#![allow(unused_variables)]
#![allow(missing_docs)]
use super::*;
pub struct SliceVec<'s, T> {
data: &'s mut [T],
len: usize,
}
impl<'s, T> Default for SliceVec<'s, T> {
fn default() -> Self {
Self { data: &mut [], len: 0 }
}
}
impl<'s, T> Deref for SliceVec<'s, T> {
type Target = [T];
#[inline(always)]
#[must_use]
fn deref(&self) -> &Self::Target {
&self.data[..self.len]
}
}
impl<'s, T> DerefMut for SliceVec<'s, T> {
#[inline(always)]
#[must_use]
fn deref_mut(&mut self) -> &mut Self::Target {
&mut self.data[..self.len]
}
}
impl<'s, T, I> Index<I> for SliceVec<'s, T>
where
I: SliceIndex<[T]>,
{
type Output = <I as SliceIndex<[T]>>::Output;
#[inline(always)]
#[must_use]
fn index(&self, index: I) -> &Self::Output {
&self.deref()[index]
}
}
impl<'s, T, I> IndexMut<I> for SliceVec<'s, T>
where
I: SliceIndex<[T]>,
{
#[inline(always)]
#[must_use]
fn index_mut(&mut self, index: I) -> &mut Self::Output {
&mut self.deref_mut()[index]
}
}
impl<'s, T> SliceVec<'s, T> {
#[inline]
pub fn append(&mut self, other: &mut Self)
where
T: Default,
{
for item in other.drain(..) {
self.push(item)
}
}
#[inline(always)]
#[must_use]
pub fn as_mut_ptr(&mut self) -> *mut T {
self.data.as_mut_ptr()
}
#[inline(always)]
#[must_use]
pub fn as_mut_slice(&mut self) -> &mut [T] {
self.deref_mut()
}
#[inline(always)]
#[must_use]
pub fn as_ptr(&self) -> *const T {
self.data.as_ptr()
}
#[inline(always)]
#[must_use]
pub fn as_slice(&self) -> &[T] {
self.deref()
}
#[inline(always)]
#[must_use]
pub fn capacity(&self) -> usize {
self.data.len()
}
#[inline(always)]
pub fn clear(&mut self)
where
T: Default,
{
self.truncate(0)
}
#[inline]
pub fn drain<'p, R: RangeBounds<usize>>(
&'p mut self,
range: R,
) -> SliceVecDrain<'p, 's, T>
where
T: Default,
{
use core::ops::Bound;
let start = match range.start_bound() {
Bound::Included(x) => *x,
Bound::Excluded(x) => x + 1,
Bound::Unbounded => 0,
};
let end = match range.end_bound() {
Bound::Included(x) => x + 1,
Bound::Excluded(x) => *x,
Bound::Unbounded => self.len,
};
assert!(
start <= end,
"SliceVec::drain> Illegal range, {} to {}",
start,
end
);
assert!(
end <= self.len,
"SliceVec::drain> Range ends at {} but length is only {}!",
end,
self.len
);
SliceVecDrain {
parent: self,
target_start: start,
target_index: start,
target_end: end,
}
}
#[inline]
pub fn extend_from_slice(&mut self, sli: &[T])
where
T: Clone,
{
if sli.is_empty() {
return;
}
let new_len = self.len + sli.len();
if new_len > self.capacity() {
panic!(
"SliceVec::extend_from_slice> total length {} exceeds capacity {}",
new_len,
self.capacity()
)
}
let target = &mut self.data[self.len..new_len];
target.clone_from_slice(sli);
self.set_len(new_len);
}
#[inline]
pub fn fill<I: IntoIterator<Item = T>>(&mut self, iter: I) -> I::IntoIter {
let mut iter = iter.into_iter();
for element in iter.by_ref().take(self.capacity() - self.len()) {
self.push(element);
}
iter
}
#[inline]
#[must_use]
#[allow(clippy::match_wild_err_arm)]
pub fn from_slice_len(data: &'s mut [T], len: usize) -> Self {
assert!(len <= data.len());
Self { data, len }
}
#[inline]
pub fn insert(&mut self, index: usize, item: T) {
if index > self.len {
panic!("SliceVec::insert> index {} is out of bounds {}", index, self.len);
}
self.push(item);
