disks.c revision 1.41 1 1.41 msaitoh /* $NetBSD: disks.c,v 1.41 2019/07/24 02:37:17 msaitoh Exp $ */
2 1.1 dholland
3 1.1 dholland /*
4 1.1 dholland * Copyright 1997 Piermont Information Systems Inc.
5 1.1 dholland * All rights reserved.
6 1.1 dholland *
7 1.1 dholland * Written by Philip A. Nelson for Piermont Information Systems Inc.
8 1.1 dholland *
9 1.1 dholland * Redistribution and use in source and binary forms, with or without
10 1.1 dholland * modification, are permitted provided that the following conditions
11 1.1 dholland * are met:
12 1.1 dholland * 1. Redistributions of source code must retain the above copyright
13 1.1 dholland * notice, this list of conditions and the following disclaimer.
14 1.1 dholland * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 dholland * notice, this list of conditions and the following disclaimer in the
16 1.1 dholland * documentation and/or other materials provided with the distribution.
17 1.1 dholland * 3. The name of Piermont Information Systems Inc. may not be used to endorse
18 1.1 dholland * or promote products derived from this software without specific prior
19 1.1 dholland * written permission.
20 1.1 dholland *
21 1.1 dholland * THIS SOFTWARE IS PROVIDED BY PIERMONT INFORMATION SYSTEMS INC. ``AS IS''
22 1.1 dholland * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
23 1.1 dholland * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
24 1.1 dholland * ARE DISCLAIMED. IN NO EVENT SHALL PIERMONT INFORMATION SYSTEMS INC. BE
25 1.1 dholland * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
26 1.1 dholland * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
27 1.1 dholland * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
28 1.1 dholland * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
29 1.1 dholland * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
30 1.1 dholland * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
31 1.1 dholland * THE POSSIBILITY OF SUCH DAMAGE.
32 1.1 dholland *
33 1.1 dholland */
34 1.1 dholland
35 1.1 dholland /* disks.c -- routines to deal with finding disks and labeling disks. */
36 1.1 dholland
37 1.1 dholland
38 1.30 martin #include <assert.h>
39 1.1 dholland #include <errno.h>
40 1.17 martin #include <inttypes.h>
41 1.1 dholland #include <stdio.h>
42 1.1 dholland #include <stdlib.h>
43 1.1 dholland #include <unistd.h>
44 1.1 dholland #include <fcntl.h>
45 1.20 martin #include <fnmatch.h>
46 1.1 dholland #include <util.h>
47 1.2 martin #include <uuid.h>
48 1.30 martin #include <paths.h>
49 1.1 dholland
50 1.1 dholland #include <sys/param.h>
51 1.1 dholland #include <sys/sysctl.h>
52 1.1 dholland #include <sys/swap.h>
53 1.30 martin #include <sys/disklabel_gpt.h>
54 1.1 dholland #include <ufs/ufs/dinode.h>
55 1.1 dholland #include <ufs/ffs/fs.h>
56 1.1 dholland
57 1.1 dholland #include <dev/scsipi/scsipi_all.h>
58 1.1 dholland #include <sys/scsiio.h>
59 1.1 dholland
60 1.1 dholland #include <dev/ata/atareg.h>
61 1.1 dholland #include <sys/ataio.h>
62 1.1 dholland
63 1.1 dholland #include "defs.h"
64 1.1 dholland #include "md.h"
65 1.1 dholland #include "msg_defs.h"
66 1.1 dholland #include "menu_defs.h"
67 1.1 dholland #include "txtwalk.h"
68 1.1 dholland
69 1.31 martin /* #define DEBUG_VERBOSE 1 */
70 1.30 martin
71 1.1 dholland /* Disk descriptions */
72 1.1 dholland struct disk_desc {
73 1.1 dholland char dd_name[SSTRSIZE];
74 1.29 mrg char dd_descr[256];
75 1.15 martin bool dd_no_mbr, dd_no_part;
76 1.1 dholland uint dd_cyl;
77 1.1 dholland uint dd_head;
78 1.1 dholland uint dd_sec;
79 1.1 dholland uint dd_secsize;
80 1.30 martin daddr_t dd_totsec;
81 1.2 martin };
82 1.2 martin
83 1.1 dholland /* Local prototypes */
84 1.1 dholland static int foundffs(struct data *, size_t);
85 1.1 dholland #ifdef USE_SYSVBFS
86 1.1 dholland static int foundsysvbfs(struct data *, size_t);
87 1.1 dholland #endif
88 1.30 martin static int fsck_preen(const char *, const char *, bool silent);
89 1.30 martin static void fixsb(const char *, const char *);
90 1.1 dholland
91 1.1 dholland
92 1.1 dholland static bool tmpfs_on_var_shm(void);
93 1.1 dholland
94 1.1 dholland const char *
95 1.30 martin getfslabelname(uint f, uint f_version)
96 1.1 dholland {
97 1.30 martin if (f == FS_TMPFS)
98 1.30 martin return "tmpfs";
99 1.30 martin else if (f == FS_MFS)
100 1.30 martin return "mfs";
101 1.30 martin else if (f == FS_BSDFFS && f_version > 0)
102 1.30 martin return f_version == 2 ?
103 1.30 martin msg_string(MSG_fs_type_ffsv2) : msg_string(MSG_fs_type_ffs);
104 1.30 martin else if (f >= __arraycount(fstypenames) || fstypenames[f] == NULL)
105 1.1 dholland return "invalid";
106 1.1 dholland return fstypenames[f];
107 1.1 dholland }
108 1.1 dholland
109 1.1 dholland /*
110 1.1 dholland * Decide wether we want to mount a tmpfs on /var/shm: we do this always
111 1.1 dholland * when the machine has more than 16 MB of user memory. On smaller machines,
112 1.1 dholland * shm_open() and friends will not perform well anyway.
113 1.1 dholland */
114 1.1 dholland static bool
115 1.1 dholland tmpfs_on_var_shm()
116 1.1 dholland {
117 1.1 dholland uint64_t ram;
118 1.1 dholland size_t len;
119 1.1 dholland
120 1.1 dholland len = sizeof(ram);
121 1.1 dholland if (sysctlbyname("hw.usermem64", &ram, &len, NULL, 0))
122 1.1 dholland return false;
123 1.1 dholland
124 1.28 martin return ram > 16 * MEG;
125 1.1 dholland }
126 1.1 dholland
127 1.1 dholland /* from src/sbin/atactl/atactl.c
128 1.1 dholland * extract_string: copy a block of bytes out of ataparams and make
129 1.1 dholland * a proper string out of it, truncating trailing spaces and preserving
130 1.1 dholland * strict typing. And also, not doing unaligned accesses.
131 1.1 dholland */
132 1.1 dholland static void
133 1.1 dholland ata_extract_string(char *buf, size_t bufmax,
134 1.1 dholland uint8_t *bytes, unsigned numbytes,
135 1.1 dholland int needswap)
136 1.1 dholland {
137 1.1 dholland unsigned i;
138 1.1 dholland size_t j;
139 1.1 dholland unsigned char ch1, ch2;
140 1.1 dholland
141 1.1 dholland for (i = 0, j = 0; i < numbytes; i += 2) {
142 1.1 dholland ch1 = bytes[i];
143 1.1 dholland ch2 = bytes[i+1];
144 1.1 dholland if (needswap && j < bufmax-1) {
145 1.1 dholland buf[j++] = ch2;
146 1.1 dholland }
147 1.1 dholland if (j < bufmax-1) {
148 1.1 dholland buf[j++] = ch1;
149 1.1 dholland }
150 1.1 dholland if (!needswap && j < bufmax-1) {
151 1.1 dholland buf[j++] = ch2;
152 1.1 dholland }
153 1.1 dholland }
154 1.1 dholland while (j > 0 && buf[j-1] == ' ') {
155 1.1 dholland j--;
156 1.1 dholland }
157 1.1 dholland buf[j] = '\0';
158 1.1 dholland }
159 1.1 dholland
160 1.1 dholland /*
161 1.1 dholland * from src/sbin/scsictl/scsi_subr.c
162 1.1 dholland */
163 1.1 dholland #define STRVIS_ISWHITE(x) ((x) == ' ' || (x) == '\0' || (x) == (u_char)'\377')
164 1.1 dholland
165 1.1 dholland static void
166 1.1 dholland scsi_strvis(char *sdst, size_t dlen, const char *ssrc, size_t slen)
167 1.1 dholland {
168 1.1 dholland u_char *dst = (u_char *)sdst;
169 1.1 dholland const u_char *src = (const u_char *)ssrc;
170 1.1 dholland
171 1.1 dholland /* Trim leading and trailing blanks and NULs. */
172 1.1 dholland while (slen > 0 && STRVIS_ISWHITE(src[0]))
173 1.1 dholland ++src, --slen;
174 1.1 dholland while (slen > 0 && STRVIS_ISWHITE(src[slen - 1]))
175 1.1 dholland --slen;
176 1.1 dholland
177 1.1 dholland while (slen > 0) {
178 1.1 dholland if (*src < 0x20 || *src >= 0x80) {
179 1.1 dholland /* non-printable characters */
180 1.1 dholland dlen -= 4;
181 1.1 dholland if (dlen < 1)
182 1.1 dholland break;
183 1.1 dholland *dst++ = '\\';
184 1.1 dholland *dst++ = ((*src & 0300) >> 6) + '0';
185 1.1 dholland *dst++ = ((*src & 0070) >> 3) + '0';
186 1.1 dholland *dst++ = ((*src & 0007) >> 0) + '0';
187 1.1 dholland } else if (*src == '\\') {
188 1.1 dholland /* quote characters */
189 1.1 dholland dlen -= 2;
190 1.1 dholland if (dlen < 1)
191 1.1 dholland break;
192 1.1 dholland *dst++ = '\\';
193 1.1 dholland *dst++ = '\\';
194 1.1 dholland } else {
195 1.1 dholland /* normal characters */
196 1.1 dholland if (--dlen < 1)
197 1.1 dholland break;
198 1.1 dholland *dst++ = *src;
199 1.1 dholland }
200 1.1 dholland ++src, --slen;
201 1.1 dholland }
202 1.1 dholland
203 1.1 dholland *dst++ = 0;
204 1.1 dholland }
205 1.1 dholland
206 1.1 dholland
207 1.1 dholland static int
208 1.35 christos get_descr_scsi(struct disk_desc *dd)
209 1.1 dholland {
210 1.1 dholland struct scsipi_inquiry_data inqbuf;
211 1.1 dholland struct scsipi_inquiry cmd;
212 1.1 dholland scsireq_t req;
213 1.1 dholland /* x4 in case every character is escaped, +1 for NUL. */
214 1.1 dholland char vendor[(sizeof(inqbuf.vendor) * 4) + 1],
215 1.1 dholland product[(sizeof(inqbuf.product) * 4) + 1],
216 1.1 dholland revision[(sizeof(inqbuf.revision) * 4) + 1];
