mirror of
https://gitlab.freedesktop.org/gstreamer/gstreamer.git
synced 2024-12-30 12:10:37 +00:00
aa7bb8fa1c
glib-sharp will only get a new release with the new API that we need for 3.0 in a year or something. Instead of waiting a year before we can release something we now have our own internal copy of glib-sharp trunk that will be dropped once glib-sharp 3.0 is released. Everything is now compilable and working without any additional patches.
228 lines
5.5 KiB
C#
228 lines
5.5 KiB
C#
using Gst.GLib;
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using Gst;
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using System;
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using System.Runtime.InteropServices;
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namespace Gst {
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public struct EnumValue {
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internal int value;
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public int Value {
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get {
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return value;
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}
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}
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internal string value_name;
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public string Name {
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get {
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return value_name;
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}
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}
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internal string value_nick;
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public string Nick {
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get {
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return value_nick;
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}
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}
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}
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public struct FlagsValue {
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internal uint value;
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public uint Value {
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get {
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return value;
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}
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}
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internal string value_name;
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public string Name {
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get {
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return value_name;
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}
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}
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internal string value_nick;
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public string Nick {
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get {
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return value_nick;
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}
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}
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}
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public struct EnumInfo {
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[StructLayout (LayoutKind.Sequential) ]
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struct GTypeClass {
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IntPtr gtype;
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}
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[StructLayout (LayoutKind.Sequential) ]
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struct GEnumClass {
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GTypeClass gclass;
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public int minimum;
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public int maximum;
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public uint n_values;
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public IntPtr values;
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}
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[StructLayout (LayoutKind.Sequential) ]
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struct GEnumValue {
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public int value;
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public IntPtr value_name;
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public IntPtr value_nick;
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}
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[DllImport ("libgobject-2.0-0.dll") ]
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static extern IntPtr g_type_class_ref (IntPtr gtype);
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[DllImport ("libgobject-2.0-0.dll") ]
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static extern void g_type_class_unref (IntPtr gclass);
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[DllImport ("libgobject-2.0-0.dll") ]
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static extern bool g_type_is_a (IntPtr type, IntPtr is_a_type);
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int min;
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public int Min {
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get {
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return min;
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}
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}
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int max;
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public int Max {
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get {
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return max;
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}
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}
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EnumValue[] values;
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public EnumValue[] Values {
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get {
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return values;
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}
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}
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public EnumValue this[int val] {
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get {
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foreach (EnumValue v in Values) {
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if (v.value == val)
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return v;
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}
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throw new Exception ();
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}
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}
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public static bool IsEnumType (Gst.GLib.GType gtype) {
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return (g_type_is_a (gtype.Val, GType.Enum.Val));
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}
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public EnumInfo (Gst.GLib.GType gtype) {
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if (!IsEnumType (gtype))
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throw new ArgumentException ();
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IntPtr class_ptr = g_type_class_ref (gtype.Val);
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if (class_ptr == IntPtr.Zero)
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throw new Exception ();
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GEnumClass klass = (GEnumClass) Marshal.PtrToStructure (class_ptr, typeof (GEnumClass));
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this.min = klass.minimum;
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this.max = klass.maximum;
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values = new EnumValue[klass.n_values];
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int unmanaged_struct_size = Marshal.SizeOf (typeof (GEnumValue));
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for (int i = 0; i < klass.n_values; i++) {
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GEnumValue gv = (GEnumValue) Marshal.PtrToStructure (new IntPtr (klass.values.ToInt64() + i * unmanaged_struct_size), typeof (GEnumValue));
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values[i].value = gv.value;
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values[i].value_name = Gst.GLib.Marshaller.Utf8PtrToString (gv.value_name);
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values[i].value_nick = Gst.GLib.Marshaller.Utf8PtrToString (gv.value_nick);
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}
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g_type_class_unref (class_ptr);
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}
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}
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public struct FlagsInfo {
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[StructLayout (LayoutKind.Sequential) ]
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struct GTypeClass {
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IntPtr gtype;
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}
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[StructLayout (LayoutKind.Sequential) ]
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struct GFlagsClass {
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GTypeClass gclass;
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public uint mask;
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public uint n_values;
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public IntPtr values;
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}
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[StructLayout (LayoutKind.Sequential) ]
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struct GFlagsValue {
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public uint value;
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public IntPtr value_name;
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public IntPtr value_nick;
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}
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[DllImport ("libgobject-2.0-0.dll") ]
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static extern IntPtr g_type_class_ref (IntPtr gtype);
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[DllImport ("libgobject-2.0-0.dll") ]
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static extern void g_type_class_unref (IntPtr gclass);
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[DllImport ("libgobject-2.0-0.dll") ]
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static extern bool g_type_is_a (IntPtr type, IntPtr is_a_type);
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uint mask;
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public uint Mask {
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get {
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return mask;
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}
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}
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FlagsValue[] values;
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public FlagsValue[] Values {
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get {
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return values;
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}
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}
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public static bool IsFlagsType (Gst.GLib.GType gtype) {
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return (g_type_is_a (gtype.Val, GType.Flags.Val));
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}
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public FlagsValue[] this[uint flags] {
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get {
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System.Collections.ArrayList ret = new System.Collections.ArrayList ();
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foreach (FlagsValue v in Values) {
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if (flags == 0 && v.value == 0)
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ret.Add (v);
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else if ( (v.value & flags) != 0)
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ret.Add (v);
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}
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return (FlagsValue[]) ret.ToArray (typeof (FlagsValue));
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}
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}
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public FlagsInfo (Gst.GLib.GType gtype) {
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if (!IsFlagsType (gtype))
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throw new ArgumentException ();
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IntPtr class_ptr = g_type_class_ref (gtype.Val);
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if (class_ptr == IntPtr.Zero)
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throw new Exception ();
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GFlagsClass klass = (GFlagsClass) Marshal.PtrToStructure (class_ptr, typeof (GFlagsClass));
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this.mask = klass.mask;
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values = new FlagsValue[klass.n_values];
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int unmanaged_struct_size = Marshal.SizeOf (typeof (GFlagsValue));
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for (int i = 0; i < klass.n_values; i++) {
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GFlagsValue gv = (GFlagsValue) Marshal.PtrToStructure (new IntPtr (klass.values.ToInt64() + i * unmanaged_struct_size), typeof (GFlagsValue));
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values[i].value = gv.value;
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values[i].value_name = Gst.GLib.Marshaller.Utf8PtrToString (gv.value_name);
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values[i].value_nick = Gst.GLib.Marshaller.Utf8PtrToString (gv.value_nick);
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}
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g_type_class_unref (class_ptr);
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}
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}
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}
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