asterisk/main/devicestate.c

819 lines
24 KiB
C

/*
* Asterisk -- An open source telephony toolkit.
*
* Copyright (C) 1999 - 2008, Digium, Inc.
*
* Mark Spencer <markster@digium.com>
* Russell Bryant <russell@digium.com>
*
* See http://www.asterisk.org for more information about
* the Asterisk project. Please do not directly contact
* any of the maintainers of this project for assistance;
* the project provides a web site, mailing lists and IRC
* channels for your use.
*
* This program is free software, distributed under the terms of
* the GNU General Public License Version 2. See the LICENSE file
* at the top of the source tree.
*/
/*! \file
*
* \brief Device state management
*
* \author Mark Spencer <markster@digium.com>
* \author Russell Bryant <russell@digium.com>
*
* \arg \ref AstExtState
*/
/*! \page AstExtState Extension and device states in Asterisk
*
* (Note that these descriptions of device states and extension
* states have not been updated to the way things work
* in Asterisk 1.6.)
*
* Asterisk has an internal system that reports states
* for an extension. By using the dialplan priority -1,
* also called a \b hint, a connection can be made from an
* extension to one or many devices. The state of the extension
* now depends on the combined state of the devices.
*
* The device state is basically based on the current calls.
* If the devicestate engine can find a call from or to the
* device, it's in use.
*
* Some channel drivers implement a callback function for
* a better level of reporting device states. The SIP channel
* has a complicated system for this, which is improved
* by adding call limits to the configuration.
*
* Functions that want to check the status of an extension
* register themself as a \b watcher.
* Watchers in this system can subscribe either to all extensions
* or just a specific extensions.
*
* For non-device related states, there's an API called
* devicestate providers. This is an extendible system for
* delivering state information from outside sources or
* functions within Asterisk. Currently we have providers
* for app_meetme.c - the conference bridge - and call
* parking (metermaids).
*
* There are manly three subscribers to extension states
* within Asterisk:
* - AMI, the manager interface
* - app_queue.c - the Queue dialplan application
* - SIP subscriptions, a.k.a. "blinking lamps" or
* "buddy lists"
*
* The CLI command "show hints" show last known state
*
* \note None of these handle user states, like an IM presence
* system. res_xmpp.c can subscribe and watch such states
* in jabber/xmpp based systems.
*
* \section AstDevStateArch Architecture for devicestates
*
* When a channel driver or asterisk app changes state for
* a watched object, it alerts the core. The core queues
* a change. When the change is processed, there's a query
* sent to the channel driver/provider if there's a function
* to handle that, otherwise a channel walk is issued to find
* a channel that involves the object.
*
* The changes are queued and processed by a separate thread.
* This thread calls the watchers subscribing to status
* changes for the object. For manager, this results
* in events. For SIP, NOTIFY requests.
*
* - Device states
* \arg \ref devicestate.c
* \arg \ref devicestate.h
*
* \section AstExtStateArch Architecture for extension states
*
* Hints are connected to extension. If an extension changes state
* it checks the hint devices. If there is a hint, the callbacks into
* device states are checked. The aggregated state is set for the hint
* and reported back.
*
* - Extension states
* \arg \ref AstENUM ast_extension_states
* \arg \ref pbx.c
* \arg \ref pbx.h
* - Structures
* - \ref ast_state_cb struct. Callbacks for watchers
* - Callback ast_state_cb_type
* - \ref ast_hint struct.
