git.delta.rocks / unique-network / refs/commits / 731fc56abf21

difftreelog

refactor remove AbiType

Trubnikov Sergey2022-11-01parent: #2ef175a.patch.diff
in: master

3 files changed

modifiedcrates/evm-coder/procedural/src/lib.rsdiffbeforeafterboth
--- a/crates/evm-coder/procedural/src/lib.rs
+++ b/crates/evm-coder/procedural/src/lib.rs
@@ -107,7 +107,7 @@
 	if path.segments.len() != 1 {
 		return Err(syn::Error::new(
 			path.span(),
-			"expected path to have only segment",
+			"expected path to have only one segment",
 		));
 	}
 	let last_segment = &path.segments.last().unwrap();
modifiedcrates/evm-coder/procedural/src/solidity_interface.rsdiffbeforeafterboth
--- a/crates/evm-coder/procedural/src/solidity_interface.rs
+++ b/crates/evm-coder/procedural/src/solidity_interface.rs
@@ -329,149 +329,39 @@
 	}
 }
 
-#[derive(Debug)]
-enum AbiType {
-	// type
-	Plain(Ident),
-	// (type1,type2)
-	Tuple(Vec<AbiType>),
-	// type[]
-	Vec(Box<AbiType>),
-	// type[20]
-	Array(Box<AbiType>, usize),
+trait AbiType {
+	fn plain(&self) -> syn::Result<&Ident>;
+	fn is_value(&self) -> bool;
+	fn is_caller(&self) -> bool;
+	fn is_special(&self) -> bool;
 }
-impl AbiType {
-	fn try_from(value: &Type) -> syn::Result<Self> {
-		let value = Self::try_maybe_special_from(value)?;
-		if value.is_special() {
-			return Err(syn::Error::new(value.span(), "unexpected special type"));
+
+impl AbiType for Type {
+	fn plain(&self) -> syn::Result<&Ident> {
+		let path = parse_path(self)?;
+		let segment = parse_path_segment(path)?;
+		if !segment.arguments.is_empty() {
+			return Err(syn::Error::new(self.span(), "Not plain type"));
 		}
-		Ok(value)
+		Ok(&segment.ident)
 	}
-	fn try_maybe_special_from(value: &Type) -> syn::Result<Self> {
-		match value {
-			Type::Array(arr) => {
-				let wrapped = AbiType::try_from(&arr.elem)?;
-				match &arr.len {
-					Expr::Lit(l) => match &l.lit {
-						Lit::Int(i) => {
-							let num = i.base10_parse::<usize>()?;
-							Ok(AbiType::Array(Box::new(wrapped), num as usize))
-						}
-						_ => Err(syn::Error::new(arr.len.span(), "should be int literal")),
-					},
-					_ => Err(syn::Error::new(arr.len.span(), "should be literal")),
-				}
-			}
-			Type::Path(_) => {
-				let path = parse_path(value)?;
-				let segment = parse_path_segment(path)?;
-				if segment.ident == "Vec" {
-					let args = match &segment.arguments {
-						PathArguments::AngleBracketed(e) => e,
-						_ => {
-							return Err(syn::Error::new(
-								segment.arguments.span(),
-								"missing Vec generic",
-							))
-						}
-					};
-					let args = &args.args;
-					if args.len() != 1 {
-						return Err(syn::Error::new(
-							args.span(),
-							"expected only one generic for vec",
-						));
-					}
-					let arg = args.first().expect("first arg");
 
-					let ty = match arg {
-						GenericArgument::Type(ty) => ty,
-						_ => {
-							return Err(syn::Error::new(
-								arg.span(),
-								"expected first generic to be type",
-							))
-						}
-					};
-
-					let wrapped = AbiType::try_from(ty)?;
-					Ok(Self::Vec(Box::new(wrapped)))
-				} else {
-					if !segment.arguments.is_empty() {
-						return Err(syn::Error::new(
-							segment.arguments.span(),
-							"unexpected generic arguments for non-vec type",
-						));
-					}
-					Ok(Self::Plain(segment.ident.clone()))
-				}
-			}
-			Type::Tuple(t) => {
-				let mut out = Vec::with_capacity(t.elems.len());
-				for el in t.elems.iter() {
-					out.push(AbiType::try_from(el)?)
-				}
-				Ok(Self::Tuple(out))
-			}
-			_ => Err(syn::Error::new(
-				value.span(),
-				"unexpected type, only arrays, plain types and tuples are supported",
-			)),
+	fn is_value(&self) -> bool {
+		if let Ok(ident) = self.plain() {
+			return ident == "value";
 		}
+		false
 	}
-	fn is_value(&self) -> bool {
-		matches!(self, Self::Plain(v) if v == "value")
-	}
+
 	fn is_caller(&self) -> bool {
-		matches!(self, Self::Plain(v) if v == "caller")
+		if let Ok(ident) = self.plain() {
+			return ident == "caller";
+		}
+		false
 	}
+
 	fn is_special(&self) -> bool {
 		self.is_caller() || self.is_value()
-	}
-	fn selector_ty_buf(&self, buf: &mut String) -> std::fmt::Result {
-		match self {
-			AbiType::Plain(t) => {
-				write!(buf, "{}", t)
-			}
-			AbiType::Tuple(t) => {
-				write!(buf, "(")?;
-				for (i, t) in t.iter().enumerate() {
-					if i != 0 {
-						write!(buf, ",")?;
-					}
-					t.selector_ty_buf(buf)?;
-				}
-				write!(buf, ")")
-			}
-			AbiType::Vec(v) => {
-				v.selector_ty_buf(buf)?;
-				write!(buf, "[]")
-			}
-			AbiType::Array(v, len) => {
-				v.selector_ty_buf(buf)?;
-				write!(buf, "[{}]", len)
-			}
-		}
-	}
-	fn selector_ty(&self) -> String {
-		let mut out = String::new();
-		self.selector_ty_buf(&mut out).expect("no fmt error");
-		out
-	}
-}
-impl ToTokens for AbiType {
-	fn to_tokens(&self, tokens: &mut proc_macro2::TokenStream) {
-		match self {
-			AbiType::Plain(t) => tokens.extend(quote! {#t}),
-			AbiType::Tuple(t) => {
-				tokens.extend(quote! {(
-					#(#t),*
-				)});
-			}
-			AbiType::Vec(v) => tokens.extend(quote! {Vec<#v>}),
-			AbiType::Array(v, l) => tokens.extend(quote! {[#v; #l]}),
-		}
 	}
 }
 
