difftreelog
misc: change uint256 to U256
in: master
10 files changed
crates/evm-coder/src/lib.rsdiffbeforeafterboth--- a/crates/evm-coder/src/lib.rs
+++ b/crates/evm-coder/src/lib.rs
@@ -132,7 +132,6 @@
use primitive_types::{U256, H160, H256};
pub type address = H160;
- pub type uint256 = U256;
pub type bytes4 = [u8; 4];
pub type topic = H256;
pallets/common/src/eth.rsdiffbeforeafterboth1// 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//! The module contains a number of functions for converting and checking ethereum identifiers.1819use alloc::format;20use sp_std::{vec, vec::Vec};21use evm_coder::{22 AbiCoder,23 types::{uint256, address},24};25pub use pallet_evm::{Config, account::CrossAccountId};26use sp_core::H160;27use up_data_structs::CollectionId;2829// 0x17c4e6453Cc49AAAaEACA894e6D9683e00000001 - collection 130// TODO: Unhardcode prefix31const ETH_COLLECTION_PREFIX: [u8; 16] = [32 0x17, 0xc4, 0xe6, 0x45, 0x3c, 0xc4, 0x9a, 0xaa, 0xae, 0xac, 0xa8, 0x94, 0xe6, 0xd9, 0x68, 0x3e,33];3435/// Maps the ethereum address of the collection in substrate.36pub fn map_eth_to_id(eth: &H160) -> Option<CollectionId> {37 if eth[0..16] != ETH_COLLECTION_PREFIX {38 return None;39 }40 let mut id_bytes = [0; 4];41 id_bytes.copy_from_slice(ð[16..20]);42 Some(CollectionId(u32::from_be_bytes(id_bytes)))43}4445/// Maps the substrate collection id in ethereum.46pub fn collection_id_to_address(id: CollectionId) -> H160 {47 let mut out = [0; 20];48 out[0..16].copy_from_slice(Ð_COLLECTION_PREFIX);49 out[16..20].copy_from_slice(&u32::to_be_bytes(id.0));50 H160(out)51}5253/// Check if the ethereum address is a collection.54pub fn is_collection(address: &H160) -> bool {55 address[0..16] == ETH_COLLECTION_PREFIX56}5758/// Convert `uint256` to `CrossAccountId`.59pub fn convert_uint256_to_cross_account<T: Config>(from: uint256) -> T::CrossAccountId60where61 T::AccountId: From<[u8; 32]>,62{63 let mut new_admin_arr = [0_u8; 32];64 from.to_big_endian(&mut new_admin_arr);65 let account_id = T::AccountId::from(new_admin_arr);66 T::CrossAccountId::from_sub(account_id)67}6869/// Cross account struct70#[derive(Debug, Default, AbiCoder)]71pub struct CrossAddress {72 pub(crate) eth: address,73 pub(crate) sub: uint256,74}7576impl CrossAddress {77 /// Converts `CrossAccountId` to [`CrossAddress`] to be correctly usable with Ethereum.78 pub fn from_sub_cross_account<T>(cross_account_id: &T::CrossAccountId) -> Self79 where80 T: pallet_evm::Config,81 T::AccountId: AsRef<[u8; 32]>,82 {83 if cross_account_id.is_canonical_substrate() {84 Self::from_sub::<T>(cross_account_id.as_sub())85 } else {86 Self {87 eth: *cross_account_id.as_eth(),88 sub: Default::default(),89 }90 }91 }92 /// Creates [`CrossAddress`] from Substrate account.93 pub fn from_sub<T>(account_id: &T::AccountId) -> Self94 where95 T: pallet_evm::Config,96 T::AccountId: AsRef<[u8; 32]>,97 {98 Self {99 eth: Default::default(),100 sub: uint256::from_big_endian(account_id.as_ref()),101 }102 }103 /// Converts [`CrossAddress`] to `CrossAccountId`.104 pub fn into_sub_cross_account<T>(&self) -> evm_coder::execution::Result<T::CrossAccountId>105 where106 T: pallet_evm::Config,107 T::AccountId: From<[u8; 32]>,108 {109 if self.eth == Default::default() && self.sub == Default::default() {110 Err("All fields of cross account is zeroed".into())111 } else if self.eth == Default::default() {112 Ok(convert_uint256_to_cross_account::<T>(self.sub))113 } else if self.sub == Default::default() {114 Ok(T::CrossAccountId::from_eth(self.eth))115 } else {116 Err("All fields of cross account is non zeroed".into())117 }118 }119}120121/// Ethereum representation of collection [`PropertyKey`](up_data_structs::PropertyKey) and [`PropertyValue`](up_data_structs::PropertyValue).122#[derive(Debug, Default, AbiCoder)]123pub struct Property {124 key: evm_coder::types::string,125 value: evm_coder::types::bytes,126}127128impl TryFrom<up_data_structs::Property> for Property {129 type Error = evm_coder::execution::Error;130131 fn try_from(from: up_data_structs::Property) -> Result<Self, Self::Error> {132 let key = evm_coder::types::string::from_utf8(from.key.into())133 .map_err(|e| Self::Error::Revert(format!("utf8 conversion error: {}", e)))?;134 let value = evm_coder::types::bytes(from.value.to_vec());135 Ok(Property { key, value })136 }137}138139impl TryInto<up_data_structs::Property> for Property {140 type Error = evm_coder::execution::Error;141142 fn try_into(self) -> Result<up_data_structs::Property, Self::Error> {143 let key = <Vec<u8>>::from(self.key)144 .try_into()145 .map_err(|_| "key too large")?;146147 let value = self.value.0.try_into().map_err(|_| "value too large")?;148149 Ok(up_data_structs::Property { key, value })150 }151}152153/// [`CollectionLimits`](up_data_structs::CollectionLimits) fields representation for EVM.154#[derive(Debug, Default, Clone, Copy, AbiCoder)]155#[repr(u8)]156pub enum CollectionLimitField {157 /// How many tokens can a user have on one account.158 #[default]159 AccountTokenOwnership,160161 /// How many bytes of data are available for sponsorship.162 SponsoredDataSize,163164 /// In any case, chain default: [`SponsoringRateLimit::SponsoringDisabled`]165 SponsoredDataRateLimit,166167 /// How many tokens can be mined into this collection.168 TokenLimit,169170 /// Timeouts for transfer sponsoring.171 SponsorTransferTimeout,172173 /// Timeout for sponsoring an approval in passed blocks.174 SponsorApproveTimeout,175176 /// Whether the collection owner of the collection can send tokens (which belong to other users).177 OwnerCanTransfer,178179 /// Can the collection owner burn other people's tokens.180 OwnerCanDestroy,181182 /// Is it possible to send tokens from this collection between users.183 TransferEnabled,184}185186/// [`CollectionLimits`](up_data_structs::CollectionLimits) field representation for EVM.187#[derive(Debug, Default, AbiCoder)]188pub struct CollectionLimit {189 field: CollectionLimitField,190 value: Option<uint256>,191}192193impl CollectionLimit {194 /// Create [`CollectionLimit`] from field and value.195 pub fn new(field: CollectionLimitField, value: Option<u32>) -> Self {196 Self {197 field,198 value: match value {199 Some(value) => Some(value.into()),200 None => None,201 },202 }203 }204 /// Whether the field contains a value.205 pub fn has_value(&self) -> bool {206 self.value.is_some()207 }208}209210impl TryInto<up_data_structs::CollectionLimits> for CollectionLimit {211 type Error = evm_coder::execution::Error;212213 fn try_into(self) -> Result<up_data_structs::CollectionLimits, Self::Error> {214 let value = self215 .value216 .ok_or::<Self::Error>("can't convert `None` value to boolean".into())?;217 let value = Some(value.try_into().map_err(|error| {218 Self::Error::Revert(format!