217 1.1 dholland char size[5];
218 1.1 dholland
219 1.1 dholland memset(&inqbuf, 0, sizeof(inqbuf));
220 1.1 dholland memset(&cmd, 0, sizeof(cmd));
221 1.1 dholland memset(&req, 0, sizeof(req));
222 1.1 dholland
223 1.1 dholland cmd.opcode = INQUIRY;
224 1.1 dholland cmd.length = sizeof(inqbuf);
225 1.1 dholland memcpy(req.cmd, &cmd, sizeof(cmd));
226 1.1 dholland req.cmdlen = sizeof(cmd);
227 1.1 dholland req.databuf = &inqbuf;
228 1.1 dholland req.datalen = sizeof(inqbuf);
229 1.1 dholland req.timeout = 10000;
230 1.1 dholland req.flags = SCCMD_READ;
231 1.1 dholland req.senselen = SENSEBUFLEN;
232 1.1 dholland
233 1.35 christos if (!disk_ioctl(dd->dd_name, SCIOCCOMMAND, &req)
234 1.35 christos || req.retsts != SCCMD_OK)
235 1.1 dholland return 0;
236 1.1 dholland
237 1.1 dholland scsi_strvis(vendor, sizeof(vendor), inqbuf.vendor,
238 1.1 dholland sizeof(inqbuf.vendor));
239 1.1 dholland scsi_strvis(product, sizeof(product), inqbuf.product,
240 1.1 dholland sizeof(inqbuf.product));
241 1.1 dholland scsi_strvis(revision, sizeof(revision), inqbuf.revision,
242 1.1 dholland sizeof(inqbuf.revision));
243 1.1 dholland
244 1.1 dholland humanize_number(size, sizeof(size),
245 1.1 dholland (uint64_t)dd->dd_secsize * (uint64_t)dd->dd_totsec,
246 1.1 dholland "", HN_AUTOSCALE, HN_B | HN_NOSPACE | HN_DECIMAL);
247 1.1 dholland
248 1.1 dholland snprintf(dd->dd_descr, sizeof(dd->dd_descr),
249 1.1 dholland "%s (%s, %s %s)",
250 1.1 dholland dd->dd_name, size, vendor, product);
251 1.1 dholland
252 1.1 dholland return 1;
253 1.1 dholland }
254 1.1 dholland
255 1.1 dholland static int
256 1.35 christos get_descr_ata(struct disk_desc *dd)
257 1.1 dholland {
258 1.1 dholland struct atareq req;
259 1.1 dholland static union {
260 1.1 dholland unsigned char inbuf[DEV_BSIZE];
261 1.1 dholland struct ataparams inqbuf;
262 1.1 dholland } inbuf;
263 1.1 dholland struct ataparams *inqbuf = &inbuf.inqbuf;
264 1.1 dholland char model[sizeof(inqbuf->atap_model)+1];
265 1.1 dholland char size[5];
266 1.35 christos int needswap = 0;
267 1.1 dholland
268 1.1 dholland memset(&inbuf, 0, sizeof(inbuf));
269 1.1 dholland memset(&req, 0, sizeof(req));
270 1.1 dholland
271 1.1 dholland req.flags = ATACMD_READ;
272 1.1 dholland req.command = WDCC_IDENTIFY;
273 1.1 dholland req.databuf = (void *)&inbuf;
274 1.1 dholland req.datalen = sizeof(inbuf);
275 1.1 dholland req.timeout = 1000;
276 1.1 dholland
277 1.35 christos if (!disk_ioctl(dd->dd_name, ATAIOCCOMMAND, &req)
278 1.35 christos || req.retsts != ATACMD_OK)
279 1.1 dholland return 0;
280 1.1 dholland
281 1.1 dholland #if BYTE_ORDER == LITTLE_ENDIAN
282 1.1 dholland /*
283 1.1 dholland * On little endian machines, we need to shuffle the string
284 1.1 dholland * byte order. However, we don't have to do this for NEC or
285 1.1 dholland * Mitsumi ATAPI devices
286 1.1 dholland */
287 1.1 dholland
288 1.1 dholland if (!(inqbuf->atap_config != WDC_CFG_CFA_MAGIC &&
289 1.1 dholland (inqbuf->atap_config & WDC_CFG_ATAPI) &&
290 1.1 dholland ((inqbuf->atap_model[0] == 'N' &&
291 1.10 isaki inqbuf->atap_model[1] == 'E') ||
292 1.1 dholland (inqbuf->atap_model[0] == 'F' &&
293 1.10 isaki inqbuf->atap_model[1] == 'X')))) {
294 1.1 dholland needswap = 1;
295 1.1 dholland }
296 1.1 dholland #endif
297 1.1 dholland
298 1.1 dholland ata_extract_string(model, sizeof(model),
299 1.1 dholland inqbuf->atap_model, sizeof(inqbuf->atap_model), needswap);
300 1.1 dholland humanize_number(size, sizeof(size),
301 1.1 dholland (uint64_t)dd->dd_secsize * (uint64_t)dd->dd_totsec,
302 1.1 dholland "", HN_AUTOSCALE, HN_B | HN_NOSPACE | HN_DECIMAL);
303 1.1 dholland
304 1.1 dholland snprintf(dd->dd_descr, sizeof(dd->dd_descr), "%s (%s, %s)",
305 1.1 dholland dd->dd_name, size, model);
306 1.1 dholland
307 1.1 dholland return 1;
308 1.1 dholland }
309 1.1 dholland
310 1.1 dholland static void
311 1.1 dholland get_descr(struct disk_desc *dd)
312 1.1 dholland {
313 1.35 christos char size[5];
314 1.1 dholland dd->dd_descr[0] = '\0';
315 1.1 dholland
316 1.1 dholland /* try ATA */
317 1.35 christos if (get_descr_ata(dd))
318 1.1 dholland goto done;
319 1.1 dholland /* try SCSI */
320 1.35 christos if (get_descr_scsi(dd))
321 1.1 dholland goto done;
322 1.30 martin
323 1.30 martin /* XXX: identify for ld @ NVME or microSD */
324 1.30 martin
325 1.2 martin /* XXX: get description from raid, cgd, vnd... */
326 1.35 christos done:
327 1.30 martin /* punt, just give some generic info */
328 1.30 martin humanize_number(size, sizeof(size),
329 1.30 martin (uint64_t)dd->dd_secsize * (uint64_t)dd->dd_totsec,
330 1.30 martin "", HN_AUTOSCALE, HN_B | HN_NOSPACE | HN_DECIMAL);
331 1.30 martin
332 1.30 martin snprintf(dd->dd_descr, sizeof(dd->dd_descr),
333 1.30 martin "%s (%s)", dd->dd_name, size);
334 1.1 dholland }
335 1.1 dholland
336 1.21 martin /*
337 1.21 martin * State for helper callback for get_default_cdrom
338 1.21 martin */
339 1.21 martin struct default_cdrom_data {
340 1.21 martin char *device;
341 1.21 martin size_t max_len;
342 1.21 martin bool found;
343 1.21 martin };
344 1.21 martin
345 1.21 martin /*
346 1.21 martin * Helper function for get_default_cdrom, gets passed a device
347 1.21 martin * name and a void pointer to default_cdrom_data.
348 1.21 martin */
349 1.21 martin static bool
350 1.21 martin get_default_cdrom_helper(void *state, const char *dev)
351 1.21 martin {
352 1.21 martin struct default_cdrom_data *data = state;
353 1.21 martin
354 1.25 martin if (!is_cdrom_device(dev, false))
355 1.22 martin return true;
356 1.22 martin
357 1.21 martin strlcpy(data->device, dev, data->max_len);
358 1.22 martin strlcat(data->device, "a", data->max_len); /* default to partition a */
359 1.21 martin data->found = true;
360 1.21 martin
361 1.21 martin return false; /* one is enough, stop iteration */
362 1.21 martin }
363 1.21 martin
364 1.21 martin /*
365 1.21 martin * Set the argument to the name of the first CD devices actually
366 1.21 martin * available, leave it unmodified otherwise.
367 1.21 martin * Return true if a device has been found.
368 1.1 dholland */
369 1.18 martin bool
370 1.18 martin get_default_cdrom(char *cd, size_t max_len)
371 1.1 dholland {
372 1.21 martin struct default_cdrom_data state;
373 1.21 martin
374 1.21 martin state.device = cd;
375 1.21 martin state.max_len = max_len;
376 1.21 martin state.found = false;
377 1.21 martin
378 1.21 martin if (enumerate_disks(&state, get_default_cdrom_helper))
379 1.21 martin return state.found;
380 1.21 martin
381 1.21 martin return false;
382 1.1 dholland }
383 1.1 dholland
384 1.30 martin static bool
385 1.15 martin get_wedge_descr(struct disk_desc *dd)
386 1.15 martin {
387 1.15 martin struct dkwedge_info dkw;
388 1.15 martin
389 1.35 christos if (!get_wedge_info(dd->dd_name, &dkw))
390 1.30 martin return false;
391 1.15 martin
392 1.35 christos snprintf(dd->dd_descr, sizeof(dd->dd_descr), "%s (%s@%s)",
393 1.35 christos dkw.dkw_wname, dkw.dkw_devname, dkw.dkw_parent);
394 1.35 christos return true;
395 1.15 martin }
396 1.15 martin
397 1.15 martin static bool
398 1.15 martin get_name_and_parent(const char *dev, char *name, char *parent)
399 1.15 martin {
400 1.15 martin struct dkwedge_info dkw;
401 1.15 martin
402 1.35 christos if (!get_wedge_info(dev, &dkw))
403 1.15 martin return false;
404 1.35 christos strcpy(name, (const char *)dkw.dkw_wname);
405 1.35 christos strcpy(parent, dkw.dkw_parent);
406 1.35 christos return true;
407 1.15 martin }
408 1.15 martin
409 1.15 martin static bool
410 1.15 martin find_swap_part_on(const char *dev, char *swap_name)
411 1.15 martin {
412 1.35 christos struct dkwedge_list dkwl;
413 1.15 martin struct dkwedge_info *dkw;
414 1.15 martin u_int i;
415 1.15 martin bool res = false;
416 1.15 martin
417 1.35 christos if (!get_wedge_list(dev, &dkwl))
418 1.15 martin return false;
419 1.15 martin
420 1.35 christos dkw = dkwl.dkwl_buf;
421 1.15 martin for (i = 0; i < dkwl.dkwl_nwedges; i++) {
422 1.15 martin res = strcmp(dkw[i].dkw_ptype, DKW_PTYPE_SWAP) == 0;
423 1.15 martin if (res) {
424 1.15 martin strcpy(swap_name, (const char*)dkw[i].dkw_wname);
425 1.15 martin break;
426 1.15 martin }
427 1.15 martin }
428 1.35 christos free(dkwl.dkwl_buf);
429 1.15 martin
430 1.15 martin return res;
431 1.15 martin }
432 1.15 martin
433 1.15 martin static bool
434 1.15 martin is_ffs_wedge(const char *dev)
435 1.15 martin {
436 1.15 martin struct dkwedge_info dkw;
437 1.15 martin
438 1.35 christos if (!get_wedge_info(dev, &dkw))
439 1.15 martin return false;
440 1.15 martin
441 1.35 christos return strcmp(dkw.dkw_ptype, DKW_PTYPE_FFS) == 0;
442 1.15 martin }
443 1.15 martin
444 1.18 martin /*
445 1.18 martin * Does this device match an entry in our default CDROM device list?
446 1.25 martin * If looking for install targets, we also flag floopy devices.
