);
349 1.32 reinoud }
350 1.32 reinoud
351 1.32 reinoud if ((is_iso9660 < 0) && (is_udf < 0))
352 1.32 reinoud return SCAN_CONTINUE;
353 1.32 reinoud
354 1.35 reinoud strncpy(a->lp->d_typename, "iso partition", 16);
355 1.35 reinoud
356 1.32 reinoud /* add iso9660 partition if found */
357 1.32 reinoud if (is_iso9660 >= 0) {
358 1.32 reinoud /* set 'a' partition to iso9660 */
359 1.32 reinoud a->lp->d_partitions[0].p_offset = 0;
360 1.32 reinoud a->lp->d_partitions[0].p_size = a->lp->d_secperunit;
361 1.32 reinoud a->lp->d_partitions[0].p_cdsession = is_iso9660;
362 1.32 reinoud a->lp->d_partitions[0].p_fstype = FS_ISO9660;
363 1.32 reinoud } else {
364 1.32 reinoud a->lp->d_partitions[0].p_size = 0;
365 1.32 reinoud a->lp->d_partitions[0].p_fstype = FS_UNUSED;
366 1.32 reinoud }
367 1.32 reinoud
368 1.32 reinoud /* add udf partition if found */
369 1.32 reinoud if (is_udf >= 0) {
370 1.32 reinoud /* set the RAW partion to UDF for CD/USB stick etc */
371 1.32 reinoud a->lp->d_partitions[RAW_PART].p_fstype = FS_UDF;
372 1.32 reinoud /* UDF doesn't care about the cd session specified here */
373 1.32 reinoud }
374 1.32 reinoud
375 1.32 reinoud return SCAN_FOUND;
376 1.32 reinoud }
377 1.32 reinoud
378 1.32 reinoud
379 1.1 dsl /*
380 1.1 dsl * Attempt to read a disk label from a device
381 1.1 dsl * using the indicated strategy routine.
382 1.1 dsl * The label must be partly set up before this:
383 1.1 dsl * secpercyl, secsize and anything required for a block i/o read
384 1.1 dsl * operation in the driver's strategy/start routines
385 1.1 dsl * must be filled in before calling us.
386 1.1 dsl *
387 1.1 dsl * If dos partition table requested, attempt to load it and
388 1.1 dsl * find disklabel inside a DOS partition. Also, if bad block
389 1.1 dsl * table needed, attempt to extract it as well. Return buffer
390 1.1 dsl * for use in signalling errors if requested.
391 1.1 dsl *
392 1.1 dsl * Returns null on success and an error string on failure.
393 1.1 dsl */
394 1.1 dsl const char *
395 1.13 dsl readdisklabel(dev_t dev, void (*strat)(struct buf *), struct disklabel *lp,
396 1.13 dsl struct cpu_disklabel *osdep)
397 1.1 dsl {
398 1.1 dsl int rval;
399 1.1 dsl int i;
400 1.1 dsl mbr_args_t a;
401 1.1 dsl
402 1.3 dsl memset(&a, 0, sizeof a);
403 1.1 dsl a.lp = lp;
404 1.1 dsl a.strat = strat;
405 1.17 dsl a.action = READ_LABEL;
406 1.1 dsl
407 1.1 dsl /* minimal requirements for architypal disk label */
408 1.1 dsl if (lp->d_secsize == 0)
409 1.1 dsl lp->d_secsize = DEV_BSIZE;
410 1.1 dsl if (lp->d_secperunit == 0)
411 1.1 dsl lp->d_secperunit = 0x1fffffff;
412 1.28 dyoung a.secperunit = lp->d_secperunit;
413 1.1 dsl lp->d_npartitions = RAW_PART + 1;
414 1.1 dsl for (i = 0; i < RAW_PART; i++) {
415 1.1 dsl lp->d_partitions[i].p_size = 0;
416 1.1 dsl lp->d_partitions[i].p_offset = 0;
417 1.1 dsl }
418 1.1 dsl if (lp->d_partitions[RAW_PART].p_size == 0)
419 1.17 dsl lp->d_partitions[RAW_PART].p_size = lp->d_secperunit;
420 1.1 dsl lp->d_partitions[RAW_PART].p_offset = 0;
421 1.1 dsl
422 1.1 dsl /*
423 1.1 dsl * Set partition 'a' to be the whole disk.
