mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
synced 2026-04-30 00:17:56 +00:00
d3cc051419
* Update to latest staking * generate tests for benchmarking * add tests, fix warnings * starting on democracy * impl_benchmark_tests * Way more readable * add test feature flag (does this work?) * Fix `successful_origin` impl * democracry benchmark tests * Fix example benchmarks, add tests * identity benchmark tests * Update im-online benchmark tests * try to add session benchmarking tests (problem with mock) * staking and timestamp * add test for treasury, issue with dynamic contains * utility * Vesting * test instead of check * hide until we figure out what is wrong * add docs * close code * Create custom mock for session-pallet-benchmarking * Use refcell pattern * make un-pub * test-linux-stable includes `runtime-benchmarks` feature * Revert "test-linux-stable includes `runtime-benchmarks` feature" This reverts commit a2dab38abd18ac3eb8a6220e4a00e687740bd38c. * run tests in `--release` * undo balance change * build wasm
443 lines
15 KiB
Rust
443 lines
15 KiB
Rust
// Copyright 2019-2020 Parity Technologies (UK) Ltd.
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// This file is part of Substrate.
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// Substrate 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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// Substrate 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 Substrate. If not, see <http://www.gnu.org/licenses/>.
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// Tests for Utility Pallet
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#![cfg(test)]
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use super::*;
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use frame_support::{
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assert_ok, assert_noop, impl_outer_origin, parameter_types, impl_outer_dispatch,
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weights::Weight, impl_outer_event
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};
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use sp_core::H256;
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use sp_runtime::{Perbill, traits::{BlakeTwo256, IdentityLookup}, testing::Header};
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use crate as utility;
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impl_outer_origin! {
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pub enum Origin for Test where system = frame_system {}
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}
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impl_outer_event! {
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pub enum TestEvent for Test {
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system<T>,
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pallet_balances<T>,
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utility<T>,
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}
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}
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impl_outer_dispatch! {
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pub enum Call for Test where origin: Origin {
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frame_system::System,
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pallet_balances::Balances,
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utility::Utility,
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}
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}
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// For testing the pallet, we construct most of a mock runtime. This means
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// first constructing a configuration type (`Test`) which `impl`s each of the
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// configuration traits of pallets we want to use.
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#[derive(Clone, Eq, PartialEq)]
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pub struct Test;
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parameter_types! {
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pub const BlockHashCount: u64 = 250;
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pub const MaximumBlockWeight: Weight = 1024;
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pub const MaximumBlockLength: u32 = 2 * 1024;
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pub const AvailableBlockRatio: Perbill = Perbill::one();
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}
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impl frame_system::Trait for Test {
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type Origin = Origin;
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type Index = u64;
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type BlockNumber = u64;
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type Hash = H256;
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type Call = Call;
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type Hashing = BlakeTwo256;
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type AccountId = u64;
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type Lookup = IdentityLookup<Self::AccountId>;
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type Header = Header;
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type Event = TestEvent;
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type BlockHashCount = BlockHashCount;
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type MaximumBlockWeight = MaximumBlockWeight;
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type MaximumBlockLength = MaximumBlockLength;
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type AvailableBlockRatio = AvailableBlockRatio;
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type Version = ();
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type ModuleToIndex = ();
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type AccountData = pallet_balances::AccountData<u64>;
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type OnNewAccount = ();
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type OnKilledAccount = ();
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}
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parameter_types! {
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pub const ExistentialDeposit: u64 = 1;
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}
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impl pallet_balances::Trait for Test {
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type Balance = u64;
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type Event = TestEvent;
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type DustRemoval = ();