447 1.18 martin */
448 1.22 martin bool
449 1.25 martin is_cdrom_device(const char *dev, bool as_target)
450 1.18 martin {
451 1.25 martin static const char *target_devices[] = {
452 1.24 martin #ifdef CD_NAMES
453 1.24 martin CD_NAMES
454 1.24 martin #endif
455 1.24 martin #if defined(CD_NAMES) && defined(FLOPPY_NAMES)
456 1.24 martin ,
457 1.24 martin #endif
458 1.24 martin #ifdef FLOPPY_NAMES
459 1.24 martin FLOPPY_NAMES
460 1.24 martin #endif
461 1.24 martin #if defined(CD_NAMES) || defined(FLOPPY_NAMES)
462 1.24 martin ,
463 1.24 martin #endif
464 1.24 martin 0
465 1.24 martin };
466 1.25 martin static const char *src_devices[] = {
467 1.25 martin #ifdef CD_NAMES
468 1.25 martin CD_NAMES ,
469 1.25 martin #endif
470 1.25 martin 0
471 1.25 martin };
472 1.18 martin
473 1.25 martin for (const char **dev_pat = as_target ? target_devices : src_devices;
474 1.25 martin *dev_pat; dev_pat++)
475 1.20 martin if (fnmatch(*dev_pat, dev, 0) == 0)
476 1.20 martin return true;
477 1.18 martin
478 1.18 martin return false;
479 1.18 martin }
480 1.18 martin
481 1.27 martin /* does this device match any entry in the driver list? */
482 1.27 martin static bool
483 1.27 martin dev_in_list(const char *dev, const char **list)
484 1.27 martin {
485 1.27 martin
486 1.27 martin for ( ; *list; list++) {
487 1.27 martin
488 1.27 martin size_t len = strlen(*list);
489 1.27 martin
490 1.27 martin /* start of name matches? */
491 1.27 martin if (strncmp(dev, *list, len) == 0) {
492 1.27 martin char *endp;
493 1.27 martin int e;
494 1.27 martin
495 1.27 martin /* remainder of name is a decimal number? */
496 1.27 martin strtou(dev+len, &endp, 10, 0, INT_MAX, &e);
497 1.27 martin if (endp && *endp == 0 && e == 0)
498 1.27 martin return true;
499 1.27 martin }
500 1.27 martin }
501 1.27 martin
502 1.27 martin return false;
503 1.27 martin }
504 1.27 martin
505 1.27 martin bool
506 1.27 martin is_bootable_device(const char *dev)
507 1.27 martin {
508 1.27 martin static const char *non_bootable_devs[] = {
509 1.27 martin "raid", /* bootcode lives outside of raid */
510 1.27 martin "xbd", /* xen virtual device, can not boot from that */
511 1.27 martin NULL
512 1.27 martin };
513 1.27 martin
514 1.27 martin return !dev_in_list(dev, non_bootable_devs);
515 1.27 martin }
516 1.27 martin
517 1.27 martin bool
518 1.27 martin is_partitionable_device(const char *dev)
519 1.27 martin {
520 1.27 martin static const char *non_partitionable_devs[] = {
521 1.41 msaitoh "dk", /* this is alreay a partitioned slice */
522 1.27 martin NULL
523 1.27 martin };
524 1.27 martin
525 1.27 martin return !dev_in_list(dev, non_partitionable_devs);
526 1.27 martin }
527 1.27 martin
528 1.18 martin /*
529 1.18 martin * Multi-purpose helper function:
530 1.21 martin * iterate all known disks, invoke a callback for each.
531 1.21 martin * Stop iteration when the callback returns false.
532 1.21 martin * Return true when iteration actually happend, false on error.
533 1.18 martin */
534 1.22 martin bool
535 1.21 martin enumerate_disks(void *state, bool (*func)(void *state, const char *dev))
536 1.1 dholland {
537 1.17 martin static const int mib[] = { CTL_HW, HW_DISKNAMES };
538 1.17 martin static const unsigned int miblen = __arraycount(mib);
539 1.17 martin const char *xd;
540 1.21 martin char *disk_names;
541 1.17 martin size_t len;
542 1.1 dholland
543 1.21 martin if (sysctl(mib, miblen, NULL, &len, NULL, 0) == -1)
544 1.21 martin return false;
545 1.1 dholland
546 1.17 martin disk_names = malloc(len);
547 1.17 martin if (disk_names == NULL)
548 1.21 martin return false;
549 1.17 martin
550 1.17 martin if (sysctl(mib, miblen, disk_names, &len, NULL, 0) == -1) {
551 1.17 martin free(disk_names);
552 1.21 martin return false;
553 1.17 martin }
554 1.1 dholland
555 1.17 martin for (xd = strtok(disk_names, " "); xd != NULL; xd = strtok(NULL, " ")) {
556 1.21 martin if (!(*func)(state, xd))
557 1.21 martin break;
558 1.21 martin }
559 1.21 martin free(disk_names);
560 1.21 martin
561 1.21 martin return true;
562 1.21 martin }
563 1.21 martin
564 1.21 martin /*
565 1.21 martin * Helper state for get_disks
566 1.21 martin */
567 1.21 martin struct get_disks_state {
568 1.21 martin int numdisks;
569 1.21 martin struct disk_desc *dd;
570 1.21 martin bool with_non_partitionable;
571 1.21 martin };
572 1.21 martin
573 1.21 martin /*
574 1.21 martin * Helper function for get_disks enumartion
575 1.21 martin */
576 1.21 martin static bool
577 1.21 martin get_disks_helper(void *arg, const char *dev)
578 1.21 martin {
579 1.21 martin struct get_disks_state *state = arg;
580 1.30 martin struct disk_geom geo;
581 1.18 martin
582 1.21 martin /* is this a CD device? */
583 1.25 martin if (is_cdrom_device(dev, true))
584 1.21 martin return true;
585 1.21 martin
586 1.27 martin memset(state->dd, 0, sizeof(*state->dd));
587 1.21 martin strlcpy(state->dd->dd_name, dev, sizeof state->dd->dd_name - 2);
588 1.27 martin state->dd->dd_no_mbr = !is_bootable_device(dev);
589 1.27 martin state->dd->dd_no_part = !is_partitionable_device(dev);
590 1.21 martin
591 1.21 martin if (state->dd->dd_no_part && !state->with_non_partitionable)
592 1.21 martin return true;
593 1.1 dholland
594 1.30 martin if (!get_disk_geom(state->dd->dd_name, &geo)) {
595 1.21 martin if (errno == ENOENT)
596 1.21 martin return true;
597 1.21 martin if (errno != ENOTTY || !state->dd->dd_no_part)
598 1.21 martin /*
599 1.21 martin * Allow plain partitions,
600 1.21 martin * like already existing wedges
601 1.21 martin * (like dk0) if marked as
602 1.21 martin * non-partitioning device.
603 1.21 martin * For all other cases, continue
604 1.21 martin * with the next disk.
605 1.21 martin */
606 1.21 martin return true;
607 1.21 martin if (!is_ffs_wedge(state->dd->dd_name))
608 1.21 martin return true;
609 1.21 martin }
610 1.1 dholland
611 1.21 martin /*
612 1.21 martin * Exclude a disk mounted as root partition,
613 1.21 martin * in case of install-image on a USB memstick.
614 1.21 martin */
615 1.23 martin if (is_active_rootpart(state->dd->dd_name,
616 1.23 martin state->dd->dd_no_part ? -1 : 0))
617 1.21 martin return true;
618 1.17 martin
619 1.30 martin state->dd->dd_cyl = geo.dg_ncylinders;
620 1.30 martin state->dd->dd_head = geo.dg_ntracks;
621 1.30 martin state->dd->dd_sec = geo.dg_nsectors;
622 1.30 martin state->dd->dd_secsize = geo.dg_secsize;
623 1.30 martin state->dd->dd_totsec = geo.dg_secperunit;
624 1.30 martin
625 1.30 martin if (!state->dd->dd_no_part || !get_wedge_descr(state->dd))
626 1.21 martin get_descr(state->dd);
627 1.21 martin state->dd++;
628 1.21 martin state->numdisks++;
629 1.21 martin if (state->numdisks == MAX_DISKS)
630 1.21 martin return false;
631 1.21 martin
632 1.21 martin return true;
633 1.21 martin }
634 1.21 martin
635 1.21 martin /*
636 1.21 martin * Get all disk devices that are not CDs.
637 1.21 martin * Optionally leave out those that can not be partitioned further.
