b6d35f6faf
Updated 4763 files with dual copyright: - Parity Technologies (UK) Ltd. - Dijital Kurdistan Tech Institute
365 lines
10 KiB
Rust
365 lines
10 KiB
Rust
// This file is part of Bizinikiwi.
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// Copyright (C) Parity Technologies (UK) Ltd. and Dijital Kurdistan Tech Institute
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// SPDX-License-Identifier: Apache-2.0
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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//! Implementations for fungibles trait.
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use alloc::vec::Vec;
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use pezframe_support::{
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defensive,
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traits::tokens::{
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Fortitude,
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Precision::{self, BestEffort},
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Preservation::{self, Expendable},
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Provenance::{self, Minted},
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},
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};
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use super::*;
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impl<T: Config<I>, I: 'static> fungibles::Inspect<<T as SystemConfig>::AccountId>
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for Pezpallet<T, I>
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{
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type AssetId = T::AssetId;
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type Balance = T::Balance;
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fn total_issuance(asset: Self::AssetId) -> Self::Balance {
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Asset::<T, I>::get(asset).map(|x| x.supply).unwrap_or_else(Zero::zero)
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}
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fn minimum_balance(asset: Self::AssetId) -> Self::Balance {
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Asset::<T, I>::get(asset).map(|x| x.min_balance).unwrap_or_else(Zero::zero)
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}
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fn balance(asset: Self::AssetId, who: &<T as SystemConfig>::AccountId) -> Self::Balance {
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Pezpallet::<T, I>::balance(asset, who)
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}
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fn total_balance(asset: Self::AssetId, who: &<T as SystemConfig>::AccountId) -> Self::Balance {
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Pezpallet::<T, I>::balance(asset.clone(), who)
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.saturating_add(T::Holder::balance_on_hold(asset, who).unwrap_or_default())
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}
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fn reducible_balance(
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asset: Self::AssetId,
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who: &<T as SystemConfig>::AccountId,
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preservation: Preservation,
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_: Fortitude,
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) -> Self::Balance {
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Pezpallet::<T, I>::reducible_balance(asset, who, !matches!(preservation, Expendable))
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.unwrap_or(Zero::zero())
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}
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fn can_deposit(
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asset: Self::AssetId,
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who: &<T as SystemConfig>::AccountId,
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amount: Self::Balance,
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provenance: Provenance,
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) -> DepositConsequence {
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Pezpallet::<T, I>::can_increase(asset, who, amount, provenance == Minted)
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}
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fn can_withdraw(
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asset: Self::AssetId,
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who: &<T as SystemConfig>::AccountId,
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amount: Self::Balance,
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) -> WithdrawConsequence<Self::Balance> {
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Pezpallet::<T, I>::can_decrease(asset, who, amount, false)
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}
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fn asset_exists(asset: Self::AssetId) -> bool {
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Asset::<T, I>::contains_key(asset)
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}
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}
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impl<T: Config<I>, I: 'static> fungibles::Mutate<<T as SystemConfig>::AccountId>
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for Pezpallet<T, I>
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{
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fn done_mint_into(
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asset_id: Self::AssetId,
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beneficiary: &<T as SystemConfig>::AccountId,
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amount: Self::Balance,
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) {
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Self::deposit_event(Event::Issued { asset_id, owner: beneficiary.clone(), amount })
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}
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fn done_burn_from(
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asset_id: Self::AssetId,
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target: &<T as SystemConfig>::AccountId,
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balance: Self::Balance,
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) {
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Self::deposit_event(Event::Burned { asset_id, owner: target.clone(), balance });
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}
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fn done_transfer(
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asset_id: Self::AssetId,
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source: &<T as SystemConfig>::AccountId,
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dest: &<T as SystemConfig>::AccountId,
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amount: Self::Balance,
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) {
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Self::deposit_event(Event::Transferred {
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asset_id,
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from: source.clone(),
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to: dest.clone(),
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amount,
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});
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}
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}
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impl<T: Config<I>, I: 'static> fungibles::Balanced<<T as SystemConfig>::AccountId>
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for Pezpallet<T, I>
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{
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type OnDropCredit = fungibles::DecreaseIssuance<T::AccountId, Self>;
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type OnDropDebt = fungibles::IncreaseIssuance<T::AccountId, Self>;
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fn done_deposit(
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asset_id: Self::AssetId,
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who: &<T as SystemConfig>::AccountId,
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amount: Self::Balance,
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) {
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Self::deposit_event(Event::Deposited { asset_id, who: who.clone(), amount })
