pulseaudio/src/modules/module-device-restore.c

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/***
This file is part of PulseAudio.
Copyright 2006-2008 Lennart Poettering
PulseAudio is free software; you can redistribute it and/or modify
it under the terms of the GNU Lesser General Public License as published
by the Free Software Foundation; either version 2.1 of the License,
or (at your option) any later version.
PulseAudio is distributed in the hope that it will be useful, but
WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
General Public License for more details.
You should have received a copy of the GNU Lesser General Public License
along with PulseAudio; if not, write to the Free Software
Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
USA.
***/
#ifdef HAVE_CONFIG_H
#include <config.h>
#endif
#include <unistd.h>
#include <string.h>
#include <errno.h>
#include <sys/types.h>
#include <stdio.h>
#include <stdlib.h>
#include <ctype.h>
#include <pulse/xmalloc.h>
#include <pulse/volume.h>
#include <pulse/timeval.h>
#include <pulse/util.h>
#include <pulse/rtclock.h>
#include <pulsecore/core-error.h>
#include <pulsecore/module.h>
#include <pulsecore/core-util.h>
#include <pulsecore/modargs.h>
#include <pulsecore/log.h>
#include <pulsecore/core-subscribe.h>
#include <pulsecore/sink-input.h>
#include <pulsecore/source-output.h>
#include <pulsecore/namereg.h>
#include <pulsecore/database.h>
#include <pulsecore/tagstruct.h>
#include "module-device-restore-symdef.h"
PA_MODULE_AUTHOR("Lennart Poettering");
PA_MODULE_DESCRIPTION("Automatically restore the volume/mute state of devices");
PA_MODULE_VERSION(PACKAGE_VERSION);
PA_MODULE_LOAD_ONCE(TRUE);
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PA_MODULE_USAGE(
"restore_port=<Save/restore port?> "
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"restore_volume=<Save/restore volumes?> "
"restore_muted=<Save/restore muted states?>");
#define SAVE_INTERVAL (10 * PA_USEC_PER_SEC)
static const char* const valid_modargs[] = {
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"restore_volume",
"restore_muted",
"restore_port",
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NULL
};
struct userdata {
pa_core *core;
pa_module *module;
pa_subscription *subscription;
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pa_hook_slot
*sink_new_hook_slot,
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*sink_fixate_hook_slot,
*source_new_hook_slot,
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*source_fixate_hook_slot;
pa_time_event *save_time_event;
pa_database *database;
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pa_bool_t restore_volume:1;
pa_bool_t restore_muted:1;
pa_bool_t restore_port:1;
};
#define ENTRY_VERSION 3
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struct entry {
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uint8_t version;
pa_bool_t muted_valid, volume_valid, port_valid;
pa_bool_t muted;
pa_channel_map channel_map;
pa_cvolume volume;
char *port;
};
static void save_time_callback(pa_mainloop_api*a, pa_time_event* e, const struct timeval *t, void *userdata) {
struct userdata *u = userdata;
pa_assert(a);
pa_assert(e);
pa_assert(u);
pa_assert(e == u->save_time_event);
u->core->mainloop->time_free(u->save_time_event);
u->save_time_event = NULL;
pa_database_sync(u->database);
pa_log_info("Synced.");
}
static struct entry* entry_new(void) {
struct entry *r = pa_xnew0(struct entry, 1);
r->version = ENTRY_VERSION;
return r;
}
static void entry_free(struct entry* e) {
pa_assert(e);
pa_xfree(e->port);
pa_xfree(e);
}
static struct entry* entry_read(struct userdata *u, const char *name) {
pa_datum key, data;
struct entry *e = NULL;
pa_tagstruct *t = NULL;
const char* port;
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pa_assert(u);
pa_assert(name);
key.data = (char*) name;
key.size = strlen(name);
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pa_zero(data);
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if (!pa_database_get(u->database, &key, &data))
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goto fail;
t = pa_tagstruct_new(data.data, data.size);
