source: MondoRescue/branches/2.2.10/mondo/src/common/libmondo-mountlist.c@ 2382

Last change on this file since 2382 was 2382, checked in by Bruno Cornec, 15 years ago
  • Change NFS support into a NetFS support to allow for multiple protocol in addition to NFS (NEEDS TESTING)

(Backport from 2.2.9)

  • Property svn:keywords set to Id
File size: 29.8 KB
RevLine 
[2052]1/* subroutines for handling mountlist
[128]2 $Id: libmondo-mountlist.c 2382 2009-09-10 00:07:16Z bruno $
[1]3*/
4
5
6/**
7 * @file
8 * Functions which manipulate the mountlist.
9 */
10
11#include "my-stuff.h"
[2209]12#include "mr_mem.h"
[1]13#include "mondostructures.h"
14#include "libmondo-mountlist.h"
[541]15#include "lib-common-externs.h"
[1]16#include "libmondo-raid-EXT.h"
17#include "libmondo-devices-EXT.h"
18#include "libmondo-tools-EXT.h"
19#include "libmondo-string-EXT.h"
[1236]20#include "newt-specific-EXT.h"
[1]21
22/*@unused@*/
[128]23//static char cvsid[] = "$Id: libmondo-mountlist.c 2382 2009-09-10 00:07:16Z bruno $";
[1]24
[1645]25/* Reference to global bkpinfo */
26extern struct s_bkpinfo *bkpinfo;
27
[1]28/**
29 * @addtogroup mountlistGroup
30 * @{
31 */
32/**
33 * Evaluate a drive within the mountlist for flaws. For example, too many
34 * primary partitions, the first logical isn't 5, duplicate partitions,
35 * ovar-allocated or under-allocated, unsupported format, silly size, or
36 * silly mountpoint. Under FreeBSD, this checks the disklabel too, for the above-mentioned
37 * errors as well as too many BSD partitions (more than 'h').
38 * @param mountlist The mountlist to check.
39 * @param drive The drive to check (e.g. @c /dev/hda).
[2207]40 * @return The flaws string found (NULL for success) allocated to be freed
[1]41 * @see evaluate_mountlist
42 */
[2207]43char *evaluate_drive_within_mountlist(struct mountlist_itself *mountlist, char *drive)
[1]44#ifdef __FreeBSD__
45{
46// FreeBSD-specific version of evaluate_drive_within_mountlist()
[128]47 /*@ int ************************************************************* */
48 int prev_part_no = 0;
[1]49 int curr_part_no = 0;
50 int pos = 0, npos = 0;
51 int res = 0;
52 int mountpoint_copies = 0;
53 int device_copies = 0;
54 int i = 0;
55 int cur_sp_no = 0;
56 int prev_sp_no = 0;
57 int foundsome = FALSE;
58
[128]59 /*@ buffers ******************************************************** */
[2261]60 char tmp = NULL;
[2316]61 char *device = NULL;
[1]62
[2209]63 char *flaws_str = NULL;
64
[128]65 /*@ long *********************************************************** */
66 long physical_drive_size = 0;
[1]67 long amount_allocated = 0;
68
[128]69 /*@ pointers ******************************************************* */
[1]70 char *part_table_fmt;
71
[128]72 /*@ initialize ***************************************************** */
73 prev_part_no = 0;
[2323]74 mr_asprintf(flaws_str, "%s", "");
[1]75
76
[128]77 physical_drive_size = get_phys_size_of_drive(drive);
[1]78
[128]79 if (physical_drive_size < 0) {
[2323]80 mr_asprintf(tmp, " %s does not exist.", drive);
[2209]81 mr_strcat(flaws_str, "%s", tmp);
[128]82 } else {
[2323]83 mr_asprintf(tmp, "%s is %ld MB", drive, physical_drive_size);
[128]84 }
85 log_it(tmp);
[2261]86 mr_free(tmp);
[1]87
88
[128]89 /* check DD */
90 for (cur_sp_no = 'a'; cur_sp_no < 'z'; ++cur_sp_no) {
[2323]91 mr_asprintf(device, "%s%c", drive, cur_sp_no);
[2316]92 if (find_device_in_mountlist(mountlist, device) >= 0) {
[128]93 foundsome = TRUE;
[2316]94 }
95 mr_free(device);
[128]96 }
97 if (foundsome) {
98 for (cur_sp_no = 'a'; cur_sp_no < 'z'; ++cur_sp_no) {
[2323]99 mr_asprintf(device, "%s%c", drive, cur_sp_no);
[128]100 pos = find_device_in_mountlist(mountlist, device);
101 if (pos < 0) {
[2316]102 mr_free(device);
[128]103 continue;
104 }
105 /* is it too big? */
106 if (curr_part_no > 'h') {
[2323]107 mr_asprintf(tmp, " Can only have up to 'h' in disklabel.");
[128]108 log_it(tmp);
[2207]109 mr_strcat(flaws_str, tmp);
[2261]110 mr_free(tmp);
[128]111 res++;
112 }