@@ -479,7 +369,7 @@
 struct MethodArg {
 	name: Ident,
 	camel_name: String,
-	ty: AbiType,
+	ty: Type,
 }
 impl MethodArg {
 	fn try_from(value: &PatType) -> syn::Result<Self> {
@@ -487,7 +377,7 @@
 		Ok(Self {
 			camel_name: cases::camelcase::to_camel_case(&name.to_string()),
 			name,
-			ty: AbiType::try_maybe_special_from(&value.ty)?,
+			ty: value.ty.as_ref().clone(),
 		})
 	}
 	fn is_value(&self) -> bool {
@@ -498,10 +388,6 @@
 	}
 	fn is_special(&self) -> bool {
 		self.ty.is_special()
-	}
-	fn selector_ty(&self) -> String {
-		assert!(!self.is_special());
-		self.ty.selector_ty()
 	}
 
 	fn expand_call_def(&self) -> proc_macro2::TokenStream {
@@ -578,8 +464,6 @@
 	camel_name: String,
 	pascal_name: Ident,
 	screaming_name: Ident,
-	selector_str: String,
-	selector: u32,
 	hide: bool,
 	args: Vec<MethodArg>,
 	has_normal_args: bool,
@@ -670,27 +554,14 @@
 		let camel_name = info
 			.rename_selector
 			.unwrap_or_else(|| cases::camelcase::to_camel_case(&ident.to_string()));
-		let mut selector_str = camel_name.clone();
-		selector_str.push('(');
-		let mut has_normal_args = false;
-		for (i, arg) in args.iter().filter(|arg| !arg.is_special()).enumerate() {
-			if i != 0 {
-				selector_str.push(',');
-			}
-			write!(selector_str, "{}", arg.selector_ty()).unwrap();
-			has_normal_args = true;
-		}
+		let has_normal_args = args.iter().filter(|arg| !arg.is_special()).count() != 0;
 		let has_value_args = args.iter().any(|a| a.is_value());
-		selector_str.push(')');
-		let selector = fn_selector_str(&selector_str);
 
 		Ok(Self {
 			name: ident.clone(),
 			camel_name,
 			pascal_name: snake_ident_to_pascal(ident),
 			screaming_name: snake_ident_to_screaming(ident),
-			selector_str,
-			selector,
 			hide: info.hide,
 			args,
 			has_normal_args,
@@ -728,10 +599,8 @@
 	fn expand_const(&self) -> proc_macro2::TokenStream {
 		let screaming_name = &self.screaming_name;
 		let screaming_name_signature = format_ident!("{}_SIGNATURE", &self.screaming_name);
-		let selector_str = &self.selector_str;
 		let custom_signature = self.expand_custom_signature();
 		quote! {
-			#[doc = #selector_str]
 			const #screaming_name_signature: ::evm_coder::custom_signature::FunctionSignature = #custom_signature;
 			const #screaming_name: ::evm_coder::types::bytes4 = {
 				let mut sum = ::evm_coder::sha3_const::Keccak256::new();
@@ -845,31 +714,78 @@
 		}
 	}
 
-	fn expand_type(
-		ty: &AbiType,
-		token_stream: &mut proc_macro2::TokenStream,
-		read_signature: bool,
-	) {
+	fn expand_type(ty: &Type, token_stream: &mut proc_macro2::TokenStream, read_signature: bool) {
 		match ty {
-			AbiType::Plain(ref ident) => {
-				let plain_token = if read_signature {
-					quote! {
-						(<#ident>::SIGNATURE)
+			Type::Path(tp) => {
+				if let Some(qself) = &tp.qself {
+					panic!("no receiver expected {:?}", qself.ty.span());
+				}
+				let path = &tp.path;
+				if path.segments.len() != 1 {
+					panic!("expected path to have only one segment {:?}", path.span());
+				}
+				let last_segment = path.segments.last().unwrap();
+
+				if last_segment.ident == "Vec" {
+					let args = match &last_segment.arguments {
+						PathArguments::AngleBracketed(e) => e,
+						_ => {
+							panic!("missing Vec generic {:?}", last_segment.arguments.span());
+						}
+					};
+					let args = &args.args;
+					if args.len() != 1 {
+						panic!("expected only one generic for vec {:?}", args.span());
 					}
+					let arg = args.first().expect("first arg");
+
+					let ty = match arg {
+						GenericArgument::Type(ty) => ty,
+						_ => {
+							panic!("expected first generic to be type {:?}", arg.span());
+						}
+					};
+
+					let mut vec_token = proc_macro2::TokenStream::new();
+					Self::expand_type(ty, &mut vec_token, false);
+					vec_token = if read_signature {
+						quote! { (<Vec<#vec_token>>::SIGNATURE) }
+					} else {
+						quote! { <Vec<#vec_token>> }
+					};
+					token_stream.extend(vec_token);
 				} else {
-					quote! {
-						#ident
+					if !last_segment.arguments.is_empty() {
+						panic!(
+							"unexpected generic arguments for non-vec type {:?}",
+							last_segment.arguments.span()
+						);
 					}
-				};
 
-				token_stream.extend(plain_token);
+					let ident = &last_segment.ident;
+					let plain_token = if read_signature {
+						quote! {
+							(<#ident>::SIGNATURE)
+						}
+					} else {
+						quote! {
+							#ident
+						}
+					};
+
+					token_stream.extend(plain_token);
+				}
 			}
 
-			AbiType::Tuple(ref tuple_type) => {
+			Type::Tuple(tt) => {
+				// for ty in tt.elems.iter() {
+				// 	out.push(AbiType::try_from(ty)?)
+				// }
+
 				let mut tuple_types = proc_macro2::TokenStream::new();
 				let mut is_first = true;
 
-				for ty in tuple_type {
+				for ty in tt.elems.iter() {
 					if is_first {
 						is_first = false
 					} else {
@@ -885,19 +801,69 @@
 				token_stream.extend(tuple_types);
 			}
 
-			AbiType::Vec(ref vec_type) => {
-				let mut vec_token = proc_macro2::TokenStream::new();
-				Self::expand_type(vec_type.as_ref(), &mut vec_token, false);
-				vec_token = if read_signature {
-					quote! { (<Vec<#vec_token>>::SIGNATURE) }
-				} else {
-					quote! { <Vec<#vec_token>> }
-				};
-				token_stream.extend(vec_token);
-			}
+			// Type::Array(arr) => {
+			// 	let wrapped = AbiType::try_from(&arr.elem)?;
+			// 	match &arr.len {
+			// 		Expr::Lit(l) => match &l.lit {
+			// 			Lit::Int(i) => {
+			// 				let num = i.base10_parse::<usize>()?;
+			// 				Ok(AbiType::Array(Box::new(wrapped), num as usize))
+			// 			}
+			// 			_ => Err(syn::Error::new(arr.len.span(), "should be int literal")),
+			// 		},
+			// 		_ => Err(syn::Error::new(arr.len.span(), "should be literal")),
+			// 	}
+			// }
+			_ => panic!("Unexpected type {ty:?}"),
+		}
+		// match ty {
+		// 	AbiType::Plain(ref ident) => {
+		// 		let plain_token = if read_signature {
+		// 			quote! {
+		// 				(<#ident>::SIGNATURE)
+		// 			}
+		// 		} else {
+		// 			quote! {
+		// 				#ident
+		// 			}
+		// 		};
+
+		// 		token_stream.extend(plain_token);
+		// 	}
+
+		// 	AbiType::Tuple(ref tuple_type) => {
+		// 		let mut tuple_types = proc_macro2::TokenStream::new();
+		// 		let mut is_first = true;
+
+		// 		for ty in tuple_type {
+		// 			if is_first {
+		// 				is_first = false
+		// 			} else {
+		// 				tuple_types.extend(quote!(,));
+		// 			}
+		// 			Self::expand_type(ty, &mut tuple_types, false);
+		// 		}
+		// 		tuple_types = if read_signature {
+		// 			quote! { (<(#tuple_types)>::SIGNATURE) }
+		// 		} else {
+		// 			quote! { (#tuple_types) }
+		// 		};
+		// 		token_stream.extend(tuple_types);
+		// 	}
+
+		// 	AbiType::Vec(ref vec_type) => {
+		// 		let mut vec_token = proc_macro2::TokenStream::new();
+		// 		Self::expand_type(vec_type.as_ref(), &mut vec_token, false);
+		// 		vec_token = if read_signature {
+		// 			quote! { (<Vec<#vec_token>>::SIGNATURE) }
+		// 		} else {
+		// 			quote! { <Vec<#vec_token>> }
+		// 		};
+		// 		token_stream.extend(vec_token);
+		// 	}
 