* - Functions
* - ast_extension_state_add()
* - ast_extension_state_del()
* - ast_get_hint()
*
*/
/*** MODULEINFO
<support_level>core</support_level>
***/
#include "asterisk.h"
ASTERISK_FILE_VERSION(__FILE__, "$Revision$")
#include "asterisk/_private.h"
#include "asterisk/channel.h"
#include "asterisk/utils.h"
#include "asterisk/lock.h"
#include "asterisk/linkedlists.h"
#include "asterisk/devicestate.h"
#include "asterisk/pbx.h"
#include "asterisk/app.h"
#include "asterisk/astobj2.h"
#include "asterisk/stasis.h"
#include "asterisk/event.h"
#include "asterisk/devicestate.h"
#define DEVSTATE_TOPIC_BUCKETS 57
/*! \brief Device state strings for printing */
static const char * const devstatestring[][2] = {
{ /* 0 AST_DEVICE_UNKNOWN */ "Unknown", "UNKNOWN" }, /*!< Valid, but unknown state */
{ /* 1 AST_DEVICE_NOT_INUSE */ "Not in use", "NOT_INUSE" }, /*!< Not used */
{ /* 2 AST_DEVICE IN USE */ "In use", "INUSE" }, /*!< In use */
{ /* 3 AST_DEVICE_BUSY */ "Busy", "BUSY" }, /*!< Busy */
{ /* 4 AST_DEVICE_INVALID */ "Invalid", "INVALID" }, /*!< Invalid - not known to Asterisk */
{ /* 5 AST_DEVICE_UNAVAILABLE */ "Unavailable", "UNAVAILABLE" }, /*!< Unavailable (not registered) */
{ /* 6 AST_DEVICE_RINGING */ "Ringing", "RINGING" }, /*!< Ring, ring, ring */
{ /* 7 AST_DEVICE_RINGINUSE */ "Ring+Inuse", "RINGINUSE" }, /*!< Ring and in use */
{ /* 8 AST_DEVICE_ONHOLD */ "On Hold", "ONHOLD" }, /*!< On Hold */
};
/*!\brief Mapping for channel states to device states */
static const struct chan2dev {
enum ast_channel_state chan;
enum ast_device_state dev;
} chan2dev[] = {
{ AST_STATE_DOWN, AST_DEVICE_NOT_INUSE },
{ AST_STATE_RESERVED, AST_DEVICE_INUSE },
{ AST_STATE_OFFHOOK, AST_DEVICE_INUSE },
{ AST_STATE_DIALING, AST_DEVICE_INUSE },
{ AST_STATE_RING, AST_DEVICE_INUSE },
{ AST_STATE_RINGING, AST_DEVICE_RINGING },
{ AST_STATE_UP, AST_DEVICE_INUSE },
{ AST_STATE_BUSY, AST_DEVICE_BUSY },
{ AST_STATE_DIALING_OFFHOOK, AST_DEVICE_INUSE },
{ AST_STATE_PRERING, AST_DEVICE_RINGING },
{ -100, -100 },
};
/*! \brief A device state provider (not a channel) */
struct devstate_prov {
char label[40];
ast_devstate_prov_cb_type callback;
AST_RWLIST_ENTRY(devstate_prov) list;
};
/*! \brief A list of providers */
static AST_RWLIST_HEAD_STATIC(devstate_provs, devstate_prov);
struct state_change {
AST_LIST_ENTRY(state_change) list;
enum ast_devstate_cache cachable;
char device[1];
};
/*! \brief The state change queue. State changes are queued
for processing by a separate thread */
static AST_LIST_HEAD_STATIC(state_changes, state_change);
/*! \brief The device state change notification thread */
static pthread_t change_thread = AST_PTHREADT_NULL;
/*! \brief Flag for the queue */
static ast_cond_t change_pending;
struct stasis_subscription *devstate_message_sub;
static struct stasis_topic *device_state_topic_all;
static struct stasis_caching_topic *device_state_topic_cached;
static struct stasis_message_type *device_state_message_type;
static struct stasis_topic_pool *device_state_topic_pool;
/* Forward declarations */
static int getproviderstate(const char *provider, const char *address);
/*! \brief Find devicestate as text message for output */
const char *ast_devstate2str(enum ast_device_state devstate)
{
return devstatestring[devstate][0];
}
/* Deprecated interface (not prefixed with ast_) */
const char *devstate2str(enum ast_device_state devstate)
{
return devstatestring[devstate][0];
}
enum ast_device_state ast_state_chan2dev(enum ast_channel_state chanstate)
{
int i;
chanstate &= 0xFFFF;
for (i = 0; chan2dev[i].chan != -100; i++) {
if (chan2dev[i].chan == chanstate) {
return chan2dev[i].dev;
}
}
return AST_DEVICE_UNKNOWN;
}
/* Parseable */
const char *ast_devstate_str(enum ast_device_state state)
{
return devstatestring[state][1];
}
enum ast_device_state ast_devstate_val(const char *val)
{
if (!strcasecmp(val, "NOT_INUSE"))
return AST_DEVICE_NOT_INUSE;
else if (!strcasecmp(val, "INUSE"))
return AST_DEVICE_INUSE;
else if (!strcasecmp(val, "BUSY"))
return AST_DEVICE_BUSY;
else if (!strcasecmp(val, "INVALID"))
return AST_DEVICE_INVALID;
else if (!strcasecmp(val, "UNAVAILABLE"))
return AST_DEVICE_UNAVAILABLE;
else if (!strcasecmp(val, "RINGING"))
return AST_DEVICE_RINGING;
else if (!strcasecmp(val, "RINGINUSE"))
return AST_DEVICE_RINGINUSE;
else if (!strcasecmp(val, "ONHOLD"))
return AST_DEVICE_ONHOLD;
return AST_DEVICE_UNKNOWN;
}
/*! \brief Find out if device is active in a call or not
\note find channels with the device's name in it
