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metadata.c revision 1.1.1.1.2.1
      1  1.1.1.1.2.1   jym /*	$NetBSD: metadata.c,v 1.1.1.1.2.1 2009/05/13 18:52:43 jym Exp $	*/
      2          1.1  haad 
      3          1.1  haad /*
      4          1.1  haad  * Copyright (C) 2001-2004 Sistina Software, Inc. All rights reserved.
      5          1.1  haad  * Copyright (C) 2004-2007 Red Hat, Inc. All rights reserved.
      6          1.1  haad  *
      7          1.1  haad  * This file is part of LVM2.
      8          1.1  haad  *
      9          1.1  haad  * This copyrighted material is made available to anyone wishing to use,
     10          1.1  haad  * modify, copy, or redistribute it subject to the terms and conditions
     11          1.1  haad  * of the GNU Lesser General Public License v.2.1.
     12          1.1  haad  *
     13          1.1  haad  * You should have received a copy of the GNU Lesser General Public License
     14          1.1  haad  * along with this program; if not, write to the Free Software Foundation,
     15          1.1  haad  * Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
     16          1.1  haad  */
     17          1.1  haad 
     18          1.1  haad #include "lib.h"
     19          1.1  haad #include "device.h"
     20          1.1  haad #include "metadata.h"
     21          1.1  haad #include "toolcontext.h"
     22          1.1  haad #include "lvm-string.h"
     23          1.1  haad #include "lvm-file.h"
     24          1.1  haad #include "lvmcache.h"
     25          1.1  haad #include "memlock.h"
     26          1.1  haad #include "str_list.h"
     27          1.1  haad #include "pv_alloc.h"
     28          1.1  haad #include "activate.h"
     29          1.1  haad #include "display.h"
     30          1.1  haad #include "locking.h"
     31          1.1  haad #include "archiver.h"
     32          1.1  haad #include "defaults.h"
     33          1.1  haad 
     34          1.1  haad #include <sys/param.h>
     35          1.1  haad 
     36          1.1  haad /*
     37          1.1  haad  * FIXME: Check for valid handle before dereferencing field or log error?
     38          1.1  haad  */
     39          1.1  haad #define pv_field(handle, field)				\
     40          1.1  haad 	(((const struct physical_volume *)(handle))->field)
     41          1.1  haad 
     42          1.1  haad static struct physical_volume *_pv_read(struct cmd_context *cmd,
     43          1.1  haad 					const char *pv_name,
     44          1.1  haad 					struct dm_list *mdas,
     45          1.1  haad 					uint64_t *label_sector,
     46          1.1  haad 					int warnings);
     47          1.1  haad 
     48          1.1  haad static struct physical_volume *_pv_create(const struct format_type *fmt,
     49          1.1  haad 				  struct device *dev,
     50          1.1  haad 				  struct id *id, uint64_t size,
     51          1.1  haad 				  uint64_t pe_start,
     52          1.1  haad 				  uint32_t existing_extent_count,
     53          1.1  haad 				  uint32_t existing_extent_size,
     54          1.1  haad 				  int pvmetadatacopies,
     55          1.1  haad 				  uint64_t pvmetadatasize, struct dm_list *mdas);
     56          1.1  haad 
     57          1.1  haad static int _pv_write(struct cmd_context *cmd __attribute((unused)),
     58          1.1  haad 		     struct physical_volume *pv,
     59          1.1  haad 	     	     struct dm_list *mdas, int64_t label_sector);
     60          1.1  haad 
     61          1.1  haad static struct physical_volume *_find_pv_by_name(struct cmd_context *cmd,
     62          1.1  haad 			 			const char *pv_name);
     63          1.1  haad 
     64          1.1  haad static struct pv_list *_find_pv_in_vg(const struct volume_group *vg,
     65          1.1  haad 				      const char *pv_name);
     66          1.1  haad 
     67          1.1  haad static struct physical_volume *_find_pv_in_vg_by_uuid(const struct volume_group *vg,
     68          1.1  haad 						      const struct id *id);
     69          1.1  haad 
     70          1.1  haad unsigned long pe_align(struct physical_volume *pv)
     71          1.1  haad {
     72          1.1  haad 	if (pv->pe_align)
     73          1.1  haad 		goto out;
     74          1.1  haad 
     75          1.1  haad 	pv->pe_align = MAX(65536UL, lvm_getpagesize()) >> SECTOR_SHIFT;
     76          1.1  haad 
     77          1.1  haad 	/*
     78          1.1  haad 	 * Align to chunk size of underlying md device if present
     79          1.1  haad 	 */
     80          1.1  haad 	if (!pv->dev)
     81          1.1  haad 		goto out;
     82          1.1  haad 
     83          1.1  haad 	if (find_config_tree_bool(pv->fmt->cmd, "devices/md_chunk_alignment",
     84          1.1  haad 				  DEFAULT_MD_CHUNK_ALIGNMENT))
     85          1.1  haad 		pv->pe_align = MAX(pv->pe_align,
     86          1.1  haad 				   dev_md_chunk_size(pv->fmt->cmd->sysfs_dir,
     87          1.1  haad 						     pv->dev));
     88          1.1  haad 
     89          1.1  haad 	log_very_verbose("%s: Setting PE alignment to %lu sectors.",
     90          1.1  haad 			 dev_name(pv->dev), pv->pe_align);
     91          1.1  haad 
     92          1.1  haad out:
     93          1.1  haad 	return pv->pe_align;
     94          1.1  haad }
     95          1.1  haad 
     96          1.1  haad /**
     97          1.1  haad  * add_pv_to_vg - Add a physical volume to a volume group
     98          1.1  haad  * @vg - volume group to add to
     99          1.1  haad  * @pv_name - name of the pv (to be removed)
    100          1.1  haad  * @pv - physical volume to add to volume group
    101          1.1  haad  *
    102          1.1  haad  * Returns:
    103          1.1  haad  *  0 - failure
    104          1.1  haad  *  1 - success
    105          1.1  haad  * FIXME: remove pv_name - obtain safely from pv
    106          1.1  haad  */
    107          1.1  haad int add_pv_to_vg(struct volume_group *vg, const char *pv_name,
    108          1.1  haad 		 struct physical_volume *pv)
    109          1.1  haad {
    110          1.1  haad 	struct pv_list *pvl;
    111          1.1  haad 	struct format_instance *fid = vg->fid;
    112          1.1  haad 	struct dm_pool *mem = fid->fmt->cmd->mem;
    113          1.1  haad 
    114          1.1  haad 	log_verbose("Adding physical volume '%s' to volume group '%s'",
    115          1.1  haad 		    pv_name, vg->name);
    116          1.1  haad 
    117          1.1  haad 	if (!(pvl = dm_pool_zalloc(mem, sizeof(*pvl)))) {
    118          1.1  haad 		log_error("pv_list allocation for '%s' failed", pv_name);
    119          1.1  haad 		return 0;
    120          1.1  haad 	}
    121          1.1  haad 
    122          1.1  haad 	if (!is_orphan_vg(pv->vg_name)) {
    123          1.1  haad 		log_error("Physical volume '%s' is already in volume group "
    124          1.1  haad 			  "'%s'", pv_name, pv->vg_name);
    125          1.1  haad 		return 0;
    126          1.1  haad 	}
    127          1.1  haad 
    128          1.1  haad 	if (pv->fmt != fid->fmt) {
    129          1.1  haad 		log_error("Physical volume %s is of different format type (%s)",
    130          1.1  haad 			  pv_name, pv->fmt->name);
    131          1.1  haad 		return 0;
    132          1.1  haad 	}
    133          1.1  haad 
    134          1.1  haad 	/* Ensure PV doesn't depend on another PV already in the VG */
    135          1.1  haad 	if (pv_uses_vg(pv, vg)) {
    136          1.1  haad 		log_error("Physical volume %s might be constructed from same "
    137          1.1  haad 			  "volume group %s", pv_name, vg->name);
    138          1.1  haad 		return 0;
    139          1.1  haad 	}
    140          1.1  haad 
    141          1.1  haad 	if (!(pv->vg_name = dm_pool_strdup(mem, vg->name))) {
    142          1.1  haad 		log_error("vg->name allocation failed for '%s'", pv_name);
    143          1.1  haad 		return 0;
    144          1.1  haad 	}
    145          1.1  haad 
    146          1.1  haad 	memcpy(&pv->vgid, &vg->id, sizeof(vg->id));
    147          1.1  haad 
    148          1.1  haad 	/* Units of 512-byte sectors */
    149          1.1  haad 	pv->pe_size = vg->extent_size;
    150          1.1  haad 
    151          1.1  haad 	/* FIXME Do proper rounding-up alignment? */
    152          1.1  haad 	/* Reserved space for label; this holds 0 for PVs created by LVM1 */
    153          1.1  haad 	if (pv->pe_start < pe_align(pv))
    154          1.1  haad 		pv->pe_start = pe_align(pv);
    155          1.1  haad 
    156          1.1  haad 	/*
    157          1.1  haad 	 * pe_count must always be calculated by pv_setup
    158          1.1  haad 	 */
    159          1.1  haad 	pv->pe_alloc_count = 0;
    160          1.1  haad 
    161          1.1  haad 	if (!fid->fmt->ops->pv_setup(fid->fmt, UINT64_C(0), 0,
    162          1.1  haad 				     vg->extent_size, 0, UINT64_C(0),
    163          1.1  haad 				     &fid->metadata_areas, pv, vg)) {
    164          1.1  haad 		log_error("Format-specific setup of physical volume '%s' "
    165          1.1  haad 			  "failed.", pv_name);
    166          1.1  haad 		return 0;
    167          1.1  haad 	}
    168          1.1  haad 
    169          1.1  haad 	if (_find_pv_in_vg(vg, pv_name)) {
    170          1.1  haad 		log_error("Physical volume '%s' listed more than once.",
    171          1.1  haad 			  pv_name);
    172          1.1  haad 		return 0;
    173          1.1  haad 	}
    174          1.1  haad 
    175          1.1  haad 	if (vg->pv_count && (vg->pv_count == vg->max_pv)) {
    176          1.1  haad 		log_error("No space for '%s' - volume group '%s' "
    177          1.1  haad 			  "holds max %d physical volume(s).", pv_name,
    178          1.1  haad 			  vg->name, vg->max_pv);
    179          1.1  haad 		return 0;
    180          1.1  haad 	}
    181          1.1  haad 
    182          1.1  haad 	if (!alloc_pv_segment_whole_pv(mem, pv))
    183          1.1  haad 		return_0;
    184          1.1  haad 
    185          1.1  haad 	pvl->pv = pv;
    186          1.1  haad 	dm_list_add(&vg->pvs, &pvl->list);
    187          1.1  haad 
    188          1.1  haad 	if ((uint64_t) vg->extent_count + pv->pe_count > UINT32_MAX) {
    189          1.1  haad 		log_error("Unable to add %s to %s: new extent count (%"
    190          1.1  haad 			  PRIu64 ") exceeds limit (%" PRIu32 ").",
    191          1.1  haad 			  pv_name, vg->name,
    192          1.1  haad 			  (uint64_t) vg->extent_count + pv->pe_count,
    193          1.1  haad 			  UINT32_MAX);
    194          1.1  haad 		return 0;
    195          1.1  haad 	}
    196          1.1  haad 
    197          1.1  haad 	vg->pv_count++;
    198          1.1  haad 	vg->extent_count += pv->pe_count;
    199          1.1  haad 	vg->free_count += pv->pe_count;
    200          1.1  haad 
    201          1.1  haad 	return 1;
    202          1.1  haad }
    203          1.1  haad 
    204          1.1  haad static int _copy_pv(struct physical_volume *pv_to,
    205          1.1  haad 		    struct physical_volume *pv_from)
    206          1.1  haad {
    207          1.1  haad 	memcpy(pv_to, pv_from, sizeof(*pv_to));
    208          1.1  haad 
    209          1.1  haad 	if (!str_list_dup(pv_to->fmt->cmd->mem, &pv_to->tags, &pv_from->tags)) {
    210          1.1  haad 		log_error("PV tags duplication failed");
    211          1.1  haad 		return 0;
    212          1.1  haad 	}
    213          1.1  haad 
    214          1.1  haad 	if (!peg_dup(pv_to->fmt->cmd->mem, &pv_to->segments,
    215          1.1  haad 		     &pv_from->segments))
    216          1.1  haad 		return_0;
    217          1.1  haad 
    218          1.1  haad 	return 1;
    219          1.1  haad }
    220          1.1  haad 
    221          1.1  haad int get_pv_from_vg_by_id(const struct format_type *fmt, const char *vg_name,
    222          1.1  haad 			 const char *vgid, const char *pvid,
    223          1.1  haad 			 struct physical_volume *pv)
    224          1.1  haad {
    225          1.1  haad 	struct volume_group *vg;
    226          1.1  haad 	struct pv_list *pvl;
    227          1.1  haad 	int consistent = 0;
    228          1.1  haad 
    229          1.1  haad 	if (!(vg = vg_read(fmt->cmd, vg_name, vgid, &consistent))) {
    230          1.1  haad 		log_error("get_pv_from_vg_by_id: vg_read failed to read VG %s",
    231          1.1  haad 			  vg_name);
    232          1.1  haad 		return 0;
    233          1.1  haad 	}
    234          1.1  haad 
    235          1.1  haad 	if (!consistent)
    236          1.1  haad 		log_warn("WARNING: Volume group %s is not consistent",
    237          1.1  haad 			 vg_name);
    238          1.1  haad 
    239          1.1  haad 	dm_list_iterate_items(pvl, &vg->pvs) {
    240          1.1  haad 		if (id_equal(&pvl->pv->id, (const struct id *) pvid)) {
    241          1.1  haad 			if (!_copy_pv(pv, pvl->pv))
    242          1.1  haad 				return_0;
    243          1.1  haad 			return 1;
    244          1.1  haad 		}
    245          1.1  haad 	}
    246          1.1  haad 
    247          1.1  haad 	return 0;
    248          1.1  haad }
    249          1.1  haad 
    250          1.1  haad static int validate_new_vg_name(struct cmd_context *cmd, const char *vg_name)
    251          1.1  haad {
    252          1.1  haad 	char vg_path[PATH_MAX];
    253          1.1  haad 
    254          1.1  haad 	if (!validate_name(vg_name))
    255          1.1  haad 		return_0;
    256          1.1  haad 
    257          1.1  haad 	snprintf(vg_path, PATH_MAX, "%s%s", cmd->dev_dir, vg_name);
    258          1.1  haad 	if (path_exists(vg_path)) {
    259          1.1  haad 		log_error("%s: already exists in filesystem", vg_path);
    260          1.1  haad 		return 0;
    261          1.1  haad 	}
    262          1.1  haad 
    263          1.1  haad 	return 1;
    264          1.1  haad }
    265          1.1  haad 
    266          1.1  haad int validate_vg_rename_params(struct cmd_context *cmd,
    267          1.1  haad 			      const char *vg_name_old,
    268          1.1  haad 			      const char *vg_name_new)
    269          1.1  haad {
    270          1.1  haad 	unsigned length;
    271          1.1  haad 	char *dev_dir;
    272          1.1  haad 
    273          1.1  haad 	dev_dir = cmd->dev_dir;
    274          1.1  haad 	length = strlen(dev_dir);
    275          1.1  haad 
    276          1.1  haad 	/* Check sanity of new name */
    277          1.1  haad 	if (strlen(vg_name_new) > NAME_LEN - length - 2) {
    278          1.1  haad 		log_error("New volume group path exceeds maximum length "
    279          1.1  haad 			  "of %d!", NAME_LEN - length - 2);
    280          1.1  haad 		return 0;
    281          1.1  haad 	}
    282          1.1  haad 
    283          1.1  haad 	if (!validate_new_vg_name(cmd, vg_name_new)) {
    284          1.1  haad 		log_error("New volume group name \"%s\" is invalid",
    285          1.1  haad 			  vg_name_new);
    286          1.1  haad 		return 0;
    287          1.1  haad 	}
    288          1.1  haad 
    289          1.1  haad 	if (!strcmp(vg_name_old, vg_name_new)) {
    290          1.1  haad 		log_error("Old and new volume group names must differ");
    291          1.1  haad 		return 0;
    292          1.1  haad 	}
    293          1.1  haad 
    294          1.1  haad 	return 1;
    295          1.1  haad }
    296          1.1  haad 
    297          1.1  haad int vg_rename(struct cmd_context *cmd, struct volume_group *vg,
    298          1.1  haad 	      const char *new_name)
    299          1.1  haad {
    300          1.1  haad 	struct dm_pool *mem = cmd->mem;
    301          1.1  haad 	struct pv_list *pvl;
    302          1.1  haad 
    303          1.1  haad 	if (!(vg->name = dm_pool_strdup(mem, new_name))) {
    304          1.1  haad 		log_error("vg->name allocation failed for '%s'", new_name);
    305          1.1  haad 		return 0;
    306          1.1  haad 	}
    307          1.1  haad 
    308          1.1  haad 	dm_list_iterate_items(pvl, &vg->pvs) {
    309          1.1  haad 		if (!(pvl->pv->vg_name = dm_pool_strdup(mem, new_name))) {
    310          1.1  haad 			log_error("pv->vg_name allocation failed for '%s'",
    311          1.1  haad 				  pv_dev_name(pvl->pv));
    312          1.1  haad 			return 0;
    313          1.1  haad 		}
    314          1.1  haad 	}
    315          1.1  haad 
    316          1.1  haad 	return 1;
    317          1.1  haad }
    318          1.1  haad 
    319          1.1  haad static int remove_lvs_in_vg(struct cmd_context *cmd,
    320          1.1  haad 			    struct volume_group *vg,
    321          1.1  haad 			    force_t force)
    322          1.1  haad {
    323          1.1  haad 	struct dm_list *lst;
    324          1.1  haad 	struct lv_list *lvl;
    325          1.1  haad 
    326          1.1  haad 	while ((lst = dm_list_first(&vg->lvs))) {
    327          1.1  haad 		lvl = dm_list_item(lst, struct lv_list);
    328          1.1  haad 		if (!lv_remove_with_dependencies(cmd, lvl->lv, force))
    329          1.1  haad 		    return 0;
    330          1.1  haad 	}
    331          1.1  haad 
    332          1.1  haad 	return 1;
    333          1.1  haad }
    334          1.1  haad 
    335          1.1  haad /* FIXME: remove redundant vg_name */
    336          1.1  haad int vg_remove_single(struct cmd_context *cmd, const char *vg_name,
    337          1.1  haad 		     struct volume_group *vg, int consistent,
    338          1.1  haad 		     force_t force __attribute((unused)))
    339          1.1  haad {
    340          1.1  haad 	struct physical_volume *pv;
    341          1.1  haad 	struct pv_list *pvl;
    342  1.1.1.1.2.1   jym 	unsigned lv_count;
    343          1.1  haad 	int ret = 1;
    344          1.1  haad 
    345          1.1  haad 	if (!vg || !consistent || vg_missing_pv_count(vg)) {
    346          1.1  haad 		log_error("Volume group \"%s\" not found, is inconsistent "
    347          1.1  haad 			  "or has PVs missing.", vg_name);
    348          1.1  haad 		log_error("Consider vgreduce --removemissing if metadata "
    349          1.1  haad 			  "is inconsistent.");
    350          1.1  haad 		return 0;
    351          1.1  haad 	}
