dlm: fix race between remove and lookup
It was possible for a remove message on an old rsb to be sent after a lookup message on a new rsb, where the rsbs were for the same resource name. This could lead to a missing directory entry for the new rsb. It is fixed by keeping a copy of the resource name being removed until after the remove has been sent. A lookup checks if this in-progress remove matches the name it is looking up. Signed-off-by: David Teigland <teigland@redhat.com>
This commit is contained in:
parent
1d7c484eeb
commit
05c32f47bf
3 changed files with 178 additions and 41 deletions
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@ -498,6 +498,13 @@ struct rcom_lock {
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char rl_lvb[0];
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};
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/*
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* The max number of resources per rsbtbl bucket that shrink will attempt
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* to remove in each iteration.
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*/
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#define DLM_REMOVE_NAMES_MAX 8
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struct dlm_ls {
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struct list_head ls_list; /* list of lockspaces */
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dlm_lockspace_t *ls_local_handle;
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@ -531,6 +538,12 @@ struct dlm_ls {
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int ls_new_rsb_count;
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struct list_head ls_new_rsb; /* new rsb structs */
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spinlock_t ls_remove_spin;
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char ls_remove_name[DLM_RESNAME_MAXLEN+1];
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char *ls_remove_names[DLM_REMOVE_NAMES_MAX];
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int ls_remove_len;
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int ls_remove_lens[DLM_REMOVE_NAMES_MAX];
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struct list_head ls_nodes; /* current nodes in ls */
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struct list_head ls_nodes_gone; /* dead node list, recovery */
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int ls_num_nodes; /* number of nodes in ls */
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185
fs/dlm/lock.c
185
fs/dlm/lock.c
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@ -1624,65 +1624,170 @@ static int remove_from_waiters_ms(struct dlm_lkb *lkb, struct dlm_message *ms)
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return error;
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}
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/* FIXME: make this more efficient */
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/* If there's an rsb for the same resource being removed, ensure
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that the remove message is sent before the new lookup message.
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It should be rare to need a delay here, but if not, then it may
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be worthwhile to add a proper wait mechanism rather than a delay. */
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static int shrink_bucket(struct dlm_ls *ls, int b)
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static void wait_pending_remove(struct dlm_rsb *r)
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{
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struct rb_node *n;
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struct dlm_ls *ls = r->res_ls;
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restart:
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spin_lock(&ls->ls_remove_spin);
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if (ls->ls_remove_len &&
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!rsb_cmp(r, ls->ls_remove_name, ls->ls_remove_len)) {
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log_debug(ls, "delay lookup for remove dir %d %s",
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r->res_dir_nodeid, r->res_name);
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spin_unlock(&ls->ls_remove_spin);
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msleep(1);
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goto restart;
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}
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spin_unlock(&ls->ls_remove_spin);
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}
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/*
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* ls_remove_spin protects ls_remove_name and ls_remove_len which are
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* read by other threads in wait_pending_remove. ls_remove_names
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* and ls_remove_lens are only used by the scan thread, so they do
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* not need protection.
