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rust: init: add functions to create array initializers
Add two functions `pin_init_array_from_fn` and `init_array_from_fn` that take a function that generates initializers for `T` from `usize`, the added functions then return an initializer for `[T; N]` where every element is initialized by an element returned from the generator function. Suggested-by: Asahi Lina <lina@asahilina.net> Reviewed-by: Björn Roy Baron <bjorn3_gh@protonmail.com> Reviewed-by: Alice Ryhl <aliceryhl@google.com> Reviewed-by: Martin Rodriguez Reboredo <yakoyoku@gmail.com> Signed-off-by: Benno Lossin <benno.lossin@proton.me> Link: https://lore.kernel.org/r/20230814084602.25699-9-benno.lossin@proton.me [ Cleaned a couple trivial nits. ] Signed-off-by: Miguel Ojeda <ojeda@kernel.org>
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@ -202,6 +202,7 @@
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use crate::{
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error::{self, Error},
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sync::UniqueArc,
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types::ScopeGuard,
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};
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use alloc::boxed::Box;
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use core::{
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@ -867,6 +868,93 @@ pub fn uninit<T, E>() -> impl Init<MaybeUninit<T>, E> {
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unsafe { init_from_closure(|_| Ok(())) }
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}
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/// Initializes an array by initializing each element via the provided initializer.
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///
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/// # Examples
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///
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/// ```rust
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/// use kernel::{error::Error, init::init_array_from_fn};
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/// let array: Box<[usize; 1_000]>= Box::init::<Error>(init_array_from_fn(|i| i)).unwrap();
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/// assert_eq!(array.len(), 1_000);
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/// ```
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pub fn init_array_from_fn<I, const N: usize, T, E>(
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mut make_init: impl FnMut(usize) -> I,
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) -> impl Init<[T; N], E>
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where
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I: Init<T, E>,
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{
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let init = move |slot: *mut [T; N]| {
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let slot = slot.cast::<T>();
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// Counts the number of initialized elements and when dropped drops that many elements from
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// `slot`.
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let mut init_count = ScopeGuard::new_with_data(0, |i| {
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// We now free every element that has been initialized before:
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// SAFETY: The loop initialized exactly the values from 0..i and since we
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// return `Err` below, the caller will consider the memory at `slot` as
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// uninitialized.
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unsafe { ptr::drop_in_place(ptr::slice_from_raw_parts_mut(slot, i)) };
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});
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for i in 0..N {
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let init = make_init(i);
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// SAFETY: Since 0 <= `i` < N, it is still in bounds of `[T; N]`.
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let ptr = unsafe { slot.add(i) };
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// SAFETY: The pointer is derived from `slot` and thus satisfies the `__init`
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// requirements.
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unsafe { init.__init(ptr) }?;
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*init_count += 1;
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}
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init_count.dismiss();
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Ok(())
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};
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// SAFETY: The initializer above initializes every element of the array. On failure it drops
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// any initialized elements and returns `Err`.
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unsafe { init_from_closure(init) }
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}
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/// Initializes an array by initializing each element via the provided initializer.
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///
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/// # Examples
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///
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/// ```rust
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/// use kernel::{sync::{Arc, Mutex}, init::pin_init_array_from_fn, new_mutex};
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/// let array: Arc<[Mutex<usize>; 1_000]>=
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/// Arc::pin_init(pin_init_array_from_fn(|i| new_mutex!(i))).unwrap();
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/// assert_eq!(array.len(), 1_000);
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/// ```
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pub fn pin_init_array_from_fn<I, const N: usize, T, E>(
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mut make_init: impl FnMut(usize) -> I,
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) -> impl PinInit<[T; N], E>
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where
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I: PinInit<T, E>,
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{
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let init = move |slot: *mut [T; N]| {
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let slot = slot.cast::<T>();
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// Counts the number of initialized elements and when dropped drops that many elements from
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// `slot`.
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let mut init_count = ScopeGuard::new_with_data(0, |i| {
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// We now free every element that has been initialized before:
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// SAFETY: The loop initialized exactly the values from 0..i and since we
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// return `Err` below, the caller will consider the memory at `slot` as
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// uninitialized.
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unsafe { ptr::drop_in_place(ptr::slice_from_raw_parts_mut(slot, i)) };
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});
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for i in 0..N {
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let init = make_init(i);
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// SAFETY: Since 0 <= `i` < N, it is still in bounds of `[T; N]`.
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let ptr = unsafe { slot.add(i) };
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// SAFETY: The pointer is derived from `slot` and thus satisfies the `__init`
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// requirements.
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unsafe { init.__pinned_init(ptr) }?;
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*init_count += 1;
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}
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init_count.dismiss();
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Ok(())
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};
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// SAFETY: The initializer above initializes every element of the array. On failure it drops
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// any initialized elements and returns `Err`.
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unsafe { pin_init_from_closure(init) }
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}
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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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