113 /* does partition /dev/adXsYZ exist more than once in the mountlist? */
114 for (i = 0, mountpoint_copies = 0, device_copies = 0;
115 i < mountlist->entries; i++) {
116 if (!strcmp(device, mountlist->el[i].device)) {
117 device_copies++;
118 }
119 }
120 if (device_copies > 1) {
[2323]121 mr_asprintf(tmp, " %s %s's.", number_to_text(device_copies), device);
[128]122 if (!strstr(flaws_str, tmp)) {
123 log_it(tmp);
[2207]124 mr_strcat(flaws_str, tmp);
[128]125 res++;
126 }
[2261]127 mr_free(tmp);
[128]128 }
129 /* silly partition size? */
130 if (mountlist->el[pos].size < 8192
131 && strcmp(mountlist->el[pos].mountpoint, "lvm")) {
[2323]132 mr_asprintf(tmp, " %s is tiny!", device);
[128]133 log_it(tmp);
[2207]134 mr_strcat(flaws_str, tmp);
[2261]135 mr_free(tmp);
[128]136 res++;
137 }
138 /* mountpoint should begin with / unless it is swap, lvm or raid */
139 if (strcmp(mountlist->el[pos].mountpoint, "swap")
140 && strcmp(mountlist->el[pos].mountpoint, "lvm")
141 && strcmp(mountlist->el[pos].mountpoint, "raid")
142 && strcmp(mountlist->el[pos].mountpoint, "image")
143 && strcmp(mountlist->el[pos].mountpoint, "none")
144 && mountlist->el[pos].mountpoint[0] != '/') {
[2323]145 mr_asprintf(tmp, " %s has a weird mountpoint.", device);
[128]146 log_it(tmp);
[2207]147 mr_strcat(flaws_str, tmp);
[2261]148 mr_free(tmp);
[128]149 res++;
150 }
151 /* is format sensible? */
152 if (!is_this_a_valid_disk_format(mountlist->el[pos].format)) {
[2323]153 mr_asprintf(tmp, " %s has unsupported format %s.", device, mountlist->el[pos].format);
[128]154 log_it(tmp);
[2207]155 mr_strcat(flaws_str, tmp);
[2261]156 mr_free(tmp);
[128]157 res++;
158 }
[2316]159 mr_free(device);
160
[2125]161 amount_allocated += mountlist->el[pos].size / 1024L;
[128]162 prev_sp_no = cur_sp_no;
163 }
164 }
[1]165
[128]166 npos = pos = 0;
167 for (curr_part_no = 1; curr_part_no < 99; curr_part_no++) {
[2316]168 device = build_partition_name(drive, curr_part_no);
[128]169 pos = find_device_in_mountlist(mountlist, device);
170 npos = 0;
171 for (cur_sp_no = 'a'; cur_sp_no <= 'h'; cur_sp_no++) {
[2323]172 mr_asprintf(tmp, "%ss%i%c", device, curr_part_no, cur_sp_no);
[2316]173 if (find_device_in_mountlist(mountlist, tmp) >= 0) {
[128]174 npos++;
[2316]175 }
176 mr_free(tmp);
[128]177 }
[2316]178 mr_free(device);
179
[128]180 if (((pos >= 0) || npos) && foundsome) {
[2207]181 mr_strcat(flaws_str, " %s has both DD and PC-style partitions.", drive);
[2209]182 return(flaws_str); // fatal error
[128]183 }
184
[2316]185 device = build_partition_name(drive, curr_part_no);
[128]186 if (pos > 0 && !npos) {
187 /* gap in the partition list? */
188 if (curr_part_no - prev_part_no > 1) {
189 if (prev_part_no == 0) {
[2323]190 mr_asprintf(tmp, " Gap prior to %s.", device);
[128]191 log_it(tmp);
[2209]192 mr_strcat(flaws_str, "%s", tmp);
[2261]193 mr_free(tmp);
[128]194 res++;
195 } else if (curr_part_no > 5
196 || (curr_part_no <= 4 && prev_part_no > 0)) {
[2323]197 mr_asprintf(tmp, " Gap between %ss%d and %d.", drive, prev_part_no, curr_part_no);
[128]198 log_it(tmp);
[2209]199 mr_strcat(flaws_str, "%s", tmp);
[2261]200 mr_free(tmp);
[128]201 res++;
202 }
203 }
204 /* GPT allows more than 4 primary partitions */
205 part_table_fmt = which_partition_format(drive);
206 /* no spare primary partitions to help accommodate the logical(s)? */
207 if ((curr_part_no >= 5 && prev_part_no == 4)
208 && (strcmp(part_table_fmt, "MBR") == 0)) {
[2323]209 mr_asprintf(tmp, " Partition %ss4 is occupied.", drive);
[128]210 log_it(tmp);
[2209]211 mr_strcat(flaws_str, "%s", tmp);
[2261]212 mr_free(tmp);
[128]213 res++;
214 }
215 /* does partition /dev/adXsY exist more than once in the mountlist? */
216 for (i = 0, mountpoint_copies = 0, device_copies = 0;
217 i < mountlist->entries; i++) {
218 if (!strcmp(device, mountlist->el[i].device)) {
219 device_copies++;
220 }
221 }
222 if (device_copies > 1) {
[2323]223 mr_asprintf(tmp, " %s %s's.", number_to_text(device_copies), device);