self.as_mut_slice()[index..].rotate_right(1);
}
#[inline(always)]
#[must_use]
pub fn is_empty(&self) -> bool {
self.len == 0
}
#[inline(always)]
#[must_use]
pub fn len(&self) -> usize {
self.len
}
#[inline]
pub fn pop(&mut self) -> Option<T>
where
T: Default,
{
if self.len > 0 {
self.len -= 1;
let out = take(&mut self.data[self.len]);
Some(out)
} else {
None
}
}
#[inline(always)]
pub fn push(&mut self, val: T) {
if self.len < self.capacity() {
self.data[self.len] = val;
self.len += 1;
} else {
panic!("SliceVec::push> capacity overflow")
}
}
#[inline]
pub fn remove(&mut self, index: usize) -> T
where
T: Default,
{
let targets: &mut [T] = &mut self.deref_mut()[index..];
let item = take(&mut targets[0]);
targets.rotate_left(1);
self.len -= 1;
item
}
#[inline]
pub fn resize(&mut self, new_len: usize, new_val: T)
where
T: Clone,
{
self.resize_with(new_len, || new_val.clone())
}
#[inline]
pub fn resize_with<F: FnMut() -> T>(&mut self, new_len: usize, mut f: F) {
match new_len.checked_sub(self.len) {
None => {
if needs_drop::<T>() {
while self.len() > new_len {
self.len -= 1;
self.data[self.len] = f();
}
} else {
self.len = new_len;
}
}
Some(new_elements) => {
for _ in 0..new_elements {
self.push(f());
}
}
}
}
#[inline]
pub fn retain<F: FnMut(&T) -> bool>(&mut self, mut acceptable: F)
where
T: Default,
{
struct JoinOnDrop<'vec, Item> {
items: &'vec mut [Item],
done_end: usize,
tail_start: usize,
}
impl<Item> Drop for JoinOnDrop<'_, Item> {
fn drop(&mut self) {
self.items[self.done_end..].rotate_left(self.tail_start);
}
}
let mut rest = JoinOnDrop { items: self.data, done_end: 0, tail_start: 0 };
for idx in 0..self.len {
if !acceptable(&rest.items[idx]) {
let _ = take(&mut rest.items[idx]);
self.len -= 1;
rest.tail_start += 1;
} else {
rest.items.swap(rest.done_end, idx);
rest.done_end += 1;
}
}
}
#[inline(always)]
pub fn set_len(&mut self, new_len: usize) {
if new_len > self.capacity() {
panic!(
"SliceVec::set_len> new length {} exceeds capacity {}",
new_len,
self.capacity()
)
} else {
self.len = new_len;
}
}
#[inline]
pub fn split_off<'a>(&'a mut self, at: usize) -> SliceVec<'s, T> {
let mut new = Self::default();
let backing: &'s mut [T] = replace(&mut self.data, &mut []);
let (me, other) = backing.split_at_mut(at);
new.len = self.len - at;
new.data = other;
self.len = me.len();
self.data = me;
new
}
#[inline]
pub fn swap_remove(&mut self, index: usize) -> T
where
T: Default,
{
assert!(
index < self.len,
"SliceVec::swap_remove> index {} is out of bounds {}",
index,
self.len
);
if index == self.len - 1 {
self.pop().unwrap()
} else {
let i = self.pop().unwrap();
replace(&mut self[index], i)
}
}
#[inline]
pub fn truncate(&mut self, new_len: usize)
where
T: Default,
{
if needs_drop::<T>() {
while self.len > new_len {
self.pop();
}
} else {
self.len = self.len.min(new_len);
}
}
#[inline]
pub fn try_from_slice_len(data: &'s mut [T], len: usize) -> Option<Self> {
if len <= data.len() {
Some(Self { data, len })
} else {
None
}
}
}
#[cfg(feature = "grab_spare_slice")]
impl<'s, T> SliceVec<'s, T> {
#[inline(always)]
pub fn grab_spare_slice(&self) -> &[T] {
&self.data[self.len..]
}
#[inline(always)]
pub fn grab_spare_slice_mut(&mut self) -> &mut [T] {
&mut self.data[self.len..]
