/* This Source Code Form is subject to the terms of the Mozilla Public * License, v. 2.0. If a copy of the MPL was not distributed with this * file, You can obtain one at https://mozilla.org/MPL/2.0/. */ use dom_struct::dom_struct; use js::rust::HandleObject; use super::bindings::codegen::Bindings::IntersectionObserverEntryBinding::{ IntersectionObserverEntryInit, IntersectionObserverEntryMethods, }; use super::bindings::num::Finite; use crate::dom::bindings::reflector::{reflect_dom_object_with_proto, DomObject, Reflector}; use crate::dom::bindings::root::{Dom, DomRoot}; use crate::dom::domrectreadonly::DOMRectReadOnly; use crate::dom::element::Element; use crate::dom::window::Window; use crate::script_runtime::CanGc; /// An individual IntersectionObserver entry. /// /// #[dom_struct] pub struct IntersectionObserverEntry { reflector_: Reflector, target: Dom, } impl IntersectionObserverEntry { pub fn new_inherited(init: &IntersectionObserverEntryInit) -> Self { Self { reflector_: Reflector::new(), target: init.target.as_traced(), } } fn new( window: &Window, proto: Option, init: &IntersectionObserverEntryInit, can_gc: CanGc, ) -> DomRoot { let observer = Box::new(Self::new_inherited(init)); reflect_dom_object_with_proto(observer, window, proto, can_gc) } } impl IntersectionObserverEntryMethods for IntersectionObserverEntry { /// > The attribute must return a DOMHighResTimeStamp that corresponds to the time the /// > intersection was recorded, relative to the time origin of the global object /// > associated with the IntersectionObserver instance that generated the notification. /// /// fn Time(&self) -> Finite { Finite::new(0.).unwrap() } /// > For a same-origin-domain target, this will be the root intersection rectangle. /// > Otherwise, this will be null. Note that if the target is in a different browsing /// > context than the intersection root, this will be in a different coordinate system /// > than boundingClientRect and intersectionRect. /// /// fn GetRootBounds(&self) -> Option> { None } /// > A DOMRectReadOnly obtained by getting the bounding box for target. /// /// fn BoundingClientRect(&self) -> DomRoot { DOMRectReadOnly::new(&self.global(), None, 0., 0., 0., 0., CanGc::note()) } /// > boundingClientRect, intersected by each of target's ancestors' clip rects (up to /// > but not including root), intersected with the root intersection rectangle. This /// > value represents the portion of target that intersects with the root intersection /// > rectangle. /// /// fn IntersectionRect(&self) -> DomRoot { DOMRectReadOnly::new(&self.global(), None, 0., 0., 0., 0., CanGc::note()) } /// > True if the target intersects with the root; false otherwise. This flag makes it /// > possible to distinguish between an IntersectionObserverEntry signalling the /// > transition from intersecting to not-intersecting; and an IntersectionObserverEntry /// > signalling a transition from not-intersecting to intersecting with a zero-area /// > intersection rect (as will happen with edge-adjacent intersections, or when the /// > boundingClientRect has zero area). /// /// fn IsIntersecting(&self) -> bool { false } /// > Contains the result of running the visibility algorithm on target. /// /// fn IsVisible(&self) -> bool { false } /// > If the boundingClientRect has non-zero area, this will be the ratio of /// > intersectionRect area to boundingClientRect area. Otherwise, this will be 1 if the /// > isIntersecting is true, and 0 if not. /// /// fn IntersectionRatio(&self) -> Finite { Finite::new(0.).unwrap() } /// > The Element whose intersection with the intersection root changed. /// /// fn Target(&self) -> DomRoot { self.target.as_rooted() } /// fn Constructor( window: &Window, proto: Option, can_gc: CanGc, init: &IntersectionObserverEntryInit, ) -> DomRoot { Self::new(window, proto, init, can_gc) } }