164 lines
6.1 KiB
Rust
164 lines
6.1 KiB
Rust
//! # EIP-712 Derive Macro
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//!
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//! This crate provides a derive macro `Eip712` that is used to encode a rust struct
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//! into a payload hash, according to [https://eips.ethereum.org/EIPS/eip-712](https://eips.ethereum.org/EIPS/eip-712)
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//!
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//! The trait used to derive the macro is found in `ethers_core::transaction::eip712::Eip712`
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//! Both the derive macro and the trait must be in context when using
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//!
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//! This derive macro requires the `#[eip712]` attributes to be included
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//! for specifying the domain separator used in encoding the hash.
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//!
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//! NOTE: In addition to deriving `Eip712` trait, the `EthAbiType` trait must also be derived.
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//! This allows the struct to be parsed into `ethers_core::abi::Token` for encoding.
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//!
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//! # Optional Eip712 Parameters
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//!
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//! The only optional parameter is `salt`, which accepts a string
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//! that is hashed using keccak256 and stored as bytes.
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//!
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//! # Example Usage
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//!
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//! ```ignore
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//! use ethers_contract::EthAbiType;
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//! use ethers_derive_eip712::*;
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//! use ethers_core::types::{transaction::eip712::Eip712, H160};
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//!
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//! #[derive(Debug, Eip712, EthAbiType)]
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//! #[eip712(
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//! name = "Radicle",
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//! version = "1",
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//! chain_id = 1,
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//! verifying_contract = "0x0000000000000000000000000000000000000000"
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//! // salt is an optional parameter
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//! salt = "my-unique-spice"
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//! )]
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//! pub struct Puzzle {
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//! pub organization: H160,
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//! pub contributor: H160,
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//! pub commit: String,
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//! pub project: String,
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//! }
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//!
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//! let puzzle = Puzzle {
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//! organization: "0000000000000000000000000000000000000000"
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//! .parse::<H160>()
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//! .expect("failed to parse address"),
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//! contributor: "0000000000000000000000000000000000000000"
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//! .parse::<H160>()
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//! .expect("failed to parse address"),
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//! commit: "5693b7019eb3e4487a81273c6f5e1832d77acb53".to_string(),
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//! project: "radicle-reward".to_string(),
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//! };
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//!
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//! let hash = puzzle.encode_eip712().unwrap();
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//! ```
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//!
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//! # Limitations
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//!
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//! At the moment, the derive macro does not recursively encode nested Eip712 structs.
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//!
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//! There is an Inner helper attribute `#[eip712]` for fields that will eventually be used to
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//! determine if there is a nested eip712 struct. However, this work is not yet complete.
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#![deny(missing_docs, unsafe_code, rustdoc::broken_intra_doc_links)]
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use ethers_core::{macros::ethers_core_crate, types::transaction::eip712};
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use proc_macro::TokenStream;
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use proc_macro2::TokenStream as TokenStream2;
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use quote::quote;
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use syn::{parse_macro_input, Result};
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/// Derive macro for `Eip712`
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#[proc_macro_derive(Eip712, attributes(eip712))]
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pub fn eip_712_derive(input: TokenStream) -> TokenStream {
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let input = parse_macro_input!(input);
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match impl_eip_712_macro(&input) {
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Ok(tokens) => tokens,
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Err(e) => e.to_compile_error(),
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}
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.into()
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}
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// Main implementation macro, used to compute static values and define
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// method for encoding the final eip712 payload;
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fn impl_eip_712_macro(input: &syn::DeriveInput) -> Result<TokenStream2> {
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// Primary type should match the type in the ethereum verifying contract;
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let primary_type = &input.ident;
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// Instantiate domain from parsed attributes
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let domain = eip712::EIP712Domain::try_from(input)?;
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let domain_separator = hex::encode(domain.separator());
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//
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let domain_str = serde_json::to_string(&domain).unwrap();
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// Must parse the AST at compile time.
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let parsed_fields = eip712::parse_fields(input)?;
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// Compute the type hash for the derived struct using the parsed fields from above.
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let type_hash =
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hex::encode(eip712::make_type_hash(primary_type.clone().to_string(), &parsed_fields));
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// Use reference to ethers_core instead of directly using the crate itself.
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let ethers_core = ethers_core_crate();
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let tokens = quote! {
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impl Eip712 for #primary_type {
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type Error = #ethers_core::types::transaction::eip712::Eip712Error;
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fn type_hash() -> Result<[u8; 32], Self::Error> {
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use std::convert::TryFrom;
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let decoded = #ethers_core::utils::hex::decode(#type_hash)?;
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let byte_array: [u8; 32] = <[u8; 32]>::try_from(&decoded[..])?;
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Ok(byte_array)
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}
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// Return the pre-computed domain separator from compile time;
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fn domain_separator(&self) -> Result<[u8; 32], Self::Error> {
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use std::convert::TryFrom;
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let decoded = #ethers_core::utils::hex::decode(#domain_separator)?;
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let byte_array: [u8; 32] = <[u8; 32]>::try_from(&decoded[..])?;
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Ok(byte_array)
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}
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fn domain(&self) -> Result<#ethers_core::types::transaction::eip712::EIP712Domain, Self::Error> {
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let domain: #ethers_core::types::transaction::eip712::EIP712Domain = # ethers_core::utils::__serde_json::from_str(#domain_str)?;
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Ok(domain)
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}
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fn struct_hash(&self) -> Result<[u8; 32], Self::Error> {
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use #ethers_core::abi::Tokenizable;
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let mut items = vec![#ethers_core::abi::Token::Uint(
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#ethers_core::types::U256::from(&Self::type_hash()?[..]),
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)];
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if let #ethers_core::abi::Token::Tuple(tokens) = self.clone().into_token() {
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for token in tokens {
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match &token {
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#ethers_core::abi::Token::Tuple(t) => {
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// TODO: check for nested Eip712 Type;
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// Challenge is determining the type hash
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return Err(Self::Error::NestedEip712StructNotImplemented);
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},
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_ => {
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items.push(#ethers_core::types::transaction::eip712::encode_eip712_type(token));
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}
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}
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}
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}
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let struct_hash = #ethers_core::utils::keccak256(#ethers_core::abi::encode(
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&items,
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));
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Ok(struct_hash)
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}
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}
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};
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Ok(tokens)
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}
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