xref: /qemu/rust/qemu-api/src/vmstate.rs (revision 5006e39cfacbf37e6925239059ae6945e36cf74e)
1 // Copyright 2024, Linaro Limited
2 // Author(s): Manos Pitsidianakis <manos.pitsidianakis@linaro.org>
3 // SPDX-License-Identifier: GPL-2.0-or-later
4 
5 //! Helper macros to declare migration state for device models.
6 //!
7 //! This module includes four families of macros:
8 //!
9 //! * [`vmstate_unused!`](crate::vmstate_unused) and
10 //!   [`vmstate_of!`](crate::vmstate_of), which are used to express the
11 //!   migration format for a struct.  This is based on the [`VMState`] trait,
12 //!   which is defined by all migrateable types.
13 //!
14 //! * [`impl_vmstate_forward`](crate::impl_vmstate_forward) and
15 //!   [`impl_vmstate_bitsized`](crate::impl_vmstate_bitsized), which help with
16 //!   the definition of the [`VMState`] trait (respectively for transparent
17 //!   structs and for `bilge`-defined types)
18 //!
19 //! * helper macros to declare a device model state struct, in particular
20 //!   [`vmstate_subsections`](crate::vmstate_subsections) and
21 //!   [`vmstate_fields`](crate::vmstate_fields).
22 //!
23 //! * direct equivalents to the C macros declared in
24 //!   `include/migration/vmstate.h`. These are not type-safe and only provide
25 //!   functionality that is missing from `vmstate_of!`.
26 
27 use core::{marker::PhantomData, mem, ptr::NonNull};
28 
29 pub use crate::bindings::{VMStateDescription, VMStateField};
30 use crate::{
31     bindings::{self, VMStateFlags},
32     prelude::*,
33     qom::Owned,
34     zeroable::Zeroable,
35 };
36 
37 /// This macro is used to call a function with a generic argument bound
38 /// to the type of a field.  The function must take a
39 /// [`PhantomData`]`<T>` argument; `T` is the type of
40 /// field `$field` in the `$typ` type.
41 ///
42 /// # Examples
43 ///
44 /// ```
45 /// # use qemu_api::call_func_with_field;
46 /// # use core::marker::PhantomData;
47 /// const fn size_of_field<T>(_: PhantomData<T>) -> usize {
48 ///     std::mem::size_of::<T>()
49 /// }
50 ///
51 /// struct Foo {
52 ///     x: u16,
53 /// };
54 /// // calls size_of_field::<u16>()
55 /// assert_eq!(call_func_with_field!(size_of_field, Foo, x), 2);
56 /// ```
57 #[macro_export]
58 macro_rules! call_func_with_field {
59     // Based on the answer by user steffahn (Frank Steffahn) at
60     // https://users.rust-lang.org/t/inferring-type-of-field/122857
61     // and used under MIT license
62     ($func:expr, $typ:ty, $($field:tt).+) => {
63         $func(loop {
64             #![allow(unreachable_code)]
65             const fn phantom__<T>(_: &T) -> ::core::marker::PhantomData<T> { ::core::marker::PhantomData }
66             // Unreachable code is exempt from checks on uninitialized values.
67             // Use that trick to infer the type of this PhantomData.
68             break ::core::marker::PhantomData;
69             break phantom__(&{ let value__: $typ; value__.$($field).+ });
70         })
71     };
72 }
73 
74 /// Workaround for lack of `const_refs_static`: references to global variables
75 /// can be included in a `static`, but not in a `const`; unfortunately, this
76 /// is exactly what would go in the `VMStateField`'s `info` member.
77 ///
78 /// This enum contains the contents of the `VMStateField`'s `info` member,
79 /// but as an `enum` instead of a pointer.
80 #[allow(non_camel_case_types)]
81 pub enum VMStateFieldType {
82     null,
83     vmstate_info_bool,
84     vmstate_info_int8,
85     vmstate_info_int16,
86     vmstate_info_int32,
87     vmstate_info_int64,
88     vmstate_info_uint8,
89     vmstate_info_uint16,
90     vmstate_info_uint32,
91     vmstate_info_uint64,
92     vmstate_info_timer,
93 }
94 
95 /// Workaround for lack of `const_refs_static`.  Converts a `VMStateFieldType`
96 /// to a `*const VMStateInfo`, for inclusion in a `VMStateField`.
