/* 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 http://mozilla.org/MPL/2.0/. */ //! Supports writing a trace file created during each layout scope //! that can be viewed by an external tool to make layout debugging easier. #![macro_escape] use flow_ref::FlowRef; use flow; use serialize::json; use std::borrow::ToOwned; use std::cell::RefCell; use std::io::File; use std::sync::atomic::{AtomicUint, Ordering, INIT_ATOMIC_UINT}; thread_local!(static STATE_KEY: RefCell> = RefCell::new(None)) static mut DEBUG_ID_COUNTER: AtomicUint = INIT_ATOMIC_UINT; pub struct Scope; #[macro_export] macro_rules! layout_debug_scope( ($($arg:tt)*) => ( if cfg!(not(ndebug)) { layout_debug::Scope::new(format!($($arg)*)) } else { layout_debug::Scope } ) ) #[deriving(Encodable)] struct ScopeData { name: String, pre: String, post: String, children: Vec>, } impl ScopeData { fn new(name: String, pre: String) -> ScopeData { ScopeData { name: name, pre: pre, post: String::new(), children: vec!(), } } } struct State { flow_root: FlowRef, scope_stack: Vec>, } /// A layout debugging scope. The entire state of the flow tree /// will be output at the beginning and end of this scope. impl Scope { pub fn new(name: String) -> Scope { STATE_KEY.with(|ref r| { match &mut *r.borrow_mut() { &Some(ref mut state) => { let flow_trace = json::encode(&flow::base(&*state.flow_root)); let data = box ScopeData::new(name.clone(), flow_trace); state.scope_stack.push(data); } &None => {} } }); Scope } } #[cfg(not(ndebug))] impl Drop for Scope { fn drop(&mut self) { STATE_KEY.with(|ref r| { match &mut *r.borrow_mut() { &Some(ref mut state) => { let mut current_scope = state.scope_stack.pop().unwrap(); current_scope.post = json::encode(&flow::base(&*state.flow_root)); let previous_scope = state.scope_stack.last_mut().unwrap(); previous_scope.children.push(current_scope); } &None => {} } }); } } /// Generate a unique ID. This is used for items such as Fragment /// which are often reallocated but represent essentially the /// same data. pub fn generate_unique_debug_id() -> u16 { unsafe { DEBUG_ID_COUNTER.fetch_add(1, Ordering::SeqCst) as u16 } } /// Begin a layout debug trace. If this has not been called, /// creating debug scopes has no effect. pub fn begin_trace(flow_root: FlowRef) { assert!(STATE_KEY.with(|ref r| r.borrow().is_none())); STATE_KEY.with(|ref r| { let flow_trace = json::encode(&flow::base(&*flow_root)); let state = State { scope_stack: vec![box ScopeData::new("root".to_owned(), flow_trace)], flow_root: flow_root.clone(), }; *r.borrow_mut() = Some(state); }); } /// End the debug layout trace. This will write the layout /// trace to disk in the current directory. The output /// file can then be viewed with an external tool. pub fn end_trace() { let mut task_state = STATE_KEY.with(|ref r| r.borrow_mut().take().unwrap()); assert!(task_state.scope_stack.len() == 1); let mut root_scope = task_state.scope_stack.pop().unwrap(); root_scope.post = json::encode(&flow::base(&*task_state.flow_root)); let result = json::encode(&root_scope); let path = Path::new("layout_trace.json"); let mut file = File::create(&path).unwrap(); file.write_str(result.as_slice()).unwrap(); }