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git://sourceware.org/git/lvm2.git
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cc21948339
o Skip autobackup when in test mode. o Set test mode from config file. o Create system/backup dirs if not present (unless LVM_SYSTEM_DIR holds "").
393 lines
8.3 KiB
C
393 lines
8.3 KiB
C
/*
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* Copyright (C) 2001 Sistina Software (UK) Limited.
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*
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* This file is released under the GPL.
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*/
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#include "tools.h"
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#include <sys/stat.h>
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static int _autobackup;
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static char _backup_dir[PATH_MAX];
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static int _keep_days; /* keep for at least this number of days */
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static int _keep_number; /* keep at least this number of backups */
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/*
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* Determine whether or not to do autobackup.
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* Cmd line overrides environment variable which in turn overrides config file
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*/
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int autobackup_init(const char *backup_dir, int keep_days, int keep_number,
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int autobackup)
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{
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char *lvm_autobackup;
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if (lvm_snprintf(_backup_dir, sizeof(_backup_dir),
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"%s", backup_dir) < 0) {
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log_error("Backup directory name too long.");
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return 0;
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}
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_keep_days = keep_days;
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_keep_number = keep_number;
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_autobackup = autobackup; /* Config file setting */
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if (arg_count(autobackup_ARG)) {
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_autobackup = !strcmp(arg_str_value(autobackup_ARG, "y"), "y");
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return 1;
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}
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lvm_autobackup = getenv("LVM_AUTOBACKUP");
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if (!lvm_autobackup)
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return 1;
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log_verbose("Setting autobackup from environment (LVM_AUTOBACKUP)");
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if (!strcasecmp(lvm_autobackup, "no"))
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_autobackup = 0;
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else if (strcasecmp(lvm_autobackup, "yes")) {
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log_error("Environment variable LVM_AUTOBACKUP has "
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"invalid value \"%s\"!", lvm_autobackup);
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return 0;
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}
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return 1;
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}
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static int __autobackup(struct volume_group *vg)
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{
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int r;
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struct pool *old;
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struct format_instance *backer;
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old = vg->cmd->mem;
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/*
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* Create a temprary pool for this, I
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* doubt it's used but the backup code has
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* the right to expect it.
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*/
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if (!(vg->cmd->mem = pool_create(1024))) {
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stack;
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vg->cmd->mem = old;
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return 0;
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}
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if (!(backer = backup_format_create(vg->cmd, _backup_dir,
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_keep_days, _keep_number))) {
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log_error("Couldn't create backup object.");
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return 0;
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}
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if (!(r = backer->ops->vg_write(backer, vg)))
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stack;
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pool_destroy(vg->cmd->mem);
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vg->cmd->mem = old;
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return r;
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}
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int autobackup(struct volume_group *vg)
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{
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if (!_autobackup || !*_backup_dir) {
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log_print("WARNING: You don't have an automatic backup of %s",
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vg->name);
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return 1;
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}
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if (test_mode()) {
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log_print("Test mode: Skipping automatic backup");
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return 1;
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}
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log_print("Creating automatic backup of volume group \"%s\" ...",
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vg->name);
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if (!__autobackup(vg)) {
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log_error("Autobackup failed.");
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return 0;
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}
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return 1;
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}
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int create_dir(const char *dir)
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{
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struct stat info;
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if (!*dir)
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return 1;
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if (stat(dir, &info) < 0 ) {
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log_verbose("Creating directory %s", dir);
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if (!mkdir(dir, S_IRWXU))
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return 1;
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log_sys_error("mkdir", dir);
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return 0;
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}
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if (S_ISDIR(info.st_mode))
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return 1;
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log_error("Directory %s not found", dir);
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return 0;
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}
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int process_each_lv_in_vg(struct volume_group *vg,
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int (*process_single) (struct logical_volume *lv))
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{
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int ret_max = 0;
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int ret = 0;
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struct list *lvh;
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struct logical_volume *lv;
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/* FIXME Export-handling */
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if (vg->status & EXPORTED_VG) {
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log_error("Volume group %s is exported", vg->name);
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return ECMD_FAILED;
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}
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list_iterate(lvh, &vg->lvs) {
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lv = &list_item(lvh, struct lv_list)->lv;
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ret = process_single(lv);
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if (ret > ret_max)
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ret_max = ret;
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}
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return ret_max;
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}
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int process_each_lv(int argc, char **argv,
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int (*process_single) (struct logical_volume * lv))
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{
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int opt = 0;
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int ret_max = 0;
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int ret = 0;
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int vg_count = 0;
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struct list *lvh;
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struct list *vgh, *vgs;
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struct volume_group *vg;
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struct logical_volume *lv;
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char *vg_name;
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if (argc) {
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log_verbose("Using logical volume(s) on command line");
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for (; opt < argc; opt++) {
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char *lv_name = argv[opt];
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/* does VG exist? */
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if (!(vg_name = extract_vgname(fid, lv_name))) {
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if (ret_max < ECMD_FAILED)
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ret_max = ECMD_FAILED;
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continue;
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}
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log_verbose("Finding volume group %s", vg_name);
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if (!(vg = fid->ops->vg_read(fid, vg_name))) {
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log_error("Volume group %s doesn't exist",
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vg_name);
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if (ret_max < ECMD_FAILED)
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ret_max = ECMD_FAILED;
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continue;
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}
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if (!(lvh = find_lv_in_vg(vg, lv_name))) {
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log_error("Can't find logical volume %s "