97 #[macro_export]
98 macro_rules! info_enum_to_ref {
99     ($e:expr) => {
100         unsafe {
101             match $e {
102                 $crate::vmstate::VMStateFieldType::null => ::core::ptr::null(),
103                 $crate::vmstate::VMStateFieldType::vmstate_info_bool => {
104                     ::core::ptr::addr_of!($crate::bindings::vmstate_info_bool)
105                 }
106                 $crate::vmstate::VMStateFieldType::vmstate_info_int8 => {
107                     ::core::ptr::addr_of!($crate::bindings::vmstate_info_int8)
108                 }
109                 $crate::vmstate::VMStateFieldType::vmstate_info_int16 => {
110                     ::core::ptr::addr_of!($crate::bindings::vmstate_info_int16)
111                 }
112                 $crate::vmstate::VMStateFieldType::vmstate_info_int32 => {
113                     ::core::ptr::addr_of!($crate::bindings::vmstate_info_int32)
114                 }
115                 $crate::vmstate::VMStateFieldType::vmstate_info_int64 => {
116                     ::core::ptr::addr_of!($crate::bindings::vmstate_info_int64)
117                 }
118                 $crate::vmstate::VMStateFieldType::vmstate_info_uint8 => {
119                     ::core::ptr::addr_of!($crate::bindings::vmstate_info_uint8)
120                 }
121                 $crate::vmstate::VMStateFieldType::vmstate_info_uint16 => {
122                     ::core::ptr::addr_of!($crate::bindings::vmstate_info_uint16)
123                 }
124                 $crate::vmstate::VMStateFieldType::vmstate_info_uint32 => {
125                     ::core::ptr::addr_of!($crate::bindings::vmstate_info_uint32)
126                 }
127                 $crate::vmstate::VMStateFieldType::vmstate_info_uint64 => {
128                     ::core::ptr::addr_of!($crate::bindings::vmstate_info_uint64)
129                 }
130                 $crate::vmstate::VMStateFieldType::vmstate_info_timer => {
131                     ::core::ptr::addr_of!($crate::bindings::vmstate_info_timer)
132                 }
133             }
134         }
135     };
136 }
137 
138 /// A trait for types that can be included in a device's migration stream.  It
139 /// provides the base contents of a `VMStateField` (minus the name and offset).
140 ///
141 /// # Safety
142 ///
143 /// The contents of this trait go straight into structs that are parsed by C
144 /// code and used to introspect into other structs.  Generally, you don't need
145 /// to implement it except via macros that do it for you, such as
146 /// `impl_vmstate_bitsized!`.
147 pub unsafe trait VMState {
148     /// The `info` member of a `VMStateField` is a pointer and as such cannot
149     /// yet be included in the [`BASE`](VMState::BASE) associated constant;
150     /// this is only allowed by Rust 1.83.0 and newer.  For now, include the
151     /// member as an enum which is stored in a separate constant.
152     const SCALAR_TYPE: VMStateFieldType = VMStateFieldType::null;
153 
154     /// The base contents of a `VMStateField` (minus the name and offset) for
155     /// the type that is implementing the trait.
156     const BASE: VMStateField;
157 
158     /// A flag that is added to another field's `VMStateField` to specify the
159     /// length's type in a variable-sized array.  If this is not a supported
160     /// type for the length (i.e. if it is not `u8`, `u16`, `u32`), using it
161     /// in a call to [`vmstate_of!`](crate::vmstate_of) will cause a
162     /// compile-time error.
163     const VARRAY_FLAG: VMStateFlags = {
164         panic!("invalid type for variable-sized array");
165     };
166 }
167 
168 /// Internal utility function to retrieve a type's `VMStateFieldType`;
169 /// used by [`vmstate_of!`](crate::vmstate_of).
170 pub const fn vmstate_scalar_type<T: VMState>(_: PhantomData<T>) -> VMStateFieldType {
171     T::SCALAR_TYPE
172 }
173 
174 /// Internal utility function to retrieve a type's `VMStateField`;
175 /// used by [`vmstate_of!`](crate::vmstate_of).
176 pub const fn vmstate_base<T: VMState>(_: PhantomData<T>) -> VMStateField {
177     T::BASE
178 }
179 
180 /// Internal utility function to retrieve a type's `VMStateFlags` when it
181 /// is used as the element count of a `VMSTATE_VARRAY`; used by
182 /// [`vmstate_of!`](crate::vmstate_of).