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}
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fn done_withdraw(
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asset_id: Self::AssetId,
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who: &<T as SystemConfig>::AccountId,
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amount: Self::Balance,
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) {
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Self::deposit_event(Event::Withdrawn { asset_id, who: who.clone(), amount })
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}
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}
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impl<T: Config<I>, I: 'static> fungibles::Unbalanced<T::AccountId> for Pezpallet<T, I> {
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fn handle_raw_dust(_: Self::AssetId, _: Self::Balance) {}
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fn handle_dust(_: fungibles::Dust<T::AccountId, Self>) {
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defensive!("`decrease_balance` and `increase_balance` have non-default impls; nothing else calls this; qed");
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}
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fn write_balance(
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_: Self::AssetId,
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_: &T::AccountId,
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_: Self::Balance,
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) -> Result<Option<Self::Balance>, DispatchError> {
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defensive!("write_balance is not used if other functions are impl'd");
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Err(DispatchError::Unavailable)
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}
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fn set_total_issuance(id: T::AssetId, amount: Self::Balance) {
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Asset::<T, I>::mutate_exists(id, |maybe_asset| {
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if let Some(ref mut asset) = maybe_asset {
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asset.supply = amount
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}
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});
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}
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fn decrease_balance(
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asset: T::AssetId,
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who: &T::AccountId,
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amount: Self::Balance,
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precision: Precision,
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preservation: Preservation,
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_: Fortitude,
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) -> Result<Self::Balance, DispatchError> {
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let f = DebitFlags {
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keep_alive: preservation != Expendable,
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best_effort: precision == BestEffort,
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};
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Self::decrease_balance(asset, who, amount, f, |_, _| Ok(()))
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}
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fn increase_balance(
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asset: T::AssetId,
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who: &T::AccountId,
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amount: Self::Balance,
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_: Precision,
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) -> Result<Self::Balance, DispatchError> {
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Self::increase_balance(asset, who, amount, |_| Ok(()))?;
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Ok(amount)
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}
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// TODO: #13196 implement deactivate/reactivate once we have inactive balance tracking.
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}
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impl<T: Config<I>, I: 'static> fungibles::Create<T::AccountId> for Pezpallet<T, I> {
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fn create(
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id: T::AssetId,
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admin: T::AccountId,
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is_sufficient: bool,
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min_balance: Self::Balance,
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) -> DispatchResult {
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Self::do_force_create(id, admin, is_sufficient, min_balance)
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}
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}
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impl<T: Config<I>, I: 'static> fungibles::Destroy<T::AccountId> for Pezpallet<T, I> {
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fn start_destroy(id: T::AssetId, maybe_check_owner: Option<T::AccountId>) -> DispatchResult {
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Self::do_start_destroy(id, maybe_check_owner)
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}
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fn destroy_accounts(id: T::AssetId, max_items: u32) -> Result<u32, DispatchError> {
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Self::do_destroy_accounts(id, max_items)
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}
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fn destroy_approvals(id: T::AssetId, max_items: u32) -> Result<u32, DispatchError> {
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Self::do_destroy_approvals(id, max_items)
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}
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fn finish_destroy(id: T::AssetId) -> DispatchResult {
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Self::do_finish_destroy(id)
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}
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}
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impl<T: Config<I>, I: 'static> fungibles::metadata::Inspect<<T as SystemConfig>::AccountId>
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for Pezpallet<T, I>
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{
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fn name(asset: T::AssetId) -> Vec<u8> {
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Metadata::<T, I>::get(asset).name.to_vec()
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}
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fn symbol(asset: T::AssetId) -> Vec<u8> {
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Metadata::<T, I>::get(asset).symbol.to_vec()
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}
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fn decimals(asset: T::AssetId) -> u8 {
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Metadata::<T, I>::get(asset).decimals
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}
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}
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impl<T: Config<I>, I: 'static> fungibles::metadata::Mutate<<T as SystemConfig>::AccountId>
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for Pezpallet<T, I>
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{
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fn set(
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asset: T::AssetId,
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from: &<T as SystemConfig>::AccountId,
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name: Vec<u8>,
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symbol: Vec<u8>,
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decimals: u8,
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) -> DispatchResult {
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Self::do_set_metadata(asset, from, name, symbol, decimals)
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}
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}
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impl<T: Config<I>, I: 'static>
