mirror of
https://chromium.googlesource.com/crosvm/crosvm
synced 2024-11-24 20:48:55 +00:00
a446434855
BUG=None TEST=None Change-Id: I6db08c2ccfc616e4e34ad0219580c084dda34675 Reviewed-on: https://chromium-review.googlesource.com/1475058 Commit-Ready: Miriam Zimmerman <mutexlox@chromium.org> Tested-by: Miriam Zimmerman <mutexlox@chromium.org> Tested-by: kokoro <noreply+kokoro@google.com> Reviewed-by: Dylan Reid <dgreid@chromium.org>
583 lines
22 KiB
Rust
583 lines
22 KiB
Rust
// Copyright 2018 The Chromium OS Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#![recursion_limit = "256"]
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extern crate proc_macro;
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extern crate proc_macro2;
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#[macro_use]
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extern crate quote;
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#[macro_use]
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extern crate syn;
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use std::string::String;
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use std::vec::Vec;
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use proc_macro2::{Span, TokenStream};
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use syn::{Data, DeriveInput, Fields, Ident};
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type Result<T> = std::result::Result<T, String>;
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/// The function that derives the actual implementation.
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#[proc_macro_attribute]
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pub fn bitfield(
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_args: proc_macro::TokenStream,
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input: proc_macro::TokenStream,
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) -> proc_macro::TokenStream {
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let derive_input = parse_macro_input!(input as DeriveInput);
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bitfield_impl(derive_input).into()
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}
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fn bitfield_impl(ast: DeriveInput) -> TokenStream {
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if !ast.generics.params.is_empty() {
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return quote! {
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compile_error!("#[bitfield] does not support generic parameters");
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};
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}
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let name = ast.ident.clone();
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let test_mod_ident = Ident::new(
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format!("test_{}", name.to_string().to_lowercase()).as_str(),
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Span::call_site(),
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);
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let vis = ast.vis.clone();
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let attrs = ast.attrs.clone();
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// Visibility.
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let vis = quote!(#vis);
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let fields = match get_struct_fields(ast) {
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Ok(f) => f,
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Err(err_str) => {
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return quote! {
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compile_error!(#err_str);
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};
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}
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};
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let struct_def = get_struct_def(&vis, &name, fields.as_slice());
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let bits_impl = get_bits_impl(&name);
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let fields_impl = get_fields_impl(fields.as_slice());
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let tests_impl = get_tests_impl(&name, fields.as_slice());
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let debug_fmt_impl = get_debug_fmt_impl(&name, fields.as_slice());
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quote! {
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#(#attrs)*
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#struct_def
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#bits_impl
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impl #name {
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#(#fields_impl)*
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}
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#debug_fmt_impl
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#[cfg(test)]
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mod #test_mod_ident {
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use super::*;
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#(#tests_impl)*
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}
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}
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}
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// Unwrap ast to get the named fields. Anything unexpected will be treated as an
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// error.
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// We only care about field names and types.
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// "myfield : BitField3" -> ("myfield", Token(BitField3))
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fn get_struct_fields(ast: DeriveInput) -> Result<Vec<(String, TokenStream)>> {
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let fields = match ast.data {
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Data::Struct(data_struct) => match data_struct.fields {
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Fields::Named(fields_named) => fields_named.named,
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_ => {
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return Err(format!("Schema must have named fields."));
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}
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},
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_ => {
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return Err(format!("Schema must be a struct."));
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}
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};
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let mut vec = Vec::new();
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for field in fields {
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let ident = match field.ident {
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Some(ident) => ident,
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None => {
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return Err(format!(
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"Unknown Error. bit_field_derive library might have a bug."