-			AbiType::Array(_, _) => todo!("Array eth signature"),
-		};
+		// 	AbiType::Array(_, _) => todo!("Array eth signature"),
+		// };
 	}
 
 	fn expand_custom_signature(&self) -> proc_macro2::TokenStream {
@@ -947,7 +913,6 @@
 			.filter(|a| !a.is_special())
 			.map(MethodArg::expand_solidity_argument);
 		let docs = &self.docs;
-		let selector_str = &self.selector_str;
 		let screaming_name = &self.screaming_name;
 		let hide = self.hide;
 		let custom_signature = self.expand_custom_signature();
@@ -962,7 +927,6 @@
 		quote! {
 			SolidityFunction {
 				docs: &[#(#docs),*],
-				selector_str: #selector_str,
 				hide: #hide,
 				selector: u32::from_be_bytes(Self::#screaming_name),
 				custom_signature: #custom_signature,
modifiedcrates/evm-coder/src/solidity.rsdiffbeforeafterboth
before · crates/evm-coder/src/solidity.rs
1// Copyright 2019-2022 Unique Network (Gibraltar) Ltd.2// This file is part of Unique Network.34// Unique Network is free software: you can redistribute it and/or modify5// it under the terms of the GNU General Public License as published by6// the Free Software Foundation, either version 3 of the License, or7// (at your option) any later version.89// Unique Network is distributed in the hope that it will be useful,10// but WITHOUT ANY WARRANTY; without even the implied warranty of11// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the12// GNU General Public License for more details.1314// You should have received a copy of the GNU General Public License15// along with Unique Network. If not, see <http://www.gnu.org/licenses/>.1617//! Implementation detail of [`crate::solidity_interface`] macro code-generation.18//! You should not rely on any public item from this module, as it is only intended to be used19//! by procedural macro, API and output format may be changed at any time.20//!21//! Purpose of this module is to receive solidity contract definition in module-specified22//! format, and then output string, representing interface of this contract in solidity language2324#[cfg(not(feature = "std"))]25use alloc::{string::String, vec::Vec, collections::BTreeMap, format};26#[cfg(feature = "std")]27use std::collections::BTreeMap;28use core::{29	fmt::{self, Write},30	marker::PhantomData,31	cell::{Cell, RefCell},32	cmp::Reverse,33};34use impl_trait_for_tuples::impl_for_tuples;35use crate::{types::*, custom_signature::FunctionSignature};3637#[derive(Default)]38pub struct TypeCollector {39	/// Code => id40	/// id ordering is required to perform topo-sort on the resulting data41	structs: RefCell<BTreeMap<string, usize>>,42	anonymous: RefCell<BTreeMap<Vec<string>, usize>>,43	id: Cell<usize>,44}45impl TypeCollector {46	pub fn new() -> Self {47		Self::default()48	}49	pub fn collect(&self, item: string) {50		let id = self.next_id();51		self.structs.borrow_mut().insert(item, id);52	}53	pub fn next_id(&self) -> usize {54		let v = self.id.get();55		self.id.set(v + 1);56		v57	}58	pub fn collect_tuple<T: SolidityTupleType>(&self) -> String {59		let names = T::names(self);60		if let Some(id) = self.anonymous.borrow().get(&names).cloned() {61			return format!("Tuple{}", id);62		}63		let id = self.next_id();64		let mut str = String::new();65		writeln!(str, "/// @dev anonymous struct").unwrap();66		writeln!(str, "struct Tuple{} {{", id).unwrap();67		for (i, name) in names.iter().enumerate() {68			writeln!(str, "\t{} field_{};", name, i).unwrap();69		}70		writeln!(str, "}}").unwrap();71		self.collect(str);72		self.anonymous.borrow_mut().insert(names, id);73		format!("Tuple{}", id)74	}75	pub fn collect_struct<T: StructCollect>(&self) -> String {76		self.collect(<T as StructCollect>::declaration());77		<T as StructCollect>::name()78	}79	pub fn finish(self) -> Vec<string> {80		let mut data = self.structs.into_inner().into_iter().collect::<Vec<_>>();81		data.sort_by_key(|(_, id)| Reverse(*id));82		data.into_iter().map(|(code, _)| code).collect()83	}84}8586pub trait StructCollect: 'static {87	/// Structure name.88	fn name() -> String;89	/// Structure declaration.90	fn declaration() -> String;91}9293pub trait SolidityTypeName: 'static {94	fn solidity_name(writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result;95	/// "simple" types are stored inline, no `memory` modifier should be used in solidity96	fn is_simple() -> bool;97	fn solidity_default(writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result;98	/// Specialization99	fn is_void() -> bool {100		false101	}102}103macro_rules! solidity_type_name {104    ($($ty:ty => $name:literal $simple:literal = $default:literal),* $(,)?) => {105        $(106            impl SolidityTypeName for $ty {107                fn solidity_name(writer: &mut impl core::fmt::Write, _tc: &TypeCollector) -> core::fmt::Result {108                    write!(writer, $name)109                }110				fn is_simple() -> bool {111					$simple112				}113				fn solidity_default(writer: &mut impl core::fmt::Write, _tc: &TypeCollector) -> core::fmt::Result {114					write!(writer, $default)115				}116            }117        )*118    };119}120121solidity_type_name! {122	uint8 => "uint8" true = "0",123	uint32 => "uint32" true = "0",124	uint64 => "uint64" true = "0",125	uint128 => "uint128" true = "0",126	uint256 => "uint256" true = "0",127	bytes4 => "bytes4" true = "bytes4(0)",128	address => "address" true = "0x0000000000000000000000000000000000000000",129	string => "string" false = "\"\"",130	bytes => "bytes" false = "hex\"\"",131	bool => "bool" true = "false",132}133impl SolidityTypeName for void {134	fn solidity_name(_writer: &mut impl fmt::Write, _tc: &TypeCollector) -> fmt::Result {135		Ok(())136	}137	fn is_simple() -> bool {138		true139	}140	fn solidity_default(_writer: &mut impl fmt::Write, _tc: &TypeCollector) -> fmt::Result {141		Ok(())142	}143	fn is_void() -> bool {144		true145	}146}147148mod sealed {149	/// Not every type should be directly placed in vec.150	/// Vec encoding is not memory efficient, as every item will be padded151	/// to 32 bytes.152	/// Instead you should use specialized types (`bytes` in case of `Vec<u8>`)153	pub trait CanBePlacedInVec {}154}155156impl sealed::CanBePlacedInVec for uint256 {}157impl sealed::CanBePlacedInVec for string {}158impl sealed::CanBePlacedInVec for address {}159impl sealed::CanBePlacedInVec for EthCrossAccount {}160161impl<T: SolidityTypeName + sealed::CanBePlacedInVec> SolidityTypeName for Vec<T> {162	fn solidity_name(writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {163		T::solidity_name(writer, tc)?;164		write!