ladybird/Libraries/LibWeb/Animations/Animatable.cpp
aplefull 34f0ac15fd
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LibWeb: Resolve calculated time values in animations and transitions
This lets us play animations and transitions when time values are
stored in the form of calculated values, such as `calc(1s + 500ms)`.
2025-07-23 15:21:23 +01:00

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/*
* Copyright (c) 2024, Matthew Olsson <mattco@serenityos.org>
* Copyright (c) 2024, Sam Atkins <sam@ladybird.org>
* Copyright (c) 2025, Aliaksandr Kalenik <kalenik.aliaksandr@gmail.com>
*
* SPDX-License-Identifier: BSD-2-Clause
*/
#include <AK/QuickSort.h>
#include <LibWeb/Animations/Animatable.h>
#include <LibWeb/Animations/Animation.h>
#include <LibWeb/Animations/DocumentTimeline.h>
#include <LibWeb/Animations/PseudoElementParsing.h>
#include <LibWeb/CSS/CSSTransition.h>
#include <LibWeb/CSS/StyleValues/CSSKeywordValue.h>
#include <LibWeb/CSS/StyleValues/EasingStyleValue.h>
#include <LibWeb/CSS/StyleValues/TimeStyleValue.h>
#include <LibWeb/DOM/Document.h>
#include <LibWeb/DOM/Element.h>
namespace Web::Animations {
struct Animatable::Transition {
HashMap<CSS::PropertyID, size_t> transition_attribute_indices;
Vector<TransitionAttributes> transition_attributes;
GC::Ptr<CSS::CSSStyleDeclaration const> cached_transition_property_source;
HashMap<CSS::PropertyID, GC::Ref<CSS::CSSTransition>> associated_transitions;
};
Animatable::Impl::~Impl() = default;
// https://www.w3.org/TR/web-animations-1/#dom-animatable-animate
WebIDL::ExceptionOr<GC::Ref<Animation>> Animatable::animate(Optional<GC::Root<JS::Object>> keyframes, Variant<Empty, double, KeyframeAnimationOptions> options)
{
// 1. Let target be the object on which this method was called.
GC::Ref target { *static_cast<DOM::Element*>(this) };
auto& realm = target->realm();
// 2. Construct a new KeyframeEffect object, effect, in the relevant Realm of target by using the same procedure as
// the KeyframeEffect(target, keyframes, options) constructor, passing target as the target argument, and the
// keyframes and options arguments as supplied.
//
// If the above procedure causes an exception to be thrown, propagate the exception and abort this procedure.
auto effect = TRY(options.visit(
[&](Empty) { return KeyframeEffect::construct_impl(realm, target, keyframes); },
[&](auto const& value) { return KeyframeEffect::construct_impl(realm, target, keyframes, value); }));
// 3. If options is a KeyframeAnimationOptions object, let timeline be the timeline member of options or, if
// timeline member of options is missing, be the default document timeline of the node document of the element
// on which this method was called.
Optional<GC::Ptr<AnimationTimeline>> timeline;
if (options.has<KeyframeAnimationOptions>())
timeline = options.get<KeyframeAnimationOptions>().timeline;
if (!timeline.has_value())
timeline = target->document().timeline();
// 4. Construct a new Animation object, animation, in the relevant Realm of target by using the same procedure as
// the Animation() constructor, passing effect and timeline as arguments of the same name.
auto animation = TRY(Animation::construct_impl(realm, effect, move(timeline)));
// 5. If options is a KeyframeAnimationOptions object, assign the value of the id member of options to animations
// id attribute.
if (options.has<KeyframeAnimationOptions>())
animation->set_id(options.get<KeyframeAnimationOptions>().id);
// 6. Run the procedure to play an animation for animation with the auto-rewind flag set to true.
TRY(animation->play_an_animation(Animation::AutoRewind::Yes));
// 7. Return animation.
return animation;
}
// https://drafts.csswg.org/web-animations-1/#dom-animatable-getanimations
WebIDL::ExceptionOr<Vector<GC::Ref<Animation>>> Animatable::get_animations(Optional<GetAnimationsOptions> options)
{
as<DOM::Element>(*this).document().update_style();
return get_animations_internal(options);
}
WebIDL::ExceptionOr<Vector<GC::Ref<Animation>>> Animatable::get_animations_internal(Optional<GetAnimationsOptions> options)
{
// 1. Let object be the object on which this method was called.
// 2. Let pseudoElement be the result of pseudo-element parsing applied to pseudoElement of options, or null if options is not passed.
// FIXME: Currently only DOM::Element includes Animatable, but that might not always be true.
Optional<CSS::Selector::PseudoElementSelector> pseudo_element;
if (options.has_value() && options->pseudo_element.has_value()) {
auto& realm = static_cast<DOM::Element&>(*this).realm();
pseudo_element = TRY(pseudo_element_parsing(realm, options->pseudo_element));
}
// 3. If pseudoElement is not null, then let target be the pseudo-element identified by pseudoElement with object as the originating element.
// Otherwise, let target be object.
