difftreelog
refactor split mod into some files
in: master
4 files changed
crates/evm-coder/procedural/src/abi_derive.rsdiffbeforeafterboth--- a/crates/evm-coder/procedural/src/abi_derive.rs
+++ /dev/null
@@ -1,614 +0,0 @@
-use quote::quote;
-
-pub(crate) fn impl_abi_macro(ast: &syn::DeriveInput) -> syn::Result<proc_macro2::TokenStream> {
- let name = &ast.ident;
- match &ast.data {
- syn::Data::Struct(ds) => expand_struct(ds, ast),
- syn::Data::Enum(de) => expand_enum(de, ast),
- syn::Data::Union(_) => Err(syn::Error::new(name.span(), "Unions not supported")),
- }
-}
-
-fn expand_struct(
- ds: &syn::DataStruct,
- ast: &syn::DeriveInput,
-) -> syn::Result<proc_macro2::TokenStream> {
- let name = &ast.ident;
- let docs = extract_docs(&ast.attrs, false)?;
- let (is_named_fields, field_names, field_types, field_docs, params_count) = match ds.fields {
- syn::Fields::Named(ref fields) => Ok((
- true,
- fields.named.iter().enumerate().map(map_field_to_name),
- fields.named.iter().map(map_field_to_type),
- fields.named.iter().map(map_field_to_doc),
- fields.named.len(),
- )),
- syn::Fields::Unnamed(ref fields) => Ok((
- false,
- fields.unnamed.iter().enumerate().map(map_field_to_name),
- fields.unnamed.iter().map(map_field_to_type),
- fields.unnamed.iter().map(map_field_to_doc),
- fields.unnamed.len(),
- )),
- syn::Fields::Unit => Err(syn::Error::new(name.span(), "Unit structs not supported")),
- }?;
-
- if params_count == 0 {
- return Err(syn::Error::new(name.span(), "Empty structs not supported"));
- };
-
- let tuple_type = tuple_type(field_types.clone());
- let tuple_ref_type = tuple_ref_type(field_types.clone());
- let tuple_data = tuple_data_as_ref(is_named_fields, field_names.clone());
- let tuple_names = tuple_names(is_named_fields, field_names.clone());
- let struct_from_tuple = struct_from_tuple(name, is_named_fields, field_names.clone());
-
- let can_be_plcaed_in_vec = impl_can_be_placed_in_vec(name);
- let abi_type = impl_struct_abi_type(name, tuple_type.clone());
- let abi_read = impl_struct_abi_read(name, tuple_type, tuple_names, struct_from_tuple);
- let abi_write = impl_struct_abi_write(name, is_named_fields, tuple_ref_type, tuple_data);
- let solidity_type = impl_struct_solidity_type(name, field_types.clone(), params_count);
- let solidity_type_name =
- impl_struct_solidity_type_name(name, field_types.clone(), params_count);
- let solidity_struct_collect =
- impl_struct_solidity_struct_collect(name, field_names, field_types, field_docs, &docs)?;
-
- Ok(quote! {
- #can_be_plcaed_in_vec
- #abi_type
- #abi_read
- #abi_write
- #solidity_type
- #solidity_type_name
- #solidity_struct_collect
- })
-}
-
-fn expand_enum(
- de: &syn::DataEnum,
- ast: &syn::DeriveInput,
-) -> syn::Result<proc_macro2::TokenStream> {
- let name = &ast.ident;
- check_repr_u8(name, &ast.attrs)?;
- let docs = extract_docs(&ast.attrs, false)?;
- let option_count = check_and_count_options(de)?;
- let enum_options = de.variants.iter().map(|v| &v.ident);
- let enum_options_docs = de.variants.iter().map(|v| extract_docs(&v.attrs, true));
-
- let from = impl_enum_from_u8(name, enum_options.clone());
- let solidity_option = impl_solidity_option(name, enum_options.clone());
- let can_be_plcaed_in_vec = impl_can_be_placed_in_vec(name);
- let abi_type = impl_enum_abi_type(name);
- let abi_read = impl_enum_abi_read(name);
- let abi_write = impl_enum_abi_write(name);
- let solidity_type_name = impl_enum_solidity_type_name(name);
- let solidity_struct_collect = impl_enum_solidity_struct_collect(
- name,
- enum_options,
- option_count,
- enum_options_docs,
- &docs,
- );
-
- Ok(quote! {
- #from
- #solidity_option
- #can_be_plcaed_in_vec
- #abi_type
- #abi_read
- #abi_write
- #solidity_type_name
- #solidity_struct_collect
- })
-}
-
-fn impl_solidity_option<'a>(
- name: &proc_macro2::Ident,
- enum_options: impl Iterator<Item = &'a syn::Ident>,
-) -> proc_macro2::TokenStream {
- let enum_options = enum_options.map(|opt| {
- let s = name.to_string() + "." + opt.to_string().as_str();
- let as_string = proc_macro2::Literal::string(s.as_str());
- quote!(#name::#opt => #as_string,)
- });
- quote!(
- #[cfg(feature = "stubgen")]
- impl ::evm_coder::solidity::SolidityEnum for #name {
- fn solidity_option(&self) -> &str {
- match Self::default() {
- #(#enum_options)*
- }
- }
- }
- )
-}
-
-fn impl_enum_from_u8<'a>(
- name: &proc_macro2::Ident,
- enum_options: impl Iterator<Item = &'a syn::Ident>,
-) -> proc_macro2::TokenStream {
- let error_str = format!("Value not convertible into enum \"{name}\"");
- let error_str = proc_macro2::Literal::string(&error_str);
- let enum_options = enum_options.enumerate().map(|(i, opt)| {
- let n = proc_macro2::Literal::u8_suffixed(i as u8);
- quote! {#n => Ok(#name::#opt),}
- });
-
- quote!(
- impl TryFrom<u8> for #name {
- type Error = &'static str;
-
- fn try_from(value: u8) -> ::core::result::Result<Self, Self::Error> {
- const err: &'static str = #error_str;
- match value {
- #(#enum_options)*
- _ => Err(err)
- }
- }
- }
- )
-}
-
-fn impl_enum_abi_type(name: &syn::Ident) -> proc_macro2::TokenStream {
- quote! {
- impl ::evm_coder::abi::AbiType for #name {
- const SIGNATURE: ::evm_coder::custom_signature::SignatureUnit = <u8 as ::evm_coder::abi::AbiType>::SIGNATURE;
-
- fn is_dynamic() -> bool {
- <u8 as ::evm_coder::abi::AbiType>::is_dynamic()
- }
- fn size() -> usize {
- <u8 as ::evm_coder::abi::AbiType>::size()
- }
- }
- }
-}
-
-fn impl_enum_abi_read(name: &syn::Ident) -> proc_macro2::TokenStream {
- quote!(
- impl ::evm_coder::abi::AbiRead for #name {
- fn abi_read(reader: &mut ::evm_coder::abi::AbiReader) -> ::evm_coder::execution::Result<Self> {
- Ok(
- <u8 as ::evm_coder::abi::AbiRead>::abi_read(reader)?