[2209]224 if (!strstr(flaws_str, "%s", tmp)) {
[128]225 log_it(tmp);
[2209]226 mr_strcat(flaws_str, "%s", tmp);
[128]227 res++;
228 }
[2261]229 mr_free(tmp);
[128]230 }
231 /* silly partition size? */
232 if (mountlist->el[pos].size < 8192
233 && strcmp(mountlist->el[pos].mountpoint, "lvm")) {
[2323]234 mr_asprintf(tmp, " %s is tiny!", device);
[128]235 log_it(tmp);
[2209]236 mr_strcat(flaws_str, "%s", tmp);
[2261]237 mr_free(tmp);
[128]238 res++;
239 }
240 /* mountpoint should begin with / unless it is swap, lvm or raid */
241 if (strcmp(mountlist->el[pos].mountpoint, "swap")
242 && strcmp(mountlist->el[pos].mountpoint, "lvm")
243 && strcmp(mountlist->el[pos].mountpoint, "raid")
244 && strcmp(mountlist->el[pos].mountpoint, "image")
245 && strcmp(mountlist->el[pos].mountpoint, "none")
246 && mountlist->el[pos].mountpoint[0] != '/') {
[2323]247 mr_asprintf(tmp, " %s has a weird mountpoint.", device);
[128]248 log_it(tmp);
[2209]249 mr_strcat(flaws_str, "%s", tmp);
[2261]250 mr_free(tmp);
[128]251 res++;
252 }
253 /* is format sensible? */
254 if (!is_this_a_valid_disk_format(mountlist->el[pos].format)) {
[2323]255 mr_asprintf(tmp, " %s has unsupported format %s.", device, mountlist->el[pos].format);
[128]256 log_it(tmp);
[2209]257 mr_strcat(flaws_str, "%s", tmp);
[2261]258 mr_free(tmp);
[128]259 res++;
260 }
261 } else {
262 /* Check subpartitions */
263 for (cur_sp_no = 'a'; cur_sp_no < 'z'; ++cur_sp_no) {
[2316]264 mr_free(device);
265 mr_asprintf(device, "%ss%d%c", drive, curr_part_no, cur_sp_no);
[128]266 pos = find_device_in_mountlist(mountlist, device);
267 if (pos < 0) {
268 continue;
269 }
270 /* is it too big? */
271 if (curr_part_no > 'h') {
[2323]272 mr_asprintf(tmp, " Can only have up to 'h' in disklabel.");
[128]273 log_it(tmp);
[2209]274 mr_strcat(flaws_str, "%s", tmp);
[2261]275 mr_free(tmp);
[128]276 res++;
277 }
278 /* does partition /dev/adXsYZ exist more than once in the mountlist? */
279 for (i = 0, mountpoint_copies = 0, device_copies = 0;
280 i < mountlist->entries; i++) {
281 if (!strcmp(device, mountlist->el[i].device)) {
282 device_copies++;
283 }
284 }
285 if (device_copies > 1) {
[2323]286 mr_asprintf(tmp, " %s %s's.", number_to_text(device_copies), device);
[128]287 if (!strstr(flaws_str, tmp)) {
288 log_it(tmp);
[2209]289 mr_strcat(flaws_str, "%s", tmp);
[128]290 res++;
291 }
[2261]292 mr_free(tmp);
[128]293 }
294 /* silly partition size? */
295 if (mountlist->el[pos].size < 8192
296 && strcmp(mountlist->el[pos].mountpoint, "lvm")) {
[2323]297 mr_asprintf(tmp, " %s is tiny!", device);
[128]298 log_it(tmp);
[2209]299 mr_strcat(flaws_str, "%s", tmp);
[2261]300 mr_free(tmp);
[128]301 res++;
302 }
303 /* mountpoint should begin with / unless it is swap, lvm or raid */
304 if (strcmp(mountlist->el[pos].mountpoint, "swap")
305 && strcmp(mountlist->el[pos].mountpoint, "lvm")
306 && strcmp(mountlist->el[pos].mountpoint, "raid")
307 && strcmp(mountlist->el[pos].mountpoint, "image")
308 && strcmp(mountlist->el[pos].mountpoint, "none")
309 && mountlist->el[pos].mountpoint[0] != '/') {
[2323]310 mr_asprintf(tmp, " %s has a weird mountpoint.", device);
[128]311 log_it(tmp);
[2209]312 mr_strcat(flaws_str, "%s", tmp);
[2261]313 mr_free(tmp);
[128]314 res++;
315 }
316 /* is format sensible? */
317 if (!is_this_a_valid_disk_format
318 (mountlist->el[pos].format)) {
[2323]319 mr_asprintf(tmp, " %s has unsupported format %s.", device, mountlist->el[pos].format);
[128]320 log_it(tmp);
[2209]321 mr_strcat(flaws_str, "%s", tmp);
[2261]322 mr_free(tmp);
[128]323 res++;
324 }
[2125]325 amount_allocated += mountlist->el[pos].size / 1024L;
[128]326 prev_sp_no = cur_sp_no;
327 }
328 }
[2316]329 mr_free(device);
[128]330
331 /* OK, continue with main loop */
[2125]332 amount_allocated += mountlist->el[pos].size / 1024L;
[128]333 prev_part_no = curr_part_no;
334 }
335
336 /* Over-allocated the disk? Unallocated space on disk? */
337 if (amount_allocated > physical_drive_size) // Used to be +1, but what if you're 1 MB too high?
