1234567891011121314151617181920#![allow(dead_code)]2122#[cfg(not(feature = "std"))]23use alloc::vec::Vec;24use evm_core::ExitError;25use primitive_types::{H160, U256};2627use crate::{28 execution::{Error, ResultWithPostInfo, WithPostDispatchInfo},29 types::string,30};31use crate::execution::Result;3233const ABI_ALIGNMENT: usize = 32;3435#[derive(Clone)]36pub struct AbiReader<'i> {37 buf: &'i [u8],38 subresult_offset: usize,39 offset: usize,40}41impl<'i> AbiReader<'i> {42 pub fn new(buf: &'i [u8]) -> Self {43 Self {44 buf,45 subresult_offset: 0,46 offset: 0,47 }48 }49 pub fn new_call(buf: &'i [u8]) -> Result<(u32, Self)> {50 if buf.len() < 4 {51 return Err(Error::Error(ExitError::OutOfOffset));52 }53 let mut method_id = [0; 4];54 method_id.copy_from_slice(&buf[0..4]);5556 Ok((57 u32::from_be_bytes(method_id),58 Self {59 buf,60 subresult_offset: 4,61 offset: 4,62 },63 ))64 }6566 fn read_padleft<const S: usize>(&mut self) -> Result<[u8; S]> {67 if self.buf.len() - self.offset < ABI_ALIGNMENT {68 return Err(Error::Error(ExitError::OutOfOffset));69 }70 let mut block = [0; S];71 72 if !self.buf[self.offset..self.offset + ABI_ALIGNMENT - S]73 .iter()74 .all(|&v| v == 0)75 {76 return Err(Error::Error(ExitError::InvalidRange));77 }78 block.copy_from_slice(79 &self.buf[self.offset + ABI_ALIGNMENT - S..self.offset + ABI_ALIGNMENT],80 );81 self.offset += ABI_ALIGNMENT;82 Ok(block)83 }8485 pub fn address(&mut self) -> Result<H160> {86 Ok(H160(self.read_padleft()?))87 }8889 pub fn bool(&mut self) -> Result<bool> {90 let data: [u8; 1] = self.read_padleft()?;91 match data[0] {92 0 => Ok(false),93 1 => Ok(true),94 _ => Err(Error::Error(ExitError::InvalidRange)),95 }96 }9798 pub fn bytes4(&mut self) -> Result<[u8; 4]> {99 self.read_padleft()100 }101102 pub fn bytes(&mut self) -> Result<Vec<u8>> {103 let mut subresult = self.subresult()?;104 let length = subresult.read_usize()?;105 if subresult.buf.len() <= subresult.offset + length {106 return Err(Error::Error(ExitError::OutOfOffset));107 }108 Ok(subresult.buf[subresult.offset..subresult.offset + length].into())109 }110 pub fn string(&mut self) -> Result<string> {111 string::from_utf8(self.bytes()?).map_err(|_| Error::Error(ExitError::InvalidRange))112 }113114 pub fn uint8(&mut self) -> Result<u8> {115 Ok(self.read_padleft::<1>()?[0])116 }117118 pub fn uint32(&mut self) -> Result<u32> {119 Ok(u32::from_be_bytes(self.read_padleft()?))120 }121122 pub fn uint128(&mut self) -> Result<u128> {123 Ok(u128::from_be_bytes(self.read_padleft()?))124 }125126 pub fn uint256(&mut self) -> Result<U256> {127 let buf: [u8; 32] = self.read_padleft()?;128 Ok(U256::from_big_endian(&buf))129 }130131 pub fn uint64(&mut self) -> Result<u64> {132 Ok(u64::from_be_bytes(self.read_padleft()?))133 }134135 pub fn read_usize(&mut self) -> Result<usize> {136 Ok(usize::from_be_bytes(self.read_padleft()?))137 }138139 fn subresult(&mut self) -> Result<AbiReader<'i>> {140 let offset = self.read_usize()?;141 if offset + self.subresult_offset > self.buf.len() {142 return Err(Error::Error(ExitError::InvalidRange));143 }144 Ok(AbiReader {145 buf: self.buf,146 subresult_offset: offset + self.subresult_offset,147 offset: offset + self.subresult_offset,148 })149 }150151 pub fn is_finished(&self) -> bool {152 self.buf.len() == self.offset153 }154}155156#[derive(Default)]157pub struct AbiWriter {158 static_part: Vec<u8>,159 dynamic_part: Vec<(usize, AbiWriter)>,160}161impl AbiWriter {162 pub fn new() -> Self {163 Self::default()164 }165 pub fn new_call(method_id: u32) -> Self {166 let mut val = Self::new();167 val.static_part.extend(&method_id.to_be_bytes());168 val169 }170171 fn write_padleft(&mut self, block: &[u8]) {172 assert!