source: MondoRescue/branches/2.05/mondo/mondo/mondorestore/mondo-prep.c@ 128

Last change on this file since 128 was 128, checked in by bcornec, 18 years ago

indent on all the C code

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[1]1/***************************************************************************
2mondo-prep.c - description
3-----------------
4
5begin: Fri Apr 19 16:40:35 EDT 2002
6copyright : (C) 2002 Mondo Hugo Rabson
7email : Hugo Rabson <hugorabson@msn.com>
8edited by : by Stan Benoit 4/2002
9email : troff@nakedsoul.org
[71]10cvsid : $Id: mondo-prep.c 128 2005-11-19 01:27:41Z bcornec $
[1]11***************************************************************************/
12
13/***************************************************************************
14 * *
15 * This program is free software; you can redistribute it and/or modify *
16 * it under the terms of the GNU General Public License as published by *
17 * the Free Software Foundation; either version 2 of the License, or *
18 * (at your option) any later version. *
19 * *
20 ***************************************************************************/
21
22/* mondo-prep.c Hugo Rabson
23
24
25
2607/20
27- when starting RAID, don't do it twice :)
28- moved Joshua's new get_phys_size_of_drive() code
29 from resize_drive... into get_phys_size_of_drive()
30
3106/29
32- make sure software RAID devices are formatted IF user says they're to be
33- drivelist is struct now, not char[][]
34
3506/26
36- drop make_relevant_partition_bootable(); do it yourself in C (mostly)
37- offer to reboot if partition table is locked up by the kernel
38
3906/22
40- be sure not to resize non-NTFS images when restoring
41- set non-NTFS images' partition types properly
42
4306/19
44- shut down all LVMs and VGs before prepping
45
4605/07
47- usage of parted2fdisk instead of fdisk alone (ia32/ia64 compatibility)
48 BCO
49
5003/31
51- rewrote partitioning and formatting code to call fdisk once per disk
52
5310/21/2003
54- suspend/resume Newt gui before/after calling do_my_funky_lvm_stuff()
55
5610/20
57- rewrote format_everything() - what a mess it was.
58 It now does things in three phases:-
59 - formats software RAID devices (/dev/md0, etc.)
60 - formats and configures LVM devices
61 - formats regular partitions (/dev/hda1, /dev/sdb2, etc.)
62 and any LVMs recently prepped
63
6410/07
65- use strstr(format, "raid") instead of strcmp(format,"raid") to determin
66 if partition is a RAID component
67
6809/23
69- better comments
70
7109/18
72- better logging of RAID activity
73
7405/05
75- added Joshua Oreman's FreeBSD patches
76
7704/30
78- added textonly mode
79
8004/24
81- added lots of assert()'s and log_OS_error()'s
82
8304/21
84- format_everything() --- don't let bar go too far
85- mkfs -c to check for bad blocks when formatting
86
8704/04
88- misc clean-up (Tom Mortell)
89
9001/15/2003
91- added code for LVM and SW Raid (Brian Borgeson)
92
9312/10/2002
94- line 1238: friendlier output
95
9611/20
97- when wiping a given device in preparation for partitioning + formatting
98 it, don't wipe the MBR; just the partition table. That allows for
99 stupid-ass Compaq users who like to play with their MBR's.
100- disable mountlist.txt-->mountlist.txt.pre-resize copying (superfluous)
101
10209/09
103- run_program_and_log_output() now takes boolean operator to specify
104 whether it will log its activities in the event of _success_
105
10607/01 - 07/31
107- added hooks to libmondo
108- RAID enhancements (Philippe de Muyter)
109
11001/01 - 03/31
111- partition_device() will refuse to partition /dev/mdX now (cos it's a
112 virtual drive); however, it will return 0 (i.e. not an error)
113- make_list_of_drives() will exclude /dev/md* from list
114- mkreiserfs -ff instead of -q (Andy Glass)
115- don't resize drive if drive not found (or if its size cannot be det'd)
116- when generating list of drives from mountlist, skip the 'p' at the end
117 of drive name if /dev/ida/ or /dev/cciss/; just do it (Michael Eisenberg)
118- don't specify journal size when formatting ext3
119 (used to have -Jsize=10 in the call to mkfs)
120- handles files >2GB in size
121- format interactively, if Interactive Mode
122- removed reference to g_tape_size
123- when executing /tmp/i-want-my-lvm, only record the error# if the command
124 was _not_ an 'insmod' command
125- pass partition size to fdisk in Kilobytes now, not Megabytes
126- log fdisk's output to /tmp/mondo-restore.log if it fails
127- don't try to format partitions of type 'image'
128- don't type to set types of 'image' partitions
129- if format code is 1 or 2 chars then assume it is a hex string
130- took out all '/ /' comments
131- don't extrapolate/add partition from RAID dev to mountlist if it's already
132 present in mountlist
133- less repetitive logging in the event of vacuum-packing of last part'n
134- no extrapolation at all: RAID partitions should be listed in mountlist
135 already, thanks to either Mindi v0.5x or the mountlist editor itself
136- no longer say, 'and logging to...' when setting a partition's type
137- don't run mkfs on RAID partitions (/dev/hd*, /dev/sd*); just set type
138- the setting of a partition's type now takes place in a separate subroutine
139 from the subroutine that actually creates the partition
140- no need to set type if 83: 83 is the default (under fdisk)
141- turned on '-Wall'; cleaned up some cruft
142- if vacuum-packing partition (i.e. size=0MB --> max) then say, "(maximum)"
143 not, "(0 MB)"
144
14511/22/2001
146- preliminary code review
147- created on Nov 22nd, 2001
148*/
149
150/**
151 * @file
152 * Functions for prepping hard drives: partitioning, formatting, etc.
153 */
154
155
156#include "../common/my-stuff.h"
157#include "../common/mondostructures.h"
158#include "mondoprep.h"
159#include "../common/libmondo.h"
160#include "mondo-rstr-tools-EXT.h"
161#include <sys/ioctl.h>
162#include <linux/hdreg.h>
163#include <math.h>
164
165
166#define FDISK_LOG "/tmp/fdisk.log"
167
168#ifdef __FreeBSD__
169#define DKTYPENAMES
170#define FSTYPENAMES
171#include <sys/disklabel.h>
172#include <sys/disk.h>
173#include <err.h>
174#include <libgen.h>
175#define OSSWAP(x,y) y
176#else
177#define OSSWAP(x,y) x
178#endif
179
180#define ARCHIVES_PATH MNT_CDROM"/archives"
181#define MONDO_WAS_HERE "MONDOWOZEREMONDOWOZEREMONDOWOZEREhahahaMOJOJOJO"
182
[71]183//static char cvsid[] = "$Id: mondo-prep.c 128 2005-11-19 01:27:41Z bcornec $";
[1]184
185extern char *g_mountlist_fname;
186extern long g_current_progress, g_maximum_progress;
187
188extern bool g_text_mode;
189
[128]190extern void pause_for_N_seconds(int, char *);
[1]191
192
[128]193FILE *g_fprep = NULL;
[1]194
195
196
[128]197int g_partition_table_locked_up = 0;
[1]198
199
200
201
202
203
204
205
206
207
208void wipe_MBRs_and_reboot_if_necessary(struct mountlist_itself *mountlist)
209{
[128]210 char *command;
211 char *tmp;
212 int lino;
213 int i;
214 FILE *fout;
215 char *buf;
216 const int blocksize = 512;
217 struct list_of_disks *drivelist = NULL;
[1]218// If LVMs are present and a zero-and-reboot wasn't recently undertaken
219// then zero & insist on reboot.
[128]220 malloc_string(command);
221 malloc_string(tmp);
222 buf = malloc(blocksize);
223 if (does_file_exist("/tmp/i-want-my-lvm")) // FIXME - cheating :)
224 {
225 drivelist = malloc(sizeof(struct list_of_disks));
226 make_list_of_drives_in_mountlist(mountlist, drivelist);
227 for (lino = 0; lino < drivelist->entries; lino++) {
228 sprintf(command,
229 "dd if=%s bs=512 count=1 2> /dev/null | grep \"%s\"",
230 drivelist->el[lino].device, MONDO_WAS_HERE);
231 if (!run_program_and_log_output(command, 1)) {
232 log_msg(1, "Found MONDO_WAS_HERE marker on drive#%d (%s)",
233 lino, drivelist->el[lino].device);
234 break;
235 }
236 }
237
238 if (lino == drivelist->entries) {
[1]239// zero & reboot
[128]240 log_to_screen
241 ("I am sorry for the inconvenience but I must ask you to reboot.");
242 log_to_screen
243 ("I need to reset the Master Boot Record; in order to be");
244 log_to_screen
245 ("sure the kernel notices, I must reboot after doing it.");
246 log_to_screen("Please hit 'Enter' to reboot.");
247 for (lino = 0; lino < drivelist->entries; lino++) {
248 for (i = 0; i < blocksize; i++) {
249 buf[i] = 0;
250 }
251 sprintf(buf, "%s\n", MONDO_WAS_HERE);
252 fout = fopen(drivelist->el[lino].device, "w+");
253 if (!fout) {
254 log_msg(1, "Unable to open+wipe %s",
255 drivelist->el[lino].device);
256 } else {
257 if (1 != fwrite(buf, blocksize, 1, fout)) {
258 log_msg(1, "Failed to wipe %s",
259 drivelist->el[lino].device);
260 } else {
261 log_msg(1, "Successfully wiped %s",
262 drivelist->el[lino].device);
263 }
264 fclose(fout);
265 }
266 }
267 system("sync");
268 system("sync");
269 system("sync");
270 popup_and_OK
271 ("I must now reboot. Please leave the boot media in the drive and repeat your actions - e.g. type 'nuke' - and it should work fine.");
272 system("reboot");
273 }
274 }
[1]275// Still here? Cool!
[128]276 paranoid_free(command);
277 paranoid_free(tmp);
278 log_msg(1, "Cool. I didn't have to wipe anything.");
[1]279}
280
281
282
283
284
285
[128]286int fput_string_one_char_at_a_time(FILE * fout, char *str)
[1]287{
[128]288 int i, j;
289 FILE *fq;
[1]290
[128]291 if (ferror(fout)) {
292 return (-1);
293 }
294 log_msg(5, "Writing string '%s', one char at a time", str);
295 j = strlen(str);
296 for (i = 0; i < j; i++) {
297 log_msg(6, "Writing %d ('%c')", str[i], str[i]);
298 if ((fq = fopen(FDISK_LOG, "a+"))) {
299 fputc(str[i], fq);
300 fclose(fq);
301 }
302 fputc(str[i], fout);
303 fflush(fout);
304 usleep(1000L * 100L);
305 if (str[i] < 32) {
306 usleep(1000L * 10L);
307 }
308 }
309 log_msg(5, "Returning");
310
311 return (i);
[1]312}
313
314
315
316
317
318
319
320
321
322
323/**
324 * @addtogroup prepGroup
325 * @{
326 */
327/**
328 * Execute the commands in /tmp/i-want-my-lvm.
329 * These should probably be commands to set up LVM.
330 * @return The number of errors encountered (0 for success).
