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422 lines
15 KiB
C
422 lines
15 KiB
C
/* GDK - The GIMP Drawing Kit
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* Copyright (C) 2000 Red Hat, Inc.
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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 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
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* Free Software Foundation, Inc., 59 Temple Place - Suite 330,
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* Boston, MA 02111-1307, USA.
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*/
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/*
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* Modified by the GTK+ Team and others 1997-2000. See the AUTHORS
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* file for a list of people on the GTK+ Team. See the ChangeLog
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* files for a list of changes. These files are distributed with
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* GTK+ at ftp://ftp.gtk.org/pub/gtk/.
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*/
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#include "config.h"
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#include "gdkkeys.h"
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#include "gdkdisplay.h"
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/**
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* SECTION:keys
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* @Short_description: Functions for manipulating keyboard codes
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* @Title: Key Values
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*
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* Key values are the codes which are sent whenever a key is pressed or released.
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* They appear in the #GdkEventKey.keyval field of the
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* #GdkEventKey structure, which is passed to signal handlers for the
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* #GtkWidget::key-press-event and #GtkWidget::key-release-event signals.
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* The complete list of key values can be found in the
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* <filename><gdk/gdkkeysyms.h></filename> header file.
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*
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* Key values are regularly updated from the upstream X.org X11 implementation,
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* so new values are added regularly. They will be prefixed with GDK_KEY_ rather
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* than XF86XK_ or XK_ (for older symbols).
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*
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* Key values can be converted into a string representation using
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* gdk_keyval_name(). The reverse function, converting a string to a key value,
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* is provided by gdk_keyval_from_name().
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*
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* The case of key values can be determined using gdk_keyval_is_upper() and
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* gdk_keyval_is_lower(). Key values can be converted to upper or lower case
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* using gdk_keyval_to_upper() and gdk_keyval_to_lower().
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*
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* When it makes sense, key values can be converted to and from
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* Unicode characters with gdk_keyval_to_unicode() and gdk_unicode_to_keyval().
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*
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* <para id="key-group-explanation">
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* One #GdkKeymap object exists for each user display. gdk_keymap_get_default()
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* returns the #GdkKeymap for the default display; to obtain keymaps for other
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* displays, use gdk_keymap_get_for_display(). A keymap
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* is a mapping from #GdkKeymapKey to key values. You can think of a #GdkKeymapKey
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* as a representation of a symbol printed on a physical keyboard key. That is, it
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* contains three pieces of information. First, it contains the hardware keycode;
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* this is an identifying number for a physical key. Second, it contains the
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* <firstterm>level</firstterm> of the key. The level indicates which symbol on the
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* key will be used, in a vertical direction. So on a standard US keyboard, the key
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* with the number "1" on it also has the exclamation point ("!") character on
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* it. The level indicates whether to use the "1" or the "!" symbol. The letter
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* keys are considered to have a lowercase letter at level 0, and an uppercase
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* letter at level 1, though only the uppercase letter is printed. Third, the
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* #GdkKeymapKey contains a group; groups are not used on standard US keyboards,
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* but are used in many other countries. On a keyboard with groups, there can be 3
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* or 4 symbols printed on a single key. The group indicates movement in a
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* horizontal direction. Usually groups are used for two different languages. In
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* group 0, a key might have two English characters, and in group 1 it might have
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* two Hebrew characters. The Hebrew characters will be printed on the key next to
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* the English characters.
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* </para>
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*
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* In order to use a keymap to interpret a key event, it's necessary to first
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* convert the keyboard state into an effective group and level. This is done via a
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* set of rules that varies widely according to type of keyboard and user
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* configuration. The function gdk_keymap_translate_keyboard_state() accepts a
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* keyboard state -- consisting of hardware keycode pressed, active modifiers, and
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* active group -- applies the appropriate rules, and returns the group/level to be
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* used to index the keymap, along with the modifiers which did not affect the
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* group and level. i.e. it returns "unconsumed modifiers." The keyboard group may
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* differ from the effective group used for keymap lookups because some keys don't
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* have multiple groups - e.g. the Enter key is always in group 0 regardless of
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* keyboard state.
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*
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* Note that gdk_keymap_translate_keyboard_state() also returns the keyval, i.e. it
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* goes ahead and performs the keymap lookup in addition to telling you which
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* effective group/level values were used for the lookup. #GdkEventKey already
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* contains this keyval, however, so you don't normally need to call
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* gdk_keymap_translate_keyboard_state() just to get the keyval.
