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ea0cdd28c1
When reporting explicitly label attributes (pv_uuid for example), we do not need to read metadata. This patch separate the label fileds and removes scan_vgs_for_pvs in process_each_pv() if not needed. (There should be no user visible change in output.)
612 lines
16 KiB
C
612 lines
16 KiB
C
/*
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* Copyright (C) 2001-2004 Sistina Software, Inc. All rights reserved.
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* Copyright (C) 2004-2009 Red Hat, Inc. All rights reserved.
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*
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* This file is part of LVM2.
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*
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* This copyrighted material is made available to anyone wishing to use,
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* modify, copy, or redistribute it subject to the terms and conditions
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* of the GNU Lesser General Public License v.2.1.
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*
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* You should have received a copy of the GNU Lesser General Public License
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* along with this program; if not, write to the Free Software Foundation,
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* Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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*/
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#include "tools.h"
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#include "lv_alloc.h"
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static int _remove_pv(struct volume_group *vg, struct pv_list *pvl, int silent)
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{
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char uuid[64] __attribute((aligned(8)));
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if (vg->pv_count == 1) {
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log_error("Volume Groups must always contain at least one PV");
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return 0;
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}
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if (!id_write_format(&pvl->pv->id, uuid, sizeof(uuid)))
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return_0;
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log_verbose("Removing PV with UUID %s from VG %s", uuid, vg->name);
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if (pvl->pv->pe_alloc_count) {
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if (!silent)
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log_error("LVs still present on PV with UUID %s: "
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"Can't remove from VG %s", uuid, vg->name);
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return 0;
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}
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vg->free_count -= pvl->pv->pe_count;
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vg->extent_count -= pvl->pv->pe_count;
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vg->pv_count--;
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dm_list_del(&pvl->list);
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return 1;
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}
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static int _remove_lv(struct cmd_context *cmd, struct logical_volume *lv,
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int *list_unsafe, struct dm_list *lvs_changed)
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{
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struct lv_segment *snap_seg;
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struct dm_list *snh, *snht;
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struct logical_volume *cow;
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struct lv_list *lvl;
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struct lvinfo info;
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int first = 1;
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log_verbose("%s/%s has missing extents: removing (including "
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"dependencies)", lv->vg->name, lv->name);
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/* FIXME Cope properly with stacked devices & snapshots. */
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/* If snapshot device is missing, deactivate origin. */
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if (lv_is_cow(lv) && (snap_seg = find_cow(lv))) {
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log_verbose("Deactivating (if active) logical volume %s "
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"(origin of %s)", snap_seg->origin->name, lv->name);
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if (!test_mode() && !deactivate_lv(cmd, snap_seg->origin)) {
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log_error("Failed to deactivate LV %s",
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snap_seg->origin->name);
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return 0;
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}
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/* Use the origin LV */
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lv = snap_seg->origin;
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}
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/* Remove snapshot dependencies */
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dm_list_iterate_safe(snh, snht, &lv->snapshot_segs) {
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snap_seg = dm_list_struct_base(snh, struct lv_segment,
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origin_list);
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cow = snap_seg->cow;
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if (first && !test_mode() &&
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!deactivate_lv(cmd, snap_seg->origin)) {
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log_error("Failed to deactivate LV %s",
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snap_seg->origin->name);
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return 0;
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}
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*list_unsafe = 1; /* May remove caller's lvht! */
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if (!vg_remove_snapshot(cow))
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return_0;
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log_verbose("Removing LV %s from VG %s", cow->name,
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lv->vg->name);
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if (!lv_remove(cow))
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return_0;
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first = 0;
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}
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/*
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* If LV is active, replace it with error segment
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* and add to list of LVs to be removed later.
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* Doesn't apply to snapshots/origins yet - they're already deactivated.
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*/
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/*
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* If the LV is a part of mirror segment,
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* the mirrored LV also should be cleaned up.
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* Clean-up is currently done by caller (_make_vg_consistent()).