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));
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}
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};
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let ty = field.ty;
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vec.push((ident.to_string(), quote!(#ty)));
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}
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Ok(vec)
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}
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fn get_struct_def(
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vis: &TokenStream,
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name: &Ident,
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fields: &[(String, TokenStream)],
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) -> TokenStream {
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let mut field_types = Vec::new();
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for &(ref _name, ref ty) in fields {
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field_types.push(ty.clone());
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}
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// `(BitField1::FIELD_WIDTH + BitField3::FIELD_WIDTH + ...)`
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let data_size_in_bits = quote! {
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(
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#(
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<#field_types as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize
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)+*
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)
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};
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quote! {
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#[repr(C)]
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#vis struct #name {
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data: [u8; #data_size_in_bits / 8],
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}
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impl #name {
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pub fn new() -> #name {
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let _: ::bit_field::Check<[u8; #data_size_in_bits % 8]>;
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#name {
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data: [0; #data_size_in_bits / 8],
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}
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}
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}
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}
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}
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// Implement setter and getter for all fields.
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fn get_fields_impl(fields: &[(String, TokenStream)]) -> Vec<TokenStream> {
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let mut impls = Vec::new();
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// This vec keeps track of types before this field, used to generate the offset.
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let mut current_types = vec![quote!(::bit_field::BitField0)];
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for &(ref name, ref ty) in fields {
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// Creating two copies of current types. As they are going to be moved in quote!.
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let ct0 = current_types.clone();
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let ct1 = current_types.clone();
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let getter_ident = Ident::new(format!("get_{}", name).as_str(), Span::call_site());
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let setter_ident = Ident::new(format!("set_{}", name).as_str(), Span::call_site());
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impls.push(quote! {
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pub fn #getter_ident(&self) -> <#ty as ::bit_field::BitFieldSpecifier>::DefaultFieldType {
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let offset = #(<#ct0 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize)+*;
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let val = self.get(offset, <#ty as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH);
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<#ty as ::bit_field::BitFieldSpecifier>::from_u64(val)
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}
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pub fn #setter_ident(&mut self, val: <#ty as ::bit_field::BitFieldSpecifier>::DefaultFieldType) {
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let val = <#ty as ::bit_field::BitFieldSpecifier>::into_u64(val);
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debug_assert!(val <= ::bit_field::max::<#ty>());
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let offset = #(<#ct1 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize)+*;
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self.set(offset, <#ty as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH, val)
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}
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});
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current_types.push(ty.clone());
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}
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impls
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}
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// Implement setter and getter for all fields.
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fn get_debug_fmt_impl(name: &Ident, fields: &[(String, TokenStream)]) -> TokenStream {
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// print fields:
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let mut impls = Vec::new();
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for &(ref name, ref _ty) in fields {
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let getter_ident = Ident::new(format!("get_{}", name).as_str(), Span::call_site());
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impls.push(quote! {
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.field(#name, &self.#getter_ident())
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});
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}
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let name_str = format!("{}", name);
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quote! {
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impl std::fmt::Debug for #name {
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fn fmt(&self, f: &mut std::fmt::Formatter) -> std::fmt::Result {
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f.debug_struct(#name_str)
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#(#impls)*
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.finish()
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}
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}
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}
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}
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// Implement test.
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fn get_tests_impl(struct_name: &Ident, fields: &[(String, TokenStream)]) -> Vec<TokenStream> {
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let mut field_types = Vec::new();
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for &(ref _name, ref ty) in fields {
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field_types.push(ty.clone());
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}
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let field_types2 = field_types.clone();
