* Boston, MA 021110-1307, USA.
*/
-#define _GNU_SOURCE
-#ifndef __CHECKER__
#include <sys/ioctl.h>
#include <sys/mount.h>
-#include "ioctl.h"
-#endif
#include <stdio.h>
#include <stdlib.h>
#include <sys/types.h>
#include "ctree.h"
#include "transaction.h"
#include "utils.h"
+#include "ioctl.h"
#include <uuid/uuid.h>
#include "btrfs-list.h"
+#include "rbtree-utils.h"
#define BTRFS_LIST_NFILTERS_INCREASE (2 * BTRFS_LIST_FILTER_MAX)
#define BTRFS_LIST_NCOMPS_INCREASE (2 * BTRFS_LIST_COMP_MAX)
struct rb_root root;
};
-struct {
+static struct {
char *name;
char *column_name;
int need_print;
.need_print = 0,
},
{
+ .name = "received_uuid",
+ .column_name = "Received UUID",
+ .need_print = 0,
+ },
+ {
.name = "uuid",
.column_name = "UUID",
.need_print = 0,
{
int i;
- BUG_ON(column < 0 || column > BTRFS_LIST_ALL);
+ ASSERT(0 <= column && column <= BTRFS_LIST_ALL);
if (column < BTRFS_LIST_ALL) {
btrfs_list_columns[column].need_print = 1;
btrfs_list_columns[i].need_print = 1;
}
-static void root_lookup_init(struct root_lookup *tree)
-{
- tree->root.rb_node = NULL;
-}
-
static int comp_entry_with_rootid(struct root_info *entry1,
struct root_info *entry2,
int is_descending)
size = sizeof(struct btrfs_list_comparer_set) +
BTRFS_LIST_NCOMPS_INCREASE * sizeof(struct btrfs_list_comparer);
- set = malloc(size);
+ set = calloc(1, size);
if (!set) {
fprintf(stderr, "memory allocation failed\n");
exit(1);
}
- memset(set, 0, size);
set->total = BTRFS_LIST_NCOMPS_INCREASE;
return set;
}
-void btrfs_list_free_comparer_set(struct btrfs_list_comparer_set *comp_set)
-{
- free(comp_set);
-}
-
-int btrfs_list_setup_comparer(struct btrfs_list_comparer_set **comp_set,
- enum btrfs_list_comp_enum comparer,
- int is_descending)
+static int btrfs_list_setup_comparer(struct btrfs_list_comparer_set **comp_set,
+ enum btrfs_list_comp_enum comparer, int is_descending)
{
struct btrfs_list_comparer_set *set = *comp_set;
int size;
- BUG_ON(!set);
- BUG_ON(comparer >= BTRFS_LIST_COMP_MAX);
- BUG_ON(set->ncomps > set->total);
+ ASSERT(set != NULL);
+ ASSERT(comparer < BTRFS_LIST_COMP_MAX);
+ ASSERT(set->ncomps <= set->total);
if (set->ncomps == set->total) {
+ void *tmp;
+
size = set->total + BTRFS_LIST_NCOMPS_INCREASE;
size = sizeof(*set) + size * sizeof(struct btrfs_list_comparer);
+ tmp = set;
set = realloc(set, size);
if (!set) {
fprintf(stderr, "memory allocation failed\n");
+ free(tmp);
exit(1);
}
*comp_set = set;
}
- BUG_ON(set->comps[set->ncomps].comp_func);
+ ASSERT(set->comps[set->ncomps].comp_func == NULL);
set->comps[set->ncomps].comp_func = all_comp_funcs[comparer];
set->comps[set->ncomps].is_descending = is_descending;
int i, ret = 0;
if (!set || !set->ncomps)
- goto comp_rootid;
+ return comp_entry_with_rootid(entry1, entry2, 0);
for (i = 0; i < set->ncomps; i++) {
if (!set->comps[i].comp_func)
rootid_compared = 1;
}
- if (!rootid_compared) {
-comp_rootid:
+ if (!rootid_compared)
ret = comp_entry_with_rootid(entry1, entry2, 0);
- }
return ret;
}
static int update_root(struct root_lookup *root_lookup,
u64 root_id, u64 ref_tree, u64 root_offset, u64 flags,
u64 dir_id, char *name, int name_len, u64 ogen, u64 gen,
- time_t ot, void *uuid, void *puuid)
+ time_t otime, u8 *uuid, u8 *puuid, u8 *ruuid)
{
struct root_info *ri;
if (!ri || ri->root_id != root_id)
return -ENOENT;
if (name && name_len > 0) {
- if (ri->name)
- free(ri->name);
+ free(ri->name);
ri->name = malloc(name_len + 1);
if (!ri->name) {
ri->ogen = ogen;
if (!ri->ogen && root_offset)
ri->ogen = root_offset;
- if (ot)
- ri->otime = ot;
+ if (otime)
+ ri->otime = otime;
if (uuid)
memcpy(&ri->uuid, uuid, BTRFS_UUID_SIZE);
if (puuid)
memcpy(&ri->puuid, puuid, BTRFS_UUID_SIZE);
+ if (ruuid)
+ memcpy(&ri->ruuid, ruuid, BTRFS_UUID_SIZE);
return 0;
}
* name_len: the length of name