338 {
[2324]339 mr_asprintf(tmp, " %ld MB over-allocated on %s.", amount_allocated - physical_drive_size, drive);
[128]340 log_it(tmp);
[2209]341 mr_strcat(flaws_str, "%s", tmp);
[2261]342 mr_free(tmp);
[128]343 res++;
344 } else if (amount_allocated < physical_drive_size - 1) { /* NOT AN ERROR, JUST A WARNING :-) */
[2324]345 mr_asprintf(tmp, " %ld MB unallocated on %s.", physical_drive_size - amount_allocated, drive);
[1236]346 log_it(tmp);
[2209]347 mr_strcat(flaws_str, "%s", tmp);
[2261]348 mr_free(tmp);
[128]349 }
350 if (res) {
[2209]351 return (NULL);
[128]352 } else {
[2209]353 return (flaws_str);
[128]354 }
[1]355}
356
357#else
358// Linux-specific version of evaluate_drive_within_mountlist()
359{
360
[128]361 /*@ int ************************************************************* */
362 int prev_part_no = 0;
[1]363 int curr_part_no = 0;
364 int pos = 0;
365 int res = 0;
366 int mountpoint_copies = 0;
367 int device_copies = 0;
368 int i = 0;
369
[128]370 /*@ buffers ******************************************************** */
[2261]371 char *tmp = NULL;
372 char *device = NULL;
[2209]373 char *flaws_str = NULL;
[1]374
[128]375 /*@ long *********************************************************** */
[1295]376 long physical_drive_size = 0L;
377 long amount_allocated = 0L;
[1]378
[128]379 /*@ pointers ******************************************************* */
[2204]380 char *part_table_fmt = NULL;
[1]381
[128]382 /*@ initialize ***************************************************** */
383 assert_string_is_neither_NULL_nor_zerolength(drive);
384 assert(mountlist != NULL);
[2323]385 mr_asprintf(flaws_str, "%s", "");
[1]386
[128]387 prev_part_no = 0;
[1]388
[128]389 physical_drive_size = get_phys_size_of_drive(drive);
[1]390
[128]391 if (physical_drive_size < 0) {
[2323]392 mr_asprintf(tmp, " %s does not exist.", drive);
[2372]393 log_it(tmp);
[2209]394 mr_strcat(flaws_str, "%s", tmp);
[128]395 res++;
[2261]396 mr_free(tmp);
[2316]397 return(flaws_str);
[128]398 } else {
[2324]399 log_it("%s is %ld MB", drive, physical_drive_size);
[128]400 }
[1]401
[128]402 for (curr_part_no = 1; curr_part_no < 99; curr_part_no++) {
[2316]403 device = build_partition_name(drive, curr_part_no);
[128]404 pos = find_device_in_mountlist(mountlist, device);
405 if (pos < 0) {
406 continue;
407 }
[2382]408 log_msg(2, "Processing partition %s on %s #%d in mountlist", device, drive, pos);
[128]409 /* gap in the partition list? */
410 if (curr_part_no - prev_part_no > 1) {
411 if (prev_part_no == 0) {
[2323]412 mr_asprintf(tmp, " Gap prior to %s.", device);
[128]413 log_it(tmp);
[2209]414 mr_strcat(flaws_str, "%s", tmp);
[2261]415 mr_free(tmp);
[128]416 res++;
417 } else if (curr_part_no > 5
418 || (curr_part_no <= 4 && prev_part_no > 0)) {
[2324]419 mr_asprintf(tmp, " Gap on %s between %d and %d.", drive, prev_part_no, curr_part_no);
[128]420 log_it(tmp);
[2209]421 mr_strcat(flaws_str, "%s", tmp);
[2261]422 mr_free(tmp);
[128]423 res++;
424 }
425 }
426 /* GPT allows more than 4 primary partitions */
427 part_table_fmt = which_partition_format(drive);
428 /* no spare primary partitions to help accommodate the logical(s)? */
[2330]429 if ((curr_part_no >= 5 && prev_part_no == 4) && (strcmp(part_table_fmt, "MBR") == 0)) {
[2323]430 mr_asprintf(tmp, " Partition 4 of %s is occupied.", drive);
[128]431 log_it(tmp);
[2209]432 mr_strcat(flaws_str, "%s", tmp);
[2261]433 mr_free(tmp);
[128]434 res++;
435 }
[2330]436 mr_free(part_table_fmt);
437
[128]438 /* does partition /dev/hdNX exist more than once in the mountlist? */
439 for (i = 0, mountpoint_copies = 0, device_copies = 0;
440 i < mountlist->entries; i++) {
441 if (!strcmp(device, mountlist->el[i].device)) {
442 device_copies++;
443 }
444 }
445 if (device_copies > 1) {
[2323]446 mr_asprintf(tmp, " %s %s's.", number_to_text(device_copies), device);
[128]447 if (!strstr(flaws_str, tmp)) {
448 log_it(tmp);
[2209]449 mr_strcat(flaws_str, "%s", tmp);
[128]450 res++;
451 }
[2261]452 mr_free(tmp);
[128]453 }
454 /* silly partition size? */
455 if (mountlist->el[pos].size < 8192
456 && strcmp(mountlist->el[pos].mountpoint, "lvm")) {
[2323]457 mr_asprintf(tmp, " %s is tiny!", device);
[128]458 log_it(tmp);
[2209]459 mr_strcat(flaws_str, "%s", tmp);
[2261]460 mr_free(tmp);
[128]461 res++;
462 }
463 /* mountpoint should begin with / unless it is swap, lvm or raid */
464 if (strcmp(mountlist->el[pos].mountpoint, "swap")
465 && strcmp(mountlist->el[pos].mountpoint, "lvm")
466 && strcmp(mountlist->el[pos].mountpoint, "raid")
467 && strcmp(mountlist->el[pos].mountpoint, "image")
468 && mountlist->el[pos].mountpoint[0] != '/') {
[2323]469 mr_asprintf(tmp, " %s has a weird mountpoint.", device);
[128]470 log_it(tmp);
[2209]471 mr_strcat(flaws_str, "%s", tmp);
