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https://github.com/servo/servo.git
synced 2025-06-12 18:34:39 +00:00
Dynamically check DOMRefCell access from layout in debug builds
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parent
0162214b1f
commit
6ec0939a22
9 changed files with 150 additions and 30 deletions
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@ -30,6 +30,7 @@ use servo_util::geometry;
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use servo_util::opts;
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use servo_util::smallvec::{SmallVec, SmallVec1};
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use servo_util::task::spawn_named_with_send_on_failure;
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use servo_util::task_state;
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use servo_util::time::{TimeProfilerChan, profile};
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use servo_util::time;
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use std::comm::{Receiver, Sender, channel};
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@ -151,7 +152,7 @@ impl<C> RenderTask<C> where C: RenderListener + Send {
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time_profiler_chan: TimeProfilerChan,
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shutdown_chan: Sender<()>) {
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let ConstellationChan(c) = constellation_chan.clone();
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spawn_named_with_send_on_failure("RenderTask", proc() {
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spawn_named_with_send_on_failure("RenderTask", task_state::Render, proc() {
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{ // Ensures RenderTask and graphics context are destroyed before shutdown msg
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let native_graphics_context = compositor.get_graphics_metadata().map(
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|md| NativePaintingGraphicsContext::from_metadata(&md));
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@ -53,6 +53,7 @@ use servo_util::logical_geometry::LogicalPoint;
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use servo_util::opts;
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use servo_util::smallvec::{SmallVec, SmallVec1, VecLike};
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use servo_util::task::spawn_named_with_send_on_failure;
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use servo_util::task_state;
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use servo_util::time::{TimeProfilerChan, profile};
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use servo_util::time;
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use servo_util::workqueue::WorkQueue;
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@ -181,7 +182,7 @@ impl LayoutTaskFactory for LayoutTask {
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time_profiler_chan: TimeProfilerChan,
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shutdown_chan: Sender<()>) {
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let ConstellationChan(con_chan) = constellation_chan.clone();
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spawn_named_with_send_on_failure("LayoutTask", proc() {
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spawn_named_with_send_on_failure("LayoutTask", task_state::Layout, proc() {
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{ // Ensures layout task is destroyed before we send shutdown message
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let sender = chan.sender();
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let layout =
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@ -251,7 +252,8 @@ impl LayoutTask {
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let screen_size = Size2D(Au(0), Au(0));
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let device = Device::new(Screen, opts::get().initial_window_size.as_f32());
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let parallel_traversal = if opts::get().layout_threads != 1 {
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Some(WorkQueue::new("LayoutWorker", opts::get().layout_threads, ptr::null()))
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Some(WorkQueue::new("LayoutWorker", task_state::Layout,
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opts::get().layout_threads, ptr::null()))
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} else {
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None
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};
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@ -5,13 +5,15 @@
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use dom::bindings::trace::JSTraceable;
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use js::jsapi::{JSTracer};
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use servo_util::task_state;
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use std::cell::{Cell, UnsafeCell};
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use std::kinds::marker;
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/// A mutable field in the DOM.
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///
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/// This extends the API of `core::cell::RefCell` to allow unsafe access in
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/// certain situations.
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/// certain situations, with dynamic checking in debug builds.
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pub struct DOMRefCell<T> {
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value: UnsafeCell<T>,
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borrow: Cell<BorrowFlag>,
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@ -27,8 +29,31 @@ impl<T> DOMRefCell<T> {
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///
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/// For use in the layout task only.
