Fix module references in blocking read-write lock implementation
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@ -9,7 +9,7 @@ use self::raw::RawRwLock;
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/// Blocking read-write lock (not async)
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/// Blocking read-write lock (not async)
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///
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///
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/// Provides a blocking read-write lock primitive backed by an implementation of [`raw_rwlock::RawRwLock`].
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/// Provides a blocking read-write lock primitive backed by an implementation of [`raw::RawRwLock`].
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///
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///
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/// Which implementation you select depends on the context in which you're using the read-write lock, and you can choose which kind
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/// Which implementation you select depends on the context in which you're using the read-write lock, and you can choose which kind
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/// of interior mutability fits your use case.
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/// of interior mutability fits your use case.
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@ -94,16 +94,16 @@ impl<R, T> RwLock<R, T> {
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/// # Safety
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/// # Safety
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///
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///
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/// This read-write lock is safe to share between different executors and interrupts.
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/// This read-write lock is safe to share between different executors and interrupts.
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pub type CriticalSectionRwLock<T> = RwLock<raw_rwlock::CriticalSectionRawRwLock, T>;
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pub type CriticalSectionRwLock<T> = RwLock<raw::CriticalSectionRawRwLock, T>;
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/// A read-write lock that allows borrowing data in the context of a single executor.
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/// A read-write lock that allows borrowing data in the context of a single executor.
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///
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///
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/// # Safety
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/// # Safety
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///
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///
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/// **This Read-Write Lock is only safe within a single executor.**
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/// **This Read-Write Lock is only safe within a single executor.**
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pub type NoopRwLock<T> = RwLock<raw_rwlock::NoopRawRwLock, T>;
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pub type NoopRwLock<T> = RwLock<raw::NoopRawRwLock, T>;
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impl<T> RwLock<raw_rwlock::CriticalSectionRawRwLock, T> {
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impl<T> RwLock<raw::CriticalSectionRawRwLock, T> {
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/// Borrows the data for the duration of the critical section
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/// Borrows the data for the duration of the critical section
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pub fn borrow<'cs>(&'cs self, _cs: critical_section::CriticalSection<'cs>) -> &'cs T {
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pub fn borrow<'cs>(&'cs self, _cs: critical_section::CriticalSection<'cs>) -> &'cs T {
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let ptr = self.data.get() as *const T;
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let ptr = self.data.get() as *const T;
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@ -111,7 +111,7 @@ impl<T> RwLock<raw_rwlock::CriticalSectionRawRwLock, T> {
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}
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}
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}
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}
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impl<T> RwLock<raw_rwlock::NoopRawRwLock, T> {
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impl<T> RwLock<raw::NoopRawRwLock, T> {
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/// Borrows the data
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/// Borrows the data
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#[allow(clippy::should_implement_trait)]
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#[allow(clippy::should_implement_trait)]
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pub fn borrow(&self) -> &T {
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pub fn borrow(&self) -> &T {
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@ -184,7 +184,7 @@ mod thread_mode_rwlock {
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/// This will panic if not currently running in thread mode.
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/// This will panic if not currently running in thread mode.
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pub fn borrow(&self) -> &T {
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pub fn borrow(&self) -> &T {
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assert!(
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assert!(
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raw_rwlock::in_thread_mode(),
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raw::in_thread_mode(),
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"ThreadModeRwLock can only be borrowed from thread mode."
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"ThreadModeRwLock can only be borrowed from thread mode."
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);
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);
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unsafe { &*self.inner.get() }
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unsafe { &*self.inner.get() }
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@ -197,7 +197,7 @@ mod thread_mode_rwlock {
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/// This will panic if not currently running in thread mode.
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/// This will panic if not currently running in thread mode.
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pub fn borrow_mut(&self) -> &mut T {
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pub fn borrow_mut(&self) -> &mut T {
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assert!(
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assert!(
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raw_rwlock::in_thread_mode(),
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raw::in_thread_mode(),
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"ThreadModeRwLock can only be borrowed from thread mode."
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"ThreadModeRwLock can only be borrowed from thread mode."
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);
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);
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unsafe { &mut *self.inner.get() }
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unsafe { &mut *self.inner.get() }
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@ -211,7 +211,7 @@ mod thread_mode_rwlock {
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// T isn't, so without this check a user could create a ThreadModeRwLock in thread mode,
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// T isn't, so without this check a user could create a ThreadModeRwLock in thread mode,
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// send it to interrupt context and drop it there, which would "send" a T even if T is not Send.
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// send it to interrupt context and drop it there, which would "send" a T even if T is not Send.
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assert!(
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assert!(
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raw_rwlock::in_thread_mode(),
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raw::in_thread_mode(),
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"ThreadModeRwLock can only be dropped from thread mode."
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"ThreadModeRwLock can only be dropped from thread mode."
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);
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);
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@ -2,13 +2,13 @@
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//!
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//!
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//! This module provides a read-write lock that can be used to synchronize data between asynchronous tasks.
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//! This module provides a read-write lock that can be used to synchronize data between asynchronous tasks.
