a8617e2862
* added sign_191 rpc method * fixed hash_structured_data return type * added ConfirmationPayload::SignMessage for non-prefixed signatures, added tests for sign191 * renamed WithValidator -> PresignedTransaction * rename applicationData to data in test * adds docs for EIP191Version, renamed SignRequest to EIP191SignRequest
416 lines
12 KiB
Rust
416 lines
12 KiB
Rust
// Copyright 2015-2018 Parity Technologies (UK) Ltd.
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// This file is part of Parity.
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// Parity is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Parity is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Parity. If not, see <http://www.gnu.org/licenses/>.
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//! EIP712 Encoder
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use ethabi::{encode, Token as EthAbiToken};
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use ethereum_types::{Address as EthAddress, U256, H256};
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use keccak_hash::keccak;
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use serde_json::Value;
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use std::str::FromStr;
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use itertools::Itertools;
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use indexmap::IndexSet;
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use serde_json::to_value;
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use parser::{Parser, Type};
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use error::{Result, ErrorKind, serde_error};
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use eip712::{EIP712, MessageTypes};
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use rustc_hex::FromHex;
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use validator::Validate;
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use std::collections::HashSet;
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fn check_hex(string: &str) -> Result<()> {
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if string.len() >= 2 && &string[..2] == "0x" {
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return Ok(())
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}
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return Err(ErrorKind::HexParseError(
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format!("Expected a 0x-prefixed string of even length, found {} length string", string.len()))
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)?
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}
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/// given a type and HashMap<String, Vec<FieldType>>
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/// returns a HashSet of dependent types of the given type
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fn build_dependencies<'a>(message_type: &'a str, message_types: &'a MessageTypes) -> Option<(HashSet<&'a str>)>
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{
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if message_types.get(message_type).is_none() {
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return None;
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}
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let mut types = IndexSet::new();
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types.insert(message_type);
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let mut deps = HashSet::new();
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while let Some(item) = types.pop() {
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if let Some(fields) = message_types.get(item) {
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deps.insert(item);
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for field in fields {
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// seen this type before? or not a custom type skip
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if deps.contains(&*field.type_) || !message_types.contains_key(&*field.type_) {
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continue;
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}
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types.insert(&*field.type_);
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}
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}
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};
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return Some(deps)
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}
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fn encode_type(message_type: &str, message_types: &MessageTypes) -> Result<String> {
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let deps = {
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let mut temp = build_dependencies(message_type, message_types).ok_or_else(|| ErrorKind::NonExistentType)?;
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temp.remove(message_type);
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let mut temp = temp.into_iter().collect::<Vec<_>>();
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(&mut temp[..]).sort_unstable();
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temp.insert(0, message_type);
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temp
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};
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let encoded = deps
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.into_iter()
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.filter_map(|dep| {
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message_types.get(dep).map(|field_types| {
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let types = field_types
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.iter()
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.map(|value| format!("{} {}", value.type_, value.name))
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.join(",");
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return format!("{}({})", dep, types);
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})
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})
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.collect::<Vec<_>>()
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.concat();
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Ok(encoded)
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}
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fn type_hash(message_type: &str, typed_data: &MessageTypes) -> Result<H256> {
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Ok(keccak(encode_type(message_type, typed_data)?))
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}
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fn encode_data(
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parser: &Parser,
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message_type: &Type,
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message_types: &MessageTypes,
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value: &Value,
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field_name: Option<&str>
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) -> Result<Vec<u8>>
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{
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let encoded = match message_type {
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Type::Array {
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inner,
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length
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} => {
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let mut items = vec![];
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let values = value.as_array().ok_or_else(|| serde_error("array", field_name))?;
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// check if the type definition actually matches
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// the length of items to be encoded
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if length.is_some() && Some(values.len() as u64) != *length {
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let array_type = format!("{}[{}]", *inner, length.unwrap());
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return Err(ErrorKind::UnequalArrayItems(length.unwrap(), array_type, values.len() as u64))?
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}
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for item in values {
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let mut encoded = encode_data(parser, &*inner, &message_types, item, field_name)?;
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items.append(&mut encoded);
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}
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keccak(items).to_vec()
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}
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Type::Custom(ref ident) if message_types.get(&*ident).is_some() => {
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let type_hash = (&type_hash(ident, &message_types)?).to_vec();
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let mut tokens = encode(&[EthAbiToken::FixedBytes(type_hash)]);
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for field in message_types.get(ident).expect("Already checked in match guard; qed") {
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let value = &value[&field.name];
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let type_ = parser.parse_type(&*field.type_)?;
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let mut encoded = encode_data(parser, &type_, &message_types, &value, Some(&*field.name))?;
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tokens.append(&mut encoded);
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}
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keccak(tokens).to_vec()
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}
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Type::Bytes => {
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let string = value.as_str().ok_or_else(|| serde_error("string", field_name))?;
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check_hex(&string)?;
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let bytes = (&string[2..])