This function is only used for channels that does not implement
devicestate natively
*/
enum ast_device_state ast_parse_device_state(const char *device)
{
struct ast_channel *chan;
char match[AST_CHANNEL_NAME];
enum ast_device_state res;
snprintf(match, sizeof(match), "%s-", device);
if (!(chan = ast_channel_get_by_name_prefix(match, strlen(match)))) {
return AST_DEVICE_UNKNOWN;
}
res = (ast_channel_state(chan) == AST_STATE_RINGING) ? AST_DEVICE_RINGING : AST_DEVICE_INUSE;
chan = ast_channel_unref(chan);
return res;
}
static enum ast_device_state devstate_cached(const char *device)
{
RAII_VAR(struct stasis_message *, cached_msg, NULL, ao2_cleanup);
struct ast_device_state_message *device_state;
cached_msg = stasis_cache_get(ast_device_state_topic_cached(), ast_device_state_message_type(), device);
if (!cached_msg) {
return AST_DEVICE_UNKNOWN;
}
device_state = stasis_message_data(cached_msg);
return device_state->state;
}
/*! \brief Check device state through channel specific function or generic function */
static enum ast_device_state _ast_device_state(const char *device, int check_cache)
{
char *buf;
char *number;
const struct ast_channel_tech *chan_tech;
enum ast_device_state res;
/*! \brief Channel driver that provides device state */
char *tech;
/*! \brief Another provider of device state */
char *provider = NULL;
/* If the last known state is cached, just return that */
if (check_cache) {
res = devstate_cached(device);
if (res != AST_DEVICE_UNKNOWN) {
return res;
}
}
buf = ast_strdupa(device);
tech = strsep(&buf, "/");
if (!(number = buf)) {
provider = strsep(&tech, ":");
if (!tech) {
return AST_DEVICE_INVALID;
}
/* We have a provider */
number = tech;
tech = NULL;
ast_debug(3, "Checking if I can find provider for \"%s\" - number: %s\n", provider, number);
return getproviderstate(provider, number);
}
ast_debug(4, "No provider found, checking channel drivers for %s - %s\n", tech, number);
if (!(chan_tech = ast_get_channel_tech(tech)))
return AST_DEVICE_INVALID;
if (!(chan_tech->devicestate)) /* Does the channel driver support device state notification? */
return ast_parse_device_state(device); /* No, try the generic function */
res = chan_tech->devicestate(number);
if (res != AST_DEVICE_UNKNOWN)
return res;
res = ast_parse_device_state(device);
return res;
}
enum ast_device_state ast_device_state(const char *device)
{
/* This function is called from elsewhere in the code to find out the
* current state of a device. Check the cache, first. */
return _ast_device_state(device, 1);
}
/*! \brief Add device state provider */
int ast_devstate_prov_add(const char *label, ast_devstate_prov_cb_type callback)
{
struct devstate_prov *devprov;
if (!callback || !(devprov = ast_calloc(1, sizeof(*devprov))))
return -1;
devprov->callback = callback;
ast_copy_string(devprov->label, label, sizeof(devprov->label));
AST_RWLIST_WRLOCK(&devstate_provs);
AST_RWLIST_INSERT_HEAD(&devstate_provs, devprov, list);
AST_RWLIST_UNLOCK(&devstate_provs);
return 0;
}
/*! \brief Remove device state provider */
int ast_devstate_prov_del(const char *label)
{
struct devstate_prov *devcb;
int res = -1;
AST_RWLIST_WRLOCK(&devstate_provs);
AST_RWLIST_TRAVERSE_SAFE_BEGIN(&devstate_provs, devcb, list) {
if (!strcasecmp(devcb->label, label)) {
AST_RWLIST_REMOVE_CURRENT(list);
ast_free(devcb);
res = 0;
break;
}
}
AST_RWLIST_TRAVERSE_SAFE_END;
AST_RWLIST_UNLOCK(&devstate_provs);
return res;
}
/*! \brief Get provider device state */
static int getproviderstate(const char *provider, const char *address)
{
struct devstate_prov *devprov;
int res = AST_DEVICE_INVALID;
AST_RWLIST_RDLOCK(&devstate_provs);
AST_RWLIST_TRAVERSE(&devstate_provs, devprov, list) {
ast_debug(5, "Checking provider %s with %s\n", devprov->label, provider);
if (!strcasecmp(devprov->label, provider)) {
res = devprov->callback(address);
break;
}
}
AST_RWLIST_UNLOCK(&devstate_provs);
return res;
}
/*! Called by the state change thread to find out what the state is, and then
* to queue up the state change event */
static void do_state_change(const char *device, enum ast_devstate_cache cachable)
{
enum ast_device_state state;
state = _ast_device_state(device, 0);
ast_debug(3, "Changing state for %s - state %d (%s)\n", device, state, ast_devstate2str(state));
ast_publish_device_state(device, state, cachable);
}
int ast_devstate_changed_literal(enum ast_device_state state, enum ast_devstate_cache cachable, const char *device)
{
struct state_change *change;
/*
* If we know the state change (how nice of the caller of this function!)
