1use crate::{2 custom_signature::SignatureUnit,3 execution::{Result, ResultWithPostInfo, WithPostDispatchInfo},4 make_signature, sealed,5 types::*,6};7use super::{traits::*, ABI_ALIGNMENT, AbiReader, AbiWriter};8use primitive_types::{U256, H160};910#[cfg(not(feature = "std"))]11use alloc::vec::Vec;1213macro_rules! impl_abi_type {14 ($ty:ty, $name:ident, $dynamic:literal) => {15 impl sealed::CanBePlacedInVec for $ty {}1617 impl AbiType for $ty {18 const SIGNATURE: SignatureUnit = make_signature!(new fixed(stringify!($name)));1920 fn is_dynamic() -> bool {21 $dynamic22 }2324 fn size() -> usize {25 ABI_ALIGNMENT26 }27 }28 };29}3031macro_rules! impl_abi_readable {32 ($ty:ty, $method:ident) => {33 impl AbiRead for $ty {34 fn abi_read(reader: &mut AbiReader) -> Result<$ty> {35 reader.$method()36 }37 }38 };39}4041macro_rules! impl_abi_writeable {42 ($ty:ty, $method:ident) => {43 impl AbiWrite for $ty {44 fn abi_write(&self, writer: &mut AbiWriter) {45 writer.$method(&self)46 }47 }48 };49}5051macro_rules! impl_abi {52 ($ty:ty, $method:ident, $dynamic:literal) => {53 impl_abi_type!($ty, $method, $dynamic);54 impl_abi_readable!($ty, $method);55 impl_abi_writeable!($ty, $method);56 };57}5859impl_abi!(bool, bool, false);60impl_abi!(u8, uint8, false);61impl_abi!(u32, uint32, false);62impl_abi!(u64, uint64, false);63impl_abi!(u128, uint128, false);64impl_abi!(U256, uint256, false);65impl_abi!(H160, address, false);66impl_abi!(String, string, true);6768impl_abi_writeable!(&str, string);6970impl_abi_type!(bytes, bytes, true);7172impl AbiRead for bytes {73 fn abi_read(reader: &mut AbiReader) -> Result<bytes> {74 Ok(bytes(reader.bytes()?))75 }76}7778impl AbiWrite for bytes {79 fn abi_write(&self, writer: &mut AbiWriter) {80 writer.bytes(self.0.as_slice())81 }82}8384impl_abi_type!(Bytes4, bytes4, false);85impl AbiRead for Bytes4 {86 fn abi_read(reader: &mut AbiReader) -> Result<Bytes4> {87 reader.bytes4()88 }89}9091impl<T: AbiWrite> AbiWrite for &T {92 fn abi_write(&self, writer: &mut AbiWriter) {93 T::abi_write(self, writer);94 }95}9697impl<T: AbiType> AbiType for &T {98 const SIGNATURE: SignatureUnit = T::SIGNATURE;99100 fn is_dynamic() -> bool {101 T::is_dynamic()102 }103104 fn size() -> usize {105 T::size()106 }107}108109impl<T: AbiType + AbiRead + sealed::CanBePlacedInVec> AbiRead for Vec<T> {110 fn abi_read(reader: &mut AbiReader) -> Result<Vec<T>> {111 let mut sub = reader.subresult(None)?;112 let size = sub.uint32()? as usize;113 sub.subresult_offset = sub.offset;114 let is_dynamic = <T as AbiType>::is_dynamic();115 let mut out = Vec::with_capacity(size);116 for _ in 0..size {117 out.push(<T as AbiRead>::abi_read(&mut sub)?);118 if !is_dynamic {119 sub.bytes_read(<T as AbiType>::size());120 };121 }122 Ok(out)123 }124}125126impl<T: AbiType> AbiType for Vec<T> {127 const SIGNATURE: SignatureUnit = make_signature!(new nameof(T::SIGNATURE) fixed("[]"));128129 fn is_dynamic() -> bool {130 true131 }132133 fn size() -> usize {134 ABI_ALIGNMENT135 }136}137138impl<T: AbiWrite + AbiType> AbiWrite for Vec<T> {139 fn abi_write(&self, writer: &mut AbiWriter) {140 let is_dynamic = T::is_dynamic();141 let mut sub = if is_dynamic {142 AbiWriter::new_dynamic(is_dynamic)143 } else {144 AbiWriter::new()145 };146147 148 (self.len() as u32).abi_write(&mut sub);149150 for item in self {151 item.abi_write(&mut sub);152 }153 writer.write_subresult(sub);154 }155}156157impl AbiWrite for () {158 fn abi_write(&self, _writer: &mut AbiWriter) {}159}160161162163164165impl<T: AbiWrite> AbiWrite for ResultWithPostInfo<T> {166 fn abi_write(&self, _writer: &mut AbiWriter) {167 debug_assert!