* ogen: the original generation of the root
* gen: the current generation of the root
- * ot: the original time(create time) of the root
+ * otime: the original time (creation time) of the root
* uuid: uuid of the root
* puuid: uuid of the root parent if any
+ * ruuid: uuid of the received subvol, if any
*/
static int add_root(struct root_lookup *root_lookup,
u64 root_id, u64 ref_tree, u64 root_offset, u64 flags,
u64 dir_id, char *name, int name_len, u64 ogen, u64 gen,
- time_t ot, void *uuid, void *puuid)
+ time_t otime, u8 *uuid, u8 *puuid, u8 *ruuid)
{
struct root_info *ri;
int ret;
ret = update_root(root_lookup, root_id, ref_tree, root_offset, flags,
- dir_id, name, name_len, ogen, gen, ot, uuid, puuid);
+ dir_id, name, name_len, ogen, gen, otime,
+ uuid, puuid, ruuid);
if (!ret)
return 0;
- ri = malloc(sizeof(*ri));
+ ri = calloc(1, sizeof(*ri));
if (!ri) {
printf("memory allocation failed\n");
exit(1);
}
- memset(ri, 0, sizeof(*ri));
ri->root_id = root_id;
if (name && name_len > 0) {
ri->ogen = ogen;
if (!ri->ogen && root_offset)
ri->ogen = root_offset;
- if (ot)
- ri->otime = ot;
+ if (otime)
+ ri->otime = otime;
if (uuid)
memcpy(&ri->uuid, uuid, BTRFS_UUID_SIZE);
if (puuid)
memcpy(&ri->puuid, puuid, BTRFS_UUID_SIZE);
+ if (ruuid)
+ memcpy(&ri->ruuid, ruuid, BTRFS_UUID_SIZE);
+
ret = root_tree_insert(root_lookup, ri);
- if (ret) {
- printf("failed to insert tree %llu\n", (unsigned long long)root_id);
+ if (ret < 0) {
+ error("failed to insert subvolume %llu to tree: %s",
+ (unsigned long long)root_id, strerror(-ret));
exit(1);
}
return 0;
}
-void __free_root_info(struct root_info *ri)
+/*
+ * Simplified add_root for back references, omits the uuid and original info
+ * parameters, root offset and flags.
+ */
+static int add_root_backref(struct root_lookup *root_lookup, u64 root_id,
+ u64 ref_tree, u64 dir_id, char *name, int name_len)
{
- if (ri->name)
- free(ri->name);
-
- if (ri->path)
- free(ri->path);
-
- if (ri->full_path)
- free(ri->full_path);
-
- free(ri);
+ return add_root(root_lookup, root_id, ref_tree, 0, 0, dir_id, name,
+ name_len, 0, 0, 0, NULL, NULL, NULL);
}
-void __free_all_subvolumn(struct root_lookup *root_tree)
-{
- struct root_info *entry;
- struct rb_node *n;
- n = rb_first(&root_tree->root);
- while (n) {
- entry = rb_entry(n, struct root_info, rb_node);
- rb_erase(n, &root_tree->root);
- __free_root_info(entry);
+static void free_root_info(struct rb_node *node)
+{
+ struct root_info *ri;
- n = rb_first(&root_tree->root);
- }
+ ri = rb_entry(node, struct root_info, rb_node);
+ free(ri->name);
+ free(ri->path);
+ free(ri->full_path);
+ free(ri);
}
/*
while (1) {
char *tmp;
u64 next;
+ int add_len;
+
/*
- * ref_tree = 0 indicates the subvolumes
- * has been deleted.
- */
- if (!found->ref_tree)
+ * ref_tree = 0 indicates the subvolume
+ * has been deleted.
+ */
+ if (!found->ref_tree) {
+ free(full_path);
return -ENOENT;
- int add_len = strlen(found->path);
-
- /* room for / and for null */
- tmp = malloc(add_len + 2 + len);
- if (!tmp) {
- perror("malloc failed");
- exit(1);
}
+
+ add_len = strlen(found->path);
+
if (full_path) {
+ /* room for / and for null */
+ tmp = malloc(add_len + 2 + len);
+ if (!tmp) {
+ perror("malloc failed");
+ exit(1);
+ }
memcpy(tmp + add_len + 1, full_path, len);
tmp[add_len] = '/';
memcpy(tmp, found->path, add_len);
full_path = strdup(found->path);
len = add_len;
}
+ if (!ri->top_id)
+ ri->top_id = found->ref_tree;
next = found->ref_tree;
-
- if (next == top_id) {
- ri->top_id = top_id;
+ if (next == top_id)
break;
- }
-
/*
* if the ref_tree = BTRFS_FS_TREE_OBJECTID,
* we are at the top
*/
- if (next == BTRFS_FS_TREE_OBJECTID) {
- ri->top_id = next;
+ if (next == BTRFS_FS_TREE_OBJECTID)
break;
- }
-
/*
* if the ref_tree wasn't in our tree of roots, the
* subvolume was deleted.
