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https://gitlab.freedesktop.org/gstreamer/gstreamer.git
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367 lines
11 KiB
C#
367 lines
11 KiB
C#
// Authors
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// Copyright (C) 2014 Stephan Sundermann <stephansundermann@gmail.com>
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using System;
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using Gst;
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using Gtk;
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using System.Runtime.InteropServices;
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using Gst.Video;
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namespace GstreamerSharp
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{
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class Playback
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{
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static Element Playbin;
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static Gtk.Range Slider;
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static TextView StreamsList;
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static ulong silderUpdateSignalID;
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static State State;
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static long Duration = -1;
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static int ignoreCount = 0;
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static void HandleValueChanged (object sender, EventArgs e)
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{
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var range = (Gtk.Range)sender;
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var value = range.Value;
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Playbin.SeekSimple (Format.Time, SeekFlags.Flush | SeekFlags.KeyUnit, (long)(value * Gst.Constants.SECOND));
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}
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// This method is called when the STOP button is clicked
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static void HandleStop (object sender, EventArgs e)
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{
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Playbin.SetState (State.Ready);
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}
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// This method is called when the PAUSE button is clicked
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static void HandlePause (object sender, EventArgs e)
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{
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Playbin.SetState (State.Paused);
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}
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// This method is called when the PLAY button is clicked
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static void HandlePlay (object sender, EventArgs e)
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{
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Playbin.SetState (State.Playing);
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}
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static void HandleRealized (object sender, EventArgs e)
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{
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var widget = (Widget)sender;
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var window = widget.Window;
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IntPtr windowID = IntPtr.Zero;
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// Retrieve window handler from GDK
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switch (System.Environment.OSVersion.Platform) {
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case PlatformID.Unix:
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windowID = gdk_x11_window_get_xid (window.Handle);
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break;
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case PlatformID.Win32NT:
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case PlatformID.Win32S:
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case PlatformID.Win32Windows:
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case PlatformID.WinCE:
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windowID = gdk_win32_drawable_get_handle (window.Handle);
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break;
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}
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Element overlay = null;
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if(Playbin is Gst.Bin)
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overlay = ((Gst.Bin) Playbin).GetByInterface (VideoOverlayAdapter.GType);
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VideoOverlayAdapter adapter = new VideoOverlayAdapter (overlay.Handle);
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adapter.WindowHandle = windowID;
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adapter.HandleEvents (true);
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}
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// This function is called when the main window is closed
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static void HandleDelete (object o, DeleteEventArgs args)
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{
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HandleStop (null, null);
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Gtk.Application.Quit ();
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}
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//This function is called everytime the video window needs to be redrawn (due to damage/exposure, rescaling, etc). GStreamer takes care of this in the PAUSED and PLAYING states, otherwise, we simply draw a black rectangle to avoid garbage showing up. */
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static void HandleDamage (object o, DamageEventArgs args)
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{
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var widget = (Widget)o;
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if (State != State.Paused && State != State.Playing) {
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var window = widget.Window;
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var allocation = widget.Allocation;
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var cr = Gdk.CairoHelper.Create (window);
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cr.SetSourceRGB (0, 0, 0);
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cr.Rectangle (0, 0, allocation.Width, allocation.Height);
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cr.Fill ();
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cr.Dispose ();
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}
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args.RetVal = false;
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}
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static void CreateUI () {
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var mainWindow = new Window (WindowType.Toplevel);
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mainWindow.DeleteEvent += HandleDelete;
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var videoWindow = new DrawingArea ();
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videoWindow.DoubleBuffered = false;
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videoWindow.Realized += HandleRealized;
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videoWindow.DamageEvent += HandleDamage;
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var playButton = new Button (Stock.MediaPlay);
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playButton.Clicked += HandlePlay;
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var pauseButton = new Button (Stock.MediaPause);
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pauseButton.Clicked += HandlePause;
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var stopButton = new Button (Stock.MediaStop);
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stopButton.Clicked += HandleStop;
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Slider = new HScale (0, 100, 1);
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((Scale)Slider).DrawValue = false;
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Slider.ValueChanged += HandleValueChanged;
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StreamsList = new TextView ();
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StreamsList.Editable = false;
