forked from jbagg/QtZeroConf
514 lines
13 KiB
C
514 lines
13 KiB
C
/***
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This file is part of avahi.
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avahi is free software; you can redistribute it and/or modify it
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under the terms of the GNU Lesser General Public License as
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published by the Free Software Foundation; either version 2.1 of the
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License, or (at your option) any later version.
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avahi is distributed in the hope that it will be useful, but WITHOUT
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ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
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or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General
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Public License for more details.
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You should have received a copy of the GNU Lesser General Public
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License along with avahi; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
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USA.
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***/
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#ifdef HAVE_CONFIG_H
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#include <config.h>
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#endif
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#include <string.h>
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#include <stdlib.h>
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#include <time.h>
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#include <avahi-common/timeval.h>
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#include <avahi-common/malloc.h>
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#include "cache.h"
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#include "log.h"
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#include "rr-util.h"
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static void remove_entry(AvahiCache *c, AvahiCacheEntry *e) {
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AvahiCacheEntry *t;
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assert(c);
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assert(e);
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/* avahi_log_debug("removing from cache: %p %p", c, e); */
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/* Remove from hash table */
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t = avahi_hashmap_lookup(c->hashmap, e->record->key);
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AVAHI_LLIST_REMOVE(AvahiCacheEntry, by_key, t, e);
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if (t)
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avahi_hashmap_replace(c->hashmap, t->record->key, t);
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else
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avahi_hashmap_remove(c->hashmap, e->record->key);
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/* Remove from linked list */
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AVAHI_LLIST_REMOVE(AvahiCacheEntry, entry, c->entries, e);
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if (e->time_event)
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avahi_time_event_free(e->time_event);
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avahi_multicast_lookup_engine_notify(c->server->multicast_lookup_engine, c->interface, e->record, AVAHI_BROWSER_REMOVE);
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avahi_record_unref(e->record);
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avahi_free(e);
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assert(c->n_entries >= 1);
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--c->n_entries;
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}
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AvahiCache *avahi_cache_new(AvahiServer *server, AvahiInterface *iface) {
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AvahiCache *c;
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assert(server);
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if (!(c = avahi_new(AvahiCache, 1))) {
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avahi_log_error(__FILE__": Out of memory.");
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return NULL; /* OOM */
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}
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c->server = server;
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c->interface = iface;
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if (!(c->hashmap = avahi_hashmap_new((AvahiHashFunc) avahi_key_hash, (AvahiEqualFunc) avahi_key_equal, NULL, NULL))) {
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avahi_log_error(__FILE__": Out of memory.");
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avahi_free(c);
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return NULL; /* OOM */
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}
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AVAHI_LLIST_HEAD_INIT(AvahiCacheEntry, c->entries);
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c->n_entries = 0;
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c->last_rand_timestamp = 0;
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return c;
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}
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void avahi_cache_free(AvahiCache *c) {
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assert(c);
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while (c->entries)
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remove_entry(c, c->entries);
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assert(c->n_entries == 0);
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avahi_hashmap_free(c->hashmap);
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avahi_free(c);
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}
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static AvahiCacheEntry *lookup_key(AvahiCache *c, AvahiKey *k) {
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assert(c);
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assert(k);
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assert(!avahi_key_is_pattern(k));
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return avahi_hashmap_lookup(c->hashmap, k);
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}
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void* avahi_cache_walk(AvahiCache *c, AvahiKey *pattern, AvahiCacheWalkCallback cb, void* userdata) {
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void* ret;
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assert(c);
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assert(pattern);
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assert(cb);
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if (avahi_key_is_pattern(pattern)) {
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AvahiCacheEntry *e, *n;
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for (e = c->entries; e; e = n) {
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n = e->entry_next;
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if (avahi_key_pattern_match(pattern, e->record->key))
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if ((ret = cb(c, pattern, e, userdata)))
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return ret;
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}
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} else {
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AvahiCacheEntry *e, *n;
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for (e = lookup_key(c, pattern); e; e = n) {
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n = e->by_key_next;
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if ((ret = cb(c, pattern, e, userdata)))
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return ret;
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}
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}
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return NULL;
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}
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static void* lookup_record_callback(AvahiCache *c, AvahiKey *pattern, AvahiCacheEntry *e, void *userdata) {
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assert(c);
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assert(pattern);
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assert(e);
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if (avahi_record_equal_no_ttl(e->record, userdata))
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return e;
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return NULL;
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}
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static AvahiCacheEntry *lookup_record(AvahiCache *c, AvahiRecord *r) {
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assert(c);
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assert(r);
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return avahi_cache_walk(c, r->key, lookup_record_callback, r);
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}
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static void next_expiry(AvahiCache *c, AvahiCacheEntry *e, unsigned percent);
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static void elapse_func(AvahiTimeEvent *t, void *userdata) {
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AvahiCacheEntry *e = userdata;
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/* char *txt; */