(219 "can't convert value to u32 \"{}\" because: \"{error}\"",220 value221 ))222 })?);223224 let convert_value_to_bool = || match value {225 Some(value) => match value {226 0 => Ok(Some(false)),227 1 => Ok(Some(true)),228 _ => {229 return Err(Self::Error::Revert(format!(230 "can't convert value to boolean \"{value}\""231 )))232 }233 },234 None => Ok(None),235 };236237 let mut limits = up_data_structs::CollectionLimits::default();238 match self.field {239 CollectionLimitField::AccountTokenOwnership => {240 limits.account_token_ownership_limit = value;241 }242 CollectionLimitField::SponsoredDataSize => {243 limits.sponsored_data_size = value;244 }245 CollectionLimitField::SponsoredDataRateLimit => {246 limits.sponsored_data_rate_limit = match value {247 Some(value) => Some(up_data_structs::SponsoringRateLimit::Blocks(value)),248 None => None,249 };250 }251 CollectionLimitField::TokenLimit => {252 limits.token_limit = value;253 }254 CollectionLimitField::SponsorTransferTimeout => {255 limits.sponsor_transfer_timeout = value;256 }257 CollectionLimitField::SponsorApproveTimeout => {258 limits.sponsor_approve_timeout = value;259 }260 CollectionLimitField::OwnerCanTransfer => {261 limits.owner_can_transfer = convert_value_to_bool()?;262 }263 CollectionLimitField::OwnerCanDestroy => {264 limits.owner_can_destroy = convert_value_to_bool()?;265 }266 CollectionLimitField::TransferEnabled => {267 limits.transfers_enabled = convert_value_to_bool()?;268 }269 };270 Ok(limits)271 }272}273274/// Ethereum representation of `NestingPermissions` (see [`up_data_structs::NestingPermissions`]) fields as an enumeration.275#[derive(Default, Debug, Clone, Copy, AbiCoder)]276#[repr(u8)]277pub enum CollectionPermissionField {278 /// Owner of token can nest tokens under it.279 #[default]280 TokenOwner,281282 /// Admin of token collection can nest tokens under token.283 CollectionAdmin,284}285286/// Ethereum representation of TokenPermissions (see [`up_data_structs::PropertyPermission`]) fields as an enumeration.287#[derive(AbiCoder, Copy, Clone, Default, Debug)]288#[repr(u8)]289pub enum TokenPermissionField {290 /// Permission to change the property and property permission. See [`up_data_structs::PropertyPermission::mutable`]291 #[default]292 Mutable,293294 /// Change permission for the collection administrator. See [`up_data_structs::PropertyPermission::token_owner`]295 TokenOwner,296297 /// Permission to change the property for the owner of the token. See [`up_data_structs::PropertyPermission::collection_admin`]298 CollectionAdmin,299}300301/// Ethereum representation of TokenPermissions (see [`up_data_structs::PropertyPermission`]) as an key and value.302#[derive(Debug, Default, AbiCoder)]303pub struct PropertyPermission {304 /// TokenPermission field.305 code: TokenPermissionField,306 /// TokenPermission value.307 value: bool,308}309310impl PropertyPermission {311 /// Make vector of [`PropertyPermission`] from [`up_data_structs::PropertyPermission`].312 pub fn into_vec(pp: up_data_structs::PropertyPermission) -> Vec<Self> {313 vec![314 PropertyPermission {315 code: TokenPermissionField::Mutable,316 value: pp.mutable,317 },318 PropertyPermission {319 code: TokenPermissionField::TokenOwner,320 value: pp.token_owner,321 },322 PropertyPermission {323 code: TokenPermissionField::CollectionAdmin,324 value: pp.collection_admin,325 },326 ]327 }328329 /// Make [`up_data_structs::PropertyPermission`] from vector of [`PropertyPermission`].330 pub fn from_vec(permission: Vec<Self>) -> up_data_structs::PropertyPermission {331 let mut token_permission = up_data_structs::PropertyPermission::default();332333 for PropertyPermission { code, value } in permission {334 match code {335 TokenPermissionField::Mutable => token_permission.mutable = value,336 TokenPermissionField::TokenOwner => token_permission.token_owner = value,337 TokenPermissionField::CollectionAdmin => token_permission.collection_admin = value,338 }339 }340 token_permission341 }342}343344/// Ethereum representation of Token Property Permissions.345#[derive(Debug, Default, AbiCoder)]346pub struct TokenPropertyPermission {347 /// Token property key.348 key: evm_coder::types::string,349 /// Token property permissions.350 permissions: Vec<PropertyPermission>,351}352353impl354 From<(355 up_data_structs::PropertyKey,356 up_data_structs::PropertyPermission,357 )> for TokenPropertyPermission358{359 fn from(360 value: (361 up_data_structs::PropertyKey,362 up_data_structs::PropertyPermission,363 ),364 ) -> Self {365 let (key, permission) = value;366 let key = evm_coder::types::string::from_utf8(key.into_inner())367 .expect("Stored key must be valid");368 let permissions = PropertyPermission::into_vec(permission);369 Self { key, permissions }370 }371}372373impl TokenPropertyPermission {374 /// Convert vector of [`TokenPropertyPermission`] into vector of [`up_data_structs::PropertyKeyPermission`].375 pub fn into_property_key_permissions(376 permissions: Vec<TokenPropertyPermission>,377 ) -> evm_coder::execution::Result<Vec<up_data_structs::PropertyKeyPermission>> {378 let mut perms = Vec::new();379380 for TokenPropertyPermission { key, permissions } in permissions {381 let token_permission = PropertyPermission::from_vec(permissions);382383 perms.push(up_data_structs::PropertyKeyPermission {384 key: key.into_bytes().try_into().map_err(|_| "too long key")?,385 