}
}
impl<'s, T> From<&'s mut [T]> for SliceVec<'s, T> {
fn from(data: &'s mut [T]) -> Self {
let len = data.len();
Self { data, len }
}
}
impl<'s, T, A> From<&'s mut A> for SliceVec<'s, T>
where
A: AsMut<[T]>,
{
fn from(a: &'s mut A) -> Self {
let data = a.as_mut();
let len = data.len();
Self { data, len }
}
}
pub struct SliceVecDrain<'p, 's, T: Default> {
parent: &'p mut SliceVec<'s, T>,
target_start: usize,
target_index: usize,
target_end: usize,
}
impl<'p, 's, T: Default> Iterator for SliceVecDrain<'p, 's, T> {
type Item = T;
#[inline]
fn next(&mut self) -> Option<Self::Item> {
if self.target_index != self.target_end {
let out = take(&mut self.parent[self.target_index]);
self.target_index += 1;
Some(out)
} else {
None
}
}
}
impl<'p, 's, T: Default> FusedIterator for SliceVecDrain<'p, 's, T> {}
impl<'p, 's, T: Default> Drop for SliceVecDrain<'p, 's, T> {
#[inline]
fn drop(&mut self) {
self.for_each(drop);
let count = self.target_end - self.target_start;
let targets: &mut [T] = &mut self.parent.deref_mut()[self.target_start..];
targets.rotate_left(count);
self.parent.len -= count;
}
}
impl<'s, T> AsMut<[T]> for SliceVec<'s, T> {
#[inline(always)]
#[must_use]
fn as_mut(&mut self) -> &mut [T] {
&mut *self
}
}
impl<'s, T> AsRef<[T]> for SliceVec<'s, T> {
#[inline(always)]
#[must_use]
fn as_ref(&self) -> &[T] {
&*self
}
}
impl<'s, T> Borrow<[T]> for SliceVec<'s, T> {
#[inline(always)]
#[must_use]
fn borrow(&self) -> &[T] {
&*self
}
}
impl<'s, T> BorrowMut<[T]> for SliceVec<'s, T> {
#[inline(always)]
#[must_use]
fn borrow_mut(&mut self) -> &mut [T] {
&mut *self
}
}
impl<'s, T> Extend<T> for SliceVec<'s, T> {
#[inline]
fn extend<I: IntoIterator<Item = T>>(&mut self, iter: I) {
for t in iter {
self.push(t)
}
}
}
impl<'s, T> IntoIterator for SliceVec<'s, T> {
type Item = &'s mut T;
type IntoIter = core::slice::IterMut<'s, T>;
#[inline(always)]
#[must_use]
fn into_iter(self) -> Self::IntoIter {
self.data.iter_mut()
}
}
impl<'s, T> PartialEq for SliceVec<'s, T>
where
T: PartialEq,
{
#[inline]
#[must_use]
fn eq(&self, other: &Self) -> bool {
self.as_slice().eq(other.as_slice())
}
}
impl<'s, T> Eq for SliceVec<'s, T> where T: Eq {}
impl<'s, T> PartialOrd for SliceVec<'s, T>
where
T: PartialOrd,
{
#[inline]
#[must_use]
fn partial_cmp(&self, other: &Self) -> Option<core::cmp::Ordering> {
self.as_slice().partial_cmp(other.as_slice())
}
}
impl<'s, T> Ord for SliceVec<'s, T>
where
T: Ord,
{
#[inline]
#[must_use]
fn cmp(&self, other: &Self) -> core::cmp::Ordering {
self.as_slice().cmp(other.as_slice())
}
}
impl<'s, T> PartialEq<&[T]> for SliceVec<'s, T>
where
T: PartialEq,
{
#[inline]
#[must_use]
fn eq(&self, other: &&[T]) -> bool {
self.as_slice().eq(*other)
}
}
impl<'s, T> Hash for SliceVec<'s, T>
where
T: Hash,
{
#[inline]
fn hash<H: Hasher>(&self, state: &mut H) {
self.as_slice().hash(state)
}
}
#[cfg(feature = "experimental_write_impl")]
impl<'s> core::fmt::Write for SliceVec<'s, u8> {
fn write_str(&mut self, s: &str) -> core::fmt::Result {