- .try_into()?
- )
- }
- }
- )
-}
-
-fn impl_enum_abi_write(name: &syn::Ident) -> proc_macro2::TokenStream {
- quote!(
- impl ::evm_coder::abi::AbiWrite for #name {
- fn abi_write(&self, writer: &mut ::evm_coder::abi::AbiWriter) {
- ::evm_coder::abi::AbiWrite::abi_write(&(*self as u8), writer);
- }
- }
- )
-}
-
-fn impl_enum_solidity_type_name<'a>(name: &syn::Ident) -> proc_macro2::TokenStream {
- quote!(
- #[cfg(feature = "stubgen")]
- impl ::evm_coder::solidity::SolidityTypeName for #name {
- fn solidity_name(
- writer: &mut impl ::core::fmt::Write,
- tc: &::evm_coder::solidity::TypeCollector,
- ) -> ::core::fmt::Result {
- write!(writer, "{}", tc.collect_struct::<Self>())
- }
-
- fn is_simple() -> bool {
- true
- }
-
- fn solidity_default(
- writer: &mut impl ::core::fmt::Write,
- tc: &::evm_coder::solidity::TypeCollector,
- ) -> ::core::fmt::Result {
- write!(writer, "{}", <#name as ::evm_coder::solidity::SolidityEnum>::solidity_option(&<#name>::default()))
- }
- }
- )
-}
-
-fn impl_enum_solidity_struct_collect<'a>(
- name: &syn::Ident,
- enum_options: impl Iterator<Item = &'a syn::Ident>,
- option_count: usize,
- enum_options_docs: impl Iterator<Item = syn::Result<Vec<proc_macro2::TokenStream>>>,
- docs: &[proc_macro2::TokenStream],
-) -> proc_macro2::TokenStream {
- let string_name = name.to_string();
- let enum_options = enum_options
- .zip(enum_options_docs)
- .enumerate()
- .map(|(i, (opt, doc))| {
- let opt = proc_macro2::Literal::string(opt.to_string().as_str());
- let doc = doc.expect("Doc parsing error");
- let comma = if i != option_count - 1 { "," } else { "" };
- quote! {
- #(#doc)*
- writeln!(str, "\t{}{}", #opt, #comma).expect("Enum format option");
- }
- });
-
- quote!(
- #[cfg(feature = "stubgen")]
- impl ::evm_coder::solidity::StructCollect for #name {
- fn name() -> String {
- #string_name.into()
- }
-
- fn declaration() -> String {
- use std::fmt::Write;
-
- let mut str = String::new();
- #(#docs)*
- writeln!(str, "enum {} {{", <Self as ::evm_coder::solidity::StructCollect>::name()).unwrap();
- #(#enum_options)*
- writeln!(str, "}}").unwrap();
- str
- }
- }
- )
-}
-
-fn check_and_count_options(de: &syn::DataEnum) -> syn::Result<usize> {
- let mut count = 0;
- for error in de.variants.iter().filter_map(|v| {
- if !v.fields.is_empty() {
- Some(Err(syn::Error::new(
- v.ident.span(),
- "Enumeration parameters should not have fields",
- )))
- } else if v.discriminant.is_some() {
- Some(Err(syn::Error::new(
- v.ident.span(),
- "Enumeration options should not have an explicit specified value",
- )))
- } else {
- count += 1;
- None
- }
- }) {
- return error;
- }
-
- Ok(count)
-}
-
-fn check_repr_u8(name: &syn::Ident, attrs: &Vec<syn::Attribute>) -> syn::Result<()> {
- let mut has_repr = false;
- for attr in attrs.iter() {
- if attr.path.is_ident("repr") {
- has_repr = true;
- match attr.parse_meta()? {
- syn::Meta::List(p) => {
- for nm in p.nested.iter() {
- match nm {
- syn::NestedMeta::Meta(m) => match m {
- syn::Meta::Path(p) => {
- if !p.is_ident("u8") {
- return Err(syn::Error::new(
- p.segments
- .first()
- .expect("repr segments are empty")
- .ident
- .span(),
- "Enum is not \"repr(u8)\"",
- ));
- }
- }
- _ => {}
- },
- _ => {}
- }
- }
- }
- _ => {}
- };
- }
- }
-
- if !has_repr {
- return Err(syn::Error::new(name.span(), "Enum is not \"repr(u8)\""));
- }
-
- Ok(())
-}
-
-fn tuple_type<'a>(
- field_types: impl Iterator<Item = &'a syn::Type> + Clone,
-) -> proc_macro2::TokenStream {
- let field_types = field_types.map(|ty| quote!(#ty,));
- quote! {(#(#field_types)*)}
-}
-
-fn tuple_ref_type<'a>(
- field_types: impl Iterator<Item = &'a syn::Type> + Clone,
-) -> proc_macro2::TokenStream {
- let field_types = field_types.map(|ty| quote!(&#ty,));
- quote! {(#(#field_types)*)}
-}
-
-fn tuple_data_as_ref(
- is_named_fields: bool,
- field_names: impl Iterator<Item = syn::Ident> + Clone,
-) -> proc_macro2::TokenStream {
- let field_names = field_names.enumerate().map(|(i, field)| {
- if is_named_fields {
- quote!(&self.#field,)