*/
found = root_tree_search(rl, next);
- if (!found)
+ if (!found) {
+ free(full_path);
return -ENOENT;
+ }
}
ri->full_path = full_path;
static int lookup_ino_path(int fd, struct root_info *ri)
{
struct btrfs_ioctl_ino_lookup_args args;
- int ret, e;
+ int ret;
if (ri->path)
return 0;
args.objectid = ri->dir_id;
ret = ioctl(fd, BTRFS_IOC_INO_LOOKUP, &args);
- e = errno;
- if (ret) {
- if (e == ENOENT) {
+ if (ret < 0) {
+ if (errno == ENOENT) {
ri->ref_tree = 0;
return -ENOENT;
}
- fprintf(stderr, "ERROR: Failed to lookup path for root %llu - %s\n",
- (unsigned long long)ri->ref_tree,
- strerror(e));
+ error("failed to lookup path for root %llu: %s",
+ (unsigned long long)ri->ref_tree, strerror(errno));
return ret;
}
}
/* finding the generation for a given path is a two step process.
- * First we use the inode loookup routine to find out the root id
+ * First we use the inode lookup routine to find out the root id
*
* Then we use the tree search ioctl to scan all the root items for a
* given root id and spit out the latest generation we can find
unsigned long off = 0;
u64 max_found = 0;
int i;
- int e;
memset(&ino_args, 0, sizeof(ino_args));
ino_args.objectid = BTRFS_FIRST_FREE_OBJECTID;
/* this ioctl fills in ino_args->treeid */
ret = ioctl(fd, BTRFS_IOC_INO_LOOKUP, &ino_args);
- e = errno;
- if (ret) {
- fprintf(stderr, "ERROR: Failed to lookup path for dirid %llu - %s\n",
+ if (ret < 0) {
+ error("failed to lookup path for dirid %llu: %s",
(unsigned long long)BTRFS_FIRST_FREE_OBJECTID,
- strerror(e));
+ strerror(errno));
return 0;
}
memset(&args, 0, sizeof(args));
- sk->tree_id = 1;
+ sk->tree_id = BTRFS_ROOT_TREE_OBJECTID;
/*
* there may be more than one ROOT_ITEM key if there are
while (1) {
ret = ioctl(fd, BTRFS_IOC_TREE_SEARCH, &args);
- e = errno;
if (ret < 0) {
- fprintf(stderr, "ERROR: can't perform the search - %s\n",
- strerror(e));
+ error("can't perform the search: %s", strerror(errno));
return 0;
}
/* the ioctl returns the number of item it found in nr_items */
if (sk->min_type != BTRFS_ROOT_ITEM_KEY)
break;
- if (sk->min_objectid != BTRFS_ROOT_ITEM_KEY)
+ if (sk->min_objectid != ino_args.treeid)
break;
}
return max_found;
struct btrfs_ioctl_ino_lookup_args args;
int ret;
char *full;
- int e;
memset(&args, 0, sizeof(args));
args.objectid = dirid;
ret = ioctl(fd, BTRFS_IOC_INO_LOOKUP, &args);
- e = errno;
- if (ret) {
- fprintf(stderr, "ERROR: Failed to lookup path for dirid %llu - %s\n",
- (unsigned long long)dirid, strerror(e) );
+ if (ret < 0) {
+ error("failed to lookup path for dirid %llu: %s",
+ (unsigned long long)dirid, strerror(errno));
return ERR_PTR(ret);
}
* simple string builder, returning a new string with both
* dirid and name
*/
-char *build_name(char *dirid, char *name)
+static char *build_name(const char *dirid, const char *name)
{
char *full;
+
if (!dirid)
return strdup(name);
struct btrfs_ioctl_search_header *sh;
unsigned long off = 0;
int namelen;
- int e;
memset(&args, 0, sizeof(args));
sk->nr_items = 1;
ret = ioctl(fd, BTRFS_IOC_TREE_SEARCH, &args);
- e = errno;
if (ret < 0) {
- fprintf(stderr, "ERROR: can't perform the search - %s\n",
- strerror(e));
+ error("can't perform the search: %s", strerror(errno));
return NULL;
}
/* the ioctl returns the number of item it found in nr_items */
off = 0;
sh = (struct btrfs_ioctl_search_header *)(args.buf + off);
- if (sh->type == BTRFS_INODE_REF_KEY) {
+ if (btrfs_search_header_type(sh) == BTRFS_INODE_REF_KEY) {
struct btrfs_inode_ref *ref;
- dirid = sh->offset;