424 1.1 dsl * Cleared if we find an mbr or a netbsd label.
425 1.1 dsl */
426 1.1 dsl lp->d_partitions[0].p_size = lp->d_partitions[RAW_PART].p_size;
427 1.1 dsl lp->d_partitions[0].p_fstype = FS_BSDFFS;
428 1.1 dsl
429 1.32 reinoud /*
430 1.34 reinoud * Get a buffer big enough to read a disklabel in and initialize it
431 1.34 reinoud * make it two sectors long for the validate_label(); see comment at
432 1.34 reinoud * start of file.
433 1.32 reinoud */
434 1.34 reinoud a.bp = geteblk(2 * (int)lp->d_secsize);
435 1.1 dsl a.bp->b_dev = dev;
436 1.1 dsl
437 1.1 dsl if (osdep)
438 1.1 dsl /*
439 1.1 dsl * Scan mbr searching for netbsd partition and saving
440 1.1 dsl * bios partition information to use if the netbsd one
441 1.1 dsl * is absent.
442 1.1 dsl */
443 1.1 dsl rval = scan_mbr(&a, look_netbsd_part);
444 1.1 dsl else
445 1.1 dsl rval = SCAN_CONTINUE;
446 1.1 dsl
447 1.3 dsl if (rval == SCAN_CONTINUE) {
448 1.1 dsl /* Look at start of disk */
449 1.17 dsl rval = validate_label(&a, 0);
450 1.1 dsl }
451 1.1 dsl
452 1.32 reinoud if (rval == SCAN_CONTINUE) {
453 1.32 reinoud rval = scan_iso_vrs(&a);
454 1.32 reinoud }
455 1.3 dsl #if 0
456 1.3 dsl /*
457 1.3 dsl * Save sector where we found the label for the 'don't overwrite
458 1.3 dsl * the label' check in bounds_check_with_label.
459 1.3 dsl */
460 1.3 dsl if (rval == SCAN_FOUND)
461 1.3 dsl xxx->label_sector = a.label_sector;
462 1.3 dsl #endif
463 1.3 dsl
464 1.1 dsl /* Obtain bad sector table if requested and present */
465 1.37 pooka #ifdef __HAVE_DISKLABEL_DKBAD
466 1.1 dsl if (rval == SCAN_FOUND && osdep && (lp->d_flags & D_BADSECT)) {
467 1.37 pooka struct dkbad *bdp, *db;
468 1.1 dsl int blkno;
469 1.1 dsl
470 1.1 dsl bdp = &osdep->bad;
471 1.1 dsl i = 0;
472 1.1 dsl rval = SCAN_ERROR;
473 1.1 dsl do {
474 1.1 dsl /* read a bad sector table */
475 1.1 dsl blkno = lp->d_secperunit - lp->d_nsectors + i;
476 1.1 dsl if (lp->d_secsize > DEV_BSIZE)
477 1.1 dsl blkno *= lp->d_secsize / DEV_BSIZE;
478 1.1 dsl else
479 1.1 dsl blkno /= DEV_BSIZE / lp->d_secsize;
480 1.1 dsl /* if successful, validate, otherwise try another */
481 1.17 dsl if (read_sector(&a, blkno, 1)) {
482 1.1 dsl a.msg = "bad sector table I/O error";
483 1.1 dsl continue;
484 1.1 dsl }
485 1.1 dsl db = (struct dkbad *)(a.bp->b_data);
486 1.1 dsl #define DKBAD_MAGIC 0x4321
487 1.1 dsl if (db->bt_mbz != 0 || db->bt_flag != DKBAD_MAGIC) {
488 1.1 dsl a.msg = "bad sector table corrupted";
489 1.1 dsl continue;
490 1.1 dsl }
491 1.1 dsl rval = SCAN_FOUND;
492 1.1 dsl *bdp = *db;
493 1.1 dsl break;
494 1.29 ad } while (a.bp->b_error && (i += 2) < 10 &&
495 1.1 dsl i < lp->d_nsectors);
496 1.1 dsl }
497 1.37 pooka #endif /* __HAVE_DISKLABEL_DKBAD */
498 1.1 dsl
499 1.30 ad brelse(a.bp, 0);
500 1.17 dsl if (rval == SCAN_ERROR || rval == SCAN_CONTINUE)
501 1.10 cube return a.msg;
502 1.8 reinoud return NULL;