// FIXME: We can't refer to pseudo-elements directly, and they also can't be animated yet.
(void)pseudo_element;
GC::Ref target { *static_cast<DOM::Element*>(this) };
// 4. If options is passed with subtree set to true, then return the set of relevant animations for a subtree of target.
// Otherwise, return the set of relevant animations for target.
Vector<GC::Ref<Animation>> relevant_animations;
if (m_impl) {
auto& associated_animations = m_impl->associated_animations;
for (auto const& animation : associated_animations) {
if (animation->is_relevant())
relevant_animations.append(*animation);
}
}
if (options.has_value() && options->subtree) {
Optional<WebIDL::Exception> exception;
TRY(target->for_each_child_of_type_fallible<DOM::Element>([&](auto& child) -> WebIDL::ExceptionOr<IterationDecision> {
relevant_animations.extend(TRY(child.get_animations(options)));
return IterationDecision::Continue;
}));
}
// The returned list is sorted using the composite order described for the associated animations of effects in
// §5.4.2 The effect stack.
quick_sort(relevant_animations, [](GC::Ref<Animation>& a, GC::Ref<Animation>& b) {
auto& a_effect = as<KeyframeEffect>(*a->effect());
auto& b_effect = as<KeyframeEffect>(*b->effect());
return KeyframeEffect::composite_order(a_effect, b_effect) < 0;
});
return relevant_animations;
}
void Animatable::associate_with_animation(GC::Ref<Animation> animation)
{
auto& impl = ensure_impl();
impl.associated_animations.append(animation);
impl.is_sorted_by_composite_order = false;
}
void Animatable::disassociate_with_animation(GC::Ref<Animation> animation)
{
auto& impl = *m_impl;
impl.associated_animations.remove_first_matching([&](auto element) { return animation == element; });
}
void Animatable::add_transitioned_properties(Optional<CSS::PseudoElement> pseudo_element, Vector<Vector<CSS::PropertyID>> properties, CSS::StyleValueVector delays, CSS::StyleValueVector durations, CSS::StyleValueVector timing_functions, CSS::StyleValueVector transition_behaviors)
{
VERIFY(properties.size() == delays.size());
VERIFY(properties.size() == durations.size());
VERIFY(properties.size() == timing_functions.size());
VERIFY(properties.size() == transition_behaviors.size());
auto* maybe_transition = ensure_transition(pseudo_element);
if (!maybe_transition)
return;
auto& transition = *maybe_transition;
for (size_t i = 0; i < properties.size(); i++) {
size_t index_of_this_transition = transition.transition_attributes.size();
double delay = 0.0;
if (delays[i]->is_time()) {
delay = delays[i]->as_time().time().to_milliseconds();
} else if (delays[i]->is_calculated() && delays[i]->as_calculated().resolves_to_time()) {
auto resolved_time = delays[i]->as_calculated().resolve_time({});
if (resolved_time.has_value()) {
delay = resolved_time.value().to_milliseconds();
}
}
double duration = 0.0;
if (durations[i]->is_time()) {
duration = durations[i]->as_time().time().to_milliseconds();
} else if (durations[i]->is_calculated() && durations[i]->as_calculated().resolves_to_time()) {
auto resolved_time = durations[i]->as_calculated().resolve_time({});
if (resolved_time.has_value()) {
duration = resolved_time.value().to_milliseconds();
}
}
auto timing_function = timing_functions[i]->is_easing() ? timing_functions[i]->as_easing().function() : CSS::EasingStyleValue::CubicBezier::ease();
auto transition_behavior = CSS::keyword_to_transition_behavior(transition_behaviors[i]->to_keyword()).value_or(CSS::TransitionBehavior::Normal);
VERIFY(timing_functions[i]->is_easing());
transition.transition_attributes.empend(delay, duration, timing_function, transition_behavior);
for (auto const& property : properties[i])
transition.transition_attribute_indices.set(property, index_of_this_transition);
}
}
Optional<Animatable::TransitionAttributes const&> Animatable::property_transition_attributes(Optional<CSS::PseudoElement> pseudo_element, CSS::PropertyID property) const
{
auto* maybe_transition = ensure_transition(pseudo_element);
if (!maybe_transition)
return {};
auto& transition = *maybe_transition;
if (auto maybe_attr_index = transition.transition_attribute_indices.get(property); maybe_attr_index.has_value())
return transition.transition_attributes[maybe_attr_index.value()];
return {};
}
GC::Ptr<CSS::CSSTransition> Animatable::property_transition(Optional<CSS::PseudoElement> pseudo_element, CSS::PropertyID property) const
{
auto* maybe_transition = ensure_transition(pseudo_element);
if (!maybe_transition)
return {};
auto& transition = *maybe_transition;
if (auto maybe_animation = transition.associated_transitions.get(property); maybe_animation.has_value())
return maybe_animation.value();
return {};
}
