1#![allow(dead_code)]23use quote::quote;4use darling::{FromMeta, ToTokens};5use inflector::cases;6use std::fmt::Write;7use syn::{8 Expr, FnArg, GenericArgument, Generics, Ident, ImplItem, ImplItemMethod, ItemImpl, Lit, Meta,9 NestedMeta, PatType, Path, PathArguments, ReturnType, Type, spanned::Spanned,10};1112use crate::{13 fn_selector_str, parse_ident_from_pat, parse_ident_from_path, parse_path, parse_path_segment,14 parse_result_ok, pascal_ident_to_call, pascal_ident_to_snake_call, snake_ident_to_pascal,15 snake_ident_to_screaming,16};1718struct Is {19 name: Ident,20 pascal_call_name: Ident,21 snake_call_name: Ident,22}23impl Is {24 fn try_from(path: &Path) -> syn::Result<Self> {25 let name = parse_ident_from_path(path, false)?.clone();26 Ok(Self {27 pascal_call_name: pascal_ident_to_call(&name),28 snake_call_name: pascal_ident_to_snake_call(&name),29 name,30 })31 }3233 fn expand_call_def(&self) -> proc_macro2::TokenStream {34 let name = &self.name;35 let pascal_call_name = &self.pascal_call_name;36 quote! {37 #name(#pascal_call_name)38 }39 }4041 fn expand_interface_id(&self) -> proc_macro2::TokenStream {42 let pascal_call_name = &self.pascal_call_name;43 quote! {44 interface_id ^= #pascal_call_name::interface_id();45 }46 }4748 fn expand_supports_interface(&self) -> proc_macro2::TokenStream {49 let pascal_call_name = &self.pascal_call_name;50 quote! {51 #pascal_call_name::supports_interface(interface_id)52 }53 }5455 fn expand_variant_call(&self) -> proc_macro2::TokenStream {56 let name = &self.name;57 let pascal_call_name = &self.pascal_call_name;58 quote! {59 InternalCall::#name(call) => return <Self as ::evm_coder::Callable<#pascal_call_name>>::call(self, Msg {60 call,61 caller: c.caller,62 value: c.value,63 })64 }65 }6667 fn expand_parse(&self) -> proc_macro2::TokenStream {68 let name = &self.name;69 let pascal_call_name = &self.pascal_call_name;70 quote! {71 if let Some(parsed_call) = #pascal_call_name::parse(method_id, reader)? {72 return Ok(Some(Self::#name(parsed_call)))73 }74 }75 }7677 fn expand_generator(&self) -> proc_macro2::TokenStream {78 let pascal_call_name = &self.pascal_call_name;79 quote! {80 #pascal_call_name::generate_solidity_interface(tc, is_impl);81 }82 }8384 fn expand_event_generator(&self) -> proc_macro2::TokenStream {85 let name = &self.name;86 quote! {87 #name::generate_solidity_interface(tc, is_impl);88 }89 }90}9192#[derive(Default)]93struct IsList(Vec<Is>);94impl FromMeta for IsList {95 fn from_list(items: &[NestedMeta]) -> darling::Result<Self> {96 let mut out = Vec::new();97 for item in items {98 match item {99 NestedMeta::Meta(Meta::Path(path)) => out.push(Is::try_from(path)?),100 _ => return Err(syn::Error::new(item.span(), "expected path").into()),101 }102 }103 Ok(Self(out))104 }105}106107#[derive(FromMeta)]108pub struct InterfaceInfo {109 name: Ident,110 #[darling(default)]111 is: IsList,112 #[darling(default)]113 inline_is: IsList,114 #[darling(default)]115 events: IsList,116}117118#[derive(FromMeta)]119struct MethodInfo {120 #[darling(default)]121 rename_selector: Option<String>,122}123124enum AbiType {125 126 Plain(Ident),127 128 Tuple(Vec<AbiType>),129 130 Vec(Box<AbiType>),131 132 Array(Box<AbiType>, usize),133}134impl AbiType {135 fn try_from(value: &Type) -> syn::Result<Self> {136 let value = Self::try_maybe_special_from(value)?;137 if value.is_special() {138 return Err(syn::Error::new(value.span(), "unexpected special type"));139 }140 Ok(value)141 }142 fn try_maybe_special_from(value: &Type) -> syn::Result<Self> {143 match value {144 Type::Array(arr) => {145 let wrapped = AbiType::try_from(&arr.elem)?;146 match &arr.len {147 