mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
synced 2026-05-30 15:11:02 +00:00
6ef1117685
* Update substrate & polkadot * min changes to make async backing compile * (async backing) parachain-system: track limitations for unincluded blocks (#2438) * unincluded segment draft * read para head from storage proof * read_para_head -> read_included_para_head * Provide pub interface * add errors * fix unincluded segment update * BlockTracker -> Ancestor * add a dmp limit * Read para head depending on the storage switch * doc comments * storage items docs * add a sanity check on block initialize * Check watermark * append to the segment on block finalize * Move segment update into set_validation_data * Resolve para head todo * option watermark * fix comment * Drop dmq check * fix weight * doc-comments on inherent invariant * Remove TODO * add todo * primitives tests * pallet tests * doc comments * refactor unincluded segment length into a ConsensusHook (#2501) * refactor unincluded segment length into a ConsensusHook * add docs * refactor bandwidth_out calculation Co-authored-by: Chris Sosnin <48099298+slumber@users.noreply.github.com> * test for limits from impl * fmt * make tests compile * update comment * uncomment test * fix collator test by adding parent to state proof * patch HRMP watermark rules for unincluded segment * get consensus-common tests to pass, using unincluded segment * fix unincluded segment tests * get all tests passing * fmt * rustdoc CI * aura-ext: limit the number of authored blocks per slot (#2551) * aura_ext consensus hook * reverse dependency * include weight into hook * fix tests * remove stray println Co-authored-by: Chris Sosnin <48099298+slumber@users.noreply.github.com> * fix test warning * fix doc link --------- Co-authored-by: Chris Sosnin <48099298+slumber@users.noreply.github.com> Co-authored-by: Chris Sosnin <chris125_@live.com> * parachain-system: ignore go ahead signal once upgrade is processed (#2594) * handle goahead signal for unincluded segment * doc comment * add test * parachain-system: drop processed messages from inherent data (#2590) * implement `drop_processed_messages` * drop messages based on relay parent number * adjust tests * drop changes to mqc * fix comment * drop test * drop more dead code * clippy * aura-ext: check slot in consensus hook and remove all `CheckInherents` logic (#2658) * aura-ext: check slot in consensus hook * convert relay chain slot * Make relay chain slot duration generic * use fixed velocity hook for pallets with aura * purge timestamp inherent * fix warning * adjust runtime tests * fix slots in tests * Make `xcm-emulator` test pass for new consensus hook (#2722) * add pallets on_initialize * tests pass * add AuraExt on_init * ".git/.scripts/commands/fmt/fmt.sh" --------- Co-authored-by: command-bot <> --------- Co-authored-by: Ignacio Palacios <ignacio.palacios.santos@gmail.com> * update polkadot git refs * CollationGenerationConfig closure is now optional (#2772) * CollationGenerationConfig closure is now optional * fix test * propagate network-protocol-staging feature (#2899) * Feature Flagging Consensus Hook Type Parameter (#2911) * First pass * fmt * Added as default feature in tomls * Changed to direct dependency feature * Dealing with clippy error * Update pallets/parachain-system/src/lib.rs Co-authored-by: asynchronous rob <rphmeier@gmail.com> --------- Co-authored-by: asynchronous rob <rphmeier@gmail.com> * fmt * bump deps and remove warning * parachain-system: update RelevantMessagingState according to the unincluded segment (#2948) * mostly address 2471 with a bug introduced * adjust relevant messaging state after computing total * fmt * max -> min * fix test implementation of xcmp source * add test * fix test message sending logic * fix + test * add more to unincluded segment test * fmt --------- Co-authored-by: Chris Sosnin <chris125_@live.com> * Integrate new Aura / Parachain Consensus Logic in Parachain-Template / Polkadot-Parachain (#2864) * add a comment * refactor client/service utilities * deprecate start_collator * update parachain-template * update test-service in the same way * update polkadot-parachain crate * fmt * wire up new SubmitCollation message * some runtime utilities for implementing unincluded segment runtime APIs * allow parachains to configure their level of sybil-resistance when starting the network * make aura-ext compile * update to specify sybil resistance levels * fmt * specify relay chain slot duration in milliseconds * update Aura to explicitly produce Send futures also, make relay_chain_slot_duration a Duration * add authoring duration to basic collator and document params * integrate new basic collator into parachain-template * remove assert_send used for testing * basic-aura: only author when parent included * update polkadot-parachain-bin * fmt * some fixes * fixes * add a RelayNumberMonotonicallyIncreases * add a utility function for initializing subsystems * some logging for timestamp adjustment * fmt * some fixes for lookahead collator * add a log * update `find_potential_parents` to