- } else {
- let field = proc_macro2::Literal::usize_unsuffixed(i);
- quote!(&self.#field,)
- }
- });
- quote! {(#(#field_names)*)}
-}
-
-fn tuple_names(
- is_named_fields: bool,
- field_names: impl Iterator<Item = syn::Ident> + Clone,
-) -> proc_macro2::TokenStream {
- let field_names = field_names.enumerate().map(|(i, field)| {
- if is_named_fields {
- quote!(#field,)
- } else {
- let field = proc_macro2::Ident::new(
- format!("field{}", i).as_str(),
- proc_macro2::Span::call_site(),
- );
- quote!(#field,)
- }
- });
- quote! {(#(#field_names)*)}
-}
-
-fn struct_from_tuple(
- name: &syn::Ident,
- is_named_fields: bool,
- field_names: impl Iterator<Item = syn::Ident> + Clone,
-) -> proc_macro2::TokenStream {
- let field_names = field_names.enumerate().map(|(i, field)| {
- if is_named_fields {
- quote!(#field,)
- } else {
- let field = proc_macro2::Ident::new(
- format!("field{}", i).as_str(),
- proc_macro2::Span::call_site(),
- );
- quote!(#field,)
- }
- });
-
- if is_named_fields {
- quote! {#name {#(#field_names)*}}
- } else {
- quote! {#name (#(#field_names)*)}
- }
-}
-
-fn extract_docs(
- attrs: &[syn::Attribute],
- is_field_doc: bool,
-) -> syn::Result<Vec<proc_macro2::TokenStream>> {
- attrs
- .iter()
- .filter_map(|attr| {
- if let Some(ps) = attr.path.segments.first() {
- if ps.ident == "doc" {
- let meta = match attr.parse_meta() {
- Ok(meta) => meta,
- Err(e) => return Some(Err(e)),
- };
- match meta {
- syn::Meta::NameValue(mnv) => match &mnv.lit {
- syn::Lit::Str(ls) => return Some(Ok(ls.value())),
- _ => unreachable!(),
- },
- _ => unreachable!(),
- }
- }
- }
- None
- })
- .enumerate()
- .map(|(i, doc)| {
- let doc = doc?;
- let doc = doc.trim();
- let dev = if i == 0 { " @dev" } else { "" };
- let tab = if is_field_doc { "\t" } else { "" };
- Ok(quote! {
- writeln!(str, "{}///{} {}", #tab, #dev, #doc).unwrap();
- })
- })
- .collect()
-}
-
-fn map_field_to_name(field: (usize, &syn::Field)) -> syn::Ident {
- match field.1.ident.as_ref() {
- Some(name) => name.clone(),
- None => {
- let mut name = "field".to_string();
- name.push_str(field.0.to_string().as_str());
- syn::Ident::new(name.as_str(), proc_macro2::Span::call_site())
- }
- }
-}
-
-fn map_field_to_type(field: &syn::Field) -> &syn::Type {
- &field.ty
-}
-
-fn map_field_to_doc(field: &syn::Field) -> syn::Result<Vec<proc_macro2::TokenStream>> {
- extract_docs(&field.attrs, true)
-}
-
-fn impl_can_be_placed_in_vec(ident: &syn::Ident) -> proc_macro2::TokenStream {
- quote! {
- impl ::evm_coder::sealed::CanBePlacedInVec for #ident {}
- }
-}
-
-fn impl_struct_abi_type(
- name: &syn::Ident,
- tuple_type: proc_macro2::TokenStream,
-) -> proc_macro2::TokenStream {
- quote! {
- impl ::evm_coder::abi::AbiType for #name {
- const SIGNATURE: ::evm_coder::custom_signature::SignatureUnit = <#tuple_type as ::evm_coder::abi::AbiType>::SIGNATURE;
- fn is_dynamic() -> bool {
- <#tuple_type as ::evm_coder::abi::AbiType>::is_dynamic()
- }
- fn size() -> usize {
- <#tuple_type as ::evm_coder::abi::AbiType>::size()
- }
- }
- }
-}
-
-fn impl_struct_abi_read(
- name: &syn::Ident,
- tuple_type: proc_macro2::TokenStream,
- tuple_names: proc_macro2::TokenStream,
- struct_from_tuple: proc_macro2::TokenStream,
-) -> proc_macro2::TokenStream {
- quote!(
- impl ::evm_coder::abi::AbiRead for #name {
- fn abi_read(reader: &mut ::evm_coder::abi::AbiReader) -> ::evm_coder::execution::Result<Self> {
- let #tuple_names = <#tuple_type as ::evm_coder::abi::AbiRead>::abi_read(reader)?;
- Ok(#struct_from_tuple)
- }
- }
- )
-}
-
-fn impl_struct_abi_write(
- name: &syn::Ident,
- _is_named_fields: bool,
- tuple_type: proc_macro2::TokenStream,
- tuple_data: proc_macro2::TokenStream,
-) -> proc_macro2::TokenStream {
- quote!(
- impl ::evm_coder::abi::AbiWrite for #name {
- fn abi_write(&self, writer: &mut ::evm_coder::abi::AbiWriter) {
- <#tuple_type as ::evm_coder::abi::AbiWrite>::abi_write(&#tuple_data, writer)
- }
- }
- )
-}
-
-fn impl_struct_solidity_type<'a>(
- name: &syn::Ident,
- field_types: impl Iterator<Item = &'a syn::Type> + Clone,
