cb9cadad57
Change-Id: Ib246f1fbfce93274020ee93ce461e3d8bd8b9f17 Signed-off-by: Ed Warnicke <eaw@cisco.com>
521 lines
14 KiB
C
521 lines
14 KiB
C
/*
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*------------------------------------------------------------------
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* svmdb.c -- simple shared memory database
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*
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* Copyright (c) 2009 Cisco and/or its affiliates.
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at:
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*------------------------------------------------------------------
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <sys/types.h>
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#include <sys/mman.h>
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#include <sys/stat.h>
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#include <netinet/in.h>
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#include <signal.h>
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#include <pthread.h>
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#include <unistd.h>
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#include <time.h>
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#include <fcntl.h>
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#include <string.h>
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#include <vppinfra/clib.h>
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#include <vppinfra/vec.h>
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#include <vppinfra/hash.h>
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#include <vppinfra/bitmap.h>
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#include <vppinfra/fifo.h>
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#include <vppinfra/time.h>
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#include <vppinfra/mheap.h>
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#include <vppinfra/heap.h>
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#include <vppinfra/pool.h>
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#include <vppinfra/format.h>
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#include "svmdb.h"
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static void local_set_variable_nolock (svmdb_client_t *client,
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svmdb_namespace_t namespace,
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u8 * var, u8 * val, u32 elsize);
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always_inline void region_lock(svm_region_t *rp, int tag)
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{
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pthread_mutex_lock(&rp->mutex);
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#ifdef MUTEX_DEBUG
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rp->mutex_owner_pid = getpid();
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rp->mutex_owner_tag = tag;
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#endif
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}
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always_inline void region_unlock(svm_region_t *rp)
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{
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#ifdef MUTEX_DEBUG
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rp->mutex_owner_pid = 0;
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rp->mutex_owner_tag = 0;
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#endif
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pthread_mutex_unlock(&rp->mutex);
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}
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static svmdb_client_t *svmdb_map_internal (char *root_path, uword size)
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{
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svmdb_client_t *client = 0;
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svm_map_region_args_t *a = 0;
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svm_region_t *db_rp;
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void *oldheap;
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svmdb_shm_hdr_t *hp = 0;
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vec_validate (client, 0);
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vec_validate (a, 0);
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svm_region_init_chroot(root_path);
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a->root_path = root_path;
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a->name = "/db";
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a->size = size ? size : SVMDB_DEFAULT_SIZE;
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a->flags = SVM_FLAGS_MHEAP;
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db_rp = client->db_rp = svm_region_find_or_create (a);
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ASSERT(db_rp);
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vec_free (a);
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region_lock (client->db_rp, 10);
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/* Has someone else set up the shared-memory variable table? */
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if (db_rp->user_ctx) {
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client->shm = (void *) db_rp->user_ctx;
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client->pid = getpid();
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region_unlock (client->db_rp);
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ASSERT (client->shm->version == SVMDB_SHM_VERSION);
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return (client);
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}
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/* Nope, it's our problem... */
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/* Add a bogus client (pid=0) so the svm won't be deallocated */
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oldheap = svm_push_pvt_heap (db_rp);
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vec_add1(client->db_rp->client_pids, 0);
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svm_pop_heap (oldheap);
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oldheap = svm_push_data_heap (db_rp);
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vec_validate(hp, 0);
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hp->version = SVMDB_SHM_VERSION;
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hp->namespaces[SVMDB_NAMESPACE_STRING]
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= hash_create_string(0, sizeof(uword));
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hp->namespaces[SVMDB_NAMESPACE_VEC]
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= hash_create_string(0, sizeof(uword));
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db_rp->user_ctx = hp;
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client->shm = hp;
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svm_pop_heap (oldheap);
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region_unlock (client->db_rp);
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client->pid = getpid();
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return (client);
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}
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svmdb_client_t *svmdb_map (void)
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{
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return svmdb_map_internal (0, 0);
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}
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svmdb_client_t *svmdb_map_size (uword size)
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{
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return svmdb_map_internal (0, size);
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}
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svmdb_client_t *svmdb_map_chroot (char *root_path)
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{