(block.len() <= ABI_ALIGNMENT);173 self.static_part174 .extend(&[0; ABI_ALIGNMENT][0..ABI_ALIGNMENT - block.len()]);175 self.static_part.extend(block);176 }177178 fn write_padright(&mut self, bytes: &[u8]) {179 assert!(bytes.len() <= ABI_ALIGNMENT);180 self.static_part.extend(bytes);181 self.static_part182 .extend(&[0; ABI_ALIGNMENT][0..ABI_ALIGNMENT - bytes.len()]);183 }184185 pub fn address(&mut self, address: &H160) {186 self.write_padleft(&address.0)187 }188189 pub fn bool(&mut self, value: &bool) {190 self.write_padleft(&[if *value { 1 } else { 0 }])191 }192193 pub fn uint8(&mut self, value: &u8) {194 self.write_padleft(&[*value])195 }196197 pub fn uint32(&mut self, value: &u32) {198 self.write_padleft(&u32::to_be_bytes(*value))199 }200201 pub fn uint128(&mut self, value: &u128) {202 self.write_padleft(&u128::to_be_bytes(*value))203 }204205 pub fn uint256(&mut self, value: &U256) {206 let mut out = [0; 32];207 value.to_big_endian(&mut out);208 self.write_padleft(&out)209 }210211 pub fn write_usize(&mut self, value: &usize) {212 self.write_padleft(&usize::to_be_bytes(*value))213 }214215 pub fn write_subresult(&mut self, result: Self) {216 self.dynamic_part.push((self.static_part.len(), result));217 218 self.write_padleft(&[]);219 }220221 pub fn memory(&mut self, value: &[u8]) {222 let mut sub = Self::new();223 sub.write_usize(&value.len());224 for chunk in value.chunks(ABI_ALIGNMENT) {225 sub.write_padright(chunk);226 }227 self.write_subresult(sub);228 }229230 pub fn string(&mut self, value: &str) {231 self.memory(value.as_bytes())232 }233234 pub fn bytes(&mut self, value: &[u8]) {235 self.memory(value)236 }237238 pub fn finish(mut self) -> Vec<u8> {239 for (static_offset, part) in self.dynamic_part {240 let part_offset = self.static_part.len();241242 let encoded_dynamic_offset = usize::to_be_bytes(part_offset);243 self.static_part[static_offset + ABI_ALIGNMENT - encoded_dynamic_offset.len()244 ..static_offset + ABI_ALIGNMENT]245 .copy_from_slice(&encoded_dynamic_offset);246 self.static_part.extend(part.finish())247 }248 self.static_part249 }250}251252pub trait AbiRead<T> {253 fn abi_read(&mut self) -> Result<T>;254}255256macro_rules! impl_abi_readable {257 ($ty:ty, $method:ident) => {258 impl AbiRead<$ty> for AbiReader<'_> {259 fn abi_read(&mut self) -> Result<$ty> {260 self.$method()261 }262 }263 };264}265266impl_abi_readable!(u8, uint8);267impl_abi_readable!(u32, uint32);268impl_abi_readable!(u64, uint64);269impl_abi_readable!(u128, uint128);270impl_abi_readable!(U256, uint256);271impl_abi_readable!(H160, address);272impl_abi_readable!(Vec<u8>, bytes);273impl_abi_readable!(bool, bool);274impl_abi_readable!