forked from AuroraMiddleware/gtk
fcaa9aa22d
Follow the naming policy for private headers.
460 lines
13 KiB
C
460 lines
13 KiB
C
/*
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* Copyright © 2013 Canonical Limited
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* Copyright © 2016 Sébastien Wilmet
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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 licence, 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, see <http://www.gnu.org/licenses/>.
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*
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* Authors: Ryan Lortie <desrt@desrt.ca>
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* Sébastien Wilmet <swilmet@gnome.org>
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*/
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#include "config.h"
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#include "gtkapplicationaccelsprivate.h"
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#include "gtkactionmuxerprivate.h"
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#include <string.h>
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typedef struct
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{
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guint key;
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GdkModifierType modifier;
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} AccelKey;
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struct _GtkApplicationAccels
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{
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GObject parent;
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GHashTable *action_to_accels;
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GHashTable *accel_to_actions;
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};
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G_DEFINE_TYPE (GtkApplicationAccels, gtk_application_accels, G_TYPE_OBJECT)
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static AccelKey *
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accel_key_copy (const AccelKey *source)
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{
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AccelKey *dest;
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dest = g_slice_new (AccelKey);
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dest->key = source->key;
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dest->modifier = source->modifier;
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return dest;
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}
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static void
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accel_key_free (gpointer data)
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{
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AccelKey *key = data;
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g_slice_free (AccelKey, key);
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}
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static guint
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accel_key_hash (gconstpointer data)
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{
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const AccelKey *key = data;
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return key->key + (key->modifier << 16);
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}
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static gboolean
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accel_key_equal (gconstpointer a,
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gconstpointer b)
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{
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const AccelKey *ak = a;
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const AccelKey *bk = b;
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return ak->key == bk->key && ak->modifier == bk->modifier;
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}
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static void
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add_entry (GtkApplicationAccels *accels,
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AccelKey *key,
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const gchar *action_and_target)
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{
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const gchar **old;
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const gchar **new;
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gint n;
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old = g_hash_table_lookup (accels->accel_to_actions, key);
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if (old != NULL)
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for (n = 0; old[n]; n++) /* find the length */
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;
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else
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n = 0;
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new = g_new (const gchar *, n + 1 + 1);
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memcpy (new, old, n * sizeof (const gchar *));
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new[n] = action_and_target;
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new[n + 1] = NULL;
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g_hash_table_insert (accels->accel_to_actions, accel_key_copy (key), new);
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}
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static void
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remove_entry (GtkApplicationAccels *accels,
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AccelKey *key,
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const gchar *action_and_target)
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{
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const gchar **old;
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const gchar **new;
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gint n, i;
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/* if we can't find the entry then something has gone very wrong... */
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old = g_hash_table_lookup (accels->accel_to_actions, key);
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g_assert (old != NULL);
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for (n = 0; old[n]; n++) /* find the length */
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;
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g_assert_cmpint (n, >, 0);
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if (n == 1)
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{
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/* The simple case of removing the last action for an accel. */
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g_assert_cmpstr (old[0], ==, action_and_target);
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g_hash_table_remove (accels->accel_to_actions, key);
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return;
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}
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for (i = 0; i < n; i++)
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if (g_str_equal (old[i], action_and_target))
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break;
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/* We must have found it... */
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g_assert_cmpint (i, <, n);
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new = g_new (const gchar *, n - 1 + 1);
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memcpy (new, old, i * sizeof (const gchar *));
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memcpy (new + i, old + i + 1, (n - (i + 1)) * sizeof (const gchar *));
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new[n - 1] = NULL;
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g_hash_table_insert (accels->accel_to_actions, accel_key_copy (key), new);
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}
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static void
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gtk_application_accels_finalize (GObject *object)
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{
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GtkApplicationAccels *accels = GTK_APPLICATION_ACCELS (object);
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g_hash_table_unref (accels->accel_to_actions);
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g_hash_table_unref (accels->action_to_accels);
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G_OBJECT_CLASS (gtk_application_accels_parent_class)->finalize (object);
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}
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static void
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gtk_application_accels_class_init (GtkApplicationAccelsClass *klass)
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{
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GObjectClass *object_class = G_OBJECT_CLASS (klass);
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object_class->finalize = gtk_application_accels_finalize;
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}
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static void
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gtk_application_accels_init (GtkApplicationAccels *accels)
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{
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accels->accel_to_actions = g_hash_table_new_full (accel_key_hash, accel_key_equal,
