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258 lines
8.1 KiB
C
258 lines
8.1 KiB
C
/* -*- mode: c; c-basic-offset: 4; tab-width: 4; indent-tabs-mode: t -*-
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*
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* audacious.c: conky support for audacious music player
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*
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* Copyright (C) 2005-2007 Philip Kovacs pkovacs@users.sourceforge.net
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301
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* USA.
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*
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* vim: ts=4 sw=4 noet ai cindent syntax=c
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*
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*/
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#include "config.h"
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#include "conky.h"
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#include "logging.h"
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#include "audacious.h"
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#include <glib.h>
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#ifndef AUDACIOUS_LEGACY
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#include <glib-object.h>
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#include <audacious/audctrl.h>
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#include <audacious/dbus.h>
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#else
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#include <audacious/beepctrl.h>
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#define audacious_remote_is_running(x) \
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xmms_remote_is_running(x)
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#define audacious_remote_is_paused(x) \
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xmms_remote_is_paused(x)
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#define audacious_remote_is_playing(x) \
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xmms_remote_is_playing(x)
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#define audacious_remote_get_playlist_pos(x) \
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xmms_remote_get_playlist_pos(x)
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#define audacious_remote_get_playlist_title(x, y) \
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xmms_remote_get_playlist_title(x, y)
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#define audacious_remote_get_playlist_time(x, y) \
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xmms_remote_get_playlist_time(x, y)
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#define audacious_remote_get_output_time(x) \
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xmms_remote_get_output_time(x)
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#define audacious_remote_get_info(w, x, y, z) \
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xmms_remote_get_info(w, x, y, z)
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#define audacious_remote_get_playlist_file(x, y) \
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xmms_remote_get_playlist_file(x, y)
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#define audacious_remote_get_playlist_length(x) \
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xmms_remote_get_playlist_length(x)
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#endif
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/* access to this item array is synchronized */
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static audacious_t audacious_items;
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/* -----------------------------------------
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* Conky update function for audacious data.
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* ----------------------------------------- */
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void update_audacious(void)
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{
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/* The worker thread is updating audacious_items array asynchronously
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* to the main conky thread.
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* We merely copy the audacious_items array into the main thread's info
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* structure when the main thread's update cycle fires. */
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if (!info.audacious.p_timed_thread) {
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if (create_audacious_thread() != 0) {
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CRIT_ERR(NULL, NULL, "unable to create audacious thread!");
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}
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timed_thread_register(info.audacious.p_timed_thread,
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&info.audacious.p_timed_thread);
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}
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timed_thread_lock(info.audacious.p_timed_thread);
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memcpy(&info.audacious.items, audacious_items, sizeof(audacious_items));
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timed_thread_unlock(info.audacious.p_timed_thread);
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}
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/* ---------------------------------------------------------
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* Create a worker thread for audacious media player status.
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*
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* Returns 0 on success, -1 on error.
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* --------------------------------------------------------- */
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int create_audacious_thread(void)
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{
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if (!info.audacious.p_timed_thread) {
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info.audacious.p_timed_thread =
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timed_thread_create(audacious_thread_func, NULL,
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info.music_player_interval * 1000000);
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}
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if (!info.audacious.p_timed_thread
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|| timed_thread_run(info.audacious.p_timed_thread)) {
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return -1;
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}
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return 0;
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}
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/* ---------------------------------------
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* Destroy audacious player status thread.
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*
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* Returns 0 on success, -1 on error.
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* --------------------------------------- */
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int destroy_audacious_thread(void)
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{
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/* Is a worker is thread running? If not, no error. */
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if (info.audacious.p_timed_thread) {
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timed_thread_destroy(info.audacious.p_timed_thread,
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&info.audacious.p_timed_thread);
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}
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return 0;
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}
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/* ---------------------------------------------------
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* Worker thread function for audacious data sampling.