e = entry_new();
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if (pa_tagstruct_getu8(t, &e->version) < 0 ||
e->version > ENTRY_VERSION ||
pa_tagstruct_get_boolean(t, &e->volume_valid) < 0 ||
pa_tagstruct_get_channel_map(t, &e->channel_map) < 0 ||
pa_tagstruct_get_cvolume(t, &e->volume) < 0 ||
pa_tagstruct_get_boolean(t, &e->muted_valid) < 0 ||
pa_tagstruct_get_boolean(t, &e->muted) < 0 ||
pa_tagstruct_get_boolean(t, &e->port_valid) < 0 ||
pa_tagstruct_gets(t, &port) < 0) {
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goto fail;
}
e->port = pa_xstrdup(port);
if (!pa_tagstruct_eof(t))
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goto fail;
if (e->volume_valid && !pa_channel_map_valid(&e->channel_map)) {
pa_log_warn("Invalid channel map stored in database for device %s", name);
goto fail;
}
if (e->volume_valid && (!pa_cvolume_valid(&e->volume) || !pa_cvolume_compatible_with_channel_map(&e->volume, &e->channel_map))) {
pa_log_warn("Volume and channel map don't match in database entry for device %s", name);
goto fail;
}
pa_tagstruct_free(t);
pa_datum_free(&data);
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return e;
fail:
pa_log_debug("Database contains invalid data for key: %s (probably pre-v1.0 data)", name);
if (e)
entry_free(e);
if (t)
pa_tagstruct_free(t);
pa_datum_free(&data);
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return NULL;
}
static pa_bool_t entry_write(struct userdata *u, const char *name, const struct entry *e) {
pa_tagstruct *t;
pa_datum key, data;
pa_bool_t r;
pa_assert(u);
pa_assert(name);
pa_assert(e);
t = pa_tagstruct_new(NULL, 0);
pa_tagstruct_putu8(t, e->version);
pa_tagstruct_put_boolean(t, e->volume_valid);
pa_tagstruct_put_channel_map(t, &e->channel_map);
pa_tagstruct_put_cvolume(t, &e->volume);
pa_tagstruct_put_boolean(t, e->muted_valid);
pa_tagstruct_put_boolean(t, e->muted);
pa_tagstruct_put_boolean(t, e->port_valid);
pa_tagstruct_puts(t, e->port);
key.data = (char *) name;
key.size = strlen(name);
data.data = (void*)pa_tagstruct_data(t, &data.size);
r = (pa_database_set(u->database, &key, &data, TRUE) == 0);
pa_tagstruct_free(t);
return r;
}
static struct entry* entry_copy(const struct entry *e) {
struct entry* r;
pa_assert(e);
r = entry_new();
*r = *e;
r->port = pa_xstrdup(e->port);
return r;
}
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static void trigger_save(struct userdata *u) {
if (u->save_time_event)
return;
u->save_time_event = pa_core_rttime_new(u->core, pa_rtclock_now() + SAVE_INTERVAL, save_time_callback, u);
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}
static pa_bool_t entries_equal(const struct entry *a, const struct entry *b) {
pa_cvolume t;
if (a->port_valid != b->port_valid ||
(a->port_valid && !pa_streq(a->port, b->port)))
return FALSE;
if (a->muted_valid != b->muted_valid ||
(a->muted_valid && (a->muted != b->muted)))
return FALSE;
t = b->volume;
if (a->volume_valid != b->volume_valid ||
(a->volume_valid && !pa_cvolume_equal(pa_cvolume_remap(&t, &b->channel_map, &a->channel_map), &a->volume)))
return FALSE;
return TRUE;
}
static void subscribe_callback(pa_core *c, pa_subscription_event_type_t t, uint32_t idx, void *userdata) {
struct userdata *u = userdata;
struct entry *entry, *old;
char *name;
pa_assert(c);
pa_assert(u);
if (t != (PA_SUBSCRIPTION_EVENT_SINK|PA_SUBSCRIPTION_EVENT_NEW) &&
t != (PA_SUBSCRIPTION_EVENT_SINK|PA_SUBSCRIPTION_EVENT_CHANGE) &&
t != (PA_SUBSCRIPTION_EVENT_SOURCE|PA_SUBSCRIPTION_EVENT_NEW) &&
t != (PA_SUBSCRIPTION_EVENT_SOURCE|PA_SUBSCRIPTION_EVENT_CHANGE))
return;
if ((t & PA_SUBSCRIPTION_EVENT_FACILITY_MASK) == PA_SUBSCRIPTION_EVENT_SINK) {
pa_sink *sink;
if (!(sink = pa_idxset_get_by_index(c->sinks, idx)))
return;
name = pa_sprintf_malloc("sink:%s", sink->name);
if ((old = entry_read(u, name)))
entry = entry_copy(old);
else
entry = entry_new();
if (sink->save_volume) {
entry->channel_map = sink->channel_map;
entry->volume = *pa_sink_get_volume(sink, FALSE);
entry->volume_valid = TRUE;
}
if (sink->save_muted) {
entry->muted = pa_sink_get_mute(sink, FALSE);
entry->muted_valid = TRUE;
}
if (sink->save_port) {
pa_xfree(entry->port);