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var controls = new HBox (false, 0);
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controls.PackStart (playButton, false, false, 2);
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controls.PackStart (pauseButton, false, false, 2);
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controls.PackStart (stopButton, false, false, 2);
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controls.PackStart (Slider, true, true, 2);
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var mainHBox = new HBox (false, 0);
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mainHBox.PackStart (videoWindow, true, true, 0);
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mainHBox.PackStart (StreamsList, false, false, 2);
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var mainBox = new VBox (false, 0);
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mainBox.PackStart (mainHBox, true, true, 0);
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mainBox.PackStart (controls, false, false, 0);
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mainWindow.Add (mainBox);
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mainWindow.SetDefaultSize (640, 480);
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mainWindow.ShowAll ();
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}
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// This function is called periodically to refresh the GUI
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static bool RefreshUI () {
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var fmt = Format.Time;
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long current = 0;
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// We do not want to update anything nless we are in the PAUSED or PLAYING states
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if (State != State.Playing && State != State.Paused)
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return true;
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// If we didn't know it yet, query the stream duration
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if (Duration < 0) {
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if (!Playbin.QueryDuration (fmt, out Duration))
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Console.WriteLine ("Could not query the current duration.");
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else {
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// Set the range of the silder to the clip duration, in SECONDS
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Slider.SetRange (0, Duration / (double)Gst.Constants.SECOND);
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}
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}
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if (Playbin.QueryPosition (fmt, out current)) {
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// Block the "value-changed" signal, so the HandleSlider function is not called (which would trigger a seek the user has not requested)
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ignoreCount++;
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Slider.ValueChanged -= HandleValueChanged;
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// Set the position of the slider to the current pipeline position, in SECONDS
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Slider.Value = current / (double)Gst.Constants.SECOND;
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Slider.ValueChanged += HandleValueChanged;
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}
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return true;
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}
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// This function is called when an error message is posted on the bus
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static void HandleTags (object sender, GLib.SignalArgs args) {
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// We are possibly in the Gstreamer working thread, so we notify the main thread of this event through a message in the bus
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var s = new Structure ("tags-changed");
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Playbin.PostMessage (Message.NewApplication (Playbin, s));
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}
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// This function is called when an error message is posted on the bus
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static void HandleError (object sender, GLib.SignalArgs args) {
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var msg = (Message)args.Args [0];
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string debug;
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GLib.GException exc;
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msg.ParseError (out exc, out debug);
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Console.WriteLine (string.Format ("Error received from element {0}: {1}", msg.Src.Name, exc.Message));
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Console.WriteLine ("Debugging information: {0}", debug);
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// Set the pipeline to READY (which stops playback)
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Playbin.SetState (State.Ready);
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}
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// This function is called when an End-Of-Stream message is posted on the bus. We just set the pipelien to READY (which stops playback)
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static void HandleEos (object sender, GLib.SignalArgs args) {
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Console.WriteLine ("End-Of-Stream reached.");
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Playbin.SetState (State.Ready);
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}
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// This function is called when the pipeline changes states. We use it to keep track of the current state.
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static void HandleStateChanged (object sender, GLib.SignalArgs args) {
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var msg = (Message) args.Args [0];
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State oldState, newState, pendingState;
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msg.ParseStateChanged (out oldState, out newState, out pendingState);
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if (msg.Src == Playbin) {
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State = newState;
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Console.WriteLine ("State set to {0}", Element.StateGetName (newState));
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if (oldState == State.Ready && newState == State.Paused) {
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// For extra responsiveness, we refresh the GUI as soon as we reach the PAUSED state
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RefreshUI ();
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}
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}
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}
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// Extract metadata from all the streams and write it to the text widget in the GUI
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static void AnalyzeStreams () {
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TagList tags;
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String str, totalStr;
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uint rate;
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// Clean current contents of the widget
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var text = StreamsList.Buffer;
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text.Text = String.Empty;
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// Read some properties
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var nVideo = (int) Playbin ["n-video"];
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var nAudio = (int) Playbin ["n-audio"];
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var nText = (int) Playbin ["n-text"];
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for (int i = 0; i < nVideo; i++) {
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// Retrieve the stream's video tags
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tags = (TagList)Playbin.Emit ("get-video-tags", i);
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if (tags != null) {
