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keys: Hoist locking out of __key_link_begin()
Hoist the locking of out of __key_link_begin() and into its callers. This is necessary to allow the upcoming key_move() operation to correctly order taking of the source keyring semaphore, the destination keyring semaphore and the keyring serialisation lock. Signed-off-by: David Howells <dhowells@redhat.com>
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eb0f68cb70
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@ -93,6 +93,8 @@ extern wait_queue_head_t request_key_conswq;
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extern struct key_type *key_type_lookup(const char *type);
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extern void key_type_put(struct key_type *ktype);
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extern int __key_link_lock(struct key *keyring,
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const struct keyring_index_key *index_key);
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extern int __key_link_begin(struct key *keyring,
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const struct keyring_index_key *index_key,
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struct assoc_array_edit **_edit);
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@ -500,7 +500,7 @@ int key_instantiate_and_link(struct key *key,
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struct key *authkey)
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{
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struct key_preparsed_payload prep;
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struct assoc_array_edit *edit;
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struct assoc_array_edit *edit = NULL;
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int ret;
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memset(&prep, 0, sizeof(prep));
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@ -515,10 +515,14 @@ int key_instantiate_and_link(struct key *key,
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}
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if (keyring) {
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ret = __key_link_begin(keyring, &key->index_key, &edit);
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ret = __key_link_lock(keyring, &key->index_key);
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if (ret < 0)
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goto error;
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ret = __key_link_begin(keyring, &key->index_key, &edit);
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if (ret < 0)
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goto error_link_end;
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if (keyring->restrict_link && keyring->restrict_link->check) {
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struct key_restriction *keyres = keyring->restrict_link;
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@ -570,7 +574,7 @@ int key_reject_and_link(struct key *key,
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struct key *keyring,
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struct key *authkey)
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{
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struct assoc_array_edit *edit;
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struct assoc_array_edit *edit = NULL;
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int ret, awaken, link_ret = 0;
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key_check(key);
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@ -583,7 +587,12 @@ int key_reject_and_link(struct key *key,
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if (keyring->restrict_link)
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return -EPERM;
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link_ret = __key_link_lock(keyring, &key->index_key);
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if (link_ret == 0) {
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link_ret = __key_link_begin(keyring, &key->index_key, &edit);
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if (link_ret < 0)
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__key_link_end(keyring, &key->index_key, edit);
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}
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}
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mutex_lock(&key_construction_mutex);
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@ -810,7 +819,7 @@ key_ref_t key_create_or_update(key_ref_t keyring_ref,
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.description = description,
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};
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struct key_preparsed_payload prep;
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struct assoc_array_edit *edit;
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struct assoc_array_edit *edit = NULL;
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const struct cred *cred = current_cred();
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struct key *keyring, *key = NULL;
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key_ref_t key_ref;
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@ -860,12 +869,18 @@ key_ref_t key_create_or_update(key_ref_t keyring_ref,
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}
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index_key.desc_len = strlen(index_key.description);
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ret = __key_link_begin(keyring, &index_key, &edit);
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ret = __key_link_lock(keyring, &index_key);
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if (ret < 0) {
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key_ref = ERR_PTR(ret);
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goto error_free_prep;
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}
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ret = __key_link_begin(keyring, &index_key, &edit);
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if (ret < 0) {
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key_ref = ERR_PTR(ret);
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goto error_link_end;
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}
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if (restrict_link && restrict_link->check) {
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ret = restrict_link->check(keyring, index_key.type,
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&prep.payload, restrict_link->key);
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@ -1199,14 +1199,34 @@ static int keyring_detect_cycle(struct key *A, struct key *B)
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return PTR_ERR(ctx.result) == -EAGAIN ? 0 : PTR_ERR(ctx.result);
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}
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/*
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* Lock keyring for link.
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*/
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int __key_link_lock(struct key *keyring,
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const struct keyring_index_key *index_key)
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__acquires(&keyring->sem)
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__acquires(&keyring_serialise_link_lock)
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{
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if (keyring->type != &key_type_keyring)
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return -ENOTDIR;
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down_write(&keyring->sem);
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/* Serialise link/link calls to prevent parallel calls causing a cycle
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* when linking two keyring in opposite orders.
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*/
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if (index_key->type == &key_type_keyring)
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mutex_lock(&keyring_serialise_link_lock);
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return 0;
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}
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/*
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* Preallocate memory so that a key can be linked into to a keyring.
