Files
pezkuwi-subxt/polkadot/runtime/kusama/src/xcm_config.rs
T
Xiliang Chen cdbdbc7546 allow governance body on parachain to have sovereign account (#1291)
The goal is to allow Fellowship on Collective chain to have a sovereign
account on Polkadot so that we can add it as an identity registrar. This
will allow Fellows origin to be able to provide judgements for
Fellowship members.

This currently allow any body on any parachain including non system
parachains to have sovereign account. I cannot think of any reason why
that may be an issue but let me know if I should change it to filter
only system parachains.

[This](https://gist.github.com/xlc/ec61bfa4e9f6d62da27d30141ad2c72b) is
the testing script.

Original PR: https://github.com/paritytech/polkadot/pull/7518
2023-09-19 22:27:42 +09:00

312 lines
13 KiB
Rust

// Copyright (C) Parity Technologies (UK) Ltd.
// This file is part of Polkadot.
// Polkadot is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
// Polkadot is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License for more details.
// You should have received a copy of the GNU General Public License
// along with Polkadot. If not, see <http://www.gnu.org/licenses/>.
//! XCM configurations for the Kusama runtime.
use super::{
parachains_origin, AccountId, AllPalletsWithSystem, Balances, Dmp, Fellows, ParaId, Runtime,
RuntimeCall, RuntimeEvent, RuntimeOrigin, StakingAdmin, TransactionByteFee, WeightToFee,
XcmPallet,
};
use frame_support::{
match_types, parameter_types,
traits::{Everything, Nothing},
weights::Weight,
};
use frame_system::EnsureRoot;
use kusama_runtime_constants::currency::CENTS;
use runtime_common::{
xcm_sender::{ChildParachainRouter, ExponentialPrice},
ToAuthor,
};
use sp_core::ConstU32;
use xcm::latest::prelude::*;
use xcm_builder::{
AccountId32Aliases, AllowExplicitUnpaidExecutionFrom, AllowKnownQueryResponses,
AllowSubscriptionsFrom, AllowTopLevelPaidExecutionFrom, ChildParachainAsNative,
ChildParachainConvertsVia, CurrencyAdapter as XcmCurrencyAdapter, DescribeBodyTerminal,
DescribeFamily, HashedDescription, IsChildSystemParachain, IsConcrete, MintLocation,
OriginToPluralityVoice, SignedAccountId32AsNative, SignedToAccountId32,
SovereignSignedViaLocation, TakeWeightCredit, TrailingSetTopicAsId, UsingComponents,
WeightInfoBounds, WithComputedOrigin, WithUniqueTopic,
};
parameter_types! {
/// The location of the KSM token, from the context of this chain. Since this token is native to this
/// chain, we make it synonymous with it and thus it is the `Here` location, which means "equivalent to
/// the context".
pub const TokenLocation: MultiLocation = Here.into_location();
/// The Kusama network ID. This is named.
pub const ThisNetwork: NetworkId = Kusama;
/// Our XCM location ancestry - i.e. our location within the Consensus Universe.
///
/// Since Kusama is a top-level relay-chain with its own consensus, it's just our network ID.
pub UniversalLocation: InteriorMultiLocation = ThisNetwork::get().into();
/// The check account, which holds any native assets that have been teleported out and not back in (yet).
pub CheckAccount: AccountId = XcmPallet::check_account();
/// The check account that is allowed to mint assets locally.
pub LocalCheckAccount: (AccountId, MintLocation) = (CheckAccount::get(), MintLocation::Local);
}
/// The canonical means of converting a `MultiLocation` into an `AccountId`, used when we want to
/// determine the sovereign account controlled by a location.
pub type SovereignAccountOf = (
// We can convert a child parachain using the standard `AccountId` conversion.
ChildParachainConvertsVia<ParaId, AccountId>,
// We can directly alias an `AccountId32` into a local account.
AccountId32Aliases<ThisNetwork, AccountId>,
// Allow governance body to be used as a sovereign account.
HashedDescription<AccountId, DescribeFamily<DescribeBodyTerminal>>,
);
/// Our asset transactor. This is what allows us to interest with the runtime facilities from the
/// point of view of XCM-only concepts like `MultiLocation` and `MultiAsset`.
///
/// Ours is only aware of the Balances pallet, which is mapped to `TokenLocation`.
pub type LocalAssetTransactor = XcmCurrencyAdapter<
// Use this currency:
Balances,
// Use this currency when it is a fungible asset matching the given location or name:
IsConcrete<TokenLocation>,
// We can convert the MultiLocations with our converter above:
SovereignAccountOf,
// Our chain's account ID type (we can't get away without mentioning it explicitly):
AccountId,