let my_len = self.len();
let str_len = s.as_bytes().len();
if my_len + str_len <= self.capacity() {
let remainder = &mut self.data[my_len..];
let target = &mut remainder[..str_len];
target.copy_from_slice(s.as_bytes());
Ok(())
} else {
Err(core::fmt::Error)
}
}
}
impl<'s, T> Binary for SliceVec<'s, T>
where
T: Binary,
{
#[allow(clippy::missing_inline_in_public_items)]
fn fmt(&self, f: &mut Formatter) -> core::fmt::Result {
write!(f, "[")?;
for (i, elem) in self.iter().enumerate() {
if i > 0 {
write!(f, ", ")?;
}
Binary::fmt(elem, f)?;
}
write!(f, "]")
}
}
impl<'s, T> Debug for SliceVec<'s, T>
where
T: Debug,
{
#[allow(clippy::missing_inline_in_public_items)]
fn fmt(&self, f: &mut Formatter) -> core::fmt::Result {
write!(f, "[")?;
for (i, elem) in self.iter().enumerate() {
if i > 0 {
write!(f, ", ")?;
}
Debug::fmt(elem, f)?;
}
write!(f, "]")
}
}
impl<'s, T> Display for SliceVec<'s, T>
where
T: Display,
{
#[allow(clippy::missing_inline_in_public_items)]
fn fmt(&self, f: &mut Formatter) -> core::fmt::Result {
write!(f, "[")?;
for (i, elem) in self.iter().enumerate() {
if i > 0 {
write!(f, ", ")?;
}
Display::fmt(elem, f)?;
}
write!(f, "]")
}
}
impl<'s, T> LowerExp for SliceVec<'s, T>
where
T: LowerExp,
{
#[allow(clippy::missing_inline_in_public_items)]
fn fmt(&self, f: &mut Formatter) -> core::fmt::Result {
write!(f, "[")?;
for (i, elem) in self.iter().enumerate() {
if i > 0 {
write!(f, ", ")?;
}
LowerExp::fmt(elem, f)?;
}
write!(f, "]")
}
}
impl<'s, T> LowerHex for SliceVec<'s, T>
where
T: LowerHex,
{
#[allow(clippy::missing_inline_in_public_items)]
fn fmt(&self, f: &mut Formatter) -> core::fmt::Result {
write!(f, "[")?;
for (i, elem) in self.iter().enumerate() {
if i > 0 {
write!(f, ", ")?;
}
LowerHex::fmt(elem, f)?;
}
write!(f, "]")
}
}
impl<'s, T> Octal for SliceVec<'s, T>
where
T: Octal,
{
#[allow(clippy::missing_inline_in_public_items)]
fn fmt(&self, f: &mut Formatter) -> core::fmt::Result {
write!(f, "[")?;
for (i, elem) in self.iter().enumerate() {
if i > 0 {
write!(f, ", ")?;
}
Octal::fmt(elem, f)?;
}
write!(f, "]")
}
}
impl<'s, T> Pointer for SliceVec<'s, T>
where
T: Pointer,
{
#[allow(clippy::missing_inline_in_public_items)]
fn fmt(&self, f: &mut Formatter) -> core::fmt::Result {
write!(f, "[")?;
for (i, elem) in self.iter().enumerate() {
if i > 0 {
write!(f, ", ")?;
}
Pointer::fmt(elem, f)?;
}
write!(f, "]")
}
}
impl<'s, T> UpperExp for SliceVec<'s, T>
where
T: UpperExp,
{
#[allow(clippy::missing_inline_in_public_items)]
fn fmt(&self, f: &mut Formatter) -> core::fmt::Result {
write!(f, "[")?;
for (i, elem) in self.iter().enumerate() {
if i > 0 {
write!(f, ", ")?;
}
UpperExp::fmt(elem, f)?;
}
write!(f, "]")
}
}
impl<'s, T> UpperHex for SliceVec<'s, T>
where
T: UpperHex,
{
#[allow(clippy::missing_inline_in_public_items)]
fn fmt(&self, f: &mut Formatter) -> core::fmt::Result {
write!(f, "[")?;
for (i, elem) in self.iter().enumerate() {
if i > 0 {
write!(f, ", ")?;
}
UpperHex::fmt(elem, f)?;
}
write!(f, "]")
}
}