WebProcessExtension

Represents an extension of the web process.

WebKitWebProcessExtension is a loadable module for the web process. It allows you to execute code in the web process and being able to use the DOM API, to change any request or to inject custom JavaScript code, for example.

To create a WebKitWebProcessExtension you should write a module with an initialization function that could be either webkit_web_process_extension_initialize() with prototype #WebKitWebProcessExtensionInitializeFunction or webkit_web_process_extension_initialize_with_user_data() with prototype #WebKitWebProcessExtensionInitializeWithUserDataFunction. This function has to be public and it has to use the #G_MODULE_EXPORT macro. It is called when the web process is initialized.

static void
web_page_created_callback (WebKitWebProcessExtension *extension,
                           WebKitWebPage             *web_page,
                           gpointer                   user_data)
{
    g_print ("Page %d created for %s\n",
             webkit_web_page_get_id (web_page),
             webkit_web_page_get_uri (web_page));
}

G_MODULE_EXPORT void
webkit_web_process_extension_initialize (WebKitWebProcessExtension *extension)
{
    g_signal_connect (extension, "page-created",
                      G_CALLBACK (web_page_created_callback),
                      NULL);
}

The previous piece of code shows a trivial example of an extension that notifies when a #WebKitWebPage is created.

WebKit has to know where it can find the created WebKitWebProcessExtension. To do so you should use the webkit_web_context_set_web_extensions_directory() function. The signal #WebKitWebContext::initialize-web-extensions is the recommended place to call it.

To provide the initialization data used by the webkit_web_process_extension_initialize_with_user_data() function, you have to call webkit_web_context_set_web_extensions_initialization_user_data() with the desired data as parameter. You can see an example of this in the following piece of code:

#define WEB_EXTENSIONS_DIRECTORY // ...

static void
initialize_web_extensions (WebKitWebContext *context,
                           gpointer          user_data)
{
  // Web Extensions get a different ID for each Web Process
  static guint32 unique_id = 0;

  webkit_web_context_set_web_extensions_directory (
     context, WEB_EXTENSIONS_DIRECTORY);
  webkit_web_context_set_web_extensions_initialization_user_data (
     context, g_variant_new_uint32 (unique_id++));
}

int main (int argc, char **argv)
{
  g_signal_connect (webkit_web_context_get_default (),
                   "initialize-web-extensions",
                    G_CALLBACK (initialize_web_extensions),
                    NULL);

  GtkWidget *view = webkit_web_view_new ();

  // ...
}

Constructors

this
this(void* ptr, Flag!"Take" take)

Members

Functions

connectPageCreated
ulong connectPageCreated(T callback, Flag!"After" after)

Connect to PageCreated signal.

connectUserMessageReceived
ulong connectUserMessageReceived(T callback, Flag!"After" after)

Connect to UserMessageReceived signal.

getPage
webkitwebprocessextension.web_page.WebPage getPage(ulong pageId)

Get the web page of the given page_id.

self
WebProcessExtension self()

Returns this, for use in with statements.

sendMessageToContext
void sendMessageToContext(webkitwebprocessextension.user_message.UserMessage message, gio.cancellable.Cancellable cancellable, gio.types.AsyncReadyCallback callback)

Send message to the #WebKitWebContext corresponding to extension. If message is floating, it's consumed.

sendMessageToContextFinish
webkitwebprocessextension.user_message.UserMessage sendMessageToContextFinish(gio.async_result.AsyncResult result)

Finish an asynchronous operation started with webkitwebprocessextension.web_process_extension.WebProcessExtension.sendMessageToContext.

Properties

gType
GType gType [@property getter]

Static functions

getGType
GType getGType()

Inherited Members

From ObjectG

setGObject
void setGObject(void* cObj, Flag!"Take" take)

Set the GObject of a D ObjectG wrapper.

cPtr
void* cPtr(Flag!"Dup" dup)

Get a pointer to the underlying C object.

ref_
void* ref_(void* gObj)

Calls g_object_ref() on a GObject.

unref
unref(void* gObj)

Calls g_object_unref() on a GObject.

getType
GType getType()

Get the GType of an object.

gType
GType gType [@property getter]

GObject GType property.

self
ObjectG self()

Convenience method to return this cast to a type. For use in D with statements.