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*/
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static void shrink_bucket(struct dlm_ls *ls, int b)
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{
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struct rb_node *n, *next;
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struct dlm_rsb *r;
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char *name;
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int our_nodeid = dlm_our_nodeid();
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int count = 0, found;
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int remote_count = 0;
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int i, len, rv;
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for (;;) {
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found = 0;
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spin_lock(&ls->ls_rsbtbl[b].lock);
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for (n = rb_first(&ls->ls_rsbtbl[b].toss); n; n = rb_next(n)) {
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r = rb_entry(n, struct dlm_rsb, res_hashnode);
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memset(&ls->ls_remove_lens, 0, sizeof(int) * DLM_REMOVE_NAMES_MAX);
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/* If we're the directory record for this rsb, and
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we're not the master of it, then we need to wait
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for the master node to send us a dir remove for
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before removing the dir record. */
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spin_lock(&ls->ls_rsbtbl[b].lock);
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for (n = rb_first(&ls->ls_rsbtbl[b].toss); n; n = next) {
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next = rb_next(n);
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r = rb_entry(n, struct dlm_rsb, res_hashnode);
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if (!dlm_no_directory(ls) && !is_master(r) &&
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(dlm_dir_nodeid(r) == our_nodeid)) {
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continue;
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}
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/* If we're the directory record for this rsb, and
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we're not the master of it, then we need to wait
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for the master node to send us a dir remove for
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before removing the dir record. */
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if (!time_after_eq(jiffies, r->res_toss_time +
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dlm_config.ci_toss_secs * HZ))
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continue;
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found = 1;
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break;
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if (!dlm_no_directory(ls) &&
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(r->res_master_nodeid != our_nodeid) &&
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(dlm_dir_nodeid(r) == our_nodeid)) {
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continue;
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}
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if (!found) {
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spin_unlock(&ls->ls_rsbtbl[b].lock);
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break;
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if (!time_after_eq(jiffies, r->res_toss_time +
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dlm_config.ci_toss_secs * HZ)) {
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continue;
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}
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if (kref_put(&r->res_ref, kill_rsb)) {
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rb_erase(&r->res_hashnode, &ls->ls_rsbtbl[b].toss);
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spin_unlock(&ls->ls_rsbtbl[b].lock);
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if (!dlm_no_directory(ls) &&
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(r->res_master_nodeid == our_nodeid) &&
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(dlm_dir_nodeid(r) != our_nodeid)) {
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/* We're the master of this rsb but we're not
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the directory record, so we need to tell the
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dir node to remove the dir record. */
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if (!dlm_no_directory(ls) && is_master(r) &&
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(dlm_dir_nodeid(r) != our_nodeid)) {
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send_remove(r);
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}
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ls->ls_remove_lens[remote_count] = r->res_length;
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memcpy(ls->ls_remove_names[remote_count], r->res_name,
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DLM_RESNAME_MAXLEN);
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remote_count++;
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dlm_free_rsb(r);
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count++;
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} else {
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spin_unlock(&ls->ls_rsbtbl[b].lock);
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log_error(ls, "tossed rsb in use %s", r->res_name);
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if (remote_count >= DLM_REMOVE_NAMES_MAX)
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break;
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continue;
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}
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}
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return count;
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if (!kref_put(&r->res_ref, kill_rsb)) {
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log_error(ls, "tossed rsb in use %s", r->res_name);
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continue;
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}
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rb_erase(&r->res_hashnode, &ls->ls_rsbtbl[b].toss);
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dlm_free_rsb(r);
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}
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spin_unlock(&ls->ls_rsbtbl[b].lock);
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/*
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* While searching for rsb's to free, we found some that require
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* remote removal. We leave them in place and find them again here
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* so there is a very small gap between removing them from the toss
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* list and sending the removal. Keeping this gap small is
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* important to keep us (the master node) from being out of sync
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* with the remote dir node for very long.
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*
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* From the time the rsb is removed from toss until just after
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* send_remove, the rsb name is saved in ls_remove_name. A new
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* lookup checks this to ensure that a new lookup message for the
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* same resource name is not sent just before the remove message.