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unsigned percent = 0;
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assert(t);
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assert(e);
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/* txt = avahi_record_to_string(e->record); */
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switch (e->state) {
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case AVAHI_CACHE_EXPIRY_FINAL:
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case AVAHI_CACHE_POOF_FINAL:
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case AVAHI_CACHE_GOODBYE_FINAL:
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case AVAHI_CACHE_REPLACE_FINAL:
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remove_entry(e->cache, e);
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e = NULL;
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/* avahi_log_debug("Removing entry from cache due to expiration (%s)", txt); */
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break;
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case AVAHI_CACHE_VALID:
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case AVAHI_CACHE_POOF:
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e->state = AVAHI_CACHE_EXPIRY1;
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percent = 85;
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break;
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case AVAHI_CACHE_EXPIRY1:
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e->state = AVAHI_CACHE_EXPIRY2;
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percent = 90;
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break;
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case AVAHI_CACHE_EXPIRY2:
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e->state = AVAHI_CACHE_EXPIRY3;
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percent = 95;
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break;
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case AVAHI_CACHE_EXPIRY3:
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e->state = AVAHI_CACHE_EXPIRY_FINAL;
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percent = 100;
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break;
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}
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if (e) {
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assert(percent > 0);
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/* Request a cache update if we are subscribed to this entry */
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if (avahi_querier_shall_refresh_cache(e->cache->interface, e->record->key))
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avahi_interface_post_query(e->cache->interface, e->record->key, 0, NULL);
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/* Check again later */
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next_expiry(e->cache, e, percent);
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}
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/* avahi_free(txt); */
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}
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static void update_time_event(AvahiCache *c, AvahiCacheEntry *e) {
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assert(c);
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assert(e);
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if (e->time_event)
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avahi_time_event_update(e->time_event, &e->expiry);
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else
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e->time_event = avahi_time_event_new(c->server->time_event_queue, &e->expiry, elapse_func, e);
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}
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static void next_expiry(AvahiCache *c, AvahiCacheEntry *e, unsigned percent) {
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AvahiUsec usec, left, right;
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time_t now;
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assert(c);
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assert(e);
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assert(percent > 0 && percent <= 100);
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usec = (AvahiUsec) e->record->ttl * 10000;
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left = usec * percent;
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right = usec * (percent+2); /* 2% jitter */
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now = time(NULL);
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if (now >= c->last_rand_timestamp + 10) {
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c->last_rand = rand();
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c->last_rand_timestamp = now;
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}
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usec = left + (AvahiUsec) ((double) (right-left) * c->last_rand / (RAND_MAX+1.0));
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e->expiry = e->timestamp;
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avahi_timeval_add(&e->expiry, usec);
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/* g_message("wake up in +%lu seconds", e->expiry.tv_sec - e->timestamp.tv_sec); */
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update_time_event(c, e);
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}
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static void expire_in_one_second(AvahiCache *c, AvahiCacheEntry *e, AvahiCacheEntryState state) {
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assert(c);
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assert(e);
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e->state = state;
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gettimeofday(&e->expiry, NULL);
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avahi_timeval_add(&e->expiry, 1000000); /* 1s */
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update_time_event(c, e);
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}
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void avahi_cache_update(AvahiCache *c, AvahiRecord *r, int cache_flush, const AvahiAddress *a) {
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/* char *txt; */
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assert(c);
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assert(r && r->ref >= 1);
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/* txt = avahi_record_to_string(r); */
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if (r->ttl == 0) {
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/* This is a goodbye request */
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AvahiCacheEntry *e;
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if ((e = lookup_record(c, r)))
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expire_in_one_second(c, e, AVAHI_CACHE_GOODBYE_FINAL);
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} else {
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AvahiCacheEntry *e = NULL, *first;
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struct timeval now;
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gettimeofday(&now, NULL);
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/* This is an update request */
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if ((first = lookup_key(c, r->key))) {
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if (cache_flush) {
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/* For unique entries drop all entries older than one second */
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for (e = first; e; e = e->by_key_next) {
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AvahiUsec t;
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t = avahi_timeval_diff(&now, &e->timestamp);
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if (t > 1000000)
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expire_in_one_second(c, e, AVAHI_CACHE_REPLACE_FINAL);
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}
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}
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/* Look for exactly the same entry */
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for (e = first; e; e = e->by_key_next)
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if (avahi_record_equal_no_ttl(e->record, r))
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break;
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}
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if (e) {
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/* avahi_log_debug("found matching cache entry"); */
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/* We need to update the hash table key if we replace the
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* record */
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if (e->by_key_prev == NULL)
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avahi_hashmap_replace(c->hashmap, r->key, e);
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/* Update the record */
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avahi_record_unref(e->record);
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e->record = avahi_record_ref(r);
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/* avahi_log_debug("cache: updating %s", txt); */
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} else {
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/* No entry found, therefore we create a new one */
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/* avahi_log_debug("cache: couldn't find matching cache entry for %s", txt); */
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if (c->n_entries >= c->server->config.n_cache_entries_max)