// We track our teleports in/out to keep total issuance correct.
LocalCheckAccount,
>;
/// The means that we convert the XCM message origin location into a local dispatch origin.
type LocalOriginConverter = (
// A `Signed` origin of the sovereign account that the original location controls.
SovereignSignedViaLocation<SovereignAccountOf, RuntimeOrigin>,
// A child parachain, natively expressed, has the `Parachain` origin.
ChildParachainAsNative<parachains_origin::Origin, RuntimeOrigin>,
// The AccountId32 location type can be expressed natively as a `Signed` origin.
SignedAccountId32AsNative<ThisNetwork, RuntimeOrigin>,
);
parameter_types! {
/// The amount of weight an XCM operation takes. This is a safe overestimate.
pub const BaseXcmWeight: Weight = Weight::from_parts(1_000_000_000, 64 * 1024);
/// Maximum number of instructions in a single XCM fragment. A sanity check against weight
/// calculations getting too crazy.
pub const MaxInstructions: u32 = 100;
/// The asset ID for the asset that we use to pay for message delivery fees.
pub FeeAssetId: AssetId = Concrete(TokenLocation::get());
/// The base fee for the message delivery fees.
pub const BaseDeliveryFee: u128 = CENTS.saturating_mul(3);
}
/// The XCM router. When we want to send an XCM message, we use this type. It amalgamates all of our
/// individual routers.
pub type XcmRouter = WithUniqueTopic<(
// Only one router so far - use DMP to communicate with child parachains.
ChildParachainRouter<
Runtime,
XcmPallet,
ExponentialPrice<FeeAssetId, BaseDeliveryFee, TransactionByteFee, Dmp>,
>,
)>;
parameter_types! {
pub const Ksm: MultiAssetFilter = Wild(AllOf { fun: WildFungible, id: Concrete(TokenLocation::get()) });
pub const Statemine: MultiLocation = Parachain(1000).into_location();
pub const Encointer: MultiLocation = Parachain(1001).into_location();
pub const KsmForStatemine: (MultiAssetFilter, MultiLocation) = (Ksm::get(), Statemine::get());
pub const KsmForEncointer: (MultiAssetFilter, MultiLocation) = (Ksm::get(), Encointer::get());
pub const MaxAssetsIntoHolding: u32 = 64;
}
pub type TrustedTeleporters =
(xcm_builder::Case<KsmForStatemine>, xcm_builder::Case<KsmForEncointer>);
match_types! {
pub type OnlyParachains: impl Contains<MultiLocation> = {
MultiLocation { parents: 0, interior: X1(Parachain(_)) }
};
}
/// The barriers one of which must be passed for an XCM message to be executed.
pub type Barrier = TrailingSetTopicAsId<(
// Weight that is paid for may be consumed.
TakeWeightCredit,
// Expected responses are OK.
AllowKnownQueryResponses<XcmPallet>,
WithComputedOrigin<
(
// If the message is one that immediately attempts to pay for execution, then allow it.
AllowTopLevelPaidExecutionFrom<Everything>,
// Messages coming from system parachains need not pay for execution.
AllowExplicitUnpaidExecutionFrom<IsChildSystemParachain<ParaId>>,
// Subscriptions for version tracking are OK.
AllowSubscriptionsFrom<OnlyParachains>,
),
UniversalLocation,
ConstU32<8>,
>,
)>;
pub struct XcmConfig;
impl xcm_executor::Config for XcmConfig {
type RuntimeCall = RuntimeCall;
type XcmSender = XcmRouter;
type AssetTransactor = LocalAssetTransactor;
type OriginConverter = LocalOriginConverter;
type IsReserve = ();
type IsTeleporter = TrustedTeleporters;
type UniversalLocation = UniversalLocation;
type Barrier = Barrier;
type Weigher = WeightInfoBounds<
crate::weights::xcm::KusamaXcmWeight<RuntimeCall>,
RuntimeCall,
MaxInstructions,
>;
// The weight trader piggybacks on the existing transaction-fee conversion logic.
type Trader =
UsingComponents<WeightToFee, TokenLocation, AccountId, Balances, ToAuthor<Runtime>>;
type ResponseHandler = XcmPallet;
type AssetTrap = XcmPallet;
type AssetLocker = ();
type AssetExchanger = ();
type AssetClaims = XcmPallet;
type SubscriptionService = XcmPallet;
type PalletInstancesInfo = AllPalletsWithSystem;
type MaxAssetsIntoHolding = MaxAssetsIntoHolding;
type FeeManager = ();
// No bridges yet...
type MessageExporter = ();
type UniversalAliases = Nothing;
type CallDispatcher = RuntimeCall;
type SafeCallFilter = Everything;
type Aliasers = Nothing;
}
parameter_types! {
// StakingAdmin pluralistic body.
pub const StakingAdminBodyId: BodyId = BodyId::Defense;
// Fellows pluralistic body.
pub const FellowsBodyId: BodyId = BodyId::Technical;
}
#[cfg(feature = "runtime-benchmarks")]
parameter_types! {
pub ReachableDest: Option<MultiLocation> = Some(Parachain(1000).into());
}
/// Type to convert an `Origin` type value into a `MultiLocation` value which represents an interior