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use core::cell::{RefCell, UnsafeCell};
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use core::cell::{RefCell, UnsafeCell};
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use core::fmt;
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use core::future::{poll_fn, Future};
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use core::future::{poll_fn, Future};
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use core::ops::{Deref, DerefMut};
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use core::ops::{Deref, DerefMut};
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use core::task::Poll;
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use core::task::Poll;
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use core::{fmt, mem};
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use crate::blocking_mutex::raw::RawRwLock;
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use crate::blocking_rwlock::raw::RawRwLock;
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use crate::blocking_mutex::RwLock as BlockingRwLock;
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use crate::blocking_rwlock::RwLock as BlockingRwLock;
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use crate::waitqueue::WakerRegistration;
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use crate::waitqueue::WakerRegistration;
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/// Error returned by [`RwLock::try_read_lock`] and [`RwLock::try_write_lock`]
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/// Error returned by [`RwLock::try_read_lock`] and [`RwLock::try_write_lock`]
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@ -77,7 +77,7 @@ where
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/// This will wait for the lock to be available if it's already locked for writing.
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/// This will wait for the lock to be available if it's already locked for writing.
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pub fn read_lock(&self) -> impl Future<Output = RwLockReadGuard<'_, R, T>> {
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pub fn read_lock(&self) -> impl Future<Output = RwLockReadGuard<'_, R, T>> {
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poll_fn(|cx| {
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poll_fn(|cx| {
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let ready = self.state.lock(|s| {
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let ready = self.state.write_lock(|s| {
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let mut s = s.borrow_mut();
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let mut s = s.borrow_mut();
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if s.writer {
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if s.writer {
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s.waker.register(cx.waker());
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s.waker.register(cx.waker());
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@ -101,7 +101,7 @@ where
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/// This will wait for the lock to be available if it's already locked for reading or writing.
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/// This will wait for the lock to be available if it's already locked for reading or writing.
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pub fn write_lock(&self) -> impl Future<Output = RwLockWriteGuard<'_, R, T>> {
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pub fn write_lock(&self) -> impl Future<Output = RwLockWriteGuard<'_, R, T>> {
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poll_fn(|cx| {
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poll_fn(|cx| {
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let ready = self.state.lock(|s| {
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let ready = self.state.write_lock(|s| {
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let mut s = s.borrow_mut();
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let mut s = s.borrow_mut();
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if s.readers > 0 || s.writer {
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if s.readers > 0 || s.writer {
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s.waker.register(cx.waker());
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s.waker.register(cx.waker());
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@ -124,7 +124,7 @@ where
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///
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///
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/// If the lock is already locked for writing, this will return an error instead of waiting.
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/// If the lock is already locked for writing, this will return an error instead of waiting.
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pub fn try_read_lock(&self) -> Result<RwLockReadGuard<'_, R, T>, TryLockError> {
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pub fn try_read_lock(&self) -> Result<RwLockReadGuard<'_, R, T>, TryLockError> {
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self.state.lock(|s| {
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self.state.read_lock(|s| {
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let mut s = s.borrow_mut();
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let mut s = s.borrow_mut();
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if s.writer {
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if s.writer {
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Err(TryLockError)
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Err(TryLockError)
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@ -141,7 +141,7 @@ where
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///
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///
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/// If the lock is already locked for reading or writing, this will return an error instead of waiting.
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/// If the lock is already locked for reading or writing, this will return an error instead of waiting.
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pub fn try_write_lock(&self) -> Result<RwLockWriteGuard<'_, R, T>, TryLockError> {
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pub fn try_write_lock(&self) -> Result<RwLockWriteGuard<'_, R, T>, TryLockError> {
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self.state.lock(|s| {
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self.state.write_lock(|s| {
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let mut s = s.borrow_mut();
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let mut s = s.borrow_mut();
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if s.readers > 0 || s.writer {
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if s.readers > 0 || s.writer {
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Err(TryLockError)
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Err(TryLockError)
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@ -229,7 +229,7 @@ where
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T: ?Sized,
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T: ?Sized,
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{
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{
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fn drop(&mut self) {
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fn drop(&mut self) {
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self.rwlock.state.lock(|s| {
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self.rwlock.state.write_lock(|s| {
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let mut s = unwrap!(s.try_borrow_mut());
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let mut s = unwrap!(s.try_borrow_mut());
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s.readers -= 1;
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s.readers -= 1;
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if s.readers == 0 {
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if s.readers == 0 {
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@ -294,7 +294,7 @@ where
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T: ?Sized,
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T: ?Sized,
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{
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{
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fn drop(&mut self) {
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fn drop(&mut self) {
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self.rwlock.state.lock(|s| {
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self.rwlock.state.write_lock(|s| {
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let mut s = unwrap!(s.try_borrow_mut());
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let mut s = unwrap!(s.try_borrow_mut());
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s.writer = false;
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s.writer = false;
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s.waker.wake();
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s.waker.wake();
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@ -349,7 +349,7 @@ where
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#[cfg(test)]
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#[cfg(test)]
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mod tests {
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mod tests {
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use crate::blocking_mutex::raw_rwlock::NoopRawRwLock;
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use crate::blocking_rwlock::raw::NoopRawRwLock;
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use crate::rwlock::{RwLock, RwLockReadGuard, RwLockWriteGuard};
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use crate::rwlock::{RwLock, RwLockReadGuard, RwLockWriteGuard};
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#[futures_test::test]
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#[futures_test::test]
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