permission: token_permission,386 });387 }388 Ok(perms)389 }390}391392/// Nested collections.393#[derive(Debug, Default, AbiCoder)]394pub struct CollectionNesting {395 token_owner: bool,396 ids: Vec<uint256>,397}398399impl CollectionNesting {400 /// Create [`CollectionNesting`].401 pub fn new(token_owner: bool, ids: Vec<uint256>) -> Self {402 Self { token_owner, ids }403 }404}405406/// Ethereum representation of `NestingPermissions` (see [`up_data_structs::NestingPermissions`]) field.407#[derive(Debug, Default, AbiCoder)]408pub struct CollectionNestingPermission {409 field: CollectionPermissionField,410 value: bool,411}412413impl CollectionNestingPermission {414 /// Create [`CollectionNestingPermission`].415 pub fn new(field: CollectionPermissionField, value: bool) -> Self {416 Self { field, value }417 }418}pallets/evm-contract-helpers/src/eth.rsdiffbeforeafterboth--- a/pallets/evm-contract-helpers/src/eth.rs
+++ b/pallets/evm-contract-helpers/src/eth.rs
@@ -261,7 +261,7 @@
&mut self,
caller: caller,
contract_address: address,
- fee_limit: uint256,
+ fee_limit: U256,
) -> Result<()> {
self.recorder().consume_sload()?;
self.recorder().consume_sstore()?;
@@ -276,7 +276,7 @@
/// @param contractAddress Contract to get sponsoring fee limit of
/// @return uint256 Maximum amount of fee that could be spent by single
/// transaction
- fn sponsoring_fee_limit(&self, contract_address: address) -> Result<uint256> {
+ fn sponsoring_fee_limit(&self, contract_address: address) -> Result<U256> {
self.recorder().consume_sload()?;
Ok(get_sponsoring_fee_limit::<T>(contract_address))
@@ -441,7 +441,7 @@
}
}
-fn get_sponsoring_fee_limit<T: Config>(contract_address: address) -> uint256 {
+fn get_sponsoring_fee_limit<T: Config>(contract_address: address) -> U256 {
<SponsoringFeeLimit<T>>::get(contract_address)
.get(&0xffffffff)
.cloned()
pallets/fungible/src/erc.rsdiffbeforeafterboth--- a/pallets/fungible/src/erc.rs
+++ b/pallets/fungible/src/erc.rs
@@ -32,7 +32,7 @@
use pallet_evm::{account::CrossAccountId, PrecompileHandle};
use pallet_evm_coder_substrate::{call, dispatch_to_evm};
use pallet_structure::{SelfWeightOf as StructureWeight, weights::WeightInfo as _};
-use sp_core::Get;
+use sp_core::{U256, Get};
use crate::{
Allowance, Balance, Config, FungibleHandle, Pallet, SelfWeightOf, TotalSupply,
@@ -46,14 +46,14 @@
from: address,
#[indexed]
to: address,
- value: uint256,
+ value: U256,
},
Approval {
#[indexed]
owner: address,
#[indexed]
spender: address,
- value: uint256,
+ value: U256,
},
}
@@ -67,7 +67,7 @@
fn symbol(&self) -> Result<string> {
Ok(string::from_utf8_lossy(&self.token_prefix).into())
}
- fn total_supply(&self) -> Result<uint256> {
+ fn total_supply(&self) -> Result<U256> {
self.consume_store_reads(1)?;
Ok(<TotalSupply<T>>::get(self.id).into())
}
@@ -79,14 +79,14 @@
unreachable!()
})
}
- fn balance_of(&self, owner: address) -> Result<uint256> {
+ fn balance_of(&self, owner: address) -> Result<U256> {
self.consume_store_reads(1)?;
let owner = T::CrossAccountId::from_eth(owner);
let balance = <Balance<T>>::get((self.id, owner));
Ok(balance.into())
}
#[weight(<SelfWeightOf<T>>::transfer())]
- fn transfer(&mut self, caller: caller, to: address, amount: uint256) -> Result<bool> {
+ fn transfer(&mut self, caller: caller, to: address, amount: U256) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let to = T::CrossAccountId::from_eth(to);
let amount = amount.try_into().map_err(|_| "amount overflow")?;
@@ -104,7 +104,7 @@
caller: caller,
from: address,
to: address,
- amount: uint256,
+ amount: U256,
) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let from = T::CrossAccountId::from_eth(from);
@@ -119,7 +119,7 @@
Ok(true)
}
#[weight(<SelfWeightOf<T>>::approve())]
- fn approve(&mut self, caller: caller, spender: address, amount: uint256) -> Result<bool> {
+ fn approve(&mut self, caller: caller, spender: address, amount: U256) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let spender = T::CrossAccountId::from_eth(spender);
let amount = amount.try_into().map_err(|_| "amount overflow")?;
@@ -128,7 +128,7 @@
.map_err(dispatch_to_evm::<T>)?;
Ok(true)
}
- fn allowance(&self, owner: address, spender: address) -> Result<uint256> {
+ fn allowance(&self, owner: address, spender: address) -> Result<U256> {
self.consume_store_reads(1)?;
let owner = T::CrossAccountId::from_eth(owner);
let spender = T::CrossAccountId::from_eth(spender);
@@ -148,7 +148,7 @@
/// @param to account that will receive minted tokens
/// @param amount amount of tokens to mint
#[weight(<SelfWeightOf<T>>::create_item())]
- fn mint(&mut self, caller: caller, to: address, amount: uint256) -> Result<bool> {
+ fn mint(&mut self, caller: caller, to: address, amount: U256) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let to = T::CrossAccountId::from_eth(to);
let amount = amount.try_into().map_err(|_| "amount overflow")?;
@@ -178,7 +178,7 @@
&mut self,
caller: caller,
to: pallet_common::eth::CrossAddress,
- amount: uint256,
+ amount: U256,
) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let to = to.into_sub_cross_account::<T>()?;
@@ -196,7 +196,7 @@
&mut self,
caller: caller,
spender: pallet_common::eth::CrossAddress,
- amount: uint256,
+ amount: U256,
) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let spender = spender.into_sub_cross_account::<T>()?;
@@ -214,7 +214,7 @@
/// @param amount The amount that will be burnt.
#[solidity(hide)]
#[weight(<SelfWeightOf<T>>::burn_from())]
- fn burn_from(&mut self, caller: caller, from: address, amount: uint256) -> Result<bool> {
+ fn burn_from(&mut self, caller: caller, from: address, amount: U256) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let from = T::CrossAccountId::from_eth(from);
let amount = amount.try_into().map_err(|_| "amount overflow")?;
@@ -237,7 +237,7 @@
&mut self,
caller: caller,
from: pallet_common::eth::CrossAddress,
- amount: uint256,
+ amount: U256,
) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let from = from.into_sub_cross_account::<T>()?;
@@ -254,7 +254,7 @@
/// Mint tokens for multiple accounts.