Expr::Lit(l) => match &l.lit {148 Lit::Int(i) => {149 let num = i.base10_parse::<usize>()?;150 Ok(AbiType::Array(Box::new(wrapped), num as usize))151 }152 _ => Err(syn::Error::new(arr.len.span(), "should be int literal")),153 },154 _ => Err(syn::Error::new(arr.len.span(), "should be literal")),155 }156 }157 Type::Path(_) => {158 let path = parse_path(value)?;159 let segment = parse_path_segment(path)?;160 if segment.ident == "Vec" {161 let args = match &segment.arguments {162 PathArguments::AngleBracketed(e) => e,163 _ => {164 return Err(syn::Error::new(165 segment.arguments.span(),166 "missing Vec generic",167 ))168 }169 };170 let args = &args.args;171 if args.len() != 1 {172 return Err(syn::Error::new(173 args.span(),174 "expected only one generic for vec",175 ));176 }177 let arg = args.first().unwrap();178179 let ty = match arg {180 GenericArgument::Type(ty) => ty,181 _ => {182 return Err(syn::Error::new(183 arg.span(),184 "expected first generic to be type",185 ))186 }187 };188189 let wrapped = AbiType::try_from(ty)?;190 Ok(Self::Vec(Box::new(wrapped)))191 } else {192 if !segment.arguments.is_empty() {193 return Err(syn::Error::new(194 segment.arguments.span(),195 "unexpected generic arguments for non-vec type",196 ));197 }198 Ok(Self::Plain(segment.ident.clone()))199 }200 }201 Type::Tuple(t) => {202 let mut out = Vec::with_capacity(t.elems.len());203 for el in t.elems.iter() {204 out.push(AbiType::try_from(el)?)205 }206 Ok(Self::Tuple(out))207 }208 _ => Err(syn::Error::new(209 value.span(),210 "unexpected type, only arrays, plain types and tuples are supported",211 )),212 }213 }214 fn is_value(&self) -> bool {215 match self {216 Self::Plain(v) if v == "value" => true,217 _ => false,218 }219 }220 fn is_caller(&self) -> bool {221 match self {222 Self::Plain(v) if v == "caller" => true,223 _ => false,224 }225 }226 fn is_special(&self) -> bool {227 self.is_caller() || self.is_value()228 }229 fn selector_ty_buf(&self, buf: &mut String) -> std::fmt::Result {230 match self {231 AbiType::Plain(t) => {232 write!(buf, "{}", t)233 }234 AbiType::Tuple(t) => {235 write!(buf, "(")?;236 for (i, t) in t.iter().enumerate() {237 if i != 0 {238 write!(buf, ",")?;239 }240 t.selector_ty_buf(buf)?;241 }242 write!(buf, ")")243 }244 AbiType::Vec(v) => {245 v.selector_ty_buf(buf)?;246 write!(buf, "[]")247 }248 AbiType::Array(v, len) => {249 v.selector_ty_buf(buf)?;250 write!(buf, "[{}]", len)251 }252 }253 }254 fn selector_ty(&self) -> String {255 let mut out = String::new();256 self.selector_ty_buf(&mut out).expect("no fmt error");257 out258 }259}260impl ToTokens for AbiType {261 fn to_tokens(&self, tokens: &mut proc_macro2::TokenStream) {262 match self {263 AbiType::Plain(t) => tokens.extend(quote! {#t}),264 AbiType::Tuple(t) => {265 tokens.extend(quote! {(266 #(#t),*267 )});268 }269 AbiType::Vec(v) => tokens.extend(quote! {Vec<#v>}),270 AbiType::Array(v, l) => tokens.extend(quote! {[#v; #l]}),271 }272 }273}274275struct MethodArg {276 name: Ident,277 camel_name: String,278 ty: AbiType,279}280impl MethodArg {281 fn try_from(value: &PatType) -> syn::Result<Self> {282 let name = parse_ident_from_pat(&value.pat)?.clone();283 Ok(Self {284 camel_name: cases::camelcase::to_camel_case(&name.to_string()),285 name,286 ty: AbiType::try_maybe_special_from(&value.ty)?,287 })288 }289 fn is_value(&self) -> bool {290 self.ty.is_value()291 }292 fn is_caller(&self) -> bool {293 self.ty.is_caller()294 }295 fn is_special(&self) -> bool {296 self.ty.is_special()297 }298 fn selector_ty(&self) -> String {299 assert!(!self.is_special());300 self.ty.selector_ty()301 }302303 fn expand_call_def(&self) -> proc_macro2::TokenStream {304 assert!