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<Type Name= "AccelMap" FullName= "Gtk.AccelMap" >
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<TypeSignature Language= "C#" Maintainer= "auto" Value= "public class AccelMap : GLib.Object" />
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<AssemblyInfo >
<AssemblyName > gtk-sharp</AssemblyName>
<AssemblyPublicKey > [00 24 00 00 04 80 00 00 94 00 00 00 06 02 00 00 00 24 00 00 52 53 41 31 00 04 00 00 01 00 01 00 71 EB 6C 55 75 52 9C BF 72 44 F7 A6 EA 05 62 84 F9 EA E0 3B CF F2 CC 13 2C 9C 49 0A B3 09 EA B0 B5 6B CE 44 9D F5 03 D9 C0 A8 1E 52 05 85 CD BE 70 E2 FB 90 43 4B AC 04 FA 62 22 A8 00 98 B7 A1 A7 B3 AF 99 1A 41 23 24 BB 43 25 F6 B8 65 BB 64 EB F6 D1 C2 06 D5 73 2D DF BC 70 A7 38 9E E5 3E 0C 24 6E 32 79 74 1A D0 05 03 E4 98 42 E1 9B F3 7B 19 8B 40 21 26 CB 36 89 C2 EA 64 96 A4 7C B4]</AssemblyPublicKey>
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<AssemblyVersion > 2.8.0.0</AssemblyVersion>
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</AssemblyInfo>
<ThreadSafetyStatement > Gtk# is thread aware, but not thread safe; See the <link location= "node:gtk-sharp/programming/threads" > Gtk# Thread Programming</link> for details.</ThreadSafetyStatement>
<Docs >
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<summary > Global accelerator map for an entire application.</summary>
<remarks > This class is a singleton; only one can exist at a time.</remarks>
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<since version= "Gtk# 2.4" />
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</Docs>
<Base >
<BaseTypeName > GLib.Object</BaseTypeName>
</Base>
<Interfaces >
</Interfaces>
<Members >
<Member MemberName= "LookupEntry" >
<MemberSignature Language= "C#" Value= "public static bool LookupEntry (string accel_path, Gtk.AccelKey key);" />
<MemberType > Method</MemberType>
<ReturnValue >
<ReturnType > System.Boolean</ReturnType>
</ReturnValue>
<Parameters >
<Parameter Name= "accel_path" Type= "System.String" />
<Parameter Name= "key" Type= "Gtk.AccelKey" />
</Parameters>
<Docs >
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<summary > Looks up the accelerator entry for <paramref name= "accel_path" /> and fills in <paramref name= "key" /> .</summary>
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<param name= "accel_path" > a <see cref= "T:System.String" /> , a valid accelerator path</param>
<param name= "key" > a <see cref= "T:Gtk.AccelKey" /> , the accelerator key to be filled in (optional)</param>
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<returns > a <see cref= "T:System.Boolean" /> , <see langword= "true" /> if <paramref name= "accel_path" /> is known, <see langword= "false" /> otherwise.</returns>
<remarks >
</remarks>
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</Docs>
</Member>
<Member MemberName= "LockPath" >
<MemberSignature Language= "C#" Value= "public static void LockPath (string accel_path);" />
<MemberType > Method</MemberType>
<ReturnValue >
<ReturnType > System.Void</ReturnType>
</ReturnValue>
<Parameters >
<Parameter Name= "accel_path" Type= "System.String" />
</Parameters>
<Docs >
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<summary >
Locks the given accelerator path. If the accelerator map doesn't yet contain
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an entry for <paramref name= "accel_path" /> , a new one is created.
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</summary>
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<param name= "accel_path" > a <see cref= "T:System.String" /> </param>
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<remarks >
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<para >
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Locking an accelerator path prevents its accelerator from being changed
during runtime. A locked accelerator path can be unlocked by
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<see cref= "M:Gtk.AccelMap.UnlockPath" /> .