/// @param amounts array of pairs of account address and amount
#[weight(<SelfWeightOf<T>>::create_multiple_items_ex(amounts.len() as u32))]
- fn mint_bulk(&mut self, caller: caller, amounts: Vec<(address, uint256)>) -> Result<bool> {
+ fn mint_bulk(&mut self, caller: caller, amounts: Vec<(address, U256)>) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let budget = self
.recorder
@@ -279,7 +279,7 @@
&mut self,
caller: caller,
to: pallet_common::eth::CrossAddress,
- amount: uint256,
+ amount: U256,
) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let to = to.into_sub_cross_account::<T>()?;
@@ -298,7 +298,7 @@
caller: caller,
from: pallet_common::eth::CrossAddress,
to: pallet_common::eth::CrossAddress,
- amount: uint256,
+ amount: U256,
) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let from = from.into_sub_cross_account::<T>()?;
pallets/nonfungible/src/erc.rsdiffbeforeafterboth--- a/pallets/nonfungible/src/erc.rs
+++ b/pallets/nonfungible/src/erc.rs
@@ -43,7 +43,7 @@
use pallet_evm::{account::CrossAccountId, PrecompileHandle};
use pallet_evm_coder_substrate::call;
use pallet_structure::{SelfWeightOf as StructureWeight, weights::WeightInfo as _};
-use sp_core::Get;
+use sp_core::{U256, Get};
use crate::{
AccountBalance, Config, CreateItemData, NonfungibleHandle, Pallet, TokenData, TokensMinted,
@@ -122,7 +122,7 @@
fn set_property(
&mut self,
caller: caller,
- token_id: uint256,
+ token_id: U256,
key: string,
value: bytes,
) -> Result<()> {
@@ -155,7 +155,7 @@
fn set_properties(
&mut self,
caller: caller,
- token_id: uint256,
+ token_id: U256,
properties: Vec<eth::Property>,
) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
@@ -187,7 +187,7 @@
/// @param key Property key.
#[solidity(hide)]
#[weight(<SelfWeightOf<T>>::delete_token_properties(1))]
- fn delete_property(&mut self, token_id: uint256, caller: caller, key: string) -> Result<()> {
+ fn delete_property(&mut self, token_id: U256, caller: caller, key: string) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
let token_id: u32 = token_id.try_into().map_err(|_| "token id overflow")?;
let key = <Vec<u8>>::from(key)
@@ -209,7 +209,7 @@
#[weight(<SelfWeightOf<T>>::delete_token_properties(keys.len() as u32))]
fn delete_properties(
&mut self,
- token_id: uint256,
+ token_id: U256,
caller: caller,
keys: Vec<string>,
) -> Result<()> {
@@ -239,7 +239,7 @@
/// @param tokenId ID of the token.
/// @param key Property key.
/// @return Property value bytes
- fn property(&self, token_id: uint256, key: string) -> Result<bytes> {
+ fn property(&self, token_id: U256, key: string) -> Result<bytes> {
let token_id: u32 = token_id.try_into().map_err(|_| "token id overflow")?;
let key = <Vec<u8>>::from(key)
.try_into()
@@ -265,7 +265,7 @@
#[indexed]
to: address,
#[indexed]
- token_id: uint256,
+ token_id: U256,
},
/// @dev This emits when the approved address for an NFT is changed or
/// reaffirmed. The zero address indicates there is no approved address.
@@ -277,7 +277,7 @@
#[indexed]
approved: address,
#[indexed]
- token_id: uint256,
+ token_id: U256,
},
/// @dev This emits when an operator is enabled or disabled for an owner.
/// The operator can manage all NFTs of the owner.
@@ -322,7 +322,7 @@
///
/// @return token's const_metadata
#[solidity(rename_selector = "tokenURI")]
- fn token_uri(&self, token_id: uint256) -> Result<string> {
+ fn token_uri(&self, token_id: U256) -> Result<string> {
let token_id_u32: u32 = token_id.try_into().map_err(|_| "token id overflow")?;
match get_token_property(self, token_id_u32, &key::url()).as_deref() {
@@ -368,12 +368,12 @@
/// @param index A counter less than `totalSupply()`
/// @return The token identifier for the `index`th NFT,
/// (sort order not specified)
- fn token_by_index(&self, index: uint256) -> Result<uint256> {
+ fn token_by_index(&self, index: U256) -> Result<U256> {
Ok(index)
}
/// @dev Not implemented
- fn token_of_owner_by_index(&self, _owner: address, _index: uint256) -> Result<uint256> {
+ fn token_of_owner_by_index(&self, _owner: address, _index: U256) -> Result<U256> {
// TODO: Not implemetable
Err("not implemented".into())
}
@@ -381,7 +381,7 @@
/// @notice Count NFTs tracked by this contract
/// @return A count of valid NFTs tracked by this contract, where each one of
/// them has an assigned and queryable owner not equal to the zero address
- fn total_supply(&self) -> Result<uint256> {
+ fn total_supply(&self) -> Result<U256> {
self.consume_store_reads(1)?;
Ok(<Pallet<T>>::total_supply(self).into())
}
@@ -396,7 +396,7 @@
/// function throws for queries about the zero address.
/// @param owner An address for whom to query the balance
/// @return The number of NFTs owned by `owner`, possibly zero
- fn balance_of(&self, owner: address) -> Result<uint256> {
+ fn balance_of(&self, owner: address) -> Result<U256> {
self.consume_store_reads(1)?;
let owner = T::CrossAccountId::from_eth(owner);
let balance = <AccountBalance<T>>::get((self.id, owner));
@@ -407,7 +407,7 @@
/// about them do throw.
/// @param tokenId The identifier for an NFT
/// @return The address of the owner of the NFT
- fn owner_of(&self, token_id: uint256) -> Result<address> {
+ fn owner_of(&self, token_id: U256) -> Result<address> {
self.consume_store_reads(1)?;
let token: TokenId = token_id.try_into()?;
Ok(*<TokenData<T>>::get((self.id, token))
@@ -421,19 +421,14 @@
&mut self,
_from: address,
_to: address,
- _token_id: uint256,
+ _token_id: U256,
_data: bytes,
) -> Result<()> {
// TODO: Not implemetable
Err("not implemented".into())
}
/// @dev Not implemented
- fn safe_transfer_from(
- &mut self,
- _from: address,
- _to: address,
- _token_id: uint256,
- ) -> Result<()> {
+ fn safe_transfer_from(&mut self, _from: address, _to: address, _token_id: U256) -> Result<()> {
// TODO: Not implemetable
Err("not implemented".into())
}
@@ -453,7 +448,7 @@
caller: caller,
from: address,
to: address,
- token_id: uint256,
+ token_id: U256,
) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
let from = T::CrossAccountId::from_eth(from);
@@ -475,7 +470,7 @@
/// @param approved The new approved NFT controller
/// @param tokenId The NFT to approve
#[weight(<SelfWeightOf<T>>::approve())]
- fn approve(&mut self, caller: caller, approved: address, token_id: uint256) -> Result<()> {
+ fn approve(&mut self, caller: caller, approved: address, token_id: U256) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
let approved = T::CrossAccountId::from_eth(approved);
let token = token_id.try_into()?;
@@ -505,7 +500,7 @@
}
/// @dev Not implemented
- fn get_approved(&self, _token_id: uint256) -> Result<address> {
+ fn get_approved(&self, _token_id: U256) -> Result<address> {
// TODO: Not implemetable
Err("not implemented".into())
}
@@ -528,7 +523,7 @@
/// operator of the current owner.
