Use 16-bit lengths on 16-bit targets
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+2
-2
@@ -27,8 +27,8 @@ use serde::{Serialize, Deserialize, Serializer, Deserializer};
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/// The `ArrayString` is a string backed by a fixed size array. It keeps track
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/// of its length, and is parameterized by `CAP` for the maximum capacity.
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///
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/// `CAP` is of type `usize` but is range limited to `u32::MAX`; attempting to create larger
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/// arrayvecs with larger capacity will panic.
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/// `CAP` is of type `usize` but is range limited to `u32::MAX` (or `u16` on 16-bit targets);
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/// attempting to create larger arrayvecs with larger capacity will panic.
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///
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/// The string is a contiguous value that you can store directly on the stack
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/// if needed.
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+2
-2
@@ -31,8 +31,8 @@ use crate::utils::MakeMaybeUninit;
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/// the number of initialized elements. The `ArrayVec<T, CAP>` is parameterized
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/// by `T` for the element type and `CAP` for the maximum capacity.
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///
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/// `CAP` is of type `usize` but is range limited to `u32::MAX`; attempting to create larger
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/// arrayvecs with larger capacity will panic.
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/// `CAP` is of type `usize` but is range limited to `u32::MAX` (or `u16::MAX` on 16-bit targets);
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/// attempting to create larger arrayvecs with larger capacity will panic.
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///
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/// The vector is a contiguous value (storing the elements inline) that you can store directly on
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/// the stack if needed.
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+8
-1
@@ -28,13 +28,20 @@ extern crate serde;
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#[cfg(not(feature="std"))]
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extern crate core as std;
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#[cfg(not(target_pointer_width = "16"))]
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pub(crate) type LenUint = u32;
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#[cfg(target_pointer_width = "16")]
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pub(crate) type LenUint = u16;
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macro_rules! assert_capacity_limit {
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($cap:expr) => {
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if std::mem::size_of::<usize>() > std::mem::size_of::<LenUint>() {
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if $cap > LenUint::MAX as usize {
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panic!("ArrayVec: largest supported capacity is u32::MAX")
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#[cfg(not(target_pointer_width = "16"))]
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panic!("ArrayVec: largest supported capacity is u32::MAX");
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#[cfg(target_pointer_width = "16")]
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panic!("ArrayVec: largest supported capacity is u16::MAX");
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}
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}
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}
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+3
-6
@@ -680,6 +680,7 @@ fn test_pop_at() {
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}
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#[test]
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#[cfg(not(target_pointer_width = "16"))]
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fn test_sizes() {
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let v = ArrayVec::from([0u8; 1 << 16]);
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assert_eq!(vec![0u8; v.len()], &v[..]);
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@@ -729,21 +730,17 @@ fn allow_max_capacity_arrayvec_type() {
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}
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#[should_panic(expected="largest supported capacity")]
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#[cfg(not(target_pointer_width = "16"))]
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#[test]
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fn deny_max_capacity_arrayvec_value() {
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if mem::size_of::<usize>() <= mem::size_of::<u32>() {
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panic!("This test does not work on this platform. 'largest supported capacity'");
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}
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// this type is allowed to be used (but can't be constructed)
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let _v: ArrayVec<(), {usize::MAX}> = ArrayVec::new();
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}
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#[should_panic(expected="index out of bounds")]
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#[cfg(not(target_pointer_width = "16"))]
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#[test]
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fn deny_max_capacity_arrayvec_value_const() {
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if mem::size_of::<usize>() <= mem::size_of::<u32>() {
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panic!("This test does not work on this platform. 'index out of bounds'");
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}
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// this type is allowed to be used (but can't be constructed)
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let _v: ArrayVec<(), {usize::MAX}> = ArrayVec::new_const();
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}
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