mirror of
https://github.com/protocolbuffers/protobuf
synced 2026-08-26 02:23:14 -04:00
This change also makes all the necessary fixes to get us compatible with edition 2024. I set things up so that we test edition 2024 with Bazel but keep Cargo on edition 2021. This seems like a nice way to go since it allows us to get full test coverage of both editions without us having to increment our minimum supported Rust version. PiperOrigin-RevId: 816241556
1619 lines
53 KiB
Rust
1619 lines
53 KiB
Rust
// Protocol Buffers - Google's data interchange format
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// Copyright 2023 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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// Rust Protobuf runtime using the C++ kernel.
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use crate::__internal::{Enum, MatcherEq, Private, SealedInternal};
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use crate::{
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AsMut, AsView, Clear, ClearAndParse, CopyFrom, IntoProxied, Map, MapIter, MapMut, MapView,
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MergeFrom, Message, MessageMutInterop, Mut, MutProxied, ParseError, ProtoBytes, ProtoStr,
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ProtoString, Proxied, ProxiedInMapValue, ProxiedInRepeated, Repeated, RepeatedMut,
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RepeatedView, Serialize, SerializeError, TakeFrom, View,
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};
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use core::fmt::Debug;
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use paste::paste;
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use std::convert::identity;
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use std::ffi::{c_int, c_void};
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use std::fmt;
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use std::marker::PhantomData;
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use std::mem::{ManuallyDrop, MaybeUninit};
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use std::ops::Deref;
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use std::ptr::{self, NonNull};
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use std::slice;
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/// Defines a set of opaque, unique, non-accessible pointees.
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///
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/// The [Rustonomicon][nomicon] currently recommends a zero-sized struct,
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/// though this should use [`extern type`] when that is stabilized.
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/// [nomicon]: https://doc.rust-lang.org/nomicon/ffi.html#representing-opaque-structs
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/// [`extern type`]: https://github.com/rust-lang/rust/issues/43467
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#[doc(hidden)]
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mod _opaque_pointees {
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/// Opaque pointee for [`RawMessage`]
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///
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/// This type is not meant to be dereferenced in Rust code.
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/// It is only meant to provide type safety for raw pointers
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/// which are manipulated behind FFI.
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///
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/// [`RawMessage`]: super::RawMessage
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#[repr(C)]
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pub struct RawMessageData {
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_data: [u8; 0],
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_marker: std::marker::PhantomData<(*mut u8, ::std::marker::PhantomPinned)>,
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}
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/// Opaque pointee for [`RawRepeatedField`]
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///
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/// This type is not meant to be dereferenced in Rust code.
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/// It is only meant to provide type safety for raw pointers
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/// which are manipulated behind FFI.
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#[repr(C)]
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pub struct RawRepeatedFieldData {
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_data: [u8; 0],
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_marker: std::marker::PhantomData<(*mut u8, ::std::marker::PhantomPinned)>,
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}
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/// Opaque pointee for [`RawMap`]
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///
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/// This type is not meant to be dereferenced in Rust code.
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/// It is only meant to provide type safety for raw pointers
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/// which are manipulated behind FFI.
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#[repr(C)]
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pub struct RawMapData {
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_data: [u8; 0],
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_marker: std::marker::PhantomData<(*mut u8, ::std::marker::PhantomPinned)>,
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}
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/// Opaque pointee for [`CppStdString`]
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///
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/// This type is not meant to be dereferenced in Rust code.
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/// It is only meant to provide type safety for raw pointers
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/// which are manipulated behind FFI.
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#[repr(C)]
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pub struct CppStdStringData {
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_data: [u8; 0],
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_marker: std::marker::PhantomData<(*mut u8, ::std::marker::PhantomPinned)>,
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}
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}
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/// A raw pointer to the underlying message for this runtime.
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#[doc(hidden)]
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pub type RawMessage = NonNull<_opaque_pointees::RawMessageData>;
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/// A raw pointer to the underlying repeated field container for this runtime.
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#[doc(hidden)]
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pub type RawRepeatedField = NonNull<_opaque_pointees::RawRepeatedFieldData>;
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/// A raw pointer to the underlying arena for this runtime.
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#[doc(hidden)]
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pub type RawMap = NonNull<_opaque_pointees::RawMapData>;
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/// A raw pointer to a std::string.
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#[doc(hidden)]
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pub type CppStdString = NonNull<_opaque_pointees::CppStdStringData>;
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/// Kernel-specific owned `string` and `bytes` field type.
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#[derive(Debug)]
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#[doc(hidden)]
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pub struct InnerProtoString {
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owned_ptr: CppStdString,
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}
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unsafe extern "C" {
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pub fn proto2_rust_Message_delete(m: RawMessage);
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pub fn proto2_rust_Message_clear(m: RawMessage);
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pub fn proto2_rust_Message_parse(m: RawMessage, input: PtrAndLen) -> bool;
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pub fn proto2_rust_Message_parse_dont_enforce_required(m: RawMessage, input: PtrAndLen)
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-> bool;
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pub fn proto2_rust_Message_serialize(m: RawMessage, output: &mut SerializedData) -> bool;
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pub fn proto2_rust_Message_copy_from(dst: RawMessage, src: RawMessage) -> bool;
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pub fn proto2_rust_Message_merge_from(dst: RawMessage, src: RawMessage) -> bool;
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}
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impl Drop for InnerProtoString {
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fn drop(&mut self) {
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// SAFETY: `self.owned_ptr` points to a valid std::string object.
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unsafe {
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proto2_rust_cpp_delete_string(self.owned_ptr);
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}
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}
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}
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impl InnerProtoString {
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pub(crate) fn as_bytes(&self) -> &[u8] {
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// SAFETY: `self.owned_ptr` points to a valid std::string object.
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unsafe { proto2_rust_cpp_string_to_view(self.owned_ptr).as_ref() }
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}
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pub fn into_raw(self) -> CppStdString {
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let s = ManuallyDrop::new(self);
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s.owned_ptr
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}
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/// # Safety
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/// - `src` points to a valid CppStdString.
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pub unsafe fn from_raw(src: CppStdString) -> InnerProtoString {
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InnerProtoString { owned_ptr: src }
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}
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}
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impl From<&[u8]> for InnerProtoString {
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fn from(val: &[u8]) -> Self {
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// SAFETY: `val` is valid byte slice.
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let owned_ptr: CppStdString = unsafe { proto2_rust_cpp_new_string(val.into()) };
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InnerProtoString { owned_ptr }
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}
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}
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unsafe extern "C" {
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fn proto2_rust_cpp_new_string(src: PtrAndLen) -> CppStdString;
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fn proto2_rust_cpp_delete_string(src: CppStdString);
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fn proto2_rust_cpp_string_to_view(src: CppStdString) -> PtrAndLen;
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}
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/// Represents an ABI-stable version of `NonNull<[u8]>`/`string_view` (a
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/// borrowed slice of bytes) for FFI use only.
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///
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/// Has semantics similar to `std::string_view` in C++ and `&[u8]` in Rust,
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/// but is not ABI-compatible with either.
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///
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/// If `len` is 0, then `ptr` can be null or dangling. C++ considers a dangling
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/// 0-len `std::string_view` to be invalid, and Rust considers a `&[u8]` with a
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/// null data pointer to be invalid.
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#[repr(C)]
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#[derive(Copy, Clone)]
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#[doc(hidden)]
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pub struct PtrAndLen {
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/// Pointer to the first byte.
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/// Borrows the memory.
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pub ptr: *const u8,
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/// Length of the `[u8]` pointed to by `ptr`.
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pub len: usize,
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}
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impl PtrAndLen {
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/// Unsafely dereference this slice.
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///
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/// # Safety
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/// - `self.ptr` must be dereferenceable and immutable for `self.len` bytes
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/// for the lifetime `'a`. It can be null or dangling if `self.len == 0`.
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pub unsafe fn as_ref<'a>(self) -> &'a [u8] {
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if self.ptr.is_null() {
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assert_eq!(self.len, 0, "Non-empty slice with null data pointer");
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&[]
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} else {
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// SAFETY:
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// - `ptr` is non-null
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// - `ptr` is valid for `len` bytes as promised by the caller.
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unsafe { slice::from_raw_parts(self.ptr, self.len) }
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}
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}
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}
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impl From<&[u8]> for PtrAndLen {
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fn from(slice: &[u8]) -> Self {
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Self { ptr: slice.as_ptr(), len: slice.len() }
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}
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}
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impl From<&ProtoStr> for PtrAndLen {
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fn from(s: &ProtoStr) -> Self {
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let bytes = s.as_bytes();
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Self { ptr: bytes.as_ptr(), len: bytes.len() }
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}
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}
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/// Serialized Protobuf wire format data. It's typically produced by
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/// `<Message>.serialize()`.