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*/
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enum {
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DIRECTION_CHANGED,
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KEYS_CHANGED,
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STATE_CHANGED,
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LAST_SIGNAL
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};
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static guint signals[LAST_SIGNAL] = { 0 };
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G_DEFINE_TYPE (GdkKeymap, gdk_keymap, G_TYPE_OBJECT)
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static void
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gdk_keymap_class_init (GdkKeymapClass *klass)
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{
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GObjectClass *object_class = G_OBJECT_CLASS (klass);
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/**
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* GdkKeymap::direction-changed:
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* @keymap: the object on which the signal is emitted
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*
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* The ::direction-changed signal gets emitted when the direction of
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* the keymap changes.
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*
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* Since: 2.0
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*/
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signals[DIRECTION_CHANGED] =
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g_signal_new ("direction-changed",
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G_OBJECT_CLASS_TYPE (object_class),
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G_SIGNAL_RUN_LAST,
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G_STRUCT_OFFSET (GdkKeymapClass, direction_changed),
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NULL, NULL,
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g_cclosure_marshal_VOID__VOID,
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G_TYPE_NONE,
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0);
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/**
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* GdkKeymap::keys-changed:
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* @keymap: the object on which the signal is emitted
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*
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* The ::keys-changed signal is emitted when the mapping represented by
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* @keymap changes.
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*
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* Since: 2.2
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*/
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signals[KEYS_CHANGED] =
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g_signal_new ("keys-changed",
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G_OBJECT_CLASS_TYPE (object_class),
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G_SIGNAL_RUN_LAST,
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G_STRUCT_OFFSET (GdkKeymapClass, keys_changed),
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NULL, NULL,
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g_cclosure_marshal_VOID__VOID,
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G_TYPE_NONE,
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0);
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/**
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* GdkKeymap::state-changed:
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* @keymap: the object on which the signal is emitted
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*
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* The ::state-changed signal is emitted when the state of the
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* keyboard changes, e.g when Caps Lock is turned on or off.
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* See gdk_keymap_get_caps_lock_state().
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*
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* Since: 2.16
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*/
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signals[STATE_CHANGED] =
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g_signal_new ("state_changed",
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G_OBJECT_CLASS_TYPE (object_class),
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G_SIGNAL_RUN_LAST,
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G_STRUCT_OFFSET (GdkKeymapClass, state_changed),
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NULL, NULL,
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g_cclosure_marshal_VOID__VOID,
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G_TYPE_NONE,
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0);
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}
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static void
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gdk_keymap_init (GdkKeymap *keymap)
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{
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}
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/* Other key-handling stuff
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*/
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#ifndef HAVE_XCONVERTCASE
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#include "gdkkeysyms.h"
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/* compatibility function from X11R6.3, since XConvertCase is not
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* supplied by X11R5.
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*/
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/**
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* gdk_keyval_convert_case:
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* @symbol: a keyval
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* @lower: (out): return location for lowercase version of @symbol
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* @upper: (out): return location for uppercase version of @symbol
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*
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* Obtains the upper- and lower-case versions of the keyval @symbol.
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* Examples of keyvals are #GDK_KEY_a, #GDK_KEY_Enter, #GDK_KEY_F1, etc.
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*
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**/
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void
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gdk_keyval_convert_case (guint symbol,
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guint *lower,
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guint *upper)
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{
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guint xlower = symbol;
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guint xupper = symbol;
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/* Check for directly encoded 24-bit UCS characters: */
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if ((symbol & 0xff000000) == 0x01000000)
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{
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if (lower)
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*lower = gdk_unicode_to_keyval (g_unichar_tolower (symbol & 0x00ffffff));
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if (upper)
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*upper = gdk_unicode_to_keyval (g_unichar_toupper (symbol & 0x00ffffff));
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return;
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}