638 1.21 martin */
639 1.21 martin static int
640 1.21 martin get_disks(struct disk_desc *dd, bool with_non_partitionable)
641 1.21 martin {
642 1.21 martin struct get_disks_state state;
643 1.21 martin
644 1.21 martin /* initialize */
645 1.21 martin state.numdisks = 0;
646 1.21 martin state.dd = dd;
647 1.21 martin state.with_non_partitionable = with_non_partitionable;
648 1.21 martin
649 1.21 martin if (enumerate_disks(&state, get_disks_helper))
650 1.21 martin return state.numdisks;
651 1.21 martin
652 1.21 martin return 0;
653 1.1 dholland }
654 1.1 dholland
655 1.30 martin #ifdef DEBUG_VERBOSE
656 1.30 martin static void
657 1.30 martin dump_parts(const struct disk_partitions *parts)
658 1.30 martin {
659 1.30 martin fprintf(stderr, "%s partitions on %s:\n",
660 1.30 martin MSG_XLAT(parts->pscheme->short_name), parts->disk);
661 1.30 martin
662 1.30 martin for (size_t p = 0; p < parts->num_part; p++) {
663 1.30 martin struct disk_part_info info;
664 1.30 martin
665 1.30 martin if (parts->pscheme->get_part_info(
666 1.30 martin parts, p, &info)) {
667 1.30 martin fprintf(stderr, " #%zu: start: %" PRIu64 " "
668 1.30 martin "size: %" PRIu64 ", flags: %x\n",
669 1.30 martin p, info.start, info.size,
670 1.30 martin info.flags);
671 1.30 martin if (info.nat_type)
672 1.30 martin fprintf(stderr, "\ttype: %s\n",
673 1.30 martin info.nat_type->description);
674 1.30 martin } else {
675 1.30 martin fprintf(stderr, "failed to get info "
676 1.30 martin "for partition #%zu\n", p);
677 1.30 martin }
678 1.30 martin }
679 1.30 martin fprintf(stderr, "%" PRIu64 " sectors free, disk size %" PRIu64
680 1.30 martin " sectors, %zu partitions used\n", parts->free_space,
681 1.30 martin parts->disk_size, parts->num_part);
682 1.30 martin }
683 1.30 martin #endif
684 1.30 martin
685 1.30 martin static bool
686 1.30 martin delete_scheme(struct pm_devs *p)
687 1.30 martin {
688 1.30 martin
689 1.30 martin if (!ask_noyes(MSG_removepartswarn))
690 1.30 martin return false;
691 1.30 martin
692 1.30 martin p->parts->pscheme->free(p->parts);
693 1.30 martin p->parts = NULL;
694 1.30 martin return true;
695 1.30 martin }
696 1.30 martin
697 1.30 martin
698 1.30 martin static void
699 1.30 martin convert_copy(struct disk_partitions *old_parts,
700 1.30 martin struct disk_partitions *new_parts)
701 1.30 martin {
702 1.30 martin struct disk_part_info oinfo, ninfo;
703 1.30 martin part_id i;
704 1.30 martin
705 1.30 martin for (i = 0; i < old_parts->num_part; i++) {
706 1.30 martin if (!old_parts->pscheme->get_part_info(old_parts, i, &oinfo))
707 1.30 martin continue;
708 1.30 martin
709 1.30 martin if (oinfo.flags & PTI_PSCHEME_INTERNAL)
710 1.30 martin continue;
711 1.30 martin
712 1.30 martin if (oinfo.flags & PTI_SEC_CONTAINER) {
713 1.30 martin if (old_parts->pscheme->secondary_partitions) {
714 1.30 martin struct disk_partitions *sec_part =
715 1.30 martin old_parts->pscheme->
716 1.30 martin secondary_partitions(
717 1.32 martin old_parts, oinfo.start, false);
718 1.30 martin if (sec_part)
719 1.30 martin convert_copy(sec_part, new_parts);
720 1.30 martin }
721 1.30 martin continue;
722 1.30 martin }
723 1.30 martin
724 1.30 martin if (!new_parts->pscheme->adapt_foreign_part_info(new_parts,
725 1.30 martin &oinfo, &ninfo))
726 1.30 martin continue;
727 1.30 martin new_parts->pscheme->add_partition(new_parts, &ninfo, NULL);
728 1.30 martin }
729 1.30 martin }
730 1.30 martin
731 1.30 martin bool
732 1.30 martin convert_scheme(struct pm_devs *p, bool is_boot_drive, const char **err_msg)
733 1.30 martin {
734 1.30 martin struct disk_partitions *old_parts, *new_parts;
735 1.30 martin const struct disk_partitioning_scheme *new_scheme;
736 1.30 martin
737 1.30 martin *err_msg = NULL;
738 1.30 martin
739 1.30 martin old_parts = p->parts;
740 1.30 martin new_scheme = select_part_scheme(p, old_parts->pscheme,
741 1.30 martin false, MSG_select_other_partscheme);
742 1.30 martin
743 1.30 martin if (new_scheme == NULL)
744 1.30 martin return false;
745 1.30 martin
746 1.30 martin new_parts = new_scheme->create_new_for_disk(p->diskdev,
747 1.30 martin 0, p->dlsize, p->dlsize, is_boot_drive);
748 1.30 martin if (new_parts == NULL)
749 1.30 martin return false;
750 1.30 martin
751 1.30 martin convert_copy(old_parts, new_parts);
752 1.30 martin
753 1.30 martin if (new_parts->num_part == 0) {
754 1.30 martin /* need to cleanup */
755 1.30 martin new_parts->pscheme->free(new_parts);
756 1.30 martin return false;
757 1.30 martin }
758 1.30 martin
759 1.30 martin old_parts->pscheme->free(old_parts);
760 1.30 martin p->parts = new_parts;
761 1.30 martin return true;
762 1.30 martin }
763 1.30 martin
764 1.40 martin static struct pm_devs *
765 1.40 martin dummy_whole_system_pm(void)
766 1.40 martin {
767 1.40 martin static struct pm_devs whole_system = {
768 1.40 martin .diskdev = "/",
769 1.40 martin .no_mbr = true,
770 1.40 martin .no_part = true,
771 1.40 martin .cur_system = true,
772 1.40 martin };
773 1.40 martin static bool init = false;
774 1.40 martin
775 1.40 martin if (!init) {
776 1.40 martin strlcpy(whole_system.diskdev_descr,
777 1.40 martin msg_string(MSG_running_system),
778 1.40 martin sizeof whole_system.diskdev_descr);
779 1.40 martin }
780 1.40 martin
781 1.40 martin return &whole_system;
782 1.40 martin }
783 1.40 martin
784 1.1 dholland int
785 1.40 martin find_disks(const char *doingwhat, bool allow_cur_system)
786 1.1 dholland {
787 1.1 dholland struct disk_desc disks[MAX_DISKS];
788 1.40 martin /* need two more menu entries: current system + extended partitioning */
789 1.40 martin menu_ent dsk_menu[__arraycount(disks) + 2];
790 1.1 dholland struct disk_desc *disk;
791 1.15 martin int i = 0, skipped = 0;
792 1.15 martin int already_found, numdisks, selected_disk = -1;
793 1.1 dholland int menu_no;
794 1.30 martin struct pm_devs *pm_i, *pm_last = NULL;
795 1.30 martin
796 1.30 martin memset(dsk_menu, 0, sizeof(dsk_menu));
797 1.1 dholland
798 1.1 dholland /* Find disks. */
799 1.21 martin numdisks = get_disks(disks, partman_go <= 0);
800 1.1 dholland
801 1.1 dholland /* need a redraw here, kernel messages hose everything */
802 1.1 dholland touchwin(stdscr);
803 1.1 dholland refresh();
804 1.1 dholland /* Kill typeahead, it won't be what the user had in mind */
805 1.1 dholland fpurge(stdin);
806 1.1 dholland
807 1.10 isaki /*
808 1.10 isaki * partman_go: <0 - we want to see menu with extended partitioning
809 1.10 isaki * ==0 - we want to see simple select disk menu
810 1.10 isaki * >0 - we do not want to see any menus, just detect
811 1.10 isaki * all disks
812 1.10 isaki */
813 1.2 martin if (partman_go <= 0) {
814 1.40 martin if (numdisks == 0 && !allow_cur_system) {
815 1.2 martin /* No disks found! */
816 1.30 martin hit_enter_to_continue(MSG_nodisk, NULL);
817 1.2 martin /*endwin();*/
818 1.2 martin return -1;
819 1.2 martin } else {
820 1.40 martin /* One or more disks found or current system allowed */
821 1.40 martin i = 0;
822 1.40 martin if (allow_cur_system) {
823 1.40 martin dsk_menu[i].opt_name = MSG_running_system;
824 1.40 martin dsk_menu[i].opt_flags = OPT_EXIT;
825 1.40 martin dsk_menu[i].opt_action = set_menu_select;
826 1.40 martin i++;
827 1.40 martin }
828 1.40 martin for (; i < numdisks; i++) {
829 1.15 martin dsk_menu[i].opt_name =
830 1.40 martin disks[i-allow_cur_system].dd_descr;
831 1.2 martin dsk_menu[i].opt_flags = OPT_EXIT;
832 1.2 martin dsk_menu[i].opt_action = set_menu_select;
833 1.2 martin }
834 1.2 martin if (partman_go < 0) {
835 1.2 martin dsk_menu[i].opt_name = MSG_partman;
836 1.2 martin dsk_menu[i].opt_flags = OPT_EXIT;
837 1.2 martin dsk_menu[i].opt_action = set_menu_select;
838 1.40 martin i++;
839 1.2 martin }
840 1.2 martin menu_no = new_menu(MSG_Available_disks,
841 1.40 martin dsk_menu, i, -1,
842 1.15 martin 4, 0, 0, MC_SCROLL,
843 1.2 martin NULL, NULL, NULL, NULL, NULL);
844 1.2 martin if (menu_no == -1)
845 1.2 martin return -1;
846 1.33 christos msg_fmt_display(MSG_ask_disk, "%s", doingwhat);
847 1.2 martin process_menu(menu_no, &selected_disk);
848 1.2 martin free_menu(menu_no);
849 1.40 martin if (allow_cur_system) {
850 1.40 martin if (selected_disk == 0) {
851 1.40 martin pm = dummy_whole_system_pm();
852 1.40 martin return 1;
853 1.40 martin } else {
854 1.40 martin selected_disk--;
855 1.40 martin }
856 1.40 martin }
857 1.2 martin }
858 1.2 martin if (partman_go < 0 && selected_disk == numdisks) {
859 1.2 martin partman_go = 1;
860 1.10 isaki return -2;
861 1.2 martin } else
862 1.2 martin partman_go = 0;
863 1.2 martin if (selected_disk < 0 || selected_disk >= numdisks)
864 1.10 isaki return -1;
865 1.2 martin }
866 1.2 martin
867 1.2 martin /* Fill pm struct with device(s) info */
868 1.2 martin for (i = 0; i < numdisks; i++) {
869 1.2 martin if (! partman_go)
870 1.2 martin disk = disks + selected_disk;