+ dirid = btrfs_search_header_offset(sh);
ref = (struct btrfs_inode_ref *)(sh + 1);
namelen = btrfs_stack_inode_ref_name_len(ref);
* search for a dir item with a name 'default' in the tree of
* tree roots, it should point us to a default root
*/
- sk->tree_id = 1;
+ sk->tree_id = BTRFS_ROOT_TREE_OBJECTID;
/* don't worry about ancient format and request only one item */
sk->nr_items = 1;
sh = (struct btrfs_ioctl_search_header *)args.buf;
- if (sh->type == BTRFS_DIR_ITEM_KEY) {
+ if (btrfs_search_header_type(sh) == BTRFS_DIR_ITEM_KEY) {
struct btrfs_dir_item *di;
int name_len;
char *name;
return 0;
}
-static int __list_subvol_search(int fd, struct root_lookup *root_lookup)
+static int list_subvol_search(int fd, struct root_lookup *root_lookup)
{
int ret;
struct btrfs_ioctl_search_args args;
struct btrfs_ioctl_search_header sh;
struct btrfs_root_ref *ref;
struct btrfs_root_item *ri;
- unsigned long off = 0;
+ unsigned long off;
int name_len;
char *name;
u64 dir_id;
u64 ogen;
u64 flags;
int i;
- time_t t;
- u8 uuid[BTRFS_UUID_SIZE];
- u8 puuid[BTRFS_UUID_SIZE];
- root_lookup_init(root_lookup);
+ root_lookup->root.rb_node = NULL;
memset(&args, 0, sizeof(args));
- /* search in the tree of tree roots */
- sk->tree_id = 1;
-
- /*
- * set the min and max to backref keys. The search will
- * only send back this type of key now.
- */
- sk->max_type = BTRFS_ROOT_BACKREF_KEY;
+ sk->tree_id = BTRFS_ROOT_TREE_OBJECTID;
+ /* Search both live and deleted subvolumes */
sk->min_type = BTRFS_ROOT_ITEM_KEY;
-
- sk->min_objectid = BTRFS_FIRST_FREE_OBJECTID;
-
- /*
- * set all the other params to the max, we'll take any objectid
- * and any trans
- */
+ sk->max_type = BTRFS_ROOT_BACKREF_KEY;
+ sk->min_objectid = BTRFS_FS_TREE_OBJECTID;
sk->max_objectid = BTRFS_LAST_FREE_OBJECTID;
sk->max_offset = (u64)-1;
sk->max_transid = (u64)-1;
- /* just a big number, doesn't matter much */
- sk->nr_items = 4096;
-
while(1) {
+ sk->nr_items = 4096;
ret = ioctl(fd, BTRFS_IOC_TREE_SEARCH, &args);
if (ret < 0)
return ret;
- /* the ioctl returns the number of item it found in nr_items */
if (sk->nr_items == 0)
break;
name = (char *)(ref + 1);
dir_id = btrfs_stack_root_ref_dirid(ref);
- add_root(root_lookup, sh.objectid, sh.offset,
- 0, 0, dir_id, name, name_len, 0, 0, 0,
- NULL, NULL);
- } else if (sh.type == BTRFS_ROOT_ITEM_KEY) {
+ add_root_backref(root_lookup, sh.objectid,
+ sh.offset, dir_id, name,
+ name_len);
+ } else if (sh.type == BTRFS_ROOT_ITEM_KEY &&
+ (sh.objectid >= BTRFS_FIRST_FREE_OBJECTID ||
+ sh.objectid == BTRFS_FS_TREE_OBJECTID)) {
+ time_t otime;
+ u8 uuid[BTRFS_UUID_SIZE];
+ u8 puuid[BTRFS_UUID_SIZE];
+ u8 ruuid[BTRFS_UUID_SIZE];
+
ri = (struct btrfs_root_item *)(args.buf + off);
gen = btrfs_root_generation(ri);
flags = btrfs_root_flags(ri);
if(sh.len >
sizeof(struct btrfs_root_item_v0)) {
- t = ri->otime.sec;
+ otime = btrfs_stack_timespec_sec(&ri->otime);
ogen = btrfs_root_otransid(ri);
memcpy(uuid, ri->uuid, BTRFS_UUID_SIZE);
memcpy(puuid, ri->parent_uuid, BTRFS_UUID_SIZE);
+ memcpy(ruuid, ri->received_uuid, BTRFS_UUID_SIZE);
} else {
- t = 0;
+ otime = 0;
ogen = 0;
memset(uuid, 0, BTRFS_UUID_SIZE);
memset(puuid, 0, BTRFS_UUID_SIZE);
+ memset(ruuid, 0, BTRFS_UUID_SIZE);
}
add_root(root_lookup, sh.objectid, 0,
sh.offset, flags, 0, NULL, 0, ogen,
- gen, t, uuid, puuid);
+ gen, otime, uuid, puuid, ruuid);
}
off += sh.len;
- /*
- * record the mins in sk so we can make sure the
- * next search doesn't repeat this root
- */
sk->min_objectid = sh.objectid;
sk->min_type = sh.type;
