source: MondoRescue/branches/2.2.10/mondo/src/mondorestore/mondo-rstr-newt.c@ 2816

Last change on this file since 2816 was 2816, checked in by Bruno Cornec, 13 years ago

svn merge (in svk) -r 2714:2773 2.2.9 in 2.2.10

r4207@localhost (orig r2716): bruno | 2011-02-03 01:29:51 +0100

  • Increase boot size again to support better fedora 13/14


r4208@localhost (orig r2717): bruno | 2011-02-12 15:43:36 +0100

  • Excluding vmhgfs FS for VMWare guests mounting areas of the host.


r4209@localhost (orig r2718): bruno | 2011-02-18 00:30:35 +0100
-Extend EXTRA-SIZE for Debian 6.0 (at least)


r4210@localhost (orig r2719): bruno | 2011-02-18 00:45:40 +0100

  • Fix #462 (removes temp dir if analyze-my-lvm launched in stand alonae mode)


r4213@localhost (orig r2722): bruno | 2011-02-25 18:44:47 +0100

  • Fixes for RHEL6 support at least around dm extensions, bnx2x and cp210x dependencies


r4214@localhost (orig r2723): bruno | 2011-02-25 19:00:17 +0100

  • Adds a restore quiet option


r4215@localhost (orig r2724): bruno | 2011-02-25 19:43:50 +0100

  • Adds support for dm-log used on RHEL6 as well.


r4216@localhost (orig r2725): bruno | 2011-02-25 21:26:54 +0100

  • Update mindi-busybox to 1.18.3 to avoid problems with the tar command which is now failing on recent versions with busybox 1.7.3


r4217@localhost (orig r2726): bruno | 2011-02-26 11:38:29 +0100

  • Fix error introduced in previous patch in the if/then/else case without member in the then


r4218@localhost (orig r2727): bruno | 2011-02-26 12:05:33 +0100

  • With mindi-busybox 1.18.3 the syntax of openvt changed. This patch keeps a compatible init script for both previous and current version.


r4219@localhost (orig r2728): bruno | 2011-02-26 15:27:40 +0100

  • Latest lvdisplay print MiB instead of MB. Impact on analyze-my-lvm fixed.


r4220@localhost (orig r2729): bruno | 2011-02-26 16:39:32 +0100

  • Adds feature rpc to mindi-busybox in case of need



r4221@localhost (orig r2730): bruno | 2011-02-26 16:42:43 +0100

  • Adds the rebot command to the list of mandatory ones at restore time


r4222@localhost (orig r2731): bruno | 2011-02-26 17:37:13 +0100

  • Adds functions and /bin/loadkeys (new location) to minimal set of commands to have
  • provides a makemessage option to mindi and this function now works with pbdistrocheck
  • Do not create an error when a phys device has 0 size and is a /dev/dm-* device


r4223@localhost (orig r2732): bruno | 2011-02-26 19:07:43 +0100

  • Syntax fix


r4224@localhost (orig r2733): bruno | 2011-02-26 19:51:16 +0100

  • Fix test on dm which was made in wrong sense
  • Adds a driver to allow raid456 to work


r4225@localhost (orig r2734): bruno | 2011-02-26 20:55:00 +0100

  • Fix 2 redirections issues


r4317@localhost (orig r2737): bruno | 2011-03-13 13:12:57 +0100

  • Add support for libahci driver, mandatory for debian 6.


r4318@localhost (orig r2738): bruno | 2011-03-13 14:46:37 +0100

  • Update from Lester Wade (lester.wade_at_hp.com) incorporating latest ML feedbacks


r4319@localhost (orig r2739): bruno | 2011-03-13 17:49:15 +0100

  • Updated Lab for TES 2011


r4323@localhost (orig r2743): bruno | 2011-03-20 01:37:40 +0100

  • Fix a seg fault bug when using the GUI in case exclude_paths was NULL (mc_at_carreira.com.pt)


r4324@localhost (orig r2744): bruno | 2011-03-20 19:38:14 +0100

  • Adds Arch Linux Keyboard support (mc_at_carreira.com.pt)


r4325@localhost (orig r2745): bruno | 2011-03-20 19:48:01 +0100

  • Avoids coredump again when exclude_path is NULL with mr_make_devlist_from_pathlist (feedback from mc_at_carreira.com.pt)


r4326@localhost (orig r2746): bruno | 2011-03-20 19:39:47 +0100

  • Remove blkid from busybox to solve #435


r4327@localhost (orig r2747): bruno | 2011-03-20 19:43:22 +0100

  • Adds reboot to fix #435


r4328@localhost (orig r2748): bruno | 2011-03-22 00:58:07 +0100

  • Fix Arch Linux kbd printed in log file now instead of screen.


r4329@localhost (orig r2749): bruno | 2011-03-22 00:59:58 +0100

  • Again increase size for boot env to support better fedora 14 and other latest distros


r4356@localhost (orig r2750): bruno | 2011-03-25 19:30:01 +0100

  • Improve Arch Linux support for mindi tools (mc_at_carreira.com.pt)


r4357@localhost (orig r2751): bruno | 2011-03-25 19:48:33 +0100

  • Accept to work with either wodim or cdreord and genisoimage or mkisofs


r4358@localhost (orig r2752): bruno | 2011-03-25 20:20:49 +0100

  • Documents option -v of mondoarchive


r4359@localhost (orig r2753): bruno | 2011-03-29 01:34:30 +0200

  • Use modprobe instead of insmod to load loop, cd, ... modules (in order to force them at rstore time). Also drop very old aes support for mdk 9.2


r4360@localhost (orig r2754): bruno | 2011-03-29 01:38:49 +0200

  • Arch Linux support for boot message of mindi (mc_at_carreira.com.pt) using /etc/arch-release and pacman.log


r4383@localhost (orig r2755): bruno | 2011-04-07 09:49:38 +0200

  • Adds a UdevadmTrigger function at restore time to deal with the various syntax formats changes ddepending on version (mc_at_carreira.com.pt)


r4384@localhost (orig r2756): bruno | 2011-04-07 10:05:24 +0200

  • Increase again sizes for Debian 6 support (victor.gattegno_at_hp.com)


r4385@localhost (orig r2757): bruno | 2011-04-07 10:13:00 +0200
Conform to the report of size really !


r4386@localhost (orig r2758): bruno | 2011-04-07 11:31:12 +0200

  • Improved message for Arch Linux for rebuilding the initrd (mc_at_carreira.com.pt)


r4390@localhost (orig r2759): bruno | 2011-04-12 01:15:00 +0200

  • Typo in Web site


r4392@localhost (orig r2761): bruno | 2011-04-14 00:23:38 +0200

  • Adds download references for latest versions.


r4394@localhost (orig r2763): bruno | 2011-04-16 00:35:08 +0200

  • Adds support for MT back mandatory for OBDR.


r4395@localhost (orig r2764): bruno | 2011-04-20 12:18:46 +0200
Function resize_drive_proportionately_to_suit_new_drives

  • Integrate some mr_asprintf
  • Use systematically long long data types in all computation to match the struct mountlist_reference size member and have correct precision
  • Apply JB general_at_itpsg.com patch to make the partition resizing work properly according to the drive size (keeping all calculation in KB and converting only for display)


r4396@localhost (orig r2765): bruno | 2011-04-21 11:20:58 +0200

  • Remove very old code creating confusing symlinks pico to nano in init (patch from MC). Fix #477


r4397@localhost (orig r2766): bruno | 2011-04-21 11:57:44 +0200

  • text's are properly centered in open_and_list_dir (Patch from Chucky). Fix #404.


r4398@localhost (orig r2767): bruno | 2011-04-21 12:49:40 +0200

  • Attempt to fix #432 with a better message at a start.


r4399@localhost (orig r2768): bruno | 2011-04-21 13:00:37 +0200

Log content of mondo-restore.cfg


r4400@localhost (orig r2769): bruno | 2011-04-21 13:48:52 +0200

  • Introduce a new bkpinfo member (subdir) to support storing the subdir under which ISO images are stored on an external HDD. Should fix mostly #433.


r4401@localhost (orig r2770): bruno | 2011-04-21 14:14:52 +0200

  • Fix compilation issues due to level of visibility of functions


r4402@localhost (orig r2771): bruno | 2011-04-22 01:49:03 +0200

  • Adds GUI support for compresion type. Fix half of #468.


r4403@localhost (orig r2772): bruno | 2011-04-22 02:00:07 +0200

  • Adds support of ext attr through the GUI. Fix second part of #468


r4404@localhost (orig r2773): bruno | 2011-04-22 02:22:24 +0200

  • Propose more variables in the mindi.conf example
  • More explicit messages when size unsufficient in mindi for kernel + initrd as per #471
  • Better loging of labeling in mondo when in nuke mode