(writer, "[]")165	}166	fn is_simple() -> bool {167		false168	}169	fn solidity_default(writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {170		write!(writer, "new ")?;171		T::solidity_name(writer, tc)?;172		write!(writer, "[](0)")173	}174}175176impl SolidityTupleType for EthCrossAccount {177	fn names(tc: &TypeCollector) -> Vec<string> {178		let mut collected = Vec::with_capacity(Self::len());179		{180			let mut out = string::new();181			address::solidity_name(&mut out, tc).expect("no fmt error");182			collected.push(out);183		}184		{185			let mut out = string::new();186			uint256::solidity_name(&mut out, tc).expect("no fmt error");187			collected.push(out);188		}189		collected190	}191192	fn len() -> usize {193		2194	}195}196impl SolidityTypeName for EthCrossAccount {197	fn solidity_name(writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {198		write!(writer, "{}", tc.collect_struct::<Self>())199	}200201	fn is_simple() -> bool {202		false203	}204205	fn solidity_default(writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {206		write!(writer, "{}(", tc.collect_struct::<Self>())?;207		address::solidity_default(writer, tc)?;208		write!(writer, ",")?;209		uint256::solidity_default(writer, tc)?;210		write!(writer, ")")211	}212}213214impl StructCollect for EthCrossAccount {215	fn name() -> String {216		"EthCrossAccount".into()217	}218219	fn declaration() -> String {220		let mut str = String::new();221		writeln!(str, "/// @dev Cross account struct").unwrap();222		writeln!(str, "struct {} {{", Self::name()).unwrap();223		writeln!(str, "\taddress eth;").unwrap();224		writeln!(str, "\tuint256 sub;").unwrap();225		writeln!(str, "}}").unwrap();226		str227	}228}229230pub trait SolidityTupleType {231	fn names(tc: &TypeCollector) -> Vec<String>;232	fn len() -> usize;233}234235macro_rules! count {236    () => (0usize);237    ( $x:tt $($xs:tt)* ) => (1usize + count!($($xs)*));238}239240macro_rules! impl_tuples {241	($($ident:ident)+) => {242		impl<$($ident),+> sealed::CanBePlacedInVec for ($($ident,)+) {}243		impl<$($ident: SolidityTypeName + 'static),+> SolidityTupleType for ($($ident,)+) {244			fn names(tc: &TypeCollector) -> Vec<string> {245				let mut collected = Vec::with_capacity(Self::len());246				$({247					let mut out = string::new();248					$ident::solidity_name(&mut out, tc).expect("no fmt error");249					collected.push(out);250				})*;251				collected252			}253254			fn len() -> usize {255				count!($($ident)*)256			}257		}258		impl<$($ident: SolidityTypeName + 'static),+> SolidityTypeName for ($($ident,)+) {259			fn solidity_name(writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {260				write!(writer, "{}", tc.collect_tuple::<Self>())261			}262			fn is_simple() -> bool {263				false264			}265			#[allow(unused_assignments)]266			fn solidity_default(writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {267				write!(writer, "{}(", tc.collect_tuple::<Self>())?;268				let mut first = true;269				$(270					if !first {271						write!(writer, ",")?;272					} else {273						first = false;274					}275					<$ident>::solidity_default(writer, tc)?;276				)*277				write!(writer, ")")278			}279		}280	};281}282283impl_tuples! {A}284impl_tuples! {A B}285impl_tuples! {A B C}286impl_tuples! {A B C D}287impl_tuples! {A B C D E}288impl_tuples! {A B C D E F}289impl_tuples! {A B C D E F G}290impl_tuples! {A B C D E F G H}291impl_tuples! {A B C D E F G H I}292impl_tuples! {A B C D E F G H I J}293294pub trait SolidityArguments {295	fn solidity_name(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result;296	fn solidity_get(&self, prefix: &str, writer: &mut impl fmt::Write) -> fmt::Result;297	fn solidity_default(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result;298	fn is_empty(&self) -> bool {299		self.len() == 0300	}301	fn len(&self) -> usize;302}303304#[derive(Default)]305pub struct UnnamedArgument<T>(PhantomData<*const T>);306307impl<T: SolidityTypeName> SolidityArguments for UnnamedArgument<T> {308	fn solidity_name(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {309		if !T::is_void() {310			T::solidity_name(writer, tc)?;311			if !T::is_simple() {312				write!(writer, " memory")?;313			}314			Ok(())315		} else {316			Ok(())317		}318	}319	fn solidity_get(&self, _prefix: &str, _writer: &mut impl fmt::Write) -> fmt::Result {320		Ok(())321	}322	fn solidity_default(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {323		T::solidity_default(writer, tc)324	}325	fn len(&self) -> usize {326		if T::is_void() {327			0328		} else {329			1330		}331	}332}333334pub struct NamedArgument<T>(&'static str, PhantomData<*const T>);335336impl<T> NamedArgument<T> {337	pub fn new(name: &'static str) -> Self {338		Self(name, Default::default())339	}340}341342impl<T: SolidityTypeName> SolidityArguments for NamedArgument<T> {343	fn solidity_name(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {344		if !T::is_void() {345			T::solidity_name(writer, tc)?;346			if !T::is_simple() {347				write!(writer, " memory")?;348			}349			write!(writer, " {}", self.0)350		} else {351			Ok(())352		}353	}354	fn solidity_get(&self, prefix: &str, writer: &mut impl fmt::Write) -> fmt::Result {355		writeln!(writer, "\t{prefix}\t{};", self.0)356	}357	fn solidity_default(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {358		T::solidity_default(writer, tc)359	}360	fn len(&self) -> usize {361		if T::is_void() {362			0363		} else {364			1365		}366	}367}368369pub struct SolidityEventArgument<T>(pub bool, &'static str, PhantomData<*const T>);370371impl<T> SolidityEventArgument<T> {372	pub fn new(indexed: bool, name: &'static str) -> Self {373		Self(indexed, name, Default::default())374	}375}376377impl<T: SolidityTypeName> SolidityArguments for SolidityEventArgument<T> {378	fn solidity_name(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {379		if !T::is_void() {380			T::solidity_name(writer, tc)?;381			if self.0 {382				write!(writer, " indexed")?;383			}384			write!(writer, " {}", self.1)385		} else {386			Ok(())387		}388	}389	fn solidity_get(&self, prefix: &str, writer: &mut impl fmt::Write) -> fmt::Result {390		writeln!