return ret;
}
+static void
+nfsd4_cltrack_upcall_lock(struct nfs4_client *clp)
+{
+ wait_on_bit_lock(&clp->cl_flags, NFSD4_CLIENT_UPCALL_LOCK,
+ TASK_UNINTERRUPTIBLE);
+}
+
+static void
+nfsd4_cltrack_upcall_unlock(struct nfs4_client *clp)
+{
+ smp_mb__before_atomic();
+ clear_bit(NFSD4_CLIENT_UPCALL_LOCK, &clp->cl_flags);
+ smp_mb__after_atomic();
+ wake_up_bit(&clp->cl_flags, NFSD4_CLIENT_UPCALL_LOCK);
+}
+
static void
nfsd4_umh_cltrack_create(struct nfs4_client *clp)
{
dprintk("%s: can't allocate memory for upcall!\n", __func__);
return;
}
+
has_session = nfsd4_cltrack_client_has_session(clp);
grace_start = nfsd4_cltrack_grace_start(nn->boot_time);
+
+ nfsd4_cltrack_upcall_lock(clp);
nfsd4_umh_cltrack_upcall("create", hexid, has_session, grace_start);
+ nfsd4_cltrack_upcall_unlock(clp);
+
kfree(has_session);
kfree(grace_start);
kfree(hexid);
dprintk("%s: can't allocate memory for upcall!\n", __func__);
return;
}
+
+ nfsd4_cltrack_upcall_lock(clp);
nfsd4_umh_cltrack_upcall("remove", hexid, NULL, NULL);
+ nfsd4_cltrack_upcall_unlock(clp);
+
kfree(hexid);
}
has_session = nfsd4_cltrack_client_has_session(clp);
legacy = nfsd4_cltrack_legacy_recdir(&clp->cl_name);
+
+ nfsd4_cltrack_upcall_lock(clp);
ret = nfsd4_umh_cltrack_upcall("check", hexid, has_session, legacy);
+ nfsd4_cltrack_upcall_unlock(clp);
+
kfree(has_session);
kfree(legacy);
kfree(hexid);
#define NFSD4_CLIENT_STABLE (2) /* client on stable storage */
#define NFSD4_CLIENT_RECLAIM_COMPLETE (3) /* reclaim_complete done */
#define NFSD4_CLIENT_CONFIRMED (4) /* client is confirmed */
+#define NFSD4_CLIENT_UPCALL_LOCK (5) /* upcall serialization */
#define NFSD4_CLIENT_CB_FLAG_MASK (1 << NFSD4_CLIENT_CB_UPDATE | \
1 << NFSD4_CLIENT_CB_KILL)
unsigned long cl_flags;