gtk4/auto/gesture_drag.rs
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// This file was generated by gir (https://github.com/gtk-rs/gir)
// from gir-files (https://github.com/gtk-rs/gir-files)
// DO NOT EDIT
use crate::{ffi, EventController, Gesture, GestureSingle, PropagationLimit, PropagationPhase};
use glib::{
prelude::*,
signal::{connect_raw, SignalHandlerId},
translate::*,
};
use std::boxed::Box as Box_;
glib::wrapper! {
/// [`GestureDrag`][crate::GestureDrag] is a [`Gesture`][crate::Gesture] implementation for drags.
///
/// The drag operation itself can be tracked throughout the
/// [`drag-begin`][struct@crate::GestureDrag#drag-begin],
/// [`drag-update`][struct@crate::GestureDrag#drag-update] and
/// [`drag-end`][struct@crate::GestureDrag#drag-end] signals, and the relevant
/// coordinates can be extracted through
/// [`GestureDragExt::offset()`][crate::prelude::GestureDragExt::offset()] and
/// [`GestureDragExt::start_point()`][crate::prelude::GestureDragExt::start_point()].
///
/// ## Signals
///
///
/// #### `drag-begin`
/// Emitted whenever dragging starts.
///
///
///
///
/// #### `drag-end`
/// Emitted whenever the dragging is finished.
///
///
///
///
/// #### `drag-update`
/// Emitted whenever the dragging point moves.
///
///
/// <details><summary><h4>Gesture</h4></summary>
///
///
/// #### `begin`
/// Emitted when the gesture is recognized.
///
/// This means the number of touch sequences matches
/// [`n-points`][struct@crate::Gesture#n-points].
///
/// Note: These conditions may also happen when an extra touch
/// (eg. a third touch on a 2-touches gesture) is lifted, in that
/// situation @sequence won't pertain to the current set of active
/// touches, so don't rely on this being true.
///
///
///
///
/// #### `cancel`
/// Emitted whenever a sequence is cancelled.
///
/// This usually happens on active touches when
/// [`EventControllerExt::reset()`][crate::prelude::EventControllerExt::reset()] is called on @gesture
/// (manually, due to grabs...), or the individual @sequence
/// was claimed by parent widgets' controllers (see
/// [`GestureExt::set_sequence_state()`][crate::prelude::GestureExt::set_sequence_state()]).
///
/// @gesture must forget everything about @sequence as in
/// response to this signal.
///
///
///
///
/// #### `end`
/// Emitted when @gesture either stopped recognizing the event
/// sequences as something to be handled, or the number of touch
/// sequences became higher or lower than [`n-points`][struct@crate::Gesture#n-points].
///
/// Note: @sequence might not pertain to the group of sequences that
/// were previously triggering recognition on @gesture (ie. a just
/// pressed touch sequence that exceeds [`n-points`][struct@crate::Gesture#n-points]).
/// This situation may be detected by checking through
/// [`GestureExt::handles_sequence()`][crate::prelude::GestureExt::handles_sequence()].
///
///
///
///
/// #### `sequence-state-changed`
/// Emitted whenever a sequence state changes.
///
/// See [`GestureExt::set_sequence_state()`][crate::prelude::GestureExt::set_sequence_state()] to know
/// more about the expectable sequence lifetimes.
///
///
///
///
/// #### `update`
/// Emitted whenever an event is handled while the gesture is recognized.
///
/// @sequence is guaranteed to pertain to the set of active touches.
///
///
/// </details>
///
/// # Implements
///
/// [`GestureDragExt`][trait@crate::prelude::GestureDragExt], [`GestureSingleExt`][trait@crate::prelude::GestureSingleExt], [`GestureExt`][trait@crate::prelude::GestureExt], [`EventControllerExt`][trait@crate::prelude::EventControllerExt], [`trait@glib::ObjectExt`]
#[doc(alias = "GtkGestureDrag")]
pub struct GestureDrag(Object<ffi::GtkGestureDrag, ffi::GtkGestureDragClass>) @extends GestureSingle, Gesture, EventController;
match fn {
type_ => || ffi::gtk_gesture_drag_get_type(),
}
}
impl GestureDrag {
pub const NONE: Option<&'static GestureDrag> = None;
/// Returns a newly created [`Gesture`][crate::Gesture] that recognizes drags.
