mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
synced 2026-05-30 17:31:03 +00:00
4e4799927a
Added some tests that aim to cover the runtime configuration that is exercised when BH receives relayed complex message. * checks correct importing of proofs for: bridged chain finality, bridged para heads, bridged messages, * checks relayer extension correctly configured to reward submitting relayer, * checks relayed message is successfully dispatched. Also moved generic test-utils from `asset-test-utils: parachains/runtimes/assets/test-utils` one level up to new crate `parachains-runtimes-test-utils: parachains/runtimes/test-utils` to be reused by BridgeHubs. Signed-off-by: acatangiu <adrian@parity.io> Co-authored-by: Branislav Kontur <bkontur@gmail.com>
604 lines
19 KiB
Rust
604 lines
19 KiB
Rust
use asset_test_utils::{CollatorSessionKeys, ExtBuilder, RuntimeHelper};
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use codec::{Decode, Encode};
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use cumulus_primitives_utility::ChargeWeightInFungibles;
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use frame_support::{
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assert_noop, assert_ok,
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traits::fungibles::InspectEnumerable,
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weights::{Weight, WeightToFee as WeightToFeeT},
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};
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use parachains_common::{AccountId, AssetIdForTrustBackedAssets, AuraId, Balance};
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use statemine_runtime::xcm_config::{
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AssetFeeAsExistentialDepositMultiplierFeeCharger, KsmLocation, TrustBackedAssetsPalletLocation,
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};
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pub use statemine_runtime::{
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constants::fee::WeightToFee,
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xcm_config::{CheckingAccount, ForeignCreatorsSovereignAccountOf, XcmConfig},
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AssetDeposit, Assets, Balances, ExistentialDeposit, ForeignAssets, ForeignAssetsInstance,
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MetadataDepositBase, MetadataDepositPerByte, ParachainSystem, Runtime, RuntimeCall,
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RuntimeEvent, SessionKeys, System, TrustBackedAssetsInstance,
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};
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use xcm::latest::prelude::*;
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use xcm_executor::traits::{Convert, Identity, JustTry, WeightTrader};
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const ALICE: [u8; 32] = [1u8; 32];
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const SOME_ASSET_ADMIN: [u8; 32] = [5u8; 32];
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type AssetIdForTrustBackedAssetsConvert =
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assets_common::AssetIdForTrustBackedAssetsConvert<TrustBackedAssetsPalletLocation>;
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fn collator_session_keys() -> CollatorSessionKeys<Runtime> {
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CollatorSessionKeys::new(
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AccountId::from(ALICE),
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AccountId::from(ALICE),
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SessionKeys { aura: AuraId::from(sp_core::sr25519::Public::from_raw(ALICE)) },
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)
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}
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#[test]
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fn test_asset_xcm_trader() {
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ExtBuilder::<Runtime>::default()
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.with_collators(vec![AccountId::from(ALICE)])
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.with_session_keys(vec![(
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AccountId::from(ALICE),
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AccountId::from(ALICE),
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SessionKeys { aura: AuraId::from(sp_core::sr25519::Public::from_raw(ALICE)) },
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)])
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.build()
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.execute_with(|| {
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// We need root origin to create a sufficient asset
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let minimum_asset_balance = 3333333_u128;
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let local_asset_id = 1;
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assert_ok!(Assets::force_create(
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RuntimeHelper::<Runtime>::root_origin(),
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local_asset_id.into(),
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AccountId::from(ALICE).into(),
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true,
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minimum_asset_balance
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));
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// We first mint enough asset for the account to exist for assets
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assert_ok!(Assets::mint(
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RuntimeHelper::<Runtime>::origin_of(AccountId::from(ALICE)),
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local_asset_id.into(),
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AccountId::from(ALICE).into(),
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minimum_asset_balance
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));
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// get asset id as multilocation
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let asset_multilocation =
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AssetIdForTrustBackedAssetsConvert::reverse_ref(local_asset_id).unwrap();
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// Set Alice as block author, who will receive fees
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RuntimeHelper::<Runtime>::run_to_block(2, Some(AccountId::from(ALICE)));
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// We are going to buy 4e9 weight
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let bought = Weight::from_parts(4_000_000_000u64, 0);