sk->min_offset = sh.offset;
}
- sk->nr_items = 4096;
sk->min_offset++;
- if (!sk->min_offset) /* overflow */
+ if (!sk->min_offset)
sk->min_type++;
else
continue;
static int filter_by_parent(struct root_info *ri, u64 data)
{
- return !uuid_compare(ri->puuid, (u8 *)data);
+ return !uuid_compare(ri->puuid, (u8 *)(unsigned long)data);
+}
+
+static int filter_deleted(struct root_info *ri, u64 data)
+{
+ return ri->deleted;
}
static btrfs_list_filter_func all_filter_funcs[] = {
[BTRFS_LIST_FILTER_TOPID_EQUAL] = filter_topid_equal,
[BTRFS_LIST_FILTER_FULL_PATH] = filter_full_path,
[BTRFS_LIST_FILTER_BY_PARENT] = filter_by_parent,
+ [BTRFS_LIST_FILTER_DELETED] = filter_deleted,
};
struct btrfs_list_filter_set *btrfs_list_alloc_filter_set(void)
size = sizeof(struct btrfs_list_filter_set) +
BTRFS_LIST_NFILTERS_INCREASE * sizeof(struct btrfs_list_filter);
- set = malloc(size);
+ set = calloc(1, size);
if (!set) {
fprintf(stderr, "memory allocation failed\n");
exit(1);
}
- memset(set, 0, size);
set->total = BTRFS_LIST_NFILTERS_INCREASE;
return set;
}
-void btrfs_list_free_filter_set(struct btrfs_list_filter_set *filter_set)
-{
- free(filter_set);
-}
-
-int btrfs_list_setup_filter(struct btrfs_list_filter_set **filter_set,
+/*
+ * Setup list filters. Exit if there's not enough memory, as we can't continue
+ * without the structures set up properly.
+ */
+void btrfs_list_setup_filter(struct btrfs_list_filter_set **filter_set,
enum btrfs_list_filter_enum filter, u64 data)
{
struct btrfs_list_filter_set *set = *filter_set;
int size;
- BUG_ON(!set);
- BUG_ON(filter >= BTRFS_LIST_FILTER_MAX);
- BUG_ON(set->nfilters > set->total);
+ ASSERT(set != NULL);
+ ASSERT(filter < BTRFS_LIST_FILTER_MAX);
+ ASSERT(set->nfilters <= set->total);
if (set->nfilters == set->total) {
+ void *tmp;
+
size = set->total + BTRFS_LIST_NFILTERS_INCREASE;
size = sizeof(*set) + size * sizeof(struct btrfs_list_filter);
+ tmp = set;
set = realloc(set, size);
if (!set) {
fprintf(stderr, "memory allocation failed\n");
+ free(tmp);
exit(1);
}
*filter_set = set;
}
- BUG_ON(set->filters[set->nfilters].filter_func);
+ ASSERT(set->filters[set->nfilters].filter_func == NULL);
+
+ if (filter == BTRFS_LIST_FILTER_DELETED)
+ set->only_deleted = 1;
set->filters[set->nfilters].filter_func = all_filter_funcs[filter];
set->filters[set->nfilters].data = data;
set->nfilters++;
- return 0;
}
static int filter_root(struct root_info *ri,
{
int i, ret;
- if (!set || !set->nfilters)
+ if (!set)
return 1;
+ if (set->only_deleted && !ri->deleted)
+ return 0;
+
+ if (!set->only_deleted && ri->deleted)
+ return 0;
+
for (i = 0; i < set->nfilters; i++) {
if (!set->filters[i].filter_func)
break;
return 1;
}
-static void __filter_and_sort_subvol(struct root_lookup *all_subvols,
+static void filter_and_sort_subvol(struct root_lookup *all_subvols,
struct root_lookup *sort_tree,
struct btrfs_list_filter_set *filter_set,
struct btrfs_list_comparer_set *comp_set,
struct root_info *entry;
int ret;
- root_lookup_init(sort_tree);
+ sort_tree->root.rb_node = NULL;
n = rb_last(&all_subvols->root);
while (n) {
entry = rb_entry(n, struct root_info, rb_node);
ret = resolve_root(all_subvols, entry, top_id);
- if (ret == -ENOENT)
- goto skip;
+ if (ret == -ENOENT) {
+ if (entry->root_id != BTRFS_FS_TREE_OBJECTID) {
+ entry->full_path = strdup("DELETED");
+ entry->deleted = 1;
+ } else {
+ /*
+ * The full path is not supposed to be printed,
+ * but we don't want to print an empty string,
+ * in case it appears somewhere.