871 1.2 martin else {
872 1.2 martin disk = disks + i;
873 1.2 martin already_found = 0;
874 1.2 martin SLIST_FOREACH(pm_i, &pm_head, l) {
875 1.2 martin pm_last = pm_i;
876 1.10 isaki if (!already_found &&
877 1.10 isaki strcmp(pm_i->diskdev, disk->dd_name) == 0) {
878 1.2 martin pm_i->found = 1;
879 1.2 martin break;
880 1.2 martin }
881 1.2 martin }
882 1.2 martin if (pm_i != NULL && pm_i->found)
883 1.2 martin /* We already added this device, skipping */
884 1.2 martin continue;
885 1.1 dholland }
886 1.2 martin pm = pm_new;
887 1.2 martin pm->found = 1;
888 1.30 martin pm->ptstart = 0;
889 1.30 martin pm->ptsize = 0;
890 1.2 martin pm->bootable = 0;
891 1.2 martin strlcpy(pm->diskdev, disk->dd_name, sizeof pm->diskdev);
892 1.2 martin strlcpy(pm->diskdev_descr, disk->dd_descr, sizeof pm->diskdev_descr);
893 1.2 martin /* Use as a default disk if the user has the sets on a local disk */
894 1.2 martin strlcpy(localfs_dev, disk->dd_name, sizeof localfs_dev);
895 1.2 martin
896 1.30 martin /*
897 1.30 martin * Init disk size and geometry
898 1.30 martin */
899 1.30 martin pm->sectorsize = disk->dd_secsize;
900 1.30 martin pm->dlcyl = disk->dd_cyl;
901 1.30 martin pm->dlhead = disk->dd_head;
902 1.30 martin pm->dlsec = disk->dd_sec;
903 1.30 martin pm->dlsize = disk->dd_totsec;
904 1.30 martin if (pm->dlsize == 0)
905 1.30 martin pm->dlsize = disk->dd_cyl * disk->dd_head
906 1.30 martin * disk->dd_sec;
907 1.30 martin
908 1.30 martin pm->parts = partitions_read_disk(pm->diskdev, disk->dd_totsec);
909 1.30 martin
910 1.30 martin again:
911 1.30 martin
912 1.30 martin #ifdef DEBUG_VERBOSE
913 1.30 martin if (pm->parts) {
914 1.30 martin fputs("\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n\n", stderr);
915 1.30 martin dump_parts(pm->parts);
916 1.30 martin
917 1.30 martin if (pm->parts->pscheme->secondary_partitions) {
918 1.30 martin const struct disk_partitions *sparts =
919 1.30 martin pm->parts->pscheme->secondary_partitions(
920 1.32 martin pm->parts, pm->ptstart, false);
921 1.30 martin if (sparts != NULL)
922 1.30 martin dump_parts(sparts);
923 1.30 martin }
924 1.30 martin }
925 1.30 martin #endif
926 1.30 martin
927 1.30 martin pm->no_mbr = disk->dd_no_mbr;
928 1.15 martin pm->no_part = disk->dd_no_part;
929 1.15 martin if (!pm->no_part) {
930 1.15 martin pm->sectorsize = disk->dd_secsize;
931 1.15 martin pm->dlcyl = disk->dd_cyl;
932 1.15 martin pm->dlhead = disk->dd_head;
933 1.15 martin pm->dlsec = disk->dd_sec;
934 1.15 martin pm->dlsize = disk->dd_totsec;
935 1.15 martin if (pm->dlsize == 0)
936 1.30 martin pm->dlsize = disk->dd_cyl * disk->dd_head
937 1.30 martin * disk->dd_sec;
938 1.30 martin
939 1.30 martin if (pm->parts && pm->parts->pscheme->size_limit != 0
940 1.30 martin && pm->dlsize > pm->parts->pscheme->size_limit
941 1.30 martin && ! partman_go) {
942 1.30 martin
943 1.30 martin char size[5], limit[5];
944 1.30 martin
945 1.30 martin humanize_number(size, sizeof(size),
946 1.30 martin (uint64_t)pm->dlsize * 512U,
947 1.30 martin "", HN_AUTOSCALE, HN_B | HN_NOSPACE
948 1.30 martin | HN_DECIMAL);
949 1.30 martin
950 1.30 martin humanize_number(limit, sizeof(limit),
951 1.30 martin (uint64_t)pm->parts->pscheme->size_limit
952 1.30 martin * 512U,
953 1.30 martin "", HN_AUTOSCALE, HN_B | HN_NOSPACE
954 1.30 martin | HN_DECIMAL);
955 1.30 martin
956 1.15 martin if (logfp)
957 1.30 martin fprintf(logfp,
958 1.30 martin "disk %s: is too big (%" PRIu64
959 1.30 martin " blocks, %s), will be truncated\n",
960 1.30 martin pm->diskdev, pm->dlsize,
961 1.30 martin size);
962 1.30 martin
963 1.30 martin msg_display_subst(MSG_toobigdisklabel, 5,
964 1.30 martin pm->diskdev,
965 1.30 martin msg_string(pm->parts->pscheme->name),
966 1.30 martin msg_string(pm->parts->pscheme->short_name),
967 1.30 martin size, limit);
968 1.30 martin
969 1.30 martin int sel = -1;
970 1.30 martin const char *err = NULL;
971 1.30 martin process_menu(MENU_convertscheme, &sel);
972 1.30 martin if (sel == 1) {
973 1.30 martin if (!delete_scheme(pm)) {
974 1.30 martin return -1;
975 1.30 martin }
976 1.30 martin goto again;
977 1.30 martin } else if (sel == 2) {
978 1.30 martin if (!convert_scheme(pm,
979 1.30 martin partman_go < 0, &err)) {
980 1.30 martin if (err != NULL)
981 1.30 martin err_msg_win(err);
982 1.30 martin return -1;
983 1.30 martin }
984 1.30 martin goto again;
985 1.30 martin } else if (sel == 3) {
986 1.30 martin return -1;
987 1.30 martin }
988 1.30 martin pm->dlsize = pm->parts->pscheme->size_limit;
989 1.15 martin }
990 1.15 martin } else {
991 1.15 martin pm->sectorsize = 0;
992 1.15 martin pm->dlcyl = 0;
993 1.15 martin pm->dlhead = 0;
994 1.15 martin pm->dlsec = 0;
995 1.15 martin pm->dlsize = 0;
996 1.15 martin pm->no_mbr = 1;
997 1.2 martin }
998 1.2 martin pm->dlcylsize = pm->dlhead * pm->dlsec;
999 1.2 martin
1000 1.2 martin if (partman_go) {
1001 1.2 martin pm_getrefdev(pm_new);
1002 1.2 martin if (SLIST_EMPTY(&pm_head) || pm_last == NULL)
1003 1.2 martin SLIST_INSERT_HEAD(&pm_head, pm_new, l);
1004 1.2 martin else
1005 1.2 martin SLIST_INSERT_AFTER(pm_last, pm_new, l);
1006 1.30 martin pm_new = malloc(sizeof (struct pm_devs));
1007 1.2 martin memset(pm_new, 0, sizeof *pm_new);
1008 1.2 martin } else
1009 1.30 martin /* We are not in partman and do not want to process
1010 1.30 martin * all devices, exit */
1011 1.2 martin break;
1012 1.1 dholland }
1013 1.1 dholland
1014 1.15 martin return numdisks-skipped;
1015 1.2 martin }
1016 1.2 martin
1017 1.30 martin static int
1018 1.30 martin sort_part_usage_by_mount(const void *a, const void *b)
1019 1.2 martin {
1020 1.30 martin const struct part_usage_info *pa = a, *pb = b;
1021 1.15 martin
1022 1.30 martin /* sort all real partitions by mount point */
1023 1.30 martin if ((pa->instflags & PUIINST_MOUNT) &&
1024 1.30 martin (pb->instflags & PUIINST_MOUNT))
1025 1.30 martin return strcmp(pa->mount, pb->mount);
1026 1.15 martin
1027 1.30 martin /* real partitions go first */
1028 1.30 martin if (pa->instflags & PUIINST_MOUNT)
1029 1.30 martin return -1;
1030 1.30 martin if (pb->instflags & PUIINST_MOUNT)
1031 1.30 martin return 1;
1032 1.8 martin
1033 1.30 martin /* arbitrary order for all other partitions */
1034 1.30 martin if (pa->type == PT_swap)
1035 1.30 martin return -1;
1036 1.30 martin if (pb->type == PT_swap)
1037 1.30 martin return 1;
1038 1.30 martin if (pa->type < pb->type)
1039 1.30 martin return -1;
1040 1.30 martin if (pa->type > pb->type)
1041 1.30 martin return 1;
1042 1.30 martin if (pa->cur_part_id < pb->cur_part_id)
1043 1.30 martin return -1;
1044 1.30 martin if (pa->cur_part_id > pb->cur_part_id)
1045 1.30 martin return 1;
1046 1.30 martin return (uintptr_t)a < (uintptr_t)b ? -1 : 1;
1047 1.1 dholland }
1048 1.1 dholland
1049 1.1 dholland int
1050 1.30 martin make_filesystems(struct install_partition_desc *install)
1051 1.1 dholland {
1052 1.30 martin int error = 0, partno = -1;
1053 1.30 martin char *newfs = NULL, devdev[PATH_MAX], rdev[PATH_MAX];
1054 1.30 martin size_t i;
1055 1.30 martin struct part_usage_info *ptn;
1056 1.30 martin struct disk_partitions *parts;
1057 1.30 martin const char *mnt_opts = NULL, *fsname = NULL;
1058 1.1 dholland
1059 1.40 martin if (pm->cur_system)
1060 1.40 martin return 1;
1061 1.40 martin
1062 1.15 martin if (pm->no_part) {
1063 1.15 martin /* check if this target device already has a ffs */
1064 1.30 martin snprintf(rdev, sizeof rdev, _PATH_DEV "/r%s", pm->diskdev);
1065 1.30 martin error = fsck_preen(rdev, "ffs", true);
1066 1.15 martin if (error) {
1067 1.15 martin if (!ask_noyes(MSG_No_filesystem_newfs))
1068 1.15 martin return EINVAL;
1069 1.15 martin error = run_program(RUN_DISPLAY | RUN_PROGRESS,
1070 1.30 martin "/sbin/newfs -V2 -O2 %s", rdev);
1071 1.15 martin }
1072 1.15 martin
1073 1.37 martin md_pre_mount(install, 0);
1074 1.15 martin
1075 1.15 martin make_target_dir("/");
1076 1.30 martin
1077 1.30 martin snprintf(devdev, sizeof devdev, _PATH_DEV "%s", pm->diskdev);
1078 1.15 martin error = target_mount_do("-o async", devdev, "/");
1079 1.15 martin if (error) {
1080 1.30 martin msg_display_subst(MSG_mountfail, 2, devdev, "/");
1081 1.30 martin hit_enter_to_continue(NULL, NULL);
1082 1.15 martin }
1083 1.30 martin
1084 1.15 martin return error;
1085 1.15 martin }
1086 1.15 martin
1087 1.1 dholland /* Making new file systems and mounting them */
1088 1.1 dholland
1089 1.1 dholland /* sort to ensure /usr/local is mounted after /usr (etc) */
1090 1.30 martin qsort(install->infos, install->num, sizeof(*install->infos),
1091 1.30 martin sort_part_usage_by_mount);
1092 1.1 dholland
1093 1.30 martin for (i = 0; i < install->num; i++) {
1094 1.1 dholland /*
1095 1.38 martin * Newfs all file systems mareked as needing this.
1096 1.38 martin * Mount the ones that have a mountpoint in the target.