account for sessions * bound the loop * restore & deprecate old start_collator and start_full_node functions. * remove unnecessary await calls * fix warning * clippy * more clippy * remove unneeded logic * ci * update comment Co-authored-by: Marcin S. <marcin@bytedude.com> * (async backing) restore `CheckInherents` for backwards-compatibility (#2977) * bring back timestamp * Restore CheckInherents * revert to empty CheckInherents * make CheckInherents optional * attempt * properly end system blocks * add some more comments * ignore failing system parachain tests * update refs after main feature branch merge * comment out the offending tests because CI runs ignored tests * fix warnings * fmt * revert to polkadot master * cargo update -p polkadot-primitives -p sp-io --------- Co-authored-by: asynchronous rob <rphmeier@gmail.com> Co-authored-by: Ignacio Palacios <ignacio.palacios.santos@gmail.com> Co-authored-by: Bradley Olson <34992650+BradleyOlson64@users.noreply.github.com> Co-authored-by: Marcin S. <marcin@bytedude.com> Co-authored-by: eskimor <eskimor@users.noreply.github.com> Co-authored-by: Andronik <write@reusable.software>
660 lines
21 KiB
Rust
660 lines
21 KiB
Rust
// This file is part of Cumulus.
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// Copyright (C) Parity Technologies (UK) Ltd.
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// SPDX-License-Identifier: Apache-2.0
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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//! Tests for the Statemint (Polkadot Assets Hub) chain.
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use asset_hub_polkadot_runtime::xcm_config::{
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AssetFeeAsExistentialDepositMultiplierFeeCharger, CheckingAccount, DotLocation,
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ForeignCreatorsSovereignAccountOf, TrustBackedAssetsPalletLocation, XcmConfig,
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};
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pub use asset_hub_polkadot_runtime::{
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constants::fee::WeightToFee, AllPalletsWithoutSystem, AssetDeposit, Assets, Balances,
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ExistentialDeposit, ForeignAssets, ForeignAssetsInstance, MetadataDepositBase,
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MetadataDepositPerByte, ParachainSystem, Runtime, RuntimeCall, RuntimeEvent, SessionKeys,
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System, TrustBackedAssetsInstance,
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};
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use asset_test_utils::{CollatorSessionKeys, ExtBuilder};
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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::{
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AccountId, AssetHubPolkadotAuraId as AuraId, AssetIdForTrustBackedAssets, Balance,
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};
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use sp_runtime::traits::MaybeEquivalence;
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use xcm::latest::prelude::*;
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use xcm_executor::traits::{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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type RuntimeHelper = asset_test_utils::RuntimeHelper<Runtime, AllPalletsWithoutSystem>;
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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::ed25519::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::ed25519::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 = 333333333_u128;
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let local_asset_id = 1;
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assert_ok!(Assets::force_create(
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RuntimeHelper::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::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::convert_back(&local_asset_id).unwrap();
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// Set Alice as block author, who will receive fees
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RuntimeHelper::run_to_block(2, AccountId::from(ALICE));
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// We are going to buy 400e9 weight
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// Because of the ED being higher in kusama's asset hub
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// and not to complicate things, we use a little
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// bit more of weight
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let bought = Weight::from_parts(400_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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let ctx = XcmContext { origin: None, message_id: XcmHash::default(), topic: None };