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.from_hex::<Vec<u8>>()
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.map_err(|err| ErrorKind::HexParseError(format!("{}", err)))?;
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let bytes = keccak(&bytes).to_vec();
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encode(&[EthAbiToken::FixedBytes(bytes)])
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}
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Type::Byte(_) => {
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let string = value.as_str().ok_or_else(|| serde_error("string", field_name))?;
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check_hex(&string)?;
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let mut bytes = (&string[2..])
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.from_hex::<Vec<u8>>()
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.map_err(|err| ErrorKind::HexParseError(format!("{}", err)))?;
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encode(&[EthAbiToken::FixedBytes(bytes)])
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}
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Type::String => {
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let value = value.as_str().ok_or_else(|| serde_error("string", field_name))?;
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let hash = keccak(value).to_vec();
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encode(&[EthAbiToken::FixedBytes(hash)])
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}
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Type::Bool => encode(&[EthAbiToken::Bool(value.as_bool().ok_or_else(|| serde_error("bool", field_name))?)]),
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Type::Address => {
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let addr = value.as_str().ok_or_else(|| serde_error("string", field_name))?;
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if addr.len() != 42 {
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return Err(ErrorKind::InvalidAddressLength(addr.len()))?;
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}
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let address = EthAddress::from_str(&addr[2..]).map_err(|err| ErrorKind::HexParseError(format!("{}", err)))?;
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encode(&[EthAbiToken::Address(address)])
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}
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Type::Uint | Type::Int => {
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let string = value.as_str().ok_or_else(|| serde_error("int/uint", field_name))?;
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check_hex(&string)?;
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let uint = U256::from_str(&string[2..]).map_err(|err| ErrorKind::HexParseError(format!("{}", err)))?;
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let token = if *message_type == Type::Uint {
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EthAbiToken::Uint(uint)
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} else {
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EthAbiToken::Int(uint)
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};
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encode(&[token])
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}
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_ => return Err(ErrorKind::UnknownType(format!("{}", field_name.unwrap_or("")), format!("{}", *message_type)))?
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};
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Ok(encoded)
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}
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/// encodes and hashes the given EIP712 struct
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pub fn hash_structured_data(typed_data: EIP712) -> Result<H256> {
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// validate input
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typed_data.validate()?;
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// EIP-191 compliant
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let prefix = (b"\x19\x01").to_vec();
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let domain = to_value(&typed_data.domain).unwrap();
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let parser = Parser::new();
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let (domain_hash, data_hash) = (
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encode_data(&parser, &Type::Custom("EIP712Domain".into()), &typed_data.types, &domain, None)?,
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encode_data(&parser, &Type::Custom(typed_data.primary_type), &typed_data.types, &typed_data.message, None)?
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);
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let concat = [&prefix[..], &domain_hash[..], &data_hash[..]].concat();
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Ok(keccak(concat))
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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use serde_json::from_str;
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use rustc_hex::ToHex;
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const JSON: &'static str = r#"{
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"primaryType": "Mail",
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"domain": {
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"name": "Ether Mail",
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"version": "1",
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"chainId": "0x1",
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"verifyingContract": "0xCcCCccccCCCCcCCCCCCcCcCccCcCCCcCcccccccC"
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},
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"message": {
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"from": {
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"name": "Cow",
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"wallet": "0xCD2a3d9F938E13CD947Ec05AbC7FE734Df8DD826"
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},
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"to": {
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"name": "Bob",
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"wallet": "0xbBbBBBBbbBBBbbbBbbBbbbbBBbBbbbbBbBbbBBbB"
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},
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"contents": "Hello, Bob!"