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///
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/// This struct is ABI-compatible with the equivalent struct on the C++ side. It
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/// owns (and drops) its data.
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#[repr(C)]
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#[doc(hidden)]
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pub struct SerializedData {
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/// Owns the memory.
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data: NonNull<u8>,
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len: usize,
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}
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impl SerializedData {
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pub fn new() -> Self {
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Self { data: NonNull::dangling(), len: 0 }
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}
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/// Constructs owned serialized data from raw components.
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///
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/// # Safety
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/// - `data` must be readable for `len` bytes.
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/// - `data` must be an owned pointer and valid until deallocated.
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/// - `data` must have been allocated by the Rust global allocator with a
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/// size of `len` and align of 1.
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pub unsafe fn from_raw_parts(data: NonNull<u8>, len: usize) -> Self {
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Self { data, len }
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}
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/// Gets a raw slice pointer.
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pub fn as_ptr(&self) -> *const [u8] {
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ptr::slice_from_raw_parts(self.data.as_ptr(), self.len)
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}
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/// Gets a mutable raw slice pointer.
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fn as_mut_ptr(&mut self) -> *mut [u8] {
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ptr::slice_from_raw_parts_mut(self.data.as_ptr(), self.len)
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}
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/// Converts into a Vec<u8>.
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pub fn into_vec(self) -> Vec<u8> {
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// We need to prevent self from being dropped, because we are going to transfer
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// ownership of self.data to the Vec<u8>.
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let s = ManuallyDrop::new(self);
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unsafe {
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// SAFETY:
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// - `data` was allocated by the Rust global allocator.
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// - `data` was allocated with an alignment of 1 for u8.
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// - The allocated size was `len`.
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// - The length and capacity are equal.
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// - All `len` bytes are initialized.
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// - The capacity (`len` in this case) is the size the pointer was allocated
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// with.
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// - The allocated size is no more than isize::MAX, because the protobuf
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// serializer will refuse to serialize a message if the output would exceed
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// 2^31 - 1 bytes.
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Vec::<u8>::from_raw_parts(s.data.as_ptr(), s.len, s.len)
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}
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}
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}
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impl Deref for SerializedData {
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type Target = [u8];
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fn deref(&self) -> &Self::Target {
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// SAFETY: `data` is valid for `len` bytes until deallocated as promised by
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// `from_raw_parts`.
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unsafe { &*self.as_ptr() }
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}
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}
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impl Drop for SerializedData {
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fn drop(&mut self) {
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// SAFETY: `data` was allocated by the Rust global allocator with a
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// size of `len` and align of 1 as promised by `from_raw_parts`.
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unsafe { drop(Box::from_raw(self.as_mut_ptr())) }
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}
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}
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impl fmt::Debug for SerializedData {
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fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
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fmt::Debug::fmt(self.deref(), f)
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}
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}
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/// A type to transfer an owned Rust string across the FFI boundary:
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/// * This struct is ABI-compatible with the equivalent C struct.
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/// * It owns its data but does not drop it. Immediately turn it into a
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/// `String` by calling `.into()` on it.
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/// * `.data` points to a valid UTF-8 string that has been allocated with the
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/// Rust allocator and is 1-byte aligned.
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/// * `.data` contains exactly `.len` bytes.
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/// * The empty string is represented as `.data.is_null() == true`.
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#[repr(C)]
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#[doc(hidden)]
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pub struct RustStringRawParts {
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data: *const u8,
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len: usize,
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}
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impl From<RustStringRawParts> for String {
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fn from(value: RustStringRawParts) -> Self {
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if value.data.is_null() {
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// Handle the case where the string is empty.
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return String::new();
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}
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// SAFETY:
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// - `value.data` contains valid UTF-8 bytes as promised by
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// `RustStringRawParts`.
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// - `value.data` has been allocated with the Rust allocator and is 1-byte
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// aligned as promised by `RustStringRawParts`.
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// - `value.data` contains and is allocated for exactly `value.len` bytes.
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unsafe { String::from_raw_parts(value.data as *mut u8, value.len, value.len) }
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}
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}
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unsafe extern "C" {
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fn proto2_rust_utf8_debug_string(raw: RawMessage) -> RustStringRawParts;
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}
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pub fn debug_string(raw: RawMessage, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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// SAFETY:
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// - `raw` is a valid protobuf message.
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let dbg_str: String = unsafe { proto2_rust_utf8_debug_string(raw) }.into();
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write!(f, "{dbg_str}")
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}
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unsafe extern "C" {
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/// # Safety
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/// - `raw1` and `raw2` legally dereferenceable MessageLite* pointers.
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#[link_name = "proto2_rust_messagelite_equals"]
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pub fn raw_message_equals(raw1: RawMessage, raw2: RawMessage) -> bool;
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}
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pub type RawMapIter = UntypedMapIterator;
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#[derive(Debug)]
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#[doc(hidden)]
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#[repr(transparent)]
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pub struct OwnedMessageInner<T> {
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raw: RawMessage,
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_phantom: PhantomData<T>,
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}
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impl<T: Message> OwnedMessageInner<T> {
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/// # Safety
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/// - `raw` must point to a message of type `T` and outlive `Self`.
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pub unsafe fn wrap_raw(raw: RawMessage) -> Self {
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OwnedMessageInner { raw, _phantom: PhantomData }
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}
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pub fn raw(&self) -> RawMessage {
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self.raw
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}
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}
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/// Mutators that point to their original message use this to do so.
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///
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/// Since C++ messages manage their own memory, this can just copy the
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/// `RawMessage` instead of referencing an arena like UPB must.
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///
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/// Note: even though this type is `Copy`, it should only be copied by
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/// protobuf internals that can maintain mutation invariants:
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///
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/// - No concurrent mutation for any two fields in a message: this means
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/// mutators cannot be `Send` but are `Sync`.
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/// - If there are multiple accessible `Mut` to a single message at a time, they
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/// must be different fields, and not be in the same oneof. As such, a `Mut`
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/// cannot be `Clone` but *can* reborrow itself with `.as_mut()`, which
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/// converts `&'b mut Mut<'a, T>` to `Mut<'b, T>`.
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#[derive(Debug)]
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#[doc(hidden)]
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#[repr(transparent)]
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pub struct MessageMutInner<'msg, T> {
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raw: RawMessage,
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_phantom: PhantomData<(&'msg mut (), T)>,
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}
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impl<'msg, T: Message> Clone for MessageMutInner<'msg, T> {
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fn clone(&self) -> Self {
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*self
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}
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}
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impl<'msg, T: Message> Copy for MessageMutInner<'msg, T> {}
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impl<'msg, T: Message> MessageMutInner<'msg, T> {
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#[allow(clippy::needless_pass_by_ref_mut)] // Sound construction requires mutable access.
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pub fn mut_of_owned(msg: &'msg mut OwnedMessageInner<T>) -> Self {
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MessageMutInner { raw: msg.raw, _phantom: PhantomData }
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}
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/// # Safety
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/// - The underlying pointer must be mutable, of type `T` and live for the lifetime 'msg.
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pub unsafe fn wrap_raw(raw: RawMessage) -> Self {
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MessageMutInner { raw, _phantom: PhantomData }
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}
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pub fn from_parent<ParentT: Message>(
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_parent_msg: MessageMutInner<'msg, ParentT>,
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message_field_ptr: RawMessage,
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) -> Self {
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Self { raw: message_field_ptr, _phantom: PhantomData }
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}
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pub fn raw(&self) -> RawMessage {
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self.raw
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}
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}
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#[derive(Debug)]
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#[doc(hidden)]
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#[repr(transparent)]
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pub struct MessageViewInner<'msg, T> {
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raw: RawMessage,
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_phantom: PhantomData<(&'msg (), T)>,
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}
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impl<'msg, T: Message> Clone for MessageViewInner<'msg, T> {
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fn clone(&self) -> Self {
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*self
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}
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}
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impl<'msg, T: Message> Copy for MessageViewInner<'msg, T> {}
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impl<'msg, T: Message> MessageViewInner<'msg, T> {
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/// # Safety
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/// - The underlying pointer must of type `T` and live for the lifetime 'msg.
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pub unsafe fn wrap_raw(raw: RawMessage) -> Self {
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MessageViewInner { raw, _phantom: PhantomData }
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}
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pub fn view_of_owned(msg: &'msg OwnedMessageInner<T>) -> Self {
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MessageViewInner { raw: msg.raw, _phantom: PhantomData }
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}
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pub fn view_of_mut(msg: MessageMutInner<'msg, T>) -> Self {
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MessageViewInner { raw: msg.raw, _phantom: PhantomData }
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}
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pub fn raw(&self) -> RawMessage {
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self.raw
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}
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}
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/// The raw type-erased version of an owned `Repeated`.