+ */
+ entry->full_path = strdup("TOPLEVEL");
+ entry->deleted = 0;
+ }
+ }
ret = filter_root(entry, filter_set);
if (ret)
sort_tree_insert(sort_tree, entry, comp_set);
-skip:
n = rb_prev(n);
}
}
-static int __list_subvol_fill_paths(int fd, struct root_lookup *root_lookup)
+static int list_subvol_fill_paths(int fd, struct root_lookup *root_lookup)
{
struct rb_node *n;
enum btrfs_list_column_enum column)
{
char tstr[256];
- char uuidparse[37];
+ char uuidparse[BTRFS_UUID_UNPARSED_SIZE];
- BUG_ON(column >= BTRFS_LIST_ALL || column < 0);
+ ASSERT(0 <= column && column < BTRFS_LIST_ALL);
switch (column) {
case BTRFS_LIST_OBJECTID:
printf("%llu", subv->top_id);
break;
case BTRFS_LIST_OTIME:
- if (subv->otime)
- strftime(tstr, 256, "%Y-%m-%d %X",
- localtime(&subv->otime));
- else
+ if (subv->otime) {
+ struct tm tm;
+
+ localtime_r(&subv->otime, &tm);
+ strftime(tstr, 256, "%Y-%m-%d %X", &tm);
+ } else
strcpy(tstr, "-");
printf("%s", tstr);
break;
strcpy(uuidparse, "-");
else
uuid_unparse(subv->uuid, uuidparse);
- printf("%s", uuidparse);
+ printf("%-36s", uuidparse);
break;
case BTRFS_LIST_PUUID:
if (uuid_is_null(subv->puuid))
strcpy(uuidparse, "-");
else
uuid_unparse(subv->puuid, uuidparse);
- printf("%s", uuidparse);
+ printf("%-36s", uuidparse);
+ break;
+ case BTRFS_LIST_RUUID:
+ if (uuid_is_null(subv->ruuid))
+ strcpy(uuidparse, "-");
+ else
+ uuid_unparse(subv->ruuid, uuidparse);
+ printf("%-36s", uuidparse);
break;
case BTRFS_LIST_PATH:
BUG_ON(!subv->full_path);
}
}
-static void print_single_volume_info_raw(struct root_info *subv, char *raw_prefix)
+static void print_one_subvol_info_raw(struct root_info *subv,
+ const char *raw_prefix)
{
int i;
printf("\n");
}
-static void print_single_volume_info_table(struct root_info *subv)
+static void print_one_subvol_info_table(struct root_info *subv)
{
int i;
printf("\n");
}
-static void print_single_volume_info_default(struct root_info *subv)
+static void print_one_subvol_info_default(struct root_info *subv)
{
int i;
printf("\n");
}
-static void print_all_volume_info_tab_head()
+static void print_all_subvol_info_tab_head(void)
{
int i;
int len;
}
}
-static void print_all_volume_info(struct root_lookup *sorted_tree,
- int layout, char *raw_prefix)
+static void print_all_subvol_info(struct root_lookup *sorted_tree,
+ enum btrfs_list_layout layout, const char *raw_prefix)
{
struct rb_node *n;
struct root_info *entry;
if (layout == BTRFS_LIST_LAYOUT_TABLE)
- print_all_volume_info_tab_head();
+ print_all_subvol_info_tab_head();
n = rb_first(&sorted_tree->root);
while (n) {
entry = rb_entry(n, struct root_info, sort_node);
+
+ /* The toplevel subvolume is not listed by default */
+ if (entry->root_id == BTRFS_FS_TREE_OBJECTID)
+ goto next;
+
switch (layout) {
case BTRFS_LIST_LAYOUT_DEFAULT:
- print_single_volume_info_default(entry);
+ print_one_subvol_info_default(entry);
break;
case BTRFS_LIST_LAYOUT_TABLE:
- print_single_volume_info_table(entry);
+ print_one_subvol_info_table(entry);
break;
case BTRFS_LIST_LAYOUT_RAW:
- print_single_volume_info_raw(entry, raw_prefix);
+ print_one_subvol_info_raw(entry, raw_prefix);
break;
}
+next:
n = rb_next(n);
}
}
-int btrfs_list_subvols(int fd, struct root_lookup *root_lookup)
+static int btrfs_list_subvols(int fd, struct root_lookup *root_lookup)
{
int ret;
- ret = __list_subvol_search(fd, root_lookup);
+ ret = list_subvol_search(fd, root_lookup);
if (ret) {
- fprintf(stderr, "ERROR: can't perform the search - %s\n",
- strerror(errno));
+ error("can't perform the search: %s", strerror(errno));
return ret;
}
* now we have an rbtree full of root_info objects, but we need to fill
* in their path names within the subvol that is referencing each one.
