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/* 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 std::cell::RefCell;
use std::rc::Rc;
use dom_struct::dom_struct;
use js::context::JSContext;
use js::gc::Handle;
use js::jsapi::Value;
use js::realm::CurrentRealm;
use js::rust::HandleObject;
use script_bindings::cell::DomRefCell;
use script_bindings::codegen::GenericBindings::FontFaceBinding::{
FontFaceLoadStatus, FontFaceMethods,
};
use script_bindings::like::Setlike;
use script_bindings::reflector::reflect_dom_object_with_proto_and_cx;
use crate::dom::bindings::codegen::Bindings::FontFaceSetBinding::FontFaceSetMethods;
use crate::dom::bindings::codegen::Bindings::WindowBinding::WindowMethods;
use crate::dom::bindings::refcounted::TrustedPromise;
use crate::dom::bindings::reflector::DomGlobal;
use crate::dom::bindings::root::{Dom, DomRoot};
use crate::dom::bindings::str::DOMString;
use crate::dom::eventtarget::EventTarget;
use crate::dom::fontface::FontFace;
use crate::dom::globalscope::GlobalScope;
use crate::dom::promise::Promise;
use crate::dom::promisenativehandler::Callback;
use crate::dom::types::PromiseNativeHandler;
use crate::dom::window::Window;
use crate::realms::enter_auto_realm;
/// <https://drafts.csswg.org/css-font-loading/#FontFaceSet-interface>
#[dom_struct]
pub(crate) struct FontFaceSet {
target: EventTarget,
/// <https://drafts.csswg.org/css-font-loading/#dom-fontfaceset-readypromise-slot>
#[conditional_malloc_size_of]
promise: RefCell<Rc<Promise>>,
set_entries: DomRefCell<Vec<Dom<FontFace>>>,
}
impl FontFaceSet {
fn new_inherited(cx: &mut JSContext, global: &GlobalScope) -> Self {
FontFaceSet {
target: EventTarget::new_inherited(),
promise: Promise::new(cx, global).into(),
set_entries: Default::default(),
}
}
pub(crate) fn new(
cx: &mut JSContext,
global: &GlobalScope,
proto: Option<HandleObject>,
) -> DomRoot<Self> {
reflect_dom_object_with_proto_and_cx(
Box::new(FontFaceSet::new_inherited(cx, global)),
global,
proto,
cx,
)
}
pub(super) fn handle_font_face_status_changed(&self, cx: &mut JSContext, font_face: &FontFace) {
match font_face.Status() {
FontFaceLoadStatus::Loading => {
self.switch_to_loading(cx);
},
FontFaceLoadStatus::Loaded => {
let Some(window) = DomRoot::downcast::<Window>(self.global()) else {
return;
};
let (family_name, template) = font_face
.template()
.expect("A loaded web font should have a template");
window
.font_context()
.add_template_to_font_context(family_name, template);
window.Document().dirty_all_nodes();
},
_ => {},
}
}
/// Fulfill the font ready promise, returning true if it was not already fulfilled beforehand.
pub(crate) fn fulfill_ready_promise_if_needed(&self, cx: &mut JSContext) -> bool {
let promise = self.promise.borrow().clone();
if promise.is_fulfilled() {
return false;
}
promise.resolve_native(cx, self);
true
}
pub(crate) fn waiting_to_fullfill_promise(&self) -> bool {
!self.promise.borrow().is_fulfilled()
}
fn contains_face(&self, target: &FontFace) -> bool {
self.set_entries
.borrow()
.iter()
.any(|face| &**face == target)
}
/// Removes a face from the set's set entries.
fn delete_face(&self, target: &FontFace) -> bool {
let mut set_entries = self.set_entries.borrow_mut();
let Some(index) = set_entries.iter().position(|face| &**face == target) else {
return false;
};
set_entries.remove(index);
true
}
/// <https://drafts.csswg.org/css-font-loading/#switch-the-fontfaceset-to-loading>
pub(crate) fn switch_to_loading(&self, cx: &mut JSContext) {
// Step 1. Let font face set be the given FontFaceSet.
// Note: This is self.
// Step 2. Set the status attribute of font face set to "loading".
// TODO: Implement the FontFaceSet status attribute.
// Step 3. If font face set’s [[ReadyPromise]] slot currently holds a fulfilled
// promise, replace it with a fresh pending promise.
if self.promise.borrow().is_fulfilled() {
*self.promise.borrow_mut() = Promise::new(cx, &self.global());
}
// Step 4. Queue a task to fire a font load event named loading at font face set.
// TODO: Implement support for font loading events.
}
}
impl FontFaceSetMethods<crate::DomTypeHolder> for FontFaceSet {
/// <https://drafts.csswg.org/css-font-loading/#dom-fontfaceset-ready>
fn Ready(&self) -> Rc<Promise> {
self.promise.borrow().clone()
}
/// <https://drafts.csswg.org/css-font-loading/#dom-fontfaceset-add>
fn Add(&self, cx: &mut JSContext, font_face: &FontFace) -> DomRoot<FontFaceSet> {
// Step 1. If font is already in the FontFaceSet’s set entries,
// skip to the last step of this algorithm immediately.
if self.contains_face(font_face) {
return DomRoot::from_ref(self);
}
// TODO: Step 2. If font is CSS-connected, throw an InvalidModificationError
// exception and exit this algorithm immediately.