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|
#[derive(Debug)]
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#[doc(hidden)]
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pub struct InnerRepeated {
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raw: RawRepeatedField,
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}
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impl InnerRepeated {
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pub fn as_mut(&mut self) -> InnerRepeatedMut<'_> {
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InnerRepeatedMut::new(self.raw)
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}
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pub fn raw(&self) -> RawRepeatedField {
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self.raw
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}
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|
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/// # Safety
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|
/// - `raw` must be a valid `proto2::RepeatedField*` or
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/// `proto2::RepeatedPtrField*`.
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|
pub unsafe fn from_raw(raw: RawRepeatedField) -> Self {
|
|
Self { raw }
|
|
}
|
|
}
|
|
|
|
/// The raw type-erased pointer version of `RepeatedMut`.
|
|
///
|
|
/// Contains a `proto2::RepeatedField*` or `proto2::RepeatedPtrField*`.
|
|
#[derive(Clone, Copy, Debug)]
|
|
#[doc(hidden)]
|
|
pub struct InnerRepeatedMut<'msg> {
|
|
pub(crate) raw: RawRepeatedField,
|
|
_phantom: PhantomData<&'msg ()>,
|
|
}
|
|
|
|
impl<'msg> InnerRepeatedMut<'msg> {
|
|
#[doc(hidden)]
|
|
pub fn new(raw: RawRepeatedField) -> Self {
|
|
InnerRepeatedMut { raw, _phantom: PhantomData }
|
|
}
|
|
}
|
|
|
|
trait CppTypeConversions: Proxied {
|
|
type InsertElemType;
|
|
type ElemType;
|
|
|
|
fn elem_to_view<'msg>(v: Self::ElemType) -> View<'msg, Self>;
|
|
fn into_insertelem(v: Self) -> Self::InsertElemType;
|
|
}
|
|
|
|
macro_rules! impl_cpp_type_conversions_for_scalars {
|
|
($($t:ty),* $(,)?) => {
|
|
$(
|
|
impl CppTypeConversions for $t {
|
|
type InsertElemType = Self;
|
|
type ElemType = Self;
|
|
|
|
fn elem_to_view<'msg>(v: Self) -> View<'msg, Self> {
|
|
v
|
|
}
|
|
|
|
fn into_insertelem(v: Self) -> Self {
|
|
v
|
|
}
|
|
}
|
|
)*
|
|
}
|
|
}
|
|
|
|
impl_cpp_type_conversions_for_scalars!(i32, u32, i64, u64, f32, f64, bool);
|
|
|
|
impl CppTypeConversions for ProtoString {
|
|
type InsertElemType = CppStdString;
|
|
type ElemType = PtrAndLen;
|
|
|
|
fn elem_to_view<'msg>(v: PtrAndLen) -> View<'msg, ProtoString> {
|
|
ptrlen_to_str(v)
|
|
}
|
|
|
|
fn into_insertelem(v: Self) -> CppStdString {
|
|
v.into_inner(Private).into_raw()
|
|
}
|
|
}
|
|
|
|
impl CppTypeConversions for ProtoBytes {
|
|
type InsertElemType = CppStdString;
|
|
type ElemType = PtrAndLen;
|
|
|
|
fn elem_to_view<'msg>(v: Self::ElemType) -> View<'msg, Self> {
|
|
ptrlen_to_bytes(v)
|
|
}
|
|
|
|
fn into_insertelem(v: Self) -> CppStdString {
|
|
v.into_inner(Private).into_raw()
|
|
}
|
|
}
|
|
|
|
unsafe impl<T> ProxiedInRepeated for T
|
|
where
|
|
Self: MutProxied + CppGetRawMessage + Message,
|
|
for<'a> View<'a, Self>:
|
|
From<MessageViewInner<'a, Self>> + std::default::Default + CppGetRawMessage,
|
|
for<'a> Mut<'a, Self>: From<MessageMutInner<'a, Self>>,
|
|
{
|
|
fn repeated_new(_private: Private) -> Repeated<Self> {
|
|
// SAFETY:
|
|
// - The thunk returns an unaliased and valid `RepeatedPtrField*`
|
|
unsafe {
|
|
Repeated::from_inner(
|
|
Private,
|
|
InnerRepeated::from_raw(proto2_rust_RepeatedField_Message_new()),
|
|
)
|
|
}
|
|
}
|
|
|
|
unsafe fn repeated_free(_private: Private, f: &mut Repeated<Self>) {
|
|
// SAFETY
|
|
// - `f.raw()` is a valid `RepeatedPtrField*`.
|
|
unsafe { proto2_rust_RepeatedField_Message_free(f.as_view().as_raw(Private)) }
|
|
}
|
|
|
|
fn repeated_len(f: View<Repeated<Self>>) -> usize {
|
|
// SAFETY: `f.as_raw()` is a valid `RepeatedPtrField*`.
|
|
unsafe { proto2_rust_RepeatedField_Message_size(f.as_raw(Private)) }
|
|
}
|
|
|
|
unsafe fn repeated_set_unchecked(
|
|
mut f: Mut<Repeated<Self>>,
|
|
i: usize,
|
|
v: impl IntoProxied<Self>,
|
|
) {
|
|
// SAFETY:
|
|
// - `f.as_raw()` is a valid `RepeatedPtrField*`.
|
|
// - `i < len(f)` is promised by caller.
|
|
// - The second argument below is a valid `const Message&`.
|
|
unsafe {
|
|
proto2_rust_Message_copy_from(
|
|
proto2_rust_RepeatedField_Message_get_mut(f.as_raw(Private), i),
|
|
v.into_proxied(Private).get_raw_message(Private),
|
|
);
|
|
}
|
|
}
|
|
|
|
unsafe fn repeated_get_unchecked(f: View<Repeated<Self>>, i: usize) -> View<Self> {
|
|
// SAFETY:
|
|
// - `f.as_raw()` is a valid `const RepeatedPtrField&`.
|
|
// - `i < len(f)` is promised by caller.
|
|
let msg = unsafe { proto2_rust_RepeatedField_Message_get(f.as_raw(Private), i) };
|
|
let inner = unsafe { MessageViewInner::wrap_raw(msg) };
|
|
inner.into()
|
|
}
|
|
|
|
unsafe fn repeated_get_mut_unchecked(mut f: Mut<Repeated<Self>>, i: usize) -> Mut<Self> {
|
|
// SAFETY:
|
|
// - `f.as_raw()` is a valid `RepeatedPtrField*`.
|
|
// - `i < len(f)` is promised by caller.
|
|
let msg = unsafe { proto2_rust_RepeatedField_Message_get_mut(f.as_raw(Private), i) };
|
|
let inner = unsafe { MessageMutInner::wrap_raw(msg) };
|
|
inner.into()
|
|
}
|
|
|
|
fn repeated_clear(mut f: Mut<Repeated<Self>>) {
|
|
// SAFETY:
|
|
// - `f.as_raw()` is a valid `RepeatedPtrField*`.
|
|
unsafe { proto2_rust_RepeatedField_Message_clear(f.as_raw(Private)) };
|
|
}
|
|
|
|
fn repeated_push(mut f: Mut<Repeated<Self>>, v: impl IntoProxied<Self>) {
|
|
// SAFETY:
|
|
// - `f.as_raw()` is a valid `RepeatedPtrField*`.
|
|
// - The second argument below is a valid `const Message&`.
|
|
unsafe {
|
|
let prototype =
|
|
<View<Self> as std::default::Default>::default().get_raw_message(Private);
|
|
let new_elem = proto2_rust_RepeatedField_Message_add(f.as_raw(Private), prototype);
|
|
proto2_rust_Message_copy_from(
|
|
new_elem,
|
|
v.into_proxied(Private).get_raw_message(Private),
|
|
);
|
|
}
|
|
}
|
|
|
|
fn repeated_copy_from(src: View<Repeated<Self>>, mut dest: Mut<Repeated<Self>>) {
|
|
// SAFETY:
|
|
// - `dest.as_raw()` is a valid `RepeatedPtrField*`.
|
|
// - `src.as_raw()` is a valid `const RepeatedPtrField&`.
|
|
unsafe {
|
|
proto2_rust_RepeatedField_Message_copy_from(dest.as_raw(Private), src.as_raw(Private));
|
|
}
|
|
}
|
|
|
|
fn repeated_reserve(mut f: Mut<Repeated<Self>>, additional: usize) {
|
|
// SAFETY:
|
|
// - `f.as_raw()` is a valid `RepeatedPtrField*`.