  • Property svn:keywords set to Id
File size: 86.8 KB
RevLine 
[1]1/***************************************************************************
[2094]2 * $Id: mondo-rstr-newt.c 2816 2011-04-29 13:42:55Z bruno $
[1]3 * Functions for handling GUI interfaces in the restore.
4 */
5
6#ifdef __FreeBSD__
7#define OSSWAP(linux,fbsd) fbsd
8#else
9#define OSSWAP(linux,fbsd) linux
10#endif
11
12#include "mondo-rstr-newt.h"
[2211]13#include "mr_mem.h"
[2316]14#include "mr_str.h"
[1]15
[128]16//static char cvsid[] = "$Id: mondo-rstr-newt.c 2816 2011-04-29 13:42:55Z bruno $";
[1]17
[2816]18extern bool popup_with_buttons(char *p, char *button1, char *button2);
[1]19extern char err_log_lines[NOOF_ERR_LINES][MAX_STR_LEN];
20
21/**
22 * @defgroup restoreGuiDisklist Disklist GUI
23 * Functions for manipulating the disklist GUI.
24 * @ingroup restoreGuiGroup
25 */
26/**
27 * @defgroup restoreGuiMountlist Mountlist GUI
28 * Functions for manipulating the mountlist/raidlist GUI.
29 * @ingroup restoreGuiGroup
30 */
31/**
32 * @defgroup restoreGuiVarslist RAID Variables GUI
33 * Functions for manipulating the RAID variables GUI.
34 * @ingroup restoreGuiGroup
35 */
36
37/**
38 * @addtogroup restoreGuiGroup
39 * @{
40 */
41/**
42 * Add an entry in @p disklist from the list in @p unallocated_raid_partitions.
43 * @param disklist The disklist to add an entry to.
44 * @param raid_device Unused; make sure it's non-NULL non-"".
45 * @param unallocated_raid_partitions The list of unallocated RAID partitions
46 * that the user may choose from.
47 * @bug raid_device is unused.
48 * @ingroup restoreGuiDisklist
49 */
50void
[128]51add_disklist_entry(struct list_of_disks *disklist, char *raid_device,
52 struct mountlist_itself *unallocated_raid_partitions)
[1]53{
54 /** buffers ***********************************************************/
[2300]55 char *tmp = NULL;
[1]56
57 /** newt **************************************************************/
[128]58 newtComponent myForm;
[1]59 newtComponent bOK;
60 newtComponent bCancel;
61 newtComponent b_res;
62 newtComponent partitionsListbox;
63 newtComponent headerMsg;
[128]64
[1]65 /** prototypes *********************************************************/
[128]66 void *keylist[ARBITRARY_MAXIMUM];
67 void *curr_choice;
[1]68
69 /** int ****************************************************************/
[128]70 int i = 0;
[1]71 int index = 0;
72 int currline = 0;
73 int items = 0;
74
[128]75 assert(disklist != NULL);
76 assert_string_is_neither_NULL_nor_zerolength(raid_device);
77 assert(unallocated_raid_partitions != NULL);
[1]78
[128]79 newtPushHelpLine
[541]80 (" Add one of the following unallocated RAID partitions to this RAID device.");
[2334]81 mr_asprintf(tmp, "%-26s %s", "Device", "Size");
[128]82 headerMsg = newtLabel(1, 1, tmp);
83 partitionsListbox =
84 newtListbox(1, 2, 6, NEWT_FLAG_SCROLL | NEWT_FLAG_RETURNEXIT);
85 redraw_unallocpartnslist(unallocated_raid_partitions, keylist,
86 partitionsListbox);
87 i = 7;
[541]88 bOK = newtCompactButton(i, 9, " OK ");
89 bCancel = newtCompactButton(i += 9, 9, "Cancel");
90 newtOpenWindow(22, 6, 36, 10, "Unallocated RAID partitions");
[128]91 myForm = newtForm(NULL, NULL, 0);
92 newtFormAddComponents(myForm, headerMsg, partitionsListbox, bOK,
93 bCancel, NULL);
94 b_res = newtRunForm(myForm);
95 if (b_res != bCancel) {
96 curr_choice = newtListboxGetCurrent(partitionsListbox);
97 for (currline = 0;
98 currline < unallocated_raid_partitions->entries
99 && keylist[currline] != curr_choice; currline++);
100 if (currline == unallocated_raid_partitions->entries
101 && unallocated_raid_partitions->entries > 0) {
102 log_it("I don't know what this button does");
103 } else {
104 index = find_next_free_index_in_disklist(disklist);
105
106 items = disklist->entries;
[2334]107 strcpy(disklist->el[items].device, unallocated_raid_partitions->el[currline].device);
[128]108 disklist->el[items].index = index;
109 disklist->entries = ++items;
110
111 }
[1]112 }
[128]113 newtFormDestroy(myForm);
[2300]114 mr_free(tmp);
[128]115 newtPopWindow();
116 newtPopHelpLine();
[1]117}
118
119
120
121
122/**
123 * Add an entry to @p mountlist.
124 * @param mountlist The mountlist to add an entry to.
125 * @param raidlist The raidlist that accompanies @p mountlist.
126 * @param listbox The listbox component in the mountlist editor.
127 * @param currline The line selected in @p listbox.
128 * @param keylist The list of keys for @p listbox.
129 * @ingroup restoreGuiMountlist
130 */
131void
[128]132add_mountlist_entry(struct mountlist_itself *mountlist,
133 struct raidlist_itself *raidlist,
134 newtComponent listbox, int currline, void *keylist[])
[1]135{
136
137 /** int **************************************************************/
[128]138 int i = 0;
[1]139 int num_to_add = 0;
140
141 /** newt *************************************************************/
[128]142 newtComponent myForm;
[1]143 newtComponent bOK;
144 newtComponent bCancel;
145 newtComponent b_res;
146 newtComponent mountpointComp;
147 newtComponent label0;
148 newtComponent label1;
149 newtComponent label2;
150 newtComponent label3;
151 newtComponent sizeComp;
152 newtComponent deviceComp;
153 newtComponent formatComp;
154
155 /** buffers **********************************************************/
[2334]156 char *drive_to_add = NULL;
157 char *mountpoint_str = NULL;
158 char *size_str = NULL;
159 char *device_str = NULL;
160 char *format_str = NULL;
[1]161
162 /** pointers *********************************************************/
163 char *mountpoint_here;
164 char *size_here;
165 char *device_here;
166 char *format_here;
167
[128]168 assert(mountlist != NULL);
169 assert(raidlist != NULL);
170 assert(listbox != NULL);
171 assert(keylist != NULL);
[1]172
[2334]173 mr_asprintf(device_str, "/dev/");
174 mr_asprintf(mountpoint_str, "/");
175 mr_asprintf(size_str, "");
[1]176#ifdef __FreeBSD__
[2334]177 mr_asprintf(format_str, "ufs");
[1]178#else
[2334]179 mr_asprintf(format_str, "ext3");
[1]180#endif
[541]181 newtOpenWindow(20, 5, 48, 10, "Add entry");
182 label0 = newtLabel(2, 1, "Device: ");
183 label1 = newtLabel(2, 2, "Mountpoint:");
184 label2 = newtLabel(2, 3, "Size (MB): ");
185 label3 = newtLabel(2, 4, "Format: ");
[2334]186 deviceComp = newtEntry(14, 1, device_str, 30, (void *) &device_here, 0);
187 mountpointComp = newtEntry(14, 2, mountpoint_str, 30, (void *) &mountpoint_here, 0);
188 formatComp = newtEntry(14, 4, format_str, 15, (void *) &format_here, 0);
[128]189 sizeComp = newtEntry(14, 3, size_str, 10, (void *) &size_here, 0);
[541]190 bOK = newtButton(5, 6, " OK ");
191 bCancel = newtButton(17, 6, "Cancel");
[128]192 newtPushHelpLine
[541]193 ("To add an entry to the mountlist, please fill in these fields and then hit 'OK'");
[128]194 myForm = newtForm(NULL, NULL, 0);
195 newtFormAddComponents(myForm, deviceComp, mountpointComp, sizeComp,
196 formatComp, label0, label1, label2, label3, bOK,
197 bCancel, NULL);
198 for (b_res = NULL; b_res != bOK && b_res != bCancel;) {
199 b_res = newtRunForm(myForm);
[2334]200 mr_free(device_str);
201 mr_asprintf(device_str, "%s", device_here);
202
203 mr_free(mountpoint_str);
204 mr_asprintf(mountpoint_str, "%s", mountpoint_here);
205 mr_strip_spaces(mountpoint_str);
206
207 mr_free(format_str);
208 mr_asprintf(format_str, "%s", format_here);
209 mr_strip_spaces(format_str);
210
211 mr_free(size_str);
212 mr_asprintf(size_str, "%s", size_here);
213 mr_strip_spaces(size_str);
214
[128]215 strip_spaces(device_str);
216 if (b_res == bOK) {
217 if (device_str[strlen(device_str) - 1] == '/') {
[541]218 popup_and_OK("You left the device nearly blank!");
[128]219 b_res = NULL;
220 }
[2334]221 if (size_of_specific_device_in_mountlist(mountlist, device_str) >= 0) {
[541]222 popup_and_OK("Can't add this - you've got one already!");
[128]223 b_res = NULL;
224 }
225 }
[1]226 }
[128]227 newtFormDestroy(myForm);
228 newtPopHelpLine();
229 newtPopWindow();
230 if (b_res == bCancel) {
231 return;
232 }
[2334]233 mr_asprintf(drive_to_add, "%s", device_str);
[128]234 for (i = strlen(drive_to_add); isdigit(drive_to_add[i - 1]); i--);
235 num_to_add = atoi(drive_to_add + i);
[2334]236 mr_free(drive_to_add);
237
[128]238 currline = mountlist->entries;
239 strcpy(mountlist->el[currline].device, device_str);
240 strcpy(mountlist->el[currline].mountpoint, mountpoint_str);
[2334]241 mr_free(mountpoint_str);
242
[128]243 strcpy(mountlist->el[currline].format, format_str);
[2334]244 mr_free(format_str);
245
[2125]246 mountlist->el[currline].size = atol(size_str) * 1024L;
[2334]247 mr_free(size_str);
248
[128]249 mountlist->entries++;
250 if (strstr(mountlist->el[currline].device, RAID_DEVICE_STUB)) {
[2334]251 initiate_new_raidlist_entry(raidlist, mountlist, currline, device_str);
[128]252 }
[2334]253 mr_free(device_str);
254
[128]255 redraw_mountlist(mountlist, keylist, listbox);
[1]256}
257
258
259#ifndef __FreeBSD__
260/**
261 * Add an entry to the additional RAID variables section of @p raidrec.
262 * @param raidrec The RAID device record containing the RAID variables list to add to.
263 * @ingroup restoreGuiVarslist
264 */
[128]265void add_varslist_entry(struct raid_device_record *raidrec)
[1]266{
267
268 /** int ****************************************************************/
[128]269 int items = 0;
[1]270 int i = 0;
271
[2316]272 char *p = NULL;
273
[128]274 assert(raidrec != NULL);
[1]275
[2316]276 p = popup_and_get_string("Add variable", "Enter the name of the variable to add", "");
277 if (p != NULL) {
278 mr_strip_spaces(p);
[128]279 items = raidrec->additional_vars.entries;
280 for (i = 0;
281 i < items
[2316]282 && strcmp(raidrec->additional_vars.el[i].label, p); i++);
[128]283 if (i < items) {
284 popup_and_OK
[541]285 ("No need to add that variable. It is already listed here.");
[128]286 } else {
[2316]287 strcpy(raidrec->additional_vars.el[items].label, p);
[128]288 edit_varslist_entry(raidrec, items);
289 raidrec->additional_vars.entries = ++items;
290 }
[1]291 }
[2316]292 mr_free(p);
[1]293}
294#endif
295
296/**
297 * Calculate the size of @p raid_device.
298 * @param mountlist The mountlist containing information about the user's partitions.
299 * @param raidlist The raidlist that goes with @p mountlist.
300 * @param raid_device The device to calculate the size of.
301 * @return The size of the RAID device in Kilobytes.
302 * @ingroup restoreUtilityGroup
303 */
304long
[128]305calculate_raid_device_size(struct mountlist_itself *mountlist,
306 struct raidlist_itself *raidlist,
307 char *raid_device)
[1]308{
309#ifdef __FreeBSD__
[128]310 /** FreeBSD-specific version of calculate_raid_device_size() **/
[1]311
312 /** structures ********************************************************/
[128]313 struct vinum_volume *raidrec;
[1]314
315 /** int ***************************************************************/
[128]316 int i = 0, j = 0;
[1]317 int noof_partitions = 0;
318
319 /** long **************************************************************/
[128]320 long total_size = 0;
321 long plex_size = 0;
322 long smallest_partition = 999999999;
323 long smallest_plex = 999999999;
[1]324 long sp = 0;
325
326 /** buffers ***********************************************************/
[2300]327 char tmp = NULL;
[2334]328 char *devname = NULL;
[1]329
[128]330 for (i = 0;
331 i < raidlist->entries
332 && strcmp(raidlist->el[i].volname, basename(raid_device)); i++);
333 if (i == raidlist->entries) {
[2334]334 log_it("Cannot calc size of raid device %s - cannot find it in raidlist", raid_device);
[128]335 return (0); // Isn't this more sensible than 999999999? If the raid dev !exists,
336 // then it has no size, right?
337 }
338 raidrec = &raidlist->el[i];
339 total_size = 0;
340 if (raidrec->plexes == 0)
341 return 0;
342 for (j = 0; j < raidrec->plexes; j++) {
343 plex_size = 0;
344 int k = 0, l = 0;
345 for (k = 0; k < raidrec->plex[j].subdisks; ++k) {
[2334]346 mr_asprintf(devname, "%s", raidrec->plex[j].sd[k].which_device);
[128]347 for (l = 0; l < raidlist->disks.entries; ++l) {
348 if (!strcmp(devname, raidlist->disks.el[l].name)) {
349 switch (raidrec->plex[j].raidlevel) {
350 case -1:
351 plex_size +=
352 size_of_specific_device_in_mountlist(mountlist,
353 raidlist->
354 disks.
355 el[l].
356 device);
357 break;
358 case 0:
359 case 5:
360 if (size_of_specific_device_in_mountlist(mountlist,
361 raidlist->
362 disks.
363 el[l].
364 device) <
365 smallest_partition) {
366 smallest_partition =
367 size_of_specific_device_in_mountlist
368 (mountlist, raidlist->disks.el[l].device);
369 }
370 break;
371 }
372 }
373 }
[2334]374 mr_free(devname);
[128]375 }
[1]376
[128]377 if (!is_this_raid_personality_registered
378 (raidrec->plex[j].raidlevel)) {
379 log_it
380 ("%s has a really weird RAID level - couldn't calc size :(",
381 raid_device);
382 return (999999999);
383 }
384 if (raidrec->plex[j].raidlevel != -1) {
385 plex_size = smallest_partition * (raidrec->plex[j].subdisks -
386 (raidrec->plex[j].
387 raidlevel == 5 ? 1 : 0));
388 }
389 if (plex_size < smallest_plex)
390 smallest_plex = plex_size;
[1]391
[128]392 smallest_partition = 999999999;
393 }
394
[2334]395 log_it("I have calculated %s's real size to be %ld", raid_device, (long) smallest_plex);
[128]396 return (smallest_plex);
[1]397#else
[128]398 /** Linux-specific version of calculate_raid_device_size() **/
[1]399
400 /** structures ********************************************************/
[128]401 struct raid_device_record *raidrec;
[1]402
403 /** int ***************************************************************/
[128]404 int i = 0;
[1]405 int noof_partitions = 0;
406
407 /** long **************************************************************/
[128]408 long total_size = 0;
[1]409 long smallest_partition = 999999999;
410 long sp = 0;
411
[128]412 assert(mountlist != NULL);
413 assert(raidlist != NULL);
414 assert_string_is_neither_NULL_nor_zerolength(raid_device);
[1]415
[128]416 for (i = 0;
417 i < raidlist->entries
418 && strcmp(raidlist->el[i].raid_device, raid_device); i++);
419 if (i == raidlist->entries) {
[2334]420 log_it("Cannot calc size of raid device %s - cannot find it in raidlist", raid_device);
[128]421 return (999999999);
[1]422 }
[128]423 raidrec = &raidlist->el[i];
424 noof_partitions = raidrec->data_disks.entries;
425 if (raidrec->raid_level == -1 || raidrec->raid_level == 0) {
426 for (total_size = 0, i = 0; i < noof_partitions; i++) {
427 total_size +=
