mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
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f78f803698
* add test for call size * fix box arg * fix xcm variant length + increase limit a bit * fix para sudo wrapper call length * reorganize * fmt * fix tests * update Substrate Co-authored-by: parity-processbot <>
212 lines
6.8 KiB
Rust
212 lines
6.8 KiB
Rust
// Copyright 2020 Parity Technologies (UK) Ltd.
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// This file is part of Polkadot.
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// Polkadot is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Polkadot is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Polkadot. If not, see <http://www.gnu.org/licenses/>.
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use crate::mock::*;
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use frame_support::{assert_noop, assert_ok, traits::Currency};
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use polkadot_parachain::primitives::{AccountIdConversion, Id as ParaId};
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use xcm::{
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opaque::v1::prelude::*,
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v1::{Junction, Xcm},
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};
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const ALICE: AccountId = AccountId::new([0u8; 32]);
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const BOB: AccountId = AccountId::new([1u8; 32]);
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const PARA_ID: u32 = 2000;
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const INITIAL_BALANCE: u128 = 100;
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const SEND_AMOUNT: u128 = 10;
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/// Test sending an `XCM` message (`XCM::ReserveAssetDeposit`)
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///
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/// Asserts that the expected message is sent and the event is emitted
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#[test]
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fn send_works() {
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let balances =
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vec![(ALICE, INITIAL_BALANCE), (ParaId::from(PARA_ID).into_account(), INITIAL_BALANCE)];
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new_test_ext_with_balances(balances).execute_with(|| {
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let weight = 2 * BaseXcmWeight::get();
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let sender: MultiLocation =
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AccountId32 { network: AnyNetwork::get(), id: ALICE.into() }.into();
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let message = Xcm::ReserveAssetDeposited {
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assets: (X1(Parent), SEND_AMOUNT).into(),
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effects: vec![
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buy_execution((Parent, SEND_AMOUNT), weight),
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DepositAsset { assets: All.into(), max_assets: 1, beneficiary: sender.clone() },
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],
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};
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assert_ok!(XcmPallet::send(
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Origin::signed(ALICE),
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Box::new(RelayLocation::get()),
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Box::new(message.clone())
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));
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assert_eq!(
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sent_xcm(),
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vec![(
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MultiLocation::Here,
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RelayedFrom { who: sender.clone(), message: Box::new(message.clone()) }
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)]
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);
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assert_eq!(
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last_event(),
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Event::XcmPallet(crate::Event::Sent(sender, RelayLocation::get(), message))
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);
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});
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}
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/// Test that sending an `XCM` message fails when the `XcmRouter` blocks the
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/// matching message format
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///
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/// Asserts that `send` fails with `Error::SendFailure`
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#[test]
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fn send_fails_when_xcm_router_blocks() {
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let balances =
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vec![(ALICE, INITIAL_BALANCE), (ParaId::from(PARA_ID).into_account(), INITIAL_BALANCE)];
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new_test_ext_with_balances(balances).execute_with(|| {
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let weight = 2 * BaseXcmWeight::get();
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let sender: MultiLocation =
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Junction::AccountId32 { network: AnyNetwork::get(), id: ALICE.into() }.into();
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let message = Xcm::ReserveAssetDeposited {
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assets: (Parent, SEND_AMOUNT).into(),
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effects: vec![
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buy_execution((Parent, SEND_AMOUNT), weight),
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DepositAsset { assets: All.into(), max_assets: 1, beneficiary: sender.clone() },
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],
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};
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assert_noop!(
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XcmPallet::send(
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Origin::signed(ALICE),
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Box::new(X8(
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Junction::Parent,
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Junction::Parent,
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Junction::Parent,
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Junction::Parent,
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Junction::Parent,
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Junction::Parent,
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Junction::Parent,
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Junction::Parent
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)),
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Box::new(message.clone())
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),
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crate::Error::<Test>::SendFailure
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);
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});
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}
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/// Test `teleport_assets`
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///
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/// Asserts that the sender's balance is decreased as a result of execution of
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/// local effects.