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accel_key_free, g_free);
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accels->action_to_accels = g_hash_table_new_full (g_str_hash, g_str_equal, g_free, g_free);
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}
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GtkApplicationAccels *
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gtk_application_accels_new (void)
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{
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return g_object_new (GTK_TYPE_APPLICATION_ACCELS, NULL);
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}
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void
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gtk_application_accels_set_accels_for_action (GtkApplicationAccels *accels,
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const gchar *detailed_action_name,
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const gchar * const *accelerators)
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{
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gchar *action_and_target;
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AccelKey *keys, *old_keys;
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gint i, n;
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action_and_target = gtk_normalise_detailed_action_name (detailed_action_name);
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n = accelerators ? g_strv_length ((gchar **) accelerators) : 0;
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if (n > 0)
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{
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keys = g_new0 (AccelKey, n + 1);
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for (i = 0; i < n; i++)
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{
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gtk_accelerator_parse (accelerators[i], &keys[i].key, &keys[i].modifier);
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if (keys[i].key == 0)
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{
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g_warning ("Unable to parse accelerator '%s': ignored request to install %d accelerators",
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accelerators[i], n);
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g_free (action_and_target);
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g_free (keys);
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return;
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}
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}
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}
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else
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keys = NULL;
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old_keys = g_hash_table_lookup (accels->action_to_accels, action_and_target);
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if (old_keys)
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{
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/* We need to remove accel entries from existing keys */
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for (i = 0; old_keys[i].key; i++)
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remove_entry (accels, &old_keys[i], action_and_target);
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}
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if (keys)
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{
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g_hash_table_replace (accels->action_to_accels, action_and_target, keys);
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for (i = 0; i < n; i++)
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add_entry (accels, &keys[i], action_and_target);
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}
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else
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{
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g_hash_table_remove (accels->action_to_accels, action_and_target);
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g_free (action_and_target);
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}
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}
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gchar **
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gtk_application_accels_get_accels_for_action (GtkApplicationAccels *accels,
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const gchar *detailed_action_name)
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{
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gchar *action_and_target;
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AccelKey *keys;
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gchar **result;
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gint n, i = 0;
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action_and_target = gtk_normalise_detailed_action_name (detailed_action_name);
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keys = g_hash_table_lookup (accels->action_to_accels, action_and_target);
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if (!keys)
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{
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g_free (action_and_target);
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return g_new0 (gchar *, 0 + 1);
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}
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for (n = 0; keys[n].key; n++)
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;
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result = g_new0 (gchar *, n + 1);
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for (i = 0; i < n; i++)
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result[i] = gtk_accelerator_name (keys[i].key, keys[i].modifier);
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g_free (action_and_target);
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return result;
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}
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gchar **
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gtk_application_accels_get_actions_for_accel (GtkApplicationAccels *accels,
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const gchar *accel)
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{
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const gchar * const *actions_and_targets;
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gchar **detailed_actions;
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AccelKey accel_key;
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guint i, n;
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gtk_accelerator_parse (accel, &accel_key.key, &accel_key.modifier);
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if (accel_key.key == 0)
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{
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g_critical ("invalid accelerator string '%s'", accel);
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g_return_val_if_fail (accel_key.key != 0, NULL);
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}
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actions_and_targets = g_hash_table_lookup (accels->accel_to_actions, &accel_key);
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n = actions_and_targets ? g_strv_length ((gchar **) actions_and_targets) : 0;
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detailed_actions = g_new0 (gchar *, n + 1);
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for (i = 0; i < n; i++)
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{
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const gchar *action_and_target = actions_and_targets[i];
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const gchar *sep;
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GVariant *target;
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sep = strrchr (action_and_target, '|');
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target = g_variant_parse (NULL, action_and_target, sep, NULL, NULL);
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detailed_actions[i] = g_action_print_detailed_name (sep + 1, target);
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if (target)
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g_variant_unref (target);
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}
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detailed_actions[n] = NULL;
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return detailed_actions;
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}
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gchar **
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gtk_application_accels_list_action_descriptions (GtkApplicationAccels *accels)
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{
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GHashTableIter iter;
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gchar **result;
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gint n, i = 0;
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gpointer key;
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n = g_hash_table_size (accels->action_to_accels);
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result = g_new (gchar *, n + 1);
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g_hash_table_iter_init (&iter, accels->action_to_accels);
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while (g_hash_table_iter_next (&iter, &key, NULL))
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{