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* --------------------------------------------------- */
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__attribute((noreturn))
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void *audacious_thread_func(void *pvoid)
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{
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static audacious_t items;
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gint playpos, frames, length;
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gint rate, freq, chans, vol;
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gchar *psong, *pfilename;
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#ifndef AUDACIOUS_LEGACY
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DBusGProxy *session = NULL;
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DBusGConnection *connection = NULL;
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#else
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gint session;
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#endif
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pvoid = (void *) pvoid; /* avoid warning */
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session = 0;
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psong = NULL;
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pfilename = NULL;
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#ifndef AUDACIOUS_LEGACY
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g_type_init();
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connection = dbus_g_bus_get(DBUS_BUS_SESSION, NULL);
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if (!connection) {
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CRIT_ERR(NULL, NULL, "unable to establish dbus connection");
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}
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session = dbus_g_proxy_new_for_name(connection, AUDACIOUS_DBUS_SERVICE,
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AUDACIOUS_DBUS_PATH, AUDACIOUS_DBUS_INTERFACE);
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if (!session) {
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CRIT_ERR(NULL, NULL, "unable to create dbus proxy");
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}
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#endif /* AUDACIOUS_LEGACY */
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/* Loop until the main thread resets the runnable signal. */
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while (1) {
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do {
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if (!audacious_remote_is_running(session)) {
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memset(&items, 0, sizeof(items));
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strcpy(items[AUDACIOUS_STATUS], "Not running");
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break;
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}
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/* Player status */
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if (audacious_remote_is_paused(session)) {
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strcpy(items[AUDACIOUS_STATUS], "Paused");
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} else if (audacious_remote_is_playing(session)) {
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strcpy(items[AUDACIOUS_STATUS], "Playing");
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} else {
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strcpy(items[AUDACIOUS_STATUS], "Stopped");
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}
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/* Current song title */
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playpos = audacious_remote_get_playlist_pos(session);
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psong = audacious_remote_get_playlist_title(session, playpos);
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if (psong) {
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strncpy(items[AUDACIOUS_TITLE], psong,
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sizeof(items[AUDACIOUS_TITLE]) - 1);
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g_free(psong);
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psong = NULL;
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}
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/* Current song length as MM:SS */
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frames = audacious_remote_get_playlist_time(session, playpos);
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length = frames / 1000;
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snprintf(items[AUDACIOUS_LENGTH], sizeof(items[AUDACIOUS_LENGTH]) - 1,
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"%d:%.2d", length / 60, length % 60);
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/* Current song length in seconds */
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snprintf(items[AUDACIOUS_LENGTH_SECONDS],
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sizeof(items[AUDACIOUS_LENGTH_SECONDS]) - 1, "%d", length);
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/* Current song position as MM:SS */
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frames = audacious_remote_get_output_time(session);
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length = frames / 1000;
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snprintf(items[AUDACIOUS_POSITION],
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sizeof(items[AUDACIOUS_POSITION]) - 1, "%d:%.2d", length / 60,
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length % 60);
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/* Current song position in seconds */
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snprintf(items[AUDACIOUS_POSITION_SECONDS],
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sizeof(items[AUDACIOUS_POSITION_SECONDS]) - 1, "%d", length);
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/* Current song bitrate */
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audacious_remote_get_info(session, &rate, &freq, &chans);
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snprintf(items[AUDACIOUS_BITRATE], sizeof(items[AUDACIOUS_BITRATE]) - 1,
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"%d", rate);
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/* Current song frequency */
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snprintf(items[AUDACIOUS_FREQUENCY],
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sizeof(items[AUDACIOUS_FREQUENCY]) - 1, "%d", freq);
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/* Current song channels */
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snprintf(items[AUDACIOUS_CHANNELS],
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sizeof(items[AUDACIOUS_CHANNELS]) - 1, "%d", chans);
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/* Current song filename */
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pfilename = audacious_remote_get_playlist_file(session, playpos);
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if (pfilename) {
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strncpy(items[AUDACIOUS_FILENAME], pfilename,
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sizeof(items[AUDACIOUS_FILENAME]) - 1);
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g_free(pfilename);
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pfilename = NULL;
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}
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/* Length of the Playlist (number of songs) */
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length = audacious_remote_get_playlist_length(session);
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snprintf(items[AUDACIOUS_PLAYLIST_LENGTH],
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sizeof(items[AUDACIOUS_PLAYLIST_LENGTH]) - 1, "%d", length);
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/* Playlist position (index of song) */
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snprintf(items[AUDACIOUS_PLAYLIST_POSITION],
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sizeof(items[AUDACIOUS_PLAYLIST_POSITION]) - 1, "%d", playpos + 1);
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/* Main volume */
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vol = audacious_remote_get_main_volume(session);
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snprintf(items[AUDACIOUS_MAIN_VOLUME],
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sizeof(items[AUDACIOUS_MAIN_VOLUME]) - 1, "%d", vol);
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} while (0);
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/* Deliver the refreshed items array to audacious_items. */
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timed_thread_lock(info.audacious.p_timed_thread);
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memcpy(&audacious_items, items, sizeof(items));
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timed_thread_unlock(info.audacious.p_timed_thread);
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if (timed_thread_test(info.audacious.p_timed_thread, 0)) {
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#ifndef AUDACIOUS_LEGACY
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/* release reference to dbus proxy */
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g_object_unref(session);
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#endif
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timed_thread_exit(info.audacious.p_timed_thread);
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}
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}
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}
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