405 lines
11 KiB
Rust
405 lines
11 KiB
Rust
// Copyright 2017 The Rust Project Developers. See the COPYRIGHT
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// file at the top-level directory of this distribution and at
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// http://rust-lang.org/COPYRIGHT.
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//
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// Licensed under the Apache License, Version 2.0 <LICENSE-APACHE or
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// http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
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// <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your
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// option. This file may not be copied, modified, or distributed
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// except according to those terms.
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//! This mdoule defines types which are thread safe if cfg!(parallel_queries) is true.
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//!
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//! `Lrc` is an alias of either Rc or Arc.
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//!
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//! `Lock` is a mutex.
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//! It internally uses `parking_lot::Mutex` if cfg!(parallel_queries) is true,
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//! `RefCell` otherwise.
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//!
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//! `RwLock` is a read-write lock.
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//! It internally uses `parking_lot::RwLock` if cfg!(parallel_queries) is true,
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//! `RefCell` otherwise.
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//!
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//! `LockCell` is a thread safe version of `Cell`, with `set` and `get` operations.
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//! It can never deadlock. It uses `Cell` when
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//! cfg!(parallel_queries) is false, otherwise it is a `Lock`.
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//!
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//! `MTLock` is a mutex which disappears if cfg!(parallel_queries) is false.
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//!
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//! `rustc_global!` gives us a way to declare variables which are intended to be
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//! global for the current rustc session. This currently maps to thread-locals,
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//! since rustdoc uses the rustc libraries in multiple threads.
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//! These globals should eventually be moved into the `Session` structure.
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//!
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//! `rustc_erase_owner!` erases a OwningRef owner into Erased or Erased + Send + Sync
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//! depending on the value of cfg!(parallel_queries).
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use std::cmp::Ordering;
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use std::fmt::Debug;
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use std::fmt::Formatter;
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use std::fmt;
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use owning_ref::{Erased, OwningRef};
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cfg_if! {
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if #[cfg(not(parallel_queries))] {
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pub auto trait Send {}
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pub auto trait Sync {}
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impl<T: ?Sized> Send for T {}
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impl<T: ?Sized> Sync for T {}
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#[macro_export]
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macro_rules! rustc_erase_owner {
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($v:expr) => {
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$v.erase_owner()
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}
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}
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pub type MetadataRef = OwningRef<Box<Erased>, [u8]>;
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pub use std::rc::Rc as Lrc;
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pub use std::cell::Ref as ReadGuard;
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pub use std::cell::RefMut as WriteGuard;
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pub use std::cell::RefMut as LockGuard;
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pub use std::cell::RefCell as RwLock;
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use std::cell::RefCell as InnerLock;
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use std::cell::Cell;
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#[derive(Debug)]
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pub struct MTLock<T>(T);
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impl<T> MTLock<T> {
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#[inline(always)]
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pub fn new(inner: T) -> Self {
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MTLock(inner)
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}
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#[inline(always)]
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pub fn into_inner(self) -> T {
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self.0
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}
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#[inline(always)]
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pub fn get_mut(&mut self) -> &mut T {
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&mut self.0
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}
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#[inline(always)]
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pub fn lock(&self) -> &T {
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&self.0
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}
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#[inline(always)]
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pub fn borrow(&self) -> &T {
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&self.0
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}
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#[inline(always)]
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pub fn borrow_mut(&self) -> &T {
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&self.0
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}
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}
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// FIXME: Probably a bad idea (in the threaded case)
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impl<T: Clone> Clone for MTLock<T> {
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#[inline]
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fn clone(&self) -> Self {
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MTLock(self.0.clone())
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}
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}
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pub struct LockCell<T>(Cell<T>);
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impl<T> LockCell<T> {
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#[inline(always)]
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pub fn new(inner: T) -> Self {
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LockCell(Cell::new(inner))
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}
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#[inline(always)]
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pub fn into_inner(self) -> T {
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self.0.into_inner()
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}
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#[inline(always)]
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pub fn set(&self, new_inner: T) {
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self.0.set(new_inner);
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}
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#[inline(always)]
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pub fn get(&self) -> T where T: Copy {
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self.0.get()
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}
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#[inline(always)]
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pub fn set_mut(&mut self, new_inner: T) {
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self.0.set(new_inner);
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}
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#[inline(always)]
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pub fn get_mut(&mut self) -> T where T: Copy {
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self.0.get()
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}
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}
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impl<T> LockCell<Option<T>> {
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#[inline(always)]
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pub fn take(&self) -> Option<T> {
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unsafe { (*self.0.as_ptr()).take() }
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}
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}
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} else {
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pub use std::marker::Send as Send;
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pub use std::marker::Sync as Sync;
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pub use parking_lot::RwLockReadGuard as ReadGuard;
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pub use parking_lot::RwLockWriteGuard as WriteGuard;
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pub use parking_lot::MutexGuard as LockGuard;
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use parking_lot;
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pub use std::sync::Arc as Lrc;
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pub use self::Lock as MTLock;
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use parking_lot::Mutex as InnerLock;
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pub type MetadataRef = OwningRef<Box<Erased + Send + Sync>, [u8]>;
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/// This makes locks panic if they are already held.
