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18a33f72db
If we have an input parameter (or return value) we need to use (nullable). However, if it is an (inout) or (out) parameter, (optional) is sufficient. It looks like (nullable) could be used for everything according to the Annotation documentation, but (optional) is more specific.
236 lines
7.8 KiB
C
236 lines
7.8 KiB
C
/* GIO - GLib Input, Output and Streaming Library
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*
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* Copyright (C) 2009 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
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* Public License along with this library; if not, see <http://www.gnu.org/licenses/>.
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*
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* Author: Alexander Larsson <alexl@redhat.com>
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*/
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#include "config.h"
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#include "ginitable.h"
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#include "glibintl.h"
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/**
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* SECTION:ginitable
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* @short_description: Failable object initialization interface
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* @include: gio/gio.h
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* @see_also: #GAsyncInitable
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*
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* #GInitable is implemented by objects that can fail during
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* initialization. If an object implements this interface then
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* it must be initialized as the first thing after construction,
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* either via g_initable_init() or g_async_initable_init_async()
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* (the latter is only available if it also implements #GAsyncInitable).
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*
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* If the object is not initialized, or initialization returns with an
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* error, then all operations on the object except g_object_ref() and
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* g_object_unref() are considered to be invalid, and have undefined
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* behaviour. They will often fail with g_critical() or g_warning(), but
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* this must not be relied on.
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*
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* Users of objects implementing this are not intended to use
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* the interface method directly, instead it will be used automatically
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* in various ways. For C applications you generally just call
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* g_initable_new() directly, or indirectly via a foo_thing_new() wrapper.
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* This will call g_initable_init() under the cover, returning %NULL and
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* setting a #GError on failure (at which point the instance is
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* unreferenced).
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*
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* For bindings in languages where the native constructor supports
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* exceptions the binding could check for objects implemention %GInitable
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* during normal construction and automatically initialize them, throwing
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* an exception on failure.
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*/
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typedef GInitableIface GInitableInterface;
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G_DEFINE_INTERFACE (GInitable, g_initable, G_TYPE_OBJECT)
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static void
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g_initable_default_init (GInitableInterface *iface)
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{
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}
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/**
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* g_initable_init:
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* @initable: a #GInitable.
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* @cancellable: optional #GCancellable object, %NULL to ignore.
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* @error: a #GError location to store the error occurring, or %NULL to
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* ignore.
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*
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* Initializes the object implementing the interface.
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*
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* The object must be initialized before any real use after initial
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* construction, either with this function or g_async_initable_init_async().
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*
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* Implementations may also support cancellation. If @cancellable is not %NULL,
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* then initialization can be cancelled by triggering the cancellable object
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* from another thread. If the operation was cancelled, the error
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* %G_IO_ERROR_CANCELLED will be returned. If @cancellable is not %NULL and
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* the object doesn't support cancellable initialization the error
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* %G_IO_ERROR_NOT_SUPPORTED will be returned.
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*
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* If the object is not initialized, or initialization returns with an
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* error, then all operations on the object except g_object_ref() and
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* g_object_unref() are considered to be invalid, and have undefined
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* behaviour. See the [introduction][ginitable] for more details.
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*
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* Implementations of this method must be idempotent, i.e. multiple calls
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* to this function with the same argument should return the same results.
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* Only the first call initializes the object, further calls return the result
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* of the first call. This is so that it's safe to implement the singleton
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* pattern in the GObject constructor function.
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*
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* Returns: %TRUE if successful. If an error has occurred, this function will
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* return %FALSE and set @error appropriately if present.
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*
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* Since: 2.22
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*/
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gboolean
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g_initable_init (GInitable *initable,
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GCancellable *cancellable,
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GError **error)
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{
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GInitableIface *iface;
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g_return_val_if_fail (G_IS_INITABLE (initable), FALSE);
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iface = G_INITABLE_GET_IFACE (initable);
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return (* iface->init) (initable, cancellable, error);
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}
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/**
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* g_initable_new:
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* @object_type: a #GType supporting #GInitable.
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* @cancellable: optional #GCancellable object, %NULL to ignore.
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* @error: a #GError location to store the error occurring, or %NULL to
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* ignore.
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* @first_property_name: (nullable): the name of the first property, or %NULL if no
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* properties
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* @...: the value if the first property, followed by and other property
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* value pairs, and ended by %NULL.
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*
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* Helper function for constructing #GInitable object. This is
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* similar to g_object_new() but also initializes the object
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* and returns %NULL, setting an error on failure.
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*
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* Returns: (type GObject.Object) (transfer full): a newly allocated
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* #GObject, or %NULL on error
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*
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* Since: 2.22
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*/
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gpointer
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g_initable_new (GType object_type,
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GCancellable *cancellable,
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GError **error,
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const gchar *first_property_name,
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...)
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{
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GObject *object;
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va_list var_args;
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va_start (var_args, first_property_name);
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object = g_initable_new_valist (object_type,
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first_property_name, var_args,
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cancellable, error);
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va_end (var_args);
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return object;
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}
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/**
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* g_initable_newv:
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* @object_type: a #GType supporting #GInitable.
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* @n_parameters: the number of parameters in @parameters
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* @parameters: (array length=n_parameters): the parameters to use to construct the object
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* @cancellable: optional #GCancellable object, %NULL to ignore.
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* @error: a #GError location to store the error occurring, or %NULL to
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* ignore.
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*
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* Helper function for constructing #GInitable object. This is
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* similar to g_object_newv() but also initializes the object
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* and returns %NULL, setting an error on failure.
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*
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* Returns: (type GObject.Object) (transfer full): a newly allocated
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* #GObject, or %NULL on error
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*
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* Since: 2.22
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*/
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gpointer
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g_initable_newv (GType object_type,
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guint n_parameters,
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GParameter *parameters,
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GCancellable *cancellable,
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GError **error)
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{
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GObject *obj;
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g_return_val_if_fail (G_TYPE_IS_INITABLE (object_type), NULL);
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obj = g_object_newv (object_type, n_parameters, parameters);
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if (!g_initable_init (G_INITABLE (obj), cancellable, error))
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{
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g_object_unref (obj);
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return NULL;
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}
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return (gpointer)obj;
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}
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/**
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* g_initable_new_valist:
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* @object_type: a #GType supporting #GInitable.
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* @first_property_name: the name of the first property, followed by
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* the value, and other property value pairs, and ended by %NULL.
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* @var_args: The var args list generated from @first_property_name.
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* @cancellable: optional #GCancellable object, %NULL to ignore.
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* @error: a #GError location to store the error occurring, or %NULL to
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* ignore.
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*
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* Helper function for constructing #GInitable object. This is
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* similar to g_object_new_valist() but also initializes the object
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* and returns %NULL, setting an error on failure.
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*
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* Returns: (type GObject.Object) (transfer full): a newly allocated
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* #GObject, or %NULL on error
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*
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* Since: 2.22
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*/
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GObject*
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g_initable_new_valist (GType object_type,
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const gchar *first_property_name,
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va_list var_args,
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GCancellable *cancellable,
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GError **error)
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{
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GObject *obj;
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g_return_val_if_fail (G_TYPE_IS_INITABLE (object_type), NULL);
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obj = g_object_new_valist (object_type,
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first_property_name,
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var_args);
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if (!g_initable_init (G_INITABLE (obj), cancellable, error))
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{
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g_object_unref (obj);
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return NULL;
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}
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return obj;
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}
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