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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(), &ctx).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::ed25519::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::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::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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let ctx = XcmContext { origin: None, message_id: XcmHash::default(), topic: None };
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// Set Alice as block author, who will receive fees
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RuntimeHelper::run_to_block(2, AccountId::from(ALICE));
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// We are going to buy 400e9 weight
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// Because of the ED being higher in kusama's asset hub
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// and not to complicate things, we use a little
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// bit more of weight
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let bought = Weight::from_parts(400_000_000_000u64, 0);
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let asset_multilocation = AssetIdForTrustBackedAssetsConvert::convert_back(&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(), &ctx));
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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`
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// tuple chain, which cannot be called twice
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assert_noop!(trader.buy_weight(bought, asset.into(), &ctx), 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, &ctx),
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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::ed25519::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::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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let ctx = XcmContext { origin: None, message_id: XcmHash::default(), topic: None };
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// Set Alice as block author, who will receive fees
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RuntimeHelper::run_to_block(2, AccountId::from(ALICE));
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// We are going to buy 50e9 weight
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// Because of the ED being higher in kusama's asset hub
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// and not to complicate things, we use a little
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// bit more of weight
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let bought = Weight::from_parts(50_000_000_000u64, 0);
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let asset_multilocation = AssetIdForTrustBackedAssetsConvert::convert_back(&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(), &ctx), 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::ed25519::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::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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let ctx = XcmContext { origin: None, message_id: XcmHash::default(), topic: None };
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// Set Alice as block author, who will receive fees
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RuntimeHelper::run_to_block(2, 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::convert_back(&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(), &ctx), 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(), &ctx));
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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, &ctx), 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::ed25519::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
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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::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::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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let ctx = XcmContext { origin: None, message_id: XcmHash::default(), topic: None };
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// Set Alice as block author, who will receive fees
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RuntimeHelper::run_to_block(2, AccountId::from(ALICE));
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// We are going to buy 400e9 weight
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// Because of the ED being higher in kusama's asset hub
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// and not to complicate things, we use a little
|
|
// bit more of weight
|
|
let bought = Weight::from_parts(400_000_000_000u64, 0);
|
|
|
|
// lets calculate amount needed
|
|
let asset_amount_needed = WeightToFee::weight_to_fee(&bought);
|
|
|
|
let asset_multilocation = AssetIdForTrustBackedAssetsConvert::convert_back(&1).unwrap();
|
|
|
|
let asset: MultiAsset = (asset_multilocation, asset_amount_needed).into();
|
|
|
|