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*/
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int __key_link_begin(struct key *keyring,
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const struct keyring_index_key *index_key,
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struct assoc_array_edit **_edit)
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__acquires(&keyring->sem)
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__acquires(&keyring_serialise_link_lock)
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{
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struct assoc_array_edit *edit;
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int ret;
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@ -1215,20 +1235,13 @@ int __key_link_begin(struct key *keyring,
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keyring->serial, index_key->type->name, index_key->description);
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BUG_ON(index_key->desc_len == 0);
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BUG_ON(*_edit != NULL);
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if (keyring->type != &key_type_keyring)
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return -ENOTDIR;
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down_write(&keyring->sem);
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*_edit = NULL;
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ret = -EKEYREVOKED;
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if (test_bit(KEY_FLAG_REVOKED, &keyring->flags))
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goto error_krsem;
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/* serialise link/link calls to prevent parallel calls causing a cycle
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* when linking two keyring in opposite orders */
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if (index_key->type == &key_type_keyring)
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mutex_lock(&keyring_serialise_link_lock);
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goto error;
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/* Create an edit script that will insert/replace the key in the
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* keyring tree.
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@ -1239,7 +1252,7 @@ int __key_link_begin(struct key *keyring,
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NULL);
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if (IS_ERR(edit)) {
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ret = PTR_ERR(edit);
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goto error_sem;
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goto error;
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}
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/* If we're not replacing a link in-place then we're going to need some
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@ -1258,11 +1271,7 @@ int __key_link_begin(struct key *keyring,
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error_cancel:
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assoc_array_cancel_edit(edit);
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error_sem:
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if (index_key->type == &key_type_keyring)
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mutex_unlock(&keyring_serialise_link_lock);
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error_krsem:
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up_write(&keyring->sem);
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error:
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kleave(" = %d", ret);
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return ret;
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}
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@ -1312,9 +1321,6 @@ void __key_link_end(struct key *keyring,
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BUG_ON(index_key->type == NULL);
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kenter("%d,%s,", keyring->serial, index_key->type->name);
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if (index_key->type == &key_type_keyring)
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mutex_unlock(&keyring_serialise_link_lock);
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if (edit) {
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if (!edit->dead_leaf) {
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key_payload_reserve(keyring,
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@ -1323,6 +1329,9 @@ void __key_link_end(struct key *keyring,
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assoc_array_cancel_edit(edit);
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}
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up_write(&keyring->sem);
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if (index_key->type == &key_type_keyring)
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mutex_unlock(&keyring_serialise_link_lock);
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}
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/*
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@ -1358,7 +1367,7 @@ static int __key_link_check_restriction(struct key *keyring, struct key *key)
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*/
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int key_link(struct key *keyring, struct key *key)
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{
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struct assoc_array_edit *edit;
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struct assoc_array_edit *edit = NULL;
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int ret;
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kenter("{%d,%d}", keyring->serial, refcount_read(&keyring->usage));
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@ -1366,17 +1375,24 @@ int key_link(struct key *keyring, struct key *key)
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key_check(keyring);
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key_check(key);
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ret = __key_link_lock(keyring, &key->index_key);
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if (ret < 0)
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goto error;
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ret = __key_link_begin(keyring, &key->index_key, &edit);
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if (ret == 0) {
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if (ret < 0)
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goto error_end;
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kdebug("begun {%d,%d}", keyring->serial, refcount_read(&keyring->usage));
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ret = __key_link_check_restriction(keyring, key);
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if (ret == 0)
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ret = __key_link_check_live_key(keyring, key);
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if (ret == 0)
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__key_link(key, &edit);
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__key_link_end(keyring, &key->index_key, edit);
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}
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error_end:
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__key_link_end(keyring, &key->index_key, edit);
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error:
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kleave(" = %d {%d,%d}", ret, keyring->serial, refcount_read(&keyring->usage));
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return ret;
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}
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@ -343,7 +343,7 @@ static int construct_alloc_key(struct keyring_search_context *ctx,
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struct key_user *user,
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struct key **_key)
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{
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struct assoc_array_edit *edit;
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struct assoc_array_edit *edit = NULL;
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struct key *key;
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key_perm_t perm;
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key_ref_t key_ref;
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@ -372,6 +372,9 @@ static int construct_alloc_key(struct keyring_search_context *ctx,
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set_bit(KEY_FLAG_USER_CONSTRUCT, &key->flags);
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if (dest_keyring) {
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ret = __key_link_lock(dest_keyring, &ctx->index_key);
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if (ret < 0)
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goto link_lock_failed;
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ret = __key_link_begin(dest_keyring, &ctx->index_key, &edit);
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if (ret < 0)
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goto link_prealloc_failed;
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@ -423,6 +426,8 @@ link_check_failed:
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return ret;
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link_prealloc_failed:
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__key_link_end(dest_keyring, &ctx->index_key, edit);
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link_lock_failed:
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mutex_unlock(&user->cons_lock);
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key_put(key);
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kleave(" = %d [prelink]", ret);
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