428 size_of_specific_device_in_mountlist(mountlist,
429 raidrec->data_disks.
430 el[i].device);
431 }
432 } else {
433 for (i = 0; i < noof_partitions; i++) {
434 sp = size_of_specific_device_in_mountlist(mountlist,
435 raidrec->data_disks.
436 el[i].device);
437 if (smallest_partition > sp) {
438 smallest_partition = sp;
439 }
440 }
441 total_size = smallest_partition * (noof_partitions - 1);
[1]442 }
[2334]443 log_it("I have calculated %s's real size to be %ld", raid_device, (long) total_size);
[128]444 return (total_size);
[1]445#endif
446}
447
448
449
450/**
451 * Choose the RAID level for the RAID device record in @p raidrec.
452 * @param raidrec The RAID device record to set the RAID level of.
453 * @ingroup restoreGuiMountlist
454 */
455void
[128]456choose_raid_level(struct OSSWAP (raid_device_record, vinum_plex) * raidrec)
[1]457{
458
459#ifdef __FreeBSD__
[128]460
[1]461 /** int ***************************************************************/
462 int out = 0;
[2316]463 int i = 0;
[1]464
465 /** buffers ***********************************************************/
[2316]466 char *tmp = NULL;
467 char *p = NULL;
468 char *q = NULL;
[2300]469 char *prompt = NULL;
[1]470
[2323]471 mr_asprintf(prompt, "Please enter the RAID level you want. (concat, striped, raid5)");
[128]472 if (raidrec->raidlevel == -1) {
[2323]473 mr_asprintf(tmp, "concat");
[128]474 } else if (raidrec->raidlevel == 0) {
[2323]475 mr_asprintf(tmp, "striped");
[128]476 } else {
[2323]477 mr_asprintf(tmp, "raid%i", raidrec->raidlevel);
[1]478 }
[128]479 for (out = 999; out == 999;) {
[2316]480 p = popup_and_get_string("Specify RAID level", prompt, tmp);
481 if (p == NULL) {
482 mr_free(tmp);
[2300]483 mr_free(prompt);
[2316]484 mr_free(prompt);
[128]485 return;
486 }
[2316]487 mr_strip_spaces(p);
488 /* Suppress brakets at each hend */
489 if (p[0] == '[' && p[strlen(p) - 1] == ']') {
490 q = p+1;
491 i = 0;
492 while (*q != ']') {
493 p[i] = *q;
494 i++;
495 q++;
496 }
497 p[i] = '\0';
[128]498 }
[2316]499 if (!strcmp(p, "concat")) {
[128]500 out = -1;
[2316]501 } else if (!strcmp(p, "striped")) {
[128]502 out = 0;
[2316]503 } else if (!strcmp(p, "raid5")) {
[128]504 out = 5;
505 }
[2316]506 log_it("Raid level : %s",p);
507 mr_free(p);
508
[128]509 if (is_this_raid_personality_registered(out)) {
[2316]510 log_it("Groovy. You've picked a RAID personality which is registered.");
[128]511 } else {
[2316]512 if (ask_me_yes_or_no("You have chosen a RAID personality which is not registered with the kernel. Make another selection?"))
[128]513 {
514 out = 999;
515 }
516 }
[1]517 }
[2316]518 mr_free(tmp);
[2300]519 mr_free(prompt);
[2316]520
[128]521 raidrec->raidlevel = out;
[1]522#else
523 /** buffers ***********************************************************/
[2316]524 char *tmp = NULL;
[2300]525 char *personalities = NULL;
526 char *prompt = NULL;
[2316]527 char *p = NULL;
528 char *q = NULL;
529 int out = 0;
530 int i = 0;
[1]531
532
[128]533 assert(raidrec != NULL);
[2316]534
535 system("grep Pers /proc/mdstat > /tmp/raid-personalities.txt 2> /dev/null");
[2357]536 personalities = last_line_of_file("/tmp/raid-personalities.txt");
[2323]537 mr_asprintf(prompt, "Please enter the RAID level you want. %s", personalities);
[2300]538 mr_free(personalities);
539
[128]540 if (raidrec->raid_level == -1) {
[2323]541 mr_asprintf(tmp, "linear");
[128]542 } else {
[2323]543 mr_asprintf(tmp, "%d", raidrec->raid_level);
[1]544 }
[128]545 for (out = 999;
546 out != -1 && out != 0 && out != 1 && out != 4 && out != 5
547 && out != 10;) {
[2316]548 p = popup_and_get_string("Specify RAID level", prompt, tmp);
549
550 if (p == NULL) {
551 mr_free(tmp);
[2300]552 mr_free(prompt);
[2316]553 mr_free(prompt);
[128]554 return;
555 }
[2316]556 mr_strip_spaces(p);
557 if (p[0] == '[' && p[strlen(p) - 1] == ']') {
558 q = p+1;
559 i = 0;
560 while (*q != ']') {
561 p[i] = *q;
562 i++;
563 q++;
564 }
565 p[i] = '\0';
[128]566 }
[2316]567 if (!strcmp(p, "linear")) {
[128]568 out = -1;
[2316]569 } else if (!strncmp(p, "raid", 4)) {
570 out = atoi(p + 4);
[128]571 } else {
[2316]572 out = atoi(p);
[128]573 }
[2316]574 log_it("Raid level : %s",p);
[128]575 if (is_this_raid_personality_registered(out)) {
[2316]576 log_it("Groovy. You've picked a RAID personality which is registered.");
[128]577 } else {
[2316]578 if (ask_me_yes_or_no("You have chosen a RAID personality which is not registered with the kernel. Make another selection?")) {
[128]579 out = 999;
580 }
581 }
[1]582 }
[2316]583 mr_free(tmp);
[2300]584 mr_free(prompt);
[128]585 raidrec->raid_level = out;
[1]586#endif
587}
588
589
590
591/**
592 * Delete the partitions in @p disklist from @p mountlist because they
593 * were part of a deleted RAID device.
594 * @param mountlist The mountlist containing information about the user's partitions.
595 * @param raidlist The raidlist that goes with @p mounntlist.
596 * @param disklist The list of disks to remove from @p mountlist.
597 * @ingroup restoreGuiDisklist
598 */
599void
[128]600del_partns_listed_in_disklist(struct mountlist_itself *mountlist,
601 struct raidlist_itself *raidlist,
602 struct list_of_disks *disklist)
[1]603{
604
605 /** int ***************************************************************/
[128]606 int i = 0;
[1]607 int pos = 0;
608
609 /** buffers ***********************************************************/
[128]610 assert(mountlist != NULL);
611 assert(raidlist != NULL);
612 assert(disklist != NULL);
[1]613
[128]614 for (i = 0; i < disklist->entries; i++) {
615 for (pos = 0;
616 pos < mountlist->entries
617 && strcmp(mountlist->el[pos].device, disklist->el[i].device);
618 pos++);
619 if (pos < mountlist->entries) {
[2334]620 log_it("Deleting partition %s cos it was part of a now-defunct RAID", mountlist->el[pos].device);
[2300]621
[128]622 memcpy((void *) &mountlist->el[pos],
623 (void *) &mountlist->el[mountlist->entries - 1],
624 sizeof(struct mountlist_line));
625 mountlist->entries--;
626 }
[1]627 }
628}
629
630
631
632/**
633 * Delete entry number @p currline from @p disklist.
634 * @param disklist The disklist to remove the entry from.
635 * @param raid_device The RAID device containing the partition we're removing.
636 * Used only in the popup "are you sure?" box.
637 * @param currline The line number (starting from 0) of the item to delete.
638 * @ingroup restoreGuiDisklist
639 */
640void
[128]641delete_disklist_entry(struct list_of_disks *disklist, char *raid_device,
642 int currline)
[1]643{
644
645 /** int ***************************************************************/
[128]646 int pos = 0;
[2300]647 int res = 0;
[1]648
649 /** buffers ***********************************************************/
[2300]650 char *tmp = NULL;
[1]651
[128]652 assert(disklist != NULL);
653 assert_string_is_neither_NULL_nor_zerolength(raid_device);
[1]654
[2334]655 mr_asprintf(tmp, "Delete %s from RAID device %s - are you sure?", disklist->el[currline].device, raid_device);
[2300]656 res = ask_me_yes_or_no(tmp);
657 mr_free(tmp);
658
659 if (!res) {
[128]660 return;
661 }
662 for (pos = currline; pos < disklist->entries - 1; pos++) {
663 strcpy(disklist->el[pos].device, disklist->el[pos + 1].device);
664 }
665 disklist->entries--;
[1]666}
667
668
669
670/**
671 * Delete entry number @p currline from @p mountlist.
672 * @param mountlist The mountlist to delete the entry from.
673 * @param raidlist The raidlist that goes with @p mountlist.
674 * @param listbox The Newt listbox component in the mountlist editor.
675 * @param currline The line number (starting from 0) of the item to delete.
676 * @param keylist The list of keys for @p listbox.
677 * @ingroup restoreGuiMountlist
678 */
679void
[128]680delete_mountlist_entry(struct mountlist_itself *mountlist,
681 struct raidlist_itself *raidlist,
682 newtComponent listbox, int currline,
683 void *keylist[])
[1]684{
685
686 /** int ***************************************************************/
[128]687 int pos = 0;
[2300]688 int res = 0;
[1]689
690 /** buffers ***********************************************************/
[2300]691 char *tmp = NULL;
[2334]692 char *device = NULL;
[1]693
694
[128]695 assert(mountlist != NULL);
696 assert(raidlist != NULL);
697 assert(listbox != NULL);
698 assert(keylist != NULL);
[1]699
[2334]700 pos = which_raid_device_is_using_this_partition(raidlist, mountlist->el[currline].device);
[128]701 if (pos >= 0) {
[2334]702 mr_asprintf(tmp, "Cannot delete %s: it is in use by RAID device %s", mountlist->el[currline].device, raidlist->el[pos].OSSWAP(raid_device, volname));
[128]703 popup_and_OK(tmp);
[2300]704 mr_free(tmp);
[128]705 return;
[1]706 }
[2334]707 mr_asprintf(tmp, "Delete %s - are you sure?", mountlist->el[currline].device);
[2300]708 res = ask_me_yes_or_no(tmp);
709 mr_free(tmp);
710
711 if (!res) {
[128]712 return;
713 }
714 if (strstr(mountlist->el[currline].device, RAID_DEVICE_STUB)) {
[2334]715 mr_asprintf(device, "%s", mountlist->el[currline].device);
[128]716 delete_raidlist_entry(mountlist, raidlist, device);
717 for (currline = 0;
718 currline < mountlist->entries
719 && strcmp(mountlist->el[currline].device, device);
720 currline++);
[2334]721 mr_free(device);
722
[128]723 if (currline == mountlist->entries) {
724 log_it("Dev is gone. I can't delete it. Ho-hum");
725 return;
726 }
727 }
728 memcpy((void *) &mountlist->el[currline],
729 (void *) &mountlist->el[mountlist->entries - 1],
730 sizeof(struct mountlist_line));
731 mountlist->entries--;
732 redraw_mountlist(mountlist, keylist, listbox);
[1]733}
734
735
736/**
737 * Delete @p device from @p raidlist.
738 * @param mountlist The mountlist containing information about the user's partitions.
739 * @param raidlist The raidlist containing the RAID device to delete.
740 * @param device The device (e.g. /dev/md0) to delete.
741 * @ingroup restoreGuiMountlist
742 */
743void
[128]744delete_raidlist_entry(struct mountlist_itself *mountlist,
745 struct raidlist_itself *raidlist, char *device)
[1]746{
[128]747
[1]748 /** int ***************************************************************/
[128]749 int i = 0;
750 int items = 0;
[1]751
752 /** bool **************************************************************/
[128]753 bool delete_partitions_too;
[1]754
755 /** buffers ***********************************************************/
[2300]756 char *tmp = NULL;
[1]757
[128]758 assert(mountlist != NULL);
759 assert(raidlist != NULL);
760 assert_string_is_neither_NULL_nor_zerolength(device);
[1]761
[128]762 i = find_raid_device_in_raidlist(raidlist, device);
763 if (i < 0) {
764 return;
765 }
[2334]766 mr_asprintf(tmp, "Do you want me to delete %s's partitions, too?", device);
[128]767 delete_partitions_too = ask_me_yes_or_no(tmp);
768 if (delete_partitions_too) {
[1]769#ifdef __FreeBSD__
[128]770 // static so it's zeroed
771 static struct list_of_disks d;
772 int x, y, z;
773
774 for (x = 0; x < raidlist->el[i].plexes; ++x) {
775 for (y = 0; y < raidlist->el[i].plex[x].subdisks; ++y) {
776 for (z = 0; z < raidlist->disks.entries; ++z) {
777 if (!strcmp(raidlist->el[i].plex[x].sd[y].which_device,
778 raidlist->disks.el[z].name)) {
[2334]779 strcpy(d.el[d.entries].name, raidlist->disks.el[z].name);
780 strcpy(d.el[d.entries++].device, raidlist->disks.el[z].device);
[128]781 }
782 }
783 }
784 }
785
786 del_partns_listed_in_disklist(mountlist, raidlist, &d);
[1]787#else
[128]788 del_partns_listed_in_disklist(mountlist, raidlist,
789 &raidlist->el[i].data_disks);
790 del_partns_listed_in_disklist(mountlist, raidlist,
791 &raidlist->el[i].spare_disks);
792 del_partns_listed_in_disklist(mountlist, raidlist,
793 &raidlist->el[i].parity_disks);
794 del_partns_listed_in_disklist(mountlist, raidlist,
795 &raidlist->el[i].failed_disks);
[1]796#endif
[128]797 }
798 items = raidlist->entries;
799 if (items == 1) {
800 items = 0;
801 } else {
802 log_it(tmp);
803 memcpy((void *) &raidlist->el[i],
804 (void *) &raidlist->el[items - 1],
805 sizeof(struct OSSWAP (raid_device_record, vinum_volume)));
806 items--;
807 }
[2300]808 mr_free(tmp);
[128]809 raidlist->entries = items;
[1]810}
811
812
813#ifndef __FreeBSD__
814/**
815 * Delete entry number @p lino in the additional RAID variables section of @p raidrec.
816 * @param raidrec The RAID device record containing the RAID variable to delete.
817 * @param lino The line number (starting from 0) of the variable to delete.
818 * @ingroup restoreGuiVarslist
819 */
[128]820void delete_varslist_entry(struct raid_device_record *raidrec, int lino)
[1]821{
822
823 /** buffers ************************************************************/
[2300]824 char *tmp = NULL;
825 int res = 0;
[1]826
827 /** structures *********************************************************/
[128]828 struct additional_raid_variables *av;
[1]829
[128]830 assert(raidrec != NULL);
[1]831
[128]832 av = &raidrec->additional_vars;
[2334]833 mr_asprintf(tmp, "Delete %s - are you sure?", av->el[lino].label);
[2300]834 res = ask_me_yes_or_no(tmp);
835 mr_free(tmp);
836
837 if (res) {
[128]838 if (!strcmp(av->el[lino].label, "persistent-superblock")
839 || !strcmp(av->el[lino].label, "chunk-size")) {
[2334]840 mr_asprintf(tmp, "%s must not be deleted. It would be bad.", av->el[lino].label);
[128]841 popup_and_OK(tmp);
[2300]842 mr_free(tmp);
[128]843 } else {
844 memcpy((void *) &av->el[lino], (void *) &av->el[av->entries--],
845 sizeof(struct raid_var_line));
846 }
[1]847 }
848}
849#endif
850
851
852/**
853 * Redraw the filelist display.
854 * @param filelist The filelist structure to edit.
855 * @param keylist The list of keys for @p listbox.
856 * @param listbox The Newt listbox component containing some of the filelist entries.
857 * @return The number of lines currently being displayed.
858 * @ingroup restoreGuiGroup
859 */
860int
[128]861redraw_filelist(struct s_node *filelist, void *keylist[ARBITRARY_MAXIMUM],
862 newtComponent listbox)
[1]863{
864
865 /** int ***************************************************************/
[128]866 static int lines_in_flist_window = 0;
867 static int depth = 0;
[1]868
[738]869 /** long **************************************************************/
870 long i = 0;
871
[1]872 /** structures *******************************************************/
[128]873 struct s_node *node;
[1]874
875 /** buffers **********************************************************/
[128]876 static char current_filename[MAX_STR_LEN];
877 char tmp[MAX_STR_LEN + 2];