1097 1.1 dholland */
1098 1.30 martin ptn = &install->infos[i];
1099 1.30 martin parts = ptn->parts;
1100 1.1 dholland
1101 1.30 martin if (ptn->size == 0 || parts == NULL)
1102 1.1 dholland continue;
1103 1.1 dholland
1104 1.30 martin if (parts->pscheme->get_part_device(parts, ptn->cur_part_id,
1105 1.30 martin devdev, sizeof devdev, &partno, parent_device_only, false)
1106 1.30 martin && is_active_rootpart(devdev, partno))
1107 1.30 martin continue;
1108 1.30 martin
1109 1.38 martin if (!(ptn->instflags & PUIINST_NEWFS))
1110 1.1 dholland continue;
1111 1.1 dholland
1112 1.30 martin parts->pscheme->get_part_device(parts, ptn->cur_part_id,
1113 1.30 martin devdev, sizeof devdev, &partno, plain_name, true);
1114 1.30 martin
1115 1.30 martin parts->pscheme->get_part_device(parts, ptn->cur_part_id,
1116 1.30 martin rdev, sizeof rdev, &partno, raw_dev_name, true);
1117 1.2 martin
1118 1.1 dholland newfs = NULL;
1119 1.30 martin switch (ptn->fs_type) {
1120 1.1 dholland case FS_APPLEUFS:
1121 1.30 martin asprintf(&newfs, "/sbin/newfs");
1122 1.30 martin mnt_opts = "-tffs -o async";
1123 1.30 martin fsname = "ffs";
1124 1.1 dholland break;
1125 1.1 dholland case FS_BSDFFS:
1126 1.1 dholland asprintf(&newfs,
1127 1.30 martin "/sbin/newfs -V2 -O %d",
1128 1.30 martin ptn->fs_version == 2 ? 2 : 1);
1129 1.30 martin if (ptn->mountflags & PUIMNT_LOG)
1130 1.30 martin mnt_opts = "-tffs -o log";
1131 1.1 dholland else
1132 1.30 martin mnt_opts = "-tffs -o async";
1133 1.30 martin fsname = "ffs";
1134 1.1 dholland break;
1135 1.1 dholland case FS_BSDLFS:
1136 1.30 martin asprintf(&newfs, "/sbin/newfs_lfs");
1137 1.30 martin mnt_opts = "-tlfs";
1138 1.30 martin fsname = "lfs";
1139 1.1 dholland break;
1140 1.1 dholland case FS_MSDOS:
1141 1.1 dholland asprintf(&newfs, "/sbin/newfs_msdos");
1142 1.30 martin mnt_opts = "-tmsdos";
1143 1.30 martin fsname = "msdos";
1144 1.1 dholland break;
1145 1.1 dholland #ifdef USE_SYSVBFS
1146 1.1 dholland case FS_SYSVBFS:
1147 1.1 dholland asprintf(&newfs, "/sbin/newfs_sysvbfs");
1148 1.30 martin mnt_opts = "-tsysvbfs";
1149 1.30 martin fsname = "sysvbfs";
1150 1.1 dholland break;
1151 1.1 dholland #endif
1152 1.1 dholland #ifdef USE_EXT2FS
1153 1.1 dholland case FS_EX2FS:
1154 1.1 dholland asprintf(&newfs, "/sbin/newfs_ext2fs");
1155 1.30 martin mnt_opts = "-text2fs";
1156 1.30 martin fsname = "ext2fs";
1157 1.1 dholland break;
1158 1.1 dholland #endif
1159 1.1 dholland }
1160 1.30 martin if ((ptn->instflags & PUIINST_NEWFS) && newfs != NULL) {
1161 1.30 martin if (ptn->fs_type == FS_MSDOS) {
1162 1.1 dholland /* newfs only if mount fails */
1163 1.1 dholland if (run_program(RUN_SILENT | RUN_ERROR_OK,
1164 1.30 martin "mount -rt msdos %s /mnt2", devdev) != 0)
1165 1.1 dholland error = run_program(
1166 1.1 dholland RUN_DISPLAY | RUN_PROGRESS,
1167 1.30 martin "%s %s",
1168 1.30 martin newfs, rdev);
1169 1.1 dholland else {
1170 1.10 isaki run_program(RUN_SILENT | RUN_ERROR_OK,
1171 1.1 dholland "umount /mnt2");
1172 1.1 dholland error = 0;
1173 1.1 dholland }
1174 1.30 martin } else {
1175 1.30 martin error = run_program(RUN_DISPLAY | RUN_PROGRESS,
1176 1.30 martin "%s %s", newfs, rdev);
1177 1.30 martin }
1178 1.1 dholland } else {
1179 1.1 dholland /* We'd better check it isn't dirty */
1180 1.30 martin error = fsck_preen(devdev, fsname, false);
1181 1.1 dholland }
1182 1.1 dholland free(newfs);
1183 1.30 martin if (error != 0)
1184 1.1 dholland return error;
1185 1.1 dholland
1186 1.30 martin ptn->instflags &= ~PUIINST_NEWFS;
1187 1.37 martin md_pre_mount(install, i);
1188 1.1 dholland
1189 1.30 martin if (partman_go == 0 && (ptn->instflags & PUIINST_MOUNT) &&
1190 1.30 martin mnt_opts != NULL) {
1191 1.30 martin make_target_dir(ptn->mount);
1192 1.30 martin error = target_mount_do(mnt_opts, devdev,
1193 1.30 martin ptn->mount);
1194 1.1 dholland if (error) {
1195 1.30 martin msg_display_subst(MSG_mountfail, 2, devdev,
1196 1.30 martin ptn->mount);
1197 1.30 martin hit_enter_to_continue(NULL, NULL);
1198 1.1 dholland return error;
1199 1.1 dholland }
1200 1.1 dholland }
1201 1.1 dholland }
1202 1.1 dholland return 0;
1203 1.1 dholland }
1204 1.1 dholland
1205 1.1 dholland int
1206 1.30 martin make_fstab(struct install_partition_desc *install)
1207 1.1 dholland {
1208 1.1 dholland FILE *f;
1209 1.30 martin const char *dump_dev = NULL;
1210 1.30 martin const char *dev;
1211 1.30 martin char dev_buf[PATH_MAX], swap_dev[PATH_MAX];
1212 1.30 martin
1213 1.40 martin if (pm->cur_system)
1214 1.40 martin return 1;
1215 1.40 martin
1216 1.30 martin swap_dev[0] = 0;
1217 1.1 dholland
1218 1.1 dholland /* Create the fstab. */
1219 1.1 dholland make_target_dir("/etc");
1220 1.1 dholland f = target_fopen("/etc/fstab", "w");
1221 1.2 martin scripting_fprintf(NULL, "cat <<EOF >%s/etc/fstab\n", target_prefix());
1222 1.2 martin
1223 1.1 dholland if (logfp)
1224 1.1 dholland (void)fprintf(logfp,
1225 1.30 martin "Making %s/etc/fstab (%s).\n", target_prefix(),
1226 1.30 martin pm->diskdev);
1227 1.10 isaki
1228 1.1 dholland if (f == NULL) {
1229 1.1 dholland msg_display(MSG_createfstab);
1230 1.1 dholland if (logfp)
1231 1.1 dholland (void)fprintf(logfp, "Failed to make /etc/fstab!\n");
1232 1.30 martin hit_enter_to_continue(NULL, NULL);
1233 1.2 martin #ifndef DEBUG
1234 1.1 dholland return 1;
1235 1.1 dholland #else
1236 1.1 dholland f = stdout;
1237 1.1 dholland #endif
1238 1.1 dholland }
1239 1.1 dholland
1240 1.16 martin scripting_fprintf(f, "# NetBSD /etc/fstab\n# See /usr/share/examples/"
1241 1.16 martin "fstab/ for more examples.\n");
1242 1.15 martin
1243 1.15 martin if (pm->no_part) {
1244 1.15 martin /* single dk? target */
1245 1.15 martin char buf[200], parent[200], swap[200], *prompt;
1246 1.15 martin int res;
1247 1.15 martin
1248 1.15 martin if (!get_name_and_parent(pm->diskdev, buf, parent))
1249 1.15 martin goto done_with_disks;
1250 1.15 martin scripting_fprintf(f, "NAME=%s\t/\tffs\trw\t\t1 1\n",
1251 1.15 martin buf);
1252 1.15 martin if (!find_swap_part_on(parent, swap))
1253 1.15 martin goto done_with_disks;
1254 1.30 martin const char *args[] = { parent, swap };
1255 1.30 martin prompt = str_arg_subst(msg_string(MSG_Auto_add_swap_part),
1256 1.30 martin __arraycount(args), args);
1257 1.15 martin res = ask_yesno(prompt);
1258 1.15 martin free(prompt);
1259 1.15 martin if (res)
1260 1.15 martin scripting_fprintf(f, "NAME=%s\tnone"
1261 1.15 martin "\tswap\tsw,dp\t\t0 0\n", swap);
1262 1.15 martin goto done_with_disks;
1263 1.15 martin }
1264 1.15 martin
1265 1.30 martin for (size_t i = 0; i < install->num; i++) {
1266 1.30 martin
1267 1.30 martin const struct part_usage_info *ptn = &install->infos[i];
1268 1.30 martin
1269 1.30 martin if (ptn->type != PT_swap &&
1270 1.30 martin (ptn->instflags & PUIINST_MOUNT) == 0)
1271 1.30 martin continue;
1272 1.30 martin
1273 1.30 martin const char *s = "";
1274 1.30 martin const char *mp = ptn->mount;
1275 1.30 martin const char *fstype = "ffs";
1276 1.30 martin int fsck_pass = 0, dump_freq = 0;
1277 1.30 martin
1278 1.30 martin if (ptn->parts->pscheme->get_part_device(ptn->parts,
1279 1.30 martin ptn->cur_part_id, dev_buf, sizeof dev_buf, NULL,
1280 1.30 martin logical_name, true))
1281 1.30 martin dev = dev_buf;
1282 1.30 martin else
1283 1.30 martin dev = NULL;
1284 1.30 martin
1285 1.30 martin if (!*mp) {
1286 1.30 martin /*
1287 1.30 martin * No mount point specified, comment out line and
1288 1.30 martin * use /mnt as a placeholder for the mount point.
1289 1.30 martin */
1290 1.30 martin s = "# ";
1291 1.30 martin mp = "/mnt";
1292 1.30 martin }
1293 1.30 martin
1294 1.30 martin switch (ptn->fs_type) {
1295 1.30 martin case FS_UNUSED:
1296 1.30 martin continue;
1297 1.30 martin case FS_BSDLFS:
1298 1.30 martin /* If there is no LFS, just comment it out. */
1299 1.30 martin if (!check_lfs_progs())
1300 1.1 dholland s = "# ";
1301 1.30 martin fstype = "lfs";
1302 1.30 martin /* FALLTHROUGH */
1303 1.30 martin case FS_BSDFFS:
1304 1.30 martin fsck_pass = (strcmp(mp, "/") == 0) ? 1 : 2;
1305 1.30 martin dump_freq = 1;
1306 1.30 martin break;
1307 1.30 martin case FS_MSDOS:
1308 1.30 martin fstype = "msdos";
1309 1.30 martin break;
1310 1.30 martin case FS_SWAP:
1311 1.30 martin if (swap_dev[0] == 0) {
1312 1.30 martin strncpy(swap_dev, dev, sizeof swap_dev);
1313 1.30 martin dump_dev = ",dp";
1314 1.30 martin } else {
1315 1.30 martin dump_dev = "";
1316 1.1 dholland }
1317 1.30 martin scripting_fprintf(f, "%s\t\tnone\tswap\tsw%s\t\t 0 0\n",
1318 1.30 martin dev, dump_dev);
1319 1.30 martin continue;
1320 1.1 dholland #ifdef USE_SYSVBFS
1321 1.30 martin case FS_SYSVBFS:
1322 1.30 martin fstype = "sysvbfs";
1323 1.30 martin make_target_dir("/stand");
1324 1.30 martin break;
1325 1.1 dholland #endif
1326 1.30 martin default:
1327 1.30 martin fstype = "???";
1328 1.30 martin s = "# ";
1329 1.30 martin break;
1330 1.2 martin }
1331 1.30 martin /* The code that remounts root rw doesn't check the partition */
1332 1.30 martin if (strcmp(mp, "/") == 0 &&
1333 1.30 martin (ptn->instflags & PUIINST_MOUNT) == 0)
1334 1.30 martin s = "# ";
1335 1.30 martin
1336 1.30 martin scripting_fprintf(f,