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// Lets calculate amount needed
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let asset_amount_needed =
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AssetFeeAsExistentialDepositMultiplierFeeCharger::charge_weight_in_fungibles(
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local_asset_id,
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bought,
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)
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.expect("failed to compute");
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// Lets pay with: asset_amount_needed + asset_amount_extra
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let asset_amount_extra = 100_u128;
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let asset: MultiAsset =
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(asset_multilocation, asset_amount_needed + asset_amount_extra).into();
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let mut trader = <XcmConfig as xcm_executor::Config>::Trader::new();
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// Lets buy_weight and make sure buy_weight does not return an error
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let unused_assets = trader.buy_weight(bought, asset.into()).expect("Expected Ok");
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// Check whether a correct amount of unused assets is returned
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assert_ok!(
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unused_assets.ensure_contains(&(asset_multilocation, asset_amount_extra).into())
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);
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// Drop trader
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drop(trader);
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// Make sure author(Alice) has received the amount
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assert_eq!(
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Assets::balance(local_asset_id, AccountId::from(ALICE)),
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minimum_asset_balance + asset_amount_needed
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);
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// We also need to ensure the total supply increased
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assert_eq!(
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Assets::total_supply(local_asset_id),
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minimum_asset_balance + asset_amount_needed
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);
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});
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}
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#[test]
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fn test_asset_xcm_trader_with_refund() {
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ExtBuilder::<Runtime>::default()
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.with_collators(vec![AccountId::from(ALICE)])
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.with_session_keys(vec![(
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AccountId::from(ALICE),
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AccountId::from(ALICE),
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SessionKeys { aura: AuraId::from(sp_core::sr25519::Public::from_raw(ALICE)) },
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)])
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.build()
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.execute_with(|| {
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// We need root origin to create a sufficient asset
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// We set existential deposit to be identical to the one for Balances first
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assert_ok!(Assets::force_create(
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RuntimeHelper::<Runtime>::root_origin(),
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1.into(),
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AccountId::from(ALICE).into(),
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true,
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ExistentialDeposit::get()
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));
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// We first mint enough asset for the account to exist for assets
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assert_ok!(Assets::mint(
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RuntimeHelper::<Runtime>::origin_of(AccountId::from(ALICE)),
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1.into(),
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AccountId::from(ALICE).into(),
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ExistentialDeposit::get()
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));
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let mut trader = <XcmConfig as xcm_executor::Config>::Trader::new();
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// Set Alice as block author, who will receive fees
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RuntimeHelper::<Runtime>::run_to_block(2, Some(AccountId::from(ALICE)));
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// We are going to buy 4e9 weight
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let bought = Weight::from_parts(4_000_000_000u64, 0);
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let asset_multilocation = AssetIdForTrustBackedAssetsConvert::reverse_ref(1).unwrap();
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// lets calculate amount needed
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let amount_bought = WeightToFee::weight_to_fee(&bought);
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let asset: MultiAsset = (asset_multilocation, amount_bought).into();
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// Make sure buy_weight does not return an error
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assert_ok!(trader.buy_weight(bought, asset.clone().into()));
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// Make sure again buy_weight does return an error
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// This assert relies on the fact, that we use `TakeFirstAssetTrader` in `WeightTrader` tuple chain, which cannot be called twice
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assert_noop!(trader.buy_weight(bought, asset.into()), XcmError::TooExpensive);
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// We actually use half of the weight
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let weight_used = bought / 2;
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// Make sure refurnd works.