[2300]878 char *tmp1 = NULL;
[1]879
880 /** bool *************************************************************/
881 /* void*dummyptr; */
[128]882 bool dummybool;
883 static bool warned_already;
[1]884
[128]885 assert(filelist != NULL);
886 assert(keylist != NULL);
887 assert(listbox != NULL);
[1]888
889
[128]890 if (depth == 0) {
891 lines_in_flist_window = 0;
892 warned_already = FALSE;
893 for (i = 0; i < ARBITRARY_MAXIMUM; i++) {
894 g_strings_of_flist_window[i][0] = '\0';
895 g_is_path_selected[i] = FALSE;
896 }
[1]897 }
[128]898 for (node = filelist; node != NULL; node = node->right) {
899 current_filename[depth] = node->ch;
900 if (node->down) {
901 depth++;
902 i = redraw_filelist(node->down, keylist, listbox);
903 depth--;
904 }
905 if (node->ch == '\0' && node->expanded) {
906 if (lines_in_flist_window == ARBITRARY_MAXIMUM) {
907 if (!warned_already) {
908 warned_already = TRUE;
[2334]909 mr_asprintf(tmp1, "Too many lines. Displaying first %d entries only. Close a directory to see more.", ARBITRARY_MAXIMUM);
[2300]910 popup_and_OK(tmp1);
911 mr_free(tmp1);
[128]912 }
913 } else {
[2334]914 strcpy(g_strings_of_flist_window[lines_in_flist_window], current_filename);
[128]915 g_is_path_selected[lines_in_flist_window] = node->selected;
916 lines_in_flist_window++;
917 }
918 }
[1]919 }
[128]920 if (depth == 0) {
921 if (lines_in_flist_window > ARBITRARY_MAXIMUM) {
922 lines_in_flist_window = ARBITRARY_MAXIMUM;
[1]923 }
924/* do an elementary sort */
[128]925 for (i = 1; i < lines_in_flist_window; i++) {
926 if (strcmp
927 (g_strings_of_flist_window[i],
928 g_strings_of_flist_window[i - 1]) < 0) {
[2334]929 mr_asprintf(tmp1, "%s", g_strings_of_flist_window[i]);
930 strcpy(g_strings_of_flist_window[i], g_strings_of_flist_window[i - 1]);
[2300]931 strcpy(g_strings_of_flist_window[i - 1], tmp1);
932 mr_free(tmp1);
[128]933 dummybool = g_is_path_selected[i];
934 g_is_path_selected[i] = g_is_path_selected[i - 1];
935 g_is_path_selected[i - 1] = dummybool;
936 i = 0;
937 }
938 }
[1]939/* write list to screen */
[128]940 newtListboxClear(listbox);
941 for (i = 0; i < lines_in_flist_window; i++) {
942 sprintf(tmp, "%c%c %-80s", (g_is_path_selected[i] ? '*' : ' '),
943 (g_is_path_expanded[i] ? '+' : '-'),
944 strip_path(g_strings_of_flist_window[i]));
945 tmp[70] = '\0';
946 keylist[i] = (void *) i;
947 newtListboxAppendEntry(listbox, tmp, keylist[i]);
948 }
949 return (lines_in_flist_window);
950 } else {
951 return (0);
[1]952 }
953}
954
955
956/**
957 * Strip a path to the bare minimum (^ pointing to the directory above, plus filename).
958 * @param tmp The path to strip.
959 * @return The stripped path.
960 * @author Conor Daly
961 * @ingroup restoreUtilityGroup
962 */
[128]963char *strip_path(char *tmp)
[1]964{
965
966 int i = 0, j = 0, slashcount = 0;
967 int slashloc = 0, lastslashloc = 0;
968
[128]969 while (tmp[i] != '\0') { /* Count the slashes in tmp
970 1 slash per dir */
971 if (tmp[i] == '/') {
972 slashcount++;
973 lastslashloc = slashloc;
974 slashloc = i;
975 if (tmp[i + 1] == '\0') { /* if this slash is last char, back off */
976 slashcount--;
977 slashloc = lastslashloc;
978 }
979 }
980 i++;
[1]981 }
[128]982 if (slashcount > 0)
983 slashcount--; /* Keep one slash 'cos Hugh does... */
[1]984
[128]985 for (i = 0; i < slashcount; i++) { /* Replace each dir with a space char */
986 tmpnopath[i] = ' ';
[1]987 }
988
989 i = slashloc;
990 j = slashcount;
[128]991 while (tmp[i] != '\0') { /* Now add what's left of tmp */
992 if ((tmpprevpath[j] == ' ' || tmpprevpath[j] == '^')
993 && tmp[i] == '/' && tmpnopath[j - 1] != '^' && j != 0) { /* Add a pointer upwards if this is not in the same dir as line above */
994 tmpnopath[j - 1] = '^';
995 } else {
996 tmpnopath[j++] = tmp[i++];
997 }
[1]998 }
999 tmpnopath[j] = '\0';
1000
[128]1001 strcpy(tmpprevpath, tmpnopath); /* Make a copy for next iteration */
1002
1003 return (tmpnopath);
[1]1004}
1005
1006
1007/**
1008 * Allow the user to edit the filelist and choose which files to restore.
1009 * @param filelist The node structure containing the filelist.
1010 * @return 0 if the user pressed OK, 1 if they pressed Cancel.
1011 */
[128]1012int edit_filelist(struct s_node *filelist)
[1]1013{
1014
1015 /** newt **************************************************************/
[128]1016 newtComponent myForm;
1017 newtComponent bLess = NULL;
1018 newtComponent bMore = NULL;
1019 newtComponent bToggle = NULL;
1020 newtComponent bOK = NULL;
1021 newtComponent bCancel = NULL;
1022 newtComponent b_res = NULL;
1023 newtComponent filelistListbox = NULL;
1024 newtComponent bRegex = NULL;
[1]1025
1026 /** int ***************************************************************/
1027 int finished = FALSE;
1028 int lines_in_flist_window = 0;
1029 int indexno = 0;
1030 int j = 0;
1031
1032 /** ???? **************************************************************/
[128]1033 void *curr_choice;
1034 void *keylist[ARBITRARY_MAXIMUM];
[1]1035
1036 /** bool **************************************************************/
[128]1037 bool dummybool;
[1]1038
1039/* struct s_node *node; */
1040
[128]1041 assert(filelist != NULL);
[1]1042
[541]1043 log_to_screen("Editing filelist");
[128]1044 newtPushHelpLine
[541]1045 (" Please edit the filelist to your satisfaction, then click OK or Cancel.");
[128]1046 j = 4;
[541]1047 bLess = newtCompactButton(j, 17, " Less ");
1048 bMore = newtCompactButton(j += 12, 17, " More ");
1049 bToggle = newtCompactButton(j += 12, 17, "Toggle");
1050 bRegex = newtCompactButton(j += 12, 17, "RegEx");
1051 bCancel = newtCompactButton(j += 12, 17, "Cancel");
1052 bOK = newtCompactButton(j += 12, 17, " OK ");
[128]1053 filelistListbox =
1054 newtListbox(2, 1, 15, NEWT_FLAG_SCROLL | NEWT_FLAG_RETURNEXIT);
1055 toggle_all_root_dirs_on(filelist);
1056 lines_in_flist_window =
1057 redraw_filelist(filelist, keylist, filelistListbox);
[541]1058 newtOpenWindow(1, 3, 77, 18, "Editing filelist");
[128]1059 myForm = newtForm(NULL, NULL, 0);
1060 newtFormAddComponents(myForm, filelistListbox, bLess, bMore, bToggle,
1061 bRegex, bCancel, bOK, NULL);
1062 while (!finished) {
1063 b_res = newtRunForm(myForm);
1064 if (b_res == bOK) {
1065 finished =
1066 ask_me_yes_or_no
[541]1067 ("Are you happy with your file selection?");
[128]1068 } else if (b_res == bCancel) {
1069 finished = TRUE;
1070 } else if (b_res == bRegex) {
[541]1071 popup_and_OK("I haven't implemented this yet...");
[128]1072 } else {
1073 curr_choice = newtListboxGetCurrent(filelistListbox);
1074 for (indexno = 0;
1075 indexno < lines_in_flist_window
1076 && keylist[indexno] != curr_choice; indexno++);
1077 if (indexno == lines_in_flist_window) {
1078 log_it
1079 ("I don't know what this button does; assuming I am to toggle 1st entry");
1080 indexno = 0;
1081 }
[2334]1082 log_it("You selected '%s'", g_strings_of_flist_window[indexno]);
[2300]1083
[128]1084 if (b_res == bMore) {
1085 g_is_path_expanded[indexno] = TRUE;
1086 toggle_path_expandability(filelist,
1087 g_strings_of_flist_window
1088 [indexno], TRUE);
1089 lines_in_flist_window =
1090 redraw_filelist(filelist, keylist, filelistListbox);
1091 newtListboxSetCurrentByKey(filelistListbox, curr_choice);
1092 } else if (b_res == bLess) {
1093 g_is_path_expanded[indexno] = FALSE;
1094 toggle_path_expandability(filelist,
1095 g_strings_of_flist_window
1096 [indexno], FALSE);
1097 lines_in_flist_window =
1098 redraw_filelist(filelist, keylist, filelistListbox);
1099 newtListboxSetCurrentByKey(filelistListbox, curr_choice);
1100 } else {
1101 if (!strcmp(g_strings_of_flist_window[indexno], "/")) {
1102 dummybool = !g_is_path_selected[indexno];
1103 for (j = 1; j < lines_in_flist_window; j++) {
1104 toggle_path_selection(filelist,
1105 g_strings_of_flist_window[j],
1106 dummybool);
1107 }
1108 } else {
1109 toggle_path_selection(filelist,
1110 g_strings_of_flist_window
1111 [indexno],
1112 !g_is_path_selected[indexno]);
1113 lines_in_flist_window =
1114 redraw_filelist(filelist, keylist,
1115 filelistListbox);
1116 }
1117 newtListboxSetCurrentByKey(filelistListbox, curr_choice);
1118 }
1119 for (indexno = 0;
1120 indexno < lines_in_flist_window
1121 && keylist[indexno] != curr_choice; indexno++);
1122 if (indexno == lines_in_flist_window) {
1123 log_it
1124 ("Layout of table has changed. Y pointer is reverting to zero.");
1125 indexno = 0;
1126 }
[1]1127 }
1128 }
[128]1129 newtFormDestroy(myForm);
1130 newtPopWindow();
1131 newtPopHelpLine();
1132 if (b_res == bOK) {
1133 return (0);
1134 } else {
[1]1135/* popup_and_OK("You pushed 'cancel'. I shall now abort."); */
[128]1136 return (1);
1137 }
[1]1138}
1139
1140
1141/**
1142 * Edit an entry in @p mountlist.
1143 * @param mountlist The mountlist containing information about the user's partitions.
1144 * @param raidlist The raidlist to accompany @p mountlist.
1145 * @param listbox The Newt listbox component in the mountlist editor.
1146 * @param currline The selected line (starting from 0) in @p listbox.
1147 * @param keylist The list of keys for @p listbox.
1148 * @ingroup restoreGuiMountlist
1149 */
1150void
[128]1151edit_mountlist_entry(struct mountlist_itself *mountlist,
1152 struct raidlist_itself *raidlist,
1153 newtComponent listbox, int currline, void *keylist[])
[1]1154{
1155
1156 /** structures ********************************************************/
[128]1157 static struct raidlist_itself bkp_raidlist;
[1]1158
1159 /** newt **************************************************************/
[128]1160 newtComponent myForm;
[1]1161 newtComponent bOK;
1162 newtComponent bCancel;
1163 newtComponent b_res;
1164 newtComponent mountpointComp;
1165 newtComponent label0;
1166 newtComponent label1;
1167 newtComponent label2;
1168 newtComponent label3;
1169 newtComponent sizeComp;
1170 newtComponent deviceComp;
1171 newtComponent formatComp;
1172 newtComponent b_raid = NULL;
1173
1174 /** buffers ***********************************************************/
[2334]1175 char *device_str = NULL;
1176 char *mountpoint_str = NULL;
1177 char *size_str = NULL;
1178 char *format_str = NULL;
[2300]1179 char *tmp = NULL;
[2334]1180 char *device_used_to_be = NULL;
1181 char *mountpt_used_to_be = NULL;
[1]1182
1183 /** pointers **********************************************************/
1184 char *device_here;
1185 char *mountpoint_here;
1186 char *size_here;
1187 char *format_here;
1188
1189 /** int ***************************************************************/
[128]1190 int j = 0;
[1]1191
[128]1192 assert(mountlist != NULL);
1193 assert(raidlist != NULL);
1194 assert(listbox != NULL);
1195 assert(keylist != NULL);
[1]1196
[128]1197 memcpy((void *) &bkp_raidlist, (void *) raidlist,
1198 sizeof(struct raidlist_itself));
[2334]1199 mr_asprintf(device_str, "%s", mountlist->el[currline].device);
1200 mr_asprintf(device_used_to_be, "%s", mountlist->el[currline].device);
1201 mr_asprintf(mountpoint_str, "%s", mountlist->el[currline].mountpoint);
1202 mr_asprintf(mountpt_used_to_be, "%s", mountlist->el[currline].mountpoint);
1203 mr_asprintf(format_str, "%s", mountlist->el[currline].format);
1204 mr_asprintf(size_str, "%lld", mountlist->el[currline].size / 1024L);
[128]1205 newtOpenWindow(20, 5, 48, 10, "Edit entry");
[541]1206 label0 = newtLabel(2, 1, "Device:");
1207 label1 = newtLabel(2, 2, "Mountpoint:");
1208 label2 = newtLabel(2, 3, "Size (MB): ");
1209 label3 = newtLabel(2, 4, "Format: ");
[2334]1210 deviceComp = newtEntry(14, 1, device_str, 30, (void *) &device_here, 0);
1211 mountpointComp = newtEntry(14, 2, mountpoint_str, 30, (void *) &mountpoint_here, 0);
1212 formatComp = newtEntry(14, 4, format_str, 15, (void *) &format_here, 0);
[128]1213 if (strstr(mountlist->el[currline].device, RAID_DEVICE_STUB)
1214 || !strcmp(mountlist->el[currline].mountpoint, "image")) {
1215 sizeComp = newtLabel(14, 3, size_str);
1216 } else {
1217 sizeComp = newtEntry(14, 3, size_str, 10, (void *) &size_here, 0);
[1]1218 }
[541]1219 bOK = newtButton(2, 6, " OK ");
1220 bCancel = newtButton(14, 6, "Cancel");
[128]1221 if (strstr(mountlist->el[currline].device, RAID_DEVICE_STUB)) {
1222 b_raid = newtButton(26, 6, "RAID..");
[1]1223 }
[128]1224 newtPushHelpLine
[541]1225 (" Edit this partition's mountpoint, size and format; then click 'OK'.");
[128]1226 myForm = newtForm(NULL, NULL, 0);
1227 newtFormAddComponents(myForm, deviceComp, mountpointComp, sizeComp,
1228 formatComp, label0, label1, label2, label3, bOK,
1229 bCancel, b_raid, NULL);
1230 for (b_res = NULL; b_res != bOK && b_res != bCancel;) {
1231 b_res = newtRunForm(myForm);
[2334]1232 mr_free(device_str);
1233 mr_asprintf(device_str, "%s", device_here);
1234 mr_strip_spaces(device_str);
1235
1236 mr_free(mountpoint_str);
1237 mr_asprintf(mountpoint_str, "%s", mountpoint_here);
1238 mr_strip_spaces(mountpoint_str);
1239
1240 mr_free(format_str);
1241 mr_asprintf(format_str, "%s", format_here);
1242 mr_strip_spaces(format_str);
1243
[128]1244 if (b_res == bOK && strstr(device_str, RAID_DEVICE_STUB)
1245 && strstr(device_used_to_be, RAID_DEVICE_STUB)
1246 && strcmp(device_str, device_used_to_be)) {
[541]1247 popup_and_OK("You can't change /dev/mdX to /dev/mdY.");
[128]1248 b_res = NULL;
1249 continue;
1250 } else if (b_res == bOK && !strcmp(mountpoint_str, "image")
1251 && strcmp(mountpt_used_to_be, "image")) {
[541]1252 popup_and_OK("You can't change a regular device to an image.");
[128]1253 b_res = NULL;
1254 continue;
[1]1255 }
[128]1256 if (!strstr(mountlist->el[currline].device, RAID_DEVICE_STUB)
1257 && strcmp(mountlist->el[currline].mountpoint, "image")) {
[2334]1258 mr_free(size_str);
1259 mr_asprintf(size_str, "%s", size_here);
1260 mr_strip_spaces(size_str);
[128]1261 } else {
[2334]1262 mr_asprintf(size_str, "%ld", calculate_raid_device_size(mountlist, raidlist, mountlist->el[currline].device) / 1024);
[128]1263 newtLabelSetText(sizeComp, size_str);
[1]1264 }
[128]1265 /* do not let user click RAID button if user has changed device_str */
1266 if (b_res == b_raid) {
1267 if (strcmp(device_str, mountlist->el[currline].device)) {
1268 /*
1269 can't change mountlist's entry from /dex/mdX to /dev/mdY: it would ugly
1270 when you try to map the changes over to the raidtab list, trust me
1271 */
1272 popup_and_OK
[541]1273 ("You cannot edit the RAID settings until you have OK'd your change to the device node.");
[128]1274 } else {
1275 j = find_raid_device_in_raidlist(raidlist,
1276 mountlist->el[currline].
1277 device);
1278 if (j < 0) {