1337 1.30 martin "%s%s\t\t%s\t%s\trw%s%s%s%s%s%s%s%s\t\t %d %d\n",
1338 1.30 martin s, dev, mp, fstype,
1339 1.30 martin ptn->mountflags & PUIMNT_LOG ? ",log" : "",
1340 1.30 martin ptn->mountflags & PUIMNT_NOAUTO ? "" : ",noauto",
1341 1.30 martin ptn->mountflags & PUIMNT_ASYNC ? ",async" : "",
1342 1.30 martin ptn->mountflags & PUIMNT_NOATIME ? ",noatime" : "",
1343 1.30 martin ptn->mountflags & PUIMNT_NODEV ? ",nodev" : "",
1344 1.30 martin ptn->mountflags & PUIMNT_NODEVMTIME ? ",nodevmtime" : "",
1345 1.30 martin ptn->mountflags & PUIMNT_NOEXEC ? ",noexec" : "",
1346 1.30 martin ptn->mountflags & PUIMNT_NOSUID ? ",nosuid" : "",
1347 1.30 martin dump_freq, fsck_pass);
1348 1.1 dholland }
1349 1.30 martin
1350 1.15 martin done_with_disks:
1351 1.30 martin if (tmp_ramdisk_size > 0) {
1352 1.1 dholland #ifdef HAVE_TMPFS
1353 1.1 dholland scripting_fprintf(f, "tmpfs\t\t/tmp\ttmpfs\trw,-m=1777,-s=%"
1354 1.30 martin PRIu64 "\n",
1355 1.1 dholland tmp_ramdisk_size * 512);
1356 1.1 dholland #else
1357 1.30 martin if (swap_dev[0] != 0)
1358 1.30 martin scripting_fprintf(f, "%s\t\t/tmp\tmfs\trw,-s=%"
1359 1.30 martin PRIu64 "\n", swap_dev, tmp_ramdisk_size);
1360 1.1 dholland else
1361 1.1 dholland scripting_fprintf(f, "swap\t\t/tmp\tmfs\trw,-s=%"
1362 1.30 martin PRIu64 "\n", tmp_ramdisk_size);
1363 1.1 dholland #endif
1364 1.1 dholland }
1365 1.1 dholland
1366 1.18 martin if (cdrom_dev[0] == 0)
1367 1.18 martin get_default_cdrom(cdrom_dev, sizeof(cdrom_dev));
1368 1.18 martin
1369 1.1 dholland /* Add /kern, /proc and /dev/pts to fstab and make mountpoint. */
1370 1.1 dholland scripting_fprintf(f, "kernfs\t\t/kern\tkernfs\trw\n");
1371 1.1 dholland scripting_fprintf(f, "ptyfs\t\t/dev/pts\tptyfs\trw\n");
1372 1.1 dholland scripting_fprintf(f, "procfs\t\t/proc\tprocfs\trw\n");
1373 1.1 dholland scripting_fprintf(f, "/dev/%s\t\t/cdrom\tcd9660\tro,noauto\n",
1374 1.18 martin cdrom_dev);
1375 1.1 dholland scripting_fprintf(f, "%stmpfs\t\t/var/shm\ttmpfs\trw,-m1777,-sram%%25\n",
1376 1.1 dholland tmpfs_on_var_shm() ? "" : "#");
1377 1.1 dholland make_target_dir("/kern");
1378 1.1 dholland make_target_dir("/proc");
1379 1.1 dholland make_target_dir("/dev/pts");
1380 1.1 dholland make_target_dir("/cdrom");
1381 1.1 dholland make_target_dir("/var/shm");
1382 1.1 dholland
1383 1.1 dholland scripting_fprintf(NULL, "EOF\n");
1384 1.1 dholland
1385 1.1 dholland fclose(f);
1386 1.1 dholland fflush(NULL);
1387 1.1 dholland return 0;
1388 1.1 dholland }
1389 1.1 dholland
1390 1.1 dholland
1391 1.1 dholland
1392 1.1 dholland static int
1393 1.1 dholland /*ARGSUSED*/
1394 1.1 dholland foundffs(struct data *list, size_t num)
1395 1.1 dholland {
1396 1.1 dholland int error;
1397 1.1 dholland
1398 1.1 dholland if (num < 2 || strcmp(list[1].u.s_val, "/") == 0 ||
1399 1.1 dholland strstr(list[2].u.s_val, "noauto") != NULL)
1400 1.1 dholland return 0;
1401 1.1 dholland
1402 1.30 martin error = fsck_preen(list[0].u.s_val, "ffs", false);
1403 1.1 dholland if (error != 0)
1404 1.1 dholland return error;
1405 1.1 dholland
1406 1.30 martin error = target_mount("", list[0].u.s_val, list[1].u.s_val);
1407 1.1 dholland if (error != 0) {
1408 1.33 christos msg_fmt_display(MSG_mount_failed, "%s", list[0].u.s_val);
1409 1.9 martin if (!ask_noyes(NULL))
1410 1.1 dholland return error;
1411 1.1 dholland }
1412 1.1 dholland return 0;
1413 1.1 dholland }
1414 1.1 dholland
1415 1.1 dholland #ifdef USE_SYSVBFS
1416 1.1 dholland static int
1417 1.1 dholland /*ARGSUSED*/
1418 1.1 dholland foundsysvbfs(struct data *list, size_t num)
1419 1.1 dholland {
1420 1.1 dholland int error;
1421 1.1 dholland
1422 1.1 dholland if (num < 2 || strcmp(list[1].u.s_val, "/") == 0 ||
1423 1.1 dholland strstr(list[2].u.s_val, "noauto") != NULL)
1424 1.1 dholland return 0;
1425 1.1 dholland
1426 1.30 martin error = target_mount("", list[0].u.s_val, list[1].u.s_val);
1427 1.1 dholland if (error != 0)
1428 1.1 dholland return error;
1429 1.1 dholland return 0;
1430 1.1 dholland }
1431 1.1 dholland #endif
1432 1.1 dholland
1433 1.1 dholland /*
1434 1.1 dholland * Do an fsck. On failure, inform the user by showing a warning
1435 1.1 dholland * message and doing menu_ok() before proceeding.
1436 1.30 martin * The device passed should be the full qualified path to raw disk
1437 1.30 martin * (e.g. /dev/rwd0a).
1438 1.1 dholland * Returns 0 on success, or nonzero return code from fsck() on failure.
1439 1.1 dholland */
1440 1.1 dholland static int
1441 1.30 martin fsck_preen(const char *disk, const char *fsname, bool silent)
1442 1.1 dholland {
1443 1.30 martin char *prog, err[12];
1444 1.1 dholland int error;
1445 1.1 dholland
1446 1.1 dholland if (fsname == NULL)
1447 1.1 dholland return 0;
1448 1.1 dholland /* first, check if fsck program exists, if not, assume ok */
1449 1.1 dholland asprintf(&prog, "/sbin/fsck_%s", fsname);
1450 1.1 dholland if (prog == NULL)
1451 1.1 dholland return 0;
1452 1.12 martin if (access(prog, X_OK) != 0) {
1453 1.12 martin free(prog);
1454 1.1 dholland return 0;
1455 1.12 martin }
1456 1.1 dholland if (!strcmp(fsname,"ffs"))
1457 1.30 martin fixsb(prog, disk);
1458 1.30 martin error = run_program(silent? RUN_SILENT|RUN_ERROR_OK : 0, "%s -p -q %s", prog, disk);
1459 1.1 dholland free(prog);
1460 1.15 martin if (error != 0 && !silent) {
1461 1.30 martin sprintf(err, "%d", error);
1462 1.30 martin msg_display_subst(msg_string(MSG_badfs), 3,
1463 1.30 martin disk, fsname, err);
1464 1.9 martin if (ask_noyes(NULL))
1465 1.1 dholland error = 0;
1466 1.1 dholland /* XXX at this point maybe we should run a full fsck? */
1467 1.1 dholland }
1468 1.1 dholland return error;
1469 1.1 dholland }
1470 1.1 dholland
1471 1.1 dholland /* This performs the same function as the etc/rc.d/fixsb script
1472 1.1 dholland * which attempts to correct problems with ffs1 filesystems
1473 1.1 dholland * which may have been introduced by booting a netbsd-current kernel
1474 1.1 dholland * from between April of 2003 and January 2004. For more information
1475 1.1 dholland * This script was developed as a response to NetBSD pr install/25138
1476 1.1 dholland * Additional prs regarding the original issue include:
1477 1.1 dholland * bin/17910 kern/21283 kern/21404 port-macppc/23925 port-macppc/23926
1478 1.1 dholland */
1479 1.1 dholland static void
1480 1.30 martin fixsb(const char *prog, const char *disk)
1481 1.1 dholland {
1482 1.1 dholland int fd;
1483 1.1 dholland int rval;
1484 1.1 dholland union {
1485 1.1 dholland struct fs fs;
1486 1.1 dholland char buf[SBLOCKSIZE];
1487 1.1 dholland } sblk;
1488 1.1 dholland struct fs *fs = &sblk.fs;
1489 1.1 dholland
1490 1.30 martin fd = open(disk, O_RDONLY);
1491 1.1 dholland if (fd == -1)
1492 1.1 dholland return;
1493 1.1 dholland
1494 1.1 dholland /* Read ffsv1 main superblock */
1495 1.1 dholland rval = pread(fd, sblk.buf, sizeof sblk.buf, SBLOCK_UFS1);
1496 1.1 dholland close(fd);
1497 1.1 dholland if (rval != sizeof sblk.buf)
1498 1.1 dholland return;
1499 1.1 dholland
1500 1.1 dholland if (fs->fs_magic != FS_UFS1_MAGIC &&
1501 1.1 dholland fs->fs_magic != FS_UFS1_MAGIC_SWAPPED)
1502 1.1 dholland /* Not FFSv1 */
1503 1.1 dholland return;
1504 1.1 dholland if (fs->fs_old_flags & FS_FLAGS_UPDATED)
1505 1.1 dholland /* properly updated fslevel 4 */
1506 1.1 dholland return;
1507 1.1 dholland if (fs->fs_bsize != fs->fs_maxbsize)
1508 1.1 dholland /* not messed up */
1509 1.1 dholland return;
1510 1.1 dholland
1511 1.1 dholland /*
1512 1.1 dholland * OK we have a munged fs, first 'upgrade' to fslevel 4,
1513 1.1 dholland * We specify -b16 in order to stop fsck bleating that the
1514 1.1 dholland * sb doesn't match the first alternate.
1515 1.1 dholland */
1516 1.1 dholland run_program(RUN_DISPLAY | RUN_PROGRESS,
1517 1.30 martin "%s -p -b 16 -c 4 %s", prog, disk);
1518 1.1 dholland /* Then downgrade to fslevel 3 */
1519 1.1 dholland run_program(RUN_DISPLAY | RUN_PROGRESS,
1520 1.30 martin "%s -p -c 3 %s", prog, disk);
1521 1.1 dholland }
1522 1.1 dholland
1523 1.1 dholland /*
1524 1.1 dholland * fsck and mount the root partition.
1525 1.30 martin * devdev is the fully qualified block device name.
1526 1.1 dholland */
1527 1.1 dholland static int
1528 1.30 martin mount_root(const char *devdev, struct install_partition_desc *install)
1529 1.1 dholland {
1530 1.1 dholland int error;
1531 1.1 dholland
1532 1.30 martin error = fsck_preen(devdev, "ffs", false);
1533 1.1 dholland if (error != 0)
1534 1.1 dholland return error;
1535 1.1 dholland
1536 1.37 martin md_pre_mount(install, 0);
1537 1.1 dholland
1538 1.30 martin /* Mount devdev on target's "".
1539 1.1 dholland * If we pass "" as mount-on, Prefixing will DTRT.
1540 1.1 dholland * for now, use no options.
1541 1.1 dholland * XXX consider -o remount in case target root is
1542 1.1 dholland * current root, still readonly from single-user?
1543 1.1 dholland */
1544 1.30 martin return target_mount("", devdev, "");
1545 1.1 dholland }
1546 1.1 dholland
1547 1.1 dholland /* Get information on the file systems mounted from the root filesystem.
1548 1.1 dholland * Offer to convert them into 4.4BSD inodes if they are not 4.4BSD
1549 1.1 dholland * inodes. Fsck them. Mount them.
