servo/components/script/dom/bindings/trace.rs
Martin Robinson 26624a109f
clippy: Fix a bunch of warnings in script (#32680)
This is just a portion of the errors that are remaining to be fixed.
2024-07-04 11:40:23 +00:00

613 lines
17 KiB
Rust

/* 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/. */
//! Utilities for tracing JS-managed values.
//!
//! The lifetime of DOM objects is managed by the SpiderMonkey Garbage
//! Collector. A rooted DOM object implementing the interface `Foo` is traced
//! as follows:
//!
//! 1. The GC calls `_trace` defined in `FooBinding` during the marking
//! phase. (This happens through `JSClass.trace` for non-proxy bindings, and
//! through `ProxyTraps.trace` otherwise.)
//! 2. `_trace` calls `Foo::trace()` (an implementation of `JSTraceable`).
//! This is typically derived via a `#[dom_struct]`
//! (implies `#[derive(JSTraceable)]`) annotation.
//! Non-JS-managed types have an empty inline `trace()` method,
//! achieved via `unsafe_no_jsmanaged_fields!` or similar.
//! 3. For all fields, `Foo::trace()`
//! calls `trace()` on the field.
//! For example, for fields of type `Dom<T>`, `Dom<T>::trace()` calls
//! `trace_reflector()`.
//! 4. `trace_reflector()` calls `Dom::TraceEdge()` with a
//! pointer to the `JSObject` for the reflector. This notifies the GC, which
//! will add the object to the graph, and will trace that object as well.
//! 5. When the GC finishes tracing, it [`finalizes`](../index.html#destruction)
//! any reflectors that were not reachable.
//!
//! The `unsafe_no_jsmanaged_fields!()` macro adds an empty implementation of
//! `JSTraceable` to a datatype.
use std::cell::OnceCell;
use std::collections::hash_map::RandomState;
use std::collections::HashMap;
use std::fmt::Display;
use std::hash::{BuildHasher, Hash};
use std::mem;
use std::ops::{Deref, DerefMut};
use indexmap::IndexMap;
/// A trait to allow tracing (only) DOM objects.
pub use js::gc::Traceable as JSTraceable;
use js::glue::{CallObjectTracer, CallScriptTracer, CallStringTracer, CallValueTracer};
use js::jsapi::{GCTraceKindToAscii, Heap, JSObject, JSScript, JSString, JSTracer, TraceKind};
use js::jsval::JSVal;
use js::rust::{GCMethods, Handle};
use malloc_size_of::{MallocSizeOf, MallocSizeOfOps};
use parking_lot::RwLock;
use servo_arc::Arc as ServoArc;
use smallvec::SmallVec;
use style::author_styles::AuthorStyles;
use style::stylesheet_set::{AuthorStylesheetSet, DocumentStylesheetSet};
use tendril::fmt::UTF8;
use tendril::stream::LossyDecoder;
use tendril::TendrilSink;
use webxr_api::{Finger, Hand};
use crate::dom::bindings::cell::DomRefCell;
use crate::dom::bindings::error::Error;
use crate::dom::bindings::refcounted::{Trusted, TrustedPromise};
use crate::dom::bindings::reflector::{DomObject, Reflector};
use crate::dom::bindings::root::{Dom, DomRoot};
use crate::dom::bindings::str::{DOMString, USVString};
use crate::dom::bindings::utils::WindowProxyHandler;
use crate::dom::gpubuffer::GPUBufferState;
use crate::dom::gpucanvascontext::WebGPUContextId;
use crate::dom::htmlimageelement::SourceSet;
use crate::dom::htmlmediaelement::HTMLMediaElementFetchContext;
use crate::script_runtime::{ContextForRequestInterrupt, StreamConsumer};
use crate::script_thread::IncompleteParserContexts;
use crate::task::TaskBox;
/// A trait to allow tracing only DOM sub-objects.
pub unsafe trait CustomTraceable {
/// Trace `self`.