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let amount_refunded = WeightToFee::weight_to_fee(&(bought - weight_used));
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assert_eq!(
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trader.refund_weight(bought - weight_used),
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Some((asset_multilocation, amount_refunded).into())
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);
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// Drop trader
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drop(trader);
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// We only should have paid for half of the bought weight
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let fees_paid = WeightToFee::weight_to_fee(&weight_used);
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assert_eq!(
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Assets::balance(1, AccountId::from(ALICE)),
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ExistentialDeposit::get() + fees_paid
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);
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// We also need to ensure the total supply increased
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assert_eq!(Assets::total_supply(1), ExistentialDeposit::get() + fees_paid);
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});
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}
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#[test]
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fn test_asset_xcm_trader_refund_not_possible_since_amount_less_than_ed() {
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ExtBuilder::<Runtime>::default()
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.with_collators(vec![AccountId::from(ALICE)])
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.with_session_keys(vec![(
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AccountId::from(ALICE),
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AccountId::from(ALICE),
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SessionKeys { aura: AuraId::from(sp_core::sr25519::Public::from_raw(ALICE)) },
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)])
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.build()
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.execute_with(|| {
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// We need root origin to create a sufficient asset
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// We set existential deposit to be identical to the one for Balances first
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assert_ok!(Assets::force_create(
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RuntimeHelper::<Runtime>::root_origin(),
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1.into(),
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AccountId::from(ALICE).into(),
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true,
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ExistentialDeposit::get()
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));
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let mut trader = <XcmConfig as xcm_executor::Config>::Trader::new();
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// Set Alice as block author, who will receive fees
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RuntimeHelper::<Runtime>::run_to_block(2, Some(AccountId::from(ALICE)));
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// We are going to buy small amount
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let bought = Weight::from_parts(500_000_000u64, 0);
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let asset_multilocation = AssetIdForTrustBackedAssetsConvert::reverse_ref(1).unwrap();
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let amount_bought = WeightToFee::weight_to_fee(&bought);
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assert!(
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amount_bought < ExistentialDeposit::get(),
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"we are testing what happens when the amount does not exceed ED"
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);
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let asset: MultiAsset = (asset_multilocation, amount_bought).into();
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// Buy weight should return an error
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assert_noop!(trader.buy_weight(bought, asset.into()), XcmError::TooExpensive);
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// not credited since the ED is higher than this value
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assert_eq!(Assets::balance(1, AccountId::from(ALICE)), 0);
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// We also need to ensure the total supply did not increase
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assert_eq!(Assets::total_supply(1), 0);
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});
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}
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#[test]
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fn test_that_buying_ed_refund_does_not_refund() {
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ExtBuilder::<Runtime>::default()
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.with_collators(vec![AccountId::from(ALICE)])
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.with_session_keys(vec![(
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AccountId::from(ALICE),
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AccountId::from(ALICE),
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SessionKeys { aura: AuraId::from(sp_core::sr25519::Public::from_raw(ALICE)) },
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)])
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.build()
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.execute_with(|| {
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// We need root origin to create a sufficient asset
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// We set existential deposit to be identical to the one for Balances first
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assert_ok!(Assets::force_create(
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RuntimeHelper::<Runtime>::root_origin(),
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1.into(),
