mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
synced 2026-05-31 07:31:02 +00:00
d749bc3a96
* make finality verifier pallet instantiable * add second instance of finality verifier pallet to the Millau runtime * add Westend -> Millau headers relay * use wss to connect to public westend nodes * initialize with best_finalized_block * typo * Revert "initialize with best_finalized_block" This reverts commit 954ed2832372d67618abc1a06d47e66faa93f674. * pass VoterSet by ref * new bridge initialization code * loop upper bound * Polkadot -> Westend * fixed tests compilation * default-features * assert
417 lines
11 KiB
Rust
417 lines
11 KiB
Rust
// Copyright 2019-2020 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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//! Deal with CLI args of substrate-to-substrate relay.
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use bp_message_lane::LaneId;
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use codec::{Decode, Encode};
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use sp_runtime::app_crypto::Ss58Codec;
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use structopt::{clap::arg_enum, StructOpt};
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use crate::rialto_millau::cli as rialto_millau;
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/// Parse relay CLI args.
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pub fn parse_args() -> Command {
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Command::from_args()
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}
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/// Substrate-to-Substrate bridge utilities.
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#[derive(StructOpt)]
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#[structopt(about = "Substrate-to-Substrate relay")]
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pub enum Command {
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/// Start headers relay between two chains.
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///
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/// The on-chain bridge component should have been already initialized with
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/// `init-bridge` sub-command.
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RelayHeaders(RelayHeaders),
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/// Start messages relay between two chains.
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///
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/// Ties up to `MessageLane` pallets on both chains and starts relaying messages.
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/// Requires the header relay to be already running.
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RelayMessages(RelayMessages),
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/// Initialize on-chain bridge pallet with current header data.
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///
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/// Sends initialization transaction to bootstrap the bridge with current finalized block data.
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InitBridge(InitBridge),
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/// Send custom message over the bridge.
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///
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/// Allows interacting with the bridge by sending messages over `MessageLane` component.
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/// The message is being sent to the source chain, delivered to the target chain and dispatched
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/// there.
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SendMessage(SendMessage),
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/// Generate SCALE-encoded `Call` for choosen network.
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///
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/// The call can be used either as message payload or can be wrapped into a transaction
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/// and executed on the chain directly.
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EncodeCall(EncodeCall),
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/// Generate SCALE-encoded `MessagePayload` object that can be sent over selected bridge.
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///
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/// The `MessagePayload` can be then fed to `MessageLane::send_message` function and sent over
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/// the bridge.
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EncodeMessagePayload(EncodeMessagePayload),
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/// Estimate Delivery and Dispatch Fee required for message submission to message lane.
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EstimateFee(EstimateFee),
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/// Given a source chain `AccountId`, derive the corresponding `AccountId` for the target chain.
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DeriveAccount(DeriveAccount),
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}
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impl Command {
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/// Run the command.
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pub async fn run(self) -> anyhow::Result<()> {
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match self {
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Self::InitBridge(arg) => arg.run().await?,
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Self::RelayHeaders(arg) => arg.run().await?,
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Self::RelayMessages(arg) => arg.run().await?,
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Self::SendMessage(arg) => arg.run().await?,
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Self::EncodeCall(arg) => arg.run().await?,
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Self::EncodeMessagePayload(arg) => arg.run().await?,
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Self::EstimateFee(arg) => arg.run().await?,
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Self::DeriveAccount(arg) => arg.run().await?,
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}
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Ok(())
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}
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}
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/// Start headers relayer process.
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#[derive(StructOpt)]
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pub enum RelayHeaders {
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#[structopt(flatten)]
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RialtoMillau(rialto_millau::RelayHeaders),
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}
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impl RelayHeaders {
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/// Run the command.
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pub async fn run(self) -> anyhow::Result<()> {
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match self {
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Self::RialtoMillau(arg) => arg.run().await?,
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}
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Ok(())
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}
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}
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/// Start message relayer process.
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#[derive(StructOpt)]
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pub enum RelayMessages {
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#[structopt(flatten)]
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RialtoMillau(rialto_millau::RelayMessages),
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}
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impl RelayMessages {
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/// Run the command.
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pub async fn run(self) -> anyhow::Result<()> {
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match self {
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Self::RialtoMillau(arg) => arg.run().await?,
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}
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Ok(())
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}
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}
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/// Initialize bridge pallet.
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#[derive(StructOpt)]
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pub enum InitBridge {
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#[structopt(flatten)]
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RialtoMillau(rialto_millau::InitBridge),
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}
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impl InitBridge {
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/// Run the command.