/// @param tokenId The NFT to approve
#[weight(<SelfWeightOf<T>>::burn_item())]
- fn burn(&mut self, caller: caller, token_id: uint256) -> Result<()> {
+ fn burn(&mut self, caller: caller, token_id: U256) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
let token = token_id.try_into()?;
@@ -544,8 +539,8 @@
/// @param to The new owner
/// @return uint256 The id of the newly minted token
#[weight(<SelfWeightOf<T>>::create_item())]
- fn mint(&mut self, caller: caller, to: address) -> Result<uint256> {
- let token_id: uint256 = <TokensMinted<T>>::get(self.id)
+ fn mint(&mut self, caller: caller, to: address) -> Result<U256> {
+ let token_id: U256 = <TokensMinted<T>>::get(self.id)
.checked_add(1)
.ok_or("item id overflow")?
.into();
@@ -560,7 +555,7 @@
/// @param tokenId ID of the minted NFT
#[solidity(hide, rename_selector = "mint")]
#[weight(<SelfWeightOf<T>>::create_item())]
- fn mint_check_id(&mut self, caller: caller, to: address, token_id: uint256) -> Result<bool> {
+ fn mint_check_id(&mut self, caller: caller, to: address, token_id: U256) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let to = T::CrossAccountId::from_eth(to);
let token_id: u32 = token_id.try_into()?;
@@ -601,8 +596,8 @@
caller: caller,
to: address,
token_uri: string,
- ) -> Result<uint256> {
- let token_id: uint256 = <TokensMinted<T>>::get(self.id)
+ ) -> Result<U256> {
+ let token_id: U256 = <TokensMinted<T>>::get(self.id)
.checked_add(1)
.ok_or("item id overflow")?
.into();
@@ -622,7 +617,7 @@
&mut self,
caller: caller,
to: address,
- token_id: uint256,
+ token_id: U256,
token_uri: string,
) -> Result<bool> {
let key = key::url();
@@ -730,7 +725,7 @@
/// Returns the owner (in cross format) of the token.
///
/// @param tokenId Id for the token.
- fn cross_owner_of(&self, token_id: uint256) -> Result<eth::CrossAddress> {
+ fn cross_owner_of(&self, token_id: U256) -> Result<eth::CrossAddress> {
Self::token_owner(&self, token_id.try_into()?)
.map(|o| eth::CrossAddress::from_sub_cross_account::<T>(&o))
.ok_or(Error::Revert("key too large".into()))
@@ -741,7 +736,7 @@
/// @param tokenId Id for the token.
/// @param keys Properties keys. Empty keys for all propertyes.
/// @return Vector of properties key/value pairs.
- fn properties(&self, token_id: uint256, keys: Vec<string>) -> Result<Vec<eth::Property>> {
+ fn properties(&self, token_id: U256, keys: Vec<string>) -> Result<Vec<eth::Property>> {
let keys = keys
.into_iter()
.map(|key| {
@@ -772,7 +767,7 @@
&mut self,
caller: caller,
approved: eth::CrossAddress,
- token_id: uint256,
+ token_id: U256,
) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
let approved = approved.into_sub_cross_account::<T>()?;
@@ -789,7 +784,7 @@
/// @param to The new owner
/// @param tokenId The NFT to transfer
#[weight(<SelfWeightOf<T>>::transfer())]
- fn transfer(&mut self, caller: caller, to: address, token_id: uint256) -> Result<()> {
+ fn transfer(&mut self, caller: caller, to: address, token_id: U256) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
let to = T::CrossAccountId::from_eth(to);
let token = token_id.try_into()?;
@@ -811,7 +806,7 @@
&mut self,
caller: caller,
to: eth::CrossAddress,
- token_id: uint256,
+ token_id: U256,
) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
let to = to.into_sub_cross_account::<T>()?;
@@ -836,7 +831,7 @@
caller: caller,
from: eth::CrossAddress,
to: eth::CrossAddress,
- token_id: uint256,
+ token_id: U256,
) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
let from = from.into_sub_cross_account::<T>()?;
@@ -858,7 +853,7 @@
/// @param tokenId The NFT to transfer
#[solidity(hide)]
#[weight(<SelfWeightOf<T>>::burn_from())]
- fn burn_from(&mut self, caller: caller, from: address, token_id: uint256) -> Result<()> {
+ fn burn_from(&mut self, caller: caller, from: address, token_id: U256) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
let from = T::CrossAccountId::from_eth(from);
let token = token_id.try_into()?;
@@ -882,7 +877,7 @@
&mut self,
caller: caller,
from: eth::CrossAddress,
- token_id: uint256,
+ token_id: U256,
) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
let from = from.into_sub_cross_account::<T>()?;
@@ -897,7 +892,7 @@
}
/// @notice Returns next free NFT ID.
- fn next_token_id(&self) -> Result<uint256> {
+ fn next_token_id(&self) -> Result<U256> {
self.consume_store_reads(1)?;
Ok(<TokensMinted<T>>::get(self.id)
.checked_add(1)
@@ -912,7 +907,7 @@
/// @param tokenIds IDs of the minted NFTs
#[solidity(hide)]
#[weight(<SelfWeightOf<T>>::create_multiple_items(token_ids.len() as u32))]
- fn mint_bulk(&mut self, caller: caller, to: address, token_ids: Vec<uint256>) -> Result<bool> {
+ fn mint_bulk(&mut self, caller: caller, to: address, token_ids: Vec<U256>) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let to = T::CrossAccountId::from_eth(to);
let mut expected_index = <TokensMinted<T>>::get(self.id)
@@ -953,7 +948,7 @@
&mut self,
caller: caller,
to: address,
- tokens: Vec<(uint256, string)>,
+ tokens: Vec<(U256, string)>,
) -> Result<bool> {
let key = key::url();
let caller = T::CrossAccountId::from_eth(caller);
@@ -1005,7 +1000,7 @@
caller: caller,
to: eth::CrossAddress,
properties: Vec<eth::Property>,
- ) -> Result<uint256> {
+ ) -> Result<U256> {
let token_id = <TokensMinted<T>>::get(self.id)
.checked_add(1)
.ok_or("item id overflow")?;
pallets/refungible/src/erc.rsdiffbeforeafterboth--- a/pallets/refungible/src/erc.rs
+++ b/pallets/refungible/src/erc.rs
@@ -39,7 +39,7 @@
use pallet_evm::{account::CrossAccountId, PrecompileHandle};
use pallet_evm_coder_substrate::{call, dispatch_to_evm};
use pallet_structure::{SelfWeightOf as StructureWeight, weights::WeightInfo as _};
-use sp_core::{H160, Get};
+use sp_core::{H160, U256, Get};
use sp_std::{collections::btree_map::BTreeMap, vec::Vec, vec};
use up_data_structs::{
CollectionId, CollectionPropertiesVec, mapping::TokenAddressMapping, Property, PropertyKey,
@@ -125,7 +125,7 @@
fn set_property(
&mut self,
caller: caller,
- token_id: uint256,
+ token_id: U256,
key: string,
value: bytes,
) -> Result<()> {
@@ -158,7 +158,7 @@
fn set_properties(
&mut self,
caller: caller,
- token_id: uint256,
+ token_id: U256,
properties: Vec<eth::Property>,
) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
@@ -190,7 +190,7 @@
/// @param key Property key.
