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synced 2024-12-28 16:53:49 +00:00
rust: enable clippy::undocumented_unsafe_blocks
lint
Checking that we are not missing any `// SAFETY` comments in our `unsafe` blocks is something we have wanted to do for a long time, as well as cleaning up the remaining cases that were not documented [1]. Back when Rust for Linux started, this was something that could have been done via a script, like Rust's `tidy`. Soon after, in Rust 1.58.0, Clippy implemented the `undocumented_unsafe_blocks` lint [2]. Even though the lint has a few false positives, e.g. in some cases where attributes appear between the comment and the `unsafe` block [3], there are workarounds and the lint seems quite usable already. Thus enable the lint now. We still have a few cases to clean up, so just allow those for the moment by writing a `TODO` comment -- some of those may be good candidates for new contributors. Link: https://github.com/Rust-for-Linux/linux/issues/351 [1] Link: https://rust-lang.github.io/rust-clippy/master/#/undocumented_unsafe_blocks [2] Link: https://github.com/rust-lang/rust-clippy/issues/13189 [3] Reviewed-by: Alice Ryhl <aliceryhl@google.com> Reviewed-by: Trevor Gross <tmgross@umich.edu> Tested-by: Gary Guo <gary@garyguo.net> Reviewed-by: Gary Guo <gary@garyguo.net> Link: https://lore.kernel.org/r/20240904204347.168520-5-ojeda@kernel.org Signed-off-by: Miguel Ojeda <ojeda@kernel.org>
This commit is contained in:
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567cdff53e
commit
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1
Makefile
1
Makefile
@ -457,6 +457,7 @@ export rust_common_flags := --edition=2021 \
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-Wclippy::needless_bitwise_bool \
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-Wclippy::needless_continue \
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-Wclippy::no_mangle_with_rust_abi \
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-Wclippy::undocumented_unsafe_blocks \
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-Wrustdoc::missing_crate_level_docs
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KBUILD_HOSTCFLAGS := $(KBUILD_USERHOSTCFLAGS) $(HOST_LFS_CFLAGS) \
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@ -17,5 +17,6 @@ pub extern "C" fn kasan_test_rust_uaf() -> u8 {
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}
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let ptr: *mut u8 = addr_of_mut!(v[2048]);
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drop(v);
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// SAFETY: Incorrect, on purpose.
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unsafe { *ptr }
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}
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@ -25,6 +25,7 @@
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)]
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#[allow(dead_code)]
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#[allow(clippy::undocumented_unsafe_blocks)]
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mod bindings_raw {
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// Use glob import here to expose all helpers.
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// Symbols defined within the module will take precedence to the glob import.
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@ -31,6 +31,7 @@ pub(crate) unsafe fn krealloc_aligned(ptr: *mut u8, new_layout: Layout, flags: F
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unsafe { bindings::krealloc(ptr as *const core::ffi::c_void, size, flags.0) as *mut u8 }
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}
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// SAFETY: TODO.
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unsafe impl GlobalAlloc for KernelAllocator {
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unsafe fn alloc(&self, layout: Layout) -> *mut u8 {
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// SAFETY: `ptr::null_mut()` is null and `layout` has a non-zero size by the function safety
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@ -39,6 +40,7 @@ unsafe fn alloc(&self, layout: Layout) -> *mut u8 {
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}
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unsafe fn dealloc(&self, ptr: *mut u8, _layout: Layout) {
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// SAFETY: TODO.
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unsafe {
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bindings::kfree(ptr as *const core::ffi::c_void);
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}
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@ -171,9 +171,11 @@ fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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match self.name() {
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// Print out number if no name can be found.
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None => f.debug_tuple("Error").field(&-self.0).finish(),
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// SAFETY: These strings are ASCII-only.
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Some(name) => f
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.debug_tuple(unsafe { core::str::from_utf8_unchecked(name) })
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.debug_tuple(
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// SAFETY: These strings are ASCII-only.
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unsafe { core::str::from_utf8_unchecked(name) },
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)
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.finish(),
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}
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}
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@ -277,6 +279,8 @@ pub(crate) fn from_err_ptr<T>(ptr: *mut T) -> Result<*mut T> {
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if unsafe { bindings::IS_ERR(const_ptr) } {
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// SAFETY: The FFI function does not deref the pointer.