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return svmdb_map_internal (root_path, 0);
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}
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svmdb_client_t *svmdb_map_chroot_size (char *root_path, uword size)
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{
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return svmdb_map_internal (root_path, size);
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}
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void svmdb_unmap (svmdb_client_t *client)
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{
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ASSERT(client);
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if (! svm_get_root_rp())
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return;
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svm_region_unmap ((void *) client->db_rp);
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svm_region_exit ();
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vec_free(client);
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}
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static void notify_value (svmdb_value_t * v, svmdb_action_t a)
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{
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int i;
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int rv;
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union sigval sv;
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u32 value;
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u32 *dead_registrations = 0;
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svmdb_notify_t *np;
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for (i = 0; i < vec_len (v->notifications); i++) {
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np = vec_elt_at_index (v->notifications, i);
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if (np->action == a) {
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value = (np->action<<28) | (np->opaque);
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sv.sival_ptr = (void *)(uword)value;
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do {
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rv = 0;
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if (sigqueue (np->pid, np->signum, sv) == 0)
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break;
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rv = errno;
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} while (rv == EAGAIN);
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if (rv == 0)
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continue;
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vec_add1 (dead_registrations, i);
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}
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}
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for (i = 0; i < vec_len (dead_registrations); i++) {
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np = vec_elt_at_index (v->notifications, dead_registrations[i]);
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clib_warning ("dead reg pid %d sig %d action %d opaque %x",
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np->pid, np->signum, np->action, np->opaque);
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vec_delete (v->notifications, 1, dead_registrations[i]);
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}
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vec_free (dead_registrations);
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}
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int svmdb_local_add_del_notification (svmdb_client_t *client,
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svmdb_notification_args_t *a)
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{
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uword *h;
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void *oldheap;
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hash_pair_t *hp;
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svmdb_shm_hdr_t * shm;
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u8 *dummy_value = 0;
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svmdb_value_t *value;
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svmdb_notify_t *np;
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int i;
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int rv = 0;
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ASSERT (a->elsize);
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region_lock (client->db_rp, 18);
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shm = client->shm;
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oldheap = svm_push_data_heap (client->db_rp);
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h = shm->namespaces[a->nspace];
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hp = hash_get_pair_mem (h, a->var);
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if (hp == 0) {
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local_set_variable_nolock (client, a->nspace, (u8 *)a->var,
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dummy_value, a->elsize);
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/* might have moved */
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h = shm->namespaces[a->nspace];
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hp = hash_get_pair_mem (h, a->var);
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ASSERT(hp);
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}
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value = pool_elt_at_index (shm->values, hp->value[0]);
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for (i = 0; i < vec_len (value->notifications); i++) {
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np = vec_elt_at_index (value->notifications, i);
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if ((np->pid == client->pid)
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&& (np->signum == a->signum)
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&& (np->action == a->action)
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&& (np->opaque == a->opaque)) {
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if (a->add_del == 0 /* delete */) {
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vec_delete (value->notifications, 1, i);
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goto out;
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} else { /* add */
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clib_warning (
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"%s: ignore dup reg pid %d signum %d action %d opaque %x",
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a->var, client->pid, a->signum, a->action, a->opaque);
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rv = -2;
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goto out;
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}
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}
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}
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if (a->add_del == 0) {
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rv = -3;
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goto out;
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}
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vec_add2 (value->notifications, np, 1);
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np->pid = client->pid;
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np->signum = a->signum;
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np->action = a->action;
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np->opaque = a->opaque;
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out:
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svm_pop_heap(oldheap);
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region_unlock (client->db_rp);
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return rv;
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}
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static void local_unset_variable_nolock (svmdb_client_t *client,
