mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
synced 2026-05-31 08:41:02 +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
275 lines
8.6 KiB
Rust
275 lines
8.6 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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//! Substrate node client.
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use crate::chain::{Chain, ChainWithBalances};
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use crate::rpc::{Substrate, SubstrateMessageLane};
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use crate::{ConnectionParams, Error, Result};
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use bp_message_lane::{LaneId, MessageNonce};
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use bp_runtime::InstanceId;
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use codec::Decode;
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use frame_system::AccountInfo;
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use jsonrpsee_types::{jsonrpc::DeserializeOwned, traits::SubscriptionClient};
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use jsonrpsee_ws_client::{WsClient as RpcClient, WsConfig as RpcConfig, WsSubscription as Subscription};
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use num_traits::Zero;
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use pallet_balances::AccountData;
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use sp_core::Bytes;
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use sp_trie::StorageProof;
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use sp_version::RuntimeVersion;
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use std::ops::RangeInclusive;
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const SUB_API_GRANDPA_AUTHORITIES: &str = "GrandpaApi_grandpa_authorities";
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const MAX_SUBSCRIPTION_CAPACITY: usize = 4096;
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/// Opaque justifications subscription type.
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pub type JustificationsSubscription = Subscription<Bytes>;
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/// Opaque GRANDPA authorities set.
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pub type OpaqueGrandpaAuthoritiesSet = Vec<u8>;
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/// Substrate client type.
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///
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/// Cloning `Client` is a cheap operation.
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pub struct Client<C: Chain> {
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/// Client connection params.
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params: ConnectionParams,
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/// Substrate RPC client.
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client: RpcClient,
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/// Genesis block hash.
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genesis_hash: C::Hash,
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}
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impl<C: Chain> Clone for Client<C> {
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fn clone(&self) -> Self {
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Client {
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params: self.params.clone(),
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client: self.client.clone(),
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genesis_hash: self.genesis_hash,
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}
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}
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}
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impl<C: Chain> std::fmt::Debug for Client<C> {
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fn fmt(&self, fmt: &mut std::fmt::Formatter) -> std::fmt::Result {
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fmt.debug_struct("Client")
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.field("genesis_hash", &self.genesis_hash)
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.finish()
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}
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}
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impl<C: Chain> Client<C> {
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/// Returns client that is able to call RPCs on Substrate node over websocket connection.
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pub async fn new(params: ConnectionParams) -> Result<Self> {
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let client = Self::build_client(params.clone()).await?;
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let number: C::BlockNumber = Zero::zero();
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let genesis_hash = Substrate::<C>::chain_get_block_hash(&client, number).await?;
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Ok(Self {
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params,
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client,
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genesis_hash,
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})
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}
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/// Reopen client connection.
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pub async fn reconnect(&mut self) -> Result<()> {
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self.client = Self::build_client(self.params.clone()).await?;
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Ok(())
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}
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/// Build client to use in connection.
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async fn build_client(params: ConnectionParams) -> Result<RpcClient> {
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let uri = format!(
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"{}://{}:{}",
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if params.secure { "wss" } else { "ws" },
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params.host,
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params.port,
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);
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let mut config = RpcConfig::with_url(&uri);
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config.max_subscription_capacity = MAX_SUBSCRIPTION_CAPACITY;
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let client = RpcClient::new(config).await?;
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Ok(client)
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}
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}
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impl<C: Chain> Client<C> {
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/// Returns true if client is connected to at least one peer and is in synced state.
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pub async fn ensure_synced(&self) -> Result<()> {
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let health = Substrate::<C>::system_health(&self.client).await?;
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let is_synced = !health.is_syncing && (!health.should_have_peers || health.peers > 0);
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if is_synced {
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Ok(())
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} else {
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Err(Error::ClientNotSynced(health))
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}
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}
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/// Return hash of the genesis block.
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pub fn genesis_hash(&self) -> &C::Hash {
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&self.genesis_hash
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}
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/// Return hash of the best finalized block.
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pub async fn best_finalized_header_hash(&self) -> Result<C::Hash> {
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Ok(Substrate::<C>::chain_get_finalized_head(&self.client).await?)
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}
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/// Returns the best Substrate header.
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pub async fn best_header(&self) -> Result<C::Header>
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where
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C::Header: DeserializeOwned,
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{
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Ok(Substrate::<C>::chain_get_header(&self.client, None).await?)
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}
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/// Get a Substrate block from its hash.
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pub async fn get_block(&self, block_hash: Option<C::Hash>) -> Result<C::SignedBlock> {
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Ok(Substrate::<C>::chain_get_block(&self.client, block_hash).await?)
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}
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/// Get a Substrate header by its hash.
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pub async fn header_by_hash(&self, block_hash: C::Hash) -> Result<C::Header>
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where
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C::Header: DeserializeOwned,
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{
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Ok(Substrate::<C>::chain_get_header(&self.client, block_hash).await?)