331 */
332
[128]333
334int do_my_funky_lvm_stuff(bool just_erase_existing_volumes,
335 bool vacuum_pack)
[1]336{
337 /** buffers **********************************************/
338 char *tmp;
339 char *incoming;
340 char *command;
341 char *lvscan_sz;
342 char *lvremove_sz;
343 char *pvscan_sz;
344 char *vgscan_sz;
345 char *vgcreate_sz;
346 char *vgchange_sz;
347 char *vgremove_sz;
[128]348// char *do_this_last;
[1]349
350 /** char **************************************************/
351 char *p;
352 char *q;
353
354 /** int ***************************************************/
355 int retval = 0;
356 int res = 0;
357 int i;
358 int lvmversion = 1;
359 long extents;
360 fpos_t orig_pos;
[128]361
[1]362 /** pointers **********************************************/
363 FILE *fin;
364
365 /** end *****************************************************/
366
367#ifdef __FreeBSD__
368 return (0);
369#endif
370
371 if (!(fin = fopen("/tmp/i-want-my-lvm", "r"))) {
372 log_OS_error("/tmp/i-want-my-lvm");
373 return (1);
374 }
375
376 malloc_string(tmp);
377 malloc_string(incoming);
378 malloc_string(lvscan_sz);
379 malloc_string(lvremove_sz);
380 malloc_string(vgscan_sz);
381 malloc_string(pvscan_sz);
382 malloc_string(vgcreate_sz);
383 malloc_string(vgchange_sz);
384 malloc_string(vgremove_sz);
[128]385// malloc_string(do_this_last); // postpone lvcreate call if necessary
[1]386 command = malloc(512);
387
[128]388// do_this_last[0] = '\0';
389 iamhere("STARTING");
[1]390 log_msg(1, "OK, opened i-want-my-lvm. Shutting down LVM volumes...");
[128]391 if (find_home_of_exe("lvm")) // found it :) cool
392 {
393 strcpy(lvscan_sz, "lvm lvscan");
394 strcpy(lvremove_sz, "lvm lvremove");
395 strcpy(vgscan_sz, "lvm vgscan");
396 strcpy(pvscan_sz, "lvm pvscan");
397 strcpy(vgcreate_sz, "lvm vgcreate");
398 strcpy(vgchange_sz, "lvm vgchange");
399 strcpy(vgremove_sz, "lvm vgremove");
400 } else {
401 strcpy(lvscan_sz, "lvscan");
402 strcpy(lvremove_sz, "lvremove");
403 strcpy(vgscan_sz, "vgscan");
404 strcpy(pvscan_sz, "pvscan");
405 strcpy(vgcreate_sz, "vgcreate");
406 strcpy(vgchange_sz, "vgchange");
407 strcpy(vgremove_sz, "vgremove");
408 }
409 sprintf(command,
410 "for i in `%s | cut -d\"'\" -f2 | sort -r` ; do echo \"Shutting down lv $i\" >> "
411 MONDO_LOGFILE "; %s -f $i; done", lvscan_sz, lvremove_sz);
[1]412 run_program_and_log_output(command, 5);
413 sleep(1);
[128]414 sprintf(command,
415 "for i in `%s | grep -i lvm | cut -d'\"' -f2` ; do %s -a n $i ; %s $i; echo \"Shutting down vg $i\" >> "
416 MONDO_LOGFILE "; done; %s -a n", vgscan_sz, vgchange_sz,
417 vgremove_sz, vgremove_sz);
[1]418 run_program_and_log_output(command, 5);
419 if (just_erase_existing_volumes) {
420 paranoid_fclose(fin);
421 log_msg(1, "Closed i-want-my-lvm. Finished erasing LVMs.");
[128]422 retval = 0;
[1]423 goto end_of_i_want_my_lvm;
424 }
425
426 log_msg(1, "OK, rewound i-want-my-lvm. Doing funky stuff...");
427 rewind(fin);
428 for (fgets(incoming, 512, fin); !feof(fin); fgets(incoming, 512, fin)) {
429 fgetpos(fin, &orig_pos);
430 if (incoming[0] != '#') {
431 continue;
432 }
[128]433 if (res && strstr(command, "create") && vacuum_pack) {
434 sleep(2);
435 system("sync");
436 system("sync");
437 system("sync");
438 }
439 if ((p = strstr(incoming, "vgcreate"))) {
[1]440// include next line(s) if they end in /dev (cos we've got a broken i-want-my-lvm)
[128]441 for (fgets(tmp, 512, fin); !feof(fin); fgets(tmp, 512, fin)) {
442 if (tmp[0] == '#') {
443 fsetpos(fin, &orig_pos);
444 break;
445 } else {
446 fgetpos(fin, &orig_pos);
447 strcat(incoming, tmp);
448 }
[1]449 }
[128]450 for (q = incoming; *q != '\0'; q++) {
451 if (*q < 32) {
452 *q = ' ';
453 }
454 }
455 strcpy(tmp, p + strlen("vgcreate") + 1);
456 for (q = tmp; *q > 32; q++);
457 *q = '\0';
458 log_msg(1, "Deleting old entries at /dev/%s", tmp);
459// sprintf(command, "%s -f %s", vgremove_sz, tmp);
460// run_program_and_log_output(command, 1);
461 sprintf(command, "rm -Rf /dev/%s", tmp);
462 run_program_and_log_output(command, 1);
463 run_program_and_log_output(vgscan_sz, 1);
464 run_program_and_log_output(pvscan_sz, 1);
465 log_msg(3,
466 "After working around potentially broken i-want-my-lvm, incoming[] is now '%s'",
467 incoming);
468 }
[1]469 for (p = incoming + 1; *p == ' '; p++);
470 strcpy(command, p);
471 for (p = command; *p != '\0'; p++);
472 for (; *(p - 1) < 32; p--);
473 *p = '\0';
474 res = run_program_and_log_output(command, 5);
[128]475 if (res > 0 && (p = strstr(command, "lvm "))) {
476 *p = *(p + 1) = *(p + 2) = ' ';
477 res = run_program_and_log_output(command, 5);
478 }
[1]479 log_msg(0, "%s --> %d", command, res);
[128]480 if (res > 0) {
481 res = 1;
[1]482 }
[128]483 if (res && strstr(command, "lvcreate") && vacuum_pack) {
484 res = 0;
485 if (strstr(command, "lvm lvcreate"))
486 lvmversion = 2;
487 log_it("%s... so I'll get creative.", tmp);
488 if (lvmversion == 2) {
489 strcpy(tmp, call_program_and_get_last_line_of_output
490 ("tail -n5 /var/log/mondo-archive.log | grep Insufficient | tail -n1"));
491 } else {
492 strcpy(tmp, call_program_and_get_last_line_of_output
493 ("tail -n5 /var/log/mondo-archive.log | grep lvcreate | tail -n1"));
494 }
495 for (p = tmp; *p != '\0' && !isdigit(*p); p++);
496 extents = atol(p);
497 log_msg(5, "p='%s' --> extents=%ld", p, extents);
498 p = strstr(command, "-L");
499 if (!p) {
500 log_msg(0, "Fiddlesticks. '%s' returned %d", command, res);
501 } else {
502 if (lvmversion == 2) {
503 *p++ = '-';
504 *p++ = 'l';
505 *p++ = ' ';
506 for (q = p; *q != ' '; q++) {
507 *q = ' ';
508 }
509 sprintf(p, "%ld", extents);
510 i = strlen(p);
511 *(p + i) = ' ';
512 } else {
513 p++;
514 p++;
515 p++;
516 for (q = p; *q != ' '; q++) {
517 *(q - 1) = ' ';
518 }
519 sprintf(p, "%ld%c", extents, 'm');
520 i = strlen(p);
521 *(p + i) = ' ';
522 }
523 log_msg(5, "Retrying with '%s'", command);
524 res = run_program_and_log_output(command, 5);
525 if (res > 0) {
526 res = 1;
527 }
528 if (g_fprep) {
529 fprintf(g_fprep, "%s\n", command);
530 }
531 log_msg(0, "%s --> %d", command, res);
532 if (!res) {
533 log_msg(5, "YAY! This time, it succeeded.");
534 }
535 }
536 }
537 if (strstr(command, "vgcreate")) {
538 log_msg(0, "In case you're interested...");
539 run_program_and_log_output(vgscan_sz, 1);
540 run_program_and_log_output(pvscan_sz, 1);
541 }
542 if (res != 0 && !strstr(command, "insmod")) {
543 retval++;
544 }
[1]545 sprintf(tmp, "echo \"%s\" >> /tmp/out.sh", command);
546 system(tmp);
547 sleep(1);
548 }
549 paranoid_fclose(fin);
550 log_msg(1, "Closed i-want-my-lvm. Finished doing funky stuff.");
[128]551 end_of_i_want_my_lvm:
[1]552 paranoid_free(tmp);
553 paranoid_free(incoming);
554 paranoid_free(command);
555 paranoid_free(lvscan_sz);
556 paranoid_free(lvremove_sz);
557 paranoid_free(vgscan_sz);
558 paranoid_free(pvscan_sz);
559 paranoid_free(vgcreate_sz);
560 paranoid_free(vgchange_sz);
561 paranoid_free(vgremove_sz);
[128]562// paranoid_free(do_this_last);
563 system("sync");
564 system("sync");
565 system("sync");
[1]566 sleep(1);
[128]567 iamhere("ENDING");
568 if (retval > 2) {
569 log_msg(1, "%d errors. I'm reporting this.", retval);
570 return (retval);
571 } else {
572 log_msg(1, "Not many errors. Returning 0.");
573 return (0);
574 }
[1]575}
576
577
578/**
579 * Add RAID partitions while copying @p old_mountlist to @p new_mountlist.
580 * We go through @p old_mountlist and check if any RAID device (/dev/md? on Linux)
581 * is in it; if it is, then we put the disks contained within that RAID device
582 * into the mountlist as well.
583 * @param old_mountlist The mountlist to read.
584 * @param new_mountlist The mountlist to write, with the RAID partitions added.
585 * @return 0 for success, nonzero for failure.
586 */
[128]587int extrapolate_mountlist_to_include_raid_partitions(struct mountlist_itself
588 *new_mountlist, struct mountlist_itself
589 *old_mountlist)
[1]590{
591 /** pointers *********************************************************/
592 FILE *fin;
593
594 /** int **************************************************************/
595 int lino;
596 int j;
597
598 /** buffers **********************************************************/
599 char *incoming;
600 char *tmp;
601
602 /** pointers *********************************************************/
603 char *p;
604
605 /** init *************************************************************/
606 new_mountlist->entries = 0;
607
608 /** end **************************************************************/
609
610 malloc_string(incoming);
611 malloc_string(tmp);
612 assert(new_mountlist != NULL);
613 assert(old_mountlist != NULL);
614
615#ifdef __FreeBSD__
[128]616 log_to_screen
617 ("I don't know how to extrapolate the mountlist on FreeBSD. Sorry.");
618 return (1);
[1]619#endif
620
621 for (lino = 0; lino < old_mountlist->entries; lino++) {
622 if (strstr(old_mountlist->el[lino].device, RAID_DEVICE_STUB)) // raid
623 {
624 if (!does_file_exist("/etc/raidtab")) {
[128]625 log_to_screen
626 ("Cannot find /etc/raidtab - cannot extrapolate the fdisk entries");
[1]627 finish(1);
628 }
629 if (!(fin = fopen("/etc/raidtab", "r"))) {
630 log_OS_error("Cannot open /etc/raidtab");
631 finish(1);
632 }
633 for (fgets(incoming, MAX_STR_LEN - 1, fin); !feof(fin)
[128]634 && !strstr(incoming, old_mountlist->el[lino].device);
635 fgets(incoming, MAX_STR_LEN - 1, fin));
[1]636 if (!feof(fin)) {
[128]637 sprintf(tmp, "Investigating %s",
638 old_mountlist->el[lino].device);
[1]639 log_it(tmp);
640 for (fgets(incoming, MAX_STR_LEN - 1, fin); !feof(fin)
[128]641 && !strstr(incoming, "raiddev");
642 fgets(incoming, MAX_STR_LEN - 1, fin)) {
[1]643 if (strstr(incoming, OSSWAP("device", "drive"))
[128]644 && !strchr(incoming, '#')) {
645 for (p = incoming + strlen(incoming);
646 *(p - 1) <= 32; p--);
[1]647 *p = '\0';
648 for (p--; p > incoming && *(p - 1) > 32; p--);
649 sprintf(tmp, "Extrapolating %s", p);
650 log_it(tmp);
[128]651 for (j = 0;
652 j < new_mountlist->entries
653 && strcmp(new_mountlist->el[j].device, p);
654 j++);
[1]655 if (j >= new_mountlist->entries) {
[128]656 strcpy(new_mountlist->
657 el[new_mountlist->entries].device, p);
658 strcpy(new_mountlist->
659 el[new_mountlist->entries].mountpoint,
660 "raid");
661 strcpy(new_mountlist->
662 el[new_mountlist->entries].format,
663 "raid");
664 new_mountlist->el[new_mountlist->entries].
665 size = old_mountlist->el[lino].size;
[1]666 new_mountlist->entries++;
667 } else {
[128]668 sprintf(tmp,
669 "Not adding %s to mountlist: it's already there",
670 p);
[1]671 log_it(tmp);
672 }
673 }
674 }
675 }
676 paranoid_fclose(fin);
677 } else {
[128]678 strcpy(new_mountlist->el[new_mountlist->entries].device,
679 old_mountlist->el[lino].device);
680 strcpy(new_mountlist->el[new_mountlist->entries].mountpoint,
681 old_mountlist->el[lino].mountpoint);
682 strcpy(new_mountlist->el[new_mountlist->entries].format,
683 old_mountlist->el[lino].format);
684 new_mountlist->el[new_mountlist->entries].size =
685 old_mountlist->el[lino].size;
[1]686 new_mountlist->entries++;
687 }
688 }
689 paranoid_free(incoming);
690 paranoid_free(tmp);
691
692 return (0);
693}
694
695
696/**
697 * Format @p device as a @p format filesystem.
698 * This will use the format command returned by which_format_command_do_i_need().
699 * If @p device is an LVM PV, it will not be formatted, and LVM will be started
700 * (if not already done). If it's an imagedev, software RAID component, or
701 * (under BSD) swap partition, no format will be done.
702 * @param device The device to format.
703 * @param format The filesystem type to format it as.
704 * @return 0 for success, nonzero for failure.