- params_count: usize,
-) -> proc_macro2::TokenStream {
- let len = proc_macro2::Literal::usize_suffixed(params_count);
- quote! {
- #[cfg(feature = "stubgen")]
- impl ::evm_coder::solidity::SolidityType for #name {
- fn names(tc: &::evm_coder::solidity::TypeCollector) -> Vec<String> {
- let mut collected =
- Vec::with_capacity(<Self as ::evm_coder::solidity::SolidityType>::len());
- #({
- let mut out = String::new();
- <#field_types as ::evm_coder::solidity::SolidityTypeName>::solidity_name(&mut out, tc)
- .expect("no fmt error");
- collected.push(out);
- })*
- collected
- }
-
- fn len() -> usize {
- #len
- }
- }
- }
-}
-
-fn impl_struct_solidity_type_name<'a>(
- name: &syn::Ident,
- field_types: impl Iterator<Item = &'a syn::Type> + Clone,
- params_count: usize,
-) -> proc_macro2::TokenStream {
- let arg_dafaults = field_types.enumerate().map(|(i, ty)| {
- let mut defult_value = quote!(<#ty as ::evm_coder::solidity::SolidityTypeName
- >::solidity_default(writer, tc)?;);
- let last_item = params_count - 1;
- if i != last_item {
- defult_value.extend(quote! {write!(writer, ",")?;})
- }
- defult_value
- });
-
- quote! {
- #[cfg(feature = "stubgen")]
- impl ::evm_coder::solidity::SolidityTypeName for #name {
- fn solidity_name(
- writer: &mut impl ::core::fmt::Write,
- tc: &::evm_coder::solidity::TypeCollector,
- ) -> ::core::fmt::Result {
- write!(writer, "{}", tc.collect_struct::<Self>())
- }
-
- fn is_simple() -> bool {
- false
- }
-
- fn solidity_default(
- writer: &mut impl ::core::fmt::Write,
- tc: &::evm_coder::solidity::TypeCollector,
- ) -> ::core::fmt::Result {
- write!(writer, "{}(", tc.collect_struct::<Self>())?;
-
- #(#arg_dafaults)*
-
- write!(writer, ")")
- }
- }
- }
-}
-
-fn impl_struct_solidity_struct_collect<'a>(
- name: &syn::Ident,
- field_names: impl Iterator<Item = proc_macro2::Ident> + Clone,
- field_types: impl Iterator<Item = &'a syn::Type> + Clone,
- field_docs: impl Iterator<Item = syn::Result<Vec<proc_macro2::TokenStream>>> + Clone,
- docs: &[proc_macro2::TokenStream],
-) -> syn::Result<proc_macro2::TokenStream> {
- let string_name = name.to_string();
- let name_type = field_names
- .into_iter()
- .zip(field_types)
- .zip(field_docs)
- .map(|((name, ty), doc)| {
- let field_docs = doc.expect("Doc parse error");
- let name = format!("{}", name);
- quote!(
- #(#field_docs)*
- write!(str, "\t{} ", <#ty as ::evm_coder::solidity::StructCollect>::name()).unwrap();
- writeln!(str, "{};", #name).unwrap();
- )
- });
-
- Ok(quote! {
- #[cfg(feature = "stubgen")]
- impl ::evm_coder::solidity::StructCollect for #name {
- fn name() -> String {
- #string_name.into()
- }
-
- fn declaration() -> String {
- use std::fmt::Write;
-
- let mut str = String::new();
- #(#docs)*
- writeln!(str, "struct {} {{", Self::name()).unwrap();
- #(#name_type)*
- writeln!(str, "}}").unwrap();
- str
- }
- }
- })
-}
crates/evm-coder/procedural/src/abi_derive/derive_enum.rsdiffbeforeafterboth--- /dev/null
+++ b/crates/evm-coder/procedural/src/abi_derive/derive_enum.rs
@@ -0,0 +1,217 @@
+use quote::quote;
+
+pub fn impl_solidity_option<'a>(
+ name: &proc_macro2::Ident,
+ enum_options: impl Iterator<Item = &'a syn::Ident>,
+) -> proc_macro2::TokenStream {
+ let enum_options = enum_options.map(|opt| {
+ let s = name.to_string() + "." + opt.to_string().as_str();
+ let as_string = proc_macro2::Literal::string(s.as_str());
+ quote!(#name::#opt => #as_string,)
+ });
+ quote!(
+ #[cfg(feature = "stubgen")]
+ impl ::evm_coder::solidity::SolidityEnum for #name {
+ fn solidity_option(&self) -> &str {
+ match Self::default() {
+ #(#enum_options)*
+ }
+ }
+ }
+ )
+}
+
+pub fn impl_enum_from_u8<'a>(
+ name: &proc_macro2::Ident,
+ enum_options: impl Iterator<Item = &'a syn::Ident>,
+) -> proc_macro2::TokenStream {
+ let error_str = format!("Value not convertible into enum \"{name}\"");
+ let error_str = proc_macro2::Literal::string(&error_str);
+ let enum_options = enum_options.enumerate().map(|(i, opt)| {
+ let n = proc_macro2::Literal::u8_suffixed(i as u8);