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let err = unsafe { bindings::PTR_ERR(const_ptr) };
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#[allow(clippy::unnecessary_cast)]
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// CAST: If `IS_ERR()` returns `true`,
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// then `PTR_ERR()` is guaranteed to return a
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// negative value greater-or-equal to `-bindings::MAX_ERRNO`,
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@ -286,7 +290,6 @@ pub(crate) fn from_err_ptr<T>(ptr: *mut T) -> Result<*mut T> {
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//
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// SAFETY: `IS_ERR()` ensures `err` is a
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// negative value greater-or-equal to `-bindings::MAX_ERRNO`.
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#[allow(clippy::unnecessary_cast)]
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return Err(unsafe { Error::from_errno_unchecked(err as core::ffi::c_int) });
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}
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Ok(ptr)
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@ -541,6 +541,7 @@ macro_rules! stack_try_pin_init {
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/// }
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/// pin_init!(&this in Buf {
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/// buf: [0; 64],
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/// // SAFETY: TODO.
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/// ptr: unsafe { addr_of_mut!((*this.as_ptr()).buf).cast() },
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/// pin: PhantomPinned,
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/// });
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@ -875,6 +876,7 @@ pub unsafe trait PinInit<T: ?Sized, E = Infallible>: Sized {
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/// }
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///
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/// let foo = pin_init!(Foo {
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/// // SAFETY: TODO.
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/// raw <- unsafe {
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/// Opaque::ffi_init(|s| {
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/// init_foo(s);
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@ -1162,6 +1164,7 @@ pub fn pin_init_array_from_fn<I, const N: usize, T, E>(
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// SAFETY: Every type can be initialized by-value.
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unsafe impl<T, E> Init<T, E> for T {
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unsafe fn __init(self, slot: *mut T) -> Result<(), E> {
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// SAFETY: TODO.
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unsafe { slot.write(self) };
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Ok(())
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}
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@ -1170,6 +1173,7 @@ unsafe fn __init(self, slot: *mut T) -> Result<(), E> {
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// SAFETY: Every type can be initialized by-value. `__pinned_init` calls `__init`.
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unsafe impl<T, E> PinInit<T, E> for T {
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unsafe fn __pinned_init(self, slot: *mut T) -> Result<(), E> {
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// SAFETY: TODO.
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unsafe { self.__init(slot) }
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}
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}
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@ -1411,6 +1415,7 @@ pub fn zeroed<T: Zeroable>() -> impl Init<T> {
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macro_rules! impl_zeroable {
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($($({$($generics:tt)*})? $t:ty, )*) => {
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// SAFETY: Safety comments written in the macro invocation.
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$(unsafe impl$($($generics)*)? Zeroable for $t {})*
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};
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}
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@ -112,10 +112,12 @@ fn clone(&self) -> Self {
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impl<T: ?Sized> Copy for AllData<T> {}
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// SAFETY: TODO.
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unsafe impl<T: ?Sized> InitData for AllData<T> {
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type Datee = T;
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}
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// SAFETY: TODO.
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unsafe impl<T: ?Sized> HasInitData for T {
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type InitData = AllData<T>;
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@ -513,6 +513,7 @@ fn drop($($sig:tt)*) {
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}
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),
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) => {
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// SAFETY: TODO.
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unsafe $($impl_sig)* {
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// Inherit all attributes and the type/ident tokens for the signature.
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$(#[$($attr)*])*
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@ -872,6 +873,7 @@ unsafe fn __pin_data() -> Self::PinData {
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}
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}
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// SAFETY: TODO.
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unsafe impl<$($impl_generics)*>
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$crate::init::__internal::PinData for __ThePinData<$($ty_generics)*>
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where $($whr)*
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@ -997,6 +999,7 @@ impl<$($impl_generics)*> $pin_data<$($ty_generics)*>
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slot: *mut $p_type,
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init: impl $crate::init::PinInit<$p_type, E>,
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) -> ::core::result::Result<(), E> {
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// SAFETY: TODO.