705 */
706int format_device(char *device, char *format)
707{
708 /** int **************************************************************/
709 int res;
710 int retval = 0;
711#ifdef __FreeBSD__
712 static bool vinum_started_yet = FALSE;
713#endif
714
715 /** buffers ***********************************************************/
716 char *program;
717 char *tmp;
718
719 /** end ****************************************************************/
720
721 malloc_string(program);
722 malloc_string(tmp);
723 assert_string_is_neither_NULL_nor_zerolength(device);
724 assert(format != NULL);
725
726 if (strstr(format, "raid")) { // do not form RAID disks; do it to /dev/md* instead
727 sprintf(tmp, "Not formatting %s (it is a RAID disk)", device);
728 log_it(tmp);
[128]729 paranoid_free(program);
730 paranoid_free(tmp);
[1]731 return (0);
732 }
733#ifdef __FreeBSD__
734 if (strcmp(format, "swap") == 0) {
735 log_it("Not formatting %s - it's swap", device);
[128]736 paranoid_free(program);
737 paranoid_free(tmp);
[1]738 return (0);
739 }
740#endif
741 if (strlen(format) <= 2) {
742 sprintf(tmp,
[128]743 "%s has a really small format type ('%s') - this is probably a hexadecimal string, which would suggest the partition is an image --- I shouldn't format it",
744 device, format);
[1]745 log_it(tmp);
[128]746 paranoid_free(program);
747 paranoid_free(tmp);
[1]748 return (0);
749 }
750 if (is_this_device_mounted(device)) {
751 sprintf(tmp, "%s is mounted - cannot format it ", device);
752 log_to_screen(tmp);
[128]753 paranoid_free(program);
754 paranoid_free(tmp);
[1]755 return (1);
756 }
757 if (strstr(device, RAID_DEVICE_STUB)) {
758 newtSuspend();
759#ifdef __FreeBSD__
760 if (!vinum_started_yet) {
761 if (!does_file_exist("/tmp/raidconf.txt")) {
[128]762 log_to_screen
763 ("/tmp/raidconf.txt does not exist. I therefore cannot start Vinum.");
[1]764 } else {
765 int res;
[128]766 res =
767 run_program_and_log_output
768 ("vinum create /tmp/raidconf.txt", TRUE);
[1]769 if (res) {
770 log_to_screen
[128]771 ("`vinum create /tmp/raidconf.txt' returned errors. Please fix them and re-run mondorestore.");
[1]772 finish(1);
773 }
774 vinum_started_yet = TRUE;
775 }
776 }
777
778 if (vinum_started_yet) {
779 FILE *fin;
780 char line[MAX_STR_LEN];
[128]781 sprintf(tmp,
782 "Initializing Vinum device %s (this may take a *long* time)",
783 device);
[1]784 log_to_screen(tmp);
785 /* format raid partition */
786 // sprintf (program, "mkraid --really-force %s", device); --- disabled -- BB, 02/12/2003
787 sprintf(program,
[128]788 "for plex in `vinum lv -r %s | grep '^P' | tr '\t' ' ' | tr -s ' ' | cut -d' ' -f2`; do echo $plex; done > /tmp/plexes",
789 basename(device));
[1]790 system(program);
[128]791 if (g_fprep) {
792 fprintf(g_fprep, "%s\n", program);
793 }
[1]794 fin = fopen("/tmp/plexes", "r");
795 while (fgets(line, MAX_STR_LEN - 1, fin)) {
796 if (strchr(line, '\n'))
797 *(strchr(line, '\n')) = '\0'; // get rid of the \n on the end
798
799 sprintf(tmp, "Initializing plex: %s", line);
800 open_evalcall_form(tmp);
801 sprintf(tmp, "vinum init %s", line);
802 system(tmp);
803 while (1) {
804 sprintf(tmp,
[128]805 "vinum lp -r %s | grep '^S' | head -1 | tr -s ' ' | cut -d: -f2 | cut -f1 | sed 's/^ //' | sed 's/I //' | sed 's/%%//'",
806 line);
[1]807 FILE *pin = popen(tmp, "r");
808 char status[MAX_STR_LEN / 4];
809 fgets(status, MAX_STR_LEN / 4 - 1, pin);
810 pclose(pin);
811
812 if (!strcmp(status, "up")) {
813 break; /* it's done */
814 }
815 update_evalcall_form(atoi(status));
816 usleep(250000);
817 }
818 close_evalcall_form();
819 }
820 fclose(fin);
821 unlink("/tmp/plexes");
822 /* retval+=res; */
823 }
824#else
825 sprintf(tmp, "Initializing RAID device %s", device);
826 log_to_screen(tmp);
827
828// Shouldn't be necessary.
829 log_to_screen("Stopping %s", device);
830 stop_raid_device(device);
[128]831 system("sync");
832 sleep(1);
833 if (g_fprep) {
834 fprintf(g_fprep, "%s\n", program);
835 }
[1]836
837 log_msg(1, "Making %s", device);
838 sprintf(program, "mkraid --really-force %s", device);
839 res = run_program_and_log_output(program, 1);
840 log_msg(1, "%s returned %d", program, res);
[128]841 system("sync");
842 sleep(3);
[1]843 start_raid_device(device);
[128]844 if (g_fprep) {
845 fprintf(g_fprep, "%s\n", program);
846 }
847 system("sync");
848 sleep(2);
[1]849
[128]850// log_to_screen("Starting %s", device);
851// sprintf(program, "raidstart %s", device);
852// res = run_program_and_log_output(program, 1);
853// log_msg(1, "%s returned %d", program, res);
854// system("sync"); sleep(1);
855 if (g_fprep) {
856 fprintf(g_fprep, "%s\n", program);
857 }
[1]858#endif
[128]859 system("sync");
860 sleep(1);
[1]861 newtResume();
862 }
863//#ifndef __FreeBSD__
864//#endif
865
[128]866 if (!strcmp(format, "lvm")) {
867 log_msg(1, "Don't format %s - it's part of an lvm volume", device);
868 paranoid_free(program);
869 paranoid_free(tmp);
870 return (0);
871 }
[1]872 res = which_format_command_do_i_need(format, program);
873 sprintf(tmp, "%s %s", program, device);
874 if (strstr(program, "kludge")) {
875 strcat(tmp, " /");
876 }
877 sprintf(program, "sh -c 'echo -en \"y\\ny\\ny\\n\" | %s'", tmp);
878 sprintf(tmp, "Formatting %s as %s", device, format);
879 update_progress_form(tmp);
880 res = run_program_and_log_output(program, FALSE);
881 if (res && strstr(program, "kludge")) {
[128]882 sprintf(tmp, "Kludge failed; using regular mkfs.%s to format %s",
883 format, device);
[1]884#ifdef __FreeBSD__
885 sprintf(program, "newfs_msdos -F 32 %s", device);
886#else
[85]887#ifdef __IA64__
888 /* For EFI partitions take fat16
889 * as we want to make small ones */
890 sprintf(program, "mkfs -t %s -F 16 %s", format, device);
891#else
[1]892 sprintf(program, "mkfs -t %s -F 32 %s", format, device);
893#endif
[85]894#endif
[1]895 res = run_program_and_log_output(program, FALSE);
[128]896 if (g_fprep) {
897 fprintf(g_fprep, "%s\n", program);
898 }
[1]899 }
900 retval += res;
901 if (retval) {
902 strcat(tmp, "...failed");
903 } else {
904 strcat(tmp, "...OK");
905 }
906
907 log_to_screen(tmp);
[128]908 paranoid_free(program);
909 paranoid_free(tmp);
910 system("sync");
911 sleep(1);
[1]912 return (retval);
913}
914
915
916
917
918
919/**
920 * Format all drives (except those excluded by format_device()) in @p mountlist.
921 * @param mountlist The mountlist containing partitions to be formatted.
922 * @param interactively If TRUE, then prompt the user before each partition.
923 * @return The number of errors encountered (0 for success).
924 */
[128]925int format_everything(struct mountlist_itself *mountlist,
926 bool interactively)
[1]927{
928 /** int **************************************************************/
929 int retval = 0;
930 int lino;
931 int res;
[128]932// int i;
933// struct list_of_disks *drivelist;
[1]934
935 /** long *************************************************************/
936 long progress_step;
937
938 /** bools ************************************************************/
939 bool do_it;
940
941 /** buffers **********************************************************/
942 char *tmp;
943
944 /** pointers *********************************************************/
945 struct mountlist_line *me; // mountlist entry
946 /** end **************************************************************/
947
[128]948 assert(mountlist != NULL);
[1]949 malloc_string(tmp);
[128]950 sprintf(tmp, "format_everything (mountlist, interactively = %s",
951 (interactively) ? "true" : "false");
[1]952 log_it(tmp);
953 mvaddstr_and_log_it(g_currentY, 0, "Formatting partitions ");
[128]954 open_progress_form("Formatting partitions",
955 "I am now formatting your hard disk partitions.",
956 "This may take up to five minutes.", "",
957 mountlist->entries + 1);
[1]958
[128]959 progress_step =
960 (mountlist->entries >
961 0) ? g_maximum_progress / mountlist->entries : 1;
[1]962// start soft-raids now (because LVM might depend on them)
963// ...and for simplicity's sake, let's format them at the same time :)
964 log_msg(1, "Stopping all RAID devices");
965 stop_all_raid_devices(mountlist);
[128]966 system("sync");
967 system("sync");
968 system("sync");
[1]969 sleep(2);
[128]970 log_msg(1, "Prepare soft-RAIDs"); // prep and format too
[1]971 for (lino = 0; lino < mountlist->entries; lino++) {
972 me = &mountlist->el[lino]; // the current mountlist entry
973 log_msg(2, "Examining %s", me->device);
974 if (!strncmp(me->device, "/dev/md", 7)) {
975 if (interactively) {
976 // ask user if we should format the current device
[128]977 sprintf(tmp, "Shall I format %s (%s) ?", me->device,
978 me->mountpoint);
[1]979 do_it = ask_me_yes_or_no(tmp);
980 } else {
981 do_it = TRUE;
982 }
983 if (do_it) {
[128]984 // NB: format_device() also stops/starts RAID device if necessary
[1]985 retval += format_device(me->device, me->format);
986 }
987 g_current_progress += progress_step;
988 }
989 }
[128]990 system("sync");
991 system("sync");
992 system("sync");
[1]993 sleep(2);
994// This last step is probably necessary
[128]995// log_to_screen("Re-starting software RAIDs...");
996// start_all_raid_devices(mountlist);
997// system("sync"); system("sync"); system("sync");
998// sleep(5);
[1]999// do LVMs now
1000 log_msg(1, "Creating LVMs");
1001 if (does_file_exist("/tmp/i-want-my-lvm")) {
1002 wait_until_software_raids_are_prepped("/proc/mdstat", 10);
1003 log_to_screen("Configuring LVM");
[128]1004 if (!g_text_mode) {
1005 newtSuspend();
1006 }
[1]1007/*
1008 for(i=0; i<3; i++)
1009 {
1010 res = do_my_funky_lvm_stuff(FALSE, FALSE);
1011 if (!res) { break; }
1012 sleep(3);
1013 res = do_my_funky_lvm_stuff(TRUE, FALSE);
1014 sleep(3);
1015 }
1016 if (res) {
1017 log_msg(1, "Vacuum-packing...");
1018*/
[128]1019 res = do_my_funky_lvm_stuff(FALSE, TRUE);
[1]1020/*
1021 }
1022*/
[128]1023 if (!g_text_mode) {
1024 newtResume();
1025 }
1026 if (!res) {
1027 log_to_screen("LVM initialized OK");
1028 } else {
1029 log_to_screen("Failed to initialize LVM");
1030 }
[1]1031 // retval += res;
1032 if (res) {
[128]1033 retval++;
[1]1034 }
[128]1035 sleep(3);
[1]1036 }
1037// do regulars at last
[128]1038 sleep(2); // woo!