// Make sure again buy_weight does return an error
|
|
assert_noop!(trader.buy_weight(bought, asset.into(), &ctx), XcmError::TooExpensive);
|
|
|
|
// Drop trader
|
|
drop(trader);
|
|
|
|
// Make sure author(Alice) has NOT received the amount
|
|
assert_eq!(Assets::balance(1, AccountId::from(ALICE)), minimum_asset_balance);
|
|
|
|
// We also need to ensure the total supply NOT increased
|
|
assert_eq!(Assets::total_supply(1), minimum_asset_balance);
|
|
});
|
|
}
|
|
|
|
#[test]
|
|
fn test_assets_balances_api_works() {
|
|
use assets_common::runtime_api::runtime_decl_for_fungibles_api::FungiblesApi;
|
|
|
|
ExtBuilder::<Runtime>::default()
|
|
.with_collators(vec![AccountId::from(ALICE)])
|
|
.with_session_keys(vec![(
|
|
AccountId::from(ALICE),
|
|
AccountId::from(ALICE),
|
|
SessionKeys { aura: AuraId::from(sp_core::ed25519::Public::from_raw(ALICE)) },
|
|
)])
|
|
.build()
|
|
.execute_with(|| {
|
|
let local_asset_id = 1;
|
|
let foreign_asset_id_multilocation =
|
|
MultiLocation { parents: 1, interior: X2(Parachain(1234), GeneralIndex(12345)) };
|
|
|
|
// check before
|
|
assert_eq!(Assets::balance(local_asset_id, AccountId::from(ALICE)), 0);
|
|
assert_eq!(
|
|
ForeignAssets::balance(foreign_asset_id_multilocation, AccountId::from(ALICE)),
|
|
0
|
|
);
|
|
assert_eq!(Balances::free_balance(AccountId::from(ALICE)), 0);
|
|
assert!(Runtime::query_account_balances(AccountId::from(ALICE))
|
|
.unwrap()
|
|
.try_as::<MultiAssets>()
|
|
.unwrap()
|
|
.is_none());
|
|
|
|
// Drip some balance
|
|
use frame_support::traits::fungible::Mutate;
|
|
let some_currency = ExistentialDeposit::get();
|
|
Balances::mint_into(&AccountId::from(ALICE), some_currency).unwrap();
|
|
|
|
// We need root origin to create a sufficient asset
|
|
let minimum_asset_balance = 3333333_u128;
|
|
assert_ok!(Assets::force_create(
|
|
RuntimeHelper::root_origin(),
|
|
local_asset_id.into(),
|
|
AccountId::from(ALICE).into(),
|
|
true,
|
|
minimum_asset_balance
|
|
));
|
|
|
|
// We first mint enough asset for the account to exist for assets
|
|
assert_ok!(Assets::mint(
|
|
RuntimeHelper::origin_of(AccountId::from(ALICE)),
|
|
local_asset_id.into(),
|
|
AccountId::from(ALICE).into(),
|
|
minimum_asset_balance
|
|
));
|
|
|
|
// create foreign asset
|
|
let foreign_asset_minimum_asset_balance = 3333333_u128;
|
|
assert_ok!(ForeignAssets::force_create(
|
|
RuntimeHelper::root_origin(),
|
|
foreign_asset_id_multilocation,
|
|
AccountId::from(SOME_ASSET_ADMIN).into(),
|
|
false,
|
|
foreign_asset_minimum_asset_balance
|
|
));
|
|
|
|
// We first mint enough asset for the account to exist for assets
|
|
assert_ok!(ForeignAssets::mint(
|
|
RuntimeHelper::origin_of(AccountId::from(SOME_ASSET_ADMIN)),
|
|
foreign_asset_id_multilocation,
|
|
AccountId::from(ALICE).into(),
|
|
6 * foreign_asset_minimum_asset_balance
|
|
));
|
|
|
|
// check after
|
|
assert_eq!(
|
|
Assets::balance(local_asset_id, AccountId::from(ALICE)),
|
|
minimum_asset_balance
|
|
);
|
|
assert_eq!(
|
|
ForeignAssets::balance(foreign_asset_id_multilocation, AccountId::from(ALICE)),
|
|
6 * minimum_asset_balance
|
|
);
|
|
assert_eq!(Balances::free_balance(AccountId::from(ALICE)), some_currency);
|
|
|
|
let result: MultiAssets = Runtime::query_account_balances(AccountId::from(ALICE))
|
|
.unwrap()
|
|
.try_into()
|
|
.unwrap();
|
|
assert_eq!(result.len(), 3);
|
|
|
|
// check currency
|
|
assert!(result.inner().iter().any(|asset| asset.eq(
|
|
&assets_common::fungible_conversion::convert_balance::<DotLocation, Balance>(
|
|
some_currency
|
|
)
|
|
.unwrap()
|
|
)));
|
|
// check trusted asset
|
|
assert!(result.inner().iter().any(|asset| asset.eq(&(
|
|
AssetIdForTrustBackedAssetsConvert::convert_back(&local_asset_id).unwrap(),
|
|
minimum_asset_balance
|
|
)
|
|
.into())));
|
|
// check foreign asset
|
|
assert!(result.inner().iter().any(|asset| asset.eq(&(
|
|
Identity::convert_back(&foreign_asset_id_multilocation).unwrap(),
|
|
6 * foreign_asset_minimum_asset_balance
|
|
)
|
|
.into())));
|
|
});
|
|
}
|
|
|
|
asset_test_utils::include_teleports_for_native_asset_works!(
|
|
Runtime,
|
|
AllPalletsWithoutSystem,
|
|
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,
|
|
AllPalletsWithoutSystem,
|
|
XcmConfig,
|
|
CheckingAccount,
|
|
WeightToFee,
|
|
ParachainSystem,
|
|
ForeignCreatorsSovereignAccountOf,
|
|
ForeignAssetsInstance,
|
|
asset_test_utils::CollatorSessionKeys::new(
|
|
AccountId::from(ALICE),
|
|
AccountId::from(ALICE),
|
|
SessionKeys { aura: AuraId::from(sp_core::ed25519::Public::from_raw(ALICE)) }
|
|
),
|
|
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,
|
|
asset_test_utils::CollatorSessionKeys::new(
|
|
AccountId::from(ALICE),
|
|
AccountId::from(ALICE),
|
|
SessionKeys { aura: AuraId::from(sp_core::ed25519::Public::from_raw(ALICE)) }
|
|
),
|
|
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,
|
|
asset_test_utils::CollatorSessionKeys::new(
|
|
AccountId::from(ALICE),
|
|
AccountId::from(ALICE),
|
|
SessionKeys { aura: AuraId::from(sp_core::ed25519::Public::from_raw(ALICE)) }
|
|
),
|
|
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);
|
|
})
|
|
);
|