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unsafe { $crate::init::PinInit::__pinned_init(init, slot) }
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}
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)*
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@ -1007,6 +1010,7 @@ impl<$($impl_generics)*> $pin_data<$($ty_generics)*>
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slot: *mut $type,
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init: impl $crate::init::Init<$type, E>,
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) -> ::core::result::Result<(), E> {
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// SAFETY: TODO.
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unsafe { $crate::init::Init::__init(init, slot) }
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}
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)*
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@ -1121,6 +1125,8 @@ macro_rules! __init_internal {
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// no possibility of returning without `unsafe`.
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struct __InitOk;
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// Get the data about fields from the supplied type.
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//
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// SAFETY: TODO.
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let data = unsafe {
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use $crate::init::__internal::$has_data;
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// Here we abuse `paste!` to retokenize `$t`. Declarative macros have some internal
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@ -1176,6 +1182,7 @@ fn assert_zeroable<T: $crate::init::Zeroable>(_: *mut T) {}
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let init = move |slot| -> ::core::result::Result<(), $err> {
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init(slot).map(|__InitOk| ())
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};
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// SAFETY: TODO.
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let init = unsafe { $crate::init::$construct_closure::<_, $err>(init) };
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init
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}};
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@ -1324,6 +1331,8 @@ fn assert_zeroable<T: $crate::init::Zeroable>(_: *mut T) {}
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// Endpoint, nothing more to munch, create the initializer.
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// Since we are in the closure that is never called, this will never get executed.
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// We abuse `slot` to get the correct type inference here:
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//
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// SAFETY: TODO.
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unsafe {
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// Here we abuse `paste!` to retokenize `$t`. Declarative macros have some internal
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// information that is associated to already parsed fragments, so a path fragment
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@ -354,6 +354,7 @@ pub fn pop_front(&mut self) -> Option<ListArc<T, ID>> {
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///
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/// `item` must not be in a different linked list (with the same id).
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pub unsafe fn remove(&mut self, item: &T) -> Option<ListArc<T, ID>> {
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// SAFETY: TODO.
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let mut item = unsafe { ListLinks::fields(T::view_links(item)) };
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// SAFETY: The user provided a reference, and reference are never dangling.
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//
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@ -23,6 +23,7 @@
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use fmt::Write;
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// SAFETY: The C contract guarantees that `buf` is valid if it's less than `end`.
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let mut w = unsafe { RawFormatter::from_ptrs(buf.cast(), end.cast()) };
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// SAFETY: TODO.
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let _ = w.write_fmt(unsafe { *(ptr as *const fmt::Arguments<'_>) });
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w.pos().cast()
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}
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@ -102,6 +103,7 @@ pub unsafe fn call_printk(
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) {
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// `_printk` does not seem to fail in any path.
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#[cfg(CONFIG_PRINTK)]
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// SAFETY: TODO.
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unsafe {
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bindings::_printk(
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format_string.as_ptr() as _,
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@ -162,10 +162,10 @@ pub const fn len(&self) -> usize {
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/// Returns the length of this string with `NUL`.
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#[inline]
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pub const fn len_with_nul(&self) -> usize {
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// SAFETY: This is one of the invariant of `CStr`.
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// We add a `unreachable_unchecked` here to hint the optimizer that
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// the value returned from this function is non-zero.
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if self.0.is_empty() {
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// SAFETY: This is one of the invariant of `CStr`.
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// We add a `unreachable_unchecked` here to hint the optimizer that
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// the value returned from this function is non-zero.
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unsafe { core::hint::unreachable_unchecked() };
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}
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self.0.len()
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@ -301,6 +301,7 @@ pub fn to_str(&self) -> Result<&str, core::str::Utf8Error> {
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/// ```
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#[inline]
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pub unsafe fn as_str_unchecked(&self) -> &str {
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// SAFETY: TODO.
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unsafe { core::str::from_utf8_unchecked(self.as_bytes()) }
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}
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@ -92,8 +92,8 @@ pub struct CondVar {
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_pin: PhantomPinned,
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}
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// SAFETY: `CondVar` only uses a `struct wait_queue_head`, which is safe to use on any thread.
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#[allow(clippy::non_send_fields_in_send_ty)]
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// SAFETY: `CondVar` only uses a `struct wait_queue_head`, which is safe to use on any thread.