|
|
unsafe { proto2_rust_RepeatedField_Message_reserve(f.as_raw(Private), additional) }
|
|
}
|
|
}
|
|
|
|
macro_rules! impl_repeated_primitives {
|
|
(@impl $($t:ty => [
|
|
$new_thunk:ident,
|
|
$free_thunk:ident,
|
|
$add_thunk:ident,
|
|
$size_thunk:ident,
|
|
$get_thunk:ident,
|
|
$set_thunk:ident,
|
|
$clear_thunk:ident,
|
|
$copy_from_thunk:ident,
|
|
$reserve_thunk:ident $(,)?
|
|
]),* $(,)?) => {
|
|
$(
|
|
unsafe extern "C" {
|
|
fn $new_thunk() -> RawRepeatedField;
|
|
fn $free_thunk(f: RawRepeatedField);
|
|
fn $add_thunk(f: RawRepeatedField, v: <$t as CppTypeConversions>::InsertElemType);
|
|
fn $size_thunk(f: RawRepeatedField) -> usize;
|
|
fn $get_thunk(
|
|
f: RawRepeatedField,
|
|
i: usize) -> <$t as CppTypeConversions>::ElemType;
|
|
fn $set_thunk(
|
|
f: RawRepeatedField,
|
|
i: usize,
|
|
v: <$t as CppTypeConversions>::InsertElemType);
|
|
fn $clear_thunk(f: RawRepeatedField);
|
|
fn $copy_from_thunk(src: RawRepeatedField, dst: RawRepeatedField);
|
|
fn $reserve_thunk(
|
|
f: RawRepeatedField,
|
|
additional: usize);
|
|
}
|
|
|
|
unsafe impl ProxiedInRepeated for $t {
|
|
#[allow(dead_code)]
|
|
#[inline]
|
|
fn repeated_new(_: Private) -> Repeated<$t> {
|
|
Repeated::from_inner(Private, InnerRepeated {
|
|
raw: unsafe { $new_thunk() }
|
|
})
|
|
}
|
|
#[allow(dead_code)]
|
|
#[inline]
|
|
unsafe fn repeated_free(_: Private, f: &mut Repeated<$t>) {
|
|
unsafe { $free_thunk(f.as_mut().as_raw(Private)) }
|
|
}
|
|
#[inline]
|
|
fn repeated_len(f: View<Repeated<$t>>) -> usize {
|
|
unsafe { $size_thunk(f.as_raw(Private)) }
|
|
}
|
|
#[inline]
|
|
fn repeated_push(mut f: Mut<Repeated<$t>>, v: impl IntoProxied<$t>) {
|
|
unsafe { $add_thunk(f.as_raw(Private), <$t as CppTypeConversions>::into_insertelem(v.into_proxied(Private))) }
|
|
}
|
|
#[inline]
|
|
fn repeated_clear(mut f: Mut<Repeated<$t>>) {
|
|
unsafe { $clear_thunk(f.as_raw(Private)) }
|
|
}
|
|
#[inline]
|
|
unsafe fn repeated_get_unchecked(f: View<Repeated<$t>>, i: usize) -> View<$t> {
|
|
<$t as CppTypeConversions>::elem_to_view(
|
|
unsafe { $get_thunk(f.as_raw(Private), i) })
|
|
}
|
|
#[inline]
|
|
unsafe fn repeated_set_unchecked(mut f: Mut<Repeated<$t>>, i: usize, v: impl IntoProxied<$t>) {
|
|
unsafe { $set_thunk(f.as_raw(Private), i, <$t as CppTypeConversions>::into_insertelem(v.into_proxied(Private))) }
|
|
}
|
|
#[inline]
|
|
fn repeated_copy_from(src: View<Repeated<$t>>, mut dest: Mut<Repeated<$t>>) {
|
|
unsafe { $copy_from_thunk(src.as_raw(Private), dest.as_raw(Private)) }
|
|
}
|
|
#[inline]
|
|
fn repeated_reserve(mut f: Mut<Repeated<$t>>, additional: usize) {
|
|
unsafe { $reserve_thunk(f.as_raw(Private), additional) }
|
|
}
|
|
}
|
|
)*
|
|
};
|
|
($($t:ty),* $(,)?) => {
|
|
paste!{
|
|
impl_repeated_primitives!(@impl $(
|
|
$t => [
|
|
[< proto2_rust_RepeatedField_ $t _new >],
|
|
[< proto2_rust_RepeatedField_ $t _free >],
|
|
[< proto2_rust_RepeatedField_ $t _add >],
|
|
[< proto2_rust_RepeatedField_ $t _size >],
|
|
[< proto2_rust_RepeatedField_ $t _get >],
|
|
[< proto2_rust_RepeatedField_ $t _set >],
|
|
[< proto2_rust_RepeatedField_ $t _clear >],
|
|
[< proto2_rust_RepeatedField_ $t _copy_from >],
|
|
[< proto2_rust_RepeatedField_ $t _reserve >],
|
|
],
|
|
)*);
|
|
}
|
|
};
|
|
}
|
|
|
|
impl_repeated_primitives!(i32, u32, i64, u64, f32, f64, bool, ProtoString, ProtoBytes);
|
|
|
|
unsafe extern "C" {
|
|
pub fn proto2_rust_RepeatedField_Message_new() -> RawRepeatedField;
|
|
pub fn proto2_rust_RepeatedField_Message_free(field: RawRepeatedField);
|
|
pub fn proto2_rust_RepeatedField_Message_size(field: RawRepeatedField) -> usize;
|
|
pub fn proto2_rust_RepeatedField_Message_get(
|
|
field: RawRepeatedField,
|
|
index: usize,
|
|
) -> RawMessage;
|
|
pub fn proto2_rust_RepeatedField_Message_get_mut(
|
|
field: RawRepeatedField,
|
|
index: usize,
|
|
) -> RawMessage;
|
|
pub fn proto2_rust_RepeatedField_Message_add(
|
|
field: RawRepeatedField,
|
|
prototype: RawMessage,
|
|
) -> RawMessage;
|
|
pub fn proto2_rust_RepeatedField_Message_clear(field: RawRepeatedField);
|
|
pub fn proto2_rust_RepeatedField_Message_copy_from(
|
|
dst: RawRepeatedField,
|
|
src: RawRepeatedField,
|
|
);
|
|
pub fn proto2_rust_RepeatedField_Message_reserve(field: RawRepeatedField, additional: usize);
|
|
}
|
|
|
|
/// Cast a `RepeatedView<SomeEnum>` to `RepeatedView<c_int>`.
|
|
pub fn cast_enum_repeated_view<E: Enum + ProxiedInRepeated>(
|
|
repeated: RepeatedView<E>,
|
|
) -> RepeatedView<c_int> {
|
|
// SAFETY: the implementer of `Enum` has promised that this
|
|
// raw repeated is a type-erased `proto2::RepeatedField<int>*`.
|
|
unsafe { RepeatedView::from_raw(Private, repeated.as_raw(Private)) }
|
|
}
|
|
|
|
/// Cast a `RepeatedMut<SomeEnum>` to `RepeatedMut<c_int>`.
|
|
///
|
|
/// Writing an unknown value is sound because all enums
|
|
/// are representationally open.
|
|
pub fn cast_enum_repeated_mut<E: Enum + ProxiedInRepeated>(
|
|
mut repeated: RepeatedMut<E>,
|
|
) -> RepeatedMut<c_int> {
|
|
// SAFETY: the implementer of `Enum` has promised that this
|
|
// raw repeated is a type-erased `proto2::RepeatedField<int>*`.
|
|
unsafe {
|
|
RepeatedMut::from_inner(
|
|
Private,
|
|
InnerRepeatedMut { raw: repeated.as_raw(Private), _phantom: PhantomData },
|
|
)
|
|
}
|
|
}
|
|
|
|
/// Cast a `RepeatedMut<SomeEnum>` to `RepeatedMut<c_int>` and call
|
|
/// repeated_reserve.
|
|
pub fn reserve_enum_repeated_mut<E: Enum + ProxiedInRepeated>(
|
|
repeated: RepeatedMut<E>,
|
|
additional: usize,
|
|
) {
|
|
let int_repeated = cast_enum_repeated_mut(repeated);
|
|
ProxiedInRepeated::repeated_reserve(int_repeated, additional);
|
|
}
|
|
|
|
pub fn new_enum_repeated<E: Enum + ProxiedInRepeated>() -> Repeated<E> {
|
|
let int_repeated = Repeated::<c_int>::new();
|
|
let raw = int_repeated.inner.raw();
|
|
std::mem::forget(int_repeated);
|
|
unsafe { Repeated::from_inner(Private, InnerRepeated::from_raw(raw)) }
|
|
}
|
|
|
|
/// Cast a `RepeatedMut<SomeEnum>` to `RepeatedMut<c_int>` and call
|
|
/// repeated_free.