[2261]472 mr_free(tmp);
[128]473 res++;
474 }
475 /* is format sensible? */
476 if (!is_this_a_valid_disk_format(mountlist->el[pos].format)) {
[2323]477 mr_asprintf(tmp, " %s has unsupported format %s.", device, mountlist->el[pos].format);
[128]478 log_it(tmp);
[2209]479 mr_strcat(flaws_str, "%s", tmp);
[2261]480 mr_free(tmp);
[128]481 res++;
482 }
483 /* OK, continue with main loop */
[2125]484 amount_allocated += mountlist->el[pos].size / 1024L;
[128]485 prev_part_no = curr_part_no;
[2316]486 mr_free(device);
[1]487 }
[128]488
489 /* Over-allocated the disk? Unallocated space on disk? */
490 if (amount_allocated > physical_drive_size + 1) {
[2324]491 mr_asprintf(tmp, " %ld MB over-allocated on %s.", amount_allocated - physical_drive_size, drive);
[128]492 log_it(tmp);
[2209]493 mr_strcat(flaws_str, "%s", tmp);
[2261]494 mr_free(tmp);
[128]495 res++;
496 } else if (amount_allocated < physical_drive_size - 1) { /* NOT AN ERROR, JUST A WARNING :-) */
[2324]497 mr_asprintf(tmp, " %ld MB unallocated on %s.", physical_drive_size - amount_allocated, drive);
[1236]498 log_it(tmp);
[2209]499 mr_strcat(flaws_str, "%s", tmp);
[2261]500 mr_free(tmp);
[1]501 }
502
[2372]503 if (res == 0) {
504 mr_free(flaws_str);
[2382]505 log_msg(2, "Fine, no error in evaluate_drive_within_mountlist");
[2209]506 return (NULL);
[128]507 } else {
[2382]508 log_msg(2, "Error in evaluate_drive_within_mountlist: %s", flaws_str);
[2209]509 return (flaws_str);
[128]510 }
[1]511}
512#endif
513
514
515/**
516 * Evaluate a whole mountlist for flaws. Calls evaluate_drive_within_mountlist()
517 * for each drive, and then spreads the flaws across three lines.
518 * @param mountlist The mountlist to evaluate.
519 * @param flaws_str_A Where to put the first line listing errors found.
520 * @param flaws_str_B Where to put the second line listing errors found.
521 * @param flaws_str_C Where to put the third line listing errors found.
522 * @return The number of flaws found (0 for success).
523 * @see evaluate_drive_within_mountlist
524 */
[2352]525char *evaluate_mountlist(struct mountlist_itself *mountlist, int *res) {
[1]526
[128]527 /*@ buffer *********************************************************** */
528 struct list_of_disks *drivelist;
[2202]529 char *tmp = NULL;
530 char *flaws_str = NULL;
[1]531
[128]532 /*@ int ************************************************************** */
[1]533 int i = 0;
534
[128]535 /*@ initialize ******************************************************* */
[1]536
[2352]537 *res = 0;
[128]538 drivelist = malloc(sizeof(struct list_of_disks));
539 assert(mountlist != NULL);
[1]540
[2323]541 mr_asprintf(flaws_str, "%s", "");
[2209]542
[128]543 make_list_of_drives_in_mountlist(mountlist, drivelist);
[1]544
[128]545 log_it("Evaluating mountlist...");
[1]546
[128]547 for (i = 0; i < drivelist->entries; i++) {
548 if (strstr
549 (drivelist->el[i].device,
550 DONT_KNOW_HOW_TO_EVALUATE_THIS_DEVICE_TYPE)) {
[2324]551 log_it(" Not evaluating %s (I don't know how yet)", drivelist->el[i].device);
[128]552 } else {
[2235]553 log_msg(8, "Evaluating drive #%d (%s) within mountlist", i, drivelist->el[i].device);
[2306]554 tmp = evaluate_drive_within_mountlist(mountlist, drivelist->el[i].device);
[2372]555 if (tmp != NULL) {
[2352]556 (*res)++;
[128]557 }
558 }
[2207]559 log_msg(8,"Entry: %d (%s)", i, drivelist->el[i].device);
[2306]560 /* BCO: tmp can be NULL */
[2219]561 if (tmp != NULL) {
562 log_msg(8,"Adding: %s to %s", tmp, flaws_str);
563 mr_strcat(flaws_str, "%s", tmp);
[2324]564 mr_free(tmp);
[2219]565 }
[1]566 }
[2352]567 *res += look_for_duplicate_mountpoints(mountlist, flaws_str);
568 return(flaws_str);
[1]569}
570
571
572/**
573 * Find the index number of @p device in the mountlist.
574 * The device given must match @p mountlist->el[N].device exactly, case-sensitive.
575 * @param mountlist The mountlist to search in.
576 * @param device The device to search for.
577 * @return The zero-based index of the device, or -1 if it could not be found.
578 */
579int
[128]580find_device_in_mountlist(struct mountlist_itself *mountlist, char *device)
[1]581{
582
[128]583 /*@ int ************************************************************** */
584 int i = 0;
[1]585
[128]586 assert(mountlist != NULL);
587 assert_string_is_neither_NULL_nor_zerolength(device);
588 for (i = 0;
589 i < mountlist->entries
590 && strcmp(mountlist->el[i].device, device) != 0; i++);
591
592 if (i == mountlist->entries) {
593 return (-1);
594 } else {
595 return (i);
596 }
[1]597}
598
599
600/**
601 * Look for duplicate mountpoints in @p mountlist.
602 * @param mountlist The mountlist to check.
603 * @param flaws_str The flaws string to append the results to.
604 * @return The number of mountpoints that have duplicates, or 0 for success.
