forked from AuroraMiddleware/gtk
223 lines
9.7 KiB
Markdown
223 lines
9.7 KiB
Markdown
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# Overview of actions in GTK {#actions-overview}
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This chapter describes in detail how GTK uses actions to connect
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activatable UI elements to callbacks. GTK inherits the underlying
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architecture of GAction and GMe:u for describing abstract actions
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and menus from the GIO library.
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## Basics about actions
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A GAction is essentially a way to tell the toolkit about a piece of
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functionality in your program, and to give it a name.
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Actions are purely functional. They do not contain any presentational
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information.
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An action has four pieces of information associated with it:
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- a name as an identifier (usually all-lowercase, untranslated
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English string)
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- an enabled flag indicating if the action can be activated or not
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(like the "sensitive" property on widgets)
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- an optional state value, for stateful actions (like a boolean for
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toggles)
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- an optional parameter type, used when activating the action
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An action supports two operations. You can activate it, which requires
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passing a parameter of the correct type And you can request to change
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the actions state (for stateful actions) to a new state value of the
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correct type.
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Here are some rules about an action:
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- the name is immutable (in the sense that it will never change) and
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it is never %NULL
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- the enabled flag can change
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- the parameter type is immutable
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- the parameter type is optional: it can be %NULL
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- if the parameter type is %NULL then action activation must be done
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without a parameter (ie: a %NULL GVariant pointer)
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- if the parameter type is non-%NULL then the parameter must have this
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type
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- the state can change, but it cannot change type
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- if the action was stateful when it was created, it will always have a
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state and it will always have exactly the same type (such as boolean
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or string)
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- if the action was stateless when it was created, it can never have a
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state
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- you can only request state changes on stateful actions and it is only
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possible to request that the state change to a value of the same type
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as the existing state
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An action does not have any sort of presentational information such as
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a label, an icon or a way of creating a widget from it.
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## Action state and parameters
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Most actions in your application will be stateless actions with no
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parameters. These typically appear as menu items with no special
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decoration. An example is "quit".
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Stateful actions are used to represent an action which has a
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closely-associated state of some kind. A good example is a "fullscreen"
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action. For this case, you would expect to see a checkmark next to the
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menu item when the fullscreen option is active. This is usually called
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a toggle action, and it has a boolean state. By convention, toggle actions
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have no parameter type for activation: activating the action always toggles
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the state.
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Another common case is to have an action representing a enumeration of
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possible values of a given type (typically string). This is often called
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a radio action and is usually represented in the user interface with radio
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buttons or radio menu items, or sometimes a combobox. A good example is
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"text-justify" with possible values "left", "center", and "right". By
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convention, these types of actions have a parameter type equal to their
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state type, and activating them with a particular parameter value is
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equivalent to changing their state to that value.
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This approach to handling radio buttons is different than many other
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action systems such as GtkAction. With GAction, there is only one action
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for "text-justify" and "left", "center" and "right" are possible states on
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that action. There are not three separate "justify-left", "justify-center"
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and "justify-right" actions.
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The final common type of action is a stateless action with a parameter.
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This is typically used for actions like "open-bookmark" where the parameter
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to the action would be the identifier of the bookmark to open.
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Because some types of actions cannot be invoked without a parameter, it is
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often important to specify a parameter when referring to the action from
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a place where it will be invoked (such as from a radio button that sets
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the state to a particular value or from a menu item that opens a specific
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bookmark). In these contexts, the value used for the action parameter is
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typically called the target of the action.
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Even though toggle actions have a state, they do not have a parameter.
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Therefore, a target value is not needed when referring to them — they
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will always be toggled on activation.
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Most APIs that allow using a GAction (such as GMenuModel and GtkActionable)
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allow use of detailed action names. This is a convenient way of specifying
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an action name and an action target with a single string.
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In the case that the action target is a string with no unusual characters
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(ie: only alpha-numeric, plus '-' and '.') then you can use a detailed
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action name of the form "justify::left" to specify the justify action with
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a target of left.
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In the case that the action target is not a string, or contains unusual
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characters, you can use the more general format "action-name(5)", where the
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"5" here is any valid text-format GVariant (ie: a string that can be parsed
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by g_variant_parse()). Another example is "open-bookmark('http://gnome.org/')".