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pub unsafe fn borrow_for_layout<'a>(&'a self) -> &'a T {
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debug_assert!(task_state::get().is_layout());
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&*self.value.get()
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}
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pub fn try_borrow<'a>(&'a self) -> Option<Ref<'a, T>> {
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debug_assert!(task_state::get().is_script());
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match self.borrow.get() {
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WRITING => None,
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borrow => {
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self.borrow.set(borrow + 1);
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Some(Ref { _parent: self })
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}
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}
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}
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pub fn try_borrow_mut<'a>(&'a self) -> Option<RefMut<'a, T>> {
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debug_assert!(task_state::get().is_script());
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match self.borrow.get() {
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UNUSED => {
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self.borrow.set(WRITING);
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Some(RefMut { _parent: self })
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},
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_ => None
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}
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}
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}
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impl<T: JSTraceable> JSTraceable for DOMRefCell<T> {
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@ -63,16 +88,6 @@ impl<T> DOMRefCell<T> {
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unsafe{self.value.unwrap()}
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}
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pub fn try_borrow<'a>(&'a self) -> Option<Ref<'a, T>> {
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match self.borrow.get() {
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WRITING => None,
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borrow => {
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self.borrow.set(borrow + 1);
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Some(Ref { _parent: self })
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}
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}
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}
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pub fn borrow<'a>(&'a self) -> Ref<'a, T> {
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match self.try_borrow() {
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Some(ptr) => ptr,
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@ -80,16 +95,6 @@ impl<T> DOMRefCell<T> {
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}
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}
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pub fn try_borrow_mut<'a>(&'a self) -> Option<RefMut<'a, T>> {
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match self.borrow.get() {
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UNUSED => {
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self.borrow.set(WRITING);
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Some(RefMut { _parent: self })
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},
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_ => None
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}
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}
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pub fn borrow_mut<'a>(&'a self) -> RefMut<'a, T> {
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match self.try_borrow_mut() {
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Some(ptr) => ptr,
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@ -24,6 +24,8 @@ use script_task::WorkerPostMessage;
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use script_task::StackRootTLS;
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use servo_net::resource_task::{ResourceTask, load_whole_resource};
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use servo_util::task_state;
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use servo_util::task_state::{Script, InWorker};
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use js::glue::JS_STRUCTURED_CLONE_VERSION;
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use js::jsapi::{JSContext, JS_ReadStructuredClone, JS_WriteStructuredClone, JS_ClearPendingException};
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@ -90,6 +92,9 @@ impl DedicatedWorkerGlobalScope {
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.native()
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.named(format!("Web Worker at {}", worker_url.serialize()))
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.spawn(proc() {
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task_state::initialize(Script | InWorker);
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let roots = RootCollection::new();
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let _stack_roots_tls = StackRootTLS::new(&roots);
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@ -54,6 +54,7 @@ use servo_net::resource_task::ResourceTask;
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use servo_util::geometry::to_frac_px;
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use servo_util::smallvec::{SmallVec1, SmallVec};
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use servo_util::task::spawn_named_with_send_on_failure;
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use servo_util::task_state;
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use geom::point::Point2D;
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use js::jsapi::{JS_SetWrapObjectCallbacks, JS_SetGCZeal, JS_DEFAULT_ZEAL_FREQ, JS_GC};
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@ -262,7 +263,7 @@ impl ScriptTaskFactory for ScriptTask {
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let ConstellationChan(const_chan) = constellation_chan.clone();
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let (script_chan, script_port) = channel();
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let layout_chan = LayoutChan(layout_chan.sender());
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spawn_named_with_send_on_failure("ScriptTask", proc() {
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spawn_named_with_send_on_failure("ScriptTask", task_state::Script, proc() {
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let script_task = ScriptTask::new(id,
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compositor as Box<ScriptListener>,
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layout_chan,
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@ -52,6 +52,7 @@ pub mod task;
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pub mod tid;
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pub mod time;
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pub mod taskpool;
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pub mod task_state;
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pub mod vec;
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pub mod workqueue;
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@ -8,22 +8,29 @@ use std::comm::Sender;
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use std::task::TaskBuilder;
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use native::task::NativeTaskBuilder;
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use task_state;
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pub fn spawn_named<S: IntoMaybeOwned<'static>>(name: S, f: proc():Send) {
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let builder = task::TaskBuilder::new().named(name);
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builder.spawn(f);
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}
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/// Arrange to send a particular message to a channel if the task built by
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/// this `TaskBuilder` fails.
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/// Arrange to send a particular message to a channel if the task fails.