183 pub const fn vmstate_varray_flag<T: VMState>(_: PhantomData<T>) -> VMStateFlags {
184     T::VARRAY_FLAG
185 }
186 
187 /// Return the `VMStateField` for a field of a struct.  The field must be
188 /// visible in the current scope.
189 ///
190 /// Only a limited set of types is supported out of the box:
191 /// * scalar types (integer and `bool`)
192 /// * the C struct `QEMUTimer`
193 /// * a transparent wrapper for any of the above (`Cell`, `UnsafeCell`,
194 ///   [`BqlCell`], [`BqlRefCell`]
195 /// * a raw pointer to any of the above
196 /// * a `NonNull` pointer, a `Box` or an [`Owned`] for any of the above
197 /// * an array of any of the above
198 ///
199 /// In order to support other types, the trait `VMState` must be implemented
200 /// for them.  The macros
201 /// [`impl_vmstate_bitsized!`](crate::impl_vmstate_bitsized)
202 /// and [`impl_vmstate_forward!`](crate::impl_vmstate_forward) help with this.
203 #[macro_export]
204 macro_rules! vmstate_of {
205     ($struct_name:ty, $field_name:ident $([0 .. $num:ident $(* $factor:expr)?])? $(,)?) => {
206         $crate::bindings::VMStateField {
207             name: ::core::concat!(::core::stringify!($field_name), "\0")
208                 .as_bytes()
209                 .as_ptr() as *const ::std::os::raw::c_char,
210             offset: $crate::offset_of!($struct_name, $field_name),
211             $(num_offset: $crate::offset_of!($struct_name, $num),)?
212             // The calls to `call_func_with_field!` are the magic that
213             // computes most of the VMStateField from the type of the field.
214             info: $crate::info_enum_to_ref!($crate::call_func_with_field!(
215                 $crate::vmstate::vmstate_scalar_type,
216                 $struct_name,
217                 $field_name
218             )),
219             ..$crate::call_func_with_field!(
220                 $crate::vmstate::vmstate_base,
221                 $struct_name,
222                 $field_name
223             )$(.with_varray_flag($crate::call_func_with_field!(
224                     $crate::vmstate::vmstate_varray_flag,
225                     $struct_name,
226                     $num))
227                $(.with_varray_multiply($factor))?)?
228         }
229     };
230 }
231 
232 impl VMStateFlags {
233     const VMS_VARRAY_FLAGS: VMStateFlags = VMStateFlags(
234         VMStateFlags::VMS_VARRAY_INT32.0
235             | VMStateFlags::VMS_VARRAY_UINT8.0
236             | VMStateFlags::VMS_VARRAY_UINT16.0
237             | VMStateFlags::VMS_VARRAY_UINT32.0,
238     );
239 }
240 
241 // Add a couple builder-style methods to VMStateField, allowing
242 // easy derivation of VMStateField constants from other types.
243 impl VMStateField {
244     #[must_use]
245     pub const fn with_version_id(mut self, version_id: i32) -> Self {
246         assert!(version_id >= 0);
247         self.version_id = version_id;
248         self
249     }
250 
251     #[must_use]
252     pub const fn with_array_flag(mut self, num: usize) -> Self {
253         assert!(num <= 0x7FFF_FFFFusize);
254         assert!((self.flags.0 & VMStateFlags::VMS_ARRAY.0) == 0);
255         assert!((self.flags.0 & VMStateFlags::VMS_VARRAY_FLAGS.0) == 0);
256         if (self.flags.0 & VMStateFlags::VMS_POINTER.0) != 0 {
257             self.flags = VMStateFlags(self.flags.0 & !VMStateFlags::VMS_POINTER.0);
258             self.flags = VMStateFlags(self.flags.0 | VMStateFlags::VMS_ARRAY_OF_POINTER.0);
259             // VMS_ARRAY_OF_POINTER flag stores the size of pointer.
260             // FIXME: *const, *mut, NonNull and Box<> have the same size as usize.
261             //        Resize if more smart pointers are supported.
262             self.size = std::mem::size_of::<usize>();
263         }
264         self.flags = VMStateFlags(self.flags.0 & !VMStateFlags::VMS_SINGLE.0);
265         self.flags = VMStateFlags(self.flags.0 | VMStateFlags::VMS_ARRAY.0);
266         self.num = num as i32;
267         self
268     }
269 
270     #[must_use]
271     pub const fn with_pointer_flag(mut self) -> Self {
272         assert!((self.flags.0 & VMStateFlags::VMS_POINTER.0) == 0);
273         self.flags = VMStateFlags(self.flags.0 | VMStateFlags::VMS_POINTER.0);
274         self
275     }
276 
277     #[must_use]
278     pub const fn with_varray_flag_unchecked(mut self, flag: VMStateFlags) -> VMStateField {
279         self.flags = VMStateFlags(self.flags.0 & !VMStateFlags::VMS_ARRAY.0);
280         self.flags = VMStateFlags(self.flags.0 | flag.0);
281         self.num = 0; // varray uses num_offset instead of num.
