mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
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a69026af44
* use complex relay in deployments * enable lane 00000001 * add alerts for lane 00000001 * revert local substrate relay * updated doc * review
254 lines
9.0 KiB
Rust
254 lines
9.0 KiB
Rust
// Copyright 2019-2021 Parity Technologies (UK) Ltd.
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// This file is part of Parity Bridges Common.
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// Parity Bridges Common is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Parity Bridges Common is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Parity Bridges Common. If not, see <http://www.gnu.org/licenses/>.
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//! Everything required to serve Millau <-> Rialto messages.
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use crate::Runtime;
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use bp_messages::{
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source_chain::TargetHeaderChain,
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target_chain::{ProvedMessages, SourceHeaderChain},
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InboundLaneData, LaneId, Message, MessageNonce, Parameter as MessagesParameter,
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};
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use bp_runtime::{InstanceId, RIALTO_BRIDGE_INSTANCE};
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use bridge_runtime_common::messages::{self, MessageBridge, MessageTransaction};
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use codec::{Decode, Encode};
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use frame_support::{
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parameter_types,
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weights::{DispatchClass, Weight},
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RuntimeDebug,
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};
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use sp_runtime::{FixedPointNumber, FixedU128};
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use sp_std::{convert::TryFrom, ops::RangeInclusive};
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/// Initial value of `RialtoToMillauConversionRate` parameter.
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pub const INITIAL_RIALTO_TO_MILLAU_CONVERSION_RATE: FixedU128 = FixedU128::from_inner(FixedU128::DIV);
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parameter_types! {
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/// Rialto to Millau conversion rate. Initially we treat both tokens as equal.
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pub storage RialtoToMillauConversionRate: FixedU128 = INITIAL_RIALTO_TO_MILLAU_CONVERSION_RATE;
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}
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/// Message payload for Millau -> Rialto messages.
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pub type ToRialtoMessagePayload = messages::source::FromThisChainMessagePayload<WithRialtoMessageBridge>;
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/// Message verifier for Millau -> Rialto messages.
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pub type ToRialtoMessageVerifier = messages::source::FromThisChainMessageVerifier<WithRialtoMessageBridge>;
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/// Message payload for Rialto -> Millau messages.
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pub type FromRialtoMessagePayload = messages::target::FromBridgedChainMessagePayload<WithRialtoMessageBridge>;
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/// Encoded Millau Call as it comes from Rialto.
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pub type FromRialtoEncodedCall = messages::target::FromBridgedChainEncodedMessageCall<WithRialtoMessageBridge>;
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/// Messages proof for Rialto -> Millau messages.
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type FromRialtoMessagesProof = messages::target::FromBridgedChainMessagesProof<bp_rialto::Hash>;
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/// Messages delivery proof for Millau -> Rialto messages.
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type ToRialtoMessagesDeliveryProof = messages::source::FromBridgedChainMessagesDeliveryProof<bp_rialto::Hash>;
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/// Call-dispatch based message dispatch for Rialto -> Millau messages.
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pub type FromRialtoMessageDispatch = messages::target::FromBridgedChainMessageDispatch<
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WithRialtoMessageBridge,
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crate::Runtime,
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pallet_bridge_dispatch::DefaultInstance,
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>;
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/// Millau <-> Rialto message bridge.
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#[derive(RuntimeDebug, Clone, Copy)]
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pub struct WithRialtoMessageBridge;
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impl MessageBridge for WithRialtoMessageBridge {
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const INSTANCE: InstanceId = RIALTO_BRIDGE_INSTANCE;
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const RELAYER_FEE_PERCENT: u32 = 10;
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type ThisChain = Millau;
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type BridgedChain = Rialto;
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fn bridged_balance_to_this_balance(bridged_balance: bp_rialto::Balance) -> bp_millau::Balance {
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bp_millau::Balance::try_from(RialtoToMillauConversionRate::get().saturating_mul_int(bridged_balance))
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.unwrap_or(bp_millau::Balance::MAX)
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}
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}
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/// Millau chain from message lane point of view.
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#[derive(RuntimeDebug, Clone, Copy)]
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pub struct Millau;
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impl messages::ChainWithMessages for Millau {
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type Hash = bp_millau::Hash;
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type AccountId = bp_millau::AccountId;
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type Signer = bp_millau::AccountSigner;
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type Signature = bp_millau::Signature;
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type Weight = Weight;
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type Balance = bp_millau::Balance;
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type MessagesInstance = crate::WithRialtoMessagesInstance;
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}
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impl messages::ThisChainWithMessages for Millau {
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type Call = crate::Call;
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fn is_outbound_lane_enabled(lane: &LaneId) -> bool {
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*lane == [0, 0, 0, 0] || *lane == [0, 0, 0, 1]
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}
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fn maximal_pending_messages_at_outbound_lane() -> MessageNonce {
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MessageNonce::MAX
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}
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fn estimate_delivery_confirmation_transaction() -> MessageTransaction<Weight> {
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let inbound_data_size =
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InboundLaneData::<bp_millau::AccountId>::encoded_size_hint(bp_millau::MAXIMAL_ENCODED_ACCOUNT_ID_SIZE, 1)
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.unwrap_or(u32::MAX);
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MessageTransaction {
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dispatch_weight: bp_millau::MAX_SINGLE_MESSAGE_DELIVERY_CONFIRMATION_TX_WEIGHT,
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size: inbound_data_size
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.saturating_add(bp_rialto::EXTRA_STORAGE_PROOF_SIZE)
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.saturating_add(bp_millau::TX_EXTRA_BYTES),
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}
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}
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fn transaction_payment(transaction: MessageTransaction<Weight>) -> bp_millau::Balance {
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// in our testnets, both per-byte fee and weight-to-fee are 1:1
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messages::transaction_payment(
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bp_millau::BlockWeights::get().get(DispatchClass::Normal).base_extrinsic,
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1,
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FixedU128::zero(),
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|weight| weight as _,
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transaction,
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)
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}
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}
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/// Rialto chain from message lane point of view.