1039 log_msg(1, "Formatting regulars");
[1]1040 for (lino = 0; lino < mountlist->entries; lino++) {
1041 me = &mountlist->el[lino]; // the current mountlist entry
1042 if (!strcmp(me->mountpoint, "image")) {
1043 sprintf(tmp, "Not formatting %s - it's an image", me->device);
1044 log_it(tmp);
1045 } else if (!strcmp(me->format, "raid")) {
[128]1046 sprintf(tmp, "Not formatting %s - it's a raid-let",
1047 me->device);
[1]1048 log_it(tmp);
1049 continue;
1050 } else if (!strcmp(me->format, "lvm")) {
1051 sprintf(tmp, "Not formatting %s - it's an LVM", me->device);
1052 log_it(tmp);
1053 continue;
1054 } else if (!strncmp(me->device, "/dev/md", 7)) {
[128]1055 sprintf(tmp, "Already formatted %s - it's a soft-RAID dev",
1056 me->device);
[1]1057 log_it(tmp);
1058 continue;
1059 } else if (!does_file_exist(me->device)
[128]1060 && strncmp(me->device, "/dev/hd", 7)
1061 && strncmp(me->device, "/dev/sd", 7)) {
1062 sprintf(tmp,
1063 "Not formatting %s yet - doesn't exist - probably an LVM",
1064 me->device);
[1]1065 log_it(tmp);
1066 continue;
1067 } else {
1068 if (interactively) {
1069 // ask user if we should format the current device
[128]1070 sprintf(tmp, "Shall I format %s (%s) ?", me->device,
1071 me->mountpoint);
[1]1072 do_it = ask_me_yes_or_no(tmp);
1073 } else {
1074 do_it = TRUE;
1075 }
1076
1077 if (do_it)
1078 retval += format_device(me->device, me->format);
1079 }
1080
1081 // update progress bar
1082 g_current_progress += progress_step;
1083 }
1084
1085
1086 // update progress bar to 100% to compensate for
1087 // rounding errors of the progress_step calculation
1088 if (lino >= mountlist->entries)
1089 g_current_progress = g_maximum_progress;
1090
1091 close_progress_form();
1092
1093 if (retval) {
1094 mvaddstr_and_log_it(g_currentY++, 74, "Failed.");
[128]1095 log_to_screen
1096 ("Errors occurred during the formatting of your hard drives.");
[1]1097 } else {
1098 mvaddstr_and_log_it(g_currentY++, 74, "Done.");
1099 }
1100
[128]1101 sprintf(tmp, "format_everything () - %s",
1102 (retval) ? "failed!" : "finished successfully");
[1]1103 log_it(tmp);
1104
[128]1105 if (g_partition_table_locked_up > 0) {
1106 if (retval > 0 && !interactively) {
[1]1107//123456789 123456789 123456789 123456789 123456789 123456789 123456789 123456789
[128]1108 log_to_screen
1109 ("Partition table locked up %d times. At least one 'mkfs' (format) command",
1110 g_partition_table_locked_up);
1111 log_to_screen
1112 ("failed. I think these two events are related. Sometimes, fdisk's ioctl() call");
1113 log_to_screen
1114 ("to refresh its copy of the partition table causes the kernel to lock the ");
1115 log_to_screen
1116 ("partition table. I believe this has just happened.");
1117 if (ask_me_yes_or_no
1118 ("Please choose 'yes' to reboot and try again; or 'no' to ignore this warning and continue."))
1119 {
1120 system("sync");
1121 system("sync");
1122 system("sync");
1123 system("reboot");
1124 }
1125 } else {
1126 log_to_screen
1127 ("Partition table locked up %d time%c. However, disk formatting succeeded.",
1128 g_partition_table_locked_up,
1129 (g_partition_table_locked_up == 1) ? '.' : 's');
1130 }
1131 }
1132 newtSuspend();
[1]1133 system("clear");
1134 newtResume();
1135 paranoid_free(tmp);
1136 return (retval);
1137}
1138
1139
1140/**
1141 * Create small dummy partitions to fill in the gaps in partition numbering for @p drivename.
1142 * Each partition created is 32k in size.
1143 * @param drivename The drive to create the dummy partitions on.
1144 * @param devno_we_must_allow_for The lowest-numbered real partition; create
1145 * dummies up to (this - 1).
1146 * @return The number of errors encountered (0 for success).
1147 */
[128]1148int make_dummy_partitions(FILE * pout_to_fdisk, char *drivename,
1149 int devno_we_must_allow_for)
[1]1150{
1151 /** int **************************************************************/
1152 int current_devno;
1153 int previous_devno;
1154 int retval = 0;
1155 int res;
1156
1157 /** buffers **********************************************************/
1158 char *tmp;
1159
1160 /** end **************************************************************/
1161
1162 malloc_string(tmp);
1163 assert_string_is_neither_NULL_nor_zerolength(drivename);
1164
1165 if (devno_we_must_allow_for >= 5) {
1166 sprintf(tmp, "Making dummy primary %s%d", drivename, 1);
1167 log_it(tmp);
1168 g_maximum_progress++;
[128]1169 res =
1170 partition_device(pout_to_fdisk, drivename, 1, 0, "ext2",
1171 32000);
[1]1172 retval += res;
1173 previous_devno = 1;
1174 current_devno = 5;
1175 } else {
1176 previous_devno = 0;
1177 current_devno = 1;
1178 }
1179 for (; current_devno < devno_we_must_allow_for; current_devno++) {
[128]1180 sprintf(tmp, "Creating dummy partition %s%d", drivename,
1181 current_devno);
[1]1182 log_it(tmp);
1183 g_maximum_progress++;
[128]1184 res =
1185 partition_device(pout_to_fdisk, drivename, current_devno,
1186 previous_devno, OSSWAP("ext2", "ufs"), 32000);
[1]1187 retval += res;
1188 previous_devno = current_devno;
1189 }
1190 paranoid_free(tmp);
1191 return (previous_devno);
1192}
1193
1194
1195/**
1196 * Decide whether @p mountlist contains any RAID devices.
1197 * @param mountlist The mountlist to examine.
1198 * @return TRUE if it does, FALSE if it doesn't.
1199 */
1200bool mountlist_contains_raid_devices(struct mountlist_itself * mountlist)
1201{
1202 /** int *************************************************************/
1203 int i;
1204 int matching = 0;
1205
1206 /** end **************************************************************/
1207
1208 assert(mountlist != NULL);
1209
1210 for (i = 0; i < mountlist->entries; i++) {
1211 if (strstr(mountlist->el[i].device, RAID_DEVICE_STUB)) {
1212 matching++;
1213 }
1214 }
1215 if (matching) {
1216 return (TRUE);
1217 } else {
1218 return (FALSE);
1219 }
1220}
1221
1222/* The following 2 functions are stolen from /usr/src/sbin/disklabel/disklabel.c */
1223#ifdef __FreeBSD__
1224static void display_disklabel(FILE * f, const struct disklabel *lp)
1225{
1226 int i, j;
1227 const struct partition *pp;
1228
1229 fprintf(f, "# %s\n", "Generated by Mondo Rescue");
1230 if (lp->d_type < DKMAXTYPES)
1231 fprintf(f, "type: %s\n", dktypenames[lp->d_type]);
1232 else
1233 fprintf(f, "type: %u\n", lp->d_type);
[128]1234 fprintf(f, "disk: %.*s\n", (int) sizeof(lp->d_typename),
1235 lp->d_typename);
1236 fprintf(f, "label: %.*s\n", (int) sizeof(lp->d_packname),
1237 lp->d_packname);
[1]1238 fprintf(f, "flags:");
1239 if (lp->d_flags & D_REMOVABLE)
1240 fprintf(f, " removeable");
1241 if (lp->d_flags & D_ECC)
1242 fprintf(f, " ecc");
1243 if (lp->d_flags & D_BADSECT)
1244 fprintf(f, " badsect");
1245 fprintf(f, "\n");
1246 fprintf(f, "bytes/sector: %lu\n", (u_long) lp->d_secsize);
1247 fprintf(f, "sectors/track: %lu\n", (u_long) lp->d_nsectors);
1248 fprintf(f, "tracks/cylinder: %lu\n", (u_long) lp->d_ntracks);
1249 fprintf(f, "sectors/cylinder: %lu\n", (u_long) lp->d_secpercyl);
1250 fprintf(f, "cylinders: %lu\n", (u_long) lp->d_ncylinders);
1251 fprintf(f, "sectors/unit: %lu\n", (u_long) lp->d_secperunit);
1252 fprintf(f, "rpm: %u\n", lp->d_rpm);
1253 fprintf(f, "interleave: %u\n", lp->d_interleave);
1254 fprintf(f, "trackskew: %u\n", lp->d_trackskew);
1255 fprintf(f, "cylinderskew: %u\n", lp->d_cylskew);
[128]1256 fprintf(f, "headswitch: %lu\t\t# milliseconds\n",
1257 (u_long) lp->d_headswitch);
1258 fprintf(f, "track-to-track seek: %ld\t# milliseconds\n",
1259 (u_long) lp->d_trkseek);
[1]1260 fprintf(f, "drivedata: ");
1261 for (i = NDDATA - 1; i >= 0; i--)
1262 if (lp->d_drivedata[i])
1263 break;
1264 if (i < 0)
1265 i = 0;
1266 for (j = 0; j <= i; j++)
1267 fprintf(f, "%lu ", (u_long) lp->d_drivedata[j]);
1268 fprintf(f, "\n\n%u partitions:\n", lp->d_npartitions);
[128]1269 fprintf(f,
1270 "# size offset fstype [fsize bsize bps/cpg]\n");
[1]1271 pp = lp->d_partitions;
1272 for (i = 0; i < lp->d_npartitions; i++, pp++) {
1273 if (pp->p_size) {
[128]1274 fprintf(f, " %c: %8lu %8lu ", 'a' + i, (u_long) pp->p_size,
1275 (u_long) pp->p_offset);
[1]1276 if (pp->p_fstype < FSMAXTYPES)
1277 fprintf(f, "%8.8s", fstypenames[pp->p_fstype]);
1278 else
1279 fprintf(f, "%8d", pp->p_fstype);
1280 switch (pp->p_fstype) {
1281
1282 case FS_UNUSED: /* XXX */
[128]1283 fprintf(f, " %5lu %5lu %5.5s ", (u_long) pp->p_fsize,
1284 (u_long) (pp->p_fsize * pp->p_frag), "");
[1]1285 break;
1286
1287 case FS_BSDFFS:
[128]1288 fprintf(f, " %5lu %5lu %5u ", (u_long) pp->p_fsize,
1289 (u_long) (pp->p_fsize * pp->p_frag), pp->p_cpg);
[1]1290 break;
1291
1292 case FS_BSDLFS:
[128]1293 fprintf(f, " %5lu %5lu %5d", (u_long) pp->p_fsize,
1294 (u_long) (pp->p_fsize * pp->p_frag), pp->p_cpg);
[1]1295 break;
1296
1297 default:
1298 fprintf(f, "%20.20s", "");
1299 break;
1300 }
[128]1301 fprintf(f, "\t# (Cyl. %4lu",
1302 (u_long) (pp->p_offset / lp->d_secpercyl));
[1]1303 if (pp->p_offset % lp->d_secpercyl)
1304 putc('*', f);
1305 else
1306 putc(' ', f);
[128]1307 fprintf(f, "- %lu",
1308 (u_long) ((pp->p_offset + pp->p_size +
1309 lp->d_secpercyl - 1) / lp->d_secpercyl -
1310 1));
[1]1311 if (pp->p_size % lp->d_secpercyl)
1312 putc('*', f);
1313 fprintf(f, ")\n");
1314 }
1315 }
1316 fflush(f);
1317}
1318
1319static struct disklabel *get_virgin_disklabel(char *dkname)
1320{
1321 static struct disklabel loclab;
1322 struct partition *dp;
1323 char lnamebuf[BBSIZE];
1324 int f;
1325 u_int secsize, u;
1326 off_t mediasize;
1327
1328 (void) snprintf(lnamebuf, BBSIZE, "%s", dkname);
1329 if ((f = open(lnamebuf, O_RDONLY)) == -1) {
1330 warn("cannot open %s", lnamebuf);
1331 return (NULL);
1332 }
1333
1334 /* New world order */
1335 if ((ioctl(f, DIOCGMEDIASIZE, &mediasize) != 0)
[128]1336 || (ioctl(f, DIOCGSECTORSIZE, &secsize) != 0)) {
[1]1337 close(f);
1338 return (NULL);
1339 }
1340 memset(&loclab, 0, sizeof loclab);
1341 loclab.d_magic = DISKMAGIC;
1342 loclab.d_magic2 = DISKMAGIC;
1343 loclab.d_secsize = secsize;
1344 loclab.d_secperunit = mediasize / secsize;
1345
1346 /*
1347 * Nobody in these enligthened days uses the CHS geometry for
1348 * anything, but nontheless try to get it right. If we fail
1349 * to get any good ideas from the device, construct something
1350 * which is IBM-PC friendly.
1351 */
1352 if (ioctl(f, DIOCGFWSECTORS, &u) == 0)
1353 loclab.d_nsectors = u;
1354 else
1355 loclab.d_nsectors = 63;
1356 if (ioctl(f, DIOCGFWHEADS, &u) == 0)
1357 loclab.d_ntracks = u;
1358 else if (loclab.d_secperunit <= 63 * 1 * 1024)
1359 loclab.d_ntracks = 1;
1360 else if (loclab.d_secperunit <= 63 * 16 * 1024)
1361 loclab.d_ntracks = 16;
1362 else
1363 loclab.d_ntracks = 255;
1364 loclab.d_secpercyl = loclab.d_ntracks * loclab.d_nsectors;
1365 loclab.d_ncylinders = loclab.d_secperunit / loclab.d_secpercyl;
1366 loclab.d_npartitions = MAXPARTITIONS;
1367
1368 /* Various (unneeded) compat stuff */
1369 loclab.d_rpm = 3600;
1370 loclab.d_bbsize = BBSIZE;
1371 loclab.d_interleave = 1;;
1372 strncpy(loclab.d_typename, "amnesiac", sizeof(loclab.d_typename));
1373
1374 dp = &loclab.d_partitions[RAW_PART];
1375 dp->p_size = loclab.d_secperunit;
1376 loclab.d_checksum = dkcksum(&loclab);
1377 close(f);
1378 return (&loclab);
1379}
[128]1380
[1]1381/* End stolen from /usr/src/sbin/disklabel/disklabel.c. */
1382
1383char *canonical_name(char *drivename)
1384{
1385 if (drivename) {
1386 if (strncmp(drivename, "/dev/", 5) == 0) {
1387 return drivename + 5;
1388 }
1389 }
1390 return drivename;
1391}
1392
1393/**
1394 * (BSD only) Create a disklabel on @p drivename according to @p mountlist.