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type ExistentialDeposit = ExistentialDeposit;
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type AccountStore = System;
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}
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parameter_types! {
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pub const MultisigDepositBase: u64 = 1;
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pub const MultisigDepositFactor: u64 = 1;
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pub const MaxSignatories: u16 = 3;
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}
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impl Trait for Test {
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type Event = TestEvent;
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type Call = Call;
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type Currency = Balances;
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type MultisigDepositBase = MultisigDepositBase;
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type MultisigDepositFactor = MultisigDepositFactor;
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type MaxSignatories = MaxSignatories;
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}
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type System = frame_system::Module<Test>;
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type Balances = pallet_balances::Module<Test>;
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type Utility = Module<Test>;
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use pallet_balances::Call as BalancesCall;
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use pallet_balances::Error as BalancesError;
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pub fn new_test_ext() -> sp_io::TestExternalities {
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let mut t = frame_system::GenesisConfig::default().build_storage::<Test>().unwrap();
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pallet_balances::GenesisConfig::<Test> {
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balances: vec![(1, 10), (2, 10), (3, 10), (4, 10), (5, 10)],
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}.assimilate_storage(&mut t).unwrap();
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let mut ext = sp_io::TestExternalities::new(t);
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ext.execute_with(|| System::set_block_number(1));
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ext
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}
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fn last_event() -> TestEvent {
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system::Module::<Test>::events().pop().map(|e| e.event).expect("Event expected")
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}
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fn expect_event<E: Into<TestEvent>>(e: E) {
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assert_eq!(last_event(), e.into());
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}
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fn now() -> Timepoint<u64> {
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Utility::timepoint()
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}
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#[test]
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fn multisig_deposit_is_taken_and_returned() {
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new_test_ext().execute_with(|| {
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let multi = Utility::multi_account_id(&[1, 2, 3][..], 2);
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assert_ok!(Balances::transfer(Origin::signed(1), multi, 5));
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assert_ok!(Balances::transfer(Origin::signed(2), multi, 5));
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assert_ok!(Balances::transfer(Origin::signed(3), multi, 5));
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let call = Box::new(Call::Balances(BalancesCall::transfer(6, 15)));
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assert_ok!(Utility::as_multi(Origin::signed(1), 2, vec![2, 3], None, call.clone()));
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assert_eq!(Balances::free_balance(1), 2);
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assert_eq!(Balances::reserved_balance(1), 3);
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assert_ok!(Utility::as_multi(Origin::signed(2), 2, vec![1, 3], Some(now()), call));
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assert_eq!(Balances::free_balance(1), 5);
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assert_eq!(Balances::reserved_balance(1), 0);
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});
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}
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#[test]
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fn cancel_multisig_returns_deposit() {
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new_test_ext().execute_with(|| {
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let call = Box::new(Call::Balances(BalancesCall::transfer(6, 15)));
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let hash = call.using_encoded(blake2_256);
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assert_ok!(Utility::approve_as_multi(Origin::signed(1), 3, vec![2, 3], None, hash.clone()));
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assert_ok!(Utility::approve_as_multi(Origin::signed(2), 3, vec![1, 3], Some(now()), hash.clone()));
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assert_eq!(Balances::free_balance(1), 6);
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assert_eq!(Balances::reserved_balance(1), 4);
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assert_ok!(
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Utility::cancel_as_multi(Origin::signed(1), 3, vec![2, 3], now(), hash.clone()),
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);
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assert_eq!(Balances::free_balance(1), 10);
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assert_eq!(Balances::reserved_balance(1), 0);
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});
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}
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#[test]
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fn timepoint_checking_works() {
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new_test_ext().execute_with(|| {
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let multi = Utility::multi_account_id(&[1, 2, 3][..], 2);
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assert_ok!(Balances::transfer(Origin::signed(1), multi, 5));