unsafe fn trace(&self, trc: *mut JSTracer);
}
unsafe impl<T: CustomTraceable> CustomTraceable for Box<T> {
#[inline]
unsafe fn trace(&self, trc: *mut JSTracer) {
(**self).trace(trc);
}
}
unsafe impl<T: CustomTraceable> CustomTraceable for DomRefCell<T> {
unsafe fn trace(&self, trc: *mut JSTracer) {
(*self).borrow().trace(trc)
}
}
unsafe impl<T: JSTraceable> CustomTraceable for OnceCell<T> {
unsafe fn trace(&self, tracer: *mut JSTracer) {
if let Some(value) = self.get() {
value.trace(tracer)
}
}
}
/// Wrapper type for nop traceble
///
/// SAFETY: Inner type must not impl JSTraceable
#[derive(Clone, Copy, Debug, Default, Eq, Hash, Ord, PartialEq, PartialOrd)]
#[crown::trace_in_no_trace_lint::must_not_have_traceable]
pub struct NoTrace<T>(pub T);
impl<T: Display> Display for NoTrace<T> {
fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
self.0.fmt(f)
}
}
impl<T> From<T> for NoTrace<T> {
fn from(item: T) -> Self {
Self(item)
}
}
#[allow(unsafe_code)]
unsafe impl<T> JSTraceable for NoTrace<T> {
#[inline]
unsafe fn trace(&self, _: *mut ::js::jsapi::JSTracer) {}
}
impl<T: MallocSizeOf> MallocSizeOf for NoTrace<T> {
fn size_of(&self, ops: &mut MallocSizeOfOps) -> usize {
self.0.size_of(ops)
}
}
/// HashMap wrapper, that has non-jsmanaged keys
///
/// Not all methods are reexposed, but you can access inner type via .0
#[crown::trace_in_no_trace_lint::must_not_have_traceable(0)]
#[derive(Clone, Debug)]
pub struct HashMapTracedValues<K, V, S = RandomState>(pub HashMap<K, V, S>);
impl<K, V, S: Default> Default for HashMapTracedValues<K, V, S> {
fn default() -> Self {
Self(Default::default())
}
}
impl<K, V> HashMapTracedValues<K, V, RandomState> {
/// Wrapper for HashMap::new()
#[inline]
#[must_use]
pub fn new() -> HashMapTracedValues<K, V, RandomState> {
Self(HashMap::new())
}
}
impl<K, V, S> HashMapTracedValues<K, V, S> {
#[inline]
pub fn iter(&self) -> std::collections::hash_map::Iter<'_, K, V> {
self.0.iter()
}
#[inline]
pub fn drain(&mut self) -> std::collections::hash_map::Drain<'_, K, V> {
self.0.drain()
}
#[inline]
pub fn is_empty(&self) -> bool {
self.0.is_empty()
}
}
impl<K, V, S> HashMapTracedValues<K, V, S>
where
K: Eq + Hash,
S: BuildHasher,
{
#[inline]
pub fn insert(&mut self, k: K, v: V) -> Option<V> {
self.0.insert(k, v)
}
#[inline]
pub fn get<Q: ?Sized>(&self, k: &Q) -> Option<&V>
where
K: std::borrow::Borrow<Q>,
Q: Hash + Eq,
{
self.0.get(k)
}
#[inline]
pub fn get_mut<Q: Hash + Eq + ?Sized>(&mut self, k: &Q) -> Option<&mut V>
where
K: std::borrow::Borrow<Q>,
{
self.0.get_mut(k)
}
#[inline]
pub fn contains_key<Q: Hash + Eq + ?Sized>(&self, k: &Q) -> bool
where
K: std::borrow::Borrow<Q>,
{
self.0.contains_key(k)
}
#[inline]
pub fn remove<Q: Hash + Eq + ?Sized>(&mut self, k: &Q) -> Option<V>
where
K: std::borrow::Borrow<Q>,
{
self.0.remove(k)
}
#[inline]
pub fn entry(&mut self, key: K) -> std::collections::hash_map::Entry<'_, K, V> {
self.0.entry(key)
}
}
impl<K, V, S> MallocSizeOf for HashMapTracedValues<K, V, S>
where
K: Eq + Hash + MallocSizeOf,
V: MallocSizeOf,
S: BuildHasher,
{
fn size_of(&self, ops: &mut MallocSizeOfOps) -> usize {
self.0.size_of(ops)
}
}
#[allow(unsafe_code)]
unsafe impl<K, V: JSTraceable, S> JSTraceable for HashMapTracedValues<K, V, S> {
#[inline]
unsafe fn trace(&self, trc: *mut ::js::jsapi::JSTracer) {
for v in self.0.values() {
v.trace(trc);
}
}
}
unsafe_no_jsmanaged_fields!(Box<dyn TaskBox>);
unsafe_no_jsmanaged_fields!(IncompleteParserContexts);
unsafe_no_jsmanaged_fields!(Reflector);
#[allow(dead_code)]
/// Trace a `JSScript`.