*/
- ret = __list_subvol_fill_paths(fd, root_lookup);
+ ret = list_subvol_fill_paths(fd, root_lookup);
return ret;
}
int btrfs_list_subvols_print(int fd, struct btrfs_list_filter_set *filter_set,
struct btrfs_list_comparer_set *comp_set,
- int layout, int full_path, char *raw_prefix)
+ enum btrfs_list_layout layout, int full_path,
+ const char *raw_prefix)
{
struct root_lookup root_lookup;
struct root_lookup root_sort;
- int ret;
- u64 top_id = (full_path ? 0 : btrfs_list_get_path_rootid(fd));
+ int ret = 0;
+ u64 top_id = 0;
+
+ if (full_path)
+ ret = btrfs_list_get_path_rootid(fd, &top_id);
+ if (ret)
+ return ret;
ret = btrfs_list_subvols(fd, &root_lookup);
if (ret)
return ret;
- __filter_and_sort_subvol(&root_lookup, &root_sort, filter_set,
+ filter_and_sort_subvol(&root_lookup, &root_sort, filter_set,
comp_set, top_id);
- print_all_volume_info(&root_sort, layout, raw_prefix);
- __free_all_subvolumn(&root_lookup);
+ print_all_subvol_info(&root_sort, layout, raw_prefix);
+ rb_free_nodes(&root_lookup.root, free_root_info);
return 0;
}
+static char *strdup_or_null(const char *s)
+{
+ if (!s)
+ return NULL;
+ return strdup(s);
+}
+
+int btrfs_get_toplevel_subvol(int fd, struct root_info *the_ri)
+{
+ int ret;
+ struct root_lookup rl;
+ struct rb_node *rbn;
+ struct root_info *ri;
+ u64 root_id;
+
+ ret = btrfs_list_get_path_rootid(fd, &root_id);
+ if (ret)
+ return ret;
+
+ ret = btrfs_list_subvols(fd, &rl);
+ if (ret)
+ return ret;
+
+ rbn = rb_first(&rl.root);
+ ri = rb_entry(rbn, struct root_info, rb_node);
+
+ if (ri->root_id != BTRFS_FS_TREE_OBJECTID)
+ return -ENOENT;
+
+ memcpy(the_ri, ri, offsetof(struct root_info, path));
+ the_ri->path = strdup_or_null("/");
+ the_ri->name = strdup_or_null("<FS_TREE>");
+ the_ri->full_path = strdup_or_null("/");
+ rb_free_nodes(&rl.root, free_root_info);
+
+ return ret;
+}
+
int btrfs_get_subvol(int fd, struct root_info *the_ri)
{
- int ret = 1, rr;
+ int ret, rr;
struct root_lookup rl;
struct rb_node *rbn;
struct root_info *ri;
- u64 root_id = btrfs_list_get_path_rootid(fd);
+ u64 root_id;
+
+ ret = btrfs_list_get_path_rootid(fd, &root_id);
+ if (ret)
+ return ret;
- if (btrfs_list_subvols(fd, &rl))
+ ret = btrfs_list_subvols(fd, &rl);
+ if (ret)
return ret;
rbn = rb_first(&rl.root);
rbn = rb_next(rbn);
continue;
}
- if (!comp_entry_with_rootid(the_ri, ri, 0)) {
+
+ if (!comp_entry_with_rootid(the_ri, ri, 0) ||
+ !uuid_compare(the_ri->uuid, ri->uuid)) {
memcpy(the_ri, ri, offsetof(struct root_info, path));
- if (ri->path)
- the_ri->path = strdup(ri->path);
- else
- the_ri->path = NULL;
- if (ri->name)
- the_ri->name = strdup(ri->name);
- else
- the_ri->name = NULL;
- if (ri->full_path)
- the_ri->full_path = strdup(ri->full_path);
- else
- the_ri->name = NULL;
+ the_ri->path = strdup_or_null(ri->path);
+ the_ri->name = strdup_or_null(ri->name);
+ the_ri->full_path = strdup_or_null(ri->full_path);
ret = 0;
break;
}
rbn = rb_next(rbn);
}
- __free_all_subvolumn(&rl);
+ rb_free_nodes(&rl.root, free_root_info);
return ret;
}
int flags = 0;
char *name = NULL;
- if (sh->objectid == *cache_ino) {
+ if (btrfs_search_header_objectid(sh) == *cache_ino) {
name = *cache_full_name;
} else if (*cache_full_name) {
free(*cache_full_name);
*cache_full_name = NULL;
}
if (!name) {
- name = ino_resolve(fd, sh->objectid, cache_dirid,
+ name = ino_resolve(fd, btrfs_search_header_objectid(sh),
+ cache_dirid,
cache_dir_name);
*cache_full_name = name;
- *cache_ino = sh->objectid;
+ *cache_ino = btrfs_search_header_objectid(sh);
}
if (!name)
return -EIO;
disk_offset = 0;
len = btrfs_stack_file_extent_ram_bytes(item);
} else {
- printf("unhandled extent type %d for inode %llu "
- "file offset %llu gen %llu\n",
+ error(