* then we can just generate a device state event.
*
* Otherwise, we do the following:
* - Queue an event up to another thread that the state has changed
* - In the processing thread, it calls the callback provided by the
* device state provider (which may or may not be a channel driver)
* to determine the state.
* - If the device state provider does not know the state, or this is
* for a channel and the channel driver does not implement a device
* state callback, then we will look through the channel list to
* see if we can determine a state based on active calls.
* - Once a state has been determined, a device state event is generated.
*/
if (state != AST_DEVICE_UNKNOWN) {
ast_publish_device_state(device, state, cachable);
} else if (change_thread == AST_PTHREADT_NULL || !(change = ast_calloc(1, sizeof(*change) + strlen(device)))) {
/* we could not allocate a change struct, or */
/* there is no background thread, so process the change now */
do_state_change(device, cachable);
} else {
/* queue the change */
strcpy(change->device, device);
change->cachable = cachable;
AST_LIST_LOCK(&state_changes);
AST_LIST_INSERT_TAIL(&state_changes, change, list);
ast_cond_signal(&change_pending);
AST_LIST_UNLOCK(&state_changes);
}
return 1;
}
int ast_device_state_changed_literal(const char *dev)
{
return ast_devstate_changed_literal(AST_DEVICE_UNKNOWN, AST_DEVSTATE_CACHABLE, dev);
}
int ast_devstate_changed(enum ast_device_state state, enum ast_devstate_cache cachable, const char *fmt, ...)
{
char buf[AST_MAX_EXTENSION];
va_list ap;
va_start(ap, fmt);
vsnprintf(buf, sizeof(buf), fmt, ap);
va_end(ap);
return ast_devstate_changed_literal(state, cachable, buf);
}
int ast_device_state_changed(const char *fmt, ...)
{
char buf[AST_MAX_EXTENSION];
va_list ap;
va_start(ap, fmt);
vsnprintf(buf, sizeof(buf), fmt, ap);
va_end(ap);
return ast_devstate_changed_literal(AST_DEVICE_UNKNOWN, AST_DEVSTATE_CACHABLE, buf);
}
/*! \brief Go through the dev state change queue and update changes in the dev state thread */
static void *do_devstate_changes(void *data)
{
struct state_change *next, *current;
for (;;) {
/* This basically pops off any state change entries, resets the list back to NULL, unlocks, and processes each state change */
AST_LIST_LOCK(&state_changes);
if (AST_LIST_EMPTY(&state_changes))
ast_cond_wait(&change_pending, &state_changes.lock);
next = AST_LIST_FIRST(&state_changes);
AST_LIST_HEAD_INIT_NOLOCK(&state_changes);
AST_LIST_UNLOCK(&state_changes);
/* Process each state change */
while ((current = next)) {
next = AST_LIST_NEXT(current, list);
do_state_change(current->device, current->cachable);
ast_free(current);
}
}
return NULL;
}
#define MAX_SERVERS 64
static int devstate_change_aggregator_cb(void *obj, void *arg, void *data, int flags)
{
struct stasis_message *msg = obj;
struct ast_devstate_aggregate *aggregate = arg;
char *device = data;
struct ast_device_state_message *device_state = stasis_message_data(msg);
if (!device_state->eid || strcmp(device, device_state->device)) {
/* ignore aggregate states and devices that don't match */
return 0;
}
ast_debug(1, "Adding per-server state of '%s' for '%s'\n",
ast_devstate2str(device_state->state), device);
ast_devstate_aggregate_add(aggregate, device_state->state);
return 0;
}
static void device_state_dtor(void *obj)
{
struct ast_device_state_message *device_state = obj;
ast_string_field_free_memory(device_state);
ast_free(device_state->eid);
}
static struct ast_device_state_message *device_state_alloc(const char *device, enum ast_device_state state, enum ast_devstate_cache cachable, const struct ast_eid *eid)
{
RAII_VAR(struct ast_device_state_message *, new_device_state, ao2_alloc(sizeof(*new_device_state), device_state_dtor), ao2_cleanup);