pub fn trace_script(tracer: *mut JSTracer, description: &str, script: &Heap<*mut JSScript>) {
unsafe {
trace!("tracing {}", description);
CallScriptTracer(
tracer,
script.ptr.get() as *mut _,
GCTraceKindToAscii(TraceKind::Script),
);
}
}
#[allow(dead_code)]
/// Trace a `JSVal`.
pub fn trace_jsval(tracer: *mut JSTracer, description: &str, val: &Heap<JSVal>) {
unsafe {
if !val.get().is_markable() {
return;
}
trace!("tracing value {}", description);
CallValueTracer(
tracer,
val.ptr.get() as *mut _,
GCTraceKindToAscii(val.get().trace_kind()),
);
}
}
/// Trace the `JSObject` held by `reflector`.
#[allow(crown::unrooted_must_root)]
pub fn trace_reflector(tracer: *mut JSTracer, description: &str, reflector: &Reflector) {
trace!("tracing reflector {}", description);
trace_object(tracer, description, reflector.rootable())
}
/// Trace a `JSObject`.
pub fn trace_object(tracer: *mut JSTracer, description: &str, obj: &Heap<*mut JSObject>) {
unsafe {
trace!("tracing {}", description);
CallObjectTracer(
tracer,
obj.ptr.get() as *mut _,
GCTraceKindToAscii(TraceKind::Object),
);
}
}
#[allow(dead_code)]
/// Trace a `JSString`.
pub fn trace_string(tracer: *mut JSTracer, description: &str, s: &Heap<*mut JSString>) {
unsafe {
trace!("tracing {}", description);
CallStringTracer(
tracer,
s.ptr.get() as *mut _,
GCTraceKindToAscii(TraceKind::String),
);
}
}
unsafe impl<T: JSTraceable> CustomTraceable for ServoArc<T> {
unsafe fn trace(&self, trc: *mut JSTracer) {
(**self).trace(trc)
}
}
unsafe impl<T: JSTraceable> CustomTraceable for RwLock<T> {
unsafe fn trace(&self, trc: *mut JSTracer) {
self.read().trace(trc)
}
}
unsafe impl<T: JSTraceable> JSTraceable for DomRefCell<T> {
unsafe fn trace(&self, trc: *mut JSTracer) {
(*self).borrow().trace(trc)
}
}
unsafe impl<T: JSTraceable + Eq + Hash> CustomTraceable for indexmap::IndexSet<T> {
#[inline]
unsafe fn trace(&self, trc: *mut JSTracer) {
for e in self.iter() {
e.trace(trc);
}
}
}
// XXXManishearth Check if the following three are optimized to no-ops
// if e.trace() is a no-op (e.g it is an unsafe_no_jsmanaged_fields type)
unsafe impl<T: JSTraceable + 'static> CustomTraceable for SmallVec<[T; 1]> {
#[inline]
unsafe fn trace(&self, trc: *mut JSTracer) {
for e in self.iter() {
e.trace(trc);
}
}
}
unsafe impl<K, V, S> CustomTraceable for IndexMap<K, V, S>
where
K: Hash + Eq + JSTraceable,
V: JSTraceable,
S: BuildHasher,
{
#[inline]
unsafe fn trace(&self, trc: *mut JSTracer) {
for (k, v) in self {
k.trace(trc);
v.trace(trc);
}
}
}
unsafe_no_jsmanaged_fields!(Error);
unsafe_no_jsmanaged_fields!(TrustedPromise);
unsafe_no_jsmanaged_fields!(ContextForRequestInterrupt);
unsafe_no_jsmanaged_fields!(WindowProxyHandler);
unsafe_no_jsmanaged_fields!(DOMString);