(string, string);275276mod sealed {277 278 pub trait CanBePlacedInVec {}279}280281impl sealed::CanBePlacedInVec for U256 {}282impl sealed::CanBePlacedInVec for string {}283impl sealed::CanBePlacedInVec for H160 {}284285impl<R: sealed::CanBePlacedInVec> AbiRead<Vec<R>> for AbiReader<'_>286where287 Self: AbiRead<R>,288{289 fn abi_read(&mut self) -> Result<Vec<R>> {290 let mut sub = self.subresult()?;291 let size = sub.read_usize()?;292 sub.subresult_offset = sub.offset;293 let mut out = Vec::with_capacity(size);294 for _ in 0..size {295 out.push(<Self as AbiRead<R>>::abi_read(&mut sub)?);296 }297 Ok(out)298 }299}300301macro_rules! impl_tuples {302 ($($ident:ident)+) => {303 impl<$($ident),+> sealed::CanBePlacedInVec for ($($ident,)+) {}304 impl<$($ident),+> AbiRead<($($ident,)+)> for AbiReader<'_>305 where306 $(Self: AbiRead<$ident>),+307 {308 fn abi_read(&mut self) -> Result<($($ident,)+)> {309 let mut subresult = self.subresult()?;310 Ok((311 $(<Self as AbiRead<$ident>>::abi_read(&mut subresult)?,)+312 ))313 }314 }315 };316}317318impl_tuples! {A}319impl_tuples! {A B}320impl_tuples! {A B C}321impl_tuples! {A B C D}322impl_tuples! {A B C D E}323impl_tuples! {A B C D E F}324impl_tuples! {A B C D E F G}325impl_tuples! {A B C D E F G H}326impl_tuples! {A B C D E F G H I}327impl_tuples! {A B C D E F G H I J}328329pub trait AbiWrite {330 fn abi_write(&self, writer: &mut AbiWriter);331 fn to_result(&self) -> ResultWithPostInfo<AbiWriter> {332 let mut writer = AbiWriter::new();333 self.abi_write(&mut writer);334 Ok(writer.into())335 }336}337338impl<T: AbiWrite> AbiWrite for ResultWithPostInfo<T> {339 340 341 342 343 344 345 fn abi_write(&self, _writer: &mut AbiWriter) {346 debug_assert!(false, "shouldn't be called, see comment")347 }348 fn to_result(&self) -> ResultWithPostInfo<AbiWriter> {349 match self {350 Ok(v) => Ok(WithPostDispatchInfo {351 post_info: v.post_info.clone(),352 data: {353 let mut out = AbiWriter::new();354 v.data.abi_write(&mut out);355 out356 },357 }),358 Err(e) => Err(e.clone()),359 }360 }361}362363macro_rules! impl_abi_writeable {364 ($ty:ty, $method:ident) => {365 impl AbiWrite for $ty {366 fn abi_write(&self, writer: &mut AbiWriter) {367 writer.$method(&self)368 }369 }370 };371}372373impl_abi_writeable!(u8, uint8);374impl_abi_writeable!(u32, uint32);375impl_abi_writeable!(u128, uint128);376impl_abi_writeable!(U256, uint256);377impl_abi_writeable!(H160, address);378impl_abi_writeable!(bool, bool);379impl_abi_writeable!(&str, string);380impl AbiWrite for &string {381 fn abi_write(&self, writer: &mut AbiWriter) {382 writer.string(self)383 }384}385impl AbiWrite for &Vec<u8> {386 fn abi_write(&self, writer: &mut AbiWriter) {387 writer.bytes(self)388 }389}390391impl AbiWrite for () {392 fn abi_write(&self, _writer: &mut AbiWriter) {}393}394395#[macro_export]396macro_rules! abi_decode {397 ($reader:expr, $($name:ident: $typ:ident),+ $(,)?) => {398 $(399 let $name = $reader.$typ()?;400 )+401 }402}403#[macro_export]404macro_rules! abi_encode {405 ($($typ:ident($value:expr)),* $(,)?) => {{406 #[allow(unused_mut)]407 let mut writer = ::evm_coder::abi::AbiWriter::new();408 $(409 writer.$typ($value);410 )*411 writer412 }};413 (call $val:expr; $($typ:ident($value:expr)),* $(,)?) => {{414 #[allow(unused_mut)]415 let mut writer = ::evm_coder::abi::AbiWriter::new_call($val);416 $(417 writer.