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totalStr = string.Format ("video stream {0}:\n", i);
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text.InsertAtCursor (totalStr);
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tags.GetString (Gst.Constants.TAG_VIDEO_CODEC, out str);
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totalStr = string.Format (" codec: {0}\n", str != null ? str : "unknown");
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text.InsertAtCursor (totalStr);
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}
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}
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for (int i = 0; i < nAudio; i++) {
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// Retrieve the stream's audio tags
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tags = (TagList)Playbin.Emit ("get-audio-tags", i);
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if (tags != null) {
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totalStr = string.Format ("audio stream {0}:\n", i);
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text.InsertAtCursor (totalStr);
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str = String.Empty;
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if (tags.GetString (Gst.Constants.TAG_AUDIO_CODEC, out str)) {
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totalStr = string.Format (" codec: {0}\n", str);
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text.InsertAtCursor (totalStr);
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}
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str = String.Empty;
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if (tags.GetString (Gst.Constants.TAG_LANGUAGE_CODE+"dr", out str)) {
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totalStr = string.Format (" language: {0}\n", str);
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text.InsertAtCursor (totalStr);
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}
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str = String.Empty;
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if (tags.GetUint (Gst.Constants.TAG_BITRATE, out rate)) {
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totalStr = string.Format (" bitrate: {0}\n", rate);
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text.InsertAtCursor (totalStr);
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}
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}
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}
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for (int i = 0; i < nText; i++) {
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// Retrieve the stream's text tags
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tags = (TagList)Playbin.Emit ("get-text-tags", i);
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if (tags != null) {
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totalStr = string.Format ("subtitle stream {0}:\n", i);
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text.InsertAtCursor (totalStr);
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if (tags.GetString (Gst.Constants.TAG_LANGUAGE_CODE, out str)) {
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totalStr = string.Format (" language: {0}\n", str);
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text.InsertAtCursor (totalStr);
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}
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}
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}
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}
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// This function is called when an "application" message is posted on the bus. Here we retrieve the message posted by the HandleTags callback
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static void HandleApplication (object sender, GLib.SignalArgs args) {
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var msg = (Message)args.Args [0];
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if (msg.Structure.Name.Equals ("tags-changed")) {
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// If the message is the "tags-changed" (only one we are currently issuing), update the stream info GUI
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AnalyzeStreams ();
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}
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}
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public static void Main (string[] args)
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{
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// Initialize GTK
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Gtk.Application.Init ();
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// Initialize Gstreamer
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Gst.Application.Init(ref args);
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// Create the elements
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Playbin = ElementFactory.Make ("playbin", "playbin");
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if (Playbin == null) {
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Console.WriteLine ("Not all elements could be created");
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return;
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}
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// Set the URI to play.
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Playbin ["uri"] = "http://download.blender.org/durian/trailer/sintel_trailer-1080p.mp4";
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// Connect to interesting signals in playbin
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Playbin.Connect ("video-tags-changed", HandleTags);
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Playbin.Connect ("audio-tags-changed", HandleTags);
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Playbin.Connect ("text-tags-changed", HandleTags);
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// Create the GUI
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CreateUI ();
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// Instruct the bus to emit signals for each received message, and connect to the interesting signals
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var bus = Playbin.Bus;
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bus.AddSignalWatch ();
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bus.Connect ("message::error", HandleError);
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bus.Connect ("message::eos", HandleEos);
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bus.Connect ("message::state-changed", HandleStateChanged);
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bus.Connect ("message::application", HandleApplication);
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// Start playing
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var ret = Playbin.SetState (State.Playing);
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if (ret == StateChangeReturn.Failure) {
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Console.WriteLine ("Unable to set the pipeline to the playing state.");
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return;
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}
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// Register a function that GLib will call every second
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GLib.Timeout.Add (1, RefreshUI);
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// Start the GTK main loop- We will not regain control until gtk_main_quit is called
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Gtk.Application.Run ();
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// Free resources
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Playbin.SetState (State.Null);
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}
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[DllImport ("libgdk-3.so.0") ]
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static extern IntPtr gdk_x11_window_get_xid (IntPtr handle);
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[DllImport ("gdk-win32-3.0-0.dll") ]
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static extern IntPtr gdk_win32_drawable_get_handle (IntPtr handle);
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[DllImport ("libX11.so.6")]
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static extern int XInitThreads ();
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}
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}
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