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rust: Import upstream alloc::vec::spec_extend
module
This is a subset of the Rust standard library `alloc` crate, version 1.62.0, licensed under "Apache-2.0 OR MIT", from: https://github.com/rust-lang/rust/tree/1.62.0/library/alloc/src The file is copied as-is, with no modifications whatsoever (not even adding the SPDX identifiers). For copyright details, please see: https://github.com/rust-lang/rust/blob/1.62.0/COPYRIGHT Signed-off-by: Asahi Lina <lina@asahilina.net> Link: https://lore.kernel.org/r/20230224-rust-vec-v1-2-733b5b5a57c5@asahilina.net [ Import version 1.62.0 instead, to match the one in mainline. ] Signed-off-by: Miguel Ojeda <ojeda@kernel.org>
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rust/alloc/vec/spec_extend.rs
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87
rust/alloc/vec/spec_extend.rs
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use crate::alloc::Allocator;
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use core::iter::TrustedLen;
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use core::ptr::{self};
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use core::slice::{self};
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use super::{IntoIter, SetLenOnDrop, Vec};
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// Specialization trait used for Vec::extend
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pub(super) trait SpecExtend<T, I> {
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fn spec_extend(&mut self, iter: I);
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}
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impl<T, I, A: Allocator> SpecExtend<T, I> for Vec<T, A>
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where
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I: Iterator<Item = T>,
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{
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default fn spec_extend(&mut self, iter: I) {
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self.extend_desugared(iter)
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}
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}
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impl<T, I, A: Allocator> SpecExtend<T, I> for Vec<T, A>
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where
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I: TrustedLen<Item = T>,
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{
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default fn spec_extend(&mut self, iterator: I) {
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// This is the case for a TrustedLen iterator.
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let (low, high) = iterator.size_hint();
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if let Some(additional) = high {
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debug_assert_eq!(
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low,
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additional,
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"TrustedLen iterator's size hint is not exact: {:?}",
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(low, high)
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);
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self.reserve(additional);
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unsafe {
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let mut ptr = self.as_mut_ptr().add(self.len());
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let mut local_len = SetLenOnDrop::new(&mut self.len);
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iterator.for_each(move |element| {
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ptr::write(ptr, element);
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ptr = ptr.offset(1);
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// Since the loop executes user code which can panic we have to bump the pointer
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// after each step.
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// NB can't overflow since we would have had to alloc the address space
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local_len.increment_len(1);
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});
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}
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} else {
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// Per TrustedLen contract a `None` upper bound means that the iterator length
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// truly exceeds usize::MAX, which would eventually lead to a capacity overflow anyway.
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// Since the other branch already panics eagerly (via `reserve()`) we do the same here.
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// This avoids additional codegen for a fallback code path which would eventually
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// panic anyway.
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panic!("capacity overflow");
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}
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}
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}
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impl<T, A: Allocator> SpecExtend<T, IntoIter<T>> for Vec<T, A> {
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fn spec_extend(&mut self, mut iterator: IntoIter<T>) {
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unsafe {
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self.append_elements(iterator.as_slice() as _);
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}
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iterator.forget_remaining_elements();
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}
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}
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impl<'a, T: 'a, I, A: Allocator + 'a> SpecExtend<&'a T, I> for Vec<T, A>
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where
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I: Iterator<Item = &'a T>,
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T: Clone,
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{
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default fn spec_extend(&mut self, iterator: I) {
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self.spec_extend(iterator.cloned())
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}
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}
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impl<'a, T: 'a, A: Allocator + 'a> SpecExtend<&'a T, slice::Iter<'a, T>> for Vec<T, A>
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where
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T: Copy,
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{
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fn spec_extend(&mut self, iterator: slice::Iter<'a, T>) {
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let slice = iterator.as_slice();
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unsafe { self.append_elements(slice) };
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}
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}
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