1550 1.1 dholland */
1551 1.1 dholland
1552 1.1 dholland int
1553 1.30 martin mount_disks(struct install_partition_desc *install)
1554 1.1 dholland {
1555 1.1 dholland char *fstab;
1556 1.1 dholland int fstabsize;
1557 1.1 dholland int error;
1558 1.30 martin char devdev[PATH_MAX];
1559 1.39 martin size_t i;
1560 1.1 dholland
1561 1.40 martin if (install->cur_system)
1562 1.40 martin return 0;
1563 1.40 martin
1564 1.1 dholland static struct lookfor fstabbuf[] = {
1565 1.1 dholland {"/dev/", "/dev/%s %s ffs %s", "c", NULL, 0, 0, foundffs},
1566 1.1 dholland {"/dev/", "/dev/%s %s ufs %s", "c", NULL, 0, 0, foundffs},
1567 1.1 dholland #ifdef USE_SYSVBFS
1568 1.1 dholland {"/dev/", "/dev/%s %s sysvbfs %s", "c", NULL, 0, 0,
1569 1.1 dholland foundsysvbfs},
1570 1.1 dholland #endif
1571 1.1 dholland };
1572 1.1 dholland static size_t numfstabbuf = sizeof(fstabbuf) / sizeof(struct lookfor);
1573 1.1 dholland
1574 1.1 dholland /* First the root device. */
1575 1.1 dholland if (target_already_root())
1576 1.1 dholland /* avoid needing to call target_already_root() again */
1577 1.1 dholland targetroot_mnt[0] = 0;
1578 1.1 dholland else {
1579 1.39 martin for (i = 0; i < install->num; i++) {
1580 1.39 martin if (is_root_part_mount(install->infos[i].mount))
1581 1.39 martin break;
1582 1.39 martin }
1583 1.39 martin
1584 1.39 martin if (i >= install->num) {
1585 1.39 martin hit_enter_to_continue(MSG_noroot, NULL);
1586 1.39 martin return -1;
1587 1.39 martin }
1588 1.39 martin
1589 1.39 martin if (!install->infos[i].parts->pscheme->get_part_device(
1590 1.39 martin install->infos[i].parts, install->infos[i].cur_part_id,
1591 1.30 martin devdev, sizeof devdev, NULL, plain_name, true))
1592 1.30 martin return -1;
1593 1.30 martin error = mount_root(devdev, install);
1594 1.1 dholland if (error != 0 && error != EBUSY)
1595 1.1 dholland return -1;
1596 1.1 dholland }
1597 1.1 dholland
1598 1.1 dholland /* Check the target /etc/fstab exists before trying to parse it. */
1599 1.1 dholland if (target_dir_exists_p("/etc") == 0 ||
1600 1.1 dholland target_file_exists_p("/etc/fstab") == 0) {
1601 1.33 christos msg_fmt_display(MSG_noetcfstab, "%s", pm->diskdev);
1602 1.30 martin hit_enter_to_continue(NULL, NULL);
1603 1.1 dholland return -1;
1604 1.1 dholland }
1605 1.1 dholland
1606 1.1 dholland
1607 1.1 dholland /* Get fstab entries from the target-root /etc/fstab. */
1608 1.1 dholland fstabsize = target_collect_file(T_FILE, &fstab, "/etc/fstab");
1609 1.1 dholland if (fstabsize < 0) {
1610 1.1 dholland /* error ! */
1611 1.33 christos msg_fmt_display(MSG_badetcfstab, "%s", pm->diskdev);
1612 1.30 martin hit_enter_to_continue(NULL, NULL);
1613 1.2 martin return -2;
1614 1.1 dholland }
1615 1.1 dholland error = walk(fstab, (size_t)fstabsize, fstabbuf, numfstabbuf);
1616 1.1 dholland free(fstab);
1617 1.1 dholland
1618 1.1 dholland return error;
1619 1.1 dholland }
1620 1.1 dholland
1621 1.1 dholland int
1622 1.30 martin set_swap_if_low_ram(struct install_partition_desc *install)
1623 1.10 isaki {
1624 1.10 isaki if (get_ramsize() <= 32)
1625 1.30 martin return set_swap(install);
1626 1.10 isaki return 0;
1627 1.7 abs }
1628 1.7 abs
1629 1.7 abs int
1630 1.30 martin set_swap(struct install_partition_desc *install)
1631 1.1 dholland {
1632 1.30 martin size_t i;
1633 1.30 martin char dev_buf[PATH_MAX];
1634 1.1 dholland int rval;
1635 1.1 dholland
1636 1.30 martin for (i = 0; i < install->num; i++) {
1637 1.30 martin if (install->infos[i].type == PT_swap)
1638 1.30 martin break;
1639 1.30 martin }
1640 1.30 martin if (i >= install->num)
1641 1.30 martin return 0;
1642 1.1 dholland
1643 1.30 martin if (!install->infos[i].parts->pscheme->get_part_device(
1644 1.30 martin install->infos[i].parts, install->infos[i].cur_part_id, dev_buf,
1645 1.30 martin sizeof dev_buf, NULL, plain_name, true))
1646 1.30 martin return -1;
1647 1.30 martin
1648 1.30 martin rval = swapctl(SWAP_ON, dev_buf, 0);
1649 1.30 martin if (rval != 0)
1650 1.30 martin return -1;
1651 1.1 dholland
1652 1.1 dholland return 0;
1653 1.1 dholland }
1654 1.1 dholland
1655 1.1 dholland int
1656 1.1 dholland check_swap(const char *disk, int remove_swap)
1657 1.1 dholland {
1658 1.1 dholland struct swapent *swap;
1659 1.1 dholland char *cp;
1660 1.1 dholland int nswap;
1661 1.1 dholland int l;
1662 1.1 dholland int rval = 0;
1663 1.1 dholland
1664 1.1 dholland nswap = swapctl(SWAP_NSWAP, 0, 0);
1665 1.1 dholland if (nswap <= 0)
1666 1.1 dholland return 0;
1667 1.1 dholland
1668 1.1 dholland swap = malloc(nswap * sizeof *swap);
1669 1.1 dholland if (swap == NULL)
1670 1.1 dholland return -1;
1671 1.1 dholland
1672 1.1 dholland nswap = swapctl(SWAP_STATS, swap, nswap);
1673 1.1 dholland if (nswap < 0)
1674 1.1 dholland goto bad_swap;
1675 1.1 dholland
1676 1.1 dholland l = strlen(disk);
1677 1.1 dholland while (--nswap >= 0) {
1678 1.1 dholland /* Should we check the se_dev or se_path? */
1679 1.1 dholland cp = swap[nswap].se_path;
1680 1.1 dholland if (memcmp(cp, "/dev/", 5) != 0)
1681 1.1 dholland continue;
1682 1.1 dholland if (memcmp(cp + 5, disk, l) != 0)
1683 1.1 dholland continue;
1684 1.1 dholland if (!isalpha(*(unsigned char *)(cp + 5 + l)))
1685 1.1 dholland continue;
1686 1.1 dholland if (cp[5 + l + 1] != 0)
1687 1.1 dholland continue;
1688 1.1 dholland /* ok path looks like it is for this device */
1689 1.1 dholland if (!remove_swap) {
1690 1.1 dholland /* count active swap areas */
1691 1.1 dholland rval++;
1692 1.1 dholland continue;
1693 1.1 dholland }
1694 1.1 dholland if (swapctl(SWAP_OFF, cp, 0) == -1)
1695 1.1 dholland rval = -1;
1696 1.1 dholland }
1697 1.1 dholland
1698 1.1 dholland done:
1699 1.1 dholland free(swap);
1700 1.1 dholland return rval;
1701 1.1 dholland
1702 1.1 dholland bad_swap:
1703 1.1 dholland rval = -1;
1704 1.1 dholland goto done;
1705 1.1 dholland }
1706 1.1 dholland
1707 1.1 dholland #ifdef HAVE_BOOTXX_xFS
1708 1.1 dholland char *
1709 1.30 martin bootxx_name(struct install_partition_desc *install)
1710 1.1 dholland {
1711 1.1 dholland int fstype;
1712 1.1 dholland const char *bootxxname;
1713 1.1 dholland char *bootxx;
1714 1.1 dholland
1715 1.1 dholland /* check we have boot code for the root partition type */
1716 1.30 martin fstype = install->infos[0].fs_type;
1717 1.1 dholland switch (fstype) {
1718 1.1 dholland #if defined(BOOTXX_FFSV1) || defined(BOOTXX_FFSV2)
1719 1.1 dholland case FS_BSDFFS:
1720 1.30 martin if (install->infos[0].fs_version == 2) {
1721 1.1 dholland #ifdef BOOTXX_FFSV2
1722 1.1 dholland bootxxname = BOOTXX_FFSV2;
1723 1.1 dholland #else
1724 1.1 dholland bootxxname = NULL;
1725 1.1 dholland #endif
1726 1.1 dholland } else {
1727 1.1 dholland #ifdef BOOTXX_FFSV1
1728 1.1 dholland bootxxname = BOOTXX_FFSV1;
1729 1.1 dholland #else
1730 1.1 dholland bootxxname = NULL;
1731 1.1 dholland #endif
1732 1.1 dholland }
1733 1.1 dholland break;
1734 1.1 dholland #endif
1735 1.11 pgoyette #ifdef BOOTXX_LFSV2
1736 1.1 dholland case FS_BSDLFS:
1737 1.11 pgoyette bootxxname = BOOTXX_LFSV2;
1738 1.1 dholland break;
1739 1.1 dholland #endif
1740 1.1 dholland default:
1741 1.1 dholland bootxxname = NULL;
1742 1.1 dholland break;
1743 1.1 dholland }
1744 1.1 dholland
1745 1.1 dholland if (bootxxname == NULL)
1746 1.1 dholland return NULL;
1747 1.1 dholland
1748 1.1 dholland asprintf(&bootxx, "%s/%s", BOOTXXDIR, bootxxname);
1749 1.1 dholland return bootxx;
1750 1.1 dholland }
1751 1.1 dholland #endif
1752 1.2 martin
1753 1.2 martin /* from dkctl.c */
1754 1.2 martin static int
1755 1.2 martin get_dkwedges_sort(const void *a, const void *b)
1756 1.2 martin {
1757 1.2 martin const struct dkwedge_info *dkwa = a, *dkwb = b;
1758 1.2 martin const daddr_t oa = dkwa->dkw_offset, ob = dkwb->dkw_offset;
1759 1.2 martin return (oa < ob) ? -1 : (oa > ob) ? 1 : 0;
1760 1.2 martin }
1761 1.2 martin
1762 1.2 martin int
1763 1.2 martin get_dkwedges(struct dkwedge_info **dkw, const char *diskdev)
1764 1.2 martin {
1765 1.2 martin struct dkwedge_list dkwl;
1766 1.2 martin
1767 1.2 martin *dkw = NULL;
1768 1.35 christos if (!get_wedge_list(diskdev, &dkwl))
1769 1.2 martin return -1;
1770 1.2 martin
1771 1.35 christos if (dkwl.dkwl_nwedges > 0 && *dkw != NULL) {
1772 1.35 christos qsort(*dkw, dkwl.dkwl_nwedges, sizeof(**dkw),
1773 1.35 christos get_dkwedges_sort);
1774 1.2 martin }
1775 1.2 martin
1776 1.2 martin return dkwl.dkwl_nwedges;
1777 1.2 martin }
1778