1395 * @param mountlist The mountlist to get the subpartition information from.
1396 * @param drivename The drive or slice to create a disklabel on.
1397 * @param ret If non-NULL, store the created disklabel here.
1398 * @return The number of errors encountered (0 for success).
1399 */
[128]1400int label_drive_or_slice(struct mountlist_itself *mountlist,
1401 char *drivename, struct disklabel *ret)
[1]1402{
1403 char subdev_str[MAX_STR_LEN];
1404 char command[MAX_STR_LEN];
1405 struct disklabel *lp;
1406 int i, lo = 0;
1407 int retval = 0;
1408 char c;
1409 FILE *ftmp;
1410
1411 lp = get_virgin_disklabel(drivename);
1412 for (c = 'a'; c <= 'z'; ++c) {
1413 int idx;
1414 sprintf(subdev_str, "%s%c", drivename, c);
1415 if ((idx = find_device_in_mountlist(mountlist, subdev_str)) < 0) {
1416 lp->d_partitions[c - 'a'].p_size = 0;
1417 lp->d_partitions[c - 'a'].p_fstype = FS_UNUSED;
1418 } else {
1419 lo = c - 'a';
1420 lp->d_partitions[c - 'a'].p_size = mountlist->el[idx].size * 2;
1421 lp->d_partitions[c - 'a'].p_fsize = 0;
1422 lp->d_partitions[c - 'a'].p_frag = 0;
1423 lp->d_partitions[c - 'a'].p_cpg = 0;
1424 if (!strcmp(mountlist->el[idx].format, "ufs")
[128]1425 || !strcmp(mountlist->el[idx].format, "ffs")
1426 || !strcmp(mountlist->el[idx].format, "4.2BSD")) {
[1]1427 lp->d_partitions[c - 'a'].p_fstype = FS_BSDFFS;
1428 lp->d_partitions[c - 'a'].p_fsize = 2048;
1429 lp->d_partitions[c - 'a'].p_frag = 8;
1430 lp->d_partitions[c - 'a'].p_cpg = 64;
1431 } else if (!strcasecmp(mountlist->el[idx].format, "raid")
[128]1432 || !strcasecmp(mountlist->el[idx].format, "vinum")) {
[1]1433 lp->d_partitions[c - 'a'].p_fstype = FS_VINUM;
1434 } else if (!strcmp(mountlist->el[idx].format, "swap")) {
1435 lp->d_partitions[c - 'a'].p_fstype = FS_SWAP;
1436 } else
1437 lp->d_partitions[c - 'a'].p_fstype = FS_OTHER;
1438 }
1439 }
1440
1441 // fix up the offsets
1442 lp->d_partitions[0].p_offset = 0;
1443 lp->d_partitions[RAW_PART].p_offset = 0;
1444 lp->d_partitions[RAW_PART].p_size = lp->d_secperunit;
1445 lp->d_partitions[RAW_PART].p_fstype = FS_UNUSED;
1446
1447 for (i = 1; i < lp->d_npartitions; ++i) {
1448 int lastone;
1449 if ((i == RAW_PART) || (lp->d_partitions[i].p_size == 0))
1450 continue;
1451 for (lastone = i - 1; lastone >= 0; lastone--) {
1452 if ((lp->d_partitions[lastone].p_size)
[128]1453 && (lastone != RAW_PART))
[1]1454 break;
1455 }
[128]1456 lp->d_partitions[i].p_offset =
1457 lp->d_partitions[lastone].p_offset +
1458 lp->d_partitions[lastone].p_size;
[1]1459 }
[128]1460 if (lp->d_partitions[lo].p_offset + lp->d_partitions[lo].p_size >
1461 lp->d_secperunit) {
1462 lp->d_partitions[lo].p_size =
1463 lp->d_secperunit - lp->d_partitions[lo].p_offset;
[1]1464 }
1465
1466 ftmp = fopen("/tmp/disklabel", "w");
1467 display_disklabel(ftmp, lp);
1468 fclose(ftmp);
1469 sprintf(command, "disklabel -wr %s auto", canonical_name(drivename));
1470 retval += run_program_and_log_output(command, TRUE);
[128]1471 sprintf(command, "disklabel -R %s /tmp/disklabel",
1472 canonical_name(drivename));
[1]1473 retval += run_program_and_log_output(command, TRUE);
1474 if (ret)
1475 *ret = *lp;
1476 return retval;
1477}
1478#endif
1479
1480
1481/**
1482 * Partition @p drivename based on @p mountlist.
1483 * @param mountlist The mountlist to use to guide the partitioning.
1484 * @param drivename The drive to partition.
1485 * @return 0 for success, nonzero for failure.
1486 */
1487int partition_drive(struct mountlist_itself *mountlist, char *drivename)
1488{
1489 /** int *************************************************************/
1490 int current_devno;
1491 int previous_devno = 0;
1492 int lino;
1493 int retval = 0;
1494 int i;
[128]1495 FILE *pout_to_fdisk = NULL;
1496
[1]1497#ifdef __FreeBSD__
1498 bool fbsd_part = FALSE;
1499 char subdev_str[MAX_STR_LEN];
1500#endif
1501
1502 /** long long *******************************************************/
1503 long long partsize;
1504
1505 /** buffers *********************************************************/
1506 char *device_str;
1507 char *format;
1508 char *tmp;
1509
1510 /** end *************************************************************/
1511
1512 assert(mountlist != NULL);
1513 assert_string_is_neither_NULL_nor_zerolength(drivename);
1514
1515 malloc_string(device_str);
1516 malloc_string(format);
1517 malloc_string(tmp);
[128]1518
[1]1519 sprintf(tmp, "Partitioning drive %s", drivename);
1520 log_it(tmp);
1521
[128]1522#if __FreeBSD__
1523 log_it("(Not opening fdisk now; that's the Linux guy's job)");
[1]1524 pout_to_fdisk = NULL;
1525#else
1526 make_hole_for_file(FDISK_LOG);
1527#ifdef __IA64__
[128]1528 sprintf(tmp, "parted2fdisk %s >> %s 2>> %s", drivename, FDISK_LOG,
1529 FDISK_LOG);
[1]1530#else
1531 sprintf(tmp, "fdisk %s >> %s 2>> %s", drivename, FDISK_LOG, FDISK_LOG);
1532#endif
1533 pout_to_fdisk = popen(tmp, "w");
[128]1534 if (!pout_to_fdisk) {
1535 log_to_screen("Cannot call fdisk to configure %s", drivename);
[1]1536 paranoid_free(device_str);
1537 paranoid_free(format);
1538 paranoid_free(tmp);
[128]1539 return (1);
[1]1540 }
1541#endif
1542 for (current_devno = 1; current_devno < 99; current_devno++) {
1543 build_partition_name(device_str, drivename, current_devno);
1544 lino = find_device_in_mountlist(mountlist, device_str);
1545
1546 if (lino < 0) {
1547 // device not found in mountlist
1548#if __FreeBSD__
1549 // If this is the first partition (just as a sentinel value),
1550 // then see if the user has picked 'dangerously-dedicated' mode.
1551 // If so, then we just call label_drive_or_slice() and return.
1552 char c;
1553 if (current_devno == 1) {
1554 // try DangerouslyDedicated mode
1555 for (c = 'a'; c <= 'z'; c++) {
1556 sprintf(subdev_str, "%s%c", drivename, c);
[128]1557 if (find_device_in_mountlist(mountlist, subdev_str) >
1558 0) {
[1]1559 fbsd_part = TRUE;
1560 }
1561 }
1562 if (fbsd_part) {
1563 int r = label_drive_or_slice(mountlist,
[128]1564 drivename,
1565 0);
[1]1566 char command[MAX_STR_LEN];
[128]1567 sprintf(command, "disklabel -B %s",
1568 basename(drivename));
[1]1569 if (system(command)) {
[128]1570 log_to_screen
1571 ("Warning! Unable to make the drive bootable.");
[1]1572 }
1573 paranoid_free(device_str);
1574 paranoid_free(format);
1575 paranoid_free(tmp);
1576 return r;
1577 }
1578 }
1579 for (c = 'a'; c <= 'z'; c++) {
1580 sprintf(subdev_str, "%s%c", device_str, c);
1581 if (find_device_in_mountlist(mountlist, subdev_str) > 0) {
1582 fbsd_part = TRUE;
1583 }
1584 }
1585 // Now we check the subpartitions of the current partition.
1586 if (fbsd_part) {
1587 int i, line;
1588
1589 strcpy(format, "ufs");
1590 partsize = 0;
1591 for (i = 'a'; i < 'z'; ++i) {
1592 sprintf(subdev_str, "%s%c", device_str, i);
1593 line = find_device_in_mountlist(mountlist, subdev_str);
1594 if (line > 0) {
1595 // We found one! Add its size to the total size.
1596 partsize += mountlist->el[line].size;
1597 }
1598 }
1599 } else {
1600 continue;
1601 }
1602#else
1603 continue;
1604#endif
1605 }
1606
1607 /* OK, we've found partition /dev/hdxN in mountlist; let's prep it */
1608 /* For FreeBSD, that is /dev/adXsY */
1609
1610 log_it("Found partition %s in mountlist", device_str);
1611 if (!previous_devno) {
1612
1613 log_it("Wiping %s's partition table", drivename);
1614#if __FreeBSD__
1615 // FreeBSD doesn't let you write to blk devices in <512byte chunks.
[128]1616// sprintf(tmp, "dd if=/dev/zero of=%s count=1 bs=512", drivename);
1617// if (run_program_and_log_output(tmp, TRUE)) {
[1]1618 file = open(drivename, O_WRONLY);
1619 if (!file) {
[128]1620 sprintf(tmp,
1621 "Warning - unable to open %s for wiping it's partition table",
1622 drivename);
[1]1623 log_to_screen(tmp);
1624 }
1625
[128]1626 for (i = 0; i < 512; i++) {
1627 if (!write(file, "\0", 1)) {
1628 sprintf(tmp, "Warning - unable to write to %s",
1629 drivename);
[1]1630 log_to_screen(tmp);
1631 }
1632 }
1633 system("sync");
1634#else
1635 iamhere("New, kernel-friendly partition remover");
[128]1636 for (i = 20; i > 0; i--) {
1637 fprintf(pout_to_fdisk, "d\n%d\n", i);
1638 fflush(pout_to_fdisk);
1639 }
1640// sprintf(tmp, "dd if=/dev/zero of=%s count=1 bs=512", drivename);
1641// run_program_and_log_output(tmp, 1);
1642#endif
[1]1643 if (current_devno > 1) {
[128]1644 previous_devno =
1645 make_dummy_partitions(pout_to_fdisk, drivename,
1646 current_devno);
[1]1647 }
1648 }
1649#ifdef __FreeBSD__
1650 if (!fbsd_part) {
1651#endif
1652
[128]1653 strcpy(format, mountlist->el[lino].format);
1654 partsize = mountlist->el[lino].size;
[1]1655
1656#ifdef __FreeBSD__
1657 }
1658#endif
1659
[71]1660#ifndef __IA64__
[1]1661 if (current_devno == 5 && previous_devno == 4) {
[128]1662 log_to_screen
1663 ("You must leave at least one partition spare as the Extended partition.");
[1]1664 paranoid_free(device_str);
1665 paranoid_free(format);
1666 paranoid_free(tmp);
1667 return (1);
1668 }
[71]1669#endif
[1]1670
[128]1671 retval +=
1672 partition_device(pout_to_fdisk, drivename, current_devno,
1673 previous_devno, format, partsize);
[1]1674
1675#ifdef __FreeBSD__
1676 if ((current_devno <= 4) && fbsd_part) {
1677 sprintf(tmp, "disklabel -B %s", basename(device_str));
1678 retval += label_drive_or_slice(mountlist, device_str, 0);
1679 if (system(tmp)) {
[128]1680 log_to_screen
1681 ("Warning! Unable to make the slice bootable.");
[1]1682 }
1683 }
1684#endif
1685
1686 previous_devno = current_devno;
1687 }
1688
[128]1689 if (pout_to_fdisk) {
[1]1690// mark relevant partition as bootable
[128]1691 sprintf(tmp, "a\n%s\n",
1692 call_program_and_get_last_line_of_output
1693 ("make-me-bootable /tmp/mountlist.txt dummy"));
[1]1694 fput_string_one_char_at_a_time(pout_to_fdisk, tmp);
1695// close fdisk
1696 fput_string_one_char_at_a_time(pout_to_fdisk, "w\n");
1697 system("sync");
[128]1698 paranoid_pclose(pout_to_fdisk);
1699 log_msg(0,
1700 "------------------- fdisk.log looks like this ------------------");
[1]1701 sprintf(tmp, "cat %s >> %s", FDISK_LOG, MONDO_LOGFILE);
1702 system(tmp);
[128]1703 log_msg(0,
1704 "------------------- end of fdisk.log... word! ------------------");
[1]1705 sprintf(tmp, "tail -n6 %s | fgrep \"16: \"", FDISK_LOG);
[128]1706 if (!run_program_and_log_output(tmp, 5)) {
1707 g_partition_table_locked_up++;
1708 log_to_screen
1709 ("A flaw in the Linux kernel has locked the partition table.");
1710 }
[1]1711 }
1712 paranoid_free(device_str);
1713 paranoid_free(format);
1714 paranoid_free(tmp);
1715 return (retval);
1716}
1717
1718/**
1719 * Create partition number @p partno on @p drive with @p fdisk.