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pub fn spawn_named_with_send_on_failure<T: Send>(name: &'static str,
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state: task_state::TaskState,
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f: proc(): Send,
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msg: T,
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dest: Sender<T>,
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native: bool) {
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let with_state = proc() {
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task_state::initialize(state);
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f()
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};
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let future_result = if native {
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TaskBuilder::new().named(name).native().try_future(f)
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TaskBuilder::new().named(name).native().try_future(with_state)
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} else {
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TaskBuilder::new().named(name).try_future(f)
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TaskBuilder::new().named(name).try_future(with_state)
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};
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let watched_name = name.to_string();
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92
components/util/task_state.rs
Normal file
92
components/util/task_state.rs
Normal file
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@ -0,0 +1,92 @@
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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//! Supports dynamic assertions in debug builds about what sort of task is
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//! running and what state it's in.
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//!
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//! In release builds, `get` is not available; calls must be inside
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//! `debug_assert!` or similar. All of the other functions inline away to
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//! nothing.
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pub use self::imp::{initialize, enter, exit};
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#[cfg(not(ndebug))]
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pub use self::imp::get;
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bitflags! {
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#[deriving(Show)]
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flags TaskState: u32 {
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static Script = 0x01,
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static Layout = 0x02,
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static Render = 0x04,
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static InWorker = 0x0100,
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}
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}
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// Exactly one of these should be set.
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static task_types: &'static [TaskState]
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= &[Script, Layout, Render];
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macro_rules! predicates ( ( $( $f:ident = $c:ident ; )* ) => (
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impl TaskState {
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$(
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pub fn $f(self) -> bool {
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self.contains($c)
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}
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)*
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}
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))
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predicates! {
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is_script = Script;
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is_layout = Layout;
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is_render = Render;
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}
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#[cfg(not(ndebug))]
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mod imp {
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use super::{TaskState, task_types};
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local_data_key!(STATE: TaskState)
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pub fn initialize(x: TaskState) {
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match STATE.replace(Some(x)) {
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None => (),
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Some(s) => fail!("Task state already initialized as {}", s),
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};
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get(); // check the assertion below
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}
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pub fn get() -> TaskState {
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let state = match STATE.get() {
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None => fail!("Task state not initialized"),
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Some(s) => *s,
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};
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// Exactly one of the task type flags should be set.
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assert_eq!(1, task_types.iter().filter(|&&ty| state.contains(ty)).count());
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state
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}
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pub fn enter(x: TaskState) {
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let state = get();
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assert!(!state.intersects(x));
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STATE.replace(Some(state | x));
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}
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pub fn exit(x: TaskState) {
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let state = get();
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assert!(state.contains(x));
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STATE.replace(Some(state & !x));
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}
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}
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#[cfg(ndebug)]
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mod imp {
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use super::TaskState;
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#[inline(always)] pub fn initialize(_: TaskState) { }
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#[inline(always)] pub fn enter(_: TaskState) { }
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#[inline(always)] pub fn exit(_: TaskState) { }
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}
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@ -7,6 +7,8 @@
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//! Data associated with queues is simply a pair of unsigned integers. It is expected that a
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//! higher-level API on top of this could allow safe fork-join parallelism.
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use task_state;
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use native::task::NativeTaskBuilder;
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use rand::{Rng, XorShiftRng};
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use std::mem;
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@ -196,7 +198,10 @@ pub struct WorkQueue<QueueData, WorkData> {
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impl<QueueData: Send, WorkData: Send> WorkQueue<QueueData, WorkData> {
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/// Creates a new work queue and spawns all the threads associated with
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/// it.
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pub fn new(task_name: &'static str, thread_count: uint, user_data: QueueData) -> WorkQueue<QueueData, WorkData> {
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pub fn new(task_name: &'static str,
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state: task_state::TaskState,
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thread_count: uint,
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user_data: QueueData) -> WorkQueue<QueueData, WorkData> {
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// Set up data structures.
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let (supervisor_chan, supervisor_port) = channel();
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let (mut infos, mut threads) = (vec!(), vec!());
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@ -231,6 +236,7 @@ impl<QueueData: Send, WorkData: Send> WorkQueue<QueueData, WorkData> {
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// Spawn threads.
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for thread in threads.into_iter() {
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TaskBuilder::new().named(task_name).native().spawn(proc() {
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task_state::initialize(state | task_state::InWorker);
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let mut thread = thread;
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thread.start()
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})
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