(!self.is_special());305 let name = &self.name;306 let ty = &self.ty;307308 quote! {309 #name: #ty310 }311 }312313 fn expand_parse(&self) -> proc_macro2::TokenStream {314 assert!(!self.is_special());315 let name = &self.name;316 quote! {317 #name: reader.abi_read()?318 }319 }320321 fn expand_call_arg(&self) -> proc_macro2::TokenStream {322 if self.is_value() {323 quote! {324 c.value.clone()325 }326 } else if self.is_caller() {327 quote! {328 c.caller.clone()329 }330 } else {331 let name = &self.name;332 quote! {333 #name334 }335 }336 }337338 fn expand_solidity_argument(&self) -> proc_macro2::TokenStream {339 let camel_name = &self.camel_name.to_string();340 let ty = &self.ty;341 quote! {342 <NamedArgument<#ty>>::new(#camel_name)343 }344 }345}346347#[derive(PartialEq)]348enum Mutability {349 Mutable,350 View,351 Pure,352}353354struct Method {355 name: Ident,356 camel_name: String,357 pascal_name: Ident,358 screaming_name: Ident,359 selector_str: String,360 selector: u32,361 args: Vec<MethodArg>,362 has_normal_args: bool,363 mutability: Mutability,364 result: Type,365}366impl Method {367 fn try_from(value: &ImplItemMethod) -> syn::Result<Self> {368 let mut info = MethodInfo {369 rename_selector: None,370 };371 for attr in &value.attrs {372 let ident = parse_ident_from_path(&attr.path, false)?;373 if ident == "solidity" {374 let args = attr.parse_meta().unwrap();375 info = MethodInfo::from_meta(&args).unwrap();376 } else if ident == "doc" {377 378 }379 }380 let ident = &value.sig.ident;381 let ident_str = ident.to_string();382 if !cases::snakecase::is_snake_case(&ident_str) {383 return Err(syn::Error::new(ident.span(), "method name should be snake_cased\nif alternative solidity name needs to be set - use #[solidity] attribute"));384 }385386 let mut mutability = Mutability::Pure;387388 if let Some(FnArg::Receiver(receiver)) = value389 .sig390 .inputs391 .iter()392 .find(|arg| matches!(arg, FnArg::Receiver(_)))393 {394 if receiver.reference.is_none() {395 return Err(syn::Error::new(396 receiver.span(),397 "receiver should be by ref",398 ));399 }400 if receiver.mutability.is_some() {401 mutability = Mutability::Mutable;402 } else {403 mutability = Mutability::View;404 }405 }406 let mut args = Vec::new();407 for typ in value408 .sig409 .inputs410 .iter()411 .filter(|arg| matches!(arg, FnArg::Typed(_)))412 {413 let typ = match typ {414 FnArg::Typed(typ) => typ,415 _ => unreachable!(),416 };417 args.push(MethodArg::try_from(typ)?);418 }419420 if mutability != Mutability::Mutable && args.iter().any(|arg| arg.is_value()) {421 return Err(syn::Error::new(422 args.iter().find(|arg| arg.is_value()).unwrap().ty.span(),423 "payable function should be mutable",424 ));425 }426427 let result = match &value.sig.output {428 ReturnType::Type(_, ty) => ty,429 _ => return Err(syn::Error::new(value.sig.output.span(), "interface method should return Result<value>\nif there is no value to return - specify void (which is alias to unit)")),430 };431 let result = parse_result_ok(result)?;432433 let camel_name = info434 .rename_selector435 .unwrap_or_else(|| cases::camelcase::to_camel_case(&ident.to_string()));436 let mut selector_str = camel_name.clone();437 selector_str.push('(');438 let mut has_normal_args = false;439 for (i, arg) in args.iter().filter(|arg| !arg.is_special()).enumerate() {440 if i != 0 {441 selector_str.push(',');442 }443 write!