#[solidity(hide)]
#[weight(<SelfWeightOf<T>>::delete_token_properties(1))]
- fn delete_property(&mut self, token_id: uint256, caller: caller, key: string) -> Result<()> {
+ fn delete_property(&mut self, token_id: U256, caller: caller, key: string) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
let token_id: u32 = token_id.try_into().map_err(|_| "token id overflow")?;
let key = <Vec<u8>>::from(key)
@@ -212,7 +212,7 @@
#[weight(<SelfWeightOf<T>>::delete_token_properties(keys.len() as u32))]
fn delete_properties(
&mut self,
- token_id: uint256,
+ token_id: U256,
caller: caller,
keys: Vec<string>,
) -> Result<()> {
@@ -242,7 +242,7 @@
/// @param tokenId ID of the token.
/// @param key Property key.
/// @return Property value bytes
- fn property(&self, token_id: uint256, key: string) -> Result<bytes> {
+ fn property(&self, token_id: U256, key: string) -> Result<bytes> {
let token_id: u32 = token_id.try_into().map_err(|_| "token id overflow")?;
let key = <Vec<u8>>::from(key)
.try_into()
@@ -266,7 +266,7 @@
#[indexed]
to: address,
#[indexed]
- token_id: uint256,
+ token_id: U256,
},
/// @dev Not supported
Approval {
@@ -275,7 +275,7 @@
#[indexed]
approved: address,
#[indexed]
- token_id: uint256,
+ token_id: U256,
},
/// @dev Not supported
#[allow(dead_code)]
@@ -319,7 +319,7 @@
///
/// @return token's const_metadata
#[solidity(rename_selector = "tokenURI")]
- fn token_uri(&self, token_id: uint256) -> Result<string> {
+ fn token_uri(&self, token_id: U256) -> Result<string> {
let token_id_u32: u32 = token_id.try_into().map_err(|_| "token id overflow")?;
match get_token_property(self, token_id_u32, &key::url()).as_deref() {
@@ -365,12 +365,12 @@
/// @param index A counter less than `totalSupply()`
/// @return The token identifier for the `index`th NFT,
/// (sort order not specified)
- fn token_by_index(&self, index: uint256) -> Result<uint256> {
+ fn token_by_index(&self, index: U256) -> Result<U256> {
Ok(index)
}
/// Not implemented
- fn token_of_owner_by_index(&self, _owner: address, _index: uint256) -> Result<uint256> {
+ fn token_of_owner_by_index(&self, _owner: address, _index: U256) -> Result<U256> {
// TODO: Not implemetable
Err("not implemented".into())
}
@@ -378,7 +378,7 @@
/// @notice Count RFTs tracked by this contract
/// @return A count of valid RFTs tracked by this contract, where each one of
/// them has an assigned and queryable owner not equal to the zero address
- fn total_supply(&self) -> Result<uint256> {
+ fn total_supply(&self) -> Result<U256> {
self.consume_store_reads(1)?;
Ok(<Pallet<T>>::total_supply(self).into())
}
@@ -393,7 +393,7 @@
/// function throws for queries about the zero address.
/// @param owner An address for whom to query the balance
/// @return The number of RFTs owned by `owner`, possibly zero
- fn balance_of(&self, owner: address) -> Result<uint256> {
+ fn balance_of(&self, owner: address) -> Result<U256> {
self.consume_store_reads(1)?;
let owner = T::CrossAccountId::from_eth(owner);
let balance = <AccountBalance<T>>::get((self.id, owner));
@@ -407,7 +407,7 @@
/// the tokens that are partially owned.
/// @param tokenId The identifier for an RFT
/// @return The address of the owner of the RFT
- fn owner_of(&self, token_id: uint256) -> Result<address> {
+ fn owner_of(&self, token_id: U256) -> Result<address> {
self.consume_store_reads(2)?;
let token = token_id.try_into()?;
let owner = <Pallet<T>>::token_owner(self.id, token);
@@ -422,7 +422,7 @@
&mut self,
_from: address,
_to: address,
- _token_id: uint256,
+ _token_id: U256,
_data: bytes,
) -> Result<()> {
// TODO: Not implemetable
@@ -431,12 +431,7 @@
/// @dev Not implemented
#[solidity(rename_selector = "safeTransferFrom")]
- fn safe_transfer_from(
- &mut self,
- _from: address,
- _to: address,
- _token_id: uint256,
- ) -> Result<()> {
+ fn safe_transfer_from(&mut self, _from: address, _to: address, _token_id: U256) -> Result<()> {
// TODO: Not implemetable
Err("not implemented".into())
}
@@ -457,7 +452,7 @@
caller: caller,
from: address,
to: address,
- token_id: uint256,
+ token_id: U256,
) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
let from = T::CrossAccountId::from_eth(from);
@@ -477,7 +472,7 @@
}
/// @dev Not implemented
- fn approve(&mut self, _caller: caller, _approved: address, _token_id: uint256) -> Result<()> {
+ fn approve(&mut self, _caller: caller, _approved: address, _token_id: U256) -> Result<()> {
Err("not implemented".into())
}
@@ -501,7 +496,7 @@
}
/// @dev Not implemented
- fn get_approved(&self, _token_id: uint256) -> Result<address> {
+ fn get_approved(&self, _token_id: U256) -> Result<address> {
// TODO: Not implemetable
Err("not implemented".into())
}
@@ -556,7 +551,7 @@
/// operator of the current owner.
/// @param tokenId The RFT to approve
#[weight(<SelfWeightOf<T>>::burn_item_fully())]
- fn burn(&mut self, caller: caller, token_id: uint256) -> Result<()> {
+ fn burn(&mut self, caller: caller, token_id: U256) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
let token = token_id.try_into()?;
@@ -575,8 +570,8 @@
/// @param to The new owner
/// @return uint256 The id of the newly minted token
#[weight(<SelfWeightOf<T>>::create_item())]
- fn mint(&mut self, caller: caller, to: address) -> Result<uint256> {
- let token_id: uint256 = <TokensMinted<T>>::get(self.id)
+ fn mint(&mut self, caller: caller, to: address) -> Result<U256> {
+ let token_id: U256 = <TokensMinted<T>>::get(self.id)
.checked_add(1)
.ok_or("item id overflow")?