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const gchar *action_and_target = key;
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const gchar *sep;
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GVariant *target;
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sep = strrchr (action_and_target, '|');
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target = g_variant_parse (NULL, action_and_target, sep, NULL, NULL);
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result[i++] = g_action_print_detailed_name (sep + 1, target);
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if (target)
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g_variant_unref (target);
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}
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g_assert_cmpint (i, ==, n);
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result[i] = NULL;
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return result;
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}
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void
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gtk_application_accels_foreach_key (GtkApplicationAccels *accels,
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GtkWindow *window,
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GtkWindowKeysForeachFunc callback,
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gpointer user_data)
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{
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GHashTableIter iter;
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gpointer key;
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g_hash_table_iter_init (&iter, accels->accel_to_actions);
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while (g_hash_table_iter_next (&iter, &key, NULL))
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{
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AccelKey *accel_key = key;
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(* callback) (window, accel_key->key, accel_key->modifier, FALSE, user_data);
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}
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}
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gboolean
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gtk_application_accels_activate (GtkApplicationAccels *accels,
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GActionGroup *action_group,
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guint key,
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GdkModifierType modifier)
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{
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AccelKey accel_key = { key, modifier };
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const gchar **actions;
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gint i;
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actions = g_hash_table_lookup (accels->accel_to_actions, &accel_key);
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if (actions == NULL)
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return FALSE;
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/* We may have more than one action on a given accel. This could be
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* the case if we have different types of windows with different
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* actions in each.
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*
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* Find the first one that will successfully activate and use it.
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*/
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for (i = 0; actions[i]; i++)
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{
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const GVariantType *parameter_type;
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const gchar *action_name;
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const gchar *sep;
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gboolean enabled;
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GVariant *target;
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sep = strrchr (actions[i], '|');
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action_name = sep + 1;
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if (!g_action_group_query_action (action_group, action_name, &enabled, ¶meter_type, NULL, NULL, NULL))
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continue;
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if (!enabled)
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continue;
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/* We found an action with the correct name and it's enabled.
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* This is the action that we are going to try to invoke.
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*
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* There is still the possibility that the target value doesn't
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* match the expected parameter type. In that case, we will print
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* a warning.
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*
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* Note: we want to hold a ref on the target while we're invoking
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* the action to prevent trouble if someone uninstalls the accel
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* from the handler. That's not a problem since we're parsing it.
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*/
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if (actions[i] != sep) /* if it has a target... */
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{
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GError *error = NULL;
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if (parameter_type == NULL)
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{
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gchar *accel_str = gtk_accelerator_name (key, modifier);
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g_warning ("Accelerator '%s' tries to invoke action '%s' with target, but action has no parameter",
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accel_str, action_name);
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g_free (accel_str);
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return TRUE;
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}
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target = g_variant_parse (NULL, actions[i], sep, NULL, &error);
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g_assert_no_error (error);
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g_assert (target);
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if (!g_variant_is_of_type (target, parameter_type))
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{
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gchar *accel_str = gtk_accelerator_name (key, modifier);
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gchar *typestr = g_variant_type_dup_string (parameter_type);
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gchar *targetstr = g_variant_print (target, TRUE);
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g_warning ("Accelerator '%s' tries to invoke action '%s' with target '%s',"
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" but action expects parameter with type '%s'", accel_str, action_name, targetstr, typestr);
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g_variant_unref (target);
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g_free (targetstr);
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g_free (accel_str);
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g_free (typestr);
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return TRUE;
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}
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}
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else
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{
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if (parameter_type != NULL)
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{
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gchar *accel_str = gtk_accelerator_name (key, modifier);
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gchar *typestr = g_variant_type_dup_string (parameter_type);
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g_warning ("Accelerator '%s' tries to invoke action '%s' without target,"
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" but action expects parameter with type '%s'", accel_str, action_name, typestr);
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g_free (accel_str);
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g_free (typestr);
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return TRUE;
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}
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target = NULL;
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}
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g_action_group_activate_action (action_group, action_name, target);
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if (target)
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g_variant_unref (target);
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return TRUE;
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}
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return FALSE;
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}
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