entry->port = pa_xstrdup(sink->active_port ? sink->active_port->name : "");
entry->port_valid = TRUE;
}
} else {
pa_source *source;
pa_assert((t & PA_SUBSCRIPTION_EVENT_FACILITY_MASK) == PA_SUBSCRIPTION_EVENT_SOURCE);
if (!(source = pa_idxset_get_by_index(c->sources, idx)))
return;
name = pa_sprintf_malloc("source:%s", source->name);
if ((old = entry_read(u, name)))
entry = entry_copy(old);
else
entry = entry_new();
if (source->save_volume) {
entry->channel_map = source->channel_map;
entry->volume = *pa_source_get_volume(source, FALSE);
entry->volume_valid = TRUE;
}
if (source->save_muted) {
entry->muted = pa_source_get_mute(source, FALSE);
entry->muted_valid = TRUE;
}
if (source->save_port) {
pa_xfree(entry->port);
entry->port = pa_xstrdup(source->active_port ? source->active_port->name : "");
entry->port_valid = TRUE;
}
}
pa_assert(entry);
if (old) {
if (entries_equal(old, entry)) {
entry_free(old);
entry_free(entry);
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pa_xfree(name);
return;
}
entry_free(old);
}
pa_log_info("Storing volume/mute/port for device %s.", name);
if (entry_write(u, name, entry))
trigger_save(u);
entry_free(entry);
pa_xfree(name);
}
static pa_hook_result_t sink_new_hook_callback(pa_core *c, pa_sink_new_data *new_data, struct userdata *u) {
char *name;
struct entry *e;
pa_assert(c);
pa_assert(new_data);
pa_assert(u);
pa_assert(u->restore_port);
name = pa_sprintf_malloc("sink:%s", new_data->name);
if ((e = entry_read(u, name))) {
if (e->port_valid) {
if (!new_data->active_port) {
pa_log_info("Restoring port for sink %s.", name);
pa_sink_new_data_set_port(new_data, e->port);
new_data->save_port = TRUE;
} else
pa_log_debug("Not restoring port for sink %s, because already set.", name);
}
entry_free(e);
}
pa_xfree(name);
return PA_HOOK_OK;
}
static pa_hook_result_t sink_fixate_hook_callback(pa_core *c, pa_sink_new_data *new_data, struct userdata *u) {
char *name;
struct entry *e;
pa_assert(c);
pa_assert(new_data);
pa_assert(u);
pa_assert(u->restore_volume || u->restore_muted);
name = pa_sprintf_malloc("sink:%s", new_data->name);
if ((e = entry_read(u, name))) {
if (u->restore_volume && e->volume_valid) {
if (!new_data->volume_is_set) {
pa_cvolume v;
pa_log_info("Restoring volume for sink %s.", new_data->name);
v = e->volume;
pa_cvolume_remap(&v, &e->channel_map, &new_data->channel_map);
pa_sink_new_data_set_volume(new_data, &v);
new_data->save_volume = TRUE;
} else
pa_log_debug("Not restoring volume for sink %s, because already set.", new_data->name);
}
if (u->restore_muted && e->muted_valid) {
if (!new_data->muted_is_set) {
pa_log_info("Restoring mute state for sink %s.", new_data->name);
pa_sink_new_data_set_muted(new_data, e->muted);
new_data->save_muted = TRUE;
} else
pa_log_debug("Not restoring mute state for sink %s, because already set.", new_data->name);
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}
entry_free(e);
}
pa_xfree(name);
return PA_HOOK_OK;
}
static pa_hook_result_t source_new_hook_callback(pa_core *c, pa_source_new_data *new_data, struct userdata *u) {
char *name;
struct entry *e;
pa_assert(c);
pa_assert(new_data);
pa_assert(u);
pa_assert(u->restore_port);
name = pa_sprintf_malloc("source:%s", new_data->name);
if ((e = entry_read(u, name))) {
if (e->port_valid) {
if (!new_data->active_port) {
pa_log_info("Restoring port for source %s.", name);
pa_source_new_data_set_port(new_data, e->port);
new_data->save_port = TRUE;
} else
pa_log_debug("Not restoring port for source %s, because already set.", name);
}
entry_free(e);
}
pa_xfree(name);
return PA_HOOK_OK;
}
static pa_hook_result_t source_fixate_hook_callback(pa_core *c, pa_source_new_data *new_data, struct userdata *u) {
char *name;
struct entry *e;
pa_assert(c);
pa_assert(new_data);
pa_assert(u);
pa_assert(u->restore_volume || u->restore_muted);
name = pa_sprintf_malloc("source:%s", new_data->name);
if ((e = entry_read(u, name))) {
if (u->restore_volume && e->volume_valid) {
if (!new_data->volume_is_set) {
pa_cvolume v;
pa_log_info("Restoring volume for source %s.", new_data->name);
v = e->volume;
pa_cvolume_remap(&v, &e->channel_map, &new_data->channel_map);