.into();
@@ -591,7 +586,7 @@
/// @param tokenId ID of the minted RFT
#[solidity(hide, rename_selector = "mint")]
#[weight(<SelfWeightOf<T>>::create_item())]
- fn mint_check_id(&mut self, caller: caller, to: address, token_id: uint256) -> Result<bool> {
+ fn mint_check_id(&mut self, caller: caller, to: address, token_id: U256) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let to = T::CrossAccountId::from_eth(to);
let token_id: u32 = token_id.try_into()?;
@@ -637,8 +632,8 @@
caller: caller,
to: address,
token_uri: string,
- ) -> Result<uint256> {
- let token_id: uint256 = <TokensMinted<T>>::get(self.id)
+ ) -> Result<U256> {
+ let token_id: U256 = <TokensMinted<T>>::get(self.id)
.checked_add(1)
.ok_or("item id overflow")?
.into();
@@ -658,7 +653,7 @@
&mut self,
caller: caller,
to: address,
- token_id: uint256,
+ token_id: U256,
token_uri: string,
) -> Result<bool> {
let key = key::url();
@@ -768,7 +763,7 @@
/// Returns the owner (in cross format) of the token.
///
/// @param tokenId Id for the token.
- fn cross_owner_of(&self, token_id: uint256) -> Result<eth::CrossAddress> {
+ fn cross_owner_of(&self, token_id: U256) -> Result<eth::CrossAddress> {
Self::token_owner(&self, token_id.try_into()?)
.map(|o| eth::CrossAddress::from_sub_cross_account::<T>(&o))
.ok_or(Error::Revert("key too large".into()))
@@ -779,7 +774,7 @@
/// @param tokenId Id for the token.
/// @param keys Properties keys. Empty keys for all propertyes.
/// @return Vector of properties key/value pairs.
- fn properties(&self, token_id: uint256, keys: Vec<string>) -> Result<Vec<eth::Property>> {
+ fn properties(&self, token_id: U256, keys: Vec<string>) -> Result<Vec<eth::Property>> {
let keys = keys
.into_iter()
.map(|key| {
@@ -805,7 +800,7 @@
/// @param to The new owner
/// @param tokenId The RFT to transfer
#[weight(<SelfWeightOf<T>>::transfer_creating_removing())]
- fn transfer(&mut self, caller: caller, to: address, token_id: uint256) -> Result<()> {
+ fn transfer(&mut self, caller: caller, to: address, token_id: U256) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
let to = T::CrossAccountId::from_eth(to);
let token = token_id.try_into()?;
@@ -832,7 +827,7 @@
&mut self,
caller: caller,
to: eth::CrossAddress,
- token_id: uint256,
+ token_id: U256,
) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
let to = to.into_sub_cross_account::<T>()?;
@@ -861,7 +856,7 @@
caller: caller,
from: eth::CrossAddress,
to: eth::CrossAddress,
- token_id: uint256,
+ token_id: U256,
) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
let from = from.into_sub_cross_account::<T>()?;
@@ -888,7 +883,7 @@
/// @param tokenId The RFT to transfer
#[solidity(hide)]
#[weight(<SelfWeightOf<T>>::burn_from())]
- fn burn_from(&mut self, caller: caller, from: address, token_id: uint256) -> Result<()> {
+ fn burn_from(&mut self, caller: caller, from: address, token_id: U256) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
let from = T::CrossAccountId::from_eth(from);
let token = token_id.try_into()?;
@@ -916,7 +911,7 @@
&mut self,
caller: caller,
from: eth::CrossAddress,
- token_id: uint256,
+ token_id: U256,
) -> Result<()> {
let caller = T::CrossAccountId::from_eth(caller);
let from = from.into_sub_cross_account::<T>()?;
@@ -934,7 +929,7 @@
}
/// @notice Returns next free RFT ID.
- fn next_token_id(&self) -> Result<uint256> {
+ fn next_token_id(&self) -> Result<U256> {
self.consume_store_reads(1)?;
Ok(<TokensMinted<T>>::get(self.id)
.checked_add(1)
@@ -949,7 +944,7 @@
/// @param tokenIds IDs of the minted RFTs
#[solidity(hide)]
#[weight(<SelfWeightOf<T>>::create_multiple_items(token_ids.len() as u32))]
- fn mint_bulk(&mut self, caller: caller, to: address, token_ids: Vec<uint256>) -> Result<bool> {
+ fn mint_bulk(&mut self, caller: caller, to: address, token_ids: Vec<U256>) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let to = T::CrossAccountId::from_eth(to);
let mut expected_index = <TokensMinted<T>>::get(self.id)
@@ -996,7 +991,7 @@
&mut self,
caller: caller,
to: address,
- tokens: Vec<(uint256, string)>,
+ tokens: Vec<(U256, string)>,
) -> Result<bool> {
let key = key::url();
let caller = T::CrossAccountId::from_eth(caller);
@@ -1054,7 +1049,7 @@
caller: caller,
to: eth::CrossAddress,
properties: Vec<eth::Property>,
- ) -> Result<uint256> {
+ ) -> Result<U256> {
let token_id = <TokensMinted<T>>::get(self.id)
.checked_add(1)
.ok_or("item id overflow")?;
@@ -1093,7 +1088,7 @@
/// Returns EVM address for refungible token
///
/// @param token ID of the token
- fn token_contract_address(&self, token: uint256) -> Result<address> {
+ fn token_contract_address(&self, token: U256) -> Result<address> {
Ok(T::EvmTokenAddressMapping::token_to_address(
self.id,
token.try_into().map_err(|_| "token id overflow")?,
pallets/refungible/src/erc_token.rsdiffbeforeafterboth--- a/pallets/refungible/src/erc_token.rs
+++ b/pallets/refungible/src/erc_token.rs
@@ -37,6 +37,7 @@
use pallet_evm_coder_substrate::{call, dispatch_to_evm, WithRecorder};
use pallet_structure::{SelfWeightOf as StructureWeight, weights::WeightInfo as _};
use sp_std::vec::Vec;
+use sp_core::U256;
use up_data_structs::TokenId;
use crate::{
@@ -55,7 +56,7 @@
Ok(collection_id_to_address(self.id))
}
- fn parent_token_id(&self) -> Result<uint256> {
+ fn parent_token_id(&self) -> Result<U256> {
Ok(self.1.into())
}
}
@@ -71,7 +72,7 @@
from: address,
#[indexed]
to: address,
- value: uint256,
+ value: U256,
},
/// @dev This event is emitted when the amount of tokens (value) is approved
/// by the owner to be used by the spender.
@@ -80,7 +81,7 @@
owner: address,
#[indexed]
spender: address,
- value: uint256,
+ value: U256,
},
}
@@ -103,7 +104,7 @@
}
/// @dev Total number of tokens in existence
- fn total_supply(&self) -> Result<uint256> {
+ fn total_supply(&self) -> Result<U256> {
self.consume_store_reads(1)?;
Ok(<TotalSupply<T>>::get((self.id, self.1)).into())
}
@@ -117,7 +118,7 @@
/// @dev Gets the balance of the specified address.
/// @param owner The address to query the balance of.
/// @return An uint256 representing the amount owned by the passed address.