(writer, "\t{prefix}\t{};", self.1)391	}392	fn solidity_default(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {393		T::solidity_default(writer, tc)394	}395	fn len(&self) -> usize {396		if T::is_void() {397			0398		} else {399			1400		}401	}402}403404impl SolidityArguments for () {405	fn solidity_name(&self, _writer: &mut impl fmt::Write, _tc: &TypeCollector) -> fmt::Result {406		Ok(())407	}408	fn solidity_get(&self, _prefix: &str, _writer: &mut impl fmt::Write) -> fmt::Result {409		Ok(())410	}411	fn solidity_default(&self, _writer: &mut impl fmt::Write, _tc: &TypeCollector) -> fmt::Result {412		Ok(())413	}414	fn len(&self) -> usize {415		0416	}417}418419#[impl_for_tuples(1, 12)]420impl SolidityArguments for Tuple {421	for_tuples!( where #( Tuple: SolidityArguments ),* );422423	fn solidity_name(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {424		let mut first = true;425		for_tuples!( #(426            if !Tuple.is_empty() {427                if !first {428                    write!(writer, ", ")?;429                }430                first = false;431                Tuple.solidity_name(writer, tc)?;432            }433        )* );434		Ok(())435	}436	fn solidity_get(&self, prefix: &str, writer: &mut impl fmt::Write) -> fmt::Result {437		for_tuples!( #(438            Tuple.solidity_get(prefix, writer)?;439        )* );440		Ok(())441	}442	fn solidity_default(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {443		if self.is_empty() {444			Ok(())445		} else if self.len() == 1 {446			for_tuples!( #(447				Tuple.solidity_default(writer, tc)?;448			)* );449			Ok(())450		} else {451			write!(writer, "(")?;452			let mut first = true;453			for_tuples!( #(454				if !Tuple.is_empty() {455					if !first {456						write!(writer, ", ")?;457					}458					first = false;459					Tuple.solidity_default(writer, tc)?;460				}461			)* );462			write!(writer, ")")?;463			Ok(())464		}465	}466	fn len(&self) -> usize {467		for_tuples!( #( Tuple.len() )+* )468	}469}470471pub trait SolidityFunctions {472	fn solidity_name(473		&self,474		is_impl: bool,475		writer: &mut impl fmt::Write,476		tc: &TypeCollector,477	) -> fmt::Result;478}479480pub enum SolidityMutability {481	Pure,482	View,483	Mutable,484}485pub struct SolidityFunction<A, R> {486	pub docs: &'static [&'static str],487	pub selector_str: &'static str,488	pub selector: u32,489	pub hide: bool,490	pub custom_signature: FunctionSignature,491	pub name: &'static str,492	pub args: A,493	pub result: R,494	pub mutability: SolidityMutability,495	pub is_payable: bool,496}497impl<A: SolidityArguments, R: SolidityArguments> SolidityFunctions for SolidityFunction<A, R> {498	fn solidity_name(499		&self,500		is_impl: bool,501		writer: &mut impl fmt::Write,502		tc: &TypeCollector,503	) -> fmt::Result {504		let hide_comment = self.hide.then(|| "// ").unwrap_or("");505		for doc in self.docs {506			writeln!(writer, "\t{hide_comment}///{}", doc)?;507		}508		writeln!(509			writer,510			"\t{hide_comment}/// @dev EVM selector for this function is: 0x{:0>8x},",511			self.selector512		)?;513		writeln!(514			writer,515			"\t{hide_comment}///  or in textual repr: {}",516			self.selector_str517		)?;518		if self.selector_str != self.custom_signature.as_str() {519			writeln!(520				writer,521				"\t{hide_comment}///  or in the expanded repr: {}",522				self.custom_signature.as_str()523			)?;524		}525		write!(writer, "\t{hide_comment}function {}(", self.name)?;526		self.args.solidity_name(writer, tc)?;527		write!(writer, ")")?;528		if is_impl {529			write!(writer, " public")?;530		} else {531			write!(writer, " external")?;532		}533		match &self.mutability {534			SolidityMutability::Pure => write!(writer, " pure")?,535			SolidityMutability::View => write!(writer, " view")?,536			SolidityMutability::Mutable => {}537		}538		if self.is_payable {539			write!(writer, " payable")?;540		}541		if !self.result.is_empty() {542			write!(writer, " returns (")?;543			self.result.solidity_name(writer, tc)?;544			write!(writer, ")")?;545		}546		if is_impl {547			writeln!(writer, " {{")?;548			writeln!(writer, "\t{hide_comment}\trequire(false, stub_error);")?;549			self.args.solidity_get(hide_comment, writer)?;550			match &self.mutability {551				SolidityMutability::Pure => {}552				SolidityMutability::View => writeln!(writer, "\t{hide_comment}\tdummy;")?,553				SolidityMutability::Mutable => writeln!(writer, "\t{hide_comment}\tdummy = 0;")?,554			}555			if !self.result.is_empty() {556				write!(writer, "\t{hide_comment}\treturn ")?;557				self.result.solidity_default(writer, tc)?;558				writeln!(writer, ";")?;559			}560			writeln!(writer, "\t{hide_comment}}}")?;561		} else {562			writeln!(writer, ";")?;563		}564		if self.hide {565			writeln!(writer, "// FORMATTING: FORCE NEWLINE")?;566		}567		Ok(())568	}569}570571#[impl_for_tuples(0, 48)]572impl SolidityFunctions for Tuple {573	for_tuples!( where #( Tuple: SolidityFunctions ),* );574575	fn solidity_name(576		&self,577		is_impl: bool,578		writer: &mut impl fmt::Write,579		tc: &TypeCollector,580	) -> fmt::Result {581		let mut first = false;582		for_tuples!( #(583            Tuple.solidity_name(is_impl, writer, tc)?;584        )* );585		Ok(())586	}587}588589pub struct SolidityInterface<F: SolidityFunctions> {590	pub docs: &'static [&'static str],591	pub selector: bytes4,592	pub name: &'static str,593	pub is: &'static [&'static str],594	pub functions: F,595}596597impl<F: SolidityFunctions> SolidityInterface<F> {598	pub fn format(599		&self,600		is_impl: bool,601		out: &mut impl fmt::Write,602		tc: &TypeCollector,603	) -> fmt::Result {604		const ZERO_BYTES: [u8; 4] = [0; 4];605		for doc in self.docs {606			writeln!(out, "///{}", doc)?;607		}608		if self.selector != ZERO_BYTES {609			writeln!(610				out,611				"/// @dev the ERC-165 identifier for this interface is 0x{:0>8x}",612				u32::from_be_bytes(self.selector)613			)?;614		}615		if is_impl {616			write!(out, "contract ")?;617		} else {618			write!(out, "interface ")?;619		}620		write!(out, "{}", self.name)?;621		if !self.is.is_empty() {622			write!(out, " is")?;623			for (i, n) in self.is.iter().enumerate() {624				if i != 0 {625					write!(out, ",")?;626				}627				write!(out, " {}", n)?;628			}629		}630		writeln!(out, " {{")?;631		self.functions.solidity_name(is_impl, out, tc)?;632		writeln!(out, "}}")?;633		Ok(())634	}635}636637pub struct SolidityEvent<A> {638	pub name: &'static str,639	pub args: A,640}641642impl<A: SolidityArguments> SolidityFunctions for SolidityEvent<A> {643	fn solidity_name(644		&self,645		_is_impl: bool,646		writer: &mut impl fmt::Write,647		tc: &TypeCollector,648	) -> fmt::Result {649		write!(writer, "\tevent {}(", self.name)?;650		self.args.solidity_name(writer, tc)?;651		writeln!(writer, ");")652	}653}