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fungibles::metadata::MetadataDeposit<
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<T::Currency as Currency<<T as SystemConfig>::AccountId>>::Balance,
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> for Pezpallet<T, I>
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{
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fn calc_metadata_deposit(
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name: &[u8],
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symbol: &[u8],
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) -> <T::Currency as Currency<<T as SystemConfig>::AccountId>>::Balance {
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Self::calc_metadata_deposit(&name, &symbol)
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}
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}
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impl<T: Config<I>, I: 'static> fungibles::approvals::Inspect<<T as SystemConfig>::AccountId>
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for Pezpallet<T, I>
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{
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// Check the amount approved to be spent by an owner to a delegate
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fn allowance(
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asset: T::AssetId,
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owner: &<T as SystemConfig>::AccountId,
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delegate: &<T as SystemConfig>::AccountId,
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) -> T::Balance {
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Approvals::<T, I>::get((asset, &owner, &delegate))
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.map(|x| x.amount)
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.unwrap_or_else(Zero::zero)
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}
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}
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impl<T: Config<I>, I: 'static> fungibles::approvals::Mutate<<T as SystemConfig>::AccountId>
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for Pezpallet<T, I>
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{
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// Approve spending tokens from a given account
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fn approve(
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asset: T::AssetId,
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owner: &<T as SystemConfig>::AccountId,
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delegate: &<T as SystemConfig>::AccountId,
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amount: T::Balance,
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) -> DispatchResult {
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Self::do_approve_transfer(asset, owner, delegate, amount)
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}
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fn transfer_from(
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asset: T::AssetId,
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owner: &<T as SystemConfig>::AccountId,
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delegate: &<T as SystemConfig>::AccountId,
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dest: &<T as SystemConfig>::AccountId,
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amount: T::Balance,
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) -> DispatchResult {
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Self::do_transfer_approved(asset, owner, delegate, dest, amount)
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}
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}
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impl<T: Config<I>, I: 'static> fungibles::roles::Inspect<<T as SystemConfig>::AccountId>
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for Pezpallet<T, I>
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{
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fn owner(asset: T::AssetId) -> Option<<T as SystemConfig>::AccountId> {
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Asset::<T, I>::get(asset).map(|x| x.owner)
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}
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fn issuer(asset: T::AssetId) -> Option<<T as SystemConfig>::AccountId> {
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Asset::<T, I>::get(asset).map(|x| x.issuer)
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}
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fn admin(asset: T::AssetId) -> Option<<T as SystemConfig>::AccountId> {
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Asset::<T, I>::get(asset).map(|x| x.admin)
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}
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fn freezer(asset: T::AssetId) -> Option<<T as SystemConfig>::AccountId> {
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Asset::<T, I>::get(asset).map(|x| x.freezer)
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}
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}
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impl<T: Config<I>, I: 'static> fungibles::InspectEnumerable<T::AccountId> for Pezpallet<T, I> {
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type AssetsIterator = KeyPrefixIterator<<T as Config<I>>::AssetId>;
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/// Returns an iterator of the assets in existence.
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///
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/// NOTE: iterating this list invokes a storage read per item.
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fn asset_ids() -> Self::AssetsIterator {
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Asset::<T, I>::iter_keys()
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}
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}
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impl<T: Config<I>, I: 'static> fungibles::roles::ResetTeam<T::AccountId> for Pezpallet<T, I> {
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fn reset_team(
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id: T::AssetId,
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owner: T::AccountId,
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admin: T::AccountId,
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issuer: T::AccountId,
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freezer: T::AccountId,
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) -> DispatchResult {
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Self::do_reset_team(id, owner, admin, issuer, freezer)
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}
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}
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impl<T: Config<I>, I: 'static> fungibles::Refund<T::AccountId> for Pezpallet<T, I> {
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type AssetId = T::AssetId;
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type Balance = DepositBalanceOf<T, I>;
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fn deposit_held(id: Self::AssetId, who: T::AccountId) -> Option<(T::AccountId, Self::Balance)> {
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use ExistenceReason::*;
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match Account::<T, I>::get(&id, &who).ok_or(Error::<T, I>::NoDeposit).ok()?.reason {
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DepositHeld(b) => Some((who, b)),
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DepositFrom(d, b) => Some((d, b)),
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_ => None,
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}
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}
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fn refund(id: Self::AssetId, who: T::AccountId) -> DispatchResult {
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match Self::deposit_held(id.clone(), who.clone()) {
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Some((d, _)) if d == who => Self::do_refund(id, who, false),
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Some(..) => Self::do_refund_other(id, &who, None),
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None => Err(Error::<T, I>::NoDeposit.into()),
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}
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}
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}
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