if (!new_device_state || ast_string_field_init(new_device_state, 256)) {
return NULL;
}
ast_string_field_set(new_device_state, device, device);
new_device_state->state = state;
new_device_state->cachable = cachable;
if (eid) {
char eid_str[20];
struct ast_str *cache_id = ast_str_alloca(256);
new_device_state->eid = ast_malloc(sizeof(*eid));
if (!new_device_state->eid) {
return NULL;
}
*new_device_state->eid = *eid;
ast_eid_to_str(eid_str, sizeof(eid_str), new_device_state->eid);
ast_str_set(&cache_id, 0, "%s%s", eid_str, device);
ast_string_field_set(new_device_state, cache_id, ast_str_buffer(cache_id));
} else {
/* no EID makes this an aggregate state */
ast_string_field_set(new_device_state, cache_id, device);
}
ao2_ref(new_device_state, +1);
return new_device_state;
}
static enum ast_device_state get_aggregate_state(char *device)
{
RAII_VAR(struct ao2_container *, cached, NULL, ao2_cleanup);
struct ast_devstate_aggregate aggregate;
ast_devstate_aggregate_init(&aggregate);
cached = stasis_cache_dump(ast_device_state_topic_cached(), NULL);
ao2_callback_data(cached, OBJ_NODATA, devstate_change_aggregator_cb, &aggregate, device);
return ast_devstate_aggregate_result(&aggregate);
}
static int aggregate_state_changed(char *device, enum ast_device_state new_aggregate_state)
{
RAII_VAR(struct stasis_message *, cached_aggregate_msg, NULL, ao2_cleanup);
struct ast_device_state_message *cached_aggregate_device_state;
cached_aggregate_msg = stasis_cache_get(ast_device_state_topic_cached(), ast_device_state_message_type(), device);
if (!cached_aggregate_msg) {
return 1;
}
cached_aggregate_device_state = stasis_message_data(cached_aggregate_msg);
if (cached_aggregate_device_state->state == new_aggregate_state) {
return 0;
}
return 1;
}
static void devstate_change_collector_cb(void *data, struct stasis_subscription *sub, struct stasis_topic *topic, struct stasis_message *msg)
{
enum ast_device_state aggregate_state;
char *device;
struct ast_device_state_message *device_state;
RAII_VAR(struct stasis_message *, new_aggregate_msg, NULL, ao2_cleanup);
RAII_VAR(struct ast_device_state_message *, new_aggregate_state, NULL, ao2_cleanup);
if (stasis_cache_update_type() == stasis_message_type(msg)) {
struct stasis_cache_update *update = stasis_message_data(msg);
if (!update->new_snapshot) {
return;
}
msg = update->new_snapshot;
}
if (ast_device_state_message_type() != stasis_message_type(msg)) {
return;
}
device_state = stasis_message_data(msg);
if (!device_state->eid) {
/* ignore aggregate messages */
return;
}
device = ast_strdupa(device_state->device);
ast_debug(1, "Processing device state change for '%s'\n", device);
if (device_state->cachable == AST_DEVSTATE_NOT_CACHABLE) {
/* if it's not cachable, there will be no aggregate state to get
* and this should be passed through */
aggregate_state = device_state->state;
} else {
aggregate_state = get_aggregate_state(device);
ast_debug(1, "Aggregate devstate result is '%s' for '%s'\n",
ast_devstate2str(aggregate_state), device);
if (!aggregate_state_changed(device, aggregate_state)) {
/* No change since last reported device state */
ast_debug(1, "Aggregate state for device '%s' has not changed from '%s'\n",
device, ast_devstate2str(aggregate_state));
return;
}
}
ast_debug(1, "Aggregate state for device '%s' has changed to '%s'\n",
device, ast_devstate2str(aggregate_state));
ast_publish_device_state_full(device, aggregate_state, device_state->cachable, NULL);
}
/*! \brief Initialize the device state engine in separate thread */
int ast_device_state_engine_init(void)
{
ast_cond_init(&change_pending, NULL);
if (ast_pthread_create_background(&change_thread, NULL, do_devstate_changes, NULL) < 0) {