+ quote! {#n => Ok(#name::#opt),}
+ });
+
+ quote!(
+ impl TryFrom<u8> for #name {
+ type Error = &'static str;
+
+ fn try_from(value: u8) -> ::core::result::Result<Self, Self::Error> {
+ const err: &'static str = #error_str;
+ match value {
+ #(#enum_options)*
+ _ => Err(err)
+ }
+ }
+ }
+ )
+}
+
+pub fn impl_enum_abi_type(name: &syn::Ident) -> proc_macro2::TokenStream {
+ quote! {
+ impl ::evm_coder::abi::AbiType for #name {
+ const SIGNATURE: ::evm_coder::custom_signature::SignatureUnit = <u8 as ::evm_coder::abi::AbiType>::SIGNATURE;
+
+ fn is_dynamic() -> bool {
+ <u8 as ::evm_coder::abi::AbiType>::is_dynamic()
+ }
+ fn size() -> usize {
+ <u8 as ::evm_coder::abi::AbiType>::size()
+ }
+ }
+ }
+}
+
+pub fn impl_enum_abi_read(name: &syn::Ident) -> proc_macro2::TokenStream {
+ quote!(
+ impl ::evm_coder::abi::AbiRead for #name {
+ fn abi_read(reader: &mut ::evm_coder::abi::AbiReader) -> ::evm_coder::execution::Result<Self> {
+ Ok(
+ <u8 as ::evm_coder::abi::AbiRead>::abi_read(reader)?
+ .try_into()?
+ )
+ }
+ }
+ )
+}
+
+pub fn impl_enum_abi_write(name: &syn::Ident) -> proc_macro2::TokenStream {
+ quote!(
+ impl ::evm_coder::abi::AbiWrite for #name {
+ fn abi_write(&self, writer: &mut ::evm_coder::abi::AbiWriter) {
+ ::evm_coder::abi::AbiWrite::abi_write(&(*self as u8), writer);
+ }
+ }
+ )
+}
+
+pub fn impl_enum_solidity_type_name<'a>(name: &syn::Ident) -> proc_macro2::TokenStream {
+ quote!(
+ #[cfg(feature = "stubgen")]
+ impl ::evm_coder::solidity::SolidityTypeName for #name {
+ fn solidity_name(
+ writer: &mut impl ::core::fmt::Write,
+ tc: &::evm_coder::solidity::TypeCollector,
+ ) -> ::core::fmt::Result {
+ write!(writer, "{}", tc.collect_struct::<Self>())
+ }
+
+ fn is_simple() -> bool {
+ true
+ }
+
+ fn solidity_default(
+ writer: &mut impl ::core::fmt::Write,
+ tc: &::evm_coder::solidity::TypeCollector,
+ ) -> ::core::fmt::Result {
+ write!(writer, "{}", <#name as ::evm_coder::solidity::SolidityEnum>::solidity_option(&<#name>::default()))
+ }
+ }
+ )
+}
+
+pub fn impl_enum_solidity_struct_collect<'a>(
+ name: &syn::Ident,
+ enum_options: impl Iterator<Item = &'a syn::Ident>,
+ option_count: usize,
+ enum_options_docs: impl Iterator<Item = syn::Result<Vec<proc_macro2::TokenStream>>>,
+ docs: &[proc_macro2::TokenStream],
+) -> proc_macro2::TokenStream {
+ let string_name = name.to_string();
+ let enum_options = enum_options
+ .zip(enum_options_docs)
+ .enumerate()
+ .map(|(i, (opt, doc))| {
+ let opt = proc_macro2::Literal::string(opt.to_string().as_str());
+ let doc = doc.expect("Doc parsing error");
+ let comma = if i != option_count - 1 { "," } else { "" };
+ quote! {
+ #(#doc)*
+ writeln!(str, "\t{}{}", #opt, #comma).expect("Enum format option");
+ }
+ });
+
+ quote!(
+ #[cfg(feature = "stubgen")]
+ impl ::evm_coder::solidity::StructCollect for #name {
+ fn name() -> String {
+ #string_name.into()
+ }
+
+ fn declaration() -> String {
+ use std::fmt::Write;
+
+ let mut str = String::new();
+ #(#docs)*
+ writeln!(str, "enum {} {{", <Self as ::evm_coder::solidity::StructCollect>::name()).unwrap();
+ #(#enum_options)*
+ writeln!(str, "}}").unwrap();
+ str
+ }
+ }
+ )
+}
+
+pub fn check_and_count_options(de: &syn::DataEnum) -> syn::Result<usize> {
+ let mut count = 0;
+ for error in de.variants.iter().filter_map(|v| {
+ if !v.fields.is_empty() {
+ Some(Err(syn::Error::new(
+ v.ident.span(),
+ "Enumeration parameters should not have fields",
+ )))
+ } else if v.discriminant.is_some() {
+ Some(Err(syn::Error::new(
+ v.ident.span(),
+ "Enumeration options should not have an explicit specified value",
+ )))
+ } else {
+ count += 1;
+ None
+ }
+ }) {
+ return error;
+ }
+
+ Ok(count)
+}
+
+pub fn check_repr_u8(name: &syn::Ident, attrs: &Vec<syn::Attribute>) -> syn::Result<()> {
+ let mut has_repr = false;
+ for attr in attrs.iter() {
+ if attr.path.is_ident("repr") {
+ has_repr = true;
+ match attr.parse_meta()? {
+ syn::Meta::List(p) => {
+ for nm in p.nested.iter() {
+ match nm {
+ syn::NestedMeta::Meta(m) => match m {