$typ($value);418 )*419 writer420 }}421}422423#[cfg(test)]424pub mod test {425 use crate::{426 abi::AbiRead,427 types::{string, uint256},428 };429430 use super::{AbiReader, AbiWriter};431 use hex_literal::hex;432433 #[test]434 fn dynamic_after_static() {435 let mut encoder = AbiWriter::new();436 encoder.bool(&true);437 encoder.string("test");438 let encoded = encoder.finish();439440 let mut encoder = AbiWriter::new();441 encoder.bool(&true);442 443 encoder.uint32(&(32 * 2));444 445 encoder.uint32(&4);446 encoder.write_padright(&[b't', b'e', b's', b't']);447 let alternative_encoded = encoder.finish();448449 assert_eq!(encoded, alternative_encoded);450451 let mut decoder = AbiReader::new(&encoded);452 assert_eq!(decoder.bool().unwrap(), true);453 assert_eq!(decoder.string().unwrap(), "test");454 }455456 #[test]457 fn mint_sample() {458 let (call, mut decoder) = AbiReader::new_call(&hex!(459 "460 50bb4e7f461 000000000000000000000000ad2c0954693c2b5404b7e50967d3481bea432374462 0000000000000000000000000000000000000000000000000000000000000001463 0000000000000000000000000000000000000000000000000000000000000060464 0000000000000000000000000000000000000000000000000000000000000008465 5465737420555249000000000000000000000000000000000000000000000000466 "467 ))468 .unwrap();469 assert_eq!(call, 0x50bb4e7f);470 assert_eq!(471 format!("{:?}", decoder.address().unwrap()),472 "0xad2c0954693c2b5404b7e50967d3481bea432374"473 );474 assert_eq!(decoder.uint32().unwrap(), 1);475 assert_eq!(decoder.string().unwrap(), "Test URI");476 }477478 #[test]479 fn mint_bulk() {480 let (call, mut decoder) = AbiReader::new_call(&hex!(481 "482 36543006483 00000000000000000000000053744e6da587ba10b32a2554d2efdcd985bc27a3 // address484 0000000000000000000000000000000000000000000000000000000000000040 // offset of (uint256, string)[]485 0000000000000000000000000000000000000000000000000000000000000003 // length of (uint256, string)[]486487 0000000000000000000000000000000000000000000000000000000000000060 // offset of first elem488 00000000000000000000000000000000000000000000000000000000000000e0 // offset of second elem489 0000000000000000000000000000000000000000000000000000000000000160 // offset of third elem490491 0000000000000000000000000000000000000000000000000000000000000001 // first token id? #60492 0000000000000000000000000000000000000000000000000000000000000040 // offset of string493 000000000000000000000000000000000000000000000000000000000000000a // size of string494 5465737420555249203000000000000000000000000000000000000000000000 // string495496 000000000000000000000000000000000000000000000000000000000000000b // second token id? Why ==11? #e0497 0000000000000000000000000000000000000000000000000000000000000040 // offset of string498 000000000000000000000000000000000000000000000000000000000000000a // size of string499 5465737420555249203100000000000000000000000000000000000000000000 // string500501 000000000000000000000000000000000000000000000000000000000000000c // third token id? Why ==12? #160502 0000000000000000000000000000000000000000000000000000000000000040 // offset of string503 000000000000000000000000000000000000000000000000000000000000000a // size of string504 5465737420555249203200000000000000000000000000000000000000000000 // string505 "506 ))507 .unwrap();508 assert_eq!(call, 0x36543006);509 let _ = decoder.address().unwrap();510 let data =511 <AbiReader<'_> as AbiRead<Vec<(uint256, string)>>>::abi_read(&mut decoder).unwrap();512 assert_eq!(513 data,514 vec![515 (1.into(), "Test URI 0".to_string()),516 (11.into(), "Test URI 1".to_string()),517 (12.into(), "Test URI 2".to_string())518 ]519 );520 }521}