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#[derive(RuntimeDebug, Clone, Copy)]
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pub struct Rialto;
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impl messages::ChainWithMessages for Rialto {
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type Hash = bp_rialto::Hash;
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type AccountId = bp_rialto::AccountId;
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type Signer = bp_rialto::AccountSigner;
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type Signature = bp_rialto::Signature;
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type Weight = Weight;
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type Balance = bp_rialto::Balance;
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type MessagesInstance = pallet_bridge_messages::DefaultInstance;
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}
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impl messages::BridgedChainWithMessages for Rialto {
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fn maximal_extrinsic_size() -> u32 {
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bp_rialto::max_extrinsic_size()
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}
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fn message_weight_limits(_message_payload: &[u8]) -> RangeInclusive<Weight> {
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// we don't want to relay too large messages + keep reserve for future upgrades
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let upper_limit = messages::target::maximal_incoming_message_dispatch_weight(bp_rialto::max_extrinsic_weight());
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// we're charging for payload bytes in `WithRialtoMessageBridge::transaction_payment` function
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//
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// this bridge may be used to deliver all kind of messages, so we're not making any assumptions about
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// minimal dispatch weight here
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0..=upper_limit
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}
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fn estimate_delivery_transaction(
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message_payload: &[u8],
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message_dispatch_weight: Weight,
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) -> MessageTransaction<Weight> {
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let message_payload_len = u32::try_from(message_payload.len()).unwrap_or(u32::MAX);
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let extra_bytes_in_payload = Weight::from(message_payload_len)
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.saturating_sub(pallet_bridge_messages::EXPECTED_DEFAULT_MESSAGE_LENGTH.into());
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MessageTransaction {
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dispatch_weight: extra_bytes_in_payload
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.saturating_mul(bp_rialto::ADDITIONAL_MESSAGE_BYTE_DELIVERY_WEIGHT)
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.saturating_add(bp_rialto::DEFAULT_MESSAGE_DELIVERY_TX_WEIGHT)
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.saturating_add(message_dispatch_weight),
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size: message_payload_len
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.saturating_add(bp_millau::EXTRA_STORAGE_PROOF_SIZE)
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.saturating_add(bp_rialto::TX_EXTRA_BYTES),
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}
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}
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fn transaction_payment(transaction: MessageTransaction<Weight>) -> bp_rialto::Balance {
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// in our testnets, both per-byte fee and weight-to-fee are 1:1
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messages::transaction_payment(
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bp_rialto::BlockWeights::get().get(DispatchClass::Normal).base_extrinsic,
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1,
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FixedU128::zero(),
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|weight| weight as _,
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transaction,
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)
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}
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}
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impl TargetHeaderChain<ToRialtoMessagePayload, bp_rialto::AccountId> for Rialto {
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type Error = &'static str;
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// The proof is:
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// - hash of the header this proof has been created with;
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// - the storage proof or one or several keys;
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// - id of the lane we prove state of.
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type MessagesDeliveryProof = ToRialtoMessagesDeliveryProof;
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fn verify_message(payload: &ToRialtoMessagePayload) -> Result<(), Self::Error> {
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messages::source::verify_chain_message::<WithRialtoMessageBridge>(payload)
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}
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fn verify_messages_delivery_proof(
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proof: Self::MessagesDeliveryProof,
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) -> Result<(LaneId, InboundLaneData<bp_millau::AccountId>), Self::Error> {
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messages::source::verify_messages_delivery_proof::<WithRialtoMessageBridge, Runtime>(proof)
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}
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}
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impl SourceHeaderChain<bp_rialto::Balance> for Rialto {
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type Error = &'static str;
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// The proof is:
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// - hash of the header this proof has been created with;
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// - the storage proof or one or several keys;
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// - id of the lane we prove messages for;
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// - inclusive range of messages nonces that are proved.
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type MessagesProof = FromRialtoMessagesProof;
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fn verify_messages_proof(
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proof: Self::MessagesProof,
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messages_count: u32,
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) -> Result<ProvedMessages<Message<bp_rialto::Balance>>, Self::Error> {
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messages::target::verify_messages_proof::<WithRialtoMessageBridge, Runtime>(proof, messages_count)
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}
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}
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/// Millau -> Rialto message lane pallet parameters.
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#[derive(RuntimeDebug, Clone, Encode, Decode, PartialEq, Eq)]
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pub enum MillauToRialtoMessagesParameter {
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/// The conversion formula we use is: `MillauTokens = RialtoTokens * conversion_rate`.
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RialtoToMillauConversionRate(FixedU128),
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}
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impl MessagesParameter for MillauToRialtoMessagesParameter {
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fn save(&self) {
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match *self {
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MillauToRialtoMessagesParameter::RialtoToMillauConversionRate(ref conversion_rate) => {
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RialtoToMillauConversionRate::set(conversion_rate)
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}
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}
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}
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}
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