+ syn::Meta::Path(p) => {
+ if !p.is_ident("u8") {
+ return Err(syn::Error::new(
+ p.segments
+ .first()
+ .expect("repr segments are empty")
+ .ident
+ .span(),
+ "Enum is not \"repr(u8)\"",
+ ));
+ }
+ }
+ _ => {}
+ },
+ _ => {}
+ }
+ }
+ }
+ _ => {}
+ };
+ }
+ }
+
+ if !has_repr {
+ return Err(syn::Error::new(name.span(), "Enum is not \"repr(u8)\""));
+ }
+
+ Ok(())
+}
crates/evm-coder/procedural/src/abi_derive/derive_struct.rsdiffbeforeafterboth1use super::extract_docs;2use quote::quote;34pub fn tuple_type<'a>(5 field_types: impl Iterator<Item = &'a syn::Type> + Clone,6) -> proc_macro2::TokenStream {7 let field_types = field_types.map(|ty| quote!(#ty,));8 quote! {(#(#field_types)*)}9}1011pub fn tuple_ref_type<'a>(12 field_types: impl Iterator<Item = &'a syn::Type> + Clone,13) -> proc_macro2::TokenStream {14 let field_types = field_types.map(|ty| quote!(&#ty,));15 quote! {(#(#field_types)*)}16}1718pub fn tuple_data_as_ref(19 is_named_fields: bool,20 field_names: impl Iterator<Item = syn::Ident> + Clone,21) -> proc_macro2::TokenStream {22 let field_names = field_names.enumerate().map(|(i, field)| {23 if is_named_fields {24 quote!(&self.#field,)25 } else {26 let field = proc_macro2::Literal::usize_unsuffixed(i);27 quote!(&self.#field,)28 }29 });30 quote! {(#(#field_names)*)}31}3233pub fn tuple_names(34 is_named_fields: bool,35 field_names: impl Iterator<Item = syn::Ident> + Clone,36) -> proc_macro2::TokenStream {37 let field_names = field_names.enumerate().map(|(i, field)| {38 if is_named_fields {39 quote!(#field,)40 } else {41 let field = proc_macro2::Ident::new(42 format!("field{}", i).as_str(),43 proc_macro2::Span::call_site(),44 );45 quote!(#field,)46 }47 });48 quote! {(#(#field_names)*)}49}5051pub fn struct_from_tuple(52 name: &syn::Ident,53 is_named_fields: bool,54 field_names: impl Iterator<Item = syn::Ident> + Clone,55) -> proc_macro2::TokenStream {56 let field_names = field_names.enumerate().map(|(i, field)| {57 if is_named_fields {58 quote!(#field,)59 } else {60 let field = proc_macro2::Ident::new(61 format!("field{}", i).as_str(),62 proc_macro2::Span::call_site(),63 );64 quote!(#field,)65 }66 });6768 if is_named_fields {69 quote! {#name {#(#field_names)*}}70 } else {71 quote! {#name (#(#field_names)*)}72 }73}7475pub fn map_field_to_name(field: (usize, &syn::Field)) -> syn::Ident {76 match field.1.ident.as_ref() {77 Some(name) => name.clone(),78 None => {79 let mut name = "field".to_string();80 name.push_str(field.0.to_string().as_str());81 syn::Ident::new(name.as_str(), proc_macro2::Span::call_site())82 }83 }84}8586pub fn map_field_to_type(field: &syn::Field) -> &syn::Type {87 &field.ty88}8990pub fn map_field_to_doc(field: &syn::Field) -> syn::Result<Vec<proc_macro2::TokenStream>> {91 extract_docs(&field.attrs, true)92}9394pub fn impl_can_be_placed_in_vec(ident: &syn::Ident) -> proc_macro2::TokenStream {95 quote! {96 impl ::evm_coder::sealed::CanBePlacedInVec for #ident {}97 }98}99100pub fn impl_struct_abi_type(101 name: &syn::Ident,102 tuple_type: proc_macro2::TokenStream,103) -> proc_macro2::TokenStream {104 quote! {105 impl ::evm_coder::abi::AbiType for #name {106 const SIGNATURE: ::evm_coder::custom_signature::SignatureUnit = <#tuple_type as ::evm_coder::abi::AbiType>::SIGNATURE;107 fn is_dynamic() -> bool {108 <#tuple_type as ::evm_coder::abi::AbiType>::is_dynamic()109 }110 fn size() -> usize {111 <#tuple_type as ::evm_coder::abi::AbiType>::size()112 }113 }114 }115}116117pub fn impl_struct_abi_read(118 name: &syn::Ident,119 tuple_type: proc_macro2::TokenStream,120 tuple_names: proc_macro2::TokenStream,121 struct_from_tuple: proc_macro2::TokenStream,122) -> proc_macro2::TokenStream {123 quote!(124 impl ::evm_coder::abi::AbiRead for #name {125 fn abi_read(reader: &mut ::evm_coder::abi::AbiReader) -> ::evm_coder::execution::Result<Self> {126 let #tuple_names = <#tuple_type as ::evm_coder::abi::AbiRead>::abi_read(reader)?;127 Ok(#struct_from_tuple)128 }129 }130 )131}132133pub fn impl_struct_abi_write(134 name: &syn::Ident,135 _is_named_fields: bool,136 tuple_type: proc_macro2::TokenStream,137 tuple_data: proc_macro2::TokenStream,138) -> proc_macro2::TokenStream {139 quote!