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return;
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if (!(e = avahi_new(AvahiCacheEntry, 1))) {
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avahi_log_error(__FILE__": Out of memory");
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return;
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}
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e->cache = c;
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e->time_event = NULL;
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e->record = avahi_record_ref(r);
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/* Append to hash table */
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AVAHI_LLIST_PREPEND(AvahiCacheEntry, by_key, first, e);
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avahi_hashmap_replace(c->hashmap, e->record->key, first);
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/* Append to linked list */
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AVAHI_LLIST_PREPEND(AvahiCacheEntry, entry, c->entries, e);
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c->n_entries++;
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/* Notify subscribers */
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avahi_multicast_lookup_engine_notify(c->server->multicast_lookup_engine, c->interface, e->record, AVAHI_BROWSER_NEW);
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}
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e->origin = *a;
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e->timestamp = now;
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next_expiry(c, e, 80);
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e->state = AVAHI_CACHE_VALID;
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e->cache_flush = cache_flush;
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}
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/* avahi_free(txt); */
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}
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struct dump_data {
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AvahiDumpCallback callback;
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void* userdata;
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};
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static void dump_callback(void* key, void* data, void* userdata) {
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AvahiCacheEntry *e = data;
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AvahiKey *k = key;
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struct dump_data *dump_data = userdata;
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assert(k);
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assert(e);
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assert(data);
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for (; e; e = e->by_key_next) {
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char *t;
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if (!(t = avahi_record_to_string(e->record)))
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continue; /* OOM */
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dump_data->callback(t, dump_data->userdata);
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avahi_free(t);
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}
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}
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int avahi_cache_dump(AvahiCache *c, AvahiDumpCallback callback, void* userdata) {
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struct dump_data data;
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assert(c);
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assert(callback);
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callback(";;; CACHE DUMP FOLLOWS ;;;", userdata);
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data.callback = callback;
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data.userdata = userdata;
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avahi_hashmap_foreach(c->hashmap, dump_callback, &data);
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return 0;
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}
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int avahi_cache_entry_half_ttl(AvahiCache *c, AvahiCacheEntry *e) {
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struct timeval now;
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unsigned age;
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assert(c);
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assert(e);
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gettimeofday(&now, NULL);
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age = (unsigned) (avahi_timeval_diff(&now, &e->timestamp)/1000000);
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/* avahi_log_debug("age: %lli, ttl/2: %u", age, e->record->ttl); */
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return age >= e->record->ttl/2;
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}
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void avahi_cache_flush(AvahiCache *c) {
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assert(c);
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while (c->entries)
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remove_entry(c, c->entries);
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}
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/*** Passive observation of failure ***/
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static void* start_poof_callback(AvahiCache *c, AvahiKey *pattern, AvahiCacheEntry *e, void *userdata) {
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AvahiAddress *a = userdata;
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struct timeval now;
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assert(c);
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assert(pattern);
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assert(e);
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assert(a);
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gettimeofday(&now, NULL);
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switch (e->state) {
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case AVAHI_CACHE_VALID:
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/* The entry was perfectly valid till, now, so let's enter
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* POOF mode */
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e->state = AVAHI_CACHE_POOF;
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e->poof_address = *a;
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e->poof_timestamp = now;
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e->poof_num = 0;
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break;
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case AVAHI_CACHE_POOF:
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if (avahi_timeval_diff(&now, &e->poof_timestamp) < 1000000)
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break;
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e->poof_timestamp = now;
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e->poof_address = *a;
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e->poof_num ++;
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/* This is the 4th time we got no response, so let's
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* fucking remove this entry. */
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if (e->poof_num > 3)
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expire_in_one_second(c, e, AVAHI_CACHE_POOF_FINAL);
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break;
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default:
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;
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}
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return NULL;
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}
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void avahi_cache_start_poof(AvahiCache *c, AvahiKey *key, const AvahiAddress *a) {
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assert(c);
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assert(key);
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avahi_cache_walk(c, key, start_poof_callback, (void*) a);
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}
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void avahi_cache_stop_poof(AvahiCache *c, AvahiRecord *record, const AvahiAddress *a) {
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AvahiCacheEntry *e;
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assert(c);
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assert(record);
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assert(a);
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if (!(e = lookup_record(c, record)))
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return;
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/* This function is called for each response suppression
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record. If the matching cache entry is in POOF state and the
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query address is the same, we put it back into valid mode */
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if (e->state == AVAHI_CACHE_POOF || e->state == AVAHI_CACHE_POOF_FINAL)
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if (avahi_address_cmp(a, &e->poof_address) == 0) {
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e->state = AVAHI_CACHE_VALID;
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next_expiry(c, e, 80);
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}
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}
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