|
|
/// # Safety
|
|
/// - The passed in `&mut Repeated<E>` must not be used after this function is
|
|
/// called.
|
|
pub unsafe fn free_enum_repeated<E: Enum + ProxiedInRepeated>(repeated: &mut Repeated<E>) {
|
|
unsafe {
|
|
let mut int_r: Repeated<c_int> =
|
|
Repeated::from_inner(Private, InnerRepeated::from_raw(repeated.inner.raw()));
|
|
ProxiedInRepeated::repeated_free(Private, &mut int_r);
|
|
std::mem::forget(int_r);
|
|
}
|
|
}
|
|
|
|
#[derive(Debug)]
|
|
#[doc(hidden)]
|
|
pub struct InnerMap {
|
|
pub(crate) raw: RawMap,
|
|
}
|
|
|
|
impl InnerMap {
|
|
pub fn new(raw: RawMap) -> Self {
|
|
Self { raw }
|
|
}
|
|
|
|
pub fn as_mut(&mut self) -> InnerMapMut<'_> {
|
|
InnerMapMut { raw: self.raw, _phantom: PhantomData }
|
|
}
|
|
}
|
|
|
|
#[derive(Clone, Copy, Debug)]
|
|
#[doc(hidden)]
|
|
pub struct InnerMapMut<'msg> {
|
|
pub(crate) raw: RawMap,
|
|
_phantom: PhantomData<&'msg ()>,
|
|
}
|
|
|
|
#[doc(hidden)]
|
|
impl<'msg> InnerMapMut<'msg> {
|
|
pub fn new(raw: RawMap) -> Self {
|
|
InnerMapMut { raw, _phantom: PhantomData }
|
|
}
|
|
|
|
pub fn as_raw(&self) -> RawMap {
|
|
self.raw
|
|
}
|
|
}
|
|
|
|
/// An untyped iterator in a map, produced via `.cbegin()` on a typed map.
|
|
///
|
|
/// This struct is ABI-compatible with `proto2::internal::UntypedMapIterator`.
|
|
/// It is trivially constructible and destructible.
|
|
#[repr(C)]
|
|
#[doc(hidden)]
|
|
pub struct UntypedMapIterator {
|
|
node: *mut c_void,
|
|
map: *const c_void,
|
|
bucket_index: u32,
|
|
}
|
|
|
|
impl UntypedMapIterator {
|
|
/// Returns `true` if this iterator is at the end of the map.
|
|
fn at_end(&self) -> bool {
|
|
// This behavior is verified via test `IteratorNodeFieldIsNullPtrAtEnd`.
|
|
self.node.is_null()
|
|
}
|
|
|
|
/// Assumes that the map iterator is for the input types, gets the current
|
|
/// entry, and moves the iterator forward to the next entry.
|
|
///
|
|
/// Conversion to and from FFI types is provided by the user.
|
|
/// This is a helper function for implementing
|
|
/// `ProxiedInMapValue::iter_next`.
|
|
///
|
|
/// # Safety
|
|
/// - The backing map must be valid and not be mutated for `'a`.
|
|
/// - The thunk must be safe to call if the iterator is not at the end of
|
|
/// the map.
|
|
/// - The thunk must always write to the `key` and `value` fields, but not
|
|
/// read from them.
|
|
/// - The get thunk must not move the iterator forward or backward.
|
|
#[inline(always)]
|
|
pub unsafe fn next_unchecked<'a, K, V, FfiKey, FfiValue>(
|
|
&mut self,
|
|
|
|
iter_get_thunk: unsafe fn(
|
|
iter: &mut UntypedMapIterator,
|
|
key: *mut FfiKey,
|
|
value: *mut FfiValue,
|
|
),
|
|
from_ffi_key: impl FnOnce(FfiKey) -> View<'a, K>,
|
|
from_ffi_value: impl FnOnce(FfiValue) -> View<'a, V>,
|
|
) -> Option<(View<'a, K>, View<'a, V>)>
|
|
where
|
|
K: Proxied + 'a,
|
|
V: ProxiedInMapValue<K> + 'a,
|
|
{
|
|
if self.at_end() {
|
|
return None;
|
|
}
|
|
let mut ffi_key = MaybeUninit::uninit();
|
|
let mut ffi_value = MaybeUninit::uninit();
|
|
// SAFETY:
|
|
// - The backing map outlives `'a`.
|
|
// - The iterator is not at the end (node is non-null).
|
|
// - `ffi_key` and `ffi_value` are not read (as uninit) as promised by the
|
|
// caller.
|
|
unsafe { (iter_get_thunk)(self, ffi_key.as_mut_ptr(), ffi_value.as_mut_ptr()) }
|
|
|
|
// SAFETY:
|
|
// - The backing map is alive as promised by the caller.
|
|
// - `self.at_end()` is false and the `get` does not change that.
|
|
// - `UntypedMapIterator` has the same ABI as
|
|
// `proto2::internal::UntypedMapIterator`. It is statically checked to be:
|
|
// - Trivially copyable.
|
|
// - Trivially destructible.
|
|
// - Standard layout.
|
|
// - The size and alignment of the Rust type above.
|
|
// - With the `node_` field first.
|
|
unsafe { proto2_rust_thunk_UntypedMapIterator_increment(self) }
|
|
|
|
// SAFETY:
|
|
// - The `get` function always writes valid values to `ffi_key` and `ffi_value`
|
|
// as promised by the caller.
|
|
unsafe {
|
|
Some((from_ffi_key(ffi_key.assume_init()), from_ffi_value(ffi_value.assume_init())))
|
|
}
|
|
}
|
|
}
|
|
|
|
// LINT.IfChange(map_ffi)
|
|
#[doc(hidden)]
|
|
#[repr(u8)]
|
|
#[derive(Debug, PartialEq)]
|
|
// Copy of UntypedMapBase::TypeKind
|
|
pub enum MapValueTag {
|
|
Bool,
|
|
U32,
|
|
U64,
|
|
F32,
|
|
F64,
|
|
String,
|
|
Message,
|
|
}
|
|
// For the purposes of FFI, we treat all integral types of a given size the same
|
|
// way. For example, u32 and i32 values are all represented as a u32.
|
|
// Likewise, u64 and i64 values are all stored in a u64.
|
|
#[doc(hidden)]
|
|
#[repr(C)]
|
|
pub union MapValueUnion {
|
|
pub b: bool,
|
|
pub u: u32,
|
|
pub uu: u64,
|
|
pub f: f32,
|
|
pub ff: f64,
|
|
// Generally speaking, if s is set then it should not be None. However, we
|
|
// do set it to None in the special case where the MapValue is just a
|
|
// "prototype" (see below). In that scenario, we just want to indicate the
|
|
// value type without having to allocate a real C++ std::string.
|
|
pub s: Option<CppStdString>,
|
|
pub m: RawMessage,
|
|
}
|
|
|
|
// We use this tagged union to represent map values for the purposes of FFI.
|
|
#[doc(hidden)]
|
|
#[repr(C)]
|
|
pub struct MapValue {
|
|
pub tag: MapValueTag,
|
|
pub val: MapValueUnion,
|
|
}
|
|
// LINT.ThenChange(//depot/google3/third_party/protobuf/rust/cpp_kernel/map.cc:
|
|
// map_ffi)
|
|
|
|
impl MapValue {
|
|
fn make_bool(b: bool) -> Self {
|
|
MapValue { tag: MapValueTag::Bool, val: MapValueUnion { b } }
|
|
}
|
|
|
|
pub fn make_u32(u: u32) -> Self {
|
|
MapValue { tag: MapValueTag::U32, val: MapValueUnion { u } }
|
|
}
|
|
|
|
fn make_u64(uu: u64) -> Self {
|
|
MapValue { tag: MapValueTag::U64, val: MapValueUnion { uu } }
|
|
}
|
|
|
|
pub fn make_f32(f: f32) -> Self {
|
|
MapValue { tag: MapValueTag::F32, val: MapValueUnion { f } }
|
|
}
|
|
|
|
fn make_f64(ff: f64) -> Self {
|
|
MapValue { tag: MapValueTag::F64, val: MapValueUnion { ff } }
|
|
}
|
|
|
|
fn make_string(s: CppStdString) -> Self {
|
|
MapValue { tag: MapValueTag::String, val: MapValueUnion { s: Some(s) } }
|
|
}
|
|
|
|
pub fn make_message(m: RawMessage) -> Self {
|
|
MapValue { tag: MapValueTag::Message, val: MapValueUnion { m } }
|
|
}
|
|
}
|
|
|
|
pub trait CppMapTypeConversions: Proxied {
|
|
// We have a notion of a map value "prototype", which is a MapValue that
|
|
// contains just enough information to indicate the value type of the map.