- fn balance_of(&self, owner: address) -> Result<uint256> {
+ fn balance_of(&self, owner: address) -> Result<U256> {
self.consume_store_reads(1)?;
let owner = T::CrossAccountId::from_eth(owner);
let balance = <Balance<T>>::get((self.id, self.1, owner));
@@ -128,7 +129,7 @@
/// @param to The address to transfer to.
/// @param amount The amount to be transferred.
#[weight(<CommonWeights<T>>::transfer())]
- fn transfer(&mut self, caller: caller, to: address, amount: uint256) -> Result<bool> {
+ fn transfer(&mut self, caller: caller, to: address, amount: U256) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let to = T::CrossAccountId::from_eth(to);
let amount = amount.try_into().map_err(|_| "amount overflow")?;
@@ -151,7 +152,7 @@
caller: caller,
from: address,
to: address,
- amount: uint256,
+ amount: U256,
) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let from = T::CrossAccountId::from_eth(from);
@@ -174,7 +175,7 @@
/// @param spender The address which will spend the funds.
/// @param amount The amount of tokens to be spent.
#[weight(<SelfWeightOf<T>>::approve())]
- fn approve(&mut self, caller: caller, spender: address, amount: uint256) -> Result<bool> {
+ fn approve(&mut self, caller: caller, spender: address, amount: U256) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let spender = T::CrossAccountId::from_eth(spender);
let amount = amount.try_into().map_err(|_| "amount overflow")?;
@@ -188,7 +189,7 @@
/// @param owner address The address which owns the funds.
/// @param spender address The address which will spend the funds.
/// @return A uint256 specifying the amount of tokens still available for the spender.
- fn allowance(&self, owner: address, spender: address) -> Result<uint256> {
+ fn allowance(&self, owner: address, spender: address) -> Result<U256> {
self.consume_store_reads(1)?;
let owner = T::CrossAccountId::from_eth(owner);
let spender = T::CrossAccountId::from_eth(spender);
@@ -208,7 +209,7 @@
/// @param amount The amount that will be burnt.
#[weight(<SelfWeightOf<T>>::burn_from())]
#[solidity(hide)]
- fn burn_from(&mut self, caller: caller, from: address, amount: uint256) -> Result<bool> {
+ fn burn_from(&mut self, caller: caller, from: address, amount: U256) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let from = T::CrossAccountId::from_eth(from);
let amount = amount.try_into().map_err(|_| "amount overflow")?;
@@ -230,7 +231,7 @@
&mut self,
caller: caller,
from: pallet_common::eth::CrossAddress,
- amount: uint256,
+ amount: U256,
) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let from = from.into_sub_cross_account::<T>()?;
@@ -256,7 +257,7 @@
&mut self,
caller: caller,
spender: pallet_common::eth::CrossAddress,
- amount: uint256,
+ amount: U256,
) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let spender = spender.into_sub_cross_account::<T>()?;
@@ -270,7 +271,7 @@
/// Throws if `msg.sender` doesn't owns all of the tokens.
/// @param amount New total amount of the tokens.
#[weight(<SelfWeightOf<T>>::repartition_item())]
- fn repartition(&mut self, caller: caller, amount: uint256) -> Result<bool> {
+ fn repartition(&mut self, caller: caller, amount: U256) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let amount = amount.try_into().map_err(|_| "amount overflow")?;
@@ -286,7 +287,7 @@
&mut self,
caller: caller,
to: pallet_common::eth::CrossAddress,
- amount: uint256,
+ amount: U256,
) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let to = to.into_sub_cross_account::<T>()?;
@@ -310,7 +311,7 @@
caller: caller,
from: pallet_common::eth::CrossAddress,
to: pallet_common::eth::CrossAddress,
- amount: uint256,
+ amount: U256,
) -> Result<bool> {
let caller = T::CrossAccountId::from_eth(caller);
let from = from.into_sub_cross_account::<T>()?;
tests/src/eth/abi/nonFungible.jsondiffbeforeafterboth--- a/tests/src/eth/abi/nonFungible.json
+++ b/tests/src/eth/abi/nonFungible.json
@@ -51,6 +51,12 @@
},
{
"anonymous": false,
+ "inputs": [],
+ "name": "MintingFinished",
+ "type": "event"
+ },
+ {
+ "anonymous": false,
"inputs": [
{
"indexed": true,
@@ -417,6 +423,13 @@
"type": "function"
},
{
+ "inputs": [],
+ "name": "finishMinting",
+ "outputs": [{ "internalType": "bool", "name": "", "type": "bool" }],
+ "stateMutability": "nonpayable",
+ "type": "function"
+ },
+ {
"inputs": [
{ "internalType": "uint256", "name": "tokenId", "type": "uint256" }
],
@@ -504,6 +517,13 @@
},
{
"inputs": [],
+ "name": "mintingFinished",
+ "outputs": [{ "internalType": "bool", "name": "", "type": "bool" }],
+ "stateMutability": "view",
+ "type": "function"
+ },
+ {
+ "inputs": [],
"name": "name",
"outputs": [{ "internalType": "string", "name": "", "type": "string" }],
"stateMutability": "view",
tests/src/eth/abi/reFungible.jsondiffbeforeafterboth--- a/tests/src/eth/abi/reFungible.json
+++ b/tests/src/eth/abi/reFungible.json
@@ -51,6 +51,12 @@
},
{
"anonymous": false,
+ "inputs": [],
+ "name": "MintingFinished",
+ "type": "event"
+ },
+ {
+ "anonymous": false,
"inputs": [
{
"indexed": true,
@@ -399,6 +405,13 @@
"type": "function"
},
{
+ "inputs": [],
+ "name": "finishMinting",
+ "outputs": [{ "internalType": "bool", "name": "", "type": "bool" }],
+ "stateMutability": "nonpayable",
+ "type": "function"
+ },
+ {
"inputs": [
{ "internalType": "uint256", "name": "tokenId", "type": "uint256" }
],
@@ -486,6 +499,13 @@
},
{
"inputs": [],
+ "name": "mintingFinished",
+ "outputs": [{ "internalType": "bool", "name": "", "type": "bool" }],
+ "stateMutability": "view",
+ "type": "function"
+ },
+ {
+ "inputs": [],
"name": "name",
"outputs": [{ "internalType": "string", "name": "", "type": "string" }],
"stateMutability": "view",
tests/src/eth/abi/reFungibleToken.jsondiffbeforeafterboth--- a/tests/src/eth/abi/reFungibleToken.json
+++ b/tests/src/eth/abi/reFungibleToken.json
@@ -98,6 +98,16 @@
},
{
"inputs": [
+ { "internalType": "address", "name": "from", "type": "address" },
+ { "internalType": "uint256", "name": "amount", "type": "uint256" }
+ ],
+ "name": "burnFrom",
+ "outputs": [{ "internalType": "bool", "name": "", "type": "bool" }],
+ "stateMutability": "nonpayable",
+ "type": "function"
+ },
+ {
+ "inputs": [
{
"components": [
{ "internalType": "address", "name": "eth", "type": "address" },