ast_log(LOG_ERROR, "Unable to start device state change thread.\n");
return -1;
}
return 0;
}
void ast_devstate_aggregate_init(struct ast_devstate_aggregate *agg)
{
memset(agg, 0, sizeof(*agg));
agg->state = AST_DEVICE_INVALID;
}
void ast_devstate_aggregate_add(struct ast_devstate_aggregate *agg, enum ast_device_state state)
{
static enum ast_device_state state_order[] = {
1, /* AST_DEVICE_UNKNOWN */
3, /* AST_DEVICE_NOT_INUSE */
6, /* AST_DEVICE_INUSE */
7, /* AST_DEVICE_BUSY */
0, /* AST_DEVICE_INVALID */
2, /* AST_DEVICE_UNAVAILABLE */
5, /* AST_DEVICE_RINGING */
8, /* AST_DEVICE_RINGINUSE */
4, /* AST_DEVICE_ONHOLD */
};
if (state == AST_DEVICE_RINGING) {
agg->ringing = 1;
} else if (state == AST_DEVICE_INUSE || state == AST_DEVICE_ONHOLD || state == AST_DEVICE_BUSY) {
agg->inuse = 1;
}
if (agg->ringing && agg->inuse) {
agg->state = AST_DEVICE_RINGINUSE;
} else if (state_order[state] > state_order[agg->state]) {
agg->state = state;
}
}
enum ast_device_state ast_devstate_aggregate_result(struct ast_devstate_aggregate *agg)
{
return agg->state;
}
struct stasis_topic *ast_device_state_topic_all(void)
{
return device_state_topic_all;
}
struct stasis_caching_topic *ast_device_state_topic_cached(void)
{
return device_state_topic_cached;
}
struct stasis_message_type *ast_device_state_message_type(void)
{
return device_state_message_type;
}
struct stasis_topic *ast_device_state_topic(const char *device)
{
return stasis_topic_pool_get_topic(device_state_topic_pool, device);
}
int ast_publish_device_state_full(
const char *device,
enum ast_device_state state,
enum ast_devstate_cache cachable,
struct ast_eid *eid)
{
RAII_VAR(struct ast_device_state_message *, device_state, NULL, ao2_cleanup);
RAII_VAR(struct stasis_message *, message, NULL, ao2_cleanup);
struct stasis_topic *device_specific_topic;
ast_assert(!ast_strlen_zero(device));
device_state = device_state_alloc(device, state, cachable, eid);
if (!device_state) {
return -1;
}
message = stasis_message_create(ast_device_state_message_type(), device_state);
device_specific_topic = ast_device_state_topic(device);
if (!device_specific_topic) {
return -1;
}
stasis_publish(device_specific_topic, message);
return 0;
}
static const char *device_state_get_id(struct stasis_message *message)
{
struct ast_device_state_message *device_state;
if (ast_device_state_message_type() != stasis_message_type(message)) {
return NULL;
}
device_state = stasis_message_data(message);
if (device_state->cachable == AST_DEVSTATE_NOT_CACHABLE) {
return NULL;
}
return device_state->cache_id;
}
static void devstate_exit(void)
{
ao2_cleanup(device_state_topic_all);
device_state_topic_all = NULL;
device_state_topic_cached = stasis_caching_unsubscribe(device_state_topic_cached);
ao2_cleanup(device_state_message_type);
device_state_message_type = NULL;
ao2_cleanup(device_state_topic_pool);
device_state_topic_pool = NULL;
}
int devstate_init(void)
{
device_state_topic_all = stasis_topic_create("ast_device_state_topic");
if (!device_state_topic_all) {
return -1;
}
device_state_topic_cached = stasis_caching_topic_create(device_state_topic_all, device_state_get_id);
if (!device_state_topic_cached) {
return -1;
}
device_state_message_type = stasis_message_type_create("ast_device_state_message");
if (!device_state_message_type) {
return -1;
}
device_state_topic_pool = stasis_topic_pool_create(ast_device_state_topic_all());
if (!device_state_topic_pool) {
return -1;
}
devstate_message_sub = stasis_subscribe(stasis_caching_get_topic(ast_device_state_topic_cached()), devstate_change_collector_cb, NULL);
if (!devstate_message_sub) {
ast_log(LOG_ERROR, "Failed to create subscription for the device state change collector\n");
return -1;
}
ast_register_atexit(devstate_exit);
return 0;
}