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/// It is only useful when you are running in a single thread
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const ERROR_CHECKING: bool = false;
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#[macro_export]
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macro_rules! rustc_erase_owner {
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($v:expr) => {{
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let v = $v;
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::rustc_data_structures::sync::assert_send_val(&v);
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v.erase_send_sync_owner()
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}}
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}
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pub struct LockCell<T>(Lock<T>);
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impl<T> LockCell<T> {
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#[inline(always)]
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pub fn new(inner: T) -> Self {
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LockCell(Lock::new(inner))
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}
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#[inline(always)]
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pub fn into_inner(self) -> T {
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self.0.into_inner()
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}
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#[inline(always)]
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pub fn set(&self, new_inner: T) {
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*self.0.lock() = new_inner;
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}
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#[inline(always)]
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pub fn get(&self) -> T where T: Copy {
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*self.0.lock()
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}
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#[inline(always)]
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pub fn set_mut(&mut self, new_inner: T) {
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*self.0.get_mut() = new_inner;
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}
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#[inline(always)]
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pub fn get_mut(&mut self) -> T where T: Copy {
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*self.0.get_mut()
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}
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}
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impl<T> LockCell<Option<T>> {
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#[inline(always)]
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pub fn take(&self) -> Option<T> {
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self.0.lock().take()
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}
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}
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#[derive(Debug)]
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pub struct RwLock<T>(parking_lot::RwLock<T>);
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impl<T> RwLock<T> {
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#[inline(always)]
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pub fn new(inner: T) -> Self {
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RwLock(parking_lot::RwLock::new(inner))
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}
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#[inline(always)]
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pub fn borrow(&self) -> ReadGuard<T> {
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if ERROR_CHECKING {
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self.0.try_read().expect("lock was already held")
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} else {
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self.0.read()
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}
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}
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#[inline(always)]
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pub fn borrow_mut(&self) -> WriteGuard<T> {
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if ERROR_CHECKING {
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self.0.try_write().expect("lock was already held")
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} else {
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self.0.write()
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}
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}
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}
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// FIXME: Probably a bad idea
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impl<T: Clone> Clone for RwLock<T> {
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#[inline]
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fn clone(&self) -> Self {
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RwLock::new(self.borrow().clone())
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}
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}
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}
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}
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pub fn assert_sync<T: ?Sized + Sync>() {}
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pub fn assert_send_val<T: ?Sized + Send>(_t: &T) {}
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pub fn assert_send_sync_val<T: ?Sized + Sync + Send>(_t: &T) {}
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#[macro_export]
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#[allow_internal_unstable]
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macro_rules! rustc_global {
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// empty (base case for the recursion)
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() => {};
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// process multiple declarations
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($(#[$attr:meta])* $vis:vis static $name:ident: $t:ty = $init:expr; $($rest:tt)*) => (
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thread_local!($(#[$attr])* $vis static $name: $t = $init);
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rustc_global!($($rest)*);
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);
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// handle a single declaration
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($(#[$attr:meta])* $vis:vis static $name:ident: $t:ty = $init:expr) => (
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thread_local!($(#[$attr])* $vis static $name: $t = $init);
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);
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}
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#[macro_export]
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macro_rules! rustc_access_global {
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($name:path, $callback:expr) => {
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$name.with($callback)
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}
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}
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impl<T: Copy + Debug> Debug for LockCell<T> {
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fn fmt(&self, f: &mut Formatter) -> fmt::Result {
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f.debug_struct("LockCell")
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.field("value", &self.get())
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.finish()
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}
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}
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impl<T:Default> Default for LockCell<T> {
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/// Creates a `LockCell<T>`, with the `Default` value for T.
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#[inline]
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fn default() -> LockCell<T> {
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LockCell::new(Default::default())
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}
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}
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impl<T:PartialEq + Copy> PartialEq for LockCell<T> {
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#[inline]
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fn eq(&self, other: &LockCell<T>) -> bool {
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self.get() == other.get()
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}
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}
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impl<T:Eq + Copy> Eq for LockCell<T> {}
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impl<T:PartialOrd + Copy> PartialOrd for LockCell<T> {
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#[inline]
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fn partial_cmp(&self, other: &LockCell<T>) -> Option<Ordering> {
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self.get().partial_cmp(&other.get())
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}
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#[inline]
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fn lt(&self, other: &LockCell<T>) -> bool {
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self.get() < other.get()
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}
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#[inline]
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fn le(&self, other: &LockCell<T>) -> bool {
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self.get() <= other.get()
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}
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#[inline]
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fn gt(&self, other: &LockCell<T>) -> bool {
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self.get() > other.get()
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}
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#[inline]
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fn ge(&self, other: &LockCell<T>) -> bool {
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self.get() >= other.get()
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}
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}
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impl<T:Ord + Copy> Ord for LockCell<T> {
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#[inline]
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fn cmp(&self, other: &LockCell<T>) -> Ordering {
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self.get().cmp(&other.get())
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}
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}
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#[derive(Debug)]
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pub struct Lock<T>(InnerLock<T>);
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impl<T> Lock<T> {
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#[inline(always)]
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pub fn new(inner: T) -> Self {
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Lock(InnerLock::new(inner))
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}
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#[inline(always)]
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pub fn into_inner(self) -> T {
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self.0.into_inner()
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}
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#[inline(always)]
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pub fn get_mut(&mut self) -> &mut T {
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self.0.get_mut()
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}
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#[cfg(parallel_queries)]
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#[inline(always)]
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pub fn lock(&self) -> LockGuard<T> {
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if ERROR_CHECKING {
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self.0.try_lock().expect("lock was already held")
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} else {
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self.0.lock()
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}
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}
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#[cfg(not(parallel_queries))]
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#[inline(always)]
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pub fn lock(&self) -> LockGuard<T> {
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self.0.borrow_mut()
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}
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#[inline(always)]
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pub fn borrow(&self) -> LockGuard<T> {
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self.lock()
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}
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#[inline(always)]
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pub fn borrow_mut(&self) -> LockGuard<T> {
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self.lock()
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}
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}
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// FIXME: Probably a bad idea
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impl<T: Clone> Clone for Lock<T> {
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#[inline]
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fn clone(&self) -> Self {
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Lock::new(self.borrow().clone())
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}
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}
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