605 */
606int
[2209]607look_for_duplicate_mountpoints(struct mountlist_itself *mountlist, char *flaws_str)
[1]608{
609
[128]610 /*@ int ************************************************************* */
611 int res = 0;
[1]612 int currline = 0;
613 int i = 0;
614 int copies = 0;
615 int last_copy = 0;
616
[128]617 /*@ buffetr ********************************************************* */
[2204]618 char *curr_mountpoint = NULL;
619 char *tmp = NULL;
[1]620
[128]621 assert(mountlist != NULL);
622 assert(flaws_str != NULL);
[2204]623
[128]624 for (currline = 0; currline < mountlist->entries; currline++) {
[2323]625 mr_asprintf(curr_mountpoint, "%s", mountlist->el[currline].mountpoint);
[128]626 for (i = 0, copies = 0, last_copy = -1; i < mountlist->entries;
627 i++) {
628 if (!strcmp(mountlist->el[i].mountpoint, curr_mountpoint)
629 && strcmp(mountlist->el[i].mountpoint, "lvm")
630 && strcmp(mountlist->el[i].mountpoint, "swap")) {
631 last_copy = i;
632 copies++;
633 }
634 }
635 if (copies > 1 && last_copy == currline
636 && strcmp(curr_mountpoint, "raid")) {
[2323]637 mr_asprintf(tmp, " %s %s's.", number_to_text(copies), curr_mountpoint);
[2209]638 mr_strcat(flaws_str, "%s", tmp);
[128]639 log_it(tmp);
[2324]640 mr_free(tmp);
[128]641 res++;
642 }
[2324]643 mr_free(curr_mountpoint);
[1]644 }
[128]645 return (res);
[1]646}
647
648
649/**
650 * Make a list of the drives mentioned in the mountlist.
651 * @param mountlist The mountlist to examine.
652 * @param drivelist Where to put the list of drives found.
653 * @return The number of physical (non-RAID non-LVM) drives found, or \<= 0 for error.
654 */
655int
[128]656make_list_of_drives_in_mountlist(struct mountlist_itself *mountlist,
657 struct list_of_disks *drivelist)
[1]658{
659
[128]660 /*@ int ************************************************************* */
661 int lino;
662 int noof_drives;
663 int j;
[1]664
[128]665 /*@ buffers ********************************************************* */
[2204]666 char *drive = NULL;
[2230]667 char *truncdrive = NULL;
[1]668
[128]669 long long size;
[1]670
[128]671 assert(mountlist != NULL);
672 assert(drivelist != NULL);
673 log_it("Making list of drives");
674 for (lino = 0, noof_drives = 0; lino < mountlist->entries; lino++) {
[1]675
[2323]676 mr_asprintf(drive, "%s", mountlist->el[lino].device);
[128]677 if (!strncmp(drive, RAID_DEVICE_STUB, strlen(RAID_DEVICE_STUB))) {
[2205]678 log_msg(8, "Not putting %s in list of drives: it's a virtual drive", drive);
[2324]679 mr_free(drive);
[128]680 continue;
681 }
[1]682
[128]683 size = mountlist->el[lino].size;
684 if (size == 0) {
[2205]685 log_msg(8, "Not putting %s in list of drives: it has zero size (maybe an LVM volume)", drive);
[2324]686 mr_free(drive);
[128]687 continue;
688 }
689
[2205]690 log_msg(8, "Putting %s with size %lli in list of drives", drive, size);
[1]691
[2237]692 /* memory allocation */
[2230]693 truncdrive = truncate_to_drive_name(drive);
[2324]694 mr_free(drive);
[2237]695
[2230]696 log_msg(8, "drive truncated to %s", truncdrive);
[2206]697
[128]698 for (j = 0;
699 j < noof_drives
[2230]700 && strcmp(drivelist->el[j].device, truncdrive) != 0; j++) {
[128]701 continue;
[2205]702 }
[128]703 if (j == noof_drives) {
[2237]704 strncpy(drivelist->el[noof_drives].device, truncdrive, 63);
[2235]705 drivelist->el[noof_drives].device[63] = '\0';
[2236]706 log_msg(8,"Adding drive %s to list", drivelist->el[noof_drives].device);
[2235]707 noof_drives++;
[128]708 }
[2230]709 paranoid_free(truncdrive);
[2237]710 if (noof_drives >= MAXIMUM_DISKS_PER_RAID_DEV) {
711 log_msg(0, "Unable to handle mountlist with more than %d lines", MAXIMUM_DISKS_PER_RAID_DEV);
712 log_to_screen("Unable to handle a so big mountlist");
713 finish(1);
714 }
[1]715 }
[128]716 drivelist->entries = noof_drives;
[2235]717 log_msg(8, "Made list of %d drives",noof_drives);
[1]718
[128]719 return (noof_drives);
[1]720}
721
722
723/**
724 * Make a list of RAID partitions not currently associated with any RAID device.
725 * The user may add any of these partitions to the RAID device.
726 * @param output_list Where to put the list of unallocated RAID partitions.
727 * @param mountlist The mountlist to examine.
728 * @param raidlist The raidlist to examine.
729 */
[128]730void make_list_of_unallocated_raid_partitions(struct mountlist_itself
731 *output_list,
732 struct mountlist_itself
733 *mountlist,
734 struct raidlist_itself
735 *raidlist)
[1]736{
737
[128]738 /*@ int ************************************************************* */
739 int items = 0;
[1]740 int i = 0;
741 int used_by = 0;
742
[128]743 assert(output_list != NULL);
744 assert(mountlist != NULL);
745 assert(raidlist != NULL);
746 log_it("MLOURP -- starting");
747 items = 0;
[1]748
749
[128]750 for (i = 0; i < mountlist->entries; i++) {
751 if (strstr(mountlist->el[i].mountpoint, "raid")) {
[2324]752 used_by = which_raid_device_is_using_this_partition(raidlist,
[128]753 mountlist->el[i].