[2334]1279 mr_asprintf(tmp, "/etc/raidtab does not have an entry for %s; please delete it and add it again", mountlist->el[currline].device);
[128]1280 popup_and_OK(tmp);
[2300]1281 mr_free(tmp);
[128]1282 } else {
[541]1283 log_it("edit_raidlist_entry - calling");
[128]1284 edit_raidlist_entry(mountlist, raidlist,
1285 &raidlist->el[j], currline);
1286 }
1287 }
1288 }
[1]1289 }
[128]1290 newtFormDestroy(myForm);
1291 newtPopHelpLine();
1292 newtPopWindow();
[2334]1293 mr_free(mountpt_used_to_be);
1294
[128]1295 if (b_res == bCancel) {
1296 memcpy((void *) raidlist, (void *) &bkp_raidlist,
1297 sizeof(struct raidlist_itself));
[2334]1298 mr_free(device_str);
1299 mr_free(device_used_to_be);
1300 mr_free(format_str);
1301 mr_free(size_str);
[128]1302 return;
1303 }
1304 strcpy(mountlist->el[currline].device, device_str);
1305 strcpy(mountlist->el[currline].mountpoint, mountpoint_str);
[2334]1306 mr_free(mountpoint_str);
1307
[128]1308 strcpy(mountlist->el[currline].format, format_str);
[2334]1309 mr_free(format_str);
1310
[705]1311 if (strcmp(mountlist->el[currline].mountpoint, "image")) {
1312 if (strstr(mountlist->el[currline].device, RAID_DEVICE_STUB)) {
1313 mountlist->el[currline].size =
1314 calculate_raid_device_size(mountlist, raidlist,
[128]1315 mountlist->el[currline].device);
[705]1316 } else {
[2125]1317 mountlist->el[currline].size = atol(size_str) * 1024L;
[705]1318 }
[128]1319 }
[2334]1320 mr_free(size_str);
[738]1321 newtListboxSetEntry(listbox, (long) keylist[currline],
[128]1322 mountlist_entry_to_string(mountlist, currline));
1323 /* if new /dev/md RAID device then do funky stuff */
1324 if (strstr(mountlist->el[currline].device, RAID_DEVICE_STUB)
1325 && !strstr(device_used_to_be, RAID_DEVICE_STUB)) {
[2334]1326 initiate_new_raidlist_entry(raidlist, mountlist, currline, device_str);
[128]1327 }
1328 /* if moving from RAID to non-RAID then do funky stuff */
1329 else if (strstr(device_used_to_be, RAID_DEVICE_STUB)
1330 && !strstr(device_str, RAID_DEVICE_STUB)) {
1331 delete_raidlist_entry(mountlist, raidlist, device_str);
1332 }
1333 /* if moving a non-RAID to another non-RAID then re-jig any RAID disks, if necessary */
1334 else if (!strstr(device_used_to_be, RAID_DEVICE_STUB)
1335 && !strstr(device_str, RAID_DEVICE_STUB)) {
1336 rejig_partition_name_in_raidlist_if_necessary(raidlist,
1337 device_used_to_be,
1338 device_str);
1339 }
[1]1340/* else, moving a RAID to another RAID; bad idea, or so I thought */
[128]1341#ifndef __FreeBSD__ /* It works fine under FBSD. */
1342 else if (strcmp(device_used_to_be, device_str)) {
[2334]1343 popup_and_OK("You are renaming a RAID device as another RAID device. I don't like it but I'll allow it.");
[128]1344 }
[1]1345#endif
[2334]1346 mr_free(device_str);
1347 mr_free(device_used_to_be);
1348
[128]1349 redraw_mountlist(mountlist, keylist, listbox);
[1]1350}
1351
1352
1353#if __FreeBSD__
1354/**
1355 * Add a subdisk to @p raidrec.
1356 * @param raidlist The raidlist containing information about RAID partitions.
1357 * @param raidrec The RAID device record to add the subdisk to.
1358 * @param temp The device name of the RAID disk to add it to.
1359 * @author Joshua Oreman
1360 * @ingroup restoreGuiMountlist
1361 */
1362void
[128]1363add_raid_subdisk(struct raidlist_itself *raidlist,
1364 struct vinum_plex *raidrec, char *temp)
[1]1365{
[128]1366 int i;
1367 bool found = FALSE;
1368
1369 for (i = 0; i < raidlist->disks.entries; ++i) {
1370 if (!strcmp(raidlist->disks.el[i].device, temp)) {
[2334]1371 strcpy(raidrec->sd[raidrec->subdisks].which_device, raidlist->disks.el[i].name);
[128]1372 found = TRUE;
1373 }
[1]1374 }
[128]1375 if (!found) {
[2300]1376 sprintf(raidlist->disks.el[raidlist->disks.entries].name, "drive%i", raidlist->disks.entries);
1377 sprintf(raidrec->sd[raidrec->subdisks].which_device, "drive%i", raidlist->disks.entries);
[128]1378 strcpy(raidlist->disks.el[raidlist->disks.entries++].device, temp);
1379 }
1380 raidrec->subdisks++;
[1]1381}
1382
1383
1384/**
1385 * Determine the /dev entry for @p vinum_name.
1386 * @param raidlist The raidlist containing information about RAID devices.
1387 * @param vinum_name The name of the Vinum drive to map to a /dev entry.
1388 * @return The /dev entry, or NULL if none was found.
1389 * @note The returned string points to static storage that will be overwritten with each call.
1390 * @author Joshua Oreman
1391 * @ingroup restoreUtilityGroup
1392 */
[128]1393char *find_dev_entry_for_raid_device_name(struct raidlist_itself *raidlist,
1394 char *vinum_name)
[1]1395{
[128]1396 int i;
1397 for (i = 0; i < raidlist->disks.entries; ++i) {
1398 if (!strcmp(raidlist->disks.el[i].name, vinum_name)) {
1399 return raidlist->disks.el[i].device;
1400 }
[1]1401 }
[128]1402 return NULL;
[1]1403}
1404
1405void
[128]1406edit_raidlist_plex(struct mountlist_itself *mountlist,
1407 struct raidlist_itself *raidlist,
1408 struct vinum_plex *raidrec, int currline,
1409 int currline2);
[1]1410
1411#endif
1412
1413
1414/**
1415 * Edit the entry for @p raidrec in @p raidlist.
1416 * @param mountlist The mountlist to get some information from.
1417 * @param raidlist The raidlist containing information about RAID devices.
1418 * @param raidrec The RAID device record for this partition.
1419 * @param currline The line number (starting from 0) in the mountlist of the RAID device.
1420 * @ingroup restoreGuiMountlist
1421 */
1422void
[128]1423edit_raidlist_entry(struct mountlist_itself *mountlist,
1424 struct raidlist_itself *raidlist,
1425 struct OSSWAP (raid_device_record,
1426 vinum_volume) * raidrec, int currline)
[1]1427{
1428
1429#ifdef __FreeBSD__
1430 /** structures ********************************************************/
[128]1431 struct vinum_volume bkp_raidrec;
[1]1432
1433
1434 /** buffers ***********************************************************/
[128]1435 char title_of_editraidForm_window[MAX_STR_LEN];
[1]1436
1437 /** newt **************************************************************/
[128]1438 newtComponent editraidForm;
1439 newtComponent bOK;
1440 newtComponent bCancel;
1441 newtComponent bEdit;
1442 newtComponent bAdd;
1443 newtComponent bDelete;
1444 newtComponent b_res;
1445 newtComponent plexesListbox;
1446 newtComponent plexesHeader;
[1]1447
[128]1448 void *keylist[10];
1449 void *curr_choice;
[2300]1450 char *raidlevel = NULL;
1451 char *chunksize = NULL;
1452 char *msg = NULL;
[1]1453
[128]1454 int currline2 = 0;
[2300]1455 int res = 0;
[1]1456
[541]1457 log_it("Started edit_raidlist_entry");
[128]1458 memcpy((void *) &bkp_raidrec, (void *) raidrec,
1459 sizeof(struct vinum_volume));
[541]1460 sprintf(title_of_editraidForm_window, "Plexes on %s",
[128]1461 raidrec->volname);
[541]1462 newtPushHelpLine(" Please select a plex to edit");
[128]1463 newtOpenWindow(13, 5, 54, 15, title_of_editraidForm_window);
1464 for (;;) {
1465 int i;
1466 char headerstr[MAX_STR_LEN];
1467 snprintf(headerstr, MAX_STR_LEN, "%-14s %-8s %11s %8s",
[541]1468 "Plex", "Level", "Stripe Size", "Subdisks");
[1]1469
[541]1470 bOK = newtCompactButton(2, 13, " OK ");
1471 bCancel = newtCompactButton(12, 13, "Cancel");
1472 bAdd = newtCompactButton(22, 13, " Add ");
1473 bEdit = newtCompactButton(32, 13, " Edit ");
1474 bDelete = newtCompactButton(42, 13, "Delete");
[1]1475
[128]1476 plexesListbox =
1477 newtListbox(2, 3, 9, NEWT_FLAG_SCROLL | NEWT_FLAG_RETURNEXIT);
1478 plexesHeader = newtLabel(2, 2, headerstr);
1479 editraidForm = newtForm(NULL, NULL, 0);
[1]1480
[128]1481 newtListboxClear(plexesListbox);
1482 for (i = 0; i < 10; ++i) {
1483 keylist[i] = (void *) i;
1484 if (i < raidrec->plexes) {
[2300]1485 char pname[64], entry[MAX_STR_LEN];
[128]1486 switch (raidrec->plex[i].raidlevel) {
1487 case -1:
[2334]1488 mr_asprintf(raidlevel, "concat");
[128]1489 break;
1490 case 0:
[2334]1491 mr_asprintf(raidlevel, "striped");
[128]1492 break;
1493 case 5:
[2334]1494 mr_asprintf(raidlevel, "raid5");
[128]1495 break;
1496 default:
[2334]1497 mr_asprintf(raidlevel, "raid%i", raidrec->plex[i].raidlevel);
[128]1498 break;
1499 }
1500
1501 if (raidrec->plex[i].raidlevel == -1) {
[2334]1502 mr_asprintf(chunksize, "N/A");
[128]1503 } else {
[2334]1504 mr_asprintf(chunksize, "%dk", raidrec->plex[i].stripesize);
[128]1505 }
1506 snprintf(pname, 64, "%s.p%i", raidrec->volname, i);
1507 snprintf(entry, MAX_STR_LEN, "%-14s %-8s %11s %8d",
1508 pname, raidlevel, chunksize,
1509 raidrec->plex[i].subdisks);
[2300]1510 mr_free(raidlevel);
1511 mr_free(chunksize);
1512
[128]1513 newtListboxAppendEntry(plexesListbox, entry, keylist[i]);
1514 }
[1]1515 }
1516
[128]1517 newtFormAddComponents(editraidForm, bOK, bCancel, bAdd, bEdit,
1518 bDelete, plexesListbox, plexesHeader, NULL);
1519
1520 b_res = newtRunForm(editraidForm);
1521 if (b_res == bOK || b_res == bCancel) {
1522 break;
[1]1523 }
1524
[128]1525 curr_choice = newtListboxGetCurrent(plexesListbox);
1526 for (currline2 = 0; currline2 < raidrec->plexes; ++currline2) {
1527 if (currline2 > 9)
1528 break;
1529 if (keylist[currline2] == curr_choice)
1530 break;
1531 }
[1]1532
[128]1533 if (b_res == bDelete) {
[2334]1534 mr_asprintf(msg, "Are you sure you want to delete %s.p%i?", raidrec->volname, currline2);
[2300]1535 res = ask_me_yes_or_no(msg);
1536 mr_free(msg);
1537
1538 if (res) {
[541]1539 log_it("Deleting RAID plex");
[128]1540 memcpy((void *) &raidrec->plex[currline2],
1541 (void *) &raidrec->plex[raidrec->plexes - 1],
1542 sizeof(struct vinum_plex));
1543 raidrec->plexes--;
1544 }
1545 continue;
1546 }
1547 if (b_res == bAdd) {
1548 raidrec->plex[raidrec->plexes].raidlevel = 0;
1549 raidrec->plex[raidrec->plexes].stripesize = 279;
1550 raidrec->plex[raidrec->plexes].subdisks = 0;
1551 currline2 = raidrec->plexes++;
1552 }
1553 edit_raidlist_plex(mountlist, raidlist, &raidrec->plex[currline2],
1554 currline, currline2);
1555 newtFormDestroy(editraidForm);
[1]1556 }
[128]1557 if (b_res == bCancel) {
1558 memcpy((void *) raidrec, (void *) &bkp_raidrec,
1559 sizeof(struct vinum_volume));
1560 }
1561 newtPopHelpLine();
1562 newtPopWindow();
1563 mountlist->el[currline].size =
1564 calculate_raid_device_size(mountlist, raidlist, raidrec->volname);
[1]1565#else
1566 /** structures ********************************************************/
[128]1567 struct raid_device_record *bkp_raidrec;
[1]1568
1569
1570 /** buffers ***********************************************************/
[128]1571 char *title_of_editraidForm_window;
[2334]1572 char *sz_raid_level = NULL;
[2314]1573 char *sz_data_disks = NULL;
1574 char *sz_spare_disks = NULL;
1575 char *sz_parity_disks = NULL;
1576 char *sz_failed_disks = NULL;
[1]1577
1578 /** newt **************************************************************/
[128]1579 newtComponent editraidForm;
[1]1580 newtComponent bOK;
1581 newtComponent bCancel;
1582 newtComponent bAdditional;
1583 newtComponent bChangeRaid;
1584 newtComponent bSelectData;
1585 newtComponent bSelectSpare;
1586 newtComponent bSelectParity;
1587 newtComponent bSelectFailed;
1588 newtComponent b_res;
1589
[128]1590 assert(mountlist != NULL);
1591 assert(raidlist != NULL);
1592 assert(raidrec != NULL);
[1]1593
[2313]1594 bkp_raidrec = mr_malloc(sizeof(struct raid_device_record));
[128]1595 log_it("Started edit_raidlist_entry");
[1]1596
[2313]1597 memcpy((void *) bkp_raidrec, (void *) raidrec, sizeof(struct raid_device_record));
[2334]1598 mr_asprintf(title_of_editraidForm_window, "%s", raidrec->raid_device);
[128]1599 log_msg(2, "Opening newt window");
1600 newtOpenWindow(20, 5, 40, 14, title_of_editraidForm_window);
1601 for (;;) {
1602 log_msg(2, "Main loop");
[2334]1603 mr_free(title_of_editraidForm_window);
1604 mr_asprintf(title_of_editraidForm_window, "Edit %s", raidrec->raid_device);
1605 mr_asprintf(sz_raid_level, "%s", turn_raid_level_number_to_string(raidrec->raid_level));
[2314]1606 /* Those 4 strings are allocated by the function */
1607 sz_data_disks = number_of_disks_as_string(raidrec->data_disks.entries, "data");
1608 sz_spare_disks = number_of_disks_as_string(raidrec->spare_disks.entries, "spare");
1609 sz_parity_disks = number_of_disks_as_string(raidrec->parity_disks.entries, "parity");
1610 sz_failed_disks = number_of_disks_as_string(raidrec->failed_disks.entries, "failed");
[128]1611 bSelectData = newtButton(1, 1, sz_data_disks);
1612 bSelectSpare = newtButton(20, 1, sz_spare_disks);
1613 bSelectParity = newtButton(1, 5, sz_parity_disks);
1614 bSelectFailed = newtButton(20, 5, sz_failed_disks);
1615 bChangeRaid = newtButton(1, 9, sz_raid_level);
[541]1616 bOK = newtButton(16 + (raidrec->raid_level == -1), 9, " OK ");
1617 bCancel = newtButton(28, 9, "Cancel");
[128]1618 bAdditional =
1619 newtCompactButton(1, 13,
[541]1620 "Additional settings and information");
[128]1621 newtPushHelpLine
[541]1622 (" Edit the RAID device's settings to your heart's content, then hit OK/Cancel.");
[128]1623 editraidForm = newtForm(NULL, NULL, 0);
1624 newtFormAddComponents(editraidForm, bSelectData, bSelectParity,
1625 bChangeRaid, bSelectSpare, bSelectFailed,
1626 bOK, bCancel, bAdditional);
1627 b_res = newtRunForm(editraidForm);
1628 if (b_res == bChangeRaid) {
1629 choose_raid_level(raidrec);
1630 } else if (b_res == bSelectData) {
[2313]1631 select_raid_disks(mountlist, raidlist, raidrec, "data", &raidrec->data_disks);
[128]1632 } else if (b_res == bSelectSpare) {
[2313]1633 select_raid_disks(mountlist, raidlist, raidrec, "spare", &raidrec->spare_disks);
[128]1634 } else if (b_res == bSelectParity) {
[2313]1635 select_raid_disks(mountlist, raidlist, raidrec, "parity", &raidrec->parity_disks);
[128]1636 } else if (b_res == bSelectFailed) {
[2313]1637 select_raid_disks(mountlist, raidlist, raidrec, "failed", &raidrec->failed_disks);
[128]1638 } else if (b_res == bAdditional) {
1639 edit_raidrec_additional_vars(raidrec);
1640 }
1641 newtFormDestroy(editraidForm);
1642 if (b_res == bOK || b_res == bCancel) {
1643 break;
1644 }
[2314]1645 mr_free(sz_data_disks);
1646 mr_free(sz_spare_disks);
1647 mr_free(sz_parity_disks);
1648 mr_free(sz_failed_disks);
[1]1649 }
[128]1650 if (b_res == bCancel) {
[2313]1651 memcpy((void *) raidrec, (void *) bkp_raidrec, sizeof(struct raid_device_record));
[1]1652 }
[128]1653 newtPopHelpLine();
1654 newtPopWindow();
[2313]1655 mountlist->el[currline].size = calculate_raid_device_size(mountlist, raidlist, raidrec->raid_device);
[2334]1656 mr_free(title_of_editraidForm_window);
1657 mr_free(sz_raid_level);