/// location of this chain.
pub type LocalOriginToLocation = (
// And a usual Signed origin to be used in XCM as a corresponding AccountId32
SignedToAccountId32<RuntimeOrigin, AccountId, ThisNetwork>,
);
/// Type to convert the `StakingAdmin` origin to a Plurality `MultiLocation` value.
pub type StakingAdminToPlurality =
OriginToPluralityVoice<RuntimeOrigin, StakingAdmin, StakingAdminBodyId>;
/// Type to convert the Fellows origin to a Plurality `MultiLocation` value.
pub type FellowsToPlurality = OriginToPluralityVoice<RuntimeOrigin, Fellows, FellowsBodyId>;
/// Type to convert a pallet `Origin` type value into a `MultiLocation` value which represents an
/// interior location of this chain for a destination chain.
pub type LocalPalletOriginToLocation = (
// StakingAdmin origin to be used in XCM as a corresponding Plurality `MultiLocation` value.
StakingAdminToPlurality,
// Fellows origin to be used in XCM as a corresponding Plurality `MultiLocation` value.
FellowsToPlurality,
);
impl pallet_xcm::Config for Runtime {
type RuntimeEvent = RuntimeEvent;
// We only allow the root, fellows and the staking admin to send messages.
// This is basically safe to enable for everyone (safe the possibility of someone spamming the
// parachain if they're willing to pay the KSM to send from the Relay-chain), but it's useless
// until we bring in XCM v3 which will make `DescendOrigin` a bit more useful.
type SendXcmOrigin = xcm_builder::EnsureXcmOrigin<RuntimeOrigin, LocalPalletOriginToLocation>;
type XcmRouter = XcmRouter;
// Anyone can execute XCM messages locally.
type ExecuteXcmOrigin = xcm_builder::EnsureXcmOrigin<RuntimeOrigin, LocalOriginToLocation>;
type XcmExecuteFilter = Everything;
type XcmExecutor = xcm_executor::XcmExecutor<XcmConfig>;
// Anyone is able to use teleportation regardless of who they are and what they want to
// teleport.
type XcmTeleportFilter = Everything;
// Anyone is able to use reserve transfers regardless of who they are and what they want to
// transfer.
type XcmReserveTransferFilter = Everything;
type Weigher = WeightInfoBounds<
crate::weights::xcm::KusamaXcmWeight<RuntimeCall>,
RuntimeCall,
MaxInstructions,
>;
type UniversalLocation = UniversalLocation;
type RuntimeOrigin = RuntimeOrigin;
type RuntimeCall = RuntimeCall;
const VERSION_DISCOVERY_QUEUE_SIZE: u32 = 100;
type AdvertisedXcmVersion = pallet_xcm::CurrentXcmVersion;
type Currency = Balances;
type CurrencyMatcher = ();
type TrustedLockers = ();
type SovereignAccountOf = SovereignAccountOf;
type MaxLockers = ConstU32<8>;
type MaxRemoteLockConsumers = ConstU32<0>;
type RemoteLockConsumerIdentifier = ();
type WeightInfo = crate::weights::pallet_xcm::WeightInfo<Runtime>;
#[cfg(feature = "runtime-benchmarks")]
type ReachableDest = ReachableDest;
type AdminOrigin = EnsureRoot<AccountId>;
}
#[test]
fn karura_liquid_staking_xcm_has_sane_weight_upper_limt() {
use frame_support::dispatch::GetDispatchInfo;
use parity_scale_codec::Decode;
use xcm::VersionedXcm;
use xcm_executor::traits::WeightBounds;
// should be [WithdrawAsset, BuyExecution, Transact, RefundSurplus, DepositAsset]
let blob = hex_literal::hex!("02140004000000000700e40b540213000000000700e40b54020006010700c817a804341801000006010b00c490bf4302140d010003ffffffff000100411f");
let Ok(VersionedXcm::V2(old_xcm)) = VersionedXcm::<super::RuntimeCall>::decode(&mut &blob[..])
else {
panic!("can't decode XCM blob")
};
let mut xcm: Xcm<super::RuntimeCall> =
old_xcm.try_into().expect("conversion from v2 to v3 failed");
let weight = <XcmConfig as xcm_executor::Config>::Weigher::weight(&mut xcm)
.expect("weighing XCM failed");
// Test that the weigher gives us a sensible weight but don't exactly hard-code it, otherwise it
// will be out of date after each re-run.
assert!(weight.all_lte(Weight::from_parts(30_313_281_000, 72_722)));
let Some(Transact { require_weight_at_most, call, .. }) =
xcm.inner_mut().into_iter().find(|inst| matches!(inst, Transact { .. }))
else {
panic!("no Transact instruction found")
};
// should be pallet_utility.as_derivative { index: 0, call: pallet_staking::bond_extra {
// max_additional: 2490000000000 } }
let message_call = call.take_decoded().expect("can't decode Transact call");
let call_weight = message_call.get_dispatch_info().weight;
// Ensure that the Transact instruction is giving a sensible `require_weight_at_most` value
assert!(
call_weight.all_lte(*require_weight_at_most),
"call weight ({:?}) was not less than or equal to require_weight_at_most ({:?})",
call_weight,
require_weight_at_most
);
}