after · crates/evm-coder/src/solidity.rs
1// Copyright 2019-2022 Unique Network (Gibraltar) Ltd.2// This file is part of Unique Network.34// Unique Network is free software: you can redistribute it and/or modify5// it under the terms of the GNU General Public License as published by6// the Free Software Foundation, either version 3 of the License, or7// (at your option) any later version.89// Unique Network is distributed in the hope that it will be useful,10// but WITHOUT ANY WARRANTY; without even the implied warranty of11// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the12// GNU General Public License for more details.1314// You should have received a copy of the GNU General Public License15// along with Unique Network. If not, see <http://www.gnu.org/licenses/>.1617//! Implementation detail of [`crate::solidity_interface`] macro code-generation.18//! You should not rely on any public item from this module, as it is only intended to be used19//! by procedural macro, API and output format may be changed at any time.20//!21//! Purpose of this module is to receive solidity contract definition in module-specified22//! format, and then output string, representing interface of this contract in solidity language2324#[cfg(not(feature = "std"))]25use alloc::{string::String, vec::Vec, collections::BTreeMap, format};26#[cfg(feature = "std")]27use std::collections::BTreeMap;28use core::{29	fmt::{self, Write},30	marker::PhantomData,31	cell::{Cell, RefCell},32	cmp::Reverse,33};34use impl_trait_for_tuples::impl_for_tuples;35use crate::{types::*, custom_signature::FunctionSignature};3637#[derive(Default)]38pub struct TypeCollector {39	/// Code => id40	/// id ordering is required to perform topo-sort on the resulting data41	structs: RefCell<BTreeMap<string, usize>>,42	anonymous: RefCell<BTreeMap<Vec<string>, usize>>,43	id: Cell<usize>,44}45impl TypeCollector {46	pub fn new() -> Self {47		Self::default()48	}49	pub fn collect(&self, item: string) {50		let id = self.next_id();51		self.structs.borrow_mut().insert(item, id);52	}53	pub fn next_id(&self) -> usize {54		let v = self.id.get();55		self.id.set(v + 1);56		v57	}58	pub fn collect_tuple<T: SolidityTupleType>(&self) -> String {59		let names = T::names(self);60		if let Some(id) = self.anonymous.borrow().get(&names).cloned() {61			return format!("Tuple{}", id);62		}63		let id = self.next_id();64		let mut str = String::new();65		writeln!(str, "/// @dev anonymous struct").unwrap();66		writeln!(str, "struct Tuple{} {{", id).unwrap();67		for (i, name) in names.iter().enumerate() {68			writeln!(str, "\t{} field_{};", name, i).unwrap();69		}70		writeln!(str, "}}").unwrap();71		self.collect(str);72		self.anonymous.borrow_mut().insert(names, id);73		format!("Tuple{}", id)74	}75	pub fn collect_struct<T: StructCollect>(&self) -> String {76		self.collect(<T as StructCollect>::declaration());77		<T as StructCollect>::name()78	}79	pub fn finish(self) -> Vec<string> {80		let mut data = self.structs.into_inner().into_iter().collect::<Vec<_>>();81		data.sort_by_key(|(_, id)| Reverse(*id));82		data.into_iter().map(|(code, _)| code).collect()83	}84}8586pub trait StructCollect: 'static {87	/// Structure name.88	fn name() -> String;89	/// Structure declaration.90	fn declaration() -> String;91}9293pub trait SolidityTypeName: 'static {94	fn solidity_name(writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result;95	/// "simple" types are stored inline, no `memory` modifier should be used in solidity96	fn is_simple() -> bool;97	fn solidity_default(writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result;98	/// Specialization99	fn is_void() -> bool {100		false101	}102}103macro_rules! solidity_type_name {104    ($($ty:ty => $name:literal $simple:literal = $default:literal),* $(,)?) => {105        $(106            impl SolidityTypeName for $ty {107                fn solidity_name(writer: &mut impl core::fmt::Write, _tc: &TypeCollector) -> core::fmt::Result {108                    write!(writer, $name)109                }110				fn is_simple() -> bool {111					$simple112				}113				fn solidity_default(writer: &mut impl core::fmt::Write, _tc: &TypeCollector) -> core::fmt::Result {114					write!(writer, $default)115				}116            }117        )*118    };119}120121solidity_type_name! {122	uint8 => "uint8" true = "0",123	uint32 => "uint32" true = "0",124	uint64 => "uint64" true = "0",125	uint128 => "uint128" true = "0",126	uint256 => "uint256" true = "0",127	bytes4 => "bytes4" true = "bytes4(0)",128	address => "address" true = "0x0000000000000000000000000000000000000000",129	string => "string" false = "\"\"",130	bytes => "bytes" false = "hex\"\"",131	bool => "bool" true = "false",132}133impl SolidityTypeName for void {134	fn solidity_name(_writer: &mut impl fmt::Write, _tc: &TypeCollector) -> fmt::Result {135		Ok(())136	}137	fn is_simple() -> bool {138		true139	}140	fn solidity_default(_writer: &mut impl fmt::Write, _tc: &TypeCollector) -> fmt::Result {141		Ok(())142	}143	fn is_void() -> bool {144		true145	}146}147148mod sealed {149	/// Not every type should be directly placed in vec.150	/// Vec encoding is not memory efficient, as every item will be padded151	/// to 32 bytes.152	/// Instead you should use specialized types (`bytes` in case of `Vec<u8>`)153	pub trait CanBePlacedInVec {}154}155156impl sealed::CanBePlacedInVec for uint256 {}157impl sealed::CanBePlacedInVec for string {}158impl sealed::CanBePlacedInVec for address {}159impl sealed::CanBePlacedInVec for EthCrossAccount {}160161impl<T: SolidityTypeName + sealed::CanBePlacedInVec> SolidityTypeName for Vec<T> {162	fn solidity_name(writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {163		T::solidity_name(writer, tc)?;164		write!