[128]1658 paranoid_free(bkp_raidrec);
[1]1659#endif
1660}
1661
1662#ifdef __FreeBSD__
1663
1664/**
1665 * Edit the plex @p raidrec in @p raidlist.
1666 * @param mountlist The mountlist to get some of the information from.
1667 * @param raidlist The raidlist containing information about RAID devices.
1668 * @param raidrec The plex to edit.
1669 * @param currline The line number (starting from 0) of the RAID device in @p mountlist.
1670 * @param currline2 The line number (starting from 0) of the plex within the RAID device.
1671 * @author Joshua Oreman
1672 * @ingroup restoreGuiMountlist
1673 */
1674void
[128]1675edit_raidlist_plex(struct mountlist_itself *mountlist,
1676 struct raidlist_itself *raidlist,
1677 struct vinum_plex *raidrec, int currline, int currline2)
[1]1678{
1679
1680 /** structures ********************************************************/
[128]1681 struct vinum_plex bkp_raidrec;
[1]1682
1683
1684 /** buffers ***********************************************************/
[128]1685 char title_of_editraidForm_window[MAX_STR_LEN];
[1]1686
1687 /** newt **************************************************************/
[128]1688 newtComponent editraidForm;
1689 newtComponent bOK;
1690 newtComponent bCancel;
1691 newtComponent bEdit;
1692 newtComponent bAdd;
1693 newtComponent bDelete;
1694 newtComponent b_res;
1695 newtComponent unallocListbox, allocListbox;
1696 newtComponent bLevel, sLevel;
1697 newtComponent bStripeSize, sStripeSize;
1698 newtComponent bAlloc, bUnalloc;
[1]1699
[128]1700 void *keylist[ARBITRARY_MAXIMUM];
1701 void *curr_choice_a, *curr_choice_u;
1702 int currline_a, currline_u;
[1]1703
[2316]1704 char *p = NULL;
[2334]1705 char *tmp = NULL;
1706 char *entry = NULL;
[2316]1707
[128]1708 struct mountlist_itself *unallocparts;
[1]1709
[128]1710 unallocparts = malloc(sizeof(struct mountlist_itself));
[1]1711
[128]1712 log_it("Started edit_raidlist_entry");
1713 memcpy((void *) &bkp_raidrec, (void *) raidrec,
1714 sizeof(struct vinum_plex));
1715 sprintf(title_of_editraidForm_window, "%s.p%i",
1716 raidlist->el[currline].volname, currline2);
1717 newtPushHelpLine
[541]1718 (" Please select a subdisk to edit, or edit this plex's parameters");
[128]1719 newtOpenWindow(13, 3, 54, 18, title_of_editraidForm_window);
1720 for (;;) {
1721 int i;
[1]1722
[128]1723 switch (raidrec->raidlevel) {
1724 case -1:
[2334]1725 mr_asprintf(tmp, "concat");
[128]1726 break;
1727 case 0:
[2334]1728 mr_asprintf(tmp, "striped");
[128]1729 break;
1730 case 5:
[2334]1731 mr_asprintf(tmp, "raid5");
[128]1732 break;
1733 default:
[2334]1734 mr_asprintf(tmp, "unknown (%i)", raidrec->raidlevel);
[128]1735 break;
1736 }
[541]1737 bLevel = newtCompactButton(2, 2, " RAID level ");
[128]1738 sLevel = newtLabel(19, 2, tmp);
[2334]1739 mr_free(tmp);
[128]1740
1741 if (raidrec->raidlevel >= 0) {
[2334]1742 mr_asprintf(tmp, "%ik", raidrec->stripesize);
[541]1743 bStripeSize = newtCompactButton(2, 4, " Stripe size ");
[128]1744 } else {
[2334]1745 mr_asprintf(tmp, "N/A");
[541]1746 bStripeSize = newtLabel(2, 4, "Stripe size:");
[128]1747 }
1748 sStripeSize = newtLabel(19, 4, tmp);
[2334]1749 mr_free(tmp);
[128]1750
[541]1751 bOK = newtCompactButton(2, 16, " OK ");
1752 bCancel = newtCompactButton(12, 16, "Cancel");
1753 bAdd = newtCompactButton(22, 16, " Add ");
1754 bEdit = newtCompactButton(32, 16, " Edit ");
1755 bDelete = newtCompactButton(42, 16, "Delete");
[128]1756
1757
1758 unallocListbox =
1759 newtListbox(2, 7, 7, NEWT_FLAG_SCROLL | NEWT_FLAG_RETURNEXIT);
1760 allocListbox =
1761 newtListbox(33, 7, 7, NEWT_FLAG_SCROLL | NEWT_FLAG_RETURNEXIT);
1762 bAlloc = newtButton(23, 7, " -> ");
1763 bUnalloc = newtButton(23, 11, " <- ");
1764
1765 editraidForm = newtForm(NULL, NULL, 0);
1766
1767 newtListboxClear(allocListbox);
1768 newtListboxClear(unallocListbox);
1769 bzero(unallocparts, sizeof(struct mountlist_itself));
1770 make_list_of_unallocated_raid_partitions(unallocparts, mountlist,
1771 raidlist);
1772 for (i = 0; i < ARBITRARY_MAXIMUM; ++i) {
1773 keylist[i] = (void *) i;
1774 if (i < raidrec->subdisks) {
[2334]1775 mr_asprintf(entry, "%-17s", find_dev_entry_for_raid_device_name(raidlist, raidrec->sd[i].which_device));
[128]1776 newtListboxAppendEntry(allocListbox, entry, keylist[i]);
[2334]1777 mr_free(entry);
[128]1778 }
1779 if (i < unallocparts->entries) {
[2334]1780 mr_asprintf(entry, "%-17s", unallocparts->el[i].device);
[128]1781 newtListboxAppendEntry(unallocListbox, entry, keylist[i]);
[2334]1782 mr_free(entry);
[128]1783 }
1784 }
1785
[1]1786#define COMP(x) newtFormAddComponent (editraidForm, x)
1787#define UCOMP(x) if (unallocparts->entries > 0) COMP(x)
1788#define ACOMP(x) if (raidrec->subdisks > 0) COMP(x)
[128]1789 editraidForm = newtForm(NULL, NULL, 0);
1790 UCOMP(unallocListbox);
1791 UCOMP(bAlloc);
1792 ACOMP(allocListbox);
1793 ACOMP(bUnalloc);
1794 COMP(bOK);
1795 COMP(bCancel);
1796 COMP(bLevel);
1797 COMP(sLevel);
1798 if (raidrec->raidlevel != -1) {
1799 COMP(bStripeSize);
1800 COMP(sStripeSize);
1801 }
[1]1802#undef COMP
1803#undef UCOMP
1804#undef ACOMP
1805
[128]1806 newtRefresh();
1807 b_res = newtRunForm(editraidForm);
1808 if (b_res == bOK || b_res == bCancel) {
1809 break;
1810 }
1811
1812 curr_choice_a = (raidrec->subdisks > 0) ?
1813 newtListboxGetCurrent(allocListbox) : (void *) 1234;
1814 curr_choice_u = (unallocparts->entries > 0) ?
1815 newtListboxGetCurrent(unallocListbox) : (void *) 1234;
1816 for (currline_a = 0; currline_a < raidrec->subdisks; ++currline_a) {
1817 if (currline_a > ARBITRARY_MAXIMUM)
1818 break;
1819 if (keylist[currline_a] == curr_choice_a)
1820 break;
1821 }
1822 for (currline_u = 0; currline_u < unallocparts->entries;
1823 ++currline_u) {
1824 if (currline_u > ARBITRARY_MAXIMUM)
1825 break;
1826 if (keylist[currline_u] == curr_choice_u)
1827 break;
1828 }
1829 if (b_res == bLevel) {
1830 choose_raid_level(raidrec);
1831 } else if (b_res == bStripeSize) {
[2323]1832 mr_asprintf(tmp, "%i", raidrec->stripesize);
[2316]1833 p = popup_and_get_string("Stripe size", "Please enter the stripe size in kilobytes.", tmp);
1834 mr_free(tmp);
1835
1836 if (p != NULL) {
1837 raidrec->stripesize = atoi(p);
[128]1838 }
[2316]1839 mr_free(p);
[128]1840 } else if ((b_res == bAlloc) || (b_res == unallocListbox)) {
1841 if (currline_u <= unallocparts->entries)
1842 add_raid_subdisk(raidlist, raidrec,
1843 unallocparts->el[currline_u].device);
1844 } else if ((b_res == bUnalloc) || (b_res == allocListbox)) {
1845 if (currline_a <= raidrec->subdisks) {
1846 memcpy((void *) &raidrec->sd[currline_a],
1847 (void *) &raidrec->sd[raidrec->subdisks - 1],
1848 sizeof(struct vinum_subdisk));
1849 raidrec->subdisks--;
1850 }
1851 }
1852 newtFormDestroy(editraidForm);
1853 newtRefresh();
[1]1854}
[128]1855
1856if (b_res == bCancel) {
[2313]1857 memcpy((void *) raidrec, (void *) &bkp_raidrec, sizeof(struct vinum_plex));
[128]1858}
1859newtPopWindow();
1860newtPopHelpLine();
1861}
[1]1862#else
1863/**
1864 * Edit additional RAID variable number @p lino.
1865 * @param raidrec The RAID device record to edit the variable in.
1866 * @param lino The line number (starting from 0) of the variable to edit.
1867 * @ingroup restoreGuiVarslist
1868 */
[128]1869void edit_varslist_entry(struct raid_device_record *raidrec, int lino)
[1]1870{
1871
1872 /** buffers ***********************************************************/
[2316]1873 char *header = NULL;
1874 char *comment = NULL;
1875 char *sz_out = NULL;
1876 char *p = NULL;
[1]1877
[128]1878 assert(raidrec != 0);
1879 assert(lino >= 0);
[1]1880
[2323]1881 mr_asprintf(sz_out, "%s", raidrec->additional_vars.el[lino].value);
1882 mr_asprintf(header, "Edit %s", raidrec->additional_vars.el[lino].label);
1883 mr_asprintf(comment, "Please set %s's value (currently '%s')", raidrec->additional_vars.el[lino].label, sz_out);
[2316]1884 p = popup_and_get_string(header, comment, sz_out);
1885 if (p != NULL) {
1886 mr_strip_spaces(p);
1887 strcpy(raidrec->additional_vars.el[lino].value, p);
[128]1888 }
[2316]1889 mr_free(p);
[1]1890}
1891
1892#endif
1893
1894/**
1895 * Edit the mountlist using Newt.
1896 * @param mountlist The mountlist to edit.
1897 * @param raidlist The raidlist that goes with @p mountlist.
1898 * @return 0 if the user pressed OK, 1 if they pressed Cancel.
1899 */
1900int
[128]1901edit_mountlist_in_newt(char *mountlist_fname,
1902 struct mountlist_itself *mountlist,
1903 struct raidlist_itself *raidlist)
[1]1904{
1905
1906 /** newt **************************************************************/
[128]1907 newtComponent myForm;
[1]1908 newtComponent bAdd;
1909 newtComponent bEdit;
1910 newtComponent bDelete;
1911 newtComponent bOK;
1912 newtComponent bCancel;
1913 newtComponent b_res = NULL;
1914 newtComponent partitionsListbox;
1915 newtComponent headerMsg;
1916 newtComponent flawsLabelA;
1917 newtComponent flawsLabelB;
1918 newtComponent flawsLabelC;
1919 newtComponent bReload;
1920
1921 /** ???? *************************************************************/
[128]1922 void *curr_choice;
1923 void *keylist[ARBITRARY_MAXIMUM];
[1]1924
1925 /** int **************************************************************/
[128]1926 int i = 0;
[1]1927 int currline = 0;
1928 int finished = FALSE;
1929
1930 /** buffers **********************************************************/
[2300]1931 char *tmp = NULL;
[2352]1932 char *flaws_str = NULL;
[2209]1933 char *flaws_str_A = NULL;
1934 char *flaws_str_B = NULL;
1935 char *flaws_str_C = NULL;
[1]1936
[128]1937 assert(mountlist != NULL);
1938 assert(raidlist != NULL);
[1]1939
[128]1940 if (mountlist->entries > ARBITRARY_MAXIMUM) {
[541]1941 log_to_screen("Arbitrary limits suck, man!");
[128]1942 finish(1);
[1]1943 }
[128]1944 newtPushHelpLine
[541]1945 (" Please edit the mountlist to your satisfaction, then click OK or Cancel.");
[128]1946 i = 4;
[541]1947 bAdd = newtCompactButton(i, 17, " Add ");
1948 bEdit = newtCompactButton(i += 11, 17, " Edit ");
1949 bDelete = newtCompactButton(i += 12, 17, "Delete");
1950 bReload = newtCompactButton(i += 12, 17, "Reload");
1951 bCancel = newtCompactButton(i += 12, 17, "Cancel");
1952 bOK = newtCompactButton(i += 12, 17, " OK ");
[2334]1953 mr_asprintf(tmp, "%-24s %-24s %-8s %s", "Device", "Mountpoint", "Format", "Size (MB)");
[128]1954 headerMsg = newtLabel(2, 1, tmp);
[2352]1955 flawsLabelA = newtLabel(2, 13, " ");
1956 flawsLabelB = newtLabel(2, 14, " ");
1957 flawsLabelC = newtLabel(2, 15, " ");
[128]1958 partitionsListbox =
1959 newtListbox(2, 2, 10, NEWT_FLAG_SCROLL | NEWT_FLAG_RETURNEXIT);
1960 redraw_mountlist(mountlist, keylist, partitionsListbox);
[541]1961 newtOpenWindow(1, 3, 77, 18, "Editing mountlist");
[128]1962 myForm = newtForm(NULL, NULL, 0);
1963 newtFormAddComponents(myForm, headerMsg, partitionsListbox,
1964 flawsLabelA, flawsLabelB, flawsLabelC, bAdd,
1965 bEdit, bDelete, bReload, bCancel, bOK, NULL);
1966 while (!finished) {
[2395]1967 flaws_str = evaluate_mountlist(mountlist);
[2400]1968 /* flaws_str can be NULL */
1969 if ((flaws_str == NULL) || (strlen(flaws_str) == 0)) {
1970 mr_asprintf(flaws_str_A, "");
1971 } else {
[2356]1972 mr_asprintf(flaws_str_A, "%s", flaws_str + 1);
1973 }
1974 if (strlen(flaws_str_A) >= 74) {
1975 for (i = 74; flaws_str_A[i] != ' '; i--);
1976 mr_asprintf(flaws_str_B, "%s", flaws_str_A + i + 1);
1977 flaws_str_A[i] = '\0';
1978 } else {
1979 mr_asprintf(flaws_str_B, "");
1980 }
1981 if (strlen(flaws_str_B) >= 74) {
1982 for (i = 74; flaws_str_B[i] != ' '; i--);
1983 mr_asprintf(flaws_str_C, "%s", flaws_str_B + i + 1);
1984 flaws_str_B[i] = '\0';
1985 } else {
1986 mr_asprintf(flaws_str_C, "");
1987 }
[2352]1988
[128]1989 newtLabelSetText(flawsLabelA, flaws_str_A);
1990 newtLabelSetText(flawsLabelB, flaws_str_B);
1991 newtLabelSetText(flawsLabelC, flaws_str_C);
1992 b_res = newtRunForm(myForm);
[2352]1993 mr_free(flaws_str_A);
1994 mr_free(flaws_str_B);
1995 mr_free(flaws_str_C);
1996
[128]1997 if (b_res == bOK) {
[2395]1998 if (flaws_str != NULL) {
[128]1999 finished =
2000 ask_me_yes_or_no
[541]2001 ("Your mountlist might not work. Continue anyway?");
[128]2002 } else {
2003 finished =
2004 ask_me_yes_or_no
[541]2005 ("Are you sure you want to save your mountlist and continue? (No changes will be made to your partition table at this time.)");
[128]2006 }
2007 } else if (b_res == bCancel) {
2008 finished = TRUE;
2009 } else if (b_res == bReload) {
[541]2010 if (ask_me_yes_or_no("Reload original mountlist?")) {
[128]2011 load_mountlist(mountlist, mountlist_fname);
2012 load_raidtab_into_raidlist(raidlist, RAIDTAB_FNAME);
2013 redraw_mountlist(mountlist, keylist, partitionsListbox);
2014 }
2015 } else {
2016 curr_choice = newtListboxGetCurrent(partitionsListbox);
2017 for (i = 0;
2018 i < mountlist->entries && keylist[i] != curr_choice; i++);
2019 if (i == mountlist->entries && mountlist->entries > 0) {
[541]2020 log_to_screen("I don't know what that button does!");
[128]2021 } else {
2022 currline = i;
2023 if (b_res == bAdd) {
2024 add_mountlist_entry(mountlist, raidlist,
2025 partitionsListbox, currline,
2026 keylist);
2027 } else if (b_res == bDelete) {
2028 delete_mountlist_entry(mountlist, raidlist,
2029 partitionsListbox, currline,
2030 keylist);
2031 } else {
2032 if (mountlist->entries > 0) {
2033 edit_mountlist_entry(mountlist, raidlist,
2034 partitionsListbox, currline,
2035 keylist);
2036 } else {
2037 popup_and_OK
[541]2038 ("Please add an entry. Then press ENTER to edit it.");
[128]2039 }
2040 }
2041 }
[1]2042 }
[2400]2043 mr_free(flaws_str);
[1]2044 }
[128]2045 newtFormDestroy(myForm);
[2300]2046
2047 mr_free(flaws_str_A);
2048 mr_free(flaws_str_B);
2049 mr_free(flaws_str_C);
2050 mr_free(tmp);
2051
[128]2052 newtPopWindow();
2053 newtPopHelpLine();
2054 if (b_res == bOK) {
[541]2055 log_it("You pushed 'OK'. I shall now continue.");
[128]2056 return (0);
2057 } else {
2058 /* popup_and_OK("You pushed 'cancel'. I shall now abort."); */
2059 return (1);
2060 }
[1]2061}
2062
2063
2064
2065/**
2066 * Edit the mountlist.
2067 * @param mountlist The mountlist to edit.
2068 * @param raidlist The raidlist that goes with @p mountlist.
2069 * @return 0 if the user pressed OK, 1 if they pressed Cancel.
2070 */
2071int
[128]2072edit_mountlist(char *mountlist_fname, struct mountlist_itself *mountlist,
2073 struct raidlist_itself *raidlist)
[1]2074{
[128]2075 int res = 0;
[1]2076
[2230]2077 log_it("entering eml");
[1]2078
[128]2079 if (g_text_mode) {