754 device);
755 if (used_by < 0) {
756 memcpy((void *) &output_list->el[items++],
757 (void *) &mountlist->el[i],
758 sizeof(struct mountlist_line));
[2324]759 log_it("%s is available; user may choose to add it to raid device", output_list->el[items - 1].device);
[128]760 }
761 }
[1]762 }
[128]763 output_list->entries = items;
764 log_it("MLUORP -- ending");
[1]765}
766
767
768/**
769 * Get the size of a mountlist entry by the @c device field.
770 * @param mountlist The mountlist to search in.
771 * @param device The device to search for
772 * @return The size of the device (in KB), or -1 if it could not be found.
773 */
774long long
[128]775size_of_specific_device_in_mountlist(struct mountlist_itself *mountlist,
776 char *device)
[1]777{
[128]778 /*@ int ************************************************************** */
779 int i = 0;
[1]780
781
[128]782 assert(mountlist != NULL);
783 assert_string_is_neither_NULL_nor_zerolength(device);
[1]784
[128]785 for (i = 0;
786 i < mountlist->entries && strcmp(mountlist->el[i].device, device);
787 i++);
788 if (i == mountlist->entries) {
789 return (-1);
790 } else {
791 return (mountlist->el[i].size);
792 }
[1]793}
794
795
796/**
797 * Load a file on disk into @p mountlist.
798 * The file on disk should consist of multiple lines, each containing 4 or 5
799 * columns: the device, the mountpoint, the filesystem type, the size in kilobytes, and optionally the filesystem label.
800 * Comments begin with a '#' without any leading whitespace. Any duplicate
801 * entries are renamed.
802 * @param mountlist The mountlist to load into.
803 * @param fname The name of the file to load the mountlist from.
804 * @return 0 for success, 1 for failure.
805 */
[128]806int load_mountlist(struct mountlist_itself *mountlist, char *fname)
[1]807{
[2204]808 FILE *fin = NULL;
[128]809 /* malloc ** */
[2204]810 char *incoming = NULL;
811 char *siz = NULL;
812 char *tmp = NULL;
813 char *p = NULL;
[1]814
[2204]815 int items = 0;
816 int j = 0;
817 int res = 0;
[1]818
[128]819 assert(mountlist != NULL);
820 assert_string_is_neither_NULL_nor_zerolength(fname);
[2204]821
[128]822 if (!(fin = fopen(fname, "r"))) {
823 log_it("Unable to open mountlist - '%s'", fname);
[541]824 log_to_screen("Cannot open mountlist");
[128]825 return (1);
826 }
[2204]827 malloc_string(siz);
[128]828 log_it("Loading mountlist...");
[2357]829 mr_getline(incoming, fin);
[128]830 while (!feof(fin)) {
[1]831#if linux
[2357]832 res = sscanf(incoming, "%s %s %s %s %s", mountlist->el[items].device, mountlist->el[items].mountpoint, mountlist->el[items].format, siz, mountlist->el[items].label);
[2204]833 if (res < 5) {
834 /* no label found */
[2206]835 log_msg(4, "no label found for %s",mountlist->el[items].device);
836 strcpy(mountlist->el[items].label,"");
[2204]837 }
[1]838#elif __FreeBSD__
[2357]839 res = sscanf(incoming, "%s %s %s %s", mountlist->el[items].device, mountlist->el[items].mountpoint, mountlist->el[items].format, siz);
[2206]840 strcpy(mountlist->el[items].label,"");
[1]841#endif
842
[128]843 if (!strcmp(mountlist->el[items].device, "/proc") ||
844 !strcmp(mountlist->el[items].device, "proc") ||
845 !strcmp(mountlist->el[items].device, "/sys") ||
846 !strcmp(mountlist->el[items].device, "sys") ||
847 !strcmp(mountlist->el[items].device, "/devpts") ||
848 !strcmp(mountlist->el[items].device, "devpts")
849 ) {
[2357]850 log_msg(1, "Ignoring %s in mountlist - not loading that line :) ", mountlist->el[items].device);
851 mr_free(incoming);
852 mr_getline(incoming, fin);
[128]853 continue;
854 }
855 mountlist->el[items].size = atoll(siz);
856 if (mountlist->el[items].device[0] != '\0'
857 && mountlist->el[items].device[0] != '#') {
858 for (j = 0;
859 j < items
860 && strcmp(mountlist->el[j].device,
861 mountlist->el[items].device); j++);
862 if (j < items) {
863 strcat(mountlist->el[items].device, "_dup");
[2324]864 log_it("Duplicate entry in mountlist - renaming to %s", mountlist->el[items].device);
[128]865 }
[2323]866 mr_asprintf(tmp, "%s", mountlist->el[items].device);
[128]867 if (strstr(tmp, "/dev/md/")) {
868 log_it("format_device() --- Contracting %s", tmp);
869 p = strrchr(tmp, '/');
870 if (p) {
871 *p = *(p + 1);
872 *(p + 1) = *(p + 2);
873 *(p + 2) = *(p + 3);
874 }
[2357]875 log_it("It was %s; it is now %s", mountlist->el[items].device, tmp);
[128]876 strcpy(mountlist->el[items].device, tmp);
877 }
[2204]878 paranoid_free(tmp);
[1]879
[2357]880 log_it("%s %s %s %lld %s", mountlist->el[items].device, mountlist->el[items].mountpoint, mountlist->el[items].format, mountlist->el[items].size, mountlist->el[items].label);
[128]881 items++;
[2206]882 if (items >= MAX_MOUNTLIST_ENTRIES) {
883 log_to_screen("Too many lines in mountlist.. ABORTING");
884 finish(1);
885 }
[128]886 }
[2357]887 mr_free(incoming);
888 mr_getline(incoming, fin);
[1]889 }
[2357]890 mr_free(incoming);
[128]891 paranoid_fclose(fin);
892 mountlist->entries = items;
[1]893
[128]894 log_it("Mountlist loaded successfully.");
[2204]895 log_it("%d entries in mountlist", items);
896
[128]897 paranoid_free(siz);
898 return (0);
[1]899}
900
901
902
903/**
904 * Save @p mountlist to a file on disk.