(140 impl ::evm_coder::abi::AbiWrite for #name {141 fn abi_write(&self, writer: &mut ::evm_coder::abi::AbiWriter) {142 <#tuple_type as ::evm_coder::abi::AbiWrite>::abi_write(&#tuple_data, writer)143 }144 }145 )146}147148pub fn impl_struct_solidity_type<'a>(149 name: &syn::Ident,150 field_types: impl Iterator<Item = &'a syn::Type> + Clone,151 params_count: usize,152) -> proc_macro2::TokenStream {153 let len = proc_macro2::Literal::usize_suffixed(params_count);154 quote! {155 #[cfg(feature = "stubgen")]156 impl ::evm_coder::solidity::SolidityType for #name {157 fn names(tc: &::evm_coder::solidity::TypeCollector) -> Vec<String> {158 let mut collected =159 Vec::with_capacity(<Self as ::evm_coder::solidity::SolidityType>::len());160 #({161 let mut out = String::new();162 <#field_types as ::evm_coder::solidity::SolidityTypeName>::solidity_name(&mut out, tc)163 .expect("no fmt error");164 collected.push(out);165 })*166 collected167 }168169 fn len() -> usize {170 #len171 }172 }173 }174}175176pub fn impl_struct_solidity_type_name<'a>(177 name: &syn::Ident,178 field_types: impl Iterator<Item = &'a syn::Type> + Clone,179 params_count: usize,180) -> proc_macro2::TokenStream {181 let arg_dafaults = field_types.enumerate().map(|(i, ty)| {182 let mut defult_value = quote!(<#ty as ::evm_coder::solidity::SolidityTypeName183 >::solidity_default(writer, tc)?;);184 let last_item = params_count - 1;185 if i != last_item {186 defult_value.extend(quote! {write!(writer, ",")?;})187 }188 defult_value189 });190191 quote! {192 #[cfg(feature = "stubgen")]193 impl ::evm_coder::solidity::SolidityTypeName for #name {194 fn solidity_name(195 writer: &mut impl ::core::fmt::Write,196 tc: &::evm_coder::solidity::TypeCollector,197 ) -> ::core::fmt::Result {198 write!(writer, "{}", tc.collect_struct::<Self>())199 }200201 fn is_simple() -> bool {202 false203 }204205 fn solidity_default(206 writer: &mut impl ::core::fmt::Write,207 tc: &::evm_coder::solidity::TypeCollector,208 ) -> ::core::fmt::Result {209 write!(writer, "{}(", tc.collect_struct::<Self>())?;210211 #(#arg_dafaults)*212213 write!(writer, ")")214 }215 }216 }217}218219pub fn impl_struct_solidity_struct_collect<'a>(220 name: &syn::Ident,221 field_names: impl Iterator<Item = proc_macro2::Ident> + Clone,222 field_types: impl Iterator<Item = &'a syn::Type> + Clone,223 field_docs: impl Iterator<Item = syn::Result<Vec<proc_macro2::TokenStream>>> + Clone,224 docs: &[proc_macro2::TokenStream],225) -> syn::Result<proc_macro2::TokenStream> {226 let string_name = name.to_string();227 let name_type = field_names228 .into_iter()229 .zip(field_types)230 .zip(field_docs)231 .map(|((name, ty), doc)| {232 let field_docs = doc.expect("Doc parse error");233 let name = format!("{}", name);234 quote!(235 #(#field_docs)*236 write!(str, "\t{} ", <#ty as ::evm_coder::solidity::StructCollect>::name()).unwrap();237 writeln!(str, "{};", #name).unwrap();238 )239 });240241 Ok(quote! {242 #[cfg(feature = "stubgen")]243 impl ::evm_coder::solidity::StructCollect for #name {244 fn name() -> String {245 #string_name.into()246 }247248 fn declaration() -> String {249 use std::fmt::Write;250251 let mut str = String::new();252 #(#docs)*253 writeln!(str, "struct {} {{", Self::name()).unwrap();254 #(#name_type)*255 writeln!(str, "}}").unwrap();256 str257 }258 }259 })260}crates/evm-coder/procedural/src/abi_derive/mod.rsdiffbeforeafterboth--- /dev/null
+++ b/crates/evm-coder/procedural/src/abi_derive/mod.rs
@@ -0,0 +1,145 @@
+mod derive_enum;
+mod derive_struct;
+
+use quote::quote;
+use derive_struct::*;
+use derive_enum::*;
+
+pub(crate) fn impl_abi_macro(ast: &syn::DeriveInput) -> syn::Result<proc_macro2::TokenStream> {
+ let name = &ast.ident;
+ match &ast.data {
+ syn::Data::Struct(ds) => expand_struct(ds, ast),
+ syn::Data::Enum(de) => expand_enum(de, ast),
+ syn::Data::Union(_) => Err(syn::Error::new(name.span(), "Unions not supported")),