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switch (symbol >> 8)
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{
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case 0: /* Latin 1 */
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if ((symbol >= GDK_KEY_A) && (symbol <= GDK_KEY_Z))
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xlower += (GDK_KEY_a - GDK_KEY_A);
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else if ((symbol >= GDK_KEY_a) && (symbol <= GDK_KEY_z))
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xupper -= (GDK_KEY_a - GDK_KEY_A);
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else if ((symbol >= GDK_KEY_Agrave) && (symbol <= GDK_KEY_Odiaeresis))
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xlower += (GDK_KEY_agrave - GDK_KEY_Agrave);
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else if ((symbol >= GDK_KEY_agrave) && (symbol <= GDK_KEY_odiaeresis))
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xupper -= (GDK_KEY_agrave - GDK_KEY_Agrave);
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else if ((symbol >= GDK_KEY_Ooblique) && (symbol <= GDK_KEY_Thorn))
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xlower += (GDK_KEY_oslash - GDK_KEY_Ooblique);
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else if ((symbol >= GDK_KEY_oslash) && (symbol <= GDK_KEY_thorn))
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xupper -= (GDK_KEY_oslash - GDK_KEY_Ooblique);
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break;
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case 1: /* Latin 2 */
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/* Assume the KeySym is a legal value (ignore discontinuities) */
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if (symbol == GDK_KEY_Aogonek)
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xlower = GDK_KEY_aogonek;
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else if (symbol >= GDK_KEY_Lstroke && symbol <= GDK_KEY_Sacute)
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xlower += (GDK_KEY_lstroke - GDK_KEY_Lstroke);
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else if (symbol >= GDK_KEY_Scaron && symbol <= GDK_KEY_Zacute)
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xlower += (GDK_KEY_scaron - GDK_KEY_Scaron);
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else if (symbol >= GDK_KEY_Zcaron && symbol <= GDK_KEY_Zabovedot)
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xlower += (GDK_KEY_zcaron - GDK_KEY_Zcaron);
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else if (symbol == GDK_KEY_aogonek)
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xupper = GDK_KEY_Aogonek;
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else if (symbol >= GDK_KEY_lstroke && symbol <= GDK_KEY_sacute)
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xupper -= (GDK_KEY_lstroke - GDK_KEY_Lstroke);
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else if (symbol >= GDK_KEY_scaron && symbol <= GDK_KEY_zacute)
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xupper -= (GDK_KEY_scaron - GDK_KEY_Scaron);
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else if (symbol >= GDK_KEY_zcaron && symbol <= GDK_KEY_zabovedot)
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xupper -= (GDK_KEY_zcaron - GDK_KEY_Zcaron);
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else if (symbol >= GDK_KEY_Racute && symbol <= GDK_KEY_Tcedilla)
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xlower += (GDK_KEY_racute - GDK_KEY_Racute);
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else if (symbol >= GDK_KEY_racute && symbol <= GDK_KEY_tcedilla)
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xupper -= (GDK_KEY_racute - GDK_KEY_Racute);
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break;
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case 2: /* Latin 3 */
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/* Assume the KeySym is a legal value (ignore discontinuities) */
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if (symbol >= GDK_KEY_Hstroke && symbol <= GDK_KEY_Hcircumflex)
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xlower += (GDK_KEY_hstroke - GDK_KEY_Hstroke);
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else if (symbol >= GDK_KEY_Gbreve && symbol <= GDK_KEY_Jcircumflex)
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xlower += (GDK_KEY_gbreve - GDK_KEY_Gbreve);
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else if (symbol >= GDK_KEY_hstroke && symbol <= GDK_KEY_hcircumflex)
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xupper -= (GDK_KEY_hstroke - GDK_KEY_Hstroke);
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else if (symbol >= GDK_KEY_gbreve && symbol <= GDK_KEY_jcircumflex)
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xupper -= (GDK_KEY_gbreve - GDK_KEY_Gbreve);
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else if (symbol >= GDK_KEY_Cabovedot && symbol <= GDK_KEY_Scircumflex)
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xlower += (GDK_KEY_cabovedot - GDK_KEY_Cabovedot);
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else if (symbol >= GDK_KEY_cabovedot && symbol <= GDK_KEY_scircumflex)
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xupper -= (GDK_KEY_cabovedot - GDK_KEY_Cabovedot);
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break;
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case 3: /* Latin 4 */
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/* Assume the KeySym is a legal value (ignore discontinuities) */
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if (symbol >= GDK_KEY_Rcedilla && symbol <= GDK_KEY_Tslash)
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xlower += (GDK_KEY_rcedilla - GDK_KEY_Rcedilla);
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else if (symbol >= GDK_KEY_rcedilla && symbol <= GDK_KEY_tslash)
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xupper -= (GDK_KEY_rcedilla - GDK_KEY_Rcedilla);
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else if (symbol == GDK_KEY_ENG)
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xlower = GDK_KEY_eng;
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else if (symbol == GDK_KEY_eng)
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xupper = GDK_KEY_ENG;
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else if (symbol >= GDK_KEY_Amacron && symbol <= GDK_KEY_Umacron)
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xlower += (GDK_KEY_amacron - GDK_KEY_Amacron);
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else if (symbol >= GDK_KEY_amacron && symbol <= GDK_KEY_umacron)
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xupper -= (GDK_KEY_amacron - GDK_KEY_Amacron);
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break;
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case 6: /* Cyrillic */
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/* Assume the KeySym is a legal value (ignore discontinuities) */
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if (symbol >= GDK_KEY_Serbian_DJE && symbol <= GDK_KEY_Serbian_DZE)
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xlower -= (GDK_KEY_Serbian_DJE - GDK_KEY_Serbian_dje);
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else if (symbol >= GDK_KEY_Serbian_dje && symbol <= GDK_KEY_Serbian_dze)
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xupper += (GDK_KEY_Serbian_DJE - GDK_KEY_Serbian_dje);
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else if (symbol >= GDK_KEY_Cyrillic_YU && symbol <= GDK_KEY_Cyrillic_HARDSIGN)
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xlower -= (GDK_KEY_Cyrillic_YU - GDK_KEY_Cyrillic_yu);
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else if (symbol >= GDK_KEY_Cyrillic_yu && symbol <= GDK_KEY_Cyrillic_hardsign)
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xupper += (GDK_KEY_Cyrillic_YU - GDK_KEY_Cyrillic_yu);
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break;
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case 7: /* Greek */