503 1.1 dsl }
504 1.1 dsl
505 1.1 dsl static int
506 1.13 dsl look_netbsd_part(mbr_args_t *a, mbr_partition_t *dp, int slot, uint ext_base)
507 1.1 dsl {
508 1.1 dsl struct partition *pp;
509 1.1 dsl int ptn_base = ext_base + le32toh(dp->mbrp_start);
510 1.1 dsl int rval;
511 1.1 dsl
512 1.1 dsl if (
513 1.1 dsl #ifdef COMPAT_386BSD_MBRPART
514 1.4 lukem dp->mbrp_type == MBR_PTYPE_386BSD ||
515 1.1 dsl #endif
516 1.4 lukem dp->mbrp_type == MBR_PTYPE_NETBSD) {
517 1.17 dsl rval = validate_label(a, ptn_base);
518 1.1 dsl
519 1.12 dsl #if RAW_PART == 3
520 1.1 dsl /* Put actual location where we found the label into ptn 2 */
521 1.12 dsl if (rval == SCAN_FOUND || a->lp->d_partitions[2].p_size == 0) {
522 1.1 dsl a->lp->d_partitions[2].p_size = le32toh(dp->mbrp_size);
523 1.1 dsl a->lp->d_partitions[2].p_offset = ptn_base;
524 1.1 dsl }
525 1.12 dsl #endif
526 1.1 dsl
527 1.1 dsl /* If we got a netbsd label look no further */
528 1.1 dsl if (rval == SCAN_FOUND)
529 1.1 dsl return rval;
530 1.1 dsl }
531 1.1 dsl
532 1.1 dsl /* Install main partitions into e..h and extended into i+ */
533 1.1 dsl if (ext_base == 0)
534 1.1 dsl slot += 4;
535 1.1 dsl else {
536 1.4 lukem slot = 4 + MBR_PART_COUNT;
537 1.1 dsl pp = &a->lp->d_partitions[slot];
538 1.1 dsl for (; slot < MAXPARTITIONS; pp++, slot++) {
539 1.1 dsl /* This gets called twice - avoid duplicates */
540 1.1 dsl if (pp->p_offset == ptn_base &&
541 1.1 dsl pp->p_size == le32toh(dp->mbrp_size))
542 1.1 dsl break;
543 1.1 dsl if (pp->p_size == 0)
544 1.1 dsl break;
545 1.1 dsl }
546 1.1 dsl }
547 1.1 dsl
548 1.1 dsl if (slot < MAXPARTITIONS) {
549 1.1 dsl /* Stop 'a' being the entire disk */
550 1.1 dsl a->lp->d_partitions[0].p_size = 0;
551 1.1 dsl a->lp->d_partitions[0].p_fstype = 0;
552 1.1 dsl
553 1.1 dsl /* save partition info */
554 1.1 dsl pp = &a->lp->d_partitions[slot];
555 1.1 dsl pp->p_offset = ptn_base;
556 1.1 dsl pp->p_size = le32toh(dp->mbrp_size);
557 1.4 lukem pp->p_fstype = xlat_mbr_fstype(dp->mbrp_type);
558 1.1 dsl
559 1.1 dsl if (slot >= a->lp->d_npartitions)
560 1.1 dsl a->lp->d_npartitions = slot + 1;
561 1.1 dsl }
562 1.1 dsl
563 1.1 dsl return SCAN_CONTINUE;
564 1.1 dsl }
565 1.1 dsl
566 1.1 dsl
567 1.1 dsl static int
568 1.17 dsl validate_label(mbr_args_t *a, uint label_sector)
569 1.1 dsl {
570 1.3 dsl struct disklabel *dlp;
571 1.17 dsl char *dlp_lim, *dlp_byte;
572 1.1 dsl int error;
573 1.1 dsl
574 1.1 dsl /* Next, dig out disk label */
575 1.17 dsl if (read_sector(a, label_sector, 2)) {
576 1.3 dsl a->msg = "disk label read failed";
577 1.1 dsl return SCAN_ERROR;
578 1.1 dsl }
579 1.1 dsl
580 1.1 dsl /* Locate disk label within block and validate */
581 1.1 dsl /*
582 1.1 dsl * XXX (dsl) This search may be a waste of time, a lot of other i386
583 1.1 dsl * code assumes the label is at offset LABELOFFSET (=0) in the sector.