    352          1.1  haad 
    353          1.1  haad 	if (!vg_check_status(vg, EXPORTED_VG))
    354          1.1  haad 		return 0;
    355          1.1  haad 
    356  1.1.1.1.2.1   jym 	lv_count = displayable_lvs_in_vg(vg);
    357  1.1.1.1.2.1   jym 
    358  1.1.1.1.2.1   jym 	if (lv_count) {
    359          1.1  haad 		if ((force == PROMPT) &&
    360          1.1  haad 		    (yes_no_prompt("Do you really want to remove volume "
    361  1.1.1.1.2.1   jym 				   "group \"%s\" containing %u "
    362          1.1  haad 				   "logical volumes? [y/n]: ",
    363  1.1.1.1.2.1   jym 				   vg_name, lv_count) == 'n')) {
    364          1.1  haad 			log_print("Volume group \"%s\" not removed", vg_name);
    365          1.1  haad 			return 0;
    366          1.1  haad 		}
    367          1.1  haad 		if (!remove_lvs_in_vg(cmd, vg, force))
    368          1.1  haad 			return 0;
    369          1.1  haad 	}
    370  1.1.1.1.2.1   jym 
    371  1.1.1.1.2.1   jym 	lv_count = displayable_lvs_in_vg(vg);
    372          1.1  haad 
    373  1.1.1.1.2.1   jym 	if (lv_count) {
    374  1.1.1.1.2.1   jym 		log_error("Volume group \"%s\" still contains %u "
    375  1.1.1.1.2.1   jym 			  "logical volume(s)", vg_name, lv_count);
    376          1.1  haad 		return 0;
    377          1.1  haad 	}
    378          1.1  haad 
    379          1.1  haad 	if (!archive(vg))
    380          1.1  haad 		return 0;
    381          1.1  haad 
    382          1.1  haad 	if (!vg_remove(vg)) {
    383          1.1  haad 		log_error("vg_remove %s failed", vg_name);
    384          1.1  haad 		return 0;
    385          1.1  haad 	}
    386          1.1  haad 
    387          1.1  haad 	/* init physical volumes */
    388          1.1  haad 	dm_list_iterate_items(pvl, &vg->pvs) {
    389          1.1  haad 		pv = pvl->pv;
    390          1.1  haad 		log_verbose("Removing physical volume \"%s\" from "
    391          1.1  haad 			    "volume group \"%s\"", pv_dev_name(pv), vg_name);
    392          1.1  haad 		pv->vg_name = vg->fid->fmt->orphan_vg_name;
    393          1.1  haad 		pv->status = ALLOCATABLE_PV;
    394          1.1  haad 
    395          1.1  haad 		if (!dev_get_size(pv_dev(pv), &pv->size)) {
    396          1.1  haad 			log_error("%s: Couldn't get size.", pv_dev_name(pv));
    397          1.1  haad 			ret = 0;
    398          1.1  haad 			continue;
    399          1.1  haad 		}
    400          1.1  haad 
    401          1.1  haad 		/* FIXME Write to same sector label was read from */
    402          1.1  haad 		if (!pv_write(cmd, pv, NULL, INT64_C(-1))) {
    403          1.1  haad 			log_error("Failed to remove physical volume \"%s\""
    404          1.1  haad 				  " from volume group \"%s\"",
    405          1.1  haad 				  pv_dev_name(pv), vg_name);
    406          1.1  haad 			ret = 0;
    407          1.1  haad 		}
    408          1.1  haad 	}
    409          1.1  haad 
    410          1.1  haad 	backup_remove(cmd, vg_name);
    411          1.1  haad 
    412          1.1  haad 	if (ret)
    413          1.1  haad 		log_print("Volume group \"%s\" successfully removed", vg_name);
    414          1.1  haad 	else
    415          1.1  haad 		log_error("Volume group \"%s\" not properly removed", vg_name);
    416          1.1  haad 
    417          1.1  haad 	return ret;
    418          1.1  haad }
    419          1.1  haad 
    420          1.1  haad int vg_extend(struct volume_group *vg, int pv_count, char **pv_names)
    421          1.1  haad {
    422          1.1  haad 	int i;
    423          1.1  haad 	struct physical_volume *pv;
    424          1.1  haad 
    425          1.1  haad 	/* attach each pv */
    426          1.1  haad 	for (i = 0; i < pv_count; i++) {
    427          1.1  haad 		if (!(pv = pv_by_path(vg->fid->fmt->cmd, pv_names[i]))) {
    428          1.1  haad 			log_error("%s not identified as an existing "
    429          1.1  haad 				  "physical volume", pv_names[i]);
    430          1.1  haad 			goto bad;
    431          1.1  haad 		}
    432          1.1  haad 
    433          1.1  haad 		if (!add_pv_to_vg(vg, pv_names[i], pv))
    434          1.1  haad 			goto bad;
    435          1.1  haad 	}
    436          1.1  haad 
    437          1.1  haad /* FIXME Decide whether to initialise and add new mdahs to format instance */
    438          1.1  haad 
    439          1.1  haad 	return 1;
    440          1.1  haad 
    441          1.1  haad       bad:
    442          1.1  haad 	log_error("Unable to add physical volume '%s' to "
    443          1.1  haad 		  "volume group '%s'.", pv_names[i], vg->name);
    444          1.1  haad 	return 0;
    445          1.1  haad }
    446          1.1  haad 
    447          1.1  haad const char *strip_dir(const char *vg_name, const char *dev_dir)
    448          1.1  haad {
    449          1.1  haad 	size_t len = strlen(dev_dir);
    450          1.1  haad 	if (!strncmp(vg_name, dev_dir, len))
    451          1.1  haad 		vg_name += len;
    452          1.1  haad 
    453          1.1  haad 	return vg_name;
    454          1.1  haad }
    455          1.1  haad 
    456          1.1  haad /*
    457          1.1  haad  * Validate parameters to vg_create() before calling.
    458          1.1  haad  * FIXME: Move inside vg_create library function.
    459          1.1  haad  * FIXME: Change vgcreate_params struct to individual gets/sets
    460          1.1  haad  */
    461          1.1  haad int validate_vg_create_params(struct cmd_context *cmd,
    462          1.1  haad 			      struct vgcreate_params *vp)
    463          1.1  haad {
    464          1.1  haad 	if (!validate_new_vg_name(cmd, vp->vg_name)) {
    465          1.1  haad 		log_error("New volume group name \"%s\" is invalid",
    466          1.1  haad 			  vp->vg_name);
    467          1.1  haad 		return 1;
    468          1.1  haad 	}
    469          1.1  haad 
    470          1.1  haad 	if (vp->alloc == ALLOC_INHERIT) {
    471          1.1  haad 		log_error("Volume Group allocation policy cannot inherit "
    472          1.1  haad 			  "from anything");
    473          1.1  haad 		return 1;
    474          1.1  haad 	}
    475          1.1  haad 
    476          1.1  haad 	if (!vp->extent_size) {
    477          1.1  haad 		log_error("Physical extent size may not be zero");
    478          1.1  haad 		return 1;
    479          1.1  haad 	}
    480          1.1  haad 
    481          1.1  haad 	if (!(cmd->fmt->features & FMT_UNLIMITED_VOLS)) {
    482          1.1  haad 		if (!vp->max_lv)
    483          1.1  haad 			vp->max_lv = 255;
    484          1.1  haad 		if (!vp->max_pv)
    485          1.1  haad 			vp->max_pv = 255;
    486          1.1  haad 		if (vp->max_lv > 255 || vp->max_pv > 255) {
    487          1.1  haad 			log_error("Number of volumes may not exceed 255");
    488          1.1  haad 			return 1;
    489          1.1  haad 		}
    490          1.1  haad 	}
    491          1.1  haad 
    492          1.1  haad 	return 0;
    493          1.1  haad }
    494          1.1  haad 
    495          1.1  haad struct volume_group *vg_create(struct cmd_context *cmd, const char *vg_name,
    496          1.1  haad 			       uint32_t extent_size, uint32_t max_pv,
    497          1.1  haad 			       uint32_t max_lv, alloc_policy_t alloc,
    498          1.1  haad 			       int pv_count, char **pv_names)
    499          1.1  haad {
    500          1.1  haad 	struct volume_group *vg;
    501          1.1  haad 	struct dm_pool *mem = cmd->mem;
    502          1.1  haad 	int consistent = 0;
    503          1.1  haad 
    504          1.1  haad 	if (!(vg = dm_pool_zalloc(mem, sizeof(*vg))))
    505          1.1  haad 		return_NULL;
    506          1.1  haad 
    507          1.1  haad 	/* is this vg name already in use ? */
    508          1.1  haad 	if (vg_read(cmd, vg_name, NULL, &consistent)) {
    509          1.1  haad 		log_err("A volume group called '%s' already exists.", vg_name);
    510          1.1  haad 		goto bad;
    511          1.1  haad 	}
    512          1.1  haad 
    513          1.1  haad 	if (!id_create(&vg->id)) {
    514          1.1  haad 		log_err("Couldn't create uuid for volume group '%s'.", vg_name);
    515          1.1  haad 		goto bad;
    516          1.1  haad 	}
    517          1.1  haad 
    518          1.1  haad 	/* Strip dev_dir if present */
    519          1.1  haad 	vg_name = strip_dir(vg_name, cmd->dev_dir);
    520          1.1  haad 
    521          1.1  haad 	vg->cmd = cmd;
    522          1.1  haad 
    523          1.1  haad 	if (!(vg->name = dm_pool_strdup(mem, vg_name)))
    524          1.1  haad 		goto_bad;
    525          1.1  haad 
    526          1.1  haad 	vg->seqno = 0;
    527          1.1  haad 
    528          1.1  haad 	vg->status = (RESIZEABLE_VG | LVM_READ | LVM_WRITE);
    529          1.1  haad 	if (!(vg->system_id = dm_pool_alloc(mem, NAME_LEN)))
    530          1.1  haad 		goto_bad;
    531          1.1  haad 
    532          1.1  haad 	*vg->system_id = '\0';
    533          1.1  haad 
    534          1.1  haad 	vg->extent_size = extent_size;
    535          1.1  haad 	vg->extent_count = 0;
    536          1.1  haad 	vg->free_count = 0;
    537          1.1  haad 
    538          1.1  haad 	vg->max_lv = max_lv;
    539          1.1  haad 	vg->max_pv = max_pv;
    540          1.1  haad 
    541          1.1  haad 	vg->alloc = alloc;
    542          1.1  haad 
    543          1.1  haad 	vg->pv_count = 0;
    544          1.1  haad 	dm_list_init(&vg->pvs);
    545          1.1  haad 
    546          1.1  haad 	vg->lv_count = 0;
    547          1.1  haad 	dm_list_init(&vg->lvs);
    548          1.1  haad 
    549          1.1  haad 	vg->snapshot_count = 0;
    550          1.1  haad 
    551          1.1  haad 	dm_list_init(&vg->tags);
    552          1.1  haad 
    553          1.1  haad 	if (!(vg->fid = cmd->fmt->ops->create_instance(cmd->fmt, vg_name,
    554          1.1  haad 						       NULL, NULL))) {
    555          1.1  haad 		log_error("Failed to create format instance");
    556          1.1  haad 		goto bad;
    557          1.1  haad 	}
    558          1.1  haad 
    559          1.1  haad 	if (vg->fid->fmt->ops->vg_setup &&
    560          1.1  haad 	    !vg->fid->fmt->ops->vg_setup(vg->fid, vg)) {
    561          1.1  haad 		log_error("Format specific setup of volume group '%s' failed.",
    562          1.1  haad 			  vg_name);
    563          1.1  haad 		goto bad;
    564          1.1  haad 	}
    565          1.1  haad 
    566          1.1  haad 	/* attach the pv's */
    567          1.1  haad 	if (!vg_extend(vg, pv_count, pv_names))
    568          1.1  haad 		goto_bad;
    569          1.1  haad 
    570          1.1  haad 	return vg;
    571          1.1  haad 
    572          1.1  haad       bad:
    573          1.1  haad 	dm_pool_free(mem, vg);
    574          1.1  haad 	return NULL;
    575          1.1  haad }
    576          1.1  haad 
    577          1.1  haad static int _recalc_extents(uint32_t *extents, const char *desc1,
    578          1.1  haad 			   const char *desc2, uint32_t old_size,
    579          1.1  haad 			   uint32_t new_size)
    580          1.1  haad {
    581          1.1  haad 	uint64_t size = (uint64_t) old_size * (*extents);
    582          1.1  haad 
    583          1.1  haad 	if (size % new_size) {
    584          1.1  haad 		log_error("New size %" PRIu64 " for %s%s not an exact number "
    585          1.1  haad 			  "of new extents.", size, desc1, desc2);
    586          1.1  haad 		return 0;
    587          1.1  haad 	}
    588          1.1  haad 
    589          1.1  haad 	size /= new_size;
    590          1.1  haad 
    591          1.1  haad 	if (size > UINT32_MAX) {
    592          1.1  haad 		log_error("New extent count %" PRIu64 " for %s%s exceeds "
    593          1.1  haad 			  "32 bits.", size, desc1, desc2);
    594          1.1  haad 		return 0;
    595          1.1  haad 	}
    596          1.1  haad 
    597          1.1  haad 	*extents = (uint32_t) size;
    598          1.1  haad 
    599          1.1  haad 	return 1;
    600          1.1  haad }
    601          1.1  haad 
    602          1.1  haad int vg_change_pesize(struct cmd_context *cmd __attribute((unused)),
    603          1.1  haad 		     struct volume_group *vg, uint32_t new_size)
    604          1.1  haad {
    605          1.1  haad 	uint32_t old_size = vg->extent_size;
    606          1.1  haad 	struct pv_list *pvl;
    607          1.1  haad 	struct lv_list *lvl;
    608          1.1  haad 	struct physical_volume *pv;
    609          1.1  haad 	struct logical_volume *lv;
    610          1.1  haad 	struct lv_segment *seg;
    611          1.1  haad 	struct pv_segment *pvseg;
    612          1.1  haad 	uint32_t s;
    613          1.1  haad 
    614          1.1  haad 	vg->extent_size = new_size;
    615          1.1  haad 
    616          1.1  haad 	if (vg->fid->fmt->ops->vg_setup &&
    617          1.1  haad 	    !vg->fid->fmt->ops->vg_setup(vg->fid, vg))
    618          1.1  haad 		return_0;
    619          1.1  haad 
    620          1.1  haad 	if (!_recalc_extents(&vg->extent_count, vg->name, "", old_size,
    621          1.1  haad 			     new_size))
    622          1.1  haad 		return_0;
    623          1.1  haad 
    624          1.1  haad 	if (!_recalc_extents(&vg->free_count, vg->name, " free space",
    625          1.1  haad 			     old_size, new_size))
    626          1.1  haad 		return_0;
    627          1.1  haad 
    628          1.1  haad 	/* foreach PV */
    629          1.1  haad 	dm_list_iterate_items(pvl, &vg->pvs) {
    630          1.1  haad 		pv = pvl->pv;
    631          1.1  haad 
    632          1.1  haad 		pv->pe_size = new_size;
    633          1.1  haad 		if (!_recalc_extents(&pv->pe_count, pv_dev_name(pv), "",
    634          1.1  haad 				     old_size, new_size))
    635          1.1  haad 			return_0;
    636          1.1  haad 
    637          1.1  haad 		if (!_recalc_extents(&pv->pe_alloc_count, pv_dev_name(pv),
    638          1.1  haad 				     " allocated space", old_size, new_size))
    639          1.1  haad 			return_0;
    640          1.1  haad 
    641          1.1  haad 		/* foreach free PV Segment */
    642          1.1  haad 		dm_list_iterate_items(pvseg, &pv->segments) {
    643          1.1  haad 			if (pvseg_is_allocated(pvseg))
    644          1.1  haad 				continue;
    645          1.1  haad 
    646          1.1  haad 			if (!_recalc_extents(&pvseg->pe, pv_dev_name(pv),
    647          1.1  haad 					     " PV segment start", old_size,
    648          1.1  haad 					     new_size))
    649          1.1  haad 				return_0;
    650          1.1  haad 			if (!_recalc_extents(&pvseg->len, pv_dev_name(pv),
    651          1.1  haad 					     " PV segment length", old_size,
    652          1.1  haad 					     new_size))
    653          1.1  haad 				return_0;
    654          1.1  haad 		}
    655          1.1  haad 	}
    656          1.1  haad 
    657          1.1  haad 	/* foreach LV */
    658          1.1  haad 	dm_list_iterate_items(lvl, &vg->lvs) {
    659          1.1  haad 		lv = lvl->lv;
    660          1.1  haad 
    661          1.1  haad 		if (!_recalc_extents(&lv->le_count, lv->name, "", old_size,
    662          1.1  haad 				     new_size))
    663          1.1  haad 			return_0;
    664          1.1  haad 
    665          1.1  haad 		dm_list_iterate_items(seg, &lv->segments) {
    666          1.1  haad 			if (!_recalc_extents(&seg->le, lv->name,
    667          1.1  haad 					     " segment start", old_size,
    668          1.1  haad 					     new_size))
    669          1.1  haad 				return_0;
    670          1.1  haad 
    671          1.1  haad 			if (!_recalc_extents(&seg->len, lv->name,
    672          1.1  haad 					     " segment length", old_size,
    673          1.1  haad 					     new_size))
    674          1.1  haad 				return_0;
    675          1.1  haad 
    676          1.1  haad 			if (!_recalc_extents(&seg->area_len, lv->name,
    677          1.1  haad 					     " area length", old_size,
    678          1.1  haad 					     new_size))
    679          1.1  haad 				return_0;
    680          1.1  haad 
    681          1.1  haad 			if (!_recalc_extents(&seg->extents_copied, lv->name,
    682          1.1  haad 					     " extents moved", old_size,
    683          1.1  haad 					     new_size))
    684          1.1  haad 				return_0;
    685          1.1  haad 
    686          1.1  haad 			/* foreach area */
    687          1.1  haad 			for (s = 0; s < seg->area_count; s++) {
    688          1.1  haad 				switch (seg_type(seg, s)) {
    689          1.1  haad 				case AREA_PV:
    690          1.1  haad 					if (!_recalc_extents
    691          1.1  haad 					    (&seg_pe(seg, s),
    692          1.1  haad 					     lv->name,
    693          1.1  haad 					     " pvseg start", old_size,
    694          1.1  haad 					     new_size))
    695          1.1  haad 						return_0;
    696          1.1  haad 					if (!_recalc_extents
    697          1.1  haad 					    (&seg_pvseg(seg, s)->len,
    698          1.1  haad 					     lv->name,
    699          1.1  haad 					     " pvseg length", old_size,
    700          1.1  haad 					     new_size))
    701          1.1  haad 						return_0;
    702          1.1  haad 					break;
    703          1.1  haad 				case AREA_LV:
    704          1.1  haad 					if (!_recalc_extents
    705          1.1  haad 					    (&seg_le(seg, s), lv->name,
    706          1.1  haad 					     " area start", old_size,
    707          1.1  haad 					     new_size))
    708          1.1  haad 						return_0;
    709          1.1  haad 					break;
    710          1.1  haad 				case AREA_UNASSIGNED:
    711          1.1  haad 					log_error("Unassigned area %u found in "
    712          1.1  haad 						  "segment", s);
    713          1.1  haad 					return 0;
    714          1.1  haad 				}
    715          1.1  haad 			}
    716          1.1  haad 		}
    717          1.1  haad 
    718          1.1  haad 	}
    719          1.1  haad 
    720          1.1  haad 	return 1;
    721          1.1  haad }
    722          1.1  haad 
    723          1.1  haad /*
    724          1.1  haad  * Separate metadata areas after splitting a VG.