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assert_ok!(Balances::transfer(Origin::signed(2), multi, 5));
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assert_ok!(Balances::transfer(Origin::signed(3), multi, 5));
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let call = Box::new(Call::Balances(BalancesCall::transfer(6, 15)));
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let hash = call.using_encoded(blake2_256);
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assert_noop!(
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Utility::approve_as_multi(Origin::signed(2), 2, vec![1, 3], Some(now()), hash.clone()),
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Error::<Test>::UnexpectedTimepoint,
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);
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assert_ok!(Utility::approve_as_multi(Origin::signed(1), 2, vec![2, 3], None, hash));
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assert_noop!(
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Utility::as_multi(Origin::signed(2), 2, vec![1, 3], None, call.clone()),
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Error::<Test>::NoTimepoint,
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);
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let later = Timepoint { index: 1, .. now() };
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assert_noop!(
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Utility::as_multi(Origin::signed(2), 2, vec![1, 3], Some(later), call.clone()),
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Error::<Test>::WrongTimepoint,
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);
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});
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}
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#[test]
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fn multisig_2_of_3_works() {
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new_test_ext().execute_with(|| {
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let multi = Utility::multi_account_id(&[1, 2, 3][..], 2);
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assert_ok!(Balances::transfer(Origin::signed(1), multi, 5));
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assert_ok!(Balances::transfer(Origin::signed(2), multi, 5));
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assert_ok!(Balances::transfer(Origin::signed(3), multi, 5));
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let call = Box::new(Call::Balances(BalancesCall::transfer(6, 15)));
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let hash = call.using_encoded(blake2_256);
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assert_ok!(Utility::approve_as_multi(Origin::signed(1), 2, vec![2, 3], None, hash));
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assert_eq!(Balances::free_balance(6), 0);
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assert_ok!(Utility::as_multi(Origin::signed(2), 2, vec![1, 3], Some(now()), call));
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assert_eq!(Balances::free_balance(6), 15);
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});
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}
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#[test]
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fn multisig_3_of_3_works() {
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new_test_ext().execute_with(|| {
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let multi = Utility::multi_account_id(&[1, 2, 3][..], 3);
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assert_ok!(Balances::transfer(Origin::signed(1), multi, 5));
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assert_ok!(Balances::transfer(Origin::signed(2), multi, 5));
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assert_ok!(Balances::transfer(Origin::signed(3), multi, 5));
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let call = Box::new(Call::Balances(BalancesCall::transfer(6, 15)));
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let hash = call.using_encoded(blake2_256);
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assert_ok!(Utility::approve_as_multi(Origin::signed(1), 3, vec![2, 3], None, hash.clone()));
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assert_ok!(Utility::approve_as_multi(Origin::signed(2), 3, vec![1, 3], Some(now()), hash.clone()));
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assert_eq!(Balances::free_balance(6), 0);
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assert_ok!(Utility::as_multi(Origin::signed(3), 3, vec![1, 2], Some(now()), call));
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assert_eq!(Balances::free_balance(6), 15);
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});
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}
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#[test]
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fn cancel_multisig_works() {
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new_test_ext().execute_with(|| {
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let call = Box::new(Call::Balances(BalancesCall::transfer(6, 15)));
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let hash = call.using_encoded(blake2_256);
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assert_ok!(Utility::approve_as_multi(Origin::signed(1), 3, vec![2, 3], None, hash.clone()));
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assert_ok!(Utility::approve_as_multi(Origin::signed(2), 3, vec![1, 3], Some(now()), hash.clone()));
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assert_noop!(
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Utility::cancel_as_multi(Origin::signed(2), 3, vec![1, 3], now(), hash.clone()),
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Error::<Test>::NotOwner,
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);
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assert_ok!(
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Utility::cancel_as_multi(Origin::signed(1), 3, vec![2, 3], now(), hash.clone()),
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);
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});
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}
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#[test]
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fn multisig_2_of_3_as_multi_works() {
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new_test_ext().execute_with(|| {
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let multi = Utility::multi_account_id(&[1, 2, 3][..], 2);
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assert_ok!(Balances::transfer(Origin::signed(1), multi, 5));