unsafe_no_jsmanaged_fields!(USVString);
unsafe_no_jsmanaged_fields!(WebGPUContextId);
unsafe_no_jsmanaged_fields!(GPUBufferState);
unsafe_no_jsmanaged_fields!(SourceSet);
unsafe_no_jsmanaged_fields!(HTMLMediaElementFetchContext);
unsafe_no_jsmanaged_fields!(StreamConsumer);
unsafe impl<T: DomObject> JSTraceable for Trusted<T> {
#[inline]
unsafe fn trace(&self, _: *mut JSTracer) {
// Do nothing
}
}
unsafe impl<S> CustomTraceable for DocumentStylesheetSet<S>
where
S: JSTraceable + ::style::stylesheets::StylesheetInDocument + PartialEq + 'static,
{
unsafe fn trace(&self, tracer: *mut JSTracer) {
for (s, _origin) in self.iter() {
s.trace(tracer)
}
}
}
unsafe impl<S> CustomTraceable for AuthorStylesheetSet<S>
where
S: JSTraceable + ::style::stylesheets::StylesheetInDocument + PartialEq + 'static,
{
unsafe fn trace(&self, tracer: *mut JSTracer) {
for s in self.iter() {
s.trace(tracer)
}
}
}
unsafe impl<S> CustomTraceable for AuthorStyles<S>
where
S: JSTraceable + ::style::stylesheets::StylesheetInDocument + PartialEq + 'static,
{
unsafe fn trace(&self, tracer: *mut JSTracer) {
self.stylesheets.trace(tracer)
}
}
unsafe impl<Sink> CustomTraceable for LossyDecoder<Sink>
where
Sink: JSTraceable + TendrilSink<UTF8>,
{
unsafe fn trace(&self, tracer: *mut JSTracer) {
self.inner_sink().trace(tracer);
}
}
unsafe impl<J> CustomTraceable for Hand<J>
where
J: JSTraceable,
{
#[inline]
unsafe fn trace(&self, trc: *mut JSTracer) {
// exhaustive match so we don't miss new fields
let Hand {
ref wrist,
ref thumb_metacarpal,
ref thumb_phalanx_proximal,
ref thumb_phalanx_distal,
ref thumb_phalanx_tip,
ref index,
ref middle,
ref ring,
ref little,
} = *self;
wrist.trace(trc);
thumb_metacarpal.trace(trc);
thumb_phalanx_proximal.trace(trc);
thumb_phalanx_distal.trace(trc);
thumb_phalanx_tip.trace(trc);
index.trace(trc);
middle.trace(trc);
ring.trace(trc);
little.trace(trc);
}
}
unsafe impl<J> CustomTraceable for Finger<J>
where
J: JSTraceable,
{
#[inline]
unsafe fn trace(&self, trc: *mut JSTracer) {
// exhaustive match so we don't miss new fields
let Finger {
ref metacarpal,
ref phalanx_proximal,
ref phalanx_intermediate,
ref phalanx_distal,
ref phalanx_tip,
} = *self;
metacarpal.trace(trc);
phalanx_proximal.trace(trc);
phalanx_intermediate.trace(trc);
phalanx_distal.trace(trc);
phalanx_tip.trace(trc);
}
}
/// Holds a set of JSTraceables that need to be rooted
pub use js::gc::RootedTraceableSet;
/// Roots any JSTraceable thing
///
/// If you have a valid DomObject, use DomRoot.
/// If you have GC things like *mut JSObject or JSVal, use rooted!.
/// If you have an arbitrary number of DomObjects to root, use rooted_vec!.
/// If you know what you're doing, use this.