    725          1.1  haad  * Also accepts orphan VG as destination (for vgreduce).
    726          1.1  haad  */
    727          1.1  haad int vg_split_mdas(struct cmd_context *cmd __attribute((unused)),
    728          1.1  haad 		  struct volume_group *vg_from, struct volume_group *vg_to)
    729          1.1  haad {
    730          1.1  haad 	struct metadata_area *mda, *mda2;
    731          1.1  haad 	struct dm_list *mdas_from, *mdas_to;
    732          1.1  haad 	int common_mda = 0;
    733          1.1  haad 
    734          1.1  haad 	mdas_from = &vg_from->fid->metadata_areas;
    735          1.1  haad 	mdas_to = &vg_to->fid->metadata_areas;
    736          1.1  haad 
    737          1.1  haad 	dm_list_iterate_items_safe(mda, mda2, mdas_from) {
    738          1.1  haad 		if (!mda->ops->mda_in_vg) {
    739          1.1  haad 			common_mda = 1;
    740          1.1  haad 			continue;
    741          1.1  haad 		}
    742          1.1  haad 
    743          1.1  haad 		if (!mda->ops->mda_in_vg(vg_from->fid, vg_from, mda)) {
    744          1.1  haad 			if (is_orphan_vg(vg_to->name))
    745          1.1  haad 				dm_list_del(&mda->list);
    746          1.1  haad 			else
    747          1.1  haad 				dm_list_move(mdas_to, &mda->list);
    748          1.1  haad 		}
    749          1.1  haad 	}
    750          1.1  haad 
    751          1.1  haad 	if (dm_list_empty(mdas_from) ||
    752          1.1  haad 	    (!is_orphan_vg(vg_to->name) && dm_list_empty(mdas_to)))
    753          1.1  haad 		return common_mda;
    754          1.1  haad 
    755          1.1  haad 	return 1;
    756          1.1  haad }
    757          1.1  haad 
    758          1.1  haad /**
    759          1.1  haad  * pv_create - initialize a physical volume for use with a volume group
    760          1.1  haad  * @fmt: format type
    761          1.1  haad  * @dev: PV device to initialize
    762          1.1  haad  * @id: PV UUID to use for initialization
    763          1.1  haad  * @size: size of the PV in sectors
    764          1.1  haad  * @pe_start: physical extent start
    765          1.1  haad  * @existing_extent_count
    766          1.1  haad  * @existing_extent_size
    767          1.1  haad  * @pvmetadatacopies
    768          1.1  haad  * @pvmetadatasize
    769          1.1  haad  * @mdas
    770          1.1  haad  *
    771          1.1  haad  * Returns:
    772          1.1  haad  *   PV handle - physical volume initialized successfully
    773          1.1  haad  *   NULL - invalid parameter or problem initializing the physical volume
    774          1.1  haad  *
    775          1.1  haad  * Note:
    776          1.1  haad  *   FIXME - liblvm todo - tidy up arguments for external use (fmt, mdas, etc)
    777          1.1  haad  */
    778          1.1  haad pv_t *pv_create(const struct cmd_context *cmd,
    779          1.1  haad 		struct device *dev,
    780          1.1  haad 		struct id *id, uint64_t size,
    781          1.1  haad 		uint64_t pe_start,
    782          1.1  haad 		uint32_t existing_extent_count,
    783          1.1  haad 		uint32_t existing_extent_size,
    784          1.1  haad 		int pvmetadatacopies,
    785          1.1  haad 		uint64_t pvmetadatasize, struct dm_list *mdas)
    786          1.1  haad {
    787          1.1  haad 	return _pv_create(cmd->fmt, dev, id, size, pe_start,
    788          1.1  haad 			  existing_extent_count,
    789          1.1  haad 			  existing_extent_size,
    790          1.1  haad 			  pvmetadatacopies,
    791          1.1  haad 			  pvmetadatasize, mdas);
    792          1.1  haad }
    793          1.1  haad 
    794          1.1  haad static void _free_pv(struct dm_pool *mem, struct physical_volume *pv)
    795          1.1  haad {
    796          1.1  haad 	dm_pool_free(mem, pv);
    797          1.1  haad }
    798          1.1  haad 
    799          1.1  haad static struct physical_volume *_alloc_pv(struct dm_pool *mem, struct device *dev)
    800          1.1  haad {
    801          1.1  haad 	struct physical_volume *pv = dm_pool_zalloc(mem, sizeof(*pv));
    802          1.1  haad 
    803          1.1  haad 	if (!pv)
    804          1.1  haad 		return_NULL;
    805          1.1  haad 
    806          1.1  haad 	if (!(pv->vg_name = dm_pool_zalloc(mem, NAME_LEN))) {
    807          1.1  haad 		dm_pool_free(mem, pv);
    808          1.1  haad 		return NULL;
    809          1.1  haad 	}
    810          1.1  haad 
    811          1.1  haad 	pv->pe_size = 0;
    812          1.1  haad 	pv->pe_start = 0;
    813          1.1  haad 	pv->pe_count = 0;
    814          1.1  haad 	pv->pe_alloc_count = 0;
    815          1.1  haad 	pv->pe_align = 0;
    816          1.1  haad 	pv->fmt = NULL;
    817          1.1  haad 	pv->dev = dev;
    818          1.1  haad 
    819          1.1  haad 	pv->status = ALLOCATABLE_PV;
    820          1.1  haad 
    821          1.1  haad 	dm_list_init(&pv->tags);
    822          1.1  haad 	dm_list_init(&pv->segments);
    823          1.1  haad 
    824          1.1  haad 	return pv;
    825          1.1  haad }
    826          1.1  haad 
    827          1.1  haad /* Sizes in sectors */
    828          1.1  haad static struct physical_volume *_pv_create(const struct format_type *fmt,
    829          1.1  haad 				  struct device *dev,
    830          1.1  haad 				  struct id *id, uint64_t size,
    831          1.1  haad 				  uint64_t pe_start,
    832          1.1  haad 				  uint32_t existing_extent_count,
    833          1.1  haad 				  uint32_t existing_extent_size,
    834          1.1  haad 				  int pvmetadatacopies,
    835          1.1  haad 				  uint64_t pvmetadatasize, struct dm_list *mdas)
    836          1.1  haad {
    837          1.1  haad 	struct dm_pool *mem = fmt->cmd->mem;
    838          1.1  haad 	struct physical_volume *pv = _alloc_pv(mem, dev);
    839          1.1  haad 
    840          1.1  haad 	if (!pv)
    841          1.1  haad 		return NULL;
    842          1.1  haad 
    843          1.1  haad 	if (id)
    844          1.1  haad 		memcpy(&pv->id, id, sizeof(*id));
    845          1.1  haad 	else if (!id_create(&pv->id)) {
    846          1.1  haad 		log_error("Failed to create random uuid for %s.",
    847          1.1  haad 			  dev_name(dev));
    848          1.1  haad 		goto bad;
    849          1.1  haad 	}
    850          1.1  haad 
    851          1.1  haad 	if (!dev_get_size(pv->dev, &pv->size)) {
    852          1.1  haad 		log_error("%s: Couldn't get size.", pv_dev_name(pv));
    853          1.1  haad 		goto bad;
    854          1.1  haad 	}
    855          1.1  haad 
    856          1.1  haad 	if (size) {
    857          1.1  haad 		if (size > pv->size)
    858          1.1  haad 			log_warn("WARNING: %s: Overriding real size. "
    859          1.1  haad 				  "You could lose data.", pv_dev_name(pv));
    860          1.1  haad 		log_verbose("%s: Pretending size is %" PRIu64 " sectors.",
    861          1.1  haad 			    pv_dev_name(pv), size);
    862          1.1  haad 		pv->size = size;
    863          1.1  haad 	}
    864          1.1  haad 
    865          1.1  haad 	if (pv->size < PV_MIN_SIZE) {
    866          1.1  haad 		log_error("%s: Size must exceed minimum of %ld sectors.",
    867          1.1  haad 			  pv_dev_name(pv), PV_MIN_SIZE);
    868          1.1  haad 		goto bad;
    869          1.1  haad 	}
    870          1.1  haad 
    871          1.1  haad 	pv->fmt = fmt;
    872          1.1  haad 	pv->vg_name = fmt->orphan_vg_name;
    873          1.1  haad 
    874          1.1  haad 	if (!fmt->ops->pv_setup(fmt, pe_start, existing_extent_count,
    875          1.1  haad 				existing_extent_size,
    876          1.1  haad 				pvmetadatacopies, pvmetadatasize, mdas,
    877          1.1  haad 				pv, NULL)) {
    878          1.1  haad 		log_error("%s: Format-specific setup of physical volume "
    879          1.1  haad 			  "failed.", pv_dev_name(pv));
    880          1.1  haad 		goto bad;
    881          1.1  haad 	}
    882          1.1  haad 	return pv;
    883          1.1  haad 
    884          1.1  haad       bad:
    885          1.1  haad 	_free_pv(mem, pv);
    886          1.1  haad 	return NULL;
    887          1.1  haad }
    888          1.1  haad 
    889          1.1  haad /* FIXME: liblvm todo - make into function that returns handle */
    890          1.1  haad struct pv_list *find_pv_in_vg(const struct volume_group *vg,
    891          1.1  haad 			      const char *pv_name)
    892          1.1  haad {
    893          1.1  haad 	return _find_pv_in_vg(vg, pv_name);
    894          1.1  haad }
    895          1.1  haad 
    896          1.1  haad static struct pv_list *_find_pv_in_vg(const struct volume_group *vg,
    897          1.1  haad 				      const char *pv_name)
    898          1.1  haad {
    899          1.1  haad 	struct pv_list *pvl;
    900          1.1  haad 
    901          1.1  haad 	dm_list_iterate_items(pvl, &vg->pvs)
    902          1.1  haad 		if (pvl->pv->dev == dev_cache_get(pv_name, vg->cmd->filter))
    903          1.1  haad 			return pvl;
    904          1.1  haad 
    905          1.1  haad 	return NULL;
    906          1.1  haad }
    907          1.1  haad 
    908          1.1  haad struct pv_list *find_pv_in_pv_list(const struct dm_list *pl,
    909          1.1  haad 				   const struct physical_volume *pv)
    910          1.1  haad {
    911          1.1  haad 	struct pv_list *pvl;
    912          1.1  haad 
    913          1.1  haad 	dm_list_iterate_items(pvl, pl)
    914          1.1  haad 		if (pvl->pv == pv)
    915          1.1  haad 			return pvl;
    916          1.1  haad 
    917          1.1  haad 	return NULL;
    918          1.1  haad }
    919          1.1  haad 
    920          1.1  haad int pv_is_in_vg(struct volume_group *vg, struct physical_volume *pv)
    921          1.1  haad {
    922          1.1  haad 	struct pv_list *pvl;
    923          1.1  haad 
    924          1.1  haad 	dm_list_iterate_items(pvl, &vg->pvs)
    925          1.1  haad 		if (pv == pvl->pv)
    926          1.1  haad 			 return 1;
    927          1.1  haad 
    928          1.1  haad 	return 0;
    929          1.1  haad }
    930          1.1  haad 
    931          1.1  haad /**
    932          1.1  haad  * find_pv_in_vg_by_uuid - Find PV in VG by PV UUID
    933          1.1  haad  * @vg: volume group to search
    934          1.1  haad  * @id: UUID of the PV to match
    935          1.1  haad  *
    936          1.1  haad  * Returns:
    937          1.1  haad  *   PV handle - if UUID of PV found in VG
    938          1.1  haad  *   NULL - invalid parameter or UUID of PV not found in VG
    939          1.1  haad  *
    940          1.1  haad  * Note
    941          1.1  haad  *   FIXME - liblvm todo - make into function that takes VG handle
    942          1.1  haad  */
    943          1.1  haad pv_t *find_pv_in_vg_by_uuid(const struct volume_group *vg,
    944          1.1  haad 			    const struct id *id)
    945          1.1  haad {
    946          1.1  haad 	return _find_pv_in_vg_by_uuid(vg, id);
    947          1.1  haad }
    948          1.1  haad 
    949          1.1  haad 
    950          1.1  haad static struct physical_volume *_find_pv_in_vg_by_uuid(const struct volume_group *vg,
    951          1.1  haad 						      const struct id *id)
    952          1.1  haad {
    953          1.1  haad 	struct pv_list *pvl;
    954          1.1  haad 
    955          1.1  haad 	dm_list_iterate_items(pvl, &vg->pvs)
    956          1.1  haad 		if (id_equal(&pvl->pv->id, id))
    957          1.1  haad 			return pvl->pv;
    958          1.1  haad 
    959          1.1  haad 	return NULL;
    960          1.1  haad }
    961          1.1  haad 
    962          1.1  haad struct lv_list *find_lv_in_vg(const struct volume_group *vg,
    963          1.1  haad 			      const char *lv_name)
    964          1.1  haad {
    965          1.1  haad 	struct lv_list *lvl;
    966          1.1  haad 	const char *ptr;
    967          1.1  haad 
    968          1.1  haad 	/* Use last component */
    969          1.1  haad 	if ((ptr = strrchr(lv_name, '/')))
    970          1.1  haad 		ptr++;
    971          1.1  haad 	else
    972          1.1  haad 		ptr = lv_name;
    973          1.1  haad 
    974          1.1  haad 	dm_list_iterate_items(lvl, &vg->lvs)
    975          1.1  haad 		if (!strcmp(lvl->lv->name, ptr))
    976          1.1  haad 			return lvl;
    977          1.1  haad 
    978          1.1  haad 	return NULL;
    979          1.1  haad }
    980          1.1  haad 
    981          1.1  haad struct lv_list *find_lv_in_lv_list(const struct dm_list *ll,
    982          1.1  haad 				   const struct logical_volume *lv)
    983          1.1  haad {
    984          1.1  haad 	struct lv_list *lvl;
    985          1.1  haad 
    986          1.1  haad 	dm_list_iterate_items(lvl, ll)
    987          1.1  haad 		if (lvl->lv == lv)
    988          1.1  haad 			return lvl;
    989          1.1  haad 
    990          1.1  haad 	return NULL;
    991          1.1  haad }
    992          1.1  haad 
    993          1.1  haad struct lv_list *find_lv_in_vg_by_lvid(struct volume_group *vg,
    994          1.1  haad 				      const union lvid *lvid)
    995          1.1  haad {
    996          1.1  haad 	struct lv_list *lvl;
    997          1.1  haad 
    998          1.1  haad 	dm_list_iterate_items(lvl, &vg->lvs)
    999          1.1  haad 		if (!strncmp(lvl->lv->lvid.s, lvid->s, sizeof(*lvid)))
   1000          1.1  haad 			return lvl;
   1001          1.1  haad 
   1002          1.1  haad 	return NULL;
   1003          1.1  haad }
   1004          1.1  haad 
   1005          1.1  haad struct logical_volume *find_lv(const struct volume_group *vg,
   1006          1.1  haad 			       const char *lv_name)
   1007          1.1  haad {
   1008          1.1  haad 	struct lv_list *lvl = find_lv_in_vg(vg, lv_name);
   1009          1.1  haad 	return lvl ? lvl->lv : NULL;
   1010          1.1  haad }
   1011          1.1  haad 
   1012          1.1  haad struct physical_volume *find_pv(struct volume_group *vg, struct device *dev)
   1013          1.1  haad {
   1014          1.1  haad 	struct pv_list *pvl;
   1015          1.1  haad 
   1016          1.1  haad 	dm_list_iterate_items(pvl, &vg->pvs)