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You can convert between detailed action names and split-out action names
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and target values using g_action_parse_detailed_name() and
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g_action_print_detailed_name() but usually you will not need to. Most APIs
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will provide both ways of specifying actions with targets.
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## Action scopes
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Actions are always scoped to a particular object on which they operate.
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In GTK, actions are typically scoped to either an application or a window,
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but any widget can have actions associated with it.
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Actions scoped to windows should be the actions that specifically impact
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that window. These are actions like "fullscreen" and "close", or in the
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case that a window contains a document, "save" and "print".
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Actions that impact the application as a whole rather than one specific
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window are scoped to the application. These are actions like "about" and
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"preferences".
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If a particular action is scoped to a window then it is scoped to a
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specific window. Another way of saying this: if your application has a
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"fullscreen" action that applies to windows and it has three windows,
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then it will have three fullscreen actions: one for each window.
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Having a separate action per-window allows for each window to have a
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separate state for each instance of the action as well as being able to
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control the enabled state of the action on a per-window basis.
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Actions are added to their relevant scope (application, window or widget)
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either using the GActionMap interface, or by using
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gtk_widget_insert_action_group(). Actions that will be the same for all
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instances of a widget class can be added globally using
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gtk_widget_class_install_action().
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## Action groups and action maps
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Actions rarely occurs in isolation. It is common to have groups
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of related actions, which are represented by instances of the
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GActionGroup interface.
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Action maps are a variant of action groups that allow to change
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the name of the action as it is looked up. In GTK, the convention
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is to add a prefix to the action name to indicate the scope of
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the actions, such as "app." for the actions with application scope
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or "win." for those with window scope.
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When referring to actions on a GActionMap only the name of the
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action itself is used (ie: "quit", not "app.quit"). The
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"app.quit" form is only used when referring to actions from
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places like a GMenu or GtkActionable widget where the scope
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of the action is not already known.
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GtkApplication and GtkApplicationWindow implement the GActionMap
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interface, so you can just add actions directly to them. For
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other widgets, use gtk_widget_insert_action_group() to add
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actions to it.
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If you want to insert several actions at the same time, it is
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typically faster and easier to use GActionEntry.
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## Connecting actions to widgets
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Any widget that implements the GtkActionable interface can
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be connected to an action just by setting the ::action-name
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property. If the action has a parameter, you will also need
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to set the ::action-target property.
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Widgets that implement GtkActionable include GtkSwitch, GtkButton,
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and their respective subclasses.
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Another way of obtaining widgets that are connected to actions
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is to create a menu using a GMenu menu model. GMenu provides an
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abstract way to describe typical menus: nested groups of items
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where each item can have a label, and icon, and an action.
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Typical uses of GMenu inside GTK are to set up an application
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menu or menubar with gtk_application_set_app_menu() or
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gtk_application_set_menubar(). Another, maybe more common use
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is to create a popover for a menubutton, using
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gtk_menu_button_set_menu_model().
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Unlike traditional menus, those created from menu models don't
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have keyboard accelerators associated with menu items. Instead,
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GtkApplication offers the gtk_application_set_accels_for_action()
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API to associate keyboard shortcuts with actions.
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## Activation
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When a widget with a connected action is activated, GTK finds
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the action to activate by walking up the widget hierarchy,
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looking for a matching action, ending up at the GtkApplication.
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## Built-in Actions
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GTK uses actions for its own purposes in a number places. These
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built-in actions can sometimes be activated by applications, and
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you should avoid naming conflicts with them when creating your
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own actions.
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default.activate
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: Activates the default widget in a context (typically a GtkWindow,
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GtkDialog or GtkPopover)
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clipboard.cut, clipboard.copy, clipboard.paste
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: Clipboard operations on entries, text view and labels, typically
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used in the context menu
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selection.delete, selection.select-all
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: Selection operations on entries, text view and labels
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color.select, color.customize:
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: Operate on colors in a #GtkColorChooserWidget. These actions are
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unusual in that they have the non-trivial parameter type (dddd):
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