getDObject
T getDObject(void* cptr, Flag!"Take" take)

Template to get the D object from a C GObject and cast it to the given D object type.

connectSignalClosure
ulong connectSignalClosure(string signalDetail, DClosure closure, Flag!"After" after)

Connect a D closure to an object signal.

setProperty
void setProperty(string propertyName, T val)

Template for setting a GObject property.

getProperty
T getProperty(string propertyName)

Template for getting a GObject property.

compatControl
size_t compatControl(size_t what, void* data)
bindProperty
gobject.binding.Binding bindProperty(string sourceProperty, gobject.object.ObjectG target, string targetProperty, gobject.types.BindingFlags flags)

Creates a binding between source_property on source and target_property on target.

bindPropertyFull
gobject.binding.Binding bindPropertyFull(string sourceProperty, gobject.object.ObjectG target, string targetProperty, gobject.types.BindingFlags flags, gobject.closure.Closure transformTo, gobject.closure.Closure transformFrom)

Creates a binding between source_property on source and target_property on target, allowing you to set the transformation functions to be used by the binding.

forceFloating
void forceFloating()

This function is intended for #GObject implementations to re-enforce a floating[floating-ref] object reference. Doing this is seldom required: all #GInitiallyUnowneds are created with a floating reference which usually just needs to be sunken by calling gobject.object.ObjectG.refSink.

freezeNotify
void freezeNotify()

Increases the freeze count on object. If the freeze count is non-zero, the emission of "notify" signals on object is stopped. The signals are queued until the freeze count is decreased to zero. Duplicate notifications are squashed so that at most one #GObject::notify signal is emitted for each property modified while the object is frozen.

getData
void* getData(string key)

Gets a named field from the objects table of associations (see gobject.object.ObjectG.setData).

getProperty
void getProperty(string propertyName, gobject.value.Value value)

Gets a property of an object.

getQdata
void* getQdata(glib.types.Quark quark)

This function gets back user data pointers stored via gobject.object.ObjectG.setQdata.

getv
void getv(string[] names, gobject.value.Value[] values)

Gets n_properties properties for an object. Obtained properties will be set to values. All properties must be valid. Warnings will be emitted and undefined behaviour may result if invalid properties are passed in.

isFloating
bool isFloating()

Checks whether object has a floating[floating-ref] reference.

notify
void notify(string propertyName)

Emits a "notify" signal for the property property_name on object.

notifyByPspec
void notifyByPspec(gobject.param_spec.ParamSpec pspec)

Emits a "notify" signal for the property specified by pspec on object.

refSink
gobject.object.ObjectG refSink()

Increase the reference count of object, and possibly remove the floating[floating-ref] reference, if object has a floating reference.

runDispose
void runDispose()

Releases all references to other objects. This can be used to break reference cycles.

setData
void setData(string key, void* data)

Each object carries around a table of associations from strings to pointers. This function lets you set an association.

setProperty
void setProperty(string propertyName, gobject.value.Value value)

Sets a property on an object.

stealData
void* stealData(string key)

Remove a specified datum from the object's data associations, without invoking the association's destroy handler.

stealQdata
void* stealQdata(glib.types.Quark quark)

This function gets back user data pointers stored via gobject.object.ObjectG.setQdata and removes the data from object without invoking its destroy() function (if any was set). Usually, calling this function is only required to update user data pointers with a destroy notifier, for example:

thawNotify
void thawNotify()

Reverts the effect of a previous call to gobject.object.ObjectG.freezeNotify. The freeze count is decreased on object and when it reaches zero, queued "notify" signals are emitted.

watchClosure
void watchClosure(gobject.closure.Closure closure)

This function essentially limits the life time of the closure to the life time of the object. That is, when the object is finalized, the closure is invalidated by calling gobject.closure.Closure.invalidate on it, in order to prevent invocations of the closure with a finalized (nonexisting) object. Also, gobject.object.ObjectG.ref_ and gobject.object.ObjectG.unref are added as marshal guards to the closure, to ensure that an extra reference count is held on object during invocation of the closure. Usually, this function will be called on closures that use this object as closure data.

connectNotify
ulong connectNotify(string detail, T callback, Flag!"After" after)

Connect to Notify signal.