///
/// # Returns
///
/// a newly created [`GestureDrag`][crate::GestureDrag]
#[doc(alias = "gtk_gesture_drag_new")]
pub fn new() -> GestureDrag {
assert_initialized_main_thread!();
unsafe { Gesture::from_glib_full(ffi::gtk_gesture_drag_new()).unsafe_cast() }
}
// rustdoc-stripper-ignore-next
/// Creates a new builder-pattern struct instance to construct [`GestureDrag`] objects.
///
/// This method returns an instance of [`GestureDragBuilder`](crate::builders::GestureDragBuilder) which can be used to create [`GestureDrag`] objects.
pub fn builder() -> GestureDragBuilder {
GestureDragBuilder::new()
}
}
impl Default for GestureDrag {
fn default() -> Self {
Self::new()
}
}
// rustdoc-stripper-ignore-next
/// A [builder-pattern] type to construct [`GestureDrag`] objects.
///
/// [builder-pattern]: https://doc.rust-lang.org/1.0.0/style/ownership/builders.html
#[must_use = "The builder must be built to be used"]
pub struct GestureDragBuilder {
builder: glib::object::ObjectBuilder<'static, GestureDrag>,
}
impl GestureDragBuilder {
fn new() -> Self {
Self {
builder: glib::object::Object::builder(),
}
}
/// Mouse button number to listen to, or 0 to listen for any button.
pub fn button(self, button: u32) -> Self {
Self {
builder: self.builder.property("button", button),
}
}
/// Whether the gesture is exclusive.
///
/// Exclusive gestures only listen to pointer and pointer emulated events.
pub fn exclusive(self, exclusive: bool) -> Self {
Self {
builder: self.builder.property("exclusive", exclusive),
}
}
/// Whether the gesture handles only touch events.
pub fn touch_only(self, touch_only: bool) -> Self {
Self {
builder: self.builder.property("touch-only", touch_only),
}
}
/// The number of touch points that trigger
/// recognition on this gesture.
pub fn n_points(self, n_points: u32) -> Self {
Self {
builder: self.builder.property("n-points", n_points),
}
}
/// The name for this controller, typically used for debugging purposes.
pub fn name(self, name: impl Into<glib::GString>) -> Self {
Self {
builder: self.builder.property("name", name.into()),
}
}
/// The limit for which events this controller will handle.
pub fn propagation_limit(self, propagation_limit: PropagationLimit) -> Self {
Self {
builder: self
.builder
.property("propagation-limit", propagation_limit),
}
}
/// The propagation phase at which this controller will handle events.
pub fn propagation_phase(self, propagation_phase: PropagationPhase) -> Self {
Self {
builder: self
.builder
.property("propagation-phase", propagation_phase),
}
}
// rustdoc-stripper-ignore-next
/// Build the [`GestureDrag`].
#[must_use = "Building the object from the builder is usually expensive and is not expected to have side effects"]
pub fn build(self) -> GestureDrag {
self.builder.build()
}
}
mod sealed {
pub trait Sealed {}
impl<T: super::IsA<super::GestureDrag>> Sealed for T {}
}
/// Trait containing all [`struct@GestureDrag`] methods.
///
/// # Implementors
///
/// [`GestureDrag`][struct@crate::GestureDrag], [`GesturePan`][struct@crate::GesturePan]
pub trait GestureDragExt: IsA<GestureDrag> + sealed::Sealed + 'static {
/// Gets the offset from the start point.
///
/// If the @self is active, this function returns [`true`] and
/// fills in @x and @y with the coordinates of the current point,
/// as an offset to the starting drag point.
///
/// # Returns
///
/// [`true`] if the gesture is active
///
/// ## `x`
/// X offset for the current point
///
/// ## `y`
/// Y offset for the current point
#[doc(alias = "gtk_gesture_drag_get_offset")]
#[doc(alias = "get_offset")]
fn offset(&self) -> Option<(f64, f64)> {
unsafe {
let mut x = std::mem::MaybeUninit::uninit();
let mut y = std::mem::MaybeUninit::uninit();
let ret = from_glib(ffi::gtk_gesture_drag_get_offset(
self.as_ref().to_glib_none().0,
x.as_mut_ptr(),
y.as_mut_ptr(),
));
if ret {
Some((x.assume_init(), y.assume_init()))
} else {
None
}
}
}
/// Gets the point where the drag started.