|
|
// We need this on the C++ side to be able to determine size and offset
|
|
// information about the map entry. For messages, the prototype is
|
|
// the message default instance. For all other types, it is just a MapValue
|
|
// with the appropriate tag.
|
|
fn get_prototype() -> MapValue;
|
|
|
|
fn to_map_value(self) -> MapValue;
|
|
|
|
/// # Safety
|
|
/// - `value` must store the correct type for `Self`. If it is a string or
|
|
/// bytes, then it must not be None. If `Self` is a closed enum, then
|
|
/// `value` must store a valid value for that enum. If `Self` is a
|
|
/// message, then `value` must store a message of the same type.
|
|
/// - The value must be valid for `'a` lifetime.
|
|
unsafe fn from_map_value<'a>(value: MapValue) -> View<'a, Self>;
|
|
|
|
/// # Safety
|
|
/// - `value` must store a message of the same type as `Self`.
|
|
/// - `value` must be valid and have exclusive mutable access for `'a` lifetime.
|
|
#[allow(unused_variables)]
|
|
unsafe fn mut_from_map_value<'a>(value: MapValue) -> Mut<'a, Self>
|
|
where
|
|
Self: Message,
|
|
{
|
|
panic!("mut_from_map_value is only implemented for messages")
|
|
}
|
|
}
|
|
|
|
impl CppMapTypeConversions for u32 {
|
|
fn get_prototype() -> MapValue {
|
|
MapValue::make_u32(0)
|
|
}
|
|
fn to_map_value(self) -> MapValue {
|
|
MapValue::make_u32(self)
|
|
}
|
|
unsafe fn from_map_value<'a>(value: MapValue) -> View<'a, Self> {
|
|
debug_assert_eq!(value.tag, MapValueTag::U32);
|
|
unsafe { value.val.u }
|
|
}
|
|
}
|
|
|
|
impl CppMapTypeConversions for i32 {
|
|
fn get_prototype() -> MapValue {
|
|
MapValue::make_u32(0)
|
|
}
|
|
fn to_map_value(self) -> MapValue {
|
|
MapValue::make_u32(self as u32)
|
|
}
|
|
unsafe fn from_map_value<'a>(value: MapValue) -> View<'a, Self> {
|
|
debug_assert_eq!(value.tag, MapValueTag::U32);
|
|
unsafe { value.val.u as i32 }
|
|
}
|
|
}
|
|
|
|
impl CppMapTypeConversions for u64 {
|
|
fn get_prototype() -> MapValue {
|
|
MapValue::make_u64(0)
|
|
}
|
|
fn to_map_value(self) -> MapValue {
|
|
MapValue::make_u64(self)
|
|
}
|
|
unsafe fn from_map_value<'a>(value: MapValue) -> View<'a, Self> {
|
|
debug_assert_eq!(value.tag, MapValueTag::U64);
|
|
unsafe { value.val.uu }
|
|
}
|
|
}
|
|
|
|
impl CppMapTypeConversions for i64 {
|
|
fn get_prototype() -> MapValue {
|
|
MapValue::make_u64(0)
|
|
}
|
|
fn to_map_value(self) -> MapValue {
|
|
MapValue::make_u64(self as u64)
|
|
}
|
|
unsafe fn from_map_value<'a>(value: MapValue) -> View<'a, Self> {
|
|
debug_assert_eq!(value.tag, MapValueTag::U64);
|
|
unsafe { value.val.uu as i64 }
|
|
}
|
|
}
|
|
|
|
impl CppMapTypeConversions for f32 {
|
|
fn get_prototype() -> MapValue {
|
|
MapValue::make_f32(0f32)
|
|
}
|
|
fn to_map_value(self) -> MapValue {
|
|
MapValue::make_f32(self)
|
|
}
|
|
unsafe fn from_map_value<'a>(value: MapValue) -> View<'a, Self> {
|
|
debug_assert_eq!(value.tag, MapValueTag::F32);
|
|
unsafe { value.val.f }
|
|
}
|
|
}
|
|
|
|
impl CppMapTypeConversions for f64 {
|
|
fn get_prototype() -> MapValue {
|
|
MapValue::make_f64(0.0)
|
|
}
|
|
fn to_map_value(self) -> MapValue {
|
|
MapValue::make_f64(self)
|
|
}
|
|
unsafe fn from_map_value<'a>(value: MapValue) -> View<'a, Self> {
|
|
debug_assert_eq!(value.tag, MapValueTag::F64);
|
|
unsafe { value.val.ff }
|
|
}
|
|
}
|
|
|
|
impl CppMapTypeConversions for bool {
|
|
fn get_prototype() -> MapValue {
|
|
MapValue::make_bool(false)
|
|
}
|
|
fn to_map_value(self) -> MapValue {
|
|
MapValue::make_bool(self)
|
|
}
|
|
unsafe fn from_map_value<'a>(value: MapValue) -> View<'a, Self> {
|
|
debug_assert_eq!(value.tag, MapValueTag::Bool);
|
|
unsafe { value.val.b }
|
|
}
|
|
}
|
|
|
|
impl CppMapTypeConversions for ProtoString {
|
|
fn get_prototype() -> MapValue {
|
|
MapValue { tag: MapValueTag::String, val: MapValueUnion { s: None } }
|
|
}
|
|
|
|
fn to_map_value(self) -> MapValue {
|
|
MapValue::make_string(protostr_into_cppstdstring(self))
|
|
}
|
|
|
|
unsafe fn from_map_value<'a>(value: MapValue) -> &'a ProtoStr {
|
|
debug_assert_eq!(value.tag, MapValueTag::String);
|
|
unsafe {
|
|
ProtoStr::from_utf8_unchecked(
|
|
ptrlen_to_str(proto2_rust_cpp_string_to_view(value.val.s.unwrap())).into(),
|
|
)
|
|
}
|
|
}
|
|
}
|
|
|
|
impl CppMapTypeConversions for ProtoBytes {
|
|
fn get_prototype() -> MapValue {
|
|
MapValue { tag: MapValueTag::String, val: MapValueUnion { s: None } }
|
|
}
|
|
|
|
fn to_map_value(self) -> MapValue {
|
|
MapValue::make_string(protobytes_into_cppstdstring(self))
|
|
}
|
|
|
|
unsafe fn from_map_value<'a>(value: MapValue) -> &'a [u8] {
|
|
debug_assert_eq!(value.tag, MapValueTag::String);
|
|
unsafe { proto2_rust_cpp_string_to_view(value.val.s.unwrap()).as_ref() }
|
|
}
|
|
}
|
|
|
|
// This trait encapsulates functionality that is specific to each map key type.
|
|
// We need this primarily so that we can call the appropriate FFI function for
|
|
// the key type.
