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// Protocol Buffers - Google's data interchange format
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// Copyright 2024 Google LLC. All rights reserved.
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//
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file or at
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// https://developers.google.com/open-source/licenses/bsd
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//! Traits that are implemeted by codegen types.
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use crate::__internal::SealedInternal;
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use crate::{MutProxied, MutProxy, ViewProxy};
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use create::Parse;
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use interop::{MessageMutInterop, MessageViewInterop, OwnedMessageInterop};
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use read::Serialize;
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use std::fmt::Debug;
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use write::{Clear, ClearAndParse, MergeFrom};
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/// A trait that all generated owned message types implement.
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pub trait Message: SealedInternal
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+ MutProxied
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// Create traits:
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+ Parse + Default
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// Read traits:
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+ Debug + Serialize
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// Write traits:
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+ Clear + ClearAndParse + MergeFrom
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// Thread safety:
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+ Send + Sync
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// Copy/Clone:
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+ Clone
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// C++ Interop:
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+ OwnedMessageInterop
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{
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}
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/// A trait that all generated message views implement.
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pub trait MessageView<'msg>: SealedInternal
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+ ViewProxy<'msg, Proxied = Self::Message>
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// Read traits:
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+ Debug + Serialize
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// Thread safety:
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+ Send + Sync
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// Copy/Clone:
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+ Copy + Clone
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// C++ Interop:
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+ MessageViewInterop<'msg>
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{
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#[doc(hidden)]
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type Message: Message;
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}
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/// A trait that all generated message muts implement.
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pub trait MessageMut<'msg>: SealedInternal
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+ MutProxy<'msg, MutProxied = Self::Message>
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// Read traits:
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+ Debug + Serialize
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// Write traits:
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// TODO: MsgMut should impl ClearAndParse.
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+ Clear + MergeFrom
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// Thread safety:
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+ Sync
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// Copy/Clone:
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// (Neither)
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// C++ Interop:
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+ MessageMutInterop<'msg>
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{
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#[doc(hidden)]
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type Message: Message;
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}
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/// Operations related to constructing a message. Only owned messages implement
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/// these traits.
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pub(crate) mod create {
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use super::SealedInternal;
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pub trait Parse: SealedInternal + Sized {
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fn parse(serialized: &[u8]) -> Result<Self, crate::ParseError>;
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}
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}
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/// Operations related to reading some aspect of a message (methods that would
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/// have a `&self` receiver on an owned message). Owned messages, views, and
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/// muts all implement these traits.
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pub(crate) mod read {
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use super::SealedInternal;
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pub trait Serialize: SealedInternal {
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fn serialize(&self) -> Result<Vec<u8>, crate::SerializeError>;
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}
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}
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/// Operations related to mutating a message (methods that would have a `&mut
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/// self` receiver on an owned message). Owned messages and muts implement these
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/// traits.
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pub(crate) mod write {
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use super::SealedInternal;
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use crate::AsView;
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pub trait Clear: SealedInternal {
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fn clear(&mut self);
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}
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pub trait ClearAndParse: SealedInternal {
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fn clear_and_parse(&mut self, data: &[u8]) -> Result<(), crate::ParseError>;
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}
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pub trait MergeFrom: AsView + SealedInternal {
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fn merge_from(&mut self, src: impl AsView<Proxied = Self::Proxied>);
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}
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}
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/// Traits related to interop with C or C++.
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///
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/// These traits are deliberately not available on the prelude, as they should
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/// be used rarely and with great care.
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pub(crate) mod interop {
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use super::SealedInternal;
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use std::ffi::c_void;
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/// Traits related to owned message interop. Note that these trait fns
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/// are only available on C++ kernel as upb interop of owned messages
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/// requires more work to handle the Arena behavior.
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pub trait OwnedMessageInterop: SealedInternal {
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/// Drops `self` and returns an underlying pointer that it was wrapping
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/// without deleting it.
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///
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/// The caller is responsible for ensuring the returned pointer is
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/// subsequently deleted (eg by moving it into a std::unique_ptr in
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/// C++), or else it will leak.
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#[cfg(cpp_kernel)]
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fn __unstable_leak_raw_message(self) -> *mut c_void;
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/// Takes exclusive ownership of the `raw_message`.
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///
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/// # Safety
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/// - The underlying message must be for the same type as `Self`
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/// - The pointer passed in must not be used by the caller after being
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/// passed here (must not be read, written, or deleted)
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#[cfg(cpp_kernel)]
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unsafe fn __unstable_take_ownership_of_raw_message(raw_message: *mut c_void) -> Self;
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}
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/// Traits related to message view interop.
