facet_opaque/lib.rs
1#![warn(missing_docs)]
2#![doc = include_str!("../README.md")]
3
4//! Opaque pointers
5//!
6//! TODO: should these carry a Layout around? That would be neat actually.
7
8use std::{marker::PhantomData, ptr::NonNull};
9
10/// A type-erased pointer to an uninitialized value
11#[derive(Clone, Copy)]
12pub struct OpaqueUninit<'mem>(*mut u8, PhantomData<&'mem mut ()>);
13
14impl<'mem> OpaqueUninit<'mem> {
15 /// Create a new opaque pointer from a mutable pointer
16 pub fn new<T>(ptr: *mut T) -> Self {
17 Self(ptr as *mut u8, PhantomData)
18 }
19
20 /// Creates a new opaque pointer from a reference to a MaybeUninit<T>
21 ///
22 /// The pointer will point to the potentially uninitialized contents
23 pub fn from_maybe_uninit<T>(borrow: &'mem mut std::mem::MaybeUninit<T>) -> Self {
24 Self(borrow.as_mut_ptr() as *mut u8, PhantomData)
25 }
26
27 /// Assumes the pointer is initialized and returns an `Opaque` pointer
28 ///
29 /// # Safety
30 ///
31 /// The pointer must actually be pointing to initialized memory of the correct type.
32 pub unsafe fn assume_init(self) -> Opaque<'mem> {
33 let ptr = unsafe { NonNull::new_unchecked(self.0) };
34 Opaque(ptr, PhantomData)
35 }
36
37 /// Write a value to this location and convert to an initialized pointer
38 ///
39 /// # Safety
40 ///
41 /// The pointer must be properly aligned for T and point to allocated memory
42 /// that can be safely written to.
43 pub unsafe fn write<T>(self, value: T) -> Opaque<'mem> {
44 unsafe {
45 std::ptr::write(self.0 as *mut T, value);
46 self.assume_init()
47 }
48 }
49
50 /// Returns the underlying raw pointer as a byte pointer
51 pub fn as_mut_ptr(self) -> *mut u8 {
52 self.0
53 }
54
55 /// Returns the underlying raw pointer as a const byte pointer
56 pub fn as_ptr(self) -> *const u8 {
57 self.0
58 }
59
60 /// Returns a pointer with the given offset added
61 ///
62 /// # Safety
63 ///
64 /// Offset is within the bounds of the allocated memory
65 pub unsafe fn field_uninit(self, offset: usize) -> OpaqueUninit<'mem> {
66 OpaqueUninit(unsafe { self.0.byte_add(offset) }, PhantomData)
67 }
68
69 /// Returns a pointer with the given offset added, assuming it's initialized
70 ///
71 /// # Safety
72 ///
73 /// The pointer plus offset must be:
74 /// - Within bounds of the allocated object
75 /// - Properly aligned for the type being pointed to
76 /// - Point to initialized data of the correct type
77 pub unsafe fn field_init(self, offset: usize) -> Opaque<'mem> {
78 Opaque(
79 unsafe { NonNull::new_unchecked(self.0.add(offset)) },
80 PhantomData,
81 )
82 }
83}
84
85/// A type-erased read-only pointer to an initialized value.
86///
87/// Cannot be null. May be dangling (for ZSTs)
88#[derive(Clone, Copy)]
89pub struct OpaqueConst<'mem>(NonNull<u8>, PhantomData<&'mem ()>);
90
91impl<'mem> OpaqueConst<'mem> {
92 /// Create a new opaque const pointer from a reference
93 pub fn from_ref<T>(r: &'mem T) -> Self {
94 Self(NonNull::from(r).cast(), PhantomData)
95 }
96
97 /// Create a new opaque const pointer from a raw pointer
98 ///
99 /// # Safety
100 ///
101 /// The pointer must be valid, aligned, and point to initialized memory
102 /// of the correct type, and be valid for lifetime `'mem`.
103 pub unsafe fn new_unchecked<T>(ptr: *const T) -> Self {
104 unsafe { Self(NonNull::new_unchecked(ptr as *mut u8), PhantomData) }
105 }
106
107 /// Gets the underlying raw pointer as a byte pointer
108 pub fn as_byte_ptr(self) -> *const u8 {
109 self.0.as_ptr()
110 }
111
112 /// Gets the underlying raw pointer as a pointer of type T
113 ///
114 /// # Safety
115 ///
116 /// Must be called with the original type T that was used to create this pointer
117 pub unsafe fn as_ptr<T>(self) -> *const T {
118 self.0.as_ptr() as *const T
119 }
120
121 /// Gets the underlying raw pointer as a const pointer of type T
122 ///
123 /// # Safety
124 ///
125 /// `T` must be the _actual_ underlying type. You're downcasting with no guardrails.