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pub async fn run(self) -> anyhow::Result<()> {
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match self {
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Self::RialtoMillau(arg) => arg.run().await?,
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}
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Ok(())
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}
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}
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/// Send bridge message.
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#[derive(StructOpt)]
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pub enum SendMessage {
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#[structopt(flatten)]
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RialtoMillau(rialto_millau::SendMessage),
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}
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impl SendMessage {
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/// Run the command.
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pub async fn run(self) -> anyhow::Result<()> {
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match self {
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Self::RialtoMillau(arg) => arg.run().await?,
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}
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Ok(())
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}
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}
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/// A call to encode.
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#[derive(StructOpt)]
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pub enum EncodeCall {
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#[structopt(flatten)]
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RialtoMillau(rialto_millau::EncodeCall),
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}
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impl EncodeCall {
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/// Run the command.
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pub async fn run(self) -> anyhow::Result<()> {
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match self {
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Self::RialtoMillau(arg) => arg.run().await?,
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}
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Ok(())
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}
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}
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/// A `MessagePayload` to encode.
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#[derive(StructOpt)]
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pub enum EncodeMessagePayload {
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#[structopt(flatten)]
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RialtoMillau(rialto_millau::EncodeMessagePayload),
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}
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impl EncodeMessagePayload {
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/// Run the command.
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pub async fn run(self) -> anyhow::Result<()> {
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match self {
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Self::RialtoMillau(arg) => arg.run().await?,
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}
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Ok(())
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}
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}
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/// Estimate Delivery & Dispatch Fee command.
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#[derive(StructOpt)]
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pub enum EstimateFee {
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#[structopt(flatten)]
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RialtoMillau(rialto_millau::EstimateFee),
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}
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impl EstimateFee {
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/// Run the command.
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pub async fn run(self) -> anyhow::Result<()> {
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match self {
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Self::RialtoMillau(arg) => arg.run().await?,
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}
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Ok(())
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}
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}
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/// Given a source chain `AccountId`, derive the corresponding `AccountId` for the target chain.
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///
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/// The (derived) target chain `AccountId` is going to be used as dispatch origin of the call
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/// that has been sent over the bridge.
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/// This account can also be used to receive target-chain funds (or other form of ownership),
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/// since messages sent over the bridge will be able to spend these.
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#[derive(StructOpt)]
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pub enum DeriveAccount {
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#[structopt(flatten)]
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RialtoMillau(rialto_millau::DeriveAccount),
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}
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impl DeriveAccount {
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/// Run the command.
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pub async fn run(self) -> anyhow::Result<()> {
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match self {
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Self::RialtoMillau(arg) => arg.run().await?,
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}
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Ok(())
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}
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}
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arg_enum! {
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#[derive(Debug)]
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/// The origin to use when dispatching the message on the target chain.
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///
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/// - `Target` uses account existing on the target chain (requires target private key).
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/// - `Origin` uses account derived from the source-chain account.
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pub enum Origins {
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Target,
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Source,
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}
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}
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/// Generic account id with custom parser.
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#[derive(Debug)]
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pub struct AccountId {
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account: sp_runtime::AccountId32,
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version: sp_core::crypto::Ss58AddressFormat,
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}
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impl std::str::FromStr for AccountId {
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type Err = String;
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fn from_str(s: &str) -> Result<Self, Self::Err> {
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let (account, version) = sp_runtime::AccountId32::from_ss58check_with_version(s)
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.map_err(|err| format!("Unable to decode SS58 address: {:?}", err))?;
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Ok(Self { account, version })
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}
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}
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impl AccountId {
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/// Perform runtime checks of SS58 version and get Rialto's AccountId.
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pub fn into_rialto(self) -> bp_rialto::AccountId {
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self.check_and_get("Rialto", rialto_runtime::SS58Prefix::get())
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}
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/// Perform runtime checks of SS58 version and get Millau's AccountId.
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pub fn into_millau(self) -> bp_millau::AccountId {
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self.check_and_get("Millau", millau_runtime::SS58Prefix::get())
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}
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/// Check SS58Prefix and return the account id.
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fn check_and_get(self, net: &str, expected_prefix: u8) -> sp_runtime::AccountId32 {
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let version: u16 = self.version.into();
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println!("Version: {} vs {}", version, expected_prefix);
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if version != expected_prefix as u16 {
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log::warn!(
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target: "bridge",
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"Following address: {} does not seem to match {}'s format, got: {}",
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self.account,
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net,
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self.version,
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)
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}
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self.account
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}
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}
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/// Lane id.