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let mut impls = Vec::new();
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impls.push(quote! {
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#[test]
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fn test_total_size() {
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let total_size = #(<#field_types as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize)+*;
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assert_eq!(total_size % 8, 0);
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}
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});
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impls.push(quote! {
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#[test]
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fn test_bits_boundary() {
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let fields_sizes = vec![#(<#field_types2 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize),*];
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let mut sum = 0usize;
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for s in fields_sizes {
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if sum % 64 == 0 {
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assert!(s <= 64);
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} else {
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if (sum + s) % 64 != 0 {
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assert_eq!(sum / 64, (sum + s) / 64);
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}
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}
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sum += s;
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}
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}
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});
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for &(ref name, ref ty) in fields {
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let testname = Ident::new(
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format!("test_{}", name.as_str()).as_str(),
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Span::call_site(),
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);
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let getter_ident = Ident::new(format!("get_{}", name.as_str()).as_str(), Span::call_site());
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let setter_ident = Ident::new(format!("set_{}", name.as_str()).as_str(), Span::call_site());
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impls.push(quote! {
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#[test]
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fn #testname() {
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let mut a = #struct_name::new();
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let val = <#ty as ::bit_field::BitFieldSpecifier>::into_u64(a.#getter_ident());
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assert_eq!(val, 0);
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let val = <#ty as ::bit_field::BitFieldSpecifier>::from_u64(::bit_field::max::<#ty>());
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a.#setter_ident(val);
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let val = <#ty as ::bit_field::BitFieldSpecifier>::into_u64(a.#getter_ident());
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assert_eq!(val, ::bit_field::max::<#ty>());
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}
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});
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}
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impls
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}
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fn get_bits_impl(name: &Ident) -> TokenStream {
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quote! {
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impl #name {
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#[inline]
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fn check_access(&self, offset: usize, width: u8) {
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debug_assert!(width <= 64);
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debug_assert!(offset / 8 < self.data.len());
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debug_assert!((offset + (width as usize)) <= (self.data.len() * 8));
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}
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#[inline]
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pub fn get_bit(&self, offset: usize) -> bool {
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self.check_access(offset, 1);
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let byte_index = offset / 8;
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let bit_offset = offset % 8;
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let byte = self.data[byte_index];
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let mask = 1 << bit_offset;
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byte & mask == mask
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}
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#[inline]
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pub fn set_bit(&mut self, offset: usize, val: bool) {
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self.check_access(offset, 1);
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let byte_index = offset / 8;
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let bit_offset = offset % 8;
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let byte = &mut self.data[byte_index];
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let mask = 1 << bit_offset;
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if val {
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*byte |= mask;
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} else {
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*byte &= !mask;
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}
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}
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#[inline]
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pub fn get(&self, offset: usize, width: u8) -> u64 {
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self.check_access(offset, width);
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let mut val = 0;
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for i in 0..(width as usize) {
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if self.get_bit(i + offset) {
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val |= 1 << i;
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}
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}
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val
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}
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#[inline]
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pub fn set(&mut self, offset: usize, width: u8, val: u64) {
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self.check_access(offset, width);
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for i in 0..(width as usize) {
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let mask = 1 << i;
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let val_bit_is_set = val & mask == mask;
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self.set_bit(i + offset, val_bit_is_set);
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}
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}
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}
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}
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}
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// Only intended to be used from the bit_field crate. This macro emits the
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// marker types bit_field::BitField0 through bit_field::BitField64.