void Animatable::set_transition(Optional<CSS::PseudoElement> pseudo_element, CSS::PropertyID property, GC::Ref<CSS::CSSTransition> animation)
{
auto maybe_transition = ensure_transition(pseudo_element);
if (!maybe_transition)
return;
auto& transition = *maybe_transition;
VERIFY(!transition.associated_transitions.contains(property));
transition.associated_transitions.set(property, animation);
}
void Animatable::remove_transition(Optional<CSS::PseudoElement> pseudo_element, CSS::PropertyID property_id)
{
auto maybe_transition = ensure_transition(pseudo_element);
if (!maybe_transition)
return;
auto& transition = *maybe_transition;
VERIFY(transition.associated_transitions.contains(property_id));
transition.associated_transitions.remove(property_id);
}
void Animatable::clear_transitions(Optional<CSS::PseudoElement> pseudo_element)
{
auto maybe_transition = ensure_transition(pseudo_element);
if (!maybe_transition)
return;
auto& transition = *maybe_transition;
transition.associated_transitions.clear();
transition.transition_attribute_indices.clear();
transition.transition_attributes.clear();
}
void Animatable::visit_edges(JS::Cell::Visitor& visitor)
{
auto& impl = ensure_impl();
visitor.visit(impl.associated_animations);
for (auto const& cached_animation_source : impl.cached_animation_name_source)
visitor.visit(cached_animation_source);
for (auto const& cached_animation_name : impl.cached_animation_name_animation)
visitor.visit(cached_animation_name);
for (auto const& transition : impl.transitions) {
if (transition) {
visitor.visit(transition->cached_transition_property_source);
visitor.visit(transition->associated_transitions);
}
}
}
GC::Ptr<CSS::CSSStyleDeclaration const> Animatable::cached_animation_name_source(Optional<CSS::PseudoElement> pseudo_element) const
{
if (!m_impl)
return {};
auto& impl = *m_impl;
if (pseudo_element.has_value()) {
if (!CSS::Selector::PseudoElementSelector::is_known_pseudo_element_type(pseudo_element.value())) {
return {};
}
return impl.cached_animation_name_source[to_underlying(pseudo_element.value()) + 1];
}
return impl.cached_animation_name_source[0];
}
void Animatable::set_cached_animation_name_source(GC::Ptr<CSS::CSSStyleDeclaration const> value, Optional<CSS::PseudoElement> pseudo_element)
{
auto& impl = ensure_impl();
if (pseudo_element.has_value()) {
if (!CSS::Selector::PseudoElementSelector::is_known_pseudo_element_type(pseudo_element.value())) {
return;
}
impl.cached_animation_name_source[to_underlying(pseudo_element.value()) + 1] = value;
} else {
impl.cached_animation_name_source[0] = value;
}
}
GC::Ptr<Animations::Animation> Animatable::cached_animation_name_animation(Optional<CSS::PseudoElement> pseudo_element) const
{
if (!m_impl)
return {};
auto& impl = *m_impl;
if (pseudo_element.has_value()) {
if (!CSS::Selector::PseudoElementSelector::is_known_pseudo_element_type(pseudo_element.value())) {
return {};
}
return impl.cached_animation_name_animation[to_underlying(pseudo_element.value()) + 1];
}
return impl.cached_animation_name_animation[0];
}
void Animatable::set_cached_animation_name_animation(GC::Ptr<Animations::Animation> value, Optional<CSS::PseudoElement> pseudo_element)
{
auto& impl = ensure_impl();
if (pseudo_element.has_value()) {
if (!CSS::Selector::PseudoElementSelector::is_known_pseudo_element_type(pseudo_element.value())) {
return;
}
impl.cached_animation_name_animation[to_underlying(pseudo_element.value()) + 1] = value;
} else {
impl.cached_animation_name_animation[0] = value;
}
}
GC::Ptr<CSS::CSSStyleDeclaration const> Animatable::cached_transition_property_source(Optional<CSS::PseudoElement> pseudo_element) const
{
auto* maybe_transition = ensure_transition(pseudo_element);
if (!maybe_transition)
return {};
return maybe_transition->cached_transition_property_source;
}
void Animatable::set_cached_transition_property_source(Optional<CSS::PseudoElement> pseudo_element, GC::Ptr<CSS::CSSStyleDeclaration const> value)
{
auto* maybe_transition = ensure_transition(pseudo_element);
if (!maybe_transition)
return;
maybe_transition->cached_transition_property_source = value;
}
Animatable::Impl& Animatable::ensure_impl() const
{
if (!m_impl)
m_impl = make<Impl>();
return *m_impl;
}
Animatable::Transition* Animatable::ensure_transition(Optional<CSS::PseudoElement> pseudo_element) const
{
auto& impl = ensure_impl();
size_t pseudo_element_index = 0;
if (pseudo_element.has_value()) {
if (!CSS::Selector::PseudoElementSelector::is_known_pseudo_element_type(pseudo_element.value()))
return nullptr;
pseudo_element_index = to_underlying(pseudo_element.value()) + 1;
}
if (!impl.transitions[pseudo_element_index])
impl.transitions[pseudo_element_index] = make<Transition>();
return impl.transitions[pseudo_element_index];
}
}