   1017          1.1  haad 		if (dev == pvl->pv->dev)
   1018          1.1  haad 			return pvl->pv;
   1019          1.1  haad 
   1020          1.1  haad 	return NULL;
   1021          1.1  haad }
   1022          1.1  haad 
   1023          1.1  haad /* FIXME: liblvm todo - make into function that returns handle */
   1024          1.1  haad struct physical_volume *find_pv_by_name(struct cmd_context *cmd,
   1025          1.1  haad 					const char *pv_name)
   1026          1.1  haad {
   1027          1.1  haad 	return _find_pv_by_name(cmd, pv_name);
   1028          1.1  haad }
   1029          1.1  haad 
   1030          1.1  haad 
   1031          1.1  haad static struct physical_volume *_find_pv_by_name(struct cmd_context *cmd,
   1032          1.1  haad 			 			const char *pv_name)
   1033          1.1  haad {
   1034          1.1  haad 	struct physical_volume *pv;
   1035          1.1  haad 
   1036          1.1  haad 	if (!(pv = _pv_read(cmd, pv_name, NULL, NULL, 1))) {
   1037          1.1  haad 		log_error("Physical volume %s not found", pv_name);
   1038          1.1  haad 		return NULL;
   1039          1.1  haad 	}
   1040          1.1  haad 
   1041          1.1  haad 	if (is_orphan_vg(pv->vg_name)) {
   1042          1.1  haad 		/* If a PV has no MDAs - need to search all VGs for it */
   1043          1.1  haad 		if (!scan_vgs_for_pvs(cmd))
   1044          1.1  haad 			return_NULL;
   1045          1.1  haad 		if (!(pv = _pv_read(cmd, pv_name, NULL, NULL, 1))) {
   1046          1.1  haad 			log_error("Physical volume %s not found", pv_name);
   1047          1.1  haad 			return NULL;
   1048          1.1  haad 		}
   1049          1.1  haad 	}
   1050          1.1  haad 
   1051          1.1  haad 	if (is_orphan_vg(pv->vg_name)) {
   1052          1.1  haad 		log_error("Physical volume %s not in a volume group", pv_name);
   1053          1.1  haad 		return NULL;
   1054          1.1  haad 	}
   1055          1.1  haad 
   1056          1.1  haad 	return pv;
   1057          1.1  haad }
   1058          1.1  haad 
   1059          1.1  haad /* Find segment at a given logical extent in an LV */
   1060          1.1  haad struct lv_segment *find_seg_by_le(const struct logical_volume *lv, uint32_t le)
   1061          1.1  haad {
   1062          1.1  haad 	struct lv_segment *seg;
   1063          1.1  haad 
   1064          1.1  haad 	dm_list_iterate_items(seg, &lv->segments)
   1065          1.1  haad 		if (le >= seg->le && le < seg->le + seg->len)
   1066          1.1  haad 			return seg;
   1067          1.1  haad 
   1068          1.1  haad 	return NULL;
   1069          1.1  haad }
   1070          1.1  haad 
   1071          1.1  haad struct lv_segment *first_seg(const struct logical_volume *lv)
   1072          1.1  haad {
   1073          1.1  haad 	struct lv_segment *seg = NULL;
   1074          1.1  haad 
   1075          1.1  haad 	dm_list_iterate_items(seg, &lv->segments)
   1076          1.1  haad 		break;
   1077          1.1  haad 
   1078          1.1  haad 	return seg;
   1079          1.1  haad }
   1080          1.1  haad 
   1081          1.1  haad /* Find segment at a given physical extent in a PV */
   1082          1.1  haad struct pv_segment *find_peg_by_pe(const struct physical_volume *pv, uint32_t pe)
   1083          1.1  haad {
   1084          1.1  haad 	struct pv_segment *peg;
   1085          1.1  haad 
   1086          1.1  haad 	dm_list_iterate_items(peg, &pv->segments)
   1087          1.1  haad 		if (pe >= peg->pe && pe < peg->pe + peg->len)
   1088          1.1  haad 			return peg;
   1089          1.1  haad 
   1090          1.1  haad 	return NULL;
   1091          1.1  haad }
   1092          1.1  haad 
   1093          1.1  haad int vg_remove(struct volume_group *vg)
   1094          1.1  haad {
   1095          1.1  haad 	struct metadata_area *mda;
   1096          1.1  haad 
   1097          1.1  haad 	/* FIXME Improve recovery situation? */
   1098          1.1  haad 	/* Remove each copy of the metadata */
   1099          1.1  haad 	dm_list_iterate_items(mda, &vg->fid->metadata_areas) {
   1100          1.1  haad 		if (mda->ops->vg_remove &&
   1101          1.1  haad 		    !mda->ops->vg_remove(vg->fid, vg, mda))
   1102          1.1  haad 			return_0;
   1103          1.1  haad 	}
   1104          1.1  haad 
   1105          1.1  haad 	return 1;
   1106          1.1  haad }
   1107          1.1  haad 
   1108  1.1.1.1.2.1   jym unsigned displayable_lvs_in_vg(const struct volume_group *vg)
   1109  1.1.1.1.2.1   jym {
   1110  1.1.1.1.2.1   jym 	struct lv_list *lvl;
   1111  1.1.1.1.2.1   jym 	unsigned lv_count = 0;
   1112  1.1.1.1.2.1   jym 
   1113  1.1.1.1.2.1   jym 	dm_list_iterate_items(lvl, &vg->lvs)
   1114  1.1.1.1.2.1   jym 		if (lv_is_displayable(lvl->lv))
   1115  1.1.1.1.2.1   jym 			lv_count++;
   1116  1.1.1.1.2.1   jym 
   1117  1.1.1.1.2.1   jym 	return lv_count;
   1118  1.1.1.1.2.1   jym }
   1119  1.1.1.1.2.1   jym 
   1120          1.1  haad /*
   1121          1.1  haad  * Determine whether two vgs are compatible for merging.
   1122          1.1  haad  */
   1123          1.1  haad int vgs_are_compatible(struct cmd_context *cmd __attribute((unused)),
   1124          1.1  haad 		       struct volume_group *vg_from,
   1125          1.1  haad 		       struct volume_group *vg_to)
   1126          1.1  haad {
   1127          1.1  haad 	struct lv_list *lvl1, *lvl2;
   1128          1.1  haad 	struct pv_list *pvl;
   1129          1.1  haad 	char *name1, *name2;
   1130          1.1  haad 
   1131          1.1  haad 	if (lvs_in_vg_activated(vg_from)) {
   1132          1.1  haad 		log_error("Logical volumes in \"%s\" must be inactive",
   1133          1.1  haad 			  vg_from->name);
   1134          1.1  haad 		return 0;
   1135          1.1  haad 	}
   1136          1.1  haad 
   1137          1.1  haad 	/* Check compatibility */
   1138          1.1  haad 	if (vg_to->extent_size != vg_from->extent_size) {
   1139          1.1  haad 		log_error("Extent sizes differ: %d (%s) and %d (%s)",
   1140          1.1  haad 			  vg_to->extent_size, vg_to->name,
   1141          1.1  haad 			  vg_from->extent_size, vg_from->name);
   1142          1.1  haad 		return 0;
   1143          1.1  haad 	}
   1144          1.1  haad 
   1145          1.1  haad 	if (vg_to->max_pv &&
   1146          1.1  haad 	    (vg_to->max_pv < vg_to->pv_count + vg_from->pv_count)) {
   1147          1.1  haad 		log_error("Maximum number of physical volumes (%d) exceeded "
   1148          1.1  haad 			  " for \"%s\" and \"%s\"", vg_to->max_pv, vg_to->name,
   1149          1.1  haad 			  vg_from->name);
   1150          1.1  haad 		return 0;
   1151          1.1  haad 	}
   1152          1.1  haad 
   1153          1.1  haad 	if (vg_to->max_lv &&
   1154          1.1  haad 	    (vg_to->max_lv < vg_to->lv_count + vg_from->lv_count)) {
   1155          1.1  haad 		log_error("Maximum number of logical volumes (%d) exceeded "
   1156          1.1  haad 			  " for \"%s\" and \"%s\"", vg_to->max_lv, vg_to->name,
   1157          1.1  haad 			  vg_from->name);
   1158          1.1  haad 		return 0;
   1159          1.1  haad 	}
   1160          1.1  haad 
   1161          1.1  haad 	/* Metadata types must be the same */
   1162          1.1  haad 	if (vg_to->fid->fmt != vg_from->fid->fmt) {
   1163          1.1  haad 		log_error("Metadata types differ for \"%s\" and \"%s\"",
   1164          1.1  haad 			  vg_to->name, vg_from->name);
   1165          1.1  haad 		return 0;
   1166          1.1  haad 	}
   1167          1.1  haad 
   1168          1.1  haad 	/* Clustering attribute must be the same */
   1169          1.1  haad 	if (vg_is_clustered(vg_to) != vg_is_clustered(vg_from)) {
   1170          1.1  haad 		log_error("Clustered attribute differs for \"%s\" and \"%s\"",
   1171          1.1  haad 			  vg_to->name, vg_from->name);
   1172          1.1  haad 		return 0;
   1173          1.1  haad 	}
   1174          1.1  haad 
   1175          1.1  haad 	/* Check no conflicts with LV names */
   1176          1.1  haad 	dm_list_iterate_items(lvl1, &vg_to->lvs) {
   1177          1.1  haad 		name1 = lvl1->lv->name;
   1178          1.1  haad 
   1179          1.1  haad 		dm_list_iterate_items(lvl2, &vg_from->lvs) {
   1180          1.1  haad 			name2 = lvl2->lv->name;
   1181          1.1  haad 
   1182          1.1  haad 			if (!strcmp(name1, name2)) {
   1183          1.1  haad 				log_error("Duplicate logical volume "
   1184          1.1  haad 					  "name \"%s\" "
   1185          1.1  haad 					  "in \"%s\" and \"%s\"",
   1186          1.1  haad 					  name1, vg_to->name, vg_from->name);
   1187          1.1  haad 				return 0;
   1188          1.1  haad 			}
   1189          1.1  haad 		}
   1190          1.1  haad 	}
   1191          1.1  haad 
   1192          1.1  haad 	/* Check no PVs are constructed from either VG */
   1193          1.1  haad 	dm_list_iterate_items(pvl, &vg_to->pvs) {
   1194          1.1  haad 		if (pv_uses_vg(pvl->pv, vg_from)) {
   1195          1.1  haad 			log_error("Physical volume %s might be constructed "
   1196          1.1  haad 				  "from same volume group %s.",
   1197          1.1  haad 				  pv_dev_name(pvl->pv), vg_from->name);
   1198          1.1  haad 			return 0;
   1199          1.1  haad 		}
   1200          1.1  haad 	}
   1201          1.1  haad 
   1202          1.1  haad 	dm_list_iterate_items(pvl, &vg_from->pvs) {
   1203          1.1  haad 		if (pv_uses_vg(pvl->pv, vg_to)) {
   1204          1.1  haad 			log_error("Physical volume %s might be constructed "
   1205          1.1  haad 				  "from same volume group %s.",
   1206          1.1  haad 				  pv_dev_name(pvl->pv), vg_to->name);
   1207          1.1  haad 			return 0;
   1208          1.1  haad 		}
   1209          1.1  haad 	}
   1210          1.1  haad 
   1211          1.1  haad 	return 1;
   1212          1.1  haad }
   1213          1.1  haad 
   1214          1.1  haad struct _lv_postorder_baton {
   1215          1.1  haad 	int (*fn)(struct logical_volume *lv, void *data);
   1216          1.1  haad 	void *data;
   1217          1.1  haad };
   1218          1.1  haad 
   1219          1.1  haad static int _lv_postorder_visit(struct logical_volume *,
   1220          1.1  haad 			       int (*fn)(struct logical_volume *lv, void *data),
   1221          1.1  haad 			       void *data);
   1222          1.1  haad 
   1223          1.1  haad static int _lv_postorder_level(struct logical_volume *lv, void *data)
   1224          1.1  haad {
   1225          1.1  haad 	struct _lv_postorder_baton *baton = data;
   1226          1.1  haad 	if (lv->status & POSTORDER_OPEN_FLAG)
   1227          1.1  haad 		return 1; // a data structure loop has closed...
   1228          1.1  haad 	lv->status |= POSTORDER_OPEN_FLAG;
   1229          1.1  haad 	int r =_lv_postorder_visit(lv, baton->fn, baton->data);
   1230          1.1  haad 	lv->status &= ~POSTORDER_OPEN_FLAG;
   1231          1.1  haad 	lv->status |= POSTORDER_FLAG;
   1232          1.1  haad 	return r;
   1233          1.1  haad };
   1234          1.1  haad 
   1235          1.1  haad static int _lv_each_dependency(struct logical_volume *lv,
   1236          1.1  haad 			       int (*fn)(struct logical_volume *lv, void *data),
   1237          1.1  haad 			       void *data)
   1238          1.1  haad {
   1239          1.1  haad 	int i, s;
   1240          1.1  haad 	struct lv_segment *lvseg;
   1241          1.1  haad 
   1242          1.1  haad 	struct logical_volume *deps[] = {
   1243          1.1  haad 		lv->snapshot ? lv->snapshot->origin : 0,
   1244          1.1  haad 		lv->snapshot ? lv->snapshot->cow : 0 };
   1245          1.1  haad 	for (i = 0; i < sizeof(deps) / sizeof(*deps); ++i) {
   1246          1.1  haad 		if (deps[i] && !fn(deps[i], data))
   1247          1.1  haad 			return_0;
   1248          1.1  haad 	}
   1249          1.1  haad 
   1250          1.1  haad 	dm_list_iterate_items(lvseg, &lv->segments) {
   1251          1.1  haad 		if (lvseg->log_lv && !fn(lvseg->log_lv, data))
   1252          1.1  haad 			return_0;
   1253          1.1  haad 		for (s = 0; s < lvseg->area_count; ++s) {
   1254          1.1  haad 			if (seg_type(lvseg, s) == AREA_LV && !fn(seg_lv(lvseg,s), data))
   1255          1.1  haad 				return_0;
   1256          1.1  haad 		}
   1257          1.1  haad 	}
   1258          1.1  haad 	return 1;
   1259          1.1  haad }
   1260          1.1  haad 
   1261          1.1  haad static int _lv_postorder_cleanup(struct logical_volume *lv, void *data)
   1262          1.1  haad {
   1263          1.1  haad 	if (!(lv->status & POSTORDER_FLAG))
   1264          1.1  haad 		return 1;
   1265          1.1  haad 	lv->status &= ~POSTORDER_FLAG;
   1266          1.1  haad 
   1267          1.1  haad 	if (!_lv_each_dependency(lv, _lv_postorder_cleanup, data))
   1268          1.1  haad 		return_0;
   1269          1.1  haad 	return 1;
   1270          1.1  haad }
   1271          1.1  haad 
   1272          1.1  haad static int _lv_postorder_visit(struct logical_volume *lv,
   1273          1.1  haad 			       int (*fn)(struct logical_volume *lv, void *data),
   1274          1.1  haad 			       void *data)
   1275          1.1  haad {
   1276          1.1  haad 	struct _lv_postorder_baton baton;
   1277          1.1  haad 	int r;
   1278          1.1  haad 
   1279          1.1  haad 	if (lv->status & POSTORDER_FLAG)
   1280          1.1  haad 		return 1;
   1281          1.1  haad 
   1282          1.1  haad 	baton.fn = fn;
   1283          1.1  haad 	baton.data = data;
   1284          1.1  haad 	r = _lv_each_dependency(lv, _lv_postorder_level, &baton);
   1285          1.1  haad 	if (r) {
   1286          1.1  haad 		r = fn(lv, data);
   1287          1.1  haad 		log_verbose("visited %s", lv->name);
   1288          1.1  haad 	}
   1289          1.1  haad 	return r;
   1290          1.1  haad }
   1291          1.1  haad 
   1292          1.1  haad /*
   1293          1.1  haad  * This will walk the LV dependency graph in depth-first order and in the
   1294          1.1  haad  * postorder, call a callback function "fn". The void *data is passed along all
   1295          1.1  haad  * the calls. The callback may return zero to indicate an error and terminate
   1296          1.1  haad  * the depth-first walk. The error is propagated to return value of
   1297          1.1  haad  * _lv_postorder.