Refer to <see cref= "M:Gtk.AccelMap.ChangeEntry" />
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for information about runtime accelerator changes.
</para>
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<para >
If called more than once, <paramref name= "accel_path" /> remains locked until
<see cref= "M:Gtk.AccelMap.UnlockPath" />
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has been called an equivalent number of times.
</para>
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<para >
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Note that locking of individual accelerator paths is independent from
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locking the <see cref= "T:Gtk.AccelGroup" /> containing them. For runtime accelerator
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changes to be possible both the accelerator path and its
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<see cref= "T:Gtk.AccelGroup" /> have to be unlocked.
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</para>
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</remarks>
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</Docs>
</Member>
<Member MemberName= "UnlockPath" >
<MemberSignature Language= "C#" Value= "public static void UnlockPath (string accel_path);" />
<MemberType > Method</MemberType>
<ReturnValue >
<ReturnType > System.Void</ReturnType>
</ReturnValue>
<Parameters >
<Parameter Name= "accel_path" Type= "System.String" />
</Parameters>
<Docs >
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<summary >
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Undoes the last call to <see cref= "M:Gtk.AccelMap.LockPath" />
on this <paramref name= "accel_path" /> .
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</summary>
<param name= "accel_path" > a <see cref= "T:System.String" /> , a valid accelerator path</param>
<remarks >
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Refer to <see cref= "M:Gtk.AccelMap.LockPath" /> for information
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about accelerator path locking.</remarks>
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</Docs>
</Member>
<Member MemberName= "ChangeEntry" >
<MemberSignature Language= "C#" Value= "public static bool ChangeEntry (string accel_path, uint accel_key, Gdk.ModifierType accel_mods, bool replace);" />
<MemberType > Method</MemberType>
<ReturnValue >
<ReturnType > System.Boolean</ReturnType>
</ReturnValue>
<Parameters >
<Parameter Name= "accel_path" Type= "System.String" />
<Parameter Name= "accel_key" Type= "System.UInt32" />
<Parameter Name= "accel_mods" Type= "Gdk.ModifierType" />
<Parameter Name= "replace" Type= "System.Boolean" />
</Parameters>
<Docs >
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<summary >
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Changes the <paramref name= "accel_key" /> and <paramref name= "accel_mods" /> currently associated with
<paramref name= "accel_path" /> .
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</summary>
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<param name= "accel_path" > a <see cref= "T:System.String" /> </param>
<param name= "accel_key" > a <see cref= "T:System.UInt32" /> </param>
<param name= "accel_mods" > a <see cref= "T:System.Int32" /> </param>
<param name= "replace" > a <see cref= "T:System.Boolean" /> </param>
<returns > a <see cref= "T:System.Boolean" /> </returns>
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<remarks >
Due to conflicts with other accelerators, a change may not always be possible. The
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<paramref name= "replace" /> parameter indicates whether other accelerators may be deleted to resolve such
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conflicts. A change will only occur if all conflicts could be resolved (which might not be the case if conflicting accelerators are locked). Successful
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changes are indicated by a <see langword= "true" /> return value.
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</remarks>
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</Docs>
</Member>
<Member MemberName= "Load" >
<MemberSignature Language= "C#" Value= "public static void Load (string file_name);" />
<MemberType > Method</MemberType>
<ReturnValue >
<ReturnType > System.Void</ReturnType>
</ReturnValue>
<Parameters >
<Parameter Name= "file_name" Type= "System.String" />
</Parameters>
<Docs >
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<summary >
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Parses a file previously saved with <see cref= "M:Gtk.AccelMap.Save" />
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for accelerator specifications, and propagates them accordingly.