(writer, "[]")165	}166	fn is_simple() -> bool {167		false168	}169	fn solidity_default(writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {170		write!(writer, "new ")?;171		T::solidity_name(writer, tc)?;172		write!(writer, "[](0)")173	}174}175176impl SolidityTupleType for EthCrossAccount {177	fn names(tc: &TypeCollector) -> Vec<string> {178		let mut collected = Vec::with_capacity(Self::len());179		{180			let mut out = string::new();181			address::solidity_name(&mut out, tc).expect("no fmt error");182			collected.push(out);183		}184		{185			let mut out = string::new();186			uint256::solidity_name(&mut out, tc).expect("no fmt error");187			collected.push(out);188		}189		collected190	}191192	fn len() -> usize {193		2194	}195}196impl SolidityTypeName for EthCrossAccount {197	fn solidity_name(writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {198		write!(writer, "{}", tc.collect_struct::<Self>())199	}200201	fn is_simple() -> bool {202		false203	}204205	fn solidity_default(writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {206		write!(writer, "{}(", tc.collect_struct::<Self>())?;207		address::solidity_default(writer, tc)?;208		write!(writer, ",")?;209		uint256::solidity_default(writer, tc)?;210		write!(writer, ")")211	}212}213214impl StructCollect for EthCrossAccount {215	fn name() -> String {216		"EthCrossAccount".into()217	}218219	fn declaration() -> String {220		let mut str = String::new();221		writeln!(str, "/// @dev Cross account struct").unwrap();222		writeln!(str, "struct {} {{", Self::name()).unwrap();223		writeln!(str, "\taddress eth;").unwrap();224		writeln!(str, "\tuint256 sub;").unwrap();225		writeln!(str, "}}").unwrap();226		str227	}228}229230pub trait SolidityTupleType {231	fn names(tc: &TypeCollector) -> Vec<String>;232	fn len() -> usize;233}234235macro_rules! count {236    () => (0usize);237    ( $x:tt $($xs:tt)* ) => (1usize + count!($($xs)*));238}239240macro_rules! impl_tuples {241	($($ident:ident)+) => {242		impl<$($ident),+> sealed::CanBePlacedInVec for ($($ident,)+) {}243		impl<$($ident: SolidityTypeName + 'static),+> SolidityTupleType for ($($ident,)+) {244			fn names(tc: &TypeCollector) -> Vec<string> {245				let mut collected = Vec::with_capacity(Self::len());246				$({247					let mut out = string::new();248					$ident::solidity_name(&mut out, tc).expect("no fmt error");249					collected.push(out);250				})*;251				collected252			}253254			fn len() -> usize {255				count!($($ident)*)256			}257		}258		impl<$($ident: SolidityTypeName + 'static),+> SolidityTypeName for ($($ident,)+) {259			fn solidity_name(writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {260				write!(writer, "{}", tc.collect_tuple::<Self>())261			}262			fn is_simple() -> bool {263				false264			}265			#[allow(unused_assignments)]266			fn solidity_default(writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {267				write!(writer, "{}(", tc.collect_tuple::<Self>())?;268				let mut first = true;269				$(270					if !first {271						write!(writer, ",")?;272					} else {273						first = false;274					}275					<$ident>::solidity_default(writer, tc)?;276				)*277				write!(writer, ")")278			}279		}280	};281}282283impl_tuples! {A}284impl_tuples! {A B}285impl_tuples! {A B C}286impl_tuples! {A B C D}287impl_tuples! {A B C D E}288impl_tuples! {A B C D E F}289impl_tuples! {A B C D E F G}290impl_tuples! {A B C D E F G H}291impl_tuples! {A B C D E F G H I}292impl_tuples! {A B C D E F G H I J}293294pub trait SolidityArguments {295	fn solidity_name(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result;296	fn solidity_get(&self, prefix: &str, writer: &mut impl fmt::Write) -> fmt::Result;297	fn solidity_default(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result;298	fn is_empty(&self) -> bool {299		self.len() == 0300	}301	fn len(&self) -> usize;302}303304#[derive(Default)]305pub struct UnnamedArgument<T>(PhantomData<*const T>);306307impl<T: SolidityTypeName> SolidityArguments for UnnamedArgument<T> {308	fn solidity_name(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {309		if !T::is_void() {310			T::solidity_name(writer, tc)?;311			if !T::is_simple() {312				write!(writer, " memory")?;313			}314			Ok(())315		} else {316			Ok(())317		}318	}319	fn solidity_get(&self, _prefix: &str, _writer: &mut impl fmt::Write) -> fmt::Result {320		Ok(())321	}322	fn solidity_default(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {323		T::solidity_default(writer, tc)324	}325	fn len(&self) -> usize {326		if T::is_void() {327			0328		} else {329			1330		}331	}332}333334pub struct NamedArgument<T>(&'static str, PhantomData<*const T>);335336impl<T> NamedArgument<T> {337	pub fn new(name: &'static str) -> Self {338		Self(name, Default::default())339	}340}341342impl<T: SolidityTypeName> SolidityArguments for NamedArgument<T> {343	fn solidity_name(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {344		if !T::is_void() {345			T::solidity_name(writer, tc)?;346			if !T::is_simple() {347				write!(writer, " memory")?;348			}349			write!(writer, " {}", self.0)350		} else {351			Ok(())352		}353	}354	fn solidity_get(&self, prefix: &str, writer: &mut impl fmt::Write) -> fmt::Result {355		writeln!(writer, "\t{prefix}\t{};", self.0)356	}357	fn solidity_default(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {358		T::solidity_default(writer, tc)359	}360	fn len(&self) -> usize {361		if T::is_void() {362			0363		} else {364			1365		}366	}367}368369pub struct SolidityEventArgument<T>(pub bool, &'static str, PhantomData<*const T>);370371impl<T> SolidityEventArgument<T> {372	pub fn new(indexed: bool, name: &'static str) -> Self {373		Self(indexed, name, Default::default())374	}375}376377impl<T: SolidityTypeName> SolidityArguments for SolidityEventArgument<T> {378	fn solidity_name(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {379		if !T::is_void() {380			T::solidity_name(writer, tc)?;381			if self.0 {382				write!(writer, " indexed")?;383			}384			write!(writer, " {}", self.1)385		} else {386			Ok(())387		}388	}389	fn solidity_get(&self, prefix: &str, writer: &mut impl fmt::Write) -> fmt::Result {390		writeln!