282         self
283     }
284 
285     #[must_use]
286     #[allow(unused_mut)]
287     pub const fn with_varray_flag(mut self, flag: VMStateFlags) -> VMStateField {
288         assert!((self.flags.0 & VMStateFlags::VMS_ARRAY.0) != 0);
289         self.with_varray_flag_unchecked(flag)
290     }
291 
292     #[must_use]
293     pub const fn with_varray_multiply(mut self, num: u32) -> VMStateField {
294         assert!(num <= 0x7FFF_FFFFu32);
295         self.flags = VMStateFlags(self.flags.0 | VMStateFlags::VMS_MULTIPLY_ELEMENTS.0);
296         self.num = num as i32;
297         self
298     }
299 }
300 
301 /// This macro can be used (by just passing it a type) to forward the `VMState`
302 /// trait to the first field of a tuple.  This is a workaround for lack of
303 /// support of nested [`offset_of`](core::mem::offset_of) until Rust 1.82.0.
304 ///
305 /// # Examples
306 ///
307 /// ```
308 /// # use qemu_api::impl_vmstate_forward;
309 /// pub struct Fifo([u8; 16]);
310 /// impl_vmstate_forward!(Fifo);
311 /// ```
312 #[macro_export]
313 macro_rules! impl_vmstate_forward {
314     // This is similar to impl_vmstate_transparent below, but it
315     // uses the same trick as vmstate_of! to obtain the type of
316     // the first field of the tuple
317     ($tuple:ty) => {
318         unsafe impl $crate::vmstate::VMState for $tuple {
319             const SCALAR_TYPE: $crate::vmstate::VMStateFieldType =
320                 $crate::call_func_with_field!($crate::vmstate::vmstate_scalar_type, $tuple, 0);
321             const BASE: $crate::bindings::VMStateField =
322                 $crate::call_func_with_field!($crate::vmstate::vmstate_base, $tuple, 0);
323         }
324     };
325 }
326 
327 // Transparent wrappers: just use the internal type
328 
329 macro_rules! impl_vmstate_transparent {
330     ($type:ty where $base:tt: VMState $($where:tt)*) => {
331         unsafe impl<$base> VMState for $type where $base: VMState $($where)* {
332             const SCALAR_TYPE: VMStateFieldType = <$base as VMState>::SCALAR_TYPE;
333             const BASE: VMStateField = VMStateField {
334                 size: mem::size_of::<$type>(),
335                 ..<$base as VMState>::BASE
336             };
337             const VARRAY_FLAG: VMStateFlags = <$base as VMState>::VARRAY_FLAG;
338         }
339     };
340 }
341 
342 impl_vmstate_transparent!(std::cell::Cell<T> where T: VMState);
343 impl_vmstate_transparent!(std::cell::UnsafeCell<T> where T: VMState);
344 impl_vmstate_transparent!(std::pin::Pin<T> where T: VMState);
345 impl_vmstate_transparent!(crate::cell::BqlCell<T> where T: VMState);
346 impl_vmstate_transparent!(crate::cell::BqlRefCell<T> where T: VMState);
347 
348 #[macro_export]
349 macro_rules! impl_vmstate_bitsized {
350     ($type:ty) => {
351         unsafe impl $crate::vmstate::VMState for $type {
352             const SCALAR_TYPE: $crate::vmstate::VMStateFieldType =
353                                         <<<$type as ::bilge::prelude::Bitsized>::ArbitraryInt
354                                           as ::bilge::prelude::Number>::UnderlyingType
355                                          as $crate::vmstate::VMState>::SCALAR_TYPE;
356             const BASE: $crate::bindings::VMStateField =
357                                         <<<$type as ::bilge::prelude::Bitsized>::ArbitraryInt
358                                           as ::bilge::prelude::Number>::UnderlyingType
359                                          as $crate::vmstate::VMState>::BASE;
360             const VARRAY_FLAG: $crate::bindings::VMStateFlags =
361                                         <<<$type as ::bilge::prelude::Bitsized>::ArbitraryInt
362                                           as ::bilge::prelude::Number>::UnderlyingType
363                                          as $crate::vmstate::VMState>::VARRAY_FLAG;
364         }
365     };
366 }
367 
368 // Scalar types using predefined VMStateInfos
369 
370 macro_rules! impl_vmstate_scalar {
371     ($info:ident, $type:ty$(, $varray_flag:ident)?) => {
372         unsafe impl VMState for $type {
373             const SCALAR_TYPE: VMStateFieldType = VMStateFieldType::$info;
374             const BASE: VMStateField = VMStateField {
375                 size: mem::size_of::<$type>(),
376                 flags: VMStateFlags::VMS_SINGLE,
377                 ..Zeroable::ZERO
378             };
379             $(const VARRAY_FLAG: VMStateFlags = VMStateFlags::$varray_flag;)?