// Step 3. Add the font argument to the FontFaceSet’s set entries.
self.set_entries.borrow_mut().push(Dom::from_ref(font_face));
font_face.set_associated_font_face_set(self);
// Step 4. If font’s status attribute is "loading":
// Step 4.1 If the FontFaceSet’s [[LoadingFonts]] list is empty, switch the FontFaceSet to loading.
// Step 4.2 Append font to the FontFaceSet’s [[LoadingFonts]] list.
self.handle_font_face_status_changed(cx, font_face);
// Step 5. Return the FontFaceSet.
DomRoot::from_ref(self)
}
/// <https://drafts.csswg.org/css-font-loading/#dom-fontfaceset-delete>
fn Delete(&self, to_delete: &FontFace) -> bool {
// TODO Step 1. If font is CSS-connected, return false and exit this algorithm immediately.
// Step 2. Let deleted be the result of removing font from the FontFaceSet’s set entries.
// TODO: Step 3. If font is present in the FontFaceSet’s [[LoadedFonts]], or [[FailedFonts]] lists, remove it.
// TODO: Step 4. If font is present in the FontFaceSet’s [[LoadingFonts]] list, remove it. If font was the last
// item in that list (and so the list is now empty), switch the FontFaceSet to loaded.
// Step 5. Return deleted.
self.delete_face(to_delete)
}
/// <https://drafts.csswg.org/css-font-loading/#dom-fontfaceset-clear>
fn Clear(&self) {
// Step 1. Remove all non-CSS-connected items from the FontFaceSet’s set entries,
// its [[LoadedFonts]] list, and its [[FailedFonts]] list.
self.set_entries.borrow_mut().clear();
// TODO Step 2. If the FontFaceSet’s [[LoadingFonts]] list is non-empty, remove all items from it,
// then switch the FontFaceSet to loaded.
}
/// <https://drafts.csswg.org/css-font-loading/#dom-fontfaceset-load>
fn Load(&self, cx: &mut JSContext, _font: DOMString, _text: DOMString) -> Rc<Promise> {
// Step 1. Let font face set be the FontFaceSet object this method was called on. Let
// promise be a newly-created promise object.
let load_promise = Promise::new(cx, &self.global());
// Step 3. Find the matching font faces from font face set using the font and text
// arguments passed to the function, and let font face list be the return value (ignoring
// the found faces flag). If a syntax error was returned, reject promise with a SyntaxError
// exception and terminate these steps.
//
// TODO: Implement this.
#[derive(MallocSizeOf, JSTraceable)]
struct LoadPromiseFulfillmentHandler {
#[conditional_malloc_size_of]
load_promise: Rc<Promise>,
}
impl Callback for LoadPromiseFulfillmentHandler {
fn callback(&self, cx: &mut CurrentRealm, _: Handle<Value>) {
self.load_promise
.resolve_native(cx, &Vec::<&FontFace>::new());
}
}
// Step 4. Queue a task to run the following steps synchronously:
let trusted_ready_promise = TrustedPromise::new(self.promise.borrow().clone());
let trusted_load_promise = TrustedPromise::new(load_promise.clone());
self.global()
.task_manager()
.font_loading_task_source()
.queue(task!(resolve_font_face_set_load_task: move |cx| {
let ready_promise = trusted_ready_promise.root();
let load_promise = trusted_load_promise.root();
// Step 4.1. For all of the font faces in the font face list, call their load()
// method.
// Step 4.2. Resolve promise with the result of waiting for all of the
// [[FontStatusPromise]]s of each font face in the font face list, in order.
//
// TODO: These steps are not implemented. Instead we wait until all fonts
// are loaded by resolving the returned promise when
// `document.fonts.ready` is resolved. The return list of fonts will not
// be correct, but any code that waits on the promise will have
// conservatively consistent behavior. This is important for preventing
// intermittent results in WPT tests.
let global = ready_promise.global();
let handler = PromiseNativeHandler::new(
cx,
&global,
Some(Box::new(LoadPromiseFulfillmentHandler {
load_promise,
})),
None,
);
let mut realm = enter_auto_realm(cx, &*global);
ready_promise.append_native_handler(&mut realm.current_realm(), &handler);
}));
// Step 2. Return promise. Complete the rest of these steps asynchronously.
load_promise
}
/// <https://html.spec.whatwg.org/multipage/#customstateset>
fn Size(&self) -> u32 {
self.set_entries.borrow().len() as u32
}
}
impl Setlike for FontFaceSet {
type Key = DomRoot<FontFace>;
#[inline(always)]
fn get_index(&self, index: u32) -> Option<Self::Key> {
self.set_entries
.borrow()
.get(index as usize)
.map(|face| face.as_rooted())
}
#[inline(always)]
fn size(&self) -> u32 {
self.set_entries.borrow().len() as u32
}
#[inline(always)]
fn add(&self, face: Self::Key) {
self.set_entries.borrow_mut().push(face.as_traced());
}
#[inline(always)]
fn has(&self, target: Self::Key) -> bool {
self.contains_face(&target)
}
#[inline(always)]
fn clear(&self) {
self.set_entries.borrow_mut().clear();
}
#[inline(always)]
fn delete(&self, to_delete: Self::Key) -> bool {
self.delete_face(&to_delete)
}
}