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AccountId::from(ALICE).into(),
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true,
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ExistentialDeposit::get()
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));
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let mut trader = <XcmConfig as xcm_executor::Config>::Trader::new();
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// Set Alice as block author, who will receive fees
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RuntimeHelper::<Runtime>::run_to_block(2, Some(AccountId::from(ALICE)));
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// We are gonna buy ED
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let bought = Weight::from_parts(ExistentialDeposit::get().try_into().unwrap(), 0);
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let asset_multilocation = AssetIdForTrustBackedAssetsConvert::reverse_ref(1).unwrap();
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let amount_bought = WeightToFee::weight_to_fee(&bought);
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assert!(
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amount_bought < ExistentialDeposit::get(),
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"we are testing what happens when the amount does not exceed ED"
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);
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// We know we will have to buy at least ED, so lets make sure first it will
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// fail with a payment of less than ED
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let asset: MultiAsset = (asset_multilocation, amount_bought).into();
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assert_noop!(trader.buy_weight(bought, asset.into()), XcmError::TooExpensive);
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// Now lets buy ED at least
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let asset: MultiAsset = (asset_multilocation, ExistentialDeposit::get()).into();
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// Buy weight should work
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assert_ok!(trader.buy_weight(bought, asset.into()));
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// Should return None. We have a specific check making sure we dont go below ED for
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// drop payment
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assert_eq!(trader.refund_weight(bought), None);
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// Drop trader
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drop(trader);
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// Make sure author(Alice) has received the amount
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assert_eq!(Assets::balance(1, AccountId::from(ALICE)), ExistentialDeposit::get());
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// We also need to ensure the total supply increased
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assert_eq!(Assets::total_supply(1), ExistentialDeposit::get());
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});
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}
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#[test]
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fn test_asset_xcm_trader_not_possible_for_non_sufficient_assets() {
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ExtBuilder::<Runtime>::default()
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.with_collators(vec![AccountId::from(ALICE)])
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.with_session_keys(vec![(
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AccountId::from(ALICE),
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AccountId::from(ALICE),
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SessionKeys { aura: AuraId::from(sp_core::sr25519::Public::from_raw(ALICE)) },
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)])
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.build()
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.execute_with(|| {
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// Create a non-sufficient asset with specific existential deposit
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let minimum_asset_balance = 1_000_000_u128;
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assert_ok!(Assets::force_create(
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RuntimeHelper::<Runtime>::root_origin(),
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1.into(),
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AccountId::from(ALICE).into(),
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false,
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minimum_asset_balance
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));
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// We first mint enough asset for the account to exist for assets
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assert_ok!(Assets::mint(
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RuntimeHelper::<Runtime>::origin_of(AccountId::from(ALICE)),
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1.into(),
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AccountId::from(ALICE).into(),
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minimum_asset_balance
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));
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let mut trader = <XcmConfig as xcm_executor::Config>::Trader::new();
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// Set Alice as block author, who will receive fees
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RuntimeHelper::<Runtime>::run_to_block(2, Some(AccountId::from(ALICE)));
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// We are going to buy 4e9 weight
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let bought = Weight::from_parts(4_000_000_000u64, 0);
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// lets calculate amount needed
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let asset_amount_needed = WeightToFee::weight_to_fee(&bought);
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let asset_multilocation = AssetIdForTrustBackedAssetsConvert::reverse_ref(1).unwrap();
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let asset: MultiAsset = (asset_multilocation, asset_amount_needed).into();