   1298          1.1  haad  */
   1299          1.1  haad static int _lv_postorder(struct logical_volume *lv,
   1300          1.1  haad 			       int (*fn)(struct logical_volume *lv, void *data),
   1301          1.1  haad 			       void *data)
   1302          1.1  haad {
   1303          1.1  haad 	int r;
   1304          1.1  haad 	r = _lv_postorder_visit(lv, fn, data);
   1305          1.1  haad 	_lv_postorder_cleanup(lv, 0);
   1306          1.1  haad 	return r;
   1307          1.1  haad }
   1308          1.1  haad 
   1309          1.1  haad struct _lv_mark_if_partial_baton {
   1310          1.1  haad 	int partial;
   1311          1.1  haad };
   1312          1.1  haad 
   1313          1.1  haad static int _lv_mark_if_partial_collect(struct logical_volume *lv, void *data)
   1314          1.1  haad {
   1315          1.1  haad 	struct _lv_mark_if_partial_baton *baton = data;
   1316          1.1  haad 	if (lv->status & PARTIAL_LV)
   1317          1.1  haad 		baton->partial = 1;
   1318          1.1  haad 
   1319          1.1  haad 	return 1;
   1320          1.1  haad }
   1321          1.1  haad 
   1322          1.1  haad static int _lv_mark_if_partial_single(struct logical_volume *lv, void *data)
   1323          1.1  haad {
   1324          1.1  haad 	int s;
   1325          1.1  haad 	struct _lv_mark_if_partial_baton baton;
   1326          1.1  haad 	struct lv_segment *lvseg;
   1327          1.1  haad 
   1328          1.1  haad 	dm_list_iterate_items(lvseg, &lv->segments) {
   1329          1.1  haad 		for (s = 0; s < lvseg->area_count; ++s) {
   1330          1.1  haad 			if (seg_type(lvseg, s) == AREA_PV) {
   1331          1.1  haad 				if (seg_pv(lvseg, s)->status & MISSING_PV)
   1332          1.1  haad 					lv->status |= PARTIAL_LV;
   1333          1.1  haad 			}
   1334          1.1  haad 		}
   1335          1.1  haad 	}
   1336          1.1  haad 
   1337          1.1  haad 	baton.partial = 0;
   1338          1.1  haad 	_lv_each_dependency(lv, _lv_mark_if_partial_collect, &baton);
   1339          1.1  haad 
   1340          1.1  haad 	if (baton.partial)
   1341          1.1  haad 		lv->status |= PARTIAL_LV;
   1342          1.1  haad 
   1343          1.1  haad 	return 1;
   1344          1.1  haad }
   1345          1.1  haad 
   1346          1.1  haad static int _lv_mark_if_partial(struct logical_volume *lv)
   1347          1.1  haad {
   1348          1.1  haad 	return _lv_postorder(lv, _lv_mark_if_partial_single, NULL);
   1349          1.1  haad }
   1350          1.1  haad 
   1351          1.1  haad /*
   1352          1.1  haad  * Mark LVs with missing PVs using PARTIAL_LV status flag. The flag is
   1353          1.1  haad  * propagated transitively, so LVs referencing other LVs are marked
   1354          1.1  haad  * partial as well, if any of their referenced LVs are marked partial.
   1355          1.1  haad  */
   1356          1.1  haad static int _vg_mark_partial_lvs(struct volume_group *vg)
   1357          1.1  haad {
   1358          1.1  haad 	struct logical_volume *lv;
   1359          1.1  haad 	struct lv_list *lvl;
   1360          1.1  haad 
   1361          1.1  haad 	dm_list_iterate_items(lvl, &vg->lvs) {
   1362          1.1  haad 		lv = lvl->lv;
   1363          1.1  haad 		if (!_lv_mark_if_partial(lv))
   1364          1.1  haad 			return_0;
   1365          1.1  haad 	}
   1366          1.1  haad 	return 1;
   1367          1.1  haad }
   1368          1.1  haad 
   1369          1.1  haad int vg_validate(struct volume_group *vg)
   1370          1.1  haad {
   1371          1.1  haad 	struct pv_list *pvl, *pvl2;
   1372          1.1  haad 	struct lv_list *lvl, *lvl2;
   1373          1.1  haad 	char uuid[64] __attribute((aligned(8)));
   1374          1.1  haad 	int r = 1;
   1375          1.1  haad 	uint32_t lv_count;
   1376          1.1  haad 
   1377          1.1  haad 	/* FIXME Also check there's no data/metadata overlap */
   1378          1.1  haad 
   1379          1.1  haad 	dm_list_iterate_items(pvl, &vg->pvs) {
   1380          1.1  haad 		dm_list_iterate_items(pvl2, &vg->pvs) {
   1381          1.1  haad 			if (pvl == pvl2)
   1382          1.1  haad 				break;
   1383          1.1  haad 			if (id_equal(&pvl->pv->id,
   1384          1.1  haad 				     &pvl2->pv->id)) {
   1385          1.1  haad 				if (!id_write_format(&pvl->pv->id, uuid,
   1386          1.1  haad 						     sizeof(uuid)))
   1387          1.1  haad 					 stack;
   1388          1.1  haad 				log_error("Internal error: Duplicate PV id "
   1389          1.1  haad 					  "%s detected for %s in %s.",
   1390          1.1  haad 					  uuid, pv_dev_name(pvl->pv),
   1391          1.1  haad 					  vg->name);
   1392          1.1  haad 				r = 0;
   1393          1.1  haad 			}
   1394          1.1  haad 		}
   1395          1.1  haad 
   1396          1.1  haad 		if (strcmp(pvl->pv->vg_name, vg->name)) {
   1397          1.1  haad 			log_error("Internal error: VG name for PV %s is corrupted",
   1398          1.1  haad 				  pv_dev_name(pvl->pv));
   1399          1.1  haad 			r = 0;
   1400          1.1  haad 		}
   1401          1.1  haad 	}
   1402          1.1  haad 
   1403          1.1  haad 	if (!check_pv_segments(vg)) {
   1404          1.1  haad 		log_error("Internal error: PV segments corrupted in %s.",
   1405          1.1  haad 			  vg->name);
   1406          1.1  haad 		r = 0;
   1407          1.1  haad 	}
   1408          1.1  haad 
   1409          1.1  haad 	if ((lv_count = (uint32_t) dm_list_size(&vg->lvs)) !=
   1410          1.1  haad 	    vg->lv_count + 2 * vg->snapshot_count) {
   1411          1.1  haad 		log_error("Internal error: #internal LVs (%u) != #LVs (%"
   1412          1.1  haad 			  PRIu32 ") + 2 * #snapshots (%" PRIu32 ") in VG %s",
   1413          1.1  haad 			  dm_list_size(&vg->lvs), vg->lv_count,
   1414          1.1  haad 			  vg->snapshot_count, vg->name);
   1415          1.1  haad 		r = 0;
   1416          1.1  haad 	}
   1417          1.1  haad 
   1418          1.1  haad 	dm_list_iterate_items(lvl, &vg->lvs) {
   1419          1.1  haad 		dm_list_iterate_items(lvl2, &vg->lvs) {
   1420          1.1  haad 			if (lvl == lvl2)
   1421          1.1  haad 				break;
   1422          1.1  haad 			if (!strcmp(lvl->lv->name, lvl2->lv->name)) {
   1423          1.1  haad 				log_error("Internal error: Duplicate LV name "
   1424          1.1  haad 					  "%s detected in %s.", lvl->lv->name,
   1425          1.1  haad 					  vg->name);
   1426          1.1  haad 				r = 0;
   1427          1.1  haad 			}
   1428          1.1  haad 			if (id_equal(&lvl->lv->lvid.id[1],
   1429          1.1  haad 				     &lvl2->lv->lvid.id[1])) {
   1430          1.1  haad 				if (!id_write_format(&lvl->lv->lvid.id[1], uuid,
   1431          1.1  haad 						     sizeof(uuid)))
   1432          1.1  haad 					 stack;
   1433          1.1  haad 				log_error("Internal error: Duplicate LV id "
   1434          1.1  haad 					  "%s detected for %s and %s in %s.",
   1435          1.1  haad 					  uuid, lvl->lv->name, lvl2->lv->name,
   1436          1.1  haad 					  vg->name);
   1437          1.1  haad 				r = 0;
   1438          1.1  haad 			}
   1439          1.1  haad 		}
   1440          1.1  haad 	}
   1441          1.1  haad 
   1442          1.1  haad 	dm_list_iterate_items(lvl, &vg->lvs) {
   1443          1.1  haad 		if (!check_lv_segments(lvl->lv, 1)) {
   1444          1.1  haad 			log_error("Internal error: LV segments corrupted in %s.",
   1445          1.1  haad 				  lvl->lv->name);
   1446          1.1  haad 			r = 0;
   1447          1.1  haad 		}
   1448          1.1  haad 	}
   1449          1.1  haad 
   1450          1.1  haad 	if (!(vg->fid->fmt->features & FMT_UNLIMITED_VOLS) &&
   1451          1.1  haad 	    (!vg->max_lv || !vg->max_pv)) {
   1452          1.1  haad 		log_error("Internal error: Volume group %s has limited PV/LV count"
   1453          1.1  haad 			  " but limit is not set.", vg->name);
   1454          1.1  haad 		r = 0;
   1455          1.1  haad 	}
   1456          1.1  haad 
   1457          1.1  haad 	return r;
   1458          1.1  haad }
   1459          1.1  haad 
   1460          1.1  haad /*
   1461          1.1  haad  * After vg_write() returns success,
   1462          1.1  haad  * caller MUST call either vg_commit() or vg_revert()
   1463          1.1  haad  */
   1464          1.1  haad int vg_write(struct volume_group *vg)
   1465          1.1  haad {
   1466          1.1  haad 	struct dm_list *mdah;
   1467          1.1  haad 	struct metadata_area *mda;
   1468          1.1  haad 
   1469          1.1  haad 	if (!vg_validate(vg))
   1470          1.1  haad 		return_0;
   1471          1.1  haad 
   1472          1.1  haad 	if (vg->status & PARTIAL_VG) {
   1473          1.1  haad 		log_error("Cannot update partial volume group %s.", vg->name);
   1474          1.1  haad 		return 0;
   1475          1.1  haad 	}
   1476          1.1  haad 
   1477          1.1  haad 	if (vg_missing_pv_count(vg) && !vg->cmd->handles_missing_pvs) {
   1478          1.1  haad 		log_error("Cannot update volume group %s while physical "
   1479          1.1  haad 			  "volumes are missing.", vg->name);
   1480          1.1  haad 		return 0;
   1481          1.1  haad 	}
   1482          1.1  haad 
   1483          1.1  haad 	if (dm_list_empty(&vg->fid->metadata_areas)) {
   1484          1.1  haad 		log_error("Aborting vg_write: No metadata areas to write to!");
   1485          1.1  haad 		return 0;
   1486          1.1  haad 	}
   1487          1.1  haad 
   1488          1.1  haad 	if (!drop_cached_metadata(vg)) {
   1489          1.1  haad 		log_error("Unable to drop cached metadata for VG %s.", vg->name);
   1490          1.1  haad 		return 0;
   1491          1.1  haad 	}
   1492          1.1  haad 
   1493          1.1  haad 	vg->seqno++;
   1494          1.1  haad 
   1495          1.1  haad 	/* Write to each copy of the metadata area */
   1496          1.1  haad 	dm_list_iterate_items(mda, &vg->fid->metadata_areas) {
   1497          1.1  haad 		if (!mda->ops->vg_write) {
   1498          1.1  haad 			log_error("Format does not support writing volume"
   1499          1.1  haad 				  "group metadata areas");
   1500          1.1  haad 			/* Revert */
   1501          1.1  haad 			dm_list_uniterate(mdah, &vg->fid->metadata_areas, &mda->list) {
   1502          1.1  haad 				mda = dm_list_item(mdah, struct metadata_area);
   1503          1.1  haad 
   1504          1.1  haad 				if (mda->ops->vg_revert &&
   1505          1.1  haad 				    !mda->ops->vg_revert(vg->fid, vg, mda)) {
   1506          1.1  haad 					stack;
   1507          1.1  haad 				}
   1508          1.1  haad 			}
   1509          1.1  haad 			return 0;
   1510          1.1  haad 		}
   1511          1.1  haad 		if (!mda->ops->vg_write(vg->fid, vg, mda)) {
   1512          1.1  haad 			stack;
   1513          1.1  haad 			/* Revert */
   1514          1.1  haad 			dm_list_uniterate(mdah, &vg->fid->metadata_areas, &mda->list) {
   1515          1.1  haad 				mda = dm_list_item(mdah, struct metadata_area);
   1516          1.1  haad 
   1517          1.1  haad 				if (mda->ops->vg_revert &&
   1518          1.1  haad 				    !mda->ops->vg_revert(vg->fid, vg, mda)) {
   1519          1.1  haad 					stack;
   1520          1.1  haad 				}
   1521          1.1  haad 			}
   1522          1.1  haad 			return 0;
   1523          1.1  haad 		}
   1524          1.1  haad 	}
   1525          1.1  haad 
   1526          1.1  haad 	/* Now pre-commit each copy of the new metadata */
   1527          1.1  haad 	dm_list_iterate_items(mda, &vg->fid->metadata_areas) {
   1528          1.1  haad 		if (mda->ops->vg_precommit &&
   1529          1.1  haad 		    !mda->ops->vg_precommit(vg->fid, vg, mda)) {
   1530          1.1  haad 			stack;
   1531          1.1  haad 			/* Revert */
   1532          1.1  haad 			dm_list_iterate_items(mda, &vg->fid->metadata_areas) {
   1533          1.1  haad 				if (mda->ops->vg_revert &&
   1534          1.1  haad 				    !mda->ops->vg_revert(vg->fid, vg, mda)) {
   1535          1.1  haad 					stack;
   1536          1.1  haad 				}
   1537          1.1  haad 			}
   1538          1.1  haad 			return 0;
   1539          1.1  haad 		}
   1540          1.1  haad 	}
   1541          1.1  haad 
   1542          1.1  haad 	return 1;
   1543          1.1  haad }
   1544          1.1  haad 
   1545          1.1  haad /* Commit pending changes */
   1546          1.1  haad int vg_commit(struct volume_group *vg)
   1547          1.1  haad {
   1548          1.1  haad 	struct metadata_area *mda;
   1549          1.1  haad 	int cache_updated = 0;
   1550          1.1  haad 	int failed = 0;
   1551          1.1  haad 
   1552          1.1  haad 	if (!vgname_is_locked(vg->name)) {
   1553          1.1  haad 		log_error("Internal error: Attempt to write new VG metadata "
   1554          1.1  haad 			  "without locking %s", vg->name);
   1555          1.1  haad 		return cache_updated;
   1556          1.1  haad 	}
   1557          1.1  haad 
   1558          1.1  haad 	/* Commit to each copy of the metadata area */
   1559          1.1  haad 	dm_list_iterate_items(mda, &vg->fid->metadata_areas) {
   1560          1.1  haad 		failed = 0;
   1561          1.1  haad 		if (mda->ops->vg_commit &&
   1562          1.1  haad 		    !mda->ops->vg_commit(vg->fid, vg, mda)) {
   1563          1.1  haad 			stack;
   1564          1.1  haad 			failed = 1;
   1565          1.1  haad 		}
   1566          1.1  haad 		/* Update cache first time we succeed */
   1567          1.1  haad 		if (!failed && !cache_updated) {
   1568          1.1  haad 			lvmcache_update_vg(vg, 0);
   1569          1.1  haad 			cache_updated = 1;
   1570          1.1  haad 		}
   1571          1.1  haad 	}
   1572          1.1  haad 
   1573          1.1  haad 	/* If update failed, remove any cached precommitted metadata. */
   1574          1.1  haad 	if (!cache_updated && !drop_cached_metadata(vg))
   1575          1.1  haad 		log_error("Attempt to drop cached metadata failed "
   1576          1.1  haad 			  "after commit for VG %s.", vg->name);
   1577          1.1  haad 
   1578          1.1  haad 	/* If at least one mda commit succeeded, it was committed */
   1579          1.1  haad 	return cache_updated;
   1580          1.1  haad }
   1581          1.1  haad 
   1582          1.1  haad /* Don't commit any pending changes */
   1583          1.1  haad int vg_revert(struct volume_group *vg)
   1584          1.1  haad {
   1585          1.1  haad 	struct metadata_area *mda;
   1586          1.1  haad 
   1587          1.1  haad 	dm_list_iterate_items(mda, &vg->fid->metadata_areas) {
   1588          1.1  haad 		if (mda->ops->vg_revert &&
   1589          1.1  haad 		    !mda->ops->vg_revert(vg->fid, vg, mda)) {
   1590          1.1  haad 			stack;
   1591          1.1  haad 		}
   1592          1.1  haad 	}
   1593          1.1  haad 
   1594          1.1  haad 	if (!drop_cached_metadata(vg))
   1595          1.1  haad 		log_error("Attempt to drop cached metadata failed "
   1596          1.1  haad 			  "after reverted update for VG %s.", vg->name);
   1597          1.1  haad 
   1598          1.1  haad 	return 1;
   1599          1.1  haad }
   1600          1.1  haad 
   1601          1.1  haad /* Make orphan PVs look like a VG */
   1602          1.1  haad static struct volume_group *_vg_read_orphans(struct cmd_context *cmd,
   1603          1.1  haad 					     const char *orphan_vgname)
   1604          1.1  haad {
   1605          1.1  haad 	struct lvmcache_vginfo *vginfo;
   1606          1.1  haad 	struct lvmcache_info *info;
   1607          1.1  haad 	struct pv_list *pvl;
   1608          1.1  haad 	struct volume_group *vg;
   1609          1.1  haad 	struct physical_volume *pv;
   1610          1.1  haad 
   1611          1.1  haad 	lvmcache_label_scan(cmd, 0);
   1612          1.1  haad 
   1613          1.1  haad 	if (!(vginfo = vginfo_from_vgname(orphan_vgname, NULL)))
   1614          1.1  haad 		return_NULL;
   1615          1.1  haad 
   1616          1.1  haad 	if (!(vg = dm_pool_zalloc(cmd->mem, sizeof(*vg)))) {
   1617          1.1  haad 		log_error("vg allocation failed");
   1618          1.1  haad 		return NULL;
   1619          1.1  haad 	}
   1620          1.1  haad 	dm_list_init(&vg->pvs);
   1621          1.1  haad 	dm_list_init(&vg->lvs);
   1622          1.1  haad 	dm_list_init(&vg->tags);
   1623          1.1  haad 	vg->cmd = cmd;
   1624          1.1  haad 	if (!(vg->name = dm_pool_strdup(cmd->mem, orphan_vgname))) {
   1625          1.1  haad 		log_error("vg name allocation failed");
   1626          1.1  haad 		return NULL;
   1627          1.1  haad 	}
   1628          1.1  haad 
   1629          1.1  haad 	/* create format instance with appropriate metadata area */
   1630          1.1  haad 	if (!(vg->fid = vginfo->fmt->ops->create_instance(vginfo->fmt,
   1631          1.1  haad 							  orphan_vgname, NULL,
   1632          1.1  haad 							  NULL))) {
   1633          1.1  haad 		log_error("Failed to create format instance");
   1634          1.1  haad 		dm_pool_free(cmd->mem, vg);
   1635          1.1  haad 		return NULL;
   1636          1.1  haad 	}
   1637          1.1  haad 
   1638          1.1  haad 	dm_list_iterate_items(info, &vginfo->infos) {
   1639          1.1  haad 		if (!(pv = _pv_read(cmd, dev_name(info->dev), NULL, NULL, 1))) {
   1640          1.1  haad 			continue;
   1641          1.1  haad 		}
   1642          1.1  haad 		if (!(pvl = dm_pool_zalloc(cmd->mem, sizeof(*pvl)))) {
   1643          1.1  haad 			log_error("pv_list allocation failed");
   1644          1.1  haad 			return NULL;
   1645          1.1  haad 		}
   1646          1.1  haad 		pvl->pv = pv;
   1647          1.1  haad 		dm_list_add(&vg->pvs, &pvl->list);
   1648          1.1  haad 		vg->pv_count++;
   1649          1.1  haad 	}
   1650          1.1  haad 
   1651          1.1  haad 	return vg;
   1652          1.1  haad }
   1653          1.1  haad 
   1654          1.1  haad static int _update_pv_list(struct dm_list *all_pvs, struct volume_group *vg)
   1655          1.1  haad {
   1656          1.1  haad 	struct pv_list *pvl, *pvl2;
   1657          1.1  haad 
   1658          1.1  haad 	dm_list_iterate_items(pvl, &vg->pvs) {
   1659          1.1  haad 		dm_list_iterate_items(pvl2, all_pvs) {
   1660          1.1  haad 			if (pvl->pv->dev == pvl2->pv->dev)
   1661          1.1  haad 				goto next_pv;
   1662          1.1  haad 		}
   1663          1.1  haad 		/* PV is not on list so add it.  Note that we don't copy it. */
   1664          1.1  haad        		if (!(pvl2 = dm_pool_zalloc(vg->cmd->mem, sizeof(*pvl2)))) {
   1665          1.1  haad 			log_error("pv_list allocation for '%s' failed",
   1666          1.1  haad 				  pv_dev_name(pvl->pv));
   1667          1.1  haad 			return 0;
   1668          1.1  haad 		}
   1669          1.1  haad 		pvl2->pv = pvl->pv;
   1670          1.1  haad 		dm_list_add(all_pvs, &pvl2->list);
   1671          1.1  haad   next_pv:
   1672          1.1  haad 		;
   1673          1.1  haad 	}
   1674          1.1  haad 
   1675          1.1  haad 	return 1;
   1676          1.1  haad }
   1677          1.1  haad 
   1678          1.1  haad int vg_missing_pv_count(const vg_t *vg)
   1679          1.1  haad {
   1680          1.1  haad 	int ret = 0;
   1681          1.1  haad 	struct pv_list *pvl;
   1682          1.1  haad 	dm_list_iterate_items(pvl, &vg->pvs) {
   1683          1.1  haad 		if (pvl->pv->status & MISSING_PV)
   1684          1.1  haad 			++ ret;
   1685          1.1  haad 	}
   1686          1.1  haad 	return ret;
   1687          1.1  haad }
   1688          1.1  haad 
   1689          1.1  haad /* Caller sets consistent to 1 if it's safe for vg_read to correct
   1690          1.1  haad  * inconsistent metadata on disk (i.e. the VG write lock is held).