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assert_ok!(Balances::transfer(Origin::signed(2), multi, 5));
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assert_ok!(Balances::transfer(Origin::signed(3), multi, 5));
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let call = Box::new(Call::Balances(BalancesCall::transfer(6, 15)));
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assert_ok!(Utility::as_multi(Origin::signed(1), 2, vec![2, 3], None, call.clone()));
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assert_eq!(Balances::free_balance(6), 0);
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assert_ok!(Utility::as_multi(Origin::signed(2), 2, vec![1, 3], Some(now()), call));
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assert_eq!(Balances::free_balance(6), 15);
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});
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}
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#[test]
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fn multisig_2_of_3_as_multi_with_many_calls_works() {
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new_test_ext().execute_with(|| {
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let multi = Utility::multi_account_id(&[1, 2, 3][..], 2);
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assert_ok!(Balances::transfer(Origin::signed(1), multi, 5));
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assert_ok!(Balances::transfer(Origin::signed(2), multi, 5));
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assert_ok!(Balances::transfer(Origin::signed(3), multi, 5));
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let call1 = Box::new(Call::Balances(BalancesCall::transfer(6, 10)));
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let call2 = Box::new(Call::Balances(BalancesCall::transfer(7, 5)));
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assert_ok!(Utility::as_multi(Origin::signed(1), 2, vec![2, 3], None, call1.clone()));
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assert_ok!(Utility::as_multi(Origin::signed(2), 2, vec![1, 3], None, call2.clone()));
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assert_ok!(Utility::as_multi(Origin::signed(3), 2, vec![1, 2], Some(now()), call2));
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assert_ok!(Utility::as_multi(Origin::signed(3), 2, vec![1, 2], Some(now()), call1));
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assert_eq!(Balances::free_balance(6), 10);
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assert_eq!(Balances::free_balance(7), 5);
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});
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}
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#[test]
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fn multisig_2_of_3_cannot_reissue_same_call() {
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new_test_ext().execute_with(|| {
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let multi = Utility::multi_account_id(&[1, 2, 3][..], 2);
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assert_ok!(Balances::transfer(Origin::signed(1), multi, 5));
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assert_ok!(Balances::transfer(Origin::signed(2), multi, 5));
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assert_ok!(Balances::transfer(Origin::signed(3), multi, 5));
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let call = Box::new(Call::Balances(BalancesCall::transfer(6, 10)));
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assert_ok!(Utility::as_multi(Origin::signed(1), 2, vec![2, 3], None, call.clone()));
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assert_ok!(Utility::as_multi(Origin::signed(2), 2, vec![1, 3], Some(now()), call.clone()));
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assert_eq!(Balances::free_balance(multi), 5);
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assert_ok!(Utility::as_multi(Origin::signed(1), 2, vec![2, 3], None, call.clone()));
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assert_ok!(Utility::as_multi(Origin::signed(3), 2, vec![1, 2], Some(now()), call.clone()));
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let err = DispatchError::from(BalancesError::<Test, _>::InsufficientBalance).stripped();
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expect_event(RawEvent::MultisigExecuted(3, now(), multi, call.using_encoded(blake2_256), Err(err)));
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});
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}
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#[test]
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fn zero_threshold_fails() {
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new_test_ext().execute_with(|| {
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let call = Box::new(Call::Balances(BalancesCall::transfer(6, 15)));
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assert_noop!(
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Utility::as_multi(Origin::signed(1), 0, vec![2], None, call),
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Error::<Test>::ZeroThreshold,
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);
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});
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}
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#[test]
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fn too_many_signatories_fails() {
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new_test_ext().execute_with(|| {
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let call = Box::new(Call::Balances(BalancesCall::transfer(6, 15)));
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assert_noop!(
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Utility::as_multi(Origin::signed(1), 2, vec![2, 3, 4], None, call.clone()),
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Error::<Test>::TooManySignatories,
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);
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});
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}
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#[test]
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fn duplicate_approvals_are_ignored() {
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new_test_ext().execute_with(|| {
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let call = Box::new(Call::Balances(BalancesCall::transfer(6, 15)));
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let hash = call.using_encoded(blake2_256);
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assert_ok!(Utility::approve_as_multi(Origin::signed(1), 2, vec![2, 3], None, hash.clone()));
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assert_noop!(