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// Make sure again buy_weight does return an error
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assert_noop!(trader.buy_weight(bought, asset.into()), XcmError::TooExpensive);
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// Drop trader
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drop(trader);
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// Make sure author(Alice) has NOT received the amount
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assert_eq!(Assets::balance(1, AccountId::from(ALICE)), minimum_asset_balance);
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// We also need to ensure the total supply NOT increased
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assert_eq!(Assets::total_supply(1), minimum_asset_balance);
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});
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}
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#[test]
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fn test_assets_balances_api_works() {
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use assets_common::runtime_api::runtime_decl_for_fungibles_api::FungiblesApi;
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ExtBuilder::<Runtime>::default()
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.with_collators(vec![AccountId::from(ALICE)])
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.with_session_keys(vec![(
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AccountId::from(ALICE),
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AccountId::from(ALICE),
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SessionKeys { aura: AuraId::from(sp_core::sr25519::Public::from_raw(ALICE)) },
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)])
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.build()
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.execute_with(|| {
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let local_asset_id = 1;
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let foreign_asset_id_multilocation =
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MultiLocation { parents: 1, interior: X2(Parachain(1234), GeneralIndex(12345)) };
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// check before
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assert_eq!(Assets::balance(local_asset_id, AccountId::from(ALICE)), 0);
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assert_eq!(
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ForeignAssets::balance(foreign_asset_id_multilocation, AccountId::from(ALICE)),
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0
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);
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assert_eq!(Balances::free_balance(AccountId::from(ALICE)), 0);
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assert!(Runtime::query_account_balances(AccountId::from(ALICE))
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.unwrap()
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.try_as::<MultiAssets>()
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.unwrap()
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.is_none());
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// Drip some balance
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use frame_support::traits::fungible::Mutate;
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let some_currency = ExistentialDeposit::get();
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Balances::mint_into(&AccountId::from(ALICE), some_currency).unwrap();
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// We need root origin to create a sufficient asset
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let minimum_asset_balance = 3333333_u128;
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assert_ok!(Assets::force_create(
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RuntimeHelper::<Runtime>::root_origin(),
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local_asset_id.into(),
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AccountId::from(ALICE).into(),
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true,
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minimum_asset_balance
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));
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// We first mint enough asset for the account to exist for assets
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assert_ok!(Assets::mint(
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RuntimeHelper::<Runtime>::origin_of(AccountId::from(ALICE)),
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local_asset_id.into(),
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AccountId::from(ALICE).into(),
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minimum_asset_balance
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));
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// create foreign asset
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let foreign_asset_minimum_asset_balance = 3333333_u128;
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assert_ok!(ForeignAssets::force_create(
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RuntimeHelper::<Runtime>::root_origin(),
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foreign_asset_id_multilocation,
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AccountId::from(SOME_ASSET_ADMIN).into(),
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false,
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foreign_asset_minimum_asset_balance
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));
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// We first mint enough asset for the account to exist for assets
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assert_ok!(ForeignAssets::mint(
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RuntimeHelper::<Runtime>::origin_of(AccountId::from(SOME_ASSET_ADMIN)),
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foreign_asset_id_multilocation,
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AccountId::from(ALICE).into(),
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6 * foreign_asset_minimum_asset_balance
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));
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// check after
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assert_eq!(