   1691          1.1  haad  * This guarantees only consistent metadata is returned.
   1692          1.1  haad  * If consistent is 0, caller must check whether consistent == 1 on return
   1693          1.1  haad  * and take appropriate action if it isn't (e.g. abort; get write lock
   1694          1.1  haad  * and call vg_read again).
   1695          1.1  haad  *
   1696          1.1  haad  * If precommitted is set, use precommitted metadata if present.
   1697          1.1  haad  *
   1698          1.1  haad  * Either of vgname or vgid may be NULL.
   1699          1.1  haad  */
   1700          1.1  haad static struct volume_group *_vg_read(struct cmd_context *cmd,
   1701          1.1  haad 				     const char *vgname,
   1702          1.1  haad 				     const char *vgid,
   1703          1.1  haad 				     int *consistent, unsigned precommitted)
   1704          1.1  haad {
   1705          1.1  haad 	struct format_instance *fid;
   1706          1.1  haad 	const struct format_type *fmt;
   1707          1.1  haad 	struct volume_group *vg, *correct_vg = NULL;
   1708          1.1  haad 	struct metadata_area *mda;
   1709          1.1  haad 	struct lvmcache_info *info;
   1710          1.1  haad 	int inconsistent = 0;
   1711          1.1  haad 	int inconsistent_vgid = 0;
   1712          1.1  haad 	int inconsistent_pvs = 0;
   1713          1.1  haad 	unsigned use_precommitted = precommitted;
   1714          1.1  haad 	struct dm_list *pvids;
   1715          1.1  haad 	struct pv_list *pvl, *pvl2;
   1716          1.1  haad 	struct dm_list all_pvs;
   1717          1.1  haad 	char uuid[64] __attribute((aligned(8)));
   1718          1.1  haad 
   1719          1.1  haad 	if (is_orphan_vg(vgname)) {
   1720          1.1  haad 		if (use_precommitted) {
   1721          1.1  haad 			log_error("Internal error: vg_read requires vgname "
   1722          1.1  haad 				  "with pre-commit.");
   1723          1.1  haad 			return NULL;
   1724          1.1  haad 		}
   1725          1.1  haad 		*consistent = 1;
   1726          1.1  haad 		return _vg_read_orphans(cmd, vgname);
   1727          1.1  haad 	}
   1728          1.1  haad 
   1729          1.1  haad 	if ((correct_vg = lvmcache_get_vg(vgid, precommitted))) {
   1730          1.1  haad 		if (vg_missing_pv_count(correct_vg)) {
   1731          1.1  haad 			log_verbose("There are %d physical volumes missing.",
   1732          1.1  haad 				    vg_missing_pv_count(correct_vg));
   1733          1.1  haad 			_vg_mark_partial_lvs(correct_vg);
   1734          1.1  haad 		}
   1735          1.1  haad 		*consistent = 1;
   1736          1.1  haad 		return correct_vg;
   1737          1.1  haad 	}
   1738          1.1  haad 
   1739          1.1  haad 	/* Find the vgname in the cache */
   1740          1.1  haad 	/* If it's not there we must do full scan to be completely sure */
   1741          1.1  haad 	if (!(fmt = fmt_from_vgname(vgname, vgid))) {
   1742          1.1  haad 		lvmcache_label_scan(cmd, 0);
   1743          1.1  haad 		if (!(fmt = fmt_from_vgname(vgname, vgid))) {
   1744          1.1  haad 			if (memlock())
   1745          1.1  haad 				return_NULL;
   1746          1.1  haad 			lvmcache_label_scan(cmd, 2);
   1747          1.1  haad 			if (!(fmt = fmt_from_vgname(vgname, vgid)))
   1748          1.1  haad 				return_NULL;
   1749          1.1  haad 		}
   1750          1.1  haad 	}
   1751          1.1  haad 
   1752          1.1  haad 	/* Now determine the correct vgname if none was supplied */
   1753          1.1  haad 	if (!vgname && !(vgname = vgname_from_vgid(cmd->mem, vgid)))
   1754          1.1  haad 		return_NULL;
   1755          1.1  haad 
   1756          1.1  haad 	if (use_precommitted && !(fmt->features & FMT_PRECOMMIT))
   1757          1.1  haad 		use_precommitted = 0;
   1758          1.1  haad 
   1759          1.1  haad 	/* create format instance with appropriate metadata area */
   1760          1.1  haad 	if (!(fid = fmt->ops->create_instance(fmt, vgname, vgid, NULL))) {
   1761          1.1  haad 		log_error("Failed to create format instance");
   1762          1.1  haad 		return NULL;
   1763          1.1  haad 	}
   1764          1.1  haad 
   1765          1.1  haad 	/* Store pvids for later so we can check if any are missing */
   1766          1.1  haad 	if (!(pvids = lvmcache_get_pvids(cmd, vgname, vgid)))
   1767          1.1  haad 		return_NULL;
   1768          1.1  haad 
   1769          1.1  haad 	/* Ensure contents of all metadata areas match - else do recovery */
   1770          1.1  haad 	dm_list_iterate_items(mda, &fid->metadata_areas) {
   1771          1.1  haad 		if ((use_precommitted &&
   1772          1.1  haad 		     !(vg = mda->ops->vg_read_precommit(fid, vgname, mda))) ||
   1773          1.1  haad 		    (!use_precommitted &&
   1774          1.1  haad 		     !(vg = mda->ops->vg_read(fid, vgname, mda)))) {
   1775          1.1  haad 			inconsistent = 1;
   1776          1.1  haad 			continue;
   1777          1.1  haad 		}
   1778          1.1  haad 		if (!correct_vg) {
   1779          1.1  haad 			correct_vg = vg;
   1780          1.1  haad 			continue;
   1781          1.1  haad 		}
   1782          1.1  haad 		/* FIXME Also ensure contents same - checksum compare? */
   1783          1.1  haad 		if (correct_vg->seqno != vg->seqno) {
   1784          1.1  haad 			inconsistent = 1;
   1785          1.1  haad 			if (vg->seqno > correct_vg->seqno)
   1786          1.1  haad 				correct_vg = vg;
   1787          1.1  haad 		}
   1788          1.1  haad 	}
   1789          1.1  haad 
   1790          1.1  haad 	/* Ensure every PV in the VG was in the cache */
   1791          1.1  haad 	if (correct_vg) {
   1792          1.1  haad 		/*
   1793          1.1  haad 		 * If the VG has PVs without mdas, they may still be
   1794          1.1  haad 		 * orphans in the cache: update the cache state here.
   1795          1.1  haad 		 */
   1796          1.1  haad 		if (!inconsistent &&
   1797          1.1  haad 		    dm_list_size(&correct_vg->pvs) > dm_list_size(pvids)) {
   1798          1.1  haad 			dm_list_iterate_items(pvl, &correct_vg->pvs) {
   1799          1.1  haad 				if (!pvl->pv->dev) {
   1800          1.1  haad 					inconsistent_pvs = 1;
   1801          1.1  haad 					break;
   1802          1.1  haad 				}
   1803          1.1  haad 
   1804          1.1  haad 				if (str_list_match_item(pvids, pvl->pv->dev->pvid))
   1805          1.1  haad 					continue;
   1806          1.1  haad 
   1807          1.1  haad 				/*
   1808          1.1  haad 				 * PV not marked as belonging to this VG in cache.
   1809          1.1  haad 				 * Check it's an orphan without metadata area.
   1810          1.1  haad 				 */
   1811          1.1  haad 				if (!(info = info_from_pvid(pvl->pv->dev->pvid, 1)) ||
   1812          1.1  haad 				   !info->vginfo || !is_orphan_vg(info->vginfo->vgname) ||
   1813          1.1  haad 				   dm_list_size(&info->mdas)) {
   1814          1.1  haad 					inconsistent_pvs = 1;
   1815          1.1  haad 					break;
   1816          1.1  haad 				}
   1817          1.1  haad 			}
   1818          1.1  haad 
   1819          1.1  haad 			/* If the check passed, let's update VG and recalculate pvids */
   1820          1.1  haad 			if (!inconsistent_pvs) {
   1821          1.1  haad 				log_debug("Updating cache for PVs without mdas "
   1822          1.1  haad 					  "in VG %s.", vgname);
   1823          1.1  haad 				lvmcache_update_vg(correct_vg, use_precommitted);
   1824          1.1  haad 
   1825          1.1  haad 				if (!(pvids = lvmcache_get_pvids(cmd, vgname, vgid)))
   1826          1.1  haad 					return_NULL;
   1827          1.1  haad 			}
   1828          1.1  haad 		}
   1829          1.1  haad 
   1830          1.1  haad 		if (dm_list_size(&correct_vg->pvs) != dm_list_size(pvids)
   1831          1.1  haad 		    + vg_missing_pv_count(correct_vg)) {
   1832          1.1  haad 			log_debug("Cached VG %s had incorrect PV list",
   1833          1.1  haad 				  vgname);
   1834          1.1  haad 
   1835          1.1  haad 			if (memlock())
   1836          1.1  haad 				inconsistent = 1;
   1837          1.1  haad 			else
   1838          1.1  haad 				correct_vg = NULL;
   1839          1.1  haad 		} else dm_list_iterate_items(pvl, &correct_vg->pvs) {
   1840          1.1  haad 			if (pvl->pv->status & MISSING_PV)
   1841          1.1  haad 				continue;
   1842          1.1  haad 			if (!str_list_match_item(pvids, pvl->pv->dev->pvid)) {
   1843          1.1  haad 				log_debug("Cached VG %s had incorrect PV list",
   1844          1.1  haad 					  vgname);
   1845          1.1  haad 				correct_vg = NULL;
   1846          1.1  haad 				break;
   1847          1.1  haad 			}
   1848          1.1  haad 		}
   1849          1.1  haad 	}
   1850          1.1  haad 
   1851          1.1  haad 	dm_list_init(&all_pvs);
   1852          1.1  haad 
   1853          1.1  haad 	/* Failed to find VG where we expected it - full scan and retry */
   1854          1.1  haad 	if (!correct_vg) {
   1855          1.1  haad 		inconsistent = 0;
   1856          1.1  haad 
   1857          1.1  haad 		if (memlock())
   1858          1.1  haad 			return_NULL;
   1859          1.1  haad 		lvmcache_label_scan(cmd, 2);
   1860          1.1  haad 		if (!(fmt = fmt_from_vgname(vgname, vgid)))
   1861          1.1  haad 			return_NULL;
   1862          1.1  haad 
   1863          1.1  haad 		if (precommitted && !(fmt->features & FMT_PRECOMMIT))
   1864          1.1  haad 			use_precommitted = 0;
   1865          1.1  haad 
   1866          1.1  haad 		/* create format instance with appropriate metadata area */
   1867          1.1  haad 		if (!(fid = fmt->ops->create_instance(fmt, vgname, vgid, NULL))) {
   1868          1.1  haad 			log_error("Failed to create format instance");
   1869          1.1  haad 			return NULL;
   1870          1.1  haad 		}
   1871          1.1  haad 
   1872          1.1  haad 		/* Ensure contents of all metadata areas match - else recover */
   1873          1.1  haad 		dm_list_iterate_items(mda, &fid->metadata_areas) {
   1874          1.1  haad 			if ((use_precommitted &&
   1875          1.1  haad 			     !(vg = mda->ops->vg_read_precommit(fid, vgname,
   1876          1.1  haad 								mda))) ||
   1877          1.1  haad 			    (!use_precommitted &&
   1878          1.1  haad 			     !(vg = mda->ops->vg_read(fid, vgname, mda)))) {
   1879          1.1  haad 				inconsistent = 1;
   1880          1.1  haad 				continue;
   1881          1.1  haad 			}
   1882          1.1  haad 			if (!correct_vg) {
   1883          1.1  haad 				correct_vg = vg;
   1884          1.1  haad 				if (!_update_pv_list(&all_pvs, correct_vg))
   1885          1.1  haad 					return_NULL;
   1886          1.1  haad 				continue;
   1887          1.1  haad 			}
   1888          1.1  haad 
   1889          1.1  haad 			if (strncmp((char *)vg->id.uuid,
   1890          1.1  haad 			    (char *)correct_vg->id.uuid, ID_LEN)) {
   1891          1.1  haad 				inconsistent = 1;
   1892          1.1  haad 				inconsistent_vgid = 1;
   1893          1.1  haad 			}
   1894          1.1  haad 
   1895          1.1  haad 			/* FIXME Also ensure contents same - checksums same? */
   1896          1.1  haad 			if (correct_vg->seqno != vg->seqno) {
   1897          1.1  haad 				inconsistent = 1;
   1898          1.1  haad 				if (!_update_pv_list(&all_pvs, vg))
   1899          1.1  haad 					return_NULL;
   1900          1.1  haad 				if (vg->seqno > correct_vg->seqno)
   1901          1.1  haad 					correct_vg = vg;
   1902          1.1  haad 			}
   1903          1.1  haad 		}
   1904          1.1  haad 
   1905          1.1  haad 		/* Give up looking */
   1906          1.1  haad 		if (!correct_vg)
   1907          1.1  haad 			return_NULL;
   1908          1.1  haad 	}
   1909          1.1  haad 
   1910          1.1  haad 	lvmcache_update_vg(correct_vg, use_precommitted);
   1911          1.1  haad 
   1912          1.1  haad 	if (inconsistent) {
   1913          1.1  haad 		/* FIXME Test should be if we're *using* precommitted metadata not if we were searching for it */
   1914          1.1  haad 		if (use_precommitted) {
   1915          1.1  haad 			log_error("Inconsistent pre-commit metadata copies "
   1916          1.1  haad 				  "for volume group %s", vgname);
   1917          1.1  haad 			return NULL;
   1918          1.1  haad 		}
   1919          1.1  haad 
   1920          1.1  haad 		if (!*consistent)
   1921          1.1  haad 			return correct_vg;
   1922          1.1  haad 
   1923          1.1  haad 		/* Don't touch if vgids didn't match */
   1924          1.1  haad 		if (inconsistent_vgid) {
   1925          1.1  haad 			log_error("Inconsistent metadata UUIDs found for "
   1926          1.1  haad 				  "volume group %s", vgname);
   1927          1.1  haad 			*consistent = 0;
   1928          1.1  haad 			return correct_vg;
   1929          1.1  haad 		}
   1930          1.1  haad 
   1931          1.1  haad 		log_warn("WARNING: Inconsistent metadata found for VG %s - updating "
   1932          1.1  haad 			 "to use version %u", vgname, correct_vg->seqno);
   1933          1.1  haad 
   1934          1.1  haad 		if (!vg_write(correct_vg)) {
   1935          1.1  haad 			log_error("Automatic metadata correction failed");
   1936          1.1  haad 			return NULL;
   1937          1.1  haad 		}
   1938          1.1  haad 
   1939          1.1  haad 		if (!vg_commit(correct_vg)) {
   1940          1.1  haad 			log_error("Automatic metadata correction commit "
   1941          1.1  haad 				  "failed");
   1942          1.1  haad 			return NULL;
   1943          1.1  haad 		}
   1944          1.1  haad 
   1945          1.1  haad 		dm_list_iterate_items(pvl, &all_pvs) {
   1946          1.1  haad 			dm_list_iterate_items(pvl2, &correct_vg->pvs) {
   1947          1.1  haad 				if (pvl->pv->dev == pvl2->pv->dev)
   1948          1.1  haad 					goto next_pv;
   1949          1.1  haad 			}
   1950          1.1  haad 			if (!id_write_format(&pvl->pv->id, uuid, sizeof(uuid)))
   1951          1.1  haad 				return_NULL;
   1952          1.1  haad 			log_error("Removing PV %s (%s) that no longer belongs to VG %s",
   1953          1.1  haad 				  pv_dev_name(pvl->pv), uuid, correct_vg->name);
   1954          1.1  haad 			if (!pv_write_orphan(cmd, pvl->pv))
   1955          1.1  haad 				return_NULL;
   1956          1.1  haad       next_pv:
   1957          1.1  haad 			;
   1958          1.1  haad 		}
   1959          1.1  haad 	}
   1960          1.1  haad 
