use core::alloc::Layout;
use core::ptr::{self, NonNull};
use std_alloc::alloc::{alloc, alloc_zeroed, dealloc, realloc};
use crate::core_alloc::{AllocError, Allocator};
use crate::{layout_dangling, nonnull_as_mut_ptr, nonnull_slice_from_raw_parts};
#[derive(Copy, Clone, Default, Debug)]
pub struct Global;
impl Global {
#[inline]
fn alloc_impl(&self, layout: Layout, zeroed: bool) -> Result<NonNull<[u8]>, AllocError> {
match layout.size() {
0 => Ok(nonnull_slice_from_raw_parts(layout_dangling(&layout), 0)),
size => unsafe {
let raw_ptr = if zeroed {
alloc_zeroed(layout)
} else {
alloc(layout)
};
let ptr = NonNull::new(raw_ptr).ok_or(AllocError)?;
Ok(nonnull_slice_from_raw_parts(ptr, size))
},
}
}
#[inline]
unsafe fn grow_impl(
&self,
ptr: NonNull<u8>,
old_layout: Layout,
new_layout: Layout,
zeroed: bool,
) -> Result<NonNull<[u8]>, AllocError> {
debug_assert!(
new_layout.size() >= old_layout.size(),
"`new_layout.size()` must be greater than or equal to `old_layout.size()`"
);
match old_layout.size() {
0 => self.alloc_impl(new_layout, zeroed),
old_size if old_layout.align() == new_layout.align() => unsafe {
let new_size = new_layout.size();
crate::assume(new_size >= old_layout.size());
let raw_ptr = realloc(ptr.as_ptr(), old_layout, new_size);
let ptr = NonNull::new(raw_ptr).ok_or(AllocError)?;
if zeroed {
raw_ptr.add(old_size).write_bytes(0, new_size - old_size);
}
Ok(nonnull_slice_from_raw_parts(ptr, new_size))
},
old_size => unsafe {
let new_ptr = self.alloc_impl(new_layout, zeroed)?;
ptr::copy_nonoverlapping(ptr.as_ptr(), nonnull_as_mut_ptr(new_ptr), old_size);
self.deallocate(ptr, old_layout);
Ok(new_ptr)
},
}
}
}
unsafe impl Allocator for Global {
#[inline]
fn allocate(&self, layout: Layout) -> Result<NonNull<[u8]>, AllocError> {
self.alloc_impl(layout, false)
}
#[inline]
fn allocate_zeroed(&self, layout: Layout) -> Result<NonNull<[u8]>, AllocError> {
self.alloc_impl(layout, true)
}
#[inline]
unsafe fn deallocate(&self, ptr: NonNull<u8>, layout: Layout) {
if layout.size() != 0 {
unsafe { dealloc(ptr.as_ptr(), layout) }
}
}
#[inline]
unsafe fn grow(
&self,
ptr: NonNull<u8>,
old_layout: Layout,
new_layout: Layout,
) -> Result<NonNull<[u8]>, AllocError> {
unsafe { self.grow_impl(ptr, old_layout, new_layout, false) }
}
#[inline]
unsafe fn grow_zeroed(
&self,
ptr: NonNull<u8>,
old_layout: Layout,
new_layout: Layout,
) -> Result<NonNull<[u8]>, AllocError> {
unsafe { self.grow_impl(ptr, old_layout, new_layout, true) }
}
#[inline]
unsafe fn shrink(
&self,
ptr: NonNull<u8>,
old_layout: Layout,
new_layout: Layout,
) -> Result<NonNull<[u8]>, AllocError> {
debug_assert!(
new_layout.size() <= old_layout.size(),
"`new_layout.size()` must be smaller than or equal to `old_layout.size()`"
);
match new_layout.size() {
0 => unsafe {
self.deallocate(ptr, old_layout);
Ok(nonnull_slice_from_raw_parts(
layout_dangling(&new_layout),
0,
))
},
new_size if old_layout.align() == new_layout.align() => unsafe {
crate::assume(new_size <= old_layout.size());
let raw_ptr = realloc(ptr.as_ptr(), old_layout, new_size);
let ptr = NonNull::new(raw_ptr).ok_or(AllocError)?;
Ok(nonnull_slice_from_raw_parts(ptr, new_size))
},
new_size => unsafe {
let new_ptr = self.allocate(new_layout)?;
ptr::copy_nonoverlapping(ptr.as_ptr(), nonnull_as_mut_ptr(new_ptr), new_size);
self.deallocate(ptr, old_layout);
Ok(new_ptr)
},
}
}
}