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unsafe impl Send for CondVar {}
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// SAFETY: `CondVar` only uses a `struct wait_queue_head`, which is safe to use on multiple threads
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@ -150,9 +150,9 @@ pub(crate) fn do_unlocked<U>(&mut self, cb: impl FnOnce() -> U) -> U {
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// SAFETY: The caller owns the lock, so it is safe to unlock it.
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unsafe { B::unlock(self.lock.state.get(), &self.state) };
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// SAFETY: The lock was just unlocked above and is being relocked now.
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let _relock =
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ScopeGuard::new(|| unsafe { B::relock(self.lock.state.get(), &mut self.state) });
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let _relock = ScopeGuard::new(||
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// SAFETY: The lock was just unlocked above and is being relocked now.
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unsafe { B::relock(self.lock.state.get(), &mut self.state) });
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cb()
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}
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@ -410,6 +410,7 @@ pub unsafe fn from_raw(ptr: NonNull<T>) -> Self {
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///
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/// struct Empty {}
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///
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/// # // SAFETY: TODO.
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/// unsafe impl AlwaysRefCounted for Empty {
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/// fn inc_ref(&self) {}
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/// unsafe fn dec_ref(_obj: NonNull<Self>) {}
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@ -417,6 +418,7 @@ pub unsafe fn from_raw(ptr: NonNull<T>) -> Self {
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///
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/// let mut data = Empty {};
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/// let ptr = NonNull::<Empty>::new(&mut data as *mut _).unwrap();
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/// # // SAFETY: TODO.
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/// let data_ref: ARef<Empty> = unsafe { ARef::from_raw(ptr) };
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/// let raw_ptr: NonNull<Empty> = ARef::into_raw(data_ref);
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///
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@ -492,6 +494,7 @@ pub unsafe trait FromBytes {}
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macro_rules! impl_frombytes {
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($($({$($generics:tt)*})? $t:ty, )*) => {
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// SAFETY: Safety comments written in the macro invocation.
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$(unsafe impl$($($generics)*)? FromBytes for $t {})*
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};
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}
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@ -526,6 +529,7 @@ pub unsafe trait AsBytes {}
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macro_rules! impl_asbytes {
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($($({$($generics:tt)*})? $t:ty, )*) => {
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// SAFETY: Safety comments written in the macro invocation.
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$(unsafe impl$($($generics)*)? AsBytes for $t {})*
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};
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}
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@ -519,6 +519,7 @@ unsafe fn raw_get_work(ptr: *mut Self) -> *mut $crate::workqueue::Work<$work_typ
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impl{T} HasWork<Self> for ClosureWork<T> { self.work }
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}
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// SAFETY: TODO.
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unsafe impl<T, const ID: u64> WorkItemPointer<ID> for Arc<T>
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where
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T: WorkItem<ID, Pointer = Self>,
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@ -536,6 +537,7 @@ unsafe impl<T, const ID: u64> WorkItemPointer<ID> for Arc<T>
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}
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}
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// SAFETY: TODO.
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unsafe impl<T, const ID: u64> RawWorkItem<ID> for Arc<T>
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where
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T: WorkItem<ID, Pointer = Self>,
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@ -564,6 +566,7 @@ unsafe fn __enqueue<F>(self, queue_work_on: F) -> Self::EnqueueOutput
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}
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}
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// SAFETY: TODO.
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unsafe impl<T, const ID: u64> WorkItemPointer<ID> for Pin<Box<T>>
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where
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T: WorkItem<ID, Pointer = Self>,
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@ -583,6 +586,7 @@ unsafe impl<T, const ID: u64> WorkItemPointer<ID> for Pin<Box<T>>
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}
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}
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// SAFETY: TODO.
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unsafe impl<T, const ID: u64> RawWorkItem<ID> for Pin<Box<T>>
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where
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T: WorkItem<ID, Pointer = Self>,
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@ -14,6 +14,7 @@
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#![cfg_attr(test, allow(unsafe_op_in_unsafe_fn))]
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#![allow(
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clippy::all,
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clippy::undocumented_unsafe_blocks,
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dead_code,
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missing_docs,
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non_camel_case_types,
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Block a user