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}
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/// Get a Substrate block hash by its number.
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pub async fn block_hash_by_number(&self, number: C::BlockNumber) -> Result<C::Hash> {
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Ok(Substrate::<C>::chain_get_block_hash(&self.client, number).await?)
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}
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/// Get a Substrate header by its number.
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pub async fn header_by_number(&self, block_number: C::BlockNumber) -> Result<C::Header>
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where
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C::Header: DeserializeOwned,
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{
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let block_hash = Self::block_hash_by_number(self, block_number).await?;
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Ok(Self::header_by_hash(self, block_hash).await?)
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}
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/// Return runtime version.
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pub async fn runtime_version(&self) -> Result<RuntimeVersion> {
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Ok(Substrate::<C>::runtime_version(&self.client).await?)
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}
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/// Return native tokens balance of the account.
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pub async fn free_native_balance(&self, account: C::AccountId) -> Result<C::NativeBalance>
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where
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C: ChainWithBalances,
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{
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let storage_key = C::account_info_storage_key(&account);
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let encoded_account_data = Substrate::<C>::get_storage(&self.client, storage_key)
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.await?
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.ok_or(Error::AccountDoesNotExist)?;
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let decoded_account_data =
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AccountInfo::<C::Index, AccountData<C::NativeBalance>>::decode(&mut &encoded_account_data.0[..])
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.map_err(Error::ResponseParseFailed)?;
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Ok(decoded_account_data.data.free)
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}
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/// Get the nonce of the given Substrate account.
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///
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/// Note: It's the caller's responsibility to make sure `account` is a valid ss58 address.
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pub async fn next_account_index(&self, account: C::AccountId) -> Result<C::Index> {
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Ok(Substrate::<C>::system_account_next_index(&self.client, account).await?)
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}
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/// Submit an extrinsic for inclusion in a block.
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///
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/// Note: The given transaction does not need be SCALE encoded beforehand.
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pub async fn submit_extrinsic(&self, transaction: Bytes) -> Result<C::Hash> {
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let tx_hash = Substrate::<C>::author_submit_extrinsic(&self.client, transaction).await?;
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log::trace!(target: "bridge", "Sent transaction to Substrate node: {:?}", tx_hash);
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Ok(tx_hash)
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}
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/// Get the GRANDPA authority set at given block.
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pub async fn grandpa_authorities_set(&self, block: C::Hash) -> Result<OpaqueGrandpaAuthoritiesSet> {
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let call = SUB_API_GRANDPA_AUTHORITIES.to_string();
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let data = Bytes(Vec::new());
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let encoded_response = Substrate::<C>::state_call(&self.client, call, data, Some(block)).await?;
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let authority_list = encoded_response.0;
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Ok(authority_list)
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}
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/// Execute runtime call at given block.
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pub async fn state_call(&self, method: String, data: Bytes, at_block: Option<C::Hash>) -> Result<Bytes> {
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Substrate::<C>::state_call(&self.client, method, data, at_block)
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.await
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.map_err(Into::into)
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}
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/// Returns proof-of-message(s) in given inclusive range.
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pub async fn prove_messages(
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&self,
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instance: InstanceId,
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lane: LaneId,
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range: RangeInclusive<MessageNonce>,
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include_outbound_lane_state: bool,
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at_block: C::Hash,
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) -> Result<StorageProof> {
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let encoded_trie_nodes = SubstrateMessageLane::<C>::prove_messages(
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&self.client,
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instance,
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lane,
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*range.start(),
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*range.end(),
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include_outbound_lane_state,
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Some(at_block),
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)
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.await
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.map_err(Error::RpcError)?;
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let decoded_trie_nodes: Vec<Vec<u8>> =
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Decode::decode(&mut &encoded_trie_nodes[..]).map_err(Error::ResponseParseFailed)?;
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Ok(StorageProof::new(decoded_trie_nodes))
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}
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/// Returns proof-of-message(s) delivery.
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pub async fn prove_messages_delivery(
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&self,
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instance: InstanceId,
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lane: LaneId,
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at_block: C::Hash,
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) -> Result<Vec<Vec<u8>>> {
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let encoded_trie_nodes =
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SubstrateMessageLane::<C>::prove_messages_delivery(&self.client, instance, lane, Some(at_block))
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.await
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.map_err(Error::RpcError)?;
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let decoded_trie_nodes: Vec<Vec<u8>> =
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Decode::decode(&mut &encoded_trie_nodes[..]).map_err(Error::ResponseParseFailed)?;
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Ok(decoded_trie_nodes)
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}
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/// Return new justifications stream.
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pub async fn subscribe_justifications(&self) -> Result<JustificationsSubscription> {
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Ok(self
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.client
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.subscribe(
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"grandpa_subscribeJustifications",
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jsonrpsee_types::jsonrpc::Params::None,
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"grandpa_unsubscribeJustifications",
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)
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.await?)
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}
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}
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