584 1.1 dsl *
585 1.3 dsl * If we want to support disks from other netbsd ports, then the
586 1.1 dsl * code should also allow for a shorter label nearer the end of
587 1.1 dsl * the disk sector, and (IIRC) labels within 8k of the disk start.
588 1.1 dsl */
589 1.3 dsl dlp = (void *)a->bp->b_data;
590 1.26 christos dlp_lim = (char *)a->bp->b_data + a->bp->b_bcount - sizeof *dlp;
591 1.17 dsl for (;; dlp = (void *)((char *)dlp + sizeof(long))) {
592 1.17 dsl if ((char *)dlp > dlp_lim) {
593 1.17 dsl if (a->action != WRITE_LABEL)
594 1.3 dsl return SCAN_CONTINUE;
595 1.17 dsl /* Write at arch. dependant default location */
596 1.26 christos dlp_byte = (char *)a->bp->b_data + LABELOFFSET;
597 1.17 dsl if (label_sector)
598 1.17 dsl dlp_byte += MBR_LABELSECTOR * a->lp->d_secsize;
599 1.17 dsl else
600 1.17 dsl dlp_byte += LABELSECTOR * a->lp->d_secsize;
601 1.17 dsl dlp = (void *)dlp_byte;
602 1.1 dsl break;
603 1.1 dsl }
604 1.17 dsl if (dlp->d_magic != DISKMAGIC || dlp->d_magic2 != DISKMAGIC)
605 1.17 dsl continue;
606 1.17 dsl if (dlp->d_npartitions > MAXPARTITIONS || dkcksum(dlp) != 0) {
607 1.17 dsl a->msg = "disk label corrupted";
608 1.17 dsl continue;
609 1.17 dsl }
610 1.17 dsl break;
611 1.3 dsl }
612 1.3 dsl
613 1.17 dsl switch (a->action) {
614 1.3 dsl case READ_LABEL:
615 1.3 dsl *a->lp = *dlp;
616 1.28 dyoung if ((a->msg = convertdisklabel(a->lp, a->strat, a->bp,
617 1.28 dyoung a->secperunit)) != NULL)
618 1.28 dyoung return SCAN_ERROR;
619 1.3 dsl a->label_sector = label_sector;
620 1.1 dsl return SCAN_FOUND;
621 1.3 dsl case UPDATE_LABEL:
622 1.3 dsl case WRITE_LABEL:
623 1.3 dsl *dlp = *a->lp;
624 1.31 ad a->bp->b_oflags &= ~BO_DONE;
625 1.31 ad a->bp->b_flags &= ~B_READ;
626 1.3 dsl a->bp->b_flags |= B_WRITE;
627 1.3 dsl (*a->strat)(a->bp);
628 1.3 dsl error = biowait(a->bp);
629 1.3 dsl if (error != 0) {
630 1.3 dsl a->error = error;
631 1.3 dsl a->msg = "disk label write failed";
632 1.3 dsl return SCAN_ERROR;
633 1.3 dsl }
634 1.3 dsl a->written++;
635 1.3 dsl /* Write label to all mbr partitions */
636 1.3 dsl return SCAN_CONTINUE;
637 1.3 dsl default:
638 1.3 dsl return SCAN_ERROR;
639 1.1 dsl }
640 1.1 dsl }
641 1.1 dsl
642 1.1 dsl /*
643 1.1 dsl * Check new disk label for sensibility
644 1.1 dsl * before setting it.