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svmdb_namespace_t namespace,
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char * var)
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{
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uword *h;
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svmdb_value_t *oldvalue;
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hash_pair_t *hp;
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h = client->shm->namespaces[namespace];
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hp = hash_get_pair_mem (h, var);
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if (hp) {
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oldvalue = pool_elt_at_index (client->shm->values, hp->value[0]);
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if (vec_len (oldvalue->notifications))
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notify_value (oldvalue, SVMDB_ACTION_UNSET);
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/* zero length value means unset */
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_vec_len (oldvalue->value) = 0;
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}
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client->shm->namespaces[namespace] = h;
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}
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void svmdb_local_unset_string_variable (svmdb_client_t *client, char *var)
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{
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void *oldheap;
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region_lock (client->db_rp, 11);
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oldheap = svm_push_data_heap (client->db_rp);
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local_unset_variable_nolock (client, SVMDB_NAMESPACE_STRING, var);
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svm_pop_heap(oldheap);
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region_unlock (client->db_rp);
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}
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static void local_set_variable_nolock (svmdb_client_t *client,
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svmdb_namespace_t namespace,
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u8 * var, u8 * val, u32 elsize)
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{
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uword *h;
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hash_pair_t *hp;
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u8 *name;
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svmdb_shm_hdr_t * shm;
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shm = client->shm;
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h = shm->namespaces[namespace];
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hp = hash_get_pair_mem (h, var);
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if (hp) {
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svmdb_value_t * oldvalue;
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oldvalue = pool_elt_at_index (client->shm->values, hp->value[0]);
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vec_alloc (oldvalue->value, vec_len(val)*elsize);
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memcpy (oldvalue->value, val, vec_len(val)*elsize);
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_vec_len (oldvalue->value) = vec_len(val);
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notify_value (oldvalue, SVMDB_ACTION_SET);
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} else {
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svmdb_value_t * newvalue;
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pool_get (shm->values, newvalue);
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memset (newvalue, 0, sizeof (*newvalue));
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newvalue->elsize = elsize;
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vec_alloc (newvalue->value, vec_len(val)*elsize);
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memcpy (newvalue->value, val, vec_len(val)*elsize);
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_vec_len (newvalue->value) = vec_len(val);
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name = format (0, "%s%c", var, 0);
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hash_set_mem (h, name, newvalue - shm->values);
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}
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shm->namespaces[namespace] = h;
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}
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void svmdb_local_set_string_variable (svmdb_client_t *client,
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char *var, char *val)
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{
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void *oldheap;
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region_lock (client->db_rp, 12);
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oldheap = svm_push_data_heap (client->db_rp);
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local_unset_variable_nolock (client, SVMDB_NAMESPACE_STRING, var);
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local_set_variable_nolock (client, SVMDB_NAMESPACE_STRING,
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(u8 *) var, (u8 *) val, 1 /* elsize */);
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svm_pop_heap(oldheap);
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region_unlock (client->db_rp);
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}
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static u8 * local_get_variable_nolock (svmdb_client_t *client,
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svmdb_namespace_t namespace,
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u8 * var)
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{
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uword *h;
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uword *p;
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svmdb_shm_hdr_t * shm;
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svmdb_value_t *oldvalue;
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shm = client->shm;
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h = shm->namespaces[namespace];
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p = hash_get_mem (h, var);
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if (p) {
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oldvalue = pool_elt_at_index (shm->values, p[0]);
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notify_value (oldvalue, SVMDB_ACTION_GET);
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return (oldvalue->value);
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}
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return 0;
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}
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void *svmdb_local_get_variable_reference (svmdb_client_t *client,
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svmdb_namespace_t namespace,
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char *var)
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{
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u8 *rv;
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region_lock (client->db_rp, 19);
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rv = local_get_variable_nolock (client, namespace, (u8 *)var);
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region_unlock (client->db_rp);
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return (void *)rv;
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}
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char *svmdb_local_get_string_variable (svmdb_client_t *client, char *var)
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{
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u8 *rv = 0;
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region_lock (client->db_rp, 13);