1720 * @param drive The drive to create the partition on.
1721// * @param partno The partition number of the new partition (1-4 are primary, >=5 is logical).
1722 * @param prev_partno The partition number of the most recently prepped partition.
1723 * @param format The filesystem type of this partition (used to set the type).
1724 * @param partsize The size of the partition in @e bytes.
1725 * @return 0 for success, nonzero for failure.
1726 */
[128]1727int partition_device(FILE * pout_to_fdisk, const char *drive, int partno,
1728 int prev_partno, const char *format,
1729 long long partsize)
[1]1730{
1731 /** int **************************************************************/
1732 int retval = 0;
1733 int res = 0;
1734
1735 /** buffers **********************************************************/
1736 char *program;
1737 char *partition_name;
1738 char *tmp;
1739 char *logfile;
1740 char *output;
1741
1742 /** pointers **********************************************************/
1743 char *p;
1744 char *part_table_fmt;
1745 FILE *fout;
1746
1747 /** end ***************************************************************/
1748
1749 malloc_string(program);
1750 malloc_string(partition_name);
1751 malloc_string(tmp);
1752 malloc_string(logfile);
1753 malloc_string(output);
[128]1754
[1]1755 assert_string_is_neither_NULL_nor_zerolength(drive);
1756 assert(format != NULL);
1757
[128]1758 log_it("partition_device('%s', %d, %d, '%s', %lld) --- starting",
1759 drive, partno, prev_partno, format, partsize);
[1]1760
1761 if (!strncmp(drive, RAID_DEVICE_STUB, strlen(RAID_DEVICE_STUB))) {
1762 sprintf(tmp, "Not partitioning %s - it is a virtual drive", drive);
1763 log_it(tmp);
1764 paranoid_free(program);
1765 paranoid_free(partition_name);
1766 paranoid_free(tmp);
1767 paranoid_free(logfile);
1768 paranoid_free(output);
1769 return (0);
1770 }
1771 build_partition_name(partition_name, drive, partno);
1772 if (partsize <= 0) {
1773 sprintf(tmp, "Partitioning device %s (max size)", partition_name);
1774 } else {
[128]1775 sprintf(tmp, "Partitioning device %s (%lld MB)", partition_name,
1776 (long long) partsize / 1024);
[1]1777 }
1778 update_progress_form(tmp);
1779 log_it(tmp);
1780
1781 if (is_this_device_mounted(partition_name)) {
[128]1782 sprintf(tmp, "%s is mounted, and should not be partitioned",
1783 partition_name);
[1]1784 log_to_screen(tmp);
1785 paranoid_free(program);
1786 paranoid_free(partition_name);
1787 paranoid_free(tmp);
1788 paranoid_free(logfile);
1789 paranoid_free(output);
1790 return (1);
1791/*
1792 } else if (does_partition_exist(drive, partno)) {
1793 sprintf(tmp, "%s already has a partition", partition_name);
1794 log_to_screen(tmp);
1795 return (1);
1796*/
1797 }
1798
1799
1800 /* sprintf(tmp,"Partitioning %s ",partition_name); */
1801 /* mvaddstr_and_log_it(g_currentY+1,30,tmp); */
1802 p = (char *) strrchr(partition_name, '/');
1803 sprintf(logfile, "/tmp/fdisk.log.%s", ++p);
[128]1804 sprintf(program, "parted2fdisk %s >> %s 2>> %s", drive, MONDO_LOGFILE,
1805 MONDO_LOGFILE);
[1]1806
[88]1807 /* BERLIOS: shoould not be called each time */
1808 part_table_fmt = which_partition_format(drive);
[1]1809 output[0] = '\0';
1810 /* make it a primary/extended/logical */
1811 if (partno <= 4) {
1812 sprintf(output + strlen(output), "n\np\n%d\n", partno);
1813 } else {
[88]1814 /* MBR needs an extended partition if more than 4 partitions */
[128]1815 if (strcmp(part_table_fmt, "MBR") == 0) {
[88]1816 if (partno == 5) {
1817 if (prev_partno >= 4) {
[128]1818 log_to_screen
1819 ("You need to leave at least one partition free, for 'extended/logical'");
[88]1820 paranoid_free(program);
1821 paranoid_free(partition_name);
1822 paranoid_free(tmp);
1823 paranoid_free(logfile);
1824 paranoid_free(output);
1825 return (1);
1826 } else {
[128]1827 sprintf(output + strlen(output), "n\ne\n%d\n\n\n",
1828 prev_partno + 1);
[88]1829 }
1830 }
1831 strcat(output + strlen(output), "n\nl\n");
1832 } else {
[1]1833 /* GPT allows more than 4 primary partitions */
[88]1834 sprintf(output + strlen(output), "n\np\n%d\n", partno);
[1]1835 }
1836 }
1837 strcat(output + strlen(output), "\n"); /*start block (ENTER for next free blk */
1838 if (partsize > 0) {
[128]1839 if (!strcmp(format, "7")) {
1840 log_msg(1, "Adding 512K, just in case");
1841 partsize += 512;
1842 }
[1]1843 sprintf(output + strlen(output), "+%lldK", (long long) (partsize));
1844 }
1845 strcat(output + strlen(output), "\n");
1846#if 0
1847/*
1848#endif
1849 sprintf(tmp,"PARTSIZE = +%ld",(long)partsize);
1850 log_it(tmp);
1851 log_it("---fdisk command---");
1852 log_it(output);
1853 log_it("---end of fdisk---");
1854#if 0
1855*/
1856#endif
1857
1858
[128]1859 if (pout_to_fdisk) {
[1]1860 log_msg(1, "Doing the new all-in-one fdisk thing");
1861 log_msg(1, "output = '%s'", output);
1862 fput_string_one_char_at_a_time(pout_to_fdisk, output);
1863 fput_string_one_char_at_a_time(pout_to_fdisk, "\n\np\n");
1864 strcpy(tmp, last_line_of_file(FDISK_LOG));
[128]1865 if (strstr(tmp, " (m ")) {
[1]1866 log_msg(1, "Successfully created %s%d", drive, partno);
[128]1867 } else {
[1]1868 log_msg(1, "last line = %s", tmp);
[128]1869 log_msg(1, "Failed to create %s%d; sending 'Enter'...", drive,
1870 partno);
[1]1871 }
[128]1872 if (!retval) {
1873 log_msg(1, "Trying to set %s%d's partition type now", drive,
1874 partno);
1875 retval =
1876 set_partition_type(pout_to_fdisk, drive, partno, format,
1877 partsize);
1878 if (retval) {
[1]1879 log_msg(1, "Failed. Trying again...");
[128]1880 retval =
1881 set_partition_type(pout_to_fdisk, drive, partno,
1882 format, partsize);
[1]1883 }
[128]1884 }
1885 if (retval) {
1886 log_msg(1, "...but failed to set type");
1887 }
1888 } else {
[1]1889 strcat(output, "w\n\n");
[128]1890 if (g_fprep) {
1891 fprintf(g_fprep, "echo \"%s\" | %s\n", output, program);
1892 }
[1]1893 /* write to disk; close fdisk's stream */
1894 if (!(fout = popen(program, "w"))) {
1895 log_OS_error("can't popen-out to program");
1896 } else {
1897 fputs(output, fout);
1898 paranoid_pclose(fout);
1899 }
1900 if (!does_partition_exist(drive, partno) && partsize > 0) {
1901 log_it("Vaccum-packing");
1902 g_current_progress--;
[128]1903 res =
1904 partition_device(pout_to_fdisk, drive, partno, prev_partno,
1905 format, -1);
[1]1906 if (res) {
1907 sprintf(tmp, "Failed to vacuum-pack %s", partition_name);
1908 log_it(tmp);
1909 retval++;
1910 } else {
1911 retval = 0;
1912 }
1913 }
1914 if (does_partition_exist(drive, partno)) {
[128]1915 retval =
1916 set_partition_type(pout_to_fdisk, drive, partno, format,
1917 partsize);
[1]1918 if (retval) {
[128]1919 sprintf(tmp, "Partitioned %s but failed to set its type",
1920 partition_name);
[1]1921 log_it(tmp);
1922 } else {
1923 if (partsize > 0) {
[128]1924 sprintf(tmp, "Partition %s created+configured OK",
1925 partition_name);
[1]1926 log_to_screen(tmp);
1927 } else {
1928 log_it("Returning from a successful vacuum-pack");
1929 }
1930 }
[128]1931 } else {
[1]1932 sprintf(tmp, "Failed to partition %s", partition_name);
1933 if (partsize > 0) {
1934 log_to_screen(tmp);
1935 } else {
1936 log_it(tmp);
1937 }
1938 retval++;
1939 }
1940 }
1941 g_current_progress++;
1942 log_it("partition_device() --- leaving");
1943 paranoid_free(program);
1944 paranoid_free(partition_name);
1945 paranoid_free(tmp);
1946 paranoid_free(logfile);
1947 paranoid_free(output);
1948 return (retval);
1949}
1950
1951
1952
1953/**
1954 * Create all partitions listed in @p mountlist.
1955 * @param mountlist The mountlist to use to guide the partitioning.
1956 * @return The number of errors encountered (0 for success).
1957 * @note This sets the partition types but doesn't actually do the formatting.
1958 * Use format_everything() for that.
1959 */
1960int partition_everything(struct mountlist_itself *mountlist)
1961{
1962 /** int ************************************************************/
1963 int lino;
1964 int retval = 0;
1965 int i;
1966 int res;
1967
1968 /** buffer *********************************************************/
1969 struct list_of_disks *drivelist;
1970 /* struct mountlist_itself new_mtlist, *mountlist; */
1971
1972 /** end ************************************************************/
1973
1974 drivelist = malloc(sizeof(struct list_of_disks));
1975 assert(mountlist != NULL);
1976
1977 log_it("partition_everything() --- starting");
1978 mvaddstr_and_log_it(g_currentY, 0, "Partitioning hard drives ");
1979 /* mountlist=orig_mtlist; */
1980 if (mountlist_contains_raid_devices(mountlist)) {
1981 /* mountlist=&new_mtlist; */
1982 /* extrapolate_mountlist_to_include_raid_partitions(mountlist,orig_mtlist); */
[128]1983 log_msg(0,
1984 "Mountlist, including the partitions incorporated in RAID devices:-");
[1]1985 for (i = 0; i < mountlist->entries; i++) {
1986 log_it(mountlist->el[i].device);
1987 }
1988 log_msg(0, "End of mountlist.");
1989 }
1990 log_msg(0, "Stopping all LVMs, just in case");
[128]1991 if (!g_text_mode) {
1992 newtSuspend();
1993 }
1994 do_my_funky_lvm_stuff(TRUE, FALSE); // just remove old partitions
1995 if (!g_text_mode) {
1996 newtResume();
1997 }
[1]1998 log_msg(0, "Stopping all software RAID devices, just in case");
1999 stop_all_raid_devices(mountlist);
2000 log_msg(0, "Done.");
[128]2001
[1]2002/*
2003 if (does_file_exist("/tmp/i-want-my-lvm"))
2004 {
2005 wipe_MBRs_and_reboot_if_necessary(mountlist); // i.e. if it wasn't done recently
2006 }
2007*/
2008
[128]2009 open_progress_form("Partitioning devices",
2010 "I am now going to partition all your drives.",
2011 "This should not take more than five minutes.", "",
2012 mountlist->entries);
[1]2013
2014 make_list_of_drives_in_mountlist(mountlist, drivelist);
2015
2016 /* partition each drive */
2017 for (lino = 0; lino < drivelist->entries; lino++) {
2018 res = partition_drive(mountlist, drivelist->el[lino].device);
2019 retval += res;
2020 }
2021 close_progress_form();
2022 if (retval) {
2023 mvaddstr_and_log_it(g_currentY++, 74, "Failed.");
[128]2024 log_to_screen
2025 ("Errors occurred during the partitioning of your hard drives.");
[1]2026 } else {
2027 mvaddstr_and_log_it(g_currentY++, 74, "Done.");
2028 paranoid_system("rm -f /tmp/fdisk*.log 2> /dev/null");
2029 }
2030 newtSuspend();
2031 system("clear");
2032 newtResume();
2033 paranoid_free(drivelist);
2034 return (retval);
2035}
2036
2037
2038
2039
2040
2041
2042/**
2043 * Set the type of partition number @p partno on @p drive to @p format.