</summary>
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<param name= "file_name" > a <see cref= "T:System.String" /> </param>
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<remarks >
</remarks>
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</Docs>
</Member>
<Member MemberName= "SaveFd" >
<MemberSignature Language= "C#" Value= "public static void SaveFd (int fd);" />
<MemberType > Method</MemberType>
<ReturnValue >
<ReturnType > System.Void</ReturnType>
</ReturnValue>
<Parameters >
<Parameter Name= "fd" Type= "System.Int32" />
</Parameters>
<Docs >
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<summary >
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File descriptor variant of <see cref= "M:Gtk.AccelMap.Save" /> .
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</summary>
<param name= "fd" > a <see cref= "T:System.Int32" /> , a valid writeable file descriptor</param>
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<remarks >
</remarks>
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</Docs>
</Member>
<Member MemberName= "Save" >
<MemberSignature Language= "C#" Value= "public static void Save (string file_name);" />
<MemberType > Method</MemberType>
<ReturnValue >
<ReturnType > System.Void</ReturnType>
</ReturnValue>
<Parameters >
<Parameter Name= "file_name" Type= "System.String" />
</Parameters>
<Docs >
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<summary >
Saves current accelerator specifications (accelerator path, key
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and modifiers) to <paramref name= "file_name" /> .
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The file is written in a format suitable to be read back in by
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<see cref= "M:Gtk.AccelMap.Load" /> .
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</summary>
<param name= "file_name" > a <see cref= "T:System.String" /> , a file to contain accelerator specifications</param>
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<remarks >
</remarks>
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</Docs>
</Member>
<Member MemberName= "LoadFd" >
<MemberSignature Language= "C#" Value= "public static void LoadFd (int fd);" />
<MemberType > Method</MemberType>
<ReturnValue >
<ReturnType > System.Void</ReturnType>
</ReturnValue>
<Parameters >
<Parameter Name= "fd" Type= "System.Int32" />
</Parameters>
<Docs >
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<summary >
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File descriptor variant of <see cref= "M:Gtk.AccelMap.Load" /> .
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</summary>
<param name= "fd" > a <see cref= "T:System.Int32" /> , a valid readable file descriptor.</param>
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<remarks >
</remarks>
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</Docs>
</Member>
<Member MemberName= "AddEntry" >
<MemberSignature Language= "C#" Value= "public static void AddEntry (string accel_path, uint accel_key, Gdk.ModifierType accel_mods);" />
<MemberType > Method</MemberType>
<ReturnValue >
<ReturnType > System.Void</ReturnType>
</ReturnValue>
<Parameters >
<Parameter Name= "accel_path" Type= "System.String" />
<Parameter Name= "accel_key" Type= "System.UInt32" />
<Parameter Name= "accel_mods" Type= "Gdk.ModifierType" />
</Parameters>
<Docs >
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<summary >
Registers a new accelerator with the global accelerator map.
</summary>
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<param name= "accel_path" > a <see cref= "T:System.String" /> </param>
<param name= "accel_key" > a <see cref= "T:System.UInt32" /> </param>
<param name= "accel_mods" > a <see cref= "T:System.Int32" /> </param>
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<remarks >
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This function should only be called once per <paramref name= "accel_path" />
with the canonical <paramref name= "accel_key" /> and <paramref name= "accel_mods" /> for this path.
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To change the accelerator during runtime programatically, use
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<see cref= "M:Gtk.AccelMap.ChangeEntry" /> .
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The accelerator path must consist of "< WINDOWTYPE> /Category1/Category2/.../Action",
where < WINDOWTYPE> should be a unique application-specific identifier, that
corresponds to the kind of window the accelerator is being used in, e.g. "Gimp-Image",
"Abiword-Document" or "Gnumeric-Settings".
The Category1/.../Action portion is most appropriately chosen by the action the
accelerator triggers, i.e. for accelerators on menu items, choose the item's menu path,
e.g. "File/Save As", "Image/View/Zoom" or "Edit/Select All".
So a full valid accelerator path may look like:
"< Gimp-Toolbox> /File/Dialogs/Tool Options...".
