2010-04-04 22:45:03 +02:00
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/* This file is part of Clementine.
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Clementine is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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Clementine 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
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with Clementine. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "vlcengine.h"
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#include "vlcscopedref.h"
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#include <QTimer>
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#include <QtDebug>
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2010-04-05 04:21:53 +02:00
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#include <QMutexLocker>
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#include <QTime>
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2010-04-04 22:45:03 +02:00
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#include <boost/bind.hpp>
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2010-04-05 04:21:53 +02:00
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VlcEngine* VlcEngine::sInstance = NULL;
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2010-04-04 22:45:03 +02:00
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VlcEngine::VlcEngine()
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: instance_(NULL),
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player_(NULL),
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2010-04-05 04:21:53 +02:00
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scope_data_(4096),
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2010-04-04 22:45:03 +02:00
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state_(Engine::Empty)
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{
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static const char * const args[] = {
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"-I", "dummy", // Don't use any interface
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"--ignore-config", // Don't use VLC's config
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"--extraintf=logger", // log anything
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"--verbose=2", // be much more verbose then normal for debugging purpose
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2010-04-05 04:21:53 +02:00
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// Our scope plugin
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"--audio-filter=clementine_scope",
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"--no-plugins-cache",
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2010-04-04 22:45:03 +02:00
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#if defined(Q_OS_UNIX) && !defined(Q_OS_MAC)
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"--aout=alsa", // The default, pulseaudio, is buggy
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#endif
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};
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// Create the VLC instance
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libvlc_exception_init(&exception_);
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instance_ = libvlc_new(sizeof(args) / sizeof(args[0]), args, &exception_);
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HandleErrors();
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// Create the media player
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player_ = libvlc_media_player_new(instance_, &exception_);
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HandleErrors();
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// Add event handlers
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libvlc_event_manager_t* player_em =
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libvlc_media_player_event_manager(player_, &exception_);
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HandleErrors();
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AttachCallback(player_em, libvlc_MediaPlayerEncounteredError, StateChangedCallback);
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AttachCallback(player_em, libvlc_MediaPlayerNothingSpecial, StateChangedCallback);
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AttachCallback(player_em, libvlc_MediaPlayerOpening, StateChangedCallback);
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AttachCallback(player_em, libvlc_MediaPlayerBuffering, StateChangedCallback);
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AttachCallback(player_em, libvlc_MediaPlayerPlaying, StateChangedCallback);
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AttachCallback(player_em, libvlc_MediaPlayerPaused, StateChangedCallback);
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AttachCallback(player_em, libvlc_MediaPlayerStopped, StateChangedCallback);
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AttachCallback(player_em, libvlc_MediaPlayerEndReached, StateChangedCallback);
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HandleErrors();
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sInstance = this;
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2010-04-04 22:45:03 +02:00
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}
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VlcEngine::~VlcEngine() {
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libvlc_media_player_stop(player_, &exception_);
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libvlc_media_player_release(player_);
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libvlc_release(instance_);
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HandleErrors();
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}
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void VlcEngine::AttachCallback(libvlc_event_manager_t* em, libvlc_event_type_t type,
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libvlc_callback_t callback) {
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libvlc_event_attach(em, type, callback, this, &exception_);
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HandleErrors();
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}
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void VlcEngine::StateChangedCallback(const libvlc_event_t* e, void* data) {
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VlcEngine* engine = reinterpret_cast<VlcEngine*>(data);
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switch (e->type) {
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case libvlc_MediaPlayerNothingSpecial:
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case libvlc_MediaPlayerStopped:
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case libvlc_MediaPlayerEncounteredError:
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engine->state_ = Engine::Empty;
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break;
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case libvlc_MediaPlayerOpening:
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case libvlc_MediaPlayerBuffering:
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case libvlc_MediaPlayerPlaying:
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engine->state_ = Engine::Playing;
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break;
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case libvlc_MediaPlayerPaused:
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engine->state_ = Engine::Paused;
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break;
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case libvlc_MediaPlayerEndReached:
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engine->state_ = Engine::Idle;
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break;
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}
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emit engine->stateChanged(engine->state_);
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}
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bool VlcEngine::init() {
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return true;
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}
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bool VlcEngine::canDecode(const QUrl &url) const {
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// TODO
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return true;
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}
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bool VlcEngine::load(const QUrl &url, bool stream) {
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VlcScopedRef<libvlc_media_t> media(
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libvlc_media_new(instance_, url.toEncoded().constData(), &exception_));
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if (libvlc_exception_raised(&exception_))
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return false;
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libvlc_media_player_set_media(player_, media, &exception_);
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if (libvlc_exception_raised(&exception_))
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return false;
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return true;
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}
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bool VlcEngine::play(uint offset) {
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libvlc_media_player_play(player_, &exception_);
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if (libvlc_exception_raised(&exception_))
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return false;
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seek(offset);
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return true;
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}
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void VlcEngine::stop() {
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libvlc_media_player_stop(player_, &exception_);
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HandleErrors();
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}
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void VlcEngine::pause() {
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libvlc_media_player_pause(player_, &exception_);
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HandleErrors();
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}
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void VlcEngine::unpause() {
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libvlc_media_player_play(player_, &exception_);
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HandleErrors();
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}
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uint VlcEngine::position() const {
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bool is_playing = libvlc_media_player_is_playing(
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player_, const_cast<libvlc_exception_t*>(&exception_));
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HandleErrors();
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if (!is_playing)
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return 0;
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float pos = libvlc_media_player_get_position(
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player_, const_cast<libvlc_exception_t*>(&exception_));
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HandleErrors();
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return pos * length();
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}
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uint VlcEngine::length() const {
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bool is_playing = libvlc_media_player_is_playing(
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player_, const_cast<libvlc_exception_t*>(&exception_));
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HandleErrors();
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if (!is_playing)
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return 0;
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libvlc_time_t len = libvlc_media_player_get_length(
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player_, const_cast<libvlc_exception_t*>(&exception_));
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HandleErrors();
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return len;
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}
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void VlcEngine::seek(uint ms) {
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uint len = length();
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if (len == 0)
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return;
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float pos = float(ms) / len;
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libvlc_media_player_set_position(player_, pos, &exception_);
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HandleErrors();
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}
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void VlcEngine::setVolumeSW(uint volume) {
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libvlc_audio_set_volume(instance_, volume, &exception_);
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HandleErrors();
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}
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void VlcEngine::HandleErrors() const {
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if (libvlc_exception_raised(&exception_)) {
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qFatal("libvlc error: %s", libvlc_exception_get_message(&exception_));
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}
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}
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void VlcEngine::SetScopeData(float* data, int size) {
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if (!sInstance)
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return;
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QMutexLocker l(&sInstance->scope_mutex_);
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// This gets called by our VLC plugin. Just push the data on to the end of
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// the circular buffer and let it get consumed by scope()
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for (int i=0 ; i<size ; ++i) {
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sInstance->scope_data_.push_back(data[i]);
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}
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}
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const Engine::Scope& VlcEngine::scope() {
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QMutexLocker l(&scope_mutex_);
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// Leave the scope unchanged if there's not enough data
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if (scope_data_.size() < SCOPESIZE)
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return m_scope;
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// Take the samples off the front of the circular buffer
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for (uint i=0 ; i<SCOPESIZE ; ++i)
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m_scope[i] = scope_data_[i] * (1 << 15);
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// Remove the samples from the buffer. Unfortunately I think this is O(n) :(
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scope_data_.rresize(qMax(0, int(scope_data_.size()) - SCOPESIZE*2));
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return m_scope;
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}
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