   1961          1.1  haad 	if (vg_missing_pv_count(correct_vg)) {
   1962          1.1  haad 		log_verbose("There are %d physical volumes missing.",
   1963          1.1  haad 			    vg_missing_pv_count(correct_vg));
   1964          1.1  haad 		_vg_mark_partial_lvs(correct_vg);
   1965          1.1  haad 	}
   1966          1.1  haad 
   1967          1.1  haad 	if ((correct_vg->status & PVMOVE) && !pvmove_mode()) {
   1968          1.1  haad 		log_error("WARNING: Interrupted pvmove detected in "
   1969          1.1  haad 			  "volume group %s", correct_vg->name);
   1970          1.1  haad 		log_error("Please restore the metadata by running "
   1971          1.1  haad 			  "vgcfgrestore.");
   1972          1.1  haad 		return NULL;
   1973          1.1  haad 	}
   1974          1.1  haad 
   1975          1.1  haad 	*consistent = 1;
   1976          1.1  haad 	return correct_vg;
   1977          1.1  haad }
   1978          1.1  haad 
   1979          1.1  haad struct volume_group *vg_read(struct cmd_context *cmd, const char *vgname,
   1980          1.1  haad 			     const char *vgid, int *consistent)
   1981          1.1  haad {
   1982          1.1  haad 	struct volume_group *vg;
   1983          1.1  haad 	struct lv_list *lvl;
   1984          1.1  haad 
   1985          1.1  haad 	if (!(vg = _vg_read(cmd, vgname, vgid, consistent, 0)))
   1986          1.1  haad 		return NULL;
   1987          1.1  haad 
   1988          1.1  haad 	if (!check_pv_segments(vg)) {
   1989          1.1  haad 		log_error("Internal error: PV segments corrupted in %s.",
   1990          1.1  haad 			  vg->name);
   1991          1.1  haad 		return NULL;
   1992          1.1  haad 	}
   1993          1.1  haad 
   1994          1.1  haad 	dm_list_iterate_items(lvl, &vg->lvs) {
   1995          1.1  haad 		if (!check_lv_segments(lvl->lv, 1)) {
   1996          1.1  haad 			log_error("Internal error: LV segments corrupted in %s.",
   1997          1.1  haad 				  lvl->lv->name);
   1998          1.1  haad 			return NULL;
   1999          1.1  haad 		}
   2000          1.1  haad 	}
   2001          1.1  haad 
   2002          1.1  haad 	return vg;
   2003          1.1  haad }
   2004          1.1  haad 
   2005          1.1  haad /* This is only called by lv_from_lvid, which is only called from
   2006          1.1  haad  * activate.c so we know the appropriate VG lock is already held and
   2007          1.1  haad  * the vg_read is therefore safe.
   2008          1.1  haad  */
   2009          1.1  haad static struct volume_group *_vg_read_by_vgid(struct cmd_context *cmd,
   2010          1.1  haad 					    const char *vgid,
   2011          1.1  haad 					    unsigned precommitted)
   2012          1.1  haad {
   2013          1.1  haad 	const char *vgname;
   2014          1.1  haad 	struct dm_list *vgnames;
   2015          1.1  haad 	struct volume_group *vg;
   2016          1.1  haad 	struct lvmcache_vginfo *vginfo;
   2017          1.1  haad 	struct str_list *strl;
   2018          1.1  haad 	int consistent = 0;
   2019          1.1  haad 
   2020          1.1  haad 	/* Is corresponding vgname already cached? */
   2021          1.1  haad 	if ((vginfo = vginfo_from_vgid(vgid)) &&
   2022          1.1  haad 	    vginfo->vgname && !is_orphan_vg(vginfo->vgname)) {
   2023          1.1  haad 		if ((vg = _vg_read(cmd, NULL, vgid,
   2024          1.1  haad 				   &consistent, precommitted)) &&
   2025          1.1  haad 		    !strncmp((char *)vg->id.uuid, vgid, ID_LEN)) {
   2026          1.1  haad 
   2027          1.1  haad 			if (!consistent) {
   2028          1.1  haad 				log_error("Volume group %s metadata is "
   2029          1.1  haad 					  "inconsistent", vg->name);
   2030          1.1  haad 			}
   2031          1.1  haad 			return vg;
   2032          1.1  haad 		}
   2033          1.1  haad 	}
   2034          1.1  haad 
   2035          1.1  haad 	/* Mustn't scan if memory locked: ensure cache gets pre-populated! */
   2036          1.1  haad 	if (memlock())
   2037          1.1  haad 		return NULL;
   2038          1.1  haad 
   2039          1.1  haad 	/* FIXME Need a genuine read by ID here - don't vg_read by name! */
   2040          1.1  haad 	/* FIXME Disabled vgrenames while active for now because we aren't
   2041          1.1  haad 	 *       allowed to do a full scan here any more. */
   2042          1.1  haad 
   2043          1.1  haad 	// The slow way - full scan required to cope with vgrename
   2044          1.1  haad 	if (!(vgnames = get_vgs(cmd, 2))) {
   2045          1.1  haad 		log_error("vg_read_by_vgid: get_vgs failed");
   2046          1.1  haad 		return NULL;
   2047          1.1  haad 	}
   2048          1.1  haad 
   2049          1.1  haad 	dm_list_iterate_items(strl, vgnames) {
   2050          1.1  haad 		vgname = strl->str;
   2051          1.1  haad 		if (!vgname || is_orphan_vg(vgname))
   2052          1.1  haad 			continue;	// FIXME Unnecessary?
   2053          1.1  haad 		consistent = 0;
   2054          1.1  haad 		if ((vg = _vg_read(cmd, vgname, vgid, &consistent,
   2055          1.1  haad 				   precommitted)) &&
   2056          1.1  haad 		    !strncmp((char *)vg->id.uuid, vgid, ID_LEN)) {
   2057          1.1  haad 
   2058          1.1  haad 			if (!consistent) {
   2059          1.1  haad 				log_error("Volume group %s metadata is "
   2060          1.1  haad 					  "inconsistent", vgname);
   2061          1.1  haad 				return NULL;
   2062          1.1  haad 			}
   2063          1.1  haad 			return vg;
   2064          1.1  haad 		}
   2065          1.1  haad 	}
   2066          1.1  haad 
   2067          1.1  haad 	return NULL;
   2068          1.1  haad }
   2069          1.1  haad 
   2070          1.1  haad /* Only called by activate.c */
   2071          1.1  haad struct logical_volume *lv_from_lvid(struct cmd_context *cmd, const char *lvid_s,
   2072          1.1  haad 				    unsigned precommitted)
   2073          1.1  haad {
   2074          1.1  haad 	struct lv_list *lvl;
   2075          1.1  haad 	struct volume_group *vg;
   2076          1.1  haad 	const union lvid *lvid;
   2077          1.1  haad 
   2078          1.1  haad 	lvid = (const union lvid *) lvid_s;
   2079          1.1  haad 
   2080          1.1  haad 	log_very_verbose("Finding volume group for uuid %s", lvid_s);
   2081          1.1  haad 	if (!(vg = _vg_read_by_vgid(cmd, (char *)lvid->id[0].uuid, precommitted))) {
   2082          1.1  haad 		log_error("Volume group for uuid not found: %s", lvid_s);
   2083          1.1  haad 		return NULL;
   2084          1.1  haad 	}
   2085          1.1  haad 
   2086          1.1  haad 	log_verbose("Found volume group \"%s\"", vg->name);
   2087          1.1  haad 	if (vg->status & EXPORTED_VG) {
   2088          1.1  haad 		log_error("Volume group \"%s\" is exported", vg->name);
   2089          1.1  haad 		return NULL;
   2090          1.1  haad 	}
   2091          1.1  haad 	if (!(lvl = find_lv_in_vg_by_lvid(vg, lvid))) {
   2092          1.1  haad 		log_very_verbose("Can't find logical volume id %s", lvid_s);
   2093          1.1  haad 		return NULL;
   2094          1.1  haad 	}
   2095          1.1  haad 
   2096          1.1  haad 	return lvl->lv;
   2097          1.1  haad }
   2098          1.1  haad 
   2099          1.1  haad /**
   2100          1.1  haad  * pv_read - read and return a handle to a physical volume
   2101          1.1  haad  * @cmd: LVM command initiating the pv_read
   2102          1.1  haad  * @pv_name: full device name of the PV, including the path
   2103          1.1  haad  * @mdas: list of metadata areas of the PV
   2104          1.1  haad  * @label_sector: sector number where the PV label is stored on @pv_name
   2105          1.1  haad  * @warnings:
   2106          1.1  haad  *
   2107          1.1  haad  * Returns:
   2108          1.1  haad  *   PV handle - valid pv_name and successful read of the PV, or
   2109          1.1  haad  *   NULL - invalid parameter or error in reading the PV
   2110          1.1  haad  *
   2111          1.1  haad  * Note:
   2112          1.1  haad  *   FIXME - liblvm todo - make into function that returns handle
   2113          1.1  haad  */
   2114          1.1  haad struct physical_volume *pv_read(struct cmd_context *cmd, const char *pv_name,
   2115          1.1  haad 				struct dm_list *mdas, uint64_t *label_sector,
   2116          1.1  haad 				int warnings)
   2117          1.1  haad {
   2118          1.1  haad 	return _pv_read(cmd, pv_name, mdas, label_sector, warnings);
   2119          1.1  haad }
   2120          1.1  haad 
   2121          1.1  haad /* FIXME Use label functions instead of PV functions */
   2122          1.1  haad static struct physical_volume *_pv_read(struct cmd_context *cmd,
   2123          1.1  haad 					const char *pv_name,
   2124          1.1  haad 					struct dm_list *mdas,
   2125          1.1  haad 					uint64_t *label_sector,
   2126          1.1  haad 					int warnings)
   2127          1.1  haad {
   2128          1.1  haad 	struct physical_volume *pv;
   2129          1.1  haad 	struct label *label;
   2130          1.1  haad 	struct lvmcache_info *info;
   2131          1.1  haad 	struct device *dev;
   2132          1.1  haad 
   2133          1.1  haad 	if (!(dev = dev_cache_get(pv_name, cmd->filter)))
   2134          1.1  haad 		return_NULL;
   2135          1.1  haad 
   2136          1.1  haad 	if (!(label_read(dev, &label, UINT64_C(0)))) {
   2137          1.1  haad 		if (warnings)
   2138          1.1  haad 			log_error("No physical volume label read from %s",
   2139          1.1  haad 				  pv_name);
   2140          1.1  haad 		return NULL;
   2141          1.1  haad 	}
   2142          1.1  haad 
   2143          1.1  haad 	info = (struct lvmcache_info *) label->info;
   2144          1.1  haad 	if (label_sector && *label_sector)
   2145          1.1  haad 		*label_sector = label->sector;
   2146          1.1  haad 
   2147          1.1  haad 	if (!(pv = dm_pool_zalloc(cmd->mem, sizeof(*pv)))) {
   2148          1.1  haad 		log_error("pv allocation for '%s' failed", pv_name);
   2149          1.1  haad 		return NULL;
   2150          1.1  haad 	}
   2151          1.1  haad 
   2152          1.1  haad 	dm_list_init(&pv->tags);
   2153          1.1  haad 	dm_list_init(&pv->segments);
   2154          1.1  haad 
   2155          1.1  haad 	/* FIXME Move more common code up here */
   2156          1.1  haad 	if (!(info->fmt->ops->pv_read(info->fmt, pv_name, pv, mdas))) {
   2157          1.1  haad 		log_error("Failed to read existing physical volume '%s'",
   2158          1.1  haad 			  pv_name);
   2159          1.1  haad 		return NULL;
   2160          1.1  haad 	}
   2161          1.1  haad 
   2162          1.1  haad 	if (!pv->size)
   2163          1.1  haad 		return NULL;
   2164          1.1  haad 
   2165          1.1  haad 	if (!alloc_pv_segment_whole_pv(cmd->mem, pv))
   2166          1.1  haad 		return_NULL;
   2167          1.1  haad 
   2168          1.1  haad 	return pv;
   2169          1.1  haad }
   2170          1.1  haad 
   2171          1.1  haad /* May return empty list */
   2172          1.1  haad struct dm_list *get_vgs(struct cmd_context *cmd, int full_scan)
   2173          1.1  haad {
   2174          1.1  haad 	return lvmcache_get_vgnames(cmd, full_scan);
   2175          1.1  haad }
   2176          1.1  haad 
   2177          1.1  haad struct dm_list *get_vgids(struct cmd_context *cmd, int full_scan)
   2178          1.1  haad {
   2179          1.1  haad 	return lvmcache_get_vgids(cmd, full_scan);
   2180          1.1  haad }
   2181          1.1  haad 
   2182          1.1  haad static int _get_pvs(struct cmd_context *cmd, struct dm_list **pvslist)
   2183          1.1  haad {
   2184          1.1  haad 	struct str_list *strl;
   2185          1.1  haad 	struct dm_list * uninitialized_var(results);
   2186          1.1  haad 	const char *vgname, *vgid;
   2187          1.1  haad 	struct dm_list *pvh, *tmp;
   2188          1.1  haad 	struct dm_list *vgids;
   2189          1.1  haad 	struct volume_group *vg;
   2190          1.1  haad 	int consistent = 0;
   2191          1.1  haad 	int old_pvmove;
   2192          1.1  haad 
   2193          1.1  haad 	lvmcache_label_scan(cmd, 0);
   2194          1.1  haad 
   2195          1.1  haad 	if (pvslist) {
   2196          1.1  haad 		if (!(results = dm_pool_alloc(cmd->mem, sizeof(*results)))) {
   2197          1.1  haad 			log_error("PV list allocation failed");
   2198          1.1  haad 			return 0;
   2199          1.1  haad 		}
   2200          1.1  haad 
   2201          1.1  haad 		dm_list_init(results);
   2202          1.1  haad 	}
   2203          1.1  haad 
   2204          1.1  haad 	/* Get list of VGs */
   2205          1.1  haad 	if (!(vgids = get_vgids(cmd, 0))) {
   2206          1.1  haad 		log_error("get_pvs: get_vgs failed");
   2207          1.1  haad 		return 0;
   2208          1.1  haad 	}
   2209          1.1  haad 
   2210          1.1  haad 	/* Read every VG to ensure cache consistency */
   2211          1.1  haad 	/* Orphan VG is last on list */
   2212          1.1  haad 	old_pvmove = pvmove_mode();
   2213          1.1  haad 	init_pvmove(1);
   2214          1.1  haad 	dm_list_iterate_items(strl, vgids) {
   2215          1.1  haad 		vgid = strl->str;
   2216          1.1  haad 		if (!vgid)
   2217          1.1  haad 			continue;	/* FIXME Unnecessary? */
   2218          1.1  haad 		consistent = 0;
   2219          1.1  haad 		if (!(vgname = vgname_from_vgid(NULL, vgid))) {
   2220          1.1  haad 			stack;
   2221          1.1  haad 			continue;
   2222          1.1  haad 		}
   2223          1.1  haad 		if (!(vg = vg_read(cmd, vgname, vgid, &consistent))) {
   2224          1.1  haad 			stack;
   2225          1.1  haad 			continue;
   2226          1.1  haad 		}
   2227          1.1  haad 		if (!consistent)
   2228          1.1  haad 			log_warn("WARNING: Volume Group %s is not consistent",
   2229          1.1  haad 				 vgname);
   2230          1.1  haad 
   2231          1.1  haad 		/* Move PVs onto results list */
   2232          1.1  haad 		if (pvslist)
   2233          1.1  haad 			dm_list_iterate_safe(pvh, tmp, &vg->pvs)
   2234          1.1  haad 				dm_list_add(results, pvh);
   2235          1.1  haad 	}
   2236          1.1  haad 	init_pvmove(old_pvmove);
   2237          1.1  haad 
   2238          1.1  haad 	if (pvslist)
   2239          1.1  haad 		*pvslist = results;
   2240          1.1  haad 	else
   2241          1.1  haad 		dm_pool_free(cmd->mem, vgids);
   2242          1.1  haad 