(writer, "\t{prefix}\t{};", self.1)391	}392	fn solidity_default(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {393		T::solidity_default(writer, tc)394	}395	fn len(&self) -> usize {396		if T::is_void() {397			0398		} else {399			1400		}401	}402}403404impl SolidityArguments for () {405	fn solidity_name(&self, _writer: &mut impl fmt::Write, _tc: &TypeCollector) -> fmt::Result {406		Ok(())407	}408	fn solidity_get(&self, _prefix: &str, _writer: &mut impl fmt::Write) -> fmt::Result {409		Ok(())410	}411	fn solidity_default(&self, _writer: &mut impl fmt::Write, _tc: &TypeCollector) -> fmt::Result {412		Ok(())413	}414	fn len(&self) -> usize {415		0416	}417}418419#[impl_for_tuples(1, 12)]420impl SolidityArguments for Tuple {421	for_tuples!( where #( Tuple: SolidityArguments ),* );422423	fn solidity_name(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {424		let mut first = true;425		for_tuples!( #(426            if !Tuple.is_empty() {427                if !first {428                    write!(writer, ", ")?;429                }430                first = false;431                Tuple.solidity_name(writer, tc)?;432            }433        )* );434		Ok(())435	}436	fn solidity_get(&self, prefix: &str, writer: &mut impl fmt::Write) -> fmt::Result {437		for_tuples!( #(438            Tuple.solidity_get(prefix, writer)?;439        )* );440		Ok(())441	}442	fn solidity_default(&self, writer: &mut impl fmt::Write, tc: &TypeCollector) -> fmt::Result {443		if self.is_empty() {444			Ok(())445		} else if self.len() == 1 {446			for_tuples!( #(447				Tuple.solidity_default(writer, tc)?;448			)* );449			Ok(())450		} else {451			write!(writer, "(")?;452			let mut first = true;453			for_tuples!( #(454				if !Tuple.is_empty() {455					if !first {456						write!(writer, ", ")?;457					}458					first = false;459					Tuple.solidity_default(writer, tc)?;460				}461			)* );462			write!(writer, ")")?;463			Ok(())464		}465	}466	fn len(&self) -> usize {467		for_tuples!( #( Tuple.len() )+* )468	}469}470471pub trait SolidityFunctions {472	fn solidity_name(473		&self,474		is_impl: bool,475		writer: &mut impl fmt::Write,476		tc: &TypeCollector,477	) -> fmt::Result;478}479480pub enum SolidityMutability {481	Pure,482	View,483	Mutable,484}485pub struct SolidityFunction<A, R> {486	pub docs: &'static [&'static str],487	pub selector: u32,488	pub hide: bool,489	pub custom_signature: FunctionSignature,490	pub name: &'static str,491	pub args: A,492	pub result: R,493	pub mutability: SolidityMutability,494	pub is_payable: bool,495}496impl<A: SolidityArguments, R: SolidityArguments> SolidityFunctions for SolidityFunction<A, R> {497	fn solidity_name(498		&self,499		is_impl: bool,500		writer: &mut impl fmt::Write,501		tc: &TypeCollector,502	) -> fmt::Result {503		let hide_comment = self.hide.then(|| "// ").unwrap_or("");504		for doc in self.docs {505			writeln!(writer, "\t{hide_comment}///{}", doc)?;506		}507		writeln!(508			writer,509			"\t{hide_comment}/// @dev EVM selector for this function is: 0x{:0>8x},",510			self.selector511		)?;512		writeln!(513			writer,514			"\t{hide_comment}///  or in textual repr: {}",515			self.custom_signature.as_str()516		)?;517		write!(writer, "\t{hide_comment}function {}(", self.name)?;518		self.args.solidity_name(writer, tc)?;519		write!(writer, ")")?;520		if is_impl {521			write!(writer, " public")?;522		} else {523			write!(writer, " external")?;524		}525		match &self.mutability {526			SolidityMutability::Pure => write!(writer, " pure")?,527			SolidityMutability::View => write!(writer, " view")?,528			SolidityMutability::Mutable => {}529		}530		if self.is_payable {531			write!(writer, " payable")?;532		}533		if !self.result.is_empty() {534			write!(writer, " returns (")?;535			self.result.solidity_name(writer, tc)?;536			write!(writer, ")")?;537		}538		if is_impl {539			writeln!(writer, " {{")?;540			writeln!(writer, "\t{hide_comment}\trequire(false, stub_error);")?;541			self.args.solidity_get(hide_comment, writer)?;542			match &self.mutability {543				SolidityMutability::Pure => {}544				SolidityMutability::View => writeln!(writer, "\t{hide_comment}\tdummy;")?,545				SolidityMutability::Mutable => writeln!(writer, "\t{hide_comment}\tdummy = 0;")?,546			}547			if !self.result.is_empty() {548				write!(writer, "\t{hide_comment}\treturn ")?;549				self.result.solidity_default(writer, tc)?;550				writeln!(writer, ";")?;551			}552			writeln!(writer, "\t{hide_comment}}}")?;553		} else {554			writeln!(writer, ";")?;555		}556		if self.hide {557			writeln!(writer, "// FORMATTING: FORCE NEWLINE")?;558		}559		Ok(())560	}561}562563#[impl_for_tuples(0, 48)]564impl SolidityFunctions for Tuple {565	for_tuples!( where #( Tuple: SolidityFunctions ),* );566567	fn solidity_name(568		&self,569		is_impl: bool,570		writer: &mut impl fmt::Write,571		tc: &TypeCollector,572	) -> fmt::Result {573		let mut first = false;574		for_tuples!( #(575            Tuple.solidity_name(is_impl, writer, tc)?;576        )* );577		Ok(())578	}579}580581pub struct SolidityInterface<F: SolidityFunctions> {582	pub docs: &'static [&'static str],583	pub selector: bytes4,584	pub name: &'static str,585	pub is: &'static [&'static str],586	pub functions: F,587}588589impl<F: SolidityFunctions> SolidityInterface<F> {590	pub fn format(591		&self,592		is_impl: bool,593		out: &mut impl fmt::Write,594		tc: &TypeCollector,595	) -> fmt::Result {596		const ZERO_BYTES: [u8; 4] = [0; 4];597		for doc in self.docs {598			writeln!(out, "///{}", doc)?;599		}600		if self.selector != ZERO_BYTES {601			writeln!(602				out,603				"/// @dev the ERC-165 identifier for this interface is 0x{:0>8x}",604				u32::from_be_bytes(self.selector)605			)?;606		}607		if is_impl {608			write!(out, "contract ")?;609		} else {610			write!(out, "interface ")?;611		}612		write!(out, "{}", self.name)?;613		if !self.is.is_empty() {614			write!(out, " is")?;615			for (i, n) in self.is.iter().enumerate() {616				if i != 0 {617					write!(out, ",")?;618				}619				write!(out, " {}", n)?;620			}621		}622		writeln!(out, " {{")?;623		self.functions.solidity_name(is_impl, out, tc)?;624		writeln!(out, "}}")?;625		Ok(())626	}627}628629pub struct SolidityEvent<A> {630	pub name: &'static str,631	pub args: A,632}633634impl<A: SolidityArguments> SolidityFunctions for SolidityEvent<A> {635	fn solidity_name(636		&self,637		_is_impl: bool,638		writer: &mut impl fmt::Write,639		tc: &TypeCollector,640	) -> fmt::Result {641		write!(writer, "\tevent {}(", self.name)?;642		self.args.solidity_name(writer, tc)?;643		writeln!(writer, ");")644	}645}