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#[test]
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fn teleport_assets_works() {
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let balances =
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vec![(ALICE, INITIAL_BALANCE), (ParaId::from(PARA_ID).into_account(), INITIAL_BALANCE)];
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new_test_ext_with_balances(balances).execute_with(|| {
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let weight = 2 * BaseXcmWeight::get();
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assert_eq!(Balances::total_balance(&ALICE), INITIAL_BALANCE);
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assert_ok!(XcmPallet::teleport_assets(
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Origin::signed(ALICE),
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Box::new(RelayLocation::get()),
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Box::new(X1(AccountId32 { network: Any, id: BOB.into() })),
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(Here, SEND_AMOUNT).into(),
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0,
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weight,
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));
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assert_eq!(Balances::total_balance(&ALICE), INITIAL_BALANCE - SEND_AMOUNT);
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assert_eq!(
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last_event(),
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Event::XcmPallet(crate::Event::Attempted(Outcome::Complete(weight)))
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);
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});
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}
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/// Test `reserve_transfer_assets`
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///
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/// Asserts that the sender's balance is decreased and the beneficiary's balance
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/// is increased. Verifies the correct message is sent and event is emitted.
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#[test]
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fn reserve_transfer_assets_works() {
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let balances =
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vec![(ALICE, INITIAL_BALANCE), (ParaId::from(PARA_ID).into_account(), INITIAL_BALANCE)];
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new_test_ext_with_balances(balances).execute_with(|| {
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let weight = BaseXcmWeight::get();
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let dest: MultiLocation =
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Junction::AccountId32 { network: NetworkId::Any, id: ALICE.into() }.into();
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assert_eq!(Balances::total_balance(&ALICE), INITIAL_BALANCE);
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assert_ok!(XcmPallet::reserve_transfer_assets(
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Origin::signed(ALICE),
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Box::new(Parachain(PARA_ID).into()),
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Box::new(dest.clone()),
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(Here, SEND_AMOUNT).into(),
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0,
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weight
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));
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// Alice spent amount
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assert_eq!(Balances::free_balance(ALICE), INITIAL_BALANCE - SEND_AMOUNT);
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// Destination account (parachain account) has amount
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let para_acc: AccountId = ParaId::from(PARA_ID).into_account();
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assert_eq!(Balances::free_balance(para_acc), INITIAL_BALANCE + SEND_AMOUNT);
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assert_eq!(
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sent_xcm(),
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vec![(
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Parachain(PARA_ID).into(),
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Xcm::ReserveAssetDeposited {
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assets: (X1(Parent), SEND_AMOUNT).into(),
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effects: vec![
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buy_execution((Parent, SEND_AMOUNT), weight),
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DepositAsset { assets: All.into(), max_assets: 1, beneficiary: dest },
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]
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}
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)]
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);
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assert_eq!(
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last_event(),
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Event::XcmPallet(crate::Event::Attempted(Outcome::Complete(weight)))
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);
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});
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}
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/// Test local execution of XCM
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///
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/// Asserts that the sender's balance is decreased and the beneficiary's balance
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/// is increased. Verifies the expected event is emitted.
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#[test]
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fn execute_withdraw_to_deposit_works() {
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let balances =
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vec![(ALICE, INITIAL_BALANCE), (ParaId::from(PARA_ID).into_account(), INITIAL_BALANCE)];
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new_test_ext_with_balances(balances).execute_with(|| {
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let weight = 3 * BaseXcmWeight::get();
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let dest: MultiLocation =
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Junction::AccountId32 { network: NetworkId::Any, id: BOB.into() }.into();
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assert_eq!(Balances::total_balance(&ALICE), INITIAL_BALANCE);
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assert_ok!(XcmPallet::execute(
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Origin::signed(ALICE),
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Box::new(Xcm::WithdrawAsset {
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assets: (Here, SEND_AMOUNT).into(),
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effects: vec![
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buy_execution((Here, SEND_AMOUNT), weight),
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DepositAsset { assets: All.into(), max_assets: 1, beneficiary: dest }
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],
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}),
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weight
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));
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assert_eq!(Balances::total_balance(&ALICE), INITIAL_BALANCE - SEND_AMOUNT);
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assert_eq!(Balances::total_balance(&BOB), SEND_AMOUNT);
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assert_eq!(
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last_event(),
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Event::XcmPallet(crate::Event::Attempted(Outcome::Complete(weight)))
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);
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});
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}
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