</remarks>
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</Docs>
</Member>
<Member MemberName= "AddFilter" >
<MemberSignature Language= "C#" Value= "public static void AddFilter (string filter_pattern);" />
<MemberType > Method</MemberType>
<ReturnValue >
<ReturnType > System.Void</ReturnType>
</ReturnValue>
<Parameters >
<Parameter Name= "filter_pattern" Type= "System.String" />
</Parameters>
<Docs >
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<summary >
Adds a filter to the global list of accel path filters.
</summary>
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<param name= "filter_pattern" > a <see cref= "T:System.String" /> </param>
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<remarks >
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<para >
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Accel map entries whose accel path matches one of the filters
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are skipped by <see cref= "M:Gtk.AccelMap.Foreach" /> .
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</para>
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<para >
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This function is intended for Gtk# modules that create their own
menus but don't want them to be saved into the applications
accelerator map dump.
</para>
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</remarks>
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</Docs>
</Member>
<Member MemberName= "Get" >
<MemberSignature Language= "C#" Value= "public static Gtk.AccelMap Get ();" />
<MemberType > Method</MemberType>
<ReturnValue >
<ReturnType > Gtk.AccelMap</ReturnType>
</ReturnValue>
<Parameters />
<Docs >
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<summary >
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Gets the singleton global<see cref= "T:Gtk.AccelMap" /> . object. This object
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is useful only for notification of changes to the accelerator
map via the internal "changed" signal; it isn't a parameter to the
other accelerator map functions.
</summary>
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<returns > a <see cref= "T:Gtk.AccelMap" /> </returns>
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<remarks >
</remarks>
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</Docs>
</Member>
<Member MemberName= "Foreach" >
<MemberSignature Language= "C#" Value= "public static void Foreach (IntPtr data, Gtk.AccelMapForeach foreach_func);" />
<MemberType > Method</MemberType>
<ReturnValue >
<ReturnType > System.Void</ReturnType>
</ReturnValue>
<Parameters >
<Parameter Name= "data" Type= "System.IntPtr" />
<Parameter Name= "foreach_func" Type= "Gtk.AccelMapForeach" />
</Parameters>
<Docs >
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<summary >
Loops over the entries in the accelerator map whose accel path
doesn't match any of the filters added with
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<see cref= "M:Gtk.AccelMap.AddFilter" />
and executes <paramref name= "foreach_func" /> on each.
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</summary>
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<param name= "data" > a <see cref= "T:System.IntPtr" /> , data to pass to <paramref name= "foreach_func" /> </param>
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<param name= "foreach_func" > a <see cref= "T:Gtk.AccelMapForeach" /> , function to execute on each accel map entrey</param>
<remarks >
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See also <see cref= "M:Gtk.AccelMap.ForeachUnfiltered" /> .
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XXX: See http://bugzilla.ximian.com/show_bug.cgi?id=70912.
</remarks>
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</Docs>
</Member>
<Member MemberName= "ForeachUnfiltered" >
<MemberSignature Language= "C#" Value= "public static void ForeachUnfiltered (IntPtr data, Gtk.AccelMapForeach foreach_func);" />
<MemberType > Method</MemberType>
<ReturnValue >
<ReturnType > System.Void</ReturnType>
</ReturnValue>
<Parameters >
<Parameter Name= "data" Type= "System.IntPtr" />
<Parameter Name= "foreach_func" Type= "Gtk.AccelMapForeach" />
</Parameters>
<Docs >
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<summary > Loops over all entries in the accelerator map and executes
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* <paramref name= "foreach_func" /> on each.</summary>
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<param name= "data" > a <see cref= "T:System.IntPtr" /> </param>
<param name= "foreach_func" > a <see cref= "T:Gtk.AccelMapForeach" /> </param>
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<remarks >
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See also <see cref= "M:Gtk.AccelMap.Foreach" /> .