(selector_str, "{}", arg.selector_ty()).unwrap();444 has_normal_args = true;445 }446 selector_str.push(')');447 let selector = fn_selector_str(&selector_str);448449 Ok(Self {450 name: ident.clone(),451 camel_name,452 pascal_name: snake_ident_to_pascal(ident),453 screaming_name: snake_ident_to_screaming(ident),454 selector_str,455 selector,456 args,457 has_normal_args,458 mutability,459 result: result.clone(),460 })461 }462 fn expand_call_def(&self) -> proc_macro2::TokenStream {463 let defs = self464 .args465 .iter()466 .filter(|a| !a.is_special())467 .map(|a| a.expand_call_def());468 let pascal_name = &self.pascal_name;469470 if self.has_normal_args {471 quote! {472 #pascal_name {473 #(474 #defs,475 )*476 }477 }478 } else {479 quote! {#pascal_name}480 }481 }482483 fn expand_const(&self) -> proc_macro2::TokenStream {484 let screaming_name = &self.screaming_name;485 let selector = self.selector;486 let selector_str = &self.selector_str;487 quote! {488 #[doc = #selector_str]489 const #screaming_name: u32 = #selector;490 }491 }492493 fn expand_interface_id(&self) -> proc_macro2::TokenStream {494 let screaming_name = &self.screaming_name;495 quote! {496 interface_id ^= Self::#screaming_name;497 }498 }499500 fn expand_parse(&self) -> proc_macro2::TokenStream {501 let pascal_name = &self.pascal_name;502 let screaming_name = &self.screaming_name;503 if self.has_normal_args {504 let parsers = self505 .args506 .iter()507 .filter(|a| !a.is_special())508 .map(|a| a.expand_parse());509 quote! {510 Self::#screaming_name => return Ok(Some(Self::#pascal_name {511 #(512 #parsers,513 )*514 }))515 }516 } else {517 quote! { Self::#screaming_name => return Ok(Some(Self::#pascal_name)) }518 }519 }520521 fn expand_variant_call(&self) -> proc_macro2::TokenStream {522 let pascal_name = &self.pascal_name;523 let name = &self.name;524525 let matcher = if self.has_normal_args {526 let names = self527 .args528 .iter()529 .filter(|a| !a.is_special())530 .map(|a| &a.name);531532 quote! {{533 #(534 #names,535 )*536 }}537 } else {538 quote! {}539 };540541 let receiver = match self.mutability {542 Mutability::Mutable | Mutability::View => quote! {self.},543 Mutability::Pure => quote! {Self::},544 };545 let args = self.args.iter().map(|a| a.expand_call_arg());546547 quote! {548 InternalCall::#pascal_name #matcher => {549 let result = #receiver #name(550 #(551 #args,552 )*553 )?;554 (&result).abi_write(&mut writer);555 }556 }557 }558559 fn expand_solidity_function(&self) -> proc_macro2::TokenStream {560 let camel_name = &self.camel_name;561 let mutability = match self.mutability {562 Mutability::Mutable => quote! {SolidityMutability::Mutable},563 Mutability::View => quote! { SolidityMutability::View },564 Mutability::Pure => quote! {SolidityMutability::Pure},565 };566 let result = &self.result;567568 let args = self569 .args570 .iter()571 .filter(|a| !a.is_special())572 .map(MethodArg::expand_solidity_argument);573574 quote! {575 SolidityFunction {576 name: #camel_name,577 mutability: #mutability,578 args: (579 #(580 #args,581 )*582 ),583 result: <UnnamedArgument<#result>>::default(),584 }585 }586 }587}588589pub struct SolidityInterface {590 generics: Generics,591 name: Box<syn::Type>,592 info: InterfaceInfo,593 methods: Vec<Method>,594}595impl SolidityInterface {596 pub fn try_from(info: InterfaceInfo, value: &ItemImpl) -> syn::Result<Self> {597 let mut methods = Vec::new();598599 for item in &value.items {600 if let ImplItem::Method(method) = item {601 methods.push(Method::try_from(method)?)602 }603 }604 Ok(Self {605 generics: value.generics.clone(),606 name: value.self_ty.clone(),607 info,608 methods,609 })610 }611 pub fn expand(self) -> proc_macro2::TokenStream {612 let name = self.name;613614 let solidity_name = self.info.name.to_string();615 let call_name = pascal_ident_to_call(&self.info.name);616 let generics = self.generics;617618 let call_sub = self619 .info620 .inline_is621 .0622 .iter()623 .chain(self.info.is.0.iter())624 .map(Is::expand_call_def);625 let call_parse = self626 .info627 .inline_is628 .0629 .iter()630 .chain(self.info.is.0.iter())631 .map(Is::expand_parse);632 let call_variants = self633 .info634 .inline_is635 .0636 .iter()637 .chain(self.info.is.0.iter())638 .map(Is::expand_variant_call);639640 let inline_interface_id = self.info.inline_is.0.iter().map(Is::expand_interface_id);641 let supports_interface = self.info.is.0.iter().map(Is::expand_supports_interface);642643 let calls = self.methods.iter().map(Method::expand_call_def);644 let consts = self.methods.iter().map(Method::expand_const);645 let interface_id = self.methods.iter().map(Method::expand_interface_id);646 let parsers = self.methods.iter().map(Method::expand_parse);647 let call_variants_this = self.methods.iter().map(Method::expand_variant_call);648 let solidity_functions = self.methods.iter().map(Method::expand_solidity_function);649650 651 let solidity_is = self652 .info653 .is654 .0655 .iter()656 .chain(self.info.inline_is.0.iter())657 .map(|is| is.name.to_string());658 let solidity_events_is = self.info.events.0.iter().map(|is| is.name.to_string());659 let solidity_generators = self660 .info661 .is662 .0663 .iter()664 .chain(self.info.inline_is.0.iter())665 .map(Is::expand_generator);666 let solidity_event_generators = self.info.events.0.iter().map(Is::expand_event_generator);667668 669670 quote! {671 #[derive(Debug)]672 pub enum #call_name {673 #(674 #calls,675 )*676 #(677 #call_sub,678 )*679 }680 impl #call_name {681 #(682 #consts683 )*684 pub const fn interface_id() -> u32 {685 let mut interface_id = 0;686 #(#interface_id)*687 #(#inline_interface_id)*688 interface_id689 }690 pub fn supports_interface(interface_id: u32) -> bool {691 interface_id != 0xffffff && (692 interface_id == Self::interface_id()693 #(694 || #supports_interface695 )*696 )697 }698 pub fn generate_solidity_interface(tc: &evm_coder::solidity::TypeCollector, is_impl: bool) {699 use evm_coder::solidity::*;700 use core::fmt::Write;701 let interface = SolidityInterface {702 name: #solidity_name,703 is: &["Dummy", #(704 #solidity_is,705 )* #(706 #solidity_events_is,707 )* ],708 functions: (#(709 #solidity_functions,710 )*),711 };712 if is_impl {713 tc.collect("// Common stubs holder\ncontract Dummy {\n\tuint8 dummy;\n\tstring stub_error = \"this contract is implemented in native\";\n}\n".into());714 } else {715 tc.collect("// Common stubs holder\ninterface Dummy {\n}\n".into());716 }717 #(718 #solidity_generators719 )*720 #(721 #solidity_event_generators722 )*723724 let mut out = string::new();725 726 727 if #solidity_name.starts_with("Inline") {728 out.push_str("// Inline\n");729 }730 let _ = interface.format(is_impl, &mut out, tc);731 tc.collect(out);732 }733 }734 impl ::evm_coder::Call for #call_name {735 fn parse(method_id: u32, reader: &mut ::evm_coder::abi::AbiReader) -> ::evm_coder::execution::Result<Option<Self>> {736 use ::evm_coder::abi::AbiRead;737 match method_id {738 #(739 #parsers,740 )*741 _ => {},742 }743 #(744 #call_parse745 )else*746 return Ok(None);747 }748 }749 impl #generics ::evm_coder::Callable<#call_name> for #name {750 #[allow(unreachable_code)] 751 fn call(&mut self, c: Msg<#call_name>) -> Result<::evm_coder::abi::AbiWriter> {752 use ::evm_coder::abi::AbiWrite;753 type InternalCall = #call_name;754 match c.call {755 #(756 #call_variants,757 )*758 _ => {},759 }760 let mut writer = ::evm_coder::abi::AbiWriter::default();761 match c.call {762 #(763 #call_variants_this,764 )*765 _ => unreachable!()766 }767 Ok(writer)768 }769 }770 }771 }772}