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Utility::approve_as_multi(Origin::signed(1), 2, vec![2, 3], Some(now()), hash.clone()),
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Error::<Test>::AlreadyApproved,
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);
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assert_ok!(Utility::approve_as_multi(Origin::signed(2), 2, vec![1, 3], Some(now()), hash.clone()));
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assert_noop!(
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Utility::approve_as_multi(Origin::signed(3), 2, vec![1, 2], Some(now()), hash.clone()),
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Error::<Test>::NoApprovalsNeeded,
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);
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});
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}
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#[test]
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fn multisig_1_of_3_works() {
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new_test_ext().execute_with(|| {
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let multi = Utility::multi_account_id(&[1, 2, 3][..], 1);
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assert_ok!(Balances::transfer(Origin::signed(1), multi, 5));
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assert_ok!(Balances::transfer(Origin::signed(2), multi, 5));
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assert_ok!(Balances::transfer(Origin::signed(3), multi, 5));
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let call = Box::new(Call::Balances(BalancesCall::transfer(6, 15)));
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let hash = call.using_encoded(blake2_256);
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assert_noop!(
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Utility::approve_as_multi(Origin::signed(1), 1, vec![2, 3], None, hash.clone()),
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Error::<Test>::NoApprovalsNeeded,
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);
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assert_noop!(
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Utility::as_multi(Origin::signed(4), 1, vec![2, 3], None, call.clone()),
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BalancesError::<Test, _>::InsufficientBalance,
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);
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assert_ok!(Utility::as_multi(Origin::signed(1), 1, vec![2, 3], None, call));
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assert_eq!(Balances::free_balance(6), 15);
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});
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}
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#[test]
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fn as_sub_works() {
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new_test_ext().execute_with(|| {
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let sub_1_0 = Utility::sub_account_id(1, 0);
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assert_ok!(Balances::transfer(Origin::signed(1), sub_1_0, 5));
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assert_noop!(Utility::as_sub(
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Origin::signed(1),
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1,
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Box::new(Call::Balances(BalancesCall::transfer(6, 3))),
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), BalancesError::<Test, _>::InsufficientBalance);
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assert_ok!(Utility::as_sub(
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Origin::signed(1),
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0,
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Box::new(Call::Balances(BalancesCall::transfer(2, 3))),
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));
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assert_eq!(Balances::free_balance(sub_1_0), 2);
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assert_eq!(Balances::free_balance(2), 13);
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});
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}
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#[test]
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fn batch_with_root_works() {
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new_test_ext().execute_with(|| {
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assert_eq!(Balances::free_balance(1), 10);
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assert_eq!(Balances::free_balance(2), 10);
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assert_ok!(Utility::batch(Origin::ROOT, vec![
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Call::Balances(BalancesCall::force_transfer(1, 2, 5)),
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Call::Balances(BalancesCall::force_transfer(1, 2, 5))
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]));
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assert_eq!(Balances::free_balance(1), 0);
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assert_eq!(Balances::free_balance(2), 20);
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});
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}
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#[test]
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fn batch_with_signed_works() {
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new_test_ext().execute_with(|| {
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assert_eq!(Balances::free_balance(1), 10);
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assert_eq!(Balances::free_balance(2), 10);
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assert_ok!(
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Utility::batch(Origin::signed(1), vec![
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Call::Balances(BalancesCall::transfer(2, 5)),
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Call::Balances(BalancesCall::transfer(2, 5))
|
|
]),
|
|
);
|
|
assert_eq!(Balances::free_balance(1), 0);
|
|
assert_eq!(Balances::free_balance(2), 20);
|
|
});
|
|
}
|
|
|
|
#[test]
|
|
fn batch_early_exit_works() {
|
|
new_test_ext().execute_with(|| {
|
|
assert_eq!(Balances::free_balance(1), 10);
|
|
assert_eq!(Balances::free_balance(2), 10);
|
|
assert_ok!(
|
|
Utility::batch(Origin::signed(1), vec![
|
|
Call::Balances(BalancesCall::transfer(2, 5)),
|
|
Call::Balances(BalancesCall::transfer(2, 10)),
|
|
Call::Balances(BalancesCall::transfer(2, 5)),
|
|
]),
|
|
);
|
|
assert_eq!(Balances::free_balance(1), 5);
|
|
assert_eq!(Balances::free_balance(2), 15);
|
|
});
|
|
}
|