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*/
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if ((lv_info(cmd, lv, &info, 0, 0) && info.exists) ||
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find_mirror_seg(first_seg(lv))) {
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if (!replace_lv_with_error_segment(lv))
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return_0;
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if (!(lvl = dm_pool_alloc(cmd->mem, sizeof(*lvl)))) {
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log_error("lv_list alloc failed");
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return 0;
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}
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lvl->lv = lv;
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dm_list_add(lvs_changed, &lvl->list);
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} else {
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/* Remove LV immediately. */
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log_verbose("Removing LV %s from VG %s", lv->name, lv->vg->name);
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if (!lv_remove(lv))
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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 _consolidate_vg(struct cmd_context *cmd, struct volume_group *vg)
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{
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struct pv_list *pvl;
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struct lv_list *lvl;
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int r = 1;
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dm_list_iterate_items(lvl, &vg->lvs)
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if (lvl->lv->status & PARTIAL_LV) {
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log_warn("WARNING: Partial LV %s needs to be repaired "
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"or removed. ", lvl->lv->name);
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r = 0;
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}
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if (!r) {
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cmd->handles_missing_pvs = 1;
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log_warn("WARNING: There are still partial LVs in VG %s.", vg->name);
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log_warn("To remove them unconditionally use: vgreduce --removemissing --force.");
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log_warn("Proceeding to remove empty missing PVs.");
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}
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dm_list_iterate_items(pvl, &vg->pvs) {
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if (pvl->pv->dev && !(pvl->pv->status & MISSING_PV))
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continue;
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if (r && !_remove_pv(vg, pvl, 0))
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return_0;
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}
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return r;
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}
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static int _make_vg_consistent(struct cmd_context *cmd, struct volume_group *vg)
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{
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struct dm_list *pvh, *pvht;
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struct dm_list *lvh, *lvht;
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struct pv_list *pvl;
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struct lv_list *lvl, *lvl2, *lvlt;
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struct logical_volume *lv;
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struct physical_volume *pv;
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struct lv_segment *seg, *mirrored_seg;
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unsigned s;
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uint32_t mimages, remove_log;
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int list_unsafe, only_mirror_images_found;
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DM_LIST_INIT(lvs_changed);
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only_mirror_images_found = 1;
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/* Deactivate & remove necessary LVs */
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restart_loop:
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list_unsafe = 0; /* Set if we delete a different list-member */
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dm_list_iterate_safe(lvh, lvht, &vg->lvs) {
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lv = dm_list_item(lvh, struct lv_list)->lv;
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/* Are any segments of this LV on missing PVs? */
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dm_list_iterate_items(seg, &lv->segments) {
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for (s = 0; s < seg->area_count; s++) {
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if (seg_type(seg, s) != AREA_PV)
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continue;
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/* FIXME Also check for segs on deleted LVs (incl pvmove) */
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pv = seg_pv(seg, s);
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if (!pv || !pv_dev(pv) ||
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(pv->status & MISSING_PV)) {
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if (arg_count(cmd, mirrorsonly_ARG) &&
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!(lv->status & MIRROR_IMAGE)) {
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log_error("Non-mirror-image LV %s found: can't remove.", lv->name);
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only_mirror_images_found = 0;
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continue;
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}
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if (!_remove_lv(cmd, lv, &list_unsafe, &lvs_changed))
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return_0;
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if (list_unsafe)
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goto restart_loop;
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}
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}
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}
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}
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if (!only_mirror_images_found) {
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log_error("Aborting because --mirrorsonly was specified.");
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return 0;
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}
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/*
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* Remove missing PVs. FIXME: This duplicates _consolidate_vg above,
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* but we cannot use that right now, since the LV removal code in this
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* function leaves the VG in a "somewhat inconsistent" state and
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* _consolidate_vg doesn't like that -- specifically, mirrors are fixed
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* up *after* the PVs are removed. All this should be gradually
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* superseded by lvconvert --repair.