2080 fatal_error("Don't call edit_mountlist() in text mode");
2081 } else {
2082 log_it
2083 ("I'm in GUI mode, so I shall edit mountlist using edit_mountlist()");
2084 res = edit_mountlist_in_newt(mountlist_fname, mountlist, raidlist);
2085 }
[2230]2086 log_it("leaving eml");
[128]2087 return (res);
[1]2088}
2089
2090
2091
2092
2093#ifndef __FreeBSD__
2094/**
2095 * Edit the additional RAID variables in @p raidrec.
2096 * @param raidrec The RAID device record to edit the RAID variables in.
2097 * @ingroup restoreGuiVarslist
2098 */
[128]2099void edit_raidrec_additional_vars(struct raid_device_record *raidrec)
[1]2100{
2101
2102 /** structure *********************************************************/
[128]2103 struct raid_device_record bkp_raidrec;
[1]2104
2105 /** newt **************************************************************/
[128]2106 newtComponent myForm;
[1]2107 newtComponent bAdd;
2108 newtComponent bEdit;
2109 newtComponent bDelete;
2110 newtComponent bOK;
2111 newtComponent bCancel;
2112 newtComponent b_res;
2113 newtComponent varsListbox;
2114 newtComponent headerMsg;
2115
2116 /** ?? ***************************************************************/
[128]2117 void *keylist[ARBITRARY_MAXIMUM], *curr_choice;
[1]2118
2119 /** buffers **********************************************************/
[128]2120 char title_of_window[MAX_STR_LEN];
[1]2121
2122 /** int **************************************************************/
[128]2123 int i = 0;
[1]2124 int currline = 0;
2125
2126
[128]2127 assert(raidrec != NULL);
[1]2128
[128]2129 memcpy((void *) &bkp_raidrec, (void *) raidrec,
2130 sizeof(struct raid_device_record));
2131 sprintf(title_of_window, "Additional variables");
2132 newtPushHelpLine
[541]2133 (" Edit the additional fields to your heart's content, then click OK or Cancel.");
2134 headerMsg = newtLabel(1, 1, "Label Value");
[128]2135 varsListbox =
2136 newtListbox(1, 2, 6, NEWT_FLAG_SCROLL | NEWT_FLAG_RETURNEXIT);
2137 i = 1;
[541]2138 bAdd = newtCompactButton(i, 9, " Add ");
2139 bEdit = newtCompactButton(i += 8, 9, " Edit ");
2140 bDelete = newtCompactButton(i += 9, 9, "Delete");
2141 bOK = newtCompactButton(i += 9, 9, " OK ");
2142 bCancel = newtCompactButton(i += 9, 9, "Cancel");
[128]2143 newtOpenWindow(17, 7, 46, 10, title_of_window);
2144 myForm = newtForm(NULL, NULL, 0);
2145 newtFormAddComponents(myForm, headerMsg, varsListbox, bAdd, bEdit,
2146 bDelete, bOK, bCancel, NULL);
2147 insert_essential_additionalvars(raidrec);
2148 redraw_varslist(&raidrec->additional_vars, keylist, varsListbox);
2149 for (b_res = NULL; b_res != bOK && b_res != bCancel;) {
2150 b_res = newtRunForm(myForm);
2151 curr_choice = newtListboxGetCurrent(varsListbox);
2152 for (currline = 0;
2153 currline < raidrec->additional_vars.entries
2154 && keylist[currline] != curr_choice; currline++);
2155 if (currline == raidrec->additional_vars.entries
2156 && raidrec->additional_vars.entries > 0) {
2157 log_it("Warning - I don't know what this button does");
2158 }
2159 if (b_res == bOK) { /* do nothing */
2160 } else if (b_res == bCancel) { /* do nothing */
2161 } else if (b_res == bAdd) {
2162 add_varslist_entry(raidrec);
2163 } else if (b_res == bDelete) {
2164 delete_varslist_entry(raidrec, currline);
2165 } else {
2166 edit_varslist_entry(raidrec, currline);
2167 }
2168 redraw_varslist(&raidrec->additional_vars, keylist, varsListbox);
[1]2169 }
[128]2170 remove_essential_additionalvars(raidrec);
2171 newtFormDestroy(myForm);
2172 newtPopWindow();
2173 newtPopHelpLine();
2174 if (b_res == bCancel) {
2175 memcpy((void *) raidrec, (void *) &bkp_raidrec,
2176 sizeof(struct raid_device_record));
[1]2177 }
[128]2178 return;
[1]2179}
2180#endif
2181
2182
2183/**
2184 * Find the next free location to place a disk in @p disklist.
2185 * @param disklist The disklist to operate on.
2186 * @return The next free location (starting from 0).
2187 * @ingroup restoreGuiDisklist
2188 */
[128]2189int find_next_free_index_in_disklist(struct list_of_disks *disklist)
[1]2190{
2191
2192 /** int ***************************************************************/
[128]2193 int index = -1;
[1]2194 int pos = 0;
[128]2195
[1]2196 /** bool **************************************************************/
[128]2197 bool done;
[1]2198
[128]2199 assert(disklist != NULL);
[1]2200
[128]2201 for (done = FALSE; !done;) {
2202 for (pos = 0;
2203 pos < disklist->entries && disklist->el[pos].index <= index;
2204 pos++);
2205 if (pos >= disklist->entries) {
2206 done = TRUE;
2207 } else {
2208 index = disklist->el[pos].index;
2209 }
[1]2210 }
[128]2211 return (index + 1);
[1]2212}
2213
2214
2215
2216/**
2217 * Locate @p device in @p raidlist.
2218 * @param raidlist The raidlist ot search in.
2219 * @param device The RAID device to search for.
2220 * @return The index of the device, or -1 if it could not be found.
2221 * @ingroup restoreGuiMountlist
2222 */
2223int
[128]2224find_raid_device_in_raidlist(struct raidlist_itself *raidlist,
2225 char *device)
[1]2226{
2227
2228 /** int ***************************************************************/
[128]2229 int i = 0;
[1]2230#ifdef __FreeBSD__
[2300]2231 char *vdev = NULL;
2232 int res = 0;
[1]2233#else
2234// Linux
2235#endif
2236
[128]2237 assert(raidlist != NULL);
2238 assert_string_is_neither_NULL_nor_zerolength(device);
2239
[1]2240#ifdef __FreeBSD__
[128]2241 for (i = 0; i < raidlist->entries; i++) {
[2334]2242 mr_asprintf(vdev, "/dev/vinum/%s", raidlist->el[i].volname);
[2300]2243 res = strcmp(device, vdev);
2244 mr_free(vdev);
2245
2246 if (!res)
[128]2247 break;
2248 }
[1]2249#else
2250
[128]2251 for (i = 0;
2252 strcmp(raidlist->el[i].raid_device, device)
2253 && i < raidlist->entries; i++);
[1]2254#endif
[128]2255 if (i == raidlist->entries) {
2256 return (-1);
2257 } else {
2258 return (i);
2259 }
[1]2260}
2261
2262
2263/**
2264 * Get information about the location of ISO images from the user.
[2325]2265 * @param isodir_device Where to put the device (e.g. /dev/hda4) the user enters. Allocted by the function
[1]2266 * @param isodir_format Where to put the format (e.g. ext2) the user enters.
[1967]2267 * @param isodir_path Where to put the path (e.g. /var/cache/mondo) the user enters.
[1]2268 * @param nuke_me_please Whether we're planning on nuking or not.
2269 * @return TRUE if OK was pressed, FALSE otherwise.
2270 */
[2816]2271bool get_isodir_info(char *isodir_device, char *isodir_format, char *isodir_path, char *subdir_path, bool nuke_me_please) {
[1]2272
[2316]2273 char *p = NULL;
2274 char *q = NULL;
2275 char *r = NULL;
[2816]2276 char *s = NULL;
[2316]2277 char *idev = NULL;
2278 bool ret = FALSE; /* Should be false by default, and modfiy if conditions respected */
[2816]2279 bool HDD = FALSE;
[1]2280 /** initialize ********************************************************/
2281
[128]2282 assert(isodir_path != NULL);
[1]2283
[2080]2284 log_it("isodir_path = %s", isodir_path);
[2325]2285 if (isodir_device == NULL) {
[2323]2286 mr_asprintf(idev, "/dev/");
[2316]2287 } else {
[2323]2288 mr_asprintf(idev, "%s", isodir_device);
[128]2289 }
[2316]2290
[2382]2291 if (does_file_exist("/tmp/NETFS-SERVER-PATH")) {
[2316]2292 mr_free(idev);
[2382]2293 idev = last_line_of_file("/tmp/NETFS-SERVER-MOUNT");
2294 mr_asprintf(isodir_format, "netfs");
[2323]2295 mr_free(isodir_path);
[2382]2296 isodir_path = last_line_of_file("/tmp/NETFS-SERVER-PATH");
[128]2297 }
[2316]2298
2299 /* modify for the caller */
[2325]2300 mr_free(isodir_device);
2301 isodir_device = idev;
[128]2302 if (nuke_me_please) {
[2316]2303 ret = TRUE;
2304 } else {
2305 p = popup_and_get_string("ISO Mode - device", "On what device do the ISO files live?", idev);
2306 if (p != NULL) {
[2816]2307 if (popup_with_buttons("Are you restoring from an external hard drive ?", "Yes", "No")) {
2308 HDD = TRUE;
2309 }
[2316]2310 q = popup_and_get_string("ISO Mode - format", "What is the disk format of the device? (Hit ENTER if you don't know.)", isodir_format);
2311 mr_free(isodir_format);
2312
2313 if (q != NULL) {
2314 r = popup_and_get_string("ISO Mode - path", "At what path on this device can the ISO files be found?", isodir_path);
2315 if (r != NULL) {
2316 mr_strip_spaces(p);
2317 mr_strip_spaces(q);
2318 mr_strip_spaces(r);
[1]2319
[2316]2320 isodir_format = q;
2321
2322 /* modify for the caller */
[2325]2323 mr_free(isodir_device);
2324 isodir_device = p;
[2323]2325 mr_free(isodir_path);
2326 isodir_path = r;
[2316]2327 log_it("isodir_device = %s - isodir_format = %s - isodir_path = %s", isodir_device, isodir_format, isodir_path);
2328
2329 ret = TRUE;
2330 }
[2816]2331 if (HDD) {
2332 /* We need an additional param */
2333 subdir_path = isodir_path;
2334 mr_asprintf(isodir_path, "/tmp/isodir");
2335 }
[128]2336 }
2337 }
[2316]2338 mr_free(p);
[1]2339 }
[2316]2340 mr_free(isodir_format);
2341 return(ret);
[1]2342}
2343
2344
2345/**
2346 * Create a new raidtab entry for @p device in @p raidlist.
2347 * @param raidlist The raidlist to add the device to.
2348 * @param mountlist The mountlist containing information about the user's partitions.
2349 * @param currline The selected line in the mountlist.
2350 * @param device The RAID device (e.g. /dev/md0) to use.
2351 * @ingroup restoreGuiMountlist
2352 */
2353void
[128]2354initiate_new_raidlist_entry(struct raidlist_itself *raidlist,
2355 struct mountlist_itself *mountlist,
2356 int currline, char *device)
[1]2357{
2358
2359 /** structure *********************************************************/
[128]2360 struct OSSWAP (raid_device_record, vinum_volume) * raidrec;
[1]2361
2362 /** int ***************************************************************/
[128]2363 int pos_in_raidlist = 0;
[1]2364
[128]2365 assert(raidlist != NULL);
2366 assert(mountlist != NULL);
2367 assert_string_is_neither_NULL_nor_zerolength(device);
[1]2368
[128]2369 pos_in_raidlist =
2370 find_raid_device_in_raidlist(raidlist,
2371 mountlist->el[currline].device);
2372 if (pos_in_raidlist >= 0) {
2373 fatal_error("Sorry, that RAID device already exists. Weird.");
2374 }
2375 pos_in_raidlist = raidlist->entries++;
2376 raidrec = &raidlist->el[pos_in_raidlist];
2377 initialize_raidrec(raidrec);
[2334]2378 strcpy(raidrec->OSSWAP(raid_device, volname), OSSWAP(device, basename(device)));
[1]2379#ifndef __FreeBSD__
[128]2380 choose_raid_level(raidrec);
2381 select_raid_disks(mountlist, raidlist, raidrec, "data",
2382 &raidrec->data_disks);
[1]2383#endif
[128]2384 edit_raidlist_entry(mountlist, raidlist, raidrec, currline);
[1]2385}
2386
2387
2388#ifndef __FreeBSD__
2389/**
2390 * Insert the RAID variables not stored in the "additional RAID variables" list there too.
2391 * @param raidrec The RAID device record to operate on.
2392 * @ingroup restoreGuiVarslist
2393 */
[128]2394void insert_essential_additionalvars(struct raid_device_record *raidrec)
[1]2395{
2396
2397 /** int **************************************************************/
[128]2398 int items = 0;
[1]2399
[128]2400 assert(raidrec != NULL);
[1]2401
[128]2402 items = raidrec->additional_vars.entries;
2403 write_variableINT_to_raid_var_line(raidrec, items++,
2404 "persistent-superblock",
2405 raidrec->persistent_superblock);
2406 write_variableINT_to_raid_var_line(raidrec, items++, "chunk-size",
2407 raidrec->chunk_size);
2408 raidrec->additional_vars.entries = items;
[1]2409}
2410
2411#endif
2412
2413/**
2414 * Dummy function that proves that we can get to the point where Mondo is run.
2415 */
[128]2416void nuke_mode_dummy()
[1]2417{
2418
2419 /** newt *************************************************************/
[128]2420 newtComponent myForm;
[1]2421 newtComponent b1;
2422 newtComponent b2;
2423 newtComponent b3;
2424 newtComponent b_res;
2425
2426
[128]2427 newtPushHelpLine
[541]2428 ("This is where I nuke your hard drives. Mhahahahaha. No-one can stop Mojo Jojo!");
2429 newtOpenWindow(24, 3, 32, 13, "Nuking");
2430 b1 = newtButton(7, 1, "Slowly");
2431 b2 = newtButton(7, 5, "Medium");
2432 b3 = newtButton(7, 9, "Quickly");
[128]2433 myForm = newtForm(NULL, NULL, 0);
2434 newtFormAddComponents(myForm, b1, b2, b3, NULL);
2435 b_res = newtRunForm(myForm);
2436 newtFormDestroy(myForm);
2437 newtPopWindow();
2438 newtPopHelpLine();
[1]2439}
2440
2441
2442
2443/**
2444 * Redraw the disklist.
2445 * @param disklist The disklist to read from.
2446 * @param keylist The list of keys for @p listbox.
2447 * @param listbox The Newt listbox component to redraw.
2448 * @ingroup restoreGuiDisklist
2449 */
2450void
[128]2451redraw_disklist(struct list_of_disks *disklist,
2452 void *keylist[ARBITRARY_MAXIMUM], newtComponent listbox)
[1]2453{
2454
[738]2455 /** long **************************************************************/
2456 long i = 0;
[1]2457
[128]2458 assert(disklist != NULL);
2459 assert(keylist != NULL);
2460 assert(listbox != NULL);
[1]2461
[128]2462 newtListboxClear(listbox);
[1]2463
[128]2464 for (i = 0; i < ARBITRARY_MAXIMUM; i++) {
2465 keylist[i] = (void *) i;
2466 }
2467 for (i = 0; i < disklist->entries; i++) {
2468 newtListboxAppendEntry(listbox,
2469 disklist_entry_to_string(disklist, i),
2470 keylist[i]);
2471 }
[1]2472}
2473
2474
2475/**
2476 * Redraw the mountlist.
2477 * @param mountlist The mountlist to read from.
2478 * @param keylist The list of keys for @p listbox.
2479 * @param listbox The Newt listbox component to redraw.
2480 * @ingroup restoreGuiMountlist
2481 */
2482void
[128]2483redraw_mountlist(struct mountlist_itself *mountlist,
2484 void *keylist[ARBITRARY_MAXIMUM], newtComponent listbox)
[1]2485{
[128]2486
[738]2487 /** long **************************************************************/
2488 long i = 0;
[1]2489
[128]2490 assert(mountlist != NULL);
2491 assert(keylist != NULL);
2492 assert(listbox != NULL);
[1]2493
[128]2494 newtListboxClear(listbox);
[1]2495// sort_mountlist_by_device (mountlist);
[128]2496 for (i = 0; i < ARBITRARY_MAXIMUM; i++) {
2497 keylist[i] = (void *) i;
2498 }
2499 for (i = 0; i < mountlist->entries; i++) {
2500 newtListboxAppendEntry(listbox,
2501 mountlist_entry_to_string(mountlist, i),
2502 keylist[i]);
2503 }
[1]2504}
2505
2506
2507
2508
2509/**
2510 * Redraw the list of unallocated RAID partitions.
2511 * @param unallocated_raid_partitions The mountlist containing unallocated RAID partitions.
2512 * @param keylist The list of keys for @p listbox.
2513 * @param listbox The Newt listbox component to redraw.
2514 * @ingroup restoreGuiDisklist
2515 */