2044 * @param drive The drive to change the type of a partition on.
2045 * @param partno The partition number on @p drive to change the type of.
2046 * @param format The filesystem type this partition will eventually contain.
2047 * @param partsize The size of this partition, in @e bytes (used for vfat
2048 * type calculations).
2049 * @return 0 for success, nonzero for failure.
2050 */
[128]2051int set_partition_type(FILE * pout_to_fdisk, const char *drive, int partno,
2052 const char *format, long long partsize)
[1]2053{
2054 /** buffers *********************************************************/
[128]2055 char *partition;
2056 char *command;
2057 char *output;
2058 char *tmp;
2059 char *partcode;
2060 char *logfile;
[1]2061
2062 /** pointers *********************************************************/
2063 char *p;
2064 FILE *fout;
2065
2066 /** int **************************************************************/
2067 int res = 0;
2068
2069 /** end **************************************************************/
2070
2071 assert_string_is_neither_NULL_nor_zerolength(drive);
2072 assert(format != NULL);
2073
[128]2074 malloc_string(partition);
2075 malloc_string(command);
2076 malloc_string(output);
2077 malloc_string(tmp);
2078 malloc_string(partcode);
2079 malloc_string(logfile);
[1]2080
2081 build_partition_name(partition, drive, partno);
2082 p = (char *) strrchr(partition, '/');
2083 sprintf(logfile, "/tmp/fdisk-set-type.%s.log", ++p);
2084 if (strcmp(format, "swap") == 0) {
2085 strcpy(partcode, "82");
2086 } else if (strcmp(format, "vfat") == 0) {
2087 if (partsize / 1024 > 8192) {
2088 strcpy(partcode, "c");
2089 } else {
2090 strcpy(partcode, "b");
2091 }
[128]2092 } else if (strcmp(format, "ext2") == 0
2093 || strcmp(format, "reiserfs") == 0
2094 || strcmp(format, "ext3") == 0 || strcmp(format, "xfs") == 0
2095 || strcmp(format, "jfs") == 0) {
[1]2096 strcpy(partcode, "83");
2097 } else if (strcmp(format, "minix") == 0) {
2098 strcpy(partcode, "81");
2099 } else if (strcmp(format, "raid") == 0) {
2100 strcpy(partcode, "fd");
2101 } else if ((strcmp(format, "ufs") == 0)
[128]2102 || (strcmp(format, "ffs") == 0)) { /* raid autodetect */
[1]2103 strcpy(partcode, "a5");
2104 } else if (strcmp(format, "lvm") == 0) {
2105 strcpy(partcode, "8e");
2106 } else if (format[0] == '\0') { /* LVM physical partition */
2107 partcode[0] = '\0';
2108 } else if (strlen(format) >= 1 && strlen(format) <= 2) {
2109 strcpy(partcode, format);
2110 } else {
2111 /* probably an image */
[128]2112 sprintf(tmp,
2113 "Unknown format ('%s') - using supplied string anyway",
2114 format);
[1]2115 mvaddstr_and_log_it(g_currentY++, 0, tmp);
2116#ifdef __FreeBSD__
[128]2117 strcpy(partcode, format); // was a5
[1]2118#else
[128]2119 strcpy(partcode, format); // was 83
[1]2120#endif
2121 }
[128]2122 sprintf(tmp, "Setting %s's type to %s (%s)", partition, format,
2123 partcode);
[1]2124 log_msg(1, tmp);
2125 if (partcode[0] != '\0' && strcmp(partcode, "83")) { /* no need to set type if 83: 83 is default */
[128]2126
2127 if (pout_to_fdisk) {
[1]2128 res = 0;
2129 fput_string_one_char_at_a_time(pout_to_fdisk, "t\n");
[128]2130 if (partno > 1
2131 || strstr(last_line_of_file(FDISK_LOG), " (1-4)")) {
[1]2132 log_msg(5, "Specifying partno (%d) - yay", partno);
2133 sprintf(tmp, "%d\n", partno);
2134 fput_string_one_char_at_a_time(pout_to_fdisk, tmp);
[128]2135 log_msg(5, "A - last line = '%s'",
2136 last_line_of_file(FDISK_LOG));
[1]2137 }
[128]2138
[1]2139 sprintf(tmp, "%s\n", partcode);
2140 fput_string_one_char_at_a_time(pout_to_fdisk, tmp);
[128]2141 log_msg(5, "B - last line = '%s'",
2142 last_line_of_file(FDISK_LOG));
[1]2143 fput_string_one_char_at_a_time(pout_to_fdisk, "\n");
[128]2144 log_msg(5, "C - last line = '%s'",
2145 last_line_of_file(FDISK_LOG));
2146
[1]2147 strcpy(tmp, last_line_of_file(FDISK_LOG));
[128]2148 if (!strstr(tmp, " (m ")) {
2149 log_msg(1, "last line = '%s'; part type set failed", tmp);
2150 res++;
2151 fput_string_one_char_at_a_time(pout_to_fdisk, "\n");
2152 }
2153 fput_string_one_char_at_a_time(pout_to_fdisk, "p\n");
2154 } else {
[1]2155 sprintf(output, "t\n%d\n%s\n", partno, partcode);
2156 strcat(output, "w\n");
[128]2157 sprintf(command, "parted2fdisk %s >> %s 2>> %s", drive,
2158 MONDO_LOGFILE, MONDO_LOGFILE);
[1]2159 log_msg(5, "output = '%s'", output);
2160 log_msg(5, "partno=%d; partcode=%s", partno, partcode);
2161 log_msg(5, "command = '%s'", command);
2162 fout = popen(command, "w");
2163 if (!fout) {
2164 log_OS_error(command);
2165 res = 1;
2166 } else {
2167 res = 0;
2168 fprintf(fout, output);
2169 paranoid_pclose(fout);
2170 }
2171 }
[128]2172 if (res) {
2173 log_OS_error(command);
2174 }
[1]2175 }
2176
[128]2177 paranoid_free(partition);
2178 paranoid_free(command);
2179 paranoid_free(output);
2180 paranoid_free(tmp);
2181 paranoid_free(partcode);
2182 paranoid_free(logfile);
[1]2183
[128]2184 return (res);
[1]2185}
2186
2187
2188int start_raid_device(char *raid_device)
2189{
2190 /** int *************************************************************/
2191 int res;
2192 int retval = 0;
2193
2194 /** buffers *********************************************************/
2195 char *program;
2196
2197 /** end *************************************************************/
2198
2199 assert_string_is_neither_NULL_nor_zerolength(raid_device);
2200 malloc_string(program);
[128]2201
[1]2202#ifdef __FreeBSD__
2203 if (is_this_device_mounted(raid_device)) {
2204 log_it("Can't start %s when it's mounted!", raid_device);
2205 return 1;
2206 }
2207 sprintf(program, "vinum start -f %s", raid_device);
2208#else
2209 sprintf(program, "raidstart %s", raid_device);
2210// sprintf (program, "raidstart " RAID_DEVICE_STUB "*");
2211#endif
2212 log_msg(1, "program = %s", program);
2213 res = run_program_and_log_output(program, 1);
[128]2214 if (g_fprep) {
2215 fprintf(g_fprep, "%s\n", program);
2216 }
2217 if (res) {
2218 log_msg(1, "Warning - failed to start RAID device %s",
2219 raid_device);
2220 }
[1]2221 retval += res;
2222 sleep(1);
2223 return (retval);
2224}
2225
2226
2227
2228/**
2229 * Stop @p raid_device using @p raidstop.
2230 * @param raid_device The software RAID device to stop.
2231 * @return 0 for success, nonzero for failure.
2232 */
2233int stop_raid_device(char *raid_device)
2234{
2235 /** int *************************************************************/
2236 int res;
2237 int retval = 0;
2238
2239 /** buffers *********************************************************/
2240 char *program;
2241
2242 /** end *************************************************************/
2243
2244 assert_string_is_neither_NULL_nor_zerolength(raid_device);
2245 malloc_string(program);
[128]2246
[1]2247#ifdef __FreeBSD__
2248 if (is_this_device_mounted(raid_device)) {
2249 log_it("Can't stop %s when it's mounted!", raid_device);
2250 return 1;
2251 }
2252 sprintf(program, "vinum stop -f %s", raid_device);
2253#else
2254 sprintf(program, "raidstop %s", raid_device);
2255// sprintf (program, "raidstop " RAID_DEVICE_STUB "*");
2256#endif
2257 log_msg(1, "program = %s", program);
2258 res = run_program_and_log_output(program, 1);
[128]2259 if (g_fprep) {
2260 fprintf(g_fprep, "%s\n", program);
2261 }
2262 if (res) {
2263 log_msg(1, "Warning - failed to stop RAID device %s", raid_device);
2264 }
[1]2265 retval += res;
2266 return (retval);
2267}
2268
2269
2270int start_all_raid_devices(struct mountlist_itself *mountlist)
2271{
2272 int i;
[128]2273 int retval = 0;
[1]2274 int res;
[128]2275
2276 for (i = 0; i < mountlist->entries; i++) {
2277 if (!strncmp
2278 (mountlist->el[i].device, RAID_DEVICE_STUB,
2279 strlen(RAID_DEVICE_STUB))) {
2280 log_msg(1, "Starting %s", mountlist->el[i].device);
2281 res = start_raid_device(mountlist->el[i].device);
2282 retval += res;
2283 }
2284 }
2285 if (retval) {
2286 log_msg(1, "Started all s/w raid devices OK");
2287 } else {
2288 log_msg(1, "Failed to start some/all s/w raid devices");
2289 }
2290 return (retval);
[1]2291}
2292
2293/**
2294 * Stop all software RAID devices listed in @p mountlist.
2295 * @param mountlist The mountlist to stop the RAID devices in.
2296 * @return The number of errors encountered (0 for success).
2297 * @bug @p mountlist is not used.
2298 */
2299int stop_all_raid_devices(struct mountlist_itself *mountlist)
2300{
2301 /** int *************************************************************/
2302 int retval = 0;
2303#ifndef __FreeBSD__
2304 int res;
2305#endif
2306
2307 /** char ************************************************************/
2308 char *incoming;
2309#ifndef __FreeBSD__
2310 char *dev;
2311#endif
2312 /** pointers ********************************************************/
2313#ifndef __FreeBSD__
2314 char *p;
2315#endif
2316 FILE *fin;
2317 int i;
2318
2319 /** end ****************************************************************/
2320
2321 malloc_string(dev);
2322 malloc_string(incoming);
2323 assert(mountlist != NULL);
2324
2325 for (i = 0; i < 3; i++) {
2326#ifdef __FreeBSD__
[128]2327 fin =
2328 popen
2329 ("vinum list | grep '^[PVS]' | sed 's/S/1/;s/P/2/;s/V/3/' | sort | cut -d' ' -f2",
2330 "r");
[1]2331 if (!fin) {
2332 paranoid_free(dev);
2333 paranoid_free(incoming);
2334 return (1);
2335 }
[128]2336 for (fgets(incoming, MAX_STR_LEN - 1, fin); !feof(fin);
2337 fgets(incoming, MAX_STR_LEN - 1, fin)) {
[1]2338 retval += stop_raid_device(incoming);
2339 }
2340#else
2341 fin = fopen("/proc/mdstat", "r");
2342 if (!fin) {
2343 log_OS_error("/proc/mdstat");
2344 paranoid_free(dev);
2345 paranoid_free(incoming);
2346 return (1);
2347 }
[128]2348 for (fgets(incoming, MAX_STR_LEN - 1, fin); !feof(fin);
2349 fgets(incoming, MAX_STR_LEN - 1, fin)) {
2350 for (p = incoming;
2351 *p != '\0' && (*p != 'm' || *(p + 1) != 'd'
2352 || !isdigit(*(p + 2))); p++);
[1]2353 if (*p != '\0') {
2354 sprintf(dev, "/dev/%s", p);
2355 for (p = dev; *p > 32; p++);
2356 *p = '\0';
2357 res = stop_raid_device(dev);
2358 }
2359 }
2360#endif
2361 }
2362 paranoid_fclose(fin);
[128]2363 if (retval) {
2364 log_msg(1, "Warning - unable to stop some RAID devices");
2365 }
[1]2366 paranoid_free(dev);
2367 paranoid_free(incoming);
[128]2368 system("sync");
2369 system("sync");
2370 system("sync");
[1]2371 sleep(1);
2372 return (retval);
2373}
2374
2375
2376
2377/**
2378 * Decide which command we need to use to format a device of type @p format.