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*/
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dm_list_iterate_safe(pvh, pvht, &vg->pvs) {
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pvl = dm_list_item(pvh, struct pv_list);
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if (pvl->pv->dev)
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continue;
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if (!_remove_pv(vg, pvl, 0))
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return_0;
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}
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/* FIXME Recovery. For now people must clean up by hand. */
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if (!dm_list_empty(&lvs_changed)) {
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if (!vg_write(vg)) {
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log_error("Failed to write out a consistent VG for %s",
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vg->name);
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return 0;
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}
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if (!test_mode()) {
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/* Suspend lvs_changed */
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if (!suspend_lvs(cmd, &lvs_changed)) {
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stack;
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vg_revert(vg);
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return 0;
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}
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}
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if (!vg_commit(vg)) {
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log_error("Failed to commit consistent VG for %s",
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vg->name);
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vg_revert(vg);
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return 0;
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}
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if (!test_mode()) {
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if (!resume_lvs(cmd, &lvs_changed)) {
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log_error("Failed to resume LVs using error segments.");
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return 0;
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}
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}
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lvs_changed_altered:
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/* Remove lost mirror images from mirrors */
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dm_list_iterate_items(lvl, &vg->lvs) {
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mirrored_seg_altered:
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mirrored_seg = first_seg(lvl->lv);
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if (!seg_is_mirrored(mirrored_seg))
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continue;
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mimages = mirrored_seg->area_count;
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remove_log = 0;
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for (s = 0; s < mirrored_seg->area_count; s++) {
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dm_list_iterate_items_safe(lvl2, lvlt, &lvs_changed) {
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if (seg_type(mirrored_seg, s) != AREA_LV ||
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lvl2->lv != seg_lv(mirrored_seg, s))
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continue;
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dm_list_del(&lvl2->list);
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if (!shift_mirror_images(mirrored_seg, s))
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return_0;
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mimages--; /* FIXME Assumes uniqueness */
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}
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}
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if (mirrored_seg->log_lv) {
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dm_list_iterate_items(seg, &mirrored_seg->log_lv->segments) {
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/* FIXME: The second test shouldn't be required */
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if ((seg->segtype ==
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get_segtype_from_string(vg->cmd, "error"))) {
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log_print("The log device for %s/%s has failed.",
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vg->name, mirrored_seg->lv->name);
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remove_log = 1;
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break;
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}
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if (!strcmp(seg->segtype->name, "error")) {
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log_print("Log device for %s/%s has failed.",
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vg->name, mirrored_seg->lv->name);
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remove_log = 1;
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break;
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}
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}
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}
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if ((mimages != mirrored_seg->area_count) || remove_log){
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if (!reconfigure_mirror_images(mirrored_seg, mimages,
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NULL, remove_log))
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return_0;
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if (!vg_write(vg)) {
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log_error("Failed to write out updated "
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"VG for %s", vg->name);
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return 0;
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}
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if (!vg_commit(vg)) {
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log_error("Failed to commit updated VG "
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"for %s", vg->name);
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vg_revert(vg);
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return 0;
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}
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/* mirrored LV no longer has valid mimages.
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* So add it to lvs_changed for removal.
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* For this LV may be an area of other mirror,
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* restart the loop. */
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if (!mimages) {
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if (!_remove_lv(cmd, lvl->lv,
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&list_unsafe, &lvs_changed))
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return_0;
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goto lvs_changed_altered;
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}
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/* As a result of reconfigure_mirror_images(),
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* first_seg(lv) may now be different seg.
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* e.g. a temporary layer might be removed.
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* So check the mirrored_seg again. */
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goto mirrored_seg_altered;
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}
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}
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/* Deactivate error LVs */
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if (!test_mode()) {
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dm_list_iterate_items_safe(lvl, lvlt, &lvs_changed) {
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log_verbose("Deactivating (if active) logical volume %s",
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lvl->lv->name);
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if (!deactivate_lv(cmd, lvl->lv)) {
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log_error("Failed to deactivate LV %s",
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lvl->lv->name);
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/*
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* We failed to deactivate.
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* Probably because this was a mirror log.
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* Don't try to lv_remove it.
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* Continue work on others.