+ "unhandled extent type %d for inode %llu file offset %llu gen %llu",
type,
- (unsigned long long)sh->objectid,
- (unsigned long long)sh->offset,
+ (unsigned long long)btrfs_search_header_objectid(sh),
+ (unsigned long long)btrfs_search_header_offset(sh),
(unsigned long long)found_gen);
return -EIO;
}
printf("inode %llu file offset %llu len %llu disk start %llu "
"offset %llu gen %llu flags ",
- (unsigned long long)sh->objectid,
- (unsigned long long)sh->offset,
+ (unsigned long long)btrfs_search_header_objectid(sh),
+ (unsigned long long)btrfs_search_header_offset(sh),
(unsigned long long)len,
(unsigned long long)disk_start,
(unsigned long long)disk_offset,
u64 found_gen;
u64 max_found = 0;
int i;
- int e;
u64 cache_dirid = 0;
u64 cache_ino = 0;
char *cache_dir_name = NULL;
max_found = find_root_gen(fd);
while(1) {
ret = ioctl(fd, BTRFS_IOC_TREE_SEARCH, &args);
- e = errno;
if (ret < 0) {
- fprintf(stderr, "ERROR: can't perform the search- %s\n",
- strerror(e));
- return ret;
+ error("can't perform the search: %s", strerror(errno));
+ break;
}
/* the ioctl returns the number of item it found in nr_items */
if (sk->nr_items == 0)
struct rb_node *n;
char *ret_path = NULL;
int ret;
- u64 top_id = btrfs_list_get_path_rootid(fd);
+ u64 top_id;
+
+ ret = btrfs_list_get_path_rootid(fd, &top_id);
+ if (ret)
+ return ERR_PTR(ret);
- ret = __list_subvol_search(fd, &root_lookup);
+ ret = list_subvol_search(fd, &root_lookup);
if (ret < 0)
return ERR_PTR(ret);
- ret = __list_subvol_fill_paths(fd, &root_lookup);
+ ret = list_subvol_fill_paths(fd, &root_lookup);
if (ret < 0)
return ERR_PTR(ret);
n = rb_prev(n);
}
- __free_all_subvolumn(&root_lookup);
+ rb_free_nodes(&root_lookup.root, free_root_info);
return ret_path;
}
-int btrfs_list_parse_sort_string(char *optarg,
+int btrfs_list_parse_sort_string(char *opt_arg,
struct btrfs_list_comparer_set **comps)
{
int order;
char **ptr_argv;
int what_to_sort;
- while ((p = strtok(optarg, ",")) != NULL) {
+ while ((p = strtok(opt_arg, ",")) != NULL) {
flag = 0;
ptr_argv = all_sort_items;
what_to_sort = btrfs_list_get_sort_item(p);
btrfs_list_setup_comparer(comps, what_to_sort, order);
}
- optarg = NULL;
+ opt_arg = NULL;
}
return 0;
*
* type is the filter object.
*/
-int btrfs_list_parse_filter_string(char *optarg,
+int btrfs_list_parse_filter_string(char *opt_arg,
struct btrfs_list_filter_set **filters,
enum btrfs_list_filter_enum type)
{
u64 arg;
- char *ptr_parse_end = NULL;
- char *ptr_optarg_end = optarg + strlen(optarg);
- switch (*(optarg++)) {
+ switch (*(opt_arg++)) {
case '+':
- arg = (u64)strtol(optarg, &ptr_parse_end, 10);
+ arg = arg_strtou64(opt_arg);
type += 2;
- if (ptr_parse_end != ptr_optarg_end)
- return -1;
btrfs_list_setup_filter(filters, type, arg);
break;
case '-':
- arg = (u64)strtoll(optarg, &ptr_parse_end, 10);
+ arg = arg_strtou64(opt_arg);
type += 1;
- if (ptr_parse_end != ptr_optarg_end)
- return -1;
btrfs_list_setup_filter(filters, type, arg);
break;
default:
- optarg--;
- arg = (u64)strtoll(optarg, &ptr_parse_end, 10);
+ opt_arg--;
+ arg = arg_strtou64(opt_arg);
- if (ptr_parse_end != ptr_optarg_end)
- return -1;
btrfs_list_setup_filter(filters, type, arg);
break;
}
return 0;
}
-u64 btrfs_list_get_path_rootid(int fd)
+int btrfs_list_get_path_rootid(int fd, u64 *treeid)
{
- int ret;
- struct btrfs_ioctl_ino_lookup_args args;
-
- memset(&args, 0, sizeof(args));
- args.objectid = BTRFS_FIRST_FREE_OBJECTID;
+ int ret;
- ret = ioctl(fd, BTRFS_IOC_INO_LOOKUP, &args);
- if (ret < 0) {
- fprintf(stderr,
- "ERROR: can't perform the search -%s\n",
+ ret = lookup_path_rootid(fd, treeid);
+ if (ret < 0)
+ error("cannot resolve rootid for path: %s",
strerror(errno));
- return ret;
- }
- return args.treeid;
+
+ return ret;
}