(false, "shouldn't be called, see comment")168 }169 fn to_result(&self) -> ResultWithPostInfo<AbiWriter> {170 match self {171 Ok(v) => Ok(WithPostDispatchInfo {172 post_info: v.post_info.clone(),173 data: {174 let mut out = AbiWriter::new();175 v.data.abi_write(&mut out);176 out177 },178 }),179 Err(e) => Err(e.clone()),180 }181 }182}183184macro_rules! impl_tuples {185 ($($ident:ident)+) => {186 impl<$($ident: AbiType,)+> AbiType for ($($ident,)+)187 where188 $(189 $ident: AbiType,190 )+191 {192 const SIGNATURE: SignatureUnit = make_signature!(193 new fixed("(")194 $(nameof(<$ident>::SIGNATURE) fixed(","))+195 shift_left(1)196 fixed(")")197 );198199 fn is_dynamic() -> bool {200 false201 $(202 || <$ident>::is_dynamic()203 )*204 }205206 fn size() -> usize {207 0 $(+ <$ident>::size())+208 }209 }210211 impl<$($ident),+> sealed::CanBePlacedInVec for ($($ident,)+) {}212213 impl<$($ident),+> AbiRead for ($($ident,)+)214 where215 Self: AbiType,216 $($ident: AbiRead + AbiType,)+217 {218 fn abi_read(reader: &mut AbiReader) -> Result<($($ident,)+)> {219 let is_dynamic = <Self>::is_dynamic();220 let size = if !is_dynamic { Some(<Self>::size()) } else { None };221 let mut subresult = reader.subresult(size)?;222 Ok((223 $({224 let value = <$ident>::abi_read(&mut subresult)?;225 if !is_dynamic {subresult.bytes_read(<$ident as AbiType>::size())};226 value227 },)+228 ))229 }230 }231232 #[allow(non_snake_case)]233 impl<$($ident),+> AbiWrite for ($($ident,)+)234 where235 $($ident: AbiWrite + AbiType,)+236 {237 fn abi_write(&self, writer: &mut AbiWriter) {238 let ($($ident,)+) = self;239 if <Self as AbiType>::is_dynamic() {240 let mut sub = AbiWriter::new();241 $($ident.abi_write(&mut sub);)+242 writer.write_subresult(sub);243 } else {244 $($ident.abi_write(writer);)+245 }246 }247 }248 };249}250251impl_tuples! {A}252impl_tuples! {A B}253impl_tuples! {A B C}254impl_tuples! {A B C D}255impl_tuples! {A B C D E}256impl_tuples! {A B C D E F}257impl_tuples! {A B C D E F G}258impl_tuples! {A B C D E F G H}259impl_tuples! {A B C D E F G H I}260impl_tuples! {A B C D E F G H I J}261262263impl<T: AbiType> AbiType for Option<T> {264 const SIGNATURE: SignatureUnit = <(bool, T)>::SIGNATURE;265266 fn is_dynamic() -> bool {267 <(bool, T)>::is_dynamic()268 }269270 fn size() -> usize {271 <(bool, T)>::size()272 }273}274275impl<T: AbiWrite + AbiType + Default> AbiWrite for Option<T> {276 fn abi_write(&self, writer: &mut AbiWriter) {277 match self {278 Some(value) => (true, value).abi_write(writer),279 None => (false, T::default()).abi_write(writer),280 }281 }282}283284impl<T> AbiRead for Option<T>285where286 Self: AbiType,287 T: AbiRead + AbiType,288{289 fn abi_read(reader: &mut AbiReader) -> Result<Self>290 where291 Self: Sized,292 {293 let (status, value) = <(bool, T)>::abi_read(reader)?;294 Ok(if status { Some(value) } else { None })295 }296}