|
|
#[doc(hidden)]
|
|
pub trait MapKey
|
|
where
|
|
Self: Proxied,
|
|
{
|
|
type FfiKey;
|
|
|
|
fn to_view<'a>(key: Self::FfiKey) -> View<'a, Self>;
|
|
|
|
unsafe fn insert(m: RawMap, key: View<'_, Self>, value: MapValue) -> bool;
|
|
|
|
unsafe fn get(m: RawMap, key: View<'_, Self>, value: *mut MapValue) -> bool;
|
|
|
|
unsafe fn iter_get(iter: &mut UntypedMapIterator, key: *mut Self::FfiKey, value: *mut MapValue);
|
|
|
|
unsafe fn remove(m: RawMap, key: View<'_, Self>) -> bool;
|
|
}
|
|
|
|
macro_rules! generate_map_key_impl {
|
|
( $($key:ty, $mutable_ffi_key:ty, $to_ffi:expr, $from_ffi:expr;)* ) => {
|
|
paste! {
|
|
$(
|
|
impl MapKey for $key {
|
|
type FfiKey = $mutable_ffi_key;
|
|
|
|
#[inline]
|
|
fn to_view<'a>(key: Self::FfiKey) -> View<'a, Self> {
|
|
$from_ffi(key)
|
|
}
|
|
|
|
#[inline]
|
|
unsafe fn insert(
|
|
m: RawMap,
|
|
key: View<'_, Self>,
|
|
value: MapValue,
|
|
) -> bool {
|
|
unsafe { [< proto2_rust_map_insert_ $key >](m, $to_ffi(key), value) }
|
|
}
|
|
|
|
#[inline]
|
|
unsafe fn get(
|
|
m: RawMap,
|
|
key: View<'_, Self>,
|
|
value: *mut MapValue,
|
|
) -> bool {
|
|
unsafe { [< proto2_rust_map_get_ $key >](m, $to_ffi(key), value) }
|
|
}
|
|
|
|
#[inline]
|
|
unsafe fn iter_get(
|
|
iter: &mut UntypedMapIterator,
|
|
key: *mut Self::FfiKey,
|
|
value: *mut MapValue,
|
|
) {
|
|
unsafe { [< proto2_rust_map_iter_get_ $key >](iter, key, value) }
|
|
}
|
|
|
|
#[inline]
|
|
unsafe fn remove(m: RawMap, key: View<'_, Self>) -> bool {
|
|
unsafe { [< proto2_rust_map_remove_ $key >](m, $to_ffi(key)) }
|
|
}
|
|
}
|
|
)*
|
|
}
|
|
}
|
|
}
|
|
|
|
generate_map_key_impl!(
|
|
bool, bool, identity, identity;
|
|
i32, i32, identity, identity;
|
|
u32, u32, identity, identity;
|
|
i64, i64, identity, identity;
|
|
u64, u64, identity, identity;
|
|
ProtoString, PtrAndLen, str_to_ptrlen, ptrlen_to_str;
|
|
);
|
|
|
|
impl<Key, Value> ProxiedInMapValue<Key> for Value
|
|
where
|
|
Key: Proxied + MapKey + CppMapTypeConversions,
|
|
Value: Proxied + CppMapTypeConversions,
|
|
{
|
|
fn map_new(_private: Private) -> Map<Key, Self> {
|
|
unsafe {
|
|
Map::from_inner(
|
|
Private,
|
|
InnerMap::new(proto2_rust_map_new(Key::get_prototype(), Value::get_prototype())),
|
|
)
|
|
}
|
|
}
|
|
|
|
unsafe fn map_free(_private: Private, map: &mut Map<Key, Self>) {
|
|
unsafe {
|
|
proto2_rust_map_free(map.as_raw(Private));
|
|
}
|
|
}
|
|
|
|
fn map_clear(mut map: MapMut<Key, Self>) {
|
|
unsafe {
|
|
proto2_rust_map_clear(map.as_raw(Private));
|
|
}
|
|
}
|
|
|
|
fn map_len(map: MapView<Key, Self>) -> usize {
|
|
unsafe { proto2_rust_map_size(map.as_raw(Private)) }
|
|
}
|
|
|
|
fn map_insert(
|
|
mut map: MapMut<Key, Self>,
|
|
key: View<'_, Key>,
|
|
value: impl IntoProxied<Self>,
|
|
) -> bool {
|
|
unsafe { Key::insert(map.as_raw(Private), key, value.into_proxied(Private).to_map_value()) }
|
|
}
|
|
|
|
fn map_get<'a>(map: MapView<'a, Key, Self>, key: View<'_, Key>) -> Option<View<'a, Self>> {
|
|
let mut value = std::mem::MaybeUninit::uninit();
|
|
let found = unsafe { Key::get(map.as_raw(Private), key, value.as_mut_ptr()) };
|
|
if !found {
|
|
return None;
|
|
}
|
|
unsafe { Some(Self::from_map_value(value.assume_init())) }
|
|
}
|
|
|
|
fn map_get_mut<'a>(mut map: MapMut<'a, Key, Self>, key: View<'_, Key>) -> Option<Mut<'a, Self>>
|
|
where
|
|
Value: Message,
|
|
{
|
|
let mut value = std::mem::MaybeUninit::uninit();
|
|
let found = unsafe { Key::get(map.as_raw(Private), key, value.as_mut_ptr()) };
|
|
if !found {
|
|
return None;
|
|
}
|
|
// SAFETY: `value` has been initialized because it was found.
|
|
// - `value` is a message as required by the trait.
|
|
// - `value` is valid for the `'a` lifetime of the `MapMut`.
|
|
unsafe { Some(Self::mut_from_map_value(value.assume_init())) }
|
|
}
|
|
|
|
fn map_remove(mut map: MapMut<Key, Self>, key: View<'_, Key>) -> bool {
|
|
unsafe { Key::remove(map.as_raw(Private), key) }
|
|
}
|
|
|
|
fn map_iter(map: MapView<Key, Self>) -> MapIter<Key, Self> {
|
|
// SAFETY:
|
|
// - The backing map for `map.as_raw` is valid for at least '_.
|
|
// - A View that is live for '_ guarantees the backing map is unmodified for '_.
|
|
// - The `iter` function produces an iterator that is valid for the key and
|
|
// value types, and live for at least '_.
|
|
unsafe { MapIter::from_raw(Private, proto2_rust_map_iter(map.as_raw(Private))) }
|
|
}
|
|
|
|
fn map_iter_next<'a>(
|
|
iter: &mut MapIter<'a, Key, Self>,
|
|
) -> Option<(View<'a, Key>, View<'a, Self>)> {
|
|
// SAFETY:
|
|
// - The `MapIter` API forbids the backing map from being mutated for 'a, and
|
|
// guarantees that it's the correct key and value types.
|
|
// - The thunk is safe to call as long as the iterator isn't at the end.
|
|
// - The thunk always writes to key and value fields and does not read.
|
|
// - The thunk does not increment the iterator.
|
|
unsafe {
|
|
iter.as_raw_mut(Private).next_unchecked::<Key, Self, _, _>(
|
|
|iter, key, value| Key::iter_get(iter, key, value),
|
|
|ffi_key| Key::to_view(ffi_key),
|
|
|value| Self::from_map_value(value),
|
|
)
|
|
}
|
|
}
|
|
}
|
|
|
|
macro_rules! impl_map_primitives {
|
|
(@impl $(($rust_type:ty, $cpp_type:ty) => [
|
|
$insert_thunk:ident,
|
|
$get_thunk:ident,
|
|
$iter_get_thunk:ident,
|
|
$remove_thunk:ident,
|
|
]),* $(,)?) => {
|
|
$(
|
|
unsafe extern "C" {
|
|
pub fn $insert_thunk(
|
|
m: RawMap,
|
|
key: $cpp_type,
|
|
value: MapValue,
|
|
) -> bool;
|
|
pub fn $get_thunk(
|
|
m: RawMap,
|
|
key: $cpp_type,
|
|
value: *mut MapValue,
|
|
) -> bool;
|
|
pub fn $iter_get_thunk(
|
|
iter: &mut UntypedMapIterator,
|
|
key: *mut $cpp_type,
|
|
value: *mut MapValue,
|
|
);
|
|
pub fn $remove_thunk(m: RawMap, key: $cpp_type) -> bool;
|
|
}
|
|
)*
|
|
};
|
|
($($rust_type:ty, $cpp_type:ty;)* $(,)?) => {
|
|
paste!{
|
|
impl_map_primitives!(@impl $(
|
|
($rust_type, $cpp_type) => [
|
|
[< proto2_rust_map_insert_ $rust_type >],
|
|
[< proto2_rust_map_get_ $rust_type >],
|
|
[< proto2_rust_map_iter_get_ $rust_type >],
|
|
[< proto2_rust_map_remove_ $rust_type >],
|
|
],
|
|
)*);
|
|
}
|
|
};
|
|
}
|
|
|
|
impl_map_primitives!(
|
|
i32, i32;
|
|
u32, u32;
|
|
i64, i64;
|
|
u64, u64;
|
|
bool, bool;
|
|
ProtoString, PtrAndLen;
|
|
);
|
|
|
|
unsafe extern "C" {
|
|
fn proto2_rust_thunk_UntypedMapIterator_increment(iter: &mut UntypedMapIterator);
|
|
|
|
pub fn proto2_rust_map_new(key_prototype: MapValue, value_prototype: MapValue) -> RawMap;
|
|
pub fn proto2_rust_map_free(m: RawMap);
|
|
pub fn proto2_rust_map_clear(m: RawMap);
|
|
pub fn proto2_rust_map_size(m: RawMap) -> usize;
|
|
pub fn proto2_rust_map_iter(m: RawMap) -> UntypedMapIterator;
|
|
}
|
|
|
|
fn str_to_ptrlen<'msg>(val: impl Into<&'msg ProtoStr>) -> PtrAndLen {
|
|
val.into().as_bytes().into()
|
|
}
|
|
|
|
// Warning: this function is unsound on its own! `val.as_ref()` must be safe to
|
|
// call.