645 1.1 dsl */
646 1.1 dsl int
647 1.13 dsl setdisklabel(struct disklabel *olp, struct disklabel *nlp, u_long openmask,
648 1.21 yamt struct cpu_disklabel *osdep)
649 1.1 dsl {
650 1.1 dsl int i;
651 1.1 dsl struct partition *opp, *npp;
652 1.1 dsl
653 1.1 dsl /* sanity clause */
654 1.1 dsl if (nlp->d_secpercyl == 0 || nlp->d_secsize == 0
655 1.1 dsl || (nlp->d_secsize % DEV_BSIZE) != 0)
656 1.1 dsl return (EINVAL);
657 1.1 dsl
658 1.1 dsl /* special case to allow disklabel to be invalidated */
659 1.1 dsl if (nlp->d_magic == 0xffffffff) {
660 1.1 dsl *olp = *nlp;
661 1.1 dsl return (0);
662 1.1 dsl }
663 1.1 dsl
664 1.1 dsl if (nlp->d_magic != DISKMAGIC || nlp->d_magic2 != DISKMAGIC ||
665 1.1 dsl dkcksum(nlp) != 0)
666 1.1 dsl return (EINVAL);
667 1.1 dsl
668 1.1 dsl /* XXX missing check if other dos partitions will be overwritten */
669 1.1 dsl
670 1.1 dsl while (openmask != 0) {
671 1.1 dsl i = ffs(openmask) - 1;
672 1.1 dsl openmask &= ~(1 << i);
673 1.1 dsl if (i > nlp->d_npartitions)
674 1.1 dsl return (EBUSY);
675 1.1 dsl opp = &olp->d_partitions[i];
676 1.1 dsl npp = &nlp->d_partitions[i];
677 1.1 dsl /*
678 1.1 dsl * Copy internally-set partition information
679 1.1 dsl * if new label doesn't include it. XXX
680 1.1 dsl */
681 1.1 dsl if (npp->p_fstype == FS_UNUSED && opp->p_fstype != FS_UNUSED) {
682 1.1 dsl *npp = *opp;
683 1.1 dsl continue;
684 1.1 dsl }
685 1.1 dsl if (npp->p_offset != opp->p_offset || npp->p_size < opp->p_size)
686 1.1 dsl return (EBUSY);
687 1.1 dsl }
688 1.1 dsl nlp->d_checksum = 0;
689 1.1 dsl nlp->d_checksum = dkcksum(nlp);
690 1.1 dsl *olp = *nlp;
691 1.1 dsl return (0);
692 1.1 dsl }
693 1.1 dsl
694 1.1 dsl
695 1.1 dsl /*
696 1.1 dsl * Write disk label back to device after modification.
697 1.1 dsl */
698 1.1 dsl int
699 1.13 dsl writedisklabel(dev_t dev, void (*strat)(struct buf *), struct disklabel *lp,
700 1.13 dsl struct cpu_disklabel *osdep)
701 1.1 dsl {
702 1.1 dsl mbr_args_t a;
703 1.1 dsl
704 1.3 dsl memset(&a, 0, sizeof a);
705 1.1 dsl a.lp = lp;
706 1.1 dsl a.strat = strat;
707 1.1 dsl
708 1.1 dsl /* get a buffer and initialize it */
709 1.17 dsl a.bp = geteblk(2 * (int)lp->d_secsize);
710 1.1 dsl a.bp->b_dev = dev;
711 1.1 dsl
712 1.17 dsl /* osdep => we expect an mbr with label in netbsd ptn */
713 1.17 dsl a.action = osdep != NULL ? WRITE_LABEL : UPDATE_LABEL;
714 1.17 dsl
715 1.17 dsl /* Write/update the label to every netbsd mbr partition */
716 1.17 dsl scan_mbr(&a, write_netbsd_label);
717 1.3 dsl
718 1.17 dsl /* Old write the label at the start of the volume on disks that
719 1.17 dsl * don't have a valid mbr (always update an existing one) */
720 1.17 dsl a.action = a.found_mbr ? UPDATE_LABEL : WRITE_LABEL;
721 1.17 dsl validate_label(&a, 0);
722 1.1 dsl
723 1.3 dsl if (a.written == 0 && a.error == 0)
724 1.1 dsl a.error = ESRCH;
725 1.1 dsl
726 1.30 ad brelse(a.bp, 0);
727 1.1 dsl return a.error;
728 1.1 dsl }
729 1.1 dsl
730 1.1 dsl static int
731 1.21 yamt write_netbsd_label(mbr_args_t *a, mbr_partition_t *dp, int slot, uint ext_base)
732 1.1 dsl {
733 1.1 dsl int ptn_base = ext_base + le32toh(dp->mbrp_start);
734 1.1 dsl
735 1.4 lukem if (dp->mbrp_type != MBR_PTYPE_NETBSD)
736 1.1 dsl return SCAN_CONTINUE;
737 1.1 dsl
738 1.17 dsl return validate_label(a, ptn_base);
739 1.1 dsl }
740