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"in volume group %s",
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lv_name, vg_name);
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if (ret_max < ECMD_FAILED)
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ret_max = ECMD_FAILED;
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continue;
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}
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lv = &list_item(lvh, struct lv_list)->lv;
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if ((ret = process_single(lv)) > ret_max)
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ret_max = ret;
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}
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} else {
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log_verbose("Finding all logical volume(s)");
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if (!(vgs = fid->ops->get_vgs(fid))) {
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log_error("No volume groups found");
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return ECMD_FAILED;
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}
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list_iterate(vgh, vgs) {
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vg_name = list_item(vgh, struct name_list)->name;
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if (!(vg = fid->ops->vg_read(fid, vg_name))) {
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log_error("Volume group %s not found", vg_name);
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if (ret_max < ECMD_FAILED)
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ret_max = ECMD_FAILED;
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continue;
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}
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ret = process_each_lv_in_vg(vg, process_single);
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if (ret > ret_max)
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ret_max = ret;
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vg_count++;
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}
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}
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return ret_max;
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}
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int process_each_vg(int argc, char **argv,
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int (*process_single) (const char *vg_name))
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{
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int opt = 0;
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int ret_max = 0;
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int ret = 0;
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struct list *vgh;
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struct list *vgs;
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if (argc) {
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log_verbose("Using volume group(s) on command line");
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for (; opt < argc; opt++)
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if ((ret = process_single(argv[opt])) > ret_max)
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ret_max = ret;
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} else {
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log_verbose("Finding all volume group(s)");
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if (!(vgs = fid->ops->get_vgs(fid))) {
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log_error("No volume groups found");
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return ECMD_FAILED;
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}
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list_iterate(vgh, vgs) {
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ret =
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process_single(list_item
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(vgh, struct name_list)->name);
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if (ret > ret_max)
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ret_max = ret;
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}
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}
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return ret_max;
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}
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int process_each_pv_in_vg(struct volume_group *vg,
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int (*process_single) (struct volume_group * vg,
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struct physical_volume * pv))
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{
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int ret_max = 0;
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int ret = 0;
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struct list *pvh;
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list_iterate(pvh, &vg->pvs) {
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ret = process_single(vg,
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&list_item(pvh,
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struct pv_list)->pv);
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if (ret > ret_max)
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ret_max = ret;
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}
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return ret_max;
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}
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int process_each_pv(int argc, char **argv, struct volume_group *vg,
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int (*process_single) (struct volume_group * vg,
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struct physical_volume * pv))
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{
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int opt = 0;
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int ret_max = 0;
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int ret = 0;
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struct list *pvh;
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if (argc) {
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log_verbose("Using physical volume(s) on command line");
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for (; opt < argc; opt++) {
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if (!(pvh = find_pv_in_vg(vg, argv[opt]))) {
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log_error("Physical Volume %s not found in "
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"Volume Group %s", argv[opt],
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vg->name);
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continue;
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}
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ret = process_single(vg,
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&list_item(pvh,
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struct pv_list)->pv);
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if (ret > ret_max)
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ret_max = ret;
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}
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} else {
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log_verbose("Using all physical volume(s) in volume group");
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process_each_pv_in_vg(vg, process_single);
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}
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return ret_max;
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}
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int is_valid_chars(char *n)
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{
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register char c;
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while ((c = *n++))
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if (!isalnum(c) && c != '.' && c != '_' && c != '-' && c != '+')
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return 0;
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return 1;
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}
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char *extract_vgname(struct format_instance *fi, char *lv_name)
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{
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char *vg_name = lv_name;
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char *st;
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char *dev_dir = fi->cmd->dev_dir;
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/* Path supplied? */
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if (vg_name && strchr(vg_name, '/')) {
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/* Strip dev_dir (optional) */
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if (!strncmp(vg_name, dev_dir, strlen(dev_dir)))
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vg_name += strlen(dev_dir);
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/* Require exactly one slash */
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/* FIXME But allow for consecutive slashes */
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if (!(st = strchr(vg_name, '/')) || (strchr(st + 1, '/'))) {
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log_error("%s: Invalid path for Logical Volume",
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lv_name);
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return 0;
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}
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vg_name = pool_strdup(fid->cmd->mem, vg_name);
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if (!vg_name) {
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log_error("Allocation of vg_name failed");
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return 0;
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}
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*strchr(vg_name, '/') = '\0';
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return vg_name;
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}
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if (!(vg_name = default_vgname(fid))) {
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if (lv_name)
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log_error("Path required for Logical Volume %s",
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lv_name);
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return 0;
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}
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return vg_name;
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}
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char *default_vgname(struct format_instance *fi)
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{
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char *vg_path;
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char *dev_dir = fi->cmd->dev_dir;
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/* Take default VG from environment? */
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vg_path = getenv("LVM_VG_NAME");
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if (!vg_path)
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return 0;
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/* Strip dev_dir (optional) */
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if (!strncmp(vg_path, dev_dir, strlen(dev_dir)))
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vg_path += strlen(dev_dir);
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if (strchr(vg_path, '/')) {
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log_error("Environment Volume Group in LVM_VG_NAME invalid: %s",
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vg_path);
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return 0;
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}
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return pool_strdup(fid->cmd->mem, vg_path);
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}
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