126 pub unsafe fn as_ref<'borrow: 'mem, T>(self) -> &'borrow T {
127 unsafe { &*(self.0.as_ptr() as *const T) }
128 }
129
130 /// Returns a pointer with the given offset added
131 ///
132 /// # Safety
133 ///
134 /// Offset must be within the bounds of the allocated memory,
135 /// and the resulting pointer must be properly aligned.
136 pub unsafe fn field(self, offset: usize) -> OpaqueConst<'mem> {
137 OpaqueConst(
138 unsafe { NonNull::new_unchecked(self.0.as_ptr().byte_add(offset)) },
139 PhantomData,
140 )
141 }
142}
143
144/// A type-erased pointer to an initialized value
145#[derive(Clone, Copy)]
146pub struct Opaque<'mem>(NonNull<u8>, PhantomData<&'mem mut ()>);
147
148impl<'mem> Opaque<'mem> {
149 /// Create a new opaque pointer from a mutable reference
150 pub fn from_ref<T>(r: &'mem mut T) -> Self {
151 Self(NonNull::from(r).cast(), PhantomData)
152 }
153
154 /// Create a new opaque pointer from a raw pointer
155 ///
156 /// # Safety
157 ///
158 /// The pointer must be valid, aligned, and point to initialized memory
159 /// of the correct type, and be valid for lifetime `'mem`.
160 pub unsafe fn new_unchecked<T>(ptr: *mut T) -> Self {
161 Self(
162 unsafe { NonNull::new_unchecked(ptr as *mut u8) },
163 PhantomData,
164 )
165 }
166
167 /// Gets the underlying raw pointer
168 pub fn as_byte_ptr(self) -> *const u8 {
169 self.0.as_ptr()
170 }
171
172 /// Gets the underlying raw pointer as mutable
173 pub fn as_mut_byte_ptr(self) -> *mut u8 {
174 self.0.as_ptr()
175 }
176
177 /// Gets the underlying raw pointer as a pointer of type T
178 ///
179 /// # Safety
180 ///
181 /// Must be called with the original type T that was used to create this pointer
182 pub unsafe fn as_ptr<T>(self) -> *const T {
183 self.0.as_ptr() as *const T
184 }
185
186 /// Gets the underlying raw pointer as a mutable pointer of type T
187 ///
188 /// # Safety
189 ///
190 /// `T` must be the _actual_ iunderlying type. You're downcasting with no guardrails.
191 pub unsafe fn as_mut<'borrow: 'mem, T>(self) -> &'borrow mut T {
192 unsafe { &mut *(self.0.as_ptr() as *mut T) }
193 }
194
195 /// Gets the underlying raw pointer as a const pointer of type T
196 ///
197 /// # Safety
198 ///
199 /// `T` must be the _actual_ underlying type. You're downcasting with no guardrails.
200 pub unsafe fn as_ref<'borrow: 'mem, T>(self) -> &'borrow T {
201 unsafe { &*(self.0.as_ptr() as *const T) }
202 }
203
204 /// Make a const ptr out of this mut ptr
205 pub fn as_const<'borrow: 'mem>(self) -> OpaqueConst<'borrow> {
206 OpaqueConst(self.0, PhantomData)
207 }
208
209 /// Exposes [`std::ptr::read`]
210 ///
211 /// # Safety
212 ///
213 /// `T` must be the actual underlying type of the pointed-to memory.
214 /// The memory must be properly initialized and aligned for type `T`.
215 pub unsafe fn read<T>(self) -> T {
216 unsafe { std::ptr::read(self.as_mut()) }
217 }
218
219 /// Exposes [`std::ptr::drop_in_place`]
220 ///
221 /// # Safety
222 ///
223 /// `T` must be the actual underlying type of the pointed-to memory.
224 /// The memory must be properly initialized and aligned for type `T`.
225 /// After calling this function, the memory should not be accessed again
226 /// until it is properly reinitialized.
227 pub unsafe fn drop_in_place<T>(self) {
228 unsafe { std::ptr::drop_in_place(self.as_mut::<T>()) }
229 }
230}