[128]2516void redraw_unallocpartnslist(struct mountlist_itself
2517 *unallocated_raid_partitions,
2518 void *keylist[ARBITRARY_MAXIMUM],
2519 newtComponent listbox)
[1]2520{
2521
[738]2522 /** long *************************************************************/
2523 long i = 0;
[1]2524
2525 /** buffers **********************************************************/
[128]2526 char tmp[MAX_STR_LEN];
[1]2527
[128]2528 assert(unallocated_raid_partitions != NULL);
2529 assert(keylist != NULL);
2530 assert(listbox != NULL);
[1]2531
[128]2532 newtListboxClear(listbox);
2533 for (i = 0; i < ARBITRARY_MAXIMUM; i++) {
2534 keylist[i] = (void *) i;
2535 }
2536 for (i = 0; i < unallocated_raid_partitions->entries; i++) {
2537 sprintf(tmp, "%-22s %8lld",
2538 unallocated_raid_partitions->el[i].device,
[2125]2539 unallocated_raid_partitions->el[i].size / 1024L);
[128]2540 newtListboxAppendEntry(listbox, tmp, keylist[i]);
2541 }
[1]2542}
2543
2544#ifndef __FreeBSD__
2545/**
2546 * Redraw the list of additional RAID variables.
2547 * @param additional_vars The list of additional RAID varibals.
2548 * @param keylist The list of keys for @p listbox.
2549 * @param listbox The Newt listbox component to redraw.
2550 * @ingroup restoreGuiVarslist
2551 */
2552void
[128]2553redraw_varslist(struct additional_raid_variables *additional_vars,
2554 void *keylist[], newtComponent listbox)
[1]2555{
[738]2556 /** long ************************************************************/
2557 long i = 0;
[1]2558
2559 /** buffers *********************************************************/
[128]2560 char tmp[MAX_STR_LEN];
[1]2561
[128]2562 assert(additional_vars != NULL);
2563 assert(keylist != NULL);
2564 assert(listbox != NULL);
[1]2565
[128]2566 newtListboxClear(listbox);
[1]2567
[128]2568 for (i = 0; i < ARBITRARY_MAXIMUM; i++) {
2569 keylist[i] = (void *) i;
2570 }
2571 for (i = 0; i < additional_vars->entries; i++) {
2572 sprintf(tmp, "%-32s %-8s", additional_vars->el[i].label,
2573 additional_vars->el[i].value);
2574 newtListboxAppendEntry(listbox, tmp, keylist[i]);
2575 }
[1]2576}
2577
2578
2579/**
2580 * Remove variable @p label from the RAID variables list in @p raidrec.
2581 * @param raidrec The RAID device record to remove the variable from.
2582 * @param label The variable name to remove.
2583 * @return The value of the variable removed.
2584 * @ingroup restoreUtilityGroup
2585 */
2586int
[128]2587read_variableINT_and_remove_from_raidvars(struct
2588 OSSWAP (raid_device_record,
2589 vinum_volume) * raidrec,
2590 char *label)
[1]2591{
2592 /** int ***************************************************************/
[128]2593 int i = 0;
[1]2594 int res = 0;
2595
2596
[128]2597 assert(raidrec != NULL);
2598 assert(label != NULL);
[1]2599
[128]2600 for (i = 0;
2601 i < raidrec->additional_vars.entries
2602 && strcmp(raidrec->additional_vars.el[i].label, label); i++);
2603 if (i == raidrec->additional_vars.entries) {
2604 res = -1;
2605 } else {
2606 res = atoi(raidrec->additional_vars.el[i].value);
2607 for (i++; i < raidrec->additional_vars.entries; i++) {
2608 memcpy((void *) &raidrec->additional_vars.el[i - 1],
2609 (void *) &raidrec->additional_vars.el[i],
2610 sizeof(struct raid_var_line));
2611 }
2612 raidrec->additional_vars.entries--;
[1]2613 }
[128]2614 return (res);
[1]2615}
2616#endif
2617
2618/**
2619 * Change all RAID devices to use @p new_dev instead of @p old_dev.
2620 * @param raidlist The raidlist to make the changes in.
2621 * @param old_dev The old name of the device (what it used to be).
2622 * @param new_dev The new name of the device (what it is now).
2623 * @ingroup restoreGuiMountlist
2624 */
[128]2625void rejig_partition_name_in_raidlist_if_necessary(struct raidlist_itself
2626 *raidlist,
2627 char *old_dev,
2628 char *new_dev)
[1]2629{
2630 /** int ************************************************************/
[128]2631 int pos = 0;
[1]2632 int j = 0;
2633
[128]2634 assert(raidlist != NULL);
2635 assert_string_is_neither_NULL_nor_zerolength(old_dev);
2636 assert_string_is_neither_NULL_nor_zerolength(new_dev);
[1]2637
[128]2638 pos = which_raid_device_is_using_this_partition(raidlist, old_dev);
2639 if (pos < 0) {
[2334]2640 log_it("No need to rejig %s in raidlist: it's not listed.", old_dev);
[128]2641 } else {
2642 if ((j =
2643 where_in_drivelist_is_drive(&raidlist->
2644 OSSWAP(el[pos].data_disks, disks),
2645 old_dev)) >= 0) {
[2334]2646 strcpy(raidlist->OSSWAP(el[pos].data_disks, disks).el[j].device, new_dev);
[128]2647 } else
2648 if ((j =
2649 where_in_drivelist_is_drive(&raidlist->
2650 OSSWAP(el[pos].spare_disks,
2651 spares),
2652 old_dev)) >= 0) {
[2334]2653 strcpy(raidlist->OSSWAP(el[pos].spare_disks, spares).el[j].device, new_dev);
[128]2654 }
[1]2655#ifndef __FreeBSD__
[128]2656 else if ((j =
2657 where_in_drivelist_is_drive(&raidlist->el[pos].
2658 parity_disks,
2659 old_dev)) >= 0) {
2660 strcpy(raidlist->el[pos].parity_disks.el[j].device, new_dev);
2661 } else
2662 if ((j =
2663 where_in_drivelist_is_drive(&raidlist->el[pos].
2664 failed_disks,
2665 old_dev)) >= 0) {
2666 strcpy(raidlist->el[pos].failed_disks.el[j].device, new_dev);
2667 }
[1]2668#endif
[128]2669 else {
[2334]2670 log_it("%s is supposed to be listed in this raid dev but it's not...", old_dev);
[128]2671 }
[1]2672 }
2673}
2674
2675
2676#ifndef __FreeBSD__
2677/**
2678 * Remove the essential RAID variables from the "additional variables" section.
2679 * If they have been changed, set them in their normal locations too.
2680 * @param raidrec The RAID device record to operate on.
2681 * @ingroup restoreUtilityVarslist
2682 */
[128]2683void remove_essential_additionalvars(struct raid_device_record *raidrec)
[1]2684{
2685
2686 /** int **************************************************************/
[128]2687 int res = 0;
[1]2688
[128]2689 assert(raidrec != NULL);
[1]2690
[128]2691 res =
2692 read_variableINT_and_remove_from_raidvars(raidrec,
2693 "persistent-superblock");
2694 if (res > 0) {
2695 raidrec->persistent_superblock = res;
2696 }
2697 res = read_variableINT_and_remove_from_raidvars(raidrec, "chunk-size");
2698 if (res > 0) {
2699 raidrec->chunk_size = res;
2700 }
2701 res = read_variableINT_and_remove_from_raidvars(raidrec, "block-size");
[1]2702}
2703
2704/**
2705 * Select the RAID disks to use in @p raidrec.
2706 * @param mountlist_dontedit The mountlist (will not be edited).
2707 * @param raidlist The raidlist to modify.
2708 * @param raidrec The RAID device record in @p raidlist to work on.
2709 * @param description_of_list The type of disks we're selecting (e.g. "data").
2710 * @param disklist The disklist to put the user-selected disks in.
2711 * @ingroup restoreGuiMountlist
2712 */
2713void
[128]2714select_raid_disks(struct mountlist_itself *mountlist_dontedit,
2715 struct raidlist_itself *raidlist,
2716 struct raid_device_record *raidrec,
2717 char *description_of_list,
2718 struct list_of_disks *disklist)
[1]2719{
[128]2720 void *curr_choice;
[1]2721
2722 /** ??? ***************************************************************/
2723
2724 /** structures ********************************************************/
[128]2725 struct raidlist_itself *bkp_raidlist;
2726 struct raid_device_record *bkp_raidrec;
2727 struct list_of_disks *bkp_disklist;
2728 struct mountlist_itself *unallocated_raid_partitions;
[1]2729
2730 /** newt **************************************************************/
[128]2731 newtComponent myForm = NULL;
2732 newtComponent bAdd = NULL;
2733 newtComponent bDelete = NULL;
2734 newtComponent bOK = NULL;
2735 newtComponent bCancel = NULL;
2736 newtComponent b_res = NULL;
2737 newtComponent partitionsListbox = NULL;
2738 newtComponent headerMsg = NULL;
[1]2739
2740 /** buffers **********************************************************/
[128]2741 void *keylist[ARBITRARY_MAXIMUM];
[2316]2742 char *tmp = NULL;
2743 char *help_text = NULL;
2744 char *title_of_window = NULL;
2745 char *sz_res = NULL;
2746 char *header_text = NULL;
2747 char *p = NULL;
[1]2748
2749 /** int **************************************************************/
[128]2750 int i = 0;
2751 int currline = 0;
[1]2752
[128]2753 assert(mountlist_dontedit != NULL);
2754 assert(raidlist != NULL);
2755 assert(raidrec != NULL);
2756 assert(description_of_list != NULL);
2757 assert(disklist != NULL);
[1]2758
[2230]2759 log_it("malloc'ing");
[2316]2760 bkp_raidrec = mr_malloc(sizeof(struct raid_device_record));
2761 bkp_disklist = mr_malloc(sizeof(struct list_of_disks));
2762 bkp_raidlist = mr_malloc(sizeof(struct raidlist_itself));
2763 unallocated_raid_partitions = mr_malloc(sizeof(struct mountlist_itself));
[1]2764
[2316]2765 memcpy((void *) bkp_raidlist, (void *) raidlist, sizeof(struct raidlist_itself));
2766 memcpy((void *) bkp_raidrec, (void *) raidrec, sizeof(struct raid_device_record));
2767 memcpy((void *) bkp_disklist, (void *) disklist, sizeof(struct list_of_disks));
[1]2768
[2230]2769 log_it("Post-malloc");
[2323]2770 mr_asprintf(help_text, " Edit this RAID device's list of partitions. Choose OK or Cancel when done.");
2771 mr_asprintf(header_text, "%-24s %s", "Device", "Index");
2772 mr_asprintf(title_of_window, "%s contains...", raidrec->raid_device);
[128]2773 newtPushHelpLine(help_text);
2774 for (b_res = (newtComponent) 12345; b_res != bOK && b_res != bCancel;) {
2775 headerMsg = newtLabel(1, 1, header_text);
2776 partitionsListbox =
2777 newtListbox(1, 2, 6, NEWT_FLAG_SCROLL | NEWT_FLAG_RETURNEXIT);
2778 redraw_disklist(disklist, keylist, partitionsListbox);
2779 i = 1;
[541]2780 bAdd = newtCompactButton(i, 9, " Add ");
2781 bDelete = newtCompactButton(i += 8, 9, "Delete");
2782 bOK = newtCompactButton(i += 9, 9, " OK ");
2783 bCancel = newtCompactButton(i += 9, 9, "Cancel");
[128]2784 newtOpenWindow(21, 7, 38, 10, title_of_window);
2785 myForm = newtForm(NULL, NULL, 0);
2786 if (disklist->entries == 0) {
2787 newtFormAddComponents(myForm, headerMsg, bAdd, bDelete, bOK,
2788 bCancel, NULL);
2789 } else {
2790 newtFormAddComponents(myForm, headerMsg, partitionsListbox,
2791 bAdd, bDelete, bOK, bCancel, NULL);
2792 }
2793 b_res = newtRunForm(myForm);
2794 if (b_res == bOK || b_res == bCancel) { /* do nothing */
[1]2795// That's OK. At the end of this subroutine (after this do/while loop),
2796// we'll throw away the changes if Cancel was pushed.
[128]2797 } else {
2798 curr_choice = newtListboxGetCurrent(partitionsListbox);
2799 for (i = 0; i < disklist->entries && keylist[i] != curr_choice;
2800 i++);
2801 if (i == disklist->entries && disklist->entries > 0) {
[541]2802 log_to_screen("I don't know what that button does!");
[128]2803 } else {
2804 currline = i;
2805 if (b_res == bAdd) {
[541]2806 log_it("Making list of unallocated RAID slices");
[128]2807 make_list_of_unallocated_raid_partitions
2808 (unallocated_raid_partitions, mountlist_dontedit,
2809 raidlist);
2810 if (unallocated_raid_partitions->entries <= 0) {
2811 popup_and_OK
[541]2812 ("There are no unallocated partitions marked for RAID.");
[128]2813 } else {
2814 log_it
[541]2815 ("Done. The user may add one or more of the above to RAID device");
[128]2816 add_disklist_entry(disklist, raidrec->raid_device,
2817 unallocated_raid_partitions);
[541]2818 log_it("I have finished adding a disklist entry.");
[128]2819 redraw_disklist(disklist, keylist,
2820 partitionsListbox);
2821 }
2822 } else if (b_res == bDelete) {
2823 delete_disklist_entry(disklist, raidrec->raid_device,
2824 currline);
2825 redraw_disklist(disklist, keylist, partitionsListbox);
2826 } else {
[2323]2827 mr_asprintf(tmp, "%s's index is %d. What should it be?", raidrec->raid_device, disklist->el[currline].index);
2828 mr_asprintf(sz_res, "%d", disklist->el[currline].index);
[2316]2829 p = popup_and_get_string("Set index", tmp, sz_res);
2830 mr_free(tmp);
2831 if (p != NULL) {
[128]2832 disklist->el[currline].index = atoi(sz_res);
2833 }
2834 redraw_disklist(disklist, keylist, partitionsListbox);
[2316]2835 mr_free(sz_res);
[128]2836 }
2837 }
[1]2838 }
[128]2839 newtFormDestroy(myForm);
2840 newtPopWindow();
[1]2841 }
[128]2842 newtPopHelpLine();
[2316]2843 mr_free(help_text);
2844 mr_free(header_text);
2845 mr_free(title_of_window);
2846
[128]2847 if (b_res == bCancel) {
[2316]2848 memcpy((void *) raidlist, (void *) bkp_raidlist, sizeof(struct raidlist_itself));
2849 memcpy((void *) raidrec, (void *) bkp_raidrec, sizeof(struct raid_device_record));
2850 memcpy((void *) disklist, (void *) bkp_disklist, sizeof(struct list_of_disks));
[128]2851 }
[2316]2852 mr_free(bkp_raidrec);
2853 mr_free(bkp_disklist);
2854 mr_free(bkp_raidlist);
2855 mr_free(unallocated_raid_partitions);
[1]2856}
2857#endif
2858
2859
2860
2861/**
2862 * Ask the user which restore mode (nuke, interactive, or compare) we should use.
2863 * @return The mode selected: 'I' for interactive, 'N' for nuke, 'C' for compare,
2864 * or 'E' (or any other letter) for exit.
2865 */
[128]2866char which_restore_mode()
[1]2867{
[128]2868
[1]2869 /** char *************************************************************/
[128]2870 char output = '\0';
[2357]2871 char *tmp = NULL;
[128]2872
[1]2873 /** newt *************************************************************/
2874
[128]2875 newtComponent b1;
2876 newtComponent b2;
2877 newtComponent b3;
2878 newtComponent b4;
2879 newtComponent b_res;
2880 newtComponent myForm;
2881
2882 if (g_text_mode) {
[2357]2883 while (!strchr("AICE", output)) {
2884 printf("Which mode - (A)utomatic, (I)nteractive, \n(C)ompare only, or (E)xit to shell?\n--> ");
2885 mr_getline(tmp, stdin);
2886 output = tmp[0];
2887 free(tmp);
[128]2888 }
2889 return (output);
[1]2890 }
2891
[2357]2892 newtPushHelpLine(" Do you want to 'nuke' your system, restore interactively, or just compare?");
[541]2893 newtOpenWindow(24, 3, 32, 17, "How should I restore?");
2894 b1 = newtButton(7, 1, "Automatically");
2895 b2 = newtButton(7, 5, "Interactively");
2896 b3 = newtButton(7, 9, "Compare only!");
2897 b4 = newtButton(7, 13, "Exit to shell");
[128]2898 myForm = newtForm(NULL, NULL, 0);
2899 newtFormAddComponents(myForm, b1, b2, b3, b4, NULL);
2900 b_res = newtRunForm(myForm);
2901 newtFormDestroy(myForm);
2902 newtPopWindow();
2903 if (b_res == b1) {
2904 output = 'N';
2905 }
2906 if (b_res == b2) {
2907 output = 'I';
2908 }
2909 if (b_res == b3) {
2910 output = 'C';
2911 }
2912 if (b_res == b4) {
2913 output = 'E';
2914 }
2915 newtPopHelpLine();
2916 return (output);
[1]2917}
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