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*/
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dm_list_del(&lvl->list);
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}
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}
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}
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/* Remove remaining LVs */
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dm_list_iterate_items(lvl, &lvs_changed) {
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log_verbose("Removing LV %s from VG %s", lvl->lv->name,
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lvl->lv->vg->name);
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/* Skip LVs already removed by mirror code */
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if (find_lv_in_vg(vg, lvl->lv->name) &&
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!lv_remove(lvl->lv))
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return_0;
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}
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}
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return 1;
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}
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/* Or take pv_name instead? */
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static int _vgreduce_single(struct cmd_context *cmd, struct volume_group *vg,
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struct physical_volume *pv,
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void *handle __attribute((unused)))
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{
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struct pv_list *pvl;
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struct volume_group *orphan_vg;
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int consistent = 1;
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const char *name = pv_dev_name(pv);
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if (pv_pe_alloc_count(pv)) {
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log_error("Physical volume \"%s\" still in use", name);
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return ECMD_FAILED;
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}
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if (vg->pv_count == 1) {
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log_error("Can't remove final physical volume \"%s\" from "
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"volume group \"%s\"", name, vg->name);
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return ECMD_FAILED;
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}
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if (!lock_vol(cmd, VG_ORPHANS, LCK_VG_WRITE | LCK_NONBLOCK)) {
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log_error("Can't get lock for orphan PVs");
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return ECMD_FAILED;
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}
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pvl = find_pv_in_vg(vg, name);
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if (!archive(vg)) {
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unlock_vg(cmd, VG_ORPHANS);
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return ECMD_FAILED;
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}
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log_verbose("Removing \"%s\" from volume group \"%s\"", name, vg->name);
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if (pvl)
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dm_list_del(&pvl->list);
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pv->vg_name = vg->fid->fmt->orphan_vg_name;
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pv->status = ALLOCATABLE_PV;
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if (!dev_get_size(pv_dev(pv), &pv->size)) {
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log_error("%s: Couldn't get size.", pv_dev_name(pv));
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unlock_vg(cmd, VG_ORPHANS);
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return ECMD_FAILED;
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}
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vg->pv_count--;
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vg->free_count -= pv_pe_count(pv) - pv_pe_alloc_count(pv);
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vg->extent_count -= pv_pe_count(pv);
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if(!(orphan_vg = vg_read_internal(cmd, vg->fid->fmt->orphan_vg_name, NULL, &consistent)) ||
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!consistent) {
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log_error("Unable to read existing orphan PVs");
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unlock_vg(cmd, VG_ORPHANS);
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return ECMD_FAILED;
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}
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if (!vg_split_mdas(cmd, vg, orphan_vg) || !vg->pv_count) {
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log_error("Cannot remove final metadata area on \"%s\" from \"%s\"",
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name, vg->name);
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unlock_vg(cmd, VG_ORPHANS);
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return ECMD_FAILED;
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}
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if (!vg_write(vg) || !vg_commit(vg)) {
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log_error("Removal of physical volume \"%s\" from "
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"\"%s\" failed", name, vg->name);
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unlock_vg(cmd, VG_ORPHANS);
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return ECMD_FAILED;
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}
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if (!pv_write(cmd, pv, NULL, INT64_C(-1))) {
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log_error("Failed to clear metadata from physical "
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"volume \"%s\" "