2379 * @param format The filesystem type we are about to format.
2380 * @param program Where to put the binary name for this format.
2381 * @return 0 for success, nonzero for failure.
2382 */
2383int which_format_command_do_i_need(char *format, char *program)
2384{
2385 /** int *************************************************************/
2386 int res = 0;
2387
2388 /** buffers *********************************************************/
2389 char *tmp;
2390
2391 /** end ***************************************************************/
2392
2393 malloc_string(tmp);
2394 assert_string_is_neither_NULL_nor_zerolength(format);
2395 assert(program != NULL);
2396
2397 if (strcmp(format, "swap") == 0) {
2398#ifdef __FreeBSD__
2399 strcpy(program, "true");
2400#else
2401 strcpy(program, "mkswap");
2402#endif
2403 } else if (strcmp(format, "vfat") == 0) {
2404 strcpy(program, "format-and-kludge-vfat");
2405#ifndef __FreeBSD__
2406 } else if (strcmp(format, "reiserfs") == 0) {
2407 strcpy(program, "mkreiserfs -ff");
2408 } else if (strcmp(format, "xfs") == 0) {
2409 strcpy(program, "mkfs.xfs -f -q");
2410 } else if (strcmp(format, "jfs") == 0) {
2411 strcpy(program, "mkfs.jfs");
2412 } else if (strcmp(format, "ext3") == 0) {
2413 strcpy(program, "mkfs -t ext2 -F -j -q");
2414 } else if (strcmp(format, "minix") == 0) {
2415 strcpy(program, "mkfs.minix");
2416#endif
2417 } else if (strcmp(format, "ext2") == 0) {
2418 strcpy(program, "mke2fs -F -q");
2419 } else {
2420#ifdef __FreeBSD__
2421 sprintf(program, "newfs_%s", format);
2422#else
2423 sprintf(program, "mkfs -t %s -c", format); // -c checks for bad blocks
2424#endif
[128]2425 sprintf(tmp, "Unknown format (%s) - assuming '%s' will do", format,
2426 program);
[1]2427 log_it(tmp);
2428 res = 0;
2429 }
2430 paranoid_free(tmp);
2431 return (res);
2432}
2433
2434
2435/**
2436 * Calculate the probable size of @p drive_name by adding up sizes in
2437 * @p mountlist.
2438 * @param mountlist The mountlist to use to calculate the size.
2439 * @param drive_name The drive to calculate the original size of.
2440 * @return The size of @p drive_name in kilobytes.
2441 */
2442long calc_orig_size_of_drive_from_mountlist(struct mountlist_itself
[128]2443 *mountlist, char *drive_name)
[1]2444{
2445 /** long ************************************************************/
2446 long original_size_of_drive;
2447
2448 /** int *************************************************************/
2449 int partno;
2450
2451 /** buffers *********************************************************/
2452 char *tmp;
2453
2454 /** end *************************************************************/
2455
2456 malloc_string(tmp);
2457 assert(mountlist != NULL);
2458 assert_string_is_neither_NULL_nor_zerolength(drive_name);
2459
[128]2460 for (original_size_of_drive = 0, partno = 0;
2461 partno < mountlist->entries; partno++) {
2462 if (strncmp
2463 (mountlist->el[partno].device, drive_name,
2464 strlen(drive_name)) == 0) {
[1]2465 original_size_of_drive += mountlist->el[partno].size;
2466 } else {
2467 sprintf(tmp, "Skipping %s", mountlist->el[partno].device);
2468// log_to_screen(tmp);
2469 }
2470 }
2471 original_size_of_drive = original_size_of_drive / 1024;
2472 paranoid_free(tmp);
2473 return (original_size_of_drive);
2474}
2475
2476
2477/**
2478 * Resize a drive's entries in @p mountlist proportionately to fit its new size.
2479 * There are a few problems with this function:
2480 * - It won't work if there was any unallocated space on the user's hard drive
2481 * when it was backed up.
2482 * - It won't work if the user's hard drive lies about its size (more common
2483 * than you'd think).
2484 *
2485 * @param mountlist The mountlist to use for resizing @p drive_name.
2486 * @param drive_name The drive to resize.
2487 */
2488void resize_drive_proportionately_to_suit_new_drives(struct mountlist_itself
[128]2489 *mountlist,
2490 char *drive_name)
[1]2491{
2492 /**buffers **********************************************************/
2493 char *tmp;
2494
2495 /** int *************************************************************/
2496 int partno, lastpart;
[128]2497 /** remove driveno, noof_drives stan benoit apr 2002**/
[1]2498
2499 /** float ***********************************************************/
2500 float factor;
2501 float new_size;
[128]2502// float newcylinderno;
[1]2503
2504 /** long *************************************************************/
2505 long newsizL;
2506 long current_size_of_drive = 0;
2507 long original_size_of_drive = 0;
[128]2508 long final_size; /* all in Megabytes */
[1]2509 struct mountlist_reference *drivemntlist;
2510
2511 /** structures *******************************************************/
2512
2513 /** end **************************************************************/
2514
2515 malloc_string(tmp);
2516 assert(mountlist != NULL);
2517 assert_string_is_neither_NULL_nor_zerolength(drive_name);
2518
2519 if (strlen(drive_name) >= strlen(RAID_DEVICE_STUB)) {
[128]2520 if (strncmp(drive_name, RAID_DEVICE_STUB, strlen(RAID_DEVICE_STUB))
2521 == 0) {
[1]2522 paranoid_free(tmp);
2523 return;
2524 }
2525 }
2526
2527 /*
2528 sprintf (tmp, "cp -f %s %s.pre-resize", g_mountlist_fname, g_mountlist_fname);
2529 run_program_and_log_output (tmp, FALSE);
2530 */
2531
2532 current_size_of_drive = get_phys_size_of_drive(drive_name);
[128]2533
[1]2534 if (current_size_of_drive <= 0) {
2535 log_it("Not resizing to match %s - can't find drive", drive_name);
2536 paranoid_free(tmp);
2537 return;
2538 }
[128]2539 sprintf(tmp, "Expanding entries to suit drive %s (%ld MB)", drive_name,
2540 current_size_of_drive);
[1]2541 log_to_screen(tmp);
2542
[128]2543 drivemntlist = malloc(sizeof(struct mountlist_reference));
2544 drivemntlist->el =
2545 malloc(sizeof(struct mountlist_line *) * MAX_TAPECATALOG_ENTRIES);
[1]2546
2547 if (!drivemntlist) {
2548 fatal_error("Cannot malloc temporary mountlist\n");
2549 }
2550 create_mountlist_for_drive(mountlist, drive_name, drivemntlist);
2551
2552 for (partno = 0; partno < drivemntlist->entries; partno++) {
2553 original_size_of_drive += drivemntlist->el[partno]->size;
2554 }
2555 original_size_of_drive = original_size_of_drive / 1024;
2556
2557 if (original_size_of_drive <= 0) {
[128]2558 sprintf(tmp, "Cannot resize %s's entries. Drive not found.",
2559 drive_name);
[1]2560 log_to_screen(tmp);
2561 paranoid_free(tmp);
2562 return;
2563 }
[128]2564 factor =
2565 (float) (current_size_of_drive) / (float) (original_size_of_drive);
2566 sprintf(tmp, "Disk %s was %ld MB; is now %ld MB; factor = %f",
2567 drive_name, original_size_of_drive, current_size_of_drive,
2568 factor);
[1]2569 log_to_screen(tmp);
2570
[128]2571 lastpart = drivemntlist->entries - 1;
[1]2572 for (partno = 0; partno < drivemntlist->entries; partno++) {
2573 /* the 'atoi' thing is to make sure we don't try to resize _images_, whose formats will be numeric */
[128]2574 if (!atoi(drivemntlist->el[partno]->format)) {
[1]2575 new_size = (float) (drivemntlist->el[partno]->size) * factor;
2576 } else {
2577 new_size = drivemntlist->el[partno]->size;
2578 }
[128]2579
[1]2580 if (!strcmp(drivemntlist->el[partno]->mountpoint, "image")) {
2581 log_msg(1, "Skipping %s (%s) because it's an image",
[128]2582 drivemntlist->el[partno]->device,
2583 drivemntlist->el[partno]->mountpoint);
2584 newsizL = (long) new_size; // It looks wrong but it's not
[1]2585 } else {
2586 newsizL = (long) new_size;
2587 }
[128]2588 sprintf(tmp, "Changing %s from %lld KB to %ld KB",
2589 drivemntlist->el[partno]->device,
2590 drivemntlist->el[partno]->size, newsizL);
[1]2591 log_to_screen(tmp);
2592 drivemntlist->el[partno]->size = newsizL;
2593 }
2594 final_size = get_phys_size_of_drive(drive_name);
2595 sprintf(tmp, "final_size = %ld MB", final_size);
2596 paranoid_free(tmp);
2597 log_to_screen(tmp);
2598}
2599
2600
2601/**
2602 * Resize all partitions in @p mountlist proportionately (each one
2603 * grows or shrinks by the same percentage) to fit them into the new
2604 * drives (presumably different from the old ones).
2605 * @param mountlist The mountlist to resize the drives in.
2606 */
2607void resize_mountlist_proportionately_to_suit_new_drives(struct mountlist_itself
[128]2608 *mountlist)
[1]2609{
2610 /** buffers *********************************************************/
2611 struct list_of_disks *drivelist;
2612
2613 /** int *************************************************************/
2614 int driveno;
2615
2616 /** end *************************************************************/
2617
2618 drivelist = malloc(sizeof(struct list_of_disks));
2619 assert(mountlist != NULL);
2620
2621 if (g_mountlist_fname[0] == '\0') {
[128]2622 log_it
2623 ("resize_mountlist_prop...() - warning - mountlist fname is blank");
2624 log_it("That does NOT affect the functioning of this subroutine.");
2625 log_it("--- Hugo, 2002/11/20");
[1]2626 }
2627 iamhere("Resizing mountlist");
2628 make_list_of_drives_in_mountlist(mountlist, drivelist);
2629 iamhere("Back from MLoDiM");
2630 for (driveno = 0; driveno < drivelist->entries; driveno++) {
[128]2631 resize_drive_proportionately_to_suit_new_drives(mountlist,
2632 drivelist->
2633 el[driveno].
2634 device);
[1]2635 }
2636 log_to_screen("Mountlist adjusted to suit current hard drive(s)");
2637 paranoid_free(drivelist);
2638}
2639
2640/**
2641 * Create a mountlist_reference structure for @p drive_name in @p mountlist.
2642 * @param mountlist The complete mountlist to get the drive references from.
2643 * @param drive_name The drive to put in @p drivemntlist.
2644 * @param drivemntlist The mountlist_reference structure to put the drive's entries in.
2645 * @note @p drivemntlist and @p drivemntlist->el must be allocated by the caller.
2646 * @author Ralph Grewe
2647 */
[128]2648void create_mountlist_for_drive(struct mountlist_itself *mountlist,
2649 char *drive_name,
2650 struct mountlist_reference *drivemntlist)
2651{
[1]2652 int partno;
2653 char *tmp_drive_name, *c;
2654
2655 assert(mountlist != NULL);
2656 assert(drive_name != NULL);
2657 assert(drivemntlist != NULL);
2658
[128]2659 log_msg(1, "Creating list of partitions for drive %s", drive_name);
[1]2660
[128]2661 tmp_drive_name = strdup(drive_name);
2662 if (!tmp_drive_name)
2663 fatal_error("Out of memory");
2664
[1]2665 /* devfs devices? */
[128]2666 c = strrchr(tmp_drive_name, '/');
2667 if (c && strncmp(c, "/disc", 5) == 0) {
2668 /* yup its devfs, change the "disc" to "part" so the existing code works */
2669 strcpy(c + 1, "part");
[1]2670 }
[128]2671 drivemntlist->entries = 0;
[1]2672 for (partno = 0; partno < mountlist->entries; partno++) {
[128]2673 if (strncmp
2674 (mountlist->el[partno].device, tmp_drive_name,
2675 strlen(tmp_drive_name)) == 0) {
2676 drivemntlist->el[drivemntlist->entries] =
2677 &mountlist->el[partno];
[1]2678 drivemntlist->entries++;
2679 }
2680 }
2681 if (tmp_drive_name)
[128]2682 free(tmp_drive_name);
[1]2683}
2684
2685/* @} - end of prepGroup */
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