#[crown::unrooted_must_root_lint::allow_unrooted_interior]
pub struct RootedTraceableBox<T: JSTraceable + 'static>(js::gc::RootedTraceableBox<T>);
unsafe impl<T: JSTraceable + 'static> JSTraceable for RootedTraceableBox<T> {
unsafe fn trace(&self, tracer: *mut JSTracer) {
self.0.trace(tracer);
}
}
impl<T: JSTraceable + 'static> RootedTraceableBox<T> {
/// DomRoot a JSTraceable thing for the life of this RootedTraceableBox
pub fn new(traceable: T) -> RootedTraceableBox<T> {
Self(js::gc::RootedTraceableBox::new(traceable))
}
/// Consumes a boxed JSTraceable and roots it for the life of this RootedTraceableBox.
pub fn from_box(boxed_traceable: Box<T>) -> RootedTraceableBox<T> {
Self(js::gc::RootedTraceableBox::from_box(boxed_traceable))
}
}
impl<T> RootedTraceableBox<Heap<T>>
where
Heap<T>: JSTraceable + 'static,
T: GCMethods + Copy,
{
pub fn handle(&self) -> Handle<T> {
self.0.handle()
}
}
impl<T: JSTraceable + MallocSizeOf> MallocSizeOf for RootedTraceableBox<T> {
fn size_of(&self, ops: &mut MallocSizeOfOps) -> usize {
// Briefly resurrect the real Box value so we can rely on the existing calculations.
// Then immediately forget about it again to avoid dropping the box.
let inner = unsafe { Box::from_raw(self.0.ptr()) };
let size = inner.size_of(ops);
mem::forget(inner);
size
}
}
impl<T: JSTraceable + Default> Default for RootedTraceableBox<T> {
fn default() -> RootedTraceableBox<T> {
RootedTraceableBox::new(T::default())
}
}
impl<T: JSTraceable> Deref for RootedTraceableBox<T> {
type Target = T;
fn deref(&self) -> &T {
self.0.deref()
}
}
impl<T: JSTraceable> DerefMut for RootedTraceableBox<T> {
fn deref_mut(&mut self) -> &mut T {
self.0.deref_mut()
}
}
/// A vector of items to be rooted with `RootedVec`.
/// Guaranteed to be empty when not rooted.
/// Usage: `rooted_vec!(let mut v);` or if you have an
/// iterator of `DomRoot`s, `rooted_vec!(let v <- iterator);`.
#[allow(crown::unrooted_must_root)]
#[derive(JSTraceable)]
#[crown::unrooted_must_root_lint::allow_unrooted_interior]
pub struct RootableVec<T: JSTraceable> {
v: Vec<T>,
}
impl<T: JSTraceable> RootableVec<T> {
/// Create a vector of items of type T that can be rooted later.
pub fn new_unrooted() -> RootableVec<T> {
RootableVec { v: vec![] }
}
}
/// A vector of items that are rooted for the lifetime 'a.
#[crown::unrooted_must_root_lint::allow_unrooted_interior]
pub struct RootedVec<'a, T: 'static + JSTraceable> {
root: &'a mut RootableVec<T>,
}
impl<'a, T: 'static + JSTraceable> RootedVec<'a, T> {
/// Create a vector of items of type T that is rooted for
/// the lifetime of this struct
pub fn new(root: &'a mut RootableVec<T>) -> Self {
unsafe {
RootedTraceableSet::add(root);
}
RootedVec { root }
}
}
impl<'a, T: 'static + JSTraceable + DomObject> RootedVec<'a, Dom<T>> {
/// Create a vector of items of type `Dom<T>` that is rooted for
/// the lifetime of this struct
pub fn from_iter<I>(root: &'a mut RootableVec<Dom<T>>, iter: I) -> Self
where
I: Iterator<Item = DomRoot<T>>,
{
unsafe {
RootedTraceableSet::add(root);
}
root.v.extend(iter.map(|item| Dom::from_ref(&*item)));
RootedVec { root }
}
}
impl<'a, T: JSTraceable + 'static> Drop for RootedVec<'a, T> {
fn drop(&mut self) {
self.clear();
unsafe {
RootedTraceableSet::remove(self.root);
}
}
}
impl<'a, T: JSTraceable> Deref for RootedVec<'a, T> {
type Target = Vec<T>;
fn deref(&self) -> &Vec<T> {
&self.root.v
}
}
impl<'a, T: JSTraceable> DerefMut for RootedVec<'a, T> {
fn deref_mut(&mut self) -> &mut Vec<T> {
&mut self.root.v
}
}