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#[derive(Debug)]
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pub struct HexLaneId(pub LaneId);
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impl From<HexLaneId> for LaneId {
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fn from(lane_id: HexLaneId) -> LaneId {
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lane_id.0
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}
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}
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impl std::str::FromStr for HexLaneId {
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type Err = hex::FromHexError;
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fn from_str(s: &str) -> Result<Self, Self::Err> {
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let mut lane_id = LaneId::default();
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hex::decode_to_slice(s, &mut lane_id)?;
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Ok(HexLaneId(lane_id))
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}
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}
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/// Nicer formatting for raw bytes vectors.
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#[derive(Encode, Decode)]
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pub struct HexBytes(pub Vec<u8>);
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impl std::str::FromStr for HexBytes {
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type Err = hex::FromHexError;
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fn from_str(s: &str) -> Result<Self, Self::Err> {
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Ok(Self(hex::decode(s)?))
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}
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}
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impl std::fmt::Debug for HexBytes {
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fn fmt(&self, fmt: &mut std::fmt::Formatter) -> std::fmt::Result {
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write!(fmt, "0x{}", hex::encode(&self.0))
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}
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}
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impl HexBytes {
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/// Encode given object and wrap into nicely formatted bytes.
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pub fn encode<T: Encode>(t: &T) -> Self {
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Self(t.encode())
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}
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}
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/// Prometheus metrics params.
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#[derive(StructOpt)]
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pub struct PrometheusParams {
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/// Do not expose a Prometheus metric endpoint.
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#[structopt(long)]
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pub no_prometheus: bool,
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/// Expose Prometheus endpoint at given interface.
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#[structopt(long, default_value = "127.0.0.1")]
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pub prometheus_host: String,
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/// Expose Prometheus endpoint at given port.
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#[structopt(long, default_value = "9616")]
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pub prometheus_port: u16,
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}
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impl From<PrometheusParams> for Option<relay_utils::metrics::MetricsParams> {
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fn from(cli_params: PrometheusParams) -> Option<relay_utils::metrics::MetricsParams> {
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if !cli_params.no_prometheus {
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Some(relay_utils::metrics::MetricsParams {
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host: cli_params.prometheus_host,
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port: cli_params.prometheus_port,
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})
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} else {
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None
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}
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}
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}
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/// Either explicit or maximal allowed value.
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#[derive(Debug)]
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pub enum ExplicitOrMaximal<V> {
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/// User has explicitly specified argument value.
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Explicit(V),
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/// Maximal allowed value for this argument.
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Maximal,
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}
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impl<V: std::str::FromStr> std::str::FromStr for ExplicitOrMaximal<V>
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where
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V::Err: std::fmt::Debug,
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{
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type Err = String;
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fn from_str(s: &str) -> Result<Self, Self::Err> {
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if s.to_lowercase() == "max" {
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return Ok(ExplicitOrMaximal::Maximal);
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}
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V::from_str(s)
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.map(ExplicitOrMaximal::Explicit)
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.map_err(|e| format!("Failed to parse '{:?}'. Expected 'max' or explicit value", e))
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}
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}
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/// Create chain-specific set of configuration objects: connection parameters,
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/// signing parameters and bridge initialisation parameters.
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#[macro_export]
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macro_rules! declare_chain_options {
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($chain:ident, $chain_prefix:ident) => {
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paste::item! {
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#[doc = $chain " connection params."]
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#[derive(StructOpt)]
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pub struct [<$chain ConnectionParams>] {
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#[doc = "Connect to " $chain " node at given host."]
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#[structopt(long, default_value = "127.0.0.1")]
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pub [<$chain_prefix _host>]: String,
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#[doc = "Connect to " $chain " node websocket server at given port."]
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#[structopt(long)]
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pub [<$chain_prefix _port>]: u16,
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#[doc = "Use secure websocket connection."]
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#[structopt(long)]
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pub [<$chain_prefix _secure>]: bool,
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}
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#[doc = $chain " signing params."]
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#[derive(StructOpt)]
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pub struct [<$chain SigningParams>] {
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#[doc = "The SURI of secret key to use when transactions are submitted to the " $chain " node."]
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#[structopt(long)]
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pub [<$chain_prefix _signer>]: String,
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#[doc = "The password for the SURI of secret key to use when transactions are submitted to the " $chain " node."]
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#[structopt(long)]
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pub [<$chain_prefix _signer_password>]: Option<String>,
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}
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}
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};
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}
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