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</remarks>
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</Docs>
</Member>
<Member MemberName= ".ctor" >
<MemberSignature Language= "C#" Value= "protected AccelMap (GLib.GType gtype);" />
<MemberType > Constructor</MemberType>
<ReturnValue />
<Parameters >
<Parameter Name= "gtype" Type= "GLib.GType" />
</Parameters>
<Docs >
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<summary > Protected Constructor.</summary>
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<param name= "gtype" > a <see cref= "T:GLib.GType" /> </param>
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<remarks > Chain to this constructor if you have manually registered a native <see cref= "T:GLib.GType" /> value for your subclass.</remarks>
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</Docs>
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<Attributes >
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<Attribute >
<AttributeName > System.Obsolete(Message=null, IsError=False)</AttributeName>
</Attribute>
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</Attributes>
</Member>
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<Member MemberName= ".ctor" >
<MemberSignature Language= "C#" Value= "public AccelMap (IntPtr raw);" />
<MemberType > Constructor</MemberType>
<ReturnValue />
<Parameters >
<Parameter Name= "raw" Type= "System.IntPtr" />
</Parameters>
<Docs >
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<summary > Internal constructor</summary>
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<param name= "raw" > a <see cref= "T:System.IntPtr" /> </param>
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<remarks > This is not typically used by C# code.</remarks>
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</Docs>
</Member>
<Member MemberName= ".ctor" >
<MemberSignature Language= "C#" Value= "protected AccelMap ();" />
<MemberType > Constructor</MemberType>
<ReturnValue />
<Parameters />
<Docs >
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<summary > Protected constructor.</summary>
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<remarks >
</remarks>
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</Docs>
</Member>
<Member MemberName= "GType" >
<MemberSignature Language= "C#" Value= "public static GLib.GType GType { get; };" />
<MemberType > Property</MemberType>
<ReturnValue >
<ReturnType > GLib.GType</ReturnType>
</ReturnValue>
<Parameters />
<Docs >
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<summary > GType Property.</summary>
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<value > a <see cref= "T:GLib.GType" /> </value>
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<remarks > Returns the native <see cref= "T:GLib.GType" /> value for <see cref= "T:Gtk.AccelMap" /> .</remarks>
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</Docs>
</Member>
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<Member MemberName= "MapChanged" >
<MemberSignature Language= "C#" Value= "public event Gtk.MapChangedHandler MapChanged;" />
<MemberType > Event</MemberType>
<ReturnValue >
<ReturnType > Gtk.MapChangedHandler</ReturnType>
</ReturnValue>
<Parameters />
<Docs >
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<summary > Raised when there is a change to the global accelerator map.</summary>
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<remarks >
</remarks>
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</Docs>
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<Attributes >
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<Attribute >
<AttributeName > GLib.Signal(CName="changed")</AttributeName>
</Attribute>
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</Attributes>
</Member>
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<Member MemberName= "OnMapChanged" >
<MemberSignature Language= "C#" Value= "protected virtual void OnMapChanged (string accel_path, uint accel_key, Gdk.ModifierType accel_mods);" />
<MemberType > Method</MemberType>
<ReturnValue >
<ReturnType > System.Void</ReturnType>
</ReturnValue>
<Parameters >
<Parameter Name= "accel_path" Type= "System.String" />
<Parameter Name= "accel_key" Type= "System.UInt32" />
<Parameter Name= "accel_mods" Type= "Gdk.ModifierType" />
</Parameters>
<Docs >
<summary > Default handler for the <see cref= "M:Gtk.AccelMap.MapChanged" /> event.</summary>
<param name= "accel_path" > a <see cref= "T:System.String" /> </param>
<param name= "accel_key" > a <see cref= "T:System.UInt32" /> </param>
<param name= "accel_mods" > a <see cref= "T:System.Int32" /> </param>
<remarks > Override this method in a subclass to provide a default handler for the <see cref= "M:Gtk.AccelMap.MapChanged" /> event.</remarks>
</Docs>
</Member>
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</Members>
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</Type>