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/* Assume the KeySym is a legal value (ignore discontinuities) */
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if (symbol >= GDK_KEY_Greek_ALPHAaccent && symbol <= GDK_KEY_Greek_OMEGAaccent)
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xlower += (GDK_KEY_Greek_alphaaccent - GDK_KEY_Greek_ALPHAaccent);
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else if (symbol >= GDK_KEY_Greek_alphaaccent && symbol <= GDK_KEY_Greek_omegaaccent &&
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symbol != GDK_KEY_Greek_iotaaccentdieresis &&
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symbol != GDK_KEY_Greek_upsilonaccentdieresis)
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xupper -= (GDK_KEY_Greek_alphaaccent - GDK_KEY_Greek_ALPHAaccent);
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else if (symbol >= GDK_KEY_Greek_ALPHA && symbol <= GDK_KEY_Greek_OMEGA)
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xlower += (GDK_KEY_Greek_alpha - GDK_KEY_Greek_ALPHA);
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else if (symbol >= GDK_KEY_Greek_alpha && symbol <= GDK_KEY_Greek_omega &&
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symbol != GDK_KEY_Greek_finalsmallsigma)
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xupper -= (GDK_KEY_Greek_alpha - GDK_KEY_Greek_ALPHA);
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break;
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}
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if (lower)
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*lower = xlower;
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if (upper)
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*upper = xupper;
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}
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#endif
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/**
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* gdk_keyval_to_upper:
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* @keyval: a key value.
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*
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* Converts a key value to upper case, if applicable.
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*
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* Returns: the upper case form of @keyval, or @keyval itself if it is already
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* in upper case or it is not subject to case conversion.
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*/
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guint
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gdk_keyval_to_upper (guint keyval)
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{
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guint result;
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gdk_keyval_convert_case (keyval, NULL, &result);
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return result;
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}
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/**
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* gdk_keyval_to_lower:
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* @keyval: a key value.
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*
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* Converts a key value to lower case, if applicable.
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*
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* Returns: the lower case form of @keyval, or @keyval itself if it is already
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* in lower case or it is not subject to case conversion.
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*/
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guint
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gdk_keyval_to_lower (guint keyval)
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{
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guint result;
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gdk_keyval_convert_case (keyval, &result, NULL);
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return result;
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}
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/**
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* gdk_keyval_is_upper:
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* @keyval: a key value.
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*
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* Returns %TRUE if the given key value is in upper case.
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*
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* Returns: %TRUE if @keyval is in upper case, or if @keyval is not subject to
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* case conversion.
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*/
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gboolean
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gdk_keyval_is_upper (guint keyval)
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{
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if (keyval)
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{
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guint upper_val = 0;
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gdk_keyval_convert_case (keyval, NULL, &upper_val);
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return upper_val == keyval;
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}
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return FALSE;
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}
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/**
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* gdk_keyval_is_lower:
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* @keyval: a key value.
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*
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* Returns %TRUE if the given key value is in lower case.
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*
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* Returns: %TRUE if @keyval is in lower case, or if @keyval is not
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* subject to case conversion.
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*/
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gboolean
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gdk_keyval_is_lower (guint keyval)
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{
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if (keyval)
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{
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guint lower_val = 0;
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gdk_keyval_convert_case (keyval, &lower_val, NULL);
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return lower_val == keyval;
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}
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return FALSE;
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}
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/**
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* gdk_keymap_get_default:
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*
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* Returns the #GdkKeymap attached to the default display.
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*
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* Returns: (transfer none): the #GdkKeymap attached to the default display.
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*/
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GdkKeymap*
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gdk_keymap_get_default (void)
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{
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return gdk_keymap_get_for_display (gdk_display_get_default ());
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}
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