   2243          1.1  haad 	return 1;
   2244          1.1  haad }
   2245          1.1  haad 
   2246          1.1  haad struct dm_list *get_pvs(struct cmd_context *cmd)
   2247          1.1  haad {
   2248          1.1  haad 	struct dm_list *results;
   2249          1.1  haad 
   2250          1.1  haad 	if (!_get_pvs(cmd, &results))
   2251          1.1  haad 		return NULL;
   2252          1.1  haad 
   2253          1.1  haad 	return results;
   2254          1.1  haad }
   2255          1.1  haad 
   2256          1.1  haad int scan_vgs_for_pvs(struct cmd_context *cmd)
   2257          1.1  haad {
   2258          1.1  haad 	return _get_pvs(cmd, NULL);
   2259          1.1  haad }
   2260          1.1  haad 
   2261          1.1  haad /* FIXME: liblvm todo - make into function that takes handle */
   2262          1.1  haad int pv_write(struct cmd_context *cmd __attribute((unused)),
   2263          1.1  haad 	     struct physical_volume *pv,
   2264          1.1  haad 	     struct dm_list *mdas, int64_t label_sector)
   2265          1.1  haad {
   2266          1.1  haad 	return _pv_write(cmd, pv, mdas, label_sector);
   2267          1.1  haad }
   2268          1.1  haad 
   2269          1.1  haad static int _pv_write(struct cmd_context *cmd __attribute((unused)),
   2270          1.1  haad 		     struct physical_volume *pv,
   2271          1.1  haad 	     	     struct dm_list *mdas, int64_t label_sector)
   2272          1.1  haad {
   2273          1.1  haad 	if (!pv->fmt->ops->pv_write) {
   2274          1.1  haad 		log_error("Format does not support writing physical volumes");
   2275          1.1  haad 		return 0;
   2276          1.1  haad 	}
   2277          1.1  haad 
   2278          1.1  haad 	if (!is_orphan_vg(pv->vg_name) || pv->pe_alloc_count) {
   2279          1.1  haad 		log_error("Assertion failed: can't _pv_write non-orphan PV "
   2280          1.1  haad 			  "(in VG %s)", pv->vg_name);
   2281          1.1  haad 		return 0;
   2282          1.1  haad 	}
   2283          1.1  haad 
   2284          1.1  haad 	if (!pv->fmt->ops->pv_write(pv->fmt, pv, mdas, label_sector))
   2285          1.1  haad 		return_0;
   2286          1.1  haad 
   2287          1.1  haad 	return 1;
   2288          1.1  haad }
   2289          1.1  haad 
   2290          1.1  haad int pv_write_orphan(struct cmd_context *cmd, struct physical_volume *pv)
   2291          1.1  haad {
   2292          1.1  haad 	const char *old_vg_name = pv->vg_name;
   2293          1.1  haad 
   2294          1.1  haad 	pv->vg_name = cmd->fmt->orphan_vg_name;
   2295          1.1  haad 	pv->status = ALLOCATABLE_PV;
   2296          1.1  haad 	pv->pe_alloc_count = 0;
   2297          1.1  haad 
   2298          1.1  haad 	if (!dev_get_size(pv->dev, &pv->size)) {
   2299          1.1  haad 		log_error("%s: Couldn't get size.", pv_dev_name(pv));
   2300          1.1  haad 		return 0;
   2301          1.1  haad 	}
   2302          1.1  haad 
   2303          1.1  haad 	if (!_pv_write(cmd, pv, NULL, INT64_C(-1))) {
   2304          1.1  haad 		log_error("Failed to clear metadata from physical "
   2305          1.1  haad 			  "volume \"%s\" after removal from \"%s\"",
   2306          1.1  haad 			  pv_dev_name(pv), old_vg_name);
   2307          1.1  haad 		return 0;
   2308          1.1  haad 	}
   2309          1.1  haad 
   2310          1.1  haad 	return 1;
   2311          1.1  haad }
   2312          1.1  haad 
   2313          1.1  haad /**
   2314          1.1  haad  * is_orphan_vg - Determine whether a vg_name is an orphan
   2315          1.1  haad  * @vg_name: pointer to the vg_name
   2316          1.1  haad  */
   2317          1.1  haad int is_orphan_vg(const char *vg_name)
   2318          1.1  haad {
   2319          1.1  haad 	return (vg_name && vg_name[0] == ORPHAN_PREFIX[0]) ? 1 : 0;
   2320          1.1  haad }
   2321          1.1  haad 
   2322          1.1  haad /**
   2323          1.1  haad  * is_orphan - Determine whether a pv is an orphan based on its vg_name
   2324          1.1  haad  * @pv: handle to the physical volume
   2325          1.1  haad  */
   2326          1.1  haad int is_orphan(const pv_t *pv)
   2327          1.1  haad {
   2328          1.1  haad 	return is_orphan_vg(pv_field(pv, vg_name));
   2329          1.1  haad }
   2330          1.1  haad 
   2331          1.1  haad /**
   2332          1.1  haad  * is_pv - Determine whether a pv is a real pv or dummy one
   2333          1.1  haad  * @pv: handle to device
   2334          1.1  haad  */
   2335          1.1  haad int is_pv(pv_t *pv)
   2336          1.1  haad {
   2337          1.1  haad 	return (pv_field(pv, vg_name) ? 1 : 0);
   2338          1.1  haad }
   2339          1.1  haad 
   2340          1.1  haad /*
   2341          1.1  haad  * Returns:
   2342          1.1  haad  *  0 - fail
   2343          1.1  haad  *  1 - success
   2344          1.1  haad  */
   2345          1.1  haad int pv_analyze(struct cmd_context *cmd, const char *pv_name,
   2346          1.1  haad 	       uint64_t label_sector)
   2347          1.1  haad {
   2348          1.1  haad 	struct label *label;
   2349          1.1  haad 	struct device *dev;
   2350          1.1  haad 	struct metadata_area *mda;
   2351          1.1  haad 	struct lvmcache_info *info;
   2352          1.1  haad 
   2353          1.1  haad 	dev = dev_cache_get(pv_name, cmd->filter);
   2354          1.1  haad 	if (!dev) {
   2355          1.1  haad 		log_error("Device %s not found (or ignored by filtering).",
   2356          1.1  haad 			  pv_name);
   2357          1.1  haad 		return 0;
   2358          1.1  haad 	}
   2359          1.1  haad 
   2360          1.1  haad 	/*
   2361          1.1  haad 	 * First, scan for LVM labels.
   2362          1.1  haad 	 */
   2363          1.1  haad 	if (!label_read(dev, &label, label_sector)) {
   2364          1.1  haad 		log_error("Could not find LVM label on %s",
   2365          1.1  haad 			  pv_name);
   2366          1.1  haad 		return 0;
   2367          1.1  haad 	}
   2368          1.1  haad 
   2369          1.1  haad 	log_print("Found label on %s, sector %"PRIu64", type=%s",
   2370          1.1  haad 		  pv_name, label->sector, label->type);
   2371          1.1  haad 
   2372          1.1  haad 	/*
   2373          1.1  haad 	 * Next, loop through metadata areas
   2374          1.1  haad 	 */
   2375          1.1  haad 	info = label->info;
   2376          1.1  haad 	dm_list_iterate_items(mda, &info->mdas)
   2377          1.1  haad 		mda->ops->pv_analyze_mda(info->fmt, mda);
   2378          1.1  haad 
   2379          1.1  haad 	return 1;
   2380          1.1  haad }
   2381          1.1  haad 
   2382          1.1  haad 
   2383          1.1  haad 
   2384          1.1  haad /**
   2385          1.1  haad  * vg_check_status - check volume group status flags and log error
   2386          1.1  haad  * @vg - volume group to check status flags
   2387          1.1  haad  * @status - specific status flags to check (e.g. EXPORTED_VG)
   2388          1.1  haad  *
   2389          1.1  haad  * Returns:
   2390          1.1  haad  * 0 - fail
   2391          1.1  haad  * 1 - success
   2392          1.1  haad  */
   2393          1.1  haad int vg_check_status(const struct volume_group *vg, uint32_t status)
   2394          1.1  haad {
   2395          1.1  haad 	if ((status & CLUSTERED) &&
   2396          1.1  haad 	    (vg_is_clustered(vg)) && !locking_is_clustered() &&
   2397          1.1  haad 	    !lockingfailed()) {
   2398          1.1  haad 		log_error("Skipping clustered volume group %s", vg->name);
   2399          1.1  haad 		return 0;
   2400          1.1  haad 	}
   2401          1.1  haad 
   2402          1.1  haad 	if ((status & EXPORTED_VG) &&
   2403          1.1  haad 	    (vg->status & EXPORTED_VG)) {
   2404          1.1  haad 		log_error("Volume group %s is exported", vg->name);
   2405          1.1  haad 		return 0;
   2406          1.1  haad 	}
   2407          1.1  haad 
   2408          1.1  haad 	if ((status & LVM_WRITE) &&
   2409          1.1  haad 	    !(vg->status & LVM_WRITE)) {
   2410          1.1  haad 		log_error("Volume group %s is read-only", vg->name);
   2411          1.1  haad 		return 0;
   2412          1.1  haad 	}
   2413          1.1  haad 	if ((status & RESIZEABLE_VG) &&
   2414          1.1  haad 	    !(vg->status & RESIZEABLE_VG)) {
   2415          1.1  haad 		log_error("Volume group %s is not resizeable.", vg->name);
   2416          1.1  haad 		return 0;
   2417          1.1  haad 	}
   2418          1.1  haad 
   2419          1.1  haad 	return 1;
   2420          1.1  haad }
   2421          1.1  haad 
   2422          1.1  haad /*
   2423          1.1  haad  * vg_lock_and_read - consolidate vg locking, reading, and status flag checking
   2424          1.1  haad  *
   2425          1.1  haad  * Returns:
   2426          1.1  haad  * NULL - failure
   2427          1.1  haad  * non-NULL - success; volume group handle
   2428          1.1  haad  */
   2429          1.1  haad vg_t *vg_lock_and_read(struct cmd_context *cmd, const char *vg_name,
   2430          1.1  haad 		       const char *vgid,
   2431          1.1  haad 		       uint32_t lock_flags, uint32_t status_flags,
   2432          1.1  haad 		       uint32_t misc_flags)
   2433          1.1  haad {
   2434          1.1  haad 	struct volume_group *vg;
   2435          1.1  haad 	int consistent = 1;
   2436          1.1  haad 
   2437          1.1  haad 	if (!(misc_flags & CORRECT_INCONSISTENT))
   2438          1.1  haad 		consistent = 0;
   2439          1.1  haad 
   2440          1.1  haad 	if (!validate_name(vg_name)) {
   2441          1.1  haad 		log_error("Volume group name %s has invalid characters",
   2442          1.1  haad 			  vg_name);
   2443          1.1  haad 		return NULL;
   2444          1.1  haad 	}
   2445          1.1  haad 
   2446          1.1  haad 	if (!lock_vol(cmd, vg_name, lock_flags)) {
   2447          1.1  haad 		log_error("Can't get lock for %s", vg_name);
   2448          1.1  haad 		return NULL;
   2449          1.1  haad 	}
   2450          1.1  haad 
   2451          1.1  haad 	if (!(vg = vg_read(cmd, vg_name, vgid, &consistent)) ||
   2452          1.1  haad 	    ((misc_flags & FAIL_INCONSISTENT) && !consistent)) {
   2453          1.1  haad 		log_error("Volume group \"%s\" not found", vg_name);
   2454          1.1  haad 		unlock_vg(cmd, vg_name);
   2455          1.1  haad 		return NULL;
   2456          1.1  haad 	}
   2457          1.1  haad 
   2458          1.1  haad 	if (!vg_check_status(vg, status_flags)) {
   2459          1.1  haad 		unlock_vg(cmd, vg_name);
   2460          1.1  haad 		return NULL;
   2461          1.1  haad 	}
   2462          1.1  haad 
   2463          1.1  haad 	return vg;
   2464          1.1  haad }
   2465          1.1  haad 
   2466          1.1  haad /*
   2467          1.1  haad  * Gets/Sets for external LVM library
   2468          1.1  haad  */
   2469          1.1  haad struct id pv_id(const pv_t *pv)
   2470          1.1  haad {
   2471          1.1  haad 	return pv_field(pv, id);
   2472          1.1  haad }
   2473          1.1  haad 
   2474          1.1  haad const struct format_type *pv_format_type(const pv_t *pv)
   2475          1.1  haad {
   2476          1.1  haad 	return pv_field(pv, fmt);
   2477          1.1  haad }
   2478          1.1  haad 
   2479          1.1  haad struct id pv_vgid(const pv_t *pv)
   2480          1.1  haad {
   2481          1.1  haad 	return pv_field(pv, vgid);
   2482          1.1  haad }
   2483          1.1  haad 
   2484          1.1  haad struct device *pv_dev(const pv_t *pv)
   2485          1.1  haad {
   2486          1.1  haad 	return pv_field(pv, dev);
   2487          1.1  haad }
   2488          1.1  haad 
   2489          1.1  haad const char *pv_vg_name(const pv_t *pv)
   2490          1.1  haad {
   2491          1.1  haad 	return pv_field(pv, vg_name);
   2492          1.1  haad }
   2493          1.1  haad 
   2494          1.1  haad const char *pv_dev_name(const pv_t *pv)
   2495          1.1  haad {
   2496          1.1  haad 	return dev_name(pv_dev(pv));
   2497          1.1  haad }
   2498          1.1  haad 
   2499          1.1  haad uint64_t pv_size(const pv_t *pv)
   2500          1.1  haad {
   2501          1.1  haad 	return pv_field(pv, size);
   2502          1.1  haad }
   2503          1.1  haad 
   2504          1.1  haad uint32_t pv_status(const pv_t *pv)
   2505          1.1  haad {
   2506          1.1  haad 	return pv_field(pv, status);
   2507          1.1  haad }
   2508          1.1  haad 
   2509          1.1  haad uint32_t pv_pe_size(const pv_t *pv)
   2510          1.1  haad {
   2511          1.1  haad 	return pv_field(pv, pe_size);
   2512          1.1  haad }
   2513          1.1  haad 
   2514          1.1  haad uint64_t pv_pe_start(const pv_t *pv)
   2515          1.1  haad {
   2516          1.1  haad 	return pv_field(pv, pe_start);
   2517          1.1  haad }
   2518          1.1  haad 
   2519          1.1  haad uint32_t pv_pe_count(const pv_t *pv)
   2520          1.1  haad {
   2521          1.1  haad 	return pv_field(pv, pe_count);
   2522          1.1  haad }
   2523          1.1  haad 
   2524          1.1  haad uint32_t pv_pe_alloc_count(const pv_t *pv)
   2525          1.1  haad {
   2526          1.1  haad 	return pv_field(pv, pe_alloc_count);
   2527          1.1  haad }
   2528          1.1  haad 
   2529          1.1  haad uint32_t vg_status(const vg_t *vg)
   2530          1.1  haad {
   2531          1.1  haad 	return vg->status;
   2532          1.1  haad }
   2533          1.1  haad 
   2534          1.1  haad /**
   2535          1.1  haad  * pv_by_path - Given a device path return a PV handle if it is a PV
   2536          1.1  haad  * @cmd - handle to the LVM command instance
   2537          1.1  haad  * @pv_name - device path to read for the PV
   2538          1.1  haad  *
   2539          1.1  haad  * Returns:
   2540          1.1  haad  *  NULL - device path does not contain a valid PV
   2541          1.1  haad  *  non-NULL - PV handle corresponding to device path
   2542          1.1  haad  *
   2543          1.1  haad  * FIXME: merge with find_pv_by_name ?
   2544          1.1  haad  */
   2545          1.1  haad pv_t *pv_by_path(struct cmd_context *cmd, const char *pv_name)
   2546          1.1  haad {
   2547          1.1  haad 	struct dm_list mdas;
   2548          1.1  haad 
   2549          1.1  haad 	dm_list_init(&mdas);
   2550          1.1  haad 	return _pv_read(cmd, pv_name, &mdas, NULL, 1);
   2551          1.1  haad }
   2552