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#[proc_macro]
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#[doc(hidden)]
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pub fn define_bit_field_specifiers(_input: proc_macro::TokenStream) -> proc_macro::TokenStream {
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let mut code = TokenStream::new();
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for width in 0u8..=64 {
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let span = Span::call_site();
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let long_name = Ident::new(&format!("BitField{}", width), span);
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let short_name = Ident::new(&format!("B{}", width), span);
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let default_field_type = if width <= 8 {
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quote!(u8)
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} else if width <= 16 {
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quote!(u16)
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} else if width <= 32 {
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quote!(u32)
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} else {
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quote!(u64)
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};
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code.extend(quote! {
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pub struct #long_name;
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pub use self::#long_name as #short_name;
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impl BitFieldSpecifier for #long_name {
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const FIELD_WIDTH: u8 = #width;
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type DefaultFieldType = #default_field_type;
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#[inline]
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fn from_u64(val: u64) -> Self::DefaultFieldType {
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val as Self::DefaultFieldType
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}
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#[inline]
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fn into_u64(val: Self::DefaultFieldType) -> u64 {
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val as u64
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}
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}
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impl private::Sealed for #long_name {}
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});
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}
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code.into()
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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#[test]
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fn end_to_end() {
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let input: DeriveInput = parse_quote! {
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#[derive(Clone)]
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struct MyBitField {
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a: BitField1,
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b: BitField2,
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c: BitField5,
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}
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};
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let expected = quote! {
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#[derive(Clone)]
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#[repr(C)]
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struct MyBitField {
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data: [u8; (<BitField1 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize
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+ <BitField2 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize
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+ <BitField5 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize)
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/ 8],
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}
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impl MyBitField {
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pub fn new() -> MyBitField {
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let _: ::bit_field::Check<[
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u8;
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(<BitField1 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize
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+ <BitField2 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize
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+ <BitField5 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize)
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% 8
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]>;
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MyBitField {
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data: [0; (<BitField1 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize
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+ <BitField2 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize
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+ <BitField5 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize)
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/ 8],
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}
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}
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}
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impl MyBitField {
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#[inline]
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fn check_access(&self, offset: usize, width: u8) {
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debug_assert!(width <= 64);
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debug_assert!(offset / 8 < self.data.len());
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debug_assert!((offset + (width as usize)) <= (self.data.len() * 8));
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}
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#[inline]
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pub fn get_bit(&self, offset: usize) -> bool {
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self.check_access(offset, 1);
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let byte_index = offset / 8;
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let bit_offset = offset % 8;
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let byte = self.data[byte_index];
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let mask = 1 << bit_offset;
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byte & mask == mask
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}
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#[inline]
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pub fn set_bit(&mut self, offset: usize, val: bool) {
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self.check_access(offset, 1);
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let byte_index = offset / 8;
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let bit_offset = offset % 8;
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let byte = &mut self.data[byte_index];
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let mask = 1 << bit_offset;
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if val {
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*byte |= mask;
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} else {
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*byte &= !mask;
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}