+ }
+}
+
+fn expand_struct(
+ ds: &syn::DataStruct,
+ ast: &syn::DeriveInput,
+) -> syn::Result<proc_macro2::TokenStream> {
+ let name = &ast.ident;
+ let docs = extract_docs(&ast.attrs, false)?;
+ let (is_named_fields, field_names, field_types, field_docs, params_count) = match ds.fields {
+ syn::Fields::Named(ref fields) => Ok((
+ true,
+ fields.named.iter().enumerate().map(map_field_to_name),
+ fields.named.iter().map(map_field_to_type),
+ fields.named.iter().map(map_field_to_doc),
+ fields.named.len(),
+ )),
+ syn::Fields::Unnamed(ref fields) => Ok((
+ false,
+ fields.unnamed.iter().enumerate().map(map_field_to_name),
+ fields.unnamed.iter().map(map_field_to_type),
+ fields.unnamed.iter().map(map_field_to_doc),
+ fields.unnamed.len(),
+ )),
+ syn::Fields::Unit => Err(syn::Error::new(name.span(), "Unit structs not supported")),
+ }?;
+
+ if params_count == 0 {
+ return Err(syn::Error::new(name.span(), "Empty structs not supported"));
+ };
+
+ let tuple_type = tuple_type(field_types.clone());
+ let tuple_ref_type = tuple_ref_type(field_types.clone());
+ let tuple_data = tuple_data_as_ref(is_named_fields, field_names.clone());
+ let tuple_names = tuple_names(is_named_fields, field_names.clone());
+ let struct_from_tuple = struct_from_tuple(name, is_named_fields, field_names.clone());
+
+ let can_be_plcaed_in_vec = impl_can_be_placed_in_vec(name);
+ let abi_type = impl_struct_abi_type(name, tuple_type.clone());
+ let abi_read = impl_struct_abi_read(name, tuple_type, tuple_names, struct_from_tuple);
+ let abi_write = impl_struct_abi_write(name, is_named_fields, tuple_ref_type, tuple_data);
+ let solidity_type = impl_struct_solidity_type(name, field_types.clone(), params_count);
+ let solidity_type_name =
+ impl_struct_solidity_type_name(name, field_types.clone(), params_count);
+ let solidity_struct_collect =
+ impl_struct_solidity_struct_collect(name, field_names, field_types, field_docs, &docs)?;
+
+ Ok(quote! {
+ #can_be_plcaed_in_vec
+ #abi_type
+ #abi_read
+ #abi_write
+ #solidity_type
+ #solidity_type_name
+ #solidity_struct_collect
+ })
+}
+
+fn expand_enum(
+ de: &syn::DataEnum,
+ ast: &syn::DeriveInput,
+) -> syn::Result<proc_macro2::TokenStream> {
+ let name = &ast.ident;
+ check_repr_u8(name, &ast.attrs)?;
+ let docs = extract_docs(&ast.attrs, false)?;
+ let option_count = check_and_count_options(de)?;
+ let enum_options = de.variants.iter().map(|v| &v.ident);
+ let enum_options_docs = de.variants.iter().map(|v| extract_docs(&v.attrs, true));
+
+ let from = impl_enum_from_u8(name, enum_options.clone());
+ let solidity_option = impl_solidity_option(name, enum_options.clone());
+ let can_be_plcaed_in_vec = impl_can_be_placed_in_vec(name);
+ let abi_type = impl_enum_abi_type(name);
+ let abi_read = impl_enum_abi_read(name);
+ let abi_write = impl_enum_abi_write(name);
+ let solidity_type_name = impl_enum_solidity_type_name(name);
+ let solidity_struct_collect = impl_enum_solidity_struct_collect(
+ name,
+ enum_options,
+ option_count,
+ enum_options_docs,
+ &docs,
+ );
+
+ Ok(quote! {
+ #from
+ #solidity_option
+ #can_be_plcaed_in_vec
+ #abi_type
+ #abi_read
+ #abi_write
+ #solidity_type_name
+ #solidity_struct_collect
+ })
+}
+
+fn extract_docs(
+ attrs: &[syn::Attribute],
+ is_field_doc: bool,
+) -> syn::Result<Vec<proc_macro2::TokenStream>> {
+ attrs
+ .iter()
+ .filter_map(|attr| {
+ if let Some(ps) = attr.path.segments.first() {
+ if ps.ident == "doc" {
+ let meta = match attr.parse_meta() {
+ Ok(meta) => meta,
+ Err(e) => return Some(Err(e)),
+ };
+ match meta {
+ syn::Meta::NameValue(mnv) => match &mnv.lit {
+ syn::Lit::Str(ls) => return Some(Ok(ls.value())),
+ _ => unreachable!(),
+ },
+ _ => unreachable!(),
+ }
+ }
+ }
+ None
+ })
+ .enumerate()
+ .map(|(i, doc)| {
+ let doc = doc?;
+ let doc = doc.trim();
+ let dev = if i == 0 { " @dev" } else { "" };
+ let tab = if is_field_doc { "\t" } else { "" };
+ Ok(quote! {
+ writeln!(str, "{}///{} {}", #tab, #dev, #doc).unwrap();
+ })
+ })
+ .collect()
+}