pa_source_new_data_set_volume(new_data, &v);
new_data->save_volume = TRUE;
} else
pa_log_debug("Not restoring volume for source %s, because already set.", new_data->name);
}
if (u->restore_muted && e->muted_valid) {
if (!new_data->muted_is_set) {
pa_log_info("Restoring mute state for source %s.", new_data->name);
pa_source_new_data_set_muted(new_data, e->muted);
new_data->save_muted = TRUE;
} else
pa_log_debug("Not restoring mute state for source %s, because already set.", new_data->name);
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}
entry_free(e);
}
pa_xfree(name);
return PA_HOOK_OK;
}
int pa__init(pa_module*m) {
pa_modargs *ma = NULL;
struct userdata *u;
char *fname;
pa_sink *sink;
pa_source *source;
uint32_t idx;
pa_bool_t restore_volume = TRUE, restore_muted = TRUE, restore_port = TRUE;
pa_assert(m);
if (!(ma = pa_modargs_new(m->argument, valid_modargs))) {
pa_log("Failed to parse module arguments");
goto fail;
}
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if (pa_modargs_get_value_boolean(ma, "restore_volume", &restore_volume) < 0 ||
pa_modargs_get_value_boolean(ma, "restore_muted", &restore_muted) < 0 ||
pa_modargs_get_value_boolean(ma, "restore_port", &restore_port) < 0) {
pa_log("restore_port=, restore_volume= and restore_muted= expect boolean arguments");
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goto fail;
}
if (!restore_muted && !restore_volume && !restore_port)
pa_log_warn("Neither restoring volume, nor restoring muted, nor restoring port enabled!");
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m->userdata = u = pa_xnew0(struct userdata, 1);
u->core = m->core;
u->module = m;
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u->restore_volume = restore_volume;
u->restore_muted = restore_muted;
u->restore_port = restore_port;
u->subscription = pa_subscription_new(m->core, PA_SUBSCRIPTION_MASK_SINK|PA_SUBSCRIPTION_MASK_SOURCE, subscribe_callback, u);
if (restore_port) {
u->sink_new_hook_slot = pa_hook_connect(&m->core->hooks[PA_CORE_HOOK_SINK_NEW], PA_HOOK_EARLY, (pa_hook_cb_t) sink_new_hook_callback, u);
u->source_new_hook_slot = pa_hook_connect(&m->core->hooks[PA_CORE_HOOK_SOURCE_NEW], PA_HOOK_EARLY, (pa_hook_cb_t) source_new_hook_callback, u);
}
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if (restore_muted || restore_volume) {
u->sink_fixate_hook_slot = pa_hook_connect(&m->core->hooks[PA_CORE_HOOK_SINK_FIXATE], PA_HOOK_EARLY, (pa_hook_cb_t) sink_fixate_hook_callback, u);
u->source_fixate_hook_slot = pa_hook_connect(&m->core->hooks[PA_CORE_HOOK_SOURCE_FIXATE], PA_HOOK_EARLY, (pa_hook_cb_t) source_fixate_hook_callback, u);
}
if (!(fname = pa_state_path("device-volumes", TRUE)))
goto fail;
if (!(u->database = pa_database_open(fname, TRUE))) {
pa_log("Failed to open volume database '%s': %s", fname, pa_cstrerror(errno));
pa_xfree(fname);
goto fail;
}
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pa_log_info("Successfully opened database file '%s'.", fname);
pa_xfree(fname);
for (sink = pa_idxset_first(m->core->sinks, &idx); sink; sink = pa_idxset_next(m->core->sinks, &idx))
subscribe_callback(m->core, PA_SUBSCRIPTION_EVENT_SINK|PA_SUBSCRIPTION_EVENT_NEW, sink->index, u);
for (source = pa_idxset_first(m->core->sources, &idx); source; source = pa_idxset_next(m->core->sources, &idx))
subscribe_callback(m->core, PA_SUBSCRIPTION_EVENT_SOURCE|PA_SUBSCRIPTION_EVENT_NEW, source->index, u);
pa_modargs_free(ma);
return 0;
fail:
pa__done(m);
if (ma)
pa_modargs_free(ma);
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return -1;
}
void pa__done(pa_module*m) {
struct userdata* u;
pa_assert(m);
if (!(u = m->userdata))
return;
if (u->subscription)
pa_subscription_free(u->subscription);
if (u->sink_fixate_hook_slot)
pa_hook_slot_free(u->sink_fixate_hook_slot);
if (u->source_fixate_hook_slot)
pa_hook_slot_free(u->source_fixate_hook_slot);
if (u->sink_new_hook_slot)
pa_hook_slot_free(u->sink_new_hook_slot);
if (u->source_new_hook_slot)
pa_hook_slot_free(u->source_new_hook_slot);
if (u->save_time_event)
u->core->mainloop->time_free(u->save_time_event);
if (u->database)
pa_database_close(u->database);
pa_xfree(u);
}