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}
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#[inline]
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pub fn get(&self, offset: usize, width: u8) -> u64 {
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self.check_access(offset, width);
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let mut val = 0;
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for i in 0..(width as usize) {
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if self.get_bit(i + offset) {
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val |= 1 << i;
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}
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}
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val
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}
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#[inline]
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pub fn set(&mut self, offset: usize, width: u8, val: u64) {
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self.check_access(offset, width);
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for i in 0..(width as usize) {
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let mask = 1 << i;
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let val_bit_is_set = val & mask == mask;
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self.set_bit(i + offset, val_bit_is_set);
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}
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}
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}
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impl MyBitField {
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pub fn get_a(&self) -> <BitField1 as ::bit_field::BitFieldSpecifier>::DefaultFieldType {
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let offset = <::bit_field::BitField0 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize;
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let val = self.get(offset, <BitField1 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH);
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<BitField1 as ::bit_field::BitFieldSpecifier>::from_u64(val)
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}
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pub fn set_a(&mut self, val: <BitField1 as ::bit_field::BitFieldSpecifier>::DefaultFieldType) {
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let val = <BitField1 as ::bit_field::BitFieldSpecifier>::into_u64(val);
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debug_assert!(val <= ::bit_field::max::<BitField1>());
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let offset = <::bit_field::BitField0 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize;
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self.set(offset, <BitField1 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH, val)
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}
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pub fn get_b(&self) -> <BitField2 as ::bit_field::BitFieldSpecifier>::DefaultFieldType {
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let offset = <::bit_field::BitField0 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize
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+ <BitField1 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize;
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let val = self.get(offset, <BitField2 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH);
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<BitField2 as ::bit_field::BitFieldSpecifier>::from_u64(val)
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}
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pub fn set_b(&mut self, val: <BitField2 as ::bit_field::BitFieldSpecifier>::DefaultFieldType) {
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let val = <BitField2 as ::bit_field::BitFieldSpecifier>::into_u64(val);
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debug_assert!(val <= ::bit_field::max::<BitField2>());
|
|
let offset = <::bit_field::BitField0 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize
|
|
+ <BitField1 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize;
|
|
self.set(offset, <BitField2 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH, val)
|
|
}
|
|
pub fn get_c(&self) -> <BitField5 as ::bit_field::BitFieldSpecifier>::DefaultFieldType {
|
|
let offset = <::bit_field::BitField0 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize
|
|
+ <BitField1 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize
|
|
+ <BitField2 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize;
|
|
let val = self.get(offset, <BitField5 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH);
|
|
<BitField5 as ::bit_field::BitFieldSpecifier>::from_u64(val)
|
|
}
|
|
pub fn set_c(&mut self, val: <BitField5 as ::bit_field::BitFieldSpecifier>::DefaultFieldType) {
|
|
let val = <BitField5 as ::bit_field::BitFieldSpecifier>::into_u64(val);
|
|
debug_assert!(val <= ::bit_field::max::<BitField5>());
|
|
let offset = <::bit_field::BitField0 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize
|
|
+ <BitField1 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize
|
|
+ <BitField2 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize;
|
|
self.set(offset, <BitField5 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH, val)
|
|
}
|
|
}
|
|
impl std::fmt::Debug for MyBitField {
|
|
fn fmt(&self, f: &mut std::fmt::Formatter) -> std::fmt::Result {
|
|
f.debug_struct("MyBitField")
|
|
.field("a", &self.get_a())
|
|
.field("b", &self.get_b())
|
|
.field("c", &self.get_c())
|
|
.finish()
|
|
}
|
|
}
|
|
#[cfg(test)]
|
|
mod test_mybitfield {
|
|
use super::*;
|
|
#[test]
|
|
fn test_total_size() {
|
|
let total_size = <BitField1 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize
|
|
+ <BitField2 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize
|
|
+ <BitField5 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize;
|
|
assert_eq!(total_size % 8, 0);
|
|
}
|
|
#[test]
|
|
fn test_bits_boundary() {
|
|
let fields_sizes = vec![
|
|
<BitField1 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize,
|
|
<BitField2 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize,
|
|
<BitField5 as ::bit_field::BitFieldSpecifier>::FIELD_WIDTH as usize
|
|
];
|
|
let mut sum = 0usize;
|
|
for s in fields_sizes {
|
|
if sum % 64 == 0 {
|
|
assert!(s <= 64);
|
|
} else {
|
|
if (sum + s) % 64 != 0 {
|
|
assert_eq!(sum / 64, (sum + s) / 64);
|
|
}
|
|
}
|
|
sum += s;
|
|
}
|
|
}
|
|
#[test]
|
|
fn test_a() {
|
|
let mut a = MyBitField::new();
|
|
let val = <BitField1 as ::bit_field::BitFieldSpecifier>::into_u64(a.get_a());
|
|
assert_eq!(val, 0);
|
|
let val = <BitField1 as ::bit_field::BitFieldSpecifier>::from_u64(::bit_field::max::<BitField1>());
|
|
a.set_a(val);
|
|
let val = <BitField1 as ::bit_field::BitFieldSpecifier>::into_u64(a.get_a());
|
|
assert_eq!(val, ::bit_field::max::<BitField1>());
|
|
}
|
|
#[test]
|
|
fn test_b() {
|
|
let mut a = MyBitField::new();
|
|
let val = <BitField2 as ::bit_field::BitFieldSpecifier>::into_u64(a.get_b());
|
|
assert_eq!(val, 0);
|
|
let val = <BitField2 as ::bit_field::BitFieldSpecifier>::from_u64(::bit_field::max::<BitField2>());
|
|
a.set_b(val);
|
|
let val = <BitField2 as ::bit_field::BitFieldSpecifier>::into_u64(a.get_b());
|
|
assert_eq!(val, ::bit_field::max::<BitField2>());
|
|
}
|
|
#[test]
|
|
fn test_c() {
|
|
let mut a = MyBitField::new();
|
|
let val = <BitField5 as ::bit_field::BitFieldSpecifier>::into_u64(a.get_c());
|
|
assert_eq!(val, 0);
|
|
let val = <BitField5 as ::bit_field::BitFieldSpecifier>::from_u64(::bit_field::max::<BitField5>());
|
|
a.set_c(val);
|
|
let val = <BitField5 as ::bit_field::BitFieldSpecifier>::into_u64(a.get_c());
|
|
assert_eq!(val, ::bit_field::max::<BitField5>());
|
|
}
|
|
}
|
|
};
|
|
|
|
assert_eq!(bitfield_impl(input).to_string(), expected.to_string());
|
|
}
|
|
}
|