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"after removal from \"%s\"", name, vg->name);
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unlock_vg(cmd, VG_ORPHANS);
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return ECMD_FAILED;
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}
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unlock_vg(cmd, VG_ORPHANS);
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backup(vg);
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log_print("Removed \"%s\" from volume group \"%s\"", name, vg->name);
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return ECMD_PROCESSED;
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}
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int vgreduce(struct cmd_context *cmd, int argc, char **argv)
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{
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struct volume_group *vg;
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char *vg_name;
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int ret = 1;
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int consistent = 1;
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int fixed = 1;
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int repairing = arg_count(cmd, removemissing_ARG);
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if (!argc && !repairing) {
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log_error("Please give volume group name and "
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"physical volume paths");
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return EINVALID_CMD_LINE;
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}
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if (!argc && repairing) {
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log_error("Please give volume group name");
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return EINVALID_CMD_LINE;
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}
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if (arg_count(cmd, mirrorsonly_ARG) && !repairing) {
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log_error("--mirrorsonly requires --removemissing");
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return EINVALID_CMD_LINE;
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}
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if (argc == 1 && !arg_count(cmd, all_ARG) && !repairing) {
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log_error("Please enter physical volume paths or option -a");
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return EINVALID_CMD_LINE;
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}
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if (argc > 1 && arg_count(cmd, all_ARG)) {
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log_error("Option -a and physical volume paths mutually "
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"exclusive");
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return EINVALID_CMD_LINE;
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}
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if (argc > 1 && repairing) {
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log_error("Please only specify the volume group");
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return EINVALID_CMD_LINE;
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}
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|
|
vg_name = skip_dev_dir(cmd, argv[0], NULL);
|
|
argv++;
|
|
argc--;
|
|
|
|
if (!validate_name(vg_name)) {
|
|
log_error("Volume group name \"%s\" is invalid",
|
|
vg_name);
|
|
return ECMD_FAILED;
|
|
}
|
|
|
|
log_verbose("Finding volume group \"%s\"", vg_name);
|
|
if (!lock_vol(cmd, vg_name, LCK_VG_WRITE)) {
|
|
log_error("Can't get lock for %s", vg_name);
|
|
return ECMD_FAILED;
|
|
}
|
|
|
|
if ((!(vg = vg_read_internal(cmd, vg_name, NULL, &consistent)) || !consistent)
|
|
&& !repairing) {
|
|
log_error("Volume group \"%s\" doesn't exist", vg_name);
|
|
unlock_vg(cmd, vg_name);
|
|
return ECMD_FAILED;
|
|
}
|
|
|
|
if (vg && !vg_check_status(vg, CLUSTERED)) {
|
|
unlock_vg(cmd, vg_name);
|
|
return ECMD_FAILED;
|
|
}
|
|
|
|
if (repairing) {
|
|
if (vg && consistent && !vg_missing_pv_count(vg)) {
|
|
log_error("Volume group \"%s\" is already consistent",
|
|
vg_name);
|
|
unlock_vg(cmd, vg_name);
|
|
return ECMD_PROCESSED;
|
|
}
|
|
|
|
consistent = !arg_count(cmd, force_ARG);
|
|
if (!(vg = vg_read_internal(cmd, vg_name, NULL, &consistent))) {
|
|
log_error("Volume group \"%s\" not found", vg_name);
|
|
unlock_vg(cmd, vg_name);
|
|
return ECMD_FAILED;
|
|
}
|
|
if (!vg_check_status(vg, CLUSTERED)) {
|
|
unlock_vg(cmd, vg_name);
|
|
return ECMD_FAILED;
|
|
}
|
|
if (!archive(vg)) {
|
|
unlock_vg(cmd, vg_name);
|
|
return ECMD_FAILED;
|
|
}
|
|
|
|
if (arg_count(cmd, force_ARG)) {
|
|
if (!_make_vg_consistent(cmd, vg)) {
|
|
unlock_vg(cmd, vg_name);
|
|
return ECMD_FAILED;
|
|
}
|
|
} else
|
|
fixed = _consolidate_vg(cmd, vg);
|
|
|
|
if (!vg_write(vg) || !vg_commit(vg)) {
|
|
log_error("Failed to write out a consistent VG for %s",
|
|
vg_name);
|
|
unlock_vg(cmd, vg_name);
|
|
return ECMD_FAILED;
|
|
}
|
|
|
|
backup(vg);
|
|
|
|
if (fixed)
|
|
log_print("Wrote out consistent volume group %s",
|
|
vg_name);
|
|
|
|
} else {
|
|
if (!vg_check_status(vg, EXPORTED_VG | LVM_WRITE | RESIZEABLE_VG)) {
|
|
unlock_vg(cmd, vg_name);
|
|
return ECMD_FAILED;
|
|
}
|
|
|
|
/* FIXME: Pass private struct through to all these functions */
|
|
/* and update in batch here? */
|
|
ret = process_each_pv(cmd, argc, argv, vg, LCK_NONE, 0, NULL,
|
|
_vgreduce_single);
|
|
|
|
}
|
|
|
|
unlock_vg(cmd, vg_name);
|
|
|
|
return ret;
|
|
|
|
/******* FIXME
|
|
log_error ("no empty physical volumes found in volume group \"%s\"", vg_name);
|
|
|
|
log_verbose
|
|
("volume group \"%s\" will be reduced by %d physical volume%s",
|
|
vg_name, np, np > 1 ? "s" : "");
|
|
log_verbose ("reducing volume group \"%s\" by physical volume \"%s\"",
|
|
vg_name, pv_names[p]);
|
|
|
|
log_print
|
|
("volume group \"%s\" %ssuccessfully reduced by physical volume%s:",
|
|
vg_name, error > 0 ? "NOT " : "", p > 1 ? "s" : "");
|
|
log_print("%s", pv_this[p]->pv_name);
|
|
********/
|
|
|
|
}
|