///
/// If the @self is active, this function returns [`true`]
/// and fills in @x and @y with the drag start coordinates,
/// in widget-relative coordinates.
///
/// # Returns
///
/// [`true`] if the gesture is active
///
/// ## `x`
/// X coordinate for the drag start point
///
/// ## `y`
/// Y coordinate for the drag start point
#[doc(alias = "gtk_gesture_drag_get_start_point")]
#[doc(alias = "get_start_point")]
fn start_point(&self) -> Option<(f64, f64)> {
unsafe {
let mut x = std::mem::MaybeUninit::uninit();
let mut y = std::mem::MaybeUninit::uninit();
let ret = from_glib(ffi::gtk_gesture_drag_get_start_point(
self.as_ref().to_glib_none().0,
x.as_mut_ptr(),
y.as_mut_ptr(),
));
if ret {
Some((x.assume_init(), y.assume_init()))
} else {
None
}
}
}
/// Emitted whenever dragging starts.
/// ## `start_x`
/// X coordinate, relative to the widget allocation
/// ## `start_y`
/// Y coordinate, relative to the widget allocation
#[doc(alias = "drag-begin")]
fn connect_drag_begin<F: Fn(&Self, f64, f64) + 'static>(&self, f: F) -> SignalHandlerId {
unsafe extern "C" fn drag_begin_trampoline<
P: IsA<GestureDrag>,
F: Fn(&P, f64, f64) + 'static,
>(
this: *mut ffi::GtkGestureDrag,
start_x: std::ffi::c_double,
start_y: std::ffi::c_double,
f: glib::ffi::gpointer,
) {
let f: &F = &*(f as *const F);
f(
GestureDrag::from_glib_borrow(this).unsafe_cast_ref(),
start_x,
start_y,
)
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
b"drag-begin\0".as_ptr() as *const _,
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
drag_begin_trampoline::<Self, F> as *const (),
)),
Box_::into_raw(f),
)
}
}
/// Emitted whenever the dragging is finished.
/// ## `offset_x`
/// X offset, relative to the start point
/// ## `offset_y`
/// Y offset, relative to the start point
#[doc(alias = "drag-end")]
fn connect_drag_end<F: Fn(&Self, f64, f64) + 'static>(&self, f: F) -> SignalHandlerId {
unsafe extern "C" fn drag_end_trampoline<
P: IsA<GestureDrag>,
F: Fn(&P, f64, f64) + 'static,
>(
this: *mut ffi::GtkGestureDrag,
offset_x: std::ffi::c_double,
offset_y: std::ffi::c_double,
f: glib::ffi::gpointer,
) {
let f: &F = &*(f as *const F);
f(
GestureDrag::from_glib_borrow(this).unsafe_cast_ref(),
offset_x,
offset_y,
)
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
b"drag-end\0".as_ptr() as *const _,
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
drag_end_trampoline::<Self, F> as *const (),
)),
Box_::into_raw(f),
)
}
}
/// Emitted whenever the dragging point moves.
/// ## `offset_x`
/// X offset, relative to the start point
/// ## `offset_y`
/// Y offset, relative to the start point
#[doc(alias = "drag-update")]
fn connect_drag_update<F: Fn(&Self, f64, f64) + 'static>(&self, f: F) -> SignalHandlerId {
unsafe extern "C" fn drag_update_trampoline<
P: IsA<GestureDrag>,
F: Fn(&P, f64, f64) + 'static,
>(
this: *mut ffi::GtkGestureDrag,
offset_x: std::ffi::c_double,
offset_y: std::ffi::c_double,
f: glib::ffi::gpointer,
) {
let f: &F = &*(f as *const F);
f(
GestureDrag::from_glib_borrow(this).unsafe_cast_ref(),
offset_x,
offset_y,
)
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
b"drag-update\0".as_ptr() as *const _,
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
drag_update_trampoline::<Self, F> as *const (),
)),
Box_::into_raw(f),
)
}
}
}
impl<O: IsA<GestureDrag>> GestureDragExt for O {}