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pub trait MessageViewInterop<'msg>: SealedInternal {
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/// Borrows `self` as an underlying C++ raw pointer.
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///
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/// Note that the returned Value must be used under the same constraints
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/// as though it were a borrow of `self`: it should be treated as a
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/// `const Message*` in C++, and not be mutated in any way, and any
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/// mutation to the parent message may invalidate it, and it
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/// must not be deleted.
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fn __unstable_as_raw_message(&self) -> *const c_void;
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/// Wraps the provided pointer as a MessageView.
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///
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/// This takes a ref of a pointer so that a stack variable's lifetime
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/// can be used for a safe lifetime; under most cases this is
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/// the correct lifetime and this should be used as:
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/// ```
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/// fn called_from_cpp(msg: *const c_void) {
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/// // `msg` is known live for the current stack frame, so view's
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/// // lifetime is also tied to the current stack frame here:
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/// let view = unsafe { __unstable_wrap_raw_message(&msg); }
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/// do_something_with_view(view);
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/// }
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/// ```
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///
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/// # Safety
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/// - The underlying message must be for the same type as `Self`
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/// - The underlying message must be alive for 'msg and not mutated
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/// while the wrapper is live.
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unsafe fn __unstable_wrap_raw_message(raw: &'msg *const c_void) -> Self;
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/// Wraps the provided pointer as a MessageView.
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///
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/// Unlike `__unstable_wrap_raw_message` this has no constraints
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/// on lifetime: the caller has a free choice for the lifetime.
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///
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/// As this is much easier to get the lifetime wrong than
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/// `__unstable_wrap_raw_message`, prefer using that wherever
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/// your lifetime can be tied to a stack lifetime, and only use this one
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/// if its not possible (e.g. with a 'static lifetime).
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///
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/// # Safety
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/// - The underlying message must be for the same type as `Self`
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/// - The underlying message must be alive for the caller-chosen 'msg
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/// and not mutated while the wrapper is live.
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unsafe fn __unstable_wrap_raw_message_unchecked_lifetime(raw: *const c_void) -> Self;
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}
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/// Traits related to message mut interop. Note that these trait fns
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/// are only available on C++ kernel as upb interop of owned messages
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/// requires more work to handle the Arena behavior.
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pub trait MessageMutInterop<'msg>: SealedInternal {
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/// Exclusive borrows `self` as an underlying mutable C++ raw pointer.
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///
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/// Note that the returned Value must be used under the same constraints
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/// as though it were a mut borrow of `self`: it should be treated as a
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/// non-owned `Message*` in C++. And any mutation to the parent message
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/// may invalidate it, and it must not be deleted.
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#[cfg(cpp_kernel)]
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fn __unstable_as_raw_message_mut(&mut self) -> *mut c_void;
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/// Wraps the provided C++ pointer as a MessageMut.
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///
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/// This takes a ref of a pointer so that a stack variable's lifetime
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/// can be used for a safe lifetime; under most cases this is
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/// the correct lifetime and this should be used as:
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/// ```
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/// fn called_from_cpp(msg: *mut c_void) {
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/// // `msg` is known live for the current stack frame, so mut's
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/// // lifetime is also tied to the current stack frame here:
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/// let m = unsafe { __unstable_wrap_raw_message_mut(&mut msg); }
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/// do_something_with_mut(m);
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/// }
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///
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/// # Safety
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/// - The underlying message must be for the same type as `Self`
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/// - The underlying message must be alive for 'msg and not read or
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/// mutated while the wrapper is live.
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#[cfg(cpp_kernel)]
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unsafe fn __unstable_wrap_raw_message_mut(raw: &'msg mut *mut c_void) -> Self;
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/// Wraps the provided pointer as a MessageMut.
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///
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/// Unlike `__unstable_wrap_raw_message_mut` this has no constraints
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/// on lifetime: the caller has a free choice for the lifetime.
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///
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/// As this is much easier to get the lifetime wrong than
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/// `__unstable_wrap_raw_message_mut`, prefer using that wherever
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/// the lifetime can be tied to a stack lifetime, and only use this one
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/// if its not possible (e.g. with a 'static lifetime).
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///
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/// # Safety
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/// - The underlying message must be for the same type as `Self`
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/// - The underlying message must be alive for the caller-chosen 'msg
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/// and not mutated while the wrapper is live.
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#[cfg(cpp_kernel)]
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unsafe fn __unstable_wrap_raw_message_mut_unchecked_lifetime(raw: *mut c_void) -> Self;
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}
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}
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