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},
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"types": {
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"EIP712Domain": [
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{ "name": "name", "type": "string" },
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{ "name": "version", "type": "string" },
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{ "name": "chainId", "type": "uint256" },
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{ "name": "verifyingContract", "type": "address" }
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],
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"Person": [
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{ "name": "name", "type": "string" },
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{ "name": "wallet", "type": "address" }
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],
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"Mail": [
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{ "name": "from", "type": "Person" },
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{ "name": "to", "type": "Person" },
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{ "name": "contents", "type": "string" }
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]
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}
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}"#;
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#[test]
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fn test_build_dependencies() {
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let string = r#"{
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"EIP712Domain": [
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{ "name": "name", "type": "string" },
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{ "name": "version", "type": "string" },
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{ "name": "chainId", "type": "uint256" },
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{ "name": "verifyingContract", "type": "address" }
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],
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"Person": [
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{ "name": "name", "type": "string" },
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{ "name": "wallet", "type": "address" }
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],
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"Mail": [
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{ "name": "from", "type": "Person" },
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{ "name": "to", "type": "Person" },
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{ "name": "contents", "type": "string" }
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]
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}"#;
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let value = from_str::<MessageTypes>(string).expect("alas error!");
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let mail = "Mail";
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let person = "Person";
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let hashset = {
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let mut temp = HashSet::new();
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temp.insert(mail);
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temp.insert(person);
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temp
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};
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assert_eq!(build_dependencies(mail, &value), Some(hashset));
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}
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#[test]
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fn test_encode_type() {
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let string = r#"{
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"EIP712Domain": [
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{ "name": "name", "type": "string" },
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{ "name": "version", "type": "string" },
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{ "name": "chainId", "type": "uint256" },
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{ "name": "verifyingContract", "type": "address" }
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],
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"Person": [
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{ "name": "name", "type": "string" },
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{ "name": "wallet", "type": "address" }
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],
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"Mail": [
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{ "name": "from", "type": "Person" },
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{ "name": "to", "type": "Person" },
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{ "name": "contents", "type": "string" }
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]
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}"#;
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let value = from_str::<MessageTypes>(string).expect("alas error!");
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let mail = &String::from("Mail");
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assert_eq!(
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"Mail(Person from,Person to,string contents)Person(string name,address wallet)",
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encode_type(&mail, &value).expect("alas error!")
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)
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}
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#[test]
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fn test_encode_type_hash() {
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let string = r#"{
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"EIP712Domain": [
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{ "name": "name", "type": "string" },
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{ "name": "version", "type": "string" },
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{ "name": "chainId", "type": "uint256" },
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{ "name": "verifyingContract", "type": "address" }
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],
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"Person": [
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{ "name": "name", "type": "string" },
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{ "name": "wallet", "type": "address" }
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],
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"Mail": [
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{ "name": "from", "type": "Person" },
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{ "name": "to", "type": "Person" },
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{ "name": "contents", "type": "string" }
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]
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}"#;
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let value = from_str::<MessageTypes>(string).expect("alas error!");
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let mail = &String::from("Mail");
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let hash = (type_hash(&mail, &value).expect("alas error!").0).to_hex::<String>();
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assert_eq!(
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hash,
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"a0cedeb2dc280ba39b857546d74f5549c3a1d7bdc2dd96bf881f76108e23dac2"
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);
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}
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#[test]
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fn test_hash_data() {
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let typed_data = from_str::<EIP712>(JSON).expect("alas error!");
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assert_eq!(
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hash_structured_data(typed_data).expect("alas error!").to_hex::<String>(),
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"be609aee343fb3c4b28e1df9e632fca64fcfaede20f02e86244efddf30957bd2"
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)
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}
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#[test]
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fn test_unequal_array_lengths() {
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const TEST: &'static str = r#"{
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"primaryType": "Mail",
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"domain": {
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"name": "Ether Mail",
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"version": "1",
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"chainId": "0x1",
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"verifyingContract": "0xCcCCccccCCCCcCCCCCCcCcCccCcCCCcCcccccccC"
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},
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"message": {
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"from": {
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"name": "Cow",
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"wallet": "0xCD2a3d9F938E13CD947Ec05AbC7FE734Df8DD826"
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},
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"to": [{
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"name": "Bob",
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"wallet": "0xbBbBBBBbbBBBbbbBbbBbbbbBBbBbbbbBbBbbBBbB"
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}],
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"contents": "Hello, Bob!"
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},
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"types": {
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"EIP712Domain": [
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{ "name": "name", "type": "string" },
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{ "name": "version", "type": "string" },
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{ "name": "chainId", "type": "uint256" },
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{ "name": "verifyingContract", "type": "address" }
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],
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"Person": [
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{ "name": "name", "type": "string" },
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{ "name": "wallet", "type": "address" }
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],
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"Mail": [
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{ "name": "from", "type": "Person" },
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{ "name": "to", "type": "Person[2]" },
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{ "name": "contents", "type": "string" }
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]
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}
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}"#;
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let typed_data = from_str::<EIP712>(TEST).expect("alas error!");
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assert_eq!(
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hash_structured_data(typed_data).unwrap_err().kind(),
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ErrorKind::UnequalArrayItems(2, "Person[2]".into(), 1)
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)
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}
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}
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