|
|
fn ptrlen_to_str<'msg>(val: PtrAndLen) -> &'msg ProtoStr {
|
|
unsafe { ProtoStr::from_utf8_unchecked(val.as_ref()) }
|
|
}
|
|
|
|
fn protostr_into_cppstdstring(val: ProtoString) -> CppStdString {
|
|
val.into_inner(Private).into_raw()
|
|
}
|
|
|
|
fn protobytes_into_cppstdstring(val: ProtoBytes) -> CppStdString {
|
|
val.into_inner(Private).into_raw()
|
|
}
|
|
|
|
// Warning: this function is unsound on its own! `val.as_ref()` must be safe to
|
|
// call.
|
|
fn ptrlen_to_bytes<'msg>(val: PtrAndLen) -> &'msg [u8] {
|
|
unsafe { val.as_ref() }
|
|
}
|
|
|
|
/// Internal-only trait to support blanket impls that need const access to raw messages
|
|
/// on codegen. Should never be used by application code.
|
|
#[doc(hidden)]
|
|
pub unsafe trait CppGetRawMessage: SealedInternal {
|
|
fn get_raw_message(&self, _private: Private) -> RawMessage;
|
|
}
|
|
|
|
// The generated code only implements this trait on View proxies, so we use a blanket
|
|
// implementation for owned messages and Mut proxies.
|
|
unsafe impl<T> CppGetRawMessage for T
|
|
where
|
|
Self: AsMut + AsView,
|
|
for<'a> View<'a, <Self as AsView>::Proxied>: CppGetRawMessage,
|
|
{
|
|
fn get_raw_message(&self, _private: Private) -> RawMessage {
|
|
self.as_view().get_raw_message(_private)
|
|
}
|
|
}
|
|
|
|
/// Internal-only trait to support blanket impls that need mutable access to raw messages
|
|
/// on codegen. Must not be implemented on View proxies. Should never be used by application code.
|
|
#[doc(hidden)]
|
|
pub unsafe trait CppGetRawMessageMut: SealedInternal {
|
|
fn get_raw_message_mut(&mut self, _private: Private) -> RawMessage;
|
|
}
|
|
|
|
// The generated code only implements this trait on Mut proxies, so we use a blanket implementation
|
|
// for owned messages.
|
|
unsafe impl<T> CppGetRawMessageMut for T
|
|
where
|
|
Self: MutProxied,
|
|
for<'a> Mut<'a, Self>: CppGetRawMessageMut,
|
|
{
|
|
fn get_raw_message_mut(&mut self, _private: Private) -> RawMessage {
|
|
self.as_mut().get_raw_message_mut(_private)
|
|
}
|
|
}
|
|
|
|
impl<'a, T> MessageMutInterop<'a> for T
|
|
where
|
|
Self: AsMut + CppGetRawMessageMut + From<MessageMutInner<'a, <Self as AsMut>::MutProxied>>,
|
|
<Self as AsMut>::MutProxied: Message,
|
|
{
|
|
unsafe fn __unstable_wrap_raw_message_mut(msg: &'a mut *mut std::ffi::c_void) -> Self {
|
|
let raw = RawMessage::new(*msg as *mut _).unwrap();
|
|
let inner = unsafe { MessageMutInner::wrap_raw(raw) };
|
|
inner.into()
|
|
}
|
|
unsafe fn __unstable_wrap_raw_message_mut_unchecked_lifetime(
|
|
msg: *mut std::ffi::c_void,
|
|
) -> Self {
|
|
let raw = RawMessage::new(msg as *mut _).unwrap();
|
|
let inner = unsafe { MessageMutInner::wrap_raw(raw) };
|
|
inner.into()
|
|
}
|
|
fn __unstable_as_raw_message_mut(&mut self) -> *mut std::ffi::c_void {
|
|
self.get_raw_message_mut(Private).as_ptr() as *mut _
|
|
}
|
|
}
|
|
|
|
impl<T> MatcherEq for T
|
|
where
|
|
Self: AsView + Debug,
|
|
for<'a> View<'a, <Self as AsView>::Proxied>: CppGetRawMessage,
|
|
{
|
|
fn matches(&self, o: &Self) -> bool {
|
|
unsafe {
|
|
raw_message_equals(
|
|
self.as_view().get_raw_message(Private),
|
|
o.as_view().get_raw_message(Private),
|
|
)
|
|
}
|
|
}
|
|
}
|
|
|
|
impl<T: CppGetRawMessageMut> Clear for T {
|
|
fn clear(&mut self) {
|
|
unsafe { proto2_rust_Message_clear(self.get_raw_message_mut(Private)) }
|
|
}
|
|
}
|
|
|
|
impl<T: CppGetRawMessageMut> ClearAndParse for T {
|
|
fn clear_and_parse(&mut self, data: &[u8]) -> Result<(), ParseError> {
|
|
unsafe { proto2_rust_Message_parse(self.get_raw_message_mut(Private), data.into()) }
|
|
.then_some(())
|
|
.ok_or(ParseError)
|
|
}
|
|
|
|
fn clear_and_parse_dont_enforce_required(&mut self, data: &[u8]) -> Result<(), ParseError> {
|
|
unsafe {
|
|
proto2_rust_Message_parse_dont_enforce_required(
|
|
self.get_raw_message_mut(Private),
|
|
data.into(),
|
|
)
|
|
}
|
|
.then_some(())
|
|
.ok_or(ParseError)
|
|
}
|
|
}
|
|
|
|
impl<T: CppGetRawMessage> Serialize for T {
|
|
fn serialize(&self) -> Result<Vec<u8>, SerializeError> {
|
|
let mut serialized_data = SerializedData::new();
|
|
let success = unsafe {
|
|
proto2_rust_Message_serialize(self.get_raw_message(Private), &mut serialized_data)
|
|
};
|
|
if success {
|
|
Ok(serialized_data.into_vec())
|
|
} else {
|
|
Err(SerializeError)
|
|
}
|
|
}
|
|
}
|
|
|
|
impl<T> TakeFrom for T
|
|
where
|
|
Self: CopyFrom + AsMut,
|
|
for<'a> Mut<'a, <Self as AsMut>::MutProxied>: Clear,
|
|
{
|
|
fn take_from(&mut self, mut src: impl AsMut<MutProxied = Self::Proxied>) {
|
|
let mut src = src.as_mut();
|
|
// TODO: b/393559271 - Optimize this copy out.
|
|
CopyFrom::copy_from(self, AsView::as_view(&src));
|
|
Clear::clear(&mut src);
|
|
}
|
|
}
|
|
|
|
impl<T> CopyFrom for T
|
|
where
|
|
Self: AsMut,
|
|
for<'a> View<'a, Self::Proxied>: CppGetRawMessage,
|
|
for<'a> Mut<'a, Self::Proxied>: CppGetRawMessageMut,
|
|
{
|
|
fn copy_from(&mut self, src: impl AsView<Proxied = Self::Proxied>) {
|
|
unsafe {
|
|
proto2_rust_Message_copy_from(
|
|
self.as_mut().get_raw_message_mut(Private),
|
|
src.as_view().get_raw_message(Private),
|
|
);
|
|
}
|
|
}
|
|
}
|
|
|
|
impl<T> MergeFrom for T
|
|
where
|
|
Self: AsMut,
|
|
for<'a> View<'a, Self::Proxied>: CppGetRawMessage,
|
|
for<'a> Mut<'a, Self::Proxied>: CppGetRawMessageMut,
|
|
{
|
|
fn merge_from(&mut self, src: impl AsView<Proxied = Self::Proxied>) {
|
|
// SAFETY: self and src are both valid `T`s.
|
|
unsafe {
|
|
proto2_rust_Message_merge_from(
|
|
self.as_mut().get_raw_message_mut(Private),
|
|
src.as_view().get_raw_message(Private),
|
|
);
|
|
}
|
|
}
|
|
}
|
|
|
|
#[cfg(test)]
|
|
mod tests {
|
|
use super::*;
|
|
use googletest::prelude::*;
|
|
|
|
// We need to allocate the byte array so SerializedData can own it and
|
|
// deallocate it in its drop. This function makes it easier to do so for our
|
|
// tests.
|
|
fn allocate_byte_array(content: &'static [u8]) -> (*mut u8, usize) {
|
|
let content: &mut [u8] = Box::leak(content.into());
|
|
(content.as_mut_ptr(), content.len())
|
|
}
|
|
|
|
#[gtest]
|
|
fn test_serialized_data_roundtrip() {
|
|
let (ptr, len) = allocate_byte_array(b"Hello world");
|
|
let serialized_data = SerializedData { data: NonNull::new(ptr).unwrap(), len };
|
|
assert_that!(&*serialized_data, eq(b"Hello world"));
|
|
}
|
|
|
|
#[gtest]
|
|
fn test_empty_string() {
|
|
let empty_str: String = RustStringRawParts { data: std::ptr::null(), len: 0 }.into();
|
|
assert_that!(empty_str, eq(""));
|
|
}
|
|
}
|