905 * @param mountlist The mountlist to save.
906 * @param fname The file to save it to.
907 * @return 0 for success, 1 for failure.
908 * @see load_mountlist
909 */
[128]910int save_mountlist_to_disk(struct mountlist_itself *mountlist, char *fname)
[1]911{
[128]912 FILE *fout;
913 int i;
[1]914
[128]915 assert(mountlist != NULL);
916 assert_string_is_neither_NULL_nor_zerolength(fname);
[1]917
[128]918 log_it("save_mountlist_to_disk() --- saving to %s", fname);
919 if (!(fout = fopen(fname, "w"))) {
920 log_OS_error("WMTD - Cannot openout mountlist");
921 return (1);
922 }
923 for (i = 0; i < mountlist->entries; i++) {
924 fprintf(fout,
[1909]925 "%-15s %-15s %-15s %-15lld %-15s\n",
[128]926 mountlist->el[i].device, mountlist->el[i].mountpoint,
927 mountlist->el[i].format, mountlist->el[i].size,
[1899]928 mountlist->el[i].label);
[128]929 }
930 paranoid_fclose(fout);
931 return (0);
[1]932}
933
934
935/**
936 * Sort the mountlist alphabetically by device.
937 * The sorting is done in-place.
938 * @param mountlist The mountlist to sort.
939 */
[128]940void sort_mountlist_by_device(struct mountlist_itself *mountlist)
[1]941{
[128]942 int diff;
943 int lino = -999;
[1]944
[128]945 assert(mountlist != NULL);
[1]946
[128]947 while (lino < mountlist->entries) {
948 for (lino = 1; lino < mountlist->entries; lino++) {
949 diff =
950 strcmp_inc_numbers(mountlist->el[lino - 1].device,
951 mountlist->el[lino].device);
952 if (diff > 0) {
953 swap_mountlist_entries(mountlist, lino - 1, lino);
954 break;
955 }
956 }
[1]957 }
958}
959
[2204]960
[1]961/**
962 * Sort the mountlist alphabetically by mountpoint.
963 * The sorting is done in-place.
964 * @param mountlist The mountlist to sort.
965 * @param reverse If TRUE, then do a reverse sort.
966 */
[128]967void
968sort_mountlist_by_mountpoint(struct mountlist_itself *mountlist,
969 bool reverse)
[1]970{
[128]971 int diff;
972 int lino = -999;
[1]973
[128]974 assert(mountlist != NULL);
[1]975
[128]976 while (lino < mountlist->entries) {
977 for (lino = 1; lino < mountlist->entries; lino++) {
978 diff =
979 strcmp(mountlist->el[lino - 1].mountpoint,
980 mountlist->el[lino].mountpoint);
981 if ((diff > 0 && !reverse) || ((diff < 0 && reverse))) {
982 swap_mountlist_entries(mountlist, lino - 1, lino);
983 break;
984 }
985 }
[1]986 }
987}
988
989
990/**
991 * Swap two entries in the mountlist in-place.
992 * @param mountlist The mountlist to swap the entries in.
993 * @param a The index number of the first entry.
994 * @param b The index number of the second entry.
995 */
[128]996void
[1]997swap_mountlist_entries(struct mountlist_itself *mountlist, int a, int b)
998{
[128]999 /*@ mallocs *** */
[2204]1000 char *device = NULL;
1001 char *mountpoint = NULL;
1002 char *format = NULL;
[1]1003
[128]1004 long long size;
[1]1005
[128]1006 assert(mountlist != NULL);
1007 assert(a >= 0);
1008 assert(b >= 0);
[1]1009
[2323]1010 mr_asprintf(device, "%s", mountlist->el[a].device);
1011 mr_asprintf(mountpoint, "%s", mountlist->el[a].mountpoint);
1012 mr_asprintf(format, "%s", mountlist->el[a].format);
[1]1013
[128]1014 size = mountlist->el[a].size;
[1]1015
[128]1016 strcpy(mountlist->el[a].device, mountlist->el[b].device);
1017 strcpy(mountlist->el[a].mountpoint, mountlist->el[b].mountpoint);
1018 strcpy(mountlist->el[a].format, mountlist->el[b].format);
[1]1019
[128]1020 mountlist->el[a].size = mountlist->el[b].size;
[1]1021
[128]1022 strcpy(mountlist->el[b].device, device);
1023 strcpy(mountlist->el[b].mountpoint, mountpoint);
1024 strcpy(mountlist->el[b].format, format);
[1]1025
[128]1026 mountlist->el[b].size = size;
[2324]1027 mr_free(device);
1028 mr_free(mountpoint);
1029 mr_free(format);
[1]1030}
1031
1032/* @} - end of mountlistGroup */
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