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*/
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for (i = 0; i < remote_count; i++) {
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name = ls->ls_remove_names[i];
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len = ls->ls_remove_lens[i];
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spin_lock(&ls->ls_rsbtbl[b].lock);
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rv = dlm_search_rsb_tree(&ls->ls_rsbtbl[b].toss, name, len, &r);
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if (rv) {
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spin_unlock(&ls->ls_rsbtbl[b].lock);
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log_debug(ls, "remove_name not toss %s", name);
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continue;
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}
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if (r->res_master_nodeid != our_nodeid) {
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spin_unlock(&ls->ls_rsbtbl[b].lock);
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log_debug(ls, "remove_name master %d dir %d our %d %s",
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r->res_master_nodeid, r->res_dir_nodeid,
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our_nodeid, name);
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continue;
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}
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if (r->res_dir_nodeid == our_nodeid) {
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/* should never happen */
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spin_unlock(&ls->ls_rsbtbl[b].lock);
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log_error(ls, "remove_name dir %d master %d our %d %s",
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r->res_dir_nodeid, r->res_master_nodeid,
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our_nodeid, name);
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continue;
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}
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if (!time_after_eq(jiffies, r->res_toss_time +
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dlm_config.ci_toss_secs * HZ)) {
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spin_unlock(&ls->ls_rsbtbl[b].lock);
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log_debug(ls, "remove_name toss_time %lu now %lu %s",
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r->res_toss_time, jiffies, name);
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continue;
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}
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if (!kref_put(&r->res_ref, kill_rsb)) {
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spin_unlock(&ls->ls_rsbtbl[b].lock);
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log_error(ls, "remove_name in use %s", name);
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continue;
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}
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rb_erase(&r->res_hashnode, &ls->ls_rsbtbl[b].toss);
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/* block lookup of same name until we've sent remove */
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spin_lock(&ls->ls_remove_spin);
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ls->ls_remove_len = len;
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memcpy(ls->ls_remove_name, name, DLM_RESNAME_MAXLEN);
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spin_unlock(&ls->ls_remove_spin);
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spin_unlock(&ls->ls_rsbtbl[b].lock);
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send_remove(r);
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/* allow lookup of name again */
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spin_lock(&ls->ls_remove_spin);
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ls->ls_remove_len = 0;
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memset(ls->ls_remove_name, 0, DLM_RESNAME_MAXLEN);
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spin_unlock(&ls->ls_remove_spin);
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dlm_free_rsb(r);
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}
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}
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void dlm_scan_rsbs(struct dlm_ls *ls)
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@ -2608,6 +2713,8 @@ static int set_master(struct dlm_rsb *r, struct dlm_lkb *lkb)
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return 0;
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}
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wait_pending_remove(r);
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r->res_first_lkid = lkb->lkb_id;
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send_lookup(r, lkb);
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return 1;
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@ -506,6 +506,15 @@ static int new_lockspace(const char *name, const char *cluster,
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spin_lock_init(&ls->ls_rsbtbl[i].lock);
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}
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spin_lock_init(&ls->ls_remove_spin);
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for (i = 0; i < DLM_REMOVE_NAMES_MAX; i++) {
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ls->ls_remove_names[i] = kzalloc(DLM_RESNAME_MAXLEN+1,
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GFP_KERNEL);
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if (!ls->ls_remove_names[i])
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goto out_rsbtbl;
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}
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idr_init(&ls->ls_lkbidr);
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spin_lock_init(&ls->ls_lkbidr_spin);
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@ -556,7 +565,7 @@ static int new_lockspace(const char *name, const char *cluster,
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ls->ls_recover_buf = kmalloc(dlm_config.ci_buffer_size, GFP_NOFS);
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if (!ls->ls_recover_buf)
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goto out_lkbfree;
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goto out_lkbidr;
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ls->ls_slot = 0;
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ls->ls_num_slots = 0;
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spin_unlock(&lslist_lock);
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idr_destroy(&ls->ls_recover_idr);
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kfree(ls->ls_recover_buf);
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out_lkbfree:
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out_lkbidr:
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idr_destroy(&ls->ls_lkbidr);
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for (i = 0; i < DLM_REMOVE_NAMES_MAX; i++) {
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if (ls->ls_remove_names[i])
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kfree(ls->ls_remove_names[i]);
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}
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out_rsbtbl:
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vfree(ls->ls_rsbtbl);
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out_lsfree:
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if (do_unreg)
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@ -796,6 +810,9 @@ static int release_lockspace(struct dlm_ls *ls, int force)
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vfree(ls->ls_rsbtbl);
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for (i = 0; i < DLM_REMOVE_NAMES_MAX; i++)
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kfree(ls->ls_remove_names[i]);
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while (!list_empty(&ls->ls_new_rsb)) {
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rsb = list_first_entry(&ls->ls_new_rsb, struct dlm_rsb,
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res_hashchain);
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