380         }
381     };
382 }
383 
384 impl_vmstate_scalar!(vmstate_info_bool, bool);
385 impl_vmstate_scalar!(vmstate_info_int8, i8);
386 impl_vmstate_scalar!(vmstate_info_int16, i16);
387 impl_vmstate_scalar!(vmstate_info_int32, i32);
388 impl_vmstate_scalar!(vmstate_info_int64, i64);
389 impl_vmstate_scalar!(vmstate_info_uint8, u8, VMS_VARRAY_UINT8);
390 impl_vmstate_scalar!(vmstate_info_uint16, u16, VMS_VARRAY_UINT16);
391 impl_vmstate_scalar!(vmstate_info_uint32, u32, VMS_VARRAY_UINT32);
392 impl_vmstate_scalar!(vmstate_info_uint64, u64);
393 impl_vmstate_scalar!(vmstate_info_timer, bindings::QEMUTimer);
394 
395 // Pointer types using the underlying type's VMState plus VMS_POINTER
396 // Note that references are not supported, though references to cells
397 // could be allowed.
398 
399 macro_rules! impl_vmstate_pointer {
400     ($type:ty where $base:tt: VMState $($where:tt)*) => {
401         unsafe impl<$base> VMState for $type where $base: VMState $($where)* {
402             const SCALAR_TYPE: VMStateFieldType = <T as VMState>::SCALAR_TYPE;
403             const BASE: VMStateField = <$base as VMState>::BASE.with_pointer_flag();
404         }
405     };
406 }
407 
408 impl_vmstate_pointer!(*const T where T: VMState);
409 impl_vmstate_pointer!(*mut T where T: VMState);
410 impl_vmstate_pointer!(NonNull<T> where T: VMState);
411 
412 // Unlike C pointers, Box is always non-null therefore there is no need
413 // to specify VMS_ALLOC.
414 impl_vmstate_pointer!(Box<T> where T: VMState);
415 impl_vmstate_pointer!(Owned<T> where T: VMState + ObjectType);
416 
417 // Arrays using the underlying type's VMState plus
418 // VMS_ARRAY/VMS_ARRAY_OF_POINTER
419 
420 unsafe impl<T: VMState, const N: usize> VMState for [T; N] {
421     const SCALAR_TYPE: VMStateFieldType = <T as VMState>::SCALAR_TYPE;
422     const BASE: VMStateField = <T as VMState>::BASE.with_array_flag(N);
423 }
424 
425 #[doc(alias = "VMSTATE_UNUSED")]
426 #[macro_export]
427 macro_rules! vmstate_unused {
428     ($size:expr) => {{
429         $crate::bindings::VMStateField {
430             name: $crate::c_str!("unused").as_ptr(),
431             size: $size,
432             info: unsafe { ::core::ptr::addr_of!($crate::bindings::vmstate_info_unused_buffer) },
433             flags: $crate::bindings::VMStateFlags::VMS_BUFFER,
434             ..$crate::zeroable::Zeroable::ZERO
435         }
436     }};
437 }
438 
439 // FIXME: including the `vmsd` field in a `const` is not possible without
440 // the const_refs_static feature (stabilized in Rust 1.83.0).  Without it,
441 // it is not possible to use VMS_STRUCT in a transparent manner using
442 // `vmstate_of!`.  While VMSTATE_CLOCK can at least try to be type-safe,
443 // VMSTATE_STRUCT includes $type only for documentation purposes; it
444 // is checked against $field_name and $struct_name, but not against $vmsd
445 // which is what really would matter.