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Assets::balance(local_asset_id, AccountId::from(ALICE)),
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minimum_asset_balance
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);
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assert_eq!(
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ForeignAssets::balance(foreign_asset_id_multilocation, AccountId::from(ALICE)),
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6 * minimum_asset_balance
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);
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assert_eq!(Balances::free_balance(AccountId::from(ALICE)), some_currency);
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let result: MultiAssets = Runtime::query_account_balances(AccountId::from(ALICE))
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.unwrap()
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.try_into()
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.unwrap();
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assert_eq!(result.len(), 3);
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// check currency
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assert!(result.inner().iter().any(|asset| asset.eq(
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&assets_common::fungible_conversion::convert_balance::<KsmLocation, Balance>(
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some_currency
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)
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.unwrap()
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)));
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// check trusted asset
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assert!(result.inner().iter().any(|asset| asset.eq(&(
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AssetIdForTrustBackedAssetsConvert::reverse_ref(local_asset_id).unwrap(),
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minimum_asset_balance
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)
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.into())));
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// check foreign asset
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assert!(result.inner().iter().any(|asset| asset.eq(&(
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|
Identity::reverse_ref(foreign_asset_id_multilocation).unwrap(),
|
|
6 * foreign_asset_minimum_asset_balance
|
|
)
|
|
.into())));
|
|
});
|
|
}
|
|
|
|
asset_test_utils::include_teleports_for_native_asset_works!(
|
|
Runtime,
|
|
XcmConfig,
|
|
CheckingAccount,
|
|
WeightToFee,
|
|
ParachainSystem,
|
|
collator_session_keys(),
|
|
ExistentialDeposit::get(),
|
|
Box::new(|runtime_event_encoded: Vec<u8>| {
|
|
match RuntimeEvent::decode(&mut &runtime_event_encoded[..]) {
|
|
Ok(RuntimeEvent::PolkadotXcm(event)) => Some(event),
|
|
_ => None,
|
|
}
|
|
}),
|
|
Box::new(|runtime_event_encoded: Vec<u8>| {
|
|
match RuntimeEvent::decode(&mut &runtime_event_encoded[..]) {
|
|
Ok(RuntimeEvent::XcmpQueue(event)) => Some(event),
|
|
_ => None,
|
|
}
|
|
}),
|
|
1000
|
|
);
|
|
|
|
asset_test_utils::include_teleports_for_foreign_assets_works!(
|
|
Runtime,
|
|
XcmConfig,
|
|
CheckingAccount,
|
|
WeightToFee,
|
|
ParachainSystem,
|
|
ForeignCreatorsSovereignAccountOf,
|
|
ForeignAssetsInstance,
|
|
collator_session_keys(),
|
|
ExistentialDeposit::get(),
|
|
Box::new(|runtime_event_encoded: Vec<u8>| {
|
|
match RuntimeEvent::decode(&mut &runtime_event_encoded[..]) {
|
|
Ok(RuntimeEvent::PolkadotXcm(event)) => Some(event),
|
|
_ => None,
|
|
}
|
|
}),
|
|
Box::new(|runtime_event_encoded: Vec<u8>| {
|
|
match RuntimeEvent::decode(&mut &runtime_event_encoded[..]) {
|
|
Ok(RuntimeEvent::XcmpQueue(event)) => Some(event),
|
|
_ => None,
|
|
}
|
|
})
|
|
);
|
|
|
|
asset_test_utils::include_asset_transactor_transfer_with_local_consensus_currency_works!(
|
|
Runtime,
|
|
XcmConfig,
|
|
collator_session_keys(),
|
|
ExistentialDeposit::get(),
|
|
Box::new(|| {
|
|
assert!(Assets::asset_ids().collect::<Vec<_>>().is_empty());
|
|
assert!(ForeignAssets::asset_ids().collect::<Vec<_>>().is_empty());
|
|
}),
|
|
Box::new(|| {
|
|
assert!(Assets::asset_ids().collect::<Vec<_>>().is_empty());
|
|
assert!(ForeignAssets::asset_ids().collect::<Vec<_>>().is_empty());
|
|
})
|
|
);
|
|
|
|
asset_test_utils::include_asset_transactor_transfer_with_pallet_assets_instance_works!(
|
|
asset_transactor_transfer_with_trust_backed_assets_works,
|
|
Runtime,
|
|
XcmConfig,
|
|
TrustBackedAssetsInstance,
|
|
AssetIdForTrustBackedAssets,
|
|
AssetIdForTrustBackedAssetsConvert,
|
|
collator_session_keys(),
|
|
ExistentialDeposit::get(),
|
|
12345,
|
|
Box::new(|| {
|
|
assert!(ForeignAssets::asset_ids().collect::<Vec<_>>().is_empty());
|
|
}),
|
|
Box::new(|| {
|
|
assert!(ForeignAssets::asset_ids().collect::<Vec<_>>().is_empty());
|
|
})
|
|
);
|
|
|
|
asset_test_utils::include_asset_transactor_transfer_with_pallet_assets_instance_works!(
|
|
asset_transactor_transfer_with_foreign_assets_works,
|
|
Runtime,
|
|
XcmConfig,
|
|
ForeignAssetsInstance,
|
|
MultiLocation,
|
|
JustTry,
|
|
collator_session_keys(),
|
|
ExistentialDeposit::get(),
|
|
MultiLocation { parents: 1, interior: X2(Parachain(1313), GeneralIndex(12345)) },
|
|
Box::new(|| {
|
|
assert!(Assets::asset_ids().collect::<Vec<_>>().is_empty());
|
|
}),
|
|
Box::new(|| {
|
|
assert!(Assets::asset_ids().collect::<Vec<_>>().is_empty());
|
|
})
|
|
);
|
|
|
|
asset_test_utils::include_create_and_manage_foreign_assets_for_local_consensus_parachain_assets_works!(
|
|
Runtime,
|
|
XcmConfig,
|
|
WeightToFee,
|
|
ForeignCreatorsSovereignAccountOf,
|
|
ForeignAssetsInstance,
|
|
MultiLocation,
|
|
JustTry,
|
|
collator_session_keys(),
|
|
ExistentialDeposit::get(),
|
|
AssetDeposit::get(),
|
|
MetadataDepositBase::get(),
|
|
MetadataDepositPerByte::get(),
|
|
Box::new(|pallet_asset_call| RuntimeCall::ForeignAssets(pallet_asset_call).encode()),
|
|
Box::new(|runtime_event_encoded: Vec<u8>| {
|
|
match RuntimeEvent::decode(&mut &runtime_event_encoded[..]) {
|
|
Ok(RuntimeEvent::ForeignAssets(pallet_asset_event)) => Some(pallet_asset_event),
|
|
_ => None,
|
|
}
|
|
}),
|
|
Box::new(|| {
|
|
assert!(Assets::asset_ids().collect::<Vec<_>>().is_empty());
|
|
assert!(ForeignAssets::asset_ids().collect::<Vec<_>>().is_empty());
|
|
}),
|
|
Box::new(|| {
|
|
assert!(Assets::asset_ids().collect::<Vec<_>>().is_empty());
|
|
assert_eq!(ForeignAssets::asset_ids().collect::<Vec<_>>().len(), 1);
|
|
})
|
|
);
|