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rv = local_get_variable_nolock (client, SVMDB_NAMESPACE_STRING, (u8 *) var);
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if (rv && vec_len (rv)) {
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rv = format (0, "%s", rv);
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vec_add1(rv, 0);
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}
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region_unlock (client->db_rp);
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return ((char *) rv);
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}
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void svmdb_local_dump_strings (svmdb_client_t *client)
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{
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uword *h;
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u8 *key;
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u32 value;
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svmdb_shm_hdr_t *shm = client->shm;
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region_lock (client->db_rp, 14);
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h = client->shm->namespaces [SVMDB_NAMESPACE_STRING];
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hash_foreach_mem(key, value, h,
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({
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svmdb_value_t *v = pool_elt_at_index (shm->values, value);
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fformat(stdout, "%s: %s\n", key,
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vec_len(v->value) ? v->value : (u8 *)"(nil)");
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}));
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region_unlock (client->db_rp);
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}
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void svmdb_local_unset_vec_variable (svmdb_client_t *client, char *var)
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{
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void *oldheap;
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region_lock (client->db_rp, 15);
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oldheap = svm_push_data_heap (client->db_rp);
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local_unset_variable_nolock (client, SVMDB_NAMESPACE_VEC, var);
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svm_pop_heap(oldheap);
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region_unlock (client->db_rp);
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}
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void svmdb_local_set_vec_variable (svmdb_client_t *client,
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char *var, void *val_arg, u32 elsize)
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{
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u8 *val = (u8 *)val_arg;
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void *oldheap;
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region_lock (client->db_rp, 16);
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oldheap = svm_push_data_heap (client->db_rp);
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local_unset_variable_nolock (client, SVMDB_NAMESPACE_VEC, var);
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local_set_variable_nolock (client, SVMDB_NAMESPACE_VEC, (u8 *) var,
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val, elsize);
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svm_pop_heap(oldheap);
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region_unlock (client->db_rp);
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}
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void *svmdb_local_get_vec_variable (svmdb_client_t *client, char *var,
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u32 elsize)
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{
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u8 *rv = 0;
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u8 *copy = 0;
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region_lock (client->db_rp, 17);
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rv = local_get_variable_nolock (client, SVMDB_NAMESPACE_VEC, (u8 *) var);
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if (rv && vec_len(rv)) {
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/* Make a copy in process-local memory */
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vec_alloc (copy, vec_len(rv)*elsize);
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memcpy (copy, rv, vec_len(rv)*elsize);
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_vec_len(copy) = vec_len(rv);
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region_unlock (client->db_rp);
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return (copy);
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}
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region_unlock (client->db_rp);
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return (0);
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}
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void svmdb_local_dump_vecs (svmdb_client_t *client)
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{
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uword *h;
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u8 *key;
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u32 value;
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svmdb_shm_hdr_t *shm;
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region_lock (client->db_rp, 17);
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shm = client->shm;
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h = client->shm->namespaces [SVMDB_NAMESPACE_VEC];
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hash_foreach_mem(key, value, h,
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({
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svmdb_value_t *v = pool_elt_at_index (shm->values, value);
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(void) fformat(stdout, "%s:\n %U\n", key,
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format_hex_bytes, v->value,
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vec_len(v->value)*v->elsize);
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}));
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region_unlock (client->db_rp);
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}
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void *svmdb_local_find_or_add_vec_variable (svmdb_client_t *client,
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char *var, u32 nbytes)
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{
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void *oldheap;
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u8 *rv = 0;
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region_lock (client->db_rp, 18);
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oldheap = svm_push_data_heap (client->db_rp);
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rv = local_get_variable_nolock (client, SVMDB_NAMESPACE_VEC, (u8 *)var);
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if (rv) {
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goto out;
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} else {
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uword *h;
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u8 *name;
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svmdb_shm_hdr_t * shm;
|
|
svmdb_value_t * newvalue;
|
|
|
|
shm = client->shm;
|
|
h = shm->namespaces[SVMDB_NAMESPACE_VEC];
|
|
|
|
pool_get (shm->values, newvalue);
|
|
memset (newvalue, 0, sizeof (*newvalue));
|
|
newvalue->elsize = 1;
|
|
vec_alloc (newvalue->value, nbytes);
|
|
_vec_len (newvalue->value) = nbytes;
|
|
name = format (0, "%s%c", var, 0);
|
|
hash_set_mem (h, name, newvalue - shm->values);
|
|
shm->namespaces[SVMDB_NAMESPACE_VEC] = h;
|
|
rv = newvalue->value;
|
|
}
|
|
|
|
out:
|
|
svm_pop_heap(oldheap);
|
|
region_unlock (client->db_rp);
|
|
return (rv);
|
|
}
|