446 #[doc(alias = "VMSTATE_STRUCT")]
447 #[macro_export]
448 macro_rules! vmstate_struct {
449     ($struct_name:ty, $field_name:ident $([0 .. $num:ident $(* $factor:expr)?])?, $vmsd:expr, $type:ty $(,)?) => {
450         $crate::bindings::VMStateField {
451             name: ::core::concat!(::core::stringify!($field_name), "\0")
452                 .as_bytes()
453                 .as_ptr() as *const ::std::os::raw::c_char,
454             $(num_offset: $crate::offset_of!($struct_name, $num),)?
455             offset: {
456                 $crate::assert_field_type!($struct_name, $field_name, $type $(, num = $num)?);
457                 $crate::offset_of!($struct_name, $field_name)
458             },
459             size: ::core::mem::size_of::<$type>(),
460             flags: $crate::bindings::VMStateFlags::VMS_STRUCT,
461             vmsd: $vmsd,
462             ..$crate::zeroable::Zeroable::ZERO
463          } $(.with_varray_flag_unchecked(
464                   $crate::call_func_with_field!(
465                       $crate::vmstate::vmstate_varray_flag,
466                       $struct_name,
467                       $num
468                   )
469               )
470            $(.with_varray_multiply($factor))?)?
471     };
472 }
473 
474 #[doc(alias = "VMSTATE_CLOCK")]
475 #[macro_export]
476 macro_rules! vmstate_clock {
477     ($struct_name:ty, $field_name:ident) => {{
478         $crate::bindings::VMStateField {
479             name: ::core::concat!(::core::stringify!($field_name), "\0")
480                 .as_bytes()
481                 .as_ptr() as *const ::std::os::raw::c_char,
482             offset: {
483                 $crate::assert_field_type!(
484                     $struct_name,
485                     $field_name,
486                     $crate::qom::Owned<$crate::qdev::Clock>
487                 );
488                 $crate::offset_of!($struct_name, $field_name)
489             },
490             size: ::core::mem::size_of::<*const $crate::qdev::Clock>(),
491             flags: VMStateFlags(VMStateFlags::VMS_STRUCT.0 | VMStateFlags::VMS_POINTER.0),
492             vmsd: unsafe { ::core::ptr::addr_of!($crate::bindings::vmstate_clock) },
493             ..$crate::zeroable::Zeroable::ZERO
494         }
495     }};
496 }
497 
498 /// Helper macro to declare a list of
499 /// ([`VMStateField`](`crate::bindings::VMStateField`)) into a static and return
500 /// a pointer to the array of values it created.
501 #[macro_export]
502 macro_rules! vmstate_fields {
503     ($($field:expr),*$(,)*) => {{
504         static _FIELDS: &[$crate::bindings::VMStateField] = &[
505             $($field),*,
506             $crate::bindings::VMStateField {
507                 flags: $crate::bindings::VMStateFlags::VMS_END,
508                 ..$crate::zeroable::Zeroable::ZERO
509             }
510         ];
511         _FIELDS.as_ptr()
512     }}
513 }
514 
515 /// A transparent wrapper type for the `subsections` field of
516 /// [`VMStateDescription`].
517 ///
518 /// This is necessary to be able to declare subsection descriptions as statics,
519 /// because the only way to implement `Sync` for a foreign type (and `*const`
520 /// pointers are foreign types in Rust) is to create a wrapper struct and
521 /// `unsafe impl Sync` for it.
522 ///
523 /// This struct is used in the
524 /// [`vm_state_subsections`](crate::vmstate_subsections) macro implementation.
525 #[repr(transparent)]
526 pub struct VMStateSubsectionsWrapper(pub &'static [*const crate::bindings::VMStateDescription]);
527 
528 unsafe impl Sync for VMStateSubsectionsWrapper {}
529 
530 /// Helper macro to declare a list of subsections ([`VMStateDescription`])
531 /// into a static and return a pointer to the array of pointers it created.
532 #[macro_export]
533 macro_rules! vmstate_subsections {
534     ($($subsection:expr),*$(,)*) => {{
535         static _SUBSECTIONS: $crate::vmstate::VMStateSubsectionsWrapper = $crate::vmstate::VMStateSubsectionsWrapper(&[
536             $({
537                 static _SUBSECTION: $crate::bindings::VMStateDescription = $subsection;
538                 ::core::ptr::addr_of!(_SUBSECTION)
539             }),*,
540             ::core::ptr::null()
541         ]);
542         _SUBSECTIONS.0.as_ptr()
543     }}
544 }
545